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187 lines
6.7 KiB
187 lines
6.7 KiB
/*
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* Copyright 2018 The WebRTC Project Authors. All rights reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "api/audio/audio_frame.h"
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#include <stdint.h>
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#include <string.h> // memcmp
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#include "test/gtest.h"
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namespace webrtc {
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namespace {
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bool AllSamplesAre(int16_t sample, const AudioFrame& frame) {
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const int16_t* frame_data = frame.data();
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for (size_t i = 0; i < frame.max_16bit_samples(); i++) {
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if (frame_data[i] != sample) {
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return false;
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}
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}
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return true;
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}
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constexpr uint32_t kTimestamp = 27;
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constexpr int kSampleRateHz = 16000;
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constexpr size_t kNumChannelsMono = 1;
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constexpr size_t kNumChannelsStereo = 2;
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constexpr size_t kNumChannels5_1 = 6;
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constexpr size_t kSamplesPerChannel = kSampleRateHz / 100;
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} // namespace
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TEST(AudioFrameTest, FrameStartsMuted) {
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AudioFrame frame;
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EXPECT_TRUE(frame.muted());
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EXPECT_TRUE(AllSamplesAre(0, frame));
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}
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TEST(AudioFrameTest, UnmutedFrameIsInitiallyZeroed) {
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AudioFrame frame;
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frame.mutable_data();
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EXPECT_FALSE(frame.muted());
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EXPECT_TRUE(AllSamplesAre(0, frame));
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}
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TEST(AudioFrameTest, MutedFrameBufferIsZeroed) {
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AudioFrame frame;
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int16_t* frame_data = frame.mutable_data();
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for (size_t i = 0; i < frame.max_16bit_samples(); i++) {
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frame_data[i] = 17;
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}
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ASSERT_TRUE(AllSamplesAre(17, frame));
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frame.Mute();
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EXPECT_TRUE(frame.muted());
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EXPECT_TRUE(AllSamplesAre(0, frame));
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}
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TEST(AudioFrameTest, UpdateFrameMono) {
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AudioFrame frame;
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int16_t samples[kNumChannelsMono * kSamplesPerChannel] = {17};
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frame.UpdateFrame(kTimestamp, samples, kSamplesPerChannel, kSampleRateHz,
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AudioFrame::kPLC, AudioFrame::kVadActive, kNumChannelsMono);
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EXPECT_EQ(kTimestamp, frame.timestamp_);
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EXPECT_EQ(kSamplesPerChannel, frame.samples_per_channel());
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EXPECT_EQ(kSampleRateHz, frame.sample_rate_hz());
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EXPECT_EQ(AudioFrame::kPLC, frame.speech_type_);
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EXPECT_EQ(AudioFrame::kVadActive, frame.vad_activity_);
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EXPECT_EQ(kNumChannelsMono, frame.num_channels());
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EXPECT_EQ(CHANNEL_LAYOUT_MONO, frame.channel_layout());
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EXPECT_FALSE(frame.muted());
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EXPECT_EQ(0, memcmp(samples, frame.data(), sizeof(samples)));
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frame.UpdateFrame(kTimestamp, nullptr /* data*/, kSamplesPerChannel,
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kSampleRateHz, AudioFrame::kPLC, AudioFrame::kVadActive,
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kNumChannelsMono);
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EXPECT_TRUE(frame.muted());
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EXPECT_TRUE(AllSamplesAre(0, frame));
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}
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TEST(AudioFrameTest, UpdateFrameMultiChannel) {
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AudioFrame frame;
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frame.UpdateFrame(kTimestamp, nullptr /* data */, kSamplesPerChannel,
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kSampleRateHz, AudioFrame::kPLC, AudioFrame::kVadActive,
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kNumChannelsStereo);
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EXPECT_EQ(kSamplesPerChannel, frame.samples_per_channel());
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EXPECT_EQ(kNumChannelsStereo, frame.num_channels());
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EXPECT_EQ(CHANNEL_LAYOUT_STEREO, frame.channel_layout());
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frame.UpdateFrame(kTimestamp, nullptr /* data */, kSamplesPerChannel,
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kSampleRateHz, AudioFrame::kPLC, AudioFrame::kVadActive,
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kNumChannels5_1);
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EXPECT_EQ(kSamplesPerChannel, frame.samples_per_channel());
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EXPECT_EQ(kNumChannels5_1, frame.num_channels());
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EXPECT_EQ(CHANNEL_LAYOUT_5_1, frame.channel_layout());
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}
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TEST(AudioFrameTest, CopyFrom) {
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AudioFrame frame1;
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AudioFrame frame2;
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int16_t samples[kNumChannelsMono * kSamplesPerChannel] = {17};
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frame2.UpdateFrame(kTimestamp, samples, kSamplesPerChannel, kSampleRateHz,
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AudioFrame::kPLC, AudioFrame::kVadActive,
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kNumChannelsMono);
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frame1.CopyFrom(frame2);
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EXPECT_EQ(frame2.timestamp_, frame1.timestamp_);
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EXPECT_EQ(frame2.samples_per_channel_, frame1.samples_per_channel_);
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EXPECT_EQ(frame2.sample_rate_hz_, frame1.sample_rate_hz_);
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EXPECT_EQ(frame2.speech_type_, frame1.speech_type_);
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EXPECT_EQ(frame2.vad_activity_, frame1.vad_activity_);
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EXPECT_EQ(frame2.num_channels_, frame1.num_channels_);
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EXPECT_EQ(frame2.muted(), frame1.muted());
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EXPECT_EQ(0, memcmp(frame2.data(), frame1.data(), sizeof(samples)));
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frame2.UpdateFrame(kTimestamp, nullptr /* data */, kSamplesPerChannel,
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kSampleRateHz, AudioFrame::kPLC, AudioFrame::kVadActive,
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kNumChannelsMono);
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frame1.CopyFrom(frame2);
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EXPECT_EQ(frame2.muted(), frame1.muted());
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EXPECT_EQ(0, memcmp(frame2.data(), frame1.data(), sizeof(samples)));
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}
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TEST(AudioFrameTest, SwapFrames) {
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AudioFrame frame1, frame2;
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int16_t samples1[kNumChannelsMono * kSamplesPerChannel];
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for (size_t i = 0; i < kNumChannelsMono * kSamplesPerChannel; ++i) {
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samples1[i] = i;
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}
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frame1.UpdateFrame(kTimestamp, samples1, kSamplesPerChannel, kSampleRateHz,
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AudioFrame::kPLC, AudioFrame::kVadActive,
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kNumChannelsMono);
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frame1.set_absolute_capture_timestamp_ms(12345678);
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const auto frame1_channel_layout = frame1.channel_layout();
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int16_t samples2[(kNumChannelsMono + 1) * (kSamplesPerChannel + 1)];
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for (size_t i = 0; i < (kNumChannelsMono + 1) * (kSamplesPerChannel + 1);
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++i) {
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samples2[i] = 1000 + i;
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}
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frame2.UpdateFrame(kTimestamp + 1, samples2, kSamplesPerChannel + 1,
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kSampleRateHz + 1, AudioFrame::kNormalSpeech,
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AudioFrame::kVadPassive, kNumChannelsMono + 1);
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const auto frame2_channel_layout = frame2.channel_layout();
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swap(frame1, frame2);
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EXPECT_EQ(kTimestamp + 1, frame1.timestamp_);
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ASSERT_EQ(kSamplesPerChannel + 1, frame1.samples_per_channel_);
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EXPECT_EQ(kSampleRateHz + 1, frame1.sample_rate_hz_);
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EXPECT_EQ(AudioFrame::kNormalSpeech, frame1.speech_type_);
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EXPECT_EQ(AudioFrame::kVadPassive, frame1.vad_activity_);
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ASSERT_EQ(kNumChannelsMono + 1, frame1.num_channels_);
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for (size_t i = 0; i < (kNumChannelsMono + 1) * (kSamplesPerChannel + 1);
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++i) {
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EXPECT_EQ(samples2[i], frame1.data()[i]);
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}
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EXPECT_FALSE(frame1.absolute_capture_timestamp_ms());
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EXPECT_EQ(frame2_channel_layout, frame1.channel_layout());
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EXPECT_EQ(kTimestamp, frame2.timestamp_);
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ASSERT_EQ(kSamplesPerChannel, frame2.samples_per_channel_);
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EXPECT_EQ(kSampleRateHz, frame2.sample_rate_hz_);
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EXPECT_EQ(AudioFrame::kPLC, frame2.speech_type_);
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EXPECT_EQ(AudioFrame::kVadActive, frame2.vad_activity_);
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ASSERT_EQ(kNumChannelsMono, frame2.num_channels_);
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for (size_t i = 0; i < kNumChannelsMono * kSamplesPerChannel; ++i) {
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EXPECT_EQ(samples1[i], frame2.data()[i]);
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}
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EXPECT_EQ(12345678, frame2.absolute_capture_timestamp_ms());
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EXPECT_EQ(frame1_channel_layout, frame2.channel_layout());
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}
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} // namespace webrtc
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