forked from catchorg/Catch2
This means that the CLI interface now uses the new key-value oriented reporter spec, the common reporter base creates the colour implementation based on the reporter-specific configuration, and it also stores the custom configuration options for each reporter instance. Closes #339 as it allows per-reporter forcing of ansi colour codes.
147 lines
6.2 KiB
C++
147 lines
6.2 KiB
C++
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// Copyright Catch2 Authors
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// Distributed under the Boost Software License, Version 1.0.
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// (See accompanying file LICENSE_1_0.txt or copy at
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// https://www.boost.org/LICENSE_1_0.txt)
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// SPDX-License-Identifier: BSL-1.0
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#include <catch2/catch_config.hpp>
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#include <catch2/catch_user_config.hpp>
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#include <catch2/internal/catch_enforce.hpp>
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#include <catch2/internal/catch_stream.hpp>
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#include <catch2/internal/catch_stringref.hpp>
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#include <catch2/internal/catch_string_manip.hpp>
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#include <catch2/internal/catch_test_spec_parser.hpp>
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#include <catch2/interfaces/catch_interfaces_tag_alias_registry.hpp>
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#include <ostream>
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namespace Catch {
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namespace Detail {
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namespace {
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class RDBufStream : public IStream {
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mutable std::ostream m_os;
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public:
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//! The streambuf `sb` must outlive the constructed object.
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RDBufStream( std::streambuf* sb ): m_os( sb ) {}
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~RDBufStream() override = default;
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public: // IStream
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std::ostream& stream() const override { return m_os; }
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};
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} // unnamed namespace
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} // namespace Detail
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Config::Config( ConfigData const& data ):
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m_data( data ) {
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// We need to trim filter specs to avoid trouble with superfluous
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// whitespace (esp. important for bdd macros, as those are manually
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// aligned with whitespace).
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for (auto& elem : m_data.testsOrTags) {
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elem = trim(elem);
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}
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for (auto& elem : m_data.sectionsToRun) {
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elem = trim(elem);
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}
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TestSpecParser parser(ITagAliasRegistry::get());
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if (!m_data.testsOrTags.empty()) {
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m_hasTestFilters = true;
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for (auto const& testOrTags : m_data.testsOrTags) {
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parser.parse(testOrTags);
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}
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}
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m_testSpec = parser.testSpec();
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// Insert the default reporter if user hasn't asked for a specfic one
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if ( m_data.reporterSpecifications.empty() ) {
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m_data.reporterSpecifications.push_back( {
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#if defined( CATCH_CONFIG_DEFAULT_REPORTER )
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CATCH_CONFIG_DEFAULT_REPORTER,
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#else
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"console",
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#endif
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{}, {}, {}
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} );
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}
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bool defaultOutputUsed = false;
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m_reporterStreams.reserve( m_data.reporterSpecifications.size() );
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for ( auto const& reporterSpec : m_data.reporterSpecifications ) {
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if ( reporterSpec.outputFile().none() ) {
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CATCH_ENFORCE( !defaultOutputUsed,
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"Internal error: cannot use default output for "
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"multiple reporters" );
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defaultOutputUsed = true;
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m_reporterStreams.push_back(
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openStream( data.defaultOutputFilename ) );
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} else {
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m_reporterStreams.push_back(
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openStream( *reporterSpec.outputFile() ) );
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}
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}
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}
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Config::~Config() = default;
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bool Config::listTests() const { return m_data.listTests; }
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bool Config::listTags() const { return m_data.listTags; }
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bool Config::listReporters() const { return m_data.listReporters; }
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std::vector<std::string> const& Config::getTestsOrTags() const { return m_data.testsOrTags; }
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std::vector<std::string> const& Config::getSectionsToRun() const { return m_data.sectionsToRun; }
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std::vector<ReporterSpec> const& Config::getReporterSpecs() const {
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return m_data.reporterSpecifications;
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}
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IStream const* Config::getReporterOutputStream(std::size_t reporterIdx) const {
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return m_reporterStreams.at(reporterIdx).get();
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}
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TestSpec const& Config::testSpec() const { return m_testSpec; }
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bool Config::hasTestFilters() const { return m_hasTestFilters; }
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bool Config::showHelp() const { return m_data.showHelp; }
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// IConfig interface
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bool Config::allowThrows() const { return !m_data.noThrow; }
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StringRef Config::name() const { return m_data.name.empty() ? m_data.processName : m_data.name; }
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bool Config::includeSuccessfulResults() const { return m_data.showSuccessfulTests; }
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bool Config::warnAboutMissingAssertions() const {
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return !!( m_data.warnings & WarnAbout::NoAssertions );
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}
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bool Config::warnAboutUnmatchedTestSpecs() const {
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return !!( m_data.warnings & WarnAbout::UnmatchedTestSpec );
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}
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bool Config::zeroTestsCountAsSuccess() const { return m_data.allowZeroTests; }
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ShowDurations Config::showDurations() const { return m_data.showDurations; }
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double Config::minDuration() const { return m_data.minDuration; }
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TestRunOrder Config::runOrder() const { return m_data.runOrder; }
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uint32_t Config::rngSeed() const { return m_data.rngSeed; }
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unsigned int Config::shardCount() const { return m_data.shardCount; }
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unsigned int Config::shardIndex() const { return m_data.shardIndex; }
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ColourMode Config::colourMode() const { return m_data.colourMode; }
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bool Config::shouldDebugBreak() const { return m_data.shouldDebugBreak; }
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int Config::abortAfter() const { return m_data.abortAfter; }
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bool Config::showInvisibles() const { return m_data.showInvisibles; }
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Verbosity Config::verbosity() const { return m_data.verbosity; }
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bool Config::benchmarkNoAnalysis() const { return m_data.benchmarkNoAnalysis; }
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unsigned int Config::benchmarkSamples() const { return m_data.benchmarkSamples; }
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double Config::benchmarkConfidenceInterval() const { return m_data.benchmarkConfidenceInterval; }
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unsigned int Config::benchmarkResamples() const { return m_data.benchmarkResamples; }
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std::chrono::milliseconds Config::benchmarkWarmupTime() const { return std::chrono::milliseconds(m_data.benchmarkWarmupTime); }
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Detail::unique_ptr<IStream const> Config::openStream(std::string const& outputFileName) {
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return Catch::makeStream(outputFileName);
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}
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} // end namespace Catch
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