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peah522d71b2017-02-23 05:16:26 -08001/*
2 * Copyright (c) 2017 The WebRTC project authors. All Rights Reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020011#include "modules/audio_processing/aec3/aec_state.h"
peah522d71b2017-02-23 05:16:26 -080012
Per Åhgren8ba58612017-12-01 23:01:44 +010013#include "modules/audio_processing/aec3/aec3_fft.h"
14#include "modules/audio_processing/aec3/render_delay_buffer.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020015#include "modules/audio_processing/logging/apm_data_dumper.h"
16#include "test/gtest.h"
peah522d71b2017-02-23 05:16:26 -080017
18namespace webrtc {
19
20// Verify the general functionality of AecState
21TEST(AecState, NormalUsage) {
22 ApmDataDumper data_dumper(42);
Per Åhgren8ba58612017-12-01 23:01:44 +010023 EchoCanceller3Config config;
24 AecState state(config);
25 std::unique_ptr<RenderDelayBuffer> render_delay_buffer(
26 RenderDelayBuffer::Create(config, 3));
peah86afe9d2017-04-06 15:45:32 -070027 std::array<float, kFftLengthBy2Plus1> E2_main = {};
28 std::array<float, kFftLengthBy2Plus1> Y2 = {};
29 std::vector<std::vector<float>> x(3, std::vector<float>(kBlockSize, 0.f));
Per Åhgren8ba58612017-12-01 23:01:44 +010030 EchoPathVariability echo_path_variability(
31 false, EchoPathVariability::DelayAdjustment::kNone, false);
peah29103572017-07-11 02:54:02 -070032 std::array<float, kBlockSize> s;
Per Åhgren8ba58612017-12-01 23:01:44 +010033 Aec3Fft fft;
peah29103572017-07-11 02:54:02 -070034 s.fill(100.f);
peah522d71b2017-02-23 05:16:26 -080035
36 std::vector<std::array<float, kFftLengthBy2Plus1>>
37 converged_filter_frequency_response(10);
38 for (auto& v : converged_filter_frequency_response) {
39 v.fill(0.01f);
40 }
41 std::vector<std::array<float, kFftLengthBy2Plus1>>
42 diverged_filter_frequency_response = converged_filter_frequency_response;
43 converged_filter_frequency_response[2].fill(100.f);
peah86afe9d2017-04-06 15:45:32 -070044 converged_filter_frequency_response[2][0] = 1.f;
peah522d71b2017-02-23 05:16:26 -080045
Per Åhgren09a718a2017-12-11 22:28:45 +010046 std::vector<float> impulse_response(
47 GetTimeDomainLength(config.filter.length_blocks), 0.f);
peah29103572017-07-11 02:54:02 -070048
Per Åhgrende22a172017-12-20 18:00:51 +010049 // Verify that linear AEC usability is false when the filter is diverged.
Per Åhgren1b4059e2017-10-15 20:19:21 +020050 state.Update(diverged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +010051 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s, false);
peah522d71b2017-02-23 05:16:26 -080052 EXPECT_FALSE(state.UsableLinearEstimate());
53
54 // Verify that linear AEC usability is true when the filter is converged
peah86afe9d2017-04-06 15:45:32 -070055 std::fill(x[0].begin(), x[0].end(), 101.f);
56 for (int k = 0; k < 3000; ++k) {
Per Åhgren0e6d2f52017-12-20 22:19:56 +010057 render_delay_buffer->Insert(x);
Per Åhgrende22a172017-12-20 18:00:51 +010058 state.Update(converged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +010059 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s,
Per Åhgren8ba58612017-12-01 23:01:44 +010060 false);
peah522d71b2017-02-23 05:16:26 -080061 }
62 EXPECT_TRUE(state.UsableLinearEstimate());
63
64 // Verify that linear AEC usability becomes false after an echo path change is
65 // reported
Per Åhgren8ba58612017-12-01 23:01:44 +010066 state.HandleEchoPathChange(EchoPathVariability(
67 true, EchoPathVariability::DelayAdjustment::kNone, false));
Per Åhgrende22a172017-12-20 18:00:51 +010068 state.Update(converged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +010069 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s, false);
peah522d71b2017-02-23 05:16:26 -080070 EXPECT_FALSE(state.UsableLinearEstimate());
71
72 // Verify that the active render detection works as intended.
peah86afe9d2017-04-06 15:45:32 -070073 std::fill(x[0].begin(), x[0].end(), 101.f);
Per Åhgren0e6d2f52017-12-20 22:19:56 +010074 render_delay_buffer->Insert(x);
Per Åhgren8ba58612017-12-01 23:01:44 +010075 state.HandleEchoPathChange(EchoPathVariability(
76 true, EchoPathVariability::DelayAdjustment::kNewDetectedDelay, false));
Per Åhgrende22a172017-12-20 18:00:51 +010077 state.Update(converged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +010078 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s, false);
peah522d71b2017-02-23 05:16:26 -080079 EXPECT_FALSE(state.ActiveRender());
80
peah86afe9d2017-04-06 15:45:32 -070081 for (int k = 0; k < 1000; ++k) {
Per Åhgren0e6d2f52017-12-20 22:19:56 +010082 render_delay_buffer->Insert(x);
Per Åhgrende22a172017-12-20 18:00:51 +010083 state.Update(converged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +010084 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s,
Per Åhgren8ba58612017-12-01 23:01:44 +010085 false);
peah86afe9d2017-04-06 15:45:32 -070086 }
peah522d71b2017-02-23 05:16:26 -080087 EXPECT_TRUE(state.ActiveRender());
88
89 // Verify that echo leakage is properly reported.
Per Åhgrende22a172017-12-20 18:00:51 +010090 state.Update(converged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +010091 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s, false);
peah522d71b2017-02-23 05:16:26 -080092 EXPECT_FALSE(state.EchoLeakageDetected());
93
Per Åhgrende22a172017-12-20 18:00:51 +010094 state.Update(converged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +010095 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s, true);
peah522d71b2017-02-23 05:16:26 -080096 EXPECT_TRUE(state.EchoLeakageDetected());
97
peah522d71b2017-02-23 05:16:26 -080098 // Verify that the ERL is properly estimated
peah86afe9d2017-04-06 15:45:32 -070099 for (auto& x_k : x) {
100 x_k = std::vector<float>(kBlockSize, 0.f);
101 }
102
103 x[0][0] = 5000.f;
Per Åhgrenc59a5762017-12-11 21:34:19 +0100104 for (size_t k = 0;
Per Åhgrenec22e3f2017-12-20 15:20:37 +0100105 k < render_delay_buffer->GetRenderBuffer()->GetFftBuffer().size(); ++k) {
Per Åhgren8ba58612017-12-01 23:01:44 +0100106 render_delay_buffer->Insert(x);
107 if (k == 0) {
108 render_delay_buffer->Reset();
109 }
Per Åhgrenc59a5762017-12-11 21:34:19 +0100110 render_delay_buffer->PrepareCaptureProcessing();
peah86afe9d2017-04-06 15:45:32 -0700111 }
112
113 Y2.fill(10.f * 10000.f * 10000.f);
114 for (size_t k = 0; k < 1000; ++k) {
Per Åhgrende22a172017-12-20 18:00:51 +0100115 state.Update(converged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +0100116 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s,
Per Åhgren8ba58612017-12-01 23:01:44 +0100117 false);
peah522d71b2017-02-23 05:16:26 -0800118 }
119
120 ASSERT_TRUE(state.UsableLinearEstimate());
121 const std::array<float, kFftLengthBy2Plus1>& erl = state.Erl();
peah86afe9d2017-04-06 15:45:32 -0700122 EXPECT_EQ(erl[0], erl[1]);
123 for (size_t k = 1; k < erl.size() - 1; ++k) {
124 EXPECT_NEAR(k % 2 == 0 ? 10.f : 1000.f, erl[k], 0.1);
125 }
126 EXPECT_EQ(erl[erl.size() - 2], erl[erl.size() - 1]);
peah522d71b2017-02-23 05:16:26 -0800127
128 // Verify that the ERLE is properly estimated
peah86afe9d2017-04-06 15:45:32 -0700129 E2_main.fill(1.f * 10000.f * 10000.f);
peah522d71b2017-02-23 05:16:26 -0800130 Y2.fill(10.f * E2_main[0]);
peah86afe9d2017-04-06 15:45:32 -0700131 for (size_t k = 0; k < 1000; ++k) {
Per Åhgrende22a172017-12-20 18:00:51 +0100132 state.Update(converged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +0100133 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s,
Per Åhgren8ba58612017-12-01 23:01:44 +0100134 false);
peah522d71b2017-02-23 05:16:26 -0800135 }
136 ASSERT_TRUE(state.UsableLinearEstimate());
peah86afe9d2017-04-06 15:45:32 -0700137 {
138 const auto& erle = state.Erle();
139 EXPECT_EQ(erle[0], erle[1]);
peah1d680892017-05-23 04:07:10 -0700140 constexpr size_t kLowFrequencyLimit = 32;
141 for (size_t k = 1; k < kLowFrequencyLimit; ++k) {
peah86afe9d2017-04-06 15:45:32 -0700142 EXPECT_NEAR(k % 2 == 0 ? 8.f : 1.f, erle[k], 0.1);
143 }
peah1d680892017-05-23 04:07:10 -0700144 for (size_t k = kLowFrequencyLimit; k < erle.size() - 1; ++k) {
145 EXPECT_NEAR(k % 2 == 0 ? 1.5f : 1.f, erle[k], 0.1);
146 }
peah86afe9d2017-04-06 15:45:32 -0700147 EXPECT_EQ(erle[erle.size() - 2], erle[erle.size() - 1]);
148 }
peah522d71b2017-02-23 05:16:26 -0800149
peah86afe9d2017-04-06 15:45:32 -0700150 E2_main.fill(1.f * 10000.f * 10000.f);
peah522d71b2017-02-23 05:16:26 -0800151 Y2.fill(5.f * E2_main[0]);
peah86afe9d2017-04-06 15:45:32 -0700152 for (size_t k = 0; k < 1000; ++k) {
Per Åhgrende22a172017-12-20 18:00:51 +0100153 state.Update(converged_filter_frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +0100154 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s,
Per Åhgren8ba58612017-12-01 23:01:44 +0100155 false);
peah522d71b2017-02-23 05:16:26 -0800156 }
peah86afe9d2017-04-06 15:45:32 -0700157
peah522d71b2017-02-23 05:16:26 -0800158 ASSERT_TRUE(state.UsableLinearEstimate());
peah86afe9d2017-04-06 15:45:32 -0700159 {
160 const auto& erle = state.Erle();
161 EXPECT_EQ(erle[0], erle[1]);
peah1d680892017-05-23 04:07:10 -0700162 constexpr size_t kLowFrequencyLimit = 32;
163 for (size_t k = 1; k < kLowFrequencyLimit; ++k) {
peah86afe9d2017-04-06 15:45:32 -0700164 EXPECT_NEAR(k % 2 == 0 ? 5.f : 1.f, erle[k], 0.1);
165 }
peah1d680892017-05-23 04:07:10 -0700166 for (size_t k = kLowFrequencyLimit; k < erle.size() - 1; ++k) {
167 EXPECT_NEAR(k % 2 == 0 ? 1.5f : 1.f, erle[k], 0.1);
168 }
peah86afe9d2017-04-06 15:45:32 -0700169 EXPECT_EQ(erle[erle.size() - 2], erle[erle.size() - 1]);
170 }
peah522d71b2017-02-23 05:16:26 -0800171}
172
peah522d71b2017-02-23 05:16:26 -0800173// Verifies the delay for a converged filter is correctly identified.
174TEST(AecState, ConvergedFilterDelay) {
175 constexpr int kFilterLength = 10;
Per Åhgren8ba58612017-12-01 23:01:44 +0100176 EchoCanceller3Config config;
177 AecState state(config);
178 std::unique_ptr<RenderDelayBuffer> render_delay_buffer(
179 RenderDelayBuffer::Create(config, 3));
peah522d71b2017-02-23 05:16:26 -0800180 std::array<float, kFftLengthBy2Plus1> E2_main;
peah522d71b2017-02-23 05:16:26 -0800181 std::array<float, kFftLengthBy2Plus1> Y2;
182 std::array<float, kBlockSize> x;
Per Åhgren8ba58612017-12-01 23:01:44 +0100183 EchoPathVariability echo_path_variability(
184 false, EchoPathVariability::DelayAdjustment::kNone, false);
peah29103572017-07-11 02:54:02 -0700185 std::array<float, kBlockSize> s;
186 s.fill(100.f);
peah522d71b2017-02-23 05:16:26 -0800187 x.fill(0.f);
188
189 std::vector<std::array<float, kFftLengthBy2Plus1>> frequency_response(
190 kFilterLength);
191
Per Åhgren09a718a2017-12-11 22:28:45 +0100192 std::vector<float> impulse_response(
193 GetTimeDomainLength(config.filter.length_blocks), 0.f);
peah29103572017-07-11 02:54:02 -0700194
peah522d71b2017-02-23 05:16:26 -0800195 // Verify that the filter delay for a converged filter is properly identified.
196 for (int k = 0; k < kFilterLength; ++k) {
197 for (auto& v : frequency_response) {
198 v.fill(0.01f);
199 }
200 frequency_response[k].fill(100.f);
peah86afe9d2017-04-06 15:45:32 -0700201 frequency_response[k][0] = 0.f;
202 state.HandleEchoPathChange(echo_path_variability);
Per Åhgrende22a172017-12-20 18:00:51 +0100203 state.Update(frequency_response, impulse_response, true,
Per Åhgren0e6d2f52017-12-20 22:19:56 +0100204 *render_delay_buffer->GetRenderBuffer(), E2_main, Y2, s,
Per Åhgren8ba58612017-12-01 23:01:44 +0100205 false);
peah522d71b2017-02-23 05:16:26 -0800206 if (k != (kFilterLength - 1)) {
207 EXPECT_EQ(k, state.FilterDelay());
208 }
209 }
210}
211
peah522d71b2017-02-23 05:16:26 -0800212} // namespace webrtc