forked from KolibriOS/kolibrios
172 lines
7.1 KiB
NASM
172 lines
7.1 KiB
NASM
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;*****************************************************************************
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;*
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;* Open Watcom Project
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;*
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;* Portions Copyright (c) 1983-2002 Sybase, Inc. All Rights Reserved.
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;*
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;* ========================================================================
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;*
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;* This file contains Original Code and/or Modifications of Original
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;* Code as defined in and that are subject to the Sybase Open Watcom
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;* Public License version 1.0 (the 'License'). You may not use this file
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;* except in compliance with the License. BY USING THIS FILE YOU AGREE TO
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;* ALL TERMS AND CONDITIONS OF THE LICENSE. A copy of the License is
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;* provided with the Original Code and Modifications, and is also
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;* available at www.sybase.com/developer/opensource.
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;*
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;* The Original Code and all software distributed under the License are
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;* distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
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;* EXPRESS OR IMPLIED, AND SYBASE AND ALL CONTRIBUTORS HEREBY DISCLAIM
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;* ALL SUCH WARRANTIES, INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF
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;* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR
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;* NON-INFRINGEMENT. Please see the License for the specific language
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;* governing rights and limitations under the License.
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;*
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;* ========================================================================
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;*
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;* Description: WHEN YOU FIGURE OUT WHAT THIS FILE DOES, PLEASE
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;* DESCRIBE IT HERE!
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;*
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;*****************************************************************************
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;========================================================================
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;== Name: FSI4, FSU4, FSI2, FSU2, FSI1, FSU1 ==
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;== Operation: Convert single precision to integer ==
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;== Inputs: EAX single precision floating point ==
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;== Outputs: EAX integer value ==
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;== Volatile: none ==
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;== ==
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;== ==
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;== handle -1.0 -> 0xffffffff ==
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;========================================================================
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include mdef.inc
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include struct.inc
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modstart fsi4386
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xdefp __FSI4
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xdefp __FSU4
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xdefp __FSI2
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xdefp __FSU2
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xdefp __FSI1
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xdefp __FSU1
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defpe __FSI4
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push ECX ; save cx
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mov cl,7fh+31 ; maximum number 2^31-1
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call __FSI ; convert to integer
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pop ECX ; restore cx
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ret ; return (overflow already handled
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endproc __FSI4
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defpe __FSU4
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push ECX ; save cx
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mov cl,7fh+32 ; maximum number 2^32-1
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call __FSU ; convert to integer
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pop ECX ; restore cx
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ret ; return if no overflow
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endproc __FSU4
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defpe __FSI2
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push ECX ; save cx
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mov cl,7fh+15 ; maximum number 2^15-1
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call __FSI ; convert to integer
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pop ECX ; restore cx
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ret ; return (overflow already handled
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endproc __FSI2
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defpe __FSU2
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push ECX ; save cx
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mov cl,7fh+16 ; maximum number 2^16-1
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call __FSU ; convert to integer
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pop ECX ; restore cx
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ret ; return if no overflow
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endproc __FSU2
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defpe __FSI1
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push ECX ; save cx
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mov cl,7fh+7 ; maximum number 2^7-1
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call __FSI ; convert to integer
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pop ECX ; restore cx
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ret ; return (overflow already handled
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endproc __FSI1
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defpe __FSU1
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push ECX ; save cx
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mov cl,7fh+8 ; maximum number 2^8-1
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call __FSU ; convert to integer
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pop ECX ; restore cx
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ret ; return if no overflow
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endproc __FSU1
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__FSI proc near
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__FSU:
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or EAX,EAX ; check sign bit
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jns short __FSAbs ; treat as unsigned if positive
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call __FSAbs ; otherwise convert number
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neg EAX ; negate the result
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ret ; and return
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endproc __FSI
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; 18-nov-87 AFS (for WATCOM C)
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;__FSU proc near
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; jmp
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; or dx,dx ; check sign bit
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; jns __FSAbs ; just convert if positive
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; sub ax,ax ; return 0 if negative
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; sub dx,dx ; ...
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; ret
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; endproc __FSU
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;========================================================================
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;== Name: FSAbs_ ==
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;== Inputs: EAX float ==
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;== CL maximum exponent excess $7f ==
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;== Outputs: EAX integer, absolute value of float ==
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;== if exponent >= maximum then 2^max - 1 ==
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;== returned ==
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;========================================================================
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__FSAbs proc near
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or EAX,EAX ; check if number 0
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je short retzero ; if so, just return it
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_shl EAX,1 ; shift mantissa over
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rol EAX,8 ; get exponent to bottom
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cmp AL,7fh ; quit if number < 1.0 15-apr-91
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jb short uflow ; ...
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mov CH,AL ; save exponent
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stc ; set carry for implied bit
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rcr EAX,1 ; put implied '1' bit in
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shr EAX,8 ; remove exponent
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cmp CH,CL ; check if exponent exceeds maximum
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jae short retmax ; return maximum value if so
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sub CH,7fh+23 ; calculate amount to shift (+ve -> left)
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jae short m_left ; jump if left shift/no shift
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xchg CH,CL ; get shift count
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neg CL ; make positive
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shr EAX,CL ; shift mantissa
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ret ; return with number
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m_left:
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_if ne ; done if exponent exactly 23
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mov CL,CH ; - get shift count
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shl EAX,CL ; - shift number left
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_endif ; endif
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ret ; return
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retmax: mov EAX,0FFFFFFFFh ; return maximum value
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sub CL,7Fh+32 ; subtract bias + 32
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neg CL ; get shift count
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shr EAX,CL ; compute value
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ret ; return
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uflow:
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retzero:sub EAX,EAX ; ensure entire number 0
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ret ; return
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endproc __FSAbs
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endmod
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end
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