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710 lines
16 KiB
710 lines
16 KiB
/*++
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Copyright (c) 1997 Microsoft Corporation
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Module Name:
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defer.c
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Abstract:
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This module implements deferred initialization, code that must run only
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after WINNT32 has obtained source directories.
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Author:
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Jim Schmidt (jimschm) 08-Jan-1998
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Revision History:
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jimschm 23-Sep-1998 InitNtEnvironment move
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--*/
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#include "pch.h"
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#include "init9xp.h"
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#include "ntverp.h"
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//
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// Local prototypes
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//
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HWND
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pFindProcessWindow (
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VOID
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);
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BOOL
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pGetProfilesDirectory (
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OUT PTSTR Path, OPTIONAL
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IN OUT PDWORD Size
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);
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INT
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pGetProcessorSpeed (
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OUT PTSTR *Family
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);
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BOOL
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pReloadWin95upgInf (
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VOID
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)
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{
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if (g_Win95UpgInf != INVALID_HANDLE_VALUE) {
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InfCloseInfFile (g_Win95UpgInf);
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g_Win95UpgInf = INVALID_HANDLE_VALUE;
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}
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MYASSERT (g_Win95UpgInfFile);
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g_Win95UpgInf = InfOpenInfFile (g_Win95UpgInfFile);
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return g_Win95UpgInf != INVALID_HANDLE_VALUE;
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}
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//
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// Implementation
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//
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BOOL
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pPutBootFileInUninstallTempDir (
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IN PCTSTR SrcFileName,
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IN PCTSTR DestFileName OPTIONAL
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)
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{
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PCTSTR src;
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PCTSTR dest;
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UINT rc = ERROR_SUCCESS;
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DWORD attribs;
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src = JoinPaths (g_BootDrivePath, SrcFileName);
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dest = JoinPaths (g_TempDir, DestFileName ? DestFileName : SrcFileName);
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if (DoesFileExist (src)) {
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SetFileAttributes (dest, FILE_ATTRIBUTE_NORMAL);
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DeleteFile (dest);
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if (!CopyFile (src, dest, FALSE)) {
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DEBUGMSG ((DBG_ERROR, "Can't copy %s to %s", src, dest));
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rc = GetLastError();
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}
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}
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SetLastError (rc);
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return rc == ERROR_SUCCESS;
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}
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BOOL
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DeferredInit (
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IN HWND WizardPageHandle
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)
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/*++
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Routine Description:
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DeferredInit performs all initialization that requires the source directories
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to be provied by Windows NT. It runs after the user has selected the
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correct source directory, and WINNT32 has validated the choice.
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Arguments:
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WizardPageHandle - Specifies handle to wizard page and is used to display
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abnormal end popups.
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Return Value:
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TRUE if init succeeds, or FALSE if it fails. If FALSE is returned,
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Setup terminates without any popups.
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--*/
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{
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INT speed;
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PSTR family;
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MEMORYSTATUS memoryStatus;
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UINT index;
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TCHAR ProfileTemp[MAX_TCHAR_PATH];
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DWORD Size;
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BYTE bootSector[FAT_BOOT_SECTOR_SIZE];
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HANDLE fileHandle = INVALID_HANDLE_VALUE;
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DWORD dontCare;
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DWORD attribs;
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BOOL result = FALSE;
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TCHAR dest[MAX_TCHAR_PATH];
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HKEY key;
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LOG ((LOG_INFORMATION, "UpgradeModuleBuild: %u", VER_PRODUCTBUILD));
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__try {
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//
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// Update the list of INF modifications in %windir%\upginfs.
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//
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InitInfReplaceTable ();
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//
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// reload win95upg.inf if an update is available
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//
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if (g_UpginfsUpdated && *g_UpginfsUpdated) {
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if (!pReloadWin95upgInf ()) {
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LOG ((LOG_FATAL_ERROR, (PCSTR)MSG_WIN95UPG_RELOAD_FAILED, g_Win95UpgInfFile));
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__leave;
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}
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}
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//
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// Update the configuration settings (i.e. WINNT32 command line options)
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//
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if (!Cfg_InitializeUserOptions()) {
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if (!g_ConfigOptions.Help) {
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LOG ((LOG_FATAL_ERROR, (PCSTR)MSG_DEFERRED_INIT_FAILED_POPUP));
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}
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__leave;
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}
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//
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// Initialize safe/recovery mechanism
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//
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SafeModeInitialize (g_ConfigOptions.SafeMode);
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//
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// Initialize our fake NT environment block
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//
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InitNtEnvironment();
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//
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// Save parent window
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//
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g_ParentWndAlwaysValid = pFindProcessWindow();
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if (!g_ParentWndAlwaysValid) {
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DEBUGMSG ((DBG_WHOOPS, "Cannot find parent window handle!"));
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g_ParentWndAlwaysValid = GetParent(WizardPageHandle);
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}
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//
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// Make a symbol that is NULL in unattend mode, and a valid parent window
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// handle otherwise. This is used by migration DLLs and LOG functions.
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//
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g_ParentWnd = UNATTENDED() ? NULL : g_ParentWndAlwaysValid;
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LogReInit (&g_ParentWnd, NULL);
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//
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// Get information about the system we are running on...This can be very useful.
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//
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speed = pGetProcessorSpeed(&family);
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memoryStatus.dwLength = sizeof(MEMORYSTATUS);
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GlobalMemoryStatus(&memoryStatus);
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LOG((
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LOG_INFORMATION,
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"System Statistics:\n Family: %s\n Processor Speed: %u mhz\n Memory: %u bytes",
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family ? family : "Unknown",
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speed,
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memoryStatus.dwTotalPhys
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));
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if (!Cfg_CreateWorkDirectories()) {
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LOG ((LOG_FATAL_ERROR, (PCSTR)MSG_COULD_NOT_CREATE_DIRECTORY));
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__leave;
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}
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//
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// Start background copy thread
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//
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StartCopyThread();
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//
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// Get NT Profile dir.
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//
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Size = sizeof (ProfileTemp) / sizeof (ProfileTemp[0]);
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if (!pGetProfilesDirectory (ProfileTemp, &Size)) {
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LOG ((LOG_FATAL_ERROR, (PCSTR)MSG_DEFERRED_INIT_FAILED_POPUP));
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__leave;
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}
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//
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// replace any NT string env vars with actual values
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//
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ExpandNtEnvironmentVariables (ProfileTemp, ProfileTemp, sizeof (ProfileTemp));
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g_ProfileDirNt = PoolMemDuplicateString (g_GlobalPool, ProfileTemp);
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DEBUGMSG ((DBG_NAUSEA, "NT profile dir: %s", g_ProfileDirNt));
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//
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// Put current user name in the setup key
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//
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Size = ARRAYSIZE (ProfileTemp);
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if (GetUserName (ProfileTemp, &Size)) {
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key = CreateRegKeyStr (S_WIN9XUPG_KEY);
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if (key) {
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RegSetValueEx (
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key,
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S_CURRENT_USER_VALUENAME,
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0,
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REG_SZ,
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(PBYTE) ProfileTemp,
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SizeOfString (ProfileTemp)
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);
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CloseRegKey (key);
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}
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}
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//
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// Open txtsetup.sif
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//
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if (g_TxtSetupSif == INVALID_HANDLE_VALUE) {
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g_TxtSetupSif = InfOpenInfInAllSources (S_TXTSETUP_SIF);
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if (g_TxtSetupSif == INVALID_HANDLE_VALUE) {
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LOG ((LOG_FATAL_ERROR, (PCSTR)MSG_TXTSETUP_SIF_ERROR));
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__leave;
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}
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}
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if (!BeginMigrationDllProcessing()) {
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DEBUGMSG ((DBG_WARNING, "BeginMigrationDllProcessing returned FALSE"));
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__leave;
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}
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if (!InitAccessibleDrives()) {
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__leave;
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}
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//
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// exclude all of the directories in source directories and optional directories from processing.
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//
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for (index = 0; index < SOURCEDIRECTORYCOUNT(); index++) {
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ExcludePath (g_ExclusionValue, SOURCEDIRECTORY(index));
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}
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for (index = 0; index < OPTIONALDIRECTORYCOUNT(); index++) {
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ExcludePath (g_ExclusionValue, OPTIONALDIRECTORY(index));
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}
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//
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// also exclude the directory used by Dynamic Setup
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//
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if (g_DynamicUpdateLocalDir) {
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ExcludePath (g_ExclusionValue, g_DynamicUpdateLocalDir);
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}
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//
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// Put original boot.ini, bootfont.bin, ntdetect.com, ntldr and boot
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// sector in setup temp dir
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//
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if (g_BootDrivePath && g_TempDir) {
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if (!pPutBootFileInUninstallTempDir (S_BOOTINI, S_BOOTINI_BACKUP)) {
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__leave;
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}
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if (!pPutBootFileInUninstallTempDir (S_BOOTFONT_BIN, S_BOOTFONT_BACKUP)) {
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__leave;
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}
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if (!pPutBootFileInUninstallTempDir (S_NTDETECT, S_NTDETECT_BACKUP)) {
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__leave;
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}
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if (!pPutBootFileInUninstallTempDir (S_NTLDR, S_NTLDR_BACKUP)) {
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__leave;
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}
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if (ReadDiskSectors (
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*g_BootDrive,
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FAT_STARTING_SECTOR,
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FAT_BOOT_SECTOR_COUNT,
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FAT_BOOT_SECTOR_SIZE,
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bootSector
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)) {
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StringCopy (dest, g_TempDir);
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StringCopy (AppendWack (dest), S_BOOTSECT_BACKUP);
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fileHandle = CreateFile (
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dest,
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GENERIC_WRITE,
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0,
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NULL,
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CREATE_ALWAYS,
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FILE_ATTRIBUTE_NORMAL,
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NULL
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);
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if (fileHandle == INVALID_HANDLE_VALUE) {
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DEBUGMSG ((DBG_ERROR, "Can't create %s", dest));
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__leave;
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}
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if (!WriteFile (fileHandle, bootSector, sizeof (bootSector), &dontCare, NULL)) {
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DEBUGMSG ((DBG_ERROR, "Can't write boot sector to %s", dest));
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__leave;
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}
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}
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} else {
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MYASSERT (FALSE);
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__leave;
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}
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result = TRUE;
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}
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__finally {
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if (fileHandle != INVALID_HANDLE_VALUE) {
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CloseHandle (fileHandle);
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}
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}
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return result;
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}
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BOOL
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pGetProfilesDirectory (
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OUT PTSTR Path, OPTIONAL
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IN OUT PDWORD Size
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)
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/*++
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Routine Description:
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pGetProfileDirectory emulates the NT 5 API GetProfileDirectory. It looks in
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hivesft.inf for Winlogon's ProfilesDirectory key. If an override to the NT
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profile directory is given in the winnt.sif file, then the override is used
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instead.
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Arguments:
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Path - Receives the user profile path
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Size - Specifies the size of Path, in TCHAR characters. Receives the number
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of characters needed to hold the profile path.
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Return Value:
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TRUE if the API succeeds, or FALSE if an unexpected error occurs.
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--*/
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{
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TCHAR Buffer[MAX_TCHAR_PATH];
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PCTSTR p;
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BOOL b;
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DWORD SizeNeeded;
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PCTSTR EndOfString;
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PCTSTR UserProfiles;
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if (!Size) {
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return FALSE;
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}
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MYASSERT (g_WinDir);
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MYASSERT (g_SourceDirectoryCountFromWinnt32);
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//
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// Look in answer file for setting, use it if it exists
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//
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Buffer[0] = 0;
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if (g_UnattendScriptFile && *g_UnattendScriptFile) {
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GetPrivateProfileString (
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S_GUIUNATTENDED,
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S_PROFILEDIR,
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S_EMPTY,
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Buffer,
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MAX_TCHAR_PATH,
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*g_UnattendScriptFile
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);
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}
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if (!(*Buffer)) {
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//
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// Default to %systemroot%\Documents and Settings
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//
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UserProfiles = GetStringResource (MSG_USER_PROFILE_ROOT);
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MYASSERT (UserProfiles);
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StringCopy (Buffer, UserProfiles);
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FreeStringResource (UserProfiles);
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}
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Buffer[MAX_TCHAR_PATH - 1] = 0; // user can pass in anything via answer file!
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SizeNeeded = ByteCount (Buffer) / sizeof (TCHAR);
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if (Path) {
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b = *Size >= SizeNeeded;
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if (*Size) {
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EndOfString = GetEndOfString (Buffer);
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p = min (EndOfString, Buffer + *Size);
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StringCopyAB (Path, Buffer, p);
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}
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} else {
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b = TRUE;
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}
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*Size = SizeNeeded;
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return b;
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}
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typedef struct {
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DWORD ProcessId;
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HWND hwnd;
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} FINDPROCESSWINDOW, *PFINDPROCESSWINDOW;
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BOOL
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CALLBACK
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pFindProcessWindowCallback (
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HWND hwnd,
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LPARAM lParam
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)
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/*++
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Routine Description:
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pFindProcessWindowCallback is called by the window enumeration started by
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pFindProcessWindow. If the process ID of the window matches our process
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ID, then the enumeration is stopped so the proper window handle can
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be returned by pFindProcessWindow.
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Arguments:
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hwnd - Specifies the current enumerated window handle
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lParam - Specifies the FINDPROCESSWINDOW structure allocated by
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pFindProcessWindow
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Return Value:
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TRUE if enuemration should continue, or FALSE if it should stop.
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--*/
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{
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PFINDPROCESSWINDOW p;
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DWORD ProcessId = 0;
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p = (PFINDPROCESSWINDOW) lParam;
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GetWindowThreadProcessId (hwnd, &ProcessId);
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if (ProcessId == p->ProcessId) {
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p->hwnd = hwnd;
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return FALSE;
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}
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return TRUE;
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}
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HWND
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pFindProcessWindow (
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VOID
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)
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/*++
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Routine Description:
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pFindProcessWindow enumerates all windows and returns the first one that
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the current process owns. There should only be one, so the end result
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is a handle to the main window of the process.
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Arguments:
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none
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Return Value:
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A handle to the process main window, or NULL if no windows exist for
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the process.
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--*/
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{
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FINDPROCESSWINDOW Enum;
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ZeroMemory (&Enum, sizeof (Enum));
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Enum.ProcessId = GetCurrentProcessId();
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EnumWindows (pFindProcessWindowCallback, (LPARAM) &Enum);
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return Enum.hwnd;
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}
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|
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INT
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pGetProcessorSpeed (
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OUT PTSTR *Family
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)
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|
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/*++
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|
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Routine Description:
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pGetProcessorSpeed returns the speed in MHz of the computer, and identifies
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the processor if it is a Pentium or better. Code from Todd Laney (toddla).
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Arguments:
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Family - Receives a pointer to the name of the processor family
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Return Value:
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The speed of the processor, in MHz.
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--*/
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{
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SYSTEM_INFO si;
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__int64 start, end, freq;
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INT flags,family;
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INT time;
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INT clocks;
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DWORD oldclass;
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HANDLE hprocess;
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INT familyIndex = 0;
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static PTSTR familyStrings[] = {
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"Unknown (0)",
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"Unknown (1)",
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"Unknown (2)",
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"x386",
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"x486",
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"Pentium",
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"Pentium Pro",
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"Pentium II (?)",
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"Unknown..."
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};
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*Family = NULL;
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ZeroMemory(&si, sizeof(si));
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GetSystemInfo(&si);
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//Set the family. If wProcessorLevel is not specified, dig it out of dwProcessorType
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//Because wProcessor level is not implemented on Win95
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if (si.wProcessorLevel) {
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family = si.wProcessorLevel;
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} else {
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family = 0;
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//Ok, we're on Win95
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switch (si.dwProcessorType) {
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case PROCESSOR_INTEL_386:
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familyIndex=3;
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break;
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case PROCESSOR_INTEL_486:
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familyIndex=4;
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break;
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default:
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familyIndex=0;
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break;
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}
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}
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//
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// make sure this is a INTEL Pentium (or clone) or higher.
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//
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if (si.wProcessorArchitecture != PROCESSOR_ARCHITECTURE_INTEL)
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return 0;
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|
|
if (si.dwProcessorType < PROCESSOR_INTEL_PENTIUM)
|
|
return 0;
|
|
|
|
//
|
|
// see if this chip supports rdtsc before using it.
|
|
//
|
|
__try
|
|
{
|
|
_asm
|
|
{
|
|
mov eax,1
|
|
_emit 00Fh ;; CPUID
|
|
_emit 0A2h
|
|
mov flags,edx
|
|
mov family,eax
|
|
}
|
|
}
|
|
__except(1)
|
|
{
|
|
flags = 0;
|
|
}
|
|
|
|
//check for support of CPUID and fail
|
|
if (!(flags & 0x10))
|
|
return 0;
|
|
|
|
//If we don't have a family, set it now
|
|
//Family is bits 11:8 of eax from CPU, with eax=1
|
|
if (!familyIndex) {
|
|
familyIndex=(family & 0x0F00) >> 8;
|
|
}
|
|
|
|
hprocess = GetCurrentProcess();
|
|
oldclass = GetPriorityClass(hprocess);
|
|
SetPriorityClass(hprocess, REALTIME_PRIORITY_CLASS);
|
|
Sleep(10);
|
|
|
|
QueryPerformanceFrequency((LARGE_INTEGER*)&freq);
|
|
QueryPerformanceCounter((LARGE_INTEGER*)&start);
|
|
_asm
|
|
{
|
|
_emit 0Fh ;; RDTSC
|
|
_emit 31h
|
|
mov ecx,100000
|
|
x: dec ecx
|
|
jnz x
|
|
mov ebx,eax
|
|
_emit 0Fh ;; RDTSC
|
|
_emit 31h
|
|
sub eax,ebx
|
|
mov dword ptr clocks[0],eax
|
|
}
|
|
QueryPerformanceCounter((LARGE_INTEGER*)&end);
|
|
SetPriorityClass(hprocess, oldclass);
|
|
|
|
time = MulDiv((int)(end-start),1000000,(int)freq);
|
|
|
|
if (familyIndex > 7) {
|
|
familyIndex = 7;
|
|
}
|
|
|
|
*Family = familyStrings[familyIndex];
|
|
|
|
return (clocks + time/2) / time;
|
|
}
|
|
|