]> git.sesse.net Git - casparcg/blob - modules/ffmpeg/producer/util/util.cpp
2.0.2: ffmpeg/util: Fix files with wierd double frame-rate.
[casparcg] / modules / ffmpeg / producer / util / util.cpp
1 #include "../../stdafx.h"\r
2 \r
3 #include "util.h"\r
4 \r
5 #include "flv.h"\r
6 \r
7 #include "../tbb_avcodec.h"\r
8 #include "../../ffmpeg_error.h"\r
9 \r
10 #include <tbb/concurrent_unordered_map.h>\r
11 #include <tbb/concurrent_queue.h>\r
12 \r
13 #include <core/producer/frame/frame_transform.h>\r
14 #include <core/producer/frame/frame_factory.h>\r
15 #include <core/producer/frame_producer.h>\r
16 #include <core/mixer/write_frame.h>\r
17 \r
18 #include <common/exception/exceptions.h>\r
19 #include <common/utility/assert.h>\r
20 #include <common/memory/memcpy.h>\r
21 \r
22 #include <tbb/parallel_for.h>\r
23 \r
24 #include <boost/filesystem.hpp>\r
25 #include <boost/lexical_cast.hpp>\r
26 \r
27 #if defined(_MSC_VER)\r
28 #pragma warning (push)\r
29 #pragma warning (disable : 4244)\r
30 #endif\r
31 extern "C" \r
32 {\r
33         #include <libswscale/swscale.h>\r
34         #include <libavcodec/avcodec.h>\r
35         #include <libavformat/avformat.h>\r
36 }\r
37 #if defined(_MSC_VER)\r
38 #pragma warning (pop)\r
39 #endif\r
40 \r
41 namespace caspar { namespace ffmpeg {\r
42                 \r
43 safe_ptr<AVPacket> flush_packet()\r
44 {\r
45         static auto packet = create_packet();\r
46         return packet;\r
47 }\r
48 \r
49 std::shared_ptr<core::audio_buffer> flush_audio()\r
50 {\r
51         static std::shared_ptr<core::audio_buffer> audio(new core::audio_buffer());\r
52         return audio;\r
53 }\r
54 \r
55 std::shared_ptr<core::audio_buffer> empty_audio()\r
56 {\r
57         static std::shared_ptr<core::audio_buffer> audio(new core::audio_buffer());\r
58         return audio;\r
59 }\r
60 \r
61 std::shared_ptr<AVFrame>                        flush_video()\r
62 {\r
63         static std::shared_ptr<AVFrame> video(avcodec_alloc_frame(), av_free);\r
64         return video;\r
65 }\r
66 \r
67 std::shared_ptr<AVFrame>                        empty_video()\r
68 {\r
69         static std::shared_ptr<AVFrame> video(avcodec_alloc_frame(), av_free);\r
70         return video;\r
71 }\r
72 \r
73 core::field_mode::type get_mode(const AVFrame& frame)\r
74 {\r
75         if(!frame.interlaced_frame)\r
76                 return core::field_mode::progressive;\r
77 \r
78         return frame.top_field_first ? core::field_mode::upper : core::field_mode::lower;\r
79 }\r
80 \r
81 core::pixel_format::type get_pixel_format(PixelFormat pix_fmt)\r
82 {\r
83         switch(pix_fmt)\r
84         {\r
85         case CASPAR_PIX_FMT_LUMA:       return core::pixel_format::luma;\r
86         case PIX_FMT_GRAY8:                     return core::pixel_format::gray;\r
87         case PIX_FMT_BGRA:                      return core::pixel_format::bgra;\r
88         case PIX_FMT_ARGB:                      return core::pixel_format::argb;\r
89         case PIX_FMT_RGBA:                      return core::pixel_format::rgba;\r
90         case PIX_FMT_ABGR:                      return core::pixel_format::abgr;\r
91         case PIX_FMT_YUV444P:           return core::pixel_format::ycbcr;\r
92         case PIX_FMT_YUV422P:           return core::pixel_format::ycbcr;\r
93         case PIX_FMT_YUV420P:           return core::pixel_format::ycbcr;\r
94         case PIX_FMT_YUV411P:           return core::pixel_format::ycbcr;\r
95         case PIX_FMT_YUV410P:           return core::pixel_format::ycbcr;\r
96         case PIX_FMT_YUVA420P:          return core::pixel_format::ycbcra;\r
97         default:                                        return core::pixel_format::invalid;\r
98         }\r
99 }\r
100 \r
101 core::pixel_format_desc get_pixel_format_desc(PixelFormat pix_fmt, size_t width, size_t height)\r
102 {\r
103         // Get linesizes\r
104         AVPicture dummy_pict;   \r
105         avpicture_fill(&dummy_pict, nullptr, pix_fmt == CASPAR_PIX_FMT_LUMA ? PIX_FMT_GRAY8 : pix_fmt, width, height);\r
106 \r
107         core::pixel_format_desc desc;\r
108         desc.pix_fmt = get_pixel_format(pix_fmt);\r
109                 \r
110         switch(desc.pix_fmt)\r
111         {\r
112         case core::pixel_format::gray:\r
113         case core::pixel_format::luma:\r
114                 {\r
115                         desc.planes.push_back(core::pixel_format_desc::plane(dummy_pict.linesize[0], height, 1));                                               \r
116                         return desc;\r
117                 }\r
118         case core::pixel_format::bgra:\r
119         case core::pixel_format::argb:\r
120         case core::pixel_format::rgba:\r
121         case core::pixel_format::abgr:\r
122                 {\r
123                         desc.planes.push_back(core::pixel_format_desc::plane(dummy_pict.linesize[0]/4, height, 4));                                             \r
124                         return desc;\r
125                 }\r
126         case core::pixel_format::ycbcr:\r
127         case core::pixel_format::ycbcra:\r
128                 {               \r
129                         // Find chroma height\r
130                         size_t size2 = dummy_pict.data[2] - dummy_pict.data[1];\r
131                         size_t h2 = size2/dummy_pict.linesize[1];                       \r
132 \r
133                         desc.planes.push_back(core::pixel_format_desc::plane(dummy_pict.linesize[0], height, 1));\r
134                         desc.planes.push_back(core::pixel_format_desc::plane(dummy_pict.linesize[1], h2, 1));\r
135                         desc.planes.push_back(core::pixel_format_desc::plane(dummy_pict.linesize[2], h2, 1));\r
136 \r
137                         if(desc.pix_fmt == core::pixel_format::ycbcra)                                          \r
138                                 desc.planes.push_back(core::pixel_format_desc::plane(dummy_pict.linesize[3], height, 1));       \r
139                         return desc;\r
140                 }               \r
141         default:                \r
142                 desc.pix_fmt = core::pixel_format::invalid;\r
143                 return desc;\r
144         }\r
145 }\r
146 \r
147 int make_alpha_format(int format)\r
148 {\r
149         switch(get_pixel_format(static_cast<PixelFormat>(format)))\r
150         {\r
151         case core::pixel_format::ycbcr:\r
152         case core::pixel_format::ycbcra:\r
153                 return CASPAR_PIX_FMT_LUMA;\r
154         default:\r
155                 return format;\r
156         }\r
157 }\r
158 \r
159 safe_ptr<core::write_frame> make_write_frame(const void* tag, const safe_ptr<AVFrame>& decoded_frame, const safe_ptr<core::frame_factory>& frame_factory, int hints)\r
160 {                       \r
161         static tbb::concurrent_unordered_map<size_t, tbb::concurrent_queue<std::shared_ptr<SwsContext>>> sws_contexts_;\r
162         \r
163         if(decoded_frame->width < 1 || decoded_frame->height < 1)\r
164                 return make_safe<core::write_frame>(tag);\r
165 \r
166         const auto width  = decoded_frame->width;\r
167         const auto height = decoded_frame->height;\r
168         auto desc                 = get_pixel_format_desc(static_cast<PixelFormat>(decoded_frame->format), width, height);\r
169         \r
170         if(hints & core::frame_producer::ALPHA_HINT)\r
171                 desc = get_pixel_format_desc(static_cast<PixelFormat>(make_alpha_format(decoded_frame->format)), width, height);\r
172 \r
173         std::shared_ptr<core::write_frame> write;\r
174 \r
175         if(desc.pix_fmt == core::pixel_format::invalid)\r
176         {\r
177                 auto pix_fmt = static_cast<PixelFormat>(decoded_frame->format);\r
178 \r
179                 write = frame_factory->create_frame(tag, get_pixel_format_desc(PIX_FMT_BGRA, width, height));\r
180                 write->set_type(get_mode(*decoded_frame));\r
181 \r
182                 std::shared_ptr<SwsContext> sws_context;\r
183 \r
184                 //CASPAR_LOG(warning) << "Hardware accelerated color transform not supported.";\r
185 \r
186                 size_t key = width << 20 | height << 8 | pix_fmt;\r
187                         \r
188                 auto& pool = sws_contexts_[key];\r
189                                                 \r
190                 if(!pool.try_pop(sws_context))\r
191                 {\r
192                         double param;\r
193                         sws_context.reset(sws_getContext(width, height, pix_fmt, width, height, PIX_FMT_BGRA, SWS_BILINEAR, nullptr, nullptr, &param), sws_freeContext);\r
194                 }\r
195                         \r
196                 if(!sws_context)\r
197                 {\r
198                         BOOST_THROW_EXCEPTION(operation_failed() << msg_info("Could not create software scaling context.") << \r
199                                                                         boost::errinfo_api_function("sws_getContext"));\r
200                 }       \r
201 \r
202                 // Use sws_scale when provided colorspace has no hw-accel.\r
203                 safe_ptr<AVFrame> av_frame(avcodec_alloc_frame(), av_free);     \r
204                 avcodec_get_frame_defaults(av_frame.get());                     \r
205                 avpicture_fill(reinterpret_cast<AVPicture*>(av_frame.get()), write->image_data().begin(), PIX_FMT_BGRA, width, height);\r
206                  \r
207                 sws_scale(sws_context.get(), decoded_frame->data, decoded_frame->linesize, 0, height, av_frame->data, av_frame->linesize);      \r
208                 pool.push(sws_context);\r
209 \r
210                 write->commit();\r
211         }\r
212         else\r
213         {\r
214                 write = frame_factory->create_frame(tag, desc);\r
215                 write->set_type(get_mode(*decoded_frame));\r
216 \r
217                 for(int n = 0; n < static_cast<int>(desc.planes.size()); ++n)\r
218                 {\r
219                         auto plane            = desc.planes[n];\r
220                         auto result           = write->image_data(n).begin();\r
221                         auto decoded          = decoded_frame->data[n];\r
222                         auto decoded_linesize = decoded_frame->linesize[n];\r
223                         \r
224                         CASPAR_ASSERT(decoded);\r
225                         CASPAR_ASSERT(write->image_data(n).begin());\r
226 \r
227                         if(decoded_linesize != static_cast<int>(plane.width))\r
228                         {\r
229                                 // Copy line by line since ffmpeg sometimes pads each line.\r
230                                 tbb::parallel_for<size_t>(0, desc.planes[n].height, [&](size_t y)\r
231                                 {\r
232                                         fast_memcpy(result + y*plane.linesize, decoded + y*decoded_linesize, plane.linesize);\r
233                                 });\r
234                         }\r
235                         else\r
236                         {\r
237                                 fast_memcpy(result, decoded, plane.size);\r
238                         }\r
239 \r
240                         write->commit(n);\r
241                 }\r
242         }\r
243 \r
244         if(decoded_frame->height == 480) // NTSC DV\r
245         {\r
246                 write->get_frame_transform().fill_translation[1] += 2.0/static_cast<double>(frame_factory->get_video_format_desc().height);\r
247                 write->get_frame_transform().fill_scale[1] = 1.0 - 6.0*1.0/static_cast<double>(frame_factory->get_video_format_desc().height);\r
248         }\r
249         \r
250         // Fix field-order if needed\r
251         if(write->get_type() == core::field_mode::lower && frame_factory->get_video_format_desc().field_mode == core::field_mode::upper)\r
252                 write->get_frame_transform().fill_translation[1] += 1.0/static_cast<double>(frame_factory->get_video_format_desc().height);\r
253         else if(write->get_type() == core::field_mode::upper && frame_factory->get_video_format_desc().field_mode == core::field_mode::lower)\r
254                 write->get_frame_transform().fill_translation[1] -= 1.0/static_cast<double>(frame_factory->get_video_format_desc().height);\r
255 \r
256         return make_safe_ptr(write);\r
257 }\r
258 \r
259 bool is_sane_fps(AVRational time_base)\r
260 {\r
261         double fps = static_cast<double>(time_base.den) / static_cast<double>(time_base.num);\r
262         return fps > 20.0 && fps < 65.0;\r
263 }\r
264 \r
265 void fix_meta_data(AVFormatContext& context)\r
266 {\r
267         auto video_index = av_find_best_stream(&context, AVMEDIA_TYPE_VIDEO, -1, -1, 0, 0);\r
268         auto audio_index = av_find_best_stream(&context, AVMEDIA_TYPE_AUDIO, -1, -1, 0, 0);\r
269 \r
270         if(video_index < 0)\r
271                 return;\r
272 \r
273         auto& video_context = *context.streams[video_index]->codec;\r
274         auto& video_stream  = *context.streams[video_index];\r
275                                                 \r
276         if(boost::filesystem2::path(context.filename).extension() == ".flv")\r
277         {\r
278                 try\r
279                 {\r
280                         auto meta = read_flv_meta_info(context.filename);\r
281                         double fps = boost::lexical_cast<double>(meta["framerate"]);\r
282                         video_context.time_base.num = 1000000;\r
283                         video_context.time_base.den = static_cast<int>(fps*1000000.0);\r
284                         video_stream.nb_frames = static_cast<int64_t>(boost::lexical_cast<double>(meta["duration"])*fps);\r
285                 }\r
286                 catch(...){}\r
287         }\r
288         else\r
289         {\r
290                 if(video_stream.nb_frames == 0)\r
291                         video_stream.nb_frames = video_stream.duration;\r
292 \r
293                 if(!is_sane_fps(video_context.time_base))\r
294                 {                       \r
295                         if(video_context.time_base.num == 1)\r
296                                 video_context.time_base.num = static_cast<int>(std::pow(10.0, static_cast<int>(std::log10(static_cast<float>(video_context.time_base.den)))-1));        \r
297                         \r
298                         if(!is_sane_fps(video_context.time_base))\r
299                         {\r
300                                 auto tmp = video_context.time_base;\r
301                                 tmp.den /= 2;\r
302                                 if(is_sane_fps(tmp))\r
303                                         video_context.time_base = tmp;\r
304                         }\r
305 \r
306                         if(!is_sane_fps(video_context.time_base) && audio_index > -1)\r
307                         {\r
308                                 auto& audio_context = *context.streams[audio_index]->codec;\r
309                                 auto& audio_stream  = *context.streams[audio_index];\r
310 \r
311                                 double duration_sec = audio_stream.duration / static_cast<double>(audio_context.sample_rate);\r
312                                                                 \r
313                                 video_context.time_base.num = static_cast<int>(duration_sec*100000.0);\r
314                                 video_context.time_base.den = static_cast<int>(video_stream.nb_frames*100000);\r
315                         }\r
316                 }\r
317 \r
318                 if(audio_index > -1) // Check for invalid double frame-rate\r
319                 {\r
320                         auto& audio_context             = *context.streams[audio_index]->codec;\r
321                         auto& audio_stream              = *context.streams[audio_index];\r
322 \r
323                         double duration_sec             = audio_stream.duration / static_cast<double>(audio_context.sample_rate);\r
324                         double fps                              = static_cast<double>(video_context.time_base.den) / static_cast<double>(video_context.time_base.num);\r
325 \r
326                         double fps_nb_frames    = static_cast<double>(duration_sec*fps);\r
327                         double stream_nb_frames = static_cast<double>(video_stream.nb_frames);\r
328                         double diff                             = std::abs(fps_nb_frames - stream_nb_frames*2.0);\r
329                         if(diff < fps_nb_frames*0.05)\r
330                                 video_context.time_base.num *= 2;\r
331                 }\r
332                 else\r
333                 {\r
334                         video_context.time_base.den = video_stream.r_frame_rate.num;\r
335                         video_context.time_base.num = video_stream.r_frame_rate.den;\r
336                 }\r
337         }\r
338 \r
339         double fps = static_cast<double>(video_context.time_base.den) / static_cast<double>(video_context.time_base.num);\r
340 \r
341         double closest_fps = 0.0;\r
342         for(int n = 0; n < core::video_format::count; ++n)\r
343         {\r
344                 auto format = core::video_format_desc::get(static_cast<core::video_format::type>(n));\r
345 \r
346                 double diff1 = std::abs(format.fps - fps);\r
347                 double diff2 = std::abs(closest_fps - fps);\r
348 \r
349                 if(diff1 < diff2)\r
350                         closest_fps = format.fps;\r
351         }\r
352         \r
353         video_context.time_base.num = 1000000;\r
354         video_context.time_base.den = static_cast<int>(closest_fps*1000000.0);\r
355 }\r
356 \r
357 safe_ptr<AVPacket> create_packet()\r
358 {\r
359         safe_ptr<AVPacket> packet(new AVPacket, [](AVPacket* p)\r
360         {\r
361                 av_free_packet(p);\r
362                 delete p;\r
363         });\r
364         \r
365         av_init_packet(packet.get());\r
366         return packet;\r
367 }\r
368 \r
369 safe_ptr<AVCodecContext> open_codec(AVFormatContext& context, enum AVMediaType type, int& index)\r
370 {       \r
371         AVCodec* decoder;\r
372         index = THROW_ON_ERROR2(av_find_best_stream(&context, type, -1, -1, &decoder, 0), "");\r
373         //if(strcmp(decoder->name, "prores") == 0 && decoder->next && strcmp(decoder->next->name, "prores_lgpl") == 0)\r
374         //      decoder = decoder->next;\r
375 \r
376         THROW_ON_ERROR2(tbb_avcodec_open(context.streams[index]->codec, decoder), "");\r
377         return safe_ptr<AVCodecContext>(context.streams[index]->codec, tbb_avcodec_close);\r
378 }\r
379 \r
380 safe_ptr<AVFormatContext> open_input(const std::wstring& filename)\r
381 {\r
382         AVFormatContext* weak_context = nullptr;\r
383         THROW_ON_ERROR2(avformat_open_input(&weak_context, narrow(filename).c_str(), nullptr, nullptr), filename);\r
384         safe_ptr<AVFormatContext> context(weak_context, av_close_input_file);                   \r
385         THROW_ON_ERROR2(avformat_find_stream_info(weak_context, nullptr), filename);\r
386         fix_meta_data(*context);\r
387         return context;\r
388 }\r
389 //\r
390 //void av_dup_frame(AVFrame* frame)\r
391 //{\r
392 //      AVFrame* new_frame = avcodec_alloc_frame();\r
393 //\r
394 //\r
395 //      const uint8_t *src_data[4] = {0};\r
396 //      memcpy(const_cast<uint8_t**>(&src_data[0]), frame->data, 4);\r
397 //      const int src_linesizes[4] = {0};\r
398 //      memcpy(const_cast<int*>(&src_linesizes[0]), frame->linesize, 4);\r
399 //\r
400 //      av_image_alloc(new_frame->data, new_frame->linesize, new_frame->width, new_frame->height, frame->format, 16);\r
401 //\r
402 //      av_image_copy(new_frame->data, new_frame->linesize, src_data, src_linesizes, frame->format, new_frame->width, new_frame->height);\r
403 //\r
404 //      frame =\r
405 //}\r
406 \r
407 }}