Files
harbour-core/harbour/source/rdd/hbsix/sxcrypt.c
Viktor Szakats 185f03cbfd 2009-02-03 15:27 UTC+0100 Viktor Szakats (harbour.01 syenar hu)
* include/hbapirdd.h
  * source/rdd/dbcmd.c
  * source/rdd/dbcmd53.c
  * source/rdd/dbcmdx.c
  * source/rdd/dbdetach.c
  * source/rdd/dbf1.c
  * source/rdd/dbsql.c
  * source/rdd/delim1.c
  * source/rdd/hbdbsort.c
  * source/rdd/sdf1.c
  * source/rdd/wacore.c
  * source/rdd/wafunc.c
  * source/rdd/workarea.c
  * source/rdd/dbfcdx/dbfcdx1.c
  * source/rdd/dbffpt/dbffpt1.c
  * source/rdd/dbfnsx/dbfnsx1.c
  * source/rdd/dbfntx/dbfntx1.c
  * source/rdd/hbsix/sxcrypt.c
  * source/rdd/hbsix/sxord.c
  * source/rdd/hbsix/sxtable.c
  * source/rdd/hsx/hsx.c
  * source/rdd/nulsys/nulsys.c
  * source/rdd/usrrdd/rdds/arrayrdd.prg
  * source/rdd/usrrdd/rdds/fcomma.prg
  * source/rdd/usrrdd/rdds/hscdx.prg
  * source/rdd/usrrdd/rdds/logrdd.prg
  * source/rdd/usrrdd/rdds/rlcdx.prg
  * source/rdd/usrrdd/usrrdd.c
    * SUCCESS -> HB_SUCCESS
    * FAILURE -> HB_FAILURE
    * ERRCODE -> HB_ERRCODE
2009-02-03 14:29:35 +00:00

208 lines
6.0 KiB
C

/*
* $Id$
*/
/*
* Harbour Project source code:
* SIX compatible functions:
* hb_sxEnCrypt()
* hb_sxDeCrypt()
*
* SX_ENCRYPT()
* SX_DECRYPT()
*
* Copyright 2007 Przemyslaw Czerpak <druzus / at / priv.onet.pl>
* www - http://www.harbour-project.org
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2, or (at your option)
* any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this software; see the file COPYING. If not, write to
* the Free Software Foundation, Inc., 59 Temple Place, Suite 330,
* Boston, MA 02111-1307 USA (or visit the web site http://www.gnu.org/).
*
* As a special exception, the Harbour Project gives permission for
* additional uses of the text contained in its release of Harbour.
*
* The exception is that, if you link the Harbour libraries with other
* files to produce an executable, this does not by itself cause the
* resulting executable to be covered by the GNU General Public License.
* Your use of that executable is in no way restricted on account of
* linking the Harbour library code into it.
*
* This exception does not however invalidate any other reasons why
* the executable file might be covered by the GNU General Public License.
*
* This exception applies only to the code released by the Harbour
* Project under the name Harbour. If you copy code from other
* Harbour Project or Free Software Foundation releases into a copy of
* Harbour, as the General Public License permits, the exception does
* not apply to the code that you add in this way. To avoid misleading
* anyone as to the status of such modified files, you must delete
* this exception notice from them.
*
* If you write modifications of your own for Harbour, it is your choice
* whether to permit this exception to apply to your modifications.
* If you do not wish that, delete this exception notice.
*
*/
#include "hbsxfunc.h"
#define rnd_mul1 0x0de6d
#define rnd_mul2 0x0278d
static UINT32 hb_sxInitSeed( BYTE * pKeyVal, UINT16 * puiKey )
{
UINT32 ulSeed = 0;
int i;
for( i = 0; i < 7; i++ )
{
ulSeed = ( ( ( ulSeed >> 16 ) + ( ulSeed << 16 ) ) * 17 ) +
HB_GET_LE_UINT16( &pKeyVal[i] );
}
ulSeed |= 1;
*puiKey = ( UINT16 ) ulSeed;
return ( ulSeed << 16 ) + ( ulSeed >> 16 );
}
static UINT32 hb_sxNextSeed( UINT32 ulSeed, BYTE * pKeyVal, UINT16 * puiKey )
{
UINT32 ulTemp1, ulTemp2;
UINT16 uiSeedLo, uiSeedHi;
uiSeedLo = ( UINT16 ) ulSeed;
ulTemp1 = ( UINT32 ) rnd_mul1 * ( UINT32 ) uiSeedLo;
ulTemp2 = ( UINT32 ) rnd_mul2 * ( UINT32 ) uiSeedLo + ( ulTemp1 >> 16 );
uiSeedLo = ( UINT16 ) ulTemp1;
ulTemp1 = ( UINT32 ) rnd_mul1 * ( ulSeed >> 16 );
uiSeedHi = ( UINT16 ) ( ulTemp1 + ulTemp2 );
ulSeed = ( ( UINT32 ) uiSeedHi << 16 ) + ( UINT32 ) uiSeedLo;
uiSeedHi |= 1;
*puiKey = uiSeedHi + HB_GET_LE_UINT16( pKeyVal );
return ulSeed;
}
void hb_sxEnCrypt( BYTE * pSrc, BYTE * pDst, BYTE * pKeyVal, ULONG ulLen )
{
UINT32 ulSeed;
UINT16 uiKey;
BYTE uChar, uShft;
ULONG ul;
int i;
ulSeed = hb_sxInitSeed( pKeyVal, &uiKey );
for( ul = 0, i = 0; ul < ulLen; ul++ )
{
uChar = pSrc[ul];
uShft = uiKey & 0x07;
pDst[ul] = ( uChar >> uShft ) + ( uChar << ( 8 - uShft ) ) +
( uiKey & 0xFF );
ulSeed = hb_sxNextSeed( ulSeed, &pKeyVal[i], &uiKey );
if( ++i == 7 )
i = 0;
}
}
void hb_sxDeCrypt( BYTE * pSrc, BYTE * pDst, BYTE * pKeyVal, ULONG ulLen )
{
UINT32 ulSeed;
UINT16 uiKey;
BYTE uChar, uShft;
ULONG ul;
int i;
ulSeed = hb_sxInitSeed( pKeyVal, &uiKey );
for( ul = 0, i = 0; ul < ulLen; ul++ )
{
uChar = pSrc[ul] - ( uiKey & 0xFF );
uShft = uiKey & 0x07;
pDst[ul] = ( uChar << uShft ) + ( uChar >> ( 8 - uShft ) );
ulSeed = hb_sxNextSeed( ulSeed, &pKeyVal[i], &uiKey );
if( ++i == 7 )
i = 0;
}
}
static BOOL _hb_sxGetKey( PHB_ITEM pKeyItem, BYTE * pKeyVal )
{
BOOL fResult = FALSE;
PHB_ITEM pItem = NULL;
ULONG ulKey;
if( ! ( hb_itemType( pKeyItem ) & HB_IT_STRING ) )
{
AREAP pArea = ( AREAP ) hb_rddGetCurrentWorkAreaPointer();
if( pArea )
{
pItem = hb_itemNew( NULL );
if( SELF_INFO( pArea, DBI_PASSWORD, pItem ) == HB_SUCCESS )
pKeyItem = pItem;
}
}
if( hb_itemType( pKeyItem ) & HB_IT_STRING )
{
ulKey = hb_itemGetCLen( pKeyItem );
if( ulKey )
memcpy( pKeyVal, hb_itemGetCPtr( pKeyItem ), HB_MIN( ulKey, 8 ) );
if( ulKey < 8 )
memset( pKeyVal + ulKey, 0, 8 - ulKey );
fResult = TRUE;
}
if( pItem )
hb_itemRelease( pItem );
return fResult;
}
HB_FUNC( SX_ENCRYPT )
{
if( hb_pcount() > 0 )
{
BYTE keyBuf[ 8 ];
ULONG ulLen = hb_parclen( 1 );
if( ulLen > 0 && _hb_sxGetKey( hb_param( 2, HB_IT_ANY ), keyBuf ) )
{
BYTE * pDst = ( BYTE * ) hb_xgrab( ulLen + 1 );
hb_sxEnCrypt( ( BYTE * ) hb_parc( 1 ), pDst, keyBuf, ulLen );
pDst[ ulLen ] = 0;
hb_retclen_buffer( ( char * ) pDst, ulLen );
}
else
{
hb_itemReturn( hb_param( 1, HB_IT_ANY ) );
}
}
}
HB_FUNC( SX_DECRYPT )
{
if( hb_pcount() > 0 )
{
BYTE keyBuf[ 8 ];
ULONG ulLen = hb_parclen( 1 );
if( ulLen > 0 && _hb_sxGetKey( hb_param( 2, HB_IT_ANY ), keyBuf ) )
{
BYTE * pDst = ( BYTE * ) hb_xgrab( ulLen + 1 );
hb_sxDeCrypt( ( BYTE * ) hb_parc( 1 ), pDst, keyBuf, ulLen );
pDst[ ulLen ] = 0;
hb_retclen_buffer( ( char * ) pDst, ulLen );
}
else
{
hb_itemReturn( hb_param( 1, HB_IT_ANY ) );
}
}
}