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/* -*- mode: C++; indent-tabs-mode: nil; -*-
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alpar@399
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 *
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alpar@399
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 * This file is a part of LEMON, a generic C++ optimization library.
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alpar@399
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 *
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alpar@399
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 * Copyright (C) 2003-2008
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alpar@399
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 * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
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 * (Egervary Research Group on Combinatorial Optimization, EGRES).
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alpar@399
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 *
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alpar@399
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 * Permission to use, modify and distribute this software is granted
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 * provided that this copyright notice appears in all copies. For
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 * precise terms see the accompanying LICENSE file.
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alpar@399
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 *
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 * This software is provided "AS IS" with no warranty of any kind,
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 * express or implied, and with no claim as to its suitability for any
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 * purpose.
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 *
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 */
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#ifndef LEMON_CIRCULATION_H
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#define LEMON_CIRCULATION_H
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#include <lemon/tolerance.h>
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#include <lemon/elevator.h>
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///\ingroup max_flow
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///\file
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///\brief Push-relabel algorithm for finding a feasible circulation.
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///
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namespace lemon {
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  /// \brief Default traits class of Circulation class.
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  ///
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  /// Default traits class of Circulation class.
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  /// \tparam _Diraph Digraph type.
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  /// \tparam _LCapMap Lower bound capacity map type.
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  /// \tparam _UCapMap Upper bound capacity map type.
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  /// \tparam _DeltaMap Delta map type.
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  template <typename _Diraph, typename _LCapMap,
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            typename _UCapMap, typename _DeltaMap>
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  struct CirculationDefaultTraits {
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    /// \brief The type of the digraph the algorithm runs on.
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    typedef _Diraph Digraph;
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    /// \brief The type of the map that stores the circulation lower
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    /// bound.
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    ///
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    /// The type of the map that stores the circulation lower bound.
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    /// It must meet the \ref concepts::ReadMap "ReadMap" concept.
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    typedef _LCapMap LCapMap;
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    /// \brief The type of the map that stores the circulation upper
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    /// bound.
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    ///
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    /// The type of the map that stores the circulation upper bound.
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    /// It must meet the \ref concepts::ReadMap "ReadMap" concept.
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    typedef _UCapMap UCapMap;
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    /// \brief The type of the map that stores the lower bound for
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    /// the supply of the nodes.
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    ///
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    /// The type of the map that stores the lower bound for the supply
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    /// of the nodes. It must meet the \ref concepts::ReadMap "ReadMap"
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    /// concept.
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    typedef _DeltaMap DeltaMap;
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    /// \brief The type of the flow values.
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    typedef typename DeltaMap::Value Value;
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    /// \brief The type of the map that stores the flow values.
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    ///
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    /// The type of the map that stores the flow values.
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    /// It must meet the \ref concepts::ReadWriteMap "ReadWriteMap" concept.
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    typedef typename Digraph::template ArcMap<Value> FlowMap;
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    /// \brief Instantiates a FlowMap.
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    ///
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    /// This function instantiates a \ref FlowMap.
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    /// \param digraph The digraph, to which we would like to define
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    /// the flow map.
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    static FlowMap* createFlowMap(const Digraph& digraph) {
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      return new FlowMap(digraph);
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    }
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    /// \brief The elevator type used by the algorithm.
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    ///
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    /// The elevator type used by the algorithm.
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    ///
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    /// \sa Elevator
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    /// \sa LinkedElevator
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    typedef lemon::Elevator<Digraph, typename Digraph::Node> Elevator;
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    /// \brief Instantiates an Elevator.
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alpar@399
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    ///
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    /// This function instantiates an \ref Elevator.
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    /// \param digraph The digraph, to which we would like to define
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    /// the elevator.
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    /// \param max_level The maximum level of the elevator.
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    static Elevator* createElevator(const Digraph& digraph, int max_level) {
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      return new Elevator(digraph, max_level);
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    }
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    /// \brief The tolerance used by the algorithm
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alpar@399
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    ///
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    /// The tolerance used by the algorithm to handle inexact computation.
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alpar@399
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    typedef lemon::Tolerance<Value> Tolerance;
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  };
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kpeter@402
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  /**
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     \brief Push-relabel algorithm for the network circulation problem.
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     \ingroup max_flow
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kpeter@402
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     This class implements a push-relabel algorithm for the network
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kpeter@402
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     circulation problem.
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kpeter@402
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     It is to find a feasible circulation when lower and upper bounds
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     are given for the flow values on the arcs and lower bounds
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     are given for the supply values of the nodes.
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     The exact formulation of this problem is the following.
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kpeter@402
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     Let \f$G=(V,A)\f$ be a digraph,
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kpeter@402
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     \f$lower, upper: A\rightarrow\mathbf{R}^+_0\f$,
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     \f$delta: V\rightarrow\mathbf{R}\f$. Find a feasible circulation
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     \f$f: A\rightarrow\mathbf{R}^+_0\f$ so that
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     \f[ \sum_{a\in\delta_{out}(v)} f(a) - \sum_{a\in\delta_{in}(v)} f(a)
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     \geq delta(v) \quad \forall v\in V, \f]
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kpeter@402
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     \f[ lower(a)\leq f(a) \leq upper(a) \quad \forall a\in A. \f]
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kpeter@402
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     \note \f$delta(v)\f$ specifies a lower bound for the supply of node
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     \f$v\f$. It can be either positive or negative, however note that
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     \f$\sum_{v\in V}delta(v)\f$ should be zero or negative in order to
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     have a feasible solution.
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kpeter@402
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kpeter@402
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     \note A special case of this problem is when
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     \f$\sum_{v\in V}delta(v) = 0\f$. Then the supply of each node \f$v\f$
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     will be \e equal \e to \f$delta(v)\f$, if a circulation can be found.
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kpeter@402
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     Thus a feasible solution for the
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kpeter@402
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     \ref min_cost_flow "minimum cost flow" problem can be calculated
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kpeter@402
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     in this way.
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kpeter@402
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     \tparam _Digraph The type of the digraph the algorithm runs on.
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kpeter@402
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     \tparam _LCapMap The type of the lower bound capacity map. The default
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kpeter@402
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     map type is \ref concepts::Digraph::ArcMap "_Digraph::ArcMap<int>".
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kpeter@402
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     \tparam _UCapMap The type of the upper bound capacity map. The default
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kpeter@402
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     map type is \c _LCapMap.
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kpeter@402
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     \tparam _DeltaMap The type of the map that stores the lower bound
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kpeter@402
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     for the supply of the nodes. The default map type is
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     \c _Digraph::ArcMap<_UCapMap::Value>.
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  */
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kpeter@402
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#ifdef DOXYGEN
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template< typename _Digraph,
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kpeter@402
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          typename _LCapMap,
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kpeter@402
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          typename _UCapMap,
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kpeter@402
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          typename _DeltaMap,
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kpeter@402
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          typename _Traits >
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kpeter@402
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#else
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template< typename _Digraph,
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kpeter@402
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          typename _LCapMap = typename _Digraph::template ArcMap<int>,
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kpeter@402
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          typename _UCapMap = _LCapMap,
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kpeter@402
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          typename _DeltaMap = typename _Digraph::
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kpeter@402
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                               template NodeMap<typename _UCapMap::Value>,
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          typename _Traits=CirculationDefaultTraits<_Digraph, _LCapMap,
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kpeter@402
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                                                    _UCapMap, _DeltaMap> >
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kpeter@402
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#endif
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alpar@399
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  class Circulation {
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kpeter@402
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  public:
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alpar@399
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kpeter@402
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    ///The \ref CirculationDefaultTraits "traits class" of the algorithm.
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alpar@399
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    typedef _Traits Traits;
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kpeter@402
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    ///The type of the digraph the algorithm runs on.
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alpar@399
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    typedef typename Traits::Digraph Digraph;
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kpeter@402
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    ///The type of the flow values.
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alpar@399
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    typedef typename Traits::Value Value;
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alpar@399
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kpeter@402
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    /// The type of the lower bound capacity map.
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alpar@399
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    typedef typename Traits::LCapMap LCapMap;
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kpeter@402
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    /// The type of the upper bound capacity map.
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    typedef typename Traits::UCapMap UCapMap;
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kpeter@402
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    /// \brief The type of the map that stores the lower bound for
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kpeter@402
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    /// the supply of the nodes.
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    typedef typename Traits::DeltaMap DeltaMap;
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kpeter@402
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    ///The type of the flow map.
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    typedef typename Traits::FlowMap FlowMap;
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kpeter@402
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    ///The type of the elevator.
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    typedef typename Traits::Elevator Elevator;
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kpeter@402
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    ///The type of the tolerance.
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alpar@399
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    typedef typename Traits::Tolerance Tolerance;
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alpar@399
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kpeter@402
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  private:
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kpeter@402
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kpeter@402
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    TEMPLATE_DIGRAPH_TYPEDEFS(Digraph);
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alpar@399
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alpar@399
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    const Digraph &_g;
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alpar@399
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    int _node_num;
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alpar@399
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alpar@399
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    const LCapMap *_lo;
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    const UCapMap *_up;
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    const DeltaMap *_delta;
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alpar@399
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alpar@399
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    FlowMap *_flow;
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alpar@399
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    bool _local_flow;
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alpar@399
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alpar@399
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    Elevator* _level;
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alpar@399
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    bool _local_level;
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alpar@399
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   205  | 
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kpeter@402
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    typedef typename Digraph::template NodeMap<Value> ExcessMap;
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    ExcessMap* _excess;
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alpar@399
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   208  | 
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alpar@399
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    Tolerance _tol;
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alpar@399
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    int _el;
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alpar@399
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alpar@399
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  public:
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alpar@399
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alpar@399
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    typedef Circulation Create;
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alpar@399
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kpeter@402
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    ///\name Named Template Parameters
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alpar@399
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   217  | 
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alpar@399
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    ///@{
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alpar@399
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   219  | 
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alpar@399
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   220  | 
    template <typename _FlowMap>
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alpar@401
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   221  | 
    struct SetFlowMapTraits : public Traits {
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alpar@399
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      typedef _FlowMap FlowMap;
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alpar@399
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   223  | 
      static FlowMap *createFlowMap(const Digraph&) {
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alpar@399
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        LEMON_ASSERT(false, "FlowMap is not initialized");
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alpar@399
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        return 0; // ignore warnings
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alpar@399
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   226  | 
      }
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alpar@399
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   227  | 
    };
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alpar@399
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   228  | 
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alpar@399
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   229  | 
    /// \brief \ref named-templ-param "Named parameter" for setting
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alpar@399
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   230  | 
    /// FlowMap type
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alpar@399
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   231  | 
    ///
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alpar@399
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   232  | 
    /// \ref named-templ-param "Named parameter" for setting FlowMap
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kpeter@402
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   233  | 
    /// type.
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alpar@399
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   234  | 
    template <typename _FlowMap>
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alpar@401
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   235  | 
    struct SetFlowMap
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alpar@399
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   236  | 
      : public Circulation<Digraph, LCapMap, UCapMap, DeltaMap,
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alpar@401
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   237  | 
                           SetFlowMapTraits<_FlowMap> > {
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alpar@399
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   238  | 
      typedef Circulation<Digraph, LCapMap, UCapMap, DeltaMap,
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alpar@401
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   239  | 
                          SetFlowMapTraits<_FlowMap> > Create;
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alpar@399
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   240  | 
    };
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alpar@399
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   241  | 
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alpar@399
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   242  | 
    template <typename _Elevator>
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alpar@401
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   243  | 
    struct SetElevatorTraits : public Traits {
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alpar@399
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   244  | 
      typedef _Elevator Elevator;
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alpar@399
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   245  | 
      static Elevator *createElevator(const Digraph&, int) {
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alpar@399
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   246  | 
        LEMON_ASSERT(false, "Elevator is not initialized");
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alpar@399
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   247  | 
        return 0; // ignore warnings
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alpar@399
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   248  | 
      }
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alpar@399
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   249  | 
    };
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alpar@399
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   250  | 
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alpar@399
 | 
   251  | 
    /// \brief \ref named-templ-param "Named parameter" for setting
  | 
| 
alpar@399
 | 
   252  | 
    /// Elevator type
  | 
| 
alpar@399
 | 
   253  | 
    ///
  | 
| 
alpar@399
 | 
   254  | 
    /// \ref named-templ-param "Named parameter" for setting Elevator
  | 
| 
kpeter@402
 | 
   255  | 
    /// type. If this named parameter is used, then an external
  | 
| 
kpeter@402
 | 
   256  | 
    /// elevator object must be passed to the algorithm using the
  | 
| 
kpeter@402
 | 
   257  | 
    /// \ref elevator(Elevator&) "elevator()" function before calling
  | 
| 
kpeter@402
 | 
   258  | 
    /// \ref run() or \ref init().
  | 
| 
kpeter@402
 | 
   259  | 
    /// \sa SetStandardElevator
  | 
| 
alpar@399
 | 
   260  | 
    template <typename _Elevator>
  | 
| 
alpar@401
 | 
   261  | 
    struct SetElevator
  | 
| 
alpar@399
 | 
   262  | 
      : public Circulation<Digraph, LCapMap, UCapMap, DeltaMap,
  | 
| 
alpar@401
 | 
   263  | 
                           SetElevatorTraits<_Elevator> > {
 | 
| 
alpar@399
 | 
   264  | 
      typedef Circulation<Digraph, LCapMap, UCapMap, DeltaMap,
  | 
| 
alpar@401
 | 
   265  | 
                          SetElevatorTraits<_Elevator> > Create;
  | 
| 
alpar@399
 | 
   266  | 
    };
  | 
| 
alpar@399
 | 
   267  | 
  | 
| 
alpar@399
 | 
   268  | 
    template <typename _Elevator>
  | 
| 
alpar@401
 | 
   269  | 
    struct SetStandardElevatorTraits : public Traits {
 | 
| 
alpar@399
 | 
   270  | 
      typedef _Elevator Elevator;
  | 
| 
alpar@399
 | 
   271  | 
      static Elevator *createElevator(const Digraph& digraph, int max_level) {
 | 
| 
alpar@399
 | 
   272  | 
        return new Elevator(digraph, max_level);
  | 
| 
alpar@399
 | 
   273  | 
      }
  | 
| 
alpar@399
 | 
   274  | 
    };
  | 
| 
alpar@399
 | 
   275  | 
  | 
| 
alpar@399
 | 
   276  | 
    /// \brief \ref named-templ-param "Named parameter" for setting
  | 
| 
kpeter@402
 | 
   277  | 
    /// Elevator type with automatic allocation
  | 
| 
alpar@399
 | 
   278  | 
    ///
  | 
| 
alpar@399
 | 
   279  | 
    /// \ref named-templ-param "Named parameter" for setting Elevator
  | 
| 
kpeter@402
 | 
   280  | 
    /// type with automatic allocation.
  | 
| 
kpeter@402
 | 
   281  | 
    /// The Elevator should have standard constructor interface to be
  | 
| 
kpeter@402
 | 
   282  | 
    /// able to automatically created by the algorithm (i.e. the
  | 
| 
kpeter@402
 | 
   283  | 
    /// digraph and the maximum level should be passed to it).
  | 
| 
kpeter@402
 | 
   284  | 
    /// However an external elevator object could also be passed to the
  | 
| 
kpeter@402
 | 
   285  | 
    /// algorithm with the \ref elevator(Elevator&) "elevator()" function
  | 
| 
kpeter@402
 | 
   286  | 
    /// before calling \ref run() or \ref init().
  | 
| 
kpeter@402
 | 
   287  | 
    /// \sa SetElevator
  | 
| 
alpar@399
 | 
   288  | 
    template <typename _Elevator>
  | 
| 
alpar@401
 | 
   289  | 
    struct SetStandardElevator
  | 
| 
alpar@399
 | 
   290  | 
      : public Circulation<Digraph, LCapMap, UCapMap, DeltaMap,
  | 
| 
alpar@401
 | 
   291  | 
                       SetStandardElevatorTraits<_Elevator> > {
 | 
| 
alpar@399
 | 
   292  | 
      typedef Circulation<Digraph, LCapMap, UCapMap, DeltaMap,
  | 
| 
alpar@401
 | 
   293  | 
                      SetStandardElevatorTraits<_Elevator> > Create;
  | 
| 
alpar@399
 | 
   294  | 
    };
  | 
| 
alpar@399
 | 
   295  | 
  | 
| 
alpar@399
 | 
   296  | 
    /// @}
  | 
| 
alpar@399
 | 
   297  | 
  | 
| 
alpar@399
 | 
   298  | 
  protected:
  | 
| 
alpar@399
 | 
   299  | 
  | 
| 
alpar@399
 | 
   300  | 
    Circulation() {}
 | 
| 
alpar@399
 | 
   301  | 
  | 
| 
alpar@399
 | 
   302  | 
  public:
  | 
| 
alpar@399
 | 
   303  | 
  | 
| 
alpar@399
 | 
   304  | 
    /// The constructor of the class.
  | 
| 
alpar@399
 | 
   305  | 
  | 
| 
alpar@399
 | 
   306  | 
    /// The constructor of the class.
  | 
| 
alpar@399
 | 
   307  | 
    /// \param g The digraph the algorithm runs on.
  | 
| 
alpar@399
 | 
   308  | 
    /// \param lo The lower bound capacity of the arcs.
  | 
| 
alpar@399
 | 
   309  | 
    /// \param up The upper bound capacity of the arcs.
  | 
| 
kpeter@402
 | 
   310  | 
    /// \param delta The lower bound for the supply of the nodes.
  | 
| 
alpar@399
 | 
   311  | 
    Circulation(const Digraph &g,const LCapMap &lo,
  | 
| 
alpar@399
 | 
   312  | 
                const UCapMap &up,const DeltaMap &delta)
  | 
| 
alpar@399
 | 
   313  | 
      : _g(g), _node_num(),
  | 
| 
alpar@399
 | 
   314  | 
        _lo(&lo),_up(&up),_delta(&delta),_flow(0),_local_flow(false),
  | 
| 
alpar@399
 | 
   315  | 
        _level(0), _local_level(false), _excess(0), _el() {}
 | 
| 
alpar@399
 | 
   316  | 
  | 
| 
kpeter@402
 | 
   317  | 
    /// Destructor.
  | 
| 
alpar@399
 | 
   318  | 
    ~Circulation() {
 | 
| 
alpar@399
 | 
   319  | 
      destroyStructures();
  | 
| 
alpar@399
 | 
   320  | 
    }
  | 
| 
alpar@399
 | 
   321  | 
  | 
| 
kpeter@402
 | 
   322  | 
  | 
| 
alpar@399
 | 
   323  | 
  private:
  | 
| 
alpar@399
 | 
   324  | 
  | 
| 
alpar@399
 | 
   325  | 
    void createStructures() {
 | 
| 
alpar@399
 | 
   326  | 
      _node_num = _el = countNodes(_g);
  | 
| 
alpar@399
 | 
   327  | 
  | 
| 
alpar@399
 | 
   328  | 
      if (!_flow) {
 | 
| 
alpar@399
 | 
   329  | 
        _flow = Traits::createFlowMap(_g);
  | 
| 
alpar@399
 | 
   330  | 
        _local_flow = true;
  | 
| 
alpar@399
 | 
   331  | 
      }
  | 
| 
alpar@399
 | 
   332  | 
      if (!_level) {
 | 
| 
alpar@399
 | 
   333  | 
        _level = Traits::createElevator(_g, _node_num);
  | 
| 
alpar@399
 | 
   334  | 
        _local_level = true;
  | 
| 
alpar@399
 | 
   335  | 
      }
  | 
| 
alpar@399
 | 
   336  | 
      if (!_excess) {
 | 
| 
alpar@399
 | 
   337  | 
        _excess = new ExcessMap(_g);
  | 
| 
alpar@399
 | 
   338  | 
      }
  | 
| 
alpar@399
 | 
   339  | 
    }
  | 
| 
alpar@399
 | 
   340  | 
  | 
| 
alpar@399
 | 
   341  | 
    void destroyStructures() {
 | 
| 
alpar@399
 | 
   342  | 
      if (_local_flow) {
 | 
| 
alpar@399
 | 
   343  | 
        delete _flow;
  | 
| 
alpar@399
 | 
   344  | 
      }
  | 
| 
alpar@399
 | 
   345  | 
      if (_local_level) {
 | 
| 
alpar@399
 | 
   346  | 
        delete _level;
  | 
| 
alpar@399
 | 
   347  | 
      }
  | 
| 
alpar@399
 | 
   348  | 
      if (_excess) {
 | 
| 
alpar@399
 | 
   349  | 
        delete _excess;
  | 
| 
alpar@399
 | 
   350  | 
      }
  | 
| 
alpar@399
 | 
   351  | 
    }
  | 
| 
alpar@399
 | 
   352  | 
  | 
| 
alpar@399
 | 
   353  | 
  public:
  | 
| 
alpar@399
 | 
   354  | 
  | 
| 
alpar@399
 | 
   355  | 
    /// Sets the lower bound capacity map.
  | 
| 
alpar@399
 | 
   356  | 
  | 
| 
alpar@399
 | 
   357  | 
    /// Sets the lower bound capacity map.
  | 
| 
kpeter@402
 | 
   358  | 
    /// \return <tt>(*this)</tt>
  | 
| 
alpar@399
 | 
   359  | 
    Circulation& lowerCapMap(const LCapMap& map) {
 | 
| 
alpar@399
 | 
   360  | 
      _lo = ↦
  | 
| 
alpar@399
 | 
   361  | 
      return *this;
  | 
| 
alpar@399
 | 
   362  | 
    }
  | 
| 
alpar@399
 | 
   363  | 
  | 
| 
alpar@399
 | 
   364  | 
    /// Sets the upper bound capacity map.
  | 
| 
alpar@399
 | 
   365  | 
  | 
| 
alpar@399
 | 
   366  | 
    /// Sets the upper bound capacity map.
  | 
| 
kpeter@402
 | 
   367  | 
    /// \return <tt>(*this)</tt>
  | 
| 
alpar@399
 | 
   368  | 
    Circulation& upperCapMap(const LCapMap& map) {
 | 
| 
alpar@399
 | 
   369  | 
      _up = ↦
  | 
| 
alpar@399
 | 
   370  | 
      return *this;
  | 
| 
alpar@399
 | 
   371  | 
    }
  | 
| 
alpar@399
 | 
   372  | 
  | 
| 
kpeter@402
 | 
   373  | 
    /// Sets the lower bound map for the supply of the nodes.
  | 
| 
alpar@399
 | 
   374  | 
  | 
| 
kpeter@402
 | 
   375  | 
    /// Sets the lower bound map for the supply of the nodes.
  | 
| 
kpeter@402
 | 
   376  | 
    /// \return <tt>(*this)</tt>
  | 
| 
alpar@399
 | 
   377  | 
    Circulation& deltaMap(const DeltaMap& map) {
 | 
| 
alpar@399
 | 
   378  | 
      _delta = ↦
  | 
| 
alpar@399
 | 
   379  | 
      return *this;
  | 
| 
alpar@399
 | 
   380  | 
    }
  | 
| 
alpar@399
 | 
   381  | 
  | 
| 
kpeter@402
 | 
   382  | 
    /// \brief Sets the flow map.
  | 
| 
kpeter@402
 | 
   383  | 
    ///
  | 
| 
alpar@399
 | 
   384  | 
    /// Sets the flow map.
  | 
| 
kpeter@402
 | 
   385  | 
    /// If you don't use this function before calling \ref run() or
  | 
| 
kpeter@402
 | 
   386  | 
    /// \ref init(), an instance will be allocated automatically.
  | 
| 
kpeter@402
 | 
   387  | 
    /// The destructor deallocates this automatically allocated map,
  | 
| 
kpeter@402
 | 
   388  | 
    /// of course.
  | 
| 
kpeter@402
 | 
   389  | 
    /// \return <tt>(*this)</tt>
  | 
| 
alpar@399
 | 
   390  | 
    Circulation& flowMap(FlowMap& map) {
 | 
| 
alpar@399
 | 
   391  | 
      if (_local_flow) {
 | 
| 
alpar@399
 | 
   392  | 
        delete _flow;
  | 
| 
alpar@399
 | 
   393  | 
        _local_flow = false;
  | 
| 
alpar@399
 | 
   394  | 
      }
  | 
| 
alpar@399
 | 
   395  | 
      _flow = ↦
  | 
| 
alpar@399
 | 
   396  | 
      return *this;
  | 
| 
alpar@399
 | 
   397  | 
    }
  | 
| 
alpar@399
 | 
   398  | 
  | 
| 
kpeter@402
 | 
   399  | 
    /// \brief Sets the elevator used by algorithm.
  | 
| 
alpar@399
 | 
   400  | 
    ///
  | 
| 
kpeter@402
 | 
   401  | 
    /// Sets the elevator used by algorithm.
  | 
| 
kpeter@402
 | 
   402  | 
    /// If you don't use this function before calling \ref run() or
  | 
| 
kpeter@402
 | 
   403  | 
    /// \ref init(), an instance will be allocated automatically.
  | 
| 
kpeter@402
 | 
   404  | 
    /// The destructor deallocates this automatically allocated elevator,
  | 
| 
kpeter@402
 | 
   405  | 
    /// of course.
  | 
| 
kpeter@402
 | 
   406  | 
    /// \return <tt>(*this)</tt>
  | 
| 
alpar@399
 | 
   407  | 
    Circulation& elevator(Elevator& elevator) {
 | 
| 
alpar@399
 | 
   408  | 
      if (_local_level) {
 | 
| 
alpar@399
 | 
   409  | 
        delete _level;
  | 
| 
alpar@399
 | 
   410  | 
        _local_level = false;
  | 
| 
alpar@399
 | 
   411  | 
      }
  | 
| 
alpar@399
 | 
   412  | 
      _level = &elevator;
  | 
| 
alpar@399
 | 
   413  | 
      return *this;
  | 
| 
alpar@399
 | 
   414  | 
    }
  | 
| 
alpar@399
 | 
   415  | 
  | 
| 
kpeter@402
 | 
   416  | 
    /// \brief Returns a const reference to the elevator.
  | 
| 
alpar@399
 | 
   417  | 
    ///
  | 
| 
kpeter@402
 | 
   418  | 
    /// Returns a const reference to the elevator.
  | 
| 
kpeter@402
 | 
   419  | 
    ///
  | 
| 
kpeter@402
 | 
   420  | 
    /// \pre Either \ref run() or \ref init() must be called before
  | 
| 
kpeter@402
 | 
   421  | 
    /// using this function.
  | 
| 
alpar@399
 | 
   422  | 
    const Elevator& elevator() {
 | 
| 
alpar@399
 | 
   423  | 
      return *_level;
  | 
| 
alpar@399
 | 
   424  | 
    }
  | 
| 
alpar@399
 | 
   425  | 
  | 
| 
kpeter@402
 | 
   426  | 
    /// \brief Sets the tolerance used by algorithm.
  | 
| 
kpeter@402
 | 
   427  | 
    ///
  | 
| 
alpar@399
 | 
   428  | 
    /// Sets the tolerance used by algorithm.
  | 
| 
alpar@399
 | 
   429  | 
    Circulation& tolerance(const Tolerance& tolerance) const {
 | 
| 
alpar@399
 | 
   430  | 
      _tol = tolerance;
  | 
| 
alpar@399
 | 
   431  | 
      return *this;
  | 
| 
alpar@399
 | 
   432  | 
    }
  | 
| 
alpar@399
 | 
   433  | 
  | 
| 
kpeter@402
 | 
   434  | 
    /// \brief Returns a const reference to the tolerance.
  | 
| 
alpar@399
 | 
   435  | 
    ///
  | 
| 
kpeter@402
 | 
   436  | 
    /// Returns a const reference to the tolerance.
  | 
| 
alpar@399
 | 
   437  | 
    const Tolerance& tolerance() const {
 | 
| 
alpar@399
 | 
   438  | 
      return tolerance;
  | 
| 
alpar@399
 | 
   439  | 
    }
  | 
| 
alpar@399
 | 
   440  | 
  | 
| 
kpeter@402
 | 
   441  | 
    /// \name Execution Control
  | 
| 
kpeter@402
 | 
   442  | 
    /// The simplest way to execute the algorithm is to call \ref run().\n
  | 
| 
kpeter@402
 | 
   443  | 
    /// If you need more control on the initial solution or the execution,
  | 
| 
kpeter@402
 | 
   444  | 
    /// first you have to call one of the \ref init() functions, then
  | 
| 
kpeter@402
 | 
   445  | 
    /// the \ref start() function.
  | 
| 
alpar@399
 | 
   446  | 
  | 
| 
alpar@399
 | 
   447  | 
    ///@{
 | 
| 
alpar@399
 | 
   448  | 
  | 
| 
alpar@399
 | 
   449  | 
    /// Initializes the internal data structures.
  | 
| 
alpar@399
 | 
   450  | 
  | 
| 
kpeter@402
 | 
   451  | 
    /// Initializes the internal data structures and sets all flow values
  | 
| 
kpeter@402
 | 
   452  | 
    /// to the lower bound.
  | 
| 
alpar@399
 | 
   453  | 
    void init()
  | 
| 
alpar@399
 | 
   454  | 
    {
 | 
| 
alpar@399
 | 
   455  | 
      createStructures();
  | 
| 
alpar@399
 | 
   456  | 
  | 
| 
alpar@399
 | 
   457  | 
      for(NodeIt n(_g);n!=INVALID;++n) {
 | 
| 
alpar@399
 | 
   458  | 
        _excess->set(n, (*_delta)[n]);
  | 
| 
alpar@399
 | 
   459  | 
      }
  | 
| 
alpar@399
 | 
   460  | 
  | 
| 
alpar@399
 | 
   461  | 
      for (ArcIt e(_g);e!=INVALID;++e) {
 | 
| 
alpar@399
 | 
   462  | 
        _flow->set(e, (*_lo)[e]);
  | 
| 
alpar@399
 | 
   463  | 
        _excess->set(_g.target(e), (*_excess)[_g.target(e)] + (*_flow)[e]);
  | 
| 
alpar@399
 | 
   464  | 
        _excess->set(_g.source(e), (*_excess)[_g.source(e)] - (*_flow)[e]);
  | 
| 
alpar@399
 | 
   465  | 
      }
  | 
| 
alpar@399
 | 
   466  | 
  | 
| 
alpar@399
 | 
   467  | 
      // global relabeling tested, but in general case it provides
  | 
| 
alpar@399
 | 
   468  | 
      // worse performance for random digraphs
  | 
| 
alpar@399
 | 
   469  | 
      _level->initStart();
  | 
| 
alpar@399
 | 
   470  | 
      for(NodeIt n(_g);n!=INVALID;++n)
  | 
| 
alpar@399
 | 
   471  | 
        _level->initAddItem(n);
  | 
| 
alpar@399
 | 
   472  | 
      _level->initFinish();
  | 
| 
alpar@399
 | 
   473  | 
      for(NodeIt n(_g);n!=INVALID;++n)
  | 
| 
alpar@399
 | 
   474  | 
        if(_tol.positive((*_excess)[n]))
  | 
| 
alpar@399
 | 
   475  | 
          _level->activate(n);
  | 
| 
alpar@399
 | 
   476  | 
    }
  | 
| 
alpar@399
 | 
   477  | 
  | 
| 
kpeter@402
 | 
   478  | 
    /// Initializes the internal data structures using a greedy approach.
  | 
| 
alpar@399
 | 
   479  | 
  | 
| 
kpeter@402
 | 
   480  | 
    /// Initializes the internal data structures using a greedy approach
  | 
| 
kpeter@402
 | 
   481  | 
    /// to construct the initial solution.
  | 
| 
alpar@399
 | 
   482  | 
    void greedyInit()
  | 
| 
alpar@399
 | 
   483  | 
    {
 | 
| 
alpar@399
 | 
   484  | 
      createStructures();
  | 
| 
alpar@399
 | 
   485  | 
  | 
| 
alpar@399
 | 
   486  | 
      for(NodeIt n(_g);n!=INVALID;++n) {
 | 
| 
alpar@399
 | 
   487  | 
        _excess->set(n, (*_delta)[n]);
  | 
| 
alpar@399
 | 
   488  | 
      }
  | 
| 
alpar@399
 | 
   489  | 
  | 
| 
alpar@399
 | 
   490  | 
      for (ArcIt e(_g);e!=INVALID;++e) {
 | 
| 
alpar@399
 | 
   491  | 
        if (!_tol.positive((*_excess)[_g.target(e)] + (*_up)[e])) {
 | 
| 
alpar@399
 | 
   492  | 
          _flow->set(e, (*_up)[e]);
  | 
| 
alpar@399
 | 
   493  | 
          _excess->set(_g.target(e), (*_excess)[_g.target(e)] + (*_up)[e]);
  | 
| 
alpar@399
 | 
   494  | 
          _excess->set(_g.source(e), (*_excess)[_g.source(e)] - (*_up)[e]);
  | 
| 
alpar@399
 | 
   495  | 
        } else if (_tol.positive((*_excess)[_g.target(e)] + (*_lo)[e])) {
 | 
| 
alpar@399
 | 
   496  | 
          _flow->set(e, (*_lo)[e]);
  | 
| 
alpar@399
 | 
   497  | 
          _excess->set(_g.target(e), (*_excess)[_g.target(e)] + (*_lo)[e]);
  | 
| 
alpar@399
 | 
   498  | 
          _excess->set(_g.source(e), (*_excess)[_g.source(e)] - (*_lo)[e]);
  | 
| 
alpar@399
 | 
   499  | 
        } else {
 | 
| 
alpar@399
 | 
   500  | 
          Value fc = -(*_excess)[_g.target(e)];
  | 
| 
alpar@399
 | 
   501  | 
          _flow->set(e, fc);
  | 
| 
alpar@399
 | 
   502  | 
          _excess->set(_g.target(e), 0);
  | 
| 
alpar@399
 | 
   503  | 
          _excess->set(_g.source(e), (*_excess)[_g.source(e)] - fc);
  | 
| 
alpar@399
 | 
   504  | 
        }
  | 
| 
alpar@399
 | 
   505  | 
      }
  | 
| 
alpar@399
 | 
   506  | 
  | 
| 
alpar@399
 | 
   507  | 
      _level->initStart();
  | 
| 
alpar@399
 | 
   508  | 
      for(NodeIt n(_g);n!=INVALID;++n)
  | 
| 
alpar@399
 | 
   509  | 
        _level->initAddItem(n);
  | 
| 
alpar@399
 | 
   510  | 
      _level->initFinish();
  | 
| 
alpar@399
 | 
   511  | 
      for(NodeIt n(_g);n!=INVALID;++n)
  | 
| 
alpar@399
 | 
   512  | 
        if(_tol.positive((*_excess)[n]))
  | 
| 
alpar@399
 | 
   513  | 
          _level->activate(n);
  | 
| 
alpar@399
 | 
   514  | 
    }
  | 
| 
alpar@399
 | 
   515  | 
  | 
| 
kpeter@402
 | 
   516  | 
    ///Executes the algorithm
  | 
| 
alpar@399
 | 
   517  | 
  | 
| 
kpeter@402
 | 
   518  | 
    ///This function executes the algorithm.
  | 
| 
kpeter@402
 | 
   519  | 
    ///
  | 
| 
kpeter@402
 | 
   520  | 
    ///\return \c true if a feasible circulation is found.
  | 
| 
alpar@399
 | 
   521  | 
    ///
  | 
| 
alpar@399
 | 
   522  | 
    ///\sa barrier()
  | 
| 
kpeter@402
 | 
   523  | 
    ///\sa barrierMap()
  | 
| 
alpar@399
 | 
   524  | 
    bool start()
  | 
| 
alpar@399
 | 
   525  | 
    {
 | 
| 
alpar@399
 | 
   526  | 
  | 
| 
alpar@399
 | 
   527  | 
      Node act;
  | 
| 
alpar@399
 | 
   528  | 
      Node bact=INVALID;
  | 
| 
alpar@399
 | 
   529  | 
      Node last_activated=INVALID;
  | 
| 
alpar@399
 | 
   530  | 
      while((act=_level->highestActive())!=INVALID) {
 | 
| 
alpar@399
 | 
   531  | 
        int actlevel=(*_level)[act];
  | 
| 
alpar@399
 | 
   532  | 
        int mlevel=_node_num;
  | 
| 
alpar@399
 | 
   533  | 
        Value exc=(*_excess)[act];
  | 
| 
alpar@399
 | 
   534  | 
  | 
| 
alpar@399
 | 
   535  | 
        for(OutArcIt e(_g,act);e!=INVALID; ++e) {
 | 
| 
alpar@399
 | 
   536  | 
          Node v = _g.target(e);
  | 
| 
alpar@399
 | 
   537  | 
          Value fc=(*_up)[e]-(*_flow)[e];
  | 
| 
alpar@399
 | 
   538  | 
          if(!_tol.positive(fc)) continue;
  | 
| 
alpar@399
 | 
   539  | 
          if((*_level)[v]<actlevel) {
 | 
| 
alpar@399
 | 
   540  | 
            if(!_tol.less(fc, exc)) {
 | 
| 
alpar@399
 | 
   541  | 
              _flow->set(e, (*_flow)[e] + exc);
  | 
| 
alpar@399
 | 
   542  | 
              _excess->set(v, (*_excess)[v] + exc);
  | 
| 
alpar@399
 | 
   543  | 
              if(!_level->active(v) && _tol.positive((*_excess)[v]))
  | 
| 
alpar@399
 | 
   544  | 
                _level->activate(v);
  | 
| 
alpar@399
 | 
   545  | 
              _excess->set(act,0);
  | 
| 
alpar@399
 | 
   546  | 
              _level->deactivate(act);
  | 
| 
alpar@399
 | 
   547  | 
              goto next_l;
  | 
| 
alpar@399
 | 
   548  | 
            }
  | 
| 
alpar@399
 | 
   549  | 
            else {
 | 
| 
alpar@399
 | 
   550  | 
              _flow->set(e, (*_up)[e]);
  | 
| 
alpar@399
 | 
   551  | 
              _excess->set(v, (*_excess)[v] + fc);
  | 
| 
alpar@399
 | 
   552  | 
              if(!_level->active(v) && _tol.positive((*_excess)[v]))
  | 
| 
alpar@399
 | 
   553  | 
                _level->activate(v);
  | 
| 
alpar@399
 | 
   554  | 
              exc-=fc;
  | 
| 
alpar@399
 | 
   555  | 
            }
  | 
| 
alpar@399
 | 
   556  | 
          }
  | 
| 
alpar@399
 | 
   557  | 
          else if((*_level)[v]<mlevel) mlevel=(*_level)[v];
  | 
| 
alpar@399
 | 
   558  | 
        }
  | 
| 
alpar@399
 | 
   559  | 
        for(InArcIt e(_g,act);e!=INVALID; ++e) {
 | 
| 
alpar@399
 | 
   560  | 
          Node v = _g.source(e);
  | 
| 
alpar@399
 | 
   561  | 
          Value fc=(*_flow)[e]-(*_lo)[e];
  | 
| 
alpar@399
 | 
   562  | 
          if(!_tol.positive(fc)) continue;
  | 
| 
alpar@399
 | 
   563  | 
          if((*_level)[v]<actlevel) {
 | 
| 
alpar@399
 | 
   564  | 
            if(!_tol.less(fc, exc)) {
 | 
| 
alpar@399
 | 
   565  | 
              _flow->set(e, (*_flow)[e] - exc);
  | 
| 
alpar@399
 | 
   566  | 
              _excess->set(v, (*_excess)[v] + exc);
  | 
| 
alpar@399
 | 
   567  | 
              if(!_level->active(v) && _tol.positive((*_excess)[v]))
  | 
| 
alpar@399
 | 
   568  | 
                _level->activate(v);
  | 
| 
alpar@399
 | 
   569  | 
              _excess->set(act,0);
  | 
| 
alpar@399
 | 
   570  | 
              _level->deactivate(act);
  | 
| 
alpar@399
 | 
   571  | 
              goto next_l;
  | 
| 
alpar@399
 | 
   572  | 
            }
  | 
| 
alpar@399
 | 
   573  | 
            else {
 | 
| 
alpar@399
 | 
   574  | 
              _flow->set(e, (*_lo)[e]);
  | 
| 
alpar@399
 | 
   575  | 
              _excess->set(v, (*_excess)[v] + fc);
  | 
| 
alpar@399
 | 
   576  | 
              if(!_level->active(v) && _tol.positive((*_excess)[v]))
  | 
| 
alpar@399
 | 
   577  | 
                _level->activate(v);
  | 
| 
alpar@399
 | 
   578  | 
              exc-=fc;
  | 
| 
alpar@399
 | 
   579  | 
            }
  | 
| 
alpar@399
 | 
   580  | 
          }
  | 
| 
alpar@399
 | 
   581  | 
          else if((*_level)[v]<mlevel) mlevel=(*_level)[v];
  | 
| 
alpar@399
 | 
   582  | 
        }
  | 
| 
alpar@399
 | 
   583  | 
  | 
| 
alpar@399
 | 
   584  | 
        _excess->set(act, exc);
  | 
| 
alpar@399
 | 
   585  | 
        if(!_tol.positive(exc)) _level->deactivate(act);
  | 
| 
alpar@399
 | 
   586  | 
        else if(mlevel==_node_num) {
 | 
| 
alpar@399
 | 
   587  | 
          _level->liftHighestActiveToTop();
  | 
| 
alpar@399
 | 
   588  | 
          _el = _node_num;
  | 
| 
alpar@399
 | 
   589  | 
          return false;
  | 
| 
alpar@399
 | 
   590  | 
        }
  | 
| 
alpar@399
 | 
   591  | 
        else {
 | 
| 
alpar@399
 | 
   592  | 
          _level->liftHighestActive(mlevel+1);
  | 
| 
alpar@399
 | 
   593  | 
          if(_level->onLevel(actlevel)==0) {
 | 
| 
alpar@399
 | 
   594  | 
            _el = actlevel;
  | 
| 
alpar@399
 | 
   595  | 
            return false;
  | 
| 
alpar@399
 | 
   596  | 
          }
  | 
| 
alpar@399
 | 
   597  | 
        }
  | 
| 
alpar@399
 | 
   598  | 
      next_l:
  | 
| 
alpar@399
 | 
   599  | 
        ;
  | 
| 
alpar@399
 | 
   600  | 
      }
  | 
| 
alpar@399
 | 
   601  | 
      return true;
  | 
| 
alpar@399
 | 
   602  | 
    }
  | 
| 
alpar@399
 | 
   603  | 
  | 
| 
kpeter@402
 | 
   604  | 
    /// Runs the algorithm.
  | 
| 
alpar@399
 | 
   605  | 
  | 
| 
kpeter@402
 | 
   606  | 
    /// This function runs the algorithm.
  | 
| 
kpeter@402
 | 
   607  | 
    ///
  | 
| 
kpeter@402
 | 
   608  | 
    /// \return \c true if a feasible circulation is found.
  | 
| 
kpeter@402
 | 
   609  | 
    ///
  | 
| 
kpeter@402
 | 
   610  | 
    /// \note Apart from the return value, c.run() is just a shortcut of
  | 
| 
kpeter@402
 | 
   611  | 
    /// the following code.
  | 
| 
alpar@399
 | 
   612  | 
    /// \code
  | 
| 
kpeter@402
 | 
   613  | 
    ///   c.greedyInit();
  | 
| 
kpeter@402
 | 
   614  | 
    ///   c.start();
  | 
| 
alpar@399
 | 
   615  | 
    /// \endcode
  | 
| 
alpar@399
 | 
   616  | 
    bool run() {
 | 
| 
alpar@399
 | 
   617  | 
      greedyInit();
  | 
| 
alpar@399
 | 
   618  | 
      return start();
  | 
| 
alpar@399
 | 
   619  | 
    }
  | 
| 
alpar@399
 | 
   620  | 
  | 
| 
alpar@399
 | 
   621  | 
    /// @}
  | 
| 
alpar@399
 | 
   622  | 
  | 
| 
alpar@399
 | 
   623  | 
    /// \name Query Functions
  | 
| 
kpeter@402
 | 
   624  | 
    /// The results of the circulation algorithm can be obtained using
  | 
| 
kpeter@402
 | 
   625  | 
    /// these functions.\n
  | 
| 
kpeter@402
 | 
   626  | 
    /// Either \ref run() or \ref start() should be called before
  | 
| 
kpeter@402
 | 
   627  | 
    /// using them.
  | 
| 
alpar@399
 | 
   628  | 
  | 
| 
alpar@399
 | 
   629  | 
    ///@{
 | 
| 
alpar@399
 | 
   630  | 
  | 
| 
kpeter@402
 | 
   631  | 
    /// \brief Returns the flow on the given arc.
  | 
| 
kpeter@402
 | 
   632  | 
    ///
  | 
| 
kpeter@402
 | 
   633  | 
    /// Returns the flow on the given arc.
  | 
| 
kpeter@402
 | 
   634  | 
    ///
  | 
| 
kpeter@402
 | 
   635  | 
    /// \pre Either \ref run() or \ref init() must be called before
  | 
| 
kpeter@402
 | 
   636  | 
    /// using this function.
  | 
| 
kpeter@402
 | 
   637  | 
    Value flow(const Arc& arc) const {
 | 
| 
kpeter@402
 | 
   638  | 
      return (*_flow)[arc];
  | 
| 
kpeter@402
 | 
   639  | 
    }
  | 
| 
kpeter@402
 | 
   640  | 
  | 
| 
kpeter@402
 | 
   641  | 
    /// \brief Returns a const reference to the flow map.
  | 
| 
kpeter@402
 | 
   642  | 
    ///
  | 
| 
kpeter@402
 | 
   643  | 
    /// Returns a const reference to the arc map storing the found flow.
  | 
| 
kpeter@402
 | 
   644  | 
    ///
  | 
| 
kpeter@402
 | 
   645  | 
    /// \pre Either \ref run() or \ref init() must be called before
  | 
| 
kpeter@402
 | 
   646  | 
    /// using this function.
  | 
| 
kpeter@402
 | 
   647  | 
    const FlowMap& flowMap() {
 | 
| 
kpeter@402
 | 
   648  | 
      return *_flow;
  | 
| 
kpeter@402
 | 
   649  | 
    }
  | 
| 
kpeter@402
 | 
   650  | 
  | 
| 
alpar@399
 | 
   651  | 
    /**
  | 
| 
kpeter@402
 | 
   652  | 
       \brief Returns \c true if the given node is in a barrier.
  | 
| 
kpeter@402
 | 
   653  | 
  | 
| 
alpar@399
 | 
   654  | 
       Barrier is a set \e B of nodes for which
  | 
| 
kpeter@402
 | 
   655  | 
  | 
| 
kpeter@402
 | 
   656  | 
       \f[ \sum_{a\in\delta_{out}(B)} upper(a) -
 | 
| 
kpeter@402
 | 
   657  | 
           \sum_{a\in\delta_{in}(B)} lower(a) < \sum_{v\in B}delta(v) \f]
 | 
| 
kpeter@402
 | 
   658  | 
  | 
| 
kpeter@402
 | 
   659  | 
       holds. The existence of a set with this property prooves that a
  | 
| 
kpeter@402
 | 
   660  | 
       feasible circualtion cannot exist.
  | 
| 
kpeter@402
 | 
   661  | 
  | 
| 
kpeter@402
 | 
   662  | 
       This function returns \c true if the given node is in the found
  | 
| 
kpeter@402
 | 
   663  | 
       barrier. If a feasible circulation is found, the function
  | 
| 
kpeter@402
 | 
   664  | 
       gives back \c false for every node.
  | 
| 
kpeter@402
 | 
   665  | 
  | 
| 
kpeter@402
 | 
   666  | 
       \pre Either \ref run() or \ref init() must be called before
  | 
| 
kpeter@402
 | 
   667  | 
       using this function.
  | 
| 
kpeter@402
 | 
   668  | 
  | 
| 
kpeter@402
 | 
   669  | 
       \sa barrierMap()
  | 
| 
alpar@399
 | 
   670  | 
       \sa checkBarrier()
  | 
| 
alpar@399
 | 
   671  | 
    */
  | 
| 
kpeter@402
 | 
   672  | 
    bool barrier(const Node& node)
  | 
| 
kpeter@402
 | 
   673  | 
    {
 | 
| 
kpeter@402
 | 
   674  | 
      return (*_level)[node] >= _el;
  | 
| 
kpeter@402
 | 
   675  | 
    }
  | 
| 
kpeter@402
 | 
   676  | 
  | 
| 
kpeter@402
 | 
   677  | 
    /// \brief Gives back a barrier.
  | 
| 
kpeter@402
 | 
   678  | 
    ///
  | 
| 
kpeter@402
 | 
   679  | 
    /// This function sets \c bar to the characteristic vector of the
  | 
| 
kpeter@402
 | 
   680  | 
    /// found barrier. \c bar should be a \ref concepts::WriteMap "writable"
  | 
| 
kpeter@402
 | 
   681  | 
    /// node map with \c bool (or convertible) value type.
  | 
| 
kpeter@402
 | 
   682  | 
    ///
  | 
| 
kpeter@402
 | 
   683  | 
    /// If a feasible circulation is found, the function gives back an
  | 
| 
kpeter@402
 | 
   684  | 
    /// empty set, so \c bar[v] will be \c false for all nodes \c v.
  | 
| 
kpeter@402
 | 
   685  | 
    ///
  | 
| 
kpeter@402
 | 
   686  | 
    /// \note This function calls \ref barrier() for each node,
  | 
| 
kpeter@402
 | 
   687  | 
    /// so it runs in \f$O(n)\f$ time.
  | 
| 
kpeter@402
 | 
   688  | 
    ///
  | 
| 
kpeter@402
 | 
   689  | 
    /// \pre Either \ref run() or \ref init() must be called before
  | 
| 
kpeter@402
 | 
   690  | 
    /// using this function.
  | 
| 
kpeter@402
 | 
   691  | 
    ///
  | 
| 
kpeter@402
 | 
   692  | 
    /// \sa barrier()
  | 
| 
kpeter@402
 | 
   693  | 
    /// \sa checkBarrier()
  | 
| 
kpeter@402
 | 
   694  | 
    template<class BarrierMap>
  | 
| 
kpeter@402
 | 
   695  | 
    void barrierMap(BarrierMap &bar)
  | 
| 
alpar@399
 | 
   696  | 
    {
 | 
| 
alpar@399
 | 
   697  | 
      for(NodeIt n(_g);n!=INVALID;++n)
  | 
| 
alpar@399
 | 
   698  | 
        bar.set(n, (*_level)[n] >= _el);
  | 
| 
alpar@399
 | 
   699  | 
    }
  | 
| 
alpar@399
 | 
   700  | 
  | 
| 
alpar@399
 | 
   701  | 
    /// @}
  | 
| 
alpar@399
 | 
   702  | 
  | 
| 
alpar@399
 | 
   703  | 
    /// \name Checker Functions
  | 
| 
kpeter@402
 | 
   704  | 
    /// The feasibility of the results can be checked using
  | 
| 
kpeter@402
 | 
   705  | 
    /// these functions.\n
  | 
| 
kpeter@402
 | 
   706  | 
    /// Either \ref run() or \ref start() should be called before
  | 
| 
kpeter@402
 | 
   707  | 
    /// using them.
  | 
| 
alpar@399
 | 
   708  | 
  | 
| 
alpar@399
 | 
   709  | 
    ///@{
 | 
| 
alpar@399
 | 
   710  | 
  | 
| 
kpeter@402
 | 
   711  | 
    ///Check if the found flow is a feasible circulation
  | 
| 
kpeter@402
 | 
   712  | 
  | 
| 
kpeter@402
 | 
   713  | 
    ///Check if the found flow is a feasible circulation,
  | 
| 
kpeter@402
 | 
   714  | 
    ///
  | 
| 
alpar@399
 | 
   715  | 
    bool checkFlow() {
 | 
| 
alpar@399
 | 
   716  | 
      for(ArcIt e(_g);e!=INVALID;++e)
  | 
| 
alpar@399
 | 
   717  | 
        if((*_flow)[e]<(*_lo)[e]||(*_flow)[e]>(*_up)[e]) return false;
  | 
| 
alpar@399
 | 
   718  | 
      for(NodeIt n(_g);n!=INVALID;++n)
  | 
| 
alpar@399
 | 
   719  | 
        {
 | 
| 
alpar@399
 | 
   720  | 
          Value dif=-(*_delta)[n];
  | 
| 
alpar@399
 | 
   721  | 
          for(InArcIt e(_g,n);e!=INVALID;++e) dif-=(*_flow)[e];
  | 
| 
alpar@399
 | 
   722  | 
          for(OutArcIt e(_g,n);e!=INVALID;++e) dif+=(*_flow)[e];
  | 
| 
alpar@399
 | 
   723  | 
          if(_tol.negative(dif)) return false;
  | 
| 
alpar@399
 | 
   724  | 
        }
  | 
| 
alpar@399
 | 
   725  | 
      return true;
  | 
| 
alpar@399
 | 
   726  | 
    }
  | 
| 
alpar@399
 | 
   727  | 
  | 
| 
alpar@399
 | 
   728  | 
    ///Check whether or not the last execution provides a barrier
  | 
| 
alpar@399
 | 
   729  | 
  | 
| 
kpeter@402
 | 
   730  | 
    ///Check whether or not the last execution provides a barrier.
  | 
| 
alpar@399
 | 
   731  | 
    ///\sa barrier()
  | 
| 
kpeter@402
 | 
   732  | 
    ///\sa barrierMap()
  | 
| 
alpar@399
 | 
   733  | 
    bool checkBarrier()
  | 
| 
alpar@399
 | 
   734  | 
    {
 | 
| 
alpar@399
 | 
   735  | 
      Value delta=0;
  | 
| 
alpar@399
 | 
   736  | 
      for(NodeIt n(_g);n!=INVALID;++n)
  | 
| 
alpar@399
 | 
   737  | 
        if(barrier(n))
  | 
| 
alpar@399
 | 
   738  | 
          delta-=(*_delta)[n];
  | 
| 
alpar@399
 | 
   739  | 
      for(ArcIt e(_g);e!=INVALID;++e)
  | 
| 
alpar@399
 | 
   740  | 
        {
 | 
| 
alpar@399
 | 
   741  | 
          Node s=_g.source(e);
  | 
| 
alpar@399
 | 
   742  | 
          Node t=_g.target(e);
  | 
| 
alpar@399
 | 
   743  | 
          if(barrier(s)&&!barrier(t)) delta+=(*_up)[e];
  | 
| 
alpar@399
 | 
   744  | 
          else if(barrier(t)&&!barrier(s)) delta-=(*_lo)[e];
  | 
| 
alpar@399
 | 
   745  | 
        }
  | 
| 
alpar@399
 | 
   746  | 
      return _tol.negative(delta);
  | 
| 
alpar@399
 | 
   747  | 
    }
  | 
| 
alpar@399
 | 
   748  | 
  | 
| 
alpar@399
 | 
   749  | 
    /// @}
  | 
| 
alpar@399
 | 
   750  | 
  | 
| 
alpar@399
 | 
   751  | 
  };
  | 
| 
alpar@399
 | 
   752  | 
  | 
| 
alpar@399
 | 
   753  | 
}
  | 
| 
alpar@399
 | 
   754  | 
  | 
| 
alpar@399
 | 
   755  | 
#endif
  |