* harbour/include/hbapi.h
* harbour/include/hbcomp.h
+ harbour/include/hbcompdf.h
* harbour/include/hberrors.h
* harbour/include/hbexpra.c
* harbour/include/hbexprb.c
* harbour/include/hbexprc.c
* harbour/include/hbexprop.h
* harbour/include/hbmacro.h
* harbour/include/hbpp.h
* harbour/include/hbvm.h
* harbour/source/common/expropt1.c
* harbour/source/common/expropt2.c
* harbour/source/compiler/Makefile
* harbour/source/compiler/cmdcheck.c
* harbour/source/compiler/complex.c
* harbour/source/compiler/genc.c
* harbour/source/compiler/gencc.c
* harbour/source/compiler/gencli.c
* harbour/source/compiler/gencobj.c
* harbour/source/compiler/genhrb.c
* harbour/source/compiler/genjava.c
* harbour/source/compiler/genobj32.c
* harbour/source/compiler/harbour.c
* harbour/source/compiler/harbour.l
* harbour/source/compiler/harbour.y
* harbour/source/compiler/hbcomp.c
* harbour/source/compiler/hbdead.c
* harbour/source/compiler/hbfix.c
* harbour/source/compiler/hbfunchk.c
* harbour/source/compiler/hbgenerr.c
* harbour/source/compiler/hbident.c
* harbour/source/compiler/hbpcode.c
* harbour/source/compiler/ppcomp.c
* harbour/source/macro/macro.y
* harbour/source/pp/ppcore.c
* harbour/source/pp/ppgen.c
* harbour/source/pp/pplib.c
* harbour/source/vm/cmdarg.c
* harbour/source/vm/estack.c
* harbour/source/vm/fm.c
* harbour/source/vm/macro.c
* harbour/utils/hbpp/hbpp.c
* harbour/utils/hbpp/hbpp.h
* harbour/utils/hbpp/hbppcomp.c
* harbour/utils/hbpp/hbppcore.c
* harbour/utils/hbpp/hbpplib.c
* harbour/utils/hbpp/pragma.c
* changed the internal compiler API to be MT safe.
All global and static non constant variables replaced by
HB_COMP structure which have all compiler context settings.
It's possible to allocate simultaneously many compiler contexts
and compile code. Only constant/read only variables are shared.
In macro compiler HB_COMP is replaced by HB_MACRO.
In source code I everywhere used to macros: HB_COMP_DECL and
HB_COMP_PARAM which are equivalents of old HB_MACRO_DECL and
HB_MACRO_PARAM definitions.
We will only have to change compiler FATAL errors support to
not execute exit() for non batch systems.
* make macro compiler fully MT safe
* removed not longer used definitions and variables
! add direct accessing to PP line number information - it fixes missing
line numbers reported recently
! added generating .ppo files when tokens are teken directly by compiler
- it fixes empty .ppo file problem
! clear hb_stack internall variables after removing hb_stack to avoid
possible GPF if application still works and try to access unexsiting
hb_stack
! do not allocate new memory block when final FM statistic report is
generated - it fixes problem with GPF when application compiled with
FM statistic exits and CLIPPER envvar is set.
! fixed memory leak hb_cmdargCheck()
! added to harbour.y symbol destructors - it should fixes memory leaks
in syntax errors but it uses quite new bison feature which is not
fully supported yet. Unfortunately it's also not MT safe and the
destructors implementation in 1.875c does not respect %parse-param.
Bison documentation says that it should so I hope it will be fixed
soon (or maybe even already is in the newest bison versions) before
I'll add multi context compilation support. If not then I will have
to add some workaround. I can pass compiler context pointer inside
YYSTYPE using hack in a lexer but it will force really huge number
modifications in existing bison rules so probably it will be much
easier to fix bison or write a small tool to update generated parser.
* other modifications - the total size of patch is nearly 1MB and
detail description will have to take me few days.
684 lines
18 KiB
C
684 lines
18 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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* The eval stack management functions
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*
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* Copyright 1999 Antonio Linares <alinares@fivetech.com>
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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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#if defined(HB_INCLUDE_WINEXCHANDLER)
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#define HB_OS_WIN_32_USED
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#endif
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#include "hbvmopt.h"
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#include "hbapi.h"
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#include "hbapicls.h"
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#include "hbdefs.h"
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#include "hbstack.h"
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#include "hbapiitm.h"
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#include "hbapierr.h"
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/* ------------------------------- */
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#if !defined( STACK_INITHB_ITEMS )
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#define STACK_INITHB_ITEMS 200
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#endif
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#if !defined( STACK_EXPANDHB_ITEMS )
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#define STACK_EXPANDHB_ITEMS 20
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#endif
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HB_STACK hb_stack;
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HB_SYMB s_initSymbol = { "hb_stackInit", {HB_FS_STATIC}, {NULL}, NULL };
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/* ------------------------------- */
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#undef hb_stackPop
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void hb_stackPop( void )
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{
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HB_TRACE(HB_TR_DEBUG, ("hb_stackPop()"));
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if( --hb_stack.pPos <= hb_stack.pBase )
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hb_errInternal( HB_EI_STACKUFLOW, NULL, NULL, NULL );
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if( HB_IS_COMPLEX( * hb_stack.pPos ) )
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hb_itemClear( * hb_stack.pPos );
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}
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#undef hb_stackPopReturn
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void hb_stackPopReturn( void )
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{
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HB_TRACE(HB_TR_DEBUG, ("hb_stackPopReturn()"));
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if( HB_IS_COMPLEX( &hb_stack.Return ) )
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hb_itemClear( &hb_stack.Return );
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if( --hb_stack.pPos <= hb_stack.pBase )
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hb_errInternal( HB_EI_STACKUFLOW, NULL, NULL, NULL );
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hb_itemRawMove( &hb_stack.Return, * hb_stack.pPos );
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}
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#undef hb_stackDec
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void hb_stackDec( void )
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{
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HB_TRACE(HB_TR_DEBUG, ("hb_stackDec()"));
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if( --hb_stack.pPos <= hb_stack.pBase )
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hb_errInternal( HB_EI_STACKUFLOW, NULL, NULL, NULL );
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}
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#undef hb_stackDecrease
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void hb_stackDecrease( ULONG ulItems )
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{
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HB_TRACE(HB_TR_DEBUG, ("hb_stackDec()"));
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if( ( hb_stack.pPos -= ulItems ) <= hb_stack.pBase )
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hb_errInternal( HB_EI_STACKUFLOW, NULL, NULL, NULL );
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}
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void hb_stackFree( void )
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{
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LONG i;
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HB_TRACE(HB_TR_DEBUG, ("hb_stackFree()"));
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i = hb_stack.wItems - 1;
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while( i >= 0 )
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hb_xfree( hb_stack.pItems[ i-- ] );
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hb_xfree( hb_stack.pItems );
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hb_stack.pItems = hb_stack.pPos = hb_stack.pBase = NULL;
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}
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#undef hb_stackPush
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void hb_stackPush( void )
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{
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HB_TRACE(HB_TR_DEBUG, ("hb_stackPush()"));
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/* enough room for another item ? */
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if( ++hb_stack.pPos == hb_stack.pEnd )
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hb_stackIncrease();
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}
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#undef hb_stackAllocItem
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HB_ITEM_PTR hb_stackAllocItem( void )
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{
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HB_TRACE(HB_TR_DEBUG, ("hb_stackAllocItem()"));
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if( ++hb_stack.pPos == hb_stack.pEnd )
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hb_stackIncrease();
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return * ( hb_stack.pPos - 1 );
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}
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#undef hb_stackPushReturn
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void hb_stackPushReturn( void )
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{
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HB_TRACE(HB_TR_DEBUG, ("hb_stackPushReturn()"));
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hb_itemRawMove( * hb_stack.pPos, &hb_stack.Return );
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/* enough room for another item ? */
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if( ++hb_stack.pPos == hb_stack.pEnd )
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hb_stackIncrease();
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}
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void hb_stackIncrease( void )
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{
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LONG BaseIndex; /* index of stack base */
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LONG CurrIndex; /* index of current top item */
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LONG EndIndex; /* index of current top item */
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HB_TRACE(HB_TR_DEBUG, ("hb_stackIncrease()"));
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BaseIndex = hb_stack.pBase - hb_stack.pItems;
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CurrIndex = hb_stack.pPos - hb_stack.pItems;
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EndIndex = hb_stack.pEnd - hb_stack.pItems;
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/* no, make more headroom: */
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hb_stack.pItems = ( PHB_ITEM * ) hb_xrealloc( ( void * ) hb_stack.pItems,
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sizeof( PHB_ITEM ) * ( hb_stack.wItems + STACK_EXPANDHB_ITEMS ) );
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/* fix possibly modified by realloc pointers: */
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hb_stack.pPos = hb_stack.pItems + CurrIndex;
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hb_stack.pBase = hb_stack.pItems + BaseIndex;
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hb_stack.wItems += STACK_EXPANDHB_ITEMS;
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hb_stack.pEnd = hb_stack.pItems + hb_stack.wItems;
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do
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{
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hb_stack.pItems[ EndIndex ] = ( PHB_ITEM ) hb_xgrab( sizeof( HB_ITEM ) );
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hb_stack.pItems[ EndIndex ]->type = HB_IT_NIL;
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}
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while( ++EndIndex < hb_stack.wItems );
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}
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void hb_stackInit( void )
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{
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LONG i;
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HB_TRACE(HB_TR_DEBUG, ("hb_stackInit()"));
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hb_stack.pItems = ( PHB_ITEM * ) hb_xgrab( sizeof( PHB_ITEM ) * STACK_INITHB_ITEMS );
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hb_stack.pBase = hb_stack.pItems;
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hb_stack.pPos = hb_stack.pItems; /* points to the first stack item */
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hb_stack.wItems = STACK_INITHB_ITEMS;
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hb_stack.pEnd = hb_stack.pItems + hb_stack.wItems;
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hb_stack.Return.type = HB_IT_NIL;
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for( i = 0; i < hb_stack.wItems; ++i )
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{
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hb_stack.pItems[ i ] = ( PHB_ITEM ) hb_xgrab( sizeof( HB_ITEM ) );
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hb_stack.pItems[ i ]->type = HB_IT_NIL;
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}
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hb_stack.pPos++;
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hb_itemPutSymbol( * hb_stack.pItems, &s_initSymbol );
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( * hb_stack.pItems )->item.asSymbol.stackstate = &hb_stack.state;
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}
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void hb_stackRemove( LONG lUntilPos )
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{
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HB_ITEM_PTR * pEnd = hb_stack.pItems + lUntilPos;
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while( hb_stack.pPos > pEnd )
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{
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--hb_stack.pPos;
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if( HB_IS_COMPLEX( * hb_stack.pPos ) )
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hb_itemClear( * hb_stack.pPos );
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}
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}
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HB_ITEM_PTR hb_stackNewFrame( PHB_STACK_STATE pStack, USHORT uiParams )
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{
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HB_ITEM_PTR * pBase, pItem;
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pBase = hb_stack.pPos - uiParams - 2;
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pItem = * pBase; /* procedure symbol */
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if( ! HB_IS_SYMBOL( pItem ) )
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{
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/* QUESTION: Is this call needed ? [vszakats] */
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hb_stackDispLocal();
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hb_errInternal( HB_EI_VMNOTSYMBOL, NULL, "hb_vmDo()", NULL );
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}
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pStack->lBaseItem = hb_stack.pBase - hb_stack.pItems;
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pStack->lStatics = hb_stack.lStatics;
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pStack->ulPrivateBase = hb_memvarGetPrivatesBase();
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pStack->uiClass = pStack->uiMethod = pStack->uiLineNo = 0;
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pItem->item.asSymbol.stackstate = pStack;
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pItem->item.asSymbol.paramcnt = uiParams;
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/* set default value of 'paramdeclcnt' - it will be updated
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* in hb_vmVFrame only
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*/
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pItem->item.asSymbol.paramdeclcnt = uiParams;
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hb_stack.pBase = pBase;
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return pItem;
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}
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void hb_stackOldFrame( PHB_STACK_STATE pStack )
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{
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if( hb_stack.pPos <= hb_stack.pBase )
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hb_errInternal( HB_EI_STACKUFLOW, NULL, NULL, NULL );
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do
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{
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--hb_stack.pPos;
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if( HB_IS_COMPLEX( * hb_stack.pPos ) )
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hb_itemClear( * hb_stack.pPos );
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}
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while( hb_stack.pPos > hb_stack.pBase );
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hb_stack.pBase = hb_stack.pItems + pStack->lBaseItem;
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hb_stack.lStatics = pStack->lStatics;
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hb_memvarSetPrivatesBase( pStack->ulPrivateBase );
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}
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#undef hb_stackItem
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HB_ITEM_PTR hb_stackItem( LONG iItemPos )
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{
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if( iItemPos < 0 )
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hb_errInternal( HB_EI_STACKUFLOW, NULL, NULL, NULL );
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return * ( hb_stack.pItems + iItemPos );
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}
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#undef hb_stackItemFromTop
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HB_ITEM_PTR hb_stackItemFromTop( int nFromTop )
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{
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if( nFromTop >= 0 )
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hb_errInternal( HB_EI_STACKUFLOW, NULL, NULL, NULL );
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return * ( hb_stack.pPos + nFromTop );
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}
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#undef hb_stackItemFromBase
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HB_ITEM_PTR hb_stackItemFromBase( int nFromBase )
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{
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if( nFromBase <= 0 )
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hb_errInternal( HB_EI_STACKUFLOW, NULL, NULL, NULL );
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return * ( hb_stack.pBase + nFromBase + 1 );
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}
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#undef hb_stackLocalVariable
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HB_ITEM_PTR hb_stackLocalVariable( int *piFromBase )
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{
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HB_ITEM_PTR pBase = *hb_stack.pBase;
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if( *piFromBase <= 0 )
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hb_errInternal( HB_EI_STACKUFLOW, NULL, NULL, NULL );
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if( pBase->item.asSymbol.paramcnt > pBase->item.asSymbol.paramdeclcnt )
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{
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/* function with variable number of parameters:
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* FUNCTION foo( a,b,c,...)
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* LOCAL x,y,z
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* number of passed parameters is bigger then number of declared
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* parameters - skip additional parameters only for local variables
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*/
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if( *piFromBase > pBase->item.asSymbol.paramdeclcnt )
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*piFromBase += pBase->item.asSymbol.paramcnt - pBase->item.asSymbol.paramdeclcnt;
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}
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return * ( hb_stack.pBase + *piFromBase + 1 );
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}
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#undef hb_stackBaseItem
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HB_ITEM_PTR hb_stackBaseItem( void )
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{
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return * hb_stack.pBase;
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}
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/* Returns SELF object, an evaluated codeblock or NIL for normal func/proc
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*/
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#undef hb_stackSelfItem
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HB_ITEM_PTR hb_stackSelfItem( void )
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{
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return * ( hb_stack.pBase + 1 );
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}
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#undef hb_stackReturnItem
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HB_ITEM_PTR hb_stackReturnItem( void )
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{
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HB_TRACE(HB_TR_DEBUG, ("hb_stackReturnItem()"));
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return &hb_stack.Return;
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}
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#undef hb_stackTopOffset
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LONG hb_stackTopOffset( void )
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{
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return hb_stack.pPos - hb_stack.pItems;
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}
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#undef hb_stackBaseOffset
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LONG hb_stackBaseOffset( void )
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{
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return hb_stack.pBase - hb_stack.pItems + 1;
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}
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#undef hb_stackTotalItems
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LONG hb_stackTotalItems( void )
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{
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return hb_stack.wItems;
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}
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#undef hb_stackDateBuffer
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char * hb_stackDateBuffer( void )
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{
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return hb_stack.szDate;
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}
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#undef hb_stackGetStaticsBase
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LONG hb_stackGetStaticsBase( void )
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{
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return hb_stack.lStatics;
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}
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#undef hb_stackSetStaticsBase
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void hb_stackSetStaticsBase( LONG lBase )
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{
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hb_stack.lStatics = lBase;
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}
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#undef hb_stackWithObjectItem
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PHB_ITEM hb_stackWithObjectItem( void )
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{
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return hb_stack.lWithObject ?
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* ( hb_stack.pItems + hb_stack.lWithObject ) : NULL;
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}
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#undef hb_stackWithObjectOffset
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LONG hb_stackWithObjectOffset( void )
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{
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return hb_stack.lWithObject;
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}
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#undef hb_stackWithObjectSetOffset
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void hb_stackWithObjectSetOffset( LONG lOffset )
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{
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hb_stack.lWithObject = lOffset;
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}
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#undef hb_stackItemBasePtr
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PHB_ITEM ** hb_stackItemBasePtr( void )
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{
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return &hb_stack.pItems;
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}
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void hb_stackClearMevarsBase( void )
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{
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PHB_ITEM pBase;
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HB_TRACE(HB_TR_DEBUG, ("hb_stackClearMevarsBase()"));
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pBase = * hb_stack.pBase;
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while( pBase->item.asSymbol.stackstate->ulPrivateBase != 0 )
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{
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pBase->item.asSymbol.stackstate->ulPrivateBase = 0;
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pBase = * ( hb_stack.pItems + pBase->item.asSymbol.stackstate->lBaseItem );
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}
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}
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int hb_stackCallDepth( void )
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{
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LONG lOffset = hb_stack.pBase - hb_stack.pItems;
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|
int iLevel = 0;
|
|
|
|
while( lOffset > 0 )
|
|
{
|
|
lOffset = ( * ( hb_stack.pItems + lOffset ) )->item.asSymbol.stackstate->lBaseItem;
|
|
++iLevel;
|
|
}
|
|
|
|
return iLevel;
|
|
}
|
|
|
|
LONG hb_stackBaseProcOffset( int iLevel )
|
|
{
|
|
LONG lOffset = hb_stack.pBase - hb_stack.pItems;
|
|
|
|
while( iLevel-- > 0 && lOffset > 0 )
|
|
lOffset = ( * ( hb_stack.pItems + lOffset ) )->item.asSymbol.stackstate->lBaseItem;
|
|
|
|
if( iLevel < 0 && ( lOffset > 0 || HB_IS_SYMBOL( * hb_stack.pItems ) ) )
|
|
return lOffset;
|
|
else
|
|
return -1;
|
|
}
|
|
|
|
void hb_stackBaseProcInfo( char * szProcName, USHORT * puiProcLine )
|
|
{
|
|
/*
|
|
* This function is called by FM module and has to be ready for execution
|
|
* before stack initialization, [druzus];
|
|
*/
|
|
if( hb_stack.pPos > hb_stack.pBase )
|
|
{
|
|
strcpy( szProcName, ( * hb_stack.pBase )->item.asSymbol.value->szName );
|
|
* puiProcLine = ( * hb_stack.pBase )->item.asSymbol.stackstate->uiLineNo;
|
|
}
|
|
else
|
|
{
|
|
szProcName[ 0 ] = '\0';
|
|
* puiProcLine = 0;
|
|
}
|
|
}
|
|
|
|
/* NOTE: DEBUG function */
|
|
void hb_stackDispLocal( void )
|
|
{
|
|
PHB_ITEM * pBase;
|
|
|
|
HB_TRACE(HB_TR_DEBUG, ("hb_stackDispLocal()"));
|
|
|
|
printf( hb_conNewLine() );
|
|
printf( HB_I_("Virtual Machine Stack Dump at %s(%i):"),
|
|
( *hb_stack.pBase )->item.asSymbol.value->szName,
|
|
( *hb_stack.pBase )->item.asSymbol.stackstate->uiLineNo );
|
|
printf( hb_conNewLine() );
|
|
printf( "--------------------------" );
|
|
|
|
for( pBase = hb_stack.pBase; pBase <= hb_stack.pPos; pBase++ )
|
|
{
|
|
printf( hb_conNewLine() );
|
|
|
|
switch( hb_itemType( *pBase ) )
|
|
{
|
|
case HB_IT_NIL:
|
|
printf( HB_I_("NIL ") );
|
|
break;
|
|
|
|
case HB_IT_ARRAY:
|
|
if( hb_arrayIsObject( *pBase ) )
|
|
printf( HB_I_("OBJECT = %s "), hb_objGetClsName( *pBase ) );
|
|
else
|
|
printf( HB_I_("ARRAY ") );
|
|
break;
|
|
|
|
case HB_IT_BLOCK:
|
|
printf( HB_I_("BLOCK ") );
|
|
break;
|
|
|
|
case HB_IT_DATE:
|
|
{
|
|
char szDate[ 9 ];
|
|
printf( HB_I_("DATE = \"%s\" "), hb_itemGetDS( *pBase, szDate ) );
|
|
}
|
|
break;
|
|
|
|
case HB_IT_DOUBLE:
|
|
printf( HB_I_("DOUBLE = %f "), hb_itemGetND( *pBase ) );
|
|
break;
|
|
|
|
case HB_IT_LOGICAL:
|
|
printf( HB_I_("LOGICAL = %s "), hb_itemGetL( *pBase ) ? ".T." : ".F." );
|
|
break;
|
|
|
|
case HB_IT_LONG:
|
|
printf( HB_I_("LONG = %" PFHL "i ") , hb_itemGetNInt( *pBase ) );
|
|
break;
|
|
|
|
case HB_IT_INTEGER:
|
|
printf( HB_I_("INTEGER = %i "), hb_itemGetNI( *pBase ) );
|
|
break;
|
|
|
|
case HB_IT_STRING:
|
|
printf( HB_I_("STRING = \"%s\" "), hb_itemGetCPtr( *pBase ) );
|
|
break;
|
|
|
|
case HB_IT_SYMBOL:
|
|
printf( HB_I_("SYMBOL = %s "), ( *pBase )->item.asSymbol.value->szName );
|
|
break;
|
|
|
|
case HB_IT_POINTER:
|
|
printf( HB_I_("POINTER = %p "), ( *pBase )->item.asPointer.value );
|
|
break;
|
|
|
|
default:
|
|
printf( HB_I_("UNKNOWN = TYPE %i "), hb_itemType( *pBase ) );
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
void hb_stackDispCall( void )
|
|
{
|
|
PHB_ITEM * pBase = hb_stack.pBase;
|
|
|
|
HB_TRACE(HB_TR_DEBUG, ("hb_stackDispCall()"));
|
|
|
|
while( pBase > hb_stack.pItems )
|
|
{
|
|
char buffer[ HB_SYMBOL_NAME_LEN + HB_SYMBOL_NAME_LEN + 32 ];
|
|
|
|
if( HB_IS_OBJECT( *( pBase + 1 ) ) )
|
|
sprintf( buffer, HB_I_("Called from %s:%s(%i)"), hb_objGetClsName( *(pBase + 1) ),
|
|
( *pBase )->item.asSymbol.value->szName,
|
|
( *pBase )->item.asSymbol.stackstate->uiLineNo );
|
|
else
|
|
sprintf( buffer, HB_I_("Called from %s(%i)"),
|
|
( *pBase )->item.asSymbol.value->szName,
|
|
( *pBase )->item.asSymbol.stackstate->uiLineNo );
|
|
|
|
hb_conOutErr( buffer, 0 );
|
|
hb_conOutErr( hb_conNewLine(), 0 );
|
|
|
|
pBase = hb_stack.pItems + ( *pBase )->item.asSymbol.stackstate->lBaseItem;
|
|
}
|
|
}
|
|
|
|
/* ------------------------------------------------------------------------ */
|
|
/* The garbage collector interface */
|
|
/* ------------------------------------------------------------------------ */
|
|
|
|
/* Mark all locals as used so they will not be released by the
|
|
* garbage collector
|
|
*/
|
|
void hb_vmIsLocalRef( void )
|
|
{
|
|
HB_TRACE(HB_TR_DEBUG, ("hb_vmIsLocalRef()"));
|
|
|
|
if( hb_stack.pPos > hb_stack.pItems )
|
|
{
|
|
/* the eval stack is not cleared yet */
|
|
HB_ITEM_PTR * pItem = hb_stack.pPos - 1;
|
|
|
|
do
|
|
{
|
|
if( HB_IS_GCITEM( *pItem ) )
|
|
hb_gcItemRef( *pItem );
|
|
}
|
|
while( --pItem > hb_stack.pItems );
|
|
}
|
|
}
|
|
|
|
#ifdef HB_INCLUDE_WINEXCHANDLER
|
|
|
|
#if defined(HB_OS_WIN_32)
|
|
|
|
LONG WINAPI hb_UnhandledExceptionFilter( struct _EXCEPTION_POINTERS * ExceptionInfo )
|
|
{
|
|
PHB_ITEM *pBase = hb_stack.pBase;
|
|
|
|
char msg[ ( HB_SYMBOL_NAME_LEN + HB_SYMBOL_NAME_LEN + 32 ) * 32 ];
|
|
|
|
HB_SYMBOL_UNUSED( ExceptionInfo );
|
|
|
|
msg[ 0 ] = '\0';
|
|
|
|
while( pBase > hb_stack.pItems )
|
|
{
|
|
char buffer[ HB_SYMBOL_NAME_LEN + HB_SYMBOL_NAME_LEN + 32 ];
|
|
|
|
if( HB_IS_OBJECT( *( pBase + 1 ) ) )
|
|
sprintf( buffer, HB_I_("Called from %s:%s(%i)\n"), hb_objGetClsName( *(pBase + 1) ),
|
|
( *pBase )->item.asSymbol.value->szName,
|
|
( *pBase )->item.asSymbol.stackstate->uiLineNo );
|
|
else
|
|
sprintf( buffer, HB_I_("Called from %s(%i)\n"),
|
|
( *pBase )->item.asSymbol.value->szName,
|
|
( *pBase )->item.asSymbol.stackstate->uiLineNo );
|
|
|
|
strcat( msg, buffer );
|
|
|
|
pBase = hb_stack.pItems + ( *pBase )->item.asSymbol.stackstate->lBaseItem;
|
|
}
|
|
|
|
MessageBox( NULL, msg, HB_I_("Harbour Exception"), MB_ICONSTOP );
|
|
|
|
return EXCEPTION_CONTINUE_SEARCH; /* EXCEPTION_EXECUTE_HANDLER; */
|
|
}
|
|
|
|
#endif
|
|
|
|
#endif
|
|
|
|
#if defined(HB_OS_OS2)
|
|
|
|
ULONG _System OS2TermHandler( PEXCEPTIONREPORTRECORD p1,
|
|
PEXCEPTIONREGISTRATIONRECORD p2,
|
|
PCONTEXTRECORD p3,
|
|
PVOID pv )
|
|
{
|
|
HB_SYMBOL_UNUSED(p1);
|
|
HB_SYMBOL_UNUSED(p2);
|
|
HB_SYMBOL_UNUSED(p3);
|
|
HB_SYMBOL_UNUSED(pv);
|
|
|
|
/* Don't print stack trace if inside unwind, normal process termination or process killed or
|
|
during debugging */
|
|
if( p1->ExceptionNum != XCPT_UNWIND && p1->ExceptionNum < XCPT_BREAKPOINT )
|
|
{
|
|
PHB_ITEM *pBase = hb_stack.pBase;
|
|
|
|
fprintf(stderr, HB_I_("\nException %lx at address %p \n"), p1->ExceptionNum, p1->ExceptionAddress);
|
|
|
|
while( pBase > hb_stack.pItems )
|
|
{
|
|
if( HB_IS_OBJECT( *( pBase + 1 ) ) )
|
|
fprintf( stderr, HB_I_("Called from %s:%s(%i)\n"), hb_objGetClsName( *(pBase + 1) ),
|
|
( *pBase )->item.asSymbol.value->szName,
|
|
( *pBase )->item.asSymbol.stackstate->uiLineNo );
|
|
else
|
|
fprintf( stderr, HB_I_("Called from %s(%i)\n"),
|
|
( *pBase )->item.asSymbol.value->szName,
|
|
( *pBase )->item.asSymbol.stackstate->uiLineNo );
|
|
|
|
pBase = hb_stack.pItems + ( *pBase )->item.asSymbol.stackstate->lBaseItem;
|
|
}
|
|
}
|
|
|
|
return XCPT_CONTINUE_SEARCH; /* Exception not resolved... */
|
|
}
|
|
#endif
|