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occ-triangulation
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@ -77,6 +77,9 @@ void CreateOCCParametersFromKwargs(OCCParameters& occparam, py::dict kwargs)
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DLL_HEADER void ExportNgOCC(py::module &m)
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{
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m.attr("occ_version") = OCC_VERSION_COMPLETE;
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// not working, since occ - exceptions don't derive from std::exception
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// py::register_exception<Standard_Failure>(m, "OCC-Exception");
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py::class_<OCCGeometry, shared_ptr<OCCGeometry>, NetgenGeometry> (m, "OCCGeometry", R"raw_string(Use LoadOCCGeometry to load the geometry from a *.step file.)raw_string")
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.def(py::init<>())
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/*
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@ -479,6 +482,51 @@ DLL_HEADER void ExportNgOCC(py::module &m)
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return builder.Shape();
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})
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.def("Triangulation", [](const TopoDS_Shape & shape)
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{
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// extracted from vsocc.cpp
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Array< std::array<Point<3>,3> > triangles;
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TopoDS_Face face;
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try
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{
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face = TopoDS::Face(shape);
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}
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catch (Standard_Failure & e)
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{
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e.Print (cout);
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throw NgException ("Triangulation: shape is not a face");
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}
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BRepTools::Clean (shape);
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double deflection = 0.01;
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BRepMesh_IncrementalMesh (shape, deflection, true);
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Handle(Geom_Surface) surf = BRep_Tool::Surface (face);
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TopLoc_Location loc;
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Handle(Poly_Triangulation) triangulation = BRep_Tool::Triangulation (face, loc);
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if (!triangulation.IsNull())
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{
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int ntriangles = triangulation -> NbTriangles();
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for (int j = 1; j <= ntriangles; j++)
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{
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cout << "triangle " << j << "/" << ntriangles << endl;
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Poly_Triangle triangle = (triangulation -> Triangles())(j);
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std::array<Point<3>,3> pts;
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for (int k = 0; k < 3; k++)
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pts[k] = occ2ng( (triangulation -> Nodes())(triangle(k+1)).Transformed(loc) );
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triangles.Append ( pts );
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for (auto p : pts) cout << p << " ";
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cout << endl;
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}
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}
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return triangles;
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})
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;
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