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			414 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
| //
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| //=======================================================================
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| // Copyright 1997, 1998, 1999, 2000 University of Notre Dame.
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| // Authors: Andrew Lumsdaine, Lie-Quan Lee, Jeremy G. Siek
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| //
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| // Distributed under the Boost Software License, Version 1.0. (See
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| // accompanying file LICENSE_1_0.txt or copy at
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| // http://www.boost.org/LICENSE_1_0.txt)
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| //=======================================================================
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| //
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| #ifndef BOOST_GRAPH_BREADTH_FIRST_SEARCH_HPP
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| #define BOOST_GRAPH_BREADTH_FIRST_SEARCH_HPP
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| 
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| /*
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|   Breadth First Search Algorithm (Cormen, Leiserson, and Rivest p. 470)
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| */
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| #include <boost/config.hpp>
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| #include <vector>
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| #include <boost/pending/queue.hpp>
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| #include <boost/graph/graph_traits.hpp>
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| #include <boost/graph/graph_concepts.hpp>
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| #include <boost/graph/visitors.hpp>
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| #include <boost/graph/named_function_params.hpp>
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| #include <boost/graph/overloading.hpp>
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| #include <boost/graph/graph_concepts.hpp>
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| #include <boost/graph/two_bit_color_map.hpp>
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| #include <boost/concept/assert.hpp>
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| 
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| #ifdef BOOST_GRAPH_USE_MPI
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| #include <boost/graph/distributed/concepts.hpp>
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| #endif // BOOST_GRAPH_USE_MPI
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| 
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| namespace boost {
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| 
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|   template <class Visitor, class Graph>
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|   struct BFSVisitorConcept {
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|     void constraints() {
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|       BOOST_CONCEPT_ASSERT(( CopyConstructibleConcept<Visitor> ));
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|       vis.initialize_vertex(u, g);
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|       vis.discover_vertex(u, g);
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|       vis.examine_vertex(u, g);
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|       vis.examine_edge(e, g);
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|       vis.tree_edge(e, g);
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|       vis.non_tree_edge(e, g);
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|       vis.gray_target(e, g);
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|       vis.black_target(e, g);
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|       vis.finish_vertex(u, g);
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|     }
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|     Visitor vis;
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|     Graph g;
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|     typename graph_traits<Graph>::vertex_descriptor u;
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|     typename graph_traits<Graph>::edge_descriptor e;
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|   };
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| 
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| 
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|   // Multiple-source version
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|   template <class IncidenceGraph, class Buffer, class BFSVisitor,
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|             class ColorMap, class SourceIterator>
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|   void breadth_first_visit
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|     (const IncidenceGraph& g,
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|      SourceIterator sources_begin, SourceIterator sources_end,
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|      Buffer& Q, BFSVisitor vis, ColorMap color)
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|   {
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|     BOOST_CONCEPT_ASSERT(( IncidenceGraphConcept<IncidenceGraph> ));
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|     typedef graph_traits<IncidenceGraph> GTraits;
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|     typedef typename GTraits::vertex_descriptor Vertex;
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|     BOOST_CONCEPT_ASSERT(( BFSVisitorConcept<BFSVisitor, IncidenceGraph> ));
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|     BOOST_CONCEPT_ASSERT(( ReadWritePropertyMapConcept<ColorMap, Vertex> ));
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|     typedef typename property_traits<ColorMap>::value_type ColorValue;
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|     typedef color_traits<ColorValue> Color;
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|     typename GTraits::out_edge_iterator ei, ei_end;
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| 
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|     for (; sources_begin != sources_end; ++sources_begin) {
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|       Vertex s = *sources_begin;
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|       put(color, s, Color::gray());           vis.discover_vertex(s, g);
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|       Q.push(s);
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|     }
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|     while (! Q.empty()) {
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|       Vertex u = Q.top(); Q.pop();            vis.examine_vertex(u, g);
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|       for (boost::tie(ei, ei_end) = out_edges(u, g); ei != ei_end; ++ei) {
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|         Vertex v = target(*ei, g);            vis.examine_edge(*ei, g);
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|         ColorValue v_color = get(color, v);
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|         if (v_color == Color::white()) {      vis.tree_edge(*ei, g);
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|           put(color, v, Color::gray());       vis.discover_vertex(v, g);
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|           Q.push(v);
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|         } else {                              vis.non_tree_edge(*ei, g);
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|           if (v_color == Color::gray())       vis.gray_target(*ei, g);
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|           else                                vis.black_target(*ei, g);
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|         }
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|       } // end for
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|       put(color, u, Color::black());          vis.finish_vertex(u, g);
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|     } // end while
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|   } // breadth_first_visit
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| 
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|   // Single-source version
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|   template <class IncidenceGraph, class Buffer, class BFSVisitor,
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|             class ColorMap>
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|   void breadth_first_visit
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|     (const IncidenceGraph& g,
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|      typename graph_traits<IncidenceGraph>::vertex_descriptor s,
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|      Buffer& Q, BFSVisitor vis, ColorMap color)
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|   {
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|     typename graph_traits<IncidenceGraph>::vertex_descriptor sources[1] = {s};
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|     breadth_first_visit(g, sources, sources + 1, Q, vis, color);
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|   }
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| 
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| 
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|   template <class VertexListGraph, class SourceIterator,
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|             class Buffer, class BFSVisitor,
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|             class ColorMap>
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|   void breadth_first_search
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|     (const VertexListGraph& g,
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|      SourceIterator sources_begin, SourceIterator sources_end,
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|      Buffer& Q, BFSVisitor vis, ColorMap color)
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|   {
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|     // Initialization
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|     typedef typename property_traits<ColorMap>::value_type ColorValue;
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|     typedef color_traits<ColorValue> Color;
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|     typename boost::graph_traits<VertexListGraph>::vertex_iterator i, i_end;
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|     for (boost::tie(i, i_end) = vertices(g); i != i_end; ++i) {
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|       vis.initialize_vertex(*i, g);
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|       put(color, *i, Color::white());
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|     }
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|     breadth_first_visit(g, sources_begin, sources_end, Q, vis, color);
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|   }
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| 
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|   template <class VertexListGraph, class Buffer, class BFSVisitor,
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|             class ColorMap>
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|   void breadth_first_search
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|     (const VertexListGraph& g,
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|      typename graph_traits<VertexListGraph>::vertex_descriptor s,
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|      Buffer& Q, BFSVisitor vis, ColorMap color)
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|   {
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|     typename graph_traits<VertexListGraph>::vertex_descriptor sources[1] = {s};
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|     breadth_first_search(g, sources, sources + 1, Q, vis, color);
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|   }
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| 
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|   namespace graph { struct bfs_visitor_event_not_overridden {}; }
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| 
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| 
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|   template <class Visitors = null_visitor>
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|   class bfs_visitor {
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|   public:
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|     bfs_visitor() { }
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|     bfs_visitor(Visitors vis) : m_vis(vis) { }
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| 
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|     template <class Vertex, class Graph>
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|     graph::bfs_visitor_event_not_overridden
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|     initialize_vertex(Vertex u, Graph& g)
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|     {
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|       invoke_visitors(m_vis, u, g, ::boost::on_initialize_vertex());
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|       return graph::bfs_visitor_event_not_overridden();
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|     }
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| 
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|     template <class Vertex, class Graph>
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|     graph::bfs_visitor_event_not_overridden
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|     discover_vertex(Vertex u, Graph& g)
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|     {
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|       invoke_visitors(m_vis, u, g, ::boost::on_discover_vertex());
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|       return graph::bfs_visitor_event_not_overridden();
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|     }
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| 
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|     template <class Vertex, class Graph>
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|     graph::bfs_visitor_event_not_overridden
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|     examine_vertex(Vertex u, Graph& g)
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|     {
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|       invoke_visitors(m_vis, u, g, ::boost::on_examine_vertex());
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|       return graph::bfs_visitor_event_not_overridden();
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|     }
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| 
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|     template <class Edge, class Graph>
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|     graph::bfs_visitor_event_not_overridden
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|     examine_edge(Edge e, Graph& g)
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|     {
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|       invoke_visitors(m_vis, e, g, ::boost::on_examine_edge());
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|       return graph::bfs_visitor_event_not_overridden();
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|     }
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| 
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|     template <class Edge, class Graph>
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|     graph::bfs_visitor_event_not_overridden
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|     tree_edge(Edge e, Graph& g)
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|     {
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|       invoke_visitors(m_vis, e, g, ::boost::on_tree_edge());
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|       return graph::bfs_visitor_event_not_overridden();
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|     }
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| 
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|     template <class Edge, class Graph>
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|     graph::bfs_visitor_event_not_overridden
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|     non_tree_edge(Edge e, Graph& g)
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|     {
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|       invoke_visitors(m_vis, e, g, ::boost::on_non_tree_edge());
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|       return graph::bfs_visitor_event_not_overridden();
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|     }
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| 
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|     template <class Edge, class Graph>
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|     graph::bfs_visitor_event_not_overridden
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|     gray_target(Edge e, Graph& g)
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|     {
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|       invoke_visitors(m_vis, e, g, ::boost::on_gray_target());
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|       return graph::bfs_visitor_event_not_overridden();
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|     }
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| 
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|     template <class Edge, class Graph>
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|     graph::bfs_visitor_event_not_overridden
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|     black_target(Edge e, Graph& g)
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|     {
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|       invoke_visitors(m_vis, e, g, ::boost::on_black_target());
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|       return graph::bfs_visitor_event_not_overridden();
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|     }
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| 
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|     template <class Vertex, class Graph>
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|     graph::bfs_visitor_event_not_overridden
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|     finish_vertex(Vertex u, Graph& g)
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|     {
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|       invoke_visitors(m_vis, u, g, ::boost::on_finish_vertex());
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|       return graph::bfs_visitor_event_not_overridden();
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|     }
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| 
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|     BOOST_GRAPH_EVENT_STUB(on_initialize_vertex,bfs)
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|     BOOST_GRAPH_EVENT_STUB(on_discover_vertex,bfs)
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|     BOOST_GRAPH_EVENT_STUB(on_examine_vertex,bfs)
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|     BOOST_GRAPH_EVENT_STUB(on_examine_edge,bfs)
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|     BOOST_GRAPH_EVENT_STUB(on_tree_edge,bfs)
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|     BOOST_GRAPH_EVENT_STUB(on_non_tree_edge,bfs)
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|     BOOST_GRAPH_EVENT_STUB(on_gray_target,bfs)
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|     BOOST_GRAPH_EVENT_STUB(on_black_target,bfs)
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|     BOOST_GRAPH_EVENT_STUB(on_finish_vertex,bfs)
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| 
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|   protected:
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|     Visitors m_vis;
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|   };
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|   template <class Visitors>
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|   bfs_visitor<Visitors>
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|   make_bfs_visitor(Visitors vis) {
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|     return bfs_visitor<Visitors>(vis);
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|   }
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|   typedef bfs_visitor<> default_bfs_visitor;
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| 
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| 
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|   namespace detail {
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| 
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|     template <class VertexListGraph, class ColorMap, class BFSVisitor,
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|       class P, class T, class R>
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|     void bfs_helper
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|       (VertexListGraph& g,
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|        typename graph_traits<VertexListGraph>::vertex_descriptor s,
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|        ColorMap color,
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|        BFSVisitor vis,
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|        const bgl_named_params<P, T, R>& params,
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|        boost::mpl::false_)
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|     {
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|       typedef graph_traits<VertexListGraph> Traits;
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|       // Buffer default
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|       typedef typename Traits::vertex_descriptor Vertex;
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|       typedef boost::queue<Vertex> queue_t;
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|       queue_t Q;
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|       breadth_first_search
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|         (g, s,
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|          choose_param(get_param(params, buffer_param_t()), boost::ref(Q)).get(),
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|          vis, color);
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|     }
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| 
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| #ifdef BOOST_GRAPH_USE_MPI
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|     template <class DistributedGraph, class ColorMap, class BFSVisitor,
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|               class P, class T, class R>
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|     void bfs_helper
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|       (DistributedGraph& g,
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|        typename graph_traits<DistributedGraph>::vertex_descriptor s,
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|        ColorMap color,
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|        BFSVisitor vis,
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|        const bgl_named_params<P, T, R>& params,
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|        boost::mpl::true_);
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| #endif // BOOST_GRAPH_USE_MPI
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| 
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|     //-------------------------------------------------------------------------
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|     // Choose between default color and color parameters. Using
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|     // function dispatching so that we don't require vertex index if
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|     // the color default is not being used.
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| 
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|     template <class ColorMap>
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|     struct bfs_dispatch {
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|       template <class VertexListGraph, class P, class T, class R>
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|       static void apply
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|       (VertexListGraph& g,
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|        typename graph_traits<VertexListGraph>::vertex_descriptor s,
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|        const bgl_named_params<P, T, R>& params,
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|        ColorMap color)
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|       {
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|         bfs_helper
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|           (g, s, color,
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|            choose_param(get_param(params, graph_visitor),
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|                         make_bfs_visitor(null_visitor())),
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|            params,
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|            boost::mpl::bool_<
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|              boost::is_base_and_derived<
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|                distributed_graph_tag,
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|                typename graph_traits<VertexListGraph>::traversal_category>::value>());
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|       }
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|     };
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| 
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|     template <>
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|     struct bfs_dispatch<param_not_found> {
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|       template <class VertexListGraph, class P, class T, class R>
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|       static void apply
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|       (VertexListGraph& g,
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|        typename graph_traits<VertexListGraph>::vertex_descriptor s,
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|        const bgl_named_params<P, T, R>& params,
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|        param_not_found)
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|       {
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|         null_visitor null_vis;
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| 
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|         bfs_helper
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|           (g, s,
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|            make_two_bit_color_map
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|            (num_vertices(g),
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|             choose_const_pmap(get_param(params, vertex_index),
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|                               g, vertex_index)),
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|            choose_param(get_param(params, graph_visitor),
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|                         make_bfs_visitor(null_vis)),
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|            params,
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|            boost::mpl::bool_<
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|              boost::is_base_and_derived<
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|                distributed_graph_tag,
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|                typename graph_traits<VertexListGraph>::traversal_category>::value>());
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|       }
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|     };
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| 
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|   } // namespace detail
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| 
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| #if 1
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|   // Named Parameter Variant
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|   template <class VertexListGraph, class P, class T, class R>
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|   void breadth_first_search
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|     (const VertexListGraph& g,
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|      typename graph_traits<VertexListGraph>::vertex_descriptor s,
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|      const bgl_named_params<P, T, R>& params)
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|   {
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|     // The graph is passed by *const* reference so that graph adaptors
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|     // (temporaries) can be passed into this function. However, the
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|     // graph is not really const since we may write to property maps
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|     // of the graph.
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|     VertexListGraph& ng = const_cast<VertexListGraph&>(g);
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|     typedef typename get_param_type< vertex_color_t, bgl_named_params<P,T,R> >::type C;
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|     detail::bfs_dispatch<C>::apply(ng, s, params,
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|                                    get_param(params, vertex_color));
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|   }
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| #endif
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| 
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| 
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|   // This version does not initialize colors, user has to.
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| 
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|   template <class IncidenceGraph, class P, class T, class R>
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|   void breadth_first_visit
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|     (const IncidenceGraph& g,
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|      typename graph_traits<IncidenceGraph>::vertex_descriptor s,
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|      const bgl_named_params<P, T, R>& params)
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|   {
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|     // The graph is passed by *const* reference so that graph adaptors
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|     // (temporaries) can be passed into this function. However, the
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|     // graph is not really const since we may write to property maps
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|     // of the graph.
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|     IncidenceGraph& ng = const_cast<IncidenceGraph&>(g);
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| 
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|     typedef graph_traits<IncidenceGraph> Traits;
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|     // Buffer default
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|     typedef typename Traits::vertex_descriptor vertex_descriptor;
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|     typedef boost::queue<vertex_descriptor> queue_t;
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|     queue_t Q;
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| 
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|     breadth_first_visit
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|       (ng, s,
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|        choose_param(get_param(params, buffer_param_t()), boost::ref(Q)).get(),
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|        choose_param(get_param(params, graph_visitor),
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|                     make_bfs_visitor(null_visitor())),
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|        choose_pmap(get_param(params, vertex_color), ng, vertex_color)
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|        );
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|   }
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| 
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|   namespace graph {
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|     namespace detail {
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|       template <typename Graph, typename Source>
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|       struct breadth_first_search_impl {
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|         typedef void result_type;
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|         template <typename ArgPack>
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|         void operator()(const Graph& g, const Source& source, const ArgPack& arg_pack) {
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|           using namespace boost::graph::keywords;
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|           typename boost::graph_traits<Graph>::vertex_descriptor sources[1] = {source};
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|           boost::queue<typename boost::graph_traits<Graph>::vertex_descriptor> Q;
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|           boost::breadth_first_search(g,
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|                                       &sources[0],
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|                                       &sources[1], 
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|                                       boost::unwrap_ref(arg_pack[_buffer | boost::ref(Q)]),
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|                                       arg_pack[_visitor | make_bfs_visitor(null_visitor())],
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|                                       boost::detail::make_color_map_from_arg_pack(g, arg_pack));
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|         }
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|       };
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|     }
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|     BOOST_GRAPH_MAKE_FORWARDING_FUNCTION(breadth_first_search, 2, 4)
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|   }
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| 
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| #if 0
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|   // Named Parameter Variant
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|   BOOST_GRAPH_MAKE_OLD_STYLE_PARAMETER_FUNCTION(breadth_first_search, 2)
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| #endif
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| 
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| } // namespace boost
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| 
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| #ifdef BOOST_GRAPH_USE_MPI
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| #  include <boost/graph/distributed/breadth_first_search.hpp>
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| #endif
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| 
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| #endif // BOOST_GRAPH_BREADTH_FIRST_SEARCH_HPP
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| 
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