| 1 | // -*- C++ -*- |
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| 2 | |
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| 3 | /* |
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| 4 | Heuristics: |
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| 5 | 2 phase |
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| 6 | gap |
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| 7 | list 'level_list' on the nodes on level i implemented by hand |
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| 8 | stack 'active' on the active nodes on level i |
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| 9 | runs heuristic 'highest label' for H1*n relabels |
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| 10 | runs heuristic 'bound decrease' for H0*n relabels, starts with 'highest label' |
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| 11 | |
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| 12 | Parameters H0 and H1 are initialized to 20 and 1. |
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| 13 | |
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| 14 | Constructors: |
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| 15 | |
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| 16 | Preflow(Graph, Node, Node, CapMap, FlowMap, bool) : bool must be false if |
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| 17 | FlowMap is not constant zero, and should be true if it is |
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| 18 | |
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| 19 | Members: |
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| 20 | |
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| 21 | void run() |
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| 22 | |
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| 23 | T flowValue() : returns the value of a maximum flow |
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| 24 | |
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| 25 | void minMinCut(CutMap& M) : sets M to the characteristic vector of the |
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| 26 | minimum min cut. M should be a map of bools initialized to false. ??Is it OK? |
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| 27 | |
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| 28 | void maxMinCut(CutMap& M) : sets M to the characteristic vector of the |
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| 29 | maximum min cut. M should be a map of bools initialized to false. |
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| 30 | |
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| 31 | void minCut(CutMap& M) : sets M to the characteristic vector of |
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| 32 | a min cut. M should be a map of bools initialized to false. |
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| 33 | |
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| 34 | */ |
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| 35 | |
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| 36 | #ifndef HUGO_PREFLOW_H |
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| 37 | #define HUGO_PREFLOW_H |
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| 38 | |
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| 39 | #define H0 20 |
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| 40 | #define H1 1 |
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| 41 | |
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| 42 | #include <vector> |
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| 43 | #include <queue> |
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| 44 | #include <stack> |
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| 45 | |
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| 46 | namespace hugo { |
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| 47 | |
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| 48 | template <typename Graph, typename T, |
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| 49 | typename CapMap=typename Graph::template EdgeMap<T>, |
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| 50 | typename FlowMap=typename Graph::template EdgeMap<T> > |
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| 51 | class Preflow { |
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| 52 | |
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| 53 | typedef typename Graph::Node Node; |
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| 54 | typedef typename Graph::NodeIt NodeIt; |
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| 55 | typedef typename Graph::OutEdgeIt OutEdgeIt; |
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| 56 | typedef typename Graph::InEdgeIt InEdgeIt; |
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| 57 | |
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| 58 | typedef typename std::vector<std::stack<Node> > VecStack; |
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| 59 | typedef typename Graph::template NodeMap<Node> NNMap; |
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| 60 | typedef typename std::vector<Node> VecNode; |
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| 61 | |
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| 62 | const Graph& G; |
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| 63 | Node s; |
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| 64 | Node t; |
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| 65 | CapMap* capacity; |
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| 66 | FlowMap* flow; |
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| 67 | int n; //the number of nodes of G |
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| 68 | typename Graph::template NodeMap<int> level; |
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| 69 | typename Graph::template NodeMap<T> excess; |
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| 70 | |
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| 71 | |
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| 72 | public: |
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| 73 | |
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| 74 | enum flowEnum{ |
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| 75 | ZERO_FLOW=0, |
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| 76 | GEN_FLOW=1, |
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| 77 | PREFLOW=2 |
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| 78 | }; |
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| 79 | |
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| 80 | Preflow(Graph& _G, Node _s, Node _t, CapMap& _capacity, |
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| 81 | FlowMap& _flow) : |
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| 82 | G(_G), s(_s), t(_t), capacity(&_capacity), |
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| 83 | flow(&_flow), n(_G.nodeNum()), level(_G), excess(_G,0) {} |
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| 84 | |
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| 85 | void run() { |
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| 86 | preflow( ZERO_FLOW ); |
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| 87 | } |
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| 88 | |
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| 89 | void preflow( flowEnum fe ) { |
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| 90 | preflowPhase0(fe); |
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| 91 | preflowPhase1(); |
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| 92 | } |
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| 93 | |
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| 94 | void preflowPhase0( flowEnum fe ) { |
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| 95 | |
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| 96 | int heur0=(int)(H0*n); //time while running 'bound decrease' |
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| 97 | int heur1=(int)(H1*n); //time while running 'highest label' |
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| 98 | int heur=heur1; //starting time interval (#of relabels) |
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| 99 | int numrelabel=0; |
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| 100 | |
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| 101 | bool what_heur=1; |
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| 102 | //It is 0 in case 'bound decrease' and 1 in case 'highest label' |
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| 103 | |
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| 104 | bool end=false; |
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| 105 | //Needed for 'bound decrease', true means no active nodes are above bound b. |
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| 106 | |
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| 107 | int k=n-2; //bound on the highest level under n containing a node |
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| 108 | int b=k; //bound on the highest level under n of an active node |
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| 109 | |
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| 110 | VecStack active(n); |
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| 111 | |
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| 112 | NNMap left(G,INVALID); |
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| 113 | NNMap right(G,INVALID); |
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| 114 | VecNode level_list(n,INVALID); |
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| 115 | //List of the nodes in level i<n, set to n. |
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| 116 | |
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| 117 | NodeIt v; |
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| 118 | for(G.first(v); G.valid(v); G.next(v)) level.set(v,n); |
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| 119 | //setting each node to level n |
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| 120 | |
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| 121 | switch ( fe ) { |
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| 122 | case PREFLOW: |
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| 123 | { |
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| 124 | //counting the excess |
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| 125 | NodeIt v; |
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| 126 | for(G.first(v); G.valid(v); G.next(v)) { |
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| 127 | T exc=0; |
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| 128 | |
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| 129 | InEdgeIt e; |
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| 130 | for(G.first(e,v); G.valid(e); G.next(e)) exc+=(*flow)[e]; |
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| 131 | OutEdgeIt f; |
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| 132 | for(G.first(f,v); G.valid(f); G.next(f)) exc-=(*flow)[f]; |
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| 133 | |
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| 134 | excess.set(v,exc); |
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| 135 | |
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| 136 | //putting the active nodes into the stack |
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| 137 | int lev=level[v]; |
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| 138 | if ( exc > 0 && lev < n && v != t ) active[lev].push(v); |
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| 139 | } |
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| 140 | break; |
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| 141 | } |
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| 142 | case GEN_FLOW: |
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| 143 | { |
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| 144 | //Counting the excess of t |
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| 145 | T exc=0; |
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| 146 | |
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| 147 | InEdgeIt e; |
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| 148 | for(G.first(e,t); G.valid(e); G.next(e)) exc+=(*flow)[e]; |
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| 149 | OutEdgeIt f; |
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| 150 | for(G.first(f,t); G.valid(f); G.next(f)) exc-=(*flow)[f]; |
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| 151 | |
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| 152 | excess.set(t,exc); |
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| 153 | |
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| 154 | break; |
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| 155 | } |
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| 156 | } |
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| 157 | |
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| 158 | preflowPreproc( fe, active, level_list, left, right ); |
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| 159 | //End of preprocessing |
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| 160 | |
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| 161 | |
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| 162 | //Push/relabel on the highest level active nodes. |
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| 163 | while ( true ) { |
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| 164 | if ( b == 0 ) { |
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| 165 | if ( !what_heur && !end && k > 0 ) { |
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| 166 | b=k; |
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| 167 | end=true; |
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| 168 | } else break; |
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| 169 | } |
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| 170 | |
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| 171 | if ( active[b].empty() ) --b; |
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| 172 | else { |
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| 173 | end=false; |
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| 174 | Node w=active[b].top(); |
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| 175 | active[b].pop(); |
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| 176 | int newlevel=push(w,active); |
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| 177 | if ( excess[w] > 0 ) relabel(w, newlevel, active, level_list, |
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| 178 | left, right, b, k, what_heur); |
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| 179 | |
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| 180 | ++numrelabel; |
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| 181 | if ( numrelabel >= heur ) { |
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| 182 | numrelabel=0; |
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| 183 | if ( what_heur ) { |
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| 184 | what_heur=0; |
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| 185 | heur=heur0; |
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| 186 | end=false; |
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| 187 | } else { |
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| 188 | what_heur=1; |
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| 189 | heur=heur1; |
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| 190 | b=k; |
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| 191 | } |
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| 192 | } |
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| 193 | } |
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| 194 | } |
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| 195 | } |
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| 196 | |
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| 197 | |
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| 198 | void preflowPhase1() { |
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| 199 | |
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| 200 | int k=n-2; //bound on the highest level under n containing a node |
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| 201 | int b=k; //bound on the highest level under n of an active node |
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| 202 | |
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| 203 | VecStack active(n); |
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| 204 | level.set(s,0); |
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| 205 | std::queue<Node> bfs_queue; |
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| 206 | bfs_queue.push(s); |
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| 207 | |
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| 208 | while (!bfs_queue.empty()) { |
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| 209 | |
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| 210 | Node v=bfs_queue.front(); |
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| 211 | bfs_queue.pop(); |
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| 212 | int l=level[v]+1; |
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| 213 | |
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| 214 | InEdgeIt e; |
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| 215 | for(G.first(e,v); G.valid(e); G.next(e)) { |
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| 216 | if ( (*capacity)[e] == (*flow)[e] ) continue; |
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| 217 | Node u=G.tail(e); |
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| 218 | if ( level[u] >= n ) { |
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| 219 | bfs_queue.push(u); |
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| 220 | level.set(u, l); |
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| 221 | if ( excess[u] > 0 ) active[l].push(u); |
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| 222 | } |
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| 223 | } |
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| 224 | |
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| 225 | OutEdgeIt f; |
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| 226 | for(G.first(f,v); G.valid(f); G.next(f)) { |
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| 227 | if ( 0 == (*flow)[f] ) continue; |
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| 228 | Node u=G.head(f); |
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| 229 | if ( level[u] >= n ) { |
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| 230 | bfs_queue.push(u); |
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| 231 | level.set(u, l); |
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| 232 | if ( excess[u] > 0 ) active[l].push(u); |
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| 233 | } |
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| 234 | } |
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| 235 | } |
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| 236 | b=n-2; |
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| 237 | |
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| 238 | while ( true ) { |
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| 239 | |
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| 240 | if ( b == 0 ) break; |
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| 241 | |
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| 242 | if ( active[b].empty() ) --b; |
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| 243 | else { |
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| 244 | Node w=active[b].top(); |
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| 245 | active[b].pop(); |
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| 246 | int newlevel=push(w,active); |
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| 247 | |
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| 248 | //relabel |
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| 249 | if ( excess[w] > 0 ) { |
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| 250 | level.set(w,++newlevel); |
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| 251 | active[newlevel].push(w); |
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| 252 | b=newlevel; |
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| 253 | } |
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| 254 | } // if stack[b] is nonempty |
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| 255 | } // while(true) |
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| 256 | } |
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| 257 | |
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| 258 | |
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| 259 | //Returns the maximum value of a flow. |
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| 260 | T flowValue() { |
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| 261 | return excess[t]; |
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| 262 | } |
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| 263 | |
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| 264 | //should be used only between preflowPhase0 and preflowPhase1 |
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| 265 | template<typename _CutMap> |
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| 266 | void actMinCut(_CutMap& M) { |
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| 267 | NodeIt v; |
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| 268 | for(G.first(v); G.valid(v); G.next(v)) |
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| 269 | if ( level[v] < n ) M.set(v,false); |
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| 270 | else M.set(v,true); |
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| 271 | } |
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| 272 | |
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| 273 | |
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| 274 | |
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| 275 | /* |
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| 276 | Returns the minimum min cut, by a bfs from s in the residual graph. |
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| 277 | */ |
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| 278 | template<typename _CutMap> |
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| 279 | void minMinCut(_CutMap& M) { |
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| 280 | |
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| 281 | std::queue<Node> queue; |
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| 282 | |
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| 283 | M.set(s,true); |
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| 284 | queue.push(s); |
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| 285 | |
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| 286 | while (!queue.empty()) { |
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| 287 | Node w=queue.front(); |
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| 288 | queue.pop(); |
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| 289 | |
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| 290 | OutEdgeIt e; |
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| 291 | for(G.first(e,w) ; G.valid(e); G.next(e)) { |
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| 292 | Node v=G.head(e); |
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| 293 | if (!M[v] && (*flow)[e] < (*capacity)[e] ) { |
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| 294 | queue.push(v); |
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| 295 | M.set(v, true); |
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| 296 | } |
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| 297 | } |
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| 298 | |
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| 299 | InEdgeIt f; |
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| 300 | for(G.first(f,w) ; G.valid(f); G.next(f)) { |
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| 301 | Node v=G.tail(f); |
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| 302 | if (!M[v] && (*flow)[f] > 0 ) { |
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| 303 | queue.push(v); |
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| 304 | M.set(v, true); |
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| 305 | } |
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| 306 | } |
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| 307 | } |
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| 308 | } |
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| 309 | |
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| 310 | |
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| 311 | |
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| 312 | /* |
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| 313 | Returns the maximum min cut, by a reverse bfs |
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| 314 | from t in the residual graph. |
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| 315 | */ |
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| 316 | |
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| 317 | template<typename _CutMap> |
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| 318 | void maxMinCut(_CutMap& M) { |
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| 319 | |
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| 320 | NodeIt v; |
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| 321 | for(G.first(v) ; G.valid(v); G.next(v)) { |
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| 322 | M.set(v, true); |
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| 323 | } |
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| 324 | |
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| 325 | std::queue<Node> queue; |
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| 326 | |
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| 327 | M.set(t,false); |
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| 328 | queue.push(t); |
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| 329 | |
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| 330 | while (!queue.empty()) { |
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| 331 | Node w=queue.front(); |
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| 332 | queue.pop(); |
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| 333 | |
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| 334 | |
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| 335 | InEdgeIt e; |
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| 336 | for(G.first(e,w) ; G.valid(e); G.next(e)) { |
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| 337 | Node v=G.tail(e); |
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| 338 | if (M[v] && (*flow)[e] < (*capacity)[e] ) { |
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| 339 | queue.push(v); |
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| 340 | M.set(v, false); |
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| 341 | } |
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| 342 | } |
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| 343 | |
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| 344 | OutEdgeIt f; |
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| 345 | for(G.first(f,w) ; G.valid(f); G.next(f)) { |
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| 346 | Node v=G.head(f); |
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| 347 | if (M[v] && (*flow)[f] > 0 ) { |
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| 348 | queue.push(v); |
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| 349 | M.set(v, false); |
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| 350 | } |
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| 351 | } |
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| 352 | } |
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| 353 | } |
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| 354 | |
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| 355 | |
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| 356 | template<typename CutMap> |
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| 357 | void minCut(CutMap& M) { |
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| 358 | minMinCut(M); |
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| 359 | } |
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| 360 | |
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| 361 | |
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| 362 | void resetTarget (const Node _t) {t=_t;} |
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| 363 | |
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| 364 | void resetSource (const Node _s) {s=_s;} |
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| 365 | |
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| 366 | void resetCap (const CapMap& _cap) { |
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| 367 | capacity=&_cap; |
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| 368 | } |
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| 369 | |
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| 370 | void resetFlow (FlowMap& _flow) { |
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| 371 | flow=&_flow; |
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| 372 | } |
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| 373 | |
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| 374 | |
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| 375 | private: |
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| 376 | |
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| 377 | int push(const Node w, VecStack& active) { |
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| 378 | |
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| 379 | int lev=level[w]; |
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| 380 | T exc=excess[w]; |
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| 381 | int newlevel=n; //bound on the next level of w |
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| 382 | |
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| 383 | OutEdgeIt e; |
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| 384 | for(G.first(e,w); G.valid(e); G.next(e)) { |
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| 385 | |
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| 386 | if ( (*flow)[e] == (*capacity)[e] ) continue; |
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| 387 | Node v=G.head(e); |
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| 388 | |
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| 389 | if( lev > level[v] ) { //Push is allowed now |
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| 390 | |
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| 391 | if ( excess[v]==0 && v!=t && v!=s ) { |
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| 392 | int lev_v=level[v]; |
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| 393 | active[lev_v].push(v); |
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| 394 | } |
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| 395 | |
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| 396 | T cap=(*capacity)[e]; |
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| 397 | T flo=(*flow)[e]; |
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| 398 | T remcap=cap-flo; |
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| 399 | |
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| 400 | if ( remcap >= exc ) { //A nonsaturating push. |
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| 401 | |
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| 402 | flow->set(e, flo+exc); |
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| 403 | excess.set(v, excess[v]+exc); |
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| 404 | exc=0; |
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| 405 | break; |
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| 406 | |
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| 407 | } else { //A saturating push. |
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| 408 | flow->set(e, cap); |
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| 409 | excess.set(v, excess[v]+remcap); |
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| 410 | exc-=remcap; |
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| 411 | } |
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| 412 | } else if ( newlevel > level[v] ) newlevel = level[v]; |
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| 413 | } //for out edges wv |
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| 414 | |
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| 415 | if ( exc > 0 ) { |
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| 416 | InEdgeIt e; |
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| 417 | for(G.first(e,w); G.valid(e); G.next(e)) { |
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| 418 | |
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| 419 | if( (*flow)[e] == 0 ) continue; |
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| 420 | Node v=G.tail(e); |
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| 421 | |
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| 422 | if( lev > level[v] ) { //Push is allowed now |
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| 423 | |
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| 424 | if ( excess[v]==0 && v!=t && v!=s ) { |
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| 425 | int lev_v=level[v]; |
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| 426 | active[lev_v].push(v); |
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| 427 | } |
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| 428 | |
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| 429 | T flo=(*flow)[e]; |
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| 430 | |
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| 431 | if ( flo >= exc ) { //A nonsaturating push. |
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| 432 | |
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| 433 | flow->set(e, flo-exc); |
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| 434 | excess.set(v, excess[v]+exc); |
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| 435 | exc=0; |
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| 436 | break; |
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| 437 | } else { //A saturating push. |
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| 438 | |
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| 439 | excess.set(v, excess[v]+flo); |
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| 440 | exc-=flo; |
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| 441 | flow->set(e,0); |
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| 442 | } |
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| 443 | } else if ( newlevel > level[v] ) newlevel = level[v]; |
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| 444 | } //for in edges vw |
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| 445 | |
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| 446 | } // if w still has excess after the out edge for cycle |
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| 447 | |
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| 448 | excess.set(w, exc); |
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| 449 | |
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| 450 | return newlevel; |
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| 451 | } |
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| 452 | |
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| 453 | |
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| 454 | void preflowPreproc ( flowEnum fe, VecStack& active, |
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| 455 | VecNode& level_list, NNMap& left, NNMap& right ) { |
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| 456 | |
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| 457 | std::queue<Node> bfs_queue; |
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| 458 | |
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| 459 | switch ( fe ) { |
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| 460 | case ZERO_FLOW: |
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| 461 | { |
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| 462 | //Reverse_bfs from t, to find the starting level. |
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| 463 | level.set(t,0); |
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| 464 | bfs_queue.push(t); |
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| 465 | |
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| 466 | while (!bfs_queue.empty()) { |
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| 467 | |
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| 468 | Node v=bfs_queue.front(); |
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| 469 | bfs_queue.pop(); |
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| 470 | int l=level[v]+1; |
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| 471 | |
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| 472 | InEdgeIt e; |
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| 473 | for(G.first(e,v); G.valid(e); G.next(e)) { |
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| 474 | Node w=G.tail(e); |
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| 475 | if ( level[w] == n && w != s ) { |
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| 476 | bfs_queue.push(w); |
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| 477 | Node first=level_list[l]; |
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| 478 | if ( G.valid(first) ) left.set(first,w); |
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| 479 | right.set(w,first); |
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| 480 | level_list[l]=w; |
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| 481 | level.set(w, l); |
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| 482 | } |
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| 483 | } |
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| 484 | } |
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| 485 | |
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| 486 | //the starting flow |
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| 487 | OutEdgeIt e; |
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| 488 | for(G.first(e,s); G.valid(e); G.next(e)) |
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| 489 | { |
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| 490 | T c=(*capacity)[e]; |
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| 491 | if ( c == 0 ) continue; |
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| 492 | Node w=G.head(e); |
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| 493 | if ( level[w] < n ) { |
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| 494 | if ( excess[w] == 0 && w!=t ) active[level[w]].push(w); |
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| 495 | flow->set(e, c); |
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| 496 | excess.set(w, excess[w]+c); |
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| 497 | } |
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| 498 | } |
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| 499 | break; |
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| 500 | } |
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| 501 | |
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| 502 | case GEN_FLOW: |
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| 503 | case PREFLOW: |
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| 504 | { |
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| 505 | //Reverse_bfs from t in the residual graph, |
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| 506 | //to find the starting level. |
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| 507 | level.set(t,0); |
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| 508 | bfs_queue.push(t); |
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| 509 | |
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| 510 | while (!bfs_queue.empty()) { |
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| 511 | |
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| 512 | Node v=bfs_queue.front(); |
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| 513 | bfs_queue.pop(); |
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| 514 | int l=level[v]+1; |
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| 515 | |
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| 516 | InEdgeIt e; |
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| 517 | for(G.first(e,v); G.valid(e); G.next(e)) { |
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| 518 | if ( (*capacity)[e] == (*flow)[e] ) continue; |
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| 519 | Node w=G.tail(e); |
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| 520 | if ( level[w] == n && w != s ) { |
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| 521 | bfs_queue.push(w); |
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| 522 | Node first=level_list[l]; |
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| 523 | if ( G.valid(first) ) left.set(first,w); |
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| 524 | right.set(w,first); |
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| 525 | level_list[l]=w; |
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| 526 | level.set(w, l); |
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| 527 | } |
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| 528 | } |
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| 529 | |
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| 530 | OutEdgeIt f; |
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| 531 | for(G.first(f,v); G.valid(f); G.next(f)) { |
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| 532 | if ( 0 == (*flow)[f] ) continue; |
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| 533 | Node w=G.head(f); |
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| 534 | if ( level[w] == n && w != s ) { |
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| 535 | bfs_queue.push(w); |
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| 536 | Node first=level_list[l]; |
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| 537 | if ( G.valid(first) ) left.set(first,w); |
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| 538 | right.set(w,first); |
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| 539 | level_list[l]=w; |
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| 540 | level.set(w, l); |
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| 541 | } |
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| 542 | } |
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| 543 | } |
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| 544 | |
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| 545 | |
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| 546 | //the starting flow |
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| 547 | OutEdgeIt e; |
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| 548 | for(G.first(e,s); G.valid(e); G.next(e)) |
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| 549 | { |
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| 550 | T rem=(*capacity)[e]-(*flow)[e]; |
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| 551 | if ( rem == 0 ) continue; |
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| 552 | Node w=G.head(e); |
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| 553 | if ( level[w] < n ) { |
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| 554 | if ( excess[w] == 0 && w!=t ) active[level[w]].push(w); |
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| 555 | flow->set(e, (*capacity)[e]); |
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| 556 | excess.set(w, excess[w]+rem); |
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| 557 | } |
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| 558 | } |
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| 559 | |
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| 560 | InEdgeIt f; |
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| 561 | for(G.first(f,s); G.valid(f); G.next(f)) |
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| 562 | { |
|---|
| 563 | if ( (*flow)[f] == 0 ) continue; |
|---|
| 564 | Node w=G.tail(f); |
|---|
| 565 | if ( level[w] < n ) { |
|---|
| 566 | if ( excess[w] == 0 && w!=t ) active[level[w]].push(w); |
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| 567 | excess.set(w, excess[w]+(*flow)[f]); |
|---|
| 568 | flow->set(f, 0); |
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| 569 | } |
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| 570 | } |
|---|
| 571 | break; |
|---|
| 572 | } //case PREFLOW |
|---|
| 573 | } |
|---|
| 574 | } //preflowPreproc |
|---|
| 575 | |
|---|
| 576 | |
|---|
| 577 | |
|---|
| 578 | void relabel( const Node w, int newlevel, VecStack& active, |
|---|
| 579 | VecNode& level_list, NNMap& left, |
|---|
| 580 | NNMap& right, int& b, int& k, const bool what_heur ) { |
|---|
| 581 | |
|---|
| 582 | T lev=level[w]; |
|---|
| 583 | |
|---|
| 584 | Node right_n=right[w]; |
|---|
| 585 | Node left_n=left[w]; |
|---|
| 586 | |
|---|
| 587 | //unlacing starts |
|---|
| 588 | if ( G.valid(right_n) ) { |
|---|
| 589 | if ( G.valid(left_n) ) { |
|---|
| 590 | right.set(left_n, right_n); |
|---|
| 591 | left.set(right_n, left_n); |
|---|
| 592 | } else { |
|---|
| 593 | level_list[lev]=right_n; |
|---|
| 594 | left.set(right_n, INVALID); |
|---|
| 595 | } |
|---|
| 596 | } else { |
|---|
| 597 | if ( G.valid(left_n) ) { |
|---|
| 598 | right.set(left_n, INVALID); |
|---|
| 599 | } else { |
|---|
| 600 | level_list[lev]=INVALID; |
|---|
| 601 | } |
|---|
| 602 | } |
|---|
| 603 | //unlacing ends |
|---|
| 604 | |
|---|
| 605 | if ( !G.valid(level_list[lev]) ) { |
|---|
| 606 | |
|---|
| 607 | //gapping starts |
|---|
| 608 | for (int i=lev; i!=k ; ) { |
|---|
| 609 | Node v=level_list[++i]; |
|---|
| 610 | while ( G.valid(v) ) { |
|---|
| 611 | level.set(v,n); |
|---|
| 612 | v=right[v]; |
|---|
| 613 | } |
|---|
| 614 | level_list[i]=INVALID; |
|---|
| 615 | if ( !what_heur ) { |
|---|
| 616 | while ( !active[i].empty() ) { |
|---|
| 617 | active[i].pop(); //FIXME: ezt szebben kene |
|---|
| 618 | } |
|---|
| 619 | } |
|---|
| 620 | } |
|---|
| 621 | |
|---|
| 622 | level.set(w,n); |
|---|
| 623 | b=lev-1; |
|---|
| 624 | k=b; |
|---|
| 625 | //gapping ends |
|---|
| 626 | |
|---|
| 627 | } else { |
|---|
| 628 | |
|---|
| 629 | if ( newlevel == n ) level.set(w,n); |
|---|
| 630 | else { |
|---|
| 631 | level.set(w,++newlevel); |
|---|
| 632 | active[newlevel].push(w); |
|---|
| 633 | if ( what_heur ) b=newlevel; |
|---|
| 634 | if ( k < newlevel ) ++k; //now k=newlevel |
|---|
| 635 | Node first=level_list[newlevel]; |
|---|
| 636 | if ( G.valid(first) ) left.set(first,w); |
|---|
| 637 | right.set(w,first); |
|---|
| 638 | left.set(w,INVALID); |
|---|
| 639 | level_list[newlevel]=w; |
|---|
| 640 | } |
|---|
| 641 | } |
|---|
| 642 | |
|---|
| 643 | } //relabel |
|---|
| 644 | |
|---|
| 645 | |
|---|
| 646 | }; |
|---|
| 647 | |
|---|
| 648 | } //namespace hugo |
|---|
| 649 | |
|---|
| 650 | #endif //HUGO_PREFLOW_H |
|---|
| 651 | |
|---|
| 652 | |
|---|
| 653 | |
|---|
| 654 | |
|---|