87 lines
		
	
	
	
		
			1.8 KiB
		
	
	
	
		
			Text
		
	
	
	
	
	
			
		
		
	
	
			87 lines
		
	
	
	
		
			1.8 KiB
		
	
	
	
		
			Text
		
	
	
	
	
	
#
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 mes 2,EM_WSIZE,EM_PSIZE
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;
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; layout of a setjmp buffer:
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;
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;  -----------------
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; |   signal mask   |		(only for Berkeley 4.[2-])
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;  -----------------
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; |                 |
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; |  GTO descriptor |
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; |   (SP, LB, PC)  |
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; |                 |
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;  -----------------
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;
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; setjmp saves the signalmask, PC, SP, and LB of caller, and creates a
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; GTO descriptor from this.
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; The big problem here is how to get the return address, i.e. the PC of
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; the caller; This problem is solved by the front-end, which must pass
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; it as an extra parameter to setjmp.
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; a GTO descriptor must be in the global data area
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gtobuf
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 bss 3*EM_PSIZE,0,0
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 inp $fill_ret_area
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 exp $setjmp
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 pro $setjmp,0
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#ifdef __BSD4_2
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; save mask of currently blocked signals. 
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; longjmp must restore this mask
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 loc 0
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 cal $sigblock
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 asp EM_WSIZE
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 lfr EM_WSIZE
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 lal 0
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 loi EM_PSIZE
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 stf 3*EM_PSIZE
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#endif
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; create GTO descriptor for longjmp
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 lxl 0
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 dch		; Local Base of caller
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 lxa 0		; Stackpointer of caller
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 lal EM_PSIZE
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 loi EM_PSIZE	; Return address of caller
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 lal 0
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 loi EM_PSIZE	; address of jmpbuf
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 sti 3*EM_PSIZE	; LB, SP, and PC stored in jmpbuf
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 loc 0
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 ret EM_WSIZE	; setjmp must return 0
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 end 0
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 pro $fill_ret_area,0
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; put argument in function result area
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 lol 0
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 ret EM_WSIZE
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 end 0
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 exp $longjmp
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 pro $longjmp,?
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#ifdef __BSD4_2
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; restore signal mask
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 lal 0
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 loi EM_PSIZE
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 lof 3*EM_PSIZE
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 cal $sigsetmask
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 asp EM_WSIZE
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 lfr EM_WSIZE
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 asp EM_WSIZE
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#endif
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 lal 0
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 loi EM_PSIZE	; address of jmpbuf
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 lae gtobuf
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 blm 3*EM_PSIZE	; fill GTO descriptor from jmpbuf
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 lol EM_PSIZE	; second parameter of longjmp: the return value
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 dup EM_WSIZE
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 zne *3
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; of course, longjmp may not return 0!
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 asp EM_WSIZE
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 loc 1
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3
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; put return value in function result area
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 cal $fill_ret_area
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 asp EM_WSIZE
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 gto gtobuf	; there we go ...
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; ASP and GTO do not damage function result area
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 end 0
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