201 lines
6.0 KiB
C
201 lines
6.0 KiB
C
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// Copyright (c) 2009-2010 INRIA Sophia-Antipolis (France).
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// Copyright (c) 2014-2017 GeometryFactory Sarl (France)
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// All rights reserved.
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//
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// This file is part of CGAL (www.cgal.org).
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// You can redistribute it and/or modify it under the terms of the GNU
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// General Public License as published by the Free Software Foundation,
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// either version 3 of the License, or (at your option) any later version.
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//
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// Licensees holding a valid commercial license may use this file in
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// accordance with the commercial license agreement provided with the software.
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//
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// This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
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// WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
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//
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// $URL$
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// $Id$
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// SPDX-License-Identifier: GPL-3.0+
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//
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//
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// Author(s) : Laurent Rineau, Stéphane Tayeb
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//
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//******************************************************************************
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// File Description :
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//
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//******************************************************************************
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#ifndef CGAL_MESH_3_INTERNAL_MESH_3_HELPERS_H
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#define CGAL_MESH_3_INTERNAL_MESH_3_HELPERS_H
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#include <CGAL/license/Mesh_3.h>
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#include <CGAL/disable_warnings.h>
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#include <CGAL/enum.h>
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#include <CGAL/Kernel/global_functions.h>
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#include <CGAL/property_map.h>
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#include <boost/foreach.hpp>
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#include <boost/graph/graph_traits.hpp>
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#include <iostream>
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#include <fstream>
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namespace CGAL {
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/// @cond DEVELOPERS
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namespace Mesh_3 {
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namespace internal {
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template <typename Graph>
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void dump_graph_edges(std::ostream& out, const Graph& g)
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{
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typedef typename boost::graph_traits<Graph>::vertex_descriptor vertex_descriptor;
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typedef typename boost::graph_traits<Graph>::edge_descriptor edge_descriptor;
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out.precision(17);
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BOOST_FOREACH(edge_descriptor e, edges(g))
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{
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vertex_descriptor s = source(e, g);
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vertex_descriptor t = target(e, g);
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out << "2 " << g[s] << " " << g[t] << "\n";
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}
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}
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template <typename Graph>
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void dump_graph_edges(const char* filename, const Graph& g)
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{
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std::ofstream out(filename);
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dump_graph_edges(out, g);
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}
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template <typename Kernel>
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struct Angle_tester
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{
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template <typename vertex_descriptor, typename Graph>
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bool operator()(vertex_descriptor& v, const Graph& g) const
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{
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typedef typename boost::graph_traits<Graph>::out_edge_iterator out_edge_iterator;
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if (out_degree(v, g) != 2)
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return true;
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else
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{
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out_edge_iterator out_edge_it, out_edges_end;
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boost::tie(out_edge_it, out_edges_end) = out_edges(v, g);
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vertex_descriptor v1 = target(*out_edge_it++, g);
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vertex_descriptor v2 = target(*out_edge_it++, g);
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CGAL_assertion(out_edge_it == out_edges_end);
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const typename Kernel::Point_3& p = g[v];
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const typename Kernel::Point_3& p1 = g[v1];
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const typename Kernel::Point_3& p2 = g[v2];
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return (CGAL::angle(p1, p, p2) == CGAL::ACUTE);
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}
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}
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};
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template <typename Polyhedron>
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struct Is_featured_edge {
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const Polyhedron* polyhedron;
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typename boost::property_map<Polyhedron, edge_is_feature_t>::type eifm;
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Is_featured_edge()
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: polyhedron(0)
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{} // required by boost::filtered_graph
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Is_featured_edge(const Polyhedron& polyhedron)
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: polyhedron(&polyhedron), eifm(get(edge_is_feature,polyhedron))
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{}
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bool operator()(typename boost::graph_traits<Polyhedron>::edge_descriptor e) const {
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return get(eifm, e);
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}
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}; // end Is_featured_edge<Polyhedron>
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template <typename Polyhedron>
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struct Is_border_edge {
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const Polyhedron* polyhedron;
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Is_border_edge() : polyhedron(0) {} // required by boost::filtered_graph
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Is_border_edge(const Polyhedron& polyhedron) : polyhedron(&polyhedron) {}
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bool operator()(typename boost::graph_traits<Polyhedron>::edge_descriptor e) const {
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return is_border(halfedge(e, *polyhedron), *polyhedron) ||
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is_border(opposite(halfedge(e, *polyhedron), *polyhedron), *polyhedron);
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}
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}; // end Is_featured_edge<Polyhedron>
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template<typename Polyline_with_context,
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typename Graph>
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struct Extract_polyline_with_context_visitor
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{
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std::vector<Polyline_with_context>& polylines;
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const Graph& graph;
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Extract_polyline_with_context_visitor
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(const Graph& graph,
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typename std::vector<Polyline_with_context>& polylines)
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: polylines(polylines), graph(graph)
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{}
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void start_new_polyline()
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{
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polylines.push_back(Polyline_with_context());
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}
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void add_node(typename boost::graph_traits<Graph>::vertex_descriptor vd)
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{
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if(polylines.back().polyline_content.empty()) {
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polylines.back().polyline_content.push_back(graph[vd]);
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}
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}
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void add_edge(typename boost::graph_traits<Graph>::edge_descriptor ed)
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{
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typename boost::graph_traits<Graph>::vertex_descriptor
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s = source(ed, graph),
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t = target(ed, graph);
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Polyline_with_context& polyline = polylines.back();
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CGAL_assertion(!polyline.polyline_content.empty());
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if(polyline.polyline_content.back() != graph[s]) {
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polyline.polyline_content.push_back(graph[s]);
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} else if(polyline.polyline_content.back() != graph[t]) {
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// if the edge is zero-length, it is ignored
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polyline.polyline_content.push_back(graph[t]);
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}
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const typename boost::edge_bundle_type<Graph>::type &
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set_of_indices = graph[ed];
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polyline.context.adjacent_patches_ids.insert(set_of_indices.begin(),
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set_of_indices.end());
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}
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void end_polyline()
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{
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// ignore degenerated polylines
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if(polylines.back().polyline_content.size() < 2)
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polylines.resize(polylines.size() - 1);
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// else {
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// std::cerr << "Polyline with " << polylines.back().polyline_content.size()
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// << " vertices, incident to "
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// << polylines.back().context.adjacent_patches_ids.size()
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// << " patches:\n ";
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// for(auto p: polylines.back().polyline_content)
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// std::cerr << " " << p;
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// std::cerr << "\n";
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// }
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}
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};
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} // end CGAL::Mesh_3::internal
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} // end CGAL::Mesh_3
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/// @endcond
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} // end CGAL
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#include <CGAL/enable_warnings.h>
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#endif // CGAL_MESH_3_INTERNAL_MESH_3_HELPERS_H
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