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Bug: webrtc:8609 Change-Id: If060b332993c2c98d7a12608ab31f4da858b8016 Reviewed-on: https://webrtc-review.googlesource.com/28620 Commit-Queue: Per Åhgren <peah@webrtc.org> Reviewed-by: Gustaf Ullberg <gustaf@webrtc.org> Cr-Commit-Position: refs/heads/master@{#21216}
327 lines
12 KiB
C++
327 lines
12 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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#include "modules/audio_processing/aec3/render_delay_buffer.h"
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#include <string.h>
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#include <algorithm>
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#include "modules/audio_processing/aec3/aec3_common.h"
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#include "modules/audio_processing/aec3/aec3_fft.h"
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#include "modules/audio_processing/aec3/block_processor.h"
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#include "modules/audio_processing/aec3/decimator.h"
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#include "modules/audio_processing/aec3/fft_buffer.h"
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#include "modules/audio_processing/aec3/fft_data.h"
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#include "modules/audio_processing/aec3/matrix_buffer.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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namespace webrtc {
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namespace {
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class RenderDelayBufferImpl final : public RenderDelayBuffer {
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public:
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RenderDelayBufferImpl(const EchoCanceller3Config& config, size_t num_bands);
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~RenderDelayBufferImpl() override;
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void Reset() override;
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BufferingEvent Insert(const std::vector<std::vector<float>>& block) override;
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BufferingEvent PrepareCaptureProcessing() override;
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bool SetDelay(size_t delay) override;
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rtc::Optional<size_t> Delay() const override { return delay_; }
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size_t MaxDelay() const override {
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return blocks_.buffer.size() - 1 - buffer_headroom_;
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}
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RenderBuffer* GetRenderBuffer() override { return &echo_remover_buffer_; }
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const DownsampledRenderBuffer& GetDownsampledRenderBuffer() const override {
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return low_rate_;
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}
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bool CausalDelay() const 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 Aec3Optimization optimization_;
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const EchoCanceller3Config config_;
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const int sub_block_size_;
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MatrixBuffer blocks_;
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VectorBuffer spectra_;
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FftBuffer ffts_;
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rtc::Optional<size_t> delay_;
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rtc::Optional<int> internal_delay_;
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RenderBuffer echo_remover_buffer_;
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DownsampledRenderBuffer low_rate_;
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Decimator render_decimator_;
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const std::vector<std::vector<float>> zero_block_;
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const Aec3Fft fft_;
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std::vector<float> render_ds_;
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const int buffer_headroom_;
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int LowRateBufferOffset() const { return DelayEstimatorOffset(config_) >> 1; }
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int MaxExternalDelayToInternalDelay(size_t delay) const;
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void ApplyDelay(int delay);
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void InsertBlock(const std::vector<std::vector<float>>& block,
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int previous_write);
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RTC_DISALLOW_IMPLICIT_CONSTRUCTORS(RenderDelayBufferImpl);
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};
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// Increases the write indices for the render buffers.
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void IncreaseWriteIndices(int sub_block_size,
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MatrixBuffer* blocks,
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VectorBuffer* spectra,
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FftBuffer* ffts,
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DownsampledRenderBuffer* low_rate) {
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low_rate->UpdateWriteIndex(-sub_block_size);
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blocks->IncWriteIndex();
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spectra->DecWriteIndex();
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ffts->DecWriteIndex();
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}
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// Increases the read indices for the render buffers.
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void IncreaseReadIndices(const rtc::Optional<int>& delay,
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int sub_block_size,
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MatrixBuffer* blocks,
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VectorBuffer* spectra,
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FftBuffer* ffts,
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DownsampledRenderBuffer* low_rate) {
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RTC_DCHECK_NE(low_rate->read, low_rate->write);
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low_rate->UpdateReadIndex(-sub_block_size);
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if (blocks->read != blocks->write) {
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blocks->IncReadIndex();
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spectra->DecReadIndex();
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ffts->DecReadIndex();
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} else {
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// Only allow underrun for blocks_ when the delay is not set.
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RTC_DCHECK(!delay);
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}
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}
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// Checks for a render buffer overrun.
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bool RenderOverrun(const MatrixBuffer& b, const DownsampledRenderBuffer& l) {
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return l.read == l.write || b.read == b.write;
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}
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// Checks for a render buffer underrun. If the delay is not specified, only the
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// low rate buffer underrun is counted as the delay offset for the other buffers
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// is unknown.
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bool RenderUnderrun(const rtc::Optional<int>& delay,
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const MatrixBuffer& b,
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const DownsampledRenderBuffer& l) {
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return l.read == l.write || (delay && b.read == b.write);
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}
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// Computes the latency in the buffer (the number of unread elements).
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int BufferLatency(const DownsampledRenderBuffer& l) {
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return (l.buffer.size() + l.read - l.write) % l.buffer.size();
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}
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// Computes the mismatch between the number of render and capture calls based on
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// the known offset (achieved during reset) of the low rate buffer.
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bool ApiCallSkew(const DownsampledRenderBuffer& low_rate_buffer,
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int sub_block_size,
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int low_rate_buffer_offset_sub_blocks) {
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int latency = BufferLatency(low_rate_buffer);
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int skew = abs(low_rate_buffer_offset_sub_blocks * sub_block_size - latency);
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int skew_limit = low_rate_buffer_offset_sub_blocks * sub_block_size;
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return skew >= skew_limit;
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}
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int RenderDelayBufferImpl::instance_count_ = 0;
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RenderDelayBufferImpl::RenderDelayBufferImpl(const EchoCanceller3Config& config,
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size_t num_bands)
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: data_dumper_(
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new ApmDataDumper(rtc::AtomicOps::Increment(&instance_count_))),
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optimization_(DetectOptimization()),
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config_(config),
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sub_block_size_(
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static_cast<int>(config.delay.down_sampling_factor > 0
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? kBlockSize / config.delay.down_sampling_factor
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: kBlockSize)),
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blocks_(GetRenderDelayBufferSize(config.delay.down_sampling_factor,
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config.delay.num_filters,
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config.filter.length_blocks),
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num_bands,
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kBlockSize),
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spectra_(blocks_.buffer.size(), kFftLengthBy2Plus1),
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ffts_(blocks_.buffer.size()),
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delay_(config_.delay.min_echo_path_delay_blocks),
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echo_remover_buffer_(config.filter.length_blocks,
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&blocks_,
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&spectra_,
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&ffts_),
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low_rate_(GetDownSampledBufferSize(config.delay.down_sampling_factor,
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config.delay.num_filters)),
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render_decimator_(config.delay.down_sampling_factor),
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zero_block_(num_bands, std::vector<float>(kBlockSize, 0.f)),
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fft_(),
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render_ds_(sub_block_size_, 0.f),
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buffer_headroom_(config.filter.length_blocks) {
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RTC_DCHECK_EQ(blocks_.buffer.size(), ffts_.buffer.size());
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RTC_DCHECK_EQ(spectra_.buffer.size(), ffts_.buffer.size());
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// Necessary condition to avoid unrecoverable echp due to noncausal alignment.
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RTC_DCHECK_EQ(DelayEstimatorOffset(config_), LowRateBufferOffset() * 2);
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Reset();
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}
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RenderDelayBufferImpl::~RenderDelayBufferImpl() = default;
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// Resets the buffer delays and clears the reported delays.
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void RenderDelayBufferImpl::Reset() {
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// Pre-fill the low rate buffer (which is used for delay estimation) to add
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// headroom for the allowed api call jitter.
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low_rate_.read = low_rate_.OffsetIndex(
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low_rate_.write, LowRateBufferOffset() * sub_block_size_);
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// Set the render buffer delays to the default delay.
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ApplyDelay(config_.delay.default_delay);
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// Unset the delays which are set by ApplyConfig.
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delay_ = rtc::nullopt;
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internal_delay_ = rtc::nullopt;
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}
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// Inserts a new block into the render buffers.
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RenderDelayBuffer::BufferingEvent RenderDelayBufferImpl::Insert(
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const std::vector<std::vector<float>>& block) {
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// Increase the write indices to where the new blocks should be written.
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const int previous_write = blocks_.write;
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IncreaseWriteIndices(sub_block_size_, &blocks_, &spectra_, &ffts_,
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&low_rate_);
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// Allow overrun and do a reset when render overrun occurrs due to more render
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// data being inserted than capture data is received.
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BufferingEvent event = RenderOverrun(blocks_, low_rate_)
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? event = BufferingEvent::kRenderOverrun
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: BufferingEvent::kNone;
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// Insert the new render block into the specified position.
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InsertBlock(block, previous_write);
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if (event != BufferingEvent::kNone) {
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Reset();
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}
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return event;
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}
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// Prepares the render buffers for processing another capture block.
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RenderDelayBuffer::BufferingEvent
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RenderDelayBufferImpl::PrepareCaptureProcessing() {
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BufferingEvent event = BufferingEvent::kNone;
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if (RenderUnderrun(internal_delay_, blocks_, low_rate_)) {
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// Don't increase the read indices if there is a render underrun.
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event = BufferingEvent::kRenderUnderrun;
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} else {
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// Increase the read indices in the render buffers to point to the most
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// recent block to use in the capture processing.
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IncreaseReadIndices(internal_delay_, sub_block_size_, &blocks_, &spectra_,
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&ffts_, &low_rate_);
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// Check for skew in the API calls which, if too large, causes the delay
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// estimation to be noncausal. Doing this check after the render indice
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// increase saves one unit of allowed skew. Note that the skew check only
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// should need to be one-sided as one of the skew directions results in an
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// underrun.
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bool skew = ApiCallSkew(low_rate_, sub_block_size_, LowRateBufferOffset());
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event = skew ? BufferingEvent::kApiCallSkew : BufferingEvent::kNone;
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}
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if (event != BufferingEvent::kNone) {
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Reset();
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}
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return event;
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}
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// Sets the delay and returns a bool indicating whether the delay was changed.
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bool RenderDelayBufferImpl::SetDelay(size_t delay) {
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if (delay_ && *delay_ == delay) {
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return false;
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}
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delay_ = delay;
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// Compute the internal delay and limit the delay to the allowed range.
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int internal_delay = MaxExternalDelayToInternalDelay(*delay_);
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internal_delay_ =
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std::min(MaxDelay(), static_cast<size_t>(std::max(internal_delay, 0)));
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// Apply the delay to the buffers.
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ApplyDelay(*internal_delay_);
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return true;
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}
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// Returns whether the specified delay is causal.
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bool RenderDelayBufferImpl::CausalDelay() const {
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return !internal_delay_ ||
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*internal_delay_ >=
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static_cast<int>(config_.delay.min_echo_path_delay_blocks);
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}
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// Maps the externally computed delay to the delay used internally.
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int RenderDelayBufferImpl::MaxExternalDelayToInternalDelay(
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size_t external_delay_blocks) const {
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const int latency = BufferLatency(low_rate_);
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RTC_DCHECK_LT(0, sub_block_size_);
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RTC_DCHECK_EQ(0, latency % sub_block_size_);
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int latency_blocks = latency / sub_block_size_;
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return latency_blocks + static_cast<int>(external_delay_blocks) -
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DelayEstimatorOffset(config_);
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}
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// Set the read indices according to the delay.
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void RenderDelayBufferImpl::ApplyDelay(int delay) {
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blocks_.read = blocks_.OffsetIndex(blocks_.write, -delay);
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spectra_.read = spectra_.OffsetIndex(spectra_.write, delay);
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ffts_.read = ffts_.OffsetIndex(ffts_.write, delay);
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}
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// Inserts a block into the render buffers.
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void RenderDelayBufferImpl::InsertBlock(
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const std::vector<std::vector<float>>& block,
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int previous_write) {
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auto& b = blocks_;
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auto& lr = low_rate_;
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auto& ds = render_ds_;
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auto& f = ffts_;
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auto& s = spectra_;
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RTC_DCHECK_EQ(block.size(), b.buffer[b.write].size());
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for (size_t k = 0; k < block.size(); ++k) {
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RTC_DCHECK_EQ(block[k].size(), b.buffer[b.write][k].size());
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std::copy(block[k].begin(), block[k].end(), b.buffer[b.write][k].begin());
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}
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render_decimator_.Decimate(block[0], ds);
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std::copy(ds.rbegin(), ds.rend(), lr.buffer.begin() + lr.write);
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fft_.PaddedFft(block[0], b.buffer[previous_write][0], &f.buffer[f.write]);
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f.buffer[f.write].Spectrum(optimization_, s.buffer[s.write]);
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}
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} // namespace
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int RenderDelayBuffer::RenderDelayBuffer::DelayEstimatorOffset(
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const EchoCanceller3Config& config) {
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return config.delay.api_call_jitter_blocks * 2;
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}
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RenderDelayBuffer* RenderDelayBuffer::Create(const EchoCanceller3Config& config,
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size_t num_bands) {
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return new RenderDelayBufferImpl(config, num_bands);
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}
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} // namespace webrtc
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