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315 lines
11 KiB
C++
315 lines
11 KiB
C++
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/*
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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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#include "modules/audio_processing/aec3/render_delay_controller.h"
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#include <stdlib.h>
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#include <algorithm>
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#include <memory>
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#include <vector>
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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/echo_path_delay_estimator.h"
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#include "modules/audio_processing/aec3/render_delay_controller_metrics.h"
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#include "modules/audio_processing/aec3/skew_estimator.h"
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#include "modules/audio_processing/logging/apm_data_dumper.h"
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#include "rtc_base/atomicops.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/constructormagic.h"
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#include "rtc_base/logging.h"
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#include "system_wrappers/include/field_trial.h"
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namespace webrtc {
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namespace {
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int GetSkewHysteresis(const EchoCanceller3Config& config) {
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if (field_trial::IsEnabled("WebRTC-Aec3EnforceSkewHysteresis1")) {
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return 1;
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}
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if (field_trial::IsEnabled("WebRTC-Aec3EnforceSkewHysteresis2")) {
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return 2;
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}
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return static_cast<int>(config.delay.skew_hysteresis_blocks);
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}
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bool UseOffsetBlocks() {
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return field_trial::IsEnabled("WebRTC-Aec3UseOffsetBlocks");
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}
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bool UseEarlyDelayDetection() {
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return !field_trial::IsEnabled("WebRTC-Aec3EarlyDelayDetectionKillSwitch");
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}
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constexpr int kSkewHistorySizeLog2 = 8;
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class RenderDelayControllerImpl final : public RenderDelayController {
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public:
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RenderDelayControllerImpl(const EchoCanceller3Config& config,
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int non_causal_offset,
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int sample_rate_hz);
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~RenderDelayControllerImpl() override;
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void Reset(bool reset_delay_confidence) override;
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void LogRenderCall() override;
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absl::optional<DelayEstimate> GetDelay(
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const DownsampledRenderBuffer& render_buffer,
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size_t render_delay_buffer_delay,
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const absl::optional<int>& echo_remover_delay,
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rtc::ArrayView<const float> capture) override;
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private:
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static int instance_count_;
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std::unique_ptr<ApmDataDumper> data_dumper_;
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const bool use_early_delay_detection_;
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const int delay_headroom_blocks_;
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const int hysteresis_limit_1_blocks_;
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const int hysteresis_limit_2_blocks_;
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const int skew_hysteresis_blocks_;
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const bool use_offset_blocks_;
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absl::optional<DelayEstimate> delay_;
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EchoPathDelayEstimator delay_estimator_;
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std::vector<float> delay_buf_;
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int delay_buf_index_ = 0;
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RenderDelayControllerMetrics metrics_;
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SkewEstimator skew_estimator_;
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absl::optional<DelayEstimate> delay_samples_;
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absl::optional<int> skew_;
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int previous_offset_blocks_ = 0;
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int skew_shift_reporting_counter_ = 0;
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size_t capture_call_counter_ = 0;
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int delay_change_counter_ = 0;
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size_t soft_reset_counter_ = 0;
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DelayEstimate::Quality last_delay_estimate_quality_;
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RTC_DISALLOW_IMPLICIT_CONSTRUCTORS(RenderDelayControllerImpl);
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};
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DelayEstimate ComputeBufferDelay(
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const absl::optional<DelayEstimate>& current_delay,
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int delay_headroom_blocks,
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int hysteresis_limit_1_blocks,
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int hysteresis_limit_2_blocks,
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int offset_blocks,
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DelayEstimate estimated_delay) {
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// The below division is not exact and the truncation is intended.
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const int echo_path_delay_blocks = estimated_delay.delay >> kBlockSizeLog2;
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// Compute the buffer delay increase required to achieve the desired latency.
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size_t new_delay_blocks = std::max(
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echo_path_delay_blocks + offset_blocks - delay_headroom_blocks, 0);
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// Add hysteresis.
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if (current_delay) {
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size_t current_delay_blocks = current_delay->delay;
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if (new_delay_blocks > current_delay_blocks) {
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if (new_delay_blocks <=
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current_delay_blocks + hysteresis_limit_1_blocks) {
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new_delay_blocks = current_delay_blocks;
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}
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} else if (new_delay_blocks < current_delay_blocks) {
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size_t hysteresis_limit = std::max(
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static_cast<int>(current_delay_blocks) - hysteresis_limit_2_blocks,
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0);
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if (new_delay_blocks >= hysteresis_limit) {
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new_delay_blocks = current_delay_blocks;
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}
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}
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}
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DelayEstimate new_delay = estimated_delay;
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new_delay.delay = new_delay_blocks;
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return new_delay;
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}
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int RenderDelayControllerImpl::instance_count_ = 0;
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RenderDelayControllerImpl::RenderDelayControllerImpl(
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const EchoCanceller3Config& config,
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int non_causal_offset,
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int sample_rate_hz)
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: data_dumper_(
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new ApmDataDumper(rtc::AtomicOps::Increment(&instance_count_))),
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use_early_delay_detection_(UseEarlyDelayDetection()),
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delay_headroom_blocks_(
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static_cast<int>(config.delay.delay_headroom_blocks)),
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hysteresis_limit_1_blocks_(
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static_cast<int>(config.delay.hysteresis_limit_1_blocks)),
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hysteresis_limit_2_blocks_(
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static_cast<int>(config.delay.hysteresis_limit_2_blocks)),
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skew_hysteresis_blocks_(GetSkewHysteresis(config)),
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use_offset_blocks_(UseOffsetBlocks()),
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delay_estimator_(data_dumper_.get(), config),
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delay_buf_(kBlockSize * non_causal_offset, 0.f),
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skew_estimator_(kSkewHistorySizeLog2),
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last_delay_estimate_quality_(DelayEstimate::Quality::kCoarse) {
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RTC_DCHECK(ValidFullBandRate(sample_rate_hz));
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delay_estimator_.LogDelayEstimationProperties(sample_rate_hz,
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delay_buf_.size());
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}
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RenderDelayControllerImpl::~RenderDelayControllerImpl() = default;
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void RenderDelayControllerImpl::Reset(bool reset_delay_confidence) {
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delay_ = absl::nullopt;
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delay_samples_ = absl::nullopt;
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skew_ = absl::nullopt;
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previous_offset_blocks_ = 0;
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std::fill(delay_buf_.begin(), delay_buf_.end(), 0.f);
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delay_estimator_.Reset(reset_delay_confidence);
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skew_estimator_.Reset();
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delay_change_counter_ = 0;
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soft_reset_counter_ = 0;
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if (reset_delay_confidence) {
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last_delay_estimate_quality_ = DelayEstimate::Quality::kCoarse;
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}
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}
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void RenderDelayControllerImpl::LogRenderCall() {
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skew_estimator_.LogRenderCall();
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}
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absl::optional<DelayEstimate> RenderDelayControllerImpl::GetDelay(
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const DownsampledRenderBuffer& render_buffer,
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size_t render_delay_buffer_delay,
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const absl::optional<int>& echo_remover_delay,
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rtc::ArrayView<const float> capture) {
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RTC_DCHECK_EQ(kBlockSize, capture.size());
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++capture_call_counter_;
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// Estimate the delay with a delayed capture.
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RTC_DCHECK_LT(delay_buf_index_ + kBlockSize - 1, delay_buf_.size());
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rtc::ArrayView<const float> capture_delayed(&delay_buf_[delay_buf_index_],
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kBlockSize);
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auto delay_samples =
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delay_estimator_.EstimateDelay(render_buffer, capture_delayed);
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// Overrule the delay estimator delay if the echo remover reports a delay.
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if (echo_remover_delay) {
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int total_echo_remover_delay_samples =
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(render_delay_buffer_delay + *echo_remover_delay) * kBlockSize;
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delay_samples = DelayEstimate(DelayEstimate::Quality::kRefined,
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total_echo_remover_delay_samples);
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}
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std::copy(capture.begin(), capture.end(),
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delay_buf_.begin() + delay_buf_index_);
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delay_buf_index_ = (delay_buf_index_ + kBlockSize) % delay_buf_.size();
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// Compute the latest skew update.
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absl::optional<int> skew = skew_estimator_.GetSkewFromCapture();
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if (delay_samples) {
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if (!delay_samples_ || delay_samples->delay != delay_samples_->delay) {
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delay_change_counter_ = 0;
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}
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if (delay_samples_) {
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delay_samples_->blocks_since_last_change =
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delay_samples_->delay == delay_samples->delay
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? delay_samples_->blocks_since_last_change + 1
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: 0;
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delay_samples_->blocks_since_last_update = 0;
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delay_samples_->delay = delay_samples->delay;
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delay_samples_->quality = delay_samples->quality;
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} else {
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delay_samples_ = delay_samples;
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}
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} else {
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if (delay_samples_) {
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++delay_samples_->blocks_since_last_change;
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++delay_samples_->blocks_since_last_update;
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}
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}
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if (delay_change_counter_ < 2 * kNumBlocksPerSecond) {
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++delay_change_counter_;
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// If a new delay estimate is recently obtained, store the skew for that.
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skew_ = skew;
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} else {
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// A reliable skew should have been obtained after 2 seconds.
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RTC_DCHECK(skew_);
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RTC_DCHECK(skew);
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}
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++soft_reset_counter_;
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int offset_blocks = 0;
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if (skew_ && skew && delay_samples_ &&
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delay_samples_->quality == DelayEstimate::Quality::kRefined) {
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// Compute the skew offset and add a margin.
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offset_blocks = *skew_ - *skew;
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if (abs(offset_blocks) <= skew_hysteresis_blocks_) {
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offset_blocks = 0;
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} else if (soft_reset_counter_ > 10 * kNumBlocksPerSecond) {
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// Soft reset the delay estimator if there is a significant offset
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// detected.
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delay_estimator_.Reset(false);
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soft_reset_counter_ = 0;
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}
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}
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if (!use_offset_blocks_)
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offset_blocks = 0;
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// Log any changes in the skew.
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skew_shift_reporting_counter_ =
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std::max(0, skew_shift_reporting_counter_ - 1);
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absl::optional<int> skew_shift =
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skew_shift_reporting_counter_ == 0 &&
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previous_offset_blocks_ != offset_blocks
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? absl::optional<int>(offset_blocks - previous_offset_blocks_)
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: absl::nullopt;
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previous_offset_blocks_ = offset_blocks;
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if (skew_shift) {
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RTC_LOG(LS_WARNING) << "API call skew shift of " << *skew_shift
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<< " blocks detected at capture block "
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<< capture_call_counter_;
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skew_shift_reporting_counter_ = 3 * kNumBlocksPerSecond;
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}
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if (delay_samples_) {
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// Compute the render delay buffer delay.
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const bool use_hysteresis =
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last_delay_estimate_quality_ == DelayEstimate::Quality::kRefined &&
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delay_samples_->quality == DelayEstimate::Quality::kRefined;
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delay_ = ComputeBufferDelay(delay_, delay_headroom_blocks_,
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use_hysteresis ? hysteresis_limit_1_blocks_ : 0,
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use_hysteresis ? hysteresis_limit_2_blocks_ : 0,
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offset_blocks, *delay_samples_);
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last_delay_estimate_quality_ = delay_samples_->quality;
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}
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metrics_.Update(delay_samples_ ? absl::optional<size_t>(delay_samples_->delay)
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: absl::nullopt,
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delay_ ? delay_->delay : 0, skew_shift);
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data_dumper_->DumpRaw("aec3_render_delay_controller_delay",
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delay_samples ? delay_samples->delay : 0);
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data_dumper_->DumpRaw("aec3_render_delay_controller_buffer_delay",
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delay_ ? delay_->delay : 0);
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data_dumper_->DumpRaw("aec3_render_delay_controller_new_skew",
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skew ? *skew : 0);
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data_dumper_->DumpRaw("aec3_render_delay_controller_old_skew",
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skew_ ? *skew_ : 0);
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data_dumper_->DumpRaw("aec3_render_delay_controller_offset", offset_blocks);
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return delay_;
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}
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} // namespace
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RenderDelayController* RenderDelayController::Create(
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const EchoCanceller3Config& config,
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int non_causal_offset,
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int sample_rate_hz) {
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return new RenderDelayControllerImpl(config, non_causal_offset,
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sample_rate_hz);
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}
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} // namespace webrtc
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