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1 /* | |
2 * Copyright (c) 2015 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 | |
12 #include "webrtc/sdk/objc/Framework/Classes/h264_video_toolbox_encoder.h" | |
13 | |
14 #include <memory> | |
15 #include <string> | |
16 #include <vector> | |
17 | |
18 #if defined(WEBRTC_IOS) | |
19 #import "WebRTC/UIDevice+RTCDevice.h" | |
20 #include "RTCUIApplication.h" | |
21 #endif | |
22 #include "libyuv/convert_from.h" | |
23 #include "webrtc/base/checks.h" | |
24 #include "webrtc/base/logging.h" | |
25 #include "webrtc/common_video/include/corevideo_frame_buffer.h" | |
26 #include "webrtc/sdk/objc/Framework/Classes/h264_video_toolbox_nalu.h" | |
27 #include "webrtc/system_wrappers/include/clock.h" | |
28 | |
29 namespace internal { | |
30 | |
31 // The ratio between kVTCompressionPropertyKey_DataRateLimits and | |
32 // kVTCompressionPropertyKey_AverageBitRate. The data rate limit is set higher | |
33 // than the average bit rate to avoid undershooting the target. | |
34 const float kLimitToAverageBitRateFactor = 1.5f; | |
35 // These thresholds deviate from the default h264 QP thresholds, as they | |
36 // have been found to work better on devices that support VideoToolbox | |
37 const int kLowH264QpThreshold = 28; | |
38 const int kHighH264QpThreshold = 39; | |
39 | |
40 // Convenience function for creating a dictionary. | |
41 inline CFDictionaryRef CreateCFDictionary(CFTypeRef* keys, | |
42 CFTypeRef* values, | |
43 size_t size) { | |
44 return CFDictionaryCreate(kCFAllocatorDefault, keys, values, size, | |
45 &kCFTypeDictionaryKeyCallBacks, | |
46 &kCFTypeDictionaryValueCallBacks); | |
47 } | |
48 | |
49 // Copies characters from a CFStringRef into a std::string. | |
50 std::string CFStringToString(const CFStringRef cf_string) { | |
51 RTC_DCHECK(cf_string); | |
52 std::string std_string; | |
53 // Get the size needed for UTF8 plus terminating character. | |
54 size_t buffer_size = | |
55 CFStringGetMaximumSizeForEncoding(CFStringGetLength(cf_string), | |
56 kCFStringEncodingUTF8) + | |
57 1; | |
58 std::unique_ptr<char[]> buffer(new char[buffer_size]); | |
59 if (CFStringGetCString(cf_string, buffer.get(), buffer_size, | |
60 kCFStringEncodingUTF8)) { | |
61 // Copy over the characters. | |
62 std_string.assign(buffer.get()); | |
63 } | |
64 return std_string; | |
65 } | |
66 | |
67 // Convenience function for setting a VT property. | |
68 void SetVTSessionProperty(VTSessionRef session, | |
69 CFStringRef key, | |
70 int32_t value) { | |
71 CFNumberRef cfNum = | |
72 CFNumberCreate(kCFAllocatorDefault, kCFNumberSInt32Type, &value); | |
73 OSStatus status = VTSessionSetProperty(session, key, cfNum); | |
74 CFRelease(cfNum); | |
75 if (status != noErr) { | |
76 std::string key_string = CFStringToString(key); | |
77 LOG(LS_ERROR) << "VTSessionSetProperty failed to set: " << key_string | |
78 << " to " << value << ": " << status; | |
79 } | |
80 } | |
81 | |
82 // Convenience function for setting a VT property. | |
83 void SetVTSessionProperty(VTSessionRef session, | |
84 CFStringRef key, | |
85 uint32_t value) { | |
86 int64_t value_64 = value; | |
87 CFNumberRef cfNum = | |
88 CFNumberCreate(kCFAllocatorDefault, kCFNumberSInt64Type, &value_64); | |
89 OSStatus status = VTSessionSetProperty(session, key, cfNum); | |
90 CFRelease(cfNum); | |
91 if (status != noErr) { | |
92 std::string key_string = CFStringToString(key); | |
93 LOG(LS_ERROR) << "VTSessionSetProperty failed to set: " << key_string | |
94 << " to " << value << ": " << status; | |
95 } | |
96 } | |
97 | |
98 // Convenience function for setting a VT property. | |
99 void SetVTSessionProperty(VTSessionRef session, CFStringRef key, bool value) { | |
100 CFBooleanRef cf_bool = (value) ? kCFBooleanTrue : kCFBooleanFalse; | |
101 OSStatus status = VTSessionSetProperty(session, key, cf_bool); | |
102 if (status != noErr) { | |
103 std::string key_string = CFStringToString(key); | |
104 LOG(LS_ERROR) << "VTSessionSetProperty failed to set: " << key_string | |
105 << " to " << value << ": " << status; | |
106 } | |
107 } | |
108 | |
109 // Convenience function for setting a VT property. | |
110 void SetVTSessionProperty(VTSessionRef session, | |
111 CFStringRef key, | |
112 CFStringRef value) { | |
113 OSStatus status = VTSessionSetProperty(session, key, value); | |
114 if (status != noErr) { | |
115 std::string key_string = CFStringToString(key); | |
116 std::string val_string = CFStringToString(value); | |
117 LOG(LS_ERROR) << "VTSessionSetProperty failed to set: " << key_string | |
118 << " to " << val_string << ": " << status; | |
119 } | |
120 } | |
121 | |
122 // Struct that we pass to the encoder per frame to encode. We receive it again | |
123 // in the encoder callback. | |
124 struct FrameEncodeParams { | |
125 FrameEncodeParams(webrtc::H264VideoToolboxEncoder* e, | |
126 const webrtc::CodecSpecificInfo* csi, | |
127 int32_t w, | |
128 int32_t h, | |
129 int64_t rtms, | |
130 uint32_t ts, | |
131 webrtc::VideoRotation r) | |
132 : encoder(e), | |
133 width(w), | |
134 height(h), | |
135 render_time_ms(rtms), | |
136 timestamp(ts), | |
137 rotation(r) { | |
138 if (csi) { | |
139 codec_specific_info = *csi; | |
140 } else { | |
141 codec_specific_info.codecType = webrtc::kVideoCodecH264; | |
142 } | |
143 } | |
144 | |
145 webrtc::H264VideoToolboxEncoder* encoder; | |
146 webrtc::CodecSpecificInfo codec_specific_info; | |
147 int32_t width; | |
148 int32_t height; | |
149 int64_t render_time_ms; | |
150 uint32_t timestamp; | |
151 webrtc::VideoRotation rotation; | |
152 }; | |
153 | |
154 // We receive I420Frames as input, but we need to feed CVPixelBuffers into the | |
155 // encoder. This performs the copy and format conversion. | |
156 // TODO(tkchin): See if encoder will accept i420 frames and compare performance. | |
157 bool CopyVideoFrameToPixelBuffer( | |
158 const rtc::scoped_refptr<webrtc::VideoFrameBuffer>& frame, | |
159 CVPixelBufferRef pixel_buffer) { | |
160 RTC_DCHECK(pixel_buffer); | |
161 RTC_DCHECK_EQ(CVPixelBufferGetPixelFormatType(pixel_buffer), | |
162 kCVPixelFormatType_420YpCbCr8BiPlanarFullRange); | |
163 RTC_DCHECK_EQ(CVPixelBufferGetHeightOfPlane(pixel_buffer, 0), | |
164 static_cast<size_t>(frame->height())); | |
165 RTC_DCHECK_EQ(CVPixelBufferGetWidthOfPlane(pixel_buffer, 0), | |
166 static_cast<size_t>(frame->width())); | |
167 | |
168 CVReturn cvRet = CVPixelBufferLockBaseAddress(pixel_buffer, 0); | |
169 if (cvRet != kCVReturnSuccess) { | |
170 LOG(LS_ERROR) << "Failed to lock base address: " << cvRet; | |
171 return false; | |
172 } | |
173 uint8_t* dst_y = reinterpret_cast<uint8_t*>( | |
174 CVPixelBufferGetBaseAddressOfPlane(pixel_buffer, 0)); | |
175 int dst_stride_y = CVPixelBufferGetBytesPerRowOfPlane(pixel_buffer, 0); | |
176 uint8_t* dst_uv = reinterpret_cast<uint8_t*>( | |
177 CVPixelBufferGetBaseAddressOfPlane(pixel_buffer, 1)); | |
178 int dst_stride_uv = CVPixelBufferGetBytesPerRowOfPlane(pixel_buffer, 1); | |
179 // Convert I420 to NV12. | |
180 int ret = libyuv::I420ToNV12( | |
181 frame->DataY(), frame->StrideY(), | |
182 frame->DataU(), frame->StrideU(), | |
183 frame->DataV(), frame->StrideV(), | |
184 dst_y, dst_stride_y, dst_uv, dst_stride_uv, | |
185 frame->width(), frame->height()); | |
186 CVPixelBufferUnlockBaseAddress(pixel_buffer, 0); | |
187 if (ret) { | |
188 LOG(LS_ERROR) << "Error converting I420 VideoFrame to NV12 :" << ret; | |
189 return false; | |
190 } | |
191 return true; | |
192 } | |
193 | |
194 CVPixelBufferRef CreatePixelBuffer(CVPixelBufferPoolRef pixel_buffer_pool) { | |
195 if (!pixel_buffer_pool) { | |
196 LOG(LS_ERROR) << "Failed to get pixel buffer pool."; | |
197 return nullptr; | |
198 } | |
199 CVPixelBufferRef pixel_buffer; | |
200 CVReturn ret = CVPixelBufferPoolCreatePixelBuffer(nullptr, pixel_buffer_pool, | |
201 &pixel_buffer); | |
202 if (ret != kCVReturnSuccess) { | |
203 LOG(LS_ERROR) << "Failed to create pixel buffer: " << ret; | |
204 // We probably want to drop frames here, since failure probably means | |
205 // that the pool is empty. | |
206 return nullptr; | |
207 } | |
208 return pixel_buffer; | |
209 } | |
210 | |
211 // This is the callback function that VideoToolbox calls when encode is | |
212 // complete. From inspection this happens on its own queue. | |
213 void VTCompressionOutputCallback(void* encoder, | |
214 void* params, | |
215 OSStatus status, | |
216 VTEncodeInfoFlags info_flags, | |
217 CMSampleBufferRef sample_buffer) { | |
218 std::unique_ptr<FrameEncodeParams> encode_params( | |
219 reinterpret_cast<FrameEncodeParams*>(params)); | |
220 encode_params->encoder->OnEncodedFrame( | |
221 status, info_flags, sample_buffer, encode_params->codec_specific_info, | |
222 encode_params->width, encode_params->height, | |
223 encode_params->render_time_ms, encode_params->timestamp, | |
224 encode_params->rotation); | |
225 } | |
226 | |
227 } // namespace internal | |
228 | |
229 namespace webrtc { | |
230 | |
231 // .5 is set as a mininum to prevent overcompensating for large temporary | |
232 // overshoots. We don't want to degrade video quality too badly. | |
233 // .95 is set to prevent oscillations. When a lower bitrate is set on the | |
234 // encoder than previously set, its output seems to have a brief period of | |
235 // drastically reduced bitrate, so we want to avoid that. In steady state | |
236 // conditions, 0.95 seems to give us better overall bitrate over long periods | |
237 // of time. | |
238 H264VideoToolboxEncoder::H264VideoToolboxEncoder() | |
239 : callback_(nullptr), | |
240 compression_session_(nullptr), | |
241 bitrate_adjuster_(Clock::GetRealTimeClock(), .5, .95) { | |
242 } | |
243 | |
244 H264VideoToolboxEncoder::~H264VideoToolboxEncoder() { | |
245 DestroyCompressionSession(); | |
246 } | |
247 | |
248 int H264VideoToolboxEncoder::InitEncode(const VideoCodec* codec_settings, | |
249 int number_of_cores, | |
250 size_t max_payload_size) { | |
251 RTC_DCHECK(codec_settings); | |
252 RTC_DCHECK_EQ(codec_settings->codecType, kVideoCodecH264); | |
253 { | |
254 rtc::CritScope lock(&quality_scaler_crit_); | |
255 quality_scaler_.Init(internal::kLowH264QpThreshold, | |
256 internal::kHighH264QpThreshold, | |
257 codec_settings->startBitrate, codec_settings->width, | |
258 codec_settings->height, codec_settings->maxFramerate); | |
259 QualityScaler::Resolution res = quality_scaler_.GetScaledResolution(); | |
260 // TODO(tkchin): We may need to enforce width/height dimension restrictions | |
261 // to match what the encoder supports. | |
262 width_ = res.width; | |
263 height_ = res.height; | |
264 } | |
265 // We can only set average bitrate on the HW encoder. | |
266 target_bitrate_bps_ = codec_settings->startBitrate; | |
267 bitrate_adjuster_.SetTargetBitrateBps(target_bitrate_bps_); | |
268 | |
269 // TODO(tkchin): Try setting payload size via | |
270 // kVTCompressionPropertyKey_MaxH264SliceBytes. | |
271 | |
272 return ResetCompressionSession(); | |
273 } | |
274 | |
275 int H264VideoToolboxEncoder::Encode( | |
276 const VideoFrame& frame, | |
277 const CodecSpecificInfo* codec_specific_info, | |
278 const std::vector<FrameType>* frame_types) { | |
279 RTC_DCHECK(!frame.IsZeroSize()); | |
280 if (!callback_ || !compression_session_) { | |
281 return WEBRTC_VIDEO_CODEC_UNINITIALIZED; | |
282 } | |
283 #if defined(WEBRTC_IOS) | |
284 if (!RTCIsUIApplicationActive()) { | |
285 // Ignore all encode requests when app isn't active. In this state, the | |
286 // hardware encoder has been invalidated by the OS. | |
287 return WEBRTC_VIDEO_CODEC_OK; | |
288 } | |
289 #endif | |
290 bool is_keyframe_required = false; | |
291 | |
292 quality_scaler_.OnEncodeFrame(frame.width(), frame.height()); | |
293 const QualityScaler::Resolution scaled_res = | |
294 quality_scaler_.GetScaledResolution(); | |
295 | |
296 if (scaled_res.width != width_ || scaled_res.height != height_) { | |
297 width_ = scaled_res.width; | |
298 height_ = scaled_res.height; | |
299 int ret = ResetCompressionSession(); | |
300 if (ret < 0) | |
301 return ret; | |
302 } | |
303 | |
304 // Get a pixel buffer from the pool and copy frame data over. | |
305 CVPixelBufferPoolRef pixel_buffer_pool = | |
306 VTCompressionSessionGetPixelBufferPool(compression_session_); | |
307 #if defined(WEBRTC_IOS) | |
308 if (!pixel_buffer_pool) { | |
309 // Kind of a hack. On backgrounding, the compression session seems to get | |
310 // invalidated, which causes this pool call to fail when the application | |
311 // is foregrounded and frames are being sent for encoding again. | |
312 // Resetting the session when this happens fixes the issue. | |
313 // In addition we request a keyframe so video can recover quickly. | |
314 ResetCompressionSession(); | |
315 pixel_buffer_pool = | |
316 VTCompressionSessionGetPixelBufferPool(compression_session_); | |
317 is_keyframe_required = true; | |
318 LOG(LS_INFO) << "Resetting compression session due to invalid pool."; | |
319 } | |
320 #endif | |
321 | |
322 CVPixelBufferRef pixel_buffer = static_cast<CVPixelBufferRef>( | |
323 frame.video_frame_buffer()->native_handle()); | |
324 if (pixel_buffer) { | |
325 // Native frame. | |
326 rtc::scoped_refptr<CoreVideoFrameBuffer> core_video_frame_buffer( | |
327 static_cast<CoreVideoFrameBuffer*>(frame.video_frame_buffer().get())); | |
328 if (!core_video_frame_buffer->RequiresCropping()) { | |
329 // This pixel buffer might have a higher resolution than what the | |
330 // compression session is configured to. The compression session can | |
331 // handle that and will output encoded frames in the configured | |
332 // resolution regardless of the input pixel buffer resolution. | |
333 CVBufferRetain(pixel_buffer); | |
334 } else { | |
335 // Cropping required, we need to crop and scale to a new pixel buffer. | |
336 pixel_buffer = internal::CreatePixelBuffer(pixel_buffer_pool); | |
337 if (!pixel_buffer) { | |
338 return WEBRTC_VIDEO_CODEC_ERROR; | |
339 } | |
340 if (!core_video_frame_buffer->CropAndScaleTo(&nv12_scale_buffer_, | |
341 pixel_buffer)) { | |
342 return WEBRTC_VIDEO_CODEC_ERROR; | |
343 } | |
344 } | |
345 } else { | |
346 pixel_buffer = internal::CreatePixelBuffer(pixel_buffer_pool); | |
347 if (!pixel_buffer) { | |
348 return WEBRTC_VIDEO_CODEC_ERROR; | |
349 } | |
350 // TODO(magjed): Optimize by merging scaling and NV12 pixel buffer | |
351 // conversion once libyuv::MergeUVPlanes is available. | |
352 rtc::scoped_refptr<VideoFrameBuffer> scaled_i420_buffer = | |
353 quality_scaler_.GetScaledBuffer(frame.video_frame_buffer()); | |
354 if (!internal::CopyVideoFrameToPixelBuffer(scaled_i420_buffer, | |
355 pixel_buffer)) { | |
356 LOG(LS_ERROR) << "Failed to copy frame data."; | |
357 CVBufferRelease(pixel_buffer); | |
358 return WEBRTC_VIDEO_CODEC_ERROR; | |
359 } | |
360 } | |
361 | |
362 // Check if we need a keyframe. | |
363 if (!is_keyframe_required && frame_types) { | |
364 for (auto frame_type : *frame_types) { | |
365 if (frame_type == kVideoFrameKey) { | |
366 is_keyframe_required = true; | |
367 break; | |
368 } | |
369 } | |
370 } | |
371 | |
372 CMTime presentation_time_stamp = | |
373 CMTimeMake(frame.render_time_ms(), 1000); | |
374 CFDictionaryRef frame_properties = nullptr; | |
375 if (is_keyframe_required) { | |
376 CFTypeRef keys[] = {kVTEncodeFrameOptionKey_ForceKeyFrame}; | |
377 CFTypeRef values[] = {kCFBooleanTrue}; | |
378 frame_properties = internal::CreateCFDictionary(keys, values, 1); | |
379 } | |
380 std::unique_ptr<internal::FrameEncodeParams> encode_params; | |
381 encode_params.reset(new internal::FrameEncodeParams( | |
382 this, codec_specific_info, width_, height_, frame.render_time_ms(), | |
383 frame.timestamp(), frame.rotation())); | |
384 | |
385 // Update the bitrate if needed. | |
386 SetBitrateBps(bitrate_adjuster_.GetAdjustedBitrateBps()); | |
387 | |
388 OSStatus status = VTCompressionSessionEncodeFrame( | |
389 compression_session_, pixel_buffer, presentation_time_stamp, | |
390 kCMTimeInvalid, frame_properties, encode_params.release(), nullptr); | |
391 if (frame_properties) { | |
392 CFRelease(frame_properties); | |
393 } | |
394 if (pixel_buffer) { | |
395 CVBufferRelease(pixel_buffer); | |
396 } | |
397 if (status != noErr) { | |
398 LOG(LS_ERROR) << "Failed to encode frame with code: " << status; | |
399 return WEBRTC_VIDEO_CODEC_ERROR; | |
400 } | |
401 return WEBRTC_VIDEO_CODEC_OK; | |
402 } | |
403 | |
404 int H264VideoToolboxEncoder::RegisterEncodeCompleteCallback( | |
405 EncodedImageCallback* callback) { | |
406 callback_ = callback; | |
407 return WEBRTC_VIDEO_CODEC_OK; | |
408 } | |
409 | |
410 void H264VideoToolboxEncoder::OnDroppedFrame() { | |
411 rtc::CritScope lock(&quality_scaler_crit_); | |
412 quality_scaler_.ReportDroppedFrame(); | |
413 } | |
414 | |
415 int H264VideoToolboxEncoder::SetChannelParameters(uint32_t packet_loss, | |
416 int64_t rtt) { | |
417 // Encoder doesn't know anything about packet loss or rtt so just return. | |
418 return WEBRTC_VIDEO_CODEC_OK; | |
419 } | |
420 | |
421 int H264VideoToolboxEncoder::SetRates(uint32_t new_bitrate_kbit, | |
422 uint32_t frame_rate) { | |
423 target_bitrate_bps_ = 1000 * new_bitrate_kbit; | |
424 bitrate_adjuster_.SetTargetBitrateBps(target_bitrate_bps_); | |
425 SetBitrateBps(bitrate_adjuster_.GetAdjustedBitrateBps()); | |
426 | |
427 rtc::CritScope lock(&quality_scaler_crit_); | |
428 quality_scaler_.ReportFramerate(frame_rate); | |
429 | |
430 return WEBRTC_VIDEO_CODEC_OK; | |
431 } | |
432 | |
433 int H264VideoToolboxEncoder::Release() { | |
434 // Need to reset so that the session is invalidated and won't use the | |
435 // callback anymore. Do not remove callback until the session is invalidated | |
436 // since async encoder callbacks can occur until invalidation. | |
437 int ret = ResetCompressionSession(); | |
438 callback_ = nullptr; | |
439 return ret; | |
440 } | |
441 | |
442 int H264VideoToolboxEncoder::ResetCompressionSession() { | |
443 DestroyCompressionSession(); | |
444 | |
445 // Set source image buffer attributes. These attributes will be present on | |
446 // buffers retrieved from the encoder's pixel buffer pool. | |
447 const size_t attributes_size = 3; | |
448 CFTypeRef keys[attributes_size] = { | |
449 #if defined(WEBRTC_IOS) | |
450 kCVPixelBufferOpenGLESCompatibilityKey, | |
451 #elif defined(WEBRTC_MAC) | |
452 kCVPixelBufferOpenGLCompatibilityKey, | |
453 #endif | |
454 kCVPixelBufferIOSurfacePropertiesKey, | |
455 kCVPixelBufferPixelFormatTypeKey | |
456 }; | |
457 CFDictionaryRef io_surface_value = | |
458 internal::CreateCFDictionary(nullptr, nullptr, 0); | |
459 int64_t nv12type = kCVPixelFormatType_420YpCbCr8BiPlanarFullRange; | |
460 CFNumberRef pixel_format = | |
461 CFNumberCreate(nullptr, kCFNumberLongType, &nv12type); | |
462 CFTypeRef values[attributes_size] = {kCFBooleanTrue, io_surface_value, | |
463 pixel_format}; | |
464 CFDictionaryRef source_attributes = | |
465 internal::CreateCFDictionary(keys, values, attributes_size); | |
466 if (io_surface_value) { | |
467 CFRelease(io_surface_value); | |
468 io_surface_value = nullptr; | |
469 } | |
470 if (pixel_format) { | |
471 CFRelease(pixel_format); | |
472 pixel_format = nullptr; | |
473 } | |
474 OSStatus status = VTCompressionSessionCreate( | |
475 nullptr, // use default allocator | |
476 width_, height_, kCMVideoCodecType_H264, | |
477 nullptr, // use default encoder | |
478 source_attributes, | |
479 nullptr, // use default compressed data allocator | |
480 internal::VTCompressionOutputCallback, this, &compression_session_); | |
481 if (source_attributes) { | |
482 CFRelease(source_attributes); | |
483 source_attributes = nullptr; | |
484 } | |
485 if (status != noErr) { | |
486 LOG(LS_ERROR) << "Failed to create compression session: " << status; | |
487 return WEBRTC_VIDEO_CODEC_ERROR; | |
488 } | |
489 ConfigureCompressionSession(); | |
490 return WEBRTC_VIDEO_CODEC_OK; | |
491 } | |
492 | |
493 void H264VideoToolboxEncoder::ConfigureCompressionSession() { | |
494 RTC_DCHECK(compression_session_); | |
495 internal::SetVTSessionProperty(compression_session_, | |
496 kVTCompressionPropertyKey_RealTime, true); | |
497 internal::SetVTSessionProperty(compression_session_, | |
498 kVTCompressionPropertyKey_ProfileLevel, | |
499 kVTProfileLevel_H264_Baseline_AutoLevel); | |
500 internal::SetVTSessionProperty(compression_session_, | |
501 kVTCompressionPropertyKey_AllowFrameReordering, | |
502 false); | |
503 SetEncoderBitrateBps(target_bitrate_bps_); | |
504 // TODO(tkchin): Look at entropy mode and colorspace matrices. | |
505 // TODO(tkchin): Investigate to see if there's any way to make this work. | |
506 // May need it to interop with Android. Currently this call just fails. | |
507 // On inspecting encoder output on iOS8, this value is set to 6. | |
508 // internal::SetVTSessionProperty(compression_session_, | |
509 // kVTCompressionPropertyKey_MaxFrameDelayCount, | |
510 // 1); | |
511 | |
512 // Set a relatively large value for keyframe emission (7200 frames or | |
513 // 4 minutes). | |
514 internal::SetVTSessionProperty( | |
515 compression_session_, | |
516 kVTCompressionPropertyKey_MaxKeyFrameInterval, 7200); | |
517 internal::SetVTSessionProperty( | |
518 compression_session_, | |
519 kVTCompressionPropertyKey_MaxKeyFrameIntervalDuration, 240); | |
520 } | |
521 | |
522 void H264VideoToolboxEncoder::DestroyCompressionSession() { | |
523 if (compression_session_) { | |
524 VTCompressionSessionInvalidate(compression_session_); | |
525 CFRelease(compression_session_); | |
526 compression_session_ = nullptr; | |
527 } | |
528 } | |
529 | |
530 const char* H264VideoToolboxEncoder::ImplementationName() const { | |
531 return "VideoToolbox"; | |
532 } | |
533 | |
534 bool H264VideoToolboxEncoder::SupportsNativeHandle() const { | |
535 return true; | |
536 } | |
537 | |
538 void H264VideoToolboxEncoder::SetBitrateBps(uint32_t bitrate_bps) { | |
539 if (encoder_bitrate_bps_ != bitrate_bps) { | |
540 SetEncoderBitrateBps(bitrate_bps); | |
541 } | |
542 } | |
543 | |
544 void H264VideoToolboxEncoder::SetEncoderBitrateBps(uint32_t bitrate_bps) { | |
545 if (compression_session_) { | |
546 internal::SetVTSessionProperty(compression_session_, | |
547 kVTCompressionPropertyKey_AverageBitRate, | |
548 bitrate_bps); | |
549 | |
550 // TODO(tkchin): Add a helper method to set array value. | |
551 int64_t data_limit_bytes_per_second_value = static_cast<int64_t>( | |
552 bitrate_bps * internal::kLimitToAverageBitRateFactor / 8); | |
553 CFNumberRef bytes_per_second = | |
554 CFNumberCreate(kCFAllocatorDefault, | |
555 kCFNumberSInt64Type, | |
556 &data_limit_bytes_per_second_value); | |
557 int64_t one_second_value = 1; | |
558 CFNumberRef one_second = | |
559 CFNumberCreate(kCFAllocatorDefault, | |
560 kCFNumberSInt64Type, | |
561 &one_second_value); | |
562 const void* nums[2] = { bytes_per_second, one_second }; | |
563 CFArrayRef data_rate_limits = | |
564 CFArrayCreate(nullptr, nums, 2, &kCFTypeArrayCallBacks); | |
565 OSStatus status = | |
566 VTSessionSetProperty(compression_session_, | |
567 kVTCompressionPropertyKey_DataRateLimits, | |
568 data_rate_limits); | |
569 if (bytes_per_second) { | |
570 CFRelease(bytes_per_second); | |
571 } | |
572 if (one_second) { | |
573 CFRelease(one_second); | |
574 } | |
575 if (data_rate_limits) { | |
576 CFRelease(data_rate_limits); | |
577 } | |
578 if (status != noErr) { | |
579 LOG(LS_ERROR) << "Failed to set data rate limit"; | |
580 } | |
581 | |
582 encoder_bitrate_bps_ = bitrate_bps; | |
583 } | |
584 } | |
585 | |
586 void H264VideoToolboxEncoder::OnEncodedFrame( | |
587 OSStatus status, | |
588 VTEncodeInfoFlags info_flags, | |
589 CMSampleBufferRef sample_buffer, | |
590 CodecSpecificInfo codec_specific_info, | |
591 int32_t width, | |
592 int32_t height, | |
593 int64_t render_time_ms, | |
594 uint32_t timestamp, | |
595 VideoRotation rotation) { | |
596 if (status != noErr) { | |
597 LOG(LS_ERROR) << "H264 encode failed."; | |
598 return; | |
599 } | |
600 if (info_flags & kVTEncodeInfo_FrameDropped) { | |
601 LOG(LS_INFO) << "H264 encode dropped frame."; | |
602 rtc::CritScope lock(&quality_scaler_crit_); | |
603 quality_scaler_.ReportDroppedFrame(); | |
604 return; | |
605 } | |
606 | |
607 bool is_keyframe = false; | |
608 CFArrayRef attachments = | |
609 CMSampleBufferGetSampleAttachmentsArray(sample_buffer, 0); | |
610 if (attachments != nullptr && CFArrayGetCount(attachments)) { | |
611 CFDictionaryRef attachment = | |
612 static_cast<CFDictionaryRef>(CFArrayGetValueAtIndex(attachments, 0)); | |
613 is_keyframe = | |
614 !CFDictionaryContainsKey(attachment, kCMSampleAttachmentKey_NotSync); | |
615 } | |
616 | |
617 if (is_keyframe) { | |
618 LOG(LS_INFO) << "Generated keyframe"; | |
619 } | |
620 | |
621 // Convert the sample buffer into a buffer suitable for RTP packetization. | |
622 // TODO(tkchin): Allocate buffers through a pool. | |
623 std::unique_ptr<rtc::Buffer> buffer(new rtc::Buffer()); | |
624 std::unique_ptr<webrtc::RTPFragmentationHeader> header; | |
625 { | |
626 webrtc::RTPFragmentationHeader* header_raw; | |
627 bool result = H264CMSampleBufferToAnnexBBuffer(sample_buffer, is_keyframe, | |
628 buffer.get(), &header_raw); | |
629 header.reset(header_raw); | |
630 if (!result) { | |
631 return; | |
632 } | |
633 } | |
634 webrtc::EncodedImage frame(buffer->data(), buffer->size(), buffer->size()); | |
635 frame._encodedWidth = width; | |
636 frame._encodedHeight = height; | |
637 frame._completeFrame = true; | |
638 frame._frameType = | |
639 is_keyframe ? webrtc::kVideoFrameKey : webrtc::kVideoFrameDelta; | |
640 frame.capture_time_ms_ = render_time_ms; | |
641 frame._timeStamp = timestamp; | |
642 frame.rotation_ = rotation; | |
643 | |
644 h264_bitstream_parser_.ParseBitstream(buffer->data(), buffer->size()); | |
645 int qp; | |
646 if (h264_bitstream_parser_.GetLastSliceQp(&qp)) { | |
647 rtc::CritScope lock(&quality_scaler_crit_); | |
648 quality_scaler_.ReportQP(qp); | |
649 } | |
650 | |
651 int result = callback_->Encoded(frame, &codec_specific_info, header.get()); | |
652 if (result != 0) { | |
653 LOG(LS_ERROR) << "Encode callback failed: " << result; | |
654 return; | |
655 } | |
656 bitrate_adjuster_.Update(frame._size); | |
657 } | |
658 | |
659 } // namespace webrtc | |
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