mirror of
https://github.com/dolphin-emu/dolphin.git
synced 2025-02-03 11:31:46 +02:00
10b5d2371c
Dual Core sync fix. When the FIFO is processing data we must not advance the cpu cycles in CoreTiming because in this way the VI will be desynchronized. So, We are waiting until the FIFO finish and while we process only the events required by the FIFO. This should fix Issue 2072 . This affect to all games in dual core mode. Please, You can test all games with VPS limiter auto, 60, 50 depending of the game and compare with prev revision. For example now NSMB in the video Intro has 60 fps (prev 30 fps) :D or SMG does't need anymore FPS Limitter Hack to get 55-60 fps Beside the slowdowns now are more softly and the fps more stables because the VI sync is almost perfect. The Core Timing and Fifo modifications are delicated. Please report if this hang any game. Don't forget check with prev revision. Enjoy it! Thanks to Rodolfo for teach me all about dolphin. git-svn-id: https://dolphin-emu.googlecode.com/svn/trunk@5777 8ced0084-cf51-0410-be5f-012b33b47a6e
515 lines
12 KiB
C++
515 lines
12 KiB
C++
// Copyright (C) 2003 Dolphin Project.
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, version 2.0.
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License 2.0 for more details.
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// A copy of the GPL 2.0 should have been included with the program.
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// If not, see http://www.gnu.org/licenses/
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// Official SVN repository and contact information can be found at
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// http://code.google.com/p/dolphin-emu/
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// OpenGL Plugin Documentation
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/*
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1.1 Display settings
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Internal and fullscreen resolution: Since the only internal resolutions allowed
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are also fullscreen resolution allowed by the system there is only need for one
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resolution setting that applies to both the internal resolution and the
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fullscreen resolution. - Apparently no, someone else doesn't agree
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Todo: Make the internal resolution option apply instantly, currently only the
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native and 2x option applies instantly. To do this we need to be able to change
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the reinitialize FramebufferManager:Init() while a game is running.
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1.2 Screenshots
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The screenshots should be taken from the internal representation of the picture
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regardless of what the current window size is. Since AA and wireframe is
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applied together with the picture resizing this rule is not currently applied
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to AA or wireframe pictures, they are instead taken from whatever the window
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size is.
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Todo: Render AA and wireframe to a separate picture used for the screenshot in
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addition to the one for display.
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1.3 AA
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Make AA apply instantly during gameplay if possible
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*/
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#include "Globals.h"
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#include "LogManager.h"
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#include "Thread.h"
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#include "Atomic.h"
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#include <cstdarg>
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#ifdef _WIN32
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#include "OS/Win32.h"
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#endif
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#if defined(HAVE_WX) && HAVE_WX
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#include "GUI/ConfigDlg.h"
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GFXConfigDialogOGL *m_ConfigFrame = NULL;
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#include "Debugger/Debugger.h"
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GFXDebuggerOGL *m_DebuggerFrame = NULL;
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#endif // HAVE_WX
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#include "VideoConfig.h"
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#include "LookUpTables.h"
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#include "ImageWrite.h"
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#include "Render.h"
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#include "GLUtil.h"
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#include "Fifo.h"
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#include "OpcodeDecoding.h"
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#include "TextureMngr.h"
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#include "BPStructs.h"
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#include "VertexLoader.h"
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#include "VertexLoaderManager.h"
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#include "VertexManager.h"
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#include "PixelShaderCache.h"
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#include "PixelShaderManager.h"
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#include "VertexShaderCache.h"
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#include "VertexShaderManager.h"
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#include "XFB.h"
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#include "XFBConvert.h"
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#include "CommandProcessor.h"
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#include "PixelEngine.h"
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#include "TextureConverter.h"
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#include "PostProcessing.h"
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#include "OnScreenDisplay.h"
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#include "Setup.h"
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#include "DLCache.h"
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#include "VideoState.h"
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SVideoInitialize g_VideoInitialize;
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PLUGIN_GLOBALS* globals = NULL;
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// Logging
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int GLScissorX, GLScissorY, GLScissorW, GLScissorH;
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static bool s_PluginInitialized = false;
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volatile u32 s_swapRequested = FALSE;
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static u32 s_efbAccessRequested = FALSE;
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static volatile u32 s_FifoShuttingDown = FALSE;
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static bool ForceSwap = true;
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bool IsD3D()
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{
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return false;
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}
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void GetDllInfo (PLUGIN_INFO* _PluginInfo)
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{
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_PluginInfo->Version = 0x0100;
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_PluginInfo->Type = PLUGIN_TYPE_VIDEO;
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#ifdef DEBUGFAST
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sprintf(_PluginInfo->Name, "Dolphin OpenGL (DebugFast)");
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#elif defined _DEBUG
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sprintf(_PluginInfo->Name, "Dolphin OpenGL (Debug)");
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#else
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sprintf(_PluginInfo->Name, "Dolphin OpenGL");
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#endif
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}
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void SetDllGlobals(PLUGIN_GLOBALS* _pPluginGlobals)
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{
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globals = _pPluginGlobals;
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LogManager::SetInstance((LogManager*)globals->logManager);
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}
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// This is used for the functions right below here which use wxwidgets
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#if defined(HAVE_WX) && HAVE_WX
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#ifdef _WIN32
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WXDLLIMPEXP_BASE void wxSetInstance(HINSTANCE hInst);
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extern HINSTANCE g_hInstance;
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#endif
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wxWindow* GetParentedWxWindow(HWND Parent)
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{
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#ifdef _WIN32
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wxSetInstance((HINSTANCE)g_hInstance);
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#endif
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wxWindow *win = new wxWindow();
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#ifdef _WIN32
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win->SetHWND((WXHWND)Parent);
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win->AdoptAttributesFromHWND();
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#endif
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return win;
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}
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#endif
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void DllDebugger(HWND _hParent, bool Show)
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{
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#if defined(HAVE_WX) && HAVE_WX
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if (Show) {
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if (!m_DebuggerFrame)
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m_DebuggerFrame = new GFXDebuggerOGL(NULL);
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m_DebuggerFrame->Show();
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} else {
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if (m_DebuggerFrame) m_DebuggerFrame->Hide();
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}
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#endif
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}
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void DllConfig(HWND _hParent)
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{
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g_Config.Load((std::string(File::GetUserPath(D_CONFIG_IDX)) + "gfx_opengl.ini").c_str());
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g_Config.GameIniLoad(globals->game_ini);
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g_Config.UpdateProjectionHack();
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UpdateActiveConfig();
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#if defined(HAVE_WX) && HAVE_WX
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wxWindow *frame = GetParentedWxWindow(_hParent);
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m_ConfigFrame = new GFXConfigDialogOGL(frame);
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// Prevent user to show more than 1 config window at same time
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#ifdef _WIN32
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frame->Disable();
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m_ConfigFrame->CreateGUIControls();
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m_ConfigFrame->ShowModal();
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frame->Enable();
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#else
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m_ConfigFrame->CreateGUIControls();
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m_ConfigFrame->ShowModal();
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#endif
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#ifdef _WIN32
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frame->SetFocus();
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frame->SetHWND(NULL);
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#endif
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m_ConfigFrame->Destroy();
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m_ConfigFrame = NULL;
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frame->Destroy();
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#endif
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}
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void Initialize(void *init)
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{
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frameCount = 0;
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SVideoInitialize *_pVideoInitialize = (SVideoInitialize*)init;
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// Create a shortcut to _pVideoInitialize that can also update it
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g_VideoInitialize = *(_pVideoInitialize);
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InitXFBConvTables();
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g_Config.Load((std::string(File::GetUserPath(D_CONFIG_IDX)) + "gfx_opengl.ini").c_str());
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g_Config.GameIniLoad(globals->game_ini);
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g_Config.UpdateProjectionHack();
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#if defined(HAVE_WX) && HAVE_WX
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// Enable support for PNG screenshots.
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wxImage::AddHandler( new wxPNGHandler );
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#endif
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UpdateActiveConfig();
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if (!OpenGL_Create(g_VideoInitialize, 640, 480))
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{
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g_VideoInitialize.pLog("Renderer::Create failed\n", TRUE);
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return;
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}
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_pVideoInitialize->pPeekMessages = g_VideoInitialize.pPeekMessages;
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_pVideoInitialize->pUpdateFPSDisplay = g_VideoInitialize.pUpdateFPSDisplay;
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// Now the window handle is written
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_pVideoInitialize->pWindowHandle = g_VideoInitialize.pWindowHandle;
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#if defined(HAVE_X11) && HAVE_X11
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_pVideoInitialize->pXWindow = g_VideoInitialize.pXWindow;
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#endif
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OSD::AddMessage("Dolphin OpenGL Video Plugin", 5000);
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}
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void DoState(unsigned char **ptr, int mode)
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{
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#if defined(HAVE_X11) && HAVE_X11
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OpenGL_MakeCurrent();
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#endif
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// Clear all caches that touch RAM
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TextureMngr::Invalidate(false);
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VertexLoaderManager::MarkAllDirty();
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PointerWrap p(ptr, mode);
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VideoCommon_DoState(p);
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// Refresh state.
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if (mode == PointerWrap::MODE_READ)
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{
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BPReload();
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RecomputeCachedArraybases();
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}
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}
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void EmuStateChange(PLUGIN_EMUSTATE newState)
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{
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Fifo_RunLoop((newState == PLUGIN_EMUSTATE_PLAY) ? true : false);
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}
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// This is called after Video_Initialize() from the Core
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void Video_Prepare(void)
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{
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OpenGL_MakeCurrent();
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if (!Renderer::Init()) {
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g_VideoInitialize.pLog("Renderer::Create failed\n", TRUE);
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PanicAlert("Can't create opengl renderer. You might be missing some required opengl extensions, check the logs for more info");
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exit(1);
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}
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s_swapRequested = FALSE;
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s_efbAccessRequested = FALSE;
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s_FifoShuttingDown = FALSE;
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CommandProcessor::Init();
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PixelEngine::Init();
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TextureMngr::Init();
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BPInit();
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VertexManager::Init();
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Fifo_Init(); // must be done before OpcodeDecoder_Init()
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OpcodeDecoder_Init();
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VertexShaderCache::Init();
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VertexShaderManager::Init();
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PixelShaderCache::Init();
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PixelShaderManager::Init();
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PostProcessing::Init();
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GL_REPORT_ERRORD();
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VertexLoaderManager::Init();
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TextureConverter::Init();
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DLCache::Init();
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// Notify the core that the video plugin is ready
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g_VideoInitialize.pCoreMessage(WM_USER_CREATE);
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s_PluginInitialized = true;
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INFO_LOG(VIDEO, "Video plugin initialized.");
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}
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void Shutdown(void)
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{
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s_PluginInitialized = false;
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ForceSwap = true;
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s_efbAccessRequested = FALSE;
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s_swapRequested = FALSE;
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s_FifoShuttingDown = FALSE;
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DLCache::Shutdown();
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Fifo_Shutdown();
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PostProcessing::Shutdown();
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// The following calls are NOT Thread Safe
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// And need to be called from the video thread
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TextureConverter::Shutdown();
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VertexLoaderManager::Shutdown();
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VertexShaderCache::Shutdown();
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VertexShaderManager::Shutdown();
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PixelShaderManager::Shutdown();
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PixelShaderCache::Shutdown();
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VertexManager::Shutdown();
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TextureMngr::Shutdown();
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OpcodeDecoder_Shutdown();
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Renderer::Shutdown();
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OpenGL_Shutdown();
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}
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// Enter and exit the video loop
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void Video_EnterLoop()
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{
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Fifo_EnterLoop(g_VideoInitialize);
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}
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void Video_ExitLoop()
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{
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Fifo_ExitLoop();
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s_FifoShuttingDown = TRUE;
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}
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// Screenshot and screen message
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void Video_Screenshot(const char *_szFilename)
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{
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Renderer::SetScreenshot(_szFilename);
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}
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void Video_AddMessage(const char* pstr, u32 milliseconds)
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{
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OSD::AddMessage(pstr, milliseconds);
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}
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void Video_SetRendering(bool bEnabled)
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{
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Fifo_SetRendering(bEnabled);
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}
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static volatile struct
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{
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u32 xfbAddr;
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FieldType field;
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u32 fbWidth;
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u32 fbHeight;
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} s_beginFieldArgs;
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// Run from the graphics thread (from Fifo.cpp)
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void VideoFifo_CheckSwapRequest()
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{
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if (Common::AtomicLoadAcquire(s_swapRequested))
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{
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if (ForceSwap || g_ActiveConfig.bUseXFB)
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{
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Renderer::Swap(s_beginFieldArgs.xfbAddr, s_beginFieldArgs.field, s_beginFieldArgs.fbWidth, s_beginFieldArgs.fbHeight);
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}
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Common::AtomicStoreRelease(s_swapRequested, FALSE);
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}
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}
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inline bool addrRangesOverlap(u32 aLower, u32 aUpper, u32 bLower, u32 bUpper)
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{
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return !((aLower >= bUpper) || (bLower >= aUpper));
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}
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// Run from the graphics thread (from Fifo.cpp)
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void VideoFifo_CheckSwapRequestAt(u32 xfbAddr, u32 fbWidth, u32 fbHeight)
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{
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if (Common::AtomicLoadAcquire(s_swapRequested) && g_ActiveConfig.bUseXFB)
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{
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u32 aLower = xfbAddr;
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u32 aUpper = xfbAddr + 2 * fbWidth * fbHeight;
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u32 bLower = s_beginFieldArgs.xfbAddr;
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u32 bUpper = s_beginFieldArgs.xfbAddr + 2 * s_beginFieldArgs.fbWidth * s_beginFieldArgs.fbHeight;
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if (addrRangesOverlap(aLower, aUpper, bLower, bUpper))
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VideoFifo_CheckSwapRequest();
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}
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ForceSwap = false;
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}
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// Run from the CPU thread (from VideoInterface.cpp)
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void Video_BeginField(u32 xfbAddr, FieldType field, u32 fbWidth, u32 fbHeight)
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{
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if (s_PluginInitialized && g_ActiveConfig.bUseXFB)
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{
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s_beginFieldArgs.xfbAddr = xfbAddr;
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s_beginFieldArgs.field = field;
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s_beginFieldArgs.fbWidth = fbWidth;
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s_beginFieldArgs.fbHeight = fbHeight;
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Common::AtomicStoreRelease(s_swapRequested, TRUE);
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if (g_VideoInitialize.bOnThread)
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{
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while (Common::AtomicLoadAcquire(s_swapRequested) && !s_FifoShuttingDown)
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//Common::SleepCurrentThread(1);
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Common::YieldCPU();
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}
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else
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VideoFifo_CheckSwapRequest();
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}
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}
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// Run from the CPU thread (from VideoInterface.cpp)
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void Video_EndField()
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{
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}
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static struct
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{
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EFBAccessType type;
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u32 x;
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u32 y;
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u32 Data;
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} s_accessEFBArgs;
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static u32 s_AccessEFBResult = 0;
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void VideoFifo_CheckEFBAccess()
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{
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if (Common::AtomicLoadAcquire(s_efbAccessRequested))
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{
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s_AccessEFBResult = Renderer::AccessEFB(s_accessEFBArgs.type, s_accessEFBArgs.x, s_accessEFBArgs.y);
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Common::AtomicStoreRelease(s_efbAccessRequested, FALSE);
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}
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}
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u32 Video_AccessEFB(EFBAccessType type, u32 x, u32 y, u32 InputData)
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{
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if (s_PluginInitialized)
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{
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s_accessEFBArgs.type = type;
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s_accessEFBArgs.x = x;
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s_accessEFBArgs.y = y;
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s_accessEFBArgs.Data = InputData;
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Common::AtomicStoreRelease(s_efbAccessRequested, TRUE);
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if (g_VideoInitialize.bOnThread)
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{
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while (Common::AtomicLoadAcquire(s_efbAccessRequested) && !s_FifoShuttingDown)
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//Common::SleepCurrentThread(1);
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Common::YieldCPU();
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}
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else
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VideoFifo_CheckEFBAccess();
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return s_AccessEFBResult;
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}
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return 0;
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}
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void Video_CommandProcessorRead16(u16& _rReturnValue, const u32 _Address)
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{
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CommandProcessor::Read16(_rReturnValue, _Address);
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}
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void Video_CommandProcessorWrite16(const u16 _Data, const u32 _Address)
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{
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CommandProcessor::Write16(_Data, _Address);
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}
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void Video_PixelEngineRead16(u16& _rReturnValue, const u32 _Address)
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{
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PixelEngine::Read16(_rReturnValue, _Address);
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}
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void Video_PixelEngineWrite16(const u16 _Data, const u32 _Address)
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{
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PixelEngine::Write16(_Data, _Address);
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}
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void Video_PixelEngineWrite32(const u32 _Data, const u32 _Address)
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{
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PixelEngine::Write32(_Data, _Address);
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}
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void Video_GatherPipeBursted(void)
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{
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CommandProcessor::GatherPipeBursted();
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}
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void Video_WaitForFrameFinish(void)
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{
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CommandProcessor::WaitForFrameFinish();
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}
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bool Video_IsFifoBusy(void)
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{
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return CommandProcessor::isFifoBusy;
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}
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