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@@ -273,139 +273,117 @@ |
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/** |
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@defgroup auxdat Auxiliary Data Structures |
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@ingroup datas |
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\brief Auxiliary data structures implemented in LEMON. |
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|
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This group contains some data structures implemented in LEMON in |
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order to make it easier to implement combinatorial algorithms. |
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*/ |
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|
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/** |
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@defgroup geomdat Geometric Data Structures |
| 284 | 284 |
@ingroup auxdat |
| 285 | 285 |
\brief Geometric data structures implemented in LEMON. |
| 286 | 286 |
|
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This group contains geometric data structures implemented in LEMON. |
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|
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- \ref lemon::dim2::Point "dim2::Point" implements a two dimensional |
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vector with the usual operations. |
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- \ref lemon::dim2::Box "dim2::Box" can be used to determine the |
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rectangular bounding box of a set of \ref lemon::dim2::Point |
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"dim2::Point"'s. |
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*/ |
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|
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/** |
| 297 |
@defgroup matrices Matrices |
|
| 298 |
@ingroup auxdat |
|
| 299 |
\brief Two dimensional data storages implemented in LEMON. |
|
| 300 |
|
|
| 301 |
This group contains two dimensional data storages implemented in LEMON. |
|
| 302 |
*/ |
|
| 303 |
|
|
| 304 |
/** |
|
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@defgroup algs Algorithms |
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\brief This group contains the several algorithms |
| 307 | 299 |
implemented in LEMON. |
| 308 | 300 |
|
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This group contains the several algorithms |
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implemented in LEMON. |
| 311 | 303 |
*/ |
| 312 | 304 |
|
| 313 | 305 |
/** |
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@defgroup search Graph Search |
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@ingroup algs |
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\brief Common graph search algorithms. |
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|
| 318 | 310 |
This group contains the common graph search algorithms, namely |
| 319 | 311 |
\e breadth-first \e search (BFS) and \e depth-first \e search (DFS) |
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\ref clrs01algorithms. |
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*/ |
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|
| 323 | 315 |
/** |
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@defgroup shortest_path Shortest Path Algorithms |
| 325 | 317 |
@ingroup algs |
| 326 | 318 |
\brief Algorithms for finding shortest paths. |
| 327 | 319 |
|
| 328 | 320 |
This group contains the algorithms for finding shortest paths in digraphs |
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\ref clrs01algorithms. |
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|
| 331 | 323 |
- \ref Dijkstra algorithm for finding shortest paths from a source node |
| 332 | 324 |
when all arc lengths are non-negative. |
| 333 | 325 |
- \ref BellmanFord "Bellman-Ford" algorithm for finding shortest paths |
| 334 | 326 |
from a source node when arc lenghts can be either positive or negative, |
| 335 | 327 |
but the digraph should not contain directed cycles with negative total |
| 336 | 328 |
length. |
| 337 |
- \ref FloydWarshall "Floyd-Warshall" and \ref Johnson "Johnson" algorithms |
|
| 338 |
for solving the \e all-pairs \e shortest \e paths \e problem when arc |
|
| 339 |
lenghts can be either positive or negative, but the digraph should |
|
| 340 |
not contain directed cycles with negative total length. |
|
| 341 | 329 |
- \ref Suurballe A successive shortest path algorithm for finding |
| 342 | 330 |
arc-disjoint paths between two nodes having minimum total length. |
| 343 | 331 |
*/ |
| 344 | 332 |
|
| 345 | 333 |
/** |
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@defgroup spantree Minimum Spanning Tree Algorithms |
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@ingroup algs |
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\brief Algorithms for finding minimum cost spanning trees and arborescences. |
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|
| 350 | 338 |
This group contains the algorithms for finding minimum cost spanning |
| 351 | 339 |
trees and arborescences \ref clrs01algorithms. |
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*/ |
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|
| 354 | 342 |
/** |
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@defgroup max_flow Maximum Flow Algorithms |
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@ingroup algs |
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\brief Algorithms for finding maximum flows. |
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|
| 359 | 347 |
This group contains the algorithms for finding maximum flows and |
| 360 | 348 |
feasible circulations \ref clrs01algorithms, \ref amo93networkflows. |
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|
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The \e maximum \e flow \e problem is to find a flow of maximum value between |
| 363 | 351 |
a single source and a single target. Formally, there is a \f$G=(V,A)\f$ |
| 364 | 352 |
digraph, a \f$cap: A\rightarrow\mathbf{R}^+_0\f$ capacity function and
|
| 365 | 353 |
\f$s, t \in V\f$ source and target nodes. |
| 366 | 354 |
A maximum flow is an \f$f: A\rightarrow\mathbf{R}^+_0\f$ solution of the
|
| 367 | 355 |
following optimization problem. |
| 368 | 356 |
|
| 369 | 357 |
\f[ \max\sum_{sv\in A} f(sv) - \sum_{vs\in A} f(vs) \f]
|
| 370 | 358 |
\f[ \sum_{uv\in A} f(uv) = \sum_{vu\in A} f(vu)
|
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\quad \forall u\in V\setminus\{s,t\} \f]
|
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\f[ 0 \leq f(uv) \leq cap(uv) \quad \forall uv\in A \f] |
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|
| 374 |
LEMON contains several algorithms for solving maximum flow problems: |
|
| 375 |
- \ref EdmondsKarp Edmonds-Karp algorithm |
|
| 376 |
\ref edmondskarp72theoretical. |
|
| 377 |
- \ref Preflow Goldberg-Tarjan's preflow push-relabel algorithm |
|
| 378 |
\ref goldberg88newapproach. |
|
| 379 |
- \ref DinitzSleatorTarjan Dinitz's blocking flow algorithm with dynamic trees |
|
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\ref dinic70algorithm, \ref sleator83dynamic. |
|
| 381 |
- \ref GoldbergTarjan !Preflow push-relabel algorithm with dynamic trees |
|
| 382 |
\ref goldberg88newapproach, \ref sleator83dynamic. |
|
| 383 |
|
|
| 384 |
In most cases the \ref Preflow algorithm provides the |
|
| 385 |
fastest method for computing a maximum flow. All implementations |
|
| 386 |
also provide functions to query the minimum cut, which is the dual |
|
| 387 |
problem of maximum flow. |
|
| 362 |
\ref Preflow is an efficient implementation of Goldberg-Tarjan's |
|
| 363 |
preflow push-relabel algorithm \ref goldberg88newapproach for finding |
|
| 364 |
maximum flows. It also provides functions to query the minimum cut, |
|
| 365 |
which is the dual problem of maximum flow. |
|
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|
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\ref Circulation is a preflow push-relabel algorithm implemented directly |
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for finding feasible circulations, which is a somewhat different problem, |
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but it is strongly related to maximum flow. |
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For more information, see \ref Circulation. |
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*/ |
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|
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/** |
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@defgroup min_cost_flow_algs Minimum Cost Flow Algorithms |
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@ingroup algs |
| 398 | 376 |
|
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\brief Algorithms for finding minimum cost flows and circulations. |
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|
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This group contains the algorithms for finding minimum cost flows and |
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circulations \ref amo93networkflows. For more information about this |
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problem and its dual solution, see \ref min_cost_flow |
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"Minimum Cost Flow Problem". |
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|
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LEMON contains several algorithms for this problem. |
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- \ref NetworkSimplex Primal Network Simplex algorithm with various |
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pivot strategies \ref dantzig63linearprog, \ref kellyoneill91netsimplex. |
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- \ref CostScaling Cost Scaling algorithm based on push/augment and |
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relabel operations \ref goldberg90approximation, \ref goldberg97efficient, |
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\ref bunnagel98efficient. |
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@@ -420,50 +398,48 @@ |
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CapacityScaling is usually the fastest algorithm (without effective scaling). |
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*/ |
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|
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/** |
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@defgroup min_cut Minimum Cut Algorithms |
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@ingroup algs |
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|
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\brief Algorithms for finding minimum cut in graphs. |
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|
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This group contains the algorithms for finding minimum cut in graphs. |
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|
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The \e minimum \e cut \e problem is to find a non-empty and non-complete |
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\f$X\f$ subset of the nodes with minimum overall capacity on |
| 433 | 411 |
outgoing arcs. Formally, there is a \f$G=(V,A)\f$ digraph, a |
| 434 | 412 |
\f$cap: A\rightarrow\mathbf{R}^+_0\f$ capacity function. The minimum
|
| 435 | 413 |
cut is the \f$X\f$ solution of the next optimization problem: |
| 436 | 414 |
|
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\f[ \min_{X \subset V, X\not\in \{\emptyset, V\}}
|
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\sum_{uv\in A: u\in X, v\not\in X}cap(uv) \f]
|
| 439 | 417 |
|
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LEMON contains several algorithms related to minimum cut problems: |
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|
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- \ref HaoOrlin "Hao-Orlin algorithm" for calculating minimum cut |
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in directed graphs. |
| 444 |
- \ref NagamochiIbaraki "Nagamochi-Ibaraki algorithm" for |
|
| 445 |
calculating minimum cut in undirected graphs. |
|
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- \ref GomoryHu "Gomory-Hu tree computation" for calculating |
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all-pairs minimum cut in undirected graphs. |
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|
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If you want to find minimum cut just between two distinict nodes, |
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see the \ref max_flow "maximum flow problem". |
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*/ |
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|
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/** |
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@defgroup min_mean_cycle Minimum Mean Cycle Algorithms |
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@ingroup algs |
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\brief Algorithms for finding minimum mean cycles. |
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|
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This group contains the algorithms for finding minimum mean cycles |
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\ref clrs01algorithms, \ref amo93networkflows. |
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|
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The \e minimum \e mean \e cycle \e problem is to find a directed cycle |
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of minimum mean length (cost) in a digraph. |
| 463 | 439 |
The mean length of a cycle is the average length of its arcs, i.e. the |
| 464 | 440 |
ratio between the total length of the cycle and the number of arcs on it. |
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|
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This problem has an important connection to \e conservative \e length |
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\e functions, too. A length function on the arcs of a digraph is called |
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conservative if and only if there is no directed cycle of negative total |
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length. For an arbitrary length function, the negative of the minimum |
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@@ -484,159 +460,123 @@ |
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exponential. |
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Both Karp and HartmannOrlin algorithms run in time O(ne) and use space |
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O(n<sup>2</sup>+e), but the latter one is typically faster due to the |
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applied early termination scheme. |
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*/ |
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|
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/** |
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@defgroup matching Matching Algorithms |
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@ingroup algs |
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\brief Algorithms for finding matchings in graphs and bipartite graphs. |
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|
| 495 | 471 |
This group contains the algorithms for calculating |
| 496 | 472 |
matchings in graphs and bipartite graphs. The general matching problem is |
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finding a subset of the edges for which each node has at most one incident |
| 498 | 474 |
edge. |
| 499 | 475 |
|
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There are several different algorithms for calculate matchings in |
| 501 | 477 |
graphs. The matching problems in bipartite graphs are generally |
| 502 | 478 |
easier than in general graphs. The goal of the matching optimization |
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can be finding maximum cardinality, maximum weight or minimum cost |
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matching. The search can be constrained to find perfect or |
| 505 | 481 |
maximum cardinality matching. |
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|
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The matching algorithms implemented in LEMON: |
| 508 |
- \ref MaxBipartiteMatching Hopcroft-Karp augmenting path algorithm |
|
| 509 |
for calculating maximum cardinality matching in bipartite graphs. |
|
| 510 |
- \ref PrBipartiteMatching Push-relabel algorithm |
|
| 511 |
for calculating maximum cardinality matching in bipartite graphs. |
|
| 512 |
- \ref MaxWeightedBipartiteMatching |
|
| 513 |
Successive shortest path algorithm for calculating maximum weighted |
|
| 514 |
matching and maximum weighted bipartite matching in bipartite graphs. |
|
| 515 |
- \ref MinCostMaxBipartiteMatching |
|
| 516 |
Successive shortest path algorithm for calculating minimum cost maximum |
|
| 517 |
matching in bipartite graphs. |
|
| 518 | 484 |
- \ref MaxMatching Edmond's blossom shrinking algorithm for calculating |
| 519 | 485 |
maximum cardinality matching in general graphs. |
| 520 | 486 |
- \ref MaxWeightedMatching Edmond's blossom shrinking algorithm for calculating |
| 521 | 487 |
maximum weighted matching in general graphs. |
| 522 | 488 |
- \ref MaxWeightedPerfectMatching |
| 523 | 489 |
Edmond's blossom shrinking algorithm for calculating maximum weighted |
| 524 | 490 |
perfect matching in general graphs. |
| 525 | 491 |
- \ref MaxFractionalMatching Push-relabel algorithm for calculating |
| 526 | 492 |
maximum cardinality fractional matching in general graphs. |
| 527 | 493 |
- \ref MaxWeightedFractionalMatching Augmenting path algorithm for calculating |
| 528 | 494 |
maximum weighted fractional matching in general graphs. |
| 529 | 495 |
- \ref MaxWeightedPerfectFractionalMatching |
| 530 | 496 |
Augmenting path algorithm for calculating maximum weighted |
| 531 | 497 |
perfect fractional matching in general graphs. |
| 532 | 498 |
|
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\image html matching.png |
| 534 | 500 |
\image latex matching.eps "Min Cost Perfect Matching" width=\textwidth |
| 535 | 501 |
*/ |
| 536 | 502 |
|
| 537 | 503 |
/** |
| 538 | 504 |
@defgroup graph_properties Connectivity and Other Graph Properties |
| 539 | 505 |
@ingroup algs |
| 540 | 506 |
\brief Algorithms for discovering the graph properties |
| 541 | 507 |
|
| 542 | 508 |
This group contains the algorithms for discovering the graph properties |
| 543 | 509 |
like connectivity, bipartiteness, euler property, simplicity etc. |
| 544 | 510 |
|
| 545 | 511 |
\image html connected_components.png |
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\image latex connected_components.eps "Connected components" width=\textwidth |
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*/ |
| 548 | 514 |
|
| 549 | 515 |
/** |
| 550 | 516 |
@defgroup planar Planarity Embedding and Drawing |
| 551 | 517 |
@ingroup algs |
| 552 | 518 |
\brief Algorithms for planarity checking, embedding and drawing |
| 553 | 519 |
|
| 554 | 520 |
This group contains the algorithms for planarity checking, |
| 555 | 521 |
embedding and drawing. |
| 556 | 522 |
|
| 557 | 523 |
\image html planar.png |
| 558 | 524 |
\image latex planar.eps "Plane graph" width=\textwidth |
| 559 | 525 |
*/ |
| 560 | 526 |
|
| 561 | 527 |
/** |
| 562 |
@defgroup approx Approximation Algorithms |
|
| 563 |
@ingroup algs |
|
| 564 |
\brief Approximation algorithms. |
|
| 565 |
|
|
| 566 |
This group contains the approximation and heuristic algorithms |
|
| 567 |
implemented in LEMON. |
|
| 568 |
*/ |
|
| 569 |
|
|
| 570 |
/** |
|
| 571 | 528 |
@defgroup auxalg Auxiliary Algorithms |
| 572 | 529 |
@ingroup algs |
| 573 | 530 |
\brief Auxiliary algorithms implemented in LEMON. |
| 574 | 531 |
|
| 575 | 532 |
This group contains some algorithms implemented in LEMON |
| 576 | 533 |
in order to make it easier to implement complex algorithms. |
| 577 | 534 |
*/ |
| 578 | 535 |
|
| 579 | 536 |
/** |
| 580 | 537 |
@defgroup gen_opt_group General Optimization Tools |
| 581 | 538 |
\brief This group contains some general optimization frameworks |
| 582 | 539 |
implemented in LEMON. |
| 583 | 540 |
|
| 584 | 541 |
This group contains some general optimization frameworks |
| 585 | 542 |
implemented in LEMON. |
| 586 | 543 |
*/ |
| 587 | 544 |
|
| 588 | 545 |
/** |
| 589 | 546 |
@defgroup lp_group LP and MIP Solvers |
| 590 | 547 |
@ingroup gen_opt_group |
| 591 | 548 |
\brief LP and MIP solver interfaces for LEMON. |
| 592 | 549 |
|
| 593 | 550 |
This group contains LP and MIP solver interfaces for LEMON. |
| 594 | 551 |
Various LP solvers could be used in the same manner with this |
| 595 | 552 |
high-level interface. |
| 596 | 553 |
|
| 597 | 554 |
The currently supported solvers are \ref glpk, \ref clp, \ref cbc, |
| 598 | 555 |
\ref cplex, \ref soplex. |
| 599 | 556 |
*/ |
| 600 | 557 |
|
| 601 | 558 |
/** |
| 602 |
@defgroup lp_utils Tools for Lp and Mip Solvers |
|
| 603 |
@ingroup lp_group |
|
| 604 |
\brief Helper tools to the Lp and Mip solvers. |
|
| 605 |
|
|
| 606 |
This group adds some helper tools to general optimization framework |
|
| 607 |
implemented in LEMON. |
|
| 608 |
*/ |
|
| 609 |
|
|
| 610 |
/** |
|
| 611 |
@defgroup metah Metaheuristics |
|
| 612 |
@ingroup gen_opt_group |
|
| 613 |
\brief Metaheuristics for LEMON library. |
|
| 614 |
|
|
| 615 |
This group contains some metaheuristic optimization tools. |
|
| 616 |
*/ |
|
| 617 |
|
|
| 618 |
/** |
|
| 619 | 559 |
@defgroup utils Tools and Utilities |
| 620 | 560 |
\brief Tools and utilities for programming in LEMON |
| 621 | 561 |
|
| 622 | 562 |
Tools and utilities for programming in LEMON. |
| 623 | 563 |
*/ |
| 624 | 564 |
|
| 625 | 565 |
/** |
| 626 | 566 |
@defgroup gutils Basic Graph Utilities |
| 627 | 567 |
@ingroup utils |
| 628 | 568 |
\brief Simple basic graph utilities. |
| 629 | 569 |
|
| 630 | 570 |
This group contains some simple basic graph utilities. |
| 631 | 571 |
*/ |
| 632 | 572 |
|
| 633 | 573 |
/** |
| 634 | 574 |
@defgroup misc Miscellaneous Tools |
| 635 | 575 |
@ingroup utils |
| 636 | 576 |
\brief Tools for development, debugging and testing. |
| 637 | 577 |
|
| 638 | 578 |
This group contains several useful tools for development, |
| 639 | 579 |
debugging and testing. |
| 640 | 580 |
*/ |
| 641 | 581 |
|
| 642 | 582 |
/** |
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