1#ifdef ALPAQA_WITH_IPOPT
5#include <IpIpoptApplication.hpp>
16 Ipopt::SmartPtr<Ipopt::IpoptApplication> &solver,
17 std::ostream &os,
unsigned N_exp) {
20 Ipopt::SmartPtr<Ipopt::TNLP> nlp =
new Problem(problem.problem);
21 auto *my_nlp =
dynamic_cast<Problem *
>(GetRawPtr(nlp));
26 length_t n = problem.problem.get_num_variables(),
27 m = problem.problem.get_num_constraints();
30 if (
auto sz = problem.initial_guess_x.size(); sz != n)
31 throw std::invalid_argument(
32 "Invalid size for initial_guess_x (expected " + std::to_string(n) +
33 ", but got " + std::to_string(sz) +
")");
34 if (
auto sz = problem.initial_guess_y.size(); sz != m)
35 throw std::invalid_argument(
36 "Invalid size for initial_guess_y (expected " + std::to_string(m) +
37 ", but got " + std::to_string(sz) +
")");
38 my_nlp->initial_guess = problem.initial_guess_x;
39 my_nlp->initial_guess_multipliers = problem.initial_guess_y;
40 if (
auto sz = problem.initial_guess_w.size(); sz > 0) {
42 throw std::invalid_argument(
43 "Invalid size for initial_guess_w (expected " +
44 std::to_string(n) +
", but got " + std::to_string(sz) +
")");
45 my_nlp->initial_guess_bounds_multipliers = problem.initial_guess_w;
49 auto t0 = std::chrono::steady_clock::now();
50 auto status = solver->OptimizeTNLP(nlp);
51 auto t1 = std::chrono::steady_clock::now();
54 using ns = std::chrono::nanoseconds;
55 auto avg_duration = duration_cast<ns>(t1 - t0);
56 os.setstate(std::ios_base::badbit);
57 for (
unsigned i = 0; i < N_exp; ++i) {
58 my_nlp->initial_guess = problem.initial_guess_x;
59 my_nlp->initial_guess_multipliers = problem.initial_guess_y;
60 my_nlp->initial_guess_bounds_multipliers = problem.initial_guess_w;
62 auto t0 = std::chrono::steady_clock::now();
63 solver->OptimizeTNLP(nlp);
64 auto t1 = std::chrono::steady_clock::now();
65 avg_duration += duration_cast<ns>(t1 - t0);
68 avg_duration /= (N_exp + 1);
69 auto evals = *problem.evaluations;
72 auto &nlp_res = my_nlp->results;
73 if (nlp_res.status == Ipopt::SolverReturn::UNASSIGNED) {
81 .success = status == Ipopt::Solve_Succeeded,
83 .duration = avg_duration,
86 .δ = nlp_res.infeasibility,
87 .ε = nlp_res.nlp_error,
90 .solution = nlp_res.solution_x,
91 .multipliers = nlp_res.solution_y,
92 .multipliers_bounds = nlp_res.combine_bounds_multipliers(),
93 .penalties = vec::Zero(n),
94 .outer_iter = nlp_res.iter_count,
95 .inner_iter = nlp_res.iter_count,
101auto make_ipopt_solver(
Options &opts) {
102 using namespace Ipopt;
106 SmartPtr<IpoptApplication> app = IpoptApplicationFactory();
107 app->RethrowNonIpoptException(
true);
109 app->Options()->SetNumericValue(
"tol", 1e-8);
110 app->Options()->SetNumericValue(
"constr_viol_tol", 1e-8);
111 app->Options()->SetStringValue(
"linear_solver",
"mumps");
114 app->Options()->SetStringValue(
"hessian_approximation",
"exact");
119 ApplicationReturnStatus status = app->Initialize();
120 if (status != Solve_Succeeded)
121 throw std::runtime_error(
"Error during Ipopt initialization: " +
127template <
class LoadedProblem>
130 if (!direction.empty())
131 throw std::invalid_argument(
132 "Ipopt solver does not support any directions");
133 auto solver = make_ipopt_solver(opts);
136 return std::make_shared<SolverWrapper>(
137 [solver{std::move(solver)}, N_exp](
139 return run_ipopt_solver(problem, solver, os, N_exp);
147 static constexpr bool valid_config =
148 std::is_same_v<LoadedProblem::config_t, alpaqa::IpoptAdapter::config_t>;
149 if constexpr (valid_config)
150 return make_ipopt_drive_impl<LoadedProblem>(direction, opts);
152 throw std::invalid_argument(
153 "Ipopt solver only supports double precision");
161 throw std::invalid_argument(
162 "This version of alpaqa was compiled without Ipopt support.");
Based on https://coin-or.github.io/Ipopt/INTERFACES.html.
#define USING_ALPAQA_CONFIG(Conf)
SharedSolverWrapper make_ipopt_driver(std::string_view, Options &)
std::string_view enum_name(Ipopt::ApplicationReturnStatus s)
typename Conf::length_t length_t
void set_params(T &t, std::string_view prefix, Options &opts)
std::shared_ptr< SolverWrapper > SharedSolverWrapper