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| 113 |
-389.604 -136.361 moveto |
|
| 114 |
-327.15 -226.083 -321.098 -234.777 -269.576 -308.795 curveto stroke |
|
| 115 |
newpath -262.72 -318.644 moveto -272.859 -311.081 lineto -266.293 -306.51 lineto closepath fill |
|
| 116 |
2 setlinewidth 1 0 0 setrgbcolor newpath |
|
| 117 |
5.84406 175.322 moveto |
|
| 118 |
-76.0754 267.926 -83.1051 275.873 -152.172 353.948 curveto stroke |
|
| 119 |
newpath -160.122 362.936 moveto -149.176 356.598 lineto -155.168 351.298 lineto closepath fill |
|
| 120 |
2 setlinewidth 0 0 1 setrgbcolor newpath |
|
| 121 |
169.478 311.683 moveto |
|
| 122 |
96.8003 251.119 88.6819 244.353 30.4273 195.808 curveto stroke |
|
| 123 |
newpath 21.2086 188.126 moveto 27.8666 198.881 lineto 32.988 192.735 lineto closepath fill |
|
| 124 |
2 setlinewidth 0 0 1 setrgbcolor newpath |
|
| 125 |
342.851 111.037 moveto |
|
| 126 |
263.766 202.563 256.831 210.589 190.4 287.47 curveto stroke |
|
| 127 |
newpath 182.554 296.55 moveto 193.427 290.085 lineto 187.373 284.855 lineto closepath fill |
|
| 128 |
2 setlinewidth 0 0 1 setrgbcolor newpath |
|
| 129 |
5.84406 175.322 moveto |
|
| 130 |
163.16 145.314 173.605 143.321 311.418 117.033 curveto stroke |
|
| 131 |
newpath 323.205 114.784 moveto 310.668 113.104 lineto 312.167 120.962 lineto closepath fill |
|
| 132 |
2 setlinewidth 0 0 1 setrgbcolor newpath |
|
| 133 |
342.851 111.037 moveto |
|
| 134 |
497.255 2.58683 505.964 -3.53033 643.932 -100.436 curveto stroke |
|
| 135 |
newpath 653.752 -107.334 moveto 641.633 -103.71 lineto 646.231 -97.163 lineto closepath fill |
|
| 136 |
2 setlinewidth 0 0 1 setrgbcolor newpath |
|
| 137 |
364.28 -222.074 moveto |
|
| 138 |
354.298 -66.9063 353.616 -56.2971 344.905 79.1029 curveto stroke |
|
| 139 |
newpath 344.135 91.0781 moveto 348.897 79.3597 lineto 340.914 78.8461 lineto closepath fill |
|
| 140 |
2 setlinewidth 0 0 1 setrgbcolor newpath |
|
| 141 |
670.118 -118.829 moveto |
|
| 142 |
528.037 -166.793 517.967 -170.192 394.599 -211.839 curveto stroke |
|
| 143 |
newpath 383.229 -215.677 moveto 393.32 -208.049 lineto 395.878 -215.629 lineto closepath fill |
|
| 144 |
2 setlinewidth 1 0 0 setrgbcolor newpath |
|
| 145 |
-105.193 -261.035 moveto |
|
| 146 |
118.401 -242.479 129.015 -241.598 332.39 -224.721 curveto stroke |
|
| 147 |
newpath 344.348 -223.728 moveto 332.72 -228.707 lineto 332.059 -220.734 lineto closepath fill |
|
| 148 |
2 setlinewidth 0 0 1 setrgbcolor newpath |
|
| 149 |
-105.193 -261.035 moveto |
|
| 150 |
-160.867 -161.176 -166.028 -151.918 -212.336 -68.858 curveto stroke |
|
| 151 |
newpath -218.179 -58.3769 moveto -208.842 -66.9102 lineto -215.829 -70.8058 lineto closepath fill |
|
| 152 |
2 setlinewidth 0 0 1 setrgbcolor newpath |
|
| 153 |
-227.918 -40.9084 moveto |
|
| 154 |
-298.35 -82.4884 -307.42 -87.8432 -362.048 -120.093 curveto stroke |
|
| 155 |
newpath -372.381 -126.193 moveto -364.081 -116.648 lineto -360.014 -123.537 lineto closepath fill |
|
| 156 |
grestore |
|
| 157 |
%Nodes: |
|
| 158 |
gsave |
|
| 159 |
-389.604 -136.361 20 0 1 0 nc |
|
| 160 |
-227.918 -40.9084 20 0 1 0 nc |
|
| 161 |
-105.193 -261.035 20 0 1 0 nc |
|
| 162 |
364.28 -222.074 20 1 1 0 nc |
|
| 163 |
670.118 -118.829 20 1 1 0 nc |
|
| 164 |
342.851 111.037 20 1 1 0 nc |
|
| 165 |
5.84406 175.322 20 1 1 0 nc |
|
| 166 |
169.478 311.683 20 1 1 0 nc |
|
| 167 |
-173.374 377.916 20 1 0 1 nc |
|
| 168 |
-251.294 -335.059 20 0 1 0 nc |
|
| 169 |
-266.879 114.933 20 0 0 0 nc |
|
| 170 |
-368.176 331.163 20 0 0 0 nc |
|
| 171 |
-490.901 120.777 20 0 0 0 nc |
|
| 172 |
-574.666 -153.893 20 1 0 0 nc |
|
| 173 |
-675.963 -3.89604 20 1 0 0 nc |
|
| 174 |
-465.576 -42.8564 20 1 0 0 nc |
|
| 175 |
44.8044 15.5841 20 0 0 1 nc |
|
| 176 |
157.79 -130.517 20 0 0 1 nc |
|
| 177 |
218.178 27.2723 20 0 0 1 nc |
|
| 178 |
grestore |
|
| 179 |
grestore |
|
| 180 |
showpage |
| ... | ... |
@@ -16,3 +16,8 @@ |
| 16 | 16 |
COMMAND mkdir gen-images |
| 17 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/bipartite_matching.png ${CMAKE_CURRENT_SOURCE_DIR}/images/bipartite_matching.eps
|
|
| 18 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/bipartite_partitions.png ${CMAKE_CURRENT_SOURCE_DIR}/images/bipartite_partitions.eps
|
|
| 19 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/connected_components.png ${CMAKE_CURRENT_SOURCE_DIR}/images/connected_components.eps
|
|
| 20 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/edge_biconnected_components.png ${CMAKE_CURRENT_SOURCE_DIR}/images/edge_biconnected_components.eps
|
|
| 17 | 21 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/grid_graph.png ${CMAKE_CURRENT_SOURCE_DIR}/images/grid_graph.eps
|
| 22 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/node_biconnected_components.png ${CMAKE_CURRENT_SOURCE_DIR}/images/node_biconnected_components.eps
|
|
| 18 | 23 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/nodeshape_0.png ${CMAKE_CURRENT_SOURCE_DIR}/images/nodeshape_0.eps
|
| ... | ... |
@@ -22,2 +27,3 @@ |
| 22 | 27 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/nodeshape_4.png ${CMAKE_CURRENT_SOURCE_DIR}/images/nodeshape_4.eps
|
| 28 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/strongly_connected_components.png ${CMAKE_CURRENT_SOURCE_DIR}/images/strongly_connected_components.eps
|
|
| 23 | 29 |
COMMAND rm -rf html |
| ... | ... |
@@ -29,2 +35,8 @@ |
| 29 | 35 |
COMMAND mkdir gen-images |
| 36 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/bipartite_matching.png ${CMAKE_CURRENT_SOURCE_DIR}/images/bipartite_matching.eps
|
|
| 37 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/bipartite_partitions.png ${CMAKE_CURRENT_SOURCE_DIR}/images/bipartite_partitions.eps
|
|
| 38 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/connected_components.png ${CMAKE_CURRENT_SOURCE_DIR}/images/connected_components.eps
|
|
| 39 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/edge_biconnected_components.png ${CMAKE_CURRENT_SOURCE_DIR}/images/edge_biconnected_components.eps
|
|
| 40 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/grid_graph.png ${CMAKE_CURRENT_SOURCE_DIR}/images/grid_graph.eps
|
|
| 41 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/node_biconnected_components.png ${CMAKE_CURRENT_SOURCE_DIR}/images/node_biconnected_components.eps
|
|
| 30 | 42 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/nodeshape_0.png ${CMAKE_CURRENT_SOURCE_DIR}/images/nodeshape_0.eps
|
| ... | ... |
@@ -34,2 +46,3 @@ |
| 34 | 46 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/nodeshape_4.png ${CMAKE_CURRENT_SOURCE_DIR}/images/nodeshape_4.eps
|
| 47 |
COMMAND ${GHOSTSCRIPT_EXECUTABLE} -dNOPAUSE -dBATCH -q -dEPSCrop -dTextAlphaBits=4 -dGraphicsAlphaBits=4 -sDEVICE=pngalpha -r18 -sOutputFile=gen-images/strongly_connected_components.png ${CMAKE_CURRENT_SOURCE_DIR}/images/strongly_connected_components.eps
|
|
| 35 | 48 |
COMMAND if exist html rmdir /s /q html |
| ... | ... |
@@ -23,4 +23,13 @@ |
| 23 | 23 |
|
| 24 |
DOC_EPS_IMAGES27 = \ |
|
| 25 |
bipartite_matching.eps \ |
|
| 26 |
bipartite_partitions.eps \ |
|
| 27 |
connected_components.eps \ |
|
| 28 |
edge_biconnected_components.eps \ |
|
| 29 |
node_biconnected_components.eps \ |
|
| 30 |
strongly_connected_components.eps |
|
| 31 |
|
|
| 24 | 32 |
DOC_EPS_IMAGES = \ |
| 25 |
$(DOC_EPS_IMAGES18) |
|
| 33 |
$(DOC_EPS_IMAGES18) \ |
|
| 34 |
$(DOC_EPS_IMAGES27) |
|
| 26 | 35 |
|
| ... | ... |
@@ -47,2 +56,13 @@ |
| 47 | 56 |
|
| 57 |
$(DOC_EPS_IMAGES27:%.eps=doc/gen-images/%.png): doc/gen-images/%.png: doc/images/%.eps |
|
| 58 |
-mkdir doc/gen-images |
|
| 59 |
if test ${gs_found} = yes; then \
|
|
| 60 |
$(GS_COMMAND) -sDEVICE=pngalpha -r27 -sOutputFile=$@ $<; \ |
|
| 61 |
else \ |
|
| 62 |
echo; \ |
|
| 63 |
echo "Ghostscript not found."; \ |
|
| 64 |
echo; \ |
|
| 65 |
exit 1; \ |
|
| 66 |
fi |
|
| 67 |
|
|
| 48 | 68 |
html-local: $(DOC_PNG_IMAGES) |
| ... | ... |
@@ -49,2 +49,4 @@ |
| 49 | 49 |
typedef typename Parent::Value Value; |
| 50 |
typedef typename Parent::Reference Reference; |
|
| 51 |
typedef typename Parent::ConstReference ConstReference; |
|
| 50 | 52 |
|
| ... | ... |
@@ -189,2 +191,4 @@ |
| 189 | 191 |
typedef typename Parent::Value Value; |
| 192 |
typedef typename Parent::Reference Reference; |
|
| 193 |
typedef typename Parent::ConstReference ConstReference; |
|
| 190 | 194 |
| ... | ... |
@@ -57,2 +57,3 @@ |
| 57 | 57 |
_cbc_model = 0; |
| 58 |
messageLevel(MESSAGE_NOTHING); |
|
| 58 | 59 |
} |
| ... | ... |
@@ -61,4 +62,6 @@ |
| 61 | 62 |
_prob = new CoinModel(*other._prob); |
| 63 |
_prob->setProblemName("LEMON");
|
|
| 62 | 64 |
_osi_solver = 0; |
| 63 | 65 |
_cbc_model = 0; |
| 66 |
messageLevel(MESSAGE_NOTHING); |
|
| 64 | 67 |
} |
| ... | ... |
@@ -272,20 +275,4 @@ |
| 272 | 275 |
|
| 273 |
switch (_message_level) {
|
|
| 274 |
case MESSAGE_NO_OUTPUT: |
|
| 275 |
_osi_solver->messageHandler()->setLogLevel(0); |
|
| 276 |
_cbc_model->setLogLevel(0); |
|
| 277 |
break; |
|
| 278 |
case MESSAGE_ERROR_MESSAGE: |
|
| 279 |
_osi_solver->messageHandler()->setLogLevel(1); |
|
| 280 |
_cbc_model->setLogLevel(1); |
|
| 281 |
break; |
|
| 282 |
case MESSAGE_NORMAL_OUTPUT: |
|
| 283 |
_osi_solver->messageHandler()->setLogLevel(2); |
|
| 284 |
_cbc_model->setLogLevel(2); |
|
| 285 |
break; |
|
| 286 |
case MESSAGE_FULL_OUTPUT: |
|
| 287 |
_osi_solver->messageHandler()->setLogLevel(3); |
|
| 288 |
_cbc_model->setLogLevel(3); |
|
| 289 |
break; |
|
| 290 |
} |
|
| 276 |
_osi_solver->messageHandler()->setLogLevel(_message_level); |
|
| 277 |
_cbc_model->setLogLevel(_message_level); |
|
| 291 | 278 |
|
| ... | ... |
@@ -455,4 +442,20 @@ |
| 455 | 442 |
|
| 456 |
void CbcMip::messageLevel(MessageLevel m) {
|
|
| 457 |
_message_level = m; |
|
| 443 |
void CbcMip::_messageLevel(MessageLevel level) {
|
|
| 444 |
switch (level) {
|
|
| 445 |
case MESSAGE_NOTHING: |
|
| 446 |
_message_level = 0; |
|
| 447 |
break; |
|
| 448 |
case MESSAGE_ERROR: |
|
| 449 |
_message_level = 1; |
|
| 450 |
break; |
|
| 451 |
case MESSAGE_WARNING: |
|
| 452 |
_message_level = 1; |
|
| 453 |
break; |
|
| 454 |
case MESSAGE_NORMAL: |
|
| 455 |
_message_level = 2; |
|
| 456 |
break; |
|
| 457 |
case MESSAGE_VERBOSE: |
|
| 458 |
_message_level = 3; |
|
| 459 |
break; |
|
| 460 |
} |
|
| 458 | 461 |
} |
| ... | ... |
@@ -117,29 +117,8 @@ |
| 117 | 117 |
|
| 118 |
|
|
| 118 |
virtual void _messageLevel(MessageLevel level); |
|
| 119 |
void _applyMessageLevel(); |
|
| 119 | 120 |
|
| 120 |
///Enum for \c messageLevel() parameter |
|
| 121 |
enum MessageLevel {
|
|
| 122 |
/// no output (default value) |
|
| 123 |
MESSAGE_NO_OUTPUT = 0, |
|
| 124 |
/// error messages only |
|
| 125 |
MESSAGE_ERROR_MESSAGE = 1, |
|
| 126 |
/// normal output |
|
| 127 |
MESSAGE_NORMAL_OUTPUT = 2, |
|
| 128 |
/// full output (includes informational messages) |
|
| 129 |
MESSAGE_FULL_OUTPUT = 3 |
|
| 130 |
|
|
| 121 |
int _message_level; |
|
| 131 | 122 |
|
| 132 |
private: |
|
| 133 |
|
|
| 134 |
MessageLevel _message_level; |
|
| 135 |
|
|
| 136 |
public: |
|
| 137 |
|
|
| 138 |
///Set the verbosity of the messages |
|
| 139 |
|
|
| 140 |
///Set the verbosity of the messages |
|
| 141 |
/// |
|
| 142 |
///\param m is the level of the messages output by the solver routines. |
|
| 143 |
void messageLevel(MessageLevel m); |
|
| 144 |
|
|
| 123 |
|
|
| 145 | 124 |
| ... | ... |
@@ -455,3 +455,3 @@ |
| 455 | 455 |
for(NodeIt n(_g);n!=INVALID;++n) {
|
| 456 |
_excess |
|
| 456 |
(*_excess)[n] = (*_delta)[n]; |
|
| 457 | 457 |
} |
| ... | ... |
@@ -460,4 +460,4 @@ |
| 460 | 460 |
_flow->set(e, (*_lo)[e]); |
| 461 |
_excess->set(_g.target(e), (*_excess)[_g.target(e)] + (*_flow)[e]); |
|
| 462 |
_excess->set(_g.source(e), (*_excess)[_g.source(e)] - (*_flow)[e]); |
|
| 461 |
(*_excess)[_g.target(e)] += (*_flow)[e]; |
|
| 462 |
(*_excess)[_g.source(e)] -= (*_flow)[e]; |
|
| 463 | 463 |
} |
| ... | ... |
@@ -484,3 +484,3 @@ |
| 484 | 484 |
for(NodeIt n(_g);n!=INVALID;++n) {
|
| 485 |
_excess |
|
| 485 |
(*_excess)[n] = (*_delta)[n]; |
|
| 486 | 486 |
} |
| ... | ... |
@@ -490,8 +490,8 @@ |
| 490 | 490 |
_flow->set(e, (*_up)[e]); |
| 491 |
_excess->set(_g.target(e), (*_excess)[_g.target(e)] + (*_up)[e]); |
|
| 492 |
_excess->set(_g.source(e), (*_excess)[_g.source(e)] - (*_up)[e]); |
|
| 491 |
(*_excess)[_g.target(e)] += (*_up)[e]; |
|
| 492 |
(*_excess)[_g.source(e)] -= (*_up)[e]; |
|
| 493 | 493 |
} else if (_tol.positive((*_excess)[_g.target(e)] + (*_lo)[e])) {
|
| 494 | 494 |
_flow->set(e, (*_lo)[e]); |
| 495 |
_excess->set(_g.target(e), (*_excess)[_g.target(e)] + (*_lo)[e]); |
|
| 496 |
_excess->set(_g.source(e), (*_excess)[_g.source(e)] - (*_lo)[e]); |
|
| 495 |
(*_excess)[_g.target(e)] += (*_lo)[e]; |
|
| 496 |
(*_excess)[_g.source(e)] -= (*_lo)[e]; |
|
| 497 | 497 |
} else {
|
| ... | ... |
@@ -499,4 +499,4 @@ |
| 499 | 499 |
_flow->set(e, fc); |
| 500 |
_excess->set(_g.target(e), 0); |
|
| 501 |
_excess->set(_g.source(e), (*_excess)[_g.source(e)] - fc); |
|
| 500 |
(*_excess)[_g.target(e)] = 0; |
|
| 501 |
(*_excess)[_g.source(e)] -= fc; |
|
| 502 | 502 |
} |
| ... | ... |
@@ -539,6 +539,6 @@ |
| 539 | 539 |
_flow->set(e, (*_flow)[e] + exc); |
| 540 |
|
|
| 540 |
(*_excess)[v] += exc; |
|
| 541 | 541 |
if(!_level->active(v) && _tol.positive((*_excess)[v])) |
| 542 | 542 |
_level->activate(v); |
| 543 |
|
|
| 543 |
(*_excess)[act] = 0; |
|
| 544 | 544 |
_level->deactivate(act); |
| ... | ... |
@@ -548,3 +548,3 @@ |
| 548 | 548 |
_flow->set(e, (*_up)[e]); |
| 549 |
|
|
| 549 |
(*_excess)[v] += fc; |
|
| 550 | 550 |
if(!_level->active(v) && _tol.positive((*_excess)[v])) |
| ... | ... |
@@ -563,6 +563,6 @@ |
| 563 | 563 |
_flow->set(e, (*_flow)[e] - exc); |
| 564 |
|
|
| 564 |
(*_excess)[v] += exc; |
|
| 565 | 565 |
if(!_level->active(v) && _tol.positive((*_excess)[v])) |
| 566 | 566 |
_level->activate(v); |
| 567 |
|
|
| 567 |
(*_excess)[act] = 0; |
|
| 568 | 568 |
_level->deactivate(act); |
| ... | ... |
@@ -572,3 +572,3 @@ |
| 572 | 572 |
_flow->set(e, (*_lo)[e]); |
| 573 |
|
|
| 573 |
(*_excess)[v] += fc; |
|
| 574 | 574 |
if(!_level->active(v) && _tol.positive((*_excess)[v])) |
| ... | ... |
@@ -581,3 +581,3 @@ |
| 581 | 581 |
|
| 582 |
_excess |
|
| 582 |
(*_excess)[act] = exc; |
|
| 583 | 583 |
if(!_tol.positive(exc)) _level->deactivate(act); |
| ... | ... |
@@ -26,3 +26,3 @@ |
| 26 | 26 |
_init_temporals(); |
| 27 |
messageLevel( |
|
| 27 |
messageLevel(MESSAGE_NOTHING); |
|
| 28 | 28 |
} |
| ... | ... |
@@ -34,3 +34,3 @@ |
| 34 | 34 |
_init_temporals(); |
| 35 |
messageLevel( |
|
| 35 |
messageLevel(MESSAGE_NOTHING); |
|
| 36 | 36 |
} |
| ... | ... |
@@ -432,4 +432,20 @@ |
| 432 | 432 |
|
| 433 |
void ClpLp::messageLevel(MessageLevel m) {
|
|
| 434 |
_prob->setLogLevel(static_cast<int>(m)); |
|
| 433 |
void ClpLp::_messageLevel(MessageLevel level) {
|
|
| 434 |
switch (level) {
|
|
| 435 |
case MESSAGE_NOTHING: |
|
| 436 |
_prob->setLogLevel(0); |
|
| 437 |
break; |
|
| 438 |
case MESSAGE_ERROR: |
|
| 439 |
_prob->setLogLevel(1); |
|
| 440 |
break; |
|
| 441 |
case MESSAGE_WARNING: |
|
| 442 |
_prob->setLogLevel(2); |
|
| 443 |
break; |
|
| 444 |
case MESSAGE_NORMAL: |
|
| 445 |
_prob->setLogLevel(3); |
|
| 446 |
break; |
|
| 447 |
case MESSAGE_VERBOSE: |
|
| 448 |
_prob->setLogLevel(4); |
|
| 449 |
break; |
|
| 450 |
} |
|
| 435 | 451 |
} |
| ... | ... |
@@ -138,2 +138,4 @@ |
| 138 | 138 |
|
| 139 |
virtual void _messageLevel(MessageLevel); |
|
| 140 |
|
|
| 139 | 141 |
public: |
| ... | ... |
@@ -155,22 +157,2 @@ |
| 155 | 157 |
|
| 156 |
///Enum for \c messageLevel() parameter |
|
| 157 |
enum MessageLevel {
|
|
| 158 |
/// no output (default value) |
|
| 159 |
MESSAGE_NO_OUTPUT = 0, |
|
| 160 |
/// print final solution |
|
| 161 |
MESSAGE_FINAL_SOLUTION = 1, |
|
| 162 |
/// print factorization |
|
| 163 |
MESSAGE_FACTORIZATION = 2, |
|
| 164 |
/// normal output |
|
| 165 |
MESSAGE_NORMAL_OUTPUT = 3, |
|
| 166 |
/// verbose output |
|
| 167 |
MESSAGE_VERBOSE_OUTPUT = 4 |
|
| 168 |
}; |
|
| 169 |
///Set the verbosity of the messages |
|
| 170 |
|
|
| 171 |
///Set the verbosity of the messages |
|
| 172 |
/// |
|
| 173 |
///\param m is the level of the messages output by the solver routines. |
|
| 174 |
void messageLevel(MessageLevel m); |
|
| 175 |
|
|
| 176 | 158 |
}; |
| ... | ... |
@@ -423,8 +423,7 @@ |
| 423 | 423 |
|
| 424 |
/// \brief |
|
| 424 |
/// \brief Reference map of the nodes to type \c T. |
|
| 425 | 425 |
/// |
| 426 |
/// ReadWrite map of the nodes to type \c T. |
|
| 427 |
/// \sa Reference |
|
| 426 |
/// Reference map of the nodes to type \c T. |
|
| 428 | 427 |
template<class T> |
| 429 |
class NodeMap : public |
|
| 428 |
class NodeMap : public ReferenceMap<Node, T, T&, const T&> {
|
|
| 430 | 429 |
public: |
| ... | ... |
@@ -438,3 +437,4 @@ |
| 438 | 437 |
///Copy constructor |
| 439 |
NodeMap(const NodeMap& nm) : |
|
| 438 |
NodeMap(const NodeMap& nm) : |
|
| 439 |
ReferenceMap<Node, T, T&, const T&>(nm) { }
|
|
| 440 | 440 |
///Assignment operator |
| ... | ... |
@@ -447,8 +447,7 @@ |
| 447 | 447 |
|
| 448 |
/// \brief |
|
| 448 |
/// \brief Reference map of the arcs to type \c T. |
|
| 449 | 449 |
/// |
| 450 | 450 |
/// Reference map of the arcs to type \c T. |
| 451 |
/// \sa Reference |
|
| 452 | 451 |
template<class T> |
| 453 |
class ArcMap : public |
|
| 452 |
class ArcMap : public ReferenceMap<Arc, T, T&, const T&> {
|
|
| 454 | 453 |
public: |
| ... | ... |
@@ -461,3 +460,4 @@ |
| 461 | 460 |
///Copy constructor |
| 462 |
ArcMap(const ArcMap& em) : |
|
| 461 |
ArcMap(const ArcMap& em) : |
|
| 462 |
ReferenceMap<Arc, T, T&, const T&>(em) { }
|
|
| 463 | 463 |
///Assignment operator |
| ... | ... |
@@ -473,2 +473,3 @@ |
| 473 | 473 |
void constraints() {
|
| 474 |
checkConcept<BaseDigraphComponent, _Digraph>(); |
|
| 474 | 475 |
checkConcept<IterableDigraphComponent<>, _Digraph>(); |
| ... | ... |
@@ -499,8 +499,7 @@ |
| 499 | 499 |
|
| 500 |
/// \brief |
|
| 500 |
/// \brief Reference map of the nodes to type \c T. |
|
| 501 | 501 |
/// |
| 502 |
/// ReadWrite map of the nodes to type \c T. |
|
| 503 |
/// \sa Reference |
|
| 502 |
/// Reference map of the nodes to type \c T. |
|
| 504 | 503 |
template<class T> |
| 505 |
class NodeMap : public |
|
| 504 |
class NodeMap : public ReferenceMap<Node, T, T&, const T&> |
|
| 506 | 505 |
{
|
| ... | ... |
@@ -515,3 +514,4 @@ |
| 515 | 514 |
///Copy constructor |
| 516 |
NodeMap(const NodeMap& nm) : |
|
| 515 |
NodeMap(const NodeMap& nm) : |
|
| 516 |
ReferenceMap<Node, T, T&, const T&>(nm) { }
|
|
| 517 | 517 |
///Assignment operator |
| ... | ... |
@@ -524,8 +524,7 @@ |
| 524 | 524 |
|
| 525 |
/// \brief |
|
| 525 |
/// \brief Reference map of the arcs to type \c T. |
|
| 526 | 526 |
/// |
| 527 |
/// Reference map of the directed arcs to type \c T. |
|
| 528 |
/// \sa Reference |
|
| 527 |
/// Reference map of the arcs to type \c T. |
|
| 529 | 528 |
template<class T> |
| 530 |
class ArcMap : public |
|
| 529 |
class ArcMap : public ReferenceMap<Arc, T, T&, const T&> |
|
| 531 | 530 |
{
|
| ... | ... |
@@ -539,3 +538,4 @@ |
| 539 | 538 |
///Copy constructor |
| 540 |
ArcMap(const ArcMap& em) : |
|
| 539 |
ArcMap(const ArcMap& em) : |
|
| 540 |
ReferenceMap<Arc, T, T&, const T&>(em) { }
|
|
| 541 | 541 |
///Assignment operator |
| ... | ... |
@@ -548,8 +548,7 @@ |
| 548 | 548 |
|
| 549 |
/// |
|
| 549 |
/// Reference map of the edges to type \c T. |
|
| 550 | 550 |
|
| 551 |
/// Reference map of the arcs to type \c T. |
|
| 552 |
/// \sa Reference |
|
| 551 |
/// Reference map of the edges to type \c T. |
|
| 553 | 552 |
template<class T> |
| 554 |
class EdgeMap : public |
|
| 553 |
class EdgeMap : public ReferenceMap<Edge, T, T&, const T&> |
|
| 555 | 554 |
{
|
| ... | ... |
@@ -563,3 +562,4 @@ |
| 563 | 562 |
///Copy constructor |
| 564 |
EdgeMap(const EdgeMap& em) : |
|
| 563 |
EdgeMap(const EdgeMap& em) : |
|
| 564 |
ReferenceMap<Edge, T, T&, const T&>(em) {}
|
|
| 565 | 565 |
///Assignment operator |
| ... | ... |
@@ -750,2 +750,3 @@ |
| 750 | 750 |
void constraints() {
|
| 751 |
checkConcept<BaseGraphComponent, _Graph>(); |
|
| 751 | 752 |
checkConcept<IterableGraphComponent<>, _Graph>(); |
| ... | ... |
@@ -33,13 +33,12 @@ |
| 33 | 33 |
|
| 34 |
/// \brief |
|
| 34 |
/// \brief Concept class for \c Node, \c Arc and \c Edge types. |
|
| 35 | 35 |
/// |
| 36 |
/// This class describes the interface of Node and Arc (and Edge |
|
| 37 |
/// in undirected graphs) subtypes of graph types. |
|
| 36 |
/// This class describes the concept of \c Node, \c Arc and \c Edge |
|
| 37 |
/// subtypes of digraph and graph types. |
|
| 38 | 38 |
/// |
| 39 | 39 |
/// \note This class is a template class so that we can use it to |
| 40 |
/// create graph skeleton classes. The reason for this is than Node |
|
| 41 |
/// and Arc types should \em not derive from the same base class. |
|
| 42 |
/// For Node you should instantiate it with character 'n' and for Arc |
|
| 43 |
/// with 'a'. |
|
| 44 |
|
|
| 40 |
/// create graph skeleton classes. The reason for this is that \c Node |
|
| 41 |
/// and \c Arc (or \c Edge) types should \e not derive from the same |
|
| 42 |
/// base class. For \c Node you should instantiate it with character |
|
| 43 |
/// \c 'n', for \c Arc with \c 'a' and for \c Edge with \c 'e'. |
|
| 45 | 44 |
#ifndef DOXYGEN |
| ... | ... |
@@ -51,2 +50,3 @@ |
| 51 | 50 |
/// |
| 51 |
/// Default constructor. |
|
| 52 | 52 |
/// \warning The default constructor is not required to set |
| ... | ... |
@@ -55,2 +55,3 @@ |
| 55 | 55 |
GraphItem() {}
|
| 56 |
|
|
| 56 | 57 |
/// \brief Copy constructor. |
| ... | ... |
@@ -58,29 +59,31 @@ |
| 58 | 59 |
/// Copy constructor. |
| 60 |
GraphItem(const GraphItem &) {}
|
|
| 61 |
|
|
| 62 |
/// \brief Constructor for conversion from \c INVALID. |
|
| 59 | 63 |
/// |
| 60 |
GraphItem(const GraphItem &) {}
|
|
| 61 |
/// \brief Invalid constructor \& conversion. |
|
| 62 |
/// |
|
| 63 |
/// This constructor initializes the item to be invalid. |
|
| 64 |
/// Constructor for conversion from \c INVALID. |
|
| 65 |
/// It initializes the item to be invalid. |
|
| 64 | 66 |
/// \sa Invalid for more details. |
| 65 | 67 |
GraphItem(Invalid) {}
|
| 66 |
|
|
| 68 |
|
|
| 69 |
/// \brief Assignment operator. |
|
| 67 | 70 |
/// |
| 68 |
/// The nodes are assignable. |
|
| 69 |
/// |
|
| 70 |
|
|
| 71 |
/// Assignment operator for the item. |
|
| 72 |
GraphItem& operator=(const GraphItem&) { return *this; }
|
|
| 73 |
|
|
| 71 | 74 |
/// \brief Equality operator. |
| 72 | 75 |
/// |
| 73 |
/// Two iterators are equal if and only if they represents the |
|
| 74 |
/// same node in the graph or both are invalid. |
|
| 75 |
|
|
| 76 |
/// Equality operator. |
|
| 77 |
bool operator==(const GraphItem&) const { return false; }
|
|
| 78 |
|
|
| 76 | 79 |
/// \brief Inequality operator. |
| 77 | 80 |
/// |
| 78 |
/// |
|
| 81 |
/// Inequality operator. |
|
| 82 |
bool operator!=(const GraphItem&) const { return false; }
|
|
| 83 |
|
|
| 84 |
/// \brief Ordering operator. |
|
| 79 | 85 |
/// |
| 80 |
bool operator!=(GraphItem) const { return false; }
|
|
| 81 |
|
|
| 82 |
/// \brief Artificial ordering operator. |
|
| 83 |
/// |
|
| 84 |
/// To allow the use of graph descriptors as key type in std::map or |
|
| 85 |
/// similar associative container we require this. |
|
| 86 |
/// This operator defines an ordering of the items. |
|
| 87 |
/// It makes possible to use graph item types as key types in |
|
| 88 |
/// associative containers (e.g. \c std::map). |
|
| 86 | 89 |
/// |
| ... | ... |
@@ -89,3 +92,3 @@ |
| 89 | 92 |
/// ordering of the items. |
| 90 |
bool operator<(GraphItem) const { return false; }
|
|
| 93 |
bool operator<(const GraphItem&) const { return false; }
|
|
| 91 | 94 |
|
| ... | ... |
@@ -101,3 +104,2 @@ |
| 101 | 104 |
bool b; |
| 102 |
// b = (ia == ib) && (ia != ib) && (ia < ib); |
|
| 103 | 105 |
b = (ia == ib) && (ia != ib); |
| ... | ... |
@@ -112,9 +114,8 @@ |
| 112 | 114 |
|
| 113 |
/// \brief |
|
| 115 |
/// \brief Base skeleton class for directed graphs. |
|
| 114 | 116 |
/// |
| 115 |
/// This class provides the minimal set of features needed for a |
|
| 116 |
/// directed graph structure. All digraph concepts have to |
|
| 117 |
/// conform to this base directed graph. It just provides types |
|
| 118 |
/// for nodes and arcs and functions to get the source and the |
|
| 119 |
/// |
|
| 117 |
/// This class describes the base interface of directed graph types. |
|
| 118 |
/// All digraph %concepts have to conform to this class. |
|
| 119 |
/// It just provides types for nodes and arcs and functions |
|
| 120 |
/// to get the source and the target nodes of arcs. |
|
| 120 | 121 |
class BaseDigraphComponent {
|
| ... | ... |
@@ -126,4 +127,3 @@ |
| 126 | 127 |
/// |
| 127 |
/// This class represents the Nodes of the digraph. |
|
| 128 |
/// |
|
| 128 |
/// This class represents the nodes of the digraph. |
|
| 129 | 129 |
typedef GraphItem<'n'> Node; |
| ... | ... |
@@ -132,21 +132,18 @@ |
| 132 | 132 |
/// |
| 133 |
/// This class represents the |
|
| 133 |
/// This class represents the arcs of the digraph. |
|
| 134 |
typedef GraphItem<'a'> Arc; |
|
| 135 |
|
|
| 136 |
/// \brief Return the source node of an arc. |
|
| 134 | 137 |
/// |
| 135 |
|
|
| 138 |
/// This function returns the source node of an arc. |
|
| 139 |
Node source(const Arc&) const { return INVALID; }
|
|
| 136 | 140 |
|
| 137 |
/// \brief |
|
| 141 |
/// \brief Return the target node of an arc. |
|
| 138 | 142 |
/// |
| 139 |
/// |
|
| 143 |
/// This function returns the target node of an arc. |
|
| 144 |
Node target(const Arc&) const { return INVALID; }
|
|
| 145 |
|
|
| 146 |
/// \brief Return the opposite node on the given arc. |
|
| 140 | 147 |
/// |
| 141 |
Node target(const Arc&) const { return INVALID;}
|
|
| 142 |
|
|
| 143 |
/// \brief Gives back the source node of an arc. |
|
| 144 |
/// |
|
| 145 |
/// Gives back the source node of an arc. |
|
| 146 |
/// |
|
| 147 |
Node source(const Arc&) const { return INVALID;}
|
|
| 148 |
|
|
| 149 |
/// \brief Gives back the opposite node on the given arc. |
|
| 150 |
/// |
|
| 151 |
/// |
|
| 148 |
/// This function returns the opposite node on the given arc. |
|
| 152 | 149 |
Node oppositeNode(const Node&, const Arc&) const {
|
| ... | ... |
@@ -176,11 +173,9 @@ |
| 176 | 173 |
|
| 177 |
/// \brief |
|
| 174 |
/// \brief Base skeleton class for undirected graphs. |
|
| 178 | 175 |
/// |
| 179 |
/// This class provides the minimal set of features needed for an |
|
| 180 |
/// undirected graph structure. All undirected graph concepts have |
|
| 181 |
/// to conform to this base graph. It just provides types for |
|
| 182 |
/// nodes, arcs and edges and functions to get the |
|
| 183 |
/// source and the target of the arcs and edges, |
|
| 184 |
/// conversion from arcs to edges and function to get |
|
| 185 |
/// |
|
| 176 |
/// This class describes the base interface of undirected graph types. |
|
| 177 |
/// All graph %concepts have to conform to this class. |
|
| 178 |
/// It extends the interface of \ref BaseDigraphComponent with an |
|
| 179 |
/// \c Edge type and functions to get the end nodes of edges, |
|
| 180 |
/// to convert from arcs to edges and to get both direction of edges. |
|
| 186 | 181 |
class BaseGraphComponent : public BaseDigraphComponent {
|
| ... | ... |
@@ -189,14 +184,15 @@ |
| 189 | 184 |
typedef BaseDigraphComponent::Arc Arc; |
| 190 |
|
|
| 185 |
|
|
| 186 |
/// \brief Undirected edge class of the graph. |
|
| 191 | 187 |
/// |
| 192 |
/// This class represents the edges of the graph. |
|
| 193 |
/// The undirected graphs can be used as a directed graph which |
|
| 194 |
/// for each arc contains the opposite arc too so the graph is |
|
| 195 |
/// bidirected. The edge represents two opposite |
|
| 196 |
/// directed arcs. |
|
| 197 |
class Edge : public GraphItem<'u'> {
|
|
| 188 |
/// This class represents the undirected edges of the graph. |
|
| 189 |
/// Undirected graphs can be used as directed graphs, each edge is |
|
| 190 |
/// represented by two opposite directed arcs. |
|
| 191 |
class Edge : public GraphItem<'e'> {
|
|
| 198 | 192 |
public: |
| 199 |
typedef GraphItem<' |
|
| 193 |
typedef GraphItem<'e'> Parent; |
|
| 194 |
|
|
| 200 | 195 |
/// \brief Default constructor. |
| 201 | 196 |
/// |
| 197 |
/// Default constructor. |
|
| 202 | 198 |
/// \warning The default constructor is not required to set |
| ... | ... |
@@ -205,2 +201,3 @@ |
| 205 | 201 |
Edge() {}
|
| 202 |
|
|
| 206 | 203 |
/// \brief Copy constructor. |
| ... | ... |
@@ -208,11 +205,14 @@ |
| 208 | 205 |
/// Copy constructor. |
| 206 |
Edge(const Edge &) : Parent() {}
|
|
| 207 |
|
|
| 208 |
/// \brief Constructor for conversion from \c INVALID. |
|
| 209 | 209 |
/// |
| 210 |
Edge(const Edge &) : Parent() {}
|
|
| 211 |
/// \brief Invalid constructor \& conversion. |
|
| 212 |
/// |
|
| 213 |
/// This constructor initializes the item to be invalid. |
|
| 210 |
/// Constructor for conversion from \c INVALID. |
|
| 211 |
/// It initializes the item to be invalid. |
|
| 214 | 212 |
/// \sa Invalid for more details. |
| 215 | 213 |
Edge(Invalid) {}
|
| 216 |
|
|
| 214 |
|
|
| 215 |
/// \brief Constructor for conversion from an arc. |
|
| 217 | 216 |
/// |
| 217 |
/// Constructor for conversion from an arc. |
|
| 218 | 218 |
/// Besides the core graph item functionality each arc should |
| ... | ... |
@@ -220,4 +220,6 @@ |
| 220 | 220 |
Edge(const Arc&) {}
|
| 221 |
|
|
| 221 |
|
|
| 222 |
/// \brief Assign an arc to an edge. |
|
| 222 | 223 |
/// |
| 224 |
/// This function assigns an arc to an edge. |
|
| 223 | 225 |
/// Besides the core graph item functionality each arc should |
| ... | ... |
@@ -227,3 +229,25 @@ |
| 227 | 229 |
|
| 228 |
/// \brief |
|
| 230 |
/// \brief Return one end node of an edge. |
|
| 231 |
/// |
|
| 232 |
/// This function returns one end node of an edge. |
|
| 233 |
Node u(const Edge&) const { return INVALID; }
|
|
| 234 |
|
|
| 235 |
/// \brief Return the other end node of an edge. |
|
| 236 |
/// |
|
| 237 |
/// This function returns the other end node of an edge. |
|
| 238 |
Node v(const Edge&) const { return INVALID; }
|
|
| 239 |
|
|
| 240 |
/// \brief Return a directed arc related to an edge. |
|
| 241 |
/// |
|
| 242 |
/// This function returns a directed arc from its direction and the |
|
| 243 |
/// represented edge. |
|
| 244 |
Arc direct(const Edge&, bool) const { return INVALID; }
|
|
| 245 |
|
|
| 246 |
/// \brief Return a directed arc related to an edge. |
|
| 247 |
/// |
|
| 248 |
/// This function returns a directed arc from its source node and the |
|
| 249 |
/// represented edge. |
|
| 250 |
Arc direct(const Edge&, const Node&) const { return INVALID; }
|
|
| 251 |
|
|
| 252 |
/// \brief Return the direction of the arc. |
|
| 229 | 253 |
/// |
| ... | ... |
@@ -234,29 +258,7 @@ |
| 234 | 258 |
|
| 235 |
/// \brief |
|
| 259 |
/// \brief Return the opposite arc. |
|
| 236 | 260 |
/// |
| 237 |
/// Returns the directed arc from its direction and the |
|
| 238 |
/// represented edge. |
|
| 239 |
Arc direct(const Edge&, bool) const { return INVALID;}
|
|
| 240 |
|
|
| 241 |
/// \brief Returns the directed arc. |
|
| 242 |
/// |
|
| 243 |
/// Returns the directed arc from its source and the |
|
| 244 |
/// represented edge. |
|
| 245 |
Arc direct(const Edge&, const Node&) const { return INVALID;}
|
|
| 246 |
|
|
| 247 |
/// \brief Returns the opposite arc. |
|
| 248 |
/// |
|
| 249 |
/// Returns the opposite arc. It is the arc representing the |
|
| 250 |
/// same edge and has opposite direction. |
|
| 251 |
Arc oppositeArc(const Arc&) const { return INVALID;}
|
|
| 252 |
|
|
| 253 |
/// \brief Gives back one ending of an edge. |
|
| 254 |
/// |
|
| 255 |
/// Gives back one ending of an edge. |
|
| 256 |
Node u(const Edge&) const { return INVALID;}
|
|
| 257 |
|
|
| 258 |
/// \brief Gives back the other ending of an edge. |
|
| 259 |
/// |
|
| 260 |
/// Gives back the other ending of an edge. |
|
| 261 |
|
|
| 261 |
/// This function returns the opposite arc, i.e. the arc representing |
|
| 262 |
/// the same edge and has opposite direction. |
|
| 263 |
Arc oppositeArc(const Arc&) const { return INVALID; }
|
|
| 262 | 264 |
|
| ... | ... |
@@ -270,3 +272,3 @@ |
| 270 | 272 |
checkConcept<BaseDigraphComponent, _Graph>(); |
| 271 |
checkConcept<GraphItem<' |
|
| 273 |
checkConcept<GraphItem<'e'>, Edge>(); |
|
| 272 | 274 |
{
|
| ... | ... |
@@ -278,2 +280,3 @@ |
| 278 | 280 |
e = graph.direct(ue, true); |
| 281 |
e = graph.direct(ue, false); |
|
| 279 | 282 |
e = graph.direct(ue, n); |
| ... | ... |
@@ -291,8 +294,8 @@ |
| 291 | 294 |
|
| 292 |
/// \brief |
|
| 295 |
/// \brief Skeleton class for \e idable directed graphs. |
|
| 293 | 296 |
/// |
| 294 |
/// This class provides beside the core digraph features |
|
| 295 |
/// core id functions for the digraph structure. |
|
| 296 |
/// The most of the base digraphs should conform to this concept. |
|
| 297 |
/// The id's are unique and immutable. |
|
| 297 |
/// This class describes the interface of \e idable directed graphs. |
|
| 298 |
/// It extends \ref BaseDigraphComponent with the core ID functions. |
|
| 299 |
/// The ids of the items must be unique and immutable. |
|
| 300 |
/// This concept is part of the Digraph concept. |
|
| 298 | 301 |
template <typename BAS = BaseDigraphComponent> |
| ... | ... |
@@ -305,41 +308,39 @@ |
| 305 | 308 |
|
| 306 |
/// \brief |
|
| 309 |
/// \brief Return a unique integer id for the given node. |
|
| 307 | 310 |
/// |
| 308 |
/// |
|
| 311 |
/// This function returns a unique integer id for the given node. |
|
| 312 |
int id(const Node&) const { return -1; }
|
|
| 313 |
|
|
| 314 |
/// \brief Return the node by its unique id. |
|
| 309 | 315 |
/// |
| 310 |
|
|
| 316 |
/// This function returns the node by its unique id. |
|
| 317 |
/// If the digraph does not contain a node with the given id, |
|
| 318 |
/// then the result of the function is undefined. |
|
| 319 |
Node nodeFromId(int) const { return INVALID; }
|
|
| 311 | 320 |
|
| 312 |
/// \brief |
|
| 321 |
/// \brief Return a unique integer id for the given arc. |
|
| 313 | 322 |
/// |
| 314 |
/// Gives back the node by the unique id. |
|
| 315 |
/// If the digraph does not contain node with the given id |
|
| 316 |
/// then the result of the function is undetermined. |
|
| 317 |
Node nodeFromId(int) const { return INVALID;}
|
|
| 323 |
/// This function returns a unique integer id for the given arc. |
|
| 324 |
int id(const Arc&) const { return -1; }
|
|
| 318 | 325 |
|
| 319 |
/// \brief |
|
| 326 |
/// \brief Return the arc by its unique id. |
|
| 320 | 327 |
/// |
| 321 |
/// |
|
| 328 |
/// This function returns the arc by its unique id. |
|
| 329 |
/// If the digraph does not contain an arc with the given id, |
|
| 330 |
/// then the result of the function is undefined. |
|
| 331 |
Arc arcFromId(int) const { return INVALID; }
|
|
| 332 |
|
|
| 333 |
/// \brief Return an integer greater or equal to the maximum |
|
| 334 |
/// node id. |
|
| 322 | 335 |
/// |
| 323 |
|
|
| 336 |
/// This function returns an integer greater or equal to the |
|
| 337 |
/// maximum node id. |
|
| 338 |
int maxNodeId() const { return -1; }
|
|
| 324 | 339 |
|
| 325 |
/// \brief |
|
| 340 |
/// \brief Return an integer greater or equal to the maximum |
|
| 341 |
/// arc id. |
|
| 326 | 342 |
/// |
| 327 |
/// Gives back the arc by the unique id. |
|
| 328 |
/// If the digraph does not contain arc with the given id |
|
| 329 |
/// then the result of the function is undetermined. |
|
| 330 |
Arc arcFromId(int) const { return INVALID;}
|
|
| 331 |
|
|
| 332 |
/// \brief Gives back an integer greater or equal to the maximum |
|
| 333 |
/// Node id. |
|
| 334 |
/// |
|
| 335 |
/// Gives back an integer greater or equal to the maximum Node |
|
| 336 |
/// id. |
|
| 337 |
int maxNodeId() const { return -1;}
|
|
| 338 |
|
|
| 339 |
/// \brief Gives back an integer greater or equal to the maximum |
|
| 340 |
/// Arc id. |
|
| 341 |
/// |
|
| 342 |
/// Gives back an integer greater or equal to the maximum Arc |
|
| 343 |
/// id. |
|
| 344 |
int maxArcId() const { return -1;}
|
|
| 343 |
/// This function returns an integer greater or equal to the |
|
| 344 |
/// maximum arc id. |
|
| 345 |
int maxArcId() const { return -1; }
|
|
| 345 | 346 |
|
| ... | ... |
@@ -369,8 +370,9 @@ |
| 369 | 370 |
|
| 370 |
/// \brief |
|
| 371 |
/// \brief Skeleton class for \e idable undirected graphs. |
|
| 371 | 372 |
/// |
| 372 |
/// This class provides beside the core undirected graph features |
|
| 373 |
/// core id functions for the undirected graph structure. The |
|
| 374 |
/// most of the base undirected graphs should conform to this |
|
| 375 |
/// concept. The id's are unique and immutable. |
|
| 373 |
/// This class describes the interface of \e idable undirected |
|
| 374 |
/// graphs. It extends \ref IDableDigraphComponent with the core ID |
|
| 375 |
/// functions of undirected graphs. |
|
| 376 |
/// The ids of the items must be unique and immutable. |
|
| 377 |
/// This concept is part of the Graph concept. |
|
| 376 | 378 |
template <typename BAS = BaseGraphComponent> |
| ... | ... |
@@ -384,21 +386,20 @@ |
| 384 | 386 |
|
| 385 |
/// \brief |
|
| 387 |
/// \brief Return a unique integer id for the given edge. |
|
| 386 | 388 |
/// |
| 387 |
/// |
|
| 389 |
/// This function returns a unique integer id for the given edge. |
|
| 390 |
int id(const Edge&) const { return -1; }
|
|
| 391 |
|
|
| 392 |
/// \brief Return the edge by its unique id. |
|
| 388 | 393 |
/// |
| 389 |
|
|
| 394 |
/// This function returns the edge by its unique id. |
|
| 395 |
/// If the graph does not contain an edge with the given id, |
|
| 396 |
/// then the result of the function is undefined. |
|
| 397 |
Edge edgeFromId(int) const { return INVALID; }
|
|
| 390 | 398 |
|
| 391 |
/// \brief |
|
| 399 |
/// \brief Return an integer greater or equal to the maximum |
|
| 400 |
/// edge id. |
|
| 392 | 401 |
/// |
| 393 |
/// Gives back the edge by the unique id. If the |
|
| 394 |
/// graph does not contain arc with the given id then the |
|
| 395 |
/// result of the function is undetermined. |
|
| 396 |
Edge edgeFromId(int) const { return INVALID;}
|
|
| 397 |
|
|
| 398 |
/// \brief Gives back an integer greater or equal to the maximum |
|
| 399 |
/// Edge id. |
|
| 400 |
/// |
|
| 401 |
/// Gives back an integer greater or equal to the maximum Edge |
|
| 402 |
/// id. |
|
| 403 |
|
|
| 402 |
/// This function returns an integer greater or equal to the |
|
| 403 |
/// maximum edge id. |
|
| 404 |
int maxEdgeId() const { return -1; }
|
|
| 404 | 405 |
|
| ... | ... |
@@ -408,3 +409,2 @@ |
| 408 | 409 |
void constraints() {
|
| 409 |
checkConcept<Base, _Graph >(); |
|
| 410 | 410 |
checkConcept<IDableDigraphComponent<Base>, _Graph >(); |
| ... | ... |
@@ -422,6 +422,6 @@ |
| 422 | 422 |
|
| 423 |
/// \brief |
|
| 423 |
/// \brief Concept class for \c NodeIt, \c ArcIt and \c EdgeIt types. |
|
| 424 | 424 |
/// |
| 425 |
/// Skeleton class for graph NodeIt and ArcIt. |
|
| 426 |
/// |
|
| 425 |
/// This class describes the concept of \c NodeIt, \c ArcIt and |
|
| 426 |
/// \c EdgeIt subtypes of digraph and graph types. |
|
| 427 | 427 |
template <typename GR, typename Item> |
| ... | ... |
@@ -431,5 +431,8 @@ |
| 431 | 431 |
/// |
| 432 |
/// @warning The default constructor sets the iterator |
|
| 433 |
/// to an undefined value. |
|
| 432 |
/// Default constructor. |
|
| 433 |
/// \warning The default constructor is not required to set |
|
| 434 |
/// the iterator to some well-defined value. So you should consider it |
|
| 435 |
/// as uninitialized. |
|
| 434 | 436 |
GraphItemIt() {}
|
| 437 |
|
|
| 435 | 438 |
/// \brief Copy constructor. |
| ... | ... |
@@ -437,26 +440,30 @@ |
| 437 | 440 |
/// Copy constructor. |
| 441 |
GraphItemIt(const GraphItemIt& it) : Item(it) {}
|
|
| 442 |
|
|
| 443 |
/// \brief Constructor that sets the iterator to the first item. |
|
| 438 | 444 |
/// |
| 439 |
GraphItemIt(const GraphItemIt& ) {}
|
|
| 440 |
/// \brief Sets the iterator to the first item. |
|
| 445 |
/// Constructor that sets the iterator to the first item. |
|
| 446 |
explicit GraphItemIt(const GR&) {}
|
|
| 447 |
|
|
| 448 |
/// \brief Constructor for conversion from \c INVALID. |
|
| 441 | 449 |
/// |
| 442 |
/// Sets the iterator to the first item of \c the graph. |
|
| 443 |
/// |
|
| 444 |
explicit GraphItemIt(const GR&) {}
|
|
| 445 |
/// \brief Invalid constructor \& conversion. |
|
| 446 |
/// |
|
| 447 |
/// This constructor initializes the item to be invalid. |
|
| 450 |
/// Constructor for conversion from \c INVALID. |
|
| 451 |
/// It initializes the iterator to be invalid. |
|
| 448 | 452 |
/// \sa Invalid for more details. |
| 449 | 453 |
GraphItemIt(Invalid) {}
|
| 450 |
|
|
| 454 |
|
|
| 455 |
/// \brief Assignment operator. |
|
| 451 | 456 |
/// |
| 452 |
/// |
|
| 457 |
/// Assignment operator for the iterator. |
|
| 458 |
GraphItemIt& operator=(const GraphItemIt&) { return *this; }
|
|
| 459 |
|
|
| 460 |
/// \brief Increment the iterator. |
|
| 453 | 461 |
/// |
| 454 |
GraphItemIt& operator=(const GraphItemIt&) { return *this; }
|
|
| 455 |
/// \brief Next item. |
|
| 456 |
/// |
|
| 457 |
/// Assign the iterator to the next item. |
|
| 458 |
/// |
|
| 462 |
/// This operator increments the iterator, i.e. assigns it to the |
|
| 463 |
/// next item. |
|
| 459 | 464 |
GraphItemIt& operator++() { return *this; }
|
| 465 |
|
|
| 460 | 466 |
/// \brief Equality operator |
| 461 | 467 |
/// |
| 468 |
/// Equality operator. |
|
| 462 | 469 |
/// Two iterators are equal if and only if they point to the |
| ... | ... |
@@ -464,6 +471,8 @@ |
| 464 | 471 |
bool operator==(const GraphItemIt&) const { return true;}
|
| 472 |
|
|
| 465 | 473 |
/// \brief Inequality operator |
| 466 | 474 |
/// |
| 467 |
/// \sa operator==(Node n) |
|
| 468 |
/// |
|
| 475 |
/// Inequality operator. |
|
| 476 |
/// Two iterators are equal if and only if they point to the |
|
| 477 |
/// same object or both are invalid. |
|
| 469 | 478 |
bool operator!=(const GraphItemIt&) const { return true;}
|
| ... | ... |
@@ -473,4 +482,7 @@ |
| 473 | 482 |
void constraints() {
|
| 483 |
checkConcept<GraphItem<>, _GraphItemIt>(); |
|
| 474 | 484 |
_GraphItemIt it1(g); |
| 475 | 485 |
_GraphItemIt it2; |
| 486 |
_GraphItemIt it3 = it1; |
|
| 487 |
_GraphItemIt it4 = INVALID; |
|
| 476 | 488 |
|
| ... | ... |
@@ -483,3 +495,3 @@ |
| 483 | 495 |
} |
| 484 |
GR& g; |
|
| 496 |
const GR& g; |
|
| 485 | 497 |
}; |
| ... | ... |
@@ -487,8 +499,12 @@ |
| 487 | 499 |
|
| 488 |
/// \brief |
|
| 500 |
/// \brief Concept class for \c InArcIt, \c OutArcIt and |
|
| 501 |
/// \c IncEdgeIt types. |
|
| 489 | 502 |
/// |
| 490 |
/// \note Because InArcIt and OutArcIt may not inherit from the same |
|
| 491 |
/// base class, the \c sel is a additional template parameter (selector). |
|
| 492 |
/// For InArcIt you should instantiate it with character 'i' and for |
|
| 493 |
/// OutArcIt with 'o'. |
|
| 503 |
/// This class describes the concept of \c InArcIt, \c OutArcIt |
|
| 504 |
/// and \c IncEdgeIt subtypes of digraph and graph types. |
|
| 505 |
/// |
|
| 506 |
/// \note Since these iterator classes do not inherit from the same |
|
| 507 |
/// base class, there is an additional template parameter (selector) |
|
| 508 |
/// \c sel. For \c InArcIt you should instantiate it with character |
|
| 509 |
/// \c 'i', for \c OutArcIt with \c 'o' and for \c IncEdgeIt with \c 'e'. |
|
| 494 | 510 |
template <typename GR, |
| ... | ... |
@@ -501,5 +517,8 @@ |
| 501 | 517 |
/// |
| 502 |
/// @warning The default constructor sets the iterator |
|
| 503 |
/// to an undefined value. |
|
| 518 |
/// Default constructor. |
|
| 519 |
/// \warning The default constructor is not required to set |
|
| 520 |
/// the iterator to some well-defined value. So you should consider it |
|
| 521 |
/// as uninitialized. |
|
| 504 | 522 |
GraphIncIt() {}
|
| 523 |
|
|
| 505 | 524 |
/// \brief Copy constructor. |
| ... | ... |
@@ -507,25 +526,27 @@ |
| 507 | 526 |
/// Copy constructor. |
| 527 |
GraphIncIt(const GraphIncIt& it) : Item(it) {}
|
|
| 528 |
|
|
| 529 |
/// \brief Constructor that sets the iterator to the first |
|
| 530 |
/// incoming or outgoing arc. |
|
| 508 | 531 |
/// |
| 509 |
GraphIncIt(GraphIncIt const& gi) : Item(gi) {}
|
|
| 510 |
/// \brief Sets the iterator to the first arc incoming into or outgoing |
|
| 511 |
/// |
|
| 532 |
/// Constructor that sets the iterator to the first arc |
|
| 533 |
/// incoming to or outgoing from the given node. |
|
| 534 |
explicit GraphIncIt(const GR&, const Base&) {}
|
|
| 535 |
|
|
| 536 |
/// \brief Constructor for conversion from \c INVALID. |
|
| 512 | 537 |
/// |
| 513 |
/// Sets the iterator to the first arc incoming into or outgoing |
|
| 514 |
/// from the node. |
|
| 515 |
/// |
|
| 516 |
explicit GraphIncIt(const GR&, const Base&) {}
|
|
| 517 |
/// \brief Invalid constructor \& conversion. |
|
| 518 |
/// |
|
| 519 |
/// |
|
| 538 |
/// Constructor for conversion from \c INVALID. |
|
| 539 |
/// It initializes the iterator to be invalid. |
|
| 520 | 540 |
/// \sa Invalid for more details. |
| 521 | 541 |
GraphIncIt(Invalid) {}
|
| 522 |
|
|
| 542 |
|
|
| 543 |
/// \brief Assignment operator. |
|
| 523 | 544 |
/// |
| 524 |
/// |
|
| 545 |
/// Assignment operator for the iterator. |
|
| 546 |
GraphIncIt& operator=(const GraphIncIt&) { return *this; }
|
|
| 547 |
|
|
| 548 |
/// \brief Increment the iterator. |
|
| 525 | 549 |
/// |
| 526 |
GraphIncIt& operator=(GraphIncIt const&) { return *this; }
|
|
| 527 |
/// \brief Next item. |
|
| 528 |
/// |
|
| 529 |
/// Assign the iterator to the next item. |
|
| 530 |
/// |
|
| 550 |
/// This operator increments the iterator, i.e. assigns it to the |
|
| 551 |
/// next arc incoming to or outgoing from the given node. |
|
| 531 | 552 |
GraphIncIt& operator++() { return *this; }
|
| ... | ... |
@@ -534,2 +555,3 @@ |
| 534 | 555 |
/// |
| 556 |
/// Equality operator. |
|
| 535 | 557 |
/// Two iterators are equal if and only if they point to the |
| ... | ... |
@@ -540,4 +562,5 @@ |
| 540 | 562 |
/// |
| 541 |
/// \sa operator==(Node n) |
|
| 542 |
/// |
|
| 563 |
/// Inequality operator. |
|
| 564 |
/// Two iterators are equal if and only if they point to the |
|
| 565 |
/// same object or both are invalid. |
|
| 543 | 566 |
bool operator!=(const GraphIncIt&) const { return true;}
|
| ... | ... |
@@ -550,2 +573,4 @@ |
| 550 | 573 |
_GraphIncIt it2; |
| 574 |
_GraphIncIt it3 = it1; |
|
| 575 |
_GraphIncIt it4 = INVALID; |
|
| 551 | 576 |
|
| ... | ... |
@@ -556,9 +581,5 @@ |
| 556 | 581 |
e = it2; |
| 557 |
|
|
| 558 | 582 |
} |
| 559 |
|
|
| 560 |
Item arc; |
|
| 561 |
Base node; |
|
| 562 |
GR graph; |
|
| 563 |
|
|
| 583 |
const Base& node; |
|
| 584 |
const GR& graph; |
|
| 564 | 585 |
}; |
| ... | ... |
@@ -566,7 +587,7 @@ |
| 566 | 587 |
|
| 567 |
|
|
| 568 |
/// \brief An empty iterable digraph class. |
|
| 588 |
/// \brief Skeleton class for iterable directed graphs. |
|
| 569 | 589 |
/// |
| 570 |
/// This class provides beside the core digraph features |
|
| 571 |
/// iterator based iterable interface for the digraph structure. |
|
| 590 |
/// This class describes the interface of iterable directed |
|
| 591 |
/// graphs. It extends \ref BaseDigraphComponent with the core |
|
| 592 |
/// iterable interface. |
|
| 572 | 593 |
/// This concept is part of the Digraph concept. |
| ... | ... |
@@ -583,5 +604,5 @@ |
| 583 | 604 |
|
| 584 |
/// \name Base |
|
| 605 |
/// \name Base Iteration |
|
| 585 | 606 |
/// |
| 586 |
/// This interface provides functions for iteration on digraph items |
|
| 607 |
/// This interface provides functions for iteration on digraph items. |
|
| 587 | 608 |
/// |
| ... | ... |
@@ -589,53 +610,44 @@ |
| 589 | 610 |
|
| 590 |
/// \brief |
|
| 611 |
/// \brief Return the first node. |
|
| 591 | 612 |
/// |
| 592 |
/// Gives back the first node in the iterating order. |
|
| 593 |
/// |
|
| 613 |
/// This function gives back the first node in the iteration order. |
|
| 594 | 614 |
void first(Node&) const {}
|
| 595 | 615 |
|
| 596 |
/// \brief |
|
| 616 |
/// \brief Return the next node. |
|
| 597 | 617 |
/// |
| 598 |
/// Gives back the next node in the iterating order. |
|
| 599 |
/// |
|
| 618 |
/// This function gives back the next node in the iteration order. |
|
| 600 | 619 |
void next(Node&) const {}
|
| 601 | 620 |
|
| 602 |
/// \brief |
|
| 621 |
/// \brief Return the first arc. |
|
| 603 | 622 |
/// |
| 604 |
/// Gives back the first arc in the iterating order. |
|
| 605 |
/// |
|
| 623 |
/// This function gives back the first arc in the iteration order. |
|
| 606 | 624 |
void first(Arc&) const {}
|
| 607 | 625 |
|
| 608 |
/// \brief |
|
| 626 |
/// \brief Return the next arc. |
|
| 609 | 627 |
/// |
| 610 |
/// Gives back the next arc in the iterating order. |
|
| 611 |
/// |
|
| 628 |
/// This function gives back the next arc in the iteration order. |
|
| 612 | 629 |
void next(Arc&) const {}
|
| 613 | 630 |
|
| 614 |
|
|
| 615 |
/// \brief Gives back the first of the arcs point to the given |
|
| 616 |
/// node. |
|
| 631 |
/// \brief Return the first arc incomming to the given node. |
|
| 617 | 632 |
/// |
| 618 |
/// Gives back the first of the arcs point to the given node. |
|
| 619 |
/// |
|
| 633 |
/// This function gives back the first arc incomming to the |
|
| 634 |
/// given node. |
|
| 620 | 635 |
void firstIn(Arc&, const Node&) const {}
|
| 621 | 636 |
|
| 622 |
/// \brief Gives back the next of the arcs points to the given |
|
| 623 |
/// node. |
|
| 637 |
/// \brief Return the next arc incomming to the given node. |
|
| 624 | 638 |
/// |
| 625 |
/// Gives back the next of the arcs points to the given node. |
|
| 626 |
/// |
|
| 639 |
/// This function gives back the next arc incomming to the |
|
| 640 |
/// given node. |
|
| 627 | 641 |
void nextIn(Arc&) const {}
|
| 628 | 642 |
|
| 629 |
/// \brief |
|
| 643 |
/// \brief Return the first arc outgoing form the given node. |
|
| 644 |
/// |
|
| 645 |
/// This function gives back the first arc outgoing form the |
|
| 630 | 646 |
/// given node. |
| 631 |
/// |
|
| 632 |
/// Gives back the first of the arcs start from the given node. |
|
| 633 |
/// |
|
| 634 | 647 |
void firstOut(Arc&, const Node&) const {}
|
| 635 | 648 |
|
| 636 |
/// \brief Gives back the next of the arcs start from the given |
|
| 637 |
/// node. |
|
| 649 |
/// \brief Return the next arc outgoing form the given node. |
|
| 638 | 650 |
/// |
| 639 |
/// Gives back the next of the arcs start from the given node. |
|
| 640 |
/// |
|
| 651 |
/// This function gives back the next arc outgoing form the |
|
| 652 |
/// given node. |
|
| 641 | 653 |
void nextOut(Arc&) const {}
|
| ... | ... |
@@ -644,5 +656,5 @@ |
| 644 | 656 |
|
| 645 |
/// \name Class |
|
| 657 |
/// \name Class Based Iteration |
|
| 646 | 658 |
/// |
| 647 |
/// This interface provides |
|
| 659 |
/// This interface provides iterator classes for digraph items. |
|
| 648 | 660 |
/// |
| ... | ... |
@@ -656,5 +668,5 @@ |
| 656 | 668 |
|
| 657 |
/// \brief This iterator goes through each |
|
| 669 |
/// \brief This iterator goes through each arc. |
|
| 658 | 670 |
/// |
| 659 |
/// This iterator goes through each |
|
| 671 |
/// This iterator goes through each arc. |
|
| 660 | 672 |
/// |
| ... | ... |
@@ -664,3 +676,3 @@ |
| 664 | 676 |
/// |
| 665 |
/// This iterator goes trough the \e |
|
| 677 |
/// This iterator goes trough the \e incoming arcs of a certain node |
|
| 666 | 678 |
/// of a digraph. |
| ... | ... |
@@ -676,4 +688,4 @@ |
| 676 | 688 |
/// |
| 677 |
/// Gives back the base node of the iterator. |
|
| 678 |
/// It is always the target of the pointed arc. |
|
| 689 |
/// This function gives back the base node of the iterator. |
|
| 690 |
/// It is always the target node of the pointed arc. |
|
| 679 | 691 |
Node baseNode(const InArcIt&) const { return INVALID; }
|
| ... | ... |
@@ -682,4 +694,4 @@ |
| 682 | 694 |
/// |
| 683 |
/// Gives back the running node of the iterator. |
|
| 684 |
/// It is always the source of the pointed arc. |
|
| 695 |
/// This function gives back the running node of the iterator. |
|
| 696 |
/// It is always the source node of the pointed arc. |
|
| 685 | 697 |
Node runningNode(const InArcIt&) const { return INVALID; }
|
| ... | ... |
@@ -688,4 +700,4 @@ |
| 688 | 700 |
/// |
| 689 |
/// Gives back the base node of the iterator. |
|
| 690 |
/// It is always the source of the pointed arc. |
|
| 701 |
/// This function gives back the base node of the iterator. |
|
| 702 |
/// It is always the source node of the pointed arc. |
|
| 691 | 703 |
Node baseNode(const OutArcIt&) const { return INVALID; }
|
| ... | ... |
@@ -694,4 +706,4 @@ |
| 694 | 706 |
/// |
| 695 |
/// Gives back the running node of the iterator. |
|
| 696 |
/// It is always the target of the pointed arc. |
|
| 707 |
/// This function gives back the running node of the iterator. |
|
| 708 |
/// It is always the target node of the pointed arc. |
|
| 697 | 709 |
Node runningNode(const OutArcIt&) const { return INVALID; }
|
| ... | ... |
@@ -737,8 +749,8 @@ |
| 737 | 749 |
typename _Digraph::Node n; |
| 738 |
typename _Digraph::InArcIt ieit(INVALID); |
|
| 739 |
typename _Digraph::OutArcIt oeit(INVALID); |
|
| 740 |
n = digraph.baseNode(ieit); |
|
| 741 |
n = digraph.runningNode(ieit); |
|
| 742 |
n = digraph.baseNode(oeit); |
|
| 743 |
n = digraph.runningNode(oeit); |
|
| 750 |
const typename _Digraph::InArcIt iait(INVALID); |
|
| 751 |
const typename _Digraph::OutArcIt oait(INVALID); |
|
| 752 |
n = digraph.baseNode(iait); |
|
| 753 |
n = digraph.runningNode(iait); |
|
| 754 |
n = digraph.baseNode(oait); |
|
| 755 |
n = digraph.runningNode(oait); |
|
| 744 | 756 |
ignore_unused_variable_warning(n); |
| ... | ... |
@@ -748,3 +760,2 @@ |
| 748 | 760 |
const _Digraph& digraph; |
| 749 |
|
|
| 750 | 761 |
}; |
| ... | ... |
@@ -752,6 +763,7 @@ |
| 752 | 763 |
|
| 753 |
/// \brief |
|
| 764 |
/// \brief Skeleton class for iterable undirected graphs. |
|
| 754 | 765 |
/// |
| 755 |
/// This class provides beside the core graph features iterator |
|
| 756 |
/// based iterable interface for the undirected graph structure. |
|
| 766 |
/// This class describes the interface of iterable undirected |
|
| 767 |
/// graphs. It extends \ref IterableDigraphComponent with the core |
|
| 768 |
/// iterable interface of undirected graphs. |
|
| 757 | 769 |
/// This concept is part of the Graph concept. |
| ... | ... |
@@ -769,5 +781,6 @@ |
| 769 | 781 |
|
| 770 |
/// \name Base |
|
| 782 |
/// \name Base Iteration |
|
| 771 | 783 |
/// |
| 772 |
/// This interface provides functions for iteration on |
|
| 784 |
/// This interface provides functions for iteration on edges. |
|
| 785 |
/// |
|
| 773 | 786 |
/// @{
|
| ... | ... |
@@ -777,24 +790,18 @@ |
| 777 | 790 |
|
| 778 |
/// \brief Gives back the first edge in the iterating |
|
| 779 |
/// order. |
|
| 791 |
/// \brief Return the first edge. |
|
| 780 | 792 |
/// |
| 781 |
/// Gives back the first edge in the iterating order. |
|
| 782 |
/// |
|
| 793 |
/// This function gives back the first edge in the iteration order. |
|
| 783 | 794 |
void first(Edge&) const {}
|
| 784 | 795 |
|
| 785 |
/// \brief Gives back the next edge in the iterating |
|
| 786 |
/// order. |
|
| 796 |
/// \brief Return the next edge. |
|
| 787 | 797 |
/// |
| 788 |
/// Gives back the next edge in the iterating order. |
|
| 789 |
/// |
|
| 798 |
/// This function gives back the next edge in the iteration order. |
|
| 790 | 799 |
void next(Edge&) const {}
|
| 791 | 800 |
|
| 792 |
|
|
| 793 |
/// \brief Gives back the first of the edges from the |
|
| 801 |
/// \brief Return the first edge incident to the given node. |
|
| 802 |
/// |
|
| 803 |
/// This function gives back the first edge incident to the given |
|
| 804 |
/// node. The bool parameter gives back the direction for which the |
|
| 805 |
/// source node of the directed arc representing the edge is the |
|
| 794 | 806 |
/// given node. |
| 795 |
/// |
|
| 796 |
/// Gives back the first of the edges from the given |
|
| 797 |
/// node. The bool parameter gives back that direction which |
|
| 798 |
/// gives a good direction of the edge so the source of the |
|
| 799 |
/// directed arc is the given node. |
|
| 800 | 807 |
void firstInc(Edge&, bool&, const Node&) const {}
|
| ... | ... |
@@ -804,5 +811,4 @@ |
| 804 | 811 |
/// |
| 805 |
/// Gives back the next of the edges from the given |
|
| 806 |
/// node. The bool parameter should be used as the \c firstInc() |
|
| 807 |
/// |
|
| 812 |
/// This function gives back the next edge incident to the given |
|
| 813 |
/// node. The bool parameter should be used as \c firstInc() use it. |
|
| 808 | 814 |
void nextInc(Edge&, bool&) const {}
|
| ... | ... |
@@ -814,5 +820,5 @@ |
| 814 | 820 |
|
| 815 |
/// \name Class |
|
| 821 |
/// \name Class Based Iteration |
|
| 816 | 822 |
/// |
| 817 |
/// This interface provides |
|
| 823 |
/// This interface provides iterator classes for edges. |
|
| 818 | 824 |
/// |
| ... | ... |
@@ -820,15 +826,17 @@ |
| 820 | 826 |
|
| 821 |
/// \brief This iterator goes through each |
|
| 827 |
/// \brief This iterator goes through each edge. |
|
| 822 | 828 |
/// |
| 823 |
/// This iterator goes through each |
|
| 829 |
/// This iterator goes through each edge. |
|
| 824 | 830 |
typedef GraphItemIt<Graph, Edge> EdgeIt; |
| 825 |
|
|
| 831 |
|
|
| 832 |
/// \brief This iterator goes trough the incident edges of a |
|
| 826 | 833 |
/// node. |
| 827 | 834 |
/// |
| 828 |
/// This iterator goes trough the incident |
|
| 835 |
/// This iterator goes trough the incident edges of a certain |
|
| 829 | 836 |
/// node of a graph. |
| 830 |
typedef GraphIncIt<Graph, Edge, Node, ' |
|
| 837 |
typedef GraphIncIt<Graph, Edge, Node, 'e'> IncEdgeIt; |
|
| 838 |
|
|
| 831 | 839 |
/// \brief The base node of the iterator. |
| 832 | 840 |
/// |
| 833 |
/// |
|
| 841 |
/// This function gives back the base node of the iterator. |
|
| 834 | 842 |
Node baseNode(const IncEdgeIt&) const { return INVALID; }
|
| ... | ... |
@@ -837,3 +845,3 @@ |
| 837 | 845 |
/// |
| 838 |
/// |
|
| 846 |
/// This function gives back the running node of the iterator. |
|
| 839 | 847 |
Node runningNode(const IncEdgeIt&) const { return INVALID; }
|
| ... | ... |
@@ -866,8 +874,8 @@ |
| 866 | 874 |
checkConcept<GraphIncIt<_Graph, typename _Graph::Edge, |
| 867 |
typename _Graph::Node, ' |
|
| 875 |
typename _Graph::Node, 'e'>, typename _Graph::IncEdgeIt>(); |
|
| 868 | 876 |
|
| 869 | 877 |
typename _Graph::Node n; |
| 870 |
typename _Graph::IncEdgeIt ueit(INVALID); |
|
| 871 |
n = graph.baseNode(ueit); |
|
| 872 |
|
|
| 878 |
const typename _Graph::IncEdgeIt ieit(INVALID); |
|
| 879 |
n = graph.baseNode(ieit); |
|
| 880 |
n = graph.runningNode(ieit); |
|
| 873 | 881 |
} |
| ... | ... |
@@ -879,9 +887,10 @@ |
| 879 | 887 |
|
| 880 |
/// \brief |
|
| 888 |
/// \brief Skeleton class for alterable directed graphs. |
|
| 881 | 889 |
/// |
| 882 |
/// This class provides beside the core digraph features alteration |
|
| 883 |
/// notifier interface for the digraph structure. This implements |
|
| 890 |
/// This class describes the interface of alterable directed |
|
| 891 |
/// graphs. It extends \ref BaseDigraphComponent with the alteration |
|
| 892 |
/// notifier interface. It implements |
|
| 884 | 893 |
/// an observer-notifier pattern for each digraph item. More |
| 885 | 894 |
/// obsevers can be registered into the notifier and whenever an |
| 886 |
/// alteration occured in the digraph all the observers will |
|
| 895 |
/// alteration occured in the digraph all the observers will be |
|
| 887 | 896 |
/// notified about it. |
| ... | ... |
@@ -896,6 +905,6 @@ |
| 896 | 905 |
|
| 897 |
/// |
|
| 906 |
/// Node alteration notifier class. |
|
| 898 | 907 |
typedef AlterationNotifier<AlterableDigraphComponent, Node> |
| 899 | 908 |
NodeNotifier; |
| 900 |
/// |
|
| 909 |
/// Arc alteration notifier class. |
|
| 901 | 910 |
typedef AlterationNotifier<AlterableDigraphComponent, Arc> |
| ... | ... |
@@ -903,12 +912,12 @@ |
| 903 | 912 |
|
| 904 |
/// \brief |
|
| 913 |
/// \brief Return the node alteration notifier. |
|
| 905 | 914 |
/// |
| 906 |
/// |
|
| 915 |
/// This function gives back the node alteration notifier. |
|
| 907 | 916 |
NodeNotifier& notifier(Node) const {
|
| 908 |
return NodeNotifier(); |
|
| 917 |
return NodeNotifier(); |
|
| 909 | 918 |
} |
| 910 | 919 |
|
| 911 |
/// \brief |
|
| 920 |
/// \brief Return the arc alteration notifier. |
|
| 912 | 921 |
/// |
| 913 |
/// |
|
| 922 |
/// This function gives back the arc alteration notifier. |
|
| 914 | 923 |
ArcNotifier& notifier(Arc) const {
|
| ... | ... |
@@ -932,14 +941,13 @@ |
| 932 | 941 |
const _Digraph& digraph; |
| 933 |
|
|
| 934 | 942 |
}; |
| 935 |
|
|
| 936 | 943 |
}; |
| 937 | 944 |
|
| 938 |
/// \brief |
|
| 945 |
/// \brief Skeleton class for alterable undirected graphs. |
|
| 939 | 946 |
/// |
| 940 |
/// This class provides beside the core graph features alteration |
|
| 941 |
/// notifier interface for the graph structure. This implements |
|
| 942 |
/// |
|
| 947 |
/// This class describes the interface of alterable undirected |
|
| 948 |
/// graphs. It extends \ref AlterableDigraphComponent with the alteration |
|
| 949 |
/// notifier interface of undirected graphs. It implements |
|
| 950 |
/// an observer-notifier pattern for the edges. More |
|
| 943 | 951 |
/// obsevers can be registered into the notifier and whenever an |
| 944 |
/// alteration occured in the graph all the observers will |
|
| 952 |
/// alteration occured in the graph all the observers will be |
|
| 945 | 953 |
/// notified about it. |
| ... | ... |
@@ -953,3 +961,3 @@ |
| 953 | 961 |
|
| 954 |
/// |
|
| 962 |
/// Edge alteration notifier class. |
|
| 955 | 963 |
typedef AlterationNotifier<AlterableGraphComponent, Edge> |
| ... | ... |
@@ -957,5 +965,5 @@ |
| 957 | 965 |
|
| 958 |
/// \brief |
|
| 966 |
/// \brief Return the edge alteration notifier. |
|
| 959 | 967 |
/// |
| 960 |
/// |
|
| 968 |
/// This function gives back the edge alteration notifier. |
|
| 961 | 969 |
EdgeNotifier& notifier(Edge) const {
|
| ... | ... |
@@ -967,3 +975,3 @@ |
| 967 | 975 |
void constraints() {
|
| 968 |
checkConcept< |
|
| 976 |
checkConcept<AlterableDigraphComponent<Base>, _Graph>(); |
|
| 969 | 977 |
typename _Graph::EdgeNotifier& uen |
| ... | ... |
@@ -977,9 +985,10 @@ |
| 977 | 985 |
|
| 978 |
/// \brief |
|
| 986 |
/// \brief Concept class for standard graph maps. |
|
| 979 | 987 |
/// |
| 980 |
/// This class describes the common interface of the graph maps |
|
| 981 |
/// (NodeMap, ArcMap), that is maps that can be used to |
|
| 982 |
/// |
|
| 988 |
/// This class describes the concept of standard graph maps, i.e. |
|
| 989 |
/// the \c NodeMap, \c ArcMap and \c EdgeMap subtypes of digraph and |
|
| 990 |
/// graph types, which can be used for associating data to graph items. |
|
| 991 |
/// The standard graph maps must conform to the ReferenceMap concept. |
|
| 983 | 992 |
template <typename GR, typename K, typename V> |
| 984 |
class GraphMap : public |
|
| 993 |
class GraphMap : public ReferenceMap<K, V, V&, const V&> {
|
|
| 985 | 994 |
public: |
| ... | ... |
@@ -994,2 +1003,9 @@ |
| 994 | 1003 |
typedef V Value; |
| 1004 |
/// The reference type of the map. |
|
| 1005 |
typedef Value& Reference; |
|
| 1006 |
/// The const reference type of the map. |
|
| 1007 |
typedef const Value& ConstReference; |
|
| 1008 |
|
|
| 1009 |
// The reference map tag. |
|
| 1010 |
typedef True ReferenceMapTag; |
|
| 995 | 1011 |
|
| ... | ... |
@@ -1001,3 +1017,3 @@ |
| 1001 | 1017 |
/// |
| 1002 |
/// Construct a new map for the graph and |
|
| 1018 |
/// Construct a new map for the graph and initalize the values. |
|
| 1003 | 1019 |
GraphMap(const Graph&, const Value&) {}
|
| ... | ... |
@@ -1010,5 +1026,5 @@ |
| 1010 | 1026 |
|
| 1011 |
/// \brief |
|
| 1027 |
/// \brief Assignment operator. |
|
| 1012 | 1028 |
/// |
| 1013 |
/// |
|
| 1029 |
/// Assignment operator. It does not mofify the underlying graph, |
|
| 1014 | 1030 |
/// it just iterates on the current item set and set the map |
| ... | ... |
@@ -1025,19 +1041,20 @@ |
| 1025 | 1041 |
void constraints() {
|
| 1026 |
checkConcept<ReadWriteMap<Key, Value>, _Map >(); |
|
| 1027 |
// Construction with a graph parameter |
|
| 1028 |
_Map a(g); |
|
| 1029 |
// Constructor with a graph and a default value parameter |
|
| 1030 |
_Map a2(g,t); |
|
| 1031 |
// Copy constructor. |
|
| 1032 |
|
|
| 1042 |
checkConcept |
|
| 1043 |
<ReferenceMap<Key, Value, Value&, const Value&>, _Map>(); |
|
| 1044 |
_Map m1(g); |
|
| 1045 |
_Map m2(g,t); |
|
| 1046 |
|
|
| 1047 |
// Copy constructor |
|
| 1048 |
// _Map m3(m); |
|
| 1033 | 1049 |
|
| 1050 |
// Assignment operator |
|
| 1034 | 1051 |
// ReadMap<Key, Value> cmap; |
| 1035 |
// |
|
| 1052 |
// m3 = cmap; |
|
| 1036 | 1053 |
|
| 1037 |
ignore_unused_variable_warning(a); |
|
| 1038 |
ignore_unused_variable_warning(a2); |
|
| 1039 |
|
|
| 1054 |
ignore_unused_variable_warning(m1); |
|
| 1055 |
ignore_unused_variable_warning(m2); |
|
| 1056 |
// ignore_unused_variable_warning(m3); |
|
| 1040 | 1057 |
} |
| 1041 | 1058 |
|
| 1042 |
const _Map & |
|
| 1059 |
const _Map &m; |
|
| 1043 | 1060 |
const Graph &g; |
| ... | ... |
@@ -1048,6 +1065,7 @@ |
| 1048 | 1065 |
|
| 1049 |
/// \brief |
|
| 1066 |
/// \brief Skeleton class for mappable directed graphs. |
|
| 1050 | 1067 |
/// |
| 1051 |
/// This class provides beside the core digraph features |
|
| 1052 |
/// map interface for the digraph structure. |
|
| 1068 |
/// This class describes the interface of mappable directed graphs. |
|
| 1069 |
/// It extends \ref BaseDigraphComponent with the standard digraph |
|
| 1070 |
/// map classes, namely \c NodeMap and \c ArcMap. |
|
| 1053 | 1071 |
/// This concept is part of the Digraph concept. |
| ... | ... |
@@ -1063,8 +1081,8 @@ |
| 1063 | 1081 |
|
| 1064 |
/// \brief |
|
| 1082 |
/// \brief Standard graph map for the nodes. |
|
| 1065 | 1083 |
/// |
| 1066 |
/// ReadWrite map of the nodes. |
|
| 1067 |
/// |
|
| 1084 |
/// Standard graph map for the nodes. |
|
| 1085 |
/// It conforms to the ReferenceMap concept. |
|
| 1068 | 1086 |
template <typename V> |
| 1069 |
class NodeMap : public GraphMap< |
|
| 1087 |
class NodeMap : public GraphMap<MappableDigraphComponent, Node, V> {
|
|
| 1070 | 1088 |
public: |
| ... | ... |
@@ -1080,3 +1098,3 @@ |
| 1080 | 1098 |
/// |
| 1081 |
/// Construct a new map for the digraph and |
|
| 1099 |
/// Construct a new map for the digraph and initalize the values. |
|
| 1082 | 1100 |
NodeMap(const MappableDigraphComponent& digraph, const V& value) |
| ... | ... |
@@ -1090,5 +1108,5 @@ |
| 1090 | 1108 |
|
| 1091 |
/// \brief |
|
| 1109 |
/// \brief Assignment operator. |
|
| 1092 | 1110 |
/// |
| 1093 |
/// |
|
| 1111 |
/// Assignment operator. |
|
| 1094 | 1112 |
template <typename CMap> |
| ... | ... |
@@ -1101,8 +1119,8 @@ |
| 1101 | 1119 |
|
| 1102 |
/// \brief |
|
| 1120 |
/// \brief Standard graph map for the arcs. |
|
| 1103 | 1121 |
/// |
| 1104 |
/// ReadWrite map of the arcs. |
|
| 1105 |
/// |
|
| 1122 |
/// Standard graph map for the arcs. |
|
| 1123 |
/// It conforms to the ReferenceMap concept. |
|
| 1106 | 1124 |
template <typename V> |
| 1107 |
class ArcMap : public GraphMap< |
|
| 1125 |
class ArcMap : public GraphMap<MappableDigraphComponent, Arc, V> {
|
|
| 1108 | 1126 |
public: |
| ... | ... |
@@ -1118,3 +1136,3 @@ |
| 1118 | 1136 |
/// |
| 1119 |
/// Construct a new map for the digraph and |
|
| 1137 |
/// Construct a new map for the digraph and initalize the values. |
|
| 1120 | 1138 |
ArcMap(const MappableDigraphComponent& digraph, const V& value) |
| ... | ... |
@@ -1128,5 +1146,5 @@ |
| 1128 | 1146 |
|
| 1129 |
/// \brief |
|
| 1147 |
/// \brief Assignment operator. |
|
| 1130 | 1148 |
/// |
| 1131 |
/// |
|
| 1149 |
/// Assignment operator. |
|
| 1132 | 1150 |
template <typename CMap> |
| ... | ... |
@@ -1180,3 +1198,3 @@ |
| 1180 | 1198 |
|
| 1181 |
_Digraph& digraph; |
|
| 1199 |
const _Digraph& digraph; |
|
| 1182 | 1200 |
}; |
| ... | ... |
@@ -1184,6 +1202,7 @@ |
| 1184 | 1202 |
|
| 1185 |
/// \brief |
|
| 1203 |
/// \brief Skeleton class for mappable undirected graphs. |
|
| 1186 | 1204 |
/// |
| 1187 |
/// This class provides beside the core graph features |
|
| 1188 |
/// map interface for the graph structure. |
|
| 1205 |
/// This class describes the interface of mappable undirected graphs. |
|
| 1206 |
/// It extends \ref MappableDigraphComponent with the standard graph |
|
| 1207 |
/// map class for edges (\c EdgeMap). |
|
| 1189 | 1208 |
/// This concept is part of the Graph concept. |
| ... | ... |
@@ -1198,8 +1217,8 @@ |
| 1198 | 1217 |
|
| 1199 |
/// \brief |
|
| 1218 |
/// \brief Standard graph map for the edges. |
|
| 1200 | 1219 |
/// |
| 1201 |
/// ReadWrite map of the edges. |
|
| 1202 |
/// |
|
| 1220 |
/// Standard graph map for the edges. |
|
| 1221 |
/// It conforms to the ReferenceMap concept. |
|
| 1203 | 1222 |
template <typename V> |
| 1204 |
class EdgeMap : public GraphMap< |
|
| 1223 |
class EdgeMap : public GraphMap<MappableGraphComponent, Edge, V> {
|
|
| 1205 | 1224 |
public: |
| ... | ... |
@@ -1215,3 +1234,3 @@ |
| 1215 | 1234 |
/// |
| 1216 |
/// Construct a new map for the graph and |
|
| 1235 |
/// Construct a new map for the graph and initalize the values. |
|
| 1217 | 1236 |
EdgeMap(const MappableGraphComponent& graph, const V& value) |
| ... | ... |
@@ -1225,5 +1244,5 @@ |
| 1225 | 1244 |
|
| 1226 |
/// \brief |
|
| 1245 |
/// \brief Assignment operator. |
|
| 1227 | 1246 |
/// |
| 1228 |
/// |
|
| 1247 |
/// Assignment operator. |
|
| 1229 | 1248 |
template <typename CMap> |
| ... | ... |
@@ -1247,3 +1266,3 @@ |
| 1247 | 1266 |
void constraints() {
|
| 1248 |
checkConcept< |
|
| 1267 |
checkConcept<MappableDigraphComponent<Base>, _Graph>(); |
|
| 1249 | 1268 |
|
| ... | ... |
@@ -1264,3 +1283,3 @@ |
| 1264 | 1283 |
|
| 1265 |
_Graph& graph; |
|
| 1284 |
const _Graph& graph; |
|
| 1266 | 1285 |
}; |
| ... | ... |
@@ -1268,8 +1287,8 @@ |
| 1268 | 1287 |
|
| 1269 |
/// \brief |
|
| 1288 |
/// \brief Skeleton class for extendable directed graphs. |
|
| 1270 | 1289 |
/// |
| 1271 |
/// This class provides beside the core digraph features digraph |
|
| 1272 |
/// extendable interface for the digraph structure. The main |
|
| 1273 |
/// difference between the base and this interface is that the |
|
| 1274 |
/// digraph alterations should handled already on this level. |
|
| 1290 |
/// This class describes the interface of extendable directed graphs. |
|
| 1291 |
/// It extends \ref BaseDigraphComponent with functions for adding |
|
| 1292 |
/// nodes and arcs to the digraph. |
|
| 1293 |
/// This concept requires \ref AlterableDigraphComponent. |
|
| 1275 | 1294 |
template <typename BAS = BaseDigraphComponent> |
| ... | ... |
@@ -1282,6 +1301,5 @@ |
| 1282 | 1301 |
|
| 1283 |
/// \brief |
|
| 1302 |
/// \brief Add a new node to the digraph. |
|
| 1284 | 1303 |
/// |
| 1285 |
/// Adds a new node to the digraph. |
|
| 1286 |
/// |
|
| 1304 |
/// This function adds a new node to the digraph. |
|
| 1287 | 1305 |
Node addNode() {
|
| ... | ... |
@@ -1290,5 +1308,6 @@ |
| 1290 | 1308 |
|
| 1291 |
/// \brief |
|
| 1309 |
/// \brief Add a new arc connecting the given two nodes. |
|
| 1292 | 1310 |
/// |
| 1293 |
/// |
|
| 1311 |
/// This function adds a new arc connecting the given two nodes |
|
| 1312 |
/// of the digraph. |
|
| 1294 | 1313 |
Arc addArc(const Node&, const Node&) {
|
| ... | ... |
@@ -1312,9 +1331,8 @@ |
| 1312 | 1331 |
|
| 1313 |
/// \brief |
|
| 1332 |
/// \brief Skeleton class for extendable undirected graphs. |
|
| 1314 | 1333 |
/// |
| 1315 |
/// This class provides beside the core undirected graph features |
|
| 1316 |
/// core undircted graph extend interface for the graph structure. |
|
| 1317 |
/// The main difference between the base and this interface is |
|
| 1318 |
/// that the graph alterations should handled already on this |
|
| 1319 |
/// |
|
| 1334 |
/// This class describes the interface of extendable undirected graphs. |
|
| 1335 |
/// It extends \ref BaseGraphComponent with functions for adding |
|
| 1336 |
/// nodes and edges to the graph. |
|
| 1337 |
/// This concept requires \ref AlterableGraphComponent. |
|
| 1320 | 1338 |
template <typename BAS = BaseGraphComponent> |
| ... | ... |
@@ -1327,6 +1345,5 @@ |
| 1327 | 1345 |
|
| 1328 |
/// \brief |
|
| 1346 |
/// \brief Add a new node to the digraph. |
|
| 1329 | 1347 |
/// |
| 1330 |
/// Adds a new node to the graph. |
|
| 1331 |
/// |
|
| 1348 |
/// This function adds a new node to the digraph. |
|
| 1332 | 1349 |
Node addNode() {
|
| ... | ... |
@@ -1335,6 +1352,7 @@ |
| 1335 | 1352 |
|
| 1336 |
/// \brief |
|
| 1353 |
/// \brief Add a new edge connecting the given two nodes. |
|
| 1337 | 1354 |
/// |
| 1338 |
/// Adds a new arc connects the the given two nodes. |
|
| 1339 |
Edge addArc(const Node&, const Node&) {
|
|
| 1355 |
/// This function adds a new edge connecting the given two nodes |
|
| 1356 |
/// of the graph. |
|
| 1357 |
Edge addEdge(const Node&, const Node&) {
|
|
| 1340 | 1358 |
return INVALID; |
| ... | ... |
@@ -1357,8 +1375,8 @@ |
| 1357 | 1375 |
|
| 1358 |
/// \brief |
|
| 1376 |
/// \brief Skeleton class for erasable directed graphs. |
|
| 1359 | 1377 |
/// |
| 1360 |
/// This class provides beside the core digraph features core erase |
|
| 1361 |
/// functions for the digraph structure. The main difference between |
|
| 1362 |
/// the base and this interface is that the digraph alterations |
|
| 1363 |
/// should handled already on this level. |
|
| 1378 |
/// This class describes the interface of erasable directed graphs. |
|
| 1379 |
/// It extends \ref BaseDigraphComponent with functions for removing |
|
| 1380 |
/// nodes and arcs from the digraph. |
|
| 1381 |
/// This concept requires \ref AlterableDigraphComponent. |
|
| 1364 | 1382 |
template <typename BAS = BaseDigraphComponent> |
| ... | ... |
@@ -1373,4 +1391,4 @@ |
| 1373 | 1391 |
/// |
| 1374 |
/// Erase a node from the digraph. This function should |
|
| 1375 |
/// erase all arcs connecting to the node. |
|
| 1392 |
/// This function erases the given node from the digraph and all arcs |
|
| 1393 |
/// connected to the node. |
|
| 1376 | 1394 |
void erase(const Node&) {}
|
| ... | ... |
@@ -1379,4 +1397,3 @@ |
| 1379 | 1397 |
/// |
| 1380 |
/// Erase an arc from the digraph. |
|
| 1381 |
/// |
|
| 1398 |
/// This function erases the given arc from the digraph. |
|
| 1382 | 1399 |
void erase(const Arc&) {}
|
| ... | ... |
@@ -1387,5 +1404,5 @@ |
| 1387 | 1404 |
checkConcept<Base, _Digraph>(); |
| 1388 |
typename _Digraph::Node node; |
|
| 1405 |
const typename _Digraph::Node node(INVALID); |
|
| 1389 | 1406 |
digraph.erase(node); |
| 1390 |
typename _Digraph::Arc arc; |
|
| 1407 |
const typename _Digraph::Arc arc(INVALID); |
|
| 1391 | 1408 |
digraph.erase(arc); |
| ... | ... |
@@ -1397,8 +1414,8 @@ |
| 1397 | 1414 |
|
| 1398 |
/// \brief |
|
| 1415 |
/// \brief Skeleton class for erasable undirected graphs. |
|
| 1399 | 1416 |
/// |
| 1400 |
/// This class provides beside the core undirected graph features |
|
| 1401 |
/// core erase functions for the undirceted graph structure. The |
|
| 1402 |
/// main difference between the base and this interface is that |
|
| 1403 |
/// the graph alterations should handled already on this level. |
|
| 1417 |
/// This class describes the interface of erasable undirected graphs. |
|
| 1418 |
/// It extends \ref BaseGraphComponent with functions for removing |
|
| 1419 |
/// nodes and edges from the graph. |
|
| 1420 |
/// This concept requires \ref AlterableGraphComponent. |
|
| 1404 | 1421 |
template <typename BAS = BaseGraphComponent> |
| ... | ... |
@@ -1413,10 +1430,9 @@ |
| 1413 | 1430 |
/// |
| 1414 |
/// Erase a node from the graph. This function should erase |
|
| 1415 |
/// arcs connecting to the node. |
|
| 1431 |
/// This function erases the given node from the graph and all edges |
|
| 1432 |
/// connected to the node. |
|
| 1416 | 1433 |
void erase(const Node&) {}
|
| 1417 | 1434 |
|
| 1418 |
/// \brief Erase an |
|
| 1435 |
/// \brief Erase an edge from the digraph. |
|
| 1419 | 1436 |
/// |
| 1420 |
/// Erase an arc from the graph. |
|
| 1421 |
/// |
|
| 1437 |
/// This function erases the given edge from the digraph. |
|
| 1422 | 1438 |
void erase(const Edge&) {}
|
| ... | ... |
@@ -1427,5 +1443,5 @@ |
| 1427 | 1443 |
checkConcept<Base, _Graph>(); |
| 1428 |
typename _Graph::Node node; |
|
| 1444 |
const typename _Graph::Node node(INVALID); |
|
| 1429 | 1445 |
graph.erase(node); |
| 1430 |
typename _Graph::Edge edge; |
|
| 1446 |
const typename _Graph::Edge edge(INVALID); |
|
| 1431 | 1447 |
graph.erase(edge); |
| ... | ... |
@@ -1437,8 +1453,8 @@ |
| 1437 | 1453 |
|
| 1438 |
/// \brief |
|
| 1454 |
/// \brief Skeleton class for clearable directed graphs. |
|
| 1439 | 1455 |
/// |
| 1440 |
/// This class provides beside the core digraph features core clear |
|
| 1441 |
/// functions for the digraph structure. The main difference between |
|
| 1442 |
/// the base and this interface is that the digraph alterations |
|
| 1443 |
/// should handled already on this level. |
|
| 1456 |
/// This class describes the interface of clearable directed graphs. |
|
| 1457 |
/// It extends \ref BaseDigraphComponent with a function for clearing |
|
| 1458 |
/// the digraph. |
|
| 1459 |
/// This concept requires \ref AlterableDigraphComponent. |
|
| 1444 | 1460 |
template <typename BAS = BaseDigraphComponent> |
| ... | ... |
@@ -1451,4 +1467,3 @@ |
| 1451 | 1467 |
/// |
| 1452 |
/// Erase all nodes and arcs from the digraph. |
|
| 1453 |
/// |
|
| 1468 |
/// This function erases all nodes and arcs from the digraph. |
|
| 1454 | 1469 |
void clear() {}
|
| ... | ... |
@@ -1462,3 +1477,3 @@ |
| 1462 | 1477 |
|
| 1463 |
_Digraph digraph; |
|
| 1478 |
_Digraph& digraph; |
|
| 1464 | 1479 |
}; |
| ... | ... |
@@ -1466,8 +1481,8 @@ |
| 1466 | 1481 |
|
| 1467 |
/// \brief |
|
| 1482 |
/// \brief Skeleton class for clearable undirected graphs. |
|
| 1468 | 1483 |
/// |
| 1469 |
/// This class provides beside the core undirected graph features |
|
| 1470 |
/// core clear functions for the undirected graph structure. The |
|
| 1471 |
/// main difference between the base and this interface is that |
|
| 1472 |
/// the graph alterations should handled already on this level. |
|
| 1484 |
/// This class describes the interface of clearable undirected graphs. |
|
| 1485 |
/// It extends \ref BaseGraphComponent with a function for clearing |
|
| 1486 |
/// the graph. |
|
| 1487 |
/// This concept requires \ref AlterableGraphComponent. |
|
| 1473 | 1488 |
template <typename BAS = BaseGraphComponent> |
| ... | ... |
@@ -1478,2 +1493,7 @@ |
| 1478 | 1493 |
|
| 1494 |
/// \brief Erase all nodes and edges from the graph. |
|
| 1495 |
/// |
|
| 1496 |
/// This function erases all nodes and edges from the graph. |
|
| 1497 |
void clear() {}
|
|
| 1498 |
|
|
| 1479 | 1499 |
template <typename _Graph> |
| ... | ... |
@@ -1481,6 +1501,7 @@ |
| 1481 | 1501 |
void constraints() {
|
| 1482 |
checkConcept< |
|
| 1502 |
checkConcept<Base, _Graph>(); |
|
| 1503 |
graph.clear(); |
|
| 1483 | 1504 |
} |
| 1484 | 1505 |
|
| 1485 |
_Graph graph; |
|
| 1506 |
_Graph& graph; |
|
| 1486 | 1507 |
}; |
| ... | ... |
@@ -73,5 +73,5 @@ |
| 73 | 73 |
enum State {
|
| 74 |
IN_HEAP = 0, ///< The "in heap" state constant. |
|
| 75 |
PRE_HEAP = -1, ///< The "pre heap" state constant. |
|
| 76 |
|
|
| 74 |
IN_HEAP = 0, ///< = 0. The "in heap" state constant. |
|
| 75 |
PRE_HEAP = -1, ///< = -1. The "pre heap" state constant. |
|
| 76 |
POST_HEAP = -2 ///< = -2. The "post heap" state constant. |
|
| 77 | 77 |
}; |
| ... | ... |
@@ -34,3 +34,3 @@ |
| 34 | 34 |
|
| 35 |
/// \ingroup |
|
| 35 |
/// \ingroup graph_properties |
|
| 36 | 36 |
/// \file |
| ... | ... |
@@ -42,3 +42,3 @@ |
| 42 | 42 |
|
| 43 |
/// \ingroup |
|
| 43 |
/// \ingroup graph_properties |
|
| 44 | 44 |
/// |
| ... | ... |
@@ -65,3 +65,3 @@ |
| 65 | 65 |
|
| 66 |
/// \ingroup |
|
| 66 |
/// \ingroup graph_properties |
|
| 67 | 67 |
/// |
| ... | ... |
@@ -107,3 +107,3 @@ |
| 107 | 107 |
|
| 108 |
/// \ingroup |
|
| 108 |
/// \ingroup graph_properties |
|
| 109 | 109 |
/// |
| ... | ... |
@@ -113,2 +113,5 @@ |
| 113 | 113 |
/// |
| 114 |
/// \image html connected_components.png |
|
| 115 |
/// \image latex connected_components.eps "Connected components" width=\textwidth |
|
| 116 |
/// |
|
| 114 | 117 |
/// \param graph The graph. It must be undirected. |
| ... | ... |
@@ -119,3 +122,2 @@ |
| 119 | 122 |
/// \return The number of components |
| 120 |
/// |
|
| 121 | 123 |
template <class Graph, class NodeMap> |
| ... | ... |
@@ -229,3 +231,3 @@ |
| 229 | 231 |
|
| 230 |
/// \ingroup |
|
| 232 |
/// \ingroup graph_properties |
|
| 231 | 233 |
/// |
| ... | ... |
@@ -287,3 +289,3 @@ |
| 287 | 289 |
|
| 288 |
/// \ingroup |
|
| 290 |
/// \ingroup graph_properties |
|
| 289 | 291 |
/// |
| ... | ... |
@@ -351,3 +353,3 @@ |
| 351 | 353 |
|
| 352 |
/// \ingroup |
|
| 354 |
/// \ingroup graph_properties |
|
| 353 | 355 |
/// |
| ... | ... |
@@ -363,2 +365,5 @@ |
| 363 | 365 |
/// |
| 366 |
/// \image html strongly_connected_components.png |
|
| 367 |
/// \image latex strongly_connected_components.eps "Strongly connected components" width=\textwidth |
|
| 368 |
/// |
|
| 364 | 369 |
/// \param digraph The digraph. |
| ... | ... |
@@ -369,3 +374,2 @@ |
| 369 | 374 |
/// \return The number of components |
| 370 |
/// |
|
| 371 | 375 |
template <typename Digraph, typename NodeMap> |
| ... | ... |
@@ -418,3 +422,3 @@ |
| 418 | 422 |
|
| 419 |
/// \ingroup |
|
| 423 |
/// \ingroup graph_properties |
|
| 420 | 424 |
/// |
| ... | ... |
@@ -702,3 +706,3 @@ |
| 702 | 706 |
|
| 703 |
/// \ingroup |
|
| 707 |
/// \ingroup graph_properties |
|
| 704 | 708 |
/// |
| ... | ... |
@@ -717,3 +721,3 @@ |
| 717 | 721 |
|
| 718 |
/// \ingroup |
|
| 722 |
/// \ingroup graph_properties |
|
| 719 | 723 |
/// |
| ... | ... |
@@ -752,3 +756,3 @@ |
| 752 | 756 |
|
| 753 |
/// \ingroup |
|
| 757 |
/// \ingroup graph_properties |
|
| 754 | 758 |
/// |
| ... | ... |
@@ -761,2 +765,5 @@ |
| 761 | 765 |
/// |
| 766 |
/// \image html node_biconnected_components.png |
|
| 767 |
/// \image latex node_biconnected_components.eps "bi-node-connected components" width=\textwidth |
|
| 768 |
/// |
|
| 762 | 769 |
/// \param graph The graph. |
| ... | ... |
@@ -767,3 +774,2 @@ |
| 767 | 774 |
/// \return The number of components. |
| 768 |
/// |
|
| 769 | 775 |
template <typename Graph, typename EdgeMap> |
| ... | ... |
@@ -795,3 +801,3 @@ |
| 795 | 801 |
|
| 796 |
/// \ingroup |
|
| 802 |
/// \ingroup graph_properties |
|
| 797 | 803 |
/// |
| ... | ... |
@@ -1025,3 +1031,3 @@ |
| 1025 | 1031 |
|
| 1026 |
/// \ingroup |
|
| 1032 |
/// \ingroup graph_properties |
|
| 1027 | 1033 |
/// |
| ... | ... |
@@ -1040,3 +1046,3 @@ |
| 1040 | 1046 |
|
| 1041 |
/// \ingroup |
|
| 1047 |
/// \ingroup graph_properties |
|
| 1042 | 1048 |
/// |
| ... | ... |
@@ -1075,3 +1081,3 @@ |
| 1075 | 1081 |
|
| 1076 |
/// \ingroup |
|
| 1082 |
/// \ingroup graph_properties |
|
| 1077 | 1083 |
/// |
| ... | ... |
@@ -1084,2 +1090,5 @@ |
| 1084 | 1090 |
/// |
| 1091 |
/// \image html edge_biconnected_components.png |
|
| 1092 |
/// \image latex edge_biconnected_components.eps "bi-edge-connected components" width=\textwidth |
|
| 1093 |
/// |
|
| 1085 | 1094 |
/// \param graph The graph. |
| ... | ... |
@@ -1090,3 +1099,2 @@ |
| 1090 | 1099 |
/// \return The number of components. |
| 1091 |
/// |
|
| 1092 | 1100 |
template <typename Graph, typename NodeMap> |
| ... | ... |
@@ -1117,3 +1125,3 @@ |
| 1117 | 1125 |
|
| 1118 |
/// \ingroup |
|
| 1126 |
/// \ingroup graph_properties |
|
| 1119 | 1127 |
/// |
| ... | ... |
@@ -1181,3 +1189,3 @@ |
| 1181 | 1189 |
|
| 1182 |
/// \ingroup |
|
| 1190 |
/// \ingroup graph_properties |
|
| 1183 | 1191 |
/// |
| ... | ... |
@@ -1220,3 +1228,3 @@ |
| 1220 | 1228 |
|
| 1221 |
/// \ingroup |
|
| 1229 |
/// \ingroup graph_properties |
|
| 1222 | 1230 |
/// |
| ... | ... |
@@ -1275,3 +1283,3 @@ |
| 1275 | 1283 |
|
| 1276 |
/// \ingroup |
|
| 1284 |
/// \ingroup graph_properties |
|
| 1277 | 1285 |
/// |
| ... | ... |
@@ -1317,3 +1325,3 @@ |
| 1317 | 1325 |
|
| 1318 |
/// \ingroup |
|
| 1326 |
/// \ingroup graph_properties |
|
| 1319 | 1327 |
/// |
| ... | ... |
@@ -1351,3 +1359,3 @@ |
| 1351 | 1359 |
|
| 1352 |
/// \ingroup |
|
| 1360 |
/// \ingroup graph_properties |
|
| 1353 | 1361 |
/// |
| ... | ... |
@@ -1443,3 +1451,3 @@ |
| 1443 | 1451 |
|
| 1444 |
/// \ingroup |
|
| 1452 |
/// \ingroup graph_properties |
|
| 1445 | 1453 |
/// |
| ... | ... |
@@ -1480,3 +1488,3 @@ |
| 1480 | 1488 |
|
| 1481 |
/// \ingroup |
|
| 1489 |
/// \ingroup graph_properties |
|
| 1482 | 1490 |
/// |
| ... | ... |
@@ -1488,2 +1496,6 @@ |
| 1488 | 1496 |
/// partitions of the graph. |
| 1497 |
/// |
|
| 1498 |
/// \image html bipartite_partitions.png |
|
| 1499 |
/// \image latex bipartite_partitions.eps "Bipartite partititions" width=\textwidth |
|
| 1500 |
/// |
|
| 1489 | 1501 |
/// \param graph The undirected graph. |
| ... | ... |
@@ -1317,3 +1317,3 @@ |
| 1317 | 1317 |
for(NodeIt n(_g);n!=INVALID;++n) {
|
| 1318 |
_head |
|
| 1318 |
_head[n] = INVALID; |
|
| 1319 | 1319 |
} |
| ... | ... |
@@ -1324,4 +1324,4 @@ |
| 1324 | 1324 |
Node t = _g.target(arc); |
| 1325 |
_left.set(arc, INVALID); |
|
| 1326 |
_right.set(arc, INVALID); |
|
| 1325 |
_left[arc] = INVALID; |
|
| 1326 |
_right[arc] = INVALID; |
|
| 1327 | 1327 |
|
| ... | ... |
@@ -1329,4 +1329,4 @@ |
| 1329 | 1329 |
if (e == INVALID) {
|
| 1330 |
_head.set(s, arc); |
|
| 1331 |
_parent.set(arc, INVALID); |
|
| 1330 |
_head[s] = arc; |
|
| 1331 |
_parent[arc] = INVALID; |
|
| 1332 | 1332 |
return; |
| ... | ... |
@@ -1336,4 +1336,4 @@ |
| 1336 | 1336 |
if (_left[e] == INVALID) {
|
| 1337 |
_left.set(e, arc); |
|
| 1338 |
_parent.set(arc, e); |
|
| 1337 |
_left[e] = arc; |
|
| 1338 |
_parent[arc] = e; |
|
| 1339 | 1339 |
splay(arc); |
| ... | ... |
@@ -1345,4 +1345,4 @@ |
| 1345 | 1345 |
if (_right[e] == INVALID) {
|
| 1346 |
_right.set(e, arc); |
|
| 1347 |
_parent.set(arc, e); |
|
| 1346 |
_right[e] = arc; |
|
| 1347 |
_parent[arc] = e; |
|
| 1348 | 1348 |
splay(arc); |
| ... | ... |
@@ -1359,3 +1359,3 @@ |
| 1359 | 1359 |
if (_right[arc] != INVALID) {
|
| 1360 |
_parent |
|
| 1360 |
_parent[_right[arc]] = _parent[arc]; |
|
| 1361 | 1361 |
} |
| ... | ... |
@@ -1363,19 +1363,19 @@ |
| 1363 | 1363 |
if (_left[_parent[arc]] == arc) {
|
| 1364 |
_left |
|
| 1364 |
_left[_parent[arc]] = _right[arc]; |
|
| 1365 | 1365 |
} else {
|
| 1366 |
_right |
|
| 1366 |
_right[_parent[arc]] = _right[arc]; |
|
| 1367 | 1367 |
} |
| 1368 | 1368 |
} else {
|
| 1369 |
_head |
|
| 1369 |
_head[_g.source(arc)] = _right[arc]; |
|
| 1370 | 1370 |
} |
| 1371 | 1371 |
} else if (_right[arc] == INVALID) {
|
| 1372 |
_parent |
|
| 1372 |
_parent[_left[arc]] = _parent[arc]; |
|
| 1373 | 1373 |
if (_parent[arc] != INVALID) {
|
| 1374 | 1374 |
if (_left[_parent[arc]] == arc) {
|
| 1375 |
_left |
|
| 1375 |
_left[_parent[arc]] = _left[arc]; |
|
| 1376 | 1376 |
} else {
|
| 1377 |
_right |
|
| 1377 |
_right[_parent[arc]] = _left[arc]; |
|
| 1378 | 1378 |
} |
| 1379 | 1379 |
} else {
|
| 1380 |
_head |
|
| 1380 |
_head[_g.source(arc)] = _left[arc]; |
|
| 1381 | 1381 |
} |
| ... | ... |
@@ -1389,18 +1389,18 @@ |
| 1389 | 1389 |
Arc s = _parent[e]; |
| 1390 |
_right |
|
| 1390 |
_right[_parent[e]] = _left[e]; |
|
| 1391 | 1391 |
if (_left[e] != INVALID) {
|
| 1392 |
_parent |
|
| 1392 |
_parent[_left[e]] = _parent[e]; |
|
| 1393 | 1393 |
} |
| 1394 | 1394 |
|
| 1395 |
_left.set(e, _left[arc]); |
|
| 1396 |
_parent.set(_left[arc], e); |
|
| 1397 |
_right.set(e, _right[arc]); |
|
| 1398 |
_parent.set(_right[arc], e); |
|
| 1395 |
_left[e] = _left[arc]; |
|
| 1396 |
_parent[_left[arc]] = e; |
|
| 1397 |
_right[e] = _right[arc]; |
|
| 1398 |
_parent[_right[arc]] = e; |
|
| 1399 | 1399 |
|
| 1400 |
_parent |
|
| 1400 |
_parent[e] = _parent[arc]; |
|
| 1401 | 1401 |
if (_parent[arc] != INVALID) {
|
| 1402 | 1402 |
if (_left[_parent[arc]] == arc) {
|
| 1403 |
_left |
|
| 1403 |
_left[_parent[arc]] = e; |
|
| 1404 | 1404 |
} else {
|
| 1405 |
_right |
|
| 1405 |
_right[_parent[arc]] = e; |
|
| 1406 | 1406 |
} |
| ... | ... |
@@ -1409,5 +1409,5 @@ |
| 1409 | 1409 |
} else {
|
| 1410 |
_right.set(e, _right[arc]); |
|
| 1411 |
_parent.set(_right[arc], e); |
|
| 1412 |
|
|
| 1410 |
_right[e] = _right[arc]; |
|
| 1411 |
_parent[_right[arc]] = e; |
|
| 1412 |
_parent[e] = _parent[arc]; |
|
| 1413 | 1413 |
|
| ... | ... |
@@ -1415,8 +1415,8 @@ |
| 1415 | 1415 |
if (_left[_parent[arc]] == arc) {
|
| 1416 |
_left |
|
| 1416 |
_left[_parent[arc]] = e; |
|
| 1417 | 1417 |
} else {
|
| 1418 |
_right |
|
| 1418 |
_right[_parent[arc]] = e; |
|
| 1419 | 1419 |
} |
| 1420 | 1420 |
} else {
|
| 1421 |
_head |
|
| 1421 |
_head[_g.source(arc)] = e; |
|
| 1422 | 1422 |
} |
| ... | ... |
@@ -1432,6 +1432,6 @@ |
| 1432 | 1432 |
Arc left = refreshRec(v,a,m-1); |
| 1433 |
_left.set(me, left); |
|
| 1434 |
_parent.set(left, me); |
|
| 1433 |
_left[me] = left; |
|
| 1434 |
_parent[left] = me; |
|
| 1435 | 1435 |
} else {
|
| 1436 |
_left |
|
| 1436 |
_left[me] = INVALID; |
|
| 1437 | 1437 |
} |
| ... | ... |
@@ -1439,6 +1439,6 @@ |
| 1439 | 1439 |
Arc right = refreshRec(v,m+1,b); |
| 1440 |
_right.set(me, right); |
|
| 1441 |
_parent.set(right, me); |
|
| 1440 |
_right[me] = right; |
|
| 1441 |
_parent[right] = me; |
|
| 1442 | 1442 |
} else {
|
| 1443 |
_right |
|
| 1443 |
_right[me] = INVALID; |
|
| 1444 | 1444 |
} |
| ... | ... |
@@ -1454,6 +1454,6 @@ |
| 1454 | 1454 |
Arc head = refreshRec(v,0,v.size()-1); |
| 1455 |
_head.set(n, head); |
|
| 1456 |
_parent.set(head, INVALID); |
|
| 1455 |
_head[n] = head; |
|
| 1456 |
_parent[head] = INVALID; |
|
| 1457 | 1457 |
} |
| 1458 |
else _head |
|
| 1458 |
else _head[n] = INVALID; |
|
| 1459 | 1459 |
} |
| ... | ... |
@@ -1463,11 +1463,11 @@ |
| 1463 | 1463 |
Arc w = _parent[v]; |
| 1464 |
_parent.set(v, _parent[w]); |
|
| 1465 |
_parent.set(w, v); |
|
| 1466 |
_left.set(w, _right[v]); |
|
| 1467 |
_right.set(v, w); |
|
| 1464 |
_parent[v] = _parent[w]; |
|
| 1465 |
_parent[w] = v; |
|
| 1466 |
_left[w] = _right[v]; |
|
| 1467 |
_right[v] = w; |
|
| 1468 | 1468 |
if (_parent[v] != INVALID) {
|
| 1469 | 1469 |
if (_right[_parent[v]] == w) {
|
| 1470 |
_right |
|
| 1470 |
_right[_parent[v]] = v; |
|
| 1471 | 1471 |
} else {
|
| 1472 |
_left |
|
| 1472 |
_left[_parent[v]] = v; |
|
| 1473 | 1473 |
} |
| ... | ... |
@@ -1475,3 +1475,3 @@ |
| 1475 | 1475 |
if (_left[w] != INVALID){
|
| 1476 |
_parent |
|
| 1476 |
_parent[_left[w]] = w; |
|
| 1477 | 1477 |
} |
| ... | ... |
@@ -1481,11 +1481,11 @@ |
| 1481 | 1481 |
Arc w = _parent[v]; |
| 1482 |
_parent.set(v, _parent[w]); |
|
| 1483 |
_parent.set(w, v); |
|
| 1484 |
_right.set(w, _left[v]); |
|
| 1485 |
_left.set(v, w); |
|
| 1482 |
_parent[v] = _parent[w]; |
|
| 1483 |
_parent[w] = v; |
|
| 1484 |
_right[w] = _left[v]; |
|
| 1485 |
_left[v] = w; |
|
| 1486 | 1486 |
if (_parent[v] != INVALID){
|
| 1487 | 1487 |
if (_left[_parent[v]] == w) {
|
| 1488 |
_left |
|
| 1488 |
_left[_parent[v]] = v; |
|
| 1489 | 1489 |
} else {
|
| 1490 |
_right |
|
| 1490 |
_right[_parent[v]] = v; |
|
| 1491 | 1491 |
} |
| ... | ... |
@@ -1493,3 +1493,3 @@ |
| 1493 | 1493 |
if (_right[w] != INVALID){
|
| 1494 |
_parent |
|
| 1494 |
_parent[_right[w]] = w; |
|
| 1495 | 1495 |
} |
| ... | ... |
@@ -74,2 +74,3 @@ |
| 74 | 74 |
_prob = CPXcreateprob(cplexEnv(), &status, "Cplex problem"); |
| 75 |
messageLevel(MESSAGE_NOTHING); |
|
| 75 | 76 |
} |
| ... | ... |
@@ -80,2 +81,3 @@ |
| 80 | 81 |
_prob = CPXcreateprob(cplexEnv(), &status, "Cplex problem"); |
| 82 |
messageLevel(MESSAGE_NOTHING); |
|
| 81 | 83 |
} |
| ... | ... |
@@ -88,2 +90,3 @@ |
| 88 | 90 |
cols = cplex.cols; |
| 91 |
messageLevel(MESSAGE_NOTHING); |
|
| 89 | 92 |
} |
| ... | ... |
@@ -440,2 +443,21 @@ |
| 440 | 443 |
|
| 444 |
void CplexBase::_messageLevel(MessageLevel level) {
|
|
| 445 |
switch (level) {
|
|
| 446 |
case MESSAGE_NOTHING: |
|
| 447 |
_message_enabled = false; |
|
| 448 |
break; |
|
| 449 |
case MESSAGE_ERROR: |
|
| 450 |
case MESSAGE_WARNING: |
|
| 451 |
case MESSAGE_NORMAL: |
|
| 452 |
case MESSAGE_VERBOSE: |
|
| 453 |
_message_enabled = true; |
|
| 454 |
break; |
|
| 455 |
} |
|
| 456 |
} |
|
| 457 |
|
|
| 458 |
void CplexBase::_applyMessageLevel() {
|
|
| 459 |
CPXsetintparam(cplexEnv(), CPX_PARAM_SCRIND, |
|
| 460 |
_message_enabled ? CPX_ON : CPX_OFF); |
|
| 461 |
} |
|
| 462 |
|
|
| 441 | 463 |
// CplexLp members |
| ... | ... |
@@ -509,2 +531,3 @@ |
| 509 | 531 |
_clear_temporals(); |
| 532 |
_applyMessageLevel(); |
|
| 510 | 533 |
return convertStatus(CPXlpopt(cplexEnv(), _prob)); |
| ... | ... |
@@ -514,2 +537,3 @@ |
| 514 | 537 |
_clear_temporals(); |
| 538 |
_applyMessageLevel(); |
|
| 515 | 539 |
return convertStatus(CPXprimopt(cplexEnv(), _prob)); |
| ... | ... |
@@ -519,2 +543,3 @@ |
| 519 | 543 |
_clear_temporals(); |
| 544 |
_applyMessageLevel(); |
|
| 520 | 545 |
return convertStatus(CPXdualopt(cplexEnv(), _prob)); |
| ... | ... |
@@ -524,2 +549,3 @@ |
| 524 | 549 |
_clear_temporals(); |
| 550 |
_applyMessageLevel(); |
|
| 525 | 551 |
return convertStatus(CPXbaropt(cplexEnv(), _prob)); |
| ... | ... |
@@ -602,3 +628,3 @@ |
| 602 | 628 |
|
| 603 |
// |
|
| 629 |
// Cplex 7.0 status values |
|
| 604 | 630 |
// This table lists the statuses, returned by the CPXgetstat() |
| ... | ... |
@@ -649,3 +675,3 @@ |
| 649 | 675 |
// |
| 650 |
// |
|
| 676 |
// Pending return values |
|
| 651 | 677 |
// ??case CPX_ABORT_DUAL_INFEAS |
| ... | ... |
@@ -720,3 +746,2 @@ |
| 720 | 746 |
//CPXgetstat(cplexEnv(), _prob); |
| 721 |
//printf("A primal status: %d, CPX_OPTIMAL=%d \n",stat,CPX_OPTIMAL);
|
|
| 722 | 747 |
switch (stat) {
|
| ... | ... |
@@ -753,3 +778,3 @@ |
| 753 | 778 |
|
| 754 |
//9.0 |
|
| 779 |
// Cplex 9.0 status values |
|
| 755 | 780 |
// CPX_STAT_ABORT_DUAL_OBJ_LIM |
| ... | ... |
@@ -866,2 +891,3 @@ |
| 866 | 891 |
int status; |
| 892 |
_applyMessageLevel(); |
|
| 867 | 893 |
status = CPXmipopt (cplexEnv(), _prob); |
| ... | ... |
@@ -146,2 +146,7 @@ |
| 146 | 146 |
|
| 147 |
virtual void _messageLevel(MessageLevel level); |
|
| 148 |
void _applyMessageLevel(); |
|
| 149 |
|
|
| 150 |
bool _message_enabled; |
|
| 151 |
|
|
| 147 | 152 |
public: |
| ... | ... |
@@ -150,6 +155,16 @@ |
| 150 | 155 |
const CplexEnv& env() const { return _env; }
|
| 156 |
|
|
| 157 |
/// \brief Returns the const cpxenv pointer |
|
| 151 | 158 |
/// |
| 159 |
/// \note The cpxenv might be destructed with the solver. |
|
| 152 | 160 |
const cpxenv* cplexEnv() const { return _env.cplexEnv(); }
|
| 153 | 161 |
|
| 162 |
/// \brief Returns the const cpxenv pointer |
|
| 163 |
/// |
|
| 164 |
/// \note The cpxenv might be destructed with the solver. |
|
| 165 |
cpxenv* cplexEnv() { return _env.cplexEnv(); }
|
|
| 166 |
|
|
| 167 |
/// Returns the cplex problem object |
|
| 154 | 168 |
cpxlp* cplexLp() { return _prob; }
|
| 169 |
/// Returns the cplex problem object |
|
| 155 | 170 |
const cpxlp* cplexLp() const { return _prob; }
|
| ... | ... |
@@ -39,7 +39,12 @@ |
| 39 | 39 |
{
|
| 40 |
///File type enum |
|
| 41 |
enum Type |
|
| 42 |
{
|
|
| 43 |
NONE, MIN, MAX, SP, MAT |
|
| 44 |
|
|
| 40 |
///\brief DIMACS file type enum |
|
| 41 |
/// |
|
| 42 |
///DIMACS file type enum. |
|
| 43 |
enum Type {
|
|
| 44 |
NONE, ///< Undefined type. |
|
| 45 |
MIN, ///< DIMACS file type for minimum cost flow problems. |
|
| 46 |
MAX, ///< DIMACS file type for maximum flow problems. |
|
| 47 |
SP, ///< DIMACS file type for shostest path problems. |
|
| 48 |
MAT ///< DIMACS file type for plain graphs and matching problems. |
|
| 49 |
}; |
|
| 45 | 50 |
///The file type |
| ... | ... |
@@ -51,3 +56,3 @@ |
| 51 | 56 |
int lineShift; |
| 52 |
/// |
|
| 57 |
///Constructor. It sets the type to \c NONE. |
|
| 53 | 58 |
DimacsDescriptor() : type(NONE) {}
|
| ... | ... |
@@ -57,6 +62,6 @@ |
| 57 | 62 |
|
| 58 |
///It starts seeking the beginning of the file for the problem type |
|
| 59 |
///and size info. The found data is returned in a special struct |
|
| 60 |
///that can be evaluated and passed to the appropriate reader |
|
| 61 |
///function. |
|
| 63 |
///This function starts seeking the beginning of the given file for the |
|
| 64 |
///problem type and size info. |
|
| 65 |
///The found data is returned in a special struct that can be evaluated |
|
| 66 |
///and passed to the appropriate reader function. |
|
| 62 | 67 |
DimacsDescriptor dimacsType(std::istream& is) |
| ... | ... |
@@ -98,4 +103,3 @@ |
| 98 | 103 |
|
| 99 |
|
|
| 100 |
/// DIMACS minimum cost flow reader function. |
|
| 104 |
/// \brief DIMACS minimum cost flow reader function. |
|
| 101 | 105 |
/// |
| ... | ... |
@@ -255,3 +259,3 @@ |
| 255 | 259 |
|
| 256 |
/// DIMACS maximum flow reader function. |
|
| 260 |
/// \brief DIMACS maximum flow reader function. |
|
| 257 | 261 |
/// |
| ... | ... |
@@ -289,3 +293,3 @@ |
| 289 | 293 |
|
| 290 |
/// DIMACS shortest path reader function. |
|
| 294 |
/// \brief DIMACS shortest path reader function. |
|
| 291 | 295 |
/// |
| ... | ... |
@@ -315,3 +319,3 @@ |
| 315 | 319 |
|
| 316 |
/// DIMACS capacitated digraph reader function. |
|
| 320 |
/// \brief DIMACS capacitated digraph reader function. |
|
| 317 | 321 |
/// |
| ... | ... |
@@ -361,7 +365,7 @@ |
| 361 | 365 |
|
| 362 |
/// DIMACS plain (di)graph reader function. |
|
| 366 |
/// \brief DIMACS plain (di)graph reader function. |
|
| 363 | 367 |
/// |
| 364 |
/// This function reads a (di)graph without any designated nodes and |
|
| 365 |
/// maps from DIMACS format, i.e. from DIMACS files having a line |
|
| 366 |
/// |
|
| 368 |
/// This function reads a plain (di)graph without any designated nodes |
|
| 369 |
/// and maps (e.g. a matching instance) from DIMACS format, i.e. from |
|
| 370 |
/// DIMACS files having a line starting with |
|
| 367 | 371 |
/// \code |
| ... | ... |
@@ -78,3 +78,3 @@ |
| 78 | 78 |
{
|
| 79 |
_where |
|
| 79 |
_where[*p=i] = p; |
|
| 80 | 80 |
} |
| ... | ... |
@@ -86,3 +86,3 @@ |
| 86 | 86 |
*p=i; |
| 87 |
_where |
|
| 87 |
_where[i] = p; |
|
| 88 | 88 |
} |
| ... | ... |
@@ -93,4 +93,4 @@ |
| 93 | 93 |
Vit ct = _where[ti]; |
| 94 |
_where.set(ti,_where[*i=*j]); |
|
| 95 |
_where.set(*j,ct); |
|
| 94 |
_where[ti] = _where[*i=*j]; |
|
| 95 |
_where[*j] = ct; |
|
| 96 | 96 |
*j=ti; |
| ... | ... |
@@ -228,3 +228,3 @@ |
| 228 | 228 |
Item it = *_last_active[_highest_active]; |
| 229 |
|
|
| 229 |
++_level[it]; |
|
| 230 | 230 |
swap(_last_active[_highest_active]--,_last_active[_highest_active+1]); |
| ... | ... |
@@ -251,3 +251,3 @@ |
| 251 | 251 |
copy(li,_first[new_level]); |
| 252 |
_level |
|
| 252 |
_level[li] = new_level; |
|
| 253 | 253 |
_highest_active=new_level; |
| ... | ... |
@@ -271,3 +271,3 @@ |
| 271 | 271 |
--_last_active[_max_level]; |
| 272 |
_level |
|
| 272 |
_level[li] = _max_level; |
|
| 273 | 273 |
|
| ... | ... |
@@ -301,3 +301,3 @@ |
| 301 | 301 |
Item it =*_last_active[level]; |
| 302 |
|
|
| 302 |
++_level[it]; |
|
| 303 | 303 |
swap(_last_active[level]--, --_first[level+1]); |
| ... | ... |
@@ -321,3 +321,3 @@ |
| 321 | 321 |
copy(ai,_first[new_level]); |
| 322 |
_level |
|
| 322 |
_level[ai] = new_level; |
|
| 323 | 323 |
if (new_level>_highest_active) _highest_active=new_level; |
| ... | ... |
@@ -341,3 +341,3 @@ |
| 341 | 341 |
--_last_active[_max_level]; |
| 342 |
_level |
|
| 342 |
_level[ai] = _max_level; |
|
| 343 | 343 |
|
| ... | ... |
@@ -372,3 +372,3 @@ |
| 372 | 372 |
copy(i,_first[new_level]); |
| 373 |
_level |
|
| 373 |
_level[i] = new_level; |
|
| 374 | 374 |
if(new_level>_highest_active) _highest_active=new_level; |
| ... | ... |
@@ -384,3 +384,3 @@ |
| 384 | 384 |
void dirtyTopButOne(Item i) {
|
| 385 |
_level |
|
| 385 |
_level[i] = _max_level - 1; |
|
| 386 | 386 |
} |
| ... | ... |
@@ -396,3 +396,3 @@ |
| 396 | 396 |
for(Vit i=f;i!=tl;++i) |
| 397 |
_level |
|
| 397 |
_level[*i] = _max_level; |
|
| 398 | 398 |
for(int i=l;i<=_max_level;i++) |
| ... | ... |
@@ -435,4 +435,4 @@ |
| 435 | 435 |
*n=i; |
| 436 |
_where.set(i,n); |
|
| 437 |
_level.set(i,_max_level); |
|
| 436 |
_where[i] = n; |
|
| 437 |
_level[i] = _max_level; |
|
| 438 | 438 |
++n; |
| ... | ... |
@@ -445,3 +445,3 @@ |
| 445 | 445 |
swap(_where[i],_init_num); |
| 446 |
_level |
|
| 446 |
_level[i] = _init_lev; |
|
| 447 | 447 |
++_init_num; |
| ... | ... |
@@ -553,3 +553,3 @@ |
| 553 | 553 |
void activate(Item i) {
|
| 554 |
_active |
|
| 554 |
_active[i] = true; |
|
| 555 | 555 |
|
| ... | ... |
@@ -562,5 +562,5 @@ |
| 562 | 562 |
//unlace |
| 563 |
_next |
|
| 563 |
_next[_prev[i]] = _next[i]; |
|
| 564 | 564 |
if (_next[i] != INVALID) {
|
| 565 |
_prev |
|
| 565 |
_prev[_next[i]] = _prev[i]; |
|
| 566 | 566 |
} else {
|
| ... | ... |
@@ -569,5 +569,5 @@ |
| 569 | 569 |
//lace |
| 570 |
_next.set(i, _first[level]); |
|
| 571 |
_prev.set(_first[level], i); |
|
| 572 |
|
|
| 570 |
_next[i] = _first[level]; |
|
| 571 |
_prev[_first[level]] = i; |
|
| 572 |
_prev[i] = INVALID; |
|
| 573 | 573 |
_first[level] = i; |
| ... | ... |
@@ -581,3 +581,3 @@ |
| 581 | 581 |
void deactivate(Item i) {
|
| 582 |
_active |
|
| 582 |
_active[i] = false; |
|
| 583 | 583 |
int level = _level[i]; |
| ... | ... |
@@ -588,5 +588,5 @@ |
| 588 | 588 |
//unlace |
| 589 |
_prev |
|
| 589 |
_prev[_next[i]] = _prev[i]; |
|
| 590 | 590 |
if (_prev[i] != INVALID) {
|
| 591 |
_next |
|
| 591 |
_next[_prev[i]] = _next[i]; |
|
| 592 | 592 |
} else {
|
| ... | ... |
@@ -595,5 +595,5 @@ |
| 595 | 595 |
//lace |
| 596 |
_prev.set(i, _last[level]); |
|
| 597 |
_next.set(_last[level], i); |
|
| 598 |
|
|
| 596 |
_prev[i] = _last[level]; |
|
| 597 |
_next[_last[level]] = i; |
|
| 598 |
_next[i] = INVALID; |
|
| 599 | 599 |
_last[level] = i; |
| ... | ... |
@@ -687,3 +687,3 @@ |
| 687 | 687 |
if (_next[i] != INVALID) {
|
| 688 |
_prev |
|
| 688 |
_prev[_next[i]] = INVALID; |
|
| 689 | 689 |
_first[_highest_active] = _next[i]; |
| ... | ... |
@@ -693,3 +693,3 @@ |
| 693 | 693 |
} |
| 694 |
_level |
|
| 694 |
_level[i] = ++_highest_active; |
|
| 695 | 695 |
if (_first[_highest_active] == INVALID) {
|
| ... | ... |
@@ -697,7 +697,7 @@ |
| 697 | 697 |
_last[_highest_active] = i; |
| 698 |
_prev.set(i, INVALID); |
|
| 699 |
_next.set(i, INVALID); |
|
| 698 |
_prev[i] = INVALID; |
|
| 699 |
_next[i] = INVALID; |
|
| 700 | 700 |
} else {
|
| 701 |
_prev.set(_first[_highest_active], i); |
|
| 702 |
_next.set(i, _first[_highest_active]); |
|
| 701 |
_prev[_first[_highest_active]] = i; |
|
| 702 |
_next[i] = _first[_highest_active]; |
|
| 703 | 703 |
_first[_highest_active] = i; |
| ... | ... |
@@ -716,3 +716,3 @@ |
| 716 | 716 |
if (_next[i] != INVALID) {
|
| 717 |
_prev |
|
| 717 |
_prev[_next[i]] = INVALID; |
|
| 718 | 718 |
_first[_highest_active] = _next[i]; |
| ... | ... |
@@ -722,10 +722,10 @@ |
| 722 | 722 |
} |
| 723 |
_level |
|
| 723 |
_level[i] = _highest_active = new_level; |
|
| 724 | 724 |
if (_first[_highest_active] == INVALID) {
|
| 725 | 725 |
_first[_highest_active] = _last[_highest_active] = i; |
| 726 |
_prev.set(i, INVALID); |
|
| 727 |
_next.set(i, INVALID); |
|
| 726 |
_prev[i] = INVALID; |
|
| 727 |
_next[i] = INVALID; |
|
| 728 | 728 |
} else {
|
| 729 |
_prev.set(_first[_highest_active], i); |
|
| 730 |
_next.set(i, _first[_highest_active]); |
|
| 729 |
_prev[_first[_highest_active]] = i; |
|
| 730 |
_next[i] = _first[_highest_active]; |
|
| 731 | 731 |
_first[_highest_active] = i; |
| ... | ... |
@@ -740,5 +740,5 @@ |
| 740 | 740 |
Item i = _first[_highest_active]; |
| 741 |
_level |
|
| 741 |
_level[i] = _max_level; |
|
| 742 | 742 |
if (_next[i] != INVALID) {
|
| 743 |
_prev |
|
| 743 |
_prev[_next[i]] = INVALID; |
|
| 744 | 744 |
_first[_highest_active] = _next[i]; |
| ... | ... |
@@ -776,3 +776,3 @@ |
| 776 | 776 |
if (_next[i] != INVALID) {
|
| 777 |
_prev |
|
| 777 |
_prev[_next[i]] = INVALID; |
|
| 778 | 778 |
_first[l] = _next[i]; |
| ... | ... |
@@ -782,10 +782,10 @@ |
| 782 | 782 |
} |
| 783 |
_level |
|
| 783 |
_level[i] = ++l; |
|
| 784 | 784 |
if (_first[l] == INVALID) {
|
| 785 | 785 |
_first[l] = _last[l] = i; |
| 786 |
_prev.set(i, INVALID); |
|
| 787 |
_next.set(i, INVALID); |
|
| 786 |
_prev[i] = INVALID; |
|
| 787 |
_next[i] = INVALID; |
|
| 788 | 788 |
} else {
|
| 789 |
_prev.set(_first[l], i); |
|
| 790 |
_next.set(i, _first[l]); |
|
| 789 |
_prev[_first[l]] = i; |
|
| 790 |
_next[i] = _first[l]; |
|
| 791 | 791 |
_first[l] = i; |
| ... | ... |
@@ -805,3 +805,3 @@ |
| 805 | 805 |
if (_next[i] != INVALID) {
|
| 806 |
_prev |
|
| 806 |
_prev[_next[i]] = INVALID; |
|
| 807 | 807 |
_first[l] = _next[i]; |
| ... | ... |
@@ -811,10 +811,10 @@ |
| 811 | 811 |
} |
| 812 |
_level |
|
| 812 |
_level[i] = l = new_level; |
|
| 813 | 813 |
if (_first[l] == INVALID) {
|
| 814 | 814 |
_first[l] = _last[l] = i; |
| 815 |
_prev.set(i, INVALID); |
|
| 816 |
_next.set(i, INVALID); |
|
| 815 |
_prev[i] = INVALID; |
|
| 816 |
_next[i] = INVALID; |
|
| 817 | 817 |
} else {
|
| 818 |
_prev.set(_first[l], i); |
|
| 819 |
_next.set(i, _first[l]); |
|
| 818 |
_prev[_first[l]] = i; |
|
| 819 |
_next[i] = _first[l]; |
|
| 820 | 820 |
_first[l] = i; |
| ... | ... |
@@ -834,3 +834,3 @@ |
| 834 | 834 |
if (_next[i] != INVALID) {
|
| 835 |
_prev |
|
| 835 |
_prev[_next[i]] = INVALID; |
|
| 836 | 836 |
_first[l] = _next[i]; |
| ... | ... |
@@ -840,3 +840,3 @@ |
| 840 | 840 |
} |
| 841 |
_level |
|
| 841 |
_level[i] = _max_level; |
|
| 842 | 842 |
if (l == _highest_active) {
|
| ... | ... |
@@ -858,3 +858,3 @@ |
| 858 | 858 |
if (_next[i] != INVALID) {
|
| 859 |
_prev |
|
| 859 |
_prev[_next[i]] = _prev[i]; |
|
| 860 | 860 |
} else {
|
| ... | ... |
@@ -863,3 +863,3 @@ |
| 863 | 863 |
if (_prev[i] != INVALID) {
|
| 864 |
_next |
|
| 864 |
_next[_prev[i]] = _next[i]; |
|
| 865 | 865 |
} else {
|
| ... | ... |
@@ -867,10 +867,10 @@ |
| 867 | 867 |
} |
| 868 |
_level |
|
| 868 |
_level[i] = new_level; |
|
| 869 | 869 |
if (_first[new_level] == INVALID) {
|
| 870 | 870 |
_first[new_level] = _last[new_level] = i; |
| 871 |
_prev.set(i, INVALID); |
|
| 872 |
_next.set(i, INVALID); |
|
| 871 |
_prev[i] = INVALID; |
|
| 872 |
_next[i] = INVALID; |
|
| 873 | 873 |
} else {
|
| 874 |
_prev.set(_first[new_level], i); |
|
| 875 |
_next.set(i, _first[new_level]); |
|
| 874 |
_prev[_first[new_level]] = i; |
|
| 875 |
_next[i] = _first[new_level]; |
|
| 876 | 876 |
_first[new_level] = i; |
| ... | ... |
@@ -890,3 +890,3 @@ |
| 890 | 890 |
void dirtyTopButOne(Item i) {
|
| 891 |
_level |
|
| 891 |
_level[i] = _max_level - 1; |
|
| 892 | 892 |
} |
| ... | ... |
@@ -901,3 +901,3 @@ |
| 901 | 901 |
while (n != INVALID) {
|
| 902 |
_level |
|
| 902 |
_level[n] = _max_level; |
|
| 903 | 903 |
n = _next[n]; |
| ... | ... |
@@ -939,4 +939,4 @@ |
| 939 | 939 |
i != INVALID; ++i) {
|
| 940 |
_level.set(i, _max_level); |
|
| 941 |
_active.set(i, false); |
|
| 940 |
_level[i] = _max_level; |
|
| 941 |
_active[i] = false; |
|
| 942 | 942 |
} |
| ... | ... |
@@ -946,3 +946,3 @@ |
| 946 | 946 |
void initAddItem(Item i) {
|
| 947 |
_level |
|
| 947 |
_level[i] = _init_level; |
|
| 948 | 948 |
if (_last[_init_level] == INVALID) {
|
| ... | ... |
@@ -950,8 +950,8 @@ |
| 950 | 950 |
_last[_init_level] = i; |
| 951 |
_prev.set(i, INVALID); |
|
| 952 |
_next.set(i, INVALID); |
|
| 951 |
_prev[i] = INVALID; |
|
| 952 |
_next[i] = INVALID; |
|
| 953 | 953 |
} else {
|
| 954 |
_prev.set(i, _last[_init_level]); |
|
| 955 |
_next.set(i, INVALID); |
|
| 956 |
|
|
| 954 |
_prev[i] = _last[_init_level]; |
|
| 955 |
_next[i] = INVALID; |
|
| 956 |
_next[_last[_init_level]] = i; |
|
| 957 | 957 |
_last[_init_level] = i; |
| ... | ... |
@@ -26,3 +26,3 @@ |
| 26 | 26 |
|
| 27 |
/// \ingroup |
|
| 27 |
/// \ingroup graph_properties |
|
| 28 | 28 |
/// \file |
| ... | ... |
@@ -38,3 +38,3 @@ |
| 38 | 38 |
|
| 39 |
/// \ingroup |
|
| 39 |
/// \ingroup graph_properties |
|
| 40 | 40 |
///This iterator converts to the \c Arc type of the digraph and using |
| ... | ... |
@@ -125,3 +125,3 @@ |
| 125 | 125 |
|
| 126 |
/// \ingroup |
|
| 126 |
/// \ingroup graph_properties |
|
| 127 | 127 |
///This iterator converts to the \c Arc (or \c Edge) |
| ... | ... |
@@ -230,3 +230,3 @@ |
| 230 | 230 |
|
| 231 |
/// \ingroup |
|
| 231 |
/// \ingroup graph_properties |
|
| 232 | 232 |
///Checks if the graph is Eulerian. It works for both directed and undirected |
| ... | ... |
@@ -159,5 +159,4 @@ |
| 159 | 159 |
/// |
| 160 |
/// This class conforms to the \ref concepts::Digraph "Digraph" concept |
|
| 161 |
/// and it also has an important extra feature that its maps are |
|
| 162 |
/// |
|
| 160 |
/// This class fully conforms to the \ref concepts::Digraph |
|
| 161 |
/// "Digraph concept". |
|
| 163 | 162 |
/// |
| ... | ... |
@@ -529,5 +528,3 @@ |
| 529 | 528 |
/// |
| 530 |
/// This class conforms to the \ref concepts::Graph "Graph" concept |
|
| 531 |
/// and it also has an important extra feature that its maps are |
|
| 532 |
/// |
|
| 529 |
/// This class fully conforms to the \ref concepts::Graph "Graph concept". |
|
| 533 | 530 |
/// |
| ... | ... |
@@ -33,2 +33,3 @@ |
| 33 | 33 |
glp_create_index(lp); |
| 34 |
messageLevel(MESSAGE_NOTHING); |
|
| 34 | 35 |
} |
| ... | ... |
@@ -41,2 +42,3 @@ |
| 41 | 42 |
cols = other.cols; |
| 43 |
messageLevel(MESSAGE_NOTHING); |
|
| 42 | 44 |
} |
| ... | ... |
@@ -528,2 +530,22 @@ |
| 528 | 530 |
|
| 531 |
void GlpkBase::_messageLevel(MessageLevel level) {
|
|
| 532 |
switch (level) {
|
|
| 533 |
case MESSAGE_NOTHING: |
|
| 534 |
_message_level = GLP_MSG_OFF; |
|
| 535 |
break; |
|
| 536 |
case MESSAGE_ERROR: |
|
| 537 |
_message_level = GLP_MSG_ERR; |
|
| 538 |
break; |
|
| 539 |
case MESSAGE_WARNING: |
|
| 540 |
_message_level = GLP_MSG_ERR; |
|
| 541 |
break; |
|
| 542 |
case MESSAGE_NORMAL: |
|
| 543 |
_message_level = GLP_MSG_ON; |
|
| 544 |
break; |
|
| 545 |
case MESSAGE_VERBOSE: |
|
| 546 |
_message_level = GLP_MSG_ALL; |
|
| 547 |
break; |
|
| 548 |
} |
|
| 549 |
} |
|
| 550 |
|
|
| 529 | 551 |
GlpkBase::FreeEnvHelper GlpkBase::freeEnvHelper; |
| ... | ... |
@@ -534,3 +556,2 @@ |
| 534 | 556 |
: LpBase(), LpSolver(), GlpkBase() {
|
| 535 |
messageLevel(MESSAGE_NO_OUTPUT); |
|
| 536 | 557 |
presolver(false); |
| ... | ... |
@@ -540,3 +561,2 @@ |
| 540 | 561 |
: LpBase(other), LpSolver(other), GlpkBase(other) {
|
| 541 |
messageLevel(MESSAGE_NO_OUTPUT); |
|
| 542 | 562 |
presolver(false); |
| ... | ... |
@@ -564,16 +584,3 @@ |
| 564 | 584 |
|
| 565 |
switch (_message_level) {
|
|
| 566 |
case MESSAGE_NO_OUTPUT: |
|
| 567 |
smcp.msg_lev = GLP_MSG_OFF; |
|
| 568 |
break; |
|
| 569 |
case MESSAGE_ERROR_MESSAGE: |
|
| 570 |
smcp.msg_lev = GLP_MSG_ERR; |
|
| 571 |
break; |
|
| 572 |
case MESSAGE_NORMAL_OUTPUT: |
|
| 573 |
smcp.msg_lev = GLP_MSG_ON; |
|
| 574 |
break; |
|
| 575 |
case MESSAGE_FULL_OUTPUT: |
|
| 576 |
smcp.msg_lev = GLP_MSG_ALL; |
|
| 577 |
break; |
|
| 578 |
} |
|
| 585 |
smcp.msg_lev = _message_level; |
|
| 579 | 586 |
smcp.presolve = _presolve; |
| ... | ... |
@@ -606,16 +613,3 @@ |
| 606 | 613 |
|
| 607 |
switch (_message_level) {
|
|
| 608 |
case MESSAGE_NO_OUTPUT: |
|
| 609 |
smcp.msg_lev = GLP_MSG_OFF; |
|
| 610 |
break; |
|
| 611 |
case MESSAGE_ERROR_MESSAGE: |
|
| 612 |
smcp.msg_lev = GLP_MSG_ERR; |
|
| 613 |
break; |
|
| 614 |
case MESSAGE_NORMAL_OUTPUT: |
|
| 615 |
smcp.msg_lev = GLP_MSG_ON; |
|
| 616 |
break; |
|
| 617 |
case MESSAGE_FULL_OUTPUT: |
|
| 618 |
smcp.msg_lev = GLP_MSG_ALL; |
|
| 619 |
break; |
|
| 620 |
} |
|
| 614 |
smcp.msg_lev = _message_level; |
|
| 621 | 615 |
smcp.meth = GLP_DUAL; |
| ... | ... |
@@ -860,6 +854,2 @@ |
| 860 | 854 |
|
| 861 |
void GlpkLp::messageLevel(MessageLevel m) {
|
|
| 862 |
_message_level = m; |
|
| 863 |
} |
|
| 864 |
|
|
| 865 | 855 |
// GlpkMip members |
| ... | ... |
@@ -868,3 +858,2 @@ |
| 868 | 858 |
: LpBase(), MipSolver(), GlpkBase() {
|
| 869 |
messageLevel(MESSAGE_NO_OUTPUT); |
|
| 870 | 859 |
} |
| ... | ... |
@@ -873,3 +862,2 @@ |
| 873 | 862 |
: LpBase(), MipSolver(), GlpkBase(other) {
|
| 874 |
messageLevel(MESSAGE_NO_OUTPUT); |
|
| 875 | 863 |
} |
| ... | ... |
@@ -902,16 +890,3 @@ |
| 902 | 890 |
|
| 903 |
switch (_message_level) {
|
|
| 904 |
case MESSAGE_NO_OUTPUT: |
|
| 905 |
smcp.msg_lev = GLP_MSG_OFF; |
|
| 906 |
break; |
|
| 907 |
case MESSAGE_ERROR_MESSAGE: |
|
| 908 |
smcp.msg_lev = GLP_MSG_ERR; |
|
| 909 |
break; |
|
| 910 |
case MESSAGE_NORMAL_OUTPUT: |
|
| 911 |
smcp.msg_lev = GLP_MSG_ON; |
|
| 912 |
break; |
|
| 913 |
case MESSAGE_FULL_OUTPUT: |
|
| 914 |
smcp.msg_lev = GLP_MSG_ALL; |
|
| 915 |
break; |
|
| 916 |
} |
|
| 891 |
smcp.msg_lev = _message_level; |
|
| 917 | 892 |
smcp.meth = GLP_DUAL; |
| ... | ... |
@@ -940,16 +915,3 @@ |
| 940 | 915 |
|
| 941 |
switch (_message_level) {
|
|
| 942 |
case MESSAGE_NO_OUTPUT: |
|
| 943 |
iocp.msg_lev = GLP_MSG_OFF; |
|
| 944 |
break; |
|
| 945 |
case MESSAGE_ERROR_MESSAGE: |
|
| 946 |
iocp.msg_lev = GLP_MSG_ERR; |
|
| 947 |
break; |
|
| 948 |
case MESSAGE_NORMAL_OUTPUT: |
|
| 949 |
iocp.msg_lev = GLP_MSG_ON; |
|
| 950 |
break; |
|
| 951 |
case MESSAGE_FULL_OUTPUT: |
|
| 952 |
iocp.msg_lev = GLP_MSG_ALL; |
|
| 953 |
break; |
|
| 954 |
} |
|
| 916 |
iocp.msg_lev = _message_level; |
|
| 955 | 917 |
|
| ... | ... |
@@ -1004,6 +966,2 @@ |
| 1004 | 966 |
|
| 1005 |
void GlpkMip::messageLevel(MessageLevel m) {
|
|
| 1006 |
_message_level = m; |
|
| 1007 |
} |
|
| 1008 |
|
|
| 1009 | 967 |
} //END OF NAMESPACE LEMON |
| ... | ... |
@@ -102,2 +102,4 @@ |
| 102 | 102 |
|
| 103 |
virtual void _messageLevel(MessageLevel level); |
|
| 104 |
|
|
| 103 | 105 |
private: |
| ... | ... |
@@ -113,2 +115,6 @@ |
| 113 | 115 |
static FreeEnvHelper freeEnvHelper; |
| 116 |
|
|
| 117 |
protected: |
|
| 118 |
|
|
| 119 |
int _message_level; |
|
| 114 | 120 |
|
| ... | ... |
@@ -193,26 +199,2 @@ |
| 193 | 199 |
|
| 194 |
///Enum for \c messageLevel() parameter |
|
| 195 |
enum MessageLevel {
|
|
| 196 |
/// no output (default value) |
|
| 197 |
MESSAGE_NO_OUTPUT = 0, |
|
| 198 |
/// error messages only |
|
| 199 |
MESSAGE_ERROR_MESSAGE = 1, |
|
| 200 |
/// normal output |
|
| 201 |
MESSAGE_NORMAL_OUTPUT = 2, |
|
| 202 |
/// full output (includes informational messages) |
|
| 203 |
MESSAGE_FULL_OUTPUT = 3 |
|
| 204 |
}; |
|
| 205 |
|
|
| 206 |
private: |
|
| 207 |
|
|
| 208 |
MessageLevel _message_level; |
|
| 209 |
|
|
| 210 |
public: |
|
| 211 |
|
|
| 212 |
///Set the verbosity of the messages |
|
| 213 |
|
|
| 214 |
///Set the verbosity of the messages |
|
| 215 |
/// |
|
| 216 |
///\param m is the level of the messages output by the solver routines. |
|
| 217 |
void messageLevel(MessageLevel m); |
|
| 218 | 200 |
}; |
| ... | ... |
@@ -246,26 +228,2 @@ |
| 246 | 228 |
|
| 247 |
///Enum for \c messageLevel() parameter |
|
| 248 |
enum MessageLevel {
|
|
| 249 |
/// no output (default value) |
|
| 250 |
MESSAGE_NO_OUTPUT = 0, |
|
| 251 |
/// error messages only |
|
| 252 |
MESSAGE_ERROR_MESSAGE = 1, |
|
| 253 |
/// normal output |
|
| 254 |
MESSAGE_NORMAL_OUTPUT = 2, |
|
| 255 |
/// full output (includes informational messages) |
|
| 256 |
MESSAGE_FULL_OUTPUT = 3 |
|
| 257 |
}; |
|
| 258 |
|
|
| 259 |
private: |
|
| 260 |
|
|
| 261 |
MessageLevel _message_level; |
|
| 262 |
|
|
| 263 |
public: |
|
| 264 |
|
|
| 265 |
///Set the verbosity of the messages |
|
| 266 |
|
|
| 267 |
///Set the verbosity of the messages |
|
| 268 |
/// |
|
| 269 |
///\param m is the level of the messages output by the solver routines. |
|
| 270 |
void messageLevel(MessageLevel m); |
|
| 271 | 229 |
}; |
| ... | ... |
@@ -44,3 +44,2 @@ |
| 44 | 44 |
/// this edge from the tree determine the corresponding minimum cut. |
| 45 |
/// |
|
| 46 | 45 |
/// Therefore once this tree is computed, the minimum cut between any pair |
| ... | ... |
@@ -49,8 +48,7 @@ |
| 49 | 48 |
/// The algorithm calculates \e n-1 distinct minimum cuts (currently with |
| 50 |
/// the \ref Preflow algorithm), therefore the algorithm has |
|
| 51 |
/// \f$(O(n^3\sqrt{e})\f$ overall time complexity. It calculates a
|
|
| 52 |
/// rooted Gomory-Hu tree, its structure and the weights can be obtained |
|
| 53 |
/// by \c predNode(), \c predValue() and \c rootDist(). |
|
| 54 |
/// |
|
| 55 |
/// The members \c minCutMap() and \c minCutValue() calculate |
|
| 49 |
/// the \ref Preflow algorithm), thus it has \f$O(n^3\sqrt{e})\f$ overall
|
|
| 50 |
/// time complexity. It calculates a rooted Gomory-Hu tree. |
|
| 51 |
/// The structure of the tree and the edge weights can be |
|
| 52 |
/// obtained using \c predNode(), \c predValue() and \c rootDist(). |
|
| 53 |
/// The functions \c minCutMap() and \c minCutValue() calculate |
|
| 56 | 54 |
/// the minimum cut and the minimum cut value between any two nodes |
| ... | ... |
@@ -60,4 +58,4 @@ |
| 60 | 58 |
/// \tparam GR The type of the undirected graph the algorithm runs on. |
| 61 |
/// \tparam CAP The type of the edge map describing the edge capacities. |
|
| 62 |
/// It is \ref concepts::Graph::EdgeMap "GR::EdgeMap<int>" by default. |
|
| 59 |
/// \tparam CAP The type of the edge map containing the capacities. |
|
| 60 |
/// The default map type is \ref concepts::Graph::EdgeMap "GR::EdgeMap<int>". |
|
| 63 | 61 |
#ifdef DOXYGEN |
| ... | ... |
@@ -72,5 +70,5 @@ |
| 72 | 70 |
|
| 73 |
/// The graph type |
|
| 71 |
/// The graph type of the algorithm |
|
| 74 | 72 |
typedef GR Graph; |
| 75 |
/// The type of the |
|
| 73 |
/// The capacity map type of the algorithm |
|
| 76 | 74 |
typedef CAP Capacity; |
| ... | ... |
@@ -119,3 +117,3 @@ |
| 119 | 117 |
/// |
| 120 |
/// Constructor |
|
| 118 |
/// Constructor. |
|
| 121 | 119 |
/// \param graph The undirected graph the algorithm runs on. |
| ... | ... |
@@ -132,3 +130,3 @@ |
| 132 | 130 |
/// |
| 133 |
/// Destructor |
|
| 131 |
/// Destructor. |
|
| 134 | 132 |
~GomoryHu() {
|
| ... | ... |
@@ -145,7 +143,7 @@ |
| 145 | 143 |
for (NodeIt n(_graph); n != INVALID; ++n) {
|
| 146 |
_pred->set(n, _root); |
|
| 147 |
_order->set(n, -1); |
|
| 144 |
(*_pred)[n] = _root; |
|
| 145 |
(*_order)[n] = -1; |
|
| 148 | 146 |
} |
| 149 |
_pred->set(_root, INVALID); |
|
| 150 |
_weight->set(_root, std::numeric_limits<Value>::max()); |
|
| 147 |
(*_pred)[_root] = INVALID; |
|
| 148 |
(*_weight)[_root] = std::numeric_limits<Value>::max(); |
|
| 151 | 149 |
} |
| ... | ... |
@@ -166,3 +164,3 @@ |
| 166 | 164 |
|
| 167 |
_weight |
|
| 165 |
(*_weight)[n] = fa.flowValue(); |
|
| 168 | 166 |
|
| ... | ... |
@@ -170,3 +168,3 @@ |
| 170 | 168 |
if (nn != n && fa.minCut(nn) && (*_pred)[nn] == pn) {
|
| 171 |
_pred |
|
| 169 |
(*_pred)[nn] = n; |
|
| 172 | 170 |
} |
| ... | ... |
@@ -174,6 +172,6 @@ |
| 174 | 172 |
if ((*_pred)[pn] != INVALID && fa.minCut((*_pred)[pn])) {
|
| 175 |
_pred->set(n, (*_pred)[pn]); |
|
| 176 |
_pred->set(pn, n); |
|
| 177 |
_weight->set(n, (*_weight)[pn]); |
|
| 178 |
_weight->set(pn, fa.flowValue()); |
|
| 173 |
(*_pred)[n] = (*_pred)[pn]; |
|
| 174 |
(*_pred)[pn] = n; |
|
| 175 |
(*_weight)[n] = (*_weight)[pn]; |
|
| 176 |
(*_weight)[pn] = fa.flowValue(); |
|
| 179 | 177 |
} |
| ... | ... |
@@ -181,3 +179,3 @@ |
| 181 | 179 |
|
| 182 |
_order |
|
| 180 |
(*_order)[_root] = 0; |
|
| 183 | 181 |
int index = 1; |
| ... | ... |
@@ -192,3 +190,3 @@ |
| 192 | 190 |
while (!st.empty()) {
|
| 193 |
_order |
|
| 191 |
(*_order)[st.back()] = index++; |
|
| 194 | 192 |
st.pop_back(); |
| ... | ... |
@@ -217,3 +215,3 @@ |
| 217 | 215 |
///functions.\n |
| 218 |
///\ref run() |
|
| 216 |
///\ref run() should be called before using them.\n |
|
| 219 | 217 |
///See also \ref MinCutNodeIt and \ref MinCutEdgeIt. |
| ... | ... |
@@ -224,6 +222,8 @@ |
| 224 | 222 |
/// |
| 225 |
/// This function returns the predecessor node in the Gomory-Hu tree. |
|
| 226 |
/// If the node is |
|
| 227 |
/// the root of the Gomory-Hu tree, then it returns \c INVALID. |
|
| 228 |
Node predNode(const Node& node) {
|
|
| 223 |
/// This function returns the predecessor node of the given node |
|
| 224 |
/// in the Gomory-Hu tree. |
|
| 225 |
/// If \c node is the root of the tree, then it returns \c INVALID. |
|
| 226 |
/// |
|
| 227 |
/// \pre \ref run() must be called before using this function. |
|
| 228 |
Node predNode(const Node& node) const {
|
|
| 229 | 229 |
return (*_pred)[node]; |
| ... | ... |
@@ -231,10 +231,2 @@ |
| 231 | 231 |
|
| 232 |
/// \brief Return the distance from the root node in the Gomory-Hu tree. |
|
| 233 |
/// |
|
| 234 |
/// This function returns the distance of \c node from the root node |
|
| 235 |
/// in the Gomory-Hu tree. |
|
| 236 |
int rootDist(const Node& node) {
|
|
| 237 |
return (*_order)[node]; |
|
| 238 |
} |
|
| 239 |
|
|
| 240 | 232 |
/// \brief Return the weight of the predecessor edge in the |
| ... | ... |
@@ -242,5 +234,8 @@ |
| 242 | 234 |
/// |
| 243 |
/// This function returns the weight of the predecessor edge in the |
|
| 244 |
/// Gomory-Hu tree. If the node is the root, the result is undefined. |
|
| 245 |
|
|
| 235 |
/// This function returns the weight of the predecessor edge of the |
|
| 236 |
/// given node in the Gomory-Hu tree. |
|
| 237 |
/// If \c node is the root of the tree, the result is undefined. |
|
| 238 |
/// |
|
| 239 |
/// \pre \ref run() must be called before using this function. |
|
| 240 |
Value predValue(const Node& node) const {
|
|
| 246 | 241 |
return (*_weight)[node]; |
| ... | ... |
@@ -248,8 +243,21 @@ |
| 248 | 243 |
|
| 244 |
/// \brief Return the distance from the root node in the Gomory-Hu tree. |
|
| 245 |
/// |
|
| 246 |
/// This function returns the distance of the given node from the root |
|
| 247 |
/// node in the Gomory-Hu tree. |
|
| 248 |
/// |
|
| 249 |
/// \pre \ref run() must be called before using this function. |
|
| 250 |
int rootDist(const Node& node) const {
|
|
| 251 |
return (*_order)[node]; |
|
| 252 |
} |
|
| 253 |
|
|
| 249 | 254 |
/// \brief Return the minimum cut value between two nodes |
| 250 | 255 |
/// |
| 251 |
/// This function returns the minimum cut value between two nodes. The |
|
| 252 |
/// algorithm finds the nearest common ancestor in the Gomory-Hu |
|
| 253 |
/// tree and calculates the minimum weight edge on the paths to |
|
| 254 |
/// the ancestor. |
|
| 256 |
/// This function returns the minimum cut value between the nodes |
|
| 257 |
/// \c s and \c t. |
|
| 258 |
/// It finds the nearest common ancestor of the given nodes in the |
|
| 259 |
/// Gomory-Hu tree and calculates the minimum weight edge on the |
|
| 260 |
/// paths to the ancestor. |
|
| 261 |
/// |
|
| 262 |
/// \pre \ref run() must be called before using this function. |
|
| 255 | 263 |
Value minCutValue(const Node& s, const Node& t) const {
|
| ... | ... |
@@ -276,12 +284,19 @@ |
| 276 | 284 |
/// |
| 277 |
/// For higher level interfaces |
|
| 285 |
/// For higher level interfaces see MinCutNodeIt and MinCutEdgeIt. |
|
| 286 |
/// |
|
| 287 |
/// \param s The base node. |
|
| 288 |
/// \param t The node you want to separate from node \c s. |
|
| 289 |
/// \param cutMap The cut will be returned in this map. |
|
| 290 |
/// It must be a \c bool (or convertible) \ref concepts::ReadWriteMap |
|
| 291 |
/// "ReadWriteMap" on the graph nodes. |
|
| 292 |
/// |
|
| 293 |
/// \return The value of the minimum cut between \c s and \c t. |
|
| 294 |
/// |
|
| 295 |
/// \pre \ref run() must be called before using this function. |
|
| 278 | 296 |
template <typename CutMap> |
| 279 |
Value minCutMap(const Node& s, ///< |
|
| 297 |
Value minCutMap(const Node& s, ///< |
|
| 280 | 298 |
const Node& t, |
| 281 |
///< |
|
| 299 |
///< |
|
| 282 | 300 |
CutMap& cutMap |
| 283 |
///< The cut will be returned in this map. |
|
| 284 |
/// It must be a \c bool (or convertible) |
|
| 285 |
/// \ref concepts::ReadWriteMap "ReadWriteMap" |
|
| 286 |
/// on the graph nodes. |
|
| 301 |
///< |
|
| 287 | 302 |
) const {
|
| ... | ... |
@@ -311,5 +326,5 @@ |
| 311 | 326 |
typename Graph::template NodeMap<bool> reached(_graph, false); |
| 312 |
reached |
|
| 327 |
reached[_root] = true; |
|
| 313 | 328 |
cutMap.set(_root, !s_root); |
| 314 |
reached |
|
| 329 |
reached[rn] = true; |
|
| 315 | 330 |
cutMap.set(rn, s_root); |
| ... | ... |
@@ -340,3 +355,3 @@ |
| 340 | 355 |
/// This iterator class lists the nodes of a minimum cut found by |
| 341 |
/// GomoryHu. Before using it, you must allocate a GomoryHu class |
|
| 356 |
/// GomoryHu. Before using it, you must allocate a GomoryHu class |
|
| 342 | 357 |
/// and call its \ref GomoryHu::run() "run()" method. |
| ... | ... |
@@ -437,3 +452,3 @@ |
| 437 | 452 |
/// This iterator class lists the edges of a minimum cut found by |
| 438 |
/// GomoryHu. Before using it, you must allocate a GomoryHu class |
|
| 453 |
/// GomoryHu. Before using it, you must allocate a GomoryHu class |
|
| 439 | 454 |
/// and call its \ref GomoryHu::run() "run()" method. |
| ... | ... |
@@ -449,4 +464,4 @@ |
| 449 | 464 |
/// \endcode |
| 450 |
/// the result will be the same as it is returned by |
|
| 451 |
/// \ref GomoryHu::minCutValue() "gom.minCutValue(s,t)" |
|
| 465 |
/// The result will be the same as the value returned by |
|
| 466 |
/// \ref GomoryHu::minCutValue() "gom.minCutValue(s,t)". |
|
| 452 | 467 |
class MinCutEdgeIt |
| ... | ... |
@@ -470,2 +485,6 @@ |
| 470 | 485 |
public: |
| 486 |
/// Constructor |
|
| 487 |
|
|
| 488 |
/// Constructor. |
|
| 489 |
/// |
|
| 471 | 490 |
MinCutEdgeIt(GomoryHu const &gomory, |
| ... | ... |
@@ -480,3 +499,3 @@ |
| 480 | 499 |
/// will be oriented from the |
| 481 |
/// |
|
| 500 |
/// nodes of the component containing \c s, |
|
| 482 | 501 |
/// otherwise they will be oriented in the opposite |
| ... | ... |
@@ -270,3 +270,2 @@ |
| 270 | 270 |
///\image latex nodeshape_1.eps "SQUARE shape (1)" width=2cm |
| 271 |
/// |
|
| 272 | 271 |
SQUARE=1, |
| ... | ... |
@@ -275,3 +274,2 @@ |
| 275 | 274 |
///\image latex nodeshape_2.eps "DIAMOND shape (2)" width=2cm |
| 276 |
/// |
|
| 277 | 275 |
DIAMOND=2, |
| ... | ... |
@@ -279,4 +277,3 @@ |
| 279 | 277 |
///\image html nodeshape_3.png |
| 280 |
///\image latex nodeshape_2.eps "MALE shape (4)" width=2cm |
|
| 281 |
/// |
|
| 278 |
///\image latex nodeshape_3.eps "MALE shape (3)" width=2cm |
|
| 282 | 279 |
MALE=3, |
| ... | ... |
@@ -284,4 +281,3 @@ |
| 284 | 281 |
///\image html nodeshape_4.png |
| 285 |
///\image latex nodeshape_2.eps "FEMALE shape (4)" width=2cm |
|
| 286 |
/// |
|
| 282 |
///\image latex nodeshape_4.eps "FEMALE shape (4)" width=2cm |
|
| 287 | 283 |
FEMALE=4 |
| ... | ... |
@@ -499,5 +499,3 @@ |
| 499 | 499 |
/// This graph type fully conforms to the \ref concepts::Graph |
| 500 |
/// "Graph" concept, and it also has an important extra feature |
|
| 501 |
/// that its maps are real \ref concepts::ReferenceMap |
|
| 502 |
/// " |
|
| 500 |
/// "Graph concept". |
|
| 503 | 501 |
class GridGraph : public ExtendedGridGraphBase {
|
| ... | ... |
@@ -33,4 +33,4 @@ |
| 33 | 33 |
/// |
| 34 |
/// Implementation of the Hao-Orlin algorithm class for testing network |
|
| 35 |
/// reliability. |
|
| 34 |
/// Implementation of the Hao-Orlin algorithm for finding a minimum cut |
|
| 35 |
/// in a digraph. |
|
| 36 | 36 |
|
| ... | ... |
@@ -40,28 +40,30 @@ |
| 40 | 40 |
/// |
| 41 |
/// \brief |
|
| 41 |
/// \brief Hao-Orlin algorithm for finding a minimum cut in a digraph. |
|
| 42 | 42 |
/// |
| 43 |
/// Hao-Orlin calculates a minimum cut in a directed graph |
|
| 44 |
/// \f$D=(V,A)\f$. It takes a fixed node \f$ source \in V \f$ and |
|
| 43 |
/// This class implements the Hao-Orlin algorithm for finding a minimum |
|
| 44 |
/// value cut in a directed graph \f$D=(V,A)\f$. |
|
| 45 |
/// It takes a fixed node \f$ source \in V \f$ and |
|
| 45 | 46 |
/// consists of two phases: in the first phase it determines a |
| 46 | 47 |
/// minimum cut with \f$ source \f$ on the source-side (i.e. a set |
| 47 |
/// \f$ X\subsetneq V \f$ with \f$ source \in X \f$ and minimal |
|
| 48 |
/// out-degree) and in the second phase it determines a minimum cut |
|
| 48 |
/// \f$ X\subsetneq V \f$ with \f$ source \in X \f$ and minimal outgoing |
|
| 49 |
/// capacity) and in the second phase it determines a minimum cut |
|
| 49 | 50 |
/// with \f$ source \f$ on the sink-side (i.e. a set |
| 50 |
/// \f$ X\subsetneq V \f$ with \f$ source \notin X \f$ and minimal |
|
| 51 |
/// out-degree). Obviously, the smaller of these two cuts will be a |
|
| 51 |
/// \f$ X\subsetneq V \f$ with \f$ source \notin X \f$ and minimal outgoing |
|
| 52 |
/// capacity). Obviously, the smaller of these two cuts will be a |
|
| 52 | 53 |
/// minimum cut of \f$ D \f$. The algorithm is a modified |
| 53 |
/// push-relabel |
|
| 54 |
/// preflow push-relabel algorithm. Our implementation calculates |
|
| 54 | 55 |
/// the minimum cut in \f$ O(n^2\sqrt{m}) \f$ time (we use the
|
| 55 | 56 |
/// highest-label rule), or in \f$O(nm)\f$ for unit capacities. The |
| 56 |
/// purpose of such algorithm is testing network reliability. For an |
|
| 57 |
/// undirected graph you can run just the first phase of the |
|
| 58 |
/// algorithm or you can use the algorithm of Nagamochi and Ibaraki |
|
| 59 |
/// which solves the undirected problem in |
|
| 60 |
/// \f$ O(nm + n^2 \log n) \f$ time: it is implemented in the |
|
| 61 |
/// NagamochiIbaraki algorithm class. |
|
| 57 |
/// purpose of such algorithm is e.g. testing network reliability. |
|
| 62 | 58 |
/// |
| 63 |
/// \param GR The digraph class the algorithm runs on. |
|
| 64 |
/// \param CAP An arc map of capacities which can be any numreric type. |
|
| 65 |
/// The default type is \ref concepts::Digraph::ArcMap "GR::ArcMap<int>". |
|
| 66 |
/// \param TOL Tolerance class for handling inexact computations. The |
|
| 59 |
/// For an undirected graph you can run just the first phase of the |
|
| 60 |
/// algorithm or you can use the algorithm of Nagamochi and Ibaraki, |
|
| 61 |
/// which solves the undirected problem in \f$ O(nm + n^2 \log n) \f$ |
|
| 62 |
/// time. It is implemented in the NagamochiIbaraki algorithm class. |
|
| 63 |
/// |
|
| 64 |
/// \tparam GR The type of the digraph the algorithm runs on. |
|
| 65 |
/// \tparam CAP The type of the arc map containing the capacities, |
|
| 66 |
/// which can be any numreric type. The default map type is |
|
| 67 |
/// \ref concepts::Digraph::ArcMap "GR::ArcMap<int>". |
|
| 68 |
/// \tparam TOL Tolerance class for handling inexact computations. The |
|
| 67 | 69 |
/// default tolerance type is \ref Tolerance "Tolerance<CAP::Value>". |
| ... | ... |
@@ -75,11 +77,16 @@ |
| 75 | 77 |
class HaoOrlin {
|
| 78 |
public: |
|
| 79 |
|
|
| 80 |
/// The digraph type of the algorithm |
|
| 81 |
typedef GR Digraph; |
|
| 82 |
/// The capacity map type of the algorithm |
|
| 83 |
typedef CAP CapacityMap; |
|
| 84 |
/// The tolerance type of the algorithm |
|
| 85 |
typedef TOL Tolerance; |
|
| 86 |
|
|
| 76 | 87 |
private: |
| 77 | 88 |
|
| 78 |
typedef GR Digraph; |
|
| 79 |
typedef CAP CapacityMap; |
|
| 80 |
typedef TOL Tolerance; |
|
| 81 |
|
|
| 82 | 89 |
typedef typename CapacityMap::Value Value; |
| 83 | 90 |
|
| 84 |
|
|
| 91 |
TEMPLATE_DIGRAPH_TYPEDEFS(Digraph); |
|
| 85 | 92 |
|
| ... | ... |
@@ -163,3 +170,3 @@ |
| 163 | 170 |
void activate(const Node& i) {
|
| 164 |
_active |
|
| 171 |
(*_active)[i] = true; |
|
| 165 | 172 |
|
| ... | ... |
@@ -169,5 +176,5 @@ |
| 169 | 176 |
//unlace |
| 170 |
_next |
|
| 177 |
(*_next)[(*_prev)[i]] = (*_next)[i]; |
|
| 171 | 178 |
if ((*_next)[i] != INVALID) {
|
| 172 |
_prev |
|
| 179 |
(*_prev)[(*_next)[i]] = (*_prev)[i]; |
|
| 173 | 180 |
} else {
|
| ... | ... |
@@ -176,5 +183,5 @@ |
| 176 | 183 |
//lace |
| 177 |
_next->set(i, _first[bucket]); |
|
| 178 |
_prev->set(_first[bucket], i); |
|
| 179 |
|
|
| 184 |
(*_next)[i] = _first[bucket]; |
|
| 185 |
(*_prev)[_first[bucket]] = i; |
|
| 186 |
(*_prev)[i] = INVALID; |
|
| 180 | 187 |
_first[bucket] = i; |
| ... | ... |
@@ -183,3 +190,3 @@ |
| 183 | 190 |
void deactivate(const Node& i) {
|
| 184 |
_active |
|
| 191 |
(*_active)[i] = false; |
|
| 185 | 192 |
int bucket = (*_bucket)[i]; |
| ... | ... |
@@ -189,5 +196,5 @@ |
| 189 | 196 |
//unlace |
| 190 |
_prev |
|
| 197 |
(*_prev)[(*_next)[i]] = (*_prev)[i]; |
|
| 191 | 198 |
if ((*_prev)[i] != INVALID) {
|
| 192 |
_next |
|
| 199 |
(*_next)[(*_prev)[i]] = (*_next)[i]; |
|
| 193 | 200 |
} else {
|
| ... | ... |
@@ -196,5 +203,5 @@ |
| 196 | 203 |
//lace |
| 197 |
_prev->set(i, _last[bucket]); |
|
| 198 |
_next->set(_last[bucket], i); |
|
| 199 |
|
|
| 204 |
(*_prev)[i] = _last[bucket]; |
|
| 205 |
(*_next)[_last[bucket]] = i; |
|
| 206 |
(*_next)[i] = INVALID; |
|
| 200 | 207 |
_last[bucket] = i; |
| ... | ... |
@@ -205,10 +212,10 @@ |
| 205 | 212 |
if (_last[bucket] != INVALID) {
|
| 206 |
_prev->set(i, _last[bucket]); |
|
| 207 |
_next->set(_last[bucket], i); |
|
| 208 |
|
|
| 213 |
(*_prev)[i] = _last[bucket]; |
|
| 214 |
(*_next)[_last[bucket]] = i; |
|
| 215 |
(*_next)[i] = INVALID; |
|
| 209 | 216 |
_last[bucket] = i; |
| 210 | 217 |
} else {
|
| 211 |
_prev |
|
| 218 |
(*_prev)[i] = INVALID; |
|
| 212 | 219 |
_first[bucket] = i; |
| 213 |
_next |
|
| 220 |
(*_next)[i] = INVALID; |
|
| 214 | 221 |
_last[bucket] = i; |
| ... | ... |
@@ -220,3 +227,4 @@ |
| 220 | 227 |
for (NodeIt n(_graph); n != INVALID; ++n) {
|
| 221 |
_excess |
|
| 228 |
(*_excess)[n] = 0; |
|
| 229 |
(*_source_set)[n] = false; |
|
| 222 | 230 |
} |
| ... | ... |
@@ -224,3 +232,3 @@ |
| 224 | 232 |
for (ArcIt a(_graph); a != INVALID; ++a) {
|
| 225 |
_flow |
|
| 233 |
(*_flow)[a] = 0; |
|
| 226 | 234 |
} |
| ... | ... |
@@ -234,3 +242,3 @@ |
| 234 | 242 |
|
| 235 |
reached |
|
| 243 |
reached[_source] = true; |
|
| 236 | 244 |
bool first_set = true; |
| ... | ... |
@@ -242,3 +250,3 @@ |
| 242 | 250 |
queue[qlast++] = t; |
| 243 |
reached |
|
| 251 |
reached[t] = true; |
|
| 244 | 252 |
|
| ... | ... |
@@ -259,3 +267,3 @@ |
| 259 | 267 |
if (!reached[u] && _tolerance.positive((*_capacity)[a])) {
|
| 260 |
reached |
|
| 268 |
reached[u] = true; |
|
| 261 | 269 |
queue[qlast++] = u; |
| ... | ... |
@@ -268,6 +276,6 @@ |
| 268 | 276 |
++bucket_num; |
| 269 |
_bucket |
|
| 277 |
(*_bucket)[_source] = 0; |
|
| 270 | 278 |
_dormant[0] = true; |
| 271 | 279 |
} |
| 272 |
_source_set |
|
| 280 |
(*_source_set)[_source] = true; |
|
| 273 | 281 |
|
| ... | ... |
@@ -278,4 +286,4 @@ |
| 278 | 286 |
Node u = _graph.target(a); |
| 279 |
_flow->set(a, (*_capacity)[a]); |
|
| 280 |
_excess->set(u, (*_excess)[u] + (*_capacity)[a]); |
|
| 287 |
(*_flow)[a] = (*_capacity)[a]; |
|
| 288 |
(*_excess)[u] += (*_capacity)[a]; |
|
| 281 | 289 |
if (!(*_active)[u] && u != _source) {
|
| ... | ... |
@@ -320,4 +328,4 @@ |
| 320 | 328 |
if (!_tolerance.less(rem, excess)) {
|
| 321 |
_flow->set(a, (*_flow)[a] + excess); |
|
| 322 |
_excess->set(v, (*_excess)[v] + excess); |
|
| 329 |
(*_flow)[a] += excess; |
|
| 330 |
(*_excess)[v] += excess; |
|
| 323 | 331 |
excess = 0; |
| ... | ... |
@@ -326,4 +334,4 @@ |
| 326 | 334 |
excess -= rem; |
| 327 |
_excess->set(v, (*_excess)[v] + rem); |
|
| 328 |
_flow->set(a, (*_capacity)[a]); |
|
| 335 |
(*_excess)[v] += rem; |
|
| 336 |
(*_flow)[a] = (*_capacity)[a]; |
|
| 329 | 337 |
} |
| ... | ... |
@@ -344,4 +352,4 @@ |
| 344 | 352 |
if (!_tolerance.less(rem, excess)) {
|
| 345 |
_flow->set(a, (*_flow)[a] - excess); |
|
| 346 |
_excess->set(v, (*_excess)[v] + excess); |
|
| 353 |
(*_flow)[a] -= excess; |
|
| 354 |
(*_excess)[v] += excess; |
|
| 347 | 355 |
excess = 0; |
| ... | ... |
@@ -350,4 +358,4 @@ |
| 350 | 358 |
excess -= rem; |
| 351 |
_excess->set(v, (*_excess)[v] + rem); |
|
| 352 |
_flow->set(a, 0); |
|
| 359 |
(*_excess)[v] += rem; |
|
| 360 |
(*_flow)[a] = 0; |
|
| 353 | 361 |
} |
| ... | ... |
@@ -360,3 +368,3 @@ |
| 360 | 368 |
|
| 361 |
_excess |
|
| 369 |
(*_excess)[n] = excess; |
|
| 362 | 370 |
|
| ... | ... |
@@ -378,3 +386,3 @@ |
| 378 | 386 |
_first[(*_bucket)[n]] = (*_next)[n]; |
| 379 |
_prev |
|
| 387 |
(*_prev)[(*_next)[n]] = INVALID; |
|
| 380 | 388 |
|
| ... | ... |
@@ -384,6 +392,6 @@ |
| 384 | 392 |
new_set->push_front(bucket_num); |
| 385 |
_bucket |
|
| 393 |
(*_bucket)[n] = bucket_num; |
|
| 386 | 394 |
_first[bucket_num] = _last[bucket_num] = n; |
| 387 |
_next->set(n, INVALID); |
|
| 388 |
_prev->set(n, INVALID); |
|
| 395 |
(*_next)[n] = INVALID; |
|
| 396 |
(*_prev)[n] = INVALID; |
|
| 389 | 397 |
_dormant[bucket_num] = true; |
| ... | ... |
@@ -397,3 +405,3 @@ |
| 397 | 405 |
_first[*_highest] = (*_next)[n]; |
| 398 |
_prev |
|
| 406 |
(*_prev)[(*_next)[n]] = INVALID; |
|
| 399 | 407 |
|
| ... | ... |
@@ -411,6 +419,6 @@ |
| 411 | 419 |
|
| 412 |
_bucket->set(n, *_highest); |
|
| 413 |
_next->set(n, _first[*_highest]); |
|
| 420 |
(*_bucket)[n] = *_highest; |
|
| 421 |
(*_next)[n] = _first[*_highest]; |
|
| 414 | 422 |
if (_first[*_highest] != INVALID) {
|
| 415 |
_prev |
|
| 423 |
(*_prev)[_first[*_highest]] = n; |
|
| 416 | 424 |
} else {
|
| ... | ... |
@@ -436,3 +444,3 @@ |
| 436 | 444 |
for (NodeIt i(_graph); i != INVALID; ++i) {
|
| 437 |
_min_cut_map |
|
| 445 |
(*_min_cut_map)[i] = true; |
|
| 438 | 446 |
} |
| ... | ... |
@@ -442,3 +450,3 @@ |
| 442 | 450 |
while (n != INVALID) {
|
| 443 |
_min_cut_map |
|
| 451 |
(*_min_cut_map)[n] = false; |
|
| 444 | 452 |
n = (*_next)[n]; |
| ... | ... |
@@ -455,3 +463,3 @@ |
| 455 | 463 |
} else {
|
| 456 |
_prev |
|
| 464 |
(*_prev)[(*_next)[target]] = (*_prev)[target]; |
|
| 457 | 465 |
new_target = (*_next)[target]; |
| ... | ... |
@@ -461,3 +469,3 @@ |
| 461 | 469 |
} else {
|
| 462 |
_next |
|
| 470 |
(*_next)[(*_prev)[target]] = (*_next)[target]; |
|
| 463 | 471 |
} |
| ... | ... |
@@ -477,5 +485,5 @@ |
| 477 | 485 |
|
| 478 |
_bucket |
|
| 486 |
(*_bucket)[target] = 0; |
|
| 479 | 487 |
|
| 480 |
_source_set |
|
| 488 |
(*_source_set)[target] = true; |
|
| 481 | 489 |
for (OutArcIt a(_graph, target); a != INVALID; ++a) {
|
| ... | ... |
@@ -487,4 +495,4 @@ |
| 487 | 495 |
} |
| 488 |
_excess->set(v, (*_excess)[v] + rem); |
|
| 489 |
_flow->set(a, (*_capacity)[a]); |
|
| 496 |
(*_excess)[v] += rem; |
|
| 497 |
(*_flow)[a] = (*_capacity)[a]; |
|
| 490 | 498 |
} |
| ... | ... |
@@ -498,4 +506,4 @@ |
| 498 | 506 |
} |
| 499 |
_excess->set(v, (*_excess)[v] + rem); |
|
| 500 |
_flow->set(a, 0); |
|
| 507 |
(*_excess)[v] += rem; |
|
| 508 |
(*_flow)[a] = 0; |
|
| 501 | 509 |
} |
| ... | ... |
@@ -519,3 +527,4 @@ |
| 519 | 527 |
for (NodeIt n(_graph); n != INVALID; ++n) {
|
| 520 |
_excess |
|
| 528 |
(*_excess)[n] = 0; |
|
| 529 |
(*_source_set)[n] = false; |
|
| 521 | 530 |
} |
| ... | ... |
@@ -523,3 +532,3 @@ |
| 523 | 532 |
for (ArcIt a(_graph); a != INVALID; ++a) {
|
| 524 |
_flow |
|
| 533 |
(*_flow)[a] = 0; |
|
| 525 | 534 |
} |
| ... | ... |
@@ -533,3 +542,3 @@ |
| 533 | 542 |
|
| 534 |
reached |
|
| 543 |
reached[_source] = true; |
|
| 535 | 544 |
|
| ... | ... |
@@ -542,3 +551,3 @@ |
| 542 | 551 |
queue[qlast++] = t; |
| 543 |
reached |
|
| 552 |
reached[t] = true; |
|
| 544 | 553 |
|
| ... | ... |
@@ -559,3 +568,3 @@ |
| 559 | 568 |
if (!reached[u] && _tolerance.positive((*_capacity)[a])) {
|
| 560 |
reached |
|
| 569 |
reached[u] = true; |
|
| 561 | 570 |
queue[qlast++] = u; |
| ... | ... |
@@ -568,6 +577,6 @@ |
| 568 | 577 |
++bucket_num; |
| 569 |
_bucket |
|
| 578 |
(*_bucket)[_source] = 0; |
|
| 570 | 579 |
_dormant[0] = true; |
| 571 | 580 |
} |
| 572 |
_source_set |
|
| 581 |
(*_source_set)[_source] = true; |
|
| 573 | 582 |
|
| ... | ... |
@@ -578,4 +587,4 @@ |
| 578 | 587 |
Node u = _graph.source(a); |
| 579 |
_flow->set(a, (*_capacity)[a]); |
|
| 580 |
_excess->set(u, (*_excess)[u] + (*_capacity)[a]); |
|
| 588 |
(*_flow)[a] = (*_capacity)[a]; |
|
| 589 |
(*_excess)[u] += (*_capacity)[a]; |
|
| 581 | 590 |
if (!(*_active)[u] && u != _source) {
|
| ... | ... |
@@ -620,4 +629,4 @@ |
| 620 | 629 |
if (!_tolerance.less(rem, excess)) {
|
| 621 |
_flow->set(a, (*_flow)[a] + excess); |
|
| 622 |
_excess->set(v, (*_excess)[v] + excess); |
|
| 630 |
(*_flow)[a] += excess; |
|
| 631 |
(*_excess)[v] += excess; |
|
| 623 | 632 |
excess = 0; |
| ... | ... |
@@ -626,4 +635,4 @@ |
| 626 | 635 |
excess -= rem; |
| 627 |
_excess->set(v, (*_excess)[v] + rem); |
|
| 628 |
_flow->set(a, (*_capacity)[a]); |
|
| 636 |
(*_excess)[v] += rem; |
|
| 637 |
(*_flow)[a] = (*_capacity)[a]; |
|
| 629 | 638 |
} |
| ... | ... |
@@ -644,4 +653,4 @@ |
| 644 | 653 |
if (!_tolerance.less(rem, excess)) {
|
| 645 |
_flow->set(a, (*_flow)[a] - excess); |
|
| 646 |
_excess->set(v, (*_excess)[v] + excess); |
|
| 654 |
(*_flow)[a] -= excess; |
|
| 655 |
(*_excess)[v] += excess; |
|
| 647 | 656 |
excess = 0; |
| ... | ... |
@@ -650,4 +659,4 @@ |
| 650 | 659 |
excess -= rem; |
| 651 |
_excess->set(v, (*_excess)[v] + rem); |
|
| 652 |
_flow->set(a, 0); |
|
| 660 |
(*_excess)[v] += rem; |
|
| 661 |
(*_flow)[a] = 0; |
|
| 653 | 662 |
} |
| ... | ... |
@@ -660,3 +669,3 @@ |
| 660 | 669 |
|
| 661 |
_excess |
|
| 670 |
(*_excess)[n] = excess; |
|
| 662 | 671 |
|
| ... | ... |
@@ -678,3 +687,3 @@ |
| 678 | 687 |
_first[(*_bucket)[n]] = (*_next)[n]; |
| 679 |
_prev |
|
| 688 |
(*_prev)[(*_next)[n]] = INVALID; |
|
| 680 | 689 |
|
| ... | ... |
@@ -684,6 +693,6 @@ |
| 684 | 693 |
new_set->push_front(bucket_num); |
| 685 |
_bucket |
|
| 694 |
(*_bucket)[n] = bucket_num; |
|
| 686 | 695 |
_first[bucket_num] = _last[bucket_num] = n; |
| 687 |
_next->set(n, INVALID); |
|
| 688 |
_prev->set(n, INVALID); |
|
| 696 |
(*_next)[n] = INVALID; |
|
| 697 |
(*_prev)[n] = INVALID; |
|
| 689 | 698 |
_dormant[bucket_num] = true; |
| ... | ... |
@@ -697,3 +706,3 @@ |
| 697 | 706 |
_first[*_highest] = (*_next)[n]; |
| 698 |
_prev |
|
| 707 |
(*_prev)[(*_next)[n]] = INVALID; |
|
| 699 | 708 |
|
| ... | ... |
@@ -710,6 +719,6 @@ |
| 710 | 719 |
|
| 711 |
_bucket->set(n, *_highest); |
|
| 712 |
_next->set(n, _first[*_highest]); |
|
| 720 |
(*_bucket)[n] = *_highest; |
|
| 721 |
(*_next)[n] = _first[*_highest]; |
|
| 713 | 722 |
if (_first[*_highest] != INVALID) {
|
| 714 |
_prev |
|
| 723 |
(*_prev)[_first[*_highest]] = n; |
|
| 715 | 724 |
} else {
|
| ... | ... |
@@ -735,3 +744,3 @@ |
| 735 | 744 |
for (NodeIt i(_graph); i != INVALID; ++i) {
|
| 736 |
_min_cut_map |
|
| 745 |
(*_min_cut_map)[i] = false; |
|
| 737 | 746 |
} |
| ... | ... |
@@ -741,3 +750,3 @@ |
| 741 | 750 |
while (n != INVALID) {
|
| 742 |
_min_cut_map |
|
| 751 |
(*_min_cut_map)[n] = true; |
|
| 743 | 752 |
n = (*_next)[n]; |
| ... | ... |
@@ -754,3 +763,3 @@ |
| 754 | 763 |
} else {
|
| 755 |
_prev |
|
| 764 |
(*_prev)[(*_next)[target]] = (*_prev)[target]; |
|
| 756 | 765 |
new_target = (*_next)[target]; |
| ... | ... |
@@ -760,3 +769,3 @@ |
| 760 | 769 |
} else {
|
| 761 |
_next |
|
| 770 |
(*_next)[(*_prev)[target]] = (*_next)[target]; |
|
| 762 | 771 |
} |
| ... | ... |
@@ -776,5 +785,5 @@ |
| 776 | 785 |
|
| 777 |
_bucket |
|
| 786 |
(*_bucket)[target] = 0; |
|
| 778 | 787 |
|
| 779 |
_source_set |
|
| 788 |
(*_source_set)[target] = true; |
|
| 780 | 789 |
for (InArcIt a(_graph, target); a != INVALID; ++a) {
|
| ... | ... |
@@ -786,4 +795,4 @@ |
| 786 | 795 |
} |
| 787 |
_excess->set(v, (*_excess)[v] + rem); |
|
| 788 |
_flow->set(a, (*_capacity)[a]); |
|
| 796 |
(*_excess)[v] += rem; |
|
| 797 |
(*_flow)[a] = (*_capacity)[a]; |
|
| 789 | 798 |
} |
| ... | ... |
@@ -797,4 +806,4 @@ |
| 797 | 806 |
} |
| 798 |
_excess->set(v, (*_excess)[v] + rem); |
|
| 799 |
_flow->set(a, 0); |
|
| 807 |
(*_excess)[v] += rem; |
|
| 808 |
(*_flow)[a] = 0; |
|
| 800 | 809 |
} |
| ... | ... |
@@ -817,3 +826,3 @@ |
| 817 | 826 |
|
| 818 |
/// \name Execution |
|
| 827 |
/// \name Execution Control |
|
| 819 | 828 |
/// The simplest way to execute the algorithm is to use |
| ... | ... |
@@ -821,5 +830,5 @@ |
| 821 | 830 |
/// \n |
| 822 |
/// If you need more control on the execution, |
|
| 823 |
/// first you must call \ref init(), then the \ref calculateIn() or |
|
| 824 |
/// |
|
| 831 |
/// If you need better control on the execution, |
|
| 832 |
/// you have to call one of the \ref init() functions first, then |
|
| 833 |
/// \ref calculateOut() and/or \ref calculateIn(). |
|
| 825 | 834 |
|
| ... | ... |
@@ -827,7 +836,8 @@ |
| 827 | 836 |
|
| 828 |
/// \brief |
|
| 837 |
/// \brief Initialize the internal data structures. |
|
| 829 | 838 |
/// |
| 830 |
/// Initializes the internal data structures. It creates |
|
| 831 |
/// the maps, residual graph adaptors and some bucket structures |
|
| 832 |
/// |
|
| 839 |
/// This function initializes the internal data structures. It creates |
|
| 840 |
/// the maps and some bucket structures for the algorithm. |
|
| 841 |
/// The first node is used as the source node for the push-relabel |
|
| 842 |
/// algorithm. |
|
| 833 | 843 |
void init() {
|
| ... | ... |
@@ -836,8 +846,8 @@ |
| 836 | 846 |
|
| 837 |
/// \brief |
|
| 847 |
/// \brief Initialize the internal data structures. |
|
| 838 | 848 |
/// |
| 839 |
/// Initializes the internal data structures. It creates |
|
| 840 |
/// the maps, residual graph adaptor and some bucket structures |
|
| 841 |
/// for the algorithm. Node \c source is used as the push-relabel |
|
| 842 |
/// algorithm's source. |
|
| 849 |
/// This function initializes the internal data structures. It creates |
|
| 850 |
/// the maps and some bucket structures for the algorithm. |
|
| 851 |
/// The given node is used as the source node for the push-relabel |
|
| 852 |
/// algorithm. |
|
| 843 | 853 |
void init(const Node& source) {
|
| ... | ... |
@@ -881,8 +891,10 @@ |
| 881 | 891 |
|
| 882 |
/// \brief |
|
| 892 |
/// \brief Calculate a minimum cut with \f$ source \f$ on the |
|
| 883 | 893 |
/// source-side. |
| 884 | 894 |
/// |
| 885 |
/// |
|
| 895 |
/// This function calculates a minimum cut with \f$ source \f$ on the |
|
| 886 | 896 |
/// source-side (i.e. a set \f$ X\subsetneq V \f$ with |
| 887 |
/// \f$ source \in X \f$ and minimal |
|
| 897 |
/// \f$ source \in X \f$ and minimal outgoing capacity). |
|
| 898 |
/// |
|
| 899 |
/// \pre \ref init() must be called before using this function. |
|
| 888 | 900 |
void calculateOut() {
|
| ... | ... |
@@ -891,8 +903,10 @@ |
| 891 | 903 |
|
| 892 |
/// \brief Calculates a minimum cut with \f$ source \f$ on the |
|
| 893 |
/// target-side. |
|
| 904 |
/// \brief Calculate a minimum cut with \f$ source \f$ on the |
|
| 905 |
/// sink-side. |
|
| 894 | 906 |
/// |
| 895 |
/// Calculates a minimum cut with \f$ source \f$ on the |
|
| 896 |
/// target-side (i.e. a set \f$ X\subsetneq V \f$ with |
|
| 897 |
/// \f$ source \ |
|
| 907 |
/// This function calculates a minimum cut with \f$ source \f$ on the |
|
| 908 |
/// sink-side (i.e. a set \f$ X\subsetneq V \f$ with |
|
| 909 |
/// \f$ source \notin X \f$ and minimal outgoing capacity). |
|
| 910 |
/// |
|
| 911 |
/// \pre \ref init() must be called before using this function. |
|
| 898 | 912 |
void calculateIn() {
|
| ... | ... |
@@ -902,6 +916,6 @@ |
| 902 | 916 |
|
| 903 |
/// \brief |
|
| 917 |
/// \brief Run the algorithm. |
|
| 904 | 918 |
/// |
| 905 |
/// Runs the algorithm. It finds nodes \c source and \c target |
|
| 906 |
/// arbitrarily and then calls \ref init(), \ref calculateOut() |
|
| 919 |
/// This function runs the algorithm. It finds nodes \c source and |
|
| 920 |
/// \c target arbitrarily and then calls \ref init(), \ref calculateOut() |
|
| 907 | 921 |
/// and \ref calculateIn(). |
| ... | ... |
@@ -913,7 +927,7 @@ |
| 913 | 927 |
|
| 914 |
/// \brief |
|
| 928 |
/// \brief Run the algorithm. |
|
| 915 | 929 |
/// |
| 916 |
/// Runs the algorithm. It uses the given \c source node, finds a |
|
| 917 |
/// proper \c target and then calls the \ref init(), \ref |
|
| 918 |
/// |
|
| 930 |
/// This function runs the algorithm. It uses the given \c source node, |
|
| 931 |
/// finds a proper \c target node and then calls the \ref init(), |
|
| 932 |
/// \ref calculateOut() and \ref calculateIn(). |
|
| 919 | 933 |
void run(const Node& s) {
|
| ... | ... |
@@ -928,6 +942,5 @@ |
| 928 | 942 |
/// The result of the %HaoOrlin algorithm |
| 929 |
/// can be obtained using these functions. |
|
| 930 |
/// \n |
|
| 931 |
/// Before using these functions, either \ref run(), \ref |
|
| 932 |
/// calculateOut() or \ref calculateIn() must be called. |
|
| 943 |
/// can be obtained using these functions.\n |
|
| 944 |
/// \ref run(), \ref calculateOut() or \ref calculateIn() |
|
| 945 |
/// should be called before using them. |
|
| 933 | 946 |
|
| ... | ... |
@@ -935,5 +948,8 @@ |
| 935 | 948 |
|
| 936 |
/// \brief |
|
| 949 |
/// \brief Return the value of the minimum cut. |
|
| 937 | 950 |
/// |
| 938 |
/// |
|
| 951 |
/// This function returns the value of the minimum cut. |
|
| 952 |
/// |
|
| 953 |
/// \pre \ref run(), \ref calculateOut() or \ref calculateIn() |
|
| 954 |
/// must be called before using this function. |
|
| 939 | 955 |
Value minCutValue() const {
|
| ... | ... |
@@ -943,13 +959,20 @@ |
| 943 | 959 |
|
| 944 |
/// \brief |
|
| 960 |
/// \brief Return a minimum cut. |
|
| 945 | 961 |
/// |
| 946 |
/// Sets \c nodeMap to the characteristic vector of a minimum |
|
| 947 |
/// value cut: it will give a nonempty set \f$ X\subsetneq V \f$ |
|
| 948 |
/// with minimal out-degree (i.e. \c nodeMap will be true exactly |
|
| 949 |
/// for the nodes of \f$ X \f$). \pre nodeMap should be a |
|
| 950 |
/// bool-valued node-map. |
|
| 951 |
template <typename NodeMap> |
|
| 952 |
|
|
| 962 |
/// This function sets \c cutMap to the characteristic vector of a |
|
| 963 |
/// minimum value cut: it will give a non-empty set \f$ X\subsetneq V \f$ |
|
| 964 |
/// with minimal outgoing capacity (i.e. \c cutMap will be \c true exactly |
|
| 965 |
/// for the nodes of \f$ X \f$). |
|
| 966 |
/// |
|
| 967 |
/// \param cutMap A \ref concepts::WriteMap "writable" node map with |
|
| 968 |
/// \c bool (or convertible) value type. |
|
| 969 |
/// |
|
| 970 |
/// \return The value of the minimum cut. |
|
| 971 |
/// |
|
| 972 |
/// \pre \ref run(), \ref calculateOut() or \ref calculateIn() |
|
| 973 |
/// must be called before using this function. |
|
| 974 |
template <typename CutMap> |
|
| 975 |
Value minCutMap(CutMap& cutMap) const {
|
|
| 953 | 976 |
for (NodeIt it(_graph); it != INVALID; ++it) {
|
| 954 |
|
|
| 977 |
cutMap.set(it, (*_min_cut_map)[it]); |
|
| 955 | 978 |
} |
| ... | ... |
@@ -962,3 +985,2 @@ |
| 962 | 985 |
|
| 963 |
|
|
| 964 | 986 |
} //namespace lemon |
| ... | ... |
@@ -294,5 +294,3 @@ |
| 294 | 294 |
/// This graph type fully conforms to the \ref concepts::Graph |
| 295 |
/// "Graph" concept, and it also has an important extra feature |
|
| 296 |
/// that its maps are real \ref concepts::ReferenceMap |
|
| 297 |
/// " |
|
| 295 |
/// "Graph concept". |
|
| 298 | 296 |
class HypercubeGraph : public ExtendedHypercubeGraphBase {
|
| ... | ... |
@@ -250,3 +250,3 @@ |
| 250 | 250 |
/// |
| 251 |
/// \brief Kruskal algorithm |
|
| 251 |
/// \brief Kruskal's algorithm for finding a minimum cost spanning tree of |
|
| 252 | 252 |
/// a graph. |
| ... | ... |
@@ -254,3 +254,3 @@ |
| 254 | 254 |
/// This function runs Kruskal's algorithm to find a minimum cost |
| 255 |
/// spanning tree. |
|
| 255 |
/// spanning tree of a graph. |
|
| 256 | 256 |
/// Due to some C++ hacking, it accepts various input and output types. |
| ... | ... |
@@ -266,5 +266,5 @@ |
| 266 | 266 |
/// - An STL compatible 'Forward Container' with |
| 267 |
/// <tt>std::pair<GR::Arc,X></tt> or |
|
| 268 |
/// <tt>std::pair<GR::Edge,X></tt> as its <tt>value_type</tt>, where |
|
| 269 |
/// |
|
| 267 |
/// <tt>std::pair<GR::Arc,C></tt> or |
|
| 268 |
/// <tt>std::pair<GR::Edge,C></tt> as its <tt>value_type</tt>, where |
|
| 269 |
/// \c C is the type of the costs. The pairs indicates the arcs/edges |
|
| 270 | 270 |
/// along with the assigned cost. <em>They must be in a |
| ... | ... |
@@ -275,4 +275,4 @@ |
| 275 | 275 |
/// \retval out Here we also have a choice. |
| 276 |
/// - It can be a writable \c bool arc/edge map. After running the |
|
| 277 |
/// algorithm it will contain the found minimum cost spanning |
|
| 276 |
/// - It can be a writable arc/edge map with \c bool value type. After |
|
| 277 |
/// running the algorithm it will contain the found minimum cost spanning |
|
| 278 | 278 |
/// tree: the value of an arc/edge will be set to \c true if it belongs |
| ... | ... |
@@ -303,4 +303,4 @@ |
| 303 | 303 |
#ifdef DOXYGEN |
| 304 |
template <class Graph, class In, class Out> |
|
| 305 |
Value kruskal(GR const& g, const In& in, Out& out) |
|
| 304 |
template <typename Graph, typename In, typename Out> |
|
| 305 |
Value kruskal(const Graph& g, const In& in, Out& out) |
|
| 306 | 306 |
#else |
| ... | ... |
@@ -316,4 +316,2 @@ |
| 316 | 316 |
|
| 317 |
|
|
| 318 |
|
|
| 319 | 317 |
template <class Graph, class In, class Out> |
| ... | ... |
@@ -594,3 +594,3 @@ |
| 594 | 594 |
|
| 595 |
/// \name Reading |
|
| 595 |
/// \name Reading Rules |
|
| 596 | 596 |
/// @{
|
| ... | ... |
@@ -699,3 +699,3 @@ |
| 699 | 699 |
|
| 700 |
/// \name Select |
|
| 700 |
/// \name Select Section by Name |
|
| 701 | 701 |
/// @{
|
| ... | ... |
@@ -728,3 +728,3 @@ |
| 728 | 728 |
|
| 729 |
/// \name Using |
|
| 729 |
/// \name Using Previously Constructed Node or Arc Set |
|
| 730 | 730 |
/// @{
|
| ... | ... |
@@ -1117,3 +1117,3 @@ |
| 1117 | 1117 |
|
| 1118 |
/// \name Execution of the |
|
| 1118 |
/// \name Execution of the Reader |
|
| 1119 | 1119 |
/// @{
|
| ... | ... |
@@ -1417,3 +1417,3 @@ |
| 1417 | 1417 |
|
| 1418 |
/// \name Reading |
|
| 1418 |
/// \name Reading Rules |
|
| 1419 | 1419 |
/// @{
|
| ... | ... |
@@ -1568,3 +1568,3 @@ |
| 1568 | 1568 |
|
| 1569 |
/// \name Select |
|
| 1569 |
/// \name Select Section by Name |
|
| 1570 | 1570 |
/// @{
|
| ... | ... |
@@ -1597,3 +1597,3 @@ |
| 1597 | 1597 |
|
| 1598 |
/// \name Using |
|
| 1598 |
/// \name Using Previously Constructed Node or Edge Set |
|
| 1599 | 1599 |
/// @{
|
| ... | ... |
@@ -1987,3 +1987,3 @@ |
| 1987 | 1987 |
|
| 1988 |
/// \name Execution of the |
|
| 1988 |
/// \name Execution of the Reader |
|
| 1989 | 1989 |
/// @{
|
| ... | ... |
@@ -2211,3 +2211,3 @@ |
| 2211 | 2211 |
|
| 2212 |
/// \name Section |
|
| 2212 |
/// \name Section Readers |
|
| 2213 | 2213 |
/// @{
|
| ... | ... |
@@ -2310,3 +2310,3 @@ |
| 2310 | 2310 |
|
| 2311 |
/// \name Execution of the |
|
| 2311 |
/// \name Execution of the Reader |
|
| 2312 | 2312 |
/// @{
|
| ... | ... |
@@ -2502,3 +2502,3 @@ |
| 2502 | 2502 |
|
| 2503 |
/// \name Node |
|
| 2503 |
/// \name Node Sections |
|
| 2504 | 2504 |
/// @{
|
| ... | ... |
@@ -2528,3 +2528,3 @@ |
| 2528 | 2528 |
|
| 2529 |
/// \name Arc/Edge |
|
| 2529 |
/// \name Arc/Edge Sections |
|
| 2530 | 2530 |
/// @{
|
| ... | ... |
@@ -2586,3 +2586,3 @@ |
| 2586 | 2586 |
|
| 2587 |
/// \name Attribute |
|
| 2587 |
/// \name Attribute Sections |
|
| 2588 | 2588 |
/// @{
|
| ... | ... |
@@ -2612,3 +2612,3 @@ |
| 2612 | 2612 |
|
| 2613 |
/// \name Extra |
|
| 2613 |
/// \name Extra Sections |
|
| 2614 | 2614 |
/// @{
|
| ... | ... |
@@ -2688,3 +2688,3 @@ |
| 2688 | 2688 |
|
| 2689 |
/// \name Execution of the |
|
| 2689 |
/// \name Execution of the Contents Reader |
|
| 2690 | 2690 |
/// @{
|
| ... | ... |
@@ -538,3 +538,3 @@ |
| 538 | 538 |
|
| 539 |
/// \name Writing |
|
| 539 |
/// \name Writing Rules |
|
| 540 | 540 |
/// @{
|
| ... | ... |
@@ -641,3 +641,3 @@ |
| 641 | 641 |
|
| 642 |
/// \name Section |
|
| 642 |
/// \name Section Captions |
|
| 643 | 643 |
/// @{
|
| ... | ... |
@@ -668,3 +668,3 @@ |
| 668 | 668 |
|
| 669 |
/// \name Skipping |
|
| 669 |
/// \name Skipping Section |
|
| 670 | 670 |
/// @{
|
| ... | ... |
@@ -885,3 +885,3 @@ |
| 885 | 885 |
|
| 886 |
/// \name Execution of the |
|
| 886 |
/// \name Execution of the Writer |
|
| 887 | 887 |
/// @{
|
| ... | ... |
@@ -1131,3 +1131,3 @@ |
| 1131 | 1131 |
|
| 1132 |
/// \name Writing |
|
| 1132 |
/// \name Writing Rules |
|
| 1133 | 1133 |
/// @{
|
| ... | ... |
@@ -1280,3 +1280,3 @@ |
| 1280 | 1280 |
|
| 1281 |
/// \name Section |
|
| 1281 |
/// \name Section Captions |
|
| 1282 | 1282 |
/// @{
|
| ... | ... |
@@ -1307,3 +1307,3 @@ |
| 1307 | 1307 |
|
| 1308 |
/// \name Skipping |
|
| 1308 |
/// \name Skipping Section |
|
| 1309 | 1309 |
/// @{
|
| ... | ... |
@@ -1524,3 +1524,3 @@ |
| 1524 | 1524 |
|
| 1525 |
/// \name Execution of the |
|
| 1525 |
/// \name Execution of the Writer |
|
| 1526 | 1526 |
/// @{
|
| ... | ... |
@@ -1701,3 +1701,3 @@ |
| 1701 | 1701 |
|
| 1702 |
/// \name Section |
|
| 1702 |
/// \name Section Writers |
|
| 1703 | 1703 |
/// @{
|
| ... | ... |
@@ -1768,3 +1768,3 @@ |
| 1768 | 1768 |
|
| 1769 |
/// \name Execution of the |
|
| 1769 |
/// \name Execution of the Writer |
|
| 1770 | 1770 |
/// @{
|
| ... | ... |
@@ -322,5 +322,2 @@ |
| 322 | 322 |
/// |
| 323 |
///An important extra feature of this digraph implementation is that |
|
| 324 |
///its maps are real \ref concepts::ReferenceMap "reference map"s. |
|
| 325 |
/// |
|
| 326 | 323 |
///\sa concepts::Digraph |
| ... | ... |
@@ -1178,5 +1175,2 @@ |
| 1178 | 1175 |
/// |
| 1179 |
///An important extra feature of this graph implementation is that |
|
| 1180 |
///its maps are real \ref concepts::ReferenceMap "reference map"s. |
|
| 1181 |
/// |
|
| 1182 | 1176 |
///\sa concepts::Graph |
| ... | ... |
@@ -54,3 +54,3 @@ |
| 54 | 54 |
enum SolveExitStatus {
|
| 55 |
/// |
|
| 55 |
/// = 0. It means that the problem has been successfully solved: either |
|
| 56 | 56 |
///an optimal solution has been found or infeasibility/unboundedness |
| ... | ... |
@@ -58,4 +58,4 @@ |
| 58 | 58 |
SOLVED = 0, |
| 59 |
///Any other case (including the case when some user specified |
|
| 60 |
///limit has been exceeded) |
|
| 59 |
/// = 1. Any other case (including the case when some user specified |
|
| 60 |
///limit has been exceeded). |
|
| 61 | 61 |
UNSOLVED = 1 |
| ... | ... |
@@ -71,2 +71,17 @@ |
| 71 | 71 |
|
| 72 |
///Enum for \c messageLevel() parameter |
|
| 73 |
enum MessageLevel {
|
|
| 74 |
/// No output (default value). |
|
| 75 |
MESSAGE_NOTHING, |
|
| 76 |
/// Error messages only. |
|
| 77 |
MESSAGE_ERROR, |
|
| 78 |
/// Warnings. |
|
| 79 |
MESSAGE_WARNING, |
|
| 80 |
/// Normal output. |
|
| 81 |
MESSAGE_NORMAL, |
|
| 82 |
/// Verbose output. |
|
| 83 |
MESSAGE_VERBOSE |
|
| 84 |
}; |
|
| 85 |
|
|
| 86 |
|
|
| 72 | 87 |
///The floating point type used by the solver |
| ... | ... |
@@ -975,2 +990,4 @@ |
| 975 | 990 |
|
| 991 |
virtual void _messageLevel(MessageLevel level) = 0; |
|
| 992 |
|
|
| 976 | 993 |
//Own protected stuff |
| ... | ... |
@@ -990,3 +1007,3 @@ |
| 990 | 1007 |
|
| 991 |
///\name Build |
|
| 1008 |
///\name Build Up and Modify the LP |
|
| 992 | 1009 |
|
| ... | ... |
@@ -1529,2 +1546,5 @@ |
| 1529 | 1546 |
|
| 1547 |
/// Sets the message level of the solver |
|
| 1548 |
void messageLevel(MessageLevel level) { _messageLevel(level); }
|
|
| 1549 |
|
|
| 1530 | 1550 |
///@} |
| ... | ... |
@@ -1770,11 +1790,11 @@ |
| 1770 | 1790 |
enum ProblemType {
|
| 1771 |
///Feasible solution hasn't been found (but may exist). |
|
| 1791 |
/// = 0. Feasible solution hasn't been found (but may exist). |
|
| 1772 | 1792 |
UNDEFINED = 0, |
| 1773 |
///The problem has no feasible solution |
|
| 1793 |
/// = 1. The problem has no feasible solution. |
|
| 1774 | 1794 |
INFEASIBLE = 1, |
| 1775 |
///Feasible solution found |
|
| 1795 |
/// = 2. Feasible solution found. |
|
| 1776 | 1796 |
FEASIBLE = 2, |
| 1777 |
///Optimal solution exists and found |
|
| 1797 |
/// = 3. Optimal solution exists and found. |
|
| 1778 | 1798 |
OPTIMAL = 3, |
| 1779 |
///The cost function is unbounded |
|
| 1799 |
/// = 4. The cost function is unbounded. |
|
| 1780 | 1800 |
UNBOUNDED = 4 |
| ... | ... |
@@ -1834,3 +1854,3 @@ |
| 1834 | 1854 |
|
| 1835 |
///\name Obtain the |
|
| 1855 |
///\name Obtain the Solution |
|
| 1836 | 1856 |
|
| ... | ... |
@@ -1956,13 +1976,12 @@ |
| 1956 | 1976 |
enum ProblemType {
|
| 1957 |
///Feasible solution hasn't been found (but may exist). |
|
| 1977 |
/// = 0. Feasible solution hasn't been found (but may exist). |
|
| 1958 | 1978 |
UNDEFINED = 0, |
| 1959 |
///The problem has no feasible solution |
|
| 1979 |
/// = 1. The problem has no feasible solution. |
|
| 1960 | 1980 |
INFEASIBLE = 1, |
| 1961 |
///Feasible solution found |
|
| 1981 |
/// = 2. Feasible solution found. |
|
| 1962 | 1982 |
FEASIBLE = 2, |
| 1963 |
///Optimal solution exists and found |
|
| 1983 |
/// = 3. Optimal solution exists and found. |
|
| 1964 | 1984 |
OPTIMAL = 3, |
| 1965 |
///The cost function is unbounded |
|
| 1966 |
/// |
|
| 1967 |
///The |
|
| 1985 |
/// = 4. The cost function is unbounded. |
|
| 1986 |
///The Mip or at least the relaxed problem is unbounded. |
|
| 1968 | 1987 |
UNBOUNDED = 4 |
| ... | ... |
@@ -1988,3 +2007,3 @@ |
| 1988 | 2007 |
|
| 1989 |
///\name |
|
| 2008 |
///\name Set Column Type |
|
| 1990 | 2009 |
///@{
|
| ... | ... |
@@ -1993,5 +2012,5 @@ |
| 1993 | 2012 |
enum ColTypes {
|
| 1994 |
///Continuous variable (default) |
|
| 2013 |
/// = 0. Continuous variable (default). |
|
| 1995 | 2014 |
REAL = 0, |
| 1996 |
///Integer variable |
|
| 2015 |
/// = 1. Integer variable. |
|
| 1997 | 2016 |
INTEGER = 1 |
| ... | ... |
@@ -2016,3 +2035,3 @@ |
| 2016 | 2035 |
|
| 2017 |
///\name Obtain the |
|
| 2036 |
///\name Obtain the Solution |
|
| 2018 | 2037 |
| ... | ... |
@@ -2730,4 +2730,4 @@ |
| 2730 | 2730 |
/// |
| 2731 |
/// PotentialMap returns the difference between the potentials of the |
|
| 2732 |
/// source and target nodes of each arc in a digraph, i.e. it returns |
|
| 2731 |
/// PotentialDifferenceMap returns the difference between the potentials of |
|
| 2732 |
/// the source and target nodes of each arc in a digraph, i.e. it returns |
|
| 2733 | 2733 |
/// \code |
| ... | ... |
@@ -284,3 +284,3 @@ |
| 284 | 284 |
while (base != nca) {
|
| 285 |
_ear |
|
| 285 |
(*_ear)[node] = arc; |
|
| 286 | 286 |
|
| ... | ... |
@@ -291,3 +291,3 @@ |
| 291 | 291 |
n = _graph.target(a); |
| 292 |
_ear |
|
| 292 |
(*_ear)[n] = _graph.oppositeArc(a); |
|
| 293 | 293 |
} |
| ... | ... |
@@ -297,3 +297,3 @@ |
| 297 | 297 |
_blossom_set->insert(node, _blossom_set->find(base)); |
| 298 |
_status |
|
| 298 |
(*_status)[node] = EVEN; |
|
| 299 | 299 |
_node_queue[_last++] = node; |
| ... | ... |
@@ -306,3 +306,3 @@ |
| 306 | 306 |
|
| 307 |
_blossom_rep |
|
| 307 |
(*_blossom_rep)[_blossom_set->find(nca)] = nca; |
|
| 308 | 308 |
|
| ... | ... |
@@ -315,3 +315,3 @@ |
| 315 | 315 |
while (base != nca) {
|
| 316 |
_ear |
|
| 316 |
(*_ear)[node] = arc; |
|
| 317 | 317 |
|
| ... | ... |
@@ -322,3 +322,3 @@ |
| 322 | 322 |
n = _graph.target(a); |
| 323 |
_ear |
|
| 323 |
(*_ear)[n] = _graph.oppositeArc(a); |
|
| 324 | 324 |
} |
| ... | ... |
@@ -328,3 +328,3 @@ |
| 328 | 328 |
_blossom_set->insert(node, _blossom_set->find(base)); |
| 329 |
_status |
|
| 329 |
(*_status)[node] = EVEN; |
|
| 330 | 330 |
_node_queue[_last++] = node; |
| ... | ... |
@@ -337,3 +337,3 @@ |
| 337 | 337 |
|
| 338 |
_blossom_rep |
|
| 338 |
(*_blossom_rep)[_blossom_set->find(nca)] = nca; |
|
| 339 | 339 |
} |
| ... | ... |
@@ -346,7 +346,7 @@ |
| 346 | 346 |
|
| 347 |
_ear |
|
| 347 |
(*_ear)[odd] = _graph.oppositeArc(a); |
|
| 348 | 348 |
Node even = _graph.target((*_matching)[odd]); |
| 349 |
_blossom_rep->set(_blossom_set->insert(even), even); |
|
| 350 |
_status->set(odd, ODD); |
|
| 351 |
|
|
| 349 |
(*_blossom_rep)[_blossom_set->insert(even)] = even; |
|
| 350 |
(*_status)[odd] = ODD; |
|
| 351 |
(*_status)[even] = EVEN; |
|
| 352 | 352 |
int tree = _tree_set->find((*_blossom_rep)[_blossom_set->find(base)]); |
| ... | ... |
@@ -364,7 +364,7 @@ |
| 364 | 364 |
|
| 365 |
_matching->set(odd, _graph.oppositeArc(a)); |
|
| 366 |
_status->set(odd, MATCHED); |
|
| 365 |
(*_matching)[odd] = _graph.oppositeArc(a); |
|
| 366 |
(*_status)[odd] = MATCHED; |
|
| 367 | 367 |
|
| 368 | 368 |
Arc arc = (*_matching)[even]; |
| 369 |
_matching |
|
| 369 |
(*_matching)[even] = a; |
|
| 370 | 370 |
|
| ... | ... |
@@ -374,5 +374,5 @@ |
| 374 | 374 |
even = _graph.target(arc); |
| 375 |
_matching |
|
| 375 |
(*_matching)[odd] = arc; |
|
| 376 | 376 |
arc = (*_matching)[even]; |
| 377 |
_matching |
|
| 377 |
(*_matching)[even] = _graph.oppositeArc((*_matching)[odd]); |
|
| 378 | 378 |
} |
| ... | ... |
@@ -382,3 +382,3 @@ |
| 382 | 382 |
if ((*_status)[it] == ODD) {
|
| 383 |
_status |
|
| 383 |
(*_status)[it] = MATCHED; |
|
| 384 | 384 |
} else {
|
| ... | ... |
@@ -387,3 +387,3 @@ |
| 387 | 387 |
jt != INVALID; ++jt) {
|
| 388 |
_status |
|
| 388 |
(*_status)[jt] = MATCHED; |
|
| 389 | 389 |
} |
| ... | ... |
@@ -429,4 +429,4 @@ |
| 429 | 429 |
for(NodeIt n(_graph); n != INVALID; ++n) {
|
| 430 |
_matching->set(n, INVALID); |
|
| 431 |
_status->set(n, UNMATCHED); |
|
| 430 |
(*_matching)[n] = INVALID; |
|
| 431 |
(*_status)[n] = UNMATCHED; |
|
| 432 | 432 |
} |
| ... | ... |
@@ -440,4 +440,4 @@ |
| 440 | 440 |
for (NodeIt n(_graph); n != INVALID; ++n) {
|
| 441 |
_matching->set(n, INVALID); |
|
| 442 |
_status->set(n, UNMATCHED); |
|
| 441 |
(*_matching)[n] = INVALID; |
|
| 442 |
(*_status)[n] = UNMATCHED; |
|
| 443 | 443 |
} |
| ... | ... |
@@ -448,6 +448,6 @@ |
| 448 | 448 |
if ((*_matching)[v] == INVALID && v != n) {
|
| 449 |
_matching->set(n, a); |
|
| 450 |
_status->set(n, MATCHED); |
|
| 451 |
_matching->set(v, _graph.oppositeArc(a)); |
|
| 452 |
_status->set(v, MATCHED); |
|
| 449 |
(*_matching)[n] = a; |
|
| 450 |
(*_status)[n] = MATCHED; |
|
| 451 |
(*_matching)[v] = _graph.oppositeArc(a); |
|
| 452 |
(*_status)[v] = MATCHED; |
|
| 453 | 453 |
break; |
| ... | ... |
@@ -471,4 +471,4 @@ |
| 471 | 471 |
for (NodeIt n(_graph); n != INVALID; ++n) {
|
| 472 |
_matching->set(n, INVALID); |
|
| 473 |
_status->set(n, UNMATCHED); |
|
| 472 |
(*_matching)[n] = INVALID; |
|
| 473 |
(*_status)[n] = UNMATCHED; |
|
| 474 | 474 |
} |
| ... | ... |
@@ -479,4 +479,4 @@ |
| 479 | 479 |
if ((*_matching)[u] != INVALID) return false; |
| 480 |
_matching->set(u, _graph.direct(e, true)); |
|
| 481 |
_status->set(u, MATCHED); |
|
| 480 |
(*_matching)[u] = _graph.direct(e, true); |
|
| 481 |
(*_status)[u] = MATCHED; |
|
| 482 | 482 |
|
| ... | ... |
@@ -484,4 +484,4 @@ |
| 484 | 484 |
if ((*_matching)[v] != INVALID) return false; |
| 485 |
_matching->set(v, _graph.direct(e, false)); |
|
| 486 |
_status->set(v, MATCHED); |
|
| 485 |
(*_matching)[v] = _graph.direct(e, false); |
|
| 486 |
(*_status)[v] = MATCHED; |
|
| 487 | 487 |
} |
| ... | ... |
@@ -499,3 +499,3 @@ |
| 499 | 499 |
_tree_set->insert(n); |
| 500 |
_status |
|
| 500 |
(*_status)[n] = EVEN; |
|
| 501 | 501 |
processSparse(n); |
| ... | ... |
@@ -514,3 +514,3 @@ |
| 514 | 514 |
_tree_set->insert(n); |
| 515 |
_status |
|
| 515 |
(*_status)[n] = EVEN; |
|
| 516 | 516 |
processDense(n); |
| ... | ... |
@@ -1550,5 +1550,5 @@ |
| 1550 | 1550 |
|
| 1551 |
_matching |
|
| 1551 |
(*_matching)[base] = matching; |
|
| 1552 | 1552 |
_blossom_node_list.push_back(base); |
| 1553 |
_node_potential |
|
| 1553 |
(*_node_potential)[base] = pot; |
|
| 1554 | 1554 |
} else {
|
| ... | ... |
@@ -1646,13 +1646,13 @@ |
| 1646 | 1646 |
for (ArcIt e(_graph); e != INVALID; ++e) {
|
| 1647 |
_node_heap_index |
|
| 1647 |
(*_node_heap_index)[e] = BinHeap<Value, IntArcMap>::PRE_HEAP; |
|
| 1648 | 1648 |
} |
| 1649 | 1649 |
for (NodeIt n(_graph); n != INVALID; ++n) {
|
| 1650 |
_delta1_index |
|
| 1650 |
(*_delta1_index)[n] = _delta1->PRE_HEAP; |
|
| 1651 | 1651 |
} |
| 1652 | 1652 |
for (EdgeIt e(_graph); e != INVALID; ++e) {
|
| 1653 |
_delta3_index |
|
| 1653 |
(*_delta3_index)[e] = _delta3->PRE_HEAP; |
|
| 1654 | 1654 |
} |
| 1655 | 1655 |
for (int i = 0; i < _blossom_num; ++i) {
|
| 1656 |
_delta2_index->set(i, _delta2->PRE_HEAP); |
|
| 1657 |
_delta4_index->set(i, _delta4->PRE_HEAP); |
|
| 1656 |
(*_delta2_index)[i] = _delta2->PRE_HEAP; |
|
| 1657 |
(*_delta4_index)[i] = _delta4->PRE_HEAP; |
|
| 1658 | 1658 |
} |
| ... | ... |
@@ -1668,3 +1668,3 @@ |
| 1668 | 1668 |
} |
| 1669 |
_node_index |
|
| 1669 |
(*_node_index)[n] = index; |
|
| 1670 | 1670 |
(*_node_data)[index].pot = max; |
| ... | ... |
@@ -2743,5 +2743,5 @@ |
| 2743 | 2743 |
|
| 2744 |
_matching |
|
| 2744 |
(*_matching)[base] = matching; |
|
| 2745 | 2745 |
_blossom_node_list.push_back(base); |
| 2746 |
_node_potential |
|
| 2746 |
(*_node_potential)[base] = pot; |
|
| 2747 | 2747 |
} else {
|
| ... | ... |
@@ -2833,10 +2833,10 @@ |
| 2833 | 2833 |
for (ArcIt e(_graph); e != INVALID; ++e) {
|
| 2834 |
_node_heap_index |
|
| 2834 |
(*_node_heap_index)[e] = BinHeap<Value, IntArcMap>::PRE_HEAP; |
|
| 2835 | 2835 |
} |
| 2836 | 2836 |
for (EdgeIt e(_graph); e != INVALID; ++e) {
|
| 2837 |
_delta3_index |
|
| 2837 |
(*_delta3_index)[e] = _delta3->PRE_HEAP; |
|
| 2838 | 2838 |
} |
| 2839 | 2839 |
for (int i = 0; i < _blossom_num; ++i) {
|
| 2840 |
_delta2_index->set(i, _delta2->PRE_HEAP); |
|
| 2841 |
_delta4_index->set(i, _delta4->PRE_HEAP); |
|
| 2840 |
(*_delta2_index)[i] = _delta2->PRE_HEAP; |
|
| 2841 |
(*_delta4_index)[i] = _delta4->PRE_HEAP; |
|
| 2842 | 2842 |
} |
| ... | ... |
@@ -2852,3 +2852,3 @@ |
| 2852 | 2852 |
} |
| 2853 |
_node_index |
|
| 2853 |
(*_node_index)[n] = index; |
|
| 2854 | 2854 |
(*_node_data)[index].pot = max; |
| ... | ... |
@@ -92,6 +92,6 @@ |
| 92 | 92 |
/// |
| 93 |
/// \brief |
|
| 93 |
/// \brief Minimum Cost Arborescence algorithm class. |
|
| 94 | 94 |
/// |
| 95 | 95 |
/// This class provides an efficient implementation of |
| 96 |
/// |
|
| 96 |
/// Minimum Cost Arborescence algorithm. The arborescence is a tree |
|
| 97 | 97 |
/// which is directed from a given source node of the digraph. One or |
| ... | ... |
@@ -295,3 +295,3 @@ |
| 295 | 295 |
} |
| 296 |
_arc_order |
|
| 296 |
(*_arc_order)[minimum.arc] = _dual_variables.size(); |
|
| 297 | 297 |
DualVariable var(_dual_node_list.size() - 1, |
| ... | ... |
@@ -337,3 +337,3 @@ |
| 337 | 337 |
} |
| 338 |
_arc_order |
|
| 338 |
(*_arc_order)[minimum.arc] = _dual_variables.size(); |
|
| 339 | 339 |
DualVariable var(node_bottom, _dual_node_list.size(), minimum.value); |
| ... | ... |
@@ -366,3 +366,3 @@ |
| 366 | 366 |
_heap->pop(); |
| 367 |
_node_order |
|
| 367 |
(*_node_order)[source] = -1; |
|
| 368 | 368 |
for (OutArcIt it(*_digraph, source); it != INVALID; ++it) {
|
| ... | ... |
@@ -392,3 +392,3 @@ |
| 392 | 392 |
|
| 393 |
/// \name Named |
|
| 393 |
/// \name Named Template Parameters |
|
| 394 | 394 |
|
| ... | ... |
@@ -632,3 +632,3 @@ |
| 632 | 632 |
|
| 633 |
/// \name Execution |
|
| 633 |
/// \name Execution Control |
|
| 634 | 634 |
/// The simplest way to execute the algorithm is to use |
| ... | ... |
@@ -652,4 +652,4 @@ |
| 652 | 652 |
(*_cost_arcs)[it].arc = INVALID; |
| 653 |
_node_order->set(it, -3); |
|
| 654 |
_heap_cross_ref->set(it, Heap::PRE_HEAP); |
|
| 653 |
(*_node_order)[it] = -3; |
|
| 654 |
(*_heap_cross_ref)[it] = Heap::PRE_HEAP; |
|
| 655 | 655 |
_pred->set(it, INVALID); |
| ... | ... |
@@ -658,3 +658,3 @@ |
| 658 | 658 |
_arborescence->set(it, false); |
| 659 |
_arc_order |
|
| 659 |
(*_arc_order)[it] = -1; |
|
| 660 | 660 |
} |
| ... | ... |
@@ -406,3 +406,3 @@ |
| 406 | 406 |
for (NodeIt n(_graph); n != INVALID; ++n) {
|
| 407 |
_excess |
|
| 407 |
(*_excess)[n] = 0; |
|
| 408 | 408 |
} |
| ... | ... |
@@ -419,6 +419,6 @@ |
| 419 | 419 |
std::vector<Node> queue; |
| 420 |
reached |
|
| 420 |
reached[_source] = true; |
|
| 421 | 421 |
|
| 422 | 422 |
queue.push_back(_target); |
| 423 |
reached |
|
| 423 |
reached[_target] = true; |
|
| 424 | 424 |
while (!queue.empty()) {
|
| ... | ... |
@@ -431,3 +431,3 @@ |
| 431 | 431 |
if (!reached[u] && _tolerance.positive((*_capacity)[e])) {
|
| 432 |
reached |
|
| 432 |
reached[u] = true; |
|
| 433 | 433 |
_level->initAddItem(u); |
| ... | ... |
@@ -446,3 +446,3 @@ |
| 446 | 446 |
_flow->set(e, (*_capacity)[e]); |
| 447 |
|
|
| 447 |
(*_excess)[u] += (*_capacity)[e]; |
|
| 448 | 448 |
if (u != _target && !_level->active(u)) {
|
| ... | ... |
@@ -480,3 +480,3 @@ |
| 480 | 480 |
if (excess < 0 && n != _source) return false; |
| 481 |
_excess |
|
| 481 |
(*_excess)[n] = excess; |
|
| 482 | 482 |
} |
| ... | ... |
@@ -489,6 +489,6 @@ |
| 489 | 489 |
std::vector<Node> queue; |
| 490 |
reached |
|
| 490 |
reached[_source] = true; |
|
| 491 | 491 |
|
| 492 | 492 |
queue.push_back(_target); |
| 493 |
reached |
|
| 493 |
reached[_target] = true; |
|
| 494 | 494 |
while (!queue.empty()) {
|
| ... | ... |
@@ -502,3 +502,3 @@ |
| 502 | 502 |
_tolerance.positive((*_capacity)[e] - (*_flow)[e])) {
|
| 503 |
reached |
|
| 503 |
reached[u] = true; |
|
| 504 | 504 |
_level->initAddItem(u); |
| ... | ... |
@@ -510,3 +510,3 @@ |
| 510 | 510 |
if (!reached[v] && _tolerance.positive((*_flow)[e])) {
|
| 511 |
reached |
|
| 511 |
reached[v] = true; |
|
| 512 | 512 |
_level->initAddItem(v); |
| ... | ... |
@@ -526,3 +526,3 @@ |
| 526 | 526 |
_flow->set(e, (*_capacity)[e]); |
| 527 |
|
|
| 527 |
(*_excess)[u] += rem; |
|
| 528 | 528 |
if (u != _target && !_level->active(u)) {
|
| ... | ... |
@@ -538,3 +538,3 @@ |
| 538 | 538 |
_flow->set(e, 0); |
| 539 |
|
|
| 539 |
(*_excess)[v] += rem; |
|
| 540 | 540 |
if (v != _target && !_level->active(v)) {
|
| ... | ... |
@@ -579,3 +579,3 @@ |
| 579 | 579 |
_flow->set(e, (*_flow)[e] + excess); |
| 580 |
|
|
| 580 |
(*_excess)[v] += excess; |
|
| 581 | 581 |
excess = 0; |
| ... | ... |
@@ -584,3 +584,3 @@ |
| 584 | 584 |
excess -= rem; |
| 585 |
|
|
| 585 |
(*_excess)[v] += rem; |
|
| 586 | 586 |
_flow->set(e, (*_capacity)[e]); |
| ... | ... |
@@ -602,3 +602,3 @@ |
| 602 | 602 |
_flow->set(e, (*_flow)[e] - excess); |
| 603 |
|
|
| 603 |
(*_excess)[v] += excess; |
|
| 604 | 604 |
excess = 0; |
| ... | ... |
@@ -607,3 +607,3 @@ |
| 607 | 607 |
excess -= rem; |
| 608 |
|
|
| 608 |
(*_excess)[v] += rem; |
|
| 609 | 609 |
_flow->set(e, 0); |
| ... | ... |
@@ -617,3 +617,3 @@ |
| 617 | 617 |
|
| 618 |
_excess |
|
| 618 |
(*_excess)[n] = excess; |
|
| 619 | 619 |
|
| ... | ... |
@@ -652,3 +652,3 @@ |
| 652 | 652 |
_flow->set(e, (*_flow)[e] + excess); |
| 653 |
|
|
| 653 |
(*_excess)[v] += excess; |
|
| 654 | 654 |
excess = 0; |
| ... | ... |
@@ -657,3 +657,3 @@ |
| 657 | 657 |
excess -= rem; |
| 658 |
|
|
| 658 |
(*_excess)[v] += rem; |
|
| 659 | 659 |
_flow->set(e, (*_capacity)[e]); |
| ... | ... |
@@ -675,3 +675,3 @@ |
| 675 | 675 |
_flow->set(e, (*_flow)[e] - excess); |
| 676 |
|
|
| 676 |
(*_excess)[v] += excess; |
|
| 677 | 677 |
excess = 0; |
| ... | ... |
@@ -680,3 +680,3 @@ |
| 680 | 680 |
excess -= rem; |
| 681 |
|
|
| 681 |
(*_excess)[v] += rem; |
|
| 682 | 682 |
_flow->set(e, 0); |
| ... | ... |
@@ -690,3 +690,3 @@ |
| 690 | 690 |
|
| 691 |
_excess |
|
| 691 |
(*_excess)[n] = excess; |
|
| 692 | 692 |
|
| ... | ... |
@@ -733,3 +733,3 @@ |
| 733 | 733 |
for (NodeIt n(_graph); n != INVALID; ++n) {
|
| 734 |
reached |
|
| 734 |
reached[n] = (*_level)[n] < _level->maxLevel(); |
|
| 735 | 735 |
} |
| ... | ... |
@@ -741,3 +741,3 @@ |
| 741 | 741 |
queue.push_back(_source); |
| 742 |
reached |
|
| 742 |
reached[_source] = true; |
|
| 743 | 743 |
|
| ... | ... |
@@ -751,3 +751,3 @@ |
| 751 | 751 |
if (!reached[v] && _tolerance.positive((*_flow)[e])) {
|
| 752 |
reached |
|
| 752 |
reached[v] = true; |
|
| 753 | 753 |
_level->initAddItem(v); |
| ... | ... |
@@ -760,3 +760,3 @@ |
| 760 | 760 |
_tolerance.positive((*_capacity)[e] - (*_flow)[e])) {
|
| 761 |
reached |
|
| 761 |
reached[u] = true; |
|
| 762 | 762 |
_level->initAddItem(u); |
| ... | ... |
@@ -794,3 +794,3 @@ |
| 794 | 794 |
_flow->set(e, (*_flow)[e] + excess); |
| 795 |
|
|
| 795 |
(*_excess)[v] += excess; |
|
| 796 | 796 |
excess = 0; |
| ... | ... |
@@ -799,3 +799,3 @@ |
| 799 | 799 |
excess -= rem; |
| 800 |
|
|
| 800 |
(*_excess)[v] += rem; |
|
| 801 | 801 |
_flow->set(e, (*_capacity)[e]); |
| ... | ... |
@@ -817,3 +817,3 @@ |
| 817 | 817 |
_flow->set(e, (*_flow)[e] - excess); |
| 818 |
|
|
| 818 |
(*_excess)[v] += excess; |
|
| 819 | 819 |
excess = 0; |
| ... | ... |
@@ -822,3 +822,3 @@ |
| 822 | 822 |
excess -= rem; |
| 823 |
|
|
| 823 |
(*_excess)[v] += rem; |
|
| 824 | 824 |
_flow->set(e, 0); |
| ... | ... |
@@ -832,3 +832,3 @@ |
| 832 | 832 |
|
| 833 |
_excess |
|
| 833 |
(*_excess)[n] = excess; |
|
| 834 | 834 |
| ... | ... |
@@ -661,3 +661,3 @@ |
| 661 | 661 |
|
| 662 |
///\name Uniform |
|
| 662 |
///\name Uniform Distributions |
|
| 663 | 663 |
/// |
| ... | ... |
@@ -764,3 +764,3 @@ |
| 764 | 764 |
|
| 765 |
///\name Non-uniform |
|
| 765 |
///\name Non-uniform Distributions |
|
| 766 | 766 |
/// |
| ... | ... |
@@ -940,3 +940,3 @@ |
| 940 | 940 |
|
| 941 |
///\name Two |
|
| 941 |
///\name Two Dimensional Distributions |
|
| 942 | 942 |
/// |
| ... | ... |
@@ -193,5 +193,3 @@ |
| 193 | 193 |
///node and arc deletions</b>. |
| 194 |
///It conforms to the \ref concepts::Digraph "Digraph concept" with |
|
| 195 |
///an important extra feature that its maps are real \ref |
|
| 196 |
///concepts:: |
|
| 194 |
///It fully conforms to the \ref concepts::Digraph "Digraph concept". |
|
| 197 | 195 |
/// |
| ... | ... |
@@ -631,11 +629,5 @@ |
| 631 | 629 |
/// node and arc deletions</b>. |
| 632 |
/// Except from this it conforms to |
|
| 633 |
/// the \ref concepts::Graph "Graph concept". |
|
| 634 |
/// |
|
| 635 |
/// It also has an |
|
| 636 |
/// important extra feature that |
|
| 637 |
/// its maps are real \ref concepts::ReferenceMap "reference map"s. |
|
| 630 |
/// It fully conforms to the \ref concepts::Graph "Graph concept". |
|
| 638 | 631 |
/// |
| 639 | 632 |
/// \sa concepts::Graph. |
| 640 |
/// |
|
| 641 | 633 |
class SmartGraph : public ExtendedSmartGraphBase {
|
| ... | ... |
@@ -22,2 +22,3 @@ |
| 22 | 22 |
#include <soplex.h> |
| 23 |
#include <spxout.h> |
|
| 23 | 24 |
|
| ... | ... |
@@ -30,2 +31,3 @@ |
| 30 | 31 |
soplex = new soplex::SoPlex; |
| 32 |
messageLevel(MESSAGE_NOTHING); |
|
| 31 | 33 |
} |
| ... | ... |
@@ -49,2 +51,3 @@ |
| 49 | 51 |
|
| 52 |
messageLevel(MESSAGE_NOTHING); |
|
| 50 | 53 |
} |
| ... | ... |
@@ -273,2 +276,4 @@ |
| 273 | 276 |
_clear_temporals(); |
| 277 |
|
|
| 278 |
_applyMessageLevel(); |
|
| 274 | 279 |
|
| ... | ... |
@@ -421,2 +426,26 @@ |
| 421 | 426 |
|
| 427 |
void SoplexLp::_messageLevel(MessageLevel level) {
|
|
| 428 |
switch (level) {
|
|
| 429 |
case MESSAGE_NOTHING: |
|
| 430 |
_message_level = -1; |
|
| 431 |
break; |
|
| 432 |
case MESSAGE_ERROR: |
|
| 433 |
_message_level = soplex::SPxOut::ERROR; |
|
| 434 |
break; |
|
| 435 |
case MESSAGE_WARNING: |
|
| 436 |
_message_level = soplex::SPxOut::WARNING; |
|
| 437 |
break; |
|
| 438 |
case MESSAGE_NORMAL: |
|
| 439 |
_message_level = soplex::SPxOut::INFO2; |
|
| 440 |
break; |
|
| 441 |
case MESSAGE_VERBOSE: |
|
| 442 |
_message_level = soplex::SPxOut::DEBUG; |
|
| 443 |
break; |
|
| 444 |
} |
|
| 445 |
} |
|
| 446 |
|
|
| 447 |
void SoplexLp::_applyMessageLevel() {
|
|
| 448 |
soplex::Param::setVerbose(_message_level); |
|
| 449 |
} |
|
| 450 |
|
|
| 422 | 451 |
} //namespace lemon |
| ... | ... |
@@ -289,3 +289,3 @@ |
| 289 | 289 |
|
| 290 |
///\name Control the |
|
| 290 |
///\name Control the State of the Timer |
|
| 291 | 291 |
///Basically a Timer can be either running or stopped, |
| ... | ... |
@@ -397,3 +397,3 @@ |
| 397 | 397 |
|
| 398 |
///\name Query Functions for the |
|
| 398 |
///\name Query Functions for the Ellapsed Time |
|
| 399 | 399 |
| ... | ... |
@@ -60,5 +60,5 @@ |
| 60 | 60 |
Digraph G; |
| 61 |
Node s, t; |
|
| 61 |
Node s, t, n; |
|
| 62 | 62 |
Arc e; |
| 63 |
int l; |
|
| 63 |
int l, i; |
|
| 64 | 64 |
bool b; |
| ... | ... |
@@ -67,2 +67,3 @@ |
| 67 | 67 |
Path<Digraph> pp; |
| 68 |
concepts::ReadMap<Node,bool> nm; |
|
| 68 | 69 |
|
| ... | ... |
@@ -70,2 +71,3 @@ |
| 70 | 71 |
BType bfs_test(G); |
| 72 |
const BType& const_bfs_test = bfs_test; |
|
| 71 | 73 |
|
| ... | ... |
@@ -75,9 +77,22 @@ |
| 75 | 77 |
|
| 76 |
l = bfs_test.dist(t); |
|
| 77 |
e = bfs_test.predArc(t); |
|
| 78 |
s = bfs_test.predNode(t); |
|
| 79 |
b = bfs_test.reached(t); |
|
| 80 |
d = bfs_test.distMap(); |
|
| 81 |
p = bfs_test.predMap(); |
|
| 82 |
|
|
| 78 |
bfs_test.init(); |
|
| 79 |
bfs_test.addSource(s); |
|
| 80 |
n = bfs_test.processNextNode(); |
|
| 81 |
n = bfs_test.processNextNode(t, b); |
|
| 82 |
n = bfs_test.processNextNode(nm, n); |
|
| 83 |
n = const_bfs_test.nextNode(); |
|
| 84 |
b = const_bfs_test.emptyQueue(); |
|
| 85 |
i = const_bfs_test.queueSize(); |
|
| 86 |
|
|
| 87 |
bfs_test.start(); |
|
| 88 |
bfs_test.start(t); |
|
| 89 |
bfs_test.start(nm); |
|
| 90 |
|
|
| 91 |
l = const_bfs_test.dist(t); |
|
| 92 |
e = const_bfs_test.predArc(t); |
|
| 93 |
s = const_bfs_test.predNode(t); |
|
| 94 |
b = const_bfs_test.reached(t); |
|
| 95 |
d = const_bfs_test.distMap(); |
|
| 96 |
p = const_bfs_test.predMap(); |
|
| 97 |
pp = const_bfs_test.path(t); |
|
| 83 | 98 |
} |
| ... | ... |
@@ -88,5 +103,16 @@ |
| 88 | 103 |
::SetReachedMap<concepts::ReadWriteMap<Node,bool> > |
| 104 |
::SetStandardProcessedMap |
|
| 89 | 105 |
::SetProcessedMap<concepts::WriteMap<Node,bool> > |
| 90 |
::SetStandardProcessedMap |
|
| 91 | 106 |
::Create bfs_test(G); |
| 107 |
|
|
| 108 |
concepts::ReadWriteMap<Node,Arc> pred_map; |
|
| 109 |
concepts::ReadWriteMap<Node,int> dist_map; |
|
| 110 |
concepts::ReadWriteMap<Node,bool> reached_map; |
|
| 111 |
concepts::WriteMap<Node,bool> processed_map; |
|
| 112 |
|
|
| 113 |
bfs_test |
|
| 114 |
.predMap(pred_map) |
|
| 115 |
.distMap(dist_map) |
|
| 116 |
.reachedMap(reached_map) |
|
| 117 |
.processedMap(processed_map); |
|
| 92 | 118 |
|
| ... | ... |
@@ -95,2 +121,15 @@ |
| 95 | 121 |
bfs_test.run(); |
| 122 |
|
|
| 123 |
bfs_test.init(); |
|
| 124 |
bfs_test.addSource(s); |
|
| 125 |
n = bfs_test.processNextNode(); |
|
| 126 |
n = bfs_test.processNextNode(t, b); |
|
| 127 |
n = bfs_test.processNextNode(nm, n); |
|
| 128 |
n = bfs_test.nextNode(); |
|
| 129 |
b = bfs_test.emptyQueue(); |
|
| 130 |
i = bfs_test.queueSize(); |
|
| 131 |
|
|
| 132 |
bfs_test.start(); |
|
| 133 |
bfs_test.start(t); |
|
| 134 |
bfs_test.start(nm); |
|
| 96 | 135 |
| ... | ... |
@@ -73,14 +73,18 @@ |
| 73 | 73 |
BarrierMap bar; |
| 74 |
VType v; |
|
| 75 |
bool b; |
|
| 74 | 76 |
|
| 75 |
Circulation<Digraph, CapMap, CapMap, DeltaMap> |
|
| 76 |
::SetFlowMap<FlowMap> |
|
| 77 |
::SetElevator<Elev> |
|
| 78 |
::SetStandardElevator<LinkedElev> |
|
| 79 |
::Create circ_test(g,lcap,ucap,delta); |
|
| 80 |
|
|
| 81 |
circ_test.lowerCapMap(lcap); |
|
| 82 |
circ_test.upperCapMap(ucap); |
|
| 83 |
circ_test.deltaMap(delta); |
|
| 84 |
flow = circ_test.flowMap(); |
|
| 85 |
|
|
| 77 |
typedef Circulation<Digraph, CapMap, CapMap, DeltaMap> |
|
| 78 |
::SetFlowMap<FlowMap> |
|
| 79 |
::SetElevator<Elev> |
|
| 80 |
::SetStandardElevator<LinkedElev> |
|
| 81 |
::Create CirculationType; |
|
| 82 |
CirculationType circ_test(g, lcap, ucap, delta); |
|
| 83 |
const CirculationType& const_circ_test = circ_test; |
|
| 84 |
|
|
| 85 |
circ_test |
|
| 86 |
.lowerCapMap(lcap) |
|
| 87 |
.upperCapMap(ucap) |
|
| 88 |
.deltaMap(delta) |
|
| 89 |
.flowMap(flow); |
|
| 86 | 90 |
|
| ... | ... |
@@ -91,5 +95,8 @@ |
| 91 | 95 |
|
| 92 |
circ_test.barrier(n); |
|
| 93 |
circ_test.barrierMap(bar); |
|
| 94 |
|
|
| 96 |
v = const_circ_test.flow(a); |
|
| 97 |
const FlowMap& fm = const_circ_test.flowMap(); |
|
| 98 |
b = const_circ_test.barrier(n); |
|
| 99 |
const_circ_test.barrierMap(bar); |
|
| 100 |
|
|
| 101 |
ignore_unused_variable_warning(fm); |
|
| 95 | 102 |
} |
| ... | ... |
@@ -64,3 +64,3 @@ |
| 64 | 64 |
Arc e; |
| 65 |
int l; |
|
| 65 |
int l, i; |
|
| 66 | 66 |
bool b; |
| ... | ... |
@@ -69,2 +69,3 @@ |
| 69 | 69 |
Path<Digraph> pp; |
| 70 |
concepts::ReadMap<Arc,bool> am; |
|
| 70 | 71 |
|
| ... | ... |
@@ -72,2 +73,3 @@ |
| 72 | 73 |
DType dfs_test(G); |
| 74 |
const DType& const_dfs_test = dfs_test; |
|
| 73 | 75 |
|
| ... | ... |
@@ -77,9 +79,20 @@ |
| 77 | 79 |
|
| 78 |
l = dfs_test.dist(t); |
|
| 79 |
e = dfs_test.predArc(t); |
|
| 80 |
s = dfs_test.predNode(t); |
|
| 81 |
b = dfs_test.reached(t); |
|
| 82 |
d = dfs_test.distMap(); |
|
| 83 |
p = dfs_test.predMap(); |
|
| 84 |
|
|
| 80 |
dfs_test.init(); |
|
| 81 |
dfs_test.addSource(s); |
|
| 82 |
e = dfs_test.processNextArc(); |
|
| 83 |
e = const_dfs_test.nextArc(); |
|
| 84 |
b = const_dfs_test.emptyQueue(); |
|
| 85 |
i = const_dfs_test.queueSize(); |
|
| 86 |
|
|
| 87 |
dfs_test.start(); |
|
| 88 |
dfs_test.start(t); |
|
| 89 |
dfs_test.start(am); |
|
| 90 |
|
|
| 91 |
l = const_dfs_test.dist(t); |
|
| 92 |
e = const_dfs_test.predArc(t); |
|
| 93 |
s = const_dfs_test.predNode(t); |
|
| 94 |
b = const_dfs_test.reached(t); |
|
| 95 |
d = const_dfs_test.distMap(); |
|
| 96 |
p = const_dfs_test.predMap(); |
|
| 97 |
pp = const_dfs_test.path(t); |
|
| 85 | 98 |
} |
| ... | ... |
@@ -90,6 +103,17 @@ |
| 90 | 103 |
::SetReachedMap<concepts::ReadWriteMap<Node,bool> > |
| 104 |
::SetStandardProcessedMap |
|
| 91 | 105 |
::SetProcessedMap<concepts::WriteMap<Node,bool> > |
| 92 |
::SetStandardProcessedMap |
|
| 93 | 106 |
::Create dfs_test(G); |
| 94 | 107 |
|
| 108 |
concepts::ReadWriteMap<Node,Arc> pred_map; |
|
| 109 |
concepts::ReadWriteMap<Node,int> dist_map; |
|
| 110 |
concepts::ReadWriteMap<Node,bool> reached_map; |
|
| 111 |
concepts::WriteMap<Node,bool> processed_map; |
|
| 112 |
|
|
| 113 |
dfs_test |
|
| 114 |
.predMap(pred_map) |
|
| 115 |
.distMap(dist_map) |
|
| 116 |
.reachedMap(reached_map) |
|
| 117 |
.processedMap(processed_map); |
|
| 118 |
|
|
| 95 | 119 |
dfs_test.run(s); |
| ... | ... |
@@ -97,2 +121,13 @@ |
| 97 | 121 |
dfs_test.run(); |
| 122 |
dfs_test.init(); |
|
| 123 |
|
|
| 124 |
dfs_test.addSource(s); |
|
| 125 |
e = dfs_test.processNextArc(); |
|
| 126 |
e = dfs_test.nextArc(); |
|
| 127 |
b = dfs_test.emptyQueue(); |
|
| 128 |
i = dfs_test.queueSize(); |
|
| 129 |
|
|
| 130 |
dfs_test.start(); |
|
| 131 |
dfs_test.start(t); |
|
| 132 |
dfs_test.start(am); |
|
| 98 | 133 |
| ... | ... |
@@ -62,5 +62,6 @@ |
| 62 | 62 |
Digraph G; |
| 63 |
Node s, t; |
|
| 63 |
Node s, t, n; |
|
| 64 | 64 |
Arc e; |
| 65 | 65 |
VType l; |
| 66 |
int i; |
|
| 66 | 67 |
bool b; |
| ... | ... |
@@ -70,2 +71,3 @@ |
| 70 | 71 |
Path<Digraph> pp; |
| 72 |
concepts::ReadMap<Node,bool> nm; |
|
| 71 | 73 |
|
| ... | ... |
@@ -73,2 +75,3 @@ |
| 73 | 75 |
DType dijkstra_test(G,length); |
| 76 |
const DType& const_dijkstra_test = dijkstra_test; |
|
| 74 | 77 |
|
| ... | ... |
@@ -77,2 +80,65 @@ |
| 77 | 80 |
|
| 81 |
dijkstra_test.init(); |
|
| 82 |
dijkstra_test.addSource(s); |
|
| 83 |
dijkstra_test.addSource(s, 1); |
|
| 84 |
n = dijkstra_test.processNextNode(); |
|
| 85 |
n = const_dijkstra_test.nextNode(); |
|
| 86 |
b = const_dijkstra_test.emptyQueue(); |
|
| 87 |
i = const_dijkstra_test.queueSize(); |
|
| 88 |
|
|
| 89 |
dijkstra_test.start(); |
|
| 90 |
dijkstra_test.start(t); |
|
| 91 |
dijkstra_test.start(nm); |
|
| 92 |
|
|
| 93 |
l = const_dijkstra_test.dist(t); |
|
| 94 |
e = const_dijkstra_test.predArc(t); |
|
| 95 |
s = const_dijkstra_test.predNode(t); |
|
| 96 |
b = const_dijkstra_test.reached(t); |
|
| 97 |
b = const_dijkstra_test.processed(t); |
|
| 98 |
d = const_dijkstra_test.distMap(); |
|
| 99 |
p = const_dijkstra_test.predMap(); |
|
| 100 |
pp = const_dijkstra_test.path(t); |
|
| 101 |
l = const_dijkstra_test.currentDist(t); |
|
| 102 |
} |
|
| 103 |
{
|
|
| 104 |
DType |
|
| 105 |
::SetPredMap<concepts::ReadWriteMap<Node,Arc> > |
|
| 106 |
::SetDistMap<concepts::ReadWriteMap<Node,VType> > |
|
| 107 |
::SetStandardProcessedMap |
|
| 108 |
::SetProcessedMap<concepts::WriteMap<Node,bool> > |
|
| 109 |
::SetOperationTraits<DijkstraDefaultOperationTraits<VType> > |
|
| 110 |
::SetHeap<BinHeap<VType, concepts::ReadWriteMap<Node,int> > > |
|
| 111 |
::SetStandardHeap<BinHeap<VType, concepts::ReadWriteMap<Node,int> > > |
|
| 112 |
::SetHeap<BinHeap<VType, concepts::ReadWriteMap<Node,int> >, |
|
| 113 |
concepts::ReadWriteMap<Node,int> > |
|
| 114 |
::Create dijkstra_test(G,length); |
|
| 115 |
|
|
| 116 |
LengthMap length_map; |
|
| 117 |
concepts::ReadWriteMap<Node,Arc> pred_map; |
|
| 118 |
concepts::ReadWriteMap<Node,VType> dist_map; |
|
| 119 |
concepts::WriteMap<Node,bool> processed_map; |
|
| 120 |
concepts::ReadWriteMap<Node,int> heap_cross_ref; |
|
| 121 |
BinHeap<VType, concepts::ReadWriteMap<Node,int> > heap(heap_cross_ref); |
|
| 122 |
|
|
| 123 |
dijkstra_test |
|
| 124 |
.lengthMap(length_map) |
|
| 125 |
.predMap(pred_map) |
|
| 126 |
.distMap(dist_map) |
|
| 127 |
.processedMap(processed_map) |
|
| 128 |
.heap(heap, heap_cross_ref); |
|
| 129 |
|
|
| 130 |
dijkstra_test.run(s); |
|
| 131 |
dijkstra_test.run(s,t); |
|
| 132 |
|
|
| 133 |
dijkstra_test.addSource(s); |
|
| 134 |
dijkstra_test.addSource(s, 1); |
|
| 135 |
n = dijkstra_test.processNextNode(); |
|
| 136 |
n = dijkstra_test.nextNode(); |
|
| 137 |
b = dijkstra_test.emptyQueue(); |
|
| 138 |
i = dijkstra_test.queueSize(); |
|
| 139 |
|
|
| 140 |
dijkstra_test.start(); |
|
| 141 |
dijkstra_test.start(t); |
|
| 142 |
dijkstra_test.start(nm); |
|
| 143 |
|
|
| 78 | 144 |
l = dijkstra_test.dist(t); |
| ... | ... |
@@ -81,25 +147,5 @@ |
| 81 | 147 |
b = dijkstra_test.reached(t); |
| 82 |
d = dijkstra_test.distMap(); |
|
| 83 |
p = dijkstra_test.predMap(); |
|
| 148 |
b = dijkstra_test.processed(t); |
|
| 84 | 149 |
pp = dijkstra_test.path(t); |
| 85 |
} |
|
| 86 |
{
|
|
| 87 |
DType |
|
| 88 |
::SetPredMap<concepts::ReadWriteMap<Node,Arc> > |
|
| 89 |
::SetDistMap<concepts::ReadWriteMap<Node,VType> > |
|
| 90 |
::SetProcessedMap<concepts::WriteMap<Node,bool> > |
|
| 91 |
::SetStandardProcessedMap |
|
| 92 |
::SetOperationTraits<DijkstraDefaultOperationTraits<VType> > |
|
| 93 |
::SetHeap<BinHeap<VType, concepts::ReadWriteMap<Node,int> > > |
|
| 94 |
::SetStandardHeap<BinHeap<VType, concepts::ReadWriteMap<Node,int> > > |
|
| 95 |
::Create dijkstra_test(G,length); |
|
| 96 |
|
|
| 97 |
dijkstra_test.run(s); |
|
| 98 |
dijkstra_test.run(s,t); |
|
| 99 |
|
|
| 100 |
l = dijkstra_test.dist(t); |
|
| 101 |
e = dijkstra_test.predArc(t); |
|
| 102 |
s = dijkstra_test.predNode(t); |
|
| 103 |
b = dijkstra_test.reached(t); |
|
| 104 |
pp = dijkstra_test.path(t); |
|
| 150 |
l = dijkstra_test.currentDist(t); |
|
| 105 | 151 |
} |
| ... | ... |
@@ -4,2 +4,4 @@ |
| 4 | 4 |
#include <lemon/smart_graph.h> |
| 5 |
#include <lemon/concepts/graph.h> |
|
| 6 |
#include <lemon/concepts/maps.h> |
|
| 5 | 7 |
#include <lemon/lgf_reader.h> |
| ... | ... |
@@ -34,2 +36,32 @@ |
| 34 | 36 |
|
| 37 |
void checkGomoryHuCompile() |
|
| 38 |
{
|
|
| 39 |
typedef int Value; |
|
| 40 |
typedef concepts::Graph Graph; |
|
| 41 |
|
|
| 42 |
typedef Graph::Node Node; |
|
| 43 |
typedef Graph::Edge Edge; |
|
| 44 |
typedef concepts::ReadMap<Edge, Value> CapMap; |
|
| 45 |
typedef concepts::ReadWriteMap<Node, bool> CutMap; |
|
| 46 |
|
|
| 47 |
Graph g; |
|
| 48 |
Node n; |
|
| 49 |
CapMap cap; |
|
| 50 |
CutMap cut; |
|
| 51 |
Value v; |
|
| 52 |
int d; |
|
| 53 |
|
|
| 54 |
GomoryHu<Graph, CapMap> gh_test(g, cap); |
|
| 55 |
const GomoryHu<Graph, CapMap>& |
|
| 56 |
const_gh_test = gh_test; |
|
| 57 |
|
|
| 58 |
gh_test.run(); |
|
| 59 |
|
|
| 60 |
n = const_gh_test.predNode(n); |
|
| 61 |
v = const_gh_test.predValue(n); |
|
| 62 |
d = const_gh_test.rootDist(n); |
|
| 63 |
v = const_gh_test.minCutValue(n, n); |
|
| 64 |
v = const_gh_test.minCutMap(n, n, cut); |
|
| 65 |
} |
|
| 66 |
|
|
| 35 | 67 |
GRAPH_TYPEDEFS(Graph); |
| ... | ... |
@@ -72,4 +104,4 @@ |
| 72 | 104 |
check(pf.flowValue() == ght.minCutValue(u, v), "Wrong cut 1"); |
| 73 |
check(cm[u] != cm[v], "Wrong cut 3"); |
|
| 74 |
check(pf.flowValue() == cutValue(graph, cm, capacity), "Wrong cut 2"); |
|
| 105 |
check(cm[u] != cm[v], "Wrong cut 2"); |
|
| 106 |
check(pf.flowValue() == cutValue(graph, cm, capacity), "Wrong cut 3"); |
|
| 75 | 107 |
|
| ... | ... |
@@ -86,3 +118,2 @@ |
| 86 | 118 |
check(sum == countNodes(graph), "Problem with MinCutNodeIt"); |
| 87 |
|
|
| 88 | 119 |
} |
| ... | ... |
@@ -21,5 +21,8 @@ |
| 21 | 21 |
#include <lemon/smart_graph.h> |
| 22 |
#include <lemon/adaptors.h> |
|
| 23 |
#include <lemon/concepts/digraph.h> |
|
| 24 |
#include <lemon/concepts/maps.h> |
|
| 25 |
#include <lemon/lgf_reader.h> |
|
| 22 | 26 |
#include <lemon/hao_orlin.h> |
| 23 | 27 |
|
| 24 |
#include <lemon/lgf_reader.h> |
|
| 25 | 28 |
#include "test_tools.h" |
| ... | ... |
@@ -39,23 +42,120 @@ |
| 39 | 42 |
"@edges\n" |
| 40 |
" label capacity\n" |
|
| 41 |
"0 1 0 2\n" |
|
| 42 |
"1 2 1 2\n" |
|
| 43 |
"2 0 2 2\n" |
|
| 44 |
"3 4 3 2\n" |
|
| 45 |
"4 5 4 2\n" |
|
| 46 |
"5 3 5 2\n" |
|
| 47 |
"2 3 6 3\n"; |
|
| 43 |
" cap1 cap2 cap3\n" |
|
| 44 |
"0 1 1 1 1 \n" |
|
| 45 |
"0 2 2 2 4 \n" |
|
| 46 |
"1 2 4 4 4 \n" |
|
| 47 |
"3 4 1 1 1 \n" |
|
| 48 |
"3 5 2 2 4 \n" |
|
| 49 |
"4 5 4 4 4 \n" |
|
| 50 |
"5 4 4 4 4 \n" |
|
| 51 |
"2 3 1 6 6 \n" |
|
| 52 |
"4 0 1 6 6 \n"; |
|
| 53 |
|
|
| 54 |
void checkHaoOrlinCompile() |
|
| 55 |
{
|
|
| 56 |
typedef int Value; |
|
| 57 |
typedef concepts::Digraph Digraph; |
|
| 58 |
|
|
| 59 |
typedef Digraph::Node Node; |
|
| 60 |
typedef Digraph::Arc Arc; |
|
| 61 |
typedef concepts::ReadMap<Arc, Value> CapMap; |
|
| 62 |
typedef concepts::WriteMap<Node, bool> CutMap; |
|
| 63 |
|
|
| 64 |
Digraph g; |
|
| 65 |
Node n; |
|
| 66 |
CapMap cap; |
|
| 67 |
CutMap cut; |
|
| 68 |
Value v; |
|
| 69 |
|
|
| 70 |
HaoOrlin<Digraph, CapMap> ho_test(g, cap); |
|
| 71 |
const HaoOrlin<Digraph, CapMap>& |
|
| 72 |
const_ho_test = ho_test; |
|
| 73 |
|
|
| 74 |
ho_test.init(); |
|
| 75 |
ho_test.init(n); |
|
| 76 |
ho_test.calculateOut(); |
|
| 77 |
ho_test.calculateIn(); |
|
| 78 |
ho_test.run(); |
|
| 79 |
ho_test.run(n); |
|
| 80 |
|
|
| 81 |
v = const_ho_test.minCutValue(); |
|
| 82 |
v = const_ho_test.minCutMap(cut); |
|
| 83 |
} |
|
| 84 |
|
|
| 85 |
template <typename Graph, typename CapMap, typename CutMap> |
|
| 86 |
typename CapMap::Value |
|
| 87 |
cutValue(const Graph& graph, const CapMap& cap, const CutMap& cut) |
|
| 88 |
{
|
|
| 89 |
typename CapMap::Value sum = 0; |
|
| 90 |
for (typename Graph::ArcIt a(graph); a != INVALID; ++a) {
|
|
| 91 |
if (cut[graph.source(a)] && !cut[graph.target(a)]) |
|
| 92 |
sum += cap[a]; |
|
| 93 |
} |
|
| 94 |
return sum; |
|
| 95 |
} |
|
| 48 | 96 |
|
| 49 | 97 |
int main() {
|
| 50 |
SmartGraph graph; |
|
| 51 |
SmartGraph::EdgeMap<int> capacity(graph); |
|
| 98 |
SmartDigraph graph; |
|
| 99 |
SmartDigraph::ArcMap<int> cap1(graph), cap2(graph), cap3(graph); |
|
| 100 |
SmartDigraph::NodeMap<bool> cut(graph); |
|
| 52 | 101 |
|
| 53 |
istringstream lgfs(lgf); |
|
| 54 |
graphReader(graph, lgfs). |
|
| 55 |
|
|
| 102 |
istringstream input(lgf); |
|
| 103 |
digraphReader(graph, input) |
|
| 104 |
.arcMap("cap1", cap1)
|
|
| 105 |
.arcMap("cap2", cap2)
|
|
| 106 |
.arcMap("cap3", cap3)
|
|
| 107 |
.run(); |
|
| 56 | 108 |
|
| 57 |
HaoOrlin<SmartGraph, SmartGraph::EdgeMap<int> > ho(graph, capacity); |
|
| 58 |
ho.run(); |
|
| 109 |
{
|
|
| 110 |
HaoOrlin<SmartDigraph> ho(graph, cap1); |
|
| 111 |
ho.run(); |
|
| 112 |
ho.minCutMap(cut); |
|
| 113 |
|
|
| 114 |
check(ho.minCutValue() == 1, "Wrong cut value"); |
|
| 115 |
check(ho.minCutValue() == cutValue(graph, cap1, cut), "Wrong cut value"); |
|
| 116 |
} |
|
| 117 |
{
|
|
| 118 |
HaoOrlin<SmartDigraph> ho(graph, cap2); |
|
| 119 |
ho.run(); |
|
| 120 |
ho.minCutMap(cut); |
|
| 59 | 121 |
|
| 60 |
check(ho.minCutValue() == |
|
| 122 |
check(ho.minCutValue() == 1, "Wrong cut value"); |
|
| 123 |
check(ho.minCutValue() == cutValue(graph, cap2, cut), "Wrong cut value"); |
|
| 124 |
} |
|
| 125 |
{
|
|
| 126 |
HaoOrlin<SmartDigraph> ho(graph, cap3); |
|
| 127 |
ho.run(); |
|
| 128 |
ho.minCutMap(cut); |
|
| 129 |
|
|
| 130 |
check(ho.minCutValue() == 1, "Wrong cut value"); |
|
| 131 |
check(ho.minCutValue() == cutValue(graph, cap3, cut), "Wrong cut value"); |
|
| 132 |
} |
|
| 133 |
|
|
| 134 |
typedef Undirector<SmartDigraph> UGraph; |
|
| 135 |
UGraph ugraph(graph); |
|
| 136 |
|
|
| 137 |
{
|
|
| 138 |
HaoOrlin<UGraph, SmartDigraph::ArcMap<int> > ho(ugraph, cap1); |
|
| 139 |
ho.run(); |
|
| 140 |
ho.minCutMap(cut); |
|
| 141 |
|
|
| 142 |
check(ho.minCutValue() == 2, "Wrong cut value"); |
|
| 143 |
check(ho.minCutValue() == cutValue(ugraph, cap1, cut), "Wrong cut value"); |
|
| 144 |
} |
|
| 145 |
{
|
|
| 146 |
HaoOrlin<UGraph, SmartDigraph::ArcMap<int> > ho(ugraph, cap2); |
|
| 147 |
ho.run(); |
|
| 148 |
ho.minCutMap(cut); |
|
| 149 |
|
|
| 150 |
check(ho.minCutValue() == 5, "Wrong cut value"); |
|
| 151 |
check(ho.minCutValue() == cutValue(ugraph, cap2, cut), "Wrong cut value"); |
|
| 152 |
} |
|
| 153 |
{
|
|
| 154 |
HaoOrlin<UGraph, SmartDigraph::ArcMap<int> > ho(ugraph, cap3); |
|
| 155 |
ho.run(); |
|
| 156 |
ho.minCutMap(cut); |
|
| 157 |
|
|
| 158 |
check(ho.minCutValue() == 5, "Wrong cut value"); |
|
| 159 |
check(ho.minCutValue() == cutValue(ugraph, cap3, cut), "Wrong cut value"); |
|
| 160 |
} |
|
| 61 | 161 |
| ... | ... |
@@ -101,12 +101,12 @@ |
| 101 | 101 |
|
| 102 |
edge_cost_map.set(e1, -10); |
|
| 103 |
edge_cost_map.set(e2, -9); |
|
| 104 |
edge_cost_map.set(e3, -8); |
|
| 105 |
edge_cost_map.set(e4, -7); |
|
| 106 |
edge_cost_map.set(e5, -6); |
|
| 107 |
edge_cost_map.set(e6, -5); |
|
| 108 |
edge_cost_map.set(e7, -4); |
|
| 109 |
edge_cost_map.set(e8, -3); |
|
| 110 |
edge_cost_map.set(e9, -2); |
|
| 111 |
edge_cost_map.set(e10, -1); |
|
| 102 |
edge_cost_map[e1] = -10; |
|
| 103 |
edge_cost_map[e2] = -9; |
|
| 104 |
edge_cost_map[e3] = -8; |
|
| 105 |
edge_cost_map[e4] = -7; |
|
| 106 |
edge_cost_map[e5] = -6; |
|
| 107 |
edge_cost_map[e6] = -5; |
|
| 108 |
edge_cost_map[e7] = -4; |
|
| 109 |
edge_cost_map[e8] = -3; |
|
| 110 |
edge_cost_map[e9] = -2; |
|
| 111 |
edge_cost_map[e10] = -1; |
|
| 112 | 112 |
| ... | ... |
@@ -397,8 +397,3 @@ |
| 397 | 397 |
} catch (CplexEnv::LicenseError& error) {
|
| 398 |
#ifdef LEMON_FORCE_CPLEX_CHECK |
|
| 399 | 398 |
check(false, error.what()); |
| 400 |
#else |
|
| 401 |
std::cerr << error.what() << std::endl; |
|
| 402 |
std::cerr << "Cplex license check failed, lp check skipped" << std::endl; |
|
| 403 |
#endif |
|
| 404 | 399 |
} |
| ... | ... |
@@ -145,8 +145,3 @@ |
| 145 | 145 |
} catch (CplexEnv::LicenseError& error) {
|
| 146 |
#ifdef LEMON_FORCE_CPLEX_CHECK |
|
| 147 | 146 |
check(false, error.what()); |
| 148 |
#else |
|
| 149 |
std::cerr << error.what() << std::endl; |
|
| 150 |
std::cerr << "Cplex license check failed, lp check skipped" << std::endl; |
|
| 151 |
#endif |
|
| 152 | 147 |
} |
| ... | ... |
@@ -86,14 +86,18 @@ |
| 86 | 86 |
CutMap cut; |
| 87 |
VType v; |
|
| 88 |
bool b; |
|
| 87 | 89 |
|
| 88 |
Preflow<Digraph, CapMap> |
|
| 89 |
::SetFlowMap<FlowMap> |
|
| 90 |
::SetElevator<Elev> |
|
| 91 |
::SetStandardElevator<LinkedElev> |
|
| 92 |
|
|
| 90 |
typedef Preflow<Digraph, CapMap> |
|
| 91 |
::SetFlowMap<FlowMap> |
|
| 92 |
::SetElevator<Elev> |
|
| 93 |
::SetStandardElevator<LinkedElev> |
|
| 94 |
::Create PreflowType; |
|
| 95 |
PreflowType preflow_test(g, cap, n, n); |
|
| 96 |
const PreflowType& const_preflow_test = preflow_test; |
|
| 93 | 97 |
|
| 94 |
preflow_test.capacityMap(cap); |
|
| 95 |
flow = preflow_test.flowMap(); |
|
| 96 |
preflow_test.flowMap(flow); |
|
| 97 |
preflow_test.source(n); |
|
| 98 |
preflow_test |
|
| 98 |
preflow_test |
|
| 99 |
.capacityMap(cap) |
|
| 100 |
.flowMap(flow) |
|
| 101 |
.source(n) |
|
| 102 |
.target(n); |
|
| 99 | 103 |
|
| ... | ... |
@@ -106,7 +110,9 @@ |
| 106 | 110 |
|
| 107 |
preflow_test.flowValue(); |
|
| 108 |
preflow_test.minCut(n); |
|
| 109 |
preflow_test.minCutMap(cut); |
|
| 110 |
preflow_test.flow(e); |
|
| 111 |
|
|
| 111 |
v = const_preflow_test.flowValue(); |
|
| 112 |
v = const_preflow_test.flow(e); |
|
| 113 |
const FlowMap& fm = const_preflow_test.flowMap(); |
|
| 114 |
b = const_preflow_test.minCut(n); |
|
| 115 |
const_preflow_test.minCutMap(cut); |
|
| 116 |
|
|
| 117 |
ignore_unused_variable_warning(fm); |
|
| 112 | 118 |
} |
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