Automated with clang-tidy readability-identifier-naming (config added to .clang-tidy) plus scripted passes, per the updated rules now documented in CONTRIBUTING.md: - types (class/struct/enum/alias/template params): PascalCase - functions, variables, members: snake_case (incl. rational -> Rational) - private/protected members: trailing underscore; static member variables likewise (instance_, available_themes_) - constants and enum values: snake_case (kLinear -> k_linear, F32P -> f32p); ALL_CAPS reserved for macros - macros: OAK_ prefix (OLIVE_ADD_TEST/OLIVE_ASSERT/OLIVE_CONFIG -> OAK_ADD_TEST/OAK_ASSERT/OAK_CONFIG, GL_PREAMBLE -> OAK_GL_PREAMBLE, include guards -> OAK_*) - file names: all lowercase (Current/Plugin/OliveHost/OliveClip/ OlivePluginInstance -> current/plugin/olivehost/oliveclip/ oliveplugininstance) - getters share the member name sans underscore, setters set_foo() - Qt and third-party (OpenFX) virtual overrides and framework callbacks keep their original names (exempt in .clang-tidy) Manual follow-ups required where automation could not reach: - string-based QMetaObject/SIGNAL/SLOT references updated to renamed methods (AddTask, CreatedFile, DeleteSpecificFile, moveSelectionUp, ...) - macro bodies referencing renamed methods (OLIVE_CONFIG, NODE_DEFAULT_DESTRUCTOR, MANAGEDDISPLAYWIDGET_*) - self-shadowing locals renamed where signals/methods became same-named (size_changed, worker_count, selected_items, import param, filters) - third_party OFX member/namespace usages restored (OFX::Host::*, _created, _clipPrefsDirty, createInstance, clearPersistentMessage) - STL protocol aliases restored (const_iterator) with .clang-tidy ignore rules; qHash overloads restored Full build and test suite pass: ctest 4/4, ~1960 gtest cases green.
268 lines
6.0 KiB
C++
268 lines
6.0 KiB
C++
#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 make_params(int channels = 2, int sample_rate = 48000)
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{
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AudioParams params(sample_rate, k_channel_layout_stereo, SampleFormat::f32_p);
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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 = make_params();
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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 = make_params();
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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 = make_params();
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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 = make_params();
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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 = make_params();
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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 = make_params();
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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 = make_params();
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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 = make_params();
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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 = make_params();
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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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TEST(CoreSampleBuffer, RipChannel)
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{
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AudioParams params = make_params();
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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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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)
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{
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AudioParams params = make_params();
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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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TEST(CoreSampleBuffer, TransformVolume)
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{
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AudioParams params = make_params();
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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)
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{
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AudioParams params = make_params();
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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] = 0.5f;
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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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}
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TEST(CoreSampleBuffer, TransformVolumeStatic)
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{
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AudioParams params = make_params();
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SampleBuffer in(params, 4);
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SampleBuffer out(params, 4);
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in.data(0)[0] = 0.5f;
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SampleBuffer::transform_volume(2.0f, &in, &out);
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EXPECT_FLOAT_EQ(out.data(0)[0], 1.0f);
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}
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TEST(CoreSampleBuffer, TransformVolumeForSample)
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{
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AudioParams params = make_params();
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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] = 0.5f;
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b.transform_volume_for_sample(0, 2.0f);
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EXPECT_FLOAT_EQ(b.data(0)[0], 1.0f);
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EXPECT_FLOAT_EQ(b.data(1)[0], 1.0f);
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}
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TEST(CoreSampleBuffer, Clamp)
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{
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AudioParams params = make_params();
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SampleBuffer b(params, 4);
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b.data(0)[0] = 2.0f;
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b.data(0)[1] = -2.0f;
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b.clamp();
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EXPECT_FLOAT_EQ(b.data(0)[0], 1.0f);
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EXPECT_FLOAT_EQ(b.data(0)[1], -1.0f);
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}
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TEST(CoreSampleBuffer, Silence)
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{
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AudioParams params = make_params();
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SampleBuffer b(params, 4);
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b.data(0)[0] = 1.0f;
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b.silence();
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EXPECT_FLOAT_EQ(b.data(0)[0], 0.0f);
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}
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TEST(CoreSampleBuffer, SilenceRange)
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{
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AudioParams params = make_params();
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SampleBuffer b(params, 4);
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b.data(0)[0] = 1.0f;
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b.data(0)[1] = 1.0f;
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b.data(0)[2] = 1.0f;
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b.data(0)[3] = 1.0f;
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b.silence(1, 3);
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EXPECT_FLOAT_EQ(b.data(0)[0], 1.0f);
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EXPECT_FLOAT_EQ(b.data(0)[1], 0.0f);
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EXPECT_FLOAT_EQ(b.data(0)[2], 0.0f);
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EXPECT_FLOAT_EQ(b.data(0)[3], 1.0f);
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}
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TEST(CoreSampleBuffer, Set)
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{
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AudioParams params = make_params();
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SampleBuffer b(params, 4);
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float data[2] = { 0.3f, 0.4f };
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b.set(0, data, 1, 2);
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EXPECT_FLOAT_EQ(b.data(0)[1], 0.3f);
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EXPECT_FLOAT_EQ(b.data(0)[2], 0.4f);
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}
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TEST(CoreSampleBuffer, FastSet)
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{
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AudioParams params = make_params();
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SampleBuffer src(params, 4);
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SampleBuffer dst(params, 4);
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src.data(1)[0] = 0.9f;
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dst.fast_set(src, 0, 1);
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EXPECT_FLOAT_EQ(dst.data(0)[0], 0.9f);
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}
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TEST(CoreSampleBuffer, Reverse)
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{
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AudioParams params = make_params();
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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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b.data(0)[2] = 0.3f;
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b.data(0)[3] = 0.4f;
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b.reverse();
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EXPECT_FLOAT_EQ(b.data(0)[0], 0.4f);
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EXPECT_FLOAT_EQ(b.data(0)[3], 0.1f);
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}
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TEST(CoreSampleBuffer, Speed)
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{
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AudioParams params = make_params();
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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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b.data(0)[2] = 0.3f;
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b.data(0)[3] = 0.4f;
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b.speed(2.0);
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EXPECT_EQ(b.sample_count(), 2u);
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EXPECT_FLOAT_EQ(b.data(0)[0], 0.1f);
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EXPECT_FLOAT_EQ(b.data(0)[1], 0.3f);
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}
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TEST(CoreSampleBuffer, UnallocatedOperationsNoCrash)
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{
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SampleBuffer b;
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b.reverse();
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b.speed(2.0);
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b.silence();
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b.set(0, nullptr, 0, 0);
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b.destroy();
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// Operations on an unallocated buffer must be no-ops
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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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