1 /* -*- mode: C++; indent-tabs-mode: nil; -*-
3 * This file is a part of LEMON, a generic C++ optimization library.
5 * Copyright (C) 2003-2009
6 * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
7 * (Egervary Research Group on Combinatorial Optimization, EGRES).
9 * Permission to use, modify and distribute this software is granted
10 * provided that this copyright notice appears in all copies. For
11 * precise terms see the accompanying LICENSE file.
13 * This software is provided "AS IS" with no warranty of any kind,
14 * express or implied, and with no claim as to its suitability for any
19 #ifndef LEMON_FULL_GRAPH_H
20 #define LEMON_FULL_GRAPH_H
22 #include <lemon/core.h>
23 #include <lemon/bits/graph_extender.h>
27 ///\brief FullGraph and FullDigraph classes.
31 class FullDigraphBase {
34 typedef FullDigraphBase Graph;
46 void construct(int n) { _node_num = n; _arc_num = n * n; }
50 typedef True NodeNumTag;
51 typedef True ArcNumTag;
53 Node operator()(int ix) const { return Node(ix); }
54 int index(const Node& node) const { return node._id; }
56 Arc arc(const Node& s, const Node& t) const {
57 return Arc(s._id * _node_num + t._id);
60 int nodeNum() const { return _node_num; }
61 int arcNum() const { return _arc_num; }
63 int maxNodeId() const { return _node_num - 1; }
64 int maxArcId() const { return _arc_num - 1; }
66 Node source(Arc arc) const { return arc._id / _node_num; }
67 Node target(Arc arc) const { return arc._id % _node_num; }
69 static int id(Node node) { return node._id; }
70 static int id(Arc arc) { return arc._id; }
72 static Node nodeFromId(int id) { return Node(id);}
73 static Arc arcFromId(int id) { return Arc(id);}
75 typedef True FindArcTag;
77 Arc findArc(Node s, Node t, Arc prev = INVALID) const {
78 return prev == INVALID ? arc(s, t) : INVALID;
82 friend class FullDigraphBase;
86 Node(int id) : _id(id) {}
89 Node (Invalid) : _id(-1) {}
90 bool operator==(const Node node) const {return _id == node._id;}
91 bool operator!=(const Node node) const {return _id != node._id;}
92 bool operator<(const Node node) const {return _id < node._id;}
96 friend class FullDigraphBase;
99 int _id; // _node_num * source + target;
101 Arc(int id) : _id(id) {}
105 Arc (Invalid) { _id = -1; }
106 bool operator==(const Arc arc) const {return _id == arc._id;}
107 bool operator!=(const Arc arc) const {return _id != arc._id;}
108 bool operator<(const Arc arc) const {return _id < arc._id;}
111 void first(Node& node) const {
112 node._id = _node_num - 1;
115 static void next(Node& node) {
119 void first(Arc& arc) const {
120 arc._id = _arc_num - 1;
123 static void next(Arc& arc) {
127 void firstOut(Arc& arc, const Node& node) const {
128 arc._id = (node._id + 1) * _node_num - 1;
131 void nextOut(Arc& arc) const {
132 if (arc._id % _node_num == 0) arc._id = 0;
136 void firstIn(Arc& arc, const Node& node) const {
137 arc._id = _arc_num + node._id - _node_num;
140 void nextIn(Arc& arc) const {
141 arc._id -= _node_num;
142 if (arc._id < 0) arc._id = -1;
147 typedef DigraphExtender<FullDigraphBase> ExtendedFullDigraphBase;
151 /// \brief A full digraph class.
153 /// This is a simple and fast directed full graph implementation.
154 /// From each node go arcs to each node (including the source node),
155 /// therefore the number of the arcs in the digraph is the square of
156 /// the node number. This digraph type is completely static, so you
157 /// can neither add nor delete either arcs or nodes, and it needs
158 /// constant space in memory.
160 /// This class fully conforms to the \ref concepts::Digraph
161 /// "Digraph concept".
163 /// The \c FullDigraph and \c FullGraph classes are very similar,
164 /// but there are two differences. While this class conforms only
165 /// to the \ref concepts::Digraph "Digraph" concept, the \c FullGraph
166 /// class conforms to the \ref concepts::Graph "Graph" concept,
167 /// moreover \c FullGraph does not contain a loop arc for each
168 /// node as \c FullDigraph does.
171 class FullDigraph : public ExtendedFullDigraphBase {
174 typedef ExtendedFullDigraphBase Parent;
176 /// \brief Constructor
177 FullDigraph() { construct(0); }
179 /// \brief Constructor
182 /// \param n The number of the nodes.
183 FullDigraph(int n) { construct(n); }
185 /// \brief Resizes the digraph
187 /// Resizes the digraph. The function will fully destroy and
188 /// rebuild the digraph. This cause that the maps of the digraph will
189 /// reallocated automatically and the previous values will be lost.
191 Parent::notifier(Arc()).clear();
192 Parent::notifier(Node()).clear();
194 Parent::notifier(Node()).build();
195 Parent::notifier(Arc()).build();
198 /// \brief Returns the node with the given index.
200 /// Returns the node with the given index. Since it is a static
201 /// digraph its nodes can be indexed with integers from the range
202 /// <tt>[0..nodeNum()-1]</tt>.
204 Node operator()(int ix) const { return Parent::operator()(ix); }
206 /// \brief Returns the index of the given node.
208 /// Returns the index of the given node. Since it is a static
209 /// digraph its nodes can be indexed with integers from the range
210 /// <tt>[0..nodeNum()-1]</tt>.
212 int index(const Node& node) const { return Parent::index(node); }
214 /// \brief Returns the arc connecting the given nodes.
216 /// Returns the arc connecting the given nodes.
217 Arc arc(const Node& u, const Node& v) const {
218 return Parent::arc(u, v);
221 /// \brief Number of nodes.
222 int nodeNum() const { return Parent::nodeNum(); }
223 /// \brief Number of arcs.
224 int arcNum() const { return Parent::arcNum(); }
228 class FullGraphBase {
233 typedef FullGraphBase Graph;
243 void construct(int n) { _node_num = n; _edge_num = n * (n - 1) / 2; }
245 int _uid(int e) const {
246 int u = e / _node_num;
247 int v = e % _node_num;
248 return u < v ? u : _node_num - 2 - u;
251 int _vid(int e) const {
252 int u = e / _node_num;
253 int v = e % _node_num;
254 return u < v ? v : _node_num - 1 - v;
257 void _uvid(int e, int& u, int& v) const {
261 u = _node_num - 2 - u;
262 v = _node_num - 1 - v;
266 void _stid(int a, int& s, int& t) const {
274 int _eid(int u, int v) const {
275 if (u < (_node_num - 1) / 2) {
276 return u * _node_num + v;
278 return (_node_num - 1 - u) * _node_num - v - 1;
284 Node operator()(int ix) const { return Node(ix); }
285 int index(const Node& node) const { return node._id; }
287 Edge edge(const Node& u, const Node& v) const {
289 return Edge(_eid(u._id, v._id));
290 } else if (u._id != v._id) {
291 return Edge(_eid(v._id, u._id));
297 Arc arc(const Node& s, const Node& t) const {
299 return Arc((_eid(s._id, t._id) << 1) | 1);
300 } else if (s._id != t._id) {
301 return Arc(_eid(t._id, s._id) << 1);
307 typedef True NodeNumTag;
308 typedef True ArcNumTag;
309 typedef True EdgeNumTag;
311 int nodeNum() const { return _node_num; }
312 int arcNum() const { return 2 * _edge_num; }
313 int edgeNum() const { return _edge_num; }
315 static int id(Node node) { return node._id; }
316 static int id(Arc arc) { return arc._id; }
317 static int id(Edge edge) { return edge._id; }
319 int maxNodeId() const { return _node_num-1; }
320 int maxArcId() const { return 2 * _edge_num-1; }
321 int maxEdgeId() const { return _edge_num-1; }
323 static Node nodeFromId(int id) { return Node(id);}
324 static Arc arcFromId(int id) { return Arc(id);}
325 static Edge edgeFromId(int id) { return Edge(id);}
327 Node u(Edge edge) const {
328 return Node(_uid(edge._id));
331 Node v(Edge edge) const {
332 return Node(_vid(edge._id));
335 Node source(Arc arc) const {
336 return Node((arc._id & 1) == 1 ?
337 _uid(arc._id >> 1) : _vid(arc._id >> 1));
340 Node target(Arc arc) const {
341 return Node((arc._id & 1) == 1 ?
342 _vid(arc._id >> 1) : _uid(arc._id >> 1));
345 typedef True FindEdgeTag;
346 typedef True FindArcTag;
348 Edge findEdge(Node u, Node v, Edge prev = INVALID) const {
349 return prev != INVALID ? INVALID : edge(u, v);
352 Arc findArc(Node s, Node t, Arc prev = INVALID) const {
353 return prev != INVALID ? INVALID : arc(s, t);
357 friend class FullGraphBase;
361 Node(int id) : _id(id) {}
364 Node (Invalid) { _id = -1; }
365 bool operator==(const Node node) const {return _id == node._id;}
366 bool operator!=(const Node node) const {return _id != node._id;}
367 bool operator<(const Node node) const {return _id < node._id;}
371 friend class FullGraphBase;
377 Edge(int id) : _id(id) {}
381 Edge (Invalid) { _id = -1; }
383 bool operator==(const Edge edge) const {return _id == edge._id;}
384 bool operator!=(const Edge edge) const {return _id != edge._id;}
385 bool operator<(const Edge edge) const {return _id < edge._id;}
389 friend class FullGraphBase;
394 Arc(int id) : _id(id) {}
398 Arc (Invalid) { _id = -1; }
400 operator Edge() const { return Edge(_id != -1 ? (_id >> 1) : -1); }
402 bool operator==(const Arc arc) const {return _id == arc._id;}
403 bool operator!=(const Arc arc) const {return _id != arc._id;}
404 bool operator<(const Arc arc) const {return _id < arc._id;}
407 static bool direction(Arc arc) {
408 return (arc._id & 1) == 1;
411 static Arc direct(Edge edge, bool dir) {
412 return Arc((edge._id << 1) | (dir ? 1 : 0));
415 void first(Node& node) const {
416 node._id = _node_num - 1;
419 static void next(Node& node) {
423 void first(Arc& arc) const {
424 arc._id = (_edge_num << 1) - 1;
427 static void next(Arc& arc) {
431 void first(Edge& edge) const {
432 edge._id = _edge_num - 1;
435 static void next(Edge& edge) {
439 void firstOut(Arc& arc, const Node& node) const {
440 int s = node._id, t = _node_num - 1;
442 arc._id = (_eid(s, t) << 1) | 1;
445 arc._id = (t != -1 ? (_eid(t, s) << 1) : -1);
449 void nextOut(Arc& arc) const {
451 _stid(arc._id, s, t);
454 arc._id = (_eid(s, t) << 1) | 1;
457 arc._id = (t != -1 ? (_eid(t, s) << 1) : -1);
461 void firstIn(Arc& arc, const Node& node) const {
462 int s = _node_num - 1, t = node._id;
464 arc._id = (_eid(t, s) << 1);
467 arc._id = (s != -1 ? (_eid(s, t) << 1) | 1 : -1);
471 void nextIn(Arc& arc) const {
473 _stid(arc._id, s, t);
476 arc._id = (_eid(t, s) << 1);
479 arc._id = (s != -1 ? (_eid(s, t) << 1) | 1 : -1);
483 void firstInc(Edge& edge, bool& dir, const Node& node) const {
484 int u = node._id, v = _node_num - 1;
486 edge._id = _eid(u, v);
490 edge._id = (v != -1 ? _eid(v, u) : -1);
495 void nextInc(Edge& edge, bool& dir) const {
498 _uvid(edge._id, u, v);
501 edge._id = _eid(u, v);
504 edge._id = (v != -1 ? _eid(v, u) : -1);
508 _uvid(edge._id, v, u);
510 edge._id = (v != -1 ? _eid(v, u) : -1);
516 typedef GraphExtender<FullGraphBase> ExtendedFullGraphBase;
520 /// \brief An undirected full graph class.
522 /// This is a simple and fast undirected full graph
523 /// implementation. From each node go edge to each other node,
524 /// therefore the number of edges in the graph is \f$n(n-1)/2\f$.
525 /// This graph type is completely static, so you can neither
526 /// add nor delete either edges or nodes, and it needs constant
529 /// This class fully conforms to the \ref concepts::Graph "Graph concept".
531 /// The \c FullGraph and \c FullDigraph classes are very similar,
532 /// but there are two differences. While the \c FullDigraph class
533 /// conforms only to the \ref concepts::Digraph "Digraph" concept,
534 /// this class conforms to the \ref concepts::Graph "Graph" concept,
535 /// moreover \c FullGraph does not contain a loop arc for each
536 /// node as \c FullDigraph does.
539 class FullGraph : public ExtendedFullGraphBase {
542 typedef ExtendedFullGraphBase Parent;
544 /// \brief Constructor
545 FullGraph() { construct(0); }
547 /// \brief Constructor
550 /// \param n The number of the nodes.
551 FullGraph(int n) { construct(n); }
553 /// \brief Resizes the graph
555 /// Resizes the graph. The function will fully destroy and
556 /// rebuild the graph. This cause that the maps of the graph will
557 /// reallocated automatically and the previous values will be lost.
559 Parent::notifier(Arc()).clear();
560 Parent::notifier(Edge()).clear();
561 Parent::notifier(Node()).clear();
563 Parent::notifier(Node()).build();
564 Parent::notifier(Edge()).build();
565 Parent::notifier(Arc()).build();
568 /// \brief Returns the node with the given index.
570 /// Returns the node with the given index. Since it is a static
571 /// graph its nodes can be indexed with integers from the range
572 /// <tt>[0..nodeNum()-1]</tt>.
574 Node operator()(int ix) const { return Parent::operator()(ix); }
576 /// \brief Returns the index of the given node.
578 /// Returns the index of the given node. Since it is a static
579 /// graph its nodes can be indexed with integers from the range
580 /// <tt>[0..nodeNum()-1]</tt>.
582 int index(const Node& node) const { return Parent::index(node); }
584 /// \brief Returns the arc connecting the given nodes.
586 /// Returns the arc connecting the given nodes.
587 Arc arc(const Node& s, const Node& t) const {
588 return Parent::arc(s, t);
591 /// \brief Returns the edge connects the given nodes.
593 /// Returns the edge connects the given nodes.
594 Edge edge(const Node& u, const Node& v) const {
595 return Parent::edge(u, v);
598 /// \brief Number of nodes.
599 int nodeNum() const { return Parent::nodeNum(); }
600 /// \brief Number of arcs.
601 int arcNum() const { return Parent::arcNum(); }
602 /// \brief Number of edges.
603 int edgeNum() const { return Parent::edgeNum(); }
611 #endif //LEMON_FULL_GRAPH_H