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kpeter@601
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/* -*- mode: C++; indent-tabs-mode: nil; -*-
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kpeter@601
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 *
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kpeter@601
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 * This file is a part of LEMON, a generic C++ optimization library.
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kpeter@601
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 *
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kpeter@601
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 * Copyright (C) 2003-2009
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kpeter@601
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 * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
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kpeter@601
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 * (Egervary Research Group on Combinatorial Optimization, EGRES).
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kpeter@601
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     8  | 
 *
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kpeter@601
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 * Permission to use, modify and distribute this software is granted
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kpeter@601
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 * provided that this copyright notice appears in all copies. For
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kpeter@601
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 * precise terms see the accompanying LICENSE file.
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kpeter@601
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 *
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kpeter@601
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 * This software is provided "AS IS" with no warranty of any kind,
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kpeter@601
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 * express or implied, and with no claim as to its suitability for any
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kpeter@601
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    15  | 
 * purpose.
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kpeter@601
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 *
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kpeter@601
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 */
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kpeter@601
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kpeter@601
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#include <iostream>
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kpeter@601
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#include <fstream>
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kpeter@640
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#include <limits>
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kpeter@601
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kpeter@601
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#include <lemon/list_graph.h>
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kpeter@601
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#include <lemon/lgf_reader.h>
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kpeter@601
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kpeter@601
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#include <lemon/network_simplex.h>
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kpeter@601
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kpeter@601
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#include <lemon/concepts/digraph.h>
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kpeter@601
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#include <lemon/concept_check.h>
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kpeter@601
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kpeter@601
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#include "test_tools.h"
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kpeter@601
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kpeter@601
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using namespace lemon;
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kpeter@601
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    34  | 
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kpeter@601
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    35  | 
char test_lgf[] =
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kpeter@601
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  "@nodes\n"
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kpeter@640
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    37  | 
  "label  sup1 sup2 sup3 sup4 sup5 sup6\n"
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kpeter@640
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  "    1    20   27    0   30   20   30\n"
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kpeter@640
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    39  | 
  "    2    -4    0    0    0   -8   -3\n"
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kpeter@640
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    40  | 
  "    3     0    0    0    0    0    0\n"
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kpeter@640
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    41  | 
  "    4     0    0    0    0    0    0\n"
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kpeter@640
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  "    5     9    0    0    0    6   11\n"
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kpeter@640
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    43  | 
  "    6    -6    0    0    0   -5   -6\n"
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kpeter@640
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    44  | 
  "    7     0    0    0    0    0    0\n"
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kpeter@640
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    45  | 
  "    8     0    0    0    0    0    3\n"
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kpeter@640
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    46  | 
  "    9     3    0    0    0    0    0\n"
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kpeter@640
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    47  | 
  "   10    -2    0    0    0   -7   -2\n"
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kpeter@640
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    48  | 
  "   11     0    0    0    0  -10    0\n"
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kpeter@640
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    49  | 
  "   12   -20  -27    0  -30  -30  -20\n"
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kpeter@640
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  "\n"                
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kpeter@601
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  "@arcs\n"
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kpeter@640
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  "       cost  cap low1 low2 low3\n"
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kpeter@640
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  " 1  2    70   11    0    8    8\n"
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kpeter@640
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  " 1  3   150    3    0    1    0\n"
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kpeter@640
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  " 1  4    80   15    0    2    2\n"
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kpeter@640
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  " 2  8    80   12    0    0    0\n"
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kpeter@640
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  " 3  5   140    5    0    3    1\n"
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kpeter@640
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  " 4  6    60   10    0    1    0\n"
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kpeter@640
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  " 4  7    80    2    0    0    0\n"
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kpeter@640
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  " 4  8   110    3    0    0    0\n"
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kpeter@640
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  " 5  7    60   14    0    0    0\n"
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kpeter@640
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  " 5 11   120   12    0    0    0\n"
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kpeter@640
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  " 6  3     0    3    0    0    0\n"
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kpeter@640
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    64  | 
  " 6  9   140    4    0    0    0\n"
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kpeter@640
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  " 6 10    90    8    0    0    0\n"
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kpeter@640
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  " 7  1    30    5    0    0   -5\n"
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kpeter@640
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  " 8 12    60   16    0    4    3\n"
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kpeter@640
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  " 9 12    50    6    0    0    0\n"
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kpeter@640
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  "10 12    70   13    0    5    2\n"
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kpeter@640
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  "10  2   100    7    0    0    0\n"
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kpeter@640
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  "10  7    60   10    0    0   -3\n"
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kpeter@640
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  "11 10    20   14    0    6  -20\n"
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kpeter@640
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  "12 11    30   10    0    0  -10\n"
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kpeter@601
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  "\n"
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kpeter@601
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  "@attributes\n"
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kpeter@601
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  "source 1\n"
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kpeter@601
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  "target 12\n";
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kpeter@601
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kpeter@601
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kpeter@640
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enum SupplyType {
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kpeter@609
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  EQ,
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kpeter@609
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  GEQ,
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kpeter@609
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  LEQ
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kpeter@609
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};
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kpeter@609
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kpeter@601
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// Check the interface of an MCF algorithm
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kpeter@642
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template <typename GR, typename Value, typename Cost>
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kpeter@601
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class McfClassConcept
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kpeter@601
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{
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kpeter@601
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public:
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kpeter@601
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kpeter@601
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  template <typename MCF>
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kpeter@601
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  struct Constraints {
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kpeter@601
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    void constraints() {
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kpeter@601
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      checkConcept<concepts::Digraph, GR>();
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kpeter@669
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kpeter@669
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      const Constraints& me = *this;
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kpeter@601
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kpeter@669
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      MCF mcf(me.g);
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kpeter@642
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      const MCF& const_mcf = mcf;
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kpeter@601
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kpeter@606
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      b = mcf.reset()
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kpeter@669
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             .lowerMap(me.lower)
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kpeter@669
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             .upperMap(me.upper)
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kpeter@669
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             .costMap(me.cost)
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kpeter@669
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             .supplyMap(me.sup)
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kpeter@669
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             .stSupply(me.n, me.n, me.k)
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kpeter@605
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             .run();
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kpeter@605
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kpeter@640
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      c = const_mcf.totalCost();
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kpeter@642
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      x = const_mcf.template totalCost<double>();
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kpeter@669
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      v = const_mcf.flow(me.a);
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kpeter@669
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      c = const_mcf.potential(me.n);
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kpeter@642
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      const_mcf.flowMap(fm);
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kpeter@642
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      const_mcf.potentialMap(pm);
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kpeter@601
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    }
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kpeter@601
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   117  | 
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kpeter@601
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    typedef typename GR::Node Node;
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kpeter@601
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    typedef typename GR::Arc Arc;
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kpeter@642
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    typedef concepts::ReadMap<Node, Value> NM;
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kpeter@642
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    typedef concepts::ReadMap<Arc, Value> VAM;
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kpeter@607
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    typedef concepts::ReadMap<Arc, Cost> CAM;
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kpeter@642
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    typedef concepts::WriteMap<Arc, Value> FlowMap;
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kpeter@642
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    typedef concepts::WriteMap<Node, Cost> PotMap;
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kpeter@669
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kpeter@669
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    GR g;
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kpeter@669
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    VAM lower;
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kpeter@669
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    VAM upper;
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kpeter@669
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    CAM cost;
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kpeter@669
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    NM sup;
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kpeter@669
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    Node n;
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kpeter@669
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    Arc a;
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kpeter@669
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    Value k;
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kpeter@601
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   134  | 
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kpeter@642
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    FlowMap fm;
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kpeter@642
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    PotMap pm;
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kpeter@605
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    bool b;
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kpeter@642
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    double x;
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kpeter@642
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    typename MCF::Value v;
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kpeter@642
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    typename MCF::Cost c;
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kpeter@601
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  };
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kpeter@601
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   142  | 
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kpeter@601
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   143  | 
};
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kpeter@601
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   144  | 
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kpeter@601
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   145  | 
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kpeter@601
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   146  | 
// Check the feasibility of the given flow (primal soluiton)
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kpeter@601
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   147  | 
template < typename GR, typename LM, typename UM,
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kpeter@601
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   148  | 
           typename SM, typename FM >
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kpeter@601
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   149  | 
bool checkFlow( const GR& gr, const LM& lower, const UM& upper,
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kpeter@609
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   150  | 
                const SM& supply, const FM& flow,
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kpeter@640
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   151  | 
                SupplyType type = EQ )
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kpeter@601
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   152  | 
{
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kpeter@601
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   153  | 
  TEMPLATE_DIGRAPH_TYPEDEFS(GR);
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kpeter@601
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   154  | 
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kpeter@601
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   155  | 
  for (ArcIt e(gr); e != INVALID; ++e) {
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kpeter@601
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   156  | 
    if (flow[e] < lower[e] || flow[e] > upper[e]) return false;
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kpeter@601
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   157  | 
  }
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kpeter@601
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   158  | 
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kpeter@601
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   159  | 
  for (NodeIt n(gr); n != INVALID; ++n) {
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kpeter@601
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   160  | 
    typename SM::Value sum = 0;
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kpeter@601
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   161  | 
    for (OutArcIt e(gr, n); e != INVALID; ++e)
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kpeter@601
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   162  | 
      sum += flow[e];
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kpeter@601
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   163  | 
    for (InArcIt e(gr, n); e != INVALID; ++e)
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kpeter@601
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   164  | 
      sum -= flow[e];
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kpeter@609
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   165  | 
    bool b = (type ==  EQ && sum == supply[n]) ||
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kpeter@609
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   166  | 
             (type == GEQ && sum >= supply[n]) ||
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kpeter@609
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   167  | 
             (type == LEQ && sum <= supply[n]);
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kpeter@609
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   168  | 
    if (!b) return false;
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kpeter@601
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   169  | 
  }
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kpeter@601
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   170  | 
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kpeter@601
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   171  | 
  return true;
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kpeter@601
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   172  | 
}
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kpeter@601
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   173  | 
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kpeter@601
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   174  | 
// Check the feasibility of the given potentials (dual soluiton)
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kpeter@605
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   175  | 
// using the "Complementary Slackness" optimality condition
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kpeter@601
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   176  | 
template < typename GR, typename LM, typename UM,
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kpeter@609
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   177  | 
           typename CM, typename SM, typename FM, typename PM >
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kpeter@601
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   178  | 
bool checkPotential( const GR& gr, const LM& lower, const UM& upper,
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kpeter@609
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   179  | 
                     const CM& cost, const SM& supply, const FM& flow, 
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kpeter@664
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   180  | 
                     const PM& pi, SupplyType type )
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kpeter@601
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   181  | 
{
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kpeter@601
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   182  | 
  TEMPLATE_DIGRAPH_TYPEDEFS(GR);
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kpeter@601
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   183  | 
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kpeter@601
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   184  | 
  bool opt = true;
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kpeter@601
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   185  | 
  for (ArcIt e(gr); opt && e != INVALID; ++e) {
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kpeter@601
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   186  | 
    typename CM::Value red_cost =
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kpeter@601
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   187  | 
      cost[e] + pi[gr.source(e)] - pi[gr.target(e)];
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kpeter@601
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   188  | 
    opt = red_cost == 0 ||
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kpeter@601
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   189  | 
          (red_cost > 0 && flow[e] == lower[e]) ||
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kpeter@601
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   190  | 
          (red_cost < 0 && flow[e] == upper[e]);
  | 
| 
kpeter@601
 | 
   191  | 
  }
  | 
| 
kpeter@609
 | 
   192  | 
  
  | 
| 
kpeter@609
 | 
   193  | 
  for (NodeIt n(gr); opt && n != INVALID; ++n) {
 | 
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kpeter@609
 | 
   194  | 
    typename SM::Value sum = 0;
  | 
| 
kpeter@609
 | 
   195  | 
    for (OutArcIt e(gr, n); e != INVALID; ++e)
  | 
| 
kpeter@609
 | 
   196  | 
      sum += flow[e];
  | 
| 
kpeter@609
 | 
   197  | 
    for (InArcIt e(gr, n); e != INVALID; ++e)
  | 
| 
kpeter@609
 | 
   198  | 
      sum -= flow[e];
  | 
| 
kpeter@664
 | 
   199  | 
    if (type != LEQ) {
 | 
| 
kpeter@664
 | 
   200  | 
      opt = (pi[n] <= 0) && (sum == supply[n] || pi[n] == 0);
  | 
| 
kpeter@664
 | 
   201  | 
    } else {
 | 
| 
kpeter@664
 | 
   202  | 
      opt = (pi[n] >= 0) && (sum == supply[n] || pi[n] == 0);
  | 
| 
kpeter@664
 | 
   203  | 
    }
  | 
| 
kpeter@609
 | 
   204  | 
  }
  | 
| 
kpeter@609
 | 
   205  | 
  
  | 
| 
kpeter@601
 | 
   206  | 
  return opt;
  | 
| 
kpeter@601
 | 
   207  | 
}
  | 
| 
kpeter@601
 | 
   208  | 
  | 
| 
kpeter@664
 | 
   209  | 
// Check whether the dual cost is equal to the primal cost
  | 
| 
kpeter@664
 | 
   210  | 
template < typename GR, typename LM, typename UM,
  | 
| 
kpeter@664
 | 
   211  | 
           typename CM, typename SM, typename PM >
  | 
| 
kpeter@664
 | 
   212  | 
bool checkDualCost( const GR& gr, const LM& lower, const UM& upper,
  | 
| 
kpeter@664
 | 
   213  | 
                    const CM& cost, const SM& supply, const PM& pi,
  | 
| 
kpeter@664
 | 
   214  | 
                    typename CM::Value total )
  | 
| 
kpeter@664
 | 
   215  | 
{
 | 
| 
kpeter@664
 | 
   216  | 
  TEMPLATE_DIGRAPH_TYPEDEFS(GR);
  | 
| 
kpeter@664
 | 
   217  | 
  | 
| 
kpeter@664
 | 
   218  | 
  typename CM::Value dual_cost = 0;
  | 
| 
kpeter@664
 | 
   219  | 
  SM red_supply(gr);
  | 
| 
kpeter@664
 | 
   220  | 
  for (NodeIt n(gr); n != INVALID; ++n) {
 | 
| 
kpeter@664
 | 
   221  | 
    red_supply[n] = supply[n];
  | 
| 
kpeter@664
 | 
   222  | 
  }
  | 
| 
kpeter@664
 | 
   223  | 
  for (ArcIt a(gr); a != INVALID; ++a) {
 | 
| 
kpeter@664
 | 
   224  | 
    if (lower[a] != 0) {
 | 
| 
kpeter@664
 | 
   225  | 
      dual_cost += lower[a] * cost[a];
  | 
| 
kpeter@664
 | 
   226  | 
      red_supply[gr.source(a)] -= lower[a];
  | 
| 
kpeter@664
 | 
   227  | 
      red_supply[gr.target(a)] += lower[a];
  | 
| 
kpeter@664
 | 
   228  | 
    }
  | 
| 
kpeter@664
 | 
   229  | 
  }
  | 
| 
kpeter@664
 | 
   230  | 
  
  | 
| 
kpeter@664
 | 
   231  | 
  for (NodeIt n(gr); n != INVALID; ++n) {
 | 
| 
kpeter@664
 | 
   232  | 
    dual_cost -= red_supply[n] * pi[n];
  | 
| 
kpeter@664
 | 
   233  | 
  }
  | 
| 
kpeter@664
 | 
   234  | 
  for (ArcIt a(gr); a != INVALID; ++a) {
 | 
| 
kpeter@664
 | 
   235  | 
    typename CM::Value red_cost =
  | 
| 
kpeter@664
 | 
   236  | 
      cost[a] + pi[gr.source(a)] - pi[gr.target(a)];
  | 
| 
kpeter@664
 | 
   237  | 
    dual_cost -= (upper[a] - lower[a]) * std::max(-red_cost, 0);
  | 
| 
kpeter@664
 | 
   238  | 
  }
  | 
| 
kpeter@664
 | 
   239  | 
  
  | 
| 
kpeter@664
 | 
   240  | 
  return dual_cost == total;
  | 
| 
kpeter@664
 | 
   241  | 
}
  | 
| 
kpeter@664
 | 
   242  | 
  | 
| 
kpeter@601
 | 
   243  | 
// Run a minimum cost flow algorithm and check the results
  | 
| 
kpeter@601
 | 
   244  | 
template < typename MCF, typename GR,
  | 
| 
kpeter@601
 | 
   245  | 
           typename LM, typename UM,
  | 
| 
kpeter@640
 | 
   246  | 
           typename CM, typename SM,
  | 
| 
kpeter@640
 | 
   247  | 
           typename PT >
  | 
| 
kpeter@640
 | 
   248  | 
void checkMcf( const MCF& mcf, PT mcf_result,
  | 
| 
kpeter@601
 | 
   249  | 
               const GR& gr, const LM& lower, const UM& upper,
  | 
| 
kpeter@601
 | 
   250  | 
               const CM& cost, const SM& supply,
  | 
| 
kpeter@640
 | 
   251  | 
               PT result, bool optimal, typename CM::Value total,
  | 
| 
kpeter@609
 | 
   252  | 
               const std::string &test_id = "",
  | 
| 
kpeter@640
 | 
   253  | 
               SupplyType type = EQ )
  | 
| 
kpeter@601
 | 
   254  | 
{
 | 
| 
kpeter@601
 | 
   255  | 
  check(mcf_result == result, "Wrong result " + test_id);
  | 
| 
kpeter@640
 | 
   256  | 
  if (optimal) {
 | 
| 
kpeter@642
 | 
   257  | 
    typename GR::template ArcMap<typename SM::Value> flow(gr);
  | 
| 
kpeter@642
 | 
   258  | 
    typename GR::template NodeMap<typename CM::Value> pi(gr);
  | 
| 
kpeter@642
 | 
   259  | 
    mcf.flowMap(flow);
  | 
| 
kpeter@642
 | 
   260  | 
    mcf.potentialMap(pi);
  | 
| 
kpeter@642
 | 
   261  | 
    check(checkFlow(gr, lower, upper, supply, flow, type),
  | 
| 
kpeter@601
 | 
   262  | 
          "The flow is not feasible " + test_id);
  | 
| 
kpeter@601
 | 
   263  | 
    check(mcf.totalCost() == total, "The flow is not optimal " + test_id);
  | 
| 
kpeter@664
 | 
   264  | 
    check(checkPotential(gr, lower, upper, cost, supply, flow, pi, type),
  | 
| 
kpeter@601
 | 
   265  | 
          "Wrong potentials " + test_id);
  | 
| 
kpeter@664
 | 
   266  | 
    check(checkDualCost(gr, lower, upper, cost, supply, pi, total),
  | 
| 
kpeter@664
 | 
   267  | 
          "Wrong dual cost " + test_id);
  | 
| 
kpeter@601
 | 
   268  | 
  }
  | 
| 
kpeter@601
 | 
   269  | 
}
  | 
| 
kpeter@601
 | 
   270  | 
  | 
| 
kpeter@601
 | 
   271  | 
int main()
  | 
| 
kpeter@601
 | 
   272  | 
{
 | 
| 
kpeter@601
 | 
   273  | 
  // Check the interfaces
  | 
| 
kpeter@601
 | 
   274  | 
  {
 | 
| 
kpeter@615
 | 
   275  | 
    typedef concepts::Digraph GR;
  | 
| 
kpeter@642
 | 
   276  | 
    checkConcept< McfClassConcept<GR, int, int>,
  | 
| 
kpeter@642
 | 
   277  | 
                  NetworkSimplex<GR> >();
  | 
| 
kpeter@642
 | 
   278  | 
    checkConcept< McfClassConcept<GR, double, double>,
  | 
| 
kpeter@642
 | 
   279  | 
                  NetworkSimplex<GR, double> >();
  | 
| 
kpeter@642
 | 
   280  | 
    checkConcept< McfClassConcept<GR, int, double>,
  | 
| 
kpeter@642
 | 
   281  | 
                  NetworkSimplex<GR, int, double> >();
  | 
| 
kpeter@601
 | 
   282  | 
  }
  | 
| 
kpeter@601
 | 
   283  | 
  | 
| 
kpeter@601
 | 
   284  | 
  // Run various MCF tests
  | 
| 
kpeter@601
 | 
   285  | 
  typedef ListDigraph Digraph;
  | 
| 
kpeter@601
 | 
   286  | 
  DIGRAPH_TYPEDEFS(ListDigraph);
  | 
| 
kpeter@601
 | 
   287  | 
  | 
| 
kpeter@601
 | 
   288  | 
  // Read the test digraph
  | 
| 
kpeter@601
 | 
   289  | 
  Digraph gr;
  | 
| 
kpeter@640
 | 
   290  | 
  Digraph::ArcMap<int> c(gr), l1(gr), l2(gr), l3(gr), u(gr);
  | 
| 
kpeter@640
 | 
   291  | 
  Digraph::NodeMap<int> s1(gr), s2(gr), s3(gr), s4(gr), s5(gr), s6(gr);
  | 
| 
kpeter@605
 | 
   292  | 
  ConstMap<Arc, int> cc(1), cu(std::numeric_limits<int>::max());
  | 
| 
kpeter@601
 | 
   293  | 
  Node v, w;
  | 
| 
kpeter@601
 | 
   294  | 
  | 
| 
kpeter@601
 | 
   295  | 
  std::istringstream input(test_lgf);
  | 
| 
kpeter@601
 | 
   296  | 
  DigraphReader<Digraph>(gr, input)
  | 
| 
kpeter@601
 | 
   297  | 
    .arcMap("cost", c)
 | 
| 
kpeter@601
 | 
   298  | 
    .arcMap("cap", u)
 | 
| 
kpeter@601
 | 
   299  | 
    .arcMap("low1", l1)
 | 
| 
kpeter@601
 | 
   300  | 
    .arcMap("low2", l2)
 | 
| 
kpeter@640
 | 
   301  | 
    .arcMap("low3", l3)
 | 
| 
kpeter@601
 | 
   302  | 
    .nodeMap("sup1", s1)
 | 
| 
kpeter@601
 | 
   303  | 
    .nodeMap("sup2", s2)
 | 
| 
kpeter@601
 | 
   304  | 
    .nodeMap("sup3", s3)
 | 
| 
kpeter@609
 | 
   305  | 
    .nodeMap("sup4", s4)
 | 
| 
kpeter@609
 | 
   306  | 
    .nodeMap("sup5", s5)
 | 
| 
kpeter@640
 | 
   307  | 
    .nodeMap("sup6", s6)
 | 
| 
kpeter@601
 | 
   308  | 
    .node("source", v)
 | 
| 
kpeter@601
 | 
   309  | 
    .node("target", w)
 | 
| 
kpeter@601
 | 
   310  | 
    .run();
  | 
| 
kpeter@640
 | 
   311  | 
  
  | 
| 
kpeter@664
 | 
   312  | 
  // Build test digraphs with negative costs
  | 
| 
kpeter@664
 | 
   313  | 
  Digraph neg_gr;
  | 
| 
kpeter@664
 | 
   314  | 
  Node n1 = neg_gr.addNode();
  | 
| 
kpeter@664
 | 
   315  | 
  Node n2 = neg_gr.addNode();
  | 
| 
kpeter@664
 | 
   316  | 
  Node n3 = neg_gr.addNode();
  | 
| 
kpeter@664
 | 
   317  | 
  Node n4 = neg_gr.addNode();
  | 
| 
kpeter@664
 | 
   318  | 
  Node n5 = neg_gr.addNode();
  | 
| 
kpeter@664
 | 
   319  | 
  Node n6 = neg_gr.addNode();
  | 
| 
kpeter@664
 | 
   320  | 
  Node n7 = neg_gr.addNode();
  | 
| 
kpeter@640
 | 
   321  | 
  
  | 
| 
kpeter@664
 | 
   322  | 
  Arc a1 = neg_gr.addArc(n1, n2);
  | 
| 
kpeter@664
 | 
   323  | 
  Arc a2 = neg_gr.addArc(n1, n3);
  | 
| 
kpeter@664
 | 
   324  | 
  Arc a3 = neg_gr.addArc(n2, n4);
  | 
| 
kpeter@664
 | 
   325  | 
  Arc a4 = neg_gr.addArc(n3, n4);
  | 
| 
kpeter@664
 | 
   326  | 
  Arc a5 = neg_gr.addArc(n3, n2);
  | 
| 
kpeter@664
 | 
   327  | 
  Arc a6 = neg_gr.addArc(n5, n3);
  | 
| 
kpeter@664
 | 
   328  | 
  Arc a7 = neg_gr.addArc(n5, n6);
  | 
| 
kpeter@664
 | 
   329  | 
  Arc a8 = neg_gr.addArc(n6, n7);
  | 
| 
kpeter@664
 | 
   330  | 
  Arc a9 = neg_gr.addArc(n7, n5);
  | 
| 
kpeter@640
 | 
   331  | 
  
  | 
| 
kpeter@664
 | 
   332  | 
  Digraph::ArcMap<int> neg_c(neg_gr), neg_l1(neg_gr, 0), neg_l2(neg_gr, 0);
  | 
| 
kpeter@664
 | 
   333  | 
  ConstMap<Arc, int> neg_u1(std::numeric_limits<int>::max()), neg_u2(5000);
  | 
| 
kpeter@664
 | 
   334  | 
  Digraph::NodeMap<int> neg_s(neg_gr, 0);
  | 
| 
kpeter@640
 | 
   335  | 
  
  | 
| 
kpeter@664
 | 
   336  | 
  neg_l2[a7] =  1000;
  | 
| 
kpeter@664
 | 
   337  | 
  neg_l2[a8] = -1000;
  | 
| 
kpeter@640
 | 
   338  | 
  
  | 
| 
kpeter@664
 | 
   339  | 
  neg_s[n1] =  100;
  | 
| 
kpeter@664
 | 
   340  | 
  neg_s[n4] = -100;
  | 
| 
kpeter@640
 | 
   341  | 
  
  | 
| 
kpeter@664
 | 
   342  | 
  neg_c[a1] =  100;
  | 
| 
kpeter@664
 | 
   343  | 
  neg_c[a2] =   30;
  | 
| 
kpeter@664
 | 
   344  | 
  neg_c[a3] =   20;
  | 
| 
kpeter@664
 | 
   345  | 
  neg_c[a4] =   80;
  | 
| 
kpeter@664
 | 
   346  | 
  neg_c[a5] =   50;
  | 
| 
kpeter@664
 | 
   347  | 
  neg_c[a6] =   10;
  | 
| 
kpeter@664
 | 
   348  | 
  neg_c[a7] =   80;
  | 
| 
kpeter@664
 | 
   349  | 
  neg_c[a8] =   30;
  | 
| 
kpeter@664
 | 
   350  | 
  neg_c[a9] = -120;
  | 
| 
kpeter@664
 | 
   351  | 
  | 
| 
kpeter@664
 | 
   352  | 
  Digraph negs_gr;
  | 
| 
kpeter@664
 | 
   353  | 
  Digraph::NodeMap<int> negs_s(negs_gr);
  | 
| 
kpeter@664
 | 
   354  | 
  Digraph::ArcMap<int> negs_c(negs_gr);
  | 
| 
kpeter@664
 | 
   355  | 
  ConstMap<Arc, int> negs_l(0), negs_u(1000);
  | 
| 
kpeter@664
 | 
   356  | 
  n1 = negs_gr.addNode();
  | 
| 
kpeter@664
 | 
   357  | 
  n2 = negs_gr.addNode();
  | 
| 
kpeter@664
 | 
   358  | 
  negs_s[n1] = 100;
  | 
| 
kpeter@664
 | 
   359  | 
  negs_s[n2] = -300;
  | 
| 
kpeter@664
 | 
   360  | 
  negs_c[negs_gr.addArc(n1, n2)] = -1;
  | 
| 
kpeter@664
 | 
   361  | 
  | 
| 
kpeter@601
 | 
   362  | 
  | 
| 
kpeter@605
 | 
   363  | 
  // A. Test NetworkSimplex with the default pivot rule
  | 
| 
kpeter@601
 | 
   364  | 
  {
 | 
| 
kpeter@606
 | 
   365  | 
    NetworkSimplex<Digraph> mcf(gr);
  | 
| 
kpeter@601
 | 
   366  | 
  | 
| 
kpeter@609
 | 
   367  | 
    // Check the equality form
  | 
| 
kpeter@606
 | 
   368  | 
    mcf.upperMap(u).costMap(c);
  | 
| 
kpeter@606
 | 
   369  | 
    checkMcf(mcf, mcf.supplyMap(s1).run(),
  | 
| 
kpeter@640
 | 
   370  | 
             gr, l1, u, c, s1, mcf.OPTIMAL, true,   5240, "#A1");
  | 
| 
kpeter@606
 | 
   371  | 
    checkMcf(mcf, mcf.stSupply(v, w, 27).run(),
  | 
| 
kpeter@640
 | 
   372  | 
             gr, l1, u, c, s2, mcf.OPTIMAL, true,   7620, "#A2");
  | 
| 
kpeter@606
 | 
   373  | 
    mcf.lowerMap(l2);
  | 
| 
kpeter@606
 | 
   374  | 
    checkMcf(mcf, mcf.supplyMap(s1).run(),
  | 
| 
kpeter@640
 | 
   375  | 
             gr, l2, u, c, s1, mcf.OPTIMAL, true,   5970, "#A3");
  | 
| 
kpeter@606
 | 
   376  | 
    checkMcf(mcf, mcf.stSupply(v, w, 27).run(),
  | 
| 
kpeter@640
 | 
   377  | 
             gr, l2, u, c, s2, mcf.OPTIMAL, true,   8010, "#A4");
  | 
| 
kpeter@606
 | 
   378  | 
    mcf.reset();
  | 
| 
kpeter@606
 | 
   379  | 
    checkMcf(mcf, mcf.supplyMap(s1).run(),
  | 
| 
kpeter@640
 | 
   380  | 
             gr, l1, cu, cc, s1, mcf.OPTIMAL, true,   74, "#A5");
  | 
| 
kpeter@606
 | 
   381  | 
    checkMcf(mcf, mcf.lowerMap(l2).stSupply(v, w, 27).run(),
  | 
| 
kpeter@640
 | 
   382  | 
             gr, l2, cu, cc, s2, mcf.OPTIMAL, true,   94, "#A6");
  | 
| 
kpeter@606
 | 
   383  | 
    mcf.reset();
  | 
| 
kpeter@606
 | 
   384  | 
    checkMcf(mcf, mcf.run(),
  | 
| 
kpeter@640
 | 
   385  | 
             gr, l1, cu, cc, s3, mcf.OPTIMAL, true,    0, "#A7");
  | 
| 
kpeter@640
 | 
   386  | 
    checkMcf(mcf, mcf.lowerMap(l2).upperMap(u).run(),
  | 
| 
kpeter@640
 | 
   387  | 
             gr, l2, u, cc, s3, mcf.INFEASIBLE, false, 0, "#A8");
  | 
| 
kpeter@640
 | 
   388  | 
    mcf.reset().lowerMap(l3).upperMap(u).costMap(c).supplyMap(s4);
  | 
| 
kpeter@640
 | 
   389  | 
    checkMcf(mcf, mcf.run(),
  | 
| 
kpeter@640
 | 
   390  | 
             gr, l3, u, c, s4, mcf.OPTIMAL, true,   6360, "#A9");
  | 
| 
kpeter@609
 | 
   391  | 
  | 
| 
kpeter@609
 | 
   392  | 
    // Check the GEQ form
  | 
| 
kpeter@640
 | 
   393  | 
    mcf.reset().upperMap(u).costMap(c).supplyMap(s5);
  | 
| 
kpeter@609
 | 
   394  | 
    checkMcf(mcf, mcf.run(),
  | 
| 
kpeter@640
 | 
   395  | 
             gr, l1, u, c, s5, mcf.OPTIMAL, true,   3530, "#A10", GEQ);
  | 
| 
kpeter@640
 | 
   396  | 
    mcf.supplyType(mcf.GEQ);
  | 
| 
kpeter@609
 | 
   397  | 
    checkMcf(mcf, mcf.lowerMap(l2).run(),
  | 
| 
kpeter@640
 | 
   398  | 
             gr, l2, u, c, s5, mcf.OPTIMAL, true,   4540, "#A11", GEQ);
  | 
| 
kpeter@664
 | 
   399  | 
    mcf.supplyMap(s6);
  | 
| 
kpeter@609
 | 
   400  | 
    checkMcf(mcf, mcf.run(),
  | 
| 
kpeter@640
 | 
   401  | 
             gr, l2, u, c, s6, mcf.INFEASIBLE, false,  0, "#A12", GEQ);
  | 
| 
kpeter@609
 | 
   402  | 
  | 
| 
kpeter@609
 | 
   403  | 
    // Check the LEQ form
  | 
| 
kpeter@640
 | 
   404  | 
    mcf.reset().supplyType(mcf.LEQ);
  | 
| 
kpeter@640
 | 
   405  | 
    mcf.upperMap(u).costMap(c).supplyMap(s6);
  | 
| 
kpeter@609
 | 
   406  | 
    checkMcf(mcf, mcf.run(),
  | 
| 
kpeter@640
 | 
   407  | 
             gr, l1, u, c, s6, mcf.OPTIMAL, true,   5080, "#A13", LEQ);
  | 
| 
kpeter@609
 | 
   408  | 
    checkMcf(mcf, mcf.lowerMap(l2).run(),
  | 
| 
kpeter@640
 | 
   409  | 
             gr, l2, u, c, s6, mcf.OPTIMAL, true,   5930, "#A14", LEQ);
  | 
| 
kpeter@664
 | 
   410  | 
    mcf.supplyMap(s5);
  | 
| 
kpeter@609
 | 
   411  | 
    checkMcf(mcf, mcf.run(),
  | 
| 
kpeter@640
 | 
   412  | 
             gr, l2, u, c, s5, mcf.INFEASIBLE, false,  0, "#A15", LEQ);
  | 
| 
kpeter@640
 | 
   413  | 
  | 
| 
kpeter@640
 | 
   414  | 
    // Check negative costs
  | 
| 
kpeter@664
 | 
   415  | 
    NetworkSimplex<Digraph> neg_mcf(neg_gr);
  | 
| 
kpeter@664
 | 
   416  | 
    neg_mcf.lowerMap(neg_l1).costMap(neg_c).supplyMap(neg_s);
  | 
| 
kpeter@664
 | 
   417  | 
    checkMcf(neg_mcf, neg_mcf.run(), neg_gr, neg_l1, neg_u1,
  | 
| 
kpeter@664
 | 
   418  | 
      neg_c, neg_s, neg_mcf.UNBOUNDED, false,    0, "#A16");
  | 
| 
kpeter@664
 | 
   419  | 
    neg_mcf.upperMap(neg_u2);
  | 
| 
kpeter@664
 | 
   420  | 
    checkMcf(neg_mcf, neg_mcf.run(), neg_gr, neg_l1, neg_u2,
  | 
| 
kpeter@664
 | 
   421  | 
      neg_c, neg_s, neg_mcf.OPTIMAL, true,  -40000, "#A17");
  | 
| 
kpeter@664
 | 
   422  | 
    neg_mcf.reset().lowerMap(neg_l2).costMap(neg_c).supplyMap(neg_s);
  | 
| 
kpeter@664
 | 
   423  | 
    checkMcf(neg_mcf, neg_mcf.run(), neg_gr, neg_l2, neg_u1,
  | 
| 
kpeter@664
 | 
   424  | 
      neg_c, neg_s, neg_mcf.UNBOUNDED, false,    0, "#A18");
  | 
| 
kpeter@664
 | 
   425  | 
      
  | 
| 
kpeter@664
 | 
   426  | 
    NetworkSimplex<Digraph> negs_mcf(negs_gr);
  | 
| 
kpeter@664
 | 
   427  | 
    negs_mcf.costMap(negs_c).supplyMap(negs_s);
  | 
| 
kpeter@664
 | 
   428  | 
    checkMcf(negs_mcf, negs_mcf.run(), negs_gr, negs_l, negs_u,
  | 
| 
kpeter@664
 | 
   429  | 
      negs_c, negs_s, negs_mcf.OPTIMAL, true, -300, "#A19", GEQ);
  | 
| 
kpeter@601
 | 
   430  | 
  }
  | 
| 
kpeter@601
 | 
   431  | 
  | 
| 
kpeter@605
 | 
   432  | 
  // B. Test NetworkSimplex with each pivot rule
  | 
| 
kpeter@601
 | 
   433  | 
  {
 | 
| 
kpeter@606
 | 
   434  | 
    NetworkSimplex<Digraph> mcf(gr);
  | 
| 
kpeter@640
 | 
   435  | 
    mcf.supplyMap(s1).costMap(c).upperMap(u).lowerMap(l2);
  | 
| 
kpeter@601
 | 
   436  | 
  | 
| 
kpeter@606
 | 
   437  | 
    checkMcf(mcf, mcf.run(NetworkSimplex<Digraph>::FIRST_ELIGIBLE),
  | 
| 
kpeter@640
 | 
   438  | 
             gr, l2, u, c, s1, mcf.OPTIMAL, true,   5970, "#B1");
  | 
| 
kpeter@606
 | 
   439  | 
    checkMcf(mcf, mcf.run(NetworkSimplex<Digraph>::BEST_ELIGIBLE),
  | 
| 
kpeter@640
 | 
   440  | 
             gr, l2, u, c, s1, mcf.OPTIMAL, true,   5970, "#B2");
  | 
| 
kpeter@606
 | 
   441  | 
    checkMcf(mcf, mcf.run(NetworkSimplex<Digraph>::BLOCK_SEARCH),
  | 
| 
kpeter@640
 | 
   442  | 
             gr, l2, u, c, s1, mcf.OPTIMAL, true,   5970, "#B3");
  | 
| 
kpeter@606
 | 
   443  | 
    checkMcf(mcf, mcf.run(NetworkSimplex<Digraph>::CANDIDATE_LIST),
  | 
| 
kpeter@640
 | 
   444  | 
             gr, l2, u, c, s1, mcf.OPTIMAL, true,   5970, "#B4");
  | 
| 
kpeter@606
 | 
   445  | 
    checkMcf(mcf, mcf.run(NetworkSimplex<Digraph>::ALTERING_LIST),
  | 
| 
kpeter@640
 | 
   446  | 
             gr, l2, u, c, s1, mcf.OPTIMAL, true,   5970, "#B5");
  | 
| 
kpeter@601
 | 
   447  | 
  }
  | 
| 
kpeter@601
 | 
   448  | 
  | 
| 
kpeter@601
 | 
   449  | 
  return 0;
  | 
| 
kpeter@601
 | 
   450  | 
}
  |