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128 lines
7.2 KiB
C++
128 lines
7.2 KiB
C++
#ifndef ABSTRACT_KERNEL_H
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#define ABSTRACT_KERNEL_H
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#include "../ifcparse/macros.h"
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#include "../ifcparse/IfcLogger.h"
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#include "../ifcgeom/ifc_geom_api.h"
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#include "../ifcgeom/IfcGeomRepresentation.h"
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#include "../ifcgeom/taxonomy.h"
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#include "../ifcgeom/ConversionSettings.h"
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static const double ALMOST_ZERO = 1.e-9;
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template <typename T>
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inline static bool ALMOST_THE_SAME(const T& a, const T& b, double tolerance = ALMOST_ZERO) {
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return fabs(a - b) < tolerance;
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}
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namespace ifcopenshell { namespace geometry { namespace kernels {
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class IFC_GEOM_API AbstractKernel {
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protected:
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std::string geometry_library_;
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Settings settings_;
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public:
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AbstractKernel(const std::string& geometry_library, const Settings& settings)
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: geometry_library_(geometry_library)
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, settings_(settings) {}
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virtual bool convert(const taxonomy::ptr, IfcGeom::ConversionResults&);
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const Settings& settings() const;
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const std::string& geometry_library() const {
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return geometry_library_;
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}
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virtual bool convert_impl(const taxonomy::matrix4::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::point3::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::direction3::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::line::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::circle::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::ellipse::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::bspline_curve::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::edge::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::loop::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::shell::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::face::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::extrusion::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::node::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::colour::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::boolean_result::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::plane::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::offset_curve::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::revolve::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::bspline_surface::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::cylinder::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::sphere::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::solid::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::surface_curve_sweep::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::loft::ptr, IfcGeom::ConversionResults&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_impl(const taxonomy::collection::ptr, IfcGeom::ConversionResults&);
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virtual bool convert_impl(const taxonomy::piecewise_function::ptr item, IfcGeom::ConversionResults& cs);
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/*
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virtual void set_offset(const std::array<double, 3> &p_offset);
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virtual void set_rotation(const std::array<double, 4> &p_rotation);
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*/
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virtual bool apply_layerset(IfcGeom::ConversionResults&, const ifcopenshell::geometry::layerset_information&) { throw std::runtime_error("Not implemented"); }
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virtual bool apply_folded_layerset(IfcGeom::ConversionResults&, const ifcopenshell::geometry::layerset_information&, const std::map<IfcUtil::IfcBaseEntity*, ifcopenshell::geometry::layerset_information>&) { throw std::runtime_error("Not implemented"); }
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virtual bool convert_openings(const IfcUtil::IfcBaseEntity* entity, const std::vector<std::pair<taxonomy::ptr, ifcopenshell::geometry::taxonomy::matrix4>>& openings,
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const IfcGeom::ConversionResults& entity_shapes, const ifcopenshell::geometry::taxonomy::matrix4& entity_trsf, IfcGeom::ConversionResults& cut_shapes) = 0;
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};
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AbstractKernel* construct(IfcParse::IfcFile* file, const std::string& geometry_library, Settings& conv_settings);
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}
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}
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}
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namespace {
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/* A compile-time for loop over the taxonomy kinds */
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template <size_t N>
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struct dispatch_conversion {
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static bool dispatch(ifcopenshell::geometry::kernels::AbstractKernel* kernel, ifcopenshell::geometry::taxonomy::kinds item_kind, const ifcopenshell::geometry::taxonomy::ptr item, IfcGeom::ConversionResults& results) {
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if (N == item_kind) {
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auto concrete_item = ifcopenshell::geometry::taxonomy::template cast<ifcopenshell::geometry::taxonomy::type_by_kind::type<N>>(item);
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return kernel->convert_impl(concrete_item, results);
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} else {
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return dispatch_conversion<N + 1>::dispatch(kernel, item_kind, item, results);
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}
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}
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};
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template <>
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struct dispatch_conversion<ifcopenshell::geometry::taxonomy::type_by_kind::max> {
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static bool dispatch(ifcopenshell::geometry::kernels::AbstractKernel*, ifcopenshell::geometry::taxonomy::kinds, const ifcopenshell::geometry::taxonomy::ptr item, IfcGeom::ConversionResults&) {
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Logger::Error("No conversion for " + std::to_string(item->kind()));
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return false;
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}
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};
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/* A compile-time for loop over the curve kinds */
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template <typename T, size_t N = 0>
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struct dispatch_curve_creation {
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static bool dispatch(const ifcopenshell::geometry::taxonomy::ptr item, T& visitor) {
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// @todo it should be possible to eliminate this dynamic_cast when there is a static equivalent to kind()
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auto v = ifcopenshell::geometry::taxonomy::template dcast<ifcopenshell::geometry::taxonomy::curves::type<N>>(item);
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if (v) {
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visitor(v);
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return true;
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} else {
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return dispatch_curve_creation<T, N + 1>::dispatch(item, visitor);
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}
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}
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};
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template <typename T>
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struct dispatch_curve_creation<T, ifcopenshell::geometry::taxonomy::curves::max> {
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static bool dispatch(const ifcopenshell::geometry::taxonomy::ptr item, T&) {
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Logger::Error("No conversion for " + std::to_string(item->kind()));
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return false;
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}
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};
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}
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#endif |