1 /*
2 * Copyright (c) 2012 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 "webrtc/modules/video_coding/main/source/media_optimization.h"
12
13 #include "webrtc/modules/video_coding/main/source/content_metrics_processing.h"
14 #include "webrtc/modules/video_coding/main/source/qm_select.h"
15 #include "webrtc/modules/video_coding/utility/include/frame_dropper.h"
16 #include "webrtc/system_wrappers/interface/clock.h"
17 #include "webrtc/system_wrappers/interface/logging.h"
18
19 namespace webrtc {
20 namespace media_optimization {
21 namespace {
UpdateProtectionCallback(VCMProtectionMethod * selected_method,uint32_t * video_rate_bps,uint32_t * nack_overhead_rate_bps,uint32_t * fec_overhead_rate_bps,VCMProtectionCallback * video_protection_callback)22 void UpdateProtectionCallback(
23 VCMProtectionMethod* selected_method,
24 uint32_t* video_rate_bps,
25 uint32_t* nack_overhead_rate_bps,
26 uint32_t* fec_overhead_rate_bps,
27 VCMProtectionCallback* video_protection_callback) {
28 FecProtectionParams delta_fec_params;
29 FecProtectionParams key_fec_params;
30 // Get the FEC code rate for Key frames (set to 0 when NA).
31 key_fec_params.fec_rate = selected_method->RequiredProtectionFactorK();
32
33 // Get the FEC code rate for Delta frames (set to 0 when NA).
34 delta_fec_params.fec_rate = selected_method->RequiredProtectionFactorD();
35
36 // Get the FEC-UEP protection status for Key frames: UEP on/off.
37 key_fec_params.use_uep_protection = selected_method->RequiredUepProtectionK();
38
39 // Get the FEC-UEP protection status for Delta frames: UEP on/off.
40 delta_fec_params.use_uep_protection =
41 selected_method->RequiredUepProtectionD();
42
43 // The RTP module currently requires the same |max_fec_frames| for both
44 // key and delta frames.
45 delta_fec_params.max_fec_frames = selected_method->MaxFramesFec();
46 key_fec_params.max_fec_frames = selected_method->MaxFramesFec();
47
48 // Set the FEC packet mask type. |kFecMaskBursty| is more effective for
49 // consecutive losses and little/no packet re-ordering. As we currently
50 // do not have feedback data on the degree of correlated losses and packet
51 // re-ordering, we keep default setting to |kFecMaskRandom| for now.
52 delta_fec_params.fec_mask_type = kFecMaskRandom;
53 key_fec_params.fec_mask_type = kFecMaskRandom;
54
55 // TODO(Marco): Pass FEC protection values per layer.
56 video_protection_callback->ProtectionRequest(&delta_fec_params,
57 &key_fec_params,
58 video_rate_bps,
59 nack_overhead_rate_bps,
60 fec_overhead_rate_bps);
61 }
62 } // namespace
63
64 struct MediaOptimization::EncodedFrameSample {
EncodedFrameSamplewebrtc::media_optimization::MediaOptimization::EncodedFrameSample65 EncodedFrameSample(int size_bytes,
66 uint32_t timestamp,
67 int64_t time_complete_ms)
68 : size_bytes(size_bytes),
69 timestamp(timestamp),
70 time_complete_ms(time_complete_ms) {}
71
72 uint32_t size_bytes;
73 uint32_t timestamp;
74 int64_t time_complete_ms;
75 };
76
MediaOptimization(Clock * clock)77 MediaOptimization::MediaOptimization(Clock* clock)
78 : crit_sect_(CriticalSectionWrapper::CreateCriticalSection()),
79 clock_(clock),
80 max_bit_rate_(0),
81 send_codec_type_(kVideoCodecUnknown),
82 codec_width_(0),
83 codec_height_(0),
84 user_frame_rate_(0),
85 frame_dropper_(new FrameDropper),
86 loss_prot_logic_(
87 new VCMLossProtectionLogic(clock_->TimeInMilliseconds())),
88 fraction_lost_(0),
89 send_statistics_zero_encode_(0),
90 max_payload_size_(1460),
91 target_bit_rate_(0),
92 incoming_frame_rate_(0),
93 enable_qm_(false),
94 encoded_frame_samples_(),
95 avg_sent_bit_rate_bps_(0),
96 avg_sent_framerate_(0),
97 key_frame_cnt_(0),
98 delta_frame_cnt_(0),
99 content_(new VCMContentMetricsProcessing()),
100 qm_resolution_(new VCMQmResolution()),
101 last_qm_update_time_(0),
102 last_change_time_(0),
103 num_layers_(0),
104 suspension_enabled_(false),
105 video_suspended_(false),
106 suspension_threshold_bps_(0),
107 suspension_window_bps_(0) {
108 memset(send_statistics_, 0, sizeof(send_statistics_));
109 memset(incoming_frame_times_, -1, sizeof(incoming_frame_times_));
110 }
111
~MediaOptimization(void)112 MediaOptimization::~MediaOptimization(void) {
113 loss_prot_logic_->Release();
114 }
115
Reset()116 void MediaOptimization::Reset() {
117 CriticalSectionScoped lock(crit_sect_.get());
118 SetEncodingDataInternal(
119 kVideoCodecUnknown, 0, 0, 0, 0, 0, 0, max_payload_size_);
120 memset(incoming_frame_times_, -1, sizeof(incoming_frame_times_));
121 incoming_frame_rate_ = 0.0;
122 frame_dropper_->Reset();
123 loss_prot_logic_->Reset(clock_->TimeInMilliseconds());
124 frame_dropper_->SetRates(0, 0);
125 content_->Reset();
126 qm_resolution_->Reset();
127 loss_prot_logic_->UpdateFrameRate(incoming_frame_rate_);
128 loss_prot_logic_->Reset(clock_->TimeInMilliseconds());
129 send_statistics_zero_encode_ = 0;
130 target_bit_rate_ = 0;
131 codec_width_ = 0;
132 codec_height_ = 0;
133 user_frame_rate_ = 0;
134 key_frame_cnt_ = 0;
135 delta_frame_cnt_ = 0;
136 last_qm_update_time_ = 0;
137 last_change_time_ = 0;
138 encoded_frame_samples_.clear();
139 avg_sent_bit_rate_bps_ = 0;
140 num_layers_ = 1;
141 }
142
SetEncodingData(VideoCodecType send_codec_type,int32_t max_bit_rate,uint32_t frame_rate,uint32_t target_bitrate,uint16_t width,uint16_t height,int num_layers,int32_t mtu)143 void MediaOptimization::SetEncodingData(VideoCodecType send_codec_type,
144 int32_t max_bit_rate,
145 uint32_t frame_rate,
146 uint32_t target_bitrate,
147 uint16_t width,
148 uint16_t height,
149 int num_layers,
150 int32_t mtu) {
151 CriticalSectionScoped lock(crit_sect_.get());
152 SetEncodingDataInternal(send_codec_type,
153 max_bit_rate,
154 frame_rate,
155 target_bitrate,
156 width,
157 height,
158 num_layers,
159 mtu);
160 }
161
SetEncodingDataInternal(VideoCodecType send_codec_type,int32_t max_bit_rate,uint32_t frame_rate,uint32_t target_bitrate,uint16_t width,uint16_t height,int num_layers,int32_t mtu)162 void MediaOptimization::SetEncodingDataInternal(VideoCodecType send_codec_type,
163 int32_t max_bit_rate,
164 uint32_t frame_rate,
165 uint32_t target_bitrate,
166 uint16_t width,
167 uint16_t height,
168 int num_layers,
169 int32_t mtu) {
170 // Everything codec specific should be reset here since this means the codec
171 // has changed. If native dimension values have changed, then either user
172 // initiated change, or QM initiated change. Will be able to determine only
173 // after the processing of the first frame.
174 last_change_time_ = clock_->TimeInMilliseconds();
175 content_->Reset();
176 content_->UpdateFrameRate(frame_rate);
177
178 max_bit_rate_ = max_bit_rate;
179 send_codec_type_ = send_codec_type;
180 target_bit_rate_ = target_bitrate;
181 float target_bitrate_kbps = static_cast<float>(target_bitrate) / 1000.0f;
182 loss_prot_logic_->UpdateBitRate(target_bitrate_kbps);
183 loss_prot_logic_->UpdateFrameRate(static_cast<float>(frame_rate));
184 loss_prot_logic_->UpdateFrameSize(width, height);
185 loss_prot_logic_->UpdateNumLayers(num_layers);
186 frame_dropper_->Reset();
187 frame_dropper_->SetRates(target_bitrate_kbps, static_cast<float>(frame_rate));
188 user_frame_rate_ = static_cast<float>(frame_rate);
189 codec_width_ = width;
190 codec_height_ = height;
191 num_layers_ = (num_layers <= 1) ? 1 : num_layers; // Can also be zero.
192 max_payload_size_ = mtu;
193 qm_resolution_->Initialize(target_bitrate_kbps,
194 user_frame_rate_,
195 codec_width_,
196 codec_height_,
197 num_layers_);
198 }
199
SetTargetRates(uint32_t target_bitrate,uint8_t fraction_lost,uint32_t round_trip_time_ms,VCMProtectionCallback * protection_callback,VCMQMSettingsCallback * qmsettings_callback)200 uint32_t MediaOptimization::SetTargetRates(
201 uint32_t target_bitrate,
202 uint8_t fraction_lost,
203 uint32_t round_trip_time_ms,
204 VCMProtectionCallback* protection_callback,
205 VCMQMSettingsCallback* qmsettings_callback) {
206 CriticalSectionScoped lock(crit_sect_.get());
207 // TODO(holmer): Consider putting this threshold only on the video bitrate,
208 // and not on protection.
209 if (max_bit_rate_ > 0 &&
210 target_bitrate > static_cast<uint32_t>(max_bit_rate_)) {
211 target_bitrate = max_bit_rate_;
212 }
213 VCMProtectionMethod* selected_method = loss_prot_logic_->SelectedMethod();
214 float target_bitrate_kbps = static_cast<float>(target_bitrate) / 1000.0f;
215 loss_prot_logic_->UpdateBitRate(target_bitrate_kbps);
216 loss_prot_logic_->UpdateRtt(round_trip_time_ms);
217 loss_prot_logic_->UpdateResidualPacketLoss(static_cast<float>(fraction_lost));
218
219 // Get frame rate for encoder: this is the actual/sent frame rate.
220 float actual_frame_rate = SentFrameRateInternal();
221
222 // Sanity check.
223 if (actual_frame_rate < 1.0) {
224 actual_frame_rate = 1.0;
225 }
226
227 // Update frame rate for the loss protection logic class: frame rate should
228 // be the actual/sent rate.
229 loss_prot_logic_->UpdateFrameRate(actual_frame_rate);
230
231 fraction_lost_ = fraction_lost;
232
233 // Returns the filtered packet loss, used for the protection setting.
234 // The filtered loss may be the received loss (no filter), or some
235 // filtered value (average or max window filter).
236 // Use max window filter for now.
237 FilterPacketLossMode filter_mode = kMaxFilter;
238 uint8_t packet_loss_enc = loss_prot_logic_->FilteredLoss(
239 clock_->TimeInMilliseconds(), filter_mode, fraction_lost);
240
241 // For now use the filtered loss for computing the robustness settings.
242 loss_prot_logic_->UpdateFilteredLossPr(packet_loss_enc);
243
244 // Rate cost of the protection methods.
245 uint32_t protection_overhead_bps = 0;
246
247 // Update protection settings, when applicable.
248 float sent_video_rate_kbps = 0.0f;
249 if (selected_method) {
250 // Update protection method with content metrics.
251 selected_method->UpdateContentMetrics(content_->ShortTermAvgData());
252
253 // Update method will compute the robustness settings for the given
254 // protection method and the overhead cost
255 // the protection method is set by the user via SetVideoProtection.
256 loss_prot_logic_->UpdateMethod();
257
258 // Update protection callback with protection settings.
259 uint32_t sent_video_rate_bps = 0;
260 uint32_t sent_nack_rate_bps = 0;
261 uint32_t sent_fec_rate_bps = 0;
262 // Get the bit cost of protection method, based on the amount of
263 // overhead data actually transmitted (including headers) the last
264 // second.
265 if (protection_callback) {
266 UpdateProtectionCallback(selected_method,
267 &sent_video_rate_bps,
268 &sent_nack_rate_bps,
269 &sent_fec_rate_bps,
270 protection_callback);
271 }
272 uint32_t sent_total_rate_bps =
273 sent_video_rate_bps + sent_nack_rate_bps + sent_fec_rate_bps;
274 // Estimate the overhead costs of the next second as staying the same
275 // wrt the source bitrate.
276 if (sent_total_rate_bps > 0) {
277 protection_overhead_bps = static_cast<uint32_t>(
278 target_bitrate *
279 static_cast<double>(sent_nack_rate_bps + sent_fec_rate_bps) /
280 sent_total_rate_bps +
281 0.5);
282 }
283 // Cap the overhead estimate to 50%.
284 if (protection_overhead_bps > target_bitrate / 2)
285 protection_overhead_bps = target_bitrate / 2;
286
287 // Get the effective packet loss for encoder ER when applicable. Should be
288 // passed to encoder via fraction_lost.
289 packet_loss_enc = selected_method->RequiredPacketLossER();
290 sent_video_rate_kbps = static_cast<float>(sent_video_rate_bps) / 1000.0f;
291 }
292
293 // Source coding rate: total rate - protection overhead.
294 target_bit_rate_ = target_bitrate - protection_overhead_bps;
295
296 // Update encoding rates following protection settings.
297 float target_video_bitrate_kbps =
298 static_cast<float>(target_bit_rate_) / 1000.0f;
299 frame_dropper_->SetRates(target_video_bitrate_kbps, incoming_frame_rate_);
300
301 if (enable_qm_ && qmsettings_callback) {
302 // Update QM with rates.
303 qm_resolution_->UpdateRates(target_video_bitrate_kbps,
304 sent_video_rate_kbps,
305 incoming_frame_rate_,
306 fraction_lost_);
307 // Check for QM selection.
308 bool select_qm = CheckStatusForQMchange();
309 if (select_qm) {
310 SelectQuality(qmsettings_callback);
311 }
312 // Reset the short-term averaged content data.
313 content_->ResetShortTermAvgData();
314 }
315
316 CheckSuspendConditions();
317
318 return target_bit_rate_;
319 }
320
EnableProtectionMethod(bool enable,VCMProtectionMethodEnum method)321 void MediaOptimization::EnableProtectionMethod(bool enable,
322 VCMProtectionMethodEnum method) {
323 CriticalSectionScoped lock(crit_sect_.get());
324 bool updated = false;
325 if (enable) {
326 updated = loss_prot_logic_->SetMethod(method);
327 } else {
328 loss_prot_logic_->RemoveMethod(method);
329 }
330 if (updated) {
331 loss_prot_logic_->UpdateMethod();
332 }
333 }
334
InputFrameRate()335 uint32_t MediaOptimization::InputFrameRate() {
336 CriticalSectionScoped lock(crit_sect_.get());
337 return InputFrameRateInternal();
338 }
339
InputFrameRateInternal()340 uint32_t MediaOptimization::InputFrameRateInternal() {
341 ProcessIncomingFrameRate(clock_->TimeInMilliseconds());
342 return uint32_t(incoming_frame_rate_ + 0.5f);
343 }
344
SentFrameRate()345 uint32_t MediaOptimization::SentFrameRate() {
346 CriticalSectionScoped lock(crit_sect_.get());
347 return SentFrameRateInternal();
348 }
349
SentFrameRateInternal()350 uint32_t MediaOptimization::SentFrameRateInternal() {
351 PurgeOldFrameSamples(clock_->TimeInMilliseconds());
352 UpdateSentFramerate();
353 return avg_sent_framerate_;
354 }
355
SentBitRate()356 uint32_t MediaOptimization::SentBitRate() {
357 CriticalSectionScoped lock(crit_sect_.get());
358 const int64_t now_ms = clock_->TimeInMilliseconds();
359 PurgeOldFrameSamples(now_ms);
360 UpdateSentBitrate(now_ms);
361 return avg_sent_bit_rate_bps_;
362 }
363
SentFrameCount()364 VCMFrameCount MediaOptimization::SentFrameCount() {
365 CriticalSectionScoped lock(crit_sect_.get());
366 VCMFrameCount count;
367 count.numDeltaFrames = delta_frame_cnt_;
368 count.numKeyFrames = key_frame_cnt_;
369 return count;
370 }
371
UpdateWithEncodedData(int encoded_length,uint32_t timestamp,FrameType encoded_frame_type)372 int32_t MediaOptimization::UpdateWithEncodedData(int encoded_length,
373 uint32_t timestamp,
374 FrameType encoded_frame_type) {
375 CriticalSectionScoped lock(crit_sect_.get());
376 const int64_t now_ms = clock_->TimeInMilliseconds();
377 PurgeOldFrameSamples(now_ms);
378 if (encoded_frame_samples_.size() > 0 &&
379 encoded_frame_samples_.back().timestamp == timestamp) {
380 // Frames having the same timestamp are generated from the same input
381 // frame. We don't want to double count them, but only increment the
382 // size_bytes.
383 encoded_frame_samples_.back().size_bytes += encoded_length;
384 encoded_frame_samples_.back().time_complete_ms = now_ms;
385 } else {
386 encoded_frame_samples_.push_back(
387 EncodedFrameSample(encoded_length, timestamp, now_ms));
388 }
389 UpdateSentBitrate(now_ms);
390 UpdateSentFramerate();
391 if (encoded_length > 0) {
392 const bool delta_frame = (encoded_frame_type != kVideoFrameKey);
393
394 frame_dropper_->Fill(encoded_length, delta_frame);
395 if (max_payload_size_ > 0 && encoded_length > 0) {
396 const float min_packets_per_frame =
397 encoded_length / static_cast<float>(max_payload_size_);
398 if (delta_frame) {
399 loss_prot_logic_->UpdatePacketsPerFrame(min_packets_per_frame,
400 clock_->TimeInMilliseconds());
401 } else {
402 loss_prot_logic_->UpdatePacketsPerFrameKey(
403 min_packets_per_frame, clock_->TimeInMilliseconds());
404 }
405
406 if (enable_qm_) {
407 // Update quality select with encoded length.
408 qm_resolution_->UpdateEncodedSize(encoded_length, encoded_frame_type);
409 }
410 }
411 if (!delta_frame && encoded_length > 0) {
412 loss_prot_logic_->UpdateKeyFrameSize(static_cast<float>(encoded_length));
413 }
414
415 // Updating counters.
416 if (delta_frame) {
417 delta_frame_cnt_++;
418 } else {
419 key_frame_cnt_++;
420 }
421 }
422
423 return VCM_OK;
424 }
425
EnableQM(bool enable)426 void MediaOptimization::EnableQM(bool enable) {
427 CriticalSectionScoped lock(crit_sect_.get());
428 enable_qm_ = enable;
429 }
430
EnableFrameDropper(bool enable)431 void MediaOptimization::EnableFrameDropper(bool enable) {
432 CriticalSectionScoped lock(crit_sect_.get());
433 frame_dropper_->Enable(enable);
434 }
435
SuspendBelowMinBitrate(int threshold_bps,int window_bps)436 void MediaOptimization::SuspendBelowMinBitrate(int threshold_bps,
437 int window_bps) {
438 CriticalSectionScoped lock(crit_sect_.get());
439 assert(threshold_bps > 0 && window_bps >= 0);
440 suspension_threshold_bps_ = threshold_bps;
441 suspension_window_bps_ = window_bps;
442 suspension_enabled_ = true;
443 video_suspended_ = false;
444 }
445
IsVideoSuspended() const446 bool MediaOptimization::IsVideoSuspended() const {
447 CriticalSectionScoped lock(crit_sect_.get());
448 return video_suspended_;
449 }
450
DropFrame()451 bool MediaOptimization::DropFrame() {
452 CriticalSectionScoped lock(crit_sect_.get());
453 UpdateIncomingFrameRate();
454 // Leak appropriate number of bytes.
455 frame_dropper_->Leak((uint32_t)(InputFrameRateInternal() + 0.5f));
456 if (video_suspended_) {
457 return true; // Drop all frames when muted.
458 }
459 return frame_dropper_->DropFrame();
460 }
461
UpdateContentData(const VideoContentMetrics * content_metrics)462 void MediaOptimization::UpdateContentData(
463 const VideoContentMetrics* content_metrics) {
464 CriticalSectionScoped lock(crit_sect_.get());
465 // Updating content metrics.
466 if (content_metrics == NULL) {
467 // Disable QM if metrics are NULL.
468 enable_qm_ = false;
469 qm_resolution_->Reset();
470 } else {
471 content_->UpdateContentData(content_metrics);
472 }
473 }
474
UpdateIncomingFrameRate()475 void MediaOptimization::UpdateIncomingFrameRate() {
476 int64_t now = clock_->TimeInMilliseconds();
477 if (incoming_frame_times_[0] == 0) {
478 // No shifting if this is the first time.
479 } else {
480 // Shift all times one step.
481 for (int32_t i = (kFrameCountHistorySize - 2); i >= 0; i--) {
482 incoming_frame_times_[i + 1] = incoming_frame_times_[i];
483 }
484 }
485 incoming_frame_times_[0] = now;
486 ProcessIncomingFrameRate(now);
487 }
488
SelectQuality(VCMQMSettingsCallback * video_qmsettings_callback)489 int32_t MediaOptimization::SelectQuality(
490 VCMQMSettingsCallback* video_qmsettings_callback) {
491 // Reset quantities for QM select.
492 qm_resolution_->ResetQM();
493
494 // Update QM will long-term averaged content metrics.
495 qm_resolution_->UpdateContent(content_->LongTermAvgData());
496
497 // Select quality mode.
498 VCMResolutionScale* qm = NULL;
499 int32_t ret = qm_resolution_->SelectResolution(&qm);
500 if (ret < 0) {
501 return ret;
502 }
503
504 // Check for updates to spatial/temporal modes.
505 QMUpdate(qm, video_qmsettings_callback);
506
507 // Reset all the rate and related frame counters quantities.
508 qm_resolution_->ResetRates();
509
510 // Reset counters.
511 last_qm_update_time_ = clock_->TimeInMilliseconds();
512
513 // Reset content metrics.
514 content_->Reset();
515
516 return VCM_OK;
517 }
518
PurgeOldFrameSamples(int64_t now_ms)519 void MediaOptimization::PurgeOldFrameSamples(int64_t now_ms) {
520 while (!encoded_frame_samples_.empty()) {
521 if (now_ms - encoded_frame_samples_.front().time_complete_ms >
522 kBitrateAverageWinMs) {
523 encoded_frame_samples_.pop_front();
524 } else {
525 break;
526 }
527 }
528 }
529
UpdateSentBitrate(int64_t now_ms)530 void MediaOptimization::UpdateSentBitrate(int64_t now_ms) {
531 if (encoded_frame_samples_.empty()) {
532 avg_sent_bit_rate_bps_ = 0;
533 return;
534 }
535 int framesize_sum = 0;
536 for (FrameSampleList::iterator it = encoded_frame_samples_.begin();
537 it != encoded_frame_samples_.end();
538 ++it) {
539 framesize_sum += it->size_bytes;
540 }
541 float denom = static_cast<float>(
542 now_ms - encoded_frame_samples_.front().time_complete_ms);
543 if (denom >= 1.0f) {
544 avg_sent_bit_rate_bps_ =
545 static_cast<uint32_t>(framesize_sum * 8 * 1000 / denom + 0.5f);
546 } else {
547 avg_sent_bit_rate_bps_ = framesize_sum * 8;
548 }
549 }
550
UpdateSentFramerate()551 void MediaOptimization::UpdateSentFramerate() {
552 if (encoded_frame_samples_.size() <= 1) {
553 avg_sent_framerate_ = encoded_frame_samples_.size();
554 return;
555 }
556 int denom = encoded_frame_samples_.back().timestamp -
557 encoded_frame_samples_.front().timestamp;
558 if (denom > 0) {
559 avg_sent_framerate_ =
560 (90000 * (encoded_frame_samples_.size() - 1) + denom / 2) / denom;
561 } else {
562 avg_sent_framerate_ = encoded_frame_samples_.size();
563 }
564 }
565
QMUpdate(VCMResolutionScale * qm,VCMQMSettingsCallback * video_qmsettings_callback)566 bool MediaOptimization::QMUpdate(
567 VCMResolutionScale* qm,
568 VCMQMSettingsCallback* video_qmsettings_callback) {
569 // Check for no change.
570 if (!qm->change_resolution_spatial && !qm->change_resolution_temporal) {
571 return false;
572 }
573
574 // Check for change in frame rate.
575 if (qm->change_resolution_temporal) {
576 incoming_frame_rate_ = qm->frame_rate;
577 // Reset frame rate estimate.
578 memset(incoming_frame_times_, -1, sizeof(incoming_frame_times_));
579 }
580
581 // Check for change in frame size.
582 if (qm->change_resolution_spatial) {
583 codec_width_ = qm->codec_width;
584 codec_height_ = qm->codec_height;
585 }
586
587 LOG(LS_INFO) << "Media optimizer requests the video resolution to be changed "
588 "to " << qm->codec_width << "x" << qm->codec_height << "@"
589 << qm->frame_rate;
590
591 // Update VPM with new target frame rate and frame size.
592 // Note: use |qm->frame_rate| instead of |_incoming_frame_rate| for updating
593 // target frame rate in VPM frame dropper. The quantity |_incoming_frame_rate|
594 // will vary/fluctuate, and since we don't want to change the state of the
595 // VPM frame dropper, unless a temporal action was selected, we use the
596 // quantity |qm->frame_rate| for updating.
597 video_qmsettings_callback->SetVideoQMSettings(
598 qm->frame_rate, codec_width_, codec_height_);
599 content_->UpdateFrameRate(qm->frame_rate);
600 qm_resolution_->UpdateCodecParameters(
601 qm->frame_rate, codec_width_, codec_height_);
602 return true;
603 }
604
605 // Check timing constraints and look for significant change in:
606 // (1) scene content,
607 // (2) target bit rate.
CheckStatusForQMchange()608 bool MediaOptimization::CheckStatusForQMchange() {
609 bool status = true;
610
611 // Check that we do not call QMSelect too often, and that we waited some time
612 // (to sample the metrics) from the event last_change_time
613 // last_change_time is the time where user changed the size/rate/frame rate
614 // (via SetEncodingData).
615 int64_t now = clock_->TimeInMilliseconds();
616 if ((now - last_qm_update_time_) < kQmMinIntervalMs ||
617 (now - last_change_time_) < kQmMinIntervalMs) {
618 status = false;
619 }
620
621 return status;
622 }
623
624 // Allowing VCM to keep track of incoming frame rate.
ProcessIncomingFrameRate(int64_t now)625 void MediaOptimization::ProcessIncomingFrameRate(int64_t now) {
626 int32_t num = 0;
627 int32_t nr_of_frames = 0;
628 for (num = 1; num < (kFrameCountHistorySize - 1); ++num) {
629 if (incoming_frame_times_[num] <= 0 ||
630 // don't use data older than 2 s
631 now - incoming_frame_times_[num] > kFrameHistoryWinMs) {
632 break;
633 } else {
634 nr_of_frames++;
635 }
636 }
637 if (num > 1) {
638 const int64_t diff = now - incoming_frame_times_[num - 1];
639 incoming_frame_rate_ = 1.0;
640 if (diff > 0) {
641 incoming_frame_rate_ = nr_of_frames * 1000.0f / static_cast<float>(diff);
642 }
643 }
644 }
645
CheckSuspendConditions()646 void MediaOptimization::CheckSuspendConditions() {
647 // Check conditions for SuspendBelowMinBitrate. |target_bit_rate_| is in bps.
648 if (suspension_enabled_) {
649 if (!video_suspended_) {
650 // Check if we just went below the threshold.
651 if (target_bit_rate_ < suspension_threshold_bps_) {
652 video_suspended_ = true;
653 }
654 } else {
655 // Video is already suspended. Check if we just went over the threshold
656 // with a margin.
657 if (target_bit_rate_ >
658 suspension_threshold_bps_ + suspension_window_bps_) {
659 video_suspended_ = false;
660 }
661 }
662 }
663 }
664
665 } // namespace media_optimization
666 } // namespace webrtc
667