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// -*- c++ -*-
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#ifndef HUGO_LIST_GRAPH_H
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#define HUGO_LIST_GRAPH_H
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#include <iostream>
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#include <vector>
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#include <invalid.h>
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#include "vector_map.h"
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#include "edge_map_registry.h"
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#include "node_map_registry.h"
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#include "edge_map_base.h"
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#include "node_map_base.h"
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namespace hugo {
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template <typename It>
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int count(It it) {
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int i=0;
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for( ; it.valid(); ++it) { ++i; }
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return i;
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}
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class ListGraph {
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class node_item;
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class edge_item;
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public:
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class Node;
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class NodeIt;
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class Edge;
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class EdgeIt;
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class OutEdgeIt;
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class InEdgeIt;
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class SymEdgeIt;
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// template <typename T> class NodeMap;
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// template <typename T> class EdgeMap;
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private:
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// template <typename T> friend class NodeMap;
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// template <typename T> friend class EdgeMap;
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NodeMapRegistry<ListGraph, Node> node_maps;
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template <typename T>
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class NodeMap : public VectorMap<ListGraph, Edge, T, EdgeMapBase> {};
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EdgeMapRegistry<ListGraph, Edge> edge_maps;
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template <typename T>
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class EdgeMap : public VectorMap<Graph, Node, T, NodeMapBase> {};
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int node_id;
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int edge_id;
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int _node_num;
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int _edge_num;
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node_item* _first_node;
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node_item* _last_node;
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class node_item {
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friend class ListGraph;
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template <typename T> friend class NodeMap;
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friend class Node;
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friend class NodeIt;
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friend class Edge;
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friend class EdgeIt;
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friend class OutEdgeIt;
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friend class InEdgeIt;
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friend class SymEdgeIt;
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friend std::ostream& operator<<(std::ostream& os, const Node& i);
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friend std::ostream& operator<<(std::ostream& os, const Edge& i);
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//ListGraph* G;
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int id;
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edge_item* _first_out_edge;
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edge_item* _last_out_edge;
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edge_item* _first_in_edge;
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edge_item* _last_in_edge;
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node_item* _next_node;
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node_item* _prev_node;
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public:
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node_item() { }
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};
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class edge_item {
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friend class ListGraph;
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template <typename T> friend class EdgeMap;
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friend class Node;
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friend class NodeIt;
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friend class Edge;
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friend class EdgeIt;
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friend class OutEdgeIt;
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friend class InEdgeIt;
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friend class SymEdgeIt;
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friend std::ostream& operator<<(std::ostream& os, const Edge& i);
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//ListGraph* G;
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int id;
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node_item* _tail;
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node_item* _head;
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edge_item* _next_out;
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edge_item* _prev_out;
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edge_item* _next_in;
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edge_item* _prev_in;
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public:
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edge_item() { }
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};
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node_item* _add_node() {
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node_item* p=new node_item;
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p->id=node_id++;
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p->_first_out_edge=0;
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p->_last_out_edge=0;
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p->_first_in_edge=0;
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p->_last_in_edge=0;
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p->_prev_node=_last_node;
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p->_next_node=0;
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if (_last_node) _last_node->_next_node=p;
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_last_node=p;
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if (!_first_node) _first_node=p;
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++_node_num;
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return p;
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}
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edge_item* _add_edge(node_item* _tail, node_item* _head) {
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edge_item* e=new edge_item;
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e->id=edge_id++;
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e->_tail=_tail;
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e->_head=_head;
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e->_prev_out=_tail->_last_out_edge;
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if (_tail->_last_out_edge) (_tail->_last_out_edge)->_next_out=e;
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_tail->_last_out_edge=e;
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if (!_tail->_first_out_edge) _tail->_first_out_edge=e;
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e->_next_out=0;
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e->_prev_in=_head->_last_in_edge;
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if (_head->_last_in_edge) (_head->_last_in_edge)->_next_in=e;
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_head->_last_in_edge=e;
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if (!_head->_first_in_edge) { _head->_first_in_edge=e; }
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e->_next_in=0;
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++_edge_num;
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return e;
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}
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//deletes a node which has no out edge and no in edge
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void _delete_node(node_item* v) {
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if (v->_next_node) (v->_next_node)->_prev_node=v->_prev_node; else
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_last_node=v->_prev_node;
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if (v->_prev_node) (v->_prev_node)->_next_node=v->_next_node; else
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_first_node=v->_next_node;
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delete v;
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--_node_num;
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}
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void _delete_edge(edge_item* e) {
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if (e->_next_out) (e->_next_out)->_prev_out=e->_prev_out; else
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(e->_tail)->_last_out_edge=e->_prev_out;
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if (e->_prev_out) (e->_prev_out)->_next_out=e->_next_out; else
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(e->_tail)->_first_out_edge=e->_next_out;
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if (e->_next_in) (e->_next_in)->_prev_in=e->_prev_in; else
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(e->_head)->_last_in_edge=e->_prev_in;
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if (e->_prev_in) (e->_prev_in)->_next_in=e->_next_in; else
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(e->_head)->_first_in_edge=e->_next_in;
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delete e;
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--_edge_num;
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}
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void _set_tail(edge_item* e, node_item* _tail) {
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if (e->_next_out) (e->_next_out)->_prev_out=e->_prev_out; else
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(e->_tail)->_last_out_edge=e->_prev_out;
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if (e->_prev_out) (e->_prev_out)->_next_out=e->_next_out; else
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(e->_tail)->_first_out_edge=e->_next_out;
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e->_tail=_tail;
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e->_prev_out=_tail->_last_out_edge;
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if (_tail->_last_out_edge) (_tail->_last_out_edge)->_next_out=e;
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_tail->_last_out_edge=e;
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if (!_tail->_first_out_edge) _tail->_first_out_edge=e;
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e->_next_out=0;
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}
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void _set_head(edge_item* e, node_item* _head) {
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if (e->_next_in) (e->_next_in)->_prev_in=e->_prev_in; else
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(e->_head)->_last_in_edge=e->_prev_in;
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if (e->_prev_in) (e->_prev_in)->_next_in=e->_next_in; else
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(e->_head)->_first_in_edge=e->_next_in;
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e->_head=_head;
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e->_prev_in=_head->_last_in_edge;
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if (_head->_last_in_edge) (_head->_last_in_edge)->_next_in=e;
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_head->_last_in_edge=e;
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if (!_head->_first_in_edge) { _head->_first_in_edge=e; }
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e->_next_in=0;
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}
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public:
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/* default constructor */
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ListGraph() : node_id(0), edge_id(0), _node_num(0), _edge_num(0), _first_node(0), _last_node(0) { }
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~ListGraph() {
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while (first<NodeIt>().valid()) erase(first<NodeIt>());
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}
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int nodeNum() const { return _node_num; }
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int edgeNum() const { return _edge_num; }
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/* functions to construct iterators from the graph, or from each other */
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//NodeIt firstNode() const { return NodeIt(*this); }
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//EdgeIt firstEdge() const { return EdgeIt(*this); }
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//OutEdgeIt firstOutEdge(const Node v) const { return OutEdgeIt(v); }
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//InEdgeIt firstInEdge(const Node v) const { return InEdgeIt(v); }
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//SymEdgeIt firstSymEdge(const Node v) const { return SymEdgeIt(v); }
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Node tail(Edge e) const { return e.tailNode(); }
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Node head(Edge e) const { return e.headNode(); }
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Node aNode(const OutEdgeIt& e) const { return e.aNode(); }
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Node aNode(const InEdgeIt& e) const { return e.aNode(); }
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Node aNode(const SymEdgeIt& e) const { return e.aNode(); }
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Node bNode(const OutEdgeIt& e) const { return e.bNode(); }
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Node bNode(const InEdgeIt& e) const { return e.bNode(); }
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Node bNode(const SymEdgeIt& e) const { return e.bNode(); }
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//Node invalid_node() { return Node(); }
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//Edge invalid_edge() { return Edge(); }
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//OutEdgeIt invalid_out_edge() { return OutEdgeIt(); }
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//InEdgeIt invalid_in_edge() { return InEdgeIt(); }
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//SymEdgeIt invalid_sym_edge() { return SymEdgeIt(); }
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/* same methods in other style */
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/* for experimental purpose */
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NodeIt& /*getF*/first(NodeIt& v) const {
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v=NodeIt(*this); return v; }
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EdgeIt& /*getF*/first(EdgeIt& e) const {
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e=EdgeIt(*this); return e; }
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OutEdgeIt& /*getF*/first(OutEdgeIt& e, Node v) const {
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e=OutEdgeIt(*this, v); return e; }
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InEdgeIt& /*getF*/first(InEdgeIt& e, Node v) const {
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e=InEdgeIt(*this, v); return e; }
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SymEdgeIt& /*getF*/first(SymEdgeIt& e, Node v) const {
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e=SymEdgeIt(*this, v); return e; }
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//void getTail(Node& n, const Edge& e) const { n=tail(e); }
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//void getHead(Node& n, const Edge& e) const { n=head(e); }
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//void getANode(Node& n, const OutEdgeIt& e) const { n=e.aNode(); }
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//void getANode(Node& n, const InEdgeIt& e) const { n=e.aNode(); }
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//void getANode(Node& n, const SymEdgeIt& e) const { n=e.aNode(); }
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//void getBNode(Node& n, const OutEdgeIt& e) const { n=e.bNode(); }
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//void getBNode(Node& n, const InEdgeIt& e) const { n=e.bNode(); }
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//void getBNode(Node& n, const SymEdgeIt& e) const { n=e.bNode(); }
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//void get_invalid(Node& n) { n=Node(); }
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//void get_invalid(Edge& e) { e=Edge(); }
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//void get_invalid(OutEdgeIt& e) { e=OutEdgeIt(); }
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//void get_invalid(InEdgeIt& e) { e=InEdgeIt(); }
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//void get_invalid(SymEdgeIt& e) { e=SymEdgeIt(); }
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template< typename It >
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It first() const {
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It e;
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/*getF*/first(e);
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return e;
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}
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template< typename It >
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It first(Node v) const {
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It e;
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/*getF*/first(e, v);
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return e;
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}
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bool valid(Node n) const { return n.valid(); }
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bool valid(Edge e) const { return e.valid(); }
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template <typename It> It getNext(It it) const {
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It tmp(it); return next(tmp); }
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template <typename It> It& next(It& it) const { return ++it; }
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/* for getting id's of graph objects */
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/* these are important for the implementation of property vectors */
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int id(Node v) const { return v.node->id; }
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int id(Edge e) const { return e.edge->id; }
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/* adding nodes and edges */
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Node addNode() {
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Node n = _add_node();
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node_maps.add(n);
|
deba@340
|
304 |
return n;
|
deba@340
|
305 |
}
|
deba@262
|
306 |
Edge addEdge(Node u, Node v) {
|
deba@340
|
307 |
Edge e = _add_edge(u.node, v.node);
|
deba@340
|
308 |
edge_maps.add(e);
|
deba@340
|
309 |
return e;
|
deba@262
|
310 |
}
|
deba@262
|
311 |
|
deba@262
|
312 |
void erase(Node i) {
|
deba@340
|
313 |
node_map.erase(i);
|
deba@262
|
314 |
while (first<OutEdgeIt>(i).valid()) erase(first<OutEdgeIt>(i));
|
deba@262
|
315 |
while (first<InEdgeIt>(i).valid()) erase(first<InEdgeIt>(i));
|
deba@262
|
316 |
_delete_node(i.node);
|
deba@262
|
317 |
}
|
deba@262
|
318 |
|
deba@340
|
319 |
void erase(Edge e) {
|
deba@340
|
320 |
edge_maps.erase(e);
|
deba@340
|
321 |
_delete_edge(e.edge);
|
deba@340
|
322 |
}
|
deba@262
|
323 |
|
deba@262
|
324 |
void clear() {
|
deba@262
|
325 |
while (first<NodeIt>().valid()) erase(first<NodeIt>());
|
deba@262
|
326 |
}
|
deba@262
|
327 |
|
deba@262
|
328 |
void setTail(Edge e, Node tail) {
|
deba@262
|
329 |
_set_tail(e.edge, tail.node);
|
deba@262
|
330 |
}
|
deba@262
|
331 |
|
deba@262
|
332 |
void setHead(Edge e, Node head) {
|
deba@262
|
333 |
_set_head(e.edge, head.node);
|
deba@262
|
334 |
}
|
deba@262
|
335 |
|
deba@262
|
336 |
/* stream operations, for testing purpose */
|
deba@262
|
337 |
|
deba@262
|
338 |
friend std::ostream& operator<<(std::ostream& os, const Node& i) {
|
deba@262
|
339 |
os << i.node->id; return os;
|
deba@262
|
340 |
}
|
deba@262
|
341 |
friend std::ostream& operator<<(std::ostream& os, const Edge& i) {
|
deba@262
|
342 |
os << "(" << i.edge->_tail->id << "--" << i.edge->id << "->" << i.edge->_head->id << ")";
|
deba@262
|
343 |
return os;
|
deba@262
|
344 |
}
|
deba@262
|
345 |
|
deba@262
|
346 |
class Node {
|
deba@262
|
347 |
friend class ListGraph;
|
deba@262
|
348 |
template <typename T> friend class NodeMap;
|
deba@262
|
349 |
|
deba@262
|
350 |
friend class Edge;
|
deba@262
|
351 |
friend class OutEdgeIt;
|
deba@262
|
352 |
friend class InEdgeIt;
|
deba@262
|
353 |
friend class SymEdgeIt;
|
deba@262
|
354 |
//public: //FIXME: It is required by op= of NodeIt
|
deba@262
|
355 |
protected:
|
deba@262
|
356 |
node_item* node;
|
deba@262
|
357 |
protected:
|
deba@262
|
358 |
friend int ListGraph::id(Node v) const;
|
deba@262
|
359 |
public:
|
deba@262
|
360 |
Node() /*: node(0)*/ { }
|
deba@262
|
361 |
Node(const Invalid&) : node(0) { }
|
deba@262
|
362 |
protected:
|
deba@262
|
363 |
Node(node_item* _node) : node(_node) { }
|
deba@262
|
364 |
bool valid() const { return (node); }
|
deba@262
|
365 |
public:
|
deba@262
|
366 |
//void makeInvalid() { node=0; }
|
deba@262
|
367 |
friend bool operator==(Node u, Node v) { return v.node==u.node; }
|
deba@262
|
368 |
friend bool operator!=(Node u, Node v) { return v.node!=u.node; }
|
deba@262
|
369 |
friend std::ostream& operator<<(std::ostream& os, const Node& i);
|
deba@262
|
370 |
};
|
deba@262
|
371 |
|
deba@262
|
372 |
class NodeIt : public Node {
|
deba@262
|
373 |
friend class ListGraph;
|
deba@262
|
374 |
//protected:
|
deba@262
|
375 |
public: //for everybody but marci
|
deba@262
|
376 |
NodeIt(const ListGraph& G) : Node(G._first_node) { }
|
deba@262
|
377 |
public:
|
deba@262
|
378 |
NodeIt() : Node() { }
|
deba@262
|
379 |
NodeIt(const Invalid& i) : Node(i) { }
|
deba@262
|
380 |
protected:
|
deba@262
|
381 |
NodeIt(node_item* v) : Node(v) { }
|
deba@262
|
382 |
NodeIt& operator++() { node=node->_next_node; return *this; }
|
deba@262
|
383 |
//FIXME::
|
deba@262
|
384 |
// NodeIt& operator=(const Node& e)
|
deba@262
|
385 |
// { node=e.node; return *this; }
|
deba@262
|
386 |
};
|
deba@262
|
387 |
|
deba@262
|
388 |
class Edge {
|
deba@262
|
389 |
friend class ListGraph;
|
deba@262
|
390 |
template <typename T> friend class EdgeMap;
|
deba@262
|
391 |
|
deba@262
|
392 |
friend class Node;
|
deba@262
|
393 |
friend class NodeIt;
|
deba@262
|
394 |
protected:
|
deba@262
|
395 |
edge_item* edge;
|
deba@262
|
396 |
friend int ListGraph::id(Edge e) const;
|
deba@262
|
397 |
public:
|
deba@262
|
398 |
Edge() /*: edge(0)*/ { }
|
deba@262
|
399 |
Edge(const Invalid&) : edge(0) { }
|
deba@262
|
400 |
//Edge() { }
|
deba@262
|
401 |
protected:
|
deba@262
|
402 |
Edge(edge_item* _edge) : edge(_edge) { }
|
deba@262
|
403 |
bool valid() const { return (edge); }
|
deba@262
|
404 |
public:
|
deba@262
|
405 |
//void makeInvalid() { edge=0; }
|
deba@262
|
406 |
friend bool operator==(Edge u, Edge v) { return v.edge==u.edge; }
|
deba@262
|
407 |
friend bool operator!=(Edge u, Edge v) { return v.edge!=u.edge; }
|
deba@262
|
408 |
protected:
|
deba@262
|
409 |
Node tailNode() const { return Node(edge->_tail); }
|
deba@262
|
410 |
Node headNode() const { return Node(edge->_head); }
|
deba@262
|
411 |
public:
|
deba@262
|
412 |
friend std::ostream& operator<<(std::ostream& os, const Edge& i);
|
deba@262
|
413 |
};
|
deba@262
|
414 |
|
deba@262
|
415 |
class EdgeIt : public Edge {
|
deba@262
|
416 |
friend class ListGraph;
|
deba@262
|
417 |
//protected:
|
deba@262
|
418 |
public: //for alpar
|
deba@262
|
419 |
EdgeIt(const ListGraph& G) {
|
deba@262
|
420 |
node_item* v=G._first_node;
|
deba@262
|
421 |
if (v) edge=v->_first_out_edge; else edge=0;
|
deba@262
|
422 |
while (v && !edge) { v=v->_next_node; if (v) edge=v->_first_out_edge; }
|
deba@262
|
423 |
}
|
deba@262
|
424 |
public:
|
deba@262
|
425 |
EdgeIt() : Edge() { }
|
deba@262
|
426 |
EdgeIt(const Invalid& i) : Edge(i) { }
|
deba@262
|
427 |
protected:
|
deba@262
|
428 |
EdgeIt(edge_item* _e) : Edge(_e) { }
|
deba@262
|
429 |
EdgeIt& operator++() {
|
deba@262
|
430 |
node_item* v=edge->_tail;
|
deba@262
|
431 |
edge=edge->_next_out;
|
deba@262
|
432 |
while (v && !edge) { v=v->_next_node; if (v) edge=v->_first_out_edge; }
|
deba@262
|
433 |
return *this;
|
deba@262
|
434 |
}
|
deba@262
|
435 |
};
|
deba@262
|
436 |
|
deba@262
|
437 |
class OutEdgeIt : public Edge {
|
deba@262
|
438 |
friend class ListGraph;
|
deba@262
|
439 |
//node_item* v;
|
deba@262
|
440 |
//protected:
|
deba@262
|
441 |
protected: //for alpar
|
deba@262
|
442 |
OutEdgeIt(const Node& _v) /*: v(_v.node)*/ { edge=_v.node->_first_out_edge; }
|
deba@262
|
443 |
public:
|
deba@262
|
444 |
OutEdgeIt() : Edge()/*, v(0)*/ { }
|
deba@262
|
445 |
OutEdgeIt(const Invalid& i) : Edge(i) { }
|
deba@262
|
446 |
OutEdgeIt(const ListGraph&, Node _v) /*: v(_v.node)*/ { edge=_v.node->_first_out_edge; }
|
deba@262
|
447 |
protected:
|
deba@262
|
448 |
OutEdgeIt& operator++() { edge=edge->_next_out; return *this; }
|
deba@262
|
449 |
protected:
|
deba@262
|
450 |
Node aNode() const { return Node(edge->_tail); }
|
deba@262
|
451 |
Node bNode() const { return Node(edge->_head); }
|
deba@262
|
452 |
};
|
deba@262
|
453 |
|
deba@262
|
454 |
class InEdgeIt : public Edge {
|
deba@262
|
455 |
friend class ListGraph;
|
deba@262
|
456 |
//node_item* v;
|
deba@262
|
457 |
//protected:
|
deba@262
|
458 |
protected: //for alpar
|
deba@262
|
459 |
InEdgeIt(const Node& _v) /*: v(_v.node)*/ { edge=_v.node->_first_in_edge; }
|
deba@262
|
460 |
public:
|
deba@262
|
461 |
InEdgeIt() : Edge()/*, v(0)*/ { }
|
deba@262
|
462 |
InEdgeIt(const Invalid& i) : Edge(i) { }
|
deba@262
|
463 |
InEdgeIt(const ListGraph&, Node _v) /*: v(_v.node)*/ { edge=_v.node->_first_in_edge; }
|
deba@262
|
464 |
protected:
|
deba@262
|
465 |
InEdgeIt& operator++() { edge=edge->_next_in; return *this; }
|
deba@262
|
466 |
protected:
|
deba@262
|
467 |
Node aNode() const { return Node(edge->_head); }
|
deba@262
|
468 |
Node bNode() const { return Node(edge->_tail); }
|
deba@262
|
469 |
};
|
deba@262
|
470 |
|
deba@262
|
471 |
class SymEdgeIt : public Edge {
|
deba@262
|
472 |
friend class ListGraph;
|
deba@262
|
473 |
bool out_or_in; //1 iff out, 0 iff in
|
deba@262
|
474 |
//node_item* v;
|
deba@262
|
475 |
//protected:
|
deba@262
|
476 |
public: //for alpar
|
deba@262
|
477 |
SymEdgeIt(const Node& _v) /*: v(_v.node)*/ {
|
deba@262
|
478 |
out_or_in=1;
|
deba@262
|
479 |
edge=_v.node->_first_out_edge;
|
deba@262
|
480 |
if (!edge) { edge=_v.node->_first_in_edge; out_or_in=0; }
|
deba@262
|
481 |
}
|
deba@262
|
482 |
public:
|
deba@262
|
483 |
SymEdgeIt() : Edge() /*, v(0)*/ { }
|
deba@262
|
484 |
SymEdgeIt(const Invalid& i) : Edge(i) { }
|
deba@262
|
485 |
SymEdgeIt(const ListGraph&, Node _v) /*: v(_v.node)*/ {
|
deba@262
|
486 |
out_or_in=1;
|
deba@262
|
487 |
edge=_v.node->_first_out_edge;
|
deba@262
|
488 |
if (!edge) { edge=_v.node->_first_in_edge; out_or_in=0; }
|
deba@262
|
489 |
}
|
deba@262
|
490 |
protected:
|
deba@262
|
491 |
SymEdgeIt& operator++() {
|
deba@262
|
492 |
if (out_or_in) {
|
deba@262
|
493 |
node_item* v=edge->_tail;
|
deba@262
|
494 |
edge=edge->_next_out;
|
deba@262
|
495 |
if (!edge) { out_or_in=0; edge=v->_first_in_edge; }
|
deba@262
|
496 |
} else {
|
deba@262
|
497 |
edge=edge->_next_in;
|
deba@262
|
498 |
}
|
deba@262
|
499 |
return *this;
|
deba@262
|
500 |
}
|
deba@262
|
501 |
protected:
|
deba@262
|
502 |
Node aNode() const {
|
deba@262
|
503 |
return (out_or_in) ? Node(edge->_tail) : Node(edge->_head); }
|
deba@262
|
504 |
Node bNode() const {
|
deba@262
|
505 |
return (out_or_in) ? Node(edge->_head) : Node(edge->_tail); }
|
deba@262
|
506 |
};
|
deba@262
|
507 |
|
deba@262
|
508 |
};
|
deba@262
|
509 |
|
deba@262
|
510 |
// template< typename T >
|
deba@262
|
511 |
// T ListGraph::first() const {
|
deba@262
|
512 |
// std::cerr << "Invalid use of template<typemane T> T ListGraph::first<T>();" << std::endl;
|
deba@262
|
513 |
// return T();
|
deba@262
|
514 |
// }
|
deba@262
|
515 |
|
deba@262
|
516 |
// template<>
|
deba@262
|
517 |
// ListGraph::NodeIt ListGraph::first<ListGraph::NodeIt>() const {
|
deba@262
|
518 |
// return firstNode();
|
deba@262
|
519 |
// }
|
deba@262
|
520 |
|
deba@262
|
521 |
// template<>
|
deba@262
|
522 |
// ListGraph::EdgeIt ListGraph::first<ListGraph::EdgeIt>() const {
|
deba@262
|
523 |
// return firstEdge();
|
deba@262
|
524 |
// }
|
deba@262
|
525 |
|
deba@262
|
526 |
// template< typename T >
|
deba@262
|
527 |
// T ListGraph::first(ListGraph::Node v) const {
|
deba@262
|
528 |
// std::cerr << "Invalid use of template<typemane T> T ListGraph::first<T>(ListGRaph::Node);" << std::endl;
|
deba@262
|
529 |
// return T();
|
deba@262
|
530 |
// }
|
deba@262
|
531 |
|
deba@262
|
532 |
// template<>
|
deba@262
|
533 |
// ListGraph::OutEdgeIt ListGraph::first<ListGraph::OutEdgeIt>(const ListGraph::Node v) const {
|
deba@262
|
534 |
// return firstOutEdge(v);
|
deba@262
|
535 |
// }
|
deba@262
|
536 |
|
deba@262
|
537 |
// template<>
|
deba@262
|
538 |
// ListGraph::InEdgeIt ListGraph::first<ListGraph::InEdgeIt>(const ListGraph::Node v) const {
|
deba@262
|
539 |
// return firstInEdge(v);
|
deba@262
|
540 |
// }
|
deba@262
|
541 |
|
deba@262
|
542 |
// template<>
|
deba@262
|
543 |
// ListGraph::SymEdgeIt ListGraph::first<ListGraph::SymEdgeIt>(const ListGraph::Node v) const {
|
deba@262
|
544 |
// return firstSymEdge(v);
|
deba@262
|
545 |
// }
|
deba@262
|
546 |
|
deba@262
|
547 |
|
deba@262
|
548 |
} //namespace hugo
|
deba@262
|
549 |
|
deba@262
|
550 |
#endif //HUGO_LIST_GRAPH_H
|