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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 #ifndef MODULES_VIDEO_CODING_CODECS_TEST_VIDEOPROCESSOR_H_
12 #define MODULES_VIDEO_CODING_CODECS_TEST_VIDEOPROCESSOR_H_
13 
14 #include <stddef.h>
15 #include <stdint.h>
16 
17 #include <map>
18 #include <memory>
19 #include <utility>
20 #include <vector>
21 
22 #include "absl/types/optional.h"
23 #include "api/task_queue/queued_task.h"
24 #include "api/task_queue/task_queue_base.h"
25 #include "api/test/videocodec_test_fixture.h"
26 #include "api/video/encoded_image.h"
27 #include "api/video/video_bitrate_allocation.h"
28 #include "api/video/video_bitrate_allocator.h"
29 #include "api/video/video_frame.h"
30 #include "api/video_codecs/video_decoder.h"
31 #include "api/video_codecs/video_encoder.h"
32 #include "modules/include/module_common_types.h"
33 #include "modules/video_coding/codecs/test/videocodec_test_stats_impl.h"
34 #include "modules/video_coding/include/video_codec_interface.h"
35 #include "modules/video_coding/utility/ivf_file_writer.h"
36 #include "rtc_base/buffer.h"
37 #include "rtc_base/checks.h"
38 #include "rtc_base/constructor_magic.h"
39 #include "rtc_base/synchronization/sequence_checker.h"
40 #include "rtc_base/thread_annotations.h"
41 #include "rtc_base/thread_checker.h"
42 #include "test/testsupport/frame_reader.h"
43 #include "test/testsupport/frame_writer.h"
44 
45 namespace webrtc {
46 namespace test {
47 
48 // Handles encoding/decoding of video using the VideoEncoder/VideoDecoder
49 // interfaces. This is done in a sequential manner in order to be able to
50 // measure times properly.
51 // The class processes a frame at the time for the configured input file.
52 // It maintains state of where in the source input file the processing is at.
53 class VideoProcessor {
54  public:
55   using VideoDecoderList = std::vector<std::unique_ptr<VideoDecoder>>;
56   using LayerKey = std::pair<int /* spatial_idx */, int /* temporal_idx */>;
57   using IvfFileWriterMap = std::map<LayerKey, std::unique_ptr<IvfFileWriter>>;
58   // TODO(brandtr): Consider changing FrameWriterList to be a FrameWriterMap,
59   // to be able to save different TLs separately.
60   using FrameWriterList = std::vector<std::unique_ptr<FrameWriter>>;
61 
62   VideoProcessor(webrtc::VideoEncoder* encoder,
63                  VideoDecoderList* decoders,
64                  FrameReader* input_frame_reader,
65                  const VideoCodecTestFixture::Config& config,
66                  VideoCodecTestStatsImpl* stats,
67                  IvfFileWriterMap* encoded_frame_writers,
68                  FrameWriterList* decoded_frame_writers);
69   ~VideoProcessor();
70 
71   // Reads a frame and sends it to the encoder. When the encode callback
72   // is received, the encoded frame is buffered. After encoding is finished
73   // buffered frame is sent to decoder. Quality evaluation is done in
74   // the decode callback.
75   void ProcessFrame();
76 
77   // Updates the encoder with target rates. Must be called at least once.
78   void SetRates(size_t bitrate_kbps, double framerate_fps);
79 
80  private:
81   class VideoProcessorEncodeCompleteCallback
82       : public webrtc::EncodedImageCallback {
83    public:
VideoProcessorEncodeCompleteCallback(VideoProcessor * video_processor)84     explicit VideoProcessorEncodeCompleteCallback(
85         VideoProcessor* video_processor)
86         : video_processor_(video_processor),
87           task_queue_(TaskQueueBase::Current()) {
88       RTC_DCHECK(video_processor_);
89       RTC_DCHECK(task_queue_);
90     }
91 
OnEncodedImage(const webrtc::EncodedImage & encoded_image,const webrtc::CodecSpecificInfo * codec_specific_info,const webrtc::RTPFragmentationHeader * fragmentation)92     Result OnEncodedImage(
93         const webrtc::EncodedImage& encoded_image,
94         const webrtc::CodecSpecificInfo* codec_specific_info,
95         const webrtc::RTPFragmentationHeader* fragmentation) override {
96       RTC_CHECK(codec_specific_info);
97 
98       // Post the callback to the right task queue, if needed.
99       if (!task_queue_->IsCurrent()) {
100         task_queue_->PostTask(std::make_unique<EncodeCallbackTask>(
101             video_processor_, encoded_image, codec_specific_info));
102         return Result(Result::OK, 0);
103       }
104 
105       video_processor_->FrameEncoded(encoded_image, *codec_specific_info);
106       return Result(Result::OK, 0);
107     }
108 
109    private:
110     class EncodeCallbackTask : public QueuedTask {
111      public:
EncodeCallbackTask(VideoProcessor * video_processor,const webrtc::EncodedImage & encoded_image,const webrtc::CodecSpecificInfo * codec_specific_info)112       EncodeCallbackTask(VideoProcessor* video_processor,
113                          const webrtc::EncodedImage& encoded_image,
114                          const webrtc::CodecSpecificInfo* codec_specific_info)
115           : video_processor_(video_processor),
116             encoded_image_(encoded_image),
117             codec_specific_info_(*codec_specific_info) {
118         encoded_image_.Retain();
119       }
120 
Run()121       bool Run() override {
122         video_processor_->FrameEncoded(encoded_image_, codec_specific_info_);
123         return true;
124       }
125 
126      private:
127       VideoProcessor* const video_processor_;
128       webrtc::EncodedImage encoded_image_;
129       const webrtc::CodecSpecificInfo codec_specific_info_;
130     };
131 
132     VideoProcessor* const video_processor_;
133     TaskQueueBase* const task_queue_;
134   };
135 
136   class VideoProcessorDecodeCompleteCallback
137       : public webrtc::DecodedImageCallback {
138    public:
VideoProcessorDecodeCompleteCallback(VideoProcessor * video_processor,size_t simulcast_svc_idx)139     explicit VideoProcessorDecodeCompleteCallback(
140         VideoProcessor* video_processor,
141         size_t simulcast_svc_idx)
142         : video_processor_(video_processor),
143           simulcast_svc_idx_(simulcast_svc_idx),
144           task_queue_(TaskQueueBase::Current()) {
145       RTC_DCHECK(video_processor_);
146       RTC_DCHECK(task_queue_);
147     }
148 
149     int32_t Decoded(webrtc::VideoFrame& image) override;
150 
Decoded(webrtc::VideoFrame & image,int64_t decode_time_ms)151     int32_t Decoded(webrtc::VideoFrame& image,
152                     int64_t decode_time_ms) override {
153       return Decoded(image);
154     }
155 
Decoded(webrtc::VideoFrame & image,absl::optional<int32_t> decode_time_ms,absl::optional<uint8_t> qp)156     void Decoded(webrtc::VideoFrame& image,
157                  absl::optional<int32_t> decode_time_ms,
158                  absl::optional<uint8_t> qp) override {
159       Decoded(image);
160     }
161 
162    private:
163     VideoProcessor* const video_processor_;
164     const size_t simulcast_svc_idx_;
165     TaskQueueBase* const task_queue_;
166   };
167 
168   // Invoked by the callback adapter when a frame has completed encoding.
169   void FrameEncoded(const webrtc::EncodedImage& encoded_image,
170                     const webrtc::CodecSpecificInfo& codec_specific);
171 
172   // Invoked by the callback adapter when a frame has completed decoding.
173   void FrameDecoded(const webrtc::VideoFrame& image, size_t simulcast_svc_idx);
174 
175   void DecodeFrame(const EncodedImage& encoded_image, size_t simulcast_svc_idx);
176 
177   // In order to supply the SVC decoders with super frames containing all
178   // lower layer frames, we merge and store the layer frames in this method.
179   const webrtc::EncodedImage* BuildAndStoreSuperframe(
180       const EncodedImage& encoded_image,
181       const VideoCodecType codec,
182       size_t frame_number,
183       size_t simulcast_svc_idx,
184       bool inter_layer_predicted) RTC_RUN_ON(sequence_checker_);
185 
186   // Test input/output.
187   VideoCodecTestFixture::Config config_ RTC_GUARDED_BY(sequence_checker_);
188   const size_t num_simulcast_or_spatial_layers_;
189   VideoCodecTestStatsImpl* const stats_;
190 
191   // Codecs.
192   webrtc::VideoEncoder* const encoder_;
193   VideoDecoderList* const decoders_;
194   const std::unique_ptr<VideoBitrateAllocator> bitrate_allocator_;
195   VideoBitrateAllocation bitrate_allocation_ RTC_GUARDED_BY(sequence_checker_);
196   double framerate_fps_ RTC_GUARDED_BY(sequence_checker_);
197 
198   // Adapters for the codec callbacks.
199   VideoProcessorEncodeCompleteCallback encode_callback_;
200   // Assign separate callback object to each decoder. This allows us to identify
201   // decoded layer in frame decode callback.
202   // simulcast_svc_idx -> decode callback.
203   std::vector<std::unique_ptr<VideoProcessorDecodeCompleteCallback>>
204       decode_callback_;
205 
206   // Each call to ProcessFrame() will read one frame from |input_frame_reader_|.
207   FrameReader* const input_frame_reader_;
208 
209   // Input frames are used as reference for frame quality evaluations.
210   // Async codecs might queue frames. To handle that we keep input frame
211   // and release it after corresponding coded frame is decoded and quality
212   // measurement is done.
213   // frame_number -> frame.
214   std::map<size_t, VideoFrame> input_frames_ RTC_GUARDED_BY(sequence_checker_);
215 
216   // Encoder delivers coded frame layer-by-layer. We store coded frames and
217   // then, after all layers are encoded, decode them. Such separation of
218   // frame processing on superframe level simplifies encoding/decoding time
219   // measurement.
220   // simulcast_svc_idx -> merged SVC encoded frame.
221   std::vector<EncodedImage> merged_encoded_frames_
222       RTC_GUARDED_BY(sequence_checker_);
223 
224   // These (optional) file writers are used to persistently store the encoded
225   // and decoded bitstreams. Each frame writer is enabled by being non-null.
226   IvfFileWriterMap* const encoded_frame_writers_;
227   FrameWriterList* const decoded_frame_writers_;
228 
229   // Metadata for inputed/encoded/decoded frames. Used for frame identification,
230   // frame drop detection, etc. We assume that encoded/decoded frames are
231   // ordered within each simulcast/spatial layer, but we do not make any
232   // assumptions of frame ordering between layers.
233   size_t last_inputed_frame_num_ RTC_GUARDED_BY(sequence_checker_);
234   size_t last_inputed_timestamp_ RTC_GUARDED_BY(sequence_checker_);
235   // simulcast_svc_idx -> encode status.
236   std::vector<bool> first_encoded_frame_ RTC_GUARDED_BY(sequence_checker_);
237   // simulcast_svc_idx -> frame_number.
238   std::vector<size_t> last_encoded_frame_num_ RTC_GUARDED_BY(sequence_checker_);
239   // simulcast_svc_idx -> decode status.
240   std::vector<bool> first_decoded_frame_ RTC_GUARDED_BY(sequence_checker_);
241   // simulcast_svc_idx -> frame_number.
242   std::vector<size_t> last_decoded_frame_num_ RTC_GUARDED_BY(sequence_checker_);
243   // simulcast_svc_idx -> buffer.
244   std::vector<rtc::Buffer> decoded_frame_buffer_
245       RTC_GUARDED_BY(sequence_checker_);
246 
247   // Time spent in frame encode callback. It is accumulated for layers and
248   // reset when frame encode starts. When next layer is encoded post-encode time
249   // is substracted from measured encode time. Thus we get pure encode time.
250   int64_t post_encode_time_ns_ RTC_GUARDED_BY(sequence_checker_);
251 
252   // This class must be operated on a TaskQueue.
253   SequenceChecker sequence_checker_;
254 
255   RTC_DISALLOW_COPY_AND_ASSIGN(VideoProcessor);
256 };
257 
258 }  // namespace test
259 }  // namespace webrtc
260 
261 #endif  // MODULES_VIDEO_CODING_CODECS_TEST_VIDEOPROCESSOR_H_
262