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deba@220
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/* -*- mode: C++; indent-tabs-mode: nil; -*-
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deba@220
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 *
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deba@220
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     3  | 
 * This file is a part of LEMON, a generic C++ optimization library.
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deba@220
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 *
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alpar@440
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     5  | 
 * Copyright (C) 2003-2009
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deba@220
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     6  | 
 * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
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deba@220
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     7  | 
 * (Egervary Research Group on Combinatorial Optimization, EGRES).
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deba@220
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     8  | 
 *
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deba@220
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     9  | 
 * Permission to use, modify and distribute this software is granted
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deba@220
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    10  | 
 * provided that this copyright notice appears in all copies. For
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deba@220
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    11  | 
 * precise terms see the accompanying LICENSE file.
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deba@220
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    12  | 
 *
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deba@220
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    13  | 
 * This software is provided "AS IS" with no warranty of any kind,
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deba@220
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 * express or implied, and with no claim as to its suitability for any
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deba@220
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    15  | 
 * purpose.
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deba@220
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 *
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deba@220
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    17  | 
 */
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#ifndef LEMON_CORE_H
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    20  | 
#define LEMON_CORE_H
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    22  | 
#include <vector>
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    23  | 
#include <algorithm>
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    24  | 
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deba@220
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    25  | 
#include <lemon/bits/enable_if.h>
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deba@220
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    26  | 
#include <lemon/bits/traits.h>
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alpar@319
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    27  | 
#include <lemon/assert.h>
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deba@220
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deba@220
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///\file
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deba@220
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///\brief LEMON core utilities.
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kpeter@229
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///
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kpeter@229
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///This header file contains core utilities for LEMON.
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deba@233
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    33  | 
///It is automatically included by all graph types, therefore it usually
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kpeter@229
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    34  | 
///do not have to be included directly.
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deba@220
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    36  | 
namespace lemon {
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deba@220
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  /// \brief Dummy type to make it easier to create invalid iterators.
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deba@220
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    39  | 
  ///
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deba@220
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  /// Dummy type to make it easier to create invalid iterators.
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deba@220
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  /// See \ref INVALID for the usage.
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deba@220
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  struct Invalid {
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  public:
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    bool operator==(Invalid) { return true;  }
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deba@220
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    bool operator!=(Invalid) { return false; }
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deba@220
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    bool operator< (Invalid) { return false; }
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deba@220
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    47  | 
  };
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deba@220
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    48  | 
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deba@220
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  /// \brief Invalid iterators.
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deba@220
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    50  | 
  ///
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deba@220
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    51  | 
  /// \ref Invalid is a global type that converts to each iterator
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deba@220
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  /// in such a way that the value of the target iterator will be invalid.
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deba@220
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#ifdef LEMON_ONLY_TEMPLATES
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  const Invalid INVALID = Invalid();
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deba@220
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#else
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  extern const Invalid INVALID;
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deba@220
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#endif
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deba@220
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    58  | 
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deba@220
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  /// \addtogroup gutils
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deba@220
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  /// @{
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kpeter@300
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  ///Create convenience typedefs for the digraph types and iterators
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deba@220
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kpeter@282
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  ///This \c \#define creates convenient type definitions for the following
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kpeter@282
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  ///types of \c Digraph: \c Node,  \c NodeIt, \c Arc, \c ArcIt, \c InArcIt,
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deba@220
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  ///\c OutArcIt, \c BoolNodeMap, \c IntNodeMap, \c DoubleNodeMap,
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deba@220
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  ///\c BoolArcMap, \c IntArcMap, \c DoubleArcMap.
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deba@220
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  ///
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  ///\note If the graph type is a dependent type, ie. the graph type depend
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deba@220
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  ///on a template parameter, then use \c TEMPLATE_DIGRAPH_TYPEDEFS()
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deba@220
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  ///macro.
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#define DIGRAPH_TYPEDEFS(Digraph)                                       \
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  typedef Digraph::Node Node;                                           \
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  typedef Digraph::NodeIt NodeIt;                                       \
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  typedef Digraph::Arc Arc;                                             \
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  typedef Digraph::ArcIt ArcIt;                                         \
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  typedef Digraph::InArcIt InArcIt;                                     \
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  typedef Digraph::OutArcIt OutArcIt;                                   \
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  typedef Digraph::NodeMap<bool> BoolNodeMap;                           \
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  typedef Digraph::NodeMap<int> IntNodeMap;                             \
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  typedef Digraph::NodeMap<double> DoubleNodeMap;                       \
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  typedef Digraph::ArcMap<bool> BoolArcMap;                             \
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  typedef Digraph::ArcMap<int> IntArcMap;                               \
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kpeter@300
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  typedef Digraph::ArcMap<double> DoubleArcMap
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deba@220
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kpeter@300
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  ///Create convenience typedefs for the digraph types and iterators
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deba@220
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deba@220
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  ///\see DIGRAPH_TYPEDEFS
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deba@220
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  ///
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deba@220
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  ///\note Use this macro, if the graph type is a dependent type,
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deba@220
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  ///ie. the graph type depend on a template parameter.
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deba@220
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#define TEMPLATE_DIGRAPH_TYPEDEFS(Digraph)                              \
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deba@220
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  typedef typename Digraph::Node Node;                                  \
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  typedef typename Digraph::NodeIt NodeIt;                              \
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  typedef typename Digraph::Arc Arc;                                    \
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  typedef typename Digraph::ArcIt ArcIt;                                \
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  typedef typename Digraph::InArcIt InArcIt;                            \
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deba@220
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  typedef typename Digraph::OutArcIt OutArcIt;                          \
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  typedef typename Digraph::template NodeMap<bool> BoolNodeMap;         \
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  typedef typename Digraph::template NodeMap<int> IntNodeMap;           \
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  typedef typename Digraph::template NodeMap<double> DoubleNodeMap;     \
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  typedef typename Digraph::template ArcMap<bool> BoolArcMap;           \
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deba@220
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  typedef typename Digraph::template ArcMap<int> IntArcMap;             \
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kpeter@300
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  typedef typename Digraph::template ArcMap<double> DoubleArcMap
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deba@220
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kpeter@300
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  ///Create convenience typedefs for the graph types and iterators
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deba@220
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kpeter@282
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  ///This \c \#define creates the same convenient type definitions as defined
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deba@220
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  ///by \ref DIGRAPH_TYPEDEFS(Graph) and six more, namely it creates
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deba@220
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  ///\c Edge, \c EdgeIt, \c IncEdgeIt, \c BoolEdgeMap, \c IntEdgeMap,
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deba@220
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  ///\c DoubleEdgeMap.
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deba@220
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  ///
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deba@220
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  ///\note If the graph type is a dependent type, ie. the graph type depend
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kpeter@282
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  ///on a template parameter, then use \c TEMPLATE_GRAPH_TYPEDEFS()
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deba@220
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  ///macro.
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deba@220
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#define GRAPH_TYPEDEFS(Graph)                                           \
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deba@220
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  DIGRAPH_TYPEDEFS(Graph);                                              \
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deba@220
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  typedef Graph::Edge Edge;                                             \
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deba@220
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  typedef Graph::EdgeIt EdgeIt;                                         \
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deba@220
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  typedef Graph::IncEdgeIt IncEdgeIt;                                   \
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deba@220
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  typedef Graph::EdgeMap<bool> BoolEdgeMap;                             \
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deba@220
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  typedef Graph::EdgeMap<int> IntEdgeMap;                               \
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kpeter@300
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  typedef Graph::EdgeMap<double> DoubleEdgeMap
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deba@220
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kpeter@300
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  ///Create convenience typedefs for the graph types and iterators
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deba@220
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deba@220
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  ///\see GRAPH_TYPEDEFS
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deba@220
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  ///
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deba@220
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  ///\note Use this macro, if the graph type is a dependent type,
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deba@220
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   130  | 
  ///ie. the graph type depend on a template parameter.
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deba@220
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   131  | 
#define TEMPLATE_GRAPH_TYPEDEFS(Graph)                                  \
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deba@220
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  TEMPLATE_DIGRAPH_TYPEDEFS(Graph);                                     \
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deba@220
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  typedef typename Graph::Edge Edge;                                    \
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deba@220
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  typedef typename Graph::EdgeIt EdgeIt;                                \
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deba@220
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  typedef typename Graph::IncEdgeIt IncEdgeIt;                          \
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deba@220
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  typedef typename Graph::template EdgeMap<bool> BoolEdgeMap;           \
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deba@220
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  typedef typename Graph::template EdgeMap<int> IntEdgeMap;             \
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kpeter@300
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  typedef typename Graph::template EdgeMap<double> DoubleEdgeMap
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deba@220
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   139  | 
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kpeter@282
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  /// \brief Function to count the items in a graph.
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deba@220
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   141  | 
  ///
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kpeter@282
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  /// This function counts the items (nodes, arcs etc.) in a graph.
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kpeter@282
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   143  | 
  /// The complexity of the function is linear because
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deba@220
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   144  | 
  /// it iterates on all of the items.
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deba@220
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   145  | 
  template <typename Graph, typename Item>
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deba@220
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  inline int countItems(const Graph& g) {
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deba@220
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    typedef typename ItemSetTraits<Graph, Item>::ItemIt ItemIt;
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deba@220
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   148  | 
    int num = 0;
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deba@220
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   149  | 
    for (ItemIt it(g); it != INVALID; ++it) {
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deba@220
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   150  | 
      ++num;
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deba@220
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   151  | 
    }
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deba@220
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   152  | 
    return num;
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deba@220
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   153  | 
  }
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deba@220
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   154  | 
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deba@220
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  // Node counting:
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deba@220
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   156  | 
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deba@220
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   157  | 
  namespace _core_bits {
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deba@220
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   158  | 
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deba@220
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    template <typename Graph, typename Enable = void>
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deba@220
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   160  | 
    struct CountNodesSelector {
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deba@220
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      static int count(const Graph &g) {
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deba@220
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   162  | 
        return countItems<Graph, typename Graph::Node>(g);
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deba@220
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   163  | 
      }
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deba@220
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   164  | 
    };
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deba@220
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   165  | 
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deba@220
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   166  | 
    template <typename Graph>
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deba@220
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   167  | 
    struct CountNodesSelector<
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deba@220
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      Graph, typename
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deba@220
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   169  | 
      enable_if<typename Graph::NodeNumTag, void>::type>
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deba@220
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   170  | 
    {
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deba@220
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   171  | 
      static int count(const Graph &g) {
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deba@220
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   172  | 
        return g.nodeNum();
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deba@220
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   173  | 
      }
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deba@220
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   174  | 
    };
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deba@220
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   175  | 
  }
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deba@220
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   176  | 
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deba@220
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  /// \brief Function to count the nodes in the graph.
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deba@220
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   178  | 
  ///
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deba@220
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   179  | 
  /// This function counts the nodes in the graph.
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kpeter@282
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   180  | 
  /// The complexity of the function is <em>O</em>(<em>n</em>), but for some
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kpeter@282
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   181  | 
  /// graph structures it is specialized to run in <em>O</em>(1).
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deba@220
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   182  | 
  ///
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kpeter@282
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   183  | 
  /// \note If the graph contains a \c nodeNum() member function and a
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kpeter@282
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   184  | 
  /// \c NodeNumTag tag then this function calls directly the member
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deba@220
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   185  | 
  /// function to query the cardinality of the node set.
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deba@220
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   186  | 
  template <typename Graph>
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deba@220
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   187  | 
  inline int countNodes(const Graph& g) {
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deba@220
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   188  | 
    return _core_bits::CountNodesSelector<Graph>::count(g);
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deba@220
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   189  | 
  }
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deba@220
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   190  | 
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deba@220
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   191  | 
  // Arc counting:
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deba@220
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   192  | 
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deba@220
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   193  | 
  namespace _core_bits {
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deba@220
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   194  | 
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deba@220
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   195  | 
    template <typename Graph, typename Enable = void>
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deba@220
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   196  | 
    struct CountArcsSelector {
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deba@220
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   197  | 
      static int count(const Graph &g) {
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deba@220
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   198  | 
        return countItems<Graph, typename Graph::Arc>(g);
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deba@220
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   199  | 
      }
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deba@220
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   200  | 
    };
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deba@220
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   201  | 
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deba@220
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   202  | 
    template <typename Graph>
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deba@220
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   203  | 
    struct CountArcsSelector<
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deba@220
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   204  | 
      Graph,
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deba@220
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   205  | 
      typename enable_if<typename Graph::ArcNumTag, void>::type>
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deba@220
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   206  | 
    {
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deba@220
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   207  | 
      static int count(const Graph &g) {
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deba@220
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   208  | 
        return g.arcNum();
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deba@220
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   209  | 
      }
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deba@220
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   210  | 
    };
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deba@220
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   211  | 
  }
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deba@220
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   212  | 
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deba@220
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   213  | 
  /// \brief Function to count the arcs in the graph.
  | 
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deba@220
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   214  | 
  ///
  | 
| 
deba@220
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   215  | 
  /// This function counts the arcs in the graph.
  | 
| 
kpeter@282
 | 
   216  | 
  /// The complexity of the function is <em>O</em>(<em>m</em>), but for some
  | 
| 
kpeter@282
 | 
   217  | 
  /// graph structures it is specialized to run in <em>O</em>(1).
  | 
| 
deba@220
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   218  | 
  ///
  | 
| 
kpeter@282
 | 
   219  | 
  /// \note If the graph contains a \c arcNum() member function and a
  | 
| 
kpeter@282
 | 
   220  | 
  /// \c ArcNumTag tag then this function calls directly the member
  | 
| 
deba@220
 | 
   221  | 
  /// function to query the cardinality of the arc set.
  | 
| 
deba@220
 | 
   222  | 
  template <typename Graph>
  | 
| 
deba@220
 | 
   223  | 
  inline int countArcs(const Graph& g) {
 | 
| 
deba@220
 | 
   224  | 
    return _core_bits::CountArcsSelector<Graph>::count(g);
  | 
| 
deba@220
 | 
   225  | 
  }
  | 
| 
deba@220
 | 
   226  | 
  | 
| 
deba@220
 | 
   227  | 
  // Edge counting:
  | 
| 
kpeter@282
 | 
   228  | 
  | 
| 
deba@220
 | 
   229  | 
  namespace _core_bits {
 | 
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deba@220
 | 
   230  | 
  | 
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deba@220
 | 
   231  | 
    template <typename Graph, typename Enable = void>
  | 
| 
deba@220
 | 
   232  | 
    struct CountEdgesSelector {
 | 
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deba@220
 | 
   233  | 
      static int count(const Graph &g) {
 | 
| 
deba@220
 | 
   234  | 
        return countItems<Graph, typename Graph::Edge>(g);
  | 
| 
deba@220
 | 
   235  | 
      }
  | 
| 
deba@220
 | 
   236  | 
    };
  | 
| 
deba@220
 | 
   237  | 
  | 
| 
deba@220
 | 
   238  | 
    template <typename Graph>
  | 
| 
deba@220
 | 
   239  | 
    struct CountEdgesSelector<
  | 
| 
deba@220
 | 
   240  | 
      Graph,
  | 
| 
deba@220
 | 
   241  | 
      typename enable_if<typename Graph::EdgeNumTag, void>::type>
  | 
| 
deba@220
 | 
   242  | 
    {
 | 
| 
deba@220
 | 
   243  | 
      static int count(const Graph &g) {
 | 
| 
deba@220
 | 
   244  | 
        return g.edgeNum();
  | 
| 
deba@220
 | 
   245  | 
      }
  | 
| 
deba@220
 | 
   246  | 
    };
  | 
| 
deba@220
 | 
   247  | 
  }
  | 
| 
deba@220
 | 
   248  | 
  | 
| 
deba@220
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   249  | 
  /// \brief Function to count the edges in the graph.
  | 
| 
deba@220
 | 
   250  | 
  ///
  | 
| 
deba@220
 | 
   251  | 
  /// This function counts the edges in the graph.
  | 
| 
kpeter@282
 | 
   252  | 
  /// The complexity of the function is <em>O</em>(<em>m</em>), but for some
  | 
| 
kpeter@282
 | 
   253  | 
  /// graph structures it is specialized to run in <em>O</em>(1).
  | 
| 
deba@220
 | 
   254  | 
  ///
  | 
| 
kpeter@282
 | 
   255  | 
  /// \note If the graph contains a \c edgeNum() member function and a
  | 
| 
kpeter@282
 | 
   256  | 
  /// \c EdgeNumTag tag then this function calls directly the member
  | 
| 
deba@220
 | 
   257  | 
  /// function to query the cardinality of the edge set.
  | 
| 
deba@220
 | 
   258  | 
  template <typename Graph>
  | 
| 
deba@220
 | 
   259  | 
  inline int countEdges(const Graph& g) {
 | 
| 
deba@220
 | 
   260  | 
    return _core_bits::CountEdgesSelector<Graph>::count(g);
  | 
| 
deba@220
 | 
   261  | 
  | 
| 
deba@220
 | 
   262  | 
  }
  | 
| 
deba@220
 | 
   263  | 
  | 
| 
deba@220
 | 
   264  | 
  | 
| 
deba@220
 | 
   265  | 
  template <typename Graph, typename DegIt>
  | 
| 
deba@220
 | 
   266  | 
  inline int countNodeDegree(const Graph& _g, const typename Graph::Node& _n) {
 | 
| 
deba@220
 | 
   267  | 
    int num = 0;
  | 
| 
deba@220
 | 
   268  | 
    for (DegIt it(_g, _n); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
   269  | 
      ++num;
  | 
| 
deba@220
 | 
   270  | 
    }
  | 
| 
deba@220
 | 
   271  | 
    return num;
  | 
| 
deba@220
 | 
   272  | 
  }
  | 
| 
deba@220
 | 
   273  | 
  | 
| 
deba@220
 | 
   274  | 
  /// \brief Function to count the number of the out-arcs from node \c n.
  | 
| 
deba@220
 | 
   275  | 
  ///
  | 
| 
deba@220
 | 
   276  | 
  /// This function counts the number of the out-arcs from node \c n
  | 
| 
kpeter@282
 | 
   277  | 
  /// in the graph \c g.
  | 
| 
deba@220
 | 
   278  | 
  template <typename Graph>
  | 
| 
kpeter@282
 | 
   279  | 
  inline int countOutArcs(const Graph& g,  const typename Graph::Node& n) {
 | 
| 
kpeter@282
 | 
   280  | 
    return countNodeDegree<Graph, typename Graph::OutArcIt>(g, n);
  | 
| 
deba@220
 | 
   281  | 
  }
  | 
| 
deba@220
 | 
   282  | 
  | 
| 
deba@220
 | 
   283  | 
  /// \brief Function to count the number of the in-arcs to node \c n.
  | 
| 
deba@220
 | 
   284  | 
  ///
  | 
| 
deba@220
 | 
   285  | 
  /// This function counts the number of the in-arcs to node \c n
  | 
| 
kpeter@282
 | 
   286  | 
  /// in the graph \c g.
  | 
| 
deba@220
 | 
   287  | 
  template <typename Graph>
  | 
| 
kpeter@282
 | 
   288  | 
  inline int countInArcs(const Graph& g,  const typename Graph::Node& n) {
 | 
| 
kpeter@282
 | 
   289  | 
    return countNodeDegree<Graph, typename Graph::InArcIt>(g, n);
  | 
| 
deba@220
 | 
   290  | 
  }
  | 
| 
deba@220
 | 
   291  | 
  | 
| 
deba@220
 | 
   292  | 
  /// \brief Function to count the number of the inc-edges to node \c n.
  | 
| 
deba@220
 | 
   293  | 
  ///
  | 
| 
deba@220
 | 
   294  | 
  /// This function counts the number of the inc-edges to node \c n
  | 
| 
kpeter@282
 | 
   295  | 
  /// in the undirected graph \c g.
  | 
| 
deba@220
 | 
   296  | 
  template <typename Graph>
  | 
| 
kpeter@282
 | 
   297  | 
  inline int countIncEdges(const Graph& g,  const typename Graph::Node& n) {
 | 
| 
kpeter@282
 | 
   298  | 
    return countNodeDegree<Graph, typename Graph::IncEdgeIt>(g, n);
  | 
| 
deba@220
 | 
   299  | 
  }
  | 
| 
deba@220
 | 
   300  | 
  | 
| 
deba@220
 | 
   301  | 
  namespace _core_bits {
 | 
| 
deba@220
 | 
   302  | 
  | 
| 
deba@220
 | 
   303  | 
    template <typename Digraph, typename Item, typename RefMap>
  | 
| 
deba@220
 | 
   304  | 
    class MapCopyBase {
 | 
| 
deba@220
 | 
   305  | 
    public:
  | 
| 
deba@220
 | 
   306  | 
      virtual void copy(const Digraph& from, const RefMap& refMap) = 0;
  | 
| 
deba@220
 | 
   307  | 
  | 
| 
deba@220
 | 
   308  | 
      virtual ~MapCopyBase() {}
 | 
| 
deba@220
 | 
   309  | 
    };
  | 
| 
deba@220
 | 
   310  | 
  | 
| 
deba@220
 | 
   311  | 
    template <typename Digraph, typename Item, typename RefMap,
  | 
| 
kpeter@282
 | 
   312  | 
              typename FromMap, typename ToMap>
  | 
| 
deba@220
 | 
   313  | 
    class MapCopy : public MapCopyBase<Digraph, Item, RefMap> {
 | 
| 
deba@220
 | 
   314  | 
    public:
  | 
| 
deba@220
 | 
   315  | 
  | 
| 
kpeter@282
 | 
   316  | 
      MapCopy(const FromMap& map, ToMap& tmap)
  | 
| 
kpeter@282
 | 
   317  | 
        : _map(map), _tmap(tmap) {}
 | 
| 
deba@220
 | 
   318  | 
  | 
| 
deba@220
 | 
   319  | 
      virtual void copy(const Digraph& digraph, const RefMap& refMap) {
 | 
| 
deba@220
 | 
   320  | 
        typedef typename ItemSetTraits<Digraph, Item>::ItemIt ItemIt;
  | 
| 
deba@220
 | 
   321  | 
        for (ItemIt it(digraph); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
   322  | 
          _tmap.set(refMap[it], _map[it]);
  | 
| 
deba@220
 | 
   323  | 
        }
  | 
| 
deba@220
 | 
   324  | 
      }
  | 
| 
deba@220
 | 
   325  | 
  | 
| 
deba@220
 | 
   326  | 
    private:
  | 
| 
kpeter@282
 | 
   327  | 
      const FromMap& _map;
  | 
| 
deba@220
 | 
   328  | 
      ToMap& _tmap;
  | 
| 
deba@220
 | 
   329  | 
    };
  | 
| 
deba@220
 | 
   330  | 
  | 
| 
deba@220
 | 
   331  | 
    template <typename Digraph, typename Item, typename RefMap, typename It>
  | 
| 
deba@220
 | 
   332  | 
    class ItemCopy : public MapCopyBase<Digraph, Item, RefMap> {
 | 
| 
deba@220
 | 
   333  | 
    public:
  | 
| 
deba@220
 | 
   334  | 
  | 
| 
kpeter@282
 | 
   335  | 
      ItemCopy(const Item& item, It& it) : _item(item), _it(it) {}
 | 
| 
deba@220
 | 
   336  | 
  | 
| 
deba@220
 | 
   337  | 
      virtual void copy(const Digraph&, const RefMap& refMap) {
 | 
| 
deba@220
 | 
   338  | 
        _it = refMap[_item];
  | 
| 
deba@220
 | 
   339  | 
      }
  | 
| 
deba@220
 | 
   340  | 
  | 
| 
deba@220
 | 
   341  | 
    private:
  | 
| 
kpeter@282
 | 
   342  | 
      Item _item;
  | 
| 
deba@220
 | 
   343  | 
      It& _it;
  | 
| 
deba@220
 | 
   344  | 
    };
  | 
| 
deba@220
 | 
   345  | 
  | 
| 
deba@220
 | 
   346  | 
    template <typename Digraph, typename Item, typename RefMap, typename Ref>
  | 
| 
deba@220
 | 
   347  | 
    class RefCopy : public MapCopyBase<Digraph, Item, RefMap> {
 | 
| 
deba@220
 | 
   348  | 
    public:
  | 
| 
deba@220
 | 
   349  | 
  | 
| 
deba@220
 | 
   350  | 
      RefCopy(Ref& map) : _map(map) {}
 | 
| 
deba@220
 | 
   351  | 
  | 
| 
deba@220
 | 
   352  | 
      virtual void copy(const Digraph& digraph, const RefMap& refMap) {
 | 
| 
deba@220
 | 
   353  | 
        typedef typename ItemSetTraits<Digraph, Item>::ItemIt ItemIt;
  | 
| 
deba@220
 | 
   354  | 
        for (ItemIt it(digraph); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
   355  | 
          _map.set(it, refMap[it]);
  | 
| 
deba@220
 | 
   356  | 
        }
  | 
| 
deba@220
 | 
   357  | 
      }
  | 
| 
deba@220
 | 
   358  | 
  | 
| 
deba@220
 | 
   359  | 
    private:
  | 
| 
deba@220
 | 
   360  | 
      Ref& _map;
  | 
| 
deba@220
 | 
   361  | 
    };
  | 
| 
deba@220
 | 
   362  | 
  | 
| 
deba@220
 | 
   363  | 
    template <typename Digraph, typename Item, typename RefMap,
  | 
| 
deba@220
 | 
   364  | 
              typename CrossRef>
  | 
| 
deba@220
 | 
   365  | 
    class CrossRefCopy : public MapCopyBase<Digraph, Item, RefMap> {
 | 
| 
deba@220
 | 
   366  | 
    public:
  | 
| 
deba@220
 | 
   367  | 
  | 
| 
deba@220
 | 
   368  | 
      CrossRefCopy(CrossRef& cmap) : _cmap(cmap) {}
 | 
| 
deba@220
 | 
   369  | 
  | 
| 
deba@220
 | 
   370  | 
      virtual void copy(const Digraph& digraph, const RefMap& refMap) {
 | 
| 
deba@220
 | 
   371  | 
        typedef typename ItemSetTraits<Digraph, Item>::ItemIt ItemIt;
  | 
| 
deba@220
 | 
   372  | 
        for (ItemIt it(digraph); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
   373  | 
          _cmap.set(refMap[it], it);
  | 
| 
deba@220
 | 
   374  | 
        }
  | 
| 
deba@220
 | 
   375  | 
      }
  | 
| 
deba@220
 | 
   376  | 
  | 
| 
deba@220
 | 
   377  | 
    private:
  | 
| 
deba@220
 | 
   378  | 
      CrossRef& _cmap;
  | 
| 
deba@220
 | 
   379  | 
    };
  | 
| 
deba@220
 | 
   380  | 
  | 
| 
deba@220
 | 
   381  | 
    template <typename Digraph, typename Enable = void>
  | 
| 
deba@220
 | 
   382  | 
    struct DigraphCopySelector {
 | 
| 
deba@220
 | 
   383  | 
      template <typename From, typename NodeRefMap, typename ArcRefMap>
  | 
| 
kpeter@282
 | 
   384  | 
      static void copy(const From& from, Digraph &to,
  | 
| 
deba@220
 | 
   385  | 
                       NodeRefMap& nodeRefMap, ArcRefMap& arcRefMap) {
 | 
| 
deba@220
 | 
   386  | 
        for (typename From::NodeIt it(from); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
   387  | 
          nodeRefMap[it] = to.addNode();
  | 
| 
deba@220
 | 
   388  | 
        }
  | 
| 
deba@220
 | 
   389  | 
        for (typename From::ArcIt it(from); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
   390  | 
          arcRefMap[it] = to.addArc(nodeRefMap[from.source(it)],
  | 
| 
deba@220
 | 
   391  | 
                                    nodeRefMap[from.target(it)]);
  | 
| 
deba@220
 | 
   392  | 
        }
  | 
| 
deba@220
 | 
   393  | 
      }
  | 
| 
deba@220
 | 
   394  | 
    };
  | 
| 
deba@220
 | 
   395  | 
  | 
| 
deba@220
 | 
   396  | 
    template <typename Digraph>
  | 
| 
deba@220
 | 
   397  | 
    struct DigraphCopySelector<
  | 
| 
deba@220
 | 
   398  | 
      Digraph,
  | 
| 
deba@220
 | 
   399  | 
      typename enable_if<typename Digraph::BuildTag, void>::type>
  | 
| 
deba@220
 | 
   400  | 
    {
 | 
| 
deba@220
 | 
   401  | 
      template <typename From, typename NodeRefMap, typename ArcRefMap>
  | 
| 
kpeter@282
 | 
   402  | 
      static void copy(const From& from, Digraph &to,
  | 
| 
deba@220
 | 
   403  | 
                       NodeRefMap& nodeRefMap, ArcRefMap& arcRefMap) {
 | 
| 
deba@220
 | 
   404  | 
        to.build(from, nodeRefMap, arcRefMap);
  | 
| 
deba@220
 | 
   405  | 
      }
  | 
| 
deba@220
 | 
   406  | 
    };
  | 
| 
deba@220
 | 
   407  | 
  | 
| 
deba@220
 | 
   408  | 
    template <typename Graph, typename Enable = void>
  | 
| 
deba@220
 | 
   409  | 
    struct GraphCopySelector {
 | 
| 
deba@220
 | 
   410  | 
      template <typename From, typename NodeRefMap, typename EdgeRefMap>
  | 
| 
kpeter@282
 | 
   411  | 
      static void copy(const From& from, Graph &to,
  | 
| 
deba@220
 | 
   412  | 
                       NodeRefMap& nodeRefMap, EdgeRefMap& edgeRefMap) {
 | 
| 
deba@220
 | 
   413  | 
        for (typename From::NodeIt it(from); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
   414  | 
          nodeRefMap[it] = to.addNode();
  | 
| 
deba@220
 | 
   415  | 
        }
  | 
| 
deba@220
 | 
   416  | 
        for (typename From::EdgeIt it(from); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
   417  | 
          edgeRefMap[it] = to.addEdge(nodeRefMap[from.u(it)],
  | 
| 
deba@220
 | 
   418  | 
                                      nodeRefMap[from.v(it)]);
  | 
| 
deba@220
 | 
   419  | 
        }
  | 
| 
deba@220
 | 
   420  | 
      }
  | 
| 
deba@220
 | 
   421  | 
    };
  | 
| 
deba@220
 | 
   422  | 
  | 
| 
deba@220
 | 
   423  | 
    template <typename Graph>
  | 
| 
deba@220
 | 
   424  | 
    struct GraphCopySelector<
  | 
| 
deba@220
 | 
   425  | 
      Graph,
  | 
| 
deba@220
 | 
   426  | 
      typename enable_if<typename Graph::BuildTag, void>::type>
  | 
| 
deba@220
 | 
   427  | 
    {
 | 
| 
deba@220
 | 
   428  | 
      template <typename From, typename NodeRefMap, typename EdgeRefMap>
  | 
| 
kpeter@282
 | 
   429  | 
      static void copy(const From& from, Graph &to,
  | 
| 
deba@220
 | 
   430  | 
                       NodeRefMap& nodeRefMap, EdgeRefMap& edgeRefMap) {
 | 
| 
deba@220
 | 
   431  | 
        to.build(from, nodeRefMap, edgeRefMap);
  | 
| 
deba@220
 | 
   432  | 
      }
  | 
| 
deba@220
 | 
   433  | 
    };
  | 
| 
deba@220
 | 
   434  | 
  | 
| 
deba@220
 | 
   435  | 
  }
  | 
| 
deba@220
 | 
   436  | 
  | 
| 
deba@220
 | 
   437  | 
  /// \brief Class to copy a digraph.
  | 
| 
deba@220
 | 
   438  | 
  ///
  | 
| 
deba@220
 | 
   439  | 
  /// Class to copy a digraph to another digraph (duplicate a digraph). The
  | 
| 
kpeter@282
 | 
   440  | 
  /// simplest way of using it is through the \c digraphCopy() function.
  | 
| 
deba@220
 | 
   441  | 
  ///
  | 
| 
kpeter@282
 | 
   442  | 
  /// This class not only make a copy of a digraph, but it can create
  | 
| 
deba@220
 | 
   443  | 
  /// references and cross references between the nodes and arcs of
  | 
| 
kpeter@282
 | 
   444  | 
  /// the two digraphs, and it can copy maps to use with the newly created
  | 
| 
kpeter@282
 | 
   445  | 
  /// digraph.
  | 
| 
deba@220
 | 
   446  | 
  ///
  | 
| 
kpeter@282
 | 
   447  | 
  /// To make a copy from a digraph, first an instance of DigraphCopy
  | 
| 
kpeter@282
 | 
   448  | 
  /// should be created, then the data belongs to the digraph should
  | 
| 
deba@220
 | 
   449  | 
  /// assigned to copy. In the end, the \c run() member should be
  | 
| 
deba@220
 | 
   450  | 
  /// called.
  | 
| 
deba@220
 | 
   451  | 
  ///
  | 
| 
kpeter@282
 | 
   452  | 
  /// The next code copies a digraph with several data:
  | 
| 
deba@220
 | 
   453  | 
  ///\code
  | 
| 
kpeter@282
 | 
   454  | 
  ///  DigraphCopy<OrigGraph, NewGraph> cg(orig_graph, new_graph);
  | 
| 
kpeter@282
 | 
   455  | 
  ///  // Create references for the nodes
  | 
| 
deba@220
 | 
   456  | 
  ///  OrigGraph::NodeMap<NewGraph::Node> nr(orig_graph);
  | 
| 
kpeter@282
 | 
   457  | 
  ///  cg.nodeRef(nr);
  | 
| 
kpeter@282
 | 
   458  | 
  ///  // Create cross references (inverse) for the arcs
  | 
| 
deba@220
 | 
   459  | 
  ///  NewGraph::ArcMap<OrigGraph::Arc> acr(new_graph);
  | 
| 
kpeter@282
 | 
   460  | 
  ///  cg.arcCrossRef(acr);
  | 
| 
kpeter@282
 | 
   461  | 
  ///  // Copy an arc map
  | 
| 
deba@220
 | 
   462  | 
  ///  OrigGraph::ArcMap<double> oamap(orig_graph);
  | 
| 
deba@220
 | 
   463  | 
  ///  NewGraph::ArcMap<double> namap(new_graph);
  | 
| 
kpeter@282
 | 
   464  | 
  ///  cg.arcMap(oamap, namap);
  | 
| 
kpeter@282
 | 
   465  | 
  ///  // Copy a node
  | 
| 
deba@220
 | 
   466  | 
  ///  OrigGraph::Node on;
  | 
| 
deba@220
 | 
   467  | 
  ///  NewGraph::Node nn;
  | 
| 
kpeter@282
 | 
   468  | 
  ///  cg.node(on, nn);
  | 
| 
kpeter@282
 | 
   469  | 
  ///  // Execute copying
  | 
| 
kpeter@282
 | 
   470  | 
  ///  cg.run();
  | 
| 
deba@220
 | 
   471  | 
  ///\endcode
  | 
| 
kpeter@282
 | 
   472  | 
  template <typename From, typename To>
  | 
| 
deba@220
 | 
   473  | 
  class DigraphCopy {
 | 
| 
deba@220
 | 
   474  | 
  private:
  | 
| 
deba@220
 | 
   475  | 
  | 
| 
deba@220
 | 
   476  | 
    typedef typename From::Node Node;
  | 
| 
deba@220
 | 
   477  | 
    typedef typename From::NodeIt NodeIt;
  | 
| 
deba@220
 | 
   478  | 
    typedef typename From::Arc Arc;
  | 
| 
deba@220
 | 
   479  | 
    typedef typename From::ArcIt ArcIt;
  | 
| 
deba@220
 | 
   480  | 
  | 
| 
deba@220
 | 
   481  | 
    typedef typename To::Node TNode;
  | 
| 
deba@220
 | 
   482  | 
    typedef typename To::Arc TArc;
  | 
| 
deba@220
 | 
   483  | 
  | 
| 
deba@220
 | 
   484  | 
    typedef typename From::template NodeMap<TNode> NodeRefMap;
  | 
| 
deba@220
 | 
   485  | 
    typedef typename From::template ArcMap<TArc> ArcRefMap;
  | 
| 
deba@220
 | 
   486  | 
  | 
| 
deba@220
 | 
   487  | 
  public:
  | 
| 
deba@220
 | 
   488  | 
  | 
| 
kpeter@282
 | 
   489  | 
    /// \brief Constructor of DigraphCopy.
  | 
| 
deba@220
 | 
   490  | 
    ///
  | 
| 
kpeter@282
 | 
   491  | 
    /// Constructor of DigraphCopy for copying the content of the
  | 
| 
kpeter@282
 | 
   492  | 
    /// \c from digraph into the \c to digraph.
  | 
| 
kpeter@282
 | 
   493  | 
    DigraphCopy(const From& from, To& to)
  | 
| 
deba@220
 | 
   494  | 
      : _from(from), _to(to) {}
 | 
| 
deba@220
 | 
   495  | 
  | 
| 
kpeter@282
 | 
   496  | 
    /// \brief Destructor of DigraphCopy
  | 
| 
deba@220
 | 
   497  | 
    ///
  | 
| 
kpeter@282
 | 
   498  | 
    /// Destructor of DigraphCopy.
  | 
| 
deba@220
 | 
   499  | 
    ~DigraphCopy() {
 | 
| 
deba@220
 | 
   500  | 
      for (int i = 0; i < int(_node_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   501  | 
        delete _node_maps[i];
  | 
| 
deba@220
 | 
   502  | 
      }
  | 
| 
deba@220
 | 
   503  | 
      for (int i = 0; i < int(_arc_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   504  | 
        delete _arc_maps[i];
  | 
| 
deba@220
 | 
   505  | 
      }
  | 
| 
deba@220
 | 
   506  | 
  | 
| 
deba@220
 | 
   507  | 
    }
  | 
| 
deba@220
 | 
   508  | 
  | 
| 
kpeter@282
 | 
   509  | 
    /// \brief Copy the node references into the given map.
  | 
| 
deba@220
 | 
   510  | 
    ///
  | 
| 
kpeter@282
 | 
   511  | 
    /// This function copies the node references into the given map.
  | 
| 
kpeter@282
 | 
   512  | 
    /// The parameter should be a map, whose key type is the Node type of
  | 
| 
kpeter@282
 | 
   513  | 
    /// the source digraph, while the value type is the Node type of the
  | 
| 
kpeter@282
 | 
   514  | 
    /// destination digraph.
  | 
| 
deba@220
 | 
   515  | 
    template <typename NodeRef>
  | 
| 
deba@220
 | 
   516  | 
    DigraphCopy& nodeRef(NodeRef& map) {
 | 
| 
deba@220
 | 
   517  | 
      _node_maps.push_back(new _core_bits::RefCopy<From, Node,
  | 
| 
deba@220
 | 
   518  | 
                           NodeRefMap, NodeRef>(map));
  | 
| 
deba@220
 | 
   519  | 
      return *this;
  | 
| 
deba@220
 | 
   520  | 
    }
  | 
| 
deba@220
 | 
   521  | 
  | 
| 
kpeter@282
 | 
   522  | 
    /// \brief Copy the node cross references into the given map.
  | 
| 
deba@220
 | 
   523  | 
    ///
  | 
| 
kpeter@282
 | 
   524  | 
    /// This function copies the node cross references (reverse references)
  | 
| 
kpeter@282
 | 
   525  | 
    /// into the given map. The parameter should be a map, whose key type
  | 
| 
kpeter@282
 | 
   526  | 
    /// is the Node type of the destination digraph, while the value type is
  | 
| 
kpeter@282
 | 
   527  | 
    /// the Node type of the source digraph.
  | 
| 
deba@220
 | 
   528  | 
    template <typename NodeCrossRef>
  | 
| 
deba@220
 | 
   529  | 
    DigraphCopy& nodeCrossRef(NodeCrossRef& map) {
 | 
| 
deba@220
 | 
   530  | 
      _node_maps.push_back(new _core_bits::CrossRefCopy<From, Node,
  | 
| 
deba@220
 | 
   531  | 
                           NodeRefMap, NodeCrossRef>(map));
  | 
| 
deba@220
 | 
   532  | 
      return *this;
  | 
| 
deba@220
 | 
   533  | 
    }
  | 
| 
deba@220
 | 
   534  | 
  | 
| 
kpeter@282
 | 
   535  | 
    /// \brief Make a copy of the given node map.
  | 
| 
deba@220
 | 
   536  | 
    ///
  | 
| 
kpeter@282
 | 
   537  | 
    /// This function makes a copy of the given node map for the newly
  | 
| 
kpeter@282
 | 
   538  | 
    /// created digraph.
  | 
| 
kpeter@282
 | 
   539  | 
    /// The key type of the new map \c tmap should be the Node type of the
  | 
| 
kpeter@282
 | 
   540  | 
    /// destination digraph, and the key type of the original map \c map
  | 
| 
kpeter@282
 | 
   541  | 
    /// should be the Node type of the source digraph.
  | 
| 
kpeter@282
 | 
   542  | 
    template <typename FromMap, typename ToMap>
  | 
| 
kpeter@282
 | 
   543  | 
    DigraphCopy& nodeMap(const FromMap& map, ToMap& tmap) {
 | 
| 
deba@220
 | 
   544  | 
      _node_maps.push_back(new _core_bits::MapCopy<From, Node,
  | 
| 
kpeter@282
 | 
   545  | 
                           NodeRefMap, FromMap, ToMap>(map, tmap));
  | 
| 
deba@220
 | 
   546  | 
      return *this;
  | 
| 
deba@220
 | 
   547  | 
    }
  | 
| 
deba@220
 | 
   548  | 
  | 
| 
deba@220
 | 
   549  | 
    /// \brief Make a copy of the given node.
  | 
| 
deba@220
 | 
   550  | 
    ///
  | 
| 
kpeter@282
 | 
   551  | 
    /// This function makes a copy of the given node.
  | 
| 
kpeter@282
 | 
   552  | 
    DigraphCopy& node(const Node& node, TNode& tnode) {
 | 
| 
deba@220
 | 
   553  | 
      _node_maps.push_back(new _core_bits::ItemCopy<From, Node,
  | 
| 
kpeter@282
 | 
   554  | 
                           NodeRefMap, TNode>(node, tnode));
  | 
| 
deba@220
 | 
   555  | 
      return *this;
  | 
| 
deba@220
 | 
   556  | 
    }
  | 
| 
deba@220
 | 
   557  | 
  | 
| 
kpeter@282
 | 
   558  | 
    /// \brief Copy the arc references into the given map.
  | 
| 
deba@220
 | 
   559  | 
    ///
  | 
| 
kpeter@282
 | 
   560  | 
    /// This function copies the arc references into the given map.
  | 
| 
kpeter@282
 | 
   561  | 
    /// The parameter should be a map, whose key type is the Arc type of
  | 
| 
kpeter@282
 | 
   562  | 
    /// the source digraph, while the value type is the Arc type of the
  | 
| 
kpeter@282
 | 
   563  | 
    /// destination digraph.
  | 
| 
deba@220
 | 
   564  | 
    template <typename ArcRef>
  | 
| 
deba@220
 | 
   565  | 
    DigraphCopy& arcRef(ArcRef& map) {
 | 
| 
deba@220
 | 
   566  | 
      _arc_maps.push_back(new _core_bits::RefCopy<From, Arc,
  | 
| 
deba@220
 | 
   567  | 
                          ArcRefMap, ArcRef>(map));
  | 
| 
deba@220
 | 
   568  | 
      return *this;
  | 
| 
deba@220
 | 
   569  | 
    }
  | 
| 
deba@220
 | 
   570  | 
  | 
| 
kpeter@282
 | 
   571  | 
    /// \brief Copy the arc cross references into the given map.
  | 
| 
deba@220
 | 
   572  | 
    ///
  | 
| 
kpeter@282
 | 
   573  | 
    /// This function copies the arc cross references (reverse references)
  | 
| 
kpeter@282
 | 
   574  | 
    /// into the given map. The parameter should be a map, whose key type
  | 
| 
kpeter@282
 | 
   575  | 
    /// is the Arc type of the destination digraph, while the value type is
  | 
| 
kpeter@282
 | 
   576  | 
    /// the Arc type of the source digraph.
  | 
| 
deba@220
 | 
   577  | 
    template <typename ArcCrossRef>
  | 
| 
deba@220
 | 
   578  | 
    DigraphCopy& arcCrossRef(ArcCrossRef& map) {
 | 
| 
deba@220
 | 
   579  | 
      _arc_maps.push_back(new _core_bits::CrossRefCopy<From, Arc,
  | 
| 
deba@220
 | 
   580  | 
                          ArcRefMap, ArcCrossRef>(map));
  | 
| 
deba@220
 | 
   581  | 
      return *this;
  | 
| 
deba@220
 | 
   582  | 
    }
  | 
| 
deba@220
 | 
   583  | 
  | 
| 
kpeter@282
 | 
   584  | 
    /// \brief Make a copy of the given arc map.
  | 
| 
deba@220
 | 
   585  | 
    ///
  | 
| 
kpeter@282
 | 
   586  | 
    /// This function makes a copy of the given arc map for the newly
  | 
| 
kpeter@282
 | 
   587  | 
    /// created digraph.
  | 
| 
kpeter@282
 | 
   588  | 
    /// The key type of the new map \c tmap should be the Arc type of the
  | 
| 
kpeter@282
 | 
   589  | 
    /// destination digraph, and the key type of the original map \c map
  | 
| 
kpeter@282
 | 
   590  | 
    /// should be the Arc type of the source digraph.
  | 
| 
kpeter@282
 | 
   591  | 
    template <typename FromMap, typename ToMap>
  | 
| 
kpeter@282
 | 
   592  | 
    DigraphCopy& arcMap(const FromMap& map, ToMap& tmap) {
 | 
| 
deba@220
 | 
   593  | 
      _arc_maps.push_back(new _core_bits::MapCopy<From, Arc,
  | 
| 
kpeter@282
 | 
   594  | 
                          ArcRefMap, FromMap, ToMap>(map, tmap));
  | 
| 
deba@220
 | 
   595  | 
      return *this;
  | 
| 
deba@220
 | 
   596  | 
    }
  | 
| 
deba@220
 | 
   597  | 
  | 
| 
deba@220
 | 
   598  | 
    /// \brief Make a copy of the given arc.
  | 
| 
deba@220
 | 
   599  | 
    ///
  | 
| 
kpeter@282
 | 
   600  | 
    /// This function makes a copy of the given arc.
  | 
| 
kpeter@282
 | 
   601  | 
    DigraphCopy& arc(const Arc& arc, TArc& tarc) {
 | 
| 
deba@220
 | 
   602  | 
      _arc_maps.push_back(new _core_bits::ItemCopy<From, Arc,
  | 
| 
kpeter@282
 | 
   603  | 
                          ArcRefMap, TArc>(arc, tarc));
  | 
| 
deba@220
 | 
   604  | 
      return *this;
  | 
| 
deba@220
 | 
   605  | 
    }
  | 
| 
deba@220
 | 
   606  | 
  | 
| 
kpeter@282
 | 
   607  | 
    /// \brief Execute copying.
  | 
| 
deba@220
 | 
   608  | 
    ///
  | 
| 
kpeter@282
 | 
   609  | 
    /// This function executes the copying of the digraph along with the
  | 
| 
kpeter@282
 | 
   610  | 
    /// copying of the assigned data.
  | 
| 
deba@220
 | 
   611  | 
    void run() {
 | 
| 
deba@220
 | 
   612  | 
      NodeRefMap nodeRefMap(_from);
  | 
| 
deba@220
 | 
   613  | 
      ArcRefMap arcRefMap(_from);
  | 
| 
deba@220
 | 
   614  | 
      _core_bits::DigraphCopySelector<To>::
  | 
| 
kpeter@282
 | 
   615  | 
        copy(_from, _to, nodeRefMap, arcRefMap);
  | 
| 
deba@220
 | 
   616  | 
      for (int i = 0; i < int(_node_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   617  | 
        _node_maps[i]->copy(_from, nodeRefMap);
  | 
| 
deba@220
 | 
   618  | 
      }
  | 
| 
deba@220
 | 
   619  | 
      for (int i = 0; i < int(_arc_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   620  | 
        _arc_maps[i]->copy(_from, arcRefMap);
  | 
| 
deba@220
 | 
   621  | 
      }
  | 
| 
deba@220
 | 
   622  | 
    }
  | 
| 
deba@220
 | 
   623  | 
  | 
| 
deba@220
 | 
   624  | 
  protected:
  | 
| 
deba@220
 | 
   625  | 
  | 
| 
deba@220
 | 
   626  | 
    const From& _from;
  | 
| 
deba@220
 | 
   627  | 
    To& _to;
  | 
| 
deba@220
 | 
   628  | 
  | 
| 
deba@220
 | 
   629  | 
    std::vector<_core_bits::MapCopyBase<From, Node, NodeRefMap>* >
  | 
| 
kpeter@282
 | 
   630  | 
      _node_maps;
  | 
| 
deba@220
 | 
   631  | 
  | 
| 
deba@220
 | 
   632  | 
    std::vector<_core_bits::MapCopyBase<From, Arc, ArcRefMap>* >
  | 
| 
kpeter@282
 | 
   633  | 
      _arc_maps;
  | 
| 
deba@220
 | 
   634  | 
  | 
| 
deba@220
 | 
   635  | 
  };
  | 
| 
deba@220
 | 
   636  | 
  | 
| 
deba@220
 | 
   637  | 
  /// \brief Copy a digraph to another digraph.
  | 
| 
deba@220
 | 
   638  | 
  ///
  | 
| 
kpeter@282
 | 
   639  | 
  /// This function copies a digraph to another digraph.
  | 
| 
kpeter@282
 | 
   640  | 
  /// The complete usage of it is detailed in the DigraphCopy class, but
  | 
| 
kpeter@282
 | 
   641  | 
  /// a short example shows a basic work:
  | 
| 
deba@220
 | 
   642  | 
  ///\code
  | 
| 
kpeter@282
 | 
   643  | 
  /// digraphCopy(src, trg).nodeRef(nr).arcCrossRef(acr).run();
  | 
| 
deba@220
 | 
   644  | 
  ///\endcode
  | 
| 
deba@220
 | 
   645  | 
  ///
  | 
| 
deba@220
 | 
   646  | 
  /// After the copy the \c nr map will contain the mapping from the
  | 
| 
deba@220
 | 
   647  | 
  /// nodes of the \c from digraph to the nodes of the \c to digraph and
  | 
| 
kpeter@282
 | 
   648  | 
  /// \c acr will contain the mapping from the arcs of the \c to digraph
  | 
| 
deba@220
 | 
   649  | 
  /// to the arcs of the \c from digraph.
  | 
| 
deba@220
 | 
   650  | 
  ///
  | 
| 
deba@220
 | 
   651  | 
  /// \see DigraphCopy
  | 
| 
kpeter@282
 | 
   652  | 
  template <typename From, typename To>
  | 
| 
kpeter@282
 | 
   653  | 
  DigraphCopy<From, To> digraphCopy(const From& from, To& to) {
 | 
| 
kpeter@282
 | 
   654  | 
    return DigraphCopy<From, To>(from, to);
  | 
| 
deba@220
 | 
   655  | 
  }
  | 
| 
deba@220
 | 
   656  | 
  | 
| 
deba@220
 | 
   657  | 
  /// \brief Class to copy a graph.
  | 
| 
deba@220
 | 
   658  | 
  ///
  | 
| 
deba@220
 | 
   659  | 
  /// Class to copy a graph to another graph (duplicate a graph). The
  | 
| 
kpeter@282
 | 
   660  | 
  /// simplest way of using it is through the \c graphCopy() function.
  | 
| 
deba@220
 | 
   661  | 
  ///
  | 
| 
kpeter@282
 | 
   662  | 
  /// This class not only make a copy of a graph, but it can create
  | 
| 
deba@220
 | 
   663  | 
  /// references and cross references between the nodes, edges and arcs of
  | 
| 
kpeter@282
 | 
   664  | 
  /// the two graphs, and it can copy maps for using with the newly created
  | 
| 
kpeter@282
 | 
   665  | 
  /// graph.
  | 
| 
deba@220
 | 
   666  | 
  ///
  | 
| 
deba@220
 | 
   667  | 
  /// To make a copy from a graph, first an instance of GraphCopy
  | 
| 
deba@220
 | 
   668  | 
  /// should be created, then the data belongs to the graph should
  | 
| 
deba@220
 | 
   669  | 
  /// assigned to copy. In the end, the \c run() member should be
  | 
| 
deba@220
 | 
   670  | 
  /// called.
  | 
| 
deba@220
 | 
   671  | 
  ///
  | 
| 
deba@220
 | 
   672  | 
  /// The next code copies a graph with several data:
  | 
| 
deba@220
 | 
   673  | 
  ///\code
  | 
| 
kpeter@282
 | 
   674  | 
  ///  GraphCopy<OrigGraph, NewGraph> cg(orig_graph, new_graph);
  | 
| 
kpeter@282
 | 
   675  | 
  ///  // Create references for the nodes
  | 
| 
deba@220
 | 
   676  | 
  ///  OrigGraph::NodeMap<NewGraph::Node> nr(orig_graph);
  | 
| 
kpeter@282
 | 
   677  | 
  ///  cg.nodeRef(nr);
  | 
| 
kpeter@282
 | 
   678  | 
  ///  // Create cross references (inverse) for the edges
  | 
| 
kpeter@282
 | 
   679  | 
  ///  NewGraph::EdgeMap<OrigGraph::Edge> ecr(new_graph);
  | 
| 
kpeter@282
 | 
   680  | 
  ///  cg.edgeCrossRef(ecr);
  | 
| 
kpeter@282
 | 
   681  | 
  ///  // Copy an edge map
  | 
| 
kpeter@282
 | 
   682  | 
  ///  OrigGraph::EdgeMap<double> oemap(orig_graph);
  | 
| 
kpeter@282
 | 
   683  | 
  ///  NewGraph::EdgeMap<double> nemap(new_graph);
  | 
| 
kpeter@282
 | 
   684  | 
  ///  cg.edgeMap(oemap, nemap);
  | 
| 
kpeter@282
 | 
   685  | 
  ///  // Copy a node
  | 
| 
deba@220
 | 
   686  | 
  ///  OrigGraph::Node on;
  | 
| 
deba@220
 | 
   687  | 
  ///  NewGraph::Node nn;
  | 
| 
kpeter@282
 | 
   688  | 
  ///  cg.node(on, nn);
  | 
| 
kpeter@282
 | 
   689  | 
  ///  // Execute copying
  | 
| 
kpeter@282
 | 
   690  | 
  ///  cg.run();
  | 
| 
deba@220
 | 
   691  | 
  ///\endcode
  | 
| 
kpeter@282
 | 
   692  | 
  template <typename From, typename To>
  | 
| 
deba@220
 | 
   693  | 
  class GraphCopy {
 | 
| 
deba@220
 | 
   694  | 
  private:
  | 
| 
deba@220
 | 
   695  | 
  | 
| 
deba@220
 | 
   696  | 
    typedef typename From::Node Node;
  | 
| 
deba@220
 | 
   697  | 
    typedef typename From::NodeIt NodeIt;
  | 
| 
deba@220
 | 
   698  | 
    typedef typename From::Arc Arc;
  | 
| 
deba@220
 | 
   699  | 
    typedef typename From::ArcIt ArcIt;
  | 
| 
deba@220
 | 
   700  | 
    typedef typename From::Edge Edge;
  | 
| 
deba@220
 | 
   701  | 
    typedef typename From::EdgeIt EdgeIt;
  | 
| 
deba@220
 | 
   702  | 
  | 
| 
deba@220
 | 
   703  | 
    typedef typename To::Node TNode;
  | 
| 
deba@220
 | 
   704  | 
    typedef typename To::Arc TArc;
  | 
| 
deba@220
 | 
   705  | 
    typedef typename To::Edge TEdge;
  | 
| 
deba@220
 | 
   706  | 
  | 
| 
deba@220
 | 
   707  | 
    typedef typename From::template NodeMap<TNode> NodeRefMap;
  | 
| 
deba@220
 | 
   708  | 
    typedef typename From::template EdgeMap<TEdge> EdgeRefMap;
  | 
| 
deba@220
 | 
   709  | 
  | 
| 
deba@220
 | 
   710  | 
    struct ArcRefMap {
 | 
| 
kpeter@282
 | 
   711  | 
      ArcRefMap(const From& from, const To& to,
  | 
| 
deba@220
 | 
   712  | 
                const EdgeRefMap& edge_ref, const NodeRefMap& node_ref)
  | 
| 
kpeter@282
 | 
   713  | 
        : _from(from), _to(to),
  | 
| 
deba@220
 | 
   714  | 
          _edge_ref(edge_ref), _node_ref(node_ref) {}
 | 
| 
deba@220
 | 
   715  | 
  | 
| 
deba@220
 | 
   716  | 
      typedef typename From::Arc Key;
  | 
| 
deba@220
 | 
   717  | 
      typedef typename To::Arc Value;
  | 
| 
deba@220
 | 
   718  | 
  | 
| 
deba@220
 | 
   719  | 
      Value operator[](const Key& key) const {
 | 
| 
deba@220
 | 
   720  | 
        bool forward = _from.u(key) != _from.v(key) ?
  | 
| 
deba@220
 | 
   721  | 
          _node_ref[_from.source(key)] ==
  | 
| 
deba@220
 | 
   722  | 
          _to.source(_to.direct(_edge_ref[key], true)) :
  | 
| 
deba@220
 | 
   723  | 
          _from.direction(key);
  | 
| 
deba@220
 | 
   724  | 
        return _to.direct(_edge_ref[key], forward);
  | 
| 
deba@220
 | 
   725  | 
      }
  | 
| 
deba@220
 | 
   726  | 
  | 
| 
kpeter@282
 | 
   727  | 
      const From& _from;
  | 
| 
deba@220
 | 
   728  | 
      const To& _to;
  | 
| 
deba@220
 | 
   729  | 
      const EdgeRefMap& _edge_ref;
  | 
| 
deba@220
 | 
   730  | 
      const NodeRefMap& _node_ref;
  | 
| 
deba@220
 | 
   731  | 
    };
  | 
| 
deba@220
 | 
   732  | 
  | 
| 
deba@220
 | 
   733  | 
  public:
  | 
| 
deba@220
 | 
   734  | 
  | 
| 
kpeter@282
 | 
   735  | 
    /// \brief Constructor of GraphCopy.
  | 
| 
deba@220
 | 
   736  | 
    ///
  | 
| 
kpeter@282
 | 
   737  | 
    /// Constructor of GraphCopy for copying the content of the
  | 
| 
kpeter@282
 | 
   738  | 
    /// \c from graph into the \c to graph.
  | 
| 
kpeter@282
 | 
   739  | 
    GraphCopy(const From& from, To& to)
  | 
| 
deba@220
 | 
   740  | 
      : _from(from), _to(to) {}
 | 
| 
deba@220
 | 
   741  | 
  | 
| 
kpeter@282
 | 
   742  | 
    /// \brief Destructor of GraphCopy
  | 
| 
deba@220
 | 
   743  | 
    ///
  | 
| 
kpeter@282
 | 
   744  | 
    /// Destructor of GraphCopy.
  | 
| 
deba@220
 | 
   745  | 
    ~GraphCopy() {
 | 
| 
deba@220
 | 
   746  | 
      for (int i = 0; i < int(_node_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   747  | 
        delete _node_maps[i];
  | 
| 
deba@220
 | 
   748  | 
      }
  | 
| 
deba@220
 | 
   749  | 
      for (int i = 0; i < int(_arc_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   750  | 
        delete _arc_maps[i];
  | 
| 
deba@220
 | 
   751  | 
      }
  | 
| 
deba@220
 | 
   752  | 
      for (int i = 0; i < int(_edge_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   753  | 
        delete _edge_maps[i];
  | 
| 
deba@220
 | 
   754  | 
      }
  | 
| 
deba@220
 | 
   755  | 
    }
  | 
| 
deba@220
 | 
   756  | 
  | 
| 
kpeter@282
 | 
   757  | 
    /// \brief Copy the node references into the given map.
  | 
| 
deba@220
 | 
   758  | 
    ///
  | 
| 
kpeter@282
 | 
   759  | 
    /// This function copies the node references into the given map.
  | 
| 
kpeter@282
 | 
   760  | 
    /// The parameter should be a map, whose key type is the Node type of
  | 
| 
kpeter@282
 | 
   761  | 
    /// the source graph, while the value type is the Node type of the
  | 
| 
kpeter@282
 | 
   762  | 
    /// destination graph.
  | 
| 
deba@220
 | 
   763  | 
    template <typename NodeRef>
  | 
| 
deba@220
 | 
   764  | 
    GraphCopy& nodeRef(NodeRef& map) {
 | 
| 
deba@220
 | 
   765  | 
      _node_maps.push_back(new _core_bits::RefCopy<From, Node,
  | 
| 
deba@220
 | 
   766  | 
                           NodeRefMap, NodeRef>(map));
  | 
| 
deba@220
 | 
   767  | 
      return *this;
  | 
| 
deba@220
 | 
   768  | 
    }
  | 
| 
deba@220
 | 
   769  | 
  | 
| 
kpeter@282
 | 
   770  | 
    /// \brief Copy the node cross references into the given map.
  | 
| 
deba@220
 | 
   771  | 
    ///
  | 
| 
kpeter@282
 | 
   772  | 
    /// This function copies the node cross references (reverse references)
  | 
| 
kpeter@282
 | 
   773  | 
    /// into the given map. The parameter should be a map, whose key type
  | 
| 
kpeter@282
 | 
   774  | 
    /// is the Node type of the destination graph, while the value type is
  | 
| 
kpeter@282
 | 
   775  | 
    /// the Node type of the source graph.
  | 
| 
deba@220
 | 
   776  | 
    template <typename NodeCrossRef>
  | 
| 
deba@220
 | 
   777  | 
    GraphCopy& nodeCrossRef(NodeCrossRef& map) {
 | 
| 
deba@220
 | 
   778  | 
      _node_maps.push_back(new _core_bits::CrossRefCopy<From, Node,
  | 
| 
deba@220
 | 
   779  | 
                           NodeRefMap, NodeCrossRef>(map));
  | 
| 
deba@220
 | 
   780  | 
      return *this;
  | 
| 
deba@220
 | 
   781  | 
    }
  | 
| 
deba@220
 | 
   782  | 
  | 
| 
kpeter@282
 | 
   783  | 
    /// \brief Make a copy of the given node map.
  | 
| 
deba@220
 | 
   784  | 
    ///
  | 
| 
kpeter@282
 | 
   785  | 
    /// This function makes a copy of the given node map for the newly
  | 
| 
kpeter@282
 | 
   786  | 
    /// created graph.
  | 
| 
kpeter@282
 | 
   787  | 
    /// The key type of the new map \c tmap should be the Node type of the
  | 
| 
kpeter@282
 | 
   788  | 
    /// destination graph, and the key type of the original map \c map
  | 
| 
kpeter@282
 | 
   789  | 
    /// should be the Node type of the source graph.
  | 
| 
kpeter@282
 | 
   790  | 
    template <typename FromMap, typename ToMap>
  | 
| 
kpeter@282
 | 
   791  | 
    GraphCopy& nodeMap(const FromMap& map, ToMap& tmap) {
 | 
| 
deba@220
 | 
   792  | 
      _node_maps.push_back(new _core_bits::MapCopy<From, Node,
  | 
| 
kpeter@282
 | 
   793  | 
                           NodeRefMap, FromMap, ToMap>(map, tmap));
  | 
| 
deba@220
 | 
   794  | 
      return *this;
  | 
| 
deba@220
 | 
   795  | 
    }
  | 
| 
deba@220
 | 
   796  | 
  | 
| 
deba@220
 | 
   797  | 
    /// \brief Make a copy of the given node.
  | 
| 
deba@220
 | 
   798  | 
    ///
  | 
| 
kpeter@282
 | 
   799  | 
    /// This function makes a copy of the given node.
  | 
| 
kpeter@282
 | 
   800  | 
    GraphCopy& node(const Node& node, TNode& tnode) {
 | 
| 
deba@220
 | 
   801  | 
      _node_maps.push_back(new _core_bits::ItemCopy<From, Node,
  | 
| 
kpeter@282
 | 
   802  | 
                           NodeRefMap, TNode>(node, tnode));
  | 
| 
deba@220
 | 
   803  | 
      return *this;
  | 
| 
deba@220
 | 
   804  | 
    }
  | 
| 
deba@220
 | 
   805  | 
  | 
| 
kpeter@282
 | 
   806  | 
    /// \brief Copy the arc references into the given map.
  | 
| 
deba@220
 | 
   807  | 
    ///
  | 
| 
kpeter@282
 | 
   808  | 
    /// This function copies the arc references into the given map.
  | 
| 
kpeter@282
 | 
   809  | 
    /// The parameter should be a map, whose key type is the Arc type of
  | 
| 
kpeter@282
 | 
   810  | 
    /// the source graph, while the value type is the Arc type of the
  | 
| 
kpeter@282
 | 
   811  | 
    /// destination graph.
  | 
| 
deba@220
 | 
   812  | 
    template <typename ArcRef>
  | 
| 
deba@220
 | 
   813  | 
    GraphCopy& arcRef(ArcRef& map) {
 | 
| 
deba@220
 | 
   814  | 
      _arc_maps.push_back(new _core_bits::RefCopy<From, Arc,
  | 
| 
deba@220
 | 
   815  | 
                          ArcRefMap, ArcRef>(map));
  | 
| 
deba@220
 | 
   816  | 
      return *this;
  | 
| 
deba@220
 | 
   817  | 
    }
  | 
| 
deba@220
 | 
   818  | 
  | 
| 
kpeter@282
 | 
   819  | 
    /// \brief Copy the arc cross references into the given map.
  | 
| 
deba@220
 | 
   820  | 
    ///
  | 
| 
kpeter@282
 | 
   821  | 
    /// This function copies the arc cross references (reverse references)
  | 
| 
kpeter@282
 | 
   822  | 
    /// into the given map. The parameter should be a map, whose key type
  | 
| 
kpeter@282
 | 
   823  | 
    /// is the Arc type of the destination graph, while the value type is
  | 
| 
kpeter@282
 | 
   824  | 
    /// the Arc type of the source graph.
  | 
| 
deba@220
 | 
   825  | 
    template <typename ArcCrossRef>
  | 
| 
deba@220
 | 
   826  | 
    GraphCopy& arcCrossRef(ArcCrossRef& map) {
 | 
| 
deba@220
 | 
   827  | 
      _arc_maps.push_back(new _core_bits::CrossRefCopy<From, Arc,
  | 
| 
deba@220
 | 
   828  | 
                          ArcRefMap, ArcCrossRef>(map));
  | 
| 
deba@220
 | 
   829  | 
      return *this;
  | 
| 
deba@220
 | 
   830  | 
    }
  | 
| 
deba@220
 | 
   831  | 
  | 
| 
kpeter@282
 | 
   832  | 
    /// \brief Make a copy of the given arc map.
  | 
| 
deba@220
 | 
   833  | 
    ///
  | 
| 
kpeter@282
 | 
   834  | 
    /// This function makes a copy of the given arc map for the newly
  | 
| 
kpeter@282
 | 
   835  | 
    /// created graph.
  | 
| 
kpeter@282
 | 
   836  | 
    /// The key type of the new map \c tmap should be the Arc type of the
  | 
| 
kpeter@282
 | 
   837  | 
    /// destination graph, and the key type of the original map \c map
  | 
| 
kpeter@282
 | 
   838  | 
    /// should be the Arc type of the source graph.
  | 
| 
kpeter@282
 | 
   839  | 
    template <typename FromMap, typename ToMap>
  | 
| 
kpeter@282
 | 
   840  | 
    GraphCopy& arcMap(const FromMap& map, ToMap& tmap) {
 | 
| 
deba@220
 | 
   841  | 
      _arc_maps.push_back(new _core_bits::MapCopy<From, Arc,
  | 
| 
kpeter@282
 | 
   842  | 
                          ArcRefMap, FromMap, ToMap>(map, tmap));
  | 
| 
deba@220
 | 
   843  | 
      return *this;
  | 
| 
deba@220
 | 
   844  | 
    }
  | 
| 
deba@220
 | 
   845  | 
  | 
| 
deba@220
 | 
   846  | 
    /// \brief Make a copy of the given arc.
  | 
| 
deba@220
 | 
   847  | 
    ///
  | 
| 
kpeter@282
 | 
   848  | 
    /// This function makes a copy of the given arc.
  | 
| 
kpeter@282
 | 
   849  | 
    GraphCopy& arc(const Arc& arc, TArc& tarc) {
 | 
| 
deba@220
 | 
   850  | 
      _arc_maps.push_back(new _core_bits::ItemCopy<From, Arc,
  | 
| 
kpeter@282
 | 
   851  | 
                          ArcRefMap, TArc>(arc, tarc));
  | 
| 
deba@220
 | 
   852  | 
      return *this;
  | 
| 
deba@220
 | 
   853  | 
    }
  | 
| 
deba@220
 | 
   854  | 
  | 
| 
kpeter@282
 | 
   855  | 
    /// \brief Copy the edge references into the given map.
  | 
| 
deba@220
 | 
   856  | 
    ///
  | 
| 
kpeter@282
 | 
   857  | 
    /// This function copies the edge references into the given map.
  | 
| 
kpeter@282
 | 
   858  | 
    /// The parameter should be a map, whose key type is the Edge type of
  | 
| 
kpeter@282
 | 
   859  | 
    /// the source graph, while the value type is the Edge type of the
  | 
| 
kpeter@282
 | 
   860  | 
    /// destination graph.
  | 
| 
deba@220
 | 
   861  | 
    template <typename EdgeRef>
  | 
| 
deba@220
 | 
   862  | 
    GraphCopy& edgeRef(EdgeRef& map) {
 | 
| 
deba@220
 | 
   863  | 
      _edge_maps.push_back(new _core_bits::RefCopy<From, Edge,
  | 
| 
deba@220
 | 
   864  | 
                           EdgeRefMap, EdgeRef>(map));
  | 
| 
deba@220
 | 
   865  | 
      return *this;
  | 
| 
deba@220
 | 
   866  | 
    }
  | 
| 
deba@220
 | 
   867  | 
  | 
| 
kpeter@282
 | 
   868  | 
    /// \brief Copy the edge cross references into the given map.
  | 
| 
deba@220
 | 
   869  | 
    ///
  | 
| 
kpeter@282
 | 
   870  | 
    /// This function copies the edge cross references (reverse references)
  | 
| 
kpeter@282
 | 
   871  | 
    /// into the given map. The parameter should be a map, whose key type
  | 
| 
kpeter@282
 | 
   872  | 
    /// is the Edge type of the destination graph, while the value type is
  | 
| 
kpeter@282
 | 
   873  | 
    /// the Edge type of the source graph.
  | 
| 
deba@220
 | 
   874  | 
    template <typename EdgeCrossRef>
  | 
| 
deba@220
 | 
   875  | 
    GraphCopy& edgeCrossRef(EdgeCrossRef& map) {
 | 
| 
deba@220
 | 
   876  | 
      _edge_maps.push_back(new _core_bits::CrossRefCopy<From,
  | 
| 
deba@220
 | 
   877  | 
                           Edge, EdgeRefMap, EdgeCrossRef>(map));
  | 
| 
deba@220
 | 
   878  | 
      return *this;
  | 
| 
deba@220
 | 
   879  | 
    }
  | 
| 
deba@220
 | 
   880  | 
  | 
| 
kpeter@282
 | 
   881  | 
    /// \brief Make a copy of the given edge map.
  | 
| 
deba@220
 | 
   882  | 
    ///
  | 
| 
kpeter@282
 | 
   883  | 
    /// This function makes a copy of the given edge map for the newly
  | 
| 
kpeter@282
 | 
   884  | 
    /// created graph.
  | 
| 
kpeter@282
 | 
   885  | 
    /// The key type of the new map \c tmap should be the Edge type of the
  | 
| 
kpeter@282
 | 
   886  | 
    /// destination graph, and the key type of the original map \c map
  | 
| 
kpeter@282
 | 
   887  | 
    /// should be the Edge type of the source graph.
  | 
| 
kpeter@282
 | 
   888  | 
    template <typename FromMap, typename ToMap>
  | 
| 
kpeter@282
 | 
   889  | 
    GraphCopy& edgeMap(const FromMap& map, ToMap& tmap) {
 | 
| 
deba@220
 | 
   890  | 
      _edge_maps.push_back(new _core_bits::MapCopy<From, Edge,
  | 
| 
kpeter@282
 | 
   891  | 
                           EdgeRefMap, FromMap, ToMap>(map, tmap));
  | 
| 
deba@220
 | 
   892  | 
      return *this;
  | 
| 
deba@220
 | 
   893  | 
    }
  | 
| 
deba@220
 | 
   894  | 
  | 
| 
deba@220
 | 
   895  | 
    /// \brief Make a copy of the given edge.
  | 
| 
deba@220
 | 
   896  | 
    ///
  | 
| 
kpeter@282
 | 
   897  | 
    /// This function makes a copy of the given edge.
  | 
| 
kpeter@282
 | 
   898  | 
    GraphCopy& edge(const Edge& edge, TEdge& tedge) {
 | 
| 
deba@220
 | 
   899  | 
      _edge_maps.push_back(new _core_bits::ItemCopy<From, Edge,
  | 
| 
kpeter@282
 | 
   900  | 
                           EdgeRefMap, TEdge>(edge, tedge));
  | 
| 
deba@220
 | 
   901  | 
      return *this;
  | 
| 
deba@220
 | 
   902  | 
    }
  | 
| 
deba@220
 | 
   903  | 
  | 
| 
kpeter@282
 | 
   904  | 
    /// \brief Execute copying.
  | 
| 
deba@220
 | 
   905  | 
    ///
  | 
| 
kpeter@282
 | 
   906  | 
    /// This function executes the copying of the graph along with the
  | 
| 
kpeter@282
 | 
   907  | 
    /// copying of the assigned data.
  | 
| 
deba@220
 | 
   908  | 
    void run() {
 | 
| 
deba@220
 | 
   909  | 
      NodeRefMap nodeRefMap(_from);
  | 
| 
deba@220
 | 
   910  | 
      EdgeRefMap edgeRefMap(_from);
  | 
| 
kpeter@282
 | 
   911  | 
      ArcRefMap arcRefMap(_from, _to, edgeRefMap, nodeRefMap);
  | 
| 
deba@220
 | 
   912  | 
      _core_bits::GraphCopySelector<To>::
  | 
| 
kpeter@282
 | 
   913  | 
        copy(_from, _to, nodeRefMap, edgeRefMap);
  | 
| 
deba@220
 | 
   914  | 
      for (int i = 0; i < int(_node_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   915  | 
        _node_maps[i]->copy(_from, nodeRefMap);
  | 
| 
deba@220
 | 
   916  | 
      }
  | 
| 
deba@220
 | 
   917  | 
      for (int i = 0; i < int(_edge_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   918  | 
        _edge_maps[i]->copy(_from, edgeRefMap);
  | 
| 
deba@220
 | 
   919  | 
      }
  | 
| 
deba@220
 | 
   920  | 
      for (int i = 0; i < int(_arc_maps.size()); ++i) {
 | 
| 
deba@220
 | 
   921  | 
        _arc_maps[i]->copy(_from, arcRefMap);
  | 
| 
deba@220
 | 
   922  | 
      }
  | 
| 
deba@220
 | 
   923  | 
    }
  | 
| 
deba@220
 | 
   924  | 
  | 
| 
deba@220
 | 
   925  | 
  private:
  | 
| 
deba@220
 | 
   926  | 
  | 
| 
deba@220
 | 
   927  | 
    const From& _from;
  | 
| 
deba@220
 | 
   928  | 
    To& _to;
  | 
| 
deba@220
 | 
   929  | 
  | 
| 
deba@220
 | 
   930  | 
    std::vector<_core_bits::MapCopyBase<From, Node, NodeRefMap>* >
  | 
| 
kpeter@282
 | 
   931  | 
      _node_maps;
  | 
| 
deba@220
 | 
   932  | 
  | 
| 
deba@220
 | 
   933  | 
    std::vector<_core_bits::MapCopyBase<From, Arc, ArcRefMap>* >
  | 
| 
kpeter@282
 | 
   934  | 
      _arc_maps;
  | 
| 
deba@220
 | 
   935  | 
  | 
| 
deba@220
 | 
   936  | 
    std::vector<_core_bits::MapCopyBase<From, Edge, EdgeRefMap>* >
  | 
| 
kpeter@282
 | 
   937  | 
      _edge_maps;
  | 
| 
deba@220
 | 
   938  | 
  | 
| 
deba@220
 | 
   939  | 
  };
  | 
| 
deba@220
 | 
   940  | 
  | 
| 
deba@220
 | 
   941  | 
  /// \brief Copy a graph to another graph.
  | 
| 
deba@220
 | 
   942  | 
  ///
  | 
| 
kpeter@282
 | 
   943  | 
  /// This function copies a graph to another graph.
  | 
| 
kpeter@282
 | 
   944  | 
  /// The complete usage of it is detailed in the GraphCopy class,
  | 
| 
kpeter@282
 | 
   945  | 
  /// but a short example shows a basic work:
  | 
| 
deba@220
 | 
   946  | 
  ///\code
  | 
| 
kpeter@282
 | 
   947  | 
  /// graphCopy(src, trg).nodeRef(nr).edgeCrossRef(ecr).run();
  | 
| 
deba@220
 | 
   948  | 
  ///\endcode
  | 
| 
deba@220
 | 
   949  | 
  ///
  | 
| 
deba@220
 | 
   950  | 
  /// After the copy the \c nr map will contain the mapping from the
  | 
| 
deba@220
 | 
   951  | 
  /// nodes of the \c from graph to the nodes of the \c to graph and
  | 
| 
kpeter@282
 | 
   952  | 
  /// \c ecr will contain the mapping from the edges of the \c to graph
  | 
| 
kpeter@282
 | 
   953  | 
  /// to the edges of the \c from graph.
  | 
| 
deba@220
 | 
   954  | 
  ///
  | 
| 
deba@220
 | 
   955  | 
  /// \see GraphCopy
  | 
| 
kpeter@282
 | 
   956  | 
  template <typename From, typename To>
  | 
| 
kpeter@282
 | 
   957  | 
  GraphCopy<From, To>
  | 
| 
kpeter@282
 | 
   958  | 
  graphCopy(const From& from, To& to) {
 | 
| 
kpeter@282
 | 
   959  | 
    return GraphCopy<From, To>(from, to);
  | 
| 
deba@220
 | 
   960  | 
  }
  | 
| 
deba@220
 | 
   961  | 
  | 
| 
deba@220
 | 
   962  | 
  namespace _core_bits {
 | 
| 
deba@220
 | 
   963  | 
  | 
| 
deba@220
 | 
   964  | 
    template <typename Graph, typename Enable = void>
  | 
| 
deba@220
 | 
   965  | 
    struct FindArcSelector {
 | 
| 
deba@220
 | 
   966  | 
      typedef typename Graph::Node Node;
  | 
| 
deba@220
 | 
   967  | 
      typedef typename Graph::Arc Arc;
  | 
| 
deba@220
 | 
   968  | 
      static Arc find(const Graph &g, Node u, Node v, Arc e) {
 | 
| 
deba@220
 | 
   969  | 
        if (e == INVALID) {
 | 
| 
deba@220
 | 
   970  | 
          g.firstOut(e, u);
  | 
| 
deba@220
 | 
   971  | 
        } else {
 | 
| 
deba@220
 | 
   972  | 
          g.nextOut(e);
  | 
| 
deba@220
 | 
   973  | 
        }
  | 
| 
deba@220
 | 
   974  | 
        while (e != INVALID && g.target(e) != v) {
 | 
| 
deba@220
 | 
   975  | 
          g.nextOut(e);
  | 
| 
deba@220
 | 
   976  | 
        }
  | 
| 
deba@220
 | 
   977  | 
        return e;
  | 
| 
deba@220
 | 
   978  | 
      }
  | 
| 
deba@220
 | 
   979  | 
    };
  | 
| 
deba@220
 | 
   980  | 
  | 
| 
deba@220
 | 
   981  | 
    template <typename Graph>
  | 
| 
deba@220
 | 
   982  | 
    struct FindArcSelector<
  | 
| 
deba@220
 | 
   983  | 
      Graph,
  | 
| 
kpeter@282
 | 
   984  | 
      typename enable_if<typename Graph::FindArcTag, void>::type>
  | 
| 
deba@220
 | 
   985  | 
    {
 | 
| 
deba@220
 | 
   986  | 
      typedef typename Graph::Node Node;
  | 
| 
deba@220
 | 
   987  | 
      typedef typename Graph::Arc Arc;
  | 
| 
deba@220
 | 
   988  | 
      static Arc find(const Graph &g, Node u, Node v, Arc prev) {
 | 
| 
deba@220
 | 
   989  | 
        return g.findArc(u, v, prev);
  | 
| 
deba@220
 | 
   990  | 
      }
  | 
| 
deba@220
 | 
   991  | 
    };
  | 
| 
deba@220
 | 
   992  | 
  }
  | 
| 
deba@220
 | 
   993  | 
  | 
| 
kpeter@282
 | 
   994  | 
  /// \brief Find an arc between two nodes of a digraph.
  | 
| 
deba@220
 | 
   995  | 
  ///
  | 
| 
kpeter@282
 | 
   996  | 
  /// This function finds an arc from node \c u to node \c v in the
  | 
| 
kpeter@282
 | 
   997  | 
  /// digraph \c g.
  | 
| 
deba@220
 | 
   998  | 
  ///
  | 
| 
deba@220
 | 
   999  | 
  /// If \c prev is \ref INVALID (this is the default value), then
  | 
| 
deba@220
 | 
  1000  | 
  /// it finds the first arc from \c u to \c v. Otherwise it looks for
  | 
| 
deba@220
 | 
  1001  | 
  /// the next arc from \c u to \c v after \c prev.
  | 
| 
deba@220
 | 
  1002  | 
  /// \return The found arc or \ref INVALID if there is no such an arc.
  | 
| 
deba@220
 | 
  1003  | 
  ///
  | 
| 
deba@220
 | 
  1004  | 
  /// Thus you can iterate through each arc from \c u to \c v as it follows.
  | 
| 
deba@220
 | 
  1005  | 
  ///\code
  | 
| 
kpeter@282
 | 
  1006  | 
  /// for(Arc e = findArc(g,u,v); e != INVALID; e = findArc(g,u,v,e)) {
 | 
| 
deba@220
 | 
  1007  | 
  ///   ...
  | 
| 
deba@220
 | 
  1008  | 
  /// }
  | 
| 
deba@220
 | 
  1009  | 
  ///\endcode
  | 
| 
deba@220
 | 
  1010  | 
  ///
  | 
| 
kpeter@282
 | 
  1011  | 
  /// \note \ref ConArcIt provides iterator interface for the same
  | 
| 
kpeter@282
 | 
  1012  | 
  /// functionality.
  | 
| 
kpeter@282
 | 
  1013  | 
  ///
  | 
| 
deba@220
 | 
  1014  | 
  ///\sa ConArcIt
  | 
| 
kpeter@282
 | 
  1015  | 
  ///\sa ArcLookUp, AllArcLookUp, DynArcLookUp
  | 
| 
deba@220
 | 
  1016  | 
  template <typename Graph>
  | 
| 
deba@220
 | 
  1017  | 
  inline typename Graph::Arc
  | 
| 
deba@220
 | 
  1018  | 
  findArc(const Graph &g, typename Graph::Node u, typename Graph::Node v,
  | 
| 
deba@220
 | 
  1019  | 
          typename Graph::Arc prev = INVALID) {
 | 
| 
deba@220
 | 
  1020  | 
    return _core_bits::FindArcSelector<Graph>::find(g, u, v, prev);
  | 
| 
deba@220
 | 
  1021  | 
  }
  | 
| 
deba@220
 | 
  1022  | 
  | 
| 
kpeter@282
 | 
  1023  | 
  /// \brief Iterator for iterating on parallel arcs connecting the same nodes.
  | 
| 
deba@220
 | 
  1024  | 
  ///
  | 
| 
kpeter@282
 | 
  1025  | 
  /// Iterator for iterating on parallel arcs connecting the same nodes. It is
  | 
| 
kpeter@282
 | 
  1026  | 
  /// a higher level interface for the \ref findArc() function. You can
  | 
| 
deba@220
 | 
  1027  | 
  /// use it the following way:
  | 
| 
deba@220
 | 
  1028  | 
  ///\code
  | 
| 
deba@220
 | 
  1029  | 
  /// for (ConArcIt<Graph> it(g, src, trg); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
  1030  | 
  ///   ...
  | 
| 
deba@220
 | 
  1031  | 
  /// }
  | 
| 
deba@220
 | 
  1032  | 
  ///\endcode
  | 
| 
deba@220
 | 
  1033  | 
  ///
  | 
| 
deba@220
 | 
  1034  | 
  ///\sa findArc()
  | 
| 
kpeter@282
 | 
  1035  | 
  ///\sa ArcLookUp, AllArcLookUp, DynArcLookUp
  | 
| 
deba@220
 | 
  1036  | 
  template <typename _Graph>
  | 
| 
deba@220
 | 
  1037  | 
  class ConArcIt : public _Graph::Arc {
 | 
| 
deba@220
 | 
  1038  | 
  public:
  | 
| 
deba@220
 | 
  1039  | 
  | 
| 
deba@220
 | 
  1040  | 
    typedef _Graph Graph;
  | 
| 
deba@220
 | 
  1041  | 
    typedef typename Graph::Arc Parent;
  | 
| 
deba@220
 | 
  1042  | 
  | 
| 
deba@220
 | 
  1043  | 
    typedef typename Graph::Arc Arc;
  | 
| 
deba@220
 | 
  1044  | 
    typedef typename Graph::Node Node;
  | 
| 
deba@220
 | 
  1045  | 
  | 
| 
deba@220
 | 
  1046  | 
    /// \brief Constructor.
  | 
| 
deba@220
 | 
  1047  | 
    ///
  | 
| 
kpeter@282
 | 
  1048  | 
    /// Construct a new ConArcIt iterating on the arcs that
  | 
| 
kpeter@282
 | 
  1049  | 
    /// connects nodes \c u and \c v.
  | 
| 
deba@220
 | 
  1050  | 
    ConArcIt(const Graph& g, Node u, Node v) : _graph(g) {
 | 
| 
deba@220
 | 
  1051  | 
      Parent::operator=(findArc(_graph, u, v));
  | 
| 
deba@220
 | 
  1052  | 
    }
  | 
| 
deba@220
 | 
  1053  | 
  | 
| 
deba@220
 | 
  1054  | 
    /// \brief Constructor.
  | 
| 
deba@220
 | 
  1055  | 
    ///
  | 
| 
kpeter@282
 | 
  1056  | 
    /// Construct a new ConArcIt that continues the iterating from arc \c a.
  | 
| 
deba@220
 | 
  1057  | 
    ConArcIt(const Graph& g, Arc a) : Parent(a), _graph(g) {}
 | 
| 
deba@220
 | 
  1058  | 
  | 
| 
deba@220
 | 
  1059  | 
    /// \brief Increment operator.
  | 
| 
deba@220
 | 
  1060  | 
    ///
  | 
| 
deba@220
 | 
  1061  | 
    /// It increments the iterator and gives back the next arc.
  | 
| 
deba@220
 | 
  1062  | 
    ConArcIt& operator++() {
 | 
| 
deba@220
 | 
  1063  | 
      Parent::operator=(findArc(_graph, _graph.source(*this),
  | 
| 
deba@220
 | 
  1064  | 
                                _graph.target(*this), *this));
  | 
| 
deba@220
 | 
  1065  | 
      return *this;
  | 
| 
deba@220
 | 
  1066  | 
    }
  | 
| 
deba@220
 | 
  1067  | 
  private:
  | 
| 
deba@220
 | 
  1068  | 
    const Graph& _graph;
  | 
| 
deba@220
 | 
  1069  | 
  };
  | 
| 
deba@220
 | 
  1070  | 
  | 
| 
deba@220
 | 
  1071  | 
  namespace _core_bits {
 | 
| 
deba@220
 | 
  1072  | 
  | 
| 
deba@220
 | 
  1073  | 
    template <typename Graph, typename Enable = void>
  | 
| 
deba@220
 | 
  1074  | 
    struct FindEdgeSelector {
 | 
| 
deba@220
 | 
  1075  | 
      typedef typename Graph::Node Node;
  | 
| 
deba@220
 | 
  1076  | 
      typedef typename Graph::Edge Edge;
  | 
| 
deba@220
 | 
  1077  | 
      static Edge find(const Graph &g, Node u, Node v, Edge e) {
 | 
| 
deba@220
 | 
  1078  | 
        bool b;
  | 
| 
deba@220
 | 
  1079  | 
        if (u != v) {
 | 
| 
deba@220
 | 
  1080  | 
          if (e == INVALID) {
 | 
| 
deba@220
 | 
  1081  | 
            g.firstInc(e, b, u);
  | 
| 
deba@220
 | 
  1082  | 
          } else {
 | 
| 
deba@220
 | 
  1083  | 
            b = g.u(e) == u;
  | 
| 
deba@220
 | 
  1084  | 
            g.nextInc(e, b);
  | 
| 
deba@220
 | 
  1085  | 
          }
  | 
| 
deba@220
 | 
  1086  | 
          while (e != INVALID && (b ? g.v(e) : g.u(e)) != v) {
 | 
| 
deba@220
 | 
  1087  | 
            g.nextInc(e, b);
  | 
| 
deba@220
 | 
  1088  | 
          }
  | 
| 
deba@220
 | 
  1089  | 
        } else {
 | 
| 
deba@220
 | 
  1090  | 
          if (e == INVALID) {
 | 
| 
deba@220
 | 
  1091  | 
            g.firstInc(e, b, u);
  | 
| 
deba@220
 | 
  1092  | 
          } else {
 | 
| 
deba@220
 | 
  1093  | 
            b = true;
  | 
| 
deba@220
 | 
  1094  | 
            g.nextInc(e, b);
  | 
| 
deba@220
 | 
  1095  | 
          }
  | 
| 
deba@220
 | 
  1096  | 
          while (e != INVALID && (!b || g.v(e) != v)) {
 | 
| 
deba@220
 | 
  1097  | 
            g.nextInc(e, b);
  | 
| 
deba@220
 | 
  1098  | 
          }
  | 
| 
deba@220
 | 
  1099  | 
        }
  | 
| 
deba@220
 | 
  1100  | 
        return e;
  | 
| 
deba@220
 | 
  1101  | 
      }
  | 
| 
deba@220
 | 
  1102  | 
    };
  | 
| 
deba@220
 | 
  1103  | 
  | 
| 
deba@220
 | 
  1104  | 
    template <typename Graph>
  | 
| 
deba@220
 | 
  1105  | 
    struct FindEdgeSelector<
  | 
| 
deba@220
 | 
  1106  | 
      Graph,
  | 
| 
deba@220
 | 
  1107  | 
      typename enable_if<typename Graph::FindEdgeTag, void>::type>
  | 
| 
deba@220
 | 
  1108  | 
    {
 | 
| 
deba@220
 | 
  1109  | 
      typedef typename Graph::Node Node;
  | 
| 
deba@220
 | 
  1110  | 
      typedef typename Graph::Edge Edge;
  | 
| 
deba@220
 | 
  1111  | 
      static Edge find(const Graph &g, Node u, Node v, Edge prev) {
 | 
| 
deba@220
 | 
  1112  | 
        return g.findEdge(u, v, prev);
  | 
| 
deba@220
 | 
  1113  | 
      }
  | 
| 
deba@220
 | 
  1114  | 
    };
  | 
| 
deba@220
 | 
  1115  | 
  }
  | 
| 
deba@220
 | 
  1116  | 
  | 
| 
kpeter@282
 | 
  1117  | 
  /// \brief Find an edge between two nodes of a graph.
  | 
| 
deba@220
 | 
  1118  | 
  ///
  | 
| 
kpeter@282
 | 
  1119  | 
  /// This function finds an edge from node \c u to node \c v in graph \c g.
  | 
| 
kpeter@282
 | 
  1120  | 
  /// If node \c u and node \c v is equal then each loop edge
  | 
| 
deba@220
 | 
  1121  | 
  /// will be enumerated once.
  | 
| 
deba@220
 | 
  1122  | 
  ///
  | 
| 
deba@220
 | 
  1123  | 
  /// If \c prev is \ref INVALID (this is the default value), then
  | 
| 
kpeter@282
 | 
  1124  | 
  /// it finds the first edge from \c u to \c v. Otherwise it looks for
  | 
| 
kpeter@282
 | 
  1125  | 
  /// the next edge from \c u to \c v after \c prev.
  | 
| 
kpeter@282
 | 
  1126  | 
  /// \return The found edge or \ref INVALID if there is no such an edge.
  | 
| 
deba@220
 | 
  1127  | 
  ///
  | 
| 
kpeter@282
 | 
  1128  | 
  /// Thus you can iterate through each edge between \c u and \c v
  | 
| 
kpeter@282
 | 
  1129  | 
  /// as it follows.
  | 
| 
deba@220
 | 
  1130  | 
  ///\code
  | 
| 
kpeter@282
 | 
  1131  | 
  /// for(Edge e = findEdge(g,u,v); e != INVALID; e = findEdge(g,u,v,e)) {
 | 
| 
deba@220
 | 
  1132  | 
  ///   ...
  | 
| 
deba@220
 | 
  1133  | 
  /// }
  | 
| 
deba@220
 | 
  1134  | 
  ///\endcode
  | 
| 
deba@220
 | 
  1135  | 
  ///
  | 
| 
kpeter@282
 | 
  1136  | 
  /// \note \ref ConEdgeIt provides iterator interface for the same
  | 
| 
kpeter@282
 | 
  1137  | 
  /// functionality.
  | 
| 
kpeter@282
 | 
  1138  | 
  ///
  | 
| 
deba@220
 | 
  1139  | 
  ///\sa ConEdgeIt
  | 
| 
deba@220
 | 
  1140  | 
  template <typename Graph>
  | 
| 
deba@220
 | 
  1141  | 
  inline typename Graph::Edge
  | 
| 
deba@220
 | 
  1142  | 
  findEdge(const Graph &g, typename Graph::Node u, typename Graph::Node v,
  | 
| 
deba@220
 | 
  1143  | 
            typename Graph::Edge p = INVALID) {
 | 
| 
deba@220
 | 
  1144  | 
    return _core_bits::FindEdgeSelector<Graph>::find(g, u, v, p);
  | 
| 
deba@220
 | 
  1145  | 
  }
  | 
| 
deba@220
 | 
  1146  | 
  | 
| 
kpeter@282
 | 
  1147  | 
  /// \brief Iterator for iterating on parallel edges connecting the same nodes.
  | 
| 
deba@220
 | 
  1148  | 
  ///
  | 
| 
kpeter@282
 | 
  1149  | 
  /// Iterator for iterating on parallel edges connecting the same nodes.
  | 
| 
kpeter@282
 | 
  1150  | 
  /// It is a higher level interface for the findEdge() function. You can
  | 
| 
deba@220
 | 
  1151  | 
  /// use it the following way:
  | 
| 
deba@220
 | 
  1152  | 
  ///\code
  | 
| 
kpeter@282
 | 
  1153  | 
  /// for (ConEdgeIt<Graph> it(g, u, v); it != INVALID; ++it) {
 | 
| 
deba@220
 | 
  1154  | 
  ///   ...
  | 
| 
deba@220
 | 
  1155  | 
  /// }
  | 
| 
deba@220
 | 
  1156  | 
  ///\endcode
  | 
| 
deba@220
 | 
  1157  | 
  ///
  | 
| 
deba@220
 | 
  1158  | 
  ///\sa findEdge()
  | 
| 
deba@220
 | 
  1159  | 
  template <typename _Graph>
  | 
| 
deba@220
 | 
  1160  | 
  class ConEdgeIt : public _Graph::Edge {
 | 
| 
deba@220
 | 
  1161  | 
  public:
  | 
| 
deba@220
 | 
  1162  | 
  | 
| 
deba@220
 | 
  1163  | 
    typedef _Graph Graph;
  | 
| 
deba@220
 | 
  1164  | 
    typedef typename Graph::Edge Parent;
  | 
| 
deba@220
 | 
  1165  | 
  | 
| 
deba@220
 | 
  1166  | 
    typedef typename Graph::Edge Edge;
  | 
| 
deba@220
 | 
  1167  | 
    typedef typename Graph::Node Node;
  | 
| 
deba@220
 | 
  1168  | 
  | 
| 
deba@220
 | 
  1169  | 
    /// \brief Constructor.
  | 
| 
deba@220
 | 
  1170  | 
    ///
  | 
| 
kpeter@282
 | 
  1171  | 
    /// Construct a new ConEdgeIt iterating on the edges that
  | 
| 
kpeter@282
 | 
  1172  | 
    /// connects nodes \c u and \c v.
  | 
| 
kpeter@429
 | 
  1173  | 
    ConEdgeIt(const Graph& g, Node u, Node v) : _graph(g), _u(u), _v(v) {
 | 
| 
kpeter@429
 | 
  1174  | 
      Parent::operator=(findEdge(_graph, _u, _v));
  | 
| 
deba@220
 | 
  1175  | 
    }
  | 
| 
deba@220
 | 
  1176  | 
  | 
| 
deba@220
 | 
  1177  | 
    /// \brief Constructor.
  | 
| 
deba@220
 | 
  1178  | 
    ///
  | 
| 
kpeter@282
 | 
  1179  | 
    /// Construct a new ConEdgeIt that continues iterating from edge \c e.
  | 
| 
deba@220
 | 
  1180  | 
    ConEdgeIt(const Graph& g, Edge e) : Parent(e), _graph(g) {}
 | 
| 
deba@220
 | 
  1181  | 
  | 
| 
deba@220
 | 
  1182  | 
    /// \brief Increment operator.
  | 
| 
deba@220
 | 
  1183  | 
    ///
  | 
| 
deba@220
 | 
  1184  | 
    /// It increments the iterator and gives back the next edge.
  | 
| 
deba@220
 | 
  1185  | 
    ConEdgeIt& operator++() {
 | 
| 
kpeter@429
 | 
  1186  | 
      Parent::operator=(findEdge(_graph, _u, _v, *this));
  | 
| 
deba@220
 | 
  1187  | 
      return *this;
  | 
| 
deba@220
 | 
  1188  | 
    }
  | 
| 
deba@220
 | 
  1189  | 
  private:
  | 
| 
deba@220
 | 
  1190  | 
    const Graph& _graph;
  | 
| 
kpeter@429
 | 
  1191  | 
    Node _u, _v;
  | 
| 
deba@220
 | 
  1192  | 
  };
  | 
| 
deba@220
 | 
  1193  | 
  | 
| 
deba@220
 | 
  1194  | 
  | 
| 
kpeter@282
 | 
  1195  | 
  ///Dynamic arc look-up between given endpoints.
  | 
| 
deba@220
 | 
  1196  | 
  | 
| 
deba@220
 | 
  1197  | 
  ///Using this class, you can find an arc in a digraph from a given
  | 
| 
kpeter@282
 | 
  1198  | 
  ///source to a given target in amortized time <em>O</em>(log<em>d</em>),
  | 
| 
deba@220
 | 
  1199  | 
  ///where <em>d</em> is the out-degree of the source node.
  | 
| 
deba@220
 | 
  1200  | 
  ///
  | 
| 
deba@220
 | 
  1201  | 
  ///It is possible to find \e all parallel arcs between two nodes with
  | 
| 
deba@233
 | 
  1202  | 
  ///the \c operator() member.
  | 
| 
deba@220
 | 
  1203  | 
  ///
  | 
| 
kpeter@282
 | 
  1204  | 
  ///This is a dynamic data structure. Consider to use \ref ArcLookUp or
  | 
| 
kpeter@282
 | 
  1205  | 
  ///\ref AllArcLookUp if your digraph is not changed so frequently.
  | 
| 
deba@220
 | 
  1206  | 
  ///
  | 
| 
kpeter@282
 | 
  1207  | 
  ///This class uses a self-adjusting binary search tree, the Splay tree
  | 
| 
kpeter@282
 | 
  1208  | 
  ///of Sleator and Tarjan to guarantee the logarithmic amortized
  | 
| 
kpeter@282
 | 
  1209  | 
  ///time bound for arc look-ups. This class also guarantees the
  | 
| 
deba@220
 | 
  1210  | 
  ///optimal time bound in a constant factor for any distribution of
  | 
| 
deba@220
 | 
  1211  | 
  ///queries.
  | 
| 
deba@220
 | 
  1212  | 
  ///
  | 
| 
deba@220
 | 
  1213  | 
  ///\tparam G The type of the underlying digraph.
  | 
| 
deba@220
 | 
  1214  | 
  ///
  | 
| 
deba@220
 | 
  1215  | 
  ///\sa ArcLookUp
  | 
| 
deba@220
 | 
  1216  | 
  ///\sa AllArcLookUp
  | 
| 
deba@220
 | 
  1217  | 
  template<class G>
  | 
| 
deba@220
 | 
  1218  | 
  class DynArcLookUp
  | 
| 
deba@220
 | 
  1219  | 
    : protected ItemSetTraits<G, typename G::Arc>::ItemNotifier::ObserverBase
  | 
| 
deba@220
 | 
  1220  | 
  {
 | 
| 
deba@220
 | 
  1221  | 
  public:
  | 
| 
deba@220
 | 
  1222  | 
    typedef typename ItemSetTraits<G, typename G::Arc>
  | 
| 
deba@220
 | 
  1223  | 
    ::ItemNotifier::ObserverBase Parent;
  | 
| 
deba@220
 | 
  1224  | 
  | 
| 
deba@220
 | 
  1225  | 
    TEMPLATE_DIGRAPH_TYPEDEFS(G);
  | 
| 
deba@220
 | 
  1226  | 
    typedef G Digraph;
  | 
| 
deba@220
 | 
  1227  | 
  | 
| 
deba@220
 | 
  1228  | 
  protected:
  | 
| 
deba@220
 | 
  1229  | 
  | 
| 
deba@220
 | 
  1230  | 
    class AutoNodeMap : public ItemSetTraits<G, Node>::template Map<Arc>::Type {
 | 
| 
deba@220
 | 
  1231  | 
    public:
  | 
| 
deba@220
 | 
  1232  | 
  | 
| 
deba@220
 | 
  1233  | 
      typedef typename ItemSetTraits<G, Node>::template Map<Arc>::Type Parent;
  | 
| 
deba@220
 | 
  1234  | 
  | 
| 
deba@220
 | 
  1235  | 
      AutoNodeMap(const G& digraph) : Parent(digraph, INVALID) {}
 | 
| 
deba@220
 | 
  1236  | 
  | 
| 
deba@220
 | 
  1237  | 
      virtual void add(const Node& node) {
 | 
| 
deba@220
 | 
  1238  | 
        Parent::add(node);
  | 
| 
deba@220
 | 
  1239  | 
        Parent::set(node, INVALID);
  | 
| 
deba@220
 | 
  1240  | 
      }
  | 
| 
deba@220
 | 
  1241  | 
  | 
| 
deba@220
 | 
  1242  | 
      virtual void add(const std::vector<Node>& nodes) {
 | 
| 
deba@220
 | 
  1243  | 
        Parent::add(nodes);
  | 
| 
deba@220
 | 
  1244  | 
        for (int i = 0; i < int(nodes.size()); ++i) {
 | 
| 
deba@220
 | 
  1245  | 
          Parent::set(nodes[i], INVALID);
  | 
| 
deba@220
 | 
  1246  | 
        }
  | 
| 
deba@220
 | 
  1247  | 
      }
  | 
| 
deba@220
 | 
  1248  | 
  | 
| 
deba@220
 | 
  1249  | 
      virtual void build() {
 | 
| 
deba@220
 | 
  1250  | 
        Parent::build();
  | 
| 
deba@220
 | 
  1251  | 
        Node it;
  | 
| 
deba@220
 | 
  1252  | 
        typename Parent::Notifier* nf = Parent::notifier();
  | 
| 
deba@220
 | 
  1253  | 
        for (nf->first(it); it != INVALID; nf->next(it)) {
 | 
| 
deba@220
 | 
  1254  | 
          Parent::set(it, INVALID);
  | 
| 
deba@220
 | 
  1255  | 
        }
  | 
| 
deba@220
 | 
  1256  | 
      }
  | 
| 
deba@220
 | 
  1257  | 
    };
  | 
| 
deba@220
 | 
  1258  | 
  | 
| 
deba@220
 | 
  1259  | 
    const Digraph &_g;
  | 
| 
deba@220
 | 
  1260  | 
    AutoNodeMap _head;
  | 
| 
deba@220
 | 
  1261  | 
    typename Digraph::template ArcMap<Arc> _parent;
  | 
| 
deba@220
 | 
  1262  | 
    typename Digraph::template ArcMap<Arc> _left;
  | 
| 
deba@220
 | 
  1263  | 
    typename Digraph::template ArcMap<Arc> _right;
  | 
| 
deba@220
 | 
  1264  | 
  | 
| 
deba@220
 | 
  1265  | 
    class ArcLess {
 | 
| 
deba@220
 | 
  1266  | 
      const Digraph &g;
  | 
| 
deba@220
 | 
  1267  | 
    public:
  | 
| 
deba@220
 | 
  1268  | 
      ArcLess(const Digraph &_g) : g(_g) {}
 | 
| 
deba@220
 | 
  1269  | 
      bool operator()(Arc a,Arc b) const
  | 
| 
deba@220
 | 
  1270  | 
      {
 | 
| 
deba@220
 | 
  1271  | 
        return g.target(a)<g.target(b);
  | 
| 
deba@220
 | 
  1272  | 
      }
  | 
| 
deba@220
 | 
  1273  | 
    };
  | 
| 
deba@220
 | 
  1274  | 
  | 
| 
deba@220
 | 
  1275  | 
  public:
  | 
| 
deba@220
 | 
  1276  | 
  | 
| 
deba@220
 | 
  1277  | 
    ///Constructor
  | 
| 
deba@220
 | 
  1278  | 
  | 
| 
deba@220
 | 
  1279  | 
    ///Constructor.
  | 
| 
deba@220
 | 
  1280  | 
    ///
  | 
| 
deba@220
 | 
  1281  | 
    ///It builds up the search database.
  | 
| 
deba@220
 | 
  1282  | 
    DynArcLookUp(const Digraph &g)
  | 
| 
deba@220
 | 
  1283  | 
      : _g(g),_head(g),_parent(g),_left(g),_right(g)
  | 
| 
deba@220
 | 
  1284  | 
    {
 | 
| 
deba@220
 | 
  1285  | 
      Parent::attach(_g.notifier(typename Digraph::Arc()));
  | 
| 
deba@220
 | 
  1286  | 
      refresh();
  | 
| 
deba@220
 | 
  1287  | 
    }
  | 
| 
deba@220
 | 
  1288  | 
  | 
| 
deba@220
 | 
  1289  | 
  protected:
  | 
| 
deba@220
 | 
  1290  | 
  | 
| 
deba@220
 | 
  1291  | 
    virtual void add(const Arc& arc) {
 | 
| 
deba@220
 | 
  1292  | 
      insert(arc);
  | 
| 
deba@220
 | 
  1293  | 
    }
  | 
| 
deba@220
 | 
  1294  | 
  | 
| 
deba@220
 | 
  1295  | 
    virtual void add(const std::vector<Arc>& arcs) {
 | 
| 
deba@220
 | 
  1296  | 
      for (int i = 0; i < int(arcs.size()); ++i) {
 | 
| 
deba@220
 | 
  1297  | 
        insert(arcs[i]);
  | 
| 
deba@220
 | 
  1298  | 
      }
  | 
| 
deba@220
 | 
  1299  | 
    }
  | 
| 
deba@220
 | 
  1300  | 
  | 
| 
deba@220
 | 
  1301  | 
    virtual void erase(const Arc& arc) {
 | 
| 
deba@220
 | 
  1302  | 
      remove(arc);
  | 
| 
deba@220
 | 
  1303  | 
    }
  | 
| 
deba@220
 | 
  1304  | 
  | 
| 
deba@220
 | 
  1305  | 
    virtual void erase(const std::vector<Arc>& arcs) {
 | 
| 
deba@220
 | 
  1306  | 
      for (int i = 0; i < int(arcs.size()); ++i) {
 | 
| 
deba@220
 | 
  1307  | 
        remove(arcs[i]);
  | 
| 
deba@220
 | 
  1308  | 
      }
  | 
| 
deba@220
 | 
  1309  | 
    }
  | 
| 
deba@220
 | 
  1310  | 
  | 
| 
deba@220
 | 
  1311  | 
    virtual void build() {
 | 
| 
deba@220
 | 
  1312  | 
      refresh();
  | 
| 
deba@220
 | 
  1313  | 
    }
  | 
| 
deba@220
 | 
  1314  | 
  | 
| 
deba@220
 | 
  1315  | 
    virtual void clear() {
 | 
| 
deba@220
 | 
  1316  | 
      for(NodeIt n(_g);n!=INVALID;++n) {
 | 
| 
deba@220
 | 
  1317  | 
        _head.set(n, INVALID);
  | 
| 
deba@220
 | 
  1318  | 
      }
  | 
| 
deba@220
 | 
  1319  | 
    }
  | 
| 
deba@220
 | 
  1320  | 
  | 
| 
deba@220
 | 
  1321  | 
    void insert(Arc arc) {
 | 
| 
deba@220
 | 
  1322  | 
      Node s = _g.source(arc);
  | 
| 
deba@220
 | 
  1323  | 
      Node t = _g.target(arc);
  | 
| 
deba@220
 | 
  1324  | 
      _left.set(arc, INVALID);
  | 
| 
deba@220
 | 
  1325  | 
      _right.set(arc, INVALID);
  | 
| 
deba@220
 | 
  1326  | 
  | 
| 
deba@220
 | 
  1327  | 
      Arc e = _head[s];
  | 
| 
deba@220
 | 
  1328  | 
      if (e == INVALID) {
 | 
| 
deba@220
 | 
  1329  | 
        _head.set(s, arc);
  | 
| 
deba@220
 | 
  1330  | 
        _parent.set(arc, INVALID);
  | 
| 
deba@220
 | 
  1331  | 
        return;
  | 
| 
deba@220
 | 
  1332  | 
      }
  | 
| 
deba@220
 | 
  1333  | 
      while (true) {
 | 
| 
deba@220
 | 
  1334  | 
        if (t < _g.target(e)) {
 | 
| 
deba@220
 | 
  1335  | 
          if (_left[e] == INVALID) {
 | 
| 
deba@220
 | 
  1336  | 
            _left.set(e, arc);
  | 
| 
deba@220
 | 
  1337  | 
            _parent.set(arc, e);
  | 
| 
deba@220
 | 
  1338  | 
            splay(arc);
  | 
| 
deba@220
 | 
  1339  | 
            return;
  | 
| 
deba@220
 | 
  1340  | 
          } else {
 | 
| 
deba@220
 | 
  1341  | 
            e = _left[e];
  | 
| 
deba@220
 | 
  1342  | 
          }
  | 
| 
deba@220
 | 
  1343  | 
        } else {
 | 
| 
deba@220
 | 
  1344  | 
          if (_right[e] == INVALID) {
 | 
| 
deba@220
 | 
  1345  | 
            _right.set(e, arc);
  | 
| 
deba@220
 | 
  1346  | 
            _parent.set(arc, e);
  | 
| 
deba@220
 | 
  1347  | 
            splay(arc);
  | 
| 
deba@220
 | 
  1348  | 
            return;
  | 
| 
deba@220
 | 
  1349  | 
          } else {
 | 
| 
deba@220
 | 
  1350  | 
            e = _right[e];
  | 
| 
deba@220
 | 
  1351  | 
          }
  | 
| 
deba@220
 | 
  1352  | 
        }
  | 
| 
deba@220
 | 
  1353  | 
      }
  | 
| 
deba@220
 | 
  1354  | 
    }
  | 
| 
deba@220
 | 
  1355  | 
  | 
| 
deba@220
 | 
  1356  | 
    void remove(Arc arc) {
 | 
| 
deba@220
 | 
  1357  | 
      if (_left[arc] == INVALID) {
 | 
| 
deba@220
 | 
  1358  | 
        if (_right[arc] != INVALID) {
 | 
| 
deba@220
 | 
  1359  | 
          _parent.set(_right[arc], _parent[arc]);
  | 
| 
deba@220
 | 
  1360  | 
        }
  | 
| 
deba@220
 | 
  1361  | 
        if (_parent[arc] != INVALID) {
 | 
| 
deba@220
 | 
  1362  | 
          if (_left[_parent[arc]] == arc) {
 | 
| 
deba@220
 | 
  1363  | 
            _left.set(_parent[arc], _right[arc]);
  | 
| 
deba@220
 | 
  1364  | 
          } else {
 | 
| 
deba@220
 | 
  1365  | 
            _right.set(_parent[arc], _right[arc]);
  | 
| 
deba@220
 | 
  1366  | 
          }
  | 
| 
deba@220
 | 
  1367  | 
        } else {
 | 
| 
deba@220
 | 
  1368  | 
          _head.set(_g.source(arc), _right[arc]);
  | 
| 
deba@220
 | 
  1369  | 
        }
  | 
| 
deba@220
 | 
  1370  | 
      } else if (_right[arc] == INVALID) {
 | 
| 
deba@220
 | 
  1371  | 
        _parent.set(_left[arc], _parent[arc]);
  | 
| 
deba@220
 | 
  1372  | 
        if (_parent[arc] != INVALID) {
 | 
| 
deba@220
 | 
  1373  | 
          if (_left[_parent[arc]] == arc) {
 | 
| 
deba@220
 | 
  1374  | 
            _left.set(_parent[arc], _left[arc]);
  | 
| 
deba@220
 | 
  1375  | 
          } else {
 | 
| 
deba@220
 | 
  1376  | 
            _right.set(_parent[arc], _left[arc]);
  | 
| 
deba@220
 | 
  1377  | 
          }
  | 
| 
deba@220
 | 
  1378  | 
        } else {
 | 
| 
deba@220
 | 
  1379  | 
          _head.set(_g.source(arc), _left[arc]);
  | 
| 
deba@220
 | 
  1380  | 
        }
  | 
| 
deba@220
 | 
  1381  | 
      } else {
 | 
| 
deba@220
 | 
  1382  | 
        Arc e = _left[arc];
  | 
| 
deba@220
 | 
  1383  | 
        if (_right[e] != INVALID) {
 | 
| 
deba@220
 | 
  1384  | 
          e = _right[e];
  | 
| 
deba@220
 | 
  1385  | 
          while (_right[e] != INVALID) {
 | 
| 
deba@220
 | 
  1386  | 
            e = _right[e];
  | 
| 
deba@220
 | 
  1387  | 
          }
  | 
| 
deba@220
 | 
  1388  | 
          Arc s = _parent[e];
  | 
| 
deba@220
 | 
  1389  | 
          _right.set(_parent[e], _left[e]);
  | 
| 
deba@220
 | 
  1390  | 
          if (_left[e] != INVALID) {
 | 
| 
deba@220
 | 
  1391  | 
            _parent.set(_left[e], _parent[e]);
  | 
| 
deba@220
 | 
  1392  | 
          }
  | 
| 
deba@220
 | 
  1393  | 
  | 
| 
deba@220
 | 
  1394  | 
          _left.set(e, _left[arc]);
  | 
| 
deba@220
 | 
  1395  | 
          _parent.set(_left[arc], e);
  | 
| 
deba@220
 | 
  1396  | 
          _right.set(e, _right[arc]);
  | 
| 
deba@220
 | 
  1397  | 
          _parent.set(_right[arc], e);
  | 
| 
deba@220
 | 
  1398  | 
  | 
| 
deba@220
 | 
  1399  | 
          _parent.set(e, _parent[arc]);
  | 
| 
deba@220
 | 
  1400  | 
          if (_parent[arc] != INVALID) {
 | 
| 
deba@220
 | 
  1401  | 
            if (_left[_parent[arc]] == arc) {
 | 
| 
deba@220
 | 
  1402  | 
              _left.set(_parent[arc], e);
  | 
| 
deba@220
 | 
  1403  | 
            } else {
 | 
| 
deba@220
 | 
  1404  | 
              _right.set(_parent[arc], e);
  | 
| 
deba@220
 | 
  1405  | 
            }
  | 
| 
deba@220
 | 
  1406  | 
          }
  | 
| 
deba@220
 | 
  1407  | 
          splay(s);
  | 
| 
deba@220
 | 
  1408  | 
        } else {
 | 
| 
deba@220
 | 
  1409  | 
          _right.set(e, _right[arc]);
  | 
| 
deba@220
 | 
  1410  | 
          _parent.set(_right[arc], e);
  | 
| 
deba@232
 | 
  1411  | 
          _parent.set(e, _parent[arc]);
  | 
| 
deba@220
 | 
  1412  | 
  | 
| 
deba@220
 | 
  1413  | 
          if (_parent[arc] != INVALID) {
 | 
| 
deba@220
 | 
  1414  | 
            if (_left[_parent[arc]] == arc) {
 | 
| 
deba@220
 | 
  1415  | 
              _left.set(_parent[arc], e);
  | 
| 
deba@220
 | 
  1416  | 
            } else {
 | 
| 
deba@220
 | 
  1417  | 
              _right.set(_parent[arc], e);
  | 
| 
deba@220
 | 
  1418  | 
            }
  | 
| 
deba@220
 | 
  1419  | 
          } else {
 | 
| 
deba@220
 | 
  1420  | 
            _head.set(_g.source(arc), e);
  | 
| 
deba@220
 | 
  1421  | 
          }
  | 
| 
deba@220
 | 
  1422  | 
        }
  | 
| 
deba@220
 | 
  1423  | 
      }
  | 
| 
deba@220
 | 
  1424  | 
    }
  | 
| 
deba@220
 | 
  1425  | 
  | 
| 
deba@220
 | 
  1426  | 
    Arc refreshRec(std::vector<Arc> &v,int a,int b)
  | 
| 
deba@220
 | 
  1427  | 
    {
 | 
| 
deba@220
 | 
  1428  | 
      int m=(a+b)/2;
  | 
| 
deba@220
 | 
  1429  | 
      Arc me=v[m];
  | 
| 
deba@220
 | 
  1430  | 
      if (a < m) {
 | 
| 
deba@220
 | 
  1431  | 
        Arc left = refreshRec(v,a,m-1);
  | 
| 
deba@220
 | 
  1432  | 
        _left.set(me, left);
  | 
| 
deba@220
 | 
  1433  | 
        _parent.set(left, me);
  | 
| 
deba@220
 | 
  1434  | 
      } else {
 | 
| 
deba@220
 | 
  1435  | 
        _left.set(me, INVALID);
  | 
| 
deba@220
 | 
  1436  | 
      }
  | 
| 
deba@220
 | 
  1437  | 
      if (m < b) {
 | 
| 
deba@220
 | 
  1438  | 
        Arc right = refreshRec(v,m+1,b);
  | 
| 
deba@220
 | 
  1439  | 
        _right.set(me, right);
  | 
| 
deba@220
 | 
  1440  | 
        _parent.set(right, me);
  | 
| 
deba@220
 | 
  1441  | 
      } else {
 | 
| 
deba@220
 | 
  1442  | 
        _right.set(me, INVALID);
  | 
| 
deba@220
 | 
  1443  | 
      }
  | 
| 
deba@220
 | 
  1444  | 
      return me;
  | 
| 
deba@220
 | 
  1445  | 
    }
  | 
| 
deba@220
 | 
  1446  | 
  | 
| 
deba@220
 | 
  1447  | 
    void refresh() {
 | 
| 
deba@220
 | 
  1448  | 
      for(NodeIt n(_g);n!=INVALID;++n) {
 | 
| 
deba@220
 | 
  1449  | 
        std::vector<Arc> v;
  | 
| 
deba@233
 | 
  1450  | 
        for(OutArcIt a(_g,n);a!=INVALID;++a) v.push_back(a);
  | 
| 
deba@233
 | 
  1451  | 
        if (!v.empty()) {
 | 
| 
deba@220
 | 
  1452  | 
          std::sort(v.begin(),v.end(),ArcLess(_g));
  | 
| 
deba@220
 | 
  1453  | 
          Arc head = refreshRec(v,0,v.size()-1);
  | 
| 
deba@220
 | 
  1454  | 
          _head.set(n, head);
  | 
| 
deba@220
 | 
  1455  | 
          _parent.set(head, INVALID);
  | 
| 
deba@220
 | 
  1456  | 
        }
  | 
| 
deba@220
 | 
  1457  | 
        else _head.set(n, INVALID);
  | 
| 
deba@220
 | 
  1458  | 
      }
  | 
| 
deba@220
 | 
  1459  | 
    }
  | 
| 
deba@220
 | 
  1460  | 
  | 
| 
deba@220
 | 
  1461  | 
    void zig(Arc v) {
 | 
| 
deba@220
 | 
  1462  | 
      Arc w = _parent[v];
  | 
| 
deba@220
 | 
  1463  | 
      _parent.set(v, _parent[w]);
  | 
| 
deba@220
 | 
  1464  | 
      _parent.set(w, v);
  | 
| 
deba@220
 | 
  1465  | 
      _left.set(w, _right[v]);
  | 
| 
deba@220
 | 
  1466  | 
      _right.set(v, w);
  | 
| 
deba@220
 | 
  1467  | 
      if (_parent[v] != INVALID) {
 | 
| 
deba@220
 | 
  1468  | 
        if (_right[_parent[v]] == w) {
 | 
| 
deba@220
 | 
  1469  | 
          _right.set(_parent[v], v);
  | 
| 
deba@220
 | 
  1470  | 
        } else {
 | 
| 
deba@220
 | 
  1471  | 
          _left.set(_parent[v], v);
  | 
| 
deba@220
 | 
  1472  | 
        }
  | 
| 
deba@220
 | 
  1473  | 
      }
  | 
| 
deba@220
 | 
  1474  | 
      if (_left[w] != INVALID){
 | 
| 
deba@220
 | 
  1475  | 
        _parent.set(_left[w], w);
  | 
| 
deba@220
 | 
  1476  | 
      }
  | 
| 
deba@220
 | 
  1477  | 
    }
  | 
| 
deba@220
 | 
  1478  | 
  | 
| 
deba@220
 | 
  1479  | 
    void zag(Arc v) {
 | 
| 
deba@220
 | 
  1480  | 
      Arc w = _parent[v];
  | 
| 
deba@220
 | 
  1481  | 
      _parent.set(v, _parent[w]);
  | 
| 
deba@220
 | 
  1482  | 
      _parent.set(w, v);
  | 
| 
deba@220
 | 
  1483  | 
      _right.set(w, _left[v]);
  | 
| 
deba@220
 | 
  1484  | 
      _left.set(v, w);
  | 
| 
deba@220
 | 
  1485  | 
      if (_parent[v] != INVALID){
 | 
| 
deba@220
 | 
  1486  | 
        if (_left[_parent[v]] == w) {
 | 
| 
deba@220
 | 
  1487  | 
          _left.set(_parent[v], v);
  | 
| 
deba@220
 | 
  1488  | 
        } else {
 | 
| 
deba@220
 | 
  1489  | 
          _right.set(_parent[v], v);
  | 
| 
deba@220
 | 
  1490  | 
        }
  | 
| 
deba@220
 | 
  1491  | 
      }
  | 
| 
deba@220
 | 
  1492  | 
      if (_right[w] != INVALID){
 | 
| 
deba@220
 | 
  1493  | 
        _parent.set(_right[w], w);
  | 
| 
deba@220
 | 
  1494  | 
      }
  | 
| 
deba@220
 | 
  1495  | 
    }
  | 
| 
deba@220
 | 
  1496  | 
  | 
| 
deba@220
 | 
  1497  | 
    void splay(Arc v) {
 | 
| 
deba@220
 | 
  1498  | 
      while (_parent[v] != INVALID) {
 | 
| 
deba@220
 | 
  1499  | 
        if (v == _left[_parent[v]]) {
 | 
| 
deba@220
 | 
  1500  | 
          if (_parent[_parent[v]] == INVALID) {
 | 
| 
deba@220
 | 
  1501  | 
            zig(v);
  | 
| 
deba@220
 | 
  1502  | 
          } else {
 | 
| 
deba@220
 | 
  1503  | 
            if (_parent[v] == _left[_parent[_parent[v]]]) {
 | 
| 
deba@220
 | 
  1504  | 
              zig(_parent[v]);
  | 
| 
deba@220
 | 
  1505  | 
              zig(v);
  | 
| 
deba@220
 | 
  1506  | 
            } else {
 | 
| 
deba@220
 | 
  1507  | 
              zig(v);
  | 
| 
deba@220
 | 
  1508  | 
              zag(v);
  | 
| 
deba@220
 | 
  1509  | 
            }
  | 
| 
deba@220
 | 
  1510  | 
          }
  | 
| 
deba@220
 | 
  1511  | 
        } else {
 | 
| 
deba@220
 | 
  1512  | 
          if (_parent[_parent[v]] == INVALID) {
 | 
| 
deba@220
 | 
  1513  | 
            zag(v);
  | 
| 
deba@220
 | 
  1514  | 
          } else {
 | 
| 
deba@220
 | 
  1515  | 
            if (_parent[v] == _left[_parent[_parent[v]]]) {
 | 
| 
deba@220
 | 
  1516  | 
              zag(v);
  | 
| 
deba@220
 | 
  1517  | 
              zig(v);
  | 
| 
deba@220
 | 
  1518  | 
            } else {
 | 
| 
deba@220
 | 
  1519  | 
              zag(_parent[v]);
  | 
| 
deba@220
 | 
  1520  | 
              zag(v);
  | 
| 
deba@220
 | 
  1521  | 
            }
  | 
| 
deba@220
 | 
  1522  | 
          }
  | 
| 
deba@220
 | 
  1523  | 
        }
  | 
| 
deba@220
 | 
  1524  | 
      }
  | 
| 
deba@220
 | 
  1525  | 
      _head[_g.source(v)] = v;
  | 
| 
deba@220
 | 
  1526  | 
    }
  | 
| 
deba@220
 | 
  1527  | 
  | 
| 
deba@220
 | 
  1528  | 
  | 
| 
deba@220
 | 
  1529  | 
  public:
  | 
| 
deba@220
 | 
  1530  | 
  | 
| 
deba@220
 | 
  1531  | 
    ///Find an arc between two nodes.
  | 
| 
deba@220
 | 
  1532  | 
  | 
| 
deba@233
 | 
  1533  | 
    ///Find an arc between two nodes.
  | 
| 
kpeter@282
 | 
  1534  | 
    ///\param s The source node.
  | 
| 
kpeter@282
 | 
  1535  | 
    ///\param t The target node.
  | 
| 
deba@233
 | 
  1536  | 
    ///\param p The previous arc between \c s and \c t. It it is INVALID or
  | 
| 
deba@233
 | 
  1537  | 
    ///not given, the operator finds the first appropriate arc.
  | 
| 
deba@233
 | 
  1538  | 
    ///\return An arc from \c s to \c t after \c p or
  | 
| 
deba@233
 | 
  1539  | 
    ///\ref INVALID if there is no more.
  | 
| 
deba@233
 | 
  1540  | 
    ///
  | 
| 
deba@233
 | 
  1541  | 
    ///For example, you can count the number of arcs from \c u to \c v in the
  | 
| 
deba@233
 | 
  1542  | 
    ///following way.
  | 
| 
deba@233
 | 
  1543  | 
    ///\code
  | 
| 
deba@233
 | 
  1544  | 
    ///DynArcLookUp<ListDigraph> ae(g);
  | 
| 
deba@233
 | 
  1545  | 
    ///...
  | 
| 
kpeter@282
 | 
  1546  | 
    ///int n = 0;
  | 
| 
kpeter@282
 | 
  1547  | 
    ///for(Arc a = ae(u,v); a != INVALID; a = ae(u,v,a)) n++;
  | 
| 
deba@233
 | 
  1548  | 
    ///\endcode
  | 
| 
deba@233
 | 
  1549  | 
    ///
  | 
| 
kpeter@282
 | 
  1550  | 
    ///Finding the arcs take at most <em>O</em>(log<em>d</em>)
  | 
| 
deba@233
 | 
  1551  | 
    ///amortized time, specifically, the time complexity of the lookups
  | 
| 
deba@233
 | 
  1552  | 
    ///is equal to the optimal search tree implementation for the
  | 
| 
deba@233
 | 
  1553  | 
    ///current query distribution in a constant factor.
  | 
| 
deba@233
 | 
  1554  | 
    ///
  | 
| 
deba@233
 | 
  1555  | 
    ///\note This is a dynamic data structure, therefore the data
  | 
| 
kpeter@282
 | 
  1556  | 
    ///structure is updated after each graph alteration. Thus although
  | 
| 
kpeter@282
 | 
  1557  | 
    ///this data structure is theoretically faster than \ref ArcLookUp
  | 
| 
kpeter@313
 | 
  1558  | 
    ///and \ref AllArcLookUp, it often provides worse performance than
  | 
| 
deba@233
 | 
  1559  | 
    ///them.
  | 
| 
deba@233
 | 
  1560  | 
    Arc operator()(Node s, Node t, Arc p = INVALID) const  {
 | 
| 
deba@233
 | 
  1561  | 
      if (p == INVALID) {
 | 
| 
deba@233
 | 
  1562  | 
        Arc a = _head[s];
  | 
| 
deba@233
 | 
  1563  | 
        if (a == INVALID) return INVALID;
  | 
| 
deba@233
 | 
  1564  | 
        Arc r = INVALID;
  | 
| 
deba@233
 | 
  1565  | 
        while (true) {
 | 
| 
deba@233
 | 
  1566  | 
          if (_g.target(a) < t) {
 | 
| 
deba@233
 | 
  1567  | 
            if (_right[a] == INVALID) {
 | 
| 
deba@233
 | 
  1568  | 
              const_cast<DynArcLookUp&>(*this).splay(a);
  | 
| 
deba@233
 | 
  1569  | 
              return r;
  | 
| 
deba@233
 | 
  1570  | 
            } else {
 | 
| 
deba@233
 | 
  1571  | 
              a = _right[a];
  | 
| 
deba@233
 | 
  1572  | 
            }
  | 
| 
deba@233
 | 
  1573  | 
          } else {
 | 
| 
deba@233
 | 
  1574  | 
            if (_g.target(a) == t) {
 | 
| 
deba@233
 | 
  1575  | 
              r = a;
  | 
| 
deba@233
 | 
  1576  | 
            }
  | 
| 
deba@233
 | 
  1577  | 
            if (_left[a] == INVALID) {
 | 
| 
deba@233
 | 
  1578  | 
              const_cast<DynArcLookUp&>(*this).splay(a);
  | 
| 
deba@233
 | 
  1579  | 
              return r;
  | 
| 
deba@233
 | 
  1580  | 
            } else {
 | 
| 
deba@233
 | 
  1581  | 
              a = _left[a];
  | 
| 
deba@233
 | 
  1582  | 
            }
  | 
| 
deba@233
 | 
  1583  | 
          }
  | 
| 
deba@233
 | 
  1584  | 
        }
  | 
| 
deba@233
 | 
  1585  | 
      } else {
 | 
| 
deba@233
 | 
  1586  | 
        Arc a = p;
  | 
| 
deba@233
 | 
  1587  | 
        if (_right[a] != INVALID) {
 | 
| 
deba@233
 | 
  1588  | 
          a = _right[a];
  | 
| 
deba@233
 | 
  1589  | 
          while (_left[a] != INVALID) {
 | 
| 
deba@233
 | 
  1590  | 
            a = _left[a];
  | 
| 
deba@233
 | 
  1591  | 
          }
  | 
| 
deba@220
 | 
  1592  | 
          const_cast<DynArcLookUp&>(*this).splay(a);
  | 
| 
deba@233
 | 
  1593  | 
        } else {
 | 
| 
deba@233
 | 
  1594  | 
          while (_parent[a] != INVALID && _right[_parent[a]] ==  a) {
 | 
| 
deba@233
 | 
  1595  | 
            a = _parent[a];
  | 
| 
deba@233
 | 
  1596  | 
          }
  | 
| 
deba@233
 | 
  1597  | 
          if (_parent[a] == INVALID) {
 | 
| 
deba@220
 | 
  1598  | 
            return INVALID;
  | 
| 
deba@220
 | 
  1599  | 
          } else {
 | 
| 
deba@233
 | 
  1600  | 
            a = _parent[a];
  | 
| 
deba@220
 | 
  1601  | 
            const_cast<DynArcLookUp&>(*this).splay(a);
  | 
| 
deba@220
 | 
  1602  | 
          }
  | 
| 
deba@220
 | 
  1603  | 
        }
  | 
| 
deba@233
 | 
  1604  | 
        if (_g.target(a) == t) return a;
  | 
| 
deba@233
 | 
  1605  | 
        else return INVALID;
  | 
| 
deba@220
 | 
  1606  | 
      }
  | 
| 
deba@220
 | 
  1607  | 
    }
  | 
| 
deba@220
 | 
  1608  | 
  | 
| 
deba@220
 | 
  1609  | 
  };
  | 
| 
deba@220
 | 
  1610  | 
  | 
| 
kpeter@282
 | 
  1611  | 
  ///Fast arc look-up between given endpoints.
  | 
| 
deba@220
 | 
  1612  | 
  | 
| 
deba@220
 | 
  1613  | 
  ///Using this class, you can find an arc in a digraph from a given
  | 
| 
kpeter@282
 | 
  1614  | 
  ///source to a given target in time <em>O</em>(log<em>d</em>),
  | 
| 
deba@220
 | 
  1615  | 
  ///where <em>d</em> is the out-degree of the source node.
  | 
| 
deba@220
 | 
  1616  | 
  ///
  | 
| 
deba@220
 | 
  1617  | 
  ///It is not possible to find \e all parallel arcs between two nodes.
  | 
| 
deba@220
 | 
  1618  | 
  ///Use \ref AllArcLookUp for this purpose.
  | 
| 
deba@220
 | 
  1619  | 
  ///
  | 
| 
kpeter@282
 | 
  1620  | 
  ///\warning This class is static, so you should call refresh() (or at
  | 
| 
kpeter@282
 | 
  1621  | 
  ///least refresh(Node)) to refresh this data structure whenever the
  | 
| 
kpeter@282
 | 
  1622  | 
  ///digraph changes. This is a time consuming (superlinearly proportional
  | 
| 
kpeter@282
 | 
  1623  | 
  ///(<em>O</em>(<em>m</em> log<em>m</em>)) to the number of arcs).
  | 
| 
deba@220
 | 
  1624  | 
  ///
  | 
| 
deba@220
 | 
  1625  | 
  ///\tparam G The type of the underlying digraph.
  | 
| 
deba@220
 | 
  1626  | 
  ///
  | 
| 
deba@220
 | 
  1627  | 
  ///\sa DynArcLookUp
  | 
| 
deba@220
 | 
  1628  | 
  ///\sa AllArcLookUp
  | 
| 
deba@220
 | 
  1629  | 
  template<class G>
  | 
| 
deba@220
 | 
  1630  | 
  class ArcLookUp
  | 
| 
deba@220
 | 
  1631  | 
  {
 | 
| 
deba@220
 | 
  1632  | 
  public:
  | 
| 
deba@220
 | 
  1633  | 
    TEMPLATE_DIGRAPH_TYPEDEFS(G);
  | 
| 
deba@220
 | 
  1634  | 
    typedef G Digraph;
  | 
| 
deba@220
 | 
  1635  | 
  | 
| 
deba@220
 | 
  1636  | 
  protected:
  | 
| 
deba@220
 | 
  1637  | 
    const Digraph &_g;
  | 
| 
deba@220
 | 
  1638  | 
    typename Digraph::template NodeMap<Arc> _head;
  | 
| 
deba@220
 | 
  1639  | 
    typename Digraph::template ArcMap<Arc> _left;
  | 
| 
deba@220
 | 
  1640  | 
    typename Digraph::template ArcMap<Arc> _right;
  | 
| 
deba@220
 | 
  1641  | 
  | 
| 
deba@220
 | 
  1642  | 
    class ArcLess {
 | 
| 
deba@220
 | 
  1643  | 
      const Digraph &g;
  | 
| 
deba@220
 | 
  1644  | 
    public:
  | 
| 
deba@220
 | 
  1645  | 
      ArcLess(const Digraph &_g) : g(_g) {}
 | 
| 
deba@220
 | 
  1646  | 
      bool operator()(Arc a,Arc b) const
  | 
| 
deba@220
 | 
  1647  | 
      {
 | 
| 
deba@220
 | 
  1648  | 
        return g.target(a)<g.target(b);
  | 
| 
deba@220
 | 
  1649  | 
      }
  | 
| 
deba@220
 | 
  1650  | 
    };
  | 
| 
deba@220
 | 
  1651  | 
  | 
| 
deba@220
 | 
  1652  | 
  public:
  | 
| 
deba@220
 | 
  1653  | 
  | 
| 
deba@220
 | 
  1654  | 
    ///Constructor
  | 
| 
deba@220
 | 
  1655  | 
  | 
| 
deba@220
 | 
  1656  | 
    ///Constructor.
  | 
| 
deba@220
 | 
  1657  | 
    ///
  | 
| 
deba@220
 | 
  1658  | 
    ///It builds up the search database, which remains valid until the digraph
  | 
| 
deba@220
 | 
  1659  | 
    ///changes.
  | 
| 
deba@220
 | 
  1660  | 
    ArcLookUp(const Digraph &g) :_g(g),_head(g),_left(g),_right(g) {refresh();}
 | 
| 
deba@220
 | 
  1661  | 
  | 
| 
deba@220
 | 
  1662  | 
  private:
  | 
| 
deba@220
 | 
  1663  | 
    Arc refreshRec(std::vector<Arc> &v,int a,int b)
  | 
| 
deba@220
 | 
  1664  | 
    {
 | 
| 
deba@220
 | 
  1665  | 
      int m=(a+b)/2;
  | 
| 
deba@220
 | 
  1666  | 
      Arc me=v[m];
  | 
| 
deba@220
 | 
  1667  | 
      _left[me] = a<m?refreshRec(v,a,m-1):INVALID;
  | 
| 
deba@220
 | 
  1668  | 
      _right[me] = m<b?refreshRec(v,m+1,b):INVALID;
  | 
| 
deba@220
 | 
  1669  | 
      return me;
  | 
| 
deba@220
 | 
  1670  | 
    }
  | 
| 
deba@220
 | 
  1671  | 
  public:
  | 
| 
kpeter@282
 | 
  1672  | 
    ///Refresh the search data structure at a node.
  | 
| 
deba@220
 | 
  1673  | 
  | 
| 
deba@220
 | 
  1674  | 
    ///Build up the search database of node \c n.
  | 
| 
deba@220
 | 
  1675  | 
    ///
  | 
| 
kpeter@282
 | 
  1676  | 
    ///It runs in time <em>O</em>(<em>d</em> log<em>d</em>), where <em>d</em>
  | 
| 
kpeter@282
 | 
  1677  | 
    ///is the number of the outgoing arcs of \c n.
  | 
| 
deba@220
 | 
  1678  | 
    void refresh(Node n)
  | 
| 
deba@220
 | 
  1679  | 
    {
 | 
| 
deba@220
 | 
  1680  | 
      std::vector<Arc> v;
  | 
| 
deba@220
 | 
  1681  | 
      for(OutArcIt e(_g,n);e!=INVALID;++e) v.push_back(e);
  | 
| 
deba@220
 | 
  1682  | 
      if(v.size()) {
 | 
| 
deba@220
 | 
  1683  | 
        std::sort(v.begin(),v.end(),ArcLess(_g));
  | 
| 
deba@220
 | 
  1684  | 
        _head[n]=refreshRec(v,0,v.size()-1);
  | 
| 
deba@220
 | 
  1685  | 
      }
  | 
| 
deba@220
 | 
  1686  | 
      else _head[n]=INVALID;
  | 
| 
deba@220
 | 
  1687  | 
    }
  | 
| 
deba@220
 | 
  1688  | 
    ///Refresh the full data structure.
  | 
| 
deba@220
 | 
  1689  | 
  | 
| 
deba@220
 | 
  1690  | 
    ///Build up the full search database. In fact, it simply calls
  | 
| 
deba@220
 | 
  1691  | 
    ///\ref refresh(Node) "refresh(n)" for each node \c n.
  | 
| 
deba@220
 | 
  1692  | 
    ///
  | 
| 
kpeter@282
 | 
  1693  | 
    ///It runs in time <em>O</em>(<em>m</em> log<em>D</em>), where <em>m</em> is
  | 
| 
kpeter@282
 | 
  1694  | 
    ///the number of the arcs in the digraph and <em>D</em> is the maximum
  | 
| 
deba@220
 | 
  1695  | 
    ///out-degree of the digraph.
  | 
| 
deba@220
 | 
  1696  | 
    void refresh()
  | 
| 
deba@220
 | 
  1697  | 
    {
 | 
| 
deba@220
 | 
  1698  | 
      for(NodeIt n(_g);n!=INVALID;++n) refresh(n);
  | 
| 
deba@220
 | 
  1699  | 
    }
  | 
| 
deba@220
 | 
  1700  | 
  | 
| 
deba@220
 | 
  1701  | 
    ///Find an arc between two nodes.
  | 
| 
deba@220
 | 
  1702  | 
  | 
| 
kpeter@313
 | 
  1703  | 
    ///Find an arc between two nodes in time <em>O</em>(log<em>d</em>),
  | 
| 
kpeter@313
 | 
  1704  | 
    ///where <em>d</em> is the number of outgoing arcs of \c s.
  | 
| 
kpeter@282
 | 
  1705  | 
    ///\param s The source node.
  | 
| 
kpeter@282
 | 
  1706  | 
    ///\param t The target node.
  | 
| 
deba@220
 | 
  1707  | 
    ///\return An arc from \c s to \c t if there exists,
  | 
| 
deba@220
 | 
  1708  | 
    ///\ref INVALID otherwise.
  | 
| 
deba@220
 | 
  1709  | 
    ///
  | 
| 
deba@220
 | 
  1710  | 
    ///\warning If you change the digraph, refresh() must be called before using
  | 
| 
deba@220
 | 
  1711  | 
    ///this operator. If you change the outgoing arcs of
  | 
| 
kpeter@282
 | 
  1712  | 
    ///a single node \c n, then \ref refresh(Node) "refresh(n)" is enough.
  | 
| 
deba@220
 | 
  1713  | 
    Arc operator()(Node s, Node t) const
  | 
| 
deba@220
 | 
  1714  | 
    {
 | 
| 
deba@220
 | 
  1715  | 
      Arc e;
  | 
| 
deba@220
 | 
  1716  | 
      for(e=_head[s];
  | 
| 
deba@220
 | 
  1717  | 
          e!=INVALID&&_g.target(e)!=t;
  | 
| 
deba@220
 | 
  1718  | 
          e = t < _g.target(e)?_left[e]:_right[e]) ;
  | 
| 
deba@220
 | 
  1719  | 
      return e;
  | 
| 
deba@220
 | 
  1720  | 
    }
  | 
| 
deba@220
 | 
  1721  | 
  | 
| 
deba@220
 | 
  1722  | 
  };
  | 
| 
deba@220
 | 
  1723  | 
  | 
| 
kpeter@282
 | 
  1724  | 
  ///Fast look-up of all arcs between given endpoints.
  | 
| 
deba@220
 | 
  1725  | 
  | 
| 
deba@220
 | 
  1726  | 
  ///This class is the same as \ref ArcLookUp, with the addition
  | 
| 
kpeter@282
 | 
  1727  | 
  ///that it makes it possible to find all parallel arcs between given
  | 
| 
kpeter@282
 | 
  1728  | 
  ///endpoints.
  | 
| 
deba@220
 | 
  1729  | 
  ///
  | 
| 
kpeter@282
 | 
  1730  | 
  ///\warning This class is static, so you should call refresh() (or at
  | 
| 
kpeter@282
 | 
  1731  | 
  ///least refresh(Node)) to refresh this data structure whenever the
  | 
| 
kpeter@282
 | 
  1732  | 
  ///digraph changes. This is a time consuming (superlinearly proportional
  | 
| 
kpeter@282
 | 
  1733  | 
  ///(<em>O</em>(<em>m</em> log<em>m</em>)) to the number of arcs).
  | 
| 
deba@220
 | 
  1734  | 
  ///
  | 
| 
deba@220
 | 
  1735  | 
  ///\tparam G The type of the underlying digraph.
  | 
| 
deba@220
 | 
  1736  | 
  ///
  | 
| 
deba@220
 | 
  1737  | 
  ///\sa DynArcLookUp
  | 
| 
deba@220
 | 
  1738  | 
  ///\sa ArcLookUp
  | 
| 
deba@220
 | 
  1739  | 
  template<class G>
  | 
| 
deba@220
 | 
  1740  | 
  class AllArcLookUp : public ArcLookUp<G>
  | 
| 
deba@220
 | 
  1741  | 
  {
 | 
| 
deba@220
 | 
  1742  | 
    using ArcLookUp<G>::_g;
  | 
| 
deba@220
 | 
  1743  | 
    using ArcLookUp<G>::_right;
  | 
| 
deba@220
 | 
  1744  | 
    using ArcLookUp<G>::_left;
  | 
| 
deba@220
 | 
  1745  | 
    using ArcLookUp<G>::_head;
  | 
| 
deba@220
 | 
  1746  | 
  | 
| 
deba@220
 | 
  1747  | 
    TEMPLATE_DIGRAPH_TYPEDEFS(G);
  | 
| 
deba@220
 | 
  1748  | 
    typedef G Digraph;
  | 
| 
deba@220
 | 
  1749  | 
  | 
| 
deba@220
 | 
  1750  | 
    typename Digraph::template ArcMap<Arc> _next;
  | 
| 
deba@220
 | 
  1751  | 
  | 
| 
deba@220
 | 
  1752  | 
    Arc refreshNext(Arc head,Arc next=INVALID)
  | 
| 
deba@220
 | 
  1753  | 
    {
 | 
| 
deba@220
 | 
  1754  | 
      if(head==INVALID) return next;
  | 
| 
deba@220
 | 
  1755  | 
      else {
 | 
| 
deba@220
 | 
  1756  | 
        next=refreshNext(_right[head],next);
  | 
| 
deba@220
 | 
  1757  | 
        _next[head]=( next!=INVALID && _g.target(next)==_g.target(head))
  | 
| 
deba@220
 | 
  1758  | 
          ? next : INVALID;
  | 
| 
deba@220
 | 
  1759  | 
        return refreshNext(_left[head],head);
  | 
| 
deba@220
 | 
  1760  | 
      }
  | 
| 
deba@220
 | 
  1761  | 
    }
  | 
| 
deba@220
 | 
  1762  | 
  | 
| 
deba@220
 | 
  1763  | 
    void refreshNext()
  | 
| 
deba@220
 | 
  1764  | 
    {
 | 
| 
deba@220
 | 
  1765  | 
      for(NodeIt n(_g);n!=INVALID;++n) refreshNext(_head[n]);
  | 
| 
deba@220
 | 
  1766  | 
    }
  | 
| 
deba@220
 | 
  1767  | 
  | 
| 
deba@220
 | 
  1768  | 
  public:
  | 
| 
deba@220
 | 
  1769  | 
    ///Constructor
  | 
| 
deba@220
 | 
  1770  | 
  | 
| 
deba@220
 | 
  1771  | 
    ///Constructor.
  | 
| 
deba@220
 | 
  1772  | 
    ///
  | 
| 
deba@220
 | 
  1773  | 
    ///It builds up the search database, which remains valid until the digraph
  | 
| 
deba@220
 | 
  1774  | 
    ///changes.
  | 
| 
deba@220
 | 
  1775  | 
    AllArcLookUp(const Digraph &g) : ArcLookUp<G>(g), _next(g) {refreshNext();}
 | 
| 
deba@220
 | 
  1776  | 
  | 
| 
deba@220
 | 
  1777  | 
    ///Refresh the data structure at a node.
  | 
| 
deba@220
 | 
  1778  | 
  | 
| 
deba@220
 | 
  1779  | 
    ///Build up the search database of node \c n.
  | 
| 
deba@220
 | 
  1780  | 
    ///
  | 
| 
kpeter@282
 | 
  1781  | 
    ///It runs in time <em>O</em>(<em>d</em> log<em>d</em>), where <em>d</em> is
  | 
| 
deba@220
 | 
  1782  | 
    ///the number of the outgoing arcs of \c n.
  | 
| 
deba@220
 | 
  1783  | 
    void refresh(Node n)
  | 
| 
deba@220
 | 
  1784  | 
    {
 | 
| 
deba@220
 | 
  1785  | 
      ArcLookUp<G>::refresh(n);
  | 
| 
deba@220
 | 
  1786  | 
      refreshNext(_head[n]);
  | 
| 
deba@220
 | 
  1787  | 
    }
  | 
| 
deba@220
 | 
  1788  | 
  | 
| 
deba@220
 | 
  1789  | 
    ///Refresh the full data structure.
  | 
| 
deba@220
 | 
  1790  | 
  | 
| 
deba@220
 | 
  1791  | 
    ///Build up the full search database. In fact, it simply calls
  | 
| 
deba@220
 | 
  1792  | 
    ///\ref refresh(Node) "refresh(n)" for each node \c n.
  | 
| 
deba@220
 | 
  1793  | 
    ///
  | 
| 
kpeter@282
 | 
  1794  | 
    ///It runs in time <em>O</em>(<em>m</em> log<em>D</em>), where <em>m</em> is
  | 
| 
kpeter@282
 | 
  1795  | 
    ///the number of the arcs in the digraph and <em>D</em> is the maximum
  | 
| 
deba@220
 | 
  1796  | 
    ///out-degree of the digraph.
  | 
| 
deba@220
 | 
  1797  | 
    void refresh()
  | 
| 
deba@220
 | 
  1798  | 
    {
 | 
| 
deba@220
 | 
  1799  | 
      for(NodeIt n(_g);n!=INVALID;++n) refresh(_head[n]);
  | 
| 
deba@220
 | 
  1800  | 
    }
  | 
| 
deba@220
 | 
  1801  | 
  | 
| 
deba@220
 | 
  1802  | 
    ///Find an arc between two nodes.
  | 
| 
deba@220
 | 
  1803  | 
  | 
| 
deba@220
 | 
  1804  | 
    ///Find an arc between two nodes.
  | 
| 
kpeter@282
 | 
  1805  | 
    ///\param s The source node.
  | 
| 
kpeter@282
 | 
  1806  | 
    ///\param t The target node.
  | 
| 
deba@220
 | 
  1807  | 
    ///\param prev The previous arc between \c s and \c t. It it is INVALID or
  | 
| 
deba@220
 | 
  1808  | 
    ///not given, the operator finds the first appropriate arc.
  | 
| 
deba@220
 | 
  1809  | 
    ///\return An arc from \c s to \c t after \c prev or
  | 
| 
deba@220
 | 
  1810  | 
    ///\ref INVALID if there is no more.
  | 
| 
deba@220
 | 
  1811  | 
    ///
  | 
| 
deba@220
 | 
  1812  | 
    ///For example, you can count the number of arcs from \c u to \c v in the
  | 
| 
deba@220
 | 
  1813  | 
    ///following way.
  | 
| 
deba@220
 | 
  1814  | 
    ///\code
  | 
| 
deba@220
 | 
  1815  | 
    ///AllArcLookUp<ListDigraph> ae(g);
  | 
| 
deba@220
 | 
  1816  | 
    ///...
  | 
| 
kpeter@282
 | 
  1817  | 
    ///int n = 0;
  | 
| 
kpeter@282
 | 
  1818  | 
    ///for(Arc a = ae(u,v); a != INVALID; a=ae(u,v,a)) n++;
  | 
| 
deba@220
 | 
  1819  | 
    ///\endcode
  | 
| 
deba@220
 | 
  1820  | 
    ///
  | 
| 
kpeter@313
 | 
  1821  | 
    ///Finding the first arc take <em>O</em>(log<em>d</em>) time,
  | 
| 
kpeter@313
 | 
  1822  | 
    ///where <em>d</em> is the number of outgoing arcs of \c s. Then the
  | 
| 
deba@220
 | 
  1823  | 
    ///consecutive arcs are found in constant time.
  | 
| 
deba@220
 | 
  1824  | 
    ///
  | 
| 
deba@220
 | 
  1825  | 
    ///\warning If you change the digraph, refresh() must be called before using
  | 
| 
deba@220
 | 
  1826  | 
    ///this operator. If you change the outgoing arcs of
  | 
| 
kpeter@282
 | 
  1827  | 
    ///a single node \c n, then \ref refresh(Node) "refresh(n)" is enough.
  | 
| 
deba@220
 | 
  1828  | 
    ///
  | 
| 
deba@220
 | 
  1829  | 
#ifdef DOXYGEN
  | 
| 
deba@220
 | 
  1830  | 
    Arc operator()(Node s, Node t, Arc prev=INVALID) const {}
 | 
| 
deba@220
 | 
  1831  | 
#else
  | 
| 
deba@220
 | 
  1832  | 
    using ArcLookUp<G>::operator() ;
  | 
| 
deba@220
 | 
  1833  | 
    Arc operator()(Node s, Node t, Arc prev) const
  | 
| 
deba@220
 | 
  1834  | 
    {
 | 
| 
deba@220
 | 
  1835  | 
      return prev==INVALID?(*this)(s,t):_next[prev];
  | 
| 
deba@220
 | 
  1836  | 
    }
  | 
| 
deba@220
 | 
  1837  | 
#endif
  | 
| 
deba@220
 | 
  1838  | 
  | 
| 
deba@220
 | 
  1839  | 
  };
  | 
| 
deba@220
 | 
  1840  | 
  | 
| 
deba@220
 | 
  1841  | 
  /// @}
  | 
| 
deba@220
 | 
  1842  | 
  | 
| 
deba@220
 | 
  1843  | 
} //namespace lemon
  | 
| 
deba@220
 | 
  1844  | 
  | 
| 
deba@220
 | 
  1845  | 
#endif
  |