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IfcOpenShell/src/ifcparse/IfcEntityInstanceData.h
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2024-08-23 20:29:07 +02:00

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/********************************************************************************
* *
* 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 <http://www.gnu.org/licenses/>. *
* *
********************************************************************************/
#ifndef IFCENTITYINSTANCEDATA_H
#define IFCENTITYINSTANCEDATA_H
#include "ArgumentType.h"
#include "variantarray.h"
#include "aggregate_of_instance.h"
#include "IfcSchema.h"
#include <boost/optional.hpp>
#include <boost/shared_ptr.hpp>
#include <boost/logic/tribool.hpp>
#include <boost/dynamic_bitset.hpp>
class EnumerationReference {
private:
const IfcParse::enumeration_type* enumeration_;
size_t index_;
public:
EnumerationReference(const IfcParse::enumeration_type* enumeration, size_t index)
: enumeration_(enumeration)
, index_(index)
{}
const char* value() const {
return enumeration_->lookup_enum_value(index_);
}
size_t index() const {
return index_;
}
const IfcParse::enumeration_type* enumeration() const {
return enumeration_;
}
};
class Blank {};
class Derived {};
class empty_aggregate_t {};
class empty_aggregate_of_aggregate_t {};
typedef VariantArray <
// A null argument, it will always serialize to $
Blank,
// @todo Derived is not really necessary anymore, just serialize correctly based on schema
// A derived argument, it will always serialize to *
Derived,
// An integer argument, e.g. 123
// SCALARS:
int,
// A boolean argument, it will serialize to either .T. or .F.
bool,
// A logical argument, it will serialize to either .T. or .F. or .U.
boost::logic::tribool,
// A floating point argument, e.g. 12.3
double,
// A character string argument, e.g. 'IfcOpenShell'
std::string,
// A binary argument, e.g. "092A" -> 100100101010
boost::dynamic_bitset<>,
// An enumeration argument, e.g. .USERDEFINED.
// To initialize the argument a string representation
// has to be explicitly passed of the enumeration value
// which is stored internally as an integer. The argument
// itself does not keep track of what schema enumeration
// type is represented.
EnumerationReference,
// An entity instance argument. It will either serialize to
// e.g. #123 or datatype identifier for simple types, e.g.
// IFCREAL(12.3)
IfcUtil::IfcBaseClass*,
// AGGREGATES:
empty_aggregate_t,
// An aggregate of integers, e.g. (1,2,3)
std::vector<int>,
// An aggregate of floats, e.g. (12.3,4.)
std::vector<double>,
// An aggregate of strings, e.g. ('Ifc','Open','Shell')
std::vector<std::string>,
// An aggregate of binaries, e.g. ("23B", "092A") -> (111011, 100100101010)
std::vector<boost::dynamic_bitset<>>,
// An aggregate of entity instances. It will either serialize to
// e.g. (#1,#2,#3) or datatype identifier for simple types,
// e.g. (IFCREAL(1.2),IFCINTEGER(3.))
aggregate_of_instance::ptr,
// AGGREGATES OF AGGREGATES:
empty_aggregate_of_aggregate_t,
// An aggregate of an aggregate of ints. E.g. ((1, 2), (3))
std::vector<std::vector<int>>,
// An aggregate of an aggregate of floats. E.g. ((1., 2.3), (4.))
std::vector<std::vector<double>>,
// An aggregate of an aggregate of entities. E.g. ((#1, #2), (#3))
aggregate_of_aggregate_of_instance::ptr
> storage_t;
struct MutableAttributeValue {
int name_;
uint8_t index_;
};
// short lived
struct AttributeValue {
const storage_t* array_;
uint8_t index_;
AttributeValue()
: array_(nullptr)
, index_(0)
{}
AttributeValue(const storage_t* arr, uint8_t index)
: array_(arr)
, index_(index)
{}
operator int() const;
operator bool() const;
operator boost::logic::tribool() const;
operator double() const;
operator std::string() const;
operator boost::dynamic_bitset<>() const;
operator IfcUtil::IfcBaseClass* () const;
operator std::vector<int>() const;
operator std::vector<double>() const;
operator std::vector<std::string>() const;
operator std::vector<boost::dynamic_bitset<>>() const;
operator boost::shared_ptr<aggregate_of_instance>() const;
operator std::vector<std::vector<int>>() const;
operator std::vector<std::vector<double>>() const;
operator boost::shared_ptr<aggregate_of_aggregate_of_instance>() const;
bool isNull() const;
unsigned int size() const;
IfcUtil::ArgumentType type() const;
};
class IFC_PARSE_API IfcEntityInstanceData {
public:
storage_t storage_;
IfcEntityInstanceData(storage_t&& storage)
: storage_(std::move(storage))
{}
IfcEntityInstanceData(IfcEntityInstanceData&& other) noexcept
: storage_(std::move(other.storage_))
{}
IfcEntityInstanceData(const IfcEntityInstanceData& data);
IfcEntityInstanceData& operator=(IfcEntityInstanceData&& other) {
if (this != &other) {
storage_ = std::move(other.storage_);
}
return *this;
}
AttributeValue get_attribute_value(size_t index) const;
/*
template <typename T>
void set_attribute_value(size_t index, const T& t);
void set_attribute_value(size_t index, AttributeValue&, IfcUtil::ArgumentType attr_type = IfcUtil::Argument_UNKNOWN);
*/
size_t size() const {
return storage_.size();
}
void toString(std::ostream&, bool upper = false, const IfcParse::entity* ent = nullptr) const;
};
#endif