* harbour/Makefile
+ harbour/make_bsd.sh
+ harbour/make_drw.sh
* harbour/make_tgz.sh
+ harbour/bin/hb-func.sh
* harbour/bin/pack_src.sh
+ harbour/bin/postinst.bat
+ harbour/bin/postinst.sh
* harbour/config/dir.cf
* harbour/config/bsd/gcc.cf
* harbour/config/bsd/global.cf
+ harbour/config/darwin/dir.cf
+ harbour/config/darwin/gcc.cf
+ harbour/config/darwin/global.cf
+ harbour/config/darwin/install.cf
* harbour/config/dos/dir.cf
* harbour/config/dos/global.cf
* harbour/config/dos/install.cf
* harbour/config/dos/owatcom.cf
* harbour/config/dos/watcom.cf
* harbour/config/linux/gcc.cf
* harbour/config/linux/global.cf
* harbour/contrib/Makefile
* harbour/contrib/dot/pp_harb.ch
* harbour/contrib/libct/Makefile
* harbour/contrib/libct/bit1.c
* harbour/contrib/libct/bit2.c
* harbour/contrib/libct/bit3.c
* harbour/contrib/libct/files.c
* harbour/contrib/libct/ftoc.c
- harbour/contrib/libct/invertwin.prg
+ harbour/contrib/libct/invrtwin.prg
* harbour/contrib/libct/keyset.c
* harbour/contrib/libct/makefile.bc
* harbour/contrib/libmisc/dates2.c
* harbour/contrib/rdd_ads/ads1.c
* harbour/contrib/rdd_ads/adsfunc.c
* harbour/contrib/samples/date.c
* harbour/include/dbinfo.ch
* harbour/include/hbapi.h
* harbour/include/hbapicdp.h
* harbour/include/hbapifs.h
* harbour/include/hbapigt.h
* harbour/include/hbapiitm.h
* harbour/include/hbcomp.h
* harbour/include/hbdate.h
* harbour/include/hbdbf.h
* harbour/include/hbdbferr.h
* harbour/include/hbdefs.h
* harbour/include/hbexprb.c
* harbour/include/hbexprc.c
* harbour/include/hbexprop.h
* harbour/include/hbmacro.h
* harbour/include/hbmath.h
* harbour/include/hbpcode.h
* harbour/include/hbrddcdx.h
* harbour/include/hbrdddbf.h
* harbour/include/hbrdddbt.h
* harbour/include/hbrddfpt.h
* harbour/include/hbrddntx.h
* harbour/include/hbset.h
* harbour/include/hbsetup.h
* harbour/include/set.ch
* harbour/source/common/Makefile
* harbour/source/common/expropt1.c
* harbour/source/common/expropt2.c
- harbour/source/common/hbffind.c
* harbour/source/common/hbfsapi.c
* harbour/source/common/hbstr.c
* harbour/source/common/hbver.c
+ harbour/source/common/hbverdsp.c
* harbour/source/compiler/genc.c
* harbour/source/compiler/gencli.c
* harbour/source/compiler/harbour.c
* harbour/source/compiler/harbour.l
* harbour/source/compiler/harbour.slx
* harbour/source/compiler/harbour.sly
* harbour/source/compiler/harbour.y
* harbour/source/compiler/hbfix.c
* harbour/source/compiler/hbpcode.c
* harbour/source/compiler/hbusage.c
* harbour/source/compiler/simplex.c
* harbour/source/macro/macro.l
* harbour/source/macro/macro.slx
* harbour/source/macro/macro.y
* harbour/source/pp/ppcore.c
* harbour/source/rdd/dbcmd.c
* harbour/source/rdd/dbf1.c
* harbour/source/rdd/dbfcdx/dbfcdx1.c
- harbour/source/rdd/dbfcdx/dbfcdx1.h
* harbour/source/rdd/dbffpt/dbffpt1.c
* harbour/source/rdd/dbfntx/dbfntx1.c
* harbour/source/rtl/Makefile
* harbour/source/rtl/abs.c
* harbour/source/rtl/at.c
* harbour/source/rtl/datec.c
* harbour/source/rtl/dates.c
* harbour/source/rtl/dateshb.c
* harbour/source/rtl/datesx.c
* harbour/source/rtl/empty.c
* harbour/source/rtl/errorapi.c
* harbour/source/rtl/errorint.c
* harbour/source/rtl/filesys.c
* harbour/source/rtl/fstemp.c
+ harbour/source/rtl/hbffind.c
* harbour/source/rtl/hbrandom.c
* harbour/source/rtl/idle.c
* harbour/source/rtl/inkey.c
* harbour/source/rtl/math.c
* harbour/source/rtl/minmax.c
* harbour/source/rtl/pad.c
* harbour/source/rtl/padc.c
* harbour/source/rtl/padl.c
* harbour/source/rtl/padr.c
* harbour/source/rtl/philes.c
* harbour/source/rtl/round.c
* harbour/source/rtl/soundex.c
* harbour/source/rtl/str.c
* harbour/source/rtl/strcase.c
* harbour/source/rtl/strmatch.c
* harbour/source/rtl/strtran.c
* harbour/source/rtl/strzero.c
* harbour/source/rtl/substr.c
* harbour/source/rtl/val.c
* harbour/source/rtl/gtcrs/gtcrs.c
* harbour/source/rtl/gtcrs/kbdcrs.c
* harbour/source/rtl/gtdos/gtdos.c
* harbour/source/rtl/gtsln/gtsln.c
* harbour/source/rtl/gtsln/kbsln.c
* harbour/source/rtl/gtsln/keytrans.c
* harbour/source/vm/arrays.c
* harbour/source/vm/codebloc.c
* harbour/source/vm/estack.c
* harbour/source/vm/eval.c
* harbour/source/vm/extend.c
* harbour/source/vm/hvm.c
* harbour/source/vm/itemapi.c
* harbour/source/vm/macro.c
* harbour/source/vm/memvars.c
* harbour/source/vm/runner.c
* harbour/tests/bldtest/bldtest.c
* harbour/utils/hbtest/hbtest.prg
* harbour/utils/hbtest/rt_misc.prg
* harbour/utils/hbtest/rt_str.prg
* Sorry but it's too much modification for full description
cvs diff gives file 785982 bytes length. So I only count the
main things:
! cleand the code (no more warning messages under Linux and GCC and
DOS OpenWatcom) - some of them were real bugs
! cleaned all endian dependend code I've found - now Harbour can be
compiled on LITLE and BIG endian machines - for some other like
PDP ENDIAN it's enough to define proper macros in hbdefs.h
+ added macros for to get/put values in chosen byte order:
HB_GET_LE_[U]INT{16,24,32,64}( pPtr )
HB_GET_BE_[U]INT{16,24,32,64}( pPtr )
HB_PUT_LE_[U]INT{16,24,32,64}( pPtr, nVal )
HB_PUT_BE_[U]INT{16,24,32,64}( pPtr, nVal )
+ added macro HB_CAST_BYTE_NUMBERS_OFF which disables casting in
HB_{GET|PUT}_{LE|BE}_* macros - it's necessary for some platforms
like ALPHA DEC.
! cleaned the code for 64bit machines
* changed all parameters in hb_date* functions (day, month, year, week)
from LONG to int - it doesn't change binary compatibility for 32bit
machines but can cause troubles with compiling the old source
+ changed HB_IT_LONG type to HB_LONG which is mapped to long long
by default for 32 bit machines.
+ change HB_IT_INTEGER to be real 'int' C type not 'short int'
+ added HB_IS_NUMINT() macro
+ added hb_parnll, hb_stornll, hb_retnll, hbretnlllen, hb_itemPutNLL,
hb_itemPutNLLLen, hb_itemGetNLL which operates on LONGLONG
+ added hb_parnint, hb_stornint, hb_retnint, hb_retnintlen,
hb_itemPutNInt, hb_itemPutNIntLen, hb_itemGetNInt which operates on
HB_LONG
+ added HB_PUSHLONGLONG pcode
+ changed compiler and optimizer to use HB_LONG numbers and reduce
conversion from to double which may damage the 64bit number.
+ common functions for string to number conversions for compiler, RTL
and RDD to reduce problems with differ FL values for the same number:
hb_compStrToNum(), hb_valStrnToNum(), hb_strToNum(), hb_strnToNum()
+ common function hb_numRoun() which uses exactly the same algorithms
as string to number conversion for the same reason - please keep
this functions together.
+ hack inside hb_numRound() similar to the one used by CL5.3
+ hb_numInt() which uses uses the same hack as hb_numRound()
+ rewritten number to string conversion
+ some new string manipulation functions hb_strncpy(), hb_strncat(), ...
They works differ the the C one - always set 0 at the end, the buffer
has to be n+1 bytes length, the n is total size of buffer not the
left free space.
! cleaned some code which operates on ASCIIZ string to avoid potential
buffer overflow
+ updated RDD code - it's the first part - in few days I plan to change
workarea structure in both projects - it will break any 3rd party RDDs
so they have to be updated. I want to add SUPERTABLE into workarea
to allow creating new RDD on-line.
! cleaned the bugs with negating integers - on most machines (like x86)
the integers are not 0 symmetric - it means that x = -x does not work
for {INT,LONG,LONGLONG}_MIN (hb_vmNegate, ABS())
+ cleaned error messages to be Clipper compatible.
+ updated build process for .DEB packages - now hb* scripts and shared
libs are created by standard make install
* added new .prg #defines: __PLATFORM__<cPlatfrom>,
__ARCH{16|32|64}BIT__, __LITTLE_ENDIAN__|__BIG_ENDIAN__|__PDP_ENDIAN__
!!! cPlatfrom can have lower letters (for xHarbour compatibility)
If you do not like it please change it.
* others ...
529 lines
18 KiB
C
529 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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* Compiler Expression Optimizer - utilities
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*
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* Copyright 1999 Ryszard Glab
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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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/* TOFIX: Split the code, since MSC8 can't compile it, even in Huge model. */
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/* TODO:
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* - Correct post- and pre- operations to correctly handle the following code
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* a[ i++ ]++
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* Notice: in current implementation (an in Clipper too) 'i++' is evaluated
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* two times! This causes that the new value (after incrementation) is
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* stored in next element of the array.
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*/
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#include <math.h>
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#include "hbcomp.h"
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#include "hbmacro.ch"
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#ifdef __WATCOMC__
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/* disable warnings for 'no reference to symbol' */
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#pragma warning 14 9
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#endif
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/* ************************************************************************* */
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#if defined( HB_MACRO_SUPPORT )
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void hb_compExprDelOperator( HB_EXPR_PTR pExpr, HB_MACRO_DECL )
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#else
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void hb_compExprDelOperator( HB_EXPR_PTR pExpr )
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#endif
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{
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if( pExpr->value.asOperator.pLeft )
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HB_EXPR_PCODE1( hb_compExprDelete, pExpr->value.asOperator.pLeft );
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if( pExpr->value.asOperator.pRight )
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HB_EXPR_PCODE1( hb_compExprDelete, pExpr->value.asOperator.pRight );
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}
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/* Generates pcodes for compound operators += -= *= /= %= ^=
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*
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* pExpr is an expression created by hb_compExprNew<operator>Eq functions
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*/
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#if defined( HB_MACRO_SUPPORT )
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void hb_compExprPushOperEq( HB_EXPR_PTR pSelf, BYTE bOpEq, HB_MACRO_DECL )
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#else
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void hb_compExprPushOperEq( HB_EXPR_PTR pSelf, BYTE bOpEq )
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#endif
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{
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/* NOTE: an object instance variable needs special handling
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*/
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if( pSelf->value.asOperator.pLeft->ExprType == HB_ET_SEND )
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{
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HB_EXPR_PTR pObj = pSelf->value.asOperator.pLeft;
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/* Push _message for the later assignment. */
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HB_EXPR_PCODE1( hb_compGenMessageData, pObj->value.asMessage.szMessage );
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/* Push object */
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HB_EXPR_USE( pObj->value.asMessage.pObject, HB_EA_PUSH_PCODE );
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/* Now push current value of variable */
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HB_EXPR_PCODE1( hb_compGenMessage, pObj->value.asMessage.szMessage );
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/* push object */
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HB_EXPR_USE( pObj->value.asMessage.pObject, HB_EA_PUSH_PCODE );
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/* Do it. */
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HB_EXPR_GENPCODE2( hb_compGenPCode2, HB_P_SENDSHORT, 0, ( BOOL ) 1 );
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/* NOTE: COMPATIBILITY ISSUE:
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* The above HB_C52_STRICT setting determines
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* the way the chained send messages are handled.
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* For example, the following code:
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*
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* a:b( COUNT() ):c += 1
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*
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* will be handled as:
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*
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* a:b( COUNT() ):c := a:b( COUNT() ):c + 1
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*
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* in strict Clipper compatibility mode and
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*
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* temp := a:b( COUNT() ), temp:c += 1
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*
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* in non-strict mode.
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* In practice in Clipper it will call COUNT() function two times: the
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* first time before addition and the second one after addition - in Harbour,
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* COUNT() function will be called only once, before addition.
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* The Harbour (non-strict) method is:
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* 1) faster
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* 2) it guarantees that the same instance variable of the same object will
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* be changed
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*/
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/* push increment value */
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HB_EXPR_USE( pSelf->value.asOperator.pRight, HB_EA_PUSH_PCODE );
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/* increase operation */
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HB_EXPR_GENPCODE1( hb_compGenPCode1, bOpEq );
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/* call pop message with one argument */
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HB_EXPR_GENPCODE2( hb_compGenPCode2, HB_P_SENDSHORT, 1, ( BOOL ) 1 );
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}
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/* TODO: add a special code for arrays to correctly handle a[ i++ ]++
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*/
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else
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{
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/* push old value */
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HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_PUSH_PCODE );
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/* push increment value */
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HB_EXPR_USE( pSelf->value.asOperator.pRight, HB_EA_PUSH_PCODE );
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/* perform operation and duplicate the new value */
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HB_EXPR_GENPCODE1( hb_compGenPCode1, bOpEq );
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HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_DUPLICATE );
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/* pop the new value into variable and leave the copy on the stack */
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HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_POP_PCODE );
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}
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}
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/* Generates pcodes for <operator>= syntax
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* used standalone as a statement (it cannot leave the value on the stack)
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*/
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#if defined( HB_MACRO_SUPPORT )
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void hb_compExprUseOperEq( HB_EXPR_PTR pSelf, BYTE bOpEq, HB_MACRO_DECL )
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#else
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void hb_compExprUseOperEq( HB_EXPR_PTR pSelf, BYTE bOpEq )
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#endif
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{
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/* NOTE: an object instance variable needs special handling
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*/
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if( pSelf->value.asOperator.pLeft->ExprType == HB_ET_SEND )
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{
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HB_EXPR_PTR pObj = pSelf->value.asOperator.pLeft;
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/* Push _message for the later assignment. */
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HB_EXPR_PCODE1( hb_compGenMessageData, pObj->value.asMessage.szMessage );
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/* Push object */
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HB_EXPR_USE( pObj->value.asMessage.pObject, HB_EA_PUSH_PCODE );
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/* Now push current value of variable */
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HB_EXPR_PCODE1( hb_compGenMessage, pObj->value.asMessage.szMessage );
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/* Push object */
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HB_EXPR_USE( pObj->value.asMessage.pObject, HB_EA_PUSH_PCODE );
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/* Do it.*/
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HB_EXPR_GENPCODE2( hb_compGenPCode2, HB_P_SENDSHORT, 0, ( BOOL ) 1 );
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/* push increment value */
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HB_EXPR_USE( pSelf->value.asOperator.pRight, HB_EA_PUSH_PCODE );
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/* increase operation */
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HB_EXPR_GENPCODE1( hb_compGenPCode1, bOpEq );
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/* Now do the assignment - call pop message with one argument */
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HB_EXPR_GENPCODE2( hb_compGenPCode2, HB_P_SENDSHORT, 1, ( BOOL ) 1 );
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/* pop the unneeded value from the stack */
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HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_POP );
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}
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else
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{
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/* push old value */
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HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_PUSH_PCODE );
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/* push increment value */
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HB_EXPR_USE( pSelf->value.asOperator.pRight, HB_EA_PUSH_PCODE );
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/* add */
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HB_EXPR_GENPCODE1( hb_compGenPCode1, bOpEq );
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/* pop the new value into variable and remove it from the stack */
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HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_POP_PCODE );
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}
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}
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/* Generates the pcodes for pre- increment/decrement expressions
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*/
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#if defined( HB_MACRO_SUPPORT )
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void hb_compExprPushPreOp( HB_EXPR_PTR pSelf, BYTE bOper, HB_MACRO_DECL )
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#else
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void hb_compExprPushPreOp( HB_EXPR_PTR pSelf, BYTE bOper )
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#endif
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{
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/* NOTE: an object instance variable needs special handling
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*/
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if( pSelf->value.asOperator.pLeft->ExprType == HB_ET_SEND )
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{
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HB_EXPR_PTR pObj = pSelf->value.asOperator.pLeft;
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/* Push _message for later use */
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HB_EXPR_PCODE1( hb_compGenMessageData, pObj->value.asMessage.szMessage );
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/* Push object */
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HB_EXPR_USE( pObj->value.asMessage.pObject, HB_EA_PUSH_PCODE );
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/* Now push current value of variable */
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HB_EXPR_PCODE1( hb_compGenMessage, pObj->value.asMessage.szMessage );
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/* Push object */
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HB_EXPR_USE( pObj->value.asMessage.pObject, HB_EA_PUSH_PCODE );
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/* Do it. */
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HB_EXPR_GENPCODE2( hb_compGenPCode2, HB_P_SENDSHORT, 0, ( BOOL ) 1 );
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/* increase/decrease operation */
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HB_EXPR_GENPCODE1( hb_compGenPCode1, bOper );
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/* Now, do the assignment - call pop message with one argument - it leaves the value on the stack */
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HB_EXPR_GENPCODE2( hb_compGenPCode2, HB_P_SENDSHORT, 1, ( BOOL ) 1 );
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}
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else
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{
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/* Push current value */
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HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_PUSH_PCODE );
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/* Increment */
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HB_EXPR_GENPCODE1( hb_compGenPCode1, bOper );
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/* duplicate a value */
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HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_DUPLICATE );
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/* pop new value and leave the duplicated copy of it on the stack */
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HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_POP_PCODE );
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}
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}
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/* Generates the pcodes for post- increment/decrement expressions
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*/
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#if defined( HB_MACRO_SUPPORT )
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void hb_compExprPushPostOp( HB_EXPR_PTR pSelf, BYTE bOper, HB_MACRO_DECL )
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#else
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void hb_compExprPushPostOp( HB_EXPR_PTR pSelf, BYTE bOper )
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#endif
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{
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/* NOTE: an object instance variable needs special handling
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*/
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if( pSelf->value.asOperator.pLeft->ExprType == HB_ET_SEND )
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{
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/* push current value - it will be a result of whole expression */
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HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_PUSH_PCODE );
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/* now increment the value */
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HB_EXPR_PCODE2( hb_compExprPushPreOp, pSelf, bOper );
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/* pop the value from the stack */
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HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_POP );
|
|
}
|
|
else
|
|
{
|
|
/* Push current value */
|
|
HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_PUSH_PCODE );
|
|
/* Duplicate value */
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_DUPLICATE );
|
|
/* Increment */
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, bOper );
|
|
/* pop new value from the stack */
|
|
HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_POP_PCODE );
|
|
}
|
|
}
|
|
|
|
/* Generates the pcodes for increment/decrement operations
|
|
* used standalone as a statement
|
|
*/
|
|
#if defined( HB_MACRO_SUPPORT )
|
|
void hb_compExprUsePreOp( HB_EXPR_PTR pSelf, BYTE bOper, HB_MACRO_DECL )
|
|
#else
|
|
void hb_compExprUsePreOp( HB_EXPR_PTR pSelf, BYTE bOper )
|
|
#endif
|
|
{
|
|
/* NOTE: an object instance variable needs special handling
|
|
*/
|
|
if( pSelf->value.asOperator.pLeft->ExprType == HB_ET_SEND )
|
|
{
|
|
HB_EXPR_PCODE2( hb_compExprPushPreOp, pSelf, bOper );
|
|
/* pop the value from the stack */
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_POP );
|
|
}
|
|
else
|
|
{
|
|
/* Push current value */
|
|
HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_PUSH_PCODE );
|
|
/* Increment */
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, bOper );
|
|
/* pop new value from the stack */
|
|
HB_EXPR_USE( pSelf->value.asOperator.pLeft, HB_EA_POP_PCODE );
|
|
}
|
|
}
|
|
|
|
/* Generate pcode for aliased expression which contains macro operator on
|
|
* the left or right side of the alias operator
|
|
* expression->¯o or ¯o->expression or ¯o->¯o
|
|
*/
|
|
#if defined( HB_MACRO_SUPPORT )
|
|
void hb_compExprUseAliasMacro( HB_EXPR_PTR pAliasedVar, BYTE bAction, HB_MACRO_DECL )
|
|
#else
|
|
void hb_compExprUseAliasMacro( HB_EXPR_PTR pAliasedVar, BYTE bAction )
|
|
#endif
|
|
{
|
|
HB_EXPR_PTR pAlias, pVar;
|
|
|
|
/* Alias->Var
|
|
*/
|
|
pAlias = pAliasedVar->value.asAlias.pAlias;
|
|
pVar = pAliasedVar->value.asAlias.pVar;
|
|
if( pAlias->ExprType == HB_ET_ALIAS )
|
|
{
|
|
/* database alias */
|
|
/* Push alias identifier as string so it can be joined with
|
|
* variable at runtime
|
|
* NOTE:
|
|
* ALIAS->&var is the same as &( "ALIAS->" + var )
|
|
*
|
|
*/
|
|
HB_EXPR_PCODE2( hb_compGenPushString, pAlias->value.asSymbol, strlen(pAlias->value.asSymbol) + 1 );
|
|
HB_EXPR_USE( pVar, HB_EA_PUSH_PCODE );
|
|
if( bAction == HB_EA_PUSH_PCODE )
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_MACROPUSHALIASED );
|
|
else
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_MACROPOPALIASED );
|
|
}
|
|
else if( pVar->ExprType == HB_ET_VARIABLE )
|
|
{
|
|
/* NOTE:
|
|
* ¯o->var is the same as: &( macro + "->var" )
|
|
*/
|
|
HB_EXPR_USE( pAlias, HB_EA_PUSH_PCODE );
|
|
HB_EXPR_PCODE2( hb_compGenPushString, pVar->value.asSymbol, strlen(pVar->value.asSymbol) + 1 );
|
|
if( bAction == HB_EA_PUSH_PCODE )
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_MACROPUSHALIASED );
|
|
else
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_MACROPOPALIASED );
|
|
}
|
|
else
|
|
{
|
|
HB_EXPR_USE( pAlias, HB_EA_PUSH_PCODE );
|
|
HB_EXPR_USE( pVar, HB_EA_PUSH_PCODE );
|
|
if( bAction == HB_EA_PUSH_PCODE )
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_MACROPUSHALIASED );
|
|
else
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_P_MACROPOPALIASED );
|
|
}
|
|
|
|
/* Always add add byte to pcode indicating requested macro compiler flag. */
|
|
#if defined( HB_MACRO_SUPPORT )
|
|
HB_EXPR_GENPCODE1( hb_compGenPCode1, HB_COMPFLAG_RT_MACRO );
|
|
#else
|
|
HB_EXPR_GENPCODE1( hb_compGenPData1,
|
|
(
|
|
( hb_comp_Supported & HB_COMPFLAG_HARBOUR ? HB_SM_HARBOUR : 0 ) |
|
|
( hb_comp_Supported & HB_COMPFLAG_XBASE ? HB_SM_XBASE : 0 ) |
|
|
( hb_comp_bShortCuts ? HB_SM_SHORTCUTS : 0 ) |
|
|
( hb_comp_Supported & HB_COMPFLAG_RT_MACRO ? HB_SM_RT_MACRO : 0 )
|
|
)
|
|
);
|
|
#endif
|
|
|
|
}
|
|
|
|
|
|
/* Reduces the list of expressions
|
|
*
|
|
* pExpr is the first expression on the list
|
|
*/
|
|
#if defined( HB_MACRO_SUPPORT )
|
|
ULONG hb_compExprReduceList( HB_EXPR_PTR pExpr, HB_MACRO_DECL )
|
|
#else
|
|
ULONG hb_compExprReduceList( HB_EXPR_PTR pExpr )
|
|
#endif
|
|
{
|
|
HB_EXPR_PTR pNext;
|
|
HB_EXPR_PTR * pPrev;
|
|
ULONG ulCnt = 0;
|
|
|
|
/* NOTE: During optimalization an expression on the list can be
|
|
* replaced by the new one
|
|
*/
|
|
|
|
pPrev = &pExpr->value.asList.pExprList;
|
|
pExpr = pExpr->value.asList.pExprList;
|
|
while( pExpr )
|
|
{
|
|
pNext = pExpr->pNext; /* store next expression in case the current will be reduced */
|
|
pExpr = HB_EXPR_USE( pExpr, HB_EA_REDUCE );
|
|
*pPrev = pExpr; /* store a new expression into the previous one */
|
|
pExpr->pNext = pNext; /* restore the link to next expression */
|
|
pPrev = &pExpr->pNext;
|
|
pExpr = pNext;
|
|
++ulCnt;
|
|
}
|
|
return ulCnt;
|
|
}
|
|
|
|
BOOL hb_compExprIsValidMacro( char * szText, BOOL *pbUseTextSubst, HB_MACRO_DECL )
|
|
{
|
|
char * pTmp = szText;
|
|
BOOL bTextSubst;
|
|
BOOL bMacroText = TRUE;
|
|
|
|
*pbUseTextSubst = FALSE; /* no valid macro expression */
|
|
while( ((pTmp = strchr( pTmp, '&' )) != NULL) && bMacroText )
|
|
{
|
|
/* Check if macro operator is used inside a string
|
|
* Macro operator is ignored if it is the last char or
|
|
* next char is '(' e.g. "this is &(ignored)"
|
|
* (except if strict Clipper compatibility mode is enabled)
|
|
*
|
|
* NOTE: This uses _a-zA-Z pattern to check for
|
|
* beginning of a variable name
|
|
*/
|
|
|
|
if( ! HB_COMP_ISSUPPORTED(HB_COMPFLAG_HARBOUR) )
|
|
*pbUseTextSubst = TRUE; /* always macro substitution in Clipper */
|
|
|
|
++pTmp;
|
|
bTextSubst = ( *pTmp == '_' || (*pTmp >= 'A' && *pTmp <= 'Z') || (*pTmp >= 'a' && *pTmp <= 'z') );
|
|
/* NOTE: All variables are assumed memvars in macro compiler -
|
|
* there is no need to check for a valid name
|
|
*/
|
|
if( bTextSubst )
|
|
{
|
|
#if defined( HB_MACRO_SUPPORT )
|
|
HB_SYMBOL_UNUSED( bMacroText );
|
|
*pbUseTextSubst = TRUE; /* valid macro expression */
|
|
return TRUE; /*there is no need to check all '&' occurences */
|
|
#else
|
|
/* There is a valid character after '&' that can be used in
|
|
* variable name - check if the whole variable name is valid
|
|
* (local, static and field variable names are invalid because
|
|
* they are not visible at runtime)
|
|
*/
|
|
char * pStart = pTmp;
|
|
char cSave;
|
|
|
|
/* NOTE: This uses _a-zA-Z0-9 pattern to check for
|
|
* variable name
|
|
*/
|
|
while( *pTmp && (*pTmp == '_' || (*pTmp >= 'A' && *pTmp <= 'Z') || (*pTmp >= 'a' && *pTmp <= 'z') || (*pTmp >= '0' && *pTmp <= '9')) )
|
|
++pTmp;
|
|
|
|
cSave = *pTmp;
|
|
*pTmp = '\0';
|
|
|
|
bMacroText &= hb_compIsValidMacroVar( pStart );
|
|
*pTmp = cSave;
|
|
#endif
|
|
}
|
|
*pbUseTextSubst |= bTextSubst;
|
|
}
|
|
HB_SYMBOL_UNUSED( HB_MACRO_VARNAME ); /* to suppress BCC warning */
|
|
|
|
return bMacroText;
|
|
}
|
|
|
|
/* Reduces the list of expressions
|
|
*
|
|
* pExpr is the first expression on the list
|
|
*/
|
|
HB_EXPR_PTR hb_compExprReducePlusStrings( HB_EXPR_PTR pLeft, HB_EXPR_PTR pRight, HB_MACRO_DECL )
|
|
#if defined( HB_MACRO_SUPPORT )
|
|
{
|
|
pLeft->value.asString.string = (char *) hb_xrealloc( pLeft->value.asString.string, pLeft->ulLength + pRight->ulLength + 1 );
|
|
pLeft->value.asString.dealloc = TRUE;
|
|
memcpy( pLeft->value.asString.string + pLeft->ulLength,
|
|
pRight->value.asString.string, pRight->ulLength );
|
|
pLeft->ulLength += pRight->ulLength;
|
|
pLeft->value.asString.string[ pLeft->ulLength ] = '\0';
|
|
hb_compExprFree( pRight, HB_MACRO_PARAM );
|
|
|
|
HB_SYMBOL_UNUSED( HB_MACRO_VARNAME ); /* to suppress BCC warning */
|
|
return pLeft;
|
|
}
|
|
#else
|
|
{
|
|
/* NOTE: compiler uses the hash table for storing identifiers and literals
|
|
* Strings passed for reduction can be referenced by other expressions
|
|
* then we cannot resize them or deallocate
|
|
*/
|
|
char *szString;
|
|
|
|
szString = (char *) hb_xgrab( pLeft->ulLength + pRight->ulLength + 1 );
|
|
memcpy( szString, pLeft->value.asString.string, pLeft->ulLength );
|
|
memcpy( szString + pLeft->ulLength, pRight->value.asString.string, pRight->ulLength );
|
|
pLeft->ulLength += pRight->ulLength;
|
|
szString[ pLeft->ulLength ] = '\0';
|
|
pLeft->value.asString.string = szString;
|
|
pLeft->value.asString.dealloc = TRUE;
|
|
hb_compExprFree( pRight, HB_MACRO_PARAM );
|
|
|
|
HB_SYMBOL_UNUSED( HB_MACRO_VARNAME ); /* to suppress BCC warning */
|
|
return pLeft;
|
|
}
|
|
#endif
|
|
|
|
#ifdef __WATCOMC__
|
|
/* enable warnings for unreferenced symbols */
|
|
#pragma warning 14 2
|
|
#endif
|