/******************************************************************************** * * * This file is part of IfcOpenShell. * * * * IfcOpenShell is free software: you can redistribute it and/or modify * * it under the terms of the Lesser GNU General Public License as published by * * the Free Software Foundation, either version 3.0 of the License, or * * (at your option) any later version. * * * * IfcOpenShell is distributed in the hope that it will be useful, * * but WITHOUT ANY WARRANTY; without even the implied warranty of * * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * * Lesser GNU General Public License for more details. * * * * You should have received a copy of the Lesser GNU General Public License * * along with this program. If not, see . * * * ********************************************************************************/ #ifndef IFCBASECLASS_H #define IFCBASECLASS_H #include "Argument.h" #include "ifc_parse_api.h" #include "IfcEntityInstanceData.h" #include "IfcSchema.h" #include "utils.h" #include #include #include class aggregate_of_instance; namespace IfcParse { class IfcFile; } namespace IfcUtil { class IFC_PARSE_API IfcBaseInterface { protected: static bool is_null(const IfcBaseInterface* not_this) { return not_this == nullptr; } template std::enable_if_t::value && !std::is_same::value && !std::is_same::value> raise_error_on_concrete_class() const { throw IfcParse::IfcException("Instance of type " + this->declaration().name() + " cannot be cast to " + T::Class().name()); } template std::enable_if_t::value || std::is_same::value || std::is_same::value> raise_error_on_concrete_class() const { throw IfcParse::IfcException("Instance of type " + this->declaration().name() + " cannot be cast to base class"); } public: virtual const IfcEntityInstanceData& data() const = 0; virtual IfcEntityInstanceData& data() = 0; virtual const IfcParse::declaration& declaration() const = 0; virtual ~IfcBaseInterface() {} template T* as(bool do_throw = false) { // @todo: do not allow this to be null in the first place if (is_null(this)) { return static_cast(0); } auto type = dynamic_cast(this); if (do_throw && !type) { raise_error_on_concrete_class(); } return type; } template const T* as(bool do_throw = false) const { if (is_null(this)) { return static_cast(0); } auto type = dynamic_cast(this); if (do_throw && !type) { raise_error_on_concrete_class(); } return type; } }; class IFC_PARSE_API IfcBaseClass : public virtual IfcBaseInterface { protected: static std::atomic_uint32_t counter_; uint32_t identity_; public: uint32_t id_; IfcParse::IfcFile* file_; protected: IfcEntityInstanceData data_; public: IfcBaseClass(IfcEntityInstanceData&& data); const IfcEntityInstanceData& data() const { return data_; } IfcEntityInstanceData& data() { return data_; } virtual const IfcParse::declaration& declaration() const = 0; template typename std::enable_if< (!(std::is_pointer::value && std::is_base_of::type>::value) || std::is_same_v>), void>::type set_attribute_value(size_t i, const T& t); template typename std::enable_if< (!(std::is_pointer::value&& std::is_base_of::type>::value) || std::is_same_v>), void>::type set_attribute_value(const std::string& name, const T& t); void set_attribute_value(size_t i, IfcUtil::IfcBaseClass* p); void set_attribute_value(const std::string& name, IfcUtil::IfcBaseClass* p); void unset_attribute_value(size_t i); AttributeValue get_attribute_value(size_t index) const; uint32_t identity() const { return identity_; } uint32_t id() const { return id_; } void toString(std::ostream&, bool upper = false) const; typedef aggregate_of_instance list; }; class IFC_PARSE_API IfcBaseEntity : public IfcBaseClass { public: IfcBaseEntity(IfcEntityInstanceData&& data); IfcBaseEntity(size_t n) : IfcBaseClass(IfcEntityInstanceData(in_memory_attribute_storage(n))) {} virtual const IfcParse::declaration& declaration() const = 0; AttributeValue get(const std::string& name) const; template T get_value(const std::string& name) const; template T get_value(const std::string& name, const T& default_value) const; boost::shared_ptr get_inverse(const std::string& name) const; unsigned set_id(const boost::optional& i); void populate_derived(); }; class IFC_PARSE_API IfcLateBoundEntity : public IfcBaseEntity { private: const IfcParse::declaration* decl_; public: IfcLateBoundEntity(const IfcParse::declaration* decl, IfcEntityInstanceData&& data) : IfcBaseEntity(std::move(data)), decl_(decl) {} virtual const IfcParse::declaration& declaration() const { return *decl_; } }; // TODO: Investigate whether these should be template classes instead class IFC_PARSE_API IfcBaseType : public IfcBaseClass { public: IfcBaseType(IfcEntityInstanceData&& data)\ : IfcBaseClass(std::move(data)) {} IfcBaseType() : IfcBaseClass(IfcEntityInstanceData(in_memory_attribute_storage(1))) {} virtual const IfcParse::declaration& declaration() const = 0; }; } // namespace IfcUtil namespace IfcUtil { template T IfcBaseEntity::get_value(const std::string& name) const { auto attr = get(name); return (T) attr; } template T IfcBaseEntity::get_value(const std::string& name, const T& default_value) const { auto attr = get(name); if (attr.isNull()) { return default_value; } return (T) attr; } } // namespace IfcUtil template typename U::list::ptr aggregate_of_instance::as() { typename U::list::ptr result(new typename U::list); for (it i = begin(); i != end(); ++i) { if ((*i)->template as()) { result->push((*i)->template as()); } } return result; } template typename aggregate_of_aggregate_of::ptr aggregate_of_aggregate_of_instance::as() { typename aggregate_of_aggregate_of::ptr result(new aggregate_of_aggregate_of); for (outer_it outer = begin(); outer != end(); ++outer) { const std::vector& from = *outer; typename std::vector to; for (inner_it inner = from.begin(); inner != from.end(); ++inner) { if ((*inner)->template as()) { to.push_back((*inner)->template as()); } } result->push(to); } return result; } #endif