1 /* -*- mode: C++; indent-tabs-mode: nil; -*-
 
     3  * This file is a part of LEMON, a generic C++ optimization library.
 
     5  * Copyright (C) 2003-2008
 
     6  * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
 
     7  * (Egervary Research Group on Combinatorial Optimization, EGRES).
 
     9  * Permission to use, modify and distribute this software is granted
 
    10  * provided that this copyright notice appears in all copies. For
 
    11  * precise terms see the accompanying LICENSE file.
 
    13  * This software is provided "AS IS" with no warranty of any kind,
 
    14  * express or implied, and with no claim as to its suitability for any
 
    19 #include <lemon/concepts/digraph.h>
 
    20 #include <lemon/smart_graph.h>
 
    21 #include <lemon/list_graph.h>
 
    22 #include <lemon/lgf_reader.h>
 
    23 #include <lemon/dfs.h>
 
    24 #include <lemon/path.h>
 
    26 #include "graph_test.h"
 
    27 #include "test_tools.h"
 
    29 using namespace lemon;
 
    55 void checkDfsCompile()
 
    57   typedef concepts::Digraph Digraph;
 
    58   typedef Dfs<Digraph> DType;
 
    73   e  = dfs_test.predArc(n);
 
    74   n  = dfs_test.predNode(n);
 
    75   d  = dfs_test.distMap();
 
    76   p  = dfs_test.predMap();
 
    77   b  = dfs_test.reached(n);
 
    79   Path<Digraph> pp = dfs_test.path(n);
 
    82 void checkDfsFunctionCompile()
 
    85   typedef concepts::Digraph Digraph;
 
    86   typedef Digraph::Arc Arc;
 
    87   typedef Digraph::Node Node;
 
    92   b=dfs(g).run(Node(),Node());
 
    95     .predMap(concepts::ReadWriteMap<Node,Arc>())
 
    96     .distMap(concepts::ReadWriteMap<Node,VType>())
 
    97     .reachedMap(concepts::ReadWriteMap<Node,bool>())
 
    98     .processedMap(concepts::WriteMap<Node,bool>())
 
   101     .predMap(concepts::ReadWriteMap<Node,Arc>())
 
   102     .distMap(concepts::ReadWriteMap<Node,VType>())
 
   103     .reachedMap(concepts::ReadWriteMap<Node,bool>())
 
   104     .processedMap(concepts::WriteMap<Node,bool>())
 
   105     .path(concepts::Path<Digraph>())
 
   109     .predMap(concepts::ReadWriteMap<Node,Arc>())
 
   110     .distMap(concepts::ReadWriteMap<Node,VType>())
 
   111     .reachedMap(concepts::ReadWriteMap<Node,bool>())
 
   112     .processedMap(concepts::WriteMap<Node,bool>())
 
   116 template <class Digraph>
 
   118   TEMPLATE_DIGRAPH_TYPEDEFS(Digraph);
 
   123   std::istringstream input(test_lgf);
 
   124   digraphReader(input, G).
 
   129   Dfs<Digraph> dfs_test(G);
 
   132   Path<Digraph> p = dfs_test.path(t);
 
   133   check(p.length() == dfs_test.dist(t),"path() found a wrong path.");
 
   134   check(checkPath(G, p),"path() found a wrong path.");
 
   135   check(pathSource(G, p) == s,"path() found a wrong path.");
 
   136   check(pathTarget(G, p) == t,"path() found a wrong path.");
 
   138   for(NodeIt v(G); v!=INVALID; ++v) {
 
   139     if (dfs_test.reached(v)) {
 
   140       check(v==s || dfs_test.predArc(v)!=INVALID, "Wrong tree.");
 
   141       if (dfs_test.predArc(v)!=INVALID ) {
 
   142         Arc e=dfs_test.predArc(v);
 
   144         check(u==dfs_test.predNode(v),"Wrong tree.");
 
   145         check(dfs_test.dist(v) - dfs_test.dist(u) == 1,
 
   146               "Wrong distance. (" << dfs_test.dist(u) << "->"
 
   147               << dfs_test.dist(v) << ")");
 
   153     NullMap<Node,Arc> myPredMap;
 
   154     dfs(G).predMap(myPredMap).run(s);
 
   160   checkDfs<ListDigraph>();
 
   161   checkDfs<SmartDigraph>();