Scippy

    SCIP

    Solving Constraint Integer Programs

    relax.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) 2002-2025 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 relax.c
    26 * @ingroup OTHER_CFILES
    27 * @brief methods and datastructures for relaxation handlers
    28 * @author Tobias Achterberg
    29 * @author Timo Berthold
    30 */
    31
    32/*---+----1----+----2----+----3----+----4----+----5----+----6----+----7----+----8----+----9----+----0----+----1----+----2*/
    33
    34#include <assert.h>
    35#include <string.h>
    36
    37#include "scip/def.h"
    38#include "scip/set.h"
    39#include "scip/tree.h"
    40#include "scip/stat.h"
    41#include "scip/clock.h"
    42#include "scip/paramset.h"
    43#include "scip/scip.h"
    44#include "scip/scip_cut.h"
    45#include "scip/sol.h"
    46#include "scip/var.h"
    47#include "scip/relax.h"
    48#include "scip/pub_message.h"
    49#include "scip/pub_misc.h"
    50
    51#include "scip/struct_relax.h"
    52
    53
    54
    55/** compares two relaxation handlers w. r. to their priority */
    57{ /*lint --e{715}*/
    58 return ((SCIP_RELAX*)elem2)->priority - ((SCIP_RELAX*)elem1)->priority;
    59}
    60
    61/** comparison method for sorting relaxators w.r.t. to their name */
    62SCIP_DECL_SORTPTRCOMP(SCIPrelaxCompName)
    63{
    64 return strcmp(SCIPrelaxGetName((SCIP_RELAX*)elem1), SCIPrelaxGetName((SCIP_RELAX*)elem2));
    65}
    66
    67/** method to call, when the priority of a relaxation handler was changed */
    68static
    69SCIP_DECL_PARAMCHGD(paramChgdRelaxPriority)
    70{ /*lint --e{715}*/
    71 SCIP_PARAMDATA* paramdata;
    72
    73 paramdata = SCIPparamGetData(param);
    74 assert(paramdata != NULL);
    75
    76 /* use SCIPsetRelaxPriority() to mark the relaxs unsorted */
    77 SCIP_CALL( SCIPsetRelaxPriority(scip, (SCIP_RELAX*)paramdata, SCIPparamGetInt(param)) ); /*lint !e740*/
    78
    79 return SCIP_OKAY;
    80}
    81
    82/** copies the given relaxation handler to a new scip */
    84 SCIP_RELAX* relax, /**< relaxation handler */
    85 SCIP_SET* set /**< SCIP_SET of SCIP to copy to */
    86 )
    87{
    88 assert(relax != NULL);
    89 assert(set != NULL);
    90 assert(set->scip != NULL);
    91
    92 if( relax->relaxcopy != NULL )
    93 {
    94 SCIPsetDebugMsg(set, "including relaxation handler %s in subscip %p\n", SCIPrelaxGetName(relax), (void*)set->scip);
    95 SCIP_CALL( relax->relaxcopy(set->scip, relax) );
    96 }
    97 return SCIP_OKAY;
    98}
    99
    100/** internal method for creating a relaxation handler */
    101static
    103 SCIP_RELAX** relax, /**< pointer to relaxation handler data structure */
    104 SCIP_SET* set, /**< global SCIP settings */
    105 SCIP_MESSAGEHDLR* messagehdlr, /**< message handler */
    106 BMS_BLKMEM* blkmem, /**< block memory for parameter settings */
    107 const char* name, /**< name of relaxation handler */
    108 const char* desc, /**< description of relaxation handler */
    109 int priority, /**< priority of the relaxation handler (negative: after LP, non-negative: before LP) */
    110 int freq, /**< frequency for calling relaxation handler */
    111 SCIP_DECL_RELAXCOPY ((*relaxcopy)), /**< copy method of relaxation handler or NULL if you don't want to copy your plugin into sub-SCIPs */
    112 SCIP_DECL_RELAXFREE ((*relaxfree)), /**< destructor of relaxation handler */
    113 SCIP_DECL_RELAXINIT ((*relaxinit)), /**< initialize relaxation handler */
    114 SCIP_DECL_RELAXEXIT ((*relaxexit)), /**< deinitialize relaxation handler */
    115 SCIP_DECL_RELAXINITSOL((*relaxinitsol)), /**< solving process initialization method of relaxation handler */
    116 SCIP_DECL_RELAXEXITSOL((*relaxexitsol)), /**< solving process deinitialization method of relaxation handler */
    117 SCIP_DECL_RELAXEXEC ((*relaxexec)), /**< execution method of relaxation handler */
    118 SCIP_RELAXDATA* relaxdata /**< relaxation handler data */
    119 )
    120{
    122 char paramdesc[SCIP_MAXSTRLEN];
    123
    124 assert(relax != NULL);
    125 assert(name != NULL);
    126 assert(desc != NULL);
    127 assert(freq >= -1);
    128 assert(relaxexec != NULL);
    129
    130 SCIP_ALLOC( BMSallocMemory(relax) );
    131 BMSclearMemory(*relax);
    132
    133 SCIP_ALLOC( BMSduplicateMemoryArray(&(*relax)->name, name, strlen(name)+1) );
    134 SCIP_ALLOC( BMSduplicateMemoryArray(&(*relax)->desc, desc, strlen(desc)+1) );
    135 (*relax)->priority = priority;
    136 (*relax)->freq = freq;
    137 (*relax)->relaxcopy = relaxcopy;
    138 (*relax)->relaxfree = relaxfree;
    139 (*relax)->relaxinit = relaxinit;
    140 (*relax)->relaxexit = relaxexit;
    141 (*relax)->relaxinitsol = relaxinitsol;
    142 (*relax)->relaxexitsol = relaxexitsol;
    143 (*relax)->relaxexec = relaxexec;
    144 (*relax)->relaxdata = relaxdata;
    145 SCIP_CALL( SCIPclockCreate(&(*relax)->setuptime, SCIP_CLOCKTYPE_DEFAULT) );
    146 SCIP_CALL( SCIPclockCreate(&(*relax)->relaxclock, SCIP_CLOCKTYPE_DEFAULT) );
    147 (*relax)->ncalls = 0;
    148 (*relax)->ncutoffs = 0;
    149 (*relax)->nimprbounds = 0;
    150 (*relax)->imprtime = 0.0;
    151 (*relax)->naddedconss = 0;
    152 (*relax)->nreduceddom = 0;
    153 (*relax)->nseparated = 0;
    154 (*relax)->lastsolvednode = -1;
    155 (*relax)->initialized = FALSE;
    156 (*relax)->exact = FALSE;
    157
    158 /* add parameters */
    159 (void) SCIPsnprintf(paramname, SCIP_MAXSTRLEN, "relaxing/%s/priority", name);
    160 (void) SCIPsnprintf(paramdesc, SCIP_MAXSTRLEN, "priority of relaxation handler <%s>", name);
    161 SCIP_CALL( SCIPsetAddIntParam(set, messagehdlr, blkmem, paramname, paramdesc,
    162 &(*relax)->priority, FALSE, priority, INT_MIN/4, INT_MAX/4,
    163 paramChgdRelaxPriority, (SCIP_PARAMDATA*)(*relax)) ); /*lint !e740*/
    164 (void) SCIPsnprintf(paramname, SCIP_MAXSTRLEN, "relaxing/%s/freq", name);
    165 (void) SCIPsnprintf(paramdesc, SCIP_MAXSTRLEN, "frequency for calling relaxation handler <%s> (-1: never, 0: only in root node)", name);
    166 SCIP_CALL( SCIPsetAddIntParam(set, messagehdlr, blkmem, paramname, paramdesc,
    167 &(*relax)->freq, FALSE, freq, -1, SCIP_MAXTREEDEPTH, NULL, NULL) );
    168
    169 return SCIP_OKAY;
    170}
    171
    172/** creates a relaxation handler */
    174 SCIP_RELAX** relax, /**< pointer to relaxation handler data structure */
    175 SCIP_SET* set, /**< global SCIP settings */
    176 SCIP_MESSAGEHDLR* messagehdlr, /**< message handler */
    177 BMS_BLKMEM* blkmem, /**< block memory for parameter settings */
    178 const char* name, /**< name of relaxation handler */
    179 const char* desc, /**< description of relaxation handler */
    180 int priority, /**< priority of the relaxation handler (negative: after LP, non-negative: before LP) */
    181 int freq, /**< frequency for calling relaxation handler */
    182 SCIP_DECL_RELAXCOPY ((*relaxcopy)), /**< copy method of relaxation handler or NULL if you don't want to copy your plugin into sub-SCIPs */
    183 SCIP_DECL_RELAXFREE ((*relaxfree)), /**< destructor of relaxation handler */
    184 SCIP_DECL_RELAXINIT ((*relaxinit)), /**< initialize relaxation handler */
    185 SCIP_DECL_RELAXEXIT ((*relaxexit)), /**< deinitialize relaxation handler */
    186 SCIP_DECL_RELAXINITSOL((*relaxinitsol)), /**< solving process initialization method of relaxation handler */
    187 SCIP_DECL_RELAXEXITSOL((*relaxexitsol)), /**< solving process deinitialization method of relaxation handler */
    188 SCIP_DECL_RELAXEXEC ((*relaxexec)), /**< execution method of relaxation handler */
    189 SCIP_RELAXDATA* relaxdata /**< relaxation handler data */
    190 )
    191{
    192 assert(relax != NULL);
    193 assert(name != NULL);
    194 assert(desc != NULL);
    195 assert(freq >= -1);
    196 assert(relaxexec != NULL);
    197
    198 SCIP_CALL_FINALLY( doRelaxCreate(relax, set, messagehdlr, blkmem, name, desc, priority, freq, relaxcopy, relaxfree,
    199 relaxinit, relaxexit, relaxinitsol, relaxexitsol, relaxexec, relaxdata), (void) SCIPrelaxFree(relax, set) );
    200
    201 return SCIP_OKAY;
    202}
    203
    204/** calls destructor and frees memory of relaxation handler */
    206 SCIP_RELAX** relax, /**< pointer to relaxation handler data structure */
    207 SCIP_SET* set /**< global SCIP settings */
    208 )
    209{
    210 assert(relax != NULL);
    211 if( *relax == NULL )
    212 return SCIP_OKAY;
    213 assert(!(*relax)->initialized);
    214 assert(set != NULL);
    215
    216 /* call destructor of relaxation handler */
    217 if( (*relax)->relaxfree != NULL )
    218 {
    219 SCIP_CALL( (*relax)->relaxfree(set->scip, *relax) );
    220 }
    221
    222 SCIPclockFree(&(*relax)->relaxclock);
    223 SCIPclockFree(&(*relax)->setuptime);
    224 BMSfreeMemoryArrayNull(&(*relax)->name);
    225 BMSfreeMemoryArrayNull(&(*relax)->desc);
    226 BMSfreeMemory(relax);
    227
    228 return SCIP_OKAY;
    229}
    230
    231/** initializes relaxation handler */
    233 SCIP_RELAX* relax, /**< relaxation handler */
    234 SCIP_SET* set /**< global SCIP settings */
    235 )
    236{
    237 assert(relax != NULL);
    238 assert(set != NULL);
    239
    240 if( relax->initialized )
    241 {
    242 SCIPerrorMessage("relaxation handler <%s> already initialized\n", relax->name);
    243 return SCIP_INVALIDCALL;
    244 }
    245
    246 if( set->misc_resetstat )
    247 {
    250 relax->ncalls = 0;
    251 relax->ncutoffs = 0;
    252 relax->nimprbounds = 0;
    253 relax->imprtime = 0.0;
    254 relax->naddedconss = 0;
    255 relax->nreduceddom = 0;
    256 relax->nseparated = 0;
    257 relax->lastsolvednode = -1;
    258 }
    259
    260 if( relax->relaxinit != NULL )
    261 {
    262 /* start timing */
    264
    265 SCIP_CALL( relax->relaxinit(set->scip, relax) );
    266
    267 /* stop timing */
    268 SCIPclockStop(relax->setuptime, set);
    269 }
    270 relax->initialized = TRUE;
    271
    272 return SCIP_OKAY;
    273}
    274
    275/** calls exit method of relaxation handler */
    277 SCIP_RELAX* relax, /**< relaxation handler */
    278 SCIP_SET* set /**< global SCIP settings */
    279 )
    280{
    281 assert(relax != NULL);
    282 assert(set != NULL);
    283
    284 if( !relax->initialized )
    285 {
    286 SCIPerrorMessage("relaxation handler <%s> not initialized\n", relax->name);
    287 return SCIP_INVALIDCALL;
    288 }
    289
    290 if( relax->relaxexit != NULL )
    291 {
    292 /* start timing */
    294
    295 SCIP_CALL( relax->relaxexit(set->scip, relax) );
    296
    297 /* stop timing */
    298 SCIPclockStop(relax->setuptime, set);
    299 }
    300 relax->initialized = FALSE;
    301
    302 return SCIP_OKAY;
    303}
    304
    305/** informs relaxation handler that the branch and bound process is being started */
    307 SCIP_RELAX* relax, /**< relaxation handler */
    308 SCIP_SET* set /**< global SCIP settings */
    309 )
    310{
    311 assert(relax != NULL);
    312 assert(set != NULL);
    313
    314 /* call solving process initialization method of relaxation handler */
    315 if( relax->relaxinitsol != NULL )
    316 {
    317 /* start timing */
    319
    320 SCIP_CALL( relax->relaxinitsol(set->scip, relax) );
    321
    322 /* stop timing */
    323 SCIPclockStop(relax->setuptime, set);
    324 }
    325
    326 return SCIP_OKAY;
    327}
    328
    329/** informs relaxation handler that the branch and bound process data is being freed */
    331 SCIP_RELAX* relax, /**< relaxation handler */
    332 SCIP_SET* set /**< global SCIP settings */
    333 )
    334{
    335 assert(relax != NULL);
    336 assert(set != NULL);
    337
    338 /* call solving process deinitialization method of relaxation handler */
    339 if( relax->relaxexitsol != NULL )
    340 {
    341 /* start timing */
    343
    344 SCIP_CALL( relax->relaxexitsol(set->scip, relax) );
    345
    346 /* stop timing */
    347 SCIPclockStop(relax->setuptime, set);
    348 }
    349
    350 return SCIP_OKAY;
    351}
    352
    353/** calls execution method of relaxation handler */
    355 SCIP_RELAX* relax, /**< relaxation handler */
    356 SCIP_SET* set, /**< global SCIP settings */
    357 SCIP_TREE* tree, /**< branch and bound tree */
    358 SCIP_STAT* stat, /**< dynamic problem statistics */
    359 int depth, /**< depth of current node */
    360 SCIP_Real* lowerbound, /**< pointer to lower bound computed by the relaxation handler */
    361 SCIP_RESULT* result /**< pointer to store the result of the callback method */
    362 )
    363{
    364 assert(relax != NULL);
    365 assert(relax->relaxexec != NULL);
    366 assert(relax->freq >= -1);
    367 assert(set != NULL);
    368 assert(set->scip != NULL);
    369 assert(depth >= 0);
    370 assert(result != NULL);
    371
    372 *result = SCIP_DIDNOTRUN;
    373
    374 /* check, if the relaxation is already solved */
    375 if( relax->lastsolvednode == stat->ntotalnodes && ! SCIPinProbing(set->scip) )
    376 return SCIP_OKAY;
    377
    378 relax->lastsolvednode = stat->ntotalnodes;
    379
    380 /* check, if the relaxator is compatible with exact solving mode */
    381 if( set->exact_enable && !relax->exact )
    382 return SCIP_OKAY;
    383
    384 if( (depth == 0 && relax->freq == 0) || (relax->freq > 0 && depth % relax->freq == 0) )
    385 {
    386 SCIP_Real starttime;
    387 int oldnactiveconss;
    388 int oldncuts;
    389
    390 SCIPsetDebugMsg(set, "executing relaxation handler <%s>\n", relax->name);
    391
    392 oldnactiveconss = stat->nactiveconss;
    393 oldncuts = SCIPgetNCuts(set->scip);
    394
    395 /* start timing */
    396 starttime = SCIPclockGetTime(relax->relaxclock);
    398
    399 /* call external relaxation method */
    400 SCIP_CALL( relax->relaxexec(set->scip, relax, lowerbound, result) );
    401
    402 /* stop timing */
    404
    405 /* evaluate result */
    406 if( *result != SCIP_CUTOFF
    407 && *result != SCIP_CONSADDED
    408 && *result != SCIP_REDUCEDDOM
    409 && *result != SCIP_SEPARATED
    410 && *result != SCIP_SUCCESS
    411 && *result != SCIP_SUSPENDED
    412 && *result != SCIP_DIDNOTRUN )
    413 {
    414 SCIPerrorMessage("execution method of relaxation handler <%s> returned invalid result <%d>\n",
    415 relax->name, *result);
    416 return SCIP_INVALIDRESULT;
    417 }
    418 if( *result != SCIP_DIDNOTRUN )
    419 {
    420 relax->ncalls++;
    421 stat->relaxcount++;
    422 if( *result == SCIP_SUSPENDED )
    424 else if( *result == SCIP_CUTOFF || SCIPsetIsInfinity(set, *lowerbound) )
    425 {
    426 ++relax->ncutoffs;
    427 relax->imprtime += SCIPclockGetTime(relax->relaxclock) - starttime;
    428 }
    429 else
    430 {
    431 SCIP_NODE* node;
    432 SCIP_Real oldlowerbound;
    433
    434 node = SCIPtreeGetCurrentNode(tree);
    435 if( node != NULL )
    436 oldlowerbound = SCIPnodeGetLowerbound(node);
    437 else
    438 oldlowerbound = -SCIPsetInfinity(set);
    439
    440 if( !SCIPsetIsInfinity(set, -*lowerbound) && SCIPsetIsRelGT(set, *lowerbound, oldlowerbound) )
    441 {
    442 ++relax->nimprbounds;
    443 relax->imprtime += SCIPclockGetTime(relax->relaxclock) - starttime;
    444 }
    445
    446 if( stat->nactiveconss > oldnactiveconss )
    447 ++relax->naddedconss;
    448 if( SCIPgetNCuts(set->scip) > oldncuts )
    449 ++relax->nseparated;
    450 if( *result == SCIP_REDUCEDDOM )
    451 ++relax->nreduceddom;
    452 }
    453 }
    454 }
    455
    456 return SCIP_OKAY;
    457}
    458
    459/** gets user data of relaxation handler */
    461 SCIP_RELAX* relax /**< relaxation handler */
    462 )
    463{
    464 assert(relax != NULL);
    465
    466 return relax->relaxdata;
    467}
    468
    469/** sets user data of relaxation handler; user has to free old data in advance! */
    471 SCIP_RELAX* relax, /**< relaxation handler */
    472 SCIP_RELAXDATA* relaxdata /**< new relaxation handler user data */
    473 )
    474{
    475 assert(relax != NULL);
    476
    477 relax->relaxdata = relaxdata;
    478}
    479
    480/** set copy method of relaxation handler */
    482 SCIP_RELAX* relax, /**< relaxation handler */
    483 SCIP_DECL_RELAXCOPY ((*relaxcopy)) /**< copy method of relaxation handler */
    484 )
    485{
    486 assert(relax != NULL);
    487
    488 relax->relaxcopy = relaxcopy;
    489}
    490
    491/** set destructor of relaxation handler */
    493 SCIP_RELAX* relax, /**< relaxation handler */
    494 SCIP_DECL_RELAXFREE ((*relaxfree)) /**< destructor of relaxation handler */
    495 )
    496{
    497 assert(relax != NULL);
    498
    499 relax->relaxfree = relaxfree;
    500}
    501
    502/** set initialization method of relaxation handler */
    504 SCIP_RELAX* relax, /**< relaxation handler */
    505 SCIP_DECL_RELAXINIT ((*relaxinit)) /**< initialize relaxation handler */
    506 )
    507{
    508 assert(relax != NULL);
    509
    510 relax->relaxinit = relaxinit;
    511}
    512
    513/** set deinitialization method of relaxation handler */
    515 SCIP_RELAX* relax, /**< relaxation handler */
    516 SCIP_DECL_RELAXEXIT ((*relaxexit)) /**< deinitialize relaxation handler */
    517 )
    518{
    519 assert(relax != NULL);
    520
    521 relax->relaxexit = relaxexit;
    522}
    523
    524/** set solving process initialization method of relaxation handler */
    526 SCIP_RELAX* relax, /**< relaxation handler */
    527 SCIP_DECL_RELAXINITSOL((*relaxinitsol)) /**< solving process initialization method of relaxation handler */
    528 )
    529{
    530 assert(relax != NULL);
    531
    532 relax->relaxinitsol = relaxinitsol;
    533}
    534
    535/** set solving process deinitialization method of relaxation handler */
    537 SCIP_RELAX* relax, /**< relaxation handler */
    538 SCIP_DECL_RELAXEXITSOL((*relaxexitsol)) /**< solving process deinitialization relaxation handler */
    539 )
    540{
    541 assert(relax != NULL);
    542
    543 relax->relaxexitsol = relaxexitsol;
    544}
    545
    546/** marks the relaxator as safe to use in exact solving mode */
    548 SCIP_RELAX* relax /**< relaxation handler */
    549 )
    550{
    551 assert(relax != NULL);
    552
    553 relax->exact = TRUE;
    554}
    555
    556/** gets name of relaxation handler */
    558 SCIP_RELAX* relax /**< relaxation handler */
    559 )
    560{
    561 assert(relax != NULL);
    562
    563 return relax->name;
    564}
    565
    566/** gets description of relaxation handler */
    568 SCIP_RELAX* relax /**< relaxation handler */
    569 )
    570{
    571 assert(relax != NULL);
    572
    573 return relax->desc;
    574}
    575
    576/** gets priority of relaxation handler */
    578 SCIP_RELAX* relax /**< relaxation handler */
    579 )
    580{
    581 assert(relax != NULL);
    582
    583 return relax->priority;
    584}
    585
    586/** sets priority of relaxation handler */
    588 SCIP_RELAX* relax, /**< relaxation handler */
    589 SCIP_SET* set, /**< global SCIP settings */
    590 int priority /**< new priority of the relaxation handler */
    591 )
    592{
    593 assert(relax != NULL);
    594 assert(set != NULL);
    595
    596 relax->priority = priority;
    597 set->relaxssorted = FALSE;
    598}
    599
    600/** gets frequency of relaxation handler */
    602 SCIP_RELAX* relax /**< relaxation handler */
    603 )
    604{
    605 assert(relax != NULL);
    606
    607 return relax->freq;
    608}
    609
    610/** gets time in seconds used in this relaxator for setting up for next stages */
    612 SCIP_RELAX* relax /**< relaxator */
    613 )
    614{
    615 assert(relax != NULL);
    616
    617 return SCIPclockGetTime(relax->setuptime);
    618}
    619
    620/** enables or disables all clocks of \p relax, depending on the value of the flag */
    622 SCIP_RELAX* relax, /**< the relaxation handler for which all clocks should be enabled or disabled */
    623 SCIP_Bool enable /**< should the clocks of the relaxation handler be enabled? */
    624 )
    625{
    626 assert(relax != NULL);
    627
    628 SCIPclockEnableOrDisable(relax->setuptime, enable);
    629 SCIPclockEnableOrDisable(relax->relaxclock, enable);
    630}
    631
    632/** gets time in seconds used in this relaxation handler */
    634 SCIP_RELAX* relax /**< relaxation handler */
    635 )
    636{
    637 assert(relax != NULL);
    638
    639 return SCIPclockGetTime(relax->relaxclock);
    640}
    641
    642/** gets the total number of times the relaxation handler was called */
    644 SCIP_RELAX* relax /**< relaxation handler */
    645 )
    646{
    647 assert(relax != NULL);
    648
    649 return relax->ncalls;
    650}
    651
    652/** gets the total number of times the relaxation handler cut off a node */
    654 SCIP_RELAX* relax /**< relaxation handler */
    655 )
    656{
    657 assert(relax != NULL);
    658
    659 return relax->ncutoffs;
    660}
    661
    662/** gets the total number of times the relaxation handler improved a node's lower bound */
    664 SCIP_RELAX* relax /**< relaxation handler */
    665 )
    666{
    667 assert(relax != NULL);
    668
    669 return relax->nimprbounds;
    670}
    671
    672/** gets the total number of times the relaxation handler added constraints */
    674 SCIP_RELAX* relax /**< relaxation handler */
    675 )
    676{
    677 assert(relax != NULL);
    678
    679 return relax->naddedconss;
    680}
    681
    682/** gets the time in seconds spent for the execution of the relaxation handler when a node's lower bound could be improved (or a cutoff was found) */
    684 SCIP_RELAX* relax /**< relaxation handler */
    685 )
    686{
    687 assert(relax != NULL);
    688
    689 return relax->imprtime;
    690}
    691
    692/** gets the total number of times the relaxation handler reduced variable domains */
    694 SCIP_RELAX* relax /**< relaxation handler */
    695 )
    696{
    697 assert(relax != NULL);
    698
    699 return relax->nreduceddom;
    700}
    701
    702/** gets the total number of times the relaxation handler separated cutting planes */
    704 SCIP_RELAX* relax /**< relaxation handler */
    705 )
    706{
    707 assert(relax != NULL);
    708
    709 return relax->nseparated;
    710}
    711
    712/** is relaxation handler initialized? */
    714 SCIP_RELAX* relax /**< relaxation handler */
    715 )
    716{
    717 assert(relax != NULL);
    718
    719 return relax->initialized;
    720}
    721
    722/** returns whether the relaxation was completely solved at the current node */
    724 SCIP_RELAX* relax, /**< relaxation handler */
    725 SCIP_STAT* stat /**< dynamic problem statistics */
    726 )
    727{
    728 assert(relax != NULL);
    729 assert(stat != NULL);
    730
    731 return (relax->lastsolvednode == stat->ntotalnodes);
    732}
    733
    734/** marks the current relaxation unsolved, s.t. the relaxation handler is called again in the next solving round */
    736 SCIP_RELAX* relax /**< relaxation handler */
    737 )
    738{
    739 assert(relax != NULL);
    740
    741 relax->lastsolvednode = -1;
    742}
    743
    744/*
    745 * methods for the global relaxation data
    746 */
    747
    748/** creates global relaxation data */
    750 SCIP_RELAXATION** relaxation, /**< global relaxation data */
    751 BMS_BLKMEM* blkmem, /**< block memory */
    752 SCIP_SET* set, /**< global SCIP settings */
    753 SCIP_STAT* stat, /**< problem statistics data */
    754 SCIP_PRIMAL* primal, /**< primal data */
    755 SCIP_TREE* tree /**< branch and bound tree */
    756 )
    757{
    758 assert(relaxation != NULL);
    759 assert(blkmem != NULL);
    760 assert(set != NULL);
    761 assert(stat != NULL);
    762 assert(primal != NULL);
    763 assert(tree != NULL);
    764
    765 SCIP_ALLOC( BMSallocMemory(relaxation) );
    766
    767 (*relaxation)->relaxsolobjval = 0.0;
    768 (*relaxation)->relaxsolvalid = FALSE;
    769 (*relaxation)->relaxsolincludeslp = FALSE;
    770 (*relaxation)->relaxsolzero = TRUE;
    771 (*relaxation)->lastsolrelax = NULL;
    772
    773 return SCIP_OKAY;
    774}
    775
    776/** frees global relaxation data */
    778 SCIP_RELAXATION** relaxation /**< global relaxation data */
    779 )
    780{
    781 assert(relaxation != NULL);
    782
    783 BMSfreeMemory(relaxation);
    784
    785 return SCIP_OKAY;
    786}
    787
    788/** sets the relaxsolzero flag in the relaxation data to the given value */
    790 SCIP_RELAXATION* relaxation, /**< global relaxation data */
    791 SCIP_Bool iszero /**< are all values of the relaxation solution set to zero? */
    792 )
    793{
    794 assert(relaxation != NULL);
    795
    796 relaxation->relaxsolzero = iszero;
    797}
    798
    799/** returns whether the global relaxation solution is cleared and all values are set to zero */
    801 SCIP_RELAXATION* relaxation /**< global relaxation data */
    802 )
    803{
    804 assert(relaxation != NULL);
    805
    806 return relaxation->relaxsolzero;
    807}
    808
    809/** sets the relaxsolvalid and includeslp flags in the relaxation data to the given values */
    811 SCIP_RELAXATION* relaxation, /**< global relaxation data */
    812 SCIP_Bool isvalid, /**< is the stored solution valid? */
    813 SCIP_Bool includeslp /**< does the relaxator contain all cuts in the LP? */
    814 )
    815{
    816 assert(relaxation != NULL);
    817
    818 relaxation->relaxsolvalid = isvalid;
    819 relaxation->relaxsolincludeslp = includeslp;
    820}
    821
    822/** returns whether the global relaxation solution is valid */
    824 SCIP_RELAXATION* relaxation /**< global relaxation data */
    825 )
    826{
    827 assert(relaxation != NULL);
    828
    829 return relaxation->relaxsolvalid;
    830}
    831
    832/** returns whether the global relaxation solution was computed by a relaxator which included all LP cuts */
    834 SCIP_RELAXATION* relaxation /**< global relaxation data */
    835 )
    836{
    837 assert(relaxation != NULL);
    838
    839 return relaxation->relaxsolincludeslp;
    840}
    841
    842/** sets the objective value of the global relaxation solution */
    844 SCIP_RELAXATION* relaxation, /**< global relaxation data */
    845 SCIP_Real obj /**< objective value */
    846 )
    847{
    848 assert(relaxation != NULL);
    849
    850 relaxation->relaxsolobjval = obj;
    851}
    852
    853/** returns the objective value of the global relaxation solution w.r.t. the transformed problem */
    855 SCIP_RELAXATION* relaxation /**< global relaxation data */
    856 )
    857{
    858 assert(relaxation != NULL);
    859
    860 return relaxation->relaxsolobjval;
    861}
    862
    863/** adds the given value to the global relaxation solution's objective value */
    865 SCIP_RELAXATION* relaxation, /**< global relaxation data */
    866 SCIP_Real val /**< value to add to the objective value */
    867 )
    868{
    869 assert(relaxation != NULL);
    870
    871 relaxation->relaxsolobjval += val;
    872}
    873
    874/** updates objective value of current relaxation solution after change of objective coefficient */
    876 SCIP_RELAXATION* relaxation, /**< global relaxation data */
    877 SCIP_SET* set, /**< global SCIP settings */
    878 SCIP_VAR* var, /**< variable with changed objective coefficient */
    879 SCIP_Real oldobj, /**< old objective coefficient */
    880 SCIP_Real newobj /**< new objective coefficient */
    881 )
    882{
    883 SCIP_Real relaxsolval;
    884
    885 assert(relaxation != NULL);
    886 assert(set != NULL);
    887 assert(var != NULL);
    889
    890 relaxsolval = SCIPvarGetRelaxSol(var, set);
    891 relaxation->relaxsolobjval += (newobj - oldobj) * relaxsolval;
    892}
    893
    894/** store the most recent relaxation handler \p relax responsible for the solution */
    896 SCIP_RELAXATION* relaxation, /**< global relaxation data */
    897 SCIP_RELAX* relax /**< responsible relaxation handler, or NULL */
    898 )
    899{
    900 assert(relaxation != NULL);
    901
    902 relaxation->lastsolrelax = relax;
    903}
    904
    905/** returns the most recent relaxation handler responsible for the solution, or NULL if unspecified */
    907 SCIP_RELAXATION* relaxation /**< global relaxation data */
    908 )
    909{
    910 assert(relaxation != NULL);
    911
    912 return relaxation->lastsolrelax;
    913}
    void SCIPclockStop(SCIP_CLOCK *clck, SCIP_SET *set)
    Definition: clock.c:360
    void SCIPclockEnableOrDisable(SCIP_CLOCK *clck, SCIP_Bool enable)
    Definition: clock.c:260
    void SCIPclockStart(SCIP_CLOCK *clck, SCIP_SET *set)
    Definition: clock.c:290
    SCIP_Real SCIPclockGetTime(SCIP_CLOCK *clck)
    Definition: clock.c:438
    void SCIPclockReset(SCIP_CLOCK *clck)
    Definition: clock.c:209
    void SCIPclockFree(SCIP_CLOCK **clck)
    Definition: clock.c:185
    SCIP_RETCODE SCIPclockCreate(SCIP_CLOCK **clck, SCIP_CLOCKTYPE clocktype)
    Definition: clock.c:170
    internal methods for clocks and timing issues
    common defines and data types used in all packages of SCIP
    #define NULL
    Definition: def.h:248
    #define SCIP_MAXSTRLEN
    Definition: def.h:269
    #define SCIP_Longint
    Definition: def.h:141
    #define SCIP_MAXTREEDEPTH
    Definition: def.h:297
    #define SCIP_Bool
    Definition: def.h:91
    #define SCIP_ALLOC(x)
    Definition: def.h:366
    #define SCIP_Real
    Definition: def.h:156
    #define TRUE
    Definition: def.h:93
    #define FALSE
    Definition: def.h:94
    #define SCIP_CALL(x)
    Definition: def.h:355
    #define SCIP_CALL_FINALLY(x, y)
    Definition: def.h:397
    int SCIPgetNCuts(SCIP *scip)
    Definition: scip_cut.c:762
    SCIP_Real SCIPnodeGetLowerbound(SCIP_NODE *node)
    Definition: tree.c:8503
    SCIP_Bool SCIPinProbing(SCIP *scip)
    Definition: scip_probing.c:98
    void SCIPrelaxMarkUnsolved(SCIP_RELAX *relax)
    Definition: relax.c:735
    SCIP_Longint SCIPrelaxGetNAddedConss(SCIP_RELAX *relax)
    Definition: relax.c:673
    SCIP_Bool SCIPrelaxIsInitialized(SCIP_RELAX *relax)
    Definition: relax.c:713
    SCIP_Real SCIPrelaxGetTime(SCIP_RELAX *relax)
    Definition: relax.c:633
    int SCIPrelaxGetFreq(SCIP_RELAX *relax)
    Definition: relax.c:601
    const char * SCIPrelaxGetName(SCIP_RELAX *relax)
    Definition: relax.c:557
    SCIP_DECL_SORTPTRCOMP(SCIPrelaxComp)
    Definition: relax.c:56
    SCIP_Real SCIPrelaxGetSetupTime(SCIP_RELAX *relax)
    Definition: relax.c:611
    void SCIPrelaxMarkExact(SCIP_RELAX *relax)
    Definition: relax.c:547
    SCIP_RETCODE SCIPsetRelaxPriority(SCIP *scip, SCIP_RELAX *relax, int priority)
    Definition: scip_relax.c:274
    SCIP_Longint SCIPrelaxGetNCutoffs(SCIP_RELAX *relax)
    Definition: relax.c:653
    SCIP_Longint SCIPrelaxGetNSeparatedCuts(SCIP_RELAX *relax)
    Definition: relax.c:703
    void SCIPrelaxSetData(SCIP_RELAX *relax, SCIP_RELAXDATA *relaxdata)
    Definition: relax.c:470
    const char * SCIPrelaxGetDesc(SCIP_RELAX *relax)
    Definition: relax.c:567
    SCIP_Longint SCIPrelaxGetNReducedDomains(SCIP_RELAX *relax)
    Definition: relax.c:693
    SCIP_Real SCIPrelaxGetImprovedLowerboundTime(SCIP_RELAX *relax)
    Definition: relax.c:683
    int SCIPrelaxGetPriority(SCIP_RELAX *relax)
    Definition: relax.c:577
    SCIP_Longint SCIPrelaxGetNImprovedLowerbound(SCIP_RELAX *relax)
    Definition: relax.c:663
    SCIP_Longint SCIPrelaxGetNCalls(SCIP_RELAX *relax)
    Definition: relax.c:643
    SCIP_RELAXDATA * SCIPrelaxGetData(SCIP_RELAX *relax)
    Definition: relax.c:460
    SCIP_VARSTATUS SCIPvarGetStatus(SCIP_VAR *var)
    Definition: var.c:23386
    int SCIPsnprintf(char *t, int len, const char *s,...)
    Definition: misc.c:10827
    static const char * paramname[]
    Definition: lpi_msk.c:5172
    #define BMSfreeMemory(ptr)
    Definition: memory.h:145
    #define BMSduplicateMemoryArray(ptr, source, num)
    Definition: memory.h:143
    #define BMSclearMemory(ptr)
    Definition: memory.h:129
    struct BMS_BlkMem BMS_BLKMEM
    Definition: memory.h:437
    #define BMSfreeMemoryArrayNull(ptr)
    Definition: memory.h:148
    #define BMSallocMemory(ptr)
    Definition: memory.h:118
    SCIP_PARAMDATA * SCIPparamGetData(SCIP_PARAM *param)
    Definition: paramset.c:678
    int SCIPparamGetInt(SCIP_PARAM *param)
    Definition: paramset.c:733
    internal methods for handling parameter settings
    public methods for message output
    #define SCIPerrorMessage
    Definition: pub_message.h:64
    public data structures and miscellaneous methods
    void SCIPrelaxSetExitsol(SCIP_RELAX *relax, SCIP_DECL_RELAXEXITSOL((*relaxexitsol)))
    Definition: relax.c:536
    void SCIPrelaxSetInitsol(SCIP_RELAX *relax, SCIP_DECL_RELAXINITSOL((*relaxinitsol)))
    Definition: relax.c:525
    SCIP_RETCODE SCIPrelaxInit(SCIP_RELAX *relax, SCIP_SET *set)
    Definition: relax.c:232
    SCIP_Bool SCIPrelaxationIsSolZero(SCIP_RELAXATION *relaxation)
    Definition: relax.c:800
    SCIP_RETCODE SCIPrelaxCreate(SCIP_RELAX **relax, SCIP_SET *set, SCIP_MESSAGEHDLR *messagehdlr, BMS_BLKMEM *blkmem, const char *name, const char *desc, int priority, int freq, SCIP_DECL_RELAXCOPY((*relaxcopy)), SCIP_DECL_RELAXFREE((*relaxfree)), SCIP_DECL_RELAXINIT((*relaxinit)), SCIP_DECL_RELAXEXIT((*relaxexit)), SCIP_DECL_RELAXINITSOL((*relaxinitsol)), SCIP_DECL_RELAXEXITSOL((*relaxexitsol)), SCIP_DECL_RELAXEXEC((*relaxexec)), SCIP_RELAXDATA *relaxdata)
    Definition: relax.c:173
    void SCIPrelaxationSetSolZero(SCIP_RELAXATION *relaxation, SCIP_Bool iszero)
    Definition: relax.c:789
    SCIP_RETCODE SCIPrelaxExit(SCIP_RELAX *relax, SCIP_SET *set)
    Definition: relax.c:276
    void SCIPrelaxationUpdateVarObj(SCIP_RELAXATION *relaxation, SCIP_SET *set, SCIP_VAR *var, SCIP_Real oldobj, SCIP_Real newobj)
    Definition: relax.c:875
    void SCIPrelaxationSetSolValid(SCIP_RELAXATION *relaxation, SCIP_Bool isvalid, SCIP_Bool includeslp)
    Definition: relax.c:810
    void SCIPrelaxSetInit(SCIP_RELAX *relax, SCIP_DECL_RELAXINIT((*relaxinit)))
    Definition: relax.c:503
    void SCIPrelaxSetExit(SCIP_RELAX *relax, SCIP_DECL_RELAXEXIT((*relaxexit)))
    Definition: relax.c:514
    static SCIP_DECL_PARAMCHGD(paramChgdRelaxPriority)
    Definition: relax.c:69
    SCIP_RETCODE SCIPrelaxFree(SCIP_RELAX **relax, SCIP_SET *set)
    Definition: relax.c:205
    void SCIPrelaxationSetSolObj(SCIP_RELAXATION *relaxation, SCIP_Real obj)
    Definition: relax.c:843
    void SCIPrelaxSetFree(SCIP_RELAX *relax, SCIP_DECL_RELAXFREE((*relaxfree)))
    Definition: relax.c:492
    SCIP_Real SCIPrelaxationGetSolObj(SCIP_RELAXATION *relaxation)
    Definition: relax.c:854
    void SCIPrelaxSetCopy(SCIP_RELAX *relax, SCIP_DECL_RELAXCOPY((*relaxcopy)))
    Definition: relax.c:481
    void SCIPrelaxationSolObjAdd(SCIP_RELAXATION *relaxation, SCIP_Real val)
    Definition: relax.c:864
    SCIP_RETCODE SCIPrelaxCopyInclude(SCIP_RELAX *relax, SCIP_SET *set)
    Definition: relax.c:83
    void SCIPrelaxationSetSolRelax(SCIP_RELAXATION *relaxation, SCIP_RELAX *relax)
    Definition: relax.c:895
    SCIP_Bool SCIPrelaxIsSolved(SCIP_RELAX *relax, SCIP_STAT *stat)
    Definition: relax.c:723
    static SCIP_RETCODE doRelaxCreate(SCIP_RELAX **relax, SCIP_SET *set, SCIP_MESSAGEHDLR *messagehdlr, BMS_BLKMEM *blkmem, const char *name, const char *desc, int priority, int freq, SCIP_DECL_RELAXCOPY((*relaxcopy)), SCIP_DECL_RELAXFREE((*relaxfree)), SCIP_DECL_RELAXINIT((*relaxinit)), SCIP_DECL_RELAXEXIT((*relaxexit)), SCIP_DECL_RELAXINITSOL((*relaxinitsol)), SCIP_DECL_RELAXEXITSOL((*relaxexitsol)), SCIP_DECL_RELAXEXEC((*relaxexec)), SCIP_RELAXDATA *relaxdata)
    Definition: relax.c:102
    SCIP_RETCODE SCIPrelaxationFree(SCIP_RELAXATION **relaxation)
    Definition: relax.c:777
    void SCIPrelaxEnableOrDisableClocks(SCIP_RELAX *relax, SCIP_Bool enable)
    Definition: relax.c:621
    SCIP_RETCODE SCIPrelaxationCreate(SCIP_RELAXATION **relaxation, BMS_BLKMEM *blkmem, SCIP_SET *set, SCIP_STAT *stat, SCIP_PRIMAL *primal, SCIP_TREE *tree)
    Definition: relax.c:749
    SCIP_RELAX * SCIPrelaxationGetSolRelax(SCIP_RELAXATION *relaxation)
    Definition: relax.c:906
    SCIP_RETCODE SCIPrelaxInitsol(SCIP_RELAX *relax, SCIP_SET *set)
    Definition: relax.c:306
    SCIP_RETCODE SCIPrelaxExec(SCIP_RELAX *relax, SCIP_SET *set, SCIP_TREE *tree, SCIP_STAT *stat, int depth, SCIP_Real *lowerbound, SCIP_RESULT *result)
    Definition: relax.c:354
    void SCIPrelaxSetPriority(SCIP_RELAX *relax, SCIP_SET *set, int priority)
    Definition: relax.c:587
    SCIP_Bool SCIPrelaxationIsLpIncludedForSol(SCIP_RELAXATION *relaxation)
    Definition: relax.c:833
    SCIP_Bool SCIPrelaxationIsSolValid(SCIP_RELAXATION *relaxation)
    Definition: relax.c:823
    SCIP_RETCODE SCIPrelaxExitsol(SCIP_RELAX *relax, SCIP_SET *set)
    Definition: relax.c:330
    internal methods for relaxators
    SCIP callable library.
    public methods for cuts and aggregation rows
    SCIP_RETCODE SCIPsetAddIntParam(SCIP_SET *set, SCIP_MESSAGEHDLR *messagehdlr, BMS_BLKMEM *blkmem, const char *name, const char *desc, int *valueptr, SCIP_Bool isadvanced, int defaultvalue, int minvalue, int maxvalue, SCIP_DECL_PARAMCHGD((*paramchgd)), SCIP_PARAMDATA *paramdata)
    Definition: set.c:3229
    SCIP_Real SCIPsetInfinity(SCIP_SET *set)
    Definition: set.c:6380
    SCIP_Bool SCIPsetIsInfinity(SCIP_SET *set, SCIP_Real val)
    Definition: set.c:6515
    SCIP_Bool SCIPsetIsRelGT(SCIP_SET *set, SCIP_Real val1, SCIP_Real val2)
    Definition: set.c:7535
    internal methods for global SCIP settings
    #define SCIPsetDebugMsg
    Definition: set.h:1811
    internal methods for storing primal CIP solutions
    internal methods for problem statistics
    SCIP_RELAXDATA * relaxdata
    Definition: struct_relax.h:64
    SCIP_Real imprtime
    Definition: struct_relax.h:67
    SCIP_Longint lastsolvednode
    Definition: struct_relax.h:54
    SCIP_CLOCK * setuptime
    Definition: struct_relax.h:65
    SCIP_CLOCK * relaxclock
    Definition: struct_relax.h:66
    SCIP_Longint naddedconss
    Definition: struct_relax.h:51
    SCIP_Bool initialized
    Definition: struct_relax.h:71
    char * name
    Definition: struct_relax.h:55
    SCIP_Longint ncalls
    Definition: struct_relax.h:48
    SCIP_Longint nimprbounds
    Definition: struct_relax.h:50
    SCIP_Longint nreduceddom
    Definition: struct_relax.h:52
    SCIP_Bool exact
    Definition: struct_relax.h:70
    SCIP_Longint ncutoffs
    Definition: struct_relax.h:49
    char * desc
    Definition: struct_relax.h:56
    SCIP_Longint nseparated
    Definition: struct_relax.h:53
    SCIP_Real relaxsolobjval
    Definition: struct_relax.h:77
    SCIP_Bool relaxsolincludeslp
    Definition: struct_relax.h:79
    SCIP_Bool relaxsolzero
    Definition: struct_relax.h:80
    SCIP_RELAX * lastsolrelax
    Definition: struct_relax.h:81
    SCIP_Bool relaxsolvalid
    Definition: struct_relax.h:78
    SCIP_Longint ntotalnodes
    Definition: struct_stat.h:89
    SCIP_Longint relaxcount
    Definition: struct_stat.h:206
    int nactiveconss
    Definition: struct_stat.h:275
    data structures for relaxators
    Definition: heur_padm.c:135
    SCIP_NODE * SCIPtreeGetCurrentNode(SCIP_TREE *tree)
    Definition: tree.c:9462
    internal methods for branch and bound tree
    @ SCIP_CLOCKTYPE_DEFAULT
    Definition: type_clock.h:43
    struct SCIP_ParamData SCIP_PARAMDATA
    Definition: type_paramset.h:87
    #define SCIP_DECL_RELAXINIT(x)
    Definition: type_relax.h:77
    #define SCIP_DECL_RELAXEXITSOL(x)
    Definition: type_relax.h:107
    #define SCIP_DECL_RELAXFREE(x)
    Definition: type_relax.h:69
    #define SCIP_DECL_RELAXINITSOL(x)
    Definition: type_relax.h:96
    #define SCIP_DECL_RELAXCOPY(x)
    Definition: type_relax.h:61
    #define SCIP_DECL_RELAXEXEC(x)
    Definition: type_relax.h:132
    #define SCIP_DECL_RELAXEXIT(x)
    Definition: type_relax.h:85
    struct SCIP_RelaxData SCIP_RELAXDATA
    Definition: type_relax.h:52
    @ 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_SUSPENDED
    Definition: type_result.h:57
    @ SCIP_SEPARATED
    Definition: type_result.h:49
    @ SCIP_SUCCESS
    Definition: type_result.h:58
    enum SCIP_Result SCIP_RESULT
    Definition: type_result.h:61
    @ SCIP_INVALIDRESULT
    Definition: type_retcode.h:53
    @ SCIP_OKAY
    Definition: type_retcode.h:42
    @ SCIP_INVALIDCALL
    Definition: type_retcode.h:51
    enum SCIP_Retcode SCIP_RETCODE
    Definition: type_retcode.h:63
    @ SCIP_VARSTATUS_COLUMN
    Definition: type_var.h:53
    SCIP_Real SCIPvarGetRelaxSol(SCIP_VAR *var, SCIP_SET *set)
    Definition: var.c:19688
    internal methods for problem variables