| Index: webrtc/modules/audio_processing/aec3/suppression_filter_unittest.cc
|
| diff --git a/webrtc/modules/audio_processing/aec3/suppression_filter_unittest.cc b/webrtc/modules/audio_processing/aec3/suppression_filter_unittest.cc
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| new file mode 100644
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| index 0000000000000000000000000000000000000000..e8710b83759463585726a12a5d337663a3650dd0
|
| --- /dev/null
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| +++ b/webrtc/modules/audio_processing/aec3/suppression_filter_unittest.cc
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| @@ -0,0 +1,180 @@
|
| +/*
|
| + * Copyright (c) 2017 The WebRTC project authors. All Rights Reserved.
|
| + *
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| + * 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/aec3/suppression_filter.h"
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| +
|
| +#include <math.h>
|
| +#include <algorithm>
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| +#include <numeric>
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| +
|
| +#include "webrtc/test/gtest.h"
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| +
|
| +namespace webrtc {
|
| +namespace {
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| +
|
| +constexpr float kPi = 3.141592f;
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| +
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| +void ProduceSinusoid(int sample_rate_hz,
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| + float sinusoidal_frequency_hz,
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| + size_t* sample_counter,
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| + rtc::ArrayView<float> x) {
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| + // Produce a sinusoid of the specified frequency.
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| + for (size_t k = *sample_counter, j = 0; k < (*sample_counter + kBlockSize);
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| + ++k, ++j) {
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| + x[j] =
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| + 32767.f * sin(2.f * kPi * sinusoidal_frequency_hz * k / sample_rate_hz);
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| + }
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| + *sample_counter = *sample_counter + kBlockSize;
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| +}
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| +
|
| +} // namespace
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| +
|
| +#if RTC_DCHECK_IS_ON && GTEST_HAS_DEATH_TEST && !defined(WEBRTC_ANDROID)
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| +
|
| +// Verifies the check for null suppressor output.
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| +TEST(SuppressionFilter, NullOutput) {
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| + FftData cn;
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| + FftData cn_high_bands;
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| + std::array<float, kFftLengthBy2Plus1> gain;
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| +
|
| + EXPECT_DEATH(
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| + SuppressionFilter(16000).ApplyGain(cn, cn_high_bands, gain, nullptr), "");
|
| +}
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| +
|
| +// Verifies the check for allowed sample rate.
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| +TEST(SuppressionFilter, ProperSampleRate) {
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| + EXPECT_DEATH(SuppressionFilter(16001), "");
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| +}
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| +
|
| +#endif
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| +
|
| +// Verifies that no comfort noise is added when the gain is 1.
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| +TEST(SuppressionFilter, ComfortNoiseInUnityGain) {
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| + SuppressionFilter filter(48000);
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| + FftData cn;
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| + FftData cn_high_bands;
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| + std::array<float, kFftLengthBy2Plus1> gain;
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| +
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| + gain.fill(1.f);
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| + cn.re.fill(1.f);
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| + cn.im.fill(1.f);
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| + cn_high_bands.re.fill(1.f);
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| + cn_high_bands.im.fill(1.f);
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| +
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| + std::vector<std::vector<float>> e(3, std::vector<float>(kBlockSize, 0.f));
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| + std::vector<std::vector<float>> e_ref = e;
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| + filter.ApplyGain(cn, cn_high_bands, gain, &e);
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| +
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| + for (size_t k = 0; k < e.size(); ++k) {
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| + EXPECT_EQ(e_ref[k], e[k]);
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| + }
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| +}
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| +
|
| +// Verifies that the suppressor is able to suppress a signal.
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| +TEST(SuppressionFilter, SignalSuppression) {
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| + SuppressionFilter filter(48000);
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| + FftData cn;
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| + FftData cn_high_bands;
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| + std::array<float, kFftLengthBy2Plus1> gain;
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| + std::vector<std::vector<float>> e(3, std::vector<float>(kBlockSize, 0.f));
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| +
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| + gain.fill(1.f);
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| + std::for_each(gain.begin() + 10, gain.end(), [](float& a) { a = 0.f; });
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| +
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| + cn.re.fill(0.f);
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| + cn.im.fill(0.f);
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| + cn_high_bands.re.fill(0.f);
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| + cn_high_bands.im.fill(0.f);
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| +
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| + size_t sample_counter = 0;
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| +
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| + float e0_input = 0.f;
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| + float e0_output = 0.f;
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| + for (size_t k = 0; k < 100; ++k) {
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| + ProduceSinusoid(16000, 16000 * 40 / kFftLengthBy2 / 2, &sample_counter,
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| + e[0]);
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| + e0_input =
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| + std::inner_product(e[0].begin(), e[0].end(), e[0].begin(), e0_input);
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| + filter.ApplyGain(cn, cn_high_bands, gain, &e);
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| + e0_output =
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| + std::inner_product(e[0].begin(), e[0].end(), e[0].begin(), e0_output);
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| + }
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| +
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| + EXPECT_LT(e0_output, e0_input / 1000.f);
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| +}
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| +
|
| +// Verifies that the suppressor is able to pass through a desired signal while
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| +// applying suppressing for some frequencies.
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| +TEST(SuppressionFilter, SignalTransparency) {
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| + SuppressionFilter filter(48000);
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| + FftData cn;
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| + FftData cn_high_bands;
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| + std::array<float, kFftLengthBy2Plus1> gain;
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| + std::vector<std::vector<float>> e(3, std::vector<float>(kBlockSize, 0.f));
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| +
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| + gain.fill(1.f);
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| + std::for_each(gain.begin() + 30, gain.end(), [](float& a) { a = 0.f; });
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| +
|
| + cn.re.fill(0.f);
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| + cn.im.fill(0.f);
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| + cn_high_bands.re.fill(0.f);
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| + cn_high_bands.im.fill(0.f);
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| +
|
| + size_t sample_counter = 0;
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| +
|
| + float e0_input = 0.f;
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| + float e0_output = 0.f;
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| + for (size_t k = 0; k < 100; ++k) {
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| + ProduceSinusoid(16000, 16000 * 10 / kFftLengthBy2 / 2, &sample_counter,
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| + e[0]);
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| + e0_input =
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| + std::inner_product(e[0].begin(), e[0].end(), e[0].begin(), e0_input);
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| + filter.ApplyGain(cn, cn_high_bands, gain, &e);
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| + e0_output =
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| + std::inner_product(e[0].begin(), e[0].end(), e[0].begin(), e0_output);
|
| + }
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| +
|
| + EXPECT_LT(0.9f * e0_input, e0_output);
|
| +}
|
| +
|
| +// Verifies that the suppressor delay.
|
| +TEST(SuppressionFilter, Delay) {
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| + SuppressionFilter filter(48000);
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| + FftData cn;
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| + FftData cn_high_bands;
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| + std::array<float, kFftLengthBy2Plus1> gain;
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| + std::vector<std::vector<float>> e(3, std::vector<float>(kBlockSize, 0.f));
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| +
|
| + gain.fill(1.f);
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| +
|
| + cn.re.fill(0.f);
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| + cn.im.fill(0.f);
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| + cn_high_bands.re.fill(0.f);
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| + cn_high_bands.im.fill(0.f);
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| +
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| + for (size_t k = 0; k < 100; ++k) {
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| + for (size_t j = 0; j < 3; ++j) {
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| + for (size_t i = 0; i < kBlockSize; ++i) {
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| + e[j][i] = k * kBlockSize + i;
|
| + }
|
| + }
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| +
|
| + filter.ApplyGain(cn, cn_high_bands, gain, &e);
|
| + if (k > 2) {
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| + for (size_t j = 0; j < 2; ++j) {
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| + for (size_t i = 0; i < kBlockSize; ++i) {
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| + EXPECT_NEAR(k * kBlockSize + i - kBlockSize, e[j][i], 0.01);
|
| + }
|
| + }
|
| + }
|
| + }
|
| +}
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| +
|
| +} // namespace webrtc
|
|
|