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peah69221db2017-01-27 03:28:19 -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 */
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020010#include "modules/audio_processing/aec3/echo_remover.h"
peah69221db2017-01-27 03:28:19 -080011
peah86afe9d2017-04-06 15:45:32 -070012#include <math.h>
Yves Gerey988cc082018-10-23 12:03:01 +020013#include <stddef.h>
Jonas Olssona4d87372019-07-05 19:08:33 +020014
peah69221db2017-01-27 03:28:19 -080015#include <algorithm>
Yves Gerey988cc082018-10-23 12:03:01 +020016#include <array>
Mirko Bonadeidbce0902019-03-15 07:39:02 +010017#include <cmath>
peah522d71b2017-02-23 05:16:26 -080018#include <memory>
peah69221db2017-01-27 03:28:19 -080019
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020020#include "api/array_view.h"
21#include "modules/audio_processing/aec3/aec3_common.h"
Yves Gerey988cc082018-10-23 12:03:01 +020022#include "modules/audio_processing/aec3/aec3_fft.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020023#include "modules/audio_processing/aec3/aec_state.h"
24#include "modules/audio_processing/aec3/comfort_noise_generator.h"
25#include "modules/audio_processing/aec3/echo_path_variability.h"
26#include "modules/audio_processing/aec3/echo_remover_metrics.h"
27#include "modules/audio_processing/aec3/fft_data.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020028#include "modules/audio_processing/aec3/render_buffer.h"
Yves Gerey988cc082018-10-23 12:03:01 +020029#include "modules/audio_processing/aec3/render_signal_analyzer.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020030#include "modules/audio_processing/aec3/residual_echo_estimator.h"
31#include "modules/audio_processing/aec3/subtractor.h"
Yves Gerey988cc082018-10-23 12:03:01 +020032#include "modules/audio_processing/aec3/subtractor_output.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020033#include "modules/audio_processing/aec3/suppression_filter.h"
34#include "modules/audio_processing/aec3/suppression_gain.h"
35#include "modules/audio_processing/logging/apm_data_dumper.h"
Steve Anton10542f22019-01-11 09:11:00 -080036#include "rtc_base/atomic_ops.h"
Yves Gerey988cc082018-10-23 12:03:01 +020037#include "rtc_base/checks.h"
Steve Anton10542f22019-01-11 09:11:00 -080038#include "rtc_base/constructor_magic.h"
Per Åhgren88cf0502018-07-16 17:08:41 +020039#include "rtc_base/logging.h"
peah69221db2017-01-27 03:28:19 -080040
41namespace webrtc {
42
43namespace {
peah522d71b2017-02-23 05:16:26 -080044
45void LinearEchoPower(const FftData& E,
46 const FftData& Y,
47 std::array<float, kFftLengthBy2Plus1>* S2) {
48 for (size_t k = 0; k < E.re.size(); ++k) {
49 (*S2)[k] = (Y.re[k] - E.re[k]) * (Y.re[k] - E.re[k]) +
50 (Y.im[k] - E.im[k]) * (Y.im[k] - E.im[k]);
51 }
52}
53
Per Åhgren22754392018-08-10 18:37:38 +020054// Fades between two input signals using a fix-sized transition.
55void SignalTransition(rtc::ArrayView<const float> from,
56 rtc::ArrayView<const float> to,
57 rtc::ArrayView<float> out) {
58 constexpr size_t kTransitionSize = 30;
Gustaf Ullbergddb82a62018-09-11 12:55:23 +020059 constexpr float kOneByTransitionSizePlusOne = 1.f / (kTransitionSize + 1);
Per Åhgren22754392018-08-10 18:37:38 +020060
61 RTC_DCHECK_EQ(from.size(), to.size());
62 RTC_DCHECK_EQ(from.size(), out.size());
63 RTC_DCHECK_LE(kTransitionSize, out.size());
64
65 for (size_t k = 0; k < kTransitionSize; ++k) {
Gustaf Ullbergddb82a62018-09-11 12:55:23 +020066 float a = (k + 1) * kOneByTransitionSizePlusOne;
67 out[k] = a * to[k] + (1.f - a) * from[k];
Per Åhgren22754392018-08-10 18:37:38 +020068 }
69
70 std::copy(to.begin() + kTransitionSize, to.end(),
71 out.begin() + kTransitionSize);
72}
73
Per Åhgren169c7fd2018-04-27 12:04:03 +020074// Computes a windowed (square root Hanning) padded FFT and updates the related
75// memory.
76void WindowedPaddedFft(const Aec3Fft& fft,
77 rtc::ArrayView<const float> v,
78 rtc::ArrayView<float> v_old,
79 FftData* V) {
80 fft.PaddedFft(v, v_old, Aec3Fft::Window::kSqrtHanning, V);
81 std::copy(v.begin(), v.end(), v_old.begin());
82}
83
peah522d71b2017-02-23 05:16:26 -080084// Class for removing the echo from the capture signal.
peah69221db2017-01-27 03:28:19 -080085class EchoRemoverImpl final : public EchoRemover {
86 public:
Per Åhgrence202a02019-09-02 17:01:19 +020087 EchoRemoverImpl(const EchoCanceller3Config& config,
88 int sample_rate_hz,
89 size_t num_render_channels,
90 size_t num_capture_channels);
peah69221db2017-01-27 03:28:19 -080091 ~EchoRemoverImpl() override;
92
Gustaf Ullberg332150d2017-11-22 14:17:39 +010093 void GetMetrics(EchoControl::Metrics* metrics) const override;
94
peah522d71b2017-02-23 05:16:26 -080095 // Removes the echo from a block of samples from the capture signal. The
96 // supplied render signal is assumed to be pre-aligned with the capture
97 // signal.
Per Åhgrence202a02019-09-02 17:01:19 +020098 void ProcessCapture(
99 EchoPathVariability echo_path_variability,
100 bool capture_signal_saturation,
101 const absl::optional<DelayEstimate>& external_delay,
102 RenderBuffer* render_buffer,
103 std::vector<std::vector<std::vector<float>>>* capture) override;
peah69221db2017-01-27 03:28:19 -0800104
peah522d71b2017-02-23 05:16:26 -0800105 // Updates the status on whether echo leakage is detected in the output of the
106 // echo remover.
107 void UpdateEchoLeakageStatus(bool leakage_detected) override {
108 echo_leakage_detected_ = leakage_detected;
109 }
peah69221db2017-01-27 03:28:19 -0800110
111 private:
Per Åhgren78026752018-08-01 16:24:08 +0200112 // Selects which of the shadow and main linear filter outputs that is most
Per Åhgren22754392018-08-10 18:37:38 +0200113 // appropriate to pass to the suppressor and forms the linear filter output by
114 // smoothly transition between those.
Gustaf Ullberg68d6d442019-01-29 10:08:15 +0100115 void FormLinearFilterOutput(const SubtractorOutput& subtractor_output,
Per Åhgren22754392018-08-10 18:37:38 +0200116 rtc::ArrayView<float> output);
Per Åhgren78026752018-08-01 16:24:08 +0200117
peah522d71b2017-02-23 05:16:26 -0800118 static int instance_count_;
Gustaf Ullbergbd83b912017-10-18 12:32:42 +0200119 const EchoCanceller3Config config_;
peah522d71b2017-02-23 05:16:26 -0800120 const Aec3Fft fft_;
121 std::unique_ptr<ApmDataDumper> data_dumper_;
122 const Aec3Optimization optimization_;
peah69221db2017-01-27 03:28:19 -0800123 const int sample_rate_hz_;
Per Åhgrence202a02019-09-02 17:01:19 +0200124 const size_t num_render_channels_;
125 const size_t num_capture_channels_;
Per Åhgren78026752018-08-01 16:24:08 +0200126 const bool use_shadow_filter_output_;
peah522d71b2017-02-23 05:16:26 -0800127 Subtractor subtractor_;
128 SuppressionGain suppression_gain_;
129 ComfortNoiseGenerator cng_;
130 SuppressionFilter suppression_filter_;
peah522d71b2017-02-23 05:16:26 -0800131 RenderSignalAnalyzer render_signal_analyzer_;
peah522d71b2017-02-23 05:16:26 -0800132 ResidualEchoEstimator residual_echo_estimator_;
133 bool echo_leakage_detected_ = false;
peah522d71b2017-02-23 05:16:26 -0800134 AecState aec_state_;
peahe985b3f2017-02-28 22:08:53 -0800135 EchoRemoverMetrics metrics_;
Per Åhgren47d7fbd2018-04-24 12:44:29 +0200136 std::array<float, kFftLengthBy2> e_old_;
137 std::array<float, kFftLengthBy2> x_old_;
138 std::array<float, kFftLengthBy2> y_old_;
Per Åhgren88cf0502018-07-16 17:08:41 +0200139 size_t block_counter_ = 0;
140 int gain_change_hangover_ = 0;
Per Åhgren22754392018-08-10 18:37:38 +0200141 bool main_filter_output_last_selected_ = true;
142 bool linear_filter_output_last_selected_ = true;
peah69221db2017-01-27 03:28:19 -0800143
144 RTC_DISALLOW_COPY_AND_ASSIGN(EchoRemoverImpl);
145};
146
peah522d71b2017-02-23 05:16:26 -0800147int EchoRemoverImpl::instance_count_ = 0;
148
Gustaf Ullbergbd83b912017-10-18 12:32:42 +0200149EchoRemoverImpl::EchoRemoverImpl(const EchoCanceller3Config& config,
Per Åhgrence202a02019-09-02 17:01:19 +0200150 int sample_rate_hz,
151 size_t num_render_channels,
152 size_t num_capture_channels)
peah8cee56f2017-08-24 22:36:53 -0700153 : config_(config),
154 fft_(),
aleloi88b82b52017-02-23 06:27:03 -0800155 data_dumper_(
peah522d71b2017-02-23 05:16:26 -0800156 new ApmDataDumper(rtc::AtomicOps::Increment(&instance_count_))),
157 optimization_(DetectOptimization()),
158 sample_rate_hz_(sample_rate_hz),
Per Åhgrence202a02019-09-02 17:01:19 +0200159 num_render_channels_(num_render_channels),
160 num_capture_channels_(num_capture_channels),
Per Åhgren24021542018-08-31 07:34:29 +0200161 use_shadow_filter_output_(
Per Åhgren24021542018-08-31 07:34:29 +0200162 config_.filter.enable_shadow_filter_output_usage),
Per Åhgrena33dc012019-09-03 23:59:52 +0200163 subtractor_(config,
164 num_render_channels_,
165 num_capture_channels_,
166 data_dumper_.get(),
167 optimization_),
Per Åhgren47d7fbd2018-04-24 12:44:29 +0200168 suppression_gain_(config_, optimization_, sample_rate_hz),
peah522d71b2017-02-23 05:16:26 -0800169 cng_(optimization_),
Gustaf Ullberg83b00f02018-11-06 16:25:37 +0100170 suppression_filter_(optimization_, sample_rate_hz_),
Per Åhgren971de072018-03-14 23:23:47 +0100171 render_signal_analyzer_(config_),
peah8cee56f2017-08-24 22:36:53 -0700172 residual_echo_estimator_(config_),
173 aec_state_(config_) {
peah522d71b2017-02-23 05:16:26 -0800174 RTC_DCHECK(ValidFullBandRate(sample_rate_hz));
Per Åhgren47d7fbd2018-04-24 12:44:29 +0200175 x_old_.fill(0.f);
176 y_old_.fill(0.f);
177 e_old_.fill(0.f);
peah69221db2017-01-27 03:28:19 -0800178}
179
180EchoRemoverImpl::~EchoRemoverImpl() = default;
181
Gustaf Ullberg332150d2017-11-22 14:17:39 +0100182void EchoRemoverImpl::GetMetrics(EchoControl::Metrics* metrics) const {
183 // Echo return loss (ERL) is inverted to go from gain to attenuation.
Mirko Bonadeidbce0902019-03-15 07:39:02 +0100184 metrics->echo_return_loss = -10.0 * std::log10(aec_state_.ErlTimeDomain());
Gustaf Ullberg332150d2017-11-22 14:17:39 +0100185 metrics->echo_return_loss_enhancement =
Jesús de Vicente Peñae9a7e902018-09-27 11:49:39 +0200186 Log2TodB(aec_state_.FullBandErleLog2());
Gustaf Ullberg332150d2017-11-22 14:17:39 +0100187}
188
peahcf02cf12017-04-05 14:18:07 -0700189void EchoRemoverImpl::ProcessCapture(
Per Åhgren88cf0502018-07-16 17:08:41 +0200190 EchoPathVariability echo_path_variability,
peah69221db2017-01-27 03:28:19 -0800191 bool capture_signal_saturation,
Danil Chapovalovdb9f7ab2018-06-19 10:50:11 +0200192 const absl::optional<DelayEstimate>& external_delay,
Per Åhgrenc59a5762017-12-11 21:34:19 +0100193 RenderBuffer* render_buffer,
Per Åhgrence202a02019-09-02 17:01:19 +0200194 std::vector<std::vector<std::vector<float>>>* capture) {
Per Åhgren88cf0502018-07-16 17:08:41 +0200195 ++block_counter_;
Per Åhgrence202a02019-09-02 17:01:19 +0200196 const std::vector<std::vector<std::vector<float>>>& x =
197 render_buffer->Block(0);
198 std::vector<std::vector<std::vector<float>>>* y = capture;
Per Åhgrenc59a5762017-12-11 21:34:19 +0100199 RTC_DCHECK(render_buffer);
peah522d71b2017-02-23 05:16:26 -0800200 RTC_DCHECK(y);
201 RTC_DCHECK_EQ(x.size(), NumBandsForRate(sample_rate_hz_));
202 RTC_DCHECK_EQ(y->size(), NumBandsForRate(sample_rate_hz_));
Per Åhgrence202a02019-09-02 17:01:19 +0200203 RTC_DCHECK_EQ(x[0].size(), num_render_channels_);
204 RTC_DCHECK_EQ((*y)[0].size(), num_capture_channels_);
205 RTC_DCHECK_EQ(x[0][0].size(), kBlockSize);
206 RTC_DCHECK_EQ((*y)[0][0].size(), kBlockSize);
207 const std::vector<float>& x0 = x[0][0];
208 std::vector<float>& y0 = (*y)[0][0];
peah522d71b2017-02-23 05:16:26 -0800209
peah86afe9d2017-04-06 15:45:32 -0700210 data_dumper_->DumpWav("aec3_echo_remover_capture_input", kBlockSize, &y0[0],
Per Åhgrence202a02019-09-02 17:01:19 +0200211 16000, 1);
peah86afe9d2017-04-06 15:45:32 -0700212 data_dumper_->DumpWav("aec3_echo_remover_render_input", kBlockSize, &x0[0],
Per Åhgrence202a02019-09-02 17:01:19 +0200213 16000, 1);
peah29103572017-07-11 02:54:02 -0700214 data_dumper_->DumpRaw("aec3_echo_remover_capture_input", y0);
215 data_dumper_->DumpRaw("aec3_echo_remover_render_input", x0);
peah522d71b2017-02-23 05:16:26 -0800216
217 aec_state_.UpdateCaptureSaturation(capture_signal_saturation);
218
219 if (echo_path_variability.AudioPathChanged()) {
Per Åhgren88cf0502018-07-16 17:08:41 +0200220 // Ensure that the gain change is only acted on once per frame.
221 if (echo_path_variability.gain_change) {
222 if (gain_change_hangover_ == 0) {
223 constexpr int kMaxBlocksPerFrame = 3;
224 gain_change_hangover_ = kMaxBlocksPerFrame;
Gustaf Ullberg940c2b52019-08-08 15:04:41 +0200225 RTC_LOG(LS_INFO) << "Gain change detected at block " << block_counter_;
Per Åhgren88cf0502018-07-16 17:08:41 +0200226 } else {
227 echo_path_variability.gain_change = false;
228 }
229 }
230
peah522d71b2017-02-23 05:16:26 -0800231 subtractor_.HandleEchoPathChange(echo_path_variability);
peah86afe9d2017-04-06 15:45:32 -0700232 aec_state_.HandleEchoPathChange(echo_path_variability);
Per Åhgren88cf0502018-07-16 17:08:41 +0200233
234 if (echo_path_variability.delay_change !=
235 EchoPathVariability::DelayAdjustment::kNone) {
236 suppression_gain_.SetInitialState(true);
Per Åhgren88cf0502018-07-16 17:08:41 +0200237 }
238 }
239 if (gain_change_hangover_ > 0) {
240 --gain_change_hangover_;
peah522d71b2017-02-23 05:16:26 -0800241 }
242
243 std::array<float, kFftLengthBy2Plus1> Y2;
Per Åhgren169c7fd2018-04-27 12:04:03 +0200244 std::array<float, kFftLengthBy2Plus1> E2;
peah522d71b2017-02-23 05:16:26 -0800245 std::array<float, kFftLengthBy2Plus1> R2;
246 std::array<float, kFftLengthBy2Plus1> S2_linear;
247 std::array<float, kFftLengthBy2Plus1> G;
peah86afe9d2017-04-06 15:45:32 -0700248 float high_bands_gain;
peah522d71b2017-02-23 05:16:26 -0800249 FftData Y;
Per Åhgren169c7fd2018-04-27 12:04:03 +0200250 FftData E;
peah522d71b2017-02-23 05:16:26 -0800251 FftData comfort_noise;
252 FftData high_band_comfort_noise;
253 SubtractorOutput subtractor_output;
peah522d71b2017-02-23 05:16:26 -0800254
peah522d71b2017-02-23 05:16:26 -0800255 // Analyze the render signal.
Per Åhgren5c532d32018-03-22 00:29:25 +0100256 render_signal_analyzer_.Update(*render_buffer,
257 aec_state_.FilterDelayBlocks());
peah522d71b2017-02-23 05:16:26 -0800258
259 // Perform linear echo cancellation.
Jesús de Vicente Peña02e9e442018-08-29 13:34:07 +0200260 if (aec_state_.TransitionTriggered()) {
Per Åhgrena98c8072018-01-15 19:17:16 +0100261 subtractor_.ExitInitialState();
Per Åhgren5f1a31c2018-03-08 15:54:41 +0100262 suppression_gain_.SetInitialState(false);
Per Åhgrena98c8072018-01-15 19:17:16 +0100263 }
Per Åhgren5c532d32018-03-22 00:29:25 +0100264
265 // If the delay is known, use the echo subtractor.
Per Åhgrenc59a5762017-12-11 21:34:19 +0100266 subtractor_.Process(*render_buffer, y0, render_signal_analyzer_, aec_state_,
peah86afe9d2017-04-06 15:45:32 -0700267 &subtractor_output);
Per Åhgren22754392018-08-10 18:37:38 +0200268 std::array<float, kBlockSize> e;
Gustaf Ullberg68d6d442019-01-29 10:08:15 +0100269 FormLinearFilterOutput(subtractor_output, e);
peah522d71b2017-02-23 05:16:26 -0800270
271 // Compute spectra.
Per Åhgren169c7fd2018-04-27 12:04:03 +0200272 WindowedPaddedFft(fft_, y0, y_old_, &Y);
273 WindowedPaddedFft(fft_, e, e_old_, &E);
274 LinearEchoPower(E, Y, &S2_linear);
Per Åhgren8ba58612017-12-01 23:01:44 +0100275 Y.Spectrum(optimization_, Y2);
Per Åhgren169c7fd2018-04-27 12:04:03 +0200276 E.Spectrum(optimization_, E2);
peah522d71b2017-02-23 05:16:26 -0800277
278 // Update the AEC state information.
Per Åhgren5c532d32018-03-22 00:29:25 +0100279 aec_state_.Update(external_delay, subtractor_.FilterFrequencyResponse(),
Per Åhgrenb20b9372018-07-13 00:22:54 +0200280 subtractor_.FilterImpulseResponse(), *render_buffer, E2, Y2,
281 subtractor_output, y0);
Per Åhgren169c7fd2018-04-27 12:04:03 +0200282
peah522d71b2017-02-23 05:16:26 -0800283 // Choose the linear output.
Per Åhgrence202a02019-09-02 17:01:19 +0200284 data_dumper_->DumpWav("aec3_output_linear2", kBlockSize, &e[0], 16000, 1);
Per Åhgren47d7fbd2018-04-24 12:44:29 +0200285 if (aec_state_.UseLinearFilterOutput()) {
Gustaf Ullberg68d6d442019-01-29 10:08:15 +0100286 if (!linear_filter_output_last_selected_) {
Per Åhgren22754392018-08-10 18:37:38 +0200287 SignalTransition(y0, e, y0);
288 } else {
289 std::copy(e.begin(), e.end(), y0.begin());
290 }
291 } else {
Gustaf Ullberg68d6d442019-01-29 10:08:15 +0100292 if (linear_filter_output_last_selected_) {
Per Åhgren22754392018-08-10 18:37:38 +0200293 SignalTransition(e, y0, y0);
294 }
Per Åhgren47d7fbd2018-04-24 12:44:29 +0200295 }
Per Åhgren22754392018-08-10 18:37:38 +0200296 linear_filter_output_last_selected_ = aec_state_.UseLinearFilterOutput();
Per Åhgren169c7fd2018-04-27 12:04:03 +0200297 const auto& Y_fft = aec_state_.UseLinearFilterOutput() ? E : Y;
298
Per Åhgrence202a02019-09-02 17:01:19 +0200299 data_dumper_->DumpWav("aec3_output_linear", kBlockSize, &y0[0], 16000, 1);
peah522d71b2017-02-23 05:16:26 -0800300
301 // Estimate the residual echo power.
Per Åhgrenc59a5762017-12-11 21:34:19 +0100302 residual_echo_estimator_.Estimate(aec_state_, *render_buffer, S2_linear, Y2,
peah86afe9d2017-04-06 15:45:32 -0700303 &R2);
peah522d71b2017-02-23 05:16:26 -0800304
305 // Estimate the comfort noise.
306 cng_.Compute(aec_state_, Y2, &comfort_noise, &high_band_comfort_noise);
307
Gustaf Ullberg2bab5ad2019-04-15 17:15:37 +0200308 // Suppressor echo estimate.
Per Åhgrenfde4aa92018-08-27 14:19:35 +0200309 const auto& echo_spectrum =
310 aec_state_.UsableLinearEstimate() ? S2_linear : R2;
Jesús de Vicente Peña0faf0822018-09-24 12:48:28 +0200311
Gustaf Ullberg2bab5ad2019-04-15 17:15:37 +0200312 // Suppressor nearend estimate.
313 std::array<float, kFftLengthBy2Plus1> nearend_spectrum_bounded;
314 if (aec_state_.UsableLinearEstimate()) {
315 std::transform(E2.begin(), E2.end(), Y2.begin(),
316 nearend_spectrum_bounded.begin(),
317 [](float a, float b) { return std::min(a, b); });
318 }
319 auto& nearend_spectrum =
320 aec_state_.UsableLinearEstimate() ? nearend_spectrum_bounded : Y2;
Jesús de Vicente Peña0faf0822018-09-24 12:48:28 +0200321
Gustaf Ullberg2bab5ad2019-04-15 17:15:37 +0200322 // Compute and apply the suppression gain.
323 suppression_gain_.GetGain(nearend_spectrum, echo_spectrum, R2,
Gustaf Ullberg00466972019-04-15 10:30:50 +0200324 cng_.NoiseSpectrum(), render_signal_analyzer_,
Jesús de Vicente Peña0faf0822018-09-24 12:48:28 +0200325 aec_state_, x, &high_bands_gain, &G);
Per Åhgren47d7fbd2018-04-24 12:44:29 +0200326
peah86afe9d2017-04-06 15:45:32 -0700327 suppression_filter_.ApplyGain(comfort_noise, high_band_comfort_noise, G,
Per Åhgren47d7fbd2018-04-24 12:44:29 +0200328 high_bands_gain, Y_fft, y);
peah522d71b2017-02-23 05:16:26 -0800329
peahe985b3f2017-02-28 22:08:53 -0800330 // Update the metrics.
331 metrics_.Update(aec_state_, cng_.NoiseSpectrum(), G);
332
peah522d71b2017-02-23 05:16:26 -0800333 // Debug outputs for the purpose of development and analysis.
peah29103572017-07-11 02:54:02 -0700334 data_dumper_->DumpWav("aec3_echo_estimate", kBlockSize,
Per Åhgrence202a02019-09-02 17:01:19 +0200335 &subtractor_output.s_main[0], 16000, 1);
peah29103572017-07-11 02:54:02 -0700336 data_dumper_->DumpRaw("aec3_output", y0);
peah14c11a42017-07-11 06:13:43 -0700337 data_dumper_->DumpRaw("aec3_narrow_render",
338 render_signal_analyzer_.NarrowPeakBand() ? 1 : 0);
peah522d71b2017-02-23 05:16:26 -0800339 data_dumper_->DumpRaw("aec3_N2", cng_.NoiseSpectrum());
340 data_dumper_->DumpRaw("aec3_suppressor_gain", G);
Per Åhgrence202a02019-09-02 17:01:19 +0200341 data_dumper_->DumpWav(
342 "aec3_output", rtc::ArrayView<const float>(&y0[0], kBlockSize), 16000, 1);
peah522d71b2017-02-23 05:16:26 -0800343 data_dumper_->DumpRaw("aec3_using_subtractor_output",
Per Åhgren5c532d32018-03-22 00:29:25 +0100344 aec_state_.UseLinearFilterOutput() ? 1 : 0);
peah522d71b2017-02-23 05:16:26 -0800345 data_dumper_->DumpRaw("aec3_E2", E2);
peah522d71b2017-02-23 05:16:26 -0800346 data_dumper_->DumpRaw("aec3_S2_linear", S2_linear);
peah522d71b2017-02-23 05:16:26 -0800347 data_dumper_->DumpRaw("aec3_Y2", Y2);
Jesús de Vicente Peña7682c6e2018-03-22 14:53:23 +0100348 data_dumper_->DumpRaw(
Sam Zackrissona81c09d2019-09-05 09:35:10 +0200349 "aec3_X2",
350 render_buffer->Spectrum(aec_state_.FilterDelayBlocks(), /*channel=*/0));
peah522d71b2017-02-23 05:16:26 -0800351 data_dumper_->DumpRaw("aec3_R2", R2);
Jesús de Vicente Peña075cb2b2018-06-13 15:13:55 +0200352 data_dumper_->DumpRaw("aec3_R2_reverb",
353 residual_echo_estimator_.GetReverbPowerSpectrum());
Per Åhgren5c532d32018-03-22 00:29:25 +0100354 data_dumper_->DumpRaw("aec3_filter_delay", aec_state_.FilterDelayBlocks());
peah522d71b2017-02-23 05:16:26 -0800355 data_dumper_->DumpRaw("aec3_capture_saturation",
356 aec_state_.SaturatedCapture() ? 1 : 0);
357}
peah69221db2017-01-27 03:28:19 -0800358
Per Åhgren22754392018-08-10 18:37:38 +0200359void EchoRemoverImpl::FormLinearFilterOutput(
Per Åhgren22754392018-08-10 18:37:38 +0200360 const SubtractorOutput& subtractor_output,
361 rtc::ArrayView<float> output) {
362 RTC_DCHECK_EQ(subtractor_output.e_main.size(), output.size());
363 RTC_DCHECK_EQ(subtractor_output.e_shadow.size(), output.size());
364 bool use_main_output = true;
365 if (use_shadow_filter_output_) {
Jesús de Vicente Peña02e9e442018-08-29 13:34:07 +0200366 // As the output of the main adaptive filter generally should be better
367 // than the shadow filter output, add a margin and threshold for when
368 // choosing the shadow filter output.
Per Åhgren22754392018-08-10 18:37:38 +0200369 if (subtractor_output.e2_shadow < 0.9f * subtractor_output.e2_main &&
370 subtractor_output.y2 > 30.f * 30.f * kBlockSize &&
371 (subtractor_output.s2_main > 60.f * 60.f * kBlockSize ||
372 subtractor_output.s2_shadow > 60.f * 60.f * kBlockSize)) {
373 use_main_output = false;
374 } else {
375 // If the main filter is diverged, choose the filter output that has the
376 // lowest power.
377 if (subtractor_output.e2_shadow < subtractor_output.e2_main &&
378 subtractor_output.y2 < subtractor_output.e2_main) {
379 use_main_output = false;
380 }
381 }
382 }
383
384 if (use_main_output) {
Gustaf Ullberg68d6d442019-01-29 10:08:15 +0100385 if (!main_filter_output_last_selected_) {
Per Åhgren22754392018-08-10 18:37:38 +0200386 SignalTransition(subtractor_output.e_shadow, subtractor_output.e_main,
387 output);
388 } else {
389 std::copy(subtractor_output.e_main.begin(),
390 subtractor_output.e_main.end(), output.begin());
391 }
392 } else {
Gustaf Ullberg68d6d442019-01-29 10:08:15 +0100393 if (main_filter_output_last_selected_) {
Per Åhgren22754392018-08-10 18:37:38 +0200394 SignalTransition(subtractor_output.e_main, subtractor_output.e_shadow,
395 output);
396 } else {
397 std::copy(subtractor_output.e_shadow.begin(),
398 subtractor_output.e_shadow.end(), output.begin());
399 }
400 }
401 main_filter_output_last_selected_ = use_main_output;
402}
403
peah69221db2017-01-27 03:28:19 -0800404} // namespace
405
Gustaf Ullbergbd83b912017-10-18 12:32:42 +0200406EchoRemover* EchoRemover::Create(const EchoCanceller3Config& config,
Per Åhgrence202a02019-09-02 17:01:19 +0200407 int sample_rate_hz,
408 size_t num_render_channels,
409 size_t num_capture_channels) {
410 return new EchoRemoverImpl(config, sample_rate_hz, num_render_channels,
411 num_capture_channels);
peah69221db2017-01-27 03:28:19 -0800412}
413
414} // namespace webrtc