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IfcOpenShell/src/ifcgeom_schema_agnostic/Kernel.h
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2022-06-15 13:41:13 +02:00

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#ifndef ITERATOR_KERNEL_H
#define ITERATOR_KERNEL_H
#include "../ifcparse/IfcFile.h"
#include "../ifcgeom_schema_agnostic/IfcGeomIteratorSettings.h"
#include "../ifcgeom_schema_agnostic/IfcRepresentationShapeItem.h"
#ifdef HAS_SCHEMA_2x3
#include "../ifcparse/Ifc2x3.h"
#endif
#ifdef HAS_SCHEMA_4
#include "../ifcparse/Ifc4.h"
#endif
#ifdef HAS_SCHEMA_4x1
#include "../ifcparse/Ifc4x1.h"
#endif
#ifdef HAS_SCHEMA_4x2
#include "../ifcparse/Ifc4x2.h"
#endif
#ifdef HAS_SCHEMA_4x3_rc1
#include "../ifcparse/Ifc4x3_rc1.h"
#endif
#ifdef HAS_SCHEMA_4x3_rc2
#include "../ifcparse/Ifc4x3_rc2.h"
#endif
#ifdef HAS_SCHEMA_4x3_rc3
#include "../ifcparse/Ifc4x3_rc3.h"
#endif
#ifdef HAS_SCHEMA_4x3_rc4
#include "../ifcparse/Ifc4x3_rc4.h"
#endif
#include <boost/function.hpp>
#include <TopExp_Explorer.hxx>
#include <gp_Ax2.hxx>
#include <gp_Ax3.hxx>
#include <gp_Trsf2d.hxx>
#include <gp_GTrsf2d.hxx>
#include <gp_Trsf.hxx>
#include <gp_GTrsf.hxx>
static const double ALMOST_ZERO = 1.e-9;
template <typename T>
inline static bool ALMOST_THE_SAME(const T& a, const T& b, double tolerance = ALMOST_ZERO) {
return fabs(a - b) < tolerance;
}
namespace IfcGeom {
class BRepElement;
class Kernel {
private:
Kernel* implementation_;
protected:
Kernel() {};
public:
// Tolerances and settings for various geometrical operations:
enum GeomValue {
// Specifies the deflection of the mesher
// Default: 0.001m / 1mm
GV_DEFLECTION_TOLERANCE,
// Specifies the minimal area of a face to be included in an IfcConnectedFaceset
// Read-only
GV_MINIMAL_FACE_AREA,
// Specifies the threshold distance under which cartesian points are deemed equal
// Read-only
GV_POINT_EQUALITY_TOLERANCE,
// Specifies maximum number of faces for a shell to be reoriented.
// Default: -1
GV_MAX_FACES_TO_ORIENT,
// The length unit used the creation of TopoDS_Shapes, primarily affects the
// interpretation of IfcCartesianPoints and IfcVector magnitudes
// DefaultL 1.0
GV_LENGTH_UNIT,
// The plane angle unit used for the creation of TopoDS_Shapes, primarily affects
// the interpretation of IfcParamaterValues of IfcTrimmedCurves
// Default: -1.0 (= not set, fist try degrees, then radians)
GV_PLANEANGLE_UNIT,
// The precision used in boolean operations, setting this value too low results
// in artefacts and potentially modelling failures
// Default: 0.00001 (obtained from IfcGeometricRepresentationContext if available)
GV_PRECISION,
// Whether to process shapes of type Face or higher (1) Wire or lower (-1) or all (0)
GV_DIMENSIONALITY,
GV_LAYERSET_FIRST,
GV_DISABLE_BOOLEAN_RESULT,
GV_NO_WIRE_INTERSECTION_CHECK,
GV_PRECISION_FACTOR,
GV_NO_WIRE_INTERSECTION_TOLERANCE,
GV_DEBUG_BOOLEAN,
GV_BOOLEAN_ATTEMPT_2D
};
IFC_PARSE_API Kernel(IfcParse::IfcFile* file_);
virtual ~Kernel() {}
virtual void setValue(GeomValue var, double value) {
implementation_->setValue(var, value);
}
virtual double getValue(GeomValue var) const {
return implementation_->getValue(var);
}
virtual BRepElement* convert(
const IteratorSettings& settings, IfcUtil::IfcBaseClass* representation,
IfcUtil::IfcBaseClass* product)
{
return implementation_->convert(settings, representation, product);
}
virtual IfcRepresentationShapeItems convert(IfcUtil::IfcBaseClass* item) {
return implementation_->convert(item);
}
virtual bool convert_placement(IfcUtil::IfcBaseClass* item, gp_Trsf& trsf) {
return implementation_->convert_placement(item, trsf);
}
IFC_PARSE_API static int count(const TopoDS_Shape&, TopAbs_ShapeEnum, bool unique = false);
IFC_PARSE_API static int surface_genus(const TopoDS_Shape&);
IFC_PARSE_API static bool is_manifold(const TopoDS_Shape& a);
IFC_PARSE_API static IfcUtil::IfcBaseEntity* get_decomposing_entity(IfcUtil::IfcBaseEntity*, bool include_openings = true);
IFC_PARSE_API static std::map<std::string, IfcUtil::IfcBaseEntity*> get_layers(IfcUtil::IfcBaseEntity*);
// For axis placements detect equality early in order for the
// relatively computionaly expensive gp_Trsf calculation to be skipped
IFC_PARSE_API static bool axis_equal(const gp_Ax3& a, const gp_Ax3& b, double tolerance) {
if (!a.Location().IsEqual(b.Location(), tolerance)) return false;
// Note that the tolerance below is angular, above is linear. Since architectural
// objects are about 1m'ish in scale, it should be somewhat equivalent. Besides,
// this is mostly a filter for NULL or default values in the placements.
if (!a.Direction().IsEqual(b.Direction(), tolerance)) return false;
if (!a.XDirection().IsEqual(b.XDirection(), tolerance)) return false;
if (!a.YDirection().IsEqual(b.YDirection(), tolerance)) return false;
return true;
}
IFC_PARSE_API static bool axis_equal(const gp_Ax2d& a, const gp_Ax2d& b, double tolerance) {
if (!a.Location().IsEqual(b.Location(), tolerance)) return false;
if (!a.Direction().IsEqual(b.Direction(), tolerance)) return false;
return true;
}
IFC_PARSE_API static bool is_identity(const gp_Trsf2d& t, double tolerance);
IFC_PARSE_API static bool is_identity(const gp_GTrsf2d& t, double tolerance);
IFC_PARSE_API static bool is_identity(const gp_Trsf& t, double tolerance);
IFC_PARSE_API static bool is_identity(const gp_GTrsf& t, double tolerance);
IFC_PARSE_API static gp_Trsf combine_offset_and_rotation(const gp_Vec &offset, const gp_Quaternion& rotation);
};
namespace impl {
typedef boost::function1<Kernel*, IfcParse::IfcFile*> kernel_fn;
class KernelFactoryImplementation : public std::map<std::string, kernel_fn> {
public:
KernelFactoryImplementation();
void bind(const std::string& schema_name, kernel_fn);
Kernel* construct(const std::string& schema_name, IfcParse::IfcFile*);
};
KernelFactoryImplementation& kernel_implementations();
}
namespace util {
bool is_nested_compound_of_solid(const TopoDS_Shape& s, int depth = 0);
}
class IFC_GEOM_API geometry_exception : public std::exception {
protected:
std::string message;
public:
geometry_exception(const std::string& m)
: message(m) {}
virtual ~geometry_exception() throw () {}
virtual const char* what() const throw() {
return message.c_str();
}
};
class IFC_GEOM_API too_many_faces_exception : public geometry_exception {
public:
too_many_faces_exception()
: geometry_exception("Too many faces for operation") {}
};
}
#endif