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512 lines
15 KiB
512 lines
15 KiB
//----------------------------------------------------------------------------
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//
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// Microsoft Windows
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// Copyright (C) Microsoft Corporation, 1992 - 2000.
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//
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// File: umi.cxx
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//
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// Contents: Contains miscellaneous UMI routines.
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//
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// History: 02-28-00 SivaramR Created.
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//
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//----------------------------------------------------------------------------
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#include "winnt.hxx"
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//----------------------------------------------------------------------------
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// Function: IsPreDefinedErrorCode
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//
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// Synopsis: Returns TRUE if the error code passed in is a valid UMI error
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// code i.e one that can be returned by a UMI method. Returns
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// FALSE otherwise.
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//
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// Arguments: Self explanatory
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//
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// Returns: TRUE/FALSE as mentioned above
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//
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// Modifies: Nothing
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//
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//----------------------------------------------------------------------------
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BOOL IsPreDefinedErrorCode(HRESULT hr)
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{
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switch(hr) {
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case E_UNEXPECTED:
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case E_NOTIMPL:
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case E_OUTOFMEMORY:
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case E_INVALIDARG:
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case E_NOINTERFACE:
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case E_POINTER:
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case E_HANDLE:
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case E_ABORT:
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case E_FAIL:
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case E_ACCESSDENIED:
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case E_PENDING:
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case UMI_E_TYPE_MISMATCH:
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case UMI_E_NOT_FOUND:
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case UMI_E_INVALID_FLAGS:
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case UMI_E_UNSUPPORTED_OPERATION:
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case UMI_E_UNSUPPORTED_FLAGS:
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case UMI_E_SYNCHRONIZATION_REQUIRED:
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case UMI_E_UNBOUND_OBJECT:
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RRETURN(TRUE);
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default:
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RRETURN(FALSE);
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}
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}
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//----------------------------------------------------------------------------
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// Function: MapHrToUmiError
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//
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// Synopsis: This function returns the UMI error corresponding to a HRESULT
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// returned by the WinNT provider. The HRESULT can be retrieved
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// using GetLastStatus(), if required.
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//
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// Arguments: Self explanatory
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//
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// Returns: UMI error corresponding to the HRESULT
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//
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// Modifies: Nothing
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//
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//----------------------------------------------------------------------------
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HRESULT MapHrToUmiError(HRESULT hr)
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{
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if(SUCCEEDED(hr)) {
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if(S_FALSE == hr) // may be returned by end of cursor enumeration
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RRETURN(UMI_S_FALSE);
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else
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RRETURN(UMI_S_NO_ERROR);
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}
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// we had a failure
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if(TRUE == IsPreDefinedErrorCode(hr))
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RRETURN(hr); // OK to return this as a UMI error
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// Try to map ADSI errors to appropriate UMI errors. Default is to
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// map to E_FAIL.
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switch(hr) {
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case E_ADS_INVALID_DOMAIN_OBJECT:
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case E_ADS_INVALID_USER_OBJECT:
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case E_ADS_INVALID_COMPUTER_OBJECT:
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case E_ADS_UNKNOWN_OBJECT:
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RRETURN(UMI_E_OBJECT_NOT_FOUND);
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case E_ADS_PROPERTY_NOT_FOUND:
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RRETURN(UMI_E_PROPERTY_NOT_FOUND);
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case E_ADS_BAD_PARAMETER:
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RRETURN(UMI_E_INVALIDARG);
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case E_ADS_CANT_CONVERT_DATATYPE:
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RRETURN(UMI_E_TYPE_MISMATCH);
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case E_ADS_BAD_PATHNAME:
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RRETURN(UMI_E_INVALIDARG);
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case E_ADS_OBJECT_UNBOUND:
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RRETURN(UMI_E_UNBOUND_OBJECT);
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case HRESULT_FROM_WIN32(NERR_UserNotFound):
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case HRESULT_FROM_WIN32(NERR_GroupNotFound):
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case HRESULT_FROM_WIN32(ERROR_NO_SUCH_DOMAIN):
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case HRESULT_FROM_WIN32(ERROR_BAD_NETPATH):
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RRETURN(UMI_E_OBJECT_NOT_FOUND);
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default:
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RRETURN(UMI_E_FAIL);
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}
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}
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//----------------------------------------------------------------------------
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// Function: ValidateUrl
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//
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// Synopsis: This function checks to see if a UMI path has the correct
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// namespace and server.
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//
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// Arguments:
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//
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// pURL Pointer to URL interface containing the UMI path
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//
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// Returns: S_OK on success. Error code otherwise.
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//
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// Modifies: Nothing
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//
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//----------------------------------------------------------------------------
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static HRESULT ValidateUrl(
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IUmiURL *pURL
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)
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{
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HRESULT hr = S_OK;
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WCHAR pszTmpArray[MAX_URL+1];
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ULONG ulTmpArraySize = 0;
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ULONGLONG PathType = 0;
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hr = pURL->GetPathInfo(0, &PathType);
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BAIL_ON_FAILURE(hr);
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if(PathType & UMIPATH_INFO_RELATIVE_PATH)
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// relative paths cannot be converted to a WinNT path
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BAIL_ON_FAILURE(hr = UMI_E_INVALID_PATH);
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// Make sure server name is empty. WinNT does not support servername
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// in UMI path.
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ulTmpArraySize = MAX_URL;
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hr = pURL->GetLocator(
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&ulTmpArraySize,
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pszTmpArray
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);
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if(WBEM_E_BUFFER_TOO_SMALL == hr)
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// Locator is not an empty string
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hr = UMI_E_INVALID_PATH;
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BAIL_ON_FAILURE(hr);
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if(wcscmp(pszTmpArray, L""))
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BAIL_ON_FAILURE(hr = UMI_E_INVALID_PATH);
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// Make sure namespace is WinNT
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ulTmpArraySize = MAX_URL;
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hr = pURL->GetRootNamespace(
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&ulTmpArraySize,
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pszTmpArray
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);
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if(WBEM_E_BUFFER_TOO_SMALL == hr)
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// Namespace is not WinNT
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hr = UMI_E_INVALID_PATH;
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BAIL_ON_FAILURE(hr);
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if(_wcsicmp(pszTmpArray, L"WinNT"))
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BAIL_ON_FAILURE(hr = UMI_E_INVALID_PATH);
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error:
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RRETURN(hr);
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}
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//----------------------------------------------------------------------------
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// Function: UmiToWinNTPath
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//
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// Synopsis: This function converts a UMI path into a native path.
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//
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// Arguments:
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//
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// pURL Pointer to URL interface containing the UMI path
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// ppszWinNTPath Returns the WinNT path
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// pdwNumComps Returns the number of components in the UMI path
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// pppszClasses Returns the class of each component in the UMI path
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//
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// Returns: S_OK on success. Error code otherwise.
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//
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// Modifies: *ppszWinNTPath to return the WinNT path
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// *pdwNumComps to return the number of components
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// *pppszClasses to return the class of each component
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//
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//----------------------------------------------------------------------------
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HRESULT UmiToWinNTPath(
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IUmiURL *pURL,
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WCHAR **ppszWinNTPath,
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DWORD *pdwNumComps,
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LPWSTR **pppszClasses
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)
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{
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HRESULT hr = S_OK;
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WCHAR *pszWinNTPath = NULL;
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WCHAR pszTmpArray[MAX_URL+1], pszValueArray[MAX_URL+1];
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WCHAR *pszValuePtr = NULL, pszClassArray[MAX_URL+1];
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ULONG ulTmpArraySize = 0, ulNumComponents = 0, ulIndex = 0;
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ULONG ulKeyCount = 0, ulValueArraySize = 0, ulClassArraySize = 0;
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IUmiURLKeyList *pKeyList = NULL;
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LPWSTR *ppszClasses = NULL;
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ADsAssert( (pURL != NULL) && (ppszWinNTPath != NULL) &&
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(pdwNumComps != NULL) && (pppszClasses != NULL) );
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*ppszWinNTPath = NULL;
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*pdwNumComps = 0;
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*pppszClasses = NULL;
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hr = ValidateUrl(pURL);
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BAIL_ON_FAILURE(hr);
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// Get the total length needed for the WinNT path
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ulTmpArraySize = MAX_URL;
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hr = pURL->Get(0, &ulTmpArraySize, pszTmpArray);
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if(hr != WBEM_E_BUFFER_TOO_SMALL)
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BAIL_ON_FAILURE(hr);
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pszWinNTPath = (WCHAR *) AllocADsMem(ulTmpArraySize * sizeof(WCHAR));
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if(NULL == pszWinNTPath)
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BAIL_ON_FAILURE(hr = UMI_E_OUT_OF_MEMORY);
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wsprintf(pszWinNTPath, L"%s", L"WinNT:");
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hr = pURL->GetComponentCount(&ulNumComponents);
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BAIL_ON_FAILURE(hr);
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if(0 == ulNumComponents) {
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// umi:///winnt translates to WinNT: . Nothing more to do
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*ppszWinNTPath = pszWinNTPath;
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RRETURN(S_OK);
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}
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ppszClasses = (LPWSTR *) AllocADsMem(ulNumComponents * sizeof(LPWSTR *));
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if(NULL == ppszClasses) {
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BAIL_ON_FAILURE(hr = UMI_E_OUT_OF_MEMORY);
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}
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memset(ppszClasses, 0, ulNumComponents * sizeof(LPWSTR *));
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// we have at least one component in the path
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wcscat(pszWinNTPath, L"/");
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for(ulIndex = 0; ulIndex < ulNumComponents; ulIndex++) {
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ulClassArraySize = MAX_URL;
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pKeyList = NULL;
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hr = pURL->GetComponent(
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ulIndex,
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&ulClassArraySize,
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pszClassArray,
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&pKeyList
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);
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if(WBEM_E_BUFFER_TOO_SMALL == hr)
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// none of the WinNT classes is so long, so this has to be a bad path.
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hr = UMI_E_INVALID_PATH;
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BAIL_ON_FAILURE(hr);
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// WinNT does not supports components with an empty class name
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if(!wcscmp(pszClassArray, L""))
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BAIL_ON_FAILURE(hr = UMI_E_INVALID_PATH);
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ppszClasses[ulIndex] = AllocADsStr(pszClassArray);
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if(NULL == ppszClasses[ulIndex]) {
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BAIL_ON_FAILURE(hr = UMI_E_OUT_OF_MEMORY);
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}
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ADsAssert(pKeyList != NULL);
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// make sure there is only one key
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hr = pKeyList->GetCount(&ulKeyCount);
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BAIL_ON_FAILURE(hr);
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if(ulKeyCount != 1)
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BAIL_ON_FAILURE(hr = UMI_E_INVALID_PATH);
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ulValueArraySize = MAX_URL;
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ulTmpArraySize = MAX_URL;
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pszValuePtr = pszValueArray;
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hr = pKeyList->GetKey(
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0,
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0,
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&ulTmpArraySize,
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pszTmpArray,
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&ulValueArraySize,
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pszValueArray
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);
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if( (WBEM_E_BUFFER_TOO_SMALL == hr) && (ulValueArraySize > MAX_URL) ) {
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pszValuePtr = (WCHAR *) AllocADsMem(ulValueArraySize);
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if(NULL == pszValuePtr)
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BAIL_ON_FAILURE(hr = UMI_E_OUT_OF_MEMORY);
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hr = pKeyList->GetKey(
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0,
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0,
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&ulTmpArraySize,
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pszTmpArray,
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&ulValueArraySize,
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pszValuePtr
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);
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}
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if(WBEM_E_BUFFER_TOO_SMALL == hr)
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// Key is always "Name" in WinNT. So, if the size required if so
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// high, it indicates a bad path
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hr = UMI_E_INVALID_PATH;
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BAIL_ON_FAILURE(hr);
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// Key has to be "Name" or empty in WinNT
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if( _wcsicmp(pszTmpArray, WINNT_KEY_NAME) && wcscmp(pszTmpArray, L"") )
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BAIL_ON_FAILURE(hr = UMI_E_INVALID_PATH);
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// append the value to the WinNT path
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wcscat(pszWinNTPath, L"/");
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wcscat(pszWinNTPath, pszValuePtr);
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if(pszValuePtr != pszValueArray)
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FreeADsMem(pszValuePtr);
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pKeyList->Release();
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} // for
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// append the class to the WInNT path
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wcscat(pszWinNTPath, L",");
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wcscat(pszWinNTPath, pszClassArray);
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*ppszWinNTPath = pszWinNTPath;
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*pdwNumComps = ulNumComponents;
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*pppszClasses = ppszClasses;
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RRETURN(S_OK);
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error:
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if(pszWinNTPath != NULL)
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FreeADsMem(pszWinNTPath);
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if( (pszValuePtr != NULL) && (pszValuePtr != pszValueArray) )
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FreeADsMem(pszValuePtr);
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if(ppszClasses != NULL) {
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for(ulIndex = 0; ulIndex < ulNumComponents; ulIndex++) {
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if(ppszClasses[ulIndex] != NULL)
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FreeADsStr(ppszClasses[ulIndex]);
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}
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FreeADsMem(ppszClasses);
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}
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if(pKeyList != NULL)
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pKeyList->Release();
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RRETURN(hr);
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}
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//----------------------------------------------------------------------------
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// Function: ADsToUmiPath
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//
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// Synopsis: This function converts an ADsPath to a UMI path (full, short or
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// relative depending on a flag).
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//
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// Arguments:
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//
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// bstrADsPath ADsPath to be converted
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// pObjectInfo Contains the values of each component in the ADsPath
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// CompClasses Array containing the classes of each component of the ADsPath
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// dwNumComponents Number of classes(components) in the ADsPath
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// dwUmiPathType Specifies the format of the UMI path to be returned
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// ppszUmiPath Returns UMI path in the requested format
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//
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// Returns: S_OK on success. Error code otherwise.
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//
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// Modifies: *ppszUmiPath to return the UMI path
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//
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//----------------------------------------------------------------------------
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HRESULT ADsToUmiPath(
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BSTR bstrADsPath,
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OBJECTINFO *pObjectInfo,
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LPWSTR CompClasses[],
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DWORD dwNumComponents,
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DWORD dwUmiPathType,
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LPWSTR *ppszUmiPath
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)
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{
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HRESULT hr = S_OK;
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DWORD dwBufferLen = 0, dwIndex = 0;
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LPWSTR pszUmiPath = NULL, *pszComponents = NULL;
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ADsAssert( (bstrADsPath != NULL) && (CompClasses != NULL) &&
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(pObjectInfo != NULL) && (ppszUmiPath != NULL) );
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*ppszUmiPath = NULL;
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// calculate approximate length of buffer required to return the UMI path
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// Each component is of the form "class.name=value". "value" is already
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// part of the ADSI path. Include the size of each class and add 6 to
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// account for "Name" and '.' and '='.
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dwBufferLen = wcslen(L"umi:///winnt/") + wcslen(bstrADsPath) +
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dwNumComponents * (MAX_CLASS + 6) + 1;
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pszUmiPath = (LPWSTR) AllocADsMem(dwBufferLen * sizeof(WCHAR));
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if(NULL == pszUmiPath)
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BAIL_ON_FAILURE(hr = UMI_E_OUT_OF_MEMORY);
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// if ADsPath is empty and it is not a namespace object, then this must be
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// a session, resource or printjob object. Return an empty path for these.
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// Namespace objects have no components in the ADsPath, but they have a
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// non-empty ADsPath ("WinNT:")
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if( (0 == dwNumComponents) && _wcsicmp(CompClasses[0], L"Namespace") ) {
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wcscpy(pszUmiPath, L"");
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*ppszUmiPath = pszUmiPath;
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RRETURN(S_OK);
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}
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if( (RELATIVE_UMI_PATH == dwUmiPathType) ||
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(FULL_RELATIVE_UMI_PATH == dwUmiPathType) ) {
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// return the last component, if any
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if(0 == dwNumComponents) {
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*pszUmiPath = '\0';
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}
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else {
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wcscpy(pszUmiPath,
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CompClasses[dwNumComponents - 1]
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);
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if(FULL_RELATIVE_UMI_PATH == dwUmiPathType)
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wcscat(pszUmiPath, L".Name=");
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else
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wcscat(pszUmiPath, L"=");
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pszComponents = pObjectInfo->DisplayComponentArray;
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wcscat(pszUmiPath, pszComponents[dwNumComponents - 1]);
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}
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*ppszUmiPath = pszUmiPath;
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RRETURN(S_OK);
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}
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wcscpy(pszUmiPath, L"umi:///winnt");
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// for namespace objects, there are no components and hence the umi path
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// is completely constructed at this point.
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if(0 == dwNumComponents) {
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*ppszUmiPath = pszUmiPath;
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RRETURN(S_OK);
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}
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wcscat(pszUmiPath, L"/");
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pszComponents = pObjectInfo->DisplayComponentArray;
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for(dwIndex = 0; dwIndex < dwNumComponents; dwIndex++) {
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wcscat(pszUmiPath, CompClasses[dwIndex]);
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if(FULL_UMI_PATH == dwUmiPathType)
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wcscat(pszUmiPath, L".Name=");
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else if(SHORT_UMI_PATH == dwUmiPathType)
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wcscat(pszUmiPath, L"=");
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wcscat(pszUmiPath, pszComponents[dwIndex]);
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if(dwIndex != (dwNumComponents - 1))
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wcscat(pszUmiPath, L"/");
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}
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*ppszUmiPath = pszUmiPath;
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RRETURN(S_OK);
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error:
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if(pszUmiPath != NULL)
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FreeADsMem(pszUmiPath);
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RRETURN(hr);
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}
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