]> git.sesse.net Git - casparcg/blob - core/producer/stage.cpp
2.0. Added ogl device check for swap validation.
[casparcg] / core / producer / stage.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 \r
21 #include "../StdAfx.h"\r
22 \r
23 #include "stage.h"\r
24 \r
25 #include "../video_channel_context.h"\r
26 \r
27 #include "layer.h"\r
28 \r
29 #include <core/producer/frame/basic_frame.h>\r
30 #include <core/producer/frame/frame_factory.h>\r
31 \r
32 #include <common/concurrency/executor.h>\r
33 \r
34 #include <boost/range/algorithm.hpp>\r
35 \r
36 #include <tbb/parallel_for.h>\r
37 \r
38 #include <map>\r
39 \r
40 namespace caspar { namespace core {\r
41                 \r
42 void destroy_producer(safe_ptr<frame_producer>& producer)\r
43 {\r
44         if(!producer.unique())\r
45                 CASPAR_LOG(warning) << producer->print() << L" Not destroyed on safe asynchronous destruction thread.";\r
46                 \r
47         producer = frame_producer::empty();\r
48 }\r
49 \r
50 class destroy_producer_proxy : public frame_producer\r
51 {\r
52         safe_ptr<frame_producer> producer_;\r
53         executor& destroy_context_;\r
54 public:\r
55         destroy_producer_proxy(executor& destroy_context, const safe_ptr<frame_producer>& producer) \r
56                 : producer_(producer)\r
57                 , destroy_context_(destroy_context){}\r
58 \r
59         ~destroy_producer_proxy()\r
60         {               \r
61                 if(destroy_context_.size() > 4)\r
62                         CASPAR_LOG(error) << L" Potential destroyer deadlock.";\r
63 \r
64                 destroy_context_.begin_invoke(std::bind(&destroy_producer, std::move(producer_)));\r
65         }\r
66 \r
67         virtual safe_ptr<basic_frame>           receive()                                                                                                               {return core::receive(producer_);}\r
68         virtual std::wstring                            print() const                                                                                                   {return producer_->print();}\r
69         virtual void                                            param(const std::wstring& str)                                                                  {producer_->param(str);}\r
70         virtual safe_ptr<frame_producer>        get_following_producer() const                                                                  {return producer_->get_following_producer();}\r
71         virtual void                                            set_leading_producer(const safe_ptr<frame_producer>& producer)  {producer_->set_leading_producer(producer);}\r
72 };\r
73 \r
74 struct stage::implementation : boost::noncopyable\r
75 {               \r
76         std::map<int, layer>                                            layers_;                \r
77         typedef std::map<int, layer>::value_type        layer_t;\r
78                 \r
79         video_channel_context&                                          channel_;\r
80 public:\r
81         implementation(video_channel_context& video_channel)  \r
82                 : channel_(video_channel)\r
83         {\r
84         }\r
85                                                 \r
86         std::map<int, safe_ptr<basic_frame>> execute()\r
87         {                       \r
88                 std::map<int, safe_ptr<basic_frame>> frames;\r
89 \r
90                 try\r
91                 {\r
92                         // Allocate placeholders.\r
93                         BOOST_FOREACH(auto layer, layers_)\r
94                                 frames[layer.first] = basic_frame::empty();\r
95 \r
96                         // Render layers\r
97                         tbb::parallel_for_each(layers_.begin(), layers_.end(), [&](layer_t& layer)\r
98                         {\r
99                                 frames[layer.first] = layer.second.receive();\r
100                         });\r
101                 }\r
102                 catch(...)\r
103                 {\r
104                         CASPAR_LOG_CURRENT_EXCEPTION();\r
105                 }\r
106                 \r
107                 return frames;\r
108         }\r
109 \r
110         void load(int index, const safe_ptr<frame_producer>& producer, bool preview)\r
111         {\r
112                 channel_.execution().invoke([&]\r
113                 {\r
114                         layers_[index].load(make_safe<destroy_producer_proxy>(channel_.destruction(), producer), preview);\r
115                 });\r
116         }\r
117 \r
118         void pause(int index)\r
119         {               \r
120                 channel_.execution().invoke([&]\r
121                 {\r
122                         layers_[index].pause();\r
123                 });\r
124         }\r
125 \r
126         void play(int index)\r
127         {               \r
128                 channel_.execution().invoke([&]\r
129                 {\r
130                         layers_[index].play();\r
131                 });\r
132         }\r
133 \r
134         void stop(int index)\r
135         {               \r
136                 channel_.execution().invoke([&]\r
137                 {\r
138                         layers_[index].stop();\r
139                 });\r
140         }\r
141 \r
142         void clear(int index)\r
143         {\r
144                 channel_.execution().invoke([&]\r
145                 {\r
146                         layers_.erase(index);\r
147                 });\r
148         }\r
149                 \r
150         void clear()\r
151         {\r
152                 channel_.execution().invoke([&]\r
153                 {\r
154                         layers_.clear();\r
155                 });\r
156         }       \r
157         \r
158         void swap_layer(int index, size_t other_index)\r
159         {\r
160                 channel_.execution().invoke([&]\r
161                 {\r
162                         layers_[index].swap(layers_[other_index]);\r
163                 });\r
164         }\r
165 \r
166         void swap_layer(int index, size_t other_index, stage& other)\r
167         {\r
168                 if(other.impl_.get() == this)\r
169                         swap_layer(index, other_index);\r
170                 else\r
171                 {\r
172                         if(channel_.get_format_desc() != other.impl_->channel_.get_format_desc() || &channel_.ogl() != &other.impl_->channel_.ogl())\r
173                                 BOOST_THROW_EXCEPTION(not_supported() << msg_info("Cannot swap between incompatible channels."));\r
174 \r
175                         auto func = [&]{layers_[index].swap(other.impl_->layers_[other_index]);};\r
176                 \r
177                         channel_.execution().invoke([&]{other.impl_->channel_.execution().invoke(func);});\r
178                 }\r
179         }\r
180 \r
181         void swap(stage& other)\r
182         {\r
183                 if(other.impl_.get() == this)\r
184                         return;\r
185                 \r
186                 if(channel_.get_format_desc() != other.impl_->channel_.get_format_desc() || &channel_.ogl() != &other.impl_->channel_.ogl())\r
187                         BOOST_THROW_EXCEPTION(not_supported() << msg_info("Cannot swap between incompatible channels."));\r
188 \r
189                 auto func = [&]\r
190                 {\r
191                         auto sel_first = [](const std::pair<int, layer>& pair){return pair.first;};\r
192 \r
193                         std::set<int> indices;\r
194                         auto inserter = std::inserter(indices, indices.begin());\r
195 \r
196                         std::transform(layers_.begin(), layers_.end(), inserter, sel_first);\r
197                         std::transform(other.impl_->layers_.begin(), other.impl_->layers_.end(), inserter, sel_first);\r
198 \r
199                         BOOST_FOREACH(auto index, indices)\r
200                                 layers_[index].swap(other.impl_->layers_[index]);\r
201                 };\r
202                 \r
203                 channel_.execution().invoke([&]{other.impl_->channel_.execution().invoke(func);});\r
204         }\r
205         \r
206         boost::unique_future<safe_ptr<frame_producer>> foreground(int index)\r
207         {\r
208                 return channel_.execution().begin_invoke([=]{return layers_[index].foreground();});\r
209         }\r
210         \r
211         boost::unique_future<safe_ptr<frame_producer>> background(int index)\r
212         {\r
213                 return channel_.execution().begin_invoke([=]{return layers_[index].background();});\r
214         }\r
215 \r
216         std::wstring print() const\r
217         {\r
218                 return L"stage [" + boost::lexical_cast<std::wstring>(channel_.index()) + L"]";\r
219         }\r
220 \r
221 };\r
222 \r
223 stage::stage(video_channel_context& video_channel) : impl_(new implementation(video_channel)){}\r
224 void stage::swap(stage& other){impl_->swap(other);}\r
225 void stage::load(int index, const safe_ptr<frame_producer>& producer, bool preview){impl_->load(index, producer, preview);}\r
226 void stage::pause(int index){impl_->pause(index);}\r
227 void stage::play(int index){impl_->play(index);}\r
228 void stage::stop(int index){impl_->stop(index);}\r
229 void stage::clear(int index){impl_->clear(index);}\r
230 void stage::clear(){impl_->clear();}\r
231 void stage::swap_layer(int index, size_t other_index){impl_->swap_layer(index, other_index);}\r
232 void stage::swap_layer(int index, size_t other_index, stage& other){impl_->swap_layer(index, other_index, other);}\r
233 boost::unique_future<safe_ptr<frame_producer>> stage::foreground(size_t index) {return impl_->foreground(index);}\r
234 boost::unique_future<safe_ptr<frame_producer>> stage::background(size_t index) {return impl_->background(index);}\r
235 std::map<int, safe_ptr<basic_frame>> stage::execute(){return impl_->execute();}\r
236 }}