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jacint@47
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/*
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jacint@47
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preflow_push_hl.hh
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jacint@47
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by jacint. 
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jacint@47
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Runs the highest label variant of the preflow push algorithm with 
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running time O(n^2\sqrt(m)). 
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Member functions:
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void run() : runs the algorithm
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jacint@47
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 The following functions should be used after run() was already run.
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T maxflow() : returns the value of a maximum flow
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T flowonedge(edge_iterator e) : for a fixed maximum flow x it returns x(e) 
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edge_property_vector<graph_type, T> allflow() : returns the fixed maximum flow x
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node_property_vector<graph_type, bool> mincut() : returns a 
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     characteristic vector of a minimum cut. (An empty level 
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     in the algorithm gives a minimum cut.)
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*/
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#ifndef PREFLOW_PUSH_HL_HH
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#define PREFLOW_PUSH_HL_HH
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#include <algorithm>
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#include <vector>
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#include <stack>
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#include <marci_graph_traits.hh>
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#include <marci_property_vector.hh>
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#include <reverse_bfs.hh>
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namespace marci {
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  template <typename graph_type, typename T>
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  class preflow_push_hl {
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    typedef typename graph_traits<graph_type>::node_iterator node_iterator;
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    typedef typename graph_traits<graph_type>::edge_iterator edge_iterator;
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    typedef typename graph_traits<graph_type>::each_node_iterator each_node_iterator;
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    typedef typename graph_traits<graph_type>::out_edge_iterator out_edge_iterator;
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    typedef typename graph_traits<graph_type>::in_edge_iterator in_edge_iterator;
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    typedef typename graph_traits<graph_type>::each_edge_iterator each_edge_iterator;
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jacint@47
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    graph_type& G;
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    node_iterator s;
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    node_iterator t;
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    edge_property_vector<graph_type, T> flow;
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    edge_property_vector<graph_type, T>& capacity; 
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    T value;
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    node_property_vector<graph_type, bool> mincutvector;
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jacint@47
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  public:
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    preflow_push_hl(graph_type& _G, node_iterator _s, node_iterator _t, edge_property_vector<graph_type, T>& _capacity) : G(_G), s(_s), t(_t), flow(_G, 0), capacity(_capacity), mincutvector(_G, true) { }
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jacint@47
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    /*
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      The run() function runs the highest label preflow-push, 
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      running time: O(n^2\sqrt(m))
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jacint@47
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    */
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    void run() {
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      node_property_vector<graph_type, int> level(G);         //level of node
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      node_property_vector<graph_type, T> excess(G);          //excess of node
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      int n=number_of(G.first_node());                        //number of nodes 
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      int b=n; 
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      /*b is a bound on the highest level of an active node. In the beginning it is at most n-2.*/
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jacint@47
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      std::vector<std::stack<node_iterator> > stack(2*n-1);    //Stack of the active nodes in level i.
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      /*Reverse_bfs from t, to find the starting level.*/
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      reverse_bfs<list_graph> bfs(G, t);
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      bfs.run();
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      for(each_node_iterator v=G.first_node(); v.valid(); ++v) {
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	level.put(v, bfs.dist(v)); 
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	//std::cout << "the level of " << v << " is " << bfs.dist(v);
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      }
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      /*The level of s is fixed to n*/ 
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      level.put(s,n);
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      /* Starting flow. It is everywhere 0 at the moment. */
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      for(out_edge_iterator i=G.first_out_edge(s); i.valid(); ++i) 
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	{
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	  node_iterator w=G.head(i);
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	  flow.put(i, capacity.get(i)); 
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	  stack[bfs.dist(w)].push(w); 
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	  excess.put(w, capacity.get(i));
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	}
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jacint@47
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      /* 
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jacint@47
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	 End of preprocessing 
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      */
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      /*
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	Push/relabel on the highest level active nodes.
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      */
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jacint@47
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   118  | 
	
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      /*While there exists active node.*/
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jacint@47
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   120  | 
      while (b) { 
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	/*We decrease the bound if there is no active node of level b.*/
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	if (stack[b].empty()) {
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jacint@47
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	  --b;
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	} else {
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	  node_iterator w=stack[b].top();    //w is the highest label active node.
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	  stack[b].pop();                    //We delete w from the stack.
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   129  | 
	
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	  int newlevel=2*n-2;                   //In newlevel we maintain the next level of w.
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jacint@47
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   131  | 
	
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	  for(out_edge_iterator e=G.first_out_edge(w); e.valid(); ++e) {
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	    node_iterator v=G.head(e);
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jacint@47
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	    /*e is the edge wv.*/
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jacint@47
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jacint@47
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	    if (flow.get(e)<capacity.get(e)) {              
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	      /*e is an edge of the residual graph */
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	      if(level.get(w)==level.get(v)+1) {      
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		/*Push is allowed now*/
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jacint@47
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		if (capacity.get(e)-flow.get(e) > excess.get(w)) {       
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		  /*A nonsaturating push.*/
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jacint@47
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   144  | 
		  
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jacint@47
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		  if (excess.get(v)==0 && v != s) stack[level.get(v)].push(v); 
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jacint@47
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   146  | 
		  /*v becomes active.*/
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jacint@47
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   147  | 
		  
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   148  | 
		  flow.put(e, flow.get(e)+excess.get(w));
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		  excess.put(v, excess.get(v)+excess.get(w));
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		  excess.put(w,0);
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   151  | 
		  //std::cout << w << " " << v <<" elore elen nonsat pump "  << std::endl;
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   152  | 
		  break; 
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jacint@47
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   153  | 
		} else { 
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jacint@47
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		  /*A saturating push.*/
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jacint@47
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   155  | 
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jacint@47
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   156  | 
		  if (excess.get(v)==0 && v != s) stack[level.get(v)].push(v); 
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jacint@47
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   157  | 
		  /*v becomes active.*/
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jacint@47
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   158  | 
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jacint@47
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   159  | 
		  excess.put(v, excess.get(v)+capacity.get(e)-flow.get(e));
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jacint@47
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   160  | 
		  excess.put(w, excess.get(w)-capacity.get(e)+flow.get(e));
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jacint@47
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   161  | 
		  flow.put(e, capacity.get(e));
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jacint@47
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   162  | 
		  //std::cout << w<<" " <<v<<" elore elen sat pump "   << std::endl;
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jacint@47
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   163  | 
		  if (excess.get(w)==0) break;
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jacint@47
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   164  | 
		  /*If w is not active any more, then we go on to the next node.*/
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jacint@47
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   165  | 
		  
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jacint@47
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   166  | 
		} // if (capacity.get(e)-flow.get(e) > excess.get(w))
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jacint@47
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   167  | 
	      } // if(level.get(w)==level.get(v)+1)
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jacint@47
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   168  | 
	    
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jacint@47
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   169  | 
	      else {newlevel = newlevel < level.get(v) ? newlevel : level.get(v);}
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jacint@47
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   170  | 
	    
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jacint@47
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   171  | 
	    } //if (flow.get(e)<capacity.get(e))
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jacint@47
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   172  | 
	 
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jacint@47
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   173  | 
	  } //for(out_edge_iterator e=G.first_out_edge(w); e.valid(); ++e) 
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jacint@47
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   174  | 
	  
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jacint@47
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   175  | 
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jacint@47
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   176  | 
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jacint@47
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   177  | 
	  for(in_edge_iterator e=G.first_in_edge(w); e.valid(); ++e) {
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jacint@47
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   178  | 
	    node_iterator v=G.tail(e);
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jacint@47
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   179  | 
	    /*e is the edge vw.*/
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jacint@47
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   180  | 
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jacint@47
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   181  | 
	    if (excess.get(w)==0) break;
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jacint@47
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   182  | 
	    /*It may happen, that w became inactive in the first for cycle.*/		
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jacint@47
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   183  | 
	    if(flow.get(e)>0) {             
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jacint@47
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   184  | 
	      /*e is an edge of the residual graph */
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jacint@47
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   185  | 
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jacint@47
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   186  | 
	      if(level.get(w)==level.get(v)+1) {  
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jacint@47
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   187  | 
		/*Push is allowed now*/
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jacint@47
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   188  | 
		
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jacint@47
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   189  | 
		if (flow.get(e) > excess.get(w)) { 
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jacint@47
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   190  | 
		  /*A nonsaturating push.*/
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jacint@47
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   191  | 
		  
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jacint@47
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   192  | 
		  if (excess.get(v)==0 && v != s) stack[level.get(v)].push(v); 
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jacint@47
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   193  | 
		  /*v becomes active.*/
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jacint@47
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   194  | 
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jacint@47
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   195  | 
		  flow.put(e, flow.get(e)-excess.get(w));
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jacint@47
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   196  | 
		  excess.put(v, excess.get(v)+excess.get(w));
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   197  | 
		  excess.put(w,0);
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jacint@47
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   198  | 
		  //std::cout << v << " " << w << " vissza elen nonsat pump "     << std::endl;
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jacint@47
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   199  | 
		  break; 
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jacint@47
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   200  | 
		} else {                                               
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jacint@47
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   201  | 
		  /*A saturating push.*/
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jacint@47
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   202  | 
		  
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jacint@47
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   203  | 
		  if (excess.get(v)==0 && v != s) stack[level.get(v)].push(v); 
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jacint@47
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   204  | 
		  /*v becomes active.*/
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jacint@47
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   205  | 
		  
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jacint@47
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   206  | 
		  excess.put(v, excess.get(v)+flow.get(e));
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jacint@47
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   207  | 
		  excess.put(w, excess.get(w)-flow.get(e));
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jacint@47
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   208  | 
		  flow.put(e,0);
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jacint@47
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   209  | 
		  //std::cout << v <<" " << w << " vissza elen sat pump "     << std::endl;
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jacint@47
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   210  | 
		  if (excess.get(w)==0) { break;}
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jacint@47
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   211  | 
		} //if (flow.get(e) > excess.get(v)) 
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jacint@47
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   212  | 
	      } //if(level.get(w)==level.get(v)+1)
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jacint@47
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   213  | 
	      
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jacint@47
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   214  | 
	      else {newlevel = newlevel < level.get(v) ? newlevel : level.get(v);}
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jacint@47
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   215  | 
	      
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jacint@47
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   216  | 
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jacint@47
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   217  | 
	    } //if (flow.get(e)>0)
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jacint@47
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   218  | 
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jacint@47
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   219  | 
	  } //for
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jacint@47
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   220  | 
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jacint@47
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   221  | 
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jacint@47
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   222  | 
	  if (excess.get(w)>0) {
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jacint@47
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   223  | 
	    level.put(w,++newlevel);
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jacint@47
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   224  | 
	    stack[newlevel].push(w);
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jacint@47
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   225  | 
	    b=newlevel;
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jacint@47
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   226  | 
	    //std::cout << "The new level of " << w << " is "<< newlevel <<std::endl; 
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jacint@47
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   227  | 
	  }
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jacint@47
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   228  | 
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jacint@47
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   229  | 
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jacint@47
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   230  | 
	} //else
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jacint@47
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   231  | 
       
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jacint@47
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   232  | 
      } //while(b)
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jacint@47
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   233  | 
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jacint@47
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   234  | 
      value = excess.get(t);
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jacint@47
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   235  | 
      /*Max flow value.*/
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jacint@47
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   236  | 
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jacint@47
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   237  | 
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jacint@47
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   238  | 
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jacint@47
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   239  | 
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jacint@47
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   240  | 
    } //void run()
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jacint@47
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   241  | 
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jacint@47
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   242  | 
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jacint@47
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   243  | 
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jacint@47
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   244  | 
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jacint@47
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   245  | 
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jacint@47
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   246  | 
    /*
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jacint@47
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   247  | 
      Returns the maximum value of a flow.
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jacint@47
 | 
   248  | 
     */
  | 
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jacint@47
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   249  | 
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jacint@47
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   250  | 
    T maxflow() {
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jacint@47
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   251  | 
      return value;
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| 
jacint@47
 | 
   252  | 
    }
  | 
| 
jacint@47
 | 
   253  | 
  | 
| 
jacint@47
 | 
   254  | 
  | 
| 
jacint@47
 | 
   255  | 
  | 
| 
jacint@47
 | 
   256  | 
    /*
  | 
| 
jacint@47
 | 
   257  | 
      For the maximum flow x found by the algorithm, it returns the flow value on edge e, i.e. x(e). 
  | 
| 
jacint@47
 | 
   258  | 
    */
  | 
| 
jacint@47
 | 
   259  | 
  | 
| 
jacint@47
 | 
   260  | 
    T flowonedge(edge_iterator e) {
 | 
| 
jacint@47
 | 
   261  | 
      return flow.get(e);
  | 
| 
jacint@47
 | 
   262  | 
    }
  | 
| 
jacint@47
 | 
   263  | 
  | 
| 
jacint@47
 | 
   264  | 
  | 
| 
jacint@47
 | 
   265  | 
  | 
| 
jacint@47
 | 
   266  | 
    /*
  | 
| 
jacint@47
 | 
   267  | 
      Returns the maximum flow x found by the algorithm.
  | 
| 
jacint@47
 | 
   268  | 
    */
  | 
| 
jacint@47
 | 
   269  | 
  | 
| 
jacint@47
 | 
   270  | 
    edge_property_vector<graph_type, T> allflow() {
 | 
| 
jacint@47
 | 
   271  | 
      return flow;
  | 
| 
jacint@47
 | 
   272  | 
    }
  | 
| 
jacint@47
 | 
   273  | 
  | 
| 
jacint@47
 | 
   274  | 
  | 
| 
jacint@47
 | 
   275  | 
  | 
| 
jacint@47
 | 
   276  | 
    /*
  | 
| 
jacint@47
 | 
   277  | 
      Returns a minimum cut by using a reverse bfs from t in the residual graph.
  | 
| 
jacint@47
 | 
   278  | 
    */
  | 
| 
jacint@47
 | 
   279  | 
    
  | 
| 
jacint@47
 | 
   280  | 
    node_property_vector<graph_type, bool> mincut() {
 | 
| 
jacint@47
 | 
   281  | 
    
  | 
| 
jacint@47
 | 
   282  | 
      std::queue<node_iterator> queue;
  | 
| 
jacint@47
 | 
   283  | 
      
  | 
| 
jacint@47
 | 
   284  | 
      mincutvector.put(t,false);      
  | 
| 
jacint@47
 | 
   285  | 
      queue.push(t);
  | 
| 
jacint@47
 | 
   286  | 
  | 
| 
jacint@47
 | 
   287  | 
      while (!queue.empty()) {
 | 
| 
jacint@47
 | 
   288  | 
        node_iterator w=queue.front();
  | 
| 
jacint@47
 | 
   289  | 
	queue.pop();
  | 
| 
jacint@47
 | 
   290  | 
  | 
| 
jacint@47
 | 
   291  | 
	for(in_edge_iterator e=G.first_in_edge(w) ; e.valid(); ++e) {
 | 
| 
jacint@47
 | 
   292  | 
	  node_iterator v=G.tail(e);
  | 
| 
jacint@47
 | 
   293  | 
	  if (mincutvector.get(v) && flow.get(e) < capacity.get(e) ) {
 | 
| 
jacint@47
 | 
   294  | 
	    queue.push(v);
  | 
| 
jacint@47
 | 
   295  | 
	    mincutvector.put(v, false);
  | 
| 
jacint@47
 | 
   296  | 
	  }
  | 
| 
jacint@47
 | 
   297  | 
	} // for
  | 
| 
jacint@47
 | 
   298  | 
  | 
| 
jacint@47
 | 
   299  | 
	for(out_edge_iterator e=G.first_out_edge(w) ; e.valid(); ++e) {
 | 
| 
jacint@47
 | 
   300  | 
	  node_iterator v=G.head(e);
  | 
| 
jacint@47
 | 
   301  | 
	  if (mincutvector.get(v) && flow.get(e) > 0 ) {
 | 
| 
jacint@47
 | 
   302  | 
	    queue.push(v);
  | 
| 
jacint@47
 | 
   303  | 
	    mincutvector.put(v, false);
  | 
| 
jacint@47
 | 
   304  | 
	  }
  | 
| 
jacint@47
 | 
   305  | 
	} // for
  | 
| 
jacint@47
 | 
   306  | 
  | 
| 
jacint@47
 | 
   307  | 
      }
  | 
| 
jacint@47
 | 
   308  | 
  | 
| 
jacint@47
 | 
   309  | 
      return mincutvector;
  | 
| 
jacint@47
 | 
   310  | 
    
  | 
| 
jacint@47
 | 
   311  | 
    }
  | 
| 
jacint@47
 | 
   312  | 
  | 
| 
jacint@47
 | 
   313  | 
  | 
| 
jacint@47
 | 
   314  | 
  };
  | 
| 
jacint@47
 | 
   315  | 
}//namespace marci
  | 
| 
jacint@47
 | 
   316  | 
#endif 
  | 
| 
jacint@47
 | 
   317  | 
  | 
| 
jacint@47
 | 
   318  | 
  | 
| 
jacint@47
 | 
   319  | 
  | 
| 
jacint@47
 | 
   320  | 
  |