351 lines
11 KiB
C
351 lines
11 KiB
C
/*
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* $Id$
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*/
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/*
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* Harbour Project source code:
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* SETKEY() and related functions
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*
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* Copyright 1999 A White <awhite@mail.rosecom.ca>
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* www - http://www.harbour-project.org
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2, or (at your option)
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* any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this software; see the file COPYING. If not, write to
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* the Free Software Foundation, Inc., 59 Temple Place, Suite 330,
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* Boston, MA 02111-1307 USA (or visit the web site http://www.gnu.org/).
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*
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* As a special exception, the Harbour Project gives permission for
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* additional uses of the text contained in its release of Harbour.
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*
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* The exception is that, if you link the Harbour libraries with other
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* files to produce an executable, this does not by itself cause the
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* resulting executable to be covered by the GNU General Public License.
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* Your use of that executable is in no way restricted on account of
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* linking the Harbour library code into it.
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*
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* This exception does not however invalidate any other reasons why
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* the executable file might be covered by the GNU General Public License.
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*
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* This exception applies only to the code released by the Harbour
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* Project under the name Harbour. If you copy code from other
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* Harbour Project or Free Software Foundation releases into a copy of
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* Harbour, as the General Public License permits, the exception does
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* not apply to the code that you add in this way. To avoid misleading
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* anyone as to the status of such modified files, you must delete
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* this exception notice from them.
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*
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* If you write modifications of your own for Harbour, it is your choice
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* whether to permit this exception to apply to your modifications.
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* If you do not wish that, delete this exception notice.
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*
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*/
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/*
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Either way you have to clean up the memory on exit. The best way to
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do this is to add a hb_setkeyInit() and hb_setkeyExit() function
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and call them from console.c Init/Exit functions.
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*/
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#include "hbvm.h"
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#include "hbapi.h"
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#include "hbapiitm.h"
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#include "hbapigt.h"
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#include "hbstack.h"
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typedef struct HB_SETKEY_
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{
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int iKeyCode;
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PHB_ITEM pAction;
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PHB_ITEM pIsActive;
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struct HB_SETKEY_ * next;
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} HB_SETKEY, * PHB_SETKEY;
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typedef struct
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{
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PHB_SETKEY sk_list;
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} HB_SK_DATA, * PHB_SK_DATA;
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static void hb_setkeyRelease( void * cargo )
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{
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PHB_SETKEY sk_list = ( ( PHB_SK_DATA ) cargo )->sk_list;
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while( sk_list )
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{
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PHB_SETKEY sk_list_tmp;
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hb_itemRelease( sk_list->pAction );
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if( sk_list->pIsActive )
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hb_itemRelease( sk_list->pIsActive );
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sk_list_tmp = sk_list;
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sk_list = sk_list->next;
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hb_xfree( ( void * ) sk_list_tmp );
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}
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( ( PHB_SK_DATA ) cargo )->sk_list = NULL;
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}
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static HB_TSD_NEW( s_skData, sizeof( HB_SK_DATA ), NULL, hb_setkeyRelease );
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static PHB_SETKEY sk_findkey( int iKeyCode, PHB_SETKEY sk_list,
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PHB_SETKEY * sk_list_end )
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{
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PHB_SETKEY sk_list_tmp;
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*sk_list_end = NULL;
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for( sk_list_tmp = sk_list;
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sk_list_tmp && sk_list_tmp->iKeyCode != iKeyCode;
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sk_list_tmp = sk_list_tmp->next )
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*sk_list_end = sk_list_tmp;
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return sk_list_tmp;
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}
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static void sk_add( PHB_SETKEY * sk_list_ptr, BOOL bReturn,
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int iKeyCode, PHB_ITEM pAction, PHB_ITEM pIsActive )
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{
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if( iKeyCode )
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{
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PHB_SETKEY sk_list_tmp, sk_list_end;
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if( pIsActive && !HB_IS_BLOCK( pIsActive ) )
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pIsActive = NULL;
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if( pAction && !HB_IS_BLOCK( pAction ) )
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pAction = NULL;
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sk_list_tmp = sk_findkey( iKeyCode, *sk_list_ptr, &sk_list_end );
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if( sk_list_tmp == NULL )
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{
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if( pAction )
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{
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sk_list_tmp = ( PHB_SETKEY ) hb_xgrab( sizeof( HB_SETKEY ) );
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sk_list_tmp->next = NULL;
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sk_list_tmp->iKeyCode = iKeyCode;
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sk_list_tmp->pAction = hb_itemNew( pAction );
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sk_list_tmp->pIsActive = pIsActive ? hb_itemNew( pIsActive ) : NULL;
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if( sk_list_end == NULL )
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*sk_list_ptr = sk_list_tmp;
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else
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sk_list_end->next = sk_list_tmp;
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}
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}
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else
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{
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/* Return the previous value */
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if( bReturn )
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hb_itemReturn( sk_list_tmp->pAction );
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/* Free the previous values */
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hb_itemRelease( sk_list_tmp->pAction );
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if( sk_list_tmp->pIsActive )
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{
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hb_itemRelease( sk_list_tmp->pIsActive );
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}
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/* Set the new values or free the entry */
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if( pAction )
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{
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sk_list_tmp->pAction = hb_itemNew( pAction );
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sk_list_tmp->pIsActive = pIsActive ? hb_itemNew( pIsActive ) : NULL;
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}
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else
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{
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/* if this is true, then the key found is the first key in the list */
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if( sk_list_end == NULL )
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{
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sk_list_tmp = *sk_list_ptr;
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*sk_list_ptr = sk_list_tmp->next;
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hb_xfree( sk_list_tmp );
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}
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else
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{
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sk_list_end->next = sk_list_tmp->next;
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hb_xfree( sk_list_tmp );
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}
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}
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}
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}
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}
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HB_FUNC( SETKEY )
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{
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PHB_ITEM pKeyCode = hb_param( 1, HB_IT_NUMERIC );
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if( pKeyCode )
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{
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PHB_SK_DATA sk_data = ( PHB_SK_DATA ) hb_stackGetTSD( &s_skData );
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if( hb_pcount() == 1 )
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{
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/* Get a SETKEY value */
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PHB_SETKEY sk_list_tmp, sk_list_end;
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/* sk_list_end is not used in this context */
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sk_list_tmp = sk_findkey( hb_itemGetNI( pKeyCode ), sk_data->sk_list, &sk_list_end );
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if( sk_list_tmp )
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{
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#if defined( HB_EXTENSION )
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PHB_ITEM pIsActiveResults = sk_list_tmp->pIsActive ? hb_vmEvalBlockV( sk_list_tmp->pIsActive, 1, pKeyCode ) : NULL;
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if( pIsActiveResults == NULL || ! HB_IS_LOGICAL( pIsActiveResults ) || hb_itemGetL( pIsActiveResults ) )
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#endif
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hb_itemReturn( sk_list_tmp->pAction );
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}
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}
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else
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{
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/* Set a SETKEY value */
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#if defined( HB_EXTENSION )
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sk_add( &sk_data->sk_list, TRUE, hb_itemGetNI( pKeyCode ),
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hb_param( 2, HB_IT_BLOCK ), hb_param( 3, HB_IT_BLOCK ) );
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#else
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sk_add( &sk_data->sk_list, TRUE, hb_itemGetNI( pKeyCode ),
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hb_param( 2, HB_IT_BLOCK ), NULL );
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#endif
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}
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}
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}
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/* Sets the same block for an array of keycodes */
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HB_FUNC( HB_SETKEYARRAY )
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{
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PHB_ITEM pKeyCodeArray = hb_param( 1, HB_IT_ARRAY );
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PHB_ITEM pAction = hb_param( 2, HB_IT_BLOCK );
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if( pKeyCodeArray && pAction )
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{
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PHB_SK_DATA sk_data = ( PHB_SK_DATA ) hb_stackGetTSD( &s_skData );
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PHB_ITEM pIsActive = hb_param( 3, HB_IT_BLOCK );
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ULONG nLen = hb_arrayLen( pKeyCodeArray );
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ULONG nPos;
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for( nPos = 1; nPos <= nLen; nPos++ )
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sk_add( &sk_data->sk_list, FALSE, hb_arrayGetNI( pKeyCodeArray, nPos ), pAction, pIsActive );
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}
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}
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HB_FUNC( HB_SETKEYGET )
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{
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PHB_ITEM pKeyCode = hb_param( 1, HB_IT_NUMERIC );
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if( pKeyCode )
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{
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PHB_SK_DATA sk_data = ( PHB_SK_DATA ) hb_stackGetTSD( &s_skData );
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PHB_SETKEY sk_list_tmp, sk_list_end;
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/* sk_list_end is not used in this context */
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sk_list_tmp = sk_findkey( hb_itemGetNI( pKeyCode ), sk_data->sk_list, &sk_list_end );
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if( sk_list_tmp )
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{
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hb_itemReturn( sk_list_tmp->pAction );
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if( sk_list_tmp->pIsActive )
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hb_itemParamStore( 2, sk_list_tmp->pIsActive );
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}
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}
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}
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HB_FUNC( HB_SETKEYSAVE )
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{
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PHB_SK_DATA sk_data = ( PHB_SK_DATA ) hb_stackGetTSD( &s_skData );
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PHB_ITEM pKeys, pKeyElements, pParam;
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PHB_SETKEY sk_list_tmp;
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ULONG itemcount, nitem;
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/* build an multi-dimensional array from existing hot-keys, and return it */
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/* count the number of items in the list */
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for( itemcount = 0, sk_list_tmp = sk_data->sk_list;
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sk_list_tmp;
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itemcount++, sk_list_tmp = sk_list_tmp->next )
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;
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pKeys = hb_itemArrayNew( itemcount );
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pKeyElements = hb_itemNew( NULL );
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for( nitem = 1, sk_list_tmp = sk_data->sk_list;
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nitem <= itemcount;
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nitem++, sk_list_tmp = sk_list_tmp->next )
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{
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hb_arrayNew( pKeyElements, 3 );
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hb_arraySetNI( pKeyElements, 1, sk_list_tmp->iKeyCode );
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hb_arraySet( pKeyElements, 2, sk_list_tmp->pAction );
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if( sk_list_tmp->pIsActive )
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hb_arraySet( pKeyElements, 3, sk_list_tmp->pIsActive );
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hb_arraySetForward( pKeys, nitem, pKeyElements );
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}
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hb_itemRelease( pKeyElements );
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hb_itemReturnRelease( pKeys );
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pParam = hb_param( 1, HB_IT_ANY );
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if( pParam )
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{
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hb_setkeyRelease( sk_data ); /* destroy the internal list */
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if( HB_IS_ARRAY( pParam ) )
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{
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itemcount = hb_arrayLen( pParam );
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for( nitem = 1; nitem <= itemcount; nitem++ )
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{
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PHB_ITEM itmKeyElements = hb_arrayGetItemPtr( pParam, nitem );
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sk_add( &sk_data->sk_list, FALSE,
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hb_arrayGetNI( itmKeyElements, 1 ),
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hb_arrayGetItemPtr( itmKeyElements, 2 ),
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hb_arrayGetItemPtr( itmKeyElements, 3 ) );
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}
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}
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}
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}
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HB_FUNC( HB_SETKEYCHECK )
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{
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PHB_ITEM pKeyCode = hb_param( 1, HB_IT_NUMERIC );
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BOOL bIsKeySet = FALSE;
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if( pKeyCode )
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{
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PHB_SK_DATA sk_data = ( PHB_SK_DATA ) hb_stackGetTSD( &s_skData );
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PHB_SETKEY sk_list_tmp, sk_list_end;
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/* sk_list_end is not used in this context */
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sk_list_tmp = sk_findkey( hb_itemGetNI( pKeyCode ), sk_data->sk_list, &sk_list_end );
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if( sk_list_tmp )
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{
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PHB_ITEM pIsActiveResults = sk_list_tmp->pIsActive ? hb_vmEvalBlockV( sk_list_tmp->pIsActive, 1, pKeyCode ) : NULL;
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if( pIsActiveResults == NULL || ! HB_IS_LOGICAL( pIsActiveResults ) || hb_itemGetL( pIsActiveResults ) )
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{
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bIsKeySet = TRUE;
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switch( hb_pcount() )
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{
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case 1: hb_vmEvalBlockV( sk_list_tmp->pAction, 1, pKeyCode ); break;
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case 2: hb_vmEvalBlockV( sk_list_tmp->pAction, 2, hb_param( 2, HB_IT_ANY ), pKeyCode ); break;
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case 3: hb_vmEvalBlockV( sk_list_tmp->pAction, 3, hb_param( 2, HB_IT_ANY ), hb_param( 3, HB_IT_ANY ), pKeyCode ); break;
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default: hb_vmEvalBlockV( sk_list_tmp->pAction, 4, hb_param( 2, HB_IT_ANY ), hb_param( 3, HB_IT_ANY ), hb_param( 4, HB_IT_ANY ), pKeyCode ); break;
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}
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}
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}
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}
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hb_retl( bIsKeySet );
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}
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