Files
MeanField/tests/operators/contexts/rotation_displacement_force_context.cpp
Emily Boudreaux 177ae8b38a feat(support): continued migration to new field dof support system
mass normaliztion, gravity, displacement, and hydrostatic equilibrium are now migrated
2026-08-24 15:44:24 -04:00

190 lines
7.2 KiB
C++

#include <algorithm>
#include <catch2/catch_test_macros.hpp>
#include <mfem.hpp>
import mean_field;
import test_helpers;
namespace rotational_displacement_force_context_test_utils {
using Context =
mean_field::operators::context::rotational_displacement_force::RotationalDisplacementForceLinearizationContext;
using Dependencies =
mean_field::operators::context::rotational_displacement_force::RotationalDisplacementForceDependencies;
[[nodiscard]] Dependencies make_dependencies() {
return {
.discretization = {.identity = 101, .revision = 3},
.density = {.identity = 103, .revision = 5},
.displacement = {.identity = 107, .revision = 7},
.rotation = {.identity = 109, .revision = 11}
};
}
[[nodiscard]] mfem::Vector make_density(
const mean_field::fem::FEM &f,
const double offset
) {
mfem::ParGridFunction density(f.densityFes.get());
mfem::FunctionCoefficient coefficient([offset](const mfem::Vector &position) {
return offset + 0.04 * position(0) - 0.03 * position(1) + 0.02 * position(2);
});
density.ProjectCoefficient(coefficient);
mfem::Vector densityTrue;
density.GetTrueDofs(densityTrue);
return densityTrue;
}
[[nodiscard]] double relative_difference(
const mfem::Vector &left,
const mfem::Vector &right
) {
mfem::Vector difference(left);
difference -= right;
return difference.Norml2() / std::max(right.Norml2(), 1.0e-30);
}
} // namespace rotational_displacement_force_context_test_utils
TEST_CASE(
"Rotational Displacement Force Context Applies Selective Invalidation",
tags::rotation_context_unit
) {
mean_field::utils::Args args = test_utils::setup_args();
mean_field::fem::FEM f = mean_field::fem::setup_fem(args.mesh_file, args, 0);
REQUIRE(f.okay());
auto dependencies = rotational_displacement_force_context_test_utils::make_dependencies();
rotational_displacement_force_context_test_utils::Context context(f, *f.domainMapperStateless);
mfem::Vector densityTrue = rotational_displacement_force_context_test_utils::make_density(f, 0.83);
mfem::Vector density = context.GetDensityMap().gather(densityTrue);
mfem::Vector displacementTrue = gravity_prepared_test_utils::make_displacement(f, 0.47);
mfem::Vector displacement = context.GetDisplacementMap().gather(displacementTrue);
const auto initialReport = context.Prepare({.density = density, .displacement = displacement}, dependencies);
REQUIRE(context.IsPrepared());
CHECK(context.MatchesDependencies(dependencies));
CHECK(initialReport.preparedStaticDependencies);
CHECK(initialReport.preparedGeometryState);
CHECK(initialReport.preparedRotationDependencies);
CHECK(initialReport.preparedBaseState);
CHECK(initialReport.updatedDensity);
CHECK(initialReport.updatedDisplacement);
const mfem::Vector expectedDensityTrue = context.GetDensityMap().scatter(density);
const mfem::Vector expectedDisplacementTrue = context.GetDisplacementMap().scatter(displacement);
CHECK(
rotational_displacement_force_context_test_utils::relative_difference(
context.GetBaseDensityTrue(), expectedDensityTrue
) < 1.0e-14
);
CHECK(
rotational_displacement_force_context_test_utils::relative_difference(
context.GetDisplacementTrue(), expectedDisplacementTrue
) < 1.0e-14
);
const auto unchangedReport = context.Prepare({.density = density, .displacement = displacement}, dependencies);
CHECK_FALSE(unchangedReport.DidAnyWork());
densityTrue = rotational_displacement_force_context_test_utils::make_density(f, 1.17);
density = context.GetDensityMap().gather(densityTrue);
++dependencies.density.revision;
const auto densityReport = context.Prepare({.density = density, .displacement = displacement}, dependencies);
CHECK_FALSE(densityReport.preparedStaticDependencies);
CHECK_FALSE(densityReport.preparedGeometryState);
CHECK_FALSE(densityReport.preparedRotationDependencies);
CHECK(densityReport.preparedBaseState);
CHECK(densityReport.updatedDensity);
CHECK_FALSE(densityReport.updatedDisplacement);
const mfem::Vector densityAfterDensityRevision(context.GetBaseDensityTrue());
displacementTrue = gravity_prepared_test_utils::make_displacement(f, 0.81);
displacement = context.GetDisplacementMap().gather(displacementTrue);
++dependencies.displacement.revision;
const auto displacementReport = context.Prepare({.density = density, .displacement = displacement}, dependencies);
CHECK_FALSE(displacementReport.preparedStaticDependencies);
CHECK(displacementReport.preparedGeometryState);
CHECK_FALSE(displacementReport.preparedRotationDependencies);
CHECK(displacementReport.preparedBaseState);
CHECK_FALSE(displacementReport.updatedDensity);
CHECK(displacementReport.updatedDisplacement);
CHECK(
rotational_displacement_force_context_test_utils::relative_difference(
context.GetBaseDensityTrue(), densityAfterDensityRevision
) < 1.0e-14
);
++dependencies.rotation.revision;
const auto rotationReport = context.Prepare({.density = density, .displacement = displacement}, dependencies);
CHECK_FALSE(rotationReport.preparedStaticDependencies);
CHECK_FALSE(rotationReport.preparedGeometryState);
CHECK(rotationReport.preparedRotationDependencies);
CHECK(rotationReport.preparedBaseState);
CHECK_FALSE(rotationReport.updatedDensity);
CHECK_FALSE(rotationReport.updatedDisplacement);
const auto statistics = context.GetPreparationStatistics();
CHECK(statistics.staticPreparations == 1);
CHECK(statistics.geometryPreparations == 2);
CHECK(statistics.rotationPreparations == 2);
CHECK(statistics.baseStatePreparations == 4);
}
TEST_CASE(
"Rotational Displacement Force Context Treats New Identities As New "
"Dependency Streams",
tags::rotation_context_unit
) {
mean_field::utils::Args args = test_utils::setup_args();
mean_field::fem::FEM f = mean_field::fem::setup_fem(args.mesh_file, args, 0);
REQUIRE(f.okay());
auto dependencies = rotational_displacement_force_context_test_utils::make_dependencies();
rotational_displacement_force_context_test_utils::Context context(f, *f.domainMapperStateless);
const mfem::Vector density =
context.GetDensityMap().gather(rotational_displacement_force_context_test_utils::make_density(f, 0.91));
const mfem::Vector displacement =
context.GetDisplacementMap().gather(gravity_prepared_test_utils::make_displacement(f, 0.39));
context.Prepare({.density = density, .displacement = displacement}, dependencies);
dependencies.density.identity += 1000;
dependencies.density.revision = 0;
const auto report = context.Prepare({.density = density, .displacement = displacement}, dependencies);
CHECK(report.preparedBaseState);
CHECK(report.updatedDensity);
CHECK_FALSE(report.preparedGeometryState);
CHECK_FALSE(report.preparedRotationDependencies);
}