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| 1 /* | 1 /* |
| 2 * Copyright (c) 2016 The WebRTC project authors. All Rights Reserved. | 2 * Copyright (c) 2016 The WebRTC project authors. All Rights Reserved. |
| 3 * | 3 * |
| 4 * Use of this source code is governed by a BSD-style license | 4 * Use of this source code is governed by a BSD-style license |
| 5 * that can be found in the LICENSE file in the root of the source | 5 * that can be found in the LICENSE file in the root of the source |
| 6 * tree. An additional intellectual property rights grant can be found | 6 * tree. An additional intellectual property rights grant can be found |
| 7 * in the file PATENTS. All contributing project authors may | 7 * in the file PATENTS. All contributing project authors may |
| 8 * be found in the AUTHORS file in the root of the source tree. | 8 * be found in the AUTHORS file in the root of the source tree. |
| 9 */ | 9 */ |
| 10 | 10 |
| 11 #include "webrtc/modules/congestion_controller/delay_based_bwe.h" | 11 #include "webrtc/modules/congestion_controller/delay_based_bwe.h" |
| 12 | 12 |
| 13 #include <math.h> | 13 #include <math.h> |
| 14 | 14 |
| 15 #include <algorithm> | 15 #include <algorithm> |
| 16 | 16 |
| 17 #include "webrtc/base/checks.h" | 17 #include "webrtc/base/checks.h" |
| 18 #include "webrtc/base/constructormagic.h" | 18 #include "webrtc/base/constructormagic.h" |
| 19 #include "webrtc/base/logging.h" | 19 #include "webrtc/base/logging.h" |
| 20 #include "webrtc/base/thread_annotations.h" | 20 #include "webrtc/base/thread_annotations.h" |
| 21 #include "webrtc/modules/congestion_controller/include/congestion_controller.h" |
| 21 #include "webrtc/modules/pacing/paced_sender.h" | 22 #include "webrtc/modules/pacing/paced_sender.h" |
| 22 #include "webrtc/modules/remote_bitrate_estimator/include/remote_bitrate_estimat
or.h" | 23 #include "webrtc/modules/remote_bitrate_estimator/include/remote_bitrate_estimat
or.h" |
| 23 #include "webrtc/system_wrappers/include/critical_section_wrapper.h" | 24 #include "webrtc/system_wrappers/include/critical_section_wrapper.h" |
| 24 #include "webrtc/system_wrappers/include/metrics.h" | 25 #include "webrtc/system_wrappers/include/metrics.h" |
| 25 #include "webrtc/typedefs.h" | 26 #include "webrtc/typedefs.h" |
| 26 | 27 |
| 27 namespace { | 28 namespace { |
| 28 constexpr int kTimestampGroupLengthMs = 5; | 29 constexpr int kTimestampGroupLengthMs = 5; |
| 29 constexpr int kAbsSendTimeFraction = 18; | 30 constexpr int kAbsSendTimeFraction = 18; |
| 30 constexpr int kAbsSendTimeInterArrivalUpshift = 8; | 31 constexpr int kAbsSendTimeInterArrivalUpshift = 8; |
| 31 constexpr int kInterArrivalShift = | 32 constexpr int kInterArrivalShift = |
| 32 kAbsSendTimeFraction + kAbsSendTimeInterArrivalUpshift; | 33 kAbsSendTimeFraction + kAbsSendTimeInterArrivalUpshift; |
| 33 constexpr double kTimestampToMs = | 34 constexpr double kTimestampToMs = |
| 34 1000.0 / static_cast<double>(1 << kInterArrivalShift); | 35 1000.0 / static_cast<double>(1 << kInterArrivalShift); |
| 35 | 36 |
| 36 // This ssrc is used to fulfill the current API but will be removed | 37 // This ssrc is used to fulfill the current API but will be removed |
| 37 // after the API has been changed. | 38 // after the API has been changed. |
| 38 constexpr uint32_t kFixedSsrc = 0; | 39 constexpr uint32_t kFixedSsrc = 0; |
| 39 } // namespace | 40 } // namespace |
| 40 | 41 |
| 41 namespace webrtc { | 42 namespace webrtc { |
| 42 | 43 |
| 43 DelayBasedBwe::DelayBasedBwe(RemoteBitrateObserver* observer, Clock* clock) | 44 DelayBasedBwe::DelayBasedBwe(CongestionController* controller, Clock* clock) |
| 44 : clock_(clock), | 45 : clock_(clock), |
| 45 observer_(observer), | 46 controller_(controller), |
| 46 inter_arrival_(), | 47 inter_arrival_(), |
| 47 estimator_(), | 48 estimator_(), |
| 48 detector_(OverUseDetectorOptions()), | 49 detector_(OverUseDetectorOptions()), |
| 49 incoming_bitrate_(kBitrateWindowMs, 8000), | 50 incoming_bitrate_(kBitrateWindowMs, 8000), |
| 50 first_packet_time_ms_(-1), | |
| 51 last_update_ms_(-1), | 51 last_update_ms_(-1), |
| 52 last_seen_packet_ms_(-1), | 52 last_seen_packet_ms_(-1), |
| 53 uma_recorded_(false) { | 53 uma_recorded_(false) { |
| 54 RTC_DCHECK(observer_); | 54 RTC_DCHECK(controller_); |
| 55 network_thread_.DetachFromThread(); | 55 network_thread_.DetachFromThread(); |
| 56 } | 56 } |
| 57 | 57 |
| 58 void DelayBasedBwe::IncomingPacketFeedbackVector( | 58 void DelayBasedBwe::IncomingPacketFeedbackVector( |
| 59 const std::vector<PacketInfo>& packet_feedback_vector) { | 59 const std::vector<PacketInfo>& packet_feedback_vector) { |
| 60 RTC_DCHECK(network_thread_.CalledOnValidThread()); | 60 RTC_DCHECK(network_thread_.CalledOnValidThread()); |
| 61 if (!uma_recorded_) { | 61 if (!uma_recorded_) { |
| 62 RTC_LOGGED_HISTOGRAM_ENUMERATION(kBweTypeHistogram, | 62 RTC_LOGGED_HISTOGRAM_ENUMERATION(kBweTypeHistogram, |
| 63 BweNames::kSendSideTransportSeqNum, | 63 BweNames::kSendSideTransportSeqNum, |
| 64 BweNames::kBweNamesMax); | 64 BweNames::kBweNamesMax); |
| 65 uma_recorded_ = true; | 65 uma_recorded_ = true; |
| 66 } | 66 } |
| 67 for (const auto& packet_info : packet_feedback_vector) { | 67 for (const auto& packet_info : packet_feedback_vector) { |
| 68 IncomingPacketInfo(packet_info); | 68 IncomingPacketInfo(packet_info); |
| 69 } | 69 } |
| 70 } | 70 } |
| 71 | 71 |
| 72 void DelayBasedBwe::IncomingPacketInfo(const PacketInfo& info) { | 72 void DelayBasedBwe::IncomingPacketInfo(const PacketInfo& info) { |
| 73 int64_t now_ms = clock_->TimeInMilliseconds(); | 73 int64_t now_ms = clock_->TimeInMilliseconds(); |
| 74 | 74 |
| 75 if (first_packet_time_ms_ == -1) | |
| 76 first_packet_time_ms_ = now_ms; | |
| 77 | |
| 78 incoming_bitrate_.Update(info.payload_size, info.arrival_time_ms); | 75 incoming_bitrate_.Update(info.payload_size, info.arrival_time_ms); |
| 79 bool update_estimate = false; | 76 bool delay_based_bwe_changed = false; |
| 80 uint32_t target_bitrate_bps = 0; | 77 uint32_t target_bitrate_bps = 0; |
| 81 { | 78 { |
| 82 rtc::CritScope lock(&crit_); | 79 rtc::CritScope lock(&crit_); |
| 83 | 80 |
| 84 // Reset if the stream has timed out. | 81 // Reset if the stream has timed out. |
| 85 if (last_seen_packet_ms_ == -1 || | 82 if (last_seen_packet_ms_ == -1 || |
| 86 now_ms - last_seen_packet_ms_ > kStreamTimeOutMs) { | 83 now_ms - last_seen_packet_ms_ > kStreamTimeOutMs) { |
| 87 inter_arrival_.reset(new InterArrival( | 84 inter_arrival_.reset(new InterArrival( |
| 88 (kTimestampGroupLengthMs << kInterArrivalShift) / 1000, | 85 (kTimestampGroupLengthMs << kInterArrivalShift) / 1000, |
| 89 kTimestampToMs, true)); | 86 kTimestampToMs, true)); |
| 90 estimator_.reset(new OveruseEstimator(OverUseDetectorOptions())); | 87 estimator_.reset(new OveruseEstimator(OverUseDetectorOptions())); |
| 91 } | 88 } |
| 92 last_seen_packet_ms_ = now_ms; | 89 last_seen_packet_ms_ = now_ms; |
| 93 | 90 |
| 94 if (info.probe_cluster_id != PacketInfo::kNotAProbe) { | |
| 95 int bps = probe_bitrate_estimator_.HandleProbeAndEstimateBitrate(info); | |
| 96 if (bps > 0) { | |
| 97 remote_rate_.SetEstimate(bps, info.arrival_time_ms); | |
| 98 observer_->OnProbeBitrate(bps); | |
| 99 update_estimate = true; | |
| 100 } | |
| 101 } | |
| 102 | |
| 103 uint32_t send_time_24bits = | 91 uint32_t send_time_24bits = |
| 104 static_cast<uint32_t>(((static_cast<uint64_t>(info.send_time_ms) | 92 static_cast<uint32_t>(((static_cast<uint64_t>(info.send_time_ms) |
| 105 << kAbsSendTimeFraction) + | 93 << kAbsSendTimeFraction) + |
| 106 500) / | 94 500) / |
| 107 1000) & | 95 1000) & |
| 108 0x00FFFFFF; | 96 0x00FFFFFF; |
| 109 // Shift up send time to use the full 32 bits that inter_arrival works with, | 97 // Shift up send time to use the full 32 bits that inter_arrival works with, |
| 110 // so wrapping works properly. | 98 // so wrapping works properly. |
| 111 uint32_t timestamp = send_time_24bits << kAbsSendTimeInterArrivalUpshift; | 99 uint32_t timestamp = send_time_24bits << kAbsSendTimeInterArrivalUpshift; |
| 112 | 100 |
| 113 uint32_t ts_delta = 0; | 101 uint32_t ts_delta = 0; |
| 114 int64_t t_delta = 0; | 102 int64_t t_delta = 0; |
| 115 int size_delta = 0; | 103 int size_delta = 0; |
| 116 if (inter_arrival_->ComputeDeltas(timestamp, info.arrival_time_ms, now_ms, | 104 if (inter_arrival_->ComputeDeltas(timestamp, info.arrival_time_ms, now_ms, |
| 117 info.payload_size, &ts_delta, &t_delta, | 105 info.payload_size, &ts_delta, &t_delta, |
| 118 &size_delta)) { | 106 &size_delta)) { |
| 119 double ts_delta_ms = (1000.0 * ts_delta) / (1 << kInterArrivalShift); | 107 double ts_delta_ms = (1000.0 * ts_delta) / (1 << kInterArrivalShift); |
| 120 estimator_->Update(t_delta, ts_delta_ms, size_delta, detector_.State()); | 108 estimator_->Update(t_delta, ts_delta_ms, size_delta, detector_.State()); |
| 121 detector_.Detect(estimator_->offset(), ts_delta_ms, | 109 detector_.Detect(estimator_->offset(), ts_delta_ms, |
| 122 estimator_->num_of_deltas(), info.arrival_time_ms); | 110 estimator_->num_of_deltas(), info.arrival_time_ms); |
| 123 } | 111 } |
| 124 | 112 |
| 125 if (!update_estimate) { | 113 int probing_bps = 0; |
| 126 // Check if it's time for a periodic update or if we should update because | 114 if (info.probe_cluster_id != PacketInfo::kNotAProbe) { |
| 127 // of an over-use. | 115 probing_bps = |
| 128 if (last_update_ms_ == -1 || | 116 probe_bitrate_estimator_.HandleProbeAndEstimateBitrate(info); |
| 129 now_ms - last_update_ms_ > remote_rate_.GetFeedbackInterval()) { | |
| 130 update_estimate = true; | |
| 131 } else if (detector_.State() == kBwOverusing) { | |
| 132 rtc::Optional<uint32_t> incoming_rate = | |
| 133 incoming_bitrate_.Rate(info.arrival_time_ms); | |
| 134 if (incoming_rate && | |
| 135 remote_rate_.TimeToReduceFurther(now_ms, *incoming_rate)) { | |
| 136 update_estimate = true; | |
| 137 } | |
| 138 } | |
| 139 } | 117 } |
| 140 | 118 |
| 141 if (update_estimate) { | 119 // Currently overusing the bandwidth. |
| 142 // The first overuse should immediately trigger a new estimate. | 120 if (detector_.State() == kBwOverusing) { |
| 143 // We also have to update the estimate immediately if we are overusing | 121 rtc::Optional<uint32_t> incoming_rate = |
| 144 // and the target bitrate is too high compared to what we are receiving. | 122 incoming_bitrate_.Rate(info.arrival_time_ms); |
| 145 const RateControlInput input(detector_.State(), | 123 if (incoming_rate && |
| 146 incoming_bitrate_.Rate(info.arrival_time_ms), | 124 remote_rate_.TimeToReduceFurther(now_ms, *incoming_rate)) { |
| 147 estimator_->var_noise()); | 125 delay_based_bwe_changed = |
| 148 remote_rate_.Update(&input, now_ms); | 126 UpdateEstimate(info.arrival_time_ms, now_ms, &target_bitrate_bps); |
| 149 target_bitrate_bps = remote_rate_.UpdateBandwidthEstimate(now_ms); | 127 } |
| 150 update_estimate = remote_rate_.ValidEstimate(); | 128 } else if (probing_bps > 0) { |
| 129 // No overuse, but probing measured a bitrate. |
| 130 remote_rate_.SetEstimate(probing_bps, info.arrival_time_ms); |
| 131 controller_->OnProbeBitrate(probing_bps); |
| 132 delay_based_bwe_changed = |
| 133 UpdateEstimate(info.arrival_time_ms, now_ms, &target_bitrate_bps); |
| 134 } else if (last_update_ms_ == -1 || |
| 135 now_ms - last_update_ms_ > remote_rate_.GetFeedbackInterval()) { |
| 136 // Been a while since we updated estimate. |
| 137 delay_based_bwe_changed = |
| 138 UpdateEstimate(info.arrival_time_ms, now_ms, &target_bitrate_bps); |
| 151 } | 139 } |
| 152 } | 140 } |
| 153 | 141 |
| 154 if (update_estimate) { | 142 if (delay_based_bwe_changed) { |
| 155 last_update_ms_ = now_ms; | 143 last_update_ms_ = now_ms; |
| 156 observer_->OnReceiveBitrateChanged({kFixedSsrc}, target_bitrate_bps); | 144 controller_->OnDelayBasedBweChanged(target_bitrate_bps); |
| 157 } | 145 } |
| 158 } | 146 } |
| 159 | 147 |
| 148 bool DelayBasedBwe::UpdateEstimate(int64_t arrival_time_ms, |
| 149 int64_t now_ms, |
| 150 uint32_t* target_bitrate_bps) { |
| 151 rtc::CritScope lock(&crit_); |
| 152 // The first overuse should immediately trigger a new estimate. |
| 153 // We also have to update the estimate immediately if we are overusing |
| 154 // and the target bitrate is too high compared to what we are receiving. |
| 155 const RateControlInput input(detector_.State(), |
| 156 incoming_bitrate_.Rate(arrival_time_ms), |
| 157 estimator_->var_noise()); |
| 158 remote_rate_.Update(&input, now_ms); |
| 159 *target_bitrate_bps = remote_rate_.UpdateBandwidthEstimate(now_ms); |
| 160 return remote_rate_.ValidEstimate(); |
| 161 } |
| 162 |
| 160 void DelayBasedBwe::Process() {} | 163 void DelayBasedBwe::Process() {} |
| 161 | 164 |
| 162 int64_t DelayBasedBwe::TimeUntilNextProcess() { | 165 int64_t DelayBasedBwe::TimeUntilNextProcess() { |
| 163 const int64_t kDisabledModuleTime = 1000; | 166 const int64_t kDisabledModuleTime = 1000; |
| 164 return kDisabledModuleTime; | 167 return kDisabledModuleTime; |
| 165 } | 168 } |
| 166 | 169 |
| 167 void DelayBasedBwe::OnRttUpdate(int64_t avg_rtt_ms, int64_t max_rtt_ms) { | 170 void DelayBasedBwe::OnRttUpdate(int64_t avg_rtt_ms, int64_t max_rtt_ms) { |
| 168 rtc::CritScope lock(&crit_); | 171 rtc::CritScope lock(&crit_); |
| 169 remote_rate_.SetRtt(avg_rtt_ms); | 172 remote_rate_.SetRtt(avg_rtt_ms); |
| (...skipping 18 matching lines...) Expand all Loading... |
| 188 return true; | 191 return true; |
| 189 } | 192 } |
| 190 | 193 |
| 191 void DelayBasedBwe::SetMinBitrate(int min_bitrate_bps) { | 194 void DelayBasedBwe::SetMinBitrate(int min_bitrate_bps) { |
| 192 // Called from both the configuration thread and the network thread. Shouldn't | 195 // Called from both the configuration thread and the network thread. Shouldn't |
| 193 // be called from the network thread in the future. | 196 // be called from the network thread in the future. |
| 194 rtc::CritScope lock(&crit_); | 197 rtc::CritScope lock(&crit_); |
| 195 remote_rate_.SetMinBitrate(min_bitrate_bps); | 198 remote_rate_.SetMinBitrate(min_bitrate_bps); |
| 196 } | 199 } |
| 197 } // namespace webrtc | 200 } // namespace webrtc |
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