mirror of
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186 lines
7.2 KiB
C++
186 lines
7.2 KiB
C++
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/*
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* Copyright (c) 2013 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 "webrtc/modules/audio_coding/neteq/decision_logic.h"
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#include <algorithm>
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#include "webrtc/modules/audio_coding/neteq/buffer_level_filter.h"
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#include "webrtc/modules/audio_coding/neteq/decision_logic_fax.h"
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#include "webrtc/modules/audio_coding/neteq/decision_logic_normal.h"
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#include "webrtc/modules/audio_coding/neteq/delay_manager.h"
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#include "webrtc/modules/audio_coding/neteq/expand.h"
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#include "webrtc/modules/audio_coding/neteq/packet_buffer.h"
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#include "webrtc/modules/audio_coding/neteq/sync_buffer.h"
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#include "webrtc/system_wrappers/interface/logging.h"
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namespace webrtc {
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DecisionLogic* DecisionLogic::Create(int fs_hz,
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int output_size_samples,
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NetEqPlayoutMode playout_mode,
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DecoderDatabase* decoder_database,
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const PacketBuffer& packet_buffer,
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DelayManager* delay_manager,
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BufferLevelFilter* buffer_level_filter) {
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switch (playout_mode) {
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case kPlayoutOn:
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case kPlayoutStreaming:
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return new DecisionLogicNormal(fs_hz,
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output_size_samples,
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playout_mode,
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decoder_database,
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packet_buffer,
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delay_manager,
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buffer_level_filter);
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case kPlayoutFax:
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case kPlayoutOff:
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return new DecisionLogicFax(fs_hz,
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output_size_samples,
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playout_mode,
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decoder_database,
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packet_buffer,
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delay_manager,
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buffer_level_filter);
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}
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// This line cannot be reached, but must be here to avoid compiler errors.
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assert(false);
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return NULL;
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}
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DecisionLogic::DecisionLogic(int fs_hz,
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int output_size_samples,
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NetEqPlayoutMode playout_mode,
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DecoderDatabase* decoder_database,
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const PacketBuffer& packet_buffer,
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DelayManager* delay_manager,
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BufferLevelFilter* buffer_level_filter)
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: decoder_database_(decoder_database),
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packet_buffer_(packet_buffer),
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delay_manager_(delay_manager),
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buffer_level_filter_(buffer_level_filter),
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cng_state_(kCngOff),
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generated_noise_samples_(0),
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packet_length_samples_(0),
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sample_memory_(0),
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prev_time_scale_(false),
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timescale_hold_off_(kMinTimescaleInterval),
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num_consecutive_expands_(0),
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playout_mode_(playout_mode) {
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delay_manager_->set_streaming_mode(playout_mode_ == kPlayoutStreaming);
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SetSampleRate(fs_hz, output_size_samples);
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}
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void DecisionLogic::Reset() {
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cng_state_ = kCngOff;
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generated_noise_samples_ = 0;
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packet_length_samples_ = 0;
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sample_memory_ = 0;
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prev_time_scale_ = false;
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timescale_hold_off_ = 0;
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num_consecutive_expands_ = 0;
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}
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void DecisionLogic::SoftReset() {
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packet_length_samples_ = 0;
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sample_memory_ = 0;
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prev_time_scale_ = false;
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timescale_hold_off_ = kMinTimescaleInterval;
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}
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void DecisionLogic::SetSampleRate(int fs_hz, int output_size_samples) {
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// TODO(hlundin): Change to an enumerator and skip assert.
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assert(fs_hz == 8000 || fs_hz == 16000 || fs_hz == 32000 || fs_hz == 48000);
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fs_mult_ = fs_hz / 8000;
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output_size_samples_ = output_size_samples;
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}
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Operations DecisionLogic::GetDecision(const SyncBuffer& sync_buffer,
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const Expand& expand,
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int decoder_frame_length,
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const RTPHeader* packet_header,
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Modes prev_mode,
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bool play_dtmf, bool* reset_decoder) {
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if (prev_mode == kModeRfc3389Cng ||
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prev_mode == kModeCodecInternalCng ||
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prev_mode == kModeExpand) {
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// If last mode was CNG (or Expand, since this could be covering up for
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// a lost CNG packet), increase the |generated_noise_samples_| counter.
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generated_noise_samples_ += output_size_samples_;
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// Remember that CNG is on. This is needed if comfort noise is interrupted
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// by DTMF.
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if (prev_mode == kModeRfc3389Cng) {
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cng_state_ = kCngRfc3389On;
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} else if (prev_mode == kModeCodecInternalCng) {
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cng_state_ = kCngInternalOn;
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}
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}
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const int samples_left = static_cast<int>(
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sync_buffer.FutureLength() - expand.overlap_length());
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const int cur_size_samples =
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samples_left + packet_buffer_.NumSamplesInBuffer(decoder_database_,
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decoder_frame_length);
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LOG(LS_VERBOSE) << "Buffers: " << packet_buffer_.NumPacketsInBuffer() <<
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" packets * " << decoder_frame_length << " samples/packet + " <<
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samples_left << " samples in sync buffer = " << cur_size_samples;
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prev_time_scale_ = prev_time_scale_ &&
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(prev_mode == kModeAccelerateSuccess ||
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prev_mode == kModeAccelerateLowEnergy ||
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prev_mode == kModePreemptiveExpandSuccess ||
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prev_mode == kModePreemptiveExpandLowEnergy);
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FilterBufferLevel(cur_size_samples, prev_mode);
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return GetDecisionSpecialized(sync_buffer, expand, decoder_frame_length,
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packet_header, prev_mode, play_dtmf,
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reset_decoder);
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}
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void DecisionLogic::ExpandDecision(Operations operation) {
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if (operation == kExpand) {
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num_consecutive_expands_++;
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} else {
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num_consecutive_expands_ = 0;
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}
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}
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void DecisionLogic::FilterBufferLevel(int buffer_size_samples,
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Modes prev_mode) {
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const int elapsed_time_ms = output_size_samples_ / (8 * fs_mult_);
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delay_manager_->UpdateCounters(elapsed_time_ms);
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// Do not update buffer history if currently playing CNG since it will bias
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// the filtered buffer level.
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if ((prev_mode != kModeRfc3389Cng) && (prev_mode != kModeCodecInternalCng)) {
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buffer_level_filter_->SetTargetBufferLevel(
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delay_manager_->base_target_level());
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int buffer_size_packets = 0;
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if (packet_length_samples_ > 0) {
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// Calculate size in packets.
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buffer_size_packets = buffer_size_samples / packet_length_samples_;
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}
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int sample_memory_local = 0;
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if (prev_time_scale_) {
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sample_memory_local = sample_memory_;
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timescale_hold_off_ = kMinTimescaleInterval;
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}
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buffer_level_filter_->Update(buffer_size_packets, sample_memory_local,
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packet_length_samples_);
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prev_time_scale_ = false;
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}
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timescale_hold_off_ = std::max(timescale_hold_off_ - 1, 0);
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}
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} // namespace webrtc
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