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250 lines
7.3 KiB
250 lines
7.3 KiB
#include "stdafx.h"
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#ifndef _CHICAGO_
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// this file is always compile UNICODE in the library - so the conversions work out right
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//
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//Local includes
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//
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#include "certupgr.h"
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#define BACKUP_ID 'KRBK'
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//------------------------------------------------------------------------------
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void ReadWriteDWORD( HANDLE hFile, DWORD *pDword, BOOL fRead );
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void ReadWriteString( HANDLE hFile, LPTSTR* ppsz, BOOL fRead );
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void ReadWriteBlob( HANDLE hFile, PVOID pBlob, DWORD cbBlob, BOOL fRead );
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//-------------------------------------------------------------------------
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PCCERT_CONTEXT ImportKRBackupToCAPIStore_A(
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PCHAR pszFileName, // path of the file
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PCHAR pszPassword, // ANSI password
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PCHAR pszCAPIStore ) // name of the capi store
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{
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PCCERT_CONTEXT pCert = NULL;
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// prep the wide strings
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PWCHAR pszwFileName = NULL;
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PWCHAR pszwCAPIStore = NULL;
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DWORD lenFile = (strlen(pszFileName)+1) * sizeof(TCHAR);
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DWORD lenStore = (strlen(pszCAPIStore)+1) * sizeof(TCHAR);
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pszwFileName = (PWCHAR)GlobalAlloc( GPTR, lenFile );
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pszwCAPIStore = (PWCHAR)GlobalAlloc( GPTR, lenStore );
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if ( !pszwFileName || !pszwCAPIStore )
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goto cleanup;
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// convert the strings
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MultiByteToWideChar( CP_ACP, MB_PRECOMPOSED, pszFileName, -1, pszwFileName, lenFile );
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MultiByteToWideChar( CP_ACP, MB_PRECOMPOSED, pszCAPIStore, -1, pszwCAPIStore, lenStore );
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// do the real call
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pCert = ImportKRBackupToCAPIStore_W( pszwFileName, pszPassword, pszwCAPIStore );
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cleanup:
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// preserve the last error state
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DWORD err = GetLastError();
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// clean up the strings
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if ( pszwFileName )
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GlobalFree( pszwFileName );
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if ( pszwCAPIStore )
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GlobalFree( pszwCAPIStore );
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// reset the last error state
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SetLastError( err );
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// return the cert
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return pCert;
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}
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//-------------------------------------------------------------------------
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// Import old-style keyring backup file
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PCCERT_CONTEXT ImportKRBackupToCAPIStore_W(
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PWCHAR ptszFileName, // path of the file
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PCHAR pszPassword, // ANSI password
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PWCHAR pszCAPIStore ) // name of the capi store
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{
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PCCERT_CONTEXT pCertContext = NULL;
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DWORD dword;
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LPTSTR psz = NULL;
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// prep the file name
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HANDLE hFile = NULL;
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// This code is originally from KeyRing. The fImport controlled whether it was reading
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// or writing the file. In this case, we are always and only reading it. so....
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const BOOL fImport = TRUE;
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// also, this was a method on a class. The appropriate member variables are now here
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PVOID pPrivateKey = NULL;
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DWORD cbPrivateKey;
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PVOID pCertificate = NULL;
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DWORD cbCertificate;
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PVOID pRequest = NULL;
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DWORD cbRequest = 0;
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CString szName;
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// open the file
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hFile = CreateFile(
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ptszFileName, // pointer to name of the file
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GENERIC_READ, // access (read-write) mode
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FILE_SHARE_READ, // share mode
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NULL, // pointer to security attributes
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OPEN_EXISTING, // how to create
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FILE_ATTRIBUTE_NORMAL, // file attributes
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NULL // handle to file with attributes to copy
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);
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if ( hFile == INVALID_HANDLE_VALUE )
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return NULL;
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// do the backup id
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dword = BACKUP_ID;
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ReadWriteDWORD( hFile, &dword, fImport );
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// check the backup id
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if ( dword != BACKUP_ID )
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{
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goto cleanup;
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}
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// start with the name of the key
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ReadWriteString( hFile, &psz, fImport );
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// we aren't using the name for now, so throw it away.....
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if ( psz )
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GlobalFree( psz );
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psz = NULL;
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// now the private key data size
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ReadWriteDWORD( hFile, &cbPrivateKey, fImport );
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// make a private key data pointer if necessary
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if ( fImport && cbPrivateKey )
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{
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pPrivateKey = GlobalAlloc( GPTR, cbPrivateKey );
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if ( !pPrivateKey )
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{
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goto cleanup;
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}
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}
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// use the private key pointer
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if ( cbPrivateKey )
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ReadWriteBlob( hFile, pPrivateKey, cbPrivateKey, fImport );
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// now the certificate
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ReadWriteDWORD( hFile, &cbCertificate, fImport );
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// make a data pointer if necessary
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if ( fImport && cbCertificate )
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{
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pCertificate = GlobalAlloc( GPTR, cbCertificate );
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if ( !pCertificate )
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{
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goto cleanup;
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}
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}
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// use the public key pointer
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if ( cbCertificate )
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ReadWriteBlob( hFile, pCertificate, cbCertificate, fImport );
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// now the request - if there is one
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ReadWriteDWORD( hFile, &cbRequest, fImport );
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// make a data pointer if necessary
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if ( fImport && cbRequest )
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{
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pRequest = GlobalAlloc( GPTR, cbRequest );
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if ( !pRequest )
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{
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goto cleanup;
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}
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}
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// use the request pointer
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if ( cbRequest )
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ReadWriteBlob( hFile, pRequest, cbRequest, fImport );
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// finally, do the CAPI conversion here
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pCertContext = CopyKRCertToCAPIStore(
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pPrivateKey, cbPrivateKey,
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pCertificate, cbCertificate,
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pRequest, cbRequest,
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pszPassword,
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pszCAPIStore);
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// clean up
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cleanup:
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if ( hFile )
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CloseHandle( hFile );
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if ( pPrivateKey )
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GlobalFree( pPrivateKey );
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if ( pCertificate )
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GlobalFree( pCertificate );
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if ( pRequest )
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GlobalFree( pRequest );
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// return the context
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return pCertContext;
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}
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// file utilities
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//---------------------------------------------------------------------------
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void ReadWriteDWORD( HANDLE hFile, DWORD *pDword, BOOL fRead )
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{
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// read it or write it
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ReadWriteBlob( hFile, pDword, sizeof(DWORD), fRead );
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}
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//---------------------------------------------------------------------------
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// remember - we are only and always reading - never writing.......
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void ReadWriteString( HANDLE hFile, LPTSTR* ppsz, BOOL fRead )
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{
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// get the length of the string
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DWORD cbLength = 0;
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ReadWriteDWORD(hFile,&cbLength,fRead );
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// allocate the buffer for the new string - it is the responsibility
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// of the caller to ensure that ppsz is not pointing to something that
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// needs to be freed.
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if ( fRead )
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{
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*ppsz = (LPTSTR)GlobalAlloc( GPTR, cbLength+1 );
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ASSERT( *ppsz );
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if ( !*ppsz )
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AfxThrowMemoryException();
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}
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// read or write the string
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ReadWriteBlob(hFile, *ppsz, cbLength+1, fRead);
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}
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/* #pragma INTRINSA suppress=all */
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//---------------------------------------------------------------------------
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void ReadWriteBlob( HANDLE hFile, PVOID pBlob, DWORD cbBlob, BOOL fRead )
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{
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// read it or write it
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// - always read it here this isn't keyring anymore
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ReadFile(
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hFile, // handle of file to read
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pBlob, // address of buffer that receives data
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cbBlob, // number of bytes to read
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&cbBlob, // address of number of bytes read
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NULL // address of structure for data
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);
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}
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#endif //_CHICAGO_
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