SCIP

    Solving Constraint Integer Programs

    branch_allfullstrong.c
    Go to the documentation of this file.
    1/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
    2/* */
    3/* This file is part of the program and library */
    4/* SCIP --- Solving Constraint Integer Programs */
    5/* */
    6/* Copyright (c) 2002-2026 Zuse Institute Berlin (ZIB) */
    7/* */
    8/* Licensed under the Apache License, Version 2.0 (the "License"); */
    9/* you may not use this file except in compliance with the License. */
    10/* You may obtain a copy of the License at */
    11/* */
    12/* http://www.apache.org/licenses/LICENSE-2.0 */
    13/* */
    14/* Unless required by applicable law or agreed to in writing, software */
    15/* distributed under the License is distributed on an "AS IS" BASIS, */
    16/* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. */
    17/* See the License for the specific language governing permissions and */
    18/* limitations under the License. */
    19/* */
    20/* You should have received a copy of the Apache-2.0 license */
    21/* along with SCIP; see the file LICENSE. If not visit scipopt.org. */
    22/* */
    23/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
    24
    25/**@file branch_allfullstrong.c
    26 * @ingroup DEFPLUGINS_BRANCH
    27 * @brief all variables full strong LP branching rule
    28 * @author Tobias Achterberg
    29 *
    30 * The all variables full strong branching rule applies strong branching to every non-fixed variable
    31 * at the current node of the branch-and-bound search. The rule selects the candidate
    32 * which will cause the highest gain of the dual bound in the created sub-tree among all branching variables.
    33 *
    34 * For calculating the gain, a look-ahead is performed by solving the child node LPs which will result
    35 * from branching on a variable.
    36 *
    37 * For a more mathematical description and a comparison between the strong branching rule and other branching rules
    38 * in SCIP, we refer to
    39 *
    40 * @par
    41 * Tobias Achterberg@n
    42 * Constraint Integer Programming@n
    43 * PhD Thesis, Technische Universität Berlin, 2007@n
    44 *
    45 */
    46
    47/*---+----1----+----2----+----3----+----4----+----5----+----6----+----7----+----8----+----9----+----0----+----1----+----2*/
    48
    51#include "scip/pub_branch.h"
    52#include "scip/pub_message.h"
    53#include "scip/pub_tree.h"
    54#include "scip/pub_var.h"
    55#include "scip/scip_branch.h"
    56#include "scip/scip_exact.h"
    57#include "scip/scip_general.h"
    58#include "scip/scip_lp.h"
    59#include "scip/scip_mem.h"
    60#include "scip/scip_message.h"
    61#include "scip/scip_numerics.h"
    62#include "scip/scip_prob.h"
    64#include "scip/scip_tree.h"
    65#include "scip/scip_var.h"
    66
    67
    68#define BRANCHRULE_NAME "allfullstrong"
    69#define BRANCHRULE_DESC "all variables full strong branching"
    70#define BRANCHRULE_PRIORITY -1000
    71#define BRANCHRULE_MAXDEPTH -1
    72#define BRANCHRULE_MAXBOUNDDIST 1.0
    73
    74
    75/** branching rule data */
    76struct SCIP_BranchruleData
    77{
    78 int lastcand; /**< last evaluated candidate of last branching rule execution */
    79 int skipsize; /**< size of skipdown and skipup array */
    80 SCIP_Bool* skipdown; /**< should down branch be skiped? */
    81 SCIP_Bool* skipup; /**< should up branch be skiped? */
    82};
    83
    84
    85/** performs the all fullstrong branching */
    86static
    88 SCIP* scip, /**< SCIP data structure */
    89 SCIP_BRANCHRULE* branchrule, /**< branching rule */
    90 SCIP_RESULT* result /**< pointer to store the result of the callback method */
    91 )
    92{
    93 SCIP_BRANCHRULEDATA* branchruledata;
    94 SCIP_VAR** pseudocands;
    95 SCIP_VAR** pseudocandscopy;
    96 SCIP_Real bestdown;
    97 SCIP_Real bestup;
    98 SCIP_Real bestscore;
    99 SCIP_Real provedbound;
    100 SCIP_Bool exactsolve;
    101 SCIP_Bool allcolsinlp;
    102 SCIP_Bool bestdownvalid;
    103 SCIP_Bool bestupvalid;
    104 int npseudocands;
    105 int npriopseudocands;
    106 int bestpseudocand;
    107
    108 assert(branchrule != NULL);
    109 assert(scip != NULL);
    110 assert(result != NULL);
    111
    113
    114 /* check, if all existing columns are in LP, and thus the strong branching results give lower bounds */
    115 allcolsinlp = SCIPallColsInLP(scip);
    116
    117 /* check, if we want to solve the problem exactly, meaning that strong branching information is not useful
    118 * for cutting off sub problems and improving lower bounds of children
    119 */
    120 exactsolve = SCIPisExact(scip);
    121
    122 /* get branching rule data */
    123 branchruledata = SCIPbranchruleGetData(branchrule);
    124 assert(branchruledata != NULL);
    125
    126 if( branchruledata->skipdown == NULL )
    127 {
    128 assert(branchruledata->skipup == NULL);
    129
    130 branchruledata->skipsize = SCIPgetNVars(scip);
    131 SCIP_CALL( SCIPallocBlockMemoryArray(scip, &branchruledata->skipdown, branchruledata->skipsize) );
    132 SCIP_CALL( SCIPallocBlockMemoryArray(scip, &branchruledata->skipup, branchruledata->skipsize) );
    133 BMSclearMemoryArray(branchruledata->skipdown, branchruledata->skipsize);
    134 BMSclearMemoryArray(branchruledata->skipup, branchruledata->skipsize);
    135 }
    136
    137 /* get all non-fixed variables (not only the fractional ones) */
    138 SCIP_CALL( SCIPgetPseudoBranchCands(scip, &pseudocands, &npseudocands, &npriopseudocands) );
    139 assert(npseudocands > 0);
    140 assert(npriopseudocands > 0);
    141
    142 SCIP_CALL( SCIPduplicateBufferArray(scip, &pseudocandscopy, pseudocands, npseudocands) );
    143
    144 SCIP_CALL( SCIPselectVarPseudoStrongBranching(scip, pseudocandscopy, branchruledata->skipdown, branchruledata->skipup, npseudocands,
    145 npriopseudocands, &bestpseudocand, &bestdown, &bestup, &bestscore, &bestdownvalid, &bestupvalid, &provedbound, result) );
    146
    147 if( *result != SCIP_CUTOFF )
    148 {
    149 /* update lower bound of current node */
    150 if( allcolsinlp && !exactsolve )
    151 {
    153 SCIPdebugMsg(scip, " -> current focus' lowerbound: %g\n", SCIPgetLocalLowerbound(scip));
    154 }
    155
    156 if( *result != SCIP_REDUCEDDOM && *result != SCIP_CONSADDED )
    157 {
    158 SCIP_NODE* downchild;
    159 SCIP_NODE* eqchild;
    160 SCIP_NODE* upchild;
    161 SCIP_VAR* var;
    162
    163 assert(*result == SCIP_DIDNOTRUN);
    164 assert(0 <= bestpseudocand && bestpseudocand < npseudocands);
    165 assert(SCIPisLT(scip, provedbound, SCIPgetCutoffbound(scip)));
    166
    167 var = pseudocandscopy[bestpseudocand];
    168
    169 /* perform the branching */
    170 SCIPdebugMsg(scip, " -> %d candidates, selected candidate %d: variable <%s>[%g,%g] (solval=%g, down=%g, up=%g, score=%g)\n",
    171 npseudocands, bestpseudocand, SCIPvarGetName(var), SCIPvarGetLbLocal(var), SCIPvarGetUbLocal(var), SCIPvarGetLPSol(var),
    172 bestdown, bestup, bestscore);
    173 SCIP_CALL( SCIPbranchVarVal(scip, var, SCIPvarGetLPSol(var), &downchild, &eqchild, &upchild) );
    174
    175 /* update the lower bounds in the children */
    176 if( allcolsinlp && !exactsolve )
    177 {
    178 if( downchild != NULL && bestdownvalid )
    179 {
    180 SCIP_CALL( SCIPupdateNodeLowerbound(scip, downchild, bestdown) );
    181 SCIPdebugMsg(scip, " -> down child's lowerbound: %g\n", SCIPnodeGetLowerbound(downchild));
    182 }
    183 if( upchild != NULL && bestupvalid )
    184 {
    185 SCIP_CALL( SCIPupdateNodeLowerbound(scip, upchild, bestup) );
    186 SCIPdebugMsg(scip, " -> up child's lowerbound: %g\n", SCIPnodeGetLowerbound(upchild));
    187 }
    188 }
    189
    190 *result = SCIP_BRANCHED;
    191 }
    192 }
    193
    194 SCIPfreeBufferArray(scip, &pseudocandscopy);
    195
    196 return SCIP_OKAY;
    197}
    198
    199
    200/*
    201 * Callback methods
    202 */
    203
    204/** copy method for branchrule plugins (called when SCIP copies plugins) */
    205static
    206SCIP_DECL_BRANCHCOPY(branchCopyAllfullstrong)
    207{ /*lint --e{715}*/
    208 assert(scip != NULL);
    209 assert(branchrule != NULL);
    210
    212
    213 /* call inclusion method of branchrule */
    215
    216 return SCIP_OKAY;
    217}
    218
    219/** destructor of branching rule to free user data (called when SCIP is exiting) */
    220static
    221SCIP_DECL_BRANCHFREE(branchFreeAllfullstrong)
    222{ /*lint --e{715}*/
    223 SCIP_BRANCHRULEDATA* branchruledata;
    224
    225 /* free branching rule data */
    226 branchruledata = SCIPbranchruleGetData(branchrule);
    227 SCIPfreeBlockMemoryArrayNull(scip, &branchruledata->skipdown, branchruledata->skipsize);
    228 SCIPfreeBlockMemoryArrayNull(scip, &branchruledata->skipup, branchruledata->skipsize);
    229
    230 SCIPfreeBlockMemory(scip, &branchruledata);
    231 SCIPbranchruleSetData(branchrule, NULL);
    232
    233 return SCIP_OKAY;
    234}
    235
    236
    237/** initialization method of branching rule (called after problem was transformed) */
    238static
    239SCIP_DECL_BRANCHINIT(branchInitAllfullstrong)
    240{ /*lint --e{715}*/
    241 SCIP_BRANCHRULEDATA* branchruledata;
    242
    243 /* initialize branching rule data */
    244 branchruledata = SCIPbranchruleGetData(branchrule);
    245 branchruledata->lastcand = 0;
    246
    247 return SCIP_OKAY;
    248}
    249
    250
    251/** branching execution method for fractional LP solutions */
    252static
    253SCIP_DECL_BRANCHEXECLP(branchExeclpAllfullstrong)
    254{ /*lint --e{715}*/
    255 assert(result != NULL);
    256
    257 SCIPdebugMsg(scip, "Execlp method of allfullstrong branching\n");
    258
    259 *result = SCIP_DIDNOTRUN;
    260
    261 SCIP_CALL( branch(scip, branchrule, result) );
    262
    263 return SCIP_OKAY;
    264}
    265
    266
    267/** branching execution method for not completely fixed pseudo solutions */
    268static
    269SCIP_DECL_BRANCHEXECPS(branchExecpsAllfullstrong)
    270{ /*lint --e{715}*/
    271 assert(result != NULL);
    272
    273 SCIPdebugMsg(scip, "Execps method of allfullstrong branching\n");
    274
    275 *result = SCIP_DIDNOTRUN;
    276
    278 {
    279 SCIP_CALL( branch(scip, branchrule, result) );
    280 }
    281
    282 return SCIP_OKAY;
    283}
    284
    285
    286/*
    287 * branching specific interface methods
    288 */
    289/**
    290 * Selects a variable from a set of candidates by strong branching
    291 *
    292 * @return \ref SCIP_OKAY is returned if everything worked. Otherwise a suitable error code is passed. See \ref
    293 * SCIP_Retcode "SCIP_RETCODE" for a complete list of error codes.
    294 *
    295 * @note The variables in the lpcands array must have a fractional value in the current LP solution
    296 */
    298 SCIP* scip, /**< original SCIP data structure */
    299 SCIP_VAR** pseudocands, /**< branching candidates */
    300 SCIP_Bool* skipdown, /**< should down branchings be skipped? */
    301 SCIP_Bool* skipup, /**< should up branchings be skipped? */
    302 int npseudocands, /**< number of branching candidates */
    303 int npriopseudocands, /**< number of priority branching candidates */
    304 int* bestpseudocand, /**< best candidate for branching */
    305 SCIP_Real* bestdown, /**< objective value of the down branch for bestcand */
    306 SCIP_Real* bestup, /**< objective value of the up branch for bestcand */
    307 SCIP_Real* bestscore, /**< score for bestcand */
    308 SCIP_Bool* bestdownvalid, /**< is bestdown a valid dual bound for the down branch? */
    309 SCIP_Bool* bestupvalid, /**< is bestup a valid dual bound for the up branch? */
    310 SCIP_Real* provedbound, /**< proved dual bound for current subtree */
    311 SCIP_RESULT* result /**< result pointer */
    312 )
    313{ /*lint --e{715}*/
    314 SCIP_Real lpobjval;
    315 SCIP_Bool allcolsinlp;
    316 SCIP_Bool exactsolve;
    317
    318 assert(scip != NULL);
    319 assert(pseudocands != NULL);
    320 assert(bestpseudocand != NULL);
    321 assert(skipdown != NULL);
    322 assert(skipup != NULL);
    323 assert(bestdown != NULL);
    324 assert(bestup != NULL);
    325 assert(bestscore != NULL);
    326 assert(bestdownvalid != NULL);
    327 assert(bestupvalid != NULL);
    328 assert(provedbound != NULL);
    329 assert(result != NULL);
    331
    332 /* get current LP objective bound of the local sub problem and global cutoff bound */
    333 lpobjval = SCIPgetLPObjval(scip);
    334
    335 /* check, if we want to solve the problem exactly, meaning that strong branching information is not useful
    336 * for cutting off sub problems and improving lower bounds of children
    337 */
    338 exactsolve = SCIPisExact(scip);
    339
    340 /* check, if all existing columns are in LP, and thus the strong branching results give lower bounds */
    341 allcolsinlp = SCIPallColsInLP(scip);
    342
    343 /* if only one candidate exists, choose this one without applying strong branching */
    344 *bestpseudocand = 0;
    345 *bestdown = lpobjval;
    346 *bestup = lpobjval;
    347 *bestdownvalid = FALSE;
    348 *bestupvalid = FALSE;
    349 *bestscore = -SCIPinfinity(scip);
    350 *provedbound = lpobjval;
    351 if( npseudocands > 1 )
    352 {
    353 SCIP_BRANCHRULE* branchrule;
    354 SCIP_BRANCHRULEDATA* branchruledata;
    355
    356 SCIP_Real solval;
    357 SCIP_Real down;
    358 SCIP_Real up;
    359 SCIP_Real downgain;
    360 SCIP_Real upgain;
    361 SCIP_Real score;
    362 SCIP_Bool integral;
    363 SCIP_Bool lperror;
    364 SCIP_Bool downvalid;
    365 SCIP_Bool upvalid;
    366 SCIP_Bool downinf;
    367 SCIP_Bool upinf;
    368 SCIP_Bool downconflict;
    369 SCIP_Bool upconflict;
    370 int nsbcalls;
    371 int i;
    372 int c;
    373
    375 assert(branchrule != NULL);
    376
    377 /* get branching rule data */
    378 branchruledata = SCIPbranchruleGetData(branchrule);
    379 assert(branchruledata != NULL);
    380
    381 /* initialize strong branching */
    383
    384 /* search the full strong candidate:
    385 * cycle through the candidates, starting with the position evaluated in the last run
    386 */
    387 nsbcalls = 0;
    388 for( i = 0, c = branchruledata->lastcand; i < npseudocands; ++i, ++c )
    389 {
    390 c = c % npseudocands;
    391 assert(pseudocands[c] != NULL);
    392
    393 /* we can only apply strong branching on COLUMN variables that are in the current LP */
    394 if( !SCIPvarIsInLP(pseudocands[c]) )
    395 continue;
    396
    397 solval = SCIPvarGetLPSol(pseudocands[c]);
    398 integral = SCIPisFeasIntegral(scip, solval);
    399
    400 SCIPdebugMsg(scip, "applying strong branching on %s variable <%s>[%g,%g] with solution %g\n",
    401 integral ? "integral" : "fractional", SCIPvarGetName(pseudocands[c]), SCIPvarGetLbLocal(pseudocands[c]),
    402 SCIPvarGetUbLocal(pseudocands[c]), solval);
    403
    404 up = -SCIPinfinity(scip);
    405 down = -SCIPinfinity(scip);
    406
    407 if( integral )
    408 {
    409 SCIP_CALL( SCIPgetVarStrongbranchInt(scip, pseudocands[c], INT_MAX, FALSE,
    410 skipdown[c] ? NULL : &down, skipup[c] ? NULL : &up, &downvalid, &upvalid, &downinf, &upinf, &downconflict, &upconflict, &lperror) );
    411 }
    412 else
    413 {
    414 SCIP_CALL( SCIPgetVarStrongbranchFrac(scip, pseudocands[c], INT_MAX, FALSE,
    415 skipdown[c] ? NULL : &down, skipup[c] ? NULL : &up, &downvalid, &upvalid, &downinf, &upinf, &downconflict, &upconflict, &lperror) );
    416 }
    417 nsbcalls++;
    418
    419 /* display node information line in root node */
    420 if( SCIPgetDepth(scip) == 0 && nsbcalls % 100 == 0 )
    421 {
    423 }
    424
    425 /* check for an error in strong branching */
    426 if( lperror )
    427 {
    429 "(node %" SCIP_LONGINT_FORMAT ") error in strong branching call for variable <%s> with solution %g\n",
    430 SCIPgetNNodes(scip), SCIPvarGetName(pseudocands[c]), solval);
    431 break;
    432 }
    433
    434 /* evaluate strong branching */
    435 down = MAX(down, lpobjval);
    436 up = MAX(up, lpobjval);
    437 downgain = down - lpobjval;
    438 upgain = up - lpobjval;
    439 assert(!allcolsinlp || exactsolve || !downvalid || downinf == SCIPisGE(scip, down, SCIPgetCutoffbound(scip)));
    440 assert(!allcolsinlp || exactsolve || !upvalid || upinf == SCIPisGE(scip, up, SCIPgetCutoffbound(scip)));
    441 assert(downinf || !downconflict);
    442 assert(upinf || !upconflict);
    443
    444 /* check if there are infeasible roundings */
    445 if( downinf || upinf )
    446 {
    447 assert(allcolsinlp);
    448 assert(!exactsolve);
    449
    450 if( downinf && upinf )
    451 {
    452 if( integral )
    453 {
    454 SCIP_Bool infeasible;
    455 SCIP_Bool fixed;
    456
    457 /* both bound changes are infeasible: variable can be fixed to its current value */
    458 SCIP_CALL( SCIPfixVar(scip, pseudocands[c], solval, &infeasible, &fixed) );
    459 assert(!infeasible);
    460 assert(fixed);
    461 *result = SCIP_REDUCEDDOM;
    462 SCIPdebugMsg(scip, " -> integral variable <%s> is infeasible in both directions\n",
    463 SCIPvarGetName(pseudocands[c]));
    464 break; /* terminate initialization loop, because LP was changed */
    465 }
    466 else
    467 {
    468 /* both roundings are infeasible: the node is infeasible */
    469 *result = SCIP_CUTOFF;
    470 SCIPdebugMsg(scip, " -> fractional variable <%s> is infeasible in both directions\n",
    471 SCIPvarGetName(pseudocands[c]));
    472 break; /* terminate initialization loop, because node is infeasible */
    473 }
    474 }
    475 else if( downinf )
    476 {
    477 SCIP_Real newlb;
    478
    479 /* downwards rounding is infeasible -> change lower bound of variable to upward rounding */
    480 newlb = SCIPfeasCeil(scip, solval);
    481 if( SCIPvarGetLbLocal(pseudocands[c]) < newlb - 0.5 )
    482 {
    483 SCIP_CALL( SCIPchgVarLb(scip, pseudocands[c], newlb) );
    484 *result = SCIP_REDUCEDDOM;
    485 SCIPdebugMsg(scip, " -> variable <%s> is infeasible in downward branch\n", SCIPvarGetName(pseudocands[c]));
    486 break; /* terminate initialization loop, because LP was changed */
    487 }
    488 else
    489 downvalid = FALSE;
    490 }
    491 else
    492 {
    493 SCIP_Real newub;
    494
    495 /* upwards rounding is infeasible -> change upper bound of variable to downward rounding */
    496 newub = SCIPfeasFloor(scip, solval);
    497 if( SCIPvarGetUbLocal(pseudocands[c]) > newub + 0.5 )
    498 {
    499 SCIP_CALL( SCIPchgVarUb(scip, pseudocands[c], newub) );
    500 *result = SCIP_REDUCEDDOM;
    501 SCIPdebugMsg(scip, " -> variable <%s> is infeasible in upward branch\n", SCIPvarGetName(pseudocands[c]));
    502 break; /* terminate initialization loop, because LP was changed */
    503 }
    504 else
    505 upvalid = FALSE;
    506 }
    507 }
    508 else if( allcolsinlp && !exactsolve && !integral && downvalid && upvalid )
    509 {
    510 SCIP_Real minbound;
    511
    512 /* the minimal lower bound of both children is a proved lower bound of the current subtree */
    513 minbound = MIN(down, up);
    514 *provedbound = MAX(*provedbound, minbound);
    515 }
    516
    517 /* check for a better score, if we are within the maximum priority candidates */
    518 if( c < npriopseudocands )
    519 {
    520 if( integral )
    521 {
    522 if( skipdown[c] )
    523 {
    524 downgain = 0.0;
    525 score = SCIPgetBranchScore(scip, pseudocands[c], downgain, upgain);
    526 }
    527 else if( skipup[c] )
    528 {
    529 upgain = 0.0;
    530 score = SCIPgetBranchScore(scip, pseudocands[c], downgain, upgain);
    531 }
    532 else
    533 {
    534 SCIP_Real gains[3];
    535
    536 gains[0] = downgain;
    537 gains[1] = 0.0;
    538 gains[2] = upgain;
    539 score = SCIPgetBranchScoreMultiple(scip, pseudocands[c], 3, gains);
    540 }
    541 }
    542 else
    543 score = SCIPgetBranchScore(scip, pseudocands[c], downgain, upgain);
    544
    545 if( score > *bestscore )
    546 {
    547 *bestpseudocand = c;
    548 *bestdown = down;
    549 *bestup = up;
    550 *bestdownvalid = downvalid;
    551 *bestupvalid = upvalid;
    552 *bestscore = score;
    553 }
    554 }
    555 else
    556 {
    557 SCIPdebug( score = 0.0; )
    558 }
    559
    560 /* update pseudo cost values */
    561 if( !downinf )
    562 {
    563 SCIP_CALL( SCIPupdateVarPseudocost(scip, pseudocands[c],
    564 solval-SCIPfeasCeil(scip, solval-1.0), downgain, 1.0) );
    565 }
    566 if( !upinf )
    567 {
    568 SCIP_CALL( SCIPupdateVarPseudocost(scip, pseudocands[c],
    569 solval-SCIPfeasFloor(scip, solval+1.0), upgain, 1.0) );
    570 }
    571
    572 SCIPdebugMsg(scip, " -> var <%s> (solval=%g, downgain=%g, upgain=%g, score=%g) -- best: <%s> (%g)\n",
    573 SCIPvarGetName(pseudocands[c]), solval, downgain, upgain, score,
    574 SCIPvarGetName(pseudocands[*bestpseudocand]), *bestscore);
    575 }
    576
    577 /* remember last evaluated candidate */
    578 branchruledata->lastcand = c;
    579
    580 /* end strong branching */
    582 }
    583
    584 return SCIP_OKAY;
    585}
    586
    587/** creates the all variables full strong LP branching rule and includes it in SCIP */
    589 SCIP* scip /**< SCIP data structure */
    590 )
    591{
    592 SCIP_BRANCHRULEDATA* branchruledata;
    593 SCIP_BRANCHRULE* branchrule;
    594
    595 /* create allfullstrong branching rule data */
    596 SCIP_CALL( SCIPallocBlockMemory(scip, &branchruledata) );
    597 branchruledata->lastcand = 0;
    598 branchruledata->skipsize = 0;
    599 branchruledata->skipup = NULL;
    600 branchruledata->skipdown = NULL;
    601
    602 /* include allfullstrong branching rule */
    605
    606 assert(branchrule != NULL);
    607
    608 /* set non-fundamental callbacks via specific setter functions*/
    609 SCIP_CALL( SCIPsetBranchruleCopy(scip, branchrule, branchCopyAllfullstrong) );
    610 SCIP_CALL( SCIPsetBranchruleFree(scip, branchrule, branchFreeAllfullstrong) );
    611 SCIP_CALL( SCIPsetBranchruleInit(scip, branchrule, branchInitAllfullstrong) );
    612 SCIP_CALL( SCIPsetBranchruleExecLp(scip, branchrule, branchExeclpAllfullstrong) );
    613 SCIP_CALL( SCIPsetBranchruleExecPs(scip, branchrule, branchExecpsAllfullstrong) );
    614
    615 return SCIP_OKAY;
    616}
    #define BRANCHRULE_DESC
    static SCIP_RETCODE branch(SCIP *scip, SCIP_BRANCHRULE *branchrule, SCIP_RESULT *result)
    SCIP_RETCODE SCIPselectVarPseudoStrongBranching(SCIP *scip, SCIP_VAR **pseudocands, SCIP_Bool *skipdown, SCIP_Bool *skipup, int npseudocands, int npriopseudocands, int *bestpseudocand, SCIP_Real *bestdown, SCIP_Real *bestup, SCIP_Real *bestscore, SCIP_Bool *bestdownvalid, SCIP_Bool *bestupvalid, SCIP_Real *provedbound, SCIP_RESULT *result)
    static SCIP_DECL_BRANCHCOPY(branchCopyAllfullstrong)
    #define BRANCHRULE_PRIORITY
    #define BRANCHRULE_NAME
    SCIP_RETCODE SCIPincludeBranchruleAllfullstrong(SCIP *scip)
    static SCIP_DECL_BRANCHFREE(branchFreeAllfullstrong)
    static SCIP_DECL_BRANCHEXECLP(branchExeclpAllfullstrong)
    static SCIP_DECL_BRANCHINIT(branchInitAllfullstrong)
    #define BRANCHRULE_MAXDEPTH
    #define BRANCHRULE_MAXBOUNDDIST
    static SCIP_DECL_BRANCHEXECPS(branchExecpsAllfullstrong)
    all variables full strong LP branching rule
    #define NULL
    Definition: def.h:257
    #define SCIP_Bool
    Definition: def.h:100
    #define MIN(x, y)
    Definition: def.h:233
    #define SCIP_STRINGEQ(name, reference, retcode)
    Definition: def.h:454
    #define SCIP_Real
    Definition: def.h:165
    #define TRUE
    Definition: def.h:102
    #define FALSE
    Definition: def.h:103
    #define MAX(x, y)
    Definition: def.h:229
    #define SCIP_LONGINT_FORMAT
    Definition: def.h:157
    #define SCIP_CALL(x)
    Definition: def.h:364
    int SCIPgetNVars(SCIP *scip)
    Definition: scip_prob.c:2246
    SCIP_RETCODE SCIPupdateNodeLowerbound(SCIP *scip, SCIP_NODE *node, SCIP_Real newbound)
    Definition: scip_prob.c:4354
    SCIP_RETCODE SCIPupdateLocalLowerbound(SCIP *scip, SCIP_Real newbound)
    Definition: scip_prob.c:4289
    SCIP_Real SCIPgetLocalLowerbound(SCIP *scip)
    Definition: scip_prob.c:4178
    void SCIPverbMessage(SCIP *scip, SCIP_VERBLEVEL msgverblevel, FILE *file, const char *formatstr,...)
    Definition: scip_message.c:225
    #define SCIPdebugMsg
    Definition: scip_message.h:78
    SCIP_RETCODE SCIPsetBranchruleExecLp(SCIP *scip, SCIP_BRANCHRULE *branchrule, SCIP_DECL_BRANCHEXECLP((*branchexeclp)))
    Definition: scip_branch.c:256
    SCIP_BRANCHRULE * SCIPfindBranchrule(SCIP *scip, const char *name)
    Definition: scip_branch.c:304
    SCIP_RETCODE SCIPsetBranchruleCopy(SCIP *scip, SCIP_BRANCHRULE *branchrule, SCIP_DECL_BRANCHCOPY((*branchcopy)))
    Definition: scip_branch.c:160
    SCIP_RETCODE SCIPincludeBranchruleBasic(SCIP *scip, SCIP_BRANCHRULE **branchruleptr, const char *name, const char *desc, int priority, int maxdepth, SCIP_Real maxbounddist, SCIP_BRANCHRULEDATA *branchruledata)
    Definition: scip_branch.c:123
    SCIP_RETCODE SCIPsetBranchruleExecPs(SCIP *scip, SCIP_BRANCHRULE *branchrule, SCIP_DECL_BRANCHEXECPS((*branchexecps)))
    Definition: scip_branch.c:288
    const char * SCIPbranchruleGetName(SCIP_BRANCHRULE *branchrule)
    Definition: branch.c:2018
    SCIP_BRANCHRULEDATA * SCIPbranchruleGetData(SCIP_BRANCHRULE *branchrule)
    Definition: branch.c:1886
    SCIP_RETCODE SCIPsetBranchruleFree(SCIP *scip, SCIP_BRANCHRULE *branchrule, SCIP_DECL_BRANCHFREE((*branchfree)))
    Definition: scip_branch.c:176
    SCIP_RETCODE SCIPsetBranchruleInit(SCIP *scip, SCIP_BRANCHRULE *branchrule, SCIP_DECL_BRANCHINIT((*branchinit)))
    Definition: scip_branch.c:192
    void SCIPbranchruleSetData(SCIP_BRANCHRULE *branchrule, SCIP_BRANCHRULEDATA *branchruledata)
    Definition: branch.c:1896
    SCIP_RETCODE SCIPbranchVarVal(SCIP *scip, SCIP_VAR *var, SCIP_Real val, SCIP_NODE **downchild, SCIP_NODE **eqchild, SCIP_NODE **upchild)
    Definition: scip_branch.c:1134
    SCIP_RETCODE SCIPgetPseudoBranchCands(SCIP *scip, SCIP_VAR ***pseudocands, int *npseudocands, int *npriopseudocands)
    Definition: scip_branch.c:741
    SCIP_Real SCIPgetBranchScoreMultiple(SCIP *scip, SCIP_VAR *var, int nchildren, SCIP_Real *gains)
    Definition: scip_branch.c:880
    SCIP_Real SCIPgetBranchScore(SCIP *scip, SCIP_VAR *var, SCIP_Real downgain, SCIP_Real upgain)
    Definition: scip_branch.c:857
    SCIP_Bool SCIPisExact(SCIP *scip)
    Definition: scip_exact.c:193
    SCIP_Bool SCIPhasCurrentNodeLP(SCIP *scip)
    Definition: scip_lp.c:87
    SCIP_LPSOLSTAT SCIPgetLPSolstat(SCIP *scip)
    Definition: scip_lp.c:174
    SCIP_Bool SCIPallColsInLP(SCIP *scip)
    Definition: scip_lp.c:655
    SCIP_Real SCIPgetLPObjval(SCIP *scip)
    Definition: scip_lp.c:253
    #define SCIPfreeBufferArray(scip, ptr)
    Definition: scip_mem.h:136
    #define SCIPduplicateBufferArray(scip, ptr, source, num)
    Definition: scip_mem.h:132
    #define SCIPallocBlockMemoryArray(scip, ptr, num)
    Definition: scip_mem.h:93
    #define SCIPfreeBlockMemory(scip, ptr)
    Definition: scip_mem.h:108
    #define SCIPfreeBlockMemoryArrayNull(scip, ptr, num)
    Definition: scip_mem.h:111
    #define SCIPallocBlockMemory(scip, ptr)
    Definition: scip_mem.h:89
    SCIP_Real SCIPnodeGetLowerbound(SCIP_NODE *node)
    Definition: tree.c:8533
    SCIP_Longint SCIPgetNNodes(SCIP *scip)
    SCIP_Real SCIPgetCutoffbound(SCIP *scip)
    SCIP_RETCODE SCIPprintDisplayLine(SCIP *scip, FILE *file, SCIP_VERBLEVEL verblevel, SCIP_Bool endline)
    SCIP_Real SCIPinfinity(SCIP *scip)
    SCIP_Bool SCIPisGE(SCIP *scip, SCIP_Real val1, SCIP_Real val2)
    SCIP_Real SCIPfeasCeil(SCIP *scip, SCIP_Real val)
    SCIP_Real SCIPfeasFloor(SCIP *scip, SCIP_Real val)
    SCIP_Bool SCIPisFeasIntegral(SCIP *scip, SCIP_Real val)
    SCIP_Bool SCIPisLT(SCIP *scip, SCIP_Real val1, SCIP_Real val2)
    int SCIPgetDepth(SCIP *scip)
    Definition: scip_tree.c:672
    SCIP_RETCODE SCIPgetVarStrongbranchFrac(SCIP *scip, SCIP_VAR *var, int itlim, SCIP_Bool idempotent, SCIP_Real *down, SCIP_Real *up, SCIP_Bool *downvalid, SCIP_Bool *upvalid, SCIP_Bool *downinf, SCIP_Bool *upinf, SCIP_Bool *downconflict, SCIP_Bool *upconflict, SCIP_Bool *lperror)
    Definition: scip_var.c:3664
    SCIP_RETCODE SCIPgetVarStrongbranchInt(SCIP *scip, SCIP_VAR *var, int itlim, SCIP_Bool idempotent, SCIP_Real *down, SCIP_Real *up, SCIP_Bool *downvalid, SCIP_Bool *upvalid, SCIP_Bool *downinf, SCIP_Bool *upinf, SCIP_Bool *downconflict, SCIP_Bool *upconflict, SCIP_Bool *lperror)
    Definition: scip_var.c:4478
    SCIP_RETCODE SCIPendStrongbranch(SCIP *scip)
    Definition: scip_var.c:3488
    SCIP_RETCODE SCIPchgVarLb(SCIP *scip, SCIP_VAR *var, SCIP_Real newbound)
    Definition: scip_var.c:5697
    SCIP_Real SCIPvarGetUbLocal(SCIP_VAR *var)
    Definition: var.c:24300
    SCIP_RETCODE SCIPchgVarUb(SCIP *scip, SCIP_VAR *var, SCIP_Real newbound)
    Definition: scip_var.c:5875
    const char * SCIPvarGetName(SCIP_VAR *var)
    Definition: var.c:23299
    SCIP_Real SCIPvarGetLPSol(SCIP_VAR *var)
    Definition: var.c:24696
    SCIP_Real SCIPvarGetLbLocal(SCIP_VAR *var)
    Definition: var.c:24266
    SCIP_RETCODE SCIPupdateVarPseudocost(SCIP *scip, SCIP_VAR *var, SCIP_Real solvaldelta, SCIP_Real objdelta, SCIP_Real weight)
    Definition: scip_var.c:11122
    SCIP_RETCODE SCIPfixVar(SCIP *scip, SCIP_VAR *var, SCIP_Real fixedval, SCIP_Bool *infeasible, SCIP_Bool *fixed)
    Definition: scip_var.c:10318
    SCIP_RETCODE SCIPstartStrongbranch(SCIP *scip, SCIP_Bool enablepropagation)
    Definition: scip_var.c:3430
    SCIP_Bool SCIPvarIsInLP(SCIP_VAR *var)
    Definition: var.c:23738
    memory allocation routines
    #define BMSclearMemoryArray(ptr, num)
    Definition: memory.h:130
    public methods for branching rules
    public methods for message output
    #define SCIPdebug(x)
    Definition: pub_message.h:93
    public methods for branch and bound tree
    public methods for problem variables
    public methods for branching rule plugins and branching
    public methods for exact solving
    general public methods
    public methods for the LP relaxation, rows and columns
    public methods for memory management
    public methods for message handling
    public methods for numerical tolerances
    public methods for global and local (sub)problems
    public methods for querying solving statistics
    public methods for the branch-and-bound tree
    public methods for SCIP variables
    struct SCIP_BranchruleData SCIP_BRANCHRULEDATA
    Definition: type_branch.h:57
    @ SCIP_LPSOLSTAT_OPTIMAL
    Definition: type_lp.h:44
    @ SCIP_VERBLEVEL_HIGH
    Definition: type_message.h:61
    @ SCIP_DIDNOTRUN
    Definition: type_result.h:42
    @ SCIP_CUTOFF
    Definition: type_result.h:48
    @ SCIP_REDUCEDDOM
    Definition: type_result.h:51
    @ SCIP_CONSADDED
    Definition: type_result.h:52
    @ SCIP_BRANCHED
    Definition: type_result.h:54
    enum SCIP_Result SCIP_RESULT
    Definition: type_result.h:61
    @ SCIP_OKAY
    Definition: type_retcode.h:42
    @ SCIP_INVALIDCALL
    Definition: type_retcode.h:51
    enum SCIP_Retcode SCIP_RETCODE
    Definition: type_retcode.h:63