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1/* scope.c
2 *
3 * Copyright (C) 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000,
4 * 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008 by Larry Wall and others
5 *
6 * You may distribute under the terms of either the GNU General Public
7 * License or the Artistic License, as specified in the README file.
8 *
9 */
10
11/*
12 * For the fashion of Minas Tirith was such that it was built on seven
13 * levels...
14 *
15 * [p.751 of _The Lord of the Rings_, V/i: "Minas Tirith"]
16 */
17
18/* This file contains functions to manipulate several of Perl's stacks;
19 * in particular it contains code to push various types of things onto
20 * the savestack, then to pop them off and perform the correct restorative
21 * action for each one. This corresponds to the cleanup Perl does at
22 * each scope exit.
23 */
24
25#include "EXTERN.h"
26#define PERL_IN_SCOPE_C
27#include "perl.h"
28
29SV**
30Perl_stack_grow(pTHX_ SV **sp, SV **p, int n)
31{
32 dVAR;
33
34 PERL_ARGS_ASSERT_STACK_GROW;
35
36 PL_stack_sp = sp;
37#ifndef STRESS_REALLOC
38 av_extend(PL_curstack, (p - PL_stack_base) + (n) + 128);
39#else
40 av_extend(PL_curstack, (p - PL_stack_base) + (n) + 1);
41#endif
42 return PL_stack_sp;
43}
44
45#ifndef STRESS_REALLOC
46#define GROW(old) ((old) * 3 / 2)
47#else
48#define GROW(old) ((old) + 1)
49#endif
50
51PERL_SI *
52Perl_new_stackinfo(pTHX_ I32 stitems, I32 cxitems)
53{
54 dVAR;
55 PERL_SI *si;
56 Newx(si, 1, PERL_SI);
57 si->si_stack = newAV();
58 AvREAL_off(si->si_stack);
59 av_extend(si->si_stack, stitems > 0 ? stitems-1 : 0);
60 AvALLOC(si->si_stack)[0] = &PL_sv_undef;
61 AvFILLp(si->si_stack) = 0;
62 si->si_prev = 0;
63 si->si_next = 0;
64 si->si_cxmax = cxitems - 1;
65 si->si_cxix = -1;
66 si->si_type = PERLSI_UNDEF;
67 Newx(si->si_cxstack, cxitems, PERL_CONTEXT);
68 /* Without any kind of initialising PUSHSUBST()
69 * in pp_subst() will read uninitialised heap. */
70 PoisonNew(si->si_cxstack, cxitems, PERL_CONTEXT);
71 return si;
72}
73
74I32
75Perl_cxinc(pTHX)
76{
77 dVAR;
78 const IV old_max = cxstack_max;
79 cxstack_max = GROW(cxstack_max);
80 Renew(cxstack, cxstack_max + 1, PERL_CONTEXT);
81 /* Without any kind of initialising deep enough recursion
82 * will end up reading uninitialised PERL_CONTEXTs. */
83 PoisonNew(cxstack + old_max + 1, cxstack_max - old_max, PERL_CONTEXT);
84 return cxstack_ix + 1;
85}
86
87void
88Perl_push_scope(pTHX)
89{
90 dVAR;
91 if (PL_scopestack_ix == PL_scopestack_max) {
92 PL_scopestack_max = GROW(PL_scopestack_max);
93 Renew(PL_scopestack, PL_scopestack_max, I32);
94#ifdef DEBUGGING
95 Renew(PL_scopestack_name, PL_scopestack_max, const char*);
96#endif
97 }
98#ifdef DEBUGGING
99 PL_scopestack_name[PL_scopestack_ix] = "unknown";
100#endif
101 PL_scopestack[PL_scopestack_ix++] = PL_savestack_ix;
102
103}
104
105void
106Perl_pop_scope(pTHX)
107{
108 dVAR;
109 const I32 oldsave = PL_scopestack[--PL_scopestack_ix];
110 LEAVE_SCOPE(oldsave);
111}
112
113void
114Perl_markstack_grow(pTHX)
115{
116 dVAR;
117 const I32 oldmax = PL_markstack_max - PL_markstack;
118 const I32 newmax = GROW(oldmax);
119
120 Renew(PL_markstack, newmax, I32);
121 PL_markstack_ptr = PL_markstack + oldmax;
122 PL_markstack_max = PL_markstack + newmax;
123}
124
125void
126Perl_savestack_grow(pTHX)
127{
128 dVAR;
129 PL_savestack_max = GROW(PL_savestack_max) + 4;
130 Renew(PL_savestack, PL_savestack_max, ANY);
131}
132
133void
134Perl_savestack_grow_cnt(pTHX_ I32 need)
135{
136 dVAR;
137 PL_savestack_max = PL_savestack_ix + need;
138 Renew(PL_savestack, PL_savestack_max, ANY);
139}
140
141#undef GROW
142
143void
144Perl_tmps_grow(pTHX_ I32 n)
145{
146 dVAR;
147#ifndef STRESS_REALLOC
148 if (n < 128)
149 n = (PL_tmps_max < 512) ? 128 : 512;
150#endif
151 PL_tmps_max = PL_tmps_ix + n + 1;
152 Renew(PL_tmps_stack, PL_tmps_max, SV*);
153}
154
155
156void
157Perl_free_tmps(pTHX)
158{
159 dVAR;
160 /* XXX should tmps_floor live in cxstack? */
161 const I32 myfloor = PL_tmps_floor;
162 while (PL_tmps_ix > myfloor) { /* clean up after last statement */
163 SV* const sv = PL_tmps_stack[PL_tmps_ix];
164 PL_tmps_stack[PL_tmps_ix--] = NULL;
165 if (sv && sv != &PL_sv_undef) {
166 SvTEMP_off(sv);
167 SvREFCNT_dec(sv); /* note, can modify tmps_ix!!! */
168 }
169 }
170}
171
172STATIC SV *
173S_save_scalar_at(pTHX_ SV **sptr, const U32 flags)
174{
175 dVAR;
176 SV * osv;
177 register SV *sv;
178
179 PERL_ARGS_ASSERT_SAVE_SCALAR_AT;
180
181 osv = *sptr;
182 sv = (flags & SAVEf_KEEPOLDELEM) ? osv : (*sptr = newSV(0));
183
184 if (SvTYPE(osv) >= SVt_PVMG && SvMAGIC(osv)) {
185 if (SvGMAGICAL(osv)) {
186 SvFLAGS(osv) |= (SvFLAGS(osv) &
187 (SVp_IOK|SVp_NOK|SVp_POK)) >> PRIVSHIFT;
188 }
189 if (!(flags & SAVEf_KEEPOLDELEM))
190 mg_localize(osv, sv, cBOOL(flags & SAVEf_SETMAGIC));
191 }
192
193 return sv;
194}
195
196void
197Perl_save_pushptrptr(pTHX_ void *const ptr1, void *const ptr2, const int type)
198{
199 dVAR;
200 SSCHECK(3);
201 SSPUSHPTR(ptr1);
202 SSPUSHPTR(ptr2);
203 SSPUSHUV(type);
204}
205
206SV *
207Perl_save_scalar(pTHX_ GV *gv)
208{
209 dVAR;
210 SV ** const sptr = &GvSVn(gv);
211
212 PERL_ARGS_ASSERT_SAVE_SCALAR;
213
214 PL_localizing = 1;
215 SvGETMAGIC(*sptr);
216 PL_localizing = 0;
217 save_pushptrptr(SvREFCNT_inc_simple(gv), SvREFCNT_inc(*sptr), SAVEt_SV);
218 return save_scalar_at(sptr, SAVEf_SETMAGIC); /* XXX - FIXME - see #60360 */
219}
220
221/* Like save_sptr(), but also SvREFCNT_dec()s the new value. Can be used to
222 * restore a global SV to its prior contents, freeing new value. */
223void
224Perl_save_generic_svref(pTHX_ SV **sptr)
225{
226 dVAR;
227
228 PERL_ARGS_ASSERT_SAVE_GENERIC_SVREF;
229
230 save_pushptrptr(sptr, SvREFCNT_inc(*sptr), SAVEt_GENERIC_SVREF);
231}
232
233/* Like save_pptr(), but also Safefree()s the new value if it is different
234 * from the old one. Can be used to restore a global char* to its prior
235 * contents, freeing new value. */
236void
237Perl_save_generic_pvref(pTHX_ char **str)
238{
239 dVAR;
240
241 PERL_ARGS_ASSERT_SAVE_GENERIC_PVREF;
242
243 save_pushptrptr(*str, str, SAVEt_GENERIC_PVREF);
244}
245
246/* Like save_generic_pvref(), but uses PerlMemShared_free() rather than Safefree().
247 * Can be used to restore a shared global char* to its prior
248 * contents, freeing new value. */
249void
250Perl_save_shared_pvref(pTHX_ char **str)
251{
252 dVAR;
253
254 PERL_ARGS_ASSERT_SAVE_SHARED_PVREF;
255
256 save_pushptrptr(str, *str, SAVEt_SHARED_PVREF);
257}
258
259/* set the SvFLAGS specified by mask to the values in val */
260
261void
262Perl_save_set_svflags(pTHX_ SV* sv, U32 mask, U32 val)
263{
264 dVAR;
265
266 PERL_ARGS_ASSERT_SAVE_SET_SVFLAGS;
267
268 SSCHECK(4);
269 SSPUSHPTR(sv);
270 SSPUSHINT(mask);
271 SSPUSHINT(val);
272 SSPUSHUV(SAVEt_SET_SVFLAGS);
273}
274
275void
276Perl_save_gp(pTHX_ GV *gv, I32 empty)
277{
278 dVAR;
279
280 PERL_ARGS_ASSERT_SAVE_GP;
281
282 save_pushptrptr(SvREFCNT_inc(gv), GvGP(gv), SAVEt_GP);
283
284 if (empty) {
285 GP *gp = Perl_newGP(aTHX_ gv);
286
287 if (GvCVu(gv))
288 mro_method_changed_in(GvSTASH(gv)); /* taking a method out of circulation ("local")*/
289 if (GvIOp(gv) && (IoFLAGS(GvIOp(gv)) & IOf_ARGV)) {
290 gp->gp_io = newIO();
291 IoFLAGS(gp->gp_io) |= IOf_ARGV|IOf_START;
292 }
293#ifdef PERL_DONT_CREATE_GVSV
294 if (gv == PL_errgv) {
295 /* We could scatter this logic everywhere by changing the
296 definition of ERRSV from GvSV() to GvSVn(), but it seems more
297 efficient to do this check once here. */
298 gp->gp_sv = newSV(0);
299 }
300#endif
301 GvGP_set(gv,gp);
302 }
303 else {
304 gp_ref(GvGP(gv));
305 GvINTRO_on(gv);
306 }
307}
308
309AV *
310Perl_save_ary(pTHX_ GV *gv)
311{
312 dVAR;
313 AV * const oav = GvAVn(gv);
314 AV *av;
315
316 PERL_ARGS_ASSERT_SAVE_ARY;
317
318 if (!AvREAL(oav) && AvREIFY(oav))
319 av_reify(oav);
320 save_pushptrptr(SvREFCNT_inc_simple_NN(gv), oav, SAVEt_AV);
321
322 GvAV(gv) = NULL;
323 av = GvAVn(gv);
324 if (SvMAGIC(oav))
325 mg_localize(MUTABLE_SV(oav), MUTABLE_SV(av), TRUE);
326 return av;
327}
328
329HV *
330Perl_save_hash(pTHX_ GV *gv)
331{
332 dVAR;
333 HV *ohv, *hv;
334
335 PERL_ARGS_ASSERT_SAVE_HASH;
336
337 save_pushptrptr(
338 SvREFCNT_inc_simple_NN(gv), (ohv = GvHVn(gv)), SAVEt_HV
339 );
340
341 GvHV(gv) = NULL;
342 hv = GvHVn(gv);
343 if (SvMAGIC(ohv))
344 mg_localize(MUTABLE_SV(ohv), MUTABLE_SV(hv), TRUE);
345 return hv;
346}
347
348void
349Perl_save_item(pTHX_ register SV *item)
350{
351 dVAR;
352 register SV * const sv = newSVsv(item);
353
354 PERL_ARGS_ASSERT_SAVE_ITEM;
355
356 save_pushptrptr(item, /* remember the pointer */
357 sv, /* remember the value */
358 SAVEt_ITEM);
359}
360
361void
362Perl_save_bool(pTHX_ bool *boolp)
363{
364 dVAR;
365
366 PERL_ARGS_ASSERT_SAVE_BOOL;
367
368 SSCHECK(2);
369 SSPUSHPTR(boolp);
370 SSPUSHUV(SAVEt_BOOL | (*boolp << 8));
371}
372
373void
374Perl_save_pushi32ptr(pTHX_ const I32 i, void *const ptr, const int type)
375{
376 dVAR;
377 SSCHECK(3);
378 SSPUSHINT(i);
379 SSPUSHPTR(ptr);
380 SSPUSHUV(type);
381}
382
383void
384Perl_save_int(pTHX_ int *intp)
385{
386 dVAR;
387 const UV shifted = (UV)*intp << SAVE_TIGHT_SHIFT;
388
389 PERL_ARGS_ASSERT_SAVE_INT;
390
391 if ((int)(shifted >> SAVE_TIGHT_SHIFT) == *intp) {
392 SSCHECK(2);
393 SSPUSHPTR(intp);
394 SSPUSHUV(SAVEt_INT_SMALL | shifted);
395 } else
396 save_pushi32ptr(*intp, intp, SAVEt_INT);
397}
398
399void
400Perl_save_I8(pTHX_ I8 *bytep)
401{
402 dVAR;
403
404 PERL_ARGS_ASSERT_SAVE_I8;
405
406 SSCHECK(2);
407 SSPUSHPTR(bytep);
408 SSPUSHUV(SAVEt_I8 | ((UV)*bytep << 8));
409}
410
411void
412Perl_save_I16(pTHX_ I16 *intp)
413{
414 dVAR;
415
416 PERL_ARGS_ASSERT_SAVE_I16;
417
418 SSCHECK(2);
419 SSPUSHPTR(intp);
420 SSPUSHUV(SAVEt_I16 | ((UV)*intp << 8));
421}
422
423void
424Perl_save_I32(pTHX_ I32 *intp)
425{
426 dVAR;
427 const UV shifted = (UV)*intp << SAVE_TIGHT_SHIFT;
428
429 PERL_ARGS_ASSERT_SAVE_I32;
430
431 if ((I32)(shifted >> SAVE_TIGHT_SHIFT) == *intp) {
432 SSCHECK(2);
433 SSPUSHPTR(intp);
434 SSPUSHUV(SAVEt_I32_SMALL | shifted);
435 } else
436 save_pushi32ptr(*intp, intp, SAVEt_I32);
437}
438
439/* Cannot use save_sptr() to store a char* since the SV** cast will
440 * force word-alignment and we'll miss the pointer.
441 */
442void
443Perl_save_pptr(pTHX_ char **pptr)
444{
445 dVAR;
446
447 PERL_ARGS_ASSERT_SAVE_PPTR;
448
449 save_pushptrptr(*pptr, pptr, SAVEt_PPTR);
450}
451
452void
453Perl_save_vptr(pTHX_ void *ptr)
454{
455 dVAR;
456
457 PERL_ARGS_ASSERT_SAVE_VPTR;
458
459 save_pushptrptr(*(char**)ptr, ptr, SAVEt_VPTR);
460}
461
462void
463Perl_save_sptr(pTHX_ SV **sptr)
464{
465 dVAR;
466
467 PERL_ARGS_ASSERT_SAVE_SPTR;
468
469 save_pushptrptr(*sptr, sptr, SAVEt_SPTR);
470}
471
472void
473Perl_save_padsv_and_mortalize(pTHX_ PADOFFSET off)
474{
475 dVAR;
476 SSCHECK(4);
477 ASSERT_CURPAD_ACTIVE("save_padsv");
478 SSPUSHPTR(SvREFCNT_inc_simple_NN(PL_curpad[off]));
479 SSPUSHPTR(PL_comppad);
480 SSPUSHLONG((long)off);
481 SSPUSHUV(SAVEt_PADSV_AND_MORTALIZE);
482}
483
484void
485Perl_save_hptr(pTHX_ HV **hptr)
486{
487 dVAR;
488
489 PERL_ARGS_ASSERT_SAVE_HPTR;
490
491 save_pushptrptr(*hptr, hptr, SAVEt_HPTR);
492}
493
494void
495Perl_save_aptr(pTHX_ AV **aptr)
496{
497 dVAR;
498
499 PERL_ARGS_ASSERT_SAVE_APTR;
500
501 save_pushptrptr(*aptr, aptr, SAVEt_APTR);
502}
503
504void
505Perl_save_pushptr(pTHX_ void *const ptr, const int type)
506{
507 dVAR;
508 SSCHECK(2);
509 SSPUSHPTR(ptr);
510 SSPUSHUV(type);
511}
512
513void
514Perl_save_clearsv(pTHX_ SV **svp)
515{
516 dVAR;
517 const UV offset = svp - PL_curpad;
518 const UV offset_shifted = offset << SAVE_TIGHT_SHIFT;
519
520 PERL_ARGS_ASSERT_SAVE_CLEARSV;
521
522 ASSERT_CURPAD_ACTIVE("save_clearsv");
523 if ((offset_shifted >> SAVE_TIGHT_SHIFT) != offset)
524 Perl_croak(aTHX_ "panic: pad offset %"UVuf" out of range (%p-%p)",
525 offset, svp, PL_curpad);
526
527 SSCHECK(1);
528 SSPUSHUV(offset_shifted | SAVEt_CLEARSV);
529 SvPADSTALE_off(*svp); /* mark lexical as active */
530}
531
532void
533Perl_save_delete(pTHX_ HV *hv, char *key, I32 klen)
534{
535 dVAR;
536
537 PERL_ARGS_ASSERT_SAVE_DELETE;
538
539 save_pushptri32ptr(key, klen, SvREFCNT_inc_simple(hv), SAVEt_DELETE);
540}
541
542void
543Perl_save_hdelete(pTHX_ HV *hv, SV *keysv)
544{
545 STRLEN len;
546 I32 klen;
547 const char *key;
548
549 PERL_ARGS_ASSERT_SAVE_HDELETE;
550
551 key = SvPV_const(keysv, len);
552 klen = SvUTF8(keysv) ? -(I32)len : (I32)len;
553 SvREFCNT_inc_simple_void_NN(hv);
554 save_pushptri32ptr(savepvn(key, len), klen, hv, SAVEt_DELETE);
555}
556
557void
558Perl_save_adelete(pTHX_ AV *av, I32 key)
559{
560 dVAR;
561
562 PERL_ARGS_ASSERT_SAVE_ADELETE;
563
564 SvREFCNT_inc_void(av);
565 save_pushi32ptr(key, av, SAVEt_ADELETE);
566}
567
568void
569Perl_save_destructor(pTHX_ DESTRUCTORFUNC_NOCONTEXT_t f, void* p)
570{
571 dVAR;
572
573 PERL_ARGS_ASSERT_SAVE_DESTRUCTOR;
574
575 SSCHECK(3);
576 SSPUSHDPTR(f);
577 SSPUSHPTR(p);
578 SSPUSHUV(SAVEt_DESTRUCTOR);
579}
580
581void
582Perl_save_destructor_x(pTHX_ DESTRUCTORFUNC_t f, void* p)
583{
584 dVAR;
585 SSCHECK(3);
586 SSPUSHDXPTR(f);
587 SSPUSHPTR(p);
588 SSPUSHUV(SAVEt_DESTRUCTOR_X);
589}
590
591void
592Perl_save_hints(pTHX)
593{
594 dVAR;
595 COPHH *save_cophh = cophh_copy(CopHINTHASH_get(&PL_compiling));
596 if (PL_hints & HINT_LOCALIZE_HH) {
597 save_pushptri32ptr(GvHV(PL_hintgv), PL_hints, save_cophh, SAVEt_HINTS);
598 GvHV(PL_hintgv) = hv_copy_hints_hv(GvHV(PL_hintgv));
599 } else {
600 save_pushi32ptr(PL_hints, save_cophh, SAVEt_HINTS);
601 }
602}
603
604static void
605S_save_pushptri32ptr(pTHX_ void *const ptr1, const I32 i, void *const ptr2,
606 const int type)
607{
608 SSCHECK(4);
609 SSPUSHPTR(ptr1);
610 SSPUSHINT(i);
611 SSPUSHPTR(ptr2);
612 SSPUSHUV(type);
613}
614
615void
616Perl_save_aelem_flags(pTHX_ AV *av, I32 idx, SV **sptr, const U32 flags)
617{
618 dVAR;
619 SV *sv;
620
621 PERL_ARGS_ASSERT_SAVE_AELEM_FLAGS;
622
623 SvGETMAGIC(*sptr);
624 save_pushptri32ptr(SvREFCNT_inc_simple(av), idx, SvREFCNT_inc(*sptr),
625 SAVEt_AELEM);
626 /* if it gets reified later, the restore will have the wrong refcnt */
627 if (!AvREAL(av) && AvREIFY(av))
628 SvREFCNT_inc_void(*sptr);
629 save_scalar_at(sptr, flags); /* XXX - FIXME - see #60360 */
630 if (flags & SAVEf_KEEPOLDELEM)
631 return;
632 sv = *sptr;
633 /* If we're localizing a tied array element, this new sv
634 * won't actually be stored in the array - so it won't get
635 * reaped when the localize ends. Ensure it gets reaped by
636 * mortifying it instead. DAPM */
637 if (SvTIED_mg((const SV *)av, PERL_MAGIC_tied))
638 sv_2mortal(sv);
639}
640
641void
642Perl_save_helem_flags(pTHX_ HV *hv, SV *key, SV **sptr, const U32 flags)
643{
644 dVAR;
645 SV *sv;
646
647 PERL_ARGS_ASSERT_SAVE_HELEM_FLAGS;
648
649 SvGETMAGIC(*sptr);
650 SSCHECK(4);
651 SSPUSHPTR(SvREFCNT_inc_simple(hv));
652 SSPUSHPTR(newSVsv(key));
653 SSPUSHPTR(SvREFCNT_inc(*sptr));
654 SSPUSHUV(SAVEt_HELEM);
655 save_scalar_at(sptr, flags);
656 if (flags & SAVEf_KEEPOLDELEM)
657 return;
658 sv = *sptr;
659 /* If we're localizing a tied hash element, this new sv
660 * won't actually be stored in the hash - so it won't get
661 * reaped when the localize ends. Ensure it gets reaped by
662 * mortifying it instead. DAPM */
663 if (SvTIED_mg((const SV *)hv, PERL_MAGIC_tied))
664 sv_2mortal(sv);
665}
666
667SV*
668Perl_save_svref(pTHX_ SV **sptr)
669{
670 dVAR;
671
672 PERL_ARGS_ASSERT_SAVE_SVREF;
673
674 SvGETMAGIC(*sptr);
675 save_pushptrptr(sptr, SvREFCNT_inc(*sptr), SAVEt_SVREF);
676 return save_scalar_at(sptr, SAVEf_SETMAGIC); /* XXX - FIXME - see #60360 */
677}
678
679I32
680Perl_save_alloc(pTHX_ I32 size, I32 pad)
681{
682 dVAR;
683 register const I32 start = pad + ((char*)&PL_savestack[PL_savestack_ix]
684 - (char*)PL_savestack);
685 const UV elems = 1 + ((size + pad - 1) / sizeof(*PL_savestack));
686 const UV elems_shifted = elems << SAVE_TIGHT_SHIFT;
687
688 if ((elems_shifted >> SAVE_TIGHT_SHIFT) != elems)
689 Perl_croak(aTHX_ "panic: save_alloc elems %"UVuf" out of range (%ld-%ld)",
690 elems, size, pad);
691
692 SSGROW(elems + 1);
693
694 PL_savestack_ix += elems;
695 SSPUSHUV(SAVEt_ALLOC | elems_shifted);
696 return start;
697}
698
699void
700Perl_leave_scope(pTHX_ I32 base)
701{
702 dVAR;
703 register SV *sv;
704 register SV *value;
705 register GV *gv;
706 register AV *av;
707 register HV *hv;
708 void* ptr;
709 register char* str;
710 I32 i;
711 /* Localise the effects of the TAINT_NOT inside the loop. */
712 bool was = PL_tainted;
713
714 if (base < -1)
715 Perl_croak(aTHX_ "panic: corrupt saved stack index");
716 DEBUG_l(Perl_deb(aTHX_ "savestack: releasing items %ld -> %ld\n",
717 (long)PL_savestack_ix, (long)base));
718 while (PL_savestack_ix > base) {
719 UV uv = SSPOPUV;
720 const U8 type = (U8)uv & SAVE_MASK;
721 TAINT_NOT;
722
723 switch (type) {
724 case SAVEt_ITEM: /* normal string */
725 value = MUTABLE_SV(SSPOPPTR);
726 sv = MUTABLE_SV(SSPOPPTR);
727 sv_replace(sv,value);
728 PL_localizing = 2;
729 SvSETMAGIC(sv);
730 PL_localizing = 0;
731 break;
732 case SAVEt_SV: /* scalar reference */
733 value = MUTABLE_SV(SSPOPPTR);
734 gv = MUTABLE_GV(SSPOPPTR);
735 ptr = &GvSV(gv);
736 av = MUTABLE_AV(gv); /* what to refcnt_dec */
737 restore_sv:
738 sv = *(SV**)ptr;
739 *(SV**)ptr = value;
740 SvREFCNT_dec(sv);
741 PL_localizing = 2;
742 SvSETMAGIC(value);
743 PL_localizing = 0;
744 SvREFCNT_dec(value);
745 SvREFCNT_dec(av); /* av may actually be an AV, HV or GV */
746 break;
747 case SAVEt_GENERIC_PVREF: /* generic pv */
748 ptr = SSPOPPTR;
749 str = (char*)SSPOPPTR;
750 if (*(char**)ptr != str) {
751 Safefree(*(char**)ptr);
752 *(char**)ptr = str;
753 }
754 break;
755 case SAVEt_SHARED_PVREF: /* shared pv */
756 str = (char*)SSPOPPTR;
757 ptr = SSPOPPTR;
758 if (*(char**)ptr != str) {
759#ifdef NETWARE
760 PerlMem_free(*(char**)ptr);
761#else
762 PerlMemShared_free(*(char**)ptr);
763#endif
764 *(char**)ptr = str;
765 }
766 break;
767 case SAVEt_GVSV: /* scalar slot in GV */
768 value = MUTABLE_SV(SSPOPPTR);
769 gv = MUTABLE_GV(SSPOPPTR);
770 ptr = &GvSV(gv);
771 goto restore_svp;
772 case SAVEt_GENERIC_SVREF: /* generic sv */
773 value = MUTABLE_SV(SSPOPPTR);
774 ptr = SSPOPPTR;
775 restore_svp:
776 sv = *(SV**)ptr;
777 *(SV**)ptr = value;
778 SvREFCNT_dec(sv);
779 SvREFCNT_dec(value);
780 break;
781 case SAVEt_AV: /* array reference */
782 av = MUTABLE_AV(SSPOPPTR);
783 gv = MUTABLE_GV(SSPOPPTR);
784 SvREFCNT_dec(GvAV(gv));
785 GvAV(gv) = av;
786 if (SvMAGICAL(av)) {
787 PL_localizing = 2;
788 SvSETMAGIC(MUTABLE_SV(av));
789 PL_localizing = 0;
790 }
791 SvREFCNT_dec(gv);
792 break;
793 case SAVEt_HV: /* hash reference */
794 hv = MUTABLE_HV(SSPOPPTR);
795 gv = MUTABLE_GV(SSPOPPTR);
796 SvREFCNT_dec(GvHV(gv));
797 GvHV(gv) = hv;
798 if (SvMAGICAL(hv)) {
799 PL_localizing = 2;
800 SvSETMAGIC(MUTABLE_SV(hv));
801 PL_localizing = 0;
802 }
803 SvREFCNT_dec(gv);
804 break;
805 case SAVEt_INT_SMALL:
806 ptr = SSPOPPTR;
807 *(int*)ptr = (int)(uv >> SAVE_TIGHT_SHIFT);
808 break;
809 case SAVEt_INT: /* int reference */
810 ptr = SSPOPPTR;
811 *(int*)ptr = (int)SSPOPINT;
812 break;
813 case SAVEt_BOOL: /* bool reference */
814 ptr = SSPOPPTR;
815 *(bool*)ptr = cBOOL(uv >> 8);
816
817 if (ptr == &PL_tainted) {
818 /* If we don't update <was>, to reflect what was saved on the
819 * stack for PL_tainted, then we will overwrite this attempt to
820 * restore it when we exit this routine. Note that this won't
821 * work if this value was saved in a wider-than necessary type,
822 * such as I32 */
823 was = *(bool*)ptr;
824 }
825 break;
826 case SAVEt_I32_SMALL:
827 ptr = SSPOPPTR;
828 *(I32*)ptr = (I32)(uv >> SAVE_TIGHT_SHIFT);
829 break;
830 case SAVEt_I32: /* I32 reference */
831 ptr = SSPOPPTR;
832#ifdef PERL_DEBUG_READONLY_OPS
833 {
834 const I32 val = SSPOPINT;
835 if (*(I32*)ptr != val)
836 *(I32*)ptr = val;
837 }
838#else
839 *(I32*)ptr = (I32)SSPOPINT;
840#endif
841 break;
842 case SAVEt_SPTR: /* SV* reference */
843 ptr = SSPOPPTR;
844 *(SV**)ptr = MUTABLE_SV(SSPOPPTR);
845 break;
846 case SAVEt_VPTR: /* random* reference */
847 case SAVEt_PPTR: /* char* reference */
848 ptr = SSPOPPTR;
849 *(char**)ptr = (char*)SSPOPPTR;
850 break;
851 case SAVEt_HPTR: /* HV* reference */
852 ptr = SSPOPPTR;
853 *(HV**)ptr = MUTABLE_HV(SSPOPPTR);
854 break;
855 case SAVEt_APTR: /* AV* reference */
856 ptr = SSPOPPTR;
857 *(AV**)ptr = MUTABLE_AV(SSPOPPTR);
858 break;
859 case SAVEt_GP: /* scalar reference */
860 ptr = SSPOPPTR;
861 gv = MUTABLE_GV(SSPOPPTR);
862 gp_free(gv);
863 GvGP_set(gv, (GP*)ptr);
864 /* putting a method back into circulation ("local")*/
865 if (GvCVu(gv) && (hv=GvSTASH(gv)) && HvENAME_get(hv))
866 mro_method_changed_in(hv);
867 SvREFCNT_dec(gv);
868 break;
869 case SAVEt_FREESV:
870 ptr = SSPOPPTR;
871 SvREFCNT_dec(MUTABLE_SV(ptr));
872 break;
873 case SAVEt_FREECOPHH:
874 ptr = SSPOPPTR;
875 cophh_free((COPHH *)ptr);
876 break;
877 case SAVEt_MORTALIZESV:
878 ptr = SSPOPPTR;
879 sv_2mortal(MUTABLE_SV(ptr));
880 break;
881 case SAVEt_FREEOP:
882 ptr = SSPOPPTR;
883 ASSERT_CURPAD_LEGAL("SAVEt_FREEOP"); /* XXX DAPM tmp */
884 op_free((OP*)ptr);
885 break;
886 case SAVEt_FREEPV:
887 ptr = SSPOPPTR;
888 Safefree(ptr);
889 break;
890 case SAVEt_CLEARSV:
891 ptr = (void*)&PL_curpad[uv >> SAVE_TIGHT_SHIFT];
892 sv = *(SV**)ptr;
893
894 DEBUG_Xv(PerlIO_printf(Perl_debug_log,
895 "Pad 0x%"UVxf"[0x%"UVxf"] clearsv: %ld sv=0x%"UVxf"<%"IVdf"> %s\n",
896 PTR2UV(PL_comppad), PTR2UV(PL_curpad),
897 (long)((SV **)ptr-PL_curpad), PTR2UV(sv), (IV)SvREFCNT(sv),
898 (SvREFCNT(sv) <= 1 && !SvOBJECT(sv)) ? "clear" : "abandon"
899 ));
900
901 /* Can clear pad variable in place? */
902 if (SvREFCNT(sv) <= 1 && !SvOBJECT(sv)) {
903 /*
904 * if a my variable that was made readonly is going out of
905 * scope, we want to remove the readonlyness so that it can
906 * go out of scope quietly
907 */
908 if (SvPADMY(sv) && !SvFAKE(sv))
909 SvREADONLY_off(sv);
910
911 if (SvTHINKFIRST(sv))
912 sv_force_normal_flags(sv, SV_IMMEDIATE_UNREF);
913 if (SvTYPE(sv) == SVt_PVHV)
914 Perl_hv_kill_backrefs(aTHX_ MUTABLE_HV(sv));
915 if (SvMAGICAL(sv))
916 sv_unmagic(sv, PERL_MAGIC_backref),
917 mg_free(sv);
918
919 switch (SvTYPE(sv)) {
920 case SVt_NULL:
921 break;
922 case SVt_PVAV:
923 av_clear(MUTABLE_AV(sv));
924 break;
925 case SVt_PVHV:
926 hv_clear(MUTABLE_HV(sv));
927 break;
928 case SVt_PVCV:
929 Perl_croak(aTHX_ "panic: leave_scope pad code");
930 default:
931 SvOK_off(sv);
932 break;
933 }
934 SvPADSTALE_on(sv); /* mark as no longer live */
935 }
936 else { /* Someone has a claim on this, so abandon it. */
937 assert( SvFLAGS(sv) & SVs_PADMY);
938 assert(!(SvFLAGS(sv) & SVs_PADTMP));
939 switch (SvTYPE(sv)) { /* Console ourselves with a new value */
940 case SVt_PVAV: *(SV**)ptr = MUTABLE_SV(newAV()); break;
941 case SVt_PVHV: *(SV**)ptr = MUTABLE_SV(newHV()); break;
942 default: *(SV**)ptr = newSV(0); break;
943 }
944 SvREFCNT_dec(sv); /* Cast current value to the winds. */
945 /* preserve pad nature, but also mark as not live
946 * for any closure capturing */
947 SvFLAGS(*(SV**)ptr) |= (SVs_PADMY|SVs_PADSTALE);
948 }
949 break;
950 case SAVEt_DELETE:
951 ptr = SSPOPPTR;
952 hv = MUTABLE_HV(ptr);
953 i = SSPOPINT;
954 ptr = SSPOPPTR;
955 (void)hv_delete(hv, (char*)ptr, i, G_DISCARD);
956 SvREFCNT_dec(hv);
957 Safefree(ptr);
958 break;
959 case SAVEt_ADELETE:
960 ptr = SSPOPPTR;
961 av = MUTABLE_AV(ptr);
962 i = SSPOPINT;
963 (void)av_delete(av, i, G_DISCARD);
964 SvREFCNT_dec(av);
965 break;
966 case SAVEt_DESTRUCTOR_X:
967 ptr = SSPOPPTR;
968 (*SSPOPDXPTR)(aTHX_ ptr);
969 break;
970 case SAVEt_REGCONTEXT:
971 /* regexp must have croaked */
972 case SAVEt_ALLOC:
973 PL_savestack_ix -= uv >> SAVE_TIGHT_SHIFT;
974 break;
975 case SAVEt_STACK_POS: /* Position on Perl stack */
976 i = SSPOPINT;
977 PL_stack_sp = PL_stack_base + i;
978 break;
979 case SAVEt_STACK_CXPOS: /* blk_oldsp on context stack */
980 i = SSPOPINT;
981 cxstack[i].blk_oldsp = SSPOPINT;
982 break;
983 case SAVEt_AELEM: /* array element */
984 value = MUTABLE_SV(SSPOPPTR);
985 i = SSPOPINT;
986 av = MUTABLE_AV(SSPOPPTR);
987 ptr = av_fetch(av,i,1);
988 if (!AvREAL(av) && AvREIFY(av)) /* undo reify guard */
989 SvREFCNT_dec(value);
990 if (ptr) {
991 sv = *(SV**)ptr;
992 if (sv && sv != &PL_sv_undef) {
993 if (SvTIED_mg((const SV *)av, PERL_MAGIC_tied))
994 SvREFCNT_inc_void_NN(sv);
995 goto restore_sv;
996 }
997 }
998 SvREFCNT_dec(av);
999 SvREFCNT_dec(value);
1000 break;
1001 case SAVEt_HELEM: /* hash element */
1002 value = MUTABLE_SV(SSPOPPTR);
1003 sv = MUTABLE_SV(SSPOPPTR);
1004 hv = MUTABLE_HV(SSPOPPTR);
1005 ptr = hv_fetch_ent(hv, sv, 1, 0);
1006 SvREFCNT_dec(sv);
1007 if (ptr) {
1008 const SV * const oval = HeVAL((HE*)ptr);
1009 if (oval && oval != &PL_sv_undef) {
1010 ptr = &HeVAL((HE*)ptr);
1011 if (SvTIED_mg((const SV *)hv, PERL_MAGIC_tied))
1012 SvREFCNT_inc_void(*(SV**)ptr);
1013 av = MUTABLE_AV(hv); /* what to refcnt_dec */
1014 goto restore_sv;
1015 }
1016 }
1017 SvREFCNT_dec(hv);
1018 SvREFCNT_dec(value);
1019 break;
1020 case SAVEt_OP:
1021 PL_op = (OP*)SSPOPPTR;
1022 break;
1023 case SAVEt_HINTS:
1024 if ((PL_hints & HINT_LOCALIZE_HH) && GvHV(PL_hintgv)) {
1025 SvREFCNT_dec(MUTABLE_SV(GvHV(PL_hintgv)));
1026 GvHV(PL_hintgv) = NULL;
1027 }
1028 cophh_free(CopHINTHASH_get(&PL_compiling));
1029 CopHINTHASH_set(&PL_compiling, (COPHH*)SSPOPPTR);
1030 *(I32*)&PL_hints = (I32)SSPOPINT;
1031 if (PL_hints & HINT_LOCALIZE_HH) {
1032 SvREFCNT_dec(MUTABLE_SV(GvHV(PL_hintgv)));
1033 GvHV(PL_hintgv) = MUTABLE_HV(SSPOPPTR);
1034 assert(GvHV(PL_hintgv));
1035 } else if (!GvHV(PL_hintgv)) {
1036 /* Need to add a new one manually, else gv_fetchpv() can
1037 add one in this code:
1038
1039 if (SvTYPE(gv) == SVt_PVGV) {
1040 if (add) {
1041 GvMULTI_on(gv);
1042 gv_init_sv(gv, sv_type);
1043 if (*name=='!' && sv_type == SVt_PVHV && len==1)
1044 require_errno(gv);
1045 }
1046 return gv;
1047 }
1048
1049 and it won't have the magic set. */
1050
1051 HV *const hv = newHV();
1052 hv_magic(hv, NULL, PERL_MAGIC_hints);
1053 GvHV(PL_hintgv) = hv;
1054 }
1055 assert(GvHV(PL_hintgv));
1056 break;
1057 case SAVEt_COMPPAD:
1058 PL_comppad = (PAD*)SSPOPPTR;
1059 if (PL_comppad)
1060 PL_curpad = AvARRAY(PL_comppad);
1061 else
1062 PL_curpad = NULL;
1063 break;
1064 case SAVEt_PADSV_AND_MORTALIZE:
1065 {
1066 const PADOFFSET off = (PADOFFSET)SSPOPLONG;
1067 SV **svp;
1068 ptr = SSPOPPTR;
1069 assert (ptr);
1070 svp = AvARRAY((PAD*)ptr) + off;
1071 /* This mortalizing used to be done by POPLOOP() via itersave.
1072 But as we have all the information here, we can do it here,
1073 save even having to have itersave in the struct. */
1074 sv_2mortal(*svp);
1075 *svp = MUTABLE_SV(SSPOPPTR);
1076 }
1077 break;
1078 case SAVEt_SAVESWITCHSTACK:
1079 {
1080 dSP;
1081 AV *const t = MUTABLE_AV(SSPOPPTR);
1082 AV *const f = MUTABLE_AV(SSPOPPTR);
1083 SWITCHSTACK(t,f);
1084 PL_curstackinfo->si_stack = f;
1085 }
1086 break;
1087 case SAVEt_SET_SVFLAGS:
1088 {
1089 const U32 val = (U32)SSPOPINT;
1090 const U32 mask = (U32)SSPOPINT;
1091 sv = MUTABLE_SV(SSPOPPTR);
1092 SvFLAGS(sv) &= ~mask;
1093 SvFLAGS(sv) |= val;
1094 }
1095 break;
1096
1097 /* This would be a mathom, but Perl_save_svref() calls a static
1098 function, S_save_scalar_at(), so has to stay in this file. */
1099 case SAVEt_SVREF: /* scalar reference */
1100 value = MUTABLE_SV(SSPOPPTR);
1101 ptr = SSPOPPTR;
1102 av = NULL; /* what to refcnt_dec */
1103 goto restore_sv;
1104
1105 /* These are only saved in mathoms.c */
1106 case SAVEt_NSTAB:
1107 gv = MUTABLE_GV(SSPOPPTR);
1108 (void)sv_clear(MUTABLE_SV(gv));
1109 break;
1110 case SAVEt_LONG: /* long reference */
1111 ptr = SSPOPPTR;
1112 *(long*)ptr = (long)SSPOPLONG;
1113 break;
1114 case SAVEt_IV: /* IV reference */
1115 ptr = SSPOPPTR;
1116 *(IV*)ptr = (IV)SSPOPIV;
1117 break;
1118
1119 case SAVEt_I16: /* I16 reference */
1120 ptr = SSPOPPTR;
1121 *(I16*)ptr = (I16)(uv >> 8);
1122 break;
1123 case SAVEt_I8: /* I8 reference */
1124 ptr = SSPOPPTR;
1125 *(I8*)ptr = (I8)(uv >> 8);
1126 break;
1127 case SAVEt_DESTRUCTOR:
1128 ptr = SSPOPPTR;
1129 (*SSPOPDPTR)(ptr);
1130 break;
1131 case SAVEt_COMPILE_WARNINGS:
1132 ptr = SSPOPPTR;
1133
1134 if (!specialWARN(PL_compiling.cop_warnings))
1135 PerlMemShared_free(PL_compiling.cop_warnings);
1136
1137 PL_compiling.cop_warnings = (STRLEN*)ptr;
1138 break;
1139 case SAVEt_RE_STATE:
1140 {
1141 const struct re_save_state *const state
1142 = (struct re_save_state *)
1143 (PL_savestack + PL_savestack_ix
1144 - SAVESTACK_ALLOC_FOR_RE_SAVE_STATE);
1145 PL_savestack_ix -= SAVESTACK_ALLOC_FOR_RE_SAVE_STATE;
1146
1147 if (PL_reg_start_tmp != state->re_state_reg_start_tmp) {
1148 Safefree(PL_reg_start_tmp);
1149 }
1150 if (PL_reg_poscache != state->re_state_reg_poscache) {
1151 Safefree(PL_reg_poscache);
1152 }
1153 Copy(state, &PL_reg_state, 1, struct re_save_state);
1154 }
1155 break;
1156 case SAVEt_PARSER:
1157 ptr = SSPOPPTR;
1158 parser_free((yy_parser *) ptr);
1159 break;
1160 default:
1161 Perl_croak(aTHX_ "panic: leave_scope inconsistency");
1162 }
1163 }
1164
1165 PL_tainted = was;
1166
1167 PERL_ASYNC_CHECK();
1168}
1169
1170void
1171Perl_cx_dump(pTHX_ PERL_CONTEXT *cx)
1172{
1173 dVAR;
1174
1175 PERL_ARGS_ASSERT_CX_DUMP;
1176
1177#ifdef DEBUGGING
1178 PerlIO_printf(Perl_debug_log, "CX %ld = %s\n", (long)(cx - cxstack), PL_block_type[CxTYPE(cx)]);
1179 if (CxTYPE(cx) != CXt_SUBST) {
1180 PerlIO_printf(Perl_debug_log, "BLK_OLDSP = %ld\n", (long)cx->blk_oldsp);
1181 PerlIO_printf(Perl_debug_log, "BLK_OLDCOP = 0x%"UVxf"\n",
1182 PTR2UV(cx->blk_oldcop));
1183 PerlIO_printf(Perl_debug_log, "BLK_OLDMARKSP = %ld\n", (long)cx->blk_oldmarksp);
1184 PerlIO_printf(Perl_debug_log, "BLK_OLDSCOPESP = %ld\n", (long)cx->blk_oldscopesp);
1185 PerlIO_printf(Perl_debug_log, "BLK_OLDPM = 0x%"UVxf"\n",
1186 PTR2UV(cx->blk_oldpm));
1187 PerlIO_printf(Perl_debug_log, "BLK_GIMME = %s\n", cx->blk_gimme ? "LIST" : "SCALAR");
1188 }
1189 switch (CxTYPE(cx)) {
1190 case CXt_NULL:
1191 case CXt_BLOCK:
1192 break;
1193 case CXt_FORMAT:
1194 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.CV = 0x%"UVxf"\n",
1195 PTR2UV(cx->blk_format.cv));
1196 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.GV = 0x%"UVxf"\n",
1197 PTR2UV(cx->blk_format.gv));
1198 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.DFOUTGV = 0x%"UVxf"\n",
1199 PTR2UV(cx->blk_format.dfoutgv));
1200 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.HASARGS = %d\n",
1201 (int)CxHASARGS(cx));
1202 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.RETOP = 0x%"UVxf"\n",
1203 PTR2UV(cx->blk_format.retop));
1204 break;
1205 case CXt_SUB:
1206 PerlIO_printf(Perl_debug_log, "BLK_SUB.CV = 0x%"UVxf"\n",
1207 PTR2UV(cx->blk_sub.cv));
1208 PerlIO_printf(Perl_debug_log, "BLK_SUB.OLDDEPTH = %ld\n",
1209 (long)cx->blk_sub.olddepth);
1210 PerlIO_printf(Perl_debug_log, "BLK_SUB.HASARGS = %d\n",
1211 (int)CxHASARGS(cx));
1212 PerlIO_printf(Perl_debug_log, "BLK_SUB.LVAL = %d\n", (int)CxLVAL(cx));
1213 PerlIO_printf(Perl_debug_log, "BLK_SUB.RETOP = 0x%"UVxf"\n",
1214 PTR2UV(cx->blk_sub.retop));
1215 break;
1216 case CXt_EVAL:
1217 PerlIO_printf(Perl_debug_log, "BLK_EVAL.OLD_IN_EVAL = %ld\n",
1218 (long)CxOLD_IN_EVAL(cx));
1219 PerlIO_printf(Perl_debug_log, "BLK_EVAL.OLD_OP_TYPE = %s (%s)\n",
1220 PL_op_name[CxOLD_OP_TYPE(cx)],
1221 PL_op_desc[CxOLD_OP_TYPE(cx)]);
1222 if (cx->blk_eval.old_namesv)
1223 PerlIO_printf(Perl_debug_log, "BLK_EVAL.OLD_NAME = %s\n",
1224 SvPVX_const(cx->blk_eval.old_namesv));
1225 PerlIO_printf(Perl_debug_log, "BLK_EVAL.OLD_EVAL_ROOT = 0x%"UVxf"\n",
1226 PTR2UV(cx->blk_eval.old_eval_root));
1227 PerlIO_printf(Perl_debug_log, "BLK_EVAL.RETOP = 0x%"UVxf"\n",
1228 PTR2UV(cx->blk_eval.retop));
1229 break;
1230
1231 case CXt_LOOP_LAZYIV:
1232 case CXt_LOOP_LAZYSV:
1233 case CXt_LOOP_FOR:
1234 case CXt_LOOP_PLAIN:
1235 PerlIO_printf(Perl_debug_log, "BLK_LOOP.LABEL = %s\n", CxLABEL(cx));
1236 PerlIO_printf(Perl_debug_log, "BLK_LOOP.RESETSP = %ld\n",
1237 (long)cx->blk_loop.resetsp);
1238 PerlIO_printf(Perl_debug_log, "BLK_LOOP.MY_OP = 0x%"UVxf"\n",
1239 PTR2UV(cx->blk_loop.my_op));
1240 /* XXX: not accurate for LAZYSV/IV */
1241 PerlIO_printf(Perl_debug_log, "BLK_LOOP.ITERARY = 0x%"UVxf"\n",
1242 PTR2UV(cx->blk_loop.state_u.ary.ary));
1243 PerlIO_printf(Perl_debug_log, "BLK_LOOP.ITERIX = %ld\n",
1244 (long)cx->blk_loop.state_u.ary.ix);
1245 PerlIO_printf(Perl_debug_log, "BLK_LOOP.ITERVAR = 0x%"UVxf"\n",
1246 PTR2UV(CxITERVAR(cx)));
1247 break;
1248
1249 case CXt_SUBST:
1250 PerlIO_printf(Perl_debug_log, "SB_ITERS = %ld\n",
1251 (long)cx->sb_iters);
1252 PerlIO_printf(Perl_debug_log, "SB_MAXITERS = %ld\n",
1253 (long)cx->sb_maxiters);
1254 PerlIO_printf(Perl_debug_log, "SB_RFLAGS = %ld\n",
1255 (long)cx->sb_rflags);
1256 PerlIO_printf(Perl_debug_log, "SB_ONCE = %ld\n",
1257 (long)CxONCE(cx));
1258 PerlIO_printf(Perl_debug_log, "SB_ORIG = %s\n",
1259 cx->sb_orig);
1260 PerlIO_printf(Perl_debug_log, "SB_DSTR = 0x%"UVxf"\n",
1261 PTR2UV(cx->sb_dstr));
1262 PerlIO_printf(Perl_debug_log, "SB_TARG = 0x%"UVxf"\n",
1263 PTR2UV(cx->sb_targ));
1264 PerlIO_printf(Perl_debug_log, "SB_S = 0x%"UVxf"\n",
1265 PTR2UV(cx->sb_s));
1266 PerlIO_printf(Perl_debug_log, "SB_M = 0x%"UVxf"\n",
1267 PTR2UV(cx->sb_m));
1268 PerlIO_printf(Perl_debug_log, "SB_STREND = 0x%"UVxf"\n",
1269 PTR2UV(cx->sb_strend));
1270 PerlIO_printf(Perl_debug_log, "SB_RXRES = 0x%"UVxf"\n",
1271 PTR2UV(cx->sb_rxres));
1272 break;
1273 }
1274#else
1275 PERL_UNUSED_CONTEXT;
1276 PERL_UNUSED_ARG(cx);
1277#endif /* DEBUGGING */
1278}
1279
1280/*
1281 * Local variables:
1282 * c-indentation-style: bsd
1283 * c-basic-offset: 4
1284 * indent-tabs-mode: t
1285 * End:
1286 *
1287 * ex: set ts=8 sts=4 sw=4 noet:
1288 */