#include "stdafx.h" #include "IRenderingDevice.h" #include "VideoDecoder.h" #include "EmulationSettings.h" #include "DefaultVideoFilter.h" #include "NtscFilter.h" #include "HdVideoFilter.h" #include "VideoRenderer.h" unique_ptr VideoDecoder::Instance; VideoDecoder* VideoDecoder::GetInstance() { if(!Instance) { Instance.reset(new VideoDecoder()); } return Instance.get(); } VideoDecoder::VideoDecoder() { UpdateVideoFilter(); } VideoDecoder::~VideoDecoder() { StopThread(); } void VideoDecoder::GetScreenSize(ScreenSize &size, bool ignoreScale) { if(_videoFilter) { double aspectRatio = EmulationSettings::GetAspectRatio(); size.Width = (int32_t)(_videoFilter->GetFrameInfo().Width * (ignoreScale ? 1 : EmulationSettings::GetVideoScale())); size.Height = (int32_t)(_videoFilter->GetFrameInfo().Height * (ignoreScale ? 1 : EmulationSettings::GetVideoScale())); if(aspectRatio != 0.0) { size.Width = (uint32_t)(size.Height * aspectRatio); } } } void VideoDecoder::UpdateVideoFilter() { VideoFilterType newFilter = EmulationSettings::GetVideoFilterType(); if(_hdScreenTiles) { newFilter = VideoFilterType::HdPack; } if(_videoFilterType != newFilter || _videoFilter == nullptr) { _videoFilterType = newFilter; switch(_videoFilterType) { case VideoFilterType::None: _videoFilter.reset(new DefaultVideoFilter()); break; case VideoFilterType::NTSC: _videoFilter.reset(new NtscFilter()); break; case VideoFilterType::HdPack: _videoFilter.reset(new HdVideoFilter()); break; } } } void VideoDecoder::DecodeFrame() { UpdateVideoFilter(); if(_videoFilterType == VideoFilterType::HdPack) { ((HdVideoFilter*)_videoFilter.get())->SetHdScreenTiles(_hdScreenTiles); } _videoFilter->SendFrame(_ppuOutputBuffer); _frameChanged = false; VideoRenderer::GetInstance()->UpdateFrame(_videoFilter->GetOutputBuffer(), _videoFilter->GetFrameInfo().Width, _videoFilter->GetFrameInfo().Height); } void VideoDecoder::DebugDecodeFrame(uint16_t* inputBuffer, uint32_t* outputBuffer, uint32_t length) { for(uint32_t i = 0; i < length; i++) { outputBuffer[i] = EmulationSettings::GetRgbPalette()[inputBuffer[i] & 0x3F]; } } void VideoDecoder::DecodeThread() { //This thread will decode the PPU's output (color ID to RGB, intensify r/g/b and produce a HD version of the frame if needed) while(!_stopFlag.load()) { //DecodeFrame returns the final ARGB frame we want to display in the emulator window if(!_frameChanged) { _waitForFrame.Wait(); if(_stopFlag.load()) { return; } } DecodeFrame(); } } uint32_t VideoDecoder::GetFrameCount() { return _frameCount; } void VideoDecoder::UpdateFrame(void *ppuOutputBuffer, HdPpuPixelInfo *hdPixelInfo) { if(_frameChanged) { //Last frame isn't done decoding yet - sometimes Signal() introduces a 25-30ms delay while(_frameChanged) { //Spin until decode is done } //At this point, we are sure that the decode thread is no longer busy } _hdScreenTiles = hdPixelInfo; _ppuOutputBuffer = (uint16_t*)ppuOutputBuffer; _frameChanged = true; _waitForFrame.Signal(); _frameCount++; } void VideoDecoder::StartThread() { if(!_decodeThread) { _stopFlag = false; _frameChanged = false; _frameCount = 0; _waitForFrame.Reset(); _decodeThread.reset(new thread(&VideoDecoder::DecodeThread, this)); } } void VideoDecoder::StopThread() { _stopFlag = true; if(_decodeThread) { _waitForFrame.Signal(); _decodeThread->join(); _decodeThread.release(); if(_ppuOutputBuffer != nullptr) { //Clear whole screen for(int i = 0; i < PPU::PixelCount; i++) { _ppuOutputBuffer[i] = 14; //Black } DecodeFrame(); } } } bool VideoDecoder::IsRunning() { return _decodeThread != nullptr; } void VideoDecoder::TakeScreenshot(string romFilename) { if(_videoFilter) { _videoFilter->TakeScreenshot(romFilename); } }