... | ... |
@@ -46,25 +46,25 @@ |
46 | 46 |
/// Note that this problem is a special case of the \ref min_cost_flow |
47 | 47 |
/// "minimum cost flow problem". This implementation is actually an |
48 | 48 |
/// efficient specialized version of the Successive Shortest Path |
49 | 49 |
/// algorithm directly for this problem. |
50 | 50 |
/// Therefore this class provides query functions for flow values and |
51 | 51 |
/// node potentials (the dual solution) just like the minimum cost flow |
52 | 52 |
/// algorithms. |
53 | 53 |
/// |
54 | 54 |
/// \tparam GR The digraph type the algorithm runs on. |
55 | 55 |
/// \tparam LEN The type of the length map. |
56 | 56 |
/// The default value is <tt>GR::ArcMap<int></tt>. |
57 | 57 |
/// |
58 |
/// \warning Length values should be \e non-negative |
|
58 |
/// \warning Length values should be \e non-negative. |
|
59 | 59 |
/// |
60 | 60 |
/// \note For finding node-disjoint paths this algorithm can be used |
61 | 61 |
/// along with the \ref SplitNodes adaptor. |
62 | 62 |
#ifdef DOXYGEN |
63 | 63 |
template <typename GR, typename LEN> |
64 | 64 |
#else |
65 | 65 |
template < typename GR, |
66 | 66 |
typename LEN = typename GR::template ArcMap<int> > |
67 | 67 |
#endif |
68 | 68 |
class Suurballe |
69 | 69 |
{ |
70 | 70 |
TEMPLATE_DIGRAPH_TYPEDEFS(GR); |
... | ... |
@@ -243,28 +243,25 @@ |
243 | 243 |
public: |
244 | 244 |
|
245 | 245 |
/// \brief Constructor. |
246 | 246 |
/// |
247 | 247 |
/// Constructor. |
248 | 248 |
/// |
249 | 249 |
/// \param graph The digraph the algorithm runs on. |
250 | 250 |
/// \param length The length (cost) values of the arcs. |
251 | 251 |
Suurballe( const Digraph &graph, |
252 | 252 |
const LengthMap &length ) : |
253 | 253 |
_graph(graph), _length(length), _flow(0), _local_flow(false), |
254 | 254 |
_potential(0), _local_potential(false), _pred(graph) |
255 |
{ |
|
256 |
LEMON_ASSERT(std::numeric_limits<Length>::is_integer, |
|
257 |
"The length type of Suurballe must be integer"); |
|
258 |
} |
|
255 |
{} |
|
259 | 256 |
|
260 | 257 |
/// Destructor. |
261 | 258 |
~Suurballe() { |
262 | 259 |
if (_local_flow) delete _flow; |
263 | 260 |
if (_local_potential) delete _potential; |
264 | 261 |
delete _dijkstra; |
265 | 262 |
} |
266 | 263 |
|
267 | 264 |
/// \brief Set the flow map. |
268 | 265 |
/// |
269 | 266 |
/// This function sets the flow map. |
270 | 267 |
/// If it is not used before calling \ref run() or \ref init(), |
... | ... |
@@ -511,25 +508,25 @@ |
511 | 508 |
return _path_num; |
512 | 509 |
} |
513 | 510 |
|
514 | 511 |
/// \brief Return a const reference to the specified path. |
515 | 512 |
/// |
516 | 513 |
/// This function returns a const reference to the specified path. |
517 | 514 |
/// |
518 | 515 |
/// \param i The function returns the <tt>i</tt>-th path. |
519 | 516 |
/// \c i must be between \c 0 and <tt>%pathNum()-1</tt>. |
520 | 517 |
/// |
521 | 518 |
/// \pre \ref run() or \ref findPaths() must be called before using |
522 | 519 |
/// this function. |
523 |
Path path(int i) const { |
|
520 |
const Path& path(int i) const { |
|
524 | 521 |
return paths[i]; |
525 | 522 |
} |
526 | 523 |
|
527 | 524 |
/// @} |
528 | 525 |
|
529 | 526 |
}; //class Suurballe |
530 | 527 |
|
531 | 528 |
///@} |
532 | 529 |
|
533 | 530 |
} //namespace lemon |
534 | 531 |
|
535 | 532 |
#endif //LEMON_SUURBALLE_H |
0 comments (0 inline)