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[casparcg] / modules / ffmpeg / producer / video / video_decoder.cpp
1 /*\r
2 * copyright (c) 2010 Sveriges Television AB <info@casparcg.com>\r
3 *\r
4 *  This file is part of CasparCG.\r
5 *\r
6 *    CasparCG is free software: you can redistribute it and/or modify\r
7 *    it under the terms of the GNU General Public License as published by\r
8 *    the Free Software Foundation, either version 3 of the License, or\r
9 *    (at your option) any later version.\r
10 *\r
11 *    CasparCG is distributed in the hope that it will be useful,\r
12 *    but WITHOUT ANY WARRANTY; without even the implied warranty of\r
13 *    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the\r
14 *    GNU General Public License for more details.\r
15 \r
16 *    You should have received a copy of the GNU General Public License\r
17 *    along with CasparCG.  If not, see <http://www.gnu.org/licenses/>.\r
18 *\r
19 */\r
20 #include "../../stdafx.h"\r
21 \r
22 #include "video_decoder.h"\r
23 #include "../util.h"\r
24 #include "../filter/filter.h"\r
25 \r
26 #include "../../ffmpeg_error.h"\r
27 #include "../../tbb_avcodec.h"\r
28 \r
29 #include <common/memory/memcpy.h>\r
30 \r
31 #include <core/video_format.h>\r
32 #include <core/producer/frame/basic_frame.h>\r
33 #include <core/mixer/write_frame.h>\r
34 #include <core/producer/frame/image_transform.h>\r
35 #include <core/producer/frame/frame_factory.h>\r
36 #include <core/producer/color/color_producer.h>\r
37 \r
38 #include <tbb/task_group.h>\r
39 \r
40 #include <boost/range/algorithm_ext.hpp>\r
41 \r
42 #if defined(_MSC_VER)\r
43 #pragma warning (push)\r
44 #pragma warning (disable : 4244)\r
45 #endif\r
46 extern "C" \r
47 {\r
48         #define __STDC_CONSTANT_MACROS\r
49         #define __STDC_LIMIT_MACROS\r
50         #include <libavformat/avformat.h>\r
51         #include <libavcodec/avcodec.h>\r
52 }\r
53 #if defined(_MSC_VER)\r
54 #pragma warning (pop)\r
55 #endif\r
56 \r
57 namespace caspar {\r
58                 \r
59 struct video_decoder::implementation : boost::noncopyable\r
60 {\r
61         const safe_ptr<core::frame_factory>             frame_factory_;\r
62         std::shared_ptr<AVCodecContext>                 codec_context_;\r
63         int                                                                             index_;\r
64         core::video_mode::type                                  mode_;\r
65 \r
66         std::queue<std::shared_ptr<AVPacket>>   packet_buffer_;\r
67 \r
68         std::unique_ptr<filter>                                 filter_;\r
69         tbb::task_group                                                 filter_tasks_;\r
70 \r
71         double                                                                  fps_;\r
72 public:\r
73         explicit implementation(const std::shared_ptr<AVFormatContext>& context, const safe_ptr<core::frame_factory>& frame_factory, const std::wstring& filter) \r
74                 : frame_factory_(frame_factory)\r
75                 , mode_(core::video_mode::invalid)\r
76                 , filter_(filter.empty() ? nullptr : new caspar::filter(filter))\r
77                 , fps_(frame_factory_->get_video_format_desc().fps)\r
78         {\r
79                 AVCodec* dec;\r
80                 index_ = av_find_best_stream(context.get(), AVMEDIA_TYPE_VIDEO, -1, -1, &dec, 0);\r
81 \r
82                 if(index_ < 0)\r
83                         return;\r
84                         \r
85                 int errn = tbb_avcodec_open(context->streams[index_]->codec, dec);\r
86                 if(errn < 0)\r
87                         return;\r
88                                 \r
89                 codec_context_.reset(context->streams[index_]->codec, tbb_avcodec_close);\r
90 \r
91                 // Some files give an invalid time_base numerator, try to fix it.\r
92                 if(codec_context_ && codec_context_->time_base.num == 1)\r
93                         codec_context_->time_base.num = static_cast<int>(std::pow(10.0, static_cast<int>(std::log10(static_cast<float>(codec_context_->time_base.den)))-1));    \r
94 \r
95                 fps_ = static_cast<double>(codec_context_->time_base.den) / static_cast<double>(codec_context_->time_base.num);\r
96                 if(double_rate(filter))\r
97                         fps_ *= 2;\r
98         }\r
99 \r
100         ~implementation()\r
101         {\r
102                 filter_tasks_.cancel();\r
103                 filter_tasks_.wait();\r
104         }\r
105                 \r
106         void push(const std::shared_ptr<AVPacket>& packet)\r
107         {\r
108                 if(!codec_context_)\r
109                         return;\r
110 \r
111                 if(packet && packet->stream_index != index_)\r
112                         return;\r
113 \r
114                 packet_buffer_.push(packet);\r
115         }\r
116 \r
117         std::vector<std::shared_ptr<core::write_frame>> poll()\r
118         {               \r
119                 std::vector<std::shared_ptr<core::write_frame>> result;\r
120 \r
121                 if(!codec_context_)\r
122                         result.push_back(make_safe<core::write_frame>(reinterpret_cast<int>(this)));\r
123                 else if(!packet_buffer_.empty())\r
124                 {\r
125                         std::vector<safe_ptr<AVFrame>> av_frames;\r
126 \r
127                         auto packet = std::move(packet_buffer_.front());\r
128                 \r
129                         if(packet)\r
130                         {\r
131                                 decode(*packet, av_frames);                                     \r
132                                 packet_buffer_.pop();\r
133                         }\r
134                         else\r
135                         {\r
136                                 bool flush = true;\r
137 \r
138                                 if(codec_context_->codec->capabilities | CODEC_CAP_DELAY)\r
139                                 {\r
140                                         AVPacket pkt = {0};\r
141                                         flush = !decode(pkt, av_frames);\r
142                                 }\r
143 \r
144                                 if(flush)\r
145                                 {                                       \r
146                                         packet_buffer_.pop();\r
147                                         avcodec_flush_buffers(codec_context_.get());\r
148                                 }\r
149                         }\r
150 \r
151                         if(filter_)\r
152                         {\r
153                                 auto av_frames2 = std::move(av_frames);\r
154 \r
155                                 filter_tasks_.wait();\r
156 \r
157                                 av_frames = filter_->poll();\r
158 \r
159                                 filter_tasks_.run([=]\r
160                                 {\r
161                                         BOOST_FOREACH(auto& frame, av_frames2)                          \r
162                                                 filter_->push(frame);\r
163                                 });\r
164                         }\r
165                                                 \r
166                         BOOST_FOREACH(auto& frame, av_frames)\r
167                                 result.push_back(make_write_frame(this, frame, frame_factory_));\r
168 \r
169                         if(!packet)\r
170                                 result.push_back(nullptr);\r
171                 }\r
172                 \r
173                 return result;\r
174         }\r
175 \r
176         bool decode(AVPacket& packet, std::vector<safe_ptr<AVFrame>>& av_frames)\r
177         {\r
178                 std::shared_ptr<AVFrame> decoded_frame(avcodec_alloc_frame(), av_free);\r
179 \r
180                 int frame_finished = 0;\r
181                 const int errn = avcodec_decode_video2(codec_context_.get(), decoded_frame.get(), &frame_finished, &packet);\r
182                 \r
183                 if(errn < 0)\r
184                 {\r
185                         BOOST_THROW_EXCEPTION(\r
186                                 invalid_operation() <<\r
187                                 msg_info(av_error_str(errn)) <<\r
188                                 boost::errinfo_api_function("avcodec_decode_video") <<\r
189                                 boost::errinfo_errno(AVUNERROR(errn)));\r
190                 }\r
191 \r
192                 if(frame_finished != 0) \r
193                 {\r
194                         av_frames.push_back(make_safe(decoded_frame));\r
195                         if(decoded_frame->repeat_pict != 0)\r
196                                 CASPAR_LOG(warning) << "video_decoder: repeat_pict not implemented.";\r
197                 }\r
198 \r
199                 return frame_finished != 0;\r
200         }\r
201         \r
202         bool ready() const\r
203         {\r
204                 return !codec_context_ || !packet_buffer_.empty();\r
205         }\r
206         \r
207         core::video_mode::type mode()\r
208         {\r
209                 if(!codec_context_)\r
210                         return frame_factory_->get_video_format_desc().mode;\r
211 \r
212                 return mode_;\r
213         }\r
214 \r
215         double fps() const\r
216         {\r
217                 return fps_;\r
218         }\r
219 };\r
220 \r
221 video_decoder::video_decoder(const std::shared_ptr<AVFormatContext>& context, const safe_ptr<core::frame_factory>& frame_factory, const std::wstring& filter) : impl_(new implementation(context, frame_factory, filter)){}\r
222 void video_decoder::push(const std::shared_ptr<AVPacket>& packet){impl_->push(packet);}\r
223 std::vector<std::shared_ptr<core::write_frame>> video_decoder::poll(){return impl_->poll();}\r
224 bool video_decoder::ready() const{return impl_->ready();}\r
225 core::video_mode::type video_decoder::mode(){return impl_->mode();}\r
226 double video_decoder::fps() const{return impl_->fps();}\r
227 }