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2.0.0.2: Mayor solution reconfiguration.
[casparcg] / modules / decklink / consumer / decklink_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 "decklink_consumer.h"\r
24 \r
25 #include "../util/util.h"\r
26 \r
27 #include "../interop/DeckLinkAPI_h.h"\r
28 \r
29 #include <core/video_format.h>\r
30 \r
31 #include <mixer/frame/read_frame.h>\r
32 \r
33 #include <common/concurrency/executor.h>\r
34 #include <common/diagnostics/graph.h>\r
35 #include <common/exception/exceptions.h>\r
36 #include <common/utility/timer.h>\r
37 \r
38 #include <tbb/concurrent_queue.h>\r
39 \r
40 #include <boost/circular_buffer.hpp>\r
41 \r
42 #include <array>\r
43 \r
44 #pragma warning(push)\r
45 #pragma warning(disable : 4996)\r
46 \r
47         #include <atlbase.h>\r
48 \r
49         #include <atlcom.h>\r
50         #include <atlhost.h>\r
51 \r
52 #pragma warning(push)\r
53 \r
54 namespace caspar { \r
55         \r
56 struct decklink_output : public IDeckLinkVideoOutputCallback, public IDeckLinkAudioOutputCallback, boost::noncopyable\r
57 {               \r
58         struct co_init\r
59         {\r
60                 co_init(){CoInitialize(nullptr);}\r
61                 ~co_init(){CoUninitialize();}\r
62         } co_;\r
63         \r
64         const printer   parent_printer_;\r
65         std::wstring    model_name_;\r
66         const size_t    device_index_;\r
67 \r
68         std::shared_ptr<diagnostics::graph> graph_;\r
69         timer perf_timer_;\r
70 \r
71         std::array<std::pair<void*, CComPtr<IDeckLinkMutableVideoFrame>>, 3> reserved_frames_;\r
72         boost::circular_buffer<std::vector<short>> audio_container_;\r
73         \r
74         const bool              embed_audio_;\r
75         const bool              internal_key;\r
76 \r
77         CComPtr<IDeckLink>                      decklink_;\r
78         CComQIPtr<IDeckLinkOutput>      output_;\r
79         CComQIPtr<IDeckLinkKeyer>       keyer_;\r
80         \r
81         core::video_format_desc format_desc_;\r
82 \r
83         BMDTimeScale frame_time_scale_;\r
84         BMDTimeValue frame_duration_;\r
85         unsigned long frames_scheduled_;\r
86         unsigned long audio_scheduled_;\r
87         \r
88         tbb::concurrent_bounded_queue<safe_ptr<const core::read_frame>> video_frame_buffer_;\r
89         tbb::concurrent_bounded_queue<safe_ptr<const core::read_frame>> audio_frame_buffer_;\r
90 \r
91 public:\r
92         decklink_output(const core::video_format_desc& format_desc, const printer& parent_printer, size_t device_index, bool embed_audio, bool internalKey) \r
93                 : parent_printer_(parent_printer)\r
94                 , model_name_(L"DECKLINK")\r
95                 , device_index_(device_index)\r
96                 , audio_container_(5)\r
97                 , embed_audio_(embed_audio)\r
98                 , internal_key(internalKey)\r
99                 , frames_scheduled_(0)\r
100                 , audio_scheduled_(0)\r
101                 , format_desc_(format_desc)\r
102         {\r
103                 format_desc_ = format_desc;\r
104                 CComPtr<IDeckLinkIterator> pDecklinkIterator;\r
105                 if(FAILED(pDecklinkIterator.CoCreateInstance(CLSID_CDeckLinkIterator)))\r
106                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " No Decklink drivers installed."));\r
107                 \r
108                 size_t n = 0;\r
109                 while(n < device_index_ && pDecklinkIterator->Next(&decklink_) == S_OK){++n;}   \r
110 \r
111                 if(n != device_index_ || !decklink_)\r
112                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Decklink card not found.") << arg_name_info("device_index") << arg_value_info(boost::lexical_cast<std::string>(device_index_)));\r
113 \r
114                 output_ = decklink_;\r
115                 keyer_ = decklink_;\r
116 \r
117                 BSTR pModelName;\r
118                 decklink_->GetModelName(&pModelName);\r
119                 model_name_ = std::wstring(pModelName);\r
120                                 \r
121                 graph_ = diagnostics::create_graph(narrow(print()));\r
122                 graph_->add_guide("tick-time", 0.5);\r
123                 graph_->set_color("tick-time", diagnostics::color(0.1f, 0.7f, 0.8f));\r
124                 \r
125                 auto display_mode = get_display_mode(output_.p, format_desc_.format);\r
126                 if(display_mode == nullptr) \r
127                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Card does not support requested videoformat."));\r
128                 \r
129                 display_mode->GetFrameRate(&frame_duration_, &frame_time_scale_);\r
130 \r
131                 BMDDisplayModeSupport displayModeSupport;\r
132                 if(FAILED(output_->DoesSupportVideoMode(display_mode->GetDisplayMode(), bmdFormat8BitBGRA, &displayModeSupport)))\r
133                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Card does not support requested videoformat."));\r
134                 \r
135                 if(embed_audio_)\r
136                 {\r
137                         if(FAILED(output_->EnableAudioOutput(bmdAudioSampleRate48kHz, bmdAudioSampleType16bitInteger, 2, bmdAudioOutputStreamTimestamped)))\r
138                                 BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Could not enable audio output."));\r
139                                 \r
140                         if(FAILED(output_->SetAudioCallback(this)))\r
141                                 BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Could not set audio callback."));\r
142                 }\r
143 \r
144                 if(FAILED(output_->EnableVideoOutput(display_mode->GetDisplayMode(), bmdVideoOutputFlagDefault))) \r
145                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Could not enable video output."));\r
146 \r
147                 if(FAILED(output_->SetScheduledFrameCompletionCallback(this)))\r
148                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Failed to set playback completion callback."));\r
149                         \r
150                 if(internal_key) \r
151                 {\r
152                         if(FAILED(keyer_->Enable(FALSE)))                       \r
153                                 CASPAR_LOG(error) << print() << L" Failed to enable internal keyer.";                   \r
154                         else if(FAILED(keyer_->SetLevel(255)))                  \r
155                                 CASPAR_LOG(error) << print() << L" Failed to set key-level to max.";\r
156                         else\r
157                                 CASPAR_LOG(info) << print() << L" Successfully configured internal keyer.";             \r
158                 }\r
159                 else\r
160                 {\r
161                         if(FAILED(keyer_->Enable(TRUE)))                        \r
162                                 CASPAR_LOG(error) << print() << L" Failed to enable external keyer.";   \r
163                         else\r
164                                 CASPAR_LOG(info) << print() << L" Successfully configured external keyer.";                     \r
165                 }\r
166                 \r
167                 for(size_t n = 0; n < reserved_frames_.size(); ++n)\r
168                 {\r
169                         if(FAILED(output_->CreateVideoFrame(format_desc_.width, format_desc_.height, format_desc_.size/format_desc_.height, bmdFormat8BitBGRA, bmdFrameFlagDefault, &reserved_frames_[n].second)))\r
170                                 BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Failed to create frame."));\r
171 \r
172                         if(FAILED(reserved_frames_[n].second->GetBytes(&reserved_frames_[n].first)))\r
173                                 BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Failed to get frame bytes."));\r
174                 }\r
175                                         \r
176                 auto buffer_size = static_cast<size_t>(frame_time_scale_/frame_duration_)/4;\r
177                 for(size_t n = 0; n < buffer_size; ++n)\r
178                         schedule_next_video(safe_ptr<const core::read_frame>());\r
179 \r
180                 video_frame_buffer_.set_capacity(buffer_size);\r
181                 audio_frame_buffer_.set_capacity(buffer_size);\r
182                 for(size_t n = 0; n < std::max<size_t>(2, buffer_size-2); ++n)\r
183                 {\r
184                         video_frame_buffer_.try_push(safe_ptr<const core::read_frame>());\r
185                         if(embed_audio_)\r
186                                 audio_frame_buffer_.try_push(safe_ptr<const core::read_frame>());\r
187                 }\r
188                 \r
189                 if(FAILED(output_->StartScheduledPlayback(0, frame_time_scale_, 1.0))) \r
190                         BOOST_THROW_EXCEPTION(caspar_exception() << msg_info(narrow(print()) + " Failed to schedule playback."));\r
191                 \r
192                 CASPAR_LOG(info) << print() << L" Successfully initialized for " << format_desc_.name;  \r
193         }\r
194 \r
195         ~decklink_output()\r
196         {                       \r
197                 if(output_ != nullptr) \r
198                 {\r
199                         output_->StopScheduledPlayback(0, nullptr, 0);\r
200                         if(embed_audio_)\r
201                                 output_->DisableAudioOutput();\r
202                         output_->DisableVideoOutput();\r
203                 }\r
204                 CASPAR_LOG(info) << print() << L" Shutting down.";      \r
205         }\r
206                         \r
207         virtual HRESULT STDMETHODCALLTYPE       QueryInterface (REFIID, LPVOID*)        {return E_NOINTERFACE;}\r
208         virtual ULONG STDMETHODCALLTYPE         AddRef ()                                                       {return 1;}\r
209         virtual ULONG STDMETHODCALLTYPE         Release ()                                                      {return 1;}\r
210         \r
211         virtual HRESULT STDMETHODCALLTYPE ScheduledFrameCompleted (IDeckLinkVideoFrame* /*completedFrame*/, BMDOutputFrameCompletionResult /*result*/)\r
212         {\r
213                 safe_ptr<const core::read_frame> frame;         \r
214                 video_frame_buffer_.pop(frame);         \r
215                 schedule_next_video(frame);\r
216                 return S_OK;\r
217         }\r
218 \r
219         virtual HRESULT STDMETHODCALLTYPE ScheduledPlaybackHasStopped (void)\r
220         {\r
221                 return S_OK;\r
222         }\r
223                 \r
224         virtual HRESULT STDMETHODCALLTYPE RenderAudioSamples (BOOL /*preroll*/)\r
225         {\r
226                 safe_ptr<const core::read_frame> frame;\r
227                 audio_frame_buffer_.pop(frame);\r
228                 schedule_next_audio(frame);\r
229                 return S_OK;\r
230         }\r
231 \r
232         void schedule_next_audio(const safe_ptr<const core::read_frame>& frame)\r
233         {\r
234                 static std::vector<short> silence(48000, 0);\r
235 \r
236                 int audio_samples = static_cast<size_t>(48000.0 / format_desc_.fps);\r
237 \r
238                 auto frame_audio_data = frame->audio_data().empty() ? silence.data() : const_cast<short*>(frame->audio_data().begin());\r
239 \r
240                 audio_container_.push_back(std::vector<short>(frame_audio_data, frame_audio_data+audio_samples*2));\r
241 \r
242                 if(FAILED(output_->ScheduleAudioSamples(audio_container_.back().data(), audio_samples, (audio_scheduled_++) * audio_samples, 48000, nullptr)))\r
243                         CASPAR_LOG(error) << print() << L" Failed to schedule audio.";\r
244         }\r
245                         \r
246         void schedule_next_video(const safe_ptr<const core::read_frame>& frame)\r
247         {\r
248                 if(!frame->image_data().empty())\r
249                         std::copy(frame->image_data().begin(), frame->image_data().end(), static_cast<char*>(reserved_frames_.front().first));\r
250                 else\r
251                         std::fill_n(static_cast<int*>(reserved_frames_.front().first), 0, format_desc_.size/4);\r
252 \r
253                 if(FAILED(output_->ScheduleVideoFrame(reserved_frames_.front().second, (frames_scheduled_++) * frame_duration_, frame_duration_, frame_time_scale_)))\r
254                         CASPAR_LOG(error) << print() << L" Failed to schedule video.";\r
255 \r
256                 std::rotate(reserved_frames_.begin(), reserved_frames_.begin() + 1, reserved_frames_.end());\r
257                 graph_->update_value("tick-time", static_cast<float>(perf_timer_.elapsed()/format_desc_.interval*0.5));\r
258                 perf_timer_.reset();\r
259         }\r
260 \r
261         void send(const safe_ptr<const core::read_frame>& frame)\r
262         {\r
263                 video_frame_buffer_.push(frame);\r
264                 if(embed_audio_)\r
265                         audio_frame_buffer_.push(frame);\r
266         }\r
267 \r
268         std::wstring print() const\r
269         {\r
270                 return (parent_printer_ ? parent_printer_() + L"/" : L"") + model_name_ + L" [" + boost::lexical_cast<std::wstring>(device_index_) + L"]";\r
271         }\r
272 };\r
273 \r
274 struct decklink_consumer::implementation\r
275 {\r
276         std::unique_ptr<decklink_output> input_;\r
277         size_t device_index_;\r
278         bool embed_audio_;\r
279         bool internal_key_;\r
280 \r
281         executor executor_;\r
282 public:\r
283 \r
284         implementation(size_t device_index, bool embed_audio, bool internal_key)\r
285                 : device_index_(device_index)\r
286                 , embed_audio_(embed_audio)\r
287                 , internal_key_(internal_key)\r
288                 , executor_(L"DECKLINK[" + boost::lexical_cast<std::wstring>(device_index) + L"]")\r
289         {\r
290                 executor_.start();\r
291         }\r
292 \r
293         ~implementation()\r
294         {\r
295                 executor_.invoke([&]\r
296                 {\r
297                         input_ = nullptr;\r
298                 });\r
299         }\r
300 \r
301         void initialize(const core::video_format_desc& format_desc, const printer& parent_printer)\r
302         {\r
303                 executor_.invoke([&]\r
304                 {\r
305                         input_.reset(new decklink_output(format_desc, parent_printer, device_index_, embed_audio_, internal_key_));\r
306                 });\r
307         }\r
308         \r
309         void send(const safe_ptr<const core::read_frame>& frame)\r
310         {\r
311                 input_->send(frame);\r
312         }\r
313 \r
314         size_t buffer_depth() const\r
315         {\r
316                 return 1;\r
317         }\r
318 \r
319         std::wstring print() const\r
320         {\r
321                 return input_->print();\r
322         }\r
323 };\r
324 \r
325 decklink_consumer::decklink_consumer(size_t device_index, bool embed_audio, bool internalKey) : impl_(new implementation(device_index, embed_audio, internalKey)){}\r
326 decklink_consumer::decklink_consumer(decklink_consumer&& other) : impl_(std::move(other.impl_)){}\r
327 void decklink_consumer::initialize(const core::video_format_desc& format_desc, const printer& parent_printer){impl_->initialize(format_desc, parent_printer);}\r
328 void decklink_consumer::send(const safe_ptr<const core::read_frame>& frame){impl_->send(frame);}\r
329 size_t decklink_consumer::buffer_depth() const{return impl_->buffer_depth();}\r
330 std::wstring decklink_consumer::print() const{return impl_->print();}\r
331         \r
332 safe_ptr<core::frame_consumer> create_decklink_consumer(const std::vector<std::wstring>& params)\r
333 {\r
334         if(params.size() < 1 || params[0] != L"DECKLINK")\r
335                 return core::frame_consumer::empty();\r
336         \r
337         int device_index = 1;\r
338         bool embed_audio = false;\r
339         bool internal_key = false;\r
340 \r
341         if(params.size() > 1) \r
342                 device_index = lexical_cast_or_default<int>(params[2], device_index);\r
343 \r
344         if(params.size() > 2)\r
345                 embed_audio = lexical_cast_or_default<bool>(params[3], embed_audio);\r
346         \r
347         if(params.size() > 3) \r
348                 internal_key = lexical_cast_or_default<bool>(params[4], internal_key);\r
349 \r
350         return make_safe<decklink_consumer>(device_index, embed_audio, internal_key);\r
351 }\r
352 \r
353 }