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@@ -46,25 +46,25 @@ |
46 | 46 |
/// Note that this problem is a special case of the \ref min_cost_flow |
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/// "minimum cost flow problem". This implementation is actually an |
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/// efficient specialized version of the \ref CapacityScaling |
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/// "Successive Shortest Path" algorithm directly for this problem. |
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/// Therefore this class provides query functions for flow values and |
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/// node potentials (the dual solution) just like the minimum cost flow |
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/// algorithms. |
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/// |
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/// \tparam GR The digraph type the algorithm runs on. |
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/// \tparam LEN The type of the length map. |
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/// The default value is <tt>GR::ArcMap<int></tt>. |
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/// |
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/// \warning Length values should be \e non-negative |
|
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/// \warning Length values should be \e non-negative. |
|
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/// |
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/// \note For finding node-disjoint paths this algorithm can be used |
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/// along with the \ref SplitNodes adaptor. |
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#ifdef DOXYGEN |
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template <typename GR, typename LEN> |
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#else |
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template < typename GR, |
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typename LEN = typename GR::template ArcMap<int> > |
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#endif |
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class Suurballe |
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{ |
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TEMPLATE_DIGRAPH_TYPEDEFS(GR); |
... | ... |
@@ -243,28 +243,25 @@ |
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public: |
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|
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/// \brief Constructor. |
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/// |
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/// Constructor. |
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/// |
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/// \param graph The digraph the algorithm runs on. |
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/// \param length The length (cost) values of the arcs. |
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Suurballe( const Digraph &graph, |
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const LengthMap &length ) : |
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_graph(graph), _length(length), _flow(0), _local_flow(false), |
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_potential(0), _local_potential(false), _pred(graph) |
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{ |
|
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LEMON_ASSERT(std::numeric_limits<Length>::is_integer, |
|
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"The length type of Suurballe must be integer"); |
|
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} |
|
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{} |
|
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|
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/// Destructor. |
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~Suurballe() { |
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if (_local_flow) delete _flow; |
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if (_local_potential) delete _potential; |
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delete _dijkstra; |
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} |
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|
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/// \brief Set the flow map. |
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/// |
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/// This function sets the flow map. |
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/// If it is not used before calling \ref run() or \ref init(), |
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