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1 /* | 1 /* |
2 * Copyright (c) 2012 The WebRTC project authors. All Rights Reserved. | 2 * Copyright (c) 2012 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 |
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243 } // namespace paced_sender | 243 } // namespace paced_sender |
244 | 244 |
245 const int64_t PacedSender::kMaxQueueLengthMs = 2000; | 245 const int64_t PacedSender::kMaxQueueLengthMs = 2000; |
246 const float PacedSender::kDefaultPaceMultiplier = 2.5f; | 246 const float PacedSender::kDefaultPaceMultiplier = 2.5f; |
247 | 247 |
248 PacedSender::PacedSender(Clock* clock, PacketSender* packet_sender) | 248 PacedSender::PacedSender(Clock* clock, PacketSender* packet_sender) |
249 : clock_(clock), | 249 : clock_(clock), |
250 packet_sender_(packet_sender), | 250 packet_sender_(packet_sender), |
251 critsect_(CriticalSectionWrapper::CreateCriticalSection()), | 251 critsect_(CriticalSectionWrapper::CreateCriticalSection()), |
252 paused_(false), | 252 paused_(false), |
253 probing_enabled_(true), | |
254 media_budget_(new paced_sender::IntervalBudget(0)), | 253 media_budget_(new paced_sender::IntervalBudget(0)), |
255 padding_budget_(new paced_sender::IntervalBudget(0)), | 254 padding_budget_(new paced_sender::IntervalBudget(0)), |
256 prober_(new BitrateProber()), | 255 prober_(new BitrateProber()), |
257 estimated_bitrate_bps_(0), | 256 estimated_bitrate_bps_(0), |
258 min_send_bitrate_kbps_(0u), | 257 min_send_bitrate_kbps_(0u), |
259 max_padding_bitrate_kbps_(0u), | 258 max_padding_bitrate_kbps_(0u), |
260 pacing_bitrate_kbps_(0), | 259 pacing_bitrate_kbps_(0), |
261 time_last_update_us_(clock->TimeInMicroseconds()), | 260 time_last_update_us_(clock->TimeInMicroseconds()), |
262 packets_(new paced_sender::PacketQueue(clock)), | 261 packets_(new paced_sender::PacketQueue(clock)), |
263 packet_counter_(0) { | 262 packet_counter_(0) { |
264 UpdateBytesPerInterval(kMinPacketLimitMs); | 263 UpdateBytesPerInterval(kMinPacketLimitMs); |
265 } | 264 } |
266 | 265 |
267 PacedSender::~PacedSender() {} | 266 PacedSender::~PacedSender() {} |
268 | 267 |
269 void PacedSender::Pause() { | 268 void PacedSender::Pause() { |
270 CriticalSectionScoped cs(critsect_.get()); | 269 CriticalSectionScoped cs(critsect_.get()); |
271 paused_ = true; | 270 paused_ = true; |
272 } | 271 } |
273 | 272 |
274 void PacedSender::Resume() { | 273 void PacedSender::Resume() { |
275 CriticalSectionScoped cs(critsect_.get()); | 274 CriticalSectionScoped cs(critsect_.get()); |
276 paused_ = false; | 275 paused_ = false; |
277 } | 276 } |
278 | 277 |
279 void PacedSender::SetProbingEnabled(bool enabled) { | 278 void PacedSender::SetProbingEnabled(bool enabled) { |
280 RTC_CHECK_EQ(0u, packet_counter_); | 279 RTC_CHECK_EQ(0u, packet_counter_); |
281 probing_enabled_ = enabled; | 280 CriticalSectionScoped cs(critsect_.get()); |
281 prober_->SetEnabled(enabled); | |
282 } | 282 } |
283 | 283 |
284 void PacedSender::SetEstimatedBitrate(uint32_t bitrate_bps) { | 284 void PacedSender::SetEstimatedBitrate(uint32_t bitrate_bps) { |
285 CriticalSectionScoped cs(critsect_.get()); | 285 CriticalSectionScoped cs(critsect_.get()); |
286 estimated_bitrate_bps_ = bitrate_bps; | 286 estimated_bitrate_bps_ = bitrate_bps; |
287 padding_budget_->set_target_rate_kbps( | 287 padding_budget_->set_target_rate_kbps( |
288 std::min(estimated_bitrate_bps_ / 1000, max_padding_bitrate_kbps_)); | 288 std::min(estimated_bitrate_bps_ / 1000, max_padding_bitrate_kbps_)); |
289 pacing_bitrate_kbps_ = | 289 pacing_bitrate_kbps_ = |
290 std::max(min_send_bitrate_kbps_, estimated_bitrate_bps_ / 1000) * | 290 std::max(min_send_bitrate_kbps_, estimated_bitrate_bps_ / 1000) * |
291 kDefaultPaceMultiplier; | 291 kDefaultPaceMultiplier; |
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306 void PacedSender::InsertPacket(RtpPacketSender::Priority priority, | 306 void PacedSender::InsertPacket(RtpPacketSender::Priority priority, |
307 uint32_t ssrc, | 307 uint32_t ssrc, |
308 uint16_t sequence_number, | 308 uint16_t sequence_number, |
309 int64_t capture_time_ms, | 309 int64_t capture_time_ms, |
310 size_t bytes, | 310 size_t bytes, |
311 bool retransmission) { | 311 bool retransmission) { |
312 CriticalSectionScoped cs(critsect_.get()); | 312 CriticalSectionScoped cs(critsect_.get()); |
313 RTC_DCHECK(estimated_bitrate_bps_ > 0) | 313 RTC_DCHECK(estimated_bitrate_bps_ > 0) |
314 << "SetEstimatedBitrate must be called before InsertPacket."; | 314 << "SetEstimatedBitrate must be called before InsertPacket."; |
315 | 315 |
316 if (probing_enabled_ && !prober_->IsProbing()) | |
317 prober_->SetEnabled(true); | |
318 int64_t now_ms = clock_->TimeInMilliseconds(); | 316 int64_t now_ms = clock_->TimeInMilliseconds(); |
319 prober_->OnIncomingPacket(estimated_bitrate_bps_, bytes, now_ms); | 317 prober_->OnIncomingPacket(estimated_bitrate_bps_, bytes, now_ms); |
320 | 318 |
321 if (capture_time_ms < 0) | 319 if (capture_time_ms < 0) |
322 capture_time_ms = now_ms; | 320 capture_time_ms = now_ms; |
323 | 321 |
324 packets_->Push(paced_sender::Packet(priority, ssrc, sequence_number, | 322 packets_->Push(paced_sender::Packet(priority, ssrc, sequence_number, |
325 capture_time_ms, now_ms, bytes, | 323 capture_time_ms, now_ms, bytes, |
326 retransmission, packet_counter_++)); | 324 retransmission, packet_counter_++)); |
327 } | 325 } |
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365 int64_t elapsed_time_ms = (elapsed_time_us + 500) / 1000; | 363 int64_t elapsed_time_ms = (elapsed_time_us + 500) / 1000; |
366 return std::max<int64_t>(kMinPacketLimitMs - elapsed_time_ms, 0); | 364 return std::max<int64_t>(kMinPacketLimitMs - elapsed_time_ms, 0); |
367 } | 365 } |
368 | 366 |
369 void PacedSender::Process() { | 367 void PacedSender::Process() { |
370 int64_t now_us = clock_->TimeInMicroseconds(); | 368 int64_t now_us = clock_->TimeInMicroseconds(); |
371 CriticalSectionScoped cs(critsect_.get()); | 369 CriticalSectionScoped cs(critsect_.get()); |
372 int64_t elapsed_time_ms = (now_us - time_last_update_us_ + 500) / 1000; | 370 int64_t elapsed_time_ms = (now_us - time_last_update_us_ + 500) / 1000; |
373 time_last_update_us_ = now_us; | 371 time_last_update_us_ = now_us; |
374 int target_bitrate_kbps = pacing_bitrate_kbps_; | 372 int target_bitrate_kbps = pacing_bitrate_kbps_; |
375 // TODO(holmer): Remove the !paused_ check when issue 5307 has been fixed. | 373 if (paused_) |
376 if (!paused_ && elapsed_time_ms > 0) { | 374 return; |
375 if (elapsed_time_ms > 0) { | |
377 size_t queue_size_bytes = packets_->SizeInBytes(); | 376 size_t queue_size_bytes = packets_->SizeInBytes(); |
378 if (queue_size_bytes > 0) { | 377 if (queue_size_bytes > 0) { |
379 // Assuming equal size packets and input/output rate, the average packet | 378 // Assuming equal size packets and input/output rate, the average packet |
380 // has avg_time_left_ms left to get queue_size_bytes out of the queue, if | 379 // has avg_time_left_ms left to get queue_size_bytes out of the queue, if |
381 // time constraint shall be met. Determine bitrate needed for that. | 380 // time constraint shall be met. Determine bitrate needed for that. |
382 packets_->UpdateQueueTime(clock_->TimeInMilliseconds()); | 381 packets_->UpdateQueueTime(clock_->TimeInMilliseconds()); |
383 int64_t avg_time_left_ms = std::max<int64_t>( | 382 int64_t avg_time_left_ms = std::max<int64_t>( |
384 1, kMaxQueueLengthMs - packets_->AverageQueueTimeMs()); | 383 1, kMaxQueueLengthMs - packets_->AverageQueueTimeMs()); |
385 int min_bitrate_needed_kbps = | 384 int min_bitrate_needed_kbps = |
386 static_cast<int>(queue_size_bytes * 8 / avg_time_left_ms); | 385 static_cast<int>(queue_size_bytes * 8 / avg_time_left_ms); |
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411 packets_->FinalizePop(packet); | 410 packets_->FinalizePop(packet); |
412 if (is_probing) | 411 if (is_probing) |
413 return; | 412 return; |
414 } else { | 413 } else { |
415 // Send failed, put it back into the queue. | 414 // Send failed, put it back into the queue. |
416 packets_->CancelPop(packet); | 415 packets_->CancelPop(packet); |
417 return; | 416 return; |
418 } | 417 } |
419 } | 418 } |
420 | 419 |
421 // TODO(holmer): Remove the paused_ check when issue 5307 has been fixed. | 420 if (!packets_->Empty()) |
422 if (paused_ || !packets_->Empty()) | |
423 return; | 421 return; |
424 | 422 |
425 // We can not send padding unless a normal packet has first been sent. If we | 423 // We can not send padding unless a normal packet has first been sent. If we |
426 // do, timestamps get messed up. | 424 // do, timestamps get messed up. |
427 if (packet_counter_ > 0) { | 425 if (packet_counter_ > 0) { |
428 size_t padding_needed = is_probing ? prober_->RecommendedPacketSize() | 426 size_t padding_needed = is_probing ? prober_->RecommendedPacketSize() |
429 : padding_budget_->bytes_remaining(); | 427 : padding_budget_->bytes_remaining(); |
430 | 428 |
431 if (padding_needed > 0) | 429 if (padding_needed > 0) |
432 SendPadding(padding_needed, probe_cluster_id); | 430 SendPadding(padding_needed, probe_cluster_id); |
433 } | 431 } |
434 } | 432 } |
435 | 433 |
436 bool PacedSender::SendPacket(const paced_sender::Packet& packet, | 434 bool PacedSender::SendPacket(const paced_sender::Packet& packet, |
437 int probe_cluster_id) { | 435 int probe_cluster_id) { |
438 // TODO(holmer): Because of this bug issue 5307 we have to send audio | 436 if (paused_) |
439 // packets even when the pacer is paused. Here we assume audio packets are | |
440 // always high priority and that they are the only high priority packets. | |
441 if (paused_ && packet.priority != kHighPriority) | |
stefan-webrtc
2016/07/29 07:12:07
If there're still bugs in the network layer code w
Irfan
2016/08/01 18:29:47
ok I will pull the paused changes into a seperate
| |
442 return false; | 437 return false; |
443 critsect_->Leave(); | 438 critsect_->Leave(); |
444 const bool success = packet_sender_->TimeToSendPacket( | 439 const bool success = packet_sender_->TimeToSendPacket( |
445 packet.ssrc, packet.sequence_number, packet.capture_time_ms, | 440 packet.ssrc, packet.sequence_number, packet.capture_time_ms, |
446 packet.retransmission, probe_cluster_id); | 441 packet.retransmission, probe_cluster_id); |
447 critsect_->Enter(); | 442 critsect_->Enter(); |
448 | 443 |
449 if (success) { | 444 if (success) { |
450 prober_->PacketSent(clock_->TimeInMilliseconds(), packet.bytes); | 445 prober_->PacketSent(clock_->TimeInMilliseconds(), packet.bytes); |
451 // TODO(holmer): High priority packets should only be accounted for if we | 446 // TODO(holmer): High priority packets should only be accounted for if we |
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471 media_budget_->UseBudget(bytes_sent); | 466 media_budget_->UseBudget(bytes_sent); |
472 padding_budget_->UseBudget(bytes_sent); | 467 padding_budget_->UseBudget(bytes_sent); |
473 } | 468 } |
474 } | 469 } |
475 | 470 |
476 void PacedSender::UpdateBytesPerInterval(int64_t delta_time_ms) { | 471 void PacedSender::UpdateBytesPerInterval(int64_t delta_time_ms) { |
477 media_budget_->IncreaseBudget(delta_time_ms); | 472 media_budget_->IncreaseBudget(delta_time_ms); |
478 padding_budget_->IncreaseBudget(delta_time_ms); | 473 padding_budget_->IncreaseBudget(delta_time_ms); |
479 } | 474 } |
480 } // namespace webrtc | 475 } // namespace webrtc |
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