Update V8 to version 4.7.42.
[chromium-blink-merge.git] / media / filters / ffmpeg_video_decoder.cc
blob7688e8e6573c554a295d8f3f12653d16fa4159b0
1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
5 #include "media/filters/ffmpeg_video_decoder.h"
7 #include <algorithm>
8 #include <string>
10 #include "base/bind.h"
11 #include "base/callback_helpers.h"
12 #include "base/command_line.h"
13 #include "base/location.h"
14 #include "base/single_thread_task_runner.h"
15 #include "base/strings/string_number_conversions.h"
16 #include "media/base/bind_to_current_loop.h"
17 #include "media/base/decoder_buffer.h"
18 #include "media/base/limits.h"
19 #include "media/base/media_switches.h"
20 #include "media/base/pipeline.h"
21 #include "media/base/timestamp_constants.h"
22 #include "media/base/video_frame.h"
23 #include "media/base/video_util.h"
24 #include "media/ffmpeg/ffmpeg_common.h"
25 #include "media/filters/ffmpeg_glue.h"
27 namespace media {
29 // Always try to use three threads for video decoding. There is little reason
30 // not to since current day CPUs tend to be multi-core and we measured
31 // performance benefits on older machines such as P4s with hyperthreading.
33 // Handling decoding on separate threads also frees up the pipeline thread to
34 // continue processing. Although it'd be nice to have the option of a single
35 // decoding thread, FFmpeg treats having one thread the same as having zero
36 // threads (i.e., avcodec_decode_video() will execute on the calling thread).
37 // Yet another reason for having two threads :)
38 static const int kDecodeThreads = 2;
39 static const int kMaxDecodeThreads = 16;
41 // Returns the number of threads given the FFmpeg CodecID. Also inspects the
42 // command line for a valid --video-threads flag.
43 static int GetThreadCount(AVCodecID codec_id) {
44 // Refer to http://crbug.com/93932 for tsan suppressions on decoding.
45 int decode_threads = kDecodeThreads;
47 const base::CommandLine* cmd_line = base::CommandLine::ForCurrentProcess();
48 std::string threads(cmd_line->GetSwitchValueASCII(switches::kVideoThreads));
49 if (threads.empty() || !base::StringToInt(threads, &decode_threads))
50 return decode_threads;
52 decode_threads = std::max(decode_threads, 0);
53 decode_threads = std::min(decode_threads, kMaxDecodeThreads);
54 return decode_threads;
57 static int GetVideoBufferImpl(struct AVCodecContext* s,
58 AVFrame* frame,
59 int flags) {
60 FFmpegVideoDecoder* decoder = static_cast<FFmpegVideoDecoder*>(s->opaque);
61 return decoder->GetVideoBuffer(s, frame, flags);
64 static void ReleaseVideoBufferImpl(void* opaque, uint8* data) {
65 scoped_refptr<VideoFrame> video_frame;
66 video_frame.swap(reinterpret_cast<VideoFrame**>(&opaque));
69 // static
70 bool FFmpegVideoDecoder::IsCodecSupported(VideoCodec codec) {
71 FFmpegGlue::InitializeFFmpeg();
72 return avcodec_find_decoder(VideoCodecToCodecID(codec)) != nullptr;
75 FFmpegVideoDecoder::FFmpegVideoDecoder(
76 const scoped_refptr<base::SingleThreadTaskRunner>& task_runner)
77 : task_runner_(task_runner), state_(kUninitialized),
78 decode_nalus_(false) {}
80 int FFmpegVideoDecoder::GetVideoBuffer(struct AVCodecContext* codec_context,
81 AVFrame* frame,
82 int flags) {
83 // Don't use |codec_context_| here! With threaded decoding,
84 // it will contain unsynchronized width/height/pix_fmt values,
85 // whereas |codec_context| contains the current threads's
86 // updated width/height/pix_fmt, which can change for adaptive
87 // content.
88 const VideoPixelFormat format =
89 AVPixelFormatToVideoPixelFormat(codec_context->pix_fmt);
91 if (format == PIXEL_FORMAT_UNKNOWN)
92 return AVERROR(EINVAL);
93 DCHECK(format == PIXEL_FORMAT_YV12 || format == PIXEL_FORMAT_YV16 ||
94 format == PIXEL_FORMAT_YV24);
96 gfx::Size size(codec_context->width, codec_context->height);
97 const int ret = av_image_check_size(size.width(), size.height(), 0, NULL);
98 if (ret < 0)
99 return ret;
101 gfx::Size natural_size;
102 if (codec_context->sample_aspect_ratio.num > 0) {
103 natural_size = GetNaturalSize(size,
104 codec_context->sample_aspect_ratio.num,
105 codec_context->sample_aspect_ratio.den);
106 } else {
107 natural_size = config_.natural_size();
110 // FFmpeg has specific requirements on the allocation size of the frame. The
111 // following logic replicates FFmpeg's allocation strategy to ensure buffers
112 // are not overread / overwritten. See ff_init_buffer_info() for details.
114 // When lowres is non-zero, dimensions should be divided by 2^(lowres), but
115 // since we don't use this, just DCHECK that it's zero.
116 DCHECK_EQ(codec_context->lowres, 0);
117 gfx::Size coded_size(std::max(size.width(), codec_context->coded_width),
118 std::max(size.height(), codec_context->coded_height));
120 if (!VideoFrame::IsValidConfig(format, VideoFrame::STORAGE_UNKNOWN,
121 coded_size, gfx::Rect(size), natural_size)) {
122 return AVERROR(EINVAL);
125 // FFmpeg expects the initialize allocation to be zero-initialized. Failure
126 // to do so can lead to unitialized value usage. See http://crbug.com/390941
127 scoped_refptr<VideoFrame> video_frame = frame_pool_.CreateFrame(
128 format, coded_size, gfx::Rect(size), natural_size, kNoTimestamp());
130 // Prefer the color space from the codec context. If it's not specified (or is
131 // set to an unsupported value), fall back on the value from the config.
132 ColorSpace color_space = AVColorSpaceToColorSpace(codec_context->colorspace,
133 codec_context->color_range);
134 if (color_space == COLOR_SPACE_UNSPECIFIED)
135 color_space = config_.color_space();
136 video_frame->metadata()->SetInteger(VideoFrameMetadata::COLOR_SPACE,
137 color_space);
139 for (size_t i = 0; i < VideoFrame::NumPlanes(video_frame->format()); i++) {
140 frame->data[i] = video_frame->data(i);
141 frame->linesize[i] = video_frame->stride(i);
144 frame->width = coded_size.width();
145 frame->height = coded_size.height();
146 frame->format = codec_context->pix_fmt;
147 frame->reordered_opaque = codec_context->reordered_opaque;
149 // Now create an AVBufferRef for the data just allocated. It will own the
150 // reference to the VideoFrame object.
151 void* opaque = NULL;
152 video_frame.swap(reinterpret_cast<VideoFrame**>(&opaque));
153 frame->buf[0] =
154 av_buffer_create(frame->data[0],
155 VideoFrame::AllocationSize(format, coded_size),
156 ReleaseVideoBufferImpl,
157 opaque,
159 return 0;
162 std::string FFmpegVideoDecoder::GetDisplayName() const {
163 return "FFmpegVideoDecoder";
166 void FFmpegVideoDecoder::Initialize(const VideoDecoderConfig& config,
167 bool low_delay,
168 const InitCB& init_cb,
169 const OutputCB& output_cb) {
170 DCHECK(task_runner_->BelongsToCurrentThread());
171 DCHECK(!config.is_encrypted());
172 DCHECK(!output_cb.is_null());
174 FFmpegGlue::InitializeFFmpeg();
176 config_ = config;
177 InitCB bound_init_cb = BindToCurrentLoop(init_cb);
179 if (!config.IsValidConfig() || !ConfigureDecoder(low_delay)) {
180 bound_init_cb.Run(false);
181 return;
184 output_cb_ = BindToCurrentLoop(output_cb);
186 // Success!
187 state_ = kNormal;
188 bound_init_cb.Run(true);
191 void FFmpegVideoDecoder::Decode(const scoped_refptr<DecoderBuffer>& buffer,
192 const DecodeCB& decode_cb) {
193 DCHECK(task_runner_->BelongsToCurrentThread());
194 DCHECK(buffer.get());
195 DCHECK(!decode_cb.is_null());
196 CHECK_NE(state_, kUninitialized);
198 DecodeCB decode_cb_bound = BindToCurrentLoop(decode_cb);
200 if (state_ == kError) {
201 decode_cb_bound.Run(kDecodeError);
202 return;
205 if (state_ == kDecodeFinished) {
206 decode_cb_bound.Run(kOk);
207 return;
210 DCHECK_EQ(state_, kNormal);
212 // During decode, because reads are issued asynchronously, it is possible to
213 // receive multiple end of stream buffers since each decode is acked. When the
214 // first end of stream buffer is read, FFmpeg may still have frames queued
215 // up in the decoder so we need to go through the decode loop until it stops
216 // giving sensible data. After that, the decoder should output empty
217 // frames. There are three states the decoder can be in:
219 // kNormal: This is the starting state. Buffers are decoded. Decode errors
220 // are discarded.
221 // kDecodeFinished: All calls return empty frames.
222 // kError: Unexpected error happened.
224 // These are the possible state transitions.
226 // kNormal -> kDecodeFinished:
227 // When EOS buffer is received and the codec has been flushed.
228 // kNormal -> kError:
229 // A decoding error occurs and decoding needs to stop.
230 // (any state) -> kNormal:
231 // Any time Reset() is called.
233 bool has_produced_frame;
234 do {
235 has_produced_frame = false;
236 if (!FFmpegDecode(buffer, &has_produced_frame)) {
237 state_ = kError;
238 decode_cb_bound.Run(kDecodeError);
239 return;
241 // Repeat to flush the decoder after receiving EOS buffer.
242 } while (buffer->end_of_stream() && has_produced_frame);
244 if (buffer->end_of_stream())
245 state_ = kDecodeFinished;
247 // VideoDecoderShim expects that |decode_cb| is called only after
248 // |output_cb_|.
249 decode_cb_bound.Run(kOk);
252 void FFmpegVideoDecoder::Reset(const base::Closure& closure) {
253 DCHECK(task_runner_->BelongsToCurrentThread());
255 avcodec_flush_buffers(codec_context_.get());
256 state_ = kNormal;
257 task_runner_->PostTask(FROM_HERE, closure);
260 FFmpegVideoDecoder::~FFmpegVideoDecoder() {
261 DCHECK(task_runner_->BelongsToCurrentThread());
263 if (state_ != kUninitialized)
264 ReleaseFFmpegResources();
267 bool FFmpegVideoDecoder::FFmpegDecode(
268 const scoped_refptr<DecoderBuffer>& buffer,
269 bool* has_produced_frame) {
270 DCHECK(!*has_produced_frame);
272 // Create a packet for input data.
273 // Due to FFmpeg API changes we no longer have const read-only pointers.
274 AVPacket packet;
275 av_init_packet(&packet);
276 if (buffer->end_of_stream()) {
277 packet.data = NULL;
278 packet.size = 0;
279 } else {
280 packet.data = const_cast<uint8*>(buffer->data());
281 packet.size = buffer->data_size();
283 // Let FFmpeg handle presentation timestamp reordering.
284 codec_context_->reordered_opaque = buffer->timestamp().InMicroseconds();
287 int frame_decoded = 0;
288 int result = avcodec_decode_video2(codec_context_.get(),
289 av_frame_.get(),
290 &frame_decoded,
291 &packet);
292 // Log the problem if we can't decode a video frame and exit early.
293 if (result < 0) {
294 LOG(ERROR) << "Error decoding video: " << buffer->AsHumanReadableString();
295 return false;
298 // FFmpeg says some codecs might have multiple frames per packet. Previous
299 // discussions with rbultje@ indicate this shouldn't be true for the codecs
300 // we use.
301 DCHECK_EQ(result, packet.size);
303 // If no frame was produced then signal that more data is required to
304 // produce more frames. This can happen under two circumstances:
305 // 1) Decoder was recently initialized/flushed
306 // 2) End of stream was reached and all internal frames have been output
307 if (frame_decoded == 0) {
308 return true;
311 // TODO(fbarchard): Work around for FFmpeg http://crbug.com/27675
312 // The decoder is in a bad state and not decoding correctly.
313 // Checking for NULL avoids a crash in CopyPlane().
314 if (!av_frame_->data[VideoFrame::kYPlane] ||
315 !av_frame_->data[VideoFrame::kUPlane] ||
316 !av_frame_->data[VideoFrame::kVPlane]) {
317 LOG(ERROR) << "Video frame was produced yet has invalid frame data.";
318 av_frame_unref(av_frame_.get());
319 return false;
322 scoped_refptr<VideoFrame> frame =
323 reinterpret_cast<VideoFrame*>(av_buffer_get_opaque(av_frame_->buf[0]));
324 frame->set_timestamp(
325 base::TimeDelta::FromMicroseconds(av_frame_->reordered_opaque));
326 *has_produced_frame = true;
327 output_cb_.Run(frame);
329 av_frame_unref(av_frame_.get());
330 return true;
333 void FFmpegVideoDecoder::ReleaseFFmpegResources() {
334 codec_context_.reset();
335 av_frame_.reset();
338 bool FFmpegVideoDecoder::ConfigureDecoder(bool low_delay) {
339 // Release existing decoder resources if necessary.
340 ReleaseFFmpegResources();
342 // Initialize AVCodecContext structure.
343 codec_context_.reset(avcodec_alloc_context3(NULL));
344 VideoDecoderConfigToAVCodecContext(config_, codec_context_.get());
346 codec_context_->thread_count = GetThreadCount(codec_context_->codec_id);
347 codec_context_->thread_type = low_delay ? FF_THREAD_SLICE : FF_THREAD_FRAME;
348 codec_context_->opaque = this;
349 codec_context_->flags |= CODEC_FLAG_EMU_EDGE;
350 codec_context_->get_buffer2 = GetVideoBufferImpl;
351 codec_context_->refcounted_frames = 1;
353 if (decode_nalus_)
354 codec_context_->flags2 |= CODEC_FLAG2_CHUNKS;
356 AVCodec* codec = avcodec_find_decoder(codec_context_->codec_id);
357 if (!codec || avcodec_open2(codec_context_.get(), codec, NULL) < 0) {
358 ReleaseFFmpegResources();
359 return false;
362 av_frame_.reset(av_frame_alloc());
363 return true;
366 } // namespace media