mirror of
https://github.com/isledecomp/LEGOIslandRebuilder.git
synced 2024-11-30 02:55:55 -05:00
386 lines
12 KiB
C++
386 lines
12 KiB
C++
#include "hooks.h"
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#include <MATH.H>
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#include <STDIO.H>
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#include "../cmn/path.h"
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#include "config.h"
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#include "util.h"
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HWND isleWindow = NULL;
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void InterceptOutputDebugStringA(LPCSTR s)
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{
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printf("%s\n", s);
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MessageBoxA(isleWindow, s, "LEGO Island sez", 0);
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}
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HWND WINAPI InterceptCreateWindowExA(DWORD dwExStyle, LPCSTR lpClassName, LPCSTR lpWindowName, DWORD dwStyle, int X, int Y, int nWidth, int nHeight, HWND hWndParent, HMENU hMenu, HINSTANCE hInstance, LPVOID lpParam)
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{
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// Grab a copy of the ISLE window so we can do stuff with it
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isleWindow = CreateWindowExA(dwExStyle, lpClassName, "LEGO Island: Rebuilt", dwStyle, X, Y, nWidth, nHeight, hWndParent, hMenu, hInstance, lpParam);
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return isleWindow;
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}
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HWND WINAPI InterceptFindWindowA(LPCSTR lpClassName, LPCSTR lpWindowName)
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{
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return NULL;
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}
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void ForceDDPixelFormatTo16(LPDDPIXELFORMAT lpDDPixelFormat)
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{
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if (lpDDPixelFormat->dwRGBBitCount == 32) {
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lpDDPixelFormat->dwRGBBitCount = 16;
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lpDDPixelFormat->dwRBitMask = 0xF800;
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lpDDPixelFormat->dwGBitMask = 0x07E0;
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lpDDPixelFormat->dwBBitMask = 0x001F;
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}
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}
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void ForceDDSurfaceDescTo16(LPDDSURFACEDESC lpDDSurfaceDesc)
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{
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DDPIXELFORMAT &pixfmt = lpDDSurfaceDesc->ddpfPixelFormat;
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if (pixfmt.dwRGBBitCount == 32) {
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// LEGO Island has no support for 32-bit surfaces, so we tell it we're on a 16-bit surface
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lpDDSurfaceDesc->lPitch /= 2;
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ForceDDPixelFormatTo16(&pixfmt);
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}
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}
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typedef HRESULT (WINAPI *ddSurfaceGetDescFunction)(LPDIRECTDRAWSURFACE lpDDSurface, LPDDSURFACEDESC lpDDSurfaceDesc);
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ddSurfaceGetDescFunction originalDDSurfaceGetDescFunction = NULL;
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HRESULT WINAPI InterceptSurfaceGetDesc(LPDIRECTDRAWSURFACE lpDDSurface, LPDDSURFACEDESC lpDDSurfaceDesc)
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{
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HRESULT res = originalDDSurfaceGetDescFunction(lpDDSurface, lpDDSurfaceDesc);
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if (res == DD_OK) {
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//ForceDDSurfaceDescTo16(lpDDSurfaceDesc);
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}
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return res;
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}
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typedef HRESULT (WINAPI *ddSurfaceGetPixelFormatFunction)(LPDIRECTDRAWSURFACE lpDDSurface, LPDDPIXELFORMAT lpDDPixelFormat);
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ddSurfaceGetPixelFormatFunction originalDDSurfaceGetPixelFunction = NULL;
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HRESULT WINAPI InterceptSurfaceGetPixelFormatFunction(LPDIRECTDRAWSURFACE lpDDSurface, LPDDPIXELFORMAT lpDDPixelFormat)
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{
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HRESULT res = originalDDSurfaceGetPixelFunction(lpDDSurface, lpDDPixelFormat);
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if (res == DD_OK) {
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//ForceDDPixelFormatTo16(lpDDPixelFormat);
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}
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return res;
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}
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typedef HRESULT (WINAPI *ddCreateSurfaceFunction)(LPDIRECTDRAW lpDD, LPDDSURFACEDESC lpDDSurfaceDesc, LPDIRECTDRAWSURFACE *lplpDDSurface, IUnknown *unknown);
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ddCreateSurfaceFunction originalCreateSurfaceFunction = NULL;
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HRESULT WINAPI InterceptCreateSurface(LPDIRECTDRAW lpDD, LPDDSURFACEDESC lpDDSurfaceDesc, LPDIRECTDRAWSURFACE *lplpDDSurface, IUnknown *unknown)
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{
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//ForceDDSurfaceDescTo16(lpDDSurfaceDesc);
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HRESULT res = originalCreateSurfaceFunction(lpDD, lpDDSurfaceDesc, lplpDDSurface, unknown);
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if (res == DD_OK) {
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if (!originalDDSurfaceGetPixelFunction) {
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originalDDSurfaceGetPixelFunction = (ddSurfaceGetPixelFormatFunction)OverwriteVirtualTable(*lplpDDSurface, 0x15, (LPVOID)InterceptSurfaceGetPixelFormatFunction);
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}
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if (!originalDDSurfaceGetDescFunction) {
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//originalDDSurfaceGetDescFunction = (ddSurfaceGetDescFunction)OverwriteVirtualTable(*lplpDDSurface, 0x16, (LPVOID)InterceptSurfaceGetDesc);
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originalDDSurfaceGetDescFunction = (ddSurfaceGetDescFunction)OverwriteVirtualTable(*lplpDDSurface, 0x16, NULL);
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}
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}
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return res;
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}
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typedef HRESULT (WINAPI *ddGetDisplayModeFunction)(LPDIRECTDRAW lpDD, LPDDSURFACEDESC lpDDSurfaceDesc);
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ddGetDisplayModeFunction originalGetDisplayMode = NULL;
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HRESULT WINAPI InterceptGetDisplayMode(LPDIRECTDRAW lpDD, LPDDSURFACEDESC lpDDSurfaceDesc)
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{
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HRESULT res = originalGetDisplayMode(lpDD, lpDDSurfaceDesc);
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//ForceDDSurfaceDescTo16(lpDDSurfaceDesc);
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return res;
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}
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ddCreateFunction ddCreateOriginal = NULL;
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HRESULT WINAPI InterceptDirectDrawCreate(GUID *lpGUID, LPDIRECTDRAW *lplpDD, IUnknown *pUnkOuter)
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{
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HRESULT res = ddCreateOriginal(lpGUID, lplpDD, pUnkOuter);
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if (res == DD_OK) {
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if (!originalGetDisplayMode) {
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originalGetDisplayMode = (ddGetDisplayModeFunction)OverwriteVirtualTable(*lplpDD, 0xC, (LPVOID)InterceptGetDisplayMode);
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}
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ddCreateSurfaceFunction f = (ddCreateSurfaceFunction)OverwriteVirtualTable(*lplpDD, 0x6, (LPVOID)InterceptCreateSurface);
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if (f != InterceptCreateSurface) {
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originalCreateSurfaceFunction = f;
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}
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}
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return res;
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}
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void ReturnRegistryYESNOFromBool(LPBYTE lpData, BOOL value)
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{
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strcpy((char*)lpData, value ? "YES" : "NO");
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}
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LONG WINAPI InterceptRegQueryValueExA(HKEY hKey, LPCSTR lpValueName, LPDWORD lpReserved, LPDWORD lpType, LPBYTE lpData, LPDWORD lpcbData)
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{
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if (!strcmp(lpValueName, "Music")) {
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// Music option
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ReturnRegistryYESNOFromBool(lpData, config.GetInt(_T("MusicToggle"), 1));
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return ERROR_SUCCESS;
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} else if (!strcmp(lpValueName, "UseJoystick")) {
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ReturnRegistryYESNOFromBool(lpData, config.GetInt(_T("UseJoystick"), 0));
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return ERROR_SUCCESS;
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} else if (!strcmp(lpValueName, "Full Screen")) {
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//ReturnRegistryYESNOFromBool(lpData, config.GetInt(_T("FullScreen"), 1));
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ReturnRegistryYESNOFromBool(lpData, FALSE);
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return ERROR_SUCCESS;
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} else if (!strcmp(lpValueName, "Draw Cursor")) {
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ReturnRegistryYESNOFromBool(lpData, config.GetInt(_T("DrawCursor"), 1));
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return ERROR_SUCCESS;
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} else if (!strcmp(lpValueName, "savepath")) {
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// If enabled, return a safe %APPDATA% based save location rather than its default
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// "C:\Program Files" location
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if (config.GetInt(_T("RedirectSaveData"))) {
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// Generate directory
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TCHAR save_path[MAX_PATH];
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if (GetSafeLEGOIslandSavePath(save_path)) {
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strcpy((char*)lpData, save_path);
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return ERROR_SUCCESS;
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} else {
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MessageBoxA(isleWindow, "Failed to redirect save path. Default will be used instead.", 0, 0);
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}
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}
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} else if (!strcmp(lpValueName, "diskpath") || !strcmp(lpValueName, "cdpath")) {
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// Pass through
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} else {
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printf("Passed through requested registry key \"%s\"\n", lpValueName);
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}
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// Pass these through
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return RegQueryValueExA(hKey, lpValueName, lpReserved, lpType, lpData, lpcbData);
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}
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void WINAPI InterceptSleep(DWORD dwMilliseconds)
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{
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// Do nothing
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std::string fps_behavior = config.GetString(_T("FPSLimit"));
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// If uncapped, do nothing
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if (fps_behavior != "Uncapped") {
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// If not default, pass through new FPS
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if (fps_behavior == "Limited") {
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dwMilliseconds = 1000.0f / config.GetFloat(_T("CustomFPS"));
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}
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Sleep(dwMilliseconds);
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}
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}
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LPDIRECT3DRMVIEWPORT last_viewport = NULL;
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D3DVALUE last_fov = 0.0f;
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typedef HRESULT (WINAPI *d3drmViewportSetFieldFunction)(LPDIRECT3DRMVIEWPORT viewport, D3DVALUE field);
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d3drmViewportSetFieldFunction d3drmViewportSetFieldOriginal = NULL;
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HRESULT WINAPI InterceptD3DRMViewportSetField(LPDIRECT3DRMVIEWPORT viewport, D3DVALUE field)
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{
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last_viewport = viewport;
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last_fov = field;
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return d3drmViewportSetFieldOriginal(viewport, field);
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}
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typedef HRESULT (WINAPI *d3drmCreateViewportFunction)(LPDIRECT3DRM d3drm, LPDIRECT3DRMDEVICE device, LPDIRECT3DRMFRAME frame, DWORD x, DWORD y, DWORD w, DWORD h, LPDIRECT3DRMVIEWPORT *viewport);
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d3drmCreateViewportFunction d3drmCreateViewportOriginal = NULL;
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HRESULT WINAPI InterceptD3DRMCreateViewport(LPDIRECT3DRM d3drm, LPDIRECT3DRMDEVICE device, LPDIRECT3DRMFRAME frame, DWORD x, DWORD y, DWORD w, DWORD h, LPDIRECT3DRMVIEWPORT *viewport)
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{
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HRESULT res = d3drmCreateViewportOriginal(d3drm, device, frame, x, y, w, h, viewport);
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if (res == DD_OK) {
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if (!d3drmViewportSetFieldOriginal) {
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d3drmViewportSetFieldOriginal = (d3drmViewportSetFieldFunction)OverwriteVirtualTable(*viewport, 0x10, (LPVOID)InterceptD3DRMViewportSetField);
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}
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}
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return res;
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}
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d3drmCreateFunction d3drmCreateOriginal = NULL;
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HRESULT WINAPI InterceptDirect3DRMCreate(LPDIRECT3DRM FAR *lplpDirect3DRM)
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{
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HRESULT result = d3drmCreateOriginal(lplpDirect3DRM);
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if (result == DD_OK) {
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if (!d3drmCreateViewportOriginal) {
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d3drmCreateViewportOriginal = (d3drmCreateViewportFunction)OverwriteVirtualTable(*lplpDirect3DRM, 0x38, (LPVOID)InterceptD3DRMCreateViewport);
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}
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}
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return result;
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}
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#ifndef WM_MOUSEWHEEL
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#define WM_MOUSEWHEEL 0x020A
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#endif
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#ifndef WHEEL_DELTA
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#define WHEEL_DELTA 120
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#endif
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WNDPROC originalWndProc = NULL;
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LRESULT CALLBACK InterceptWindowProc(HWND hwnd, UINT uMsg, WPARAM wParam, LPARAM lParam)
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{
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if (uMsg == WM_MOUSEWHEEL) {
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SHORT distance = HIWORD(wParam);
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distance /= WHEEL_DELTA;
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float multiplier = 0.005 * distance;
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InterceptD3DRMViewportSetField(last_viewport, last_fov + multiplier);
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return 0;
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}
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return originalWndProc(hwnd, uMsg, wParam, lParam);
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}
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ATOM WINAPI InterceptRegisterClassA(const WNDCLASSA *c)
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{
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WNDCLASSA copy = *c;
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originalWndProc = copy.lpfnWndProc;
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copy.lpfnWndProc = InterceptWindowProc;
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return RegisterClassA(©);
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}
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typedef HRESULT (WINAPI *dsCreateSoundBufferFunction)(LPDIRECTSOUND lpDS, LPCDSBUFFERDESC desc, LPDIRECTSOUNDBUFFER *buffer, LPUNKNOWN unk);
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dsCreateSoundBufferFunction dsCreateSoundBufferOriginal = NULL;
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HRESULT WINAPI InterceptDirectSoundCreateSoundBuffer(LPDIRECTSOUND lpDS, LPCDSBUFFERDESC desc, LPDIRECTSOUNDBUFFER *buffer, LPUNKNOWN unk)
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{
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DSBUFFERDESC copy = *desc;
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if (config.GetInt(_T("StayActiveWhenDefocused")) && !(copy.dwFlags & DSBCAPS_PRIMARYBUFFER)) {
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copy.dwFlags |= DSBCAPS_GLOBALFOCUS;
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}
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return dsCreateSoundBufferOriginal(lpDS, ©, buffer, unk);
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}
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dsCreateFunction dsCreateOriginal = NULL;
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HRESULT WINAPI InterceptDirectSoundCreate(LPGUID lpGuid, LPDIRECTSOUND* ppDS, LPUNKNOWN pUnkOuter )
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{
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HRESULT res = dsCreateOriginal(lpGuid, ppDS, pUnkOuter);
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if (res == DD_OK) {
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if (!dsCreateSoundBufferOriginal) {
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dsCreateSoundBufferOriginal = (dsCreateSoundBufferFunction)OverwriteVirtualTable(*ppDS, 0x3, (LPVOID)InterceptDirectSoundCreateSoundBuffer);
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}
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}
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return res;
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}
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SHORT WINAPI InterceptGetAsyncKeyState(int vKey)
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{
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if (config.GetInt("UseWASD")) {
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switch (vKey) {
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case VK_UP:
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vKey = 'W';
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break;
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case VK_LEFT:
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vKey = 'A';
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break;
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case VK_DOWN:
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vKey = 'S';
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break;
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case VK_RIGHT:
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vKey = 'D';
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break;
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case 'W':
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vKey = VK_UP;
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break;
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case 'A':
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vKey = VK_LEFT;
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break;
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case 'S':
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vKey = VK_DOWN;
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break;
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case 'D':
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vKey = VK_RIGHT;
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break;
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}
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}
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return GetAsyncKeyState(vKey);
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}
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typedef HRESULT (WINAPI *dinputGetDeviceStateFunction)(LPDIRECTINPUTDEVICEA lpDevice, DWORD cbData, LPVOID lpvData);
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dinputGetDeviceStateFunction dinputGetDeviceStateOriginal = NULL;
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HRESULT WINAPI InterceptDirectInputGetDeviceStateA(LPDIRECTINPUTDEVICEA lpDevice, DWORD cbData, LPVOID lpvData)
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{
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HRESULT res = dinputGetDeviceStateOriginal(lpDevice, cbData, lpvData);
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if (config.GetInt("UseWASD") && res == DD_OK) {
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if (cbData == 256) {
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unsigned char *keys = (unsigned char *)lpvData;
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// Swap state of WASD with arrow keys
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std::swap(keys[DIK_W], keys[DIK_UP]);
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std::swap(keys[DIK_A], keys[DIK_LEFT]);
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std::swap(keys[DIK_S], keys[DIK_DOWN]);
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std::swap(keys[DIK_D], keys[DIK_RIGHT]);
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}
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}
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return res;
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}
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typedef HRESULT (WINAPI *dinputCreateDeviceFunction)(LPDIRECTINPUTA lpDI, REFGUID, LPDIRECTINPUTDEVICEA *, LPUNKNOWN);
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dinputCreateDeviceFunction dinputCreateDeviceOriginal = NULL;
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HRESULT WINAPI InterceptDirectInputCreateDeviceA(LPDIRECTINPUTA lpDI, REFGUID guid, LPDIRECTINPUTDEVICEA *ppDevice, LPUNKNOWN unk)
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{
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HRESULT res = dinputCreateDeviceOriginal(lpDI, guid, ppDevice, unk);
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if (res == DD_OK) {
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if (!dinputGetDeviceStateOriginal) {
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dinputGetDeviceStateOriginal = (dinputGetDeviceStateFunction)OverwriteVirtualTable(*ppDevice, 0x9, (LPVOID)InterceptDirectInputGetDeviceStateA);
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}
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}
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return res;
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}
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dinputCreateFunction dinputCreateOriginal = NULL;
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HRESULT WINAPI InterceptDirectInputCreateA(HINSTANCE hinst, DWORD dwVersion, LPDIRECTINPUTA *ppDI, LPUNKNOWN punkOuter)
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{
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HRESULT res = dinputCreateOriginal(hinst, dwVersion, ppDI, punkOuter);
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if (res == DD_OK) {
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if (!dinputCreateDeviceOriginal) {
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dinputCreateDeviceOriginal = (dinputCreateDeviceFunction)OverwriteVirtualTable(*ppDI, 0x3, (LPVOID)InterceptDirectInputCreateDeviceA);
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}
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}
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return res;
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}
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