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sprang429600d2017-01-26 06:12:26 -08001/*
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
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020011#include "modules/video_coding/include/video_codec_initializer.h"
Sergey Silkin86684962018-03-28 19:32:37 +020012#include "api/video_codecs/video_encoder.h"
13#include "common_types.h" // NOLINT(build/include)
14#include "common_video/include/video_bitrate_allocator.h"
15#include "modules/video_coding/codecs/vp8/temporal_layers.h"
16#include "modules/video_coding/codecs/vp9/include/vp9_globals.h"
Niels Möller84255bb2017-10-06 13:43:23 +020017#include "rtc_base/refcountedobject.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020018#include "test/gtest.h"
sprang429600d2017-01-26 06:12:26 -080019
20namespace webrtc {
21
22namespace {
sprang429600d2017-01-26 06:12:26 -080023static const int kDefaultWidth = 1280;
24static const int kDefaultHeight = 720;
25static const int kDefaultFrameRate = 30;
26static const uint32_t kDefaultMinBitrateBps = 60000;
27static const uint32_t kDefaultTargetBitrateBps = 2000000;
28static const uint32_t kDefaultMaxBitrateBps = 2000000;
29static const uint32_t kDefaultMinTransmitBitrateBps = 400000;
30static const int kDefaultMaxQp = 48;
31static const uint32_t kScreenshareTl0BitrateBps = 100000;
32static const uint32_t kScreenshareCodecTargetBitrateBps = 200000;
33static const uint32_t kScreenshareDefaultFramerate = 5;
34// Bitrates for the temporal layers of the higher screenshare simulcast stream.
35static const uint32_t kHighScreenshareTl0Bps = 800000;
36static const uint32_t kHighScreenshareTl1Bps = 1200000;
37} // namespace
38
sprang429600d2017-01-26 06:12:26 -080039// TODO(sprang): Extend coverage to handle the rest of the codec initializer.
40class VideoCodecInitializerTest : public ::testing::Test {
41 public:
42 VideoCodecInitializerTest() : nack_enabled_(false) {}
43 virtual ~VideoCodecInitializerTest() {}
44
45 protected:
46 void SetUpFor(VideoCodecType type,
47 int num_spatial_streams,
48 int num_temporal_streams,
49 bool screenshare) {
50 config_ = VideoEncoderConfig();
Niels Möller259a4972018-04-05 15:36:51 +020051 config_.codec_type = type;
52
sprang429600d2017-01-26 06:12:26 -080053 if (screenshare) {
54 config_.min_transmit_bitrate_bps = kDefaultMinTransmitBitrateBps;
55 config_.content_type = VideoEncoderConfig::ContentType::kScreen;
56 }
57
58 if (type == VideoCodecType::kVideoCodecVP8) {
59 config_.number_of_streams = num_spatial_streams;
60 VideoCodecVP8 vp8_settings = VideoEncoder::GetDefaultVp8Settings();
61 vp8_settings.numberOfTemporalLayers = num_temporal_streams;
62 config_.encoder_specific_settings = new rtc::RefCountedObject<
63 webrtc::VideoEncoderConfig::Vp8EncoderSpecificSettings>(vp8_settings);
Sergey Silkin86684962018-03-28 19:32:37 +020064 } else if (type == VideoCodecType::kVideoCodecVP9) {
65 VideoCodecVP9 vp9_settings = VideoEncoder::GetDefaultVp9Settings();
66 vp9_settings.numberOfSpatialLayers = num_spatial_streams;
67 vp9_settings.numberOfTemporalLayers = num_temporal_streams;
68 config_.encoder_specific_settings = new rtc::RefCountedObject<
69 webrtc::VideoEncoderConfig::Vp9EncoderSpecificSettings>(vp9_settings);
70 } else if (type != VideoCodecType::kVideoCodecMultiplex) {
sprang429600d2017-01-26 06:12:26 -080071 ADD_FAILURE() << "Unexpected codec type: " << type;
72 }
73 }
74
75 bool InitializeCodec() {
76 codec_out_ = VideoCodec();
77 bitrate_allocator_out_.reset();
78 temporal_layers_.clear();
Niels Möller259a4972018-04-05 15:36:51 +020079 if (!VideoCodecInitializer::SetupCodec(config_, streams_, nack_enabled_,
80 &codec_out_,
sprang429600d2017-01-26 06:12:26 -080081 &bitrate_allocator_out_)) {
82 return false;
83 }
Emircan Uysalerd7ae3c32018-01-25 13:01:09 -080084 if (codec_out_.codecType == VideoCodecType::kVideoCodecMultiplex)
Emircan Uysaler0a375472017-12-11 12:21:02 +053085 return true;
Erik Språng82fad3d2018-03-21 09:57:23 +010086
sprang429600d2017-01-26 06:12:26 -080087 // Make sure temporal layers instances have been created.
88 if (codec_out_.codecType == VideoCodecType::kVideoCodecVP8) {
sprang429600d2017-01-26 06:12:26 -080089 for (int i = 0; i < codec_out_.numberOfSimulcastStreams; ++i) {
Erik Språng82fad3d2018-03-21 09:57:23 +010090 temporal_layers_.emplace_back(
Niels Möller150dcb02018-03-27 14:16:55 +020091 TemporalLayers::CreateTemporalLayers(codec_out_, i));
sprang429600d2017-01-26 06:12:26 -080092 }
93 }
94 return true;
95 }
96
97 VideoStream DefaultStream() {
98 VideoStream stream;
99 stream.width = kDefaultWidth;
100 stream.height = kDefaultHeight;
101 stream.max_framerate = kDefaultFrameRate;
102 stream.min_bitrate_bps = kDefaultMinBitrateBps;
103 stream.target_bitrate_bps = kDefaultTargetBitrateBps;
104 stream.max_bitrate_bps = kDefaultMaxBitrateBps;
105 stream.max_qp = kDefaultMaxQp;
Sergey Silkina796a7e2018-03-01 15:11:29 +0100106 stream.num_temporal_layers = 1;
Seth Hampson46e31ba2018-01-18 10:39:54 -0800107 stream.active = true;
sprang429600d2017-01-26 06:12:26 -0800108 return stream;
109 }
110
111 VideoStream DefaultScreenshareStream() {
112 VideoStream stream = DefaultStream();
113 stream.min_bitrate_bps = 30000;
114 stream.target_bitrate_bps = kScreenshareTl0BitrateBps;
115 stream.max_bitrate_bps = 1000000;
116 stream.max_framerate = kScreenshareDefaultFramerate;
Sergey Silkina796a7e2018-03-01 15:11:29 +0100117 stream.num_temporal_layers = 2;
Seth Hampson46e31ba2018-01-18 10:39:54 -0800118 stream.active = true;
sprang429600d2017-01-26 06:12:26 -0800119 return stream;
120 }
121
122 // Input settings.
123 VideoEncoderConfig config_;
sprang429600d2017-01-26 06:12:26 -0800124 std::vector<VideoStream> streams_;
125 bool nack_enabled_;
126
127 // Output.
128 VideoCodec codec_out_;
129 std::unique_ptr<VideoBitrateAllocator> bitrate_allocator_out_;
130 std::vector<std::unique_ptr<TemporalLayers>> temporal_layers_;
131};
132
133TEST_F(VideoCodecInitializerTest, SingleStreamVp8Screenshare) {
134 SetUpFor(VideoCodecType::kVideoCodecVP8, 1, 1, true);
135 streams_.push_back(DefaultStream());
136 EXPECT_TRUE(InitializeCodec());
137
Erik Språng566124a2018-04-23 12:32:22 +0200138 VideoBitrateAllocation bitrate_allocation =
139 bitrate_allocator_out_->GetAllocation(kDefaultTargetBitrateBps,
140 kDefaultFrameRate);
sprang429600d2017-01-26 06:12:26 -0800141 EXPECT_EQ(1u, codec_out_.numberOfSimulcastStreams);
142 EXPECT_EQ(1u, codec_out_.VP8()->numberOfTemporalLayers);
143 EXPECT_EQ(kDefaultTargetBitrateBps, bitrate_allocation.get_sum_bps());
144}
145
Seth Hampson46e31ba2018-01-18 10:39:54 -0800146TEST_F(VideoCodecInitializerTest, SingleStreamVp8ScreenshareInactive) {
147 SetUpFor(VideoCodecType::kVideoCodecVP8, 1, 1, true);
148 VideoStream inactive_stream = DefaultStream();
149 inactive_stream.active = false;
150 streams_.push_back(inactive_stream);
151 EXPECT_TRUE(InitializeCodec());
152
Erik Språng566124a2018-04-23 12:32:22 +0200153 VideoBitrateAllocation bitrate_allocation =
154 bitrate_allocator_out_->GetAllocation(kDefaultTargetBitrateBps,
155 kDefaultFrameRate);
Seth Hampson46e31ba2018-01-18 10:39:54 -0800156 EXPECT_EQ(1u, codec_out_.numberOfSimulcastStreams);
157 EXPECT_EQ(1u, codec_out_.VP8()->numberOfTemporalLayers);
158 EXPECT_EQ(0U, bitrate_allocation.get_sum_bps());
159}
160
sprang429600d2017-01-26 06:12:26 -0800161TEST_F(VideoCodecInitializerTest, TemporalLayeredVp8Screenshare) {
162 SetUpFor(VideoCodecType::kVideoCodecVP8, 1, 2, true);
163 streams_.push_back(DefaultScreenshareStream());
164 EXPECT_TRUE(InitializeCodec());
165
166 EXPECT_EQ(1u, codec_out_.numberOfSimulcastStreams);
167 EXPECT_EQ(2u, codec_out_.VP8()->numberOfTemporalLayers);
Erik Språng566124a2018-04-23 12:32:22 +0200168 VideoBitrateAllocation bitrate_allocation =
169 bitrate_allocator_out_->GetAllocation(kScreenshareCodecTargetBitrateBps,
170 kScreenshareDefaultFramerate);
sprang429600d2017-01-26 06:12:26 -0800171 EXPECT_EQ(kScreenshareCodecTargetBitrateBps,
172 bitrate_allocation.get_sum_bps());
173 EXPECT_EQ(kScreenshareTl0BitrateBps, bitrate_allocation.GetBitrate(0, 0));
174}
175
Seth Hampson46e31ba2018-01-18 10:39:54 -0800176TEST_F(VideoCodecInitializerTest, SimulcastVp8Screenshare) {
sprang429600d2017-01-26 06:12:26 -0800177 SetUpFor(VideoCodecType::kVideoCodecVP8, 2, 1, true);
178 streams_.push_back(DefaultScreenshareStream());
179 VideoStream video_stream = DefaultStream();
180 video_stream.max_framerate = kScreenshareDefaultFramerate;
181 streams_.push_back(video_stream);
182 EXPECT_TRUE(InitializeCodec());
183
184 EXPECT_EQ(2u, codec_out_.numberOfSimulcastStreams);
185 EXPECT_EQ(1u, codec_out_.VP8()->numberOfTemporalLayers);
186 const uint32_t max_bitrate_bps =
187 streams_[0].target_bitrate_bps + streams_[1].max_bitrate_bps;
Erik Språng566124a2018-04-23 12:32:22 +0200188 VideoBitrateAllocation bitrate_allocation =
189 bitrate_allocator_out_->GetAllocation(max_bitrate_bps,
190 kScreenshareDefaultFramerate);
sprang429600d2017-01-26 06:12:26 -0800191 EXPECT_EQ(max_bitrate_bps, bitrate_allocation.get_sum_bps());
192 EXPECT_EQ(static_cast<uint32_t>(streams_[0].target_bitrate_bps),
193 bitrate_allocation.GetSpatialLayerSum(0));
194 EXPECT_EQ(static_cast<uint32_t>(streams_[1].max_bitrate_bps),
195 bitrate_allocation.GetSpatialLayerSum(1));
196}
197
Seth Hampson46e31ba2018-01-18 10:39:54 -0800198// Tests that when a video stream is inactive, then the bitrate allocation will
199// be 0 for that stream.
200TEST_F(VideoCodecInitializerTest, SimulcastVp8ScreenshareInactive) {
201 SetUpFor(VideoCodecType::kVideoCodecVP8, 2, 1, true);
202 streams_.push_back(DefaultScreenshareStream());
203 VideoStream inactive_video_stream = DefaultStream();
204 inactive_video_stream.active = false;
205 inactive_video_stream.max_framerate = kScreenshareDefaultFramerate;
206 streams_.push_back(inactive_video_stream);
207 EXPECT_TRUE(InitializeCodec());
208
209 EXPECT_EQ(2u, codec_out_.numberOfSimulcastStreams);
210 EXPECT_EQ(1u, codec_out_.VP8()->numberOfTemporalLayers);
211 const uint32_t target_bitrate =
212 streams_[0].target_bitrate_bps + streams_[1].target_bitrate_bps;
Erik Språng566124a2018-04-23 12:32:22 +0200213 VideoBitrateAllocation bitrate_allocation =
214 bitrate_allocator_out_->GetAllocation(target_bitrate,
215 kScreenshareDefaultFramerate);
Seth Hampson46e31ba2018-01-18 10:39:54 -0800216 EXPECT_EQ(static_cast<uint32_t>(streams_[0].max_bitrate_bps),
217 bitrate_allocation.get_sum_bps());
218 EXPECT_EQ(static_cast<uint32_t>(streams_[0].max_bitrate_bps),
219 bitrate_allocation.GetSpatialLayerSum(0));
220 EXPECT_EQ(0U, bitrate_allocation.GetSpatialLayerSum(1));
221}
222
223TEST_F(VideoCodecInitializerTest, HighFpsSimulcastVp8Screenshare) {
sprang429600d2017-01-26 06:12:26 -0800224 // Two simulcast streams, the lower one using legacy settings (two temporal
225 // streams, 5fps), the higher one using 3 temporal streams and 30fps.
226 SetUpFor(VideoCodecType::kVideoCodecVP8, 2, 3, true);
227 streams_.push_back(DefaultScreenshareStream());
228 VideoStream video_stream = DefaultStream();
Sergey Silkina796a7e2018-03-01 15:11:29 +0100229 video_stream.num_temporal_layers = 3;
sprang429600d2017-01-26 06:12:26 -0800230 streams_.push_back(video_stream);
231 EXPECT_TRUE(InitializeCodec());
232
233 EXPECT_EQ(2u, codec_out_.numberOfSimulcastStreams);
234 EXPECT_EQ(3u, codec_out_.VP8()->numberOfTemporalLayers);
235 const uint32_t max_bitrate_bps =
236 streams_[0].target_bitrate_bps + streams_[1].max_bitrate_bps;
Erik Språng566124a2018-04-23 12:32:22 +0200237 VideoBitrateAllocation bitrate_allocation =
sprang429600d2017-01-26 06:12:26 -0800238 bitrate_allocator_out_->GetAllocation(max_bitrate_bps, kDefaultFrameRate);
239 EXPECT_EQ(max_bitrate_bps, bitrate_allocation.get_sum_bps());
240 EXPECT_EQ(static_cast<uint32_t>(streams_[0].target_bitrate_bps),
241 bitrate_allocation.GetSpatialLayerSum(0));
242 EXPECT_EQ(static_cast<uint32_t>(streams_[1].max_bitrate_bps),
243 bitrate_allocation.GetSpatialLayerSum(1));
244 EXPECT_EQ(kHighScreenshareTl0Bps, bitrate_allocation.GetBitrate(1, 0));
245 EXPECT_EQ(kHighScreenshareTl1Bps - kHighScreenshareTl0Bps,
246 bitrate_allocation.GetBitrate(1, 1));
247}
248
Emircan Uysalerd7ae3c32018-01-25 13:01:09 -0800249TEST_F(VideoCodecInitializerTest, SingleStreamMultiplexCodec) {
250 SetUpFor(VideoCodecType::kVideoCodecMultiplex, 1, 1, true);
Emircan Uysaler0a375472017-12-11 12:21:02 +0530251 streams_.push_back(DefaultStream());
252 EXPECT_TRUE(InitializeCodec());
253}
254
Sergey Silkin86684962018-03-28 19:32:37 +0200255TEST_F(VideoCodecInitializerTest, Vp9SvcDefaultLayering) {
256 SetUpFor(VideoCodecType::kVideoCodecVP9, 3, 3, false);
257 VideoStream stream = DefaultStream();
258 stream.num_temporal_layers = 3;
259 streams_.push_back(stream);
260
261 EXPECT_TRUE(InitializeCodec());
262 EXPECT_EQ(codec_out_.VP9()->numberOfSpatialLayers, 3u);
263 EXPECT_EQ(codec_out_.VP9()->numberOfTemporalLayers, 3u);
264}
265
266TEST_F(VideoCodecInitializerTest, Vp9SvcAdjustedLayering) {
267 SetUpFor(VideoCodecType::kVideoCodecVP9, 3, 3, false);
268 VideoStream stream = DefaultStream();
269 stream.num_temporal_layers = 3;
270 // Set resolution which is only enough to produce 2 spatial layers.
271 stream.width = kMinVp9SpatialLayerWidth * 2;
272 stream.height = kMinVp9SpatialLayerHeight * 2;
273
274 streams_.push_back(stream);
275
276 EXPECT_TRUE(InitializeCodec());
277 EXPECT_EQ(codec_out_.VP9()->numberOfSpatialLayers, 2u);
278}
279
Sergey Silkinfafeac32018-04-13 16:36:39 +0200280TEST_F(VideoCodecInitializerTest,
281 Vp9SingleSpatialLayerMaxBitrateIsEqualToCodecMaxBitrate) {
282 SetUpFor(VideoCodecType::kVideoCodecVP9, 1, 3, false);
283 VideoStream stream = DefaultStream();
284 stream.num_temporal_layers = 3;
285 streams_.push_back(stream);
286
287 EXPECT_TRUE(InitializeCodec());
288 EXPECT_EQ(codec_out_.spatialLayers[0].maxBitrate,
289 kDefaultMaxBitrateBps / 1000);
290}
291
sprang429600d2017-01-26 06:12:26 -0800292} // namespace webrtc