
Reason for revert: Breaks Dr Memory Light https://build.chromium.org/p/client.webrtc/builders/Win%20DrMemory%20Light/builds/4643 and all the Android Tests bots. Original issue's description: > Merge webrtc/video_engine/ into webrtc/video/ > > BUG=webrtc:1695 > R=mflodman@webrtc.org > > Committed: https://crrev.com/03ef053202bc5d5ab43460eebf5403232f157646 > Cr-Commit-Position: refs/heads/master@{#10926} TBR=mflodman@webrtc.org,pbos@webrtc.org NOPRESUBMIT=true NOTREECHECKS=true NOTRY=true BUG=webrtc:1695 Review URL: https://codereview.webrtc.org/1507903005 Cr-Commit-Position: refs/heads/master@{#10937}
629 lines
21 KiB
C++
629 lines
21 KiB
C++
/*
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* Copyright (c) 2012 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/video_engine/vie_encoder.h"
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#include <assert.h>
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#include <algorithm>
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#include "webrtc/base/checks.h"
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#include "webrtc/base/logging.h"
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#include "webrtc/base/trace_event.h"
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#include "webrtc/call/bitrate_allocator.h"
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#include "webrtc/common_video/include/video_image.h"
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#include "webrtc/common_video/libyuv/include/webrtc_libyuv.h"
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#include "webrtc/frame_callback.h"
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#include "webrtc/modules/bitrate_controller/include/bitrate_controller.h"
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#include "webrtc/modules/pacing/paced_sender.h"
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#include "webrtc/modules/utility/include/process_thread.h"
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#include "webrtc/modules/video_coding/include/video_codec_interface.h"
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#include "webrtc/modules/video_coding/include/video_coding.h"
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#include "webrtc/modules/video_coding/include/video_coding_defines.h"
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#include "webrtc/modules/video_coding/encoded_frame.h"
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#include "webrtc/system_wrappers/include/clock.h"
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#include "webrtc/system_wrappers/include/critical_section_wrapper.h"
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#include "webrtc/system_wrappers/include/metrics.h"
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#include "webrtc/system_wrappers/include/tick_util.h"
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#include "webrtc/video/send_statistics_proxy.h"
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#include "webrtc/video_engine/payload_router.h"
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namespace webrtc {
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// Margin on when we pause the encoder when the pacing buffer overflows relative
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// to the configured buffer delay.
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static const float kEncoderPausePacerMargin = 2.0f;
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// Don't stop the encoder unless the delay is above this configured value.
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static const int kMinPacingDelayMs = 200;
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static const float kStopPaddingThresholdMs = 2000;
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static const int kMinKeyFrameRequestIntervalMs = 300;
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std::vector<uint32_t> AllocateStreamBitrates(
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uint32_t total_bitrate,
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const SimulcastStream* stream_configs,
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size_t number_of_streams) {
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if (number_of_streams == 0) {
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std::vector<uint32_t> stream_bitrates(1, 0);
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stream_bitrates[0] = total_bitrate;
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return stream_bitrates;
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}
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std::vector<uint32_t> stream_bitrates(number_of_streams, 0);
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uint32_t bitrate_remainder = total_bitrate;
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for (size_t i = 0; i < stream_bitrates.size() && bitrate_remainder > 0; ++i) {
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if (stream_configs[i].maxBitrate * 1000 > bitrate_remainder) {
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stream_bitrates[i] = bitrate_remainder;
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} else {
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stream_bitrates[i] = stream_configs[i].maxBitrate * 1000;
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}
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bitrate_remainder -= stream_bitrates[i];
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}
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return stream_bitrates;
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}
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class QMVideoSettingsCallback : public VCMQMSettingsCallback {
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public:
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explicit QMVideoSettingsCallback(VideoProcessing* vpm);
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~QMVideoSettingsCallback();
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// Update VPM with QM (quality modes: frame size & frame rate) settings.
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int32_t SetVideoQMSettings(const uint32_t frame_rate,
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const uint32_t width,
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const uint32_t height);
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// Update target frame rate.
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void SetTargetFramerate(int frame_rate);
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private:
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VideoProcessing* vp_;
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};
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class ViEBitrateObserver : public BitrateObserver {
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public:
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explicit ViEBitrateObserver(ViEEncoder* owner)
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: owner_(owner) {
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}
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virtual ~ViEBitrateObserver() {}
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// Implements BitrateObserver.
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virtual void OnNetworkChanged(uint32_t bitrate_bps,
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uint8_t fraction_lost,
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int64_t rtt) {
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owner_->OnNetworkChanged(bitrate_bps, fraction_lost, rtt);
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}
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private:
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ViEEncoder* owner_;
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};
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ViEEncoder::ViEEncoder(uint32_t number_of_cores,
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ProcessThread* module_process_thread,
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SendStatisticsProxy* stats_proxy,
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I420FrameCallback* pre_encode_callback,
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PacedSender* pacer,
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BitrateAllocator* bitrate_allocator)
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: number_of_cores_(number_of_cores),
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vp_(VideoProcessing::Create()),
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qm_callback_(new QMVideoSettingsCallback(vp_.get())),
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vcm_(VideoCodingModule::Create(Clock::GetRealTimeClock(),
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this,
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qm_callback_.get())),
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send_payload_router_(NULL),
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data_cs_(CriticalSectionWrapper::CreateCriticalSection()),
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stats_proxy_(stats_proxy),
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pre_encode_callback_(pre_encode_callback),
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pacer_(pacer),
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bitrate_allocator_(bitrate_allocator),
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time_of_last_frame_activity_ms_(0),
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encoder_config_(),
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min_transmit_bitrate_kbps_(0),
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last_observed_bitrate_bps_(0),
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target_delay_ms_(0),
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network_is_transmitting_(true),
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encoder_paused_(false),
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encoder_paused_and_dropped_frame_(false),
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module_process_thread_(module_process_thread),
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has_received_sli_(false),
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picture_id_sli_(0),
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has_received_rpsi_(false),
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picture_id_rpsi_(0),
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video_suspended_(false) {
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bitrate_observer_.reset(new ViEBitrateObserver(this));
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}
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bool ViEEncoder::Init() {
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vp_->EnableTemporalDecimation(true);
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// Enable/disable content analysis: off by default for now.
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vp_->EnableContentAnalysis(false);
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if (vcm_->RegisterTransportCallback(this) != 0) {
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return false;
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}
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if (vcm_->RegisterSendStatisticsCallback(this) != 0) {
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return false;
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}
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return true;
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}
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void ViEEncoder::StartThreadsAndSetSharedMembers(
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rtc::scoped_refptr<PayloadRouter> send_payload_router,
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VCMProtectionCallback* vcm_protection_callback) {
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RTC_DCHECK(send_payload_router_ == NULL);
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send_payload_router_ = send_payload_router;
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vcm_->RegisterProtectionCallback(vcm_protection_callback);
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module_process_thread_->RegisterModule(vcm_.get());
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}
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void ViEEncoder::StopThreadsAndRemoveSharedMembers() {
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if (bitrate_allocator_)
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bitrate_allocator_->RemoveBitrateObserver(bitrate_observer_.get());
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module_process_thread_->DeRegisterModule(vcm_.get());
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}
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ViEEncoder::~ViEEncoder() {
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}
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void ViEEncoder::SetNetworkTransmissionState(bool is_transmitting) {
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{
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CriticalSectionScoped cs(data_cs_.get());
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network_is_transmitting_ = is_transmitting;
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}
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}
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void ViEEncoder::Pause() {
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CriticalSectionScoped cs(data_cs_.get());
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encoder_paused_ = true;
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}
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void ViEEncoder::Restart() {
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CriticalSectionScoped cs(data_cs_.get());
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encoder_paused_ = false;
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}
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int32_t ViEEncoder::RegisterExternalEncoder(webrtc::VideoEncoder* encoder,
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uint8_t pl_type,
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bool internal_source) {
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if (vcm_->RegisterExternalEncoder(encoder, pl_type, internal_source) !=
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VCM_OK) {
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return -1;
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}
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return 0;
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}
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int32_t ViEEncoder::DeRegisterExternalEncoder(uint8_t pl_type) {
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if (vcm_->RegisterExternalEncoder(NULL, pl_type) != VCM_OK) {
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return -1;
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}
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return 0;
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}
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int32_t ViEEncoder::SetEncoder(const webrtc::VideoCodec& video_codec) {
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RTC_DCHECK(send_payload_router_ != NULL);
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// Setting target width and height for VPM.
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if (vp_->SetTargetResolution(video_codec.width, video_codec.height,
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video_codec.maxFramerate) != VPM_OK) {
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return -1;
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}
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// Cache codec before calling AddBitrateObserver (which calls OnNetworkChanged
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// that makes use of the number of simulcast streams configured).
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{
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CriticalSectionScoped cs(data_cs_.get());
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encoder_config_ = video_codec;
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}
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// Add a bitrate observer to the allocator and update the start, max and
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// min bitrates of the bitrate controller as needed.
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int allocated_bitrate_bps = bitrate_allocator_->AddBitrateObserver(
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bitrate_observer_.get(), video_codec.minBitrate * 1000,
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video_codec.maxBitrate * 1000);
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webrtc::VideoCodec modified_video_codec = video_codec;
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modified_video_codec.startBitrate = allocated_bitrate_bps / 1000;
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size_t max_data_payload_length = send_payload_router_->MaxPayloadLength();
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if (vcm_->RegisterSendCodec(&modified_video_codec, number_of_cores_,
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static_cast<uint32_t>(max_data_payload_length)) !=
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VCM_OK) {
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return -1;
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}
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return 0;
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}
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int ViEEncoder::GetPaddingNeededBps() const {
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int64_t time_of_last_frame_activity_ms;
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int min_transmit_bitrate_bps;
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int bitrate_bps;
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VideoCodec send_codec;
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{
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CriticalSectionScoped cs(data_cs_.get());
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bool send_padding = encoder_config_.numberOfSimulcastStreams > 1 ||
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video_suspended_ || min_transmit_bitrate_kbps_ > 0;
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if (!send_padding)
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return 0;
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time_of_last_frame_activity_ms = time_of_last_frame_activity_ms_;
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min_transmit_bitrate_bps = 1000 * min_transmit_bitrate_kbps_;
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bitrate_bps = last_observed_bitrate_bps_;
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send_codec = encoder_config_;
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}
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bool video_is_suspended = vcm_->VideoSuspended();
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// Find the max amount of padding we can allow ourselves to send at this
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// point, based on which streams are currently active and what our current
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// available bandwidth is.
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int pad_up_to_bitrate_bps = 0;
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if (send_codec.numberOfSimulcastStreams == 0) {
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pad_up_to_bitrate_bps = send_codec.minBitrate * 1000;
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} else {
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SimulcastStream* stream_configs = send_codec.simulcastStream;
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pad_up_to_bitrate_bps =
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stream_configs[send_codec.numberOfSimulcastStreams - 1].minBitrate *
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1000;
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for (int i = 0; i < send_codec.numberOfSimulcastStreams - 1; ++i) {
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pad_up_to_bitrate_bps += stream_configs[i].targetBitrate * 1000;
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}
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}
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// Disable padding if only sending one stream and video isn't suspended and
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// min-transmit bitrate isn't used (applied later).
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if (!video_is_suspended && send_codec.numberOfSimulcastStreams <= 1)
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pad_up_to_bitrate_bps = 0;
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// The amount of padding should decay to zero if no frames are being
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// captured/encoded unless a min-transmit bitrate is used.
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int64_t now_ms = TickTime::MillisecondTimestamp();
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if (now_ms - time_of_last_frame_activity_ms > kStopPaddingThresholdMs)
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pad_up_to_bitrate_bps = 0;
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// Pad up to min bitrate.
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if (pad_up_to_bitrate_bps < min_transmit_bitrate_bps)
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pad_up_to_bitrate_bps = min_transmit_bitrate_bps;
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// Padding may never exceed bitrate estimate.
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if (pad_up_to_bitrate_bps > bitrate_bps)
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pad_up_to_bitrate_bps = bitrate_bps;
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return pad_up_to_bitrate_bps;
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}
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bool ViEEncoder::EncoderPaused() const {
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// Pause video if paused by caller or as long as the network is down or the
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// pacer queue has grown too large in buffered mode.
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if (encoder_paused_) {
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return true;
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}
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if (target_delay_ms_ > 0) {
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// Buffered mode.
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// TODO(pwestin): Workaround until nack is configured as a time and not
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// number of packets.
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return pacer_->QueueInMs() >=
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std::max(
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static_cast<int>(target_delay_ms_ * kEncoderPausePacerMargin),
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kMinPacingDelayMs);
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}
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if (pacer_->ExpectedQueueTimeMs() > PacedSender::kMaxQueueLengthMs) {
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// Too much data in pacer queue, drop frame.
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return true;
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}
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return !network_is_transmitting_;
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}
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void ViEEncoder::TraceFrameDropStart() {
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// Start trace event only on the first frame after encoder is paused.
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if (!encoder_paused_and_dropped_frame_) {
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TRACE_EVENT_ASYNC_BEGIN0("webrtc", "EncoderPaused", this);
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}
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encoder_paused_and_dropped_frame_ = true;
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return;
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}
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void ViEEncoder::TraceFrameDropEnd() {
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// End trace event on first frame after encoder resumes, if frame was dropped.
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if (encoder_paused_and_dropped_frame_) {
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TRACE_EVENT_ASYNC_END0("webrtc", "EncoderPaused", this);
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}
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encoder_paused_and_dropped_frame_ = false;
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}
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void ViEEncoder::DeliverFrame(VideoFrame video_frame) {
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RTC_DCHECK(send_payload_router_ != NULL);
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if (!send_payload_router_->active()) {
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// We've paused or we have no channels attached, don't waste resources on
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// encoding.
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return;
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}
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VideoCodecType codec_type;
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{
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CriticalSectionScoped cs(data_cs_.get());
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time_of_last_frame_activity_ms_ = TickTime::MillisecondTimestamp();
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if (EncoderPaused()) {
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TraceFrameDropStart();
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return;
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}
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TraceFrameDropEnd();
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codec_type = encoder_config_.codecType;
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}
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TRACE_EVENT_ASYNC_STEP0("webrtc", "Video", video_frame.render_time_ms(),
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"Encode");
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const VideoFrame* frame_to_send = &video_frame;
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// TODO(wuchengli): support texture frames.
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if (video_frame.native_handle() == NULL) {
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// Pass frame via preprocessor.
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frame_to_send = vp_->PreprocessFrame(video_frame);
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if (!frame_to_send) {
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// Drop this frame, or there was an error processing it.
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return;
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}
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}
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// If we haven't resampled the frame and we have a FrameCallback, we need to
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// make a deep copy of |video_frame|.
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VideoFrame copied_frame;
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if (pre_encode_callback_) {
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copied_frame.CopyFrame(*frame_to_send);
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pre_encode_callback_->FrameCallback(&copied_frame);
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frame_to_send = &copied_frame;
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}
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if (codec_type == webrtc::kVideoCodecVP8) {
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webrtc::CodecSpecificInfo codec_specific_info;
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codec_specific_info.codecType = webrtc::kVideoCodecVP8;
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{
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CriticalSectionScoped cs(data_cs_.get());
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codec_specific_info.codecSpecific.VP8.hasReceivedRPSI =
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has_received_rpsi_;
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codec_specific_info.codecSpecific.VP8.hasReceivedSLI =
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has_received_sli_;
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codec_specific_info.codecSpecific.VP8.pictureIdRPSI =
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picture_id_rpsi_;
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codec_specific_info.codecSpecific.VP8.pictureIdSLI =
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picture_id_sli_;
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has_received_sli_ = false;
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has_received_rpsi_ = false;
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}
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vcm_->AddVideoFrame(*frame_to_send, vp_->GetContentMetrics(),
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&codec_specific_info);
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return;
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}
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vcm_->AddVideoFrame(*frame_to_send);
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}
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int ViEEncoder::SendKeyFrame() {
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return vcm_->IntraFrameRequest(0);
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}
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uint32_t ViEEncoder::LastObservedBitrateBps() const {
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CriticalSectionScoped cs(data_cs_.get());
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return last_observed_bitrate_bps_;
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}
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int ViEEncoder::CodecTargetBitrate(uint32_t* bitrate) const {
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if (vcm_->Bitrate(bitrate) != 0)
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return -1;
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return 0;
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}
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void ViEEncoder::SetProtectionMethod(bool nack, bool fec) {
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// Set Video Protection for VCM.
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VCMVideoProtection protection_mode;
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if (fec) {
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protection_mode =
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nack ? webrtc::kProtectionNackFEC : kProtectionFEC;
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} else {
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protection_mode = nack ? kProtectionNack : kProtectionNone;
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}
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vcm_->SetVideoProtection(protection_mode, true);
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}
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void ViEEncoder::SetSenderBufferingMode(int target_delay_ms) {
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{
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CriticalSectionScoped cs(data_cs_.get());
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target_delay_ms_ = target_delay_ms;
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}
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if (target_delay_ms > 0) {
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// Disable external frame-droppers.
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vcm_->EnableFrameDropper(false);
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vp_->EnableTemporalDecimation(false);
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} else {
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// Real-time mode - enable frame droppers.
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vp_->EnableTemporalDecimation(true);
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vcm_->EnableFrameDropper(true);
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}
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}
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void ViEEncoder::OnSetRates(uint32_t bitrate_bps, int framerate) {
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if (stats_proxy_)
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stats_proxy_->OnSetRates(bitrate_bps, framerate);
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}
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int32_t ViEEncoder::SendData(
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const uint8_t payload_type,
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const EncodedImage& encoded_image,
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const webrtc::RTPFragmentationHeader& fragmentation_header,
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const RTPVideoHeader* rtp_video_hdr) {
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RTC_DCHECK(send_payload_router_ != NULL);
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{
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CriticalSectionScoped cs(data_cs_.get());
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time_of_last_frame_activity_ms_ = TickTime::MillisecondTimestamp();
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}
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if (stats_proxy_ != NULL)
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stats_proxy_->OnSendEncodedImage(encoded_image, rtp_video_hdr);
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|
|
return send_payload_router_->RoutePayload(
|
|
encoded_image._frameType, payload_type, encoded_image._timeStamp,
|
|
encoded_image.capture_time_ms_, encoded_image._buffer,
|
|
encoded_image._length, &fragmentation_header, rtp_video_hdr)
|
|
? 0
|
|
: -1;
|
|
}
|
|
|
|
int32_t ViEEncoder::SendStatistics(const uint32_t bit_rate,
|
|
const uint32_t frame_rate) {
|
|
if (stats_proxy_)
|
|
stats_proxy_->OnOutgoingRate(frame_rate, bit_rate);
|
|
return 0;
|
|
}
|
|
|
|
void ViEEncoder::OnReceivedSLI(uint32_t /*ssrc*/,
|
|
uint8_t picture_id) {
|
|
CriticalSectionScoped cs(data_cs_.get());
|
|
picture_id_sli_ = picture_id;
|
|
has_received_sli_ = true;
|
|
}
|
|
|
|
void ViEEncoder::OnReceivedRPSI(uint32_t /*ssrc*/,
|
|
uint64_t picture_id) {
|
|
CriticalSectionScoped cs(data_cs_.get());
|
|
picture_id_rpsi_ = picture_id;
|
|
has_received_rpsi_ = true;
|
|
}
|
|
|
|
void ViEEncoder::OnReceivedIntraFrameRequest(uint32_t ssrc) {
|
|
// Key frame request from remote side, signal to VCM.
|
|
TRACE_EVENT0("webrtc", "OnKeyFrameRequest");
|
|
|
|
int idx = 0;
|
|
{
|
|
CriticalSectionScoped cs(data_cs_.get());
|
|
auto stream_it = ssrc_streams_.find(ssrc);
|
|
if (stream_it == ssrc_streams_.end()) {
|
|
LOG_F(LS_WARNING) << "ssrc not found: " << ssrc << ", map size "
|
|
<< ssrc_streams_.size();
|
|
return;
|
|
}
|
|
std::map<unsigned int, int64_t>::iterator time_it =
|
|
time_last_intra_request_ms_.find(ssrc);
|
|
if (time_it == time_last_intra_request_ms_.end()) {
|
|
time_last_intra_request_ms_[ssrc] = 0;
|
|
}
|
|
|
|
int64_t now = TickTime::MillisecondTimestamp();
|
|
if (time_last_intra_request_ms_[ssrc] + kMinKeyFrameRequestIntervalMs
|
|
> now) {
|
|
return;
|
|
}
|
|
time_last_intra_request_ms_[ssrc] = now;
|
|
idx = stream_it->second;
|
|
}
|
|
// Release the critsect before triggering key frame.
|
|
vcm_->IntraFrameRequest(idx);
|
|
}
|
|
|
|
void ViEEncoder::OnLocalSsrcChanged(uint32_t old_ssrc, uint32_t new_ssrc) {
|
|
CriticalSectionScoped cs(data_cs_.get());
|
|
std::map<unsigned int, int>::iterator it = ssrc_streams_.find(old_ssrc);
|
|
if (it == ssrc_streams_.end()) {
|
|
return;
|
|
}
|
|
|
|
ssrc_streams_[new_ssrc] = it->second;
|
|
ssrc_streams_.erase(it);
|
|
|
|
std::map<unsigned int, int64_t>::iterator time_it =
|
|
time_last_intra_request_ms_.find(old_ssrc);
|
|
int64_t last_intra_request_ms = 0;
|
|
if (time_it != time_last_intra_request_ms_.end()) {
|
|
last_intra_request_ms = time_it->second;
|
|
time_last_intra_request_ms_.erase(time_it);
|
|
}
|
|
time_last_intra_request_ms_[new_ssrc] = last_intra_request_ms;
|
|
}
|
|
|
|
void ViEEncoder::SetSsrcs(const std::vector<uint32_t>& ssrcs) {
|
|
CriticalSectionScoped cs(data_cs_.get());
|
|
ssrc_streams_.clear();
|
|
time_last_intra_request_ms_.clear();
|
|
int idx = 0;
|
|
for (uint32_t ssrc : ssrcs) {
|
|
ssrc_streams_[ssrc] = idx++;
|
|
}
|
|
}
|
|
|
|
void ViEEncoder::SetMinTransmitBitrate(int min_transmit_bitrate_kbps) {
|
|
assert(min_transmit_bitrate_kbps >= 0);
|
|
CriticalSectionScoped crit(data_cs_.get());
|
|
min_transmit_bitrate_kbps_ = min_transmit_bitrate_kbps;
|
|
}
|
|
|
|
// Called from ViEBitrateObserver.
|
|
void ViEEncoder::OnNetworkChanged(uint32_t bitrate_bps,
|
|
uint8_t fraction_lost,
|
|
int64_t round_trip_time_ms) {
|
|
LOG(LS_VERBOSE) << "OnNetworkChanged, bitrate" << bitrate_bps
|
|
<< " packet loss " << static_cast<int>(fraction_lost)
|
|
<< " rtt " << round_trip_time_ms;
|
|
RTC_DCHECK(send_payload_router_ != NULL);
|
|
vcm_->SetChannelParameters(bitrate_bps, fraction_lost, round_trip_time_ms);
|
|
bool video_is_suspended = vcm_->VideoSuspended();
|
|
bool video_suspension_changed;
|
|
VideoCodec send_codec;
|
|
uint32_t first_ssrc;
|
|
{
|
|
CriticalSectionScoped cs(data_cs_.get());
|
|
last_observed_bitrate_bps_ = bitrate_bps;
|
|
video_suspension_changed = video_suspended_ != video_is_suspended;
|
|
video_suspended_ = video_is_suspended;
|
|
send_codec = encoder_config_;
|
|
first_ssrc = ssrc_streams_.begin()->first;
|
|
}
|
|
|
|
SimulcastStream* stream_configs = send_codec.simulcastStream;
|
|
// Allocate the bandwidth between the streams.
|
|
std::vector<uint32_t> stream_bitrates = AllocateStreamBitrates(
|
|
bitrate_bps, stream_configs, send_codec.numberOfSimulcastStreams);
|
|
send_payload_router_->SetTargetSendBitrates(stream_bitrates);
|
|
|
|
if (!video_suspension_changed)
|
|
return;
|
|
// Video suspend-state changed, inform codec observer.
|
|
LOG(LS_INFO) << "Video suspend state changed " << video_is_suspended
|
|
<< " for ssrc " << first_ssrc;
|
|
if (stats_proxy_)
|
|
stats_proxy_->OnSuspendChange(video_is_suspended);
|
|
}
|
|
|
|
void ViEEncoder::SuspendBelowMinBitrate() {
|
|
vcm_->SuspendBelowMinBitrate();
|
|
bitrate_allocator_->EnforceMinBitrate(false);
|
|
}
|
|
|
|
void ViEEncoder::RegisterPostEncodeImageCallback(
|
|
EncodedImageCallback* post_encode_callback) {
|
|
vcm_->RegisterPostEncodeImageCallback(post_encode_callback);
|
|
}
|
|
|
|
QMVideoSettingsCallback::QMVideoSettingsCallback(VideoProcessing* vpm)
|
|
: vp_(vpm) {
|
|
}
|
|
|
|
QMVideoSettingsCallback::~QMVideoSettingsCallback() {
|
|
}
|
|
|
|
int32_t QMVideoSettingsCallback::SetVideoQMSettings(
|
|
const uint32_t frame_rate,
|
|
const uint32_t width,
|
|
const uint32_t height) {
|
|
return vp_->SetTargetResolution(width, height, frame_rate);
|
|
}
|
|
|
|
void QMVideoSettingsCallback::SetTargetFramerate(int frame_rate) {
|
|
vp_->SetTargetFramerate(frame_rate);
|
|
}
|
|
|
|
} // namespace webrtc
|