| 
alpar@389
 | 
     1  | 
/* -*- mode: C++; indent-tabs-mode: nil; -*-
  | 
| 
alpar@389
 | 
     2  | 
 *
  | 
| 
alpar@389
 | 
     3  | 
 * This file is a part of LEMON, a generic C++ optimization library.
  | 
| 
alpar@389
 | 
     4  | 
 *
  | 
| 
alpar@440
 | 
     5  | 
 * Copyright (C) 2003-2009
  | 
| 
alpar@389
 | 
     6  | 
 * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
  | 
| 
alpar@389
 | 
     7  | 
 * (Egervary Research Group on Combinatorial Optimization, EGRES).
  | 
| 
alpar@389
 | 
     8  | 
 *
  | 
| 
alpar@389
 | 
     9  | 
 * Permission to use, modify and distribute this software is granted
  | 
| 
alpar@389
 | 
    10  | 
 * provided that this copyright notice appears in all copies. For
  | 
| 
alpar@389
 | 
    11  | 
 * precise terms see the accompanying LICENSE file.
  | 
| 
alpar@389
 | 
    12  | 
 *
  | 
| 
alpar@389
 | 
    13  | 
 * This software is provided "AS IS" with no warranty of any kind,
  | 
| 
alpar@389
 | 
    14  | 
 * express or implied, and with no claim as to its suitability for any
  | 
| 
alpar@389
 | 
    15  | 
 * purpose.
  | 
| 
alpar@389
 | 
    16  | 
 *
  | 
| 
alpar@389
 | 
    17  | 
 */
  | 
| 
alpar@389
 | 
    18  | 
  | 
| 
alpar@423
 | 
    19  | 
#include <iostream>
  | 
| 
alpar@389
 | 
    20  | 
  | 
| 
alpar@389
 | 
    21  | 
#include "test_tools.h"
  | 
| 
alpar@389
 | 
    22  | 
#include <lemon/smart_graph.h>
  | 
| 
alpar@389
 | 
    23  | 
#include <lemon/preflow.h>
  | 
| 
alpar@389
 | 
    24  | 
#include <lemon/concepts/digraph.h>
  | 
| 
alpar@389
 | 
    25  | 
#include <lemon/concepts/maps.h>
  | 
| 
alpar@389
 | 
    26  | 
#include <lemon/lgf_reader.h>
  | 
| 
kpeter@394
 | 
    27  | 
#include <lemon/elevator.h>
  | 
| 
alpar@389
 | 
    28  | 
  | 
| 
alpar@389
 | 
    29  | 
using namespace lemon;
  | 
| 
alpar@389
 | 
    30  | 
  | 
| 
alpar@423
 | 
    31  | 
char test_lgf[] =
  | 
| 
alpar@423
 | 
    32  | 
  "@nodes\n"
  | 
| 
alpar@423
 | 
    33  | 
  "label\n"
  | 
| 
alpar@423
 | 
    34  | 
  "0\n"
  | 
| 
alpar@423
 | 
    35  | 
  "1\n"
  | 
| 
alpar@423
 | 
    36  | 
  "2\n"
  | 
| 
alpar@423
 | 
    37  | 
  "3\n"
  | 
| 
alpar@423
 | 
    38  | 
  "4\n"
  | 
| 
alpar@423
 | 
    39  | 
  "5\n"
  | 
| 
alpar@423
 | 
    40  | 
  "6\n"
  | 
| 
alpar@423
 | 
    41  | 
  "7\n"
  | 
| 
alpar@423
 | 
    42  | 
  "8\n"
  | 
| 
alpar@423
 | 
    43  | 
  "9\n"
  | 
| 
alpar@423
 | 
    44  | 
  "@arcs\n"
  | 
| 
alpar@423
 | 
    45  | 
  "    label capacity\n"
  | 
| 
alpar@423
 | 
    46  | 
  "0 1 0     20\n"
  | 
| 
alpar@423
 | 
    47  | 
  "0 2 1     0\n"
  | 
| 
alpar@423
 | 
    48  | 
  "1 1 2     3\n"
  | 
| 
alpar@423
 | 
    49  | 
  "1 2 3     8\n"
  | 
| 
alpar@423
 | 
    50  | 
  "1 3 4     8\n"
  | 
| 
alpar@423
 | 
    51  | 
  "2 5 5     5\n"
  | 
| 
alpar@423
 | 
    52  | 
  "3 2 6     5\n"
  | 
| 
alpar@423
 | 
    53  | 
  "3 5 7     5\n"
  | 
| 
alpar@423
 | 
    54  | 
  "3 6 8     5\n"
  | 
| 
alpar@423
 | 
    55  | 
  "4 3 9     3\n"
  | 
| 
alpar@423
 | 
    56  | 
  "5 7 10    3\n"
  | 
| 
alpar@423
 | 
    57  | 
  "5 6 11    10\n"
  | 
| 
alpar@423
 | 
    58  | 
  "5 8 12    10\n"
  | 
| 
alpar@423
 | 
    59  | 
  "6 8 13    8\n"
  | 
| 
alpar@423
 | 
    60  | 
  "8 9 14    20\n"
  | 
| 
alpar@423
 | 
    61  | 
  "8 1 15    5\n"
  | 
| 
alpar@423
 | 
    62  | 
  "9 5 16    5\n"
  | 
| 
alpar@423
 | 
    63  | 
  "@attributes\n"
  | 
| 
alpar@423
 | 
    64  | 
  "source 1\n"
  | 
| 
alpar@423
 | 
    65  | 
  "target 8\n";
  | 
| 
alpar@423
 | 
    66  | 
  | 
| 
kpeter@394
 | 
    67  | 
void checkPreflowCompile()
  | 
| 
alpar@389
 | 
    68  | 
{
 | 
| 
alpar@389
 | 
    69  | 
  typedef int VType;
  | 
| 
alpar@389
 | 
    70  | 
  typedef concepts::Digraph Digraph;
  | 
| 
alpar@389
 | 
    71  | 
  | 
| 
alpar@389
 | 
    72  | 
  typedef Digraph::Node Node;
  | 
| 
alpar@389
 | 
    73  | 
  typedef Digraph::Arc Arc;
  | 
| 
alpar@389
 | 
    74  | 
  typedef concepts::ReadMap<Arc,VType> CapMap;
  | 
| 
alpar@389
 | 
    75  | 
  typedef concepts::ReadWriteMap<Arc,VType> FlowMap;
  | 
| 
alpar@389
 | 
    76  | 
  typedef concepts::WriteMap<Node,bool> CutMap;
  | 
| 
alpar@389
 | 
    77  | 
  | 
| 
kpeter@394
 | 
    78  | 
  typedef Elevator<Digraph, Digraph::Node> Elev;
  | 
| 
kpeter@394
 | 
    79  | 
  typedef LinkedElevator<Digraph, Digraph::Node> LinkedElev;
  | 
| 
kpeter@394
 | 
    80  | 
  | 
| 
alpar@389
 | 
    81  | 
  Digraph g;
  | 
| 
alpar@389
 | 
    82  | 
  Node n;
  | 
| 
alpar@389
 | 
    83  | 
  Arc e;
  | 
| 
alpar@389
 | 
    84  | 
  CapMap cap;
  | 
| 
alpar@389
 | 
    85  | 
  FlowMap flow;
  | 
| 
alpar@389
 | 
    86  | 
  CutMap cut;
  | 
| 
alpar@389
 | 
    87  | 
  | 
| 
kpeter@394
 | 
    88  | 
  Preflow<Digraph, CapMap>
  | 
| 
kpeter@394
 | 
    89  | 
    ::SetFlowMap<FlowMap>
  | 
| 
kpeter@394
 | 
    90  | 
    ::SetElevator<Elev>
  | 
| 
kpeter@394
 | 
    91  | 
    ::SetStandardElevator<LinkedElev>
  | 
| 
kpeter@394
 | 
    92  | 
    ::Create preflow_test(g,cap,n,n);
  | 
| 
alpar@389
 | 
    93  | 
  | 
| 
alpar@389
 | 
    94  | 
  preflow_test.capacityMap(cap);
  | 
| 
alpar@389
 | 
    95  | 
  flow = preflow_test.flowMap();
  | 
| 
alpar@389
 | 
    96  | 
  preflow_test.flowMap(flow);
  | 
| 
alpar@389
 | 
    97  | 
  preflow_test.source(n);
  | 
| 
alpar@389
 | 
    98  | 
  preflow_test.target(n);
  | 
| 
alpar@389
 | 
    99  | 
  | 
| 
alpar@389
 | 
   100  | 
  preflow_test.init();
  | 
| 
kpeter@392
 | 
   101  | 
  preflow_test.init(cap);
  | 
| 
alpar@389
 | 
   102  | 
  preflow_test.startFirstPhase();
  | 
| 
alpar@389
 | 
   103  | 
  preflow_test.startSecondPhase();
  | 
| 
alpar@389
 | 
   104  | 
  preflow_test.run();
  | 
| 
alpar@389
 | 
   105  | 
  preflow_test.runMinCut();
  | 
| 
alpar@389
 | 
   106  | 
  | 
| 
alpar@389
 | 
   107  | 
  preflow_test.flowValue();
  | 
| 
alpar@389
 | 
   108  | 
  preflow_test.minCut(n);
  | 
| 
alpar@389
 | 
   109  | 
  preflow_test.minCutMap(cut);
  | 
| 
alpar@389
 | 
   110  | 
  preflow_test.flow(e);
  | 
| 
alpar@389
 | 
   111  | 
  | 
| 
alpar@389
 | 
   112  | 
}
  | 
| 
alpar@389
 | 
   113  | 
  | 
| 
alpar@389
 | 
   114  | 
int cutValue (const SmartDigraph& g,
  | 
| 
alpar@389
 | 
   115  | 
              const SmartDigraph::NodeMap<bool>& cut,
  | 
| 
alpar@389
 | 
   116  | 
              const SmartDigraph::ArcMap<int>& cap) {
 | 
| 
alpar@389
 | 
   117  | 
  | 
| 
alpar@389
 | 
   118  | 
  int c=0;
  | 
| 
alpar@389
 | 
   119  | 
  for(SmartDigraph::ArcIt e(g); e!=INVALID; ++e) {
 | 
| 
alpar@389
 | 
   120  | 
    if (cut[g.source(e)] && !cut[g.target(e)]) c+=cap[e];
  | 
| 
alpar@389
 | 
   121  | 
  }
  | 
| 
alpar@389
 | 
   122  | 
  return c;
  | 
| 
alpar@389
 | 
   123  | 
}
  | 
| 
alpar@389
 | 
   124  | 
  | 
| 
alpar@389
 | 
   125  | 
bool checkFlow(const SmartDigraph& g,
  | 
| 
alpar@389
 | 
   126  | 
               const SmartDigraph::ArcMap<int>& flow,
  | 
| 
alpar@389
 | 
   127  | 
               const SmartDigraph::ArcMap<int>& cap,
  | 
| 
alpar@389
 | 
   128  | 
               SmartDigraph::Node s, SmartDigraph::Node t) {
 | 
| 
alpar@389
 | 
   129  | 
  | 
| 
alpar@389
 | 
   130  | 
  for (SmartDigraph::ArcIt e(g); e != INVALID; ++e) {
 | 
| 
alpar@389
 | 
   131  | 
    if (flow[e] < 0 || flow[e] > cap[e]) return false;
  | 
| 
alpar@389
 | 
   132  | 
  }
  | 
| 
alpar@389
 | 
   133  | 
  | 
| 
alpar@389
 | 
   134  | 
  for (SmartDigraph::NodeIt n(g); n != INVALID; ++n) {
 | 
| 
alpar@389
 | 
   135  | 
    if (n == s || n == t) continue;
  | 
| 
alpar@389
 | 
   136  | 
    int sum = 0;
  | 
| 
alpar@389
 | 
   137  | 
    for (SmartDigraph::OutArcIt e(g, n); e != INVALID; ++e) {
 | 
| 
alpar@389
 | 
   138  | 
      sum += flow[e];
  | 
| 
alpar@389
 | 
   139  | 
    }
  | 
| 
alpar@389
 | 
   140  | 
    for (SmartDigraph::InArcIt e(g, n); e != INVALID; ++e) {
 | 
| 
alpar@389
 | 
   141  | 
      sum -= flow[e];
  | 
| 
alpar@389
 | 
   142  | 
    }
  | 
| 
alpar@389
 | 
   143  | 
    if (sum != 0) return false;
  | 
| 
alpar@389
 | 
   144  | 
  }
  | 
| 
alpar@389
 | 
   145  | 
  return true;
  | 
| 
alpar@389
 | 
   146  | 
}
  | 
| 
alpar@389
 | 
   147  | 
  | 
| 
alpar@389
 | 
   148  | 
int main() {
 | 
| 
alpar@389
 | 
   149  | 
  | 
| 
alpar@389
 | 
   150  | 
  typedef SmartDigraph Digraph;
  | 
| 
alpar@389
 | 
   151  | 
  | 
| 
alpar@389
 | 
   152  | 
  typedef Digraph::Node Node;
  | 
| 
alpar@389
 | 
   153  | 
  typedef Digraph::NodeIt NodeIt;
  | 
| 
alpar@389
 | 
   154  | 
  typedef Digraph::ArcIt ArcIt;
  | 
| 
alpar@389
 | 
   155  | 
  typedef Digraph::ArcMap<int> CapMap;
  | 
| 
alpar@389
 | 
   156  | 
  typedef Digraph::ArcMap<int> FlowMap;
  | 
| 
alpar@389
 | 
   157  | 
  typedef Digraph::NodeMap<bool> CutMap;
  | 
| 
alpar@389
 | 
   158  | 
  | 
| 
alpar@389
 | 
   159  | 
  typedef Preflow<Digraph, CapMap> PType;
  | 
| 
alpar@389
 | 
   160  | 
  | 
| 
alpar@389
 | 
   161  | 
  Digraph g;
  | 
| 
alpar@389
 | 
   162  | 
  Node s, t;
  | 
| 
alpar@389
 | 
   163  | 
  CapMap cap(g);
  | 
| 
alpar@423
 | 
   164  | 
  std::istringstream input(test_lgf);
  | 
| 
alpar@423
 | 
   165  | 
  DigraphReader<Digraph>(g,input).
  | 
| 
alpar@389
 | 
   166  | 
    arcMap("capacity", cap).
 | 
| 
alpar@389
 | 
   167  | 
    node("source",s).
 | 
| 
alpar@389
 | 
   168  | 
    node("target",t).
 | 
| 
alpar@389
 | 
   169  | 
    run();
  | 
| 
alpar@389
 | 
   170  | 
  | 
| 
alpar@389
 | 
   171  | 
  PType preflow_test(g, cap, s, t);
  | 
| 
alpar@389
 | 
   172  | 
  preflow_test.run();
  | 
| 
alpar@389
 | 
   173  | 
  | 
| 
alpar@389
 | 
   174  | 
  check(checkFlow(g, preflow_test.flowMap(), cap, s, t),
  | 
| 
alpar@389
 | 
   175  | 
        "The flow is not feasible.");
  | 
| 
alpar@389
 | 
   176  | 
  | 
| 
alpar@389
 | 
   177  | 
  CutMap min_cut(g);
  | 
| 
alpar@389
 | 
   178  | 
  preflow_test.minCutMap(min_cut);
  | 
| 
alpar@389
 | 
   179  | 
  int min_cut_value=cutValue(g,min_cut,cap);
  | 
| 
alpar@389
 | 
   180  | 
  | 
| 
alpar@389
 | 
   181  | 
  check(preflow_test.flowValue() == min_cut_value,
  | 
| 
alpar@389
 | 
   182  | 
        "The max flow value is not equal to the three min cut values.");
  | 
| 
alpar@389
 | 
   183  | 
  | 
| 
alpar@389
 | 
   184  | 
  FlowMap flow(g);
  | 
| 
alpar@389
 | 
   185  | 
  for(ArcIt e(g); e!=INVALID; ++e) flow[e] = preflow_test.flowMap()[e];
  | 
| 
alpar@389
 | 
   186  | 
  | 
| 
alpar@389
 | 
   187  | 
  int flow_value=preflow_test.flowValue();
  | 
| 
alpar@389
 | 
   188  | 
  | 
| 
alpar@389
 | 
   189  | 
  for(ArcIt e(g); e!=INVALID; ++e) cap[e]=2*cap[e];
  | 
| 
kpeter@392
 | 
   190  | 
  preflow_test.init(flow);
  | 
| 
alpar@389
 | 
   191  | 
  preflow_test.startFirstPhase();
  | 
| 
alpar@389
 | 
   192  | 
  | 
| 
alpar@389
 | 
   193  | 
  CutMap min_cut1(g);
  | 
| 
alpar@389
 | 
   194  | 
  preflow_test.minCutMap(min_cut1);
  | 
| 
alpar@389
 | 
   195  | 
  min_cut_value=cutValue(g,min_cut1,cap);
  | 
| 
alpar@389
 | 
   196  | 
  | 
| 
alpar@389
 | 
   197  | 
  check(preflow_test.flowValue() == min_cut_value &&
  | 
| 
alpar@389
 | 
   198  | 
        min_cut_value == 2*flow_value,
  | 
| 
alpar@389
 | 
   199  | 
        "The max flow value or the min cut value is wrong.");
  | 
| 
alpar@389
 | 
   200  | 
  | 
| 
alpar@389
 | 
   201  | 
  preflow_test.startSecondPhase();
  | 
| 
alpar@389
 | 
   202  | 
  | 
| 
alpar@389
 | 
   203  | 
  check(checkFlow(g, preflow_test.flowMap(), cap, s, t),
  | 
| 
alpar@389
 | 
   204  | 
        "The flow is not feasible.");
  | 
| 
alpar@389
 | 
   205  | 
  | 
| 
alpar@389
 | 
   206  | 
  CutMap min_cut2(g);
  | 
| 
alpar@389
 | 
   207  | 
  preflow_test.minCutMap(min_cut2);
  | 
| 
alpar@389
 | 
   208  | 
  min_cut_value=cutValue(g,min_cut2,cap);
  | 
| 
alpar@389
 | 
   209  | 
  | 
| 
alpar@389
 | 
   210  | 
  check(preflow_test.flowValue() == min_cut_value &&
  | 
| 
alpar@389
 | 
   211  | 
        min_cut_value == 2*flow_value,
  | 
| 
alpar@389
 | 
   212  | 
        "The max flow value or the three min cut values were not doubled");
  | 
| 
alpar@389
 | 
   213  | 
  | 
| 
alpar@389
 | 
   214  | 
  | 
| 
alpar@389
 | 
   215  | 
  preflow_test.flowMap(flow);
  | 
| 
alpar@389
 | 
   216  | 
  | 
| 
alpar@389
 | 
   217  | 
  NodeIt tmp1(g,s);
  | 
| 
alpar@389
 | 
   218  | 
  ++tmp1;
  | 
| 
alpar@389
 | 
   219  | 
  if ( tmp1 != INVALID ) s=tmp1;
  | 
| 
alpar@389
 | 
   220  | 
  | 
| 
alpar@389
 | 
   221  | 
  NodeIt tmp2(g,t);
  | 
| 
alpar@389
 | 
   222  | 
  ++tmp2;
  | 
| 
alpar@389
 | 
   223  | 
  if ( tmp2 != INVALID ) t=tmp2;
  | 
| 
alpar@389
 | 
   224  | 
  | 
| 
alpar@389
 | 
   225  | 
  preflow_test.source(s);
  | 
| 
alpar@389
 | 
   226  | 
  preflow_test.target(t);
  | 
| 
alpar@389
 | 
   227  | 
  | 
| 
alpar@389
 | 
   228  | 
  preflow_test.run();
  | 
| 
alpar@389
 | 
   229  | 
  | 
| 
alpar@389
 | 
   230  | 
  CutMap min_cut3(g);
  | 
| 
alpar@389
 | 
   231  | 
  preflow_test.minCutMap(min_cut3);
  | 
| 
alpar@389
 | 
   232  | 
  min_cut_value=cutValue(g,min_cut3,cap);
  | 
| 
alpar@389
 | 
   233  | 
  | 
| 
alpar@389
 | 
   234  | 
  | 
| 
alpar@389
 | 
   235  | 
  check(preflow_test.flowValue() == min_cut_value,
  | 
| 
alpar@389
 | 
   236  | 
        "The max flow value or the three min cut values are incorrect.");
  | 
| 
alpar@389
 | 
   237  | 
  | 
| 
alpar@389
 | 
   238  | 
  return 0;
  | 
| 
alpar@389
 | 
   239  | 
}
  |