114 lines
4.1 KiB
C++
114 lines
4.1 KiB
C++
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/*
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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 "webrtc/modules/congestion_controller/probe_controller.h"
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#include <initializer_list>
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#include "webrtc/base/logging.h"
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namespace webrtc {
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namespace {
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// Number of deltas between probes per cluster. On the very first cluster,
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// we will need kProbeDeltasPerCluster + 1 probes, but on a cluster following
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// another, we need kProbeDeltasPerCluster probes.
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constexpr int kProbeDeltasPerCluster = 5;
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// Maximum waiting time from the time of initiating probing to getting
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// the measured results back.
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constexpr int64_t kMaxWaitingTimeForProbingResultMs = 1000;
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// Value of |min_bitrate_to_probe_further_bps_| that indicates
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// further probing is disabled.
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constexpr int kExponentialProbingDisabled = 0;
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} // namespace
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ProbeController::ProbeController(PacedSender* pacer, Clock* clock)
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: pacer_(pacer),
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clock_(clock),
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state_(State::kInit),
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min_bitrate_to_probe_further_bps_(kExponentialProbingDisabled),
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time_last_probing_initiated_ms_(0),
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estimated_bitrate_bps_(0),
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max_bitrate_bps_(0) {}
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void ProbeController::SetBitrates(int min_bitrate_bps,
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int start_bitrate_bps,
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int max_bitrate_bps) {
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rtc::CritScope cs(&critsect_);
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if (state_ == State::kInit) {
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// When probing at 1.8 Mbps ( 6x 300), this represents a threshold of
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// 1.2 Mbps to continue probing.
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InitiateProbing({3 * start_bitrate_bps, 6 * start_bitrate_bps},
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4 * start_bitrate_bps);
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}
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// Only do probing if:
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// - we are mid-call, which we consider to be if
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// |estimated_bitrate_bps_| != 0, and
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// - the current bitrate is lower than the new |max_bitrate_bps|, and
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// - we actually want to increase the |max_bitrate_bps_|.
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if (estimated_bitrate_bps_ != 0 && estimated_bitrate_bps_ < max_bitrate_bps &&
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max_bitrate_bps > max_bitrate_bps_) {
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InitiateProbing({max_bitrate_bps}, kExponentialProbingDisabled);
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}
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max_bitrate_bps_ = max_bitrate_bps;
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}
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void ProbeController::SetEstimatedBitrate(int bitrate_bps) {
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rtc::CritScope cs(&critsect_);
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if (state_ == State::kWaitingForProbingResult) {
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if ((clock_->TimeInMilliseconds() - time_last_probing_initiated_ms_) >
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kMaxWaitingTimeForProbingResultMs) {
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LOG(LS_INFO) << "kWaitingForProbingResult: timeout";
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state_ = State::kProbingComplete;
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min_bitrate_to_probe_further_bps_ = kExponentialProbingDisabled;
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} else {
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// Continue probing if probing results indicate channel has greater
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// capacity.
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LOG(LS_INFO) << "Measured bitrate: " << bitrate_bps
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<< " Minimum to probe further: "
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<< min_bitrate_to_probe_further_bps_;
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if (min_bitrate_to_probe_further_bps_ != kExponentialProbingDisabled &&
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bitrate_bps > min_bitrate_to_probe_further_bps_) {
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// Double the probing bitrate and expect a minimum of 25% gain to
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// continue probing.
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InitiateProbing({2 * bitrate_bps}, 1.25 * bitrate_bps);
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}
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}
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}
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estimated_bitrate_bps_ = bitrate_bps;
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}
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void ProbeController::InitiateProbing(
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std::initializer_list<int> bitrates_to_probe,
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int min_bitrate_to_probe_further_bps) {
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bool first_cluster = true;
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for (int bitrate : bitrates_to_probe) {
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if (first_cluster) {
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pacer_->CreateProbeCluster(bitrate, kProbeDeltasPerCluster + 1);
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first_cluster = false;
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} else {
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pacer_->CreateProbeCluster(bitrate, kProbeDeltasPerCluster);
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}
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}
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min_bitrate_to_probe_further_bps_ = min_bitrate_to_probe_further_bps;
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time_last_probing_initiated_ms_ = clock_->TimeInMilliseconds();
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if (min_bitrate_to_probe_further_bps == kExponentialProbingDisabled)
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state_ = State::kProbingComplete;
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else
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state_ = State::kWaitingForProbingResult;
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}
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} // namespace webrtc
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