mirror of
https://github.com/reactos/reactos.git
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767 lines
20 KiB
C
767 lines
20 KiB
C
/*
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* PROJECT: ReactOS Service Control Manager
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* LICENSE: GPL - See COPYING in the top level directory
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* FILE: base/system/services/config.c
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* PURPOSE: Service configuration interface
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* COPYRIGHT: Copyright 2005 Eric Kohl
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*
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*/
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/* INCLUDES *****************************************************************/
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#include "services.h"
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#include <ntsecapi.h>
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#define NDEBUG
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#include <debug.h>
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struct ustring
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{
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DWORD Length;
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DWORD MaximumLength;
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unsigned char *Buffer;
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};
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NTSTATUS
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WINAPI
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SystemFunction005(
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const struct ustring *in,
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const struct ustring *key,
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struct ustring *out);
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NTSTATUS
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WINAPI
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SystemFunction028(
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IN PVOID ContextHandle,
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OUT LPBYTE SessionKey);
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/* FUNCTIONS *****************************************************************/
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DWORD
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ScmOpenServiceKey(LPWSTR lpServiceName,
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REGSAM samDesired,
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PHKEY phKey)
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{
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HKEY hServicesKey = NULL;
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DWORD dwError;
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*phKey = NULL;
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dwError = RegOpenKeyExW(HKEY_LOCAL_MACHINE,
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L"System\\CurrentControlSet\\Services",
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0,
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KEY_READ,
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&hServicesKey);
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if (dwError != ERROR_SUCCESS)
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return dwError;
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dwError = RegOpenKeyExW(hServicesKey,
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lpServiceName,
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0,
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samDesired,
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phKey);
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RegCloseKey(hServicesKey);
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return dwError;
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}
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DWORD
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ScmCreateServiceKey(LPCWSTR lpServiceName,
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REGSAM samDesired,
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PHKEY phKey)
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{
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HKEY hServicesKey = NULL;
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DWORD dwDisposition;
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DWORD dwError;
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*phKey = NULL;
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dwError = RegOpenKeyExW(HKEY_LOCAL_MACHINE,
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L"System\\CurrentControlSet\\Services",
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0,
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KEY_READ | KEY_CREATE_SUB_KEY,
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&hServicesKey);
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if (dwError != ERROR_SUCCESS)
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return dwError;
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dwError = RegCreateKeyExW(hServicesKey,
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lpServiceName,
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0,
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NULL,
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REG_OPTION_NON_VOLATILE,
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samDesired,
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NULL,
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phKey,
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&dwDisposition);
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#if 0
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if ((dwError == ERROR_SUCCESS) &&
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(dwDisposition == REG_OPENED_EXISTING_KEY))
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{
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RegCloseKey(*phKey);
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*phKey = NULL;
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dwError = ERROR_SERVICE_EXISTS;
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}
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#endif
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RegCloseKey(hServicesKey);
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return dwError;
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}
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DWORD
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ScmWriteDependencies(HKEY hServiceKey,
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LPCWSTR lpDependencies,
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DWORD dwDependenciesLength)
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{
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DWORD dwError = ERROR_SUCCESS;
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SIZE_T cchGroupLength = 0;
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SIZE_T cchServiceLength = 0;
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SIZE_T cchLength;
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LPWSTR lpGroupDeps;
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LPWSTR lpServiceDeps;
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LPCWSTR lpSrc;
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LPWSTR lpDst;
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if (*lpDependencies == 0)
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{
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RegDeleteValueW(hServiceKey,
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L"DependOnService");
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RegDeleteValueW(hServiceKey,
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L"DependOnGroup");
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}
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else
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{
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lpGroupDeps = HeapAlloc(GetProcessHeap(),
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HEAP_ZERO_MEMORY,
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(dwDependenciesLength + 2) * sizeof(WCHAR));
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if (lpGroupDeps == NULL)
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return ERROR_NOT_ENOUGH_MEMORY;
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lpSrc = lpDependencies;
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lpDst = lpGroupDeps;
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while (*lpSrc != 0)
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{
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cchLength = wcslen(lpSrc) + 1;
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if (*lpSrc == SC_GROUP_IDENTIFIERW)
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{
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lpSrc++;
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cchLength--;
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cchGroupLength += cchLength;
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wcscpy(lpDst, lpSrc);
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lpDst = lpDst + cchLength;
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}
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lpSrc = lpSrc + cchLength;
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}
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*lpDst = 0;
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lpDst++;
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cchGroupLength++;
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lpSrc = lpDependencies;
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lpServiceDeps = lpDst;
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while (*lpSrc != 0)
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{
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cchLength = wcslen(lpSrc) + 1;
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if (*lpSrc != SC_GROUP_IDENTIFIERW)
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{
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cchServiceLength += cchLength;
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wcscpy(lpDst, lpSrc);
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lpDst = lpDst + cchLength;
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}
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lpSrc = lpSrc + cchLength;
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}
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*lpDst = 0;
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cchServiceLength++;
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if (cchGroupLength > 1)
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{
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dwError = RegSetValueExW(hServiceKey,
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L"DependOnGroup",
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0,
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REG_MULTI_SZ,
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(LPBYTE)lpGroupDeps,
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(DWORD)(cchGroupLength * sizeof(WCHAR)));
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}
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else
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{
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RegDeleteValueW(hServiceKey,
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L"DependOnGroup");
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}
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if (dwError == ERROR_SUCCESS)
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{
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if (cchServiceLength > 1)
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{
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dwError = RegSetValueExW(hServiceKey,
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L"DependOnService",
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0,
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REG_MULTI_SZ,
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(LPBYTE)lpServiceDeps,
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(DWORD)(cchServiceLength * sizeof(WCHAR)));
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}
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else
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{
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RegDeleteValueW(hServiceKey,
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L"DependOnService");
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}
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}
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HeapFree(GetProcessHeap(), 0, lpGroupDeps);
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}
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return dwError;
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}
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DWORD
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ScmMarkServiceForDelete(PSERVICE pService)
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{
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HKEY hServiceKey = NULL;
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DWORD dwValue = 1;
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DWORD dwError;
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DPRINT("ScmMarkServiceForDelete() called\n");
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dwError = ScmOpenServiceKey(pService->lpServiceName,
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KEY_WRITE,
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&hServiceKey);
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if (dwError != ERROR_SUCCESS)
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return dwError;
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dwError = RegSetValueExW(hServiceKey,
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L"DeleteFlag",
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0,
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REG_DWORD,
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(LPBYTE)&dwValue,
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sizeof(DWORD));
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RegCloseKey(hServiceKey);
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return dwError;
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}
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BOOL
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ScmIsDeleteFlagSet(HKEY hServiceKey)
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{
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DWORD dwError;
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DWORD dwType;
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DWORD dwFlag;
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DWORD dwSize = sizeof(DWORD);
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dwError = RegQueryValueExW(hServiceKey,
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L"DeleteFlag",
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0,
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&dwType,
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(LPBYTE)&dwFlag,
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&dwSize);
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return (dwError == ERROR_SUCCESS);
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}
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DWORD
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ScmReadString(HKEY hServiceKey,
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LPCWSTR lpValueName,
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LPWSTR *lpValue)
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{
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DWORD dwError = 0;
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DWORD dwSize = 0;
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DWORD dwType = 0;
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LPWSTR ptr = NULL;
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LPWSTR expanded = NULL;
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*lpValue = NULL;
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dwError = RegQueryValueExW(hServiceKey,
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lpValueName,
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0,
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&dwType,
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NULL,
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&dwSize);
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if (dwError != ERROR_SUCCESS)
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return dwError;
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ptr = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, dwSize);
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if (ptr == NULL)
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return ERROR_NOT_ENOUGH_MEMORY;
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dwError = RegQueryValueExW(hServiceKey,
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lpValueName,
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0,
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&dwType,
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(LPBYTE)ptr,
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&dwSize);
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if (dwError != ERROR_SUCCESS)
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{
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HeapFree(GetProcessHeap(), 0, ptr);
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return dwError;
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}
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if (dwType == REG_EXPAND_SZ)
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{
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/* Expand the value... */
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dwSize = ExpandEnvironmentStringsW(ptr, NULL, 0);
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if (dwSize > 0)
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{
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expanded = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, dwSize * sizeof(WCHAR));
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if (expanded)
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{
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if (dwSize == ExpandEnvironmentStringsW(ptr, expanded, dwSize))
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{
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*lpValue = expanded;
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dwError = ERROR_SUCCESS;
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}
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else
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{
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dwError = GetLastError();
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HeapFree(GetProcessHeap(), 0, expanded);
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}
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}
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else
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{
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dwError = ERROR_NOT_ENOUGH_MEMORY;
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}
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}
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else
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{
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dwError = GetLastError();
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}
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HeapFree(GetProcessHeap(), 0, ptr);
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}
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else
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{
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*lpValue = ptr;
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}
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return dwError;
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}
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DWORD
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ScmReadDependencies(HKEY hServiceKey,
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LPWSTR *lpDependencies,
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DWORD *lpdwDependenciesLength)
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{
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LPWSTR lpGroups = NULL;
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LPWSTR lpServices = NULL;
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SIZE_T cchGroupsLength = 0;
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SIZE_T cchServicesLength = 0;
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LPWSTR lpSrc;
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LPWSTR lpDest;
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SIZE_T cchLength;
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SIZE_T cchTotalLength;
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*lpDependencies = NULL;
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*lpdwDependenciesLength = 0;
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/* Read the dependency values */
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ScmReadString(hServiceKey,
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L"DependOnGroup",
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&lpGroups);
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ScmReadString(hServiceKey,
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L"DependOnService",
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&lpServices);
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/* Leave, if there are no dependencies */
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if (lpGroups == NULL && lpServices == NULL)
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return ERROR_SUCCESS;
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/* Determine the total buffer size for the dependencies */
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if (lpGroups)
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{
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DPRINT("Groups:\n");
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lpSrc = lpGroups;
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while (*lpSrc != 0)
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{
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DPRINT(" %S\n", lpSrc);
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cchLength = wcslen(lpSrc) + 1;
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cchGroupsLength += cchLength + 1;
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lpSrc = lpSrc + cchLength;
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}
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}
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if (lpServices)
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{
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DPRINT("Services:\n");
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lpSrc = lpServices;
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while (*lpSrc != 0)
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{
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DPRINT(" %S\n", lpSrc);
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cchLength = wcslen(lpSrc) + 1;
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cchServicesLength += cchLength;
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lpSrc = lpSrc + cchLength;
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}
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}
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cchTotalLength = cchGroupsLength + cchServicesLength + 1;
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DPRINT("cchTotalLength: %lu\n", cchTotalLength);
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/* Allocate the common buffer for the dependencies */
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*lpDependencies = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, cchTotalLength * sizeof(WCHAR));
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if (*lpDependencies == NULL)
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{
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if (lpGroups)
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HeapFree(GetProcessHeap(), 0, lpGroups);
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if (lpServices)
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HeapFree(GetProcessHeap(), 0, lpServices);
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return ERROR_NOT_ENOUGH_MEMORY;
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}
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/* Return the allocated buffer length in characters */
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*lpdwDependenciesLength = (DWORD)cchTotalLength;
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/* Copy the service dependencies into the common buffer */
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lpDest = *lpDependencies;
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if (lpServices)
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{
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memcpy(lpDest,
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lpServices,
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cchServicesLength * sizeof(WCHAR));
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lpDest = lpDest + cchServicesLength;
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}
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/* Copy the group dependencies into the common buffer */
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if (lpGroups)
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{
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lpSrc = lpGroups;
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while (*lpSrc != 0)
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{
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cchLength = wcslen(lpSrc) + 1;
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*lpDest = SC_GROUP_IDENTIFIERW;
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lpDest++;
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wcscpy(lpDest, lpSrc);
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lpDest = lpDest + cchLength;
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lpSrc = lpSrc + cchLength;
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}
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}
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/* Free the temporary buffers */
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if (lpGroups)
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HeapFree(GetProcessHeap(), 0, lpGroups);
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if (lpServices)
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HeapFree(GetProcessHeap(), 0, lpServices);
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return ERROR_SUCCESS;
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}
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DWORD
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ScmSetServicePassword(
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IN PCWSTR pszServiceName,
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IN PCWSTR pszPassword)
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{
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OBJECT_ATTRIBUTES ObjectAttributes;
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LSA_HANDLE PolicyHandle = NULL;
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UNICODE_STRING ServiceName = {0, 0, NULL};
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UNICODE_STRING Password;
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NTSTATUS Status;
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DWORD dwError = ERROR_SUCCESS;
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RtlZeroMemory(&ObjectAttributes, sizeof(OBJECT_ATTRIBUTES));
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Status = LsaOpenPolicy(NULL,
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&ObjectAttributes,
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POLICY_CREATE_SECRET,
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&PolicyHandle);
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if (!NT_SUCCESS(Status))
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return RtlNtStatusToDosError(Status);
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ServiceName.Length = (wcslen(pszServiceName) + 4) * sizeof(WCHAR);
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ServiceName.MaximumLength = ServiceName.Length + sizeof(WCHAR);
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ServiceName.Buffer = HeapAlloc(GetProcessHeap(),
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HEAP_ZERO_MEMORY,
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ServiceName.MaximumLength);
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if (ServiceName.Buffer == NULL)
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return ERROR_NOT_ENOUGH_MEMORY;
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wcscpy(ServiceName.Buffer, L"_SC_");
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wcscat(ServiceName.Buffer, pszServiceName);
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RtlInitUnicodeString(&Password, pszPassword);
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Status = LsaStorePrivateData(PolicyHandle,
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&ServiceName,
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pszPassword ? &Password : NULL);
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if (!NT_SUCCESS(Status))
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{
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dwError = RtlNtStatusToDosError(Status);
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goto done;
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}
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done:
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if (ServiceName.Buffer != NULL)
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HeapFree(GetProcessHeap(), 0, ServiceName.Buffer);
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if (PolicyHandle != NULL)
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LsaClose(PolicyHandle);
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return dwError;
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}
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DWORD
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ScmWriteSecurityDescriptor(
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_In_ HKEY hServiceKey,
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_In_ PSECURITY_DESCRIPTOR pSecurityDescriptor)
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{
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HKEY hSecurityKey = NULL;
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DWORD dwDisposition;
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DWORD dwError;
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DPRINT("ScmWriteSecurityDescriptor(%p %p)\n", hServiceKey, pSecurityDescriptor);
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dwError = RegCreateKeyExW(hServiceKey,
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L"Security",
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0,
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NULL,
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REG_OPTION_NON_VOLATILE,
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KEY_SET_VALUE,
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NULL,
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&hSecurityKey,
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&dwDisposition);
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if (dwError != ERROR_SUCCESS)
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return dwError;
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dwError = RegSetValueExW(hSecurityKey,
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L"Security",
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0,
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REG_BINARY,
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(LPBYTE)pSecurityDescriptor,
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RtlLengthSecurityDescriptor(pSecurityDescriptor));
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RegCloseKey(hSecurityKey);
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return dwError;
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}
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DWORD
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ScmReadSecurityDescriptor(
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_In_ HKEY hServiceKey,
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_Out_ PSECURITY_DESCRIPTOR *ppSecurityDescriptor)
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{
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PSECURITY_DESCRIPTOR pRelativeSD = NULL;
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HKEY hSecurityKey = NULL;
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DWORD dwBufferLength = 0;
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DWORD dwType;
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DWORD dwError;
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DPRINT("ScmReadSecurityDescriptor(%p %p)\n", hServiceKey, ppSecurityDescriptor);
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*ppSecurityDescriptor = NULL;
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dwError = RegOpenKeyExW(hServiceKey,
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L"Security",
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0,
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KEY_QUERY_VALUE,
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&hSecurityKey);
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if (dwError != ERROR_SUCCESS)
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{
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DPRINT("RegOpenKeyExW() failed (Error %lu)\n", dwError);
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/* Do not fail if the Security key does not exist */
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if (dwError == ERROR_FILE_NOT_FOUND)
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dwError = ERROR_SUCCESS;
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goto done;
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}
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dwError = RegQueryValueExW(hSecurityKey,
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L"Security",
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0,
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&dwType,
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NULL,
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&dwBufferLength);
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if (dwError != ERROR_SUCCESS)
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{
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DPRINT("RegQueryValueExW() failed (Error %lu)\n", dwError);
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/* Do not fail if the Security value does not exist */
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if (dwError == ERROR_FILE_NOT_FOUND)
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dwError = ERROR_SUCCESS;
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goto done;
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}
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DPRINT("dwBufferLength: %lu\n", dwBufferLength);
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pRelativeSD = RtlAllocateHeap(RtlGetProcessHeap(),
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HEAP_ZERO_MEMORY,
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dwBufferLength);
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if (pRelativeSD == NULL)
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{
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return ERROR_OUTOFMEMORY;
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}
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|
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DPRINT("pRelativeSD: %lu\n", pRelativeSD);
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dwError = RegQueryValueExW(hSecurityKey,
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L"Security",
|
|
0,
|
|
&dwType,
|
|
(LPBYTE)pRelativeSD,
|
|
&dwBufferLength);
|
|
if (dwError != ERROR_SUCCESS)
|
|
{
|
|
goto done;
|
|
}
|
|
|
|
*ppSecurityDescriptor = pRelativeSD;
|
|
|
|
done:
|
|
if (dwError != ERROR_SUCCESS && pRelativeSD != NULL)
|
|
RtlFreeHeap(RtlGetProcessHeap(), 0, pRelativeSD);
|
|
|
|
if (hSecurityKey != NULL)
|
|
RegCloseKey(hSecurityKey);
|
|
|
|
return dwError;
|
|
}
|
|
|
|
|
|
DWORD
|
|
ScmDeleteRegKey(
|
|
_In_ HKEY hKey,
|
|
_In_ PCWSTR pszSubKey)
|
|
{
|
|
DWORD dwMaxSubkeyLen, dwMaxValueLen;
|
|
DWORD dwMaxLen, dwSize;
|
|
PWSTR pszName = NULL;
|
|
HKEY hSubKey;
|
|
DWORD dwError;
|
|
|
|
dwError = RegOpenKeyExW(hKey, pszSubKey, 0, KEY_READ, &hSubKey);
|
|
if (dwError != ERROR_SUCCESS)
|
|
return dwError;
|
|
|
|
/* Get maximum length of key and value names */
|
|
dwError = RegQueryInfoKeyW(hSubKey, NULL, NULL, NULL, NULL,
|
|
&dwMaxSubkeyLen, NULL, NULL, &dwMaxValueLen, NULL, NULL, NULL);
|
|
if (dwError != ERROR_SUCCESS)
|
|
goto done;
|
|
|
|
dwMaxSubkeyLen++;
|
|
dwMaxValueLen++;
|
|
dwMaxLen = max(dwMaxSubkeyLen, dwMaxValueLen);
|
|
|
|
/* Allocate the name buffer */
|
|
pszName = HeapAlloc(GetProcessHeap(), 0, dwMaxLen * sizeof(WCHAR));
|
|
if (pszName == NULL)
|
|
{
|
|
dwError = ERROR_NOT_ENOUGH_MEMORY;
|
|
goto done;
|
|
}
|
|
|
|
/* Recursively delete all the subkeys */
|
|
while (TRUE)
|
|
{
|
|
dwSize = dwMaxLen;
|
|
if (RegEnumKeyExW(hSubKey, 0, pszName, &dwSize,
|
|
NULL, NULL, NULL, NULL) != ERROR_SUCCESS)
|
|
{
|
|
break;
|
|
}
|
|
|
|
dwError = ScmDeleteRegKey(hSubKey, pszName);
|
|
if (dwError != ERROR_SUCCESS)
|
|
goto done;
|
|
}
|
|
|
|
done:
|
|
if (pszName != NULL)
|
|
HeapFree(GetProcessHeap(), 0, pszName);
|
|
|
|
RegCloseKey(hSubKey);
|
|
|
|
/* Finally delete the key */
|
|
if (dwError == ERROR_SUCCESS)
|
|
dwError = RegDeleteKeyW(hKey, pszSubKey);
|
|
|
|
return dwError;
|
|
}
|
|
|
|
|
|
DWORD
|
|
ScmDecryptPassword(
|
|
_In_ PBYTE pPassword,
|
|
_In_ DWORD dwPasswordSize,
|
|
_Out_ PWSTR *pClearTextPassword)
|
|
{
|
|
struct ustring inData, keyData, outData;
|
|
BYTE SessionKey[16];
|
|
PWSTR pBuffer;
|
|
NTSTATUS Status;
|
|
|
|
/* Get the session key */
|
|
Status = SystemFunction028(NULL,
|
|
SessionKey);
|
|
if (!NT_SUCCESS(Status))
|
|
{
|
|
DPRINT1("SystemFunction028 failed (Status 0x%08lx)\n", Status);
|
|
return RtlNtStatusToDosError(Status);
|
|
}
|
|
|
|
inData.Length = dwPasswordSize;
|
|
inData.MaximumLength = inData.Length;
|
|
inData.Buffer = pPassword;
|
|
|
|
keyData.Length = sizeof(SessionKey);
|
|
keyData.MaximumLength = keyData.Length;
|
|
keyData.Buffer = SessionKey;
|
|
|
|
outData.Length = 0;
|
|
outData.MaximumLength = 0;
|
|
outData.Buffer = NULL;
|
|
|
|
/* Get the required buffer size */
|
|
Status = SystemFunction005(&inData,
|
|
&keyData,
|
|
&outData);
|
|
if (Status != STATUS_BUFFER_TOO_SMALL)
|
|
{
|
|
DPRINT1("SystemFunction005 failed (Status 0x%08lx)\n", Status);
|
|
return RtlNtStatusToDosError(Status);
|
|
}
|
|
|
|
/* Allocate a buffer for the clear text password */
|
|
pBuffer = HeapAlloc(GetProcessHeap(), 0, outData.Length);
|
|
if (pBuffer == NULL)
|
|
return ERROR_OUTOFMEMORY;
|
|
|
|
outData.MaximumLength = outData.Length;
|
|
outData.Buffer = (unsigned char *)pBuffer;
|
|
|
|
/* Decrypt the password */
|
|
Status = SystemFunction005(&inData,
|
|
&keyData,
|
|
&outData);
|
|
if (!NT_SUCCESS(Status))
|
|
{
|
|
DPRINT1("SystemFunction005 failed (Status 0x%08lx)\n", Status);
|
|
HeapFree(GetProcessHeap(), 0, pBuffer);
|
|
return RtlNtStatusToDosError(Status);
|
|
}
|
|
|
|
*pClearTextPassword = pBuffer;
|
|
|
|
return ERROR_SUCCESS;
|
|
}
|
|
|
|
/* EOF */
|