
Mechanically generated by running this command: tools_webrtc/do-renames.sh update all-renames.txt && git cl format Then manually updating: tools_webrtc/sanitizers/tsan_suppressions_webrtc.cc Bug: webrtc:10159 No-Presubmit: true No-Tree-Checks: true No-Try: true Change-Id: I54824cd91dada8fc3ee3d098f971bc319d477833 Reviewed-on: https://webrtc-review.googlesource.com/c/115653 Reviewed-by: Karl Wiberg <kwiberg@webrtc.org> Cr-Commit-Position: refs/heads/master@{#26226}
262 lines
9.8 KiB
C++
262 lines
9.8 KiB
C++
/*
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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 <stddef.h>
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#include <stdint.h>
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#include <vector>
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#include "api/video/video_bitrate_allocation.h"
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#include "api/video/video_bitrate_allocator.h"
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#include "api/video/video_frame.h"
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#include "api/video/video_frame_buffer.h"
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#include "api/video_codecs/video_codec.h"
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#include "api/video_codecs/video_encoder.h"
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#include "common_types.h" // NOLINT(build/include)
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#include "modules/video_coding/encoder_database.h"
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#include "modules/video_coding/generic_encoder.h"
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#include "modules/video_coding/include/video_codec_interface.h"
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#include "modules/video_coding/include/video_coding_defines.h"
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#include "modules/video_coding/include/video_error_codes.h"
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#include "modules/video_coding/internal_defines.h"
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#include "modules/video_coding/utility/default_video_bitrate_allocator.h"
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#include "modules/video_coding/video_coding_impl.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/critical_section.h"
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#include "rtc_base/logging.h"
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#include "rtc_base/scoped_ref_ptr.h"
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#include "rtc_base/sequenced_task_checker.h"
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#include "system_wrappers/include/clock.h"
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#include "system_wrappers/include/field_trial.h"
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namespace webrtc {
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namespace vcm {
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VideoSender::VideoSender(Clock* clock,
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EncodedImageCallback* post_encode_callback)
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: _encoder(nullptr),
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_encodedFrameCallback(post_encode_callback),
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_codecDataBase(&_encodedFrameCallback),
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current_codec_(),
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encoder_has_internal_source_(false),
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next_frame_types_(1, kVideoFrameDelta) {
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// Allow VideoSender to be created on one thread but used on another, post
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// construction. This is currently how this class is being used by at least
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// one external project (diffractor).
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sequenced_checker_.Detach();
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}
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VideoSender::~VideoSender() {}
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// Register the send codec to be used.
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int32_t VideoSender::RegisterSendCodec(const VideoCodec* sendCodec,
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uint32_t numberOfCores,
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uint32_t maxPayloadSize) {
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RTC_DCHECK(sequenced_checker_.CalledSequentially());
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rtc::CritScope lock(&encoder_crit_);
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if (sendCodec == nullptr) {
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return VCM_PARAMETER_ERROR;
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}
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bool ret =
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_codecDataBase.SetSendCodec(sendCodec, numberOfCores, maxPayloadSize);
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// Update encoder regardless of result to make sure that we're not holding on
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// to a deleted instance.
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_encoder = _codecDataBase.GetEncoder();
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// Cache the current codec here so they can be fetched from this thread
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// without requiring the _sendCritSect lock.
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current_codec_ = *sendCodec;
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if (!ret) {
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RTC_LOG(LS_ERROR) << "Failed to initialize set encoder with codec type '"
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<< sendCodec->codecType << "'.";
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return VCM_CODEC_ERROR;
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}
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// SetSendCodec succeeded, _encoder should be set.
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RTC_DCHECK(_encoder);
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{
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rtc::CritScope cs(¶ms_crit_);
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next_frame_types_.clear();
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next_frame_types_.resize(VCM_MAX(sendCodec->numberOfSimulcastStreams, 1),
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kVideoFrameKey);
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// Cache InternalSource() to have this available from IntraFrameRequest()
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// without having to acquire encoder_crit_ (avoid blocking on encoder use).
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encoder_has_internal_source_ = _encoder->InternalSource();
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}
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RTC_LOG(LS_VERBOSE) << " max bitrate " << sendCodec->maxBitrate
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<< " start bitrate " << sendCodec->startBitrate
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<< " max frame rate " << sendCodec->maxFramerate
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<< " max payload size " << maxPayloadSize;
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return VCM_OK;
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}
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// Register an external decoder object.
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// This can not be used together with external decoder callbacks.
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void VideoSender::RegisterExternalEncoder(VideoEncoder* externalEncoder,
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bool internalSource /*= false*/) {
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RTC_DCHECK(sequenced_checker_.CalledSequentially());
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rtc::CritScope lock(&encoder_crit_);
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if (externalEncoder == nullptr) {
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_codecDataBase.DeregisterExternalEncoder();
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{
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// Make sure the VCM doesn't use the de-registered codec
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rtc::CritScope params_lock(¶ms_crit_);
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_encoder = nullptr;
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encoder_has_internal_source_ = false;
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}
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return;
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}
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_codecDataBase.RegisterExternalEncoder(externalEncoder,
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internalSource);
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}
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int32_t VideoSender::SetChannelParameters(
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const VideoBitrateAllocation& bitrate_allocation,
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uint32_t framerate_fps) {
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bool encoder_has_internal_source;
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{
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rtc::CritScope cs(¶ms_crit_);
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encoder_has_internal_source = encoder_has_internal_source_;
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}
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{
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rtc::CritScope cs(&encoder_crit_);
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if (_encoder) {
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// |target_bitrate == 0 | means that the network is down or the send pacer
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// is full. We currently only report this if the encoder has an internal
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// source. If the encoder does not have an internal source, higher levels
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// are expected to not call AddVideoFrame. We do this since its unclear
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// how current encoder implementations behave when given a zero target
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// bitrate.
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// TODO(perkj): Make sure all known encoder implementations handle zero
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// target bitrate and remove this check.
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if (!encoder_has_internal_source &&
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bitrate_allocation.get_sum_bps() == 0) {
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return VCM_OK;
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}
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if (framerate_fps == 0) {
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// No frame rate estimate available, use default.
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framerate_fps = current_codec_.maxFramerate;
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}
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if (_encoder != nullptr)
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_encoder->SetEncoderParameters(bitrate_allocation, framerate_fps);
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}
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}
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return VCM_OK;
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}
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// Add one raw video frame to the encoder, blocking.
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int32_t VideoSender::AddVideoFrame(
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const VideoFrame& videoFrame,
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const CodecSpecificInfo* codecSpecificInfo,
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absl::optional<VideoEncoder::EncoderInfo> encoder_info) {
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std::vector<FrameType> next_frame_types;
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bool encoder_has_internal_source = false;
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{
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rtc::CritScope lock(¶ms_crit_);
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next_frame_types = next_frame_types_;
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encoder_has_internal_source = encoder_has_internal_source_;
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}
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rtc::CritScope lock(&encoder_crit_);
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if (_encoder == nullptr)
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return VCM_UNINITIALIZED;
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// TODO(pbos): Make sure setting send codec is synchronized with video
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// processing so frame size always matches.
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if (!_codecDataBase.MatchesCurrentResolution(videoFrame.width(),
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videoFrame.height())) {
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RTC_LOG(LS_ERROR)
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<< "Incoming frame doesn't match set resolution. Dropping.";
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return VCM_PARAMETER_ERROR;
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}
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VideoFrame converted_frame = videoFrame;
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const VideoFrameBuffer::Type buffer_type =
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converted_frame.video_frame_buffer()->type();
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const bool is_buffer_type_supported =
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buffer_type == VideoFrameBuffer::Type::kI420 ||
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(buffer_type == VideoFrameBuffer::Type::kNative &&
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encoder_info->supports_native_handle);
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if (!is_buffer_type_supported) {
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// This module only supports software encoding.
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// TODO(pbos): Offload conversion from the encoder thread.
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rtc::scoped_refptr<I420BufferInterface> converted_buffer(
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converted_frame.video_frame_buffer()->ToI420());
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if (!converted_buffer) {
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RTC_LOG(LS_ERROR) << "Frame conversion failed, dropping frame.";
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return VCM_PARAMETER_ERROR;
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}
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converted_frame = VideoFrame::Builder()
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.set_video_frame_buffer(converted_buffer)
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.set_timestamp_rtp(converted_frame.timestamp())
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.set_timestamp_ms(converted_frame.render_time_ms())
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.set_rotation(converted_frame.rotation())
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.set_id(converted_frame.id())
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.build();
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}
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int32_t ret =
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_encoder->Encode(converted_frame, codecSpecificInfo, next_frame_types);
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if (ret < 0) {
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RTC_LOG(LS_ERROR) << "Failed to encode frame. Error code: " << ret;
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return ret;
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}
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{
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rtc::CritScope lock(¶ms_crit_);
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// Change all keyframe requests to encode delta frames the next time.
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for (size_t i = 0; i < next_frame_types_.size(); ++i) {
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// Check for equality (same requested as before encoding) to not
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// accidentally drop a keyframe request while encoding.
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if (next_frame_types[i] == next_frame_types_[i])
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next_frame_types_[i] = kVideoFrameDelta;
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}
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}
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return VCM_OK;
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}
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int32_t VideoSender::IntraFrameRequest(size_t stream_index) {
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{
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rtc::CritScope lock(¶ms_crit_);
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if (stream_index >= next_frame_types_.size()) {
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return -1;
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}
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next_frame_types_[stream_index] = kVideoFrameKey;
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if (!encoder_has_internal_source_)
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return VCM_OK;
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}
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// TODO(pbos): Remove when InternalSource() is gone. Both locks have to be
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// held here for internal consistency, since _encoder could be removed while
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// not holding encoder_crit_. Checks have to be performed again since
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// params_crit_ was dropped to not cause lock-order inversions with
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// encoder_crit_.
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rtc::CritScope lock(&encoder_crit_);
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rtc::CritScope params_lock(¶ms_crit_);
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if (stream_index >= next_frame_types_.size())
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return -1;
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if (_encoder != nullptr && _encoder->InternalSource()) {
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// Try to request the frame if we have an external encoder with
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// internal source since AddVideoFrame never will be called.
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if (_encoder->RequestFrame(next_frame_types_) == WEBRTC_VIDEO_CODEC_OK) {
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// Try to remove just-performed keyframe request, if stream still exists.
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next_frame_types_[stream_index] = kVideoFrameDelta;
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}
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}
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return VCM_OK;
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}
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} // namespace vcm
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} // namespace webrtc
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