* contrib/gtwvg/wvgcore.c
* contrib/gtwvg/wvgutils.c
* contrib/hbwin/win_dll.c
* contrib/hbwin/win_ole.c
* contrib/xhb/cstructc.c
* contrib/xhb/dbgfxc.c
* source/common/hbarch.c
* source/common/hbdate.c
* source/common/hbfsapi.c
* source/common/hbstr.c
* source/common/hbver.c
* source/common/hbverdsp.c
* source/debug/dbgentry.c
* source/main/harbour.c
* source/rdd/dbf1.c
* source/rdd/nulsys/nulsys.c
* source/rdd/wacore.c
* source/rdd/wafunc.c
* source/rdd/workarea.c
* source/rtl/cdpapi.c
* source/rtl/console.c
* source/rtl/dates.c
* source/rtl/errorint.c
* source/rtl/file.c
* source/rtl/filesys.c
* source/rtl/fscopy.c
* source/rtl/fserror.c
* source/rtl/fstemp.c
* source/rtl/gtapi.c
* source/rtl/gtapiu.c
* source/rtl/hbadler.c
* source/rtl/hbcrc.c
* source/rtl/hbffind.c
* source/rtl/hbgtcore.c
* source/rtl/hbmd5.c
* source/rtl/inkeyapi.c
* source/rtl/isprint.c
* source/rtl/math.c
* source/rtl/mouseapi.c
* source/rtl/seconds.c
* source/rtl/setcolor.c
* source/rtl/setcurs.c
* source/rtl/strmatch.c
* source/vm/hvm.c
% Removed HB_EXPORT from function definitions.
Placing it in declaration is enough.
* source/debug/dbgentry.c
* Formatting.
314 lines
9.2 KiB
C
314 lines
9.2 KiB
C
/*
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* $Id$
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*/
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/*
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* xHarbour Project source code:
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* Architecture dependent conversions
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*
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* Copyright 2005 Przemyslaw Czerpak <druzus@acn.waw.pl>
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* www - http://www.xharbour.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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#include "hbapi.h"
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#include "hbmath.h"
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/*
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* functions hb_put_ieee754() and hb_get_ieee754() stores / retrieve
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* IEEE754 double value making conversion from/to native C double type.
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* They should be used on platforms which does not use IEEE754 double
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* and user needs binary compatibility, f.e. he wants to share CDXs or
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* or DBFs with "B" fields with other station or use common .hrb files
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* functions hb_put_ord_ieee754() and hb_get_ord_ieee754() converts
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* to/from special modified IEEE754 double form used by some index formats
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* like CDX or NSX to create index keys. In this form double numbers can
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* be sorted as 8-bytes character values (f.e. with memcmp())
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*/
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#define HB_MANTISSA_BITS 52
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#define HB_MANTISSA_MASK ( ( ( UINT64 ) 1 << HB_MANTISSA_BITS ) - 1 )
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#define HB_EXPONENT_BITS 11
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#define HB_EXPONENT_MASK ( ( 1 << HB_EXPONENT_BITS ) - 1 )
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#define HB_EXPONENT_ADD 0x3ff
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void hb_put_ieee754( BYTE * ptr, double d )
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{
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int iExp, iSig;
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double df;
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#if defined( HB_LONG_LONG_OFF )
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UINT32 l1, l2;
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HB_TRACE(HB_TR_DEBUG, ("hb_put_ieee754(%p, %f)", ptr, d));
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iSig = d < 0 ? 1 : 0;
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if( d == 0.0 )
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{
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l1 = l2 = 0;
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}
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else
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{
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df = frexp( iSig ? -d : d, &iExp );
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l1 = ( UINT32 ) ldexp( df, HB_MANTISSA_BITS + 1 );
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l2 = ( UINT32 ) ldexp( df, HB_MANTISSA_BITS + 1 - 32 ) &
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( ( ( UINT32 ) 1 << ( HB_MANTISSA_BITS - 32 ) ) - 1 );
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l2 |= ( UINT32 ) ( ( iExp + HB_EXPONENT_ADD - 1 ) & HB_EXPONENT_MASK ) <<
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( HB_MANTISSA_BITS - 32 );
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}
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l2 |= ( UINT32 ) iSig << ( HB_MANTISSA_BITS + HB_EXPONENT_BITS - 32 );
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HB_PUT_LE_UINT32( ptr, l1 );
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HB_PUT_LE_UINT32( ptr + 4, l2 );
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#else
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UINT64 ll;
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HB_TRACE(HB_TR_DEBUG, ("hb_put_ieee754(%p, %f)", ptr, d));
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iSig = d < 0 ? 1 : 0;
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if( d == 0.0 )
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{
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ll = 0;
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}
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else
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{
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df = frexp( iSig ? -d : d, &iExp );
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ll = ( UINT64 ) ldexp( df, HB_MANTISSA_BITS + 1 ) & HB_MANTISSA_MASK;
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ll |= ( UINT64 ) ( ( iExp + HB_EXPONENT_ADD - 1 ) & HB_EXPONENT_MASK ) <<
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HB_MANTISSA_BITS;
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}
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ll |= ( UINT64 ) iSig << ( HB_MANTISSA_BITS + HB_EXPONENT_BITS );
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HB_PUT_LE_UINT64( ptr, ll );
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#endif
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}
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double hb_get_ieee754( BYTE * ptr )
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{
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int iExp, iSig;
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#if defined( HB_LONG_LONG_OFF )
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UINT32 l1, l2;
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double d;
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HB_TRACE(HB_TR_DEBUG, ("hb_get_ieee754(%p)", ptr));
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l1 = HB_GET_LE_UINT32( ptr );
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l2 = HB_GET_LE_UINT32( ptr + 4 );
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iSig = ( int ) ( l2 >> ( HB_MANTISSA_BITS + HB_EXPONENT_BITS - 32 ) ) & 1;
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iExp = ( int ) ( ( l2 >> ( HB_MANTISSA_BITS - 32 ) ) & HB_EXPONENT_MASK );
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l2 &= ( ( UINT32 ) 1 << ( HB_MANTISSA_BITS - 32 ) ) - 1;
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if( ( l1 | l2 | iExp ) != 0 )
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l2 |= ( UINT32 ) 1 << ( HB_MANTISSA_BITS - 32 );
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d = ldexp( ( double ) l2, 32 ) + ( double ) l1;
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return ldexp( iSig ? -d : d, iExp - HB_MANTISSA_BITS - HB_EXPONENT_ADD );
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#else
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UINT64 ll;
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HB_TRACE(HB_TR_DEBUG, ("hb_get_ieee754(%p)", ptr));
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ll = HB_GET_LE_UINT64( ptr );
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iSig = ( int ) ( ll >> ( HB_MANTISSA_BITS + HB_EXPONENT_BITS ) ) & 1;
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iExp = ( int ) ( ( ll >> HB_MANTISSA_BITS ) & HB_EXPONENT_MASK );
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ll &= HB_MANTISSA_MASK;
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if( ( ll | iExp ) != 0 )
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ll |= ( UINT64 ) 1 << HB_MANTISSA_BITS;
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/* the casting form UINT64 to INT64 is necessary for some
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compilers which does not support UINT64 -> double conversion
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It will not change results because there is only up to 53bits
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set in mantissa */
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return ldexp( iSig ? -( double ) ( INT64 ) ll : ( double ) ( INT64 ) ll,
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iExp - HB_MANTISSA_BITS - HB_EXPONENT_ADD );
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#endif
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}
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void hb_put_ord_ieee754( BYTE * ptr, double d )
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{
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int iExp, iSig;
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double df;
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UINT32 l1, l2;
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HB_TRACE(HB_TR_DEBUG, ("hb_put_ord_ieee754(%p, %f)", ptr, d));
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iSig = d < 0 ? 1 : 0;
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if( d == 0.0 )
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{
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l1 = l2 = 0;
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}
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else
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{
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df = frexp( iSig ? -d : d, &iExp );
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l1 = ( UINT32 ) ldexp( df, HB_MANTISSA_BITS + 1 );
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l2 = ( UINT32 ) ldexp( df, HB_MANTISSA_BITS + 1 - 32 ) &
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( ( ( UINT32 ) 1 << ( HB_MANTISSA_BITS - 32 ) ) - 1 );
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l2 |= ( UINT32 ) ( ( iExp + HB_EXPONENT_ADD - 1 ) & HB_EXPONENT_MASK ) <<
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( HB_MANTISSA_BITS - 32 );
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}
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if( iSig )
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{
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l2 ^= 0x7FFFFFFFL;
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l1 ^= 0xFFFFFFFFL;
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}
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else
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{
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l2 ^= 0x80000000L;
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}
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HB_PUT_BE_UINT32( ptr, l2 );
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HB_PUT_BE_UINT32( ptr + 4, l1 );
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}
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double hb_get_ord_ieee754( BYTE * ptr )
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{
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int iExp, iSig;
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UINT32 l1, l2;
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double d;
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HB_TRACE(HB_TR_DEBUG, ("hb_get_ord_ieee754(%p)", ptr));
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l1 = HB_GET_BE_UINT32( ptr + 4 );
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l2 = HB_GET_BE_UINT32( ptr );
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iSig = ( l2 & 0x80000000L ) ? 0 : 1;
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if( iSig )
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{
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l2 ^= 0x7FFFFFFFL;
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l1 ^= 0xFFFFFFFFL;
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}
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iExp = ( ( l2 >> ( HB_MANTISSA_BITS - 32 ) ) & HB_EXPONENT_MASK );
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l2 &= ( ( UINT32 ) 1 << ( HB_MANTISSA_BITS - 32 ) ) - 1;
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if( ( l1 | l2 | iExp ) != 0 )
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l2 |= ( UINT32 ) 1 << ( HB_MANTISSA_BITS - 32 );
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d = ldexp( ( double ) l2, 32 ) + ( double ) l1;
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return ldexp( iSig ? -d : d, iExp - HB_MANTISSA_BITS - HB_EXPONENT_ADD );
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}
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/*
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* I added function hb_get_rev_double() and hb_get_std_double() because
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* some compilers does not like constraction used by in HB_GET_LE_DOUBLE
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* macro => d = { ... }
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*/
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double hb_get_rev_double( BYTE * ptr )
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{
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union {
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double dbl;
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BYTE buffer[ 8 ];
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} u;
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HB_TRACE(HB_TR_DEBUG, ("hb_get_rev_double(%p)", ptr));
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u.buffer[ 0 ] = ptr[ 7 ];
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u.buffer[ 1 ] = ptr[ 6 ];
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u.buffer[ 2 ] = ptr[ 5 ];
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u.buffer[ 3 ] = ptr[ 4 ];
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u.buffer[ 4 ] = ptr[ 3 ];
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u.buffer[ 5 ] = ptr[ 2 ];
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u.buffer[ 6 ] = ptr[ 1 ];
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u.buffer[ 7 ] = ptr[ 0 ];
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return u.dbl;
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}
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double hb_get_std_double( BYTE * ptr )
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{
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union {
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double dbl;
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BYTE buffer[ 8 ];
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} u;
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HB_TRACE(HB_TR_DEBUG, ("hb_get_std_double(%p)", ptr));
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u.buffer[ 0 ] = ptr[ 0 ];
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u.buffer[ 1 ] = ptr[ 1 ];
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u.buffer[ 2 ] = ptr[ 2 ];
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u.buffer[ 3 ] = ptr[ 3 ];
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u.buffer[ 4 ] = ptr[ 4 ];
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u.buffer[ 5 ] = ptr[ 5 ];
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u.buffer[ 6 ] = ptr[ 6 ];
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u.buffer[ 7 ] = ptr[ 7 ];
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return u.dbl;
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}
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#if defined( HB_LONG_LONG_OFF )
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/*
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* The function below are only for platforms which do not support
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* 64 but integer values. So the convert them to/from 'double'
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* values. They are necessary for extracting such number from PCODE,
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* databases or serialization streams in RPC
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*/
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double hb_get_le_uint64( BYTE * ptr )
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{
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UINT32 l1, l2;
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HB_TRACE(HB_TR_DEBUG, ("hb_get_le_uint64(%p)", ptr));
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l1 = HB_GET_LE_UINT32( ptr );
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l2 = HB_GET_LE_UINT32( ptr + 4 );
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return ldexp( ( double ) l2, 32 ) + ( double ) l1;
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}
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double hb_get_le_int64( BYTE * ptr )
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{
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UINT32 l1;
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INT32 l2;
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HB_TRACE(HB_TR_DEBUG, ("hb_get_le_int64(%p)", ptr));
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l1 = HB_GET_LE_UINT32( ptr );
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l2 = HB_GET_LE_INT32( ptr + 4 );
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return ldexp( ( double ) l2, 32 ) + ( double ) l1;
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}
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void hb_put_le_uint64( BYTE * ptr, double d )
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{
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UINT32 l1, l2;
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HB_TRACE(HB_TR_DEBUG, ("hb_put_le_uint64(%p)", ptr));
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l1 = ( UINT32 ) ( d );
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l2 = ( UINT32 ) ( d / 4294967296.0 );
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HB_PUT_LE_UINT32( ptr, l1 );
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HB_PUT_LE_UINT32( ptr + 4, l2 );
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}
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#endif
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