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FESA/tests/unit/constraints/essential_bc_test.cpp
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#include <fesa/constraints/essential_bc.hpp>
#include <algorithm>
#include <array>
#include <cstddef>
#include <cstdint>
#include <limits>
#include <stdexcept>
#include <utility>
#include <vector>
#include <fesa/model/domain_builder.hpp>
#include <gtest/gtest.h>
namespace {
fesa::DofManager build_dofs(
std::vector<fesa::PrescribedDof> prescribed) {
fesa::DomainBuilder builder;
builder.add_node({
fesa::NodeId{0},
fesa::EntityOrigin{"", "", 1},
fesa::Vec3{0.0, 0.0, 0.0},
});
builder.set_step({"Load", std::move(prescribed), {}});
auto result = std::move(builder).build();
if (!result.domain.has_value()) {
throw std::runtime_error{"Test Domain failed validation."};
}
return fesa::DofManager::build(*result.domain);
}
fesa::EquationSystem hand_system() {
return {
{
6,
{0, 3, 5, 6, 7, 8, 9},
{0, 1, 2, 1, 2, 2, 3, 4, 5},
{4.0, 1.0, 2.0, 3.0, 6.0, 5.0, 1.0, 1.0, 1.0},
},
{7.0, 8.0, 9.0, 0.0, 0.0, 0.0},
};
}
TEST(EssentialBc, ZeroPrescribedValueDoesNotShiftReducedForce) {
const std::vector<fesa::PrescribedDof> prescribed{
{fesa::NodeId{0}, 2, 0.0},
};
const fesa::DofManager dofs = build_dofs(prescribed);
const fesa::ConstraintResult result =
fesa::eliminate_essential_bcs(hand_system(), dofs);
ASSERT_TRUE(result.reduced_system.has_value());
EXPECT_TRUE(result.diagnostics.empty());
EXPECT_EQ(
result.reduced_system->force,
(std::vector<double>{7.0, 9.0, 0.0, 0.0, 0.0}));
}
TEST(
ConstraintElimination,
ShiftsNonzeroPrescribedValueAndPreservesOriginalSystem) {
const std::vector<fesa::PrescribedDof> prescribed{
{fesa::NodeId{0}, 2, 2.0},
};
const fesa::DofManager dofs = build_dofs(prescribed);
const fesa::EquationSystem original = hand_system();
const fesa::EquationSystem before = original;
const fesa::ConstraintResult result =
fesa::eliminate_essential_bcs(original, dofs);
ASSERT_TRUE(result.reduced_system.has_value());
EXPECT_TRUE(result.diagnostics.empty());
const fesa::ReducedSystem& reduced = *result.reduced_system;
EXPECT_EQ(reduced.stiffness.order, 5);
EXPECT_EQ(
reduced.stiffness.row_offsets,
(std::vector<std::int32_t>{0, 2, 3, 4, 5, 6}));
EXPECT_EQ(
reduced.stiffness.column_indices,
(std::vector<std::int32_t>{0, 1, 1, 2, 3, 4}));
EXPECT_EQ(
reduced.stiffness.values,
(std::vector<double>{4.0, 2.0, 5.0, 1.0, 1.0, 1.0}));
EXPECT_EQ(
reduced.force,
(std::vector<double>{5.0, -3.0, 0.0, 0.0, 0.0}));
EXPECT_EQ(original.stiffness.order, before.stiffness.order);
EXPECT_EQ(
original.stiffness.row_offsets,
before.stiffness.row_offsets);
EXPECT_EQ(
original.stiffness.column_indices,
before.stiffness.column_indices);
EXPECT_EQ(original.stiffness.values, before.stiffness.values);
EXPECT_EQ(original.force, before.force);
EXPECT_EQ(
dofs.reconstruct_full(
std::vector<double>{1.0, 3.0, 0.0, 0.0, 0.0}),
(std::vector<double>{1.0, 2.0, 3.0, 0.0, 0.0, 0.0}));
}
TEST(ConstraintElimination, AcceptsAllDofsConstrained) {
const std::vector<fesa::PrescribedDof> prescribed{
{fesa::NodeId{0}, 1, 1.0},
{fesa::NodeId{0}, 2, 2.0},
{fesa::NodeId{0}, 3, 3.0},
{fesa::NodeId{0}, 4, 4.0},
{fesa::NodeId{0}, 5, 5.0},
{fesa::NodeId{0}, 6, 6.0},
};
const fesa::DofManager dofs = build_dofs(prescribed);
const fesa::ConstraintResult result =
fesa::eliminate_essential_bcs(hand_system(), dofs);
ASSERT_TRUE(result.reduced_system.has_value());
const fesa::ReducedSystem& reduced = *result.reduced_system;
EXPECT_EQ(reduced.stiffness.order, 0);
EXPECT_EQ(
reduced.stiffness.row_offsets,
(std::vector<std::int32_t>{0}));
EXPECT_TRUE(reduced.stiffness.column_indices.empty());
EXPECT_TRUE(reduced.stiffness.values.empty());
EXPECT_TRUE(reduced.force.empty());
EXPECT_EQ(
dofs.reconstruct_full({}),
(std::vector<double>{1.0, 2.0, 3.0, 4.0, 5.0, 6.0}));
}
TEST(ConstraintElimination, RejectsNonfiniteSystemData) {
const fesa::DofManager dofs = build_dofs({});
fesa::EquationSystem nonfinite_matrix = hand_system();
nonfinite_matrix.stiffness.values[0] =
std::numeric_limits<double>::quiet_NaN();
fesa::EquationSystem nonfinite_force = hand_system();
nonfinite_force.force[0] =
std::numeric_limits<double>::infinity();
const fesa::ConstraintResult matrix_result =
fesa::eliminate_essential_bcs(nonfinite_matrix, dofs);
const fesa::ConstraintResult force_result =
fesa::eliminate_essential_bcs(nonfinite_force, dofs);
ASSERT_FALSE(matrix_result.diagnostics.empty());
EXPECT_EQ(
matrix_result.diagnostics.front().code,
"equation.invalid_system");
ASSERT_FALSE(force_result.diagnostics.empty());
EXPECT_EQ(
force_result.diagnostics.front().code,
"equation.invalid_system");
}
TEST(ConstraintElimination, RejectsNonfiniteReducedForce) {
const fesa::DofManager dofs = build_dofs({
{fesa::NodeId{0}, 2, 2.0},
});
fesa::EquationSystem overflowing = hand_system();
overflowing.stiffness.values[1] =
std::numeric_limits<double>::max();
const fesa::ConstraintResult result =
fesa::eliminate_essential_bcs(overflowing, dofs);
EXPECT_FALSE(result.reduced_system.has_value());
ASSERT_FALSE(result.diagnostics.empty());
EXPECT_EQ(
result.diagnostics.front().code,
"equation.nonfinite_result");
}
TEST(Reaction, UsesOriginalFullEquilibriumEquation) {
const std::vector<double> reaction = fesa::recover_reaction(
hand_system(),
std::vector<double>{1.0, 2.0, 3.0, 0.0, 0.0, 0.0});
EXPECT_EQ(
reaction,
(std::vector<double>{5.0, 17.0, 20.0, 0.0, 0.0, 0.0}));
}
TEST(Reaction, RejectsNonfiniteFullDisplacement) {
std::vector<double> displacement(6, 0.0);
displacement[0] = std::numeric_limits<double>::quiet_NaN();
EXPECT_THROW(
static_cast<void>(
fesa::recover_reaction(hand_system(), displacement)),
std::invalid_argument);
}
TEST(Reaction, RejectsNonfiniteRecoveredValue) {
fesa::EquationSystem overflowing = hand_system();
overflowing.stiffness.values[0] =
std::numeric_limits<double>::max();
EXPECT_THROW(
static_cast<void>(fesa::recover_reaction(
overflowing,
std::vector<double>{2.0, 0.0, 0.0, 0.0, 0.0, 0.0})),
std::invalid_argument);
}
} // namespace