| [395] | 1 | // -*- mode:C++ -*- | 
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|  | 2 |  | 
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| [405] | 3 | #ifndef HUGO_LIST_GRAPH_H | 
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|  | 4 | #define HUGO_LIST_GRAPH_H | 
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| [395] | 5 |  | 
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| [491] | 6 | ///\ingroup graphs | 
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| [395] | 7 | ///\file | 
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| [405] | 8 | ///\brief ListGraph, SymListGraph, NodeSet and EdgeSet classes. | 
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| [395] | 9 |  | 
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|  | 10 | #include <vector> | 
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| [782] | 11 | #include <climits> | 
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| [395] | 12 |  | 
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| [542] | 13 | #include <hugo/invalid.h> | 
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| [395] | 14 |  | 
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| [782] | 15 | #include <hugo/map_registry.h> | 
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| [897] | 16 | #include <hugo/array_map.h> | 
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| [782] | 17 |  | 
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| [822] | 18 | #include <hugo/sym_map.h> | 
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| [782] | 19 |  | 
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|  | 20 | #include <hugo/map_defines.h> | 
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|  | 21 |  | 
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|  | 22 |  | 
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| [395] | 23 | namespace hugo { | 
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|  | 24 |  | 
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| [406] | 25 | /// \addtogroup graphs | 
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|  | 26 | /// @{ | 
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|  | 27 |  | 
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| [401] | 28 | ///A list graph class. | 
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| [395] | 29 |  | 
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| [397] | 30 | ///This is a simple and fast erasable graph implementation. | 
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|  | 31 | /// | 
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| [880] | 32 | ///It conforms to the | 
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|  | 33 | ///\ref skeleton::ErasableGraph "ErasableGraph" concept. | 
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|  | 34 | ///\sa skeleton::ErasableGraph. | 
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| [397] | 35 | class ListGraph { | 
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| [395] | 36 |  | 
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| [397] | 37 | //Nodes are double linked. | 
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|  | 38 | //The free nodes are only single linked using the "next" field. | 
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| [395] | 39 | struct NodeT | 
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|  | 40 | { | 
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| [397] | 41 | int first_in,first_out; | 
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|  | 42 | int prev, next; | 
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| [395] | 43 | }; | 
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| [397] | 44 | //Edges are double linked. | 
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|  | 45 | //The free edges are only single linked using the "next_in" field. | 
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| [395] | 46 | struct EdgeT | 
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|  | 47 | { | 
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| [397] | 48 | int head, tail; | 
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|  | 49 | int prev_in, prev_out; | 
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|  | 50 | int next_in, next_out; | 
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| [395] | 51 | }; | 
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|  | 52 |  | 
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|  | 53 | std::vector<NodeT> nodes; | 
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| [397] | 54 | //The first node | 
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|  | 55 | int first_node; | 
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|  | 56 | //The first free node | 
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|  | 57 | int first_free_node; | 
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| [395] | 58 | std::vector<EdgeT> edges; | 
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| [397] | 59 | //The first free edge | 
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|  | 60 | int first_free_edge; | 
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| [395] | 61 |  | 
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| [782] | 62 | public: | 
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| [395] | 63 |  | 
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| [782] | 64 | typedef ListGraph Graph; | 
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| [397] | 65 |  | 
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| [395] | 66 | class Node; | 
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|  | 67 | class Edge; | 
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|  | 68 |  | 
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|  | 69 |  | 
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|  | 70 | public: | 
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|  | 71 |  | 
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|  | 72 | class NodeIt; | 
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|  | 73 | class EdgeIt; | 
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|  | 74 | class OutEdgeIt; | 
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|  | 75 | class InEdgeIt; | 
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| [782] | 76 |  | 
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| [822] | 77 | /// Creating map registries. | 
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| [782] | 78 | CREATE_MAP_REGISTRIES; | 
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| [822] | 79 | /// Creating node and edge maps. | 
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| [827] | 80 |  | 
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|  | 81 | /// \todo | 
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|  | 82 | /// It apears in the documentation as if it were a function definition. | 
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| [897] | 83 | CREATE_MAPS(ArrayMap); | 
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| [782] | 84 |  | 
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| [395] | 85 | public: | 
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|  | 86 |  | 
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| [782] | 87 | ListGraph() | 
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|  | 88 | : nodes(), first_node(-1), | 
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|  | 89 | first_free_node(-1), edges(), first_free_edge(-1) {} | 
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|  | 90 |  | 
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|  | 91 | ListGraph(const ListGraph &_g) | 
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|  | 92 | : nodes(_g.nodes), first_node(_g.first_node), | 
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|  | 93 | first_free_node(_g.first_free_node), edges(_g.edges), | 
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|  | 94 | first_free_edge(_g.first_free_edge) {} | 
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| [395] | 95 |  | 
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| [813] | 96 | ///Number of nodes. | 
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|  | 97 | int nodeNum() const { return nodes.size(); } | 
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|  | 98 | ///Number of edges. | 
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|  | 99 | int edgeNum() const { return edges.size(); } | 
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| [395] | 100 |  | 
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| [813] | 101 | ///Set the expected maximum number of edges. | 
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| [695] | 102 |  | 
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|  | 103 | ///With this function, it is possible to set the expected number of edges. | 
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|  | 104 | ///The use of this fasten the building of the graph and makes | 
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|  | 105 | ///it possible to avoid the superfluous memory allocation. | 
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|  | 106 | void reserveEdge(int n) { edges.reserve(n); }; | 
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|  | 107 |  | 
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| [813] | 108 | /// Maximum node ID. | 
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|  | 109 |  | 
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|  | 110 | /// Maximum node ID. | 
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|  | 111 | ///\sa id(Node) | 
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|  | 112 | int maxNodeId() const { return nodes.size()-1; } | 
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|  | 113 | /// Maximum edge ID. | 
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|  | 114 |  | 
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|  | 115 | /// Maximum edge ID. | 
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|  | 116 | ///\sa id(Edge) | 
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|  | 117 | int maxEdgeId() const { return edges.size()-1; } | 
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| [395] | 118 |  | 
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|  | 119 | Node tail(Edge e) const { return edges[e.n].tail; } | 
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|  | 120 | Node head(Edge e) const { return edges[e.n].head; } | 
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|  | 121 |  | 
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| [713] | 122 | NodeIt& first(NodeIt& v) const { | 
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| [395] | 123 | v=NodeIt(*this); return v; } | 
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| [713] | 124 | EdgeIt& first(EdgeIt& e) const { | 
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| [395] | 125 | e=EdgeIt(*this); return e; } | 
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| [713] | 126 | OutEdgeIt& first(OutEdgeIt& e, const Node v) const { | 
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| [395] | 127 | e=OutEdgeIt(*this,v); return e; } | 
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| [713] | 128 | InEdgeIt& first(InEdgeIt& e, const Node v) const { | 
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| [395] | 129 | e=InEdgeIt(*this,v); return e; } | 
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|  | 130 |  | 
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| [813] | 131 | /// Node ID. | 
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|  | 132 |  | 
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|  | 133 | /// The ID of a valid Node is a nonnegative integer not greater than | 
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|  | 134 | /// \ref maxNodeId(). The range of the ID's is not surely continuous | 
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|  | 135 | /// and the greatest node ID can be actually less then \ref maxNodeId(). | 
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|  | 136 | /// | 
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|  | 137 | /// The ID of the \ref INVALID node is -1. | 
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|  | 138 | ///\return The ID of the node \c v. | 
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| [713] | 139 | static int id(Node v) { return v.n; } | 
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| [813] | 140 | /// Edge ID. | 
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|  | 141 |  | 
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|  | 142 | /// The ID of a valid Edge is a nonnegative integer not greater than | 
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|  | 143 | /// \ref maxEdgeId(). The range of the ID's is not surely continuous | 
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|  | 144 | /// and the greatest edge ID can be actually less then \ref maxEdgeId(). | 
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|  | 145 | /// | 
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|  | 146 | /// The ID of the \ref INVALID edge is -1. | 
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|  | 147 | ///\return The ID of the edge \c e. | 
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| [713] | 148 | static int id(Edge e) { return e.n; } | 
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| [395] | 149 |  | 
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| [397] | 150 | /// Adds a new node to the graph. | 
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|  | 151 |  | 
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| [813] | 152 | /// \warning It adds the new node to the front of the list. | 
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| [397] | 153 | /// (i.e. the lastly added node becomes the first.) | 
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| [395] | 154 | Node addNode() { | 
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| [397] | 155 | int n; | 
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|  | 156 |  | 
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|  | 157 | if(first_free_node==-1) | 
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|  | 158 | { | 
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|  | 159 | n = nodes.size(); | 
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|  | 160 | nodes.push_back(NodeT()); | 
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|  | 161 | } | 
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|  | 162 | else { | 
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|  | 163 | n = first_free_node; | 
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|  | 164 | first_free_node = nodes[n].next; | 
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|  | 165 | } | 
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|  | 166 |  | 
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|  | 167 | nodes[n].next = first_node; | 
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|  | 168 | if(first_node != -1) nodes[first_node].prev = n; | 
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|  | 169 | first_node = n; | 
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|  | 170 | nodes[n].prev = -1; | 
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|  | 171 |  | 
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|  | 172 | nodes[n].first_in = nodes[n].first_out = -1; | 
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|  | 173 |  | 
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|  | 174 | Node nn; nn.n=n; | 
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| [395] | 175 |  | 
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| [397] | 176 | //Update dynamic maps | 
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| [782] | 177 | node_maps.add(nn); | 
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| [395] | 178 |  | 
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| [397] | 179 | return nn; | 
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| [395] | 180 | } | 
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|  | 181 |  | 
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|  | 182 | Edge addEdge(Node u, Node v) { | 
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| [397] | 183 | int n; | 
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|  | 184 |  | 
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|  | 185 | if(first_free_edge==-1) | 
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|  | 186 | { | 
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|  | 187 | n = edges.size(); | 
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|  | 188 | edges.push_back(EdgeT()); | 
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|  | 189 | } | 
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|  | 190 | else { | 
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|  | 191 | n = first_free_edge; | 
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|  | 192 | first_free_edge = edges[n].next_in; | 
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|  | 193 | } | 
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|  | 194 |  | 
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|  | 195 | edges[n].tail = u.n; edges[n].head = v.n; | 
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| [395] | 196 |  | 
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| [397] | 197 | edges[n].next_out = nodes[u.n].first_out; | 
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|  | 198 | if(nodes[u.n].first_out != -1) edges[nodes[u.n].first_out].prev_out = n; | 
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|  | 199 | edges[n].next_in = nodes[v.n].first_in; | 
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|  | 200 | if(nodes[v.n].first_in != -1) edges[nodes[v.n].first_in].prev_in = n; | 
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|  | 201 | edges[n].prev_in = edges[n].prev_out = -1; | 
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|  | 202 |  | 
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|  | 203 | nodes[u.n].first_out = nodes[v.n].first_in = n; | 
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|  | 204 |  | 
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|  | 205 | Edge e; e.n=n; | 
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|  | 206 |  | 
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|  | 207 | //Update dynamic maps | 
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| [782] | 208 | edge_maps.add(e); | 
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| [395] | 209 |  | 
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|  | 210 | return e; | 
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|  | 211 | } | 
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| [774] | 212 |  | 
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|  | 213 | /// Finds an edge between two nodes. | 
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| [395] | 214 |  | 
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| [774] | 215 | /// Finds an edge from node \c u to node \c v. | 
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|  | 216 | /// | 
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|  | 217 | /// If \c prev is \ref INVALID (this is the default value), then | 
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|  | 218 | /// It finds the first edge from \c u to \c v. Otherwise it looks for | 
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|  | 219 | /// the next edge from \c u to \c v after \c prev. | 
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|  | 220 | /// \return The found edge or INVALID if there is no such an edge. | 
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|  | 221 | Edge findEdge(Node u,Node v, Edge prev = INVALID) | 
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|  | 222 | { | 
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|  | 223 | int e = (prev.n==-1)? nodes[u.n].first_out : edges[prev.n].next_out; | 
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|  | 224 | while(e!=-1 && edges[e].tail!=v.n) e = edges[e].next_out; | 
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|  | 225 | prev.n=e; | 
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|  | 226 | return prev; | 
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|  | 227 | } | 
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|  | 228 |  | 
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| [397] | 229 | private: | 
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|  | 230 | void eraseEdge(int n) { | 
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|  | 231 |  | 
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|  | 232 | if(edges[n].next_in!=-1) | 
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|  | 233 | edges[edges[n].next_in].prev_in = edges[n].prev_in; | 
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|  | 234 | if(edges[n].prev_in!=-1) | 
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|  | 235 | edges[edges[n].prev_in].next_in = edges[n].next_in; | 
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|  | 236 | else nodes[edges[n].head].first_in = edges[n].next_in; | 
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|  | 237 |  | 
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|  | 238 | if(edges[n].next_out!=-1) | 
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|  | 239 | edges[edges[n].next_out].prev_out = edges[n].prev_out; | 
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|  | 240 | if(edges[n].prev_out!=-1) | 
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|  | 241 | edges[edges[n].prev_out].next_out = edges[n].next_out; | 
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|  | 242 | else nodes[edges[n].tail].first_out = edges[n].next_out; | 
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|  | 243 |  | 
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|  | 244 | edges[n].next_in = first_free_edge; | 
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| [695] | 245 | first_free_edge = n; | 
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| [397] | 246 |  | 
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|  | 247 | //Update dynamic maps | 
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|  | 248 | Edge e; e.n=n; | 
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| [782] | 249 | edge_maps.erase(e); | 
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|  | 250 |  | 
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| [397] | 251 | } | 
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|  | 252 |  | 
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|  | 253 | public: | 
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|  | 254 |  | 
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|  | 255 | void erase(Node nn) { | 
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|  | 256 | int n=nn.n; | 
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|  | 257 |  | 
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|  | 258 | int m; | 
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|  | 259 | while((m=nodes[n].first_in)!=-1) eraseEdge(m); | 
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|  | 260 | while((m=nodes[n].first_out)!=-1) eraseEdge(m); | 
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|  | 261 |  | 
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|  | 262 | if(nodes[n].next != -1) nodes[nodes[n].next].prev = nodes[n].prev; | 
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|  | 263 | if(nodes[n].prev != -1) nodes[nodes[n].prev].next = nodes[n].next; | 
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|  | 264 | else first_node = nodes[n].next; | 
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|  | 265 |  | 
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|  | 266 | nodes[n].next = first_free_node; | 
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|  | 267 | first_free_node = n; | 
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|  | 268 |  | 
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|  | 269 | //Update dynamic maps | 
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| [782] | 270 | node_maps.erase(nn); | 
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|  | 271 |  | 
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| [397] | 272 | } | 
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|  | 273 |  | 
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|  | 274 | void erase(Edge e) { eraseEdge(e.n); } | 
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|  | 275 |  | 
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|  | 276 | void clear() { | 
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| [782] | 277 | edge_maps.clear(); | 
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|  | 278 | edges.clear(); | 
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|  | 279 | node_maps.clear(); | 
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|  | 280 | nodes.clear(); | 
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| [397] | 281 | first_node=first_free_node=first_free_edge=-1; | 
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|  | 282 | } | 
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| [395] | 283 |  | 
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|  | 284 | class Node { | 
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| [397] | 285 | friend class ListGraph; | 
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| [395] | 286 | template <typename T> friend class NodeMap; | 
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| [400] | 287 |  | 
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| [395] | 288 | friend class Edge; | 
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|  | 289 | friend class OutEdgeIt; | 
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|  | 290 | friend class InEdgeIt; | 
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|  | 291 | friend class SymEdge; | 
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|  | 292 |  | 
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|  | 293 | protected: | 
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|  | 294 | int n; | 
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| [722] | 295 | friend int ListGraph::id(Node v); | 
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| [395] | 296 | Node(int nn) {n=nn;} | 
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|  | 297 | public: | 
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|  | 298 | Node() {} | 
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| [503] | 299 | Node (Invalid) { n=-1; } | 
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| [395] | 300 | bool operator==(const Node i) const {return n==i.n;} | 
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|  | 301 | bool operator!=(const Node i) const {return n!=i.n;} | 
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|  | 302 | bool operator<(const Node i) const {return n<i.n;} | 
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| [774] | 303 | //      ///Validity check | 
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|  | 304 | //      operator bool() { return n!=-1; } | 
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| [395] | 305 | }; | 
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|  | 306 |  | 
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|  | 307 | class NodeIt : public Node { | 
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| [774] | 308 | const ListGraph *G; | 
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| [397] | 309 | friend class ListGraph; | 
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| [395] | 310 | public: | 
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| [400] | 311 | NodeIt() : Node() { } | 
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|  | 312 | NodeIt(Invalid i) : Node(i) { } | 
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| [774] | 313 | NodeIt(const ListGraph& _G) : Node(_G.first_node), G(&_G) { } | 
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|  | 314 | NodeIt(const ListGraph& _G,Node n) : Node(n), G(&_G) { } | 
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|  | 315 | NodeIt &operator++() { | 
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|  | 316 | n=G->nodes[n].next; | 
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|  | 317 | return *this; | 
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|  | 318 | } | 
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|  | 319 | //      ///Validity check | 
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|  | 320 | //      operator bool() { return Node::operator bool(); } | 
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| [395] | 321 | }; | 
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|  | 322 |  | 
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|  | 323 | class Edge { | 
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| [397] | 324 | friend class ListGraph; | 
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| [395] | 325 | template <typename T> friend class EdgeMap; | 
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|  | 326 |  | 
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| [397] | 327 | //template <typename T> friend class SymListGraph::SymEdgeMap; | 
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|  | 328 | //friend Edge SymListGraph::opposite(Edge) const; | 
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| [395] | 329 |  | 
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|  | 330 | friend class Node; | 
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|  | 331 | friend class NodeIt; | 
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|  | 332 | protected: | 
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|  | 333 | int n; | 
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| [722] | 334 | friend int ListGraph::id(Edge e); | 
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| [395] | 335 |  | 
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| [706] | 336 | public: | 
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|  | 337 | /// An Edge with id \c n. | 
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|  | 338 |  | 
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|  | 339 | /// \bug It should be | 
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|  | 340 | /// obtained by a member function of the Graph. | 
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| [395] | 341 | Edge(int nn) {n=nn;} | 
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| [706] | 342 |  | 
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| [395] | 343 | Edge() { } | 
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|  | 344 | Edge (Invalid) { n=-1; } | 
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|  | 345 | bool operator==(const Edge i) const {return n==i.n;} | 
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|  | 346 | bool operator!=(const Edge i) const {return n!=i.n;} | 
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|  | 347 | bool operator<(const Edge i) const {return n<i.n;} | 
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|  | 348 | ///\bug This is a workaround until somebody tells me how to | 
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| [397] | 349 | ///make class \c SymListGraph::SymEdgeMap friend of Edge | 
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| [395] | 350 | int &idref() {return n;} | 
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| [774] | 351 | const int &idref() const {return n;} | 
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|  | 352 | //      ///Validity check | 
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|  | 353 | //      operator bool() { return n!=-1; } | 
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|  | 354 | }; | 
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| [395] | 355 |  | 
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|  | 356 | class EdgeIt : public Edge { | 
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| [774] | 357 | const ListGraph *G; | 
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| [397] | 358 | friend class ListGraph; | 
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| [395] | 359 | public: | 
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| [774] | 360 | EdgeIt(const ListGraph& _G) : Edge(), G(&_G) { | 
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| [397] | 361 | int m; | 
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| [774] | 362 | for(m=_G.first_node; | 
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|  | 363 | m!=-1 && _G.nodes[m].first_in == -1; m = _G.nodes[m].next); | 
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|  | 364 | n = (m==-1)?-1:_G.nodes[m].first_in; | 
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| [397] | 365 | } | 
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| [395] | 366 | EdgeIt (Invalid i) : Edge(i) { } | 
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| [774] | 367 | EdgeIt(const ListGraph& _G, Edge e) : Edge(e), G(&_G) { } | 
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| [395] | 368 | EdgeIt() : Edge() { } | 
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|  | 369 | ///\bug This is a workaround until somebody tells me how to | 
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| [397] | 370 | ///make class \c SymListGraph::SymEdgeMap friend of Edge | 
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| [395] | 371 | int &idref() {return n;} | 
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| [774] | 372 | EdgeIt &operator++() { | 
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|  | 373 | if(G->edges[n].next_in!=-1) n=G->edges[n].next_in; | 
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|  | 374 | else { | 
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|  | 375 | int nn; | 
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|  | 376 | for(nn=G->nodes[G->edges[n].head].next; | 
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|  | 377 | nn!=-1 && G->nodes[nn].first_in == -1; | 
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|  | 378 | nn = G->nodes[nn].next) ; | 
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|  | 379 | n = (nn==-1)?-1:G->nodes[nn].first_in; | 
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|  | 380 | } | 
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|  | 381 | return *this; | 
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|  | 382 | } | 
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|  | 383 | //      ///Validity check | 
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|  | 384 | //      operator bool() { return Edge::operator bool(); } | 
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| [395] | 385 | }; | 
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|  | 386 |  | 
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|  | 387 | class OutEdgeIt : public Edge { | 
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| [774] | 388 | const ListGraph *G; | 
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| [397] | 389 | friend class ListGraph; | 
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| [395] | 390 | public: | 
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|  | 391 | OutEdgeIt() : Edge() { } | 
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| [774] | 392 | OutEdgeIt(const ListGraph& _G, Edge e) : Edge(e), G(&_G) { } | 
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| [395] | 393 | OutEdgeIt (Invalid i) : Edge(i) { } | 
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|  | 394 |  | 
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| [774] | 395 | OutEdgeIt(const ListGraph& _G,const Node v) | 
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|  | 396 | : Edge(_G.nodes[v.n].first_out), G(&_G) {} | 
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|  | 397 | OutEdgeIt &operator++() { n=G->edges[n].next_out; return *this; } | 
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|  | 398 | //      ///Validity check | 
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|  | 399 | //      operator bool() { return Edge::operator bool(); } | 
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| [395] | 400 | }; | 
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|  | 401 |  | 
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|  | 402 | class InEdgeIt : public Edge { | 
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| [774] | 403 | const ListGraph *G; | 
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| [397] | 404 | friend class ListGraph; | 
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| [395] | 405 | public: | 
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|  | 406 | InEdgeIt() : Edge() { } | 
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| [774] | 407 | InEdgeIt(const ListGraph& _G, Edge e) : Edge(e), G(&_G) { } | 
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| [395] | 408 | InEdgeIt (Invalid i) : Edge(i) { } | 
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| [774] | 409 | InEdgeIt(const ListGraph& _G,Node v) | 
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|  | 410 | : Edge(_G.nodes[v.n].first_in), G(&_G) { } | 
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|  | 411 | InEdgeIt &operator++() { n=G->edges[n].next_in; return *this; } | 
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|  | 412 | //      ///Validity check | 
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|  | 413 | //      operator bool() { return Edge::operator bool(); } | 
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| [395] | 414 | }; | 
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|  | 415 | }; | 
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|  | 416 |  | 
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|  | 417 | ///Graph for bidirectional edges. | 
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|  | 418 |  | 
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|  | 419 | ///The purpose of this graph structure is to handle graphs | 
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|  | 420 | ///having bidirectional edges. Here the function \c addEdge(u,v) adds a pair | 
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|  | 421 | ///of oppositely directed edges. | 
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|  | 422 | ///There is a new edge map type called | 
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| [397] | 423 | ///\ref SymListGraph::SymEdgeMap "SymEdgeMap" | 
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| [395] | 424 | ///that complements this | 
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|  | 425 | ///feature by | 
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|  | 426 | ///storing shared values for the edge pairs. The usual | 
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| [880] | 427 | ///\ref Graph::EdgeMap "EdgeMap" | 
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| [395] | 428 | ///can be used | 
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|  | 429 | ///as well. | 
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|  | 430 | /// | 
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|  | 431 | ///The oppositely directed edge can also be obtained easily | 
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|  | 432 | ///using \ref opposite. | 
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| [397] | 433 | /// | 
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|  | 434 | ///Here erase(Edge) deletes a pair of edges. | 
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|  | 435 | /// | 
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|  | 436 | ///\todo this date structure need some reconsiderations. Maybe it | 
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|  | 437 | ///should be implemented independently from ListGraph. | 
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| [782] | 438 |  | 
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| [397] | 439 | class SymListGraph : public ListGraph | 
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| [395] | 440 | { | 
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|  | 441 | public: | 
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| [782] | 442 |  | 
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|  | 443 | typedef SymListGraph Graph; | 
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|  | 444 |  | 
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| [822] | 445 | /// Creating symmetric map registry. | 
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| [782] | 446 | CREATE_SYM_EDGE_MAP_REGISTRY; | 
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| [822] | 447 | /// Creating symmetric edge map. | 
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| [897] | 448 | CREATE_SYM_EDGE_MAP(ArrayMap); | 
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| [395] | 449 |  | 
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| [397] | 450 | SymListGraph() : ListGraph() { } | 
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|  | 451 | SymListGraph(const ListGraph &_g) : ListGraph(_g) { } | 
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|  | 452 | ///Adds a pair of oppositely directed edges to the graph. | 
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| [395] | 453 | Edge addEdge(Node u, Node v) | 
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|  | 454 | { | 
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| [397] | 455 | Edge e = ListGraph::addEdge(u,v); | 
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| [782] | 456 | Edge f = ListGraph::addEdge(v,u); | 
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|  | 457 | sym_edge_maps.add(e); | 
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|  | 458 | sym_edge_maps.add(f); | 
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|  | 459 |  | 
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| [395] | 460 | return e; | 
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|  | 461 | } | 
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|  | 462 |  | 
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| [782] | 463 | void erase(Node n) { ListGraph::erase(n);} | 
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| [395] | 464 | ///The oppositely directed edge. | 
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|  | 465 |  | 
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|  | 466 | ///Returns the oppositely directed | 
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|  | 467 | ///pair of the edge \c e. | 
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| [713] | 468 | static Edge opposite(Edge e) | 
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| [395] | 469 | { | 
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|  | 470 | Edge f; | 
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|  | 471 | f.idref() = e.idref() - 2*(e.idref()%2) + 1; | 
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|  | 472 | return f; | 
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|  | 473 | } | 
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|  | 474 |  | 
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| [397] | 475 | ///Removes a pair of oppositely directed edges to the graph. | 
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|  | 476 | void erase(Edge e) { | 
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| [782] | 477 | Edge f = opposite(e); | 
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|  | 478 | sym_edge_maps.erase(e); | 
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|  | 479 | sym_edge_maps.erase(f); | 
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|  | 480 | ListGraph::erase(f); | 
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| [397] | 481 | ListGraph::erase(e); | 
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| [782] | 482 | } | 
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|  | 483 | }; | 
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| [395] | 484 |  | 
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| [400] | 485 |  | 
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| [401] | 486 | ///A graph class containing only nodes. | 
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| [400] | 487 |  | 
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| [401] | 488 | ///This class implements a graph structure without edges. | 
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|  | 489 | ///The most useful application of this class is to be the node set of an | 
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|  | 490 | ///\ref EdgeSet class. | 
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| [400] | 491 | /// | 
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| [880] | 492 | ///It conforms to | 
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|  | 493 | ///the \ref skeleton::ExtendableGraph "ExtendableGraph" concept | 
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|  | 494 | ///with the exception that you cannot | 
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| [401] | 495 | ///add (or delete) edges. The usual edge iterators are exists, but they are | 
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|  | 496 | ///always \ref INVALID. | 
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| [880] | 497 | ///\sa skeleton::ExtendableGraph | 
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|  | 498 | ///\sa EdgeSet | 
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| [400] | 499 | class NodeSet { | 
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|  | 500 |  | 
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|  | 501 | //Nodes are double linked. | 
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|  | 502 | //The free nodes are only single linked using the "next" field. | 
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|  | 503 | struct NodeT | 
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|  | 504 | { | 
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|  | 505 | int first_in,first_out; | 
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|  | 506 | int prev, next; | 
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|  | 507 | //      NodeT() {} | 
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|  | 508 | }; | 
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|  | 509 |  | 
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|  | 510 | std::vector<NodeT> nodes; | 
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|  | 511 | //The first node | 
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|  | 512 | int first_node; | 
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|  | 513 | //The first free node | 
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|  | 514 | int first_free_node; | 
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|  | 515 |  | 
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|  | 516 | public: | 
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| [782] | 517 |  | 
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|  | 518 | typedef NodeSet Graph; | 
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| [400] | 519 |  | 
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|  | 520 | class Node; | 
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|  | 521 | class Edge; | 
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|  | 522 |  | 
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|  | 523 | public: | 
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|  | 524 |  | 
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|  | 525 | class NodeIt; | 
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|  | 526 | class EdgeIt; | 
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|  | 527 | class OutEdgeIt; | 
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|  | 528 | class InEdgeIt; | 
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|  | 529 |  | 
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| [822] | 530 | /// Creating node map registry. | 
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|  | 531 | CREATE_NODE_MAP_REGISTRY; | 
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|  | 532 | /// Creating node maps. | 
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| [897] | 533 | CREATE_NODE_MAP(ArrayMap); | 
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| [822] | 534 |  | 
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|  | 535 | /// Creating empty map structure for edges. | 
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|  | 536 | template <typename Value> | 
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|  | 537 | class EdgeMap { | 
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|  | 538 | public: | 
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|  | 539 | EdgeMap(const Graph&) {} | 
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|  | 540 | EdgeMap(const Graph&, const Value&) {} | 
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|  | 541 |  | 
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|  | 542 | EdgeMap(const EdgeMap&) {} | 
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|  | 543 | template <typename CMap> EdgeMap(const CMap&) {} | 
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|  | 544 |  | 
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|  | 545 | EdgeMap& operator=(const EdgeMap&) {} | 
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|  | 546 | template <typename CMap> EdgeMap& operator=(const CMap&) {} | 
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|  | 547 |  | 
|---|
|  | 548 | class ConstIterator { | 
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|  | 549 | public: | 
|---|
|  | 550 | bool operator==(const ConstIterator&) {return true;} | 
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|  | 551 | bool operator!=(const ConstIterator&) {return false;} | 
|---|
|  | 552 | }; | 
|---|
|  | 553 |  | 
|---|
|  | 554 | typedef ConstIterator Iterator; | 
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|  | 555 |  | 
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|  | 556 | Iterator begin() { return Iterator();} | 
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|  | 557 | Iterator end() { return Iterator();} | 
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|  | 558 |  | 
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|  | 559 | ConstIterator begin() const { return ConstIterator();} | 
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|  | 560 | ConstIterator end() const { return ConstIterator();} | 
|---|
|  | 561 |  | 
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|  | 562 | }; | 
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| [400] | 563 |  | 
|---|
|  | 564 | public: | 
|---|
|  | 565 |  | 
|---|
| [408] | 566 | ///Default constructor | 
|---|
| [782] | 567 | NodeSet() | 
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|  | 568 | : nodes(), first_node(-1), first_free_node(-1) {} | 
|---|
| [408] | 569 | ///Copy constructor | 
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| [782] | 570 | NodeSet(const NodeSet &_g) | 
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|  | 571 | : nodes(_g.nodes), first_node(_g.first_node), | 
|---|
|  | 572 | first_free_node(_g.first_free_node) {} | 
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| [400] | 573 |  | 
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| [813] | 574 | ///Number of nodes. | 
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|  | 575 | int nodeNum() const { return nodes.size(); } | 
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|  | 576 | ///Number of edges. | 
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|  | 577 | int edgeNum() const { return 0; } | 
|---|
| [400] | 578 |  | 
|---|
| [813] | 579 | /// Maximum node ID. | 
|---|
|  | 580 |  | 
|---|
|  | 581 | /// Maximum node ID. | 
|---|
|  | 582 | ///\sa id(Node) | 
|---|
|  | 583 | int maxNodeId() const { return nodes.size()-1; } | 
|---|
|  | 584 | /// Maximum edge ID. | 
|---|
|  | 585 |  | 
|---|
|  | 586 | /// Maximum edge ID. | 
|---|
|  | 587 | ///\sa id(Edge) | 
|---|
|  | 588 | int maxEdgeId() const { return 0; } | 
|---|
| [400] | 589 |  | 
|---|
|  | 590 | Node tail(Edge e) const { return INVALID; } | 
|---|
|  | 591 | Node head(Edge e) const { return INVALID; } | 
|---|
|  | 592 |  | 
|---|
|  | 593 | NodeIt& first(NodeIt& v) const { | 
|---|
|  | 594 | v=NodeIt(*this); return v; } | 
|---|
|  | 595 | EdgeIt& first(EdgeIt& e) const { | 
|---|
|  | 596 | e=EdgeIt(*this); return e; } | 
|---|
|  | 597 | OutEdgeIt& first(OutEdgeIt& e, const Node v) const { | 
|---|
|  | 598 | e=OutEdgeIt(*this,v); return e; } | 
|---|
|  | 599 | InEdgeIt& first(InEdgeIt& e, const Node v) const { | 
|---|
|  | 600 | e=InEdgeIt(*this,v); return e; } | 
|---|
|  | 601 |  | 
|---|
| [813] | 602 | /// Node ID. | 
|---|
|  | 603 |  | 
|---|
|  | 604 | /// The ID of a valid Node is a nonnegative integer not greater than | 
|---|
|  | 605 | /// \ref maxNodeId(). The range of the ID's is not surely continuous | 
|---|
|  | 606 | /// and the greatest node ID can be actually less then \ref maxNodeId(). | 
|---|
|  | 607 | /// | 
|---|
|  | 608 | /// The ID of the \ref INVALID node is -1. | 
|---|
|  | 609 | ///\return The ID of the node \c v. | 
|---|
| [400] | 610 | int id(Node v) const { return v.n; } | 
|---|
| [813] | 611 | /// Edge ID. | 
|---|
|  | 612 |  | 
|---|
|  | 613 | /// The ID of a valid Edge is a nonnegative integer not greater than | 
|---|
|  | 614 | /// \ref maxEdgeId(). The range of the ID's is not surely continuous | 
|---|
|  | 615 | /// and the greatest edge ID can be actually less then \ref maxEdgeId(). | 
|---|
|  | 616 | /// | 
|---|
|  | 617 | /// The ID of the \ref INVALID edge is -1. | 
|---|
|  | 618 | ///\return The ID of the edge \c e. | 
|---|
| [400] | 619 | int id(Edge e) const { return -1; } | 
|---|
|  | 620 |  | 
|---|
|  | 621 | /// Adds a new node to the graph. | 
|---|
|  | 622 |  | 
|---|
| [813] | 623 | /// \warning It adds the new node to the front of the list. | 
|---|
| [400] | 624 | /// (i.e. the lastly added node becomes the first.) | 
|---|
|  | 625 | Node addNode() { | 
|---|
|  | 626 | int n; | 
|---|
|  | 627 |  | 
|---|
|  | 628 | if(first_free_node==-1) | 
|---|
|  | 629 | { | 
|---|
|  | 630 | n = nodes.size(); | 
|---|
|  | 631 | nodes.push_back(NodeT()); | 
|---|
|  | 632 | } | 
|---|
|  | 633 | else { | 
|---|
|  | 634 | n = first_free_node; | 
|---|
|  | 635 | first_free_node = nodes[n].next; | 
|---|
|  | 636 | } | 
|---|
|  | 637 |  | 
|---|
|  | 638 | nodes[n].next = first_node; | 
|---|
|  | 639 | if(first_node != -1) nodes[first_node].prev = n; | 
|---|
|  | 640 | first_node = n; | 
|---|
|  | 641 | nodes[n].prev = -1; | 
|---|
|  | 642 |  | 
|---|
|  | 643 | nodes[n].first_in = nodes[n].first_out = -1; | 
|---|
|  | 644 |  | 
|---|
|  | 645 | Node nn; nn.n=n; | 
|---|
|  | 646 |  | 
|---|
|  | 647 | //Update dynamic maps | 
|---|
| [782] | 648 | node_maps.add(nn); | 
|---|
| [400] | 649 |  | 
|---|
|  | 650 | return nn; | 
|---|
|  | 651 | } | 
|---|
|  | 652 |  | 
|---|
|  | 653 | void erase(Node nn) { | 
|---|
|  | 654 | int n=nn.n; | 
|---|
|  | 655 |  | 
|---|
|  | 656 | if(nodes[n].next != -1) nodes[nodes[n].next].prev = nodes[n].prev; | 
|---|
|  | 657 | if(nodes[n].prev != -1) nodes[nodes[n].prev].next = nodes[n].next; | 
|---|
|  | 658 | else first_node = nodes[n].next; | 
|---|
|  | 659 |  | 
|---|
|  | 660 | nodes[n].next = first_free_node; | 
|---|
|  | 661 | first_free_node = n; | 
|---|
|  | 662 |  | 
|---|
|  | 663 | //Update dynamic maps | 
|---|
| [782] | 664 | node_maps.erase(nn); | 
|---|
| [400] | 665 | } | 
|---|
|  | 666 |  | 
|---|
| [774] | 667 |  | 
|---|
|  | 668 | Edge findEdge(Node u,Node v, Edge prev = INVALID) | 
|---|
|  | 669 | { | 
|---|
|  | 670 | return INVALID; | 
|---|
|  | 671 | } | 
|---|
|  | 672 |  | 
|---|
| [400] | 673 | void clear() { | 
|---|
| [782] | 674 | node_maps.clear(); | 
|---|
| [400] | 675 | nodes.clear(); | 
|---|
|  | 676 | first_node = first_free_node = -1; | 
|---|
|  | 677 | } | 
|---|
|  | 678 |  | 
|---|
|  | 679 | class Node { | 
|---|
|  | 680 | friend class NodeSet; | 
|---|
|  | 681 | template <typename T> friend class NodeMap; | 
|---|
|  | 682 |  | 
|---|
|  | 683 | friend class Edge; | 
|---|
|  | 684 | friend class OutEdgeIt; | 
|---|
|  | 685 | friend class InEdgeIt; | 
|---|
|  | 686 |  | 
|---|
|  | 687 | protected: | 
|---|
|  | 688 | int n; | 
|---|
|  | 689 | friend int NodeSet::id(Node v) const; | 
|---|
|  | 690 | Node(int nn) {n=nn;} | 
|---|
|  | 691 | public: | 
|---|
|  | 692 | Node() {} | 
|---|
|  | 693 | Node (Invalid i) { n=-1; } | 
|---|
|  | 694 | bool operator==(const Node i) const {return n==i.n;} | 
|---|
|  | 695 | bool operator!=(const Node i) const {return n!=i.n;} | 
|---|
|  | 696 | bool operator<(const Node i) const {return n<i.n;} | 
|---|
|  | 697 | }; | 
|---|
|  | 698 |  | 
|---|
|  | 699 | class NodeIt : public Node { | 
|---|
| [774] | 700 | const NodeSet *G; | 
|---|
| [400] | 701 | friend class NodeSet; | 
|---|
|  | 702 | public: | 
|---|
| [579] | 703 | NodeIt() : Node() { } | 
|---|
| [774] | 704 | NodeIt(const NodeSet& _G,Node n) : Node(n), G(&_G) { } | 
|---|
| [579] | 705 | NodeIt(Invalid i) : Node(i) { } | 
|---|
| [774] | 706 | NodeIt(const NodeSet& _G) : Node(_G.first_node), G(&_G) { } | 
|---|
|  | 707 | NodeIt &operator++() { | 
|---|
|  | 708 | n=G->nodes[n].next; | 
|---|
|  | 709 | return *this; | 
|---|
|  | 710 | } | 
|---|
| [400] | 711 | }; | 
|---|
|  | 712 |  | 
|---|
|  | 713 | class Edge { | 
|---|
|  | 714 | //friend class NodeSet; | 
|---|
|  | 715 | //template <typename T> friend class EdgeMap; | 
|---|
|  | 716 |  | 
|---|
|  | 717 | //template <typename T> friend class SymNodeSet::SymEdgeMap; | 
|---|
|  | 718 | //friend Edge SymNodeSet::opposite(Edge) const; | 
|---|
|  | 719 |  | 
|---|
|  | 720 | //      friend class Node; | 
|---|
|  | 721 | //      friend class NodeIt; | 
|---|
|  | 722 | protected: | 
|---|
|  | 723 | //friend int NodeSet::id(Edge e) const; | 
|---|
|  | 724 | //      Edge(int nn) {} | 
|---|
|  | 725 | public: | 
|---|
|  | 726 | Edge() { } | 
|---|
|  | 727 | Edge (Invalid) { } | 
|---|
|  | 728 | bool operator==(const Edge i) const {return true;} | 
|---|
|  | 729 | bool operator!=(const Edge i) const {return false;} | 
|---|
|  | 730 | bool operator<(const Edge i) const {return false;} | 
|---|
|  | 731 | ///\bug This is a workaround until somebody tells me how to | 
|---|
|  | 732 | ///make class \c SymNodeSet::SymEdgeMap friend of Edge | 
|---|
|  | 733 | //      int idref() {return -1;} | 
|---|
|  | 734 | //      int idref() const {return -1;} | 
|---|
|  | 735 | }; | 
|---|
|  | 736 |  | 
|---|
|  | 737 | class EdgeIt : public Edge { | 
|---|
|  | 738 | //friend class NodeSet; | 
|---|
|  | 739 | public: | 
|---|
|  | 740 | EdgeIt(const NodeSet& G) : Edge() { } | 
|---|
| [774] | 741 | EdgeIt(const NodeSet&, Edge) : Edge() { } | 
|---|
| [400] | 742 | EdgeIt (Invalid i) : Edge(i) { } | 
|---|
|  | 743 | EdgeIt() : Edge() { } | 
|---|
|  | 744 | ///\bug This is a workaround until somebody tells me how to | 
|---|
|  | 745 | ///make class \c SymNodeSet::SymEdgeMap friend of Edge | 
|---|
|  | 746 | //      int idref() {return -1;} | 
|---|
| [774] | 747 | EdgeIt operator++() { return INVALID; } | 
|---|
| [400] | 748 | }; | 
|---|
|  | 749 |  | 
|---|
|  | 750 | class OutEdgeIt : public Edge { | 
|---|
|  | 751 | friend class NodeSet; | 
|---|
|  | 752 | public: | 
|---|
|  | 753 | OutEdgeIt() : Edge() { } | 
|---|
| [774] | 754 | OutEdgeIt(const NodeSet&, Edge) : Edge() { } | 
|---|
| [400] | 755 | OutEdgeIt (Invalid i) : Edge(i) { } | 
|---|
|  | 756 | OutEdgeIt(const NodeSet& G,const Node v)  : Edge() {} | 
|---|
| [774] | 757 | OutEdgeIt operator++() { return INVALID; } | 
|---|
| [400] | 758 | }; | 
|---|
|  | 759 |  | 
|---|
|  | 760 | class InEdgeIt : public Edge { | 
|---|
|  | 761 | friend class NodeSet; | 
|---|
|  | 762 | public: | 
|---|
|  | 763 | InEdgeIt() : Edge() { } | 
|---|
| [774] | 764 | InEdgeIt(const NodeSet&, Edge) : Edge() { } | 
|---|
| [400] | 765 | InEdgeIt (Invalid i) : Edge(i) { } | 
|---|
|  | 766 | InEdgeIt(const NodeSet& G,Node v) :Edge() {} | 
|---|
| [774] | 767 | InEdgeIt operator++() { return INVALID; } | 
|---|
| [400] | 768 | }; | 
|---|
|  | 769 |  | 
|---|
|  | 770 | }; | 
|---|
|  | 771 |  | 
|---|
|  | 772 |  | 
|---|
|  | 773 |  | 
|---|
| [401] | 774 | ///Graph structure using a node set of another graph. | 
|---|
|  | 775 |  | 
|---|
|  | 776 | ///This structure can be used to establish another graph over a node set | 
|---|
|  | 777 | /// of an existing one. The node iterator will go through the nodes of the | 
|---|
|  | 778 | /// original graph, and the NodeMap's of both graphs will convert to | 
|---|
|  | 779 | /// each other. | 
|---|
|  | 780 | /// | 
|---|
| [404] | 781 | ///\warning Adding or deleting nodes from the graph is not safe if an | 
|---|
|  | 782 | ///\ref EdgeSet is currently attached to it! | 
|---|
|  | 783 | /// | 
|---|
|  | 784 | ///\todo Make it possible to add/delete edges from the base graph | 
|---|
|  | 785 | ///(and from \ref EdgeSet, as well) | 
|---|
|  | 786 | /// | 
|---|
| [401] | 787 | ///\param GG The type of the graph which shares its node set with this class. | 
|---|
| [880] | 788 | ///Its interface must conform to the | 
|---|
|  | 789 | ///\ref skeleton::StaticGraph "StaticGraph" concept. | 
|---|
| [400] | 790 | /// | 
|---|
| [880] | 791 | ///It conforms to the | 
|---|
|  | 792 | ///\ref skeleton::ExtendableGraph "ExtendableGraph" concept. | 
|---|
|  | 793 | ///\sa skeleton::ExtendableGraph. | 
|---|
|  | 794 | ///\sa NodeSet. | 
|---|
| [400] | 795 | template<typename GG> | 
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|  | 796 | class EdgeSet { | 
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|  | 797 |  | 
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|  | 798 | typedef GG NodeGraphType; | 
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|  | 799 |  | 
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|  | 800 | NodeGraphType &G; | 
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|  | 801 |  | 
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| [515] | 802 | public: | 
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| [782] | 803 |  | 
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| [400] | 804 | class Node; | 
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| [705] | 805 | class Edge; | 
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|  | 806 | class OutEdgeIt; | 
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|  | 807 | class InEdgeIt; | 
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|  | 808 | class SymEdge; | 
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| [782] | 809 |  | 
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|  | 810 | typedef EdgeSet Graph; | 
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|  | 811 |  | 
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| [531] | 812 | int id(Node v) const; | 
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|  | 813 |  | 
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|  | 814 | class Node : public NodeGraphType::Node { | 
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|  | 815 | friend class EdgeSet; | 
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|  | 816 | //      template <typename T> friend class NodeMap; | 
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|  | 817 |  | 
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|  | 818 | friend class Edge; | 
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|  | 819 | friend class OutEdgeIt; | 
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|  | 820 | friend class InEdgeIt; | 
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|  | 821 | friend class SymEdge; | 
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|  | 822 |  | 
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|  | 823 | public: | 
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|  | 824 | friend int EdgeSet::id(Node v) const; | 
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|  | 825 | //      Node(int nn) {n=nn;} | 
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|  | 826 | public: | 
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|  | 827 | Node() : NodeGraphType::Node() {} | 
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|  | 828 | Node (Invalid i) : NodeGraphType::Node(i) {} | 
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|  | 829 | Node(const typename NodeGraphType::Node &n) : NodeGraphType::Node(n) {} | 
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|  | 830 | }; | 
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|  | 831 |  | 
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|  | 832 | class NodeIt : public NodeGraphType::NodeIt { | 
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|  | 833 | friend class EdgeSet; | 
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|  | 834 | public: | 
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|  | 835 | NodeIt() : NodeGraphType::NodeIt() { } | 
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| [774] | 836 | NodeIt(const EdgeSet& _G,Node n) : NodeGraphType::NodeIt(_G.G,n) { } | 
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| [531] | 837 | NodeIt (Invalid i) : NodeGraphType::NodeIt(i) {} | 
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|  | 838 | NodeIt(const EdgeSet& _G) : NodeGraphType::NodeIt(_G.G) { } | 
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|  | 839 | NodeIt(const typename NodeGraphType::NodeIt &n) | 
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|  | 840 | : NodeGraphType::NodeIt(n) {} | 
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| [579] | 841 |  | 
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| [531] | 842 | operator Node() { return Node(*this);} | 
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| [774] | 843 | NodeIt &operator++() | 
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|  | 844 | { this->NodeGraphType::NodeIt::operator++(); return *this;} | 
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| [531] | 845 | }; | 
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| [515] | 846 |  | 
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|  | 847 | private: | 
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| [400] | 848 | //Edges are double linked. | 
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|  | 849 | //The free edges are only single linked using the "next_in" field. | 
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|  | 850 | struct NodeT | 
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|  | 851 | { | 
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|  | 852 | int first_in,first_out; | 
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|  | 853 | NodeT() : first_in(-1), first_out(-1) { } | 
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|  | 854 | }; | 
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|  | 855 |  | 
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|  | 856 | struct EdgeT | 
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|  | 857 | { | 
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|  | 858 | Node head, tail; | 
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|  | 859 | int prev_in, prev_out; | 
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|  | 860 | int next_in, next_out; | 
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|  | 861 | }; | 
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|  | 862 |  | 
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|  | 863 |  | 
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| [515] | 864 | typename NodeGraphType::template NodeMap<NodeT> nodes; | 
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| [400] | 865 |  | 
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|  | 866 | std::vector<EdgeT> edges; | 
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|  | 867 | //The first free edge | 
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|  | 868 | int first_free_edge; | 
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|  | 869 |  | 
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|  | 870 | public: | 
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|  | 871 |  | 
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|  | 872 | class Node; | 
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|  | 873 | class Edge; | 
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|  | 874 |  | 
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|  | 875 | class NodeIt; | 
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|  | 876 | class EdgeIt; | 
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|  | 877 | class OutEdgeIt; | 
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|  | 878 | class InEdgeIt; | 
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| [782] | 879 |  | 
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|  | 880 |  | 
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| [877] | 881 | /// Creates edge map registry. | 
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| [782] | 882 | CREATE_EDGE_MAP_REGISTRY; | 
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| [877] | 883 | /// Creates edge maps. | 
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| [897] | 884 | CREATE_EDGE_MAP(ArrayMap); | 
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| [822] | 885 |  | 
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| [877] | 886 | /// Imports node maps from the NodeGraphType. | 
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| [822] | 887 | IMPORT_NODE_MAP(NodeGraphType, graph.G, EdgeSet, graph); | 
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| [400] | 888 |  | 
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|  | 889 |  | 
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|  | 890 | public: | 
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|  | 891 |  | 
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| [408] | 892 | ///Constructor | 
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|  | 893 |  | 
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|  | 894 | ///Construates a new graph based on the nodeset of an existing one. | 
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|  | 895 | ///\param _G the base graph. | 
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| [880] | 896 | explicit EdgeSet(NodeGraphType &_G) | 
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| [782] | 897 | : G(_G), nodes(_G), edges(), | 
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|  | 898 | first_free_edge(-1) {} | 
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| [408] | 899 | ///Copy constructor | 
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|  | 900 |  | 
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|  | 901 | ///Makes a copy of an EdgeSet. | 
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|  | 902 | ///It will be based on the same graph. | 
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| [880] | 903 | explicit EdgeSet(const EdgeSet &_g) | 
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| [782] | 904 | : G(_g.G), nodes(_g.G), edges(_g.edges), | 
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|  | 905 | first_free_edge(_g.first_free_edge) {} | 
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| [400] | 906 |  | 
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| [813] | 907 | ///Number of nodes. | 
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|  | 908 | int nodeNum() const { return G.nodeNum(); } | 
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|  | 909 | ///Number of edges. | 
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|  | 910 | int edgeNum() const { return edges.size(); } | 
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| [400] | 911 |  | 
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| [813] | 912 | /// Maximum node ID. | 
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|  | 913 |  | 
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|  | 914 | /// Maximum node ID. | 
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|  | 915 | ///\sa id(Node) | 
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|  | 916 | int maxNodeId() const { return G.maxNodeId(); } | 
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|  | 917 | /// Maximum edge ID. | 
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|  | 918 |  | 
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|  | 919 | /// Maximum edge ID. | 
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|  | 920 | ///\sa id(Edge) | 
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|  | 921 | int maxEdgeId() const { return edges.size()-1; } | 
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| [400] | 922 |  | 
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|  | 923 | Node tail(Edge e) const { return edges[e.n].tail; } | 
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|  | 924 | Node head(Edge e) const { return edges[e.n].head; } | 
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|  | 925 |  | 
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|  | 926 | NodeIt& first(NodeIt& v) const { | 
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|  | 927 | v=NodeIt(*this); return v; } | 
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|  | 928 | EdgeIt& first(EdgeIt& e) const { | 
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|  | 929 | e=EdgeIt(*this); return e; } | 
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|  | 930 | OutEdgeIt& first(OutEdgeIt& e, const Node v) const { | 
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|  | 931 | e=OutEdgeIt(*this,v); return e; } | 
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|  | 932 | InEdgeIt& first(InEdgeIt& e, const Node v) const { | 
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|  | 933 | e=InEdgeIt(*this,v); return e; } | 
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|  | 934 |  | 
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| [813] | 935 | /// Node ID. | 
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|  | 936 |  | 
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|  | 937 | /// The ID of a valid Node is a nonnegative integer not greater than | 
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|  | 938 | /// \ref maxNodeId(). The range of the ID's is not surely continuous | 
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|  | 939 | /// and the greatest node ID can be actually less then \ref maxNodeId(). | 
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|  | 940 | /// | 
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|  | 941 | /// The ID of the \ref INVALID node is -1. | 
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|  | 942 | ///\return The ID of the node \c v. | 
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|  | 943 | int id(Node v) { return G.id(v); } | 
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|  | 944 | /// Edge ID. | 
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|  | 945 |  | 
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|  | 946 | /// The ID of a valid Edge is a nonnegative integer not greater than | 
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|  | 947 | /// \ref maxEdgeId(). The range of the ID's is not surely continuous | 
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|  | 948 | /// and the greatest edge ID can be actually less then \ref maxEdgeId(). | 
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|  | 949 | /// | 
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|  | 950 | /// The ID of the \ref INVALID edge is -1. | 
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|  | 951 | ///\return The ID of the edge \c e. | 
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| [400] | 952 | int id(Edge e) const { return e.n; } | 
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|  | 953 |  | 
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|  | 954 | /// Adds a new node to the graph. | 
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| [579] | 955 | Node addNode() { return G.addNode(); } | 
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| [400] | 956 |  | 
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|  | 957 | Edge addEdge(Node u, Node v) { | 
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|  | 958 | int n; | 
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|  | 959 |  | 
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|  | 960 | if(first_free_edge==-1) | 
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|  | 961 | { | 
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|  | 962 | n = edges.size(); | 
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|  | 963 | edges.push_back(EdgeT()); | 
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|  | 964 | } | 
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|  | 965 | else { | 
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|  | 966 | n = first_free_edge; | 
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|  | 967 | first_free_edge = edges[n].next_in; | 
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|  | 968 | } | 
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|  | 969 |  | 
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| [401] | 970 | edges[n].tail = u; edges[n].head = v; | 
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| [400] | 971 |  | 
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| [401] | 972 | edges[n].next_out = nodes[u].first_out; | 
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|  | 973 | if(nodes[u].first_out != -1) edges[nodes[u].first_out].prev_out = n; | 
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|  | 974 | edges[n].next_in = nodes[v].first_in; | 
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|  | 975 | if(nodes[v].first_in != -1) edges[nodes[v].first_in].prev_in = n; | 
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| [400] | 976 | edges[n].prev_in = edges[n].prev_out = -1; | 
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|  | 977 |  | 
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| [401] | 978 | nodes[u].first_out = nodes[v].first_in = n; | 
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| [400] | 979 |  | 
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|  | 980 | Edge e; e.n=n; | 
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|  | 981 |  | 
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|  | 982 | //Update dynamic maps | 
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| [782] | 983 | edge_maps.add(e); | 
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| [400] | 984 |  | 
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|  | 985 | return e; | 
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|  | 986 | } | 
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|  | 987 |  | 
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| [774] | 988 | /// Finds an edge between two nodes. | 
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|  | 989 |  | 
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|  | 990 | /// Finds an edge from node \c u to node \c v. | 
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|  | 991 | /// | 
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|  | 992 | /// If \c prev is \ref INVALID (this is the default value), then | 
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|  | 993 | /// It finds the first edge from \c u to \c v. Otherwise it looks for | 
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|  | 994 | /// the next edge from \c u to \c v after \c prev. | 
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|  | 995 | /// \return The found edge or INVALID if there is no such an edge. | 
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|  | 996 | Edge findEdge(Node u,Node v, Edge prev = INVALID) | 
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|  | 997 | { | 
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|  | 998 | int e = (prev.n==-1)? nodes[u].first_out : edges[prev.n].next_out; | 
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|  | 999 | while(e!=-1 && edges[e].tail!=v) e = edges[e].next_out; | 
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|  | 1000 | prev.n=e; | 
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|  | 1001 | return prev; | 
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|  | 1002 | } | 
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|  | 1003 |  | 
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| [400] | 1004 | private: | 
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|  | 1005 | void eraseEdge(int n) { | 
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|  | 1006 |  | 
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|  | 1007 | if(edges[n].next_in!=-1) | 
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|  | 1008 | edges[edges[n].next_in].prev_in = edges[n].prev_in; | 
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|  | 1009 | if(edges[n].prev_in!=-1) | 
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|  | 1010 | edges[edges[n].prev_in].next_in = edges[n].next_in; | 
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|  | 1011 | else nodes[edges[n].head].first_in = edges[n].next_in; | 
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|  | 1012 |  | 
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|  | 1013 | if(edges[n].next_out!=-1) | 
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|  | 1014 | edges[edges[n].next_out].prev_out = edges[n].prev_out; | 
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|  | 1015 | if(edges[n].prev_out!=-1) | 
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|  | 1016 | edges[edges[n].prev_out].next_out = edges[n].next_out; | 
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|  | 1017 | else nodes[edges[n].tail].first_out = edges[n].next_out; | 
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|  | 1018 |  | 
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|  | 1019 | edges[n].next_in = first_free_edge; | 
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|  | 1020 | first_free_edge = -1; | 
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|  | 1021 |  | 
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|  | 1022 | //Update dynamic maps | 
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| [782] | 1023 | Edge e; e.n = n; | 
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|  | 1024 | edge_maps.erase(e); | 
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| [400] | 1025 | } | 
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|  | 1026 |  | 
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|  | 1027 | public: | 
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|  | 1028 |  | 
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|  | 1029 | //     void erase(Node nn) { | 
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|  | 1030 | //       int n=nn.n; | 
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|  | 1031 | //       int m; | 
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|  | 1032 | //       while((m=nodes[n].first_in)!=-1) eraseEdge(m); | 
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|  | 1033 | //       while((m=nodes[n].first_out)!=-1) eraseEdge(m); | 
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|  | 1034 | //     } | 
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|  | 1035 |  | 
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|  | 1036 | void erase(Edge e) { eraseEdge(e.n); } | 
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|  | 1037 |  | 
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| [579] | 1038 | ///Clear all edges. (Doesn't clear the nodes!) | 
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|  | 1039 | void clear() { | 
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| [782] | 1040 | edge_maps.clear(); | 
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| [579] | 1041 | edges.clear(); | 
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|  | 1042 | first_free_edge=-1; | 
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|  | 1043 | } | 
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|  | 1044 |  | 
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|  | 1045 |  | 
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| [400] | 1046 | class Edge { | 
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| [579] | 1047 | public: | 
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| [400] | 1048 | friend class EdgeSet; | 
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|  | 1049 | template <typename T> friend class EdgeMap; | 
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|  | 1050 |  | 
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|  | 1051 | friend class Node; | 
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|  | 1052 | friend class NodeIt; | 
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| [579] | 1053 | public: | 
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| [774] | 1054 | ///\bug It should be at least protected | 
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| [579] | 1055 | /// | 
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|  | 1056 | int n; | 
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| [400] | 1057 | protected: | 
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|  | 1058 | friend int EdgeSet::id(Edge e) const; | 
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|  | 1059 |  | 
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|  | 1060 | Edge(int nn) {n=nn;} | 
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|  | 1061 | public: | 
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|  | 1062 | Edge() { } | 
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|  | 1063 | Edge (Invalid) { n=-1; } | 
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|  | 1064 | bool operator==(const Edge i) const {return n==i.n;} | 
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|  | 1065 | bool operator!=(const Edge i) const {return n!=i.n;} | 
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|  | 1066 | bool operator<(const Edge i) const {return n<i.n;} | 
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|  | 1067 | ///\bug This is a workaround until somebody tells me how to | 
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|  | 1068 | ///make class \c SymEdgeSet::SymEdgeMap friend of Edge | 
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|  | 1069 | int &idref() {return n;} | 
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|  | 1070 | const int &idref() const {return n;} | 
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|  | 1071 | }; | 
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|  | 1072 |  | 
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|  | 1073 | class EdgeIt : public Edge { | 
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|  | 1074 | friend class EdgeSet; | 
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| [579] | 1075 | template <typename T> friend class EdgeMap; | 
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|  | 1076 |  | 
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| [774] | 1077 | const EdgeSet *G; | 
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| [400] | 1078 | public: | 
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| [774] | 1079 | EdgeIt(const EdgeSet& _G) : Edge(), G(&_G) { | 
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| [503] | 1080 | //              typename NodeGraphType::Node m; | 
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|  | 1081 | NodeIt m; | 
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| [774] | 1082 | for(G->first(m); | 
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|  | 1083 | m!=INVALID && G->nodes[m].first_in == -1;  ++m); | 
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|  | 1084 | ///\bug AJJAJ! This is a non sense!!!!!!! | 
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|  | 1085 | this->n = m!=INVALID?-1:G->nodes[m].first_in; | 
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| [400] | 1086 | } | 
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| [774] | 1087 | EdgeIt(const EdgeSet& _G, Edge e) : Edge(e), G(&_G) { } | 
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| [400] | 1088 | EdgeIt (Invalid i) : Edge(i) { } | 
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|  | 1089 | EdgeIt() : Edge() { } | 
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| [774] | 1090 | ///. | 
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|  | 1091 |  | 
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|  | 1092 | ///\bug UNIMPLEMENTED!!!!! | 
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|  | 1093 | // | 
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|  | 1094 | EdgeIt &operator++() { | 
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|  | 1095 | return *this; | 
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|  | 1096 | } | 
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|  | 1097 | ///\bug This is a workaround until somebody tells me how to | 
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| [400] | 1098 | ///make class \c SymEdgeSet::SymEdgeMap friend of Edge | 
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| [515] | 1099 | int &idref() {return this->n;} | 
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| [400] | 1100 | }; | 
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|  | 1101 |  | 
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|  | 1102 | class OutEdgeIt : public Edge { | 
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| [774] | 1103 | const EdgeSet *G; | 
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| [400] | 1104 | friend class EdgeSet; | 
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|  | 1105 | public: | 
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|  | 1106 | OutEdgeIt() : Edge() { } | 
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|  | 1107 | OutEdgeIt (Invalid i) : Edge(i) { } | 
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| [774] | 1108 | OutEdgeIt(const EdgeSet& _G, Edge e) : Edge(e), G(&_G) { } | 
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| [400] | 1109 |  | 
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| [774] | 1110 | OutEdgeIt(const EdgeSet& _G,const Node v) : | 
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|  | 1111 | Edge(_G.nodes[v].first_out), G(&_G) { } | 
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| [844] | 1112 | OutEdgeIt &operator++() { | 
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|  | 1113 | Edge::n = G->edges[Edge::n].next_out; | 
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|  | 1114 | return *this; | 
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|  | 1115 | } | 
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| [400] | 1116 | }; | 
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|  | 1117 |  | 
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|  | 1118 | class InEdgeIt : public Edge { | 
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| [774] | 1119 | const EdgeSet *G; | 
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| [400] | 1120 | friend class EdgeSet; | 
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|  | 1121 | public: | 
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|  | 1122 | InEdgeIt() : Edge() { } | 
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|  | 1123 | InEdgeIt (Invalid i) : Edge(i) { } | 
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| [774] | 1124 | InEdgeIt(const EdgeSet& _G, Edge e) : Edge(e), G(&_G) { } | 
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|  | 1125 | InEdgeIt(const EdgeSet& _G,Node v) | 
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|  | 1126 | : Edge(_G.nodes[v].first_in), G(&_G) { } | 
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| [844] | 1127 | InEdgeIt &operator++() { | 
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|  | 1128 | Edge::n = G->edges[Edge::n].next_in; | 
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|  | 1129 | return *this; | 
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|  | 1130 | } | 
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| [400] | 1131 | }; | 
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| [782] | 1132 |  | 
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| [400] | 1133 | }; | 
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| [406] | 1134 |  | 
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| [579] | 1135 | template<typename GG> | 
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|  | 1136 | inline int EdgeSet<GG>::id(Node v) const { return G.id(v); } | 
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| [531] | 1137 |  | 
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| [406] | 1138 | /// @} | 
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|  | 1139 |  | 
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| [395] | 1140 | } //namespace hugo | 
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|  | 1141 |  | 
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| [405] | 1142 | #endif //HUGO_LIST_GRAPH_H | 
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