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[casparcg] / core / producer / transition / transition_producer.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 "transition_producer.h"\r
23 \r
24 #include "../../format/video_format.h"\r
25 #include "../../processor/frame.h"\r
26 #include "../../processor/composite_frame.h"\r
27 #include "../../processor/frame_processor_device.h"\r
28 \r
29 #include "../../../common/utility/memory.h"\r
30 #include "../../producer/frame_producer_device.h"\r
31 \r
32 #include <boost/range/algorithm/copy.hpp>\r
33 \r
34 namespace caspar { namespace core {     \r
35 \r
36 struct transition_producer::implementation : boost::noncopyable\r
37 {\r
38         implementation(const frame_producer_ptr& dest, const transition_info& info) \r
39                 : current_frame_(0), info_(info), dest_producer_(dest)\r
40         {\r
41                 if(!dest)\r
42                         BOOST_THROW_EXCEPTION(null_argument() << arg_name_info("dest"));\r
43         }\r
44                 \r
45         frame_producer_ptr get_following_producer() const\r
46         {\r
47                 return dest_producer_;\r
48         }\r
49         \r
50         void set_leading_producer(const frame_producer_ptr& producer)\r
51         {\r
52                 source_producer_ = producer;\r
53         }\r
54                 \r
55         frame_ptr render_frame()\r
56         {\r
57                 if(current_frame_ == 0)\r
58                         CASPAR_LOG(info) << "Transition started.";\r
59 \r
60                 frame_ptr result = [&]() -> frame_ptr\r
61                 {\r
62                         if(current_frame_++ >= info_.duration)\r
63                                 return nullptr;\r
64 \r
65                         frame_ptr source;\r
66                         frame_ptr dest;\r
67 \r
68                         tbb::parallel_invoke\r
69                         (\r
70                                 [&]{dest = render_frame(dest_producer_);},\r
71                                 [&]{source = render_frame(source_producer_);}\r
72                         );\r
73 \r
74                         return compose(dest, source);\r
75                 }();\r
76 \r
77                 if(result == nullptr)\r
78                         CASPAR_LOG(info) << "Transition ended.";\r
79 \r
80                 return result;\r
81         }\r
82 \r
83         frame_ptr render_frame(frame_producer_ptr& producer)\r
84         {\r
85                 if(producer == nullptr)\r
86                         return nullptr;\r
87 \r
88                 frame_ptr frame;\r
89                 try\r
90                 {\r
91                         frame = producer->render_frame();\r
92                 }\r
93                 catch(...)\r
94                 {\r
95                         CASPAR_LOG_CURRENT_EXCEPTION();\r
96                         producer = nullptr;\r
97                         CASPAR_LOG(warning) << "Removed renderer from transition.";\r
98                 }\r
99 \r
100                 if(frame == nullptr && producer != nullptr && \r
101                         producer->get_following_producer() != nullptr)\r
102                 {\r
103                         auto following = producer->get_following_producer();\r
104                         following->initialize(frame_processor_);\r
105                         following->set_leading_producer(producer);\r
106                         producer = following;\r
107                         return render_frame(producer);\r
108                 }\r
109                 return frame;\r
110         }\r
111                         \r
112         void set_volume(const frame_ptr& frame, int volume)\r
113         {\r
114                 if(!frame)\r
115                         return;\r
116 \r
117                 for(size_t n = 0; n < frame->audio_data().size(); ++n)\r
118                         frame->audio_data()[n] = static_cast<short>((static_cast<int>(frame->audio_data()[n])*volume)>>8);\r
119         }\r
120                 \r
121         frame_ptr compose(const frame_ptr& dest_frame, frame_ptr src_frame) \r
122         {       \r
123                 if(info_.type == transition::cut)               \r
124                         return src_frame;\r
125 \r
126                 if(!dest_frame)\r
127                         return nullptr;\r
128                                                                 \r
129                 double alpha = static_cast<double>(current_frame_)/static_cast<double>(info_.duration);\r
130                 int volume = static_cast<int>(alpha*256.0);\r
131                                 \r
132                 tbb::parallel_invoke\r
133                 (\r
134                         [&]{set_volume(dest_frame, volume);},\r
135                         [&]{set_volume(src_frame, 256-volume);}\r
136                 );\r
137                 \r
138                 if(info_.type == transition::mix)\r
139                         dest_frame->alpha(alpha);               \r
140                 else if(info_.type == transition::slide)\r
141                 {       \r
142                         if(info_.direction == transition_direction::from_left)                  \r
143                                 dest_frame->translate(-1.0+alpha, 0.0);                 \r
144                         else if(info_.direction == transition_direction::from_right)\r
145                                 dest_frame->translate(1.0-alpha, 0.0);          \r
146                 }\r
147                 else if(info_.type == transition::push)\r
148                 {\r
149                         if(info_.direction == transition_direction::from_left)          \r
150                         {\r
151                                 dest_frame->translate(-1.0+alpha, 0.0);\r
152                                 if(src_frame)\r
153                                         src_frame->translate(0.0+alpha, 0.0);\r
154                         }\r
155                         else if(info_.direction == transition_direction::from_right)\r
156                         {\r
157                                 dest_frame->translate(1.0-alpha, 0.0);\r
158                                 if(src_frame)\r
159                                         src_frame->translate(0.0-alpha, 0.0);\r
160                         }\r
161                 }\r
162                 else if(info_.type == transition::wipe)\r
163                 {\r
164                         if(info_.direction == transition_direction::from_left)          \r
165                         {\r
166                                 dest_frame->translate(-1.0+alpha, 0.0);\r
167                                 dest_frame->texcoords(-1.0+alpha, 1.0, alpha, 0.0);\r
168                         }\r
169                         else if(info_.direction == transition_direction::from_right)\r
170                         {\r
171                                 dest_frame->translate(1.0-alpha, 0.0);\r
172                                 dest_frame->texcoords(1.0-alpha, 1.0, 2.0-alpha, 0.0);\r
173                         }\r
174                 }\r
175                                                 \r
176                 auto composite = std::make_shared<composite_frame>();\r
177                 if(src_frame)\r
178                         composite->add(src_frame);\r
179                 composite->add(dest_frame);\r
180                 return composite;\r
181         }\r
182                 \r
183         void initialize(const frame_processor_device_ptr& frame_processor)\r
184         {\r
185                 dest_producer_->initialize(frame_processor);\r
186                 frame_processor_ = frame_processor;\r
187         }\r
188         \r
189         frame_producer_ptr                      source_producer_;\r
190         frame_producer_ptr                      dest_producer_;\r
191         \r
192         unsigned short                          current_frame_;\r
193         \r
194         const transition_info           info_;\r
195         frame_processor_device_ptr      frame_processor_;\r
196 };\r
197 \r
198 transition_producer::transition_producer(const frame_producer_ptr& dest, const transition_info& info) \r
199         : impl_(new implementation(dest, info)){}\r
200 frame_ptr transition_producer::render_frame(){return impl_->render_frame();}\r
201 frame_producer_ptr transition_producer::get_following_producer() const{return impl_->get_following_producer();}\r
202 void transition_producer::set_leading_producer(const frame_producer_ptr& producer) { impl_->set_leading_producer(producer); }\r
203 void transition_producer::initialize(const frame_processor_device_ptr& frame_processor) { impl_->initialize(frame_processor);}\r
204 \r
205 }}\r
206 \r