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jacint@388
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     1  | 
// -*- C++ -*-
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jacint@388
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     2  | 
//The same as preflow.h, using ResGraphWrapper
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alpar@921
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     3  | 
#ifndef LEMON_PREFLOW_RES_H
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alpar@921
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     4  | 
#define LEMON_PREFLOW_RES_H
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jacint@388
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     5  | 
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jacint@388
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     6  | 
#define H0 20
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jacint@388
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     7  | 
#define H1 1
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jacint@388
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     8  | 
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jacint@388
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     9  | 
#include <vector>
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jacint@388
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    10  | 
#include <queue>
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jacint@388
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    11  | 
#include <graph_wrapper.h>
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jacint@388
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    12  | 
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jacint@388
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    13  | 
#include<iostream>
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jacint@388
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    14  | 
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alpar@921
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    15  | 
namespace lemon {
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jacint@388
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    16  | 
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jacint@388
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    17  | 
  template <typename Graph, typename T, 
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marci@392
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    18  | 
	    typename CapMap=typename Graph::template EdgeMap<T>, 
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marci@392
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    19  | 
            typename FlowMap=typename Graph::template EdgeMap<T> >
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jacint@388
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    20  | 
  class PreflowRes {
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jacint@388
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    21  | 
    
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jacint@388
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    22  | 
    typedef typename Graph::Node Node;
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jacint@388
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    23  | 
    typedef typename Graph::Edge Edge;
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jacint@388
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    24  | 
    typedef typename Graph::NodeIt NodeIt;
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jacint@388
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    25  | 
    typedef typename Graph::OutEdgeIt OutEdgeIt;
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jacint@388
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    26  | 
    typedef typename Graph::InEdgeIt InEdgeIt;
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jacint@388
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    27  | 
    
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jacint@388
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    28  | 
    const Graph& G;
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jacint@388
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    29  | 
    Node s;
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jacint@388
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    30  | 
    Node t;
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jacint@388
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    31  | 
    const CapMap& capacity;  
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jacint@388
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    32  | 
    FlowMap& flow;
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jacint@388
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    33  | 
    T value;
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jacint@388
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    34  | 
    bool constzero;
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jacint@388
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    35  | 
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jacint@388
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    36  | 
    typedef ResGraphWrapper<const Graph, T, CapMap, FlowMap> ResGW;
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jacint@388
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    37  | 
    typedef typename ResGW::OutEdgeIt ResOutEdgeIt;
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jacint@388
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    38  | 
    typedef typename ResGW::InEdgeIt ResInEdgeIt;
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jacint@388
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    39  | 
    typedef typename ResGW::Edge ResEdge;
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jacint@388
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    40  | 
 
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jacint@388
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    41  | 
  public:
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jacint@388
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    42  | 
    PreflowRes(Graph& _G, Node _s, Node _t, CapMap& _capacity, 
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jacint@388
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    43  | 
	    FlowMap& _flow, bool _constzero ) :
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jacint@388
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    44  | 
      G(_G), s(_s), t(_t), capacity(_capacity), flow(_flow), constzero(_constzero) {}
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jacint@388
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    45  | 
    
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jacint@388
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    46  | 
    
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jacint@388
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    47  | 
    void run() {
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jacint@388
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    48  | 
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jacint@388
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    49  | 
      ResGW res_graph(G, capacity, flow);
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jacint@388
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    50  | 
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jacint@388
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    51  | 
      value=0;                //for the subsequent runs
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jacint@388
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    52  | 
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jacint@388
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    53  | 
      bool phase=0;        //phase 0 is the 1st phase, phase 1 is the 2nd
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jacint@388
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    54  | 
      int n=G.nodeNum(); 
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jacint@388
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    55  | 
      int heur0=(int)(H0*n);  //time while running 'bound decrease' 
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jacint@388
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    56  | 
      int heur1=(int)(H1*n);  //time while running 'highest label'
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jacint@388
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    57  | 
      int heur=heur1;         //starting time interval (#of relabels)
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jacint@388
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    58  | 
      bool what_heur=1;       
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jacint@388
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    59  | 
      /*
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jacint@388
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    60  | 
	what_heur is 0 in case 'bound decrease' 
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jacint@388
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    61  | 
	and 1 in case 'highest label'
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jacint@388
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    62  | 
      */
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jacint@388
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    63  | 
      bool end=false;     
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jacint@388
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    64  | 
      /*
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jacint@388
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    65  | 
	Needed for 'bound decrease', 'true'
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jacint@388
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    66  | 
	means no active nodes are above bound b.
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jacint@388
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    67  | 
      */
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jacint@388
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    68  | 
      int relabel=0;
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jacint@388
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    69  | 
      int k=n-2;  //bound on the highest level under n containing a node
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jacint@388
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    70  | 
      int b=k;    //bound on the highest level under n of an active node
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jacint@388
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    71  | 
      
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marci@392
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    72  | 
      typename Graph::template NodeMap<int> level(G,n);      
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marci@392
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    73  | 
      typename Graph::template NodeMap<T> excess(G); 
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jacint@388
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    74  | 
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jacint@388
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    75  | 
      std::vector<Node> active(n-1,INVALID);
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marci@392
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    76  | 
      typename Graph::template NodeMap<Node> next(G,INVALID);
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jacint@388
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      //Stack of the active nodes in level i < n.
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jacint@388
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    78  | 
      //We use it in both phases.
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jacint@388
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    79  | 
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marci@392
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    80  | 
      typename Graph::template NodeMap<Node> left(G,INVALID);
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marci@392
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    81  | 
      typename Graph::template NodeMap<Node> right(G,INVALID);
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jacint@388
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    82  | 
      std::vector<Node> level_list(n,INVALID);
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jacint@388
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    83  | 
      /*
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jacint@388
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	List of the nodes in level i<n.
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jacint@388
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    85  | 
      */
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jacint@388
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    86  | 
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jacint@388
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    87  | 
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jacint@388
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      /*
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jacint@388
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	Reverse_bfs from t in the residual graph, 
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jacint@388
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    90  | 
	to find the starting level.
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jacint@388
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    91  | 
      */
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jacint@388
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    92  | 
      level.set(t,0);
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jacint@388
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    93  | 
      std::queue<Node> bfs_queue;
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jacint@388
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      bfs_queue.push(t);
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jacint@388
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    95  | 
      
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jacint@388
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    96  | 
      while (!bfs_queue.empty()) {
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jacint@388
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    97  | 
	
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jacint@388
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    98  | 
	Node v=bfs_queue.front();	
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jacint@388
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    99  | 
	bfs_queue.pop();
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jacint@388
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   100  | 
	int l=level[v]+1;
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jacint@388
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   101  | 
	
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jacint@388
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   102  | 
	ResInEdgeIt e;
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jacint@388
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   103  | 
	for(res_graph.first(e,v); res_graph.valid(e); 
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jacint@388
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   104  | 
	    res_graph.next(e)) {
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jacint@388
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   105  | 
	  Node w=res_graph.tail(e);
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jacint@388
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   106  | 
	  if ( level[w] == n && w != s ) {
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jacint@388
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   107  | 
	    bfs_queue.push(w);
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jacint@388
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   108  | 
	    Node first=level_list[l];
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jacint@388
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   109  | 
	    if ( G.valid(first) ) left.set(first,w);
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jacint@388
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   110  | 
	    right.set(w,first);
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jacint@388
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   111  | 
	    level_list[l]=w;
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jacint@388
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   112  | 
	    level.set(w, l);
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jacint@388
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   113  | 
	  }
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jacint@388
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   114  | 
	}
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jacint@388
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   115  | 
      }
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jacint@388
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   116  | 
      
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jacint@388
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   117  | 
	
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jacint@388
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   118  | 
      if ( !constzero ) {
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jacint@388
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   119  | 
	/*
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jacint@388
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   120  | 
	  Counting the excess
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jacint@388
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   121  | 
	*/
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jacint@388
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   122  | 
	NodeIt v;
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jacint@388
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   123  | 
	for(G.first(v); G.valid(v); G.next(v)) {
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jacint@388
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   124  | 
	  T exc=0;
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jacint@388
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   125  | 
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jacint@388
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   126  | 
	  InEdgeIt e;
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jacint@388
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   127  | 
	  for(G.first(e,v); G.valid(e); G.next(e)) exc+=flow[e];
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jacint@388
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   128  | 
	  OutEdgeIt f;
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jacint@444
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   129  | 
	  for(G.first(f,v); G.valid(f); G.next(f)) exc-=flow[f];
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jacint@388
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   130  | 
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jacint@388
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   131  | 
	  excess.set(v,exc);	  
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jacint@388
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   132  | 
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jacint@388
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   133  | 
	  //putting the active nodes into the stack
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jacint@388
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   134  | 
	  int lev=level[v];
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jacint@388
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   135  | 
	  if ( exc > 0 && lev < n ) {
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jacint@388
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   136  | 
	    next.set(v,active[lev]);
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jacint@388
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   137  | 
	    active[lev]=v;
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jacint@388
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   138  | 
	  }
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jacint@388
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   139  | 
	}
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jacint@388
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   140  | 
      }
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jacint@388
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   141  | 
     
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jacint@388
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   142  | 
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jacint@388
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   143  | 
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jacint@388
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   144  | 
      //the starting flow
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jacint@388
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   145  | 
      ResOutEdgeIt e;
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jacint@388
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   146  | 
      for(res_graph.first(e,s); res_graph.valid(e); 
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jacint@388
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   147  | 
	  res_graph.next(e)) {
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jacint@388
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   148  | 
	  Node w=res_graph.head(e);
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jacint@388
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   149  | 
	  if ( level[w] < n ) {	  
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jacint@388
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   150  | 
	    if ( excess[w] == 0 && w!=t ) {
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jacint@388
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   151  | 
	      next.set(w,active[level[w]]);
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jacint@388
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   152  | 
	      active[level[w]]=w;
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jacint@388
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   153  | 
	    }
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jacint@388
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   154  | 
	    T rem=res_graph.resCap(e);
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jacint@388
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   155  | 
	    excess.set(w, excess[w]+rem);
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jacint@388
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   156  | 
	    res_graph.augment(e, rem ); 
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jacint@388
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   157  | 
	  }
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jacint@388
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   158  | 
      }
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jacint@388
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   159  | 
	
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jacint@388
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   160  | 
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jacint@388
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   161  | 
      /* 
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jacint@388
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   162  | 
	 End of preprocessing 
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jacint@388
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   163  | 
      */
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jacint@388
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   164  | 
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jacint@388
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   165  | 
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jacint@388
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   166  | 
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jacint@388
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   167  | 
      /*
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jacint@388
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   168  | 
	Push/relabel on the highest level active nodes.
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jacint@388
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   169  | 
      */	
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jacint@388
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   170  | 
      while ( true ) {
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jacint@388
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   171  | 
	
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jacint@388
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   172  | 
	if ( b == 0 ) {
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jacint@388
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   173  | 
	  if ( phase ) break;
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jacint@388
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   174  | 
	  
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jacint@388
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   175  | 
	  if ( !what_heur && !end && k > 0 ) {
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jacint@388
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   176  | 
	    b=k;
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jacint@388
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   177  | 
	    end=true;
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jacint@388
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   178  | 
	  } else {
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jacint@388
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   179  | 
	    phase=1;
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jacint@388
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   180  | 
	    level.set(s,0);
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jacint@388
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   181  | 
	    std::queue<Node> bfs_queue;
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jacint@388
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   182  | 
	    bfs_queue.push(s);
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jacint@388
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   183  | 
	    
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jacint@388
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   184  | 
	    while (!bfs_queue.empty()) {
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jacint@388
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   185  | 
	      
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jacint@388
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   186  | 
	      Node v=bfs_queue.front();	
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jacint@388
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   187  | 
	      bfs_queue.pop();
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jacint@388
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   188  | 
	      int l=level[v]+1;
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jacint@388
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   189  | 
	      
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jacint@388
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   190  | 
	      ResInEdgeIt e;
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jacint@388
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   191  | 
	      for(res_graph.first(e,v); 
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jacint@388
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   192  | 
		  res_graph.valid(e); res_graph.next(e)) {
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jacint@388
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   193  | 
		Node u=res_graph.tail(e);
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jacint@388
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   194  | 
		if ( level[u] >= n ) { 
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jacint@388
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   195  | 
		  bfs_queue.push(u);
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jacint@388
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   196  | 
		  level.set(u, l);
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jacint@388
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   197  | 
		  if ( excess[u] > 0 ) {
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jacint@388
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   198  | 
		    next.set(u,active[l]);
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jacint@388
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   199  | 
		    active[l]=u;
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jacint@388
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   200  | 
		  }
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jacint@388
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   201  | 
		}
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jacint@388
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   202  | 
	      }
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jacint@388
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   203  | 
	    
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jacint@388
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   204  | 
	    }
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jacint@388
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   205  | 
	    b=n-2;
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jacint@388
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   206  | 
	  }
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jacint@388
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   207  | 
	    
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jacint@388
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   208  | 
	}
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jacint@388
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   209  | 
	  
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jacint@388
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   210  | 
	  
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jacint@388
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   211  | 
	if ( !G.valid(active[b]) ) --b; 
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jacint@388
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   212  | 
	else {
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jacint@388
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   213  | 
	  end=false;  
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jacint@388
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   214  | 
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jacint@388
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   215  | 
	  Node w=active[b];
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jacint@388
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   216  | 
	  active[b]=next[w];
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jacint@388
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   217  | 
	  int lev=level[w];
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jacint@388
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   218  | 
	  T exc=excess[w];
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jacint@388
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   219  | 
	  int newlevel=n;       //bound on the next level of w
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jacint@388
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   220  | 
	  
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jacint@388
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   221  | 
	  ResOutEdgeIt e;
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jacint@388
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   222  | 
	  for(res_graph.first(e,w); res_graph.valid(e); res_graph.next(e)) {
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jacint@388
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   223  | 
	    
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jacint@388
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   224  | 
	    Node v=res_graph.head(e);            
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jacint@388
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   225  | 
	    if( lev > level[v] ) {      
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jacint@388
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   226  | 
	      /*Push is allowed now*/
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jacint@388
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   227  | 
	      
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jacint@388
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   228  | 
	      if ( excess[v]==0 && v!=t && v!=s ) {
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jacint@388
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   229  | 
		int lev_v=level[v];
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jacint@388
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   230  | 
		next.set(v,active[lev_v]);
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jacint@388
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   231  | 
		active[lev_v]=v;
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jacint@388
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   232  | 
	      }
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jacint@388
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   233  | 
	      
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jacint@388
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   234  | 
	      T remcap=res_graph.resCap(e);
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jacint@388
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   235  | 
	      
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jacint@388
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   236  | 
	      if ( remcap >= exc ) {       
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jacint@388
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   237  | 
		/*A nonsaturating push.*/
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jacint@388
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   238  | 
		res_graph.augment(e, exc);
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jacint@388
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   239  | 
		excess.set(v, excess[v]+exc);
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jacint@388
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   240  | 
		exc=0;
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jacint@388
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   241  | 
		break; 
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jacint@388
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   242  | 
		
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jacint@388
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   243  | 
	      } else { 
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jacint@388
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   244  | 
		/*A saturating push.*/
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jacint@388
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   245  | 
		
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jacint@388
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   246  | 
		res_graph.augment(e, remcap);
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jacint@388
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   247  | 
		excess.set(v, excess[v]+remcap);
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jacint@388
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   248  | 
		exc-=remcap;
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jacint@388
 | 
   249  | 
	      }
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jacint@388
 | 
   250  | 
	    } else if ( newlevel > level[v] ){
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jacint@388
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   251  | 
	      newlevel = level[v];
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jacint@388
 | 
   252  | 
	    }	    
  | 
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jacint@388
 | 
   253  | 
	    
  | 
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jacint@388
 | 
   254  | 
	  }
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jacint@388
 | 
   255  | 
  | 
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jacint@388
 | 
   256  | 
	excess.set(w, exc);
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jacint@388
 | 
   257  | 
	 
  | 
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jacint@388
 | 
   258  | 
	/*
  | 
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jacint@388
 | 
   259  | 
	  Relabel
  | 
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jacint@388
 | 
   260  | 
	*/
  | 
| 
jacint@388
 | 
   261  | 
	
  | 
| 
jacint@388
 | 
   262  | 
  | 
| 
jacint@388
 | 
   263  | 
	if ( exc > 0 ) {
 | 
| 
jacint@388
 | 
   264  | 
	  //now 'lev' is the old level of w
  | 
| 
jacint@388
 | 
   265  | 
	
  | 
| 
jacint@388
 | 
   266  | 
	  if ( phase ) {
 | 
| 
jacint@388
 | 
   267  | 
	    level.set(w,++newlevel);
  | 
| 
jacint@388
 | 
   268  | 
	    next.set(w,active[newlevel]);
  | 
| 
jacint@388
 | 
   269  | 
	    active[newlevel]=w;
  | 
| 
jacint@388
 | 
   270  | 
	    b=newlevel;
  | 
| 
jacint@388
 | 
   271  | 
	  } else {
 | 
| 
jacint@388
 | 
   272  | 
	    //unlacing starts
  | 
| 
jacint@388
 | 
   273  | 
	    Node right_n=right[w];
  | 
| 
jacint@388
 | 
   274  | 
	    Node left_n=left[w];
  | 
| 
jacint@388
 | 
   275  | 
  | 
| 
jacint@388
 | 
   276  | 
	    if ( G.valid(right_n) ) {
 | 
| 
jacint@388
 | 
   277  | 
	      if ( G.valid(left_n) ) {
 | 
| 
jacint@388
 | 
   278  | 
		right.set(left_n, right_n);
  | 
| 
jacint@388
 | 
   279  | 
		left.set(right_n, left_n);
  | 
| 
jacint@388
 | 
   280  | 
	      } else {
 | 
| 
jacint@388
 | 
   281  | 
		level_list[lev]=right_n;   
  | 
| 
jacint@388
 | 
   282  | 
		left.set(right_n, INVALID);
  | 
| 
jacint@388
 | 
   283  | 
	      } 
  | 
| 
jacint@388
 | 
   284  | 
	    } else {
 | 
| 
jacint@388
 | 
   285  | 
	      if ( G.valid(left_n) ) {
 | 
| 
jacint@388
 | 
   286  | 
		right.set(left_n, INVALID);
  | 
| 
jacint@388
 | 
   287  | 
	      } else { 
 | 
| 
jacint@388
 | 
   288  | 
		level_list[lev]=INVALID;   
  | 
| 
jacint@388
 | 
   289  | 
	      } 
  | 
| 
jacint@388
 | 
   290  | 
	    } 
  | 
| 
jacint@388
 | 
   291  | 
	    //unlacing ends
  | 
| 
jacint@388
 | 
   292  | 
		
  | 
| 
jacint@388
 | 
   293  | 
	    if ( !G.valid(level_list[lev]) ) {
 | 
| 
jacint@388
 | 
   294  | 
	      
  | 
| 
jacint@388
 | 
   295  | 
	       //gapping starts
  | 
| 
jacint@388
 | 
   296  | 
	      for (int i=lev; i!=k ; ) {
 | 
| 
jacint@388
 | 
   297  | 
		Node v=level_list[++i];
  | 
| 
jacint@388
 | 
   298  | 
		while ( G.valid(v) ) {
 | 
| 
jacint@388
 | 
   299  | 
		  level.set(v,n);
  | 
| 
jacint@388
 | 
   300  | 
		  v=right[v];
  | 
| 
jacint@388
 | 
   301  | 
		}
  | 
| 
jacint@388
 | 
   302  | 
		level_list[i]=INVALID;
  | 
| 
jacint@388
 | 
   303  | 
		if ( !what_heur ) active[i]=INVALID;
  | 
| 
jacint@388
 | 
   304  | 
	      }	     
  | 
| 
jacint@388
 | 
   305  | 
  | 
| 
jacint@388
 | 
   306  | 
	      level.set(w,n);
  | 
| 
jacint@388
 | 
   307  | 
	      b=lev-1;
  | 
| 
jacint@388
 | 
   308  | 
	      k=b;
  | 
| 
jacint@388
 | 
   309  | 
	      //gapping ends
  | 
| 
jacint@388
 | 
   310  | 
	    
  | 
| 
jacint@388
 | 
   311  | 
	    } else {
 | 
| 
jacint@388
 | 
   312  | 
	      
  | 
| 
jacint@388
 | 
   313  | 
	      if ( newlevel == n ) level.set(w,n); 
  | 
| 
jacint@388
 | 
   314  | 
	      else {
 | 
| 
jacint@388
 | 
   315  | 
		level.set(w,++newlevel);
  | 
| 
jacint@388
 | 
   316  | 
		next.set(w,active[newlevel]);
  | 
| 
jacint@388
 | 
   317  | 
		active[newlevel]=w;
  | 
| 
jacint@388
 | 
   318  | 
		if ( what_heur ) b=newlevel;
  | 
| 
jacint@388
 | 
   319  | 
		if ( k < newlevel ) ++k;      //now k=newlevel
  | 
| 
jacint@388
 | 
   320  | 
		Node first=level_list[newlevel];
  | 
| 
jacint@388
 | 
   321  | 
		if ( G.valid(first) ) left.set(first,w);
  | 
| 
jacint@388
 | 
   322  | 
		right.set(w,first);
  | 
| 
jacint@388
 | 
   323  | 
		left.set(w,INVALID);
  | 
| 
jacint@388
 | 
   324  | 
		level_list[newlevel]=w;
  | 
| 
jacint@388
 | 
   325  | 
	      }
  | 
| 
jacint@388
 | 
   326  | 
	    }
  | 
| 
jacint@388
 | 
   327  | 
  | 
| 
jacint@388
 | 
   328  | 
  | 
| 
jacint@388
 | 
   329  | 
	    ++relabel; 
  | 
| 
jacint@388
 | 
   330  | 
	    if ( relabel >= heur ) {
 | 
| 
jacint@388
 | 
   331  | 
	      relabel=0;
  | 
| 
jacint@388
 | 
   332  | 
	      if ( what_heur ) {
 | 
| 
jacint@388
 | 
   333  | 
		what_heur=0;
  | 
| 
jacint@388
 | 
   334  | 
		heur=heur0;
  | 
| 
jacint@388
 | 
   335  | 
		end=false;
  | 
| 
jacint@388
 | 
   336  | 
	      } else {
 | 
| 
jacint@388
 | 
   337  | 
		what_heur=1;
  | 
| 
jacint@388
 | 
   338  | 
		heur=heur1;
  | 
| 
jacint@388
 | 
   339  | 
		b=k; 
  | 
| 
jacint@388
 | 
   340  | 
	      }
  | 
| 
jacint@388
 | 
   341  | 
	    }
  | 
| 
jacint@388
 | 
   342  | 
	  } //phase 0
  | 
| 
jacint@388
 | 
   343  | 
	  
  | 
| 
jacint@388
 | 
   344  | 
	  
  | 
| 
jacint@388
 | 
   345  | 
	} // if ( exc > 0 )
  | 
| 
jacint@388
 | 
   346  | 
	  
  | 
| 
jacint@388
 | 
   347  | 
	
  | 
| 
jacint@388
 | 
   348  | 
	}  // if stack[b] is nonempty
  | 
| 
jacint@388
 | 
   349  | 
	
  | 
| 
jacint@388
 | 
   350  | 
      } // while(true)
  | 
| 
jacint@388
 | 
   351  | 
  | 
| 
jacint@388
 | 
   352  | 
  | 
| 
jacint@388
 | 
   353  | 
      value = excess[t];
  | 
| 
jacint@388
 | 
   354  | 
      /*Max flow value.*/
  | 
| 
jacint@388
 | 
   355  | 
     
  | 
| 
jacint@388
 | 
   356  | 
    } //void run()
  | 
| 
jacint@388
 | 
   357  | 
  | 
| 
jacint@388
 | 
   358  | 
  | 
| 
jacint@388
 | 
   359  | 
  | 
| 
jacint@388
 | 
   360  | 
  | 
| 
jacint@388
 | 
   361  | 
  | 
| 
jacint@388
 | 
   362  | 
    /*
  | 
| 
jacint@388
 | 
   363  | 
      Returns the maximum value of a flow.
  | 
| 
jacint@388
 | 
   364  | 
     */
  | 
| 
jacint@388
 | 
   365  | 
  | 
| 
jacint@388
 | 
   366  | 
    T flowValue() {
 | 
| 
jacint@388
 | 
   367  | 
      return value;
  | 
| 
jacint@388
 | 
   368  | 
    }
  | 
| 
jacint@388
 | 
   369  | 
  | 
| 
jacint@388
 | 
   370  | 
  | 
| 
jacint@388
 | 
   371  | 
    FlowMap Flow() {
 | 
| 
jacint@388
 | 
   372  | 
      return flow;
  | 
| 
jacint@388
 | 
   373  | 
      }
  | 
| 
jacint@388
 | 
   374  | 
  | 
| 
jacint@388
 | 
   375  | 
  | 
| 
jacint@388
 | 
   376  | 
    
  | 
| 
jacint@388
 | 
   377  | 
    void Flow(FlowMap& _flow ) {
 | 
| 
jacint@388
 | 
   378  | 
      NodeIt v;
  | 
| 
jacint@388
 | 
   379  | 
      for(G.first(v) ; G.valid(v); G.next(v))
  | 
| 
jacint@388
 | 
   380  | 
	_flow.set(v,flow[v]);
  | 
| 
jacint@388
 | 
   381  | 
    }
  | 
| 
jacint@388
 | 
   382  | 
  | 
| 
jacint@388
 | 
   383  | 
  | 
| 
jacint@388
 | 
   384  | 
  | 
| 
jacint@388
 | 
   385  | 
    /*
  | 
| 
jacint@388
 | 
   386  | 
      Returns the minimum min cut, by a bfs from s in the residual graph.
  | 
| 
jacint@388
 | 
   387  | 
    */
  | 
| 
jacint@388
 | 
   388  | 
   
  | 
| 
jacint@388
 | 
   389  | 
    template<typename _CutMap>
  | 
| 
jacint@388
 | 
   390  | 
    void minMinCut(_CutMap& M) {
 | 
| 
jacint@388
 | 
   391  | 
    
  | 
| 
jacint@388
 | 
   392  | 
      std::queue<Node> queue;
  | 
| 
jacint@388
 | 
   393  | 
      
  | 
| 
jacint@388
 | 
   394  | 
      M.set(s,true);      
  | 
| 
jacint@388
 | 
   395  | 
      queue.push(s);
  | 
| 
jacint@388
 | 
   396  | 
  | 
| 
jacint@388
 | 
   397  | 
      while (!queue.empty()) {
 | 
| 
jacint@388
 | 
   398  | 
        Node w=queue.front();
  | 
| 
jacint@388
 | 
   399  | 
	queue.pop();
  | 
| 
jacint@388
 | 
   400  | 
  | 
| 
jacint@388
 | 
   401  | 
	OutEdgeIt e;
  | 
| 
jacint@388
 | 
   402  | 
	for(G.first(e,w) ; G.valid(e); G.next(e)) {
 | 
| 
jacint@388
 | 
   403  | 
	  Node v=G.head(e);
  | 
| 
jacint@388
 | 
   404  | 
	  if (!M[v] && flow[e] < capacity[e] ) {
 | 
| 
jacint@388
 | 
   405  | 
	    queue.push(v);
  | 
| 
jacint@388
 | 
   406  | 
	    M.set(v, true);
  | 
| 
jacint@388
 | 
   407  | 
	  }
  | 
| 
jacint@388
 | 
   408  | 
	} 
  | 
| 
jacint@388
 | 
   409  | 
  | 
| 
jacint@388
 | 
   410  | 
	InEdgeIt f;
  | 
| 
jacint@388
 | 
   411  | 
	for(G.first(f,w) ; G.valid(f); G.next(f)) {
 | 
| 
jacint@388
 | 
   412  | 
	  Node v=G.tail(f);
  | 
| 
jacint@388
 | 
   413  | 
	  if (!M[v] && flow[f] > 0 ) {
 | 
| 
jacint@388
 | 
   414  | 
	    queue.push(v);
  | 
| 
jacint@388
 | 
   415  | 
	    M.set(v, true);
  | 
| 
jacint@388
 | 
   416  | 
	  }
  | 
| 
jacint@388
 | 
   417  | 
	} 
  | 
| 
jacint@388
 | 
   418  | 
      }
  | 
| 
jacint@388
 | 
   419  | 
    }
  | 
| 
jacint@388
 | 
   420  | 
  | 
| 
jacint@388
 | 
   421  | 
  | 
| 
jacint@388
 | 
   422  | 
  
  | 
| 
jacint@388
 | 
   423  | 
    /*
  | 
| 
jacint@388
 | 
   424  | 
      Returns the maximum min cut, by a reverse bfs 
  | 
| 
jacint@388
 | 
   425  | 
      from t in the residual graph.
  | 
| 
jacint@388
 | 
   426  | 
    */
  | 
| 
jacint@388
 | 
   427  | 
    
  | 
| 
jacint@388
 | 
   428  | 
    template<typename _CutMap>
  | 
| 
jacint@388
 | 
   429  | 
    void maxMinCut(_CutMap& M) {
 | 
| 
jacint@388
 | 
   430  | 
    
  | 
| 
jacint@388
 | 
   431  | 
      std::queue<Node> queue;
  | 
| 
jacint@388
 | 
   432  | 
      
  | 
| 
jacint@388
 | 
   433  | 
      M.set(t,true);        
  | 
| 
jacint@388
 | 
   434  | 
      queue.push(t);
  | 
| 
jacint@388
 | 
   435  | 
  | 
| 
jacint@388
 | 
   436  | 
      while (!queue.empty()) {
 | 
| 
jacint@388
 | 
   437  | 
        Node w=queue.front();
  | 
| 
jacint@388
 | 
   438  | 
	queue.pop();
  | 
| 
jacint@388
 | 
   439  | 
  | 
| 
jacint@388
 | 
   440  | 
  | 
| 
jacint@388
 | 
   441  | 
	InEdgeIt e;
  | 
| 
jacint@388
 | 
   442  | 
	for(G.first(e,w) ; G.valid(e); G.next(e)) {
 | 
| 
jacint@388
 | 
   443  | 
	  Node v=G.tail(e);
  | 
| 
jacint@388
 | 
   444  | 
	  if (!M[v] && flow[e] < capacity[e] ) {
 | 
| 
jacint@388
 | 
   445  | 
	    queue.push(v);
  | 
| 
jacint@388
 | 
   446  | 
	    M.set(v, true);
  | 
| 
jacint@388
 | 
   447  | 
	  }
  | 
| 
jacint@388
 | 
   448  | 
	}
  | 
| 
jacint@388
 | 
   449  | 
	
  | 
| 
jacint@388
 | 
   450  | 
	OutEdgeIt f;
  | 
| 
jacint@388
 | 
   451  | 
	for(G.first(f,w) ; G.valid(f); G.next(f)) {
 | 
| 
jacint@388
 | 
   452  | 
	  Node v=G.head(f);
  | 
| 
jacint@388
 | 
   453  | 
	  if (!M[v] && flow[f] > 0 ) {
 | 
| 
jacint@388
 | 
   454  | 
	    queue.push(v);
  | 
| 
jacint@388
 | 
   455  | 
	    M.set(v, true);
  | 
| 
jacint@388
 | 
   456  | 
	  }
  | 
| 
jacint@388
 | 
   457  | 
	}
  | 
| 
jacint@388
 | 
   458  | 
      }
  | 
| 
jacint@388
 | 
   459  | 
  | 
| 
jacint@388
 | 
   460  | 
      NodeIt v;
  | 
| 
jacint@388
 | 
   461  | 
      for(G.first(v) ; G.valid(v); G.next(v)) {
 | 
| 
jacint@388
 | 
   462  | 
	M.set(v, !M[v]);
  | 
| 
jacint@388
 | 
   463  | 
      }
  | 
| 
jacint@388
 | 
   464  | 
  | 
| 
jacint@388
 | 
   465  | 
    }
  | 
| 
jacint@388
 | 
   466  | 
  | 
| 
jacint@388
 | 
   467  | 
  | 
| 
jacint@388
 | 
   468  | 
  | 
| 
jacint@388
 | 
   469  | 
    template<typename CutMap>
  | 
| 
jacint@388
 | 
   470  | 
    void minCut(CutMap& M) {
 | 
| 
jacint@388
 | 
   471  | 
      minMinCut(M);
  | 
| 
jacint@388
 | 
   472  | 
    }
  | 
| 
jacint@388
 | 
   473  | 
  | 
| 
jacint@388
 | 
   474  | 
    
  | 
| 
jacint@444
 | 
   475  | 
    
  | 
| 
jacint@444
 | 
   476  | 
    void resetTarget (Node _t) {t=_t;}
 | 
| 
jacint@444
 | 
   477  | 
    void resetSource (Node _s) {s=_s;}
 | 
| 
jacint@388
 | 
   478  | 
   
  | 
| 
jacint@444
 | 
   479  | 
    void resetCap (CapMap _cap) {capacity=_cap;}
 | 
| 
jacint@388
 | 
   480  | 
  | 
| 
jacint@444
 | 
   481  | 
    void resetFlow (FlowMap _flow, bool _constzero) {
 | 
| 
jacint@388
 | 
   482  | 
      flow=_flow;
  | 
| 
jacint@388
 | 
   483  | 
      constzero=_constzero;
  | 
| 
jacint@388
 | 
   484  | 
    }
  | 
| 
jacint@388
 | 
   485  | 
  | 
| 
jacint@388
 | 
   486  | 
  | 
| 
jacint@388
 | 
   487  | 
  };
  | 
| 
jacint@388
 | 
   488  | 
  | 
| 
alpar@921
 | 
   489  | 
} //namespace lemon
  | 
| 
jacint@388
 | 
   490  | 
  | 
| 
alpar@921
 | 
   491  | 
#endif //LEMON_PREFLOW_RES_H
  | 
| 
jacint@388
 | 
   492  | 
  | 
| 
jacint@388
 | 
   493  | 
  | 
| 
jacint@388
 | 
   494  | 
  | 
| 
jacint@388
 | 
   495  | 
  |