#include #include #include #include #include #include #include #include #include // Domain typedef CGAL::Exact_predicates_inexact_constructions_kernel K; //typedef CGAL::Mesh_polyhedron_3::type Polyhedron; typedef CGAL::Surface_mesh Face_graph; typedef CGAL::Polyhedral_complex_mesh_domain_3 Mesh_domain; #ifdef CGAL_CONCURRENT_MESH_3 typedef CGAL::Parallel_tag Concurrency_tag; #else typedef CGAL::Sequential_tag Concurrency_tag; #endif // Triangulation typedef CGAL::Mesh_triangulation_3::type Tr; typedef CGAL::Mesh_complex_3_in_triangulation_3< Tr,Mesh_domain::Corner_index,Mesh_domain::Curve_index> C3t3; // Criteria typedef CGAL::Mesh_criteria_3 Mesh_criteria; namespace params = CGAL::parameters; const char* const filenames[] = { "meshes/patch-01.off", "meshes/patch-13.off", "meshes/patch-20.off", "meshes/patch-21.off", "meshes/patch-23.off", "meshes/patch-30.off" }; const std::pair incident_subdomains[] = { std::make_pair(0, 1), std::make_pair(1, 3), std::make_pair(2, 0), std::make_pair(2, 1), std::make_pair(2, 3), std::make_pair(3, 0), }; int main() { #ifdef CGAL_MESHING_STEPS_WITH_CIN char in_char; std::cout << "Ready for loading the data ? (y or n)"; std::cin >> in_char; if (in_char == 'n') return 0; #endif const std::size_t nb_patches = sizeof(filenames) / sizeof(const char*); assert(sizeof(incident_subdomains) == nb_patches * sizeof(std::pair)); std::vector patches(nb_patches); for(std::size_t i = 0; i < nb_patches; ++i) { std::ifstream input(CGAL::data_file_path(filenames[i])); if(!(input >> patches[i])) { std::cerr << "Error reading " << CGAL::data_file_path(filenames[i]) << " as a polyhedron!\n"; return EXIT_FAILURE; } } #ifdef CGAL_MESHING_STEPS_WITH_CIN std::cout << "Ready for building the domain ? (y or n)"; std::cin >> in_char; if (in_char == 'n') return 0; #endif // Create domain Mesh_domain domain(patches.begin(), patches.end(), incident_subdomains, incident_subdomains+nb_patches); #ifdef CGAL_MESHING_STEPS_WITH_CIN std::cout << "Ready for feature detection ? (y or n)"; std::cin >> in_char; if (in_char == 'n') return 0; #endif domain.detect_features(); //includes detection of borders // Mesh criteria Mesh_criteria criteria(params::edge_size(8). facet_angle(25).facet_size(8).facet_distance(0.2). cell_radius_edge_ratio(3).cell_size(10)); #ifdef CGAL_MESHING_STEPS_WITH_CIN std::cout << "Ready for mesh generation ? (y or n)"; std::cin >> in_char; if (in_char == 'n') return 0; #endif // Mesh generation C3t3 c3t3 = CGAL::make_mesh_3(domain, criteria); //// Output //std::ofstream medit_file("out.mesh"); //CGAL::IO::write_MEDIT(medit_file, c3t3); //medit_file.close(); return EXIT_SUCCESS; }