mirror of
https://github.com/IfcOpenShell/IfcOpenShell.git
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16531 lines
1.9 MiB
Plaintext
16531 lines
1.9 MiB
Plaintext
/********************************************************************************
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* *
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* This file is part of IfcOpenShell. *
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* *
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* IfcOpenShell is free software: you can redistribute it and/or modify *
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* it under the terms of the Lesser GNU General Public License as published by *
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* the Free Software Foundation, either version 3.0 of the License, or *
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* (at your option) any later version. *
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* *
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* IfcOpenShell is distributed in the hope that it will be useful, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* Lesser GNU General Public License for more details. *
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* *
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* You should have received a copy of the Lesser GNU General Public License *
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* along with this program. If not, see <http://www.gnu.org/licenses/>. *
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* *
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********************************************************************************/
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/********************************************************************************
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* *
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* This file has been generated from IFC4x3_RC1.exp. Do not make modifications *
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* but instead modify the python script that has been used to generate this. *
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* *
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********************************************************************************/
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#include "../ifcparse/Ifc4x3_rc1.h"
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#include "../ifcparse/IfcSchema.h"
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#include "../ifcparse/IfcException.h"
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#include "../ifcparse/IfcFile.h"
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#include <map>
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const char* const Ifc4x3_rc1::Identifier = "IFC4X3_RC1";
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using namespace IfcParse;
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// External definitions
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extern declaration* IFC4X3_RC1_types[1317];
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcActionRequestTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[3]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcActionRequestTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[3]); }
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/*
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Ifc4x3_rc1::IfcActionRequestTypeEnum::IfcActionRequestTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcActionRequestTypeEnum::IfcActionRequestTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcActionRequestTypeEnum::IfcActionRequestTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcActionRequestTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcActionRequestTypeEnum::IfcActionRequestTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcActionRequestTypeEnum::Value Ifc4x3_rc1::IfcActionRequestTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcActionRequestTypeEnum::Value) Ifc4x3_rc1::IfcActionRequestTypeEnum::IfcActionRequestTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcActionRequestTypeEnum::operator Ifc4x3_rc1::IfcActionRequestTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcActionRequestTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcActionSourceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[4]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcActionSourceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[4]); }
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/*
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Ifc4x3_rc1::IfcActionSourceTypeEnum::IfcActionSourceTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcActionSourceTypeEnum::IfcActionSourceTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcActionSourceTypeEnum::IfcActionSourceTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcActionSourceTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcActionSourceTypeEnum::IfcActionSourceTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcActionSourceTypeEnum::Value Ifc4x3_rc1::IfcActionSourceTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcActionSourceTypeEnum::Value) Ifc4x3_rc1::IfcActionSourceTypeEnum::IfcActionSourceTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcActionSourceTypeEnum::operator Ifc4x3_rc1::IfcActionSourceTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcActionSourceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcActionTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[5]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcActionTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[5]); }
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/*
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Ifc4x3_rc1::IfcActionTypeEnum::IfcActionTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcActionTypeEnum::IfcActionTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcActionTypeEnum::IfcActionTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcActionTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcActionTypeEnum::IfcActionTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcActionTypeEnum::Value Ifc4x3_rc1::IfcActionTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcActionTypeEnum::Value) Ifc4x3_rc1::IfcActionTypeEnum::IfcActionTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcActionTypeEnum::operator Ifc4x3_rc1::IfcActionTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcActionTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcActuatorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[11]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcActuatorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[11]); }
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/*
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Ifc4x3_rc1::IfcActuatorTypeEnum::IfcActuatorTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcActuatorTypeEnum::IfcActuatorTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcActuatorTypeEnum::IfcActuatorTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcActuatorTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcActuatorTypeEnum::IfcActuatorTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcActuatorTypeEnum::Value Ifc4x3_rc1::IfcActuatorTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcActuatorTypeEnum::Value) Ifc4x3_rc1::IfcActuatorTypeEnum::IfcActuatorTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcActuatorTypeEnum::operator Ifc4x3_rc1::IfcActuatorTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcActuatorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAddressTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[13]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAddressTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[13]); }
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/*
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Ifc4x3_rc1::IfcAddressTypeEnum::IfcAddressTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcAddressTypeEnum::IfcAddressTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcAddressTypeEnum::IfcAddressTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcAddressTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcAddressTypeEnum::IfcAddressTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcAddressTypeEnum::Value Ifc4x3_rc1::IfcAddressTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcAddressTypeEnum::Value) Ifc4x3_rc1::IfcAddressTypeEnum::IfcAddressTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcAddressTypeEnum::operator Ifc4x3_rc1::IfcAddressTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcAddressTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[20]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[20]); }
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/*
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Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::IfcAirTerminalBoxTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::IfcAirTerminalBoxTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::IfcAirTerminalBoxTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::IfcAirTerminalBoxTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value) Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::IfcAirTerminalBoxTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::operator Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAirTerminalTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[22]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAirTerminalTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[22]); }
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/*
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Ifc4x3_rc1::IfcAirTerminalTypeEnum::IfcAirTerminalTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcAirTerminalTypeEnum::IfcAirTerminalTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcAirTerminalTypeEnum::IfcAirTerminalTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcAirTerminalTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcAirTerminalTypeEnum::IfcAirTerminalTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value Ifc4x3_rc1::IfcAirTerminalTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value) Ifc4x3_rc1::IfcAirTerminalTypeEnum::IfcAirTerminalTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcAirTerminalTypeEnum::operator Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[25]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[25]); }
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/*
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Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::IfcAirToAirHeatRecoveryTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::IfcAirToAirHeatRecoveryTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::IfcAirToAirHeatRecoveryTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::IfcAirToAirHeatRecoveryTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value) Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::IfcAirToAirHeatRecoveryTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::operator Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAlarmTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[28]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAlarmTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[28]); }
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/*
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Ifc4x3_rc1::IfcAlarmTypeEnum::IfcAlarmTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcAlarmTypeEnum::IfcAlarmTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcAlarmTypeEnum::IfcAlarmTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcAlarmTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcAlarmTypeEnum::IfcAlarmTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcAlarmTypeEnum::Value Ifc4x3_rc1::IfcAlarmTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcAlarmTypeEnum::Value) Ifc4x3_rc1::IfcAlarmTypeEnum::IfcAlarmTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcAlarmTypeEnum::operator Ifc4x3_rc1::IfcAlarmTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcAlarmTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAlignmentTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[44]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAlignmentTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[44]); }
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/*
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Ifc4x3_rc1::IfcAlignmentTypeEnum::IfcAlignmentTypeEnum(const std::weak_ptr<InstanceData>& e)
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: express::DeclaredType(e)
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{}
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Ifc4x3_rc1::IfcAlignmentTypeEnum::IfcAlignmentTypeEnum(Value v) {
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set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
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}
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Ifc4x3_rc1::IfcAlignmentTypeEnum::IfcAlignmentTypeEnum(const std::string& v) {
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set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
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}
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*/
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const char* Ifc4x3_rc1::IfcAlignmentTypeEnum::ToString(Value v) {
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return Ifc4x3_rc1::IfcAlignmentTypeEnum::IfcAlignmentTypeEnum::Class().lookup_enum_value((size_t)v);
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}
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Ifc4x3_rc1::IfcAlignmentTypeEnum::Value Ifc4x3_rc1::IfcAlignmentTypeEnum::FromString(const std::string& s) {
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return (Ifc4x3_rc1::IfcAlignmentTypeEnum::Value) Ifc4x3_rc1::IfcAlignmentTypeEnum::IfcAlignmentTypeEnum::Class().lookup_enum_offset(s);
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}
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Ifc4x3_rc1::IfcAlignmentTypeEnum::operator Ifc4x3_rc1::IfcAlignmentTypeEnum::Value() const {
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return (Ifc4x3_rc1::IfcAlignmentTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
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}
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// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAnalysisModelTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[46]); }
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const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[46]); }
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/*
|
|
Ifc4x3_rc1::IfcAnalysisModelTypeEnum::IfcAnalysisModelTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcAnalysisModelTypeEnum::IfcAnalysisModelTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAnalysisModelTypeEnum::IfcAnalysisModelTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcAnalysisModelTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcAnalysisModelTypeEnum::IfcAnalysisModelTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Value Ifc4x3_rc1::IfcAnalysisModelTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Value) Ifc4x3_rc1::IfcAnalysisModelTypeEnum::IfcAnalysisModelTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAnalysisModelTypeEnum::operator Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[47]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[47]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::IfcAnalysisTheoryTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::IfcAnalysisTheoryTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::IfcAnalysisTheoryTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::IfcAnalysisTheoryTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Value Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Value) Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::IfcAnalysisTheoryTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::operator Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAnnotationTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[51]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAnnotationTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[51]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcAnnotationTypeEnum::IfcAnnotationTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcAnnotationTypeEnum::IfcAnnotationTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAnnotationTypeEnum::IfcAnnotationTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcAnnotationTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcAnnotationTypeEnum::IfcAnnotationTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAnnotationTypeEnum::Value Ifc4x3_rc1::IfcAnnotationTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcAnnotationTypeEnum::Value) Ifc4x3_rc1::IfcAnnotationTypeEnum::IfcAnnotationTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAnnotationTypeEnum::operator Ifc4x3_rc1::IfcAnnotationTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcAnnotationTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcArithmeticOperatorEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[63]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcArithmeticOperatorEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[63]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcArithmeticOperatorEnum::IfcArithmeticOperatorEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcArithmeticOperatorEnum::IfcArithmeticOperatorEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcArithmeticOperatorEnum::IfcArithmeticOperatorEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcArithmeticOperatorEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcArithmeticOperatorEnum::IfcArithmeticOperatorEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcArithmeticOperatorEnum::Value Ifc4x3_rc1::IfcArithmeticOperatorEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcArithmeticOperatorEnum::Value) Ifc4x3_rc1::IfcArithmeticOperatorEnum::IfcArithmeticOperatorEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcArithmeticOperatorEnum::operator Ifc4x3_rc1::IfcArithmeticOperatorEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcArithmeticOperatorEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAssemblyPlaceEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[64]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAssemblyPlaceEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[64]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcAssemblyPlaceEnum::IfcAssemblyPlaceEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcAssemblyPlaceEnum::IfcAssemblyPlaceEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAssemblyPlaceEnum::IfcAssemblyPlaceEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcAssemblyPlaceEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcAssemblyPlaceEnum::IfcAssemblyPlaceEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value Ifc4x3_rc1::IfcAssemblyPlaceEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value) Ifc4x3_rc1::IfcAssemblyPlaceEnum::IfcAssemblyPlaceEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAssemblyPlaceEnum::operator Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[69]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[69]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::IfcAudioVisualApplianceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::IfcAudioVisualApplianceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::IfcAudioVisualApplianceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::IfcAudioVisualApplianceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value) Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::IfcAudioVisualApplianceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::operator Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBSplineCurveForm::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[113]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBSplineCurveForm::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[113]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBSplineCurveForm::IfcBSplineCurveForm(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBSplineCurveForm::IfcBSplineCurveForm(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBSplineCurveForm::IfcBSplineCurveForm(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBSplineCurveForm::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBSplineCurveForm::IfcBSplineCurveForm::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBSplineCurveForm::Value Ifc4x3_rc1::IfcBSplineCurveForm::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBSplineCurveForm::Value) Ifc4x3_rc1::IfcBSplineCurveForm::IfcBSplineCurveForm::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBSplineCurveForm::operator Ifc4x3_rc1::IfcBSplineCurveForm::Value() const {
|
|
return (Ifc4x3_rc1::IfcBSplineCurveForm::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBSplineSurfaceForm::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[116]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBSplineSurfaceForm::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[116]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBSplineSurfaceForm::IfcBSplineSurfaceForm(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBSplineSurfaceForm::IfcBSplineSurfaceForm(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBSplineSurfaceForm::IfcBSplineSurfaceForm(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBSplineSurfaceForm::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBSplineSurfaceForm::IfcBSplineSurfaceForm::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBSplineSurfaceForm::Value Ifc4x3_rc1::IfcBSplineSurfaceForm::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBSplineSurfaceForm::Value) Ifc4x3_rc1::IfcBSplineSurfaceForm::IfcBSplineSurfaceForm::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBSplineSurfaceForm::operator Ifc4x3_rc1::IfcBSplineSurfaceForm::Value() const {
|
|
return (Ifc4x3_rc1::IfcBSplineSurfaceForm::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBeamTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[78]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBeamTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[78]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBeamTypeEnum::IfcBeamTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBeamTypeEnum::IfcBeamTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBeamTypeEnum::IfcBeamTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBeamTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBeamTypeEnum::IfcBeamTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBeamTypeEnum::Value Ifc4x3_rc1::IfcBeamTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBeamTypeEnum::Value) Ifc4x3_rc1::IfcBeamTypeEnum::IfcBeamTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBeamTypeEnum::operator Ifc4x3_rc1::IfcBeamTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBeamTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[81]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[81]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::IfcBearingTypeDisplacementEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::IfcBearingTypeDisplacementEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::IfcBearingTypeDisplacementEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::IfcBearingTypeDisplacementEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::Value Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::Value) Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::IfcBearingTypeDisplacementEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::operator Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBearingTypeDisplacementEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBearingTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[82]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBearingTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[82]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBearingTypeEnum::IfcBearingTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBearingTypeEnum::IfcBearingTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBearingTypeEnum::IfcBearingTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBearingTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBearingTypeEnum::IfcBearingTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBearingTypeEnum::Value Ifc4x3_rc1::IfcBearingTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBearingTypeEnum::Value) Ifc4x3_rc1::IfcBearingTypeEnum::IfcBearingTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBearingTypeEnum::operator Ifc4x3_rc1::IfcBearingTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBearingTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBenchmarkEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[83]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBenchmarkEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[83]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBenchmarkEnum::IfcBenchmarkEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBenchmarkEnum::IfcBenchmarkEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBenchmarkEnum::IfcBenchmarkEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBenchmarkEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBenchmarkEnum::IfcBenchmarkEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBenchmarkEnum::Value Ifc4x3_rc1::IfcBenchmarkEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBenchmarkEnum::Value) Ifc4x3_rc1::IfcBenchmarkEnum::IfcBenchmarkEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBenchmarkEnum::operator Ifc4x3_rc1::IfcBenchmarkEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBenchmarkEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBoilerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[90]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBoilerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[90]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBoilerTypeEnum::IfcBoilerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBoilerTypeEnum::IfcBoilerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBoilerTypeEnum::IfcBoilerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBoilerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBoilerTypeEnum::IfcBoilerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBoilerTypeEnum::Value Ifc4x3_rc1::IfcBoilerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBoilerTypeEnum::Value) Ifc4x3_rc1::IfcBoilerTypeEnum::IfcBoilerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBoilerTypeEnum::operator Ifc4x3_rc1::IfcBoilerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBoilerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBooleanOperator::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[94]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBooleanOperator::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[94]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBooleanOperator::IfcBooleanOperator(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBooleanOperator::IfcBooleanOperator(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBooleanOperator::IfcBooleanOperator(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBooleanOperator::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBooleanOperator::IfcBooleanOperator::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBooleanOperator::Value Ifc4x3_rc1::IfcBooleanOperator::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBooleanOperator::Value) Ifc4x3_rc1::IfcBooleanOperator::IfcBooleanOperator::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBooleanOperator::operator Ifc4x3_rc1::IfcBooleanOperator::Value() const {
|
|
return (Ifc4x3_rc1::IfcBooleanOperator::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBridgePartTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[110]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBridgePartTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[110]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBridgePartTypeEnum::IfcBridgePartTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBridgePartTypeEnum::IfcBridgePartTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBridgePartTypeEnum::IfcBridgePartTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBridgePartTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBridgePartTypeEnum::IfcBridgePartTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBridgePartTypeEnum::Value Ifc4x3_rc1::IfcBridgePartTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBridgePartTypeEnum::Value) Ifc4x3_rc1::IfcBridgePartTypeEnum::IfcBridgePartTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBridgePartTypeEnum::operator Ifc4x3_rc1::IfcBridgePartTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBridgePartTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBridgeTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[111]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBridgeTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[111]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBridgeTypeEnum::IfcBridgeTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBridgeTypeEnum::IfcBridgeTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBridgeTypeEnum::IfcBridgeTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBridgeTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBridgeTypeEnum::IfcBridgeTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBridgeTypeEnum::Value Ifc4x3_rc1::IfcBridgeTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBridgeTypeEnum::Value) Ifc4x3_rc1::IfcBridgeTypeEnum::IfcBridgeTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBridgeTypeEnum::operator Ifc4x3_rc1::IfcBridgeTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBridgeTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[121]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[121]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::IfcBuildingElementPartTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::IfcBuildingElementPartTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::IfcBuildingElementPartTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::IfcBuildingElementPartTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value) Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::IfcBuildingElementPartTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::operator Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[124]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[124]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::IfcBuildingElementProxyTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::IfcBuildingElementProxyTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::IfcBuildingElementProxyTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::IfcBuildingElementProxyTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value) Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::IfcBuildingElementProxyTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::operator Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBuildingSystemTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[127]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[127]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBuildingSystemTypeEnum::IfcBuildingSystemTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBuildingSystemTypeEnum::IfcBuildingSystemTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuildingSystemTypeEnum::IfcBuildingSystemTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBuildingSystemTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBuildingSystemTypeEnum::IfcBuildingSystemTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Value Ifc4x3_rc1::IfcBuildingSystemTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Value) Ifc4x3_rc1::IfcBuildingSystemTypeEnum::IfcBuildingSystemTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuildingSystemTypeEnum::operator Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBuiltSystemTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[131]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[131]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBuiltSystemTypeEnum::IfcBuiltSystemTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBuiltSystemTypeEnum::IfcBuiltSystemTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuiltSystemTypeEnum::IfcBuiltSystemTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBuiltSystemTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBuiltSystemTypeEnum::IfcBuiltSystemTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Value Ifc4x3_rc1::IfcBuiltSystemTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Value) Ifc4x3_rc1::IfcBuiltSystemTypeEnum::IfcBuiltSystemTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBuiltSystemTypeEnum::operator Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBurnerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[134]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcBurnerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[134]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcBurnerTypeEnum::IfcBurnerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcBurnerTypeEnum::IfcBurnerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBurnerTypeEnum::IfcBurnerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcBurnerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcBurnerTypeEnum::IfcBurnerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBurnerTypeEnum::Value Ifc4x3_rc1::IfcBurnerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcBurnerTypeEnum::Value) Ifc4x3_rc1::IfcBurnerTypeEnum::IfcBurnerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcBurnerTypeEnum::operator Ifc4x3_rc1::IfcBurnerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcBurnerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[137]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[137]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::IfcCableCarrierFittingTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::IfcCableCarrierFittingTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::IfcCableCarrierFittingTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::IfcCableCarrierFittingTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value) Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::IfcCableCarrierFittingTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::operator Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[140]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[140]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::IfcCableCarrierSegmentTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::IfcCableCarrierSegmentTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::IfcCableCarrierSegmentTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::IfcCableCarrierSegmentTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value) Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::IfcCableCarrierSegmentTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::operator Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCableFittingTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[143]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCableFittingTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[143]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCableFittingTypeEnum::IfcCableFittingTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCableFittingTypeEnum::IfcCableFittingTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableFittingTypeEnum::IfcCableFittingTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCableFittingTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCableFittingTypeEnum::IfcCableFittingTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableFittingTypeEnum::Value Ifc4x3_rc1::IfcCableFittingTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCableFittingTypeEnum::Value) Ifc4x3_rc1::IfcCableFittingTypeEnum::IfcCableFittingTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableFittingTypeEnum::operator Ifc4x3_rc1::IfcCableFittingTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCableFittingTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCableSegmentTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[146]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCableSegmentTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[146]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCableSegmentTypeEnum::IfcCableSegmentTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCableSegmentTypeEnum::IfcCableSegmentTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableSegmentTypeEnum::IfcCableSegmentTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCableSegmentTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCableSegmentTypeEnum::IfcCableSegmentTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value Ifc4x3_rc1::IfcCableSegmentTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value) Ifc4x3_rc1::IfcCableSegmentTypeEnum::IfcCableSegmentTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCableSegmentTypeEnum::operator Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[149]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[149]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::IfcCaissonFoundationTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::IfcCaissonFoundationTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::IfcCaissonFoundationTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::IfcCaissonFoundationTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value) Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::IfcCaissonFoundationTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::operator Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcChangeActionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[161]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcChangeActionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[161]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcChangeActionEnum::IfcChangeActionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcChangeActionEnum::IfcChangeActionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcChangeActionEnum::IfcChangeActionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcChangeActionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcChangeActionEnum::IfcChangeActionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcChangeActionEnum::Value Ifc4x3_rc1::IfcChangeActionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcChangeActionEnum::Value) Ifc4x3_rc1::IfcChangeActionEnum::IfcChangeActionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcChangeActionEnum::operator Ifc4x3_rc1::IfcChangeActionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcChangeActionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcChillerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[164]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcChillerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[164]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcChillerTypeEnum::IfcChillerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcChillerTypeEnum::IfcChillerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcChillerTypeEnum::IfcChillerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcChillerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcChillerTypeEnum::IfcChillerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcChillerTypeEnum::Value Ifc4x3_rc1::IfcChillerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcChillerTypeEnum::Value) Ifc4x3_rc1::IfcChillerTypeEnum::IfcChillerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcChillerTypeEnum::operator Ifc4x3_rc1::IfcChillerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcChillerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcChimneyTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[167]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcChimneyTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[167]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcChimneyTypeEnum::IfcChimneyTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcChimneyTypeEnum::IfcChimneyTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcChimneyTypeEnum::IfcChimneyTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcChimneyTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcChimneyTypeEnum::IfcChimneyTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcChimneyTypeEnum::Value Ifc4x3_rc1::IfcChimneyTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcChimneyTypeEnum::Value) Ifc4x3_rc1::IfcChimneyTypeEnum::IfcChimneyTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcChimneyTypeEnum::operator Ifc4x3_rc1::IfcChimneyTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcChimneyTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCoilTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[181]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCoilTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[181]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCoilTypeEnum::IfcCoilTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCoilTypeEnum::IfcCoilTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCoilTypeEnum::IfcCoilTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCoilTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCoilTypeEnum::IfcCoilTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCoilTypeEnum::Value Ifc4x3_rc1::IfcCoilTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCoilTypeEnum::Value) Ifc4x3_rc1::IfcCoilTypeEnum::IfcCoilTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCoilTypeEnum::operator Ifc4x3_rc1::IfcCoilTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCoilTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcColumnTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[190]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcColumnTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[190]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcColumnTypeEnum::IfcColumnTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcColumnTypeEnum::IfcColumnTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcColumnTypeEnum::IfcColumnTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcColumnTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcColumnTypeEnum::IfcColumnTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcColumnTypeEnum::Value Ifc4x3_rc1::IfcColumnTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcColumnTypeEnum::Value) Ifc4x3_rc1::IfcColumnTypeEnum::IfcColumnTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcColumnTypeEnum::operator Ifc4x3_rc1::IfcColumnTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcColumnTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[193]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[193]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::IfcCommunicationsApplianceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::IfcCommunicationsApplianceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::IfcCommunicationsApplianceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::IfcCommunicationsApplianceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value) Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::IfcCommunicationsApplianceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::operator Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[197]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[197]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::IfcComplexPropertyTemplateTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::IfcComplexPropertyTemplateTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::IfcComplexPropertyTemplateTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::IfcComplexPropertyTemplateTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Value Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Value) Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::IfcComplexPropertyTemplateTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::operator Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCompressorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[205]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCompressorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[205]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCompressorTypeEnum::IfcCompressorTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCompressorTypeEnum::IfcCompressorTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCompressorTypeEnum::IfcCompressorTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCompressorTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCompressorTypeEnum::IfcCompressorTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCompressorTypeEnum::Value Ifc4x3_rc1::IfcCompressorTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCompressorTypeEnum::Value) Ifc4x3_rc1::IfcCompressorTypeEnum::IfcCompressorTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCompressorTypeEnum::operator Ifc4x3_rc1::IfcCompressorTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCompressorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCondenserTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[208]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCondenserTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[208]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCondenserTypeEnum::IfcCondenserTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCondenserTypeEnum::IfcCondenserTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCondenserTypeEnum::IfcCondenserTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCondenserTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCondenserTypeEnum::IfcCondenserTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCondenserTypeEnum::Value Ifc4x3_rc1::IfcCondenserTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCondenserTypeEnum::Value) Ifc4x3_rc1::IfcCondenserTypeEnum::IfcCondenserTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCondenserTypeEnum::operator Ifc4x3_rc1::IfcCondenserTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCondenserTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConnectionTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[216]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConnectionTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[216]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcConnectionTypeEnum::IfcConnectionTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcConnectionTypeEnum::IfcConnectionTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConnectionTypeEnum::IfcConnectionTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcConnectionTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcConnectionTypeEnum::IfcConnectionTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConnectionTypeEnum::Value Ifc4x3_rc1::IfcConnectionTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcConnectionTypeEnum::Value) Ifc4x3_rc1::IfcConnectionTypeEnum::IfcConnectionTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConnectionTypeEnum::operator Ifc4x3_rc1::IfcConnectionTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcConnectionTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConstraintEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[219]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConstraintEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[219]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcConstraintEnum::IfcConstraintEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcConstraintEnum::IfcConstraintEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstraintEnum::IfcConstraintEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcConstraintEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcConstraintEnum::IfcConstraintEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstraintEnum::Value Ifc4x3_rc1::IfcConstraintEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcConstraintEnum::Value) Ifc4x3_rc1::IfcConstraintEnum::IfcConstraintEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstraintEnum::operator Ifc4x3_rc1::IfcConstraintEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcConstraintEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[222]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[222]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::IfcConstructionEquipmentResourceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::IfcConstructionEquipmentResourceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::IfcConstructionEquipmentResourceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::IfcConstructionEquipmentResourceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value) Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::IfcConstructionEquipmentResourceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::operator Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[225]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[225]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::IfcConstructionMaterialResourceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::IfcConstructionMaterialResourceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::IfcConstructionMaterialResourceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::IfcConstructionMaterialResourceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value) Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::IfcConstructionMaterialResourceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::operator Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[228]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[228]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::IfcConstructionProductResourceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::IfcConstructionProductResourceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::IfcConstructionProductResourceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::IfcConstructionProductResourceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value) Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::IfcConstructionProductResourceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::operator Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcControllerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[237]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcControllerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[237]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcControllerTypeEnum::IfcControllerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcControllerTypeEnum::IfcControllerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcControllerTypeEnum::IfcControllerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcControllerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcControllerTypeEnum::IfcControllerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcControllerTypeEnum::Value Ifc4x3_rc1::IfcControllerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcControllerTypeEnum::Value) Ifc4x3_rc1::IfcControllerTypeEnum::IfcControllerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcControllerTypeEnum::operator Ifc4x3_rc1::IfcControllerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcControllerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[242]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[242]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::IfcConveyorSegmentTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::IfcConveyorSegmentTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::IfcConveyorSegmentTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::IfcConveyorSegmentTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value) Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::IfcConveyorSegmentTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::operator Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCooledBeamTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[245]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCooledBeamTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[245]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCooledBeamTypeEnum::IfcCooledBeamTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCooledBeamTypeEnum::IfcCooledBeamTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCooledBeamTypeEnum::IfcCooledBeamTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCooledBeamTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCooledBeamTypeEnum::IfcCooledBeamTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value Ifc4x3_rc1::IfcCooledBeamTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value) Ifc4x3_rc1::IfcCooledBeamTypeEnum::IfcCooledBeamTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCooledBeamTypeEnum::operator Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCoolingTowerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[248]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[248]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCoolingTowerTypeEnum::IfcCoolingTowerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCoolingTowerTypeEnum::IfcCoolingTowerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCoolingTowerTypeEnum::IfcCoolingTowerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCoolingTowerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCoolingTowerTypeEnum::IfcCoolingTowerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value Ifc4x3_rc1::IfcCoolingTowerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value) Ifc4x3_rc1::IfcCoolingTowerTypeEnum::IfcCoolingTowerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCoolingTowerTypeEnum::operator Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCostItemTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[253]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCostItemTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[253]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCostItemTypeEnum::IfcCostItemTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCostItemTypeEnum::IfcCostItemTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCostItemTypeEnum::IfcCostItemTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCostItemTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCostItemTypeEnum::IfcCostItemTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCostItemTypeEnum::Value Ifc4x3_rc1::IfcCostItemTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCostItemTypeEnum::Value) Ifc4x3_rc1::IfcCostItemTypeEnum::IfcCostItemTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCostItemTypeEnum::operator Ifc4x3_rc1::IfcCostItemTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCostItemTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCostScheduleTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[255]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCostScheduleTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[255]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCostScheduleTypeEnum::IfcCostScheduleTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCostScheduleTypeEnum::IfcCostScheduleTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCostScheduleTypeEnum::IfcCostScheduleTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCostScheduleTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCostScheduleTypeEnum::IfcCostScheduleTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCostScheduleTypeEnum::Value Ifc4x3_rc1::IfcCostScheduleTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCostScheduleTypeEnum::Value) Ifc4x3_rc1::IfcCostScheduleTypeEnum::IfcCostScheduleTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCostScheduleTypeEnum::operator Ifc4x3_rc1::IfcCostScheduleTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCostScheduleTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCourseTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[260]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCourseTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[260]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCourseTypeEnum::IfcCourseTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCourseTypeEnum::IfcCourseTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCourseTypeEnum::IfcCourseTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCourseTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCourseTypeEnum::IfcCourseTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCourseTypeEnum::Value Ifc4x3_rc1::IfcCourseTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCourseTypeEnum::Value) Ifc4x3_rc1::IfcCourseTypeEnum::IfcCourseTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCourseTypeEnum::operator Ifc4x3_rc1::IfcCourseTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCourseTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCoveringTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[263]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCoveringTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[263]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCoveringTypeEnum::IfcCoveringTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCoveringTypeEnum::IfcCoveringTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCoveringTypeEnum::IfcCoveringTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCoveringTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCoveringTypeEnum::IfcCoveringTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCoveringTypeEnum::Value Ifc4x3_rc1::IfcCoveringTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCoveringTypeEnum::Value) Ifc4x3_rc1::IfcCoveringTypeEnum::IfcCoveringTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCoveringTypeEnum::operator Ifc4x3_rc1::IfcCoveringTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCoveringTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCrewResourceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[266]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCrewResourceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[266]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCrewResourceTypeEnum::IfcCrewResourceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCrewResourceTypeEnum::IfcCrewResourceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCrewResourceTypeEnum::IfcCrewResourceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCrewResourceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCrewResourceTypeEnum::IfcCrewResourceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value Ifc4x3_rc1::IfcCrewResourceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value) Ifc4x3_rc1::IfcCrewResourceTypeEnum::IfcCrewResourceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCrewResourceTypeEnum::operator Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCurtainWallTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[274]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCurtainWallTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[274]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCurtainWallTypeEnum::IfcCurtainWallTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCurtainWallTypeEnum::IfcCurtainWallTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCurtainWallTypeEnum::IfcCurtainWallTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCurtainWallTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCurtainWallTypeEnum::IfcCurtainWallTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value Ifc4x3_rc1::IfcCurtainWallTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value) Ifc4x3_rc1::IfcCurtainWallTypeEnum::IfcCurtainWallTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCurtainWallTypeEnum::operator Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCurveInterpolationEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[280]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcCurveInterpolationEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[280]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcCurveInterpolationEnum::IfcCurveInterpolationEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcCurveInterpolationEnum::IfcCurveInterpolationEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCurveInterpolationEnum::IfcCurveInterpolationEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcCurveInterpolationEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcCurveInterpolationEnum::IfcCurveInterpolationEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCurveInterpolationEnum::Value Ifc4x3_rc1::IfcCurveInterpolationEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcCurveInterpolationEnum::Value) Ifc4x3_rc1::IfcCurveInterpolationEnum::IfcCurveInterpolationEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcCurveInterpolationEnum::operator Ifc4x3_rc1::IfcCurveInterpolationEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcCurveInterpolationEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDamperTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[292]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDamperTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[292]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDamperTypeEnum::IfcDamperTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDamperTypeEnum::IfcDamperTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDamperTypeEnum::IfcDamperTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDamperTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDamperTypeEnum::IfcDamperTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDamperTypeEnum::Value Ifc4x3_rc1::IfcDamperTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDamperTypeEnum::Value) Ifc4x3_rc1::IfcDamperTypeEnum::IfcDamperTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDamperTypeEnum::operator Ifc4x3_rc1::IfcDamperTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDamperTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDataOriginEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[293]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDataOriginEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[293]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDataOriginEnum::IfcDataOriginEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDataOriginEnum::IfcDataOriginEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDataOriginEnum::IfcDataOriginEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDataOriginEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDataOriginEnum::IfcDataOriginEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDataOriginEnum::Value Ifc4x3_rc1::IfcDataOriginEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDataOriginEnum::Value) Ifc4x3_rc1::IfcDataOriginEnum::IfcDataOriginEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDataOriginEnum::operator Ifc4x3_rc1::IfcDataOriginEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDataOriginEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDerivedUnitEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[305]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDerivedUnitEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[305]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDerivedUnitEnum::IfcDerivedUnitEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDerivedUnitEnum::IfcDerivedUnitEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDerivedUnitEnum::IfcDerivedUnitEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDerivedUnitEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDerivedUnitEnum::IfcDerivedUnitEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDerivedUnitEnum::Value Ifc4x3_rc1::IfcDerivedUnitEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDerivedUnitEnum::Value) Ifc4x3_rc1::IfcDerivedUnitEnum::IfcDerivedUnitEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDerivedUnitEnum::operator Ifc4x3_rc1::IfcDerivedUnitEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDerivedUnitEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDirectionSenseEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[310]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDirectionSenseEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[310]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDirectionSenseEnum::IfcDirectionSenseEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDirectionSenseEnum::IfcDirectionSenseEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDirectionSenseEnum::IfcDirectionSenseEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDirectionSenseEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDirectionSenseEnum::IfcDirectionSenseEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDirectionSenseEnum::Value Ifc4x3_rc1::IfcDirectionSenseEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDirectionSenseEnum::Value) Ifc4x3_rc1::IfcDirectionSenseEnum::IfcDirectionSenseEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDirectionSenseEnum::operator Ifc4x3_rc1::IfcDirectionSenseEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDirectionSenseEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[315]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[315]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::IfcDiscreteAccessoryTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::IfcDiscreteAccessoryTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::IfcDiscreteAccessoryTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::IfcDiscreteAccessoryTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value) Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::IfcDiscreteAccessoryTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::operator Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDistributionBoardTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[319]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[319]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDistributionBoardTypeEnum::IfcDistributionBoardTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDistributionBoardTypeEnum::IfcDistributionBoardTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionBoardTypeEnum::IfcDistributionBoardTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDistributionBoardTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDistributionBoardTypeEnum::IfcDistributionBoardTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value Ifc4x3_rc1::IfcDistributionBoardTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value) Ifc4x3_rc1::IfcDistributionBoardTypeEnum::IfcDistributionBoardTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionBoardTypeEnum::operator Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[322]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[322]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::IfcDistributionChamberElementTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::IfcDistributionChamberElementTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::IfcDistributionChamberElementTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::IfcDistributionChamberElementTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value) Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::IfcDistributionChamberElementTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::operator Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDistributionPortTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[331]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDistributionPortTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[331]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDistributionPortTypeEnum::IfcDistributionPortTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDistributionPortTypeEnum::IfcDistributionPortTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionPortTypeEnum::IfcDistributionPortTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDistributionPortTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDistributionPortTypeEnum::IfcDistributionPortTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionPortTypeEnum::Value Ifc4x3_rc1::IfcDistributionPortTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDistributionPortTypeEnum::Value) Ifc4x3_rc1::IfcDistributionPortTypeEnum::IfcDistributionPortTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionPortTypeEnum::operator Ifc4x3_rc1::IfcDistributionPortTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDistributionPortTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDistributionSystemEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[333]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDistributionSystemEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[333]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDistributionSystemEnum::IfcDistributionSystemEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDistributionSystemEnum::IfcDistributionSystemEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionSystemEnum::IfcDistributionSystemEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDistributionSystemEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDistributionSystemEnum::IfcDistributionSystemEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionSystemEnum::Value Ifc4x3_rc1::IfcDistributionSystemEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDistributionSystemEnum::Value) Ifc4x3_rc1::IfcDistributionSystemEnum::IfcDistributionSystemEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDistributionSystemEnum::operator Ifc4x3_rc1::IfcDistributionSystemEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDistributionSystemEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDocumentConfidentialityEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[334]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[334]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDocumentConfidentialityEnum::IfcDocumentConfidentialityEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDocumentConfidentialityEnum::IfcDocumentConfidentialityEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDocumentConfidentialityEnum::IfcDocumentConfidentialityEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDocumentConfidentialityEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDocumentConfidentialityEnum::IfcDocumentConfidentialityEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Value Ifc4x3_rc1::IfcDocumentConfidentialityEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Value) Ifc4x3_rc1::IfcDocumentConfidentialityEnum::IfcDocumentConfidentialityEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDocumentConfidentialityEnum::operator Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDocumentStatusEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[339]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDocumentStatusEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[339]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDocumentStatusEnum::IfcDocumentStatusEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDocumentStatusEnum::IfcDocumentStatusEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDocumentStatusEnum::IfcDocumentStatusEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDocumentStatusEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDocumentStatusEnum::IfcDocumentStatusEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDocumentStatusEnum::Value Ifc4x3_rc1::IfcDocumentStatusEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDocumentStatusEnum::Value) Ifc4x3_rc1::IfcDocumentStatusEnum::IfcDocumentStatusEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDocumentStatusEnum::operator Ifc4x3_rc1::IfcDocumentStatusEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDocumentStatusEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorPanelOperationEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[342]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorPanelOperationEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[342]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDoorPanelOperationEnum::IfcDoorPanelOperationEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDoorPanelOperationEnum::IfcDoorPanelOperationEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorPanelOperationEnum::IfcDoorPanelOperationEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDoorPanelOperationEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDoorPanelOperationEnum::IfcDoorPanelOperationEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorPanelOperationEnum::Value Ifc4x3_rc1::IfcDoorPanelOperationEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDoorPanelOperationEnum::Value) Ifc4x3_rc1::IfcDoorPanelOperationEnum::IfcDoorPanelOperationEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorPanelOperationEnum::operator Ifc4x3_rc1::IfcDoorPanelOperationEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDoorPanelOperationEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorPanelPositionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[343]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorPanelPositionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[343]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDoorPanelPositionEnum::IfcDoorPanelPositionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDoorPanelPositionEnum::IfcDoorPanelPositionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorPanelPositionEnum::IfcDoorPanelPositionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDoorPanelPositionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDoorPanelPositionEnum::IfcDoorPanelPositionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorPanelPositionEnum::Value Ifc4x3_rc1::IfcDoorPanelPositionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDoorPanelPositionEnum::Value) Ifc4x3_rc1::IfcDoorPanelPositionEnum::IfcDoorPanelPositionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorPanelPositionEnum::operator Ifc4x3_rc1::IfcDoorPanelPositionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDoorPanelPositionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorStyleConstructionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[347]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[347]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDoorStyleConstructionEnum::IfcDoorStyleConstructionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDoorStyleConstructionEnum::IfcDoorStyleConstructionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorStyleConstructionEnum::IfcDoorStyleConstructionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDoorStyleConstructionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDoorStyleConstructionEnum::IfcDoorStyleConstructionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Value Ifc4x3_rc1::IfcDoorStyleConstructionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Value) Ifc4x3_rc1::IfcDoorStyleConstructionEnum::IfcDoorStyleConstructionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorStyleConstructionEnum::operator Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorStyleOperationEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[348]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorStyleOperationEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[348]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDoorStyleOperationEnum::IfcDoorStyleOperationEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDoorStyleOperationEnum::IfcDoorStyleOperationEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorStyleOperationEnum::IfcDoorStyleOperationEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDoorStyleOperationEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDoorStyleOperationEnum::IfcDoorStyleOperationEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorStyleOperationEnum::Value Ifc4x3_rc1::IfcDoorStyleOperationEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDoorStyleOperationEnum::Value) Ifc4x3_rc1::IfcDoorStyleOperationEnum::IfcDoorStyleOperationEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorStyleOperationEnum::operator Ifc4x3_rc1::IfcDoorStyleOperationEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDoorStyleOperationEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[350]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[350]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDoorTypeEnum::IfcDoorTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDoorTypeEnum::IfcDoorTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorTypeEnum::IfcDoorTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDoorTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDoorTypeEnum::IfcDoorTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorTypeEnum::Value Ifc4x3_rc1::IfcDoorTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDoorTypeEnum::Value) Ifc4x3_rc1::IfcDoorTypeEnum::IfcDoorTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorTypeEnum::operator Ifc4x3_rc1::IfcDoorTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDoorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorTypeOperationEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[351]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDoorTypeOperationEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[351]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDoorTypeOperationEnum::IfcDoorTypeOperationEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDoorTypeOperationEnum::IfcDoorTypeOperationEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorTypeOperationEnum::IfcDoorTypeOperationEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDoorTypeOperationEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDoorTypeOperationEnum::IfcDoorTypeOperationEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value Ifc4x3_rc1::IfcDoorTypeOperationEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value) Ifc4x3_rc1::IfcDoorTypeOperationEnum::IfcDoorTypeOperationEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDoorTypeOperationEnum::operator Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDuctFittingTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[357]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDuctFittingTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[357]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDuctFittingTypeEnum::IfcDuctFittingTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDuctFittingTypeEnum::IfcDuctFittingTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDuctFittingTypeEnum::IfcDuctFittingTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDuctFittingTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDuctFittingTypeEnum::IfcDuctFittingTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value Ifc4x3_rc1::IfcDuctFittingTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value) Ifc4x3_rc1::IfcDuctFittingTypeEnum::IfcDuctFittingTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDuctFittingTypeEnum::operator Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDuctSegmentTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[360]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[360]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDuctSegmentTypeEnum::IfcDuctSegmentTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDuctSegmentTypeEnum::IfcDuctSegmentTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDuctSegmentTypeEnum::IfcDuctSegmentTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDuctSegmentTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDuctSegmentTypeEnum::IfcDuctSegmentTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value Ifc4x3_rc1::IfcDuctSegmentTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value) Ifc4x3_rc1::IfcDuctSegmentTypeEnum::IfcDuctSegmentTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDuctSegmentTypeEnum::operator Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDuctSilencerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[363]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[363]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcDuctSilencerTypeEnum::IfcDuctSilencerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcDuctSilencerTypeEnum::IfcDuctSilencerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDuctSilencerTypeEnum::IfcDuctSilencerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcDuctSilencerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcDuctSilencerTypeEnum::IfcDuctSilencerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value Ifc4x3_rc1::IfcDuctSilencerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value) Ifc4x3_rc1::IfcDuctSilencerTypeEnum::IfcDuctSilencerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcDuctSilencerTypeEnum::operator Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEarthworksCutTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[367]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[367]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcEarthworksCutTypeEnum::IfcEarthworksCutTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcEarthworksCutTypeEnum::IfcEarthworksCutTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEarthworksCutTypeEnum::IfcEarthworksCutTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcEarthworksCutTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcEarthworksCutTypeEnum::IfcEarthworksCutTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Value Ifc4x3_rc1::IfcEarthworksCutTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Value) Ifc4x3_rc1::IfcEarthworksCutTypeEnum::IfcEarthworksCutTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEarthworksCutTypeEnum::operator Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEarthworksFillTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[370]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[370]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcEarthworksFillTypeEnum::IfcEarthworksFillTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcEarthworksFillTypeEnum::IfcEarthworksFillTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEarthworksFillTypeEnum::IfcEarthworksFillTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcEarthworksFillTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcEarthworksFillTypeEnum::IfcEarthworksFillTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Value Ifc4x3_rc1::IfcEarthworksFillTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Value) Ifc4x3_rc1::IfcEarthworksFillTypeEnum::IfcEarthworksFillTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEarthworksFillTypeEnum::operator Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricApplianceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[376]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[376]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcElectricApplianceTypeEnum::IfcElectricApplianceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcElectricApplianceTypeEnum::IfcElectricApplianceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricApplianceTypeEnum::IfcElectricApplianceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcElectricApplianceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcElectricApplianceTypeEnum::IfcElectricApplianceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value Ifc4x3_rc1::IfcElectricApplianceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value) Ifc4x3_rc1::IfcElectricApplianceTypeEnum::IfcElectricApplianceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricApplianceTypeEnum::operator Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[383]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[383]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::IfcElectricDistributionBoardTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::IfcElectricDistributionBoardTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::IfcElectricDistributionBoardTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::IfcElectricDistributionBoardTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value) Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::IfcElectricDistributionBoardTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::operator Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[386]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[386]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::IfcElectricFlowStorageDeviceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::IfcElectricFlowStorageDeviceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::IfcElectricFlowStorageDeviceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::IfcElectricFlowStorageDeviceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value) Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::IfcElectricFlowStorageDeviceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::operator Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[389]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[389]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::IfcElectricFlowTreatmentDeviceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::IfcElectricFlowTreatmentDeviceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::IfcElectricFlowTreatmentDeviceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::IfcElectricFlowTreatmentDeviceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value) Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::IfcElectricFlowTreatmentDeviceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::operator Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[392]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[392]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::IfcElectricGeneratorTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::IfcElectricGeneratorTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::IfcElectricGeneratorTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::IfcElectricGeneratorTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value) Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::IfcElectricGeneratorTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::operator Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricMotorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[395]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricMotorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[395]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcElectricMotorTypeEnum::IfcElectricMotorTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcElectricMotorTypeEnum::IfcElectricMotorTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricMotorTypeEnum::IfcElectricMotorTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcElectricMotorTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcElectricMotorTypeEnum::IfcElectricMotorTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value Ifc4x3_rc1::IfcElectricMotorTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value) Ifc4x3_rc1::IfcElectricMotorTypeEnum::IfcElectricMotorTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricMotorTypeEnum::operator Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[399]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[399]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::IfcElectricTimeControlTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::IfcElectricTimeControlTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::IfcElectricTimeControlTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::IfcElectricTimeControlTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value) Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::IfcElectricTimeControlTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::operator Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElementAssemblyTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[405]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[405]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcElementAssemblyTypeEnum::IfcElementAssemblyTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcElementAssemblyTypeEnum::IfcElementAssemblyTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElementAssemblyTypeEnum::IfcElementAssemblyTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcElementAssemblyTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcElementAssemblyTypeEnum::IfcElementAssemblyTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value Ifc4x3_rc1::IfcElementAssemblyTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value) Ifc4x3_rc1::IfcElementAssemblyTypeEnum::IfcElementAssemblyTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElementAssemblyTypeEnum::operator Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElementCompositionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[408]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcElementCompositionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[408]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcElementCompositionEnum::IfcElementCompositionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcElementCompositionEnum::IfcElementCompositionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElementCompositionEnum::IfcElementCompositionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcElementCompositionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcElementCompositionEnum::IfcElementCompositionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElementCompositionEnum::Value Ifc4x3_rc1::IfcElementCompositionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcElementCompositionEnum::Value) Ifc4x3_rc1::IfcElementCompositionEnum::IfcElementCompositionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcElementCompositionEnum::operator Ifc4x3_rc1::IfcElementCompositionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcElementCompositionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEngineTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[418]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEngineTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[418]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcEngineTypeEnum::IfcEngineTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcEngineTypeEnum::IfcEngineTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEngineTypeEnum::IfcEngineTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcEngineTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcEngineTypeEnum::IfcEngineTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEngineTypeEnum::Value Ifc4x3_rc1::IfcEngineTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcEngineTypeEnum::Value) Ifc4x3_rc1::IfcEngineTypeEnum::IfcEngineTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEngineTypeEnum::operator Ifc4x3_rc1::IfcEngineTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcEngineTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[421]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[421]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::IfcEvaporativeCoolerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::IfcEvaporativeCoolerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::IfcEvaporativeCoolerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::IfcEvaporativeCoolerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value) Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::IfcEvaporativeCoolerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::operator Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEvaporatorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[424]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEvaporatorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[424]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcEvaporatorTypeEnum::IfcEvaporatorTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcEvaporatorTypeEnum::IfcEvaporatorTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEvaporatorTypeEnum::IfcEvaporatorTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcEvaporatorTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcEvaporatorTypeEnum::IfcEvaporatorTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value Ifc4x3_rc1::IfcEvaporatorTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value) Ifc4x3_rc1::IfcEvaporatorTypeEnum::IfcEvaporatorTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEvaporatorTypeEnum::operator Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEventTriggerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[427]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEventTriggerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[427]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcEventTriggerTypeEnum::IfcEventTriggerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcEventTriggerTypeEnum::IfcEventTriggerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEventTriggerTypeEnum::IfcEventTriggerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcEventTriggerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcEventTriggerTypeEnum::IfcEventTriggerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value Ifc4x3_rc1::IfcEventTriggerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value) Ifc4x3_rc1::IfcEventTriggerTypeEnum::IfcEventTriggerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEventTriggerTypeEnum::operator Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEventTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[429]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcEventTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[429]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcEventTypeEnum::IfcEventTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcEventTypeEnum::IfcEventTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEventTypeEnum::IfcEventTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcEventTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcEventTypeEnum::IfcEventTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEventTypeEnum::Value Ifc4x3_rc1::IfcEventTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcEventTypeEnum::Value) Ifc4x3_rc1::IfcEventTypeEnum::IfcEventTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcEventTypeEnum::operator Ifc4x3_rc1::IfcEventTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcEventTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[438]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[438]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::IfcExternalSpatialElementTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::IfcExternalSpatialElementTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::IfcExternalSpatialElementTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::IfcExternalSpatialElementTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Value Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Value) Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::IfcExternalSpatialElementTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::operator Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[451]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[451]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::IfcFacilityPartCommonTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::IfcFacilityPartCommonTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::IfcFacilityPartCommonTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::IfcFacilityPartCommonTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::Value Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::Value) Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::IfcFacilityPartCommonTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::operator Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFacilityPartCommonTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFacilityUsageEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[453]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFacilityUsageEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[453]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFacilityUsageEnum::IfcFacilityUsageEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFacilityUsageEnum::IfcFacilityUsageEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFacilityUsageEnum::IfcFacilityUsageEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFacilityUsageEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFacilityUsageEnum::IfcFacilityUsageEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFacilityUsageEnum::Value Ifc4x3_rc1::IfcFacilityUsageEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFacilityUsageEnum::Value) Ifc4x3_rc1::IfcFacilityUsageEnum::IfcFacilityUsageEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFacilityUsageEnum::operator Ifc4x3_rc1::IfcFacilityUsageEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFacilityUsageEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFanTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[457]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFanTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[457]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFanTypeEnum::IfcFanTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFanTypeEnum::IfcFanTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFanTypeEnum::IfcFanTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFanTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFanTypeEnum::IfcFanTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFanTypeEnum::Value Ifc4x3_rc1::IfcFanTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFanTypeEnum::Value) Ifc4x3_rc1::IfcFanTypeEnum::IfcFanTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFanTypeEnum::operator Ifc4x3_rc1::IfcFanTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFanTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFastenerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[460]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFastenerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[460]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFastenerTypeEnum::IfcFastenerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFastenerTypeEnum::IfcFastenerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFastenerTypeEnum::IfcFastenerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFastenerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFastenerTypeEnum::IfcFastenerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFastenerTypeEnum::Value Ifc4x3_rc1::IfcFastenerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFastenerTypeEnum::Value) Ifc4x3_rc1::IfcFastenerTypeEnum::IfcFastenerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFastenerTypeEnum::operator Ifc4x3_rc1::IfcFastenerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFastenerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFilterTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[470]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFilterTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[470]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFilterTypeEnum::IfcFilterTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFilterTypeEnum::IfcFilterTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFilterTypeEnum::IfcFilterTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFilterTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFilterTypeEnum::IfcFilterTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFilterTypeEnum::Value Ifc4x3_rc1::IfcFilterTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFilterTypeEnum::Value) Ifc4x3_rc1::IfcFilterTypeEnum::IfcFilterTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFilterTypeEnum::operator Ifc4x3_rc1::IfcFilterTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFilterTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[473]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[473]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::IfcFireSuppressionTerminalTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::IfcFireSuppressionTerminalTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::IfcFireSuppressionTerminalTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::IfcFireSuppressionTerminalTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value) Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::IfcFireSuppressionTerminalTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::operator Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFlowDirectionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[477]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFlowDirectionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[477]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFlowDirectionEnum::IfcFlowDirectionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFlowDirectionEnum::IfcFlowDirectionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFlowDirectionEnum::IfcFlowDirectionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFlowDirectionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFlowDirectionEnum::IfcFlowDirectionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFlowDirectionEnum::Value Ifc4x3_rc1::IfcFlowDirectionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFlowDirectionEnum::Value) Ifc4x3_rc1::IfcFlowDirectionEnum::IfcFlowDirectionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFlowDirectionEnum::operator Ifc4x3_rc1::IfcFlowDirectionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFlowDirectionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[482]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[482]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::IfcFlowInstrumentTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::IfcFlowInstrumentTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::IfcFlowInstrumentTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::IfcFlowInstrumentTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value) Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::IfcFlowInstrumentTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::operator Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFlowMeterTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[485]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFlowMeterTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[485]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFlowMeterTypeEnum::IfcFlowMeterTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFlowMeterTypeEnum::IfcFlowMeterTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFlowMeterTypeEnum::IfcFlowMeterTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFlowMeterTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFlowMeterTypeEnum::IfcFlowMeterTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value Ifc4x3_rc1::IfcFlowMeterTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value) Ifc4x3_rc1::IfcFlowMeterTypeEnum::IfcFlowMeterTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFlowMeterTypeEnum::operator Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFootingTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[501]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFootingTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[501]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFootingTypeEnum::IfcFootingTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFootingTypeEnum::IfcFootingTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFootingTypeEnum::IfcFootingTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFootingTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFootingTypeEnum::IfcFootingTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFootingTypeEnum::Value Ifc4x3_rc1::IfcFootingTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFootingTypeEnum::Value) Ifc4x3_rc1::IfcFootingTypeEnum::IfcFootingTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFootingTypeEnum::operator Ifc4x3_rc1::IfcFootingTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFootingTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFurnitureTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[508]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcFurnitureTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[508]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcFurnitureTypeEnum::IfcFurnitureTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcFurnitureTypeEnum::IfcFurnitureTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFurnitureTypeEnum::IfcFurnitureTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcFurnitureTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcFurnitureTypeEnum::IfcFurnitureTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFurnitureTypeEnum::Value Ifc4x3_rc1::IfcFurnitureTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcFurnitureTypeEnum::Value) Ifc4x3_rc1::IfcFurnitureTypeEnum::IfcFurnitureTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcFurnitureTypeEnum::operator Ifc4x3_rc1::IfcFurnitureTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcFurnitureTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcGeographicElementTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[511]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcGeographicElementTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[511]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcGeographicElementTypeEnum::IfcGeographicElementTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcGeographicElementTypeEnum::IfcGeographicElementTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGeographicElementTypeEnum::IfcGeographicElementTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcGeographicElementTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcGeographicElementTypeEnum::IfcGeographicElementTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value Ifc4x3_rc1::IfcGeographicElementTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value) Ifc4x3_rc1::IfcGeographicElementTypeEnum::IfcGeographicElementTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGeographicElementTypeEnum::operator Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcGeometricProjectionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[513]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcGeometricProjectionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[513]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcGeometricProjectionEnum::IfcGeometricProjectionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcGeometricProjectionEnum::IfcGeometricProjectionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGeometricProjectionEnum::IfcGeometricProjectionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcGeometricProjectionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcGeometricProjectionEnum::IfcGeometricProjectionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGeometricProjectionEnum::Value Ifc4x3_rc1::IfcGeometricProjectionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcGeometricProjectionEnum::Value) Ifc4x3_rc1::IfcGeometricProjectionEnum::IfcGeometricProjectionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGeometricProjectionEnum::operator Ifc4x3_rc1::IfcGeometricProjectionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcGeometricProjectionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcGlobalOrLocalEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[525]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[525]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcGlobalOrLocalEnum::IfcGlobalOrLocalEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcGlobalOrLocalEnum::IfcGlobalOrLocalEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGlobalOrLocalEnum::IfcGlobalOrLocalEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcGlobalOrLocalEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcGlobalOrLocalEnum::IfcGlobalOrLocalEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value Ifc4x3_rc1::IfcGlobalOrLocalEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value) Ifc4x3_rc1::IfcGlobalOrLocalEnum::IfcGlobalOrLocalEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGlobalOrLocalEnum::operator Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcGridTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[530]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcGridTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[530]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcGridTypeEnum::IfcGridTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcGridTypeEnum::IfcGridTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGridTypeEnum::IfcGridTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcGridTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcGridTypeEnum::IfcGridTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGridTypeEnum::Value Ifc4x3_rc1::IfcGridTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcGridTypeEnum::Value) Ifc4x3_rc1::IfcGridTypeEnum::IfcGridTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcGridTypeEnum::operator Ifc4x3_rc1::IfcGridTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcGridTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcHeatExchangerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[536]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[536]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcHeatExchangerTypeEnum::IfcHeatExchangerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcHeatExchangerTypeEnum::IfcHeatExchangerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcHeatExchangerTypeEnum::IfcHeatExchangerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcHeatExchangerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcHeatExchangerTypeEnum::IfcHeatExchangerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value Ifc4x3_rc1::IfcHeatExchangerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value) Ifc4x3_rc1::IfcHeatExchangerTypeEnum::IfcHeatExchangerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcHeatExchangerTypeEnum::operator Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcHumidifierTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[541]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcHumidifierTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[541]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcHumidifierTypeEnum::IfcHumidifierTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcHumidifierTypeEnum::IfcHumidifierTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcHumidifierTypeEnum::IfcHumidifierTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcHumidifierTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcHumidifierTypeEnum::IfcHumidifierTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcHumidifierTypeEnum::Value Ifc4x3_rc1::IfcHumidifierTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcHumidifierTypeEnum::Value) Ifc4x3_rc1::IfcHumidifierTypeEnum::IfcHumidifierTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcHumidifierTypeEnum::operator Ifc4x3_rc1::IfcHumidifierTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcHumidifierTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[547]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[547]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::IfcImpactProtectionDeviceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::IfcImpactProtectionDeviceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::IfcImpactProtectionDeviceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::IfcImpactProtectionDeviceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::Value Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::Value) Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::IfcImpactProtectionDeviceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::operator Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcImpactProtectionDeviceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcInterceptorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[561]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcInterceptorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[561]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcInterceptorTypeEnum::IfcInterceptorTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcInterceptorTypeEnum::IfcInterceptorTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcInterceptorTypeEnum::IfcInterceptorTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcInterceptorTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcInterceptorTypeEnum::IfcInterceptorTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcInterceptorTypeEnum::Value Ifc4x3_rc1::IfcInterceptorTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcInterceptorTypeEnum::Value) Ifc4x3_rc1::IfcInterceptorTypeEnum::IfcInterceptorTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcInterceptorTypeEnum::operator Ifc4x3_rc1::IfcInterceptorTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcInterceptorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcInternalOrExternalEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[563]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcInternalOrExternalEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[563]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcInternalOrExternalEnum::IfcInternalOrExternalEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcInternalOrExternalEnum::IfcInternalOrExternalEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcInternalOrExternalEnum::IfcInternalOrExternalEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcInternalOrExternalEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcInternalOrExternalEnum::IfcInternalOrExternalEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcInternalOrExternalEnum::Value Ifc4x3_rc1::IfcInternalOrExternalEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcInternalOrExternalEnum::Value) Ifc4x3_rc1::IfcInternalOrExternalEnum::IfcInternalOrExternalEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcInternalOrExternalEnum::operator Ifc4x3_rc1::IfcInternalOrExternalEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcInternalOrExternalEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcInventoryTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[566]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcInventoryTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[566]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcInventoryTypeEnum::IfcInventoryTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcInventoryTypeEnum::IfcInventoryTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcInventoryTypeEnum::IfcInventoryTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcInventoryTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcInventoryTypeEnum::IfcInventoryTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcInventoryTypeEnum::Value Ifc4x3_rc1::IfcInventoryTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcInventoryTypeEnum::Value) Ifc4x3_rc1::IfcInventoryTypeEnum::IfcInventoryTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcInventoryTypeEnum::operator Ifc4x3_rc1::IfcInventoryTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcInventoryTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcJunctionBoxTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[574]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[574]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcJunctionBoxTypeEnum::IfcJunctionBoxTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcJunctionBoxTypeEnum::IfcJunctionBoxTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcJunctionBoxTypeEnum::IfcJunctionBoxTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcJunctionBoxTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcJunctionBoxTypeEnum::IfcJunctionBoxTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value Ifc4x3_rc1::IfcJunctionBoxTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value) Ifc4x3_rc1::IfcJunctionBoxTypeEnum::IfcJunctionBoxTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcJunctionBoxTypeEnum::operator Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcKnotType::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[578]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcKnotType::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[578]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcKnotType::IfcKnotType(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcKnotType::IfcKnotType(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcKnotType::IfcKnotType(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcKnotType::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcKnotType::IfcKnotType::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcKnotType::Value Ifc4x3_rc1::IfcKnotType::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcKnotType::Value) Ifc4x3_rc1::IfcKnotType::IfcKnotType::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcKnotType::operator Ifc4x3_rc1::IfcKnotType::Value() const {
|
|
return (Ifc4x3_rc1::IfcKnotType::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLaborResourceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[582]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLaborResourceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[582]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcLaborResourceTypeEnum::IfcLaborResourceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcLaborResourceTypeEnum::IfcLaborResourceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLaborResourceTypeEnum::IfcLaborResourceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcLaborResourceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcLaborResourceTypeEnum::IfcLaborResourceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value Ifc4x3_rc1::IfcLaborResourceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value) Ifc4x3_rc1::IfcLaborResourceTypeEnum::IfcLaborResourceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLaborResourceTypeEnum::operator Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLampTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[586]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLampTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[586]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcLampTypeEnum::IfcLampTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcLampTypeEnum::IfcLampTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLampTypeEnum::IfcLampTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcLampTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcLampTypeEnum::IfcLampTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLampTypeEnum::Value Ifc4x3_rc1::IfcLampTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcLampTypeEnum::Value) Ifc4x3_rc1::IfcLampTypeEnum::IfcLampTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLampTypeEnum::operator Ifc4x3_rc1::IfcLampTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcLampTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLayerSetDirectionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[589]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLayerSetDirectionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[589]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcLayerSetDirectionEnum::IfcLayerSetDirectionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcLayerSetDirectionEnum::IfcLayerSetDirectionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLayerSetDirectionEnum::IfcLayerSetDirectionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcLayerSetDirectionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcLayerSetDirectionEnum::IfcLayerSetDirectionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value Ifc4x3_rc1::IfcLayerSetDirectionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value) Ifc4x3_rc1::IfcLayerSetDirectionEnum::IfcLayerSetDirectionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLayerSetDirectionEnum::operator Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLightDistributionCurveEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[594]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLightDistributionCurveEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[594]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcLightDistributionCurveEnum::IfcLightDistributionCurveEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcLightDistributionCurveEnum::IfcLightDistributionCurveEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLightDistributionCurveEnum::IfcLightDistributionCurveEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcLightDistributionCurveEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcLightDistributionCurveEnum::IfcLightDistributionCurveEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLightDistributionCurveEnum::Value Ifc4x3_rc1::IfcLightDistributionCurveEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcLightDistributionCurveEnum::Value) Ifc4x3_rc1::IfcLightDistributionCurveEnum::IfcLightDistributionCurveEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLightDistributionCurveEnum::operator Ifc4x3_rc1::IfcLightDistributionCurveEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcLightDistributionCurveEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLightEmissionSourceEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[597]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLightEmissionSourceEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[597]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcLightEmissionSourceEnum::IfcLightEmissionSourceEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcLightEmissionSourceEnum::IfcLightEmissionSourceEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLightEmissionSourceEnum::IfcLightEmissionSourceEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcLightEmissionSourceEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcLightEmissionSourceEnum::IfcLightEmissionSourceEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLightEmissionSourceEnum::Value Ifc4x3_rc1::IfcLightEmissionSourceEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcLightEmissionSourceEnum::Value) Ifc4x3_rc1::IfcLightEmissionSourceEnum::IfcLightEmissionSourceEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLightEmissionSourceEnum::operator Ifc4x3_rc1::IfcLightEmissionSourceEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcLightEmissionSourceEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLightFixtureTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[600]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLightFixtureTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[600]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcLightFixtureTypeEnum::IfcLightFixtureTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcLightFixtureTypeEnum::IfcLightFixtureTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLightFixtureTypeEnum::IfcLightFixtureTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcLightFixtureTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcLightFixtureTypeEnum::IfcLightFixtureTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value Ifc4x3_rc1::IfcLightFixtureTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value) Ifc4x3_rc1::IfcLightFixtureTypeEnum::IfcLightFixtureTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLightFixtureTypeEnum::operator Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[623]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[623]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::IfcLiquidTerminalTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::IfcLiquidTerminalTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::IfcLiquidTerminalTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::IfcLiquidTerminalTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value) Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::IfcLiquidTerminalTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::operator Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLoadGroupTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[624]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLoadGroupTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[624]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcLoadGroupTypeEnum::IfcLoadGroupTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcLoadGroupTypeEnum::IfcLoadGroupTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLoadGroupTypeEnum::IfcLoadGroupTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcLoadGroupTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcLoadGroupTypeEnum::IfcLoadGroupTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLoadGroupTypeEnum::Value Ifc4x3_rc1::IfcLoadGroupTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcLoadGroupTypeEnum::Value) Ifc4x3_rc1::IfcLoadGroupTypeEnum::IfcLoadGroupTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLoadGroupTypeEnum::operator Ifc4x3_rc1::IfcLoadGroupTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcLoadGroupTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLogicalOperatorEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[627]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcLogicalOperatorEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[627]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcLogicalOperatorEnum::IfcLogicalOperatorEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcLogicalOperatorEnum::IfcLogicalOperatorEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLogicalOperatorEnum::IfcLogicalOperatorEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcLogicalOperatorEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcLogicalOperatorEnum::IfcLogicalOperatorEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLogicalOperatorEnum::Value Ifc4x3_rc1::IfcLogicalOperatorEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcLogicalOperatorEnum::Value) Ifc4x3_rc1::IfcLogicalOperatorEnum::IfcLogicalOperatorEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcLogicalOperatorEnum::operator Ifc4x3_rc1::IfcLogicalOperatorEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcLogicalOperatorEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMarineFacilityTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[639]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[639]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcMarineFacilityTypeEnum::IfcMarineFacilityTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcMarineFacilityTypeEnum::IfcMarineFacilityTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMarineFacilityTypeEnum::IfcMarineFacilityTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcMarineFacilityTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcMarineFacilityTypeEnum::IfcMarineFacilityTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Value Ifc4x3_rc1::IfcMarineFacilityTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Value) Ifc4x3_rc1::IfcMarineFacilityTypeEnum::IfcMarineFacilityTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMarineFacilityTypeEnum::operator Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMarinePartTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[640]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMarinePartTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[640]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcMarinePartTypeEnum::IfcMarinePartTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcMarinePartTypeEnum::IfcMarinePartTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMarinePartTypeEnum::IfcMarinePartTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcMarinePartTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcMarinePartTypeEnum::IfcMarinePartTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMarinePartTypeEnum::Value Ifc4x3_rc1::IfcMarinePartTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcMarinePartTypeEnum::Value) Ifc4x3_rc1::IfcMarinePartTypeEnum::IfcMarinePartTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMarinePartTypeEnum::operator Ifc4x3_rc1::IfcMarinePartTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcMarinePartTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[669]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[669]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::IfcMechanicalFastenerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::IfcMechanicalFastenerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::IfcMechanicalFastenerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::IfcMechanicalFastenerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value) Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::IfcMechanicalFastenerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::operator Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[672]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[672]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::IfcMedicalDeviceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::IfcMedicalDeviceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::IfcMedicalDeviceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::IfcMedicalDeviceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value) Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::IfcMedicalDeviceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::operator Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMemberTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[676]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMemberTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[676]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcMemberTypeEnum::IfcMemberTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcMemberTypeEnum::IfcMemberTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMemberTypeEnum::IfcMemberTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcMemberTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcMemberTypeEnum::IfcMemberTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMemberTypeEnum::Value Ifc4x3_rc1::IfcMemberTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcMemberTypeEnum::Value) Ifc4x3_rc1::IfcMemberTypeEnum::IfcMemberTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMemberTypeEnum::operator Ifc4x3_rc1::IfcMemberTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcMemberTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[682]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[682]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::IfcMobileTelecommunicationsApplianceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::IfcMobileTelecommunicationsApplianceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::IfcMobileTelecommunicationsApplianceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::IfcMobileTelecommunicationsApplianceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value) Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::IfcMobileTelecommunicationsApplianceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::operator Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMooringDeviceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[698]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[698]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcMooringDeviceTypeEnum::IfcMooringDeviceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcMooringDeviceTypeEnum::IfcMooringDeviceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMooringDeviceTypeEnum::IfcMooringDeviceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcMooringDeviceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcMooringDeviceTypeEnum::IfcMooringDeviceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value Ifc4x3_rc1::IfcMooringDeviceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value) Ifc4x3_rc1::IfcMooringDeviceTypeEnum::IfcMooringDeviceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMooringDeviceTypeEnum::operator Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMotorConnectionTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[701]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[701]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcMotorConnectionTypeEnum::IfcMotorConnectionTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcMotorConnectionTypeEnum::IfcMotorConnectionTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMotorConnectionTypeEnum::IfcMotorConnectionTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcMotorConnectionTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcMotorConnectionTypeEnum::IfcMotorConnectionTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value Ifc4x3_rc1::IfcMotorConnectionTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value) Ifc4x3_rc1::IfcMotorConnectionTypeEnum::IfcMotorConnectionTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcMotorConnectionTypeEnum::operator Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcNavigationElementTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[705]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcNavigationElementTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[705]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcNavigationElementTypeEnum::IfcNavigationElementTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcNavigationElementTypeEnum::IfcNavigationElementTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcNavigationElementTypeEnum::IfcNavigationElementTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcNavigationElementTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcNavigationElementTypeEnum::IfcNavigationElementTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value Ifc4x3_rc1::IfcNavigationElementTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value) Ifc4x3_rc1::IfcNavigationElementTypeEnum::IfcNavigationElementTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcNavigationElementTypeEnum::operator Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcNullStyle::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[708]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcNullStyle::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[708]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcNullStyle::IfcNullStyle(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcNullStyle::IfcNullStyle(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcNullStyle::IfcNullStyle(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcNullStyle::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcNullStyle::IfcNullStyle::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcNullStyle::Value Ifc4x3_rc1::IfcNullStyle::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcNullStyle::Value) Ifc4x3_rc1::IfcNullStyle::IfcNullStyle::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcNullStyle::operator Ifc4x3_rc1::IfcNullStyle::Value() const {
|
|
return (Ifc4x3_rc1::IfcNullStyle::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcObjectTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[716]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcObjectTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[716]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcObjectTypeEnum::IfcObjectTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcObjectTypeEnum::IfcObjectTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcObjectTypeEnum::IfcObjectTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcObjectTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcObjectTypeEnum::IfcObjectTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcObjectTypeEnum::Value Ifc4x3_rc1::IfcObjectTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcObjectTypeEnum::Value) Ifc4x3_rc1::IfcObjectTypeEnum::IfcObjectTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcObjectTypeEnum::operator Ifc4x3_rc1::IfcObjectTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcObjectTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcObjectiveEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[713]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcObjectiveEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[713]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcObjectiveEnum::IfcObjectiveEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcObjectiveEnum::IfcObjectiveEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcObjectiveEnum::IfcObjectiveEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcObjectiveEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcObjectiveEnum::IfcObjectiveEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcObjectiveEnum::Value Ifc4x3_rc1::IfcObjectiveEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcObjectiveEnum::Value) Ifc4x3_rc1::IfcObjectiveEnum::IfcObjectiveEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcObjectiveEnum::operator Ifc4x3_rc1::IfcObjectiveEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcObjectiveEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcOccupantTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[718]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcOccupantTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[718]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcOccupantTypeEnum::IfcOccupantTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcOccupantTypeEnum::IfcOccupantTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcOccupantTypeEnum::IfcOccupantTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcOccupantTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcOccupantTypeEnum::IfcOccupantTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcOccupantTypeEnum::Value Ifc4x3_rc1::IfcOccupantTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcOccupantTypeEnum::Value) Ifc4x3_rc1::IfcOccupantTypeEnum::IfcOccupantTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcOccupantTypeEnum::operator Ifc4x3_rc1::IfcOccupantTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcOccupantTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcOpeningElementTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[725]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcOpeningElementTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[725]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcOpeningElementTypeEnum::IfcOpeningElementTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcOpeningElementTypeEnum::IfcOpeningElementTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcOpeningElementTypeEnum::IfcOpeningElementTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcOpeningElementTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcOpeningElementTypeEnum::IfcOpeningElementTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcOpeningElementTypeEnum::Value Ifc4x3_rc1::IfcOpeningElementTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcOpeningElementTypeEnum::Value) Ifc4x3_rc1::IfcOpeningElementTypeEnum::IfcOpeningElementTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcOpeningElementTypeEnum::operator Ifc4x3_rc1::IfcOpeningElementTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcOpeningElementTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcOutletTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[735]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcOutletTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[735]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcOutletTypeEnum::IfcOutletTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcOutletTypeEnum::IfcOutletTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcOutletTypeEnum::IfcOutletTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcOutletTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcOutletTypeEnum::IfcOutletTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcOutletTypeEnum::Value Ifc4x3_rc1::IfcOutletTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcOutletTypeEnum::Value) Ifc4x3_rc1::IfcOutletTypeEnum::IfcOutletTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcOutletTypeEnum::operator Ifc4x3_rc1::IfcOutletTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcOutletTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[744]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[744]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::IfcPerformanceHistoryTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::IfcPerformanceHistoryTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::IfcPerformanceHistoryTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::IfcPerformanceHistoryTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Value Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Value) Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::IfcPerformanceHistoryTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::operator Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[745]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[745]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::IfcPermeableCoveringOperationEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::IfcPermeableCoveringOperationEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::IfcPermeableCoveringOperationEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::IfcPermeableCoveringOperationEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Value Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Value) Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::IfcPermeableCoveringOperationEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::operator Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPermitTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[748]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPermitTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[748]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPermitTypeEnum::IfcPermitTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPermitTypeEnum::IfcPermitTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPermitTypeEnum::IfcPermitTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPermitTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPermitTypeEnum::IfcPermitTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPermitTypeEnum::Value Ifc4x3_rc1::IfcPermitTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPermitTypeEnum::Value) Ifc4x3_rc1::IfcPermitTypeEnum::IfcPermitTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPermitTypeEnum::operator Ifc4x3_rc1::IfcPermitTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPermitTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[753]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[753]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::IfcPhysicalOrVirtualEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::IfcPhysicalOrVirtualEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::IfcPhysicalOrVirtualEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::IfcPhysicalOrVirtualEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Value Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Value) Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::IfcPhysicalOrVirtualEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::operator Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPileConstructionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[757]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPileConstructionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[757]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPileConstructionEnum::IfcPileConstructionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPileConstructionEnum::IfcPileConstructionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPileConstructionEnum::IfcPileConstructionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPileConstructionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPileConstructionEnum::IfcPileConstructionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPileConstructionEnum::Value Ifc4x3_rc1::IfcPileConstructionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPileConstructionEnum::Value) Ifc4x3_rc1::IfcPileConstructionEnum::IfcPileConstructionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPileConstructionEnum::operator Ifc4x3_rc1::IfcPileConstructionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPileConstructionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPileTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[759]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPileTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[759]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPileTypeEnum::IfcPileTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPileTypeEnum::IfcPileTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPileTypeEnum::IfcPileTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPileTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPileTypeEnum::IfcPileTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPileTypeEnum::Value Ifc4x3_rc1::IfcPileTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPileTypeEnum::Value) Ifc4x3_rc1::IfcPileTypeEnum::IfcPileTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPileTypeEnum::operator Ifc4x3_rc1::IfcPileTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPileTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPipeFittingTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[762]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPipeFittingTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[762]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPipeFittingTypeEnum::IfcPipeFittingTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPipeFittingTypeEnum::IfcPipeFittingTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPipeFittingTypeEnum::IfcPipeFittingTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPipeFittingTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPipeFittingTypeEnum::IfcPipeFittingTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value Ifc4x3_rc1::IfcPipeFittingTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value) Ifc4x3_rc1::IfcPipeFittingTypeEnum::IfcPipeFittingTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPipeFittingTypeEnum::operator Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPipeSegmentTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[765]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[765]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPipeSegmentTypeEnum::IfcPipeSegmentTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPipeSegmentTypeEnum::IfcPipeSegmentTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPipeSegmentTypeEnum::IfcPipeSegmentTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPipeSegmentTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPipeSegmentTypeEnum::IfcPipeSegmentTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value Ifc4x3_rc1::IfcPipeSegmentTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value) Ifc4x3_rc1::IfcPipeSegmentTypeEnum::IfcPipeSegmentTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPipeSegmentTypeEnum::operator Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPlateTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[777]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPlateTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[777]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPlateTypeEnum::IfcPlateTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPlateTypeEnum::IfcPlateTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPlateTypeEnum::IfcPlateTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPlateTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPlateTypeEnum::IfcPlateTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPlateTypeEnum::Value Ifc4x3_rc1::IfcPlateTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPlateTypeEnum::Value) Ifc4x3_rc1::IfcPlateTypeEnum::IfcPlateTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPlateTypeEnum::operator Ifc4x3_rc1::IfcPlateTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPlateTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[800]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[800]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::IfcPreferredSurfaceCurveRepresentation(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::IfcPreferredSurfaceCurveRepresentation(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::IfcPreferredSurfaceCurveRepresentation(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::IfcPreferredSurfaceCurveRepresentation::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Value Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Value) Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::IfcPreferredSurfaceCurveRepresentation::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::operator Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Value() const {
|
|
return (Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProcedureTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[811]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProcedureTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[811]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcProcedureTypeEnum::IfcProcedureTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcProcedureTypeEnum::IfcProcedureTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProcedureTypeEnum::IfcProcedureTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcProcedureTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcProcedureTypeEnum::IfcProcedureTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProcedureTypeEnum::Value Ifc4x3_rc1::IfcProcedureTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcProcedureTypeEnum::Value) Ifc4x3_rc1::IfcProcedureTypeEnum::IfcProcedureTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProcedureTypeEnum::operator Ifc4x3_rc1::IfcProcedureTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcProcedureTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProfileTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[821]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProfileTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[821]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcProfileTypeEnum::IfcProfileTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcProfileTypeEnum::IfcProfileTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProfileTypeEnum::IfcProfileTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcProfileTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcProfileTypeEnum::IfcProfileTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProfileTypeEnum::Value Ifc4x3_rc1::IfcProfileTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcProfileTypeEnum::Value) Ifc4x3_rc1::IfcProfileTypeEnum::IfcProfileTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProfileTypeEnum::operator Ifc4x3_rc1::IfcProfileTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcProfileTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProjectOrderTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[829]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProjectOrderTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[829]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcProjectOrderTypeEnum::IfcProjectOrderTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcProjectOrderTypeEnum::IfcProjectOrderTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProjectOrderTypeEnum::IfcProjectOrderTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcProjectOrderTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcProjectOrderTypeEnum::IfcProjectOrderTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProjectOrderTypeEnum::Value Ifc4x3_rc1::IfcProjectOrderTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcProjectOrderTypeEnum::Value) Ifc4x3_rc1::IfcProjectOrderTypeEnum::IfcProjectOrderTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProjectOrderTypeEnum::operator Ifc4x3_rc1::IfcProjectOrderTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcProjectOrderTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[824]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[824]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::IfcProjectedOrTrueLengthEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::IfcProjectedOrTrueLengthEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::IfcProjectedOrTrueLengthEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::IfcProjectedOrTrueLengthEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value) Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::IfcProjectedOrTrueLengthEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::operator Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProjectionElementTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[826]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProjectionElementTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[826]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcProjectionElementTypeEnum::IfcProjectionElementTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcProjectionElementTypeEnum::IfcProjectionElementTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProjectionElementTypeEnum::IfcProjectionElementTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcProjectionElementTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcProjectionElementTypeEnum::IfcProjectionElementTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProjectionElementTypeEnum::Value Ifc4x3_rc1::IfcProjectionElementTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcProjectionElementTypeEnum::Value) Ifc4x3_rc1::IfcProjectionElementTypeEnum::IfcProjectionElementTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProjectionElementTypeEnum::operator Ifc4x3_rc1::IfcProjectionElementTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcProjectionElementTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[844]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[844]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::IfcPropertySetTemplateTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::IfcPropertySetTemplateTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::IfcPropertySetTemplateTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::IfcPropertySetTemplateTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Value Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Value) Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::IfcPropertySetTemplateTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::operator Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[852]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[852]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::IfcProtectiveDeviceTrippingUnitTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::IfcProtectiveDeviceTrippingUnitTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::IfcProtectiveDeviceTrippingUnitTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::IfcProtectiveDeviceTrippingUnitTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value) Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::IfcProtectiveDeviceTrippingUnitTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::operator Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[854]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[854]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::IfcProtectiveDeviceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::IfcProtectiveDeviceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::IfcProtectiveDeviceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::IfcProtectiveDeviceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value) Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::IfcProtectiveDeviceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::operator Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPumpTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[858]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcPumpTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[858]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcPumpTypeEnum::IfcPumpTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcPumpTypeEnum::IfcPumpTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPumpTypeEnum::IfcPumpTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcPumpTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcPumpTypeEnum::IfcPumpTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPumpTypeEnum::Value Ifc4x3_rc1::IfcPumpTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcPumpTypeEnum::Value) Ifc4x3_rc1::IfcPumpTypeEnum::IfcPumpTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcPumpTypeEnum::operator Ifc4x3_rc1::IfcPumpTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcPumpTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRailTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[872]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRailTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[872]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcRailTypeEnum::IfcRailTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcRailTypeEnum::IfcRailTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRailTypeEnum::IfcRailTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcRailTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcRailTypeEnum::IfcRailTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRailTypeEnum::Value Ifc4x3_rc1::IfcRailTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcRailTypeEnum::Value) Ifc4x3_rc1::IfcRailTypeEnum::IfcRailTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRailTypeEnum::operator Ifc4x3_rc1::IfcRailTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcRailTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRailingTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[870]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRailingTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[870]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcRailingTypeEnum::IfcRailingTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcRailingTypeEnum::IfcRailingTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRailingTypeEnum::IfcRailingTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcRailingTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcRailingTypeEnum::IfcRailingTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRailingTypeEnum::Value Ifc4x3_rc1::IfcRailingTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcRailingTypeEnum::Value) Ifc4x3_rc1::IfcRailingTypeEnum::IfcRailingTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRailingTypeEnum::operator Ifc4x3_rc1::IfcRailingTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcRailingTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRailwayPartTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[874]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRailwayPartTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[874]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcRailwayPartTypeEnum::IfcRailwayPartTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcRailwayPartTypeEnum::IfcRailwayPartTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRailwayPartTypeEnum::IfcRailwayPartTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcRailwayPartTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcRailwayPartTypeEnum::IfcRailwayPartTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRailwayPartTypeEnum::Value Ifc4x3_rc1::IfcRailwayPartTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcRailwayPartTypeEnum::Value) Ifc4x3_rc1::IfcRailwayPartTypeEnum::IfcRailwayPartTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRailwayPartTypeEnum::operator Ifc4x3_rc1::IfcRailwayPartTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcRailwayPartTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRampFlightTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[878]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRampFlightTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[878]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcRampFlightTypeEnum::IfcRampFlightTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcRampFlightTypeEnum::IfcRampFlightTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRampFlightTypeEnum::IfcRampFlightTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcRampFlightTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcRampFlightTypeEnum::IfcRampFlightTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRampFlightTypeEnum::Value Ifc4x3_rc1::IfcRampFlightTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcRampFlightTypeEnum::Value) Ifc4x3_rc1::IfcRampFlightTypeEnum::IfcRampFlightTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRampFlightTypeEnum::operator Ifc4x3_rc1::IfcRampFlightTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcRampFlightTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRampTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[880]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRampTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[880]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcRampTypeEnum::IfcRampTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcRampTypeEnum::IfcRampTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRampTypeEnum::IfcRampTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcRampTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcRampTypeEnum::IfcRampTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRampTypeEnum::Value Ifc4x3_rc1::IfcRampTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcRampTypeEnum::Value) Ifc4x3_rc1::IfcRampTypeEnum::IfcRampTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRampTypeEnum::operator Ifc4x3_rc1::IfcRampTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcRampTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRecurrenceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[890]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRecurrenceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[890]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcRecurrenceTypeEnum::IfcRecurrenceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcRecurrenceTypeEnum::IfcRecurrenceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRecurrenceTypeEnum::IfcRecurrenceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcRecurrenceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcRecurrenceTypeEnum::IfcRecurrenceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRecurrenceTypeEnum::Value Ifc4x3_rc1::IfcRecurrenceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcRecurrenceTypeEnum::Value) Ifc4x3_rc1::IfcRecurrenceTypeEnum::IfcRecurrenceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRecurrenceTypeEnum::operator Ifc4x3_rc1::IfcRecurrenceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcRecurrenceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReferentTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[893]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReferentTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[893]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcReferentTypeEnum::IfcReferentTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcReferentTypeEnum::IfcReferentTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReferentTypeEnum::IfcReferentTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcReferentTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcReferentTypeEnum::IfcReferentTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReferentTypeEnum::Value Ifc4x3_rc1::IfcReferentTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcReferentTypeEnum::Value) Ifc4x3_rc1::IfcReferentTypeEnum::IfcReferentTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReferentTypeEnum::operator Ifc4x3_rc1::IfcReferentTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcReferentTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReflectanceMethodEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[894]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReflectanceMethodEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[894]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcReflectanceMethodEnum::IfcReflectanceMethodEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcReflectanceMethodEnum::IfcReflectanceMethodEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReflectanceMethodEnum::IfcReflectanceMethodEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcReflectanceMethodEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcReflectanceMethodEnum::IfcReflectanceMethodEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReflectanceMethodEnum::Value Ifc4x3_rc1::IfcReflectanceMethodEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcReflectanceMethodEnum::Value) Ifc4x3_rc1::IfcReflectanceMethodEnum::IfcReflectanceMethodEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReflectanceMethodEnum::operator Ifc4x3_rc1::IfcReflectanceMethodEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcReflectanceMethodEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[897]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[897]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::IfcReinforcedSoilTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::IfcReinforcedSoilTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::IfcReinforcedSoilTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::IfcReinforcedSoilTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Value Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Value) Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::IfcReinforcedSoilTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::operator Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcingBarRoleEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[901]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[901]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcReinforcingBarRoleEnum::IfcReinforcingBarRoleEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarRoleEnum::IfcReinforcingBarRoleEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarRoleEnum::IfcReinforcingBarRoleEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcReinforcingBarRoleEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcReinforcingBarRoleEnum::IfcReinforcingBarRoleEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Value Ifc4x3_rc1::IfcReinforcingBarRoleEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Value) Ifc4x3_rc1::IfcReinforcingBarRoleEnum::IfcReinforcingBarRoleEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarRoleEnum::operator Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[902]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[902]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::IfcReinforcingBarSurfaceEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::IfcReinforcingBarSurfaceEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::IfcReinforcingBarSurfaceEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::IfcReinforcingBarSurfaceEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value) Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::IfcReinforcingBarSurfaceEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::operator Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcingBarTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[904]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[904]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcReinforcingBarTypeEnum::IfcReinforcingBarTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarTypeEnum::IfcReinforcingBarTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarTypeEnum::IfcReinforcingBarTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcReinforcingBarTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcReinforcingBarTypeEnum::IfcReinforcingBarTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value Ifc4x3_rc1::IfcReinforcingBarTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value) Ifc4x3_rc1::IfcReinforcingBarTypeEnum::IfcReinforcingBarTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingBarTypeEnum::operator Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[909]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[909]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::IfcReinforcingMeshTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::IfcReinforcingMeshTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::IfcReinforcingMeshTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::IfcReinforcingMeshTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value) Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::IfcReinforcingMeshTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::operator Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRoadPartTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[977]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRoadPartTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[977]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcRoadPartTypeEnum::IfcRoadPartTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcRoadPartTypeEnum::IfcRoadPartTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRoadPartTypeEnum::IfcRoadPartTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcRoadPartTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcRoadPartTypeEnum::IfcRoadPartTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRoadPartTypeEnum::Value Ifc4x3_rc1::IfcRoadPartTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcRoadPartTypeEnum::Value) Ifc4x3_rc1::IfcRoadPartTypeEnum::IfcRoadPartTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRoadPartTypeEnum::operator Ifc4x3_rc1::IfcRoadPartTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcRoadPartTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRoleEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[978]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRoleEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[978]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcRoleEnum::IfcRoleEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcRoleEnum::IfcRoleEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRoleEnum::IfcRoleEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcRoleEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcRoleEnum::IfcRoleEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRoleEnum::Value Ifc4x3_rc1::IfcRoleEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcRoleEnum::Value) Ifc4x3_rc1::IfcRoleEnum::IfcRoleEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRoleEnum::operator Ifc4x3_rc1::IfcRoleEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcRoleEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRoofTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[981]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcRoofTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[981]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcRoofTypeEnum::IfcRoofTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcRoofTypeEnum::IfcRoofTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRoofTypeEnum::IfcRoofTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcRoofTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcRoofTypeEnum::IfcRoofTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRoofTypeEnum::Value Ifc4x3_rc1::IfcRoofTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcRoofTypeEnum::Value) Ifc4x3_rc1::IfcRoofTypeEnum::IfcRoofTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcRoofTypeEnum::operator Ifc4x3_rc1::IfcRoofTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcRoofTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSIPrefix::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1026]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSIPrefix::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1026]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSIPrefix::IfcSIPrefix(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSIPrefix::IfcSIPrefix(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSIPrefix::IfcSIPrefix(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSIPrefix::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSIPrefix::IfcSIPrefix::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSIPrefix::Value Ifc4x3_rc1::IfcSIPrefix::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSIPrefix::Value) Ifc4x3_rc1::IfcSIPrefix::IfcSIPrefix::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSIPrefix::operator Ifc4x3_rc1::IfcSIPrefix::Value() const {
|
|
return (Ifc4x3_rc1::IfcSIPrefix::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSIUnitName::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1029]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSIUnitName::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1029]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSIUnitName::IfcSIUnitName(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSIUnitName::IfcSIUnitName(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSIUnitName::IfcSIUnitName(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSIUnitName::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSIUnitName::IfcSIUnitName::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSIUnitName::Value Ifc4x3_rc1::IfcSIUnitName::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSIUnitName::Value) Ifc4x3_rc1::IfcSIUnitName::IfcSIUnitName::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSIUnitName::operator Ifc4x3_rc1::IfcSIUnitName::Value() const {
|
|
return (Ifc4x3_rc1::IfcSIUnitName::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[990]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[990]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::IfcSanitaryTerminalTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::IfcSanitaryTerminalTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::IfcSanitaryTerminalTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::IfcSanitaryTerminalTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value) Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::IfcSanitaryTerminalTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::operator Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSectionTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1001]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSectionTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1001]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSectionTypeEnum::IfcSectionTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSectionTypeEnum::IfcSectionTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSectionTypeEnum::IfcSectionTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSectionTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSectionTypeEnum::IfcSectionTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSectionTypeEnum::Value Ifc4x3_rc1::IfcSectionTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSectionTypeEnum::Value) Ifc4x3_rc1::IfcSectionTypeEnum::IfcSectionTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSectionTypeEnum::operator Ifc4x3_rc1::IfcSectionTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSectionTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSensorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1005]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSensorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1005]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSensorTypeEnum::IfcSensorTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSensorTypeEnum::IfcSensorTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSensorTypeEnum::IfcSensorTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSensorTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSensorTypeEnum::IfcSensorTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSensorTypeEnum::Value Ifc4x3_rc1::IfcSensorTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSensorTypeEnum::Value) Ifc4x3_rc1::IfcSensorTypeEnum::IfcSensorTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSensorTypeEnum::operator Ifc4x3_rc1::IfcSensorTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSensorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSequenceEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1006]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSequenceEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1006]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSequenceEnum::IfcSequenceEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSequenceEnum::IfcSequenceEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSequenceEnum::IfcSequenceEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSequenceEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSequenceEnum::IfcSequenceEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSequenceEnum::Value Ifc4x3_rc1::IfcSequenceEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSequenceEnum::Value) Ifc4x3_rc1::IfcSequenceEnum::IfcSequenceEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSequenceEnum::operator Ifc4x3_rc1::IfcSequenceEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSequenceEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcShadingDeviceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1009]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1009]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcShadingDeviceTypeEnum::IfcShadingDeviceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcShadingDeviceTypeEnum::IfcShadingDeviceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcShadingDeviceTypeEnum::IfcShadingDeviceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcShadingDeviceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcShadingDeviceTypeEnum::IfcShadingDeviceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value Ifc4x3_rc1::IfcShadingDeviceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value) Ifc4x3_rc1::IfcShadingDeviceTypeEnum::IfcShadingDeviceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcShadingDeviceTypeEnum::operator Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSignTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1021]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSignTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1021]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSignTypeEnum::IfcSignTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSignTypeEnum::IfcSignTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSignTypeEnum::IfcSignTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSignTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSignTypeEnum::IfcSignTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSignTypeEnum::Value Ifc4x3_rc1::IfcSignTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSignTypeEnum::Value) Ifc4x3_rc1::IfcSignTypeEnum::IfcSignTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSignTypeEnum::operator Ifc4x3_rc1::IfcSignTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSignTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSignalTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1019]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSignalTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1019]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSignalTypeEnum::IfcSignalTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSignalTypeEnum::IfcSignalTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSignalTypeEnum::IfcSignalTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSignalTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSignalTypeEnum::IfcSignalTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSignalTypeEnum::Value Ifc4x3_rc1::IfcSignalTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSignalTypeEnum::Value) Ifc4x3_rc1::IfcSignalTypeEnum::IfcSignalTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSignalTypeEnum::operator Ifc4x3_rc1::IfcSignalTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSignalTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1024]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1024]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::IfcSimplePropertyTemplateTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::IfcSimplePropertyTemplateTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::IfcSimplePropertyTemplateTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::IfcSimplePropertyTemplateTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Value Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Value) Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::IfcSimplePropertyTemplateTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::operator Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSlabTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1035]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSlabTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1035]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSlabTypeEnum::IfcSlabTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSlabTypeEnum::IfcSlabTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSlabTypeEnum::IfcSlabTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSlabTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSlabTypeEnum::IfcSlabTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSlabTypeEnum::Value Ifc4x3_rc1::IfcSlabTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSlabTypeEnum::Value) Ifc4x3_rc1::IfcSlabTypeEnum::IfcSlabTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSlabTypeEnum::operator Ifc4x3_rc1::IfcSlabTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSlabTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSolarDeviceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1039]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1039]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSolarDeviceTypeEnum::IfcSolarDeviceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSolarDeviceTypeEnum::IfcSolarDeviceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSolarDeviceTypeEnum::IfcSolarDeviceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSolarDeviceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSolarDeviceTypeEnum::IfcSolarDeviceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value Ifc4x3_rc1::IfcSolarDeviceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value) Ifc4x3_rc1::IfcSolarDeviceTypeEnum::IfcSolarDeviceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSolarDeviceTypeEnum::operator Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1052]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1052]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::IfcSpaceHeaterTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::IfcSpaceHeaterTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::IfcSpaceHeaterTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::IfcSpaceHeaterTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value) Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::IfcSpaceHeaterTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::operator Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSpaceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1054]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSpaceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1054]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSpaceTypeEnum::IfcSpaceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSpaceTypeEnum::IfcSpaceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSpaceTypeEnum::IfcSpaceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSpaceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSpaceTypeEnum::IfcSpaceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSpaceTypeEnum::Value Ifc4x3_rc1::IfcSpaceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSpaceTypeEnum::Value) Ifc4x3_rc1::IfcSpaceTypeEnum::IfcSpaceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSpaceTypeEnum::operator Ifc4x3_rc1::IfcSpaceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSpaceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSpatialZoneTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1062]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1062]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSpatialZoneTypeEnum::IfcSpatialZoneTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSpatialZoneTypeEnum::IfcSpatialZoneTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSpatialZoneTypeEnum::IfcSpatialZoneTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSpatialZoneTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSpatialZoneTypeEnum::IfcSpatialZoneTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value Ifc4x3_rc1::IfcSpatialZoneTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value) Ifc4x3_rc1::IfcSpatialZoneTypeEnum::IfcSpatialZoneTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSpatialZoneTypeEnum::operator Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStackTerminalTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1071]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStackTerminalTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1071]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcStackTerminalTypeEnum::IfcStackTerminalTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcStackTerminalTypeEnum::IfcStackTerminalTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStackTerminalTypeEnum::IfcStackTerminalTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcStackTerminalTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcStackTerminalTypeEnum::IfcStackTerminalTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value Ifc4x3_rc1::IfcStackTerminalTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value) Ifc4x3_rc1::IfcStackTerminalTypeEnum::IfcStackTerminalTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStackTerminalTypeEnum::operator Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStairFlightTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1075]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStairFlightTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1075]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcStairFlightTypeEnum::IfcStairFlightTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcStairFlightTypeEnum::IfcStairFlightTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStairFlightTypeEnum::IfcStairFlightTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcStairFlightTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcStairFlightTypeEnum::IfcStairFlightTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStairFlightTypeEnum::Value Ifc4x3_rc1::IfcStairFlightTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcStairFlightTypeEnum::Value) Ifc4x3_rc1::IfcStairFlightTypeEnum::IfcStairFlightTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStairFlightTypeEnum::operator Ifc4x3_rc1::IfcStairFlightTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcStairFlightTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStairTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1077]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStairTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1077]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcStairTypeEnum::IfcStairTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcStairTypeEnum::IfcStairTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStairTypeEnum::IfcStairTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcStairTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcStairTypeEnum::IfcStairTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStairTypeEnum::Value Ifc4x3_rc1::IfcStairTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcStairTypeEnum::Value) Ifc4x3_rc1::IfcStairTypeEnum::IfcStairTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStairTypeEnum::operator Ifc4x3_rc1::IfcStairTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcStairTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStateEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1078]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStateEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1078]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcStateEnum::IfcStateEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcStateEnum::IfcStateEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStateEnum::IfcStateEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcStateEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcStateEnum::IfcStateEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStateEnum::Value Ifc4x3_rc1::IfcStateEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcStateEnum::Value) Ifc4x3_rc1::IfcStateEnum::IfcStateEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStateEnum::operator Ifc4x3_rc1::IfcStateEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcStateEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1086]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1086]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::IfcStructuralCurveActivityTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::IfcStructuralCurveActivityTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::IfcStructuralCurveActivityTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::IfcStructuralCurveActivityTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value) Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::IfcStructuralCurveActivityTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::operator Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1089]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1089]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::IfcStructuralCurveMemberTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::IfcStructuralCurveMemberTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::IfcStructuralCurveMemberTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::IfcStructuralCurveMemberTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Value Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Value) Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::IfcStructuralCurveMemberTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::operator Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1115]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1115]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::IfcStructuralSurfaceActivityTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::IfcStructuralSurfaceActivityTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::IfcStructuralSurfaceActivityTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::IfcStructuralSurfaceActivityTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value) Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::IfcStructuralSurfaceActivityTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::operator Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1118]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1118]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::IfcStructuralSurfaceMemberTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::IfcStructuralSurfaceMemberTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::IfcStructuralSurfaceMemberTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::IfcStructuralSurfaceMemberTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Value Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Value) Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::IfcStructuralSurfaceMemberTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::operator Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSubContractResourceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1127]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1127]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSubContractResourceTypeEnum::IfcSubContractResourceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSubContractResourceTypeEnum::IfcSubContractResourceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSubContractResourceTypeEnum::IfcSubContractResourceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSubContractResourceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSubContractResourceTypeEnum::IfcSubContractResourceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value Ifc4x3_rc1::IfcSubContractResourceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value) Ifc4x3_rc1::IfcSubContractResourceTypeEnum::IfcSubContractResourceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSubContractResourceTypeEnum::operator Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1133]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1133]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::IfcSurfaceFeatureTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::IfcSurfaceFeatureTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::IfcSurfaceFeatureTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::IfcSurfaceFeatureTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Value Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Value) Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::IfcSurfaceFeatureTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::operator Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSurfaceSide::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1138]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSurfaceSide::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1138]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSurfaceSide::IfcSurfaceSide(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSurfaceSide::IfcSurfaceSide(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSurfaceSide::IfcSurfaceSide(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSurfaceSide::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSurfaceSide::IfcSurfaceSide::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSurfaceSide::Value Ifc4x3_rc1::IfcSurfaceSide::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSurfaceSide::Value) Ifc4x3_rc1::IfcSurfaceSide::IfcSurfaceSide::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSurfaceSide::operator Ifc4x3_rc1::IfcSurfaceSide::Value() const {
|
|
return (Ifc4x3_rc1::IfcSurfaceSide::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1153]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1153]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::IfcSwitchingDeviceTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::IfcSwitchingDeviceTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::IfcSwitchingDeviceTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::IfcSwitchingDeviceTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value) Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::IfcSwitchingDeviceTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::operator Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1157]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1157]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::IfcSystemFurnitureElementTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::IfcSystemFurnitureElementTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::IfcSystemFurnitureElementTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::IfcSystemFurnitureElementTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value) Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::IfcSystemFurnitureElementTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::operator Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTankTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1163]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTankTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1163]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTankTypeEnum::IfcTankTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTankTypeEnum::IfcTankTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTankTypeEnum::IfcTankTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTankTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTankTypeEnum::IfcTankTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTankTypeEnum::Value Ifc4x3_rc1::IfcTankTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTankTypeEnum::Value) Ifc4x3_rc1::IfcTankTypeEnum::IfcTankTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTankTypeEnum::operator Ifc4x3_rc1::IfcTankTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTankTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTaskDurationEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1165]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTaskDurationEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1165]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTaskDurationEnum::IfcTaskDurationEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTaskDurationEnum::IfcTaskDurationEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTaskDurationEnum::IfcTaskDurationEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTaskDurationEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTaskDurationEnum::IfcTaskDurationEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTaskDurationEnum::Value Ifc4x3_rc1::IfcTaskDurationEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTaskDurationEnum::Value) Ifc4x3_rc1::IfcTaskDurationEnum::IfcTaskDurationEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTaskDurationEnum::operator Ifc4x3_rc1::IfcTaskDurationEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTaskDurationEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTaskTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1169]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTaskTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1169]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTaskTypeEnum::IfcTaskTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTaskTypeEnum::IfcTaskTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTaskTypeEnum::IfcTaskTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTaskTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTaskTypeEnum::IfcTaskTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTaskTypeEnum::Value Ifc4x3_rc1::IfcTaskTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTaskTypeEnum::Value) Ifc4x3_rc1::IfcTaskTypeEnum::IfcTaskTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTaskTypeEnum::operator Ifc4x3_rc1::IfcTaskTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTaskTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTendonAnchorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1176]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1176]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTendonAnchorTypeEnum::IfcTendonAnchorTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTendonAnchorTypeEnum::IfcTendonAnchorTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTendonAnchorTypeEnum::IfcTendonAnchorTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTendonAnchorTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTendonAnchorTypeEnum::IfcTendonAnchorTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value Ifc4x3_rc1::IfcTendonAnchorTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value) Ifc4x3_rc1::IfcTendonAnchorTypeEnum::IfcTendonAnchorTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTendonAnchorTypeEnum::operator Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTendonConduitTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1179]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTendonConduitTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1179]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTendonConduitTypeEnum::IfcTendonConduitTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTendonConduitTypeEnum::IfcTendonConduitTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTendonConduitTypeEnum::IfcTendonConduitTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTendonConduitTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTendonConduitTypeEnum::IfcTendonConduitTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value Ifc4x3_rc1::IfcTendonConduitTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value) Ifc4x3_rc1::IfcTendonConduitTypeEnum::IfcTendonConduitTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTendonConduitTypeEnum::operator Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTendonTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1181]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTendonTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1181]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTendonTypeEnum::IfcTendonTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTendonTypeEnum::IfcTendonTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTendonTypeEnum::IfcTendonTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTendonTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTendonTypeEnum::IfcTendonTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTendonTypeEnum::Value Ifc4x3_rc1::IfcTendonTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTendonTypeEnum::Value) Ifc4x3_rc1::IfcTendonTypeEnum::IfcTendonTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTendonTypeEnum::operator Ifc4x3_rc1::IfcTendonTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTendonTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTextPath::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1191]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTextPath::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1191]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTextPath::IfcTextPath(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTextPath::IfcTextPath(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTextPath::IfcTextPath(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTextPath::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTextPath::IfcTextPath::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTextPath::Value Ifc4x3_rc1::IfcTextPath::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTextPath::Value) Ifc4x3_rc1::IfcTextPath::IfcTextPath::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTextPath::operator Ifc4x3_rc1::IfcTextPath::Value() const {
|
|
return (Ifc4x3_rc1::IfcTextPath::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1213]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1213]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::IfcTimeSeriesDataTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::IfcTimeSeriesDataTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::IfcTimeSeriesDataTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::IfcTimeSeriesDataTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Value Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Value) Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::IfcTimeSeriesDataTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::operator Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTrackElementTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1222]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTrackElementTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1222]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTrackElementTypeEnum::IfcTrackElementTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTrackElementTypeEnum::IfcTrackElementTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTrackElementTypeEnum::IfcTrackElementTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTrackElementTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTrackElementTypeEnum::IfcTrackElementTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTrackElementTypeEnum::Value Ifc4x3_rc1::IfcTrackElementTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTrackElementTypeEnum::Value) Ifc4x3_rc1::IfcTrackElementTypeEnum::IfcTrackElementTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTrackElementTypeEnum::operator Ifc4x3_rc1::IfcTrackElementTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTrackElementTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransformerTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1225]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransformerTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1225]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTransformerTypeEnum::IfcTransformerTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTransformerTypeEnum::IfcTransformerTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransformerTypeEnum::IfcTransformerTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTransformerTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTransformerTypeEnum::IfcTransformerTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransformerTypeEnum::Value Ifc4x3_rc1::IfcTransformerTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTransformerTypeEnum::Value) Ifc4x3_rc1::IfcTransformerTypeEnum::IfcTransformerTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransformerTypeEnum::operator Ifc4x3_rc1::IfcTransformerTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTransformerTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransitionCode::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1226]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransitionCode::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1226]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTransitionCode::IfcTransitionCode(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTransitionCode::IfcTransitionCode(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransitionCode::IfcTransitionCode(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTransitionCode::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTransitionCode::IfcTransitionCode::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransitionCode::Value Ifc4x3_rc1::IfcTransitionCode::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTransitionCode::Value) Ifc4x3_rc1::IfcTransitionCode::IfcTransitionCode::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransitionCode::operator Ifc4x3_rc1::IfcTransitionCode::Value() const {
|
|
return (Ifc4x3_rc1::IfcTransitionCode::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransitionCurveType::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1228]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransitionCurveType::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1228]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTransitionCurveType::IfcTransitionCurveType(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTransitionCurveType::IfcTransitionCurveType(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransitionCurveType::IfcTransitionCurveType(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTransitionCurveType::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTransitionCurveType::IfcTransitionCurveType::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransitionCurveType::Value Ifc4x3_rc1::IfcTransitionCurveType::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTransitionCurveType::Value) Ifc4x3_rc1::IfcTransitionCurveType::IfcTransitionCurveType::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransitionCurveType::operator Ifc4x3_rc1::IfcTransitionCurveType::Value() const {
|
|
return (Ifc4x3_rc1::IfcTransitionCurveType::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1231]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1231]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::IfcTransportElementFixedTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::IfcTransportElementFixedTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::IfcTransportElementFixedTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::IfcTransportElementFixedTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::Value Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::Value) Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::IfcTransportElementFixedTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::operator Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTransportElementFixedTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1232]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1232]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::IfcTransportElementNonFixedTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::IfcTransportElementNonFixedTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::IfcTransportElementNonFixedTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::IfcTransportElementNonFixedTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::Value Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::Value) Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::IfcTransportElementNonFixedTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::operator Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTransportElementNonFixedTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTrimmingPreference::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1239]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTrimmingPreference::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1239]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTrimmingPreference::IfcTrimmingPreference(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTrimmingPreference::IfcTrimmingPreference(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTrimmingPreference::IfcTrimmingPreference(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTrimmingPreference::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTrimmingPreference::IfcTrimmingPreference::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTrimmingPreference::Value Ifc4x3_rc1::IfcTrimmingPreference::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTrimmingPreference::Value) Ifc4x3_rc1::IfcTrimmingPreference::IfcTrimmingPreference::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTrimmingPreference::operator Ifc4x3_rc1::IfcTrimmingPreference::Value() const {
|
|
return (Ifc4x3_rc1::IfcTrimmingPreference::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTubeBundleTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1244]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcTubeBundleTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1244]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcTubeBundleTypeEnum::IfcTubeBundleTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcTubeBundleTypeEnum::IfcTubeBundleTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTubeBundleTypeEnum::IfcTubeBundleTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcTubeBundleTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcTubeBundleTypeEnum::IfcTubeBundleTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value Ifc4x3_rc1::IfcTubeBundleTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value) Ifc4x3_rc1::IfcTubeBundleTypeEnum::IfcTubeBundleTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcTubeBundleTypeEnum::operator Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcUnitEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1257]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcUnitEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1257]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcUnitEnum::IfcUnitEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcUnitEnum::IfcUnitEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcUnitEnum::IfcUnitEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcUnitEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcUnitEnum::IfcUnitEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcUnitEnum::Value Ifc4x3_rc1::IfcUnitEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcUnitEnum::Value) Ifc4x3_rc1::IfcUnitEnum::IfcUnitEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcUnitEnum::operator Ifc4x3_rc1::IfcUnitEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcUnitEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1252]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1252]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::IfcUnitaryControlElementTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::IfcUnitaryControlElementTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::IfcUnitaryControlElementTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::IfcUnitaryControlElementTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value) Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::IfcUnitaryControlElementTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::operator Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1255]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1255]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::IfcUnitaryEquipmentTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::IfcUnitaryEquipmentTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::IfcUnitaryEquipmentTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::IfcUnitaryEquipmentTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value) Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::IfcUnitaryEquipmentTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::operator Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcValveTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1263]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcValveTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1263]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcValveTypeEnum::IfcValveTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcValveTypeEnum::IfcValveTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcValveTypeEnum::IfcValveTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcValveTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcValveTypeEnum::IfcValveTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcValveTypeEnum::Value Ifc4x3_rc1::IfcValveTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcValveTypeEnum::Value) Ifc4x3_rc1::IfcValveTypeEnum::IfcValveTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcValveTypeEnum::operator Ifc4x3_rc1::IfcValveTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcValveTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcVibrationDamperTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1272]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1272]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcVibrationDamperTypeEnum::IfcVibrationDamperTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcVibrationDamperTypeEnum::IfcVibrationDamperTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcVibrationDamperTypeEnum::IfcVibrationDamperTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcVibrationDamperTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcVibrationDamperTypeEnum::IfcVibrationDamperTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value Ifc4x3_rc1::IfcVibrationDamperTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value) Ifc4x3_rc1::IfcVibrationDamperTypeEnum::IfcVibrationDamperTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcVibrationDamperTypeEnum::operator Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1275]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1275]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::IfcVibrationIsolatorTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::IfcVibrationIsolatorTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::IfcVibrationIsolatorTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::IfcVibrationIsolatorTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value) Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::IfcVibrationIsolatorTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::operator Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1279]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1279]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::IfcVoidingFeatureTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::IfcVoidingFeatureTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::IfcVoidingFeatureTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::IfcVoidingFeatureTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Value Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Value) Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::IfcVoidingFeatureTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::operator Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWallTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1287]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWallTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1287]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWallTypeEnum::IfcWallTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWallTypeEnum::IfcWallTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWallTypeEnum::IfcWallTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWallTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWallTypeEnum::IfcWallTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWallTypeEnum::Value Ifc4x3_rc1::IfcWallTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWallTypeEnum::Value) Ifc4x3_rc1::IfcWallTypeEnum::IfcWallTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWallTypeEnum::operator Ifc4x3_rc1::IfcWallTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWallTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWasteTerminalTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1293]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1293]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWasteTerminalTypeEnum::IfcWasteTerminalTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWasteTerminalTypeEnum::IfcWasteTerminalTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWasteTerminalTypeEnum::IfcWasteTerminalTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWasteTerminalTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWasteTerminalTypeEnum::IfcWasteTerminalTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value Ifc4x3_rc1::IfcWasteTerminalTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value) Ifc4x3_rc1::IfcWasteTerminalTypeEnum::IfcWasteTerminalTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWasteTerminalTypeEnum::operator Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowPanelOperationEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1297]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowPanelOperationEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1297]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWindowPanelOperationEnum::IfcWindowPanelOperationEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWindowPanelOperationEnum::IfcWindowPanelOperationEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowPanelOperationEnum::IfcWindowPanelOperationEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWindowPanelOperationEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWindowPanelOperationEnum::IfcWindowPanelOperationEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowPanelOperationEnum::Value Ifc4x3_rc1::IfcWindowPanelOperationEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWindowPanelOperationEnum::Value) Ifc4x3_rc1::IfcWindowPanelOperationEnum::IfcWindowPanelOperationEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowPanelOperationEnum::operator Ifc4x3_rc1::IfcWindowPanelOperationEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWindowPanelOperationEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowPanelPositionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1298]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowPanelPositionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1298]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWindowPanelPositionEnum::IfcWindowPanelPositionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWindowPanelPositionEnum::IfcWindowPanelPositionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowPanelPositionEnum::IfcWindowPanelPositionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWindowPanelPositionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWindowPanelPositionEnum::IfcWindowPanelPositionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value Ifc4x3_rc1::IfcWindowPanelPositionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value) Ifc4x3_rc1::IfcWindowPanelPositionEnum::IfcWindowPanelPositionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowPanelPositionEnum::operator Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowStyleConstructionEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1302]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1302]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWindowStyleConstructionEnum::IfcWindowStyleConstructionEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWindowStyleConstructionEnum::IfcWindowStyleConstructionEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowStyleConstructionEnum::IfcWindowStyleConstructionEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWindowStyleConstructionEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWindowStyleConstructionEnum::IfcWindowStyleConstructionEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Value Ifc4x3_rc1::IfcWindowStyleConstructionEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Value) Ifc4x3_rc1::IfcWindowStyleConstructionEnum::IfcWindowStyleConstructionEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowStyleConstructionEnum::operator Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowStyleOperationEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1303]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowStyleOperationEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1303]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWindowStyleOperationEnum::IfcWindowStyleOperationEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWindowStyleOperationEnum::IfcWindowStyleOperationEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowStyleOperationEnum::IfcWindowStyleOperationEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWindowStyleOperationEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWindowStyleOperationEnum::IfcWindowStyleOperationEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowStyleOperationEnum::Value Ifc4x3_rc1::IfcWindowStyleOperationEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWindowStyleOperationEnum::Value) Ifc4x3_rc1::IfcWindowStyleOperationEnum::IfcWindowStyleOperationEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowStyleOperationEnum::operator Ifc4x3_rc1::IfcWindowStyleOperationEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWindowStyleOperationEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1305]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1305]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWindowTypeEnum::IfcWindowTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWindowTypeEnum::IfcWindowTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowTypeEnum::IfcWindowTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWindowTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWindowTypeEnum::IfcWindowTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowTypeEnum::Value Ifc4x3_rc1::IfcWindowTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWindowTypeEnum::Value) Ifc4x3_rc1::IfcWindowTypeEnum::IfcWindowTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowTypeEnum::operator Ifc4x3_rc1::IfcWindowTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWindowTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowTypePartitioningEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1306]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1306]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWindowTypePartitioningEnum::IfcWindowTypePartitioningEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWindowTypePartitioningEnum::IfcWindowTypePartitioningEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowTypePartitioningEnum::IfcWindowTypePartitioningEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWindowTypePartitioningEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWindowTypePartitioningEnum::IfcWindowTypePartitioningEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value Ifc4x3_rc1::IfcWindowTypePartitioningEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value) Ifc4x3_rc1::IfcWindowTypePartitioningEnum::IfcWindowTypePartitioningEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWindowTypePartitioningEnum::operator Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWorkCalendarTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1308]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1308]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWorkCalendarTypeEnum::IfcWorkCalendarTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWorkCalendarTypeEnum::IfcWorkCalendarTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWorkCalendarTypeEnum::IfcWorkCalendarTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWorkCalendarTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWorkCalendarTypeEnum::IfcWorkCalendarTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Value Ifc4x3_rc1::IfcWorkCalendarTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Value) Ifc4x3_rc1::IfcWorkCalendarTypeEnum::IfcWorkCalendarTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWorkCalendarTypeEnum::operator Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWorkPlanTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1311]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWorkPlanTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1311]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWorkPlanTypeEnum::IfcWorkPlanTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWorkPlanTypeEnum::IfcWorkPlanTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWorkPlanTypeEnum::IfcWorkPlanTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWorkPlanTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWorkPlanTypeEnum::IfcWorkPlanTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWorkPlanTypeEnum::Value Ifc4x3_rc1::IfcWorkPlanTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWorkPlanTypeEnum::Value) Ifc4x3_rc1::IfcWorkPlanTypeEnum::IfcWorkPlanTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWorkPlanTypeEnum::operator Ifc4x3_rc1::IfcWorkPlanTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWorkPlanTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
// const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWorkScheduleTypeEnum::declaration() const { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1313]); }
|
|
const IfcParse::enumeration_type& Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Class() { return *((IfcParse::enumeration_type*)IFC4X3_RC1_types[1313]); }
|
|
|
|
/*
|
|
Ifc4x3_rc1::IfcWorkScheduleTypeEnum::IfcWorkScheduleTypeEnum(const std::weak_ptr<InstanceData>& e)
|
|
: express::DeclaredType(e)
|
|
{}
|
|
|
|
Ifc4x3_rc1::IfcWorkScheduleTypeEnum::IfcWorkScheduleTypeEnum(Value v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), static_cast<size_t>(v)));
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWorkScheduleTypeEnum::IfcWorkScheduleTypeEnum(const std::string& v) {
|
|
set_attribute_value(0, EnumerationReference(&Class(), Class().lookup_enum_offset(v)));
|
|
}
|
|
*/
|
|
|
|
const char* Ifc4x3_rc1::IfcWorkScheduleTypeEnum::ToString(Value v) {
|
|
return Ifc4x3_rc1::IfcWorkScheduleTypeEnum::IfcWorkScheduleTypeEnum::Class().lookup_enum_value((size_t)v);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Value Ifc4x3_rc1::IfcWorkScheduleTypeEnum::FromString(const std::string& s) {
|
|
return (Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Value) Ifc4x3_rc1::IfcWorkScheduleTypeEnum::IfcWorkScheduleTypeEnum::Class().lookup_enum_offset(s);
|
|
}
|
|
|
|
Ifc4x3_rc1::IfcWorkScheduleTypeEnum::operator Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Value() const {
|
|
return (Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Value) ((EnumerationReference) get_attribute_value(0)).index();
|
|
}
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcActorSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[8]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcAppliedValueSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[54]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcAxis2Placement::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[71]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcBendingParameterSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[84]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcBooleanOperand::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[93]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcClassificationReferenceSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[176]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcClassificationSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[177]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcColour::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[182]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcColourOrFactor::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[183]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcCoordinateReferenceSystemSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[251]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcCsgSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[268]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcCurveFontOrScaledCurveFontSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[279]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcCurveOnSurface::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[281]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcCurveOrEdgeCurve::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[282]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcCurveStyleFontSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[288]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcDefinitionSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[300]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcDerivedMeasureValue::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[301]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcDocumentSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[338]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcFacilityPartTypeSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[452]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcFillStyleSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[467]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcGeometricSetSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[518]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcGridPlacementDirectionSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[529]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcHatchLineDistanceSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[533]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[548]); }
|
|
|
|
const IfcParse::select_type& Ifc4x3_rc1::IfcInterferenceSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[562]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcLayeredItem::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[588]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcLibrarySelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[593]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcLightDistributionDataSourceSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[596]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcLinearAxisSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[609]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcMaterialSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[663]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcMeasureValue::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[665]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcMetricValueSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[678]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[686]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[688]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[689]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcObjectReferenceSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[715]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcPointOrVertexPoint::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[781]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcPresentationStyleSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[807]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcProcessSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[813]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcProductRepresentationSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[817]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcProductSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[818]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcPropertySetDefinitionSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[841]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcResourceObjectSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[969]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcResourceSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[970]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcRotationalStiffnessSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[986]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcSegmentIndexSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1002]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcShell::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1014]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcSimpleValue::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1025]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcSizeSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1030]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcSolidOrShell::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1042]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcSpaceBoundarySelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1049]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcSpatialReferenceSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1057]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcSpecularHighlightSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1065]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcStructuralActivityAssignmentSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1081]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcStyleAssignmentSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1121]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcSurfaceOrFaceSurface::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1136]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcSurfaceStyleElementSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1140]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcTextFontSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1188]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcTimeOrRatioSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1210]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcTranslationalStiffnessSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1229]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcTransportElementTypeSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1234]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcTrimmingSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1240]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcUnit::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1249]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcValue::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1260]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcVectorOrDirection::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1266]); }
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const IfcParse::select_type& Ifc4x3_rc1::IfcWarpingStiffnessSelect::Class() { return *((IfcParse::select_type*)IFC4X3_RC1_types[1290]); }
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// Function implementations for IfcAbsorbedDoseMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcAbsorbedDoseMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[0]); }
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void Ifc4x3_rc1::IfcAbsorbedDoseMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcAbsorbedDoseMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcAccelerationMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcAccelerationMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1]); }
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void Ifc4x3_rc1::IfcAccelerationMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcAccelerationMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcAmountOfSubstanceMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcAmountOfSubstanceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[45]); }
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void Ifc4x3_rc1::IfcAmountOfSubstanceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcAmountOfSubstanceMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcAngularVelocityMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcAngularVelocityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[48]); }
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void Ifc4x3_rc1::IfcAngularVelocityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcAngularVelocityMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcArcIndex
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcArcIndex::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[60]); }
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void Ifc4x3_rc1::IfcArcIndex::initialize(std::vector< int > /*[3:3]*/ v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcArcIndex::operator std::vector< int > /*[3:3]*/() const { return get_attribute_value(0); }
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// Function implementations for IfcAreaDensityMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcAreaDensityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[61]); }
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void Ifc4x3_rc1::IfcAreaDensityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcAreaDensityMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcAreaMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcAreaMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[62]); }
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void Ifc4x3_rc1::IfcAreaMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcAreaMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcBinary
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcBinary::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[85]); }
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void Ifc4x3_rc1::IfcBinary::initialize(boost::dynamic_bitset<> v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcBinary::operator boost::dynamic_bitset<>() const { return get_attribute_value(0); }
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// Function implementations for IfcBoolean
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcBoolean::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[91]); }
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void Ifc4x3_rc1::IfcBoolean::initialize(bool v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcBoolean::operator bool() const { return get_attribute_value(0); }
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// Function implementations for IfcBoxAlignment
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcBoxAlignment::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[106]); }
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void Ifc4x3_rc1::IfcBoxAlignment::initialize(std::string v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcBoxAlignment::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcCardinalPointReference
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcCardinalPointReference::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[150]); }
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void Ifc4x3_rc1::IfcCardinalPointReference::initialize(int v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcCardinalPointReference::operator int() const { return get_attribute_value(0); }
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// Function implementations for IfcComplexNumber
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcComplexNumber::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[194]); }
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void Ifc4x3_rc1::IfcComplexNumber::initialize(std::vector< double > /*[1:2]*/ v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcComplexNumber::operator std::vector< double > /*[1:2]*/() const { return get_attribute_value(0); }
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// Function implementations for IfcCompoundPlaneAngleMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcCompoundPlaneAngleMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[202]); }
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void Ifc4x3_rc1::IfcCompoundPlaneAngleMeasure::initialize(std::vector< int > /*[3:4]*/ v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcCompoundPlaneAngleMeasure::operator std::vector< int > /*[3:4]*/() const { return get_attribute_value(0); }
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// Function implementations for IfcContextDependentMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcContextDependentMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[232]); }
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void Ifc4x3_rc1::IfcContextDependentMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcContextDependentMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcCountMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcCountMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[257]); }
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void Ifc4x3_rc1::IfcCountMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcCountMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcCurvatureMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcCurvatureMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[275]); }
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void Ifc4x3_rc1::IfcCurvatureMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcCurvatureMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcDate
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcDate::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[294]); }
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void Ifc4x3_rc1::IfcDate::initialize(std::string v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcDate::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcDateTime
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcDateTime::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[295]); }
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void Ifc4x3_rc1::IfcDateTime::initialize(std::string v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcDateTime::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcDayInMonthNumber
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcDayInMonthNumber::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[296]); }
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void Ifc4x3_rc1::IfcDayInMonthNumber::initialize(int v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcDayInMonthNumber::operator int() const { return get_attribute_value(0); }
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// Function implementations for IfcDayInWeekNumber
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcDayInWeekNumber::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[297]); }
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void Ifc4x3_rc1::IfcDayInWeekNumber::initialize(int v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcDayInWeekNumber::operator int() const { return get_attribute_value(0); }
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// Function implementations for IfcDescriptiveMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcDescriptiveMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[306]); }
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void Ifc4x3_rc1::IfcDescriptiveMeasure::initialize(std::string v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcDescriptiveMeasure::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcDimensionCount
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcDimensionCount::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[308]); }
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void Ifc4x3_rc1::IfcDimensionCount::initialize(int v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcDimensionCount::operator int() const { return get_attribute_value(0); }
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// Function implementations for IfcDoseEquivalentMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcDoseEquivalentMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[352]); }
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void Ifc4x3_rc1::IfcDoseEquivalentMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcDoseEquivalentMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcDuration
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcDuration::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[364]); }
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void Ifc4x3_rc1::IfcDuration::initialize(std::string v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcDuration::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcDynamicViscosityMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcDynamicViscosityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[365]); }
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void Ifc4x3_rc1::IfcDynamicViscosityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcDynamicViscosityMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcElectricCapacitanceMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcElectricCapacitanceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[377]); }
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void Ifc4x3_rc1::IfcElectricCapacitanceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcElectricCapacitanceMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcElectricChargeMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcElectricChargeMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[378]); }
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void Ifc4x3_rc1::IfcElectricChargeMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcElectricChargeMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcElectricConductanceMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcElectricConductanceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[379]); }
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void Ifc4x3_rc1::IfcElectricConductanceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcElectricConductanceMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcElectricCurrentMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcElectricCurrentMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[380]); }
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void Ifc4x3_rc1::IfcElectricCurrentMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcElectricCurrentMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcElectricResistanceMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcElectricResistanceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[396]); }
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void Ifc4x3_rc1::IfcElectricResistanceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcElectricResistanceMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcElectricVoltageMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcElectricVoltageMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[400]); }
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void Ifc4x3_rc1::IfcElectricVoltageMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcElectricVoltageMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcEnergyMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcEnergyMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[415]); }
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void Ifc4x3_rc1::IfcEnergyMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcEnergyMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcFontStyle
|
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcFontStyle::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[496]); }
|
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void Ifc4x3_rc1::IfcFontStyle::initialize(std::string v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcFontStyle::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcFontVariant
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcFontVariant::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[497]); }
|
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void Ifc4x3_rc1::IfcFontVariant::initialize(std::string v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcFontVariant::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcFontWeight
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcFontWeight::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[498]); }
|
|
void Ifc4x3_rc1::IfcFontWeight::initialize(std::string v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcFontWeight::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcForceMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcForceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[502]); }
|
|
void Ifc4x3_rc1::IfcForceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcForceMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcFrequencyMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcFrequencyMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[503]); }
|
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void Ifc4x3_rc1::IfcFrequencyMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcFrequencyMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcGloballyUniqueId
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcGloballyUniqueId::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[524]); }
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void Ifc4x3_rc1::IfcGloballyUniqueId::initialize(std::string v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcGloballyUniqueId::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcHeatFluxDensityMeasure
|
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcHeatFluxDensityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[537]); }
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void Ifc4x3_rc1::IfcHeatFluxDensityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcHeatFluxDensityMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcHeatingValueMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcHeatingValueMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[538]); }
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|
void Ifc4x3_rc1::IfcHeatingValueMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcHeatingValueMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcIdentifier
|
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcIdentifier::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[542]); }
|
|
void Ifc4x3_rc1::IfcIdentifier::initialize(std::string v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcIdentifier::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcIlluminanceMeasure
|
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcIlluminanceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[543]); }
|
|
void Ifc4x3_rc1::IfcIlluminanceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcIlluminanceMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcInductanceMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcInductanceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[556]); }
|
|
void Ifc4x3_rc1::IfcInductanceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcInductanceMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcInteger
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcInteger::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[557]); }
|
|
void Ifc4x3_rc1::IfcInteger::initialize(int v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcInteger::operator int() const { return get_attribute_value(0); }
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// Function implementations for IfcIntegerCountRateMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcIntegerCountRateMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[558]); }
|
|
void Ifc4x3_rc1::IfcIntegerCountRateMeasure::initialize(int v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcIntegerCountRateMeasure::operator int() const { return get_attribute_value(0); }
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// Function implementations for IfcIonConcentrationMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcIonConcentrationMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[567]); }
|
|
void Ifc4x3_rc1::IfcIonConcentrationMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcIonConcentrationMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcIsothermalMoistureCapacityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcIsothermalMoistureCapacityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[571]); }
|
|
void Ifc4x3_rc1::IfcIsothermalMoistureCapacityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcIsothermalMoistureCapacityMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcKinematicViscosityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcKinematicViscosityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[577]); }
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|
void Ifc4x3_rc1::IfcKinematicViscosityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcKinematicViscosityMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcLabel
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLabel::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[579]); }
|
|
void Ifc4x3_rc1::IfcLabel::initialize(std::string v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcLabel::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcLanguageId
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLanguageId::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[587]); }
|
|
void Ifc4x3_rc1::IfcLanguageId::initialize(std::string v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcLanguageId::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcLengthMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLengthMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[590]); }
|
|
void Ifc4x3_rc1::IfcLengthMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcLengthMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcLineIndex
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLineIndex::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[619]); }
|
|
void Ifc4x3_rc1::IfcLineIndex::initialize(std::vector< int > /*[2:?]*/ v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcLineIndex::operator std::vector< int > /*[2:?]*/() const { return get_attribute_value(0); }
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// Function implementations for IfcLinearForceMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLinearForceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[611]); }
|
|
void Ifc4x3_rc1::IfcLinearForceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcLinearForceMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcLinearMomentMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLinearMomentMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[612]); }
|
|
void Ifc4x3_rc1::IfcLinearMomentMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcLinearMomentMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcLinearStiffnessMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLinearStiffnessMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[617]); }
|
|
void Ifc4x3_rc1::IfcLinearStiffnessMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcLinearStiffnessMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcLinearVelocityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLinearVelocityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[618]); }
|
|
void Ifc4x3_rc1::IfcLinearVelocityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcLinearVelocityMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcLogical
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLogical::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[626]); }
|
|
void Ifc4x3_rc1::IfcLogical::initialize(boost::logic::tribool v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcLogical::operator boost::logic::tribool() const { return get_attribute_value(0); }
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// Function implementations for IfcLuminousFluxMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLuminousFluxMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[630]); }
|
|
void Ifc4x3_rc1::IfcLuminousFluxMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcLuminousFluxMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcLuminousIntensityDistributionMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLuminousIntensityDistributionMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[631]); }
|
|
void Ifc4x3_rc1::IfcLuminousIntensityDistributionMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcLuminousIntensityDistributionMeasure::operator double() const { return get_attribute_value(0); }
|
|
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// Function implementations for IfcLuminousIntensityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcLuminousIntensityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[632]); }
|
|
void Ifc4x3_rc1::IfcLuminousIntensityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcLuminousIntensityMeasure::operator double() const { return get_attribute_value(0); }
|
|
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// Function implementations for IfcMagneticFluxDensityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMagneticFluxDensityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[633]); }
|
|
void Ifc4x3_rc1::IfcMagneticFluxDensityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMagneticFluxDensityMeasure::operator double() const { return get_attribute_value(0); }
|
|
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// Function implementations for IfcMagneticFluxMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMagneticFluxMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[634]); }
|
|
void Ifc4x3_rc1::IfcMagneticFluxMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMagneticFluxMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
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// Function implementations for IfcMassDensityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMassDensityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[641]); }
|
|
void Ifc4x3_rc1::IfcMassDensityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMassDensityMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
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// Function implementations for IfcMassFlowRateMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMassFlowRateMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[642]); }
|
|
void Ifc4x3_rc1::IfcMassFlowRateMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMassFlowRateMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcMassMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMassMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[643]); }
|
|
void Ifc4x3_rc1::IfcMassMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMassMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
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// Function implementations for IfcMassPerLengthMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMassPerLengthMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[644]); }
|
|
void Ifc4x3_rc1::IfcMassPerLengthMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMassPerLengthMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcModulusOfElasticityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcModulusOfElasticityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[683]); }
|
|
void Ifc4x3_rc1::IfcModulusOfElasticityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcModulusOfElasticityMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcModulusOfLinearSubgradeReactionMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcModulusOfLinearSubgradeReactionMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[684]); }
|
|
void Ifc4x3_rc1::IfcModulusOfLinearSubgradeReactionMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcModulusOfLinearSubgradeReactionMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcModulusOfRotationalSubgradeReactionMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[685]); }
|
|
void Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcModulusOfSubgradeReactionMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcModulusOfSubgradeReactionMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[687]); }
|
|
void Ifc4x3_rc1::IfcModulusOfSubgradeReactionMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcModulusOfSubgradeReactionMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcMoistureDiffusivityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMoistureDiffusivityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[690]); }
|
|
void Ifc4x3_rc1::IfcMoistureDiffusivityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMoistureDiffusivityMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcMolecularWeightMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMolecularWeightMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[691]); }
|
|
void Ifc4x3_rc1::IfcMolecularWeightMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMolecularWeightMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcMomentOfInertiaMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMomentOfInertiaMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[692]); }
|
|
void Ifc4x3_rc1::IfcMomentOfInertiaMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMomentOfInertiaMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcMonetaryMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMonetaryMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[693]); }
|
|
void Ifc4x3_rc1::IfcMonetaryMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMonetaryMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcMonthInYearNumber
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcMonthInYearNumber::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[695]); }
|
|
void Ifc4x3_rc1::IfcMonthInYearNumber::initialize(int v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcMonthInYearNumber::operator int() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcNonNegativeLengthMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcNonNegativeLengthMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[706]); }
|
|
void Ifc4x3_rc1::IfcNonNegativeLengthMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcNonNegativeLengthMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcNormalisedRatioMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcNormalisedRatioMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[707]); }
|
|
void Ifc4x3_rc1::IfcNormalisedRatioMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcNormalisedRatioMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcNumericMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcNumericMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[709]); }
|
|
void Ifc4x3_rc1::IfcNumericMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcNumericMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcPHMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcPHMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[751]); }
|
|
void Ifc4x3_rc1::IfcPHMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcPHMeasure::operator double() const { return get_attribute_value(0); }
|
|
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// Function implementations for IfcParameterValue
|
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcParameterValue::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[738]); }
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void Ifc4x3_rc1::IfcParameterValue::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcParameterValue::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcPlanarForceMeasure
|
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcPlanarForceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[770]); }
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void Ifc4x3_rc1::IfcPlanarForceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcPlanarForceMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcPlaneAngleMeasure
|
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcPlaneAngleMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[772]); }
|
|
void Ifc4x3_rc1::IfcPlaneAngleMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcPlaneAngleMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcPositiveInteger
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcPositiveInteger::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[788]); }
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|
void Ifc4x3_rc1::IfcPositiveInteger::initialize(int v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcPositiveInteger::operator int() const { return get_attribute_value(0); }
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// Function implementations for IfcPositiveLengthMeasure
|
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcPositiveLengthMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[789]); }
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void Ifc4x3_rc1::IfcPositiveLengthMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcPositiveLengthMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcPositivePlaneAngleMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcPositivePlaneAngleMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[790]); }
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void Ifc4x3_rc1::IfcPositivePlaneAngleMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcPositivePlaneAngleMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcPositiveRatioMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcPositiveRatioMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[791]); }
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void Ifc4x3_rc1::IfcPositiveRatioMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcPositiveRatioMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcPowerMeasure
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|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcPowerMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[793]); }
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void Ifc4x3_rc1::IfcPowerMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcPowerMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcPresentableText
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcPresentableText::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[801]); }
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|
void Ifc4x3_rc1::IfcPresentableText::initialize(std::string v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcPresentableText::operator std::string() const { return get_attribute_value(0); }
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// Function implementations for IfcPressureMeasure
|
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcPressureMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[808]); }
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|
void Ifc4x3_rc1::IfcPressureMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcPressureMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcPropertySetDefinitionSet
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcPropertySetDefinitionSet::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[842]); }
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|
void Ifc4x3_rc1::IfcPropertySetDefinitionSet::initialize(std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > v) { set_attribute_value(0, cast_vector<express::Base>(v)); }
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Ifc4x3_rc1::IfcPropertySetDefinitionSet::operator std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition >() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcPropertySetDefinition>(es); }
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// Function implementations for IfcRadioActivityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcRadioActivityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[866]); }
|
|
void Ifc4x3_rc1::IfcRadioActivityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcRadioActivityMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcRatioMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcRatioMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[881]); }
|
|
void Ifc4x3_rc1::IfcRatioMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcRatioMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcReal
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcReal::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[884]); }
|
|
void Ifc4x3_rc1::IfcReal::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcReal::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcRotationalFrequencyMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcRotationalFrequencyMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[983]); }
|
|
void Ifc4x3_rc1::IfcRotationalFrequencyMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcRotationalFrequencyMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcRotationalMassMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcRotationalMassMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[984]); }
|
|
void Ifc4x3_rc1::IfcRotationalMassMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcRotationalMassMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcRotationalStiffnessMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcRotationalStiffnessMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[985]); }
|
|
void Ifc4x3_rc1::IfcRotationalStiffnessMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcRotationalStiffnessMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcSectionModulusMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSectionModulusMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[998]); }
|
|
void Ifc4x3_rc1::IfcSectionModulusMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcSectionModulusMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcSectionalAreaIntegralMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSectionalAreaIntegralMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[993]); }
|
|
void Ifc4x3_rc1::IfcSectionalAreaIntegralMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcSectionalAreaIntegralMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcShearModulusMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcShearModulusMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1013]); }
|
|
void Ifc4x3_rc1::IfcShearModulusMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcShearModulusMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcSolidAngleMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSolidAngleMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1040]); }
|
|
void Ifc4x3_rc1::IfcSolidAngleMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcSolidAngleMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcSoundPowerLevelMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSoundPowerLevelMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1044]); }
|
|
void Ifc4x3_rc1::IfcSoundPowerLevelMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcSoundPowerLevelMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcSoundPowerMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSoundPowerMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1045]); }
|
|
void Ifc4x3_rc1::IfcSoundPowerMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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|
Ifc4x3_rc1::IfcSoundPowerMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcSoundPressureLevelMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSoundPressureLevelMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1046]); }
|
|
void Ifc4x3_rc1::IfcSoundPressureLevelMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcSoundPressureLevelMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcSoundPressureMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSoundPressureMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1047]); }
|
|
void Ifc4x3_rc1::IfcSoundPressureMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcSoundPressureMeasure::operator double() const { return get_attribute_value(0); }
|
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// Function implementations for IfcSpecificHeatCapacityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSpecificHeatCapacityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1063]); }
|
|
void Ifc4x3_rc1::IfcSpecificHeatCapacityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcSpecificHeatCapacityMeasure::operator double() const { return get_attribute_value(0); }
|
|
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// Function implementations for IfcSpecularExponent
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSpecularExponent::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1064]); }
|
|
void Ifc4x3_rc1::IfcSpecularExponent::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcSpecularExponent::operator double() const { return get_attribute_value(0); }
|
|
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// Function implementations for IfcSpecularRoughness
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcSpecularRoughness::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1066]); }
|
|
void Ifc4x3_rc1::IfcSpecularRoughness::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcSpecularRoughness::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcTemperatureGradientMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTemperatureGradientMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1171]); }
|
|
void Ifc4x3_rc1::IfcTemperatureGradientMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTemperatureGradientMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
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// Function implementations for IfcTemperatureRateOfChangeMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTemperatureRateOfChangeMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1172]); }
|
|
void Ifc4x3_rc1::IfcTemperatureRateOfChangeMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTemperatureRateOfChangeMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcText
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcText::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1184]); }
|
|
void Ifc4x3_rc1::IfcText::initialize(std::string v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcText::operator std::string() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcTextAlignment
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTextAlignment::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1185]); }
|
|
void Ifc4x3_rc1::IfcTextAlignment::initialize(std::string v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTextAlignment::operator std::string() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcTextDecoration
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTextDecoration::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1186]); }
|
|
void Ifc4x3_rc1::IfcTextDecoration::initialize(std::string v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTextDecoration::operator std::string() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcTextFontName
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTextFontName::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1187]); }
|
|
void Ifc4x3_rc1::IfcTextFontName::initialize(std::string v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTextFontName::operator std::string() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcTextTransformation
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTextTransformation::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1196]); }
|
|
void Ifc4x3_rc1::IfcTextTransformation::initialize(std::string v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTextTransformation::operator std::string() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcThermalAdmittanceMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcThermalAdmittanceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1202]); }
|
|
void Ifc4x3_rc1::IfcThermalAdmittanceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcThermalAdmittanceMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcThermalConductivityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcThermalConductivityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1203]); }
|
|
void Ifc4x3_rc1::IfcThermalConductivityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcThermalConductivityMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcThermalExpansionCoefficientMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcThermalExpansionCoefficientMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1204]); }
|
|
void Ifc4x3_rc1::IfcThermalExpansionCoefficientMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcThermalExpansionCoefficientMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcThermalResistanceMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcThermalResistanceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1205]); }
|
|
void Ifc4x3_rc1::IfcThermalResistanceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcThermalResistanceMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcThermalTransmittanceMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcThermalTransmittanceMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1206]); }
|
|
void Ifc4x3_rc1::IfcThermalTransmittanceMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcThermalTransmittanceMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcThermodynamicTemperatureMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcThermodynamicTemperatureMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1207]); }
|
|
void Ifc4x3_rc1::IfcThermodynamicTemperatureMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcThermodynamicTemperatureMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcTime
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTime::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1208]); }
|
|
void Ifc4x3_rc1::IfcTime::initialize(std::string v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTime::operator std::string() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcTimeMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTimeMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1209]); }
|
|
void Ifc4x3_rc1::IfcTimeMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTimeMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcTimeStamp
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTimeStamp::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1215]); }
|
|
void Ifc4x3_rc1::IfcTimeStamp::initialize(int v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTimeStamp::operator int() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcTorqueMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcTorqueMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1219]); }
|
|
void Ifc4x3_rc1::IfcTorqueMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcTorqueMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcURIReference
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcURIReference::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1258]); }
|
|
void Ifc4x3_rc1::IfcURIReference::initialize(std::string v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcURIReference::operator std::string() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcVaporPermeabilityMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcVaporPermeabilityMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1264]); }
|
|
void Ifc4x3_rc1::IfcVaporPermeabilityMeasure::initialize(double v) { set_attribute_value(0, (v)); }
|
|
Ifc4x3_rc1::IfcVaporPermeabilityMeasure::operator double() const { return get_attribute_value(0); }
|
|
|
|
// Function implementations for IfcVolumeMeasure
|
|
const IfcParse::type_declaration& Ifc4x3_rc1::IfcVolumeMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1281]); }
|
|
void Ifc4x3_rc1::IfcVolumeMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcVolumeMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcVolumetricFlowRateMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcVolumetricFlowRateMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1282]); }
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void Ifc4x3_rc1::IfcVolumetricFlowRateMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcVolumetricFlowRateMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcWarpingConstantMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcWarpingConstantMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1288]); }
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void Ifc4x3_rc1::IfcWarpingConstantMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcWarpingConstantMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcWarpingMomentMeasure
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const IfcParse::type_declaration& Ifc4x3_rc1::IfcWarpingMomentMeasure::Class() { return *((IfcParse::type_declaration*)IFC4X3_RC1_types[1289]); }
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void Ifc4x3_rc1::IfcWarpingMomentMeasure::initialize(double v) { set_attribute_value(0, (v)); }
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Ifc4x3_rc1::IfcWarpingMomentMeasure::operator double() const { return get_attribute_value(0); }
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// Function implementations for IfcActionRequest
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std::optional< ::Ifc4x3_rc1::IfcActionRequestTypeEnum::Value > Ifc4x3_rc1::IfcActionRequest::PredefinedType() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcActionRequestTypeEnum::FromString(get_attribute_value(6)); }
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void Ifc4x3_rc1::IfcActionRequest::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcActionRequestTypeEnum::Value >& v) { if (v) {set_attribute_value(6, EnumerationReference(&::Ifc4x3_rc1::IfcActionRequestTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcActionRequest::Status() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcActionRequest::setStatus(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcActionRequest::LongDescription() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcActionRequest::setLongDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcActionRequest::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[2]); }
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void Ifc4x3_rc1::IfcActionRequest::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< ::Ifc4x3_rc1::IfcActionRequestTypeEnum::Value > v7_PredefinedType, std::optional< std::string > v8_Status, std::optional< std::string > v9_LongDescription) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_PredefinedType) {set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcActionRequestTypeEnum::Class(),(size_t)*v7_PredefinedType))); } if (v8_Status) {set_attribute_value(7, (*v8_Status)); } if (v9_LongDescription) {set_attribute_value(8, (*v9_LongDescription)); } }
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// Function implementations for IfcActor
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::Ifc4x3_rc1::IfcActorSelect Ifc4x3_rc1::IfcActor::TheActor() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcActorSelect>(); }
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void Ifc4x3_rc1::IfcActor::setTheActor(const ::Ifc4x3_rc1::IfcActorSelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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std::vector<::Ifc4x3_rc1::IfcRelAssignsToActor> Ifc4x3_rc1::IfcActor::IsActingUpon() const { return cast_vector<IfcRelAssignsToActor>(file()->getInverse(data()->id(), IFC4X3_RC1_types[912], 6)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcActor::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[6]); }
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void Ifc4x3_rc1::IfcActor::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcActorSelect v6_TheActor) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_TheActor)); }
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// Function implementations for IfcActorRole
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::Ifc4x3_rc1::IfcRoleEnum::Value Ifc4x3_rc1::IfcActorRole::Role() const { return ::Ifc4x3_rc1::IfcRoleEnum::FromString(get_attribute_value(0)); }
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void Ifc4x3_rc1::IfcActorRole::setRole(const ::Ifc4x3_rc1::IfcRoleEnum::Value& v) { set_attribute_value(0, EnumerationReference(&::Ifc4x3_rc1::IfcRoleEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcActorRole::UserDefinedRole() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcActorRole::setUserDefinedRole(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcActorRole::Description() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcActorRole::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcActorRole::HasExternalReference() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcActorRole::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[7]); }
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void Ifc4x3_rc1::IfcActorRole::initialize(::Ifc4x3_rc1::IfcRoleEnum::Value v1_Role, std::optional< std::string > v2_UserDefinedRole, std::optional< std::string > v3_Description) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcRoleEnum::Class(),(size_t)v1_Role))); if (v2_UserDefinedRole) {set_attribute_value(1, (*v2_UserDefinedRole)); } if (v3_Description) {set_attribute_value(2, (*v3_Description)); } }
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// Function implementations for IfcActuator
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std::optional< ::Ifc4x3_rc1::IfcActuatorTypeEnum::Value > Ifc4x3_rc1::IfcActuator::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcActuatorTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcActuator::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcActuatorTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcActuatorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcActuator::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[9]); }
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void Ifc4x3_rc1::IfcActuator::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcActuatorTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcActuatorTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcActuatorType
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::Ifc4x3_rc1::IfcActuatorTypeEnum::Value Ifc4x3_rc1::IfcActuatorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcActuatorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcActuatorType::setPredefinedType(const ::Ifc4x3_rc1::IfcActuatorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcActuatorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcActuatorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[10]); }
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void Ifc4x3_rc1::IfcActuatorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcActuatorTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcActuatorTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcAddress
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std::optional< ::Ifc4x3_rc1::IfcAddressTypeEnum::Value > Ifc4x3_rc1::IfcAddress::Purpose() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcAddressTypeEnum::FromString(get_attribute_value(0)); }
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void Ifc4x3_rc1::IfcAddress::setPurpose(const std::optional< ::Ifc4x3_rc1::IfcAddressTypeEnum::Value >& v) { if (v) {set_attribute_value(0, EnumerationReference(&::Ifc4x3_rc1::IfcAddressTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcAddress::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcAddress::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcAddress::UserDefinedPurpose() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcAddress::setUserDefinedPurpose(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::vector<::Ifc4x3_rc1::IfcPerson> Ifc4x3_rc1::IfcAddress::OfPerson() const { return cast_vector<IfcPerson>(file()->getInverse(data()->id(), IFC4X3_RC1_types[749], 7)); }
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std::vector<::Ifc4x3_rc1::IfcOrganization> Ifc4x3_rc1::IfcAddress::OfOrganization() const { return cast_vector<IfcOrganization>(file()->getInverse(data()->id(), IFC4X3_RC1_types[728], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAddress::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[12]); }
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void Ifc4x3_rc1::IfcAddress::initialize(std::optional< ::Ifc4x3_rc1::IfcAddressTypeEnum::Value > v1_Purpose, std::optional< std::string > v2_Description, std::optional< std::string > v3_UserDefinedPurpose) { if (v1_Purpose) {set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcAddressTypeEnum::Class(),(size_t)*v1_Purpose))); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_UserDefinedPurpose) {set_attribute_value(2, (*v3_UserDefinedPurpose)); } }
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// Function implementations for IfcAdvancedBrep
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const IfcParse::entity& Ifc4x3_rc1::IfcAdvancedBrep::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[14]); }
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void Ifc4x3_rc1::IfcAdvancedBrep::initialize(::Ifc4x3_rc1::IfcClosedShell v1_Outer) { set_attribute_value(0, (v1_Outer)); }
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// Function implementations for IfcAdvancedBrepWithVoids
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std::vector< ::Ifc4x3_rc1::IfcClosedShell > Ifc4x3_rc1::IfcAdvancedBrepWithVoids::Voids() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcClosedShell>(es); }
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void Ifc4x3_rc1::IfcAdvancedBrepWithVoids::setVoids(const std::vector< ::Ifc4x3_rc1::IfcClosedShell >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAdvancedBrepWithVoids::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[15]); }
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void Ifc4x3_rc1::IfcAdvancedBrepWithVoids::initialize(::Ifc4x3_rc1::IfcClosedShell v1_Outer, std::vector< ::Ifc4x3_rc1::IfcClosedShell > v2_Voids) { set_attribute_value(0, (v1_Outer));set_attribute_value(1, cast_vector<express::Base>(v2_Voids)); }
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// Function implementations for IfcAdvancedFace
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const IfcParse::entity& Ifc4x3_rc1::IfcAdvancedFace::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[16]); }
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void Ifc4x3_rc1::IfcAdvancedFace::initialize(std::vector< ::Ifc4x3_rc1::IfcFaceBound > v1_Bounds, ::Ifc4x3_rc1::IfcSurface v2_FaceSurface, bool v3_SameSense) { set_attribute_value(0, cast_vector<express::Base>(v1_Bounds));set_attribute_value(1, (v2_FaceSurface));set_attribute_value(2, (v3_SameSense)); }
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// Function implementations for IfcAirTerminal
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std::optional< ::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value > Ifc4x3_rc1::IfcAirTerminal::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcAirTerminalTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcAirTerminal::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAirTerminal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[17]); }
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void Ifc4x3_rc1::IfcAirTerminal::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcAirTerminalBox
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std::optional< ::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value > Ifc4x3_rc1::IfcAirTerminalBox::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcAirTerminalBox::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAirTerminalBox::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[18]); }
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void Ifc4x3_rc1::IfcAirTerminalBox::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcAirTerminalBoxType
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::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value Ifc4x3_rc1::IfcAirTerminalBoxType::PredefinedType() const { return ::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcAirTerminalBoxType::setPredefinedType(const ::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAirTerminalBoxType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[19]); }
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void Ifc4x3_rc1::IfcAirTerminalBoxType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcAirTerminalBoxTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcAirTerminalType
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::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value Ifc4x3_rc1::IfcAirTerminalType::PredefinedType() const { return ::Ifc4x3_rc1::IfcAirTerminalTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcAirTerminalType::setPredefinedType(const ::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAirTerminalType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[21]); }
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void Ifc4x3_rc1::IfcAirTerminalType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcAirTerminalTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcAirToAirHeatRecovery
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std::optional< ::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value > Ifc4x3_rc1::IfcAirToAirHeatRecovery::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcAirToAirHeatRecovery::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAirToAirHeatRecovery::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[23]); }
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void Ifc4x3_rc1::IfcAirToAirHeatRecovery::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcAirToAirHeatRecoveryType
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::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value Ifc4x3_rc1::IfcAirToAirHeatRecoveryType::PredefinedType() const { return ::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcAirToAirHeatRecoveryType::setPredefinedType(const ::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAirToAirHeatRecoveryType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[24]); }
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void Ifc4x3_rc1::IfcAirToAirHeatRecoveryType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcAirToAirHeatRecoveryTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcAlarm
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std::optional< ::Ifc4x3_rc1::IfcAlarmTypeEnum::Value > Ifc4x3_rc1::IfcAlarm::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcAlarmTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcAlarm::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcAlarmTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcAlarmTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlarm::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[26]); }
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void Ifc4x3_rc1::IfcAlarm::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcAlarmTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcAlarmTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcAlarmType
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::Ifc4x3_rc1::IfcAlarmTypeEnum::Value Ifc4x3_rc1::IfcAlarmType::PredefinedType() const { return ::Ifc4x3_rc1::IfcAlarmTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcAlarmType::setPredefinedType(const ::Ifc4x3_rc1::IfcAlarmTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcAlarmTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlarmType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[27]); }
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void Ifc4x3_rc1::IfcAlarmType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcAlarmTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcAlarmTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcAlignment
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std::optional< ::Ifc4x3_rc1::IfcAlignmentTypeEnum::Value > Ifc4x3_rc1::IfcAlignment::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcAlignmentTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcAlignment::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcAlignmentTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcAlignmentTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[29]); }
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void Ifc4x3_rc1::IfcAlignment::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcCurve v8_Axis, std::optional< ::Ifc4x3_rc1::IfcAlignmentTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_Axis)); if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcAlignmentTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcAlignment2DCant
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std::vector< ::Ifc4x3_rc1::IfcAlignment2DCantSegment > Ifc4x3_rc1::IfcAlignment2DCant::Segments() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcAlignment2DCantSegment>(es); }
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void Ifc4x3_rc1::IfcAlignment2DCant::setSegments(const std::vector< ::Ifc4x3_rc1::IfcAlignment2DCantSegment >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcAlignment2DCant::RailHeadDistance() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCant::setRailHeadDistance(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DCant::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[30]); }
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void Ifc4x3_rc1::IfcAlignment2DCant::initialize(std::vector< ::Ifc4x3_rc1::IfcAlignment2DCantSegment > v1_Segments, double v2_RailHeadDistance) { set_attribute_value(0, cast_vector<express::Base>(v1_Segments));set_attribute_value(1, (v2_RailHeadDistance)); }
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// Function implementations for IfcAlignment2DCantSegLine
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DCantSegLine::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[31]); }
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void Ifc4x3_rc1::IfcAlignment2DCantSegLine::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag, double v4_StartDistAlong, double v5_HorizontalLength, double v6_StartCantLeft, std::optional< double > v7_EndCantLeft, double v8_StartCantRight, std::optional< double > v9_EndCantRight) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); }set_attribute_value(3, (v4_StartDistAlong));set_attribute_value(4, (v5_HorizontalLength));set_attribute_value(5, (v6_StartCantLeft)); if (v7_EndCantLeft) {set_attribute_value(6, (*v7_EndCantLeft)); }set_attribute_value(7, (v8_StartCantRight)); if (v9_EndCantRight) {set_attribute_value(8, (*v9_EndCantRight)); } }
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// Function implementations for IfcAlignment2DCantSegTransition
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std::optional< double > Ifc4x3_rc1::IfcAlignment2DCantSegTransition::StartRadius() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegTransition::setStartRadius(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcAlignment2DCantSegTransition::EndRadius() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegTransition::setEndRadius(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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bool Ifc4x3_rc1::IfcAlignment2DCantSegTransition::IsStartRadiusCCW() const { bool v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegTransition::setIsStartRadiusCCW(const bool& v) { set_attribute_value(11, v);if constexpr (false)unset_attribute_value(11); }
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bool Ifc4x3_rc1::IfcAlignment2DCantSegTransition::IsEndRadiusCCW() const { bool v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegTransition::setIsEndRadiusCCW(const bool& v) { set_attribute_value(12, v);if constexpr (false)unset_attribute_value(12); }
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::Ifc4x3_rc1::IfcTransitionCurveType::Value Ifc4x3_rc1::IfcAlignment2DCantSegTransition::TransitionCurveType() const { return ::Ifc4x3_rc1::IfcTransitionCurveType::FromString(get_attribute_value(13)); }
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void Ifc4x3_rc1::IfcAlignment2DCantSegTransition::setTransitionCurveType(const ::Ifc4x3_rc1::IfcTransitionCurveType::Value& v) { set_attribute_value(13, EnumerationReference(&::Ifc4x3_rc1::IfcTransitionCurveType::Class(), (size_t) v));if constexpr (false)unset_attribute_value(13); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DCantSegTransition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[33]); }
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void Ifc4x3_rc1::IfcAlignment2DCantSegTransition::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag, double v4_StartDistAlong, double v5_HorizontalLength, double v6_StartCantLeft, std::optional< double > v7_EndCantLeft, double v8_StartCantRight, std::optional< double > v9_EndCantRight, std::optional< double > v10_StartRadius, std::optional< double > v11_EndRadius, bool v12_IsStartRadiusCCW, bool v13_IsEndRadiusCCW, ::Ifc4x3_rc1::IfcTransitionCurveType::Value v14_TransitionCurveType) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); }set_attribute_value(3, (v4_StartDistAlong));set_attribute_value(4, (v5_HorizontalLength));set_attribute_value(5, (v6_StartCantLeft)); if (v7_EndCantLeft) {set_attribute_value(6, (*v7_EndCantLeft)); }set_attribute_value(7, (v8_StartCantRight)); if (v9_EndCantRight) {set_attribute_value(8, (*v9_EndCantRight)); } if (v10_StartRadius) {set_attribute_value(9, (*v10_StartRadius)); } if (v11_EndRadius) {set_attribute_value(10, (*v11_EndRadius)); }set_attribute_value(11, (v12_IsStartRadiusCCW));set_attribute_value(12, (v13_IsEndRadiusCCW));set_attribute_value(13, (EnumerationReference(&::Ifc4x3_rc1::IfcTransitionCurveType::Class(),(size_t)v14_TransitionCurveType))); }
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// Function implementations for IfcAlignment2DCantSegment
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double Ifc4x3_rc1::IfcAlignment2DCantSegment::StartDistAlong() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegment::setStartDistAlong(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcAlignment2DCantSegment::HorizontalLength() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegment::setHorizontalLength(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcAlignment2DCantSegment::StartCantLeft() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegment::setStartCantLeft(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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std::optional< double > Ifc4x3_rc1::IfcAlignment2DCantSegment::EndCantLeft() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegment::setEndCantLeft(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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double Ifc4x3_rc1::IfcAlignment2DCantSegment::StartCantRight() const { double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegment::setStartCantRight(const double& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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std::optional< double > Ifc4x3_rc1::IfcAlignment2DCantSegment::EndCantRight() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcAlignment2DCantSegment::setEndCantRight(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::vector<::Ifc4x3_rc1::IfcAlignment2DCant> Ifc4x3_rc1::IfcAlignment2DCantSegment::ToCant() const { return cast_vector<IfcAlignment2DCant>(file()->getInverse(data()->id(), IFC4X3_RC1_types[30], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DCantSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[32]); }
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void Ifc4x3_rc1::IfcAlignment2DCantSegment::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag, double v4_StartDistAlong, double v5_HorizontalLength, double v6_StartCantLeft, std::optional< double > v7_EndCantLeft, double v8_StartCantRight, std::optional< double > v9_EndCantRight) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); }set_attribute_value(3, (v4_StartDistAlong));set_attribute_value(4, (v5_HorizontalLength));set_attribute_value(5, (v6_StartCantLeft)); if (v7_EndCantLeft) {set_attribute_value(6, (*v7_EndCantLeft)); }set_attribute_value(7, (v8_StartCantRight)); if (v9_EndCantRight) {set_attribute_value(8, (*v9_EndCantRight)); } }
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// Function implementations for IfcAlignment2DHorizontal
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std::optional< double > Ifc4x3_rc1::IfcAlignment2DHorizontal::StartDistAlong() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } double v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcAlignment2DHorizontal::setStartDistAlong(const std::optional< double >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::vector< ::Ifc4x3_rc1::IfcAlignment2DHorizontalSegment > Ifc4x3_rc1::IfcAlignment2DHorizontal::Segments() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcAlignment2DHorizontalSegment>(es); }
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void Ifc4x3_rc1::IfcAlignment2DHorizontal::setSegments(const std::vector< ::Ifc4x3_rc1::IfcAlignment2DHorizontalSegment >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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std::vector<::Ifc4x3_rc1::IfcAlignmentCurve> Ifc4x3_rc1::IfcAlignment2DHorizontal::ToAlignmentCurve() const { return cast_vector<IfcAlignmentCurve>(file()->getInverse(data()->id(), IFC4X3_RC1_types[43], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DHorizontal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[34]); }
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void Ifc4x3_rc1::IfcAlignment2DHorizontal::initialize(std::optional< double > v1_StartDistAlong, std::vector< ::Ifc4x3_rc1::IfcAlignment2DHorizontalSegment > v2_Segments) { if (v1_StartDistAlong) {set_attribute_value(0, (*v1_StartDistAlong)); }set_attribute_value(1, cast_vector<express::Base>(v2_Segments)); }
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// Function implementations for IfcAlignment2DHorizontalSegment
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::Ifc4x3_rc1::IfcCurveSegment2D Ifc4x3_rc1::IfcAlignment2DHorizontalSegment::CurveGeometry() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcCurveSegment2D>(); }
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void Ifc4x3_rc1::IfcAlignment2DHorizontalSegment::setCurveGeometry(const ::Ifc4x3_rc1::IfcCurveSegment2D& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::vector<::Ifc4x3_rc1::IfcAlignment2DHorizontal> Ifc4x3_rc1::IfcAlignment2DHorizontalSegment::ToHorizontal() const { return cast_vector<IfcAlignment2DHorizontal>(file()->getInverse(data()->id(), IFC4X3_RC1_types[34], 1)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DHorizontalSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[35]); }
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void Ifc4x3_rc1::IfcAlignment2DHorizontalSegment::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag, ::Ifc4x3_rc1::IfcCurveSegment2D v4_CurveGeometry) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); }set_attribute_value(3, (v4_CurveGeometry)); }
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// Function implementations for IfcAlignment2DSegment
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std::optional< bool > Ifc4x3_rc1::IfcAlignment2DSegment::TangentialContinuity() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } bool v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcAlignment2DSegment::setTangentialContinuity(const std::optional< bool >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcAlignment2DSegment::StartTag() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcAlignment2DSegment::setStartTag(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcAlignment2DSegment::EndTag() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcAlignment2DSegment::setEndTag(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[36]); }
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void Ifc4x3_rc1::IfcAlignment2DSegment::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); } }
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// Function implementations for IfcAlignment2DVerSegCircularArc
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double Ifc4x3_rc1::IfcAlignment2DVerSegCircularArc::Radius() const { double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerSegCircularArc::setRadius(const double& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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bool Ifc4x3_rc1::IfcAlignment2DVerSegCircularArc::IsConvex() const { bool v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerSegCircularArc::setIsConvex(const bool& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DVerSegCircularArc::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[37]); }
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void Ifc4x3_rc1::IfcAlignment2DVerSegCircularArc::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag, double v4_StartDistAlong, double v5_HorizontalLength, double v6_StartHeight, double v7_StartGradient, double v8_Radius, bool v9_IsConvex) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); }set_attribute_value(3, (v4_StartDistAlong));set_attribute_value(4, (v5_HorizontalLength));set_attribute_value(5, (v6_StartHeight));set_attribute_value(6, (v7_StartGradient));set_attribute_value(7, (v8_Radius));set_attribute_value(8, (v9_IsConvex)); }
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// Function implementations for IfcAlignment2DVerSegLine
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DVerSegLine::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[38]); }
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void Ifc4x3_rc1::IfcAlignment2DVerSegLine::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag, double v4_StartDistAlong, double v5_HorizontalLength, double v6_StartHeight, double v7_StartGradient) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); }set_attribute_value(3, (v4_StartDistAlong));set_attribute_value(4, (v5_HorizontalLength));set_attribute_value(5, (v6_StartHeight));set_attribute_value(6, (v7_StartGradient)); }
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// Function implementations for IfcAlignment2DVerSegParabolicArc
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double Ifc4x3_rc1::IfcAlignment2DVerSegParabolicArc::ParabolaConstant() const { double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerSegParabolicArc::setParabolaConstant(const double& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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bool Ifc4x3_rc1::IfcAlignment2DVerSegParabolicArc::IsConvex() const { bool v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerSegParabolicArc::setIsConvex(const bool& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DVerSegParabolicArc::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[39]); }
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void Ifc4x3_rc1::IfcAlignment2DVerSegParabolicArc::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag, double v4_StartDistAlong, double v5_HorizontalLength, double v6_StartHeight, double v7_StartGradient, double v8_ParabolaConstant, bool v9_IsConvex) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); }set_attribute_value(3, (v4_StartDistAlong));set_attribute_value(4, (v5_HorizontalLength));set_attribute_value(5, (v6_StartHeight));set_attribute_value(6, (v7_StartGradient));set_attribute_value(7, (v8_ParabolaConstant));set_attribute_value(8, (v9_IsConvex)); }
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// Function implementations for IfcAlignment2DVerSegTransition
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std::optional< double > Ifc4x3_rc1::IfcAlignment2DVerSegTransition::StartRadius() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerSegTransition::setStartRadius(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< double > Ifc4x3_rc1::IfcAlignment2DVerSegTransition::EndRadius() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerSegTransition::setEndRadius(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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bool Ifc4x3_rc1::IfcAlignment2DVerSegTransition::IsStartRadiusCCW() const { bool v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerSegTransition::setIsStartRadiusCCW(const bool& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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bool Ifc4x3_rc1::IfcAlignment2DVerSegTransition::IsEndRadiusCCW() const { bool v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerSegTransition::setIsEndRadiusCCW(const bool& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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::Ifc4x3_rc1::IfcTransitionCurveType::Value Ifc4x3_rc1::IfcAlignment2DVerSegTransition::TransitionCurveType() const { return ::Ifc4x3_rc1::IfcTransitionCurveType::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcAlignment2DVerSegTransition::setTransitionCurveType(const ::Ifc4x3_rc1::IfcTransitionCurveType::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcTransitionCurveType::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DVerSegTransition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[40]); }
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void Ifc4x3_rc1::IfcAlignment2DVerSegTransition::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag, double v4_StartDistAlong, double v5_HorizontalLength, double v6_StartHeight, double v7_StartGradient, std::optional< double > v8_StartRadius, std::optional< double > v9_EndRadius, bool v10_IsStartRadiusCCW, bool v11_IsEndRadiusCCW, ::Ifc4x3_rc1::IfcTransitionCurveType::Value v12_TransitionCurveType) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); }set_attribute_value(3, (v4_StartDistAlong));set_attribute_value(4, (v5_HorizontalLength));set_attribute_value(5, (v6_StartHeight));set_attribute_value(6, (v7_StartGradient)); if (v8_StartRadius) {set_attribute_value(7, (*v8_StartRadius)); } if (v9_EndRadius) {set_attribute_value(8, (*v9_EndRadius)); }set_attribute_value(9, (v10_IsStartRadiusCCW));set_attribute_value(10, (v11_IsEndRadiusCCW));set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcTransitionCurveType::Class(),(size_t)v12_TransitionCurveType))); }
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// Function implementations for IfcAlignment2DVertical
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std::vector< ::Ifc4x3_rc1::IfcAlignment2DVerticalSegment > Ifc4x3_rc1::IfcAlignment2DVertical::Segments() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcAlignment2DVerticalSegment>(es); }
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void Ifc4x3_rc1::IfcAlignment2DVertical::setSegments(const std::vector< ::Ifc4x3_rc1::IfcAlignment2DVerticalSegment >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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std::vector<::Ifc4x3_rc1::IfcAlignmentCurve> Ifc4x3_rc1::IfcAlignment2DVertical::ToAlignmentCurve() const { return cast_vector<IfcAlignmentCurve>(file()->getInverse(data()->id(), IFC4X3_RC1_types[43], 1)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DVertical::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[41]); }
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void Ifc4x3_rc1::IfcAlignment2DVertical::initialize(std::vector< ::Ifc4x3_rc1::IfcAlignment2DVerticalSegment > v1_Segments) { set_attribute_value(0, cast_vector<express::Base>(v1_Segments)); }
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// Function implementations for IfcAlignment2DVerticalSegment
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double Ifc4x3_rc1::IfcAlignment2DVerticalSegment::StartDistAlong() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerticalSegment::setStartDistAlong(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcAlignment2DVerticalSegment::HorizontalLength() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerticalSegment::setHorizontalLength(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcAlignment2DVerticalSegment::StartHeight() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerticalSegment::setStartHeight(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcAlignment2DVerticalSegment::StartGradient() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcAlignment2DVerticalSegment::setStartGradient(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::vector<::Ifc4x3_rc1::IfcAlignment2DVertical> Ifc4x3_rc1::IfcAlignment2DVerticalSegment::ToVertical() const { return cast_vector<IfcAlignment2DVertical>(file()->getInverse(data()->id(), IFC4X3_RC1_types[41], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignment2DVerticalSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[42]); }
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void Ifc4x3_rc1::IfcAlignment2DVerticalSegment::initialize(std::optional< bool > v1_TangentialContinuity, std::optional< std::string > v2_StartTag, std::optional< std::string > v3_EndTag, double v4_StartDistAlong, double v5_HorizontalLength, double v6_StartHeight, double v7_StartGradient) { if (v1_TangentialContinuity) {set_attribute_value(0, (*v1_TangentialContinuity)); } if (v2_StartTag) {set_attribute_value(1, (*v2_StartTag)); } if (v3_EndTag) {set_attribute_value(2, (*v3_EndTag)); }set_attribute_value(3, (v4_StartDistAlong));set_attribute_value(4, (v5_HorizontalLength));set_attribute_value(5, (v6_StartHeight));set_attribute_value(6, (v7_StartGradient)); }
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// Function implementations for IfcAlignmentCurve
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::Ifc4x3_rc1::IfcAlignment2DHorizontal Ifc4x3_rc1::IfcAlignmentCurve::Horizontal() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcAlignment2DHorizontal>(); }
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void Ifc4x3_rc1::IfcAlignmentCurve::setHorizontal(const ::Ifc4x3_rc1::IfcAlignment2DHorizontal& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcAlignment2DVertical Ifc4x3_rc1::IfcAlignmentCurve::Vertical() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcAlignment2DVertical{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcAlignment2DVertical>(); }
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void Ifc4x3_rc1::IfcAlignmentCurve::setVertical(const ::Ifc4x3_rc1::IfcAlignment2DVertical& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< std::string > Ifc4x3_rc1::IfcAlignmentCurve::Tag() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcAlignmentCurve::setTag(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAlignmentCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[43]); }
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void Ifc4x3_rc1::IfcAlignmentCurve::initialize(::Ifc4x3_rc1::IfcAlignment2DHorizontal v1_Horizontal, ::Ifc4x3_rc1::IfcAlignment2DVertical v2_Vertical, std::optional< std::string > v3_Tag) { set_attribute_value(0, (v1_Horizontal));set_attribute_value(1, (v2_Vertical)); if (v3_Tag) {set_attribute_value(2, (*v3_Tag)); } }
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// Function implementations for IfcAnnotation
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std::optional< ::Ifc4x3_rc1::IfcAnnotationTypeEnum::Value > Ifc4x3_rc1::IfcAnnotation::PredefinedType() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcAnnotationTypeEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcAnnotation::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcAnnotationTypeEnum::Value >& v) { if (v) {set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcAnnotationTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(7);} }
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std::vector<::Ifc4x3_rc1::IfcRelContainedInSpatialStructure> Ifc4x3_rc1::IfcAnnotation::ContainedInStructure() const { return cast_vector<IfcRelContainedInSpatialStructure>(file()->getInverse(data()->id(), IFC4X3_RC1_types[937], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAnnotation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[49]); }
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void Ifc4x3_rc1::IfcAnnotation::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< ::Ifc4x3_rc1::IfcAnnotationTypeEnum::Value > v8_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_PredefinedType) {set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcAnnotationTypeEnum::Class(),(size_t)*v8_PredefinedType))); } }
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// Function implementations for IfcAnnotationFillArea
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcAnnotationFillArea::OuterBoundary() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcAnnotationFillArea::setOuterBoundary(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcCurve > > Ifc4x3_rc1::IfcAnnotationFillArea::InnerBoundaries() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcCurve>(es); }
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void Ifc4x3_rc1::IfcAnnotationFillArea::setInnerBoundaries(const std::optional< std::vector< ::Ifc4x3_rc1::IfcCurve > >& v) { if (v) {set_attribute_value(1, cast_vector<express::Base>(*v));} else {unset_attribute_value(1);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAnnotationFillArea::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[50]); }
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void Ifc4x3_rc1::IfcAnnotationFillArea::initialize(::Ifc4x3_rc1::IfcCurve v1_OuterBoundary, std::optional< std::vector< ::Ifc4x3_rc1::IfcCurve > > v2_InnerBoundaries) { set_attribute_value(0, (v1_OuterBoundary)); if (v2_InnerBoundaries) {set_attribute_value(1, cast_vector<express::Base>(*v2_InnerBoundaries)); } }
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// Function implementations for IfcApplication
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::Ifc4x3_rc1::IfcOrganization Ifc4x3_rc1::IfcApplication::ApplicationDeveloper() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcOrganization>(); }
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void Ifc4x3_rc1::IfcApplication::setApplicationDeveloper(const ::Ifc4x3_rc1::IfcOrganization& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::string Ifc4x3_rc1::IfcApplication::Version() const { std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcApplication::setVersion(const std::string& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::string Ifc4x3_rc1::IfcApplication::ApplicationFullName() const { std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcApplication::setApplicationFullName(const std::string& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::string Ifc4x3_rc1::IfcApplication::ApplicationIdentifier() const { std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcApplication::setApplicationIdentifier(const std::string& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcApplication::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[52]); }
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void Ifc4x3_rc1::IfcApplication::initialize(::Ifc4x3_rc1::IfcOrganization v1_ApplicationDeveloper, std::string v2_Version, std::string v3_ApplicationFullName, std::string v4_ApplicationIdentifier) { set_attribute_value(0, (v1_ApplicationDeveloper));set_attribute_value(1, (v2_Version));set_attribute_value(2, (v3_ApplicationFullName));set_attribute_value(3, (v4_ApplicationIdentifier)); }
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// Function implementations for IfcAppliedValue
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std::optional< std::string > Ifc4x3_rc1::IfcAppliedValue::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcAppliedValue::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcAppliedValue::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcAppliedValue::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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::Ifc4x3_rc1::IfcAppliedValueSelect Ifc4x3_rc1::IfcAppliedValue::AppliedValue() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcAppliedValueSelect{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcAppliedValueSelect>(); }
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void Ifc4x3_rc1::IfcAppliedValue::setAppliedValue(const ::Ifc4x3_rc1::IfcAppliedValueSelect& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcMeasureWithUnit Ifc4x3_rc1::IfcAppliedValue::UnitBasis() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcMeasureWithUnit{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcMeasureWithUnit>(); }
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void Ifc4x3_rc1::IfcAppliedValue::setUnitBasis(const ::Ifc4x3_rc1::IfcMeasureWithUnit& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcAppliedValue::ApplicableDate() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcAppliedValue::setApplicableDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcAppliedValue::FixedUntilDate() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcAppliedValue::setFixedUntilDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcAppliedValue::Category() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcAppliedValue::setCategory(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcAppliedValue::Condition() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcAppliedValue::setCondition(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< ::Ifc4x3_rc1::IfcArithmeticOperatorEnum::Value > Ifc4x3_rc1::IfcAppliedValue::ArithmeticOperator() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcArithmeticOperatorEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcAppliedValue::setArithmeticOperator(const std::optional< ::Ifc4x3_rc1::IfcArithmeticOperatorEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcArithmeticOperatorEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > Ifc4x3_rc1::IfcAppliedValue::Components() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(9); return cast_vector<::Ifc4x3_rc1::IfcAppliedValue>(es); }
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void Ifc4x3_rc1::IfcAppliedValue::setComponents(const std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > >& v) { if (v) {set_attribute_value(9, cast_vector<express::Base>(*v));} else {unset_attribute_value(9);} }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcAppliedValue::HasExternalReference() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAppliedValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[53]); }
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void Ifc4x3_rc1::IfcAppliedValue::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcAppliedValueSelect v3_AppliedValue, ::Ifc4x3_rc1::IfcMeasureWithUnit v4_UnitBasis, std::optional< std::string > v5_ApplicableDate, std::optional< std::string > v6_FixedUntilDate, std::optional< std::string > v7_Category, std::optional< std::string > v8_Condition, std::optional< ::Ifc4x3_rc1::IfcArithmeticOperatorEnum::Value > v9_ArithmeticOperator, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v10_Components) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_AppliedValue));set_attribute_value(3, (v4_UnitBasis)); if (v5_ApplicableDate) {set_attribute_value(4, (*v5_ApplicableDate)); } if (v6_FixedUntilDate) {set_attribute_value(5, (*v6_FixedUntilDate)); } if (v7_Category) {set_attribute_value(6, (*v7_Category)); } if (v8_Condition) {set_attribute_value(7, (*v8_Condition)); } if (v9_ArithmeticOperator) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcArithmeticOperatorEnum::Class(),(size_t)*v9_ArithmeticOperator))); } if (v10_Components) {set_attribute_value(9, cast_vector<express::Base>(*v10_Components)); } }
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// Function implementations for IfcApproval
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std::optional< std::string > Ifc4x3_rc1::IfcApproval::Identifier() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcApproval::setIdentifier(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcApproval::Name() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcApproval::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcApproval::Description() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcApproval::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::string > Ifc4x3_rc1::IfcApproval::TimeOfApproval() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcApproval::setTimeOfApproval(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcApproval::Status() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcApproval::setStatus(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcApproval::Level() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcApproval::setLevel(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcApproval::Qualifier() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcApproval::setQualifier(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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::Ifc4x3_rc1::IfcActorSelect Ifc4x3_rc1::IfcApproval::RequestingApproval() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcActorSelect{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcActorSelect>(); }
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void Ifc4x3_rc1::IfcApproval::setRequestingApproval(const ::Ifc4x3_rc1::IfcActorSelect& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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::Ifc4x3_rc1::IfcActorSelect Ifc4x3_rc1::IfcApproval::GivingApproval() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcActorSelect{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcActorSelect>(); }
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void Ifc4x3_rc1::IfcApproval::setGivingApproval(const ::Ifc4x3_rc1::IfcActorSelect& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcApproval::HasExternalReferences() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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std::vector<::Ifc4x3_rc1::IfcRelAssociatesApproval> Ifc4x3_rc1::IfcApproval::ApprovedObjects() const { return cast_vector<IfcRelAssociatesApproval>(file()->getInverse(data()->id(), IFC4X3_RC1_types[920], 5)); }
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std::vector<::Ifc4x3_rc1::IfcResourceApprovalRelationship> Ifc4x3_rc1::IfcApproval::ApprovedResources() const { return cast_vector<IfcResourceApprovalRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[966], 3)); }
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std::vector<::Ifc4x3_rc1::IfcApprovalRelationship> Ifc4x3_rc1::IfcApproval::IsRelatedWith() const { return cast_vector<IfcApprovalRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[56], 3)); }
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std::vector<::Ifc4x3_rc1::IfcApprovalRelationship> Ifc4x3_rc1::IfcApproval::Relates() const { return cast_vector<IfcApprovalRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[56], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcApproval::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[55]); }
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void Ifc4x3_rc1::IfcApproval::initialize(std::optional< std::string > v1_Identifier, std::optional< std::string > v2_Name, std::optional< std::string > v3_Description, std::optional< std::string > v4_TimeOfApproval, std::optional< std::string > v5_Status, std::optional< std::string > v6_Level, std::optional< std::string > v7_Qualifier, ::Ifc4x3_rc1::IfcActorSelect v8_RequestingApproval, ::Ifc4x3_rc1::IfcActorSelect v9_GivingApproval) { if (v1_Identifier) {set_attribute_value(0, (*v1_Identifier)); } if (v2_Name) {set_attribute_value(1, (*v2_Name)); } if (v3_Description) {set_attribute_value(2, (*v3_Description)); } if (v4_TimeOfApproval) {set_attribute_value(3, (*v4_TimeOfApproval)); } if (v5_Status) {set_attribute_value(4, (*v5_Status)); } if (v6_Level) {set_attribute_value(5, (*v6_Level)); } if (v7_Qualifier) {set_attribute_value(6, (*v7_Qualifier)); }set_attribute_value(7, (v8_RequestingApproval));set_attribute_value(8, (v9_GivingApproval)); }
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// Function implementations for IfcApprovalRelationship
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::Ifc4x3_rc1::IfcApproval Ifc4x3_rc1::IfcApprovalRelationship::RelatingApproval() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcApproval>(); }
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void Ifc4x3_rc1::IfcApprovalRelationship::setRelatingApproval(const ::Ifc4x3_rc1::IfcApproval& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector< ::Ifc4x3_rc1::IfcApproval > Ifc4x3_rc1::IfcApprovalRelationship::RelatedApprovals() const { std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcApproval>(es); }
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void Ifc4x3_rc1::IfcApprovalRelationship::setRelatedApprovals(const std::vector< ::Ifc4x3_rc1::IfcApproval >& v) { set_attribute_value(3, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcApprovalRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[56]); }
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void Ifc4x3_rc1::IfcApprovalRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcApproval v3_RelatingApproval, std::vector< ::Ifc4x3_rc1::IfcApproval > v4_RelatedApprovals) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_RelatingApproval));set_attribute_value(3, cast_vector<express::Base>(v4_RelatedApprovals)); }
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// Function implementations for IfcArbitraryClosedProfileDef
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcArbitraryClosedProfileDef::OuterCurve() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcArbitraryClosedProfileDef::setOuterCurve(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcArbitraryClosedProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[57]); }
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void Ifc4x3_rc1::IfcArbitraryClosedProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcCurve v3_OuterCurve) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_OuterCurve)); }
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// Function implementations for IfcArbitraryOpenProfileDef
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::Ifc4x3_rc1::IfcBoundedCurve Ifc4x3_rc1::IfcArbitraryOpenProfileDef::Curve() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcBoundedCurve>(); }
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void Ifc4x3_rc1::IfcArbitraryOpenProfileDef::setCurve(const ::Ifc4x3_rc1::IfcBoundedCurve& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcArbitraryOpenProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[58]); }
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void Ifc4x3_rc1::IfcArbitraryOpenProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcBoundedCurve v3_Curve) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Curve)); }
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// Function implementations for IfcArbitraryProfileDefWithVoids
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std::vector< ::Ifc4x3_rc1::IfcCurve > Ifc4x3_rc1::IfcArbitraryProfileDefWithVoids::InnerCurves() const { std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcCurve>(es); }
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void Ifc4x3_rc1::IfcArbitraryProfileDefWithVoids::setInnerCurves(const std::vector< ::Ifc4x3_rc1::IfcCurve >& v) { set_attribute_value(3, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcArbitraryProfileDefWithVoids::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[59]); }
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void Ifc4x3_rc1::IfcArbitraryProfileDefWithVoids::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcCurve v3_OuterCurve, std::vector< ::Ifc4x3_rc1::IfcCurve > v4_InnerCurves) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_OuterCurve));set_attribute_value(3, cast_vector<express::Base>(v4_InnerCurves)); }
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// Function implementations for IfcAsset
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std::optional< std::string > Ifc4x3_rc1::IfcAsset::Identification() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcAsset::setIdentification(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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::Ifc4x3_rc1::IfcCostValue Ifc4x3_rc1::IfcAsset::OriginalValue() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcCostValue{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcCostValue>(); }
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void Ifc4x3_rc1::IfcAsset::setOriginalValue(const ::Ifc4x3_rc1::IfcCostValue& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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::Ifc4x3_rc1::IfcCostValue Ifc4x3_rc1::IfcAsset::CurrentValue() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcCostValue{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcCostValue>(); }
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void Ifc4x3_rc1::IfcAsset::setCurrentValue(const ::Ifc4x3_rc1::IfcCostValue& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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::Ifc4x3_rc1::IfcCostValue Ifc4x3_rc1::IfcAsset::TotalReplacementCost() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcCostValue{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcCostValue>(); }
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void Ifc4x3_rc1::IfcAsset::setTotalReplacementCost(const ::Ifc4x3_rc1::IfcCostValue& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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::Ifc4x3_rc1::IfcActorSelect Ifc4x3_rc1::IfcAsset::Owner() const { if(get_attribute_value(9).isNull()) { return ::Ifc4x3_rc1::IfcActorSelect{}; } return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcActorSelect>(); }
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void Ifc4x3_rc1::IfcAsset::setOwner(const ::Ifc4x3_rc1::IfcActorSelect& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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::Ifc4x3_rc1::IfcActorSelect Ifc4x3_rc1::IfcAsset::User() const { if(get_attribute_value(10).isNull()) { return ::Ifc4x3_rc1::IfcActorSelect{}; } return ((express::Base)(get_attribute_value(10))).as<::Ifc4x3_rc1::IfcActorSelect>(); }
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void Ifc4x3_rc1::IfcAsset::setUser(const ::Ifc4x3_rc1::IfcActorSelect& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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::Ifc4x3_rc1::IfcPerson Ifc4x3_rc1::IfcAsset::ResponsiblePerson() const { if(get_attribute_value(11).isNull()) { return ::Ifc4x3_rc1::IfcPerson{}; } return ((express::Base)(get_attribute_value(11))).as<::Ifc4x3_rc1::IfcPerson>(); }
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void Ifc4x3_rc1::IfcAsset::setResponsiblePerson(const ::Ifc4x3_rc1::IfcPerson& v) { set_attribute_value(11, v);if constexpr (false)unset_attribute_value(11); }
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std::optional< std::string > Ifc4x3_rc1::IfcAsset::IncorporationDate() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } std::string v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcAsset::setIncorporationDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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::Ifc4x3_rc1::IfcCostValue Ifc4x3_rc1::IfcAsset::DepreciatedValue() const { if(get_attribute_value(13).isNull()) { return ::Ifc4x3_rc1::IfcCostValue{}; } return ((express::Base)(get_attribute_value(13))).as<::Ifc4x3_rc1::IfcCostValue>(); }
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void Ifc4x3_rc1::IfcAsset::setDepreciatedValue(const ::Ifc4x3_rc1::IfcCostValue& v) { set_attribute_value(13, v);if constexpr (false)unset_attribute_value(13); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAsset::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[65]); }
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void Ifc4x3_rc1::IfcAsset::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, ::Ifc4x3_rc1::IfcCostValue v7_OriginalValue, ::Ifc4x3_rc1::IfcCostValue v8_CurrentValue, ::Ifc4x3_rc1::IfcCostValue v9_TotalReplacementCost, ::Ifc4x3_rc1::IfcActorSelect v10_Owner, ::Ifc4x3_rc1::IfcActorSelect v11_User, ::Ifc4x3_rc1::IfcPerson v12_ResponsiblePerson, std::optional< std::string > v13_IncorporationDate, ::Ifc4x3_rc1::IfcCostValue v14_DepreciatedValue) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); }set_attribute_value(6, (v7_OriginalValue));set_attribute_value(7, (v8_CurrentValue));set_attribute_value(8, (v9_TotalReplacementCost));set_attribute_value(9, (v10_Owner));set_attribute_value(10, (v11_User));set_attribute_value(11, (v12_ResponsiblePerson)); if (v13_IncorporationDate) {set_attribute_value(12, (*v13_IncorporationDate)); }set_attribute_value(13, (v14_DepreciatedValue)); }
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// Function implementations for IfcAsymmetricIShapeProfileDef
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double Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::BottomFlangeWidth() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setBottomFlangeWidth(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::OverallDepth() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setOverallDepth(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::WebThickness() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setWebThickness(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::BottomFlangeThickness() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setBottomFlangeThickness(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< double > Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::BottomFlangeFilletRadius() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setBottomFlangeFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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double Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::TopFlangeWidth() const { double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setTopFlangeWidth(const double& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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std::optional< double > Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::TopFlangeThickness() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setTopFlangeThickness(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::TopFlangeFilletRadius() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setTopFlangeFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::BottomFlangeEdgeRadius() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setBottomFlangeEdgeRadius(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< double > Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::BottomFlangeSlope() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } double v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setBottomFlangeSlope(const std::optional< double >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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std::optional< double > Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::TopFlangeEdgeRadius() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } double v = get_attribute_value(13); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setTopFlangeEdgeRadius(const std::optional< double >& v) { if (v) {set_attribute_value(13, *v);} else {unset_attribute_value(13);} }
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std::optional< double > Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::TopFlangeSlope() const { if(get_attribute_value(14).isNull()) { return std::nullopt; } double v = get_attribute_value(14); return v; }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::setTopFlangeSlope(const std::optional< double >& v) { if (v) {set_attribute_value(14, *v);} else {unset_attribute_value(14);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[66]); }
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void Ifc4x3_rc1::IfcAsymmetricIShapeProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_BottomFlangeWidth, double v5_OverallDepth, double v6_WebThickness, double v7_BottomFlangeThickness, std::optional< double > v8_BottomFlangeFilletRadius, double v9_TopFlangeWidth, std::optional< double > v10_TopFlangeThickness, std::optional< double > v11_TopFlangeFilletRadius, std::optional< double > v12_BottomFlangeEdgeRadius, std::optional< double > v13_BottomFlangeSlope, std::optional< double > v14_TopFlangeEdgeRadius, std::optional< double > v15_TopFlangeSlope) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_BottomFlangeWidth));set_attribute_value(4, (v5_OverallDepth));set_attribute_value(5, (v6_WebThickness));set_attribute_value(6, (v7_BottomFlangeThickness)); if (v8_BottomFlangeFilletRadius) {set_attribute_value(7, (*v8_BottomFlangeFilletRadius)); }set_attribute_value(8, (v9_TopFlangeWidth)); if (v10_TopFlangeThickness) {set_attribute_value(9, (*v10_TopFlangeThickness)); } if (v11_TopFlangeFilletRadius) {set_attribute_value(10, (*v11_TopFlangeFilletRadius)); } if (v12_BottomFlangeEdgeRadius) {set_attribute_value(11, (*v12_BottomFlangeEdgeRadius)); } if (v13_BottomFlangeSlope) {set_attribute_value(12, (*v13_BottomFlangeSlope)); } if (v14_TopFlangeEdgeRadius) {set_attribute_value(13, (*v14_TopFlangeEdgeRadius)); } if (v15_TopFlangeSlope) {set_attribute_value(14, (*v15_TopFlangeSlope)); } }
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// Function implementations for IfcAudioVisualAppliance
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std::optional< ::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value > Ifc4x3_rc1::IfcAudioVisualAppliance::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcAudioVisualAppliance::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcAudioVisualAppliance::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[67]); }
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void Ifc4x3_rc1::IfcAudioVisualAppliance::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcAudioVisualApplianceType
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::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value Ifc4x3_rc1::IfcAudioVisualApplianceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcAudioVisualApplianceType::setPredefinedType(const ::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAudioVisualApplianceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[68]); }
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void Ifc4x3_rc1::IfcAudioVisualApplianceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcAudioVisualApplianceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcAxis1Placement
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcAxis1Placement::Axis() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcDirection{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcAxis1Placement::setAxis(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAxis1Placement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[70]); }
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void Ifc4x3_rc1::IfcAxis1Placement::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_Location, ::Ifc4x3_rc1::IfcDirection v2_Axis) { set_attribute_value(0, (v1_Location));set_attribute_value(1, (v2_Axis)); }
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// Function implementations for IfcAxis2Placement2D
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcAxis2Placement2D::RefDirection() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcDirection{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcAxis2Placement2D::setRefDirection(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAxis2Placement2D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[72]); }
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void Ifc4x3_rc1::IfcAxis2Placement2D::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_Location, ::Ifc4x3_rc1::IfcDirection v2_RefDirection) { set_attribute_value(0, (v1_Location));set_attribute_value(1, (v2_RefDirection)); }
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// Function implementations for IfcAxis2Placement3D
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcAxis2Placement3D::Axis() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcDirection{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcAxis2Placement3D::setAxis(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcAxis2Placement3D::RefDirection() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcDirection{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcAxis2Placement3D::setRefDirection(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAxis2Placement3D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[73]); }
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void Ifc4x3_rc1::IfcAxis2Placement3D::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_Location, ::Ifc4x3_rc1::IfcDirection v2_Axis, ::Ifc4x3_rc1::IfcDirection v3_RefDirection) { set_attribute_value(0, (v1_Location));set_attribute_value(1, (v2_Axis));set_attribute_value(2, (v3_RefDirection)); }
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// Function implementations for IfcAxisLateralInclination
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std::vector<::Ifc4x3_rc1::IfcLinearAxisWithInclination> Ifc4x3_rc1::IfcAxisLateralInclination::ToLinearAxis() const { return cast_vector<IfcLinearAxisWithInclination>(file()->getInverse(data()->id(), IFC4X3_RC1_types[610], 1)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcAxisLateralInclination::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[74]); }
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void Ifc4x3_rc1::IfcAxisLateralInclination::initialize() { }
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// Function implementations for IfcBSplineCurve
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int Ifc4x3_rc1::IfcBSplineCurve::Degree() const { int v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcBSplineCurve::setDegree(const int& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > Ifc4x3_rc1::IfcBSplineCurve::ControlPointsList() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcCartesianPoint>(es); }
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void Ifc4x3_rc1::IfcBSplineCurve::setControlPointsList(const std::vector< ::Ifc4x3_rc1::IfcCartesianPoint >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcBSplineCurveForm::Value Ifc4x3_rc1::IfcBSplineCurve::CurveForm() const { return ::Ifc4x3_rc1::IfcBSplineCurveForm::FromString(get_attribute_value(2)); }
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void Ifc4x3_rc1::IfcBSplineCurve::setCurveForm(const ::Ifc4x3_rc1::IfcBSplineCurveForm::Value& v) { set_attribute_value(2, EnumerationReference(&::Ifc4x3_rc1::IfcBSplineCurveForm::Class(), (size_t) v));if constexpr (false)unset_attribute_value(2); }
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boost::logic::tribool Ifc4x3_rc1::IfcBSplineCurve::ClosedCurve() const { boost::logic::tribool v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcBSplineCurve::setClosedCurve(const boost::logic::tribool& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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boost::logic::tribool Ifc4x3_rc1::IfcBSplineCurve::SelfIntersect() const { boost::logic::tribool v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcBSplineCurve::setSelfIntersect(const boost::logic::tribool& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBSplineCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[112]); }
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void Ifc4x3_rc1::IfcBSplineCurve::initialize(int v1_Degree, std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > v2_ControlPointsList, ::Ifc4x3_rc1::IfcBSplineCurveForm::Value v3_CurveForm, boost::logic::tribool v4_ClosedCurve, boost::logic::tribool v5_SelfIntersect) { set_attribute_value(0, (v1_Degree));set_attribute_value(1, cast_vector<express::Base>(v2_ControlPointsList));set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcBSplineCurveForm::Class(),(size_t)v3_CurveForm)));set_attribute_value(3, (v4_ClosedCurve));set_attribute_value(4, (v5_SelfIntersect)); }
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// Function implementations for IfcBSplineCurveWithKnots
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std::vector< int > /*[2:?]*/ Ifc4x3_rc1::IfcBSplineCurveWithKnots::KnotMultiplicities() const { std::vector< int > /*[2:?]*/ v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcBSplineCurveWithKnots::setKnotMultiplicities(const std::vector< int > /*[2:?]*/& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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std::vector< double > /*[2:?]*/ Ifc4x3_rc1::IfcBSplineCurveWithKnots::Knots() const { std::vector< double > /*[2:?]*/ v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcBSplineCurveWithKnots::setKnots(const std::vector< double > /*[2:?]*/& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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::Ifc4x3_rc1::IfcKnotType::Value Ifc4x3_rc1::IfcBSplineCurveWithKnots::KnotSpec() const { return ::Ifc4x3_rc1::IfcKnotType::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcBSplineCurveWithKnots::setKnotSpec(const ::Ifc4x3_rc1::IfcKnotType::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcKnotType::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBSplineCurveWithKnots::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[114]); }
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void Ifc4x3_rc1::IfcBSplineCurveWithKnots::initialize(int v1_Degree, std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > v2_ControlPointsList, ::Ifc4x3_rc1::IfcBSplineCurveForm::Value v3_CurveForm, boost::logic::tribool v4_ClosedCurve, boost::logic::tribool v5_SelfIntersect, std::vector< int > /*[2:?]*/ v6_KnotMultiplicities, std::vector< double > /*[2:?]*/ v7_Knots, ::Ifc4x3_rc1::IfcKnotType::Value v8_KnotSpec) { set_attribute_value(0, (v1_Degree));set_attribute_value(1, cast_vector<express::Base>(v2_ControlPointsList));set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcBSplineCurveForm::Class(),(size_t)v3_CurveForm)));set_attribute_value(3, (v4_ClosedCurve));set_attribute_value(4, (v5_SelfIntersect));set_attribute_value(5, (v6_KnotMultiplicities));set_attribute_value(6, (v7_Knots));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcKnotType::Class(),(size_t)v8_KnotSpec))); }
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// Function implementations for IfcBSplineSurface
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int Ifc4x3_rc1::IfcBSplineSurface::UDegree() const { int v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcBSplineSurface::setUDegree(const int& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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int Ifc4x3_rc1::IfcBSplineSurface::VDegree() const { int v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcBSplineSurface::setVDegree(const int& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::vector< std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > > Ifc4x3_rc1::IfcBSplineSurface::ControlPointsList() const { std::vector<std::vector<express::Base>> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcCartesianPoint>(es); }
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void Ifc4x3_rc1::IfcBSplineSurface::setControlPointsList(const std::vector< std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcBSplineSurfaceForm::Value Ifc4x3_rc1::IfcBSplineSurface::SurfaceForm() const { return ::Ifc4x3_rc1::IfcBSplineSurfaceForm::FromString(get_attribute_value(3)); }
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void Ifc4x3_rc1::IfcBSplineSurface::setSurfaceForm(const ::Ifc4x3_rc1::IfcBSplineSurfaceForm::Value& v) { set_attribute_value(3, EnumerationReference(&::Ifc4x3_rc1::IfcBSplineSurfaceForm::Class(), (size_t) v));if constexpr (false)unset_attribute_value(3); }
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boost::logic::tribool Ifc4x3_rc1::IfcBSplineSurface::UClosed() const { boost::logic::tribool v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcBSplineSurface::setUClosed(const boost::logic::tribool& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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boost::logic::tribool Ifc4x3_rc1::IfcBSplineSurface::VClosed() const { boost::logic::tribool v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcBSplineSurface::setVClosed(const boost::logic::tribool& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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boost::logic::tribool Ifc4x3_rc1::IfcBSplineSurface::SelfIntersect() const { boost::logic::tribool v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcBSplineSurface::setSelfIntersect(const boost::logic::tribool& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBSplineSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[115]); }
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void Ifc4x3_rc1::IfcBSplineSurface::initialize(int v1_UDegree, int v2_VDegree, std::vector< std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > > v3_ControlPointsList, ::Ifc4x3_rc1::IfcBSplineSurfaceForm::Value v4_SurfaceForm, boost::logic::tribool v5_UClosed, boost::logic::tribool v6_VClosed, boost::logic::tribool v7_SelfIntersect) { set_attribute_value(0, (v1_UDegree));set_attribute_value(1, (v2_VDegree));set_attribute_value(2, cast_vector<express::Base>(v3_ControlPointsList));set_attribute_value(3, (EnumerationReference(&::Ifc4x3_rc1::IfcBSplineSurfaceForm::Class(),(size_t)v4_SurfaceForm)));set_attribute_value(4, (v5_UClosed));set_attribute_value(5, (v6_VClosed));set_attribute_value(6, (v7_SelfIntersect)); }
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// Function implementations for IfcBSplineSurfaceWithKnots
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std::vector< int > /*[2:?]*/ Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::UMultiplicities() const { std::vector< int > /*[2:?]*/ v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::setUMultiplicities(const std::vector< int > /*[2:?]*/& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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std::vector< int > /*[2:?]*/ Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::VMultiplicities() const { std::vector< int > /*[2:?]*/ v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::setVMultiplicities(const std::vector< int > /*[2:?]*/& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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std::vector< double > /*[2:?]*/ Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::UKnots() const { std::vector< double > /*[2:?]*/ v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::setUKnots(const std::vector< double > /*[2:?]*/& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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std::vector< double > /*[2:?]*/ Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::VKnots() const { std::vector< double > /*[2:?]*/ v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::setVKnots(const std::vector< double > /*[2:?]*/& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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::Ifc4x3_rc1::IfcKnotType::Value Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::KnotSpec() const { return ::Ifc4x3_rc1::IfcKnotType::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::setKnotSpec(const ::Ifc4x3_rc1::IfcKnotType::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcKnotType::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[117]); }
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void Ifc4x3_rc1::IfcBSplineSurfaceWithKnots::initialize(int v1_UDegree, int v2_VDegree, std::vector< std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > > v3_ControlPointsList, ::Ifc4x3_rc1::IfcBSplineSurfaceForm::Value v4_SurfaceForm, boost::logic::tribool v5_UClosed, boost::logic::tribool v6_VClosed, boost::logic::tribool v7_SelfIntersect, std::vector< int > /*[2:?]*/ v8_UMultiplicities, std::vector< int > /*[2:?]*/ v9_VMultiplicities, std::vector< double > /*[2:?]*/ v10_UKnots, std::vector< double > /*[2:?]*/ v11_VKnots, ::Ifc4x3_rc1::IfcKnotType::Value v12_KnotSpec) { set_attribute_value(0, (v1_UDegree));set_attribute_value(1, (v2_VDegree));set_attribute_value(2, cast_vector<express::Base>(v3_ControlPointsList));set_attribute_value(3, (EnumerationReference(&::Ifc4x3_rc1::IfcBSplineSurfaceForm::Class(),(size_t)v4_SurfaceForm)));set_attribute_value(4, (v5_UClosed));set_attribute_value(5, (v6_VClosed));set_attribute_value(6, (v7_SelfIntersect));set_attribute_value(7, (v8_UMultiplicities));set_attribute_value(8, (v9_VMultiplicities));set_attribute_value(9, (v10_UKnots));set_attribute_value(10, (v11_VKnots));set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcKnotType::Class(),(size_t)v12_KnotSpec))); }
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// Function implementations for IfcBeam
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std::optional< ::Ifc4x3_rc1::IfcBeamTypeEnum::Value > Ifc4x3_rc1::IfcBeam::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcBeamTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcBeam::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcBeamTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcBeamTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBeam::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[75]); }
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void Ifc4x3_rc1::IfcBeam::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcBeamTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcBeamTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcBeamStandardCase
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const IfcParse::entity& Ifc4x3_rc1::IfcBeamStandardCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[76]); }
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void Ifc4x3_rc1::IfcBeamStandardCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcBeamTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcBeamTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcBeamType
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::Ifc4x3_rc1::IfcBeamTypeEnum::Value Ifc4x3_rc1::IfcBeamType::PredefinedType() const { return ::Ifc4x3_rc1::IfcBeamTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcBeamType::setPredefinedType(const ::Ifc4x3_rc1::IfcBeamTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcBeamTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBeamType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[77]); }
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void Ifc4x3_rc1::IfcBeamType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcBeamTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcBeamTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcBearing
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std::optional< ::Ifc4x3_rc1::IfcBearingTypeEnum::Value > Ifc4x3_rc1::IfcBearing::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcBearingTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcBearing::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcBearingTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcBearingTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBearing::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[79]); }
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void Ifc4x3_rc1::IfcBearing::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcBearingTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcBearingTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcBearingType
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::Ifc4x3_rc1::IfcBearingTypeEnum::Value Ifc4x3_rc1::IfcBearingType::PredefinedType() const { return ::Ifc4x3_rc1::IfcBearingTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcBearingType::setPredefinedType(const ::Ifc4x3_rc1::IfcBearingTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcBearingTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBearingType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[80]); }
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void Ifc4x3_rc1::IfcBearingType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcBearingTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcBearingTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcBlobTexture
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std::string Ifc4x3_rc1::IfcBlobTexture::RasterFormat() const { std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcBlobTexture::setRasterFormat(const std::string& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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boost::dynamic_bitset<> Ifc4x3_rc1::IfcBlobTexture::RasterCode() const { boost::dynamic_bitset<> v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcBlobTexture::setRasterCode(const boost::dynamic_bitset<>& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBlobTexture::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[86]); }
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void Ifc4x3_rc1::IfcBlobTexture::initialize(bool v1_RepeatS, bool v2_RepeatT, std::optional< std::string > v3_Mode, ::Ifc4x3_rc1::IfcCartesianTransformationOperator2D v4_TextureTransform, std::optional< std::vector< std::string > /*[1:?]*/ > v5_Parameter, std::string v6_RasterFormat, boost::dynamic_bitset<> v7_RasterCode) { set_attribute_value(0, (v1_RepeatS));set_attribute_value(1, (v2_RepeatT)); if (v3_Mode) {set_attribute_value(2, (*v3_Mode)); }set_attribute_value(3, (v4_TextureTransform)); if (v5_Parameter) {set_attribute_value(4, (*v5_Parameter)); }set_attribute_value(5, (v6_RasterFormat));set_attribute_value(6, (v7_RasterCode)); }
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// Function implementations for IfcBlock
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double Ifc4x3_rc1::IfcBlock::XLength() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcBlock::setXLength(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcBlock::YLength() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcBlock::setYLength(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcBlock::ZLength() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcBlock::setZLength(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBlock::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[87]); }
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void Ifc4x3_rc1::IfcBlock::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position, double v2_XLength, double v3_YLength, double v4_ZLength) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_XLength));set_attribute_value(2, (v3_YLength));set_attribute_value(3, (v4_ZLength)); }
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// Function implementations for IfcBoiler
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std::optional< ::Ifc4x3_rc1::IfcBoilerTypeEnum::Value > Ifc4x3_rc1::IfcBoiler::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcBoilerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcBoiler::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcBoilerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcBoilerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoiler::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[88]); }
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void Ifc4x3_rc1::IfcBoiler::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcBoilerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcBoilerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcBoilerType
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::Ifc4x3_rc1::IfcBoilerTypeEnum::Value Ifc4x3_rc1::IfcBoilerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcBoilerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcBoilerType::setPredefinedType(const ::Ifc4x3_rc1::IfcBoilerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcBoilerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoilerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[89]); }
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void Ifc4x3_rc1::IfcBoilerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcBoilerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcBoilerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcBooleanClippingResult
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const IfcParse::entity& Ifc4x3_rc1::IfcBooleanClippingResult::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[92]); }
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void Ifc4x3_rc1::IfcBooleanClippingResult::initialize(::Ifc4x3_rc1::IfcBooleanOperator::Value v1_Operator, ::Ifc4x3_rc1::IfcBooleanOperand v2_FirstOperand, ::Ifc4x3_rc1::IfcBooleanOperand v3_SecondOperand) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcBooleanOperator::Class(),(size_t)v1_Operator)));set_attribute_value(1, (v2_FirstOperand));set_attribute_value(2, (v3_SecondOperand)); }
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// Function implementations for IfcBooleanResult
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::Ifc4x3_rc1::IfcBooleanOperator::Value Ifc4x3_rc1::IfcBooleanResult::Operator() const { return ::Ifc4x3_rc1::IfcBooleanOperator::FromString(get_attribute_value(0)); }
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void Ifc4x3_rc1::IfcBooleanResult::setOperator(const ::Ifc4x3_rc1::IfcBooleanOperator::Value& v) { set_attribute_value(0, EnumerationReference(&::Ifc4x3_rc1::IfcBooleanOperator::Class(), (size_t) v));if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcBooleanOperand Ifc4x3_rc1::IfcBooleanResult::FirstOperand() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcBooleanOperand>(); }
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void Ifc4x3_rc1::IfcBooleanResult::setFirstOperand(const ::Ifc4x3_rc1::IfcBooleanOperand& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcBooleanOperand Ifc4x3_rc1::IfcBooleanResult::SecondOperand() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcBooleanOperand>(); }
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void Ifc4x3_rc1::IfcBooleanResult::setSecondOperand(const ::Ifc4x3_rc1::IfcBooleanOperand& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBooleanResult::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[95]); }
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void Ifc4x3_rc1::IfcBooleanResult::initialize(::Ifc4x3_rc1::IfcBooleanOperator::Value v1_Operator, ::Ifc4x3_rc1::IfcBooleanOperand v2_FirstOperand, ::Ifc4x3_rc1::IfcBooleanOperand v3_SecondOperand) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcBooleanOperator::Class(),(size_t)v1_Operator)));set_attribute_value(1, (v2_FirstOperand));set_attribute_value(2, (v3_SecondOperand)); }
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// Function implementations for IfcBorehole
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const IfcParse::entity& Ifc4x3_rc1::IfcBorehole::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[96]); }
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void Ifc4x3_rc1::IfcBorehole::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcBoundaryCondition
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std::optional< std::string > Ifc4x3_rc1::IfcBoundaryCondition::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcBoundaryCondition::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoundaryCondition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[97]); }
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void Ifc4x3_rc1::IfcBoundaryCondition::initialize(std::optional< std::string > v1_Name) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } }
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// Function implementations for IfcBoundaryCurve
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const IfcParse::entity& Ifc4x3_rc1::IfcBoundaryCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[98]); }
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void Ifc4x3_rc1::IfcBoundaryCurve::initialize(std::vector< ::Ifc4x3_rc1::IfcCompositeCurveSegment > v1_Segments, boost::logic::tribool v2_SelfIntersect) { set_attribute_value(0, cast_vector<express::Base>(v1_Segments));set_attribute_value(1, (v2_SelfIntersect)); }
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// Function implementations for IfcBoundaryEdgeCondition
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::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect Ifc4x3_rc1::IfcBoundaryEdgeCondition::TranslationalStiffnessByLengthX() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryEdgeCondition::setTranslationalStiffnessByLengthX(const ::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect Ifc4x3_rc1::IfcBoundaryEdgeCondition::TranslationalStiffnessByLengthY() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryEdgeCondition::setTranslationalStiffnessByLengthY(const ::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect Ifc4x3_rc1::IfcBoundaryEdgeCondition::TranslationalStiffnessByLengthZ() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryEdgeCondition::setTranslationalStiffnessByLengthZ(const ::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect Ifc4x3_rc1::IfcBoundaryEdgeCondition::RotationalStiffnessByLengthX() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryEdgeCondition::setRotationalStiffnessByLengthX(const ::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect Ifc4x3_rc1::IfcBoundaryEdgeCondition::RotationalStiffnessByLengthY() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryEdgeCondition::setRotationalStiffnessByLengthY(const ::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect Ifc4x3_rc1::IfcBoundaryEdgeCondition::RotationalStiffnessByLengthZ() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryEdgeCondition::setRotationalStiffnessByLengthZ(const ::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoundaryEdgeCondition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[99]); }
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void Ifc4x3_rc1::IfcBoundaryEdgeCondition::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect v2_TranslationalStiffnessByLengthX, ::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect v3_TranslationalStiffnessByLengthY, ::Ifc4x3_rc1::IfcModulusOfTranslationalSubgradeReactionSelect v4_TranslationalStiffnessByLengthZ, ::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect v5_RotationalStiffnessByLengthX, ::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect v6_RotationalStiffnessByLengthY, ::Ifc4x3_rc1::IfcModulusOfRotationalSubgradeReactionSelect v7_RotationalStiffnessByLengthZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_TranslationalStiffnessByLengthX));set_attribute_value(2, (v3_TranslationalStiffnessByLengthY));set_attribute_value(3, (v4_TranslationalStiffnessByLengthZ));set_attribute_value(4, (v5_RotationalStiffnessByLengthX));set_attribute_value(5, (v6_RotationalStiffnessByLengthY));set_attribute_value(6, (v7_RotationalStiffnessByLengthZ)); }
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// Function implementations for IfcBoundaryFaceCondition
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::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect Ifc4x3_rc1::IfcBoundaryFaceCondition::TranslationalStiffnessByAreaX() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryFaceCondition::setTranslationalStiffnessByAreaX(const ::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect Ifc4x3_rc1::IfcBoundaryFaceCondition::TranslationalStiffnessByAreaY() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryFaceCondition::setTranslationalStiffnessByAreaY(const ::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect Ifc4x3_rc1::IfcBoundaryFaceCondition::TranslationalStiffnessByAreaZ() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryFaceCondition::setTranslationalStiffnessByAreaZ(const ::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoundaryFaceCondition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[100]); }
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void Ifc4x3_rc1::IfcBoundaryFaceCondition::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect v2_TranslationalStiffnessByAreaX, ::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect v3_TranslationalStiffnessByAreaY, ::Ifc4x3_rc1::IfcModulusOfSubgradeReactionSelect v4_TranslationalStiffnessByAreaZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_TranslationalStiffnessByAreaX));set_attribute_value(2, (v3_TranslationalStiffnessByAreaY));set_attribute_value(3, (v4_TranslationalStiffnessByAreaZ)); }
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// Function implementations for IfcBoundaryNodeCondition
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::Ifc4x3_rc1::IfcTranslationalStiffnessSelect Ifc4x3_rc1::IfcBoundaryNodeCondition::TranslationalStiffnessX() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcTranslationalStiffnessSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryNodeCondition::setTranslationalStiffnessX(const ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcTranslationalStiffnessSelect Ifc4x3_rc1::IfcBoundaryNodeCondition::TranslationalStiffnessY() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcTranslationalStiffnessSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryNodeCondition::setTranslationalStiffnessY(const ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcTranslationalStiffnessSelect Ifc4x3_rc1::IfcBoundaryNodeCondition::TranslationalStiffnessZ() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcTranslationalStiffnessSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryNodeCondition::setTranslationalStiffnessZ(const ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcRotationalStiffnessSelect Ifc4x3_rc1::IfcBoundaryNodeCondition::RotationalStiffnessX() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcRotationalStiffnessSelect{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcRotationalStiffnessSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryNodeCondition::setRotationalStiffnessX(const ::Ifc4x3_rc1::IfcRotationalStiffnessSelect& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcRotationalStiffnessSelect Ifc4x3_rc1::IfcBoundaryNodeCondition::RotationalStiffnessY() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcRotationalStiffnessSelect{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcRotationalStiffnessSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryNodeCondition::setRotationalStiffnessY(const ::Ifc4x3_rc1::IfcRotationalStiffnessSelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcRotationalStiffnessSelect Ifc4x3_rc1::IfcBoundaryNodeCondition::RotationalStiffnessZ() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcRotationalStiffnessSelect{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcRotationalStiffnessSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryNodeCondition::setRotationalStiffnessZ(const ::Ifc4x3_rc1::IfcRotationalStiffnessSelect& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoundaryNodeCondition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[101]); }
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void Ifc4x3_rc1::IfcBoundaryNodeCondition::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect v2_TranslationalStiffnessX, ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect v3_TranslationalStiffnessY, ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect v4_TranslationalStiffnessZ, ::Ifc4x3_rc1::IfcRotationalStiffnessSelect v5_RotationalStiffnessX, ::Ifc4x3_rc1::IfcRotationalStiffnessSelect v6_RotationalStiffnessY, ::Ifc4x3_rc1::IfcRotationalStiffnessSelect v7_RotationalStiffnessZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_TranslationalStiffnessX));set_attribute_value(2, (v3_TranslationalStiffnessY));set_attribute_value(3, (v4_TranslationalStiffnessZ));set_attribute_value(4, (v5_RotationalStiffnessX));set_attribute_value(5, (v6_RotationalStiffnessY));set_attribute_value(6, (v7_RotationalStiffnessZ)); }
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// Function implementations for IfcBoundaryNodeConditionWarping
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::Ifc4x3_rc1::IfcWarpingStiffnessSelect Ifc4x3_rc1::IfcBoundaryNodeConditionWarping::WarpingStiffness() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcWarpingStiffnessSelect{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcWarpingStiffnessSelect>(); }
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void Ifc4x3_rc1::IfcBoundaryNodeConditionWarping::setWarpingStiffness(const ::Ifc4x3_rc1::IfcWarpingStiffnessSelect& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoundaryNodeConditionWarping::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[102]); }
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void Ifc4x3_rc1::IfcBoundaryNodeConditionWarping::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect v2_TranslationalStiffnessX, ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect v3_TranslationalStiffnessY, ::Ifc4x3_rc1::IfcTranslationalStiffnessSelect v4_TranslationalStiffnessZ, ::Ifc4x3_rc1::IfcRotationalStiffnessSelect v5_RotationalStiffnessX, ::Ifc4x3_rc1::IfcRotationalStiffnessSelect v6_RotationalStiffnessY, ::Ifc4x3_rc1::IfcRotationalStiffnessSelect v7_RotationalStiffnessZ, ::Ifc4x3_rc1::IfcWarpingStiffnessSelect v8_WarpingStiffness) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_TranslationalStiffnessX));set_attribute_value(2, (v3_TranslationalStiffnessY));set_attribute_value(3, (v4_TranslationalStiffnessZ));set_attribute_value(4, (v5_RotationalStiffnessX));set_attribute_value(5, (v6_RotationalStiffnessY));set_attribute_value(6, (v7_RotationalStiffnessZ));set_attribute_value(7, (v8_WarpingStiffness)); }
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// Function implementations for IfcBoundedCurve
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std::vector<::Ifc4x3_rc1::IfcLinearPositioningElement> Ifc4x3_rc1::IfcBoundedCurve::PositioningElement() const { return cast_vector<IfcLinearPositioningElement>(file()->getInverse(data()->id(), IFC4X3_RC1_types[615], 7)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoundedCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[103]); }
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void Ifc4x3_rc1::IfcBoundedCurve::initialize() { }
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// Function implementations for IfcBoundedSurface
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const IfcParse::entity& Ifc4x3_rc1::IfcBoundedSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[104]); }
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void Ifc4x3_rc1::IfcBoundedSurface::initialize() { }
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// Function implementations for IfcBoundingBox
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::Ifc4x3_rc1::IfcCartesianPoint Ifc4x3_rc1::IfcBoundingBox::Corner() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCartesianPoint>(); }
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void Ifc4x3_rc1::IfcBoundingBox::setCorner(const ::Ifc4x3_rc1::IfcCartesianPoint& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcBoundingBox::XDim() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcBoundingBox::setXDim(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcBoundingBox::YDim() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcBoundingBox::setYDim(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcBoundingBox::ZDim() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcBoundingBox::setZDim(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoundingBox::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[105]); }
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void Ifc4x3_rc1::IfcBoundingBox::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_Corner, double v2_XDim, double v3_YDim, double v4_ZDim) { set_attribute_value(0, (v1_Corner));set_attribute_value(1, (v2_XDim));set_attribute_value(2, (v3_YDim));set_attribute_value(3, (v4_ZDim)); }
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// Function implementations for IfcBoxedHalfSpace
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::Ifc4x3_rc1::IfcBoundingBox Ifc4x3_rc1::IfcBoxedHalfSpace::Enclosure() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcBoundingBox>(); }
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void Ifc4x3_rc1::IfcBoxedHalfSpace::setEnclosure(const ::Ifc4x3_rc1::IfcBoundingBox& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBoxedHalfSpace::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[107]); }
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void Ifc4x3_rc1::IfcBoxedHalfSpace::initialize(::Ifc4x3_rc1::IfcSurface v1_BaseSurface, bool v2_AgreementFlag, ::Ifc4x3_rc1::IfcBoundingBox v3_Enclosure) { set_attribute_value(0, (v1_BaseSurface));set_attribute_value(1, (v2_AgreementFlag));set_attribute_value(2, (v3_Enclosure)); }
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// Function implementations for IfcBridge
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std::optional< ::Ifc4x3_rc1::IfcBridgeTypeEnum::Value > Ifc4x3_rc1::IfcBridge::PredefinedType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcBridgeTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcBridge::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcBridgeTypeEnum::Value >& v) { if (v) {set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcBridgeTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBridge::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[108]); }
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void Ifc4x3_rc1::IfcBridge::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType, std::optional< ::Ifc4x3_rc1::IfcBridgeTypeEnum::Value > v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); } if (v10_PredefinedType) {set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcBridgeTypeEnum::Class(),(size_t)*v10_PredefinedType))); } }
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// Function implementations for IfcBridgePart
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const IfcParse::entity& Ifc4x3_rc1::IfcBridgePart::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[109]); }
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void Ifc4x3_rc1::IfcBridgePart::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType, ::Ifc4x3_rc1::IfcFacilityPartTypeSelect v10_PredefinedType, ::Ifc4x3_rc1::IfcFacilityUsageEnum::Value v11_UsageType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); }set_attribute_value(9, (v10_PredefinedType));set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcFacilityUsageEnum::Class(),(size_t)v11_UsageType))); }
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// Function implementations for IfcBuilding
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std::optional< double > Ifc4x3_rc1::IfcBuilding::ElevationOfRefHeight() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcBuilding::setElevationOfRefHeight(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcBuilding::ElevationOfTerrain() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcBuilding::setElevationOfTerrain(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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::Ifc4x3_rc1::IfcPostalAddress Ifc4x3_rc1::IfcBuilding::BuildingAddress() const { if(get_attribute_value(11).isNull()) { return ::Ifc4x3_rc1::IfcPostalAddress{}; } return ((express::Base)(get_attribute_value(11))).as<::Ifc4x3_rc1::IfcPostalAddress>(); }
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void Ifc4x3_rc1::IfcBuilding::setBuildingAddress(const ::Ifc4x3_rc1::IfcPostalAddress& v) { set_attribute_value(11, v);if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBuilding::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[118]); }
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void Ifc4x3_rc1::IfcBuilding::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType, std::optional< double > v10_ElevationOfRefHeight, std::optional< double > v11_ElevationOfTerrain, ::Ifc4x3_rc1::IfcPostalAddress v12_BuildingAddress) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); } if (v10_ElevationOfRefHeight) {set_attribute_value(9, (*v10_ElevationOfRefHeight)); } if (v11_ElevationOfTerrain) {set_attribute_value(10, (*v11_ElevationOfTerrain)); }set_attribute_value(11, (v12_BuildingAddress)); }
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// Function implementations for IfcBuildingElementPart
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std::optional< ::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value > Ifc4x3_rc1::IfcBuildingElementPart::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcBuildingElementPart::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBuildingElementPart::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[119]); }
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void Ifc4x3_rc1::IfcBuildingElementPart::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcBuildingElementPartType
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::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value Ifc4x3_rc1::IfcBuildingElementPartType::PredefinedType() const { return ::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcBuildingElementPartType::setPredefinedType(const ::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBuildingElementPartType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[120]); }
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void Ifc4x3_rc1::IfcBuildingElementPartType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcBuildingElementPartTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcBuildingElementProxy
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std::optional< ::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value > Ifc4x3_rc1::IfcBuildingElementProxy::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcBuildingElementProxy::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBuildingElementProxy::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[122]); }
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void Ifc4x3_rc1::IfcBuildingElementProxy::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcBuildingElementProxyType
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::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value Ifc4x3_rc1::IfcBuildingElementProxyType::PredefinedType() const { return ::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcBuildingElementProxyType::setPredefinedType(const ::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBuildingElementProxyType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[123]); }
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void Ifc4x3_rc1::IfcBuildingElementProxyType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcBuildingElementProxyTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcBuildingStorey
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std::optional< double > Ifc4x3_rc1::IfcBuildingStorey::Elevation() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcBuildingStorey::setElevation(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBuildingStorey::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[125]); }
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void Ifc4x3_rc1::IfcBuildingStorey::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType, std::optional< double > v10_Elevation) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); } if (v10_Elevation) {set_attribute_value(9, (*v10_Elevation)); } }
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// Function implementations for IfcBuildingSystem
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std::optional< ::Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Value > Ifc4x3_rc1::IfcBuildingSystem::PredefinedType() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcBuildingSystemTypeEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcBuildingSystem::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Value >& v) { if (v) {set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcBuildingSystem::LongName() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcBuildingSystem::setLongName(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBuildingSystem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[126]); }
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void Ifc4x3_rc1::IfcBuildingSystem::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< ::Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Value > v6_PredefinedType, std::optional< std::string > v7_LongName) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_PredefinedType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcBuildingSystemTypeEnum::Class(),(size_t)*v6_PredefinedType))); } if (v7_LongName) {set_attribute_value(6, (*v7_LongName)); } }
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// Function implementations for IfcBuiltElement
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const IfcParse::entity& Ifc4x3_rc1::IfcBuiltElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[128]); }
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void Ifc4x3_rc1::IfcBuiltElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcBuiltElementType
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const IfcParse::entity& Ifc4x3_rc1::IfcBuiltElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[129]); }
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void Ifc4x3_rc1::IfcBuiltElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcBuiltSystem
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std::optional< ::Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Value > Ifc4x3_rc1::IfcBuiltSystem::PredefinedType() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcBuiltSystemTypeEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcBuiltSystem::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Value >& v) { if (v) {set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcBuiltSystem::LongName() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcBuiltSystem::setLongName(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBuiltSystem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[130]); }
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void Ifc4x3_rc1::IfcBuiltSystem::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< ::Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Value > v6_PredefinedType, std::optional< std::string > v7_LongName) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_PredefinedType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcBuiltSystemTypeEnum::Class(),(size_t)*v6_PredefinedType))); } if (v7_LongName) {set_attribute_value(6, (*v7_LongName)); } }
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// Function implementations for IfcBurner
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std::optional< ::Ifc4x3_rc1::IfcBurnerTypeEnum::Value > Ifc4x3_rc1::IfcBurner::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcBurnerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcBurner::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcBurnerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcBurnerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcBurner::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[132]); }
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void Ifc4x3_rc1::IfcBurner::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcBurnerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcBurnerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcBurnerType
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::Ifc4x3_rc1::IfcBurnerTypeEnum::Value Ifc4x3_rc1::IfcBurnerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcBurnerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcBurnerType::setPredefinedType(const ::Ifc4x3_rc1::IfcBurnerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcBurnerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcBurnerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[133]); }
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void Ifc4x3_rc1::IfcBurnerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcBurnerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcBurnerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCShapeProfileDef
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double Ifc4x3_rc1::IfcCShapeProfileDef::Depth() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcCShapeProfileDef::setDepth(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcCShapeProfileDef::Width() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcCShapeProfileDef::setWidth(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcCShapeProfileDef::WallThickness() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcCShapeProfileDef::setWallThickness(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcCShapeProfileDef::Girth() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcCShapeProfileDef::setGirth(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< double > Ifc4x3_rc1::IfcCShapeProfileDef::InternalFilletRadius() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcCShapeProfileDef::setInternalFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCShapeProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[270]); }
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void Ifc4x3_rc1::IfcCShapeProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_Depth, double v5_Width, double v6_WallThickness, double v7_Girth, std::optional< double > v8_InternalFilletRadius) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_Depth));set_attribute_value(4, (v5_Width));set_attribute_value(5, (v6_WallThickness));set_attribute_value(6, (v7_Girth)); if (v8_InternalFilletRadius) {set_attribute_value(7, (*v8_InternalFilletRadius)); } }
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// Function implementations for IfcCableCarrierFitting
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std::optional< ::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value > Ifc4x3_rc1::IfcCableCarrierFitting::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCableCarrierFitting::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCableCarrierFitting::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[135]); }
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void Ifc4x3_rc1::IfcCableCarrierFitting::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCableCarrierFittingType
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::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value Ifc4x3_rc1::IfcCableCarrierFittingType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCableCarrierFittingType::setPredefinedType(const ::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCableCarrierFittingType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[136]); }
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void Ifc4x3_rc1::IfcCableCarrierFittingType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCableCarrierFittingTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCableCarrierSegment
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std::optional< ::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value > Ifc4x3_rc1::IfcCableCarrierSegment::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCableCarrierSegment::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCableCarrierSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[138]); }
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void Ifc4x3_rc1::IfcCableCarrierSegment::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCableCarrierSegmentType
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::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value Ifc4x3_rc1::IfcCableCarrierSegmentType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCableCarrierSegmentType::setPredefinedType(const ::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCableCarrierSegmentType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[139]); }
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void Ifc4x3_rc1::IfcCableCarrierSegmentType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCableCarrierSegmentTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCableFitting
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std::optional< ::Ifc4x3_rc1::IfcCableFittingTypeEnum::Value > Ifc4x3_rc1::IfcCableFitting::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCableFittingTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCableFitting::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCableFittingTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCableFittingTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCableFitting::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[141]); }
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void Ifc4x3_rc1::IfcCableFitting::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCableFittingTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCableFittingTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCableFittingType
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::Ifc4x3_rc1::IfcCableFittingTypeEnum::Value Ifc4x3_rc1::IfcCableFittingType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCableFittingTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCableFittingType::setPredefinedType(const ::Ifc4x3_rc1::IfcCableFittingTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCableFittingTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCableFittingType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[142]); }
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void Ifc4x3_rc1::IfcCableFittingType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCableFittingTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCableFittingTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCableSegment
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std::optional< ::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value > Ifc4x3_rc1::IfcCableSegment::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCableSegmentTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCableSegment::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCableSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[144]); }
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void Ifc4x3_rc1::IfcCableSegment::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCableSegmentType
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::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value Ifc4x3_rc1::IfcCableSegmentType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCableSegmentTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCableSegmentType::setPredefinedType(const ::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCableSegmentType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[145]); }
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void Ifc4x3_rc1::IfcCableSegmentType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCableSegmentTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCaissonFoundation
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std::optional< ::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value > Ifc4x3_rc1::IfcCaissonFoundation::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCaissonFoundation::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCaissonFoundation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[147]); }
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void Ifc4x3_rc1::IfcCaissonFoundation::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCaissonFoundationType
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::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value Ifc4x3_rc1::IfcCaissonFoundationType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCaissonFoundationType::setPredefinedType(const ::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCaissonFoundationType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[148]); }
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void Ifc4x3_rc1::IfcCaissonFoundationType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCaissonFoundationTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCartesianPoint
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std::vector< double > /*[1:3]*/ Ifc4x3_rc1::IfcCartesianPoint::Coordinates() const { std::vector< double > /*[1:3]*/ v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcCartesianPoint::setCoordinates(const std::vector< double > /*[1:3]*/& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCartesianPoint::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[151]); }
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void Ifc4x3_rc1::IfcCartesianPoint::initialize(std::vector< double > /*[1:3]*/ v1_Coordinates) { set_attribute_value(0, (v1_Coordinates)); }
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// Function implementations for IfcCartesianPointList
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const IfcParse::entity& Ifc4x3_rc1::IfcCartesianPointList::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[152]); }
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void Ifc4x3_rc1::IfcCartesianPointList::initialize() { }
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// Function implementations for IfcCartesianPointList2D
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std::vector< std::vector< double > > Ifc4x3_rc1::IfcCartesianPointList2D::CoordList() const { std::vector< std::vector< double > > v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcCartesianPointList2D::setCoordList(const std::vector< std::vector< double > >& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcCartesianPointList2D::TagList() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcCartesianPointList2D::setTagList(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCartesianPointList2D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[153]); }
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void Ifc4x3_rc1::IfcCartesianPointList2D::initialize(std::vector< std::vector< double > > v1_CoordList, std::optional< std::vector< std::string > /*[1:?]*/ > v2_TagList) { set_attribute_value(0, (v1_CoordList)); if (v2_TagList) {set_attribute_value(1, (*v2_TagList)); } }
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// Function implementations for IfcCartesianPointList3D
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std::vector< std::vector< double > > Ifc4x3_rc1::IfcCartesianPointList3D::CoordList() const { std::vector< std::vector< double > > v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcCartesianPointList3D::setCoordList(const std::vector< std::vector< double > >& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcCartesianPointList3D::TagList() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcCartesianPointList3D::setTagList(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCartesianPointList3D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[154]); }
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void Ifc4x3_rc1::IfcCartesianPointList3D::initialize(std::vector< std::vector< double > > v1_CoordList, std::optional< std::vector< std::string > /*[1:?]*/ > v2_TagList) { set_attribute_value(0, (v1_CoordList)); if (v2_TagList) {set_attribute_value(1, (*v2_TagList)); } }
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// Function implementations for IfcCartesianTransformationOperator
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcCartesianTransformationOperator::Axis1() const { if(get_attribute_value(0).isNull()) { return ::Ifc4x3_rc1::IfcDirection{}; } return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator::setAxis1(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcCartesianTransformationOperator::Axis2() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcDirection{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator::setAxis2(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcCartesianPoint Ifc4x3_rc1::IfcCartesianTransformationOperator::LocalOrigin() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcCartesianPoint>(); }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator::setLocalOrigin(const ::Ifc4x3_rc1::IfcCartesianPoint& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::optional< double > Ifc4x3_rc1::IfcCartesianTransformationOperator::Scale() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator::setScale(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCartesianTransformationOperator::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[155]); }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator::initialize(::Ifc4x3_rc1::IfcDirection v1_Axis1, ::Ifc4x3_rc1::IfcDirection v2_Axis2, ::Ifc4x3_rc1::IfcCartesianPoint v3_LocalOrigin, std::optional< double > v4_Scale) { set_attribute_value(0, (v1_Axis1));set_attribute_value(1, (v2_Axis2));set_attribute_value(2, (v3_LocalOrigin)); if (v4_Scale) {set_attribute_value(3, (*v4_Scale)); } }
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// Function implementations for IfcCartesianTransformationOperator2D
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const IfcParse::entity& Ifc4x3_rc1::IfcCartesianTransformationOperator2D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[156]); }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator2D::initialize(::Ifc4x3_rc1::IfcDirection v1_Axis1, ::Ifc4x3_rc1::IfcDirection v2_Axis2, ::Ifc4x3_rc1::IfcCartesianPoint v3_LocalOrigin, std::optional< double > v4_Scale) { set_attribute_value(0, (v1_Axis1));set_attribute_value(1, (v2_Axis2));set_attribute_value(2, (v3_LocalOrigin)); if (v4_Scale) {set_attribute_value(3, (*v4_Scale)); } }
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// Function implementations for IfcCartesianTransformationOperator2DnonUniform
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std::optional< double > Ifc4x3_rc1::IfcCartesianTransformationOperator2DnonUniform::Scale2() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator2DnonUniform::setScale2(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCartesianTransformationOperator2DnonUniform::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[157]); }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator2DnonUniform::initialize(::Ifc4x3_rc1::IfcDirection v1_Axis1, ::Ifc4x3_rc1::IfcDirection v2_Axis2, ::Ifc4x3_rc1::IfcCartesianPoint v3_LocalOrigin, std::optional< double > v4_Scale, std::optional< double > v5_Scale2) { set_attribute_value(0, (v1_Axis1));set_attribute_value(1, (v2_Axis2));set_attribute_value(2, (v3_LocalOrigin)); if (v4_Scale) {set_attribute_value(3, (*v4_Scale)); } if (v5_Scale2) {set_attribute_value(4, (*v5_Scale2)); } }
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// Function implementations for IfcCartesianTransformationOperator3D
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcCartesianTransformationOperator3D::Axis3() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcDirection{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator3D::setAxis3(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCartesianTransformationOperator3D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[158]); }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator3D::initialize(::Ifc4x3_rc1::IfcDirection v1_Axis1, ::Ifc4x3_rc1::IfcDirection v2_Axis2, ::Ifc4x3_rc1::IfcCartesianPoint v3_LocalOrigin, std::optional< double > v4_Scale, ::Ifc4x3_rc1::IfcDirection v5_Axis3) { set_attribute_value(0, (v1_Axis1));set_attribute_value(1, (v2_Axis2));set_attribute_value(2, (v3_LocalOrigin)); if (v4_Scale) {set_attribute_value(3, (*v4_Scale)); }set_attribute_value(4, (v5_Axis3)); }
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// Function implementations for IfcCartesianTransformationOperator3DnonUniform
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std::optional< double > Ifc4x3_rc1::IfcCartesianTransformationOperator3DnonUniform::Scale2() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator3DnonUniform::setScale2(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< double > Ifc4x3_rc1::IfcCartesianTransformationOperator3DnonUniform::Scale3() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator3DnonUniform::setScale3(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCartesianTransformationOperator3DnonUniform::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[159]); }
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void Ifc4x3_rc1::IfcCartesianTransformationOperator3DnonUniform::initialize(::Ifc4x3_rc1::IfcDirection v1_Axis1, ::Ifc4x3_rc1::IfcDirection v2_Axis2, ::Ifc4x3_rc1::IfcCartesianPoint v3_LocalOrigin, std::optional< double > v4_Scale, ::Ifc4x3_rc1::IfcDirection v5_Axis3, std::optional< double > v6_Scale2, std::optional< double > v7_Scale3) { set_attribute_value(0, (v1_Axis1));set_attribute_value(1, (v2_Axis2));set_attribute_value(2, (v3_LocalOrigin)); if (v4_Scale) {set_attribute_value(3, (*v4_Scale)); }set_attribute_value(4, (v5_Axis3)); if (v6_Scale2) {set_attribute_value(5, (*v6_Scale2)); } if (v7_Scale3) {set_attribute_value(6, (*v7_Scale3)); } }
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// Function implementations for IfcCenterLineProfileDef
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double Ifc4x3_rc1::IfcCenterLineProfileDef::Thickness() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcCenterLineProfileDef::setThickness(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCenterLineProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[160]); }
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void Ifc4x3_rc1::IfcCenterLineProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcBoundedCurve v3_Curve, double v4_Thickness) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Curve));set_attribute_value(3, (v4_Thickness)); }
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// Function implementations for IfcChiller
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std::optional< ::Ifc4x3_rc1::IfcChillerTypeEnum::Value > Ifc4x3_rc1::IfcChiller::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcChillerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcChiller::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcChillerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcChillerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcChiller::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[162]); }
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void Ifc4x3_rc1::IfcChiller::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcChillerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcChillerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcChillerType
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::Ifc4x3_rc1::IfcChillerTypeEnum::Value Ifc4x3_rc1::IfcChillerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcChillerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcChillerType::setPredefinedType(const ::Ifc4x3_rc1::IfcChillerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcChillerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcChillerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[163]); }
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void Ifc4x3_rc1::IfcChillerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcChillerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcChillerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcChimney
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std::optional< ::Ifc4x3_rc1::IfcChimneyTypeEnum::Value > Ifc4x3_rc1::IfcChimney::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcChimneyTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcChimney::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcChimneyTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcChimneyTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcChimney::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[165]); }
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void Ifc4x3_rc1::IfcChimney::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcChimneyTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcChimneyTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcChimneyType
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::Ifc4x3_rc1::IfcChimneyTypeEnum::Value Ifc4x3_rc1::IfcChimneyType::PredefinedType() const { return ::Ifc4x3_rc1::IfcChimneyTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcChimneyType::setPredefinedType(const ::Ifc4x3_rc1::IfcChimneyTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcChimneyTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcChimneyType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[166]); }
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void Ifc4x3_rc1::IfcChimneyType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcChimneyTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcChimneyTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCircle
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double Ifc4x3_rc1::IfcCircle::Radius() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcCircle::setRadius(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCircle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[168]); }
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void Ifc4x3_rc1::IfcCircle::initialize(::Ifc4x3_rc1::IfcAxis2Placement v1_Position, double v2_Radius) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_Radius)); }
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// Function implementations for IfcCircleHollowProfileDef
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double Ifc4x3_rc1::IfcCircleHollowProfileDef::WallThickness() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcCircleHollowProfileDef::setWallThickness(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCircleHollowProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[169]); }
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void Ifc4x3_rc1::IfcCircleHollowProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_Radius, double v5_WallThickness) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_Radius));set_attribute_value(4, (v5_WallThickness)); }
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// Function implementations for IfcCircleProfileDef
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double Ifc4x3_rc1::IfcCircleProfileDef::Radius() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcCircleProfileDef::setRadius(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCircleProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[170]); }
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void Ifc4x3_rc1::IfcCircleProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_Radius) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_Radius)); }
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// Function implementations for IfcCircularArcSegment2D
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double Ifc4x3_rc1::IfcCircularArcSegment2D::Radius() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcCircularArcSegment2D::setRadius(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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bool Ifc4x3_rc1::IfcCircularArcSegment2D::IsCCW() const { bool v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcCircularArcSegment2D::setIsCCW(const bool& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCircularArcSegment2D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[171]); }
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void Ifc4x3_rc1::IfcCircularArcSegment2D::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_StartPoint, double v2_StartDirection, double v3_SegmentLength, double v4_Radius, bool v5_IsCCW) { set_attribute_value(0, (v1_StartPoint));set_attribute_value(1, (v2_StartDirection));set_attribute_value(2, (v3_SegmentLength));set_attribute_value(3, (v4_Radius));set_attribute_value(4, (v5_IsCCW)); }
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// Function implementations for IfcCivilElement
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const IfcParse::entity& Ifc4x3_rc1::IfcCivilElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[172]); }
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void Ifc4x3_rc1::IfcCivilElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcCivilElementType
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const IfcParse::entity& Ifc4x3_rc1::IfcCivilElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[173]); }
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void Ifc4x3_rc1::IfcCivilElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcClassification
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std::optional< std::string > Ifc4x3_rc1::IfcClassification::Source() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcClassification::setSource(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcClassification::Edition() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcClassification::setEdition(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcClassification::EditionDate() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcClassification::setEditionDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::string Ifc4x3_rc1::IfcClassification::Name() const { std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcClassification::setName(const std::string& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcClassification::Description() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcClassification::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcClassification::Location() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcClassification::setLocation(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcClassification::ReferenceTokens() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcClassification::setReferenceTokens(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::vector<::Ifc4x3_rc1::IfcRelAssociatesClassification> Ifc4x3_rc1::IfcClassification::ClassificationForObjects() const { return cast_vector<IfcRelAssociatesClassification>(file()->getInverse(data()->id(), IFC4X3_RC1_types[921], 5)); }
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std::vector<::Ifc4x3_rc1::IfcClassificationReference> Ifc4x3_rc1::IfcClassification::HasReferences() const { return cast_vector<IfcClassificationReference>(file()->getInverse(data()->id(), IFC4X3_RC1_types[175], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcClassification::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[174]); }
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void Ifc4x3_rc1::IfcClassification::initialize(std::optional< std::string > v1_Source, std::optional< std::string > v2_Edition, std::optional< std::string > v3_EditionDate, std::string v4_Name, std::optional< std::string > v5_Description, std::optional< std::string > v6_Location, std::optional< std::vector< std::string > /*[1:?]*/ > v7_ReferenceTokens) { if (v1_Source) {set_attribute_value(0, (*v1_Source)); } if (v2_Edition) {set_attribute_value(1, (*v2_Edition)); } if (v3_EditionDate) {set_attribute_value(2, (*v3_EditionDate)); }set_attribute_value(3, (v4_Name)); if (v5_Description) {set_attribute_value(4, (*v5_Description)); } if (v6_Location) {set_attribute_value(5, (*v6_Location)); } if (v7_ReferenceTokens) {set_attribute_value(6, (*v7_ReferenceTokens)); } }
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// Function implementations for IfcClassificationReference
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::Ifc4x3_rc1::IfcClassificationReferenceSelect Ifc4x3_rc1::IfcClassificationReference::ReferencedSource() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcClassificationReferenceSelect{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcClassificationReferenceSelect>(); }
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void Ifc4x3_rc1::IfcClassificationReference::setReferencedSource(const ::Ifc4x3_rc1::IfcClassificationReferenceSelect& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcClassificationReference::Description() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcClassificationReference::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcClassificationReference::Sort() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcClassificationReference::setSort(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::vector<::Ifc4x3_rc1::IfcRelAssociatesClassification> Ifc4x3_rc1::IfcClassificationReference::ClassificationRefForObjects() const { return cast_vector<IfcRelAssociatesClassification>(file()->getInverse(data()->id(), IFC4X3_RC1_types[921], 5)); }
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std::vector<::Ifc4x3_rc1::IfcClassificationReference> Ifc4x3_rc1::IfcClassificationReference::HasReferences() const { return cast_vector<IfcClassificationReference>(file()->getInverse(data()->id(), IFC4X3_RC1_types[175], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcClassificationReference::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[175]); }
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void Ifc4x3_rc1::IfcClassificationReference::initialize(std::optional< std::string > v1_Location, std::optional< std::string > v2_Identification, std::optional< std::string > v3_Name, ::Ifc4x3_rc1::IfcClassificationReferenceSelect v4_ReferencedSource, std::optional< std::string > v5_Description, std::optional< std::string > v6_Sort) { if (v1_Location) {set_attribute_value(0, (*v1_Location)); } if (v2_Identification) {set_attribute_value(1, (*v2_Identification)); } if (v3_Name) {set_attribute_value(2, (*v3_Name)); }set_attribute_value(3, (v4_ReferencedSource)); if (v5_Description) {set_attribute_value(4, (*v5_Description)); } if (v6_Sort) {set_attribute_value(5, (*v6_Sort)); } }
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// Function implementations for IfcClosedShell
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const IfcParse::entity& Ifc4x3_rc1::IfcClosedShell::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[178]); }
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void Ifc4x3_rc1::IfcClosedShell::initialize(std::vector< ::Ifc4x3_rc1::IfcFace > v1_CfsFaces) { set_attribute_value(0, cast_vector<express::Base>(v1_CfsFaces)); }
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// Function implementations for IfcCoil
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std::optional< ::Ifc4x3_rc1::IfcCoilTypeEnum::Value > Ifc4x3_rc1::IfcCoil::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCoilTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCoil::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCoilTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCoilTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCoil::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[179]); }
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void Ifc4x3_rc1::IfcCoil::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCoilTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCoilTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCoilType
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::Ifc4x3_rc1::IfcCoilTypeEnum::Value Ifc4x3_rc1::IfcCoilType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCoilTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCoilType::setPredefinedType(const ::Ifc4x3_rc1::IfcCoilTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCoilTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCoilType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[180]); }
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void Ifc4x3_rc1::IfcCoilType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCoilTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCoilTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcColourRgb
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double Ifc4x3_rc1::IfcColourRgb::Red() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcColourRgb::setRed(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcColourRgb::Green() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcColourRgb::setGreen(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcColourRgb::Blue() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcColourRgb::setBlue(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcColourRgb::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[184]); }
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void Ifc4x3_rc1::IfcColourRgb::initialize(std::optional< std::string > v1_Name, double v2_Red, double v3_Green, double v4_Blue) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_Red));set_attribute_value(2, (v3_Green));set_attribute_value(3, (v4_Blue)); }
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// Function implementations for IfcColourRgbList
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std::vector< std::vector< double > > Ifc4x3_rc1::IfcColourRgbList::ColourList() const { std::vector< std::vector< double > > v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcColourRgbList::setColourList(const std::vector< std::vector< double > >& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcColourRgbList::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[185]); }
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void Ifc4x3_rc1::IfcColourRgbList::initialize(std::vector< std::vector< double > > v1_ColourList) { set_attribute_value(0, (v1_ColourList)); }
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// Function implementations for IfcColourSpecification
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std::optional< std::string > Ifc4x3_rc1::IfcColourSpecification::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcColourSpecification::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcColourSpecification::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[186]); }
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void Ifc4x3_rc1::IfcColourSpecification::initialize(std::optional< std::string > v1_Name) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } }
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// Function implementations for IfcColumn
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std::optional< ::Ifc4x3_rc1::IfcColumnTypeEnum::Value > Ifc4x3_rc1::IfcColumn::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcColumnTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcColumn::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcColumnTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcColumnTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcColumn::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[187]); }
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void Ifc4x3_rc1::IfcColumn::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcColumnTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcColumnTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcColumnStandardCase
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const IfcParse::entity& Ifc4x3_rc1::IfcColumnStandardCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[188]); }
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void Ifc4x3_rc1::IfcColumnStandardCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcColumnTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcColumnTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcColumnType
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::Ifc4x3_rc1::IfcColumnTypeEnum::Value Ifc4x3_rc1::IfcColumnType::PredefinedType() const { return ::Ifc4x3_rc1::IfcColumnTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcColumnType::setPredefinedType(const ::Ifc4x3_rc1::IfcColumnTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcColumnTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcColumnType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[189]); }
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void Ifc4x3_rc1::IfcColumnType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcColumnTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcColumnTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCommunicationsAppliance
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std::optional< ::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value > Ifc4x3_rc1::IfcCommunicationsAppliance::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCommunicationsAppliance::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCommunicationsAppliance::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[191]); }
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void Ifc4x3_rc1::IfcCommunicationsAppliance::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCommunicationsApplianceType
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::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value Ifc4x3_rc1::IfcCommunicationsApplianceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCommunicationsApplianceType::setPredefinedType(const ::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCommunicationsApplianceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[192]); }
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void Ifc4x3_rc1::IfcCommunicationsApplianceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCommunicationsApplianceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcComplexProperty
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std::string Ifc4x3_rc1::IfcComplexProperty::UsageName() const { std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcComplexProperty::setUsageName(const std::string& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector< ::Ifc4x3_rc1::IfcProperty > Ifc4x3_rc1::IfcComplexProperty::HasProperties() const { std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcProperty>(es); }
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void Ifc4x3_rc1::IfcComplexProperty::setHasProperties(const std::vector< ::Ifc4x3_rc1::IfcProperty >& v) { set_attribute_value(3, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcComplexProperty::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[195]); }
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void Ifc4x3_rc1::IfcComplexProperty::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::string v3_UsageName, std::vector< ::Ifc4x3_rc1::IfcProperty > v4_HasProperties) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_UsageName));set_attribute_value(3, cast_vector<express::Base>(v4_HasProperties)); }
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// Function implementations for IfcComplexPropertyTemplate
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std::optional< std::string > Ifc4x3_rc1::IfcComplexPropertyTemplate::UsageName() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcComplexPropertyTemplate::setUsageName(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< ::Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Value > Ifc4x3_rc1::IfcComplexPropertyTemplate::TemplateType() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcComplexPropertyTemplate::setTemplateType(const std::optional< ::Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Value >& v) { if (v) {set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(5);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertyTemplate > > Ifc4x3_rc1::IfcComplexPropertyTemplate::HasPropertyTemplates() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(6); return cast_vector<::Ifc4x3_rc1::IfcPropertyTemplate>(es); }
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void Ifc4x3_rc1::IfcComplexPropertyTemplate::setHasPropertyTemplates(const std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertyTemplate > >& v) { if (v) {set_attribute_value(6, cast_vector<express::Base>(*v));} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcComplexPropertyTemplate::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[196]); }
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void Ifc4x3_rc1::IfcComplexPropertyTemplate::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_UsageName, std::optional< ::Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Value > v6_TemplateType, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertyTemplate > > v7_HasPropertyTemplates) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_UsageName) {set_attribute_value(4, (*v5_UsageName)); } if (v6_TemplateType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcComplexPropertyTemplateTypeEnum::Class(),(size_t)*v6_TemplateType))); } if (v7_HasPropertyTemplates) {set_attribute_value(6, cast_vector<express::Base>(*v7_HasPropertyTemplates)); } }
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// Function implementations for IfcCompositeCurve
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std::vector< ::Ifc4x3_rc1::IfcCompositeCurveSegment > Ifc4x3_rc1::IfcCompositeCurve::Segments() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcCompositeCurveSegment>(es); }
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void Ifc4x3_rc1::IfcCompositeCurve::setSegments(const std::vector< ::Ifc4x3_rc1::IfcCompositeCurveSegment >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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boost::logic::tribool Ifc4x3_rc1::IfcCompositeCurve::SelfIntersect() const { boost::logic::tribool v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcCompositeCurve::setSelfIntersect(const boost::logic::tribool& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCompositeCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[198]); }
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void Ifc4x3_rc1::IfcCompositeCurve::initialize(std::vector< ::Ifc4x3_rc1::IfcCompositeCurveSegment > v1_Segments, boost::logic::tribool v2_SelfIntersect) { set_attribute_value(0, cast_vector<express::Base>(v1_Segments));set_attribute_value(1, (v2_SelfIntersect)); }
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// Function implementations for IfcCompositeCurveOnSurface
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const IfcParse::entity& Ifc4x3_rc1::IfcCompositeCurveOnSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[199]); }
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void Ifc4x3_rc1::IfcCompositeCurveOnSurface::initialize(std::vector< ::Ifc4x3_rc1::IfcCompositeCurveSegment > v1_Segments, boost::logic::tribool v2_SelfIntersect) { set_attribute_value(0, cast_vector<express::Base>(v1_Segments));set_attribute_value(1, (v2_SelfIntersect)); }
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// Function implementations for IfcCompositeCurveSegment
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::Ifc4x3_rc1::IfcTransitionCode::Value Ifc4x3_rc1::IfcCompositeCurveSegment::Transition() const { return ::Ifc4x3_rc1::IfcTransitionCode::FromString(get_attribute_value(0)); }
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void Ifc4x3_rc1::IfcCompositeCurveSegment::setTransition(const ::Ifc4x3_rc1::IfcTransitionCode::Value& v) { set_attribute_value(0, EnumerationReference(&::Ifc4x3_rc1::IfcTransitionCode::Class(), (size_t) v));if constexpr (false)unset_attribute_value(0); }
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bool Ifc4x3_rc1::IfcCompositeCurveSegment::SameSense() const { bool v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcCompositeCurveSegment::setSameSense(const bool& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcCompositeCurveSegment::ParentCurve() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcCompositeCurveSegment::setParentCurve(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector<::Ifc4x3_rc1::IfcCompositeCurve> Ifc4x3_rc1::IfcCompositeCurveSegment::UsingCurves() const { return cast_vector<IfcCompositeCurve>(file()->getInverse(data()->id(), IFC4X3_RC1_types[198], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCompositeCurveSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[200]); }
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void Ifc4x3_rc1::IfcCompositeCurveSegment::initialize(::Ifc4x3_rc1::IfcTransitionCode::Value v1_Transition, bool v2_SameSense, ::Ifc4x3_rc1::IfcCurve v3_ParentCurve) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcTransitionCode::Class(),(size_t)v1_Transition)));set_attribute_value(1, (v2_SameSense));set_attribute_value(2, (v3_ParentCurve)); }
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// Function implementations for IfcCompositeProfileDef
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std::vector< ::Ifc4x3_rc1::IfcProfileDef > Ifc4x3_rc1::IfcCompositeProfileDef::Profiles() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcProfileDef>(es); }
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void Ifc4x3_rc1::IfcCompositeProfileDef::setProfiles(const std::vector< ::Ifc4x3_rc1::IfcProfileDef >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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std::optional< std::string > Ifc4x3_rc1::IfcCompositeProfileDef::Label() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcCompositeProfileDef::setLabel(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCompositeProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[201]); }
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void Ifc4x3_rc1::IfcCompositeProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, std::vector< ::Ifc4x3_rc1::IfcProfileDef > v3_Profiles, std::optional< std::string > v4_Label) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, cast_vector<express::Base>(v3_Profiles)); if (v4_Label) {set_attribute_value(3, (*v4_Label)); } }
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// Function implementations for IfcCompressor
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std::optional< ::Ifc4x3_rc1::IfcCompressorTypeEnum::Value > Ifc4x3_rc1::IfcCompressor::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCompressorTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCompressor::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCompressorTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCompressorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCompressor::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[203]); }
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void Ifc4x3_rc1::IfcCompressor::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCompressorTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCompressorTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCompressorType
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::Ifc4x3_rc1::IfcCompressorTypeEnum::Value Ifc4x3_rc1::IfcCompressorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCompressorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCompressorType::setPredefinedType(const ::Ifc4x3_rc1::IfcCompressorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCompressorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCompressorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[204]); }
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void Ifc4x3_rc1::IfcCompressorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCompressorTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCompressorTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCondenser
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std::optional< ::Ifc4x3_rc1::IfcCondenserTypeEnum::Value > Ifc4x3_rc1::IfcCondenser::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCondenserTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCondenser::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCondenserTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCondenserTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCondenser::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[206]); }
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void Ifc4x3_rc1::IfcCondenser::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCondenserTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCondenserTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCondenserType
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::Ifc4x3_rc1::IfcCondenserTypeEnum::Value Ifc4x3_rc1::IfcCondenserType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCondenserTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCondenserType::setPredefinedType(const ::Ifc4x3_rc1::IfcCondenserTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCondenserTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCondenserType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[207]); }
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void Ifc4x3_rc1::IfcCondenserType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCondenserTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCondenserTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcConic
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::Ifc4x3_rc1::IfcAxis2Placement Ifc4x3_rc1::IfcConic::Position() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcAxis2Placement>(); }
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void Ifc4x3_rc1::IfcConic::setPosition(const ::Ifc4x3_rc1::IfcAxis2Placement& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConic::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[209]); }
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void Ifc4x3_rc1::IfcConic::initialize(::Ifc4x3_rc1::IfcAxis2Placement v1_Position) { set_attribute_value(0, (v1_Position)); }
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// Function implementations for IfcConnectedFaceSet
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std::vector< ::Ifc4x3_rc1::IfcFace > Ifc4x3_rc1::IfcConnectedFaceSet::CfsFaces() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcFace>(es); }
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void Ifc4x3_rc1::IfcConnectedFaceSet::setCfsFaces(const std::vector< ::Ifc4x3_rc1::IfcFace >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConnectedFaceSet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[210]); }
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void Ifc4x3_rc1::IfcConnectedFaceSet::initialize(std::vector< ::Ifc4x3_rc1::IfcFace > v1_CfsFaces) { set_attribute_value(0, cast_vector<express::Base>(v1_CfsFaces)); }
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// Function implementations for IfcConnectionCurveGeometry
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::Ifc4x3_rc1::IfcCurveOrEdgeCurve Ifc4x3_rc1::IfcConnectionCurveGeometry::CurveOnRelatingElement() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurveOrEdgeCurve>(); }
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void Ifc4x3_rc1::IfcConnectionCurveGeometry::setCurveOnRelatingElement(const ::Ifc4x3_rc1::IfcCurveOrEdgeCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcCurveOrEdgeCurve Ifc4x3_rc1::IfcConnectionCurveGeometry::CurveOnRelatedElement() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcCurveOrEdgeCurve{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcCurveOrEdgeCurve>(); }
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void Ifc4x3_rc1::IfcConnectionCurveGeometry::setCurveOnRelatedElement(const ::Ifc4x3_rc1::IfcCurveOrEdgeCurve& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConnectionCurveGeometry::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[211]); }
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void Ifc4x3_rc1::IfcConnectionCurveGeometry::initialize(::Ifc4x3_rc1::IfcCurveOrEdgeCurve v1_CurveOnRelatingElement, ::Ifc4x3_rc1::IfcCurveOrEdgeCurve v2_CurveOnRelatedElement) { set_attribute_value(0, (v1_CurveOnRelatingElement));set_attribute_value(1, (v2_CurveOnRelatedElement)); }
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// Function implementations for IfcConnectionGeometry
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const IfcParse::entity& Ifc4x3_rc1::IfcConnectionGeometry::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[212]); }
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void Ifc4x3_rc1::IfcConnectionGeometry::initialize() { }
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// Function implementations for IfcConnectionPointEccentricity
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std::optional< double > Ifc4x3_rc1::IfcConnectionPointEccentricity::EccentricityInX() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcConnectionPointEccentricity::setEccentricityInX(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcConnectionPointEccentricity::EccentricityInY() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcConnectionPointEccentricity::setEccentricityInY(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcConnectionPointEccentricity::EccentricityInZ() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcConnectionPointEccentricity::setEccentricityInZ(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcConnectionPointEccentricity::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[213]); }
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void Ifc4x3_rc1::IfcConnectionPointEccentricity::initialize(::Ifc4x3_rc1::IfcPointOrVertexPoint v1_PointOnRelatingElement, ::Ifc4x3_rc1::IfcPointOrVertexPoint v2_PointOnRelatedElement, std::optional< double > v3_EccentricityInX, std::optional< double > v4_EccentricityInY, std::optional< double > v5_EccentricityInZ) { set_attribute_value(0, (v1_PointOnRelatingElement));set_attribute_value(1, (v2_PointOnRelatedElement)); if (v3_EccentricityInX) {set_attribute_value(2, (*v3_EccentricityInX)); } if (v4_EccentricityInY) {set_attribute_value(3, (*v4_EccentricityInY)); } if (v5_EccentricityInZ) {set_attribute_value(4, (*v5_EccentricityInZ)); } }
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// Function implementations for IfcConnectionPointGeometry
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::Ifc4x3_rc1::IfcPointOrVertexPoint Ifc4x3_rc1::IfcConnectionPointGeometry::PointOnRelatingElement() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcPointOrVertexPoint>(); }
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void Ifc4x3_rc1::IfcConnectionPointGeometry::setPointOnRelatingElement(const ::Ifc4x3_rc1::IfcPointOrVertexPoint& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcPointOrVertexPoint Ifc4x3_rc1::IfcConnectionPointGeometry::PointOnRelatedElement() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcPointOrVertexPoint{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcPointOrVertexPoint>(); }
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void Ifc4x3_rc1::IfcConnectionPointGeometry::setPointOnRelatedElement(const ::Ifc4x3_rc1::IfcPointOrVertexPoint& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConnectionPointGeometry::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[214]); }
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void Ifc4x3_rc1::IfcConnectionPointGeometry::initialize(::Ifc4x3_rc1::IfcPointOrVertexPoint v1_PointOnRelatingElement, ::Ifc4x3_rc1::IfcPointOrVertexPoint v2_PointOnRelatedElement) { set_attribute_value(0, (v1_PointOnRelatingElement));set_attribute_value(1, (v2_PointOnRelatedElement)); }
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// Function implementations for IfcConnectionSurfaceGeometry
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::Ifc4x3_rc1::IfcSurfaceOrFaceSurface Ifc4x3_rc1::IfcConnectionSurfaceGeometry::SurfaceOnRelatingElement() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcSurfaceOrFaceSurface>(); }
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void Ifc4x3_rc1::IfcConnectionSurfaceGeometry::setSurfaceOnRelatingElement(const ::Ifc4x3_rc1::IfcSurfaceOrFaceSurface& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcSurfaceOrFaceSurface Ifc4x3_rc1::IfcConnectionSurfaceGeometry::SurfaceOnRelatedElement() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcSurfaceOrFaceSurface{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcSurfaceOrFaceSurface>(); }
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void Ifc4x3_rc1::IfcConnectionSurfaceGeometry::setSurfaceOnRelatedElement(const ::Ifc4x3_rc1::IfcSurfaceOrFaceSurface& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConnectionSurfaceGeometry::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[215]); }
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void Ifc4x3_rc1::IfcConnectionSurfaceGeometry::initialize(::Ifc4x3_rc1::IfcSurfaceOrFaceSurface v1_SurfaceOnRelatingElement, ::Ifc4x3_rc1::IfcSurfaceOrFaceSurface v2_SurfaceOnRelatedElement) { set_attribute_value(0, (v1_SurfaceOnRelatingElement));set_attribute_value(1, (v2_SurfaceOnRelatedElement)); }
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// Function implementations for IfcConnectionVolumeGeometry
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::Ifc4x3_rc1::IfcSolidOrShell Ifc4x3_rc1::IfcConnectionVolumeGeometry::VolumeOnRelatingElement() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcSolidOrShell>(); }
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void Ifc4x3_rc1::IfcConnectionVolumeGeometry::setVolumeOnRelatingElement(const ::Ifc4x3_rc1::IfcSolidOrShell& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcSolidOrShell Ifc4x3_rc1::IfcConnectionVolumeGeometry::VolumeOnRelatedElement() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcSolidOrShell{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcSolidOrShell>(); }
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void Ifc4x3_rc1::IfcConnectionVolumeGeometry::setVolumeOnRelatedElement(const ::Ifc4x3_rc1::IfcSolidOrShell& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConnectionVolumeGeometry::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[217]); }
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void Ifc4x3_rc1::IfcConnectionVolumeGeometry::initialize(::Ifc4x3_rc1::IfcSolidOrShell v1_VolumeOnRelatingElement, ::Ifc4x3_rc1::IfcSolidOrShell v2_VolumeOnRelatedElement) { set_attribute_value(0, (v1_VolumeOnRelatingElement));set_attribute_value(1, (v2_VolumeOnRelatedElement)); }
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// Function implementations for IfcConstraint
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std::string Ifc4x3_rc1::IfcConstraint::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcConstraint::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcConstraint::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcConstraint::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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::Ifc4x3_rc1::IfcConstraintEnum::Value Ifc4x3_rc1::IfcConstraint::ConstraintGrade() const { return ::Ifc4x3_rc1::IfcConstraintEnum::FromString(get_attribute_value(2)); }
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void Ifc4x3_rc1::IfcConstraint::setConstraintGrade(const ::Ifc4x3_rc1::IfcConstraintEnum::Value& v) { set_attribute_value(2, EnumerationReference(&::Ifc4x3_rc1::IfcConstraintEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(2); }
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std::optional< std::string > Ifc4x3_rc1::IfcConstraint::ConstraintSource() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcConstraint::setConstraintSource(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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::Ifc4x3_rc1::IfcActorSelect Ifc4x3_rc1::IfcConstraint::CreatingActor() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcActorSelect{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcActorSelect>(); }
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void Ifc4x3_rc1::IfcConstraint::setCreatingActor(const ::Ifc4x3_rc1::IfcActorSelect& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::optional< std::string > Ifc4x3_rc1::IfcConstraint::CreationTime() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcConstraint::setCreationTime(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcConstraint::UserDefinedGrade() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcConstraint::setUserDefinedGrade(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcConstraint::HasExternalReferences() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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std::vector<::Ifc4x3_rc1::IfcResourceConstraintRelationship> Ifc4x3_rc1::IfcConstraint::PropertiesForConstraint() const { return cast_vector<IfcResourceConstraintRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[967], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConstraint::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[218]); }
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void Ifc4x3_rc1::IfcConstraint::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcConstraintEnum::Value v3_ConstraintGrade, std::optional< std::string > v4_ConstraintSource, ::Ifc4x3_rc1::IfcActorSelect v5_CreatingActor, std::optional< std::string > v6_CreationTime, std::optional< std::string > v7_UserDefinedGrade) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcConstraintEnum::Class(),(size_t)v3_ConstraintGrade))); if (v4_ConstraintSource) {set_attribute_value(3, (*v4_ConstraintSource)); }set_attribute_value(4, (v5_CreatingActor)); if (v6_CreationTime) {set_attribute_value(5, (*v6_CreationTime)); } if (v7_UserDefinedGrade) {set_attribute_value(6, (*v7_UserDefinedGrade)); } }
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// Function implementations for IfcConstructionEquipmentResource
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std::optional< ::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value > Ifc4x3_rc1::IfcConstructionEquipmentResource::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcConstructionEquipmentResource::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcConstructionEquipmentResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[220]); }
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void Ifc4x3_rc1::IfcConstructionEquipmentResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, ::Ifc4x3_rc1::IfcResourceTime v8_Usage, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v9_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v10_BaseQuantity, std::optional< ::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value > v11_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); }set_attribute_value(7, (v8_Usage)); if (v9_BaseCosts) {set_attribute_value(8, cast_vector<express::Base>(*v9_BaseCosts)); }set_attribute_value(9, (v10_BaseQuantity)); if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Class(),(size_t)*v11_PredefinedType))); } }
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// Function implementations for IfcConstructionEquipmentResourceType
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::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value Ifc4x3_rc1::IfcConstructionEquipmentResourceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcConstructionEquipmentResourceType::setPredefinedType(const ::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConstructionEquipmentResourceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[221]); }
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void Ifc4x3_rc1::IfcConstructionEquipmentResourceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ResourceType, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v10_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v11_BaseQuantity, ::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ResourceType) {set_attribute_value(8, (*v9_ResourceType)); } if (v10_BaseCosts) {set_attribute_value(9, cast_vector<express::Base>(*v10_BaseCosts)); }set_attribute_value(10, (v11_BaseQuantity));set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcConstructionEquipmentResourceTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcConstructionMaterialResource
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std::optional< ::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value > Ifc4x3_rc1::IfcConstructionMaterialResource::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcConstructionMaterialResource::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcConstructionMaterialResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[223]); }
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void Ifc4x3_rc1::IfcConstructionMaterialResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, ::Ifc4x3_rc1::IfcResourceTime v8_Usage, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v9_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v10_BaseQuantity, std::optional< ::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value > v11_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); }set_attribute_value(7, (v8_Usage)); if (v9_BaseCosts) {set_attribute_value(8, cast_vector<express::Base>(*v9_BaseCosts)); }set_attribute_value(9, (v10_BaseQuantity)); if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Class(),(size_t)*v11_PredefinedType))); } }
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// Function implementations for IfcConstructionMaterialResourceType
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::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value Ifc4x3_rc1::IfcConstructionMaterialResourceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcConstructionMaterialResourceType::setPredefinedType(const ::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConstructionMaterialResourceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[224]); }
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void Ifc4x3_rc1::IfcConstructionMaterialResourceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ResourceType, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v10_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v11_BaseQuantity, ::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ResourceType) {set_attribute_value(8, (*v9_ResourceType)); } if (v10_BaseCosts) {set_attribute_value(9, cast_vector<express::Base>(*v10_BaseCosts)); }set_attribute_value(10, (v11_BaseQuantity));set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcConstructionMaterialResourceTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcConstructionProductResource
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std::optional< ::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value > Ifc4x3_rc1::IfcConstructionProductResource::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcConstructionProductResource::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcConstructionProductResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[226]); }
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void Ifc4x3_rc1::IfcConstructionProductResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, ::Ifc4x3_rc1::IfcResourceTime v8_Usage, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v9_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v10_BaseQuantity, std::optional< ::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value > v11_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); }set_attribute_value(7, (v8_Usage)); if (v9_BaseCosts) {set_attribute_value(8, cast_vector<express::Base>(*v9_BaseCosts)); }set_attribute_value(9, (v10_BaseQuantity)); if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Class(),(size_t)*v11_PredefinedType))); } }
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// Function implementations for IfcConstructionProductResourceType
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::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value Ifc4x3_rc1::IfcConstructionProductResourceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcConstructionProductResourceType::setPredefinedType(const ::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConstructionProductResourceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[227]); }
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void Ifc4x3_rc1::IfcConstructionProductResourceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ResourceType, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v10_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v11_BaseQuantity, ::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ResourceType) {set_attribute_value(8, (*v9_ResourceType)); } if (v10_BaseCosts) {set_attribute_value(9, cast_vector<express::Base>(*v10_BaseCosts)); }set_attribute_value(10, (v11_BaseQuantity));set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcConstructionProductResourceTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcConstructionResource
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::Ifc4x3_rc1::IfcResourceTime Ifc4x3_rc1::IfcConstructionResource::Usage() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcResourceTime{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcResourceTime>(); }
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void Ifc4x3_rc1::IfcConstructionResource::setUsage(const ::Ifc4x3_rc1::IfcResourceTime& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > Ifc4x3_rc1::IfcConstructionResource::BaseCosts() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(8); return cast_vector<::Ifc4x3_rc1::IfcAppliedValue>(es); }
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void Ifc4x3_rc1::IfcConstructionResource::setBaseCosts(const std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > >& v) { if (v) {set_attribute_value(8, cast_vector<express::Base>(*v));} else {unset_attribute_value(8);} }
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::Ifc4x3_rc1::IfcPhysicalQuantity Ifc4x3_rc1::IfcConstructionResource::BaseQuantity() const { if(get_attribute_value(9).isNull()) { return ::Ifc4x3_rc1::IfcPhysicalQuantity{}; } return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcPhysicalQuantity>(); }
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void Ifc4x3_rc1::IfcConstructionResource::setBaseQuantity(const ::Ifc4x3_rc1::IfcPhysicalQuantity& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConstructionResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[229]); }
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void Ifc4x3_rc1::IfcConstructionResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, ::Ifc4x3_rc1::IfcResourceTime v8_Usage, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v9_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v10_BaseQuantity) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); }set_attribute_value(7, (v8_Usage)); if (v9_BaseCosts) {set_attribute_value(8, cast_vector<express::Base>(*v9_BaseCosts)); }set_attribute_value(9, (v10_BaseQuantity)); }
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// Function implementations for IfcConstructionResourceType
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std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > Ifc4x3_rc1::IfcConstructionResourceType::BaseCosts() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(9); return cast_vector<::Ifc4x3_rc1::IfcAppliedValue>(es); }
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void Ifc4x3_rc1::IfcConstructionResourceType::setBaseCosts(const std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > >& v) { if (v) {set_attribute_value(9, cast_vector<express::Base>(*v));} else {unset_attribute_value(9);} }
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::Ifc4x3_rc1::IfcPhysicalQuantity Ifc4x3_rc1::IfcConstructionResourceType::BaseQuantity() const { if(get_attribute_value(10).isNull()) { return ::Ifc4x3_rc1::IfcPhysicalQuantity{}; } return ((express::Base)(get_attribute_value(10))).as<::Ifc4x3_rc1::IfcPhysicalQuantity>(); }
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void Ifc4x3_rc1::IfcConstructionResourceType::setBaseQuantity(const ::Ifc4x3_rc1::IfcPhysicalQuantity& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConstructionResourceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[230]); }
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void Ifc4x3_rc1::IfcConstructionResourceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ResourceType, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v10_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v11_BaseQuantity) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ResourceType) {set_attribute_value(8, (*v9_ResourceType)); } if (v10_BaseCosts) {set_attribute_value(9, cast_vector<express::Base>(*v10_BaseCosts)); }set_attribute_value(10, (v11_BaseQuantity)); }
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// Function implementations for IfcContext
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std::optional< std::string > Ifc4x3_rc1::IfcContext::ObjectType() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcContext::setObjectType(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcContext::LongName() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcContext::setLongName(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcContext::Phase() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcContext::setPhase(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationContext > > Ifc4x3_rc1::IfcContext::RepresentationContexts() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcRepresentationContext>(es); }
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void Ifc4x3_rc1::IfcContext::setRepresentationContexts(const std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationContext > >& v) { if (v) {set_attribute_value(7, cast_vector<express::Base>(*v));} else {unset_attribute_value(7);} }
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::Ifc4x3_rc1::IfcUnitAssignment Ifc4x3_rc1::IfcContext::UnitsInContext() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcUnitAssignment{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcUnitAssignment>(); }
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void Ifc4x3_rc1::IfcContext::setUnitsInContext(const ::Ifc4x3_rc1::IfcUnitAssignment& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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std::vector<::Ifc4x3_rc1::IfcRelDefinesByProperties> Ifc4x3_rc1::IfcContext::IsDefinedBy() const { return cast_vector<IfcRelDefinesByProperties>(file()->getInverse(data()->id(), IFC4X3_RC1_types[944], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelDeclares> Ifc4x3_rc1::IfcContext::Declares() const { return cast_vector<IfcRelDeclares>(file()->getInverse(data()->id(), IFC4X3_RC1_types[940], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcContext::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[231]); }
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void Ifc4x3_rc1::IfcContext::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_LongName, std::optional< std::string > v7_Phase, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationContext > > v8_RepresentationContexts, ::Ifc4x3_rc1::IfcUnitAssignment v9_UnitsInContext) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_LongName) {set_attribute_value(5, (*v6_LongName)); } if (v7_Phase) {set_attribute_value(6, (*v7_Phase)); } if (v8_RepresentationContexts) {set_attribute_value(7, cast_vector<express::Base>(*v8_RepresentationContexts)); }set_attribute_value(8, (v9_UnitsInContext)); }
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// Function implementations for IfcContextDependentUnit
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std::string Ifc4x3_rc1::IfcContextDependentUnit::Name() const { std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcContextDependentUnit::setName(const std::string& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcContextDependentUnit::HasExternalReference() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcContextDependentUnit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[233]); }
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void Ifc4x3_rc1::IfcContextDependentUnit::initialize(::Ifc4x3_rc1::IfcDimensionalExponents v1_Dimensions, ::Ifc4x3_rc1::IfcUnitEnum::Value v2_UnitType, std::string v3_Name) { set_attribute_value(0, (v1_Dimensions));set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcUnitEnum::Class(),(size_t)v2_UnitType)));set_attribute_value(2, (v3_Name)); }
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// Function implementations for IfcControl
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std::optional< std::string > Ifc4x3_rc1::IfcControl::Identification() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcControl::setIdentification(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::vector<::Ifc4x3_rc1::IfcRelAssignsToControl> Ifc4x3_rc1::IfcControl::Controls() const { return cast_vector<IfcRelAssignsToControl>(file()->getInverse(data()->id(), IFC4X3_RC1_types[913], 6)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcControl::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[234]); }
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void Ifc4x3_rc1::IfcControl::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } }
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// Function implementations for IfcController
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std::optional< ::Ifc4x3_rc1::IfcControllerTypeEnum::Value > Ifc4x3_rc1::IfcController::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcControllerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcController::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcControllerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcControllerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcController::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[235]); }
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void Ifc4x3_rc1::IfcController::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcControllerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcControllerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcControllerType
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::Ifc4x3_rc1::IfcControllerTypeEnum::Value Ifc4x3_rc1::IfcControllerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcControllerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcControllerType::setPredefinedType(const ::Ifc4x3_rc1::IfcControllerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcControllerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcControllerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[236]); }
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void Ifc4x3_rc1::IfcControllerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcControllerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcControllerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcConversionBasedUnit
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std::string Ifc4x3_rc1::IfcConversionBasedUnit::Name() const { std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcConversionBasedUnit::setName(const std::string& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcMeasureWithUnit Ifc4x3_rc1::IfcConversionBasedUnit::ConversionFactor() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcMeasureWithUnit>(); }
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void Ifc4x3_rc1::IfcConversionBasedUnit::setConversionFactor(const ::Ifc4x3_rc1::IfcMeasureWithUnit& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcConversionBasedUnit::HasExternalReference() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConversionBasedUnit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[238]); }
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void Ifc4x3_rc1::IfcConversionBasedUnit::initialize(::Ifc4x3_rc1::IfcDimensionalExponents v1_Dimensions, ::Ifc4x3_rc1::IfcUnitEnum::Value v2_UnitType, std::string v3_Name, ::Ifc4x3_rc1::IfcMeasureWithUnit v4_ConversionFactor) { set_attribute_value(0, (v1_Dimensions));set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcUnitEnum::Class(),(size_t)v2_UnitType)));set_attribute_value(2, (v3_Name));set_attribute_value(3, (v4_ConversionFactor)); }
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// Function implementations for IfcConversionBasedUnitWithOffset
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double Ifc4x3_rc1::IfcConversionBasedUnitWithOffset::ConversionOffset() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcConversionBasedUnitWithOffset::setConversionOffset(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConversionBasedUnitWithOffset::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[239]); }
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void Ifc4x3_rc1::IfcConversionBasedUnitWithOffset::initialize(::Ifc4x3_rc1::IfcDimensionalExponents v1_Dimensions, ::Ifc4x3_rc1::IfcUnitEnum::Value v2_UnitType, std::string v3_Name, ::Ifc4x3_rc1::IfcMeasureWithUnit v4_ConversionFactor, double v5_ConversionOffset) { set_attribute_value(0, (v1_Dimensions));set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcUnitEnum::Class(),(size_t)v2_UnitType)));set_attribute_value(2, (v3_Name));set_attribute_value(3, (v4_ConversionFactor));set_attribute_value(4, (v5_ConversionOffset)); }
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// Function implementations for IfcConveyorSegment
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std::optional< ::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value > Ifc4x3_rc1::IfcConveyorSegment::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcConveyorSegment::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcConveyorSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[240]); }
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void Ifc4x3_rc1::IfcConveyorSegment::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcConveyorSegmentType
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::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value Ifc4x3_rc1::IfcConveyorSegmentType::PredefinedType() const { return ::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcConveyorSegmentType::setPredefinedType(const ::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcConveyorSegmentType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[241]); }
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void Ifc4x3_rc1::IfcConveyorSegmentType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcConveyorSegmentTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCooledBeam
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std::optional< ::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value > Ifc4x3_rc1::IfcCooledBeam::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCooledBeamTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCooledBeam::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCooledBeam::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[243]); }
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void Ifc4x3_rc1::IfcCooledBeam::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCooledBeamType
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::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value Ifc4x3_rc1::IfcCooledBeamType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCooledBeamTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCooledBeamType::setPredefinedType(const ::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCooledBeamType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[244]); }
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void Ifc4x3_rc1::IfcCooledBeamType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCooledBeamTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCoolingTower
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std::optional< ::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value > Ifc4x3_rc1::IfcCoolingTower::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCoolingTower::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCoolingTower::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[246]); }
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void Ifc4x3_rc1::IfcCoolingTower::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCoolingTowerType
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::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value Ifc4x3_rc1::IfcCoolingTowerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCoolingTowerType::setPredefinedType(const ::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCoolingTowerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[247]); }
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void Ifc4x3_rc1::IfcCoolingTowerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCoolingTowerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCoordinateOperation
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::Ifc4x3_rc1::IfcCoordinateReferenceSystemSelect Ifc4x3_rc1::IfcCoordinateOperation::SourceCRS() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCoordinateReferenceSystemSelect>(); }
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void Ifc4x3_rc1::IfcCoordinateOperation::setSourceCRS(const ::Ifc4x3_rc1::IfcCoordinateReferenceSystemSelect& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcCoordinateReferenceSystem Ifc4x3_rc1::IfcCoordinateOperation::TargetCRS() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcCoordinateReferenceSystem>(); }
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void Ifc4x3_rc1::IfcCoordinateOperation::setTargetCRS(const ::Ifc4x3_rc1::IfcCoordinateReferenceSystem& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCoordinateOperation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[249]); }
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void Ifc4x3_rc1::IfcCoordinateOperation::initialize(::Ifc4x3_rc1::IfcCoordinateReferenceSystemSelect v1_SourceCRS, ::Ifc4x3_rc1::IfcCoordinateReferenceSystem v2_TargetCRS) { set_attribute_value(0, (v1_SourceCRS));set_attribute_value(1, (v2_TargetCRS)); }
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// Function implementations for IfcCoordinateReferenceSystem
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std::string Ifc4x3_rc1::IfcCoordinateReferenceSystem::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcCoordinateReferenceSystem::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcCoordinateReferenceSystem::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcCoordinateReferenceSystem::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcCoordinateReferenceSystem::GeodeticDatum() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcCoordinateReferenceSystem::setGeodeticDatum(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::string > Ifc4x3_rc1::IfcCoordinateReferenceSystem::VerticalDatum() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcCoordinateReferenceSystem::setVerticalDatum(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::vector<::Ifc4x3_rc1::IfcCoordinateOperation> Ifc4x3_rc1::IfcCoordinateReferenceSystem::HasCoordinateOperation() const { return cast_vector<IfcCoordinateOperation>(file()->getInverse(data()->id(), IFC4X3_RC1_types[249], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCoordinateReferenceSystem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[250]); }
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void Ifc4x3_rc1::IfcCoordinateReferenceSystem::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::optional< std::string > v3_GeodeticDatum, std::optional< std::string > v4_VerticalDatum) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_GeodeticDatum) {set_attribute_value(2, (*v3_GeodeticDatum)); } if (v4_VerticalDatum) {set_attribute_value(3, (*v4_VerticalDatum)); } }
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// Function implementations for IfcCostItem
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std::optional< ::Ifc4x3_rc1::IfcCostItemTypeEnum::Value > Ifc4x3_rc1::IfcCostItem::PredefinedType() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCostItemTypeEnum::FromString(get_attribute_value(6)); }
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void Ifc4x3_rc1::IfcCostItem::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCostItemTypeEnum::Value >& v) { if (v) {set_attribute_value(6, EnumerationReference(&::Ifc4x3_rc1::IfcCostItemTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(6);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcCostValue > > Ifc4x3_rc1::IfcCostItem::CostValues() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcCostValue>(es); }
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void Ifc4x3_rc1::IfcCostItem::setCostValues(const std::optional< std::vector< ::Ifc4x3_rc1::IfcCostValue > >& v) { if (v) {set_attribute_value(7, cast_vector<express::Base>(*v));} else {unset_attribute_value(7);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcPhysicalQuantity > > Ifc4x3_rc1::IfcCostItem::CostQuantities() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(8); return cast_vector<::Ifc4x3_rc1::IfcPhysicalQuantity>(es); }
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void Ifc4x3_rc1::IfcCostItem::setCostQuantities(const std::optional< std::vector< ::Ifc4x3_rc1::IfcPhysicalQuantity > >& v) { if (v) {set_attribute_value(8, cast_vector<express::Base>(*v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCostItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[252]); }
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void Ifc4x3_rc1::IfcCostItem::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< ::Ifc4x3_rc1::IfcCostItemTypeEnum::Value > v7_PredefinedType, std::optional< std::vector< ::Ifc4x3_rc1::IfcCostValue > > v8_CostValues, std::optional< std::vector< ::Ifc4x3_rc1::IfcPhysicalQuantity > > v9_CostQuantities) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_PredefinedType) {set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcCostItemTypeEnum::Class(),(size_t)*v7_PredefinedType))); } if (v8_CostValues) {set_attribute_value(7, cast_vector<express::Base>(*v8_CostValues)); } if (v9_CostQuantities) {set_attribute_value(8, cast_vector<express::Base>(*v9_CostQuantities)); } }
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// Function implementations for IfcCostSchedule
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std::optional< ::Ifc4x3_rc1::IfcCostScheduleTypeEnum::Value > Ifc4x3_rc1::IfcCostSchedule::PredefinedType() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCostScheduleTypeEnum::FromString(get_attribute_value(6)); }
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void Ifc4x3_rc1::IfcCostSchedule::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCostScheduleTypeEnum::Value >& v) { if (v) {set_attribute_value(6, EnumerationReference(&::Ifc4x3_rc1::IfcCostScheduleTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcCostSchedule::Status() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcCostSchedule::setStatus(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcCostSchedule::SubmittedOn() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcCostSchedule::setSubmittedOn(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< std::string > Ifc4x3_rc1::IfcCostSchedule::UpdateDate() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::string v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcCostSchedule::setUpdateDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCostSchedule::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[254]); }
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void Ifc4x3_rc1::IfcCostSchedule::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< ::Ifc4x3_rc1::IfcCostScheduleTypeEnum::Value > v7_PredefinedType, std::optional< std::string > v8_Status, std::optional< std::string > v9_SubmittedOn, std::optional< std::string > v10_UpdateDate) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_PredefinedType) {set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcCostScheduleTypeEnum::Class(),(size_t)*v7_PredefinedType))); } if (v8_Status) {set_attribute_value(7, (*v8_Status)); } if (v9_SubmittedOn) {set_attribute_value(8, (*v9_SubmittedOn)); } if (v10_UpdateDate) {set_attribute_value(9, (*v10_UpdateDate)); } }
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// Function implementations for IfcCostValue
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const IfcParse::entity& Ifc4x3_rc1::IfcCostValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[256]); }
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void Ifc4x3_rc1::IfcCostValue::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcAppliedValueSelect v3_AppliedValue, ::Ifc4x3_rc1::IfcMeasureWithUnit v4_UnitBasis, std::optional< std::string > v5_ApplicableDate, std::optional< std::string > v6_FixedUntilDate, std::optional< std::string > v7_Category, std::optional< std::string > v8_Condition, std::optional< ::Ifc4x3_rc1::IfcArithmeticOperatorEnum::Value > v9_ArithmeticOperator, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v10_Components) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_AppliedValue));set_attribute_value(3, (v4_UnitBasis)); if (v5_ApplicableDate) {set_attribute_value(4, (*v5_ApplicableDate)); } if (v6_FixedUntilDate) {set_attribute_value(5, (*v6_FixedUntilDate)); } if (v7_Category) {set_attribute_value(6, (*v7_Category)); } if (v8_Condition) {set_attribute_value(7, (*v8_Condition)); } if (v9_ArithmeticOperator) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcArithmeticOperatorEnum::Class(),(size_t)*v9_ArithmeticOperator))); } if (v10_Components) {set_attribute_value(9, cast_vector<express::Base>(*v10_Components)); } }
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// Function implementations for IfcCourse
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std::optional< ::Ifc4x3_rc1::IfcCourseTypeEnum::Value > Ifc4x3_rc1::IfcCourse::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCourseTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCourse::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCourseTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCourseTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCourse::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[258]); }
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void Ifc4x3_rc1::IfcCourse::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCourseTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCourseTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCourseType
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::Ifc4x3_rc1::IfcCourseTypeEnum::Value Ifc4x3_rc1::IfcCourseType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCourseTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCourseType::setPredefinedType(const ::Ifc4x3_rc1::IfcCourseTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCourseTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCourseType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[259]); }
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void Ifc4x3_rc1::IfcCourseType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCourseTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCourseTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCovering
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std::optional< ::Ifc4x3_rc1::IfcCoveringTypeEnum::Value > Ifc4x3_rc1::IfcCovering::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCoveringTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCovering::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCoveringTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCoveringTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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std::vector<::Ifc4x3_rc1::IfcRelCoversSpaces> Ifc4x3_rc1::IfcCovering::CoversSpaces() const { return cast_vector<IfcRelCoversSpaces>(file()->getInverse(data()->id(), IFC4X3_RC1_types[939], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelCoversBldgElements> Ifc4x3_rc1::IfcCovering::CoversElements() const { return cast_vector<IfcRelCoversBldgElements>(file()->getInverse(data()->id(), IFC4X3_RC1_types[938], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCovering::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[261]); }
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void Ifc4x3_rc1::IfcCovering::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCoveringTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCoveringTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCoveringType
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::Ifc4x3_rc1::IfcCoveringTypeEnum::Value Ifc4x3_rc1::IfcCoveringType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCoveringTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCoveringType::setPredefinedType(const ::Ifc4x3_rc1::IfcCoveringTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCoveringTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCoveringType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[262]); }
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void Ifc4x3_rc1::IfcCoveringType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCoveringTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCoveringTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCrewResource
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std::optional< ::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value > Ifc4x3_rc1::IfcCrewResource::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCrewResourceTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcCrewResource::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCrewResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[264]); }
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void Ifc4x3_rc1::IfcCrewResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, ::Ifc4x3_rc1::IfcResourceTime v8_Usage, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v9_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v10_BaseQuantity, std::optional< ::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value > v11_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); }set_attribute_value(7, (v8_Usage)); if (v9_BaseCosts) {set_attribute_value(8, cast_vector<express::Base>(*v9_BaseCosts)); }set_attribute_value(9, (v10_BaseQuantity)); if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Class(),(size_t)*v11_PredefinedType))); } }
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// Function implementations for IfcCrewResourceType
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::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value Ifc4x3_rc1::IfcCrewResourceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCrewResourceTypeEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcCrewResourceType::setPredefinedType(const ::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCrewResourceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[265]); }
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void Ifc4x3_rc1::IfcCrewResourceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ResourceType, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v10_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v11_BaseQuantity, ::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ResourceType) {set_attribute_value(8, (*v9_ResourceType)); } if (v10_BaseCosts) {set_attribute_value(9, cast_vector<express::Base>(*v10_BaseCosts)); }set_attribute_value(10, (v11_BaseQuantity));set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcCrewResourceTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcCsgPrimitive3D
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcCsgPrimitive3D::Position() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcCsgPrimitive3D::setPosition(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCsgPrimitive3D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[267]); }
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void Ifc4x3_rc1::IfcCsgPrimitive3D::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position) { set_attribute_value(0, (v1_Position)); }
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// Function implementations for IfcCsgSolid
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::Ifc4x3_rc1::IfcCsgSelect Ifc4x3_rc1::IfcCsgSolid::TreeRootExpression() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCsgSelect>(); }
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void Ifc4x3_rc1::IfcCsgSolid::setTreeRootExpression(const ::Ifc4x3_rc1::IfcCsgSelect& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCsgSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[269]); }
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void Ifc4x3_rc1::IfcCsgSolid::initialize(::Ifc4x3_rc1::IfcCsgSelect v1_TreeRootExpression) { set_attribute_value(0, (v1_TreeRootExpression)); }
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// Function implementations for IfcCurrencyRelationship
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::Ifc4x3_rc1::IfcMonetaryUnit Ifc4x3_rc1::IfcCurrencyRelationship::RelatingMonetaryUnit() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcMonetaryUnit>(); }
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void Ifc4x3_rc1::IfcCurrencyRelationship::setRelatingMonetaryUnit(const ::Ifc4x3_rc1::IfcMonetaryUnit& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcMonetaryUnit Ifc4x3_rc1::IfcCurrencyRelationship::RelatedMonetaryUnit() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcMonetaryUnit>(); }
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void Ifc4x3_rc1::IfcCurrencyRelationship::setRelatedMonetaryUnit(const ::Ifc4x3_rc1::IfcMonetaryUnit& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcCurrencyRelationship::ExchangeRate() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcCurrencyRelationship::setExchangeRate(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::optional< std::string > Ifc4x3_rc1::IfcCurrencyRelationship::RateDateTime() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcCurrencyRelationship::setRateDateTime(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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::Ifc4x3_rc1::IfcLibraryInformation Ifc4x3_rc1::IfcCurrencyRelationship::RateSource() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcLibraryInformation{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcLibraryInformation>(); }
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void Ifc4x3_rc1::IfcCurrencyRelationship::setRateSource(const ::Ifc4x3_rc1::IfcLibraryInformation& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurrencyRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[271]); }
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void Ifc4x3_rc1::IfcCurrencyRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcMonetaryUnit v3_RelatingMonetaryUnit, ::Ifc4x3_rc1::IfcMonetaryUnit v4_RelatedMonetaryUnit, double v5_ExchangeRate, std::optional< std::string > v6_RateDateTime, ::Ifc4x3_rc1::IfcLibraryInformation v7_RateSource) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_RelatingMonetaryUnit));set_attribute_value(3, (v4_RelatedMonetaryUnit));set_attribute_value(4, (v5_ExchangeRate)); if (v6_RateDateTime) {set_attribute_value(5, (*v6_RateDateTime)); }set_attribute_value(6, (v7_RateSource)); }
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// Function implementations for IfcCurtainWall
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std::optional< ::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value > Ifc4x3_rc1::IfcCurtainWall::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCurtainWallTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcCurtainWall::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurtainWall::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[272]); }
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void Ifc4x3_rc1::IfcCurtainWall::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcCurtainWallType
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::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value Ifc4x3_rc1::IfcCurtainWallType::PredefinedType() const { return ::Ifc4x3_rc1::IfcCurtainWallTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcCurtainWallType::setPredefinedType(const ::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurtainWallType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[273]); }
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void Ifc4x3_rc1::IfcCurtainWallType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcCurtainWallTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcCurve
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const IfcParse::entity& Ifc4x3_rc1::IfcCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[276]); }
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void Ifc4x3_rc1::IfcCurve::initialize() { }
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// Function implementations for IfcCurveBoundedPlane
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::Ifc4x3_rc1::IfcPlane Ifc4x3_rc1::IfcCurveBoundedPlane::BasisSurface() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcPlane>(); }
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void Ifc4x3_rc1::IfcCurveBoundedPlane::setBasisSurface(const ::Ifc4x3_rc1::IfcPlane& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcCurveBoundedPlane::OuterBoundary() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcCurveBoundedPlane::setOuterBoundary(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::vector< ::Ifc4x3_rc1::IfcCurve > Ifc4x3_rc1::IfcCurveBoundedPlane::InnerBoundaries() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcCurve>(es); }
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void Ifc4x3_rc1::IfcCurveBoundedPlane::setInnerBoundaries(const std::vector< ::Ifc4x3_rc1::IfcCurve >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurveBoundedPlane::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[277]); }
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void Ifc4x3_rc1::IfcCurveBoundedPlane::initialize(::Ifc4x3_rc1::IfcPlane v1_BasisSurface, ::Ifc4x3_rc1::IfcCurve v2_OuterBoundary, std::vector< ::Ifc4x3_rc1::IfcCurve > v3_InnerBoundaries) { set_attribute_value(0, (v1_BasisSurface));set_attribute_value(1, (v2_OuterBoundary));set_attribute_value(2, cast_vector<express::Base>(v3_InnerBoundaries)); }
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// Function implementations for IfcCurveBoundedSurface
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::Ifc4x3_rc1::IfcSurface Ifc4x3_rc1::IfcCurveBoundedSurface::BasisSurface() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcSurface>(); }
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void Ifc4x3_rc1::IfcCurveBoundedSurface::setBasisSurface(const ::Ifc4x3_rc1::IfcSurface& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcBoundaryCurve > Ifc4x3_rc1::IfcCurveBoundedSurface::Boundaries() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcBoundaryCurve>(es); }
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void Ifc4x3_rc1::IfcCurveBoundedSurface::setBoundaries(const std::vector< ::Ifc4x3_rc1::IfcBoundaryCurve >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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bool Ifc4x3_rc1::IfcCurveBoundedSurface::ImplicitOuter() const { bool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcCurveBoundedSurface::setImplicitOuter(const bool& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurveBoundedSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[278]); }
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void Ifc4x3_rc1::IfcCurveBoundedSurface::initialize(::Ifc4x3_rc1::IfcSurface v1_BasisSurface, std::vector< ::Ifc4x3_rc1::IfcBoundaryCurve > v2_Boundaries, bool v3_ImplicitOuter) { set_attribute_value(0, (v1_BasisSurface));set_attribute_value(1, cast_vector<express::Base>(v2_Boundaries));set_attribute_value(2, (v3_ImplicitOuter)); }
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// Function implementations for IfcCurveSegment2D
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::Ifc4x3_rc1::IfcCartesianPoint Ifc4x3_rc1::IfcCurveSegment2D::StartPoint() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCartesianPoint>(); }
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void Ifc4x3_rc1::IfcCurveSegment2D::setStartPoint(const ::Ifc4x3_rc1::IfcCartesianPoint& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcCurveSegment2D::StartDirection() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcCurveSegment2D::setStartDirection(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcCurveSegment2D::SegmentLength() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcCurveSegment2D::setSegmentLength(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurveSegment2D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[283]); }
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void Ifc4x3_rc1::IfcCurveSegment2D::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_StartPoint, double v2_StartDirection, double v3_SegmentLength) { set_attribute_value(0, (v1_StartPoint));set_attribute_value(1, (v2_StartDirection));set_attribute_value(2, (v3_SegmentLength)); }
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// Function implementations for IfcCurveStyle
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::Ifc4x3_rc1::IfcCurveFontOrScaledCurveFontSelect Ifc4x3_rc1::IfcCurveStyle::CurveFont() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcCurveFontOrScaledCurveFontSelect{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcCurveFontOrScaledCurveFontSelect>(); }
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void Ifc4x3_rc1::IfcCurveStyle::setCurveFont(const ::Ifc4x3_rc1::IfcCurveFontOrScaledCurveFontSelect& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcSizeSelect Ifc4x3_rc1::IfcCurveStyle::CurveWidth() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcSizeSelect{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcSizeSelect>(); }
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void Ifc4x3_rc1::IfcCurveStyle::setCurveWidth(const ::Ifc4x3_rc1::IfcSizeSelect& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcColour Ifc4x3_rc1::IfcCurveStyle::CurveColour() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcColour{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcColour>(); }
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void Ifc4x3_rc1::IfcCurveStyle::setCurveColour(const ::Ifc4x3_rc1::IfcColour& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< bool > Ifc4x3_rc1::IfcCurveStyle::ModelOrDraughting() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } bool v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcCurveStyle::setModelOrDraughting(const std::optional< bool >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurveStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[284]); }
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void Ifc4x3_rc1::IfcCurveStyle::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcCurveFontOrScaledCurveFontSelect v2_CurveFont, ::Ifc4x3_rc1::IfcSizeSelect v3_CurveWidth, ::Ifc4x3_rc1::IfcColour v4_CurveColour, std::optional< bool > v5_ModelOrDraughting) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_CurveFont));set_attribute_value(2, (v3_CurveWidth));set_attribute_value(3, (v4_CurveColour)); if (v5_ModelOrDraughting) {set_attribute_value(4, (*v5_ModelOrDraughting)); } }
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// Function implementations for IfcCurveStyleFont
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std::optional< std::string > Ifc4x3_rc1::IfcCurveStyleFont::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcCurveStyleFont::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::vector< ::Ifc4x3_rc1::IfcCurveStyleFontPattern > Ifc4x3_rc1::IfcCurveStyleFont::PatternList() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcCurveStyleFontPattern>(es); }
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void Ifc4x3_rc1::IfcCurveStyleFont::setPatternList(const std::vector< ::Ifc4x3_rc1::IfcCurveStyleFontPattern >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurveStyleFont::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[285]); }
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void Ifc4x3_rc1::IfcCurveStyleFont::initialize(std::optional< std::string > v1_Name, std::vector< ::Ifc4x3_rc1::IfcCurveStyleFontPattern > v2_PatternList) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, cast_vector<express::Base>(v2_PatternList)); }
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// Function implementations for IfcCurveStyleFontAndScaling
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std::optional< std::string > Ifc4x3_rc1::IfcCurveStyleFontAndScaling::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcCurveStyleFontAndScaling::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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::Ifc4x3_rc1::IfcCurveStyleFontSelect Ifc4x3_rc1::IfcCurveStyleFontAndScaling::CurveFont() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcCurveStyleFontSelect>(); }
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void Ifc4x3_rc1::IfcCurveStyleFontAndScaling::setCurveFont(const ::Ifc4x3_rc1::IfcCurveStyleFontSelect& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcCurveStyleFontAndScaling::CurveFontScaling() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcCurveStyleFontAndScaling::setCurveFontScaling(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurveStyleFontAndScaling::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[286]); }
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void Ifc4x3_rc1::IfcCurveStyleFontAndScaling::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcCurveStyleFontSelect v2_CurveFont, double v3_CurveFontScaling) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_CurveFont));set_attribute_value(2, (v3_CurveFontScaling)); }
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// Function implementations for IfcCurveStyleFontPattern
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double Ifc4x3_rc1::IfcCurveStyleFontPattern::VisibleSegmentLength() const { double v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcCurveStyleFontPattern::setVisibleSegmentLength(const double& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcCurveStyleFontPattern::InvisibleSegmentLength() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcCurveStyleFontPattern::setInvisibleSegmentLength(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCurveStyleFontPattern::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[287]); }
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void Ifc4x3_rc1::IfcCurveStyleFontPattern::initialize(double v1_VisibleSegmentLength, double v2_InvisibleSegmentLength) { set_attribute_value(0, (v1_VisibleSegmentLength));set_attribute_value(1, (v2_InvisibleSegmentLength)); }
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// Function implementations for IfcCylindricalSurface
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double Ifc4x3_rc1::IfcCylindricalSurface::Radius() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcCylindricalSurface::setRadius(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcCylindricalSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[289]); }
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void Ifc4x3_rc1::IfcCylindricalSurface::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position, double v2_Radius) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_Radius)); }
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// Function implementations for IfcDamper
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std::optional< ::Ifc4x3_rc1::IfcDamperTypeEnum::Value > Ifc4x3_rc1::IfcDamper::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDamperTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcDamper::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDamperTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcDamperTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDamper::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[290]); }
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void Ifc4x3_rc1::IfcDamper::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcDamperTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcDamperTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcDamperType
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::Ifc4x3_rc1::IfcDamperTypeEnum::Value Ifc4x3_rc1::IfcDamperType::PredefinedType() const { return ::Ifc4x3_rc1::IfcDamperTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDamperType::setPredefinedType(const ::Ifc4x3_rc1::IfcDamperTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDamperTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDamperType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[291]); }
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void Ifc4x3_rc1::IfcDamperType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcDamperTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDamperTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcDeepFoundation
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const IfcParse::entity& Ifc4x3_rc1::IfcDeepFoundation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[298]); }
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void Ifc4x3_rc1::IfcDeepFoundation::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcDeepFoundationType
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const IfcParse::entity& Ifc4x3_rc1::IfcDeepFoundationType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[299]); }
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void Ifc4x3_rc1::IfcDeepFoundationType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcDerivedProfileDef
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcDerivedProfileDef::ParentProfile() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcDerivedProfileDef::setParentProfile(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcCartesianTransformationOperator2D Ifc4x3_rc1::IfcDerivedProfileDef::Operator() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcCartesianTransformationOperator2D>(); }
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void Ifc4x3_rc1::IfcDerivedProfileDef::setOperator(const ::Ifc4x3_rc1::IfcCartesianTransformationOperator2D& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcDerivedProfileDef::Label() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcDerivedProfileDef::setLabel(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDerivedProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[302]); }
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void Ifc4x3_rc1::IfcDerivedProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcProfileDef v3_ParentProfile, ::Ifc4x3_rc1::IfcCartesianTransformationOperator2D v4_Operator, std::optional< std::string > v5_Label) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_ParentProfile));set_attribute_value(3, (v4_Operator)); if (v5_Label) {set_attribute_value(4, (*v5_Label)); } }
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// Function implementations for IfcDerivedUnit
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std::vector< ::Ifc4x3_rc1::IfcDerivedUnitElement > Ifc4x3_rc1::IfcDerivedUnit::Elements() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcDerivedUnitElement>(es); }
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void Ifc4x3_rc1::IfcDerivedUnit::setElements(const std::vector< ::Ifc4x3_rc1::IfcDerivedUnitElement >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcDerivedUnitEnum::Value Ifc4x3_rc1::IfcDerivedUnit::UnitType() const { return ::Ifc4x3_rc1::IfcDerivedUnitEnum::FromString(get_attribute_value(1)); }
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void Ifc4x3_rc1::IfcDerivedUnit::setUnitType(const ::Ifc4x3_rc1::IfcDerivedUnitEnum::Value& v) { set_attribute_value(1, EnumerationReference(&::Ifc4x3_rc1::IfcDerivedUnitEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(1); }
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std::optional< std::string > Ifc4x3_rc1::IfcDerivedUnit::UserDefinedType() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcDerivedUnit::setUserDefinedType(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDerivedUnit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[303]); }
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void Ifc4x3_rc1::IfcDerivedUnit::initialize(std::vector< ::Ifc4x3_rc1::IfcDerivedUnitElement > v1_Elements, ::Ifc4x3_rc1::IfcDerivedUnitEnum::Value v2_UnitType, std::optional< std::string > v3_UserDefinedType) { set_attribute_value(0, cast_vector<express::Base>(v1_Elements));set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcDerivedUnitEnum::Class(),(size_t)v2_UnitType))); if (v3_UserDefinedType) {set_attribute_value(2, (*v3_UserDefinedType)); } }
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// Function implementations for IfcDerivedUnitElement
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::Ifc4x3_rc1::IfcNamedUnit Ifc4x3_rc1::IfcDerivedUnitElement::Unit() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcNamedUnit>(); }
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void Ifc4x3_rc1::IfcDerivedUnitElement::setUnit(const ::Ifc4x3_rc1::IfcNamedUnit& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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int Ifc4x3_rc1::IfcDerivedUnitElement::Exponent() const { int v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcDerivedUnitElement::setExponent(const int& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDerivedUnitElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[304]); }
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void Ifc4x3_rc1::IfcDerivedUnitElement::initialize(::Ifc4x3_rc1::IfcNamedUnit v1_Unit, int v2_Exponent) { set_attribute_value(0, (v1_Unit));set_attribute_value(1, (v2_Exponent)); }
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// Function implementations for IfcDimensionalExponents
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int Ifc4x3_rc1::IfcDimensionalExponents::LengthExponent() const { int v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcDimensionalExponents::setLengthExponent(const int& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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int Ifc4x3_rc1::IfcDimensionalExponents::MassExponent() const { int v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcDimensionalExponents::setMassExponent(const int& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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int Ifc4x3_rc1::IfcDimensionalExponents::TimeExponent() const { int v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcDimensionalExponents::setTimeExponent(const int& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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int Ifc4x3_rc1::IfcDimensionalExponents::ElectricCurrentExponent() const { int v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcDimensionalExponents::setElectricCurrentExponent(const int& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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int Ifc4x3_rc1::IfcDimensionalExponents::ThermodynamicTemperatureExponent() const { int v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcDimensionalExponents::setThermodynamicTemperatureExponent(const int& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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int Ifc4x3_rc1::IfcDimensionalExponents::AmountOfSubstanceExponent() const { int v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcDimensionalExponents::setAmountOfSubstanceExponent(const int& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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int Ifc4x3_rc1::IfcDimensionalExponents::LuminousIntensityExponent() const { int v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcDimensionalExponents::setLuminousIntensityExponent(const int& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDimensionalExponents::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[307]); }
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void Ifc4x3_rc1::IfcDimensionalExponents::initialize(int v1_LengthExponent, int v2_MassExponent, int v3_TimeExponent, int v4_ElectricCurrentExponent, int v5_ThermodynamicTemperatureExponent, int v6_AmountOfSubstanceExponent, int v7_LuminousIntensityExponent) { set_attribute_value(0, (v1_LengthExponent));set_attribute_value(1, (v2_MassExponent));set_attribute_value(2, (v3_TimeExponent));set_attribute_value(3, (v4_ElectricCurrentExponent));set_attribute_value(4, (v5_ThermodynamicTemperatureExponent));set_attribute_value(5, (v6_AmountOfSubstanceExponent));set_attribute_value(6, (v7_LuminousIntensityExponent)); }
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// Function implementations for IfcDirection
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std::vector< double > /*[2:3]*/ Ifc4x3_rc1::IfcDirection::DirectionRatios() const { std::vector< double > /*[2:3]*/ v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcDirection::setDirectionRatios(const std::vector< double > /*[2:3]*/& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDirection::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[309]); }
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void Ifc4x3_rc1::IfcDirection::initialize(std::vector< double > /*[2:3]*/ v1_DirectionRatios) { set_attribute_value(0, (v1_DirectionRatios)); }
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// Function implementations for IfcDirectrixCurveSweptAreaSolid
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcDirectrixCurveSweptAreaSolid::Directrix() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcDirectrixCurveSweptAreaSolid::setDirectrix(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::optional< double > Ifc4x3_rc1::IfcDirectrixCurveSweptAreaSolid::StartParam() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcDirectrixCurveSweptAreaSolid::setStartParam(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcDirectrixCurveSweptAreaSolid::EndParam() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcDirectrixCurveSweptAreaSolid::setEndParam(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDirectrixCurveSweptAreaSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[311]); }
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void Ifc4x3_rc1::IfcDirectrixCurveSweptAreaSolid::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcCurve v3_Directrix, std::optional< double > v4_StartParam, std::optional< double > v5_EndParam) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_Directrix)); if (v4_StartParam) {set_attribute_value(3, (*v4_StartParam)); } if (v5_EndParam) {set_attribute_value(4, (*v5_EndParam)); } }
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// Function implementations for IfcDirectrixDistanceSweptAreaSolid
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcDirectrixDistanceSweptAreaSolid::Directrix() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcDirectrixDistanceSweptAreaSolid::setDirectrix(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcDistanceExpression Ifc4x3_rc1::IfcDirectrixDistanceSweptAreaSolid::StartDistance() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcDistanceExpression{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcDistanceExpression>(); }
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void Ifc4x3_rc1::IfcDirectrixDistanceSweptAreaSolid::setStartDistance(const ::Ifc4x3_rc1::IfcDistanceExpression& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcDistanceExpression Ifc4x3_rc1::IfcDirectrixDistanceSweptAreaSolid::EndDistance() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcDistanceExpression{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcDistanceExpression>(); }
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void Ifc4x3_rc1::IfcDirectrixDistanceSweptAreaSolid::setEndDistance(const ::Ifc4x3_rc1::IfcDistanceExpression& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDirectrixDistanceSweptAreaSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[312]); }
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void Ifc4x3_rc1::IfcDirectrixDistanceSweptAreaSolid::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcCurve v3_Directrix, ::Ifc4x3_rc1::IfcDistanceExpression v4_StartDistance, ::Ifc4x3_rc1::IfcDistanceExpression v5_EndDistance) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_Directrix));set_attribute_value(3, (v4_StartDistance));set_attribute_value(4, (v5_EndDistance)); }
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// Function implementations for IfcDiscreteAccessory
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std::optional< ::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value > Ifc4x3_rc1::IfcDiscreteAccessory::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcDiscreteAccessory::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDiscreteAccessory::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[313]); }
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void Ifc4x3_rc1::IfcDiscreteAccessory::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcDiscreteAccessoryType
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::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value Ifc4x3_rc1::IfcDiscreteAccessoryType::PredefinedType() const { return ::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDiscreteAccessoryType::setPredefinedType(const ::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDiscreteAccessoryType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[314]); }
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void Ifc4x3_rc1::IfcDiscreteAccessoryType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDiscreteAccessoryTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcDistanceExpression
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double Ifc4x3_rc1::IfcDistanceExpression::DistanceAlong() const { double v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcDistanceExpression::setDistanceAlong(const double& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< double > Ifc4x3_rc1::IfcDistanceExpression::OffsetLateral() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcDistanceExpression::setOffsetLateral(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< double > Ifc4x3_rc1::IfcDistanceExpression::OffsetVertical() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcDistanceExpression::setOffsetVertical(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcDistanceExpression::OffsetLongitudinal() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcDistanceExpression::setOffsetLongitudinal(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< bool > Ifc4x3_rc1::IfcDistanceExpression::AlongHorizontal() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } bool v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcDistanceExpression::setAlongHorizontal(const std::optional< bool >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistanceExpression::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[316]); }
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void Ifc4x3_rc1::IfcDistanceExpression::initialize(double v1_DistanceAlong, std::optional< double > v2_OffsetLateral, std::optional< double > v3_OffsetVertical, std::optional< double > v4_OffsetLongitudinal, std::optional< bool > v5_AlongHorizontal) { set_attribute_value(0, (v1_DistanceAlong)); if (v2_OffsetLateral) {set_attribute_value(1, (*v2_OffsetLateral)); } if (v3_OffsetVertical) {set_attribute_value(2, (*v3_OffsetVertical)); } if (v4_OffsetLongitudinal) {set_attribute_value(3, (*v4_OffsetLongitudinal)); } if (v5_AlongHorizontal) {set_attribute_value(4, (*v5_AlongHorizontal)); } }
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// Function implementations for IfcDistributionBoard
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std::optional< ::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value > Ifc4x3_rc1::IfcDistributionBoard::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcDistributionBoard::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionBoard::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[317]); }
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void Ifc4x3_rc1::IfcDistributionBoard::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcDistributionBoardType
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::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value Ifc4x3_rc1::IfcDistributionBoardType::PredefinedType() const { return ::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDistributionBoardType::setPredefinedType(const ::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionBoardType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[318]); }
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void Ifc4x3_rc1::IfcDistributionBoardType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDistributionBoardTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcDistributionChamberElement
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std::optional< ::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value > Ifc4x3_rc1::IfcDistributionChamberElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcDistributionChamberElement::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionChamberElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[320]); }
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void Ifc4x3_rc1::IfcDistributionChamberElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcDistributionChamberElementType
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::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value Ifc4x3_rc1::IfcDistributionChamberElementType::PredefinedType() const { return ::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDistributionChamberElementType::setPredefinedType(const ::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionChamberElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[321]); }
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void Ifc4x3_rc1::IfcDistributionChamberElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDistributionChamberElementTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcDistributionCircuit
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionCircuit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[323]); }
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void Ifc4x3_rc1::IfcDistributionCircuit::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_LongName, std::optional< ::Ifc4x3_rc1::IfcDistributionSystemEnum::Value > v7_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_LongName) {set_attribute_value(5, (*v6_LongName)); } if (v7_PredefinedType) {set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcDistributionSystemEnum::Class(),(size_t)*v7_PredefinedType))); } }
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// Function implementations for IfcDistributionControlElement
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std::vector<::Ifc4x3_rc1::IfcRelFlowControlElements> Ifc4x3_rc1::IfcDistributionControlElement::AssignedToFlowElement() const { return cast_vector<IfcRelFlowControlElements>(file()->getInverse(data()->id(), IFC4X3_RC1_types[948], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionControlElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[324]); }
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void Ifc4x3_rc1::IfcDistributionControlElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcDistributionControlElementType
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionControlElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[325]); }
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void Ifc4x3_rc1::IfcDistributionControlElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcDistributionElement
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std::vector<::Ifc4x3_rc1::IfcRelConnectsPortToElement> Ifc4x3_rc1::IfcDistributionElement::HasPorts() const { return cast_vector<IfcRelConnectsPortToElement>(file()->getInverse(data()->id(), IFC4X3_RC1_types[932], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[326]); }
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void Ifc4x3_rc1::IfcDistributionElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcDistributionElementType
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[327]); }
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void Ifc4x3_rc1::IfcDistributionElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcDistributionFlowElement
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std::vector<::Ifc4x3_rc1::IfcRelFlowControlElements> Ifc4x3_rc1::IfcDistributionFlowElement::HasControlElements() const { return cast_vector<IfcRelFlowControlElements>(file()->getInverse(data()->id(), IFC4X3_RC1_types[948], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionFlowElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[328]); }
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void Ifc4x3_rc1::IfcDistributionFlowElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcDistributionFlowElementType
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionFlowElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[329]); }
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void Ifc4x3_rc1::IfcDistributionFlowElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcDistributionPort
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std::optional< ::Ifc4x3_rc1::IfcFlowDirectionEnum::Value > Ifc4x3_rc1::IfcDistributionPort::FlowDirection() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFlowDirectionEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcDistributionPort::setFlowDirection(const std::optional< ::Ifc4x3_rc1::IfcFlowDirectionEnum::Value >& v) { if (v) {set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcFlowDirectionEnum::Class(), (size_t) *v));} else {unset_attribute_value(7);} }
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std::optional< ::Ifc4x3_rc1::IfcDistributionPortTypeEnum::Value > Ifc4x3_rc1::IfcDistributionPort::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDistributionPortTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcDistributionPort::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDistributionPortTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcDistributionPortTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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std::optional< ::Ifc4x3_rc1::IfcDistributionSystemEnum::Value > Ifc4x3_rc1::IfcDistributionPort::SystemType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDistributionSystemEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDistributionPort::setSystemType(const std::optional< ::Ifc4x3_rc1::IfcDistributionSystemEnum::Value >& v) { if (v) {set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDistributionSystemEnum::Class(), (size_t) *v));} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionPort::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[330]); }
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void Ifc4x3_rc1::IfcDistributionPort::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< ::Ifc4x3_rc1::IfcFlowDirectionEnum::Value > v8_FlowDirection, std::optional< ::Ifc4x3_rc1::IfcDistributionPortTypeEnum::Value > v9_PredefinedType, std::optional< ::Ifc4x3_rc1::IfcDistributionSystemEnum::Value > v10_SystemType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_FlowDirection) {set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcFlowDirectionEnum::Class(),(size_t)*v8_FlowDirection))); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcDistributionPortTypeEnum::Class(),(size_t)*v9_PredefinedType))); } if (v10_SystemType) {set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDistributionSystemEnum::Class(),(size_t)*v10_SystemType))); } }
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// Function implementations for IfcDistributionSystem
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std::optional< std::string > Ifc4x3_rc1::IfcDistributionSystem::LongName() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcDistributionSystem::setLongName(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< ::Ifc4x3_rc1::IfcDistributionSystemEnum::Value > Ifc4x3_rc1::IfcDistributionSystem::PredefinedType() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDistributionSystemEnum::FromString(get_attribute_value(6)); }
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void Ifc4x3_rc1::IfcDistributionSystem::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDistributionSystemEnum::Value >& v) { if (v) {set_attribute_value(6, EnumerationReference(&::Ifc4x3_rc1::IfcDistributionSystemEnum::Class(), (size_t) *v));} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDistributionSystem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[332]); }
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void Ifc4x3_rc1::IfcDistributionSystem::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_LongName, std::optional< ::Ifc4x3_rc1::IfcDistributionSystemEnum::Value > v7_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_LongName) {set_attribute_value(5, (*v6_LongName)); } if (v7_PredefinedType) {set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcDistributionSystemEnum::Class(),(size_t)*v7_PredefinedType))); } }
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// Function implementations for IfcDocumentInformation
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std::string Ifc4x3_rc1::IfcDocumentInformation::Identification() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setIdentification(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::string Ifc4x3_rc1::IfcDocumentInformation::Name() const { std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setName(const std::string& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::Description() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::Location() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setLocation(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::Purpose() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setPurpose(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::IntendedUse() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setIntendedUse(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::Scope() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setScope(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::Revision() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setRevision(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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::Ifc4x3_rc1::IfcActorSelect Ifc4x3_rc1::IfcDocumentInformation::DocumentOwner() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcActorSelect{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcActorSelect>(); }
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void Ifc4x3_rc1::IfcDocumentInformation::setDocumentOwner(const ::Ifc4x3_rc1::IfcActorSelect& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcActorSelect > > Ifc4x3_rc1::IfcDocumentInformation::Editors() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(9); return cast_vector<::Ifc4x3_rc1::IfcActorSelect>(es); }
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void Ifc4x3_rc1::IfcDocumentInformation::setEditors(const std::optional< std::vector< ::Ifc4x3_rc1::IfcActorSelect > >& v) { if (v) {set_attribute_value(9, cast_vector<express::Base>(*v));} else {unset_attribute_value(9);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::CreationTime() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::string v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setCreationTime(const std::optional< std::string >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::LastRevisionTime() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } std::string v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setLastRevisionTime(const std::optional< std::string >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::ElectronicFormat() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } std::string v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setElectronicFormat(const std::optional< std::string >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::ValidFrom() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } std::string v = get_attribute_value(13); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setValidFrom(const std::optional< std::string >& v) { if (v) {set_attribute_value(13, *v);} else {unset_attribute_value(13);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformation::ValidUntil() const { if(get_attribute_value(14).isNull()) { return std::nullopt; } std::string v = get_attribute_value(14); return v; }
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void Ifc4x3_rc1::IfcDocumentInformation::setValidUntil(const std::optional< std::string >& v) { if (v) {set_attribute_value(14, *v);} else {unset_attribute_value(14);} }
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std::optional< ::Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Value > Ifc4x3_rc1::IfcDocumentInformation::Confidentiality() const { if(get_attribute_value(15).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDocumentConfidentialityEnum::FromString(get_attribute_value(15)); }
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void Ifc4x3_rc1::IfcDocumentInformation::setConfidentiality(const std::optional< ::Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Value >& v) { if (v) {set_attribute_value(15, EnumerationReference(&::Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Class(), (size_t) *v));} else {unset_attribute_value(15);} }
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std::optional< ::Ifc4x3_rc1::IfcDocumentStatusEnum::Value > Ifc4x3_rc1::IfcDocumentInformation::Status() const { if(get_attribute_value(16).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDocumentStatusEnum::FromString(get_attribute_value(16)); }
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void Ifc4x3_rc1::IfcDocumentInformation::setStatus(const std::optional< ::Ifc4x3_rc1::IfcDocumentStatusEnum::Value >& v) { if (v) {set_attribute_value(16, EnumerationReference(&::Ifc4x3_rc1::IfcDocumentStatusEnum::Class(), (size_t) *v));} else {unset_attribute_value(16);} }
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std::vector<::Ifc4x3_rc1::IfcRelAssociatesDocument> Ifc4x3_rc1::IfcDocumentInformation::DocumentInfoForObjects() const { return cast_vector<IfcRelAssociatesDocument>(file()->getInverse(data()->id(), IFC4X3_RC1_types[923], 5)); }
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std::vector<::Ifc4x3_rc1::IfcDocumentReference> Ifc4x3_rc1::IfcDocumentInformation::HasDocumentReferences() const { return cast_vector<IfcDocumentReference>(file()->getInverse(data()->id(), IFC4X3_RC1_types[337], 4)); }
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std::vector<::Ifc4x3_rc1::IfcDocumentInformationRelationship> Ifc4x3_rc1::IfcDocumentInformation::IsPointedTo() const { return cast_vector<IfcDocumentInformationRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[336], 3)); }
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std::vector<::Ifc4x3_rc1::IfcDocumentInformationRelationship> Ifc4x3_rc1::IfcDocumentInformation::IsPointer() const { return cast_vector<IfcDocumentInformationRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[336], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDocumentInformation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[335]); }
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void Ifc4x3_rc1::IfcDocumentInformation::initialize(std::string v1_Identification, std::string v2_Name, std::optional< std::string > v3_Description, std::optional< std::string > v4_Location, std::optional< std::string > v5_Purpose, std::optional< std::string > v6_IntendedUse, std::optional< std::string > v7_Scope, std::optional< std::string > v8_Revision, ::Ifc4x3_rc1::IfcActorSelect v9_DocumentOwner, std::optional< std::vector< ::Ifc4x3_rc1::IfcActorSelect > > v10_Editors, std::optional< std::string > v11_CreationTime, std::optional< std::string > v12_LastRevisionTime, std::optional< std::string > v13_ElectronicFormat, std::optional< std::string > v14_ValidFrom, std::optional< std::string > v15_ValidUntil, std::optional< ::Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Value > v16_Confidentiality, std::optional< ::Ifc4x3_rc1::IfcDocumentStatusEnum::Value > v17_Status) { set_attribute_value(0, (v1_Identification));set_attribute_value(1, (v2_Name)); if (v3_Description) {set_attribute_value(2, (*v3_Description)); } if (v4_Location) {set_attribute_value(3, (*v4_Location)); } if (v5_Purpose) {set_attribute_value(4, (*v5_Purpose)); } if (v6_IntendedUse) {set_attribute_value(5, (*v6_IntendedUse)); } if (v7_Scope) {set_attribute_value(6, (*v7_Scope)); } if (v8_Revision) {set_attribute_value(7, (*v8_Revision)); }set_attribute_value(8, (v9_DocumentOwner)); if (v10_Editors) {set_attribute_value(9, cast_vector<express::Base>(*v10_Editors)); } if (v11_CreationTime) {set_attribute_value(10, (*v11_CreationTime)); } if (v12_LastRevisionTime) {set_attribute_value(11, (*v12_LastRevisionTime)); } if (v13_ElectronicFormat) {set_attribute_value(12, (*v13_ElectronicFormat)); } if (v14_ValidFrom) {set_attribute_value(13, (*v14_ValidFrom)); } if (v15_ValidUntil) {set_attribute_value(14, (*v15_ValidUntil)); } if (v16_Confidentiality) {set_attribute_value(15, (EnumerationReference(&::Ifc4x3_rc1::IfcDocumentConfidentialityEnum::Class(),(size_t)*v16_Confidentiality))); } if (v17_Status) {set_attribute_value(16, (EnumerationReference(&::Ifc4x3_rc1::IfcDocumentStatusEnum::Class(),(size_t)*v17_Status))); } }
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// Function implementations for IfcDocumentInformationRelationship
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::Ifc4x3_rc1::IfcDocumentInformation Ifc4x3_rc1::IfcDocumentInformationRelationship::RelatingDocument() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcDocumentInformation>(); }
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void Ifc4x3_rc1::IfcDocumentInformationRelationship::setRelatingDocument(const ::Ifc4x3_rc1::IfcDocumentInformation& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector< ::Ifc4x3_rc1::IfcDocumentInformation > Ifc4x3_rc1::IfcDocumentInformationRelationship::RelatedDocuments() const { std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcDocumentInformation>(es); }
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void Ifc4x3_rc1::IfcDocumentInformationRelationship::setRelatedDocuments(const std::vector< ::Ifc4x3_rc1::IfcDocumentInformation >& v) { set_attribute_value(3, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentInformationRelationship::RelationshipType() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcDocumentInformationRelationship::setRelationshipType(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDocumentInformationRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[336]); }
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void Ifc4x3_rc1::IfcDocumentInformationRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcDocumentInformation v3_RelatingDocument, std::vector< ::Ifc4x3_rc1::IfcDocumentInformation > v4_RelatedDocuments, std::optional< std::string > v5_RelationshipType) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_RelatingDocument));set_attribute_value(3, cast_vector<express::Base>(v4_RelatedDocuments)); if (v5_RelationshipType) {set_attribute_value(4, (*v5_RelationshipType)); } }
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// Function implementations for IfcDocumentReference
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std::optional< std::string > Ifc4x3_rc1::IfcDocumentReference::Description() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcDocumentReference::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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::Ifc4x3_rc1::IfcDocumentInformation Ifc4x3_rc1::IfcDocumentReference::ReferencedDocument() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcDocumentInformation{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcDocumentInformation>(); }
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void Ifc4x3_rc1::IfcDocumentReference::setReferencedDocument(const ::Ifc4x3_rc1::IfcDocumentInformation& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector<::Ifc4x3_rc1::IfcRelAssociatesDocument> Ifc4x3_rc1::IfcDocumentReference::DocumentRefForObjects() const { return cast_vector<IfcRelAssociatesDocument>(file()->getInverse(data()->id(), IFC4X3_RC1_types[923], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDocumentReference::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[337]); }
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void Ifc4x3_rc1::IfcDocumentReference::initialize(std::optional< std::string > v1_Location, std::optional< std::string > v2_Identification, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcDocumentInformation v5_ReferencedDocument) { if (v1_Location) {set_attribute_value(0, (*v1_Location)); } if (v2_Identification) {set_attribute_value(1, (*v2_Identification)); } if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_ReferencedDocument)); }
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// Function implementations for IfcDoor
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std::optional< double > Ifc4x3_rc1::IfcDoor::OverallHeight() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcDoor::setOverallHeight(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< double > Ifc4x3_rc1::IfcDoor::OverallWidth() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcDoor::setOverallWidth(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< ::Ifc4x3_rc1::IfcDoorTypeEnum::Value > Ifc4x3_rc1::IfcDoor::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDoorTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcDoor::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDoorTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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std::optional< ::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value > Ifc4x3_rc1::IfcDoor::OperationType() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDoorTypeOperationEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcDoor::setOperationType(const std::optional< ::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value >& v) { if (v) {set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Class(), (size_t) *v));} else {unset_attribute_value(11);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDoor::UserDefinedOperationType() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } std::string v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcDoor::setUserDefinedOperationType(const std::optional< std::string >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDoor::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[340]); }
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void Ifc4x3_rc1::IfcDoor::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< double > v9_OverallHeight, std::optional< double > v10_OverallWidth, std::optional< ::Ifc4x3_rc1::IfcDoorTypeEnum::Value > v11_PredefinedType, std::optional< ::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value > v12_OperationType, std::optional< std::string > v13_UserDefinedOperationType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_OverallHeight) {set_attribute_value(8, (*v9_OverallHeight)); } if (v10_OverallWidth) {set_attribute_value(9, (*v10_OverallWidth)); } if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeEnum::Class(),(size_t)*v11_PredefinedType))); } if (v12_OperationType) {set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Class(),(size_t)*v12_OperationType))); } if (v13_UserDefinedOperationType) {set_attribute_value(12, (*v13_UserDefinedOperationType)); } }
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// Function implementations for IfcDoorLiningProperties
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::LiningDepth() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setLiningDepth(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::LiningThickness() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setLiningThickness(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::ThresholdDepth() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setThresholdDepth(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::ThresholdThickness() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setThresholdThickness(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::TransomThickness() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setTransomThickness(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::TransomOffset() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setTransomOffset(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::LiningOffset() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setLiningOffset(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::ThresholdOffset() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setThresholdOffset(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::CasingThickness() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } double v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setCasingThickness(const std::optional< double >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::CasingDepth() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } double v = get_attribute_value(13); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setCasingDepth(const std::optional< double >& v) { if (v) {set_attribute_value(13, *v);} else {unset_attribute_value(13);} }
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::Ifc4x3_rc1::IfcShapeAspect Ifc4x3_rc1::IfcDoorLiningProperties::ShapeAspectStyle() const { if(get_attribute_value(14).isNull()) { return ::Ifc4x3_rc1::IfcShapeAspect{}; } return ((express::Base)(get_attribute_value(14))).as<::Ifc4x3_rc1::IfcShapeAspect>(); }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setShapeAspectStyle(const ::Ifc4x3_rc1::IfcShapeAspect& v) { set_attribute_value(14, v);if constexpr (false)unset_attribute_value(14); }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::LiningToPanelOffsetX() const { if(get_attribute_value(15).isNull()) { return std::nullopt; } double v = get_attribute_value(15); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setLiningToPanelOffsetX(const std::optional< double >& v) { if (v) {set_attribute_value(15, *v);} else {unset_attribute_value(15);} }
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std::optional< double > Ifc4x3_rc1::IfcDoorLiningProperties::LiningToPanelOffsetY() const { if(get_attribute_value(16).isNull()) { return std::nullopt; } double v = get_attribute_value(16); return v; }
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void Ifc4x3_rc1::IfcDoorLiningProperties::setLiningToPanelOffsetY(const std::optional< double >& v) { if (v) {set_attribute_value(16, *v);} else {unset_attribute_value(16);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDoorLiningProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[341]); }
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void Ifc4x3_rc1::IfcDoorLiningProperties::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< double > v5_LiningDepth, std::optional< double > v6_LiningThickness, std::optional< double > v7_ThresholdDepth, std::optional< double > v8_ThresholdThickness, std::optional< double > v9_TransomThickness, std::optional< double > v10_TransomOffset, std::optional< double > v11_LiningOffset, std::optional< double > v12_ThresholdOffset, std::optional< double > v13_CasingThickness, std::optional< double > v14_CasingDepth, ::Ifc4x3_rc1::IfcShapeAspect v15_ShapeAspectStyle, std::optional< double > v16_LiningToPanelOffsetX, std::optional< double > v17_LiningToPanelOffsetY) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_LiningDepth) {set_attribute_value(4, (*v5_LiningDepth)); } if (v6_LiningThickness) {set_attribute_value(5, (*v6_LiningThickness)); } if (v7_ThresholdDepth) {set_attribute_value(6, (*v7_ThresholdDepth)); } if (v8_ThresholdThickness) {set_attribute_value(7, (*v8_ThresholdThickness)); } if (v9_TransomThickness) {set_attribute_value(8, (*v9_TransomThickness)); } if (v10_TransomOffset) {set_attribute_value(9, (*v10_TransomOffset)); } if (v11_LiningOffset) {set_attribute_value(10, (*v11_LiningOffset)); } if (v12_ThresholdOffset) {set_attribute_value(11, (*v12_ThresholdOffset)); } if (v13_CasingThickness) {set_attribute_value(12, (*v13_CasingThickness)); } if (v14_CasingDepth) {set_attribute_value(13, (*v14_CasingDepth)); }set_attribute_value(14, (v15_ShapeAspectStyle)); if (v16_LiningToPanelOffsetX) {set_attribute_value(15, (*v16_LiningToPanelOffsetX)); } if (v17_LiningToPanelOffsetY) {set_attribute_value(16, (*v17_LiningToPanelOffsetY)); } }
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// Function implementations for IfcDoorPanelProperties
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std::optional< double > Ifc4x3_rc1::IfcDoorPanelProperties::PanelDepth() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcDoorPanelProperties::setPanelDepth(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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::Ifc4x3_rc1::IfcDoorPanelOperationEnum::Value Ifc4x3_rc1::IfcDoorPanelProperties::PanelOperation() const { return ::Ifc4x3_rc1::IfcDoorPanelOperationEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcDoorPanelProperties::setPanelOperation(const ::Ifc4x3_rc1::IfcDoorPanelOperationEnum::Value& v) { set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcDoorPanelOperationEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(5); }
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std::optional< double > Ifc4x3_rc1::IfcDoorPanelProperties::PanelWidth() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcDoorPanelProperties::setPanelWidth(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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::Ifc4x3_rc1::IfcDoorPanelPositionEnum::Value Ifc4x3_rc1::IfcDoorPanelProperties::PanelPosition() const { return ::Ifc4x3_rc1::IfcDoorPanelPositionEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcDoorPanelProperties::setPanelPosition(const ::Ifc4x3_rc1::IfcDoorPanelPositionEnum::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcDoorPanelPositionEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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::Ifc4x3_rc1::IfcShapeAspect Ifc4x3_rc1::IfcDoorPanelProperties::ShapeAspectStyle() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcShapeAspect{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcShapeAspect>(); }
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void Ifc4x3_rc1::IfcDoorPanelProperties::setShapeAspectStyle(const ::Ifc4x3_rc1::IfcShapeAspect& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDoorPanelProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[344]); }
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void Ifc4x3_rc1::IfcDoorPanelProperties::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< double > v5_PanelDepth, ::Ifc4x3_rc1::IfcDoorPanelOperationEnum::Value v6_PanelOperation, std::optional< double > v7_PanelWidth, ::Ifc4x3_rc1::IfcDoorPanelPositionEnum::Value v8_PanelPosition, ::Ifc4x3_rc1::IfcShapeAspect v9_ShapeAspectStyle) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_PanelDepth) {set_attribute_value(4, (*v5_PanelDepth)); }set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorPanelOperationEnum::Class(),(size_t)v6_PanelOperation))); if (v7_PanelWidth) {set_attribute_value(6, (*v7_PanelWidth)); }set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorPanelPositionEnum::Class(),(size_t)v8_PanelPosition)));set_attribute_value(8, (v9_ShapeAspectStyle)); }
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// Function implementations for IfcDoorStandardCase
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const IfcParse::entity& Ifc4x3_rc1::IfcDoorStandardCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[345]); }
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void Ifc4x3_rc1::IfcDoorStandardCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< double > v9_OverallHeight, std::optional< double > v10_OverallWidth, std::optional< ::Ifc4x3_rc1::IfcDoorTypeEnum::Value > v11_PredefinedType, std::optional< ::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value > v12_OperationType, std::optional< std::string > v13_UserDefinedOperationType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_OverallHeight) {set_attribute_value(8, (*v9_OverallHeight)); } if (v10_OverallWidth) {set_attribute_value(9, (*v10_OverallWidth)); } if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeEnum::Class(),(size_t)*v11_PredefinedType))); } if (v12_OperationType) {set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Class(),(size_t)*v12_OperationType))); } if (v13_UserDefinedOperationType) {set_attribute_value(12, (*v13_UserDefinedOperationType)); } }
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// Function implementations for IfcDoorStyle
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::Ifc4x3_rc1::IfcDoorStyleOperationEnum::Value Ifc4x3_rc1::IfcDoorStyle::OperationType() const { return ::Ifc4x3_rc1::IfcDoorStyleOperationEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcDoorStyle::setOperationType(const ::Ifc4x3_rc1::IfcDoorStyleOperationEnum::Value& v) { set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcDoorStyleOperationEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(8); }
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::Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Value Ifc4x3_rc1::IfcDoorStyle::ConstructionType() const { return ::Ifc4x3_rc1::IfcDoorStyleConstructionEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDoorStyle::setConstructionType(const ::Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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bool Ifc4x3_rc1::IfcDoorStyle::ParameterTakesPrecedence() const { bool v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcDoorStyle::setParameterTakesPrecedence(const bool& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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bool Ifc4x3_rc1::IfcDoorStyle::Sizeable() const { bool v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcDoorStyle::setSizeable(const bool& v) { set_attribute_value(11, v);if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDoorStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[346]); }
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void Ifc4x3_rc1::IfcDoorStyle::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, ::Ifc4x3_rc1::IfcDoorStyleOperationEnum::Value v9_OperationType, ::Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Value v10_ConstructionType, bool v11_ParameterTakesPrecedence, bool v12_Sizeable) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); }set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorStyleOperationEnum::Class(),(size_t)v9_OperationType)));set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorStyleConstructionEnum::Class(),(size_t)v10_ConstructionType)));set_attribute_value(10, (v11_ParameterTakesPrecedence));set_attribute_value(11, (v12_Sizeable)); }
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// Function implementations for IfcDoorType
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::Ifc4x3_rc1::IfcDoorTypeEnum::Value Ifc4x3_rc1::IfcDoorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcDoorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDoorType::setPredefinedType(const ::Ifc4x3_rc1::IfcDoorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value Ifc4x3_rc1::IfcDoorType::OperationType() const { return ::Ifc4x3_rc1::IfcDoorTypeOperationEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcDoorType::setOperationType(const ::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value& v) { set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(10); }
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std::optional< bool > Ifc4x3_rc1::IfcDoorType::ParameterTakesPrecedence() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } bool v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcDoorType::setParameterTakesPrecedence(const std::optional< bool >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< std::string > Ifc4x3_rc1::IfcDoorType::UserDefinedOperationType() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } std::string v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcDoorType::setUserDefinedOperationType(const std::optional< std::string >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDoorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[349]); }
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void Ifc4x3_rc1::IfcDoorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcDoorTypeEnum::Value v10_PredefinedType, ::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Value v11_OperationType, std::optional< bool > v12_ParameterTakesPrecedence, std::optional< std::string > v13_UserDefinedOperationType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeEnum::Class(),(size_t)v10_PredefinedType)));set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcDoorTypeOperationEnum::Class(),(size_t)v11_OperationType))); if (v12_ParameterTakesPrecedence) {set_attribute_value(11, (*v12_ParameterTakesPrecedence)); } if (v13_UserDefinedOperationType) {set_attribute_value(12, (*v13_UserDefinedOperationType)); } }
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// Function implementations for IfcDraughtingPreDefinedColour
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const IfcParse::entity& Ifc4x3_rc1::IfcDraughtingPreDefinedColour::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[353]); }
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void Ifc4x3_rc1::IfcDraughtingPreDefinedColour::initialize(std::string v1_Name) { set_attribute_value(0, (v1_Name)); }
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// Function implementations for IfcDraughtingPreDefinedCurveFont
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const IfcParse::entity& Ifc4x3_rc1::IfcDraughtingPreDefinedCurveFont::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[354]); }
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void Ifc4x3_rc1::IfcDraughtingPreDefinedCurveFont::initialize(std::string v1_Name) { set_attribute_value(0, (v1_Name)); }
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// Function implementations for IfcDuctFitting
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std::optional< ::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value > Ifc4x3_rc1::IfcDuctFitting::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDuctFittingTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcDuctFitting::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDuctFitting::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[355]); }
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void Ifc4x3_rc1::IfcDuctFitting::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcDuctFittingType
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::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value Ifc4x3_rc1::IfcDuctFittingType::PredefinedType() const { return ::Ifc4x3_rc1::IfcDuctFittingTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDuctFittingType::setPredefinedType(const ::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDuctFittingType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[356]); }
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void Ifc4x3_rc1::IfcDuctFittingType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDuctFittingTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcDuctSegment
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std::optional< ::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value > Ifc4x3_rc1::IfcDuctSegment::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcDuctSegment::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDuctSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[358]); }
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void Ifc4x3_rc1::IfcDuctSegment::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcDuctSegmentType
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::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value Ifc4x3_rc1::IfcDuctSegmentType::PredefinedType() const { return ::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDuctSegmentType::setPredefinedType(const ::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDuctSegmentType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[359]); }
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void Ifc4x3_rc1::IfcDuctSegmentType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDuctSegmentTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcDuctSilencer
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std::optional< ::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value > Ifc4x3_rc1::IfcDuctSilencer::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcDuctSilencer::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcDuctSilencer::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[361]); }
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void Ifc4x3_rc1::IfcDuctSilencer::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcDuctSilencerType
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::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value Ifc4x3_rc1::IfcDuctSilencerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcDuctSilencerType::setPredefinedType(const ::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcDuctSilencerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[362]); }
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void Ifc4x3_rc1::IfcDuctSilencerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcDuctSilencerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcEarthworksCut
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std::optional< ::Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Value > Ifc4x3_rc1::IfcEarthworksCut::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcEarthworksCutTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcEarthworksCut::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcEarthworksCut::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[366]); }
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void Ifc4x3_rc1::IfcEarthworksCut::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcEarthworksCutTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcEarthworksElement
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const IfcParse::entity& Ifc4x3_rc1::IfcEarthworksElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[368]); }
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void Ifc4x3_rc1::IfcEarthworksElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcEarthworksFill
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std::optional< ::Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Value > Ifc4x3_rc1::IfcEarthworksFill::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcEarthworksFillTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcEarthworksFill::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcEarthworksFill::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[369]); }
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void Ifc4x3_rc1::IfcEarthworksFill::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcEarthworksFillTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcEdge
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::Ifc4x3_rc1::IfcVertex Ifc4x3_rc1::IfcEdge::EdgeStart() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcVertex>(); }
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void Ifc4x3_rc1::IfcEdge::setEdgeStart(const ::Ifc4x3_rc1::IfcVertex& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcVertex Ifc4x3_rc1::IfcEdge::EdgeEnd() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcVertex>(); }
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void Ifc4x3_rc1::IfcEdge::setEdgeEnd(const ::Ifc4x3_rc1::IfcVertex& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcEdge::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[371]); }
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void Ifc4x3_rc1::IfcEdge::initialize(::Ifc4x3_rc1::IfcVertex v1_EdgeStart, ::Ifc4x3_rc1::IfcVertex v2_EdgeEnd) { set_attribute_value(0, (v1_EdgeStart));set_attribute_value(1, (v2_EdgeEnd)); }
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// Function implementations for IfcEdgeCurve
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcEdgeCurve::EdgeGeometry() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcEdgeCurve::setEdgeGeometry(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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bool Ifc4x3_rc1::IfcEdgeCurve::SameSense() const { bool v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcEdgeCurve::setSameSense(const bool& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcEdgeCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[372]); }
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void Ifc4x3_rc1::IfcEdgeCurve::initialize(::Ifc4x3_rc1::IfcVertex v1_EdgeStart, ::Ifc4x3_rc1::IfcVertex v2_EdgeEnd, ::Ifc4x3_rc1::IfcCurve v3_EdgeGeometry, bool v4_SameSense) { set_attribute_value(0, (v1_EdgeStart));set_attribute_value(1, (v2_EdgeEnd));set_attribute_value(2, (v3_EdgeGeometry));set_attribute_value(3, (v4_SameSense)); }
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// Function implementations for IfcEdgeLoop
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std::vector< ::Ifc4x3_rc1::IfcOrientedEdge > Ifc4x3_rc1::IfcEdgeLoop::EdgeList() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcOrientedEdge>(es); }
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void Ifc4x3_rc1::IfcEdgeLoop::setEdgeList(const std::vector< ::Ifc4x3_rc1::IfcOrientedEdge >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcEdgeLoop::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[373]); }
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void Ifc4x3_rc1::IfcEdgeLoop::initialize(std::vector< ::Ifc4x3_rc1::IfcOrientedEdge > v1_EdgeList) { set_attribute_value(0, cast_vector<express::Base>(v1_EdgeList)); }
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// Function implementations for IfcElectricAppliance
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std::optional< ::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value > Ifc4x3_rc1::IfcElectricAppliance::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcElectricAppliance::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricAppliance::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[374]); }
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void Ifc4x3_rc1::IfcElectricAppliance::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcElectricApplianceType
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::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value Ifc4x3_rc1::IfcElectricApplianceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcElectricApplianceType::setPredefinedType(const ::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricApplianceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[375]); }
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void Ifc4x3_rc1::IfcElectricApplianceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricApplianceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcElectricDistributionBoard
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std::optional< ::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value > Ifc4x3_rc1::IfcElectricDistributionBoard::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcElectricDistributionBoard::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricDistributionBoard::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[381]); }
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void Ifc4x3_rc1::IfcElectricDistributionBoard::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcElectricDistributionBoardType
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::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value Ifc4x3_rc1::IfcElectricDistributionBoardType::PredefinedType() const { return ::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcElectricDistributionBoardType::setPredefinedType(const ::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricDistributionBoardType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[382]); }
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void Ifc4x3_rc1::IfcElectricDistributionBoardType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricDistributionBoardTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcElectricFlowStorageDevice
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std::optional< ::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value > Ifc4x3_rc1::IfcElectricFlowStorageDevice::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcElectricFlowStorageDevice::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricFlowStorageDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[384]); }
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void Ifc4x3_rc1::IfcElectricFlowStorageDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcElectricFlowStorageDeviceType
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::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value Ifc4x3_rc1::IfcElectricFlowStorageDeviceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcElectricFlowStorageDeviceType::setPredefinedType(const ::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricFlowStorageDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[385]); }
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void Ifc4x3_rc1::IfcElectricFlowStorageDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricFlowStorageDeviceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcElectricFlowTreatmentDevice
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std::optional< ::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value > Ifc4x3_rc1::IfcElectricFlowTreatmentDevice::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcElectricFlowTreatmentDevice::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricFlowTreatmentDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[387]); }
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void Ifc4x3_rc1::IfcElectricFlowTreatmentDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcElectricFlowTreatmentDeviceType
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::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceType::setPredefinedType(const ::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[388]); }
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void Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricFlowTreatmentDeviceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcElectricGenerator
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std::optional< ::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value > Ifc4x3_rc1::IfcElectricGenerator::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcElectricGenerator::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricGenerator::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[390]); }
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void Ifc4x3_rc1::IfcElectricGenerator::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcElectricGeneratorType
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::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value Ifc4x3_rc1::IfcElectricGeneratorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcElectricGeneratorType::setPredefinedType(const ::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricGeneratorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[391]); }
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void Ifc4x3_rc1::IfcElectricGeneratorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricGeneratorTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcElectricMotor
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std::optional< ::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value > Ifc4x3_rc1::IfcElectricMotor::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcElectricMotorTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcElectricMotor::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricMotor::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[393]); }
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void Ifc4x3_rc1::IfcElectricMotor::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcElectricMotorType
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::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value Ifc4x3_rc1::IfcElectricMotorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcElectricMotorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcElectricMotorType::setPredefinedType(const ::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricMotorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[394]); }
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void Ifc4x3_rc1::IfcElectricMotorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricMotorTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcElectricTimeControl
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std::optional< ::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value > Ifc4x3_rc1::IfcElectricTimeControl::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcElectricTimeControl::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricTimeControl::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[397]); }
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void Ifc4x3_rc1::IfcElectricTimeControl::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcElectricTimeControlType
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::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value Ifc4x3_rc1::IfcElectricTimeControlType::PredefinedType() const { return ::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcElectricTimeControlType::setPredefinedType(const ::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElectricTimeControlType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[398]); }
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void Ifc4x3_rc1::IfcElectricTimeControlType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcElectricTimeControlTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcElement
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std::optional< std::string > Ifc4x3_rc1::IfcElement::Tag() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcElement::setTag(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::vector<::Ifc4x3_rc1::IfcRelFillsElement> Ifc4x3_rc1::IfcElement::FillsVoids() const { return cast_vector<IfcRelFillsElement>(file()->getInverse(data()->id(), IFC4X3_RC1_types[947], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelConnectsElements> Ifc4x3_rc1::IfcElement::ConnectedTo() const { return cast_vector<IfcRelConnectsElements>(file()->getInverse(data()->id(), IFC4X3_RC1_types[929], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelInterferesElements> Ifc4x3_rc1::IfcElement::IsInterferedByElements() const { return cast_vector<IfcRelInterferesElements>(file()->getInverse(data()->id(), IFC4X3_RC1_types[949], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelInterferesElements> Ifc4x3_rc1::IfcElement::InterferesElements() const { return cast_vector<IfcRelInterferesElements>(file()->getInverse(data()->id(), IFC4X3_RC1_types[949], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelProjectsElement> Ifc4x3_rc1::IfcElement::HasProjections() const { return cast_vector<IfcRelProjectsElement>(file()->getInverse(data()->id(), IFC4X3_RC1_types[952], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelVoidsElement> Ifc4x3_rc1::IfcElement::HasOpenings() const { return cast_vector<IfcRelVoidsElement>(file()->getInverse(data()->id(), IFC4X3_RC1_types[959], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelConnectsWithRealizingElements> Ifc4x3_rc1::IfcElement::IsConnectionRealization() const { return cast_vector<IfcRelConnectsWithRealizingElements>(file()->getInverse(data()->id(), IFC4X3_RC1_types[936], 7)); }
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std::vector<::Ifc4x3_rc1::IfcRelSpaceBoundary> Ifc4x3_rc1::IfcElement::ProvidesBoundaries() const { return cast_vector<IfcRelSpaceBoundary>(file()->getInverse(data()->id(), IFC4X3_RC1_types[956], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelConnectsElements> Ifc4x3_rc1::IfcElement::ConnectedFrom() const { return cast_vector<IfcRelConnectsElements>(file()->getInverse(data()->id(), IFC4X3_RC1_types[929], 6)); }
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std::vector<::Ifc4x3_rc1::IfcRelContainedInSpatialStructure> Ifc4x3_rc1::IfcElement::ContainedInStructure() const { return cast_vector<IfcRelContainedInSpatialStructure>(file()->getInverse(data()->id(), IFC4X3_RC1_types[937], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelCoversBldgElements> Ifc4x3_rc1::IfcElement::HasCoverings() const { return cast_vector<IfcRelCoversBldgElements>(file()->getInverse(data()->id(), IFC4X3_RC1_types[938], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[401]); }
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void Ifc4x3_rc1::IfcElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcElementAssembly
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std::optional< ::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value > Ifc4x3_rc1::IfcElementAssembly::AssemblyPlace() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcAssemblyPlaceEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcElementAssembly::setAssemblyPlace(const std::optional< ::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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std::optional< ::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value > Ifc4x3_rc1::IfcElementAssembly::PredefinedType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcElementAssembly::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value >& v) { if (v) {set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcElementAssembly::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[403]); }
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void Ifc4x3_rc1::IfcElementAssembly::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value > v9_AssemblyPlace, std::optional< ::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value > v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_AssemblyPlace) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Class(),(size_t)*v9_AssemblyPlace))); } if (v10_PredefinedType) {set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Class(),(size_t)*v10_PredefinedType))); } }
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// Function implementations for IfcElementAssemblyType
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::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value Ifc4x3_rc1::IfcElementAssemblyType::PredefinedType() const { return ::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcElementAssemblyType::setPredefinedType(const ::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElementAssemblyType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[404]); }
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void Ifc4x3_rc1::IfcElementAssemblyType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcElementAssemblyTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcElementComponent
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const IfcParse::entity& Ifc4x3_rc1::IfcElementComponent::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[406]); }
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void Ifc4x3_rc1::IfcElementComponent::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcElementComponentType
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const IfcParse::entity& Ifc4x3_rc1::IfcElementComponentType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[407]); }
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void Ifc4x3_rc1::IfcElementComponentType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcElementQuantity
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std::optional< std::string > Ifc4x3_rc1::IfcElementQuantity::MethodOfMeasurement() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcElementQuantity::setMethodOfMeasurement(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::vector< ::Ifc4x3_rc1::IfcPhysicalQuantity > Ifc4x3_rc1::IfcElementQuantity::Quantities() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcPhysicalQuantity>(es); }
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void Ifc4x3_rc1::IfcElementQuantity::setQuantities(const std::vector< ::Ifc4x3_rc1::IfcPhysicalQuantity >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElementQuantity::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[409]); }
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void Ifc4x3_rc1::IfcElementQuantity::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_MethodOfMeasurement, std::vector< ::Ifc4x3_rc1::IfcPhysicalQuantity > v6_Quantities) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_MethodOfMeasurement) {set_attribute_value(4, (*v5_MethodOfMeasurement)); }set_attribute_value(5, cast_vector<express::Base>(v6_Quantities)); }
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// Function implementations for IfcElementType
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std::optional< std::string > Ifc4x3_rc1::IfcElementType::ElementType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcElementType::setElementType(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[410]); }
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void Ifc4x3_rc1::IfcElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcElementarySurface
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcElementarySurface::Position() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcElementarySurface::setPosition(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcElementarySurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[402]); }
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void Ifc4x3_rc1::IfcElementarySurface::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position) { set_attribute_value(0, (v1_Position)); }
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// Function implementations for IfcEllipse
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double Ifc4x3_rc1::IfcEllipse::SemiAxis1() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcEllipse::setSemiAxis1(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcEllipse::SemiAxis2() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcEllipse::setSemiAxis2(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcEllipse::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[411]); }
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void Ifc4x3_rc1::IfcEllipse::initialize(::Ifc4x3_rc1::IfcAxis2Placement v1_Position, double v2_SemiAxis1, double v3_SemiAxis2) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_SemiAxis1));set_attribute_value(2, (v3_SemiAxis2)); }
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// Function implementations for IfcEllipseProfileDef
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double Ifc4x3_rc1::IfcEllipseProfileDef::SemiAxis1() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcEllipseProfileDef::setSemiAxis1(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcEllipseProfileDef::SemiAxis2() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcEllipseProfileDef::setSemiAxis2(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcEllipseProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[412]); }
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void Ifc4x3_rc1::IfcEllipseProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_SemiAxis1, double v5_SemiAxis2) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_SemiAxis1));set_attribute_value(4, (v5_SemiAxis2)); }
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// Function implementations for IfcEnergyConversionDevice
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const IfcParse::entity& Ifc4x3_rc1::IfcEnergyConversionDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[413]); }
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void Ifc4x3_rc1::IfcEnergyConversionDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcEnergyConversionDeviceType
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const IfcParse::entity& Ifc4x3_rc1::IfcEnergyConversionDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[414]); }
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void Ifc4x3_rc1::IfcEnergyConversionDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcEngine
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std::optional< ::Ifc4x3_rc1::IfcEngineTypeEnum::Value > Ifc4x3_rc1::IfcEngine::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcEngineTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcEngine::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcEngineTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcEngineTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcEngine::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[416]); }
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void Ifc4x3_rc1::IfcEngine::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcEngineTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcEngineTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcEngineType
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::Ifc4x3_rc1::IfcEngineTypeEnum::Value Ifc4x3_rc1::IfcEngineType::PredefinedType() const { return ::Ifc4x3_rc1::IfcEngineTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcEngineType::setPredefinedType(const ::Ifc4x3_rc1::IfcEngineTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcEngineTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcEngineType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[417]); }
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void Ifc4x3_rc1::IfcEngineType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcEngineTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcEngineTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcEvaporativeCooler
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std::optional< ::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value > Ifc4x3_rc1::IfcEvaporativeCooler::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcEvaporativeCooler::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcEvaporativeCooler::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[419]); }
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void Ifc4x3_rc1::IfcEvaporativeCooler::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcEvaporativeCoolerType
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::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value Ifc4x3_rc1::IfcEvaporativeCoolerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcEvaporativeCoolerType::setPredefinedType(const ::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcEvaporativeCoolerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[420]); }
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void Ifc4x3_rc1::IfcEvaporativeCoolerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcEvaporativeCoolerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcEvaporator
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std::optional< ::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value > Ifc4x3_rc1::IfcEvaporator::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcEvaporatorTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcEvaporator::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcEvaporator::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[422]); }
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void Ifc4x3_rc1::IfcEvaporator::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcEvaporatorType
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::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value Ifc4x3_rc1::IfcEvaporatorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcEvaporatorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcEvaporatorType::setPredefinedType(const ::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcEvaporatorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[423]); }
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void Ifc4x3_rc1::IfcEvaporatorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcEvaporatorTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcEvent
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std::optional< ::Ifc4x3_rc1::IfcEventTypeEnum::Value > Ifc4x3_rc1::IfcEvent::PredefinedType() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcEventTypeEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcEvent::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcEventTypeEnum::Value >& v) { if (v) {set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcEventTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(7);} }
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std::optional< ::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value > Ifc4x3_rc1::IfcEvent::EventTriggerType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcEventTriggerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcEvent::setEventTriggerType(const std::optional< ::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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std::optional< std::string > Ifc4x3_rc1::IfcEvent::UserDefinedEventTriggerType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::string v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcEvent::setUserDefinedEventTriggerType(const std::optional< std::string >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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::Ifc4x3_rc1::IfcEventTime Ifc4x3_rc1::IfcEvent::EventOccurenceTime() const { if(get_attribute_value(10).isNull()) { return ::Ifc4x3_rc1::IfcEventTime{}; } return ((express::Base)(get_attribute_value(10))).as<::Ifc4x3_rc1::IfcEventTime>(); }
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void Ifc4x3_rc1::IfcEvent::setEventOccurenceTime(const ::Ifc4x3_rc1::IfcEventTime& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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const IfcParse::entity& Ifc4x3_rc1::IfcEvent::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[425]); }
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void Ifc4x3_rc1::IfcEvent::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, std::optional< ::Ifc4x3_rc1::IfcEventTypeEnum::Value > v8_PredefinedType, std::optional< ::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value > v9_EventTriggerType, std::optional< std::string > v10_UserDefinedEventTriggerType, ::Ifc4x3_rc1::IfcEventTime v11_EventOccurenceTime) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); } if (v8_PredefinedType) {set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcEventTypeEnum::Class(),(size_t)*v8_PredefinedType))); } if (v9_EventTriggerType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Class(),(size_t)*v9_EventTriggerType))); } if (v10_UserDefinedEventTriggerType) {set_attribute_value(9, (*v10_UserDefinedEventTriggerType)); }set_attribute_value(10, (v11_EventOccurenceTime)); }
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// Function implementations for IfcEventTime
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std::optional< std::string > Ifc4x3_rc1::IfcEventTime::ActualDate() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcEventTime::setActualDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcEventTime::EarlyDate() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcEventTime::setEarlyDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcEventTime::LateDate() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcEventTime::setLateDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcEventTime::ScheduleDate() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcEventTime::setScheduleDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcEventTime::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[426]); }
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void Ifc4x3_rc1::IfcEventTime::initialize(std::optional< std::string > v1_Name, std::optional< ::Ifc4x3_rc1::IfcDataOriginEnum::Value > v2_DataOrigin, std::optional< std::string > v3_UserDefinedDataOrigin, std::optional< std::string > v4_ActualDate, std::optional< std::string > v5_EarlyDate, std::optional< std::string > v6_LateDate, std::optional< std::string > v7_ScheduleDate) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DataOrigin) {set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)*v2_DataOrigin))); } if (v3_UserDefinedDataOrigin) {set_attribute_value(2, (*v3_UserDefinedDataOrigin)); } if (v4_ActualDate) {set_attribute_value(3, (*v4_ActualDate)); } if (v5_EarlyDate) {set_attribute_value(4, (*v5_EarlyDate)); } if (v6_LateDate) {set_attribute_value(5, (*v6_LateDate)); } if (v7_ScheduleDate) {set_attribute_value(6, (*v7_ScheduleDate)); } }
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// Function implementations for IfcEventType
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::Ifc4x3_rc1::IfcEventTypeEnum::Value Ifc4x3_rc1::IfcEventType::PredefinedType() const { return ::Ifc4x3_rc1::IfcEventTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcEventType::setPredefinedType(const ::Ifc4x3_rc1::IfcEventTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcEventTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value Ifc4x3_rc1::IfcEventType::EventTriggerType() const { return ::Ifc4x3_rc1::IfcEventTriggerTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcEventType::setEventTriggerType(const ::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value& v) { set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(10); }
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std::optional< std::string > Ifc4x3_rc1::IfcEventType::UserDefinedEventTriggerType() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } std::string v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcEventType::setUserDefinedEventTriggerType(const std::optional< std::string >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcEventType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[428]); }
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void Ifc4x3_rc1::IfcEventType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ProcessType, ::Ifc4x3_rc1::IfcEventTypeEnum::Value v10_PredefinedType, ::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Value v11_EventTriggerType, std::optional< std::string > v12_UserDefinedEventTriggerType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ProcessType) {set_attribute_value(8, (*v9_ProcessType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcEventTypeEnum::Class(),(size_t)v10_PredefinedType)));set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcEventTriggerTypeEnum::Class(),(size_t)v11_EventTriggerType))); if (v12_UserDefinedEventTriggerType) {set_attribute_value(11, (*v12_UserDefinedEventTriggerType)); } }
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// Function implementations for IfcExtendedProperties
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std::optional< std::string > Ifc4x3_rc1::IfcExtendedProperties::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcExtendedProperties::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcExtendedProperties::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcExtendedProperties::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::vector< ::Ifc4x3_rc1::IfcProperty > Ifc4x3_rc1::IfcExtendedProperties::Properties() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcProperty>(es); }
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void Ifc4x3_rc1::IfcExtendedProperties::setProperties(const std::vector< ::Ifc4x3_rc1::IfcProperty >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcExtendedProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[430]); }
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void Ifc4x3_rc1::IfcExtendedProperties::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcProperty > v3_Properties) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_Properties)); }
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// Function implementations for IfcExternalInformation
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const IfcParse::entity& Ifc4x3_rc1::IfcExternalInformation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[431]); }
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void Ifc4x3_rc1::IfcExternalInformation::initialize() { }
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// Function implementations for IfcExternalReference
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std::optional< std::string > Ifc4x3_rc1::IfcExternalReference::Location() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcExternalReference::setLocation(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcExternalReference::Identification() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcExternalReference::setIdentification(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcExternalReference::Name() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcExternalReference::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcExternalReference::ExternalReferenceForResources() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcExternalReference::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[435]); }
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void Ifc4x3_rc1::IfcExternalReference::initialize(std::optional< std::string > v1_Location, std::optional< std::string > v2_Identification, std::optional< std::string > v3_Name) { if (v1_Location) {set_attribute_value(0, (*v1_Location)); } if (v2_Identification) {set_attribute_value(1, (*v2_Identification)); } if (v3_Name) {set_attribute_value(2, (*v3_Name)); } }
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// Function implementations for IfcExternalReferenceRelationship
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::Ifc4x3_rc1::IfcExternalReference Ifc4x3_rc1::IfcExternalReferenceRelationship::RelatingReference() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcExternalReference>(); }
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void Ifc4x3_rc1::IfcExternalReferenceRelationship::setRelatingReference(const ::Ifc4x3_rc1::IfcExternalReference& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector< ::Ifc4x3_rc1::IfcResourceObjectSelect > Ifc4x3_rc1::IfcExternalReferenceRelationship::RelatedResourceObjects() const { std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcResourceObjectSelect>(es); }
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void Ifc4x3_rc1::IfcExternalReferenceRelationship::setRelatedResourceObjects(const std::vector< ::Ifc4x3_rc1::IfcResourceObjectSelect >& v) { set_attribute_value(3, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcExternalReferenceRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[436]); }
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void Ifc4x3_rc1::IfcExternalReferenceRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcExternalReference v3_RelatingReference, std::vector< ::Ifc4x3_rc1::IfcResourceObjectSelect > v4_RelatedResourceObjects) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_RelatingReference));set_attribute_value(3, cast_vector<express::Base>(v4_RelatedResourceObjects)); }
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// Function implementations for IfcExternalSpatialElement
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std::optional< ::Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Value > Ifc4x3_rc1::IfcExternalSpatialElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcExternalSpatialElement::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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std::vector<::Ifc4x3_rc1::IfcRelSpaceBoundary> Ifc4x3_rc1::IfcExternalSpatialElement::BoundedBy() const { return cast_vector<IfcRelSpaceBoundary>(file()->getInverse(data()->id(), IFC4X3_RC1_types[956], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcExternalSpatialElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[437]); }
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void Ifc4x3_rc1::IfcExternalSpatialElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcExternalSpatialElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcExternalSpatialStructureElement
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const IfcParse::entity& Ifc4x3_rc1::IfcExternalSpatialStructureElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[439]); }
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void Ifc4x3_rc1::IfcExternalSpatialStructureElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } }
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// Function implementations for IfcExternallyDefinedHatchStyle
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const IfcParse::entity& Ifc4x3_rc1::IfcExternallyDefinedHatchStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[432]); }
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void Ifc4x3_rc1::IfcExternallyDefinedHatchStyle::initialize(std::optional< std::string > v1_Location, std::optional< std::string > v2_Identification, std::optional< std::string > v3_Name) { if (v1_Location) {set_attribute_value(0, (*v1_Location)); } if (v2_Identification) {set_attribute_value(1, (*v2_Identification)); } if (v3_Name) {set_attribute_value(2, (*v3_Name)); } }
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// Function implementations for IfcExternallyDefinedSurfaceStyle
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const IfcParse::entity& Ifc4x3_rc1::IfcExternallyDefinedSurfaceStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[433]); }
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void Ifc4x3_rc1::IfcExternallyDefinedSurfaceStyle::initialize(std::optional< std::string > v1_Location, std::optional< std::string > v2_Identification, std::optional< std::string > v3_Name) { if (v1_Location) {set_attribute_value(0, (*v1_Location)); } if (v2_Identification) {set_attribute_value(1, (*v2_Identification)); } if (v3_Name) {set_attribute_value(2, (*v3_Name)); } }
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// Function implementations for IfcExternallyDefinedTextFont
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const IfcParse::entity& Ifc4x3_rc1::IfcExternallyDefinedTextFont::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[434]); }
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void Ifc4x3_rc1::IfcExternallyDefinedTextFont::initialize(std::optional< std::string > v1_Location, std::optional< std::string > v2_Identification, std::optional< std::string > v3_Name) { if (v1_Location) {set_attribute_value(0, (*v1_Location)); } if (v2_Identification) {set_attribute_value(1, (*v2_Identification)); } if (v3_Name) {set_attribute_value(2, (*v3_Name)); } }
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// Function implementations for IfcExtrudedAreaSolid
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcExtrudedAreaSolid::ExtrudedDirection() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcExtrudedAreaSolid::setExtrudedDirection(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcExtrudedAreaSolid::Depth() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcExtrudedAreaSolid::setDepth(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcExtrudedAreaSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[440]); }
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void Ifc4x3_rc1::IfcExtrudedAreaSolid::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcDirection v3_ExtrudedDirection, double v4_Depth) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_ExtrudedDirection));set_attribute_value(3, (v4_Depth)); }
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// Function implementations for IfcExtrudedAreaSolidTapered
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcExtrudedAreaSolidTapered::EndSweptArea() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcExtrudedAreaSolidTapered::setEndSweptArea(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcExtrudedAreaSolidTapered::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[441]); }
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void Ifc4x3_rc1::IfcExtrudedAreaSolidTapered::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcDirection v3_ExtrudedDirection, double v4_Depth, ::Ifc4x3_rc1::IfcProfileDef v5_EndSweptArea) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_ExtrudedDirection));set_attribute_value(3, (v4_Depth));set_attribute_value(4, (v5_EndSweptArea)); }
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// Function implementations for IfcFace
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std::vector< ::Ifc4x3_rc1::IfcFaceBound > Ifc4x3_rc1::IfcFace::Bounds() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcFaceBound>(es); }
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void Ifc4x3_rc1::IfcFace::setBounds(const std::vector< ::Ifc4x3_rc1::IfcFaceBound >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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std::vector<::Ifc4x3_rc1::IfcTextureMap> Ifc4x3_rc1::IfcFace::HasTextureMaps() const { return cast_vector<IfcTextureMap>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1199], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFace::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[442]); }
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void Ifc4x3_rc1::IfcFace::initialize(std::vector< ::Ifc4x3_rc1::IfcFaceBound > v1_Bounds) { set_attribute_value(0, cast_vector<express::Base>(v1_Bounds)); }
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// Function implementations for IfcFaceBasedSurfaceModel
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std::vector< ::Ifc4x3_rc1::IfcConnectedFaceSet > Ifc4x3_rc1::IfcFaceBasedSurfaceModel::FbsmFaces() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcConnectedFaceSet>(es); }
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void Ifc4x3_rc1::IfcFaceBasedSurfaceModel::setFbsmFaces(const std::vector< ::Ifc4x3_rc1::IfcConnectedFaceSet >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFaceBasedSurfaceModel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[443]); }
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void Ifc4x3_rc1::IfcFaceBasedSurfaceModel::initialize(std::vector< ::Ifc4x3_rc1::IfcConnectedFaceSet > v1_FbsmFaces) { set_attribute_value(0, cast_vector<express::Base>(v1_FbsmFaces)); }
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// Function implementations for IfcFaceBound
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::Ifc4x3_rc1::IfcLoop Ifc4x3_rc1::IfcFaceBound::Bound() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcLoop>(); }
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void Ifc4x3_rc1::IfcFaceBound::setBound(const ::Ifc4x3_rc1::IfcLoop& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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bool Ifc4x3_rc1::IfcFaceBound::Orientation() const { bool v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcFaceBound::setOrientation(const bool& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFaceBound::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[444]); }
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void Ifc4x3_rc1::IfcFaceBound::initialize(::Ifc4x3_rc1::IfcLoop v1_Bound, bool v2_Orientation) { set_attribute_value(0, (v1_Bound));set_attribute_value(1, (v2_Orientation)); }
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// Function implementations for IfcFaceOuterBound
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const IfcParse::entity& Ifc4x3_rc1::IfcFaceOuterBound::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[445]); }
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void Ifc4x3_rc1::IfcFaceOuterBound::initialize(::Ifc4x3_rc1::IfcLoop v1_Bound, bool v2_Orientation) { set_attribute_value(0, (v1_Bound));set_attribute_value(1, (v2_Orientation)); }
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// Function implementations for IfcFaceSurface
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::Ifc4x3_rc1::IfcSurface Ifc4x3_rc1::IfcFaceSurface::FaceSurface() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcSurface>(); }
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void Ifc4x3_rc1::IfcFaceSurface::setFaceSurface(const ::Ifc4x3_rc1::IfcSurface& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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bool Ifc4x3_rc1::IfcFaceSurface::SameSense() const { bool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcFaceSurface::setSameSense(const bool& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFaceSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[446]); }
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void Ifc4x3_rc1::IfcFaceSurface::initialize(std::vector< ::Ifc4x3_rc1::IfcFaceBound > v1_Bounds, ::Ifc4x3_rc1::IfcSurface v2_FaceSurface, bool v3_SameSense) { set_attribute_value(0, cast_vector<express::Base>(v1_Bounds));set_attribute_value(1, (v2_FaceSurface));set_attribute_value(2, (v3_SameSense)); }
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// Function implementations for IfcFacetedBrep
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const IfcParse::entity& Ifc4x3_rc1::IfcFacetedBrep::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[447]); }
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void Ifc4x3_rc1::IfcFacetedBrep::initialize(::Ifc4x3_rc1::IfcClosedShell v1_Outer) { set_attribute_value(0, (v1_Outer)); }
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// Function implementations for IfcFacetedBrepWithVoids
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std::vector< ::Ifc4x3_rc1::IfcClosedShell > Ifc4x3_rc1::IfcFacetedBrepWithVoids::Voids() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcClosedShell>(es); }
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void Ifc4x3_rc1::IfcFacetedBrepWithVoids::setVoids(const std::vector< ::Ifc4x3_rc1::IfcClosedShell >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFacetedBrepWithVoids::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[448]); }
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void Ifc4x3_rc1::IfcFacetedBrepWithVoids::initialize(::Ifc4x3_rc1::IfcClosedShell v1_Outer, std::vector< ::Ifc4x3_rc1::IfcClosedShell > v2_Voids) { set_attribute_value(0, (v1_Outer));set_attribute_value(1, cast_vector<express::Base>(v2_Voids)); }
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// Function implementations for IfcFacility
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const IfcParse::entity& Ifc4x3_rc1::IfcFacility::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[449]); }
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void Ifc4x3_rc1::IfcFacility::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); } }
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// Function implementations for IfcFacilityPart
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::Ifc4x3_rc1::IfcFacilityPartTypeSelect Ifc4x3_rc1::IfcFacilityPart::PredefinedType() const { return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcFacilityPartTypeSelect>(); }
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void Ifc4x3_rc1::IfcFacilityPart::setPredefinedType(const ::Ifc4x3_rc1::IfcFacilityPartTypeSelect& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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::Ifc4x3_rc1::IfcFacilityUsageEnum::Value Ifc4x3_rc1::IfcFacilityPart::UsageType() const { return ::Ifc4x3_rc1::IfcFacilityUsageEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcFacilityPart::setUsageType(const ::Ifc4x3_rc1::IfcFacilityUsageEnum::Value& v) { set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcFacilityUsageEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(10); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFacilityPart::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[450]); }
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void Ifc4x3_rc1::IfcFacilityPart::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType, ::Ifc4x3_rc1::IfcFacilityPartTypeSelect v10_PredefinedType, ::Ifc4x3_rc1::IfcFacilityUsageEnum::Value v11_UsageType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); }set_attribute_value(9, (v10_PredefinedType));set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcFacilityUsageEnum::Class(),(size_t)v11_UsageType))); }
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// Function implementations for IfcFailureConnectionCondition
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std::optional< double > Ifc4x3_rc1::IfcFailureConnectionCondition::TensionFailureX() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcFailureConnectionCondition::setTensionFailureX(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< double > Ifc4x3_rc1::IfcFailureConnectionCondition::TensionFailureY() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcFailureConnectionCondition::setTensionFailureY(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcFailureConnectionCondition::TensionFailureZ() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcFailureConnectionCondition::setTensionFailureZ(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcFailureConnectionCondition::CompressionFailureX() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcFailureConnectionCondition::setCompressionFailureX(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< double > Ifc4x3_rc1::IfcFailureConnectionCondition::CompressionFailureY() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcFailureConnectionCondition::setCompressionFailureY(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< double > Ifc4x3_rc1::IfcFailureConnectionCondition::CompressionFailureZ() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcFailureConnectionCondition::setCompressionFailureZ(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFailureConnectionCondition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[454]); }
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void Ifc4x3_rc1::IfcFailureConnectionCondition::initialize(std::optional< std::string > v1_Name, std::optional< double > v2_TensionFailureX, std::optional< double > v3_TensionFailureY, std::optional< double > v4_TensionFailureZ, std::optional< double > v5_CompressionFailureX, std::optional< double > v6_CompressionFailureY, std::optional< double > v7_CompressionFailureZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_TensionFailureX) {set_attribute_value(1, (*v2_TensionFailureX)); } if (v3_TensionFailureY) {set_attribute_value(2, (*v3_TensionFailureY)); } if (v4_TensionFailureZ) {set_attribute_value(3, (*v4_TensionFailureZ)); } if (v5_CompressionFailureX) {set_attribute_value(4, (*v5_CompressionFailureX)); } if (v6_CompressionFailureY) {set_attribute_value(5, (*v6_CompressionFailureY)); } if (v7_CompressionFailureZ) {set_attribute_value(6, (*v7_CompressionFailureZ)); } }
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// Function implementations for IfcFan
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std::optional< ::Ifc4x3_rc1::IfcFanTypeEnum::Value > Ifc4x3_rc1::IfcFan::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFanTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcFan::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcFanTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcFanTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFan::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[455]); }
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void Ifc4x3_rc1::IfcFan::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcFanTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcFanTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcFanType
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::Ifc4x3_rc1::IfcFanTypeEnum::Value Ifc4x3_rc1::IfcFanType::PredefinedType() const { return ::Ifc4x3_rc1::IfcFanTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcFanType::setPredefinedType(const ::Ifc4x3_rc1::IfcFanTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcFanTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFanType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[456]); }
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void Ifc4x3_rc1::IfcFanType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcFanTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcFanTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcFastener
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std::optional< ::Ifc4x3_rc1::IfcFastenerTypeEnum::Value > Ifc4x3_rc1::IfcFastener::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFastenerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcFastener::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcFastenerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcFastenerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFastener::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[458]); }
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void Ifc4x3_rc1::IfcFastener::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcFastenerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcFastenerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcFastenerType
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::Ifc4x3_rc1::IfcFastenerTypeEnum::Value Ifc4x3_rc1::IfcFastenerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcFastenerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcFastenerType::setPredefinedType(const ::Ifc4x3_rc1::IfcFastenerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcFastenerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFastenerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[459]); }
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void Ifc4x3_rc1::IfcFastenerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcFastenerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcFastenerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcFeatureElement
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const IfcParse::entity& Ifc4x3_rc1::IfcFeatureElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[461]); }
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void Ifc4x3_rc1::IfcFeatureElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFeatureElementAddition
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std::vector<::Ifc4x3_rc1::IfcRelProjectsElement> Ifc4x3_rc1::IfcFeatureElementAddition::ProjectsElements() const { return cast_vector<IfcRelProjectsElement>(file()->getInverse(data()->id(), IFC4X3_RC1_types[952], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFeatureElementAddition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[462]); }
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void Ifc4x3_rc1::IfcFeatureElementAddition::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFeatureElementSubtraction
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std::vector<::Ifc4x3_rc1::IfcRelVoidsElement> Ifc4x3_rc1::IfcFeatureElementSubtraction::VoidsElements() const { return cast_vector<IfcRelVoidsElement>(file()->getInverse(data()->id(), IFC4X3_RC1_types[959], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFeatureElementSubtraction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[463]); }
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void Ifc4x3_rc1::IfcFeatureElementSubtraction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFillAreaStyle
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std::vector< ::Ifc4x3_rc1::IfcFillStyleSelect > Ifc4x3_rc1::IfcFillAreaStyle::FillStyles() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcFillStyleSelect>(es); }
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void Ifc4x3_rc1::IfcFillAreaStyle::setFillStyles(const std::vector< ::Ifc4x3_rc1::IfcFillStyleSelect >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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std::optional< bool > Ifc4x3_rc1::IfcFillAreaStyle::ModelorDraughting() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } bool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcFillAreaStyle::setModelorDraughting(const std::optional< bool >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFillAreaStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[464]); }
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void Ifc4x3_rc1::IfcFillAreaStyle::initialize(std::optional< std::string > v1_Name, std::vector< ::Ifc4x3_rc1::IfcFillStyleSelect > v2_FillStyles, std::optional< bool > v3_ModelorDraughting) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, cast_vector<express::Base>(v2_FillStyles)); if (v3_ModelorDraughting) {set_attribute_value(2, (*v3_ModelorDraughting)); } }
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// Function implementations for IfcFillAreaStyleHatching
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::Ifc4x3_rc1::IfcCurveStyle Ifc4x3_rc1::IfcFillAreaStyleHatching::HatchLineAppearance() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurveStyle>(); }
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void Ifc4x3_rc1::IfcFillAreaStyleHatching::setHatchLineAppearance(const ::Ifc4x3_rc1::IfcCurveStyle& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcHatchLineDistanceSelect Ifc4x3_rc1::IfcFillAreaStyleHatching::StartOfNextHatchLine() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcHatchLineDistanceSelect>(); }
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void Ifc4x3_rc1::IfcFillAreaStyleHatching::setStartOfNextHatchLine(const ::Ifc4x3_rc1::IfcHatchLineDistanceSelect& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcCartesianPoint Ifc4x3_rc1::IfcFillAreaStyleHatching::PointOfReferenceHatchLine() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcCartesianPoint{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcCartesianPoint>(); }
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void Ifc4x3_rc1::IfcFillAreaStyleHatching::setPointOfReferenceHatchLine(const ::Ifc4x3_rc1::IfcCartesianPoint& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcCartesianPoint Ifc4x3_rc1::IfcFillAreaStyleHatching::PatternStart() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcCartesianPoint{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcCartesianPoint>(); }
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void Ifc4x3_rc1::IfcFillAreaStyleHatching::setPatternStart(const ::Ifc4x3_rc1::IfcCartesianPoint& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcFillAreaStyleHatching::HatchLineAngle() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcFillAreaStyleHatching::setHatchLineAngle(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFillAreaStyleHatching::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[465]); }
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void Ifc4x3_rc1::IfcFillAreaStyleHatching::initialize(::Ifc4x3_rc1::IfcCurveStyle v1_HatchLineAppearance, ::Ifc4x3_rc1::IfcHatchLineDistanceSelect v2_StartOfNextHatchLine, ::Ifc4x3_rc1::IfcCartesianPoint v3_PointOfReferenceHatchLine, ::Ifc4x3_rc1::IfcCartesianPoint v4_PatternStart, double v5_HatchLineAngle) { set_attribute_value(0, (v1_HatchLineAppearance));set_attribute_value(1, (v2_StartOfNextHatchLine));set_attribute_value(2, (v3_PointOfReferenceHatchLine));set_attribute_value(3, (v4_PatternStart));set_attribute_value(4, (v5_HatchLineAngle)); }
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// Function implementations for IfcFillAreaStyleTiles
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std::vector< ::Ifc4x3_rc1::IfcVector > Ifc4x3_rc1::IfcFillAreaStyleTiles::TilingPattern() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcVector>(es); }
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void Ifc4x3_rc1::IfcFillAreaStyleTiles::setTilingPattern(const std::vector< ::Ifc4x3_rc1::IfcVector >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcStyledItem > Ifc4x3_rc1::IfcFillAreaStyleTiles::Tiles() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcStyledItem>(es); }
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void Ifc4x3_rc1::IfcFillAreaStyleTiles::setTiles(const std::vector< ::Ifc4x3_rc1::IfcStyledItem >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcFillAreaStyleTiles::TilingScale() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcFillAreaStyleTiles::setTilingScale(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFillAreaStyleTiles::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[466]); }
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void Ifc4x3_rc1::IfcFillAreaStyleTiles::initialize(std::vector< ::Ifc4x3_rc1::IfcVector > v1_TilingPattern, std::vector< ::Ifc4x3_rc1::IfcStyledItem > v2_Tiles, double v3_TilingScale) { set_attribute_value(0, cast_vector<express::Base>(v1_TilingPattern));set_attribute_value(1, cast_vector<express::Base>(v2_Tiles));set_attribute_value(2, (v3_TilingScale)); }
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// Function implementations for IfcFilter
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std::optional< ::Ifc4x3_rc1::IfcFilterTypeEnum::Value > Ifc4x3_rc1::IfcFilter::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFilterTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcFilter::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcFilterTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcFilterTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFilter::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[468]); }
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void Ifc4x3_rc1::IfcFilter::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcFilterTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcFilterTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcFilterType
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::Ifc4x3_rc1::IfcFilterTypeEnum::Value Ifc4x3_rc1::IfcFilterType::PredefinedType() const { return ::Ifc4x3_rc1::IfcFilterTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcFilterType::setPredefinedType(const ::Ifc4x3_rc1::IfcFilterTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcFilterTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFilterType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[469]); }
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void Ifc4x3_rc1::IfcFilterType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcFilterTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcFilterTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcFireSuppressionTerminal
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std::optional< ::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value > Ifc4x3_rc1::IfcFireSuppressionTerminal::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcFireSuppressionTerminal::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFireSuppressionTerminal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[471]); }
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void Ifc4x3_rc1::IfcFireSuppressionTerminal::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcFireSuppressionTerminalType
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::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value Ifc4x3_rc1::IfcFireSuppressionTerminalType::PredefinedType() const { return ::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcFireSuppressionTerminalType::setPredefinedType(const ::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFireSuppressionTerminalType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[472]); }
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void Ifc4x3_rc1::IfcFireSuppressionTerminalType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcFireSuppressionTerminalTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcFixedReferenceSweptAreaSolid
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcFixedReferenceSweptAreaSolid::FixedReference() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcFixedReferenceSweptAreaSolid::setFixedReference(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFixedReferenceSweptAreaSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[474]); }
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void Ifc4x3_rc1::IfcFixedReferenceSweptAreaSolid::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcCurve v3_Directrix, std::optional< double > v4_StartParam, std::optional< double > v5_EndParam, ::Ifc4x3_rc1::IfcDirection v6_FixedReference) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_Directrix)); if (v4_StartParam) {set_attribute_value(3, (*v4_StartParam)); } if (v5_EndParam) {set_attribute_value(4, (*v5_EndParam)); }set_attribute_value(5, (v6_FixedReference)); }
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// Function implementations for IfcFlowController
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowController::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[475]); }
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void Ifc4x3_rc1::IfcFlowController::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFlowControllerType
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowControllerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[476]); }
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void Ifc4x3_rc1::IfcFlowControllerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcFlowFitting
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowFitting::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[478]); }
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void Ifc4x3_rc1::IfcFlowFitting::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFlowFittingType
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowFittingType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[479]); }
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void Ifc4x3_rc1::IfcFlowFittingType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcFlowInstrument
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std::optional< ::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value > Ifc4x3_rc1::IfcFlowInstrument::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcFlowInstrument::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowInstrument::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[480]); }
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void Ifc4x3_rc1::IfcFlowInstrument::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcFlowInstrumentType
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::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value Ifc4x3_rc1::IfcFlowInstrumentType::PredefinedType() const { return ::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcFlowInstrumentType::setPredefinedType(const ::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowInstrumentType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[481]); }
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void Ifc4x3_rc1::IfcFlowInstrumentType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcFlowInstrumentTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcFlowMeter
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std::optional< ::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value > Ifc4x3_rc1::IfcFlowMeter::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFlowMeterTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcFlowMeter::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowMeter::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[483]); }
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void Ifc4x3_rc1::IfcFlowMeter::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcFlowMeterType
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::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value Ifc4x3_rc1::IfcFlowMeterType::PredefinedType() const { return ::Ifc4x3_rc1::IfcFlowMeterTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcFlowMeterType::setPredefinedType(const ::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowMeterType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[484]); }
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void Ifc4x3_rc1::IfcFlowMeterType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcFlowMeterTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcFlowMovingDevice
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowMovingDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[486]); }
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void Ifc4x3_rc1::IfcFlowMovingDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFlowMovingDeviceType
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowMovingDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[487]); }
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void Ifc4x3_rc1::IfcFlowMovingDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcFlowSegment
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[488]); }
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void Ifc4x3_rc1::IfcFlowSegment::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFlowSegmentType
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowSegmentType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[489]); }
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void Ifc4x3_rc1::IfcFlowSegmentType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcFlowStorageDevice
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowStorageDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[490]); }
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void Ifc4x3_rc1::IfcFlowStorageDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFlowStorageDeviceType
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowStorageDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[491]); }
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void Ifc4x3_rc1::IfcFlowStorageDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcFlowTerminal
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowTerminal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[492]); }
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void Ifc4x3_rc1::IfcFlowTerminal::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFlowTerminalType
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowTerminalType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[493]); }
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void Ifc4x3_rc1::IfcFlowTerminalType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcFlowTreatmentDevice
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowTreatmentDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[494]); }
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void Ifc4x3_rc1::IfcFlowTreatmentDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFlowTreatmentDeviceType
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const IfcParse::entity& Ifc4x3_rc1::IfcFlowTreatmentDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[495]); }
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void Ifc4x3_rc1::IfcFlowTreatmentDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcFooting
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std::optional< ::Ifc4x3_rc1::IfcFootingTypeEnum::Value > Ifc4x3_rc1::IfcFooting::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFootingTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcFooting::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcFootingTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcFootingTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFooting::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[499]); }
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void Ifc4x3_rc1::IfcFooting::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcFootingTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcFootingTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcFootingType
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::Ifc4x3_rc1::IfcFootingTypeEnum::Value Ifc4x3_rc1::IfcFootingType::PredefinedType() const { return ::Ifc4x3_rc1::IfcFootingTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcFootingType::setPredefinedType(const ::Ifc4x3_rc1::IfcFootingTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcFootingTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcFootingType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[500]); }
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void Ifc4x3_rc1::IfcFootingType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcFootingTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcFootingTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcFurnishingElement
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const IfcParse::entity& Ifc4x3_rc1::IfcFurnishingElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[504]); }
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void Ifc4x3_rc1::IfcFurnishingElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcFurnishingElementType
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const IfcParse::entity& Ifc4x3_rc1::IfcFurnishingElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[505]); }
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void Ifc4x3_rc1::IfcFurnishingElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcFurniture
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std::optional< ::Ifc4x3_rc1::IfcFurnitureTypeEnum::Value > Ifc4x3_rc1::IfcFurniture::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFurnitureTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcFurniture::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcFurnitureTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcFurnitureTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFurniture::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[506]); }
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void Ifc4x3_rc1::IfcFurniture::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcFurnitureTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcFurnitureTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcFurnitureType
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::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value Ifc4x3_rc1::IfcFurnitureType::AssemblyPlace() const { return ::Ifc4x3_rc1::IfcAssemblyPlaceEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcFurnitureType::setAssemblyPlace(const ::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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std::optional< ::Ifc4x3_rc1::IfcFurnitureTypeEnum::Value > Ifc4x3_rc1::IfcFurnitureType::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcFurnitureTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcFurnitureType::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcFurnitureTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcFurnitureTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcFurnitureType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[507]); }
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void Ifc4x3_rc1::IfcFurnitureType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Value v10_AssemblyPlace, std::optional< ::Ifc4x3_rc1::IfcFurnitureTypeEnum::Value > v11_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcAssemblyPlaceEnum::Class(),(size_t)v10_AssemblyPlace))); if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcFurnitureTypeEnum::Class(),(size_t)*v11_PredefinedType))); } }
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// Function implementations for IfcGeographicElement
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std::optional< ::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value > Ifc4x3_rc1::IfcGeographicElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcGeographicElementTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcGeographicElement::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcGeographicElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[509]); }
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void Ifc4x3_rc1::IfcGeographicElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcGeographicElementType
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::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value Ifc4x3_rc1::IfcGeographicElementType::PredefinedType() const { return ::Ifc4x3_rc1::IfcGeographicElementTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcGeographicElementType::setPredefinedType(const ::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcGeographicElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[510]); }
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void Ifc4x3_rc1::IfcGeographicElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcGeometricCurveSet
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const IfcParse::entity& Ifc4x3_rc1::IfcGeometricCurveSet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[512]); }
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void Ifc4x3_rc1::IfcGeometricCurveSet::initialize(std::vector< ::Ifc4x3_rc1::IfcGeometricSetSelect > v1_Elements) { set_attribute_value(0, cast_vector<express::Base>(v1_Elements)); }
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// Function implementations for IfcGeometricRepresentationContext
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int Ifc4x3_rc1::IfcGeometricRepresentationContext::CoordinateSpaceDimension() const { int v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcGeometricRepresentationContext::setCoordinateSpaceDimension(const int& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::optional< double > Ifc4x3_rc1::IfcGeometricRepresentationContext::Precision() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcGeometricRepresentationContext::setPrecision(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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::Ifc4x3_rc1::IfcAxis2Placement Ifc4x3_rc1::IfcGeometricRepresentationContext::WorldCoordinateSystem() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcAxis2Placement>(); }
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void Ifc4x3_rc1::IfcGeometricRepresentationContext::setWorldCoordinateSystem(const ::Ifc4x3_rc1::IfcAxis2Placement& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcGeometricRepresentationContext::TrueNorth() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcDirection{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcGeometricRepresentationContext::setTrueNorth(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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std::vector<::Ifc4x3_rc1::IfcGeometricRepresentationSubContext> Ifc4x3_rc1::IfcGeometricRepresentationContext::HasSubContexts() const { return cast_vector<IfcGeometricRepresentationSubContext>(file()->getInverse(data()->id(), IFC4X3_RC1_types[516], 6)); }
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std::vector<::Ifc4x3_rc1::IfcCoordinateOperation> Ifc4x3_rc1::IfcGeometricRepresentationContext::HasCoordinateOperation() const { return cast_vector<IfcCoordinateOperation>(file()->getInverse(data()->id(), IFC4X3_RC1_types[249], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcGeometricRepresentationContext::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[514]); }
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void Ifc4x3_rc1::IfcGeometricRepresentationContext::initialize(std::optional< std::string > v1_ContextIdentifier, std::optional< std::string > v2_ContextType, int v3_CoordinateSpaceDimension, std::optional< double > v4_Precision, ::Ifc4x3_rc1::IfcAxis2Placement v5_WorldCoordinateSystem, ::Ifc4x3_rc1::IfcDirection v6_TrueNorth) { if (v1_ContextIdentifier) {set_attribute_value(0, (*v1_ContextIdentifier)); } if (v2_ContextType) {set_attribute_value(1, (*v2_ContextType)); }set_attribute_value(2, (v3_CoordinateSpaceDimension)); if (v4_Precision) {set_attribute_value(3, (*v4_Precision)); }set_attribute_value(4, (v5_WorldCoordinateSystem));set_attribute_value(5, (v6_TrueNorth)); }
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// Function implementations for IfcGeometricRepresentationItem
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const IfcParse::entity& Ifc4x3_rc1::IfcGeometricRepresentationItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[515]); }
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void Ifc4x3_rc1::IfcGeometricRepresentationItem::initialize() { }
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// Function implementations for IfcGeometricRepresentationSubContext
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::Ifc4x3_rc1::IfcGeometricRepresentationContext Ifc4x3_rc1::IfcGeometricRepresentationSubContext::ParentContext() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcGeometricRepresentationContext>(); }
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void Ifc4x3_rc1::IfcGeometricRepresentationSubContext::setParentContext(const ::Ifc4x3_rc1::IfcGeometricRepresentationContext& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< double > Ifc4x3_rc1::IfcGeometricRepresentationSubContext::TargetScale() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcGeometricRepresentationSubContext::setTargetScale(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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::Ifc4x3_rc1::IfcGeometricProjectionEnum::Value Ifc4x3_rc1::IfcGeometricRepresentationSubContext::TargetView() const { return ::Ifc4x3_rc1::IfcGeometricProjectionEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcGeometricRepresentationSubContext::setTargetView(const ::Ifc4x3_rc1::IfcGeometricProjectionEnum::Value& v) { set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcGeometricProjectionEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(8); }
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std::optional< std::string > Ifc4x3_rc1::IfcGeometricRepresentationSubContext::UserDefinedTargetView() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::string v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcGeometricRepresentationSubContext::setUserDefinedTargetView(const std::optional< std::string >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcGeometricRepresentationSubContext::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[516]); }
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void Ifc4x3_rc1::IfcGeometricRepresentationSubContext::initialize(std::optional< std::string > v1_ContextIdentifier, std::optional< std::string > v2_ContextType, ::Ifc4x3_rc1::IfcGeometricRepresentationContext v7_ParentContext, std::optional< double > v8_TargetScale, ::Ifc4x3_rc1::IfcGeometricProjectionEnum::Value v9_TargetView, std::optional< std::string > v10_UserDefinedTargetView) { if (v1_ContextIdentifier) {set_attribute_value(0, (*v1_ContextIdentifier)); } if (v2_ContextType) {set_attribute_value(1, (*v2_ContextType)); }set_attribute_value(6, (v7_ParentContext)); if (v8_TargetScale) {set_attribute_value(7, (*v8_TargetScale)); }set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGeometricProjectionEnum::Class(),(size_t)v9_TargetView))); if (v10_UserDefinedTargetView) {set_attribute_value(9, (*v10_UserDefinedTargetView)); } }
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// Function implementations for IfcGeometricSet
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std::vector< ::Ifc4x3_rc1::IfcGeometricSetSelect > Ifc4x3_rc1::IfcGeometricSet::Elements() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcGeometricSetSelect>(es); }
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void Ifc4x3_rc1::IfcGeometricSet::setElements(const std::vector< ::Ifc4x3_rc1::IfcGeometricSetSelect >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcGeometricSet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[517]); }
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void Ifc4x3_rc1::IfcGeometricSet::initialize(std::vector< ::Ifc4x3_rc1::IfcGeometricSetSelect > v1_Elements) { set_attribute_value(0, cast_vector<express::Base>(v1_Elements)); }
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// Function implementations for IfcGeomodel
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const IfcParse::entity& Ifc4x3_rc1::IfcGeomodel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[519]); }
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void Ifc4x3_rc1::IfcGeomodel::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcGeoslice
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const IfcParse::entity& Ifc4x3_rc1::IfcGeoslice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[520]); }
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void Ifc4x3_rc1::IfcGeoslice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcGeotechnicalAssembly
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const IfcParse::entity& Ifc4x3_rc1::IfcGeotechnicalAssembly::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[521]); }
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void Ifc4x3_rc1::IfcGeotechnicalAssembly::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcGeotechnicalElement
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const IfcParse::entity& Ifc4x3_rc1::IfcGeotechnicalElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[522]); }
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void Ifc4x3_rc1::IfcGeotechnicalElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcGeotechnicalStratum
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const IfcParse::entity& Ifc4x3_rc1::IfcGeotechnicalStratum::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[523]); }
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void Ifc4x3_rc1::IfcGeotechnicalStratum::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcGrid
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std::vector< ::Ifc4x3_rc1::IfcGridAxis > Ifc4x3_rc1::IfcGrid::UAxes() const { std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcGridAxis>(es); }
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void Ifc4x3_rc1::IfcGrid::setUAxes(const std::vector< ::Ifc4x3_rc1::IfcGridAxis >& v) { set_attribute_value(7, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(7); }
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std::vector< ::Ifc4x3_rc1::IfcGridAxis > Ifc4x3_rc1::IfcGrid::VAxes() const { std::vector<express::Base> es = get_attribute_value(8); return cast_vector<::Ifc4x3_rc1::IfcGridAxis>(es); }
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void Ifc4x3_rc1::IfcGrid::setVAxes(const std::vector< ::Ifc4x3_rc1::IfcGridAxis >& v) { set_attribute_value(8, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(8); }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcGridAxis > > Ifc4x3_rc1::IfcGrid::WAxes() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(9); return cast_vector<::Ifc4x3_rc1::IfcGridAxis>(es); }
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void Ifc4x3_rc1::IfcGrid::setWAxes(const std::optional< std::vector< ::Ifc4x3_rc1::IfcGridAxis > >& v) { if (v) {set_attribute_value(9, cast_vector<express::Base>(*v));} else {unset_attribute_value(9);} }
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std::optional< ::Ifc4x3_rc1::IfcGridTypeEnum::Value > Ifc4x3_rc1::IfcGrid::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcGridTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcGrid::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcGridTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcGridTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcGrid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[526]); }
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void Ifc4x3_rc1::IfcGrid::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::vector< ::Ifc4x3_rc1::IfcGridAxis > v8_UAxes, std::vector< ::Ifc4x3_rc1::IfcGridAxis > v9_VAxes, std::optional< std::vector< ::Ifc4x3_rc1::IfcGridAxis > > v10_WAxes, std::optional< ::Ifc4x3_rc1::IfcGridTypeEnum::Value > v11_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, cast_vector<express::Base>(v8_UAxes));set_attribute_value(8, cast_vector<express::Base>(v9_VAxes)); if (v10_WAxes) {set_attribute_value(9, cast_vector<express::Base>(*v10_WAxes)); } if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcGridTypeEnum::Class(),(size_t)*v11_PredefinedType))); } }
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// Function implementations for IfcGridAxis
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std::optional< std::string > Ifc4x3_rc1::IfcGridAxis::AxisTag() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcGridAxis::setAxisTag(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcGridAxis::AxisCurve() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcGridAxis::setAxisCurve(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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bool Ifc4x3_rc1::IfcGridAxis::SameSense() const { bool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcGridAxis::setSameSense(const bool& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector<::Ifc4x3_rc1::IfcGrid> Ifc4x3_rc1::IfcGridAxis::PartOfW() const { return cast_vector<IfcGrid>(file()->getInverse(data()->id(), IFC4X3_RC1_types[526], 9)); }
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std::vector<::Ifc4x3_rc1::IfcGrid> Ifc4x3_rc1::IfcGridAxis::PartOfV() const { return cast_vector<IfcGrid>(file()->getInverse(data()->id(), IFC4X3_RC1_types[526], 8)); }
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std::vector<::Ifc4x3_rc1::IfcGrid> Ifc4x3_rc1::IfcGridAxis::PartOfU() const { return cast_vector<IfcGrid>(file()->getInverse(data()->id(), IFC4X3_RC1_types[526], 7)); }
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std::vector<::Ifc4x3_rc1::IfcVirtualGridIntersection> Ifc4x3_rc1::IfcGridAxis::HasIntersections() const { return cast_vector<IfcVirtualGridIntersection>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1277], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcGridAxis::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[527]); }
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void Ifc4x3_rc1::IfcGridAxis::initialize(std::optional< std::string > v1_AxisTag, ::Ifc4x3_rc1::IfcCurve v2_AxisCurve, bool v3_SameSense) { if (v1_AxisTag) {set_attribute_value(0, (*v1_AxisTag)); }set_attribute_value(1, (v2_AxisCurve));set_attribute_value(2, (v3_SameSense)); }
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// Function implementations for IfcGridPlacement
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::Ifc4x3_rc1::IfcVirtualGridIntersection Ifc4x3_rc1::IfcGridPlacement::PlacementLocation() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcVirtualGridIntersection>(); }
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void Ifc4x3_rc1::IfcGridPlacement::setPlacementLocation(const ::Ifc4x3_rc1::IfcVirtualGridIntersection& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcGridPlacementDirectionSelect Ifc4x3_rc1::IfcGridPlacement::PlacementRefDirection() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcGridPlacementDirectionSelect{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcGridPlacementDirectionSelect>(); }
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void Ifc4x3_rc1::IfcGridPlacement::setPlacementRefDirection(const ::Ifc4x3_rc1::IfcGridPlacementDirectionSelect& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcGridPlacement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[528]); }
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void Ifc4x3_rc1::IfcGridPlacement::initialize(::Ifc4x3_rc1::IfcObjectPlacement v1_PlacementRelTo, ::Ifc4x3_rc1::IfcVirtualGridIntersection v2_PlacementLocation, ::Ifc4x3_rc1::IfcGridPlacementDirectionSelect v3_PlacementRefDirection) { set_attribute_value(0, (v1_PlacementRelTo));set_attribute_value(1, (v2_PlacementLocation));set_attribute_value(2, (v3_PlacementRefDirection)); }
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// Function implementations for IfcGroup
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std::vector<::Ifc4x3_rc1::IfcRelAssignsToGroup> Ifc4x3_rc1::IfcGroup::IsGroupedBy() const { return cast_vector<IfcRelAssignsToGroup>(file()->getInverse(data()->id(), IFC4X3_RC1_types[914], 6)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcGroup::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[531]); }
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void Ifc4x3_rc1::IfcGroup::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } }
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// Function implementations for IfcHalfSpaceSolid
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::Ifc4x3_rc1::IfcSurface Ifc4x3_rc1::IfcHalfSpaceSolid::BaseSurface() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcSurface>(); }
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void Ifc4x3_rc1::IfcHalfSpaceSolid::setBaseSurface(const ::Ifc4x3_rc1::IfcSurface& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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bool Ifc4x3_rc1::IfcHalfSpaceSolid::AgreementFlag() const { bool v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcHalfSpaceSolid::setAgreementFlag(const bool& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcHalfSpaceSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[532]); }
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void Ifc4x3_rc1::IfcHalfSpaceSolid::initialize(::Ifc4x3_rc1::IfcSurface v1_BaseSurface, bool v2_AgreementFlag) { set_attribute_value(0, (v1_BaseSurface));set_attribute_value(1, (v2_AgreementFlag)); }
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// Function implementations for IfcHeatExchanger
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std::optional< ::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value > Ifc4x3_rc1::IfcHeatExchanger::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcHeatExchanger::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcHeatExchanger::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[534]); }
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void Ifc4x3_rc1::IfcHeatExchanger::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcHeatExchangerType
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::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value Ifc4x3_rc1::IfcHeatExchangerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcHeatExchangerType::setPredefinedType(const ::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcHeatExchangerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[535]); }
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void Ifc4x3_rc1::IfcHeatExchangerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcHeatExchangerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcHumidifier
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std::optional< ::Ifc4x3_rc1::IfcHumidifierTypeEnum::Value > Ifc4x3_rc1::IfcHumidifier::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcHumidifierTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcHumidifier::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcHumidifierTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcHumidifierTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcHumidifier::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[539]); }
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void Ifc4x3_rc1::IfcHumidifier::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcHumidifierTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcHumidifierTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcHumidifierType
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::Ifc4x3_rc1::IfcHumidifierTypeEnum::Value Ifc4x3_rc1::IfcHumidifierType::PredefinedType() const { return ::Ifc4x3_rc1::IfcHumidifierTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcHumidifierType::setPredefinedType(const ::Ifc4x3_rc1::IfcHumidifierTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcHumidifierTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcHumidifierType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[540]); }
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void Ifc4x3_rc1::IfcHumidifierType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcHumidifierTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcHumidifierTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcIShapeProfileDef
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double Ifc4x3_rc1::IfcIShapeProfileDef::OverallWidth() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcIShapeProfileDef::setOverallWidth(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcIShapeProfileDef::OverallDepth() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcIShapeProfileDef::setOverallDepth(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcIShapeProfileDef::WebThickness() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcIShapeProfileDef::setWebThickness(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcIShapeProfileDef::FlangeThickness() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcIShapeProfileDef::setFlangeThickness(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< double > Ifc4x3_rc1::IfcIShapeProfileDef::FilletRadius() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcIShapeProfileDef::setFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< double > Ifc4x3_rc1::IfcIShapeProfileDef::FlangeEdgeRadius() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcIShapeProfileDef::setFlangeEdgeRadius(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< double > Ifc4x3_rc1::IfcIShapeProfileDef::FlangeSlope() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcIShapeProfileDef::setFlangeSlope(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcIShapeProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[570]); }
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void Ifc4x3_rc1::IfcIShapeProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_OverallWidth, double v5_OverallDepth, double v6_WebThickness, double v7_FlangeThickness, std::optional< double > v8_FilletRadius, std::optional< double > v9_FlangeEdgeRadius, std::optional< double > v10_FlangeSlope) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_OverallWidth));set_attribute_value(4, (v5_OverallDepth));set_attribute_value(5, (v6_WebThickness));set_attribute_value(6, (v7_FlangeThickness)); if (v8_FilletRadius) {set_attribute_value(7, (*v8_FilletRadius)); } if (v9_FlangeEdgeRadius) {set_attribute_value(8, (*v9_FlangeEdgeRadius)); } if (v10_FlangeSlope) {set_attribute_value(9, (*v10_FlangeSlope)); } }
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// Function implementations for IfcImageTexture
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std::string Ifc4x3_rc1::IfcImageTexture::URLReference() const { std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcImageTexture::setURLReference(const std::string& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcImageTexture::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[544]); }
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void Ifc4x3_rc1::IfcImageTexture::initialize(bool v1_RepeatS, bool v2_RepeatT, std::optional< std::string > v3_Mode, ::Ifc4x3_rc1::IfcCartesianTransformationOperator2D v4_TextureTransform, std::optional< std::vector< std::string > /*[1:?]*/ > v5_Parameter, std::string v6_URLReference) { set_attribute_value(0, (v1_RepeatS));set_attribute_value(1, (v2_RepeatT)); if (v3_Mode) {set_attribute_value(2, (*v3_Mode)); }set_attribute_value(3, (v4_TextureTransform)); if (v5_Parameter) {set_attribute_value(4, (*v5_Parameter)); }set_attribute_value(5, (v6_URLReference)); }
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// Function implementations for IfcImpactProtectionDevice
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::Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect Ifc4x3_rc1::IfcImpactProtectionDevice::PredefinedType() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect>(); }
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void Ifc4x3_rc1::IfcImpactProtectionDevice::setPredefinedType(const ::Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcImpactProtectionDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[545]); }
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void Ifc4x3_rc1::IfcImpactProtectionDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, ::Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); }set_attribute_value(8, (v9_PredefinedType)); }
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// Function implementations for IfcImpactProtectionDeviceType
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::Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect Ifc4x3_rc1::IfcImpactProtectionDeviceType::PredefinedType() const { return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect>(); }
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void Ifc4x3_rc1::IfcImpactProtectionDeviceType::setPredefinedType(const ::Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcImpactProtectionDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[546]); }
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void Ifc4x3_rc1::IfcImpactProtectionDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcImpactProtectionDeviceTypeSelect v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (v10_PredefinedType)); }
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// Function implementations for IfcInclinedReferenceSweptAreaSolid
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std::optional< bool > Ifc4x3_rc1::IfcInclinedReferenceSweptAreaSolid::FixedAxisVertical() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } bool v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcInclinedReferenceSweptAreaSolid::setFixedAxisVertical(const std::optional< bool >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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::Ifc4x3_rc1::IfcAxisLateralInclination Ifc4x3_rc1::IfcInclinedReferenceSweptAreaSolid::Inclinating() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcAxisLateralInclination>(); }
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void Ifc4x3_rc1::IfcInclinedReferenceSweptAreaSolid::setInclinating(const ::Ifc4x3_rc1::IfcAxisLateralInclination& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcInclinedReferenceSweptAreaSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[549]); }
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void Ifc4x3_rc1::IfcInclinedReferenceSweptAreaSolid::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcCurve v3_Directrix, ::Ifc4x3_rc1::IfcDistanceExpression v4_StartDistance, ::Ifc4x3_rc1::IfcDistanceExpression v5_EndDistance, std::optional< bool > v6_FixedAxisVertical, ::Ifc4x3_rc1::IfcAxisLateralInclination v7_Inclinating) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_Directrix));set_attribute_value(3, (v4_StartDistance));set_attribute_value(4, (v5_EndDistance)); if (v6_FixedAxisVertical) {set_attribute_value(5, (*v6_FixedAxisVertical)); }set_attribute_value(6, (v7_Inclinating)); }
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// Function implementations for IfcIndexedColourMap
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::Ifc4x3_rc1::IfcTessellatedFaceSet Ifc4x3_rc1::IfcIndexedColourMap::MappedTo() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcTessellatedFaceSet>(); }
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void Ifc4x3_rc1::IfcIndexedColourMap::setMappedTo(const ::Ifc4x3_rc1::IfcTessellatedFaceSet& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< double > Ifc4x3_rc1::IfcIndexedColourMap::Opacity() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcIndexedColourMap::setOpacity(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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::Ifc4x3_rc1::IfcColourRgbList Ifc4x3_rc1::IfcIndexedColourMap::Colours() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcColourRgbList>(); }
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void Ifc4x3_rc1::IfcIndexedColourMap::setColours(const ::Ifc4x3_rc1::IfcColourRgbList& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector< int > /*[1:?]*/ Ifc4x3_rc1::IfcIndexedColourMap::ColourIndex() const { std::vector< int > /*[1:?]*/ v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcIndexedColourMap::setColourIndex(const std::vector< int > /*[1:?]*/& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcIndexedColourMap::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[550]); }
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void Ifc4x3_rc1::IfcIndexedColourMap::initialize(::Ifc4x3_rc1::IfcTessellatedFaceSet v1_MappedTo, std::optional< double > v2_Opacity, ::Ifc4x3_rc1::IfcColourRgbList v3_Colours, std::vector< int > /*[1:?]*/ v4_ColourIndex) { set_attribute_value(0, (v1_MappedTo)); if (v2_Opacity) {set_attribute_value(1, (*v2_Opacity)); }set_attribute_value(2, (v3_Colours));set_attribute_value(3, (v4_ColourIndex)); }
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// Function implementations for IfcIndexedPolyCurve
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::Ifc4x3_rc1::IfcCartesianPointList Ifc4x3_rc1::IfcIndexedPolyCurve::Points() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCartesianPointList>(); }
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void Ifc4x3_rc1::IfcIndexedPolyCurve::setPoints(const ::Ifc4x3_rc1::IfcCartesianPointList& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcSegmentIndexSelect > > Ifc4x3_rc1::IfcIndexedPolyCurve::Segments() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcSegmentIndexSelect>(es); }
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void Ifc4x3_rc1::IfcIndexedPolyCurve::setSegments(const std::optional< std::vector< ::Ifc4x3_rc1::IfcSegmentIndexSelect > >& v) { if (v) {set_attribute_value(1, cast_vector<express::Base>(*v));} else {unset_attribute_value(1);} }
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std::optional< bool > Ifc4x3_rc1::IfcIndexedPolyCurve::SelfIntersect() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } bool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcIndexedPolyCurve::setSelfIntersect(const std::optional< bool >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcIndexedPolyCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[551]); }
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void Ifc4x3_rc1::IfcIndexedPolyCurve::initialize(::Ifc4x3_rc1::IfcCartesianPointList v1_Points, std::optional< std::vector< ::Ifc4x3_rc1::IfcSegmentIndexSelect > > v2_Segments, std::optional< bool > v3_SelfIntersect) { set_attribute_value(0, (v1_Points)); if (v2_Segments) {set_attribute_value(1, cast_vector<express::Base>(*v2_Segments)); } if (v3_SelfIntersect) {set_attribute_value(2, (*v3_SelfIntersect)); } }
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// Function implementations for IfcIndexedPolygonalFace
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std::vector< int > /*[3:?]*/ Ifc4x3_rc1::IfcIndexedPolygonalFace::CoordIndex() const { std::vector< int > /*[3:?]*/ v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcIndexedPolygonalFace::setCoordIndex(const std::vector< int > /*[3:?]*/& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector<::Ifc4x3_rc1::IfcPolygonalFaceSet> Ifc4x3_rc1::IfcIndexedPolygonalFace::ToFaceSet() const { return cast_vector<IfcPolygonalFaceSet>(file()->getInverse(data()->id(), IFC4X3_RC1_types[783], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcIndexedPolygonalFace::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[552]); }
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void Ifc4x3_rc1::IfcIndexedPolygonalFace::initialize(std::vector< int > /*[3:?]*/ v1_CoordIndex) { set_attribute_value(0, (v1_CoordIndex)); }
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// Function implementations for IfcIndexedPolygonalFaceWithVoids
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std::vector< std::vector< int > > Ifc4x3_rc1::IfcIndexedPolygonalFaceWithVoids::InnerCoordIndices() const { std::vector< std::vector< int > > v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcIndexedPolygonalFaceWithVoids::setInnerCoordIndices(const std::vector< std::vector< int > >& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcIndexedPolygonalFaceWithVoids::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[553]); }
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void Ifc4x3_rc1::IfcIndexedPolygonalFaceWithVoids::initialize(std::vector< int > /*[3:?]*/ v1_CoordIndex, std::vector< std::vector< int > > v2_InnerCoordIndices) { set_attribute_value(0, (v1_CoordIndex));set_attribute_value(1, (v2_InnerCoordIndices)); }
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// Function implementations for IfcIndexedTextureMap
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::Ifc4x3_rc1::IfcTessellatedFaceSet Ifc4x3_rc1::IfcIndexedTextureMap::MappedTo() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcTessellatedFaceSet>(); }
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void Ifc4x3_rc1::IfcIndexedTextureMap::setMappedTo(const ::Ifc4x3_rc1::IfcTessellatedFaceSet& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcTextureVertexList Ifc4x3_rc1::IfcIndexedTextureMap::TexCoords() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcTextureVertexList>(); }
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void Ifc4x3_rc1::IfcIndexedTextureMap::setTexCoords(const ::Ifc4x3_rc1::IfcTextureVertexList& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcIndexedTextureMap::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[554]); }
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void Ifc4x3_rc1::IfcIndexedTextureMap::initialize(std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture > v1_Maps, ::Ifc4x3_rc1::IfcTessellatedFaceSet v2_MappedTo, ::Ifc4x3_rc1::IfcTextureVertexList v3_TexCoords) { set_attribute_value(0, cast_vector<express::Base>(v1_Maps));set_attribute_value(1, (v2_MappedTo));set_attribute_value(2, (v3_TexCoords)); }
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// Function implementations for IfcIndexedTriangleTextureMap
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std::optional< std::vector< std::vector< int > > > Ifc4x3_rc1::IfcIndexedTriangleTextureMap::TexCoordIndex() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::vector< std::vector< int > > v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcIndexedTriangleTextureMap::setTexCoordIndex(const std::optional< std::vector< std::vector< int > > >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcIndexedTriangleTextureMap::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[555]); }
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void Ifc4x3_rc1::IfcIndexedTriangleTextureMap::initialize(std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture > v1_Maps, ::Ifc4x3_rc1::IfcTessellatedFaceSet v2_MappedTo, ::Ifc4x3_rc1::IfcTextureVertexList v3_TexCoords, std::optional< std::vector< std::vector< int > > > v4_TexCoordIndex) { set_attribute_value(0, cast_vector<express::Base>(v1_Maps));set_attribute_value(1, (v2_MappedTo));set_attribute_value(2, (v3_TexCoords)); if (v4_TexCoordIndex) {set_attribute_value(3, (*v4_TexCoordIndex)); } }
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// Function implementations for IfcInterceptor
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std::optional< ::Ifc4x3_rc1::IfcInterceptorTypeEnum::Value > Ifc4x3_rc1::IfcInterceptor::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcInterceptorTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcInterceptor::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcInterceptorTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcInterceptorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcInterceptor::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[559]); }
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void Ifc4x3_rc1::IfcInterceptor::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcInterceptorTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcInterceptorTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcInterceptorType
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::Ifc4x3_rc1::IfcInterceptorTypeEnum::Value Ifc4x3_rc1::IfcInterceptorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcInterceptorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcInterceptorType::setPredefinedType(const ::Ifc4x3_rc1::IfcInterceptorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcInterceptorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcInterceptorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[560]); }
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void Ifc4x3_rc1::IfcInterceptorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcInterceptorTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcInterceptorTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcIntersectionCurve
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const IfcParse::entity& Ifc4x3_rc1::IfcIntersectionCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[564]); }
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void Ifc4x3_rc1::IfcIntersectionCurve::initialize(::Ifc4x3_rc1::IfcCurve v1_Curve3D, std::vector< ::Ifc4x3_rc1::IfcPcurve > v2_AssociatedGeometry, ::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Value v3_MasterRepresentation) { set_attribute_value(0, (v1_Curve3D));set_attribute_value(1, cast_vector<express::Base>(v2_AssociatedGeometry));set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Class(),(size_t)v3_MasterRepresentation))); }
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// Function implementations for IfcInventory
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std::optional< ::Ifc4x3_rc1::IfcInventoryTypeEnum::Value > Ifc4x3_rc1::IfcInventory::PredefinedType() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcInventoryTypeEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcInventory::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcInventoryTypeEnum::Value >& v) { if (v) {set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcInventoryTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(5);} }
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::Ifc4x3_rc1::IfcActorSelect Ifc4x3_rc1::IfcInventory::Jurisdiction() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcActorSelect{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcActorSelect>(); }
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void Ifc4x3_rc1::IfcInventory::setJurisdiction(const ::Ifc4x3_rc1::IfcActorSelect& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcPerson > > Ifc4x3_rc1::IfcInventory::ResponsiblePersons() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcPerson>(es); }
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void Ifc4x3_rc1::IfcInventory::setResponsiblePersons(const std::optional< std::vector< ::Ifc4x3_rc1::IfcPerson > >& v) { if (v) {set_attribute_value(7, cast_vector<express::Base>(*v));} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcInventory::LastUpdateDate() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcInventory::setLastUpdateDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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::Ifc4x3_rc1::IfcCostValue Ifc4x3_rc1::IfcInventory::CurrentValue() const { if(get_attribute_value(9).isNull()) { return ::Ifc4x3_rc1::IfcCostValue{}; } return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcCostValue>(); }
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void Ifc4x3_rc1::IfcInventory::setCurrentValue(const ::Ifc4x3_rc1::IfcCostValue& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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::Ifc4x3_rc1::IfcCostValue Ifc4x3_rc1::IfcInventory::OriginalValue() const { if(get_attribute_value(10).isNull()) { return ::Ifc4x3_rc1::IfcCostValue{}; } return ((express::Base)(get_attribute_value(10))).as<::Ifc4x3_rc1::IfcCostValue>(); }
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void Ifc4x3_rc1::IfcInventory::setOriginalValue(const ::Ifc4x3_rc1::IfcCostValue& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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const IfcParse::entity& Ifc4x3_rc1::IfcInventory::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[565]); }
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void Ifc4x3_rc1::IfcInventory::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< ::Ifc4x3_rc1::IfcInventoryTypeEnum::Value > v6_PredefinedType, ::Ifc4x3_rc1::IfcActorSelect v7_Jurisdiction, std::optional< std::vector< ::Ifc4x3_rc1::IfcPerson > > v8_ResponsiblePersons, std::optional< std::string > v9_LastUpdateDate, ::Ifc4x3_rc1::IfcCostValue v10_CurrentValue, ::Ifc4x3_rc1::IfcCostValue v11_OriginalValue) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_PredefinedType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcInventoryTypeEnum::Class(),(size_t)*v6_PredefinedType))); }set_attribute_value(6, (v7_Jurisdiction)); if (v8_ResponsiblePersons) {set_attribute_value(7, cast_vector<express::Base>(*v8_ResponsiblePersons)); } if (v9_LastUpdateDate) {set_attribute_value(8, (*v9_LastUpdateDate)); }set_attribute_value(9, (v10_CurrentValue));set_attribute_value(10, (v11_OriginalValue)); }
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// Function implementations for IfcIrregularTimeSeries
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std::vector< ::Ifc4x3_rc1::IfcIrregularTimeSeriesValue > Ifc4x3_rc1::IfcIrregularTimeSeries::Values() const { std::vector<express::Base> es = get_attribute_value(8); return cast_vector<::Ifc4x3_rc1::IfcIrregularTimeSeriesValue>(es); }
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void Ifc4x3_rc1::IfcIrregularTimeSeries::setValues(const std::vector< ::Ifc4x3_rc1::IfcIrregularTimeSeriesValue >& v) { set_attribute_value(8, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcIrregularTimeSeries::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[568]); }
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void Ifc4x3_rc1::IfcIrregularTimeSeries::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::string v3_StartTime, std::string v4_EndTime, ::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Value v5_TimeSeriesDataType, ::Ifc4x3_rc1::IfcDataOriginEnum::Value v6_DataOrigin, std::optional< std::string > v7_UserDefinedDataOrigin, ::Ifc4x3_rc1::IfcUnit v8_Unit, std::vector< ::Ifc4x3_rc1::IfcIrregularTimeSeriesValue > v9_Values) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_StartTime));set_attribute_value(3, (v4_EndTime));set_attribute_value(4, (EnumerationReference(&::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Class(),(size_t)v5_TimeSeriesDataType)));set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)v6_DataOrigin))); if (v7_UserDefinedDataOrigin) {set_attribute_value(6, (*v7_UserDefinedDataOrigin)); }set_attribute_value(7, (v8_Unit));set_attribute_value(8, cast_vector<express::Base>(v9_Values)); }
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// Function implementations for IfcIrregularTimeSeriesValue
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std::string Ifc4x3_rc1::IfcIrregularTimeSeriesValue::TimeStamp() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcIrregularTimeSeriesValue::setTimeStamp(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcValue > Ifc4x3_rc1::IfcIrregularTimeSeriesValue::ListValues() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcValue>(es); }
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void Ifc4x3_rc1::IfcIrregularTimeSeriesValue::setListValues(const std::vector< ::Ifc4x3_rc1::IfcValue >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcIrregularTimeSeriesValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[569]); }
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void Ifc4x3_rc1::IfcIrregularTimeSeriesValue::initialize(std::string v1_TimeStamp, std::vector< ::Ifc4x3_rc1::IfcValue > v2_ListValues) { set_attribute_value(0, (v1_TimeStamp));set_attribute_value(1, cast_vector<express::Base>(v2_ListValues)); }
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// Function implementations for IfcJunctionBox
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std::optional< ::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value > Ifc4x3_rc1::IfcJunctionBox::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcJunctionBox::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcJunctionBox::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[572]); }
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void Ifc4x3_rc1::IfcJunctionBox::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcJunctionBoxType
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::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value Ifc4x3_rc1::IfcJunctionBoxType::PredefinedType() const { return ::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcJunctionBoxType::setPredefinedType(const ::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcJunctionBoxType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[573]); }
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void Ifc4x3_rc1::IfcJunctionBoxType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcJunctionBoxTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcKerb
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bool Ifc4x3_rc1::IfcKerb::Mountable() const { bool v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcKerb::setMountable(const bool& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcKerb::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[575]); }
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void Ifc4x3_rc1::IfcKerb::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, bool v9_Mountable) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); }set_attribute_value(8, (v9_Mountable)); }
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// Function implementations for IfcKerbType
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bool Ifc4x3_rc1::IfcKerbType::Mountable() const { bool v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcKerbType::setMountable(const bool& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcKerbType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[576]); }
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void Ifc4x3_rc1::IfcKerbType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, bool v10_Mountable) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (v10_Mountable)); }
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// Function implementations for IfcLShapeProfileDef
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double Ifc4x3_rc1::IfcLShapeProfileDef::Depth() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcLShapeProfileDef::setDepth(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< double > Ifc4x3_rc1::IfcLShapeProfileDef::Width() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcLShapeProfileDef::setWidth(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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double Ifc4x3_rc1::IfcLShapeProfileDef::Thickness() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcLShapeProfileDef::setThickness(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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std::optional< double > Ifc4x3_rc1::IfcLShapeProfileDef::FilletRadius() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcLShapeProfileDef::setFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< double > Ifc4x3_rc1::IfcLShapeProfileDef::EdgeRadius() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcLShapeProfileDef::setEdgeRadius(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< double > Ifc4x3_rc1::IfcLShapeProfileDef::LegSlope() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcLShapeProfileDef::setLegSlope(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcLShapeProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[629]); }
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void Ifc4x3_rc1::IfcLShapeProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_Depth, std::optional< double > v5_Width, double v6_Thickness, std::optional< double > v7_FilletRadius, std::optional< double > v8_EdgeRadius, std::optional< double > v9_LegSlope) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_Depth)); if (v5_Width) {set_attribute_value(4, (*v5_Width)); }set_attribute_value(5, (v6_Thickness)); if (v7_FilletRadius) {set_attribute_value(6, (*v7_FilletRadius)); } if (v8_EdgeRadius) {set_attribute_value(7, (*v8_EdgeRadius)); } if (v9_LegSlope) {set_attribute_value(8, (*v9_LegSlope)); } }
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// Function implementations for IfcLaborResource
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std::optional< ::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value > Ifc4x3_rc1::IfcLaborResource::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcLaborResourceTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcLaborResource::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcLaborResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[580]); }
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void Ifc4x3_rc1::IfcLaborResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, ::Ifc4x3_rc1::IfcResourceTime v8_Usage, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v9_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v10_BaseQuantity, std::optional< ::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value > v11_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); }set_attribute_value(7, (v8_Usage)); if (v9_BaseCosts) {set_attribute_value(8, cast_vector<express::Base>(*v9_BaseCosts)); }set_attribute_value(9, (v10_BaseQuantity)); if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Class(),(size_t)*v11_PredefinedType))); } }
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// Function implementations for IfcLaborResourceType
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::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value Ifc4x3_rc1::IfcLaborResourceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcLaborResourceTypeEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcLaborResourceType::setPredefinedType(const ::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLaborResourceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[581]); }
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void Ifc4x3_rc1::IfcLaborResourceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ResourceType, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v10_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v11_BaseQuantity, ::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ResourceType) {set_attribute_value(8, (*v9_ResourceType)); } if (v10_BaseCosts) {set_attribute_value(9, cast_vector<express::Base>(*v10_BaseCosts)); }set_attribute_value(10, (v11_BaseQuantity));set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcLaborResourceTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcLagTime
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::Ifc4x3_rc1::IfcTimeOrRatioSelect Ifc4x3_rc1::IfcLagTime::LagValue() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcTimeOrRatioSelect>(); }
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void Ifc4x3_rc1::IfcLagTime::setLagValue(const ::Ifc4x3_rc1::IfcTimeOrRatioSelect& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcTaskDurationEnum::Value Ifc4x3_rc1::IfcLagTime::DurationType() const { return ::Ifc4x3_rc1::IfcTaskDurationEnum::FromString(get_attribute_value(4)); }
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void Ifc4x3_rc1::IfcLagTime::setDurationType(const ::Ifc4x3_rc1::IfcTaskDurationEnum::Value& v) { set_attribute_value(4, EnumerationReference(&::Ifc4x3_rc1::IfcTaskDurationEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLagTime::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[583]); }
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void Ifc4x3_rc1::IfcLagTime::initialize(std::optional< std::string > v1_Name, std::optional< ::Ifc4x3_rc1::IfcDataOriginEnum::Value > v2_DataOrigin, std::optional< std::string > v3_UserDefinedDataOrigin, ::Ifc4x3_rc1::IfcTimeOrRatioSelect v4_LagValue, ::Ifc4x3_rc1::IfcTaskDurationEnum::Value v5_DurationType) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DataOrigin) {set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)*v2_DataOrigin))); } if (v3_UserDefinedDataOrigin) {set_attribute_value(2, (*v3_UserDefinedDataOrigin)); }set_attribute_value(3, (v4_LagValue));set_attribute_value(4, (EnumerationReference(&::Ifc4x3_rc1::IfcTaskDurationEnum::Class(),(size_t)v5_DurationType))); }
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// Function implementations for IfcLamp
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std::optional< ::Ifc4x3_rc1::IfcLampTypeEnum::Value > Ifc4x3_rc1::IfcLamp::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcLampTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcLamp::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcLampTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcLampTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcLamp::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[584]); }
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void Ifc4x3_rc1::IfcLamp::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcLampTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcLampTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcLampType
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::Ifc4x3_rc1::IfcLampTypeEnum::Value Ifc4x3_rc1::IfcLampType::PredefinedType() const { return ::Ifc4x3_rc1::IfcLampTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcLampType::setPredefinedType(const ::Ifc4x3_rc1::IfcLampTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcLampTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLampType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[585]); }
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void Ifc4x3_rc1::IfcLampType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcLampTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcLampTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcLibraryInformation
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std::string Ifc4x3_rc1::IfcLibraryInformation::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcLibraryInformation::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcLibraryInformation::Version() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcLibraryInformation::setVersion(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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::Ifc4x3_rc1::IfcActorSelect Ifc4x3_rc1::IfcLibraryInformation::Publisher() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcActorSelect{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcActorSelect>(); }
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void Ifc4x3_rc1::IfcLibraryInformation::setPublisher(const ::Ifc4x3_rc1::IfcActorSelect& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::optional< std::string > Ifc4x3_rc1::IfcLibraryInformation::VersionDate() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcLibraryInformation::setVersionDate(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcLibraryInformation::Location() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcLibraryInformation::setLocation(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcLibraryInformation::Description() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcLibraryInformation::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::vector<::Ifc4x3_rc1::IfcRelAssociatesLibrary> Ifc4x3_rc1::IfcLibraryInformation::LibraryInfoForObjects() const { return cast_vector<IfcRelAssociatesLibrary>(file()->getInverse(data()->id(), IFC4X3_RC1_types[924], 5)); }
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std::vector<::Ifc4x3_rc1::IfcLibraryReference> Ifc4x3_rc1::IfcLibraryInformation::HasLibraryReferences() const { return cast_vector<IfcLibraryReference>(file()->getInverse(data()->id(), IFC4X3_RC1_types[592], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLibraryInformation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[591]); }
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void Ifc4x3_rc1::IfcLibraryInformation::initialize(std::string v1_Name, std::optional< std::string > v2_Version, ::Ifc4x3_rc1::IfcActorSelect v3_Publisher, std::optional< std::string > v4_VersionDate, std::optional< std::string > v5_Location, std::optional< std::string > v6_Description) { set_attribute_value(0, (v1_Name)); if (v2_Version) {set_attribute_value(1, (*v2_Version)); }set_attribute_value(2, (v3_Publisher)); if (v4_VersionDate) {set_attribute_value(3, (*v4_VersionDate)); } if (v5_Location) {set_attribute_value(4, (*v5_Location)); } if (v6_Description) {set_attribute_value(5, (*v6_Description)); } }
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// Function implementations for IfcLibraryReference
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std::optional< std::string > Ifc4x3_rc1::IfcLibraryReference::Description() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcLibraryReference::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcLibraryReference::Language() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcLibraryReference::setLanguage(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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::Ifc4x3_rc1::IfcLibraryInformation Ifc4x3_rc1::IfcLibraryReference::ReferencedLibrary() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcLibraryInformation{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcLibraryInformation>(); }
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void Ifc4x3_rc1::IfcLibraryReference::setReferencedLibrary(const ::Ifc4x3_rc1::IfcLibraryInformation& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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std::vector<::Ifc4x3_rc1::IfcRelAssociatesLibrary> Ifc4x3_rc1::IfcLibraryReference::LibraryRefForObjects() const { return cast_vector<IfcRelAssociatesLibrary>(file()->getInverse(data()->id(), IFC4X3_RC1_types[924], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLibraryReference::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[592]); }
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void Ifc4x3_rc1::IfcLibraryReference::initialize(std::optional< std::string > v1_Location, std::optional< std::string > v2_Identification, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_Language, ::Ifc4x3_rc1::IfcLibraryInformation v6_ReferencedLibrary) { if (v1_Location) {set_attribute_value(0, (*v1_Location)); } if (v2_Identification) {set_attribute_value(1, (*v2_Identification)); } if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_Language) {set_attribute_value(4, (*v5_Language)); }set_attribute_value(5, (v6_ReferencedLibrary)); }
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// Function implementations for IfcLightDistributionData
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double Ifc4x3_rc1::IfcLightDistributionData::MainPlaneAngle() const { double v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcLightDistributionData::setMainPlaneAngle(const double& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< double > /*[1:?]*/ Ifc4x3_rc1::IfcLightDistributionData::SecondaryPlaneAngle() const { std::vector< double > /*[1:?]*/ v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcLightDistributionData::setSecondaryPlaneAngle(const std::vector< double > /*[1:?]*/& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::vector< double > /*[1:?]*/ Ifc4x3_rc1::IfcLightDistributionData::LuminousIntensity() const { std::vector< double > /*[1:?]*/ v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcLightDistributionData::setLuminousIntensity(const std::vector< double > /*[1:?]*/& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLightDistributionData::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[595]); }
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void Ifc4x3_rc1::IfcLightDistributionData::initialize(double v1_MainPlaneAngle, std::vector< double > /*[1:?]*/ v2_SecondaryPlaneAngle, std::vector< double > /*[1:?]*/ v3_LuminousIntensity) { set_attribute_value(0, (v1_MainPlaneAngle));set_attribute_value(1, (v2_SecondaryPlaneAngle));set_attribute_value(2, (v3_LuminousIntensity)); }
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// Function implementations for IfcLightFixture
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std::optional< ::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value > Ifc4x3_rc1::IfcLightFixture::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcLightFixtureTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcLightFixture::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcLightFixture::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[598]); }
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void Ifc4x3_rc1::IfcLightFixture::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcLightFixtureType
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::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value Ifc4x3_rc1::IfcLightFixtureType::PredefinedType() const { return ::Ifc4x3_rc1::IfcLightFixtureTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcLightFixtureType::setPredefinedType(const ::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLightFixtureType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[599]); }
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void Ifc4x3_rc1::IfcLightFixtureType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcLightFixtureTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcLightIntensityDistribution
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::Ifc4x3_rc1::IfcLightDistributionCurveEnum::Value Ifc4x3_rc1::IfcLightIntensityDistribution::LightDistributionCurve() const { return ::Ifc4x3_rc1::IfcLightDistributionCurveEnum::FromString(get_attribute_value(0)); }
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void Ifc4x3_rc1::IfcLightIntensityDistribution::setLightDistributionCurve(const ::Ifc4x3_rc1::IfcLightDistributionCurveEnum::Value& v) { set_attribute_value(0, EnumerationReference(&::Ifc4x3_rc1::IfcLightDistributionCurveEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcLightDistributionData > Ifc4x3_rc1::IfcLightIntensityDistribution::DistributionData() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcLightDistributionData>(es); }
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void Ifc4x3_rc1::IfcLightIntensityDistribution::setDistributionData(const std::vector< ::Ifc4x3_rc1::IfcLightDistributionData >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLightIntensityDistribution::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[601]); }
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void Ifc4x3_rc1::IfcLightIntensityDistribution::initialize(::Ifc4x3_rc1::IfcLightDistributionCurveEnum::Value v1_LightDistributionCurve, std::vector< ::Ifc4x3_rc1::IfcLightDistributionData > v2_DistributionData) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcLightDistributionCurveEnum::Class(),(size_t)v1_LightDistributionCurve)));set_attribute_value(1, cast_vector<express::Base>(v2_DistributionData)); }
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// Function implementations for IfcLightSource
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std::optional< std::string > Ifc4x3_rc1::IfcLightSource::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcLightSource::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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::Ifc4x3_rc1::IfcColourRgb Ifc4x3_rc1::IfcLightSource::LightColour() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcColourRgb>(); }
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void Ifc4x3_rc1::IfcLightSource::setLightColour(const ::Ifc4x3_rc1::IfcColourRgb& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< double > Ifc4x3_rc1::IfcLightSource::AmbientIntensity() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcLightSource::setAmbientIntensity(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcLightSource::Intensity() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcLightSource::setIntensity(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcLightSource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[602]); }
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void Ifc4x3_rc1::IfcLightSource::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcColourRgb v2_LightColour, std::optional< double > v3_AmbientIntensity, std::optional< double > v4_Intensity) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_LightColour)); if (v3_AmbientIntensity) {set_attribute_value(2, (*v3_AmbientIntensity)); } if (v4_Intensity) {set_attribute_value(3, (*v4_Intensity)); } }
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// Function implementations for IfcLightSourceAmbient
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const IfcParse::entity& Ifc4x3_rc1::IfcLightSourceAmbient::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[603]); }
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void Ifc4x3_rc1::IfcLightSourceAmbient::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcColourRgb v2_LightColour, std::optional< double > v3_AmbientIntensity, std::optional< double > v4_Intensity) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_LightColour)); if (v3_AmbientIntensity) {set_attribute_value(2, (*v3_AmbientIntensity)); } if (v4_Intensity) {set_attribute_value(3, (*v4_Intensity)); } }
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// Function implementations for IfcLightSourceDirectional
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcLightSourceDirectional::Orientation() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcLightSourceDirectional::setOrientation(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLightSourceDirectional::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[604]); }
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void Ifc4x3_rc1::IfcLightSourceDirectional::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcColourRgb v2_LightColour, std::optional< double > v3_AmbientIntensity, std::optional< double > v4_Intensity, ::Ifc4x3_rc1::IfcDirection v5_Orientation) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_LightColour)); if (v3_AmbientIntensity) {set_attribute_value(2, (*v3_AmbientIntensity)); } if (v4_Intensity) {set_attribute_value(3, (*v4_Intensity)); }set_attribute_value(4, (v5_Orientation)); }
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// Function implementations for IfcLightSourceGoniometric
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcLightSourceGoniometric::Position() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcLightSourceGoniometric::setPosition(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcColourRgb Ifc4x3_rc1::IfcLightSourceGoniometric::ColourAppearance() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcColourRgb{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcColourRgb>(); }
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void Ifc4x3_rc1::IfcLightSourceGoniometric::setColourAppearance(const ::Ifc4x3_rc1::IfcColourRgb& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcLightSourceGoniometric::ColourTemperature() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcLightSourceGoniometric::setColourTemperature(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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double Ifc4x3_rc1::IfcLightSourceGoniometric::LuminousFlux() const { double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcLightSourceGoniometric::setLuminousFlux(const double& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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::Ifc4x3_rc1::IfcLightEmissionSourceEnum::Value Ifc4x3_rc1::IfcLightSourceGoniometric::LightEmissionSource() const { return ::Ifc4x3_rc1::IfcLightEmissionSourceEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcLightSourceGoniometric::setLightEmissionSource(const ::Ifc4x3_rc1::IfcLightEmissionSourceEnum::Value& v) { set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcLightEmissionSourceEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(8); }
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::Ifc4x3_rc1::IfcLightDistributionDataSourceSelect Ifc4x3_rc1::IfcLightSourceGoniometric::LightDistributionDataSource() const { return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcLightDistributionDataSourceSelect>(); }
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void Ifc4x3_rc1::IfcLightSourceGoniometric::setLightDistributionDataSource(const ::Ifc4x3_rc1::IfcLightDistributionDataSourceSelect& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLightSourceGoniometric::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[605]); }
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void Ifc4x3_rc1::IfcLightSourceGoniometric::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcColourRgb v2_LightColour, std::optional< double > v3_AmbientIntensity, std::optional< double > v4_Intensity, ::Ifc4x3_rc1::IfcAxis2Placement3D v5_Position, ::Ifc4x3_rc1::IfcColourRgb v6_ColourAppearance, double v7_ColourTemperature, double v8_LuminousFlux, ::Ifc4x3_rc1::IfcLightEmissionSourceEnum::Value v9_LightEmissionSource, ::Ifc4x3_rc1::IfcLightDistributionDataSourceSelect v10_LightDistributionDataSource) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_LightColour)); if (v3_AmbientIntensity) {set_attribute_value(2, (*v3_AmbientIntensity)); } if (v4_Intensity) {set_attribute_value(3, (*v4_Intensity)); }set_attribute_value(4, (v5_Position));set_attribute_value(5, (v6_ColourAppearance));set_attribute_value(6, (v7_ColourTemperature));set_attribute_value(7, (v8_LuminousFlux));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcLightEmissionSourceEnum::Class(),(size_t)v9_LightEmissionSource)));set_attribute_value(9, (v10_LightDistributionDataSource)); }
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// Function implementations for IfcLightSourcePositional
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::Ifc4x3_rc1::IfcCartesianPoint Ifc4x3_rc1::IfcLightSourcePositional::Position() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcCartesianPoint>(); }
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void Ifc4x3_rc1::IfcLightSourcePositional::setPosition(const ::Ifc4x3_rc1::IfcCartesianPoint& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcLightSourcePositional::Radius() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcLightSourcePositional::setRadius(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcLightSourcePositional::ConstantAttenuation() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcLightSourcePositional::setConstantAttenuation(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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double Ifc4x3_rc1::IfcLightSourcePositional::DistanceAttenuation() const { double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcLightSourcePositional::setDistanceAttenuation(const double& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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double Ifc4x3_rc1::IfcLightSourcePositional::QuadricAttenuation() const { double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcLightSourcePositional::setQuadricAttenuation(const double& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLightSourcePositional::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[606]); }
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void Ifc4x3_rc1::IfcLightSourcePositional::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcColourRgb v2_LightColour, std::optional< double > v3_AmbientIntensity, std::optional< double > v4_Intensity, ::Ifc4x3_rc1::IfcCartesianPoint v5_Position, double v6_Radius, double v7_ConstantAttenuation, double v8_DistanceAttenuation, double v9_QuadricAttenuation) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_LightColour)); if (v3_AmbientIntensity) {set_attribute_value(2, (*v3_AmbientIntensity)); } if (v4_Intensity) {set_attribute_value(3, (*v4_Intensity)); }set_attribute_value(4, (v5_Position));set_attribute_value(5, (v6_Radius));set_attribute_value(6, (v7_ConstantAttenuation));set_attribute_value(7, (v8_DistanceAttenuation));set_attribute_value(8, (v9_QuadricAttenuation)); }
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// Function implementations for IfcLightSourceSpot
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcLightSourceSpot::Orientation() const { return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcLightSourceSpot::setOrientation(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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std::optional< double > Ifc4x3_rc1::IfcLightSourceSpot::ConcentrationExponent() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcLightSourceSpot::setConcentrationExponent(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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double Ifc4x3_rc1::IfcLightSourceSpot::SpreadAngle() const { double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcLightSourceSpot::setSpreadAngle(const double& v) { set_attribute_value(11, v);if constexpr (false)unset_attribute_value(11); }
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double Ifc4x3_rc1::IfcLightSourceSpot::BeamWidthAngle() const { double v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcLightSourceSpot::setBeamWidthAngle(const double& v) { set_attribute_value(12, v);if constexpr (false)unset_attribute_value(12); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLightSourceSpot::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[607]); }
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void Ifc4x3_rc1::IfcLightSourceSpot::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcColourRgb v2_LightColour, std::optional< double > v3_AmbientIntensity, std::optional< double > v4_Intensity, ::Ifc4x3_rc1::IfcCartesianPoint v5_Position, double v6_Radius, double v7_ConstantAttenuation, double v8_DistanceAttenuation, double v9_QuadricAttenuation, ::Ifc4x3_rc1::IfcDirection v10_Orientation, std::optional< double > v11_ConcentrationExponent, double v12_SpreadAngle, double v13_BeamWidthAngle) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_LightColour)); if (v3_AmbientIntensity) {set_attribute_value(2, (*v3_AmbientIntensity)); } if (v4_Intensity) {set_attribute_value(3, (*v4_Intensity)); }set_attribute_value(4, (v5_Position));set_attribute_value(5, (v6_Radius));set_attribute_value(6, (v7_ConstantAttenuation));set_attribute_value(7, (v8_DistanceAttenuation));set_attribute_value(8, (v9_QuadricAttenuation));set_attribute_value(9, (v10_Orientation)); if (v11_ConcentrationExponent) {set_attribute_value(10, (*v11_ConcentrationExponent)); }set_attribute_value(11, (v12_SpreadAngle));set_attribute_value(12, (v13_BeamWidthAngle)); }
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// Function implementations for IfcLine
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::Ifc4x3_rc1::IfcCartesianPoint Ifc4x3_rc1::IfcLine::Pnt() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCartesianPoint>(); }
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void Ifc4x3_rc1::IfcLine::setPnt(const ::Ifc4x3_rc1::IfcCartesianPoint& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcVector Ifc4x3_rc1::IfcLine::Dir() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcVector>(); }
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void Ifc4x3_rc1::IfcLine::setDir(const ::Ifc4x3_rc1::IfcVector& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLine::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[608]); }
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void Ifc4x3_rc1::IfcLine::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_Pnt, ::Ifc4x3_rc1::IfcVector v2_Dir) { set_attribute_value(0, (v1_Pnt));set_attribute_value(1, (v2_Dir)); }
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// Function implementations for IfcLineSegment2D
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const IfcParse::entity& Ifc4x3_rc1::IfcLineSegment2D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[620]); }
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void Ifc4x3_rc1::IfcLineSegment2D::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_StartPoint, double v2_StartDirection, double v3_SegmentLength) { set_attribute_value(0, (v1_StartPoint));set_attribute_value(1, (v2_StartDirection));set_attribute_value(2, (v3_SegmentLength)); }
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// Function implementations for IfcLinearAxisWithInclination
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcLinearAxisWithInclination::Directrix() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcLinearAxisWithInclination::setDirectrix(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcAxisLateralInclination Ifc4x3_rc1::IfcLinearAxisWithInclination::Inclinating() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcAxisLateralInclination>(); }
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void Ifc4x3_rc1::IfcLinearAxisWithInclination::setInclinating(const ::Ifc4x3_rc1::IfcAxisLateralInclination& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLinearAxisWithInclination::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[610]); }
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void Ifc4x3_rc1::IfcLinearAxisWithInclination::initialize(::Ifc4x3_rc1::IfcCurve v1_Directrix, ::Ifc4x3_rc1::IfcAxisLateralInclination v2_Inclinating) { set_attribute_value(0, (v1_Directrix));set_attribute_value(1, (v2_Inclinating)); }
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// Function implementations for IfcLinearPlacement
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcLinearPlacement::PlacementMeasuredAlong() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcLinearPlacement::setPlacementMeasuredAlong(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcDistanceExpression Ifc4x3_rc1::IfcLinearPlacement::Distance() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcDistanceExpression>(); }
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void Ifc4x3_rc1::IfcLinearPlacement::setDistance(const ::Ifc4x3_rc1::IfcDistanceExpression& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcOrientationExpression Ifc4x3_rc1::IfcLinearPlacement::Orientation() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcOrientationExpression{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcOrientationExpression>(); }
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void Ifc4x3_rc1::IfcLinearPlacement::setOrientation(const ::Ifc4x3_rc1::IfcOrientationExpression& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcLinearPlacement::CartesianPosition() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcAxis2Placement3D{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcLinearPlacement::setCartesianPosition(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLinearPlacement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[613]); }
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void Ifc4x3_rc1::IfcLinearPlacement::initialize(::Ifc4x3_rc1::IfcObjectPlacement v1_PlacementRelTo, ::Ifc4x3_rc1::IfcCurve v2_PlacementMeasuredAlong, ::Ifc4x3_rc1::IfcDistanceExpression v3_Distance, ::Ifc4x3_rc1::IfcOrientationExpression v4_Orientation, ::Ifc4x3_rc1::IfcAxis2Placement3D v5_CartesianPosition) { set_attribute_value(0, (v1_PlacementRelTo));set_attribute_value(1, (v2_PlacementMeasuredAlong));set_attribute_value(2, (v3_Distance));set_attribute_value(3, (v4_Orientation));set_attribute_value(4, (v5_CartesianPosition)); }
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// Function implementations for IfcLinearPlacementWithInclination
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::Ifc4x3_rc1::IfcAxisLateralInclination Ifc4x3_rc1::IfcLinearPlacementWithInclination::Inclinating() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcAxisLateralInclination>(); }
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void Ifc4x3_rc1::IfcLinearPlacementWithInclination::setInclinating(const ::Ifc4x3_rc1::IfcAxisLateralInclination& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLinearPlacementWithInclination::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[614]); }
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void Ifc4x3_rc1::IfcLinearPlacementWithInclination::initialize(::Ifc4x3_rc1::IfcObjectPlacement v1_PlacementRelTo, ::Ifc4x3_rc1::IfcCurve v2_PlacementMeasuredAlong, ::Ifc4x3_rc1::IfcDistanceExpression v3_Distance, ::Ifc4x3_rc1::IfcOrientationExpression v4_Orientation, ::Ifc4x3_rc1::IfcAxis2Placement3D v5_CartesianPosition, ::Ifc4x3_rc1::IfcAxisLateralInclination v6_Inclinating) { set_attribute_value(0, (v1_PlacementRelTo));set_attribute_value(1, (v2_PlacementMeasuredAlong));set_attribute_value(2, (v3_Distance));set_attribute_value(3, (v4_Orientation));set_attribute_value(4, (v5_CartesianPosition));set_attribute_value(5, (v6_Inclinating)); }
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// Function implementations for IfcLinearPositioningElement
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcLinearPositioningElement::Axis() const { return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcLinearPositioningElement::setAxis(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLinearPositioningElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[615]); }
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void Ifc4x3_rc1::IfcLinearPositioningElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcCurve v8_Axis) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_Axis)); }
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// Function implementations for IfcLinearSpanPlacement
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double Ifc4x3_rc1::IfcLinearSpanPlacement::Span() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcLinearSpanPlacement::setSpan(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLinearSpanPlacement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[616]); }
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void Ifc4x3_rc1::IfcLinearSpanPlacement::initialize(::Ifc4x3_rc1::IfcObjectPlacement v1_PlacementRelTo, ::Ifc4x3_rc1::IfcCurve v2_PlacementMeasuredAlong, ::Ifc4x3_rc1::IfcDistanceExpression v3_Distance, ::Ifc4x3_rc1::IfcOrientationExpression v4_Orientation, ::Ifc4x3_rc1::IfcAxis2Placement3D v5_CartesianPosition, double v6_Span) { set_attribute_value(0, (v1_PlacementRelTo));set_attribute_value(1, (v2_PlacementMeasuredAlong));set_attribute_value(2, (v3_Distance));set_attribute_value(3, (v4_Orientation));set_attribute_value(4, (v5_CartesianPosition));set_attribute_value(5, (v6_Span)); }
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// Function implementations for IfcLiquidTerminal
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std::optional< ::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value > Ifc4x3_rc1::IfcLiquidTerminal::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcLiquidTerminal::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcLiquidTerminal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[621]); }
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void Ifc4x3_rc1::IfcLiquidTerminal::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcLiquidTerminalType
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::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value Ifc4x3_rc1::IfcLiquidTerminalType::PredefinedType() const { return ::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcLiquidTerminalType::setPredefinedType(const ::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLiquidTerminalType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[622]); }
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void Ifc4x3_rc1::IfcLiquidTerminalType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcLiquidTerminalTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcLocalPlacement
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::Ifc4x3_rc1::IfcAxis2Placement Ifc4x3_rc1::IfcLocalPlacement::RelativePlacement() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcAxis2Placement>(); }
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void Ifc4x3_rc1::IfcLocalPlacement::setRelativePlacement(const ::Ifc4x3_rc1::IfcAxis2Placement& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcLocalPlacement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[625]); }
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void Ifc4x3_rc1::IfcLocalPlacement::initialize(::Ifc4x3_rc1::IfcObjectPlacement v1_PlacementRelTo, ::Ifc4x3_rc1::IfcAxis2Placement v2_RelativePlacement) { set_attribute_value(0, (v1_PlacementRelTo));set_attribute_value(1, (v2_RelativePlacement)); }
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// Function implementations for IfcLoop
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const IfcParse::entity& Ifc4x3_rc1::IfcLoop::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[628]); }
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void Ifc4x3_rc1::IfcLoop::initialize() { }
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// Function implementations for IfcManifoldSolidBrep
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::Ifc4x3_rc1::IfcClosedShell Ifc4x3_rc1::IfcManifoldSolidBrep::Outer() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcClosedShell>(); }
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void Ifc4x3_rc1::IfcManifoldSolidBrep::setOuter(const ::Ifc4x3_rc1::IfcClosedShell& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcManifoldSolidBrep::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[635]); }
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void Ifc4x3_rc1::IfcManifoldSolidBrep::initialize(::Ifc4x3_rc1::IfcClosedShell v1_Outer) { set_attribute_value(0, (v1_Outer)); }
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// Function implementations for IfcMapConversion
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double Ifc4x3_rc1::IfcMapConversion::Eastings() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcMapConversion::setEastings(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcMapConversion::Northings() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcMapConversion::setNorthings(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcMapConversion::OrthogonalHeight() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcMapConversion::setOrthogonalHeight(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::optional< double > Ifc4x3_rc1::IfcMapConversion::XAxisAbscissa() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcMapConversion::setXAxisAbscissa(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< double > Ifc4x3_rc1::IfcMapConversion::XAxisOrdinate() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcMapConversion::setXAxisOrdinate(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< double > Ifc4x3_rc1::IfcMapConversion::Scale() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcMapConversion::setScale(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMapConversion::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[636]); }
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void Ifc4x3_rc1::IfcMapConversion::initialize(::Ifc4x3_rc1::IfcCoordinateReferenceSystemSelect v1_SourceCRS, ::Ifc4x3_rc1::IfcCoordinateReferenceSystem v2_TargetCRS, double v3_Eastings, double v4_Northings, double v5_OrthogonalHeight, std::optional< double > v6_XAxisAbscissa, std::optional< double > v7_XAxisOrdinate, std::optional< double > v8_Scale) { set_attribute_value(0, (v1_SourceCRS));set_attribute_value(1, (v2_TargetCRS));set_attribute_value(2, (v3_Eastings));set_attribute_value(3, (v4_Northings));set_attribute_value(4, (v5_OrthogonalHeight)); if (v6_XAxisAbscissa) {set_attribute_value(5, (*v6_XAxisAbscissa)); } if (v7_XAxisOrdinate) {set_attribute_value(6, (*v7_XAxisOrdinate)); } if (v8_Scale) {set_attribute_value(7, (*v8_Scale)); } }
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// Function implementations for IfcMappedItem
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::Ifc4x3_rc1::IfcRepresentationMap Ifc4x3_rc1::IfcMappedItem::MappingSource() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcRepresentationMap>(); }
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void Ifc4x3_rc1::IfcMappedItem::setMappingSource(const ::Ifc4x3_rc1::IfcRepresentationMap& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcCartesianTransformationOperator Ifc4x3_rc1::IfcMappedItem::MappingTarget() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcCartesianTransformationOperator>(); }
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void Ifc4x3_rc1::IfcMappedItem::setMappingTarget(const ::Ifc4x3_rc1::IfcCartesianTransformationOperator& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMappedItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[637]); }
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void Ifc4x3_rc1::IfcMappedItem::initialize(::Ifc4x3_rc1::IfcRepresentationMap v1_MappingSource, ::Ifc4x3_rc1::IfcCartesianTransformationOperator v2_MappingTarget) { set_attribute_value(0, (v1_MappingSource));set_attribute_value(1, (v2_MappingTarget)); }
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// Function implementations for IfcMarineFacility
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::Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Value Ifc4x3_rc1::IfcMarineFacility::PredefinedType() const { return ::Ifc4x3_rc1::IfcMarineFacilityTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcMarineFacility::setPredefinedType(const ::Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMarineFacility::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[638]); }
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void Ifc4x3_rc1::IfcMarineFacility::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType, ::Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcMarineFacilityTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcMaterial
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std::string Ifc4x3_rc1::IfcMaterial::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcMaterial::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterial::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcMaterial::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterial::Category() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcMaterial::setCategory(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::vector<::Ifc4x3_rc1::IfcMaterialDefinitionRepresentation> Ifc4x3_rc1::IfcMaterial::HasRepresentation() const { return cast_vector<IfcMaterialDefinitionRepresentation>(file()->getInverse(data()->id(), IFC4X3_RC1_types[650], 3)); }
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std::vector<::Ifc4x3_rc1::IfcMaterialRelationship> Ifc4x3_rc1::IfcMaterial::IsRelatedWith() const { return cast_vector<IfcMaterialRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[662], 3)); }
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std::vector<::Ifc4x3_rc1::IfcMaterialRelationship> Ifc4x3_rc1::IfcMaterial::RelatesTo() const { return cast_vector<IfcMaterialRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[662], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterial::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[645]); }
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void Ifc4x3_rc1::IfcMaterial::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::optional< std::string > v3_Category) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_Category) {set_attribute_value(2, (*v3_Category)); } }
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// Function implementations for IfcMaterialClassificationRelationship
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std::vector< ::Ifc4x3_rc1::IfcClassificationSelect > Ifc4x3_rc1::IfcMaterialClassificationRelationship::MaterialClassifications() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcClassificationSelect>(es); }
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void Ifc4x3_rc1::IfcMaterialClassificationRelationship::setMaterialClassifications(const std::vector< ::Ifc4x3_rc1::IfcClassificationSelect >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcMaterial Ifc4x3_rc1::IfcMaterialClassificationRelationship::ClassifiedMaterial() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcMaterial>(); }
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void Ifc4x3_rc1::IfcMaterialClassificationRelationship::setClassifiedMaterial(const ::Ifc4x3_rc1::IfcMaterial& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialClassificationRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[646]); }
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void Ifc4x3_rc1::IfcMaterialClassificationRelationship::initialize(std::vector< ::Ifc4x3_rc1::IfcClassificationSelect > v1_MaterialClassifications, ::Ifc4x3_rc1::IfcMaterial v2_ClassifiedMaterial) { set_attribute_value(0, cast_vector<express::Base>(v1_MaterialClassifications));set_attribute_value(1, (v2_ClassifiedMaterial)); }
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// Function implementations for IfcMaterialConstituent
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialConstituent::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcMaterialConstituent::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialConstituent::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcMaterialConstituent::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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::Ifc4x3_rc1::IfcMaterial Ifc4x3_rc1::IfcMaterialConstituent::Material() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcMaterial>(); }
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void Ifc4x3_rc1::IfcMaterialConstituent::setMaterial(const ::Ifc4x3_rc1::IfcMaterial& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::optional< double > Ifc4x3_rc1::IfcMaterialConstituent::Fraction() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcMaterialConstituent::setFraction(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialConstituent::Category() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcMaterialConstituent::setCategory(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::vector<::Ifc4x3_rc1::IfcMaterialConstituentSet> Ifc4x3_rc1::IfcMaterialConstituent::ToMaterialConstituentSet() const { return cast_vector<IfcMaterialConstituentSet>(file()->getInverse(data()->id(), IFC4X3_RC1_types[648], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialConstituent::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[647]); }
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void Ifc4x3_rc1::IfcMaterialConstituent::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcMaterial v3_Material, std::optional< double > v4_Fraction, std::optional< std::string > v5_Category) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Material)); if (v4_Fraction) {set_attribute_value(3, (*v4_Fraction)); } if (v5_Category) {set_attribute_value(4, (*v5_Category)); } }
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// Function implementations for IfcMaterialConstituentSet
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialConstituentSet::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcMaterialConstituentSet::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialConstituentSet::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcMaterialConstituentSet::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcMaterialConstituent > > Ifc4x3_rc1::IfcMaterialConstituentSet::MaterialConstituents() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcMaterialConstituent>(es); }
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void Ifc4x3_rc1::IfcMaterialConstituentSet::setMaterialConstituents(const std::optional< std::vector< ::Ifc4x3_rc1::IfcMaterialConstituent > >& v) { if (v) {set_attribute_value(2, cast_vector<express::Base>(*v));} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialConstituentSet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[648]); }
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void Ifc4x3_rc1::IfcMaterialConstituentSet::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, std::optional< std::vector< ::Ifc4x3_rc1::IfcMaterialConstituent > > v3_MaterialConstituents) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_MaterialConstituents) {set_attribute_value(2, cast_vector<express::Base>(*v3_MaterialConstituents)); } }
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// Function implementations for IfcMaterialDefinition
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std::vector<::Ifc4x3_rc1::IfcRelAssociatesMaterial> Ifc4x3_rc1::IfcMaterialDefinition::AssociatedTo() const { return cast_vector<IfcRelAssociatesMaterial>(file()->getInverse(data()->id(), IFC4X3_RC1_types[925], 5)); }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcMaterialDefinition::HasExternalReferences() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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std::vector<::Ifc4x3_rc1::IfcMaterialProperties> Ifc4x3_rc1::IfcMaterialDefinition::HasProperties() const { return cast_vector<IfcMaterialProperties>(file()->getInverse(data()->id(), IFC4X3_RC1_types[661], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialDefinition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[649]); }
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void Ifc4x3_rc1::IfcMaterialDefinition::initialize() { }
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// Function implementations for IfcMaterialDefinitionRepresentation
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::Ifc4x3_rc1::IfcMaterial Ifc4x3_rc1::IfcMaterialDefinitionRepresentation::RepresentedMaterial() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcMaterial>(); }
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void Ifc4x3_rc1::IfcMaterialDefinitionRepresentation::setRepresentedMaterial(const ::Ifc4x3_rc1::IfcMaterial& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialDefinitionRepresentation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[650]); }
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void Ifc4x3_rc1::IfcMaterialDefinitionRepresentation::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcRepresentation > v3_Representations, ::Ifc4x3_rc1::IfcMaterial v4_RepresentedMaterial) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_Representations));set_attribute_value(3, (v4_RepresentedMaterial)); }
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// Function implementations for IfcMaterialLayer
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::Ifc4x3_rc1::IfcMaterial Ifc4x3_rc1::IfcMaterialLayer::Material() const { if(get_attribute_value(0).isNull()) { return ::Ifc4x3_rc1::IfcMaterial{}; } return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcMaterial>(); }
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void Ifc4x3_rc1::IfcMaterialLayer::setMaterial(const ::Ifc4x3_rc1::IfcMaterial& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcMaterialLayer::LayerThickness() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcMaterialLayer::setLayerThickness(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< boost::logic::tribool > Ifc4x3_rc1::IfcMaterialLayer::IsVentilated() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } boost::logic::tribool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcMaterialLayer::setIsVentilated(const std::optional< boost::logic::tribool >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialLayer::Name() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcMaterialLayer::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialLayer::Description() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcMaterialLayer::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialLayer::Category() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcMaterialLayer::setCategory(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< int > Ifc4x3_rc1::IfcMaterialLayer::Priority() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } int v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcMaterialLayer::setPriority(const std::optional< int >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::vector<::Ifc4x3_rc1::IfcMaterialLayerSet> Ifc4x3_rc1::IfcMaterialLayer::ToMaterialLayerSet() const { return cast_vector<IfcMaterialLayerSet>(file()->getInverse(data()->id(), IFC4X3_RC1_types[652], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialLayer::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[651]); }
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void Ifc4x3_rc1::IfcMaterialLayer::initialize(::Ifc4x3_rc1::IfcMaterial v1_Material, double v2_LayerThickness, std::optional< boost::logic::tribool > v3_IsVentilated, std::optional< std::string > v4_Name, std::optional< std::string > v5_Description, std::optional< std::string > v6_Category, std::optional< int > v7_Priority) { set_attribute_value(0, (v1_Material));set_attribute_value(1, (v2_LayerThickness)); if (v3_IsVentilated) {set_attribute_value(2, (*v3_IsVentilated)); } if (v4_Name) {set_attribute_value(3, (*v4_Name)); } if (v5_Description) {set_attribute_value(4, (*v5_Description)); } if (v6_Category) {set_attribute_value(5, (*v6_Category)); } if (v7_Priority) {set_attribute_value(6, (*v7_Priority)); } }
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// Function implementations for IfcMaterialLayerSet
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std::vector< ::Ifc4x3_rc1::IfcMaterialLayer > Ifc4x3_rc1::IfcMaterialLayerSet::MaterialLayers() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcMaterialLayer>(es); }
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void Ifc4x3_rc1::IfcMaterialLayerSet::setMaterialLayers(const std::vector< ::Ifc4x3_rc1::IfcMaterialLayer >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialLayerSet::LayerSetName() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcMaterialLayerSet::setLayerSetName(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialLayerSet::Description() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcMaterialLayerSet::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialLayerSet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[652]); }
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void Ifc4x3_rc1::IfcMaterialLayerSet::initialize(std::vector< ::Ifc4x3_rc1::IfcMaterialLayer > v1_MaterialLayers, std::optional< std::string > v2_LayerSetName, std::optional< std::string > v3_Description) { set_attribute_value(0, cast_vector<express::Base>(v1_MaterialLayers)); if (v2_LayerSetName) {set_attribute_value(1, (*v2_LayerSetName)); } if (v3_Description) {set_attribute_value(2, (*v3_Description)); } }
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// Function implementations for IfcMaterialLayerSetUsage
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::Ifc4x3_rc1::IfcMaterialLayerSet Ifc4x3_rc1::IfcMaterialLayerSetUsage::ForLayerSet() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcMaterialLayerSet>(); }
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void Ifc4x3_rc1::IfcMaterialLayerSetUsage::setForLayerSet(const ::Ifc4x3_rc1::IfcMaterialLayerSet& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value Ifc4x3_rc1::IfcMaterialLayerSetUsage::LayerSetDirection() const { return ::Ifc4x3_rc1::IfcLayerSetDirectionEnum::FromString(get_attribute_value(1)); }
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void Ifc4x3_rc1::IfcMaterialLayerSetUsage::setLayerSetDirection(const ::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value& v) { set_attribute_value(1, EnumerationReference(&::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcDirectionSenseEnum::Value Ifc4x3_rc1::IfcMaterialLayerSetUsage::DirectionSense() const { return ::Ifc4x3_rc1::IfcDirectionSenseEnum::FromString(get_attribute_value(2)); }
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void Ifc4x3_rc1::IfcMaterialLayerSetUsage::setDirectionSense(const ::Ifc4x3_rc1::IfcDirectionSenseEnum::Value& v) { set_attribute_value(2, EnumerationReference(&::Ifc4x3_rc1::IfcDirectionSenseEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcMaterialLayerSetUsage::OffsetFromReferenceLine() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcMaterialLayerSetUsage::setOffsetFromReferenceLine(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< double > Ifc4x3_rc1::IfcMaterialLayerSetUsage::ReferenceExtent() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcMaterialLayerSetUsage::setReferenceExtent(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialLayerSetUsage::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[653]); }
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void Ifc4x3_rc1::IfcMaterialLayerSetUsage::initialize(::Ifc4x3_rc1::IfcMaterialLayerSet v1_ForLayerSet, ::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value v2_LayerSetDirection, ::Ifc4x3_rc1::IfcDirectionSenseEnum::Value v3_DirectionSense, double v4_OffsetFromReferenceLine, std::optional< double > v5_ReferenceExtent) { set_attribute_value(0, (v1_ForLayerSet));set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Class(),(size_t)v2_LayerSetDirection)));set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcDirectionSenseEnum::Class(),(size_t)v3_DirectionSense)));set_attribute_value(3, (v4_OffsetFromReferenceLine)); if (v5_ReferenceExtent) {set_attribute_value(4, (*v5_ReferenceExtent)); } }
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// Function implementations for IfcMaterialLayerWithOffsets
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::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value Ifc4x3_rc1::IfcMaterialLayerWithOffsets::OffsetDirection() const { return ::Ifc4x3_rc1::IfcLayerSetDirectionEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcMaterialLayerWithOffsets::setOffsetDirection(const ::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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std::vector< double > /*[1:2]*/ Ifc4x3_rc1::IfcMaterialLayerWithOffsets::OffsetValues() const { std::vector< double > /*[1:2]*/ v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcMaterialLayerWithOffsets::setOffsetValues(const std::vector< double > /*[1:2]*/& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialLayerWithOffsets::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[654]); }
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void Ifc4x3_rc1::IfcMaterialLayerWithOffsets::initialize(::Ifc4x3_rc1::IfcMaterial v1_Material, double v2_LayerThickness, std::optional< boost::logic::tribool > v3_IsVentilated, std::optional< std::string > v4_Name, std::optional< std::string > v5_Description, std::optional< std::string > v6_Category, std::optional< int > v7_Priority, ::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Value v8_OffsetDirection, std::vector< double > /*[1:2]*/ v9_OffsetValues) { set_attribute_value(0, (v1_Material));set_attribute_value(1, (v2_LayerThickness)); if (v3_IsVentilated) {set_attribute_value(2, (*v3_IsVentilated)); } if (v4_Name) {set_attribute_value(3, (*v4_Name)); } if (v5_Description) {set_attribute_value(4, (*v5_Description)); } if (v6_Category) {set_attribute_value(5, (*v6_Category)); } if (v7_Priority) {set_attribute_value(6, (*v7_Priority)); }set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcLayerSetDirectionEnum::Class(),(size_t)v8_OffsetDirection)));set_attribute_value(8, (v9_OffsetValues)); }
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// Function implementations for IfcMaterialList
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std::vector< ::Ifc4x3_rc1::IfcMaterial > Ifc4x3_rc1::IfcMaterialList::Materials() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcMaterial>(es); }
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void Ifc4x3_rc1::IfcMaterialList::setMaterials(const std::vector< ::Ifc4x3_rc1::IfcMaterial >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialList::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[655]); }
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void Ifc4x3_rc1::IfcMaterialList::initialize(std::vector< ::Ifc4x3_rc1::IfcMaterial > v1_Materials) { set_attribute_value(0, cast_vector<express::Base>(v1_Materials)); }
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// Function implementations for IfcMaterialProfile
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialProfile::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcMaterialProfile::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialProfile::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcMaterialProfile::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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::Ifc4x3_rc1::IfcMaterial Ifc4x3_rc1::IfcMaterialProfile::Material() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcMaterial{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcMaterial>(); }
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void Ifc4x3_rc1::IfcMaterialProfile::setMaterial(const ::Ifc4x3_rc1::IfcMaterial& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcMaterialProfile::Profile() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcMaterialProfile::setProfile(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< int > Ifc4x3_rc1::IfcMaterialProfile::Priority() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } int v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcMaterialProfile::setPriority(const std::optional< int >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialProfile::Category() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcMaterialProfile::setCategory(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::vector<::Ifc4x3_rc1::IfcMaterialProfileSet> Ifc4x3_rc1::IfcMaterialProfile::ToMaterialProfileSet() const { return cast_vector<IfcMaterialProfileSet>(file()->getInverse(data()->id(), IFC4X3_RC1_types[657], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialProfile::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[656]); }
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void Ifc4x3_rc1::IfcMaterialProfile::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcMaterial v3_Material, ::Ifc4x3_rc1::IfcProfileDef v4_Profile, std::optional< int > v5_Priority, std::optional< std::string > v6_Category) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Material));set_attribute_value(3, (v4_Profile)); if (v5_Priority) {set_attribute_value(4, (*v5_Priority)); } if (v6_Category) {set_attribute_value(5, (*v6_Category)); } }
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// Function implementations for IfcMaterialProfileSet
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialProfileSet::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcMaterialProfileSet::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialProfileSet::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcMaterialProfileSet::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::vector< ::Ifc4x3_rc1::IfcMaterialProfile > Ifc4x3_rc1::IfcMaterialProfileSet::MaterialProfiles() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcMaterialProfile>(es); }
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void Ifc4x3_rc1::IfcMaterialProfileSet::setMaterialProfiles(const std::vector< ::Ifc4x3_rc1::IfcMaterialProfile >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcCompositeProfileDef Ifc4x3_rc1::IfcMaterialProfileSet::CompositeProfile() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcCompositeProfileDef{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcCompositeProfileDef>(); }
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void Ifc4x3_rc1::IfcMaterialProfileSet::setCompositeProfile(const ::Ifc4x3_rc1::IfcCompositeProfileDef& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialProfileSet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[657]); }
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void Ifc4x3_rc1::IfcMaterialProfileSet::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcMaterialProfile > v3_MaterialProfiles, ::Ifc4x3_rc1::IfcCompositeProfileDef v4_CompositeProfile) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_MaterialProfiles));set_attribute_value(3, (v4_CompositeProfile)); }
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// Function implementations for IfcMaterialProfileSetUsage
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::Ifc4x3_rc1::IfcMaterialProfileSet Ifc4x3_rc1::IfcMaterialProfileSetUsage::ForProfileSet() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcMaterialProfileSet>(); }
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void Ifc4x3_rc1::IfcMaterialProfileSetUsage::setForProfileSet(const ::Ifc4x3_rc1::IfcMaterialProfileSet& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< int > Ifc4x3_rc1::IfcMaterialProfileSetUsage::CardinalPoint() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } int v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcMaterialProfileSetUsage::setCardinalPoint(const std::optional< int >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< double > Ifc4x3_rc1::IfcMaterialProfileSetUsage::ReferenceExtent() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcMaterialProfileSetUsage::setReferenceExtent(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialProfileSetUsage::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[658]); }
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void Ifc4x3_rc1::IfcMaterialProfileSetUsage::initialize(::Ifc4x3_rc1::IfcMaterialProfileSet v1_ForProfileSet, std::optional< int > v2_CardinalPoint, std::optional< double > v3_ReferenceExtent) { set_attribute_value(0, (v1_ForProfileSet)); if (v2_CardinalPoint) {set_attribute_value(1, (*v2_CardinalPoint)); } if (v3_ReferenceExtent) {set_attribute_value(2, (*v3_ReferenceExtent)); } }
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// Function implementations for IfcMaterialProfileSetUsageTapering
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::Ifc4x3_rc1::IfcMaterialProfileSet Ifc4x3_rc1::IfcMaterialProfileSetUsageTapering::ForProfileEndSet() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcMaterialProfileSet>(); }
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void Ifc4x3_rc1::IfcMaterialProfileSetUsageTapering::setForProfileEndSet(const ::Ifc4x3_rc1::IfcMaterialProfileSet& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< int > Ifc4x3_rc1::IfcMaterialProfileSetUsageTapering::CardinalEndPoint() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } int v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcMaterialProfileSetUsageTapering::setCardinalEndPoint(const std::optional< int >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialProfileSetUsageTapering::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[659]); }
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void Ifc4x3_rc1::IfcMaterialProfileSetUsageTapering::initialize(::Ifc4x3_rc1::IfcMaterialProfileSet v1_ForProfileSet, std::optional< int > v2_CardinalPoint, std::optional< double > v3_ReferenceExtent, ::Ifc4x3_rc1::IfcMaterialProfileSet v4_ForProfileEndSet, std::optional< int > v5_CardinalEndPoint) { set_attribute_value(0, (v1_ForProfileSet)); if (v2_CardinalPoint) {set_attribute_value(1, (*v2_CardinalPoint)); } if (v3_ReferenceExtent) {set_attribute_value(2, (*v3_ReferenceExtent)); }set_attribute_value(3, (v4_ForProfileEndSet)); if (v5_CardinalEndPoint) {set_attribute_value(4, (*v5_CardinalEndPoint)); } }
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// Function implementations for IfcMaterialProfileWithOffsets
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std::vector< double > /*[1:2]*/ Ifc4x3_rc1::IfcMaterialProfileWithOffsets::OffsetValues() const { std::vector< double > /*[1:2]*/ v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcMaterialProfileWithOffsets::setOffsetValues(const std::vector< double > /*[1:2]*/& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialProfileWithOffsets::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[660]); }
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void Ifc4x3_rc1::IfcMaterialProfileWithOffsets::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcMaterial v3_Material, ::Ifc4x3_rc1::IfcProfileDef v4_Profile, std::optional< int > v5_Priority, std::optional< std::string > v6_Category, std::vector< double > /*[1:2]*/ v7_OffsetValues) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Material));set_attribute_value(3, (v4_Profile)); if (v5_Priority) {set_attribute_value(4, (*v5_Priority)); } if (v6_Category) {set_attribute_value(5, (*v6_Category)); }set_attribute_value(6, (v7_OffsetValues)); }
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// Function implementations for IfcMaterialProperties
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::Ifc4x3_rc1::IfcMaterialDefinition Ifc4x3_rc1::IfcMaterialProperties::Material() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcMaterialDefinition>(); }
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void Ifc4x3_rc1::IfcMaterialProperties::setMaterial(const ::Ifc4x3_rc1::IfcMaterialDefinition& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[661]); }
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void Ifc4x3_rc1::IfcMaterialProperties::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcProperty > v3_Properties, ::Ifc4x3_rc1::IfcMaterialDefinition v4_Material) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_Properties));set_attribute_value(3, (v4_Material)); }
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// Function implementations for IfcMaterialRelationship
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::Ifc4x3_rc1::IfcMaterial Ifc4x3_rc1::IfcMaterialRelationship::RelatingMaterial() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcMaterial>(); }
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void Ifc4x3_rc1::IfcMaterialRelationship::setRelatingMaterial(const ::Ifc4x3_rc1::IfcMaterial& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector< ::Ifc4x3_rc1::IfcMaterial > Ifc4x3_rc1::IfcMaterialRelationship::RelatedMaterials() const { std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcMaterial>(es); }
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void Ifc4x3_rc1::IfcMaterialRelationship::setRelatedMaterials(const std::vector< ::Ifc4x3_rc1::IfcMaterial >& v) { set_attribute_value(3, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcMaterialRelationship::Expression() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcMaterialRelationship::setExpression(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[662]); }
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void Ifc4x3_rc1::IfcMaterialRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcMaterial v3_RelatingMaterial, std::vector< ::Ifc4x3_rc1::IfcMaterial > v4_RelatedMaterials, std::optional< std::string > v5_Expression) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_RelatingMaterial));set_attribute_value(3, cast_vector<express::Base>(v4_RelatedMaterials)); if (v5_Expression) {set_attribute_value(4, (*v5_Expression)); } }
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// Function implementations for IfcMaterialUsageDefinition
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std::vector<::Ifc4x3_rc1::IfcRelAssociatesMaterial> Ifc4x3_rc1::IfcMaterialUsageDefinition::AssociatedTo() const { return cast_vector<IfcRelAssociatesMaterial>(file()->getInverse(data()->id(), IFC4X3_RC1_types[925], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMaterialUsageDefinition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[664]); }
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void Ifc4x3_rc1::IfcMaterialUsageDefinition::initialize() { }
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// Function implementations for IfcMeasureWithUnit
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::Ifc4x3_rc1::IfcValue Ifc4x3_rc1::IfcMeasureWithUnit::ValueComponent() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcValue>(); }
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void Ifc4x3_rc1::IfcMeasureWithUnit::setValueComponent(const ::Ifc4x3_rc1::IfcValue& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcMeasureWithUnit::UnitComponent() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcMeasureWithUnit::setUnitComponent(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMeasureWithUnit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[666]); }
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void Ifc4x3_rc1::IfcMeasureWithUnit::initialize(::Ifc4x3_rc1::IfcValue v1_ValueComponent, ::Ifc4x3_rc1::IfcUnit v2_UnitComponent) { set_attribute_value(0, (v1_ValueComponent));set_attribute_value(1, (v2_UnitComponent)); }
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// Function implementations for IfcMechanicalFastener
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std::optional< double > Ifc4x3_rc1::IfcMechanicalFastener::NominalDiameter() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcMechanicalFastener::setNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< double > Ifc4x3_rc1::IfcMechanicalFastener::NominalLength() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcMechanicalFastener::setNominalLength(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< ::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value > Ifc4x3_rc1::IfcMechanicalFastener::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcMechanicalFastener::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMechanicalFastener::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[667]); }
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void Ifc4x3_rc1::IfcMechanicalFastener::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< double > v9_NominalDiameter, std::optional< double > v10_NominalLength, std::optional< ::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value > v11_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_NominalDiameter) {set_attribute_value(8, (*v9_NominalDiameter)); } if (v10_NominalLength) {set_attribute_value(9, (*v10_NominalLength)); } if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Class(),(size_t)*v11_PredefinedType))); } }
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// Function implementations for IfcMechanicalFastenerType
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::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value Ifc4x3_rc1::IfcMechanicalFastenerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcMechanicalFastenerType::setPredefinedType(const ::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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std::optional< double > Ifc4x3_rc1::IfcMechanicalFastenerType::NominalDiameter() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcMechanicalFastenerType::setNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcMechanicalFastenerType::NominalLength() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcMechanicalFastenerType::setNominalLength(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMechanicalFastenerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[668]); }
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void Ifc4x3_rc1::IfcMechanicalFastenerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Value v10_PredefinedType, std::optional< double > v11_NominalDiameter, std::optional< double > v12_NominalLength) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcMechanicalFastenerTypeEnum::Class(),(size_t)v10_PredefinedType))); if (v11_NominalDiameter) {set_attribute_value(10, (*v11_NominalDiameter)); } if (v12_NominalLength) {set_attribute_value(11, (*v12_NominalLength)); } }
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// Function implementations for IfcMedicalDevice
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std::optional< ::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value > Ifc4x3_rc1::IfcMedicalDevice::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcMedicalDevice::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMedicalDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[670]); }
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void Ifc4x3_rc1::IfcMedicalDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcMedicalDeviceType
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::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value Ifc4x3_rc1::IfcMedicalDeviceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcMedicalDeviceType::setPredefinedType(const ::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMedicalDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[671]); }
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void Ifc4x3_rc1::IfcMedicalDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcMedicalDeviceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcMember
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std::optional< ::Ifc4x3_rc1::IfcMemberTypeEnum::Value > Ifc4x3_rc1::IfcMember::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcMemberTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcMember::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcMemberTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcMemberTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMember::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[673]); }
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void Ifc4x3_rc1::IfcMember::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcMemberTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcMemberTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcMemberStandardCase
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const IfcParse::entity& Ifc4x3_rc1::IfcMemberStandardCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[674]); }
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void Ifc4x3_rc1::IfcMemberStandardCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcMemberTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcMemberTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcMemberType
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::Ifc4x3_rc1::IfcMemberTypeEnum::Value Ifc4x3_rc1::IfcMemberType::PredefinedType() const { return ::Ifc4x3_rc1::IfcMemberTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcMemberType::setPredefinedType(const ::Ifc4x3_rc1::IfcMemberTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcMemberTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMemberType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[675]); }
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void Ifc4x3_rc1::IfcMemberType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcMemberTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcMemberTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcMetric
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::Ifc4x3_rc1::IfcBenchmarkEnum::Value Ifc4x3_rc1::IfcMetric::Benchmark() const { return ::Ifc4x3_rc1::IfcBenchmarkEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcMetric::setBenchmark(const ::Ifc4x3_rc1::IfcBenchmarkEnum::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcBenchmarkEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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std::optional< std::string > Ifc4x3_rc1::IfcMetric::ValueSource() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcMetric::setValueSource(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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::Ifc4x3_rc1::IfcMetricValueSelect Ifc4x3_rc1::IfcMetric::DataValue() const { if(get_attribute_value(9).isNull()) { return ::Ifc4x3_rc1::IfcMetricValueSelect{}; } return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcMetricValueSelect>(); }
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void Ifc4x3_rc1::IfcMetric::setDataValue(const ::Ifc4x3_rc1::IfcMetricValueSelect& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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::Ifc4x3_rc1::IfcReference Ifc4x3_rc1::IfcMetric::ReferencePath() const { if(get_attribute_value(10).isNull()) { return ::Ifc4x3_rc1::IfcReference{}; } return ((express::Base)(get_attribute_value(10))).as<::Ifc4x3_rc1::IfcReference>(); }
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void Ifc4x3_rc1::IfcMetric::setReferencePath(const ::Ifc4x3_rc1::IfcReference& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMetric::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[677]); }
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void Ifc4x3_rc1::IfcMetric::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcConstraintEnum::Value v3_ConstraintGrade, std::optional< std::string > v4_ConstraintSource, ::Ifc4x3_rc1::IfcActorSelect v5_CreatingActor, std::optional< std::string > v6_CreationTime, std::optional< std::string > v7_UserDefinedGrade, ::Ifc4x3_rc1::IfcBenchmarkEnum::Value v8_Benchmark, std::optional< std::string > v9_ValueSource, ::Ifc4x3_rc1::IfcMetricValueSelect v10_DataValue, ::Ifc4x3_rc1::IfcReference v11_ReferencePath) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcConstraintEnum::Class(),(size_t)v3_ConstraintGrade))); if (v4_ConstraintSource) {set_attribute_value(3, (*v4_ConstraintSource)); }set_attribute_value(4, (v5_CreatingActor)); if (v6_CreationTime) {set_attribute_value(5, (*v6_CreationTime)); } if (v7_UserDefinedGrade) {set_attribute_value(6, (*v7_UserDefinedGrade)); }set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcBenchmarkEnum::Class(),(size_t)v8_Benchmark))); if (v9_ValueSource) {set_attribute_value(8, (*v9_ValueSource)); }set_attribute_value(9, (v10_DataValue));set_attribute_value(10, (v11_ReferencePath)); }
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// Function implementations for IfcMirroredProfileDef
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const IfcParse::entity& Ifc4x3_rc1::IfcMirroredProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[679]); }
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void Ifc4x3_rc1::IfcMirroredProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcProfileDef v3_ParentProfile, std::optional< std::string > v5_Label) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_ParentProfile)); if (v5_Label) {set_attribute_value(4, (*v5_Label)); } }
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// Function implementations for IfcMobileTelecommunicationsAppliance
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std::optional< ::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value > Ifc4x3_rc1::IfcMobileTelecommunicationsAppliance::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcMobileTelecommunicationsAppliance::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMobileTelecommunicationsAppliance::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[680]); }
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void Ifc4x3_rc1::IfcMobileTelecommunicationsAppliance::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcMobileTelecommunicationsApplianceType
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::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceType::setPredefinedType(const ::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[681]); }
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void Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcMobileTelecommunicationsApplianceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcMonetaryUnit
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std::string Ifc4x3_rc1::IfcMonetaryUnit::Currency() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcMonetaryUnit::setCurrency(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMonetaryUnit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[694]); }
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void Ifc4x3_rc1::IfcMonetaryUnit::initialize(std::string v1_Currency) { set_attribute_value(0, (v1_Currency)); }
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// Function implementations for IfcMooringDevice
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std::optional< ::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value > Ifc4x3_rc1::IfcMooringDevice::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcMooringDevice::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMooringDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[696]); }
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void Ifc4x3_rc1::IfcMooringDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcMooringDeviceType
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::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value Ifc4x3_rc1::IfcMooringDeviceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcMooringDeviceType::setPredefinedType(const ::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMooringDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[697]); }
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void Ifc4x3_rc1::IfcMooringDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcMooringDeviceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcMotorConnection
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std::optional< ::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value > Ifc4x3_rc1::IfcMotorConnection::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcMotorConnection::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcMotorConnection::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[699]); }
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void Ifc4x3_rc1::IfcMotorConnection::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcMotorConnectionType
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::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value Ifc4x3_rc1::IfcMotorConnectionType::PredefinedType() const { return ::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcMotorConnectionType::setPredefinedType(const ::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcMotorConnectionType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[700]); }
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void Ifc4x3_rc1::IfcMotorConnectionType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcMotorConnectionTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcNamedUnit
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::Ifc4x3_rc1::IfcDimensionalExponents Ifc4x3_rc1::IfcNamedUnit::Dimensions() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcDimensionalExponents>(); }
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void Ifc4x3_rc1::IfcNamedUnit::setDimensions(const ::Ifc4x3_rc1::IfcDimensionalExponents& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcUnitEnum::Value Ifc4x3_rc1::IfcNamedUnit::UnitType() const { return ::Ifc4x3_rc1::IfcUnitEnum::FromString(get_attribute_value(1)); }
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void Ifc4x3_rc1::IfcNamedUnit::setUnitType(const ::Ifc4x3_rc1::IfcUnitEnum::Value& v) { set_attribute_value(1, EnumerationReference(&::Ifc4x3_rc1::IfcUnitEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcNamedUnit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[702]); }
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void Ifc4x3_rc1::IfcNamedUnit::initialize(::Ifc4x3_rc1::IfcDimensionalExponents v1_Dimensions, ::Ifc4x3_rc1::IfcUnitEnum::Value v2_UnitType) { set_attribute_value(0, (v1_Dimensions));set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcUnitEnum::Class(),(size_t)v2_UnitType))); }
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// Function implementations for IfcNavigationElement
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std::optional< ::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value > Ifc4x3_rc1::IfcNavigationElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcNavigationElementTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcNavigationElement::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcNavigationElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[703]); }
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void Ifc4x3_rc1::IfcNavigationElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcNavigationElementType
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::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value Ifc4x3_rc1::IfcNavigationElementType::PredefinedType() const { return ::Ifc4x3_rc1::IfcNavigationElementTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcNavigationElementType::setPredefinedType(const ::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcNavigationElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[704]); }
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void Ifc4x3_rc1::IfcNavigationElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcNavigationElementTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcObject
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std::optional< std::string > Ifc4x3_rc1::IfcObject::ObjectType() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcObject::setObjectType(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::vector<::Ifc4x3_rc1::IfcRelDefinesByObject> Ifc4x3_rc1::IfcObject::IsDeclaredBy() const { return cast_vector<IfcRelDefinesByObject>(file()->getInverse(data()->id(), IFC4X3_RC1_types[943], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelDefinesByObject> Ifc4x3_rc1::IfcObject::Declares() const { return cast_vector<IfcRelDefinesByObject>(file()->getInverse(data()->id(), IFC4X3_RC1_types[943], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelDefinesByType> Ifc4x3_rc1::IfcObject::IsTypedBy() const { return cast_vector<IfcRelDefinesByType>(file()->getInverse(data()->id(), IFC4X3_RC1_types[946], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelDefinesByProperties> Ifc4x3_rc1::IfcObject::IsDefinedBy() const { return cast_vector<IfcRelDefinesByProperties>(file()->getInverse(data()->id(), IFC4X3_RC1_types[944], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcObject::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[710]); }
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void Ifc4x3_rc1::IfcObject::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } }
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// Function implementations for IfcObjectDefinition
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std::vector<::Ifc4x3_rc1::IfcRelAssigns> Ifc4x3_rc1::IfcObjectDefinition::HasAssignments() const { return cast_vector<IfcRelAssigns>(file()->getInverse(data()->id(), IFC4X3_RC1_types[911], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelNests> Ifc4x3_rc1::IfcObjectDefinition::Nests() const { return cast_vector<IfcRelNests>(file()->getInverse(data()->id(), IFC4X3_RC1_types[950], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelNests> Ifc4x3_rc1::IfcObjectDefinition::IsNestedBy() const { return cast_vector<IfcRelNests>(file()->getInverse(data()->id(), IFC4X3_RC1_types[950], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelDeclares> Ifc4x3_rc1::IfcObjectDefinition::HasContext() const { return cast_vector<IfcRelDeclares>(file()->getInverse(data()->id(), IFC4X3_RC1_types[940], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelAggregates> Ifc4x3_rc1::IfcObjectDefinition::IsDecomposedBy() const { return cast_vector<IfcRelAggregates>(file()->getInverse(data()->id(), IFC4X3_RC1_types[910], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelAggregates> Ifc4x3_rc1::IfcObjectDefinition::Decomposes() const { return cast_vector<IfcRelAggregates>(file()->getInverse(data()->id(), IFC4X3_RC1_types[910], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelAssociates> Ifc4x3_rc1::IfcObjectDefinition::HasAssociations() const { return cast_vector<IfcRelAssociates>(file()->getInverse(data()->id(), IFC4X3_RC1_types[919], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcObjectDefinition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[711]); }
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void Ifc4x3_rc1::IfcObjectDefinition::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcObjectPlacement
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::Ifc4x3_rc1::IfcObjectPlacement Ifc4x3_rc1::IfcObjectPlacement::PlacementRelTo() const { if(get_attribute_value(0).isNull()) { return ::Ifc4x3_rc1::IfcObjectPlacement{}; } return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcObjectPlacement>(); }
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void Ifc4x3_rc1::IfcObjectPlacement::setPlacementRelTo(const ::Ifc4x3_rc1::IfcObjectPlacement& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector<::Ifc4x3_rc1::IfcProduct> Ifc4x3_rc1::IfcObjectPlacement::PlacesObject() const { return cast_vector<IfcProduct>(file()->getInverse(data()->id(), IFC4X3_RC1_types[814], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcObjectPlacement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[714]); }
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void Ifc4x3_rc1::IfcObjectPlacement::initialize(::Ifc4x3_rc1::IfcObjectPlacement v1_PlacementRelTo) { set_attribute_value(0, (v1_PlacementRelTo)); }
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// Function implementations for IfcObjective
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std::optional< std::vector< ::Ifc4x3_rc1::IfcConstraint > > Ifc4x3_rc1::IfcObjective::BenchmarkValues() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcConstraint>(es); }
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void Ifc4x3_rc1::IfcObjective::setBenchmarkValues(const std::optional< std::vector< ::Ifc4x3_rc1::IfcConstraint > >& v) { if (v) {set_attribute_value(7, cast_vector<express::Base>(*v));} else {unset_attribute_value(7);} }
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std::optional< ::Ifc4x3_rc1::IfcLogicalOperatorEnum::Value > Ifc4x3_rc1::IfcObjective::LogicalAggregator() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcLogicalOperatorEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcObjective::setLogicalAggregator(const std::optional< ::Ifc4x3_rc1::IfcLogicalOperatorEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcLogicalOperatorEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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::Ifc4x3_rc1::IfcObjectiveEnum::Value Ifc4x3_rc1::IfcObjective::ObjectiveQualifier() const { return ::Ifc4x3_rc1::IfcObjectiveEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcObjective::setObjectiveQualifier(const ::Ifc4x3_rc1::IfcObjectiveEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcObjectiveEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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std::optional< std::string > Ifc4x3_rc1::IfcObjective::UserDefinedQualifier() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::string v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcObjective::setUserDefinedQualifier(const std::optional< std::string >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcObjective::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[712]); }
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void Ifc4x3_rc1::IfcObjective::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcConstraintEnum::Value v3_ConstraintGrade, std::optional< std::string > v4_ConstraintSource, ::Ifc4x3_rc1::IfcActorSelect v5_CreatingActor, std::optional< std::string > v6_CreationTime, std::optional< std::string > v7_UserDefinedGrade, std::optional< std::vector< ::Ifc4x3_rc1::IfcConstraint > > v8_BenchmarkValues, std::optional< ::Ifc4x3_rc1::IfcLogicalOperatorEnum::Value > v9_LogicalAggregator, ::Ifc4x3_rc1::IfcObjectiveEnum::Value v10_ObjectiveQualifier, std::optional< std::string > v11_UserDefinedQualifier) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcConstraintEnum::Class(),(size_t)v3_ConstraintGrade))); if (v4_ConstraintSource) {set_attribute_value(3, (*v4_ConstraintSource)); }set_attribute_value(4, (v5_CreatingActor)); if (v6_CreationTime) {set_attribute_value(5, (*v6_CreationTime)); } if (v7_UserDefinedGrade) {set_attribute_value(6, (*v7_UserDefinedGrade)); } if (v8_BenchmarkValues) {set_attribute_value(7, cast_vector<express::Base>(*v8_BenchmarkValues)); } if (v9_LogicalAggregator) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcLogicalOperatorEnum::Class(),(size_t)*v9_LogicalAggregator))); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectiveEnum::Class(),(size_t)v10_ObjectiveQualifier))); if (v11_UserDefinedQualifier) {set_attribute_value(10, (*v11_UserDefinedQualifier)); } }
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// Function implementations for IfcOccupant
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std::optional< ::Ifc4x3_rc1::IfcOccupantTypeEnum::Value > Ifc4x3_rc1::IfcOccupant::PredefinedType() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcOccupantTypeEnum::FromString(get_attribute_value(6)); }
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void Ifc4x3_rc1::IfcOccupant::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcOccupantTypeEnum::Value >& v) { if (v) {set_attribute_value(6, EnumerationReference(&::Ifc4x3_rc1::IfcOccupantTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcOccupant::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[717]); }
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void Ifc4x3_rc1::IfcOccupant::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcActorSelect v6_TheActor, std::optional< ::Ifc4x3_rc1::IfcOccupantTypeEnum::Value > v7_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_TheActor)); if (v7_PredefinedType) {set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcOccupantTypeEnum::Class(),(size_t)*v7_PredefinedType))); } }
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// Function implementations for IfcOffsetCurve
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcOffsetCurve::BasisCurve() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcOffsetCurve::setBasisCurve(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOffsetCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[719]); }
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void Ifc4x3_rc1::IfcOffsetCurve::initialize(::Ifc4x3_rc1::IfcCurve v1_BasisCurve) { set_attribute_value(0, (v1_BasisCurve)); }
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// Function implementations for IfcOffsetCurve2D
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double Ifc4x3_rc1::IfcOffsetCurve2D::Distance() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcOffsetCurve2D::setDistance(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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boost::logic::tribool Ifc4x3_rc1::IfcOffsetCurve2D::SelfIntersect() const { boost::logic::tribool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcOffsetCurve2D::setSelfIntersect(const boost::logic::tribool& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOffsetCurve2D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[720]); }
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void Ifc4x3_rc1::IfcOffsetCurve2D::initialize(::Ifc4x3_rc1::IfcCurve v1_BasisCurve, double v2_Distance, boost::logic::tribool v3_SelfIntersect) { set_attribute_value(0, (v1_BasisCurve));set_attribute_value(1, (v2_Distance));set_attribute_value(2, (v3_SelfIntersect)); }
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// Function implementations for IfcOffsetCurve3D
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double Ifc4x3_rc1::IfcOffsetCurve3D::Distance() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcOffsetCurve3D::setDistance(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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boost::logic::tribool Ifc4x3_rc1::IfcOffsetCurve3D::SelfIntersect() const { boost::logic::tribool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcOffsetCurve3D::setSelfIntersect(const boost::logic::tribool& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcOffsetCurve3D::RefDirection() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcOffsetCurve3D::setRefDirection(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOffsetCurve3D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[721]); }
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void Ifc4x3_rc1::IfcOffsetCurve3D::initialize(::Ifc4x3_rc1::IfcCurve v1_BasisCurve, double v2_Distance, boost::logic::tribool v3_SelfIntersect, ::Ifc4x3_rc1::IfcDirection v4_RefDirection) { set_attribute_value(0, (v1_BasisCurve));set_attribute_value(1, (v2_Distance));set_attribute_value(2, (v3_SelfIntersect));set_attribute_value(3, (v4_RefDirection)); }
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// Function implementations for IfcOffsetCurveByDistances
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std::vector< ::Ifc4x3_rc1::IfcDistanceExpression > Ifc4x3_rc1::IfcOffsetCurveByDistances::OffsetValues() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcDistanceExpression>(es); }
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void Ifc4x3_rc1::IfcOffsetCurveByDistances::setOffsetValues(const std::vector< ::Ifc4x3_rc1::IfcDistanceExpression >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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std::optional< std::string > Ifc4x3_rc1::IfcOffsetCurveByDistances::Tag() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcOffsetCurveByDistances::setTag(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcOffsetCurveByDistances::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[722]); }
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void Ifc4x3_rc1::IfcOffsetCurveByDistances::initialize(::Ifc4x3_rc1::IfcCurve v1_BasisCurve, std::vector< ::Ifc4x3_rc1::IfcDistanceExpression > v2_OffsetValues, std::optional< std::string > v3_Tag) { set_attribute_value(0, (v1_BasisCurve));set_attribute_value(1, cast_vector<express::Base>(v2_OffsetValues)); if (v3_Tag) {set_attribute_value(2, (*v3_Tag)); } }
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// Function implementations for IfcOpenCrossProfileDef
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bool Ifc4x3_rc1::IfcOpenCrossProfileDef::HorizontalWidths() const { bool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcOpenCrossProfileDef::setHorizontalWidths(const bool& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector< double > /*[1:?]*/ Ifc4x3_rc1::IfcOpenCrossProfileDef::Widths() const { std::vector< double > /*[1:?]*/ v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcOpenCrossProfileDef::setWidths(const std::vector< double > /*[1:?]*/& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::vector< double > /*[1:?]*/ Ifc4x3_rc1::IfcOpenCrossProfileDef::Slopes() const { std::vector< double > /*[1:?]*/ v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcOpenCrossProfileDef::setSlopes(const std::vector< double > /*[1:?]*/& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::optional< std::vector< std::string > /*[2:?]*/ > Ifc4x3_rc1::IfcOpenCrossProfileDef::Tags() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::vector< std::string > /*[2:?]*/ v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcOpenCrossProfileDef::setTags(const std::optional< std::vector< std::string > /*[2:?]*/ >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcOpenCrossProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[723]); }
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void Ifc4x3_rc1::IfcOpenCrossProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, bool v3_HorizontalWidths, std::vector< double > /*[1:?]*/ v4_Widths, std::vector< double > /*[1:?]*/ v5_Slopes, std::optional< std::vector< std::string > /*[2:?]*/ > v6_Tags) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_HorizontalWidths));set_attribute_value(3, (v4_Widths));set_attribute_value(4, (v5_Slopes)); if (v6_Tags) {set_attribute_value(5, (*v6_Tags)); } }
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// Function implementations for IfcOpenShell
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const IfcParse::entity& Ifc4x3_rc1::IfcOpenShell::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[727]); }
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void Ifc4x3_rc1::IfcOpenShell::initialize(std::vector< ::Ifc4x3_rc1::IfcFace > v1_CfsFaces) { set_attribute_value(0, cast_vector<express::Base>(v1_CfsFaces)); }
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// Function implementations for IfcOpeningElement
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std::optional< ::Ifc4x3_rc1::IfcOpeningElementTypeEnum::Value > Ifc4x3_rc1::IfcOpeningElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcOpeningElementTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcOpeningElement::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcOpeningElementTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcOpeningElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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std::vector<::Ifc4x3_rc1::IfcRelFillsElement> Ifc4x3_rc1::IfcOpeningElement::HasFillings() const { return cast_vector<IfcRelFillsElement>(file()->getInverse(data()->id(), IFC4X3_RC1_types[947], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOpeningElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[724]); }
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void Ifc4x3_rc1::IfcOpeningElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcOpeningElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcOpeningElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcOpeningStandardCase
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const IfcParse::entity& Ifc4x3_rc1::IfcOpeningStandardCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[726]); }
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void Ifc4x3_rc1::IfcOpeningStandardCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcOpeningElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcOpeningElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcOrganization
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std::optional< std::string > Ifc4x3_rc1::IfcOrganization::Identification() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcOrganization::setIdentification(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::string Ifc4x3_rc1::IfcOrganization::Name() const { std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcOrganization::setName(const std::string& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< std::string > Ifc4x3_rc1::IfcOrganization::Description() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcOrganization::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcActorRole > > Ifc4x3_rc1::IfcOrganization::Roles() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcActorRole>(es); }
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void Ifc4x3_rc1::IfcOrganization::setRoles(const std::optional< std::vector< ::Ifc4x3_rc1::IfcActorRole > >& v) { if (v) {set_attribute_value(3, cast_vector<express::Base>(*v));} else {unset_attribute_value(3);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcAddress > > Ifc4x3_rc1::IfcOrganization::Addresses() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcAddress>(es); }
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void Ifc4x3_rc1::IfcOrganization::setAddresses(const std::optional< std::vector< ::Ifc4x3_rc1::IfcAddress > >& v) { if (v) {set_attribute_value(4, cast_vector<express::Base>(*v));} else {unset_attribute_value(4);} }
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std::vector<::Ifc4x3_rc1::IfcOrganizationRelationship> Ifc4x3_rc1::IfcOrganization::IsRelatedBy() const { return cast_vector<IfcOrganizationRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[729], 3)); }
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std::vector<::Ifc4x3_rc1::IfcOrganizationRelationship> Ifc4x3_rc1::IfcOrganization::Relates() const { return cast_vector<IfcOrganizationRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[729], 2)); }
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std::vector<::Ifc4x3_rc1::IfcPersonAndOrganization> Ifc4x3_rc1::IfcOrganization::Engages() const { return cast_vector<IfcPersonAndOrganization>(file()->getInverse(data()->id(), IFC4X3_RC1_types[750], 1)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOrganization::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[728]); }
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void Ifc4x3_rc1::IfcOrganization::initialize(std::optional< std::string > v1_Identification, std::string v2_Name, std::optional< std::string > v3_Description, std::optional< std::vector< ::Ifc4x3_rc1::IfcActorRole > > v4_Roles, std::optional< std::vector< ::Ifc4x3_rc1::IfcAddress > > v5_Addresses) { if (v1_Identification) {set_attribute_value(0, (*v1_Identification)); }set_attribute_value(1, (v2_Name)); if (v3_Description) {set_attribute_value(2, (*v3_Description)); } if (v4_Roles) {set_attribute_value(3, cast_vector<express::Base>(*v4_Roles)); } if (v5_Addresses) {set_attribute_value(4, cast_vector<express::Base>(*v5_Addresses)); } }
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// Function implementations for IfcOrganizationRelationship
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::Ifc4x3_rc1::IfcOrganization Ifc4x3_rc1::IfcOrganizationRelationship::RelatingOrganization() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcOrganization>(); }
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void Ifc4x3_rc1::IfcOrganizationRelationship::setRelatingOrganization(const ::Ifc4x3_rc1::IfcOrganization& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector< ::Ifc4x3_rc1::IfcOrganization > Ifc4x3_rc1::IfcOrganizationRelationship::RelatedOrganizations() const { std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcOrganization>(es); }
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void Ifc4x3_rc1::IfcOrganizationRelationship::setRelatedOrganizations(const std::vector< ::Ifc4x3_rc1::IfcOrganization >& v) { set_attribute_value(3, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOrganizationRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[729]); }
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void Ifc4x3_rc1::IfcOrganizationRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcOrganization v3_RelatingOrganization, std::vector< ::Ifc4x3_rc1::IfcOrganization > v4_RelatedOrganizations) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_RelatingOrganization));set_attribute_value(3, cast_vector<express::Base>(v4_RelatedOrganizations)); }
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// Function implementations for IfcOrientationExpression
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcOrientationExpression::LateralAxisDirection() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcOrientationExpression::setLateralAxisDirection(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcOrientationExpression::VerticalAxisDirection() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcOrientationExpression::setVerticalAxisDirection(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOrientationExpression::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[730]); }
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void Ifc4x3_rc1::IfcOrientationExpression::initialize(::Ifc4x3_rc1::IfcDirection v1_LateralAxisDirection, ::Ifc4x3_rc1::IfcDirection v2_VerticalAxisDirection) { set_attribute_value(0, (v1_LateralAxisDirection));set_attribute_value(1, (v2_VerticalAxisDirection)); }
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// Function implementations for IfcOrientedEdge
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::Ifc4x3_rc1::IfcEdge Ifc4x3_rc1::IfcOrientedEdge::EdgeElement() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcEdge>(); }
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void Ifc4x3_rc1::IfcOrientedEdge::setEdgeElement(const ::Ifc4x3_rc1::IfcEdge& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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bool Ifc4x3_rc1::IfcOrientedEdge::Orientation() const { bool v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcOrientedEdge::setOrientation(const bool& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOrientedEdge::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[731]); }
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void Ifc4x3_rc1::IfcOrientedEdge::initialize(::Ifc4x3_rc1::IfcEdge v3_EdgeElement, bool v4_Orientation) { set_attribute_value(2, (v3_EdgeElement));set_attribute_value(3, (v4_Orientation)); }
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// Function implementations for IfcOuterBoundaryCurve
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const IfcParse::entity& Ifc4x3_rc1::IfcOuterBoundaryCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[732]); }
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void Ifc4x3_rc1::IfcOuterBoundaryCurve::initialize(std::vector< ::Ifc4x3_rc1::IfcCompositeCurveSegment > v1_Segments, boost::logic::tribool v2_SelfIntersect) { set_attribute_value(0, cast_vector<express::Base>(v1_Segments));set_attribute_value(1, (v2_SelfIntersect)); }
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// Function implementations for IfcOutlet
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std::optional< ::Ifc4x3_rc1::IfcOutletTypeEnum::Value > Ifc4x3_rc1::IfcOutlet::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcOutletTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcOutlet::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcOutletTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcOutletTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcOutlet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[733]); }
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void Ifc4x3_rc1::IfcOutlet::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcOutletTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcOutletTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcOutletType
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::Ifc4x3_rc1::IfcOutletTypeEnum::Value Ifc4x3_rc1::IfcOutletType::PredefinedType() const { return ::Ifc4x3_rc1::IfcOutletTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcOutletType::setPredefinedType(const ::Ifc4x3_rc1::IfcOutletTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcOutletTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOutletType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[734]); }
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void Ifc4x3_rc1::IfcOutletType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcOutletTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcOutletTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcOwnerHistory
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::Ifc4x3_rc1::IfcPersonAndOrganization Ifc4x3_rc1::IfcOwnerHistory::OwningUser() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcPersonAndOrganization>(); }
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void Ifc4x3_rc1::IfcOwnerHistory::setOwningUser(const ::Ifc4x3_rc1::IfcPersonAndOrganization& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcApplication Ifc4x3_rc1::IfcOwnerHistory::OwningApplication() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcApplication>(); }
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void Ifc4x3_rc1::IfcOwnerHistory::setOwningApplication(const ::Ifc4x3_rc1::IfcApplication& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< ::Ifc4x3_rc1::IfcStateEnum::Value > Ifc4x3_rc1::IfcOwnerHistory::State() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcStateEnum::FromString(get_attribute_value(2)); }
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void Ifc4x3_rc1::IfcOwnerHistory::setState(const std::optional< ::Ifc4x3_rc1::IfcStateEnum::Value >& v) { if (v) {set_attribute_value(2, EnumerationReference(&::Ifc4x3_rc1::IfcStateEnum::Class(), (size_t) *v));} else {unset_attribute_value(2);} }
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std::optional< ::Ifc4x3_rc1::IfcChangeActionEnum::Value > Ifc4x3_rc1::IfcOwnerHistory::ChangeAction() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcChangeActionEnum::FromString(get_attribute_value(3)); }
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void Ifc4x3_rc1::IfcOwnerHistory::setChangeAction(const std::optional< ::Ifc4x3_rc1::IfcChangeActionEnum::Value >& v) { if (v) {set_attribute_value(3, EnumerationReference(&::Ifc4x3_rc1::IfcChangeActionEnum::Class(), (size_t) *v));} else {unset_attribute_value(3);} }
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std::optional< int > Ifc4x3_rc1::IfcOwnerHistory::LastModifiedDate() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } int v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcOwnerHistory::setLastModifiedDate(const std::optional< int >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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::Ifc4x3_rc1::IfcPersonAndOrganization Ifc4x3_rc1::IfcOwnerHistory::LastModifyingUser() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcPersonAndOrganization{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcPersonAndOrganization>(); }
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void Ifc4x3_rc1::IfcOwnerHistory::setLastModifyingUser(const ::Ifc4x3_rc1::IfcPersonAndOrganization& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcApplication Ifc4x3_rc1::IfcOwnerHistory::LastModifyingApplication() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcApplication{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcApplication>(); }
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void Ifc4x3_rc1::IfcOwnerHistory::setLastModifyingApplication(const ::Ifc4x3_rc1::IfcApplication& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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int Ifc4x3_rc1::IfcOwnerHistory::CreationDate() const { int v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcOwnerHistory::setCreationDate(const int& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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const IfcParse::entity& Ifc4x3_rc1::IfcOwnerHistory::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[736]); }
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void Ifc4x3_rc1::IfcOwnerHistory::initialize(::Ifc4x3_rc1::IfcPersonAndOrganization v1_OwningUser, ::Ifc4x3_rc1::IfcApplication v2_OwningApplication, std::optional< ::Ifc4x3_rc1::IfcStateEnum::Value > v3_State, std::optional< ::Ifc4x3_rc1::IfcChangeActionEnum::Value > v4_ChangeAction, std::optional< int > v5_LastModifiedDate, ::Ifc4x3_rc1::IfcPersonAndOrganization v6_LastModifyingUser, ::Ifc4x3_rc1::IfcApplication v7_LastModifyingApplication, int v8_CreationDate) { set_attribute_value(0, (v1_OwningUser));set_attribute_value(1, (v2_OwningApplication)); if (v3_State) {set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcStateEnum::Class(),(size_t)*v3_State))); } if (v4_ChangeAction) {set_attribute_value(3, (EnumerationReference(&::Ifc4x3_rc1::IfcChangeActionEnum::Class(),(size_t)*v4_ChangeAction))); } if (v5_LastModifiedDate) {set_attribute_value(4, (*v5_LastModifiedDate)); }set_attribute_value(5, (v6_LastModifyingUser));set_attribute_value(6, (v7_LastModifyingApplication));set_attribute_value(7, (v8_CreationDate)); }
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// Function implementations for IfcParameterizedProfileDef
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::Ifc4x3_rc1::IfcAxis2Placement2D Ifc4x3_rc1::IfcParameterizedProfileDef::Position() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcAxis2Placement2D{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcAxis2Placement2D>(); }
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void Ifc4x3_rc1::IfcParameterizedProfileDef::setPosition(const ::Ifc4x3_rc1::IfcAxis2Placement2D& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcParameterizedProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[737]); }
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void Ifc4x3_rc1::IfcParameterizedProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position)); }
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// Function implementations for IfcPath
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std::vector< ::Ifc4x3_rc1::IfcOrientedEdge > Ifc4x3_rc1::IfcPath::EdgeList() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcOrientedEdge>(es); }
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void Ifc4x3_rc1::IfcPath::setEdgeList(const std::vector< ::Ifc4x3_rc1::IfcOrientedEdge >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPath::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[739]); }
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void Ifc4x3_rc1::IfcPath::initialize(std::vector< ::Ifc4x3_rc1::IfcOrientedEdge > v1_EdgeList) { set_attribute_value(0, cast_vector<express::Base>(v1_EdgeList)); }
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// Function implementations for IfcPavement
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std::optional< bool > Ifc4x3_rc1::IfcPavement::Flexible() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } bool v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcPavement::setFlexible(const std::optional< bool >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPavement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[740]); }
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void Ifc4x3_rc1::IfcPavement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< bool > v9_Flexible) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_Flexible) {set_attribute_value(8, (*v9_Flexible)); } }
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// Function implementations for IfcPavementType
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bool Ifc4x3_rc1::IfcPavementType::Flexible() const { bool v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcPavementType::setFlexible(const bool& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPavementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[741]); }
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void Ifc4x3_rc1::IfcPavementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, bool v10_Flexible) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (v10_Flexible)); }
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// Function implementations for IfcPcurve
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::Ifc4x3_rc1::IfcSurface Ifc4x3_rc1::IfcPcurve::BasisSurface() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcSurface>(); }
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void Ifc4x3_rc1::IfcPcurve::setBasisSurface(const ::Ifc4x3_rc1::IfcSurface& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcPcurve::ReferenceCurve() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcPcurve::setReferenceCurve(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPcurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[742]); }
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void Ifc4x3_rc1::IfcPcurve::initialize(::Ifc4x3_rc1::IfcSurface v1_BasisSurface, ::Ifc4x3_rc1::IfcCurve v2_ReferenceCurve) { set_attribute_value(0, (v1_BasisSurface));set_attribute_value(1, (v2_ReferenceCurve)); }
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// Function implementations for IfcPerformanceHistory
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std::string Ifc4x3_rc1::IfcPerformanceHistory::LifeCyclePhase() const { std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcPerformanceHistory::setLifeCyclePhase(const std::string& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< ::Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Value > Ifc4x3_rc1::IfcPerformanceHistory::PredefinedType() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcPerformanceHistory::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Value >& v) { if (v) {set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(7);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPerformanceHistory::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[743]); }
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void Ifc4x3_rc1::IfcPerformanceHistory::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::string v7_LifeCyclePhase, std::optional< ::Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Value > v8_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); }set_attribute_value(6, (v7_LifeCyclePhase)); if (v8_PredefinedType) {set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcPerformanceHistoryTypeEnum::Class(),(size_t)*v8_PredefinedType))); } }
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// Function implementations for IfcPermeableCoveringProperties
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::Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Value Ifc4x3_rc1::IfcPermeableCoveringProperties::OperationType() const { return ::Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::FromString(get_attribute_value(4)); }
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void Ifc4x3_rc1::IfcPermeableCoveringProperties::setOperationType(const ::Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Value& v) { set_attribute_value(4, EnumerationReference(&::Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value Ifc4x3_rc1::IfcPermeableCoveringProperties::PanelPosition() const { return ::Ifc4x3_rc1::IfcWindowPanelPositionEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcPermeableCoveringProperties::setPanelPosition(const ::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value& v) { set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(5); }
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std::optional< double > Ifc4x3_rc1::IfcPermeableCoveringProperties::FrameDepth() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcPermeableCoveringProperties::setFrameDepth(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< double > Ifc4x3_rc1::IfcPermeableCoveringProperties::FrameThickness() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcPermeableCoveringProperties::setFrameThickness(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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::Ifc4x3_rc1::IfcShapeAspect Ifc4x3_rc1::IfcPermeableCoveringProperties::ShapeAspectStyle() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcShapeAspect{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcShapeAspect>(); }
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void Ifc4x3_rc1::IfcPermeableCoveringProperties::setShapeAspectStyle(const ::Ifc4x3_rc1::IfcShapeAspect& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPermeableCoveringProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[746]); }
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void Ifc4x3_rc1::IfcPermeableCoveringProperties::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Value v5_OperationType, ::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value v6_PanelPosition, std::optional< double > v7_FrameDepth, std::optional< double > v8_FrameThickness, ::Ifc4x3_rc1::IfcShapeAspect v9_ShapeAspectStyle) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (EnumerationReference(&::Ifc4x3_rc1::IfcPermeableCoveringOperationEnum::Class(),(size_t)v5_OperationType)));set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Class(),(size_t)v6_PanelPosition))); if (v7_FrameDepth) {set_attribute_value(6, (*v7_FrameDepth)); } if (v8_FrameThickness) {set_attribute_value(7, (*v8_FrameThickness)); }set_attribute_value(8, (v9_ShapeAspectStyle)); }
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// Function implementations for IfcPermit
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std::optional< ::Ifc4x3_rc1::IfcPermitTypeEnum::Value > Ifc4x3_rc1::IfcPermit::PredefinedType() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcPermitTypeEnum::FromString(get_attribute_value(6)); }
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void Ifc4x3_rc1::IfcPermit::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcPermitTypeEnum::Value >& v) { if (v) {set_attribute_value(6, EnumerationReference(&::Ifc4x3_rc1::IfcPermitTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPermit::Status() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcPermit::setStatus(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPermit::LongDescription() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcPermit::setLongDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPermit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[747]); }
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void Ifc4x3_rc1::IfcPermit::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< ::Ifc4x3_rc1::IfcPermitTypeEnum::Value > v7_PredefinedType, std::optional< std::string > v8_Status, std::optional< std::string > v9_LongDescription) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_PredefinedType) {set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcPermitTypeEnum::Class(),(size_t)*v7_PredefinedType))); } if (v8_Status) {set_attribute_value(7, (*v8_Status)); } if (v9_LongDescription) {set_attribute_value(8, (*v9_LongDescription)); } }
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// Function implementations for IfcPerson
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std::optional< std::string > Ifc4x3_rc1::IfcPerson::Identification() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcPerson::setIdentification(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPerson::FamilyName() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcPerson::setFamilyName(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPerson::GivenName() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcPerson::setGivenName(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcPerson::MiddleNames() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcPerson::setMiddleNames(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcPerson::PrefixTitles() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcPerson::setPrefixTitles(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcPerson::SuffixTitles() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcPerson::setSuffixTitles(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcActorRole > > Ifc4x3_rc1::IfcPerson::Roles() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(6); return cast_vector<::Ifc4x3_rc1::IfcActorRole>(es); }
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void Ifc4x3_rc1::IfcPerson::setRoles(const std::optional< std::vector< ::Ifc4x3_rc1::IfcActorRole > >& v) { if (v) {set_attribute_value(6, cast_vector<express::Base>(*v));} else {unset_attribute_value(6);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcAddress > > Ifc4x3_rc1::IfcPerson::Addresses() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcAddress>(es); }
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void Ifc4x3_rc1::IfcPerson::setAddresses(const std::optional< std::vector< ::Ifc4x3_rc1::IfcAddress > >& v) { if (v) {set_attribute_value(7, cast_vector<express::Base>(*v));} else {unset_attribute_value(7);} }
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std::vector<::Ifc4x3_rc1::IfcPersonAndOrganization> Ifc4x3_rc1::IfcPerson::EngagedIn() const { return cast_vector<IfcPersonAndOrganization>(file()->getInverse(data()->id(), IFC4X3_RC1_types[750], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPerson::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[749]); }
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void Ifc4x3_rc1::IfcPerson::initialize(std::optional< std::string > v1_Identification, std::optional< std::string > v2_FamilyName, std::optional< std::string > v3_GivenName, std::optional< std::vector< std::string > /*[1:?]*/ > v4_MiddleNames, std::optional< std::vector< std::string > /*[1:?]*/ > v5_PrefixTitles, std::optional< std::vector< std::string > /*[1:?]*/ > v6_SuffixTitles, std::optional< std::vector< ::Ifc4x3_rc1::IfcActorRole > > v7_Roles, std::optional< std::vector< ::Ifc4x3_rc1::IfcAddress > > v8_Addresses) { if (v1_Identification) {set_attribute_value(0, (*v1_Identification)); } if (v2_FamilyName) {set_attribute_value(1, (*v2_FamilyName)); } if (v3_GivenName) {set_attribute_value(2, (*v3_GivenName)); } if (v4_MiddleNames) {set_attribute_value(3, (*v4_MiddleNames)); } if (v5_PrefixTitles) {set_attribute_value(4, (*v5_PrefixTitles)); } if (v6_SuffixTitles) {set_attribute_value(5, (*v6_SuffixTitles)); } if (v7_Roles) {set_attribute_value(6, cast_vector<express::Base>(*v7_Roles)); } if (v8_Addresses) {set_attribute_value(7, cast_vector<express::Base>(*v8_Addresses)); } }
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// Function implementations for IfcPersonAndOrganization
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::Ifc4x3_rc1::IfcPerson Ifc4x3_rc1::IfcPersonAndOrganization::ThePerson() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcPerson>(); }
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void Ifc4x3_rc1::IfcPersonAndOrganization::setThePerson(const ::Ifc4x3_rc1::IfcPerson& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcOrganization Ifc4x3_rc1::IfcPersonAndOrganization::TheOrganization() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcOrganization>(); }
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void Ifc4x3_rc1::IfcPersonAndOrganization::setTheOrganization(const ::Ifc4x3_rc1::IfcOrganization& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcActorRole > > Ifc4x3_rc1::IfcPersonAndOrganization::Roles() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcActorRole>(es); }
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void Ifc4x3_rc1::IfcPersonAndOrganization::setRoles(const std::optional< std::vector< ::Ifc4x3_rc1::IfcActorRole > >& v) { if (v) {set_attribute_value(2, cast_vector<express::Base>(*v));} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPersonAndOrganization::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[750]); }
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void Ifc4x3_rc1::IfcPersonAndOrganization::initialize(::Ifc4x3_rc1::IfcPerson v1_ThePerson, ::Ifc4x3_rc1::IfcOrganization v2_TheOrganization, std::optional< std::vector< ::Ifc4x3_rc1::IfcActorRole > > v3_Roles) { set_attribute_value(0, (v1_ThePerson));set_attribute_value(1, (v2_TheOrganization)); if (v3_Roles) {set_attribute_value(2, cast_vector<express::Base>(*v3_Roles)); } }
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// Function implementations for IfcPhysicalComplexQuantity
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std::vector< ::Ifc4x3_rc1::IfcPhysicalQuantity > Ifc4x3_rc1::IfcPhysicalComplexQuantity::HasQuantities() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcPhysicalQuantity>(es); }
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void Ifc4x3_rc1::IfcPhysicalComplexQuantity::setHasQuantities(const std::vector< ::Ifc4x3_rc1::IfcPhysicalQuantity >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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std::string Ifc4x3_rc1::IfcPhysicalComplexQuantity::Discrimination() const { std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcPhysicalComplexQuantity::setDiscrimination(const std::string& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcPhysicalComplexQuantity::Quality() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcPhysicalComplexQuantity::setQuality(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPhysicalComplexQuantity::Usage() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcPhysicalComplexQuantity::setUsage(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPhysicalComplexQuantity::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[752]); }
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void Ifc4x3_rc1::IfcPhysicalComplexQuantity::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcPhysicalQuantity > v3_HasQuantities, std::string v4_Discrimination, std::optional< std::string > v5_Quality, std::optional< std::string > v6_Usage) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_HasQuantities));set_attribute_value(3, (v4_Discrimination)); if (v5_Quality) {set_attribute_value(4, (*v5_Quality)); } if (v6_Usage) {set_attribute_value(5, (*v6_Usage)); } }
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// Function implementations for IfcPhysicalQuantity
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std::string Ifc4x3_rc1::IfcPhysicalQuantity::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcPhysicalQuantity::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcPhysicalQuantity::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcPhysicalQuantity::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcPhysicalQuantity::HasExternalReferences() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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std::vector<::Ifc4x3_rc1::IfcPhysicalComplexQuantity> Ifc4x3_rc1::IfcPhysicalQuantity::PartOfComplex() const { return cast_vector<IfcPhysicalComplexQuantity>(file()->getInverse(data()->id(), IFC4X3_RC1_types[752], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPhysicalQuantity::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[754]); }
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void Ifc4x3_rc1::IfcPhysicalQuantity::initialize(std::string v1_Name, std::optional< std::string > v2_Description) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } }
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// Function implementations for IfcPhysicalSimpleQuantity
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::Ifc4x3_rc1::IfcNamedUnit Ifc4x3_rc1::IfcPhysicalSimpleQuantity::Unit() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcNamedUnit{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcNamedUnit>(); }
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void Ifc4x3_rc1::IfcPhysicalSimpleQuantity::setUnit(const ::Ifc4x3_rc1::IfcNamedUnit& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPhysicalSimpleQuantity::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[755]); }
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void Ifc4x3_rc1::IfcPhysicalSimpleQuantity::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcNamedUnit v3_Unit) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Unit)); }
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// Function implementations for IfcPile
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std::optional< ::Ifc4x3_rc1::IfcPileTypeEnum::Value > Ifc4x3_rc1::IfcPile::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcPileTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcPile::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcPileTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcPileTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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std::optional< ::Ifc4x3_rc1::IfcPileConstructionEnum::Value > Ifc4x3_rc1::IfcPile::ConstructionType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcPileConstructionEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcPile::setConstructionType(const std::optional< ::Ifc4x3_rc1::IfcPileConstructionEnum::Value >& v) { if (v) {set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcPileConstructionEnum::Class(), (size_t) *v));} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPile::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[756]); }
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void Ifc4x3_rc1::IfcPile::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcPileTypeEnum::Value > v9_PredefinedType, std::optional< ::Ifc4x3_rc1::IfcPileConstructionEnum::Value > v10_ConstructionType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcPileTypeEnum::Class(),(size_t)*v9_PredefinedType))); } if (v10_ConstructionType) {set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcPileConstructionEnum::Class(),(size_t)*v10_ConstructionType))); } }
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// Function implementations for IfcPileType
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::Ifc4x3_rc1::IfcPileTypeEnum::Value Ifc4x3_rc1::IfcPileType::PredefinedType() const { return ::Ifc4x3_rc1::IfcPileTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcPileType::setPredefinedType(const ::Ifc4x3_rc1::IfcPileTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcPileTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPileType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[758]); }
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void Ifc4x3_rc1::IfcPileType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcPileTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcPileTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcPipeFitting
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std::optional< ::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value > Ifc4x3_rc1::IfcPipeFitting::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcPipeFittingTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcPipeFitting::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPipeFitting::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[760]); }
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void Ifc4x3_rc1::IfcPipeFitting::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcPipeFittingType
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::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value Ifc4x3_rc1::IfcPipeFittingType::PredefinedType() const { return ::Ifc4x3_rc1::IfcPipeFittingTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcPipeFittingType::setPredefinedType(const ::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPipeFittingType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[761]); }
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void Ifc4x3_rc1::IfcPipeFittingType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcPipeFittingTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcPipeSegment
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std::optional< ::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value > Ifc4x3_rc1::IfcPipeSegment::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcPipeSegment::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPipeSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[763]); }
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void Ifc4x3_rc1::IfcPipeSegment::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcPipeSegmentType
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::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value Ifc4x3_rc1::IfcPipeSegmentType::PredefinedType() const { return ::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcPipeSegmentType::setPredefinedType(const ::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPipeSegmentType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[764]); }
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void Ifc4x3_rc1::IfcPipeSegmentType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcPipeSegmentTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcPixelTexture
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int Ifc4x3_rc1::IfcPixelTexture::Width() const { int v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcPixelTexture::setWidth(const int& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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int Ifc4x3_rc1::IfcPixelTexture::Height() const { int v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcPixelTexture::setHeight(const int& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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int Ifc4x3_rc1::IfcPixelTexture::ColourComponents() const { int v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcPixelTexture::setColourComponents(const int& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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std::vector< boost::dynamic_bitset<> > /*[1:?]*/ Ifc4x3_rc1::IfcPixelTexture::Pixel() const { std::vector< boost::dynamic_bitset<> > /*[1:?]*/ v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcPixelTexture::setPixel(const std::vector< boost::dynamic_bitset<> > /*[1:?]*/& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPixelTexture::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[766]); }
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void Ifc4x3_rc1::IfcPixelTexture::initialize(bool v1_RepeatS, bool v2_RepeatT, std::optional< std::string > v3_Mode, ::Ifc4x3_rc1::IfcCartesianTransformationOperator2D v4_TextureTransform, std::optional< std::vector< std::string > /*[1:?]*/ > v5_Parameter, int v6_Width, int v7_Height, int v8_ColourComponents, std::vector< boost::dynamic_bitset<> > /*[1:?]*/ v9_Pixel) { set_attribute_value(0, (v1_RepeatS));set_attribute_value(1, (v2_RepeatT)); if (v3_Mode) {set_attribute_value(2, (*v3_Mode)); }set_attribute_value(3, (v4_TextureTransform)); if (v5_Parameter) {set_attribute_value(4, (*v5_Parameter)); }set_attribute_value(5, (v6_Width));set_attribute_value(6, (v7_Height));set_attribute_value(7, (v8_ColourComponents));set_attribute_value(8, (v9_Pixel)); }
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// Function implementations for IfcPlacement
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::Ifc4x3_rc1::IfcCartesianPoint Ifc4x3_rc1::IfcPlacement::Location() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCartesianPoint>(); }
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void Ifc4x3_rc1::IfcPlacement::setLocation(const ::Ifc4x3_rc1::IfcCartesianPoint& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPlacement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[767]); }
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void Ifc4x3_rc1::IfcPlacement::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_Location) { set_attribute_value(0, (v1_Location)); }
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// Function implementations for IfcPlanarBox
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::Ifc4x3_rc1::IfcAxis2Placement Ifc4x3_rc1::IfcPlanarBox::Placement() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcAxis2Placement>(); }
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void Ifc4x3_rc1::IfcPlanarBox::setPlacement(const ::Ifc4x3_rc1::IfcAxis2Placement& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPlanarBox::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[768]); }
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void Ifc4x3_rc1::IfcPlanarBox::initialize(double v1_SizeInX, double v2_SizeInY, ::Ifc4x3_rc1::IfcAxis2Placement v3_Placement) { set_attribute_value(0, (v1_SizeInX));set_attribute_value(1, (v2_SizeInY));set_attribute_value(2, (v3_Placement)); }
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// Function implementations for IfcPlanarExtent
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double Ifc4x3_rc1::IfcPlanarExtent::SizeInX() const { double v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcPlanarExtent::setSizeInX(const double& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcPlanarExtent::SizeInY() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcPlanarExtent::setSizeInY(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPlanarExtent::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[769]); }
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void Ifc4x3_rc1::IfcPlanarExtent::initialize(double v1_SizeInX, double v2_SizeInY) { set_attribute_value(0, (v1_SizeInX));set_attribute_value(1, (v2_SizeInY)); }
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// Function implementations for IfcPlane
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const IfcParse::entity& Ifc4x3_rc1::IfcPlane::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[771]); }
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void Ifc4x3_rc1::IfcPlane::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position) { set_attribute_value(0, (v1_Position)); }
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// Function implementations for IfcPlant
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const IfcParse::entity& Ifc4x3_rc1::IfcPlant::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[773]); }
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void Ifc4x3_rc1::IfcPlant::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGeographicElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcPlate
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std::optional< ::Ifc4x3_rc1::IfcPlateTypeEnum::Value > Ifc4x3_rc1::IfcPlate::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcPlateTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcPlate::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcPlateTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcPlateTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPlate::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[774]); }
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void Ifc4x3_rc1::IfcPlate::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcPlateTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcPlateTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcPlateStandardCase
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const IfcParse::entity& Ifc4x3_rc1::IfcPlateStandardCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[775]); }
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void Ifc4x3_rc1::IfcPlateStandardCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcPlateTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcPlateTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcPlateType
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::Ifc4x3_rc1::IfcPlateTypeEnum::Value Ifc4x3_rc1::IfcPlateType::PredefinedType() const { return ::Ifc4x3_rc1::IfcPlateTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcPlateType::setPredefinedType(const ::Ifc4x3_rc1::IfcPlateTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcPlateTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPlateType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[776]); }
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void Ifc4x3_rc1::IfcPlateType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcPlateTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcPlateTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcPoint
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const IfcParse::entity& Ifc4x3_rc1::IfcPoint::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[778]); }
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void Ifc4x3_rc1::IfcPoint::initialize() { }
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// Function implementations for IfcPointOnCurve
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcPointOnCurve::BasisCurve() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcPointOnCurve::setBasisCurve(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcPointOnCurve::PointParameter() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcPointOnCurve::setPointParameter(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPointOnCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[779]); }
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void Ifc4x3_rc1::IfcPointOnCurve::initialize(::Ifc4x3_rc1::IfcCurve v1_BasisCurve, double v2_PointParameter) { set_attribute_value(0, (v1_BasisCurve));set_attribute_value(1, (v2_PointParameter)); }
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// Function implementations for IfcPointOnSurface
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::Ifc4x3_rc1::IfcSurface Ifc4x3_rc1::IfcPointOnSurface::BasisSurface() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcSurface>(); }
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void Ifc4x3_rc1::IfcPointOnSurface::setBasisSurface(const ::Ifc4x3_rc1::IfcSurface& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcPointOnSurface::PointParameterU() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcPointOnSurface::setPointParameterU(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcPointOnSurface::PointParameterV() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcPointOnSurface::setPointParameterV(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPointOnSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[780]); }
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void Ifc4x3_rc1::IfcPointOnSurface::initialize(::Ifc4x3_rc1::IfcSurface v1_BasisSurface, double v2_PointParameterU, double v3_PointParameterV) { set_attribute_value(0, (v1_BasisSurface));set_attribute_value(1, (v2_PointParameterU));set_attribute_value(2, (v3_PointParameterV)); }
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// Function implementations for IfcPolyLoop
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std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > Ifc4x3_rc1::IfcPolyLoop::Polygon() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcCartesianPoint>(es); }
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void Ifc4x3_rc1::IfcPolyLoop::setPolygon(const std::vector< ::Ifc4x3_rc1::IfcCartesianPoint >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPolyLoop::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[785]); }
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void Ifc4x3_rc1::IfcPolyLoop::initialize(std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > v1_Polygon) { set_attribute_value(0, cast_vector<express::Base>(v1_Polygon)); }
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// Function implementations for IfcPolygonalBoundedHalfSpace
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcPolygonalBoundedHalfSpace::Position() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcPolygonalBoundedHalfSpace::setPosition(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcBoundedCurve Ifc4x3_rc1::IfcPolygonalBoundedHalfSpace::PolygonalBoundary() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcBoundedCurve>(); }
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void Ifc4x3_rc1::IfcPolygonalBoundedHalfSpace::setPolygonalBoundary(const ::Ifc4x3_rc1::IfcBoundedCurve& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPolygonalBoundedHalfSpace::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[782]); }
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void Ifc4x3_rc1::IfcPolygonalBoundedHalfSpace::initialize(::Ifc4x3_rc1::IfcSurface v1_BaseSurface, bool v2_AgreementFlag, ::Ifc4x3_rc1::IfcAxis2Placement3D v3_Position, ::Ifc4x3_rc1::IfcBoundedCurve v4_PolygonalBoundary) { set_attribute_value(0, (v1_BaseSurface));set_attribute_value(1, (v2_AgreementFlag));set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_PolygonalBoundary)); }
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// Function implementations for IfcPolygonalFaceSet
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std::optional< bool > Ifc4x3_rc1::IfcPolygonalFaceSet::Closed() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } bool v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcPolygonalFaceSet::setClosed(const std::optional< bool >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::vector< ::Ifc4x3_rc1::IfcIndexedPolygonalFace > Ifc4x3_rc1::IfcPolygonalFaceSet::Faces() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcIndexedPolygonalFace>(es); }
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void Ifc4x3_rc1::IfcPolygonalFaceSet::setFaces(const std::vector< ::Ifc4x3_rc1::IfcIndexedPolygonalFace >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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std::optional< std::vector< int > /*[1:?]*/ > Ifc4x3_rc1::IfcPolygonalFaceSet::PnIndex() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::vector< int > /*[1:?]*/ v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcPolygonalFaceSet::setPnIndex(const std::optional< std::vector< int > /*[1:?]*/ >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPolygonalFaceSet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[783]); }
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void Ifc4x3_rc1::IfcPolygonalFaceSet::initialize(::Ifc4x3_rc1::IfcCartesianPointList3D v1_Coordinates, std::optional< bool > v2_Closed, std::vector< ::Ifc4x3_rc1::IfcIndexedPolygonalFace > v3_Faces, std::optional< std::vector< int > /*[1:?]*/ > v4_PnIndex) { set_attribute_value(0, (v1_Coordinates)); if (v2_Closed) {set_attribute_value(1, (*v2_Closed)); }set_attribute_value(2, cast_vector<express::Base>(v3_Faces)); if (v4_PnIndex) {set_attribute_value(3, (*v4_PnIndex)); } }
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// Function implementations for IfcPolyline
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std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > Ifc4x3_rc1::IfcPolyline::Points() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcCartesianPoint>(es); }
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void Ifc4x3_rc1::IfcPolyline::setPoints(const std::vector< ::Ifc4x3_rc1::IfcCartesianPoint >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPolyline::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[784]); }
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void Ifc4x3_rc1::IfcPolyline::initialize(std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > v1_Points) { set_attribute_value(0, cast_vector<express::Base>(v1_Points)); }
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// Function implementations for IfcPort
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std::vector<::Ifc4x3_rc1::IfcRelConnectsPortToElement> Ifc4x3_rc1::IfcPort::ContainedIn() const { return cast_vector<IfcRelConnectsPortToElement>(file()->getInverse(data()->id(), IFC4X3_RC1_types[932], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelConnectsPorts> Ifc4x3_rc1::IfcPort::ConnectedFrom() const { return cast_vector<IfcRelConnectsPorts>(file()->getInverse(data()->id(), IFC4X3_RC1_types[931], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelConnectsPorts> Ifc4x3_rc1::IfcPort::ConnectedTo() const { return cast_vector<IfcRelConnectsPorts>(file()->getInverse(data()->id(), IFC4X3_RC1_types[931], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPort::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[786]); }
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void Ifc4x3_rc1::IfcPort::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); }
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// Function implementations for IfcPositioningElement
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std::vector<::Ifc4x3_rc1::IfcRelContainedInSpatialStructure> Ifc4x3_rc1::IfcPositioningElement::ContainedInStructure() const { return cast_vector<IfcRelContainedInSpatialStructure>(file()->getInverse(data()->id(), IFC4X3_RC1_types[937], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelPositions> Ifc4x3_rc1::IfcPositioningElement::Positions() const { return cast_vector<IfcRelPositions>(file()->getInverse(data()->id(), IFC4X3_RC1_types[951], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPositioningElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[787]); }
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void Ifc4x3_rc1::IfcPositioningElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); }
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// Function implementations for IfcPostalAddress
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std::optional< std::string > Ifc4x3_rc1::IfcPostalAddress::InternalLocation() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcPostalAddress::setInternalLocation(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcPostalAddress::AddressLines() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcPostalAddress::setAddressLines(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPostalAddress::PostalBox() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcPostalAddress::setPostalBox(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPostalAddress::Town() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcPostalAddress::setTown(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPostalAddress::Region() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcPostalAddress::setRegion(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPostalAddress::PostalCode() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcPostalAddress::setPostalCode(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPostalAddress::Country() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::string v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcPostalAddress::setCountry(const std::optional< std::string >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPostalAddress::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[792]); }
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void Ifc4x3_rc1::IfcPostalAddress::initialize(std::optional< ::Ifc4x3_rc1::IfcAddressTypeEnum::Value > v1_Purpose, std::optional< std::string > v2_Description, std::optional< std::string > v3_UserDefinedPurpose, std::optional< std::string > v4_InternalLocation, std::optional< std::vector< std::string > /*[1:?]*/ > v5_AddressLines, std::optional< std::string > v6_PostalBox, std::optional< std::string > v7_Town, std::optional< std::string > v8_Region, std::optional< std::string > v9_PostalCode, std::optional< std::string > v10_Country) { if (v1_Purpose) {set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcAddressTypeEnum::Class(),(size_t)*v1_Purpose))); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_UserDefinedPurpose) {set_attribute_value(2, (*v3_UserDefinedPurpose)); } if (v4_InternalLocation) {set_attribute_value(3, (*v4_InternalLocation)); } if (v5_AddressLines) {set_attribute_value(4, (*v5_AddressLines)); } if (v6_PostalBox) {set_attribute_value(5, (*v6_PostalBox)); } if (v7_Town) {set_attribute_value(6, (*v7_Town)); } if (v8_Region) {set_attribute_value(7, (*v8_Region)); } if (v9_PostalCode) {set_attribute_value(8, (*v9_PostalCode)); } if (v10_Country) {set_attribute_value(9, (*v10_Country)); } }
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// Function implementations for IfcPreDefinedColour
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const IfcParse::entity& Ifc4x3_rc1::IfcPreDefinedColour::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[794]); }
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void Ifc4x3_rc1::IfcPreDefinedColour::initialize(std::string v1_Name) { set_attribute_value(0, (v1_Name)); }
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// Function implementations for IfcPreDefinedCurveFont
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const IfcParse::entity& Ifc4x3_rc1::IfcPreDefinedCurveFont::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[795]); }
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void Ifc4x3_rc1::IfcPreDefinedCurveFont::initialize(std::string v1_Name) { set_attribute_value(0, (v1_Name)); }
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// Function implementations for IfcPreDefinedItem
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std::string Ifc4x3_rc1::IfcPreDefinedItem::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcPreDefinedItem::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPreDefinedItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[796]); }
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void Ifc4x3_rc1::IfcPreDefinedItem::initialize(std::string v1_Name) { set_attribute_value(0, (v1_Name)); }
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// Function implementations for IfcPreDefinedProperties
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const IfcParse::entity& Ifc4x3_rc1::IfcPreDefinedProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[797]); }
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void Ifc4x3_rc1::IfcPreDefinedProperties::initialize() { }
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// Function implementations for IfcPreDefinedPropertySet
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const IfcParse::entity& Ifc4x3_rc1::IfcPreDefinedPropertySet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[798]); }
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void Ifc4x3_rc1::IfcPreDefinedPropertySet::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcPreDefinedTextFont
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const IfcParse::entity& Ifc4x3_rc1::IfcPreDefinedTextFont::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[799]); }
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void Ifc4x3_rc1::IfcPreDefinedTextFont::initialize(std::string v1_Name) { set_attribute_value(0, (v1_Name)); }
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// Function implementations for IfcPresentationItem
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const IfcParse::entity& Ifc4x3_rc1::IfcPresentationItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[802]); }
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void Ifc4x3_rc1::IfcPresentationItem::initialize() { }
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// Function implementations for IfcPresentationLayerAssignment
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std::string Ifc4x3_rc1::IfcPresentationLayerAssignment::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcPresentationLayerAssignment::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcPresentationLayerAssignment::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcPresentationLayerAssignment::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::vector< ::Ifc4x3_rc1::IfcLayeredItem > Ifc4x3_rc1::IfcPresentationLayerAssignment::AssignedItems() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcLayeredItem>(es); }
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void Ifc4x3_rc1::IfcPresentationLayerAssignment::setAssignedItems(const std::vector< ::Ifc4x3_rc1::IfcLayeredItem >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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std::optional< std::string > Ifc4x3_rc1::IfcPresentationLayerAssignment::Identifier() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcPresentationLayerAssignment::setIdentifier(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPresentationLayerAssignment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[803]); }
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void Ifc4x3_rc1::IfcPresentationLayerAssignment::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcLayeredItem > v3_AssignedItems, std::optional< std::string > v4_Identifier) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_AssignedItems)); if (v4_Identifier) {set_attribute_value(3, (*v4_Identifier)); } }
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// Function implementations for IfcPresentationLayerWithStyle
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boost::logic::tribool Ifc4x3_rc1::IfcPresentationLayerWithStyle::LayerOn() const { boost::logic::tribool v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcPresentationLayerWithStyle::setLayerOn(const boost::logic::tribool& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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boost::logic::tribool Ifc4x3_rc1::IfcPresentationLayerWithStyle::LayerFrozen() const { boost::logic::tribool v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcPresentationLayerWithStyle::setLayerFrozen(const boost::logic::tribool& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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boost::logic::tribool Ifc4x3_rc1::IfcPresentationLayerWithStyle::LayerBlocked() const { boost::logic::tribool v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcPresentationLayerWithStyle::setLayerBlocked(const boost::logic::tribool& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::vector< ::Ifc4x3_rc1::IfcPresentationStyle > Ifc4x3_rc1::IfcPresentationLayerWithStyle::LayerStyles() const { std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcPresentationStyle>(es); }
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void Ifc4x3_rc1::IfcPresentationLayerWithStyle::setLayerStyles(const std::vector< ::Ifc4x3_rc1::IfcPresentationStyle >& v) { set_attribute_value(7, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(7); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPresentationLayerWithStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[804]); }
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void Ifc4x3_rc1::IfcPresentationLayerWithStyle::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcLayeredItem > v3_AssignedItems, std::optional< std::string > v4_Identifier, boost::logic::tribool v5_LayerOn, boost::logic::tribool v6_LayerFrozen, boost::logic::tribool v7_LayerBlocked, std::vector< ::Ifc4x3_rc1::IfcPresentationStyle > v8_LayerStyles) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_AssignedItems)); if (v4_Identifier) {set_attribute_value(3, (*v4_Identifier)); }set_attribute_value(4, (v5_LayerOn));set_attribute_value(5, (v6_LayerFrozen));set_attribute_value(6, (v7_LayerBlocked));set_attribute_value(7, cast_vector<express::Base>(v8_LayerStyles)); }
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// Function implementations for IfcPresentationStyle
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std::optional< std::string > Ifc4x3_rc1::IfcPresentationStyle::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcPresentationStyle::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPresentationStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[805]); }
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void Ifc4x3_rc1::IfcPresentationStyle::initialize(std::optional< std::string > v1_Name) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } }
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// Function implementations for IfcPresentationStyleAssignment
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std::vector< ::Ifc4x3_rc1::IfcPresentationStyleSelect > Ifc4x3_rc1::IfcPresentationStyleAssignment::Styles() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcPresentationStyleSelect>(es); }
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void Ifc4x3_rc1::IfcPresentationStyleAssignment::setStyles(const std::vector< ::Ifc4x3_rc1::IfcPresentationStyleSelect >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPresentationStyleAssignment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[806]); }
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void Ifc4x3_rc1::IfcPresentationStyleAssignment::initialize(std::vector< ::Ifc4x3_rc1::IfcPresentationStyleSelect > v1_Styles) { set_attribute_value(0, cast_vector<express::Base>(v1_Styles)); }
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// Function implementations for IfcProcedure
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std::optional< ::Ifc4x3_rc1::IfcProcedureTypeEnum::Value > Ifc4x3_rc1::IfcProcedure::PredefinedType() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcProcedureTypeEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcProcedure::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcProcedureTypeEnum::Value >& v) { if (v) {set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcProcedureTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(7);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcProcedure::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[809]); }
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void Ifc4x3_rc1::IfcProcedure::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, std::optional< ::Ifc4x3_rc1::IfcProcedureTypeEnum::Value > v8_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); } if (v8_PredefinedType) {set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcProcedureTypeEnum::Class(),(size_t)*v8_PredefinedType))); } }
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// Function implementations for IfcProcedureType
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::Ifc4x3_rc1::IfcProcedureTypeEnum::Value Ifc4x3_rc1::IfcProcedureType::PredefinedType() const { return ::Ifc4x3_rc1::IfcProcedureTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcProcedureType::setPredefinedType(const ::Ifc4x3_rc1::IfcProcedureTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcProcedureTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProcedureType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[810]); }
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void Ifc4x3_rc1::IfcProcedureType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ProcessType, ::Ifc4x3_rc1::IfcProcedureTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ProcessType) {set_attribute_value(8, (*v9_ProcessType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcProcedureTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcProcess
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std::optional< std::string > Ifc4x3_rc1::IfcProcess::Identification() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcProcess::setIdentification(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcProcess::LongDescription() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcProcess::setLongDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::vector<::Ifc4x3_rc1::IfcRelSequence> Ifc4x3_rc1::IfcProcess::IsPredecessorTo() const { return cast_vector<IfcRelSequence>(file()->getInverse(data()->id(), IFC4X3_RC1_types[954], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelSequence> Ifc4x3_rc1::IfcProcess::IsSuccessorFrom() const { return cast_vector<IfcRelSequence>(file()->getInverse(data()->id(), IFC4X3_RC1_types[954], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelAssignsToProcess> Ifc4x3_rc1::IfcProcess::OperatesOn() const { return cast_vector<IfcRelAssignsToProcess>(file()->getInverse(data()->id(), IFC4X3_RC1_types[916], 6)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProcess::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[812]); }
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void Ifc4x3_rc1::IfcProcess::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); } }
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// Function implementations for IfcProduct
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::Ifc4x3_rc1::IfcObjectPlacement Ifc4x3_rc1::IfcProduct::ObjectPlacement() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcObjectPlacement{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcObjectPlacement>(); }
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void Ifc4x3_rc1::IfcProduct::setObjectPlacement(const ::Ifc4x3_rc1::IfcObjectPlacement& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcProductRepresentation Ifc4x3_rc1::IfcProduct::Representation() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcProductRepresentation{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcProductRepresentation>(); }
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void Ifc4x3_rc1::IfcProduct::setRepresentation(const ::Ifc4x3_rc1::IfcProductRepresentation& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::vector<::Ifc4x3_rc1::IfcRelAssignsToProduct> Ifc4x3_rc1::IfcProduct::ReferencedBy() const { return cast_vector<IfcRelAssignsToProduct>(file()->getInverse(data()->id(), IFC4X3_RC1_types[917], 6)); }
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std::vector<::Ifc4x3_rc1::IfcRelPositions> Ifc4x3_rc1::IfcProduct::PositionedRelativeTo() const { return cast_vector<IfcRelPositions>(file()->getInverse(data()->id(), IFC4X3_RC1_types[951], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelReferencedInSpatialStructure> Ifc4x3_rc1::IfcProduct::ReferencedInStructures() const { return cast_vector<IfcRelReferencedInSpatialStructure>(file()->getInverse(data()->id(), IFC4X3_RC1_types[953], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProduct::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[814]); }
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void Ifc4x3_rc1::IfcProduct::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); }
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// Function implementations for IfcProductDefinitionShape
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std::vector<::Ifc4x3_rc1::IfcProduct> Ifc4x3_rc1::IfcProductDefinitionShape::ShapeOfProduct() const { return cast_vector<IfcProduct>(file()->getInverse(data()->id(), IFC4X3_RC1_types[814], 6)); }
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std::vector<::Ifc4x3_rc1::IfcShapeAspect> Ifc4x3_rc1::IfcProductDefinitionShape::HasShapeAspects() const { return cast_vector<IfcShapeAspect>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1010], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProductDefinitionShape::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[815]); }
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void Ifc4x3_rc1::IfcProductDefinitionShape::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcRepresentation > v3_Representations) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_Representations)); }
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// Function implementations for IfcProductRepresentation
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std::optional< std::string > Ifc4x3_rc1::IfcProductRepresentation::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcProductRepresentation::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcProductRepresentation::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcProductRepresentation::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::vector< ::Ifc4x3_rc1::IfcRepresentation > Ifc4x3_rc1::IfcProductRepresentation::Representations() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcRepresentation>(es); }
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void Ifc4x3_rc1::IfcProductRepresentation::setRepresentations(const std::vector< ::Ifc4x3_rc1::IfcRepresentation >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProductRepresentation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[816]); }
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void Ifc4x3_rc1::IfcProductRepresentation::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcRepresentation > v3_Representations) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_Representations)); }
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// Function implementations for IfcProfileDef
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::Ifc4x3_rc1::IfcProfileTypeEnum::Value Ifc4x3_rc1::IfcProfileDef::ProfileType() const { return ::Ifc4x3_rc1::IfcProfileTypeEnum::FromString(get_attribute_value(0)); }
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void Ifc4x3_rc1::IfcProfileDef::setProfileType(const ::Ifc4x3_rc1::IfcProfileTypeEnum::Value& v) { set_attribute_value(0, EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcProfileDef::ProfileName() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcProfileDef::setProfileName(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcProfileDef::HasExternalReference() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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std::vector<::Ifc4x3_rc1::IfcProfileProperties> Ifc4x3_rc1::IfcProfileDef::HasProperties() const { return cast_vector<IfcProfileProperties>(file()->getInverse(data()->id(), IFC4X3_RC1_types[820], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[819]); }
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void Ifc4x3_rc1::IfcProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); } }
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// Function implementations for IfcProfileProperties
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcProfileProperties::ProfileDefinition() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcProfileProperties::setProfileDefinition(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProfileProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[820]); }
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void Ifc4x3_rc1::IfcProfileProperties::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcProperty > v3_Properties, ::Ifc4x3_rc1::IfcProfileDef v4_ProfileDefinition) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_Properties));set_attribute_value(3, (v4_ProfileDefinition)); }
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// Function implementations for IfcProject
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const IfcParse::entity& Ifc4x3_rc1::IfcProject::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[822]); }
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void Ifc4x3_rc1::IfcProject::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_LongName, std::optional< std::string > v7_Phase, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationContext > > v8_RepresentationContexts, ::Ifc4x3_rc1::IfcUnitAssignment v9_UnitsInContext) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_LongName) {set_attribute_value(5, (*v6_LongName)); } if (v7_Phase) {set_attribute_value(6, (*v7_Phase)); } if (v8_RepresentationContexts) {set_attribute_value(7, cast_vector<express::Base>(*v8_RepresentationContexts)); }set_attribute_value(8, (v9_UnitsInContext)); }
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// Function implementations for IfcProjectLibrary
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const IfcParse::entity& Ifc4x3_rc1::IfcProjectLibrary::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[827]); }
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void Ifc4x3_rc1::IfcProjectLibrary::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_LongName, std::optional< std::string > v7_Phase, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationContext > > v8_RepresentationContexts, ::Ifc4x3_rc1::IfcUnitAssignment v9_UnitsInContext) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_LongName) {set_attribute_value(5, (*v6_LongName)); } if (v7_Phase) {set_attribute_value(6, (*v7_Phase)); } if (v8_RepresentationContexts) {set_attribute_value(7, cast_vector<express::Base>(*v8_RepresentationContexts)); }set_attribute_value(8, (v9_UnitsInContext)); }
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// Function implementations for IfcProjectOrder
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std::optional< ::Ifc4x3_rc1::IfcProjectOrderTypeEnum::Value > Ifc4x3_rc1::IfcProjectOrder::PredefinedType() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcProjectOrderTypeEnum::FromString(get_attribute_value(6)); }
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void Ifc4x3_rc1::IfcProjectOrder::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcProjectOrderTypeEnum::Value >& v) { if (v) {set_attribute_value(6, EnumerationReference(&::Ifc4x3_rc1::IfcProjectOrderTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcProjectOrder::Status() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcProjectOrder::setStatus(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcProjectOrder::LongDescription() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcProjectOrder::setLongDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcProjectOrder::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[828]); }
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void Ifc4x3_rc1::IfcProjectOrder::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< ::Ifc4x3_rc1::IfcProjectOrderTypeEnum::Value > v7_PredefinedType, std::optional< std::string > v8_Status, std::optional< std::string > v9_LongDescription) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_PredefinedType) {set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcProjectOrderTypeEnum::Class(),(size_t)*v7_PredefinedType))); } if (v8_Status) {set_attribute_value(7, (*v8_Status)); } if (v9_LongDescription) {set_attribute_value(8, (*v9_LongDescription)); } }
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// Function implementations for IfcProjectedCRS
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std::optional< std::string > Ifc4x3_rc1::IfcProjectedCRS::MapProjection() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcProjectedCRS::setMapProjection(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcProjectedCRS::MapZone() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcProjectedCRS::setMapZone(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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::Ifc4x3_rc1::IfcNamedUnit Ifc4x3_rc1::IfcProjectedCRS::MapUnit() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcNamedUnit{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcNamedUnit>(); }
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void Ifc4x3_rc1::IfcProjectedCRS::setMapUnit(const ::Ifc4x3_rc1::IfcNamedUnit& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProjectedCRS::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[823]); }
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void Ifc4x3_rc1::IfcProjectedCRS::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::optional< std::string > v3_GeodeticDatum, std::optional< std::string > v4_VerticalDatum, std::optional< std::string > v5_MapProjection, std::optional< std::string > v6_MapZone, ::Ifc4x3_rc1::IfcNamedUnit v7_MapUnit) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_GeodeticDatum) {set_attribute_value(2, (*v3_GeodeticDatum)); } if (v4_VerticalDatum) {set_attribute_value(3, (*v4_VerticalDatum)); } if (v5_MapProjection) {set_attribute_value(4, (*v5_MapProjection)); } if (v6_MapZone) {set_attribute_value(5, (*v6_MapZone)); }set_attribute_value(6, (v7_MapUnit)); }
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// Function implementations for IfcProjectionElement
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std::optional< ::Ifc4x3_rc1::IfcProjectionElementTypeEnum::Value > Ifc4x3_rc1::IfcProjectionElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcProjectionElementTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcProjectionElement::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcProjectionElementTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcProjectionElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcProjectionElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[825]); }
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void Ifc4x3_rc1::IfcProjectionElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcProjectionElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcProjectionElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcProperty
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std::string Ifc4x3_rc1::IfcProperty::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcProperty::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcProperty::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcProperty::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::vector<::Ifc4x3_rc1::IfcPropertySet> Ifc4x3_rc1::IfcProperty::PartOfPset() const { return cast_vector<IfcPropertySet>(file()->getInverse(data()->id(), IFC4X3_RC1_types[839], 4)); }
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std::vector<::Ifc4x3_rc1::IfcPropertyDependencyRelationship> Ifc4x3_rc1::IfcProperty::PropertyForDependance() const { return cast_vector<IfcPropertyDependencyRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[834], 2)); }
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std::vector<::Ifc4x3_rc1::IfcPropertyDependencyRelationship> Ifc4x3_rc1::IfcProperty::PropertyDependsOn() const { return cast_vector<IfcPropertyDependencyRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[834], 3)); }
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std::vector<::Ifc4x3_rc1::IfcComplexProperty> Ifc4x3_rc1::IfcProperty::PartOfComplex() const { return cast_vector<IfcComplexProperty>(file()->getInverse(data()->id(), IFC4X3_RC1_types[195], 3)); }
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std::vector<::Ifc4x3_rc1::IfcResourceConstraintRelationship> Ifc4x3_rc1::IfcProperty::HasConstraints() const { return cast_vector<IfcResourceConstraintRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[967], 3)); }
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std::vector<::Ifc4x3_rc1::IfcResourceApprovalRelationship> Ifc4x3_rc1::IfcProperty::HasApprovals() const { return cast_vector<IfcResourceApprovalRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[966], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProperty::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[830]); }
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void Ifc4x3_rc1::IfcProperty::initialize(std::string v1_Name, std::optional< std::string > v2_Description) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } }
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// Function implementations for IfcPropertyAbstraction
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcPropertyAbstraction::HasExternalReferences() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyAbstraction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[831]); }
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void Ifc4x3_rc1::IfcPropertyAbstraction::initialize() { }
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// Function implementations for IfcPropertyBoundedValue
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::Ifc4x3_rc1::IfcValue Ifc4x3_rc1::IfcPropertyBoundedValue::UpperBoundValue() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcValue{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcValue>(); }
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void Ifc4x3_rc1::IfcPropertyBoundedValue::setUpperBoundValue(const ::Ifc4x3_rc1::IfcValue& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcValue Ifc4x3_rc1::IfcPropertyBoundedValue::LowerBoundValue() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcValue{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcValue>(); }
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void Ifc4x3_rc1::IfcPropertyBoundedValue::setLowerBoundValue(const ::Ifc4x3_rc1::IfcValue& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcPropertyBoundedValue::Unit() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcPropertyBoundedValue::setUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcValue Ifc4x3_rc1::IfcPropertyBoundedValue::SetPointValue() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcValue{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcValue>(); }
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void Ifc4x3_rc1::IfcPropertyBoundedValue::setSetPointValue(const ::Ifc4x3_rc1::IfcValue& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyBoundedValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[832]); }
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void Ifc4x3_rc1::IfcPropertyBoundedValue::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcValue v3_UpperBoundValue, ::Ifc4x3_rc1::IfcValue v4_LowerBoundValue, ::Ifc4x3_rc1::IfcUnit v5_Unit, ::Ifc4x3_rc1::IfcValue v6_SetPointValue) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_UpperBoundValue));set_attribute_value(3, (v4_LowerBoundValue));set_attribute_value(4, (v5_Unit));set_attribute_value(5, (v6_SetPointValue)); }
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// Function implementations for IfcPropertyDefinition
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std::vector<::Ifc4x3_rc1::IfcRelDeclares> Ifc4x3_rc1::IfcPropertyDefinition::HasContext() const { return cast_vector<IfcRelDeclares>(file()->getInverse(data()->id(), IFC4X3_RC1_types[940], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelAssociates> Ifc4x3_rc1::IfcPropertyDefinition::HasAssociations() const { return cast_vector<IfcRelAssociates>(file()->getInverse(data()->id(), IFC4X3_RC1_types[919], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyDefinition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[833]); }
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void Ifc4x3_rc1::IfcPropertyDefinition::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcPropertyDependencyRelationship
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::Ifc4x3_rc1::IfcProperty Ifc4x3_rc1::IfcPropertyDependencyRelationship::DependingProperty() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcProperty>(); }
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void Ifc4x3_rc1::IfcPropertyDependencyRelationship::setDependingProperty(const ::Ifc4x3_rc1::IfcProperty& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcProperty Ifc4x3_rc1::IfcPropertyDependencyRelationship::DependantProperty() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcProperty>(); }
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void Ifc4x3_rc1::IfcPropertyDependencyRelationship::setDependantProperty(const ::Ifc4x3_rc1::IfcProperty& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcPropertyDependencyRelationship::Expression() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcPropertyDependencyRelationship::setExpression(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyDependencyRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[834]); }
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void Ifc4x3_rc1::IfcPropertyDependencyRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcProperty v3_DependingProperty, ::Ifc4x3_rc1::IfcProperty v4_DependantProperty, std::optional< std::string > v5_Expression) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_DependingProperty));set_attribute_value(3, (v4_DependantProperty)); if (v5_Expression) {set_attribute_value(4, (*v5_Expression)); } }
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// Function implementations for IfcPropertyEnumeratedValue
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std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > Ifc4x3_rc1::IfcPropertyEnumeratedValue::EnumerationValues() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcValue>(es); }
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void Ifc4x3_rc1::IfcPropertyEnumeratedValue::setEnumerationValues(const std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > >& v) { if (v) {set_attribute_value(2, cast_vector<express::Base>(*v));} else {unset_attribute_value(2);} }
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::Ifc4x3_rc1::IfcPropertyEnumeration Ifc4x3_rc1::IfcPropertyEnumeratedValue::EnumerationReference() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcPropertyEnumeration{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcPropertyEnumeration>(); }
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void Ifc4x3_rc1::IfcPropertyEnumeratedValue::setEnumerationReference(const ::Ifc4x3_rc1::IfcPropertyEnumeration& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyEnumeratedValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[835]); }
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void Ifc4x3_rc1::IfcPropertyEnumeratedValue::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > v3_EnumerationValues, ::Ifc4x3_rc1::IfcPropertyEnumeration v4_EnumerationReference) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_EnumerationValues) {set_attribute_value(2, cast_vector<express::Base>(*v3_EnumerationValues)); }set_attribute_value(3, (v4_EnumerationReference)); }
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// Function implementations for IfcPropertyEnumeration
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std::string Ifc4x3_rc1::IfcPropertyEnumeration::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcPropertyEnumeration::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcValue > Ifc4x3_rc1::IfcPropertyEnumeration::EnumerationValues() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcValue>(es); }
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void Ifc4x3_rc1::IfcPropertyEnumeration::setEnumerationValues(const std::vector< ::Ifc4x3_rc1::IfcValue >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcPropertyEnumeration::Unit() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcPropertyEnumeration::setUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyEnumeration::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[836]); }
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void Ifc4x3_rc1::IfcPropertyEnumeration::initialize(std::string v1_Name, std::vector< ::Ifc4x3_rc1::IfcValue > v2_EnumerationValues, ::Ifc4x3_rc1::IfcUnit v3_Unit) { set_attribute_value(0, (v1_Name));set_attribute_value(1, cast_vector<express::Base>(v2_EnumerationValues));set_attribute_value(2, (v3_Unit)); }
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// Function implementations for IfcPropertyListValue
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std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > Ifc4x3_rc1::IfcPropertyListValue::ListValues() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcValue>(es); }
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void Ifc4x3_rc1::IfcPropertyListValue::setListValues(const std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > >& v) { if (v) {set_attribute_value(2, cast_vector<express::Base>(*v));} else {unset_attribute_value(2);} }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcPropertyListValue::Unit() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcPropertyListValue::setUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyListValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[837]); }
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void Ifc4x3_rc1::IfcPropertyListValue::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > v3_ListValues, ::Ifc4x3_rc1::IfcUnit v4_Unit) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_ListValues) {set_attribute_value(2, cast_vector<express::Base>(*v3_ListValues)); }set_attribute_value(3, (v4_Unit)); }
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// Function implementations for IfcPropertyReferenceValue
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std::optional< std::string > Ifc4x3_rc1::IfcPropertyReferenceValue::UsageName() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcPropertyReferenceValue::setUsageName(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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::Ifc4x3_rc1::IfcObjectReferenceSelect Ifc4x3_rc1::IfcPropertyReferenceValue::PropertyReference() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcObjectReferenceSelect{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcObjectReferenceSelect>(); }
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void Ifc4x3_rc1::IfcPropertyReferenceValue::setPropertyReference(const ::Ifc4x3_rc1::IfcObjectReferenceSelect& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyReferenceValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[838]); }
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void Ifc4x3_rc1::IfcPropertyReferenceValue::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::optional< std::string > v3_UsageName, ::Ifc4x3_rc1::IfcObjectReferenceSelect v4_PropertyReference) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_UsageName) {set_attribute_value(2, (*v3_UsageName)); }set_attribute_value(3, (v4_PropertyReference)); }
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// Function implementations for IfcPropertySet
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std::vector< ::Ifc4x3_rc1::IfcProperty > Ifc4x3_rc1::IfcPropertySet::HasProperties() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcProperty>(es); }
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void Ifc4x3_rc1::IfcPropertySet::setHasProperties(const std::vector< ::Ifc4x3_rc1::IfcProperty >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertySet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[839]); }
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void Ifc4x3_rc1::IfcPropertySet::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcProperty > v5_HasProperties) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_HasProperties)); }
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// Function implementations for IfcPropertySetDefinition
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std::vector<::Ifc4x3_rc1::IfcTypeObject> Ifc4x3_rc1::IfcPropertySetDefinition::DefinesType() const { return cast_vector<IfcTypeObject>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1245], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelDefinesByTemplate> Ifc4x3_rc1::IfcPropertySetDefinition::IsDefinedBy() const { return cast_vector<IfcRelDefinesByTemplate>(file()->getInverse(data()->id(), IFC4X3_RC1_types[945], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelDefinesByProperties> Ifc4x3_rc1::IfcPropertySetDefinition::DefinesOccurrence() const { return cast_vector<IfcRelDefinesByProperties>(file()->getInverse(data()->id(), IFC4X3_RC1_types[944], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertySetDefinition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[840]); }
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void Ifc4x3_rc1::IfcPropertySetDefinition::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcPropertySetTemplate
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std::optional< ::Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Value > Ifc4x3_rc1::IfcPropertySetTemplate::TemplateType() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::FromString(get_attribute_value(4)); }
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void Ifc4x3_rc1::IfcPropertySetTemplate::setTemplateType(const std::optional< ::Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Value >& v) { if (v) {set_attribute_value(4, EnumerationReference(&::Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPropertySetTemplate::ApplicableEntity() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcPropertySetTemplate::setApplicableEntity(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::vector< ::Ifc4x3_rc1::IfcPropertyTemplate > Ifc4x3_rc1::IfcPropertySetTemplate::HasPropertyTemplates() const { std::vector<express::Base> es = get_attribute_value(6); return cast_vector<::Ifc4x3_rc1::IfcPropertyTemplate>(es); }
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void Ifc4x3_rc1::IfcPropertySetTemplate::setHasPropertyTemplates(const std::vector< ::Ifc4x3_rc1::IfcPropertyTemplate >& v) { set_attribute_value(6, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(6); }
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std::vector<::Ifc4x3_rc1::IfcRelDefinesByTemplate> Ifc4x3_rc1::IfcPropertySetTemplate::Defines() const { return cast_vector<IfcRelDefinesByTemplate>(file()->getInverse(data()->id(), IFC4X3_RC1_types[945], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertySetTemplate::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[843]); }
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void Ifc4x3_rc1::IfcPropertySetTemplate::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< ::Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Value > v5_TemplateType, std::optional< std::string > v6_ApplicableEntity, std::vector< ::Ifc4x3_rc1::IfcPropertyTemplate > v7_HasPropertyTemplates) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_TemplateType) {set_attribute_value(4, (EnumerationReference(&::Ifc4x3_rc1::IfcPropertySetTemplateTypeEnum::Class(),(size_t)*v5_TemplateType))); } if (v6_ApplicableEntity) {set_attribute_value(5, (*v6_ApplicableEntity)); }set_attribute_value(6, cast_vector<express::Base>(v7_HasPropertyTemplates)); }
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// Function implementations for IfcPropertySingleValue
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::Ifc4x3_rc1::IfcValue Ifc4x3_rc1::IfcPropertySingleValue::NominalValue() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcValue{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcValue>(); }
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void Ifc4x3_rc1::IfcPropertySingleValue::setNominalValue(const ::Ifc4x3_rc1::IfcValue& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcPropertySingleValue::Unit() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcPropertySingleValue::setUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertySingleValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[845]); }
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void Ifc4x3_rc1::IfcPropertySingleValue::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcValue v3_NominalValue, ::Ifc4x3_rc1::IfcUnit v4_Unit) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_NominalValue));set_attribute_value(3, (v4_Unit)); }
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// Function implementations for IfcPropertyTableValue
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std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > Ifc4x3_rc1::IfcPropertyTableValue::DefiningValues() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcValue>(es); }
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void Ifc4x3_rc1::IfcPropertyTableValue::setDefiningValues(const std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > >& v) { if (v) {set_attribute_value(2, cast_vector<express::Base>(*v));} else {unset_attribute_value(2);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > Ifc4x3_rc1::IfcPropertyTableValue::DefinedValues() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcValue>(es); }
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void Ifc4x3_rc1::IfcPropertyTableValue::setDefinedValues(const std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > >& v) { if (v) {set_attribute_value(3, cast_vector<express::Base>(*v));} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcPropertyTableValue::Expression() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcPropertyTableValue::setExpression(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcPropertyTableValue::DefiningUnit() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcPropertyTableValue::setDefiningUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcPropertyTableValue::DefinedUnit() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcPropertyTableValue::setDefinedUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< ::Ifc4x3_rc1::IfcCurveInterpolationEnum::Value > Ifc4x3_rc1::IfcPropertyTableValue::CurveInterpolation() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcCurveInterpolationEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcPropertyTableValue::setCurveInterpolation(const std::optional< ::Ifc4x3_rc1::IfcCurveInterpolationEnum::Value >& v) { if (v) {set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcCurveInterpolationEnum::Class(), (size_t) *v));} else {unset_attribute_value(7);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyTableValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[846]); }
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void Ifc4x3_rc1::IfcPropertyTableValue::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > v3_DefiningValues, std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > v4_DefinedValues, std::optional< std::string > v5_Expression, ::Ifc4x3_rc1::IfcUnit v6_DefiningUnit, ::Ifc4x3_rc1::IfcUnit v7_DefinedUnit, std::optional< ::Ifc4x3_rc1::IfcCurveInterpolationEnum::Value > v8_CurveInterpolation) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_DefiningValues) {set_attribute_value(2, cast_vector<express::Base>(*v3_DefiningValues)); } if (v4_DefinedValues) {set_attribute_value(3, cast_vector<express::Base>(*v4_DefinedValues)); } if (v5_Expression) {set_attribute_value(4, (*v5_Expression)); }set_attribute_value(5, (v6_DefiningUnit));set_attribute_value(6, (v7_DefinedUnit)); if (v8_CurveInterpolation) {set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcCurveInterpolationEnum::Class(),(size_t)*v8_CurveInterpolation))); } }
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// Function implementations for IfcPropertyTemplate
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std::vector<::Ifc4x3_rc1::IfcComplexPropertyTemplate> Ifc4x3_rc1::IfcPropertyTemplate::PartOfComplexTemplate() const { return cast_vector<IfcComplexPropertyTemplate>(file()->getInverse(data()->id(), IFC4X3_RC1_types[196], 6)); }
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std::vector<::Ifc4x3_rc1::IfcPropertySetTemplate> Ifc4x3_rc1::IfcPropertyTemplate::PartOfPsetTemplate() const { return cast_vector<IfcPropertySetTemplate>(file()->getInverse(data()->id(), IFC4X3_RC1_types[843], 6)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyTemplate::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[847]); }
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void Ifc4x3_rc1::IfcPropertyTemplate::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcPropertyTemplateDefinition
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const IfcParse::entity& Ifc4x3_rc1::IfcPropertyTemplateDefinition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[848]); }
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void Ifc4x3_rc1::IfcPropertyTemplateDefinition::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcProtectiveDevice
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std::optional< ::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value > Ifc4x3_rc1::IfcProtectiveDevice::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcProtectiveDevice::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcProtectiveDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[849]); }
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void Ifc4x3_rc1::IfcProtectiveDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcProtectiveDeviceTrippingUnit
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std::optional< ::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value > Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnit::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnit::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[850]); }
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void Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnit::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcProtectiveDeviceTrippingUnitType
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::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitType::PredefinedType() const { return ::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitType::setPredefinedType(const ::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[851]); }
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void Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcProtectiveDeviceTrippingUnitTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcProtectiveDeviceType
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::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value Ifc4x3_rc1::IfcProtectiveDeviceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcProtectiveDeviceType::setPredefinedType(const ::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcProtectiveDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[853]); }
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void Ifc4x3_rc1::IfcProtectiveDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcProtectiveDeviceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcProxy
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::Ifc4x3_rc1::IfcObjectTypeEnum::Value Ifc4x3_rc1::IfcProxy::ProxyType() const { return ::Ifc4x3_rc1::IfcObjectTypeEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcProxy::setProxyType(const ::Ifc4x3_rc1::IfcObjectTypeEnum::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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std::optional< std::string > Ifc4x3_rc1::IfcProxy::Tag() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcProxy::setTag(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcProxy::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[855]); }
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void Ifc4x3_rc1::IfcProxy::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcObjectTypeEnum::Value v8_ProxyType, std::optional< std::string > v9_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(),(size_t)v8_ProxyType))); if (v9_Tag) {set_attribute_value(8, (*v9_Tag)); } }
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// Function implementations for IfcPump
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std::optional< ::Ifc4x3_rc1::IfcPumpTypeEnum::Value > Ifc4x3_rc1::IfcPump::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcPumpTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcPump::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcPumpTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcPumpTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcPump::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[856]); }
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void Ifc4x3_rc1::IfcPump::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcPumpTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcPumpTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcPumpType
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::Ifc4x3_rc1::IfcPumpTypeEnum::Value Ifc4x3_rc1::IfcPumpType::PredefinedType() const { return ::Ifc4x3_rc1::IfcPumpTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcPumpType::setPredefinedType(const ::Ifc4x3_rc1::IfcPumpTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcPumpTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcPumpType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[857]); }
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void Ifc4x3_rc1::IfcPumpType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcPumpTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcPumpTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcQuantityArea
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double Ifc4x3_rc1::IfcQuantityArea::AreaValue() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcQuantityArea::setAreaValue(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcQuantityArea::Formula() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcQuantityArea::setFormula(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcQuantityArea::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[859]); }
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void Ifc4x3_rc1::IfcQuantityArea::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcNamedUnit v3_Unit, double v4_AreaValue, std::optional< std::string > v5_Formula) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Unit));set_attribute_value(3, (v4_AreaValue)); if (v5_Formula) {set_attribute_value(4, (*v5_Formula)); } }
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// Function implementations for IfcQuantityCount
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double Ifc4x3_rc1::IfcQuantityCount::CountValue() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcQuantityCount::setCountValue(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcQuantityCount::Formula() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcQuantityCount::setFormula(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcQuantityCount::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[860]); }
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void Ifc4x3_rc1::IfcQuantityCount::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcNamedUnit v3_Unit, double v4_CountValue, std::optional< std::string > v5_Formula) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Unit));set_attribute_value(3, (v4_CountValue)); if (v5_Formula) {set_attribute_value(4, (*v5_Formula)); } }
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// Function implementations for IfcQuantityLength
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double Ifc4x3_rc1::IfcQuantityLength::LengthValue() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcQuantityLength::setLengthValue(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcQuantityLength::Formula() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcQuantityLength::setFormula(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcQuantityLength::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[861]); }
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void Ifc4x3_rc1::IfcQuantityLength::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcNamedUnit v3_Unit, double v4_LengthValue, std::optional< std::string > v5_Formula) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Unit));set_attribute_value(3, (v4_LengthValue)); if (v5_Formula) {set_attribute_value(4, (*v5_Formula)); } }
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// Function implementations for IfcQuantitySet
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const IfcParse::entity& Ifc4x3_rc1::IfcQuantitySet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[862]); }
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void Ifc4x3_rc1::IfcQuantitySet::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcQuantityTime
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double Ifc4x3_rc1::IfcQuantityTime::TimeValue() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcQuantityTime::setTimeValue(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcQuantityTime::Formula() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcQuantityTime::setFormula(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcQuantityTime::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[863]); }
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void Ifc4x3_rc1::IfcQuantityTime::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcNamedUnit v3_Unit, double v4_TimeValue, std::optional< std::string > v5_Formula) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Unit));set_attribute_value(3, (v4_TimeValue)); if (v5_Formula) {set_attribute_value(4, (*v5_Formula)); } }
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// Function implementations for IfcQuantityVolume
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double Ifc4x3_rc1::IfcQuantityVolume::VolumeValue() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcQuantityVolume::setVolumeValue(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcQuantityVolume::Formula() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcQuantityVolume::setFormula(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcQuantityVolume::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[864]); }
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void Ifc4x3_rc1::IfcQuantityVolume::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcNamedUnit v3_Unit, double v4_VolumeValue, std::optional< std::string > v5_Formula) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Unit));set_attribute_value(3, (v4_VolumeValue)); if (v5_Formula) {set_attribute_value(4, (*v5_Formula)); } }
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// Function implementations for IfcQuantityWeight
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double Ifc4x3_rc1::IfcQuantityWeight::WeightValue() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcQuantityWeight::setWeightValue(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcQuantityWeight::Formula() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcQuantityWeight::setFormula(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcQuantityWeight::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[865]); }
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void Ifc4x3_rc1::IfcQuantityWeight::initialize(std::string v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcNamedUnit v3_Unit, double v4_WeightValue, std::optional< std::string > v5_Formula) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_Unit));set_attribute_value(3, (v4_WeightValue)); if (v5_Formula) {set_attribute_value(4, (*v5_Formula)); } }
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// Function implementations for IfcRail
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std::optional< ::Ifc4x3_rc1::IfcRailTypeEnum::Value > Ifc4x3_rc1::IfcRail::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcRailTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcRail::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcRailTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcRailTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRail::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[867]); }
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void Ifc4x3_rc1::IfcRail::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcRailTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcRailTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcRailType
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::Ifc4x3_rc1::IfcRailTypeEnum::Value Ifc4x3_rc1::IfcRailType::PredefinedType() const { return ::Ifc4x3_rc1::IfcRailTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcRailType::setPredefinedType(const ::Ifc4x3_rc1::IfcRailTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcRailTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRailType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[871]); }
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void Ifc4x3_rc1::IfcRailType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcRailTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcRailTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcRailing
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std::optional< ::Ifc4x3_rc1::IfcRailingTypeEnum::Value > Ifc4x3_rc1::IfcRailing::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcRailingTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcRailing::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcRailingTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcRailingTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRailing::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[868]); }
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void Ifc4x3_rc1::IfcRailing::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcRailingTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcRailingTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcRailingType
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::Ifc4x3_rc1::IfcRailingTypeEnum::Value Ifc4x3_rc1::IfcRailingType::PredefinedType() const { return ::Ifc4x3_rc1::IfcRailingTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcRailingType::setPredefinedType(const ::Ifc4x3_rc1::IfcRailingTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcRailingTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRailingType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[869]); }
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void Ifc4x3_rc1::IfcRailingType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcRailingTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcRailingTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcRailway
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const IfcParse::entity& Ifc4x3_rc1::IfcRailway::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[873]); }
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void Ifc4x3_rc1::IfcRailway::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); } }
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// Function implementations for IfcRamp
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std::optional< ::Ifc4x3_rc1::IfcRampTypeEnum::Value > Ifc4x3_rc1::IfcRamp::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcRampTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcRamp::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcRampTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcRampTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRamp::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[875]); }
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void Ifc4x3_rc1::IfcRamp::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcRampTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcRampTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcRampFlight
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std::optional< ::Ifc4x3_rc1::IfcRampFlightTypeEnum::Value > Ifc4x3_rc1::IfcRampFlight::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcRampFlightTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcRampFlight::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcRampFlightTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcRampFlightTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRampFlight::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[876]); }
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void Ifc4x3_rc1::IfcRampFlight::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcRampFlightTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcRampFlightTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcRampFlightType
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::Ifc4x3_rc1::IfcRampFlightTypeEnum::Value Ifc4x3_rc1::IfcRampFlightType::PredefinedType() const { return ::Ifc4x3_rc1::IfcRampFlightTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcRampFlightType::setPredefinedType(const ::Ifc4x3_rc1::IfcRampFlightTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcRampFlightTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRampFlightType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[877]); }
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void Ifc4x3_rc1::IfcRampFlightType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcRampFlightTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcRampFlightTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcRampType
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::Ifc4x3_rc1::IfcRampTypeEnum::Value Ifc4x3_rc1::IfcRampType::PredefinedType() const { return ::Ifc4x3_rc1::IfcRampTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcRampType::setPredefinedType(const ::Ifc4x3_rc1::IfcRampTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcRampTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRampType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[879]); }
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void Ifc4x3_rc1::IfcRampType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcRampTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcRampTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcRationalBSplineCurveWithKnots
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std::vector< double > /*[2:?]*/ Ifc4x3_rc1::IfcRationalBSplineCurveWithKnots::WeightsData() const { std::vector< double > /*[2:?]*/ v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcRationalBSplineCurveWithKnots::setWeightsData(const std::vector< double > /*[2:?]*/& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRationalBSplineCurveWithKnots::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[882]); }
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void Ifc4x3_rc1::IfcRationalBSplineCurveWithKnots::initialize(int v1_Degree, std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > v2_ControlPointsList, ::Ifc4x3_rc1::IfcBSplineCurveForm::Value v3_CurveForm, boost::logic::tribool v4_ClosedCurve, boost::logic::tribool v5_SelfIntersect, std::vector< int > /*[2:?]*/ v6_KnotMultiplicities, std::vector< double > /*[2:?]*/ v7_Knots, ::Ifc4x3_rc1::IfcKnotType::Value v8_KnotSpec, std::vector< double > /*[2:?]*/ v9_WeightsData) { set_attribute_value(0, (v1_Degree));set_attribute_value(1, cast_vector<express::Base>(v2_ControlPointsList));set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcBSplineCurveForm::Class(),(size_t)v3_CurveForm)));set_attribute_value(3, (v4_ClosedCurve));set_attribute_value(4, (v5_SelfIntersect));set_attribute_value(5, (v6_KnotMultiplicities));set_attribute_value(6, (v7_Knots));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcKnotType::Class(),(size_t)v8_KnotSpec)));set_attribute_value(8, (v9_WeightsData)); }
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// Function implementations for IfcRationalBSplineSurfaceWithKnots
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std::vector< std::vector< double > > Ifc4x3_rc1::IfcRationalBSplineSurfaceWithKnots::WeightsData() const { std::vector< std::vector< double > > v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcRationalBSplineSurfaceWithKnots::setWeightsData(const std::vector< std::vector< double > >& v) { set_attribute_value(12, v);if constexpr (false)unset_attribute_value(12); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRationalBSplineSurfaceWithKnots::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[883]); }
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void Ifc4x3_rc1::IfcRationalBSplineSurfaceWithKnots::initialize(int v1_UDegree, int v2_VDegree, std::vector< std::vector< ::Ifc4x3_rc1::IfcCartesianPoint > > v3_ControlPointsList, ::Ifc4x3_rc1::IfcBSplineSurfaceForm::Value v4_SurfaceForm, boost::logic::tribool v5_UClosed, boost::logic::tribool v6_VClosed, boost::logic::tribool v7_SelfIntersect, std::vector< int > /*[2:?]*/ v8_UMultiplicities, std::vector< int > /*[2:?]*/ v9_VMultiplicities, std::vector< double > /*[2:?]*/ v10_UKnots, std::vector< double > /*[2:?]*/ v11_VKnots, ::Ifc4x3_rc1::IfcKnotType::Value v12_KnotSpec, std::vector< std::vector< double > > v13_WeightsData) { set_attribute_value(0, (v1_UDegree));set_attribute_value(1, (v2_VDegree));set_attribute_value(2, cast_vector<express::Base>(v3_ControlPointsList));set_attribute_value(3, (EnumerationReference(&::Ifc4x3_rc1::IfcBSplineSurfaceForm::Class(),(size_t)v4_SurfaceForm)));set_attribute_value(4, (v5_UClosed));set_attribute_value(5, (v6_VClosed));set_attribute_value(6, (v7_SelfIntersect));set_attribute_value(7, (v8_UMultiplicities));set_attribute_value(8, (v9_VMultiplicities));set_attribute_value(9, (v10_UKnots));set_attribute_value(10, (v11_VKnots));set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcKnotType::Class(),(size_t)v12_KnotSpec)));set_attribute_value(12, (v13_WeightsData)); }
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// Function implementations for IfcRectangleHollowProfileDef
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double Ifc4x3_rc1::IfcRectangleHollowProfileDef::WallThickness() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcRectangleHollowProfileDef::setWallThickness(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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std::optional< double > Ifc4x3_rc1::IfcRectangleHollowProfileDef::InnerFilletRadius() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcRectangleHollowProfileDef::setInnerFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< double > Ifc4x3_rc1::IfcRectangleHollowProfileDef::OuterFilletRadius() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcRectangleHollowProfileDef::setOuterFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRectangleHollowProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[885]); }
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void Ifc4x3_rc1::IfcRectangleHollowProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_XDim, double v5_YDim, double v6_WallThickness, std::optional< double > v7_InnerFilletRadius, std::optional< double > v8_OuterFilletRadius) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_XDim));set_attribute_value(4, (v5_YDim));set_attribute_value(5, (v6_WallThickness)); if (v7_InnerFilletRadius) {set_attribute_value(6, (*v7_InnerFilletRadius)); } if (v8_OuterFilletRadius) {set_attribute_value(7, (*v8_OuterFilletRadius)); } }
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// Function implementations for IfcRectangleProfileDef
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double Ifc4x3_rc1::IfcRectangleProfileDef::XDim() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcRectangleProfileDef::setXDim(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcRectangleProfileDef::YDim() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcRectangleProfileDef::setYDim(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRectangleProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[886]); }
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void Ifc4x3_rc1::IfcRectangleProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_XDim, double v5_YDim) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_XDim));set_attribute_value(4, (v5_YDim)); }
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// Function implementations for IfcRectangularPyramid
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double Ifc4x3_rc1::IfcRectangularPyramid::XLength() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcRectangularPyramid::setXLength(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcRectangularPyramid::YLength() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcRectangularPyramid::setYLength(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcRectangularPyramid::Height() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcRectangularPyramid::setHeight(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRectangularPyramid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[887]); }
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void Ifc4x3_rc1::IfcRectangularPyramid::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position, double v2_XLength, double v3_YLength, double v4_Height) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_XLength));set_attribute_value(2, (v3_YLength));set_attribute_value(3, (v4_Height)); }
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// Function implementations for IfcRectangularTrimmedSurface
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::Ifc4x3_rc1::IfcSurface Ifc4x3_rc1::IfcRectangularTrimmedSurface::BasisSurface() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcSurface>(); }
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void Ifc4x3_rc1::IfcRectangularTrimmedSurface::setBasisSurface(const ::Ifc4x3_rc1::IfcSurface& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcRectangularTrimmedSurface::U1() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcRectangularTrimmedSurface::setU1(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcRectangularTrimmedSurface::V1() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcRectangularTrimmedSurface::setV1(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcRectangularTrimmedSurface::U2() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcRectangularTrimmedSurface::setU2(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcRectangularTrimmedSurface::V2() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcRectangularTrimmedSurface::setV2(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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bool Ifc4x3_rc1::IfcRectangularTrimmedSurface::Usense() const { bool v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcRectangularTrimmedSurface::setUsense(const bool& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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bool Ifc4x3_rc1::IfcRectangularTrimmedSurface::Vsense() const { bool v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcRectangularTrimmedSurface::setVsense(const bool& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRectangularTrimmedSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[888]); }
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void Ifc4x3_rc1::IfcRectangularTrimmedSurface::initialize(::Ifc4x3_rc1::IfcSurface v1_BasisSurface, double v2_U1, double v3_V1, double v4_U2, double v5_V2, bool v6_Usense, bool v7_Vsense) { set_attribute_value(0, (v1_BasisSurface));set_attribute_value(1, (v2_U1));set_attribute_value(2, (v3_V1));set_attribute_value(3, (v4_U2));set_attribute_value(4, (v5_V2));set_attribute_value(5, (v6_Usense));set_attribute_value(6, (v7_Vsense)); }
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// Function implementations for IfcRecurrencePattern
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::Ifc4x3_rc1::IfcRecurrenceTypeEnum::Value Ifc4x3_rc1::IfcRecurrencePattern::RecurrenceType() const { return ::Ifc4x3_rc1::IfcRecurrenceTypeEnum::FromString(get_attribute_value(0)); }
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void Ifc4x3_rc1::IfcRecurrencePattern::setRecurrenceType(const ::Ifc4x3_rc1::IfcRecurrenceTypeEnum::Value& v) { set_attribute_value(0, EnumerationReference(&::Ifc4x3_rc1::IfcRecurrenceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(0); }
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std::optional< std::vector< int > /*[1:?]*/ > Ifc4x3_rc1::IfcRecurrencePattern::DayComponent() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::vector< int > /*[1:?]*/ v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcRecurrencePattern::setDayComponent(const std::optional< std::vector< int > /*[1:?]*/ >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::vector< int > /*[1:?]*/ > Ifc4x3_rc1::IfcRecurrencePattern::WeekdayComponent() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector< int > /*[1:?]*/ v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcRecurrencePattern::setWeekdayComponent(const std::optional< std::vector< int > /*[1:?]*/ >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::vector< int > /*[1:?]*/ > Ifc4x3_rc1::IfcRecurrencePattern::MonthComponent() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::vector< int > /*[1:?]*/ v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcRecurrencePattern::setMonthComponent(const std::optional< std::vector< int > /*[1:?]*/ >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< int > Ifc4x3_rc1::IfcRecurrencePattern::Position() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } int v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcRecurrencePattern::setPosition(const std::optional< int >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< int > Ifc4x3_rc1::IfcRecurrencePattern::Interval() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } int v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcRecurrencePattern::setInterval(const std::optional< int >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< int > Ifc4x3_rc1::IfcRecurrencePattern::Occurrences() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } int v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcRecurrencePattern::setOccurrences(const std::optional< int >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcTimePeriod > > Ifc4x3_rc1::IfcRecurrencePattern::TimePeriods() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcTimePeriod>(es); }
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void Ifc4x3_rc1::IfcRecurrencePattern::setTimePeriods(const std::optional< std::vector< ::Ifc4x3_rc1::IfcTimePeriod > >& v) { if (v) {set_attribute_value(7, cast_vector<express::Base>(*v));} else {unset_attribute_value(7);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRecurrencePattern::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[889]); }
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void Ifc4x3_rc1::IfcRecurrencePattern::initialize(::Ifc4x3_rc1::IfcRecurrenceTypeEnum::Value v1_RecurrenceType, std::optional< std::vector< int > /*[1:?]*/ > v2_DayComponent, std::optional< std::vector< int > /*[1:?]*/ > v3_WeekdayComponent, std::optional< std::vector< int > /*[1:?]*/ > v4_MonthComponent, std::optional< int > v5_Position, std::optional< int > v6_Interval, std::optional< int > v7_Occurrences, std::optional< std::vector< ::Ifc4x3_rc1::IfcTimePeriod > > v8_TimePeriods) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcRecurrenceTypeEnum::Class(),(size_t)v1_RecurrenceType))); if (v2_DayComponent) {set_attribute_value(1, (*v2_DayComponent)); } if (v3_WeekdayComponent) {set_attribute_value(2, (*v3_WeekdayComponent)); } if (v4_MonthComponent) {set_attribute_value(3, (*v4_MonthComponent)); } if (v5_Position) {set_attribute_value(4, (*v5_Position)); } if (v6_Interval) {set_attribute_value(5, (*v6_Interval)); } if (v7_Occurrences) {set_attribute_value(6, (*v7_Occurrences)); } if (v8_TimePeriods) {set_attribute_value(7, cast_vector<express::Base>(*v8_TimePeriods)); } }
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// Function implementations for IfcReference
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std::optional< std::string > Ifc4x3_rc1::IfcReference::TypeIdentifier() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcReference::setTypeIdentifier(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcReference::AttributeIdentifier() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcReference::setAttributeIdentifier(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcReference::InstanceName() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcReference::setInstanceName(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::vector< int > /*[1:?]*/ > Ifc4x3_rc1::IfcReference::ListPositions() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::vector< int > /*[1:?]*/ v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcReference::setListPositions(const std::optional< std::vector< int > /*[1:?]*/ >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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::Ifc4x3_rc1::IfcReference Ifc4x3_rc1::IfcReference::InnerReference() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcReference{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcReference>(); }
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void Ifc4x3_rc1::IfcReference::setInnerReference(const ::Ifc4x3_rc1::IfcReference& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcReference::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[891]); }
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void Ifc4x3_rc1::IfcReference::initialize(std::optional< std::string > v1_TypeIdentifier, std::optional< std::string > v2_AttributeIdentifier, std::optional< std::string > v3_InstanceName, std::optional< std::vector< int > /*[1:?]*/ > v4_ListPositions, ::Ifc4x3_rc1::IfcReference v5_InnerReference) { if (v1_TypeIdentifier) {set_attribute_value(0, (*v1_TypeIdentifier)); } if (v2_AttributeIdentifier) {set_attribute_value(1, (*v2_AttributeIdentifier)); } if (v3_InstanceName) {set_attribute_value(2, (*v3_InstanceName)); } if (v4_ListPositions) {set_attribute_value(3, (*v4_ListPositions)); }set_attribute_value(4, (v5_InnerReference)); }
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// Function implementations for IfcReferent
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std::optional< ::Ifc4x3_rc1::IfcReferentTypeEnum::Value > Ifc4x3_rc1::IfcReferent::PredefinedType() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcReferentTypeEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcReferent::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcReferentTypeEnum::Value >& v) { if (v) {set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcReferentTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(7);} }
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std::optional< double > Ifc4x3_rc1::IfcReferent::RestartDistance() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcReferent::setRestartDistance(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcReferent::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[892]); }
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void Ifc4x3_rc1::IfcReferent::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< ::Ifc4x3_rc1::IfcReferentTypeEnum::Value > v8_PredefinedType, std::optional< double > v9_RestartDistance) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_PredefinedType) {set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcReferentTypeEnum::Class(),(size_t)*v8_PredefinedType))); } if (v9_RestartDistance) {set_attribute_value(8, (*v9_RestartDistance)); } }
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// Function implementations for IfcRegularTimeSeries
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double Ifc4x3_rc1::IfcRegularTimeSeries::TimeStep() const { double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcRegularTimeSeries::setTimeStep(const double& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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std::vector< ::Ifc4x3_rc1::IfcTimeSeriesValue > Ifc4x3_rc1::IfcRegularTimeSeries::Values() const { std::vector<express::Base> es = get_attribute_value(9); return cast_vector<::Ifc4x3_rc1::IfcTimeSeriesValue>(es); }
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void Ifc4x3_rc1::IfcRegularTimeSeries::setValues(const std::vector< ::Ifc4x3_rc1::IfcTimeSeriesValue >& v) { set_attribute_value(9, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRegularTimeSeries::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[895]); }
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void Ifc4x3_rc1::IfcRegularTimeSeries::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::string v3_StartTime, std::string v4_EndTime, ::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Value v5_TimeSeriesDataType, ::Ifc4x3_rc1::IfcDataOriginEnum::Value v6_DataOrigin, std::optional< std::string > v7_UserDefinedDataOrigin, ::Ifc4x3_rc1::IfcUnit v8_Unit, double v9_TimeStep, std::vector< ::Ifc4x3_rc1::IfcTimeSeriesValue > v10_Values) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_StartTime));set_attribute_value(3, (v4_EndTime));set_attribute_value(4, (EnumerationReference(&::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Class(),(size_t)v5_TimeSeriesDataType)));set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)v6_DataOrigin))); if (v7_UserDefinedDataOrigin) {set_attribute_value(6, (*v7_UserDefinedDataOrigin)); }set_attribute_value(7, (v8_Unit));set_attribute_value(8, (v9_TimeStep));set_attribute_value(9, cast_vector<express::Base>(v10_Values)); }
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// Function implementations for IfcReinforcedSoil
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std::optional< ::Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Value > Ifc4x3_rc1::IfcReinforcedSoil::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcReinforcedSoil::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcReinforcedSoil::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[896]); }
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void Ifc4x3_rc1::IfcReinforcedSoil::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcReinforcedSoilTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcReinforcementBarProperties
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double Ifc4x3_rc1::IfcReinforcementBarProperties::TotalCrossSectionArea() const { double v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcReinforcementBarProperties::setTotalCrossSectionArea(const double& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::string Ifc4x3_rc1::IfcReinforcementBarProperties::SteelGrade() const { std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcReinforcementBarProperties::setSteelGrade(const std::string& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value > Ifc4x3_rc1::IfcReinforcementBarProperties::BarSurface() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::FromString(get_attribute_value(2)); }
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void Ifc4x3_rc1::IfcReinforcementBarProperties::setBarSurface(const std::optional< ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value >& v) { if (v) {set_attribute_value(2, EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Class(), (size_t) *v));} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcementBarProperties::EffectiveDepth() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcReinforcementBarProperties::setEffectiveDepth(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcementBarProperties::NominalBarDiameter() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcReinforcementBarProperties::setNominalBarDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcementBarProperties::BarCount() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcReinforcementBarProperties::setBarCount(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcReinforcementBarProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[898]); }
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void Ifc4x3_rc1::IfcReinforcementBarProperties::initialize(double v1_TotalCrossSectionArea, std::string v2_SteelGrade, std::optional< ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value > v3_BarSurface, std::optional< double > v4_EffectiveDepth, std::optional< double > v5_NominalBarDiameter, std::optional< double > v6_BarCount) { set_attribute_value(0, (v1_TotalCrossSectionArea));set_attribute_value(1, (v2_SteelGrade)); if (v3_BarSurface) {set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Class(),(size_t)*v3_BarSurface))); } if (v4_EffectiveDepth) {set_attribute_value(3, (*v4_EffectiveDepth)); } if (v5_NominalBarDiameter) {set_attribute_value(4, (*v5_NominalBarDiameter)); } if (v6_BarCount) {set_attribute_value(5, (*v6_BarCount)); } }
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// Function implementations for IfcReinforcementDefinitionProperties
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std::optional< std::string > Ifc4x3_rc1::IfcReinforcementDefinitionProperties::DefinitionType() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcReinforcementDefinitionProperties::setDefinitionType(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::vector< ::Ifc4x3_rc1::IfcSectionReinforcementProperties > Ifc4x3_rc1::IfcReinforcementDefinitionProperties::ReinforcementSectionDefinitions() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcSectionReinforcementProperties>(es); }
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void Ifc4x3_rc1::IfcReinforcementDefinitionProperties::setReinforcementSectionDefinitions(const std::vector< ::Ifc4x3_rc1::IfcSectionReinforcementProperties >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcReinforcementDefinitionProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[899]); }
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void Ifc4x3_rc1::IfcReinforcementDefinitionProperties::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_DefinitionType, std::vector< ::Ifc4x3_rc1::IfcSectionReinforcementProperties > v6_ReinforcementSectionDefinitions) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_DefinitionType) {set_attribute_value(4, (*v5_DefinitionType)); }set_attribute_value(5, cast_vector<express::Base>(v6_ReinforcementSectionDefinitions)); }
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// Function implementations for IfcReinforcingBar
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std::optional< double > Ifc4x3_rc1::IfcReinforcingBar::NominalDiameter() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcReinforcingBar::setNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingBar::CrossSectionArea() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcReinforcingBar::setCrossSectionArea(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingBar::BarLength() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcReinforcingBar::setBarLength(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< ::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value > Ifc4x3_rc1::IfcReinforcingBar::PredefinedType() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::FromString(get_attribute_value(12)); }
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void Ifc4x3_rc1::IfcReinforcingBar::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value >& v) { if (v) {set_attribute_value(12, EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(12);} }
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std::optional< ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value > Ifc4x3_rc1::IfcReinforcingBar::BarSurface() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::FromString(get_attribute_value(13)); }
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void Ifc4x3_rc1::IfcReinforcingBar::setBarSurface(const std::optional< ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value >& v) { if (v) {set_attribute_value(13, EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Class(), (size_t) *v));} else {unset_attribute_value(13);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcReinforcingBar::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[900]); }
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void Ifc4x3_rc1::IfcReinforcingBar::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< std::string > v9_SteelGrade, std::optional< double > v10_NominalDiameter, std::optional< double > v11_CrossSectionArea, std::optional< double > v12_BarLength, std::optional< ::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value > v13_PredefinedType, std::optional< ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value > v14_BarSurface) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_SteelGrade) {set_attribute_value(8, (*v9_SteelGrade)); } if (v10_NominalDiameter) {set_attribute_value(9, (*v10_NominalDiameter)); } if (v11_CrossSectionArea) {set_attribute_value(10, (*v11_CrossSectionArea)); } if (v12_BarLength) {set_attribute_value(11, (*v12_BarLength)); } if (v13_PredefinedType) {set_attribute_value(12, (EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Class(),(size_t)*v13_PredefinedType))); } if (v14_BarSurface) {set_attribute_value(13, (EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Class(),(size_t)*v14_BarSurface))); } }
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// Function implementations for IfcReinforcingBarType
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::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value Ifc4x3_rc1::IfcReinforcingBarType::PredefinedType() const { return ::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcReinforcingBarType::setPredefinedType(const ::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingBarType::NominalDiameter() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcReinforcingBarType::setNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingBarType::CrossSectionArea() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcReinforcingBarType::setCrossSectionArea(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingBarType::BarLength() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } double v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcReinforcingBarType::setBarLength(const std::optional< double >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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std::optional< ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value > Ifc4x3_rc1::IfcReinforcingBarType::BarSurface() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::FromString(get_attribute_value(13)); }
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void Ifc4x3_rc1::IfcReinforcingBarType::setBarSurface(const std::optional< ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value >& v) { if (v) {set_attribute_value(13, EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Class(), (size_t) *v));} else {unset_attribute_value(13);} }
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std::optional< std::string > Ifc4x3_rc1::IfcReinforcingBarType::BendingShapeCode() const { if(get_attribute_value(14).isNull()) { return std::nullopt; } std::string v = get_attribute_value(14); return v; }
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void Ifc4x3_rc1::IfcReinforcingBarType::setBendingShapeCode(const std::optional< std::string >& v) { if (v) {set_attribute_value(14, *v);} else {unset_attribute_value(14);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcBendingParameterSelect > > Ifc4x3_rc1::IfcReinforcingBarType::BendingParameters() const { if(get_attribute_value(15).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(15); return cast_vector<::Ifc4x3_rc1::IfcBendingParameterSelect>(es); }
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void Ifc4x3_rc1::IfcReinforcingBarType::setBendingParameters(const std::optional< std::vector< ::Ifc4x3_rc1::IfcBendingParameterSelect > >& v) { if (v) {set_attribute_value(15, cast_vector<express::Base>(*v));} else {unset_attribute_value(15);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcReinforcingBarType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[903]); }
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void Ifc4x3_rc1::IfcReinforcingBarType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Value v10_PredefinedType, std::optional< double > v11_NominalDiameter, std::optional< double > v12_CrossSectionArea, std::optional< double > v13_BarLength, std::optional< ::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Value > v14_BarSurface, std::optional< std::string > v15_BendingShapeCode, std::optional< std::vector< ::Ifc4x3_rc1::IfcBendingParameterSelect > > v16_BendingParameters) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarTypeEnum::Class(),(size_t)v10_PredefinedType))); if (v11_NominalDiameter) {set_attribute_value(10, (*v11_NominalDiameter)); } if (v12_CrossSectionArea) {set_attribute_value(11, (*v12_CrossSectionArea)); } if (v13_BarLength) {set_attribute_value(12, (*v13_BarLength)); } if (v14_BarSurface) {set_attribute_value(13, (EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarSurfaceEnum::Class(),(size_t)*v14_BarSurface))); } if (v15_BendingShapeCode) {set_attribute_value(14, (*v15_BendingShapeCode)); } if (v16_BendingParameters) {set_attribute_value(15, cast_vector<express::Base>(*v16_BendingParameters)); } }
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// Function implementations for IfcReinforcingElement
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std::optional< std::string > Ifc4x3_rc1::IfcReinforcingElement::SteelGrade() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcReinforcingElement::setSteelGrade(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcReinforcingElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[905]); }
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void Ifc4x3_rc1::IfcReinforcingElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< std::string > v9_SteelGrade) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_SteelGrade) {set_attribute_value(8, (*v9_SteelGrade)); } }
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// Function implementations for IfcReinforcingElementType
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const IfcParse::entity& Ifc4x3_rc1::IfcReinforcingElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[906]); }
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void Ifc4x3_rc1::IfcReinforcingElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcReinforcingMesh
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMesh::MeshLength() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcReinforcingMesh::setMeshLength(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMesh::MeshWidth() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcReinforcingMesh::setMeshWidth(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMesh::LongitudinalBarNominalDiameter() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcReinforcingMesh::setLongitudinalBarNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMesh::TransverseBarNominalDiameter() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } double v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcReinforcingMesh::setTransverseBarNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMesh::LongitudinalBarCrossSectionArea() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } double v = get_attribute_value(13); return v; }
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void Ifc4x3_rc1::IfcReinforcingMesh::setLongitudinalBarCrossSectionArea(const std::optional< double >& v) { if (v) {set_attribute_value(13, *v);} else {unset_attribute_value(13);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMesh::TransverseBarCrossSectionArea() const { if(get_attribute_value(14).isNull()) { return std::nullopt; } double v = get_attribute_value(14); return v; }
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void Ifc4x3_rc1::IfcReinforcingMesh::setTransverseBarCrossSectionArea(const std::optional< double >& v) { if (v) {set_attribute_value(14, *v);} else {unset_attribute_value(14);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMesh::LongitudinalBarSpacing() const { if(get_attribute_value(15).isNull()) { return std::nullopt; } double v = get_attribute_value(15); return v; }
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void Ifc4x3_rc1::IfcReinforcingMesh::setLongitudinalBarSpacing(const std::optional< double >& v) { if (v) {set_attribute_value(15, *v);} else {unset_attribute_value(15);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMesh::TransverseBarSpacing() const { if(get_attribute_value(16).isNull()) { return std::nullopt; } double v = get_attribute_value(16); return v; }
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void Ifc4x3_rc1::IfcReinforcingMesh::setTransverseBarSpacing(const std::optional< double >& v) { if (v) {set_attribute_value(16, *v);} else {unset_attribute_value(16);} }
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std::optional< ::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value > Ifc4x3_rc1::IfcReinforcingMesh::PredefinedType() const { if(get_attribute_value(17).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::FromString(get_attribute_value(17)); }
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void Ifc4x3_rc1::IfcReinforcingMesh::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value >& v) { if (v) {set_attribute_value(17, EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(17);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcReinforcingMesh::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[907]); }
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void Ifc4x3_rc1::IfcReinforcingMesh::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< std::string > v9_SteelGrade, std::optional< double > v10_MeshLength, std::optional< double > v11_MeshWidth, std::optional< double > v12_LongitudinalBarNominalDiameter, std::optional< double > v13_TransverseBarNominalDiameter, std::optional< double > v14_LongitudinalBarCrossSectionArea, std::optional< double > v15_TransverseBarCrossSectionArea, std::optional< double > v16_LongitudinalBarSpacing, std::optional< double > v17_TransverseBarSpacing, std::optional< ::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value > v18_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_SteelGrade) {set_attribute_value(8, (*v9_SteelGrade)); } if (v10_MeshLength) {set_attribute_value(9, (*v10_MeshLength)); } if (v11_MeshWidth) {set_attribute_value(10, (*v11_MeshWidth)); } if (v12_LongitudinalBarNominalDiameter) {set_attribute_value(11, (*v12_LongitudinalBarNominalDiameter)); } if (v13_TransverseBarNominalDiameter) {set_attribute_value(12, (*v13_TransverseBarNominalDiameter)); } if (v14_LongitudinalBarCrossSectionArea) {set_attribute_value(13, (*v14_LongitudinalBarCrossSectionArea)); } if (v15_TransverseBarCrossSectionArea) {set_attribute_value(14, (*v15_TransverseBarCrossSectionArea)); } if (v16_LongitudinalBarSpacing) {set_attribute_value(15, (*v16_LongitudinalBarSpacing)); } if (v17_TransverseBarSpacing) {set_attribute_value(16, (*v17_TransverseBarSpacing)); } if (v18_PredefinedType) {set_attribute_value(17, (EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Class(),(size_t)*v18_PredefinedType))); } }
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// Function implementations for IfcReinforcingMeshType
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::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value Ifc4x3_rc1::IfcReinforcingMeshType::PredefinedType() const { return ::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setPredefinedType(const ::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMeshType::MeshLength() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setMeshLength(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMeshType::MeshWidth() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setMeshWidth(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMeshType::LongitudinalBarNominalDiameter() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } double v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setLongitudinalBarNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMeshType::TransverseBarNominalDiameter() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } double v = get_attribute_value(13); return v; }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setTransverseBarNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(13, *v);} else {unset_attribute_value(13);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMeshType::LongitudinalBarCrossSectionArea() const { if(get_attribute_value(14).isNull()) { return std::nullopt; } double v = get_attribute_value(14); return v; }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setLongitudinalBarCrossSectionArea(const std::optional< double >& v) { if (v) {set_attribute_value(14, *v);} else {unset_attribute_value(14);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMeshType::TransverseBarCrossSectionArea() const { if(get_attribute_value(15).isNull()) { return std::nullopt; } double v = get_attribute_value(15); return v; }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setTransverseBarCrossSectionArea(const std::optional< double >& v) { if (v) {set_attribute_value(15, *v);} else {unset_attribute_value(15);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMeshType::LongitudinalBarSpacing() const { if(get_attribute_value(16).isNull()) { return std::nullopt; } double v = get_attribute_value(16); return v; }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setLongitudinalBarSpacing(const std::optional< double >& v) { if (v) {set_attribute_value(16, *v);} else {unset_attribute_value(16);} }
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std::optional< double > Ifc4x3_rc1::IfcReinforcingMeshType::TransverseBarSpacing() const { if(get_attribute_value(17).isNull()) { return std::nullopt; } double v = get_attribute_value(17); return v; }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setTransverseBarSpacing(const std::optional< double >& v) { if (v) {set_attribute_value(17, *v);} else {unset_attribute_value(17);} }
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std::optional< std::string > Ifc4x3_rc1::IfcReinforcingMeshType::BendingShapeCode() const { if(get_attribute_value(18).isNull()) { return std::nullopt; } std::string v = get_attribute_value(18); return v; }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setBendingShapeCode(const std::optional< std::string >& v) { if (v) {set_attribute_value(18, *v);} else {unset_attribute_value(18);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcBendingParameterSelect > > Ifc4x3_rc1::IfcReinforcingMeshType::BendingParameters() const { if(get_attribute_value(19).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(19); return cast_vector<::Ifc4x3_rc1::IfcBendingParameterSelect>(es); }
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void Ifc4x3_rc1::IfcReinforcingMeshType::setBendingParameters(const std::optional< std::vector< ::Ifc4x3_rc1::IfcBendingParameterSelect > >& v) { if (v) {set_attribute_value(19, cast_vector<express::Base>(*v));} else {unset_attribute_value(19);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcReinforcingMeshType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[908]); }
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void Ifc4x3_rc1::IfcReinforcingMeshType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Value v10_PredefinedType, std::optional< double > v11_MeshLength, std::optional< double > v12_MeshWidth, std::optional< double > v13_LongitudinalBarNominalDiameter, std::optional< double > v14_TransverseBarNominalDiameter, std::optional< double > v15_LongitudinalBarCrossSectionArea, std::optional< double > v16_TransverseBarCrossSectionArea, std::optional< double > v17_LongitudinalBarSpacing, std::optional< double > v18_TransverseBarSpacing, std::optional< std::string > v19_BendingShapeCode, std::optional< std::vector< ::Ifc4x3_rc1::IfcBendingParameterSelect > > v20_BendingParameters) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingMeshTypeEnum::Class(),(size_t)v10_PredefinedType))); if (v11_MeshLength) {set_attribute_value(10, (*v11_MeshLength)); } if (v12_MeshWidth) {set_attribute_value(11, (*v12_MeshWidth)); } if (v13_LongitudinalBarNominalDiameter) {set_attribute_value(12, (*v13_LongitudinalBarNominalDiameter)); } if (v14_TransverseBarNominalDiameter) {set_attribute_value(13, (*v14_TransverseBarNominalDiameter)); } if (v15_LongitudinalBarCrossSectionArea) {set_attribute_value(14, (*v15_LongitudinalBarCrossSectionArea)); } if (v16_TransverseBarCrossSectionArea) {set_attribute_value(15, (*v16_TransverseBarCrossSectionArea)); } if (v17_LongitudinalBarSpacing) {set_attribute_value(16, (*v17_LongitudinalBarSpacing)); } if (v18_TransverseBarSpacing) {set_attribute_value(17, (*v18_TransverseBarSpacing)); } if (v19_BendingShapeCode) {set_attribute_value(18, (*v19_BendingShapeCode)); } if (v20_BendingParameters) {set_attribute_value(19, cast_vector<express::Base>(*v20_BendingParameters)); } }
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// Function implementations for IfcRelAggregates
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::Ifc4x3_rc1::IfcObjectDefinition Ifc4x3_rc1::IfcRelAggregates::RelatingObject() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcObjectDefinition>(); }
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void Ifc4x3_rc1::IfcRelAggregates::setRelatingObject(const ::Ifc4x3_rc1::IfcObjectDefinition& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > Ifc4x3_rc1::IfcRelAggregates::RelatedObjects() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcObjectDefinition>(es); }
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void Ifc4x3_rc1::IfcRelAggregates::setRelatedObjects(const std::vector< ::Ifc4x3_rc1::IfcObjectDefinition >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAggregates::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[910]); }
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void Ifc4x3_rc1::IfcRelAggregates::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcObjectDefinition v5_RelatingObject, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v6_RelatedObjects) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingObject));set_attribute_value(5, cast_vector<express::Base>(v6_RelatedObjects)); }
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// Function implementations for IfcRelAssigns
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std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > Ifc4x3_rc1::IfcRelAssigns::RelatedObjects() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcObjectDefinition>(es); }
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void Ifc4x3_rc1::IfcRelAssigns::setRelatedObjects(const std::vector< ::Ifc4x3_rc1::IfcObjectDefinition >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value > Ifc4x3_rc1::IfcRelAssigns::RelatedObjectsType() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcObjectTypeEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcRelAssigns::setRelatedObjectsType(const std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value >& v) { if (v) {set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(5);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssigns::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[911]); }
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void Ifc4x3_rc1::IfcRelAssigns::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v5_RelatedObjects, std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value > v6_RelatedObjectsType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); if (v6_RelatedObjectsType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(),(size_t)*v6_RelatedObjectsType))); } }
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// Function implementations for IfcRelAssignsToActor
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::Ifc4x3_rc1::IfcActor Ifc4x3_rc1::IfcRelAssignsToActor::RelatingActor() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcActor>(); }
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void Ifc4x3_rc1::IfcRelAssignsToActor::setRelatingActor(const ::Ifc4x3_rc1::IfcActor& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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::Ifc4x3_rc1::IfcActorRole Ifc4x3_rc1::IfcRelAssignsToActor::ActingRole() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcActorRole{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcActorRole>(); }
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void Ifc4x3_rc1::IfcRelAssignsToActor::setActingRole(const ::Ifc4x3_rc1::IfcActorRole& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssignsToActor::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[912]); }
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void Ifc4x3_rc1::IfcRelAssignsToActor::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v5_RelatedObjects, std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value > v6_RelatedObjectsType, ::Ifc4x3_rc1::IfcActor v7_RelatingActor, ::Ifc4x3_rc1::IfcActorRole v8_ActingRole) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); if (v6_RelatedObjectsType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(),(size_t)*v6_RelatedObjectsType))); }set_attribute_value(6, (v7_RelatingActor));set_attribute_value(7, (v8_ActingRole)); }
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// Function implementations for IfcRelAssignsToControl
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::Ifc4x3_rc1::IfcControl Ifc4x3_rc1::IfcRelAssignsToControl::RelatingControl() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcControl>(); }
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void Ifc4x3_rc1::IfcRelAssignsToControl::setRelatingControl(const ::Ifc4x3_rc1::IfcControl& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssignsToControl::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[913]); }
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void Ifc4x3_rc1::IfcRelAssignsToControl::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v5_RelatedObjects, std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value > v6_RelatedObjectsType, ::Ifc4x3_rc1::IfcControl v7_RelatingControl) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); if (v6_RelatedObjectsType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(),(size_t)*v6_RelatedObjectsType))); }set_attribute_value(6, (v7_RelatingControl)); }
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// Function implementations for IfcRelAssignsToGroup
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::Ifc4x3_rc1::IfcGroup Ifc4x3_rc1::IfcRelAssignsToGroup::RelatingGroup() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcGroup>(); }
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void Ifc4x3_rc1::IfcRelAssignsToGroup::setRelatingGroup(const ::Ifc4x3_rc1::IfcGroup& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssignsToGroup::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[914]); }
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void Ifc4x3_rc1::IfcRelAssignsToGroup::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v5_RelatedObjects, std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value > v6_RelatedObjectsType, ::Ifc4x3_rc1::IfcGroup v7_RelatingGroup) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); if (v6_RelatedObjectsType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(),(size_t)*v6_RelatedObjectsType))); }set_attribute_value(6, (v7_RelatingGroup)); }
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// Function implementations for IfcRelAssignsToGroupByFactor
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double Ifc4x3_rc1::IfcRelAssignsToGroupByFactor::Factor() const { double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcRelAssignsToGroupByFactor::setFactor(const double& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssignsToGroupByFactor::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[915]); }
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void Ifc4x3_rc1::IfcRelAssignsToGroupByFactor::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v5_RelatedObjects, std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value > v6_RelatedObjectsType, ::Ifc4x3_rc1::IfcGroup v7_RelatingGroup, double v8_Factor) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); if (v6_RelatedObjectsType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(),(size_t)*v6_RelatedObjectsType))); }set_attribute_value(6, (v7_RelatingGroup));set_attribute_value(7, (v8_Factor)); }
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// Function implementations for IfcRelAssignsToProcess
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::Ifc4x3_rc1::IfcProcessSelect Ifc4x3_rc1::IfcRelAssignsToProcess::RelatingProcess() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcProcessSelect>(); }
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void Ifc4x3_rc1::IfcRelAssignsToProcess::setRelatingProcess(const ::Ifc4x3_rc1::IfcProcessSelect& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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::Ifc4x3_rc1::IfcMeasureWithUnit Ifc4x3_rc1::IfcRelAssignsToProcess::QuantityInProcess() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcMeasureWithUnit{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcMeasureWithUnit>(); }
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void Ifc4x3_rc1::IfcRelAssignsToProcess::setQuantityInProcess(const ::Ifc4x3_rc1::IfcMeasureWithUnit& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssignsToProcess::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[916]); }
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void Ifc4x3_rc1::IfcRelAssignsToProcess::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v5_RelatedObjects, std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value > v6_RelatedObjectsType, ::Ifc4x3_rc1::IfcProcessSelect v7_RelatingProcess, ::Ifc4x3_rc1::IfcMeasureWithUnit v8_QuantityInProcess) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); if (v6_RelatedObjectsType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(),(size_t)*v6_RelatedObjectsType))); }set_attribute_value(6, (v7_RelatingProcess));set_attribute_value(7, (v8_QuantityInProcess)); }
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// Function implementations for IfcRelAssignsToProduct
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::Ifc4x3_rc1::IfcProductSelect Ifc4x3_rc1::IfcRelAssignsToProduct::RelatingProduct() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcProductSelect>(); }
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void Ifc4x3_rc1::IfcRelAssignsToProduct::setRelatingProduct(const ::Ifc4x3_rc1::IfcProductSelect& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssignsToProduct::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[917]); }
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void Ifc4x3_rc1::IfcRelAssignsToProduct::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v5_RelatedObjects, std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value > v6_RelatedObjectsType, ::Ifc4x3_rc1::IfcProductSelect v7_RelatingProduct) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); if (v6_RelatedObjectsType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(),(size_t)*v6_RelatedObjectsType))); }set_attribute_value(6, (v7_RelatingProduct)); }
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// Function implementations for IfcRelAssignsToResource
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::Ifc4x3_rc1::IfcResourceSelect Ifc4x3_rc1::IfcRelAssignsToResource::RelatingResource() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcResourceSelect>(); }
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void Ifc4x3_rc1::IfcRelAssignsToResource::setRelatingResource(const ::Ifc4x3_rc1::IfcResourceSelect& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssignsToResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[918]); }
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void Ifc4x3_rc1::IfcRelAssignsToResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v5_RelatedObjects, std::optional< ::Ifc4x3_rc1::IfcObjectTypeEnum::Value > v6_RelatedObjectsType, ::Ifc4x3_rc1::IfcResourceSelect v7_RelatingResource) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); if (v6_RelatedObjectsType) {set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcObjectTypeEnum::Class(),(size_t)*v6_RelatedObjectsType))); }set_attribute_value(6, (v7_RelatingResource)); }
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// Function implementations for IfcRelAssociates
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std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > Ifc4x3_rc1::IfcRelAssociates::RelatedObjects() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcDefinitionSelect>(es); }
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void Ifc4x3_rc1::IfcRelAssociates::setRelatedObjects(const std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssociates::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[919]); }
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void Ifc4x3_rc1::IfcRelAssociates::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > v5_RelatedObjects) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); }
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// Function implementations for IfcRelAssociatesApproval
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::Ifc4x3_rc1::IfcApproval Ifc4x3_rc1::IfcRelAssociatesApproval::RelatingApproval() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcApproval>(); }
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void Ifc4x3_rc1::IfcRelAssociatesApproval::setRelatingApproval(const ::Ifc4x3_rc1::IfcApproval& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssociatesApproval::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[920]); }
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void Ifc4x3_rc1::IfcRelAssociatesApproval::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > v5_RelatedObjects, ::Ifc4x3_rc1::IfcApproval v6_RelatingApproval) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects));set_attribute_value(5, (v6_RelatingApproval)); }
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// Function implementations for IfcRelAssociatesClassification
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::Ifc4x3_rc1::IfcClassificationSelect Ifc4x3_rc1::IfcRelAssociatesClassification::RelatingClassification() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcClassificationSelect>(); }
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void Ifc4x3_rc1::IfcRelAssociatesClassification::setRelatingClassification(const ::Ifc4x3_rc1::IfcClassificationSelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssociatesClassification::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[921]); }
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void Ifc4x3_rc1::IfcRelAssociatesClassification::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > v5_RelatedObjects, ::Ifc4x3_rc1::IfcClassificationSelect v6_RelatingClassification) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects));set_attribute_value(5, (v6_RelatingClassification)); }
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// Function implementations for IfcRelAssociatesConstraint
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std::optional< std::string > Ifc4x3_rc1::IfcRelAssociatesConstraint::Intent() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcRelAssociatesConstraint::setIntent(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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::Ifc4x3_rc1::IfcConstraint Ifc4x3_rc1::IfcRelAssociatesConstraint::RelatingConstraint() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcConstraint>(); }
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void Ifc4x3_rc1::IfcRelAssociatesConstraint::setRelatingConstraint(const ::Ifc4x3_rc1::IfcConstraint& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssociatesConstraint::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[922]); }
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void Ifc4x3_rc1::IfcRelAssociatesConstraint::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > v5_RelatedObjects, std::optional< std::string > v6_Intent, ::Ifc4x3_rc1::IfcConstraint v7_RelatingConstraint) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects)); if (v6_Intent) {set_attribute_value(5, (*v6_Intent)); }set_attribute_value(6, (v7_RelatingConstraint)); }
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// Function implementations for IfcRelAssociatesDocument
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::Ifc4x3_rc1::IfcDocumentSelect Ifc4x3_rc1::IfcRelAssociatesDocument::RelatingDocument() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcDocumentSelect>(); }
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void Ifc4x3_rc1::IfcRelAssociatesDocument::setRelatingDocument(const ::Ifc4x3_rc1::IfcDocumentSelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssociatesDocument::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[923]); }
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void Ifc4x3_rc1::IfcRelAssociatesDocument::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > v5_RelatedObjects, ::Ifc4x3_rc1::IfcDocumentSelect v6_RelatingDocument) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects));set_attribute_value(5, (v6_RelatingDocument)); }
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// Function implementations for IfcRelAssociatesLibrary
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::Ifc4x3_rc1::IfcLibrarySelect Ifc4x3_rc1::IfcRelAssociatesLibrary::RelatingLibrary() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcLibrarySelect>(); }
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void Ifc4x3_rc1::IfcRelAssociatesLibrary::setRelatingLibrary(const ::Ifc4x3_rc1::IfcLibrarySelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssociatesLibrary::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[924]); }
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void Ifc4x3_rc1::IfcRelAssociatesLibrary::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > v5_RelatedObjects, ::Ifc4x3_rc1::IfcLibrarySelect v6_RelatingLibrary) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects));set_attribute_value(5, (v6_RelatingLibrary)); }
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// Function implementations for IfcRelAssociatesMaterial
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::Ifc4x3_rc1::IfcMaterialSelect Ifc4x3_rc1::IfcRelAssociatesMaterial::RelatingMaterial() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcMaterialSelect>(); }
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void Ifc4x3_rc1::IfcRelAssociatesMaterial::setRelatingMaterial(const ::Ifc4x3_rc1::IfcMaterialSelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssociatesMaterial::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[925]); }
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void Ifc4x3_rc1::IfcRelAssociatesMaterial::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > v5_RelatedObjects, ::Ifc4x3_rc1::IfcMaterialSelect v6_RelatingMaterial) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects));set_attribute_value(5, (v6_RelatingMaterial)); }
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// Function implementations for IfcRelAssociatesProfileDef
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcRelAssociatesProfileDef::RelatingProfileDef() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcRelAssociatesProfileDef::setRelatingProfileDef(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelAssociatesProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[926]); }
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void Ifc4x3_rc1::IfcRelAssociatesProfileDef::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > v5_RelatedObjects, ::Ifc4x3_rc1::IfcProfileDef v6_RelatingProfileDef) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects));set_attribute_value(5, (v6_RelatingProfileDef)); }
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// Function implementations for IfcRelConnects
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const IfcParse::entity& Ifc4x3_rc1::IfcRelConnects::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[928]); }
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void Ifc4x3_rc1::IfcRelConnects::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcRelConnectsElements
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::Ifc4x3_rc1::IfcConnectionGeometry Ifc4x3_rc1::IfcRelConnectsElements::ConnectionGeometry() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcConnectionGeometry{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcConnectionGeometry>(); }
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void Ifc4x3_rc1::IfcRelConnectsElements::setConnectionGeometry(const ::Ifc4x3_rc1::IfcConnectionGeometry& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcElement Ifc4x3_rc1::IfcRelConnectsElements::RelatingElement() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcElement>(); }
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void Ifc4x3_rc1::IfcRelConnectsElements::setRelatingElement(const ::Ifc4x3_rc1::IfcElement& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcElement Ifc4x3_rc1::IfcRelConnectsElements::RelatedElement() const { return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcElement>(); }
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void Ifc4x3_rc1::IfcRelConnectsElements::setRelatedElement(const ::Ifc4x3_rc1::IfcElement& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelConnectsElements::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[929]); }
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void Ifc4x3_rc1::IfcRelConnectsElements::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcConnectionGeometry v5_ConnectionGeometry, ::Ifc4x3_rc1::IfcElement v6_RelatingElement, ::Ifc4x3_rc1::IfcElement v7_RelatedElement) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_ConnectionGeometry));set_attribute_value(5, (v6_RelatingElement));set_attribute_value(6, (v7_RelatedElement)); }
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// Function implementations for IfcRelConnectsPathElements
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std::vector< int > /*[0:?]*/ Ifc4x3_rc1::IfcRelConnectsPathElements::RelatingPriorities() const { std::vector< int > /*[0:?]*/ v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcRelConnectsPathElements::setRelatingPriorities(const std::vector< int > /*[0:?]*/& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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std::vector< int > /*[0:?]*/ Ifc4x3_rc1::IfcRelConnectsPathElements::RelatedPriorities() const { std::vector< int > /*[0:?]*/ v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcRelConnectsPathElements::setRelatedPriorities(const std::vector< int > /*[0:?]*/& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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::Ifc4x3_rc1::IfcConnectionTypeEnum::Value Ifc4x3_rc1::IfcRelConnectsPathElements::RelatedConnectionType() const { return ::Ifc4x3_rc1::IfcConnectionTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcRelConnectsPathElements::setRelatedConnectionType(const ::Ifc4x3_rc1::IfcConnectionTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcConnectionTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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::Ifc4x3_rc1::IfcConnectionTypeEnum::Value Ifc4x3_rc1::IfcRelConnectsPathElements::RelatingConnectionType() const { return ::Ifc4x3_rc1::IfcConnectionTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcRelConnectsPathElements::setRelatingConnectionType(const ::Ifc4x3_rc1::IfcConnectionTypeEnum::Value& v) { set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcConnectionTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(10); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelConnectsPathElements::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[930]); }
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void Ifc4x3_rc1::IfcRelConnectsPathElements::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcConnectionGeometry v5_ConnectionGeometry, ::Ifc4x3_rc1::IfcElement v6_RelatingElement, ::Ifc4x3_rc1::IfcElement v7_RelatedElement, std::vector< int > /*[0:?]*/ v8_RelatingPriorities, std::vector< int > /*[0:?]*/ v9_RelatedPriorities, ::Ifc4x3_rc1::IfcConnectionTypeEnum::Value v10_RelatedConnectionType, ::Ifc4x3_rc1::IfcConnectionTypeEnum::Value v11_RelatingConnectionType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_ConnectionGeometry));set_attribute_value(5, (v6_RelatingElement));set_attribute_value(6, (v7_RelatedElement));set_attribute_value(7, (v8_RelatingPriorities));set_attribute_value(8, (v9_RelatedPriorities));set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcConnectionTypeEnum::Class(),(size_t)v10_RelatedConnectionType)));set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcConnectionTypeEnum::Class(),(size_t)v11_RelatingConnectionType))); }
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// Function implementations for IfcRelConnectsPortToElement
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::Ifc4x3_rc1::IfcPort Ifc4x3_rc1::IfcRelConnectsPortToElement::RelatingPort() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcPort>(); }
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void Ifc4x3_rc1::IfcRelConnectsPortToElement::setRelatingPort(const ::Ifc4x3_rc1::IfcPort& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcDistributionElement Ifc4x3_rc1::IfcRelConnectsPortToElement::RelatedElement() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcDistributionElement>(); }
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void Ifc4x3_rc1::IfcRelConnectsPortToElement::setRelatedElement(const ::Ifc4x3_rc1::IfcDistributionElement& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelConnectsPortToElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[932]); }
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void Ifc4x3_rc1::IfcRelConnectsPortToElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcPort v5_RelatingPort, ::Ifc4x3_rc1::IfcDistributionElement v6_RelatedElement) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingPort));set_attribute_value(5, (v6_RelatedElement)); }
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// Function implementations for IfcRelConnectsPorts
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::Ifc4x3_rc1::IfcPort Ifc4x3_rc1::IfcRelConnectsPorts::RelatingPort() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcPort>(); }
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void Ifc4x3_rc1::IfcRelConnectsPorts::setRelatingPort(const ::Ifc4x3_rc1::IfcPort& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcPort Ifc4x3_rc1::IfcRelConnectsPorts::RelatedPort() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcPort>(); }
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void Ifc4x3_rc1::IfcRelConnectsPorts::setRelatedPort(const ::Ifc4x3_rc1::IfcPort& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcElement Ifc4x3_rc1::IfcRelConnectsPorts::RealizingElement() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcElement{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcElement>(); }
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void Ifc4x3_rc1::IfcRelConnectsPorts::setRealizingElement(const ::Ifc4x3_rc1::IfcElement& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelConnectsPorts::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[931]); }
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void Ifc4x3_rc1::IfcRelConnectsPorts::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcPort v5_RelatingPort, ::Ifc4x3_rc1::IfcPort v6_RelatedPort, ::Ifc4x3_rc1::IfcElement v7_RealizingElement) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingPort));set_attribute_value(5, (v6_RelatedPort));set_attribute_value(6, (v7_RealizingElement)); }
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// Function implementations for IfcRelConnectsStructuralActivity
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::Ifc4x3_rc1::IfcStructuralActivityAssignmentSelect Ifc4x3_rc1::IfcRelConnectsStructuralActivity::RelatingElement() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcStructuralActivityAssignmentSelect>(); }
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void Ifc4x3_rc1::IfcRelConnectsStructuralActivity::setRelatingElement(const ::Ifc4x3_rc1::IfcStructuralActivityAssignmentSelect& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcStructuralActivity Ifc4x3_rc1::IfcRelConnectsStructuralActivity::RelatedStructuralActivity() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcStructuralActivity>(); }
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void Ifc4x3_rc1::IfcRelConnectsStructuralActivity::setRelatedStructuralActivity(const ::Ifc4x3_rc1::IfcStructuralActivity& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelConnectsStructuralActivity::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[933]); }
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void Ifc4x3_rc1::IfcRelConnectsStructuralActivity::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcStructuralActivityAssignmentSelect v5_RelatingElement, ::Ifc4x3_rc1::IfcStructuralActivity v6_RelatedStructuralActivity) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingElement));set_attribute_value(5, (v6_RelatedStructuralActivity)); }
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// Function implementations for IfcRelConnectsStructuralMember
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::Ifc4x3_rc1::IfcStructuralMember Ifc4x3_rc1::IfcRelConnectsStructuralMember::RelatingStructuralMember() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcStructuralMember>(); }
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void Ifc4x3_rc1::IfcRelConnectsStructuralMember::setRelatingStructuralMember(const ::Ifc4x3_rc1::IfcStructuralMember& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcStructuralConnection Ifc4x3_rc1::IfcRelConnectsStructuralMember::RelatedStructuralConnection() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcStructuralConnection>(); }
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void Ifc4x3_rc1::IfcRelConnectsStructuralMember::setRelatedStructuralConnection(const ::Ifc4x3_rc1::IfcStructuralConnection& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcBoundaryCondition Ifc4x3_rc1::IfcRelConnectsStructuralMember::AppliedCondition() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcBoundaryCondition{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcBoundaryCondition>(); }
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void Ifc4x3_rc1::IfcRelConnectsStructuralMember::setAppliedCondition(const ::Ifc4x3_rc1::IfcBoundaryCondition& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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::Ifc4x3_rc1::IfcStructuralConnectionCondition Ifc4x3_rc1::IfcRelConnectsStructuralMember::AdditionalConditions() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcStructuralConnectionCondition{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcStructuralConnectionCondition>(); }
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void Ifc4x3_rc1::IfcRelConnectsStructuralMember::setAdditionalConditions(const ::Ifc4x3_rc1::IfcStructuralConnectionCondition& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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std::optional< double > Ifc4x3_rc1::IfcRelConnectsStructuralMember::SupportedLength() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcRelConnectsStructuralMember::setSupportedLength(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcRelConnectsStructuralMember::ConditionCoordinateSystem() const { if(get_attribute_value(9).isNull()) { return ::Ifc4x3_rc1::IfcAxis2Placement3D{}; } return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcRelConnectsStructuralMember::setConditionCoordinateSystem(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelConnectsStructuralMember::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[934]); }
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void Ifc4x3_rc1::IfcRelConnectsStructuralMember::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcStructuralMember v5_RelatingStructuralMember, ::Ifc4x3_rc1::IfcStructuralConnection v6_RelatedStructuralConnection, ::Ifc4x3_rc1::IfcBoundaryCondition v7_AppliedCondition, ::Ifc4x3_rc1::IfcStructuralConnectionCondition v8_AdditionalConditions, std::optional< double > v9_SupportedLength, ::Ifc4x3_rc1::IfcAxis2Placement3D v10_ConditionCoordinateSystem) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingStructuralMember));set_attribute_value(5, (v6_RelatedStructuralConnection));set_attribute_value(6, (v7_AppliedCondition));set_attribute_value(7, (v8_AdditionalConditions)); if (v9_SupportedLength) {set_attribute_value(8, (*v9_SupportedLength)); }set_attribute_value(9, (v10_ConditionCoordinateSystem)); }
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// Function implementations for IfcRelConnectsWithEccentricity
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::Ifc4x3_rc1::IfcConnectionGeometry Ifc4x3_rc1::IfcRelConnectsWithEccentricity::ConnectionConstraint() const { return ((express::Base)(get_attribute_value(10))).as<::Ifc4x3_rc1::IfcConnectionGeometry>(); }
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void Ifc4x3_rc1::IfcRelConnectsWithEccentricity::setConnectionConstraint(const ::Ifc4x3_rc1::IfcConnectionGeometry& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelConnectsWithEccentricity::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[935]); }
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void Ifc4x3_rc1::IfcRelConnectsWithEccentricity::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcStructuralMember v5_RelatingStructuralMember, ::Ifc4x3_rc1::IfcStructuralConnection v6_RelatedStructuralConnection, ::Ifc4x3_rc1::IfcBoundaryCondition v7_AppliedCondition, ::Ifc4x3_rc1::IfcStructuralConnectionCondition v8_AdditionalConditions, std::optional< double > v9_SupportedLength, ::Ifc4x3_rc1::IfcAxis2Placement3D v10_ConditionCoordinateSystem, ::Ifc4x3_rc1::IfcConnectionGeometry v11_ConnectionConstraint) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingStructuralMember));set_attribute_value(5, (v6_RelatedStructuralConnection));set_attribute_value(6, (v7_AppliedCondition));set_attribute_value(7, (v8_AdditionalConditions)); if (v9_SupportedLength) {set_attribute_value(8, (*v9_SupportedLength)); }set_attribute_value(9, (v10_ConditionCoordinateSystem));set_attribute_value(10, (v11_ConnectionConstraint)); }
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// Function implementations for IfcRelConnectsWithRealizingElements
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std::vector< ::Ifc4x3_rc1::IfcElement > Ifc4x3_rc1::IfcRelConnectsWithRealizingElements::RealizingElements() const { std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcElement>(es); }
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void Ifc4x3_rc1::IfcRelConnectsWithRealizingElements::setRealizingElements(const std::vector< ::Ifc4x3_rc1::IfcElement >& v) { set_attribute_value(7, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(7); }
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std::optional< std::string > Ifc4x3_rc1::IfcRelConnectsWithRealizingElements::ConnectionType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcRelConnectsWithRealizingElements::setConnectionType(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelConnectsWithRealizingElements::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[936]); }
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void Ifc4x3_rc1::IfcRelConnectsWithRealizingElements::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcConnectionGeometry v5_ConnectionGeometry, ::Ifc4x3_rc1::IfcElement v6_RelatingElement, ::Ifc4x3_rc1::IfcElement v7_RelatedElement, std::vector< ::Ifc4x3_rc1::IfcElement > v8_RealizingElements, std::optional< std::string > v9_ConnectionType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_ConnectionGeometry));set_attribute_value(5, (v6_RelatingElement));set_attribute_value(6, (v7_RelatedElement));set_attribute_value(7, cast_vector<express::Base>(v8_RealizingElements)); if (v9_ConnectionType) {set_attribute_value(8, (*v9_ConnectionType)); } }
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// Function implementations for IfcRelContainedInSpatialStructure
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std::vector< ::Ifc4x3_rc1::IfcProduct > Ifc4x3_rc1::IfcRelContainedInSpatialStructure::RelatedElements() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcProduct>(es); }
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void Ifc4x3_rc1::IfcRelContainedInSpatialStructure::setRelatedElements(const std::vector< ::Ifc4x3_rc1::IfcProduct >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcSpatialElement Ifc4x3_rc1::IfcRelContainedInSpatialStructure::RelatingStructure() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcSpatialElement>(); }
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void Ifc4x3_rc1::IfcRelContainedInSpatialStructure::setRelatingStructure(const ::Ifc4x3_rc1::IfcSpatialElement& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelContainedInSpatialStructure::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[937]); }
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void Ifc4x3_rc1::IfcRelContainedInSpatialStructure::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcProduct > v5_RelatedElements, ::Ifc4x3_rc1::IfcSpatialElement v6_RelatingStructure) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedElements));set_attribute_value(5, (v6_RelatingStructure)); }
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// Function implementations for IfcRelCoversBldgElements
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::Ifc4x3_rc1::IfcElement Ifc4x3_rc1::IfcRelCoversBldgElements::RelatingBuildingElement() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcElement>(); }
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void Ifc4x3_rc1::IfcRelCoversBldgElements::setRelatingBuildingElement(const ::Ifc4x3_rc1::IfcElement& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector< ::Ifc4x3_rc1::IfcCovering > Ifc4x3_rc1::IfcRelCoversBldgElements::RelatedCoverings() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcCovering>(es); }
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void Ifc4x3_rc1::IfcRelCoversBldgElements::setRelatedCoverings(const std::vector< ::Ifc4x3_rc1::IfcCovering >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelCoversBldgElements::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[938]); }
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void Ifc4x3_rc1::IfcRelCoversBldgElements::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcElement v5_RelatingBuildingElement, std::vector< ::Ifc4x3_rc1::IfcCovering > v6_RelatedCoverings) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingBuildingElement));set_attribute_value(5, cast_vector<express::Base>(v6_RelatedCoverings)); }
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// Function implementations for IfcRelCoversSpaces
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::Ifc4x3_rc1::IfcSpace Ifc4x3_rc1::IfcRelCoversSpaces::RelatingSpace() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcSpace>(); }
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void Ifc4x3_rc1::IfcRelCoversSpaces::setRelatingSpace(const ::Ifc4x3_rc1::IfcSpace& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector< ::Ifc4x3_rc1::IfcCovering > Ifc4x3_rc1::IfcRelCoversSpaces::RelatedCoverings() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcCovering>(es); }
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void Ifc4x3_rc1::IfcRelCoversSpaces::setRelatedCoverings(const std::vector< ::Ifc4x3_rc1::IfcCovering >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelCoversSpaces::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[939]); }
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void Ifc4x3_rc1::IfcRelCoversSpaces::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcSpace v5_RelatingSpace, std::vector< ::Ifc4x3_rc1::IfcCovering > v6_RelatedCoverings) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingSpace));set_attribute_value(5, cast_vector<express::Base>(v6_RelatedCoverings)); }
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// Function implementations for IfcRelDeclares
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::Ifc4x3_rc1::IfcContext Ifc4x3_rc1::IfcRelDeclares::RelatingContext() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcContext>(); }
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void Ifc4x3_rc1::IfcRelDeclares::setRelatingContext(const ::Ifc4x3_rc1::IfcContext& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > Ifc4x3_rc1::IfcRelDeclares::RelatedDefinitions() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcDefinitionSelect>(es); }
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void Ifc4x3_rc1::IfcRelDeclares::setRelatedDefinitions(const std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelDeclares::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[940]); }
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void Ifc4x3_rc1::IfcRelDeclares::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcContext v5_RelatingContext, std::vector< ::Ifc4x3_rc1::IfcDefinitionSelect > v6_RelatedDefinitions) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingContext));set_attribute_value(5, cast_vector<express::Base>(v6_RelatedDefinitions)); }
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// Function implementations for IfcRelDecomposes
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const IfcParse::entity& Ifc4x3_rc1::IfcRelDecomposes::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[941]); }
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void Ifc4x3_rc1::IfcRelDecomposes::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcRelDefines
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const IfcParse::entity& Ifc4x3_rc1::IfcRelDefines::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[942]); }
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void Ifc4x3_rc1::IfcRelDefines::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcRelDefinesByObject
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std::vector< ::Ifc4x3_rc1::IfcObject > Ifc4x3_rc1::IfcRelDefinesByObject::RelatedObjects() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcObject>(es); }
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void Ifc4x3_rc1::IfcRelDefinesByObject::setRelatedObjects(const std::vector< ::Ifc4x3_rc1::IfcObject >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcObject Ifc4x3_rc1::IfcRelDefinesByObject::RelatingObject() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcObject>(); }
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void Ifc4x3_rc1::IfcRelDefinesByObject::setRelatingObject(const ::Ifc4x3_rc1::IfcObject& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelDefinesByObject::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[943]); }
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void Ifc4x3_rc1::IfcRelDefinesByObject::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObject > v5_RelatedObjects, ::Ifc4x3_rc1::IfcObject v6_RelatingObject) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects));set_attribute_value(5, (v6_RelatingObject)); }
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// Function implementations for IfcRelDefinesByProperties
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std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > Ifc4x3_rc1::IfcRelDefinesByProperties::RelatedObjects() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcObjectDefinition>(es); }
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void Ifc4x3_rc1::IfcRelDefinesByProperties::setRelatedObjects(const std::vector< ::Ifc4x3_rc1::IfcObjectDefinition >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcPropertySetDefinitionSelect Ifc4x3_rc1::IfcRelDefinesByProperties::RelatingPropertyDefinition() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcPropertySetDefinitionSelect>(); }
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void Ifc4x3_rc1::IfcRelDefinesByProperties::setRelatingPropertyDefinition(const ::Ifc4x3_rc1::IfcPropertySetDefinitionSelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelDefinesByProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[944]); }
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void Ifc4x3_rc1::IfcRelDefinesByProperties::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v5_RelatedObjects, ::Ifc4x3_rc1::IfcPropertySetDefinitionSelect v6_RelatingPropertyDefinition) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects));set_attribute_value(5, (v6_RelatingPropertyDefinition)); }
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// Function implementations for IfcRelDefinesByTemplate
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std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > Ifc4x3_rc1::IfcRelDefinesByTemplate::RelatedPropertySets() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcPropertySetDefinition>(es); }
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void Ifc4x3_rc1::IfcRelDefinesByTemplate::setRelatedPropertySets(const std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcPropertySetTemplate Ifc4x3_rc1::IfcRelDefinesByTemplate::RelatingTemplate() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcPropertySetTemplate>(); }
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void Ifc4x3_rc1::IfcRelDefinesByTemplate::setRelatingTemplate(const ::Ifc4x3_rc1::IfcPropertySetTemplate& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelDefinesByTemplate::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[945]); }
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void Ifc4x3_rc1::IfcRelDefinesByTemplate::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > v5_RelatedPropertySets, ::Ifc4x3_rc1::IfcPropertySetTemplate v6_RelatingTemplate) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedPropertySets));set_attribute_value(5, (v6_RelatingTemplate)); }
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// Function implementations for IfcRelDefinesByType
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std::vector< ::Ifc4x3_rc1::IfcObject > Ifc4x3_rc1::IfcRelDefinesByType::RelatedObjects() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcObject>(es); }
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void Ifc4x3_rc1::IfcRelDefinesByType::setRelatedObjects(const std::vector< ::Ifc4x3_rc1::IfcObject >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcTypeObject Ifc4x3_rc1::IfcRelDefinesByType::RelatingType() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcTypeObject>(); }
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void Ifc4x3_rc1::IfcRelDefinesByType::setRelatingType(const ::Ifc4x3_rc1::IfcTypeObject& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelDefinesByType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[946]); }
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void Ifc4x3_rc1::IfcRelDefinesByType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcObject > v5_RelatedObjects, ::Ifc4x3_rc1::IfcTypeObject v6_RelatingType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedObjects));set_attribute_value(5, (v6_RelatingType)); }
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// Function implementations for IfcRelFillsElement
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::Ifc4x3_rc1::IfcOpeningElement Ifc4x3_rc1::IfcRelFillsElement::RelatingOpeningElement() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcOpeningElement>(); }
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void Ifc4x3_rc1::IfcRelFillsElement::setRelatingOpeningElement(const ::Ifc4x3_rc1::IfcOpeningElement& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcElement Ifc4x3_rc1::IfcRelFillsElement::RelatedBuildingElement() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcElement>(); }
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void Ifc4x3_rc1::IfcRelFillsElement::setRelatedBuildingElement(const ::Ifc4x3_rc1::IfcElement& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelFillsElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[947]); }
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void Ifc4x3_rc1::IfcRelFillsElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcOpeningElement v5_RelatingOpeningElement, ::Ifc4x3_rc1::IfcElement v6_RelatedBuildingElement) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingOpeningElement));set_attribute_value(5, (v6_RelatedBuildingElement)); }
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// Function implementations for IfcRelFlowControlElements
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std::vector< ::Ifc4x3_rc1::IfcDistributionControlElement > Ifc4x3_rc1::IfcRelFlowControlElements::RelatedControlElements() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcDistributionControlElement>(es); }
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void Ifc4x3_rc1::IfcRelFlowControlElements::setRelatedControlElements(const std::vector< ::Ifc4x3_rc1::IfcDistributionControlElement >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcDistributionFlowElement Ifc4x3_rc1::IfcRelFlowControlElements::RelatingFlowElement() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcDistributionFlowElement>(); }
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void Ifc4x3_rc1::IfcRelFlowControlElements::setRelatingFlowElement(const ::Ifc4x3_rc1::IfcDistributionFlowElement& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelFlowControlElements::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[948]); }
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void Ifc4x3_rc1::IfcRelFlowControlElements::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcDistributionControlElement > v5_RelatedControlElements, ::Ifc4x3_rc1::IfcDistributionFlowElement v6_RelatingFlowElement) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedControlElements));set_attribute_value(5, (v6_RelatingFlowElement)); }
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// Function implementations for IfcRelInterferesElements
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::Ifc4x3_rc1::IfcInterferenceSelect Ifc4x3_rc1::IfcRelInterferesElements::RelatingElement() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcInterferenceSelect>(); }
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void Ifc4x3_rc1::IfcRelInterferesElements::setRelatingElement(const ::Ifc4x3_rc1::IfcInterferenceSelect& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcInterferenceSelect Ifc4x3_rc1::IfcRelInterferesElements::RelatedElement() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcInterferenceSelect>(); }
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void Ifc4x3_rc1::IfcRelInterferesElements::setRelatedElement(const ::Ifc4x3_rc1::IfcInterferenceSelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcConnectionGeometry Ifc4x3_rc1::IfcRelInterferesElements::InterferenceGeometry() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcConnectionGeometry{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcConnectionGeometry>(); }
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void Ifc4x3_rc1::IfcRelInterferesElements::setInterferenceGeometry(const ::Ifc4x3_rc1::IfcConnectionGeometry& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< std::string > Ifc4x3_rc1::IfcRelInterferesElements::InterferenceType() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcRelInterferesElements::setInterferenceType(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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boost::logic::tribool Ifc4x3_rc1::IfcRelInterferesElements::ImpliedOrder() const { boost::logic::tribool v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcRelInterferesElements::setImpliedOrder(const boost::logic::tribool& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelInterferesElements::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[949]); }
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void Ifc4x3_rc1::IfcRelInterferesElements::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcInterferenceSelect v5_RelatingElement, ::Ifc4x3_rc1::IfcInterferenceSelect v6_RelatedElement, ::Ifc4x3_rc1::IfcConnectionGeometry v7_InterferenceGeometry, std::optional< std::string > v8_InterferenceType, boost::logic::tribool v9_ImpliedOrder) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingElement));set_attribute_value(5, (v6_RelatedElement));set_attribute_value(6, (v7_InterferenceGeometry)); if (v8_InterferenceType) {set_attribute_value(7, (*v8_InterferenceType)); }set_attribute_value(8, (v9_ImpliedOrder)); }
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// Function implementations for IfcRelNests
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::Ifc4x3_rc1::IfcObjectDefinition Ifc4x3_rc1::IfcRelNests::RelatingObject() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcObjectDefinition>(); }
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void Ifc4x3_rc1::IfcRelNests::setRelatingObject(const ::Ifc4x3_rc1::IfcObjectDefinition& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > Ifc4x3_rc1::IfcRelNests::RelatedObjects() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcObjectDefinition>(es); }
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void Ifc4x3_rc1::IfcRelNests::setRelatedObjects(const std::vector< ::Ifc4x3_rc1::IfcObjectDefinition >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelNests::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[950]); }
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void Ifc4x3_rc1::IfcRelNests::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcObjectDefinition v5_RelatingObject, std::vector< ::Ifc4x3_rc1::IfcObjectDefinition > v6_RelatedObjects) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingObject));set_attribute_value(5, cast_vector<express::Base>(v6_RelatedObjects)); }
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// Function implementations for IfcRelPositions
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::Ifc4x3_rc1::IfcPositioningElement Ifc4x3_rc1::IfcRelPositions::RelatingPositioningElement() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcPositioningElement>(); }
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void Ifc4x3_rc1::IfcRelPositions::setRelatingPositioningElement(const ::Ifc4x3_rc1::IfcPositioningElement& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector< ::Ifc4x3_rc1::IfcProduct > Ifc4x3_rc1::IfcRelPositions::RelatedProducts() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcProduct>(es); }
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void Ifc4x3_rc1::IfcRelPositions::setRelatedProducts(const std::vector< ::Ifc4x3_rc1::IfcProduct >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelPositions::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[951]); }
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void Ifc4x3_rc1::IfcRelPositions::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcPositioningElement v5_RelatingPositioningElement, std::vector< ::Ifc4x3_rc1::IfcProduct > v6_RelatedProducts) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingPositioningElement));set_attribute_value(5, cast_vector<express::Base>(v6_RelatedProducts)); }
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// Function implementations for IfcRelProjectsElement
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::Ifc4x3_rc1::IfcElement Ifc4x3_rc1::IfcRelProjectsElement::RelatingElement() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcElement>(); }
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void Ifc4x3_rc1::IfcRelProjectsElement::setRelatingElement(const ::Ifc4x3_rc1::IfcElement& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcFeatureElementAddition Ifc4x3_rc1::IfcRelProjectsElement::RelatedFeatureElement() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcFeatureElementAddition>(); }
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void Ifc4x3_rc1::IfcRelProjectsElement::setRelatedFeatureElement(const ::Ifc4x3_rc1::IfcFeatureElementAddition& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelProjectsElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[952]); }
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void Ifc4x3_rc1::IfcRelProjectsElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcElement v5_RelatingElement, ::Ifc4x3_rc1::IfcFeatureElementAddition v6_RelatedFeatureElement) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingElement));set_attribute_value(5, (v6_RelatedFeatureElement)); }
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// Function implementations for IfcRelReferencedInSpatialStructure
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std::vector< ::Ifc4x3_rc1::IfcSpatialReferenceSelect > Ifc4x3_rc1::IfcRelReferencedInSpatialStructure::RelatedElements() const { std::vector<express::Base> es = get_attribute_value(4); return cast_vector<::Ifc4x3_rc1::IfcSpatialReferenceSelect>(es); }
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void Ifc4x3_rc1::IfcRelReferencedInSpatialStructure::setRelatedElements(const std::vector< ::Ifc4x3_rc1::IfcSpatialReferenceSelect >& v) { set_attribute_value(4, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcSpatialElement Ifc4x3_rc1::IfcRelReferencedInSpatialStructure::RelatingStructure() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcSpatialElement>(); }
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void Ifc4x3_rc1::IfcRelReferencedInSpatialStructure::setRelatingStructure(const ::Ifc4x3_rc1::IfcSpatialElement& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelReferencedInSpatialStructure::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[953]); }
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void Ifc4x3_rc1::IfcRelReferencedInSpatialStructure::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::vector< ::Ifc4x3_rc1::IfcSpatialReferenceSelect > v5_RelatedElements, ::Ifc4x3_rc1::IfcSpatialElement v6_RelatingStructure) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, cast_vector<express::Base>(v5_RelatedElements));set_attribute_value(5, (v6_RelatingStructure)); }
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// Function implementations for IfcRelSequence
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::Ifc4x3_rc1::IfcProcess Ifc4x3_rc1::IfcRelSequence::RelatingProcess() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcProcess>(); }
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void Ifc4x3_rc1::IfcRelSequence::setRelatingProcess(const ::Ifc4x3_rc1::IfcProcess& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcProcess Ifc4x3_rc1::IfcRelSequence::RelatedProcess() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcProcess>(); }
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void Ifc4x3_rc1::IfcRelSequence::setRelatedProcess(const ::Ifc4x3_rc1::IfcProcess& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcLagTime Ifc4x3_rc1::IfcRelSequence::TimeLag() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcLagTime{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcLagTime>(); }
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void Ifc4x3_rc1::IfcRelSequence::setTimeLag(const ::Ifc4x3_rc1::IfcLagTime& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< ::Ifc4x3_rc1::IfcSequenceEnum::Value > Ifc4x3_rc1::IfcRelSequence::SequenceType() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSequenceEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcRelSequence::setSequenceType(const std::optional< ::Ifc4x3_rc1::IfcSequenceEnum::Value >& v) { if (v) {set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcSequenceEnum::Class(), (size_t) *v));} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcRelSequence::UserDefinedSequenceType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcRelSequence::setUserDefinedSequenceType(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelSequence::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[954]); }
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void Ifc4x3_rc1::IfcRelSequence::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcProcess v5_RelatingProcess, ::Ifc4x3_rc1::IfcProcess v6_RelatedProcess, ::Ifc4x3_rc1::IfcLagTime v7_TimeLag, std::optional< ::Ifc4x3_rc1::IfcSequenceEnum::Value > v8_SequenceType, std::optional< std::string > v9_UserDefinedSequenceType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingProcess));set_attribute_value(5, (v6_RelatedProcess));set_attribute_value(6, (v7_TimeLag)); if (v8_SequenceType) {set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcSequenceEnum::Class(),(size_t)*v8_SequenceType))); } if (v9_UserDefinedSequenceType) {set_attribute_value(8, (*v9_UserDefinedSequenceType)); } }
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// Function implementations for IfcRelServicesBuildings
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::Ifc4x3_rc1::IfcSystem Ifc4x3_rc1::IfcRelServicesBuildings::RelatingSystem() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcSystem>(); }
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void Ifc4x3_rc1::IfcRelServicesBuildings::setRelatingSystem(const ::Ifc4x3_rc1::IfcSystem& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector< ::Ifc4x3_rc1::IfcSpatialElement > Ifc4x3_rc1::IfcRelServicesBuildings::RelatedBuildings() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcSpatialElement>(es); }
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void Ifc4x3_rc1::IfcRelServicesBuildings::setRelatedBuildings(const std::vector< ::Ifc4x3_rc1::IfcSpatialElement >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelServicesBuildings::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[955]); }
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void Ifc4x3_rc1::IfcRelServicesBuildings::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcSystem v5_RelatingSystem, std::vector< ::Ifc4x3_rc1::IfcSpatialElement > v6_RelatedBuildings) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingSystem));set_attribute_value(5, cast_vector<express::Base>(v6_RelatedBuildings)); }
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// Function implementations for IfcRelSpaceBoundary
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::Ifc4x3_rc1::IfcSpaceBoundarySelect Ifc4x3_rc1::IfcRelSpaceBoundary::RelatingSpace() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcSpaceBoundarySelect>(); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary::setRelatingSpace(const ::Ifc4x3_rc1::IfcSpaceBoundarySelect& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcElement Ifc4x3_rc1::IfcRelSpaceBoundary::RelatedBuildingElement() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcElement>(); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary::setRelatedBuildingElement(const ::Ifc4x3_rc1::IfcElement& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcConnectionGeometry Ifc4x3_rc1::IfcRelSpaceBoundary::ConnectionGeometry() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcConnectionGeometry{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcConnectionGeometry>(); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary::setConnectionGeometry(const ::Ifc4x3_rc1::IfcConnectionGeometry& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Value Ifc4x3_rc1::IfcRelSpaceBoundary::PhysicalOrVirtualBoundary() const { return ::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary::setPhysicalOrVirtualBoundary(const ::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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::Ifc4x3_rc1::IfcInternalOrExternalEnum::Value Ifc4x3_rc1::IfcRelSpaceBoundary::InternalOrExternalBoundary() const { return ::Ifc4x3_rc1::IfcInternalOrExternalEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary::setInternalOrExternalBoundary(const ::Ifc4x3_rc1::IfcInternalOrExternalEnum::Value& v) { set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcInternalOrExternalEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelSpaceBoundary::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[956]); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcSpaceBoundarySelect v5_RelatingSpace, ::Ifc4x3_rc1::IfcElement v6_RelatedBuildingElement, ::Ifc4x3_rc1::IfcConnectionGeometry v7_ConnectionGeometry, ::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Value v8_PhysicalOrVirtualBoundary, ::Ifc4x3_rc1::IfcInternalOrExternalEnum::Value v9_InternalOrExternalBoundary) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingSpace));set_attribute_value(5, (v6_RelatedBuildingElement));set_attribute_value(6, (v7_ConnectionGeometry));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Class(),(size_t)v8_PhysicalOrVirtualBoundary)));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcInternalOrExternalEnum::Class(),(size_t)v9_InternalOrExternalBoundary))); }
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// Function implementations for IfcRelSpaceBoundary1stLevel
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::Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel::ParentBoundary() const { if(get_attribute_value(9).isNull()) { return ::Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel{}; } return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel>(); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel::setParentBoundary(const ::Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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std::vector<::Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel> Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel::InnerBoundaries() const { return cast_vector<IfcRelSpaceBoundary1stLevel>(file()->getInverse(data()->id(), IFC4X3_RC1_types[957], 9)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[957]); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcSpaceBoundarySelect v5_RelatingSpace, ::Ifc4x3_rc1::IfcElement v6_RelatedBuildingElement, ::Ifc4x3_rc1::IfcConnectionGeometry v7_ConnectionGeometry, ::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Value v8_PhysicalOrVirtualBoundary, ::Ifc4x3_rc1::IfcInternalOrExternalEnum::Value v9_InternalOrExternalBoundary, ::Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel v10_ParentBoundary) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingSpace));set_attribute_value(5, (v6_RelatedBuildingElement));set_attribute_value(6, (v7_ConnectionGeometry));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Class(),(size_t)v8_PhysicalOrVirtualBoundary)));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcInternalOrExternalEnum::Class(),(size_t)v9_InternalOrExternalBoundary)));set_attribute_value(9, (v10_ParentBoundary)); }
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// Function implementations for IfcRelSpaceBoundary2ndLevel
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::Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel::CorrespondingBoundary() const { if(get_attribute_value(10).isNull()) { return ::Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel{}; } return ((express::Base)(get_attribute_value(10))).as<::Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel>(); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel::setCorrespondingBoundary(const ::Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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std::vector<::Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel> Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel::Corresponds() const { return cast_vector<IfcRelSpaceBoundary2ndLevel>(file()->getInverse(data()->id(), IFC4X3_RC1_types[958], 10)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[958]); }
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void Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcSpaceBoundarySelect v5_RelatingSpace, ::Ifc4x3_rc1::IfcElement v6_RelatedBuildingElement, ::Ifc4x3_rc1::IfcConnectionGeometry v7_ConnectionGeometry, ::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Value v8_PhysicalOrVirtualBoundary, ::Ifc4x3_rc1::IfcInternalOrExternalEnum::Value v9_InternalOrExternalBoundary, ::Ifc4x3_rc1::IfcRelSpaceBoundary1stLevel v10_ParentBoundary, ::Ifc4x3_rc1::IfcRelSpaceBoundary2ndLevel v11_CorrespondingBoundary) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingSpace));set_attribute_value(5, (v6_RelatedBuildingElement));set_attribute_value(6, (v7_ConnectionGeometry));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcPhysicalOrVirtualEnum::Class(),(size_t)v8_PhysicalOrVirtualBoundary)));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcInternalOrExternalEnum::Class(),(size_t)v9_InternalOrExternalBoundary)));set_attribute_value(9, (v10_ParentBoundary));set_attribute_value(10, (v11_CorrespondingBoundary)); }
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// Function implementations for IfcRelVoidsElement
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::Ifc4x3_rc1::IfcElement Ifc4x3_rc1::IfcRelVoidsElement::RelatingBuildingElement() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcElement>(); }
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void Ifc4x3_rc1::IfcRelVoidsElement::setRelatingBuildingElement(const ::Ifc4x3_rc1::IfcElement& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcFeatureElementSubtraction Ifc4x3_rc1::IfcRelVoidsElement::RelatedOpeningElement() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcFeatureElementSubtraction>(); }
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void Ifc4x3_rc1::IfcRelVoidsElement::setRelatedOpeningElement(const ::Ifc4x3_rc1::IfcFeatureElementSubtraction& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRelVoidsElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[959]); }
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void Ifc4x3_rc1::IfcRelVoidsElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcElement v5_RelatingBuildingElement, ::Ifc4x3_rc1::IfcFeatureElementSubtraction v6_RelatedOpeningElement) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (v5_RelatingBuildingElement));set_attribute_value(5, (v6_RelatedOpeningElement)); }
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// Function implementations for IfcRelationship
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const IfcParse::entity& Ifc4x3_rc1::IfcRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[927]); }
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void Ifc4x3_rc1::IfcRelationship::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcReparametrisedCompositeCurveSegment
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double Ifc4x3_rc1::IfcReparametrisedCompositeCurveSegment::ParamLength() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcReparametrisedCompositeCurveSegment::setParamLength(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcReparametrisedCompositeCurveSegment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[960]); }
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void Ifc4x3_rc1::IfcReparametrisedCompositeCurveSegment::initialize(::Ifc4x3_rc1::IfcTransitionCode::Value v1_Transition, bool v2_SameSense, ::Ifc4x3_rc1::IfcCurve v3_ParentCurve, double v4_ParamLength) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcTransitionCode::Class(),(size_t)v1_Transition)));set_attribute_value(1, (v2_SameSense));set_attribute_value(2, (v3_ParentCurve));set_attribute_value(3, (v4_ParamLength)); }
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// Function implementations for IfcRepresentation
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::Ifc4x3_rc1::IfcRepresentationContext Ifc4x3_rc1::IfcRepresentation::ContextOfItems() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcRepresentationContext>(); }
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void Ifc4x3_rc1::IfcRepresentation::setContextOfItems(const ::Ifc4x3_rc1::IfcRepresentationContext& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcRepresentation::RepresentationIdentifier() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcRepresentation::setRepresentationIdentifier(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcRepresentation::RepresentationType() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcRepresentation::setRepresentationType(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::vector< ::Ifc4x3_rc1::IfcRepresentationItem > Ifc4x3_rc1::IfcRepresentation::Items() const { std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcRepresentationItem>(es); }
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void Ifc4x3_rc1::IfcRepresentation::setItems(const std::vector< ::Ifc4x3_rc1::IfcRepresentationItem >& v) { set_attribute_value(3, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(3); }
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std::vector<::Ifc4x3_rc1::IfcRepresentationMap> Ifc4x3_rc1::IfcRepresentation::RepresentationMap() const { return cast_vector<IfcRepresentationMap>(file()->getInverse(data()->id(), IFC4X3_RC1_types[964], 1)); }
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std::vector<::Ifc4x3_rc1::IfcPresentationLayerAssignment> Ifc4x3_rc1::IfcRepresentation::LayerAssignments() const { return cast_vector<IfcPresentationLayerAssignment>(file()->getInverse(data()->id(), IFC4X3_RC1_types[803], 2)); }
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std::vector<::Ifc4x3_rc1::IfcProductRepresentation> Ifc4x3_rc1::IfcRepresentation::OfProductRepresentation() const { return cast_vector<IfcProductRepresentation>(file()->getInverse(data()->id(), IFC4X3_RC1_types[816], 2)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRepresentation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[961]); }
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void Ifc4x3_rc1::IfcRepresentation::initialize(::Ifc4x3_rc1::IfcRepresentationContext v1_ContextOfItems, std::optional< std::string > v2_RepresentationIdentifier, std::optional< std::string > v3_RepresentationType, std::vector< ::Ifc4x3_rc1::IfcRepresentationItem > v4_Items) { set_attribute_value(0, (v1_ContextOfItems)); if (v2_RepresentationIdentifier) {set_attribute_value(1, (*v2_RepresentationIdentifier)); } if (v3_RepresentationType) {set_attribute_value(2, (*v3_RepresentationType)); }set_attribute_value(3, cast_vector<express::Base>(v4_Items)); }
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// Function implementations for IfcRepresentationContext
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std::optional< std::string > Ifc4x3_rc1::IfcRepresentationContext::ContextIdentifier() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcRepresentationContext::setContextIdentifier(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcRepresentationContext::ContextType() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcRepresentationContext::setContextType(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::vector<::Ifc4x3_rc1::IfcRepresentation> Ifc4x3_rc1::IfcRepresentationContext::RepresentationsInContext() const { return cast_vector<IfcRepresentation>(file()->getInverse(data()->id(), IFC4X3_RC1_types[961], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRepresentationContext::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[962]); }
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void Ifc4x3_rc1::IfcRepresentationContext::initialize(std::optional< std::string > v1_ContextIdentifier, std::optional< std::string > v2_ContextType) { if (v1_ContextIdentifier) {set_attribute_value(0, (*v1_ContextIdentifier)); } if (v2_ContextType) {set_attribute_value(1, (*v2_ContextType)); } }
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// Function implementations for IfcRepresentationItem
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std::vector<::Ifc4x3_rc1::IfcPresentationLayerAssignment> Ifc4x3_rc1::IfcRepresentationItem::LayerAssignment() const { return cast_vector<IfcPresentationLayerAssignment>(file()->getInverse(data()->id(), IFC4X3_RC1_types[803], 2)); }
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std::vector<::Ifc4x3_rc1::IfcStyledItem> Ifc4x3_rc1::IfcRepresentationItem::StyledByItem() const { return cast_vector<IfcStyledItem>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1122], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRepresentationItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[963]); }
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void Ifc4x3_rc1::IfcRepresentationItem::initialize() { }
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// Function implementations for IfcRepresentationMap
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::Ifc4x3_rc1::IfcAxis2Placement Ifc4x3_rc1::IfcRepresentationMap::MappingOrigin() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcAxis2Placement>(); }
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void Ifc4x3_rc1::IfcRepresentationMap::setMappingOrigin(const ::Ifc4x3_rc1::IfcAxis2Placement& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcRepresentation Ifc4x3_rc1::IfcRepresentationMap::MappedRepresentation() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcRepresentation>(); }
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void Ifc4x3_rc1::IfcRepresentationMap::setMappedRepresentation(const ::Ifc4x3_rc1::IfcRepresentation& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::vector<::Ifc4x3_rc1::IfcShapeAspect> Ifc4x3_rc1::IfcRepresentationMap::HasShapeAspects() const { return cast_vector<IfcShapeAspect>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1010], 4)); }
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std::vector<::Ifc4x3_rc1::IfcMappedItem> Ifc4x3_rc1::IfcRepresentationMap::MapUsage() const { return cast_vector<IfcMappedItem>(file()->getInverse(data()->id(), IFC4X3_RC1_types[637], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRepresentationMap::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[964]); }
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void Ifc4x3_rc1::IfcRepresentationMap::initialize(::Ifc4x3_rc1::IfcAxis2Placement v1_MappingOrigin, ::Ifc4x3_rc1::IfcRepresentation v2_MappedRepresentation) { set_attribute_value(0, (v1_MappingOrigin));set_attribute_value(1, (v2_MappedRepresentation)); }
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// Function implementations for IfcResource
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std::optional< std::string > Ifc4x3_rc1::IfcResource::Identification() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcResource::setIdentification(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResource::LongDescription() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcResource::setLongDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::vector<::Ifc4x3_rc1::IfcRelAssignsToResource> Ifc4x3_rc1::IfcResource::ResourceOf() const { return cast_vector<IfcRelAssignsToResource>(file()->getInverse(data()->id(), IFC4X3_RC1_types[918], 6)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[965]); }
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void Ifc4x3_rc1::IfcResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); } }
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// Function implementations for IfcResourceApprovalRelationship
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std::vector< ::Ifc4x3_rc1::IfcResourceObjectSelect > Ifc4x3_rc1::IfcResourceApprovalRelationship::RelatedResourceObjects() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcResourceObjectSelect>(es); }
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void Ifc4x3_rc1::IfcResourceApprovalRelationship::setRelatedResourceObjects(const std::vector< ::Ifc4x3_rc1::IfcResourceObjectSelect >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcApproval Ifc4x3_rc1::IfcResourceApprovalRelationship::RelatingApproval() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcApproval>(); }
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void Ifc4x3_rc1::IfcResourceApprovalRelationship::setRelatingApproval(const ::Ifc4x3_rc1::IfcApproval& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcResourceApprovalRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[966]); }
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void Ifc4x3_rc1::IfcResourceApprovalRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, std::vector< ::Ifc4x3_rc1::IfcResourceObjectSelect > v3_RelatedResourceObjects, ::Ifc4x3_rc1::IfcApproval v4_RelatingApproval) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, cast_vector<express::Base>(v3_RelatedResourceObjects));set_attribute_value(3, (v4_RelatingApproval)); }
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// Function implementations for IfcResourceConstraintRelationship
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::Ifc4x3_rc1::IfcConstraint Ifc4x3_rc1::IfcResourceConstraintRelationship::RelatingConstraint() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcConstraint>(); }
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void Ifc4x3_rc1::IfcResourceConstraintRelationship::setRelatingConstraint(const ::Ifc4x3_rc1::IfcConstraint& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::vector< ::Ifc4x3_rc1::IfcResourceObjectSelect > Ifc4x3_rc1::IfcResourceConstraintRelationship::RelatedResourceObjects() const { std::vector<express::Base> es = get_attribute_value(3); return cast_vector<::Ifc4x3_rc1::IfcResourceObjectSelect>(es); }
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void Ifc4x3_rc1::IfcResourceConstraintRelationship::setRelatedResourceObjects(const std::vector< ::Ifc4x3_rc1::IfcResourceObjectSelect >& v) { set_attribute_value(3, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcResourceConstraintRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[967]); }
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void Ifc4x3_rc1::IfcResourceConstraintRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description, ::Ifc4x3_rc1::IfcConstraint v3_RelatingConstraint, std::vector< ::Ifc4x3_rc1::IfcResourceObjectSelect > v4_RelatedResourceObjects) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_RelatingConstraint));set_attribute_value(3, cast_vector<express::Base>(v4_RelatedResourceObjects)); }
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// Function implementations for IfcResourceLevelRelationship
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std::optional< std::string > Ifc4x3_rc1::IfcResourceLevelRelationship::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcResourceLevelRelationship::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceLevelRelationship::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcResourceLevelRelationship::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcResourceLevelRelationship::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[968]); }
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void Ifc4x3_rc1::IfcResourceLevelRelationship::initialize(std::optional< std::string > v1_Name, std::optional< std::string > v2_Description) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); } }
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// Function implementations for IfcResourceTime
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::ScheduleWork() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setScheduleWork(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcResourceTime::ScheduleUsage() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setScheduleUsage(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::ScheduleStart() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setScheduleStart(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::ScheduleFinish() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setScheduleFinish(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::ScheduleContour() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setScheduleContour(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::LevelingDelay() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setLevelingDelay(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< bool > Ifc4x3_rc1::IfcResourceTime::IsOverAllocated() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } bool v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setIsOverAllocated(const std::optional< bool >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::StatusTime() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::string v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setStatusTime(const std::optional< std::string >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::ActualWork() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } std::string v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setActualWork(const std::optional< std::string >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< double > Ifc4x3_rc1::IfcResourceTime::ActualUsage() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } double v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setActualUsage(const std::optional< double >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::ActualStart() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } std::string v = get_attribute_value(13); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setActualStart(const std::optional< std::string >& v) { if (v) {set_attribute_value(13, *v);} else {unset_attribute_value(13);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::ActualFinish() const { if(get_attribute_value(14).isNull()) { return std::nullopt; } std::string v = get_attribute_value(14); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setActualFinish(const std::optional< std::string >& v) { if (v) {set_attribute_value(14, *v);} else {unset_attribute_value(14);} }
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std::optional< std::string > Ifc4x3_rc1::IfcResourceTime::RemainingWork() const { if(get_attribute_value(15).isNull()) { return std::nullopt; } std::string v = get_attribute_value(15); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setRemainingWork(const std::optional< std::string >& v) { if (v) {set_attribute_value(15, *v);} else {unset_attribute_value(15);} }
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std::optional< double > Ifc4x3_rc1::IfcResourceTime::RemainingUsage() const { if(get_attribute_value(16).isNull()) { return std::nullopt; } double v = get_attribute_value(16); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setRemainingUsage(const std::optional< double >& v) { if (v) {set_attribute_value(16, *v);} else {unset_attribute_value(16);} }
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std::optional< double > Ifc4x3_rc1::IfcResourceTime::Completion() const { if(get_attribute_value(17).isNull()) { return std::nullopt; } double v = get_attribute_value(17); return v; }
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void Ifc4x3_rc1::IfcResourceTime::setCompletion(const std::optional< double >& v) { if (v) {set_attribute_value(17, *v);} else {unset_attribute_value(17);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcResourceTime::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[971]); }
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void Ifc4x3_rc1::IfcResourceTime::initialize(std::optional< std::string > v1_Name, std::optional< ::Ifc4x3_rc1::IfcDataOriginEnum::Value > v2_DataOrigin, std::optional< std::string > v3_UserDefinedDataOrigin, std::optional< std::string > v4_ScheduleWork, std::optional< double > v5_ScheduleUsage, std::optional< std::string > v6_ScheduleStart, std::optional< std::string > v7_ScheduleFinish, std::optional< std::string > v8_ScheduleContour, std::optional< std::string > v9_LevelingDelay, std::optional< bool > v10_IsOverAllocated, std::optional< std::string > v11_StatusTime, std::optional< std::string > v12_ActualWork, std::optional< double > v13_ActualUsage, std::optional< std::string > v14_ActualStart, std::optional< std::string > v15_ActualFinish, std::optional< std::string > v16_RemainingWork, std::optional< double > v17_RemainingUsage, std::optional< double > v18_Completion) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DataOrigin) {set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)*v2_DataOrigin))); } if (v3_UserDefinedDataOrigin) {set_attribute_value(2, (*v3_UserDefinedDataOrigin)); } if (v4_ScheduleWork) {set_attribute_value(3, (*v4_ScheduleWork)); } if (v5_ScheduleUsage) {set_attribute_value(4, (*v5_ScheduleUsage)); } if (v6_ScheduleStart) {set_attribute_value(5, (*v6_ScheduleStart)); } if (v7_ScheduleFinish) {set_attribute_value(6, (*v7_ScheduleFinish)); } if (v8_ScheduleContour) {set_attribute_value(7, (*v8_ScheduleContour)); } if (v9_LevelingDelay) {set_attribute_value(8, (*v9_LevelingDelay)); } if (v10_IsOverAllocated) {set_attribute_value(9, (*v10_IsOverAllocated)); } if (v11_StatusTime) {set_attribute_value(10, (*v11_StatusTime)); } if (v12_ActualWork) {set_attribute_value(11, (*v12_ActualWork)); } if (v13_ActualUsage) {set_attribute_value(12, (*v13_ActualUsage)); } if (v14_ActualStart) {set_attribute_value(13, (*v14_ActualStart)); } if (v15_ActualFinish) {set_attribute_value(14, (*v15_ActualFinish)); } if (v16_RemainingWork) {set_attribute_value(15, (*v16_RemainingWork)); } if (v17_RemainingUsage) {set_attribute_value(16, (*v17_RemainingUsage)); } if (v18_Completion) {set_attribute_value(17, (*v18_Completion)); } }
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// Function implementations for IfcRevolvedAreaSolid
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::Ifc4x3_rc1::IfcAxis1Placement Ifc4x3_rc1::IfcRevolvedAreaSolid::Axis() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcAxis1Placement>(); }
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void Ifc4x3_rc1::IfcRevolvedAreaSolid::setAxis(const ::Ifc4x3_rc1::IfcAxis1Placement& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcRevolvedAreaSolid::Angle() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcRevolvedAreaSolid::setAngle(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRevolvedAreaSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[972]); }
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void Ifc4x3_rc1::IfcRevolvedAreaSolid::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcAxis1Placement v3_Axis, double v4_Angle) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_Axis));set_attribute_value(3, (v4_Angle)); }
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// Function implementations for IfcRevolvedAreaSolidTapered
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcRevolvedAreaSolidTapered::EndSweptArea() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcRevolvedAreaSolidTapered::setEndSweptArea(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRevolvedAreaSolidTapered::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[973]); }
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void Ifc4x3_rc1::IfcRevolvedAreaSolidTapered::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcAxis1Placement v3_Axis, double v4_Angle, ::Ifc4x3_rc1::IfcProfileDef v5_EndSweptArea) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_Axis));set_attribute_value(3, (v4_Angle));set_attribute_value(4, (v5_EndSweptArea)); }
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// Function implementations for IfcRightCircularCone
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double Ifc4x3_rc1::IfcRightCircularCone::Height() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcRightCircularCone::setHeight(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcRightCircularCone::BottomRadius() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcRightCircularCone::setBottomRadius(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRightCircularCone::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[974]); }
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void Ifc4x3_rc1::IfcRightCircularCone::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position, double v2_Height, double v3_BottomRadius) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_Height));set_attribute_value(2, (v3_BottomRadius)); }
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// Function implementations for IfcRightCircularCylinder
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double Ifc4x3_rc1::IfcRightCircularCylinder::Height() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcRightCircularCylinder::setHeight(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcRightCircularCylinder::Radius() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcRightCircularCylinder::setRadius(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRightCircularCylinder::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[975]); }
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void Ifc4x3_rc1::IfcRightCircularCylinder::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position, double v2_Height, double v3_Radius) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_Height));set_attribute_value(2, (v3_Radius)); }
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// Function implementations for IfcRoad
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const IfcParse::entity& Ifc4x3_rc1::IfcRoad::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[976]); }
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void Ifc4x3_rc1::IfcRoad::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); } }
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// Function implementations for IfcRoof
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std::optional< ::Ifc4x3_rc1::IfcRoofTypeEnum::Value > Ifc4x3_rc1::IfcRoof::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcRoofTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcRoof::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcRoofTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcRoofTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRoof::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[979]); }
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void Ifc4x3_rc1::IfcRoof::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcRoofTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcRoofTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcRoofType
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::Ifc4x3_rc1::IfcRoofTypeEnum::Value Ifc4x3_rc1::IfcRoofType::PredefinedType() const { return ::Ifc4x3_rc1::IfcRoofTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcRoofType::setPredefinedType(const ::Ifc4x3_rc1::IfcRoofTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcRoofTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRoofType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[980]); }
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void Ifc4x3_rc1::IfcRoofType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcRoofTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcRoofTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcRoot
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std::string Ifc4x3_rc1::IfcRoot::GlobalId() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcRoot::setGlobalId(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcOwnerHistory Ifc4x3_rc1::IfcRoot::OwnerHistory() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcOwnerHistory{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcOwnerHistory>(); }
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void Ifc4x3_rc1::IfcRoot::setOwnerHistory(const ::Ifc4x3_rc1::IfcOwnerHistory& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< std::string > Ifc4x3_rc1::IfcRoot::Name() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcRoot::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::string > Ifc4x3_rc1::IfcRoot::Description() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcRoot::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcRoot::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[982]); }
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void Ifc4x3_rc1::IfcRoot::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } }
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// Function implementations for IfcRoundedRectangleProfileDef
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double Ifc4x3_rc1::IfcRoundedRectangleProfileDef::RoundingRadius() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcRoundedRectangleProfileDef::setRoundingRadius(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcRoundedRectangleProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[987]); }
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void Ifc4x3_rc1::IfcRoundedRectangleProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_XDim, double v5_YDim, double v6_RoundingRadius) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_XDim));set_attribute_value(4, (v5_YDim));set_attribute_value(5, (v6_RoundingRadius)); }
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// Function implementations for IfcSIUnit
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std::optional< ::Ifc4x3_rc1::IfcSIPrefix::Value > Ifc4x3_rc1::IfcSIUnit::Prefix() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSIPrefix::FromString(get_attribute_value(2)); }
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void Ifc4x3_rc1::IfcSIUnit::setPrefix(const std::optional< ::Ifc4x3_rc1::IfcSIPrefix::Value >& v) { if (v) {set_attribute_value(2, EnumerationReference(&::Ifc4x3_rc1::IfcSIPrefix::Class(), (size_t) *v));} else {unset_attribute_value(2);} }
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::Ifc4x3_rc1::IfcSIUnitName::Value Ifc4x3_rc1::IfcSIUnit::Name() const { return ::Ifc4x3_rc1::IfcSIUnitName::FromString(get_attribute_value(3)); }
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void Ifc4x3_rc1::IfcSIUnit::setName(const ::Ifc4x3_rc1::IfcSIUnitName::Value& v) { set_attribute_value(3, EnumerationReference(&::Ifc4x3_rc1::IfcSIUnitName::Class(), (size_t) v));if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSIUnit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1028]); }
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void Ifc4x3_rc1::IfcSIUnit::initialize(::Ifc4x3_rc1::IfcUnitEnum::Value v2_UnitType, std::optional< ::Ifc4x3_rc1::IfcSIPrefix::Value > v3_Prefix, ::Ifc4x3_rc1::IfcSIUnitName::Value v4_Name) { set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcUnitEnum::Class(),(size_t)v2_UnitType))); if (v3_Prefix) {set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcSIPrefix::Class(),(size_t)*v3_Prefix))); }set_attribute_value(3, (EnumerationReference(&::Ifc4x3_rc1::IfcSIUnitName::Class(),(size_t)v4_Name))); }
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// Function implementations for IfcSanitaryTerminal
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std::optional< ::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value > Ifc4x3_rc1::IfcSanitaryTerminal::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSanitaryTerminal::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSanitaryTerminal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[988]); }
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void Ifc4x3_rc1::IfcSanitaryTerminal::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSanitaryTerminalType
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::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value Ifc4x3_rc1::IfcSanitaryTerminalType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSanitaryTerminalType::setPredefinedType(const ::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSanitaryTerminalType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[989]); }
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void Ifc4x3_rc1::IfcSanitaryTerminalType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSanitaryTerminalTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcSchedulingTime
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std::optional< std::string > Ifc4x3_rc1::IfcSchedulingTime::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcSchedulingTime::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< ::Ifc4x3_rc1::IfcDataOriginEnum::Value > Ifc4x3_rc1::IfcSchedulingTime::DataOrigin() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcDataOriginEnum::FromString(get_attribute_value(1)); }
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void Ifc4x3_rc1::IfcSchedulingTime::setDataOrigin(const std::optional< ::Ifc4x3_rc1::IfcDataOriginEnum::Value >& v) { if (v) {set_attribute_value(1, EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(), (size_t) *v));} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcSchedulingTime::UserDefinedDataOrigin() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcSchedulingTime::setUserDefinedDataOrigin(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSchedulingTime::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[991]); }
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void Ifc4x3_rc1::IfcSchedulingTime::initialize(std::optional< std::string > v1_Name, std::optional< ::Ifc4x3_rc1::IfcDataOriginEnum::Value > v2_DataOrigin, std::optional< std::string > v3_UserDefinedDataOrigin) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DataOrigin) {set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)*v2_DataOrigin))); } if (v3_UserDefinedDataOrigin) {set_attribute_value(2, (*v3_UserDefinedDataOrigin)); } }
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// Function implementations for IfcSeamCurve
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const IfcParse::entity& Ifc4x3_rc1::IfcSeamCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[992]); }
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void Ifc4x3_rc1::IfcSeamCurve::initialize(::Ifc4x3_rc1::IfcCurve v1_Curve3D, std::vector< ::Ifc4x3_rc1::IfcPcurve > v2_AssociatedGeometry, ::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Value v3_MasterRepresentation) { set_attribute_value(0, (v1_Curve3D));set_attribute_value(1, cast_vector<express::Base>(v2_AssociatedGeometry));set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Class(),(size_t)v3_MasterRepresentation))); }
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// Function implementations for IfcSectionProperties
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::Ifc4x3_rc1::IfcSectionTypeEnum::Value Ifc4x3_rc1::IfcSectionProperties::SectionType() const { return ::Ifc4x3_rc1::IfcSectionTypeEnum::FromString(get_attribute_value(0)); }
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void Ifc4x3_rc1::IfcSectionProperties::setSectionType(const ::Ifc4x3_rc1::IfcSectionTypeEnum::Value& v) { set_attribute_value(0, EnumerationReference(&::Ifc4x3_rc1::IfcSectionTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcSectionProperties::StartProfile() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcSectionProperties::setStartProfile(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcSectionProperties::EndProfile() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcProfileDef{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcSectionProperties::setEndProfile(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSectionProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[999]); }
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void Ifc4x3_rc1::IfcSectionProperties::initialize(::Ifc4x3_rc1::IfcSectionTypeEnum::Value v1_SectionType, ::Ifc4x3_rc1::IfcProfileDef v2_StartProfile, ::Ifc4x3_rc1::IfcProfileDef v3_EndProfile) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcSectionTypeEnum::Class(),(size_t)v1_SectionType)));set_attribute_value(1, (v2_StartProfile));set_attribute_value(2, (v3_EndProfile)); }
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// Function implementations for IfcSectionReinforcementProperties
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double Ifc4x3_rc1::IfcSectionReinforcementProperties::LongitudinalStartPosition() const { double v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcSectionReinforcementProperties::setLongitudinalStartPosition(const double& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcSectionReinforcementProperties::LongitudinalEndPosition() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcSectionReinforcementProperties::setLongitudinalEndPosition(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< double > Ifc4x3_rc1::IfcSectionReinforcementProperties::TransversePosition() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcSectionReinforcementProperties::setTransversePosition(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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::Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Value Ifc4x3_rc1::IfcSectionReinforcementProperties::ReinforcementRole() const { return ::Ifc4x3_rc1::IfcReinforcingBarRoleEnum::FromString(get_attribute_value(3)); }
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void Ifc4x3_rc1::IfcSectionReinforcementProperties::setReinforcementRole(const ::Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Value& v) { set_attribute_value(3, EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcSectionProperties Ifc4x3_rc1::IfcSectionReinforcementProperties::SectionDefinition() const { return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcSectionProperties>(); }
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void Ifc4x3_rc1::IfcSectionReinforcementProperties::setSectionDefinition(const ::Ifc4x3_rc1::IfcSectionProperties& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector< ::Ifc4x3_rc1::IfcReinforcementBarProperties > Ifc4x3_rc1::IfcSectionReinforcementProperties::CrossSectionReinforcementDefinitions() const { std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcReinforcementBarProperties>(es); }
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void Ifc4x3_rc1::IfcSectionReinforcementProperties::setCrossSectionReinforcementDefinitions(const std::vector< ::Ifc4x3_rc1::IfcReinforcementBarProperties >& v) { set_attribute_value(5, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSectionReinforcementProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1000]); }
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void Ifc4x3_rc1::IfcSectionReinforcementProperties::initialize(double v1_LongitudinalStartPosition, double v2_LongitudinalEndPosition, std::optional< double > v3_TransversePosition, ::Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Value v4_ReinforcementRole, ::Ifc4x3_rc1::IfcSectionProperties v5_SectionDefinition, std::vector< ::Ifc4x3_rc1::IfcReinforcementBarProperties > v6_CrossSectionReinforcementDefinitions) { set_attribute_value(0, (v1_LongitudinalStartPosition));set_attribute_value(1, (v2_LongitudinalEndPosition)); if (v3_TransversePosition) {set_attribute_value(2, (*v3_TransversePosition)); }set_attribute_value(3, (EnumerationReference(&::Ifc4x3_rc1::IfcReinforcingBarRoleEnum::Class(),(size_t)v4_ReinforcementRole)));set_attribute_value(4, (v5_SectionDefinition));set_attribute_value(5, cast_vector<express::Base>(v6_CrossSectionReinforcementDefinitions)); }
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// Function implementations for IfcSectionedSolid
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcSectionedSolid::Directrix() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcSectionedSolid::setDirectrix(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcProfileDef > Ifc4x3_rc1::IfcSectionedSolid::CrossSections() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcProfileDef>(es); }
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void Ifc4x3_rc1::IfcSectionedSolid::setCrossSections(const std::vector< ::Ifc4x3_rc1::IfcProfileDef >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSectionedSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[994]); }
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void Ifc4x3_rc1::IfcSectionedSolid::initialize(::Ifc4x3_rc1::IfcCurve v1_Directrix, std::vector< ::Ifc4x3_rc1::IfcProfileDef > v2_CrossSections) { set_attribute_value(0, (v1_Directrix));set_attribute_value(1, cast_vector<express::Base>(v2_CrossSections)); }
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// Function implementations for IfcSectionedSolidHorizontal
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std::vector< ::Ifc4x3_rc1::IfcDistanceExpression > Ifc4x3_rc1::IfcSectionedSolidHorizontal::CrossSectionPositions() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcDistanceExpression>(es); }
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void Ifc4x3_rc1::IfcSectionedSolidHorizontal::setCrossSectionPositions(const std::vector< ::Ifc4x3_rc1::IfcDistanceExpression >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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bool Ifc4x3_rc1::IfcSectionedSolidHorizontal::FixedAxisVertical() const { bool v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcSectionedSolidHorizontal::setFixedAxisVertical(const bool& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSectionedSolidHorizontal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[995]); }
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void Ifc4x3_rc1::IfcSectionedSolidHorizontal::initialize(::Ifc4x3_rc1::IfcCurve v1_Directrix, std::vector< ::Ifc4x3_rc1::IfcProfileDef > v2_CrossSections, std::vector< ::Ifc4x3_rc1::IfcDistanceExpression > v3_CrossSectionPositions, bool v4_FixedAxisVertical) { set_attribute_value(0, (v1_Directrix));set_attribute_value(1, cast_vector<express::Base>(v2_CrossSections));set_attribute_value(2, cast_vector<express::Base>(v3_CrossSectionPositions));set_attribute_value(3, (v4_FixedAxisVertical)); }
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// Function implementations for IfcSectionedSpine
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::Ifc4x3_rc1::IfcCompositeCurve Ifc4x3_rc1::IfcSectionedSpine::SpineCurve() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCompositeCurve>(); }
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void Ifc4x3_rc1::IfcSectionedSpine::setSpineCurve(const ::Ifc4x3_rc1::IfcCompositeCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcProfileDef > Ifc4x3_rc1::IfcSectionedSpine::CrossSections() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcProfileDef>(es); }
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void Ifc4x3_rc1::IfcSectionedSpine::setCrossSections(const std::vector< ::Ifc4x3_rc1::IfcProfileDef >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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std::vector< ::Ifc4x3_rc1::IfcAxis2Placement3D > Ifc4x3_rc1::IfcSectionedSpine::CrossSectionPositions() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcAxis2Placement3D>(es); }
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void Ifc4x3_rc1::IfcSectionedSpine::setCrossSectionPositions(const std::vector< ::Ifc4x3_rc1::IfcAxis2Placement3D >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSectionedSpine::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[996]); }
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void Ifc4x3_rc1::IfcSectionedSpine::initialize(::Ifc4x3_rc1::IfcCompositeCurve v1_SpineCurve, std::vector< ::Ifc4x3_rc1::IfcProfileDef > v2_CrossSections, std::vector< ::Ifc4x3_rc1::IfcAxis2Placement3D > v3_CrossSectionPositions) { set_attribute_value(0, (v1_SpineCurve));set_attribute_value(1, cast_vector<express::Base>(v2_CrossSections));set_attribute_value(2, cast_vector<express::Base>(v3_CrossSectionPositions)); }
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// Function implementations for IfcSectionedSurface
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcSectionedSurface::Directrix() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcSectionedSurface::setDirectrix(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcDistanceExpression > Ifc4x3_rc1::IfcSectionedSurface::CrossSectionPositions() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcDistanceExpression>(es); }
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void Ifc4x3_rc1::IfcSectionedSurface::setCrossSectionPositions(const std::vector< ::Ifc4x3_rc1::IfcDistanceExpression >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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std::vector< ::Ifc4x3_rc1::IfcProfileDef > Ifc4x3_rc1::IfcSectionedSurface::CrossSections() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcProfileDef>(es); }
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void Ifc4x3_rc1::IfcSectionedSurface::setCrossSections(const std::vector< ::Ifc4x3_rc1::IfcProfileDef >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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bool Ifc4x3_rc1::IfcSectionedSurface::FixedAxisVertical() const { bool v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcSectionedSurface::setFixedAxisVertical(const bool& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSectionedSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[997]); }
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void Ifc4x3_rc1::IfcSectionedSurface::initialize(::Ifc4x3_rc1::IfcCurve v1_Directrix, std::vector< ::Ifc4x3_rc1::IfcDistanceExpression > v2_CrossSectionPositions, std::vector< ::Ifc4x3_rc1::IfcProfileDef > v3_CrossSections, bool v4_FixedAxisVertical) { set_attribute_value(0, (v1_Directrix));set_attribute_value(1, cast_vector<express::Base>(v2_CrossSectionPositions));set_attribute_value(2, cast_vector<express::Base>(v3_CrossSections));set_attribute_value(3, (v4_FixedAxisVertical)); }
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// Function implementations for IfcSensor
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std::optional< ::Ifc4x3_rc1::IfcSensorTypeEnum::Value > Ifc4x3_rc1::IfcSensor::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSensorTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSensor::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSensorTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSensorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSensor::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1003]); }
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void Ifc4x3_rc1::IfcSensor::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSensorTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSensorTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSensorType
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::Ifc4x3_rc1::IfcSensorTypeEnum::Value Ifc4x3_rc1::IfcSensorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSensorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSensorType::setPredefinedType(const ::Ifc4x3_rc1::IfcSensorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSensorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSensorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1004]); }
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void Ifc4x3_rc1::IfcSensorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSensorTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSensorTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcShadingDevice
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std::optional< ::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value > Ifc4x3_rc1::IfcShadingDevice::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcShadingDevice::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcShadingDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1007]); }
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void Ifc4x3_rc1::IfcShadingDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcShadingDeviceType
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::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value Ifc4x3_rc1::IfcShadingDeviceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcShadingDeviceType::setPredefinedType(const ::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcShadingDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1008]); }
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void Ifc4x3_rc1::IfcShadingDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcShadingDeviceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcShapeAspect
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std::vector< ::Ifc4x3_rc1::IfcShapeModel > Ifc4x3_rc1::IfcShapeAspect::ShapeRepresentations() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcShapeModel>(es); }
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void Ifc4x3_rc1::IfcShapeAspect::setShapeRepresentations(const std::vector< ::Ifc4x3_rc1::IfcShapeModel >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcShapeAspect::Name() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcShapeAspect::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcShapeAspect::Description() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcShapeAspect::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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boost::logic::tribool Ifc4x3_rc1::IfcShapeAspect::ProductDefinitional() const { boost::logic::tribool v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcShapeAspect::setProductDefinitional(const boost::logic::tribool& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcProductRepresentationSelect Ifc4x3_rc1::IfcShapeAspect::PartOfProductDefinitionShape() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcProductRepresentationSelect{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcProductRepresentationSelect>(); }
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void Ifc4x3_rc1::IfcShapeAspect::setPartOfProductDefinitionShape(const ::Ifc4x3_rc1::IfcProductRepresentationSelect& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcShapeAspect::HasExternalReferences() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcShapeAspect::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1010]); }
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void Ifc4x3_rc1::IfcShapeAspect::initialize(std::vector< ::Ifc4x3_rc1::IfcShapeModel > v1_ShapeRepresentations, std::optional< std::string > v2_Name, std::optional< std::string > v3_Description, boost::logic::tribool v4_ProductDefinitional, ::Ifc4x3_rc1::IfcProductRepresentationSelect v5_PartOfProductDefinitionShape) { set_attribute_value(0, cast_vector<express::Base>(v1_ShapeRepresentations)); if (v2_Name) {set_attribute_value(1, (*v2_Name)); } if (v3_Description) {set_attribute_value(2, (*v3_Description)); }set_attribute_value(3, (v4_ProductDefinitional));set_attribute_value(4, (v5_PartOfProductDefinitionShape)); }
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// Function implementations for IfcShapeModel
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std::vector<::Ifc4x3_rc1::IfcShapeAspect> Ifc4x3_rc1::IfcShapeModel::OfShapeAspect() const { return cast_vector<IfcShapeAspect>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1010], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcShapeModel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1011]); }
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void Ifc4x3_rc1::IfcShapeModel::initialize(::Ifc4x3_rc1::IfcRepresentationContext v1_ContextOfItems, std::optional< std::string > v2_RepresentationIdentifier, std::optional< std::string > v3_RepresentationType, std::vector< ::Ifc4x3_rc1::IfcRepresentationItem > v4_Items) { set_attribute_value(0, (v1_ContextOfItems)); if (v2_RepresentationIdentifier) {set_attribute_value(1, (*v2_RepresentationIdentifier)); } if (v3_RepresentationType) {set_attribute_value(2, (*v3_RepresentationType)); }set_attribute_value(3, cast_vector<express::Base>(v4_Items)); }
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// Function implementations for IfcShapeRepresentation
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const IfcParse::entity& Ifc4x3_rc1::IfcShapeRepresentation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1012]); }
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void Ifc4x3_rc1::IfcShapeRepresentation::initialize(::Ifc4x3_rc1::IfcRepresentationContext v1_ContextOfItems, std::optional< std::string > v2_RepresentationIdentifier, std::optional< std::string > v3_RepresentationType, std::vector< ::Ifc4x3_rc1::IfcRepresentationItem > v4_Items) { set_attribute_value(0, (v1_ContextOfItems)); if (v2_RepresentationIdentifier) {set_attribute_value(1, (*v2_RepresentationIdentifier)); } if (v3_RepresentationType) {set_attribute_value(2, (*v3_RepresentationType)); }set_attribute_value(3, cast_vector<express::Base>(v4_Items)); }
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// Function implementations for IfcShellBasedSurfaceModel
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std::vector< ::Ifc4x3_rc1::IfcShell > Ifc4x3_rc1::IfcShellBasedSurfaceModel::SbsmBoundary() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcShell>(es); }
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void Ifc4x3_rc1::IfcShellBasedSurfaceModel::setSbsmBoundary(const std::vector< ::Ifc4x3_rc1::IfcShell >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcShellBasedSurfaceModel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1015]); }
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void Ifc4x3_rc1::IfcShellBasedSurfaceModel::initialize(std::vector< ::Ifc4x3_rc1::IfcShell > v1_SbsmBoundary) { set_attribute_value(0, cast_vector<express::Base>(v1_SbsmBoundary)); }
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// Function implementations for IfcSign
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std::optional< ::Ifc4x3_rc1::IfcSignTypeEnum::Value > Ifc4x3_rc1::IfcSign::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSignTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSign::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSignTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSignTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSign::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1016]); }
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void Ifc4x3_rc1::IfcSign::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSignTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSignTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSignType
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::Ifc4x3_rc1::IfcSignTypeEnum::Value Ifc4x3_rc1::IfcSignType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSignTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSignType::setPredefinedType(const ::Ifc4x3_rc1::IfcSignTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSignTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSignType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1020]); }
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void Ifc4x3_rc1::IfcSignType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSignTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSignTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcSignal
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std::optional< ::Ifc4x3_rc1::IfcSignalTypeEnum::Value > Ifc4x3_rc1::IfcSignal::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSignalTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSignal::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSignalTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSignalTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSignal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1017]); }
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void Ifc4x3_rc1::IfcSignal::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSignalTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSignalTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSignalType
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::Ifc4x3_rc1::IfcSignalTypeEnum::Value Ifc4x3_rc1::IfcSignalType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSignalTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSignalType::setPredefinedType(const ::Ifc4x3_rc1::IfcSignalTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSignalTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSignalType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1018]); }
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void Ifc4x3_rc1::IfcSignalType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSignalTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSignalTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcSimpleProperty
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const IfcParse::entity& Ifc4x3_rc1::IfcSimpleProperty::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1022]); }
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void Ifc4x3_rc1::IfcSimpleProperty::initialize(std::string v1_Name, std::optional< std::string > v2_Description) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); } }
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// Function implementations for IfcSimplePropertyTemplate
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std::optional< ::Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Value > Ifc4x3_rc1::IfcSimplePropertyTemplate::TemplateType() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::FromString(get_attribute_value(4)); }
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void Ifc4x3_rc1::IfcSimplePropertyTemplate::setTemplateType(const std::optional< ::Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Value >& v) { if (v) {set_attribute_value(4, EnumerationReference(&::Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcSimplePropertyTemplate::PrimaryMeasureType() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcSimplePropertyTemplate::setPrimaryMeasureType(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcSimplePropertyTemplate::SecondaryMeasureType() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcSimplePropertyTemplate::setSecondaryMeasureType(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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::Ifc4x3_rc1::IfcPropertyEnumeration Ifc4x3_rc1::IfcSimplePropertyTemplate::Enumerators() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcPropertyEnumeration{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcPropertyEnumeration>(); }
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void Ifc4x3_rc1::IfcSimplePropertyTemplate::setEnumerators(const ::Ifc4x3_rc1::IfcPropertyEnumeration& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcSimplePropertyTemplate::PrimaryUnit() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcSimplePropertyTemplate::setPrimaryUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcSimplePropertyTemplate::SecondaryUnit() const { if(get_attribute_value(9).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcSimplePropertyTemplate::setSecondaryUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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std::optional< std::string > Ifc4x3_rc1::IfcSimplePropertyTemplate::Expression() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::string v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcSimplePropertyTemplate::setExpression(const std::optional< std::string >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< ::Ifc4x3_rc1::IfcStateEnum::Value > Ifc4x3_rc1::IfcSimplePropertyTemplate::AccessState() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcStateEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcSimplePropertyTemplate::setAccessState(const std::optional< ::Ifc4x3_rc1::IfcStateEnum::Value >& v) { if (v) {set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcStateEnum::Class(), (size_t) *v));} else {unset_attribute_value(11);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSimplePropertyTemplate::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1023]); }
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void Ifc4x3_rc1::IfcSimplePropertyTemplate::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< ::Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Value > v5_TemplateType, std::optional< std::string > v6_PrimaryMeasureType, std::optional< std::string > v7_SecondaryMeasureType, ::Ifc4x3_rc1::IfcPropertyEnumeration v8_Enumerators, ::Ifc4x3_rc1::IfcUnit v9_PrimaryUnit, ::Ifc4x3_rc1::IfcUnit v10_SecondaryUnit, std::optional< std::string > v11_Expression, std::optional< ::Ifc4x3_rc1::IfcStateEnum::Value > v12_AccessState) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_TemplateType) {set_attribute_value(4, (EnumerationReference(&::Ifc4x3_rc1::IfcSimplePropertyTemplateTypeEnum::Class(),(size_t)*v5_TemplateType))); } if (v6_PrimaryMeasureType) {set_attribute_value(5, (*v6_PrimaryMeasureType)); } if (v7_SecondaryMeasureType) {set_attribute_value(6, (*v7_SecondaryMeasureType)); }set_attribute_value(7, (v8_Enumerators));set_attribute_value(8, (v9_PrimaryUnit));set_attribute_value(9, (v10_SecondaryUnit)); if (v11_Expression) {set_attribute_value(10, (*v11_Expression)); } if (v12_AccessState) {set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcStateEnum::Class(),(size_t)*v12_AccessState))); } }
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// Function implementations for IfcSite
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std::optional< std::vector< int > /*[3:4]*/ > Ifc4x3_rc1::IfcSite::RefLatitude() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::vector< int > /*[3:4]*/ v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcSite::setRefLatitude(const std::optional< std::vector< int > /*[3:4]*/ >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< std::vector< int > /*[3:4]*/ > Ifc4x3_rc1::IfcSite::RefLongitude() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::vector< int > /*[3:4]*/ v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcSite::setRefLongitude(const std::optional< std::vector< int > /*[3:4]*/ >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcSite::RefElevation() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcSite::setRefElevation(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< std::string > Ifc4x3_rc1::IfcSite::LandTitleNumber() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } std::string v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcSite::setLandTitleNumber(const std::optional< std::string >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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::Ifc4x3_rc1::IfcPostalAddress Ifc4x3_rc1::IfcSite::SiteAddress() const { if(get_attribute_value(13).isNull()) { return ::Ifc4x3_rc1::IfcPostalAddress{}; } return ((express::Base)(get_attribute_value(13))).as<::Ifc4x3_rc1::IfcPostalAddress>(); }
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void Ifc4x3_rc1::IfcSite::setSiteAddress(const ::Ifc4x3_rc1::IfcPostalAddress& v) { set_attribute_value(13, v);if constexpr (false)unset_attribute_value(13); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSite::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1027]); }
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void Ifc4x3_rc1::IfcSite::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType, std::optional< std::vector< int > /*[3:4]*/ > v10_RefLatitude, std::optional< std::vector< int > /*[3:4]*/ > v11_RefLongitude, std::optional< double > v12_RefElevation, std::optional< std::string > v13_LandTitleNumber, ::Ifc4x3_rc1::IfcPostalAddress v14_SiteAddress) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); } if (v10_RefLatitude) {set_attribute_value(9, (*v10_RefLatitude)); } if (v11_RefLongitude) {set_attribute_value(10, (*v11_RefLongitude)); } if (v12_RefElevation) {set_attribute_value(11, (*v12_RefElevation)); } if (v13_LandTitleNumber) {set_attribute_value(12, (*v13_LandTitleNumber)); }set_attribute_value(13, (v14_SiteAddress)); }
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// Function implementations for IfcSlab
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std::optional< ::Ifc4x3_rc1::IfcSlabTypeEnum::Value > Ifc4x3_rc1::IfcSlab::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSlabTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSlab::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSlabTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSlabTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSlab::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1031]); }
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void Ifc4x3_rc1::IfcSlab::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSlabTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSlabTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSlabElementedCase
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const IfcParse::entity& Ifc4x3_rc1::IfcSlabElementedCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1032]); }
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void Ifc4x3_rc1::IfcSlabElementedCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSlabTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSlabTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSlabStandardCase
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const IfcParse::entity& Ifc4x3_rc1::IfcSlabStandardCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1033]); }
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void Ifc4x3_rc1::IfcSlabStandardCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSlabTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSlabTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSlabType
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::Ifc4x3_rc1::IfcSlabTypeEnum::Value Ifc4x3_rc1::IfcSlabType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSlabTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSlabType::setPredefinedType(const ::Ifc4x3_rc1::IfcSlabTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSlabTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSlabType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1034]); }
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void Ifc4x3_rc1::IfcSlabType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSlabTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSlabTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcSlippageConnectionCondition
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std::optional< double > Ifc4x3_rc1::IfcSlippageConnectionCondition::SlippageX() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcSlippageConnectionCondition::setSlippageX(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< double > Ifc4x3_rc1::IfcSlippageConnectionCondition::SlippageY() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcSlippageConnectionCondition::setSlippageY(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcSlippageConnectionCondition::SlippageZ() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcSlippageConnectionCondition::setSlippageZ(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSlippageConnectionCondition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1036]); }
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void Ifc4x3_rc1::IfcSlippageConnectionCondition::initialize(std::optional< std::string > v1_Name, std::optional< double > v2_SlippageX, std::optional< double > v3_SlippageY, std::optional< double > v4_SlippageZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_SlippageX) {set_attribute_value(1, (*v2_SlippageX)); } if (v3_SlippageY) {set_attribute_value(2, (*v3_SlippageY)); } if (v4_SlippageZ) {set_attribute_value(3, (*v4_SlippageZ)); } }
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// Function implementations for IfcSolarDevice
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std::optional< ::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value > Ifc4x3_rc1::IfcSolarDevice::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSolarDevice::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSolarDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1037]); }
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void Ifc4x3_rc1::IfcSolarDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSolarDeviceType
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::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value Ifc4x3_rc1::IfcSolarDeviceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSolarDeviceType::setPredefinedType(const ::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSolarDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1038]); }
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void Ifc4x3_rc1::IfcSolarDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSolarDeviceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcSolidModel
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const IfcParse::entity& Ifc4x3_rc1::IfcSolidModel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1041]); }
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void Ifc4x3_rc1::IfcSolidModel::initialize() { }
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// Function implementations for IfcSolidStratum
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const IfcParse::entity& Ifc4x3_rc1::IfcSolidStratum::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1043]); }
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void Ifc4x3_rc1::IfcSolidStratum::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcSpace
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std::optional< ::Ifc4x3_rc1::IfcSpaceTypeEnum::Value > Ifc4x3_rc1::IfcSpace::PredefinedType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSpaceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSpace::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSpaceTypeEnum::Value >& v) { if (v) {set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSpaceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcSpace::ElevationWithFlooring() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcSpace::setElevationWithFlooring(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::vector<::Ifc4x3_rc1::IfcRelCoversSpaces> Ifc4x3_rc1::IfcSpace::HasCoverings() const { return cast_vector<IfcRelCoversSpaces>(file()->getInverse(data()->id(), IFC4X3_RC1_types[939], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelSpaceBoundary> Ifc4x3_rc1::IfcSpace::BoundedBy() const { return cast_vector<IfcRelSpaceBoundary>(file()->getInverse(data()->id(), IFC4X3_RC1_types[956], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSpace::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1048]); }
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void Ifc4x3_rc1::IfcSpace::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType, std::optional< ::Ifc4x3_rc1::IfcSpaceTypeEnum::Value > v10_PredefinedType, std::optional< double > v11_ElevationWithFlooring) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); } if (v10_PredefinedType) {set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSpaceTypeEnum::Class(),(size_t)*v10_PredefinedType))); } if (v11_ElevationWithFlooring) {set_attribute_value(10, (*v11_ElevationWithFlooring)); } }
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// Function implementations for IfcSpaceHeater
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std::optional< ::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value > Ifc4x3_rc1::IfcSpaceHeater::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSpaceHeater::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSpaceHeater::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1050]); }
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void Ifc4x3_rc1::IfcSpaceHeater::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSpaceHeaterType
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::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value Ifc4x3_rc1::IfcSpaceHeaterType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSpaceHeaterType::setPredefinedType(const ::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSpaceHeaterType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1051]); }
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void Ifc4x3_rc1::IfcSpaceHeaterType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSpaceHeaterTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcSpaceType
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::Ifc4x3_rc1::IfcSpaceTypeEnum::Value Ifc4x3_rc1::IfcSpaceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSpaceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSpaceType::setPredefinedType(const ::Ifc4x3_rc1::IfcSpaceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSpaceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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std::optional< std::string > Ifc4x3_rc1::IfcSpaceType::LongName() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::string v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcSpaceType::setLongName(const std::optional< std::string >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSpaceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1053]); }
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void Ifc4x3_rc1::IfcSpaceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSpaceTypeEnum::Value v10_PredefinedType, std::optional< std::string > v11_LongName) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSpaceTypeEnum::Class(),(size_t)v10_PredefinedType))); if (v11_LongName) {set_attribute_value(10, (*v11_LongName)); } }
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// Function implementations for IfcSpatialElement
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std::optional< std::string > Ifc4x3_rc1::IfcSpatialElement::LongName() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcSpatialElement::setLongName(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::vector<::Ifc4x3_rc1::IfcRelContainedInSpatialStructure> Ifc4x3_rc1::IfcSpatialElement::ContainsElements() const { return cast_vector<IfcRelContainedInSpatialStructure>(file()->getInverse(data()->id(), IFC4X3_RC1_types[937], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelServicesBuildings> Ifc4x3_rc1::IfcSpatialElement::ServicedBySystems() const { return cast_vector<IfcRelServicesBuildings>(file()->getInverse(data()->id(), IFC4X3_RC1_types[955], 5)); }
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std::vector<::Ifc4x3_rc1::IfcRelReferencedInSpatialStructure> Ifc4x3_rc1::IfcSpatialElement::ReferencesElements() const { return cast_vector<IfcRelReferencedInSpatialStructure>(file()->getInverse(data()->id(), IFC4X3_RC1_types[953], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSpatialElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1055]); }
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void Ifc4x3_rc1::IfcSpatialElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } }
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// Function implementations for IfcSpatialElementType
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std::optional< std::string > Ifc4x3_rc1::IfcSpatialElementType::ElementType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcSpatialElementType::setElementType(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSpatialElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1056]); }
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void Ifc4x3_rc1::IfcSpatialElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcSpatialStructureElement
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std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > Ifc4x3_rc1::IfcSpatialStructureElement::CompositionType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcElementCompositionEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSpatialStructureElement::setCompositionType(const std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSpatialStructureElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1058]); }
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void Ifc4x3_rc1::IfcSpatialStructureElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcElementCompositionEnum::Value > v9_CompositionType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_CompositionType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcElementCompositionEnum::Class(),(size_t)*v9_CompositionType))); } }
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// Function implementations for IfcSpatialStructureElementType
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const IfcParse::entity& Ifc4x3_rc1::IfcSpatialStructureElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1059]); }
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void Ifc4x3_rc1::IfcSpatialStructureElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } }
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// Function implementations for IfcSpatialZone
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std::optional< ::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value > Ifc4x3_rc1::IfcSpatialZone::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSpatialZone::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSpatialZone::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1060]); }
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void Ifc4x3_rc1::IfcSpatialZone::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_LongName, std::optional< ::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_LongName) {set_attribute_value(7, (*v8_LongName)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSpatialZoneType
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::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value Ifc4x3_rc1::IfcSpatialZoneType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSpatialZoneType::setPredefinedType(const ::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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std::optional< std::string > Ifc4x3_rc1::IfcSpatialZoneType::LongName() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::string v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcSpatialZoneType::setLongName(const std::optional< std::string >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSpatialZoneType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1061]); }
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void Ifc4x3_rc1::IfcSpatialZoneType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Value v10_PredefinedType, std::optional< std::string > v11_LongName) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSpatialZoneTypeEnum::Class(),(size_t)v10_PredefinedType))); if (v11_LongName) {set_attribute_value(10, (*v11_LongName)); } }
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// Function implementations for IfcSphere
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double Ifc4x3_rc1::IfcSphere::Radius() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcSphere::setRadius(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSphere::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1067]); }
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void Ifc4x3_rc1::IfcSphere::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position, double v2_Radius) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_Radius)); }
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// Function implementations for IfcSphericalSurface
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double Ifc4x3_rc1::IfcSphericalSurface::Radius() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcSphericalSurface::setRadius(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSphericalSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1068]); }
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void Ifc4x3_rc1::IfcSphericalSurface::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position, double v2_Radius) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_Radius)); }
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// Function implementations for IfcStackTerminal
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std::optional< ::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value > Ifc4x3_rc1::IfcStackTerminal::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcStackTerminalTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcStackTerminal::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStackTerminal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1069]); }
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void Ifc4x3_rc1::IfcStackTerminal::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcStackTerminalType
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::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value Ifc4x3_rc1::IfcStackTerminalType::PredefinedType() const { return ::Ifc4x3_rc1::IfcStackTerminalTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcStackTerminalType::setPredefinedType(const ::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStackTerminalType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1070]); }
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void Ifc4x3_rc1::IfcStackTerminalType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcStackTerminalTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcStair
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std::optional< ::Ifc4x3_rc1::IfcStairTypeEnum::Value > Ifc4x3_rc1::IfcStair::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcStairTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcStair::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcStairTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcStairTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStair::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1072]); }
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void Ifc4x3_rc1::IfcStair::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcStairTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcStairTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcStairFlight
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std::optional< int > Ifc4x3_rc1::IfcStairFlight::NumberOfRisers() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } int v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcStairFlight::setNumberOfRisers(const std::optional< int >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< int > Ifc4x3_rc1::IfcStairFlight::NumberOfTreads() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } int v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcStairFlight::setNumberOfTreads(const std::optional< int >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcStairFlight::RiserHeight() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcStairFlight::setRiserHeight(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcStairFlight::TreadLength() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcStairFlight::setTreadLength(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< ::Ifc4x3_rc1::IfcStairFlightTypeEnum::Value > Ifc4x3_rc1::IfcStairFlight::PredefinedType() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcStairFlightTypeEnum::FromString(get_attribute_value(12)); }
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void Ifc4x3_rc1::IfcStairFlight::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcStairFlightTypeEnum::Value >& v) { if (v) {set_attribute_value(12, EnumerationReference(&::Ifc4x3_rc1::IfcStairFlightTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(12);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStairFlight::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1073]); }
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void Ifc4x3_rc1::IfcStairFlight::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< int > v9_NumberOfRisers, std::optional< int > v10_NumberOfTreads, std::optional< double > v11_RiserHeight, std::optional< double > v12_TreadLength, std::optional< ::Ifc4x3_rc1::IfcStairFlightTypeEnum::Value > v13_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_NumberOfRisers) {set_attribute_value(8, (*v9_NumberOfRisers)); } if (v10_NumberOfTreads) {set_attribute_value(9, (*v10_NumberOfTreads)); } if (v11_RiserHeight) {set_attribute_value(10, (*v11_RiserHeight)); } if (v12_TreadLength) {set_attribute_value(11, (*v12_TreadLength)); } if (v13_PredefinedType) {set_attribute_value(12, (EnumerationReference(&::Ifc4x3_rc1::IfcStairFlightTypeEnum::Class(),(size_t)*v13_PredefinedType))); } }
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// Function implementations for IfcStairFlightType
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::Ifc4x3_rc1::IfcStairFlightTypeEnum::Value Ifc4x3_rc1::IfcStairFlightType::PredefinedType() const { return ::Ifc4x3_rc1::IfcStairFlightTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcStairFlightType::setPredefinedType(const ::Ifc4x3_rc1::IfcStairFlightTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcStairFlightTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStairFlightType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1074]); }
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void Ifc4x3_rc1::IfcStairFlightType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcStairFlightTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcStairFlightTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcStairType
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::Ifc4x3_rc1::IfcStairTypeEnum::Value Ifc4x3_rc1::IfcStairType::PredefinedType() const { return ::Ifc4x3_rc1::IfcStairTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcStairType::setPredefinedType(const ::Ifc4x3_rc1::IfcStairTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcStairTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStairType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1076]); }
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void Ifc4x3_rc1::IfcStairType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcStairTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcStairTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcStructuralAction
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std::optional< bool > Ifc4x3_rc1::IfcStructuralAction::DestabilizingLoad() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } bool v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcStructuralAction::setDestabilizingLoad(const std::optional< bool >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralAction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1079]); }
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void Ifc4x3_rc1::IfcStructuralAction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal, std::optional< bool > v10_DestabilizingLoad) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal))); if (v10_DestabilizingLoad) {set_attribute_value(9, (*v10_DestabilizingLoad)); } }
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// Function implementations for IfcStructuralActivity
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::Ifc4x3_rc1::IfcStructuralLoad Ifc4x3_rc1::IfcStructuralActivity::AppliedLoad() const { return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcStructuralLoad>(); }
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void Ifc4x3_rc1::IfcStructuralActivity::setAppliedLoad(const ::Ifc4x3_rc1::IfcStructuralLoad& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value Ifc4x3_rc1::IfcStructuralActivity::GlobalOrLocal() const { return ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcStructuralActivity::setGlobalOrLocal(const ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value& v) { set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(8); }
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std::vector<::Ifc4x3_rc1::IfcRelConnectsStructuralActivity> Ifc4x3_rc1::IfcStructuralActivity::AssignedToStructuralItem() const { return cast_vector<IfcRelConnectsStructuralActivity>(file()->getInverse(data()->id(), IFC4X3_RC1_types[933], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralActivity::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1080]); }
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void Ifc4x3_rc1::IfcStructuralActivity::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal))); }
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// Function implementations for IfcStructuralAnalysisModel
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::Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Value Ifc4x3_rc1::IfcStructuralAnalysisModel::PredefinedType() const { return ::Ifc4x3_rc1::IfcAnalysisModelTypeEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcStructuralAnalysisModel::setPredefinedType(const ::Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Value& v) { set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcStructuralAnalysisModel::OrientationOf2DPlane() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcAxis2Placement3D{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcStructuralAnalysisModel::setOrientationOf2DPlane(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcStructuralLoadGroup > > Ifc4x3_rc1::IfcStructuralAnalysisModel::LoadedBy() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcStructuralLoadGroup>(es); }
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void Ifc4x3_rc1::IfcStructuralAnalysisModel::setLoadedBy(const std::optional< std::vector< ::Ifc4x3_rc1::IfcStructuralLoadGroup > >& v) { if (v) {set_attribute_value(7, cast_vector<express::Base>(*v));} else {unset_attribute_value(7);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcStructuralResultGroup > > Ifc4x3_rc1::IfcStructuralAnalysisModel::HasResults() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(8); return cast_vector<::Ifc4x3_rc1::IfcStructuralResultGroup>(es); }
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void Ifc4x3_rc1::IfcStructuralAnalysisModel::setHasResults(const std::optional< std::vector< ::Ifc4x3_rc1::IfcStructuralResultGroup > >& v) { if (v) {set_attribute_value(8, cast_vector<express::Base>(*v));} else {unset_attribute_value(8);} }
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::Ifc4x3_rc1::IfcObjectPlacement Ifc4x3_rc1::IfcStructuralAnalysisModel::SharedPlacement() const { if(get_attribute_value(9).isNull()) { return ::Ifc4x3_rc1::IfcObjectPlacement{}; } return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcObjectPlacement>(); }
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void Ifc4x3_rc1::IfcStructuralAnalysisModel::setSharedPlacement(const ::Ifc4x3_rc1::IfcObjectPlacement& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralAnalysisModel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1082]); }
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void Ifc4x3_rc1::IfcStructuralAnalysisModel::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Value v6_PredefinedType, ::Ifc4x3_rc1::IfcAxis2Placement3D v7_OrientationOf2DPlane, std::optional< std::vector< ::Ifc4x3_rc1::IfcStructuralLoadGroup > > v8_LoadedBy, std::optional< std::vector< ::Ifc4x3_rc1::IfcStructuralResultGroup > > v9_HasResults, ::Ifc4x3_rc1::IfcObjectPlacement v10_SharedPlacement) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcAnalysisModelTypeEnum::Class(),(size_t)v6_PredefinedType)));set_attribute_value(6, (v7_OrientationOf2DPlane)); if (v8_LoadedBy) {set_attribute_value(7, cast_vector<express::Base>(*v8_LoadedBy)); } if (v9_HasResults) {set_attribute_value(8, cast_vector<express::Base>(*v9_HasResults)); }set_attribute_value(9, (v10_SharedPlacement)); }
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// Function implementations for IfcStructuralConnection
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::Ifc4x3_rc1::IfcBoundaryCondition Ifc4x3_rc1::IfcStructuralConnection::AppliedCondition() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcBoundaryCondition{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcBoundaryCondition>(); }
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void Ifc4x3_rc1::IfcStructuralConnection::setAppliedCondition(const ::Ifc4x3_rc1::IfcBoundaryCondition& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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std::vector<::Ifc4x3_rc1::IfcRelConnectsStructuralMember> Ifc4x3_rc1::IfcStructuralConnection::ConnectsStructuralMembers() const { return cast_vector<IfcRelConnectsStructuralMember>(file()->getInverse(data()->id(), IFC4X3_RC1_types[934], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralConnection::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1083]); }
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void Ifc4x3_rc1::IfcStructuralConnection::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcBoundaryCondition v8_AppliedCondition) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedCondition)); }
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// Function implementations for IfcStructuralConnectionCondition
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std::optional< std::string > Ifc4x3_rc1::IfcStructuralConnectionCondition::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcStructuralConnectionCondition::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralConnectionCondition::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1084]); }
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void Ifc4x3_rc1::IfcStructuralConnectionCondition::initialize(std::optional< std::string > v1_Name) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } }
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// Function implementations for IfcStructuralCurveAction
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std::optional< ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value > Ifc4x3_rc1::IfcStructuralCurveAction::ProjectedOrTrue() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcStructuralCurveAction::setProjectedOrTrue(const std::optional< ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value Ifc4x3_rc1::IfcStructuralCurveAction::PredefinedType() const { return ::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcStructuralCurveAction::setPredefinedType(const ::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralCurveAction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1085]); }
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void Ifc4x3_rc1::IfcStructuralCurveAction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal, std::optional< bool > v10_DestabilizingLoad, std::optional< ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value > v11_ProjectedOrTrue, ::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal))); if (v10_DestabilizingLoad) {set_attribute_value(9, (*v10_DestabilizingLoad)); } if (v11_ProjectedOrTrue) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Class(),(size_t)*v11_ProjectedOrTrue))); }set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcStructuralCurveConnection
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcStructuralCurveConnection::Axis() const { return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcStructuralCurveConnection::setAxis(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralCurveConnection::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1087]); }
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void Ifc4x3_rc1::IfcStructuralCurveConnection::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcBoundaryCondition v8_AppliedCondition, ::Ifc4x3_rc1::IfcDirection v9_Axis) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedCondition));set_attribute_value(8, (v9_Axis)); }
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// Function implementations for IfcStructuralCurveMember
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::Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Value Ifc4x3_rc1::IfcStructuralCurveMember::PredefinedType() const { return ::Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcStructuralCurveMember::setPredefinedType(const ::Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcStructuralCurveMember::Axis() const { return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcStructuralCurveMember::setAxis(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralCurveMember::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1088]); }
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void Ifc4x3_rc1::IfcStructuralCurveMember::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Value v8_PredefinedType, ::Ifc4x3_rc1::IfcDirection v9_Axis) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Class(),(size_t)v8_PredefinedType)));set_attribute_value(8, (v9_Axis)); }
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// Function implementations for IfcStructuralCurveMemberVarying
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralCurveMemberVarying::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1090]); }
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void Ifc4x3_rc1::IfcStructuralCurveMemberVarying::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Value v8_PredefinedType, ::Ifc4x3_rc1::IfcDirection v9_Axis) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralCurveMemberTypeEnum::Class(),(size_t)v8_PredefinedType)));set_attribute_value(8, (v9_Axis)); }
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// Function implementations for IfcStructuralCurveReaction
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::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value Ifc4x3_rc1::IfcStructuralCurveReaction::PredefinedType() const { return ::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcStructuralCurveReaction::setPredefinedType(const ::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralCurveReaction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1091]); }
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void Ifc4x3_rc1::IfcStructuralCurveReaction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal, ::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal)));set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcStructuralItem
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std::vector<::Ifc4x3_rc1::IfcRelConnectsStructuralActivity> Ifc4x3_rc1::IfcStructuralItem::AssignedStructuralActivity() const { return cast_vector<IfcRelConnectsStructuralActivity>(file()->getInverse(data()->id(), IFC4X3_RC1_types[933], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1092]); }
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void Ifc4x3_rc1::IfcStructuralItem::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); }
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// Function implementations for IfcStructuralLinearAction
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLinearAction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1093]); }
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void Ifc4x3_rc1::IfcStructuralLinearAction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal, std::optional< bool > v10_DestabilizingLoad, std::optional< ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value > v11_ProjectedOrTrue, ::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal))); if (v10_DestabilizingLoad) {set_attribute_value(9, (*v10_DestabilizingLoad)); } if (v11_ProjectedOrTrue) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Class(),(size_t)*v11_ProjectedOrTrue))); }set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralCurveActivityTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcStructuralLoad
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std::optional< std::string > Ifc4x3_rc1::IfcStructuralLoad::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcStructuralLoad::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoad::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1094]); }
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void Ifc4x3_rc1::IfcStructuralLoad::initialize(std::optional< std::string > v1_Name) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } }
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// Function implementations for IfcStructuralLoadCase
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std::optional< std::vector< double > /*[3:3]*/ > Ifc4x3_rc1::IfcStructuralLoadCase::SelfWeightCoefficients() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::vector< double > /*[3:3]*/ v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadCase::setSelfWeightCoefficients(const std::optional< std::vector< double > /*[3:3]*/ >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1095]); }
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void Ifc4x3_rc1::IfcStructuralLoadCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcLoadGroupTypeEnum::Value v6_PredefinedType, ::Ifc4x3_rc1::IfcActionTypeEnum::Value v7_ActionType, ::Ifc4x3_rc1::IfcActionSourceTypeEnum::Value v8_ActionSource, std::optional< double > v9_Coefficient, std::optional< std::string > v10_Purpose, std::optional< std::vector< double > /*[3:3]*/ > v11_SelfWeightCoefficients) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcLoadGroupTypeEnum::Class(),(size_t)v6_PredefinedType)));set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcActionTypeEnum::Class(),(size_t)v7_ActionType)));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcActionSourceTypeEnum::Class(),(size_t)v8_ActionSource))); if (v9_Coefficient) {set_attribute_value(8, (*v9_Coefficient)); } if (v10_Purpose) {set_attribute_value(9, (*v10_Purpose)); } if (v11_SelfWeightCoefficients) {set_attribute_value(10, (*v11_SelfWeightCoefficients)); } }
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// Function implementations for IfcStructuralLoadConfiguration
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std::vector< ::Ifc4x3_rc1::IfcStructuralLoadOrResult > Ifc4x3_rc1::IfcStructuralLoadConfiguration::Values() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcStructuralLoadOrResult>(es); }
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void Ifc4x3_rc1::IfcStructuralLoadConfiguration::setValues(const std::vector< ::Ifc4x3_rc1::IfcStructuralLoadOrResult >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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std::optional< std::vector< std::vector< double > > > Ifc4x3_rc1::IfcStructuralLoadConfiguration::Locations() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector< std::vector< double > > v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadConfiguration::setLocations(const std::optional< std::vector< std::vector< double > > >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadConfiguration::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1096]); }
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void Ifc4x3_rc1::IfcStructuralLoadConfiguration::initialize(std::optional< std::string > v1_Name, std::vector< ::Ifc4x3_rc1::IfcStructuralLoadOrResult > v2_Values, std::optional< std::vector< std::vector< double > > > v3_Locations) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, cast_vector<express::Base>(v2_Values)); if (v3_Locations) {set_attribute_value(2, (*v3_Locations)); } }
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// Function implementations for IfcStructuralLoadGroup
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::Ifc4x3_rc1::IfcLoadGroupTypeEnum::Value Ifc4x3_rc1::IfcStructuralLoadGroup::PredefinedType() const { return ::Ifc4x3_rc1::IfcLoadGroupTypeEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcStructuralLoadGroup::setPredefinedType(const ::Ifc4x3_rc1::IfcLoadGroupTypeEnum::Value& v) { set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcLoadGroupTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcActionTypeEnum::Value Ifc4x3_rc1::IfcStructuralLoadGroup::ActionType() const { return ::Ifc4x3_rc1::IfcActionTypeEnum::FromString(get_attribute_value(6)); }
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void Ifc4x3_rc1::IfcStructuralLoadGroup::setActionType(const ::Ifc4x3_rc1::IfcActionTypeEnum::Value& v) { set_attribute_value(6, EnumerationReference(&::Ifc4x3_rc1::IfcActionTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(6); }
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::Ifc4x3_rc1::IfcActionSourceTypeEnum::Value Ifc4x3_rc1::IfcStructuralLoadGroup::ActionSource() const { return ::Ifc4x3_rc1::IfcActionSourceTypeEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcStructuralLoadGroup::setActionSource(const ::Ifc4x3_rc1::IfcActionSourceTypeEnum::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcActionSourceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadGroup::Coefficient() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadGroup::setCoefficient(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< std::string > Ifc4x3_rc1::IfcStructuralLoadGroup::Purpose() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::string v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadGroup::setPurpose(const std::optional< std::string >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::vector<::Ifc4x3_rc1::IfcStructuralResultGroup> Ifc4x3_rc1::IfcStructuralLoadGroup::SourceOfResultGroup() const { return cast_vector<IfcStructuralResultGroup>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1113], 6)); }
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std::vector<::Ifc4x3_rc1::IfcStructuralAnalysisModel> Ifc4x3_rc1::IfcStructuralLoadGroup::LoadGroupFor() const { return cast_vector<IfcStructuralAnalysisModel>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1082], 7)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadGroup::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1097]); }
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void Ifc4x3_rc1::IfcStructuralLoadGroup::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcLoadGroupTypeEnum::Value v6_PredefinedType, ::Ifc4x3_rc1::IfcActionTypeEnum::Value v7_ActionType, ::Ifc4x3_rc1::IfcActionSourceTypeEnum::Value v8_ActionSource, std::optional< double > v9_Coefficient, std::optional< std::string > v10_Purpose) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcLoadGroupTypeEnum::Class(),(size_t)v6_PredefinedType)));set_attribute_value(6, (EnumerationReference(&::Ifc4x3_rc1::IfcActionTypeEnum::Class(),(size_t)v7_ActionType)));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcActionSourceTypeEnum::Class(),(size_t)v8_ActionSource))); if (v9_Coefficient) {set_attribute_value(8, (*v9_Coefficient)); } if (v10_Purpose) {set_attribute_value(9, (*v10_Purpose)); } }
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// Function implementations for IfcStructuralLoadLinearForce
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadLinearForce::LinearForceX() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadLinearForce::setLinearForceX(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadLinearForce::LinearForceY() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadLinearForce::setLinearForceY(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadLinearForce::LinearForceZ() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadLinearForce::setLinearForceZ(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadLinearForce::LinearMomentX() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadLinearForce::setLinearMomentX(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadLinearForce::LinearMomentY() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadLinearForce::setLinearMomentY(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadLinearForce::LinearMomentZ() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadLinearForce::setLinearMomentZ(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadLinearForce::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1098]); }
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void Ifc4x3_rc1::IfcStructuralLoadLinearForce::initialize(std::optional< std::string > v1_Name, std::optional< double > v2_LinearForceX, std::optional< double > v3_LinearForceY, std::optional< double > v4_LinearForceZ, std::optional< double > v5_LinearMomentX, std::optional< double > v6_LinearMomentY, std::optional< double > v7_LinearMomentZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_LinearForceX) {set_attribute_value(1, (*v2_LinearForceX)); } if (v3_LinearForceY) {set_attribute_value(2, (*v3_LinearForceY)); } if (v4_LinearForceZ) {set_attribute_value(3, (*v4_LinearForceZ)); } if (v5_LinearMomentX) {set_attribute_value(4, (*v5_LinearMomentX)); } if (v6_LinearMomentY) {set_attribute_value(5, (*v6_LinearMomentY)); } if (v7_LinearMomentZ) {set_attribute_value(6, (*v7_LinearMomentZ)); } }
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// Function implementations for IfcStructuralLoadOrResult
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadOrResult::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1099]); }
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void Ifc4x3_rc1::IfcStructuralLoadOrResult::initialize(std::optional< std::string > v1_Name) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } }
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// Function implementations for IfcStructuralLoadPlanarForce
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadPlanarForce::PlanarForceX() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadPlanarForce::setPlanarForceX(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadPlanarForce::PlanarForceY() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadPlanarForce::setPlanarForceY(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadPlanarForce::PlanarForceZ() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadPlanarForce::setPlanarForceZ(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadPlanarForce::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1100]); }
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void Ifc4x3_rc1::IfcStructuralLoadPlanarForce::initialize(std::optional< std::string > v1_Name, std::optional< double > v2_PlanarForceX, std::optional< double > v3_PlanarForceY, std::optional< double > v4_PlanarForceZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_PlanarForceX) {set_attribute_value(1, (*v2_PlanarForceX)); } if (v3_PlanarForceY) {set_attribute_value(2, (*v3_PlanarForceY)); } if (v4_PlanarForceZ) {set_attribute_value(3, (*v4_PlanarForceZ)); } }
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// Function implementations for IfcStructuralLoadSingleDisplacement
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::DisplacementX() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::setDisplacementX(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::DisplacementY() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::setDisplacementY(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::DisplacementZ() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::setDisplacementZ(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::RotationalDisplacementRX() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::setRotationalDisplacementRX(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::RotationalDisplacementRY() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::setRotationalDisplacementRY(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::RotationalDisplacementRZ() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::setRotationalDisplacementRZ(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1101]); }
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void Ifc4x3_rc1::IfcStructuralLoadSingleDisplacement::initialize(std::optional< std::string > v1_Name, std::optional< double > v2_DisplacementX, std::optional< double > v3_DisplacementY, std::optional< double > v4_DisplacementZ, std::optional< double > v5_RotationalDisplacementRX, std::optional< double > v6_RotationalDisplacementRY, std::optional< double > v7_RotationalDisplacementRZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DisplacementX) {set_attribute_value(1, (*v2_DisplacementX)); } if (v3_DisplacementY) {set_attribute_value(2, (*v3_DisplacementY)); } if (v4_DisplacementZ) {set_attribute_value(3, (*v4_DisplacementZ)); } if (v5_RotationalDisplacementRX) {set_attribute_value(4, (*v5_RotationalDisplacementRX)); } if (v6_RotationalDisplacementRY) {set_attribute_value(5, (*v6_RotationalDisplacementRY)); } if (v7_RotationalDisplacementRZ) {set_attribute_value(6, (*v7_RotationalDisplacementRZ)); } }
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// Function implementations for IfcStructuralLoadSingleDisplacementDistortion
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleDisplacementDistortion::Distortion() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleDisplacementDistortion::setDistortion(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadSingleDisplacementDistortion::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1102]); }
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void Ifc4x3_rc1::IfcStructuralLoadSingleDisplacementDistortion::initialize(std::optional< std::string > v1_Name, std::optional< double > v2_DisplacementX, std::optional< double > v3_DisplacementY, std::optional< double > v4_DisplacementZ, std::optional< double > v5_RotationalDisplacementRX, std::optional< double > v6_RotationalDisplacementRY, std::optional< double > v7_RotationalDisplacementRZ, std::optional< double > v8_Distortion) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DisplacementX) {set_attribute_value(1, (*v2_DisplacementX)); } if (v3_DisplacementY) {set_attribute_value(2, (*v3_DisplacementY)); } if (v4_DisplacementZ) {set_attribute_value(3, (*v4_DisplacementZ)); } if (v5_RotationalDisplacementRX) {set_attribute_value(4, (*v5_RotationalDisplacementRX)); } if (v6_RotationalDisplacementRY) {set_attribute_value(5, (*v6_RotationalDisplacementRY)); } if (v7_RotationalDisplacementRZ) {set_attribute_value(6, (*v7_RotationalDisplacementRZ)); } if (v8_Distortion) {set_attribute_value(7, (*v8_Distortion)); } }
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// Function implementations for IfcStructuralLoadSingleForce
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleForce::ForceX() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleForce::setForceX(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleForce::ForceY() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleForce::setForceY(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleForce::ForceZ() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleForce::setForceZ(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleForce::MomentX() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleForce::setMomentX(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleForce::MomentY() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleForce::setMomentY(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleForce::MomentZ() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleForce::setMomentZ(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadSingleForce::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1103]); }
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void Ifc4x3_rc1::IfcStructuralLoadSingleForce::initialize(std::optional< std::string > v1_Name, std::optional< double > v2_ForceX, std::optional< double > v3_ForceY, std::optional< double > v4_ForceZ, std::optional< double > v5_MomentX, std::optional< double > v6_MomentY, std::optional< double > v7_MomentZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_ForceX) {set_attribute_value(1, (*v2_ForceX)); } if (v3_ForceY) {set_attribute_value(2, (*v3_ForceY)); } if (v4_ForceZ) {set_attribute_value(3, (*v4_ForceZ)); } if (v5_MomentX) {set_attribute_value(4, (*v5_MomentX)); } if (v6_MomentY) {set_attribute_value(5, (*v6_MomentY)); } if (v7_MomentZ) {set_attribute_value(6, (*v7_MomentZ)); } }
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// Function implementations for IfcStructuralLoadSingleForceWarping
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadSingleForceWarping::WarpingMoment() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadSingleForceWarping::setWarpingMoment(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadSingleForceWarping::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1104]); }
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void Ifc4x3_rc1::IfcStructuralLoadSingleForceWarping::initialize(std::optional< std::string > v1_Name, std::optional< double > v2_ForceX, std::optional< double > v3_ForceY, std::optional< double > v4_ForceZ, std::optional< double > v5_MomentX, std::optional< double > v6_MomentY, std::optional< double > v7_MomentZ, std::optional< double > v8_WarpingMoment) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_ForceX) {set_attribute_value(1, (*v2_ForceX)); } if (v3_ForceY) {set_attribute_value(2, (*v3_ForceY)); } if (v4_ForceZ) {set_attribute_value(3, (*v4_ForceZ)); } if (v5_MomentX) {set_attribute_value(4, (*v5_MomentX)); } if (v6_MomentY) {set_attribute_value(5, (*v6_MomentY)); } if (v7_MomentZ) {set_attribute_value(6, (*v7_MomentZ)); } if (v8_WarpingMoment) {set_attribute_value(7, (*v8_WarpingMoment)); } }
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// Function implementations for IfcStructuralLoadStatic
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadStatic::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1105]); }
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void Ifc4x3_rc1::IfcStructuralLoadStatic::initialize(std::optional< std::string > v1_Name) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } }
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// Function implementations for IfcStructuralLoadTemperature
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadTemperature::DeltaTConstant() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadTemperature::setDeltaTConstant(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadTemperature::DeltaTY() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadTemperature::setDeltaTY(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcStructuralLoadTemperature::DeltaTZ() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcStructuralLoadTemperature::setDeltaTZ(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralLoadTemperature::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1106]); }
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void Ifc4x3_rc1::IfcStructuralLoadTemperature::initialize(std::optional< std::string > v1_Name, std::optional< double > v2_DeltaTConstant, std::optional< double > v3_DeltaTY, std::optional< double > v4_DeltaTZ) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DeltaTConstant) {set_attribute_value(1, (*v2_DeltaTConstant)); } if (v3_DeltaTY) {set_attribute_value(2, (*v3_DeltaTY)); } if (v4_DeltaTZ) {set_attribute_value(3, (*v4_DeltaTZ)); } }
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// Function implementations for IfcStructuralMember
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std::vector<::Ifc4x3_rc1::IfcRelConnectsStructuralMember> Ifc4x3_rc1::IfcStructuralMember::ConnectedBy() const { return cast_vector<IfcRelConnectsStructuralMember>(file()->getInverse(data()->id(), IFC4X3_RC1_types[934], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralMember::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1107]); }
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void Ifc4x3_rc1::IfcStructuralMember::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); }
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// Function implementations for IfcStructuralPlanarAction
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralPlanarAction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1108]); }
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void Ifc4x3_rc1::IfcStructuralPlanarAction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal, std::optional< bool > v10_DestabilizingLoad, std::optional< ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value > v11_ProjectedOrTrue, ::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal))); if (v10_DestabilizingLoad) {set_attribute_value(9, (*v10_DestabilizingLoad)); } if (v11_ProjectedOrTrue) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Class(),(size_t)*v11_ProjectedOrTrue))); }set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcStructuralPointAction
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralPointAction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1109]); }
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void Ifc4x3_rc1::IfcStructuralPointAction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal, std::optional< bool > v10_DestabilizingLoad) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal))); if (v10_DestabilizingLoad) {set_attribute_value(9, (*v10_DestabilizingLoad)); } }
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// Function implementations for IfcStructuralPointConnection
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcStructuralPointConnection::ConditionCoordinateSystem() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcAxis2Placement3D{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcStructuralPointConnection::setConditionCoordinateSystem(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralPointConnection::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1110]); }
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void Ifc4x3_rc1::IfcStructuralPointConnection::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcBoundaryCondition v8_AppliedCondition, ::Ifc4x3_rc1::IfcAxis2Placement3D v9_ConditionCoordinateSystem) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedCondition));set_attribute_value(8, (v9_ConditionCoordinateSystem)); }
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// Function implementations for IfcStructuralPointReaction
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralPointReaction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1111]); }
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void Ifc4x3_rc1::IfcStructuralPointReaction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal))); }
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// Function implementations for IfcStructuralReaction
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralReaction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1112]); }
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void Ifc4x3_rc1::IfcStructuralReaction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal))); }
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// Function implementations for IfcStructuralResultGroup
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::Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Value Ifc4x3_rc1::IfcStructuralResultGroup::TheoryType() const { return ::Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcStructuralResultGroup::setTheoryType(const ::Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Value& v) { set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcStructuralLoadGroup Ifc4x3_rc1::IfcStructuralResultGroup::ResultForLoadGroup() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcStructuralLoadGroup{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcStructuralLoadGroup>(); }
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void Ifc4x3_rc1::IfcStructuralResultGroup::setResultForLoadGroup(const ::Ifc4x3_rc1::IfcStructuralLoadGroup& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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bool Ifc4x3_rc1::IfcStructuralResultGroup::IsLinear() const { bool v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcStructuralResultGroup::setIsLinear(const bool& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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std::vector<::Ifc4x3_rc1::IfcStructuralAnalysisModel> Ifc4x3_rc1::IfcStructuralResultGroup::ResultGroupFor() const { return cast_vector<IfcStructuralAnalysisModel>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1082], 8)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralResultGroup::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1113]); }
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void Ifc4x3_rc1::IfcStructuralResultGroup::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Value v6_TheoryType, ::Ifc4x3_rc1::IfcStructuralLoadGroup v7_ResultForLoadGroup, bool v8_IsLinear) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcAnalysisTheoryTypeEnum::Class(),(size_t)v6_TheoryType)));set_attribute_value(6, (v7_ResultForLoadGroup));set_attribute_value(7, (v8_IsLinear)); }
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// Function implementations for IfcStructuralSurfaceAction
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std::optional< ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value > Ifc4x3_rc1::IfcStructuralSurfaceAction::ProjectedOrTrue() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcStructuralSurfaceAction::setProjectedOrTrue(const std::optional< ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value Ifc4x3_rc1::IfcStructuralSurfaceAction::PredefinedType() const { return ::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcStructuralSurfaceAction::setPredefinedType(const ::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralSurfaceAction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1114]); }
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void Ifc4x3_rc1::IfcStructuralSurfaceAction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal, std::optional< bool > v10_DestabilizingLoad, std::optional< ::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Value > v11_ProjectedOrTrue, ::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal))); if (v10_DestabilizingLoad) {set_attribute_value(9, (*v10_DestabilizingLoad)); } if (v11_ProjectedOrTrue) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcProjectedOrTrueLengthEnum::Class(),(size_t)*v11_ProjectedOrTrue))); }set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcStructuralSurfaceConnection
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralSurfaceConnection::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1116]); }
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void Ifc4x3_rc1::IfcStructuralSurfaceConnection::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcBoundaryCondition v8_AppliedCondition) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedCondition)); }
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// Function implementations for IfcStructuralSurfaceMember
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::Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Value Ifc4x3_rc1::IfcStructuralSurfaceMember::PredefinedType() const { return ::Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcStructuralSurfaceMember::setPredefinedType(const ::Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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std::optional< double > Ifc4x3_rc1::IfcStructuralSurfaceMember::Thickness() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcStructuralSurfaceMember::setThickness(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralSurfaceMember::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1117]); }
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void Ifc4x3_rc1::IfcStructuralSurfaceMember::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Value v8_PredefinedType, std::optional< double > v9_Thickness) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Class(),(size_t)v8_PredefinedType))); if (v9_Thickness) {set_attribute_value(8, (*v9_Thickness)); } }
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// Function implementations for IfcStructuralSurfaceMemberVarying
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralSurfaceMemberVarying::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1119]); }
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void Ifc4x3_rc1::IfcStructuralSurfaceMemberVarying::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Value v8_PredefinedType, std::optional< double > v9_Thickness) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralSurfaceMemberTypeEnum::Class(),(size_t)v8_PredefinedType))); if (v9_Thickness) {set_attribute_value(8, (*v9_Thickness)); } }
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// Function implementations for IfcStructuralSurfaceReaction
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::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value Ifc4x3_rc1::IfcStructuralSurfaceReaction::PredefinedType() const { return ::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcStructuralSurfaceReaction::setPredefinedType(const ::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcStructuralSurfaceReaction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1120]); }
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void Ifc4x3_rc1::IfcStructuralSurfaceReaction::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, ::Ifc4x3_rc1::IfcStructuralLoad v8_AppliedLoad, ::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Value v9_GlobalOrLocal, ::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation));set_attribute_value(7, (v8_AppliedLoad));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcGlobalOrLocalEnum::Class(),(size_t)v9_GlobalOrLocal)));set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcStructuralSurfaceActivityTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcStyleModel
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const IfcParse::entity& Ifc4x3_rc1::IfcStyleModel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1124]); }
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void Ifc4x3_rc1::IfcStyleModel::initialize(::Ifc4x3_rc1::IfcRepresentationContext v1_ContextOfItems, std::optional< std::string > v2_RepresentationIdentifier, std::optional< std::string > v3_RepresentationType, std::vector< ::Ifc4x3_rc1::IfcRepresentationItem > v4_Items) { set_attribute_value(0, (v1_ContextOfItems)); if (v2_RepresentationIdentifier) {set_attribute_value(1, (*v2_RepresentationIdentifier)); } if (v3_RepresentationType) {set_attribute_value(2, (*v3_RepresentationType)); }set_attribute_value(3, cast_vector<express::Base>(v4_Items)); }
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// Function implementations for IfcStyledItem
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::Ifc4x3_rc1::IfcRepresentationItem Ifc4x3_rc1::IfcStyledItem::Item() const { if(get_attribute_value(0).isNull()) { return ::Ifc4x3_rc1::IfcRepresentationItem{}; } return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcRepresentationItem>(); }
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void Ifc4x3_rc1::IfcStyledItem::setItem(const ::Ifc4x3_rc1::IfcRepresentationItem& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcStyleAssignmentSelect > Ifc4x3_rc1::IfcStyledItem::Styles() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcStyleAssignmentSelect>(es); }
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void Ifc4x3_rc1::IfcStyledItem::setStyles(const std::vector< ::Ifc4x3_rc1::IfcStyleAssignmentSelect >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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std::optional< std::string > Ifc4x3_rc1::IfcStyledItem::Name() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcStyledItem::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcStyledItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1122]); }
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void Ifc4x3_rc1::IfcStyledItem::initialize(::Ifc4x3_rc1::IfcRepresentationItem v1_Item, std::vector< ::Ifc4x3_rc1::IfcStyleAssignmentSelect > v2_Styles, std::optional< std::string > v3_Name) { set_attribute_value(0, (v1_Item));set_attribute_value(1, cast_vector<express::Base>(v2_Styles)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } }
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// Function implementations for IfcStyledRepresentation
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const IfcParse::entity& Ifc4x3_rc1::IfcStyledRepresentation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1123]); }
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void Ifc4x3_rc1::IfcStyledRepresentation::initialize(::Ifc4x3_rc1::IfcRepresentationContext v1_ContextOfItems, std::optional< std::string > v2_RepresentationIdentifier, std::optional< std::string > v3_RepresentationType, std::vector< ::Ifc4x3_rc1::IfcRepresentationItem > v4_Items) { set_attribute_value(0, (v1_ContextOfItems)); if (v2_RepresentationIdentifier) {set_attribute_value(1, (*v2_RepresentationIdentifier)); } if (v3_RepresentationType) {set_attribute_value(2, (*v3_RepresentationType)); }set_attribute_value(3, cast_vector<express::Base>(v4_Items)); }
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// Function implementations for IfcSubContractResource
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std::optional< ::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value > Ifc4x3_rc1::IfcSubContractResource::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcSubContractResource::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSubContractResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1125]); }
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void Ifc4x3_rc1::IfcSubContractResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, ::Ifc4x3_rc1::IfcResourceTime v8_Usage, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v9_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v10_BaseQuantity, std::optional< ::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value > v11_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); }set_attribute_value(7, (v8_Usage)); if (v9_BaseCosts) {set_attribute_value(8, cast_vector<express::Base>(*v9_BaseCosts)); }set_attribute_value(9, (v10_BaseQuantity)); if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Class(),(size_t)*v11_PredefinedType))); } }
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// Function implementations for IfcSubContractResourceType
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::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value Ifc4x3_rc1::IfcSubContractResourceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcSubContractResourceType::setPredefinedType(const ::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value& v) { set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSubContractResourceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1126]); }
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void Ifc4x3_rc1::IfcSubContractResourceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ResourceType, std::optional< std::vector< ::Ifc4x3_rc1::IfcAppliedValue > > v10_BaseCosts, ::Ifc4x3_rc1::IfcPhysicalQuantity v11_BaseQuantity, ::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Value v12_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ResourceType) {set_attribute_value(8, (*v9_ResourceType)); } if (v10_BaseCosts) {set_attribute_value(9, cast_vector<express::Base>(*v10_BaseCosts)); }set_attribute_value(10, (v11_BaseQuantity));set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcSubContractResourceTypeEnum::Class(),(size_t)v12_PredefinedType))); }
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// Function implementations for IfcSubedge
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::Ifc4x3_rc1::IfcEdge Ifc4x3_rc1::IfcSubedge::ParentEdge() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcEdge>(); }
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void Ifc4x3_rc1::IfcSubedge::setParentEdge(const ::Ifc4x3_rc1::IfcEdge& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSubedge::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1128]); }
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void Ifc4x3_rc1::IfcSubedge::initialize(::Ifc4x3_rc1::IfcVertex v1_EdgeStart, ::Ifc4x3_rc1::IfcVertex v2_EdgeEnd, ::Ifc4x3_rc1::IfcEdge v3_ParentEdge) { set_attribute_value(0, (v1_EdgeStart));set_attribute_value(1, (v2_EdgeEnd));set_attribute_value(2, (v3_ParentEdge)); }
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// Function implementations for IfcSurface
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const IfcParse::entity& Ifc4x3_rc1::IfcSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1129]); }
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void Ifc4x3_rc1::IfcSurface::initialize() { }
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// Function implementations for IfcSurfaceCurve
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcSurfaceCurve::Curve3D() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcSurfaceCurve::setCurve3D(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcPcurve > Ifc4x3_rc1::IfcSurfaceCurve::AssociatedGeometry() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcPcurve>(es); }
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void Ifc4x3_rc1::IfcSurfaceCurve::setAssociatedGeometry(const std::vector< ::Ifc4x3_rc1::IfcPcurve >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Value Ifc4x3_rc1::IfcSurfaceCurve::MasterRepresentation() const { return ::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::FromString(get_attribute_value(2)); }
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void Ifc4x3_rc1::IfcSurfaceCurve::setMasterRepresentation(const ::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Value& v) { set_attribute_value(2, EnumerationReference(&::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Class(), (size_t) v));if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1130]); }
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void Ifc4x3_rc1::IfcSurfaceCurve::initialize(::Ifc4x3_rc1::IfcCurve v1_Curve3D, std::vector< ::Ifc4x3_rc1::IfcPcurve > v2_AssociatedGeometry, ::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Value v3_MasterRepresentation) { set_attribute_value(0, (v1_Curve3D));set_attribute_value(1, cast_vector<express::Base>(v2_AssociatedGeometry));set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcPreferredSurfaceCurveRepresentation::Class(),(size_t)v3_MasterRepresentation))); }
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// Function implementations for IfcSurfaceCurveSweptAreaSolid
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::Ifc4x3_rc1::IfcSurface Ifc4x3_rc1::IfcSurfaceCurveSweptAreaSolid::ReferenceSurface() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcSurface>(); }
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void Ifc4x3_rc1::IfcSurfaceCurveSweptAreaSolid::setReferenceSurface(const ::Ifc4x3_rc1::IfcSurface& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceCurveSweptAreaSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1131]); }
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void Ifc4x3_rc1::IfcSurfaceCurveSweptAreaSolid::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcCurve v3_Directrix, std::optional< double > v4_StartParam, std::optional< double > v5_EndParam, ::Ifc4x3_rc1::IfcSurface v6_ReferenceSurface) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_Directrix)); if (v4_StartParam) {set_attribute_value(3, (*v4_StartParam)); } if (v5_EndParam) {set_attribute_value(4, (*v5_EndParam)); }set_attribute_value(5, (v6_ReferenceSurface)); }
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// Function implementations for IfcSurfaceFeature
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std::optional< ::Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Value > Ifc4x3_rc1::IfcSurfaceFeature::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSurfaceFeature::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceFeature::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1132]); }
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void Ifc4x3_rc1::IfcSurfaceFeature::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSurfaceFeatureTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSurfaceOfLinearExtrusion
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcSurfaceOfLinearExtrusion::ExtrudedDirection() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcSurfaceOfLinearExtrusion::setExtrudedDirection(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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double Ifc4x3_rc1::IfcSurfaceOfLinearExtrusion::Depth() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcSurfaceOfLinearExtrusion::setDepth(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceOfLinearExtrusion::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1134]); }
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void Ifc4x3_rc1::IfcSurfaceOfLinearExtrusion::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptCurve, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcDirection v3_ExtrudedDirection, double v4_Depth) { set_attribute_value(0, (v1_SweptCurve));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_ExtrudedDirection));set_attribute_value(3, (v4_Depth)); }
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// Function implementations for IfcSurfaceOfRevolution
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::Ifc4x3_rc1::IfcAxis1Placement Ifc4x3_rc1::IfcSurfaceOfRevolution::AxisPosition() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcAxis1Placement>(); }
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void Ifc4x3_rc1::IfcSurfaceOfRevolution::setAxisPosition(const ::Ifc4x3_rc1::IfcAxis1Placement& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceOfRevolution::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1135]); }
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void Ifc4x3_rc1::IfcSurfaceOfRevolution::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptCurve, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position, ::Ifc4x3_rc1::IfcAxis1Placement v3_AxisPosition) { set_attribute_value(0, (v1_SweptCurve));set_attribute_value(1, (v2_Position));set_attribute_value(2, (v3_AxisPosition)); }
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// Function implementations for IfcSurfaceReinforcementArea
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std::optional< std::vector< double > /*[2:3]*/ > Ifc4x3_rc1::IfcSurfaceReinforcementArea::SurfaceReinforcement1() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::vector< double > /*[2:3]*/ v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcSurfaceReinforcementArea::setSurfaceReinforcement1(const std::optional< std::vector< double > /*[2:3]*/ >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::vector< double > /*[2:3]*/ > Ifc4x3_rc1::IfcSurfaceReinforcementArea::SurfaceReinforcement2() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector< double > /*[2:3]*/ v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcSurfaceReinforcementArea::setSurfaceReinforcement2(const std::optional< std::vector< double > /*[2:3]*/ >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcSurfaceReinforcementArea::ShearReinforcement() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcSurfaceReinforcementArea::setShearReinforcement(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceReinforcementArea::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1137]); }
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void Ifc4x3_rc1::IfcSurfaceReinforcementArea::initialize(std::optional< std::string > v1_Name, std::optional< std::vector< double > /*[2:3]*/ > v2_SurfaceReinforcement1, std::optional< std::vector< double > /*[2:3]*/ > v3_SurfaceReinforcement2, std::optional< double > v4_ShearReinforcement) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_SurfaceReinforcement1) {set_attribute_value(1, (*v2_SurfaceReinforcement1)); } if (v3_SurfaceReinforcement2) {set_attribute_value(2, (*v3_SurfaceReinforcement2)); } if (v4_ShearReinforcement) {set_attribute_value(3, (*v4_ShearReinforcement)); } }
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// Function implementations for IfcSurfaceStyle
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::Ifc4x3_rc1::IfcSurfaceSide::Value Ifc4x3_rc1::IfcSurfaceStyle::Side() const { return ::Ifc4x3_rc1::IfcSurfaceSide::FromString(get_attribute_value(1)); }
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void Ifc4x3_rc1::IfcSurfaceStyle::setSide(const ::Ifc4x3_rc1::IfcSurfaceSide::Value& v) { set_attribute_value(1, EnumerationReference(&::Ifc4x3_rc1::IfcSurfaceSide::Class(), (size_t) v));if constexpr (false)unset_attribute_value(1); }
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std::vector< ::Ifc4x3_rc1::IfcSurfaceStyleElementSelect > Ifc4x3_rc1::IfcSurfaceStyle::Styles() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcSurfaceStyleElementSelect>(es); }
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void Ifc4x3_rc1::IfcSurfaceStyle::setStyles(const std::vector< ::Ifc4x3_rc1::IfcSurfaceStyleElementSelect >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1139]); }
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void Ifc4x3_rc1::IfcSurfaceStyle::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcSurfaceSide::Value v2_Side, std::vector< ::Ifc4x3_rc1::IfcSurfaceStyleElementSelect > v3_Styles) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcSurfaceSide::Class(),(size_t)v2_Side)));set_attribute_value(2, cast_vector<express::Base>(v3_Styles)); }
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// Function implementations for IfcSurfaceStyleLighting
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::Ifc4x3_rc1::IfcColourRgb Ifc4x3_rc1::IfcSurfaceStyleLighting::DiffuseTransmissionColour() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcColourRgb>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleLighting::setDiffuseTransmissionColour(const ::Ifc4x3_rc1::IfcColourRgb& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcColourRgb Ifc4x3_rc1::IfcSurfaceStyleLighting::DiffuseReflectionColour() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcColourRgb>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleLighting::setDiffuseReflectionColour(const ::Ifc4x3_rc1::IfcColourRgb& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcColourRgb Ifc4x3_rc1::IfcSurfaceStyleLighting::TransmissionColour() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcColourRgb>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleLighting::setTransmissionColour(const ::Ifc4x3_rc1::IfcColourRgb& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcColourRgb Ifc4x3_rc1::IfcSurfaceStyleLighting::ReflectanceColour() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcColourRgb>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleLighting::setReflectanceColour(const ::Ifc4x3_rc1::IfcColourRgb& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceStyleLighting::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1141]); }
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void Ifc4x3_rc1::IfcSurfaceStyleLighting::initialize(::Ifc4x3_rc1::IfcColourRgb v1_DiffuseTransmissionColour, ::Ifc4x3_rc1::IfcColourRgb v2_DiffuseReflectionColour, ::Ifc4x3_rc1::IfcColourRgb v3_TransmissionColour, ::Ifc4x3_rc1::IfcColourRgb v4_ReflectanceColour) { set_attribute_value(0, (v1_DiffuseTransmissionColour));set_attribute_value(1, (v2_DiffuseReflectionColour));set_attribute_value(2, (v3_TransmissionColour));set_attribute_value(3, (v4_ReflectanceColour)); }
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// Function implementations for IfcSurfaceStyleRefraction
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std::optional< double > Ifc4x3_rc1::IfcSurfaceStyleRefraction::RefractionIndex() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } double v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcSurfaceStyleRefraction::setRefractionIndex(const std::optional< double >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< double > Ifc4x3_rc1::IfcSurfaceStyleRefraction::DispersionFactor() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcSurfaceStyleRefraction::setDispersionFactor(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceStyleRefraction::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1142]); }
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void Ifc4x3_rc1::IfcSurfaceStyleRefraction::initialize(std::optional< double > v1_RefractionIndex, std::optional< double > v2_DispersionFactor) { if (v1_RefractionIndex) {set_attribute_value(0, (*v1_RefractionIndex)); } if (v2_DispersionFactor) {set_attribute_value(1, (*v2_DispersionFactor)); } }
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// Function implementations for IfcSurfaceStyleRendering
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::Ifc4x3_rc1::IfcColourOrFactor Ifc4x3_rc1::IfcSurfaceStyleRendering::DiffuseColour() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcColourOrFactor{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcColourOrFactor>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleRendering::setDiffuseColour(const ::Ifc4x3_rc1::IfcColourOrFactor& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcColourOrFactor Ifc4x3_rc1::IfcSurfaceStyleRendering::TransmissionColour() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcColourOrFactor{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcColourOrFactor>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleRendering::setTransmissionColour(const ::Ifc4x3_rc1::IfcColourOrFactor& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcColourOrFactor Ifc4x3_rc1::IfcSurfaceStyleRendering::DiffuseTransmissionColour() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcColourOrFactor{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcColourOrFactor>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleRendering::setDiffuseTransmissionColour(const ::Ifc4x3_rc1::IfcColourOrFactor& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcColourOrFactor Ifc4x3_rc1::IfcSurfaceStyleRendering::ReflectionColour() const { if(get_attribute_value(5).isNull()) { return ::Ifc4x3_rc1::IfcColourOrFactor{}; } return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcColourOrFactor>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleRendering::setReflectionColour(const ::Ifc4x3_rc1::IfcColourOrFactor& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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::Ifc4x3_rc1::IfcColourOrFactor Ifc4x3_rc1::IfcSurfaceStyleRendering::SpecularColour() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcColourOrFactor{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcColourOrFactor>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleRendering::setSpecularColour(const ::Ifc4x3_rc1::IfcColourOrFactor& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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::Ifc4x3_rc1::IfcSpecularHighlightSelect Ifc4x3_rc1::IfcSurfaceStyleRendering::SpecularHighlight() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcSpecularHighlightSelect{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcSpecularHighlightSelect>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleRendering::setSpecularHighlight(const ::Ifc4x3_rc1::IfcSpecularHighlightSelect& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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::Ifc4x3_rc1::IfcReflectanceMethodEnum::Value Ifc4x3_rc1::IfcSurfaceStyleRendering::ReflectanceMethod() const { return ::Ifc4x3_rc1::IfcReflectanceMethodEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSurfaceStyleRendering::setReflectanceMethod(const ::Ifc4x3_rc1::IfcReflectanceMethodEnum::Value& v) { set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcReflectanceMethodEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceStyleRendering::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1143]); }
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void Ifc4x3_rc1::IfcSurfaceStyleRendering::initialize(::Ifc4x3_rc1::IfcColourRgb v1_SurfaceColour, std::optional< double > v2_Transparency, ::Ifc4x3_rc1::IfcColourOrFactor v3_DiffuseColour, ::Ifc4x3_rc1::IfcColourOrFactor v4_TransmissionColour, ::Ifc4x3_rc1::IfcColourOrFactor v5_DiffuseTransmissionColour, ::Ifc4x3_rc1::IfcColourOrFactor v6_ReflectionColour, ::Ifc4x3_rc1::IfcColourOrFactor v7_SpecularColour, ::Ifc4x3_rc1::IfcSpecularHighlightSelect v8_SpecularHighlight, ::Ifc4x3_rc1::IfcReflectanceMethodEnum::Value v9_ReflectanceMethod) { set_attribute_value(0, (v1_SurfaceColour)); if (v2_Transparency) {set_attribute_value(1, (*v2_Transparency)); }set_attribute_value(2, (v3_DiffuseColour));set_attribute_value(3, (v4_TransmissionColour));set_attribute_value(4, (v5_DiffuseTransmissionColour));set_attribute_value(5, (v6_ReflectionColour));set_attribute_value(6, (v7_SpecularColour));set_attribute_value(7, (v8_SpecularHighlight));set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcReflectanceMethodEnum::Class(),(size_t)v9_ReflectanceMethod))); }
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// Function implementations for IfcSurfaceStyleShading
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::Ifc4x3_rc1::IfcColourRgb Ifc4x3_rc1::IfcSurfaceStyleShading::SurfaceColour() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcColourRgb>(); }
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void Ifc4x3_rc1::IfcSurfaceStyleShading::setSurfaceColour(const ::Ifc4x3_rc1::IfcColourRgb& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< double > Ifc4x3_rc1::IfcSurfaceStyleShading::Transparency() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcSurfaceStyleShading::setTransparency(const std::optional< double >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceStyleShading::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1144]); }
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void Ifc4x3_rc1::IfcSurfaceStyleShading::initialize(::Ifc4x3_rc1::IfcColourRgb v1_SurfaceColour, std::optional< double > v2_Transparency) { set_attribute_value(0, (v1_SurfaceColour)); if (v2_Transparency) {set_attribute_value(1, (*v2_Transparency)); } }
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// Function implementations for IfcSurfaceStyleWithTextures
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std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture > Ifc4x3_rc1::IfcSurfaceStyleWithTextures::Textures() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcSurfaceTexture>(es); }
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void Ifc4x3_rc1::IfcSurfaceStyleWithTextures::setTextures(const std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceStyleWithTextures::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1145]); }
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void Ifc4x3_rc1::IfcSurfaceStyleWithTextures::initialize(std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture > v1_Textures) { set_attribute_value(0, cast_vector<express::Base>(v1_Textures)); }
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// Function implementations for IfcSurfaceTexture
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bool Ifc4x3_rc1::IfcSurfaceTexture::RepeatS() const { bool v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcSurfaceTexture::setRepeatS(const bool& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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bool Ifc4x3_rc1::IfcSurfaceTexture::RepeatT() const { bool v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcSurfaceTexture::setRepeatT(const bool& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< std::string > Ifc4x3_rc1::IfcSurfaceTexture::Mode() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcSurfaceTexture::setMode(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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::Ifc4x3_rc1::IfcCartesianTransformationOperator2D Ifc4x3_rc1::IfcSurfaceTexture::TextureTransform() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcCartesianTransformationOperator2D{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcCartesianTransformationOperator2D>(); }
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void Ifc4x3_rc1::IfcSurfaceTexture::setTextureTransform(const ::Ifc4x3_rc1::IfcCartesianTransformationOperator2D& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcSurfaceTexture::Parameter() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcSurfaceTexture::setParameter(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::vector<::Ifc4x3_rc1::IfcTextureCoordinate> Ifc4x3_rc1::IfcSurfaceTexture::IsMappedBy() const { return cast_vector<IfcTextureCoordinate>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1197], 0)); }
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std::vector<::Ifc4x3_rc1::IfcSurfaceStyleWithTextures> Ifc4x3_rc1::IfcSurfaceTexture::UsedInStyles() const { return cast_vector<IfcSurfaceStyleWithTextures>(file()->getInverse(data()->id(), IFC4X3_RC1_types[1145], 0)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSurfaceTexture::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1146]); }
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void Ifc4x3_rc1::IfcSurfaceTexture::initialize(bool v1_RepeatS, bool v2_RepeatT, std::optional< std::string > v3_Mode, ::Ifc4x3_rc1::IfcCartesianTransformationOperator2D v4_TextureTransform, std::optional< std::vector< std::string > /*[1:?]*/ > v5_Parameter) { set_attribute_value(0, (v1_RepeatS));set_attribute_value(1, (v2_RepeatT)); if (v3_Mode) {set_attribute_value(2, (*v3_Mode)); }set_attribute_value(3, (v4_TextureTransform)); if (v5_Parameter) {set_attribute_value(4, (*v5_Parameter)); } }
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// Function implementations for IfcSweptAreaSolid
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcSweptAreaSolid::SweptArea() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcSweptAreaSolid::setSweptArea(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcSweptAreaSolid::Position() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcAxis2Placement3D{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcSweptAreaSolid::setPosition(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSweptAreaSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1147]); }
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void Ifc4x3_rc1::IfcSweptAreaSolid::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptArea, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position) { set_attribute_value(0, (v1_SweptArea));set_attribute_value(1, (v2_Position)); }
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// Function implementations for IfcSweptDiskSolid
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcSweptDiskSolid::Directrix() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcSweptDiskSolid::setDirectrix(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcSweptDiskSolid::Radius() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcSweptDiskSolid::setRadius(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< double > Ifc4x3_rc1::IfcSweptDiskSolid::InnerRadius() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcSweptDiskSolid::setInnerRadius(const std::optional< double >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< double > Ifc4x3_rc1::IfcSweptDiskSolid::StartParam() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcSweptDiskSolid::setStartParam(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcSweptDiskSolid::EndParam() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcSweptDiskSolid::setEndParam(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSweptDiskSolid::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1148]); }
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void Ifc4x3_rc1::IfcSweptDiskSolid::initialize(::Ifc4x3_rc1::IfcCurve v1_Directrix, double v2_Radius, std::optional< double > v3_InnerRadius, std::optional< double > v4_StartParam, std::optional< double > v5_EndParam) { set_attribute_value(0, (v1_Directrix));set_attribute_value(1, (v2_Radius)); if (v3_InnerRadius) {set_attribute_value(2, (*v3_InnerRadius)); } if (v4_StartParam) {set_attribute_value(3, (*v4_StartParam)); } if (v5_EndParam) {set_attribute_value(4, (*v5_EndParam)); } }
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// Function implementations for IfcSweptDiskSolidPolygonal
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std::optional< double > Ifc4x3_rc1::IfcSweptDiskSolidPolygonal::FilletRadius() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcSweptDiskSolidPolygonal::setFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSweptDiskSolidPolygonal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1149]); }
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void Ifc4x3_rc1::IfcSweptDiskSolidPolygonal::initialize(::Ifc4x3_rc1::IfcCurve v1_Directrix, double v2_Radius, std::optional< double > v3_InnerRadius, std::optional< double > v4_StartParam, std::optional< double > v5_EndParam, std::optional< double > v6_FilletRadius) { set_attribute_value(0, (v1_Directrix));set_attribute_value(1, (v2_Radius)); if (v3_InnerRadius) {set_attribute_value(2, (*v3_InnerRadius)); } if (v4_StartParam) {set_attribute_value(3, (*v4_StartParam)); } if (v5_EndParam) {set_attribute_value(4, (*v5_EndParam)); } if (v6_FilletRadius) {set_attribute_value(5, (*v6_FilletRadius)); } }
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// Function implementations for IfcSweptSurface
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::Ifc4x3_rc1::IfcProfileDef Ifc4x3_rc1::IfcSweptSurface::SweptCurve() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcProfileDef>(); }
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void Ifc4x3_rc1::IfcSweptSurface::setSweptCurve(const ::Ifc4x3_rc1::IfcProfileDef& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcAxis2Placement3D Ifc4x3_rc1::IfcSweptSurface::Position() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcAxis2Placement3D{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcAxis2Placement3D>(); }
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void Ifc4x3_rc1::IfcSweptSurface::setPosition(const ::Ifc4x3_rc1::IfcAxis2Placement3D& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSweptSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1150]); }
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void Ifc4x3_rc1::IfcSweptSurface::initialize(::Ifc4x3_rc1::IfcProfileDef v1_SweptCurve, ::Ifc4x3_rc1::IfcAxis2Placement3D v2_Position) { set_attribute_value(0, (v1_SweptCurve));set_attribute_value(1, (v2_Position)); }
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// Function implementations for IfcSwitchingDevice
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std::optional< ::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value > Ifc4x3_rc1::IfcSwitchingDevice::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSwitchingDevice::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSwitchingDevice::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1151]); }
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void Ifc4x3_rc1::IfcSwitchingDevice::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSwitchingDeviceType
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::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value Ifc4x3_rc1::IfcSwitchingDeviceType::PredefinedType() const { return ::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSwitchingDeviceType::setPredefinedType(const ::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSwitchingDeviceType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1152]); }
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void Ifc4x3_rc1::IfcSwitchingDeviceType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSwitchingDeviceTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcSystem
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std::vector<::Ifc4x3_rc1::IfcRelServicesBuildings> Ifc4x3_rc1::IfcSystem::ServicesBuildings() const { return cast_vector<IfcRelServicesBuildings>(file()->getInverse(data()->id(), IFC4X3_RC1_types[955], 4)); }
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std::vector<::Ifc4x3_rc1::IfcRelReferencedInSpatialStructure> Ifc4x3_rc1::IfcSystem::ServicesFacilities() const { return cast_vector<IfcRelReferencedInSpatialStructure>(file()->getInverse(data()->id(), IFC4X3_RC1_types[953], 4)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcSystem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1154]); }
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void Ifc4x3_rc1::IfcSystem::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } }
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// Function implementations for IfcSystemFurnitureElement
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std::optional< ::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value > Ifc4x3_rc1::IfcSystemFurnitureElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcSystemFurnitureElement::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSystemFurnitureElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1155]); }
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void Ifc4x3_rc1::IfcSystemFurnitureElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcSystemFurnitureElementType
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std::optional< ::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value > Ifc4x3_rc1::IfcSystemFurnitureElementType::PredefinedType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcSystemFurnitureElementType::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value >& v) { if (v) {set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcSystemFurnitureElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1156]); }
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void Ifc4x3_rc1::IfcSystemFurnitureElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, std::optional< ::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Value > v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } if (v10_PredefinedType) {set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcSystemFurnitureElementTypeEnum::Class(),(size_t)*v10_PredefinedType))); } }
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// Function implementations for IfcTShapeProfileDef
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double Ifc4x3_rc1::IfcTShapeProfileDef::Depth() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcTShapeProfileDef::setDepth(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcTShapeProfileDef::FlangeWidth() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTShapeProfileDef::setFlangeWidth(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcTShapeProfileDef::WebThickness() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcTShapeProfileDef::setWebThickness(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcTShapeProfileDef::FlangeThickness() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcTShapeProfileDef::setFlangeThickness(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< double > Ifc4x3_rc1::IfcTShapeProfileDef::FilletRadius() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcTShapeProfileDef::setFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< double > Ifc4x3_rc1::IfcTShapeProfileDef::FlangeEdgeRadius() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcTShapeProfileDef::setFlangeEdgeRadius(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< double > Ifc4x3_rc1::IfcTShapeProfileDef::WebEdgeRadius() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcTShapeProfileDef::setWebEdgeRadius(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcTShapeProfileDef::WebSlope() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcTShapeProfileDef::setWebSlope(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcTShapeProfileDef::FlangeSlope() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcTShapeProfileDef::setFlangeSlope(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTShapeProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1241]); }
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void Ifc4x3_rc1::IfcTShapeProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_Depth, double v5_FlangeWidth, double v6_WebThickness, double v7_FlangeThickness, std::optional< double > v8_FilletRadius, std::optional< double > v9_FlangeEdgeRadius, std::optional< double > v10_WebEdgeRadius, std::optional< double > v11_WebSlope, std::optional< double > v12_FlangeSlope) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_Depth));set_attribute_value(4, (v5_FlangeWidth));set_attribute_value(5, (v6_WebThickness));set_attribute_value(6, (v7_FlangeThickness)); if (v8_FilletRadius) {set_attribute_value(7, (*v8_FilletRadius)); } if (v9_FlangeEdgeRadius) {set_attribute_value(8, (*v9_FlangeEdgeRadius)); } if (v10_WebEdgeRadius) {set_attribute_value(9, (*v10_WebEdgeRadius)); } if (v11_WebSlope) {set_attribute_value(10, (*v11_WebSlope)); } if (v12_FlangeSlope) {set_attribute_value(11, (*v12_FlangeSlope)); } }
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// Function implementations for IfcTable
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std::optional< std::string > Ifc4x3_rc1::IfcTable::Name() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcTable::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcTableRow > > Ifc4x3_rc1::IfcTable::Rows() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcTableRow>(es); }
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void Ifc4x3_rc1::IfcTable::setRows(const std::optional< std::vector< ::Ifc4x3_rc1::IfcTableRow > >& v) { if (v) {set_attribute_value(1, cast_vector<express::Base>(*v));} else {unset_attribute_value(1);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcTableColumn > > Ifc4x3_rc1::IfcTable::Columns() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcTableColumn>(es); }
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void Ifc4x3_rc1::IfcTable::setColumns(const std::optional< std::vector< ::Ifc4x3_rc1::IfcTableColumn > >& v) { if (v) {set_attribute_value(2, cast_vector<express::Base>(*v));} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTable::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1158]); }
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void Ifc4x3_rc1::IfcTable::initialize(std::optional< std::string > v1_Name, std::optional< std::vector< ::Ifc4x3_rc1::IfcTableRow > > v2_Rows, std::optional< std::vector< ::Ifc4x3_rc1::IfcTableColumn > > v3_Columns) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_Rows) {set_attribute_value(1, cast_vector<express::Base>(*v2_Rows)); } if (v3_Columns) {set_attribute_value(2, cast_vector<express::Base>(*v3_Columns)); } }
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// Function implementations for IfcTableColumn
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std::optional< std::string > Ifc4x3_rc1::IfcTableColumn::Identifier() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcTableColumn::setIdentifier(const std::optional< std::string >& v) { if (v) {set_attribute_value(0, *v);} else {unset_attribute_value(0);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTableColumn::Name() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcTableColumn::setName(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTableColumn::Description() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcTableColumn::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcTableColumn::Unit() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcTableColumn::setUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcReference Ifc4x3_rc1::IfcTableColumn::ReferencePath() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcReference{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcReference>(); }
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void Ifc4x3_rc1::IfcTableColumn::setReferencePath(const ::Ifc4x3_rc1::IfcReference& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTableColumn::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1159]); }
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void Ifc4x3_rc1::IfcTableColumn::initialize(std::optional< std::string > v1_Identifier, std::optional< std::string > v2_Name, std::optional< std::string > v3_Description, ::Ifc4x3_rc1::IfcUnit v4_Unit, ::Ifc4x3_rc1::IfcReference v5_ReferencePath) { if (v1_Identifier) {set_attribute_value(0, (*v1_Identifier)); } if (v2_Name) {set_attribute_value(1, (*v2_Name)); } if (v3_Description) {set_attribute_value(2, (*v3_Description)); }set_attribute_value(3, (v4_Unit));set_attribute_value(4, (v5_ReferencePath)); }
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// Function implementations for IfcTableRow
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std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > Ifc4x3_rc1::IfcTableRow::RowCells() const { if(get_attribute_value(0).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcValue>(es); }
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void Ifc4x3_rc1::IfcTableRow::setRowCells(const std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > >& v) { if (v) {set_attribute_value(0, cast_vector<express::Base>(*v));} else {unset_attribute_value(0);} }
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std::optional< bool > Ifc4x3_rc1::IfcTableRow::IsHeading() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } bool v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcTableRow::setIsHeading(const std::optional< bool >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTableRow::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1160]); }
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void Ifc4x3_rc1::IfcTableRow::initialize(std::optional< std::vector< ::Ifc4x3_rc1::IfcValue > > v1_RowCells, std::optional< bool > v2_IsHeading) { if (v1_RowCells) {set_attribute_value(0, cast_vector<express::Base>(*v1_RowCells)); } if (v2_IsHeading) {set_attribute_value(1, (*v2_IsHeading)); } }
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// Function implementations for IfcTank
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std::optional< ::Ifc4x3_rc1::IfcTankTypeEnum::Value > Ifc4x3_rc1::IfcTank::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcTankTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcTank::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcTankTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcTankTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTank::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1161]); }
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void Ifc4x3_rc1::IfcTank::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcTankTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcTankTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcTankType
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::Ifc4x3_rc1::IfcTankTypeEnum::Value Ifc4x3_rc1::IfcTankType::PredefinedType() const { return ::Ifc4x3_rc1::IfcTankTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTankType::setPredefinedType(const ::Ifc4x3_rc1::IfcTankTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTankTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTankType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1162]); }
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void Ifc4x3_rc1::IfcTankType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcTankTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTankTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcTask
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std::optional< std::string > Ifc4x3_rc1::IfcTask::Status() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcTask::setStatus(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTask::WorkMethod() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcTask::setWorkMethod(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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bool Ifc4x3_rc1::IfcTask::IsMilestone() const { bool v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcTask::setIsMilestone(const bool& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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std::optional< int > Ifc4x3_rc1::IfcTask::Priority() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } int v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcTask::setPriority(const std::optional< int >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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::Ifc4x3_rc1::IfcTaskTime Ifc4x3_rc1::IfcTask::TaskTime() const { if(get_attribute_value(11).isNull()) { return ::Ifc4x3_rc1::IfcTaskTime{}; } return ((express::Base)(get_attribute_value(11))).as<::Ifc4x3_rc1::IfcTaskTime>(); }
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void Ifc4x3_rc1::IfcTask::setTaskTime(const ::Ifc4x3_rc1::IfcTaskTime& v) { set_attribute_value(11, v);if constexpr (false)unset_attribute_value(11); }
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std::optional< ::Ifc4x3_rc1::IfcTaskTypeEnum::Value > Ifc4x3_rc1::IfcTask::PredefinedType() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcTaskTypeEnum::FromString(get_attribute_value(12)); }
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void Ifc4x3_rc1::IfcTask::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcTaskTypeEnum::Value >& v) { if (v) {set_attribute_value(12, EnumerationReference(&::Ifc4x3_rc1::IfcTaskTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(12);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTask::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1164]); }
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void Ifc4x3_rc1::IfcTask::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::string > v7_LongDescription, std::optional< std::string > v8_Status, std::optional< std::string > v9_WorkMethod, bool v10_IsMilestone, std::optional< int > v11_Priority, ::Ifc4x3_rc1::IfcTaskTime v12_TaskTime, std::optional< ::Ifc4x3_rc1::IfcTaskTypeEnum::Value > v13_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_LongDescription) {set_attribute_value(6, (*v7_LongDescription)); } if (v8_Status) {set_attribute_value(7, (*v8_Status)); } if (v9_WorkMethod) {set_attribute_value(8, (*v9_WorkMethod)); }set_attribute_value(9, (v10_IsMilestone)); if (v11_Priority) {set_attribute_value(10, (*v11_Priority)); }set_attribute_value(11, (v12_TaskTime)); if (v13_PredefinedType) {set_attribute_value(12, (EnumerationReference(&::Ifc4x3_rc1::IfcTaskTypeEnum::Class(),(size_t)*v13_PredefinedType))); } }
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// Function implementations for IfcTaskTime
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std::optional< ::Ifc4x3_rc1::IfcTaskDurationEnum::Value > Ifc4x3_rc1::IfcTaskTime::DurationType() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcTaskDurationEnum::FromString(get_attribute_value(3)); }
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void Ifc4x3_rc1::IfcTaskTime::setDurationType(const std::optional< ::Ifc4x3_rc1::IfcTaskDurationEnum::Value >& v) { if (v) {set_attribute_value(3, EnumerationReference(&::Ifc4x3_rc1::IfcTaskDurationEnum::Class(), (size_t) *v));} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::ScheduleDuration() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setScheduleDuration(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::ScheduleStart() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setScheduleStart(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::ScheduleFinish() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setScheduleFinish(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::EarlyStart() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setEarlyStart(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::EarlyFinish() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setEarlyFinish(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::LateStart() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::string v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setLateStart(const std::optional< std::string >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::LateFinish() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::string v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setLateFinish(const std::optional< std::string >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::FreeFloat() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } std::string v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setFreeFloat(const std::optional< std::string >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::TotalFloat() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } std::string v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setTotalFloat(const std::optional< std::string >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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std::optional< bool > Ifc4x3_rc1::IfcTaskTime::IsCritical() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } bool v = get_attribute_value(13); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setIsCritical(const std::optional< bool >& v) { if (v) {set_attribute_value(13, *v);} else {unset_attribute_value(13);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::StatusTime() const { if(get_attribute_value(14).isNull()) { return std::nullopt; } std::string v = get_attribute_value(14); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setStatusTime(const std::optional< std::string >& v) { if (v) {set_attribute_value(14, *v);} else {unset_attribute_value(14);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::ActualDuration() const { if(get_attribute_value(15).isNull()) { return std::nullopt; } std::string v = get_attribute_value(15); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setActualDuration(const std::optional< std::string >& v) { if (v) {set_attribute_value(15, *v);} else {unset_attribute_value(15);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::ActualStart() const { if(get_attribute_value(16).isNull()) { return std::nullopt; } std::string v = get_attribute_value(16); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setActualStart(const std::optional< std::string >& v) { if (v) {set_attribute_value(16, *v);} else {unset_attribute_value(16);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::ActualFinish() const { if(get_attribute_value(17).isNull()) { return std::nullopt; } std::string v = get_attribute_value(17); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setActualFinish(const std::optional< std::string >& v) { if (v) {set_attribute_value(17, *v);} else {unset_attribute_value(17);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskTime::RemainingTime() const { if(get_attribute_value(18).isNull()) { return std::nullopt; } std::string v = get_attribute_value(18); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setRemainingTime(const std::optional< std::string >& v) { if (v) {set_attribute_value(18, *v);} else {unset_attribute_value(18);} }
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std::optional< double > Ifc4x3_rc1::IfcTaskTime::Completion() const { if(get_attribute_value(19).isNull()) { return std::nullopt; } double v = get_attribute_value(19); return v; }
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void Ifc4x3_rc1::IfcTaskTime::setCompletion(const std::optional< double >& v) { if (v) {set_attribute_value(19, *v);} else {unset_attribute_value(19);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTaskTime::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1166]); }
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void Ifc4x3_rc1::IfcTaskTime::initialize(std::optional< std::string > v1_Name, std::optional< ::Ifc4x3_rc1::IfcDataOriginEnum::Value > v2_DataOrigin, std::optional< std::string > v3_UserDefinedDataOrigin, std::optional< ::Ifc4x3_rc1::IfcTaskDurationEnum::Value > v4_DurationType, std::optional< std::string > v5_ScheduleDuration, std::optional< std::string > v6_ScheduleStart, std::optional< std::string > v7_ScheduleFinish, std::optional< std::string > v8_EarlyStart, std::optional< std::string > v9_EarlyFinish, std::optional< std::string > v10_LateStart, std::optional< std::string > v11_LateFinish, std::optional< std::string > v12_FreeFloat, std::optional< std::string > v13_TotalFloat, std::optional< bool > v14_IsCritical, std::optional< std::string > v15_StatusTime, std::optional< std::string > v16_ActualDuration, std::optional< std::string > v17_ActualStart, std::optional< std::string > v18_ActualFinish, std::optional< std::string > v19_RemainingTime, std::optional< double > v20_Completion) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DataOrigin) {set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)*v2_DataOrigin))); } if (v3_UserDefinedDataOrigin) {set_attribute_value(2, (*v3_UserDefinedDataOrigin)); } if (v4_DurationType) {set_attribute_value(3, (EnumerationReference(&::Ifc4x3_rc1::IfcTaskDurationEnum::Class(),(size_t)*v4_DurationType))); } if (v5_ScheduleDuration) {set_attribute_value(4, (*v5_ScheduleDuration)); } if (v6_ScheduleStart) {set_attribute_value(5, (*v6_ScheduleStart)); } if (v7_ScheduleFinish) {set_attribute_value(6, (*v7_ScheduleFinish)); } if (v8_EarlyStart) {set_attribute_value(7, (*v8_EarlyStart)); } if (v9_EarlyFinish) {set_attribute_value(8, (*v9_EarlyFinish)); } if (v10_LateStart) {set_attribute_value(9, (*v10_LateStart)); } if (v11_LateFinish) {set_attribute_value(10, (*v11_LateFinish)); } if (v12_FreeFloat) {set_attribute_value(11, (*v12_FreeFloat)); } if (v13_TotalFloat) {set_attribute_value(12, (*v13_TotalFloat)); } if (v14_IsCritical) {set_attribute_value(13, (*v14_IsCritical)); } if (v15_StatusTime) {set_attribute_value(14, (*v15_StatusTime)); } if (v16_ActualDuration) {set_attribute_value(15, (*v16_ActualDuration)); } if (v17_ActualStart) {set_attribute_value(16, (*v17_ActualStart)); } if (v18_ActualFinish) {set_attribute_value(17, (*v18_ActualFinish)); } if (v19_RemainingTime) {set_attribute_value(18, (*v19_RemainingTime)); } if (v20_Completion) {set_attribute_value(19, (*v20_Completion)); } }
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// Function implementations for IfcTaskTimeRecurring
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::Ifc4x3_rc1::IfcRecurrencePattern Ifc4x3_rc1::IfcTaskTimeRecurring::Recurrence() const { return ((express::Base)(get_attribute_value(20))).as<::Ifc4x3_rc1::IfcRecurrencePattern>(); }
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void Ifc4x3_rc1::IfcTaskTimeRecurring::setRecurrence(const ::Ifc4x3_rc1::IfcRecurrencePattern& v) { set_attribute_value(20, v);if constexpr (false)unset_attribute_value(20); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTaskTimeRecurring::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1167]); }
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void Ifc4x3_rc1::IfcTaskTimeRecurring::initialize(std::optional< std::string > v1_Name, std::optional< ::Ifc4x3_rc1::IfcDataOriginEnum::Value > v2_DataOrigin, std::optional< std::string > v3_UserDefinedDataOrigin, std::optional< ::Ifc4x3_rc1::IfcTaskDurationEnum::Value > v4_DurationType, std::optional< std::string > v5_ScheduleDuration, std::optional< std::string > v6_ScheduleStart, std::optional< std::string > v7_ScheduleFinish, std::optional< std::string > v8_EarlyStart, std::optional< std::string > v9_EarlyFinish, std::optional< std::string > v10_LateStart, std::optional< std::string > v11_LateFinish, std::optional< std::string > v12_FreeFloat, std::optional< std::string > v13_TotalFloat, std::optional< bool > v14_IsCritical, std::optional< std::string > v15_StatusTime, std::optional< std::string > v16_ActualDuration, std::optional< std::string > v17_ActualStart, std::optional< std::string > v18_ActualFinish, std::optional< std::string > v19_RemainingTime, std::optional< double > v20_Completion, ::Ifc4x3_rc1::IfcRecurrencePattern v21_Recurrence) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DataOrigin) {set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)*v2_DataOrigin))); } if (v3_UserDefinedDataOrigin) {set_attribute_value(2, (*v3_UserDefinedDataOrigin)); } if (v4_DurationType) {set_attribute_value(3, (EnumerationReference(&::Ifc4x3_rc1::IfcTaskDurationEnum::Class(),(size_t)*v4_DurationType))); } if (v5_ScheduleDuration) {set_attribute_value(4, (*v5_ScheduleDuration)); } if (v6_ScheduleStart) {set_attribute_value(5, (*v6_ScheduleStart)); } if (v7_ScheduleFinish) {set_attribute_value(6, (*v7_ScheduleFinish)); } if (v8_EarlyStart) {set_attribute_value(7, (*v8_EarlyStart)); } if (v9_EarlyFinish) {set_attribute_value(8, (*v9_EarlyFinish)); } if (v10_LateStart) {set_attribute_value(9, (*v10_LateStart)); } if (v11_LateFinish) {set_attribute_value(10, (*v11_LateFinish)); } if (v12_FreeFloat) {set_attribute_value(11, (*v12_FreeFloat)); } if (v13_TotalFloat) {set_attribute_value(12, (*v13_TotalFloat)); } if (v14_IsCritical) {set_attribute_value(13, (*v14_IsCritical)); } if (v15_StatusTime) {set_attribute_value(14, (*v15_StatusTime)); } if (v16_ActualDuration) {set_attribute_value(15, (*v16_ActualDuration)); } if (v17_ActualStart) {set_attribute_value(16, (*v17_ActualStart)); } if (v18_ActualFinish) {set_attribute_value(17, (*v18_ActualFinish)); } if (v19_RemainingTime) {set_attribute_value(18, (*v19_RemainingTime)); } if (v20_Completion) {set_attribute_value(19, (*v20_Completion)); }set_attribute_value(20, (v21_Recurrence)); }
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// Function implementations for IfcTaskType
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::Ifc4x3_rc1::IfcTaskTypeEnum::Value Ifc4x3_rc1::IfcTaskType::PredefinedType() const { return ::Ifc4x3_rc1::IfcTaskTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTaskType::setPredefinedType(const ::Ifc4x3_rc1::IfcTaskTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTaskTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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std::optional< std::string > Ifc4x3_rc1::IfcTaskType::WorkMethod() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::string v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcTaskType::setWorkMethod(const std::optional< std::string >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTaskType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1168]); }
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void Ifc4x3_rc1::IfcTaskType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ProcessType, ::Ifc4x3_rc1::IfcTaskTypeEnum::Value v10_PredefinedType, std::optional< std::string > v11_WorkMethod) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ProcessType) {set_attribute_value(8, (*v9_ProcessType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTaskTypeEnum::Class(),(size_t)v10_PredefinedType))); if (v11_WorkMethod) {set_attribute_value(10, (*v11_WorkMethod)); } }
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// Function implementations for IfcTelecomAddress
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcTelecomAddress::TelephoneNumbers() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcTelecomAddress::setTelephoneNumbers(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcTelecomAddress::FacsimileNumbers() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTelecomAddress::setFacsimileNumbers(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTelecomAddress::PagerNumber() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcTelecomAddress::setPagerNumber(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcTelecomAddress::ElectronicMailAddresses() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcTelecomAddress::setElectronicMailAddresses(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTelecomAddress::WWWHomePageURL() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcTelecomAddress::setWWWHomePageURL(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::vector< std::string > /*[1:?]*/ > Ifc4x3_rc1::IfcTelecomAddress::MessagingIDs() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::vector< std::string > /*[1:?]*/ v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcTelecomAddress::setMessagingIDs(const std::optional< std::vector< std::string > /*[1:?]*/ >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTelecomAddress::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1170]); }
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void Ifc4x3_rc1::IfcTelecomAddress::initialize(std::optional< ::Ifc4x3_rc1::IfcAddressTypeEnum::Value > v1_Purpose, std::optional< std::string > v2_Description, std::optional< std::string > v3_UserDefinedPurpose, std::optional< std::vector< std::string > /*[1:?]*/ > v4_TelephoneNumbers, std::optional< std::vector< std::string > /*[1:?]*/ > v5_FacsimileNumbers, std::optional< std::string > v6_PagerNumber, std::optional< std::vector< std::string > /*[1:?]*/ > v7_ElectronicMailAddresses, std::optional< std::string > v8_WWWHomePageURL, std::optional< std::vector< std::string > /*[1:?]*/ > v9_MessagingIDs) { if (v1_Purpose) {set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcAddressTypeEnum::Class(),(size_t)*v1_Purpose))); } if (v2_Description) {set_attribute_value(1, (*v2_Description)); } if (v3_UserDefinedPurpose) {set_attribute_value(2, (*v3_UserDefinedPurpose)); } if (v4_TelephoneNumbers) {set_attribute_value(3, (*v4_TelephoneNumbers)); } if (v5_FacsimileNumbers) {set_attribute_value(4, (*v5_FacsimileNumbers)); } if (v6_PagerNumber) {set_attribute_value(5, (*v6_PagerNumber)); } if (v7_ElectronicMailAddresses) {set_attribute_value(6, (*v7_ElectronicMailAddresses)); } if (v8_WWWHomePageURL) {set_attribute_value(7, (*v8_WWWHomePageURL)); } if (v9_MessagingIDs) {set_attribute_value(8, (*v9_MessagingIDs)); } }
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// Function implementations for IfcTendon
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std::optional< ::Ifc4x3_rc1::IfcTendonTypeEnum::Value > Ifc4x3_rc1::IfcTendon::PredefinedType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcTendonTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTendon::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcTendonTypeEnum::Value >& v) { if (v) {set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTendonTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcTendon::NominalDiameter() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcTendon::setNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcTendon::CrossSectionArea() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcTendon::setCrossSectionArea(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< double > Ifc4x3_rc1::IfcTendon::TensionForce() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } double v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcTendon::setTensionForce(const std::optional< double >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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std::optional< double > Ifc4x3_rc1::IfcTendon::PreStress() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } double v = get_attribute_value(13); return v; }
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void Ifc4x3_rc1::IfcTendon::setPreStress(const std::optional< double >& v) { if (v) {set_attribute_value(13, *v);} else {unset_attribute_value(13);} }
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std::optional< double > Ifc4x3_rc1::IfcTendon::FrictionCoefficient() const { if(get_attribute_value(14).isNull()) { return std::nullopt; } double v = get_attribute_value(14); return v; }
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void Ifc4x3_rc1::IfcTendon::setFrictionCoefficient(const std::optional< double >& v) { if (v) {set_attribute_value(14, *v);} else {unset_attribute_value(14);} }
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std::optional< double > Ifc4x3_rc1::IfcTendon::AnchorageSlip() const { if(get_attribute_value(15).isNull()) { return std::nullopt; } double v = get_attribute_value(15); return v; }
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void Ifc4x3_rc1::IfcTendon::setAnchorageSlip(const std::optional< double >& v) { if (v) {set_attribute_value(15, *v);} else {unset_attribute_value(15);} }
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std::optional< double > Ifc4x3_rc1::IfcTendon::MinCurvatureRadius() const { if(get_attribute_value(16).isNull()) { return std::nullopt; } double v = get_attribute_value(16); return v; }
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void Ifc4x3_rc1::IfcTendon::setMinCurvatureRadius(const std::optional< double >& v) { if (v) {set_attribute_value(16, *v);} else {unset_attribute_value(16);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTendon::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1173]); }
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void Ifc4x3_rc1::IfcTendon::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< std::string > v9_SteelGrade, std::optional< ::Ifc4x3_rc1::IfcTendonTypeEnum::Value > v10_PredefinedType, std::optional< double > v11_NominalDiameter, std::optional< double > v12_CrossSectionArea, std::optional< double > v13_TensionForce, std::optional< double > v14_PreStress, std::optional< double > v15_FrictionCoefficient, std::optional< double > v16_AnchorageSlip, std::optional< double > v17_MinCurvatureRadius) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_SteelGrade) {set_attribute_value(8, (*v9_SteelGrade)); } if (v10_PredefinedType) {set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTendonTypeEnum::Class(),(size_t)*v10_PredefinedType))); } if (v11_NominalDiameter) {set_attribute_value(10, (*v11_NominalDiameter)); } if (v12_CrossSectionArea) {set_attribute_value(11, (*v12_CrossSectionArea)); } if (v13_TensionForce) {set_attribute_value(12, (*v13_TensionForce)); } if (v14_PreStress) {set_attribute_value(13, (*v14_PreStress)); } if (v15_FrictionCoefficient) {set_attribute_value(14, (*v15_FrictionCoefficient)); } if (v16_AnchorageSlip) {set_attribute_value(15, (*v16_AnchorageSlip)); } if (v17_MinCurvatureRadius) {set_attribute_value(16, (*v17_MinCurvatureRadius)); } }
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// Function implementations for IfcTendonAnchor
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std::optional< ::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value > Ifc4x3_rc1::IfcTendonAnchor::PredefinedType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTendonAnchor::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value >& v) { if (v) {set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTendonAnchor::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1174]); }
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void Ifc4x3_rc1::IfcTendonAnchor::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< std::string > v9_SteelGrade, std::optional< ::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value > v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_SteelGrade) {set_attribute_value(8, (*v9_SteelGrade)); } if (v10_PredefinedType) {set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Class(),(size_t)*v10_PredefinedType))); } }
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// Function implementations for IfcTendonAnchorType
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::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value Ifc4x3_rc1::IfcTendonAnchorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTendonAnchorType::setPredefinedType(const ::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTendonAnchorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1175]); }
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void Ifc4x3_rc1::IfcTendonAnchorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTendonAnchorTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcTendonConduit
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::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value Ifc4x3_rc1::IfcTendonConduit::PredefinedType() const { return ::Ifc4x3_rc1::IfcTendonConduitTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTendonConduit::setPredefinedType(const ::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTendonConduit::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1177]); }
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void Ifc4x3_rc1::IfcTendonConduit::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< std::string > v9_SteelGrade, ::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_SteelGrade) {set_attribute_value(8, (*v9_SteelGrade)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcTendonConduitType
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::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value Ifc4x3_rc1::IfcTendonConduitType::PredefinedType() const { return ::Ifc4x3_rc1::IfcTendonConduitTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTendonConduitType::setPredefinedType(const ::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTendonConduitType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1178]); }
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void Ifc4x3_rc1::IfcTendonConduitType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTendonConduitTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcTendonType
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::Ifc4x3_rc1::IfcTendonTypeEnum::Value Ifc4x3_rc1::IfcTendonType::PredefinedType() const { return ::Ifc4x3_rc1::IfcTendonTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTendonType::setPredefinedType(const ::Ifc4x3_rc1::IfcTendonTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTendonTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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std::optional< double > Ifc4x3_rc1::IfcTendonType::NominalDiameter() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcTendonType::setNominalDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcTendonType::CrossSectionArea() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcTendonType::setCrossSectionArea(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< double > Ifc4x3_rc1::IfcTendonType::SheathDiameter() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } double v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcTendonType::setSheathDiameter(const std::optional< double >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTendonType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1180]); }
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void Ifc4x3_rc1::IfcTendonType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcTendonTypeEnum::Value v10_PredefinedType, std::optional< double > v11_NominalDiameter, std::optional< double > v12_CrossSectionArea, std::optional< double > v13_SheathDiameter) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTendonTypeEnum::Class(),(size_t)v10_PredefinedType))); if (v11_NominalDiameter) {set_attribute_value(10, (*v11_NominalDiameter)); } if (v12_CrossSectionArea) {set_attribute_value(11, (*v12_CrossSectionArea)); } if (v13_SheathDiameter) {set_attribute_value(12, (*v13_SheathDiameter)); } }
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// Function implementations for IfcTessellatedFaceSet
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::Ifc4x3_rc1::IfcCartesianPointList3D Ifc4x3_rc1::IfcTessellatedFaceSet::Coordinates() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCartesianPointList3D>(); }
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void Ifc4x3_rc1::IfcTessellatedFaceSet::setCoordinates(const ::Ifc4x3_rc1::IfcCartesianPointList3D& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector<::Ifc4x3_rc1::IfcIndexedColourMap> Ifc4x3_rc1::IfcTessellatedFaceSet::HasColours() const { return cast_vector<IfcIndexedColourMap>(file()->getInverse(data()->id(), IFC4X3_RC1_types[550], 0)); }
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std::vector<::Ifc4x3_rc1::IfcIndexedTextureMap> Ifc4x3_rc1::IfcTessellatedFaceSet::HasTextures() const { return cast_vector<IfcIndexedTextureMap>(file()->getInverse(data()->id(), IFC4X3_RC1_types[554], 1)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTessellatedFaceSet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1182]); }
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void Ifc4x3_rc1::IfcTessellatedFaceSet::initialize(::Ifc4x3_rc1::IfcCartesianPointList3D v1_Coordinates) { set_attribute_value(0, (v1_Coordinates)); }
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// Function implementations for IfcTessellatedItem
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const IfcParse::entity& Ifc4x3_rc1::IfcTessellatedItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1183]); }
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void Ifc4x3_rc1::IfcTessellatedItem::initialize() { }
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// Function implementations for IfcTextLiteral
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std::string Ifc4x3_rc1::IfcTextLiteral::Literal() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcTextLiteral::setLiteral(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcAxis2Placement Ifc4x3_rc1::IfcTextLiteral::Placement() const { return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcAxis2Placement>(); }
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void Ifc4x3_rc1::IfcTextLiteral::setPlacement(const ::Ifc4x3_rc1::IfcAxis2Placement& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcTextPath::Value Ifc4x3_rc1::IfcTextLiteral::Path() const { return ::Ifc4x3_rc1::IfcTextPath::FromString(get_attribute_value(2)); }
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void Ifc4x3_rc1::IfcTextLiteral::setPath(const ::Ifc4x3_rc1::IfcTextPath::Value& v) { set_attribute_value(2, EnumerationReference(&::Ifc4x3_rc1::IfcTextPath::Class(), (size_t) v));if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextLiteral::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1189]); }
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void Ifc4x3_rc1::IfcTextLiteral::initialize(std::string v1_Literal, ::Ifc4x3_rc1::IfcAxis2Placement v2_Placement, ::Ifc4x3_rc1::IfcTextPath::Value v3_Path) { set_attribute_value(0, (v1_Literal));set_attribute_value(1, (v2_Placement));set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcTextPath::Class(),(size_t)v3_Path))); }
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// Function implementations for IfcTextLiteralWithExtent
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::Ifc4x3_rc1::IfcPlanarExtent Ifc4x3_rc1::IfcTextLiteralWithExtent::Extent() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcPlanarExtent>(); }
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void Ifc4x3_rc1::IfcTextLiteralWithExtent::setExtent(const ::Ifc4x3_rc1::IfcPlanarExtent& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::string Ifc4x3_rc1::IfcTextLiteralWithExtent::BoxAlignment() const { std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTextLiteralWithExtent::setBoxAlignment(const std::string& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextLiteralWithExtent::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1190]); }
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void Ifc4x3_rc1::IfcTextLiteralWithExtent::initialize(std::string v1_Literal, ::Ifc4x3_rc1::IfcAxis2Placement v2_Placement, ::Ifc4x3_rc1::IfcTextPath::Value v3_Path, ::Ifc4x3_rc1::IfcPlanarExtent v4_Extent, std::string v5_BoxAlignment) { set_attribute_value(0, (v1_Literal));set_attribute_value(1, (v2_Placement));set_attribute_value(2, (EnumerationReference(&::Ifc4x3_rc1::IfcTextPath::Class(),(size_t)v3_Path)));set_attribute_value(3, (v4_Extent));set_attribute_value(4, (v5_BoxAlignment)); }
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// Function implementations for IfcTextStyle
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::Ifc4x3_rc1::IfcTextStyleForDefinedFont Ifc4x3_rc1::IfcTextStyle::TextCharacterAppearance() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcTextStyleForDefinedFont{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcTextStyleForDefinedFont>(); }
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void Ifc4x3_rc1::IfcTextStyle::setTextCharacterAppearance(const ::Ifc4x3_rc1::IfcTextStyleForDefinedFont& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcTextStyleTextModel Ifc4x3_rc1::IfcTextStyle::TextStyle() const { if(get_attribute_value(2).isNull()) { return ::Ifc4x3_rc1::IfcTextStyleTextModel{}; } return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcTextStyleTextModel>(); }
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void Ifc4x3_rc1::IfcTextStyle::setTextStyle(const ::Ifc4x3_rc1::IfcTextStyleTextModel& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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::Ifc4x3_rc1::IfcTextFontSelect Ifc4x3_rc1::IfcTextStyle::TextFontStyle() const { return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcTextFontSelect>(); }
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void Ifc4x3_rc1::IfcTextStyle::setTextFontStyle(const ::Ifc4x3_rc1::IfcTextFontSelect& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< bool > Ifc4x3_rc1::IfcTextStyle::ModelOrDraughting() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } bool v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTextStyle::setModelOrDraughting(const std::optional< bool >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1192]); }
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void Ifc4x3_rc1::IfcTextStyle::initialize(std::optional< std::string > v1_Name, ::Ifc4x3_rc1::IfcTextStyleForDefinedFont v2_TextCharacterAppearance, ::Ifc4x3_rc1::IfcTextStyleTextModel v3_TextStyle, ::Ifc4x3_rc1::IfcTextFontSelect v4_TextFontStyle, std::optional< bool > v5_ModelOrDraughting) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); }set_attribute_value(1, (v2_TextCharacterAppearance));set_attribute_value(2, (v3_TextStyle));set_attribute_value(3, (v4_TextFontStyle)); if (v5_ModelOrDraughting) {set_attribute_value(4, (*v5_ModelOrDraughting)); } }
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// Function implementations for IfcTextStyleFontModel
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std::vector< std::string > /*[1:?]*/ Ifc4x3_rc1::IfcTextStyleFontModel::FontFamily() const { std::vector< std::string > /*[1:?]*/ v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcTextStyleFontModel::setFontFamily(const std::vector< std::string > /*[1:?]*/& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< std::string > Ifc4x3_rc1::IfcTextStyleFontModel::FontStyle() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcTextStyleFontModel::setFontStyle(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTextStyleFontModel::FontVariant() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcTextStyleFontModel::setFontVariant(const std::optional< std::string >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTextStyleFontModel::FontWeight() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTextStyleFontModel::setFontWeight(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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::Ifc4x3_rc1::IfcSizeSelect Ifc4x3_rc1::IfcTextStyleFontModel::FontSize() const { return ((express::Base)(get_attribute_value(5))).as<::Ifc4x3_rc1::IfcSizeSelect>(); }
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void Ifc4x3_rc1::IfcTextStyleFontModel::setFontSize(const ::Ifc4x3_rc1::IfcSizeSelect& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextStyleFontModel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1193]); }
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void Ifc4x3_rc1::IfcTextStyleFontModel::initialize(std::string v1_Name, std::vector< std::string > /*[1:?]*/ v2_FontFamily, std::optional< std::string > v3_FontStyle, std::optional< std::string > v4_FontVariant, std::optional< std::string > v5_FontWeight, ::Ifc4x3_rc1::IfcSizeSelect v6_FontSize) { set_attribute_value(0, (v1_Name));set_attribute_value(1, (v2_FontFamily)); if (v3_FontStyle) {set_attribute_value(2, (*v3_FontStyle)); } if (v4_FontVariant) {set_attribute_value(3, (*v4_FontVariant)); } if (v5_FontWeight) {set_attribute_value(4, (*v5_FontWeight)); }set_attribute_value(5, (v6_FontSize)); }
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// Function implementations for IfcTextStyleForDefinedFont
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::Ifc4x3_rc1::IfcColour Ifc4x3_rc1::IfcTextStyleForDefinedFont::Colour() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcColour>(); }
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void Ifc4x3_rc1::IfcTextStyleForDefinedFont::setColour(const ::Ifc4x3_rc1::IfcColour& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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::Ifc4x3_rc1::IfcColour Ifc4x3_rc1::IfcTextStyleForDefinedFont::BackgroundColour() const { if(get_attribute_value(1).isNull()) { return ::Ifc4x3_rc1::IfcColour{}; } return ((express::Base)(get_attribute_value(1))).as<::Ifc4x3_rc1::IfcColour>(); }
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void Ifc4x3_rc1::IfcTextStyleForDefinedFont::setBackgroundColour(const ::Ifc4x3_rc1::IfcColour& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextStyleForDefinedFont::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1194]); }
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void Ifc4x3_rc1::IfcTextStyleForDefinedFont::initialize(::Ifc4x3_rc1::IfcColour v1_Colour, ::Ifc4x3_rc1::IfcColour v2_BackgroundColour) { set_attribute_value(0, (v1_Colour));set_attribute_value(1, (v2_BackgroundColour)); }
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// Function implementations for IfcTextStyleTextModel
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::Ifc4x3_rc1::IfcSizeSelect Ifc4x3_rc1::IfcTextStyleTextModel::TextIndent() const { if(get_attribute_value(0).isNull()) { return ::Ifc4x3_rc1::IfcSizeSelect{}; } return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcSizeSelect>(); }
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void Ifc4x3_rc1::IfcTextStyleTextModel::setTextIndent(const ::Ifc4x3_rc1::IfcSizeSelect& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcTextStyleTextModel::TextAlign() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcTextStyleTextModel::setTextAlign(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTextStyleTextModel::TextDecoration() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcTextStyleTextModel::setTextDecoration(const std::optional< std::string >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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::Ifc4x3_rc1::IfcSizeSelect Ifc4x3_rc1::IfcTextStyleTextModel::LetterSpacing() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcSizeSelect{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcSizeSelect>(); }
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void Ifc4x3_rc1::IfcTextStyleTextModel::setLetterSpacing(const ::Ifc4x3_rc1::IfcSizeSelect& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcSizeSelect Ifc4x3_rc1::IfcTextStyleTextModel::WordSpacing() const { if(get_attribute_value(4).isNull()) { return ::Ifc4x3_rc1::IfcSizeSelect{}; } return ((express::Base)(get_attribute_value(4))).as<::Ifc4x3_rc1::IfcSizeSelect>(); }
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void Ifc4x3_rc1::IfcTextStyleTextModel::setWordSpacing(const ::Ifc4x3_rc1::IfcSizeSelect& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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std::optional< std::string > Ifc4x3_rc1::IfcTextStyleTextModel::TextTransform() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcTextStyleTextModel::setTextTransform(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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::Ifc4x3_rc1::IfcSizeSelect Ifc4x3_rc1::IfcTextStyleTextModel::LineHeight() const { if(get_attribute_value(6).isNull()) { return ::Ifc4x3_rc1::IfcSizeSelect{}; } return ((express::Base)(get_attribute_value(6))).as<::Ifc4x3_rc1::IfcSizeSelect>(); }
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void Ifc4x3_rc1::IfcTextStyleTextModel::setLineHeight(const ::Ifc4x3_rc1::IfcSizeSelect& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextStyleTextModel::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1195]); }
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void Ifc4x3_rc1::IfcTextStyleTextModel::initialize(::Ifc4x3_rc1::IfcSizeSelect v1_TextIndent, std::optional< std::string > v2_TextAlign, std::optional< std::string > v3_TextDecoration, ::Ifc4x3_rc1::IfcSizeSelect v4_LetterSpacing, ::Ifc4x3_rc1::IfcSizeSelect v5_WordSpacing, std::optional< std::string > v6_TextTransform, ::Ifc4x3_rc1::IfcSizeSelect v7_LineHeight) { set_attribute_value(0, (v1_TextIndent)); if (v2_TextAlign) {set_attribute_value(1, (*v2_TextAlign)); } if (v3_TextDecoration) {set_attribute_value(2, (*v3_TextDecoration)); }set_attribute_value(3, (v4_LetterSpacing));set_attribute_value(4, (v5_WordSpacing)); if (v6_TextTransform) {set_attribute_value(5, (*v6_TextTransform)); }set_attribute_value(6, (v7_LineHeight)); }
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// Function implementations for IfcTextureCoordinate
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std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture > Ifc4x3_rc1::IfcTextureCoordinate::Maps() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcSurfaceTexture>(es); }
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void Ifc4x3_rc1::IfcTextureCoordinate::setMaps(const std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextureCoordinate::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1197]); }
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void Ifc4x3_rc1::IfcTextureCoordinate::initialize(std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture > v1_Maps) { set_attribute_value(0, cast_vector<express::Base>(v1_Maps)); }
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// Function implementations for IfcTextureCoordinateGenerator
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std::string Ifc4x3_rc1::IfcTextureCoordinateGenerator::Mode() const { std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcTextureCoordinateGenerator::setMode(const std::string& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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std::optional< std::vector< double > /*[1:?]*/ > Ifc4x3_rc1::IfcTextureCoordinateGenerator::Parameter() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } std::vector< double > /*[1:?]*/ v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcTextureCoordinateGenerator::setParameter(const std::optional< std::vector< double > /*[1:?]*/ >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextureCoordinateGenerator::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1198]); }
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void Ifc4x3_rc1::IfcTextureCoordinateGenerator::initialize(std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture > v1_Maps, std::string v2_Mode, std::optional< std::vector< double > /*[1:?]*/ > v3_Parameter) { set_attribute_value(0, cast_vector<express::Base>(v1_Maps));set_attribute_value(1, (v2_Mode)); if (v3_Parameter) {set_attribute_value(2, (*v3_Parameter)); } }
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// Function implementations for IfcTextureMap
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std::vector< ::Ifc4x3_rc1::IfcTextureVertex > Ifc4x3_rc1::IfcTextureMap::Vertices() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcTextureVertex>(es); }
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void Ifc4x3_rc1::IfcTextureMap::setVertices(const std::vector< ::Ifc4x3_rc1::IfcTextureVertex >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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::Ifc4x3_rc1::IfcFace Ifc4x3_rc1::IfcTextureMap::MappedTo() const { return ((express::Base)(get_attribute_value(2))).as<::Ifc4x3_rc1::IfcFace>(); }
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void Ifc4x3_rc1::IfcTextureMap::setMappedTo(const ::Ifc4x3_rc1::IfcFace& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextureMap::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1199]); }
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void Ifc4x3_rc1::IfcTextureMap::initialize(std::vector< ::Ifc4x3_rc1::IfcSurfaceTexture > v1_Maps, std::vector< ::Ifc4x3_rc1::IfcTextureVertex > v2_Vertices, ::Ifc4x3_rc1::IfcFace v3_MappedTo) { set_attribute_value(0, cast_vector<express::Base>(v1_Maps));set_attribute_value(1, cast_vector<express::Base>(v2_Vertices));set_attribute_value(2, (v3_MappedTo)); }
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// Function implementations for IfcTextureVertex
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std::vector< double > /*[2:2]*/ Ifc4x3_rc1::IfcTextureVertex::Coordinates() const { std::vector< double > /*[2:2]*/ v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcTextureVertex::setCoordinates(const std::vector< double > /*[2:2]*/& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextureVertex::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1200]); }
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void Ifc4x3_rc1::IfcTextureVertex::initialize(std::vector< double > /*[2:2]*/ v1_Coordinates) { set_attribute_value(0, (v1_Coordinates)); }
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// Function implementations for IfcTextureVertexList
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std::vector< std::vector< double > > Ifc4x3_rc1::IfcTextureVertexList::TexCoordsList() const { std::vector< std::vector< double > > v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcTextureVertexList::setTexCoordsList(const std::vector< std::vector< double > >& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTextureVertexList::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1201]); }
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void Ifc4x3_rc1::IfcTextureVertexList::initialize(std::vector< std::vector< double > > v1_TexCoordsList) { set_attribute_value(0, (v1_TexCoordsList)); }
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// Function implementations for IfcTimePeriod
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std::string Ifc4x3_rc1::IfcTimePeriod::StartTime() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcTimePeriod::setStartTime(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::string Ifc4x3_rc1::IfcTimePeriod::EndTime() const { std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcTimePeriod::setEndTime(const std::string& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTimePeriod::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1211]); }
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void Ifc4x3_rc1::IfcTimePeriod::initialize(std::string v1_StartTime, std::string v2_EndTime) { set_attribute_value(0, (v1_StartTime));set_attribute_value(1, (v2_EndTime)); }
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// Function implementations for IfcTimeSeries
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std::string Ifc4x3_rc1::IfcTimeSeries::Name() const { std::string v = get_attribute_value(0); return v; }
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void Ifc4x3_rc1::IfcTimeSeries::setName(const std::string& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::optional< std::string > Ifc4x3_rc1::IfcTimeSeries::Description() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::string v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcTimeSeries::setDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::string Ifc4x3_rc1::IfcTimeSeries::StartTime() const { std::string v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcTimeSeries::setStartTime(const std::string& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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std::string Ifc4x3_rc1::IfcTimeSeries::EndTime() const { std::string v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcTimeSeries::setEndTime(const std::string& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Value Ifc4x3_rc1::IfcTimeSeries::TimeSeriesDataType() const { return ::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::FromString(get_attribute_value(4)); }
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void Ifc4x3_rc1::IfcTimeSeries::setTimeSeriesDataType(const ::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Value& v) { set_attribute_value(4, EnumerationReference(&::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcDataOriginEnum::Value Ifc4x3_rc1::IfcTimeSeries::DataOrigin() const { return ::Ifc4x3_rc1::IfcDataOriginEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcTimeSeries::setDataOrigin(const ::Ifc4x3_rc1::IfcDataOriginEnum::Value& v) { set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(5); }
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std::optional< std::string > Ifc4x3_rc1::IfcTimeSeries::UserDefinedDataOrigin() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcTimeSeries::setUserDefinedDataOrigin(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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::Ifc4x3_rc1::IfcUnit Ifc4x3_rc1::IfcTimeSeries::Unit() const { if(get_attribute_value(7).isNull()) { return ::Ifc4x3_rc1::IfcUnit{}; } return ((express::Base)(get_attribute_value(7))).as<::Ifc4x3_rc1::IfcUnit>(); }
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void Ifc4x3_rc1::IfcTimeSeries::setUnit(const ::Ifc4x3_rc1::IfcUnit& v) { set_attribute_value(7, v);if constexpr (false)unset_attribute_value(7); }
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std::vector<::Ifc4x3_rc1::IfcExternalReferenceRelationship> Ifc4x3_rc1::IfcTimeSeries::HasExternalReference() const { return cast_vector<IfcExternalReferenceRelationship>(file()->getInverse(data()->id(), IFC4X3_RC1_types[436], 3)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTimeSeries::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1212]); }
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void Ifc4x3_rc1::IfcTimeSeries::initialize(std::string v1_Name, std::optional< std::string > v2_Description, std::string v3_StartTime, std::string v4_EndTime, ::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Value v5_TimeSeriesDataType, ::Ifc4x3_rc1::IfcDataOriginEnum::Value v6_DataOrigin, std::optional< std::string > v7_UserDefinedDataOrigin, ::Ifc4x3_rc1::IfcUnit v8_Unit) { set_attribute_value(0, (v1_Name)); if (v2_Description) {set_attribute_value(1, (*v2_Description)); }set_attribute_value(2, (v3_StartTime));set_attribute_value(3, (v4_EndTime));set_attribute_value(4, (EnumerationReference(&::Ifc4x3_rc1::IfcTimeSeriesDataTypeEnum::Class(),(size_t)v5_TimeSeriesDataType)));set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)v6_DataOrigin))); if (v7_UserDefinedDataOrigin) {set_attribute_value(6, (*v7_UserDefinedDataOrigin)); }set_attribute_value(7, (v8_Unit)); }
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// Function implementations for IfcTimeSeriesValue
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std::vector< ::Ifc4x3_rc1::IfcValue > Ifc4x3_rc1::IfcTimeSeriesValue::ListValues() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcValue>(es); }
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void Ifc4x3_rc1::IfcTimeSeriesValue::setListValues(const std::vector< ::Ifc4x3_rc1::IfcValue >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTimeSeriesValue::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1214]); }
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void Ifc4x3_rc1::IfcTimeSeriesValue::initialize(std::vector< ::Ifc4x3_rc1::IfcValue > v1_ListValues) { set_attribute_value(0, cast_vector<express::Base>(v1_ListValues)); }
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// Function implementations for IfcTopologicalRepresentationItem
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const IfcParse::entity& Ifc4x3_rc1::IfcTopologicalRepresentationItem::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1216]); }
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void Ifc4x3_rc1::IfcTopologicalRepresentationItem::initialize() { }
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// Function implementations for IfcTopologyRepresentation
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const IfcParse::entity& Ifc4x3_rc1::IfcTopologyRepresentation::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1217]); }
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void Ifc4x3_rc1::IfcTopologyRepresentation::initialize(::Ifc4x3_rc1::IfcRepresentationContext v1_ContextOfItems, std::optional< std::string > v2_RepresentationIdentifier, std::optional< std::string > v3_RepresentationType, std::vector< ::Ifc4x3_rc1::IfcRepresentationItem > v4_Items) { set_attribute_value(0, (v1_ContextOfItems)); if (v2_RepresentationIdentifier) {set_attribute_value(1, (*v2_RepresentationIdentifier)); } if (v3_RepresentationType) {set_attribute_value(2, (*v3_RepresentationType)); }set_attribute_value(3, cast_vector<express::Base>(v4_Items)); }
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// Function implementations for IfcToroidalSurface
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double Ifc4x3_rc1::IfcToroidalSurface::MajorRadius() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcToroidalSurface::setMajorRadius(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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double Ifc4x3_rc1::IfcToroidalSurface::MinorRadius() const { double v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcToroidalSurface::setMinorRadius(const double& v) { set_attribute_value(2, v);if constexpr (false)unset_attribute_value(2); }
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const IfcParse::entity& Ifc4x3_rc1::IfcToroidalSurface::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1218]); }
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void Ifc4x3_rc1::IfcToroidalSurface::initialize(::Ifc4x3_rc1::IfcAxis2Placement3D v1_Position, double v2_MajorRadius, double v3_MinorRadius) { set_attribute_value(0, (v1_Position));set_attribute_value(1, (v2_MajorRadius));set_attribute_value(2, (v3_MinorRadius)); }
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// Function implementations for IfcTrackElement
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std::optional< ::Ifc4x3_rc1::IfcTrackElementTypeEnum::Value > Ifc4x3_rc1::IfcTrackElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcTrackElementTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcTrackElement::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcTrackElementTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcTrackElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTrackElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1220]); }
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void Ifc4x3_rc1::IfcTrackElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcTrackElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcTrackElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcTrackElementType
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::Ifc4x3_rc1::IfcTrackElementTypeEnum::Value Ifc4x3_rc1::IfcTrackElementType::PredefinedType() const { return ::Ifc4x3_rc1::IfcTrackElementTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTrackElementType::setPredefinedType(const ::Ifc4x3_rc1::IfcTrackElementTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTrackElementTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTrackElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1221]); }
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void Ifc4x3_rc1::IfcTrackElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcTrackElementTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTrackElementTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcTransformer
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std::optional< ::Ifc4x3_rc1::IfcTransformerTypeEnum::Value > Ifc4x3_rc1::IfcTransformer::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcTransformerTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcTransformer::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcTransformerTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcTransformerTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTransformer::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1223]); }
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void Ifc4x3_rc1::IfcTransformer::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcTransformerTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcTransformerTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcTransformerType
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::Ifc4x3_rc1::IfcTransformerTypeEnum::Value Ifc4x3_rc1::IfcTransformerType::PredefinedType() const { return ::Ifc4x3_rc1::IfcTransformerTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTransformerType::setPredefinedType(const ::Ifc4x3_rc1::IfcTransformerTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTransformerTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTransformerType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1224]); }
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void Ifc4x3_rc1::IfcTransformerType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcTransformerTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTransformerTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcTransitionCurveSegment2D
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std::optional< double > Ifc4x3_rc1::IfcTransitionCurveSegment2D::StartRadius() const { if(get_attribute_value(3).isNull()) { return std::nullopt; } double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcTransitionCurveSegment2D::setStartRadius(const std::optional< double >& v) { if (v) {set_attribute_value(3, *v);} else {unset_attribute_value(3);} }
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std::optional< double > Ifc4x3_rc1::IfcTransitionCurveSegment2D::EndRadius() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTransitionCurveSegment2D::setEndRadius(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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bool Ifc4x3_rc1::IfcTransitionCurveSegment2D::IsStartRadiusCCW() const { bool v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcTransitionCurveSegment2D::setIsStartRadiusCCW(const bool& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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bool Ifc4x3_rc1::IfcTransitionCurveSegment2D::IsEndRadiusCCW() const { bool v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcTransitionCurveSegment2D::setIsEndRadiusCCW(const bool& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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::Ifc4x3_rc1::IfcTransitionCurveType::Value Ifc4x3_rc1::IfcTransitionCurveSegment2D::TransitionCurveType() const { return ::Ifc4x3_rc1::IfcTransitionCurveType::FromString(get_attribute_value(7)); }
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void Ifc4x3_rc1::IfcTransitionCurveSegment2D::setTransitionCurveType(const ::Ifc4x3_rc1::IfcTransitionCurveType::Value& v) { set_attribute_value(7, EnumerationReference(&::Ifc4x3_rc1::IfcTransitionCurveType::Class(), (size_t) v));if constexpr (false)unset_attribute_value(7); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTransitionCurveSegment2D::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1227]); }
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void Ifc4x3_rc1::IfcTransitionCurveSegment2D::initialize(::Ifc4x3_rc1::IfcCartesianPoint v1_StartPoint, double v2_StartDirection, double v3_SegmentLength, std::optional< double > v4_StartRadius, std::optional< double > v5_EndRadius, bool v6_IsStartRadiusCCW, bool v7_IsEndRadiusCCW, ::Ifc4x3_rc1::IfcTransitionCurveType::Value v8_TransitionCurveType) { set_attribute_value(0, (v1_StartPoint));set_attribute_value(1, (v2_StartDirection));set_attribute_value(2, (v3_SegmentLength)); if (v4_StartRadius) {set_attribute_value(3, (*v4_StartRadius)); } if (v5_EndRadius) {set_attribute_value(4, (*v5_EndRadius)); }set_attribute_value(5, (v6_IsStartRadiusCCW));set_attribute_value(6, (v7_IsEndRadiusCCW));set_attribute_value(7, (EnumerationReference(&::Ifc4x3_rc1::IfcTransitionCurveType::Class(),(size_t)v8_TransitionCurveType))); }
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// Function implementations for IfcTransportElement
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::Ifc4x3_rc1::IfcTransportElementTypeSelect Ifc4x3_rc1::IfcTransportElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcTransportElementTypeSelect{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcTransportElementTypeSelect>(); }
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void Ifc4x3_rc1::IfcTransportElement::setPredefinedType(const ::Ifc4x3_rc1::IfcTransportElementTypeSelect& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTransportElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1230]); }
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void Ifc4x3_rc1::IfcTransportElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, ::Ifc4x3_rc1::IfcTransportElementTypeSelect v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); }set_attribute_value(8, (v9_PredefinedType)); }
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// Function implementations for IfcTransportElementType
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::Ifc4x3_rc1::IfcTransportElementTypeSelect Ifc4x3_rc1::IfcTransportElementType::PredefinedType() const { return ((express::Base)(get_attribute_value(9))).as<::Ifc4x3_rc1::IfcTransportElementTypeSelect>(); }
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void Ifc4x3_rc1::IfcTransportElementType::setPredefinedType(const ::Ifc4x3_rc1::IfcTransportElementTypeSelect& v) { set_attribute_value(9, v);if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTransportElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1233]); }
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void Ifc4x3_rc1::IfcTransportElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcTransportElementTypeSelect v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (v10_PredefinedType)); }
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// Function implementations for IfcTrapeziumProfileDef
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double Ifc4x3_rc1::IfcTrapeziumProfileDef::BottomXDim() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcTrapeziumProfileDef::setBottomXDim(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcTrapeziumProfileDef::TopXDim() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTrapeziumProfileDef::setTopXDim(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcTrapeziumProfileDef::YDim() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcTrapeziumProfileDef::setYDim(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcTrapeziumProfileDef::TopXOffset() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcTrapeziumProfileDef::setTopXOffset(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTrapeziumProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1235]); }
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void Ifc4x3_rc1::IfcTrapeziumProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_BottomXDim, double v5_TopXDim, double v6_YDim, double v7_TopXOffset) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_BottomXDim));set_attribute_value(4, (v5_TopXDim));set_attribute_value(5, (v6_YDim));set_attribute_value(6, (v7_TopXOffset)); }
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// Function implementations for IfcTriangulatedFaceSet
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std::optional< std::vector< std::vector< double > > > Ifc4x3_rc1::IfcTriangulatedFaceSet::Normals() const { if(get_attribute_value(1).isNull()) { return std::nullopt; } std::vector< std::vector< double > > v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcTriangulatedFaceSet::setNormals(const std::optional< std::vector< std::vector< double > > >& v) { if (v) {set_attribute_value(1, *v);} else {unset_attribute_value(1);} }
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std::optional< bool > Ifc4x3_rc1::IfcTriangulatedFaceSet::Closed() const { if(get_attribute_value(2).isNull()) { return std::nullopt; } bool v = get_attribute_value(2); return v; }
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void Ifc4x3_rc1::IfcTriangulatedFaceSet::setClosed(const std::optional< bool >& v) { if (v) {set_attribute_value(2, *v);} else {unset_attribute_value(2);} }
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std::vector< std::vector< int > > Ifc4x3_rc1::IfcTriangulatedFaceSet::CoordIndex() const { std::vector< std::vector< int > > v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcTriangulatedFaceSet::setCoordIndex(const std::vector< std::vector< int > >& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::vector< int > /*[1:?]*/ > Ifc4x3_rc1::IfcTriangulatedFaceSet::PnIndex() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::vector< int > /*[1:?]*/ v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTriangulatedFaceSet::setPnIndex(const std::optional< std::vector< int > /*[1:?]*/ >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTriangulatedFaceSet::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1236]); }
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void Ifc4x3_rc1::IfcTriangulatedFaceSet::initialize(::Ifc4x3_rc1::IfcCartesianPointList3D v1_Coordinates, std::optional< std::vector< std::vector< double > > > v2_Normals, std::optional< bool > v3_Closed, std::vector< std::vector< int > > v4_CoordIndex, std::optional< std::vector< int > /*[1:?]*/ > v5_PnIndex) { set_attribute_value(0, (v1_Coordinates)); if (v2_Normals) {set_attribute_value(1, (*v2_Normals)); } if (v3_Closed) {set_attribute_value(2, (*v3_Closed)); }set_attribute_value(3, (v4_CoordIndex)); if (v5_PnIndex) {set_attribute_value(4, (*v5_PnIndex)); } }
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// Function implementations for IfcTriangulatedIrregularNetwork
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std::vector< int > /*[1:?]*/ Ifc4x3_rc1::IfcTriangulatedIrregularNetwork::Flags() const { std::vector< int > /*[1:?]*/ v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcTriangulatedIrregularNetwork::setFlags(const std::vector< int > /*[1:?]*/& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTriangulatedIrregularNetwork::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1237]); }
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void Ifc4x3_rc1::IfcTriangulatedIrregularNetwork::initialize(::Ifc4x3_rc1::IfcCartesianPointList3D v1_Coordinates, std::optional< std::vector< std::vector< double > > > v2_Normals, std::optional< bool > v3_Closed, std::vector< std::vector< int > > v4_CoordIndex, std::optional< std::vector< int > /*[1:?]*/ > v5_PnIndex, std::vector< int > /*[1:?]*/ v6_Flags) { set_attribute_value(0, (v1_Coordinates)); if (v2_Normals) {set_attribute_value(1, (*v2_Normals)); } if (v3_Closed) {set_attribute_value(2, (*v3_Closed)); }set_attribute_value(3, (v4_CoordIndex)); if (v5_PnIndex) {set_attribute_value(4, (*v5_PnIndex)); }set_attribute_value(5, (v6_Flags)); }
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// Function implementations for IfcTrimmedCurve
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::Ifc4x3_rc1::IfcCurve Ifc4x3_rc1::IfcTrimmedCurve::BasisCurve() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcCurve>(); }
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void Ifc4x3_rc1::IfcTrimmedCurve::setBasisCurve(const ::Ifc4x3_rc1::IfcCurve& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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std::vector< ::Ifc4x3_rc1::IfcTrimmingSelect > Ifc4x3_rc1::IfcTrimmedCurve::Trim1() const { std::vector<express::Base> es = get_attribute_value(1); return cast_vector<::Ifc4x3_rc1::IfcTrimmingSelect>(es); }
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void Ifc4x3_rc1::IfcTrimmedCurve::setTrim1(const std::vector< ::Ifc4x3_rc1::IfcTrimmingSelect >& v) { set_attribute_value(1, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(1); }
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std::vector< ::Ifc4x3_rc1::IfcTrimmingSelect > Ifc4x3_rc1::IfcTrimmedCurve::Trim2() const { std::vector<express::Base> es = get_attribute_value(2); return cast_vector<::Ifc4x3_rc1::IfcTrimmingSelect>(es); }
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void Ifc4x3_rc1::IfcTrimmedCurve::setTrim2(const std::vector< ::Ifc4x3_rc1::IfcTrimmingSelect >& v) { set_attribute_value(2, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(2); }
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bool Ifc4x3_rc1::IfcTrimmedCurve::SenseAgreement() const { bool v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcTrimmedCurve::setSenseAgreement(const bool& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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::Ifc4x3_rc1::IfcTrimmingPreference::Value Ifc4x3_rc1::IfcTrimmedCurve::MasterRepresentation() const { return ::Ifc4x3_rc1::IfcTrimmingPreference::FromString(get_attribute_value(4)); }
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void Ifc4x3_rc1::IfcTrimmedCurve::setMasterRepresentation(const ::Ifc4x3_rc1::IfcTrimmingPreference::Value& v) { set_attribute_value(4, EnumerationReference(&::Ifc4x3_rc1::IfcTrimmingPreference::Class(), (size_t) v));if constexpr (false)unset_attribute_value(4); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTrimmedCurve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1238]); }
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void Ifc4x3_rc1::IfcTrimmedCurve::initialize(::Ifc4x3_rc1::IfcCurve v1_BasisCurve, std::vector< ::Ifc4x3_rc1::IfcTrimmingSelect > v2_Trim1, std::vector< ::Ifc4x3_rc1::IfcTrimmingSelect > v3_Trim2, bool v4_SenseAgreement, ::Ifc4x3_rc1::IfcTrimmingPreference::Value v5_MasterRepresentation) { set_attribute_value(0, (v1_BasisCurve));set_attribute_value(1, cast_vector<express::Base>(v2_Trim1));set_attribute_value(2, cast_vector<express::Base>(v3_Trim2));set_attribute_value(3, (v4_SenseAgreement));set_attribute_value(4, (EnumerationReference(&::Ifc4x3_rc1::IfcTrimmingPreference::Class(),(size_t)v5_MasterRepresentation))); }
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// Function implementations for IfcTubeBundle
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std::optional< ::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value > Ifc4x3_rc1::IfcTubeBundle::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcTubeBundleTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcTubeBundle::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcTubeBundle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1242]); }
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void Ifc4x3_rc1::IfcTubeBundle::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcTubeBundleType
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::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value Ifc4x3_rc1::IfcTubeBundleType::PredefinedType() const { return ::Ifc4x3_rc1::IfcTubeBundleTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcTubeBundleType::setPredefinedType(const ::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTubeBundleType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1243]); }
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void Ifc4x3_rc1::IfcTubeBundleType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcTubeBundleTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcTypeObject
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std::optional< std::string > Ifc4x3_rc1::IfcTypeObject::ApplicableOccurrence() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcTypeObject::setApplicableOccurrence(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > Ifc4x3_rc1::IfcTypeObject::HasPropertySets() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(5); return cast_vector<::Ifc4x3_rc1::IfcPropertySetDefinition>(es); }
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void Ifc4x3_rc1::IfcTypeObject::setHasPropertySets(const std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > >& v) { if (v) {set_attribute_value(5, cast_vector<express::Base>(*v));} else {unset_attribute_value(5);} }
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std::vector<::Ifc4x3_rc1::IfcRelDefinesByType> Ifc4x3_rc1::IfcTypeObject::Types() const { return cast_vector<IfcRelDefinesByType>(file()->getInverse(data()->id(), IFC4X3_RC1_types[946], 5)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTypeObject::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1245]); }
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void Ifc4x3_rc1::IfcTypeObject::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } }
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// Function implementations for IfcTypeProcess
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std::optional< std::string > Ifc4x3_rc1::IfcTypeProcess::Identification() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcTypeProcess::setIdentification(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTypeProcess::LongDescription() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcTypeProcess::setLongDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTypeProcess::ProcessType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcTypeProcess::setProcessType(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::vector<::Ifc4x3_rc1::IfcRelAssignsToProcess> Ifc4x3_rc1::IfcTypeProcess::OperatesOn() const { return cast_vector<IfcRelAssignsToProcess>(file()->getInverse(data()->id(), IFC4X3_RC1_types[916], 6)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTypeProcess::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1246]); }
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void Ifc4x3_rc1::IfcTypeProcess::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ProcessType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ProcessType) {set_attribute_value(8, (*v9_ProcessType)); } }
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// Function implementations for IfcTypeProduct
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std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > Ifc4x3_rc1::IfcTypeProduct::RepresentationMaps() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(6); return cast_vector<::Ifc4x3_rc1::IfcRepresentationMap>(es); }
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void Ifc4x3_rc1::IfcTypeProduct::setRepresentationMaps(const std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > >& v) { if (v) {set_attribute_value(6, cast_vector<express::Base>(*v));} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTypeProduct::Tag() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcTypeProduct::setTag(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::vector<::Ifc4x3_rc1::IfcRelAssignsToProduct> Ifc4x3_rc1::IfcTypeProduct::ReferencedBy() const { return cast_vector<IfcRelAssignsToProduct>(file()->getInverse(data()->id(), IFC4X3_RC1_types[917], 6)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTypeProduct::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1247]); }
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void Ifc4x3_rc1::IfcTypeProduct::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcTypeResource
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std::optional< std::string > Ifc4x3_rc1::IfcTypeResource::Identification() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcTypeResource::setIdentification(const std::optional< std::string >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTypeResource::LongDescription() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::string v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcTypeResource::setLongDescription(const std::optional< std::string >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcTypeResource::ResourceType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcTypeResource::setResourceType(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::vector<::Ifc4x3_rc1::IfcRelAssignsToResource> Ifc4x3_rc1::IfcTypeResource::ResourceOf() const { return cast_vector<IfcRelAssignsToResource>(file()->getInverse(data()->id(), IFC4X3_RC1_types[918], 6)); }
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const IfcParse::entity& Ifc4x3_rc1::IfcTypeResource::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1248]); }
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void Ifc4x3_rc1::IfcTypeResource::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::string > v7_Identification, std::optional< std::string > v8_LongDescription, std::optional< std::string > v9_ResourceType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_Identification) {set_attribute_value(6, (*v7_Identification)); } if (v8_LongDescription) {set_attribute_value(7, (*v8_LongDescription)); } if (v9_ResourceType) {set_attribute_value(8, (*v9_ResourceType)); } }
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// Function implementations for IfcUShapeProfileDef
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double Ifc4x3_rc1::IfcUShapeProfileDef::Depth() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcUShapeProfileDef::setDepth(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcUShapeProfileDef::FlangeWidth() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcUShapeProfileDef::setFlangeWidth(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcUShapeProfileDef::WebThickness() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcUShapeProfileDef::setWebThickness(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcUShapeProfileDef::FlangeThickness() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcUShapeProfileDef::setFlangeThickness(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< double > Ifc4x3_rc1::IfcUShapeProfileDef::FilletRadius() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcUShapeProfileDef::setFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< double > Ifc4x3_rc1::IfcUShapeProfileDef::EdgeRadius() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcUShapeProfileDef::setEdgeRadius(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< double > Ifc4x3_rc1::IfcUShapeProfileDef::FlangeSlope() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcUShapeProfileDef::setFlangeSlope(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcUShapeProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1259]); }
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void Ifc4x3_rc1::IfcUShapeProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_Depth, double v5_FlangeWidth, double v6_WebThickness, double v7_FlangeThickness, std::optional< double > v8_FilletRadius, std::optional< double > v9_EdgeRadius, std::optional< double > v10_FlangeSlope) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_Depth));set_attribute_value(4, (v5_FlangeWidth));set_attribute_value(5, (v6_WebThickness));set_attribute_value(6, (v7_FlangeThickness)); if (v8_FilletRadius) {set_attribute_value(7, (*v8_FilletRadius)); } if (v9_EdgeRadius) {set_attribute_value(8, (*v9_EdgeRadius)); } if (v10_FlangeSlope) {set_attribute_value(9, (*v10_FlangeSlope)); } }
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// Function implementations for IfcUnitAssignment
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std::vector< ::Ifc4x3_rc1::IfcUnit > Ifc4x3_rc1::IfcUnitAssignment::Units() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcUnit>(es); }
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void Ifc4x3_rc1::IfcUnitAssignment::setUnits(const std::vector< ::Ifc4x3_rc1::IfcUnit >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcUnitAssignment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1256]); }
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void Ifc4x3_rc1::IfcUnitAssignment::initialize(std::vector< ::Ifc4x3_rc1::IfcUnit > v1_Units) { set_attribute_value(0, cast_vector<express::Base>(v1_Units)); }
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// Function implementations for IfcUnitaryControlElement
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std::optional< ::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value > Ifc4x3_rc1::IfcUnitaryControlElement::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcUnitaryControlElement::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcUnitaryControlElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1250]); }
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void Ifc4x3_rc1::IfcUnitaryControlElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcUnitaryControlElementType
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::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value Ifc4x3_rc1::IfcUnitaryControlElementType::PredefinedType() const { return ::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcUnitaryControlElementType::setPredefinedType(const ::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcUnitaryControlElementType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1251]); }
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void Ifc4x3_rc1::IfcUnitaryControlElementType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcUnitaryControlElementTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcUnitaryEquipment
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std::optional< ::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value > Ifc4x3_rc1::IfcUnitaryEquipment::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcUnitaryEquipment::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcUnitaryEquipment::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1253]); }
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void Ifc4x3_rc1::IfcUnitaryEquipment::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcUnitaryEquipmentType
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::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value Ifc4x3_rc1::IfcUnitaryEquipmentType::PredefinedType() const { return ::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcUnitaryEquipmentType::setPredefinedType(const ::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcUnitaryEquipmentType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1254]); }
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void Ifc4x3_rc1::IfcUnitaryEquipmentType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcUnitaryEquipmentTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcValve
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std::optional< ::Ifc4x3_rc1::IfcValveTypeEnum::Value > Ifc4x3_rc1::IfcValve::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcValveTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcValve::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcValveTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcValveTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcValve::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1261]); }
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void Ifc4x3_rc1::IfcValve::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcValveTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcValveTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcValveType
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::Ifc4x3_rc1::IfcValveTypeEnum::Value Ifc4x3_rc1::IfcValveType::PredefinedType() const { return ::Ifc4x3_rc1::IfcValveTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcValveType::setPredefinedType(const ::Ifc4x3_rc1::IfcValveTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcValveTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcValveType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1262]); }
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void Ifc4x3_rc1::IfcValveType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcValveTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcValveTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcVector
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::Ifc4x3_rc1::IfcDirection Ifc4x3_rc1::IfcVector::Orientation() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcDirection>(); }
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void Ifc4x3_rc1::IfcVector::setOrientation(const ::Ifc4x3_rc1::IfcDirection& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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double Ifc4x3_rc1::IfcVector::Magnitude() const { double v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcVector::setMagnitude(const double& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcVector::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1265]); }
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void Ifc4x3_rc1::IfcVector::initialize(::Ifc4x3_rc1::IfcDirection v1_Orientation, double v2_Magnitude) { set_attribute_value(0, (v1_Orientation));set_attribute_value(1, (v2_Magnitude)); }
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// Function implementations for IfcVertex
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const IfcParse::entity& Ifc4x3_rc1::IfcVertex::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1267]); }
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void Ifc4x3_rc1::IfcVertex::initialize() { }
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// Function implementations for IfcVertexLoop
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::Ifc4x3_rc1::IfcVertex Ifc4x3_rc1::IfcVertexLoop::LoopVertex() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcVertex>(); }
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void Ifc4x3_rc1::IfcVertexLoop::setLoopVertex(const ::Ifc4x3_rc1::IfcVertex& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcVertexLoop::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1268]); }
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void Ifc4x3_rc1::IfcVertexLoop::initialize(::Ifc4x3_rc1::IfcVertex v1_LoopVertex) { set_attribute_value(0, (v1_LoopVertex)); }
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// Function implementations for IfcVertexPoint
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::Ifc4x3_rc1::IfcPoint Ifc4x3_rc1::IfcVertexPoint::VertexGeometry() const { return ((express::Base)(get_attribute_value(0))).as<::Ifc4x3_rc1::IfcPoint>(); }
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void Ifc4x3_rc1::IfcVertexPoint::setVertexGeometry(const ::Ifc4x3_rc1::IfcPoint& v) { set_attribute_value(0, v);if constexpr (false)unset_attribute_value(0); }
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const IfcParse::entity& Ifc4x3_rc1::IfcVertexPoint::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1269]); }
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void Ifc4x3_rc1::IfcVertexPoint::initialize(::Ifc4x3_rc1::IfcPoint v1_VertexGeometry) { set_attribute_value(0, (v1_VertexGeometry)); }
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// Function implementations for IfcVibrationDamper
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std::optional< ::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value > Ifc4x3_rc1::IfcVibrationDamper::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcVibrationDamper::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcVibrationDamper::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1270]); }
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void Ifc4x3_rc1::IfcVibrationDamper::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcVibrationDamperType
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std::optional< ::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value > Ifc4x3_rc1::IfcVibrationDamperType::PredefinedType() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcVibrationDamperType::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value >& v) { if (v) {set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(9);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcVibrationDamperType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1271]); }
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void Ifc4x3_rc1::IfcVibrationDamperType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, std::optional< ::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Value > v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); } if (v10_PredefinedType) {set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcVibrationDamperTypeEnum::Class(),(size_t)*v10_PredefinedType))); } }
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// Function implementations for IfcVibrationIsolator
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std::optional< ::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value > Ifc4x3_rc1::IfcVibrationIsolator::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcVibrationIsolator::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcVibrationIsolator::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1273]); }
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void Ifc4x3_rc1::IfcVibrationIsolator::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcVibrationIsolatorType
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::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value Ifc4x3_rc1::IfcVibrationIsolatorType::PredefinedType() const { return ::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcVibrationIsolatorType::setPredefinedType(const ::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcVibrationIsolatorType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1274]); }
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void Ifc4x3_rc1::IfcVibrationIsolatorType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcVibrationIsolatorTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcVirtualElement
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const IfcParse::entity& Ifc4x3_rc1::IfcVirtualElement::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1276]); }
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void Ifc4x3_rc1::IfcVirtualElement::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcVirtualGridIntersection
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std::vector< ::Ifc4x3_rc1::IfcGridAxis > Ifc4x3_rc1::IfcVirtualGridIntersection::IntersectingAxes() const { std::vector<express::Base> es = get_attribute_value(0); return cast_vector<::Ifc4x3_rc1::IfcGridAxis>(es); }
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void Ifc4x3_rc1::IfcVirtualGridIntersection::setIntersectingAxes(const std::vector< ::Ifc4x3_rc1::IfcGridAxis >& v) { set_attribute_value(0, cast_vector<express::Base>(v));if constexpr (false)unset_attribute_value(0); }
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std::vector< double > /*[2:3]*/ Ifc4x3_rc1::IfcVirtualGridIntersection::OffsetDistances() const { std::vector< double > /*[2:3]*/ v = get_attribute_value(1); return v; }
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void Ifc4x3_rc1::IfcVirtualGridIntersection::setOffsetDistances(const std::vector< double > /*[2:3]*/& v) { set_attribute_value(1, v);if constexpr (false)unset_attribute_value(1); }
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const IfcParse::entity& Ifc4x3_rc1::IfcVirtualGridIntersection::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1277]); }
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void Ifc4x3_rc1::IfcVirtualGridIntersection::initialize(std::vector< ::Ifc4x3_rc1::IfcGridAxis > v1_IntersectingAxes, std::vector< double > /*[2:3]*/ v2_OffsetDistances) { set_attribute_value(0, cast_vector<express::Base>(v1_IntersectingAxes));set_attribute_value(1, (v2_OffsetDistances)); }
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// Function implementations for IfcVoidStratum
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const IfcParse::entity& Ifc4x3_rc1::IfcVoidStratum::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1280]); }
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void Ifc4x3_rc1::IfcVoidStratum::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcVoidingFeature
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std::optional< ::Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Value > Ifc4x3_rc1::IfcVoidingFeature::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcVoidingFeature::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcVoidingFeature::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1278]); }
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void Ifc4x3_rc1::IfcVoidingFeature::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcVoidingFeatureTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcWall
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std::optional< ::Ifc4x3_rc1::IfcWallTypeEnum::Value > Ifc4x3_rc1::IfcWall::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcWallTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcWall::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcWallTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcWallTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWall::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1283]); }
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void Ifc4x3_rc1::IfcWall::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcWallTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcWallTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcWallElementedCase
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const IfcParse::entity& Ifc4x3_rc1::IfcWallElementedCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1284]); }
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void Ifc4x3_rc1::IfcWallElementedCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcWallTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcWallTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcWallStandardCase
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const IfcParse::entity& Ifc4x3_rc1::IfcWallStandardCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1285]); }
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void Ifc4x3_rc1::IfcWallStandardCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcWallTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcWallTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcWallType
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::Ifc4x3_rc1::IfcWallTypeEnum::Value Ifc4x3_rc1::IfcWallType::PredefinedType() const { return ::Ifc4x3_rc1::IfcWallTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcWallType::setPredefinedType(const ::Ifc4x3_rc1::IfcWallTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcWallTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcWallType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1286]); }
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void Ifc4x3_rc1::IfcWallType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcWallTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcWallTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcWasteTerminal
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std::optional< ::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value > Ifc4x3_rc1::IfcWasteTerminal::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcWasteTerminal::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWasteTerminal::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1291]); }
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void Ifc4x3_rc1::IfcWasteTerminal::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< ::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcWasteTerminalType
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::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value Ifc4x3_rc1::IfcWasteTerminalType::PredefinedType() const { return ::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcWasteTerminalType::setPredefinedType(const ::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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const IfcParse::entity& Ifc4x3_rc1::IfcWasteTerminalType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1292]); }
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void Ifc4x3_rc1::IfcWasteTerminalType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Value v10_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcWasteTerminalTypeEnum::Class(),(size_t)v10_PredefinedType))); }
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// Function implementations for IfcWaterStratum
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const IfcParse::entity& Ifc4x3_rc1::IfcWaterStratum::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1294]); }
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void Ifc4x3_rc1::IfcWaterStratum::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } }
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// Function implementations for IfcWindow
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std::optional< double > Ifc4x3_rc1::IfcWindow::OverallHeight() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcWindow::setOverallHeight(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< double > Ifc4x3_rc1::IfcWindow::OverallWidth() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcWindow::setOverallWidth(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< ::Ifc4x3_rc1::IfcWindowTypeEnum::Value > Ifc4x3_rc1::IfcWindow::PredefinedType() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcWindowTypeEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcWindow::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcWindowTypeEnum::Value >& v) { if (v) {set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(10);} }
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std::optional< ::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value > Ifc4x3_rc1::IfcWindow::PartitioningType() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::FromString(get_attribute_value(11)); }
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void Ifc4x3_rc1::IfcWindow::setPartitioningType(const std::optional< ::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value >& v) { if (v) {set_attribute_value(11, EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Class(), (size_t) *v));} else {unset_attribute_value(11);} }
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std::optional< std::string > Ifc4x3_rc1::IfcWindow::UserDefinedPartitioningType() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } std::string v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcWindow::setUserDefinedPartitioningType(const std::optional< std::string >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWindow::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1295]); }
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void Ifc4x3_rc1::IfcWindow::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< double > v9_OverallHeight, std::optional< double > v10_OverallWidth, std::optional< ::Ifc4x3_rc1::IfcWindowTypeEnum::Value > v11_PredefinedType, std::optional< ::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value > v12_PartitioningType, std::optional< std::string > v13_UserDefinedPartitioningType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_OverallHeight) {set_attribute_value(8, (*v9_OverallHeight)); } if (v10_OverallWidth) {set_attribute_value(9, (*v10_OverallWidth)); } if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypeEnum::Class(),(size_t)*v11_PredefinedType))); } if (v12_PartitioningType) {set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Class(),(size_t)*v12_PartitioningType))); } if (v13_UserDefinedPartitioningType) {set_attribute_value(12, (*v13_UserDefinedPartitioningType)); } }
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// Function implementations for IfcWindowLiningProperties
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::LiningDepth() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setLiningDepth(const std::optional< double >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::LiningThickness() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setLiningThickness(const std::optional< double >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::TransomThickness() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setTransomThickness(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::MullionThickness() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setMullionThickness(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::FirstTransomOffset() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setFirstTransomOffset(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::SecondTransomOffset() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } double v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setSecondTransomOffset(const std::optional< double >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::FirstMullionOffset() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } double v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setFirstMullionOffset(const std::optional< double >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::SecondMullionOffset() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } double v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setSecondMullionOffset(const std::optional< double >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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::Ifc4x3_rc1::IfcShapeAspect Ifc4x3_rc1::IfcWindowLiningProperties::ShapeAspectStyle() const { if(get_attribute_value(12).isNull()) { return ::Ifc4x3_rc1::IfcShapeAspect{}; } return ((express::Base)(get_attribute_value(12))).as<::Ifc4x3_rc1::IfcShapeAspect>(); }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setShapeAspectStyle(const ::Ifc4x3_rc1::IfcShapeAspect& v) { set_attribute_value(12, v);if constexpr (false)unset_attribute_value(12); }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::LiningOffset() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } double v = get_attribute_value(13); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setLiningOffset(const std::optional< double >& v) { if (v) {set_attribute_value(13, *v);} else {unset_attribute_value(13);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::LiningToPanelOffsetX() const { if(get_attribute_value(14).isNull()) { return std::nullopt; } double v = get_attribute_value(14); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setLiningToPanelOffsetX(const std::optional< double >& v) { if (v) {set_attribute_value(14, *v);} else {unset_attribute_value(14);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowLiningProperties::LiningToPanelOffsetY() const { if(get_attribute_value(15).isNull()) { return std::nullopt; } double v = get_attribute_value(15); return v; }
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void Ifc4x3_rc1::IfcWindowLiningProperties::setLiningToPanelOffsetY(const std::optional< double >& v) { if (v) {set_attribute_value(15, *v);} else {unset_attribute_value(15);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWindowLiningProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1296]); }
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void Ifc4x3_rc1::IfcWindowLiningProperties::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< double > v5_LiningDepth, std::optional< double > v6_LiningThickness, std::optional< double > v7_TransomThickness, std::optional< double > v8_MullionThickness, std::optional< double > v9_FirstTransomOffset, std::optional< double > v10_SecondTransomOffset, std::optional< double > v11_FirstMullionOffset, std::optional< double > v12_SecondMullionOffset, ::Ifc4x3_rc1::IfcShapeAspect v13_ShapeAspectStyle, std::optional< double > v14_LiningOffset, std::optional< double > v15_LiningToPanelOffsetX, std::optional< double > v16_LiningToPanelOffsetY) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_LiningDepth) {set_attribute_value(4, (*v5_LiningDepth)); } if (v6_LiningThickness) {set_attribute_value(5, (*v6_LiningThickness)); } if (v7_TransomThickness) {set_attribute_value(6, (*v7_TransomThickness)); } if (v8_MullionThickness) {set_attribute_value(7, (*v8_MullionThickness)); } if (v9_FirstTransomOffset) {set_attribute_value(8, (*v9_FirstTransomOffset)); } if (v10_SecondTransomOffset) {set_attribute_value(9, (*v10_SecondTransomOffset)); } if (v11_FirstMullionOffset) {set_attribute_value(10, (*v11_FirstMullionOffset)); } if (v12_SecondMullionOffset) {set_attribute_value(11, (*v12_SecondMullionOffset)); }set_attribute_value(12, (v13_ShapeAspectStyle)); if (v14_LiningOffset) {set_attribute_value(13, (*v14_LiningOffset)); } if (v15_LiningToPanelOffsetX) {set_attribute_value(14, (*v15_LiningToPanelOffsetX)); } if (v16_LiningToPanelOffsetY) {set_attribute_value(15, (*v16_LiningToPanelOffsetY)); } }
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// Function implementations for IfcWindowPanelProperties
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::Ifc4x3_rc1::IfcWindowPanelOperationEnum::Value Ifc4x3_rc1::IfcWindowPanelProperties::OperationType() const { return ::Ifc4x3_rc1::IfcWindowPanelOperationEnum::FromString(get_attribute_value(4)); }
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void Ifc4x3_rc1::IfcWindowPanelProperties::setOperationType(const ::Ifc4x3_rc1::IfcWindowPanelOperationEnum::Value& v) { set_attribute_value(4, EnumerationReference(&::Ifc4x3_rc1::IfcWindowPanelOperationEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(4); }
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::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value Ifc4x3_rc1::IfcWindowPanelProperties::PanelPosition() const { return ::Ifc4x3_rc1::IfcWindowPanelPositionEnum::FromString(get_attribute_value(5)); }
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void Ifc4x3_rc1::IfcWindowPanelProperties::setPanelPosition(const ::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value& v) { set_attribute_value(5, EnumerationReference(&::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(5); }
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std::optional< double > Ifc4x3_rc1::IfcWindowPanelProperties::FrameDepth() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcWindowPanelProperties::setFrameDepth(const std::optional< double >& v) { if (v) {set_attribute_value(6, *v);} else {unset_attribute_value(6);} }
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std::optional< double > Ifc4x3_rc1::IfcWindowPanelProperties::FrameThickness() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcWindowPanelProperties::setFrameThickness(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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::Ifc4x3_rc1::IfcShapeAspect Ifc4x3_rc1::IfcWindowPanelProperties::ShapeAspectStyle() const { if(get_attribute_value(8).isNull()) { return ::Ifc4x3_rc1::IfcShapeAspect{}; } return ((express::Base)(get_attribute_value(8))).as<::Ifc4x3_rc1::IfcShapeAspect>(); }
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void Ifc4x3_rc1::IfcWindowPanelProperties::setShapeAspectStyle(const ::Ifc4x3_rc1::IfcShapeAspect& v) { set_attribute_value(8, v);if constexpr (false)unset_attribute_value(8); }
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const IfcParse::entity& Ifc4x3_rc1::IfcWindowPanelProperties::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1299]); }
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void Ifc4x3_rc1::IfcWindowPanelProperties::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, ::Ifc4x3_rc1::IfcWindowPanelOperationEnum::Value v5_OperationType, ::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Value v6_PanelPosition, std::optional< double > v7_FrameDepth, std::optional< double > v8_FrameThickness, ::Ifc4x3_rc1::IfcShapeAspect v9_ShapeAspectStyle) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); }set_attribute_value(4, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowPanelOperationEnum::Class(),(size_t)v5_OperationType)));set_attribute_value(5, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowPanelPositionEnum::Class(),(size_t)v6_PanelPosition))); if (v7_FrameDepth) {set_attribute_value(6, (*v7_FrameDepth)); } if (v8_FrameThickness) {set_attribute_value(7, (*v8_FrameThickness)); }set_attribute_value(8, (v9_ShapeAspectStyle)); }
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// Function implementations for IfcWindowStandardCase
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const IfcParse::entity& Ifc4x3_rc1::IfcWindowStandardCase::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1300]); }
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void Ifc4x3_rc1::IfcWindowStandardCase::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, ::Ifc4x3_rc1::IfcObjectPlacement v6_ObjectPlacement, ::Ifc4x3_rc1::IfcProductRepresentation v7_Representation, std::optional< std::string > v8_Tag, std::optional< double > v9_OverallHeight, std::optional< double > v10_OverallWidth, std::optional< ::Ifc4x3_rc1::IfcWindowTypeEnum::Value > v11_PredefinedType, std::optional< ::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value > v12_PartitioningType, std::optional< std::string > v13_UserDefinedPartitioningType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); }set_attribute_value(5, (v6_ObjectPlacement));set_attribute_value(6, (v7_Representation)); if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_OverallHeight) {set_attribute_value(8, (*v9_OverallHeight)); } if (v10_OverallWidth) {set_attribute_value(9, (*v10_OverallWidth)); } if (v11_PredefinedType) {set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypeEnum::Class(),(size_t)*v11_PredefinedType))); } if (v12_PartitioningType) {set_attribute_value(11, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Class(),(size_t)*v12_PartitioningType))); } if (v13_UserDefinedPartitioningType) {set_attribute_value(12, (*v13_UserDefinedPartitioningType)); } }
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// Function implementations for IfcWindowStyle
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::Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Value Ifc4x3_rc1::IfcWindowStyle::ConstructionType() const { return ::Ifc4x3_rc1::IfcWindowStyleConstructionEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcWindowStyle::setConstructionType(const ::Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Value& v) { set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(8); }
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::Ifc4x3_rc1::IfcWindowStyleOperationEnum::Value Ifc4x3_rc1::IfcWindowStyle::OperationType() const { return ::Ifc4x3_rc1::IfcWindowStyleOperationEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcWindowStyle::setOperationType(const ::Ifc4x3_rc1::IfcWindowStyleOperationEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcWindowStyleOperationEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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bool Ifc4x3_rc1::IfcWindowStyle::ParameterTakesPrecedence() const { bool v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcWindowStyle::setParameterTakesPrecedence(const bool& v) { set_attribute_value(10, v);if constexpr (false)unset_attribute_value(10); }
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bool Ifc4x3_rc1::IfcWindowStyle::Sizeable() const { bool v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcWindowStyle::setSizeable(const bool& v) { set_attribute_value(11, v);if constexpr (false)unset_attribute_value(11); }
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const IfcParse::entity& Ifc4x3_rc1::IfcWindowStyle::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1301]); }
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void Ifc4x3_rc1::IfcWindowStyle::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, ::Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Value v9_ConstructionType, ::Ifc4x3_rc1::IfcWindowStyleOperationEnum::Value v10_OperationType, bool v11_ParameterTakesPrecedence, bool v12_Sizeable) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); }set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowStyleConstructionEnum::Class(),(size_t)v9_ConstructionType)));set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowStyleOperationEnum::Class(),(size_t)v10_OperationType)));set_attribute_value(10, (v11_ParameterTakesPrecedence));set_attribute_value(11, (v12_Sizeable)); }
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// Function implementations for IfcWindowType
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::Ifc4x3_rc1::IfcWindowTypeEnum::Value Ifc4x3_rc1::IfcWindowType::PredefinedType() const { return ::Ifc4x3_rc1::IfcWindowTypeEnum::FromString(get_attribute_value(9)); }
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void Ifc4x3_rc1::IfcWindowType::setPredefinedType(const ::Ifc4x3_rc1::IfcWindowTypeEnum::Value& v) { set_attribute_value(9, EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypeEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(9); }
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::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value Ifc4x3_rc1::IfcWindowType::PartitioningType() const { return ::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::FromString(get_attribute_value(10)); }
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void Ifc4x3_rc1::IfcWindowType::setPartitioningType(const ::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value& v) { set_attribute_value(10, EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Class(), (size_t) v));if constexpr (false)unset_attribute_value(10); }
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std::optional< bool > Ifc4x3_rc1::IfcWindowType::ParameterTakesPrecedence() const { if(get_attribute_value(11).isNull()) { return std::nullopt; } bool v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcWindowType::setParameterTakesPrecedence(const std::optional< bool >& v) { if (v) {set_attribute_value(11, *v);} else {unset_attribute_value(11);} }
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std::optional< std::string > Ifc4x3_rc1::IfcWindowType::UserDefinedPartitioningType() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } std::string v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcWindowType::setUserDefinedPartitioningType(const std::optional< std::string >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWindowType::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1304]); }
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void Ifc4x3_rc1::IfcWindowType::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ApplicableOccurrence, std::optional< std::vector< ::Ifc4x3_rc1::IfcPropertySetDefinition > > v6_HasPropertySets, std::optional< std::vector< ::Ifc4x3_rc1::IfcRepresentationMap > > v7_RepresentationMaps, std::optional< std::string > v8_Tag, std::optional< std::string > v9_ElementType, ::Ifc4x3_rc1::IfcWindowTypeEnum::Value v10_PredefinedType, ::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Value v11_PartitioningType, std::optional< bool > v12_ParameterTakesPrecedence, std::optional< std::string > v13_UserDefinedPartitioningType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ApplicableOccurrence) {set_attribute_value(4, (*v5_ApplicableOccurrence)); } if (v6_HasPropertySets) {set_attribute_value(5, cast_vector<express::Base>(*v6_HasPropertySets)); } if (v7_RepresentationMaps) {set_attribute_value(6, cast_vector<express::Base>(*v7_RepresentationMaps)); } if (v8_Tag) {set_attribute_value(7, (*v8_Tag)); } if (v9_ElementType) {set_attribute_value(8, (*v9_ElementType)); }set_attribute_value(9, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypeEnum::Class(),(size_t)v10_PredefinedType)));set_attribute_value(10, (EnumerationReference(&::Ifc4x3_rc1::IfcWindowTypePartitioningEnum::Class(),(size_t)v11_PartitioningType))); if (v12_ParameterTakesPrecedence) {set_attribute_value(11, (*v12_ParameterTakesPrecedence)); } if (v13_UserDefinedPartitioningType) {set_attribute_value(12, (*v13_UserDefinedPartitioningType)); } }
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// Function implementations for IfcWorkCalendar
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std::optional< std::vector< ::Ifc4x3_rc1::IfcWorkTime > > Ifc4x3_rc1::IfcWorkCalendar::WorkingTimes() const { if(get_attribute_value(6).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(6); return cast_vector<::Ifc4x3_rc1::IfcWorkTime>(es); }
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void Ifc4x3_rc1::IfcWorkCalendar::setWorkingTimes(const std::optional< std::vector< ::Ifc4x3_rc1::IfcWorkTime > >& v) { if (v) {set_attribute_value(6, cast_vector<express::Base>(*v));} else {unset_attribute_value(6);} }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcWorkTime > > Ifc4x3_rc1::IfcWorkCalendar::ExceptionTimes() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcWorkTime>(es); }
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void Ifc4x3_rc1::IfcWorkCalendar::setExceptionTimes(const std::optional< std::vector< ::Ifc4x3_rc1::IfcWorkTime > >& v) { if (v) {set_attribute_value(7, cast_vector<express::Base>(*v));} else {unset_attribute_value(7);} }
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std::optional< ::Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Value > Ifc4x3_rc1::IfcWorkCalendar::PredefinedType() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcWorkCalendarTypeEnum::FromString(get_attribute_value(8)); }
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void Ifc4x3_rc1::IfcWorkCalendar::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Value >& v) { if (v) {set_attribute_value(8, EnumerationReference(&::Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWorkCalendar::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1307]); }
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void Ifc4x3_rc1::IfcWorkCalendar::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::optional< std::vector< ::Ifc4x3_rc1::IfcWorkTime > > v7_WorkingTimes, std::optional< std::vector< ::Ifc4x3_rc1::IfcWorkTime > > v8_ExceptionTimes, std::optional< ::Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Value > v9_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); } if (v7_WorkingTimes) {set_attribute_value(6, cast_vector<express::Base>(*v7_WorkingTimes)); } if (v8_ExceptionTimes) {set_attribute_value(7, cast_vector<express::Base>(*v8_ExceptionTimes)); } if (v9_PredefinedType) {set_attribute_value(8, (EnumerationReference(&::Ifc4x3_rc1::IfcWorkCalendarTypeEnum::Class(),(size_t)*v9_PredefinedType))); } }
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// Function implementations for IfcWorkControl
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std::string Ifc4x3_rc1::IfcWorkControl::CreationDate() const { std::string v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcWorkControl::setCreationDate(const std::string& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< std::vector< ::Ifc4x3_rc1::IfcPerson > > Ifc4x3_rc1::IfcWorkControl::Creators() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } std::vector<express::Base> es = get_attribute_value(7); return cast_vector<::Ifc4x3_rc1::IfcPerson>(es); }
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void Ifc4x3_rc1::IfcWorkControl::setCreators(const std::optional< std::vector< ::Ifc4x3_rc1::IfcPerson > >& v) { if (v) {set_attribute_value(7, cast_vector<express::Base>(*v));} else {unset_attribute_value(7);} }
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std::optional< std::string > Ifc4x3_rc1::IfcWorkControl::Purpose() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } std::string v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcWorkControl::setPurpose(const std::optional< std::string >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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std::optional< std::string > Ifc4x3_rc1::IfcWorkControl::Duration() const { if(get_attribute_value(9).isNull()) { return std::nullopt; } std::string v = get_attribute_value(9); return v; }
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void Ifc4x3_rc1::IfcWorkControl::setDuration(const std::optional< std::string >& v) { if (v) {set_attribute_value(9, *v);} else {unset_attribute_value(9);} }
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std::optional< std::string > Ifc4x3_rc1::IfcWorkControl::TotalFloat() const { if(get_attribute_value(10).isNull()) { return std::nullopt; } std::string v = get_attribute_value(10); return v; }
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void Ifc4x3_rc1::IfcWorkControl::setTotalFloat(const std::optional< std::string >& v) { if (v) {set_attribute_value(10, *v);} else {unset_attribute_value(10);} }
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std::string Ifc4x3_rc1::IfcWorkControl::StartTime() const { std::string v = get_attribute_value(11); return v; }
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void Ifc4x3_rc1::IfcWorkControl::setStartTime(const std::string& v) { set_attribute_value(11, v);if constexpr (false)unset_attribute_value(11); }
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std::optional< std::string > Ifc4x3_rc1::IfcWorkControl::FinishTime() const { if(get_attribute_value(12).isNull()) { return std::nullopt; } std::string v = get_attribute_value(12); return v; }
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void Ifc4x3_rc1::IfcWorkControl::setFinishTime(const std::optional< std::string >& v) { if (v) {set_attribute_value(12, *v);} else {unset_attribute_value(12);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWorkControl::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1309]); }
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void Ifc4x3_rc1::IfcWorkControl::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::string v7_CreationDate, std::optional< std::vector< ::Ifc4x3_rc1::IfcPerson > > v8_Creators, std::optional< std::string > v9_Purpose, std::optional< std::string > v10_Duration, std::optional< std::string > v11_TotalFloat, std::string v12_StartTime, std::optional< std::string > v13_FinishTime) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); }set_attribute_value(6, (v7_CreationDate)); if (v8_Creators) {set_attribute_value(7, cast_vector<express::Base>(*v8_Creators)); } if (v9_Purpose) {set_attribute_value(8, (*v9_Purpose)); } if (v10_Duration) {set_attribute_value(9, (*v10_Duration)); } if (v11_TotalFloat) {set_attribute_value(10, (*v11_TotalFloat)); }set_attribute_value(11, (v12_StartTime)); if (v13_FinishTime) {set_attribute_value(12, (*v13_FinishTime)); } }
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// Function implementations for IfcWorkPlan
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std::optional< ::Ifc4x3_rc1::IfcWorkPlanTypeEnum::Value > Ifc4x3_rc1::IfcWorkPlan::PredefinedType() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcWorkPlanTypeEnum::FromString(get_attribute_value(13)); }
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void Ifc4x3_rc1::IfcWorkPlan::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcWorkPlanTypeEnum::Value >& v) { if (v) {set_attribute_value(13, EnumerationReference(&::Ifc4x3_rc1::IfcWorkPlanTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(13);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWorkPlan::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1310]); }
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void Ifc4x3_rc1::IfcWorkPlan::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::string v7_CreationDate, std::optional< std::vector< ::Ifc4x3_rc1::IfcPerson > > v8_Creators, std::optional< std::string > v9_Purpose, std::optional< std::string > v10_Duration, std::optional< std::string > v11_TotalFloat, std::string v12_StartTime, std::optional< std::string > v13_FinishTime, std::optional< ::Ifc4x3_rc1::IfcWorkPlanTypeEnum::Value > v14_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); }set_attribute_value(6, (v7_CreationDate)); if (v8_Creators) {set_attribute_value(7, cast_vector<express::Base>(*v8_Creators)); } if (v9_Purpose) {set_attribute_value(8, (*v9_Purpose)); } if (v10_Duration) {set_attribute_value(9, (*v10_Duration)); } if (v11_TotalFloat) {set_attribute_value(10, (*v11_TotalFloat)); }set_attribute_value(11, (v12_StartTime)); if (v13_FinishTime) {set_attribute_value(12, (*v13_FinishTime)); } if (v14_PredefinedType) {set_attribute_value(13, (EnumerationReference(&::Ifc4x3_rc1::IfcWorkPlanTypeEnum::Class(),(size_t)*v14_PredefinedType))); } }
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// Function implementations for IfcWorkSchedule
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std::optional< ::Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Value > Ifc4x3_rc1::IfcWorkSchedule::PredefinedType() const { if(get_attribute_value(13).isNull()) { return std::nullopt; } return ::Ifc4x3_rc1::IfcWorkScheduleTypeEnum::FromString(get_attribute_value(13)); }
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void Ifc4x3_rc1::IfcWorkSchedule::setPredefinedType(const std::optional< ::Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Value >& v) { if (v) {set_attribute_value(13, EnumerationReference(&::Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Class(), (size_t) *v));} else {unset_attribute_value(13);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWorkSchedule::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1312]); }
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void Ifc4x3_rc1::IfcWorkSchedule::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_Identification, std::string v7_CreationDate, std::optional< std::vector< ::Ifc4x3_rc1::IfcPerson > > v8_Creators, std::optional< std::string > v9_Purpose, std::optional< std::string > v10_Duration, std::optional< std::string > v11_TotalFloat, std::string v12_StartTime, std::optional< std::string > v13_FinishTime, std::optional< ::Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Value > v14_PredefinedType) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_Identification) {set_attribute_value(5, (*v6_Identification)); }set_attribute_value(6, (v7_CreationDate)); if (v8_Creators) {set_attribute_value(7, cast_vector<express::Base>(*v8_Creators)); } if (v9_Purpose) {set_attribute_value(8, (*v9_Purpose)); } if (v10_Duration) {set_attribute_value(9, (*v10_Duration)); } if (v11_TotalFloat) {set_attribute_value(10, (*v11_TotalFloat)); }set_attribute_value(11, (v12_StartTime)); if (v13_FinishTime) {set_attribute_value(12, (*v13_FinishTime)); } if (v14_PredefinedType) {set_attribute_value(13, (EnumerationReference(&::Ifc4x3_rc1::IfcWorkScheduleTypeEnum::Class(),(size_t)*v14_PredefinedType))); } }
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// Function implementations for IfcWorkTime
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::Ifc4x3_rc1::IfcRecurrencePattern Ifc4x3_rc1::IfcWorkTime::RecurrencePattern() const { if(get_attribute_value(3).isNull()) { return ::Ifc4x3_rc1::IfcRecurrencePattern{}; } return ((express::Base)(get_attribute_value(3))).as<::Ifc4x3_rc1::IfcRecurrencePattern>(); }
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void Ifc4x3_rc1::IfcWorkTime::setRecurrencePattern(const ::Ifc4x3_rc1::IfcRecurrencePattern& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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std::optional< std::string > Ifc4x3_rc1::IfcWorkTime::Start() const { if(get_attribute_value(4).isNull()) { return std::nullopt; } std::string v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcWorkTime::setStart(const std::optional< std::string >& v) { if (v) {set_attribute_value(4, *v);} else {unset_attribute_value(4);} }
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std::optional< std::string > Ifc4x3_rc1::IfcWorkTime::Finish() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcWorkTime::setFinish(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcWorkTime::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1314]); }
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void Ifc4x3_rc1::IfcWorkTime::initialize(std::optional< std::string > v1_Name, std::optional< ::Ifc4x3_rc1::IfcDataOriginEnum::Value > v2_DataOrigin, std::optional< std::string > v3_UserDefinedDataOrigin, ::Ifc4x3_rc1::IfcRecurrencePattern v4_RecurrencePattern, std::optional< std::string > v5_Start, std::optional< std::string > v6_Finish) { if (v1_Name) {set_attribute_value(0, (*v1_Name)); } if (v2_DataOrigin) {set_attribute_value(1, (EnumerationReference(&::Ifc4x3_rc1::IfcDataOriginEnum::Class(),(size_t)*v2_DataOrigin))); } if (v3_UserDefinedDataOrigin) {set_attribute_value(2, (*v3_UserDefinedDataOrigin)); }set_attribute_value(3, (v4_RecurrencePattern)); if (v5_Start) {set_attribute_value(4, (*v5_Start)); } if (v6_Finish) {set_attribute_value(5, (*v6_Finish)); } }
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// Function implementations for IfcZShapeProfileDef
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double Ifc4x3_rc1::IfcZShapeProfileDef::Depth() const { double v = get_attribute_value(3); return v; }
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void Ifc4x3_rc1::IfcZShapeProfileDef::setDepth(const double& v) { set_attribute_value(3, v);if constexpr (false)unset_attribute_value(3); }
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double Ifc4x3_rc1::IfcZShapeProfileDef::FlangeWidth() const { double v = get_attribute_value(4); return v; }
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void Ifc4x3_rc1::IfcZShapeProfileDef::setFlangeWidth(const double& v) { set_attribute_value(4, v);if constexpr (false)unset_attribute_value(4); }
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double Ifc4x3_rc1::IfcZShapeProfileDef::WebThickness() const { double v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcZShapeProfileDef::setWebThickness(const double& v) { set_attribute_value(5, v);if constexpr (false)unset_attribute_value(5); }
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double Ifc4x3_rc1::IfcZShapeProfileDef::FlangeThickness() const { double v = get_attribute_value(6); return v; }
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void Ifc4x3_rc1::IfcZShapeProfileDef::setFlangeThickness(const double& v) { set_attribute_value(6, v);if constexpr (false)unset_attribute_value(6); }
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std::optional< double > Ifc4x3_rc1::IfcZShapeProfileDef::FilletRadius() const { if(get_attribute_value(7).isNull()) { return std::nullopt; } double v = get_attribute_value(7); return v; }
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void Ifc4x3_rc1::IfcZShapeProfileDef::setFilletRadius(const std::optional< double >& v) { if (v) {set_attribute_value(7, *v);} else {unset_attribute_value(7);} }
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std::optional< double > Ifc4x3_rc1::IfcZShapeProfileDef::EdgeRadius() const { if(get_attribute_value(8).isNull()) { return std::nullopt; } double v = get_attribute_value(8); return v; }
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void Ifc4x3_rc1::IfcZShapeProfileDef::setEdgeRadius(const std::optional< double >& v) { if (v) {set_attribute_value(8, *v);} else {unset_attribute_value(8);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcZShapeProfileDef::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1316]); }
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void Ifc4x3_rc1::IfcZShapeProfileDef::initialize(::Ifc4x3_rc1::IfcProfileTypeEnum::Value v1_ProfileType, std::optional< std::string > v2_ProfileName, ::Ifc4x3_rc1::IfcAxis2Placement2D v3_Position, double v4_Depth, double v5_FlangeWidth, double v6_WebThickness, double v7_FlangeThickness, std::optional< double > v8_FilletRadius, std::optional< double > v9_EdgeRadius) { set_attribute_value(0, (EnumerationReference(&::Ifc4x3_rc1::IfcProfileTypeEnum::Class(),(size_t)v1_ProfileType))); if (v2_ProfileName) {set_attribute_value(1, (*v2_ProfileName)); }set_attribute_value(2, (v3_Position));set_attribute_value(3, (v4_Depth));set_attribute_value(4, (v5_FlangeWidth));set_attribute_value(5, (v6_WebThickness));set_attribute_value(6, (v7_FlangeThickness)); if (v8_FilletRadius) {set_attribute_value(7, (*v8_FilletRadius)); } if (v9_EdgeRadius) {set_attribute_value(8, (*v9_EdgeRadius)); } }
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// Function implementations for IfcZone
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std::optional< std::string > Ifc4x3_rc1::IfcZone::LongName() const { if(get_attribute_value(5).isNull()) { return std::nullopt; } std::string v = get_attribute_value(5); return v; }
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void Ifc4x3_rc1::IfcZone::setLongName(const std::optional< std::string >& v) { if (v) {set_attribute_value(5, *v);} else {unset_attribute_value(5);} }
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const IfcParse::entity& Ifc4x3_rc1::IfcZone::Class() { return *((IfcParse::entity*)IFC4X3_RC1_types[1315]); }
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void Ifc4x3_rc1::IfcZone::initialize(std::string v1_GlobalId, ::Ifc4x3_rc1::IfcOwnerHistory v2_OwnerHistory, std::optional< std::string > v3_Name, std::optional< std::string > v4_Description, std::optional< std::string > v5_ObjectType, std::optional< std::string > v6_LongName) { set_attribute_value(0, (v1_GlobalId));set_attribute_value(1, (v2_OwnerHistory)); if (v3_Name) {set_attribute_value(2, (*v3_Name)); } if (v4_Description) {set_attribute_value(3, (*v4_Description)); } if (v5_ObjectType) {set_attribute_value(4, (*v5_ObjectType)); } if (v6_LongName) {set_attribute_value(5, (*v6_LongName)); } }
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