#include <cmath>
#include <iostream>
#include <vector>
#include <copp/copp.hpp>
namespace
{
int fail(const char *message)
{
std::cerr << message << "\n";
return 1;
}
bool near(double lhs, double rhs)
{
return std::abs(lhs - rhs) < 1.0e-8;
}
bool accepted(copp::clarabel::SolverStatus status)
{
return status == copp::clarabel::SolverStatus::Solved ||
status == copp::clarabel::SolverStatus::AlmostSolved;
}
}
int main()
{
const std::vector<double> s{0.0, 0.5, 1.0};
const std::vector<double> amax{1.0, 1.0, 1.0};
copp::Robot robot(1, s.size());
robot.append_s(s);
robot.constraints().add_constraint_1st(amax, 0);
namespace copp2 = copp::solver::copp2_socp;
copp2::Problem problem{
robot,
{copp::objective::Time(1.0)},
copp::IndexInterval{0, s.size() - 1},
copp::Boundary2{0.0, 0.0},
};
if (problem.s_len() != s.size())
{
return fail("unexpected COPP2 problem length");
}
copp::clarabel::Options options;
options.clarabel_settings.max_iter = 200;
options.allow_almost_solved = true;
const auto a = copp2::solve(problem, options);
if (a.size() != s.size())
{
return fail("unexpected a profile length");
}
if (!near(a.front(), 0.0) || !near(a.back(), 0.0))
{
return fail("unexpected boundary values");
}
if (!std::isfinite(a[1]) || a[1] < -1.0e-10)
{
return fail("unexpected interior a value");
}
const auto expert = copp2::solve_expert(problem, options);
if (!accepted(expert.solver_status))
{
return fail("unexpected Clarabel status");
}
if (!expert.has_a() || expert.a->size() != s.size())
{
return fail("expert result did not include accepted a");
}
if (expert.x.empty() || expert.s.empty() || expert.z.empty())
{
return fail("expert result missed raw Clarabel vectors");
}
if (!expert.objective_value.has_value() || expert.objective_terms.size() != 1)
{
return fail("expert result missed objective diagnostics");
}
return 0;
}