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2.0. mixer: Propagate exception into video_channel to allow recovery.
[casparcg] / core / mixer / mixer.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 "mixer.h"\r
23 \r
24 #include "read_frame.h"\r
25 #include "write_frame.h"\r
26 \r
27 #include "audio/audio_mixer.h"\r
28 #include "image/image_mixer.h"\r
29 \r
30 #include "../video_channel_context.h"\r
31 \r
32 #include <common/exception/exceptions.h>\r
33 #include <common/concurrency/executor.h>\r
34 #include <common/utility/tweener.h>\r
35 #include <common/env.h>\r
36 #include <common/gl/gl_check.h>\r
37 \r
38 #include <core/mixer/read_frame.h>\r
39 #include <core/mixer/write_frame.h>\r
40 #include <core/producer/frame/basic_frame.h>\r
41 #include <core/producer/frame/frame_factory.h>\r
42 #include <core/producer/frame/pixel_format.h>\r
43 #include <core/producer/frame/audio_transform.h>\r
44 #include <core/producer/frame/image_transform.h>\r
45 \r
46 #include <core/video_format.h>\r
47 \r
48 #include <boost/fusion/container/map.hpp>\r
49 #include <boost/fusion/include/at_key.hpp>\r
50 #include <boost/foreach.hpp>\r
51 \r
52 #include <tbb/parallel_invoke.h>\r
53 \r
54 #include <unordered_map>\r
55 \r
56 namespace caspar { namespace core {\r
57                 \r
58 template<typename T>\r
59 class tweened_transform\r
60 {\r
61         T source_;\r
62         T dest_;\r
63         int duration_;\r
64         int time_;\r
65         tweener_t tweener_;\r
66 public: \r
67         tweened_transform()\r
68                 : duration_(0)\r
69                 , time_(0)\r
70                 , tweener_(get_tweener(L"linear")){}\r
71         tweened_transform(const T& source, const T& dest, int duration, const std::wstring& tween = L"linear")\r
72                 : source_(source)\r
73                 , dest_(dest)\r
74                 , duration_(duration)\r
75                 , time_(0)\r
76                 , tweener_(get_tweener(tween)){}\r
77         \r
78         T fetch()\r
79         {\r
80                 return time_ == duration_ ? dest_ : tween(static_cast<double>(time_), source_, dest_, static_cast<double>(duration_), tweener_);\r
81         }\r
82 \r
83         T fetch_and_tick(int num)\r
84         {                                               \r
85                 time_ = std::min(time_+num, duration_);\r
86                 return fetch();\r
87         }\r
88 };\r
89 \r
90 struct mixer::implementation : boost::noncopyable\r
91 {               \r
92         video_channel_context& channel_;\r
93         \r
94         audio_mixer     audio_mixer_;\r
95         image_mixer image_mixer_;\r
96         \r
97         typedef std::unordered_map<int, tweened_transform<core::image_transform>> image_transforms;\r
98         typedef std::unordered_map<int, tweened_transform<core::audio_transform>> audio_transforms;\r
99 \r
100         boost::fusion::map<boost::fusion::pair<core::image_transform, image_transforms>,\r
101                                         boost::fusion::pair<core::audio_transform, audio_transforms>> transforms_;\r
102         \r
103         std::queue<std::pair<boost::unique_future<safe_ptr<host_buffer>>, std::vector<int16_t>>> buffer_;\r
104         \r
105         const size_t buffer_size_;\r
106 \r
107 public:\r
108         implementation(video_channel_context& video_channel) \r
109                 : channel_(video_channel)\r
110                 , audio_mixer_(channel_.get_format_desc())\r
111                 , image_mixer_(channel_)\r
112                 , buffer_size_(env::properties().get("configuration.producers.buffer-depth", 1))\r
113         {       \r
114                 CASPAR_LOG(info) << print() << L" Successfully initialized . Buffer-depth: " << buffer_size_;   \r
115         }\r
116                         \r
117         safe_ptr<read_frame> execute(const std::map<int, safe_ptr<core::basic_frame>>& frames)\r
118         {                       \r
119                 decltype(mix_image(frames)) image;\r
120                 decltype(mix_audio(frames)) audio;\r
121 \r
122                 tbb::parallel_invoke\r
123                 (\r
124                         [&]{image = mix_image(frames);}, \r
125                         [&]{audio = mix_audio(frames);}\r
126                 );\r
127                         \r
128                 buffer_.push(std::make_pair(std::move(image), audio));\r
129 \r
130                 if(buffer_.size()-1 < buffer_size_)                     \r
131                         return make_safe<read_frame>();\r
132                 \r
133                 auto res = std::move(buffer_.front());\r
134                 buffer_.pop();\r
135                         \r
136                 return make_safe<read_frame>(channel_.ogl(), channel_.get_format_desc().size, std::move(res.first.get()), std::move(res.second));               \r
137         }\r
138                                         \r
139         safe_ptr<core::write_frame> create_frame(const void* tag, const core::pixel_format_desc& desc)\r
140         {               \r
141                 return image_mixer_.create_frame(tag, desc);\r
142         }\r
143 \r
144         void reset_transforms()\r
145         {\r
146                 channel_.execution().invoke([&]\r
147                 {\r
148                         boost::fusion::at_key<image_transform>(transforms_).clear();\r
149                         boost::fusion::at_key<audio_transform>(transforms_).clear();\r
150                 });\r
151         }\r
152                 \r
153         template<typename T>\r
154         void set_transform(int index, const T& transform, unsigned int mix_duration, const std::wstring& tween)\r
155         {\r
156                 channel_.execution().invoke([&]\r
157                 {\r
158                         auto& transforms = boost::fusion::at_key<T>(transforms_);\r
159 \r
160                         auto src = transforms[index].fetch();\r
161                         auto dst = transform;\r
162                         transforms[index] = tweened_transform<T>(src, dst, mix_duration, tween);\r
163                 });\r
164         }\r
165                                 \r
166         template<typename T>\r
167         void apply_transform(int index, const std::function<T(T)>& transform, unsigned int mix_duration, const std::wstring& tween)\r
168         {\r
169                 channel_.execution().invoke([&]\r
170                 {\r
171                         auto& transforms = boost::fusion::at_key<T>(transforms_);\r
172 \r
173                         auto src = transforms[index].fetch();\r
174                         auto dst = transform(src);\r
175                         transforms[index] = tweened_transform<T>(src, dst, mix_duration, tween);\r
176                 });\r
177         }\r
178                 \r
179         std::wstring print() const\r
180         {\r
181                 return L"mixer";\r
182         }\r
183 \r
184 private:\r
185                 \r
186         boost::unique_future<safe_ptr<host_buffer>> mix_image(std::map<int, safe_ptr<core::basic_frame>> frames)\r
187         {               \r
188                 auto& image_transforms = boost::fusion::at_key<core::image_transform>(transforms_);\r
189                 \r
190                 BOOST_FOREACH(auto& frame, frames)\r
191                 {\r
192                         image_mixer_.begin_layer();\r
193 \r
194                         auto frame1 = make_safe<core::basic_frame>(frame.second);\r
195                         frame1->get_image_transform() = image_transforms[frame.first].fetch_and_tick(1);\r
196                                                 \r
197                         if(channel_.get_format_desc().mode != core::video_mode::progressive)\r
198                         {\r
199                                 auto frame2 = make_safe<core::basic_frame>(frame.second);\r
200                                 frame2->get_image_transform() = image_transforms[frame.first].fetch_and_tick(1);\r
201                                 if(frame1->get_image_transform() != frame2->get_image_transform())\r
202                                         frame1 = core::basic_frame::interlace(frame1, frame2, channel_.get_format_desc().mode);\r
203                         }\r
204 \r
205                         frame1->accept(image_mixer_);\r
206 \r
207                         image_mixer_.end_layer();\r
208                 }\r
209 \r
210                 return image_mixer_.render();\r
211         }\r
212 \r
213         std::vector<int16_t> mix_audio(const std::map<int, safe_ptr<core::basic_frame>>& frames)\r
214         {\r
215                 auto& audio_transforms = boost::fusion::at_key<core::audio_transform>(transforms_);\r
216 \r
217                 BOOST_FOREACH(auto& frame, frames)\r
218                 {\r
219                         const unsigned int num = channel_.get_format_desc().mode == core::video_mode::progressive ? 1 : 2;\r
220 \r
221                         auto frame1 = make_safe<core::basic_frame>(frame.second);\r
222                         frame1->get_audio_transform() = audio_transforms[frame.first].fetch_and_tick(num);\r
223                         frame1->accept(audio_mixer_);\r
224                 }\r
225 \r
226                 return audio_mixer_.mix();\r
227         }\r
228 };\r
229         \r
230 mixer::mixer(video_channel_context& video_channel) : impl_(new implementation(video_channel)){}\r
231 safe_ptr<core::read_frame> mixer::execute(const std::map<int, safe_ptr<core::basic_frame>>& frames){ return impl_->execute(frames);}\r
232 core::video_format_desc mixer::get_video_format_desc() const { return impl_->channel_.get_format_desc(); }\r
233 safe_ptr<core::write_frame> mixer::create_frame(const void* tag, const core::pixel_format_desc& desc){ return impl_->create_frame(tag, desc); }         \r
234 safe_ptr<core::write_frame> mixer::create_frame(const void* tag, size_t width, size_t height, core::pixel_format::type pix_fmt)\r
235 {\r
236         // Create bgra frame\r
237         core::pixel_format_desc desc;\r
238         desc.pix_fmt = pix_fmt;\r
239         desc.planes.push_back( core::pixel_format_desc::plane(width, height, 4));\r
240         return create_frame(tag, desc);\r
241 }\r
242 void mixer::reset_transforms(){impl_->reset_transforms();}\r
243 void mixer::set_image_transform(int index, const core::image_transform& transform, unsigned int mix_duration, const std::wstring& tween){impl_->set_transform<core::image_transform>(index, transform, mix_duration, tween);}\r
244 void mixer::set_audio_transform(int index, const core::audio_transform& transform, unsigned int mix_duration, const std::wstring& tween){impl_->set_transform<core::audio_transform>(index, transform, mix_duration, tween);}\r
245 void mixer::apply_image_transform(int index, const std::function<core::image_transform(core::image_transform)>& transform, unsigned int mix_duration, const std::wstring& tween){impl_->apply_transform<core::image_transform>(index, transform, mix_duration, tween);}\r
246 void mixer::apply_audio_transform(int index, const std::function<core::audio_transform(core::audio_transform)>& transform, unsigned int mix_duration, const std::wstring& tween){impl_->apply_transform<core::audio_transform>(index, transform, mix_duration, tween);}\r
247 \r
248 }}