/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */ /* */ /* This file is part of the program and library */ /* SCIP --- Solving Constraint Integer Programs */ /* */ /* Copyright (C) 2002-2020 Konrad-Zuse-Zentrum */ /* fuer Informationstechnik Berlin */ /* */ /* SCIP is distributed under the terms of the ZIB Academic License. */ /* */ /* You should have received a copy of the ZIB Academic License */ /* along with SCIP; see the file COPYING. If not visit scipopt.org. */ /* */ /* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */ /**@file branch_pscost.h * @ingroup BRANCHINGRULES * @brief pseudo costs branching rule * @author Tobias Achterberg * * The pseudo costs branching rule selects the branching variable with respect to the so-called pseudo costs * of the variables. Pseudo costs measure the average gain per unit in the objective function when the variable * was branched on upwards or downwards, resp. The required information is updated at every node of * the solving process. * * The selected variable maximizes the expected gain of the dual bound in the created subtree. * * For a more mathematical description and a comparison between the pseudo costs branching rule * and other branching rules in SCIP, we refer to * * @par * Tobias Achterberg@n * Constraint Integer Programming@n * PhD Thesis, Technische Universität Berlin, 2007@n */ /*---+----1----+----2----+----3----+----4----+----5----+----6----+----7----+----8----+----9----+----0----+----1----+----2*/ #ifndef __SCIP_BRANCH_PSCOST_H__ #define __SCIP_BRANCH_PSCOST_H__ #include "scip/def.h" #include "scip/type_retcode.h" #include "scip/type_scip.h" #include "scip/type_var.h" #ifdef __cplusplus extern "C" { #endif /** creates the pseudo cost branching rule and includes it in SCIP * * @ingroup BranchingRuleIncludes */ SCIP_EXPORT SCIP_RETCODE SCIPincludeBranchrulePscost( SCIP* scip /**< SCIP data structure */ ); /**@addtogroup BRANCHINGRULES * * @{ */ /** selects a branching variable, due to pseudo cost, from the given candidate array and returns this variable together * with a branching point */ SCIP_EXPORT SCIP_RETCODE SCIPselectBranchVarPscost( SCIP* scip, /**< SCIP data structure */ SCIP_VAR** branchcands, /**< branching candidates */ SCIP_Real* branchcandssol, /**< solution value for the branching candidates */ SCIP_Real* branchcandsscore, /**< array of candidate scores */ int nbranchcands, /**< number of branching candidates */ SCIP_VAR** var, /**< pointer to store the variable to branch on, or NULL if none */ SCIP_Real* brpoint /**< pointer to store the branching point for the branching variable, will be fractional for a discrete variable */ ); /** @} */ #ifdef __cplusplus } #endif #endif