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In https://webrtc-review.googlesource.com/c/src/+/1560 we moved WebRTC from src/webrtc to src/ (in order to preserve an healthy git history). This CL takes care of fixing header guards, #include paths, etc... NOPRESUBMIT=true NOTREECHECKS=true NOTRY=true TBR=tommi@webrtc.org Bug: chromium:611808 Change-Id: Iea91618212bee0af16aa3f05071eab8f93706578 Reviewed-on: https://webrtc-review.googlesource.com/1561 Reviewed-by: Mirko Bonadei <mbonadei@webrtc.org> Reviewed-by: Henrik Kjellander <kjellander@webrtc.org> Commit-Queue: Mirko Bonadei <mbonadei@webrtc.org> Cr-Commit-Position: refs/heads/master@{#19846}
243 lines
7.8 KiB
C++
243 lines
7.8 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/media_optimization.h"
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#include <limits>
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#include "modules/video_coding/utility/frame_dropper.h"
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#include "rtc_base/logging.h"
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#include "system_wrappers/include/clock.h"
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namespace webrtc {
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namespace media_optimization {
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const int kMsPerSec = 1000;
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const int kBitsPerByte = 8;
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struct MediaOptimization::EncodedFrameSample {
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EncodedFrameSample(size_t size_bytes,
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uint32_t timestamp,
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int64_t time_complete_ms)
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: size_bytes(size_bytes),
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timestamp(timestamp),
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time_complete_ms(time_complete_ms) {}
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size_t size_bytes;
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uint32_t timestamp;
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int64_t time_complete_ms;
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};
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MediaOptimization::MediaOptimization(Clock* clock)
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: clock_(clock),
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max_bit_rate_(0),
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user_frame_rate_(0),
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frame_dropper_(new FrameDropper),
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video_target_bitrate_(0),
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incoming_frame_rate_(0),
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encoded_frame_samples_(),
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avg_sent_framerate_(0) {
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memset(incoming_frame_times_, -1, sizeof(incoming_frame_times_));
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}
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MediaOptimization::~MediaOptimization(void) {
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}
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void MediaOptimization::Reset() {
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rtc::CritScope lock(&crit_sect_);
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SetEncodingDataInternal(0, 0, 0);
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memset(incoming_frame_times_, -1, sizeof(incoming_frame_times_));
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incoming_frame_rate_ = 0.0;
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frame_dropper_->Reset();
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frame_dropper_->SetRates(0, 0);
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video_target_bitrate_ = 0;
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user_frame_rate_ = 0;
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encoded_frame_samples_.clear();
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}
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void MediaOptimization::SetEncodingData(int32_t max_bit_rate,
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uint32_t target_bitrate,
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uint32_t frame_rate) {
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rtc::CritScope lock(&crit_sect_);
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SetEncodingDataInternal(max_bit_rate, frame_rate, target_bitrate);
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}
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void MediaOptimization::SetEncodingDataInternal(int32_t max_bit_rate,
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uint32_t frame_rate,
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uint32_t target_bitrate) {
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// Everything codec specific should be reset here since this means the codec
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// has changed.
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max_bit_rate_ = max_bit_rate;
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video_target_bitrate_ = target_bitrate;
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float target_bitrate_kbps = static_cast<float>(target_bitrate) / 1000.0f;
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frame_dropper_->Reset();
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frame_dropper_->SetRates(target_bitrate_kbps, static_cast<float>(frame_rate));
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user_frame_rate_ = static_cast<float>(frame_rate);
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}
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uint32_t MediaOptimization::SetTargetRates(uint32_t target_bitrate) {
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rtc::CritScope lock(&crit_sect_);
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video_target_bitrate_ = target_bitrate;
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// Cap target video bitrate to codec maximum.
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if (max_bit_rate_ > 0 && video_target_bitrate_ > max_bit_rate_) {
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video_target_bitrate_ = max_bit_rate_;
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}
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// Update encoding rates following protection settings.
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float target_video_bitrate_kbps =
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static_cast<float>(video_target_bitrate_) / 1000.0f;
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float framerate = incoming_frame_rate_;
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if (framerate == 0.0) {
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// No framerate estimate available, use configured max framerate instead.
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framerate = user_frame_rate_;
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}
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frame_dropper_->SetRates(target_video_bitrate_kbps, framerate);
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return video_target_bitrate_;
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}
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uint32_t MediaOptimization::InputFrameRate() {
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rtc::CritScope lock(&crit_sect_);
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return InputFrameRateInternal();
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}
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uint32_t MediaOptimization::InputFrameRateInternal() {
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ProcessIncomingFrameRate(clock_->TimeInMilliseconds());
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uint32_t framerate = static_cast<uint32_t>(std::min<float>(
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std::numeric_limits<uint32_t>::max(), incoming_frame_rate_ + 0.5f));
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return framerate;
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}
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uint32_t MediaOptimization::SentFrameRate() {
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rtc::CritScope lock(&crit_sect_);
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return SentFrameRateInternal();
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}
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uint32_t MediaOptimization::SentFrameRateInternal() {
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PurgeOldFrameSamples(clock_->TimeInMilliseconds() - kBitrateAverageWinMs);
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UpdateSentFramerate();
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return avg_sent_framerate_;
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}
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uint32_t MediaOptimization::SentBitRate() {
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rtc::CritScope lock(&crit_sect_);
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PurgeOldFrameSamples(clock_->TimeInMilliseconds() - kBitrateAverageWinMs);
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size_t sent_bytes = 0;
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for (auto& frame_sample : encoded_frame_samples_) {
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sent_bytes += frame_sample.size_bytes;
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}
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return sent_bytes * kBitsPerByte * kMsPerSec / kBitrateAverageWinMs;
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}
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int32_t MediaOptimization::UpdateWithEncodedData(
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const EncodedImage& encoded_image) {
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size_t encoded_length = encoded_image._length;
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uint32_t timestamp = encoded_image._timeStamp;
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rtc::CritScope lock(&crit_sect_);
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const int64_t now_ms = clock_->TimeInMilliseconds();
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PurgeOldFrameSamples(now_ms - kBitrateAverageWinMs);
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if (encoded_frame_samples_.size() > 0 &&
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encoded_frame_samples_.back().timestamp == timestamp) {
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// Frames having the same timestamp are generated from the same input
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// frame. We don't want to double count them, but only increment the
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// size_bytes.
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encoded_frame_samples_.back().size_bytes += encoded_length;
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encoded_frame_samples_.back().time_complete_ms = now_ms;
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} else {
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encoded_frame_samples_.push_back(
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EncodedFrameSample(encoded_length, timestamp, now_ms));
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}
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UpdateSentFramerate();
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if (encoded_length > 0) {
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const bool delta_frame = encoded_image._frameType != kVideoFrameKey;
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frame_dropper_->Fill(encoded_length, delta_frame);
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}
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return VCM_OK;
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}
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void MediaOptimization::EnableFrameDropper(bool enable) {
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rtc::CritScope lock(&crit_sect_);
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frame_dropper_->Enable(enable);
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}
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bool MediaOptimization::DropFrame() {
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rtc::CritScope lock(&crit_sect_);
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UpdateIncomingFrameRate();
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// Leak appropriate number of bytes.
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frame_dropper_->Leak((uint32_t)(InputFrameRateInternal() + 0.5f));
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return frame_dropper_->DropFrame();
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}
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void MediaOptimization::UpdateIncomingFrameRate() {
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int64_t now = clock_->TimeInMilliseconds();
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if (incoming_frame_times_[0] == 0) {
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// No shifting if this is the first time.
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} else {
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// Shift all times one step.
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for (int32_t i = (kFrameCountHistorySize - 2); i >= 0; i--) {
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incoming_frame_times_[i + 1] = incoming_frame_times_[i];
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}
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}
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incoming_frame_times_[0] = now;
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ProcessIncomingFrameRate(now);
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}
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void MediaOptimization::PurgeOldFrameSamples(int64_t threshold_ms) {
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while (!encoded_frame_samples_.empty()) {
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if (encoded_frame_samples_.front().time_complete_ms < threshold_ms) {
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encoded_frame_samples_.pop_front();
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} else {
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break;
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}
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}
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}
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void MediaOptimization::UpdateSentFramerate() {
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if (encoded_frame_samples_.size() <= 1) {
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avg_sent_framerate_ = encoded_frame_samples_.size();
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return;
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}
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int denom = encoded_frame_samples_.back().timestamp -
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encoded_frame_samples_.front().timestamp;
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if (denom > 0) {
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avg_sent_framerate_ =
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(90000 * (encoded_frame_samples_.size() - 1) + denom / 2) / denom;
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} else {
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avg_sent_framerate_ = encoded_frame_samples_.size();
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}
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}
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// Allowing VCM to keep track of incoming frame rate.
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void MediaOptimization::ProcessIncomingFrameRate(int64_t now) {
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int32_t num = 0;
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int32_t nr_of_frames = 0;
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for (num = 1; num < (kFrameCountHistorySize - 1); ++num) {
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if (incoming_frame_times_[num] <= 0 ||
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// Don't use data older than 2 s.
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now - incoming_frame_times_[num] > kFrameHistoryWinMs) {
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break;
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} else {
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nr_of_frames++;
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}
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}
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if (num > 1) {
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const int64_t diff =
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incoming_frame_times_[0] - incoming_frame_times_[num - 1];
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incoming_frame_rate_ = 0.0; // No frame rate estimate available.
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if (diff > 0) {
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incoming_frame_rate_ = nr_of_frames * 1000.0f / static_cast<float>(diff);
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}
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}
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}
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} // namespace media_optimization
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} // namespace webrtc
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