//======================================================================= // Copyright 1997, 1998, 1999, 2000 University of Notre Dame. // Authors: Andrew Lumsdaine, Lie-Quan Lee, Jeremy G. Siek // // This file is part of the Boost Graph Library // // You should have received a copy of the License Agreement for the // Boost Graph Library along with the software; see the file LICENSE. // If not, contact Office of Research, University of Notre Dame, Notre // Dame, IN 46556. // // Permission to modify the code and to distribute modified code is // granted, provided the text of this NOTICE is retained, a notice that // the code was modified is included with the above COPYRIGHT NOTICE and // with the COPYRIGHT NOTICE in the LICENSE file, and that the LICENSE // file is distributed with the modified code. // // LICENSOR MAKES NO REPRESENTATIONS OR WARRANTIES, EXPRESS OR IMPLIED. // By way of example, but not limitation, Licensor MAKES NO // REPRESENTATIONS OR WARRANTIES OF MERCHANTABILITY OR FITNESS FOR ANY // PARTICULAR PURPOSE OR THAT THE USE OF THE LICENSED SOFTWARE COMPONENTS // OR DOCUMENTATION WILL NOT INFRINGE ANY PATENTS, COPYRIGHTS, TRADEMARKS // OR OTHER RIGHTS. //======================================================================= #include #include #include #include /* Sample output: original graph: 0 --> 3 2 3 1 --> 3 2 --> 0 3 --> 2 removing edges (0,3) 0 --> 2 1 --> 3 2 --> 0 3 --> 2 removing edge (0,2) and (3, 2) 0 --> 1 --> 3 2 --> 0 3 --> */ using namespace boost; typedef adjacency_list Graph; int main() { typedef std::pair Edge; Edge edges[6] = { Edge(0,3), Edge(0,2), Edge(0, 3), Edge(1,3), Edge(2, 0), Edge(3, 2) }; #if defined(BOOST_MSVC) && BOOST_MSVC <= 1300 // VC++ can't handle iterator constructor Graph g(4); for (std::size_t j = 0; j < 6; ++j) add_edge(edges[j].first, edges[j].second, g); #else Graph g(edges, edges + 6, 4); #endif std::cout << "original graph:" << std::endl; print_graph(g, get(vertex_index, g)); std::cout << std::endl; std::cout << "removing edges (0,3)" << std::endl; remove_out_edge_if(vertex(0,g), incident_to(vertex(3,g), g), g); print_graph(g, get(vertex_index, g)); std::cout << "removing edge (0,2) and (3, 2)" << std::endl; remove_edge_if(incident_to(vertex(2,g), g), g); print_graph(g, get(vertex_index, g)); return 0; }