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https://github.com/IfcOpenShell/IfcOpenShell.git
synced 2026-08-14 11:24:19 +00:00
Switched to Nef_polyhedron_3. Some problems...
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@@ -7,8 +7,11 @@ void IfcGeom::CgalShape::Triangulate(const IfcGeom::IteratorSettings & settings,
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// std::cout << "Model: " << s.size_of_facets() << " facets and " << s.size_of_vertices() << " vertices" << std::endl;
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// std::cout << "Valid: " << s.is_valid() << std::endl;
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CGAL::Polyhedron_3<Kernel> polyhedron;
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s.convert_to_polyhedron(polyhedron);
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// Apply transformation
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if (place != NULL) for (auto &vertex: vertices(s)) {
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if (place != NULL) for (auto &vertex: vertices(polyhedron)) {
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vertex->point() = vertex->point().transform(trsf);
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}
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@@ -22,7 +25,7 @@ void IfcGeom::CgalShape::Triangulate(const IfcGeom::IteratorSettings & settings,
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boost::associative_property_map<std::map<cgal_vertex_descriptor_t, Kernel::Vector_3>> vertex_normals_map(vertex_normals);
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std::map<cgal_face_descriptor_t, Kernel::Vector_3> face_normals;
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boost::associative_property_map<std::map<cgal_face_descriptor_t, Kernel::Vector_3>> face_normals_map(face_normals);
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if (CGAL::Polygon_mesh_processing::triangulate_faces(s)) {
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if (CGAL::Polygon_mesh_processing::triangulate_faces(polyhedron)) {
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// std::cout << "Triangulated model: " << s.size_of_facets() << " facets and " << s.size_of_vertices() << " vertices" << std::endl;
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} else {
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Logger::Message(Logger::LOG_ERROR, "Failed to triangulate shape");
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@@ -34,10 +37,10 @@ void IfcGeom::CgalShape::Triangulate(const IfcGeom::IteratorSettings & settings,
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// fafter << s << std::endl;
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// fafter.close();
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CGAL::Polygon_mesh_processing::compute_normals(s, vertex_normals_map, face_normals_map);
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CGAL::Polygon_mesh_processing::compute_normals(polyhedron, vertex_normals_map, face_normals_map);
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std::map<CGAL::Polyhedron_3<Kernel>::Vertex_const_handle, int> vertices_map;
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std::size_t initial_size = t->verts().size()/3;
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for (auto &vertex: vertices(s)) {
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for (auto &vertex: vertices(polyhedron)) {
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if (vertices_map.count(vertex) == 0) {
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vertices_map[vertex] = (int)(vertices_map.size()+initial_size);
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t->addVertex(surface_style_id,
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@@ -49,7 +52,7 @@ void IfcGeom::CgalShape::Triangulate(const IfcGeom::IteratorSettings & settings,
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}
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}
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for (auto &face: faces(s)) {
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for (auto &face: faces(polyhedron)) {
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if (!face->is_triangle()) {
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std::cout << "Warning: non-triangular face!" << std::endl;
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continue;
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@@ -159,7 +159,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcExtrudedAreaSolid *l, cgal
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} face_list.push_back(top_face);
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// Naive creation
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cgal_shape_t polyhedron = CGAL::Polyhedron_3<Kernel>();
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CGAL::Polyhedron_3<Kernel> polyhedron = CGAL::Polyhedron_3<Kernel>();
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PolyhedronBuilder builder(&face_list);
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polyhedron.delegate(builder);
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@@ -179,7 +179,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcExtrudedAreaSolid *l, cgal
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} CGAL_postcondition(polyhedron.is_valid() && polyhedron.is_closed());
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// std::cout << "After: " << polyhedron.size_of_vertices() << " vertices and " << polyhedron.size_of_facets() << " facets" << std::endl;
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shape = polyhedron;
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shape = CGAL::Nef_polyhedron_3<Kernel>(polyhedron);
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return true;
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}
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@@ -209,7 +209,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcConnectedFaceSet* l, cgal_
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}
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// Naive creation
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cgal_shape_t polyhedron = CGAL::Polyhedron_3<Kernel>();
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CGAL::Polyhedron_3<Kernel> polyhedron = CGAL::Polyhedron_3<Kernel>();
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PolyhedronBuilder builder(&face_list);
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polyhedron.delegate(builder);
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@@ -221,7 +221,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcConnectedFaceSet* l, cgal_
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}
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// std::cout << "After: " << polyhedron.size_of_vertices() << " vertices and " << polyhedron.size_of_facets() << " facets" << std::endl;
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shape = polyhedron;
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shape = CGAL::Nef_polyhedron_3<Kernel>(polyhedron);
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return true;
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}
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@@ -279,7 +279,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcBlock* l, cgal_shape_t& sh
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face_list.back().outer.push_back(Kernel::Point_3(dx, 0, dz));
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// Naive creation
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cgal_shape_t polyhedron = CGAL::Polyhedron_3<Kernel>();
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CGAL::Polyhedron_3<Kernel> polyhedron = CGAL::Polyhedron_3<Kernel>();
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PolyhedronBuilder builder(&face_list);
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polyhedron.delegate(builder);
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@@ -298,7 +298,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcBlock* l, cgal_shape_t& sh
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vertex->point() = vertex->point().transform(trsf);
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}
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shape = polyhedron;
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shape = CGAL::Nef_polyhedron_3<Kernel>(polyhedron);
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return true;
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}
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@@ -359,16 +359,12 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcBooleanResult* l, cgal_sha
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const IfcSchema::IfcBooleanOperator::IfcBooleanOperator op = l->Operator();
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CGAL_precondition(s1.is_valid() && s1.is_closed());
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CGAL::Nef_polyhedron_3<Kernel> nef1(s1);
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if (!nef1.is_simple()) {
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if (!s1.is_simple()) {
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Logger::Message(Logger::LOG_ERROR, "s1: Not simple Nef?", operand1->entity);
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return false;
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}
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CGAL_precondition(s2.is_valid() && s2.is_closed());
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CGAL::Nef_polyhedron_3<Kernel> nef2(s2);
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if (!nef2.is_simple()) {
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if (!s2.is_simple()) {
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Logger::Message(Logger::LOG_ERROR, "s2: Not simple Nef?", operand2->entity);
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return false;
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}
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@@ -385,52 +381,52 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcBooleanResult* l, cgal_sha
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if (op == IfcSchema::IfcBooleanOperator::IfcBooleanOperator_DIFFERENCE) {
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// std::cout << "Difference" << std::endl;
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CGAL::Nef_polyhedron_3<Kernel> nef_result = nef1-nef2;
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CGAL::Nef_polyhedron_3<Kernel> nef_result = s1-s2;
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if (!nef_result.is_simple()) {
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std::cout << "Not simple: " << nef_result.number_of_volumes() << " volumes" << std::endl;
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return false;
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}
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cgal_shape_t result;
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nef_result.convert_to_polyhedron(result);
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// cgal_shape_t result;
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// nef_result.convert_to_polyhedron(result);
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// std::ofstream fresult;
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// fresult.open("/Users/ken/Desktop/result.off");
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// fresult << result << std::endl;
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// fresult.close();
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shape = result;
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shape = nef_result;
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return true;
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} else if (op == IfcSchema::IfcBooleanOperator::IfcBooleanOperator_UNION) {
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// std::cout << "Union" << std::endl;
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CGAL::Nef_polyhedron_3<Kernel> nef_result = nef1+nef2;
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CGAL::Nef_polyhedron_3<Kernel> nef_result = s1+s2;
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if (!nef_result.is_simple()) {
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std::cout << "Not simple: " << nef_result.number_of_volumes() << " volumes" << std::endl;
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return false;
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}
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cgal_shape_t result;
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nef_result.convert_to_polyhedron(result);
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// cgal_shape_t result;
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// nef_result.convert_to_polyhedron(result);
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// std::ofstream fresult;
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// fresult.open("/Users/ken/Desktop/result.off");
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// fresult << result << std::endl;
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// fresult.close();
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shape = result;
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shape = nef_result;
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return true;
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} else if (op == IfcSchema::IfcBooleanOperator::IfcBooleanOperator_INTERSECTION) {
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// std::cout << "Intersection" << std::endl;
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CGAL::Nef_polyhedron_3<Kernel> nef_result = nef1*nef2;
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CGAL::Nef_polyhedron_3<Kernel> nef_result = s1*s2;
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if (!nef_result.is_simple()) {
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std::cout << "Not simple: " << nef_result.number_of_volumes() << " volumes" << std::endl;
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return false;
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}
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cgal_shape_t result;
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nef_result.convert_to_polyhedron(result);
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// cgal_shape_t result;
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// nef_result.convert_to_polyhedron(result);
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// std::ofstream fresult;
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// fresult.open("/Users/ken/Desktop/result.off");
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// fresult << result << std::endl;
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// fresult.close();
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shape = result;
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shape = nef_result;
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return true;
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}
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@@ -608,7 +604,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcSphere* l, cgal_shape_t& s
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}
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// Naive creation
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cgal_shape_t polyhedron = CGAL::Polyhedron_3<Kernel>();
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CGAL::Polyhedron_3<Kernel> polyhedron = CGAL::Polyhedron_3<Kernel>();
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PolyhedronBuilder builder(&face_list);
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polyhedron.delegate(builder);
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@@ -639,7 +635,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcSphere* l, cgal_shape_t& s
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// fresult << polyhedron << std::endl;
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// fresult.close();
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shape = polyhedron;
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shape = CGAL::Nef_polyhedron_3<Kernel>(polyhedron);
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return true;
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}
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@@ -679,7 +675,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcRectangularPyramid* l, cga
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face_list.back().outer.push_back(Kernel::Point_3(0.5*dx, 0.5*dy, dz));
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// Naive creation
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cgal_shape_t polyhedron = CGAL::Polyhedron_3<Kernel>();
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CGAL::Polyhedron_3<Kernel> polyhedron = CGAL::Polyhedron_3<Kernel>();
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PolyhedronBuilder builder(&face_list);
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polyhedron.delegate(builder);
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@@ -698,7 +694,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcRectangularPyramid* l, cga
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vertex->point() = vertex->point().transform(trsf);
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}
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shape = polyhedron;
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shape = CGAL::Nef_polyhedron_3<Kernel>(polyhedron);
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return true;
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}
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@@ -737,7 +733,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcRightCircularCylinder* l,
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}
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// Naive creation
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cgal_shape_t polyhedron = CGAL::Polyhedron_3<Kernel>();
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CGAL::Polyhedron_3<Kernel> polyhedron = CGAL::Polyhedron_3<Kernel>();
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PolyhedronBuilder builder(&face_list);
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polyhedron.delegate(builder);
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@@ -756,7 +752,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcRightCircularCylinder* l,
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vertex->point() = vertex->point().transform(trsf);
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}
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shape = polyhedron;
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shape = CGAL::Nef_polyhedron_3<Kernel>(polyhedron);
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return true;
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}
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@@ -787,7 +783,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcRightCircularCone* l, cgal
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}
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// Naive creation
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cgal_shape_t polyhedron = CGAL::Polyhedron_3<Kernel>();
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CGAL::Polyhedron_3<Kernel> polyhedron = CGAL::Polyhedron_3<Kernel>();
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PolyhedronBuilder builder(&face_list);
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polyhedron.delegate(builder);
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@@ -806,7 +802,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcRightCircularCone* l, cgal
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vertex->point() = vertex->point().transform(trsf);
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}
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shape = polyhedron;
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shape = CGAL::Nef_polyhedron_3<Kernel>(polyhedron);
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return true;
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}
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@@ -856,7 +852,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcTriangulatedFaceSet* l, cg
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}
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// Naive creation
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cgal_shape_t polyhedron = CGAL::Polyhedron_3<Kernel>();
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CGAL::Polyhedron_3<Kernel> polyhedron = CGAL::Polyhedron_3<Kernel>();
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PolyhedronBuilder builder(&face_list);
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polyhedron.delegate(builder);
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@@ -868,6 +864,6 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcTriangulatedFaceSet* l, cg
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} CGAL_postcondition(polyhedron.is_valid() && polyhedron.is_closed());
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// std::cout << "After: " << polyhedron.size_of_vertices() << " vertices and " << polyhedron.size_of_facets() << " facets" << std::endl;
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shape = polyhedron;
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shape = CGAL::Nef_polyhedron_3<Kernel>(polyhedron);
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return true;
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}
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@@ -66,7 +66,7 @@ bool IfcGeom::CgalKernel::convert(const IfcSchema::IfcEdgeLoop* l, cgal_wire_t&
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for (IfcSchema::IfcOrientedEdge::list::it it = li->begin(); it != li->end(); ++it) {
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cgal_wire_t w;
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if (convert_wire(*it, w)) {
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// TODO: What to do here?
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// TODO: What to do here? Add some points only?
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// mw.Add(TopoDS::Edge(TopoDS_Iterator(w).Value()));
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return false;
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}
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@@ -62,7 +62,7 @@ struct cgal_face_t {
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std::vector<cgal_wire_t> inner;
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};
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typedef CGAL::Polyhedron_3<Kernel> cgal_shape_t;
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typedef CGAL::Nef_polyhedron_3<Kernel> cgal_shape_t;
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typedef boost::graph_traits<CGAL::Polyhedron_3<Kernel>>::vertex_descriptor cgal_vertex_descriptor_t;
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typedef boost::graph_traits<CGAL::Polyhedron_3<Kernel>>::face_descriptor cgal_face_descriptor_t;
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