reverse_graph.hpp 20 KB

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  1. // (C) Copyright David Abrahams 2000.
  2. // Distributed under the Boost Software License, Version 1.0. (See
  3. // accompanying file LICENSE_1_0.txt or copy at
  4. // http://www.boost.org/LICENSE_1_0.txt)
  5. #ifndef REVERSE_GRAPH_DWA092300_H_
  6. # define REVERSE_GRAPH_DWA092300_H_
  7. #include <boost/graph/adjacency_iterator.hpp>
  8. #include <boost/graph/properties.hpp>
  9. #include <boost/iterator/transform_iterator.hpp>
  10. #include <boost/tuple/tuple.hpp>
  11. #include <boost/type_traits.hpp>
  12. #include <boost/mpl/if.hpp>
  13. #if BOOST_WORKAROUND(BOOST_MSVC, < 1300)
  14. // Stay out of the way of the concept checking class
  15. # define BidirectionalGraph BidirectionalGraph_
  16. #endif
  17. namespace boost {
  18. struct reverse_graph_tag { };
  19. namespace detail {
  20. template <typename EdgeDesc>
  21. class reverse_graph_edge_descriptor {
  22. public:
  23. EdgeDesc underlying_descx; // Odd name is because this needs to be public but shouldn't be exposed to users anymore
  24. private:
  25. typedef EdgeDesc base_descriptor_type;
  26. public:
  27. explicit reverse_graph_edge_descriptor(const EdgeDesc& underlying_descx = EdgeDesc())
  28. : underlying_descx(underlying_descx) {}
  29. friend bool operator==(const reverse_graph_edge_descriptor& a, const reverse_graph_edge_descriptor& b) {
  30. return a.underlying_descx == b.underlying_descx;
  31. }
  32. friend bool operator!=(const reverse_graph_edge_descriptor& a, const reverse_graph_edge_descriptor& b) {
  33. return a.underlying_descx != b.underlying_descx;
  34. }
  35. friend bool operator<(const reverse_graph_edge_descriptor& a, const reverse_graph_edge_descriptor& b) {
  36. return a.underlying_descx < b.underlying_descx;
  37. }
  38. friend bool operator>(const reverse_graph_edge_descriptor& a, const reverse_graph_edge_descriptor& b) {
  39. return a.underlying_descx > b.underlying_descx;
  40. }
  41. friend bool operator<=(const reverse_graph_edge_descriptor& a, const reverse_graph_edge_descriptor& b) {
  42. return a.underlying_descx <= b.underlying_descx;
  43. }
  44. friend bool operator>=(const reverse_graph_edge_descriptor& a, const reverse_graph_edge_descriptor& b) {
  45. return a.underlying_descx >= b.underlying_descx;
  46. }
  47. };
  48. template <typename EdgeDesc>
  49. struct reverse_graph_edge_descriptor_maker {
  50. typedef reverse_graph_edge_descriptor<EdgeDesc> result_type;
  51. reverse_graph_edge_descriptor<EdgeDesc> operator()(const EdgeDesc& ed) const {
  52. return reverse_graph_edge_descriptor<EdgeDesc>(ed);
  53. }
  54. };
  55. template <typename EdgeDesc, typename Iter>
  56. std::pair<transform_iterator<reverse_graph_edge_descriptor_maker<EdgeDesc>, Iter>,
  57. transform_iterator<reverse_graph_edge_descriptor_maker<EdgeDesc>, Iter> >
  58. reverse_edge_iter_pair(const std::pair<Iter, Iter>& ip) {
  59. return std::make_pair(make_transform_iterator(ip.first, reverse_graph_edge_descriptor_maker<EdgeDesc>()),
  60. make_transform_iterator(ip.second, reverse_graph_edge_descriptor_maker<EdgeDesc>()));
  61. }
  62. // Get the underlying descriptor from a vertex or edge descriptor
  63. template <typename Desc>
  64. struct get_underlying_descriptor_from_reverse_descriptor {
  65. typedef Desc type;
  66. static Desc convert(const Desc& d) {return d;}
  67. };
  68. template <typename Desc>
  69. struct get_underlying_descriptor_from_reverse_descriptor<reverse_graph_edge_descriptor<Desc> > {
  70. typedef Desc type;
  71. static Desc convert(const reverse_graph_edge_descriptor<Desc>& d) {return d.underlying_descx;}
  72. };
  73. template <bool isEdgeList> struct choose_rev_edge_iter { };
  74. template <> struct choose_rev_edge_iter<true> {
  75. template <class G> struct bind_ {
  76. typedef transform_iterator<reverse_graph_edge_descriptor_maker<typename graph_traits<G>::edge_descriptor>, typename graph_traits<G>::edge_iterator> type;
  77. };
  78. };
  79. template <> struct choose_rev_edge_iter<false> {
  80. template <class G> struct bind_ {
  81. typedef void type;
  82. };
  83. };
  84. } // namespace detail
  85. template <class BidirectionalGraph, class GraphRef = const BidirectionalGraph&>
  86. class reverse_graph {
  87. typedef reverse_graph<BidirectionalGraph, GraphRef> Self;
  88. typedef graph_traits<BidirectionalGraph> Traits;
  89. public:
  90. typedef BidirectionalGraph base_type;
  91. typedef GraphRef base_ref_type;
  92. // Constructor
  93. reverse_graph(GraphRef g) : m_g(g) {}
  94. // Conversion from reverse_graph on non-const reference to one on const reference
  95. reverse_graph(const reverse_graph<BidirectionalGraph, BidirectionalGraph&>& o): m_g(o.m_g) {}
  96. // Graph requirements
  97. typedef typename Traits::vertex_descriptor vertex_descriptor;
  98. typedef detail::reverse_graph_edge_descriptor<typename Traits::edge_descriptor> edge_descriptor;
  99. typedef typename Traits::directed_category directed_category;
  100. typedef typename Traits::edge_parallel_category edge_parallel_category;
  101. typedef typename Traits::traversal_category traversal_category;
  102. // IncidenceGraph requirements
  103. typedef transform_iterator<detail::reverse_graph_edge_descriptor_maker<typename Traits::edge_descriptor>, typename Traits::in_edge_iterator> out_edge_iterator;
  104. typedef typename Traits::degree_size_type degree_size_type;
  105. // BidirectionalGraph requirements
  106. typedef transform_iterator<detail::reverse_graph_edge_descriptor_maker<typename Traits::edge_descriptor>, typename Traits::out_edge_iterator> in_edge_iterator;
  107. // AdjacencyGraph requirements
  108. typedef typename adjacency_iterator_generator<Self, vertex_descriptor, out_edge_iterator>::type adjacency_iterator;
  109. // VertexListGraph requirements
  110. typedef typename Traits::vertex_iterator vertex_iterator;
  111. // EdgeListGraph requirements
  112. enum { is_edge_list = is_convertible<traversal_category,
  113. edge_list_graph_tag>::value };
  114. typedef detail::choose_rev_edge_iter<is_edge_list> ChooseEdgeIter;
  115. typedef typename ChooseEdgeIter::
  116. template bind_<BidirectionalGraph>::type edge_iterator;
  117. typedef typename Traits::vertices_size_type vertices_size_type;
  118. typedef typename Traits::edges_size_type edges_size_type;
  119. typedef reverse_graph_tag graph_tag;
  120. #ifndef BOOST_GRAPH_NO_BUNDLED_PROPERTIES
  121. // Bundled properties support
  122. template<typename Descriptor>
  123. typename graph::detail::bundled_result<
  124. BidirectionalGraph,
  125. typename detail::get_underlying_descriptor_from_reverse_descriptor<Descriptor>::type
  126. >::type&
  127. operator[](Descriptor x)
  128. { return m_g[detail::get_underlying_descriptor_from_reverse_descriptor<Descriptor>::convert(x)]; }
  129. template<typename Descriptor>
  130. typename graph::detail::bundled_result<
  131. BidirectionalGraph,
  132. typename detail::get_underlying_descriptor_from_reverse_descriptor<Descriptor>::type
  133. >::type const&
  134. operator[](Descriptor x) const
  135. { return m_g[detail::get_underlying_descriptor_from_reverse_descriptor<Descriptor>::convert(x)]; }
  136. #endif // BOOST_GRAPH_NO_BUNDLED_PROPERTIES
  137. static vertex_descriptor null_vertex()
  138. { return Traits::null_vertex(); }
  139. // would be private, but template friends aren't portable enough.
  140. // private:
  141. GraphRef m_g;
  142. };
  143. // These are separate so they are not instantiated unless used (see bug 1021)
  144. template <class BidirectionalGraph, class GraphRef>
  145. struct vertex_property_type<reverse_graph<BidirectionalGraph, GraphRef> > {
  146. typedef typename boost::vertex_property_type<BidirectionalGraph>::type type;
  147. };
  148. template <class BidirectionalGraph, class GraphRef>
  149. struct edge_property_type<reverse_graph<BidirectionalGraph, GraphRef> > {
  150. typedef typename boost::edge_property_type<BidirectionalGraph>::type type;
  151. };
  152. template <class BidirectionalGraph, class GraphRef>
  153. struct graph_property_type<reverse_graph<BidirectionalGraph, GraphRef> > {
  154. typedef typename boost::graph_property_type<BidirectionalGraph>::type type;
  155. };
  156. #ifndef BOOST_GRAPH_NO_BUNDLED_PROPERTIES
  157. template<typename Graph, typename GraphRef>
  158. struct vertex_bundle_type<reverse_graph<Graph, GraphRef> >
  159. : vertex_bundle_type<Graph> { };
  160. template<typename Graph, typename GraphRef>
  161. struct edge_bundle_type<reverse_graph<Graph, GraphRef> >
  162. : edge_bundle_type<Graph> { };
  163. template<typename Graph, typename GraphRef>
  164. struct graph_bundle_type<reverse_graph<Graph, GraphRef> >
  165. : graph_bundle_type<Graph> { };
  166. #endif // BOOST_GRAPH_NO_BUNDLED_PROPERTIES
  167. template <class BidirectionalGraph>
  168. inline reverse_graph<BidirectionalGraph>
  169. make_reverse_graph(const BidirectionalGraph& g)
  170. {
  171. return reverse_graph<BidirectionalGraph>(g);
  172. }
  173. template <class BidirectionalGraph>
  174. inline reverse_graph<BidirectionalGraph, BidirectionalGraph&>
  175. make_reverse_graph(BidirectionalGraph& g)
  176. {
  177. return reverse_graph<BidirectionalGraph, BidirectionalGraph&>(g);
  178. }
  179. template <class BidirectionalGraph, class GRef>
  180. std::pair<typename reverse_graph<BidirectionalGraph>::vertex_iterator,
  181. typename reverse_graph<BidirectionalGraph>::vertex_iterator>
  182. vertices(const reverse_graph<BidirectionalGraph,GRef>& g)
  183. {
  184. return vertices(g.m_g);
  185. }
  186. template <class BidirectionalGraph, class GRef>
  187. std::pair<typename reverse_graph<BidirectionalGraph>::edge_iterator,
  188. typename reverse_graph<BidirectionalGraph>::edge_iterator>
  189. edges(const reverse_graph<BidirectionalGraph,GRef>& g)
  190. {
  191. return detail::reverse_edge_iter_pair<typename graph_traits<BidirectionalGraph>::edge_descriptor>(edges(g.m_g));
  192. }
  193. template <class BidirectionalGraph, class GRef>
  194. inline std::pair<typename reverse_graph<BidirectionalGraph>::out_edge_iterator,
  195. typename reverse_graph<BidirectionalGraph>::out_edge_iterator>
  196. out_edges(const typename graph_traits<BidirectionalGraph>::vertex_descriptor u,
  197. const reverse_graph<BidirectionalGraph,GRef>& g)
  198. {
  199. return detail::reverse_edge_iter_pair<typename graph_traits<BidirectionalGraph>::edge_descriptor>(in_edges(u, g.m_g));
  200. }
  201. template <class BidirectionalGraph, class GRef>
  202. inline typename graph_traits<BidirectionalGraph>::vertices_size_type
  203. num_vertices(const reverse_graph<BidirectionalGraph,GRef>& g)
  204. {
  205. return num_vertices(g.m_g);
  206. }
  207. template <class BidirectionalGraph, class GRef>
  208. inline typename reverse_graph<BidirectionalGraph>::edges_size_type
  209. num_edges(const reverse_graph<BidirectionalGraph,GRef>& g)
  210. {
  211. return num_edges(g.m_g);
  212. }
  213. template <class BidirectionalGraph, class GRef>
  214. inline typename graph_traits<BidirectionalGraph>::degree_size_type
  215. out_degree(const typename graph_traits<BidirectionalGraph>::vertex_descriptor u,
  216. const reverse_graph<BidirectionalGraph,GRef>& g)
  217. {
  218. return in_degree(u, g.m_g);
  219. }
  220. template <class BidirectionalGraph, class GRef>
  221. inline typename graph_traits<BidirectionalGraph>::vertex_descriptor
  222. vertex(const typename graph_traits<BidirectionalGraph>::vertices_size_type v,
  223. const reverse_graph<BidirectionalGraph,GRef>& g)
  224. {
  225. return vertex(v, g.m_g);
  226. }
  227. template <class BidirectionalGraph, class GRef>
  228. inline std::pair< typename graph_traits<reverse_graph<BidirectionalGraph,GRef> >::edge_descriptor,
  229. bool>
  230. edge(const typename graph_traits<BidirectionalGraph>::vertex_descriptor u,
  231. const typename graph_traits<BidirectionalGraph>::vertex_descriptor v,
  232. const reverse_graph<BidirectionalGraph,GRef>& g)
  233. {
  234. typedef typename graph_traits<BidirectionalGraph>::edge_descriptor underlying_edge_descriptor;
  235. std::pair<underlying_edge_descriptor, bool> e = edge(v, u, g.m_g);
  236. return std::make_pair(detail::reverse_graph_edge_descriptor<underlying_edge_descriptor>(e.first), e.second);
  237. }
  238. template <class BidirectionalGraph, class GRef>
  239. inline std::pair<typename reverse_graph<BidirectionalGraph>::in_edge_iterator,
  240. typename reverse_graph<BidirectionalGraph>::in_edge_iterator>
  241. in_edges(const typename graph_traits<BidirectionalGraph>::vertex_descriptor u,
  242. const reverse_graph<BidirectionalGraph,GRef>& g)
  243. {
  244. return detail::reverse_edge_iter_pair<typename graph_traits<BidirectionalGraph>::edge_descriptor>(out_edges(u, g.m_g));
  245. }
  246. template <class BidirectionalGraph, class GRef>
  247. inline std::pair<typename reverse_graph<BidirectionalGraph,GRef>::adjacency_iterator,
  248. typename reverse_graph<BidirectionalGraph,GRef>::adjacency_iterator>
  249. adjacent_vertices(typename graph_traits<BidirectionalGraph>::vertex_descriptor u,
  250. const reverse_graph<BidirectionalGraph,GRef>& g)
  251. {
  252. typedef reverse_graph<BidirectionalGraph,GRef> Graph;
  253. typename graph_traits<Graph>::out_edge_iterator first, last;
  254. boost::tie(first, last) = out_edges(u, g);
  255. typedef typename graph_traits<Graph>::adjacency_iterator adjacency_iterator;
  256. return std::make_pair(adjacency_iterator(first, const_cast<Graph*>(&g)),
  257. adjacency_iterator(last, const_cast<Graph*>(&g)));
  258. }
  259. template <class BidirectionalGraph, class GRef>
  260. inline typename graph_traits<BidirectionalGraph>::degree_size_type
  261. in_degree(const typename graph_traits<BidirectionalGraph>::vertex_descriptor u,
  262. const reverse_graph<BidirectionalGraph,GRef>& g)
  263. {
  264. return out_degree(u, g.m_g);
  265. }
  266. template <class Edge, class BidirectionalGraph, class GRef>
  267. inline typename graph_traits<BidirectionalGraph>::vertex_descriptor
  268. source(const detail::reverse_graph_edge_descriptor<Edge>& e, const reverse_graph<BidirectionalGraph,GRef>& g)
  269. {
  270. return target(e.underlying_descx, g.m_g);
  271. }
  272. template <class Edge, class BidirectionalGraph, class GRef>
  273. inline typename graph_traits<BidirectionalGraph>::vertex_descriptor
  274. target(const detail::reverse_graph_edge_descriptor<Edge>& e, const reverse_graph<BidirectionalGraph,GRef>& g)
  275. {
  276. return source(e.underlying_descx, g.m_g);
  277. }
  278. namespace detail {
  279. template <typename PM>
  280. struct reverse_graph_edge_property_map {
  281. private:
  282. PM underlying_pm;
  283. public:
  284. typedef reverse_graph_edge_descriptor<typename property_traits<PM>::key_type> key_type;
  285. typedef typename property_traits<PM>::value_type value_type;
  286. typedef typename property_traits<PM>::reference reference;
  287. typedef typename property_traits<PM>::category category;
  288. explicit reverse_graph_edge_property_map(const PM& pm): underlying_pm(pm) {}
  289. friend reference
  290. get(const reverse_graph_edge_property_map& m,
  291. const key_type& e) {
  292. return get(m.underlying_pm, e.underlying_descx);
  293. }
  294. friend void
  295. put(const reverse_graph_edge_property_map& m,
  296. const key_type& e,
  297. const value_type& v) {
  298. put(m.underlying_pm, e.underlying_descx, v);
  299. }
  300. reference operator[](const key_type& k) const {
  301. return (this->underlying_pm)[k.underlying_descx];
  302. }
  303. };
  304. } // namespace detail
  305. template <class BidirGraph, class GRef, class Property>
  306. struct property_map<reverse_graph<BidirGraph, GRef>, Property> {
  307. typedef boost::is_same<typename detail::property_kind_from_graph<BidirGraph, Property>::type, edge_property_tag> is_edge_prop;
  308. typedef boost::is_const<typename boost::remove_reference<GRef>::type> is_ref_const;
  309. typedef typename boost::mpl::if_<
  310. is_ref_const,
  311. typename property_map<BidirGraph, Property>::const_type,
  312. typename property_map<BidirGraph, Property>::type>::type
  313. orig_type;
  314. typedef typename property_map<BidirGraph, Property>::const_type orig_const_type;
  315. typedef typename boost::mpl::if_<is_edge_prop, detail::reverse_graph_edge_property_map<orig_type>, orig_type>::type type;
  316. typedef typename boost::mpl::if_<is_edge_prop, detail::reverse_graph_edge_property_map<orig_const_type>, orig_const_type>::type const_type;
  317. };
  318. template <class BidirGraph, class GRef, class Property>
  319. struct property_map<const reverse_graph<BidirGraph, GRef>, Property> {
  320. typedef boost::is_same<typename detail::property_kind_from_graph<BidirGraph, Property>::type, edge_property_tag> is_edge_prop;
  321. typedef typename property_map<BidirGraph, Property>::const_type orig_const_type;
  322. typedef typename boost::mpl::if_<is_edge_prop, detail::reverse_graph_edge_property_map<orig_const_type>, orig_const_type>::type const_type;
  323. typedef const_type type;
  324. };
  325. template <class BidirGraph, class GRef, class Property>
  326. typename disable_if<
  327. is_same<Property, edge_underlying_t>,
  328. typename property_map<reverse_graph<BidirGraph,GRef>, Property>::type>::type
  329. get(Property p, reverse_graph<BidirGraph,GRef>& g)
  330. {
  331. return typename property_map<reverse_graph<BidirGraph,GRef>, Property>::type(get(p, g.m_g));
  332. }
  333. template <class BidirGraph, class GRef, class Property>
  334. typename disable_if<
  335. is_same<Property, edge_underlying_t>,
  336. typename property_map<reverse_graph<BidirGraph,GRef>, Property>::const_type>::type
  337. get(Property p, const reverse_graph<BidirGraph,GRef>& g)
  338. {
  339. const BidirGraph& gref = g.m_g; // in case GRef is non-const
  340. return typename property_map<reverse_graph<BidirGraph,GRef>, Property>::const_type(get(p, gref));
  341. }
  342. template <class BidirectionalGraph, class GRef, class Property, class Key>
  343. typename disable_if<
  344. is_same<Property, edge_underlying_t>,
  345. typename property_traits<
  346. typename property_map<reverse_graph<BidirectionalGraph, GRef>, Property>::const_type
  347. >::value_type>::type
  348. get(Property p, const reverse_graph<BidirectionalGraph,GRef>& g, const Key& k)
  349. {
  350. return get(get(p, g), k);
  351. }
  352. template <class BidirectionalGraph, class GRef, class Property, class Key, class Value>
  353. void
  354. put(Property p, reverse_graph<BidirectionalGraph,GRef>& g, const Key& k,
  355. const Value& val)
  356. {
  357. put(get(p, g), k, val);
  358. }
  359. // Get the underlying descriptor from a reverse_graph's wrapped edge descriptor
  360. namespace detail {
  361. template <class E>
  362. struct underlying_edge_desc_map_type {
  363. E operator[](const reverse_graph_edge_descriptor<E>& k) const {
  364. return k.underlying_descx;
  365. }
  366. };
  367. template <class E>
  368. E
  369. get(underlying_edge_desc_map_type<E> m,
  370. const reverse_graph_edge_descriptor<E>& k)
  371. {
  372. return m[k];
  373. }
  374. }
  375. template <class E>
  376. struct property_traits<detail::underlying_edge_desc_map_type<E> > {
  377. typedef detail::reverse_graph_edge_descriptor<E> key_type;
  378. typedef E value_type;
  379. typedef const E& reference;
  380. typedef readable_property_map_tag category;
  381. };
  382. template <class Graph, class GRef>
  383. struct property_map<reverse_graph<Graph, GRef>, edge_underlying_t> {
  384. private:
  385. typedef typename graph_traits<Graph>::edge_descriptor ed;
  386. public:
  387. typedef detail::underlying_edge_desc_map_type<ed> type;
  388. typedef detail::underlying_edge_desc_map_type<ed> const_type;
  389. };
  390. template <typename T> struct is_reverse_graph: boost::mpl::false_ {};
  391. template <typename G, typename R> struct is_reverse_graph<reverse_graph<G, R> >: boost::mpl::true_ {};
  392. template <class G>
  393. typename enable_if<is_reverse_graph<G>,
  394. detail::underlying_edge_desc_map_type<typename graph_traits<typename G::base_type>::edge_descriptor> >::type
  395. get(edge_underlying_t,
  396. G&)
  397. {
  398. return detail::underlying_edge_desc_map_type<typename graph_traits<typename G::base_type>::edge_descriptor>();
  399. }
  400. template <class G>
  401. typename enable_if<is_reverse_graph<G>, typename graph_traits<typename G::base_type>::edge_descriptor>::type
  402. get(edge_underlying_t,
  403. G&,
  404. const typename graph_traits<G>::edge_descriptor& k)
  405. {
  406. return k.underlying_descx;
  407. }
  408. template <class G>
  409. typename enable_if<is_reverse_graph<G>, detail::underlying_edge_desc_map_type<typename graph_traits<typename G::base_type>::edge_descriptor> >::type
  410. get(edge_underlying_t,
  411. const G&)
  412. {
  413. return detail::underlying_edge_desc_map_type<typename graph_traits<typename G::base_type>::edge_descriptor>();
  414. }
  415. template <class G>
  416. typename enable_if<is_reverse_graph<G>, typename graph_traits<typename G::base_type>::edge_descriptor>::type
  417. get(edge_underlying_t,
  418. const G&,
  419. const typename graph_traits<G>::edge_descriptor& k)
  420. {
  421. return k.underlying_descx;
  422. }
  423. // Access to wrapped graph's graph properties
  424. template<typename BidirectionalGraph, typename GRef, typename Tag,
  425. typename Value>
  426. inline void
  427. set_property(const reverse_graph<BidirectionalGraph,GRef>& g, Tag tag,
  428. const Value& value)
  429. {
  430. set_property(g.m_g, tag, value);
  431. }
  432. template<typename BidirectionalGraph, typename GRef, typename Tag>
  433. inline
  434. typename boost::mpl::if_<
  435. boost::is_const<typename boost::remove_reference<GRef>::type>,
  436. const typename graph_property<BidirectionalGraph, Tag>::type&,
  437. typename graph_property<BidirectionalGraph, Tag>::type& >::type
  438. get_property(const reverse_graph<BidirectionalGraph,GRef>& g, Tag tag)
  439. {
  440. return get_property(g.m_g, tag);
  441. }
  442. } // namespace boost
  443. #endif