Files correlati : Ricompilazione Demo : [ ] Commento : Aggiunti i sorgenti per Greenleaf Math Library (gfm.dll) git-svn-id: svn://10.65.10.50/trunk@10079 c028cbd2-c16b-5b4b-a496-9718f37d4682
		
			
				
	
	
		
			154 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			NASM
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			154 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			NASM
		
	
	
		
			Executable File
		
	
	
	
	
|  ; void _MulUnsArr(src1,dst,num,n)
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|  ;
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|  ; ARGUMENT
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|  ;      unsigned *src1[],*dst,num;
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|  ;      int     n;
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|  ;
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|  ; DESCRIPTION
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|  ;      Multiplies the number src1(taken as one number of 'n' 16-bit int's)
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|  ;   by 'num' and puts the result in dst.  Note that it is assumed that
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|  ;   the caller has made sure there are enough int's to hold the result.
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|  ;   WE DON'T CHECK FOR OVERFLOW.
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|  ;
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|  ; SIDE EFFECTS
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|  ;      None. Can't have more that 10 ints to multiply.
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|  ;
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|  ; RETURNS
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|  ;      None.
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|  ;
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|  ; AUTHOR
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|  ;  Andy Anderson   31-JAN-1987  15:10
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|  ;   Copyright (C) 1987-90 Greenleaf Software Inc.  All Rights Reserved.
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|  ;
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|  ; MODIFICATIONS
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|  ;      aa      09-JUL-87       80-bit
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|  ;
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| 
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|         include model.h
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|         include prologue.h
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|         include gm.equ
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| 
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| 
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|         ReferVar        wrgGMPartProd,<cWord>
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| 
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|         dseg    _gm
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|         endds
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| 
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|         pseg    gmath
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| ;
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| ;
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| ;  if large memory model then:
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| ;
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| ;       parm1_ = ptr to source 1 (segment and offset)
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| ;       parm3_ = ptr to destination (segment and offset)
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| ;       parm5_ = 16-bit multiplier
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| ;       parm6_ = number of ints in src1 (multiplicand)
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| ;
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| ;  for if small model then
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| ;       parm1_ = ptr to source1
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| ;       parm2_ = ptr to destination
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| ;       parm3_ = 16-bit multiplier
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| ;       parm4_ = number of ints in src1 (multiplicand)
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| ;
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| ;
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| 
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|         cproc   _MulUnsArr,,_mli
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| 
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| if      _LDATA
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|         push    es
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|         les     si,parm1_       ; ptr to src1
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|         mov     cx,parm6_       ;  number of digits in multiplicand
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| else
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|         mov     si,parm1_       ; ditto for small model
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|         mov     cx,parm4_       ;  number of digits in multiplicand
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| endif
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| ifdef   DSNOTHING
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|         mov     ax,seg wrgGMPartProd
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|         mov     ds,ax
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|         lea     di,wrgGMPartProd
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| else
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|         lea     di,wrgGMPartProd        ; ptr to partial prod array
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| endif
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|         xor     ax,ax           ; clear flags
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|         xor     bx,bx           ;  clear offset
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| 
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| lp:
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| if      _LDATA
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|         mov     ax,es:[bx+si]   ; starting at lsd, get next highest
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|         mul     Word Ptr parm5_ ; result: dx(high) ax(low)
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| else
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|         mov     ax,[bx+si]      ; starting at lsd, get next highest
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|         mul     Word Ptr parm3_ ; result: dx(high) ax(low)
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| endif
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|         mov     [bx+di],ax      ;  save partial products
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|         mov     [bx+di+2],dx
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|         add     di,2
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|         add     bx,2
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|         loop    lp
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| 
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| ;       Now that we're done with mult's, do the partial
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| ;  product adds and put them in dest.
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| ;
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| ifdef   DSNOTHING
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|         mov     ax,seg wrgGMPartProd
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|         mov     ds,ax
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|         lea     si,wrgGMPartProd
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| else
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|         lea     si,wrgGMPartProd        ;  ptr to partial prod array
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| endif
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| 
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| if      _LDATA
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|         les     di,parm3_       ; ptr to destination
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|         mov     cx,parm6_       ; restore count for # of mult's
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| else
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|         mov     di,parm2_
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|         mov     cx,parm4_       ; restore count for # of mult's
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| endif
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|         dec     cx              ; one less than the # of mult's
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|         xor     ax,ax
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|         mov     bx,0002h
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| 
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| ;
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| ;       The first low-order partial product doesn't need to be
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| ;  added, just moved.
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| ;
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|         mov     ax,[si]         ; 1st 16-bit product just moves
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| if      _LDATA
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|         mov     es:[di],ax
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| else
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|         mov     [di],ax
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| endif
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|         cmp     cx,0000h
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|         je      lastdig         ; if we did only one mult
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| movlp:
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|         mov     ax,0000h
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|         adc     ax,[bx+si]
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|         adc     ax,[bx+si+2]
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| if      _LDATA
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|         mov     es:[bx+di],ax
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| else
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|         mov     [bx+di],ax
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| endif
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|         inc     bx
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|         inc     bx
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|         inc     si
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|         inc     si
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|         loop    movlp
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| ;
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| ;       Now just move in last digit from mult
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| lastdig:
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|         mov     ax,0000h
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|         adc     ax,[bx+si]
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|         cmp     bx,20           ; will throw away last word of
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|         jge     exit            ;  carry if more than 10 words max
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| if      _LDATA
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|         mov     es:[bx+di],ax
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| exit:   pop     es
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| else
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|         mov     [bx+di],ax
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| exit:
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| endif
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|         cproce
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|         endps
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|         END
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