| jacint@388 |      1 | // -*- C++ -*-
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| jacint@388 |      2 | //The same as preflow.h, using ResGraphWrapper
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| jacint@388 |      3 | #ifndef HUGO_PREFLOW_RES_H
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| jacint@388 |      4 | #define HUGO_PREFLOW_RES_H
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| jacint@388 |      5 | 
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| jacint@388 |      6 | #define H0 20
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| jacint@388 |      7 | #define H1 1
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| jacint@388 |      8 | 
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| jacint@388 |      9 | #include <vector>
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| jacint@388 |     10 | #include <queue>
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| jacint@388 |     11 | #include <graph_wrapper.h>
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| jacint@388 |     12 | 
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| jacint@388 |     13 | #include<iostream>
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| jacint@388 |     14 | 
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| jacint@388 |     15 | namespace hugo {
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| jacint@388 |     16 | 
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| jacint@388 |     17 |   template <typename Graph, typename T, 
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| marci@392 |     18 | 	    typename CapMap=typename Graph::template EdgeMap<T>, 
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| marci@392 |     19 |             typename FlowMap=typename Graph::template EdgeMap<T> >
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| jacint@388 |     20 |   class PreflowRes {
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| jacint@388 |     21 |     
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| jacint@388 |     22 |     typedef typename Graph::Node Node;
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| jacint@388 |     23 |     typedef typename Graph::Edge Edge;
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| jacint@388 |     24 |     typedef typename Graph::NodeIt NodeIt;
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| jacint@388 |     25 |     typedef typename Graph::OutEdgeIt OutEdgeIt;
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| jacint@388 |     26 |     typedef typename Graph::InEdgeIt InEdgeIt;
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| jacint@388 |     27 |     
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| jacint@388 |     28 |     const Graph& G;
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| jacint@388 |     29 |     Node s;
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| jacint@388 |     30 |     Node t;
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| jacint@388 |     31 |     const CapMap& capacity;  
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| jacint@388 |     32 |     FlowMap& flow;
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| jacint@388 |     33 |     T value;
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| jacint@388 |     34 |     bool constzero;
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| jacint@388 |     35 | 
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| jacint@388 |     36 |     typedef ResGraphWrapper<const Graph, T, CapMap, FlowMap> ResGW;
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| jacint@388 |     37 |     typedef typename ResGW::OutEdgeIt ResOutEdgeIt;
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| jacint@388 |     38 |     typedef typename ResGW::InEdgeIt ResInEdgeIt;
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| jacint@388 |     39 |     typedef typename ResGW::Edge ResEdge;
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| jacint@388 |     40 |  
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| jacint@388 |     41 |   public:
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| jacint@388 |     42 |     PreflowRes(Graph& _G, Node _s, Node _t, CapMap& _capacity, 
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| jacint@388 |     43 | 	    FlowMap& _flow, bool _constzero ) :
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| jacint@388 |     44 |       G(_G), s(_s), t(_t), capacity(_capacity), flow(_flow), constzero(_constzero) {}
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| jacint@388 |     45 |     
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| jacint@388 |     46 |     
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| jacint@388 |     47 |     void run() {
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| jacint@388 |     48 | 
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| jacint@388 |     49 |       ResGW res_graph(G, capacity, flow);
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| jacint@388 |     50 | 
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| jacint@388 |     51 |       value=0;                //for the subsequent runs
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| jacint@388 |     52 | 
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| jacint@388 |     53 |       bool phase=0;        //phase 0 is the 1st phase, phase 1 is the 2nd
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| jacint@388 |     54 |       int n=G.nodeNum(); 
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| jacint@388 |     55 |       int heur0=(int)(H0*n);  //time while running 'bound decrease' 
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| jacint@388 |     56 |       int heur1=(int)(H1*n);  //time while running 'highest label'
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| jacint@388 |     57 |       int heur=heur1;         //starting time interval (#of relabels)
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| jacint@388 |     58 |       bool what_heur=1;       
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| jacint@388 |     59 |       /*
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| jacint@388 |     60 | 	what_heur is 0 in case 'bound decrease' 
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| jacint@388 |     61 | 	and 1 in case 'highest label'
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| jacint@388 |     62 |       */
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| jacint@388 |     63 |       bool end=false;     
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| jacint@388 |     64 |       /*
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| jacint@388 |     65 | 	Needed for 'bound decrease', 'true'
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| jacint@388 |     66 | 	means no active nodes are above bound b.
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| jacint@388 |     67 |       */
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| jacint@388 |     68 |       int relabel=0;
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| jacint@388 |     69 |       int k=n-2;  //bound on the highest level under n containing a node
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| jacint@388 |     70 |       int b=k;    //bound on the highest level under n of an active node
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| jacint@388 |     71 |       
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| marci@392 |     72 |       typename Graph::template NodeMap<int> level(G,n);      
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| marci@392 |     73 |       typename Graph::template NodeMap<T> excess(G); 
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| jacint@388 |     74 | 
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| jacint@388 |     75 |       std::vector<Node> active(n-1,INVALID);
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| marci@392 |     76 |       typename Graph::template NodeMap<Node> next(G,INVALID);
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| jacint@388 |     77 |       //Stack of the active nodes in level i < n.
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| jacint@388 |     78 |       //We use it in both phases.
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| jacint@388 |     79 | 
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| marci@392 |     80 |       typename Graph::template NodeMap<Node> left(G,INVALID);
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| marci@392 |     81 |       typename Graph::template NodeMap<Node> right(G,INVALID);
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| jacint@388 |     82 |       std::vector<Node> level_list(n,INVALID);
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| jacint@388 |     83 |       /*
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| jacint@388 |     84 | 	List of the nodes in level i<n.
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| jacint@388 |     85 |       */
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| jacint@388 |     86 | 
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| jacint@388 |     87 | 
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| jacint@388 |     88 |       /*
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| jacint@388 |     89 | 	Reverse_bfs from t in the residual graph, 
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| jacint@388 |     90 | 	to find the starting level.
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| jacint@388 |     91 |       */
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| jacint@388 |     92 |       level.set(t,0);
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| jacint@388 |     93 |       std::queue<Node> bfs_queue;
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| jacint@388 |     94 |       bfs_queue.push(t);
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| jacint@388 |     95 |       
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| jacint@388 |     96 |       while (!bfs_queue.empty()) {
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| jacint@388 |     97 | 	
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| jacint@388 |     98 | 	Node v=bfs_queue.front();	
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| jacint@388 |     99 | 	bfs_queue.pop();
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| jacint@388 |    100 | 	int l=level[v]+1;
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| jacint@388 |    101 | 	
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| jacint@388 |    102 | 	ResInEdgeIt e;
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| jacint@388 |    103 | 	for(res_graph.first(e,v); res_graph.valid(e); 
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| jacint@388 |    104 | 	    res_graph.next(e)) {
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| jacint@388 |    105 | 	  Node w=res_graph.tail(e);
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| jacint@388 |    106 | 	  if ( level[w] == n && w != s ) {
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| jacint@388 |    107 | 	    bfs_queue.push(w);
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| jacint@388 |    108 | 	    Node first=level_list[l];
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| jacint@388 |    109 | 	    if ( G.valid(first) ) left.set(first,w);
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| jacint@388 |    110 | 	    right.set(w,first);
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| jacint@388 |    111 | 	    level_list[l]=w;
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| jacint@388 |    112 | 	    level.set(w, l);
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| jacint@388 |    113 | 	  }
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| jacint@388 |    114 | 	}
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| jacint@388 |    115 |       }
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| jacint@388 |    116 |       
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| jacint@388 |    117 | 	
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| jacint@388 |    118 |       if ( !constzero ) {
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| jacint@388 |    119 | 	/*
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| jacint@388 |    120 | 	  Counting the excess
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| jacint@388 |    121 | 	*/
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| jacint@388 |    122 | 	NodeIt v;
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| jacint@388 |    123 | 	for(G.first(v); G.valid(v); G.next(v)) {
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| jacint@388 |    124 | 	  T exc=0;
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| jacint@388 |    125 | 
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| jacint@388 |    126 | 	  InEdgeIt e;
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| jacint@388 |    127 | 	  for(G.first(e,v); G.valid(e); G.next(e)) exc+=flow[e];
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| jacint@388 |    128 | 	  OutEdgeIt f;
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| jacint@444 |    129 | 	  for(G.first(f,v); G.valid(f); G.next(f)) exc-=flow[f];
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| jacint@388 |    130 | 
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| jacint@388 |    131 | 	  excess.set(v,exc);	  
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| jacint@388 |    132 | 
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| jacint@388 |    133 | 	  //putting the active nodes into the stack
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| jacint@388 |    134 | 	  int lev=level[v];
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| jacint@388 |    135 | 	  if ( exc > 0 && lev < n ) {
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| jacint@388 |    136 | 	    next.set(v,active[lev]);
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| jacint@388 |    137 | 	    active[lev]=v;
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| jacint@388 |    138 | 	  }
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| jacint@388 |    139 | 	}
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| jacint@388 |    140 |       }
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| jacint@388 |    141 |      
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| jacint@388 |    142 | 
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| jacint@388 |    143 | 
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| jacint@388 |    144 |       //the starting flow
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| jacint@388 |    145 |       ResOutEdgeIt e;
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| jacint@388 |    146 |       for(res_graph.first(e,s); res_graph.valid(e); 
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| jacint@388 |    147 | 	  res_graph.next(e)) {
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| jacint@388 |    148 | 	  Node w=res_graph.head(e);
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| jacint@388 |    149 | 	  if ( level[w] < n ) {	  
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| jacint@388 |    150 | 	    if ( excess[w] == 0 && w!=t ) {
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| jacint@388 |    151 | 	      next.set(w,active[level[w]]);
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| jacint@388 |    152 | 	      active[level[w]]=w;
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| jacint@388 |    153 | 	    }
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| jacint@388 |    154 | 	    T rem=res_graph.resCap(e);
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| jacint@388 |    155 | 	    excess.set(w, excess[w]+rem);
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| jacint@388 |    156 | 	    res_graph.augment(e, rem ); 
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| jacint@388 |    157 | 	  }
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| jacint@388 |    158 |       }
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| jacint@388 |    159 | 	
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| jacint@388 |    160 | 
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| jacint@388 |    161 |       /* 
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| jacint@388 |    162 | 	 End of preprocessing 
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| jacint@388 |    163 |       */
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| jacint@388 |    164 | 
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| jacint@388 |    165 | 
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| jacint@388 |    166 | 
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| jacint@388 |    167 |       /*
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| jacint@388 |    168 | 	Push/relabel on the highest level active nodes.
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| jacint@388 |    169 |       */	
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| jacint@388 |    170 |       while ( true ) {
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| jacint@388 |    171 | 	
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| jacint@388 |    172 | 	if ( b == 0 ) {
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| jacint@388 |    173 | 	  if ( phase ) break;
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| jacint@388 |    174 | 	  
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| jacint@388 |    175 | 	  if ( !what_heur && !end && k > 0 ) {
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| jacint@388 |    176 | 	    b=k;
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| jacint@388 |    177 | 	    end=true;
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| jacint@388 |    178 | 	  } else {
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| jacint@388 |    179 | 	    phase=1;
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| jacint@388 |    180 | 	    level.set(s,0);
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| jacint@388 |    181 | 	    std::queue<Node> bfs_queue;
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| jacint@388 |    182 | 	    bfs_queue.push(s);
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| jacint@388 |    183 | 	    
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| jacint@388 |    184 | 	    while (!bfs_queue.empty()) {
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| jacint@388 |    185 | 	      
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| jacint@388 |    186 | 	      Node v=bfs_queue.front();	
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| jacint@388 |    187 | 	      bfs_queue.pop();
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| jacint@388 |    188 | 	      int l=level[v]+1;
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| jacint@388 |    189 | 	      
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| jacint@388 |    190 | 	      ResInEdgeIt e;
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| jacint@388 |    191 | 	      for(res_graph.first(e,v); 
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| jacint@388 |    192 | 		  res_graph.valid(e); res_graph.next(e)) {
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| jacint@388 |    193 | 		Node u=res_graph.tail(e);
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| jacint@388 |    194 | 		if ( level[u] >= n ) { 
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| jacint@388 |    195 | 		  bfs_queue.push(u);
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| jacint@388 |    196 | 		  level.set(u, l);
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| jacint@388 |    197 | 		  if ( excess[u] > 0 ) {
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| jacint@388 |    198 | 		    next.set(u,active[l]);
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| jacint@388 |    199 | 		    active[l]=u;
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| jacint@388 |    200 | 		  }
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| jacint@388 |    201 | 		}
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| jacint@388 |    202 | 	      }
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| jacint@388 |    203 | 	    
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| jacint@388 |    204 | 	    }
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| jacint@388 |    205 | 	    b=n-2;
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| jacint@388 |    206 | 	  }
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| jacint@388 |    207 | 	    
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| jacint@388 |    208 | 	}
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| jacint@388 |    209 | 	  
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| jacint@388 |    210 | 	  
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| jacint@388 |    211 | 	if ( !G.valid(active[b]) ) --b; 
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| jacint@388 |    212 | 	else {
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| jacint@388 |    213 | 	  end=false;  
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| jacint@388 |    214 | 
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| jacint@388 |    215 | 	  Node w=active[b];
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| jacint@388 |    216 | 	  active[b]=next[w];
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| jacint@388 |    217 | 	  int lev=level[w];
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| jacint@388 |    218 | 	  T exc=excess[w];
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| jacint@388 |    219 | 	  int newlevel=n;       //bound on the next level of w
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| jacint@388 |    220 | 	  
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| jacint@388 |    221 | 	  ResOutEdgeIt e;
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| jacint@388 |    222 | 	  for(res_graph.first(e,w); res_graph.valid(e); res_graph.next(e)) {
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| jacint@388 |    223 | 	    
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| jacint@388 |    224 | 	    Node v=res_graph.head(e);            
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| jacint@388 |    225 | 	    if( lev > level[v] ) {      
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| jacint@388 |    226 | 	      /*Push is allowed now*/
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| jacint@388 |    227 | 	      
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| jacint@388 |    228 | 	      if ( excess[v]==0 && v!=t && v!=s ) {
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| jacint@388 |    229 | 		int lev_v=level[v];
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| jacint@388 |    230 | 		next.set(v,active[lev_v]);
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| jacint@388 |    231 | 		active[lev_v]=v;
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| jacint@388 |    232 | 	      }
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| jacint@388 |    233 | 	      
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| jacint@388 |    234 | 	      T remcap=res_graph.resCap(e);
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| jacint@388 |    235 | 	      
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| jacint@388 |    236 | 	      if ( remcap >= exc ) {       
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| jacint@388 |    237 | 		/*A nonsaturating push.*/
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| jacint@388 |    238 | 		res_graph.augment(e, exc);
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| jacint@388 |    239 | 		excess.set(v, excess[v]+exc);
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| jacint@388 |    240 | 		exc=0;
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| jacint@388 |    241 | 		break; 
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| jacint@388 |    242 | 		
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| jacint@388 |    243 | 	      } else { 
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| jacint@388 |    244 | 		/*A saturating push.*/
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| jacint@388 |    245 | 		
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| jacint@388 |    246 | 		res_graph.augment(e, remcap);
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| jacint@388 |    247 | 		excess.set(v, excess[v]+remcap);
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| jacint@388 |    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 |    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 | 	*/
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| jacint@388 |    261 | 	
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| jacint@388 |    262 | 
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| jacint@388 |    263 | 	if ( exc > 0 ) {
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| jacint@388 |    264 | 	  //now 'lev' is the old level of w
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| jacint@388 |    265 | 	
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| jacint@388 |    266 | 	  if ( phase ) {
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| jacint@388 |    267 | 	    level.set(w,++newlevel);
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| jacint@388 |    268 | 	    next.set(w,active[newlevel]);
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| jacint@388 |    269 | 	    active[newlevel]=w;
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| jacint@388 |    270 | 	    b=newlevel;
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| jacint@388 |    271 | 	  } else {
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| jacint@388 |    272 | 	    //unlacing starts
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| jacint@388 |    273 | 	    Node right_n=right[w];
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| jacint@388 |    274 | 	    Node left_n=left[w];
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| jacint@388 |    275 | 
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| jacint@388 |    276 | 	    if ( G.valid(right_n) ) {
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| jacint@388 |    277 | 	      if ( G.valid(left_n) ) {
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| jacint@388 |    278 | 		right.set(left_n, right_n);
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| jacint@388 |    279 | 		left.set(right_n, left_n);
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| jacint@388 |    280 | 	      } else {
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| jacint@388 |    281 | 		level_list[lev]=right_n;   
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| jacint@388 |    282 | 		left.set(right_n, INVALID);
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| jacint@388 |    283 | 	      } 
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| jacint@388 |    284 | 	    } else {
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| jacint@388 |    285 | 	      if ( G.valid(left_n) ) {
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| jacint@388 |    286 | 		right.set(left_n, INVALID);
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| jacint@388 |    287 | 	      } else { 
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| jacint@388 |    288 | 		level_list[lev]=INVALID;   
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| jacint@388 |    289 | 	      } 
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| jacint@388 |    290 | 	    } 
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| jacint@388 |    291 | 	    //unlacing ends
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| jacint@388 |    292 | 		
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| jacint@388 |    293 | 	    if ( !G.valid(level_list[lev]) ) {
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| jacint@388 |    294 | 	      
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| jacint@388 |    295 | 	       //gapping starts
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| jacint@388 |    296 | 	      for (int i=lev; i!=k ; ) {
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| jacint@388 |    297 | 		Node v=level_list[++i];
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| jacint@388 |    298 | 		while ( G.valid(v) ) {
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| jacint@388 |    299 | 		  level.set(v,n);
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| jacint@388 |    300 | 		  v=right[v];
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| jacint@388 |    301 | 		}
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| jacint@388 |    302 | 		level_list[i]=INVALID;
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| jacint@388 |    303 | 		if ( !what_heur ) active[i]=INVALID;
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| jacint@388 |    304 | 	      }	     
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| jacint@388 |    305 | 
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| jacint@388 |    306 | 	      level.set(w,n);
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| jacint@388 |    307 | 	      b=lev-1;
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| jacint@388 |    308 | 	      k=b;
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| jacint@388 |    309 | 	      //gapping ends
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| jacint@388 |    310 | 	    
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| jacint@388 |    311 | 	    } else {
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| jacint@388 |    312 | 	      
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| jacint@388 |    313 | 	      if ( newlevel == n ) level.set(w,n); 
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| jacint@388 |    314 | 	      else {
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| jacint@388 |    315 | 		level.set(w,++newlevel);
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| jacint@388 |    316 | 		next.set(w,active[newlevel]);
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| jacint@388 |    317 | 		active[newlevel]=w;
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| jacint@388 |    318 | 		if ( what_heur ) b=newlevel;
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| jacint@388 |    319 | 		if ( k < newlevel ) ++k;      //now k=newlevel
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| jacint@388 |    320 | 		Node first=level_list[newlevel];
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| jacint@388 |    321 | 		if ( G.valid(first) ) left.set(first,w);
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| jacint@388 |    322 | 		right.set(w,first);
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| jacint@388 |    323 | 		left.set(w,INVALID);
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| jacint@388 |    324 | 		level_list[newlevel]=w;
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| jacint@388 |    325 | 	      }
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| jacint@388 |    326 | 	    }
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| jacint@388 |    327 | 
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| jacint@388 |    328 | 
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| jacint@388 |    329 | 	    ++relabel; 
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| jacint@388 |    330 | 	    if ( relabel >= heur ) {
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| jacint@388 |    331 | 	      relabel=0;
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| jacint@388 |    332 | 	      if ( what_heur ) {
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| jacint@388 |    333 | 		what_heur=0;
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| jacint@388 |    334 | 		heur=heur0;
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| jacint@388 |    335 | 		end=false;
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| jacint@388 |    336 | 	      } else {
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| jacint@388 |    337 | 		what_heur=1;
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| jacint@388 |    338 | 		heur=heur1;
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| jacint@388 |    339 | 		b=k; 
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| jacint@388 |    340 | 	      }
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| jacint@388 |    341 | 	    }
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| jacint@388 |    342 | 	  } //phase 0
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| jacint@388 |    343 | 	  
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| jacint@388 |    344 | 	  
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| jacint@388 |    345 | 	} // if ( exc > 0 )
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| jacint@388 |    346 | 	  
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| jacint@388 |    347 | 	
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| jacint@388 |    348 | 	}  // if stack[b] is nonempty
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| jacint@388 |    349 | 	
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| jacint@388 |    350 |       } // while(true)
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| jacint@388 |    351 | 
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| jacint@388 |    352 | 
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| jacint@388 |    353 |       value = excess[t];
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| jacint@388 |    354 |       /*Max flow value.*/
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| jacint@388 |    355 |      
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| jacint@388 |    356 |     } //void run()
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| jacint@388 |    357 | 
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| jacint@388 |    358 | 
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| jacint@388 |    359 | 
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| jacint@388 |    360 | 
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| jacint@388 |    361 | 
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| jacint@388 |    362 |     /*
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| jacint@388 |    363 |       Returns the maximum value of a flow.
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| jacint@388 |    364 |      */
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| jacint@388 |    365 | 
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| jacint@388 |    366 |     T flowValue() {
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| jacint@388 |    367 |       return value;
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| jacint@388 |    368 |     }
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| jacint@388 |    369 | 
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| jacint@388 |    370 | 
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| jacint@388 |    371 |     FlowMap Flow() {
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| jacint@388 |    372 |       return flow;
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| jacint@388 |    373 |       }
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| jacint@388 |    374 | 
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| jacint@388 |    375 | 
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| jacint@388 |    376 |     
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| jacint@388 |    377 |     void Flow(FlowMap& _flow ) {
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| jacint@388 |    378 |       NodeIt v;
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| jacint@388 |    379 |       for(G.first(v) ; G.valid(v); G.next(v))
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| jacint@388 |    380 | 	_flow.set(v,flow[v]);
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| jacint@388 |    381 |     }
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| jacint@388 |    382 | 
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| jacint@388 |    383 | 
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| jacint@388 |    384 | 
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| jacint@388 |    385 |     /*
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| jacint@388 |    386 |       Returns the minimum min cut, by a bfs from s in the residual graph.
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| jacint@388 |    387 |     */
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| jacint@388 |    388 |    
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| jacint@388 |    389 |     template<typename _CutMap>
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| jacint@388 |    390 |     void minMinCut(_CutMap& M) {
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| jacint@388 |    391 |     
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| jacint@388 |    392 |       std::queue<Node> queue;
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| jacint@388 |    393 |       
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| jacint@388 |    394 |       M.set(s,true);      
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| jacint@388 |    395 |       queue.push(s);
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| jacint@388 |    396 | 
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| jacint@388 |    397 |       while (!queue.empty()) {
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| jacint@388 |    398 |         Node w=queue.front();
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| jacint@388 |    399 | 	queue.pop();
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| jacint@388 |    400 | 
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| jacint@388 |    401 | 	OutEdgeIt e;
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| jacint@388 |    402 | 	for(G.first(e,w) ; G.valid(e); G.next(e)) {
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| jacint@388 |    403 | 	  Node v=G.head(e);
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| jacint@388 |    404 | 	  if (!M[v] && flow[e] < capacity[e] ) {
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| jacint@388 |    405 | 	    queue.push(v);
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| jacint@388 |    406 | 	    M.set(v, true);
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| jacint@388 |    407 | 	  }
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| jacint@388 |    408 | 	} 
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| jacint@388 |    409 | 
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| jacint@388 |    410 | 	InEdgeIt f;
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| jacint@388 |    411 | 	for(G.first(f,w) ; G.valid(f); G.next(f)) {
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| jacint@388 |    412 | 	  Node v=G.tail(f);
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| jacint@388 |    413 | 	  if (!M[v] && flow[f] > 0 ) {
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| jacint@388 |    414 | 	    queue.push(v);
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| jacint@388 |    415 | 	    M.set(v, true);
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| jacint@388 |    416 | 	  }
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| jacint@388 |    417 | 	} 
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| jacint@388 |    418 |       }
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| jacint@388 |    419 |     }
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| jacint@388 |    420 | 
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| jacint@388 |    421 | 
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| jacint@388 |    422 |   
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| jacint@388 |    423 |     /*
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| jacint@388 |    424 |       Returns the maximum min cut, by a reverse bfs 
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| jacint@388 |    425 |       from t in the residual graph.
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| jacint@388 |    426 |     */
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| jacint@388 |    427 |     
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| jacint@388 |    428 |     template<typename _CutMap>
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| jacint@388 |    429 |     void maxMinCut(_CutMap& M) {
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| jacint@388 |    430 |     
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| jacint@388 |    431 |       std::queue<Node> queue;
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| jacint@388 |    432 |       
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| jacint@388 |    433 |       M.set(t,true);        
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| jacint@388 |    434 |       queue.push(t);
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| jacint@388 |    435 | 
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| jacint@388 |    436 |       while (!queue.empty()) {
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| jacint@388 |    437 |         Node w=queue.front();
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| jacint@388 |    438 | 	queue.pop();
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| jacint@388 |    439 | 
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| jacint@388 |    440 | 
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| jacint@388 |    441 | 	InEdgeIt e;
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| jacint@388 |    442 | 	for(G.first(e,w) ; G.valid(e); G.next(e)) {
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| jacint@388 |    443 | 	  Node v=G.tail(e);
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| jacint@388 |    444 | 	  if (!M[v] && flow[e] < capacity[e] ) {
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| jacint@388 |    445 | 	    queue.push(v);
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| jacint@388 |    446 | 	    M.set(v, true);
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| jacint@388 |    447 | 	  }
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| jacint@388 |    448 | 	}
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| jacint@388 |    449 | 	
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| jacint@388 |    450 | 	OutEdgeIt f;
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| jacint@388 |    451 | 	for(G.first(f,w) ; G.valid(f); G.next(f)) {
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| jacint@388 |    452 | 	  Node v=G.head(f);
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| jacint@388 |    453 | 	  if (!M[v] && flow[f] > 0 ) {
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| jacint@388 |    454 | 	    queue.push(v);
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| jacint@388 |    455 | 	    M.set(v, true);
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| jacint@388 |    456 | 	  }
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| jacint@388 |    457 | 	}
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| jacint@388 |    458 |       }
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| jacint@388 |    459 | 
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| jacint@388 |    460 |       NodeIt v;
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| jacint@388 |    461 |       for(G.first(v) ; G.valid(v); G.next(v)) {
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| jacint@388 |    462 | 	M.set(v, !M[v]);
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| jacint@388 |    463 |       }
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| jacint@388 |    464 | 
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| jacint@388 |    465 |     }
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| jacint@388 |    466 | 
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| jacint@388 |    467 | 
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| jacint@388 |    468 | 
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| jacint@388 |    469 |     template<typename CutMap>
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| jacint@388 |    470 |     void minCut(CutMap& M) {
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| jacint@388 |    471 |       minMinCut(M);
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| jacint@388 |    472 |     }
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| jacint@388 |    473 | 
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| jacint@388 |    474 |     
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| jacint@444 |    475 |     
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| jacint@444 |    476 |     void resetTarget (Node _t) {t=_t;}
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| jacint@444 |    477 |     void resetSource (Node _s) {s=_s;}
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| jacint@388 |    478 |    
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| jacint@444 |    479 |     void resetCap (CapMap _cap) {capacity=_cap;}
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| jacint@388 |    480 | 
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| jacint@444 |    481 |     void resetFlow (FlowMap _flow, bool _constzero) {
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| jacint@388 |    482 |       flow=_flow;
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| jacint@388 |    483 |       constzero=_constzero;
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| jacint@388 |    484 |     }
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| jacint@388 |    485 | 
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| jacint@388 |    486 | 
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| jacint@388 |    487 |   };
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| jacint@388 |    488 | 
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| jacint@388 |    489 | } //namespace hugo
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| jacint@388 |    490 | 
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| marci@390 |    491 | #endif //HUGO_PREFLOW_RES_H
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| jacint@388 |    492 | 
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| jacint@388 |    493 | 
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| jacint@388 |    494 | 
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| jacint@388 |    495 | 
 |