зеркало из https://github.com/mozilla/gecko-dev.git
309 строки
11 KiB
C++
309 строки
11 KiB
C++
/*
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* Copyright (c) 2016 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 "media/engine/videoencodersoftwarefallbackwrapper.h"
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#include <utility>
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#include "media/base/h264_profile_level_id.h"
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#include "media/engine/internalencoderfactory.h"
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#include "modules/video_coding/include/video_error_codes.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/logging.h"
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#include "rtc_base/timeutils.h"
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#include "system_wrappers/include/field_trial.h"
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namespace webrtc {
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namespace {
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const char kVp8ForceFallbackEncoderFieldTrial[] =
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"WebRTC-VP8-Forced-Fallback-Encoder-v2";
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bool EnableForcedFallback() {
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return field_trial::IsEnabled(kVp8ForceFallbackEncoderFieldTrial);
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}
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bool IsForcedFallbackPossible(const VideoCodec& codec_settings) {
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return codec_settings.codecType == kVideoCodecVP8 &&
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codec_settings.numberOfSimulcastStreams <= 1 &&
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codec_settings.VP8().numberOfTemporalLayers == 1;
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}
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void GetForcedFallbackParamsFromFieldTrialGroup(int* param_min_pixels,
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int* param_max_pixels,
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int minimum_max_pixels) {
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RTC_DCHECK(param_min_pixels);
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RTC_DCHECK(param_max_pixels);
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std::string group =
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webrtc::field_trial::FindFullName(kVp8ForceFallbackEncoderFieldTrial);
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if (group.empty())
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return;
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int min_pixels;
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int max_pixels;
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int min_bps;
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if (sscanf(group.c_str(), "Enabled-%d,%d,%d", &min_pixels, &max_pixels,
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&min_bps) != 3) {
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RTC_LOG(LS_WARNING)
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<< "Invalid number of forced fallback parameters provided.";
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return;
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}
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if (min_pixels <= 0 || max_pixels < minimum_max_pixels ||
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max_pixels < min_pixels || min_bps <= 0) {
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RTC_LOG(LS_WARNING) << "Invalid forced fallback parameter value provided.";
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return;
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}
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*param_min_pixels = min_pixels;
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*param_max_pixels = max_pixels;
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}
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} // namespace
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VideoEncoderSoftwareFallbackWrapper::VideoEncoderSoftwareFallbackWrapper(
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std::unique_ptr<webrtc::VideoEncoder> sw_encoder,
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std::unique_ptr<webrtc::VideoEncoder> hw_encoder)
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: number_of_cores_(0),
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max_payload_size_(0),
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rates_set_(false),
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framerate_(0),
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channel_parameters_set_(false),
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packet_loss_(0),
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rtt_(0),
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use_fallback_encoder_(false),
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encoder_(std::move(hw_encoder)),
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fallback_encoder_(std::move(sw_encoder)),
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callback_(nullptr),
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forced_fallback_possible_(EnableForcedFallback()) {
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if (forced_fallback_possible_) {
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GetForcedFallbackParamsFromFieldTrialGroup(
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&forced_fallback_.min_pixels_, &forced_fallback_.max_pixels_,
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encoder_->GetScalingSettings().min_pixels_per_frame -
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1); // No HW below.
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}
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}
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bool VideoEncoderSoftwareFallbackWrapper::InitFallbackEncoder() {
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RTC_LOG(LS_WARNING) << "Encoder falling back to software encoding.";
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const int ret = fallback_encoder_->InitEncode(
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&codec_settings_, number_of_cores_, max_payload_size_);
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use_fallback_encoder_ = (ret == WEBRTC_VIDEO_CODEC_OK);
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if (!use_fallback_encoder_) {
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RTC_LOG(LS_ERROR) << "Failed to initialize software-encoder fallback.";
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fallback_encoder_->Release();
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return false;
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}
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// Replay callback, rates, and channel parameters.
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if (callback_)
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fallback_encoder_->RegisterEncodeCompleteCallback(callback_);
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if (rates_set_)
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fallback_encoder_->SetRateAllocation(bitrate_allocation_, framerate_);
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if (channel_parameters_set_)
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fallback_encoder_->SetChannelParameters(packet_loss_, rtt_);
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// Since we're switching to the fallback encoder, Release the real encoder. It
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// may be re-initialized via InitEncode later, and it will continue to get
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// Set calls for rates and channel parameters in the meantime.
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encoder_->Release();
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return true;
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}
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int32_t VideoEncoderSoftwareFallbackWrapper::InitEncode(
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const VideoCodec* codec_settings,
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int32_t number_of_cores,
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size_t max_payload_size) {
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// Store settings, in case we need to dynamically switch to the fallback
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// encoder after a failed Encode call.
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codec_settings_ = *codec_settings;
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number_of_cores_ = number_of_cores;
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max_payload_size_ = max_payload_size;
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// Clear stored rate/channel parameters.
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rates_set_ = false;
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channel_parameters_set_ = false;
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ValidateSettingsForForcedFallback();
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// Try to reinit forced software codec if it is in use.
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if (TryReInitForcedFallbackEncoder()) {
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return WEBRTC_VIDEO_CODEC_OK;
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}
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// Try to init forced software codec if it should be used.
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if (TryInitForcedFallbackEncoder()) {
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return WEBRTC_VIDEO_CODEC_OK;
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}
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forced_fallback_.active_ = false;
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int32_t ret =
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encoder_->InitEncode(codec_settings, number_of_cores, max_payload_size);
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if (ret == WEBRTC_VIDEO_CODEC_OK) {
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if (use_fallback_encoder_) {
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RTC_LOG(LS_WARNING)
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<< "InitEncode OK, no longer using the software fallback encoder.";
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fallback_encoder_->Release();
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use_fallback_encoder_ = false;
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}
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if (callback_)
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encoder_->RegisterEncodeCompleteCallback(callback_);
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return ret;
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}
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// Try to instantiate software codec.
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if (InitFallbackEncoder()) {
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return WEBRTC_VIDEO_CODEC_OK;
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}
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// Software encoder failed, use original return code.
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return ret;
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}
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int32_t VideoEncoderSoftwareFallbackWrapper::RegisterEncodeCompleteCallback(
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EncodedImageCallback* callback) {
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callback_ = callback;
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int32_t ret = encoder_->RegisterEncodeCompleteCallback(callback);
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if (use_fallback_encoder_)
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return fallback_encoder_->RegisterEncodeCompleteCallback(callback);
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return ret;
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}
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int32_t VideoEncoderSoftwareFallbackWrapper::Release() {
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return use_fallback_encoder_ ? fallback_encoder_->Release()
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: encoder_->Release();
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}
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int32_t VideoEncoderSoftwareFallbackWrapper::Encode(
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const VideoFrame& frame,
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const CodecSpecificInfo* codec_specific_info,
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const std::vector<FrameType>* frame_types) {
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if (use_fallback_encoder_)
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return fallback_encoder_->Encode(frame, codec_specific_info, frame_types);
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int32_t ret = encoder_->Encode(frame, codec_specific_info, frame_types);
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// If requested, try a software fallback.
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bool fallback_requested = (ret == WEBRTC_VIDEO_CODEC_FALLBACK_SOFTWARE);
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if (fallback_requested && InitFallbackEncoder()) {
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if (frame.video_frame_buffer()->type() == VideoFrameBuffer::Type::kNative &&
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!fallback_encoder_->SupportsNativeHandle()) {
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RTC_LOG(LS_WARNING) << "Fallback encoder doesn't support native frames, "
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<< "dropping one frame.";
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return WEBRTC_VIDEO_CODEC_ERROR;
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}
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// Start using the fallback with this frame.
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return fallback_encoder_->Encode(frame, codec_specific_info, frame_types);
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}
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return ret;
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}
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int32_t VideoEncoderSoftwareFallbackWrapper::SetChannelParameters(
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uint32_t packet_loss,
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int64_t rtt) {
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channel_parameters_set_ = true;
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packet_loss_ = packet_loss;
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rtt_ = rtt;
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int32_t ret = encoder_->SetChannelParameters(packet_loss, rtt);
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if (use_fallback_encoder_)
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return fallback_encoder_->SetChannelParameters(packet_loss, rtt);
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return ret;
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}
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int32_t VideoEncoderSoftwareFallbackWrapper::SetRateAllocation(
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const BitrateAllocation& bitrate_allocation,
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uint32_t framerate) {
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rates_set_ = true;
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bitrate_allocation_ = bitrate_allocation;
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framerate_ = framerate;
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int32_t ret = encoder_->SetRateAllocation(bitrate_allocation_, framerate);
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if (use_fallback_encoder_)
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return fallback_encoder_->SetRateAllocation(bitrate_allocation_, framerate);
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return ret;
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}
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bool VideoEncoderSoftwareFallbackWrapper::SupportsNativeHandle() const {
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return use_fallback_encoder_ ? fallback_encoder_->SupportsNativeHandle()
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: encoder_->SupportsNativeHandle();
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}
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VideoEncoder::ScalingSettings
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VideoEncoderSoftwareFallbackWrapper::GetScalingSettings() const {
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if (forced_fallback_possible_) {
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if (forced_fallback_.active_) {
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return VideoEncoder::ScalingSettings(
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codec_settings_.VP8().automaticResizeOn,
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forced_fallback_.min_pixels_);
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}
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const auto settings = encoder_->GetScalingSettings();
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if (settings.thresholds) {
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return VideoEncoder::ScalingSettings(
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settings.enabled, settings.thresholds->low, settings.thresholds->high,
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forced_fallback_.min_pixels_);
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}
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return VideoEncoder::ScalingSettings(settings.enabled,
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forced_fallback_.min_pixels_);
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}
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return encoder_->GetScalingSettings();
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}
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const char* VideoEncoderSoftwareFallbackWrapper::ImplementationName() const {
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return use_fallback_encoder_ ? fallback_encoder_->ImplementationName()
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: encoder_->ImplementationName();
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}
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bool VideoEncoderSoftwareFallbackWrapper::IsForcedFallbackActive() const {
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return (forced_fallback_possible_ && use_fallback_encoder_ &&
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forced_fallback_.active_);
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}
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bool VideoEncoderSoftwareFallbackWrapper::TryInitForcedFallbackEncoder() {
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if (!forced_fallback_possible_ || use_fallback_encoder_) {
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return false;
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}
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// Fallback not active.
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if (!forced_fallback_.IsValid(codec_settings_)) {
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return false;
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}
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// Settings valid, try to instantiate software codec.
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RTC_LOG(LS_INFO) << "Request forced SW encoder fallback: "
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<< codec_settings_.width << "x" << codec_settings_.height;
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if (!InitFallbackEncoder()) {
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return false;
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}
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forced_fallback_.active_ = true;
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return true;
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}
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bool VideoEncoderSoftwareFallbackWrapper::TryReInitForcedFallbackEncoder() {
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if (!IsForcedFallbackActive()) {
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return false;
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}
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// Forced fallback active.
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if (!forced_fallback_.IsValid(codec_settings_)) {
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RTC_LOG(LS_INFO) << "Stop forced SW encoder fallback, max pixels exceeded.";
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return false;
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}
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// Settings valid, reinitialize the forced fallback encoder.
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if (fallback_encoder_->InitEncode(&codec_settings_, number_of_cores_,
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max_payload_size_) !=
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WEBRTC_VIDEO_CODEC_OK) {
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RTC_LOG(LS_ERROR) << "Failed to init forced SW encoder fallback.";
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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 VideoEncoderSoftwareFallbackWrapper::ValidateSettingsForForcedFallback() {
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if (!forced_fallback_possible_)
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return;
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if (!IsForcedFallbackPossible(codec_settings_)) {
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if (IsForcedFallbackActive()) {
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fallback_encoder_->Release();
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use_fallback_encoder_ = false;
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}
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RTC_LOG(LS_INFO) << "Disable forced_fallback_possible_ due to settings.";
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forced_fallback_possible_ = false;
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}
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}
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} // namespace webrtc
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