]> git.sesse.net Git - nageru/blob - ffmpeg_capture.cpp
Add support for using FFmpeg video sources as audio.
[nageru] / ffmpeg_capture.cpp
1 #include "ffmpeg_capture.h"
2
3 #include <assert.h>
4 #include <pthread.h>
5 #include <stdint.h>
6 #include <stdio.h>
7 #include <stdlib.h>
8 #include <string.h>
9 #include <sys/stat.h>
10 #include <unistd.h>
11
12 extern "C" {
13 #include <libavcodec/avcodec.h>
14 #include <libavformat/avformat.h>
15 #include <libavutil/avutil.h>
16 #include <libavutil/error.h>
17 #include <libavutil/frame.h>
18 #include <libavutil/imgutils.h>
19 #include <libavutil/mem.h>
20 #include <libavutil/pixfmt.h>
21 #include <libavutil/opt.h>
22 #include <libswscale/swscale.h>
23 }
24
25 #include <chrono>
26 #include <cstdint>
27 #include <utility>
28 #include <vector>
29
30 #include "bmusb/bmusb.h"
31 #include "ffmpeg_raii.h"
32 #include "ffmpeg_util.h"
33 #include "flags.h"
34 #include "image_input.h"
35 #include "ref_counted_frame.h"
36 #include "timebase.h"
37
38 #define FRAME_SIZE (8 << 20)  // 8 MB.
39
40 using namespace std;
41 using namespace std::chrono;
42 using namespace bmusb;
43 using namespace movit;
44
45 namespace {
46
47 steady_clock::time_point compute_frame_start(int64_t frame_pts, int64_t pts_origin, const AVRational &video_timebase, const steady_clock::time_point &origin, double rate)
48 {
49         const duration<double> pts((frame_pts - pts_origin) * double(video_timebase.num) / double(video_timebase.den));
50         return origin + duration_cast<steady_clock::duration>(pts / rate);
51 }
52
53 bool changed_since(const std::string &pathname, const timespec &ts)
54 {
55         if (ts.tv_sec < 0) {
56                 return false;
57         }
58         struct stat buf;
59         if (stat(pathname.c_str(), &buf) != 0) {
60                 fprintf(stderr, "%s: Couldn't check for new version, leaving the old in place.\n", pathname.c_str());
61                 return false;
62         }
63         return (buf.st_mtim.tv_sec != ts.tv_sec || buf.st_mtim.tv_nsec != ts.tv_nsec);
64 }
65
66 bool is_full_range(const AVPixFmtDescriptor *desc)
67 {
68         // This is horrible, but there's no better way that I know of.
69         return (strchr(desc->name, 'j') != nullptr);
70 }
71
72 AVPixelFormat decide_dst_format(AVPixelFormat src_format, bmusb::PixelFormat dst_format_type)
73 {
74         if (dst_format_type == bmusb::PixelFormat_8BitBGRA) {
75                 return AV_PIX_FMT_BGRA;
76         }
77         if (dst_format_type == FFmpegCapture::PixelFormat_NV12) {
78                 return AV_PIX_FMT_NV12;
79         }
80
81         assert(dst_format_type == bmusb::PixelFormat_8BitYCbCrPlanar);
82
83         // If this is a non-Y'CbCr format, just convert to 4:4:4 Y'CbCr
84         // and be done with it. It's too strange to spend a lot of time on.
85         // (Let's hope there's no alpha.)
86         const AVPixFmtDescriptor *src_desc = av_pix_fmt_desc_get(src_format);
87         if (src_desc == nullptr ||
88             src_desc->nb_components != 3 ||
89             (src_desc->flags & AV_PIX_FMT_FLAG_RGB)) {
90                 return AV_PIX_FMT_YUV444P;
91         }
92
93         // The best for us would be Cb and Cr together if possible,
94         // but FFmpeg doesn't support that except in the special case of
95         // NV12, so we need to go to planar even for the case of NV12.
96         // Thus, look for the closest (but no worse) 8-bit planar Y'CbCr format
97         // that matches in color range. (This will also include the case of
98         // the source format already being acceptable.)
99         bool src_full_range = is_full_range(src_desc);
100         const char *best_format = "yuv444p";
101         unsigned best_score = numeric_limits<unsigned>::max();
102         for (const AVPixFmtDescriptor *desc = av_pix_fmt_desc_next(nullptr);
103              desc;
104              desc = av_pix_fmt_desc_next(desc)) {
105                 // Find planar Y'CbCr formats only.
106                 if (desc->nb_components != 3) continue;
107                 if (desc->flags & AV_PIX_FMT_FLAG_RGB) continue;
108                 if (!(desc->flags & AV_PIX_FMT_FLAG_PLANAR)) continue;
109                 if (desc->comp[0].plane != 0 ||
110                     desc->comp[1].plane != 1 ||
111                     desc->comp[2].plane != 2) continue;
112
113                 // 8-bit formats only.
114                 if (desc->flags & AV_PIX_FMT_FLAG_BE) continue;
115                 if (desc->comp[0].depth != 8) continue;
116
117                 // Same or better chroma resolution only.
118                 int chroma_w_diff = desc->log2_chroma_w - src_desc->log2_chroma_w;
119                 int chroma_h_diff = desc->log2_chroma_h - src_desc->log2_chroma_h;
120                 if (chroma_w_diff < 0 || chroma_h_diff < 0)
121                         continue;
122
123                 // Matching full/limited range only.
124                 if (is_full_range(desc) != src_full_range)
125                         continue;
126
127                 // Pick something with as little excess chroma resolution as possible.
128                 unsigned score = (1 << (chroma_w_diff)) << chroma_h_diff;
129                 if (score < best_score) {
130                         best_score = score;
131                         best_format = desc->name;
132                 }
133         }
134         return av_get_pix_fmt(best_format);
135 }
136
137 YCbCrFormat decode_ycbcr_format(const AVPixFmtDescriptor *desc, const AVFrame *frame)
138 {
139         YCbCrFormat format;
140         AVColorSpace colorspace = av_frame_get_colorspace(frame);
141         switch (colorspace) {
142         case AVCOL_SPC_BT709:
143                 format.luma_coefficients = YCBCR_REC_709;
144                 break;
145         case AVCOL_SPC_BT470BG:
146         case AVCOL_SPC_SMPTE170M:
147         case AVCOL_SPC_SMPTE240M:
148                 format.luma_coefficients = YCBCR_REC_601;
149                 break;
150         case AVCOL_SPC_BT2020_NCL:
151                 format.luma_coefficients = YCBCR_REC_2020;
152                 break;
153         case AVCOL_SPC_UNSPECIFIED:
154                 format.luma_coefficients = (frame->height >= 720 ? YCBCR_REC_709 : YCBCR_REC_601);
155                 break;
156         default:
157                 fprintf(stderr, "Unknown Y'CbCr coefficient enum %d from FFmpeg; choosing Rec. 709.\n",
158                         colorspace);
159                 format.luma_coefficients = YCBCR_REC_709;
160                 break;
161         }
162
163         format.full_range = is_full_range(desc);
164         format.num_levels = 1 << desc->comp[0].depth;
165         format.chroma_subsampling_x = 1 << desc->log2_chroma_w;
166         format.chroma_subsampling_y = 1 << desc->log2_chroma_h;
167
168         switch (frame->chroma_location) {
169         case AVCHROMA_LOC_LEFT:
170                 format.cb_x_position = 0.0;
171                 format.cb_y_position = 0.5;
172                 break;
173         case AVCHROMA_LOC_CENTER:
174                 format.cb_x_position = 0.5;
175                 format.cb_y_position = 0.5;
176                 break;
177         case AVCHROMA_LOC_TOPLEFT:
178                 format.cb_x_position = 0.0;
179                 format.cb_y_position = 0.0;
180                 break;
181         case AVCHROMA_LOC_TOP:
182                 format.cb_x_position = 0.5;
183                 format.cb_y_position = 0.0;
184                 break;
185         case AVCHROMA_LOC_BOTTOMLEFT:
186                 format.cb_x_position = 0.0;
187                 format.cb_y_position = 1.0;
188                 break;
189         case AVCHROMA_LOC_BOTTOM:
190                 format.cb_x_position = 0.5;
191                 format.cb_y_position = 1.0;
192                 break;
193         default:
194                 fprintf(stderr, "Unknown chroma location coefficient enum %d from FFmpeg; choosing Rec. 709.\n",
195                         frame->chroma_location);
196                 format.cb_x_position = 0.5;
197                 format.cb_y_position = 0.5;
198                 break;
199         }
200
201         format.cr_x_position = format.cb_x_position;
202         format.cr_y_position = format.cb_y_position;
203         return format;
204 }
205
206 }  // namespace
207
208 FFmpegCapture::FFmpegCapture(const string &filename, unsigned width, unsigned height)
209         : filename(filename), width(width), height(height), video_timebase{1, 1}
210 {
211         description = "Video: " + filename;
212
213         last_frame = steady_clock::now();
214
215         avformat_network_init();  // In case someone wants this.
216 }
217
218 FFmpegCapture::~FFmpegCapture()
219 {
220         if (has_dequeue_callbacks) {
221                 dequeue_cleanup_callback();
222         }
223         avresample_free(&resampler);
224 }
225
226 void FFmpegCapture::configure_card()
227 {
228         if (video_frame_allocator == nullptr) {
229                 owned_video_frame_allocator.reset(new MallocFrameAllocator(FRAME_SIZE, NUM_QUEUED_VIDEO_FRAMES));
230                 set_video_frame_allocator(owned_video_frame_allocator.get());
231         }
232         if (audio_frame_allocator == nullptr) {
233                 // Audio can come out in pretty large chunks, so increase from the default 1 MB.
234                 owned_audio_frame_allocator.reset(new MallocFrameAllocator(1 << 20, NUM_QUEUED_AUDIO_FRAMES));
235                 set_audio_frame_allocator(owned_audio_frame_allocator.get());
236         }
237 }
238
239 void FFmpegCapture::start_bm_capture()
240 {
241         if (running) {
242                 return;
243         }
244         running = true;
245         producer_thread_should_quit.unquit();
246         producer_thread = thread(&FFmpegCapture::producer_thread_func, this);
247 }
248
249 void FFmpegCapture::stop_dequeue_thread()
250 {
251         if (!running) {
252                 return;
253         }
254         running = false;
255         producer_thread_should_quit.quit();
256         producer_thread.join();
257 }
258
259 std::map<uint32_t, VideoMode> FFmpegCapture::get_available_video_modes() const
260 {
261         // Note: This will never really be shown in the UI.
262         VideoMode mode;
263
264         char buf[256];
265         snprintf(buf, sizeof(buf), "%ux%u", width, height);
266         mode.name = buf;
267         
268         mode.autodetect = false;
269         mode.width = width;
270         mode.height = height;
271         mode.frame_rate_num = 60;
272         mode.frame_rate_den = 1;
273         mode.interlaced = false;
274
275         return {{ 0, mode }};
276 }
277
278 void FFmpegCapture::producer_thread_func()
279 {
280         char thread_name[16];
281         snprintf(thread_name, sizeof(thread_name), "FFmpeg_C_%d", card_index);
282         pthread_setname_np(pthread_self(), thread_name);
283
284         while (!producer_thread_should_quit.should_quit()) {
285                 string pathname = search_for_file(filename);
286                 if (filename.empty()) {
287                         fprintf(stderr, "%s not found, sleeping one second and trying again...\n", filename.c_str());
288                         send_disconnected_frame();
289                         producer_thread_should_quit.sleep_for(seconds(1));
290                         continue;
291                 }
292                 should_interrupt = false;
293                 if (!play_video(pathname)) {
294                         // Error.
295                         fprintf(stderr, "Error when playing %s, sleeping one second and trying again...\n", pathname.c_str());
296                         send_disconnected_frame();
297                         producer_thread_should_quit.sleep_for(seconds(1));
298                         continue;
299                 }
300
301                 // Probably just EOF, will exit the loop above on next test.
302         }
303
304         if (has_dequeue_callbacks) {
305                 dequeue_cleanup_callback();
306                 has_dequeue_callbacks = false;
307         }
308 }
309
310 void FFmpegCapture::send_disconnected_frame()
311 {
312         // Send an empty frame to signal that we have no signal anymore.
313         FrameAllocator::Frame video_frame = video_frame_allocator->alloc_frame();
314         if (video_frame.data) {
315                 VideoFormat video_format;
316                 video_format.width = width;
317                 video_format.height = height;
318                 video_format.frame_rate_nom = 60;
319                 video_format.frame_rate_den = 1;
320                 video_format.is_connected = false;
321                 if (pixel_format == bmusb::PixelFormat_8BitBGRA) {
322                         video_format.stride = width * 4;
323                         video_frame.len = width * height * 4;
324                 } else {
325                         video_format.stride = width;
326                         current_frame_ycbcr_format.luma_coefficients = YCBCR_REC_709;
327                         current_frame_ycbcr_format.full_range = true;
328                         current_frame_ycbcr_format.num_levels = 256;
329                         current_frame_ycbcr_format.chroma_subsampling_x = 2;
330                         current_frame_ycbcr_format.chroma_subsampling_y = 2;
331                         current_frame_ycbcr_format.cb_x_position = 0.0f;
332                         current_frame_ycbcr_format.cb_y_position = 0.0f;
333                         current_frame_ycbcr_format.cr_x_position = 0.0f;
334                         current_frame_ycbcr_format.cr_y_position = 0.0f;
335                         video_frame.len = width * height * 2;
336                 }
337                 memset(video_frame.data, 0, video_frame.len);
338
339                 frame_callback(-1, AVRational{1, TIMEBASE}, -1, AVRational{1, TIMEBASE}, timecode++,
340                         video_frame, /*video_offset=*/0, video_format,
341                         FrameAllocator::Frame(), /*audio_offset=*/0, AudioFormat());
342                 last_frame_was_connected = false;
343         }
344 }
345
346 bool FFmpegCapture::play_video(const string &pathname)
347 {
348         // Note: Call before open, not after; otherwise, there's a race.
349         // (There is now, too, but it tips the correct way. We could use fstat()
350         // if we had the file descriptor.)
351         timespec last_modified;
352         struct stat buf;
353         if (stat(pathname.c_str(), &buf) != 0) {
354                 // Probably some sort of protocol, so can't stat.
355                 last_modified.tv_sec = -1;
356         } else {
357                 last_modified = buf.st_mtim;
358         }
359
360         AVDictionary *opts = nullptr;
361         av_dict_set(&opts, "fflags", "nobuffer", 0);
362
363         auto format_ctx = avformat_open_input_unique(pathname.c_str(), nullptr, &opts, AVIOInterruptCB{ &FFmpegCapture::interrupt_cb_thunk, this });
364         if (format_ctx == nullptr) {
365                 fprintf(stderr, "%s: Error opening file\n", pathname.c_str());
366                 return false;
367         }
368
369         if (avformat_find_stream_info(format_ctx.get(), nullptr) < 0) {
370                 fprintf(stderr, "%s: Error finding stream info\n", pathname.c_str());
371                 return false;
372         }
373
374         int video_stream_index = find_stream_index(format_ctx.get(), AVMEDIA_TYPE_VIDEO);
375         if (video_stream_index == -1) {
376                 fprintf(stderr, "%s: No video stream found\n", pathname.c_str());
377                 return false;
378         }
379
380         int audio_stream_index = find_stream_index(format_ctx.get(), AVMEDIA_TYPE_AUDIO);
381
382         // Open video decoder.
383         const AVCodecParameters *video_codecpar = format_ctx->streams[video_stream_index]->codecpar;
384         AVCodec *video_codec = avcodec_find_decoder(video_codecpar->codec_id);
385         video_timebase = format_ctx->streams[video_stream_index]->time_base;
386         AVCodecContextWithDeleter video_codec_ctx = avcodec_alloc_context3_unique(nullptr);
387         if (avcodec_parameters_to_context(video_codec_ctx.get(), video_codecpar) < 0) {
388                 fprintf(stderr, "%s: Cannot fill video codec parameters\n", pathname.c_str());
389                 return false;
390         }
391         if (video_codec == nullptr) {
392                 fprintf(stderr, "%s: Cannot find video decoder\n", pathname.c_str());
393                 return false;
394         }
395         if (avcodec_open2(video_codec_ctx.get(), video_codec, nullptr) < 0) {
396                 fprintf(stderr, "%s: Cannot open video decoder\n", pathname.c_str());
397                 return false;
398         }
399         unique_ptr<AVCodecContext, decltype(avcodec_close)*> video_codec_ctx_cleanup(
400                 video_codec_ctx.get(), avcodec_close);
401
402         // Open audio decoder, if we have audio.
403         AVCodecContextWithDeleter audio_codec_ctx;
404         if (audio_stream_index != -1) {
405                 audio_codec_ctx = avcodec_alloc_context3_unique(nullptr);
406                 const AVCodecParameters *audio_codecpar = format_ctx->streams[audio_stream_index]->codecpar;
407                 audio_timebase = format_ctx->streams[audio_stream_index]->time_base;
408                 if (avcodec_parameters_to_context(audio_codec_ctx.get(), audio_codecpar) < 0) {
409                         fprintf(stderr, "%s: Cannot fill audio codec parameters\n", pathname.c_str());
410                         return false;
411                 }
412                 AVCodec *audio_codec = avcodec_find_decoder(audio_codecpar->codec_id);
413                 if (audio_codec == nullptr) {
414                         fprintf(stderr, "%s: Cannot find audio decoder\n", pathname.c_str());
415                         return false;
416                 }
417                 if (avcodec_open2(audio_codec_ctx.get(), audio_codec, nullptr) < 0) {
418                         fprintf(stderr, "%s: Cannot open audio decoder\n", pathname.c_str());
419                         return false;
420                 }
421         }
422         unique_ptr<AVCodecContext, decltype(avcodec_close)*> audio_codec_ctx_cleanup(
423                 audio_codec_ctx.get(), avcodec_close);
424
425         internal_rewind();
426
427         // Main loop.
428         bool first_frame = true;
429         while (!producer_thread_should_quit.should_quit()) {
430                 if (process_queued_commands(format_ctx.get(), pathname, last_modified, /*rewound=*/nullptr)) {
431                         return true;
432                 }
433                 UniqueFrame audio_frame = audio_frame_allocator->alloc_frame();
434                 AudioFormat audio_format;
435
436                 int64_t audio_pts;
437                 bool error;
438                 AVFrameWithDeleter frame = decode_frame(format_ctx.get(), video_codec_ctx.get(), audio_codec_ctx.get(),
439                         pathname, video_stream_index, audio_stream_index, audio_frame.get(), &audio_format, &audio_pts, &error);
440                 if (error) {
441                         return false;
442                 }
443                 if (frame == nullptr) {
444                         // EOF. Loop back to the start if we can.
445                         if (av_seek_frame(format_ctx.get(), /*stream_index=*/-1, /*timestamp=*/0, /*flags=*/0) < 0) {
446                                 fprintf(stderr, "%s: Rewind failed, not looping.\n", pathname.c_str());
447                                 return true;
448                         }
449                         if (video_codec_ctx != nullptr) {
450                                 avcodec_flush_buffers(video_codec_ctx.get());
451                         }
452                         if (audio_codec_ctx != nullptr) {
453                                 avcodec_flush_buffers(audio_codec_ctx.get());
454                         }
455                         // If the file has changed since last time, return to get it reloaded.
456                         // Note that depending on how you move the file into place, you might
457                         // end up corrupting the one you're already playing, so this path
458                         // might not trigger.
459                         if (changed_since(pathname, last_modified)) {
460                                 return true;
461                         }
462                         internal_rewind();
463                         continue;
464                 }
465
466                 VideoFormat video_format = construct_video_format(frame.get(), video_timebase);
467                 UniqueFrame video_frame = make_video_frame(frame.get(), pathname, &error);
468                 if (error) {
469                         return false;
470                 }
471
472                 for ( ;; ) {
473                         if (last_pts == 0 && pts_origin == 0) {
474                                 pts_origin = frame->pts;        
475                         }
476                         next_frame_start = compute_frame_start(frame->pts, pts_origin, video_timebase, start, rate);
477                         if (first_frame && last_frame_was_connected) {
478                                 // If reconnect took more than one second, this is probably a live feed,
479                                 // and we should reset the resampler. (Or the rate is really, really low,
480                                 // in which case a reset on the first frame is fine anyway.)
481                                 if (duration<double>(next_frame_start - last_frame).count() >= 1.0) {
482                                         last_frame_was_connected = false;
483                                 }
484                         }
485                         video_frame->received_timestamp = next_frame_start;
486
487                         // The easiest way to get all the rate conversions etc. right is to move the
488                         // audio PTS into the video PTS timebase and go from there. (We'll get some
489                         // rounding issues, but they should not be a big problem.)
490                         int64_t audio_pts_as_video_pts = av_rescale_q(audio_pts, audio_timebase, video_timebase);
491                         audio_frame->received_timestamp = compute_frame_start(audio_pts_as_video_pts, pts_origin, video_timebase, start, rate);
492
493                         if (audio_frame->len != 0) {
494                                 // The received timestamps in Nageru are measured after we've just received the frame.
495                                 // However, pts (especially audio pts) is at the _beginning_ of the frame.
496                                 // If we have locked audio, the distinction doesn't really matter, as pts is
497                                 // on a relative scale and a fixed offset is fine. But if we don't, we will have
498                                 // a different number of samples each time, which will cause huge audio jitter
499                                 // and throw off the resampler.
500                                 //
501                                 // In a sense, we should have compensated by adding the frame and audio lengths
502                                 // to video_frame->received_timestamp and audio_frame->received_timestamp respectively,
503                                 // but that would mean extra waiting in sleep_until(). All we need is that they
504                                 // are correct relative to each other, though (and to the other frames we send),
505                                 // so just align the end of the audio frame, and we're fine.
506                                 size_t num_samples = (audio_frame->len * 8) / audio_format.bits_per_sample / audio_format.num_channels;
507                                 double offset = double(num_samples) / OUTPUT_FREQUENCY -
508                                         double(video_format.frame_rate_den) / video_format.frame_rate_nom;
509                                 audio_frame->received_timestamp += duration_cast<steady_clock::duration>(duration<double>(offset));
510                         }
511
512                         steady_clock::time_point now = steady_clock::now();
513                         if (duration<double>(now - next_frame_start).count() >= 0.1) {
514                                 // If we don't have enough CPU to keep up, or if we have a live stream
515                                 // where the initial origin was somehow wrong, we could be behind indefinitely.
516                                 // In particular, this will give the audio resampler problems as it tries
517                                 // to speed up to reduce the delay, hitting the low end of the buffer every time.
518                                 fprintf(stderr, "%s: Playback %.0f ms behind, resetting time scale\n",
519                                         pathname.c_str(),
520                                         1e3 * duration<double>(now - next_frame_start).count());
521                                 pts_origin = frame->pts;
522                                 start = next_frame_start = now;
523                                 timecode += MAX_FPS * 2 + 1;
524                         }
525                         bool finished_wakeup = producer_thread_should_quit.sleep_until(next_frame_start);
526                         if (finished_wakeup) {
527                                 if (audio_frame->len > 0) {
528                                         assert(audio_pts != -1);
529                                 }
530                                 if (!last_frame_was_connected) {
531                                         // We're recovering from an error (or really slow load, see above).
532                                         // Make sure to get the audio resampler reset. (This is a hack;
533                                         // ideally, the frame callback should just accept a way to signal
534                                         // audio discontinuity.)
535                                         timecode += MAX_FPS * 2 + 1;
536                                 }
537                                 frame_callback(frame->pts, video_timebase, audio_pts, audio_timebase, timecode++,
538                                         video_frame.get_and_release(), 0, video_format,
539                                         audio_frame.get_and_release(), 0, audio_format);
540                                 first_frame = false;
541                                 last_frame = steady_clock::now();
542                                 last_frame_was_connected = true;
543                                 break;
544                         } else {
545                                 if (producer_thread_should_quit.should_quit()) break;
546
547                                 bool rewound = false;
548                                 if (process_queued_commands(format_ctx.get(), pathname, last_modified, &rewound)) {
549                                         return true;
550                                 }
551                                 // If we just rewound, drop this frame on the floor and be done.
552                                 if (rewound) {
553                                         break;
554                                 }
555                                 // OK, we didn't, so probably a rate change. Recalculate next_frame_start,
556                                 // but if it's now in the past, we'll reset the origin, so that we don't
557                                 // generate a huge backlog of frames that we need to run through quickly.
558                                 next_frame_start = compute_frame_start(frame->pts, pts_origin, video_timebase, start, rate);
559                                 steady_clock::time_point now = steady_clock::now();
560                                 if (next_frame_start < now) {
561                                         pts_origin = frame->pts;
562                                         start = next_frame_start = now;
563                                 }
564                         }
565                 }
566                 last_pts = frame->pts;
567         }
568         return true;
569 }
570
571 void FFmpegCapture::internal_rewind()
572 {                               
573         pts_origin = last_pts = 0;
574         start = next_frame_start = steady_clock::now();
575 }
576
577 bool FFmpegCapture::process_queued_commands(AVFormatContext *format_ctx, const std::string &pathname, timespec last_modified, bool *rewound)
578 {
579         // Process any queued commands from other threads.
580         vector<QueuedCommand> commands;
581         {
582                 lock_guard<mutex> lock(queue_mu);
583                 swap(commands, command_queue);
584         }
585         for (const QueuedCommand &cmd : commands) {
586                 switch (cmd.command) {
587                 case QueuedCommand::REWIND:
588                         if (av_seek_frame(format_ctx, /*stream_index=*/-1, /*timestamp=*/0, /*flags=*/0) < 0) {
589                                 fprintf(stderr, "%s: Rewind failed, stopping play.\n", pathname.c_str());
590                         }
591                         // If the file has changed since last time, return to get it reloaded.
592                         // Note that depending on how you move the file into place, you might
593                         // end up corrupting the one you're already playing, so this path
594                         // might not trigger.
595                         if (changed_since(pathname, last_modified)) {
596                                 return true;
597                         }
598                         internal_rewind();
599                         if (rewound != nullptr) {
600                                 *rewound = true;
601                         }
602                         break;
603
604                 case QueuedCommand::CHANGE_RATE:
605                         // Change the origin to the last played frame.
606                         start = compute_frame_start(last_pts, pts_origin, video_timebase, start, rate);
607                         pts_origin = last_pts;
608                         rate = cmd.new_rate;
609                         break;
610                 }
611         }
612         return false;
613 }
614
615 namespace {
616
617 }  // namespace
618
619 AVFrameWithDeleter FFmpegCapture::decode_frame(AVFormatContext *format_ctx, AVCodecContext *video_codec_ctx, AVCodecContext *audio_codec_ctx,
620         const std::string &pathname, int video_stream_index, int audio_stream_index,
621         FrameAllocator::Frame *audio_frame, AudioFormat *audio_format, int64_t *audio_pts, bool *error)
622 {
623         *error = false;
624
625         // Read packets until we have a frame or there are none left.
626         bool frame_finished = false;
627         AVFrameWithDeleter audio_avframe = av_frame_alloc_unique();
628         AVFrameWithDeleter video_avframe = av_frame_alloc_unique();
629         bool eof = false;
630         *audio_pts = -1;
631         bool has_audio = false;
632         do {
633                 AVPacket pkt;
634                 unique_ptr<AVPacket, decltype(av_packet_unref)*> pkt_cleanup(
635                         &pkt, av_packet_unref);
636                 av_init_packet(&pkt);
637                 pkt.data = nullptr;
638                 pkt.size = 0;
639                 if (av_read_frame(format_ctx, &pkt) == 0) {
640                         if (pkt.stream_index == audio_stream_index && audio_callback != nullptr) {
641                                 audio_callback(&pkt, format_ctx->streams[audio_stream_index]->time_base);
642                         }
643                         if (pkt.stream_index == video_stream_index) {
644                                 if (avcodec_send_packet(video_codec_ctx, &pkt) < 0) {
645                                         fprintf(stderr, "%s: Cannot send packet to video codec.\n", pathname.c_str());
646                                         *error = true;
647                                         return AVFrameWithDeleter(nullptr);
648                                 }
649                         } else if (pkt.stream_index == audio_stream_index) {
650                                 has_audio = true;
651                                 if (avcodec_send_packet(audio_codec_ctx, &pkt) < 0) {
652                                         fprintf(stderr, "%s: Cannot send packet to audio codec.\n", pathname.c_str());
653                                         *error = true;
654                                         return AVFrameWithDeleter(nullptr);
655                                 }
656                         }
657                 } else {
658                         eof = true;  // Or error, but ignore that for the time being.
659                 }
660
661                 // Decode audio, if any.
662                 if (has_audio) {
663                         for ( ;; ) {
664                                 int err = avcodec_receive_frame(audio_codec_ctx, audio_avframe.get());
665                                 if (err == 0) {
666                                         if (*audio_pts == -1) {
667                                                 *audio_pts = audio_avframe->pts;
668                                         }
669                                         convert_audio(audio_avframe.get(), audio_frame, audio_format);
670                                 } else if (err == AVERROR(EAGAIN)) {
671                                         break;
672                                 } else {
673                                         fprintf(stderr, "%s: Cannot receive frame from audio codec.\n", pathname.c_str());
674                                         *error = true;
675                                         return AVFrameWithDeleter(nullptr);
676                                 }
677                         }
678                 }
679
680                 // Decode video, if we have a frame.
681                 int err = avcodec_receive_frame(video_codec_ctx, video_avframe.get());
682                 if (err == 0) {
683                         frame_finished = true;
684                         break;
685                 } else if (err != AVERROR(EAGAIN)) {
686                         fprintf(stderr, "%s: Cannot receive frame from video codec.\n", pathname.c_str());
687                         *error = true;
688                         return AVFrameWithDeleter(nullptr);
689                 }
690         } while (!eof);
691
692         if (frame_finished)
693                 return video_avframe;
694         else
695                 return AVFrameWithDeleter(nullptr);
696 }
697
698 void FFmpegCapture::convert_audio(const AVFrame *audio_avframe, FrameAllocator::Frame *audio_frame, AudioFormat *audio_format)
699 {
700         // Decide on a format. If there already is one in this audio frame,
701         // we're pretty much forced to use it. If not, we try to find an exact match.
702         // If that still doesn't work, we default to 32-bit signed chunked
703         // (float would be nice, but there's really no way to signal that yet).
704         AVSampleFormat dst_format;
705         if (audio_format->bits_per_sample == 0) {
706                 switch (audio_avframe->format) {
707                 case AV_SAMPLE_FMT_S16:
708                 case AV_SAMPLE_FMT_S16P:
709                         audio_format->bits_per_sample = 16;
710                         dst_format = AV_SAMPLE_FMT_S16;
711                         break;
712                 case AV_SAMPLE_FMT_S32:
713                 case AV_SAMPLE_FMT_S32P:
714                 default:
715                         audio_format->bits_per_sample = 32;
716                         dst_format = AV_SAMPLE_FMT_S32;
717                         break;
718                 }
719         } else if (audio_format->bits_per_sample == 16) {
720                 dst_format = AV_SAMPLE_FMT_S16;
721         } else if (audio_format->bits_per_sample == 32) {
722                 dst_format = AV_SAMPLE_FMT_S32;
723         } else {
724                 assert(false);
725         }
726         audio_format->num_channels = 2;
727
728         int64_t channel_layout = audio_avframe->channel_layout;
729         if (channel_layout == 0) {
730                 channel_layout = av_get_default_channel_layout(audio_avframe->channels);
731         }
732
733         if (resampler == nullptr ||
734             audio_avframe->format != last_src_format ||
735             dst_format != last_dst_format ||
736             channel_layout != last_channel_layout ||
737             av_frame_get_sample_rate(audio_avframe) != last_sample_rate) {
738                 avresample_free(&resampler);
739                 resampler = avresample_alloc_context();
740                 if (resampler == nullptr) {
741                         fprintf(stderr, "Allocating resampler failed.\n");
742                         exit(1);
743                 }
744
745                 av_opt_set_int(resampler, "in_channel_layout",  channel_layout,                             0);
746                 av_opt_set_int(resampler, "out_channel_layout", AV_CH_LAYOUT_STEREO,                        0);
747                 av_opt_set_int(resampler, "in_sample_rate",     av_frame_get_sample_rate(audio_avframe),    0);
748                 av_opt_set_int(resampler, "out_sample_rate",    OUTPUT_FREQUENCY,                           0);
749                 av_opt_set_int(resampler, "in_sample_fmt",      audio_avframe->format,                      0);
750                 av_opt_set_int(resampler, "out_sample_fmt",     dst_format,                                 0);
751
752                 if (avresample_open(resampler) < 0) {
753                         fprintf(stderr, "Could not open resample context.\n");
754                         exit(1);
755                 }
756
757                 last_src_format = AVSampleFormat(audio_avframe->format);
758                 last_dst_format = dst_format;
759                 last_channel_layout = channel_layout;
760                 last_sample_rate = av_frame_get_sample_rate(audio_avframe);
761         }
762
763         size_t bytes_per_sample = (audio_format->bits_per_sample / 8) * 2;
764         size_t num_samples_room = (audio_frame->size - audio_frame->len) / bytes_per_sample;
765
766         uint8_t *data = audio_frame->data + audio_frame->len;
767         int out_samples = avresample_convert(resampler, &data, 0, num_samples_room,
768                 const_cast<uint8_t **>(audio_avframe->data), audio_avframe->linesize[0], audio_avframe->nb_samples);
769         if (out_samples < 0) {
770                 fprintf(stderr, "Audio conversion failed.\n");
771                 exit(1);
772         }
773
774         audio_frame->len += out_samples * bytes_per_sample;
775 }
776
777 VideoFormat FFmpegCapture::construct_video_format(const AVFrame *frame, AVRational video_timebase)
778 {
779         VideoFormat video_format;
780         video_format.width = width;
781         video_format.height = height;
782         if (pixel_format == bmusb::PixelFormat_8BitBGRA) {
783                 video_format.stride = width * 4;
784         } else if (pixel_format == FFmpegCapture::PixelFormat_NV12) {
785                 video_format.stride = width;
786         } else {
787                 assert(pixel_format == bmusb::PixelFormat_8BitYCbCrPlanar);
788                 video_format.stride = width;
789         }
790         video_format.frame_rate_nom = video_timebase.den;
791         video_format.frame_rate_den = av_frame_get_pkt_duration(frame) * video_timebase.num;
792         if (video_format.frame_rate_nom == 0 || video_format.frame_rate_den == 0) {
793                 // Invalid frame rate.
794                 video_format.frame_rate_nom = 60;
795                 video_format.frame_rate_den = 1;
796         }
797         video_format.has_signal = true;
798         video_format.is_connected = true;
799         return video_format;
800 }
801
802 UniqueFrame FFmpegCapture::make_video_frame(const AVFrame *frame, const string &pathname, bool *error)
803 {
804         *error = false;
805
806         UniqueFrame video_frame(video_frame_allocator->alloc_frame());
807         if (video_frame->data == nullptr) {
808                 return video_frame;
809         }
810
811         if (sws_ctx == nullptr ||
812             sws_last_width != frame->width ||
813             sws_last_height != frame->height ||
814             sws_last_src_format != frame->format) {
815                 sws_dst_format = decide_dst_format(AVPixelFormat(frame->format), pixel_format);
816                 sws_ctx.reset(
817                         sws_getContext(frame->width, frame->height, AVPixelFormat(frame->format),
818                                 width, height, sws_dst_format,
819                                 SWS_BICUBIC, nullptr, nullptr, nullptr));
820                 sws_last_width = frame->width;
821                 sws_last_height = frame->height;
822                 sws_last_src_format = frame->format;
823         }
824         if (sws_ctx == nullptr) {
825                 fprintf(stderr, "%s: Could not create scaler context\n", pathname.c_str());
826                 *error = true;
827                 return video_frame;
828         }
829
830         uint8_t *pic_data[4] = { nullptr, nullptr, nullptr, nullptr };
831         int linesizes[4] = { 0, 0, 0, 0 };
832         if (pixel_format == bmusb::PixelFormat_8BitBGRA) {
833                 pic_data[0] = video_frame->data;
834                 linesizes[0] = width * 4;
835                 video_frame->len = (width * 4) * height;
836         } else if (pixel_format == PixelFormat_NV12) {
837                 pic_data[0] = video_frame->data;
838                 linesizes[0] = width;
839
840                 pic_data[1] = pic_data[0] + width * height;
841                 linesizes[1] = width;
842
843                 video_frame->len = (width * 2) * height;
844
845                 const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(sws_dst_format);
846                 current_frame_ycbcr_format = decode_ycbcr_format(desc, frame);
847         } else {
848                 assert(pixel_format == bmusb::PixelFormat_8BitYCbCrPlanar);
849                 const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(sws_dst_format);
850
851                 int chroma_width = AV_CEIL_RSHIFT(int(width), desc->log2_chroma_w);
852                 int chroma_height = AV_CEIL_RSHIFT(int(height), desc->log2_chroma_h);
853
854                 pic_data[0] = video_frame->data;
855                 linesizes[0] = width;
856
857                 pic_data[1] = pic_data[0] + width * height;
858                 linesizes[1] = chroma_width;
859
860                 pic_data[2] = pic_data[1] + chroma_width * chroma_height;
861                 linesizes[2] = chroma_width;
862
863                 video_frame->len = width * height + 2 * chroma_width * chroma_height;
864
865                 current_frame_ycbcr_format = decode_ycbcr_format(desc, frame);
866         }
867         sws_scale(sws_ctx.get(), frame->data, frame->linesize, 0, frame->height, pic_data, linesizes);
868
869         return video_frame;
870 }
871
872 int FFmpegCapture::interrupt_cb_thunk(void *unique)
873 {
874         return reinterpret_cast<FFmpegCapture *>(unique)->interrupt_cb();
875 }
876
877 int FFmpegCapture::interrupt_cb()
878 {
879         return should_interrupt.load();
880 }