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Erik Språng08127a92016-11-16 16:41:30 +01001/*
2 * Copyright (c) 2016 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 "webrtc/modules/video_coding/include/video_codec_initializer.h"
12
Erik Språng08127a92016-11-16 16:41:30 +010013#include "webrtc/common_types.h"
ilnik04f4d122017-06-19 07:18:55 -070014#include "webrtc/common_video/include/video_bitrate_allocator.h"
Erik Språng08127a92016-11-16 16:41:30 +010015#include "webrtc/modules/video_coding/codecs/vp8/screenshare_layers.h"
kjellandera8d8aad2017-03-08 05:42:26 -080016#include "webrtc/modules/video_coding/codecs/vp8/simulcast_rate_allocator.h"
Erik Språng08127a92016-11-16 16:41:30 +010017#include "webrtc/modules/video_coding/codecs/vp8/temporal_layers.h"
ilnik04f4d122017-06-19 07:18:55 -070018#include "webrtc/modules/video_coding/include/video_coding_defines.h"
Erik Språng08127a92016-11-16 16:41:30 +010019#include "webrtc/modules/video_coding/utility/default_video_bitrate_allocator.h"
Edward Lemurc20978e2017-07-06 19:44:34 +020020#include "webrtc/rtc_base/basictypes.h"
21#include "webrtc/rtc_base/logging.h"
Erik Språng08127a92016-11-16 16:41:30 +010022#include "webrtc/system_wrappers/include/clock.h"
23
24namespace webrtc {
emircanbbcc3562017-08-18 00:28:40 -070025namespace {
26bool TemporalLayersConfigured(const std::vector<VideoStream>& streams) {
27 for (const VideoStream& stream : streams) {
28 if (stream.temporal_layer_thresholds_bps.size() > 0)
29 return true;
30 }
31 return false;
32}
33} // namespace
Erik Språng08127a92016-11-16 16:41:30 +010034
35bool VideoCodecInitializer::SetupCodec(
36 const VideoEncoderConfig& config,
37 const VideoSendStream::Config::EncoderSettings settings,
38 const std::vector<VideoStream>& streams,
asapersson5f7226f2016-11-25 04:37:00 -080039 bool nack_enabled,
Erik Språng08127a92016-11-16 16:41:30 +010040 VideoCodec* codec,
41 std::unique_ptr<VideoBitrateAllocator>* bitrate_allocator) {
asapersson5f7226f2016-11-25 04:37:00 -080042 *codec =
43 VideoEncoderConfigToVideoCodec(config, streams, settings.payload_name,
44 settings.payload_type, nack_enabled);
Erik Språng08127a92016-11-16 16:41:30 +010045
46 std::unique_ptr<TemporalLayersFactory> tl_factory;
47 switch (codec->codecType) {
48 case kVideoCodecVP8: {
49 if (!codec->VP8()->tl_factory) {
50 if (codec->mode == kScreensharing &&
sprang429600d2017-01-26 06:12:26 -080051 (codec->numberOfSimulcastStreams > 1 ||
52 (codec->numberOfSimulcastStreams == 1 &&
53 codec->VP8()->numberOfTemporalLayers == 2))) {
Erik Språng08127a92016-11-16 16:41:30 +010054 // Conference mode temporal layering for screen content.
55 tl_factory.reset(new ScreenshareTemporalLayersFactory());
56 } else {
57 // Standard video temporal layers.
58 tl_factory.reset(new TemporalLayersFactory());
59 }
60 codec->VP8()->tl_factory = tl_factory.get();
61 }
62 break;
63 }
64 default: {
65 // TODO(sprang): Warn, once we have specific allocators for all supported
66 // codec types.
67 break;
68 }
69 }
70 *bitrate_allocator = CreateBitrateAllocator(*codec, std::move(tl_factory));
71
72 return true;
73}
74
75std::unique_ptr<VideoBitrateAllocator>
76VideoCodecInitializer::CreateBitrateAllocator(
77 const VideoCodec& codec,
78 std::unique_ptr<TemporalLayersFactory> tl_factory) {
79 std::unique_ptr<VideoBitrateAllocator> rate_allocator;
80
81 switch (codec.codecType) {
82 case kVideoCodecVP8: {
83 // Set up default VP8 temporal layer factory, if not provided.
84 rate_allocator.reset(
85 new SimulcastRateAllocator(codec, std::move(tl_factory)));
86 } break;
87 default:
88 rate_allocator.reset(new DefaultVideoBitrateAllocator(codec));
89 }
90
91 return rate_allocator;
92}
93
94// TODO(sprang): Split this up and separate the codec specific parts.
95VideoCodec VideoCodecInitializer::VideoEncoderConfigToVideoCodec(
96 const VideoEncoderConfig& config,
97 const std::vector<VideoStream>& streams,
98 const std::string& payload_name,
asapersson5f7226f2016-11-25 04:37:00 -080099 int payload_type,
100 bool nack_enabled) {
Erik Språng08127a92016-11-16 16:41:30 +0100101 static const int kEncoderMinBitrateKbps = 30;
102 RTC_DCHECK(!streams.empty());
103 RTC_DCHECK_GE(config.min_transmit_bitrate_bps, 0);
104
105 VideoCodec video_codec;
106 memset(&video_codec, 0, sizeof(video_codec));
107 video_codec.codecType = PayloadNameToCodecType(payload_name)
108 .value_or(VideoCodecType::kVideoCodecGeneric);
109
110 switch (config.content_type) {
111 case VideoEncoderConfig::ContentType::kRealtimeVideo:
112 video_codec.mode = kRealtimeVideo;
113 break;
114 case VideoEncoderConfig::ContentType::kScreen:
115 video_codec.mode = kScreensharing;
aleloi47037412017-01-26 07:57:15 -0800116 if (!streams.empty() &&
Erik Språng08127a92016-11-16 16:41:30 +0100117 streams[0].temporal_layer_thresholds_bps.size() == 1) {
118 video_codec.targetBitrate =
119 streams[0].temporal_layer_thresholds_bps[0] / 1000;
120 }
121 break;
122 }
123
124 if (config.encoder_specific_settings)
125 config.encoder_specific_settings->FillEncoderSpecificSettings(&video_codec);
126
127 switch (video_codec.codecType) {
128 case kVideoCodecVP8: {
129 if (!config.encoder_specific_settings)
130 *video_codec.VP8() = VideoEncoder::GetDefaultVp8Settings();
131 video_codec.VP8()->numberOfTemporalLayers = static_cast<unsigned char>(
132 streams.back().temporal_layer_thresholds_bps.size() + 1);
emircanbbcc3562017-08-18 00:28:40 -0700133
134 if (nack_enabled && !TemporalLayersConfigured(streams)) {
asapersson5f7226f2016-11-25 04:37:00 -0800135 LOG(LS_INFO) << "No temporal layers and nack enabled -> resilience off";
136 video_codec.VP8()->resilience = kResilienceOff;
137 }
Erik Språng08127a92016-11-16 16:41:30 +0100138 break;
139 }
140 case kVideoCodecVP9: {
141 if (!config.encoder_specific_settings)
142 *video_codec.VP9() = VideoEncoder::GetDefaultVp9Settings();
143 if (video_codec.mode == kScreensharing &&
144 config.encoder_specific_settings) {
145 video_codec.VP9()->flexibleMode = true;
146 // For now VP9 screensharing use 1 temporal and 2 spatial layers.
147 RTC_DCHECK_EQ(1, video_codec.VP9()->numberOfTemporalLayers);
148 RTC_DCHECK_EQ(2, video_codec.VP9()->numberOfSpatialLayers);
149 }
150 video_codec.VP9()->numberOfTemporalLayers = static_cast<unsigned char>(
151 streams.back().temporal_layer_thresholds_bps.size() + 1);
emircanbbcc3562017-08-18 00:28:40 -0700152
153 if (nack_enabled && !TemporalLayersConfigured(streams) &&
154 video_codec.VP9()->numberOfSpatialLayers == 1) {
155 LOG(LS_INFO) << "No temporal or spatial layers and nack enabled -> "
156 << "resilience off";
157 video_codec.VP9()->resilienceOn = false;
158 }
Erik Språng08127a92016-11-16 16:41:30 +0100159 break;
160 }
161 case kVideoCodecH264: {
162 if (!config.encoder_specific_settings)
163 *video_codec.H264() = VideoEncoder::GetDefaultH264Settings();
164 break;
165 }
166 default:
167 // TODO(pbos): Support encoder_settings codec-agnostically.
168 RTC_DCHECK(!config.encoder_specific_settings)
169 << "Encoder-specific settings for codec type not wired up.";
170 break;
171 }
172
173 strncpy(video_codec.plName, payload_name.c_str(), kPayloadNameSize - 1);
174 video_codec.plName[kPayloadNameSize - 1] = '\0';
175 video_codec.plType = payload_type;
176 video_codec.numberOfSimulcastStreams =
177 static_cast<unsigned char>(streams.size());
178 video_codec.minBitrate = streams[0].min_bitrate_bps / 1000;
179 if (video_codec.minBitrate < kEncoderMinBitrateKbps)
180 video_codec.minBitrate = kEncoderMinBitrateKbps;
ilnik04f4d122017-06-19 07:18:55 -0700181 video_codec.timing_frame_thresholds = {kDefaultTimingFramesDelayMs,
182 kDefaultOutlierFrameSizePercent};
kwiberg352444f2016-11-28 15:58:53 -0800183 RTC_DCHECK_LE(streams.size(), kMaxSimulcastStreams);
Erik Språng08127a92016-11-16 16:41:30 +0100184 if (video_codec.codecType == kVideoCodecVP9) {
185 // If the vector is empty, bitrates will be configured automatically.
186 RTC_DCHECK(config.spatial_layers.empty() ||
187 config.spatial_layers.size() ==
188 video_codec.VP9()->numberOfSpatialLayers);
189 RTC_DCHECK_LE(video_codec.VP9()->numberOfSpatialLayers,
190 kMaxSimulcastStreams);
191 for (size_t i = 0; i < config.spatial_layers.size(); ++i)
192 video_codec.spatialLayers[i] = config.spatial_layers[i];
193 }
194 for (size_t i = 0; i < streams.size(); ++i) {
195 SimulcastStream* sim_stream = &video_codec.simulcastStream[i];
kwibergaf476c72016-11-28 15:21:39 -0800196 RTC_DCHECK_GT(streams[i].width, 0);
197 RTC_DCHECK_GT(streams[i].height, 0);
Erik Språng08127a92016-11-16 16:41:30 +0100198 RTC_DCHECK_GT(streams[i].max_framerate, 0);
sprang429600d2017-01-26 06:12:26 -0800199 // Different framerates not supported per stream at the moment, unless it's
200 // screenshare where there is an exception and a simulcast encoder adapter,
201 // which supports different framerates, is used instead.
202 if (config.content_type != VideoEncoderConfig::ContentType::kScreen) {
203 RTC_DCHECK_EQ(streams[i].max_framerate, streams[0].max_framerate);
204 }
Erik Språng08127a92016-11-16 16:41:30 +0100205 RTC_DCHECK_GE(streams[i].min_bitrate_bps, 0);
206 RTC_DCHECK_GE(streams[i].target_bitrate_bps, streams[i].min_bitrate_bps);
207 RTC_DCHECK_GE(streams[i].max_bitrate_bps, streams[i].target_bitrate_bps);
208 RTC_DCHECK_GE(streams[i].max_qp, 0);
209
210 sim_stream->width = static_cast<uint16_t>(streams[i].width);
211 sim_stream->height = static_cast<uint16_t>(streams[i].height);
212 sim_stream->minBitrate = streams[i].min_bitrate_bps / 1000;
213 sim_stream->targetBitrate = streams[i].target_bitrate_bps / 1000;
214 sim_stream->maxBitrate = streams[i].max_bitrate_bps / 1000;
215 sim_stream->qpMax = streams[i].max_qp;
216 sim_stream->numberOfTemporalLayers = static_cast<unsigned char>(
217 streams[i].temporal_layer_thresholds_bps.size() + 1);
218
219 video_codec.width =
220 std::max(video_codec.width, static_cast<uint16_t>(streams[i].width));
221 video_codec.height =
222 std::max(video_codec.height, static_cast<uint16_t>(streams[i].height));
223 video_codec.minBitrate =
224 std::min(static_cast<uint16_t>(video_codec.minBitrate),
225 static_cast<uint16_t>(streams[i].min_bitrate_bps / 1000));
226 video_codec.maxBitrate += streams[i].max_bitrate_bps / 1000;
227 video_codec.qpMax = std::max(video_codec.qpMax,
228 static_cast<unsigned int>(streams[i].max_qp));
229 }
230
231 if (video_codec.maxBitrate == 0) {
232 // Unset max bitrate -> cap to one bit per pixel.
233 video_codec.maxBitrate =
234 (video_codec.width * video_codec.height * video_codec.maxFramerate) /
235 1000;
236 }
237 if (video_codec.maxBitrate < kEncoderMinBitrateKbps)
238 video_codec.maxBitrate = kEncoderMinBitrateKbps;
239
240 RTC_DCHECK_GT(streams[0].max_framerate, 0);
241 video_codec.maxFramerate = streams[0].max_framerate;
242 return video_codec;
243}
244
245} // namespace webrtc