| Index: webrtc/modules/audio_processing/audio_buffer_unittest.cc
|
| diff --git a/webrtc/modules/audio_processing/audio_buffer_unittest.cc b/webrtc/modules/audio_processing/audio_buffer_unittest.cc
|
| new file mode 100644
|
| index 0000000000000000000000000000000000000000..8e4517f2c4b096f5e7fe2b9a7a7b1cd14824421a
|
| --- /dev/null
|
| +++ b/webrtc/modules/audio_processing/audio_buffer_unittest.cc
|
| @@ -0,0 +1,144 @@
|
| +/*
|
| + * Copyright (c) 2015 The WebRTC project authors. All Rights Reserved.
|
| + *
|
| + * Use of this source code is governed by a BSD-style license
|
| + * that can be found in the LICENSE file in the root of the source
|
| + * tree. An additional intellectual property rights grant can be found
|
| + * in the file PATENTS. All contributing project authors may
|
| + * be found in the AUTHORS file in the root of the source tree.
|
| + */
|
| +
|
| +#include "webrtc/modules/audio_processing/audio_buffer.h"
|
| +#include "testing/gtest/include/gtest/gtest.h"
|
| +#include "testing/gmock/include/gmock/gmock.h"
|
| +
|
| +namespace webrtc {
|
| +namespace {
|
| +
|
| +using ::testing::ElementsAreArray;
|
| +
|
| +TEST(AudioBufferHelpersTest, DownmixInterleavedToMonoImpl) {
|
| + {
|
| + const int kNumMultichannelFrames = 4;
|
| + const int kNumChannels = 1;
|
| + const float interleaved[kNumChannels * kNumMultichannelFrames] = {
|
| + 1.f, 2.f, -1.f, -3.f};
|
| + float deinterleaved[kNumMultichannelFrames];
|
| +
|
| + DownmixInterleavedToMonoImpl<float, float>(
|
| + interleaved, deinterleaved, kNumMultichannelFrames, kNumChannels);
|
| +
|
| + EXPECT_THAT(deinterleaved, ElementsAreArray(interleaved));
|
| + }
|
| + {
|
| + const int kNumMultichannelFrames = 2;
|
| + const int kNumChannels = 2;
|
| + const float interleaved[kNumChannels * kNumMultichannelFrames] = {
|
| + 1.f, 2.f, -1.f, -3.f};
|
| + float deinterleaved[kNumMultichannelFrames];
|
| +
|
| + DownmixInterleavedToMonoImpl<float, float>(
|
| + interleaved, deinterleaved, kNumMultichannelFrames, kNumChannels);
|
| + const float expected[kNumMultichannelFrames] = {1.5f, -2.f};
|
| +
|
| + EXPECT_THAT(deinterleaved, ElementsAreArray(expected));
|
| + }
|
| + {
|
| + const int kNumMultichannelFrames = 2;
|
| + const int kNumChannels = 3;
|
| + const float interleaved[kNumChannels * kNumMultichannelFrames] = {
|
| + 1.f, 2.f, 3.f, -1.f, -3.f, 7.f};
|
| + float deinterleaved[kNumMultichannelFrames];
|
| +
|
| + DownmixInterleavedToMonoImpl<float, float>(
|
| + interleaved, deinterleaved, kNumMultichannelFrames, kNumChannels);
|
| + const float expected[kNumMultichannelFrames] = {2.f, 1.f};
|
| +
|
| + EXPECT_THAT(deinterleaved, ElementsAreArray(expected));
|
| + }
|
| + {
|
| + const int kNumMultichannelFrames = 2;
|
| + const int kNumChannels = 2;
|
| + const int16_t interleaved[kNumChannels * kNumMultichannelFrames] = {
|
| + 10, 20, -10, -30};
|
| + int16_t deinterleaved[kNumMultichannelFrames];
|
| +
|
| + DownmixInterleavedToMonoImpl<int16_t, int32_t>(
|
| + interleaved, deinterleaved, kNumMultichannelFrames, kNumChannels);
|
| + const int16_t expected[kNumMultichannelFrames] = {15, -20};
|
| +
|
| + EXPECT_THAT(deinterleaved, ElementsAreArray(expected));
|
| + }
|
| + {
|
| + const int kNumMultichannelFrames = 3;
|
| + const int kNumChannels = 3;
|
| + const int16_t interleaved[kNumChannels * kNumMultichannelFrames] = {
|
| + 30000, 30000, 24001, -5, -10, -20, -30000, -30999, -30000};
|
| + int16_t deinterleaved[kNumMultichannelFrames];
|
| +
|
| + DownmixInterleavedToMonoImpl<int16_t, int32_t>(
|
| + interleaved, deinterleaved, kNumMultichannelFrames, kNumChannels);
|
| + const int16_t expected[kNumMultichannelFrames] = {28000, -11, -30333};
|
| +
|
| + EXPECT_THAT(deinterleaved, ElementsAreArray(expected));
|
| + }
|
| +}
|
| +
|
| +TEST(AudioBufferHelpersTest, DownmixToMonoTest) {
|
| + {
|
| + const int kNumMultichannelFrames = 4;
|
| + const int kNumChannels = 1;
|
| + const float input_data[kNumChannels][kNumMultichannelFrames] = {
|
| + {1.f, 2.f, -1.f, -3.f}};
|
| + const float* input[kNumChannels];
|
| + for (int i = 0; i < kNumChannels; ++i) {
|
| + input[i] = input_data[i];
|
| + }
|
| +
|
| + float downmixed[kNumMultichannelFrames];
|
| +
|
| + DownmixToMono<float, float>(kNumMultichannelFrames, downmixed, input,
|
| + kNumChannels);
|
| +
|
| + EXPECT_THAT(downmixed, ElementsAreArray(input_data[0]));
|
| + }
|
| + {
|
| + const int kNumMultichannelFrames = 3;
|
| + const int kNumChannels = 2;
|
| + const float input_data[kNumChannels][kNumMultichannelFrames] = {
|
| + {1.f, 2.f, -1.f}, {3.f, 0.f, 1.f}};
|
| + const float* input[kNumChannels];
|
| + for (int i = 0; i < kNumChannels; ++i) {
|
| + input[i] = input_data[i];
|
| + }
|
| +
|
| + float downmixed[kNumMultichannelFrames];
|
| + const float expected[kNumMultichannelFrames] = {2.f, 1.f, 0.f};
|
| +
|
| + DownmixToMono<float, float>(kNumMultichannelFrames, downmixed, input,
|
| + kNumChannels);
|
| +
|
| + EXPECT_THAT(downmixed, ElementsAreArray(expected));
|
| + }
|
| + {
|
| + const int kNumMultichannelFrames = 3;
|
| + const int kNumChannels = 3;
|
| + const int16_t input_data[kNumChannels][kNumMultichannelFrames] = {
|
| + {30000, -5, -30000}, {30000, -10, -30999}, {24001, -20, -30000}};
|
| + const int16_t* input[kNumChannels];
|
| + for (int i = 0; i < kNumChannels; ++i) {
|
| + input[i] = input_data[i];
|
| + }
|
| +
|
| + int16_t downmixed[kNumMultichannelFrames];
|
| + const int16_t expected[kNumMultichannelFrames] = {28000, -11, -30333};
|
| +
|
| + DownmixToMono<int16_t, int32_t>(kNumMultichannelFrames, downmixed, input,
|
| + kNumChannels);
|
| +
|
| + EXPECT_THAT(downmixed, ElementsAreArray(expected));
|
| + }
|
| +}
|
| +
|
| +} // namespace
|
| +} // namespace webrtc
|
|
|