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1 // Copyright 2014 The Chromium Authors. All rights reserved. | 1 // Copyright 2014 The Chromium Authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 #include "media/cast/sender/frame_sender.h" | 5 #include "media/cast/sender/frame_sender.h" |
6 | 6 |
7 #include "base/debug/trace_event.h" | 7 #include "base/debug/trace_event.h" |
8 | 8 |
9 namespace media { | 9 namespace media { |
10 namespace cast { | 10 namespace cast { |
11 namespace { | 11 namespace { |
12 | 12 |
13 const int kMinSchedulingDelayMs = 1; | 13 const int kMinSchedulingDelayMs = 1; |
14 const int kNumAggressiveReportsSentAtStart = 100; | 14 const int kNumAggressiveReportsSentAtStart = 100; |
15 | 15 |
| 16 // The additional number of frames that can be in-flight when input exceeds the |
| 17 // maximum frame rate. |
| 18 const int kMaxFrameBurst = 5; |
| 19 |
16 } // namespace | 20 } // namespace |
17 | 21 |
| 22 // Convenience macro used in logging statements throughout this file. |
| 23 #define SENDER_SSRC (is_audio_ ? "AUDIO[" : "VIDEO[") << ssrc_ << "] " |
| 24 |
18 FrameSender::FrameSender(scoped_refptr<CastEnvironment> cast_environment, | 25 FrameSender::FrameSender(scoped_refptr<CastEnvironment> cast_environment, |
19 bool is_audio, | 26 bool is_audio, |
20 CastTransportSender* const transport_sender, | 27 CastTransportSender* const transport_sender, |
21 base::TimeDelta rtcp_interval, | 28 base::TimeDelta rtcp_interval, |
22 int rtp_timebase, | 29 int rtp_timebase, |
23 uint32 ssrc, | 30 uint32 ssrc, |
24 double max_frame_rate, | 31 double max_frame_rate, |
25 base::TimeDelta min_playout_delay, | 32 base::TimeDelta min_playout_delay, |
26 base::TimeDelta max_playout_delay, | 33 base::TimeDelta max_playout_delay, |
27 CongestionControl* congestion_control) | 34 CongestionControl* congestion_control) |
28 : cast_environment_(cast_environment), | 35 : cast_environment_(cast_environment), |
29 transport_sender_(transport_sender), | 36 transport_sender_(transport_sender), |
30 ssrc_(ssrc), | 37 ssrc_(ssrc), |
31 rtcp_interval_(rtcp_interval), | 38 rtcp_interval_(rtcp_interval), |
32 min_playout_delay_(min_playout_delay == base::TimeDelta() ? | 39 min_playout_delay_(min_playout_delay == base::TimeDelta() ? |
33 max_playout_delay : min_playout_delay), | 40 max_playout_delay : min_playout_delay), |
34 max_playout_delay_(max_playout_delay), | 41 max_playout_delay_(max_playout_delay), |
35 max_frame_rate_(max_frame_rate), | 42 max_frame_rate_(max_frame_rate), |
36 num_aggressive_rtcp_reports_sent_(0), | 43 num_aggressive_rtcp_reports_sent_(0), |
37 last_sent_frame_id_(0), | 44 last_sent_frame_id_(0), |
38 latest_acked_frame_id_(0), | 45 latest_acked_frame_id_(0), |
39 duplicate_ack_counter_(0), | 46 duplicate_ack_counter_(0), |
| 47 congestion_control_(congestion_control), |
40 rtp_timebase_(rtp_timebase), | 48 rtp_timebase_(rtp_timebase), |
41 congestion_control_(congestion_control), | |
42 is_audio_(is_audio), | 49 is_audio_(is_audio), |
43 weak_factory_(this) { | 50 weak_factory_(this) { |
44 DCHECK(transport_sender_); | 51 DCHECK(transport_sender_); |
45 DCHECK_GT(rtp_timebase_, 0); | 52 DCHECK_GT(rtp_timebase_, 0); |
46 DCHECK(congestion_control_); | 53 DCHECK(congestion_control_); |
47 SetTargetPlayoutDelay(min_playout_delay_); | 54 SetTargetPlayoutDelay(min_playout_delay_); |
48 send_target_playout_delay_ = false; | 55 send_target_playout_delay_ = false; |
49 memset(frame_rtp_timestamps_, 0, sizeof(frame_rtp_timestamps_)); | 56 memset(frame_rtp_timestamps_, 0, sizeof(frame_rtp_timestamps_)); |
50 } | 57 } |
51 | 58 |
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114 | 121 |
115 void FrameSender::ResendCheck() { | 122 void FrameSender::ResendCheck() { |
116 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); | 123 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); |
117 DCHECK(!last_send_time_.is_null()); | 124 DCHECK(!last_send_time_.is_null()); |
118 const base::TimeDelta time_since_last_send = | 125 const base::TimeDelta time_since_last_send = |
119 cast_environment_->Clock()->NowTicks() - last_send_time_; | 126 cast_environment_->Clock()->NowTicks() - last_send_time_; |
120 if (time_since_last_send > target_playout_delay_) { | 127 if (time_since_last_send > target_playout_delay_) { |
121 if (latest_acked_frame_id_ == last_sent_frame_id_) { | 128 if (latest_acked_frame_id_ == last_sent_frame_id_) { |
122 // Last frame acked, no point in doing anything | 129 // Last frame acked, no point in doing anything |
123 } else { | 130 } else { |
124 VLOG(1) << "ACK timeout; last acked frame: " << latest_acked_frame_id_; | 131 VLOG(1) << SENDER_SSRC << "ACK timeout; last acked frame: " |
| 132 << latest_acked_frame_id_; |
125 ResendForKickstart(); | 133 ResendForKickstart(); |
126 } | 134 } |
127 } | 135 } |
128 ScheduleNextResendCheck(); | 136 ScheduleNextResendCheck(); |
129 } | 137 } |
130 | 138 |
131 void FrameSender::ScheduleNextResendCheck() { | 139 void FrameSender::ScheduleNextResendCheck() { |
132 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); | 140 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); |
133 DCHECK(!last_send_time_.is_null()); | 141 DCHECK(!last_send_time_.is_null()); |
134 base::TimeDelta time_to_next = | 142 base::TimeDelta time_to_next = |
135 last_send_time_ - cast_environment_->Clock()->NowTicks() + | 143 last_send_time_ - cast_environment_->Clock()->NowTicks() + |
136 target_playout_delay_; | 144 target_playout_delay_; |
137 time_to_next = std::max( | 145 time_to_next = std::max( |
138 time_to_next, base::TimeDelta::FromMilliseconds(kMinSchedulingDelayMs)); | 146 time_to_next, base::TimeDelta::FromMilliseconds(kMinSchedulingDelayMs)); |
139 cast_environment_->PostDelayedTask( | 147 cast_environment_->PostDelayedTask( |
140 CastEnvironment::MAIN, | 148 CastEnvironment::MAIN, |
141 FROM_HERE, | 149 FROM_HERE, |
142 base::Bind(&FrameSender::ResendCheck, weak_factory_.GetWeakPtr()), | 150 base::Bind(&FrameSender::ResendCheck, weak_factory_.GetWeakPtr()), |
143 time_to_next); | 151 time_to_next); |
144 } | 152 } |
145 | 153 |
146 void FrameSender::ResendForKickstart() { | 154 void FrameSender::ResendForKickstart() { |
147 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); | 155 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); |
148 DCHECK(!last_send_time_.is_null()); | 156 DCHECK(!last_send_time_.is_null()); |
149 VLOG(1) << "Resending last packet of frame " << last_sent_frame_id_ | 157 VLOG(1) << SENDER_SSRC << "Resending last packet of frame " |
150 << " to kick-start."; | 158 << last_sent_frame_id_ << " to kick-start."; |
151 last_send_time_ = cast_environment_->Clock()->NowTicks(); | 159 last_send_time_ = cast_environment_->Clock()->NowTicks(); |
152 transport_sender_->ResendFrameForKickstart(ssrc_, last_sent_frame_id_); | 160 transport_sender_->ResendFrameForKickstart(ssrc_, last_sent_frame_id_); |
153 } | 161 } |
154 | 162 |
155 void FrameSender::RecordLatestFrameTimestamps(uint32 frame_id, | 163 void FrameSender::RecordLatestFrameTimestamps(uint32 frame_id, |
156 base::TimeTicks reference_time, | 164 base::TimeTicks reference_time, |
157 RtpTimestamp rtp_timestamp) { | 165 RtpTimestamp rtp_timestamp) { |
158 DCHECK(!reference_time.is_null()); | 166 DCHECK(!reference_time.is_null()); |
159 frame_reference_times_[frame_id % arraysize(frame_reference_times_)] = | 167 frame_reference_times_[frame_id % arraysize(frame_reference_times_)] = |
160 reference_time; | 168 reference_time; |
161 frame_rtp_timestamps_[frame_id % arraysize(frame_rtp_timestamps_)] = | 169 frame_rtp_timestamps_[frame_id % arraysize(frame_rtp_timestamps_)] = |
162 rtp_timestamp; | 170 rtp_timestamp; |
163 } | 171 } |
164 | 172 |
165 base::TimeTicks FrameSender::GetRecordedReferenceTime(uint32 frame_id) const { | 173 base::TimeTicks FrameSender::GetRecordedReferenceTime(uint32 frame_id) const { |
166 return frame_reference_times_[frame_id % arraysize(frame_reference_times_)]; | 174 return frame_reference_times_[frame_id % arraysize(frame_reference_times_)]; |
167 } | 175 } |
168 | 176 |
169 RtpTimestamp FrameSender::GetRecordedRtpTimestamp(uint32 frame_id) const { | 177 RtpTimestamp FrameSender::GetRecordedRtpTimestamp(uint32 frame_id) const { |
170 return frame_rtp_timestamps_[frame_id % arraysize(frame_rtp_timestamps_)]; | 178 return frame_rtp_timestamps_[frame_id % arraysize(frame_rtp_timestamps_)]; |
171 } | 179 } |
172 | 180 |
| 181 int FrameSender::GetUnacknowledgedFrameCount() const { |
| 182 const int count = |
| 183 static_cast<int32>(last_sent_frame_id_ - latest_acked_frame_id_); |
| 184 DCHECK_GE(count, 0); |
| 185 return count; |
| 186 } |
| 187 |
| 188 base::TimeDelta FrameSender::GetAllowedInFlightMediaDuration() const { |
| 189 // The total amount allowed in-flight media should equal the amount that fits |
| 190 // within the entire playout delay window, plus the amount of time it takes to |
| 191 // receive an ACK from the receiver. |
| 192 // TODO(miu): Research is needed, but there is likely a better formula. |
| 193 return target_playout_delay_ + (current_round_trip_time_ / 2); |
| 194 } |
| 195 |
173 void FrameSender::SendEncodedFrame( | 196 void FrameSender::SendEncodedFrame( |
174 int requested_bitrate_before_encode, | 197 int requested_bitrate_before_encode, |
175 scoped_ptr<EncodedFrame> encoded_frame) { | 198 scoped_ptr<EncodedFrame> encoded_frame) { |
176 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); | 199 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); |
177 | 200 |
| 201 VLOG(2) << SENDER_SSRC << "About to send another frame: last_sent=" |
| 202 << last_sent_frame_id_ << ", latest_acked=" << latest_acked_frame_id_; |
| 203 |
178 const uint32 frame_id = encoded_frame->frame_id; | 204 const uint32 frame_id = encoded_frame->frame_id; |
179 | 205 |
180 const bool is_first_frame_to_be_sent = last_send_time_.is_null(); | 206 const bool is_first_frame_to_be_sent = last_send_time_.is_null(); |
181 last_send_time_ = cast_environment_->Clock()->NowTicks(); | 207 last_send_time_ = cast_environment_->Clock()->NowTicks(); |
182 last_sent_frame_id_ = frame_id; | 208 last_sent_frame_id_ = frame_id; |
183 // If this is the first frame about to be sent, fake the value of | 209 // If this is the first frame about to be sent, fake the value of |
184 // |latest_acked_frame_id_| to indicate the receiver starts out all caught up. | 210 // |latest_acked_frame_id_| to indicate the receiver starts out all caught up. |
185 // Also, schedule the periodic frame re-send checks. | 211 // Also, schedule the periodic frame re-send checks. |
186 if (is_first_frame_to_be_sent) { | 212 if (is_first_frame_to_be_sent) { |
187 latest_acked_frame_id_ = frame_id - 1; | 213 latest_acked_frame_id_ = frame_id - 1; |
188 ScheduleNextResendCheck(); | 214 ScheduleNextResendCheck(); |
189 } | 215 } |
190 | 216 |
191 VLOG_IF(1, encoded_frame->dependency == EncodedFrame::KEY) | 217 VLOG_IF(1, !is_audio_ && encoded_frame->dependency == EncodedFrame::KEY) |
192 << "Send encoded key frame; frame_id: " << frame_id; | 218 << SENDER_SSRC << "Sending encoded key frame, id=" << frame_id; |
193 | 219 |
194 cast_environment_->Logging()->InsertEncodedFrameEvent( | 220 cast_environment_->Logging()->InsertEncodedFrameEvent( |
195 last_send_time_, FRAME_ENCODED, | 221 last_send_time_, FRAME_ENCODED, |
196 is_audio_ ? AUDIO_EVENT : VIDEO_EVENT, | 222 is_audio_ ? AUDIO_EVENT : VIDEO_EVENT, |
197 encoded_frame->rtp_timestamp, | 223 encoded_frame->rtp_timestamp, |
198 frame_id, static_cast<int>(encoded_frame->data.size()), | 224 frame_id, static_cast<int>(encoded_frame->data.size()), |
199 encoded_frame->dependency == EncodedFrame::KEY, | 225 encoded_frame->dependency == EncodedFrame::KEY, |
200 requested_bitrate_before_encode); | 226 requested_bitrate_before_encode); |
201 | 227 |
202 RecordLatestFrameTimestamps(frame_id, | 228 RecordLatestFrameTimestamps(frame_id, |
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215 // frame so that the receiver can properly compute playout times. The reason | 241 // frame so that the receiver can properly compute playout times. The reason |
216 // more than one report is sent is because transmission is not guaranteed, | 242 // more than one report is sent is because transmission is not guaranteed, |
217 // only best effort, so send enough that one should almost certainly get | 243 // only best effort, so send enough that one should almost certainly get |
218 // through. | 244 // through. |
219 if (num_aggressive_rtcp_reports_sent_ < kNumAggressiveReportsSentAtStart) { | 245 if (num_aggressive_rtcp_reports_sent_ < kNumAggressiveReportsSentAtStart) { |
220 // SendRtcpReport() will schedule future reports to be made if this is the | 246 // SendRtcpReport() will schedule future reports to be made if this is the |
221 // last "aggressive report." | 247 // last "aggressive report." |
222 ++num_aggressive_rtcp_reports_sent_; | 248 ++num_aggressive_rtcp_reports_sent_; |
223 const bool is_last_aggressive_report = | 249 const bool is_last_aggressive_report = |
224 (num_aggressive_rtcp_reports_sent_ == kNumAggressiveReportsSentAtStart); | 250 (num_aggressive_rtcp_reports_sent_ == kNumAggressiveReportsSentAtStart); |
225 VLOG_IF(1, is_last_aggressive_report) << "Sending last aggressive report."; | 251 VLOG_IF(1, is_last_aggressive_report) |
| 252 << SENDER_SSRC << "Sending last aggressive report."; |
226 SendRtcpReport(is_last_aggressive_report); | 253 SendRtcpReport(is_last_aggressive_report); |
227 } | 254 } |
228 | 255 |
229 congestion_control_->SendFrameToTransport( | 256 congestion_control_->SendFrameToTransport( |
230 frame_id, encoded_frame->data.size() * 8, last_send_time_); | 257 frame_id, encoded_frame->data.size() * 8, last_send_time_); |
231 | 258 |
232 if (send_target_playout_delay_) { | 259 if (send_target_playout_delay_) { |
233 encoded_frame->new_playout_delay_ms = | 260 encoded_frame->new_playout_delay_ms = |
234 target_playout_delay_.InMilliseconds(); | 261 target_playout_delay_.InMilliseconds(); |
235 } | 262 } |
236 transport_sender_->InsertFrame(ssrc_, *encoded_frame); | 263 transport_sender_->InsertFrame(ssrc_, *encoded_frame); |
237 } | 264 } |
238 | 265 |
239 void FrameSender::OnReceivedCastFeedback(const RtcpCastMessage& cast_feedback) { | 266 void FrameSender::OnReceivedCastFeedback(const RtcpCastMessage& cast_feedback) { |
240 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); | 267 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); |
241 | 268 |
242 const bool have_valid_rtt = current_round_trip_time_ > base::TimeDelta(); | 269 const bool have_valid_rtt = current_round_trip_time_ > base::TimeDelta(); |
243 if (have_valid_rtt) { | 270 if (have_valid_rtt) { |
244 congestion_control_->UpdateRtt(current_round_trip_time_); | 271 congestion_control_->UpdateRtt(current_round_trip_time_); |
245 | 272 |
246 // Having the RTT value implies the receiver sent back a receiver report | 273 // Having the RTT value implies the receiver sent back a receiver report |
247 // based on it having received a report from here. Therefore, ensure this | 274 // based on it having received a report from here. Therefore, ensure this |
248 // sender stops aggressively sending reports. | 275 // sender stops aggressively sending reports. |
249 if (num_aggressive_rtcp_reports_sent_ < kNumAggressiveReportsSentAtStart) { | 276 if (num_aggressive_rtcp_reports_sent_ < kNumAggressiveReportsSentAtStart) { |
250 VLOG(1) << "No longer a need to send reports aggressively (sent " | 277 VLOG(1) << SENDER_SSRC |
| 278 << "No longer a need to send reports aggressively (sent " |
251 << num_aggressive_rtcp_reports_sent_ << ")."; | 279 << num_aggressive_rtcp_reports_sent_ << ")."; |
252 num_aggressive_rtcp_reports_sent_ = kNumAggressiveReportsSentAtStart; | 280 num_aggressive_rtcp_reports_sent_ = kNumAggressiveReportsSentAtStart; |
253 ScheduleNextRtcpReport(); | 281 ScheduleNextRtcpReport(); |
254 } | 282 } |
255 } | 283 } |
256 | 284 |
257 if (last_send_time_.is_null()) | 285 if (last_send_time_.is_null()) |
258 return; // Cannot get an ACK without having first sent a frame. | 286 return; // Cannot get an ACK without having first sent a frame. |
259 | 287 |
260 if (cast_feedback.missing_frames_and_packets.empty()) { | 288 if (cast_feedback.missing_frames_and_packets.empty()) { |
261 OnAck(cast_feedback.ack_frame_id); | 289 OnAck(cast_feedback.ack_frame_id); |
262 | 290 |
263 // We only count duplicate ACKs when we have sent newer frames. | 291 // We only count duplicate ACKs when we have sent newer frames. |
264 if (latest_acked_frame_id_ == cast_feedback.ack_frame_id && | 292 if (latest_acked_frame_id_ == cast_feedback.ack_frame_id && |
265 latest_acked_frame_id_ != last_sent_frame_id_) { | 293 latest_acked_frame_id_ != last_sent_frame_id_) { |
266 duplicate_ack_counter_++; | 294 duplicate_ack_counter_++; |
267 } else { | 295 } else { |
268 duplicate_ack_counter_ = 0; | 296 duplicate_ack_counter_ = 0; |
269 } | 297 } |
270 // TODO(miu): The values "2" and "3" should be derived from configuration. | 298 // TODO(miu): The values "2" and "3" should be derived from configuration. |
271 if (duplicate_ack_counter_ >= 2 && duplicate_ack_counter_ % 3 == 2) { | 299 if (duplicate_ack_counter_ >= 2 && duplicate_ack_counter_ % 3 == 2) { |
272 VLOG(1) << "Received duplicate ACK for frame " << latest_acked_frame_id_; | 300 VLOG(1) << SENDER_SSRC << "Received duplicate ACK for frame " |
| 301 << latest_acked_frame_id_; |
273 ResendForKickstart(); | 302 ResendForKickstart(); |
274 } | 303 } |
275 } else { | 304 } else { |
276 // Only count duplicated ACKs if there is no NACK request in between. | 305 // Only count duplicated ACKs if there is no NACK request in between. |
277 // This is to avoid aggresive resend. | 306 // This is to avoid aggresive resend. |
278 duplicate_ack_counter_ = 0; | 307 duplicate_ack_counter_ = 0; |
279 } | 308 } |
280 | 309 |
281 base::TimeTicks now = cast_environment_->Clock()->NowTicks(); | 310 base::TimeTicks now = cast_environment_->Clock()->NowTicks(); |
282 congestion_control_->AckFrame(cast_feedback.ack_frame_id, now); | 311 congestion_control_->AckFrame(cast_feedback.ack_frame_id, now); |
283 | 312 |
284 cast_environment_->Logging()->InsertFrameEvent( | 313 cast_environment_->Logging()->InsertFrameEvent( |
285 now, | 314 now, |
286 FRAME_ACK_RECEIVED, | 315 FRAME_ACK_RECEIVED, |
287 is_audio_ ? AUDIO_EVENT : VIDEO_EVENT, | 316 is_audio_ ? AUDIO_EVENT : VIDEO_EVENT, |
288 GetRecordedRtpTimestamp(cast_feedback.ack_frame_id), | 317 GetRecordedRtpTimestamp(cast_feedback.ack_frame_id), |
289 cast_feedback.ack_frame_id); | 318 cast_feedback.ack_frame_id); |
290 | 319 |
291 const bool is_acked_out_of_order = | 320 const bool is_acked_out_of_order = |
292 static_cast<int32>(cast_feedback.ack_frame_id - | 321 static_cast<int32>(cast_feedback.ack_frame_id - |
293 latest_acked_frame_id_) < 0; | 322 latest_acked_frame_id_) < 0; |
294 VLOG(2) << "Received ACK" << (is_acked_out_of_order ? " out-of-order" : "") | 323 VLOG(2) << SENDER_SSRC |
| 324 << "Received ACK" << (is_acked_out_of_order ? " out-of-order" : "") |
295 << " for frame " << cast_feedback.ack_frame_id; | 325 << " for frame " << cast_feedback.ack_frame_id; |
296 if (!is_acked_out_of_order) { | 326 if (!is_acked_out_of_order) { |
297 // Cancel resends of acked frames. | 327 // Cancel resends of acked frames. |
298 std::vector<uint32> cancel_sending_frames; | 328 std::vector<uint32> cancel_sending_frames; |
299 while (latest_acked_frame_id_ != cast_feedback.ack_frame_id) { | 329 while (latest_acked_frame_id_ != cast_feedback.ack_frame_id) { |
300 latest_acked_frame_id_++; | 330 latest_acked_frame_id_++; |
301 cancel_sending_frames.push_back(latest_acked_frame_id_); | 331 cancel_sending_frames.push_back(latest_acked_frame_id_); |
302 } | 332 } |
303 transport_sender_->CancelSendingFrames(ssrc_, cancel_sending_frames); | 333 transport_sender_->CancelSendingFrames(ssrc_, cancel_sending_frames); |
304 latest_acked_frame_id_ = cast_feedback.ack_frame_id; | 334 latest_acked_frame_id_ = cast_feedback.ack_frame_id; |
305 } | 335 } |
306 } | 336 } |
307 | 337 |
308 bool FrameSender::ShouldDropNextFrame(base::TimeTicks capture_time) const { | 338 bool FrameSender::ShouldDropNextFrame(base::TimeDelta frame_duration) const { |
309 DCHECK(cast_environment_->CurrentlyOn(CastEnvironment::MAIN)); | 339 // Check that accepting the next frame won't cause more frames to become |
310 int frames_in_flight = 0; | 340 // in-flight than the system's design limit. |
311 base::TimeDelta duration_in_flight; | 341 const int count_frames_in_flight = |
312 if (!last_send_time_.is_null()) { | 342 GetUnacknowledgedFrameCount() + GetNumberOfFramesInEncoder(); |
313 frames_in_flight = | 343 if (count_frames_in_flight >= kMaxUnackedFrames) { |
314 static_cast<int32>(last_sent_frame_id_ - latest_acked_frame_id_); | 344 VLOG(1) << SENDER_SSRC << "Dropping: Too many frames would be in-flight."; |
315 if (frames_in_flight > 0) { | 345 return true; |
316 const uint32 oldest_unacked_frame_id = latest_acked_frame_id_ + 1; | |
317 duration_in_flight = | |
318 capture_time - GetRecordedReferenceTime(oldest_unacked_frame_id); | |
319 } | |
320 } | 346 } |
321 frames_in_flight += GetNumberOfFramesInEncoder(); | 347 |
322 VLOG(2) << frames_in_flight | 348 // Check that accepting the next frame won't exceed the configured maximum |
323 << " frames in flight; last sent: " << last_sent_frame_id_ | 349 // frame rate, allowing for short-term bursts. |
324 << "; latest acked: " << latest_acked_frame_id_ | 350 base::TimeDelta duration_in_flight = GetInFlightMediaDuration(); |
325 << "; frames in encoder: " << GetNumberOfFramesInEncoder() | 351 const double max_frames_in_flight = |
326 << "; duration in flight: " | 352 max_frame_rate_ * duration_in_flight.InSecondsF(); |
327 << duration_in_flight.InMicroseconds() << " usec (" | 353 if (count_frames_in_flight >= max_frames_in_flight + kMaxFrameBurst) { |
328 << (target_playout_delay_ > base::TimeDelta() ? | 354 VLOG(1) << SENDER_SSRC << "Dropping: Burst threshold would be exceeded."; |
329 100 * duration_in_flight / target_playout_delay_ : | 355 return true; |
330 kint64max) << "%)"; | 356 } |
331 return frames_in_flight >= max_unacked_frames_ || | 357 |
332 duration_in_flight >= target_playout_delay_; | 358 // Check that accepting the next frame won't exceed the allowed in-flight |
| 359 // media duration. |
| 360 const base::TimeDelta duration_would_be_in_flight = |
| 361 duration_in_flight + frame_duration; |
| 362 const base::TimeDelta allowed_in_flight = GetAllowedInFlightMediaDuration(); |
| 363 if (VLOG_IS_ON(1)) { |
| 364 const int64 percent = allowed_in_flight > base::TimeDelta() ? |
| 365 100 * duration_would_be_in_flight / allowed_in_flight : kint64max; |
| 366 VLOG_IF(1, percent > 50) |
| 367 << SENDER_SSRC |
| 368 << duration_in_flight.InMicroseconds() << " usec in-flight + " |
| 369 << frame_duration.InMicroseconds() << " usec for next frame --> " |
| 370 << percent << "% of allowed in-flight."; |
| 371 } |
| 372 if (duration_would_be_in_flight > allowed_in_flight) { |
| 373 VLOG(1) << SENDER_SSRC << "Dropping: In-flight duration would be too high."; |
| 374 return true; |
| 375 } |
| 376 |
| 377 // Next frame is accepted. |
| 378 return false; |
333 } | 379 } |
334 | 380 |
335 } // namespace cast | 381 } // namespace cast |
336 } // namespace media | 382 } // namespace media |
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