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andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +00001/*
2 * Copyright (c) 2013 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
pbosba8c15b2015-07-14 09:36:34 -070011#include "webrtc/base/checks.h"
pbos854e84c2015-11-16 16:39:06 -080012#include "webrtc/base/logging.h"
tommie4f96502015-10-20 23:00:48 -070013#include "webrtc/base/trace_event.h"
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000014#include "webrtc/common_types.h"
15#include "webrtc/common_video/libyuv/include/webrtc_libyuv.h"
Henrik Kjellander2557b862015-11-18 22:00:21 +010016#include "webrtc/modules/video_coding/include/video_codec_interface.h"
17#include "webrtc/modules/video_coding/encoded_frame.h"
18#include "webrtc/modules/video_coding/jitter_buffer.h"
19#include "webrtc/modules/video_coding/packet.h"
20#include "webrtc/modules/video_coding/video_coding_impl.h"
Henrik Kjellander98f53512015-10-28 18:17:40 +010021#include "webrtc/system_wrappers/include/clock.h"
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000022
23// #define DEBUG_DECODER_BIT_STREAM
24
25namespace webrtc {
26namespace vcm {
27
stefan@webrtc.org34c5da62014-04-11 14:08:35 +000028VideoReceiver::VideoReceiver(Clock* clock, EventFactory* event_factory)
29 : clock_(clock),
stefan@webrtc.org8db81c52013-09-18 11:57:34 +000030 process_crit_sect_(CriticalSectionWrapper::CreateCriticalSection()),
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000031 _receiveCritSect(CriticalSectionWrapper::CreateCriticalSection()),
stefan@webrtc.org34c5da62014-04-11 14:08:35 +000032 _timing(clock_),
Wan-Teh Chang92d94892015-05-28 13:36:06 -070033 _receiver(&_timing, clock_, event_factory),
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000034 _decodedFrameCallback(_timing, clock_),
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000035 _frameTypeCallback(NULL),
36 _receiveStatsCallback(NULL),
fischman@webrtc.org37bb4972013-10-23 23:59:45 +000037 _decoderTimingCallback(NULL),
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000038 _packetRequestCallback(NULL),
39 render_buffer_callback_(NULL),
40 _decoder(NULL),
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000041#ifdef DEBUG_DECODER_BIT_STREAM
42 _bitStreamBeforeDecoder(NULL),
43#endif
44 _frameFromFile(),
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000045 _scheduleKeyRequest(false),
46 max_nack_list_size_(0),
sprang@webrtc.org40709352013-11-26 11:41:59 +000047 pre_decode_image_callback_(NULL),
Peter Boström4f5db112015-10-29 16:53:59 +010048 _codecDataBase(nullptr, nullptr),
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000049 _receiveStatsTimer(1000, clock_),
50 _retransmissionTimer(10, clock_),
51 _keyRequestTimer(500, clock_) {
52 assert(clock_);
53#ifdef DEBUG_DECODER_BIT_STREAM
54 _bitStreamBeforeDecoder = fopen("decoderBitStream.bit", "wb");
55#endif
56}
57
58VideoReceiver::~VideoReceiver() {
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000059 delete _receiveCritSect;
60#ifdef DEBUG_DECODER_BIT_STREAM
61 fclose(_bitStreamBeforeDecoder);
62#endif
63}
64
65int32_t VideoReceiver::Process() {
66 int32_t returnValue = VCM_OK;
67
68 // Receive-side statistics
69 if (_receiveStatsTimer.TimeUntilProcess() == 0) {
70 _receiveStatsTimer.Processed();
stefan@webrtc.org8db81c52013-09-18 11:57:34 +000071 CriticalSectionScoped cs(process_crit_sect_.get());
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000072 if (_receiveStatsCallback != NULL) {
73 uint32_t bitRate;
74 uint32_t frameRate;
75 _receiver.ReceiveStatistics(&bitRate, &frameRate);
pbos@webrtc.org55707692014-12-19 15:45:03 +000076 _receiveStatsCallback->OnReceiveRatesUpdated(bitRate, frameRate);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +000077 }
78
fischman@webrtc.org37bb4972013-10-23 23:59:45 +000079 if (_decoderTimingCallback != NULL) {
80 int decode_ms;
81 int max_decode_ms;
82 int current_delay_ms;
83 int target_delay_ms;
84 int jitter_buffer_ms;
85 int min_playout_delay_ms;
86 int render_delay_ms;
87 _timing.GetTimings(&decode_ms,
88 &max_decode_ms,
89 &current_delay_ms,
90 &target_delay_ms,
91 &jitter_buffer_ms,
92 &min_playout_delay_ms,
93 &render_delay_ms);
94 _decoderTimingCallback->OnDecoderTiming(decode_ms,
95 max_decode_ms,
96 current_delay_ms,
97 target_delay_ms,
98 jitter_buffer_ms,
99 min_playout_delay_ms,
100 render_delay_ms);
101 }
102
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000103 // Size of render buffer.
104 if (render_buffer_callback_) {
105 int buffer_size_ms = _receiver.RenderBufferSizeMs();
106 render_buffer_callback_->RenderBufferSizeMs(buffer_size_ms);
107 }
108 }
109
110 // Key frame requests
111 if (_keyRequestTimer.TimeUntilProcess() == 0) {
112 _keyRequestTimer.Processed();
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000113 bool request_key_frame = false;
114 {
115 CriticalSectionScoped cs(process_crit_sect_.get());
116 request_key_frame = _scheduleKeyRequest && _frameTypeCallback != NULL;
117 }
118 if (request_key_frame) {
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000119 const int32_t ret = RequestKeyFrame();
120 if (ret != VCM_OK && returnValue == VCM_OK) {
121 returnValue = ret;
122 }
123 }
124 }
125
126 // Packet retransmission requests
127 // TODO(holmer): Add API for changing Process interval and make sure it's
128 // disabled when NACK is off.
129 if (_retransmissionTimer.TimeUntilProcess() == 0) {
130 _retransmissionTimer.Processed();
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000131 bool callback_registered = false;
132 uint16_t length;
133 {
134 CriticalSectionScoped cs(process_crit_sect_.get());
135 length = max_nack_list_size_;
136 callback_registered = _packetRequestCallback != NULL;
137 }
138 if (callback_registered && length > 0) {
Wan-Teh Changb1825a42015-06-03 15:03:35 -0700139 // Collect sequence numbers from the default receiver.
140 bool request_key_frame = false;
141 std::vector<uint16_t> nackList = _receiver.NackList(&request_key_frame);
142 int32_t ret = VCM_OK;
143 if (request_key_frame) {
144 ret = RequestKeyFrame();
145 if (ret != VCM_OK && returnValue == VCM_OK) {
146 returnValue = ret;
147 }
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000148 }
Wan-Teh Changb1825a42015-06-03 15:03:35 -0700149 if (ret == VCM_OK && !nackList.empty()) {
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000150 CriticalSectionScoped cs(process_crit_sect_.get());
151 if (_packetRequestCallback != NULL) {
Wan-Teh Changb1825a42015-06-03 15:03:35 -0700152 _packetRequestCallback->ResendPackets(&nackList[0], nackList.size());
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000153 }
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000154 }
155 }
156 }
157
158 return returnValue;
159}
160
pkasting@chromium.org0b1534c2014-12-15 22:09:40 +0000161int64_t VideoReceiver::TimeUntilNextProcess() {
162 int64_t timeUntilNextProcess = _receiveStatsTimer.TimeUntilProcess();
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000163 if (_receiver.NackMode() != kNoNack) {
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000164 // We need a Process call more often if we are relying on
165 // retransmissions
166 timeUntilNextProcess =
167 VCM_MIN(timeUntilNextProcess, _retransmissionTimer.TimeUntilProcess());
168 }
169 timeUntilNextProcess =
170 VCM_MIN(timeUntilNextProcess, _keyRequestTimer.TimeUntilProcess());
171
172 return timeUntilNextProcess;
173}
174
pkasting@chromium.org16825b12015-01-12 21:51:21 +0000175int32_t VideoReceiver::SetReceiveChannelParameters(int64_t rtt) {
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000176 CriticalSectionScoped receiveCs(_receiveCritSect);
177 _receiver.UpdateRtt(rtt);
178 return 0;
179}
180
181// Enable or disable a video protection method.
182// Note: This API should be deprecated, as it does not offer a distinction
183// between the protection method and decoding with or without errors. If such a
184// behavior is desired, use the following API: SetReceiverRobustnessMode.
185int32_t VideoReceiver::SetVideoProtection(VCMVideoProtection videoProtection,
186 bool enable) {
187 // By default, do not decode with errors.
188 _receiver.SetDecodeErrorMode(kNoErrors);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000189 switch (videoProtection) {
pbosba8c15b2015-07-14 09:36:34 -0700190 case kProtectionNack: {
henrikg91d6ede2015-09-17 00:24:34 -0700191 RTC_DCHECK(enable);
pbosba8c15b2015-07-14 09:36:34 -0700192 _receiver.SetNackMode(kNack, -1, -1);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000193 break;
194 }
195
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000196 case kProtectionNackFEC: {
197 CriticalSectionScoped cs(_receiveCritSect);
henrikg91d6ede2015-09-17 00:24:34 -0700198 RTC_DCHECK(enable);
pbosba8c15b2015-07-14 09:36:34 -0700199 _receiver.SetNackMode(kNack, media_optimization::kLowRttNackMs, -1);
200 _receiver.SetDecodeErrorMode(kNoErrors);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000201 break;
202 }
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000203 case kProtectionFEC:
pbos@webrtc.orgcade82c2015-03-12 10:39:24 +0000204 case kProtectionNone:
pbosba8c15b2015-07-14 09:36:34 -0700205 // No receiver-side protection.
henrikg91d6ede2015-09-17 00:24:34 -0700206 RTC_DCHECK(enable);
pbosba8c15b2015-07-14 09:36:34 -0700207 _receiver.SetNackMode(kNoNack, -1, -1);
208 _receiver.SetDecodeErrorMode(kWithErrors);
pbos@webrtc.orgcade82c2015-03-12 10:39:24 +0000209 break;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000210 }
211 return VCM_OK;
212}
213
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000214// Register a receive callback. Will be called whenever there is a new frame
215// ready for rendering.
216int32_t VideoReceiver::RegisterReceiveCallback(
217 VCMReceiveCallback* receiveCallback) {
218 CriticalSectionScoped cs(_receiveCritSect);
219 _decodedFrameCallback.SetUserReceiveCallback(receiveCallback);
220 return VCM_OK;
221}
222
223int32_t VideoReceiver::RegisterReceiveStatisticsCallback(
224 VCMReceiveStatisticsCallback* receiveStats) {
stefan@webrtc.org8db81c52013-09-18 11:57:34 +0000225 CriticalSectionScoped cs(process_crit_sect_.get());
pbos@webrtc.org55707692014-12-19 15:45:03 +0000226 _receiver.RegisterStatsCallback(receiveStats);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000227 _receiveStatsCallback = receiveStats;
228 return VCM_OK;
229}
230
fischman@webrtc.org37bb4972013-10-23 23:59:45 +0000231int32_t VideoReceiver::RegisterDecoderTimingCallback(
232 VCMDecoderTimingCallback* decoderTiming) {
233 CriticalSectionScoped cs(process_crit_sect_.get());
234 _decoderTimingCallback = decoderTiming;
235 return VCM_OK;
236}
237
perkj796cfaf2015-12-10 09:27:38 -0800238// Register an externally defined decoder object.
Peter Boström795dbe42015-11-27 14:09:07 +0100239void VideoReceiver::RegisterExternalDecoder(VideoDecoder* externalDecoder,
perkj796cfaf2015-12-10 09:27:38 -0800240 uint8_t payloadType) {
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000241 CriticalSectionScoped cs(_receiveCritSect);
242 if (externalDecoder == NULL) {
243 // Make sure the VCM updates the decoder next time it decodes.
244 _decoder = NULL;
Peter Boström795dbe42015-11-27 14:09:07 +0100245 RTC_CHECK(_codecDataBase.DeregisterExternalDecoder(payloadType));
Peter Boström395c7c62015-11-27 15:23:12 +0100246 return;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000247 }
perkj796cfaf2015-12-10 09:27:38 -0800248 _codecDataBase.RegisterExternalDecoder(externalDecoder, payloadType);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000249}
250
251// Register a frame type request callback.
252int32_t VideoReceiver::RegisterFrameTypeCallback(
253 VCMFrameTypeCallback* frameTypeCallback) {
stefan@webrtc.org8db81c52013-09-18 11:57:34 +0000254 CriticalSectionScoped cs(process_crit_sect_.get());
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000255 _frameTypeCallback = frameTypeCallback;
256 return VCM_OK;
257}
258
259int32_t VideoReceiver::RegisterPacketRequestCallback(
260 VCMPacketRequestCallback* callback) {
stefan@webrtc.org8db81c52013-09-18 11:57:34 +0000261 CriticalSectionScoped cs(process_crit_sect_.get());
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000262 _packetRequestCallback = callback;
263 return VCM_OK;
264}
265
266int VideoReceiver::RegisterRenderBufferSizeCallback(
267 VCMRenderBufferSizeCallback* callback) {
stefan@webrtc.org8db81c52013-09-18 11:57:34 +0000268 CriticalSectionScoped cs(process_crit_sect_.get());
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000269 render_buffer_callback_ = callback;
270 return VCM_OK;
271}
272
pbos@webrtc.org4dd40d62015-02-17 13:22:43 +0000273void VideoReceiver::TriggerDecoderShutdown() {
274 _receiver.TriggerDecoderShutdown();
275}
276
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000277// Decode next frame, blocking.
278// Should be called as often as possible to get the most out of the decoder.
279int32_t VideoReceiver::Decode(uint16_t maxWaitTimeMs) {
280 int64_t nextRenderTimeMs;
perkj796cfaf2015-12-10 09:27:38 -0800281 bool prefer_late_decoding = false;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000282 {
283 CriticalSectionScoped cs(_receiveCritSect);
perkj796cfaf2015-12-10 09:27:38 -0800284 prefer_late_decoding = _codecDataBase.PrefersLateDecoding();
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000285 }
286
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000287 VCMEncodedFrame* frame = _receiver.FrameForDecoding(
perkj796cfaf2015-12-10 09:27:38 -0800288 maxWaitTimeMs, nextRenderTimeMs, prefer_late_decoding);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000289
Peter Boströmb7d9a972015-12-18 16:01:11 +0100290 if (!frame)
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000291 return VCM_FRAME_NOT_READY;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000292
Peter Boströmb7d9a972015-12-18 16:01:11 +0100293 CriticalSectionScoped cs(_receiveCritSect);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000294
Peter Boströmb7d9a972015-12-18 16:01:11 +0100295 // If this frame was too late, we should adjust the delay accordingly
296 _timing.UpdateCurrentDelay(frame->RenderTimeMs(),
297 clock_->TimeInMilliseconds());
298
299 if (pre_decode_image_callback_) {
300 EncodedImage encoded_image(frame->EncodedImage());
301 int qp = -1;
302 if (qp_parser_.GetQp(*frame, &qp)) {
303 encoded_image.qp_ = qp;
sprang@webrtc.org40709352013-11-26 11:41:59 +0000304 }
Peter Boströmb7d9a972015-12-18 16:01:11 +0100305 pre_decode_image_callback_->Encoded(encoded_image, frame->CodecSpecific(),
306 NULL);
307 }
sprang@webrtc.org40709352013-11-26 11:41:59 +0000308
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000309#ifdef DEBUG_DECODER_BIT_STREAM
Peter Boströmb7d9a972015-12-18 16:01:11 +0100310 if (_bitStreamBeforeDecoder != NULL) {
311 // Write bit stream to file for debugging purposes
312 if (fwrite(frame->Buffer(), 1, frame->Length(), _bitStreamBeforeDecoder) !=
313 frame->Length()) {
314 return -1;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000315 }
316 }
Peter Boströmb7d9a972015-12-18 16:01:11 +0100317#endif
318 const int32_t ret = Decode(*frame);
319 _receiver.ReleaseFrame(frame);
320 return ret;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000321}
322
323int32_t VideoReceiver::RequestSliceLossIndication(
324 const uint64_t pictureID) const {
325 TRACE_EVENT1("webrtc", "RequestSLI", "picture_id", pictureID);
stefan@webrtc.org8db81c52013-09-18 11:57:34 +0000326 CriticalSectionScoped cs(process_crit_sect_.get());
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000327 if (_frameTypeCallback != NULL) {
328 const int32_t ret =
329 _frameTypeCallback->SliceLossIndicationRequest(pictureID);
330 if (ret < 0) {
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000331 return ret;
332 }
333 } else {
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000334 return VCM_MISSING_CALLBACK;
335 }
336 return VCM_OK;
337}
338
339int32_t VideoReceiver::RequestKeyFrame() {
340 TRACE_EVENT0("webrtc", "RequestKeyFrame");
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000341 CriticalSectionScoped process_cs(process_crit_sect_.get());
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000342 if (_frameTypeCallback != NULL) {
343 const int32_t ret = _frameTypeCallback->RequestKeyFrame();
344 if (ret < 0) {
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000345 return ret;
346 }
347 _scheduleKeyRequest = false;
348 } else {
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000349 return VCM_MISSING_CALLBACK;
350 }
351 return VCM_OK;
352}
353
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000354// Must be called from inside the receive side critical section.
355int32_t VideoReceiver::Decode(const VCMEncodedFrame& frame) {
356 TRACE_EVENT_ASYNC_STEP1("webrtc",
357 "Video",
358 frame.TimeStamp(),
359 "Decode",
360 "type",
361 frame.FrameType());
362 // Change decoder if payload type has changed
Peter Boströme997a7d2015-11-27 14:23:21 +0100363 _decoder = _codecDataBase.GetDecoder(frame, &_decodedFrameCallback);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000364 if (_decoder == NULL) {
365 return VCM_NO_CODEC_REGISTERED;
366 }
367 // Decode a frame
368 int32_t ret = _decoder->Decode(frame, clock_->TimeInMilliseconds());
369
370 // Check for failed decoding, run frame type request callback if needed.
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000371 bool request_key_frame = false;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000372 if (ret < 0) {
373 if (ret == VCM_ERROR_REQUEST_SLI) {
374 return RequestSliceLossIndication(
375 _decodedFrameCallback.LastReceivedPictureID() + 1);
376 } else {
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000377 request_key_frame = true;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000378 }
379 } else if (ret == VCM_REQUEST_SLI) {
380 ret = RequestSliceLossIndication(
381 _decodedFrameCallback.LastReceivedPictureID() + 1);
382 }
383 if (!frame.Complete() || frame.MissingFrame()) {
pbos081af252015-07-27 08:02:22 -0700384 request_key_frame = true;
385 ret = VCM_OK;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000386 }
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000387 if (request_key_frame) {
388 CriticalSectionScoped cs(process_crit_sect_.get());
389 _scheduleKeyRequest = true;
390 }
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000391 TRACE_EVENT_ASYNC_END0("webrtc", "Video", frame.TimeStamp());
392 return ret;
393}
394
395// Reset the decoder state
396int32_t VideoReceiver::ResetDecoder() {
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000397 bool reset_key_request = false;
398 {
399 CriticalSectionScoped cs(_receiveCritSect);
400 if (_decoder != NULL) {
Peter Boström5464a6e2015-04-21 16:35:50 +0200401 _receiver.Reset();
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000402 _timing.Reset();
403 reset_key_request = true;
404 _decoder->Reset();
stefan@webrtc.org8db81c52013-09-18 11:57:34 +0000405 }
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000406 }
stefan@webrtc.orgf7c6e742014-01-29 10:27:51 +0000407 if (reset_key_request) {
408 CriticalSectionScoped cs(process_crit_sect_.get());
409 _scheduleKeyRequest = false;
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000410 }
411 return VCM_OK;
412}
413
414// Register possible receive codecs, can be called multiple times
415int32_t VideoReceiver::RegisterReceiveCodec(const VideoCodec* receiveCodec,
416 int32_t numberOfCores,
417 bool requireKeyFrame) {
418 CriticalSectionScoped cs(_receiveCritSect);
419 if (receiveCodec == NULL) {
420 return VCM_PARAMETER_ERROR;
421 }
422 if (!_codecDataBase.RegisterReceiveCodec(
423 receiveCodec, numberOfCores, requireKeyFrame)) {
424 return -1;
425 }
426 return 0;
427}
428
429// Get current received codec
430int32_t VideoReceiver::ReceiveCodec(VideoCodec* currentReceiveCodec) const {
431 CriticalSectionScoped cs(_receiveCritSect);
432 if (currentReceiveCodec == NULL) {
433 return VCM_PARAMETER_ERROR;
434 }
435 return _codecDataBase.ReceiveCodec(currentReceiveCodec) ? 0 : -1;
436}
437
438// Get current received codec
439VideoCodecType VideoReceiver::ReceiveCodec() const {
440 CriticalSectionScoped cs(_receiveCritSect);
441 return _codecDataBase.ReceiveCodec();
442}
443
444// Incoming packet from network parsed and ready for decode, non blocking.
445int32_t VideoReceiver::IncomingPacket(const uint8_t* incomingPayload,
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +0000446 size_t payloadLength,
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000447 const WebRtcRTPHeader& rtpInfo) {
448 if (rtpInfo.frameType == kVideoFrameKey) {
449 TRACE_EVENT1("webrtc",
450 "VCM::PacketKeyFrame",
451 "seqnum",
452 rtpInfo.header.sequenceNumber);
453 }
454 if (incomingPayload == NULL) {
455 // The jitter buffer doesn't handle non-zero payload lengths for packets
456 // without payload.
457 // TODO(holmer): We should fix this in the jitter buffer.
458 payloadLength = 0;
459 }
460 const VCMPacket packet(incomingPayload, payloadLength, rtpInfo);
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000461 int32_t ret = _receiver.InsertPacket(packet, rtpInfo.type.Video.width,
462 rtpInfo.type.Video.height);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000463 // TODO(holmer): Investigate if this somehow should use the key frame
464 // request scheduling to throttle the requests.
465 if (ret == VCM_FLUSH_INDICATOR) {
466 RequestKeyFrame();
467 ResetDecoder();
468 } else if (ret < 0) {
469 return ret;
470 }
471 return VCM_OK;
472}
473
474// Minimum playout delay (used for lip-sync). This is the minimum delay required
475// to sync with audio. Not included in VideoCodingModule::Delay()
476// Defaults to 0 ms.
477int32_t VideoReceiver::SetMinimumPlayoutDelay(uint32_t minPlayoutDelayMs) {
478 _timing.set_min_playout_delay(minPlayoutDelayMs);
479 return VCM_OK;
480}
481
482// The estimated delay caused by rendering, defaults to
483// kDefaultRenderDelayMs = 10 ms
484int32_t VideoReceiver::SetRenderDelay(uint32_t timeMS) {
485 _timing.set_render_delay(timeMS);
486 return VCM_OK;
487}
488
489// Current video delay
490int32_t VideoReceiver::Delay() const { return _timing.TargetVideoDelay(); }
491
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000492uint32_t VideoReceiver::DiscardedPackets() const {
493 return _receiver.DiscardedPackets();
494}
495
496int VideoReceiver::SetReceiverRobustnessMode(
497 ReceiverRobustness robustnessMode,
498 VCMDecodeErrorMode decode_error_mode) {
499 CriticalSectionScoped cs(_receiveCritSect);
500 switch (robustnessMode) {
501 case VideoCodingModule::kNone:
502 _receiver.SetNackMode(kNoNack, -1, -1);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000503 break;
504 case VideoCodingModule::kHardNack:
505 // Always wait for retransmissions (except when decoding with errors).
506 _receiver.SetNackMode(kNack, -1, -1);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000507 break;
508 case VideoCodingModule::kSoftNack:
pbos@webrtc.org0e65fda2014-03-21 10:26:42 +0000509#if 1
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000510 assert(false); // TODO(hlundin): Not completed.
511 return VCM_NOT_IMPLEMENTED;
pbos@webrtc.org0e65fda2014-03-21 10:26:42 +0000512#else
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000513 // Enable hybrid NACK/FEC. Always wait for retransmissions and don't add
514 // extra delay when RTT is above kLowRttNackMs.
515 _receiver.SetNackMode(kNack, media_optimization::kLowRttNackMs, -1);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000516 break;
pbos@webrtc.org0e65fda2014-03-21 10:26:42 +0000517#endif
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000518 case VideoCodingModule::kReferenceSelection:
pbos@webrtc.org0e65fda2014-03-21 10:26:42 +0000519#if 1
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000520 assert(false); // TODO(hlundin): Not completed.
521 return VCM_NOT_IMPLEMENTED;
pbos@webrtc.org0e65fda2014-03-21 10:26:42 +0000522#else
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000523 if (decode_error_mode == kNoErrors) {
524 return VCM_PARAMETER_ERROR;
525 }
526 _receiver.SetNackMode(kNoNack, -1, -1);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000527 break;
pbos@webrtc.org0e65fda2014-03-21 10:26:42 +0000528#endif
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000529 }
530 _receiver.SetDecodeErrorMode(decode_error_mode);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000531 return VCM_OK;
532}
533
534void VideoReceiver::SetDecodeErrorMode(VCMDecodeErrorMode decode_error_mode) {
535 CriticalSectionScoped cs(_receiveCritSect);
536 _receiver.SetDecodeErrorMode(decode_error_mode);
537}
538
539void VideoReceiver::SetNackSettings(size_t max_nack_list_size,
540 int max_packet_age_to_nack,
541 int max_incomplete_time_ms) {
542 if (max_nack_list_size != 0) {
stefan@webrtc.org8db81c52013-09-18 11:57:34 +0000543 CriticalSectionScoped process_cs(process_crit_sect_.get());
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000544 max_nack_list_size_ = max_nack_list_size;
545 }
546 _receiver.SetNackSettings(
547 max_nack_list_size, max_packet_age_to_nack, max_incomplete_time_ms);
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000548}
549
550int VideoReceiver::SetMinReceiverDelay(int desired_delay_ms) {
551 return _receiver.SetMinReceiverDelay(desired_delay_ms);
552}
553
sprang@webrtc.org40709352013-11-26 11:41:59 +0000554void VideoReceiver::RegisterPreDecodeImageCallback(
555 EncodedImageCallback* observer) {
556 CriticalSectionScoped cs(_receiveCritSect);
557 pre_decode_image_callback_ = observer;
558}
559
andresp@webrtc.orgf7eb75b2013-09-14 00:25:28 +0000560} // namespace vcm
561} // namespace webrtc