blob: 38b920c39ae471ad6f0fb493f0e7c440ca0a227a [file] [log] [blame]
kjellander@webrtc.org35a17562011-10-06 06:44:54 +00001/*
pwestin@webrtc.orgce330352012-04-12 06:59:14 +00002 * Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
kjellander@webrtc.org35a17562011-10-06 06:44:54 +00003 *
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 */
kjellander@webrtc.org5b97b122011-12-08 07:42:18 +000010
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020011#include "modules/video_coding/codecs/test/videoprocessor.h"
kjellander@webrtc.org35a17562011-10-06 06:44:54 +000012
ssilkin612f8582017-09-28 09:23:17 -070013#include <algorithm>
kjellander@webrtc.org35a17562011-10-06 06:44:54 +000014#include <limits>
Erik Språng08127a92016-11-16 16:41:30 +010015#include <utility>
kjellander@webrtc.org35a17562011-10-06 06:44:54 +000016
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020017#include "api/video/i420_buffer.h"
Mirko Bonadei71207422017-09-15 13:58:09 +020018#include "common_types.h" // NOLINT(build/include)
ssilkin612f8582017-09-28 09:23:17 -070019#include "common_video/h264/h264_common.h"
Rasmus Brandt5f7a8912018-02-28 17:17:15 +010020#include "common_video/libyuv/include/webrtc_libyuv.h"
Sergey Silkin3be2a552018-01-17 15:11:44 +010021#include "modules/rtp_rtcp/include/rtp_rtcp_defines.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020022#include "modules/video_coding/codecs/vp8/simulcast_rate_allocator.h"
23#include "modules/video_coding/include/video_codec_initializer.h"
24#include "modules/video_coding/utility/default_video_bitrate_allocator.h"
25#include "rtc_base/checks.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020026#include "rtc_base/timeutils.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020027#include "test/gtest.h"
Sergey Silkin8d3758e2018-03-14 11:28:15 +010028#include "third_party/libyuv/include/libyuv/compare.h"
Sergey Silkin10d9d592018-02-01 13:25:17 +010029#include "third_party/libyuv/include/libyuv/scale.h"
kjellander@webrtc.org35a17562011-10-06 06:44:54 +000030
31namespace webrtc {
32namespace test {
33
brandtrb78bc752017-02-22 01:26:59 -080034namespace {
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +010035
Åsa Persson91af24a2018-01-24 17:20:18 +010036const int kMsToRtpTimestamp = kVideoPayloadTypeFrequency / 1000;
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +010037const int kMaxBufferedInputFrames = 10;
brandtr17b958c2017-03-07 01:41:43 -080038
brandtraebc61e2017-02-28 07:13:47 -080039std::unique_ptr<VideoBitrateAllocator> CreateBitrateAllocator(
brandtr07734a52017-08-08 08:35:53 -070040 TestConfig* config) {
brandtraebc61e2017-02-28 07:13:47 -080041 std::unique_ptr<TemporalLayersFactory> tl_factory;
brandtr07734a52017-08-08 08:35:53 -070042 if (config->codec_settings.codecType == VideoCodecType::kVideoCodecVP8) {
brandtraebc61e2017-02-28 07:13:47 -080043 tl_factory.reset(new TemporalLayersFactory());
brandtr07734a52017-08-08 08:35:53 -070044 config->codec_settings.VP8()->tl_factory = tl_factory.get();
brandtraebc61e2017-02-28 07:13:47 -080045 }
46 return std::unique_ptr<VideoBitrateAllocator>(
brandtr07734a52017-08-08 08:35:53 -070047 VideoCodecInitializer::CreateBitrateAllocator(config->codec_settings,
brandtraebc61e2017-02-28 07:13:47 -080048 std::move(tl_factory)));
49}
50
Sergey Silkin3be2a552018-01-17 15:11:44 +010051size_t GetMaxNaluSizeBytes(const EncodedImage& encoded_frame,
52 const TestConfig& config) {
ssilkin612f8582017-09-28 09:23:17 -070053 if (config.codec_settings.codecType != kVideoCodecH264)
Sergey Silkin3be2a552018-01-17 15:11:44 +010054 return 0;
ssilkin612f8582017-09-28 09:23:17 -070055
56 std::vector<webrtc::H264::NaluIndex> nalu_indices =
57 webrtc::H264::FindNaluIndices(encoded_frame._buffer,
58 encoded_frame._length);
59
60 RTC_CHECK(!nalu_indices.empty());
61
Sergey Silkin3be2a552018-01-17 15:11:44 +010062 size_t max_size = 0;
ssilkin612f8582017-09-28 09:23:17 -070063 for (const webrtc::H264::NaluIndex& index : nalu_indices)
Sergey Silkin3be2a552018-01-17 15:11:44 +010064 max_size = std::max(max_size, index.payload_size);
ssilkin612f8582017-09-28 09:23:17 -070065
Sergey Silkin3be2a552018-01-17 15:11:44 +010066 return max_size;
ssilkin612f8582017-09-28 09:23:17 -070067}
68
Rasmus Brandtd062a3c2018-03-08 16:45:54 +010069void GetLayerIndices(const CodecSpecificInfo& codec_specific,
70 size_t* simulcast_svc_idx,
71 size_t* temporal_idx) {
72 if (codec_specific.codecType == kVideoCodecVP8) {
73 *simulcast_svc_idx = codec_specific.codecSpecific.VP8.simulcastIdx;
74 *temporal_idx = codec_specific.codecSpecific.VP8.temporalIdx;
75 } else if (codec_specific.codecType == kVideoCodecVP9) {
76 *simulcast_svc_idx = codec_specific.codecSpecific.VP9.spatial_idx;
77 *temporal_idx = codec_specific.codecSpecific.VP9.temporal_idx;
78 }
79 if (*simulcast_svc_idx == kNoSpatialIdx) {
80 *simulcast_svc_idx = 0;
81 }
82 if (*temporal_idx == kNoTemporalIdx) {
83 *temporal_idx = 0;
84 }
85}
86
asaperssonae9ba042017-03-07 00:25:38 -080087int GetElapsedTimeMicroseconds(int64_t start_ns, int64_t stop_ns) {
88 int64_t diff_us = (stop_ns - start_ns) / rtc::kNumNanosecsPerMicrosec;
89 RTC_DCHECK_GE(diff_us, std::numeric_limits<int>::min());
90 RTC_DCHECK_LE(diff_us, std::numeric_limits<int>::max());
91 return static_cast<int>(diff_us);
92}
93
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +010094void ExtractI420BufferWithSize(const VideoFrame& image,
95 int width,
96 int height,
97 rtc::Buffer* buffer) {
Åsa Perssonf0c44672017-10-24 16:03:39 +020098 if (image.width() != width || image.height() != height) {
99 EXPECT_DOUBLE_EQ(static_cast<double>(width) / height,
100 static_cast<double>(image.width()) / image.height());
101 // Same aspect ratio, no cropping needed.
102 rtc::scoped_refptr<I420Buffer> scaled(I420Buffer::Create(width, height));
103 scaled->ScaleFrom(*image.video_frame_buffer()->ToI420());
104
105 size_t length =
106 CalcBufferSize(VideoType::kI420, scaled->width(), scaled->height());
107 buffer->SetSize(length);
108 RTC_CHECK_NE(ExtractBuffer(scaled, length, buffer->data()), -1);
109 return;
110 }
111
112 // No resize.
113 size_t length =
114 CalcBufferSize(VideoType::kI420, image.width(), image.height());
115 buffer->SetSize(length);
116 RTC_CHECK_NE(ExtractBuffer(image, length, buffer->data()), -1);
117}
118
Sergey Silkin8d3758e2018-03-14 11:28:15 +0100119void CalculateFrameQuality(const I420BufferInterface& ref_buffer,
120 const I420BufferInterface& dec_buffer,
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100121 FrameStatistics* frame_stat) {
Sergey Silkin8d3758e2018-03-14 11:28:15 +0100122 if (ref_buffer.width() != dec_buffer.width() ||
123 ref_buffer.height() != dec_buffer.height()) {
124 RTC_CHECK_GE(ref_buffer.width(), dec_buffer.width());
125 RTC_CHECK_GE(ref_buffer.height(), dec_buffer.height());
126 // Downscale reference frame.
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100127 rtc::scoped_refptr<I420Buffer> scaled_buffer =
Sergey Silkin8d3758e2018-03-14 11:28:15 +0100128 I420Buffer::Create(dec_buffer.width(), dec_buffer.height());
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100129 I420Scale(ref_buffer.DataY(), ref_buffer.StrideY(), ref_buffer.DataU(),
130 ref_buffer.StrideU(), ref_buffer.DataV(), ref_buffer.StrideV(),
131 ref_buffer.width(), ref_buffer.height(),
132 scaled_buffer->MutableDataY(), scaled_buffer->StrideY(),
133 scaled_buffer->MutableDataU(), scaled_buffer->StrideU(),
134 scaled_buffer->MutableDataV(), scaled_buffer->StrideV(),
135 scaled_buffer->width(), scaled_buffer->height(),
136 libyuv::kFilterBox);
Sergey Silkin8d3758e2018-03-14 11:28:15 +0100137
138 CalculateFrameQuality(*scaled_buffer, dec_buffer, frame_stat);
139 } else {
140 const uint64_t sse_y = libyuv::ComputeSumSquareErrorPlane(
141 dec_buffer.DataY(), dec_buffer.StrideY(), ref_buffer.DataY(),
142 ref_buffer.StrideY(), dec_buffer.width(), dec_buffer.height());
143
144 const uint64_t sse_u = libyuv::ComputeSumSquareErrorPlane(
145 dec_buffer.DataU(), dec_buffer.StrideU(), ref_buffer.DataU(),
146 ref_buffer.StrideU(), dec_buffer.width() / 2, dec_buffer.height() / 2);
147
148 const uint64_t sse_v = libyuv::ComputeSumSquareErrorPlane(
149 dec_buffer.DataV(), dec_buffer.StrideV(), ref_buffer.DataV(),
150 ref_buffer.StrideV(), dec_buffer.width() / 2, dec_buffer.height() / 2);
151
152 const size_t num_y_samples = dec_buffer.width() * dec_buffer.height();
153 const size_t num_u_samples =
154 dec_buffer.width() / 2 * dec_buffer.height() / 2;
155
156 frame_stat->psnr_y = libyuv::SumSquareErrorToPsnr(sse_y, num_y_samples);
157 frame_stat->psnr_u = libyuv::SumSquareErrorToPsnr(sse_u, num_u_samples);
158 frame_stat->psnr_v = libyuv::SumSquareErrorToPsnr(sse_v, num_u_samples);
159 frame_stat->psnr = libyuv::SumSquareErrorToPsnr(
160 sse_y + sse_u + sse_v, num_y_samples + 2 * num_u_samples);
161 frame_stat->ssim = I420SSIM(ref_buffer, dec_buffer);
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100162 }
163}
164
brandtrb78bc752017-02-22 01:26:59 -0800165} // namespace
166
brandtrc4095522017-08-07 08:12:33 -0700167VideoProcessor::VideoProcessor(webrtc::VideoEncoder* encoder,
Sergey Silkin10d9d592018-02-01 13:25:17 +0100168 VideoDecoderList* decoders,
169 FrameReader* input_frame_reader,
brandtrc4095522017-08-07 08:12:33 -0700170 const TestConfig& config,
Sergey Silkin06a8f302018-02-20 09:48:26 +0100171 Stats* stats,
Sergey Silkin10d9d592018-02-01 13:25:17 +0100172 IvfFileWriterList* encoded_frame_writers,
173 FrameWriterList* decoded_frame_writers)
Åsa Perssonf0c44672017-10-24 16:03:39 +0200174 : config_(config),
Sergey Silkin10d9d592018-02-01 13:25:17 +0100175 num_simulcast_or_spatial_layers_(
176 std::max(config_.NumberOfSimulcastStreams(),
177 config_.NumberOfSpatialLayers())),
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100178 stats_(stats),
brandtr07734a52017-08-08 08:35:53 -0700179 encoder_(encoder),
Sergey Silkin10d9d592018-02-01 13:25:17 +0100180 decoders_(decoders),
brandtr07734a52017-08-08 08:35:53 -0700181 bitrate_allocator_(CreateBitrateAllocator(&config_)),
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100182 framerate_fps_(0),
brandtrbdd555c2017-08-21 01:34:04 -0700183 encode_callback_(this),
184 decode_callback_(this),
Sergey Silkin10d9d592018-02-01 13:25:17 +0100185 input_frame_reader_(input_frame_reader),
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100186 merged_encoded_frames_(num_simulcast_or_spatial_layers_),
Sergey Silkin10d9d592018-02-01 13:25:17 +0100187 encoded_frame_writers_(encoded_frame_writers),
188 decoded_frame_writers_(decoded_frame_writers),
Sergey Silkin3be2a552018-01-17 15:11:44 +0100189 last_inputed_frame_num_(0),
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100190 last_inputed_timestamp_(0),
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100191 first_encoded_frame_(num_simulcast_or_spatial_layers_, true),
192 last_encoded_frame_num_(num_simulcast_or_spatial_layers_),
193 first_decoded_frame_(num_simulcast_or_spatial_layers_, true),
194 last_decoded_frame_num_(num_simulcast_or_spatial_layers_) {
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100195 // Sanity checks.
Rasmus Brandt4b381af2018-02-07 13:56:16 +0100196 RTC_CHECK(rtc::TaskQueue::Current())
197 << "VideoProcessor must be run on a task queue.";
Sergey Silkin10d9d592018-02-01 13:25:17 +0100198 RTC_CHECK(encoder);
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100199 RTC_CHECK(decoders);
200 RTC_CHECK_EQ(decoders->size(), num_simulcast_or_spatial_layers_);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100201 RTC_CHECK(input_frame_reader);
202 RTC_CHECK(stats);
203 RTC_CHECK(!encoded_frame_writers ||
204 encoded_frame_writers->size() == num_simulcast_or_spatial_layers_);
205 RTC_CHECK(!decoded_frame_writers ||
206 decoded_frame_writers->size() == num_simulcast_or_spatial_layers_);
brandtr17b958c2017-03-07 01:41:43 -0800207
Sergey Silkin10d9d592018-02-01 13:25:17 +0100208 // Setup required callbacks for the encoder and decoder and initialize them.
brandtrbdd555c2017-08-21 01:34:04 -0700209 RTC_CHECK_EQ(encoder_->RegisterEncodeCompleteCallback(&encode_callback_),
Åsa Perssonf0c44672017-10-24 16:03:39 +0200210 WEBRTC_VIDEO_CODEC_OK);
asapersson654d54c2017-02-10 00:16:07 -0800211
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100212 // Initialize codecs so that they are ready to receive frames.
Sergey Silkin1723cf92018-01-22 15:49:55 +0100213 RTC_CHECK_EQ(encoder_->InitEncode(&config_.codec_settings,
214 static_cast<int>(config_.NumberOfCores()),
215 config_.max_payload_size_bytes),
216 WEBRTC_VIDEO_CODEC_OK);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100217 for (auto& decoder : *decoders_) {
218 RTC_CHECK_EQ(decoder->InitDecode(&config_.codec_settings,
219 static_cast<int>(config_.NumberOfCores())),
220 WEBRTC_VIDEO_CODEC_OK);
221 RTC_CHECK_EQ(decoder->RegisterDecodeCompleteCallback(&decode_callback_),
222 WEBRTC_VIDEO_CODEC_OK);
223 }
kjellander@webrtc.org35a17562011-10-06 06:44:54 +0000224}
225
Åsa Perssonf0c44672017-10-24 16:03:39 +0200226VideoProcessor::~VideoProcessor() {
brandtrc8c59052017-08-21 06:44:16 -0700227 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
228
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100229 // Explicitly reset codecs, in case they don't do that themselves when they
230 // go out of scope.
brandtr77920a42017-08-11 07:48:15 -0700231 RTC_CHECK_EQ(encoder_->Release(), WEBRTC_VIDEO_CODEC_OK);
brandtrbdd555c2017-08-21 01:34:04 -0700232 encoder_->RegisterEncodeCompleteCallback(nullptr);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100233 for (auto& decoder : *decoders_) {
234 RTC_CHECK_EQ(decoder->Release(), WEBRTC_VIDEO_CODEC_OK);
235 decoder->RegisterDecodeCompleteCallback(nullptr);
236 }
237
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100238 for (size_t simulcast_svc_idx = 0;
239 simulcast_svc_idx < num_simulcast_or_spatial_layers_;
240 ++simulcast_svc_idx) {
241 uint8_t* buffer = merged_encoded_frames_.at(simulcast_svc_idx)._buffer;
242 if (buffer) {
243 delete[] buffer;
244 }
245 }
brandtr77920a42017-08-11 07:48:15 -0700246}
247
brandtr8935d972017-09-06 01:53:22 -0700248void VideoProcessor::ProcessFrame() {
brandtrc8c59052017-08-21 06:44:16 -0700249 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
Sergey Silkin3be2a552018-01-17 15:11:44 +0100250 const size_t frame_number = last_inputed_frame_num_++;
asapersson654d54c2017-02-10 00:16:07 -0800251
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100252 // Get input frame and store for future quality calculation.
253 rtc::scoped_refptr<I420BufferInterface> buffer =
254 input_frame_reader_->ReadFrame();
brandtrbdd555c2017-08-21 01:34:04 -0700255 RTC_CHECK(buffer) << "Tried to read too many frames from the file.";
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100256 const size_t timestamp =
257 last_inputed_timestamp_ + kVideoPayloadTypeFrequency / framerate_fps_;
258 VideoFrame input_frame(buffer, static_cast<uint32_t>(timestamp),
259 static_cast<int64_t>(timestamp / kMsToRtpTimestamp),
260 webrtc::kVideoRotation_0);
261 input_frames_.emplace(frame_number, input_frame);
262 last_inputed_timestamp_ = timestamp;
brandtr17b958c2017-03-07 01:41:43 -0800263
Rasmus Brandt5f7a8912018-02-28 17:17:15 +0100264 // Create frame statistics object for all simulcast/spatial layers.
Sergey Silkin10d9d592018-02-01 13:25:17 +0100265 for (size_t simulcast_svc_idx = 0;
266 simulcast_svc_idx < num_simulcast_or_spatial_layers_;
267 ++simulcast_svc_idx) {
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100268 stats_->AddFrame(timestamp, simulcast_svc_idx);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100269 }
brandtr17b958c2017-03-07 01:41:43 -0800270
271 // For the highest measurement accuracy of the encode time, the start/stop
272 // time recordings should wrap the Encode call as tightly as possible.
Sergey Silkin10d9d592018-02-01 13:25:17 +0100273 const int64_t encode_start_ns = rtc::TimeNanos();
274 for (size_t simulcast_svc_idx = 0;
275 simulcast_svc_idx < num_simulcast_or_spatial_layers_;
276 ++simulcast_svc_idx) {
Sergey Silkin06a8f302018-02-20 09:48:26 +0100277 FrameStatistics* frame_stat =
278 stats_->GetFrame(frame_number, simulcast_svc_idx);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100279 frame_stat->encode_start_ns = encode_start_ns;
280 }
281
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100282 // Encode.
283 const std::vector<FrameType> frame_types =
284 config_.FrameTypeForFrame(frame_number);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100285 const int encode_return_code =
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100286 encoder_->Encode(input_frame, nullptr, &frame_types);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100287 for (size_t simulcast_svc_idx = 0;
288 simulcast_svc_idx < num_simulcast_or_spatial_layers_;
289 ++simulcast_svc_idx) {
Sergey Silkin06a8f302018-02-20 09:48:26 +0100290 FrameStatistics* frame_stat =
291 stats_->GetFrame(frame_number, simulcast_svc_idx);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100292 frame_stat->encode_return_code = encode_return_code;
293 }
kjellander@webrtc.org35a17562011-10-06 06:44:54 +0000294}
295
Sergey Silkin3be2a552018-01-17 15:11:44 +0100296void VideoProcessor::SetRates(size_t bitrate_kbps, size_t framerate_fps) {
brandtrc8c59052017-08-21 06:44:16 -0700297 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100298 framerate_fps_ = static_cast<uint32_t>(framerate_fps);
Sergey Silkin3be2a552018-01-17 15:11:44 +0100299 bitrate_allocation_ = bitrate_allocator_->GetAllocation(
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100300 static_cast<uint32_t>(bitrate_kbps * 1000), framerate_fps_);
301 const int set_rates_result =
302 encoder_->SetRateAllocation(bitrate_allocation_, framerate_fps_);
brandtrbea36fd2017-08-07 03:36:54 -0700303 RTC_DCHECK_GE(set_rates_result, 0)
brandtrbdd555c2017-08-21 01:34:04 -0700304 << "Failed to update encoder with new rate " << bitrate_kbps << ".";
brandtrbea36fd2017-08-07 03:36:54 -0700305}
306
Sergey Silkin10d9d592018-02-01 13:25:17 +0100307void VideoProcessor::FrameEncoded(
308 const webrtc::EncodedImage& encoded_image,
309 const webrtc::CodecSpecificInfo& codec_specific) {
brandtrc8c59052017-08-21 06:44:16 -0700310 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
311
brandtr32e0d262017-02-15 05:29:38 -0800312 // For the highest measurement accuracy of the encode time, the start/stop
313 // time recordings should wrap the Encode call as tightly as possible.
Rasmus Brandt5f7a8912018-02-28 17:17:15 +0100314 const int64_t encode_stop_ns = rtc::TimeNanos();
brandtr32e0d262017-02-15 05:29:38 -0800315
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100316 const VideoCodecType codec_type = codec_specific.codecType;
Rasmus Brandtf7a35582017-10-24 10:16:33 +0200317 if (config_.encoded_frame_checker) {
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100318 config_.encoded_frame_checker->CheckEncodedFrame(codec_type, encoded_image);
Rasmus Brandtf7a35582017-10-24 10:16:33 +0200319 }
brandtrb78bc752017-02-22 01:26:59 -0800320
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100321 // Layer metadata.
Sergey Silkin10d9d592018-02-01 13:25:17 +0100322 size_t simulcast_svc_idx = 0;
323 size_t temporal_idx = 0;
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100324 GetLayerIndices(codec_specific, &simulcast_svc_idx, &temporal_idx);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100325 const size_t frame_wxh =
326 encoded_image._encodedWidth * encoded_image._encodedHeight;
327 frame_wxh_to_simulcast_svc_idx_[frame_wxh] = simulcast_svc_idx;
328
Sergey Silkin06a8f302018-02-20 09:48:26 +0100329 FrameStatistics* frame_stat = stats_->GetFrameWithTimestamp(
330 encoded_image._timeStamp, simulcast_svc_idx);
Åsa Perssona6e7b882018-01-19 14:57:10 +0100331 const size_t frame_number = frame_stat->frame_number;
Sergey Silkin10d9d592018-02-01 13:25:17 +0100332
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100333 // Ensure that the encode order is monotonically increasing, within this
334 // simulcast/spatial layer.
335 RTC_CHECK(first_encoded_frame_[simulcast_svc_idx] ||
336 last_encoded_frame_num_[simulcast_svc_idx] < frame_number);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100337
338 // Ensure SVC spatial layers are delivered in ascending order.
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100339 if (!first_encoded_frame_[simulcast_svc_idx] &&
340 config_.NumberOfSpatialLayers() > 1) {
341 for (size_t i = 0; i < simulcast_svc_idx; ++i) {
342 RTC_CHECK_EQ(last_encoded_frame_num_[i], frame_number);
343 }
344 for (size_t i = simulcast_svc_idx + 1; i < num_simulcast_or_spatial_layers_;
345 ++i) {
346 RTC_CHECK_GT(frame_number, last_encoded_frame_num_[i]);
347 }
Sergey Silkin3be2a552018-01-17 15:11:44 +0100348 }
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100349 first_encoded_frame_[simulcast_svc_idx] = false;
350 last_encoded_frame_num_[simulcast_svc_idx] = frame_number;
brandtr17b958c2017-03-07 01:41:43 -0800351
brandtr8935d972017-09-06 01:53:22 -0700352 // Update frame statistics.
Sergey Silkin10d9d592018-02-01 13:25:17 +0100353 frame_stat->encoding_successful = true;
brandtr8935d972017-09-06 01:53:22 -0700354 frame_stat->encode_time_us =
355 GetElapsedTimeMicroseconds(frame_stat->encode_start_ns, encode_stop_ns);
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100356 if (codec_type == kVideoCodecVP9) {
Sergey Silkin06a8f302018-02-20 09:48:26 +0100357 const CodecSpecificInfoVP9& vp9_info = codec_specific.codecSpecific.VP9;
358 frame_stat->inter_layer_predicted = vp9_info.inter_layer_predicted;
359
360 // TODO(ssilkin): Implement bitrate allocation for VP9 SVC. For now set
361 // target for base layers equal to total target to avoid devision by zero
362 // at analysis.
363 frame_stat->target_bitrate_kbps = bitrate_allocation_.get_sum_kbps();
364 } else {
365 frame_stat->target_bitrate_kbps =
366 (bitrate_allocation_.GetBitrate(simulcast_svc_idx, temporal_idx) +
367 500) /
368 1000;
369 }
Sergey Silkind4bc01b2018-03-09 14:31:24 +0100370 frame_stat->length_bytes = encoded_image._length;
brandtr17b958c2017-03-07 01:41:43 -0800371 frame_stat->frame_type = encoded_image._frameType;
Sergey Silkin10d9d592018-02-01 13:25:17 +0100372 frame_stat->temporal_layer_idx = temporal_idx;
373 frame_stat->simulcast_svc_idx = simulcast_svc_idx;
Sergey Silkin3be2a552018-01-17 15:11:44 +0100374 frame_stat->max_nalu_size_bytes = GetMaxNaluSizeBytes(encoded_image, config_);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100375 frame_stat->qp = encoded_image.qp_;
ssilkin612f8582017-09-28 09:23:17 -0700376
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100377 // Decode.
378 const webrtc::EncodedImage* encoded_image_for_decode = &encoded_image;
379 if (config_.NumberOfSpatialLayers() > 1) {
380 encoded_image_for_decode = MergeAndStoreEncodedImageForSvcDecoding(
381 encoded_image, codec_type, frame_number, simulcast_svc_idx);
382 }
383 frame_stat->decode_start_ns = rtc::TimeNanos();
384 frame_stat->decode_return_code =
385 decoders_->at(simulcast_svc_idx)
386 ->Decode(*encoded_image_for_decode, false, nullptr);
387
388 if (encoded_frame_writers_) {
389 RTC_CHECK(
390 encoded_frame_writers_->at(simulcast_svc_idx)
391 ->WriteFrame(encoded_image, config_.codec_settings.codecType));
brandtr8935d972017-09-06 01:53:22 -0700392 }
kjellander@webrtc.org35a17562011-10-06 06:44:54 +0000393}
394
Sergey Silkin64eaa992017-11-17 14:47:32 +0100395void VideoProcessor::FrameDecoded(const VideoFrame& decoded_frame) {
brandtrc8c59052017-08-21 06:44:16 -0700396 RTC_DCHECK_CALLED_SEQUENTIALLY(&sequence_checker_);
397
brandtr32e0d262017-02-15 05:29:38 -0800398 // For the highest measurement accuracy of the decode time, the start/stop
399 // time recordings should wrap the Decode call as tightly as possible.
Rasmus Brandt5f7a8912018-02-28 17:17:15 +0100400 const int64_t decode_stop_ns = rtc::TimeNanos();
brandtr8bc93852017-02-15 05:19:51 -0800401
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100402 // Layer metadata.
Sergey Silkin10d9d592018-02-01 13:25:17 +0100403 const size_t simulcast_svc_idx =
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100404 frame_wxh_to_simulcast_svc_idx_.at(decoded_frame.size());
Sergey Silkin06a8f302018-02-20 09:48:26 +0100405 FrameStatistics* frame_stat = stats_->GetFrameWithTimestamp(
406 decoded_frame.timestamp(), simulcast_svc_idx);
Åsa Perssona6e7b882018-01-19 14:57:10 +0100407 const size_t frame_number = frame_stat->frame_number;
Sergey Silkin64eaa992017-11-17 14:47:32 +0100408
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100409 // Ensure that the decode order is monotonically increasing, within this
410 // simulcast/spatial layer.
411 RTC_CHECK(first_decoded_frame_[simulcast_svc_idx] ||
412 last_decoded_frame_num_[simulcast_svc_idx] < frame_number);
413 first_decoded_frame_[simulcast_svc_idx] = false;
414 last_decoded_frame_num_[simulcast_svc_idx] = frame_number;
brandtr17b958c2017-03-07 01:41:43 -0800415
Sergey Silkin10d9d592018-02-01 13:25:17 +0100416 // Update frame statistics.
417 frame_stat->decoding_successful = true;
418 frame_stat->decode_time_us =
419 GetElapsedTimeMicroseconds(frame_stat->decode_start_ns, decode_stop_ns);
420 frame_stat->decoded_width = decoded_frame.width();
421 frame_stat->decoded_height = decoded_frame.height();
422
Sergey Silkin64eaa992017-11-17 14:47:32 +0100423 // Skip quality metrics calculation to not affect CPU usage.
424 if (!config_.measure_cpu) {
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100425 const auto reference_frame = input_frames_.find(frame_number);
426 RTC_CHECK(reference_frame != input_frames_.cend())
427 << "The codecs are either buffering too much, dropping too much, or "
428 "being too slow relative the input frame rate.";
Sergey Silkin8d3758e2018-03-14 11:28:15 +0100429 CalculateFrameQuality(
430 *reference_frame->second.video_frame_buffer()->ToI420(),
431 *decoded_frame.video_frame_buffer()->ToI420(), frame_stat);
Sergey Silkin64eaa992017-11-17 14:47:32 +0100432 }
Niels Möller718a7632016-06-13 13:06:01 +0200433
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100434 // Erase all buffered input frames that we have moved past for all
435 // simulcast/spatial layers. Never buffer more than |kMaxBufferedInputFrames|
436 // frames, to protect against long runs of consecutive frame drops for a
437 // particular layer.
438 const auto min_last_decoded_frame_num = std::min_element(
439 last_decoded_frame_num_.cbegin(), last_decoded_frame_num_.cend());
440 const size_t min_buffered_frame_num =
441 std::max(0, static_cast<int>(frame_number) - kMaxBufferedInputFrames + 1);
442 RTC_CHECK(min_last_decoded_frame_num != last_decoded_frame_num_.cend());
443 const auto input_frames_erase_before = input_frames_.lower_bound(
444 std::max(*min_last_decoded_frame_num, min_buffered_frame_num));
445 input_frames_.erase(input_frames_.cbegin(), input_frames_erase_before);
Sergey Silkin64eaa992017-11-17 14:47:32 +0100446
Sergey Silkin10d9d592018-02-01 13:25:17 +0100447 if (decoded_frame_writers_) {
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100448 ExtractI420BufferWithSize(decoded_frame, config_.codec_settings.width,
449 config_.codec_settings.height, &tmp_i420_buffer_);
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100450 RTC_CHECK_EQ(tmp_i420_buffer_.size(),
Rasmus Brandt5f7a8912018-02-28 17:17:15 +0100451 decoded_frame_writers_->at(simulcast_svc_idx)->FrameLength());
452 RTC_CHECK(decoded_frame_writers_->at(simulcast_svc_idx)
Rasmus Brandtd062a3c2018-03-08 16:45:54 +0100453 ->WriteFrame(tmp_i420_buffer_.data()));
Sergey Silkin64eaa992017-11-17 14:47:32 +0100454 }
Åsa Perssonf0c44672017-10-24 16:03:39 +0200455}
brandtr17b958c2017-03-07 01:41:43 -0800456
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100457const webrtc::EncodedImage*
458VideoProcessor::MergeAndStoreEncodedImageForSvcDecoding(
459 const EncodedImage& encoded_image,
460 const VideoCodecType codec,
461 size_t frame_number,
462 size_t simulcast_svc_idx) {
463 // Should only be called for SVC.
464 RTC_CHECK_GT(config_.NumberOfSpatialLayers(), 1);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100465
466 EncodedImage base_image;
467 RTC_CHECK_EQ(base_image._length, 0);
468
469 // Each SVC layer is decoded with dedicated decoder. Add data of base layers
470 // to current coded frame buffer.
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100471 if (simulcast_svc_idx > 0) {
472 base_image = merged_encoded_frames_.at(simulcast_svc_idx - 1);
473 RTC_CHECK_EQ(base_image._timeStamp, encoded_image._timeStamp);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100474 }
Sergey Silkin10d9d592018-02-01 13:25:17 +0100475 const size_t payload_size_bytes = base_image._length + encoded_image._length;
476 const size_t buffer_size_bytes =
477 payload_size_bytes + EncodedImage::GetBufferPaddingBytes(codec);
478
479 uint8_t* copied_buffer = new uint8_t[buffer_size_bytes];
480 RTC_CHECK(copied_buffer);
481
482 if (base_image._length) {
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100483 RTC_CHECK(base_image._buffer);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100484 memcpy(copied_buffer, base_image._buffer, base_image._length);
485 }
Sergey Silkin10d9d592018-02-01 13:25:17 +0100486 memcpy(copied_buffer + base_image._length, encoded_image._buffer,
487 encoded_image._length);
488
489 EncodedImage copied_image = encoded_image;
490 copied_image = encoded_image;
491 copied_image._buffer = copied_buffer;
492 copied_image._length = payload_size_bytes;
493 copied_image._size = buffer_size_bytes;
494
Rasmus Brandt0f1c0bd2018-03-12 10:01:16 +0100495 // Replace previous EncodedImage for this spatial layer.
496 uint8_t* old_buffer = merged_encoded_frames_.at(simulcast_svc_idx)._buffer;
497 if (old_buffer) {
498 delete[] old_buffer;
499 }
500 merged_encoded_frames_.at(simulcast_svc_idx) = copied_image;
501
502 return &merged_encoded_frames_.at(simulcast_svc_idx);
Sergey Silkin10d9d592018-02-01 13:25:17 +0100503}
504
kjellander@webrtc.org35a17562011-10-06 06:44:54 +0000505} // namespace test
506} // namespace webrtc