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This CL removes killswitches for code that has been properly tested in experiments and is to be considered to be permanent. The changes have been tested for bitexactness. Bug: webrtc:8671 Change-Id: I0f9db16f377390d9dd3779096da91f3abc0fb4a5 Reviewed-on: https://webrtc-review.googlesource.com/102360 Reviewed-by: Gustaf Ullberg <gustaf@webrtc.org> Commit-Queue: Per Åhgren <peah@webrtc.org> Cr-Commit-Position: refs/heads/master@{#24877}
215 lines
7.9 KiB
C++
215 lines
7.9 KiB
C++
/*
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* Copyright (c) 2017 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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#ifndef MODULES_AUDIO_PROCESSING_AEC3_AEC_STATE_H_
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#define MODULES_AUDIO_PROCESSING_AEC3_AEC_STATE_H_
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#include <math.h>
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#include <algorithm>
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#include <memory>
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#include <vector>
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#include "absl/types/optional.h"
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#include "api/array_view.h"
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#include "api/audio/echo_canceller3_config.h"
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#include "modules/audio_processing/aec3/aec3_common.h"
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#include "modules/audio_processing/aec3/delay_estimate.h"
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#include "modules/audio_processing/aec3/echo_audibility.h"
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#include "modules/audio_processing/aec3/echo_path_variability.h"
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#include "modules/audio_processing/aec3/erl_estimator.h"
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#include "modules/audio_processing/aec3/erle_estimator.h"
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#include "modules/audio_processing/aec3/filter_analyzer.h"
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#include "modules/audio_processing/aec3/render_buffer.h"
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#include "modules/audio_processing/aec3/reverb_model_estimator.h"
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#include "modules/audio_processing/aec3/subtractor_output.h"
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#include "modules/audio_processing/aec3/subtractor_output_analyzer.h"
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#include "modules/audio_processing/aec3/suppression_gain_limiter.h"
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#include "rtc_base/constructormagic.h"
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namespace webrtc {
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class ApmDataDumper;
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// Handles the state and the conditions for the echo removal functionality.
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class AecState {
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public:
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explicit AecState(const EchoCanceller3Config& config);
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~AecState();
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// Returns whether the echo subtractor can be used to determine the residual
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// echo.
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bool UsableLinearEstimate() const { return usable_linear_estimate_; }
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// Returns whether the echo subtractor output should be used as output.
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bool UseLinearFilterOutput() const { return use_linear_filter_output_; }
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// Returns the estimated echo path gain.
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float EchoPathGain() const { return filter_analyzer_.Gain(); }
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// Returns whether the render signal is currently active.
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bool ActiveRender() const { return blocks_with_active_render_ > 200; }
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// Returns the appropriate scaling of the residual echo to match the
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// audibility.
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void GetResidualEchoScaling(rtc::ArrayView<float> residual_scaling) const {
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echo_audibility_.GetResidualEchoScaling(filter_has_had_time_to_converge_,
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residual_scaling);
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}
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// Returns whether the stationary properties of the signals are used in the
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// aec.
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bool UseStationaryProperties() const {
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return config_.echo_audibility.use_stationary_properties;
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}
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// Returns the ERLE.
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const std::array<float, kFftLengthBy2Plus1>& Erle() const {
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return erle_estimator_.Erle();
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}
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// Returns any uncertainty in the ERLE estimate.
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absl::optional<float> ErleUncertainty() const {
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if (!filter_has_had_time_to_converge_) {
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return 1.f;
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}
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return absl::nullopt;
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}
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// Returns the fullband ERLE estimate in log2 units.
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float FullBandErleLog2() const { return erle_estimator_.FullbandErleLog2(); }
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// Returns the ERL.
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const std::array<float, kFftLengthBy2Plus1>& Erl() const {
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return erl_estimator_.Erl();
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}
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// Returns the time-domain ERL.
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float ErlTimeDomain() const { return erl_estimator_.ErlTimeDomain(); }
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// Returns the delay estimate based on the linear filter.
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int FilterDelayBlocks() const { return filter_delay_blocks_; }
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// Returns the internal delay estimate based on the linear filter.
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absl::optional<int> InternalDelay() const { return internal_delay_; }
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// Returns whether the capture signal is saturated.
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bool SaturatedCapture() const { return capture_signal_saturation_; }
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// Returns whether the echo signal is saturated.
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bool SaturatedEcho() const { return echo_saturation_; }
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// Updates the capture signal saturation.
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void UpdateCaptureSaturation(bool capture_signal_saturation) {
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capture_signal_saturation_ = capture_signal_saturation;
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}
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// Returns whether the transparent mode is active
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bool TransparentMode() const { return transparent_mode_; }
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// Takes appropriate action at an echo path change.
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void HandleEchoPathChange(const EchoPathVariability& echo_path_variability);
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// Returns the decay factor for the echo reverberation.
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float ReverbDecay() const { return reverb_model_estimator_.ReverbDecay(); }
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// Return the frequency response of the reverberant echo.
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rtc::ArrayView<const float> GetReverbFrequencyResponse() const {
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return reverb_model_estimator_.GetReverbFrequencyResponse();
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}
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// Returns the upper limit for the echo suppression gain.
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float SuppressionGainLimit() const {
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return suppression_gain_limiter_.Limit();
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}
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// Returns whether the suppression gain limiter is active.
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bool IsSuppressionGainLimitActive() const {
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return suppression_gain_limiter_.IsActive();
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}
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// Returns whether the linear filter should have been able to properly adapt.
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bool FilterHasHadTimeToConverge() const {
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return filter_has_had_time_to_converge_;
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}
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// Returns whether the transition for going out of the initial stated has
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// been triggered.
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bool TransitionTriggered() const { return transition_triggered_; }
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// Updates the aec state.
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void Update(const absl::optional<DelayEstimate>& external_delay,
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const std::vector<std::array<float, kFftLengthBy2Plus1>>&
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adaptive_filter_frequency_response,
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const std::vector<float>& adaptive_filter_impulse_response,
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const RenderBuffer& render_buffer,
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const std::array<float, kFftLengthBy2Plus1>& E2_main,
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const std::array<float, kFftLengthBy2Plus1>& Y2,
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const SubtractorOutput& subtractor_output,
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rtc::ArrayView<const float> y);
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// Returns filter length in blocks.
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int FilterLengthBlocks() const {
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return filter_analyzer_.FilterLengthBlocks();
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}
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private:
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bool DetectActiveRender(rtc::ArrayView<const float> x) const;
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void UpdateSuppressorGainLimit(bool render_activity);
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bool DetectEchoSaturation(rtc::ArrayView<const float> x,
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float echo_path_gain);
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static int instance_count_;
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std::unique_ptr<ApmDataDumper> data_dumper_;
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const EchoCanceller3Config config_;
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ErlEstimator erl_estimator_;
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ErleEstimator erle_estimator_;
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size_t capture_block_counter_ = 0;
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size_t blocks_since_reset_ = 0;
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size_t blocks_with_proper_filter_adaptation_ = 0;
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size_t blocks_with_active_render_ = 0;
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bool usable_linear_estimate_ = false;
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bool capture_signal_saturation_ = false;
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bool echo_saturation_ = false;
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bool transparent_mode_ = false;
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bool render_received_ = false;
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int filter_delay_blocks_ = 0;
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size_t blocks_since_last_saturation_ = 1000;
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std::vector<float> max_render_;
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bool filter_has_had_time_to_converge_ = false;
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bool initial_state_ = true;
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bool transition_triggered_ = false;
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const float gain_rampup_increase_;
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SuppressionGainUpperLimiter suppression_gain_limiter_;
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FilterAnalyzer filter_analyzer_;
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bool use_linear_filter_output_ = false;
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absl::optional<int> internal_delay_;
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size_t diverged_blocks_ = 0;
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bool filter_should_have_converged_ = false;
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size_t blocks_since_converged_filter_;
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size_t active_blocks_since_consistent_filter_estimate_;
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bool converged_filter_seen_ = false;
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bool consistent_filter_seen_ = false;
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bool external_delay_seen_ = false;
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absl::optional<DelayEstimate> external_delay_;
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size_t frames_since_external_delay_change_ = 0;
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size_t converged_filter_count_ = 0;
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bool finite_erl_ = false;
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size_t active_blocks_since_converged_filter_ = 0;
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EchoAudibility echo_audibility_;
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ReverbModelEstimator reverb_model_estimator_;
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SubtractorOutputAnalyzer subtractor_output_analyzer_;
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RTC_DISALLOW_COPY_AND_ASSIGN(AecState);
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};
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} // namespace webrtc
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#endif // MODULES_AUDIO_PROCESSING_AEC3_AEC_STATE_H_
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