2 * Copyright (c) 2011 Sveriges Television AB <info@casparcg.com>
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4 * This file is part of CasparCG (www.casparcg.com).
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6 * CasparCG is free software: you can redistribute it and/or modify
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7 * it under the terms of the GNU General Public License as published by
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8 * the Free Software Foundation, either version 3 of the License, or
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9 * (at your option) any later version.
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11 * CasparCG is distributed in the hope that it will be useful,
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12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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14 * GNU General Public License for more details.
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16 * You should have received a copy of the GNU General Public License
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17 * along with CasparCG. If not, see <http://www.gnu.org/licenses/>.
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19 * Author: Robert Nagy, ronag89@gmail.com
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22 #include "../../stdafx.h"
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24 #include "transition_producer.h"
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26 #include "../frame_producer.h"
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27 #include "../../frame/draw_frame.h"
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28 #include "../../frame/frame_transform.h"
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29 #include "../../monitor/monitor.h"
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31 #include <tbb/parallel_invoke.h>
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33 namespace caspar { namespace core {
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35 class transition_producer : public frame_producer_impl
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37 monitor::basic_subject event_subject_;
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38 const field_mode mode_;
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41 const transition_info info_;
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43 spl::shared_ptr<frame_producer> dest_producer_;
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44 spl::shared_ptr<frame_producer> source_producer_;
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48 explicit transition_producer(const field_mode& mode, const spl::shared_ptr<frame_producer>& dest, const transition_info& info)
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52 , dest_producer_(dest)
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53 , source_producer_(frame_producer::empty())
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55 dest->subscribe(event_subject_);
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57 CASPAR_LOG(info) << print() << L" Initialized";
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62 void leading_producer(const spl::shared_ptr<frame_producer>& producer) override
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64 source_producer_ = producer;
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67 draw_frame receive_impl() override
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69 if(current_frame_ >= info_.duration)
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71 source_producer_ = core::frame_producer::empty();
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72 return dest_producer_->receive();
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77 auto dest = draw_frame::empty();
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78 auto source = draw_frame::empty();
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80 tbb::parallel_invoke(
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83 dest = dest_producer_->receive();
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84 if(dest == core::draw_frame::late())
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85 dest = dest_producer_->last_frame();
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89 source = source_producer_->receive();
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90 if(source == core::draw_frame::late())
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91 source = source_producer_->last_frame();
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94 event_subject_ << monitor::event("transition/frame") % current_frame_ % info_.duration
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95 << monitor::event("transition/type") % [&]() -> std::string
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97 switch(info_.type.value())
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99 case transition_type::mix: return "mix";
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100 case transition_type::wipe: return "wipe";
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101 case transition_type::slide: return "slide";
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102 case transition_type::push: return "push";
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103 case transition_type::cut: return "cut";
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104 default: return "n/a";
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108 return compose(dest, source);
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111 uint32_t nb_frames() const override
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113 return dest_producer_->nb_frames();
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116 std::wstring print() const override
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118 return L"transition[" + source_producer_->print() + L"=>" + dest_producer_->print() + L"]";
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121 std::wstring name() const override
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123 return L"transition";
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126 boost::property_tree::wptree info() const override
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128 return dest_producer_->info();
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131 boost::unique_future<std::wstring> call(const std::wstring& str) override
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133 return dest_producer_->call(str);
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136 // transition_producer
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138 draw_frame compose(draw_frame dest_frame, draw_frame src_frame)
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140 if(info_.type == transition_type::cut)
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143 const double delta1 = info_.tweener(current_frame_*2-1, 0.0, 1.0, static_cast<double>(info_.duration*2));
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144 const double delta2 = info_.tweener(current_frame_*2, 0.0, 1.0, static_cast<double>(info_.duration*2));
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146 const double dir = info_.direction == transition_direction::from_left ? 1.0 : -1.0;
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148 // For interlaced transitions. Seperate fields into seperate frames which are transitioned accordingly.
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150 src_frame.transform().audio_transform.volume = 1.0-delta2;
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151 auto s_frame1 = src_frame;
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152 auto s_frame2 = src_frame;
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154 dest_frame.transform().audio_transform.volume = delta2;
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155 auto d_frame1 = dest_frame;
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156 auto d_frame2 = dest_frame;
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158 if(info_.type == transition_type::mix)
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160 d_frame1.transform().image_transform.opacity = delta1;
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161 d_frame1.transform().image_transform.is_mix = true;
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162 d_frame2.transform().image_transform.opacity = delta2;
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163 d_frame2.transform().image_transform.is_mix = true;
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165 s_frame1.transform().image_transform.opacity = 1.0-delta1;
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166 s_frame1.transform().image_transform.is_mix = true;
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167 s_frame2.transform().image_transform.opacity = 1.0-delta2;
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168 s_frame2.transform().image_transform.is_mix = true;
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170 if(info_.type == transition_type::slide)
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172 d_frame1.transform().image_transform.fill_translation[0] = (-1.0+delta1)*dir;
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173 d_frame2.transform().image_transform.fill_translation[0] = (-1.0+delta2)*dir;
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175 else if(info_.type == transition_type::push)
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177 d_frame1.transform().image_transform.fill_translation[0] = (-1.0+delta1)*dir;
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178 d_frame2.transform().image_transform.fill_translation[0] = (-1.0+delta2)*dir;
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180 s_frame1.transform().image_transform.fill_translation[0] = (0.0+delta1)*dir;
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181 s_frame2.transform().image_transform.fill_translation[0] = (0.0+delta2)*dir;
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183 else if(info_.type == transition_type::wipe)
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185 d_frame1.transform().image_transform.clip_scale[0] = delta1;
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186 d_frame2.transform().image_transform.clip_scale[0] = delta2;
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189 const auto s_frame = s_frame1.transform() == s_frame2.transform() ? s_frame2 : draw_frame::interlace(s_frame1, s_frame2, mode_);
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190 const auto d_frame = d_frame1.transform() == d_frame2.transform() ? d_frame2 : draw_frame::interlace(d_frame1, d_frame2, mode_);
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192 return draw_frame::over(s_frame, d_frame);
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195 void subscribe(const monitor::observable::observer_ptr& o) override
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197 event_subject_.subscribe(o);
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200 void unsubscribe(const monitor::observable::observer_ptr& o) override
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202 event_subject_.unsubscribe(o);
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206 spl::shared_ptr<frame_producer> create_transition_producer(const field_mode& mode, const spl::shared_ptr<frame_producer>& destination, const transition_info& info)
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208 return spl::make_shared<transition_producer>(mode, destination, info);
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