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stefan@webrtc.org360e3762013-08-22 09:29:56 +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
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020011#include "test/fake_encoder.h"
stefan@webrtc.org360e3762013-08-22 09:29:56 +000012
brandtre78d2662017-01-16 05:57:16 -080013#include <string.h>
palmkviste75f2042016-09-28 06:19:48 -070014#include <algorithm>
Yves Gerey3e707812018-11-28 16:47:49 +010015#include <cstdint>
brandtre78d2662017-01-16 05:57:16 -080016#include <memory>
Yves Gerey3e707812018-11-28 16:47:49 +010017#include <string>
palmkviste75f2042016-09-28 06:19:48 -070018
Niels Möllerd7380712019-03-06 10:09:47 +010019#include "absl/memory/memory.h"
Yves Gerey3e707812018-11-28 16:47:49 +010020#include "api/video/video_content_type.h"
21#include "common_types.h" // NOLINT(build/include)
22#include "modules/video_coding/codecs/h264/include/h264_globals.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020023#include "modules/video_coding/include/video_codec_interface.h"
Yves Gerey3e707812018-11-28 16:47:49 +010024#include "modules/video_coding/include/video_error_codes.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020025#include "rtc_base/checks.h"
26#include "system_wrappers/include/sleep.h"
pbos@webrtc.orgab990ae2014-09-17 09:02:25 +000027
stefan@webrtc.org360e3762013-08-22 09:29:56 +000028namespace webrtc {
pbos@webrtc.orgcb5118c2013-09-03 09:10:37 +000029namespace test {
Per Kjellander17fc7e22018-11-06 11:01:06 +010030namespace {
Ilya Nikolaevskiy6003e7a2018-10-15 10:47:23 +020031const int kKeyframeSizeFactor = 5;
32
33// Inverse of proportion of frames assigned to each temporal layer for all
34// possible temporal layers numbers.
35const int kTemporalLayerRateFactor[4][4] = {
36 {1, 0, 0, 0}, // 1/1
37 {2, 2, 0, 0}, // 1/2 + 1/2
38 {4, 4, 2, 0}, // 1/4 + 1/4 + 1/2
39 {8, 8, 4, 2}, // 1/8 + 1/8 + 1/4 + 1/2
40};
sprang4847ae62017-06-27 07:06:52 -070041
Per Kjellander17fc7e22018-11-06 11:01:06 +010042void WriteCounter(unsigned char* payload, uint32_t counter) {
43 payload[0] = (counter & 0x00FF);
44 payload[1] = (counter & 0xFF00) >> 8;
45 payload[2] = (counter & 0xFF0000) >> 16;
46 payload[3] = (counter & 0xFF000000) >> 24;
47}
48
Nico Weber22f99252019-02-20 10:13:16 -050049} // namespace
Per Kjellander17fc7e22018-11-06 11:01:06 +010050
Per Kjellander65cc52e2019-02-01 11:27:43 +010051FakeEncoder::FakeEncoder(Clock* clock)
stefan@webrtc.org360e3762013-08-22 09:29:56 +000052 : clock_(clock),
brandtre78d2662017-01-16 05:57:16 -080053 callback_(nullptr),
sprang4847ae62017-06-27 07:06:52 -070054 configured_input_framerate_(-1),
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000055 max_target_bitrate_kbps_(-1),
sprang4847ae62017-06-27 07:06:52 -070056 pending_keyframe_(true),
Per Kjellander17fc7e22018-11-06 11:01:06 +010057 counter_(0),
sprang4847ae62017-06-27 07:06:52 -070058 debt_bytes_(0) {
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +020059 for (bool& used : used_layers_) {
60 used = false;
61 }
stefan@webrtc.org360e3762013-08-22 09:29:56 +000062}
63
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000064void FakeEncoder::SetMaxBitrate(int max_kbps) {
perkj26091b12016-09-01 01:17:40 -070065 RTC_DCHECK_GE(max_kbps, -1); // max_kbps == -1 disables it.
brandtre78d2662017-01-16 05:57:16 -080066 rtc::CritScope cs(&crit_sect_);
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000067 max_target_bitrate_kbps_ = max_kbps;
Sebastian Jansson0c32e332018-11-12 16:47:43 +010068 SetRateAllocation(target_bitrate_, configured_input_framerate_);
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000069}
70
stefan@webrtc.org360e3762013-08-22 09:29:56 +000071int32_t FakeEncoder::InitEncode(const VideoCodec* config,
72 int32_t number_of_cores,
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +000073 size_t max_payload_size) {
brandtre78d2662017-01-16 05:57:16 -080074 rtc::CritScope cs(&crit_sect_);
stefan@webrtc.org360e3762013-08-22 09:29:56 +000075 config_ = *config;
Erik Språng08127a92016-11-16 16:41:30 +010076 target_bitrate_.SetBitrate(0, 0, config_.startBitrate * 1000);
sprang4847ae62017-06-27 07:06:52 -070077 configured_input_framerate_ = config_.maxFramerate;
78 pending_keyframe_ = true;
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +020079 last_frame_info_ = FrameInfo();
stefan@webrtc.org360e3762013-08-22 09:29:56 +000080 return 0;
81}
82
Miguel Casas-Sanchez47650702015-05-29 17:21:40 -070083int32_t FakeEncoder::Encode(const VideoFrame& input_image,
Niels Möllerd7380712019-03-06 10:09:47 +010084 const CodecSpecificInfo* /*codec_specific_info*/,
Niels Möller87e2d782019-03-07 10:18:23 +010085 const std::vector<VideoFrameType>* frame_types) {
brandtre78d2662017-01-16 05:57:16 -080086 unsigned char max_framerate;
87 unsigned char num_simulcast_streams;
88 SimulcastStream simulcast_streams[kMaxSimulcastStreams];
89 EncodedImageCallback* callback;
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +020090 VideoBitrateAllocation target_bitrate;
sprang4847ae62017-06-27 07:06:52 -070091 int framerate;
ilnik00d802b2017-04-11 10:34:31 -070092 VideoCodecMode mode;
sprang4847ae62017-06-27 07:06:52 -070093 bool keyframe;
Per Kjellander17fc7e22018-11-06 11:01:06 +010094 uint32_t counter;
brandtre78d2662017-01-16 05:57:16 -080095 {
96 rtc::CritScope cs(&crit_sect_);
97 max_framerate = config_.maxFramerate;
98 num_simulcast_streams = config_.numberOfSimulcastStreams;
99 for (int i = 0; i < num_simulcast_streams; ++i) {
100 simulcast_streams[i] = config_.simulcastStream[i];
101 }
102 callback = callback_;
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200103 target_bitrate = target_bitrate_;
ilnik00d802b2017-04-11 10:34:31 -0700104 mode = config_.mode;
sprang4847ae62017-06-27 07:06:52 -0700105 if (configured_input_framerate_ > 0) {
106 framerate = configured_input_framerate_;
107 } else {
108 framerate = max_framerate;
109 }
110 keyframe = pending_keyframe_;
111 pending_keyframe_ = false;
Per Kjellander17fc7e22018-11-06 11:01:06 +0100112 counter = counter_++;
brandtre78d2662017-01-16 05:57:16 -0800113 }
114
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200115 FrameInfo frame_info =
116 NextFrame(frame_types, keyframe, num_simulcast_streams, target_bitrate,
117 simulcast_streams, framerate);
118 for (uint8_t i = 0; i < frame_info.layers.size(); ++i) {
Per Kjellander17fc7e22018-11-06 11:01:06 +0100119 constexpr int kMinPayLoadLength = 14;
Per Kjellander841c9122018-10-04 18:40:28 +0200120 if (frame_info.layers[i].size < kMinPayLoadLength) {
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200121 // Drop this temporal layer.
122 continue;
sprang4847ae62017-06-27 07:06:52 -0700123 }
sprang4847ae62017-06-27 07:06:52 -0700124
Niels Möllerd7380712019-03-06 10:09:47 +0100125 EncodedImage encoded;
126 encoded.Allocate(frame_info.layers[i].size);
127 encoded.set_size(frame_info.layers[i].size);
128
Per Kjellander65cc52e2019-02-01 11:27:43 +0100129 // Fill the buffer with arbitrary data. Write someting to make Asan happy.
Niels Möllerd7380712019-03-06 10:09:47 +0100130 memset(encoded.data(), 9, frame_info.layers[i].size);
Per Kjellander17fc7e22018-11-06 11:01:06 +0100131 // Write a counter to the image to make each frame unique.
Niels Möllerd7380712019-03-06 10:09:47 +0100132 WriteCounter(encoded.data() + frame_info.layers[i].size - 4, counter);
Niels Möller72bc8d62018-09-12 10:03:51 +0200133 encoded.SetTimestamp(input_image.timestamp());
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000134 encoded.capture_time_ms_ = input_image.render_time_ms();
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200135 encoded._frameType =
136 frame_info.keyframe ? kVideoFrameKey : kVideoFrameDelta;
brandtre78d2662017-01-16 05:57:16 -0800137 encoded._encodedWidth = simulcast_streams[i].width;
138 encoded._encodedHeight = simulcast_streams[i].height;
perkj803d97f2016-11-01 11:45:46 -0700139 encoded.rotation_ = input_image.rotation();
Niels Möllere3cf3d02018-06-13 11:52:16 +0200140 encoded.content_type_ = (mode == VideoCodecMode::kScreensharing)
ilnik00d802b2017-04-11 10:34:31 -0700141 ? VideoContentType::SCREENSHARE
142 : VideoContentType::UNSPECIFIED;
Niels Möllerd3b8c632018-08-27 15:33:42 +0200143 encoded.SetSpatialIndex(i);
Niels Möllerd7380712019-03-06 10:09:47 +0100144 CodecSpecificInfo codec_specific;
145 std::unique_ptr<RTPFragmentationHeader> fragmentation =
146 EncodeHook(&encoded, &codec_specific);
147
148 if (callback->OnEncodedImage(encoded, &codec_specific, fragmentation.get())
149 .error != EncodedImageCallback::Result::OK) {
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000150 return -1;
sergeyu2cb155a2016-11-04 11:39:29 -0700151 }
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000152 }
153 return 0;
154}
155
Niels Möllerd7380712019-03-06 10:09:47 +0100156std::unique_ptr<RTPFragmentationHeader> FakeEncoder::EncodeHook(
157 EncodedImage* encoded_image,
158 CodecSpecificInfo* codec_specific) {
159 codec_specific->codecType = kVideoCodecGeneric;
160 return nullptr;
161}
162
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200163FakeEncoder::FrameInfo FakeEncoder::NextFrame(
Niels Möller87e2d782019-03-07 10:18:23 +0100164 const std::vector<VideoFrameType>* frame_types,
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200165 bool keyframe,
166 uint8_t num_simulcast_streams,
167 const VideoBitrateAllocation& target_bitrate,
168 SimulcastStream simulcast_streams[kMaxSimulcastStreams],
169 int framerate) {
170 FrameInfo frame_info;
171 frame_info.keyframe = keyframe;
172
173 if (frame_types) {
Niels Möller87e2d782019-03-07 10:18:23 +0100174 for (VideoFrameType frame_type : *frame_types) {
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200175 if (frame_type == kVideoFrameKey) {
176 frame_info.keyframe = true;
177 break;
178 }
179 }
180 }
181
Yves Gerey04140402018-10-08 11:39:18 +0200182 rtc::CritScope cs(&crit_sect_);
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200183 for (uint8_t i = 0; i < num_simulcast_streams; ++i) {
184 if (target_bitrate.GetBitrate(i, 0) > 0) {
185 int temporal_id = last_frame_info_.layers.size() > i
186 ? ++last_frame_info_.layers[i].temporal_id %
187 simulcast_streams[i].numberOfTemporalLayers
188 : 0;
189 frame_info.layers.emplace_back(0, temporal_id);
190 }
191 }
192
193 if (last_frame_info_.layers.size() < frame_info.layers.size()) {
194 // A new keyframe is needed since a new layer will be added.
195 frame_info.keyframe = true;
196 }
197
198 for (uint8_t i = 0; i < frame_info.layers.size(); ++i) {
199 FrameInfo::SpatialLayer& layer_info = frame_info.layers[i];
200 if (frame_info.keyframe) {
201 layer_info.temporal_id = 0;
202 size_t avg_frame_size =
Ilya Nikolaevskiy6003e7a2018-10-15 10:47:23 +0200203 (target_bitrate.GetBitrate(i, 0) + 7) *
204 kTemporalLayerRateFactor[frame_info.layers.size() - 1][i] /
205 (8 * framerate);
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200206
207 // The first frame is a key frame and should be larger.
208 // Store the overshoot bytes and distribute them over the coming frames,
209 // so that we on average meet the bitrate target.
210 debt_bytes_ += (kKeyframeSizeFactor - 1) * avg_frame_size;
211 layer_info.size = kKeyframeSizeFactor * avg_frame_size;
212 } else {
213 size_t avg_frame_size =
Ilya Nikolaevskiy6003e7a2018-10-15 10:47:23 +0200214 (target_bitrate.GetBitrate(i, layer_info.temporal_id) + 7) *
215 kTemporalLayerRateFactor[frame_info.layers.size() - 1][i] /
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200216 (8 * framerate);
217 layer_info.size = avg_frame_size;
218 if (debt_bytes_ > 0) {
219 // Pay at most half of the frame size for old debts.
220 size_t payment_size = std::min(avg_frame_size / 2, debt_bytes_);
221 debt_bytes_ -= payment_size;
222 layer_info.size -= payment_size;
223 }
224 }
225 }
226 last_frame_info_ = frame_info;
227 return frame_info;
228}
229
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000230int32_t FakeEncoder::RegisterEncodeCompleteCallback(
231 EncodedImageCallback* callback) {
brandtre78d2662017-01-16 05:57:16 -0800232 rtc::CritScope cs(&crit_sect_);
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000233 callback_ = callback;
234 return 0;
235}
236
Yves Gerey665174f2018-06-19 15:03:05 +0200237int32_t FakeEncoder::Release() {
238 return 0;
239}
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000240
Erik Språng566124a2018-04-23 12:32:22 +0200241int32_t FakeEncoder::SetRateAllocation(
242 const VideoBitrateAllocation& rate_allocation,
243 uint32_t framerate) {
brandtre78d2662017-01-16 05:57:16 -0800244 rtc::CritScope cs(&crit_sect_);
Erik Språng08127a92016-11-16 16:41:30 +0100245 target_bitrate_ = rate_allocation;
Ilya Nikolaevskiyb0588e62018-08-27 14:12:27 +0200246 int allocated_bitrate_kbps = target_bitrate_.get_sum_kbps();
247
248 // Scale bitrate allocation to not exceed the given max target bitrate.
249 if (max_target_bitrate_kbps_ > 0 &&
250 allocated_bitrate_kbps > max_target_bitrate_kbps_) {
251 for (uint8_t spatial_idx = 0; spatial_idx < kMaxSpatialLayers;
252 ++spatial_idx) {
253 for (uint8_t temporal_idx = 0; temporal_idx < kMaxTemporalStreams;
254 ++temporal_idx) {
255 if (target_bitrate_.HasBitrate(spatial_idx, temporal_idx)) {
256 uint32_t bitrate =
257 target_bitrate_.GetBitrate(spatial_idx, temporal_idx);
258 bitrate = static_cast<uint32_t>(
259 (bitrate * int64_t{max_target_bitrate_kbps_}) /
260 allocated_bitrate_kbps);
261 target_bitrate_.SetBitrate(spatial_idx, temporal_idx, bitrate);
262 }
263 }
264 }
265 }
266
sprang4847ae62017-06-27 07:06:52 -0700267 configured_input_framerate_ = framerate;
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000268 return 0;
269}
pbos@webrtc.org3349ae02014-03-13 12:52:27 +0000270
Peter Boströmb7d9a972015-12-18 16:01:11 +0100271const char* FakeEncoder::kImplementationName = "fake_encoder";
Erik Språngdf351f42018-11-06 11:33:15 +0100272VideoEncoder::EncoderInfo FakeEncoder::GetEncoderInfo() const {
273 EncoderInfo info;
274 info.implementation_name = kImplementationName;
275 return info;
Peter Boströmb7d9a972015-12-18 16:01:11 +0100276}
277
sprang4847ae62017-06-27 07:06:52 -0700278int FakeEncoder::GetConfiguredInputFramerate() const {
279 rtc::CritScope cs(&crit_sect_);
280 return configured_input_framerate_;
281}
282
stefan@webrtc.org79c33592014-08-06 09:24:53 +0000283FakeH264Encoder::FakeH264Encoder(Clock* clock)
Niels Möllerd7380712019-03-06 10:09:47 +0100284 : FakeEncoder(clock), idr_counter_(0) {}
stefan@webrtc.org79c33592014-08-06 09:24:53 +0000285
Niels Möllerd7380712019-03-06 10:09:47 +0100286std::unique_ptr<RTPFragmentationHeader> FakeH264Encoder::EncodeHook(
287 EncodedImage* encoded_image,
288 CodecSpecificInfo* codec_specific) {
stefan@webrtc.org79c33592014-08-06 09:24:53 +0000289 const size_t kSpsSize = 8;
290 const size_t kPpsSize = 11;
291 const int kIdrFrequency = 10;
brandtre78d2662017-01-16 05:57:16 -0800292 int current_idr_counter;
293 {
294 rtc::CritScope cs(&local_crit_sect_);
brandtre78d2662017-01-16 05:57:16 -0800295 current_idr_counter = idr_counter_;
296 ++idr_counter_;
297 }
Niels Möllerd7380712019-03-06 10:09:47 +0100298 auto fragmentation = absl::make_unique<RTPFragmentationHeader>();
299
brandtre78d2662017-01-16 05:57:16 -0800300 if (current_idr_counter % kIdrFrequency == 0 &&
Niels Möllerd7380712019-03-06 10:09:47 +0100301 encoded_image->size() > kSpsSize + kPpsSize + 1) {
stefan@webrtc.org79c33592014-08-06 09:24:53 +0000302 const size_t kNumSlices = 3;
Niels Möllerd7380712019-03-06 10:09:47 +0100303 fragmentation->VerifyAndAllocateFragmentationHeader(kNumSlices);
304 fragmentation->fragmentationOffset[0] = 0;
305 fragmentation->fragmentationLength[0] = kSpsSize;
306 fragmentation->fragmentationOffset[1] = kSpsSize;
307 fragmentation->fragmentationLength[1] = kPpsSize;
308 fragmentation->fragmentationOffset[2] = kSpsSize + kPpsSize;
309 fragmentation->fragmentationLength[2] =
310 encoded_image->size() - (kSpsSize + kPpsSize);
glaznev@webrtc.orge69220c2015-02-05 17:56:15 +0000311 const size_t kSpsNalHeader = 0x67;
312 const size_t kPpsNalHeader = 0x68;
313 const size_t kIdrNalHeader = 0x65;
Niels Möllerd7380712019-03-06 10:09:47 +0100314 encoded_image->data()[fragmentation->fragmentationOffset[0]] =
Niels Möller938dd9f2019-02-07 00:02:17 +0100315 kSpsNalHeader;
Niels Möllerd7380712019-03-06 10:09:47 +0100316 encoded_image->data()[fragmentation->fragmentationOffset[1]] =
Niels Möller938dd9f2019-02-07 00:02:17 +0100317 kPpsNalHeader;
Niels Möllerd7380712019-03-06 10:09:47 +0100318 encoded_image->data()[fragmentation->fragmentationOffset[2]] =
Niels Möller938dd9f2019-02-07 00:02:17 +0100319 kIdrNalHeader;
stefan@webrtc.org79c33592014-08-06 09:24:53 +0000320 } else {
321 const size_t kNumSlices = 1;
Niels Möllerd7380712019-03-06 10:09:47 +0100322 fragmentation->VerifyAndAllocateFragmentationHeader(kNumSlices);
323 fragmentation->fragmentationOffset[0] = 0;
324 fragmentation->fragmentationLength[0] = encoded_image->size();
glaznev@webrtc.orge69220c2015-02-05 17:56:15 +0000325 const size_t kNalHeader = 0x41;
Niels Möllerd7380712019-03-06 10:09:47 +0100326 encoded_image->data()[fragmentation->fragmentationOffset[0]] = kNalHeader;
stefan@webrtc.org79c33592014-08-06 09:24:53 +0000327 }
328 uint8_t value = 0;
329 int fragment_counter = 0;
Niels Möllerd7380712019-03-06 10:09:47 +0100330 for (size_t i = 0; i < encoded_image->size(); ++i) {
331 if (fragment_counter == fragmentation->fragmentationVectorSize ||
332 i != fragmentation->fragmentationOffset[fragment_counter]) {
333 encoded_image->data()[i] = value++;
stefan@webrtc.org79c33592014-08-06 09:24:53 +0000334 } else {
335 ++fragment_counter;
336 }
337 }
Niels Möllerd7380712019-03-06 10:09:47 +0100338 codec_specific->codecType = kVideoCodecH264;
339 codec_specific->codecSpecific.H264.packetization_mode =
hta9aa96882016-12-06 05:36:03 -0800340 H264PacketizationMode::NonInterleaved;
Niels Möllerd7380712019-03-06 10:09:47 +0100341
342 return fragmentation;
stefan@webrtc.org79c33592014-08-06 09:24:53 +0000343}
asapersson@webrtc.org049e4ec2014-11-20 10:19:46 +0000344
345DelayedEncoder::DelayedEncoder(Clock* clock, int delay_ms)
brandtr49ce67c2017-02-11 00:25:18 -0800346 : test::FakeEncoder(clock), delay_ms_(delay_ms) {
347 // The encoder could be created on a different thread than
348 // it is being used on.
349 sequence_checker_.Detach();
350}
asapersson@webrtc.org049e4ec2014-11-20 10:19:46 +0000351
perkj803d97f2016-11-01 11:45:46 -0700352void DelayedEncoder::SetDelay(int delay_ms) {
brandtr49ce67c2017-02-11 00:25:18 -0800353 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
perkj803d97f2016-11-01 11:45:46 -0700354 delay_ms_ = delay_ms;
355}
356
Miguel Casas-Sanchez47650702015-05-29 17:21:40 -0700357int32_t DelayedEncoder::Encode(const VideoFrame& input_image,
asapersson@webrtc.org049e4ec2014-11-20 10:19:46 +0000358 const CodecSpecificInfo* codec_specific_info,
Niels Möller87e2d782019-03-07 10:18:23 +0100359 const std::vector<VideoFrameType>* frame_types) {
brandtr49ce67c2017-02-11 00:25:18 -0800360 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
361
362 SleepMs(delay_ms_);
363
asapersson@webrtc.org049e4ec2014-11-20 10:19:46 +0000364 return FakeEncoder::Encode(input_image, codec_specific_info, frame_types);
365}
brandtr696c9c62016-12-19 05:47:28 -0800366
brandtre78d2662017-01-16 05:57:16 -0800367MultithreadedFakeH264Encoder::MultithreadedFakeH264Encoder(Clock* clock)
brandtr696c9c62016-12-19 05:47:28 -0800368 : test::FakeH264Encoder(clock),
369 current_queue_(0),
brandtr49ce67c2017-02-11 00:25:18 -0800370 queue1_(nullptr),
371 queue2_(nullptr) {
372 // The encoder could be created on a different thread than
373 // it is being used on.
374 sequence_checker_.Detach();
375}
brandtr696c9c62016-12-19 05:47:28 -0800376
brandtr49ce67c2017-02-11 00:25:18 -0800377int32_t MultithreadedFakeH264Encoder::InitEncode(const VideoCodec* config,
378 int32_t number_of_cores,
379 size_t max_payload_size) {
380 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
381
382 queue1_.reset(new rtc::TaskQueue("Queue 1"));
383 queue2_.reset(new rtc::TaskQueue("Queue 2"));
384
385 return FakeH264Encoder::InitEncode(config, number_of_cores, max_payload_size);
386}
brandtr696c9c62016-12-19 05:47:28 -0800387
brandtre78d2662017-01-16 05:57:16 -0800388class MultithreadedFakeH264Encoder::EncodeTask : public rtc::QueuedTask {
brandtr696c9c62016-12-19 05:47:28 -0800389 public:
brandtre78d2662017-01-16 05:57:16 -0800390 EncodeTask(MultithreadedFakeH264Encoder* encoder,
brandtr696c9c62016-12-19 05:47:28 -0800391 const VideoFrame& input_image,
392 const CodecSpecificInfo* codec_specific_info,
Niels Möller87e2d782019-03-07 10:18:23 +0100393 const std::vector<VideoFrameType>* frame_types)
brandtr696c9c62016-12-19 05:47:28 -0800394 : encoder_(encoder),
395 input_image_(input_image),
396 codec_specific_info_(),
397 frame_types_(*frame_types) {
398 if (codec_specific_info)
399 codec_specific_info_ = *codec_specific_info;
400 }
401
402 private:
403 bool Run() override {
404 encoder_->EncodeCallback(input_image_, &codec_specific_info_,
405 &frame_types_);
406 return true;
407 }
408
brandtre78d2662017-01-16 05:57:16 -0800409 MultithreadedFakeH264Encoder* const encoder_;
brandtr696c9c62016-12-19 05:47:28 -0800410 VideoFrame input_image_;
411 CodecSpecificInfo codec_specific_info_;
Niels Möller87e2d782019-03-07 10:18:23 +0100412 std::vector<VideoFrameType> frame_types_;
brandtr696c9c62016-12-19 05:47:28 -0800413};
414
brandtre78d2662017-01-16 05:57:16 -0800415int32_t MultithreadedFakeH264Encoder::Encode(
brandtr696c9c62016-12-19 05:47:28 -0800416 const VideoFrame& input_image,
417 const CodecSpecificInfo* codec_specific_info,
Niels Möller87e2d782019-03-07 10:18:23 +0100418 const std::vector<VideoFrameType>* frame_types) {
brandtr49ce67c2017-02-11 00:25:18 -0800419 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
brandtr696c9c62016-12-19 05:47:28 -0800420
brandtr49ce67c2017-02-11 00:25:18 -0800421 std::unique_ptr<rtc::TaskQueue>& queue =
422 (current_queue_++ % 2 == 0) ? queue1_ : queue2_;
423
424 if (!queue) {
425 return WEBRTC_VIDEO_CODEC_UNINITIALIZED;
426 }
427
428 queue->PostTask(std::unique_ptr<rtc::QueuedTask>(
brandtr696c9c62016-12-19 05:47:28 -0800429 new EncodeTask(this, input_image, codec_specific_info, frame_types)));
430
brandtr49ce67c2017-02-11 00:25:18 -0800431 return WEBRTC_VIDEO_CODEC_OK;
brandtr696c9c62016-12-19 05:47:28 -0800432}
433
brandtre78d2662017-01-16 05:57:16 -0800434int32_t MultithreadedFakeH264Encoder::EncodeCallback(
brandtr696c9c62016-12-19 05:47:28 -0800435 const VideoFrame& input_image,
436 const CodecSpecificInfo* codec_specific_info,
Niels Möller87e2d782019-03-07 10:18:23 +0100437 const std::vector<VideoFrameType>* frame_types) {
brandtr696c9c62016-12-19 05:47:28 -0800438 return FakeH264Encoder::Encode(input_image, codec_specific_info, frame_types);
439}
440
brandtr49ce67c2017-02-11 00:25:18 -0800441int32_t MultithreadedFakeH264Encoder::Release() {
442 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
443
444 queue1_.reset();
445 queue2_.reset();
446
447 return FakeH264Encoder::Release();
448}
449
pbos@webrtc.orgcb5118c2013-09-03 09:10:37 +0000450} // namespace test
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000451} // namespace webrtc