1 ;;;; the PPC definitions of VOPs used for non-local exit (throw,
2 ;;;; lexical exit, etc.)
4 ;;;; This software is part of the SBCL system. See the README file for
7 ;;;; This software is derived from the CMU CL system, which was
8 ;;;; written at Carnegie Mellon University and released into the
9 ;;;; public domain. The software is in the public domain and is
10 ;;;; provided with absolutely no warranty. See the COPYING and CREDITS
11 ;;;; files for more information.
15 ;;; Make an environment-live stack TN for saving the SP for NLX entry.
16 (!def-vm-support-routine make-nlx-sp-tn
(env)
18 (make-representation-tn *fixnum-primitive-type
* immediate-arg-scn
)
21 ;;; Make a TN for the argument count passing location for a
23 (!def-vm-support-routine make-nlx-entry-arg-start-location
()
24 (make-wired-tn *fixnum-primitive-type
* immediate-arg-scn ocfp-offset
))
27 ;;; These VOPs are used in the reentered function to restore the
28 ;;; appropriate dynamic environment. Currently we only save the
29 ;;; CURRENT-CATCH and binding stack pointer. We don't need to
30 ;;; save/restore the current unwind-protect, since UNWIND-PROTECTs are
31 ;;; implicitly processed during unwinding. If there were any
32 ;;; additional stacks, then this would be the place to restore the top
35 (define-vop (save-dynamic-state)
36 (:results
(catch :scs
(descriptor-reg))
37 (nfp :scs
(descriptor-reg))
38 (nsp :scs
(descriptor-reg)))
41 (load-symbol-value catch
*current-catch-block
*)
42 (let ((cur-nfp (current-nfp-tn vop
)))
47 (define-vop (restore-dynamic-state)
48 (:args
(catch :scs
(descriptor-reg))
49 (nfp :scs
(descriptor-reg))
50 (nsp :scs
(descriptor-reg)))
53 (store-symbol-value catch
*current-catch-block
*)
54 (let ((cur-nfp (current-nfp-tn vop
)))
59 (define-vop (current-stack-pointer)
60 (:results
(res :scs
(any-reg descriptor-reg
)))
64 (define-vop (current-binding-pointer)
65 (:results
(res :scs
(any-reg descriptor-reg
)))
71 ;;;; Unwind block hackery:
73 ;;; Compute the address of the catch block from its TN, then store into the
74 ;;; block the current Fp, Env, Unwind-Protect, and the entry PC.
76 (define-vop (make-unwind-block)
79 (:results
(block :scs
(any-reg)))
80 (:temporary
(:scs
(descriptor-reg)) temp
)
81 (:temporary
(:scs
(non-descriptor-reg)) ndescr
)
83 (inst addi block cfp-tn
(* (tn-offset tn
) n-word-bytes
))
84 (load-symbol-value temp
*current-unwind-protect-block
*)
85 (storew temp block unwind-block-current-uwp-slot
)
86 (storew cfp-tn block unwind-block-current-cont-slot
)
87 (storew code-tn block unwind-block-current-code-slot
)
88 (inst compute-lra-from-code temp code-tn entry-label ndescr
)
89 (storew temp block catch-block-entry-pc-slot
)))
92 ;;; Like Make-Unwind-Block, except that we also store in the specified tag, and
93 ;;; link the block into the Current-Catch list.
95 (define-vop (make-catch-block)
97 (tag :scs
(any-reg descriptor-reg
)))
99 (:results
(block :scs
(any-reg)))
100 (:temporary
(:scs
(descriptor-reg)) temp
)
101 (:temporary
(:scs
(descriptor-reg) :target block
:to
(:result
0)) result
)
102 (:temporary
(:scs
(non-descriptor-reg)) ndescr
)
104 (inst addi result cfp-tn
(* (tn-offset tn
) n-word-bytes
))
105 (load-symbol-value temp
*current-unwind-protect-block
*)
106 (storew temp result catch-block-current-uwp-slot
)
107 (storew cfp-tn result catch-block-current-cont-slot
)
108 (storew code-tn result catch-block-current-code-slot
)
109 (inst compute-lra-from-code temp code-tn entry-label ndescr
)
110 (storew temp result catch-block-entry-pc-slot
)
112 (storew tag result catch-block-tag-slot
)
113 (load-symbol-value temp
*current-catch-block
*)
114 (storew temp result catch-block-previous-catch-slot
)
115 (store-symbol-value result
*current-catch-block
*)
117 (move block result
)))
120 ;;; Just set the current unwind-protect to TN's address. This instantiates an
121 ;;; unwind block as an unwind-protect.
123 (define-vop (set-unwind-protect)
125 (:temporary
(:scs
(descriptor-reg)) new-uwp
)
127 (inst addi new-uwp cfp-tn
(* (tn-offset tn
) n-word-bytes
))
128 (store-symbol-value new-uwp
*current-unwind-protect-block
*)))
131 (define-vop (unlink-catch-block)
132 (:temporary
(:scs
(any-reg)) block
)
134 (:translate %catch-breakup
)
136 (load-symbol-value block
*current-catch-block
*)
137 (loadw block block catch-block-previous-catch-slot
)
138 (store-symbol-value block
*current-catch-block
*)))
140 (define-vop (unlink-unwind-protect)
141 (:temporary
(:scs
(any-reg)) block
)
143 (:translate %unwind-protect-breakup
)
145 (load-symbol-value block
*current-unwind-protect-block
*)
146 (loadw block block unwind-block-current-uwp-slot
)
147 (store-symbol-value block
*current-unwind-protect-block
*)))
153 (define-vop (nlx-entry)
154 (:args
(sp) ; Note: we can't list an sc-restriction, 'cause any load vops
155 ; would be inserted before the LRA.
158 (:results
(values :more t
))
159 (:temporary
(:scs
(descriptor-reg)) move-temp
)
161 (:save-p
:force-to-stack
)
164 (emit-return-pc label
)
165 (note-this-location vop
:non-local-entry
)
166 (cond ((zerop nvals
))
168 (let ((no-values (gen-label)))
170 (move (tn-ref-tn values
) null-tn
)
172 (loadw (tn-ref-tn values
) start
)
173 (emit-label no-values
)))
175 (collect ((defaults))
176 (inst addic. count count
(- (fixnumize 1)))
178 (tn-ref values
(tn-ref-across tn-ref
)))
180 (let ((default-lab (gen-label))
181 (tn (tn-ref-tn tn-ref
)))
182 (defaults (cons default-lab tn
))
184 (inst subi count count
(fixnumize 1))
185 (inst blt default-lab
)
187 ((descriptor-reg any-reg
)
190 (loadw move-temp start i
)
191 (store-stack-tn tn move-temp
)))
192 (inst cmpwi count
0)))
194 (let ((defaulting-done (gen-label)))
196 (emit-label defaulting-done
)
198 (assemble (*elsewhere
*)
199 (dolist (def (defaults))
200 (emit-label (car def
))
201 (let ((tn (cdr def
)))
203 ((descriptor-reg any-reg
)
206 (store-stack-tn tn null-tn
)))))
207 (inst b defaulting-done
))))))
208 (load-stack-tn csp-tn sp
)))
211 (define-vop (nlx-entry-multiple)
212 (:args
(top :target result
) (src) (count))
213 ;; Again, no SC restrictions for the args, 'cause the loading would
214 ;; happen before the entry label.
216 (:temporary
(:scs
(any-reg)) dst
)
217 (:temporary
(:scs
(descriptor-reg)) temp
)
218 (:results
(result :scs
(any-reg) :from
(:argument
0))
219 (num :scs
(any-reg) :from
(:argument
0)))
220 (:save-p
:force-to-stack
)
223 (emit-return-pc label
)
224 (note-this-location vop
:non-local-entry
)
225 (let ((loop (gen-label))
228 ;; Setup results, and test for the zero value case.
229 (load-stack-tn result top
)
234 ;; Compute dst as one slot down from result, because we inc the index
236 (inst subi dst result
4)
238 ;; Copy stuff down the stack.
240 (inst lwzx temp src num
)
241 (inst addi num num
(fixnumize 1))
242 (inst cmpw num count
)
243 (inst stwx temp dst num
)
248 (inst add csp-tn result num
))))
251 ;;; This VOP is just to force the TNs used in the cleanup onto the stack.
253 (define-vop (uwp-entry)
255 (:save-p
:force-to-stack
)
256 (:results
(block) (start) (count))
257 (:ignore block start count
)
260 (emit-return-pc label
)
261 (note-this-location vop
:non-local-entry
)))