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[casparcg] / accelerator / cpu / image / image_mixer.cpp
1 /*\r
2 * Copyright (c) 2011 Sveriges Television AB <info@casparcg.com>\r
3 *\r
4 * This file is part of CasparCG (www.casparcg.com).\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 * Author: Robert Nagy, ronag89@gmail.com\r
20 */\r
21 \r
22 #include "../../stdafx.h"\r
23 \r
24 #include "image_mixer.h"\r
25 \r
26 #include "../util/write_frame.h"\r
27 #include "../util/xmm.h"\r
28 \r
29 #include <common/assert.h>\r
30 #include <common/gl/gl_check.h>\r
31 #include <common/concurrency/async.h>\r
32 #include <common/memory/memcpy.h>\r
33 \r
34 #include <core/frame/write_frame.h>\r
35 #include <core/frame/frame_transform.h>\r
36 #include <core/frame/pixel_format.h>\r
37 #include <core/video_format.h>\r
38 \r
39 #include <modules/ffmpeg/producer/util/util.h>\r
40 \r
41 #include <asmlib.h>\r
42 \r
43 #include <gl/glew.h>\r
44 \r
45 #include <tbb/cache_aligned_allocator.h>\r
46 #include <tbb/parallel_for_each.h>\r
47 \r
48 #include <boost/assign.hpp>\r
49 #include <boost/foreach.hpp>\r
50 #include <boost/range.hpp>\r
51 #include <boost/range/algorithm_ext/erase.hpp>\r
52 #include <boost/thread/future.hpp>\r
53 \r
54 #include <intrin.h>\r
55 #include <stdint.h>\r
56 #include <algorithm>\r
57 #include <vector>\r
58 \r
59 #if defined(_MSC_VER)\r
60 #pragma warning (push)\r
61 #pragma warning (disable : 4244)\r
62 #endif\r
63 extern "C" \r
64 {\r
65         #include <libswscale/swscale.h>\r
66         #include <libavcodec/avcodec.h>\r
67         #include <libavformat/avformat.h>\r
68 }\r
69 #if defined(_MSC_VER)\r
70 #pragma warning (pop)\r
71 #endif\r
72 \r
73 namespace caspar { namespace accelerator { namespace cpu {\r
74                 \r
75 struct item\r
76 {\r
77         core::pixel_format_desc                                         pix_desc;\r
78         std::vector<spl::shared_ptr<host_buffer>>       buffers;\r
79         core::frame_transform                                           transform;\r
80 \r
81         item()\r
82                 : pix_desc(core::pixel_format::invalid)\r
83         {\r
84         }\r
85 };\r
86 \r
87 bool operator==(const item& lhs, const item& rhs)\r
88 {\r
89         return lhs.buffers == rhs.buffers && lhs.transform == rhs.transform;\r
90 }\r
91 \r
92 bool operator!=(const item& lhs, const item& rhs)\r
93 {\r
94         return !(lhs == rhs);\r
95 }\r
96         \r
97 inline xmm::s8_x blend(xmm::s8_x d, xmm::s8_x s)\r
98 {       \r
99         using namespace xmm;\r
100                 \r
101         // T(S, D) = S * D[A] + 0x80\r
102         auto aaaa   = s8_x::shuffle(d, s8_x(15, 15, 15, 15, 11, 11, 11, 11, 7, 7, 7, 7, 3, 3, 3, 3));\r
103         d                       = s8_x(u8_x::min(u8_x(d), u8_x(aaaa))); // overflow guard\r
104 \r
105         auto xaxa       = s16_x(aaaa) >> 8;             \r
106                               \r
107         auto t1         = s16_x::multiply_low(s16_x(s) & 0x00FF, xaxa) + 0x80;    \r
108         auto t2         = s16_x::multiply_low(s16_x(s) >> 8    , xaxa) + 0x80;\r
109                 \r
110         // C(S, D) = S + D - (((T >> 8) + T) >> 8);\r
111         auto xyxy       = s8_x(((t1 >> 8) + t1) >> 8);      \r
112         auto yxyx       = s8_x((t2 >> 8) + t2);    \r
113         auto argb   = s8_x::blend(xyxy, yxyx, s8_x(-1, 0, -1, 0));\r
114 \r
115         return s8_x(s) + (d - argb);\r
116 }\r
117         \r
118 template<typename write_tag>\r
119 static void kernel(uint8_t* dest, const uint8_t* source, size_t count, const core::frame_transform& transform)\r
120 {                       \r
121         using namespace xmm;\r
122 \r
123         for(auto n = 0; n < count; n += 32)    \r
124         {\r
125                 auto s0 = s8_x::load(dest+n+0);\r
126                 auto s1 = s8_x::load(dest+n+16);\r
127 \r
128                 auto d0 = s8_x::load(source+n+0);\r
129                 auto d1 = s8_x::load(source+n+16);\r
130                 \r
131                 auto argb0 = blend(d0, s0);\r
132                 auto argb1 = blend(d1, s1);\r
133 \r
134                 s8_x::write(argb0, dest+n+0 , write_tag());\r
135                 s8_x::write(argb1, dest+n+16, write_tag());\r
136         } \r
137 }\r
138 \r
139 class image_renderer\r
140 {\r
141         std::pair<std::vector<item>, boost::shared_future<boost::iterator_range<const uint8_t*>>>               last_image_;\r
142         tbb::concurrent_unordered_map<int, tbb::concurrent_bounded_queue<std::shared_ptr<SwsContext>>>  sws_contexts_;\r
143 public: \r
144         boost::shared_future<boost::iterator_range<const uint8_t*>> operator()(std::vector<item> items, const core::video_format_desc& format_desc)\r
145         {       \r
146                 if(last_image_.first == items && last_image_.second.has_value())\r
147                         return last_image_.second;\r
148 \r
149                 auto image      = render(items, format_desc);\r
150                 last_image_ = std::make_pair(std::move(items), image);\r
151                 return image;\r
152         }\r
153 \r
154 private:\r
155         boost::shared_future<boost::iterator_range<const uint8_t*>> render(std::vector<item> items, const core::video_format_desc& format_desc)\r
156         {\r
157                 convert(items, format_desc.width, format_desc.height);          \r
158                 \r
159                 auto result = spl::make_shared<host_buffer>(format_desc.size, 0);\r
160                 if(format_desc.field_mode != core::field_mode::progressive)\r
161                 {                       \r
162                         draw(items, result->data(), format_desc.width, format_desc.height, core::field_mode::upper);\r
163                         draw(items, result->data(), format_desc.width, format_desc.height, core::field_mode::lower);\r
164                 }\r
165                 else\r
166                 {\r
167                         draw(items, result->data(), format_desc.width, format_desc.height,  core::field_mode::progressive);\r
168                 }\r
169                 \r
170                 return async(launch_policy::deferred, [=]\r
171                 {\r
172                         return boost::iterator_range<const uint8_t*>(result->data(), result->data() + format_desc.size);\r
173                 });             \r
174         }\r
175 \r
176         void draw(std::vector<item> items, uint8_t* dest, int width, int height, core::field_mode field_mode)\r
177         {               \r
178                 BOOST_FOREACH(auto& item, items)\r
179                         item.transform.field_mode &= field_mode;\r
180 \r
181                 boost::remove_erase_if(items, [](item& item){return item.transform.field_mode == core::field_mode::empty;});\r
182 \r
183                 if(items.empty())\r
184                         return;\r
185                 \r
186                 auto start = field_mode == core::field_mode::lower ? 1 : 0;\r
187                 auto step  = field_mode == core::field_mode::progressive ? 1 : 2;\r
188                 \r
189                 // TODO: Add support for fill translations.\r
190                 // TODO: Add support for mask rect.\r
191                 // TODO: Add support for opacity.\r
192                 // TODO: Add support for mix transition.\r
193                 // TODO: Add support for push transition.\r
194                 // TODO: Add support for wipe transition.\r
195                 // TODO: Add support for slide transition.\r
196                 tbb::parallel_for(tbb::blocked_range<int>(0, height/step), [&](const tbb::blocked_range<int>& r)\r
197                 {\r
198                         for(auto n = r.begin(); n != r.end(); ++n)\r
199                         {\r
200                                 auto y = n*step+start;\r
201 \r
202                                 auto it = items.begin();\r
203                                 for(; it != items.end()-1; ++it)                        \r
204                                         kernel<xmm::store_tag>(dest + y*width*4, it->buffers.at(0)->data() + y*width*4, width*4, it->transform);\r
205 \r
206                                 kernel<xmm::stream_tag>(dest + y*width*4, it->buffers.at(0)->data() + y*width*4, width*4, it->transform);\r
207                         }\r
208                 });\r
209         }\r
210         \r
211         void convert(std::vector<item>& items, int width, int height)\r
212         {\r
213                 typedef std::map<std::vector<spl::shared_ptr<host_buffer>>, std::shared_ptr<host_buffer>>       buffer_map_t;\r
214                 typedef std::map<std::vector<spl::shared_ptr<host_buffer>>, core::pixel_format_desc>            pix_desc_map_t;\r
215 \r
216                 buffer_map_t     buffer_map;\r
217                 pix_desc_map_t   pix_desc_map;\r
218                 BOOST_FOREACH(auto& item, items)\r
219                 {\r
220                         buffer_map[item.buffers] = nullptr;\r
221                         pix_desc_map[item.buffers] = item.pix_desc;\r
222                 }\r
223 \r
224                 // TODO: Don't convert buffers multiple times just because they are in different items due to e.g. interlacing.\r
225                 tbb::parallel_for_each(buffer_map.begin(), buffer_map.end(), [&](buffer_map_t::value_type& pair)\r
226                 {\r
227                         auto buffers   = pair.first;\r
228                         auto pix_desc  = pix_desc_map[buffers];\r
229 \r
230                         if(pix_desc.format == core::pixel_format::bgra && \r
231                            pix_desc.planes.at(0).width == width &&\r
232                            pix_desc.planes.at(0).height == height)\r
233                                 return;\r
234 \r
235                         auto input_av_frame = ffmpeg::make_av_frame(buffers, pix_desc);\r
236                                                                 \r
237                         int key = ((input_av_frame->width << 22) & 0xFFC00000) | ((input_av_frame->height << 6) & 0x003FC000) | ((input_av_frame->format << 7) & 0x00007F00);\r
238                                                 \r
239                         auto& pool = sws_contexts_[key];\r
240 \r
241                         std::shared_ptr<SwsContext> sws_context;\r
242                         if(!pool.try_pop(sws_context))\r
243                         {\r
244                                 double param;\r
245                                 sws_context.reset(sws_getContext(input_av_frame->width, input_av_frame->height, static_cast<PixelFormat>(input_av_frame->format), width, height, PIX_FMT_BGRA, SWS_BILINEAR, nullptr, nullptr, &param), sws_freeContext);\r
246                         }\r
247                         \r
248                         if(!sws_context)                                \r
249                                 BOOST_THROW_EXCEPTION(operation_failed() << msg_info("Could not create software scaling context.") << boost::errinfo_api_function("sws_getContext"));                           \r
250                 \r
251                         auto dest = spl::make_shared<host_buffer>(width*height*4);\r
252 \r
253                         {\r
254                                 spl::shared_ptr<AVFrame> av_frame(avcodec_alloc_frame(), av_free);      \r
255                                 avcodec_get_frame_defaults(av_frame.get());                     \r
256                                 avpicture_fill(reinterpret_cast<AVPicture*>(av_frame.get()), dest->data(), PIX_FMT_BGRA, width, height);\r
257                                 \r
258                                 sws_scale(sws_context.get(), input_av_frame->data, input_av_frame->linesize, 0, input_av_frame->height, av_frame->data, av_frame->linesize);                            \r
259                                 pool.push(sws_context);\r
260                         }\r
261 \r
262                         pair.second = dest;\r
263                 });\r
264                 \r
265                 BOOST_FOREACH(auto& item, items)\r
266                 {               \r
267                         item.buffers                    = boost::assign::list_of(spl::make_shared_ptr(buffer_map[item.buffers]));\r
268                         item.pix_desc                   = core::pixel_format_desc(core::pixel_format::bgra);\r
269                         item.pix_desc.planes    = boost::assign::list_of(core::pixel_format_desc::plane(width, height, 4));\r
270                 }\r
271         }\r
272 };\r
273                 \r
274 struct image_mixer::impl : boost::noncopyable\r
275 {       \r
276         image_renderer                                          renderer_;\r
277         std::vector<core::frame_transform>      transform_stack_;\r
278         std::vector<item>                                       items_; // layer/stream/items\r
279 public:\r
280         impl() \r
281                 : transform_stack_(1)   \r
282         {\r
283                 CASPAR_LOG(info) << L"Initialized Streaming SIMD Extensions Accelerated CPU Image Mixer";\r
284         }\r
285 \r
286         void begin_layer(core::blend_mode blend_mode)\r
287         {\r
288         }\r
289                 \r
290         void push(core::frame_transform& transform)\r
291         {\r
292                 transform_stack_.push_back(transform_stack_.back()*transform);\r
293         }\r
294                 \r
295         void visit(core::data_frame& frame2)\r
296         {                       \r
297                 write_frame* frame = dynamic_cast<write_frame*>(&frame2);\r
298                 if(frame == nullptr)\r
299                         return;\r
300 \r
301                 if(frame->get_pixel_format_desc().format == core::pixel_format::invalid)\r
302                         return;\r
303 \r
304                 if(frame->get_buffers().empty())\r
305                         return;\r
306 \r
307                 if(transform_stack_.back().field_mode == core::field_mode::empty)\r
308                         return;\r
309 \r
310                 item item;\r
311                 item.pix_desc                   = frame->get_pixel_format_desc();\r
312                 item.buffers                    = frame->get_buffers();                         \r
313                 item.transform                  = transform_stack_.back();\r
314                 item.transform.volume   = core::frame_transform().volume; // Set volume to default since we don't care about it here.\r
315 \r
316                 items_.push_back(item);\r
317         }\r
318 \r
319         void pop()\r
320         {\r
321                 transform_stack_.pop_back();\r
322         }\r
323 \r
324         void end_layer()\r
325         {               \r
326         }\r
327         \r
328         boost::shared_future<boost::iterator_range<const uint8_t*>> render(const core::video_format_desc& format_desc)\r
329         {\r
330                 return renderer_(std::move(items_), format_desc);\r
331         }\r
332         \r
333         virtual spl::shared_ptr<cpu::write_frame> create_frame(const void* tag, const core::pixel_format_desc& desc)\r
334         {\r
335                 return spl::make_shared<cpu::write_frame>(tag, desc);\r
336         }\r
337 };\r
338 \r
339 image_mixer::image_mixer() : impl_(new impl()){}\r
340 void image_mixer::push(core::frame_transform& transform){impl_->push(transform);}\r
341 void image_mixer::visit(core::data_frame& frame){impl_->visit(frame);}\r
342 void image_mixer::pop(){impl_->pop();}\r
343 boost::shared_future<boost::iterator_range<const uint8_t*>> image_mixer::operator()(const core::video_format_desc& format_desc){return impl_->render(format_desc);}\r
344 void image_mixer::begin_layer(core::blend_mode blend_mode){impl_->begin_layer(blend_mode);}\r
345 void image_mixer::end_layer(){impl_->end_layer();}\r
346 spl::shared_ptr<core::write_frame> image_mixer::create_frame(const void* tag, const core::pixel_format_desc& desc) {return impl_->create_frame(tag, desc);}\r
347 \r
348 }}}