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This is the first new style trace event so this CL adds and updates WebRTCs Perfetto configuration. * Changes all #includes to target "third_party/perfetto". Added this to DEPS. * Expose the Perfetto public config in the "tracing" group using an all_dependent_configs statement. This means the config is included in all parts that include the "//:tracing" group. However, direct perfetto includes are banned per DEPS. * In order to expose Perfetto types (ie Flow/TerminatingFlow) the perfetto headers are a dependancy on all targets. This should not affect binary size as these are not used when perfetto is not enabled and will not be linked. Bug: b/42226290 Change-Id: I5711d81dae95ee907cbcd41bf1ee9b55d2ec595c Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/349161 Reviewed-by: Harald Alvestrand <hta@webrtc.org> Reviewed-by: Mirko Bonadei <mbonadei@webrtc.org> Commit-Queue: Evan Shrubsole <eshr@google.com> Cr-Commit-Position: refs/heads/main@{#42197}
349 lines
13 KiB
C++
349 lines
13 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 "modules/video_coding/generic_decoder.h"
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#include <stddef.h>
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#include <algorithm>
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#include <cmath>
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#include <iterator>
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#include <utility>
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#include "absl/algorithm/container.h"
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#include "absl/types/optional.h"
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#include "api/video/video_timing.h"
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#include "api/video_codecs/video_decoder.h"
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#include "modules/include/module_common_types_public.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/string_encode.h"
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#include "rtc_base/trace_event.h"
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#include "system_wrappers/include/clock.h"
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#include "system_wrappers/include/metrics.h"
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namespace webrtc {
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namespace {
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constexpr size_t kDecoderFrameMemoryLength = 10;
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}
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VCMDecodedFrameCallback::VCMDecodedFrameCallback(
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VCMTiming* timing,
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Clock* clock,
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const FieldTrialsView& field_trials)
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: _clock(clock), _timing(timing) {
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ntp_offset_ =
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_clock->CurrentNtpInMilliseconds() - _clock->TimeInMilliseconds();
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}
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VCMDecodedFrameCallback::~VCMDecodedFrameCallback() {}
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void VCMDecodedFrameCallback::SetUserReceiveCallback(
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VCMReceiveCallback* receiveCallback) {
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RTC_DCHECK(construction_thread_.IsCurrent());
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RTC_DCHECK((!_receiveCallback && receiveCallback) ||
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(_receiveCallback && !receiveCallback));
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_receiveCallback = receiveCallback;
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}
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VCMReceiveCallback* VCMDecodedFrameCallback::UserReceiveCallback() {
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// Called on the decode thread via VCMCodecDataBase::GetDecoder.
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// The callback must always have been set before this happens.
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RTC_DCHECK(_receiveCallback);
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return _receiveCallback;
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}
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int32_t VCMDecodedFrameCallback::Decoded(VideoFrame& decodedImage) {
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// This function may be called on the decode TaskQueue, but may also be called
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// on an OS provided queue such as on iOS (see e.g. b/153465112).
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return Decoded(decodedImage, -1);
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}
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int32_t VCMDecodedFrameCallback::Decoded(VideoFrame& decodedImage,
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int64_t decode_time_ms) {
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Decoded(decodedImage,
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decode_time_ms >= 0 ? absl::optional<int32_t>(decode_time_ms)
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: absl::nullopt,
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absl::nullopt);
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return WEBRTC_VIDEO_CODEC_OK;
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}
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std::pair<absl::optional<FrameInfo>, size_t>
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VCMDecodedFrameCallback::FindFrameInfo(uint32_t rtp_timestamp) {
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absl::optional<FrameInfo> frame_info;
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auto it = absl::c_find_if(frame_infos_, [rtp_timestamp](const auto& entry) {
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return entry.rtp_timestamp == rtp_timestamp ||
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IsNewerTimestamp(entry.rtp_timestamp, rtp_timestamp);
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});
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size_t dropped_frames = std::distance(frame_infos_.begin(), it);
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if (it != frame_infos_.end() && it->rtp_timestamp == rtp_timestamp) {
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// Frame was found and should also be removed from the queue.
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frame_info = std::move(*it);
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++it;
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}
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frame_infos_.erase(frame_infos_.begin(), it);
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return std::make_pair(std::move(frame_info), dropped_frames);
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}
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void VCMDecodedFrameCallback::Decoded(VideoFrame& decodedImage,
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absl::optional<int32_t> decode_time_ms,
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absl::optional<uint8_t> qp) {
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RTC_DCHECK(_receiveCallback) << "Callback must not be null at this point";
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TRACE_EVENT(
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"webrtc", "VCMDecodedFrameCallback::Decoded",
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perfetto::TerminatingFlow::ProcessScoped(decodedImage.rtp_timestamp()));
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// TODO(holmer): We should improve this so that we can handle multiple
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// callbacks from one call to Decode().
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absl::optional<FrameInfo> frame_info;
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int timestamp_map_size = 0;
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int dropped_frames = 0;
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{
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MutexLock lock(&lock_);
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std::tie(frame_info, dropped_frames) =
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FindFrameInfo(decodedImage.rtp_timestamp());
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timestamp_map_size = frame_infos_.size();
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}
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if (dropped_frames > 0) {
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_receiveCallback->OnDroppedFrames(dropped_frames);
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}
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if (!frame_info) {
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RTC_LOG(LS_WARNING) << "Too many frames backed up in the decoder, dropping "
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"frame with timestamp "
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<< decodedImage.rtp_timestamp();
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return;
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}
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decodedImage.set_ntp_time_ms(frame_info->ntp_time_ms);
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decodedImage.set_packet_infos(frame_info->packet_infos);
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decodedImage.set_rotation(frame_info->rotation);
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VideoFrame::RenderParameters render_parameters = _timing->RenderParameters();
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if (render_parameters.max_composition_delay_in_frames) {
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// Subtract frames that are in flight.
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render_parameters.max_composition_delay_in_frames =
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std::max(0, *render_parameters.max_composition_delay_in_frames -
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timestamp_map_size);
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}
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decodedImage.set_render_parameters(render_parameters);
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RTC_DCHECK(frame_info->decode_start);
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const Timestamp now = _clock->CurrentTime();
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const TimeDelta decode_time = decode_time_ms
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? TimeDelta::Millis(*decode_time_ms)
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: now - *frame_info->decode_start;
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_timing->StopDecodeTimer(decode_time, now);
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decodedImage.set_processing_time(
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{*frame_info->decode_start, *frame_info->decode_start + decode_time});
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// Report timing information.
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TimingFrameInfo timing_frame_info;
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if (frame_info->timing.flags != VideoSendTiming::kInvalid) {
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int64_t capture_time_ms = decodedImage.ntp_time_ms() - ntp_offset_;
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// Convert remote timestamps to local time from ntp timestamps.
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frame_info->timing.encode_start_ms -= ntp_offset_;
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frame_info->timing.encode_finish_ms -= ntp_offset_;
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frame_info->timing.packetization_finish_ms -= ntp_offset_;
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frame_info->timing.pacer_exit_ms -= ntp_offset_;
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frame_info->timing.network_timestamp_ms -= ntp_offset_;
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frame_info->timing.network2_timestamp_ms -= ntp_offset_;
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int64_t sender_delta_ms = 0;
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if (decodedImage.ntp_time_ms() < 0) {
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// Sender clock is not estimated yet. Make sure that sender times are all
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// negative to indicate that. Yet they still should be relatively correct.
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sender_delta_ms =
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std::max({capture_time_ms, frame_info->timing.encode_start_ms,
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frame_info->timing.encode_finish_ms,
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frame_info->timing.packetization_finish_ms,
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frame_info->timing.pacer_exit_ms,
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frame_info->timing.network_timestamp_ms,
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frame_info->timing.network2_timestamp_ms}) +
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1;
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}
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timing_frame_info.capture_time_ms = capture_time_ms - sender_delta_ms;
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timing_frame_info.encode_start_ms =
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frame_info->timing.encode_start_ms - sender_delta_ms;
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timing_frame_info.encode_finish_ms =
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frame_info->timing.encode_finish_ms - sender_delta_ms;
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timing_frame_info.packetization_finish_ms =
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frame_info->timing.packetization_finish_ms - sender_delta_ms;
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timing_frame_info.pacer_exit_ms =
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frame_info->timing.pacer_exit_ms - sender_delta_ms;
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timing_frame_info.network_timestamp_ms =
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frame_info->timing.network_timestamp_ms - sender_delta_ms;
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timing_frame_info.network2_timestamp_ms =
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frame_info->timing.network2_timestamp_ms - sender_delta_ms;
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RTC_HISTOGRAM_COUNTS_1000(
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"WebRTC.Video.GenericDecoder.CaptureToEncodeDelay",
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timing_frame_info.encode_start_ms - timing_frame_info.capture_time_ms);
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RTC_HISTOGRAM_COUNTS_1000(
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"WebRTC.Video.GenericDecoder.EncodeDelay",
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timing_frame_info.encode_finish_ms - timing_frame_info.encode_start_ms);
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RTC_HISTOGRAM_COUNTS_1000(
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"WebRTC.Video.GenericDecoder.PacerAndPacketizationDelay",
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timing_frame_info.pacer_exit_ms - timing_frame_info.encode_finish_ms);
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}
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timing_frame_info.flags = frame_info->timing.flags;
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timing_frame_info.decode_start_ms = frame_info->decode_start->ms();
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timing_frame_info.decode_finish_ms = now.ms();
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timing_frame_info.render_time_ms =
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frame_info->render_time ? frame_info->render_time->ms() : -1;
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timing_frame_info.rtp_timestamp = decodedImage.rtp_timestamp();
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timing_frame_info.receive_start_ms = frame_info->timing.receive_start_ms;
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timing_frame_info.receive_finish_ms = frame_info->timing.receive_finish_ms;
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RTC_HISTOGRAM_COUNTS_1000(
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"WebRTC.Video.GenericDecoder.PacketReceiveDelay",
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timing_frame_info.receive_finish_ms - timing_frame_info.receive_start_ms);
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RTC_HISTOGRAM_COUNTS_1000(
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"WebRTC.Video.GenericDecoder.JitterBufferDelay",
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timing_frame_info.decode_start_ms - timing_frame_info.receive_finish_ms);
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RTC_HISTOGRAM_COUNTS_1000(
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"WebRTC.Video.GenericDecoder.DecodeDelay",
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timing_frame_info.decode_finish_ms - timing_frame_info.decode_start_ms);
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_timing->SetTimingFrameInfo(timing_frame_info);
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decodedImage.set_timestamp_us(
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frame_info->render_time ? frame_info->render_time->us() : -1);
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_receiveCallback->FrameToRender(decodedImage, qp, decode_time,
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frame_info->content_type,
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frame_info->frame_type);
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}
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void VCMDecodedFrameCallback::OnDecoderInfoChanged(
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const VideoDecoder::DecoderInfo& decoder_info) {
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_receiveCallback->OnDecoderInfoChanged(decoder_info);
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}
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void VCMDecodedFrameCallback::Map(FrameInfo frameInfo) {
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int dropped_frames = 0;
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{
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MutexLock lock(&lock_);
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int initial_size = frame_infos_.size();
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if (initial_size == kDecoderFrameMemoryLength) {
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frame_infos_.pop_front();
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dropped_frames = 1;
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}
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frame_infos_.push_back(std::move(frameInfo));
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// If no frame is dropped, the new size should be `initial_size` + 1
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}
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if (dropped_frames > 0) {
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_receiveCallback->OnDroppedFrames(dropped_frames);
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}
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}
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void VCMDecodedFrameCallback::ClearTimestampMap() {
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int dropped_frames = 0;
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{
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MutexLock lock(&lock_);
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dropped_frames = frame_infos_.size();
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frame_infos_.clear();
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}
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if (dropped_frames > 0) {
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_receiveCallback->OnDroppedFrames(dropped_frames);
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}
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}
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VCMGenericDecoder::VCMGenericDecoder(VideoDecoder* decoder)
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: _callback(NULL),
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decoder_(decoder),
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_last_keyframe_content_type(VideoContentType::UNSPECIFIED) {
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RTC_DCHECK(decoder_);
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}
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VCMGenericDecoder::~VCMGenericDecoder() {
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decoder_->Release();
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}
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bool VCMGenericDecoder::Configure(const VideoDecoder::Settings& settings) {
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TRACE_EVENT0("webrtc", "VCMGenericDecoder::Configure");
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bool ok = decoder_->Configure(settings);
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decoder_info_ = decoder_->GetDecoderInfo();
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RTC_LOG(LS_INFO) << "Decoder implementation: " << decoder_info_.ToString();
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if (_callback) {
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_callback->OnDecoderInfoChanged(decoder_info_);
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}
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return ok;
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}
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int32_t VCMGenericDecoder::Decode(const EncodedFrame& frame, Timestamp now) {
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return Decode(frame, now, frame.RenderTimeMs());
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}
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int32_t VCMGenericDecoder::Decode(const VCMEncodedFrame& frame, Timestamp now) {
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return Decode(frame, now, frame.RenderTimeMs());
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}
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int32_t VCMGenericDecoder::Decode(const EncodedImage& frame,
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Timestamp now,
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int64_t render_time_ms) {
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TRACE_EVENT("webrtc", "VCMGenericDecoder::Decode",
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perfetto::Flow::ProcessScoped(frame.RtpTimestamp()));
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FrameInfo frame_info;
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frame_info.rtp_timestamp = frame.RtpTimestamp();
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frame_info.decode_start = now;
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frame_info.render_time =
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render_time_ms >= 0
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? absl::make_optional(Timestamp::Millis(render_time_ms))
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: absl::nullopt;
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frame_info.rotation = frame.rotation();
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frame_info.timing = frame.video_timing();
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frame_info.ntp_time_ms = frame.ntp_time_ms_;
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frame_info.packet_infos = frame.PacketInfos();
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// Set correctly only for key frames. Thus, use latest key frame
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// content type. If the corresponding key frame was lost, decode will fail
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// and content type will be ignored.
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if (frame.FrameType() == VideoFrameType::kVideoFrameKey) {
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frame_info.content_type = frame.contentType();
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_last_keyframe_content_type = frame.contentType();
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} else {
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frame_info.content_type = _last_keyframe_content_type;
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}
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frame_info.frame_type = frame.FrameType();
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_callback->Map(std::move(frame_info));
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int32_t ret = decoder_->Decode(frame, render_time_ms);
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VideoDecoder::DecoderInfo decoder_info = decoder_->GetDecoderInfo();
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if (decoder_info != decoder_info_) {
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RTC_LOG(LS_INFO) << "Changed decoder implementation to: "
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<< decoder_info.ToString();
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decoder_info_ = decoder_info;
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if (decoder_info.implementation_name.empty()) {
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decoder_info.implementation_name = "unknown";
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}
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_callback->OnDecoderInfoChanged(std::move(decoder_info));
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}
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if (ret < WEBRTC_VIDEO_CODEC_OK || ret == WEBRTC_VIDEO_CODEC_NO_OUTPUT) {
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_callback->ClearTimestampMap();
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}
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return ret;
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}
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int32_t VCMGenericDecoder::RegisterDecodeCompleteCallback(
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VCMDecodedFrameCallback* callback) {
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_callback = callback;
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int32_t ret = decoder_->RegisterDecodeCompleteCallback(callback);
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if (callback && !decoder_info_.implementation_name.empty()) {
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callback->OnDecoderInfoChanged(decoder_info_);
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}
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return ret;
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}
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} // namespace webrtc
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