Files
FESA/tests/integration/pipeline/minimal_cantilever_test.cpp

172 lines
5.4 KiB
C++

#include <fesa/analysis/run_solver.hpp>
#include <fesa/io/hdf5/writer.hpp>
#include <cmath>
#include <cstdlib>
#include <filesystem>
#include <fstream>
#include <iterator>
#include <stdexcept>
#include <string>
#include <string_view>
#include <system_error>
#include <utility>
#include <gtest/gtest.h>
namespace {
class TemporaryPath final {
public:
explicit TemporaryPath(std::filesystem::path path)
: path_{std::move(path)} {
std::error_code error;
std::filesystem::create_directories(path_.parent_path(), error);
if (error) {
throw std::runtime_error{"Failed to create pipeline test directory."};
}
std::filesystem::remove(path_, error);
}
~TemporaryPath() {
std::error_code error;
std::filesystem::remove(path_, error);
}
TemporaryPath(const TemporaryPath&) = delete;
TemporaryPath& operator=(const TemporaryPath&) = delete;
[[nodiscard]] const std::filesystem::path& path() const noexcept {
return path_;
}
private:
std::filesystem::path path_;
};
std::filesystem::path fixture_path(const std::string_view name) {
return std::filesystem::path{FESA_TEST_SOURCE_DIR} / "fixtures" /
"abaqus" / name;
}
std::filesystem::path test_output_path(const std::string_view name) {
return std::filesystem::path{FESA_TEST_BINARY_DIR} / "testing" / name;
}
void write_text(
const std::filesystem::path& path,
const std::string_view contents) {
std::filesystem::create_directories(path.parent_path());
std::ofstream output{path, std::ios::binary};
output.write(
contents.data(), static_cast<std::streamsize>(contents.size()));
if (!output) {
throw std::runtime_error{"Failed to write pipeline test input."};
}
}
std::string quote(const std::filesystem::path& path) {
return '"' + path.string() + '"';
}
std::string path_utf8(const std::filesystem::path& path) {
const std::u8string value = path.u8string();
return {reinterpret_cast<const char*>(value.data()), value.size()};
}
std::string read_text(const std::filesystem::path& path) {
std::ifstream input{path, std::ios::binary};
return {
std::istreambuf_iterator<char>{input},
std::istreambuf_iterator<char>{},
};
}
TEST(MinimalCantileverPipeline, WritesReadableFiniteEquilibratedResults) {
const TemporaryPath output{
test_output_path("minimal-cantilever-pipeline.h5")};
const fesa::AnalysisRunResult run = fesa::run_solver({
fixture_path("minimal_cantilever.inp"),
output.path(),
});
ASSERT_TRUE(run.succeeded);
EXPECT_TRUE(run.diagnostics.empty());
const fesa::Hdf5ReadResult read =
fesa::read_hdf5_results(output.path());
ASSERT_TRUE(read.database.has_value());
ASSERT_TRUE(read.model.has_value());
ASSERT_TRUE(read.metadata.has_value());
EXPECT_TRUE(read.diagnostics.empty());
EXPECT_EQ(read.database->schema_version, "2.0.0");
EXPECT_EQ(
read.metadata->input_source,
path_utf8(fixture_path("minimal_cantilever.inp")));
EXPECT_EQ(
read.metadata->input_fingerprint,
"fnv1a64:73f31da4615f09b3");
ASSERT_EQ(read.model->nodes.size(), 2U);
EXPECT_EQ(read.model->nodes[0].id, fesa::NodeId{0});
EXPECT_EQ(read.model->nodes[1].id, fesa::NodeId{1});
ASSERT_EQ(read.database->steps.size(), 1U);
ASSERT_EQ(read.database->steps[0].frames.size(), 1U);
const fesa::NodalFrame& nodal =
read.database->steps[0].frames[0].nodal;
ASSERT_EQ(nodal.node_ids.size(), 2U);
ASSERT_EQ(nodal.displacement.size(), 2U);
ASSERT_EQ(nodal.reaction.size(), 2U);
EXPECT_EQ(nodal.node_ids[0], fesa::NodeId{0});
EXPECT_EQ(nodal.node_ids[1], fesa::NodeId{1});
for (const auto& values : nodal.displacement) {
for (const double value : values) {
EXPECT_TRUE(std::isfinite(value));
}
}
for (const auto& values : nodal.reaction) {
for (const double value : values) {
EXPECT_TRUE(std::isfinite(value));
}
}
const double total_y_reaction =
nodal.reaction[0][1] + nodal.reaction[1][1];
EXPECT_NEAR(total_y_reaction - 1.0, 0.0, 1.0e-12);
EXPECT_LT(nodal.displacement[1][1], 0.0);
}
TEST(MinimalCantileverPipeline, CliPreservesFailureSourceDiagnostic) {
const TemporaryPath input{
test_output_path("minimal-cantilever-invalid.inp")};
const TemporaryPath output{
test_output_path("minimal-cantilever-invalid.h5")};
const TemporaryPath error_output{
test_output_path("minimal-cantilever-invalid.stderr.txt")};
write_text(
input.path(),
"*NODE\n"
"*UNSUPPORTED\n");
const std::string command =
'"' + quote(std::filesystem::path{FESA_CLI_PATH}) + " solve " +
quote(input.path()) + " --output " + quote(output.path()) +
" 1>NUL 2>" + quote(error_output.path()) + '"';
const int exit_code = std::system(command.c_str());
EXPECT_NE(exit_code, 0);
EXPECT_FALSE(std::filesystem::exists(output.path()));
const std::string diagnostic = read_text(error_output.path());
EXPECT_NE(diagnostic.find("syntax"), std::string::npos);
EXPECT_NE(
diagnostic.find("abaqus.unsupported_keyword"),
std::string::npos);
EXPECT_NE(diagnostic.find(input.path().string()), std::string::npos);
EXPECT_NE(diagnostic.find(":2:1"), std::string::npos);
}
} // namespace