adjacency_list.hpp 104 KB

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  1. // -*- c++ -*-
  2. //=======================================================================
  3. // Copyright 1997, 1998, 1999, 2000 University of Notre Dame.
  4. // Copyright 2010 Thomas Claveirole
  5. // Authors: Andrew Lumsdaine, Lie-Quan Lee, Jeremy G. Siek, Thomas Claveirole
  6. //
  7. // Distributed under the Boost Software License, Version 1.0. (See
  8. // accompanying file LICENSE_1_0.txt or copy at
  9. // http://www.boost.org/LICENSE_1_0.txt)
  10. //=======================================================================
  11. #ifndef BOOST_GRAPH_DETAIL_ADJACENCY_LIST_HPP
  12. #define BOOST_GRAPH_DETAIL_ADJACENCY_LIST_HPP
  13. #include <map> // for vertex_map in copy_impl
  14. #include <boost/config.hpp>
  15. #include <boost/detail/workaround.hpp>
  16. #include <boost/operators.hpp>
  17. #include <boost/property_map/property_map.hpp>
  18. #include <boost/pending/container_traits.hpp>
  19. #include <boost/range/irange.hpp>
  20. #include <boost/graph/graph_traits.hpp>
  21. #include <memory>
  22. #include <algorithm>
  23. #include <boost/limits.hpp>
  24. #include <boost/iterator/iterator_adaptor.hpp>
  25. #include <boost/mpl/if.hpp>
  26. #include <boost/mpl/not.hpp>
  27. #include <boost/mpl/and.hpp>
  28. #include <boost/graph/graph_concepts.hpp>
  29. #include <boost/pending/container_traits.hpp>
  30. #include <boost/graph/detail/adj_list_edge_iterator.hpp>
  31. #include <boost/graph/properties.hpp>
  32. #include <boost/pending/property.hpp>
  33. #include <boost/graph/adjacency_iterator.hpp>
  34. #include <boost/static_assert.hpp>
  35. #include <boost/assert.hpp>
  36. /*
  37. Outline for this file:
  38. out_edge_iterator and in_edge_iterator implementation
  39. edge_iterator for undirected graph
  40. stored edge types (these object live in the out-edge/in-edge lists)
  41. directed edges helper class
  42. directed graph helper class
  43. undirected graph helper class
  44. bidirectional graph helper class
  45. bidirectional graph helper class (without edge properties)
  46. bidirectional graph helper class (with edge properties)
  47. adjacency_list helper class
  48. adj_list_impl class
  49. vec_adj_list_impl class
  50. adj_list_gen class
  51. vertex property map
  52. edge property map
  53. Note: it would be nice to merge some of the undirected and
  54. bidirectional code... it is awful similar.
  55. */
  56. namespace boost {
  57. namespace detail {
  58. template <typename DirectedS>
  59. struct directed_category_traits {
  60. typedef directed_tag directed_category;
  61. };
  62. template <>
  63. struct directed_category_traits<directedS> {
  64. typedef directed_tag directed_category;
  65. };
  66. template <>
  67. struct directed_category_traits<undirectedS> {
  68. typedef undirected_tag directed_category;
  69. };
  70. template <>
  71. struct directed_category_traits<bidirectionalS> {
  72. typedef bidirectional_tag directed_category;
  73. };
  74. template <class Vertex>
  75. struct target_is {
  76. target_is(const Vertex& v) : m_target(v) { }
  77. template <class StoredEdge>
  78. bool operator()(const StoredEdge& e) const {
  79. return e.get_target() == m_target;
  80. }
  81. Vertex m_target;
  82. };
  83. // O(E/V)
  84. template <class EdgeList, class vertex_descriptor>
  85. void erase_from_incidence_list(EdgeList& el, vertex_descriptor v,
  86. allow_parallel_edge_tag)
  87. {
  88. boost::graph_detail::erase_if(el, detail::target_is<vertex_descriptor>(v));
  89. }
  90. // O(log(E/V))
  91. template <class EdgeList, class vertex_descriptor>
  92. void erase_from_incidence_list(EdgeList& el, vertex_descriptor v,
  93. disallow_parallel_edge_tag)
  94. {
  95. typedef typename EdgeList::value_type StoredEdge;
  96. el.erase(StoredEdge(v));
  97. }
  98. //=========================================================================
  99. // Out-Edge and In-Edge Iterator Implementation
  100. template <class BaseIter, class VertexDescriptor, class EdgeDescriptor, class Difference>
  101. struct out_edge_iter
  102. : iterator_adaptor<
  103. out_edge_iter<BaseIter, VertexDescriptor, EdgeDescriptor, Difference>
  104. , BaseIter
  105. , EdgeDescriptor
  106. , use_default
  107. , EdgeDescriptor
  108. , Difference
  109. >
  110. {
  111. typedef iterator_adaptor<
  112. out_edge_iter<BaseIter, VertexDescriptor, EdgeDescriptor, Difference>
  113. , BaseIter
  114. , EdgeDescriptor
  115. , use_default
  116. , EdgeDescriptor
  117. , Difference
  118. > super_t;
  119. inline out_edge_iter() { }
  120. inline out_edge_iter(const BaseIter& i, const VertexDescriptor& src)
  121. : super_t(i), m_src(src) { }
  122. inline EdgeDescriptor
  123. dereference() const
  124. {
  125. return EdgeDescriptor(m_src, (*this->base()).get_target(),
  126. &(*this->base()).get_property());
  127. }
  128. VertexDescriptor m_src;
  129. };
  130. template <class BaseIter, class VertexDescriptor, class EdgeDescriptor, class Difference>
  131. struct in_edge_iter
  132. : iterator_adaptor<
  133. in_edge_iter<BaseIter, VertexDescriptor, EdgeDescriptor, Difference>
  134. , BaseIter
  135. , EdgeDescriptor
  136. , use_default
  137. , EdgeDescriptor
  138. , Difference
  139. >
  140. {
  141. typedef iterator_adaptor<
  142. in_edge_iter<BaseIter, VertexDescriptor, EdgeDescriptor, Difference>
  143. , BaseIter
  144. , EdgeDescriptor
  145. , use_default
  146. , EdgeDescriptor
  147. , Difference
  148. > super_t;
  149. inline in_edge_iter() { }
  150. inline in_edge_iter(const BaseIter& i, const VertexDescriptor& src)
  151. : super_t(i), m_src(src) { }
  152. inline EdgeDescriptor
  153. dereference() const
  154. {
  155. return EdgeDescriptor((*this->base()).get_target(), m_src,
  156. &this->base()->get_property());
  157. }
  158. VertexDescriptor m_src;
  159. };
  160. //=========================================================================
  161. // Undirected Edge Iterator Implementation
  162. template <class EdgeIter, class EdgeDescriptor, class Difference>
  163. struct undirected_edge_iter
  164. : iterator_adaptor<
  165. undirected_edge_iter<EdgeIter, EdgeDescriptor, Difference>
  166. , EdgeIter
  167. , EdgeDescriptor
  168. , use_default
  169. , EdgeDescriptor
  170. , Difference
  171. >
  172. {
  173. typedef iterator_adaptor<
  174. undirected_edge_iter<EdgeIter, EdgeDescriptor, Difference>
  175. , EdgeIter
  176. , EdgeDescriptor
  177. , use_default
  178. , EdgeDescriptor
  179. , Difference
  180. > super_t;
  181. undirected_edge_iter() {}
  182. explicit undirected_edge_iter(EdgeIter i)
  183. : super_t(i) {}
  184. inline EdgeDescriptor
  185. dereference() const {
  186. return EdgeDescriptor(
  187. (*this->base()).m_source
  188. , (*this->base()).m_target
  189. , &this->base()->get_property());
  190. }
  191. };
  192. //=========================================================================
  193. // Edge Storage Types (stored in the out-edge/in-edge lists)
  194. template <class Vertex>
  195. class stored_edge
  196. : public boost::equality_comparable1< stored_edge<Vertex>,
  197. boost::less_than_comparable1< stored_edge<Vertex> > >
  198. {
  199. public:
  200. typedef no_property property_type;
  201. inline stored_edge() { }
  202. inline stored_edge(Vertex target, const no_property& = no_property())
  203. : m_target(target) { }
  204. // Need to write this explicitly so stored_edge_property can
  205. // invoke Base::operator= (at least, for SGI MIPSPro compiler)
  206. inline stored_edge& operator=(const stored_edge& x) {
  207. m_target = x.m_target;
  208. return *this;
  209. }
  210. inline Vertex& get_target() const { return m_target; }
  211. inline const no_property& get_property() const { return s_prop; }
  212. inline bool operator==(const stored_edge& x) const
  213. { return m_target == x.get_target(); }
  214. inline bool operator<(const stored_edge& x) const
  215. { return m_target < x.get_target(); }
  216. //protected: need to add hash<> as a friend
  217. static no_property s_prop;
  218. // Sometimes target not used as key in the set, and in that case
  219. // it is ok to change the target.
  220. mutable Vertex m_target;
  221. };
  222. template <class Vertex>
  223. no_property stored_edge<Vertex>::s_prop;
  224. template <class Vertex, class Property>
  225. class stored_edge_property : public stored_edge<Vertex> {
  226. typedef stored_edge_property self;
  227. typedef stored_edge<Vertex> Base;
  228. public:
  229. typedef Property property_type;
  230. inline stored_edge_property() { }
  231. inline stored_edge_property(Vertex target,
  232. const Property& p = Property())
  233. : stored_edge<Vertex>(target), m_property(new Property(p)) { }
  234. stored_edge_property(const self& x)
  235. : Base(x), m_property(const_cast<self&>(x).m_property) { }
  236. self& operator=(const self& x) {
  237. Base::operator=(x);
  238. m_property = const_cast<self&>(x).m_property;
  239. return *this;
  240. }
  241. inline Property& get_property() { return *m_property; }
  242. inline const Property& get_property() const { return *m_property; }
  243. protected:
  244. // Holding the property by-value causes edge-descriptor
  245. // invalidation for add_edge() with EdgeList=vecS. Instead we
  246. // hold a pointer to the property. std::auto_ptr is not
  247. // a perfect fit for the job, but it is darn close.
  248. std::auto_ptr<Property> m_property;
  249. };
  250. template <class Vertex, class Iter, class Property>
  251. class stored_edge_iter
  252. : public stored_edge<Vertex>
  253. {
  254. public:
  255. typedef Property property_type;
  256. inline stored_edge_iter() { }
  257. inline stored_edge_iter(Vertex v)
  258. : stored_edge<Vertex>(v) { }
  259. inline stored_edge_iter(Vertex v, Iter i, void* = 0)
  260. : stored_edge<Vertex>(v), m_iter(i) { }
  261. inline Property& get_property() { return m_iter->get_property(); }
  262. inline const Property& get_property() const {
  263. return m_iter->get_property();
  264. }
  265. inline Iter get_iter() const { return m_iter; }
  266. protected:
  267. Iter m_iter;
  268. };
  269. // For when the EdgeList is a std::vector.
  270. // Want to make the iterator stable, so use an offset
  271. // instead of an iterator into a std::vector
  272. template <class Vertex, class EdgeVec, class Property>
  273. class stored_ra_edge_iter
  274. : public stored_edge<Vertex>
  275. {
  276. typedef typename EdgeVec::iterator Iter;
  277. public:
  278. typedef Property property_type;
  279. inline stored_ra_edge_iter() { }
  280. inline explicit stored_ra_edge_iter(Vertex v) // Only used for comparisons
  281. : stored_edge<Vertex>(v), m_i(0), m_vec(0){ }
  282. inline stored_ra_edge_iter(Vertex v, Iter i, EdgeVec* edge_vec)
  283. : stored_edge<Vertex>(v), m_i(i - edge_vec->begin()), m_vec(edge_vec){ }
  284. inline Property& get_property() { BOOST_ASSERT ((m_vec != 0)); return (*m_vec)[m_i].get_property(); }
  285. inline const Property& get_property() const {
  286. BOOST_ASSERT ((m_vec != 0));
  287. return (*m_vec)[m_i].get_property();
  288. }
  289. inline Iter get_iter() const { BOOST_ASSERT ((m_vec != 0)); return m_vec->begin() + m_i; }
  290. protected:
  291. std::size_t m_i;
  292. EdgeVec* m_vec;
  293. };
  294. } // namespace detail
  295. template <class Tag, class Vertex, class Property>
  296. const typename property_value<Property,Tag>::type&
  297. get(Tag property_tag,
  298. const detail::stored_edge_property<Vertex, Property>& e)
  299. {
  300. return get_property_value(e.get_property(), property_tag);
  301. }
  302. template <class Tag, class Vertex, class Iter, class Property>
  303. const typename property_value<Property,Tag>::type&
  304. get(Tag property_tag,
  305. const detail::stored_edge_iter<Vertex, Iter, Property>& e)
  306. {
  307. return get_property_value(e.get_property(), property_tag);
  308. }
  309. template <class Tag, class Vertex, class EdgeVec, class Property>
  310. const typename property_value<Property,Tag>::type&
  311. get(Tag property_tag,
  312. const detail::stored_ra_edge_iter<Vertex, EdgeVec, Property>& e)
  313. {
  314. return get_property_value(e.get_property(), property_tag);
  315. }
  316. //=========================================================================
  317. // Directed Edges Helper Class
  318. namespace detail {
  319. // O(E/V)
  320. template <class edge_descriptor, class EdgeList, class StoredProperty>
  321. inline void
  322. remove_directed_edge_dispatch(edge_descriptor, EdgeList& el,
  323. StoredProperty& p)
  324. {
  325. for (typename EdgeList::iterator i = el.begin();
  326. i != el.end(); ++i)
  327. if (&(*i).get_property() == &p) {
  328. el.erase(i);
  329. return;
  330. }
  331. }
  332. template <class incidence_iterator, class EdgeList, class Predicate>
  333. inline void
  334. remove_directed_edge_if_dispatch(incidence_iterator first,
  335. incidence_iterator last,
  336. EdgeList& el, Predicate pred,
  337. boost::allow_parallel_edge_tag)
  338. {
  339. // remove_if
  340. while (first != last && !pred(*first))
  341. ++first;
  342. incidence_iterator i = first;
  343. if (first != last)
  344. for (++i; i != last; ++i)
  345. if (!pred(*i)) {
  346. *first.base() = *i.base();
  347. ++first;
  348. }
  349. el.erase(first.base(), el.end());
  350. }
  351. template <class incidence_iterator, class EdgeList, class Predicate>
  352. inline void
  353. remove_directed_edge_if_dispatch(incidence_iterator first,
  354. incidence_iterator last,
  355. EdgeList& el,
  356. Predicate pred,
  357. boost::disallow_parallel_edge_tag)
  358. {
  359. for (incidence_iterator next = first;
  360. first != last; first = next) {
  361. ++next;
  362. if (pred(*first))
  363. el.erase( first.base() );
  364. }
  365. }
  366. template <class PropT, class Graph, class incidence_iterator,
  367. class EdgeList, class Predicate>
  368. inline void
  369. undirected_remove_out_edge_if_dispatch(Graph& g,
  370. incidence_iterator first,
  371. incidence_iterator last,
  372. EdgeList& el, Predicate pred,
  373. boost::allow_parallel_edge_tag)
  374. {
  375. typedef typename Graph::global_edgelist_selector EdgeListS;
  376. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  377. // remove_if
  378. while (first != last && !pred(*first))
  379. ++first;
  380. incidence_iterator i = first;
  381. bool self_loop_removed = false;
  382. if (first != last)
  383. for (; i != last; ++i) {
  384. if (self_loop_removed) {
  385. /* With self loops, the descriptor will show up
  386. * twice. The first time it will be removed, and now it
  387. * will be skipped.
  388. */
  389. self_loop_removed = false;
  390. }
  391. else if (!pred(*i)) {
  392. *first.base() = *i.base();
  393. ++first;
  394. } else {
  395. if (source(*i, g) == target(*i, g)) self_loop_removed = true;
  396. else {
  397. // Remove the edge from the target
  398. detail::remove_directed_edge_dispatch
  399. (*i,
  400. g.out_edge_list(target(*i, g)),
  401. *(PropT*)(*i).get_property());
  402. }
  403. // Erase the edge property
  404. g.m_edges.erase( (*i.base()).get_iter() );
  405. }
  406. }
  407. el.erase(first.base(), el.end());
  408. }
  409. template <class PropT, class Graph, class incidence_iterator,
  410. class EdgeList, class Predicate>
  411. inline void
  412. undirected_remove_out_edge_if_dispatch(Graph& g,
  413. incidence_iterator first,
  414. incidence_iterator last,
  415. EdgeList& el,
  416. Predicate pred,
  417. boost::disallow_parallel_edge_tag)
  418. {
  419. typedef typename Graph::global_edgelist_selector EdgeListS;
  420. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  421. for (incidence_iterator next = first;
  422. first != last; first = next) {
  423. ++next;
  424. if (pred(*first)) {
  425. if (source(*first, g) != target(*first, g)) {
  426. // Remove the edge from the target
  427. detail::remove_directed_edge_dispatch
  428. (*first,
  429. g.out_edge_list(target(*first, g)),
  430. *(PropT*)(*first).get_property());
  431. }
  432. // Erase the edge property
  433. g.m_edges.erase( (*first.base()).get_iter() );
  434. // Erase the edge in the source
  435. el.erase( first.base() );
  436. }
  437. }
  438. }
  439. // O(E/V)
  440. template <class edge_descriptor, class EdgeList, class StoredProperty>
  441. inline void
  442. remove_directed_edge_dispatch(edge_descriptor e, EdgeList& el,
  443. no_property&)
  444. {
  445. for (typename EdgeList::iterator i = el.begin();
  446. i != el.end(); ++i)
  447. if ((*i).get_target() == e.m_target) {
  448. el.erase(i);
  449. return;
  450. }
  451. }
  452. } // namespace detail
  453. template <class Config>
  454. struct directed_edges_helper {
  455. // Placement of these overloaded remove_edge() functions
  456. // inside the class avoids a VC++ bug.
  457. // O(E/V)
  458. inline void
  459. remove_edge(typename Config::edge_descriptor e)
  460. {
  461. typedef typename Config::graph_type graph_type;
  462. graph_type& g = static_cast<graph_type&>(*this);
  463. typename Config::OutEdgeList& el = g.out_edge_list(source(e, g));
  464. typedef typename Config::OutEdgeList::value_type::property_type PType;
  465. detail::remove_directed_edge_dispatch(e, el,
  466. *(PType*)e.get_property());
  467. }
  468. // O(1)
  469. inline void
  470. remove_edge(typename Config::out_edge_iterator iter)
  471. {
  472. typedef typename Config::graph_type graph_type;
  473. graph_type& g = static_cast<graph_type&>(*this);
  474. typename Config::edge_descriptor e = *iter;
  475. typename Config::OutEdgeList& el = g.out_edge_list(source(e, g));
  476. el.erase(iter.base());
  477. }
  478. };
  479. // O(1)
  480. template <class Config>
  481. inline std::pair<typename Config::edge_iterator,
  482. typename Config::edge_iterator>
  483. edges(const directed_edges_helper<Config>& g_)
  484. {
  485. typedef typename Config::graph_type graph_type;
  486. typedef typename Config::edge_iterator edge_iterator;
  487. const graph_type& cg = static_cast<const graph_type&>(g_);
  488. graph_type& g = const_cast<graph_type&>(cg);
  489. return std::make_pair( edge_iterator(g.vertex_set().begin(),
  490. g.vertex_set().begin(),
  491. g.vertex_set().end(), g),
  492. edge_iterator(g.vertex_set().begin(),
  493. g.vertex_set().end(),
  494. g.vertex_set().end(), g) );
  495. }
  496. //=========================================================================
  497. // Directed Graph Helper Class
  498. struct adj_list_dir_traversal_tag :
  499. public virtual vertex_list_graph_tag,
  500. public virtual incidence_graph_tag,
  501. public virtual adjacency_graph_tag,
  502. public virtual edge_list_graph_tag { };
  503. template <class Config>
  504. struct directed_graph_helper
  505. : public directed_edges_helper<Config> {
  506. typedef typename Config::edge_descriptor edge_descriptor;
  507. typedef adj_list_dir_traversal_tag traversal_category;
  508. };
  509. // O(E/V)
  510. template <class Config>
  511. inline void
  512. remove_edge(typename Config::vertex_descriptor u,
  513. typename Config::vertex_descriptor v,
  514. directed_graph_helper<Config>& g_)
  515. {
  516. typedef typename Config::graph_type graph_type;
  517. typedef typename Config::edge_parallel_category Cat;
  518. graph_type& g = static_cast<graph_type&>(g_);
  519. detail::erase_from_incidence_list(g.out_edge_list(u), v, Cat());
  520. }
  521. template <class Config, class Predicate>
  522. inline void
  523. remove_out_edge_if(typename Config::vertex_descriptor u, Predicate pred,
  524. directed_graph_helper<Config>& g_)
  525. {
  526. typedef typename Config::graph_type graph_type;
  527. graph_type& g = static_cast<graph_type&>(g_);
  528. typename Config::out_edge_iterator first, last;
  529. boost::tie(first, last) = out_edges(u, g);
  530. typedef typename Config::edge_parallel_category edge_parallel_category;
  531. detail::remove_directed_edge_if_dispatch
  532. (first, last, g.out_edge_list(u), pred, edge_parallel_category());
  533. }
  534. template <class Config, class Predicate>
  535. inline void
  536. remove_edge_if(Predicate pred, directed_graph_helper<Config>& g_)
  537. {
  538. typedef typename Config::graph_type graph_type;
  539. graph_type& g = static_cast<graph_type&>(g_);
  540. typename Config::vertex_iterator vi, vi_end;
  541. for (boost::tie(vi, vi_end) = vertices(g); vi != vi_end; ++vi)
  542. remove_out_edge_if(*vi, pred, g);
  543. }
  544. template <class EdgeOrIter, class Config>
  545. inline void
  546. remove_edge(EdgeOrIter e_or_iter, directed_graph_helper<Config>& g_)
  547. {
  548. g_.remove_edge(e_or_iter);
  549. }
  550. // O(V + E) for allow_parallel_edges
  551. // O(V * log(E/V)) for disallow_parallel_edges
  552. template <class Config>
  553. inline void
  554. clear_vertex(typename Config::vertex_descriptor u,
  555. directed_graph_helper<Config>& g_)
  556. {
  557. typedef typename Config::graph_type graph_type;
  558. typedef typename Config::edge_parallel_category Cat;
  559. graph_type& g = static_cast<graph_type&>(g_);
  560. typename Config::vertex_iterator vi, viend;
  561. for (boost::tie(vi, viend) = vertices(g); vi != viend; ++vi)
  562. detail::erase_from_incidence_list(g.out_edge_list(*vi), u, Cat());
  563. g.out_edge_list(u).clear();
  564. // clear() should be a req of Sequence and AssociativeContainer,
  565. // or maybe just Container
  566. }
  567. template <class Config>
  568. inline void
  569. clear_out_edges(typename Config::vertex_descriptor u,
  570. directed_graph_helper<Config>& g_)
  571. {
  572. typedef typename Config::graph_type graph_type;
  573. graph_type& g = static_cast<graph_type&>(g_);
  574. g.out_edge_list(u).clear();
  575. // clear() should be a req of Sequence and AssociativeContainer,
  576. // or maybe just Container
  577. }
  578. // O(V), could do better...
  579. template <class Config>
  580. inline typename Config::edges_size_type
  581. num_edges(const directed_graph_helper<Config>& g_)
  582. {
  583. typedef typename Config::graph_type graph_type;
  584. const graph_type& g = static_cast<const graph_type&>(g_);
  585. typename Config::edges_size_type num_e = 0;
  586. typename Config::vertex_iterator vi, vi_end;
  587. for (boost::tie(vi, vi_end) = vertices(g); vi != vi_end; ++vi)
  588. num_e += out_degree(*vi, g);
  589. return num_e;
  590. }
  591. // O(1) for allow_parallel_edge_tag
  592. // O(log(E/V)) for disallow_parallel_edge_tag
  593. template <class Config>
  594. inline std::pair<typename directed_graph_helper<Config>::edge_descriptor, bool>
  595. add_edge(typename Config::vertex_descriptor u,
  596. typename Config::vertex_descriptor v,
  597. const typename Config::edge_property_type& p,
  598. directed_graph_helper<Config>& g_)
  599. {
  600. typedef typename Config::edge_descriptor edge_descriptor;
  601. typedef typename Config::graph_type graph_type;
  602. typedef typename Config::StoredEdge StoredEdge;
  603. graph_type& g = static_cast<graph_type&>(g_);
  604. typename Config::OutEdgeList::iterator i;
  605. bool inserted;
  606. boost::tie(i, inserted) = boost::graph_detail::push(g.out_edge_list(u),
  607. StoredEdge(v, p));
  608. return std::make_pair(edge_descriptor(u, v, &(*i).get_property()),
  609. inserted);
  610. }
  611. // Did not use default argument here because that
  612. // causes Visual C++ to get confused.
  613. template <class Config>
  614. inline std::pair<typename Config::edge_descriptor, bool>
  615. add_edge(typename Config::vertex_descriptor u,
  616. typename Config::vertex_descriptor v,
  617. directed_graph_helper<Config>& g_)
  618. {
  619. typename Config::edge_property_type p;
  620. return add_edge(u, v, p, g_);
  621. }
  622. //=========================================================================
  623. // Undirected Graph Helper Class
  624. template <class Config>
  625. struct undirected_graph_helper;
  626. struct undir_adj_list_traversal_tag :
  627. public virtual vertex_list_graph_tag,
  628. public virtual incidence_graph_tag,
  629. public virtual adjacency_graph_tag,
  630. public virtual edge_list_graph_tag,
  631. public virtual bidirectional_graph_tag { };
  632. namespace detail {
  633. // using class with specialization for dispatch is a VC++ workaround.
  634. template <class StoredProperty>
  635. struct remove_undirected_edge_dispatch {
  636. // O(E/V)
  637. template <class edge_descriptor, class Config>
  638. static void
  639. apply(edge_descriptor e,
  640. undirected_graph_helper<Config>& g_,
  641. StoredProperty& p)
  642. {
  643. typedef typename Config::global_edgelist_selector EdgeListS;
  644. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  645. typedef typename Config::graph_type graph_type;
  646. graph_type& g = static_cast<graph_type&>(g_);
  647. typename Config::OutEdgeList& out_el = g.out_edge_list(source(e, g));
  648. typename Config::OutEdgeList::iterator out_i = out_el.begin();
  649. typename Config::EdgeIter edge_iter_to_erase;
  650. for (; out_i != out_el.end(); ++out_i)
  651. if (&(*out_i).get_property() == &p) {
  652. edge_iter_to_erase = (*out_i).get_iter();
  653. out_el.erase(out_i);
  654. break;
  655. }
  656. typename Config::OutEdgeList& in_el = g.out_edge_list(target(e, g));
  657. typename Config::OutEdgeList::iterator in_i = in_el.begin();
  658. for (; in_i != in_el.end(); ++in_i)
  659. if (&(*in_i).get_property() == &p) {
  660. in_el.erase(in_i);
  661. break;
  662. }
  663. g.m_edges.erase(edge_iter_to_erase);
  664. }
  665. };
  666. template <>
  667. struct remove_undirected_edge_dispatch<no_property> {
  668. // O(E/V)
  669. template <class edge_descriptor, class Config>
  670. static void
  671. apply(edge_descriptor e,
  672. undirected_graph_helper<Config>& g_,
  673. no_property&)
  674. {
  675. typedef typename Config::global_edgelist_selector EdgeListS;
  676. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  677. typedef typename Config::graph_type graph_type;
  678. graph_type& g = static_cast<graph_type&>(g_);
  679. no_property* p = (no_property*)e.get_property();
  680. typename Config::OutEdgeList& out_el = g.out_edge_list(source(e, g));
  681. typename Config::OutEdgeList::iterator out_i = out_el.begin();
  682. typename Config::EdgeIter edge_iter_to_erase;
  683. for (; out_i != out_el.end(); ++out_i)
  684. if (&(*out_i).get_property() == p) {
  685. edge_iter_to_erase = (*out_i).get_iter();
  686. out_el.erase(out_i);
  687. break;
  688. }
  689. typename Config::OutEdgeList& in_el = g.out_edge_list(target(e, g));
  690. typename Config::OutEdgeList::iterator in_i = in_el.begin();
  691. for (; in_i != in_el.end(); ++in_i)
  692. if (&(*in_i).get_property() == p) {
  693. in_el.erase(in_i);
  694. break;
  695. }
  696. g.m_edges.erase(edge_iter_to_erase);
  697. }
  698. };
  699. // O(E/V)
  700. template <class Graph, class EdgeList, class Vertex>
  701. inline void
  702. remove_edge_and_property(Graph& g, EdgeList& el, Vertex v,
  703. boost::allow_parallel_edge_tag cat)
  704. {
  705. typedef typename Graph::global_edgelist_selector EdgeListS;
  706. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  707. typename EdgeList::iterator i = el.begin(), end = el.end();
  708. for (; i != end; ++i) {
  709. if ((*i).get_target() == v) {
  710. // NOTE: Wihtout this skip, this loop will double-delete properties
  711. // of loop edges. This solution is based on the observation that
  712. // the incidence edges of a vertex with a loop are adjacent in the
  713. // out edge list. This *may* actually hold for multisets also.
  714. bool skip = (boost::next(i) != end && i->get_iter() == boost::next(i)->get_iter());
  715. g.m_edges.erase((*i).get_iter());
  716. if (skip) ++i;
  717. }
  718. }
  719. detail::erase_from_incidence_list(el, v, cat);
  720. }
  721. // O(log(E/V))
  722. template <class Graph, class EdgeList, class Vertex>
  723. inline void
  724. remove_edge_and_property(Graph& g, EdgeList& el, Vertex v,
  725. boost::disallow_parallel_edge_tag)
  726. {
  727. typedef typename Graph::global_edgelist_selector EdgeListS;
  728. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  729. typedef typename EdgeList::value_type StoredEdge;
  730. typename EdgeList::iterator i = el.find(StoredEdge(v)), end = el.end();
  731. if (i != end) {
  732. g.m_edges.erase((*i).get_iter());
  733. el.erase(i);
  734. }
  735. }
  736. } // namespace detail
  737. template <class Vertex, class EdgeProperty>
  738. struct list_edge // short name due to VC++ truncation and linker problems
  739. : public boost::detail::edge_base<boost::undirected_tag, Vertex>
  740. {
  741. typedef EdgeProperty property_type;
  742. typedef boost::detail::edge_base<boost::undirected_tag, Vertex> Base;
  743. list_edge(Vertex u, Vertex v, const EdgeProperty& p = EdgeProperty())
  744. : Base(u, v), m_property(p) { }
  745. EdgeProperty& get_property() { return m_property; }
  746. const EdgeProperty& get_property() const { return m_property; }
  747. // the following methods should never be used, but are needed
  748. // to make SGI MIPSpro C++ happy
  749. list_edge() { }
  750. bool operator==(const list_edge&) const { return false; }
  751. bool operator<(const list_edge&) const { return false; }
  752. EdgeProperty m_property;
  753. };
  754. template <class Config>
  755. struct undirected_graph_helper {
  756. typedef undir_adj_list_traversal_tag traversal_category;
  757. // Placement of these overloaded remove_edge() functions
  758. // inside the class avoids a VC++ bug.
  759. // O(E/V)
  760. inline void
  761. remove_edge(typename Config::edge_descriptor e)
  762. {
  763. typedef typename Config::global_edgelist_selector EdgeListS;
  764. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  765. typedef typename Config::OutEdgeList::value_type::property_type PType;
  766. detail::remove_undirected_edge_dispatch<PType>::apply
  767. (e, *this, *(PType*)e.get_property());
  768. }
  769. // O(E/V)
  770. inline void
  771. remove_edge(typename Config::out_edge_iterator iter)
  772. {
  773. this->remove_edge(*iter);
  774. }
  775. };
  776. // Had to make these non-members to avoid accidental instantiation
  777. // on SGI MIPSpro C++
  778. template <class C>
  779. inline typename C::InEdgeList&
  780. in_edge_list(undirected_graph_helper<C>&,
  781. typename C::vertex_descriptor v)
  782. {
  783. typename C::stored_vertex* sv = (typename C::stored_vertex*)v;
  784. return sv->m_out_edges;
  785. }
  786. template <class C>
  787. inline const typename C::InEdgeList&
  788. in_edge_list(const undirected_graph_helper<C>&,
  789. typename C::vertex_descriptor v) {
  790. typename C::stored_vertex* sv = (typename C::stored_vertex*)v;
  791. return sv->m_out_edges;
  792. }
  793. // O(E/V)
  794. template <class EdgeOrIter, class Config>
  795. inline void
  796. remove_edge(EdgeOrIter e, undirected_graph_helper<Config>& g_)
  797. {
  798. typedef typename Config::global_edgelist_selector EdgeListS;
  799. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  800. g_.remove_edge(e);
  801. }
  802. // O(E/V) or O(log(E/V))
  803. template <class Config>
  804. void
  805. remove_edge(typename Config::vertex_descriptor u,
  806. typename Config::vertex_descriptor v,
  807. undirected_graph_helper<Config>& g_)
  808. {
  809. typedef typename Config::global_edgelist_selector EdgeListS;
  810. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  811. typedef typename Config::graph_type graph_type;
  812. graph_type& g = static_cast<graph_type&>(g_);
  813. typedef typename Config::edge_parallel_category Cat;
  814. detail::remove_edge_and_property(g, g.out_edge_list(u), v, Cat());
  815. detail::erase_from_incidence_list(g.out_edge_list(v), u, Cat());
  816. }
  817. template <class Config, class Predicate>
  818. void
  819. remove_out_edge_if(typename Config::vertex_descriptor u, Predicate pred,
  820. undirected_graph_helper<Config>& g_)
  821. {
  822. typedef typename Config::global_edgelist_selector EdgeListS;
  823. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  824. typedef typename Config::graph_type graph_type;
  825. typedef typename Config::OutEdgeList::value_type::property_type PropT;
  826. graph_type& g = static_cast<graph_type&>(g_);
  827. typename Config::out_edge_iterator first, last;
  828. boost::tie(first, last) = out_edges(u, g);
  829. typedef typename Config::edge_parallel_category Cat;
  830. detail::undirected_remove_out_edge_if_dispatch<PropT>
  831. (g, first, last, g.out_edge_list(u), pred, Cat());
  832. }
  833. template <class Config, class Predicate>
  834. void
  835. remove_in_edge_if(typename Config::vertex_descriptor u, Predicate pred,
  836. undirected_graph_helper<Config>& g_)
  837. {
  838. typedef typename Config::global_edgelist_selector EdgeListS;
  839. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  840. remove_out_edge_if(u, pred, g_);
  841. }
  842. // O(E/V * E) or O(log(E/V) * E)
  843. template <class Predicate, class Config>
  844. void
  845. remove_edge_if(Predicate pred, undirected_graph_helper<Config>& g_)
  846. {
  847. typedef typename Config::global_edgelist_selector EdgeListS;
  848. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  849. typedef typename Config::graph_type graph_type;
  850. graph_type& g = static_cast<graph_type&>(g_);
  851. typename Config::edge_iterator ei, ei_end, next;
  852. boost::tie(ei, ei_end) = edges(g);
  853. for (next = ei; ei != ei_end; ei = next) {
  854. ++next;
  855. if (pred(*ei))
  856. remove_edge(*ei, g);
  857. }
  858. }
  859. // O(1)
  860. template <class Config>
  861. inline std::pair<typename Config::edge_iterator,
  862. typename Config::edge_iterator>
  863. edges(const undirected_graph_helper<Config>& g_)
  864. {
  865. typedef typename Config::graph_type graph_type;
  866. typedef typename Config::edge_iterator edge_iterator;
  867. const graph_type& cg = static_cast<const graph_type&>(g_);
  868. graph_type& g = const_cast<graph_type&>(cg);
  869. return std::make_pair( edge_iterator(g.m_edges.begin()),
  870. edge_iterator(g.m_edges.end()) );
  871. }
  872. // O(1)
  873. template <class Config>
  874. inline typename Config::edges_size_type
  875. num_edges(const undirected_graph_helper<Config>& g_)
  876. {
  877. typedef typename Config::graph_type graph_type;
  878. const graph_type& g = static_cast<const graph_type&>(g_);
  879. return g.m_edges.size();
  880. }
  881. // O(E/V * E/V)
  882. template <class Config>
  883. inline void
  884. clear_vertex(typename Config::vertex_descriptor u,
  885. undirected_graph_helper<Config>& g_)
  886. {
  887. typedef typename Config::global_edgelist_selector EdgeListS;
  888. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  889. typedef typename Config::graph_type graph_type;
  890. graph_type& g = static_cast<graph_type&>(g_);
  891. while (true) {
  892. typename Config::out_edge_iterator ei, ei_end;
  893. boost::tie(ei, ei_end) = out_edges(u, g);
  894. if (ei == ei_end) break;
  895. remove_edge(*ei, g);
  896. }
  897. }
  898. // O(1) for allow_parallel_edge_tag
  899. // O(log(E/V)) for disallow_parallel_edge_tag
  900. template <class Config>
  901. inline std::pair<typename Config::edge_descriptor, bool>
  902. add_edge(typename Config::vertex_descriptor u,
  903. typename Config::vertex_descriptor v,
  904. const typename Config::edge_property_type& p,
  905. undirected_graph_helper<Config>& g_)
  906. {
  907. typedef typename Config::StoredEdge StoredEdge;
  908. typedef typename Config::edge_descriptor edge_descriptor;
  909. typedef typename Config::graph_type graph_type;
  910. graph_type& g = static_cast<graph_type&>(g_);
  911. bool inserted;
  912. typename Config::EdgeContainer::value_type e(u, v, p);
  913. typename Config::EdgeContainer::iterator p_iter
  914. = graph_detail::push(g.m_edges, e).first;
  915. typename Config::OutEdgeList::iterator i;
  916. boost::tie(i, inserted) = boost::graph_detail::push(g.out_edge_list(u),
  917. StoredEdge(v, p_iter, &g.m_edges));
  918. if (inserted) {
  919. boost::graph_detail::push(g.out_edge_list(v), StoredEdge(u, p_iter, &g.m_edges));
  920. return std::make_pair(edge_descriptor(u, v, &p_iter->get_property()),
  921. true);
  922. } else {
  923. g.m_edges.erase(p_iter);
  924. return std::make_pair
  925. (edge_descriptor(u, v, &i->get_iter()->get_property()), false);
  926. }
  927. }
  928. template <class Config>
  929. inline std::pair<typename Config::edge_descriptor, bool>
  930. add_edge(typename Config::vertex_descriptor u,
  931. typename Config::vertex_descriptor v,
  932. undirected_graph_helper<Config>& g_)
  933. {
  934. typename Config::edge_property_type p;
  935. return add_edge(u, v, p, g_);
  936. }
  937. // O(1)
  938. template <class Config>
  939. inline typename Config::degree_size_type
  940. degree(typename Config::vertex_descriptor u,
  941. const undirected_graph_helper<Config>& g_)
  942. {
  943. typedef typename Config::graph_type Graph;
  944. const Graph& g = static_cast<const Graph&>(g_);
  945. return out_degree(u, g);
  946. }
  947. template <class Config>
  948. inline std::pair<typename Config::in_edge_iterator,
  949. typename Config::in_edge_iterator>
  950. in_edges(typename Config::vertex_descriptor u,
  951. const undirected_graph_helper<Config>& g_)
  952. {
  953. typedef typename Config::graph_type Graph;
  954. const Graph& cg = static_cast<const Graph&>(g_);
  955. Graph& g = const_cast<Graph&>(cg);
  956. typedef typename Config::in_edge_iterator in_edge_iterator;
  957. return
  958. std::make_pair(in_edge_iterator(g.out_edge_list(u).begin(), u),
  959. in_edge_iterator(g.out_edge_list(u).end(), u));
  960. }
  961. template <class Config>
  962. inline typename Config::degree_size_type
  963. in_degree(typename Config::vertex_descriptor u,
  964. const undirected_graph_helper<Config>& g_)
  965. { return degree(u, g_); }
  966. //=========================================================================
  967. // Bidirectional Graph Helper Class
  968. struct bidir_adj_list_traversal_tag :
  969. public virtual vertex_list_graph_tag,
  970. public virtual incidence_graph_tag,
  971. public virtual adjacency_graph_tag,
  972. public virtual edge_list_graph_tag,
  973. public virtual bidirectional_graph_tag { };
  974. template <class Config>
  975. struct bidirectional_graph_helper
  976. : public directed_edges_helper<Config> {
  977. typedef bidir_adj_list_traversal_tag traversal_category;
  978. };
  979. // Had to make these non-members to avoid accidental instantiation
  980. // on SGI MIPSpro C++
  981. template <class C>
  982. inline typename C::InEdgeList&
  983. in_edge_list(bidirectional_graph_helper<C>&,
  984. typename C::vertex_descriptor v)
  985. {
  986. typename C::stored_vertex* sv = (typename C::stored_vertex*)v;
  987. return sv->m_in_edges;
  988. }
  989. template <class C>
  990. inline const typename C::InEdgeList&
  991. in_edge_list(const bidirectional_graph_helper<C>&,
  992. typename C::vertex_descriptor v) {
  993. typename C::stored_vertex* sv = (typename C::stored_vertex*)v;
  994. return sv->m_in_edges;
  995. }
  996. template <class Predicate, class Config>
  997. inline void
  998. remove_edge_if(Predicate pred, bidirectional_graph_helper<Config>& g_)
  999. {
  1000. typedef typename Config::global_edgelist_selector EdgeListS;
  1001. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1002. typedef typename Config::graph_type graph_type;
  1003. graph_type& g = static_cast<graph_type&>(g_);
  1004. typename Config::edge_iterator ei, ei_end, next;
  1005. boost::tie(ei, ei_end) = edges(g);
  1006. for (next = ei; ei != ei_end; ei = next) {
  1007. ++next;
  1008. if (pred(*ei))
  1009. remove_edge(*ei, g);
  1010. }
  1011. }
  1012. template <class Config>
  1013. inline std::pair<typename Config::in_edge_iterator,
  1014. typename Config::in_edge_iterator>
  1015. in_edges(typename Config::vertex_descriptor u,
  1016. const bidirectional_graph_helper<Config>& g_)
  1017. {
  1018. typedef typename Config::graph_type graph_type;
  1019. const graph_type& cg = static_cast<const graph_type&>(g_);
  1020. graph_type& g = const_cast<graph_type&>(cg);
  1021. typedef typename Config::in_edge_iterator in_edge_iterator;
  1022. return
  1023. std::make_pair(in_edge_iterator(in_edge_list(g, u).begin(), u),
  1024. in_edge_iterator(in_edge_list(g, u).end(), u));
  1025. }
  1026. // O(1)
  1027. template <class Config>
  1028. inline std::pair<typename Config::edge_iterator,
  1029. typename Config::edge_iterator>
  1030. edges(const bidirectional_graph_helper<Config>& g_)
  1031. {
  1032. typedef typename Config::graph_type graph_type;
  1033. typedef typename Config::edge_iterator edge_iterator;
  1034. const graph_type& cg = static_cast<const graph_type&>(g_);
  1035. graph_type& g = const_cast<graph_type&>(cg);
  1036. return std::make_pair( edge_iterator(g.m_edges.begin()),
  1037. edge_iterator(g.m_edges.end()) );
  1038. }
  1039. //=========================================================================
  1040. // Bidirectional Graph Helper Class (with edge properties)
  1041. template <class Config>
  1042. struct bidirectional_graph_helper_with_property
  1043. : public bidirectional_graph_helper<Config>
  1044. {
  1045. typedef typename Config::graph_type graph_type;
  1046. typedef typename Config::out_edge_iterator out_edge_iterator;
  1047. std::pair<out_edge_iterator, out_edge_iterator>
  1048. get_parallel_edge_sublist(typename Config::edge_descriptor e,
  1049. const graph_type& g,
  1050. void*)
  1051. { return out_edges(source(e, g), g); }
  1052. std::pair<out_edge_iterator, out_edge_iterator>
  1053. get_parallel_edge_sublist(typename Config::edge_descriptor e,
  1054. const graph_type& g,
  1055. setS*)
  1056. { return edge_range(source(e, g), target(e, g), g); }
  1057. std::pair<out_edge_iterator, out_edge_iterator>
  1058. get_parallel_edge_sublist(typename Config::edge_descriptor e,
  1059. const graph_type& g,
  1060. multisetS*)
  1061. { return edge_range(source(e, g), target(e, g), g); }
  1062. std::pair<out_edge_iterator, out_edge_iterator>
  1063. get_parallel_edge_sublist(typename Config::edge_descriptor e,
  1064. const graph_type& g,
  1065. hash_setS*)
  1066. { return edge_range(source(e, g), target(e, g), g); }
  1067. // Placement of these overloaded remove_edge() functions
  1068. // inside the class avoids a VC++ bug.
  1069. // O(E/V) or O(log(E/V))
  1070. void
  1071. remove_edge(typename Config::edge_descriptor e)
  1072. {
  1073. typedef typename Config::global_edgelist_selector EdgeListS;
  1074. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1075. graph_type& g = static_cast<graph_type&>(*this);
  1076. typedef typename Config::edgelist_selector OutEdgeListS;
  1077. std::pair<out_edge_iterator, out_edge_iterator> rng =
  1078. get_parallel_edge_sublist(e, g, (OutEdgeListS*)(0));
  1079. rng.first = std::find(rng.first, rng.second, e);
  1080. BOOST_ASSERT(rng.first != rng.second);
  1081. remove_edge(rng.first);
  1082. }
  1083. inline void
  1084. remove_edge(typename Config::out_edge_iterator iter)
  1085. {
  1086. typedef typename Config::global_edgelist_selector EdgeListS;
  1087. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1088. typedef typename Config::graph_type graph_type;
  1089. graph_type& g = static_cast<graph_type&>(*this);
  1090. typename Config::edge_descriptor e = *iter;
  1091. typename Config::OutEdgeList& oel = g.out_edge_list(source(e, g));
  1092. typename Config::InEdgeList& iel = in_edge_list(g, target(e, g));
  1093. typedef typename Config::OutEdgeList::value_type::property_type PType;
  1094. PType& p = *(PType*)e.get_property();
  1095. detail::remove_directed_edge_dispatch(*iter, iel, p);
  1096. g.m_edges.erase(iter.base()->get_iter());
  1097. oel.erase(iter.base());
  1098. }
  1099. };
  1100. // O(E/V) for allow_parallel_edge_tag
  1101. // O(log(E/V)) for disallow_parallel_edge_tag
  1102. template <class Config>
  1103. inline void
  1104. remove_edge(typename Config::vertex_descriptor u,
  1105. typename Config::vertex_descriptor v,
  1106. bidirectional_graph_helper_with_property<Config>& g_)
  1107. {
  1108. typedef typename Config::global_edgelist_selector EdgeListS;
  1109. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1110. typedef typename Config::graph_type graph_type;
  1111. graph_type& g = static_cast<graph_type&>(g_);
  1112. typedef typename Config::edge_parallel_category Cat;
  1113. detail::remove_edge_and_property(g, g.out_edge_list(u), v, Cat());
  1114. detail::erase_from_incidence_list(in_edge_list(g, v), u, Cat());
  1115. }
  1116. // O(E/V) or O(log(E/V))
  1117. template <class EdgeOrIter, class Config>
  1118. inline void
  1119. remove_edge(EdgeOrIter e,
  1120. bidirectional_graph_helper_with_property<Config>& g_)
  1121. {
  1122. typedef typename Config::global_edgelist_selector EdgeListS;
  1123. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1124. g_.remove_edge(e);
  1125. }
  1126. template <class Config, class Predicate>
  1127. inline void
  1128. remove_out_edge_if(typename Config::vertex_descriptor u, Predicate pred,
  1129. bidirectional_graph_helper_with_property<Config>& g_)
  1130. {
  1131. typedef typename Config::global_edgelist_selector EdgeListS;
  1132. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1133. typedef typename Config::graph_type graph_type;
  1134. typedef typename Config::OutEdgeList::value_type::property_type PropT;
  1135. graph_type& g = static_cast<graph_type&>(g_);
  1136. typedef typename Config::EdgeIter EdgeIter;
  1137. typedef std::vector<EdgeIter> Garbage;
  1138. Garbage garbage;
  1139. // First remove the edges from the targets' in-edge lists and
  1140. // from the graph's edge set list.
  1141. typename Config::out_edge_iterator out_i, out_end;
  1142. for (boost::tie(out_i, out_end) = out_edges(u, g); out_i != out_end; ++out_i)
  1143. if (pred(*out_i)) {
  1144. detail::remove_directed_edge_dispatch
  1145. (*out_i, in_edge_list(g, target(*out_i, g)),
  1146. *(PropT*)(*out_i).get_property());
  1147. // Put in garbage to delete later. Will need the properties
  1148. // for the remove_if of the out-edges.
  1149. garbage.push_back((*out_i.base()).get_iter());
  1150. }
  1151. // Now remove the edges from this out-edge list.
  1152. typename Config::out_edge_iterator first, last;
  1153. boost::tie(first, last) = out_edges(u, g);
  1154. typedef typename Config::edge_parallel_category Cat;
  1155. detail::remove_directed_edge_if_dispatch
  1156. (first, last, g.out_edge_list(u), pred, Cat());
  1157. // Now delete the edge properties from the g.m_edges list
  1158. for (typename Garbage::iterator i = garbage.begin();
  1159. i != garbage.end(); ++i)
  1160. g.m_edges.erase(*i);
  1161. }
  1162. template <class Config, class Predicate>
  1163. inline void
  1164. remove_in_edge_if(typename Config::vertex_descriptor v, Predicate pred,
  1165. bidirectional_graph_helper_with_property<Config>& g_)
  1166. {
  1167. typedef typename Config::global_edgelist_selector EdgeListS;
  1168. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1169. typedef typename Config::graph_type graph_type;
  1170. typedef typename Config::OutEdgeList::value_type::property_type PropT;
  1171. graph_type& g = static_cast<graph_type&>(g_);
  1172. typedef typename Config::EdgeIter EdgeIter;
  1173. typedef std::vector<EdgeIter> Garbage;
  1174. Garbage garbage;
  1175. // First remove the edges from the sources' out-edge lists and
  1176. // from the graph's edge set list.
  1177. typename Config::in_edge_iterator in_i, in_end;
  1178. for (boost::tie(in_i, in_end) = in_edges(v, g); in_i != in_end; ++in_i)
  1179. if (pred(*in_i)) {
  1180. typename Config::vertex_descriptor u = source(*in_i, g);
  1181. detail::remove_directed_edge_dispatch
  1182. (*in_i, g.out_edge_list(u), *(PropT*)(*in_i).get_property());
  1183. // Put in garbage to delete later. Will need the properties
  1184. // for the remove_if of the out-edges.
  1185. garbage.push_back((*in_i.base()).get_iter());
  1186. }
  1187. // Now remove the edges from this in-edge list.
  1188. typename Config::in_edge_iterator first, last;
  1189. boost::tie(first, last) = in_edges(v, g);
  1190. typedef typename Config::edge_parallel_category Cat;
  1191. detail::remove_directed_edge_if_dispatch
  1192. (first, last, in_edge_list(g, v), pred, Cat());
  1193. // Now delete the edge properties from the g.m_edges list
  1194. for (typename Garbage::iterator i = garbage.begin();
  1195. i != garbage.end(); ++i)
  1196. g.m_edges.erase(*i);
  1197. }
  1198. // O(1)
  1199. template <class Config>
  1200. inline typename Config::edges_size_type
  1201. num_edges(const bidirectional_graph_helper_with_property<Config>& g_)
  1202. {
  1203. typedef typename Config::graph_type graph_type;
  1204. const graph_type& g = static_cast<const graph_type&>(g_);
  1205. return g.m_edges.size();
  1206. }
  1207. // O(E/V * E/V) for allow_parallel_edge_tag
  1208. // O(E/V * log(E/V)) for disallow_parallel_edge_tag
  1209. template <class Config>
  1210. inline void
  1211. clear_vertex(typename Config::vertex_descriptor u,
  1212. bidirectional_graph_helper_with_property<Config>& g_)
  1213. {
  1214. typedef typename Config::global_edgelist_selector EdgeListS;
  1215. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1216. typedef typename Config::graph_type graph_type;
  1217. typedef typename Config::edge_parallel_category Cat;
  1218. graph_type& g = static_cast<graph_type&>(g_);
  1219. typename Config::OutEdgeList& el = g.out_edge_list(u);
  1220. typename Config::OutEdgeList::iterator
  1221. ei = el.begin(), ei_end = el.end();
  1222. for (; ei != ei_end; ++ei) {
  1223. detail::erase_from_incidence_list
  1224. (in_edge_list(g, (*ei).get_target()), u, Cat());
  1225. g.m_edges.erase((*ei).get_iter());
  1226. }
  1227. typename Config::InEdgeList& in_el = in_edge_list(g, u);
  1228. typename Config::InEdgeList::iterator
  1229. in_ei = in_el.begin(), in_ei_end = in_el.end();
  1230. for (; in_ei != in_ei_end; ++in_ei) {
  1231. detail::erase_from_incidence_list
  1232. (g.out_edge_list((*in_ei).get_target()), u, Cat());
  1233. g.m_edges.erase((*in_ei).get_iter());
  1234. }
  1235. g.out_edge_list(u).clear();
  1236. in_edge_list(g, u).clear();
  1237. }
  1238. template <class Config>
  1239. inline void
  1240. clear_out_edges(typename Config::vertex_descriptor u,
  1241. bidirectional_graph_helper_with_property<Config>& g_)
  1242. {
  1243. typedef typename Config::global_edgelist_selector EdgeListS;
  1244. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1245. typedef typename Config::graph_type graph_type;
  1246. typedef typename Config::edge_parallel_category Cat;
  1247. graph_type& g = static_cast<graph_type&>(g_);
  1248. typename Config::OutEdgeList& el = g.out_edge_list(u);
  1249. typename Config::OutEdgeList::iterator
  1250. ei = el.begin(), ei_end = el.end();
  1251. for (; ei != ei_end; ++ei) {
  1252. detail::erase_from_incidence_list
  1253. (in_edge_list(g, (*ei).get_target()), u, Cat());
  1254. g.m_edges.erase((*ei).get_iter());
  1255. }
  1256. g.out_edge_list(u).clear();
  1257. }
  1258. template <class Config>
  1259. inline void
  1260. clear_in_edges(typename Config::vertex_descriptor u,
  1261. bidirectional_graph_helper_with_property<Config>& g_)
  1262. {
  1263. typedef typename Config::global_edgelist_selector EdgeListS;
  1264. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1265. typedef typename Config::graph_type graph_type;
  1266. typedef typename Config::edge_parallel_category Cat;
  1267. graph_type& g = static_cast<graph_type&>(g_);
  1268. typename Config::InEdgeList& in_el = in_edge_list(g, u);
  1269. typename Config::InEdgeList::iterator
  1270. in_ei = in_el.begin(), in_ei_end = in_el.end();
  1271. for (; in_ei != in_ei_end; ++in_ei) {
  1272. detail::erase_from_incidence_list
  1273. (g.out_edge_list((*in_ei).get_target()), u, Cat());
  1274. g.m_edges.erase((*in_ei).get_iter());
  1275. }
  1276. in_edge_list(g, u).clear();
  1277. }
  1278. // O(1) for allow_parallel_edge_tag
  1279. // O(log(E/V)) for disallow_parallel_edge_tag
  1280. template <class Config>
  1281. inline std::pair<typename Config::edge_descriptor, bool>
  1282. add_edge(typename Config::vertex_descriptor u,
  1283. typename Config::vertex_descriptor v,
  1284. const typename Config::edge_property_type& p,
  1285. bidirectional_graph_helper_with_property<Config>& g_)
  1286. {
  1287. typedef typename Config::graph_type graph_type;
  1288. graph_type& g = static_cast<graph_type&>(g_);
  1289. typedef typename Config::edge_descriptor edge_descriptor;
  1290. typedef typename Config::StoredEdge StoredEdge;
  1291. bool inserted;
  1292. typename Config::EdgeContainer::value_type e(u, v, p);
  1293. typename Config::EdgeContainer::iterator p_iter
  1294. = graph_detail::push(g.m_edges, e).first;
  1295. typename Config::OutEdgeList::iterator i;
  1296. boost::tie(i, inserted) = boost::graph_detail::push(g.out_edge_list(u),
  1297. StoredEdge(v, p_iter, &g.m_edges));
  1298. if (inserted) {
  1299. boost::graph_detail::push(in_edge_list(g, v), StoredEdge(u, p_iter, &g.m_edges));
  1300. return std::make_pair(edge_descriptor(u, v, &p_iter->m_property),
  1301. true);
  1302. } else {
  1303. g.m_edges.erase(p_iter);
  1304. return std::make_pair(edge_descriptor(u, v,
  1305. &i->get_iter()->get_property()),
  1306. false);
  1307. }
  1308. }
  1309. template <class Config>
  1310. inline std::pair<typename Config::edge_descriptor, bool>
  1311. add_edge(typename Config::vertex_descriptor u,
  1312. typename Config::vertex_descriptor v,
  1313. bidirectional_graph_helper_with_property<Config>& g_)
  1314. {
  1315. typename Config::edge_property_type p;
  1316. return add_edge(u, v, p, g_);
  1317. }
  1318. // O(1)
  1319. template <class Config>
  1320. inline typename Config::degree_size_type
  1321. degree(typename Config::vertex_descriptor u,
  1322. const bidirectional_graph_helper_with_property<Config>& g_)
  1323. {
  1324. typedef typename Config::graph_type graph_type;
  1325. const graph_type& g = static_cast<const graph_type&>(g_);
  1326. return in_degree(u, g) + out_degree(u, g);
  1327. }
  1328. //=========================================================================
  1329. // Adjacency List Helper Class
  1330. template <class Config, class Base>
  1331. struct adj_list_helper : public Base
  1332. {
  1333. typedef typename Config::graph_type AdjList;
  1334. typedef typename Config::vertex_descriptor vertex_descriptor;
  1335. typedef typename Config::edge_descriptor edge_descriptor;
  1336. typedef typename Config::out_edge_iterator out_edge_iterator;
  1337. typedef typename Config::in_edge_iterator in_edge_iterator;
  1338. typedef typename Config::adjacency_iterator adjacency_iterator;
  1339. typedef typename Config::inv_adjacency_iterator inv_adjacency_iterator;
  1340. typedef typename Config::vertex_iterator vertex_iterator;
  1341. typedef typename Config::edge_iterator edge_iterator;
  1342. typedef typename Config::directed_category directed_category;
  1343. typedef typename Config::edge_parallel_category edge_parallel_category;
  1344. typedef typename Config::vertices_size_type vertices_size_type;
  1345. typedef typename Config::edges_size_type edges_size_type;
  1346. typedef typename Config::degree_size_type degree_size_type;
  1347. typedef typename Config::StoredEdge StoredEdge;
  1348. typedef typename Config::vertex_property_type vertex_property_type;
  1349. typedef typename Config::edge_property_type edge_property_type;
  1350. typedef typename Config::graph_property_type graph_property_type;
  1351. typedef typename Config::global_edgelist_selector
  1352. global_edgelist_selector;
  1353. typedef typename lookup_one_property<vertex_property_type, vertex_bundle_t>::type vertex_bundled;
  1354. typedef typename lookup_one_property<edge_property_type, edge_bundle_t>::type edge_bundled;
  1355. typedef typename lookup_one_property<graph_property_type, graph_bundle_t>::type graph_bundled;
  1356. };
  1357. template <class Config, class Base>
  1358. inline std::pair<typename Config::adjacency_iterator,
  1359. typename Config::adjacency_iterator>
  1360. adjacent_vertices(typename Config::vertex_descriptor u,
  1361. const adj_list_helper<Config, Base>& g_)
  1362. {
  1363. typedef typename Config::graph_type AdjList;
  1364. const AdjList& cg = static_cast<const AdjList&>(g_);
  1365. AdjList& g = const_cast<AdjList&>(cg);
  1366. typedef typename Config::adjacency_iterator adjacency_iterator;
  1367. typename Config::out_edge_iterator first, last;
  1368. boost::tie(first, last) = out_edges(u, g);
  1369. return std::make_pair(adjacency_iterator(first, &g),
  1370. adjacency_iterator(last, &g));
  1371. }
  1372. template <class Config, class Base>
  1373. inline std::pair<typename Config::inv_adjacency_iterator,
  1374. typename Config::inv_adjacency_iterator>
  1375. inv_adjacent_vertices(typename Config::vertex_descriptor u,
  1376. const adj_list_helper<Config, Base>& g_)
  1377. {
  1378. typedef typename Config::graph_type AdjList;
  1379. const AdjList& cg = static_cast<const AdjList&>(g_);
  1380. AdjList& g = const_cast<AdjList&>(cg);
  1381. typedef typename Config::inv_adjacency_iterator inv_adjacency_iterator;
  1382. typename Config::in_edge_iterator first, last;
  1383. boost::tie(first, last) = in_edges(u, g);
  1384. return std::make_pair(inv_adjacency_iterator(first, &g),
  1385. inv_adjacency_iterator(last, &g));
  1386. }
  1387. template <class Config, class Base>
  1388. inline std::pair<typename Config::out_edge_iterator,
  1389. typename Config::out_edge_iterator>
  1390. out_edges(typename Config::vertex_descriptor u,
  1391. const adj_list_helper<Config, Base>& g_)
  1392. {
  1393. typedef typename Config::graph_type AdjList;
  1394. typedef typename Config::out_edge_iterator out_edge_iterator;
  1395. const AdjList& cg = static_cast<const AdjList&>(g_);
  1396. AdjList& g = const_cast<AdjList&>(cg);
  1397. return
  1398. std::make_pair(out_edge_iterator(g.out_edge_list(u).begin(), u),
  1399. out_edge_iterator(g.out_edge_list(u).end(), u));
  1400. }
  1401. template <class Config, class Base>
  1402. inline std::pair<typename Config::vertex_iterator,
  1403. typename Config::vertex_iterator>
  1404. vertices(const adj_list_helper<Config, Base>& g_)
  1405. {
  1406. typedef typename Config::graph_type AdjList;
  1407. const AdjList& cg = static_cast<const AdjList&>(g_);
  1408. AdjList& g = const_cast<AdjList&>(cg);
  1409. return std::make_pair( g.vertex_set().begin(), g.vertex_set().end() );
  1410. }
  1411. template <class Config, class Base>
  1412. inline typename Config::vertices_size_type
  1413. num_vertices(const adj_list_helper<Config, Base>& g_)
  1414. {
  1415. typedef typename Config::graph_type AdjList;
  1416. const AdjList& g = static_cast<const AdjList&>(g_);
  1417. return g.vertex_set().size();
  1418. }
  1419. template <class Config, class Base>
  1420. inline typename Config::degree_size_type
  1421. out_degree(typename Config::vertex_descriptor u,
  1422. const adj_list_helper<Config, Base>& g_)
  1423. {
  1424. typedef typename Config::graph_type AdjList;
  1425. const AdjList& g = static_cast<const AdjList&>(g_);
  1426. return g.out_edge_list(u).size();
  1427. }
  1428. template <class Config, class Base>
  1429. inline std::pair<typename Config::edge_descriptor, bool>
  1430. edge(typename Config::vertex_descriptor u,
  1431. typename Config::vertex_descriptor v,
  1432. const adj_list_helper<Config, Base>& g_)
  1433. {
  1434. typedef typename Config::graph_type Graph;
  1435. typedef typename Config::StoredEdge StoredEdge;
  1436. const Graph& cg = static_cast<const Graph&>(g_);
  1437. const typename Config::OutEdgeList& el = cg.out_edge_list(u);
  1438. typename Config::OutEdgeList::const_iterator it = graph_detail::
  1439. find(el, StoredEdge(v));
  1440. return std::make_pair(
  1441. typename Config::edge_descriptor
  1442. (u, v, (it == el.end() ? 0 : &(*it).get_property())),
  1443. (it != el.end()));
  1444. }
  1445. template <class Config, class Base>
  1446. inline std::pair<typename Config::out_edge_iterator,
  1447. typename Config::out_edge_iterator>
  1448. edge_range(typename Config::vertex_descriptor u,
  1449. typename Config::vertex_descriptor v,
  1450. const adj_list_helper<Config, Base>& g_)
  1451. {
  1452. typedef typename Config::graph_type Graph;
  1453. typedef typename Config::StoredEdge StoredEdge;
  1454. const Graph& cg = static_cast<const Graph&>(g_);
  1455. Graph& g = const_cast<Graph&>(cg);
  1456. typedef typename Config::out_edge_iterator out_edge_iterator;
  1457. typename Config::OutEdgeList& el = g.out_edge_list(u);
  1458. typename Config::OutEdgeList::iterator first, last;
  1459. typename Config::EdgeContainer fake_edge_container;
  1460. boost::tie(first, last) = graph_detail::
  1461. equal_range(el, StoredEdge(v, fake_edge_container.end(),
  1462. &fake_edge_container));
  1463. return std::make_pair(out_edge_iterator(first, u),
  1464. out_edge_iterator(last, u));
  1465. }
  1466. template <class Config>
  1467. inline typename Config::degree_size_type
  1468. in_degree(typename Config::vertex_descriptor u,
  1469. const directed_edges_helper<Config>& g_)
  1470. {
  1471. typedef typename Config::graph_type Graph;
  1472. const Graph& cg = static_cast<const Graph&>(g_);
  1473. Graph& g = const_cast<Graph&>(cg);
  1474. return in_edge_list(g, u).size();
  1475. }
  1476. namespace detail {
  1477. template <class Config, class Base, class Property>
  1478. inline
  1479. typename boost::property_map<typename Config::graph_type,
  1480. Property>::type
  1481. get_dispatch(adj_list_helper<Config,Base>&, Property p,
  1482. boost::edge_property_tag) {
  1483. typedef typename Config::graph_type Graph;
  1484. typedef typename boost::property_map<Graph, Property>::type PA;
  1485. return PA(p);
  1486. }
  1487. template <class Config, class Base, class Property>
  1488. inline
  1489. typename boost::property_map<typename Config::graph_type,
  1490. Property>::const_type
  1491. get_dispatch(const adj_list_helper<Config,Base>&, Property p,
  1492. boost::edge_property_tag) {
  1493. typedef typename Config::graph_type Graph;
  1494. typedef typename boost::property_map<Graph, Property>::const_type PA;
  1495. return PA(p);
  1496. }
  1497. template <class Config, class Base, class Property>
  1498. inline
  1499. typename boost::property_map<typename Config::graph_type,
  1500. Property>::type
  1501. get_dispatch(adj_list_helper<Config,Base>& g, Property p,
  1502. boost::vertex_property_tag) {
  1503. typedef typename Config::graph_type Graph;
  1504. typedef typename boost::property_map<Graph, Property>::type PA;
  1505. return PA(&static_cast<Graph&>(g), p);
  1506. }
  1507. template <class Config, class Base, class Property>
  1508. inline
  1509. typename boost::property_map<typename Config::graph_type,
  1510. Property>::const_type
  1511. get_dispatch(const adj_list_helper<Config, Base>& g, Property p,
  1512. boost::vertex_property_tag) {
  1513. typedef typename Config::graph_type Graph;
  1514. typedef typename boost::property_map<Graph, Property>::const_type PA;
  1515. const Graph& cg = static_cast<const Graph&>(g);
  1516. return PA(&cg, p);
  1517. }
  1518. } // namespace detail
  1519. // Implementation of the PropertyGraph interface
  1520. template <class Config, class Base, class Property>
  1521. inline
  1522. typename boost::property_map<typename Config::graph_type, Property>::type
  1523. get(Property p, adj_list_helper<Config, Base>& g) {
  1524. typedef typename detail::property_kind_from_graph<adj_list_helper<Config, Base>, Property>::type Kind;
  1525. return detail::get_dispatch(g, p, Kind());
  1526. }
  1527. template <class Config, class Base, class Property>
  1528. inline
  1529. typename boost::property_map<typename Config::graph_type,
  1530. Property>::const_type
  1531. get(Property p, const adj_list_helper<Config, Base>& g) {
  1532. typedef typename detail::property_kind_from_graph<adj_list_helper<Config, Base>, Property>::type Kind;
  1533. return detail::get_dispatch(g, p, Kind());
  1534. }
  1535. template <class Config, class Base, class Property, class Key>
  1536. inline
  1537. typename boost::property_traits<
  1538. typename boost::property_map<typename Config::graph_type,
  1539. Property>::type
  1540. >::reference
  1541. get(Property p, adj_list_helper<Config, Base>& g, const Key& key) {
  1542. return get(get(p, g), key);
  1543. }
  1544. template <class Config, class Base, class Property, class Key>
  1545. inline
  1546. typename boost::property_traits<
  1547. typename boost::property_map<typename Config::graph_type,
  1548. Property>::const_type
  1549. >::reference
  1550. get(Property p, const adj_list_helper<Config, Base>& g, const Key& key) {
  1551. return get(get(p, g), key);
  1552. }
  1553. template <class Config, class Base, class Property, class Key,class Value>
  1554. inline void
  1555. put(Property p, adj_list_helper<Config, Base>& g,
  1556. const Key& key, const Value& value)
  1557. {
  1558. typedef typename Config::graph_type Graph;
  1559. typedef typename boost::property_map<Graph, Property>::type Map;
  1560. Map pmap = get(p, static_cast<Graph&>(g));
  1561. put(pmap, key, value);
  1562. }
  1563. //=========================================================================
  1564. // Generalize Adjacency List Implementation
  1565. struct adj_list_tag { };
  1566. template <class Derived, class Config, class Base>
  1567. class adj_list_impl
  1568. : public adj_list_helper<Config, Base>
  1569. {
  1570. typedef typename Config::OutEdgeList OutEdgeList;
  1571. typedef typename Config::InEdgeList InEdgeList;
  1572. typedef typename Config::StoredVertexList StoredVertexList;
  1573. public:
  1574. typedef typename Config::stored_vertex stored_vertex;
  1575. typedef typename Config::EdgeContainer EdgeContainer;
  1576. typedef typename Config::vertex_descriptor vertex_descriptor;
  1577. typedef typename Config::edge_descriptor edge_descriptor;
  1578. typedef typename Config::vertex_iterator vertex_iterator;
  1579. typedef typename Config::edge_iterator edge_iterator;
  1580. typedef typename Config::edge_parallel_category edge_parallel_category;
  1581. typedef typename Config::vertices_size_type vertices_size_type;
  1582. typedef typename Config::edges_size_type edges_size_type;
  1583. typedef typename Config::degree_size_type degree_size_type;
  1584. typedef typename Config::edge_property_type edge_property_type;
  1585. typedef adj_list_tag graph_tag;
  1586. static vertex_descriptor null_vertex()
  1587. {
  1588. return 0;
  1589. }
  1590. inline adj_list_impl() { }
  1591. inline adj_list_impl(const adj_list_impl& x) {
  1592. copy_impl(x);
  1593. }
  1594. inline adj_list_impl& operator=(const adj_list_impl& x) {
  1595. this->clear();
  1596. copy_impl(x);
  1597. return *this;
  1598. }
  1599. inline void clear() {
  1600. for (typename StoredVertexList::iterator i = m_vertices.begin();
  1601. i != m_vertices.end(); ++i)
  1602. delete (stored_vertex*)*i;
  1603. m_vertices.clear();
  1604. m_edges.clear();
  1605. }
  1606. inline adj_list_impl(vertices_size_type num_vertices) {
  1607. for (vertices_size_type i = 0; i < num_vertices; ++i)
  1608. add_vertex(static_cast<Derived&>(*this));
  1609. }
  1610. template <class EdgeIterator>
  1611. inline adj_list_impl(vertices_size_type num_vertices,
  1612. EdgeIterator first, EdgeIterator last)
  1613. {
  1614. vertex_descriptor* v = new vertex_descriptor[num_vertices];
  1615. for (vertices_size_type i = 0; i < num_vertices; ++i)
  1616. v[i] = add_vertex(static_cast<Derived&>(*this));
  1617. while (first != last) {
  1618. add_edge(v[(*first).first], v[(*first).second], *this);
  1619. ++first;
  1620. }
  1621. delete [] v;
  1622. }
  1623. template <class EdgeIterator, class EdgePropertyIterator>
  1624. inline adj_list_impl(vertices_size_type num_vertices,
  1625. EdgeIterator first, EdgeIterator last,
  1626. EdgePropertyIterator ep_iter)
  1627. {
  1628. vertex_descriptor* v = new vertex_descriptor[num_vertices];
  1629. for (vertices_size_type i = 0; i < num_vertices; ++i)
  1630. v[i] = add_vertex(static_cast<Derived&>(*this));
  1631. while (first != last) {
  1632. add_edge(v[(*first).first], v[(*first).second], *ep_iter, *this);
  1633. ++first;
  1634. ++ep_iter;
  1635. }
  1636. delete [] v;
  1637. }
  1638. ~adj_list_impl() {
  1639. for (typename StoredVertexList::iterator i = m_vertices.begin();
  1640. i != m_vertices.end(); ++i)
  1641. delete (stored_vertex*)*i;
  1642. }
  1643. // protected:
  1644. inline OutEdgeList& out_edge_list(vertex_descriptor v) {
  1645. stored_vertex* sv = (stored_vertex*)v;
  1646. return sv->m_out_edges;
  1647. }
  1648. inline const OutEdgeList& out_edge_list(vertex_descriptor v) const {
  1649. stored_vertex* sv = (stored_vertex*)v;
  1650. return sv->m_out_edges;
  1651. }
  1652. inline StoredVertexList& vertex_set() { return m_vertices; }
  1653. inline const StoredVertexList& vertex_set() const { return m_vertices; }
  1654. inline void copy_impl(const adj_list_impl& x_)
  1655. {
  1656. const Derived& x = static_cast<const Derived&>(x_);
  1657. // Would be better to have a constant time way to get from
  1658. // vertices in x to the corresponding vertices in *this.
  1659. std::map<stored_vertex*,stored_vertex*> vertex_map;
  1660. // Copy the stored vertex objects by adding each vertex
  1661. // and copying its property object.
  1662. vertex_iterator vi, vi_end;
  1663. for (boost::tie(vi, vi_end) = vertices(x); vi != vi_end; ++vi) {
  1664. stored_vertex* v = (stored_vertex*)add_vertex(*this);
  1665. v->m_property = ((stored_vertex*)*vi)->m_property;
  1666. vertex_map[(stored_vertex*)*vi] = v;
  1667. }
  1668. // Copy the edges by adding each edge and copying its
  1669. // property object.
  1670. edge_iterator ei, ei_end;
  1671. for (boost::tie(ei, ei_end) = edges(x); ei != ei_end; ++ei) {
  1672. edge_descriptor e;
  1673. bool inserted;
  1674. vertex_descriptor s = source(*ei,x), t = target(*ei,x);
  1675. boost::tie(e, inserted) = add_edge(vertex_map[(stored_vertex*)s],
  1676. vertex_map[(stored_vertex*)t], *this);
  1677. *((edge_property_type*)e.m_eproperty)
  1678. = *((edge_property_type*)(*ei).m_eproperty);
  1679. }
  1680. }
  1681. typename Config::EdgeContainer m_edges;
  1682. StoredVertexList m_vertices;
  1683. };
  1684. // O(1)
  1685. template <class Derived, class Config, class Base>
  1686. inline typename Config::vertex_descriptor
  1687. add_vertex(adj_list_impl<Derived, Config, Base>& g_)
  1688. {
  1689. Derived& g = static_cast<Derived&>(g_);
  1690. typedef typename Config::stored_vertex stored_vertex;
  1691. stored_vertex* v = new stored_vertex;
  1692. typename Config::StoredVertexList::iterator pos;
  1693. bool inserted;
  1694. boost::tie(pos,inserted) = boost::graph_detail::push(g.m_vertices, v);
  1695. v->m_position = pos;
  1696. g.added_vertex(v);
  1697. return v;
  1698. }
  1699. // O(1)
  1700. template <class Derived, class Config, class Base>
  1701. inline typename Config::vertex_descriptor
  1702. add_vertex(const typename Config::vertex_property_type& p,
  1703. adj_list_impl<Derived, Config, Base>& g_)
  1704. {
  1705. typedef typename Config::vertex_descriptor vertex_descriptor;
  1706. Derived& g = static_cast<Derived&>(g_);
  1707. if (optional<vertex_descriptor> v
  1708. = g.vertex_by_property(get_property_value(p, vertex_bundle)))
  1709. return *v;
  1710. typedef typename Config::stored_vertex stored_vertex;
  1711. stored_vertex* v = new stored_vertex(p);
  1712. typename Config::StoredVertexList::iterator pos;
  1713. bool inserted;
  1714. boost::tie(pos,inserted) = boost::graph_detail::push(g.m_vertices, v);
  1715. v->m_position = pos;
  1716. g.added_vertex(v);
  1717. return v;
  1718. }
  1719. // O(1)
  1720. template <class Derived, class Config, class Base>
  1721. inline void remove_vertex(typename Config::vertex_descriptor u,
  1722. adj_list_impl<Derived, Config, Base>& g_)
  1723. {
  1724. typedef typename Config::stored_vertex stored_vertex;
  1725. Derived& g = static_cast<Derived&>(g_);
  1726. g.removing_vertex(u, boost::graph_detail::iterator_stability(g_.m_vertices));
  1727. stored_vertex* su = (stored_vertex*)u;
  1728. g.m_vertices.erase(su->m_position);
  1729. delete su;
  1730. }
  1731. // O(V)
  1732. template <class Derived, class Config, class Base>
  1733. inline typename Config::vertex_descriptor
  1734. vertex(typename Config::vertices_size_type n,
  1735. const adj_list_impl<Derived, Config, Base>& g_)
  1736. {
  1737. const Derived& g = static_cast<const Derived&>(g_);
  1738. typename Config::vertex_iterator i = vertices(g).first;
  1739. while (n--) ++i; // std::advance(i, n); (not VC++ portable)
  1740. return *i;
  1741. }
  1742. //=========================================================================
  1743. // Vector-Backbone Adjacency List Implementation
  1744. namespace detail {
  1745. template <class Graph, class vertex_descriptor>
  1746. inline void
  1747. remove_vertex_dispatch(Graph& g, vertex_descriptor u,
  1748. boost::directed_tag)
  1749. {
  1750. typedef typename Graph::edge_parallel_category edge_parallel_category;
  1751. g.m_vertices.erase(g.m_vertices.begin() + u);
  1752. vertex_descriptor V = num_vertices(g);
  1753. if (u != V) {
  1754. for (vertex_descriptor v = 0; v < V; ++v)
  1755. reindex_edge_list(g.out_edge_list(v), u, edge_parallel_category());
  1756. }
  1757. }
  1758. template <class Graph, class vertex_descriptor>
  1759. inline void
  1760. remove_vertex_dispatch(Graph& g, vertex_descriptor u,
  1761. boost::undirected_tag)
  1762. {
  1763. typedef typename Graph::global_edgelist_selector EdgeListS;
  1764. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1765. typedef typename Graph::edge_parallel_category edge_parallel_category;
  1766. g.m_vertices.erase(g.m_vertices.begin() + u);
  1767. vertex_descriptor V = num_vertices(g);
  1768. for (vertex_descriptor v = 0; v < V; ++v)
  1769. reindex_edge_list(g.out_edge_list(v), u,
  1770. edge_parallel_category());
  1771. typedef typename Graph::EdgeContainer Container;
  1772. typedef typename Container::iterator Iter;
  1773. Iter ei = g.m_edges.begin(), ei_end = g.m_edges.end();
  1774. for (; ei != ei_end; ++ei) {
  1775. if (ei->m_source > u)
  1776. --ei->m_source;
  1777. if (ei->m_target > u)
  1778. --ei->m_target;
  1779. }
  1780. }
  1781. template <class Graph, class vertex_descriptor>
  1782. inline void
  1783. remove_vertex_dispatch(Graph& g, vertex_descriptor u,
  1784. boost::bidirectional_tag)
  1785. {
  1786. typedef typename Graph::global_edgelist_selector EdgeListS;
  1787. BOOST_STATIC_ASSERT((!is_same<EdgeListS, vecS>::value));
  1788. typedef typename Graph::edge_parallel_category edge_parallel_category;
  1789. g.m_vertices.erase(g.m_vertices.begin() + u);
  1790. vertex_descriptor V = num_vertices(g);
  1791. vertex_descriptor v;
  1792. if (u != V) {
  1793. for (v = 0; v < V; ++v)
  1794. reindex_edge_list(g.out_edge_list(v), u,
  1795. edge_parallel_category());
  1796. for (v = 0; v < V; ++v)
  1797. reindex_edge_list(in_edge_list(g, v), u,
  1798. edge_parallel_category());
  1799. typedef typename Graph::EdgeContainer Container;
  1800. typedef typename Container::iterator Iter;
  1801. Iter ei = g.m_edges.begin(), ei_end = g.m_edges.end();
  1802. for (; ei != ei_end; ++ei) {
  1803. if (ei->m_source > u)
  1804. --ei->m_source;
  1805. if (ei->m_target > u)
  1806. --ei->m_target;
  1807. }
  1808. }
  1809. }
  1810. template <class EdgeList, class vertex_descriptor>
  1811. inline void
  1812. reindex_edge_list(EdgeList& el, vertex_descriptor u,
  1813. boost::allow_parallel_edge_tag)
  1814. {
  1815. typename EdgeList::iterator ei = el.begin(), e_end = el.end();
  1816. for (; ei != e_end; ++ei)
  1817. if ((*ei).get_target() > u)
  1818. --(*ei).get_target();
  1819. }
  1820. template <class EdgeList, class vertex_descriptor>
  1821. inline void
  1822. reindex_edge_list(EdgeList& el, vertex_descriptor u,
  1823. boost::disallow_parallel_edge_tag)
  1824. {
  1825. typename EdgeList::iterator ei = el.begin(), e_end = el.end();
  1826. while (ei != e_end) {
  1827. typename EdgeList::value_type ce = *ei;
  1828. ++ei;
  1829. if (ce.get_target() > u) {
  1830. el.erase(ce);
  1831. --ce.get_target();
  1832. el.insert(ce);
  1833. }
  1834. }
  1835. }
  1836. } // namespace detail
  1837. struct vec_adj_list_tag { };
  1838. template <class Graph, class Config, class Base>
  1839. class vec_adj_list_impl
  1840. : public adj_list_helper<Config, Base>
  1841. {
  1842. typedef typename Config::OutEdgeList OutEdgeList;
  1843. typedef typename Config::InEdgeList InEdgeList;
  1844. typedef typename Config::StoredVertexList StoredVertexList;
  1845. public:
  1846. typedef typename Config::vertex_descriptor vertex_descriptor;
  1847. typedef typename Config::edge_descriptor edge_descriptor;
  1848. typedef typename Config::out_edge_iterator out_edge_iterator;
  1849. typedef typename Config::edge_iterator edge_iterator;
  1850. typedef typename Config::directed_category directed_category;
  1851. typedef typename Config::vertices_size_type vertices_size_type;
  1852. typedef typename Config::edges_size_type edges_size_type;
  1853. typedef typename Config::degree_size_type degree_size_type;
  1854. typedef typename Config::StoredEdge StoredEdge;
  1855. typedef typename Config::stored_vertex stored_vertex;
  1856. typedef typename Config::EdgeContainer EdgeContainer;
  1857. typedef typename Config::edge_property_type edge_property_type;
  1858. typedef vec_adj_list_tag graph_tag;
  1859. static vertex_descriptor null_vertex()
  1860. {
  1861. return (std::numeric_limits<vertex_descriptor>::max)();
  1862. }
  1863. inline vec_adj_list_impl() { }
  1864. inline vec_adj_list_impl(const vec_adj_list_impl& x) {
  1865. copy_impl(x);
  1866. }
  1867. inline vec_adj_list_impl& operator=(const vec_adj_list_impl& x) {
  1868. this->clear();
  1869. copy_impl(x);
  1870. return *this;
  1871. }
  1872. inline void clear() {
  1873. m_vertices.clear();
  1874. m_edges.clear();
  1875. }
  1876. inline vec_adj_list_impl(vertices_size_type _num_vertices)
  1877. : m_vertices(_num_vertices) { }
  1878. template <class EdgeIterator>
  1879. inline vec_adj_list_impl(vertices_size_type num_vertices,
  1880. EdgeIterator first, EdgeIterator last)
  1881. : m_vertices(num_vertices)
  1882. {
  1883. while (first != last) {
  1884. add_edge((*first).first, (*first).second,
  1885. static_cast<Graph&>(*this));
  1886. ++first;
  1887. }
  1888. }
  1889. template <class EdgeIterator, class EdgePropertyIterator>
  1890. inline vec_adj_list_impl(vertices_size_type num_vertices,
  1891. EdgeIterator first, EdgeIterator last,
  1892. EdgePropertyIterator ep_iter)
  1893. : m_vertices(num_vertices)
  1894. {
  1895. while (first != last) {
  1896. add_edge((*first).first, (*first).second, *ep_iter,
  1897. static_cast<Graph&>(*this));
  1898. ++first;
  1899. ++ep_iter;
  1900. }
  1901. }
  1902. // protected:
  1903. inline boost::integer_range<vertex_descriptor> vertex_set() const {
  1904. return boost::integer_range<vertex_descriptor>(0, m_vertices.size());
  1905. }
  1906. inline OutEdgeList& out_edge_list(vertex_descriptor v) {
  1907. return m_vertices[v].m_out_edges;
  1908. }
  1909. inline const OutEdgeList& out_edge_list(vertex_descriptor v) const {
  1910. return m_vertices[v].m_out_edges;
  1911. }
  1912. inline void copy_impl(const vec_adj_list_impl& x_)
  1913. {
  1914. const Graph& x = static_cast<const Graph&>(x_);
  1915. // Copy the stored vertex objects by adding each vertex
  1916. // and copying its property object.
  1917. for (vertices_size_type i = 0; i < num_vertices(x); ++i) {
  1918. vertex_descriptor v = add_vertex(*this);
  1919. m_vertices[v].m_property = x.m_vertices[i].m_property;
  1920. }
  1921. // Copy the edges by adding each edge and copying its
  1922. // property object.
  1923. edge_iterator ei, ei_end;
  1924. for (boost::tie(ei, ei_end) = edges(x); ei != ei_end; ++ei) {
  1925. edge_descriptor e;
  1926. bool inserted;
  1927. boost::tie(e, inserted) = add_edge(source(*ei,x), target(*ei,x) , *this);
  1928. *((edge_property_type*)e.m_eproperty)
  1929. = *((edge_property_type*)(*ei).m_eproperty);
  1930. }
  1931. }
  1932. typename Config::EdgeContainer m_edges;
  1933. StoredVertexList m_vertices;
  1934. };
  1935. // Had to make these non-members to avoid accidental instantiation
  1936. // on SGI MIPSpro C++
  1937. template <class G, class C, class B>
  1938. inline typename C::InEdgeList&
  1939. in_edge_list(vec_adj_list_impl<G,C,B>& g,
  1940. typename C::vertex_descriptor v) {
  1941. return g.m_vertices[v].m_in_edges;
  1942. }
  1943. template <class G, class C, class B>
  1944. inline const typename C::InEdgeList&
  1945. in_edge_list(const vec_adj_list_impl<G,C,B>& g,
  1946. typename C::vertex_descriptor v) {
  1947. return g.m_vertices[v].m_in_edges;
  1948. }
  1949. // O(1)
  1950. template <class Graph, class Config, class Base>
  1951. inline typename Config::vertex_descriptor
  1952. add_vertex(vec_adj_list_impl<Graph, Config, Base>& g_) {
  1953. Graph& g = static_cast<Graph&>(g_);
  1954. g.m_vertices.resize(g.m_vertices.size() + 1);
  1955. g.added_vertex(g.m_vertices.size() - 1);
  1956. return g.m_vertices.size() - 1;
  1957. }
  1958. template <class Graph, class Config, class Base>
  1959. inline typename Config::vertex_descriptor
  1960. add_vertex(const typename Config::vertex_property_type& p,
  1961. vec_adj_list_impl<Graph, Config, Base>& g_) {
  1962. typedef typename Config::vertex_descriptor vertex_descriptor;
  1963. Graph& g = static_cast<Graph&>(g_);
  1964. if (optional<vertex_descriptor> v
  1965. = g.vertex_by_property(get_property_value(p, vertex_bundle)))
  1966. return *v;
  1967. typedef typename Config::stored_vertex stored_vertex;
  1968. g.m_vertices.push_back(stored_vertex(p));
  1969. g.added_vertex(g.m_vertices.size() - 1);
  1970. return g.m_vertices.size() - 1;
  1971. }
  1972. // Here we override the directed_graph_helper add_edge() function
  1973. // so that the number of vertices is automatically changed if
  1974. // either u or v is greater than the number of vertices.
  1975. template <class Graph, class Config, class Base>
  1976. inline std::pair<typename Config::edge_descriptor, bool>
  1977. add_edge(typename Config::vertex_descriptor u,
  1978. typename Config::vertex_descriptor v,
  1979. const typename Config::edge_property_type& p,
  1980. vec_adj_list_impl<Graph, Config, Base>& g_)
  1981. {
  1982. BOOST_USING_STD_MAX();
  1983. typename Config::vertex_descriptor x = max BOOST_PREVENT_MACRO_SUBSTITUTION(u, v);
  1984. if (x >= num_vertices(g_))
  1985. g_.m_vertices.resize(x + 1);
  1986. adj_list_helper<Config, Base>& g = g_;
  1987. return add_edge(u, v, p, g);
  1988. }
  1989. template <class Graph, class Config, class Base>
  1990. inline std::pair<typename Config::edge_descriptor, bool>
  1991. add_edge(typename Config::vertex_descriptor u,
  1992. typename Config::vertex_descriptor v,
  1993. vec_adj_list_impl<Graph, Config, Base>& g_)
  1994. {
  1995. typename Config::edge_property_type p;
  1996. return add_edge(u, v, p, g_);
  1997. }
  1998. // O(V + E)
  1999. template <class Graph, class Config, class Base>
  2000. inline void remove_vertex(typename Config::vertex_descriptor v,
  2001. vec_adj_list_impl<Graph, Config, Base>& g_)
  2002. {
  2003. typedef typename Config::directed_category Cat;
  2004. Graph& g = static_cast<Graph&>(g_);
  2005. g.removing_vertex(v, boost::graph_detail::iterator_stability(g_.m_vertices));
  2006. detail::remove_vertex_dispatch(g, v, Cat());
  2007. }
  2008. // O(1)
  2009. template <class Graph, class Config, class Base>
  2010. inline typename Config::vertex_descriptor
  2011. vertex(typename Config::vertices_size_type n,
  2012. const vec_adj_list_impl<Graph, Config, Base>&)
  2013. {
  2014. return n;
  2015. }
  2016. namespace detail {
  2017. //=========================================================================
  2018. // Adjacency List Generator
  2019. template <class Graph, class VertexListS, class OutEdgeListS,
  2020. class DirectedS, class VertexProperty, class EdgeProperty,
  2021. class GraphProperty, class EdgeListS>
  2022. struct adj_list_gen
  2023. {
  2024. typedef typename detail::is_random_access<VertexListS>::type
  2025. is_rand_access;
  2026. typedef typename has_property<EdgeProperty>::type has_edge_property;
  2027. typedef typename DirectedS::is_directed_t DirectedT;
  2028. typedef typename DirectedS::is_bidir_t BidirectionalT;
  2029. struct config
  2030. {
  2031. typedef OutEdgeListS edgelist_selector;
  2032. typedef EdgeListS global_edgelist_selector;
  2033. typedef Graph graph_type;
  2034. typedef EdgeProperty edge_property_type;
  2035. typedef VertexProperty vertex_property_type;
  2036. typedef GraphProperty graph_property_type;
  2037. typedef std::size_t vertices_size_type;
  2038. typedef adjacency_list_traits<OutEdgeListS, VertexListS, DirectedS>
  2039. Traits;
  2040. typedef typename Traits::directed_category directed_category;
  2041. typedef typename Traits::edge_parallel_category edge_parallel_category;
  2042. typedef typename Traits::vertex_descriptor vertex_descriptor;
  2043. typedef typename Traits::edge_descriptor edge_descriptor;
  2044. typedef void* vertex_ptr;
  2045. // need to reorganize this to avoid instantiating stuff
  2046. // that doesn't get used -JGS
  2047. // VertexList and vertex_iterator
  2048. typedef typename container_gen<VertexListS,
  2049. vertex_ptr>::type SeqVertexList;
  2050. typedef boost::integer_range<vertex_descriptor> RandVertexList;
  2051. typedef typename mpl::if_<is_rand_access,
  2052. RandVertexList, SeqVertexList>::type VertexList;
  2053. typedef typename VertexList::iterator vertex_iterator;
  2054. // EdgeContainer and StoredEdge
  2055. typedef typename container_gen<EdgeListS,
  2056. list_edge<vertex_descriptor, EdgeProperty> >::type EdgeContainer;
  2057. typedef typename mpl::and_<DirectedT,
  2058. typename mpl::not_<BidirectionalT>::type >::type on_edge_storage;
  2059. typedef typename mpl::if_<on_edge_storage,
  2060. std::size_t, typename EdgeContainer::size_type
  2061. >::type edges_size_type;
  2062. typedef typename EdgeContainer::iterator EdgeIter;
  2063. typedef typename detail::is_random_access<EdgeListS>::type is_edge_ra;
  2064. typedef typename mpl::if_<on_edge_storage,
  2065. stored_edge_property<vertex_descriptor, EdgeProperty>,
  2066. typename mpl::if_<is_edge_ra,
  2067. stored_ra_edge_iter<vertex_descriptor, EdgeContainer, EdgeProperty>,
  2068. stored_edge_iter<vertex_descriptor, EdgeIter, EdgeProperty>
  2069. >::type
  2070. >::type StoredEdge;
  2071. // Adjacency Types
  2072. typedef typename container_gen<OutEdgeListS, StoredEdge>::type
  2073. OutEdgeList;
  2074. typedef typename OutEdgeList::size_type degree_size_type;
  2075. typedef typename OutEdgeList::iterator OutEdgeIter;
  2076. typedef boost::detail::iterator_traits<OutEdgeIter> OutEdgeIterTraits;
  2077. typedef typename OutEdgeIterTraits::iterator_category OutEdgeIterCat;
  2078. typedef typename OutEdgeIterTraits::difference_type OutEdgeIterDiff;
  2079. typedef out_edge_iter<
  2080. OutEdgeIter, vertex_descriptor, edge_descriptor, OutEdgeIterDiff
  2081. > out_edge_iterator;
  2082. typedef typename adjacency_iterator_generator<graph_type,
  2083. vertex_descriptor, out_edge_iterator>::type adjacency_iterator;
  2084. typedef OutEdgeList InEdgeList;
  2085. typedef OutEdgeIter InEdgeIter;
  2086. typedef OutEdgeIterCat InEdgeIterCat;
  2087. typedef OutEdgeIterDiff InEdgeIterDiff;
  2088. typedef in_edge_iter<
  2089. InEdgeIter, vertex_descriptor, edge_descriptor, InEdgeIterDiff
  2090. > in_edge_iterator;
  2091. typedef typename inv_adjacency_iterator_generator<graph_type,
  2092. vertex_descriptor, in_edge_iterator>::type inv_adjacency_iterator;
  2093. // Edge Iterator
  2094. typedef boost::detail::iterator_traits<EdgeIter> EdgeIterTraits;
  2095. typedef typename EdgeIterTraits::iterator_category EdgeIterCat;
  2096. typedef typename EdgeIterTraits::difference_type EdgeIterDiff;
  2097. typedef undirected_edge_iter<
  2098. EdgeIter
  2099. , edge_descriptor
  2100. , EdgeIterDiff
  2101. > UndirectedEdgeIter; // also used for bidirectional
  2102. typedef adj_list_edge_iterator<vertex_iterator, out_edge_iterator,
  2103. graph_type> DirectedEdgeIter;
  2104. typedef typename mpl::if_<on_edge_storage,
  2105. DirectedEdgeIter, UndirectedEdgeIter>::type edge_iterator;
  2106. // stored_vertex and StoredVertexList
  2107. typedef typename container_gen<VertexListS, vertex_ptr>::type
  2108. SeqStoredVertexList;
  2109. struct seq_stored_vertex {
  2110. seq_stored_vertex() { }
  2111. seq_stored_vertex(const VertexProperty& p) : m_property(p) { }
  2112. OutEdgeList m_out_edges;
  2113. VertexProperty m_property;
  2114. typename SeqStoredVertexList::iterator m_position;
  2115. };
  2116. struct bidir_seq_stored_vertex {
  2117. bidir_seq_stored_vertex() { }
  2118. bidir_seq_stored_vertex(const VertexProperty& p) : m_property(p) { }
  2119. OutEdgeList m_out_edges;
  2120. InEdgeList m_in_edges;
  2121. VertexProperty m_property;
  2122. typename SeqStoredVertexList::iterator m_position;
  2123. };
  2124. struct rand_stored_vertex {
  2125. rand_stored_vertex() { }
  2126. rand_stored_vertex(const VertexProperty& p) : m_property(p) { }
  2127. OutEdgeList m_out_edges;
  2128. VertexProperty m_property;
  2129. };
  2130. struct bidir_rand_stored_vertex {
  2131. bidir_rand_stored_vertex() { }
  2132. bidir_rand_stored_vertex(const VertexProperty& p) : m_property(p) { }
  2133. OutEdgeList m_out_edges;
  2134. InEdgeList m_in_edges;
  2135. VertexProperty m_property;
  2136. };
  2137. typedef typename mpl::if_<is_rand_access,
  2138. typename mpl::if_<BidirectionalT,
  2139. bidir_rand_stored_vertex, rand_stored_vertex>::type,
  2140. typename mpl::if_<BidirectionalT,
  2141. bidir_seq_stored_vertex, seq_stored_vertex>::type
  2142. >::type StoredVertex;
  2143. struct stored_vertex : public StoredVertex {
  2144. stored_vertex() { }
  2145. stored_vertex(const VertexProperty& p) : StoredVertex(p) { }
  2146. };
  2147. typedef typename container_gen<VertexListS, stored_vertex>::type
  2148. RandStoredVertexList;
  2149. typedef typename mpl::if_< is_rand_access,
  2150. RandStoredVertexList, SeqStoredVertexList>::type StoredVertexList;
  2151. }; // end of config
  2152. typedef typename mpl::if_<BidirectionalT,
  2153. bidirectional_graph_helper_with_property<config>,
  2154. typename mpl::if_<DirectedT,
  2155. directed_graph_helper<config>,
  2156. undirected_graph_helper<config>
  2157. >::type
  2158. >::type DirectedHelper;
  2159. typedef typename mpl::if_<is_rand_access,
  2160. vec_adj_list_impl<Graph, config, DirectedHelper>,
  2161. adj_list_impl<Graph, config, DirectedHelper>
  2162. >::type type;
  2163. };
  2164. } // namespace detail
  2165. //=========================================================================
  2166. // Vertex Property Maps
  2167. template <class Graph, class ValueType, class Reference, class Tag>
  2168. struct adj_list_vertex_property_map
  2169. : public boost::put_get_helper<
  2170. Reference,
  2171. adj_list_vertex_property_map<Graph, ValueType, Reference, Tag>
  2172. >
  2173. {
  2174. typedef typename Graph::stored_vertex StoredVertex;
  2175. typedef ValueType value_type;
  2176. typedef Reference reference;
  2177. typedef typename Graph::vertex_descriptor key_type;
  2178. typedef boost::lvalue_property_map_tag category;
  2179. inline adj_list_vertex_property_map(const Graph* = 0, Tag tag = Tag()): m_tag(tag) { }
  2180. inline Reference operator[](key_type v) const {
  2181. StoredVertex* sv = (StoredVertex*)v;
  2182. return get_property_value(sv->m_property, m_tag);
  2183. }
  2184. inline Reference operator()(key_type v) const {
  2185. return this->operator[](v);
  2186. }
  2187. Tag m_tag;
  2188. };
  2189. template <class Graph, class Property, class PropRef>
  2190. struct adj_list_vertex_all_properties_map
  2191. : public boost::put_get_helper<PropRef,
  2192. adj_list_vertex_all_properties_map<Graph, Property, PropRef>
  2193. >
  2194. {
  2195. typedef typename Graph::stored_vertex StoredVertex;
  2196. typedef Property value_type;
  2197. typedef PropRef reference;
  2198. typedef typename Graph::vertex_descriptor key_type;
  2199. typedef boost::lvalue_property_map_tag category;
  2200. inline adj_list_vertex_all_properties_map(const Graph* = 0, vertex_all_t = vertex_all_t()) { }
  2201. inline PropRef operator[](key_type v) const {
  2202. StoredVertex* sv = (StoredVertex*)v;
  2203. return sv->m_property;
  2204. }
  2205. inline PropRef operator()(key_type v) const {
  2206. return this->operator[](v);
  2207. }
  2208. };
  2209. template <class Graph, class GraphPtr, class ValueType, class Reference,
  2210. class Tag>
  2211. struct vec_adj_list_vertex_property_map
  2212. : public boost::put_get_helper<
  2213. Reference,
  2214. vec_adj_list_vertex_property_map<Graph,GraphPtr,ValueType,Reference,
  2215. Tag>
  2216. >
  2217. {
  2218. typedef ValueType value_type;
  2219. typedef Reference reference;
  2220. typedef typename boost::graph_traits<Graph>::vertex_descriptor key_type;
  2221. typedef boost::lvalue_property_map_tag category;
  2222. vec_adj_list_vertex_property_map(GraphPtr g = 0, Tag tag = Tag()) : m_g(g), m_tag(tag) { }
  2223. inline Reference operator[](key_type v) const {
  2224. return get_property_value(m_g->m_vertices[v].m_property, m_tag);
  2225. }
  2226. inline Reference operator()(key_type v) const {
  2227. return this->operator[](v);
  2228. }
  2229. GraphPtr m_g;
  2230. Tag m_tag;
  2231. };
  2232. template <class Graph, class GraphPtr, class Property, class PropertyRef>
  2233. struct vec_adj_list_vertex_all_properties_map
  2234. : public boost::put_get_helper<PropertyRef,
  2235. vec_adj_list_vertex_all_properties_map<Graph,GraphPtr,Property,
  2236. PropertyRef>
  2237. >
  2238. {
  2239. typedef Property value_type;
  2240. typedef PropertyRef reference;
  2241. typedef typename boost::graph_traits<Graph>::vertex_descriptor key_type;
  2242. typedef boost::lvalue_property_map_tag category;
  2243. vec_adj_list_vertex_all_properties_map(GraphPtr g = 0, vertex_all_t = vertex_all_t()) : m_g(g) { }
  2244. inline PropertyRef operator[](key_type v) const {
  2245. return m_g->m_vertices[v].m_property;
  2246. }
  2247. inline PropertyRef operator()(key_type v) const {
  2248. return this->operator[](v);
  2249. }
  2250. GraphPtr m_g;
  2251. };
  2252. struct adj_list_any_vertex_pa {
  2253. template <class Tag, class Graph, class Property>
  2254. struct bind_ {
  2255. typedef typename property_value<Property, Tag>::type value_type;
  2256. typedef value_type& reference;
  2257. typedef const value_type& const_reference;
  2258. typedef adj_list_vertex_property_map
  2259. <Graph, value_type, reference, Tag> type;
  2260. typedef adj_list_vertex_property_map
  2261. <Graph, value_type, const_reference, Tag> const_type;
  2262. };
  2263. };
  2264. struct adj_list_all_vertex_pa {
  2265. template <class Tag, class Graph, class Property>
  2266. struct bind_ {
  2267. typedef typename Graph::vertex_descriptor Vertex;
  2268. typedef adj_list_vertex_all_properties_map<Graph,Property,
  2269. Property&> type;
  2270. typedef adj_list_vertex_all_properties_map<Graph,Property,
  2271. const Property&> const_type;
  2272. };
  2273. };
  2274. template <class Property, class Vertex>
  2275. struct vec_adj_list_vertex_id_map
  2276. : public boost::put_get_helper<
  2277. Vertex, vec_adj_list_vertex_id_map<Property, Vertex>
  2278. >
  2279. {
  2280. typedef Vertex value_type;
  2281. typedef Vertex key_type;
  2282. typedef Vertex reference;
  2283. typedef boost::readable_property_map_tag category;
  2284. inline vec_adj_list_vertex_id_map() { }
  2285. template <class Graph>
  2286. inline vec_adj_list_vertex_id_map(const Graph&, vertex_index_t) { }
  2287. inline value_type operator[](key_type v) const { return v; }
  2288. inline value_type operator()(key_type v) const { return v; }
  2289. };
  2290. struct vec_adj_list_any_vertex_pa {
  2291. template <class Tag, class Graph, class Property>
  2292. struct bind_ {
  2293. typedef typename property_value<Property, Tag>::type value_type;
  2294. typedef value_type& reference;
  2295. typedef const value_type& const_reference;
  2296. typedef vec_adj_list_vertex_property_map
  2297. <Graph, Graph*, value_type, reference, Tag> type;
  2298. typedef vec_adj_list_vertex_property_map
  2299. <Graph, const Graph*, value_type, const_reference, Tag> const_type;
  2300. };
  2301. };
  2302. struct vec_adj_list_id_vertex_pa {
  2303. template <class Tag, class Graph, class Property>
  2304. struct bind_ {
  2305. typedef typename Graph::vertex_descriptor Vertex;
  2306. typedef vec_adj_list_vertex_id_map<Property, Vertex> type;
  2307. typedef vec_adj_list_vertex_id_map<Property, Vertex> const_type;
  2308. };
  2309. };
  2310. struct vec_adj_list_all_vertex_pa {
  2311. template <class Tag, class Graph, class Property>
  2312. struct bind_ {
  2313. typedef typename Graph::vertex_descriptor Vertex;
  2314. typedef vec_adj_list_vertex_all_properties_map
  2315. <Graph, Graph*, Property, Property&> type;
  2316. typedef vec_adj_list_vertex_all_properties_map
  2317. <Graph, const Graph*, Property, const Property&> const_type;
  2318. };
  2319. };
  2320. namespace detail {
  2321. template <class Tag, class Graph, class Property>
  2322. struct adj_list_choose_vertex_pa
  2323. : boost::mpl::if_<
  2324. boost::is_same<Tag, vertex_all_t>,
  2325. adj_list_all_vertex_pa,
  2326. adj_list_any_vertex_pa>::type
  2327. ::template bind_<Tag, Graph, Property>
  2328. {};
  2329. template <class Tag>
  2330. struct vec_adj_list_choose_vertex_pa_helper {
  2331. typedef vec_adj_list_any_vertex_pa type;
  2332. };
  2333. template <>
  2334. struct vec_adj_list_choose_vertex_pa_helper<vertex_index_t> {
  2335. typedef vec_adj_list_id_vertex_pa type;
  2336. };
  2337. template <>
  2338. struct vec_adj_list_choose_vertex_pa_helper<vertex_all_t> {
  2339. typedef vec_adj_list_all_vertex_pa type;
  2340. };
  2341. template <class Tag, class Graph, class Property>
  2342. struct vec_adj_list_choose_vertex_pa
  2343. : vec_adj_list_choose_vertex_pa_helper<Tag>::type::template bind_<Tag,Graph,Property>
  2344. {};
  2345. } // namespace detail
  2346. //=========================================================================
  2347. // Edge Property Map
  2348. template <class Directed, class Value, class Ref, class Vertex,
  2349. class Property, class Tag>
  2350. struct adj_list_edge_property_map
  2351. : public put_get_helper<
  2352. Ref,
  2353. adj_list_edge_property_map<Directed, Value, Ref, Vertex, Property,
  2354. Tag>
  2355. >
  2356. {
  2357. Tag tag;
  2358. explicit adj_list_edge_property_map(Tag tag = Tag()): tag(tag) {}
  2359. typedef Value value_type;
  2360. typedef Ref reference;
  2361. typedef detail::edge_desc_impl<Directed, Vertex> key_type;
  2362. typedef boost::lvalue_property_map_tag category;
  2363. inline Ref operator[](key_type e) const {
  2364. Property& p = *(Property*)e.get_property();
  2365. return get_property_value(p, tag);
  2366. }
  2367. inline Ref operator()(key_type e) const {
  2368. return this->operator[](e);
  2369. }
  2370. };
  2371. template <class Directed, class Property, class PropRef, class PropPtr,
  2372. class Vertex>
  2373. struct adj_list_edge_all_properties_map
  2374. : public put_get_helper<PropRef,
  2375. adj_list_edge_all_properties_map<Directed, Property, PropRef,
  2376. PropPtr, Vertex>
  2377. >
  2378. {
  2379. explicit adj_list_edge_all_properties_map(edge_all_t = edge_all_t()) {}
  2380. typedef Property value_type;
  2381. typedef PropRef reference;
  2382. typedef detail::edge_desc_impl<Directed, Vertex> key_type;
  2383. typedef boost::lvalue_property_map_tag category;
  2384. inline PropRef operator[](key_type e) const {
  2385. return *(PropPtr)e.get_property();
  2386. }
  2387. inline PropRef operator()(key_type e) const {
  2388. return this->operator[](e);
  2389. }
  2390. };
  2391. // Edge Property Maps
  2392. namespace detail {
  2393. struct adj_list_any_edge_pmap {
  2394. template <class Graph, class Property, class Tag>
  2395. struct bind_ {
  2396. typedef typename property_value<Property,Tag>::type value_type;
  2397. typedef value_type& reference;
  2398. typedef const value_type& const_reference;
  2399. typedef adj_list_edge_property_map
  2400. <typename Graph::directed_category, value_type, reference,
  2401. typename Graph::vertex_descriptor,Property,Tag> type;
  2402. typedef adj_list_edge_property_map
  2403. <typename Graph::directed_category, value_type, const_reference,
  2404. typename Graph::vertex_descriptor,const Property, Tag> const_type;
  2405. };
  2406. };
  2407. struct adj_list_all_edge_pmap {
  2408. template <class Graph, class Property, class Tag>
  2409. struct bind_ {
  2410. typedef adj_list_edge_all_properties_map
  2411. <typename Graph::directed_category, Property, Property&, Property*,
  2412. typename Graph::vertex_descriptor> type;
  2413. typedef adj_list_edge_all_properties_map
  2414. <typename Graph::directed_category, Property, const Property&,
  2415. const Property*, typename Graph::vertex_descriptor> const_type;
  2416. };
  2417. };
  2418. template <class Tag>
  2419. struct adj_list_choose_edge_pmap_helper {
  2420. typedef adj_list_any_edge_pmap type;
  2421. };
  2422. template <>
  2423. struct adj_list_choose_edge_pmap_helper<edge_all_t> {
  2424. typedef adj_list_all_edge_pmap type;
  2425. };
  2426. template <class Tag, class Graph, class Property>
  2427. struct adj_list_choose_edge_pmap
  2428. : adj_list_choose_edge_pmap_helper<Tag>::type::template bind_<Graph, Property, Tag>
  2429. {};
  2430. struct adj_list_edge_property_selector {
  2431. template <class Graph, class Property, class Tag>
  2432. struct bind_: adj_list_choose_edge_pmap<Tag, Graph, Property> {};
  2433. };
  2434. } // namespace detail
  2435. template <>
  2436. struct edge_property_selector<adj_list_tag> {
  2437. typedef detail::adj_list_edge_property_selector type;
  2438. };
  2439. template <>
  2440. struct edge_property_selector<vec_adj_list_tag> {
  2441. typedef detail::adj_list_edge_property_selector type;
  2442. };
  2443. // Vertex Property Maps
  2444. struct adj_list_vertex_property_selector {
  2445. template <class Graph, class Property, class Tag>
  2446. struct bind_
  2447. : detail::adj_list_choose_vertex_pa<Tag,Graph,Property>
  2448. {};
  2449. };
  2450. template <>
  2451. struct vertex_property_selector<adj_list_tag> {
  2452. typedef adj_list_vertex_property_selector type;
  2453. };
  2454. struct vec_adj_list_vertex_property_selector {
  2455. template <class Graph, class Property, class Tag>
  2456. struct bind_: detail::vec_adj_list_choose_vertex_pa<Tag,Graph,Property> {};
  2457. };
  2458. template <>
  2459. struct vertex_property_selector<vec_adj_list_tag> {
  2460. typedef vec_adj_list_vertex_property_selector type;
  2461. };
  2462. } // namespace boost
  2463. #if !defined(BOOST_NO_TEMPLATE_PARTIAL_SPECIALIZATION)
  2464. namespace boost {
  2465. template <typename V>
  2466. struct hash< boost::detail::stored_edge<V> >
  2467. {
  2468. std::size_t
  2469. operator()(const boost::detail::stored_edge<V>& e) const
  2470. {
  2471. return hash<V>()(e.m_target);
  2472. }
  2473. };
  2474. template <typename V, typename P>
  2475. struct hash< boost::detail::stored_edge_property <V,P> >
  2476. {
  2477. std::size_t
  2478. operator()(const boost::detail::stored_edge_property<V,P>& e) const
  2479. {
  2480. return hash<V>()(e.m_target);
  2481. }
  2482. };
  2483. template <typename V, typename I, typename P>
  2484. struct hash< boost::detail::stored_edge_iter<V,I, P> >
  2485. {
  2486. std::size_t
  2487. operator()(const boost::detail::stored_edge_iter<V,I,P>& e) const
  2488. {
  2489. return hash<V>()(e.m_target);
  2490. }
  2491. };
  2492. }
  2493. #endif
  2494. #endif // BOOST_GRAPH_DETAIL_DETAIL_ADJACENCY_LIST_CCT
  2495. /*
  2496. Implementation Notes:
  2497. Many of the public interface functions in this file would have been
  2498. more conveniently implemented as inline friend functions.
  2499. However there are a few compiler bugs that make that approach
  2500. non-portable.
  2501. 1. g++ inline friend in namespace bug
  2502. 2. g++ using clause doesn't work with inline friends
  2503. 3. VC++ doesn't have Koenig lookup
  2504. For these reasons, the functions were all written as non-inline free
  2505. functions, and static cast was used to convert from the helper
  2506. class to the adjacency_list derived class.
  2507. Looking back, it might have been better to write out all functions
  2508. in terms of the adjacency_list, and then use a tag to dispatch
  2509. to the various helpers instead of using inheritance.
  2510. */