1 /*
2 * Copyright (c) 2017 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 "modules/video_coding/codecs/multiplex/include/multiplex_encoder_adapter.h"
12
13 #include <cstring>
14
15 #include "api/video/encoded_image.h"
16 #include "api/video_codecs/video_encoder.h"
17 #include "common_video/include/video_frame_buffer.h"
18 #include "common_video/libyuv/include/webrtc_libyuv.h"
19 #include "media/base/video_common.h"
20 #include "modules/video_coding/codecs/multiplex/include/augmented_video_frame_buffer.h"
21 #include "rtc_base/logging.h"
22
23 namespace webrtc {
24
25 // Callback wrapper that helps distinguish returned results from `encoders_`
26 // instances.
27 class MultiplexEncoderAdapter::AdapterEncodedImageCallback
28 : public webrtc::EncodedImageCallback {
29 public:
AdapterEncodedImageCallback(webrtc::MultiplexEncoderAdapter * adapter,AlphaCodecStream stream_idx)30 AdapterEncodedImageCallback(webrtc::MultiplexEncoderAdapter* adapter,
31 AlphaCodecStream stream_idx)
32 : adapter_(adapter), stream_idx_(stream_idx) {}
33
OnEncodedImage(const EncodedImage & encoded_image,const CodecSpecificInfo * codec_specific_info)34 EncodedImageCallback::Result OnEncodedImage(
35 const EncodedImage& encoded_image,
36 const CodecSpecificInfo* codec_specific_info) override {
37 if (!adapter_)
38 return Result(Result::OK);
39 return adapter_->OnEncodedImage(stream_idx_, encoded_image,
40 codec_specific_info);
41 }
42
43 private:
44 MultiplexEncoderAdapter* adapter_;
45 const AlphaCodecStream stream_idx_;
46 };
47
MultiplexEncoderAdapter(VideoEncoderFactory * factory,const SdpVideoFormat & associated_format,bool supports_augmented_data)48 MultiplexEncoderAdapter::MultiplexEncoderAdapter(
49 VideoEncoderFactory* factory,
50 const SdpVideoFormat& associated_format,
51 bool supports_augmented_data)
52 : factory_(factory),
53 associated_format_(associated_format),
54 encoded_complete_callback_(nullptr),
55 key_frame_interval_(0),
56 supports_augmented_data_(supports_augmented_data) {}
57
~MultiplexEncoderAdapter()58 MultiplexEncoderAdapter::~MultiplexEncoderAdapter() {
59 Release();
60 }
61
SetFecControllerOverride(FecControllerOverride * fec_controller_override)62 void MultiplexEncoderAdapter::SetFecControllerOverride(
63 FecControllerOverride* fec_controller_override) {
64 // Ignored.
65 }
66
InitEncode(const VideoCodec * inst,const VideoEncoder::Settings & settings)67 int MultiplexEncoderAdapter::InitEncode(
68 const VideoCodec* inst,
69 const VideoEncoder::Settings& settings) {
70 const size_t buffer_size =
71 CalcBufferSize(VideoType::kI420, inst->width, inst->height);
72 multiplex_dummy_planes_.resize(buffer_size);
73 // It is more expensive to encode 0x00, so use 0x80 instead.
74 std::fill(multiplex_dummy_planes_.begin(), multiplex_dummy_planes_.end(),
75 0x80);
76
77 RTC_DCHECK_EQ(kVideoCodecMultiplex, inst->codecType);
78 VideoCodec video_codec = *inst;
79 video_codec.codecType = PayloadStringToCodecType(associated_format_.name);
80
81 // Take over the key frame interval at adapter level, because we have to
82 // sync the key frames for both sub-encoders.
83 switch (video_codec.codecType) {
84 case kVideoCodecVP8:
85 key_frame_interval_ = video_codec.VP8()->keyFrameInterval;
86 video_codec.VP8()->keyFrameInterval = 0;
87 break;
88 case kVideoCodecVP9:
89 key_frame_interval_ = video_codec.VP9()->keyFrameInterval;
90 video_codec.VP9()->keyFrameInterval = 0;
91 break;
92 case kVideoCodecH264:
93 key_frame_interval_ = video_codec.H264()->keyFrameInterval;
94 video_codec.H264()->keyFrameInterval = 0;
95 break;
96 default:
97 break;
98 }
99
100 encoder_info_ = EncoderInfo();
101 encoder_info_.implementation_name = "MultiplexEncoderAdapter (";
102 encoder_info_.requested_resolution_alignment = 1;
103 encoder_info_.apply_alignment_to_all_simulcast_layers = false;
104 // This needs to be false so that we can do the split in Encode().
105 encoder_info_.supports_native_handle = false;
106
107 for (size_t i = 0; i < kAlphaCodecStreams; ++i) {
108 std::unique_ptr<VideoEncoder> encoder =
109 factory_->CreateVideoEncoder(associated_format_);
110 const int rv = encoder->InitEncode(&video_codec, settings);
111 if (rv) {
112 RTC_LOG(LS_ERROR) << "Failed to create multiplex codec index " << i;
113 return rv;
114 }
115 adapter_callbacks_.emplace_back(new AdapterEncodedImageCallback(
116 this, static_cast<AlphaCodecStream>(i)));
117 encoder->RegisterEncodeCompleteCallback(adapter_callbacks_.back().get());
118
119 const EncoderInfo& encoder_impl_info = encoder->GetEncoderInfo();
120 encoder_info_.implementation_name += encoder_impl_info.implementation_name;
121 if (i != kAlphaCodecStreams - 1) {
122 encoder_info_.implementation_name += ", ";
123 }
124 // Uses hardware support if any of the encoders uses it.
125 // For example, if we are having issues with down-scaling due to
126 // pipelining delay in HW encoders we need higher encoder usage
127 // thresholds in CPU adaptation.
128 if (i == 0) {
129 encoder_info_.is_hardware_accelerated =
130 encoder_impl_info.is_hardware_accelerated;
131 } else {
132 encoder_info_.is_hardware_accelerated |=
133 encoder_impl_info.is_hardware_accelerated;
134 }
135
136 encoder_info_.requested_resolution_alignment = cricket::LeastCommonMultiple(
137 encoder_info_.requested_resolution_alignment,
138 encoder_impl_info.requested_resolution_alignment);
139
140 if (encoder_impl_info.apply_alignment_to_all_simulcast_layers) {
141 encoder_info_.apply_alignment_to_all_simulcast_layers = true;
142 }
143
144 encoders_.emplace_back(std::move(encoder));
145 }
146 encoder_info_.implementation_name += ")";
147
148 return WEBRTC_VIDEO_CODEC_OK;
149 }
150
Encode(const VideoFrame & input_image,const std::vector<VideoFrameType> * frame_types)151 int MultiplexEncoderAdapter::Encode(
152 const VideoFrame& input_image,
153 const std::vector<VideoFrameType>* frame_types) {
154 if (!encoded_complete_callback_) {
155 return WEBRTC_VIDEO_CODEC_UNINITIALIZED;
156 }
157
158 // The input image is forwarded as-is, unless it is a native buffer and
159 // `supports_augmented_data_` is true in which case we need to map it in order
160 // to access the underlying AugmentedVideoFrameBuffer.
161 VideoFrame forwarded_image = input_image;
162 if (supports_augmented_data_ &&
163 forwarded_image.video_frame_buffer()->type() ==
164 VideoFrameBuffer::Type::kNative) {
165 auto info = GetEncoderInfo();
166 rtc::scoped_refptr<VideoFrameBuffer> mapped_buffer =
167 forwarded_image.video_frame_buffer()->GetMappedFrameBuffer(
168 info.preferred_pixel_formats);
169 if (!mapped_buffer) {
170 // Unable to map the buffer.
171 return WEBRTC_VIDEO_CODEC_ERROR;
172 }
173 forwarded_image.set_video_frame_buffer(std::move(mapped_buffer));
174 }
175
176 std::vector<VideoFrameType> adjusted_frame_types;
177 if (key_frame_interval_ > 0 && picture_index_ % key_frame_interval_ == 0) {
178 adjusted_frame_types.push_back(VideoFrameType::kVideoFrameKey);
179 } else {
180 adjusted_frame_types.push_back(VideoFrameType::kVideoFrameDelta);
181 }
182 const bool has_alpha = forwarded_image.video_frame_buffer()->type() ==
183 VideoFrameBuffer::Type::kI420A;
184 std::unique_ptr<uint8_t[]> augmenting_data = nullptr;
185 uint16_t augmenting_data_length = 0;
186 AugmentedVideoFrameBuffer* augmented_video_frame_buffer = nullptr;
187 if (supports_augmented_data_) {
188 augmented_video_frame_buffer = static_cast<AugmentedVideoFrameBuffer*>(
189 forwarded_image.video_frame_buffer().get());
190 augmenting_data_length =
191 augmented_video_frame_buffer->GetAugmentingDataSize();
192 augmenting_data =
193 std::unique_ptr<uint8_t[]>(new uint8_t[augmenting_data_length]);
194 memcpy(augmenting_data.get(),
195 augmented_video_frame_buffer->GetAugmentingData(),
196 augmenting_data_length);
197 augmenting_data_size_ = augmenting_data_length;
198 }
199
200 {
201 MutexLock lock(&mutex_);
202 stashed_images_.emplace(
203 std::piecewise_construct,
204 std::forward_as_tuple(forwarded_image.timestamp()),
205 std::forward_as_tuple(
206 picture_index_, has_alpha ? kAlphaCodecStreams : 1,
207 std::move(augmenting_data), augmenting_data_length));
208 }
209
210 ++picture_index_;
211
212 // Encode YUV
213 int rv =
214 encoders_[kYUVStream]->Encode(forwarded_image, &adjusted_frame_types);
215
216 // If we do not receive an alpha frame, we send a single frame for this
217 // `picture_index_`. The receiver will receive `frame_count` as 1 which
218 // specifies this case.
219 if (rv || !has_alpha)
220 return rv;
221
222 // Encode AXX
223 rtc::scoped_refptr<VideoFrameBuffer> frame_buffer =
224 supports_augmented_data_
225 ? augmented_video_frame_buffer->GetVideoFrameBuffer()
226 : forwarded_image.video_frame_buffer();
227 const I420ABufferInterface* yuva_buffer = frame_buffer->GetI420A();
228 rtc::scoped_refptr<I420BufferInterface> alpha_buffer =
229 WrapI420Buffer(forwarded_image.width(), forwarded_image.height(),
230 yuva_buffer->DataA(), yuva_buffer->StrideA(),
231 multiplex_dummy_planes_.data(), yuva_buffer->StrideU(),
232 multiplex_dummy_planes_.data(), yuva_buffer->StrideV(),
233 // To keep reference alive.
234 [frame_buffer] {});
235 VideoFrame alpha_image =
236 VideoFrame::Builder()
237 .set_video_frame_buffer(alpha_buffer)
238 .set_timestamp_rtp(forwarded_image.timestamp())
239 .set_timestamp_ms(forwarded_image.render_time_ms())
240 .set_rotation(forwarded_image.rotation())
241 .set_id(forwarded_image.id())
242 .set_packet_infos(forwarded_image.packet_infos())
243 .build();
244 rv = encoders_[kAXXStream]->Encode(alpha_image, &adjusted_frame_types);
245 return rv;
246 }
247
RegisterEncodeCompleteCallback(EncodedImageCallback * callback)248 int MultiplexEncoderAdapter::RegisterEncodeCompleteCallback(
249 EncodedImageCallback* callback) {
250 encoded_complete_callback_ = callback;
251 return WEBRTC_VIDEO_CODEC_OK;
252 }
253
SetRates(const RateControlParameters & parameters)254 void MultiplexEncoderAdapter::SetRates(
255 const RateControlParameters& parameters) {
256 VideoBitrateAllocation bitrate_allocation(parameters.bitrate);
257 bitrate_allocation.SetBitrate(
258 0, 0, parameters.bitrate.GetBitrate(0, 0) - augmenting_data_size_);
259 for (auto& encoder : encoders_) {
260 // TODO(emircan): `framerate` is used to calculate duration in encoder
261 // instances. We report the total frame rate to keep real time for now.
262 // Remove this after refactoring duration logic.
263 encoder->SetRates(RateControlParameters(
264 bitrate_allocation,
265 static_cast<uint32_t>(encoders_.size() * parameters.framerate_fps),
266 parameters.bandwidth_allocation -
267 DataRate::BitsPerSec(augmenting_data_size_)));
268 }
269 }
270
OnPacketLossRateUpdate(float packet_loss_rate)271 void MultiplexEncoderAdapter::OnPacketLossRateUpdate(float packet_loss_rate) {
272 for (auto& encoder : encoders_) {
273 encoder->OnPacketLossRateUpdate(packet_loss_rate);
274 }
275 }
276
OnRttUpdate(int64_t rtt_ms)277 void MultiplexEncoderAdapter::OnRttUpdate(int64_t rtt_ms) {
278 for (auto& encoder : encoders_) {
279 encoder->OnRttUpdate(rtt_ms);
280 }
281 }
282
OnLossNotification(const LossNotification & loss_notification)283 void MultiplexEncoderAdapter::OnLossNotification(
284 const LossNotification& loss_notification) {
285 for (auto& encoder : encoders_) {
286 encoder->OnLossNotification(loss_notification);
287 }
288 }
289
Release()290 int MultiplexEncoderAdapter::Release() {
291 for (auto& encoder : encoders_) {
292 const int rv = encoder->Release();
293 if (rv)
294 return rv;
295 }
296 encoders_.clear();
297 adapter_callbacks_.clear();
298 MutexLock lock(&mutex_);
299 stashed_images_.clear();
300
301 return WEBRTC_VIDEO_CODEC_OK;
302 }
303
GetEncoderInfo() const304 VideoEncoder::EncoderInfo MultiplexEncoderAdapter::GetEncoderInfo() const {
305 return encoder_info_;
306 }
307
OnEncodedImage(AlphaCodecStream stream_idx,const EncodedImage & encodedImage,const CodecSpecificInfo * codecSpecificInfo)308 EncodedImageCallback::Result MultiplexEncoderAdapter::OnEncodedImage(
309 AlphaCodecStream stream_idx,
310 const EncodedImage& encodedImage,
311 const CodecSpecificInfo* codecSpecificInfo) {
312 // Save the image
313 MultiplexImageComponent image_component;
314 image_component.component_index = stream_idx;
315 image_component.codec_type =
316 PayloadStringToCodecType(associated_format_.name);
317 image_component.encoded_image = encodedImage;
318
319 MutexLock lock(&mutex_);
320 const auto& stashed_image_itr =
321 stashed_images_.find(encodedImage.Timestamp());
322 const auto& stashed_image_next_itr = std::next(stashed_image_itr, 1);
323 RTC_DCHECK(stashed_image_itr != stashed_images_.end());
324 MultiplexImage& stashed_image = stashed_image_itr->second;
325 const uint8_t frame_count = stashed_image.component_count;
326
327 stashed_image.image_components.push_back(image_component);
328
329 if (stashed_image.image_components.size() == frame_count) {
330 // Complete case
331 for (auto iter = stashed_images_.begin();
332 iter != stashed_images_.end() && iter != stashed_image_next_itr;
333 iter++) {
334 // No image at all, skip.
335 if (iter->second.image_components.size() == 0)
336 continue;
337
338 // We have to send out those stashed frames, otherwise the delta frame
339 // dependency chain is broken.
340 combined_image_ =
341 MultiplexEncodedImagePacker::PackAndRelease(iter->second);
342
343 CodecSpecificInfo codec_info = *codecSpecificInfo;
344 codec_info.codecType = kVideoCodecMultiplex;
345 encoded_complete_callback_->OnEncodedImage(combined_image_, &codec_info);
346 }
347
348 stashed_images_.erase(stashed_images_.begin(), stashed_image_next_itr);
349 }
350 return EncodedImageCallback::Result(EncodedImageCallback::Result::OK);
351 }
352
353 } // namespace webrtc
354