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[casparcg] / modules / bluefish / consumer / bluefish_consumer.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 "bluefish_consumer.h"\r
24 #include "../util/blue_velvet.h"\r
25 #include "../util/memory.h"\r
26 \r
27 #include <core/video_format.h>\r
28 #include <core/mixer/read_frame.h>\r
29 \r
30 #include <common/concurrency/executor.h>\r
31 #include <common/diagnostics/graph.h>\r
32 #include <common/memory/memclr.h>\r
33 #include <common/memory/memcpy.h>\r
34 #include <common/memory/memshfl.h>\r
35 #include <common/utility/timer.h>\r
36 \r
37 #include <core/consumer/frame_consumer.h>\r
38 #include <core/mixer/audio/audio_util.h>\r
39 \r
40 #include <tbb/concurrent_queue.h>\r
41 \r
42 #include <boost/timer.hpp>\r
43 #include <boost/range/algorithm.hpp>\r
44 #include <boost/property_tree/ptree.hpp>\r
45 \r
46 #include <memory>\r
47 #include <array>\r
48 \r
49 namespace caspar { namespace bluefish { \r
50                         \r
51 struct bluefish_consumer : boost::noncopyable\r
52 {\r
53         safe_ptr<CBlueVelvet4>                          blue_;\r
54         const unsigned int                                      device_index_;\r
55         const core::video_format_desc           format_desc_;\r
56         const int                                                       channel_index_;\r
57 \r
58         const std::wstring                                      model_name_;\r
59 \r
60         safe_ptr<diagnostics::graph>            graph_;\r
61         boost::timer                                            frame_timer_;\r
62         boost::timer                                            tick_timer_;\r
63         boost::timer                                            sync_timer_;    \r
64                         \r
65         unsigned int                                            vid_fmt_;\r
66 \r
67         std::array<blue_dma_buffer_ptr, 4>      reserved_frames_;       \r
68         tbb::concurrent_bounded_queue<std::shared_ptr<core::read_frame>> frame_buffer_;\r
69         \r
70         const bool                                                      embedded_audio_;\r
71         const bool                                                      key_only_;\r
72                 \r
73         executor                                                        executor_;\r
74 public:\r
75         bluefish_consumer(const core::video_format_desc& format_desc, unsigned int device_index, bool embedded_audio, bool key_only, int channel_index) \r
76                 : blue_(create_blue(device_index))\r
77                 , device_index_(device_index)\r
78                 , format_desc_(format_desc) \r
79                 , channel_index_(channel_index)\r
80                 , model_name_(get_card_desc(*blue_))\r
81                 , vid_fmt_(get_video_mode(*blue_, format_desc))\r
82                 , embedded_audio_(embedded_audio)\r
83                 , key_only_(key_only)\r
84                 , executor_(print())\r
85         {\r
86                 executor_.set_capacity(1);\r
87 \r
88                 graph_->add_guide("tick-time", 0.5);\r
89                 graph_->set_color("tick-time", diagnostics::color(0.0f, 0.6f, 0.9f));   \r
90                 graph_->add_guide("frame-time", 0.5f);  \r
91                 graph_->set_color("sync-time", diagnostics::color(1.0f, 0.0f, 0.0f));\r
92                 graph_->set_color("frame-time", diagnostics::color(0.5f, 1.0f, 0.2f));\r
93                 graph_->set_text(print());\r
94                 diagnostics::register_graph(graph_);\r
95                         \r
96                 //Setting output Video mode\r
97                 if(BLUE_FAIL(set_card_property(blue_, VIDEO_MODE, vid_fmt_))) \r
98                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Failed to set videomode."));\r
99 \r
100                 //Select Update Mode for output\r
101                 if(BLUE_FAIL(set_card_property(blue_, VIDEO_UPDATE_TYPE, UPD_FMT_FRAME))) \r
102                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Failed to set update type."));\r
103         \r
104                 disable_video_output();\r
105 \r
106                 //Enable dual link output\r
107                 if(BLUE_FAIL(set_card_property(blue_, VIDEO_DUAL_LINK_OUTPUT, 1)))\r
108                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Failed to enable dual link."));\r
109 \r
110                 if(BLUE_FAIL(set_card_property(blue_, VIDEO_DUAL_LINK_OUTPUT_SIGNAL_FORMAT_TYPE, Signal_FormatType_4224)))\r
111                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Failed to set dual link format type to 4:2:2:4."));\r
112                         \r
113                 //Select output memory format\r
114                 if(BLUE_FAIL(set_card_property(blue_, VIDEO_MEMORY_FORMAT, MEM_FMT_ARGB_PC))) \r
115                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Failed to set memory format."));\r
116                 \r
117                 //Select image orientation\r
118                 if(BLUE_FAIL(set_card_property(blue_, VIDEO_IMAGE_ORIENTATION, ImageOrientation_Normal)))\r
119                         CASPAR_LOG(warning) << print() << TEXT(" Failed to set image orientation to normal.");  \r
120 \r
121                 // Select data range\r
122                 if(BLUE_FAIL(set_card_property(blue_, VIDEO_RGB_DATA_RANGE, CGR_RANGE))) \r
123                         CASPAR_LOG(warning) << print() << TEXT(" Failed to set RGB data range to CGR.");        \r
124                 \r
125                 if(BLUE_FAIL(set_card_property(blue_, VIDEO_PREDEFINED_COLOR_MATRIX, vid_fmt_ == VID_FMT_PAL ? MATRIX_601_CGR : MATRIX_709_CGR)))\r
126                         CASPAR_LOG(warning) << print() << TEXT(" Failed to set colormatrix to ") << (vid_fmt_ == VID_FMT_PAL ? TEXT("601 CGR") : TEXT("709 CGR")) << TEXT(".");\r
127 \r
128                 if(!embedded_audio_)\r
129                 {\r
130                         if(BLUE_FAIL(set_card_property(blue_, EMBEDEDDED_AUDIO_OUTPUT, 0))) \r
131                                 CASPAR_LOG(warning) << TEXT("BLUECARD ERROR: Failed to disable embedded audio.");                       \r
132                         CASPAR_LOG(info) << print() << TEXT(" Disabled embedded-audio.");\r
133                 }\r
134                 else\r
135                 {\r
136                         if(BLUE_FAIL(set_card_property(blue_, EMBEDEDDED_AUDIO_OUTPUT, blue_emb_audio_enable | blue_emb_audio_group1_enable))) \r
137                                 CASPAR_LOG(warning) << print() << TEXT(" Failed to enable embedded audio.");                    \r
138                         CASPAR_LOG(info) << print() << TEXT(" Enabled embedded-audio.");\r
139                 }\r
140                 \r
141                 if (blue_->has_output_key()) \r
142                 {\r
143                         int dummy = TRUE; int v4444 = FALSE; int invert = FALSE; int white = FALSE;\r
144                         blue_->set_output_key(dummy, v4444, invert, white);\r
145                 }\r
146 \r
147                 if(blue_->GetHDCardType(device_index_) != CRD_HD_INVALID) \r
148                         blue_->Set_DownConverterSignalType(vid_fmt_ == VID_FMT_PAL ? SD_SDI : HD_SDI);  \r
149         \r
150                 if(BLUE_FAIL(set_card_property(blue_, VIDEO_OUTPUT_ENGINE, VIDEO_ENGINE_FRAMESTORE))) \r
151                         CASPAR_LOG(warning) << print() << TEXT(" Failed to set video engine."); \r
152                 \r
153                 enable_video_output();\r
154                                                 \r
155                 int n = 0;\r
156                 boost::range::generate(reserved_frames_, [&]{return std::make_shared<blue_dma_buffer>(format_desc_.size, n++);});\r
157         }\r
158 \r
159         ~bluefish_consumer()\r
160         {\r
161                 try\r
162                 {\r
163                         executor_.invoke([&]\r
164                         {\r
165                                 disable_video_output();\r
166                                 blue_->device_detach();         \r
167                         });\r
168                 }\r
169                 catch(...)\r
170                 {\r
171                         CASPAR_LOG_CURRENT_EXCEPTION();\r
172                 }\r
173         }\r
174         \r
175         void enable_video_output()\r
176         {\r
177                 if(!BLUE_PASS(set_card_property(blue_, VIDEO_BLACKGENERATOR, 0)))\r
178                         CASPAR_LOG(error) << print() << TEXT(" Failed to disable video output.");       \r
179         }\r
180 \r
181         void disable_video_output()\r
182         {\r
183                 blue_->video_playback_stop(0,0);\r
184                 if(!BLUE_PASS(set_card_property(blue_, VIDEO_BLACKGENERATOR, 1)))\r
185                         CASPAR_LOG(error)<< print() << TEXT(" Failed to disable video output.");                \r
186         }\r
187         \r
188         void send(const safe_ptr<core::read_frame>& frame)\r
189         {                                       \r
190                 executor_.begin_invoke([=]\r
191                 {\r
192                         try\r
193                         {       \r
194                                 display_frame(frame);                           \r
195                                 graph_->update_value("tick-time", static_cast<float>(tick_timer_.elapsed()*format_desc_.fps*0.5));\r
196                                 tick_timer_.restart();\r
197                         }\r
198                         catch(...)\r
199                         {\r
200                                 CASPAR_LOG_CURRENT_EXCEPTION();\r
201                         }\r
202                 });\r
203         }\r
204 \r
205         void display_frame(const safe_ptr<core::read_frame>& frame)\r
206         {\r
207                 // Sync\r
208 \r
209                 sync_timer_.restart();\r
210                 unsigned long n_field = 0;\r
211                 blue_->wait_output_video_synch(UPD_FMT_FRAME, n_field);\r
212                 graph_->update_value("sync-time", sync_timer_.elapsed()*format_desc_.fps*0.5);\r
213                 \r
214                 frame_timer_.restart();         \r
215 \r
216                 // Copy to local buffers\r
217                 \r
218                 if(!frame->image_data().empty())\r
219                 {\r
220                         if(key_only_)                                           \r
221                                 fast_memshfl(reserved_frames_.front()->image_data(), std::begin(frame->image_data()), frame->image_data().size(), 0x0F0F0F0F, 0x0B0B0B0B, 0x07070707, 0x03030303);\r
222                         else\r
223                                 fast_memcpy(reserved_frames_.front()->image_data(), std::begin(frame->image_data()), frame->image_data().size());\r
224                 }\r
225                 else\r
226                         fast_memclr(reserved_frames_.front()->image_data(), reserved_frames_.front()->image_size());\r
227                                                                 \r
228 \r
229                 // Send and display\r
230 \r
231                 if(embedded_audio_)\r
232                 {               \r
233                         auto frame_audio = core::audio_32_to_24(frame->audio_data());                   \r
234                         encode_hanc(reinterpret_cast<BLUE_UINT32*>(reserved_frames_.front()->hanc_data()), frame_audio.data(), frame->audio_data().size()/format_desc_.audio_channels, format_desc_.audio_channels);\r
235                                                                 \r
236                         blue_->system_buffer_write_async(const_cast<uint8_t*>(reserved_frames_.front()->image_data()), \r
237                                                                                         reserved_frames_.front()->image_size(), \r
238                                                                                         nullptr, \r
239                                                                                         BlueImage_HANC_DMABuffer(reserved_frames_.front()->id(), BLUE_DATA_IMAGE));\r
240 \r
241                         blue_->system_buffer_write_async(reserved_frames_.front()->hanc_data(),\r
242                                                                                         reserved_frames_.front()->hanc_size(), \r
243                                                                                         nullptr,                 \r
244                                                                                         BlueImage_HANC_DMABuffer(reserved_frames_.front()->id(), BLUE_DATA_HANC));\r
245 \r
246                         if(BLUE_FAIL(blue_->render_buffer_update(BlueBuffer_Image_HANC(reserved_frames_.front()->id()))))\r
247                                 CASPAR_LOG(warning) << print() << TEXT(" render_buffer_update failed.");\r
248                 }\r
249                 else\r
250                 {\r
251                         blue_->system_buffer_write_async(const_cast<uint8_t*>(reserved_frames_.front()->image_data()),\r
252                                                                                         reserved_frames_.front()->image_size(), \r
253                                                                                         nullptr,                 \r
254                                                                                         BlueImage_DMABuffer(reserved_frames_.front()->id(), BLUE_DATA_IMAGE));\r
255                         \r
256                         if(BLUE_FAIL(blue_->render_buffer_update(BlueBuffer_Image(reserved_frames_.front()->id()))))\r
257                                 CASPAR_LOG(warning) << print() << TEXT(" render_buffer_update failed.");\r
258                 }\r
259 \r
260                 boost::range::rotate(reserved_frames_, std::begin(reserved_frames_)+1);\r
261                 \r
262                 graph_->update_value("frame-time", static_cast<float>(frame_timer_.elapsed()*format_desc_.fps*0.5));\r
263         }\r
264 \r
265         void encode_hanc(BLUE_UINT32* hanc_data, void* audio_data, size_t audio_samples, size_t audio_nchannels)\r
266         {       \r
267                 const auto sample_type = AUDIO_CHANNEL_24BIT | AUDIO_CHANNEL_LITTLEENDIAN;\r
268                 const auto emb_audio_flag = blue_emb_audio_enable | blue_emb_audio_group1_enable;\r
269                 \r
270                 hanc_stream_info_struct hanc_stream_info;\r
271                 memset(&hanc_stream_info, 0, sizeof(hanc_stream_info));\r
272                 \r
273                 hanc_stream_info.AudioDBNArray[0] = -1;\r
274                 hanc_stream_info.AudioDBNArray[1] = -1;\r
275                 hanc_stream_info.AudioDBNArray[2] = -1;\r
276                 hanc_stream_info.AudioDBNArray[3] = -1;\r
277                 hanc_stream_info.hanc_data_ptr    = hanc_data;\r
278                 hanc_stream_info.video_mode               = vid_fmt_;           \r
279                 \r
280                 if (!is_epoch_card(*blue_))\r
281                         encode_hanc_frame(&hanc_stream_info, audio_data, audio_nchannels, audio_samples, sample_type, emb_audio_flag);  \r
282                 else\r
283                         encode_hanc_frame_ex(blue_->has_video_cardtype(), &hanc_stream_info, audio_data, audio_nchannels, audio_samples, sample_type, emb_audio_flag);\r
284         }\r
285         \r
286         std::wstring print() const\r
287         {\r
288                 return model_name_ + L" [" + boost::lexical_cast<std::wstring>(channel_index_) + L"|device " + \r
289                         boost::lexical_cast<std::wstring>(device_index_) + L"|" +  format_desc_.name + L"]";\r
290         }\r
291 };\r
292 \r
293 struct bluefish_consumer_proxy : public core::frame_consumer\r
294 {\r
295         std::unique_ptr<bluefish_consumer>      consumer_;\r
296         const size_t                                            device_index_;\r
297         const bool                                                      embedded_audio_;\r
298         const bool                                                      key_only_;\r
299         std::vector<size_t>                                     audio_cadence_;\r
300 public:\r
301 \r
302         bluefish_consumer_proxy(size_t device_index, bool embedded_audio, bool key_only)\r
303                 : device_index_(device_index)\r
304                 , embedded_audio_(embedded_audio)\r
305                 , key_only_(key_only)\r
306         {\r
307         }\r
308         \r
309         ~bluefish_consumer_proxy()\r
310         {\r
311                 if(consumer_)\r
312                 {\r
313                         auto str = print();\r
314                         consumer_.reset();\r
315                         CASPAR_LOG(info) << str << L" Successfully Uninitialized.";     \r
316                 }\r
317         }\r
318 \r
319         // frame_consumer\r
320         \r
321         virtual void initialize(const core::video_format_desc& format_desc, int channel_index) override\r
322         {\r
323                 consumer_.reset(new bluefish_consumer(format_desc, device_index_, embedded_audio_, key_only_, channel_index));\r
324                 audio_cadence_ = format_desc.audio_cadence;\r
325                 CASPAR_LOG(info) << print() << L" Successfully Initialized.";   \r
326         }\r
327         \r
328         virtual bool send(const safe_ptr<core::read_frame>& frame) override\r
329         {\r
330                 CASPAR_VERIFY(audio_cadence_.front() == static_cast<size_t>(frame->audio_data().size()));\r
331                 boost::range::rotate(audio_cadence_, std::begin(audio_cadence_)+1);\r
332 \r
333                 consumer_->send(frame);\r
334                 return true;\r
335         }\r
336                 \r
337         virtual std::wstring print() const override\r
338         {\r
339                 return consumer_ ? consumer_->print() : L"[bluefish_consumer]";\r
340         }\r
341 \r
342         virtual boost::property_tree::wptree info() const override\r
343         {\r
344                 boost::property_tree::wptree info;\r
345                 info.add(L"type", L"bluefish-consumer");\r
346                 info.add(L"key-only", key_only_);\r
347                 info.add(L"device", device_index_);\r
348                 info.add(L"embedded-audio", embedded_audio_);\r
349                 return info;\r
350         }\r
351 \r
352         size_t buffer_depth() const override\r
353         {\r
354                 return 1;\r
355         }\r
356         \r
357         virtual int index() const override\r
358         {\r
359                 return 400 + device_index_;\r
360         }\r
361 };      \r
362 \r
363 safe_ptr<core::frame_consumer> create_consumer(const std::vector<std::wstring>& params)\r
364 {\r
365         if(params.size() < 1 || params[0] != L"BLUEFISH")\r
366                 return core::frame_consumer::empty();\r
367                 \r
368         const auto device_index = params.size() > 1 ? lexical_cast_or_default<int>(params[1], 1) : 1;\r
369 \r
370         const auto embedded_audio = std::find(params.begin(), params.end(), L"EMBEDDED_AUDIO") != params.end();\r
371         const auto key_only               = std::find(params.begin(), params.end(), L"KEY_ONLY")           != params.end();\r
372 \r
373         return make_safe<bluefish_consumer_proxy>(device_index, embedded_audio, key_only);\r
374 }\r
375 \r
376 safe_ptr<core::frame_consumer> create_consumer(const boost::property_tree::ptree& ptree) \r
377 {       \r
378         const auto device_index         = ptree.get("device",             1);\r
379         const auto embedded_audio       = ptree.get("embedded-audio", false);\r
380         const auto key_only                     = ptree.get("key-only",           false);\r
381 \r
382         return make_safe<bluefish_consumer_proxy>(device_index, embedded_audio, key_only);\r
383 }\r
384 \r
385 }}