| 1 | // -*- C++ -*- | 
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| 2 | #ifndef HUGO_DFS_H | 
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| 3 | #define HUGO_DFS_H | 
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| 4 |  | 
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| 5 | ///\ingroup flowalgs | 
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| 6 | ///\file | 
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| 7 | ///\brief %DFS algorithm. | 
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| 8 | /// | 
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| 9 | ///\todo Revise Manual. | 
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| 10 |  | 
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| 11 | #include <hugo/bin_heap.h> | 
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| 12 | #include <hugo/invalid.h> | 
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| 13 |  | 
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| 14 | namespace hugo { | 
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| 15 |  | 
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| 16 | /// \addtogroup flowalgs | 
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| 17 | /// @{ | 
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| 18 |  | 
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| 19 |   ///%DFS algorithm class. | 
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| 20 |  | 
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| 21 |   ///This class provides an efficient implementation of %DFS algorithm. | 
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| 22 |   /// | 
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| 23 |   ///\param GR The graph type the algorithm runs on. | 
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| 24 |   /// | 
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| 25 |   ///\author Alpar Juttner | 
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| 26 |  | 
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| 27 | #ifdef DOXYGEN | 
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| 28 |   template <typename GR> | 
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| 29 | #else | 
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| 30 |   template <typename GR> | 
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| 31 | #endif | 
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| 32 |   class Dfs{ | 
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| 33 |   public: | 
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| 34 |     ///The type of the underlying graph. | 
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| 35 |     typedef GR Graph; | 
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| 36 |     /// . | 
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| 37 |     typedef typename Graph::Node Node; | 
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| 38 |     /// . | 
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| 39 |     typedef typename Graph::NodeIt NodeIt; | 
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| 40 |     /// . | 
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| 41 |     typedef typename Graph::Edge Edge; | 
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| 42 |     /// . | 
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| 43 |     typedef typename Graph::OutEdgeIt OutEdgeIt; | 
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| 44 |      | 
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| 45 |     ///\brief The type of the map that stores the last | 
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| 46 |     ///edges of the paths on the %DFS tree. | 
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| 47 |     typedef typename Graph::template NodeMap<Edge> PredMap; | 
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| 48 |     ///\brief The type of the map that stores the last but one | 
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| 49 |     ///nodes of the paths on the %DFS tree. | 
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| 50 |     typedef typename Graph::template NodeMap<Node> PredNodeMap; | 
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| 51 |     ///The type of the map that stores the dists of the nodes on the %DFS tree. | 
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| 52 |     typedef typename Graph::template NodeMap<int> DistMap; | 
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| 53 |  | 
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| 54 |   private: | 
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| 55 |     /// Pointer to the underlying graph. | 
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| 56 |     const Graph *G; | 
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| 57 |     ///Pointer to the map of predecessors edges. | 
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| 58 |     PredMap *predecessor; | 
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| 59 |     ///Indicates if \ref predecessor is locally allocated (\c true) or not. | 
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| 60 |     bool local_predecessor; | 
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| 61 |     ///Pointer to the map of predecessors nodes. | 
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| 62 |     PredNodeMap *pred_node; | 
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| 63 |     ///Indicates if \ref pred_node is locally allocated (\c true) or not. | 
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| 64 |     bool local_pred_node; | 
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| 65 |     ///Pointer to the map of distances. | 
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| 66 |     DistMap *distance; | 
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| 67 |     ///Indicates if \ref distance is locally allocated (\c true) or not. | 
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| 68 |     bool local_distance; | 
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| 69 |  | 
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| 70 |     ///The source node of the last execution. | 
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| 71 |     Node source; | 
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| 72 |  | 
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| 73 |  | 
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| 74 |     ///Initializes the maps. | 
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| 75 |     void init_maps()  | 
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| 76 |     { | 
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| 77 |       if(!predecessor) { | 
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| 78 |         local_predecessor = true; | 
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| 79 |         predecessor = new PredMap(*G); | 
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| 80 |       } | 
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| 81 |       if(!pred_node) { | 
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| 82 |         local_pred_node = true; | 
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| 83 |         pred_node = new PredNodeMap(*G); | 
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| 84 |       } | 
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| 85 |       if(!distance) { | 
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| 86 |         local_distance = true; | 
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| 87 |         distance = new DistMap(*G); | 
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| 88 |       } | 
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| 89 |     } | 
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| 90 |      | 
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| 91 |   public :     | 
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| 92 |     ///Constructor. | 
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| 93 |      | 
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| 94 |     ///\param _G the graph the algorithm will run on. | 
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| 95 |     Dfs(const Graph& _G) : | 
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| 96 |       G(&_G), | 
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| 97 |       predecessor(NULL), local_predecessor(false), | 
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| 98 |       pred_node(NULL), local_pred_node(false), | 
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| 99 |       distance(NULL), local_distance(false) | 
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| 100 |     { } | 
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| 101 |      | 
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| 102 |     ///Destructor. | 
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| 103 |     ~Dfs()  | 
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| 104 |     { | 
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| 105 |       if(local_predecessor) delete predecessor; | 
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| 106 |       if(local_pred_node) delete pred_node; | 
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| 107 |       if(local_distance) delete distance; | 
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| 108 |     } | 
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| 109 |  | 
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| 110 |     ///Sets the map storing the predecessor edges. | 
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| 111 |  | 
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| 112 |     ///Sets the map storing the predecessor edges. | 
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| 113 |     ///If you don't use this function before calling \ref run(), | 
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| 114 |     ///it will allocate one. The destuctor deallocates this | 
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| 115 |     ///automatically allocated map, of course. | 
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| 116 |     ///\return <tt> (*this) </tt> | 
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| 117 |     Dfs &setPredMap(PredMap &m)  | 
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| 118 |     { | 
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| 119 |       if(local_predecessor) { | 
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| 120 |         delete predecessor; | 
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| 121 |         local_predecessor=false; | 
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| 122 |       } | 
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| 123 |       predecessor = &m; | 
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| 124 |       return *this; | 
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| 125 |     } | 
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| 126 |  | 
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| 127 |     ///Sets the map storing the predecessor nodes. | 
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| 128 |  | 
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| 129 |     ///Sets the map storing the predecessor nodes. | 
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| 130 |     ///If you don't use this function before calling \ref run(), | 
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| 131 |     ///it will allocate one. The destuctor deallocates this | 
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| 132 |     ///automatically allocated map, of course. | 
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| 133 |     ///\return <tt> (*this) </tt> | 
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| 134 |     Dfs &setPredNodeMap(PredNodeMap &m)  | 
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| 135 |     { | 
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| 136 |       if(local_pred_node) { | 
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| 137 |         delete pred_node; | 
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| 138 |         local_pred_node=false; | 
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| 139 |       } | 
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| 140 |       pred_node = &m; | 
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| 141 |       return *this; | 
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| 142 |     } | 
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| 143 |  | 
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| 144 |     ///Sets the map storing the distances calculated by the algorithm. | 
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| 145 |  | 
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| 146 |     ///Sets the map storing the distances calculated by the algorithm. | 
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| 147 |     ///If you don't use this function before calling \ref run(), | 
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| 148 |     ///it will allocate one. The destuctor deallocates this | 
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| 149 |     ///automatically allocated map, of course. | 
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| 150 |     ///\return <tt> (*this) </tt> | 
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| 151 |     Dfs &setDistMap(DistMap &m)  | 
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| 152 |     { | 
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| 153 |       if(local_distance) { | 
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| 154 |         delete distance; | 
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| 155 |         local_distance=false; | 
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| 156 |       } | 
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| 157 |       distance = &m; | 
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| 158 |       return *this; | 
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| 159 |     } | 
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| 160 |      | 
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| 161 |   ///Runs %DFS algorithm from node \c s. | 
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| 162 |  | 
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| 163 |   ///This method runs the %DFS algorithm from a root node \c s | 
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| 164 |   ///in order to | 
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| 165 |   ///compute  | 
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| 166 |   ///- a %DFS tree and | 
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| 167 |   ///- the distance of each node from the root on this tree. | 
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| 168 |   | 
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| 169 |     void run(Node s) { | 
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| 170 |        | 
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| 171 |       init_maps(); | 
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| 172 |        | 
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| 173 |       source = s; | 
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| 174 |        | 
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| 175 |       for ( NodeIt u(*G) ; u!=INVALID ; ++u ) { | 
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| 176 |         predecessor->set(u,INVALID); | 
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| 177 |         pred_node->set(u,INVALID); | 
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| 178 |       } | 
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| 179 |        | 
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| 180 |       int N=G->nodeNum(); | 
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| 181 |       std::vector<typename Graph::OutEdgeIt> Q(N); | 
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| 182 |  | 
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| 183 |       int Qh=0; | 
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| 184 |        | 
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| 185 |       G->first(Q[Qh],s); | 
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| 186 |       distance->set(s, 0); | 
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| 187 |  | 
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| 188 |       Node n=s; | 
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| 189 |       Node m; | 
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| 190 |       OutEdgeIt e; | 
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| 191 |       do { | 
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| 192 |         if((e=Q[Qh])!=INVALID) | 
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| 193 |           if((m=G->head(e))!=s && (*predecessor)[m=G->head(e)]==INVALID) { | 
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| 194 |             predecessor->set(m,e); | 
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| 195 |             pred_node->set(m,n); | 
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| 196 |             G->first(Q[++Qh],m); | 
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| 197 |             distance->set(m,Qh); | 
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| 198 |             n=m; | 
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| 199 |           } | 
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| 200 |           else ++Q[Qh]; | 
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| 201 |         else if(--Qh>=0) n=G->tail(Q[Qh]); | 
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| 202 |       } while(Qh>=0); | 
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| 203 |     } | 
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| 204 |      | 
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| 205 |     ///The distance of a node from the root on the %DFS tree. | 
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| 206 |  | 
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| 207 |     ///Returns the distance of a node from the root on the %DFS tree. | 
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| 208 |     ///\pre \ref run() must be called before using this function. | 
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| 209 |     ///\warning If node \c v in unreachable from the root the return value | 
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| 210 |     ///of this funcion is undefined. | 
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| 211 |     int dist(Node v) const { return (*distance)[v]; } | 
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| 212 |  | 
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| 213 |     ///Returns the 'previous edge' of the %DFS path tree. | 
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| 214 |  | 
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| 215 |     ///For a node \c v it returns the last edge of the path on the %DFS tree | 
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| 216 |     ///from the root to \c | 
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| 217 |     ///v. It is \ref INVALID | 
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| 218 |     ///if \c v is unreachable from the root or if \c v=s. The | 
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| 219 |     ///%DFS tree used here is equal to the %DFS tree used in | 
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| 220 |     ///\ref predNode(Node v).  \pre \ref run() must be called before using | 
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| 221 |     ///this function. | 
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| 222 |     Edge pred(Node v) const { return (*predecessor)[v]; } | 
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| 223 |  | 
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| 224 |     ///Returns the 'previous node' of the %DFS tree. | 
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| 225 |  | 
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| 226 |     ///For a node \c v it returns the 'previous node' on the %DFS tree, | 
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| 227 |     ///i.e. it returns the last but one node of the path from the | 
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| 228 |     ///root to \c /v on the %DFS tree. | 
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| 229 |     ///It is INVALID if \c v is unreachable from the root or if | 
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| 230 |     ///\c v=s. | 
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| 231 |     ///\pre \ref run() must be called before | 
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| 232 |     ///using this function. | 
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| 233 |     Node predNode(Node v) const { return (*pred_node)[v]; } | 
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| 234 |      | 
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| 235 |     ///Returns a reference to the NodeMap of distances on the %DFS tree. | 
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| 236 |      | 
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| 237 |     ///Returns a reference to the NodeMap of distances on the %DFS tree. | 
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| 238 |     ///\pre \ref run() must | 
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| 239 |     ///be called before using this function. | 
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| 240 |     const DistMap &distMap() const { return *distance;} | 
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| 241 |   | 
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| 242 |     ///Returns a reference to the %DFS tree map. | 
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| 243 |  | 
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| 244 |     ///Returns a reference to the NodeMap of the edges of the | 
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| 245 |     ///%DFS tree. | 
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| 246 |     ///\pre \ref run() must be called before using this function. | 
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| 247 |     const PredMap &predMap() const { return *predecessor;} | 
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| 248 |   | 
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| 249 |     ///Returns a reference to the map of last but one nodes of the %DFS tree. | 
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| 250 |  | 
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| 251 |     ///Returns a reference to the NodeMap of the last but one nodes of the paths | 
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| 252 |     ///on the | 
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| 253 |     ///%DFS tree. | 
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| 254 |     ///\pre \ref run() must be called before using this function. | 
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| 255 |     const PredNodeMap &predNodeMap() const { return *pred_node;} | 
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| 256 |  | 
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| 257 |     ///Checks if a node is reachable from the root. | 
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| 258 |  | 
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| 259 |     ///Returns \c true if \c v is reachable from the root. | 
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| 260 |     ///\note The root node is reported to be reached! | 
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| 261 |     /// | 
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| 262 |     ///\pre \ref run() must be called before using this function. | 
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| 263 |     /// | 
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| 264 |     bool reached(Node v) { return v==source || (*predecessor)[v]!=INVALID; } | 
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| 265 |      | 
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| 266 |   }; | 
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| 267 |    | 
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| 268 | /// @} | 
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| 269 |    | 
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| 270 | } //END OF NAMESPACE HUGO | 
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| 271 |  | 
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| 272 | #endif | 
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| 273 |  | 
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| 274 |  | 
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