mirror of
https://github.com/dolphin-emu/dolphin.git
synced 2025-02-09 20:31:39 +02:00
![skidau](/assets/img/avatar_default.png)
The "Enable Progressive Scan" option in the Wii menu now controls whether the Wii/GC will detect a progressive scan display. This affects the timing of some games (both GC and Wii). Usually, the checkbox should be unticked as progressive scan displays require higher bandwidth. This fixes the slow speed in NBA JAM. This also fixes the hang in Megaman Network Transmission. This should fix Deadly Creatures (turn off progressive scan). Fixes issue 3314. Fixes issue 3066. Fixes issue 2571. git-svn-id: https://dolphin-emu.googlecode.com/svn/trunk@6297 8ced0084-cf51-0410-be5f-012b33b47a6e
484 lines
11 KiB
C++
484 lines
11 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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#include "Common.h"
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#include "Atomic.h"
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#include "Thread.h"
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#include "LogManager.h"
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#include "debugger/debugger.h"
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#if defined(HAVE_WX) && HAVE_WX
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#include "DlgSettings.h"
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GFXConfigDialogDX *m_ConfigFrame = NULL;
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#endif // HAVE_WX
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#if defined(HAVE_WX) && HAVE_WX
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#include "Debugger/Debugger.h"
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#endif // HAVE_WX
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#include "main.h"
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#include "VideoConfig.h"
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#include "Fifo.h"
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#include "OpcodeDecoding.h"
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#include "TextureCache.h"
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#include "BPStructs.h"
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#include "VertexManager.h"
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#include "VertexLoaderManager.h"
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#include "VertexShaderManager.h"
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#include "PixelShaderManager.h"
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#include "VertexShaderCache.h"
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#include "PixelShaderCache.h"
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#include "CommandProcessor.h"
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#include "PixelEngine.h"
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#include "OnScreenDisplay.h"
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#include "DlgSettings.h"
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#include "D3DTexture.h"
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#include "D3DUtil.h"
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#include "EmuWindow.h"
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#include "VideoState.h"
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#include "XFBConvert.h"
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#include "render.h"
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#include "DLCache.h"
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HINSTANCE g_hInstance = NULL;
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SVideoInitialize g_VideoInitialize;
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PLUGIN_GLOBALS* globals = NULL;
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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 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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static volatile EFBAccessType s_AccessEFBType;
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bool IsD3D()
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{
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return true;
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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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WXDLLIMPEXP_BASE void wxSetInstance(HINSTANCE hInst);
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#endif
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void *DllDebugger(void *_hParent, bool Show)
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{
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#if defined(HAVE_WX) && HAVE_WX
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return new GFXDebuggerDX9((wxWindow *)_hParent);
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#else
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return NULL;
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#endif
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}
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#if defined(HAVE_WX) && HAVE_WX
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class wxDLLApp : public wxApp
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{
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bool OnInit()
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{
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return true;
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}
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};
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IMPLEMENT_APP_NO_MAIN(wxDLLApp)
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WXDLLIMPEXP_BASE void wxSetInstance(HINSTANCE hInst);
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#endif
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BOOL APIENTRY DllMain(HINSTANCE hinstDLL, DWORD dwReason, LPVOID lpvReserved)
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{
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switch (dwReason)
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{
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case DLL_PROCESS_ATTACH:
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{
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#if defined(HAVE_WX) && HAVE_WX
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wxSetInstance((HINSTANCE)hinstDLL);
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wxInitialize();
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#endif
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}
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break;
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case DLL_PROCESS_DETACH:
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#if defined(HAVE_WX) && HAVE_WX
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wxUninitialize();
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#endif
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break;
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}
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g_hInstance = hinstDLL;
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return TRUE;
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}
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unsigned int Callback_PeekMessages()
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{
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MSG msg;
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while (PeekMessage(&msg, 0, 0, 0, PM_REMOVE))
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{
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if (msg.message == WM_QUIT)
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return FALSE;
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TranslateMessage(&msg);
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DispatchMessage(&msg);
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}
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return TRUE;
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}
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void UpdateFPSDisplay(const char *text)
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{
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TCHAR temp[512];
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swprintf_s(temp, 512, _T("SVN R%s: DX9: %hs"), svn_rev_str, text);
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SetWindowText(EmuWindow::GetWnd(), temp);
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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_s(_PluginInfo->Name, 100, "Dolphin Direct3D9 (DebugFast)");
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#elif defined _DEBUG
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sprintf_s(_PluginInfo->Name, 100, "Dolphin Direct3D9 (Debug)");
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#else
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sprintf_s(_PluginInfo->Name, 100, "Dolphin Direct3D9");
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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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void DllAbout(HWND _hParent)
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{
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//DialogBox(g_hInstance,(LPCTSTR)IDD_ABOUT,_hParent,(DLGPROC)AboutProc);
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}
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void DllConfig(void *_hParent)
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{
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// If not initialized, only init D3D so we can enumerate resolutions.
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if (!s_PluginInitialized)
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D3D::Init();
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g_Config.Load((std::string(File::GetUserPath(D_CONFIG_IDX)) + "gfx_dx9.ini").c_str());
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g_Config.GameIniLoad(globals->game_ini);
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UpdateActiveConfig();
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#if defined(HAVE_WX) && HAVE_WX
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m_ConfigFrame = new GFXConfigDialogDX((wxWindow *)_hParent);
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m_ConfigFrame->CreateGUIControls();
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m_ConfigFrame->ShowModal();
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m_ConfigFrame->Destroy();
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#endif
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if (!s_PluginInitialized)
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D3D::Shutdown();
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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_dx9.ini").c_str());
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g_Config.GameIniLoad(globals->game_ini);
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UpdateProjectionHack(g_Config.iPhackvalue); // DX9 projection hack could be disabled by commenting out this line
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UpdateActiveConfig();
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g_VideoInitialize.pWindowHandle = (void*)EmuWindow::Create((HWND)g_VideoInitialize.pWindowHandle, g_hInstance, _T("Loading - Please wait."));
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if (g_VideoInitialize.pWindowHandle == NULL)
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{
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ERROR_LOG(VIDEO, "An error has occurred while trying to create the window.");
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return;
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}
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else if (FAILED(D3D::Init()))
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{
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MessageBox(GetActiveWindow(), _T("Unable to initialize Direct3D. Please make sure that you have the latest version of DirectX 9.0c correctly installed."), _T("Fatal Error"), MB_ICONERROR|MB_OK);
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return;
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}
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g_VideoInitialize.pPeekMessages = &Callback_PeekMessages;
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g_VideoInitialize.pUpdateFPSDisplay = &UpdateFPSDisplay;
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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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OSD::AddMessage("Dolphin Direct3D9 Video Plugin.", 5000);
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s_PluginInitialized = true;
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}
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void Video_Prepare()
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{
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// Better be safe...
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s_efbAccessRequested = FALSE;
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s_FifoShuttingDown = FALSE;
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s_swapRequested = FALSE;
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// internal interfaces
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Renderer::Init();
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g_texture_cache = new DX9::TextureCache;
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g_vertex_manager = new DX9::VertexManager;
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// VideoCommon
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BPInit();
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Fifo_Init();
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VertexLoaderManager::Init();
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OpcodeDecoder_Init();
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VertexShaderManager::Init();
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PixelShaderManager::Init();
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CommandProcessor::Init();
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PixelEngine::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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}
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void Shutdown()
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{
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s_PluginInitialized = false;
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s_efbAccessRequested = FALSE;
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s_FifoShuttingDown = FALSE;
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s_swapRequested = FALSE;
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// VideoCommon
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DLCache::Shutdown();
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Fifo_Shutdown();
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CommandProcessor::Shutdown();
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PixelShaderManager::Shutdown();
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VertexShaderManager::Shutdown();
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OpcodeDecoder_Shutdown();
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VertexLoaderManager::Shutdown();
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// internal interfaces
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PixelShaderCache::Shutdown();
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VertexShaderCache::Shutdown();
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delete g_vertex_manager;
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delete g_texture_cache;
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Renderer::Shutdown();
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D3D::Shutdown();
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EmuWindow::Close();
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}
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void DoState(unsigned char **ptr, int mode)
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{
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// Clear texture cache because it might have written to RAM
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CommandProcessor::FifoCriticalEnter();
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TextureCache::Invalidate(false);
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CommandProcessor::FifoCriticalLeave();
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// No need to clear shader caches
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PointerWrap p(ptr, mode);
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VideoCommon_DoState(p);
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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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// 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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void Video_SetRendering(bool bEnabled)
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{
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Fifo_SetRendering(bEnabled);
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}
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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(g_ActiveConfig.bUseXFB)
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{
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if (Common::AtomicLoadAcquire(s_swapRequested))
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{
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EFBRectangle rc;
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Renderer::Swap(s_beginFieldArgs.xfbAddr, s_beginFieldArgs.field, s_beginFieldArgs.fbWidth, s_beginFieldArgs.fbHeight,rc);
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Common::AtomicStoreRelease(s_swapRequested, FALSE);
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}
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}
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}
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static 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 (g_ActiveConfig.bUseXFB)
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{
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if(Common::AtomicLoadAcquire(s_swapRequested))
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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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}
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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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if (!g_VideoInitialize.bOnThread)
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VideoFifo_CheckSwapRequest();
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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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}
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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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if (s_PluginInitialized)
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{
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Common::AtomicStoreRelease(s_swapRequested, TRUE);
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}
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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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// Screenshot
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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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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 VideoFifo_CheckAsyncRequest() {
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VideoFifo_CheckSwapRequest();
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VideoFifo_CheckEFBAccess();
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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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void Video_AbortFrame(void)
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{
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CommandProcessor::AbortFrame();
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}
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