// -*- c++ -*- #include #include #include #include #include #include #include #include #include #include //#include //#include #include #include //#include #include #include #include #include /** * Inicializalja a veletlenszamgeneratort. * Figyelem, ez nem jo igazi random szamokhoz, * erre ne bizzad a titkaidat! */ void random_init() { unsigned int seed = getpid(); seed |= seed << 15; seed ^= time(0); srand(seed); } /** * Egy veletlen int-et ad vissza 0 es m-1 kozott. */ int random(int m) { return int( double(m) * rand() / (RAND_MAX + 1.0) ); } using namespace hugo; int main() { //for leda graph leda::graph lg; //lg.make_undirected(); typedef LedaGraphWrapper Graph; Graph g(lg); //for UndirListGraph //typedef UndirListGraph Graph; //Graph g; typedef Graph::Node Node; typedef Graph::NodeIt NodeIt; typedef Graph::Edge Edge; typedef Graph::EdgeIt EdgeIt; typedef Graph::OutEdgeIt OutEdgeIt; std::vector s_nodes; std::vector t_nodes; int a; std::cout << "number of nodes in the first color class="; std::cin >> a; int b; std::cout << "number of nodes in the second color class="; std::cin >> b; int m; std::cout << "number of edges="; std::cin >> m; for (int i=0; i ref_map(g, -1); IterableBoolMap< Graph::NodeMap > bipartite_map(ref_map); for (int i=0; i BGW; BGW bgw(g, bipartite_map); BGW::NodeMap dbyj(bgw); BGW::EdgeMap dbyxcj(bgw); typedef stGraphWrapper stGW; stGW stgw(bgw); ConstMap const1map(1); Timer ts; stGW::EdgeMap flow(stgw); MaxFlow, stGW::EdgeMap > max_flow_test(stgw, stgw.S_NODE, stgw.T_NODE, const1map, flow); ts.reset(); FOR_EACH_LOC(stGW::EdgeIt, e, stgw) flow.set(e, 0); // while (max_flow_test.augmentOnShortestPath()) { } typedef ListGraph MutableGraph; // while (max_flow_test.augmentOnBlockingFlow1()) { while (max_flow_test.augmentOnBlockingFlow2()) { std::cout << max_flow_test.flowValue() << std::endl; } std::cout << "max flow value: " << max_flow_test.flowValue() << std::endl; std::cout << "elapsed time: " << ts << std::endl; ts.reset(); FOR_EACH_LOC(stGW::EdgeIt, e, stgw) flow.set(e, 0); max_flow_test.run(); std::cout << "pre flow value: " << max_flow_test.flowValue() << std::endl; std::cout << "elapsed time: " << ts << std::endl; ts.reset(); leda_list ml=MAX_CARD_BIPARTITE_MATCHING(lg); std::cout << "leda matching value: " << ml.size() << std::endl; std::cout << "elapsed time: " << ts << std::endl; return 0; }