test/vf2_test.cc
author Balazs Dezso <deba@google.com>
Sat, 27 Oct 2018 13:00:48 +0200
changeset 1203 8c567e298d7f
parent 1186 3feba0ea1bda
permissions -rw-r--r--
Paremeter to stop matching calculation when only single node is unmatched
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/* -*- mode: C++; indent-tabs-mode: nil; -*-
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 *
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 * This file is a part of LEMON, a generic C++ optimization library.
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 *
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 * Copyright (C) 2015-2017
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 * EMAXA Kutato-fejleszto Kft. (EMAXA Research Ltd.)
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 *
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 * Permission to use, modify and distribute this software is granted
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 * provided that this copyright notice appears in all copies. For
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 * precise terms see the accompanying LICENSE file.
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 *
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 * This software is provided "AS IS" with no warranty of any kind,
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 * express or implied, and with no claim as to its suitability for any
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 * purpose.
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 *
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 */
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#include <lemon/vf2.h>
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#include <lemon/vf2pp.h>
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#include <lemon/concepts/digraph.h>
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#include <lemon/smart_graph.h>
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#include <lemon/lgf_reader.h>
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#include <lemon/concepts/maps.h>
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#include <test/test_tools.h>
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#include <sstream>
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using namespace lemon;
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char petersen_lgf[] =
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  "@nodes\n"
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  "label col1 col2\n"
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  "0 1 1\n"
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  "1 1 2\n"
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  "2 1 3\n"
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  "3 1 4\n"
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  "4 2 5\n"
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  "5 2 1\n"
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  "6 2 2\n"
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  "7 2 3\n"
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  "8 2 4\n"
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  "9 2 5\n"
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  "@arcs\n"
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  "     -\n"
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  "0 1\n"
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  "1 2\n"
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  "2 3\n"
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  "3 4\n"
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  "4 0\n"
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  "0 5\n"
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  "1 6\n"
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  "2 7\n"
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  "3 8\n"
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  "4 9\n"
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  "5 8\n"
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  "5 7\n"
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  "9 6\n"
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  "9 7\n"
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  "6 8\n";
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char c5_lgf[] =
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  "@nodes\n"
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  "label col\n"
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  "0 1\n"
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  "1 2\n"
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  "2 3\n"
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  "3 4\n"
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  "4 5\n"
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  "@arcs\n"
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  "     -\n"
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  "0 1\n"
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  "1 2\n"
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  "2 3\n"
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  "3 4\n"
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  "4 0\n";
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char c7_lgf[] =
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  "@nodes\n"
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  "label\n"
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  "0\n"
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  "1\n"
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  "2\n"
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  "3\n"
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  "4\n"
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  "5\n"
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  "6\n"
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  "@arcs\n"
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  "     -\n"
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  "0 1\n"
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  "1 2\n"
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  "2 3\n"
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  "3 4\n"
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  "4 5\n"
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  "5 6\n"
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  "6 0\n";
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char c10_lgf[] =
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  "@nodes\n"
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  "label\n"
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  "0\n"
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  "1\n"
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  "2\n"
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  "3\n"
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  "4\n"
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  "5\n"
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  "6\n"
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  "7\n"
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  "8\n"
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  "9\n"
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  "@arcs\n"
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  "     -\n"
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  "0 1\n"
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  "1 2\n"
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  "2 3\n"
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  "3 4\n"
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  "4 5\n"
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  "5 6\n"
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  "6 7\n"
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  "7 8\n"
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  "8 9\n"
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  "9 0\n";
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char p10_lgf[] =
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  "@nodes\n"
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  "label\n"
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  "0\n"
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  "1\n"
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  "2\n"
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  "3\n"
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  "4\n"
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  "5\n"
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  "6\n"
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  "7\n"
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  "8\n"
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  "9\n"
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  "@arcs\n"
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  "     -\n"
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  "0 1\n"
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  "1 2\n"
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  "2 3\n"
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  "3 4\n"
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  "4 5\n"
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  "5 6\n"
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  "6 7\n"
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  "7 8\n"
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  "8 9\n";
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SmartGraph petersen, c5, c7, c10, p10;
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SmartGraph::NodeMap<int> petersen_col1(petersen);
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SmartGraph::NodeMap<int> petersen_col2(petersen);
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SmartGraph::NodeMap<int> c5_col(c5);
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void make_graphs() {
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  std::stringstream ss(petersen_lgf);
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  graphReader(petersen, ss)
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    .nodeMap("col1", petersen_col1)
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    .nodeMap("col2", petersen_col2)
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    .run();
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  ss.clear();
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  ss.str("");
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  ss << c5_lgf;
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  //std::stringstream ss2(c5_lgf);
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  graphReader(c5, ss)
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    .nodeMap("col", c5_col)
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    .run();
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  ss.clear();
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  ss.str("");
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  ss << c7_lgf;
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  graphReader(c7, ss).run();
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  ss.clear();
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  ss.str("");
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  ss << c10_lgf;
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  graphReader(c10, ss).run();
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  ss.clear();
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  ss.str("");
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  ss << p10_lgf;
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  graphReader(p10, ss).run();
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}
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class EqComparable {
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public:
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  bool operator==(const EqComparable&) {
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    return false;
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  }
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};
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template<class A, class B>
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class EqClass {
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public:
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  bool operator()(A, B){
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    return false;
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  }
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};
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class IntConvertible1 {
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public:
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  operator int() {
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    return 0;
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  }
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};
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class IntConvertible2 {
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public:
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  operator int() {
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    return 0;
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  }
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};
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template<class G1,class G2>
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void checkVf2Compile() {
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  G1 g;
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  G2 h;
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  concepts::ReadWriteMap<typename G1::Node, typename G2::Node> r;
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  bool succ;
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  ::lemon::ignore_unused_variable_warning(succ);
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  succ = vf2(g,h).run();
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  succ = vf2(g,h).induced().run();
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  succ = vf2(g,h).iso().run();
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  succ = vf2(g,h).mapping(r).run();
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  Vf2<G1,G2,concepts::ReadWriteMap<typename G1::Node, typename G2::Node>,
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      EqClass<typename G1::Node,typename G2::Node> >
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    myVf2(g,h,r,EqClass<typename G1::Node,typename G2::Node>());
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  myVf2.find();
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  succ = vf2(g,h).induced().mapping(r).run();
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  succ = vf2(g,h).iso().mapping(r).run();
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  concepts::ReadMap<typename G1::Node, EqComparable> l1;
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  concepts::ReadMap<typename G2::Node, EqComparable> l2;
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  succ = vf2(g,h).nodeLabels(l1,l2).mapping(r).run();
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  succ = vf2(g,h).nodeEq(EqClass<typename G1::Node,typename G2::Node>())
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    .mapping(r).run();
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}
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void vf2Compile() {
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  checkVf2Compile<concepts::Graph,concepts::Graph>();
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  checkVf2Compile<concepts::Graph,SmartGraph>();
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  checkVf2Compile<SmartGraph,concepts::Graph>();
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}
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template<class G1,class G2>
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void checkVf2ppCompile() {
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  G1 g;
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  G2 h;
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  concepts::ReadWriteMap<typename G1::Node, typename G2::Node> r;
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  bool succ;
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  ::lemon::ignore_unused_variable_warning(succ);
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  succ = vf2pp(g,h).run();
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  succ = vf2pp(g,h).induced().run();
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  succ = vf2pp(g,h).iso().run();
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  succ = vf2pp(g,h).mapping(r).run();
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  succ = vf2pp(g,h).induced().mapping(r).run();
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  succ = vf2pp(g,h).iso().mapping(r).run();
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  concepts::ReadMap<typename G1::Node, int> c1;
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  concepts::ReadMap<typename G2::Node, int> c2;
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  Vf2pp<G1,G2,concepts::ReadWriteMap<typename G1::Node, typename G2::Node>,
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        concepts::ReadMap<typename G1::Node, int>,
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        concepts::ReadMap<typename G2::Node, int> >
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    myVf2pp(g,h,r,c1,c2);
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  myVf2pp.find();
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  succ = vf2pp(g,h).nodeLabels(c1,c2).mapping(r).run();
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  succ = vf2pp(g,h).nodeLabels(c1,c2).mapping(r).run();
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  concepts::ReadMap<typename G1::Node, char> c1_c;
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  concepts::ReadMap<typename G2::Node, char> c2_c;
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  Vf2pp<G1,G2,concepts::ReadWriteMap<typename G1::Node, typename G2::Node>,
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        concepts::ReadMap<typename G1::Node, char>,
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        concepts::ReadMap<typename G2::Node, char> >
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    myVf2pp_c(g,h,r,c1_c,c2_c);
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  myVf2pp_c.find();
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  succ = vf2pp(g,h).nodeLabels(c1_c,c2_c).mapping(r).run();
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  succ = vf2pp(g,h).nodeLabels(c1_c,c2_c).mapping(r).run();
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  concepts::ReadMap<typename G1::Node, IntConvertible1> c1_IntConv;
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  concepts::ReadMap<typename G2::Node, IntConvertible2> c2_IntConv;
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  Vf2pp<G1,G2,concepts::ReadWriteMap<typename G1::Node, typename G2::Node>,
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        concepts::ReadMap<typename G1::Node, IntConvertible1>,
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        concepts::ReadMap<typename G2::Node, IntConvertible2> >
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    myVf2pp_IntConv(g,h,r,c1_IntConv,c2_IntConv);
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  myVf2pp_IntConv.find();
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  succ = vf2pp(g,h).nodeLabels(c1_IntConv,c2_IntConv).mapping(r).run();
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  succ = vf2pp(g,h).nodeLabels(c1_IntConv,c2_IntConv).mapping(r).run();
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}
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void vf2ppCompile() {
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  checkVf2ppCompile<concepts::Graph,concepts::Graph>();
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  checkVf2ppCompile<concepts::Graph,SmartGraph>();
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  checkVf2ppCompile<SmartGraph,concepts::Graph>();
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}
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template<class G1, class G2, class I>
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void checkSubIso(const G1 &g1, const G2 &g2, const I &i) {
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  std::set<typename G2::Node> image;
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  for (typename G1::NodeIt n(g1);n!=INVALID;++n){
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    check(i[n]!=INVALID, "Wrong isomorphism: incomplete mapping.");
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    check(image.count(i[n])==0,"Wrong isomorphism: not injective.");
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    image.insert(i[n]);
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  }
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  for (typename G1::EdgeIt e(g1);e!=INVALID;++e) {
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    check(findEdge(g2,i[g1.u(e)],i[g1.v(e)])!=INVALID,
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          "Wrong isomorphism: missing edge(checkSub).");
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  }
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}
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template<class G1, class G2, class I>
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void checkIndIso(const G1 &g1, const G2 &g2, const I &i) {
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  std::set<typename G2::Node> image;
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  for (typename G1::NodeIt n(g1);n!=INVALID;++n) {
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    check(i[n]!=INVALID, "Wrong isomorphism: incomplete mapping.");
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    check(image.count(i[n])==0,"Wrong isomorphism: not injective.");
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    image.insert(i[n]);
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  }
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  for (typename G1::NodeIt n(g1); n!=INVALID; ++n) {
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    for (typename G1::NodeIt m(g1); m!=INVALID; ++m) {
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      if((findEdge(g1,n,m)==INVALID) != (findEdge(g2,i[n],i[m])==INVALID)) {
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        std::cout << "Wrong isomorphism: edge mismatch";
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        exit(1);
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      }
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    }
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  }
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}
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template<class G1,class G2,class T>
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bool checkSub(const G1 &g1, const G2 &g2, const T &vf2) {
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  typename G1:: template NodeMap<typename G2::Node> iso(g1,INVALID);
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  if (const_cast<T&>(vf2).mapping(iso).run()) {
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    checkSubIso(g1,g2,iso);
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    return true;
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  }
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  return false;
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}
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template<class G1,class G2,class T>
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bool checkInd(const G1 &g1, const G2 &g2, const T &vf2) {
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  typename G1:: template NodeMap<typename G2::Node> iso(g1,INVALID);
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  if (const_cast<T&>(vf2).induced().mapping(iso).run()) {
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    checkIndIso(g1,g2,iso);
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    return true;
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  }
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  return false;
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}
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template<class G1,class G2,class T>
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   356
bool checkIso(const G1 &g1, const G2 &g2, const T &vf2) {
madarasip@1186
   357
  typename G1:: template NodeMap<typename G2::Node> iso(g1,INVALID);
kpeter@1187
   358
  if (const_cast<T&>(vf2).iso().mapping(iso).run()) {
madarasip@1186
   359
    check(countNodes(g1)==countNodes(g2),
madarasip@1186
   360
          "Wrong iso alg.: they are not isomophic.");
kpeter@1187
   361
    checkIndIso(g1,g2,iso);
madarasip@1186
   362
    return true;
madarasip@1186
   363
  }
kpeter@1187
   364
  return false;
madarasip@1141
   365
}
madarasip@1141
   366
madarasip@1141
   367
template<class G1, class G2, class L1, class L2, class I>
madarasip@1141
   368
void checkLabel(const G1 &g1, const G2 &,
kpeter@1187
   369
                const L1 &l1, const L2 &l2, const I &i) {
kpeter@1187
   370
  for (typename G1::NodeIt n(g1);n!=INVALID;++n) {
madarasip@1186
   371
    check(l1[n]==l2[i[n]],"Wrong isomorphism: label mismatch.");
kpeter@1187
   372
  }
kpeter@1187
   373
}
kpeter@1187
   374
kpeter@1187
   375
template<class G1,class G2,class L1,class L2,class T>
kpeter@1187
   376
bool checkSub(const G1 &g1, const G2 &g2, const L1 &l1, const L2 &l2, const T &vf2) {
kpeter@1187
   377
  typename G1:: template NodeMap<typename G2::Node> iso(g1,INVALID);
kpeter@1187
   378
  if (const_cast<T&>(vf2).nodeLabels(l1,l2).mapping(iso).run()){
kpeter@1187
   379
    checkSubIso(g1,g2,iso);
kpeter@1187
   380
    checkLabel(g1,g2,l1,l2,iso);
kpeter@1187
   381
    return true;
kpeter@1187
   382
  }
kpeter@1187
   383
  return false;
kpeter@1187
   384
}
kpeter@1187
   385
kpeter@1187
   386
template<class G1,class G2>
kpeter@1187
   387
void checkSub(const G1 &g1, const G2 &g2, bool expected, const char* msg) {
kpeter@1187
   388
  check(checkSub(g1,g2,vf2(g1,g2)) == expected, msg);
kpeter@1187
   389
  check(checkSub(g1,g2,vf2pp(g1,g2)) == expected, msg);
kpeter@1187
   390
}
kpeter@1187
   391
kpeter@1187
   392
template<class G1,class G2>
kpeter@1187
   393
void checkInd(const G1 &g1, const G2 &g2, bool expected, const char* msg) {
kpeter@1187
   394
  check(checkInd(g1,g2,vf2(g1,g2)) == expected, msg);
kpeter@1187
   395
  check(checkInd(g1,g2,vf2pp(g1,g2)) == expected, msg);
kpeter@1187
   396
}
kpeter@1187
   397
kpeter@1187
   398
template<class G1,class G2>
kpeter@1187
   399
void checkIso(const G1 &g1, const G2 &g2, bool expected, const char* msg) {
kpeter@1187
   400
  check(checkIso(g1,g2,vf2(g1,g2)) == expected, msg);
kpeter@1187
   401
  check(checkIso(g1,g2,vf2pp(g1,g2)) == expected, msg);
madarasip@1141
   402
}
madarasip@1141
   403
madarasip@1141
   404
template<class G1,class G2,class L1,class L2>
kpeter@1187
   405
void checkSub(const G1 &g1, const G2 &g2, const L1 &l1, const L2 &l2, bool expected, const char* msg) {
kpeter@1187
   406
  check(checkSub(g1,g2,l1,l2,vf2(g1,g2)) == expected, msg);
kpeter@1187
   407
  check(checkSub(g1,g2,l1,l2,vf2pp(g1,g2)) == expected, msg);
madarasip@1141
   408
}
madarasip@1141
   409
madarasip@1141
   410
int main() {
madarasip@1141
   411
  make_graphs();
madarasip@1141
   412
kpeter@1187
   413
  checkSub(c5,petersen,true,
kpeter@1187
   414
      "There should exist a C5->Petersen mapping.");
kpeter@1187
   415
  checkSub(c7,petersen,false,
kpeter@1187
   416
      "There should not exist a C7->Petersen mapping.");
kpeter@1187
   417
  checkSub(p10,petersen,true,
kpeter@1187
   418
      "There should exist a P10->Petersen mapping.");
kpeter@1187
   419
  checkSub(c10,petersen,false,
kpeter@1187
   420
      "There should not exist a C10->Petersen mapping.");
kpeter@1187
   421
  checkSub(petersen,petersen,true,
kpeter@1187
   422
      "There should exist a Petersen->Petersen mapping.");
kpeter@1187
   423
kpeter@1187
   424
  checkInd(c5,petersen,true,
kpeter@1187
   425
      "There should exist a C5->Petersen spanned mapping.");
kpeter@1187
   426
  checkInd(c7,petersen,false,
kpeter@1187
   427
      "There should exist a C7->Petersen spanned mapping.");
kpeter@1187
   428
  checkInd(p10,petersen,false,
kpeter@1187
   429
      "There should not exist a P10->Petersen spanned mapping.");
kpeter@1187
   430
  checkInd(c10,petersen,false,
kpeter@1187
   431
      "There should not exist a C10->Petersen spanned mapping.");
kpeter@1187
   432
  checkInd(petersen,petersen,true,
madarasip@1141
   433
        "There should exist a Petersen->Petersen spanned mapping.");
madarasip@1141
   434
kpeter@1187
   435
  checkSub(petersen,c10,false,
kpeter@1187
   436
      "There should not exist a Petersen->C10 mapping.");
kpeter@1187
   437
  checkSub(p10,c10,true,
kpeter@1187
   438
      "There should exist a P10->C10 mapping.");
kpeter@1187
   439
  checkInd(p10,c10,false,
kpeter@1187
   440
      "There should not exist a P10->C10 spanned mapping.");
kpeter@1187
   441
  checkSub(c10,p10,false,
kpeter@1187
   442
      "There should not exist a C10->P10 mapping.");
madarasip@1141
   443
kpeter@1187
   444
  checkIso(p10,c10,false,
kpeter@1187
   445
      "P10 and C10 are not isomorphic.");
kpeter@1187
   446
  checkIso(c10,c10,true,
kpeter@1187
   447
      "C10 and C10 are isomorphic.");
alpar@1143
   448
kpeter@1187
   449
  checkSub(c5,petersen,c5_col,petersen_col1,false,
kpeter@1187
   450
      "There should exist a C5->Petersen mapping.");
kpeter@1187
   451
  checkSub(c5,petersen,c5_col,petersen_col2,true,
kpeter@1187
   452
      "There should exist a C5->Petersen mapping.");
madarasip@1141
   453
kpeter@1187
   454
  check(!vf2(p10,c10).iso().run(), "P10 and C10 are not isomorphic.");
kpeter@1187
   455
  check(!vf2pp(p10,c10).iso().run(), "P10 and C10 are not isomorphic.");
kpeter@1187
   456
kpeter@1187
   457
  check(vf2(c10,c10).iso().run(), "C10 and C10 are isomorphic.");
kpeter@1187
   458
  check(vf2pp(c10,c10).iso().run(), "C10 and C10 are isomorphic.");
madarasip@1141
   459
}