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Option to retain original edges in cgal for non-boolean non-face-with-voids inputs #6173
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@@ -407,7 +407,11 @@ namespace ifcopenshell {
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static constexpr TriangulationMethod defaultvalue = TRIANGLE_MESH;
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};
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struct CgalEmitOriginalEdges : public SettingBase<CgalEmitOriginalEdges, bool> {
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static constexpr const char* const name = "cgal-original-edges";
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static constexpr const char* const description = "Try to emit original edge face boundary edges instead of recomputed ones based on face normal. Falls back to triangulated data in case of boolean operands and faces with holes.";
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static constexpr bool defaultvalue = false;
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};
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}
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template <typename settings_t>
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@@ -500,7 +504,7 @@ namespace ifcopenshell {
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};
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class IFC_GEOM_API Settings : public SettingsContainer<
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std::tuple<MesherLinearDeflection, MesherAngularDeflection, ReorientShells, LengthUnit, PlaneUnit, Precision, OutputDimensionality, LayersetFirst, DisableBooleanResult, NoWireIntersectionCheck, NoWireIntersectionTolerance, PrecisionFactor, DebugBooleanOperations, BooleanAttempt2d, SurfaceColour, WeldVertices, UseWorldCoords, UnifyShapes, UseMaterialNames, ConvertBackUnits, ContextIds, ContextTypes, ContextIdentifiers, IteratorOutput, DisableOpeningSubtractions, ApplyDefaultMaterials, DontEmitNormals, GenerateUvs, ApplyLayerSets, UseElementHierarchy, ValidateQuantities, EdgeArrows, BuildingLocalPlacement, SiteLocalPlacement, ForceSpaceTransparency, CircleSegments, KeepBoundingBoxes, FunctionStepType, FunctionStepParam, NoParallelMapping, ModelOffset, ModelRotation, TriangulationType>
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std::tuple<MesherLinearDeflection, MesherAngularDeflection, ReorientShells, LengthUnit, PlaneUnit, Precision, OutputDimensionality, LayersetFirst, DisableBooleanResult, NoWireIntersectionCheck, NoWireIntersectionTolerance, PrecisionFactor, DebugBooleanOperations, BooleanAttempt2d, SurfaceColour, WeldVertices, UseWorldCoords, UnifyShapes, UseMaterialNames, ConvertBackUnits, ContextIds, ContextTypes, ContextIdentifiers, IteratorOutput, DisableOpeningSubtractions, ApplyDefaultMaterials, DontEmitNormals, GenerateUvs, ApplyLayerSets, UseElementHierarchy, ValidateQuantities, EdgeArrows, BuildingLocalPlacement, SiteLocalPlacement, ForceSpaceTransparency, CircleSegments, KeepBoundingBoxes, FunctionStepType, FunctionStepParam, NoParallelMapping, ModelOffset, ModelRotation, TriangulationType, CgalEmitOriginalEdges>
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>
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{};
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}
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@@ -144,10 +144,15 @@ ifcopenshell::geometry::CgalShape::CgalShape(const cgal_shape_t& shape, bool con
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}
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if (shape.size_of_facets() != 1) {
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// this is for handling the specical case of storing a single point in a polyhedron,
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// the size_of_facets() == 1 check is for handling the specical case of
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// storing a single point in a polyhedron as a degenerate triangle
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//
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// @todo come up with a proper variant for storing lower dimensional entities
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CGAL::Polygon_mesh_processing::triangulate_faces(*shape_);
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CGAL::Polygon_mesh_processing::remove_degenerate_faces(*shape_);
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// @todo we don't have access to settings here so we don't know whether we should triangulate
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// remove_degenerate_faces() is also called in the triangulate() call below though...
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// CGAL::Polygon_mesh_processing::triangulate_faces(*shape_);
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// CGAL::Polygon_mesh_processing::remove_degenerate_faces(*shape_);
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}
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}
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@@ -183,6 +188,15 @@ void ifcopenshell::geometry::CgalShape::Triangulate(ifcopenshell::geometry::Sett
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// ... also becuase of transforming the vertex positions, right?
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cgal_shape_t s = *this;
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const bool setting_use_original_edges = settings.get<ifcopenshell::geometry::settings::CgalEmitOriginalEdges>().get();
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std::set<std::set<Kernel_::Point_3>> original_edges;
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if (setting_use_original_edges) {
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for (auto it = s.edges_begin(); it != s.edges_end(); ++it) {
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original_edges.insert({ it->vertex()->point(), it->prev()->vertex()->point() });
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}
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}
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if (!place.is_identity()) {
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const auto& m = place.ccomponents();
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@@ -199,14 +213,11 @@ void ifcopenshell::geometry::CgalShape::Triangulate(ifcopenshell::geometry::Sett
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}
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if (!std::all_of(s.facets_begin(), s.facets_end(), [](auto f) { return f.is_triangle(); })) {
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if (!s.is_valid()) {
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Logger::Message(Logger::LOG_ERROR, "Invalid Polyhedron_3 in object (before triangulation)");
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return;
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}
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CGAL::Polygon_mesh_processing::remove_degenerate_faces(s);
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bool success = false;
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try {
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success = CGAL::Polygon_mesh_processing::triangulate_faces(s);
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@@ -215,27 +226,29 @@ void ifcopenshell::geometry::CgalShape::Triangulate(ifcopenshell::geometry::Sett
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return;
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}
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CGAL::Polygon_mesh_processing::remove_degenerate_faces(s);
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if (!success) {
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Logger::Message(Logger::LOG_ERROR, "Triangulation failed");
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return;
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}
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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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if (!s.is_valid()) {
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Logger::Message(Logger::LOG_ERROR, "Invalid Polyhedron_3 in object (after triangulation)");
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// return;
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}
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}
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// Facet -> planar component map for determining which
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// edges are to be registered.
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std::vector<std::set<Facet_const_handle>> components;
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partition_coplanar_components(s, components);
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std::map<Facet_const_handle, typename decltype(components)::const_iterator> facet_to_component;
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for (auto it = components.begin(); it != components.end(); ++it) {
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for (auto& f : *it) {
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facet_to_component[f] = it;
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if (!setting_use_original_edges) {
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partition_coplanar_components(s, components);
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for (auto it = components.begin(); it != components.end(); ++it) {
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for (auto& f : *it) {
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facet_to_component[f] = it;
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}
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}
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}
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@@ -305,8 +318,10 @@ void ifcopenshell::geometry::CgalShape::Triangulate(ifcopenshell::geometry::Sett
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}
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vertexidx[i] = (int)vidx;
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is_face_boundary[i] = facet_to_component[face] != facet_to_component[current_halfedge->opposite()->face()];
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is_face_boundary[i] = setting_use_original_edges
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? original_edges.find({ current_halfedge->vertex()->point(), current_halfedge->prev()->vertex()->point() }) != original_edges.end()
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: facet_to_component[face] != facet_to_component[current_halfedge->opposite()->face()];
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++i;
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++num_vertices;
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++current_halfedge;
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