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Erik Språngd05edec2019-08-14 10:43:47 +02001/*
2 * Copyright (c) 2019 The WebRTC project authors. All Rights Reserved.
3 *
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
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11#include "modules/pacing/pacing_controller.h"
12
13#include <algorithm>
Mirko Bonadei317a1f02019-09-17 17:06:18 +020014#include <memory>
Erik Språngd05edec2019-08-14 10:43:47 +020015#include <utility>
16#include <vector>
17
Erik Språngd05edec2019-08-14 10:43:47 +020018#include "modules/pacing/bitrate_prober.h"
19#include "modules/pacing/interval_budget.h"
20#include "modules/utility/include/process_thread.h"
21#include "rtc_base/checks.h"
22#include "rtc_base/logging.h"
23#include "rtc_base/time_utils.h"
24#include "system_wrappers/include/clock.h"
25
26namespace webrtc {
27namespace {
28// Time limit in milliseconds between packet bursts.
29constexpr TimeDelta kDefaultMinPacketLimit = TimeDelta::Millis<5>();
30constexpr TimeDelta kCongestedPacketInterval = TimeDelta::Millis<500>();
31constexpr TimeDelta kMaxElapsedTime = TimeDelta::Seconds<2>();
32
33// Upper cap on process interval, in case process has not been called in a long
34// time.
35constexpr TimeDelta kMaxProcessingInterval = TimeDelta::Millis<30>();
36
37bool IsDisabled(const WebRtcKeyValueConfig& field_trials,
38 absl::string_view key) {
39 return field_trials.Lookup(key).find("Disabled") == 0;
40}
41
42bool IsEnabled(const WebRtcKeyValueConfig& field_trials,
43 absl::string_view key) {
44 return field_trials.Lookup(key).find("Enabled") == 0;
45}
46
47int GetPriorityForType(RtpPacketToSend::Type type) {
48 switch (type) {
49 case RtpPacketToSend::Type::kAudio:
50 // Audio is always prioritized over other packet types.
51 return 0;
52 case RtpPacketToSend::Type::kRetransmission:
53 // Send retransmissions before new media.
54 return 1;
55 case RtpPacketToSend::Type::kVideo:
56 // Video has "normal" priority, in the old speak.
57 return 2;
58 case RtpPacketToSend::Type::kForwardErrorCorrection:
59 // Send redundancy concurrently to video. If it is delayed it might have a
60 // lower chance of being useful.
61 return 2;
62 case RtpPacketToSend::Type::kPadding:
63 // Packets that are in themselves likely useless, only sent to keep the
64 // BWE high.
65 return 3;
66 }
67}
68
69} // namespace
70
71const TimeDelta PacingController::kMaxExpectedQueueLength =
72 TimeDelta::Millis<2000>();
73const float PacingController::kDefaultPaceMultiplier = 2.5f;
74const TimeDelta PacingController::kPausedProcessInterval =
75 kCongestedPacketInterval;
76
77PacingController::PacingController(Clock* clock,
78 PacketSender* packet_sender,
79 RtcEventLog* event_log,
80 const WebRtcKeyValueConfig* field_trials)
81 : clock_(clock),
82 packet_sender_(packet_sender),
83 fallback_field_trials_(
Mirko Bonadei317a1f02019-09-17 17:06:18 +020084 !field_trials ? std::make_unique<FieldTrialBasedConfig>() : nullptr),
Erik Språngd05edec2019-08-14 10:43:47 +020085 field_trials_(field_trials ? field_trials : fallback_field_trials_.get()),
86 drain_large_queues_(
87 !IsDisabled(*field_trials_, "WebRTC-Pacer-DrainQueue")),
88 send_padding_if_silent_(
89 IsEnabled(*field_trials_, "WebRTC-Pacer-PadInSilence")),
90 pace_audio_(!IsDisabled(*field_trials_, "WebRTC-Pacer-BlockAudio")),
91 min_packet_limit_(kDefaultMinPacketLimit),
92 last_timestamp_(clock_->CurrentTime()),
93 paused_(false),
94 media_budget_(0),
95 padding_budget_(0),
96 prober_(*field_trials_),
97 probing_send_failure_(false),
98 padding_failure_state_(false),
99 pacing_bitrate_(DataRate::Zero()),
100 time_last_process_(clock->CurrentTime()),
101 last_send_time_(time_last_process_),
102 packet_queue_(time_last_process_, field_trials),
103 packet_counter_(0),
104 congestion_window_size_(DataSize::PlusInfinity()),
105 outstanding_data_(DataSize::Zero()),
106 queue_time_limit(kMaxExpectedQueueLength),
Erik Språngf5815fa2019-08-21 14:27:31 +0200107 account_for_audio_(false) {
Erik Språngd05edec2019-08-14 10:43:47 +0200108 if (!drain_large_queues_) {
109 RTC_LOG(LS_WARNING) << "Pacer queues will not be drained,"
110 "pushback experiment must be enabled.";
111 }
112 FieldTrialParameter<int> min_packet_limit_ms("", min_packet_limit_.ms());
113 ParseFieldTrial({&min_packet_limit_ms},
114 field_trials_->Lookup("WebRTC-Pacer-MinPacketLimitMs"));
115 min_packet_limit_ = TimeDelta::ms(min_packet_limit_ms.Get());
116 UpdateBudgetWithElapsedTime(min_packet_limit_);
117}
118
119PacingController::~PacingController() = default;
120
121void PacingController::CreateProbeCluster(DataRate bitrate, int cluster_id) {
122 prober_.CreateProbeCluster(bitrate.bps(), CurrentTime().ms(), cluster_id);
123}
124
125void PacingController::Pause() {
126 if (!paused_)
127 RTC_LOG(LS_INFO) << "PacedSender paused.";
128 paused_ = true;
129 packet_queue_.SetPauseState(true, CurrentTime());
130}
131
132void PacingController::Resume() {
133 if (paused_)
134 RTC_LOG(LS_INFO) << "PacedSender resumed.";
135 paused_ = false;
136 packet_queue_.SetPauseState(false, CurrentTime());
137}
138
139bool PacingController::IsPaused() const {
140 return paused_;
141}
142
143void PacingController::SetCongestionWindow(DataSize congestion_window_size) {
144 congestion_window_size_ = congestion_window_size;
145}
146
147void PacingController::UpdateOutstandingData(DataSize outstanding_data) {
148 outstanding_data_ = outstanding_data;
149}
150
151bool PacingController::Congested() const {
152 if (congestion_window_size_.IsFinite()) {
153 return outstanding_data_ >= congestion_window_size_;
154 }
155 return false;
156}
157
158Timestamp PacingController::CurrentTime() const {
159 Timestamp time = clock_->CurrentTime();
160 if (time < last_timestamp_) {
161 RTC_LOG(LS_WARNING)
162 << "Non-monotonic clock behavior observed. Previous timestamp: "
163 << last_timestamp_.ms() << ", new timestamp: " << time.ms();
164 RTC_DCHECK_GE(time, last_timestamp_);
165 time = last_timestamp_;
166 }
167 last_timestamp_ = time;
168 return time;
169}
170
171void PacingController::SetProbingEnabled(bool enabled) {
172 RTC_CHECK_EQ(0, packet_counter_);
173 prober_.SetEnabled(enabled);
174}
175
176void PacingController::SetPacingRates(DataRate pacing_rate,
177 DataRate padding_rate) {
178 RTC_DCHECK_GT(pacing_rate, DataRate::Zero());
179 pacing_bitrate_ = pacing_rate;
180 padding_budget_.set_target_rate_kbps(padding_rate.kbps());
181
182 RTC_LOG(LS_VERBOSE) << "bwe:pacer_updated pacing_kbps="
183 << pacing_bitrate_.kbps()
184 << " padding_budget_kbps=" << padding_rate.kbps();
185}
186
Erik Språngd05edec2019-08-14 10:43:47 +0200187void PacingController::EnqueuePacket(std::unique_ptr<RtpPacketToSend> packet) {
188 RTC_DCHECK(pacing_bitrate_ > DataRate::Zero())
189 << "SetPacingRate must be called before InsertPacket.";
190
191 Timestamp now = CurrentTime();
192 prober_.OnIncomingPacket(packet->payload_size());
193
194 if (packet->capture_time_ms() < 0) {
195 packet->set_capture_time_ms(now.ms());
196 }
197
198 RTC_CHECK(packet->packet_type());
199 int priority = GetPriorityForType(*packet->packet_type());
Erik Språngf660e812019-09-01 12:26:44 +0000200 packet_queue_.Push(priority, now, packet_counter_++, std::move(packet));
Erik Språngd05edec2019-08-14 10:43:47 +0200201}
202
203void PacingController::SetAccountForAudioPackets(bool account_for_audio) {
204 account_for_audio_ = account_for_audio;
205}
206
207TimeDelta PacingController::ExpectedQueueTime() const {
208 RTC_DCHECK_GT(pacing_bitrate_, DataRate::Zero());
209 return TimeDelta::ms(
210 (QueueSizeData().bytes() * 8 * rtc::kNumMillisecsPerSec) /
211 pacing_bitrate_.bps());
212}
213
214size_t PacingController::QueueSizePackets() const {
215 return packet_queue_.SizeInPackets();
216}
217
218DataSize PacingController::QueueSizeData() const {
219 return packet_queue_.Size();
220}
221
222absl::optional<Timestamp> PacingController::FirstSentPacketTime() const {
223 return first_sent_packet_time_;
224}
225
226TimeDelta PacingController::OldestPacketWaitTime() const {
227 Timestamp oldest_packet = packet_queue_.OldestEnqueueTime();
228 if (oldest_packet.IsInfinite()) {
229 return TimeDelta::Zero();
230 }
231
232 return CurrentTime() - oldest_packet;
233}
234
235TimeDelta PacingController::UpdateTimeAndGetElapsed(Timestamp now) {
236 TimeDelta elapsed_time = now - time_last_process_;
237 time_last_process_ = now;
238 if (elapsed_time > kMaxElapsedTime) {
239 RTC_LOG(LS_WARNING) << "Elapsed time (" << elapsed_time.ms()
240 << " ms) longer than expected, limiting to "
241 << kMaxElapsedTime.ms();
242 elapsed_time = kMaxElapsedTime;
243 }
244 return elapsed_time;
245}
246
247bool PacingController::ShouldSendKeepalive(Timestamp now) const {
248 if (send_padding_if_silent_ || paused_ || Congested()) {
249 // We send a padding packet every 500 ms to ensure we won't get stuck in
250 // congested state due to no feedback being received.
251 TimeDelta elapsed_since_last_send = now - last_send_time_;
252 if (elapsed_since_last_send >= kCongestedPacketInterval) {
253 // We can not send padding unless a normal packet has first been sent. If
254 // we do, timestamps get messed up.
255 if (packet_counter_ > 0) {
256 return true;
257 }
258 }
259 }
260 return false;
261}
262
263absl::optional<TimeDelta> PacingController::TimeUntilNextProbe() {
264 if (!prober_.IsProbing()) {
265 return absl::nullopt;
266 }
267
268 TimeDelta time_delta =
269 TimeDelta::ms(prober_.TimeUntilNextProbe(CurrentTime().ms()));
270 if (time_delta > TimeDelta::Zero() ||
271 (time_delta == TimeDelta::Zero() && !probing_send_failure_)) {
272 return time_delta;
273 }
274
275 return absl::nullopt;
276}
277
278TimeDelta PacingController::TimeElapsedSinceLastProcess() const {
279 return CurrentTime() - time_last_process_;
280}
281
282void PacingController::ProcessPackets() {
283 Timestamp now = CurrentTime();
284 TimeDelta elapsed_time = UpdateTimeAndGetElapsed(now);
285 if (ShouldSendKeepalive(now)) {
Erik Språngf5815fa2019-08-21 14:27:31 +0200286 DataSize keepalive_data_sent = DataSize::Zero();
287 std::vector<std::unique_ptr<RtpPacketToSend>> keepalive_packets =
288 packet_sender_->GeneratePadding(DataSize::bytes(1));
289 for (auto& packet : keepalive_packets) {
290 keepalive_data_sent +=
291 DataSize::bytes(packet->payload_size() + packet->padding_size());
292 packet_sender_->SendRtpPacket(std::move(packet), PacedPacketInfo());
Erik Språngd05edec2019-08-14 10:43:47 +0200293 }
Erik Språngf5815fa2019-08-21 14:27:31 +0200294 OnPaddingSent(keepalive_data_sent);
Erik Språngd05edec2019-08-14 10:43:47 +0200295 }
296
297 if (paused_)
298 return;
299
300 if (elapsed_time > TimeDelta::Zero()) {
301 DataRate target_rate = pacing_bitrate_;
302 DataSize queue_size_data = packet_queue_.Size();
303 if (queue_size_data > DataSize::Zero()) {
304 // Assuming equal size packets and input/output rate, the average packet
305 // has avg_time_left_ms left to get queue_size_bytes out of the queue, if
306 // time constraint shall be met. Determine bitrate needed for that.
Erik Språngf660e812019-09-01 12:26:44 +0000307 packet_queue_.UpdateQueueTime(CurrentTime());
Erik Språngd05edec2019-08-14 10:43:47 +0200308 if (drain_large_queues_) {
309 TimeDelta avg_time_left =
310 std::max(TimeDelta::ms(1),
311 queue_time_limit - packet_queue_.AverageQueueTime());
312 DataRate min_rate_needed = queue_size_data / avg_time_left;
313 if (min_rate_needed > target_rate) {
314 target_rate = min_rate_needed;
315 RTC_LOG(LS_VERBOSE) << "bwe:large_pacing_queue pacing_rate_kbps="
316 << target_rate.kbps();
317 }
318 }
319 }
320
321 media_budget_.set_target_rate_kbps(target_rate.kbps());
322 UpdateBudgetWithElapsedTime(elapsed_time);
323 }
324
325 bool is_probing = prober_.IsProbing();
326 PacedPacketInfo pacing_info;
327 absl::optional<DataSize> recommended_probe_size;
328 if (is_probing) {
329 pacing_info = prober_.CurrentCluster();
330 recommended_probe_size = DataSize::bytes(prober_.RecommendedMinProbeSize());
331 }
332
333 DataSize data_sent = DataSize::Zero();
334 // The paused state is checked in the loop since it leaves the critical
335 // section allowing the paused state to be changed from other code.
336 while (!paused_) {
Erik Språngf660e812019-09-01 12:26:44 +0000337 auto* packet = GetPendingPacket(pacing_info);
338 if (packet == nullptr) {
Erik Språngd05edec2019-08-14 10:43:47 +0200339 // No packet available to send, check if we should send padding.
Erik Språngf5815fa2019-08-21 14:27:31 +0200340 DataSize padding_to_add = PaddingToAdd(recommended_probe_size, data_sent);
341 if (padding_to_add > DataSize::Zero()) {
342 std::vector<std::unique_ptr<RtpPacketToSend>> padding_packets =
343 packet_sender_->GeneratePadding(padding_to_add);
344 if (padding_packets.empty()) {
345 // No padding packets were generated, quite send loop.
346 break;
Erik Språngd05edec2019-08-14 10:43:47 +0200347 }
Erik Språngf5815fa2019-08-21 14:27:31 +0200348 for (auto& packet : padding_packets) {
349 EnqueuePacket(std::move(packet));
350 }
351 // Continue loop to send the padding that was just added.
352 continue;
Erik Språngd05edec2019-08-14 10:43:47 +0200353 }
354
355 // Can't fetch new packet and no padding to send, exit send loop.
356 break;
357 }
358
Erik Språngf660e812019-09-01 12:26:44 +0000359 std::unique_ptr<RtpPacketToSend> rtp_packet = packet->ReleasePacket();
Erik Språngf5815fa2019-08-21 14:27:31 +0200360 RTC_DCHECK(rtp_packet);
361 packet_sender_->SendRtpPacket(std::move(rtp_packet), pacing_info);
Erik Språngd05edec2019-08-14 10:43:47 +0200362
Erik Språngf660e812019-09-01 12:26:44 +0000363 data_sent += packet->size();
364 // Send succeeded, remove it from the queue.
365 OnPacketSent(packet);
Erik Språngf5815fa2019-08-21 14:27:31 +0200366 if (recommended_probe_size && data_sent > *recommended_probe_size)
Erik Språngd05edec2019-08-14 10:43:47 +0200367 break;
Erik Språngd05edec2019-08-14 10:43:47 +0200368 }
369
370 if (is_probing) {
371 probing_send_failure_ = data_sent == DataSize::Zero();
372 if (!probing_send_failure_) {
373 prober_.ProbeSent(CurrentTime().ms(), data_sent.bytes());
374 }
375 }
376}
377
378DataSize PacingController::PaddingToAdd(
379 absl::optional<DataSize> recommended_probe_size,
380 DataSize data_sent) {
381 if (!packet_queue_.Empty()) {
382 // Actual payload available, no need to add padding.
383 return DataSize::Zero();
384 }
385
386 if (Congested()) {
387 // Don't add padding if congested, even if requested for probing.
388 return DataSize::Zero();
389 }
390
391 if (packet_counter_ == 0) {
392 // We can not send padding unless a normal packet has first been sent. If we
393 // do, timestamps get messed up.
394 return DataSize::Zero();
395 }
396
397 if (recommended_probe_size) {
398 if (*recommended_probe_size > data_sent) {
399 return *recommended_probe_size - data_sent;
400 }
401 return DataSize::Zero();
402 }
403
404 return DataSize::bytes(padding_budget_.bytes_remaining());
405}
406
Erik Språngf660e812019-09-01 12:26:44 +0000407RoundRobinPacketQueue::QueuedPacket* PacingController::GetPendingPacket(
408 const PacedPacketInfo& pacing_info) {
409 if (packet_queue_.Empty()) {
410 return nullptr;
411 }
412
413 // Since we need to release the lock in order to send, we first pop the
414 // element from the priority queue but keep it in storage, so that we can
415 // reinsert it if send fails.
416 RoundRobinPacketQueue::QueuedPacket* packet = packet_queue_.BeginPop();
417 bool audio_packet = packet->type() == RtpPacketToSend::Type::kAudio;
418 bool apply_pacing = !audio_packet || pace_audio_;
419 if (apply_pacing && (Congested() || (media_budget_.bytes_remaining() == 0 &&
420 pacing_info.probe_cluster_id ==
421 PacedPacketInfo::kNotAProbe))) {
422 packet_queue_.CancelPop();
423 return nullptr;
424 }
425 return packet;
426}
427
428void PacingController::OnPacketSent(
429 RoundRobinPacketQueue::QueuedPacket* packet) {
430 Timestamp now = CurrentTime();
431 if (!first_sent_packet_time_) {
432 first_sent_packet_time_ = now;
433 }
434 bool audio_packet = packet->type() == RtpPacketToSend::Type::kAudio;
435 if (!audio_packet || account_for_audio_) {
436 // Update media bytes sent.
437 UpdateBudgetWithSentData(packet->size());
438 last_send_time_ = now;
439 }
440 // Send succeeded, remove it from the queue.
441 packet_queue_.FinalizePop();
442 padding_failure_state_ = false;
443}
444
Erik Språngd05edec2019-08-14 10:43:47 +0200445void PacingController::OnPaddingSent(DataSize data_sent) {
446 if (data_sent > DataSize::Zero()) {
447 UpdateBudgetWithSentData(data_sent);
448 } else {
449 padding_failure_state_ = true;
450 }
451 last_send_time_ = CurrentTime();
452}
453
454void PacingController::UpdateBudgetWithElapsedTime(TimeDelta delta) {
455 delta = std::min(kMaxProcessingInterval, delta);
456 media_budget_.IncreaseBudget(delta.ms());
457 padding_budget_.IncreaseBudget(delta.ms());
458}
459
460void PacingController::UpdateBudgetWithSentData(DataSize size) {
461 outstanding_data_ += size;
462 media_budget_.UseBudget(size.bytes());
463 padding_budget_.UseBudget(size.bytes());
464}
465
466void PacingController::SetQueueTimeLimit(TimeDelta limit) {
467 queue_time_limit = limit;
468}
469
470} // namespace webrtc