Files
ortools-clone/examples/cpp/integer_programming.cc

99 lines
3.4 KiB
C++
Raw Normal View History

2022-06-17 08:40:20 +02:00
// Copyright 2010-2022 Google LLC
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
// Integer programming example that shows how to use the API.
2022-09-09 16:49:24 +02:00
#include <string>
#include <vector>
2021-01-14 10:48:19 +01:00
#include "absl/strings/match.h"
#include "absl/strings/string_view.h"
2022-02-25 09:47:52 +01:00
#include "ortools/base/init_google.h"
#include "ortools/base/logging.h"
#include "ortools/linear_solver/linear_solver.h"
namespace operations_research {
2021-01-14 10:48:19 +01:00
void RunIntegerProgrammingExample(absl::string_view solver_id) {
LOG(INFO) << "---- Integer programming example with " << solver_id << " ----";
2020-06-24 19:04:13 +02:00
MPSolver::OptimizationProblemType problem_type;
if (!MPSolver::ParseSolverType(solver_id, &problem_type)) {
LOG(INFO) << "Solver id " << solver_id << " not recognized";
2020-06-25 10:33:13 +02:00
return;
}
if (!MPSolver::SupportsProblemType(problem_type)) {
LOG(INFO) << "Supports for solver " << solver_id << " not linked in.";
return;
}
MPSolver solver("IntegerProgrammingExample", problem_type);
2020-06-24 19:04:13 +02:00
2020-06-25 10:33:13 +02:00
const double infinity = solver.infinity();
2018-11-22 13:15:13 +01:00
// x and y are integer non-negative variables.
2020-10-29 14:25:39 +01:00
MPVariable* const x = solver.MakeIntVar(0.0, infinity, "x");
MPVariable* const y = solver.MakeIntVar(0.0, infinity, "y");
2018-11-22 13:15:13 +01:00
// Maximize x + 10 * y.
2020-10-29 14:25:39 +01:00
MPObjective* const objective = solver.MutableObjective();
2018-11-22 13:15:13 +01:00
objective->SetCoefficient(x, 1);
objective->SetCoefficient(y, 10);
objective->SetMaximization();
2018-11-22 13:15:13 +01:00
// x + 7 * y <= 17.5.
2020-10-29 14:25:39 +01:00
MPConstraint* const c0 = solver.MakeRowConstraint(-infinity, 17.5);
2018-11-22 13:15:13 +01:00
c0->SetCoefficient(x, 1);
c0->SetCoefficient(y, 7);
2018-11-22 13:15:13 +01:00
// x <= 3.5
2020-10-29 14:25:39 +01:00
MPConstraint* const c1 = solver.MakeRowConstraint(-infinity, 3.5);
2018-11-22 13:15:13 +01:00
c1->SetCoefficient(x, 1);
c1->SetCoefficient(y, 0);
2020-06-25 10:33:13 +02:00
LOG(INFO) << "Number of variables = " << solver.NumVariables();
LOG(INFO) << "Number of constraints = " << solver.NumConstraints();
2020-06-25 10:33:13 +02:00
const MPSolver::ResultStatus result_status = solver.Solve();
2018-11-22 13:15:13 +01:00
// Check that the problem has an optimal solution.
if (result_status != MPSolver::OPTIMAL) {
LOG(FATAL) << "The problem does not have an optimal solution!";
}
2018-11-22 13:15:13 +01:00
LOG(INFO) << "Solution:";
LOG(INFO) << "x = " << x->solution_value();
LOG(INFO) << "y = " << y->solution_value();
LOG(INFO) << "Optimal objective value = " << objective->Value();
LOG(INFO) << "";
LOG(INFO) << "Advanced usage:";
2020-06-25 10:33:13 +02:00
LOG(INFO) << "Problem solved in " << solver.wall_time() << " milliseconds";
LOG(INFO) << "Problem solved in " << solver.iterations() << " iterations";
LOG(INFO) << "Problem solved in " << solver.nodes()
2018-11-22 13:15:13 +01:00
<< " branch-and-bound nodes";
}
2018-11-22 13:15:13 +01:00
void RunAllExamples() {
2020-06-24 19:04:13 +02:00
RunIntegerProgrammingExample("CBC");
RunIntegerProgrammingExample("SAT");
RunIntegerProgrammingExample("SCIP");
RunIntegerProgrammingExample("GUROBI");
RunIntegerProgrammingExample("GLPK");
RunIntegerProgrammingExample("CPLEX");
2018-11-22 13:15:13 +01:00
}
2020-10-22 23:36:58 +02:00
} // namespace operations_research
2020-10-29 14:25:39 +01:00
int main(int argc, char** argv) {
absl::SetFlag(&FLAGS_stderrthreshold, 0);
InitGoogle(argv[0], &argc, &argv, true);
operations_research::RunAllExamples();
2021-01-14 10:48:19 +01:00
return EXIT_SUCCESS;
}