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cons_soc.c
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17 * @brief constraint handler for second order cone constraints \f$\sqrt{\gamma + \sum_{i=1}^{n} (\alpha_i\, (x_i + \beta_i))^2} \leq \alpha_{n+1}\, (x_{n+1}+\beta_{n+1})\f$
25 /*---+----1----+----2----+----3----+----4----+----5----+----6----+----7----+----8----+----9----+----0----+----1----+----2*/
46 #define CONSHDLR_ENFOPRIORITY -40 /**< priority of the constraint handler for constraint enforcing */
47 #define CONSHDLR_CHECKPRIORITY -10 /**< priority of the constraint handler for checking feasibility */
48 #define CONSHDLR_SEPAFREQ 1 /**< frequency for separating cuts; zero means to separate only in the root node */
49 #define CONSHDLR_PROPFREQ 1 /**< frequency for propagating domains; zero means only preprocessing propagation */
50 #define CONSHDLR_EAGERFREQ 100 /**< frequency for using all instead of only the useful constraints in separation,
52 #define CONSHDLR_MAXPREROUNDS -1 /**< maximal number of presolving rounds the constraint handler participates in (-1: no limit) */
53 #define CONSHDLR_DELAYSEPA FALSE /**< should separation method be delayed, if other separators found cuts? */
54 #define CONSHDLR_DELAYPROP FALSE /**< should propagation method be delayed, if other propagators found reductions? */
55 #define CONSHDLR_DELAYPRESOL FALSE /**< should presolving method be delayed, if other presolvers found reductions? */
56 #define CONSHDLR_NEEDSCONS TRUE /**< should the constraint handler be skipped, if no constraints are available? */
60 #define QUADCONSUPGD_PRIORITY 10000 /**< priority of the constraint handler for upgrading of quadratic constraints */
72 {
74 int varidx; /**< the index of a variable on the left hand side which bound change is caught, or -1 for variable on right hand side */
76 };
97 VAREVENTDATA* lhsbndchgeventdata; /**< eventdata for bound change events on left hand side variables */
98 VAREVENTDATA rhsbndchgeventdata; /**< eventdata for bound change event on right hand side variable */
115 SCIP_Bool projectpoint; /**< is the point in which a cut is generated projected onto the feasible set? */
116 int nauxvars; /**< number of auxiliary variables to use when creating a linear outer approx. of a SOC3 constraint */
120 SCIP_Real sparsifynzgrowth; /**< growth rate of maximal allowed nonzeros in cuts in sparsification */
121 SCIP_Bool linfeasshift; /**< whether to try to make solutions feasible in check by shifting the variable on the right hand side */
123 SCIP_Real sepanlpmincont; /**< minimal required fraction of continuous variables in problem to use solution of NLP relaxation in root for separation */
124 SCIP_Bool enfocutsremovable; /**< are cuts added during enforcement removable from the LP in the same node? */
126 SCIP_NODE* lastenfolpnode; /**< the node for which enforcement was called the last time (and some constraint was violated) */
158 SCIP_CALL( SCIPcatchVarEvent(scip, consdata->vars[varidx], SCIP_EVENTTYPE_BOUNDTIGHTENED, eventhdlr, (SCIP_EVENTDATA*)&consdata->lhsbndchgeventdata[varidx], &consdata->lhsbndchgeventdata[varidx].filterpos) );
184 SCIP_CALL( SCIPcatchVarEvent(scip, consdata->rhsvar, SCIP_EVENTTYPE_UBTIGHTENED, eventhdlr, (SCIP_EVENTDATA*)&consdata->rhsbndchgeventdata, &consdata->rhsbndchgeventdata.filterpos) );
250 SCIP_CALL( SCIPdropVarEvent(scip, consdata->vars[varidx], SCIP_EVENTTYPE_BOUNDTIGHTENED, eventhdlr, (SCIP_EVENTDATA*)&consdata->lhsbndchgeventdata[varidx], consdata->lhsbndchgeventdata[varidx].filterpos) );
273 SCIP_CALL( SCIPdropVarEvent(scip, consdata->rhsvar, SCIP_EVENTTYPE_UBTIGHTENED, eventhdlr, (SCIP_EVENTDATA*)&consdata->rhsbndchgeventdata, consdata->rhsbndchgeventdata.filterpos) );
317 {
364 /* if the user let us choose, then we take 's' for "small" SOC constraints, but 'q' for large ones,
365 * since the 's' form leads to nvars^2 elements in Hessian, while the 'q' form yields only n elements
366 * however, if there is no expression interpreter, then the NLPI may have trouble, so we always use 'q' in this case
378 /* construct expression exp(\sqrt{\gamma + \sum_{i=1}^{n} (\alpha_i\, (x_i + \beta_i))^2} - alpha_{n+1}(x_{n+1} + beta_{n+1})) */
389 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &exprterm, SCIP_EXPR_CONST, consdata->constant) ); /* gamma */
401 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr2, SCIP_EXPR_CONST, consdata->offsets[i]) ); /* beta_i */
402 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_PLUS, expr, expr2) ); /* x_i + beta_i */
404 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_SQUARE, expr) ); /* (x_i + beta_i)^2 */
407 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr2, SCIP_EXPR_CONST, consdata->coefs[i]) ); /* alpha_i */
408 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_MUL, expr, expr2) ); /* alpha_i * (x_i + beta_i)^2 */
420 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &exprterm, SCIP_EXPR_SQRT, exprterm) ); /* sqrt(gamma + sum_i (...)^2) */
424 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_VARIDX, consdata->nvars) ); /* x_{n+1} */
427 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr2, SCIP_EXPR_CONST, consdata->rhsoffset) ); /* beta_{n+1} */
428 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_PLUS, expr, expr2) ); /* x_{n+1} + beta_{n+1} */
432 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr2, SCIP_EXPR_CONST, consdata->rhscoeff) ); /* alpha_{n+1} */
433 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_MUL, expr, expr2) ); /* alpha_{n+1} * (x_{n+1} + beta_{n+1}) */
438 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_CONST, consdata->rhscoeff * consdata->rhsoffset) );
440 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &exprterm, SCIP_EXPR_MINUS, exprterm, expr) ); /* sqrt(gamma + sum_i (...)^2) - alpha_{n+1} * (x_{n+1} + beta_{n+1}) */
442 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &exprterm, SCIP_EXPR_EXP, exprterm) ); /* exp(sqrt(gamma + sum_i (...)^2) - alpha_{n+1} * (x_{n+1} + beta_{n+1})) */
444 SCIP_CALL( SCIPexprtreeCreate(SCIPblkmem(scip), &exprtree, exprterm, consdata->nvars+1, 0, NULL) );
474 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &exprterm, SCIP_EXPR_CONST, consdata->constant) ); /* gamma */
486 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr2, SCIP_EXPR_CONST, consdata->offsets[i]) ); /* beta_i */
487 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_PLUS, expr, expr2) ); /* x_i + beta_i */
489 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_SQUARE, expr) ); /* (x_i + beta_i)^2 */
492 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr2, SCIP_EXPR_CONST, consdata->coefs[i]) ); /* alpha_i */
493 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &expr, SCIP_EXPR_MUL, expr, expr2) ); /* alpha_i * (x_i + beta_i)^2 */
507 SCIP_CALL( SCIPexprCreate(SCIPblkmem(scip), &exprterm, SCIP_EXPR_SQRT, exprterm) ); /* sqrt(gamma + sum_i (...)^2) */
508 SCIP_CALL( SCIPexprtreeCreate(SCIPblkmem(scip), &exprtree, exprterm, consdata->nvars, 0, NULL) );
533 /* construct quadratic form gamma + sum_{i=1}^{n} (alpha_i (x_i + beta_i))^2 <= (alpha_{n+1} (x_{n+1} + beta_{n+1})^2 */
556 SCIP_CALL( SCIPaddLinearCoefToNlRow(scip, consdata->nlrow, consdata->vars[i], 2.0 * consdata->coefs[i] * consdata->offsets[i]) );
578 SCIP_CALL( SCIPaddLinearCoefToNlRow(scip, consdata->nlrow, consdata->rhsvar, -2.0 * consdata->rhscoeff * consdata->rhsoffset) );
588 /* construct division form (gamma + sum_{i=1}^n (alpha_i(x_i+beta_i))^2)/(alpha_{n+1}(x_{n+1}+beta_{n+1})) <= alpha_{n+1}(x_{n+1}+beta_{n+1})
611 SCIP_CALL( SCIPexprCreateLinear(SCIPblkmem(scip), &exprs[i], 1, &exprs[i], &one, consdata->offsets[i]) );
615 SCIP_CALL( SCIPexprCreateMonomial(SCIPblkmem(scip), &monomials[i], consdata->coefs[i] * consdata->coefs[i], 1, &i, &two) );
619 SCIP_CALL( SCIPexprCreatePolynomial(SCIPblkmem(scip), &nominator, consdata->nvars, exprs, consdata->nvars, monomials, consdata->constant, FALSE) ); /*lint !e850 */
627 assert((consdata->rhscoeff >= 0.0 && !SCIPisNegative(scip, SCIPvarGetLbGlobal(consdata->rhsvar) + consdata->rhsoffset)) ||
628 (consdata->rhscoeff <= 0.0 && !SCIPisPositive(scip, SCIPvarGetUbGlobal(consdata->rhsvar) + consdata->rhsoffset)));
632 SCIP_CALL( SCIPexprCreateLinear(SCIPblkmem(scip), &denominator, 1, &denominator, &consdata->rhscoeff, consdata->rhscoeff * consdata->rhsoffset) );
705 #if 0 /* with non-initial columns, this might fail because variables can shortly be a column variable before entering the LP and have value 0.0 in this case */
783 if( (consdata->rhscoeff > 0.0 && SCIPisInfinity(scip, SCIPgetSolVal(scip, sol, consdata->rhsvar))) ||
784 ( consdata->rhscoeff < 0.0 && SCIPisInfinity(scip, -SCIPgetSolVal(scip, sol, consdata->rhsvar))) )
808 #if 0 /* with non-initial columns, this might fail because variables can shortly be a column variable before entering the LP and have value 0.0 in this case */
874 SCIP_CONS** maxviolcons /**< a buffer to store pointer to maximal violated constraint, or NULL if of no interest */
946 (void) SCIPsnprintf(cutname, SCIP_MAXSTRLEN, "%s_linearization_%d", SCIPconsGetName(cons), SCIPgetNLPs(scip));
948 SCIP_CALL( SCIPcreateEmptyRowCons(scip, row, SCIPconsGetHdlr(cons), cutname, -SCIPinfinity(scip), rhs, SCIPconsIsLocal(cons), FALSE, TRUE) );
1016 (void) SCIPsnprintf(cutname, SCIP_MAXSTRLEN, "%s_linearization_%d", SCIPconsGetName(cons), SCIPgetNLPs(scip));
1018 SCIP_CALL( SCIPcreateEmptyRowCons(scip, row, SCIPconsGetHdlr(cons), cutname, -SCIPinfinity(scip), rhs, SCIPconsIsLocal(cons), FALSE, TRUE) );
1029 * Instead of linearizing the SOC constraint in the given solution point, this function projects the point
1046 * A = \frac{\alpha_{n+1}(\hat x_{n+1}+\beta_{n+1})}{\sqrt{\sum_{i=1}^n (\alpha_i(\hat x_i+\beta_i))^2}}
1052 * The only difference is in the right hand side, which is (in the case beta = 0) multiplied by 1/(1-lambda).
1118 (void) SCIPsnprintf(cutname, SCIP_MAXSTRLEN, "%s_linearization_%d", SCIPconsGetName(cons), SCIPgetNLPs(scip));
1120 SCIP_CALL( SCIPcreateEmptyRowCons(scip, row, SCIPconsGetHdlr(cons), cutname, -SCIPinfinity(scip), rhs, SCIPconsIsLocal(cons), FALSE, TRUE) );
1177 /* distance to "-offset" * alpha_i^2 should indicate loss when moving refpoint to x[i] = -offset[i] */
1237 SCIPdebugMessage("accepted cut with %d of %d nonzeros, efficacy = %g\n", maxnz, consdata->nvars, efficacy);
1301 minefficacy = inenforcement ? (SCIPgetRelaxFeastolFactor(scip) > 0.0 ? SCIPepsilon(scip) : SCIPfeastol(scip)) : conshdlrdata->minefficacy;
1308 if( SCIPisGT(scip, consdata->violation, SCIPfeastol(scip)) && !SCIPisInfinity(scip, consdata->violation) )
1317 SCIP_CALL( generateSparseCut(scip, conshdlr, conss[c], sol, &row, minefficacy) ); /*lint !e613*/
1343 /* in difference to SCIPgetCutEfficacy, we scale by norm only if the norm is > 1.0 this avoid finding
1344 * cuts efficient which are only very slightly violated CPLEX does not seem to scale row coefficients up
1345 * too also we use infinity norm, since that seem to be the usual scaling strategy in LP solvers
1395 * others are only checked and enforced if we are still feasible or have not found a separating cut yet
1404 /** adds linearizations cuts for convex constraints w.r.t. a given reference point to cutpool and sepastore
1405 * if separatedlpsol is not NULL, then a cut that separates the LP solution is added to the sepastore and is forced to enter the LP
1406 * if separatedlpsol is not NULL, but cut does not separate the LP solution, then it is added to the cutpool only
1416 SCIP_Bool* separatedlpsol, /**< buffer to store whether a cut that separates the current LP solution was found and added to LP, or NULL if adding to cutpool only */
1417 SCIP_Real minefficacy, /**< minimal efficacy of a cut when checking for separation of LP solution */
1448 SCIPdebugMessage("skip adding linearization for <%s> since lhs is %g\n", SCIPconsGetName(conss[c]), consdata->lhsval); /*lint !e613 */
1478 /* in difference to SCIPgetCutEfficacy, we scale by norm only if the norm is > 1.0 this avoid finding cuts
1479 * efficient which are only very slightly violated CPLEX does not seem to scale row coefficients up too
1480 * also we use infinity norm, since that seem to be the usual scaling strategy in LP solvers (equilibrium
1524 {
1552 /* we are only interested in solution coming from some heuristic other than trysol, but not from the tree
1553 * the reason for ignoring trysol solutions is that they may come from an NLP solve in sepalp, where we already added linearizations,
1562 SCIPdebugMessage("caught new sol event %x from heur <%s>; have %d conss\n", SCIPeventGetType(event), SCIPheurGetName(SCIPsolGetHeur(sol)), nconss);
1573 * takes care of capture/release and locks, but not of variable events (assumes that var events are not caught yet)
1678 SCIP_CALL( SCIPunlockVarCons(scip, x, cons, consdata->rhscoeff > 0.0, consdata->rhscoeff < 0.0) );
1684 SCIPdebugMessage(" rhs variable is replaced by %g * <%s> + %g\n", coef, SCIPvarGetName(x), offset);
1693 /* replace rhscoef * (rhsvar + rhsoffset) by rhscoef*coef * (x + offset/coef + rhsoffset/coef) */
1702 SCIP_CALL( SCIPlockVarCons(scip, consdata->rhsvar, cons, consdata->rhscoeff > 0.0, consdata->rhscoeff < 0.0) );
1721 /* due to the realloc of the block memory below and the way we store the eventdata in consdata, we best drop all events here and catch them again below */
1764 { /* all variables on left hand size have been removed, remaining constraint is sqrt(gamma) <= ... */
1767 { /* also rhsvar has been removed, remaining constraint is sqrt(gamma) <= rhscoeff * rhsoffset */
1770 SCIPdebugMessage("remove redundant constraint <%s> after fixing all variables\n", SCIPconsGetName(cons));
1774 SCIPdebugMessage("found problem infeasible after fixing all variables in <%s>\n", SCIPconsGetName(cons));
1780 { /* remaining constraint is sqrt(gamma) - rhscoeff * rhsoffset <= rhscoeff * rhsvar, and rhsvar is probably multi-aggregated */
1783 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, SCIPconsGetName(cons), 1, &consdata->rhsvar, &consdata->rhscoeff,
1796 SCIP_CALL( SCIPtightenVarLb(scip, consdata->rhsvar, sqrt(consdata->constant) / consdata->rhscoeff - consdata->rhsoffset, TRUE, iscutoff, &tightened) );
1799 SCIPdebugMessage("found problem infeasible after fixing all lhs variables in <%s> and tightening lower bound of rhs var\n", SCIPconsGetName(cons));
1803 SCIPdebugMessage("remove redundant constraint <%s> after fixing all lhs variables and tightening lower bound of rhs var\n", SCIPconsGetName(cons));
1808 SCIPdebugMessage("remove redundant constraint <%s> after fixing all lhs variables\n", SCIPconsGetName(cons));
1815 SCIP_CALL( SCIPtightenVarUb(scip, consdata->rhsvar, sqrt(consdata->constant) / consdata->rhscoeff - consdata->rhsoffset, TRUE, iscutoff, &tightened) );
1818 SCIPdebugMessage("found problem infeasible after fixing all lhs variables in <%s> and tightening upper bound of rhs var\n", SCIPconsGetName(cons));
1822 SCIPdebugMessage("remove redundant constraint <%s> after fixing all lhs variables and tightening upper bound of rhs var\n", SCIPconsGetName(cons));
1827 SCIPdebugMessage("remove redundant constraint <%s> after fixing all lhs variables\n", SCIPconsGetName(cons));
1877 { /* constraint is |alpha*(x+beta)| <= sqrt((rhscoeff*rhsoffset)^2 - gamma), but x is probably multaggr. -> turn into ranged linear constraint */
1882 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, SCIPconsGetName(cons), 1, &consdata->vars[0], &consdata->coefs[0],
1883 -sqrt(consdata->rhscoeff * consdata->rhscoeff * consdata->rhsoffset * consdata->rhsoffset - consdata->constant) - consdata->coefs[0] * consdata->offsets[0],
1884 +sqrt(consdata->rhscoeff * consdata->rhscoeff * consdata->rhsoffset * consdata->rhsoffset - consdata->constant) - consdata->coefs[0] * consdata->offsets[0],
1895 { /* constraint is |alpha*(x+beta)| <= sqrt((rhscoeff*rhsoffset)^2 - gamma) -> propagate bounds */
1903 SCIPdebugMessage("found problem infeasible after fixing rhs and all except one lhs variables in <%s>\n", SCIPconsGetName(cons));
1916 SCIPdebugMessage("found problem infeasible after fixing rhs and all except one lhs variables and fixing remaining lhs var in <%s>\n", SCIPconsGetName(cons));
1920 SCIPdebugMessage("remove redundant constraint <%s> after fixing rhs and all except one lhs variables and fixing remaining lhs var\n", SCIPconsGetName(cons));
1925 SCIPdebugMessage("remove redundant constraint <%s> after fixing rhs and all except one lhs variables and fixing remaining lhs var\n", SCIPconsGetName(cons));
1931 SCIP_CALL( SCIPtightenVarLb(scip, consdata->vars[0], -rhs - consdata->offsets[0], TRUE, iscutoff, &tightened) );
1934 SCIPdebugMessage("found problem infeasible after fixing rhs and all except one lhs variables and tightening lower bound of remaining lhs var in <%s>\n", SCIPconsGetName(cons));
1940 SCIP_CALL( SCIPtightenVarUb(scip, consdata->vars[0], rhs - consdata->offsets[0], TRUE, iscutoff, &tightened) );
1943 SCIPdebugMessage("found problem infeasible after fixing rhs and all except one lhs variables and tightening upper bound of remaining lhs var in <%s>\n", SCIPconsGetName(cons));
1950 SCIPdebugMessage("remove redundant constraint <%s> after fixing rhs and all except one lhs variables and tightening bounds on remaining lhs var\n", SCIPconsGetName(cons));
1962 { /* one variable on lhs left and no constant, constraint becomes |alpha*(x+beta)| <= rhscoef*(rhsvar+rhsoffset) -> upgrade to two linear constraints */
1975 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, SCIPconsGetName(cons), 2, vars, coefs, -SCIPinfinity(scip), rhs,
1986 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, SCIPconsGetName(cons), 2, vars, coefs, -SCIPinfinity(scip), rhs,
2008 * Input is the data for a constraint \f$\sqrt{(\alpha_1(x_1+offset1))^2 + (\alpha_2(x_2+offset2))^2) \leq \alpha_3(x_3+offset3)}\f$.
2010 * Also x2 = NULL is allowed, in which case the second term is assumed to be constant, and offset2 != 0 is needed.
2046 assert(SCIPisGE(scip, SCIPconsIsLocal(cons) ? SCIPvarGetLbLocal(x3) : SCIPvarGetLbGlobal(x3), -offset3));
2053 alpha1, SCIPvarGetName(x1), offset1, alpha2, x2 ? SCIPvarGetName(x2) : "0", offset2, alpha3, SCIPvarGetName(x3), offset3
2063 SCIP_CALL( SCIPcreateVar(scip, &avars[i], varname, -SCIPinfinity(scip), SCIPinfinity(scip), 0.0,
2068 SCIP_CALL( SCIPcreateVar(scip, &bvars[i], varname, -SCIPinfinity(scip), SCIPinfinity(scip), 0.0,
2086 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 2, vars, vals, alpha1*offset1, alpha1*offset1,
2105 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 2, vars, vals, -SCIPinfinity(scip), -alpha2*offset2,
2122 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 2, vars, vals, -alpha2*offset2, SCIPinfinity(scip),
2137 SCIP_CALL( SCIPtightenVarLb(scip, bvars[1], ABS(alpha2 * offset2), TRUE, &infeas, &tightened) );
2140 SCIPwarningMessage(scip, "creating glineur outer approximation of SOC3 constraint found problem infeasible.\n");
2177 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 3, vars, vals, -SCIPinfinity(scip), 0.0,
2196 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 3, vars, vals, 0.0, SCIPinfinity(scip),
2218 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 3, vars, vals, -alpha3*offset3, -alpha3*offset3,
2240 /** adds the linear outer-approximation of Ben-Tal and Nemirovski for a SOC constraint of dimension 3
2242 * Input is the data for a constraint \f$\sqrt{constant + (\alpha_1(x_1+offset1))^2 + (\alpha_2(x_2+offset2))^2) \leq \alpha_3(x_3+offset3)}\f$.
2244 * Also x2 = NULL is allowed, in which case the second term is assumed to be constant, and offset2 != 0 is needed.
2279 assert(SCIPisGE(scip, SCIPconsIsLocal(cons) ? SCIPvarGetLbLocal(x3) : SCIPvarGetLbGlobal(x3), -offset3));
2284 SCIPdebugMessage("Creating linear Ben-Tal Nemirovski outer-approximation for <%s>.\n", basename);
2310 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 2, vars, vals, alpha1 * offset1, SCIPinfinity(scip),
2326 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 2, vars, vals, -alpha1 * offset1, SCIPinfinity(scip),
2344 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 2, vars, vals, alpha2 * offset2, SCIPinfinity(scip),
2360 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 2, vars, vals, -alpha2 * offset2, SCIPinfinity(scip),
2415 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 3, vars, vals, 0.0, SCIPinfinity(scip),
2433 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 3, vars, vals, 0.0, SCIPinfinity(scip),
2451 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 2, vars, vals, -alpha3 * offset3, SCIPinfinity(scip),
2467 SCIP_CALL( SCIPcreateConsLinear(scip, &lincons, linname, 2, vars, vals, 0.0, SCIPinfinity(scip),
2513 SCIP_CALL( presolveCreateGlineurApproxDim3(scip, cons, x1, x2, x3, alpha1, alpha2, alpha3, offset1, offset2, offset3, N, basename, naddconss) );
2517 SCIP_CALL( presolveCreateBenTalNemirovskiApproxDim3(scip, cons, x1, x2, x3, alpha1, alpha2, alpha3, offset1, offset2, offset3, N, basename, naddconss) );
2523 /** adds linear outer approximation of Ben-Tal and Nemirovski for a constraint \f$\gamma + \sum_{i=1}^n (\alpha_i (x_i + \beta_i))^2 <= (\alpha_{n+1} (x_{n+1} + \beta_{n+1}))^2\f$ to the LP
2541 int soc3_nr_auxvars, /**< number of auxiliary variables to use for a SOC3 constraint, or 0 if automatic */
2604 { /* create new constraint alpha_2 (x_2+beta2)^2 + auxvar^2 <= (rhscoeff * (rhsvar+rhsoffset))^2 */
2705 SCIPintervalSetBounds(&lhsrange, consdata->constant - SCIPepsilon(scip), consdata->constant + SCIPepsilon(scip));
2729 SCIP_CALL( SCIPtightenVarLb(scip, consdata->rhsvar, SCIPintervalGetInf(a), FALSE, &infeas, &tightened) );
2737 SCIPdebugMessage("propagation tightened bounds of rhs variable <%s> in constraint <%s>\n", SCIPvarGetName(consdata->rhsvar), SCIPconsGetName(cons));
2757 SCIPdebugMessage("propagation found constraint <%s> infeasible: lhs = [%.15g,%.15g] > rhs = [%.15g,%.15g]\n",
2801 SCIP_CALL( SCIPtightenVarUb(scip, consdata->vars[i], SCIPintervalGetSup(c), FALSE, &infeas, &tightened) );
2810 SCIPdebugMessage("propagation tightened bounds of lhs variable <%s> in constraint <%s>\n", SCIPvarGetName(consdata->vars[i]), SCIPconsGetName(cons));
2820 SCIP_CALL( SCIPtightenVarLb(scip, consdata->vars[i], SCIPintervalGetInf(c), FALSE, &infeas, &tightened) );
2829 SCIPdebugMessage("propagation tightened bounds of lhs variable <%s> in constraint <%s>\n", SCIPvarGetName(consdata->vars[i]), SCIPconsGetName(cons));
2846 /** tries to adjust a solution such that it satisfies a given constraint by increasing the value for the constraints right hand side variable */
2924 SCIPdebugMessage("polishing solution for constraint <%s> was %ssuccessful\n", SCIPconsGetName(cons), *success ? "" : "not ");
2936 * @todo more general quadratic constraints then sums of squares might allow an upgrade to a SOC
2940 {
2995 /* if there is a linear variable that is still considered as quadratic (constraint probably not presolved yet), then give up */
3022 else if( rhsvar != NULL || SCIPisLT(scip, SCIPcomputeVarLbGlobal(scip, term->var), term->lincoef / (2*term->sqrcoef)) )
3039 { /* found SOC constraint, so upgrade to SOC constraint(s) (below) and relax right hand side */
3040 SCIPdebugMessage("found right hand side of constraint <%s> to be SOC\n", SCIPconsGetName(cons));
3064 SCIPgetNLinearVarsQuadratic(scip, cons), SCIPgetLinearVarsQuadratic(scip, cons), SCIPgetCoefsLinearVarsQuadratic(scip, cons),
3074 { /* if the first failed, try if constraint on left hand side is SOC (using negated coefficients) */
3084 /* if there is a linear variable that is still considered as quadratic (constraint probably not presolved yet), then give up */
3111 else if( rhsvar || SCIPisLT(scip, SCIPcomputeVarLbGlobal(scip, term->var), -term->lincoef / (2*term->sqrcoef)) )
3128 SCIPdebugMessage("found left hand side of constraint <%s> to be SOC\n", SCIPconsGetName(cons));
3152 SCIPgetNLinearVarsQuadratic(scip, cons), SCIPgetLinearVarsQuadratic(scip, cons), SCIPgetCoefsLinearVarsQuadratic(scip, cons),
3192 /** destructor of constraint handler to free constraint handler data (called when SCIP is exiting) */
3195 {
3231 /** deinitialization method of constraint handler (called before transformed problem is freed) */
3250 /** presolving deinitialization method of constraint handler (called after presolving has been finished) */
3274 /** solving process initialization method of constraint handler (called when branch and bound process is about to begin) */
3277 {
3317 SCIP_CALL( SCIPcatchEvent(scip, SCIP_EVENTTYPE_SOLFOUND, eventhdlr, (SCIP_EVENTDATA*)conshdlr, &conshdlrdata->newsoleventfilterpos) );
3329 /** solving process deinitialization method of constraint handler (called before branch and bound process data is freed) */
3332 {
3351 SCIP_CALL( SCIPdropEvent(scip, SCIP_EVENTTYPE_SOLFOUND, eventhdlr, (SCIP_EVENTDATA*)conshdlr, conshdlrdata->newsoleventfilterpos) );
3374 {
3421 {
3458 SCIP_CALL( SCIPduplicateBlockMemoryArray(scip, &consdata->coefs, sourcedata->coefs, consdata->nvars) );
3459 SCIP_CALL( SCIPduplicateBlockMemoryArray(scip, &consdata->offsets, sourcedata->offsets, consdata->nvars) );
3490 {
3510 /* at root, check if we want to solve the NLP relaxation and use its solutions as reference point
3511 * if there is something convex, then linearizing in the solution of the NLP relaxation can be very useful
3514 (SCIPgetNContVars(scip) >= conshdlrdata->sepanlpmincont * SCIPgetNVars(scip) || (SCIPgetLPSolstat(scip) == SCIP_LPSOLSTAT_UNBOUNDEDRAY && conshdlrdata->sepanlpmincont <= 1.0)) &&
3582 SCIP_CALL( addLinearizationCuts(scip, conshdlr, conss, nconss, nlpsol, &lpsolseparated, conshdlrdata->minefficacy, &cutoff) );
3592 /* if a cut that separated the LP solution was added, then return, otherwise continue with usual separation in LP solution */
3603 /* if we do not want to try solving the NLP, or have no NLP, or have no NLP solver, or solving the NLP failed,
3604 * or separating with NLP solution as reference point failed, then try (again) with LP solution as reference point
3607 SCIP_CALL( separatePoint(scip, conshdlr, conss, nconss, nusefulconss, NULL, FALSE, &cutoff, &sepasuccess) );
3620 {
3636 SCIP_CALL( separatePoint(scip, conshdlr, conss, nconss, nusefulconss, sol, FALSE, &cutoff, &sepasuccess) );
3649 {
3676 * (maybe the LP does not think that the cuts we add are violated, or we do ECP on a high-dimensional convex function)
3677 * in this case, check if some limit is hit or SCIP should stop for some other reason and terminate enforcement by creating a dummy node
3678 * (in optimized more, returning SCIP_INFEASIBLE in *result would be sufficient, but in debug mode this would give an assert in scip.c)
3679 * the reason to wait for 100 rounds is to avoid calls to SCIPisStopped in normal runs, which may be expensive
3690 SCIP_CALL( SCIPcreateChild(scip, &child, 1.0, SCIPnodeGetEstimate(SCIPgetCurrentNode(scip))) );
3706 SCIP_CALL( separatePoint(scip, conshdlr, conss, nconss, nusefulconss, NULL, TRUE, &cutoff, &success) );
3730 SCIPdebugMessage("enforced by %s\n", *result == SCIP_CUTOFF ? "cutting off node" : "reducing domain");
3735 SCIPwarningMessage(scip, "could not enforce feasibility by separating or branching; declaring solution with viol %g feasible\n", SCIPconsGetData(maxviolcons)->violation);
3745 {
3766 {
3811 unscaledviol -= consdata->rhscoeff * (SCIPgetSolVal(scip, sol, consdata->rhsvar) + consdata->rhsoffset);
3814 SCIPinfoMessage(scip, NULL, ";\n\tviolation: %g (scaled: %g)\n", unscaledviol, consdata->violation);
3844 else /* if locks of the variable are bad or rhs is multi-aggregated, disable solution polishing */
3850 /* if solution polishing is off and there is no NLP heuristic or we just check the LP solution,
3851 * then there is no need to check remaining constraints (NLP heuristic will pick up LP solution anyway) */
3880 {
3906 {
3929 SCIP_CALL( presolveRemoveFixedVariables(scip, conshdlr, conss[c], ndelconss, nupgdconss, nchgbds, nfixedvars, &iscutoff, &isdeleted) ); /*lint !e613*/
3944 SCIP_CALL( presolveCreateOuterApprox(scip, consdata->nvars, consdata->vars, consdata->coefs, consdata->offsets, consdata->rhsvar, consdata->rhscoeff, consdata->rhscoeff, consdata->constant, SCIPconsGetName(conss[c]), conss[c], conshdlrdata->nauxvars, conshdlrdata->glineur, naddconss) ); /*lint !e613*/
3959 SCIPdebugMessage("infeasible in presolve due to propagation for constraint %s\n", SCIPconsGetName(conss[c])); /*lint !e613*/
3967 /* ensure we are called again if we are about to finish, since another presolver may still fix some variable and we cannot remove these fixations in exitpre anymore */
3978 {
3994 SCIP_CALL( SCIPaddVarLocks(scip, consdata->vars[i], nlockspos + nlocksneg, nlockspos + nlocksneg) );
4000 SCIP_CALL( SCIPaddVarLocks(scip, consdata->rhsvar, consdata->rhscoeff > 0.0 ? nlockspos : nlocksneg, consdata->rhscoeff > 0.0 ? nlocksneg : nlockspos) );
4009 {
4052 {
4077 SCIP_CALL( SCIPgetVarCopy(sourcescip, scip, consdata->vars[i], &vars[i], varmap, consmap, global, valid) );
4084 SCIP_CALL( SCIPgetVarCopy(sourcescip, scip, consdata->rhsvar, &rhsvar, varmap, consmap, global, valid) );
4094 initial, separate, enforce, check, propagate, local, modifiable, dynamic, removable) ); /*lint !e644 */
4130 SCIPverbMessage(scip, SCIP_VERBLEVEL_MINIMAL, NULL, "expected 'sqrt( ' at begin of soc constraint string '%s'\n", str);
4166 SCIPverbMessage(scip, SCIP_VERBLEVEL_MINIMAL, NULL, "expected coefficient at begin of '%s'\n", str);
4193 SCIPverbMessage(scip, SCIP_VERBLEVEL_MINIMAL, NULL, "expected offset at begin of '%s'\n", str);
4201 SCIPverbMessage(scip, SCIP_VERBLEVEL_MINIMAL, NULL, "expected '))^2' at begin of '%s'\n", str);
4222 SCIPverbMessage(scip, SCIP_VERBLEVEL_MINIMAL, NULL, "expected ') <=' at begin of '%s'\n", str);
4238 SCIPverbMessage(scip, SCIP_VERBLEVEL_MINIMAL, NULL, "expected coefficient at begin of '%s'\n", str);
4284 SCIPverbMessage(scip, SCIP_VERBLEVEL_MINIMAL, NULL, "expected offset at begin of '%s'\n", str);
4313 SCIP_CALL( SCIPcreateConsSOC(scip, cons, name, nvars, vars, coefs, offsets, constant, rhsvar, rhscoef, rhsoffset,
4314 initial, separate, enforce, check, propagate, local, modifiable, dynamic, removable) ); /*lint !e644 */
4345 /** constraint method of constraint handler which returns the number of variable (if possible) */
4408 SCIP_CALL( SCIPsetConshdlrPresol(scip, conshdlr, consPresolSOC, CONSHDLR_MAXPREROUNDS, CONSHDLR_DELAYPRESOL) );
4410 SCIP_CALL( SCIPsetConshdlrProp(scip, conshdlr, consPropSOC, CONSHDLR_PROPFREQ, CONSHDLR_DELAYPROP, CONSHDLR_PROP_TIMING) );
4411 SCIP_CALL( SCIPsetConshdlrSepa(scip, conshdlr, consSepalpSOC, consSepasolSOC, CONSHDLR_SEPAFREQ,
4413 SCIP_CALL( SCIPsetConshdlrTrans(scip, conshdlr, consTransSOC) ); /* include constraint handler */
4418 SCIP_CALL( SCIPincludeQuadconsUpgrade(scip, upgradeConsQuadratic, QUADCONSUPGD_PRIORITY, TRUE, CONSHDLR_NAME) );
4423 "whether scaling of infeasibility is 'o'ff, by sup-norm of function 'g'radient, or by left/right hand 's'ide",
4427 "whether the reference point of a cut should be projected onto the feasible set of the SOC constraint",
4431 "number of auxiliary variables to use when creating a linear outer approx. of a SOC3 constraint; 0 to turn off",
4455 "whether to try to make solutions feasible in check by shifting the variable on the right hand side",
4459 "which formulation to use when adding a SOC constraint to the NLP (a: automatic, q: nonconvex quadratic form, s: convex sqrt form, e: convex exponential-sqrt form, d: convex division form)",
4463 "minimal required fraction of continuous variables in problem to use solution of NLP relaxation in root for separation",
4475 * @note the constraint gets captured, hence at one point you have to release it using the method SCIPreleaseCons()
4483 SCIP_Real* coefs, /**< array with coefficients of left hand side variables (alpha_i), or NULL if all 1.0 */
4532 assert(rhsvar == NULL || rhscoeff <= 0.0 || SCIPisGE(scip, local ? SCIPcomputeVarLbLocal(scip, rhsvar) : SCIPcomputeVarLbGlobal(scip, rhsvar), -rhsoffset));
4533 assert(rhsvar == NULL || rhscoeff >= 0.0 || SCIPisLE(scip, local ? SCIPcomputeVarUbLocal(scip, rhsvar) : SCIPcomputeVarUbGlobal(scip, rhsvar), -rhsoffset));
4586 SCIP_CALL( SCIPcreateCons(scip, cons, name, conshdlr, consdata, initial, separate, enforce, check, propagate,
4603 * @note the constraint gets captured, hence at one point you have to release it using the method SCIPreleaseCons()
4611 SCIP_Real* coefs, /**< array with coefficients of left hand side variables (alpha_i), or NULL if all 1.0 */
4678 /** Gets the coefficients of the variables on the left hand side of a SOC constraint, or NULL if all are equal to 1.0.
4691 /** Gets the offsets of the variables on the left hand side of a SOC constraint, or NULL if all are equal to 0.0.
4827 quadelems[consdata->nvars].idx1 = (int) (size_t) SCIPhashmapGetImage(scipvar2nlpivar, consdata->rhsvar);
SCIP_RETCODE SCIPfixVar(SCIP *scip, SCIP_VAR *var, SCIP_Real fixedval, SCIP_Bool *infeasible, SCIP_Bool *fixed) Definition: scip.c:20784 void SCIPsortRealInt(SCIP_Real *realarray, int *intarray, int len) void SCIPintervalDivScalar(SCIP_Real infinity, SCIP_INTERVAL *resultant, SCIP_INTERVAL operand1, SCIP_Real operand2) Definition: intervalarith.c:1176 static SCIP_RETCODE catchRhsVarEvents(SCIP *scip, SCIP_EVENTHDLR *eventhdlr, SCIP_CONS *cons) Definition: cons_soc.c:168 SCIP_RETCODE SCIPwriteVarName(SCIP *scip, FILE *file, SCIP_VAR *var, SCIP_Bool type) Definition: scip.c:14102 Definition: type_result.h:33 SCIP_Real SCIPgetRowSolFeasibility(SCIP *scip, SCIP_ROW *row, SCIP_SOL *sol) Definition: scip.c:25984 Definition: type_nlpi.h:65 void SCIPintervalSubScalar(SCIP_Real infinity, SCIP_INTERVAL *resultant, SCIP_INTERVAL operand1, SCIP_Real operand2) Definition: intervalarith.c:828 SCIP_CONSHDLR * SCIPfindConshdlr(SCIP *scip, const char *name) Definition: scip.c:5600 Definition: type_result.h:37 SCIP_RETCODE SCIPsetConshdlrTrans(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSTRANS((*constrans))) Definition: scip.c:5332 SCIP_BILINTERM * SCIPgetBilinTermsQuadratic(SCIP *scip, SCIP_CONS *cons) Definition: cons_quadratic.c:12464 static SCIP_RETCODE separatePoint(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_CONS **conss, int nconss, int nusefulconss, SCIP_SOL *sol, SCIP_Bool inenforcement, SCIP_Bool *cutoff, SCIP_Bool *success) Definition: cons_soc.c:1271 SCIP_Real SCIPcomputeVarUbGlobal(SCIP *scip, SCIP_VAR *var) Definition: scip.c:19432 primal heuristic that tries a given solution Definition: type_result.h:34 Definition: intervalarith.h:36 methods to interpret (evaluate) an expression tree "fast" Definition: type_var.h:40 Definition: struct_scip.h:52 SCIP_RETCODE SCIPcreateNLPSol(SCIP *scip, SCIP_SOL **sol, SCIP_HEUR *heur) Definition: scip.c:30926 SCIP_QUADVARTERM * SCIPgetQuadVarTermsQuadratic(SCIP *scip, SCIP_CONS *cons) Definition: cons_quadratic.c:12402 void SCIPwarningMessage(SCIP *scip, const char *formatstr,...) Definition: scip.c:1206 SCIP_RETCODE SCIPcreateVar(SCIP *scip, SCIP_VAR **var, const char *name, SCIP_Real lb, SCIP_Real ub, SCIP_Real obj, SCIP_VARTYPE vartype, SCIP_Bool initial, SCIP_Bool removable, SCIP_DECL_VARDELORIG((*vardelorig)), SCIP_DECL_VARTRANS((*vartrans)), SCIP_DECL_VARDELTRANS((*vardeltrans)), SCIP_DECL_VARCOPY((*varcopy)), SCIP_VARDATA *vardata) Definition: scip.c:13986 SCIP_RETCODE SCIPsetConshdlrSepa(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSSEPALP((*conssepalp)), SCIP_DECL_CONSSEPASOL((*conssepasol)), int sepafreq, int sepapriority, SCIP_Bool delaysepa) Definition: scip.c:4990 Definition: type_result.h:49 SCIP_Bool SCIPconshdlrWasPresolvingDelayed(SCIP_CONSHDLR *conshdlr) Definition: cons.c:4812 SCIP_CONS ** SCIPconshdlrGetConss(SCIP_CONSHDLR *conshdlr) Definition: cons.c:4209 SCIP_RETCODE SCIPcreateNlRow(SCIP *scip, SCIP_NLROW **nlrow, const char *name, SCIP_Real constant, int nlinvars, SCIP_VAR **linvars, SCIP_Real *lincoefs, int nquadvars, SCIP_VAR **quadvars, int nquadelems, SCIP_QUADELEM *quadelems, SCIP_EXPRTREE *expression, SCIP_Real lhs, SCIP_Real rhs) Definition: scip.c:27037 internal methods for NLPI solver interfaces SCIP_RETCODE SCIPsetConshdlrCopy(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSHDLRCOPY((*conshdlrcopy)), SCIP_DECL_CONSCOPY((*conscopy))) Definition: scip.c:5078 SCIP_RETCODE SCIPexprCreateMonomial(BMS_BLKMEM *blkmem, SCIP_EXPRDATA_MONOMIAL **monomial, SCIP_Real coef, int nfactors, int *childidxs, SCIP_Real *exponents) Definition: expr.c:6657 SCIP_RETCODE SCIPheurPassSolTrySol(SCIP *scip, SCIP_HEUR *heur, SCIP_SOL *sol) Definition: heur_trysol.c:236 Definition: struct_var.h:196 SCIP_RETCODE SCIPsetSolVal(SCIP *scip, SCIP_SOL *sol, SCIP_VAR *var, SCIP_Real val) Definition: scip.c:31639 SCIP_Real SCIPcomputeVarLbLocal(SCIP *scip, SCIP_VAR *var) Definition: scip.c:19452 SCIP_RETCODE SCIPgetProbvarSum(SCIP *scip, SCIP_VAR **var, SCIP_Real *scalar, SCIP_Real *constant) Definition: scip.c:15670 static SCIP_RETCODE generateCutSol(SCIP *scip, SCIP_CONS *cons, SCIP_SOL *sol, SCIP_ROW **row) Definition: cons_soc.c:908 SCIP_RETCODE SCIPsetConshdlrGetVars(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSGETVARS((*consgetvars))) Definition: scip.c:5562 Definition: cons_quadratic.h:75 void SCIPintervalSetRoundingMode(SCIP_ROUNDMODE roundmode) Definition: intervalarith.c:188 SCIP_RETCODE SCIPexprtreeSetVars(SCIP_EXPRTREE *tree, int nvars, SCIP_VAR **vars) Definition: nlp.c:111 SCIP_RETCODE SCIPincludeEventhdlrBasic(SCIP *scip, SCIP_EVENTHDLR **eventhdlrptr, const char *name, const char *desc, SCIP_DECL_EVENTEXEC((*eventexec)), SCIP_EVENTHDLRDATA *eventhdlrdata) Definition: scip.c:7209 SCIP_RETCODE SCIPsetConshdlrParse(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSPARSE((*consparse))) Definition: scip.c:5539 SCIP_RETCODE SCIPsetConshdlrPresol(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSPRESOL((*conspresol)), int maxprerounds, SCIP_Bool delaypresol) Definition: scip.c:5271 void SCIPintervalSetBounds(SCIP_INTERVAL *resultant, SCIP_Real inf, SCIP_Real sup) Definition: intervalarith.c:479 static SCIP_RETCODE dropLhsVarEvents(SCIP *scip, SCIP_EVENTHDLR *eventhdlr, SCIP_CONS *cons, int varidx) Definition: cons_soc.c:231 SCIP_RETCODE SCIPaddVarsToRow(SCIP *scip, SCIP_ROW *row, int nvars, SCIP_VAR **vars, SCIP_Real *vals) Definition: scip.c:25564 Definition: type_expr.h:97 SCIP_Real SCIPgetSolVal(SCIP *scip, SCIP_SOL *sol, SCIP_VAR *var) Definition: scip.c:31775 Definition: type_expr.h:38 Definition: type_result.h:40 SCIP_Real * SCIPgetLhsCoefsSOC(SCIP *scip, SCIP_CONS *cons) Definition: cons_soc.c:4681 static SCIP_RETCODE dropVarEvents(SCIP *scip, SCIP_EVENTHDLR *eventhdlr, SCIP_CONS *cons) Definition: cons_soc.c:281 void * SCIPhashmapGetImage(SCIP_HASHMAP *hashmap, void *origin) Definition: misc.c:1923 SCIP_RETCODE SCIPexprtreeCreate(BMS_BLKMEM *blkmem, SCIP_EXPRTREE **tree, SCIP_EXPR *root, int nvars, int nparams, SCIP_Real *params) Definition: expr.c:8133 SCIP_RETCODE SCIPsetConshdlrProp(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSPROP((*consprop)), int propfreq, SCIP_Bool delayprop, SCIP_PROPTIMING timingmask) Definition: scip.c:5036 constraint handler for second order cone constraints static SCIP_RETCODE catchLhsVarEvents(SCIP *scip, SCIP_EVENTHDLR *eventhdlr, SCIP_CONS *cons, int varidx) Definition: cons_soc.c:138 SCIP_RETCODE SCIPaddToNlpiProblemSOC(SCIP *scip, SCIP_CONS *cons, SCIP_NLPI *nlpi, SCIP_NLPIPROBLEM *nlpiprob, SCIP_HASHMAP *scipvar2nlpivar, SCIP_Bool names) Definition: cons_soc.c:4760 SCIP_RETCODE SCIPprintCons(SCIP *scip, SCIP_CONS *cons, FILE *file) Definition: scip.c:23934 SCIP_RETCODE SCIPaddCut(SCIP *scip, SCIP_SOL *sol, SCIP_ROW *cut, SCIP_Bool forcecut, SCIP_Bool *infeasible) Definition: scip.c:28256 Definition: type_expr.h:53 Definition: type_expr.h:44 Definition: struct_tree.h:119 SCIP_RETCODE SCIPgetNLPFracVars(SCIP *scip, SCIP_VAR ***fracvars, SCIP_Real **fracvarssol, SCIP_Real **fracvarsfrac, int *nfracvars, int *npriofracvars) Definition: scip.c:26586 static SCIP_RETCODE generateCutProjectedPoint(SCIP *scip, SCIP_CONS *cons, SCIP_SOL *sol, SCIP_ROW **row) Definition: cons_soc.c:1056 SCIP_RETCODE SCIPsetConshdlrFree(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSFREE((*consfree))) Definition: scip.c:5103 Definition: type_nlpi.h:67 SCIP_Real SCIPcomputeVarLbGlobal(SCIP *scip, SCIP_VAR *var) Definition: scip.c:19412 static SCIP_RETCODE polishSolution(SCIP *scip, SCIP_CONS *cons, SCIP_SOL *sol, SCIP_Bool *success) Definition: cons_soc.c:2849 SCIP_EVENTHDLR * SCIPfindEventhdlr(SCIP *scip, const char *name) Definition: scip.c:7339 SCIP_RETCODE SCIPcreateConsSOC(SCIP *scip, SCIP_CONS **cons, const char *name, int nvars, SCIP_VAR **vars, SCIP_Real *coefs, SCIP_Real *offsets, SCIP_Real constant, SCIP_VAR *rhsvar, SCIP_Real rhscoeff, SCIP_Real rhsoffset, SCIP_Bool initial, SCIP_Bool separate, SCIP_Bool enforce, SCIP_Bool check, SCIP_Bool propagate, SCIP_Bool local, SCIP_Bool modifiable, SCIP_Bool dynamic, SCIP_Bool removable) Definition: cons_soc.c:4478 Definition: struct_sol.h:50 SCIP_RETCODE SCIPsetConshdlrInit(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSINIT((*consinit))) Definition: scip.c:5127 SCIP_RETCODE SCIPaddBoolParam(SCIP *scip, const char *name, const char *desc, SCIP_Bool *valueptr, SCIP_Bool isadvanced, SCIP_Bool defaultvalue, SCIP_DECL_PARAMCHGD((*paramchgd)), SCIP_PARAMDATA *paramdata) Definition: scip.c:3388 SCIP_RETCODE SCIPaddIntParam(SCIP *scip, 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: scip.c:3414 SCIP_RETCODE SCIPparseVarName(SCIP *scip, const char *str, SCIP_VAR **var, char **endptr) Definition: scip.c:14405 static SCIP_RETCODE generateSparseCut(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_CONS *cons, SCIP_SOL *sol, SCIP_ROW **row, SCIP_Real minefficacy) Definition: cons_soc.c:1132 SCIP_RETCODE SCIPcreateConsBasicSOC(SCIP *scip, SCIP_CONS **cons, const char *name, int nvars, SCIP_VAR **vars, SCIP_Real *coefs, SCIP_Real *offsets, SCIP_Real constant, SCIP_VAR *rhsvar, SCIP_Real rhscoeff, SCIP_Real rhsoffset) Definition: cons_soc.c:4606 SCIP_CONSHDLRDATA * SCIPconshdlrGetData(SCIP_CONSHDLR *conshdlr) Definition: cons.c:3893 Definition: type_expr.h:45 Definition: type_expr.h:47 SCIP_RETCODE SCIPcatchVarEvent(SCIP *scip, SCIP_VAR *var, SCIP_EVENTTYPE eventtype, SCIP_EVENTHDLR *eventhdlr, SCIP_EVENTDATA *eventdata, int *filterpos) Definition: scip.c:33378 SCIP_Real SCIPgetRhsCoefSOC(SCIP *scip, SCIP_CONS *cons) Definition: cons_soc.c:4733 static SCIP_RETCODE presolveCreateGlineurApproxDim3(SCIP *scip, SCIP_CONS *cons, SCIP_VAR *x1, SCIP_VAR *x2, SCIP_VAR *x3, SCIP_Real alpha1, SCIP_Real alpha2, SCIP_Real alpha3, SCIP_Real offset1, SCIP_Real offset2, SCIP_Real offset3, int N, const char *basename, int *naddconss) Definition: cons_soc.c:2014 Definition: struct_misc.h:101 static SCIP_RETCODE dropRhsVarEvents(SCIP *scip, SCIP_EVENTHDLR *eventhdlr, SCIP_CONS *cons) Definition: cons_soc.c:258 SCIP_VAR ** SCIPgetLhsVarsSOC(SCIP *scip, SCIP_CONS *cons) Definition: cons_soc.c:4668 static SCIP_RETCODE computeViolation(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_CONS *cons, SCIP_SOL *sol) Definition: cons_soc.c:756 static SCIP_RETCODE presolveCreateOuterApproxDim3(SCIP *scip, SCIP_CONS *cons, SCIP_VAR *x1, SCIP_VAR *x2, SCIP_VAR *x3, SCIP_Real alpha1, SCIP_Real alpha2, SCIP_Real alpha3, SCIP_Real offset1, SCIP_Real offset2, SCIP_Real offset3, int N, SCIP_Bool glineur, const char *basename, int *naddconss) Definition: cons_soc.c:2494 SCIP_RETCODE SCIPgetVarCopy(SCIP *sourcescip, SCIP *targetscip, SCIP_VAR *sourcevar, SCIP_VAR **targetvar, SCIP_HASHMAP *varmap, SCIP_HASHMAP *consmap, SCIP_Bool global, SCIP_Bool *success) Definition: scip.c:1690 Definition: type_nlpi.h:63 Definition: type_expr.h:49 SCIP_RETCODE SCIPgetTransformedVar(SCIP *scip, SCIP_VAR *var, SCIP_VAR **transvar) Definition: scip.c:15319 int SCIPgetNLinearVarsQuadratic(SCIP *scip, SCIP_CONS *cons) Definition: cons_quadratic.c:12347 Definition: type_result.h:35 Definition: struct_cons.h:36 interval arithmetics for provable bounds SCIP_RETCODE SCIPunlockVarCons(SCIP *scip, SCIP_VAR *var, SCIP_CONS *cons, SCIP_Bool lockdown, SCIP_Bool lockup) Definition: scip.c:17713 Definition: struct_cons.h:116 SCIP_Real SCIPintervalGetInf(SCIP_INTERVAL interval) Definition: intervalarith.c:451 SCIP_RETCODE SCIPaddQuadElementToNlRow(SCIP *scip, SCIP_NLROW *nlrow, SCIP_QUADELEM quadelem) Definition: scip.c:27379 SCIP_Real SCIPgetRowLPFeasibility(SCIP *scip, SCIP_ROW *row) Definition: scip.c:25827 Definition: type_result.h:36 SCIP_Bool SCIPisFeasEQ(SCIP *scip, SCIP_Real val1, SCIP_Real val2) Definition: scip.c:38648 static SCIP_RETCODE computeViolations(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_CONS **conss, int nconss, SCIP_SOL *sol, SCIP_CONS **maxviolcons) Definition: cons_soc.c:869 static SCIP_RETCODE presolveCreateOuterApprox(SCIP *scip, int nlhsvars, SCIP_VAR **lhsvars, SCIP_Real *lhscoefs, SCIP_Real *lhsoffsets, SCIP_VAR *rhsvar, SCIP_Real rhscoeff, SCIP_Real rhsoffset, SCIP_Real constant, const char *basename, SCIP_CONS *origcons, int soc3_nr_auxvars, SCIP_Bool glineur, int *naddconss) Definition: cons_soc.c:2530 constraint handler for quadratic constraints SCIP_RETCODE SCIPsetConshdlrExitpre(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSEXITPRE((*consexitpre))) Definition: scip.c:5247 #define SCIPreallocBlockMemoryArray(scip, ptr, oldnum, newnum) Definition: scip.h:19189 SCIP_RETCODE SCIPchgNlRowRhs(SCIP *scip, SCIP_NLROW *nlrow, SCIP_Real rhs) Definition: scip.c:27189 static SCIP_RETCODE presolveRemoveFixedVariables(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_CONS *cons, int *ndelconss, int *nupgdconss, int *nchgbds, int *nfixedvars, SCIP_Bool *iscutoff, SCIP_Bool *isdeleted) Definition: cons_soc.c:1577 Definition: type_retcode.h:33 SCIP_RETCODE SCIPgetSolVals(SCIP *scip, SCIP_SOL *sol, int nvars, SCIP_VAR **vars, SCIP_Real *vals) Definition: scip.c:31809 static SCIP_Real getGradientNorm(SCIP *scip, SCIP_CONS *cons, SCIP_SOL *sol) Definition: cons_soc.c:723 SCIP_RETCODE SCIPincludeConshdlrBasic(SCIP *scip, SCIP_CONSHDLR **conshdlrptr, const char *name, const char *desc, int enfopriority, int chckpriority, int eagerfreq, SCIP_Bool needscons, SCIP_DECL_CONSENFOLP((*consenfolp)), SCIP_DECL_CONSENFOPS((*consenfops)), SCIP_DECL_CONSCHECK((*conscheck)), SCIP_DECL_CONSLOCK((*conslock)), SCIP_CONSHDLRDATA *conshdlrdata) Definition: scip.c:4936 SCIP_RETCODE SCIPexprCreatePolynomial(BMS_BLKMEM *blkmem, SCIP_EXPR **expr, int nchildren, SCIP_EXPR **children, int nmonomials, SCIP_EXPRDATA_MONOMIAL **monomials, SCIP_Real constant, SCIP_Bool copymonomials) Definition: expr.c:6254 Definition: type_result.h:42 SCIP_RETCODE SCIPaddLinearConsToNlpHeurSubNlp(SCIP *scip, SCIP_HEUR *heur, SCIP_Bool addcombconss, SCIP_Bool addcontconss) Definition: heur_subnlp.c:2224 SCIP_VAR ** SCIPgetLinearVarsQuadratic(SCIP *scip, SCIP_CONS *cons) Definition: cons_quadratic.c:12361 SCIP_Real SCIPgetRhsOffsetSOC(SCIP *scip, SCIP_CONS *cons) Definition: cons_soc.c:4746 Definition: struct_heur.h:36 Definition: type_lp.h:34 Definition: type_retcode.h:34 SCIP_RETCODE SCIPgetTransformedVars(SCIP *scip, int nvars, SCIP_VAR **vars, SCIP_VAR **transvars) Definition: scip.c:15360 Definition: struct_expr.h:46 Definition: cons_soc.c:72 SCIP_RETCODE SCIPtightenVarLb(SCIP *scip, SCIP_VAR *var, SCIP_Real newbound, SCIP_Bool force, SCIP_Bool *infeasible, SCIP_Bool *tightened) Definition: scip.c:18371 SCIP_RETCODE SCIPcreateCons(SCIP *scip, SCIP_CONS **cons, const char *name, SCIP_CONSHDLR *conshdlr, SCIP_CONSDATA *consdata, SCIP_Bool initial, SCIP_Bool separate, SCIP_Bool enforce, SCIP_Bool check, SCIP_Bool propagate, SCIP_Bool local, SCIP_Bool modifiable, SCIP_Bool dynamic, SCIP_Bool removable, SCIP_Bool stickingatnode) Definition: scip.c:22476 SCIP_Real SCIPgetLhsConstantSOC(SCIP *scip, SCIP_CONS *cons) Definition: cons_soc.c:4707 Definition: type_expr.h:37 SCIP_Real SCIPcomputeVarUbLocal(SCIP *scip, SCIP_VAR *var) Definition: scip.c:19472 Definition: type_message.h:43 SCIP_Bool SCIPstrToRealValue(const char *str, SCIP_Real *value, char **endptr) Definition: misc.c:7650 void SCIPintervalSquareRoot(SCIP_Real infinity, SCIP_INTERVAL *resultant, SCIP_INTERVAL operand) Definition: intervalarith.c:1475 Definition: struct_lp.h:188 SCIP_RETCODE SCIPcreateSolCopy(SCIP *scip, SCIP_SOL **sol, SCIP_SOL *sourcesol) Definition: scip.c:31124 void SCIPintervalSquare(SCIP_Real infinity, SCIP_INTERVAL *resultant, SCIP_INTERVAL operand) Definition: intervalarith.c:1403 static SCIP_RETCODE createNlRow(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_CONS *cons) Definition: cons_soc.c:337 SCIP_RETCODE SCIPexprCreate(BMS_BLKMEM *blkmem, SCIP_EXPR **expr, SCIP_EXPROP op,...) Definition: expr.c:5597 SCIP_Real * SCIPgetCoefsLinearVarsQuadratic(SCIP *scip, SCIP_CONS *cons) Definition: cons_quadratic.c:12375 int SCIPgetNQuadVarTermsQuadratic(SCIP *scip, SCIP_CONS *cons) Definition: cons_quadratic.c:12388 Definition: type_var.h:45 void SCIPintervalAdd(SCIP_Real infinity, SCIP_INTERVAL *resultant, SCIP_INTERVAL operand1, SCIP_INTERVAL operand2) Definition: intervalarith.c:673 static SCIP_RETCODE presolveCreateBenTalNemirovskiApproxDim3(SCIP *scip, SCIP_CONS *cons, SCIP_VAR *x1, SCIP_VAR *x2, SCIP_VAR *x3, SCIP_Real alpha1, SCIP_Real alpha2, SCIP_Real alpha3, SCIP_Real offset1, SCIP_Real offset2, SCIP_Real offset3, int N, const char *basename, int *naddconss) Definition: cons_soc.c:2248 void SCIPmarkRowNotRemovableLocal(SCIP *scip, SCIP_ROW *row) Definition: scip.c:25703 SCIP_Real SCIPintervalGetSup(SCIP_INTERVAL interval) Definition: intervalarith.c:459 SCIP_RETCODE SCIPaddLinearCoefToNlRow(SCIP *scip, SCIP_NLROW *nlrow, SCIP_VAR *var, SCIP_Real val) Definition: scip.c:27235 Constraint handler for linear constraints in their most general form, . Definition: struct_expr.h:89 void SCIPverbMessage(SCIP *scip, SCIP_VERBLEVEL msgverblevel, FILE *file, const char *formatstr,...) Definition: scip.c:1256 SCIP_RETCODE SCIPchgVarLbNode(SCIP *scip, SCIP_NODE *node, SCIP_VAR *var, SCIP_Real newbound) Definition: scip.c:18078 SCIP_RETCODE SCIPdropVarEvent(SCIP *scip, SCIP_VAR *var, SCIP_EVENTTYPE eventtype, SCIP_EVENTHDLR *eventhdlr, SCIP_EVENTDATA *eventdata, int filterpos) Definition: scip.c:33424 SCIP_RETCODE SCIPsetConshdlrDelete(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSDELETE((*consdelete))) Definition: scip.c:5309 Definition: type_lp.h:36 SCIP_RETCODE SCIPaddQuadVarToNlRow(SCIP *scip, SCIP_NLROW *nlrow, SCIP_VAR *var) Definition: scip.c:27322 static SCIP_RETCODE propagateBounds(SCIP *scip, SCIP_CONS *cons, SCIP_RESULT *result, int *nchgbds) Definition: cons_soc.c:2666 SCIP_RETCODE SCIPsetConshdlrInitsol(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSINITSOL((*consinitsol))) Definition: scip.c:5175 SCIP_RETCODE SCIPupdateStartpointHeurSubNlp(SCIP *scip, SCIP_HEUR *heur, SCIP_SOL *solcand, SCIP_Real violation) Definition: heur_subnlp.c:2258 SCIP_RETCODE SCIPdropEvent(SCIP *scip, SCIP_EVENTTYPE eventtype, SCIP_EVENTHDLR *eventhdlr, SCIP_EVENTDATA *eventdata, int filterpos) Definition: scip.c:33344 SCIP_RETCODE SCIPsetConshdlrPrint(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSPRINT((*consprint))) Definition: scip.c:5516 SCIP_RETCODE SCIPreleaseNlRow(SCIP *scip, SCIP_NLROW **nlrow) Definition: scip.c:27144 void SCIPinfoMessage(SCIP *scip, FILE *file, const char *formatstr,...) Definition: scip.c:1239 int SCIPgetNBilinTermsQuadratic(SCIP *scip, SCIP_CONS *cons) Definition: cons_quadratic.c:12450 SCIP_RETCODE SCIPcreateConsLinear(SCIP *scip, SCIP_CONS **cons, const char *name, int nvars, SCIP_VAR **vars, SCIP_Real *vals, SCIP_Real lhs, SCIP_Real rhs, SCIP_Bool initial, SCIP_Bool separate, SCIP_Bool enforce, SCIP_Bool check, SCIP_Bool propagate, SCIP_Bool local, SCIP_Bool modifiable, SCIP_Bool dynamic, SCIP_Bool removable, SCIP_Bool stickingatnode) Definition: cons_linear.c:14821 void SCIPintervalSetRoundingModeUpwards(void) Definition: intervalarith.c:398 SCIP_RETCODE SCIPsetConshdlrExitsol(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSEXITSOL((*consexitsol))) Definition: scip.c:5199 SCIP_RETCODE SCIPprintNlRow(SCIP *scip, SCIP_NLROW *nlrow, FILE *file) Definition: scip.c:27857 NLP local search primal heuristic using sub-SCIPs. SCIP_Bool SCIPisFeasLE(SCIP *scip, SCIP_Real val1, SCIP_Real val2) Definition: scip.c:38686 SCIP_RETCODE SCIPlockVarCons(SCIP *scip, SCIP_VAR *var, SCIP_CONS *cons, SCIP_Bool lockdown, SCIP_Bool lockup) Definition: scip.c:17642 SCIP_RETCODE SCIPaddCharParam(SCIP *scip, const char *name, const char *desc, char *valueptr, SCIP_Bool isadvanced, char defaultvalue, const char *allowedvalues, SCIP_DECL_PARAMCHGD((*paramchgd)), SCIP_PARAMDATA *paramdata) Definition: scip.c:3498 SCIP_RETCODE SCIPtightenVarUb(SCIP *scip, SCIP_VAR *var, SCIP_Real newbound, SCIP_Bool force, SCIP_Bool *infeasible, SCIP_Bool *tightened) Definition: scip.c:18477 void SCIPintervalMulScalar(SCIP_Real infinity, SCIP_INTERVAL *resultant, SCIP_INTERVAL operand1, SCIP_Real operand2) Definition: intervalarith.c:1096 SCIP_RETCODE SCIPcreateEmptyRowCons(SCIP *scip, SCIP_ROW **row, SCIP_CONSHDLR *conshdlr, const char *name, SCIP_Real lhs, SCIP_Real rhs, SCIP_Bool local, SCIP_Bool modifiable, SCIP_Bool removable) Definition: scip.c:25276 SCIP_RETCODE SCIPcreateLPSol(SCIP *scip, SCIP_SOL **sol, SCIP_HEUR *heur) Definition: scip.c:30898 static SCIP_RETCODE evalLhs(SCIP *scip, SCIP_CONS *cons, SCIP_SOL *sol) Definition: cons_soc.c:670 Definition: struct_nlp.h:62 SCIP_Bool SCIPisFeasGE(SCIP *scip, SCIP_Real val1, SCIP_Real val2) Definition: scip.c:38724 SCIP_RETCODE SCIPgetNlRowSOC(SCIP *scip, SCIP_CONS *cons, SCIP_NLROW **nlrow) Definition: cons_soc.c:4629 SCIP_RETCODE SCIPincludeQuadconsUpgrade(SCIP *scip, SCIP_DECL_QUADCONSUPGD((*quadconsupgd)), int priority, SCIP_Bool active, const char *conshdlrname) Definition: cons_quadratic.c:11693 SCIP_RETCODE SCIPchgVarLbGlobal(SCIP *scip, SCIP_VAR *var, SCIP_Real newbound) Definition: scip.c:18150 #define SCIPduplicateBlockMemoryArray(scip, ptr, source, num) Definition: scip.h:19198 SCIP_RETCODE SCIPnlpiAddConstraints(SCIP_NLPI *nlpi, SCIP_NLPIPROBLEM *problem, int nconss, const SCIP_Real *lhss, const SCIP_Real *rhss, const int *nlininds, int *const *lininds, SCIP_Real *const *linvals, const int *nquadelems, SCIP_QUADELEM *const *quadelems, int *const *exprvaridxs, SCIP_EXPRTREE *const *exprtrees, const char **names) Definition: nlpi.c:268 static SCIP_RETCODE addLinearizationCuts(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_CONS **conss, int nconss, SCIP_SOL *ref, SCIP_Bool *separatedlpsol, SCIP_Real minefficacy, SCIP_Bool *cutoff) Definition: cons_soc.c:1411 SCIP_RETCODE SCIPsetNLPInitialGuessSol(SCIP *scip, SCIP_SOL *sol) Definition: scip.c:26411 Definition: type_retcode.h:45 SCIP_RETCODE SCIPsetConshdlrExit(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSEXIT((*consexit))) Definition: scip.c:5151 SCIP_RETCODE SCIPaddVarLocks(SCIP *scip, SCIP_VAR *var, int nlocksdown, int nlocksup) Definition: scip.c:17590 SCIP_RETCODE SCIPcreateConsQuadratic2(SCIP *scip, SCIP_CONS **cons, const char *name, int nlinvars, SCIP_VAR **linvars, SCIP_Real *lincoefs, int nquadvarterms, SCIP_QUADVARTERM *quadvarterms, int nbilinterms, SCIP_BILINTERM *bilinterms, SCIP_Real lhs, SCIP_Real rhs, SCIP_Bool initial, SCIP_Bool separate, SCIP_Bool enforce, SCIP_Bool check, SCIP_Bool propagate, SCIP_Bool local, SCIP_Bool modifiable, SCIP_Bool dynamic, SCIP_Bool removable) Definition: cons_quadratic.c:11993 void SCIPintervalSub(SCIP_Real infinity, SCIP_INTERVAL *resultant, SCIP_INTERVAL operand1, SCIP_INTERVAL operand2) Definition: intervalarith.c:780 Definition: type_result.h:45 SCIP_RETCODE SCIPcreateChild(SCIP *scip, SCIP_NODE **node, SCIP_Real nodeselprio, SCIP_Real estimate) Definition: scip.c:30565 static SCIP_DECL_QUADCONSUPGD(upgradeConsQuadratic) Definition: cons_soc.c:2940 static SCIP_RETCODE generateCutPoint(SCIP *scip, SCIP_CONS *cons, SCIP_Real *x, SCIP_ROW **row) Definition: cons_soc.c:960 Definition: struct_expr.h:55 SCIP_Real SCIPgetLhsQuadratic(SCIP *scip, SCIP_CONS *cons) Definition: cons_quadratic.c:12477 Definition: type_retcode.h:43 Definition: type_expr.h:48 SCIP_RETCODE SCIPexprCreateLinear(BMS_BLKMEM *blkmem, SCIP_EXPR **expr, int nchildren, SCIP_EXPR **children, SCIP_Real *coefs, SCIP_Real constant) Definition: expr.c:6124 void SCIPintervalAddScalar(SCIP_Real infinity, SCIP_INTERVAL *resultant, SCIP_INTERVAL operand1, SCIP_Real operand2) Definition: intervalarith.c:700 SCIP_RETCODE SCIPaddRealParam(SCIP *scip, const char *name, const char *desc, SCIP_Real *valueptr, SCIP_Bool isadvanced, SCIP_Real defaultvalue, SCIP_Real minvalue, SCIP_Real maxvalue, SCIP_DECL_PARAMCHGD((*paramchgd)), SCIP_PARAMDATA *paramdata) Definition: scip.c:3470 SCIP_RETCODE SCIPsetConshdlrGetNVars(SCIP *scip, SCIP_CONSHDLR *conshdlr, SCIP_DECL_CONSGETNVARS((*consgetnvars))) Definition: scip.c:5585 SCIP_RETCODE SCIPaddVarToRow(SCIP *scip, SCIP_ROW *row, SCIP_VAR *var, SCIP_Real val) Definition: scip.c:25540 int SCIPnlrowSearchQuadVar(SCIP_NLROW *nlrow, SCIP_VAR *var) Definition: nlp.c:3285 SCIP_Real SCIPgetCutEfficacy(SCIP *scip, SCIP_SOL *sol, SCIP_ROW *cut) Definition: scip.c:28125 SCIP_ROUNDMODE SCIPintervalGetRoundingMode(void) Definition: intervalarith.c:196 Definition: nlpi_ipopt.cpp:123 SCIP_Real SCIPgetRhsQuadratic(SCIP *scip, SCIP_CONS *cons) Definition: cons_quadratic.c:12490 SCIP_RETCODE SCIPexprtreeAddVars(SCIP_EXPRTREE *tree, int nvars, SCIP_VAR **vars) Definition: nlp.c:143 void SCIPintervalSetRoundingModeDownwards(void) Definition: intervalarith.c:390 Definition: type_result.h:39 Definition: struct_event.h:185 SCIP_RETCODE SCIPcatchEvent(SCIP *scip, SCIP_EVENTTYPE eventtype, SCIP_EVENTHDLR *eventhdlr, SCIP_EVENTDATA *eventdata, int *filterpos) Definition: scip.c:33310 static SCIP_RETCODE catchVarEvents(SCIP *scip, SCIP_EVENTHDLR *eventhdlr, SCIP_CONS *cons) Definition: cons_soc.c:194 Definition: type_expr.h:46 SCIP_Real * SCIPgetLhsOffsetsSOC(SCIP *scip, SCIP_CONS *cons) Definition: cons_soc.c:4694 Definition: struct_nlpi.h:35 Definition: type_var.h:56 |