Files
harbour-core/harbour/source/rtl/philes.c
Przemyslaw Czerpak 13a2891d97 2007-08-31 03:20 UTC+0200 Przemyslaw Czerpak (druzus/at/priv.onet.pl)
* harbour/include/hbapi.h
  * harbour/source/vm/dynsym.c
    + added hb_dynsymIsFunction()

  * harbour/source/rtl/filehb.c
    * updated comment

  * harbour/source/rtl/philes.c
    * renamed HB_F_EOF() to HB_FEOF()

  * harbour/source/rtl/scroll.c
  * harbour/source/rtl/transfrm.c
  * harbour/source/rtl/file.c
    * formatting

  * harbour/source/rtl/substr.c
  * harbour/source/rtl/trim.c
    % optimization

  * harbour/source/rtl/typefile.prg
    % use HB_ATOKENS() instead of static .prg function

  * harbour/source/rtl/setkey.c
    % optimization and protection aganst possible GPF when wrong array
      is passed to HB_SETKEYSAVE()

  * harbour/source/rtl/xhelp.c
    ! do not generate RT error when HELP symbol exist
      (f.e. after PUBLIC HELP) but HELP() function doesn't
    ! keep reference in parametes passed by reference to __XHELP()
    * use only PHB_DYNS instead of PHB_SYMB

  * harbour/source/rtl/seconds.c
    + added WIN32 version borrowed from XHARBOUR

  * harbour/source/rtl/trace.c
    ! protection against possible GPF when wrong parameters are passed

  * harbour/source/rtl/samples.c
    ! protection against possible GPF when wrong parameters are passed
      Warning! We have in this file few functions without HB_ prefix.
      Some of them may create conflicts with future functions for TIMEDATE
      items.

  * harbour/source/rtl/inkey.c
    + added support for passing array with key codes as __KEYBOARD()
      parameter, covered by HB_EXTENSION macro - this is xHarbour compatible
      extension. I do not like it but we already had extension with numeric
      parameters and probably it would be hard to remove it now and keep
      __KEYBOARD() code clean so I decided to add support also for arrays
      instead of creating new function and adding conditional code covered
      by HB_COMPAT_XHB macro.

  * harbour/source/rtl/setfunc.prg
    * accept extended __KEYBOARD() parameters when HB_EXTENSION macro
      is set.
2007-08-31 01:20:52 +00:00

334 lines
7.5 KiB
C

/*
* $Id$
*/
/*
* Harbour Project source code:
* The FileSys API (Harbour level)
*
* Copyright 1999 Manuel Ruiz <mrt@joca.es>
* 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 of the License, or
* (at your option) any later version, with one exception:
*
* The exception is that if you link the Harbour Runtime Library (HRL)
* and/or the Harbour Virtual Machine (HVM) 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 HRL
* and/or HVM code into it.
*
* 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 program; if not, write to the Free Software
* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA (or visit
* their web site at http://www.gnu.org/).
*
*/
/*
* The following parts are Copyright of the individual authors.
* www - http://www.harbour-project.org
*
* Copyright 1999-2001 Viktor Szakats <viktor.szakats@syenar.hu>
* CURDIR()
*
* Copyright 2000 David G. Holm <dholm@jsd-llc.com>
* HB_FEOF()
*
* See doc/license.txt for licensing terms.
*
*/
#include <ctype.h>
#include "hbapi.h"
#include "hbapifs.h"
#include "hbapierr.h"
#include "hbapiitm.h"
#include "hbset.h"
#include "hbstack.h"
HB_FUNC( FOPEN )
{
if( ISCHAR( 1 ) )
{
hb_retni( hb_fsOpen( ( BYTE * ) hb_parc( 1 ),
ISNUM( 2 ) ? hb_parni( 2 ) : FO_READ | FO_COMPAT ) );
hb_setFError( hb_fsError() );
}
else
{
hb_setFError( 0 );
/* NOTE: Undocumented but existing Clipper Run-time error */
hb_errRT_BASE( EG_ARG, 2021, NULL, "FOPEN", HB_ERR_ARGS_BASEPARAMS );
}
}
HB_FUNC( FCREATE )
{
if( ISCHAR( 1 ) )
{
hb_retni( hb_fsCreate( ( BYTE * ) hb_parc( 1 ),
ISNUM( 2 ) ? hb_parni( 2 ) : FC_NORMAL ) );
hb_setFError( hb_fsError() );
}
else
{
hb_retni( FS_ERROR );
hb_setFError( 0 );
}
}
#ifdef HB_EXTENSION
HB_FUNC( HB_FCREATE )
{
if( ISCHAR( 1 ) )
{
hb_retni( hb_fsCreateEx( ( BYTE * ) hb_parc( 1 ),
ISNUM( 2 ) ? hb_parni( 2 ) : FC_NORMAL,
ISNUM( 3 ) ? hb_parni( 3 ) : FO_COMPAT ) );
hb_setFError( hb_fsError() );
}
else
{
hb_retni( FS_ERROR );
hb_setFError( 0 );
}
}
#endif
HB_FUNC( FREAD )
{
PHB_ITEM pBuffer = hb_param( 2, HB_IT_STRING );
USHORT uiError = 0;
ULONG ulRead = 0;
if( ISNUM( 1 ) && pBuffer && ISBYREF( 2 ) && ISNUM( 3 ) )
{
ulRead = hb_parnl( 3 );
/* NOTE: CA-Clipper determines the maximum size by calling _parcsiz()
instead of _parclen(), this means that the maximum read length
will be one more than the length of the passed buffer, because
the terminating zero could be used if needed. [vszakats] */
if( ulRead <= hb_parcsiz( 2 ) )
{
/* NOTE: Warning, the read buffer will be directly modified,
this is normal here ! [vszakats] */
/* Unshare the item to avoid GPF on static buffers and changing
other items which shares this buffer. [druzus] */
pBuffer = hb_itemUnShareString( pBuffer );
ulRead = hb_fsReadLarge( hb_parni( 1 ),
( BYTE * ) hb_itemGetCPtr( pBuffer ),
ulRead );
uiError = hb_fsError();
}
else
ulRead = 0;
}
hb_retnint( ulRead );
hb_setFError( uiError );
}
HB_FUNC( FWRITE )
{
USHORT uiError = 0;
if( ISNUM( 1 ) && ISCHAR( 2 ) )
{
hb_retnl( hb_fsWriteLarge( hb_parni( 1 ),
( BYTE * ) hb_parc( 2 ),
ISNUM( 3 ) ? ( ULONG ) hb_parnl( 3 ) : hb_parclen( 2 ) ) );
uiError = hb_fsError();
}
else
hb_retnl( 0 );
hb_setFError( uiError );
}
HB_FUNC( FERROR )
{
hb_retni( hb_getFError() );
}
HB_FUNC( FCLOSE )
{
USHORT uiError = 0;
if( ISNUM( 1 ) )
{
hb_fsClose( hb_parni( 1 ) );
uiError = hb_fsError();
hb_retl( uiError == 0 );
}
else
hb_retl( FALSE );
hb_setFError( uiError );
}
HB_FUNC( FERASE )
{
USHORT uiError = 3;
if( ISCHAR( 1 ) )
{
hb_retni( hb_fsDelete( ( BYTE * ) hb_parc( 1 ) ) ? 0 : FS_ERROR );
uiError = hb_fsError();
}
else
hb_retni( FS_ERROR );
hb_setFError( uiError );
}
HB_FUNC( FRENAME )
{
USHORT uiError = 2;
if( ISCHAR( 1 ) && ISCHAR( 2 ) )
{
hb_retni( hb_fsRename( ( BYTE * ) hb_parc( 1 ),
( BYTE * ) hb_parc( 2 ) ) ? 0 : FS_ERROR );
uiError = hb_fsError();
}
else
hb_retni( FS_ERROR );
hb_setFError( uiError );
}
HB_FUNC( FSEEK )
{
USHORT uiError = 0;
if( ISNUM( 1 ) && ISNUM( 2 ) )
{
hb_retnint( hb_fsSeekLarge( hb_parni( 1 ),
hb_parnint( 2 ),
ISNUM( 3 ) ? hb_parni( 3 ) : FS_SET ) );
uiError = hb_fsError();
}
else
hb_retni( 0 );
hb_setFError( uiError );
}
HB_FUNC( FREADSTR )
{
USHORT uiError = 0;
if( ISNUM( 1 ) && ISNUM( 2 ) )
{
ULONG ulToRead = ( ULONG ) hb_parnl( 2 );
if( ulToRead > 0 )
{
FHANDLE fhnd = ( FHANDLE ) hb_parni( 1 );
BYTE * buffer = ( BYTE * ) hb_xgrab( ulToRead + 1 );
ULONG ulRead;
ulRead = hb_fsReadLarge( fhnd, buffer, ulToRead );
uiError = hb_fsError();
buffer[ ulRead ] = '\0';
/* NOTE: Clipper will not return zero chars from this functions. */
hb_retc_buffer( ( char * ) buffer );
}
else
hb_retc( NULL );
}
else
hb_retc( NULL );
hb_setFError( uiError );
}
/* NOTE: This function should not return the leading and trailing */
/* (back)slashes. [vszakats] */
/* TODO: Xbase++ is able to change to the specified directory. */
HB_FUNC( CURDIR )
{
BYTE byBuffer[ _POSIX_PATH_MAX + 1 ];
hb_fsCurDirBuff( ( ISCHAR( 1 ) && hb_parclen( 1 ) > 0 ) ?
( USHORT )( toupper( *hb_parc( 1 ) ) - 'A' + 1 ) : 0, byBuffer, _POSIX_PATH_MAX + 1 );
hb_retc( ( char * ) byBuffer );
}
#ifdef HB_EXTENSION
HB_FUNC( HB_FEOF )
{
USHORT uiError = 6;
if( ISNUM( 1 ) )
{
hb_retl( hb_fsEof( hb_parni( 1 ) ) );
uiError = hb_fsError();
}
else
hb_retl( TRUE );
hb_setFError( uiError );
}
HB_FUNC( HB_FCOMMIT )
{
USHORT uiError = 6;
if( ISNUM( 1 ) )
{
hb_fsCommit( hb_parni(1) );
uiError = hb_fsError();
}
hb_setFError( uiError );
}
HB_FUNC( HB_OSERROR )
{
hb_retni( hb_fsOsError() );
}
HB_FUNC( HB_OSPATHSEPARATOR )
{
const char ret[ 2 ] = { OS_PATH_DELIMITER, 0 };
hb_retc( ret );
}
HB_FUNC( HB_OSPATHLISTSEPARATOR )
{
const char ret[ 2 ] = { OS_PATH_LIST_SEPARATOR, 0 };
hb_retc( ret );
}
HB_FUNC( HB_OSPATHDELIMITERS )
{
hb_retc( OS_PATH_DELIMITER_LIST );
}
HB_FUNC( HB_OSDRIVESEPARATOR )
{
#ifdef OS_HAS_DRIVE_LETTER
char ret[ 2 ] = { OS_DRIVE_DELIMITER, 0 };
hb_retc( ret );
#else
hb_retc( NULL );
#endif
}
#endif