20 #include "absl/container/flat_hash_map.h"
21 #include "absl/container/flat_hash_set.h"
22 #include "absl/status/status.h"
23 #include "absl/strings/str_cat.h"
24 #include "absl/strings/str_format.h"
25 #include "absl/types/optional.h"
35 model_validator_infinity, 1e100,
36 "Anything above or equal to this magnitude will be considered infinity.");
42 return std::isfinite(
value) &&
value < FLAGS_model_validator_infinity &&
43 value > -FLAGS_model_validator_infinity;
48 template <
typename BoundedElement>
49 std::string FindErrorInBounds(
const BoundedElement& element) {
50 if (std::isnan(element.lower_bound()) || std::isnan(element.upper_bound()) ||
51 element.lower_bound() >= FLAGS_model_validator_infinity ||
52 element.upper_bound() <= -FLAGS_model_validator_infinity ||
53 element.lower_bound() > element.upper_bound()) {
54 return absl::StrFormat(
"Infeasible bounds: [%f, %f]", element.lower_bound(),
55 element.upper_bound());
61 std::string FindErrorInMPVariable(
const MPVariableProto& variable) {
62 const std::string bound_error = FindErrorInBounds(variable);
63 if (!bound_error.empty())
return bound_error;
65 if (variable.is_integer() &&
66 ceil(variable.lower_bound()) > floor(variable.upper_bound())) {
68 "Infeasible bounds for integer variable: [", (variable.lower_bound()),
69 ", ", (variable.upper_bound()),
"]",
" translate to the empty set");
71 if (!
IsFinite(variable.objective_coefficient())) {
72 return absl::StrCat(
"Invalid objective_coefficient: ",
73 (variable.objective_coefficient()));
79 template <
typename Iterable>
80 std::string FindDuplicateVarIndex(
const Iterable&
var_indices,
81 std::vector<bool>* var_mask) {
82 int duplicate_var_index = -1;
84 if ((*var_mask)[var_index]) duplicate_var_index = var_index;
85 (*var_mask)[var_index] =
true;
89 (*var_mask)[var_index] =
false;
91 if (duplicate_var_index >= 0) {
92 return absl::StrCat(
"var_index #", duplicate_var_index,
93 " appears several times");
101 std::string FindErrorInMPConstraint(
const MPConstraintProto& constraint,
102 std::vector<bool>* var_mask) {
103 const std::string bound_error = FindErrorInBounds(constraint);
104 if (!bound_error.empty())
return bound_error;
109 const int num_vars_in_model = var_mask->size();
110 const int num_vars_in_ct = constraint.var_index_size();
111 const int num_coeffs_in_ct = constraint.coefficient_size();
112 if (num_vars_in_ct != num_coeffs_in_ct) {
113 return absl::StrCat(
"var_index_size() != coefficient_size() (",
114 num_vars_in_ct,
" VS ", num_coeffs_in_ct);
116 for (
int i = 0; i < num_vars_in_ct; ++i) {
117 const int var_index = constraint.var_index(i);
118 if (var_index >= num_vars_in_model || var_index < 0) {
119 return absl::StrCat(
"var_index(", i,
")=", var_index,
120 " is out of bounds");
122 const double coeff = constraint.coefficient(i);
124 return absl::StrCat(
"coefficient(", i,
")=", (coeff),
" is invalid");
128 const std::string error =
129 FindDuplicateVarIndex(constraint.var_index(), var_mask);
130 if (!error.empty())
return error;
133 return std::string();
136 std::string CroppedConstraintDebugString(
const MPConstraintProto& constraint) {
137 const int kMaxPrintedVars = 10;
139 MPConstraintProto constraint_light = constraint;
140 std::string suffix_str;
141 if (constraint.var_index_size() > kMaxPrintedVars) {
142 constraint_light.mutable_var_index()->Truncate(kMaxPrintedVars);
143 absl::StrAppend(&suffix_str,
144 " (var_index cropped; size=", constraint.var_index_size(),
147 if (constraint.coefficient_size() > kMaxPrintedVars) {
148 constraint_light.mutable_coefficient()->Truncate(kMaxPrintedVars);
149 absl::StrAppend(&suffix_str,
" (coefficient cropped; size=",
150 constraint.coefficient_size(),
").");
152 return absl::StrCat(
"Constraint proto: ",
156 bool IsBoolean(
const MPVariableProto& variable) {
157 if (variable.lower_bound() < 0)
return false;
158 if (variable.upper_bound() > 1)
return false;
159 return variable.is_integer();
162 std::string FindErrorInMPIndicatorConstraint(
163 const MPModelProto&
model,
const MPIndicatorConstraint& indicator,
164 std::vector<bool>* var_mask) {
165 if (!indicator.has_var_index()) {
166 return "var_index is required.";
168 const int var_index = indicator.var_index();
169 if (var_index < 0 || var_index >=
model.variable_size()) {
170 return absl::StrCat(
"var_index=", var_index,
" is out of bounds.");
172 if (!IsBoolean(
model.variable(var_index))) {
173 return absl::StrCat(
"var_index=", var_index,
" is not Boolean.");
175 const int var_value = indicator.var_value();
176 if (var_value < 0 || var_value > 1) {
177 return absl::StrCat(
"var_value=", var_value,
" must be 0 or 1.");
179 const MPConstraintProto& constraint = indicator.constraint();
180 std::string error = FindErrorInMPConstraint(constraint, var_mask);
181 if (!error.empty()) {
184 return absl::StrCat(error,
" in constraint ",
185 CroppedConstraintDebugString(constraint));
190 std::string FindErrorInMPSosConstraint(
const MPModelProto&
model,
191 const MPSosConstraint& sos,
192 std::vector<bool>* var_mask) {
193 if (sos.weight_size() != 0 && sos.weight_size() != sos.var_index_size()) {
194 return "weight_size() > 0 and var_index_size() != weight_size()";
196 for (
const int var_index : sos.var_index()) {
197 if (var_index < 0 || var_index >=
model.variable_size()) {
198 return absl::StrCat(
"var_index=", var_index,
" is out of bounds.");
201 for (
int i = 0; i < sos.weight_size(); ++i) {
203 return absl::StrCat(
"Invalid weight: ", sos.weight(i));
205 if (i == 0)
continue;
206 if (sos.weight(i - 1) >= sos.weight(i)) {
207 return "SOS weights must be strictly increasing";
211 const std::string error = FindDuplicateVarIndex(sos.var_index(), var_mask);
212 if (!error.empty())
return error;
217 std::string FindErrorInMPQuadraticConstraint(
const MPModelProto&
model,
218 const MPQuadraticConstraint& qcst,
219 std::vector<bool>* var_mask) {
220 const int num_vars =
model.variable_size();
222 if (qcst.var_index_size() != qcst.coefficient_size()) {
223 return "var_index_size() != coefficient_size()";
226 const std::string bound_error = FindErrorInBounds(qcst);
227 if (!bound_error.empty())
return bound_error;
229 for (
int i = 0; i < qcst.var_index_size(); ++i) {
230 if (qcst.var_index(i) < 0 || qcst.var_index(i) >= num_vars) {
231 return absl::StrCat(
"var_index(", i,
")=", qcst.var_index(i),
232 " is invalid.",
" It must be in [0, ", num_vars,
")");
235 if (!
IsFinite(qcst.coefficient(i))) {
236 return absl::StrCat(
"coefficient(", i,
")=", qcst.coefficient(i),
240 const std::string duplicate_error =
241 FindDuplicateVarIndex(qcst.var_index(), var_mask);
242 if (!duplicate_error.empty())
return duplicate_error;
244 if (qcst.qvar1_index_size() != qcst.qvar2_index_size() ||
245 qcst.qvar1_index_size() != qcst.qcoefficient_size()) {
246 return "quadratic indices and coefficients must have the same size";
248 for (
int i = 0; i < qcst.qvar1_index_size(); ++i) {
249 if (qcst.qvar1_index(i) >= num_vars || qcst.qvar1_index(i) < 0) {
250 return absl::StrCat(
"qvar1_index(", i,
")=", qcst.qvar1_index(i),
251 " is invalid.",
" It must be in [0, ", num_vars,
")");
254 if (qcst.qvar2_index(i) >= num_vars || qcst.qvar2_index(i) < 0) {
255 return absl::StrCat(
"qvar2_index(", i,
")=", qcst.qvar2_index(i),
256 " is invalid.",
" It must be in [0, ", num_vars,
")");
259 if (!
IsFinite(qcst.qcoefficient(i))) {
260 return absl::StrCat(
"qcoefficient(", i,
")=", qcst.qcoefficient(i),
268 std::string FindErrorInMPAbsConstraint(
const MPModelProto&
model,
269 const MPAbsConstraint& abs) {
270 if (!abs.has_var_index()) {
271 return "var_index is required.";
273 if (!abs.has_resultant_var_index()) {
274 return "resultant_var_index is required.";
277 const int num_vars =
model.variable_size();
278 if (abs.var_index() < 0 || abs.var_index() >= num_vars) {
279 return absl::StrCat(
"var_index=", abs.var_index(),
" is invalid.",
280 " It must be in [0, ", num_vars,
")");
282 if (abs.resultant_var_index() < 0 || abs.resultant_var_index() >= num_vars) {
283 return absl::StrCat(
"var_index=", abs.resultant_var_index(),
" is invalid.",
284 " It must be in [0, ", num_vars,
")");
289 std::string FindErrorInMPAndOrConstraint(
const MPModelProto&
model,
290 const MPArrayConstraint& and_or) {
291 if (and_or.var_index_size() == 0) {
292 return "var_index cannot be empty.";
294 if (!and_or.has_resultant_var_index()) {
295 return "resultant_var_index is required.";
298 const int num_vars =
model.variable_size();
299 for (
int i = 0; i < and_or.var_index_size(); ++i) {
300 if (and_or.var_index(i) < 0 || and_or.var_index(i) >= num_vars) {
301 return absl::StrCat(
"var_index(", i,
")=", and_or.var_index(i),
302 " is invalid.",
" It must be in [0, ", num_vars,
")");
304 if (!IsBoolean(
model.variable(and_or.var_index(i)))) {
305 return absl::StrCat(
"var_index=", i,
" is not Boolean.");
308 if (and_or.resultant_var_index() < 0 ||
309 and_or.resultant_var_index() >= num_vars) {
310 return absl::StrCat(
"resultant_var_index=", and_or.resultant_var_index(),
311 " is invalid.",
" It must be in [0, ", num_vars,
")");
313 if (!IsBoolean(
model.variable(and_or.resultant_var_index()))) {
314 return absl::StrCat(
"resultant_var_index is not Boolean.");
319 std::string FindErrorInMPMinMaxConstraint(
320 const MPModelProto&
model,
const MPArrayWithConstantConstraint& min_max) {
321 if (min_max.var_index_size() == 0) {
322 return "var_index cannot be empty.";
324 if (!min_max.has_resultant_var_index()) {
325 return "resultant_var_index is required.";
328 if (!
IsFinite(min_max.constant())) {
329 return absl::StrCat(
"Invalid constant: ", (min_max.constant()));
332 const int num_vars =
model.variable_size();
333 for (
int i = 0; i < min_max.var_index_size(); ++i) {
334 if (min_max.var_index(i) < 0 || min_max.var_index(i) >= num_vars) {
335 return absl::StrCat(
"var_index(", i,
")=", min_max.var_index(i),
336 " is invalid.",
" It must be in [0, ", num_vars,
")");
339 if (min_max.resultant_var_index() < 0 ||
340 min_max.resultant_var_index() >= num_vars) {
341 return absl::StrCat(
"resultant_var_index=", min_max.resultant_var_index(),
342 " is invalid.",
" It must be in [0, ", num_vars,
")");
347 std::string FindErrorInQuadraticObjective(
const MPQuadraticObjective& qobj,
349 if (qobj.qvar1_index_size() != qobj.qvar2_index_size() ||
350 qobj.qvar1_index_size() != qobj.coefficient_size()) {
351 return "indices and coefficients must have the same size";
354 for (
int i = 0; i < qobj.qvar1_index_size(); ++i) {
355 if (qobj.qvar1_index(i) >= num_vars || qobj.qvar1_index(i) < 0) {
356 return absl::StrCat(
"qvar1_index(", i,
")=", qobj.qvar1_index(i),
357 " is invalid.",
" It must be in [0, ", num_vars,
")");
360 if (qobj.qvar2_index(i) >= num_vars || qobj.qvar2_index(i) < 0) {
361 return absl::StrCat(
"qvar2_index(", i,
")=", qobj.qvar2_index(i),
362 " is invalid.",
" It must be in [0, ", num_vars,
")");
365 if (!
IsFinite(qobj.coefficient(i))) {
366 return absl::StrCat(
"coefficient(", i,
")=", (qobj.coefficient(i)),
373 std::string FindErrorInSolutionHint(
374 const PartialVariableAssignment& solution_hint,
int num_vars) {
375 if (solution_hint.var_index_size() != solution_hint.var_value_size()) {
376 return absl::StrCat(
"var_index_size() != var_value_size() [",
377 solution_hint.var_index_size(),
" VS ",
378 solution_hint.var_value_size());
380 std::vector<bool> var_in_hint(num_vars,
false);
381 for (
int i = 0; i < solution_hint.var_index_size(); ++i) {
382 const int var_index = solution_hint.var_index(i);
383 if (var_index >= num_vars || var_index < 0) {
384 return absl::StrCat(
"var_index(", i,
")=", var_index,
" is invalid.",
385 " It must be in [0, ", num_vars,
")");
387 if (var_in_hint[var_index]) {
388 return absl::StrCat(
"Duplicate var_index = ", var_index);
390 var_in_hint[var_index] =
true;
391 if (!
IsFinite(solution_hint.var_value(i))) {
392 return absl::StrCat(
"var_value(", i,
")=", (solution_hint.var_value(i)),
396 return std::string();
406 return absl::StrCat(
"Invalid objective_offset: ",
407 (
model.objective_offset()));
409 const int num_vars =
model.variable_size();
410 const int num_cts =
model.constraint_size();
414 for (
int i = 0; i < num_vars; ++i) {
415 error = FindErrorInMPVariable(
model.variable(i));
416 if (!error.empty()) {
417 return absl::StrCat(
"In variable #", i,
": ", error,
". Variable proto: ",
423 std::vector<bool> variable_appears(num_vars,
false);
424 for (
int i = 0; i < num_cts; ++i) {
425 const MPConstraintProto& constraint =
model.constraint(i);
426 error = FindErrorInMPConstraint(constraint, &variable_appears);
427 if (!error.empty()) {
429 return absl::StrCat(
"In constraint #", i,
": ", error,
". ",
430 CroppedConstraintDebugString(constraint));
435 for (
int i = 0; i <
model.general_constraint_size(); ++i) {
436 const MPGeneralConstraintProto& gen_constraint =
437 model.general_constraint(i);
439 switch (gen_constraint.general_constraint_case()) {
440 case MPGeneralConstraintProto::kIndicatorConstraint:
441 error = FindErrorInMPIndicatorConstraint(
442 model, gen_constraint.indicator_constraint(), &variable_appears);
445 case MPGeneralConstraintProto::kSosConstraint:
446 error = FindErrorInMPSosConstraint(
447 model, gen_constraint.sos_constraint(), &variable_appears);
450 case MPGeneralConstraintProto::kQuadraticConstraint:
451 error = FindErrorInMPQuadraticConstraint(
452 model, gen_constraint.quadratic_constraint(), &variable_appears);
455 case MPGeneralConstraintProto::kAbsConstraint:
457 FindErrorInMPAbsConstraint(
model, gen_constraint.abs_constraint());
460 case MPGeneralConstraintProto::kAndConstraint:
461 error = FindErrorInMPAndOrConstraint(
model,
462 gen_constraint.and_constraint());
465 case MPGeneralConstraintProto::kOrConstraint:
467 FindErrorInMPAndOrConstraint(
model, gen_constraint.or_constraint());
470 case MPGeneralConstraintProto::kMinConstraint:
471 error = FindErrorInMPMinMaxConstraint(
model,
472 gen_constraint.min_constraint());
475 case MPGeneralConstraintProto::kMaxConstraint:
476 error = FindErrorInMPMinMaxConstraint(
model,
477 gen_constraint.max_constraint());
480 return absl::StrCat(
"Unknown general constraint type ",
481 gen_constraint.general_constraint_case());
483 if (!error.empty()) {
484 return absl::StrCat(
"In general constraint #", i,
": ", error);
489 if (
model.has_quadratic_objective()) {
491 FindErrorInQuadraticObjective(
model.quadratic_objective(), num_vars);
492 if (!error.empty())
return absl::StrCat(
"In quadratic_objective: ", error);
496 error = FindErrorInSolutionHint(
model.solution_hint(), num_vars);
497 if (!error.empty()) {
498 return absl::StrCat(
"In solution_hint(): ", error);
501 return std::string();
504 absl::optional<LazyMutableCopy<MPModelProto>>
509 if (!request.has_model() && !request.has_model_delta()) {
511 response->set_status_str(
"Requests without model are considered OPTIMAL");
512 return absl::nullopt;
514 if (request.has_model() && request.has_model_delta()) {
517 "Fields 'model' and 'model_delta' are mutually exclusive");
518 return absl::nullopt;
523 if (request.has_model_delta()) {
526 std::string contents;
528 request.model_delta().baseline_model_file_path(), &contents);
529 if (!file_read_status.ok()) {
532 "Error when reading model_delta.baseline_model_file_path: '" +
533 file_read_status.ToString());
534 return absl::nullopt;
536 if (!
model.get_mutable()->ParseFromString(contents)) {
539 absl::StrFormat(
"The contents of baseline model file '%s' couldn't "
540 "be parsed as a raw serialized MPModelProto",
541 request.model_delta().baseline_model_file_path()));
542 return absl::nullopt;
551 if (error.empty() && request.has_model_delta()) {
552 const MPModelDeltaProto&
delta = request.model_delta();
558 if (!error.empty()) {
559 if (request.enable_internal_solver_output()) {
560 LOG(ERROR) << absl::StrCat(
"Invalid model: ", error);
562 response->set_status(error.find(
"Infeasible") == std::string::npos
566 return absl::nullopt;
569 if (
model.get().variable_size() == 0 &&
model.get().constraint_size() == 0 &&
570 model.get().general_constraint_size() == 0) {
572 response->set_objective_value(
model.get().objective_offset());
575 "Requests without variables and constraints are considered OPTIMAL");
576 return absl::nullopt;
579 return std::move(
model);
583 MPModelRequest* request, MPSolutionResponse*
response) {
584 absl::optional<LazyMutableCopy<MPModelProto>> lazy_copy =
586 if (!lazy_copy)
return false;
587 if (lazy_copy->was_copied()) {
588 lazy_copy->get_mutable()->Swap(request->mutable_model());
597 const int num_vars =
model.variable_size();
600 std::string error = FindErrorInSolutionHint(
model.solution_hint(), num_vars);
601 if (!error.empty())
return absl::StrCat(
"Invalid solution_hint: ", error);
604 if (num_vars > 0 &&
model.solution_hint().var_index_size() == 0) {
605 return "Empty solution_hint.";
609 if (
model.solution_hint().var_index_size() != num_vars) {
610 return absl::StrCat(
"Partial solution_hint: only ",
611 model.solution_hint().var_index_size(),
" out of the ",
612 num_vars,
" problem variables are set.");
616 std::vector<double> var_value(num_vars);
617 for (
int i = 0; i <
model.solution_hint().var_index_size(); ++i) {
618 const int var_index =
model.solution_hint().var_index(i);
619 const double value =
model.solution_hint().var_value(i);
620 var_value[var_index] =
value;
621 const double lb =
model.variable(var_index).lower_bound();
622 const double ub =
model.variable(var_index).upper_bound();
625 return absl::StrCat(
"Variable '",
model.variable(var_index).name(),
626 "' is set to ", (
value),
627 " which is not in the variable bounds [", (lb),
", ",
628 (ub),
"] modulo a tolerance of ", (tolerance),
".");
633 for (
int cst_index = 0; cst_index <
model.constraint_size(); ++cst_index) {
634 const MPConstraintProto& constraint =
model.constraint(cst_index);
636 for (
int j = 0; j < constraint.var_index_size(); ++j) {
637 activity.
Add(constraint.coefficient(j) *
638 var_value[constraint.var_index(j)]);
640 const double lb =
model.constraint(cst_index).lower_bound();
641 const double ub =
model.constraint(cst_index).upper_bound();
645 "Constraint '",
model.constraint(cst_index).name(),
"' has activity ",
646 (activity.
Value()),
" which is not in the constraint bounds [", (lb),
647 ", ", (ub),
"] modulo a tolerance of ", (tolerance),
".");
655 const MPModelProto&
model) {
656 int num_vars =
model.variable_size();
659 absl::flat_hash_set<int> new_var_indices;
660 int max_var_index = num_vars - 1;
661 MPVariableProto tmp_var_proto;
662 for (
const auto& pair :
delta.variable_overrides()) {
663 const int var_index = pair.first;
664 const MPVariableProto& var_override_proto = pair.second;
666 error =
"Invalid key";
667 }
else if (var_index >= num_vars) {
668 max_var_index =
std::max(max_var_index, var_index);
669 new_var_indices.insert(var_index);
670 error = FindErrorInMPVariable(var_override_proto);
672 tmp_var_proto =
model.variable(var_index);
675 tmp_var_proto.MergeFrom(var_override_proto);
676 error = FindErrorInMPVariable(tmp_var_proto);
678 if (!error.empty()) {
679 return absl::StrFormat(
680 "variable_overrides with key (eg. var index) = %d: %s", var_index,
684 if (max_var_index != num_vars + new_var_indices.size() - 1) {
685 return absl::StrFormat(
686 "The added and existing variable indices do not form a dense integer "
687 "interval: oldmax=%d, max=%d, num added=%d",
688 num_vars - 1, max_var_index, new_var_indices.size());
691 num_vars += new_var_indices.size();
698 std::vector<bool> variable_appears(num_vars,
false);
699 MPConstraintProto tmp_constraint_proto;
700 const int num_constraints =
model.constraint_size();
701 absl::flat_hash_set<int> new_ct_indices;
702 int max_ct_index = num_constraints - 1;
703 for (
const auto& pair :
delta.constraint_overrides()) {
704 const int ct_index = pair.first;
705 const MPConstraintProto& constraint_override_proto = pair.second;
707 error =
"Invalid constraint index";
708 }
else if (ct_index >= num_constraints) {
709 max_ct_index =
std::max(max_ct_index, ct_index);
710 new_ct_indices.insert(ct_index);
712 FindErrorInMPConstraint(constraint_override_proto, &variable_appears);
721 tmp_constraint_proto.Clear();
723 &tmp_constraint_proto);
724 tmp_constraint_proto.MergeFrom(constraint_override_proto);
725 error = FindErrorInMPConstraint(tmp_constraint_proto, &variable_appears);
727 if (!error.empty()) {
728 return absl::StrFormat(
729 "constraint_overrides with key (eg. constraint index) = %d: %s",
733 if (max_ct_index != num_constraints + new_ct_indices.size() - 1) {
734 return absl::StrFormat(
735 "The added and existing constraint indices do not form a dense integer "
736 "interval: oldmax=%d, max=%d, num added=%d",
737 num_constraints - 1, max_ct_index, new_ct_indices.size());
744 MPConstraintProto* to) {
745 #define COPY_FIELD_IF_PRESENT(field) \
746 if (from.has_##field()) to->set_##field(from.field())
751 #undef COPY_FIELD_IF_PRESENT
755 void PruneZeroTermsInMpConstraint(MPConstraintProto*
ct) {
759 while (first_zero < ct->var_index_size() &&
760 ct->coefficient(first_zero) != 0.0) {
763 int num_kept = first_zero;
764 for (
int i = first_zero; i <
ct->var_index_size(); ++i) {
765 if (
ct->coefficient(i) == 0.0)
continue;
767 ct->set_var_index(num_kept,
ct->var_index(i));
768 ct->set_coefficient(num_kept,
ct->coefficient(i));
772 ct->mutable_var_index()->Truncate(num_kept);
773 ct->mutable_coefficient()->Truncate(num_kept);
780 void ExtendRepeatedPtrFieldToSize(
const int size, T* repeated_messages) {
781 DCHECK_GE(size, repeated_messages->size());
782 while (repeated_messages->size() < size) repeated_messages->Add();
787 MPModelProto*
model) {
789 int max_var_index = -1;
790 for (
const auto& p :
delta.variable_overrides()) {
791 max_var_index =
std::max(max_var_index, p.first);
793 if (max_var_index >=
model->variable_size()) {
794 ExtendRepeatedPtrFieldToSize(max_var_index + 1,
model->mutable_variable());
797 for (
const auto& p :
delta.variable_overrides()) {
798 model->mutable_variable(p.first)->MergeFrom(p.second);
802 int max_ct_index = -1;
803 for (
const auto& p :
delta.constraint_overrides()) {
804 max_ct_index =
std::max(max_ct_index, p.first);
806 const int old_num_constraints =
model->constraint_size();
807 if (max_ct_index >= old_num_constraints) {
808 ExtendRepeatedPtrFieldToSize(max_ct_index + 1,
model->mutable_constraint());
811 for (
const auto& p :
delta.constraint_overrides()) {
812 const MPConstraintProto& override_ct = p.second;
813 MPConstraintProto* baseline =
model->mutable_constraint(p.first);
815 if (p.first >= old_num_constraints) {
816 *baseline = override_ct;
821 if (override_ct.has_lower_bound() &&
822 override_ct.lower_bound() <= -FLAGS_model_validator_infinity &&
823 override_ct.has_upper_bound() &&
824 override_ct.upper_bound() >= FLAGS_model_validator_infinity) {
825 baseline->clear_var_index();
826 baseline->clear_coefficient();
833 absl::flat_hash_map<int, double> term_overrides;
834 term_overrides.reserve(override_ct.var_index_size());
835 for (
int i = 0; i < override_ct.var_index_size(); ++i) {
836 term_overrides[override_ct.var_index(i)] = override_ct.coefficient(i);
838 for (
int i = 0; i < baseline->var_index_size(); ++i) {
839 auto it = term_overrides.find(baseline->var_index(i));
840 if (it == term_overrides.end())
continue;
841 baseline->set_coefficient(i, it->second);
844 PruneZeroTermsInMpConstraint(baseline);
846 for (
const auto& p : term_overrides) {
847 if (p.second != 0.0) {
848 baseline->add_var_index(p.first);
849 baseline->add_coefficient(p.second);