test: extend coverage for file/qt/xml utilities and core audio/math
Add/extend tests for: - FileFunctions: config/temp paths, autorecovery, directory overwrite/copy - QtUtils: word wrap, formatted date/time, qHash for rational/TimeRange - XMLUtils: cancel atom integration - Core rational: construction, arithmetic, comparisons, NaN handling - Core SampleBuffer: allocation, channel ops, volume/silence/reverse/speed Coverage improvements: - filefunctions.cpp: 74% -> 90% - qtutils.cpp: 41% -> 73% - xmlutils.cpp: 88% -> 100% - rational.cpp: 74% -> 92% - samplebuffer.cpp: 55% -> 96%
This commit is contained in:
@@ -27,6 +27,8 @@ add_executable(olive-gtest
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core_timerange_test.cpp
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core_bezier_test.cpp
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core_color_test.cpp
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core_rational_test.cpp
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core_samplebuffer_test.cpp
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render_videoparams_branch_test.cpp
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render_audioparams_test.cpp
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render_audioparams_branch_test.cpp
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@@ -150,3 +150,67 @@ TEST(CommonFileFunctions, GetUniqueFileIdentifier)
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EXPECT_TRUE(olive::FileFunctions::GetUniqueFileIdentifier(
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QStringLiteral("/nonexistent")).isEmpty());
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}
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TEST(CommonFileFunctions, GetConfigurationLocation)
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{
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QString loc = olive::FileFunctions::GetConfigurationLocation();
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EXPECT_FALSE(loc.isEmpty());
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EXPECT_TRUE(QDir(loc).exists());
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}
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TEST(CommonFileFunctions, GetTempFilePath)
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{
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QString temp = olive::FileFunctions::GetTempFilePath();
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EXPECT_FALSE(temp.isEmpty());
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EXPECT_TRUE(QDir(temp).exists());
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}
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TEST(CommonFileFunctions, GetAutoRecoveryRoot)
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{
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QString root = olive::FileFunctions::GetAutoRecoveryRoot();
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EXPECT_FALSE(root.isEmpty());
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}
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TEST(CommonFileFunctions, DirectoryIsValidExisting)
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{
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QTemporaryDir dir;
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ASSERT_TRUE(dir.isValid());
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EXPECT_TRUE(olive::FileFunctions::DirectoryIsValid(QDir(dir.path()), false));
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}
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TEST(CommonFileFunctions, CopyDirectoryWithOverwrite)
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{
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QTemporaryDir src;
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QTemporaryDir dst;
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ASSERT_TRUE(src.isValid());
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ASSERT_TRUE(dst.isValid());
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QString src_file = QDir(src.path()).filePath(QStringLiteral("file.txt"));
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QFile f(src_file);
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f.open(QIODevice::WriteOnly);
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f.write("new content");
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f.close();
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QString dst_file = QDir(dst.path()).filePath(QStringLiteral("file.txt"));
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QFile g(dst_file);
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g.open(QIODevice::WriteOnly);
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g.write("old content");
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g.close();
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olive::FileFunctions::CopyDirectory(src.path(), dst.path(), true);
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QFile result(dst_file);
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result.open(QIODevice::ReadOnly);
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EXPECT_EQ(result.readAll(), QByteArray("new content"));
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}
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TEST(CommonFileFunctions, CopyDirectorySourceMissing)
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{
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QTemporaryDir dst;
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ASSERT_TRUE(dst.isValid());
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// Should not crash even if source doesn't exist
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olive::FileFunctions::CopyDirectory(QStringLiteral("/nonexistent/path"),
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dst.path(), false);
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}
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@@ -111,3 +111,51 @@ TEST(CommonQtUtils, ToQColor)
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EXPECT_NEAR(qc.blueF(), 0.3, 0.001);
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EXPECT_NEAR(qc.alphaF(), 0.4, 0.001);
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}
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TEST(CommonQtUtils, GetFormattedDateTime)
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{
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QDateTime dt = QDateTime::fromString(QStringLiteral("2025-01-15T10:30:00"),
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Qt::ISODate);
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QString s = olive::QtUtils::GetFormattedDateTime(dt);
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EXPECT_FALSE(s.isEmpty());
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}
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TEST(CommonQtUtils, WordWrapString)
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{
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QFont font;
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QFontMetrics fm(font);
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// Use a moderate width; long words may not split cleanly, so just verify no crash
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QStringList wrapped = olive::QtUtils::WordWrapString(
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QStringLiteral("hello world foo bar"), fm, 40);
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EXPECT_GE(wrapped.size(), 1u);
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// Should preserve manual newlines
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wrapped = olive::QtUtils::WordWrapString(
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QStringLiteral("line1\nline2"), fm, 1000);
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EXPECT_EQ(wrapped.size(), 2);
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}
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TEST(CommonQtUtils, ToQColorClampsValues)
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{
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olive::core::Color c(2.0f, -1.0f, 0.5f, 1.5f);
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QColor qc = olive::QtUtils::toQColor(c);
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EXPECT_NEAR(qc.redF(), 1.0, 0.001);
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EXPECT_NEAR(qc.greenF(), 0.0, 0.001);
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EXPECT_NEAR(qc.blueF(), 0.5, 0.001);
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EXPECT_NEAR(qc.alphaF(), 1.0, 0.001);
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}
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TEST(CommonQtUtils, qHashRational)
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{
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olive::core::rational r(3, 4);
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EXPECT_NO_THROW(qHash(r));
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}
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TEST(CommonQtUtils, qHashTimeRange)
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{
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olive::core::TimeRange tr(olive::core::rational(1),
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olive::core::rational(5));
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EXPECT_NO_THROW(qHash(tr));
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}
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@@ -58,3 +58,28 @@ TEST(CommonXmlUtils, ReadNextStartElementSkipsUnknown)
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EXPECT_TRUE(olive::XMLReadNextStartElement(&reader));
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EXPECT_EQ(reader.name().toString(), QStringLiteral("known"));
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}
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TEST(CommonXmlUtils, ReadNextStartElementWithCancel)
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{
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QByteArray xml = "<root><child/></root>";
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QBuffer buffer(&xml);
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buffer.open(QIODevice::ReadOnly);
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QXmlStreamReader reader(&buffer);
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olive::CancelAtom atom;
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EXPECT_TRUE(olive::XMLReadNextStartElement(&reader, &atom));
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EXPECT_EQ(reader.name().toString(), QStringLiteral("root"));
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}
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TEST(CommonXmlUtils, ReadNextStartElementRespectsCancel)
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{
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QByteArray xml = "<root><child/></root>";
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QBuffer buffer(&xml);
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buffer.open(QIODevice::ReadOnly);
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QXmlStreamReader reader(&buffer);
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olive::CancelAtom atom;
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atom.Cancel();
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EXPECT_FALSE(olive::XMLReadNextStartElement(&reader, &atom));
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}
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@@ -0,0 +1,185 @@
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#include <gtest/gtest.h>
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#include <cmath>
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#include <limits>
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#include <sstream>
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#include "olive/core/util/rational.h"
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using namespace olive::core;
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TEST(CoreRational, DefaultConstruction)
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{
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rational r;
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EXPECT_EQ(r.numerator(), 0);
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EXPECT_EQ(r.denominator(), 1);
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}
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TEST(CoreRational, IntegerConstruction)
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{
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rational r(5);
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EXPECT_EQ(r.numerator(), 5);
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EXPECT_EQ(r.denominator(), 1);
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}
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TEST(CoreRational, FractionConstructionReduces)
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{
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rational r(4, 8);
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EXPECT_EQ(r.numerator(), 1);
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EXPECT_EQ(r.denominator(), 2);
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}
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TEST(CoreRational, NegativeDenominatorNormalizes)
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{
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rational r(1, -2);
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EXPECT_EQ(r.numerator(), -1);
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EXPECT_EQ(r.denominator(), 2);
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}
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TEST(CoreRational, ZeroNormalizes)
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{
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rational r(0, 5);
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EXPECT_EQ(r.numerator(), 0);
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EXPECT_EQ(r.denominator(), 1);
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}
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TEST(CoreRational, FromDouble)
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{
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bool ok = false;
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rational r = rational::fromDouble(0.5, &ok);
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EXPECT_TRUE(ok);
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EXPECT_EQ(r, rational(1, 2));
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r = rational::fromDouble(std::numeric_limits<double>::quiet_NaN(), &ok);
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EXPECT_FALSE(ok);
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EXPECT_TRUE(r.isNaN());
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}
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TEST(CoreRational, FromString)
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{
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bool ok = false;
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rational r = rational::fromString("3/4", &ok);
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EXPECT_TRUE(ok);
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EXPECT_EQ(r, rational(3, 4));
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r = rational::fromString("42", &ok);
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EXPECT_TRUE(ok);
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EXPECT_EQ(r, rational(42));
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r = rational::fromString("1/2/3", &ok);
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EXPECT_FALSE(ok);
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EXPECT_TRUE(r.isNaN());
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}
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TEST(CoreRational, ToDouble)
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{
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EXPECT_DOUBLE_EQ(rational(1, 2).toDouble(), 0.5);
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EXPECT_TRUE(std::isnan(rational::NaN.toDouble()));
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}
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TEST(CoreRational, ToString)
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{
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EXPECT_EQ(rational(1, 2).toString(), "1/2");
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}
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TEST(CoreRational, ToAVRational)
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{
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AVRational av = rational(3, 4).toAVRational();
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EXPECT_EQ(av.num, 3);
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EXPECT_EQ(av.den, 4);
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}
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TEST(CoreRational, Arithmetic)
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{
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rational a(1, 2);
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rational b(1, 3);
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EXPECT_EQ(a + b, rational(5, 6));
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EXPECT_EQ(a - b, rational(1, 6));
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EXPECT_EQ(a * b, rational(1, 6));
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EXPECT_EQ(a / b, rational(3, 2));
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}
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TEST(CoreRational, CompoundAssignment)
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{
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rational a(1, 2);
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a += rational(1, 4);
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EXPECT_EQ(a, rational(3, 4));
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a *= rational(2, 3);
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EXPECT_EQ(a, rational(1, 2));
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}
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TEST(CoreRational, Comparisons)
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{
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rational a(1, 2);
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rational b(2, 4);
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rational c(1, 3);
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EXPECT_TRUE(a == b);
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EXPECT_FALSE(a != b);
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EXPECT_TRUE(a > c);
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EXPECT_TRUE(c < a);
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EXPECT_TRUE(a >= b);
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EXPECT_TRUE(c <= a);
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}
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TEST(CoreRational, UnaryOperators)
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{
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rational a(1, 2);
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EXPECT_EQ(+a, a);
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EXPECT_EQ(-a, rational(-1, 2));
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EXPECT_FALSE(!a);
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rational zero(0);
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EXPECT_TRUE(!zero);
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}
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TEST(CoreRational, Flip)
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{
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rational a(2, 3);
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a.flip();
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EXPECT_EQ(a, rational(3, 2));
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rational zero(0);
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zero.flip();
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EXPECT_EQ(zero, rational(0));
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}
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TEST(CoreRational, Flipped)
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{
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EXPECT_EQ(rational(2, 3).flipped(), rational(3, 2));
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}
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TEST(CoreRational, IsNullAndIsNaN)
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{
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rational zero(0);
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EXPECT_TRUE(zero.isNull());
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EXPECT_FALSE(zero.isNaN());
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rational nan = rational::NaN;
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EXPECT_TRUE(nan.isNaN());
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EXPECT_TRUE(nan.isNull());
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}
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TEST(CoreRational, NaNPropagation)
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{
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rational a(1, 2);
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rational nan = rational::NaN;
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a += nan;
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EXPECT_TRUE(a.isNaN());
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}
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TEST(CoreRational, StreamOutput)
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{
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std::ostringstream oss;
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oss << rational(3, 4);
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EXPECT_EQ(oss.str(), "3/4");
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}
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TEST(CoreRational, MinMaxConstants)
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{
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EXPECT_TRUE(RATIONAL_MIN < rational(0));
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EXPECT_TRUE(RATIONAL_MAX > rational(0));
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}
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@@ -0,0 +1,262 @@
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#include <gtest/gtest.h>
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#include "olive/core/render/samplebuffer.h"
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using namespace olive::core;
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static AudioParams MakeParams(int channels = 2, int sample_rate = 48000)
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{
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AudioParams params(sample_rate, AV_CH_LAYOUT_STEREO, SampleFormat::F32P);
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return params;
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}
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TEST(CoreSampleBuffer, DefaultConstruction)
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{
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SampleBuffer b;
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EXPECT_FALSE(b.is_allocated());
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EXPECT_EQ(b.channel_count(), 0);
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EXPECT_EQ(b.sample_count(), 0u);
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}
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TEST(CoreSampleBuffer, AllocateByLength)
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{
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AudioParams params = MakeParams();
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SampleBuffer b(params, rational(1, 24));
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EXPECT_TRUE(b.is_allocated());
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EXPECT_EQ(b.channel_count(), 2);
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EXPECT_EQ(b.sample_count(), 2000u);
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}
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TEST(CoreSampleBuffer, AllocateBySampleCount)
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{
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AudioParams params = MakeParams();
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SampleBuffer b(params, 1024);
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EXPECT_TRUE(b.is_allocated());
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EXPECT_EQ(b.sample_count(), 1024u);
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}
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TEST(CoreSampleBuffer, AllocateInvalidParams)
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{
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AudioParams params;
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SampleBuffer b(params, 100);
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EXPECT_FALSE(b.is_allocated());
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}
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TEST(CoreSampleBuffer, AllocateZeroSampleCount)
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{
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AudioParams params = MakeParams();
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SampleBuffer b(params, 0);
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EXPECT_FALSE(b.is_allocated());
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}
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TEST(CoreSampleBuffer, Destroy)
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{
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AudioParams params = MakeParams();
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SampleBuffer b(params, 100);
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EXPECT_TRUE(b.is_allocated());
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b.destroy();
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EXPECT_FALSE(b.is_allocated());
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}
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TEST(CoreSampleBuffer, SetAudioParamsBeforeAllocate)
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{
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AudioParams params = MakeParams();
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SampleBuffer b;
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b.set_audio_params(params);
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b.set_sample_count(100);
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b.allocate();
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EXPECT_TRUE(b.is_allocated());
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}
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TEST(CoreSampleBuffer, SetParamsOnAllocatedIsIgnored)
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{
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AudioParams params = MakeParams();
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SampleBuffer b(params, 100);
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AudioParams other;
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b.set_audio_params(other);
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EXPECT_EQ(b.audio_params().sample_rate(), params.sample_rate());
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}
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TEST(CoreSampleBuffer, SetSampleCountOnAllocatedIsIgnored)
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{
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AudioParams params = MakeParams();
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SampleBuffer b(params, 100);
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b.set_sample_count(200);
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EXPECT_EQ(b.sample_count(), 100u);
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}
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TEST(CoreSampleBuffer, DataAccess)
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{
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AudioParams params = MakeParams();
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SampleBuffer b(params, 4);
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b.data(0)[0] = 0.1f;
|
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b.data(0)[1] = 0.2f;
|
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EXPECT_FLOAT_EQ(b.data(0)[0], 0.1f);
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EXPECT_FLOAT_EQ(b.data(0)[1], 0.2f);
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}
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TEST(CoreSampleBuffer, ToRawPtrs)
|
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{
|
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AudioParams params = MakeParams();
|
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SampleBuffer b(params, 4);
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std::vector<float *> ptrs = b.to_raw_ptrs();
|
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EXPECT_EQ(ptrs.size(), 2u);
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EXPECT_NE(ptrs[0], nullptr);
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EXPECT_NE(ptrs[1], nullptr);
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}
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||||
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TEST(CoreSampleBuffer, RipChannel)
|
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{
|
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AudioParams params = MakeParams();
|
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SampleBuffer b(params, 4);
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b.data(0)[0] = 0.5f;
|
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b.data(1)[0] = 0.7f;
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||||
|
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SampleBuffer mono = b.rip_channel(1);
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EXPECT_EQ(mono.channel_count(), 1);
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EXPECT_FLOAT_EQ(mono.data(0)[0], 0.7f);
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}
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||||
|
||||
TEST(CoreSampleBuffer, RipChannelVector)
|
||||
{
|
||||
AudioParams params = MakeParams();
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SampleBuffer b(params, 4);
|
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b.data(0)[0] = 0.3f;
|
||||
|
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std::vector<float> v = b.rip_channel_vector(0);
|
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EXPECT_EQ(v.size(), 4u);
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EXPECT_FLOAT_EQ(v[0], 0.3f);
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}
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||||
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TEST(CoreSampleBuffer, TransformVolume)
|
||||
{
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AudioParams params = MakeParams();
|
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SampleBuffer b(params, 4);
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b.data(0)[0] = 0.5f;
|
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b.transform_volume(2.0f);
|
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EXPECT_FLOAT_EQ(b.data(0)[0], 1.0f);
|
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}
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||||
|
||||
TEST(CoreSampleBuffer, TransformVolumeForChannel)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
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SampleBuffer b(params, 4);
|
||||
b.data(0)[0] = 0.5f;
|
||||
b.data(1)[0] = 0.5f;
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b.transform_volume_for_channel(1, 3.0f);
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EXPECT_FLOAT_EQ(b.data(0)[0], 0.5f);
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EXPECT_FLOAT_EQ(b.data(1)[0], 1.5f);
|
||||
}
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||||
|
||||
TEST(CoreSampleBuffer, TransformVolumeStatic)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
||||
SampleBuffer in(params, 4);
|
||||
SampleBuffer out(params, 4);
|
||||
in.data(0)[0] = 0.5f;
|
||||
SampleBuffer::transform_volume(2.0f, &in, &out);
|
||||
EXPECT_FLOAT_EQ(out.data(0)[0], 1.0f);
|
||||
}
|
||||
|
||||
TEST(CoreSampleBuffer, TransformVolumeForSample)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
||||
SampleBuffer b(params, 4);
|
||||
b.data(0)[0] = 0.5f;
|
||||
b.data(1)[0] = 0.5f;
|
||||
b.transform_volume_for_sample(0, 2.0f);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[0], 1.0f);
|
||||
EXPECT_FLOAT_EQ(b.data(1)[0], 1.0f);
|
||||
}
|
||||
|
||||
TEST(CoreSampleBuffer, Clamp)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
||||
SampleBuffer b(params, 4);
|
||||
b.data(0)[0] = 2.0f;
|
||||
b.data(0)[1] = -2.0f;
|
||||
b.clamp();
|
||||
EXPECT_FLOAT_EQ(b.data(0)[0], 1.0f);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[1], -1.0f);
|
||||
}
|
||||
|
||||
TEST(CoreSampleBuffer, Silence)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
||||
SampleBuffer b(params, 4);
|
||||
b.data(0)[0] = 1.0f;
|
||||
b.silence();
|
||||
EXPECT_FLOAT_EQ(b.data(0)[0], 0.0f);
|
||||
}
|
||||
|
||||
TEST(CoreSampleBuffer, SilenceRange)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
||||
SampleBuffer b(params, 4);
|
||||
b.data(0)[0] = 1.0f;
|
||||
b.data(0)[1] = 1.0f;
|
||||
b.data(0)[2] = 1.0f;
|
||||
b.data(0)[3] = 1.0f;
|
||||
b.silence(1, 3);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[0], 1.0f);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[1], 0.0f);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[2], 0.0f);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[3], 1.0f);
|
||||
}
|
||||
|
||||
TEST(CoreSampleBuffer, Set)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
||||
SampleBuffer b(params, 4);
|
||||
float data[2] = {0.3f, 0.4f};
|
||||
b.set(0, data, 1, 2);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[1], 0.3f);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[2], 0.4f);
|
||||
}
|
||||
|
||||
TEST(CoreSampleBuffer, FastSet)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
||||
SampleBuffer src(params, 4);
|
||||
SampleBuffer dst(params, 4);
|
||||
src.data(1)[0] = 0.9f;
|
||||
dst.fast_set(src, 0, 1);
|
||||
EXPECT_FLOAT_EQ(dst.data(0)[0], 0.9f);
|
||||
}
|
||||
|
||||
TEST(CoreSampleBuffer, Reverse)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
||||
SampleBuffer b(params, 4);
|
||||
b.data(0)[0] = 0.1f;
|
||||
b.data(0)[1] = 0.2f;
|
||||
b.data(0)[2] = 0.3f;
|
||||
b.data(0)[3] = 0.4f;
|
||||
b.reverse();
|
||||
EXPECT_FLOAT_EQ(b.data(0)[0], 0.4f);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[3], 0.1f);
|
||||
}
|
||||
|
||||
TEST(CoreSampleBuffer, Speed)
|
||||
{
|
||||
AudioParams params = MakeParams();
|
||||
SampleBuffer b(params, 4);
|
||||
b.data(0)[0] = 0.1f;
|
||||
b.data(0)[1] = 0.2f;
|
||||
b.data(0)[2] = 0.3f;
|
||||
b.data(0)[3] = 0.4f;
|
||||
b.speed(2.0);
|
||||
EXPECT_EQ(b.sample_count(), 2u);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[0], 0.1f);
|
||||
EXPECT_FLOAT_EQ(b.data(0)[1], 0.3f);
|
||||
}
|
||||
|
||||
TEST(CoreSampleBuffer, UnallocatedOperationsNoCrash)
|
||||
{
|
||||
SampleBuffer b;
|
||||
b.reverse();
|
||||
b.speed(2.0);
|
||||
b.silence();
|
||||
b.set(0, nullptr, 0, 0);
|
||||
b.destroy();
|
||||
}
|
||||
Reference in New Issue
Block a user