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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#ifdef PERL_POISON
165 PoisonWith(PL_tmps_stack + PL_tmps_ix + 1, 1, SV *, 0xAB);
166#endif
167 if (sv && sv != &PL_sv_undef) {
168 SvTEMP_off(sv);
169 SvREFCNT_dec_NN(sv); /* note, can modify tmps_ix!!! */
170 }
171 }
172}
173
174STATIC SV *
175S_save_scalar_at(pTHX_ SV **sptr, const U32 flags)
176{
177 dVAR;
178 SV * osv;
179 SV *sv;
180
181 PERL_ARGS_ASSERT_SAVE_SCALAR_AT;
182
183 osv = *sptr;
184 sv = (flags & SAVEf_KEEPOLDELEM) ? osv : (*sptr = newSV(0));
185
186 if (SvTYPE(osv) >= SVt_PVMG && SvMAGIC(osv)) {
187 if (SvGMAGICAL(osv)) {
188 SvFLAGS(osv) |= (SvFLAGS(osv) &
189 (SVp_IOK|SVp_NOK|SVp_POK)) >> PRIVSHIFT;
190 }
191 if (!(flags & SAVEf_KEEPOLDELEM))
192 mg_localize(osv, sv, cBOOL(flags & SAVEf_SETMAGIC));
193 }
194
195 return sv;
196}
197
198void
199Perl_save_pushptrptr(pTHX_ void *const ptr1, void *const ptr2, const int type)
200{
201 dVAR;
202 dSS_ADD;
203 SS_ADD_PTR(ptr1);
204 SS_ADD_PTR(ptr2);
205 SS_ADD_UV(type);
206 SS_ADD_END(3);
207}
208
209SV *
210Perl_save_scalar(pTHX_ GV *gv)
211{
212 dVAR;
213 SV ** const sptr = &GvSVn(gv);
214
215 PERL_ARGS_ASSERT_SAVE_SCALAR;
216
217 if (SvGMAGICAL(*sptr)) {
218 PL_localizing = 1;
219 (void)mg_get(*sptr);
220 PL_localizing = 0;
221 }
222 save_pushptrptr(SvREFCNT_inc_simple(gv), SvREFCNT_inc(*sptr), SAVEt_SV);
223 return save_scalar_at(sptr, SAVEf_SETMAGIC); /* XXX - FIXME - see #60360 */
224}
225
226/* Like save_sptr(), but also SvREFCNT_dec()s the new value. Can be used to
227 * restore a global SV to its prior contents, freeing new value. */
228void
229Perl_save_generic_svref(pTHX_ SV **sptr)
230{
231 dVAR;
232
233 PERL_ARGS_ASSERT_SAVE_GENERIC_SVREF;
234
235 save_pushptrptr(sptr, SvREFCNT_inc(*sptr), SAVEt_GENERIC_SVREF);
236}
237
238/* Like save_pptr(), but also Safefree()s the new value if it is different
239 * from the old one. Can be used to restore a global char* to its prior
240 * contents, freeing new value. */
241void
242Perl_save_generic_pvref(pTHX_ char **str)
243{
244 dVAR;
245
246 PERL_ARGS_ASSERT_SAVE_GENERIC_PVREF;
247
248 save_pushptrptr(*str, str, SAVEt_GENERIC_PVREF);
249}
250
251/* Like save_generic_pvref(), but uses PerlMemShared_free() rather than Safefree().
252 * Can be used to restore a shared global char* to its prior
253 * contents, freeing new value. */
254void
255Perl_save_shared_pvref(pTHX_ char **str)
256{
257 dVAR;
258
259 PERL_ARGS_ASSERT_SAVE_SHARED_PVREF;
260
261 save_pushptrptr(str, *str, SAVEt_SHARED_PVREF);
262}
263
264/* set the SvFLAGS specified by mask to the values in val */
265
266void
267Perl_save_set_svflags(pTHX_ SV* sv, U32 mask, U32 val)
268{
269 dVAR;
270 dSS_ADD;
271
272 PERL_ARGS_ASSERT_SAVE_SET_SVFLAGS;
273
274 SS_ADD_PTR(sv);
275 SS_ADD_INT(mask);
276 SS_ADD_INT(val);
277 SS_ADD_UV(SAVEt_SET_SVFLAGS);
278 SS_ADD_END(4);
279}
280
281void
282Perl_save_gp(pTHX_ GV *gv, I32 empty)
283{
284 dVAR;
285
286 PERL_ARGS_ASSERT_SAVE_GP;
287
288 save_pushptrptr(SvREFCNT_inc(gv), GvGP(gv), SAVEt_GP);
289
290 if (empty) {
291 GP *gp = Perl_newGP(aTHX_ gv);
292 HV * const stash = GvSTASH(gv);
293 bool isa_changed = 0;
294
295 if (stash && HvENAME(stash)) {
296 if (GvNAMELEN(gv) == 3 && strnEQ(GvNAME(gv), "ISA", 3))
297 isa_changed = TRUE;
298 else if (GvCVu(gv))
299 /* taking a method out of circulation ("local")*/
300 mro_method_changed_in(stash);
301 }
302 if (GvIOp(gv) && (IoFLAGS(GvIOp(gv)) & IOf_ARGV)) {
303 gp->gp_io = newIO();
304 IoFLAGS(gp->gp_io) |= IOf_ARGV|IOf_START;
305 }
306 GvGP_set(gv,gp);
307 if (isa_changed) mro_isa_changed_in(stash);
308 }
309 else {
310 gp_ref(GvGP(gv));
311 GvINTRO_on(gv);
312 }
313}
314
315AV *
316Perl_save_ary(pTHX_ GV *gv)
317{
318 dVAR;
319 AV * const oav = GvAVn(gv);
320 AV *av;
321
322 PERL_ARGS_ASSERT_SAVE_ARY;
323
324 if (!AvREAL(oav) && AvREIFY(oav))
325 av_reify(oav);
326 save_pushptrptr(SvREFCNT_inc_simple_NN(gv), oav, SAVEt_AV);
327
328 GvAV(gv) = NULL;
329 av = GvAVn(gv);
330 if (SvMAGIC(oav))
331 mg_localize(MUTABLE_SV(oav), MUTABLE_SV(av), TRUE);
332 return av;
333}
334
335HV *
336Perl_save_hash(pTHX_ GV *gv)
337{
338 dVAR;
339 HV *ohv, *hv;
340
341 PERL_ARGS_ASSERT_SAVE_HASH;
342
343 save_pushptrptr(
344 SvREFCNT_inc_simple_NN(gv), (ohv = GvHVn(gv)), SAVEt_HV
345 );
346
347 GvHV(gv) = NULL;
348 hv = GvHVn(gv);
349 if (SvMAGIC(ohv))
350 mg_localize(MUTABLE_SV(ohv), MUTABLE_SV(hv), TRUE);
351 return hv;
352}
353
354void
355Perl_save_item(pTHX_ SV *item)
356{
357 dVAR;
358 SV * const sv = newSVsv(item);
359
360 PERL_ARGS_ASSERT_SAVE_ITEM;
361
362 save_pushptrptr(item, /* remember the pointer */
363 sv, /* remember the value */
364 SAVEt_ITEM);
365}
366
367void
368Perl_save_bool(pTHX_ bool *boolp)
369{
370 dVAR;
371 dSS_ADD;
372
373 PERL_ARGS_ASSERT_SAVE_BOOL;
374
375 SS_ADD_PTR(boolp);
376 SS_ADD_UV(SAVEt_BOOL | (*boolp << 8));
377 SS_ADD_END(2);
378}
379
380void
381Perl_save_pushi32ptr(pTHX_ const I32 i, void *const ptr, const int type)
382{
383 dVAR;
384 dSS_ADD;
385
386 SS_ADD_INT(i);
387 SS_ADD_PTR(ptr);
388 SS_ADD_UV(type);
389 SS_ADD_END(3);
390}
391
392void
393Perl_save_int(pTHX_ int *intp)
394{
395 dVAR;
396 const int i = *intp;
397 UV type = ((UV)(i << SAVE_TIGHT_SHIFT) | SAVEt_INT_SMALL);
398 int size = 2;
399 dSS_ADD;
400
401 PERL_ARGS_ASSERT_SAVE_INT;
402
403 if ((int)(type >> SAVE_TIGHT_SHIFT) != i) {
404 SS_ADD_INT(i);
405 type = SAVEt_INT;
406 size++;
407 }
408 SS_ADD_PTR(intp);
409 SS_ADD_UV(type);
410 SS_ADD_END(size);
411}
412
413void
414Perl_save_I8(pTHX_ I8 *bytep)
415{
416 dVAR;
417 dSS_ADD;
418
419 PERL_ARGS_ASSERT_SAVE_I8;
420
421 SS_ADD_PTR(bytep);
422 SS_ADD_UV(SAVEt_I8 | ((UV)*bytep << 8));
423 SS_ADD_END(2);
424}
425
426void
427Perl_save_I16(pTHX_ I16 *intp)
428{
429 dVAR;
430 dSS_ADD;
431
432 PERL_ARGS_ASSERT_SAVE_I16;
433
434 SS_ADD_PTR(intp);
435 SS_ADD_UV(SAVEt_I16 | ((UV)*intp << 8));
436 SS_ADD_END(2);
437}
438
439void
440Perl_save_I32(pTHX_ I32 *intp)
441{
442 dVAR;
443 const I32 i = *intp;
444 UV type = ((I32)(i << SAVE_TIGHT_SHIFT) | SAVEt_I32_SMALL);
445 int size = 2;
446 dSS_ADD;
447
448 PERL_ARGS_ASSERT_SAVE_I32;
449
450 if ((I32)(type >> SAVE_TIGHT_SHIFT) != i) {
451 SS_ADD_INT(i);
452 type = SAVEt_I32;
453 size++;
454 }
455 SS_ADD_PTR(intp);
456 SS_ADD_UV(type);
457 SS_ADD_END(size);
458}
459
460/* Cannot use save_sptr() to store a char* since the SV** cast will
461 * force word-alignment and we'll miss the pointer.
462 */
463void
464Perl_save_pptr(pTHX_ char **pptr)
465{
466 dVAR;
467
468 PERL_ARGS_ASSERT_SAVE_PPTR;
469
470 save_pushptrptr(*pptr, pptr, SAVEt_PPTR);
471}
472
473void
474Perl_save_vptr(pTHX_ void *ptr)
475{
476 dVAR;
477
478 PERL_ARGS_ASSERT_SAVE_VPTR;
479
480 save_pushptrptr(*(char**)ptr, ptr, SAVEt_VPTR);
481}
482
483void
484Perl_save_sptr(pTHX_ SV **sptr)
485{
486 dVAR;
487
488 PERL_ARGS_ASSERT_SAVE_SPTR;
489
490 save_pushptrptr(*sptr, sptr, SAVEt_SPTR);
491}
492
493void
494Perl_save_padsv_and_mortalize(pTHX_ PADOFFSET off)
495{
496 dVAR;
497 dSS_ADD;
498
499 ASSERT_CURPAD_ACTIVE("save_padsv");
500 SS_ADD_PTR(SvREFCNT_inc_simple_NN(PL_curpad[off]));
501 SS_ADD_PTR(PL_comppad);
502 SS_ADD_UV((UV)off);
503 SS_ADD_UV(SAVEt_PADSV_AND_MORTALIZE);
504 SS_ADD_END(4);
505}
506
507void
508Perl_save_hptr(pTHX_ HV **hptr)
509{
510 dVAR;
511
512 PERL_ARGS_ASSERT_SAVE_HPTR;
513
514 save_pushptrptr(*hptr, hptr, SAVEt_HPTR);
515}
516
517void
518Perl_save_aptr(pTHX_ AV **aptr)
519{
520 dVAR;
521
522 PERL_ARGS_ASSERT_SAVE_APTR;
523
524 save_pushptrptr(*aptr, aptr, SAVEt_APTR);
525}
526
527void
528Perl_save_pushptr(pTHX_ void *const ptr, const int type)
529{
530 dVAR;
531 dSS_ADD;
532 SS_ADD_PTR(ptr);
533 SS_ADD_UV(type);
534 SS_ADD_END(2);
535}
536
537void
538Perl_save_clearsv(pTHX_ SV **svp)
539{
540 dVAR;
541 const UV offset = svp - PL_curpad;
542 const UV offset_shifted = offset << SAVE_TIGHT_SHIFT;
543
544 PERL_ARGS_ASSERT_SAVE_CLEARSV;
545
546 ASSERT_CURPAD_ACTIVE("save_clearsv");
547 SvPADSTALE_off(*svp); /* mark lexical as active */
548 if ((offset_shifted >> SAVE_TIGHT_SHIFT) != offset) {
549 Perl_croak(aTHX_ "panic: pad offset %"UVuf" out of range (%p-%p)",
550 offset, svp, PL_curpad);
551 }
552
553 {
554 dSS_ADD;
555 SS_ADD_UV(offset_shifted | SAVEt_CLEARSV);
556 SS_ADD_END(1);
557 }
558}
559
560void
561Perl_save_delete(pTHX_ HV *hv, char *key, I32 klen)
562{
563 dVAR;
564
565 PERL_ARGS_ASSERT_SAVE_DELETE;
566
567 save_pushptri32ptr(key, klen, SvREFCNT_inc_simple(hv), SAVEt_DELETE);
568}
569
570void
571Perl_save_hdelete(pTHX_ HV *hv, SV *keysv)
572{
573 STRLEN len;
574 I32 klen;
575 const char *key;
576
577 PERL_ARGS_ASSERT_SAVE_HDELETE;
578
579 key = SvPV_const(keysv, len);
580 klen = SvUTF8(keysv) ? -(I32)len : (I32)len;
581 SvREFCNT_inc_simple_void_NN(hv);
582 save_pushptri32ptr(savepvn(key, len), klen, hv, SAVEt_DELETE);
583}
584
585void
586Perl_save_adelete(pTHX_ AV *av, I32 key)
587{
588 dVAR;
589
590 PERL_ARGS_ASSERT_SAVE_ADELETE;
591
592 SvREFCNT_inc_void(av);
593 save_pushi32ptr(key, av, SAVEt_ADELETE);
594}
595
596void
597Perl_save_destructor(pTHX_ DESTRUCTORFUNC_NOCONTEXT_t f, void* p)
598{
599 dVAR;
600 dSS_ADD;
601
602 PERL_ARGS_ASSERT_SAVE_DESTRUCTOR;
603
604 SS_ADD_DPTR(f);
605 SS_ADD_PTR(p);
606 SS_ADD_UV(SAVEt_DESTRUCTOR);
607 SS_ADD_END(3);
608}
609
610void
611Perl_save_destructor_x(pTHX_ DESTRUCTORFUNC_t f, void* p)
612{
613 dVAR;
614 dSS_ADD;
615
616 SS_ADD_DXPTR(f);
617 SS_ADD_PTR(p);
618 SS_ADD_UV(SAVEt_DESTRUCTOR_X);
619 SS_ADD_END(3);
620}
621
622void
623Perl_save_hints(pTHX)
624{
625 dVAR;
626 COPHH *save_cophh = cophh_copy(CopHINTHASH_get(&PL_compiling));
627 if (PL_hints & HINT_LOCALIZE_HH) {
628 HV *oldhh = GvHV(PL_hintgv);
629 save_pushptri32ptr(oldhh, PL_hints, save_cophh, SAVEt_HINTS);
630 GvHV(PL_hintgv) = NULL; /* in case copying dies */
631 GvHV(PL_hintgv) = hv_copy_hints_hv(oldhh);
632 } else {
633 save_pushi32ptr(PL_hints, save_cophh, SAVEt_HINTS);
634 }
635}
636
637static void
638S_save_pushptri32ptr(pTHX_ void *const ptr1, const I32 i, void *const ptr2,
639 const int type)
640{
641 dSS_ADD;
642 SS_ADD_PTR(ptr1);
643 SS_ADD_INT(i);
644 SS_ADD_PTR(ptr2);
645 SS_ADD_UV(type);
646 SS_ADD_END(4);
647}
648
649void
650Perl_save_aelem_flags(pTHX_ AV *av, I32 idx, SV **sptr, const U32 flags)
651{
652 dVAR;
653 SV *sv;
654
655 PERL_ARGS_ASSERT_SAVE_AELEM_FLAGS;
656
657 SvGETMAGIC(*sptr);
658 save_pushptri32ptr(SvREFCNT_inc_simple(av), idx, SvREFCNT_inc(*sptr),
659 SAVEt_AELEM);
660 /* The array needs to hold a reference count on its new element, so it
661 must be AvREAL. */
662 if (!AvREAL(av) && AvREIFY(av))
663 av_reify(av);
664 save_scalar_at(sptr, flags); /* XXX - FIXME - see #60360 */
665 if (flags & SAVEf_KEEPOLDELEM)
666 return;
667 sv = *sptr;
668 /* If we're localizing a tied array element, this new sv
669 * won't actually be stored in the array - so it won't get
670 * reaped when the localize ends. Ensure it gets reaped by
671 * mortifying it instead. DAPM */
672 if (SvTIED_mg((const SV *)av, PERL_MAGIC_tied))
673 sv_2mortal(sv);
674}
675
676void
677Perl_save_helem_flags(pTHX_ HV *hv, SV *key, SV **sptr, const U32 flags)
678{
679 dVAR;
680 SV *sv;
681
682 PERL_ARGS_ASSERT_SAVE_HELEM_FLAGS;
683
684 SvGETMAGIC(*sptr);
685 {
686 dSS_ADD;
687 SS_ADD_PTR(SvREFCNT_inc_simple(hv));
688 SS_ADD_PTR(newSVsv(key));
689 SS_ADD_PTR(SvREFCNT_inc(*sptr));
690 SS_ADD_UV(SAVEt_HELEM);
691 SS_ADD_END(4);
692 }
693 save_scalar_at(sptr, flags);
694 if (flags & SAVEf_KEEPOLDELEM)
695 return;
696 sv = *sptr;
697 /* If we're localizing a tied hash element, this new sv
698 * won't actually be stored in the hash - so it won't get
699 * reaped when the localize ends. Ensure it gets reaped by
700 * mortifying it instead. DAPM */
701 if (SvTIED_mg((const SV *)hv, PERL_MAGIC_tied))
702 sv_2mortal(sv);
703}
704
705SV*
706Perl_save_svref(pTHX_ SV **sptr)
707{
708 dVAR;
709
710 PERL_ARGS_ASSERT_SAVE_SVREF;
711
712 SvGETMAGIC(*sptr);
713 save_pushptrptr(sptr, SvREFCNT_inc(*sptr), SAVEt_SVREF);
714 return save_scalar_at(sptr, SAVEf_SETMAGIC); /* XXX - FIXME - see #60360 */
715}
716
717I32
718Perl_save_alloc(pTHX_ I32 size, I32 pad)
719{
720 dVAR;
721 const I32 start = pad + ((char*)&PL_savestack[PL_savestack_ix]
722 - (char*)PL_savestack);
723 const UV elems = 1 + ((size + pad - 1) / sizeof(*PL_savestack));
724 const UV elems_shifted = elems << SAVE_TIGHT_SHIFT;
725
726 if ((elems_shifted >> SAVE_TIGHT_SHIFT) != elems)
727 Perl_croak(aTHX_ "panic: save_alloc elems %"UVuf" out of range (%ld-%ld)",
728 elems, size, pad);
729
730 SSGROW(elems + 1);
731
732 PL_savestack_ix += elems;
733 SSPUSHUV(SAVEt_ALLOC | elems_shifted);
734 return start;
735}
736
737
738
739#define ARG0_SV MUTABLE_SV(arg0.any_ptr)
740#define ARG0_AV MUTABLE_AV(arg0.any_ptr)
741#define ARG0_HV MUTABLE_HV(arg0.any_ptr)
742#define ARG0_PTR arg0.any_ptr
743#define ARG0_PV (char*)(arg0.any_ptr)
744#define ARG0_PVP (char**)(arg0.any_ptr)
745#define ARG0_I32 (arg0.any_i32)
746
747#define ARG1_SV MUTABLE_SV(arg1.any_ptr)
748#define ARG1_AV MUTABLE_AV(arg1.any_ptr)
749#define ARG1_GV MUTABLE_GV(arg1.any_ptr)
750#define ARG1_SVP (SV**)(arg1.any_ptr)
751#define ARG1_PVP (char**)(arg1.any_ptr)
752#define ARG1_PTR arg1.any_ptr
753#define ARG1_PV (char*)(arg1.any_ptr)
754#define ARG1_I32 (arg1.any_i32)
755
756#define ARG2_SV MUTABLE_SV(arg2.any_ptr)
757#define ARG2_AV MUTABLE_AV(arg2.any_ptr)
758#define ARG2_HV MUTABLE_HV(arg2.any_ptr)
759#define ARG2_GV MUTABLE_GV(arg2.any_ptr)
760#define ARG2_PV (char*)(arg2.any_ptr)
761
762void
763Perl_leave_scope(pTHX_ I32 base)
764{
765 dVAR;
766
767 /* Localise the effects of the TAINT_NOT inside the loop. */
768 bool was = TAINT_get;
769
770 ANY arg0, arg1, arg2;
771
772 /* these initialisations are logically unnecessary, but they shut up
773 * spurious 'may be used uninitialized' compiler warnings */
774 arg0.any_ptr = NULL;
775 arg1.any_ptr = NULL;
776 arg2.any_ptr = NULL;
777
778 if (base < -1)
779 Perl_croak(aTHX_ "panic: corrupt saved stack index %ld", (long) base);
780 DEBUG_l(Perl_deb(aTHX_ "savestack: releasing items %ld -> %ld\n",
781 (long)PL_savestack_ix, (long)base));
782 while (PL_savestack_ix > base) {
783 UV uv;
784 U8 type;
785
786 SV *refsv;
787 SV **svp;
788
789 TAINT_NOT;
790
791 {
792 I32 ix = PL_savestack_ix - 1;
793 ANY *p = &PL_savestack[ix];
794 uv = p->any_uv;
795 type = (U8)uv & SAVE_MASK;
796 if (type > SAVEt_ARG0_MAX) {
797 ANY *p0 = p;
798 arg0 = *--p;
799 if (type > SAVEt_ARG1_MAX) {
800 arg1 = *--p;
801 if (type > SAVEt_ARG2_MAX) {
802 arg2 = *--p;
803 }
804 }
805 ix -= (p0 - p);
806 }
807 PL_savestack_ix = ix;
808 }
809
810 switch (type) {
811 case SAVEt_ITEM: /* normal string */
812 sv_replace(ARG1_SV, ARG0_SV);
813 if (SvSMAGICAL(ARG1_SV)) {
814 PL_localizing = 2;
815 mg_set(ARG1_SV);
816 PL_localizing = 0;
817 }
818 break;
819
820 /* This would be a mathom, but Perl_save_svref() calls a static
821 function, S_save_scalar_at(), so has to stay in this file. */
822 case SAVEt_SVREF: /* scalar reference */
823 svp = ARG1_SVP;
824 refsv = NULL; /* what to refcnt_dec */
825 goto restore_sv;
826
827 case SAVEt_SV: /* scalar reference */
828 svp = &GvSV(ARG1_GV);
829 refsv = ARG1_SV; /* what to refcnt_dec */
830 restore_sv:
831 {
832 SV * const sv = *svp;
833 *svp = ARG0_SV;
834 SvREFCNT_dec(sv);
835 if (SvSMAGICAL(ARG0_SV)) {
836 PL_localizing = 2;
837 mg_set(ARG0_SV);
838 PL_localizing = 0;
839 }
840 SvREFCNT_dec_NN(ARG0_SV);
841 SvREFCNT_dec(refsv);
842 break;
843 }
844 case SAVEt_GENERIC_PVREF: /* generic pv */
845 if (*ARG0_PVP != ARG1_PV) {
846 Safefree(*ARG0_PVP);
847 *ARG0_PVP = ARG1_PV;
848 }
849 break;
850 case SAVEt_SHARED_PVREF: /* shared pv */
851 if (*ARG1_PVP != ARG0_PV) {
852#ifdef NETWARE
853 PerlMem_free(*ARG1_PVP);
854#else
855 PerlMemShared_free(*ARG1_PVP);
856#endif
857 *ARG1_PVP = ARG0_PV;
858 }
859 break;
860 case SAVEt_GVSV: /* scalar slot in GV */
861 svp = &GvSV(ARG1_GV);
862 goto restore_svp;
863 case SAVEt_GENERIC_SVREF: /* generic sv */
864 svp = ARG1_SVP;
865 restore_svp:
866 {
867 SV * const sv = *svp;
868 *svp = ARG0_SV;
869 SvREFCNT_dec(sv);
870 SvREFCNT_dec(ARG0_SV);
871 break;
872 }
873 case SAVEt_GVSLOT: /* any slot in GV */
874 {
875 HV *const hv = GvSTASH(ARG2_GV);
876 svp = ARG1_SVP;
877 if (hv && HvENAME(hv) && (
878 (ARG0_SV && SvTYPE(ARG0_SV) == SVt_PVCV)
879 || (*svp && SvTYPE(*svp) == SVt_PVCV)
880 ))
881 {
882 if ((char *)svp < (char *)GvGP(ARG2_GV)
883 || (char *)svp > (char *)GvGP(ARG2_GV) + sizeof(struct gp)
884 || GvREFCNT(ARG2_GV) > 1)
885 PL_sub_generation++;
886 else mro_method_changed_in(hv);
887 }
888 goto restore_svp;
889 }
890 case SAVEt_AV: /* array reference */
891 SvREFCNT_dec(GvAV(ARG1_GV));
892 GvAV(ARG1_GV) = ARG0_AV;
893 if (SvSMAGICAL(ARG0_SV)) {
894 PL_localizing = 2;
895 mg_set(ARG0_SV);
896 PL_localizing = 0;
897 }
898 SvREFCNT_dec_NN(ARG1_GV);
899 break;
900 case SAVEt_HV: /* hash reference */
901 SvREFCNT_dec(GvHV(ARG1_GV));
902 GvHV(ARG1_GV) = ARG0_HV;
903 if (SvSMAGICAL(ARG0_SV)) {
904 PL_localizing = 2;
905 mg_set(ARG0_SV);
906 PL_localizing = 0;
907 }
908 SvREFCNT_dec_NN(ARG1_GV);
909 break;
910 case SAVEt_INT_SMALL:
911 *(int*)ARG0_PTR = (int)(uv >> SAVE_TIGHT_SHIFT);
912 break;
913 case SAVEt_INT: /* int reference */
914 *(int*)ARG0_PTR = (int)ARG1_I32;
915 break;
916 case SAVEt_BOOL: /* bool reference */
917 *(bool*)ARG0_PTR = cBOOL(uv >> 8);
918#if !NO_TAINT_SUPPORT
919 if (ARG0_PTR == &(TAINT_get)) {
920 /* If we don't update <was>, to reflect what was saved on the
921 * stack for PL_tainted, then we will overwrite this attempt to
922 * restore it when we exit this routine. Note that this won't
923 * work if this value was saved in a wider-than necessary type,
924 * such as I32 */
925 was = *(bool*)ARG0_PTR;
926 }
927#endif
928 break;
929 case SAVEt_I32_SMALL:
930 *(I32*)ARG0_PTR = (I32)(uv >> SAVE_TIGHT_SHIFT);
931 break;
932 case SAVEt_I32: /* I32 reference */
933#ifdef PERL_DEBUG_READONLY_OPS
934 if (*(I32*)ARG0_PTR != ARG1_I32)
935#endif
936 *(I32*)ARG0_PTR = ARG1_I32;
937 break;
938 case SAVEt_SPTR: /* SV* reference */
939 *(SV**)(ARG0_PTR)= ARG1_SV;
940 break;
941 case SAVEt_VPTR: /* random* reference */
942 case SAVEt_PPTR: /* char* reference */
943 *ARG0_PVP = ARG1_PV;
944 break;
945 case SAVEt_HPTR: /* HV* reference */
946 *(HV**)ARG0_PTR = MUTABLE_HV(ARG1_PTR);
947 break;
948 case SAVEt_APTR: /* AV* reference */
949 *(AV**)ARG0_PTR = ARG1_AV;
950 break;
951 case SAVEt_GP: /* scalar reference */
952 {
953 HV *hv;
954 /* possibly taking a method out of circulation */
955 const bool had_method = !!GvCVu(ARG1_GV);
956 gp_free(ARG1_GV);
957 GvGP_set(ARG1_GV, (GP*)ARG0_PTR);
958 if ((hv=GvSTASH(ARG1_GV)) && HvENAME_get(hv)) {
959 if ( GvNAMELEN(ARG1_GV) == 3
960 && strnEQ(GvNAME(ARG1_GV), "ISA", 3)
961 )
962 mro_isa_changed_in(hv);
963 else if (had_method || GvCVu(ARG1_GV))
964 /* putting a method back into circulation ("local")*/
965 gv_method_changed(ARG1_GV);
966 }
967 SvREFCNT_dec_NN(ARG1_GV);
968 break;
969 }
970 case SAVEt_FREESV:
971 SvREFCNT_dec(ARG0_SV);
972 break;
973 case SAVEt_FREECOPHH:
974 cophh_free((COPHH *)ARG0_PTR);
975 break;
976 case SAVEt_MORTALIZESV:
977 sv_2mortal(ARG0_SV);
978 break;
979 case SAVEt_FREEOP:
980 ASSERT_CURPAD_LEGAL("SAVEt_FREEOP");
981 op_free((OP*)ARG0_PTR);
982 break;
983 case SAVEt_FREEPV:
984 Safefree(ARG0_PTR);
985 break;
986
987 {
988 SV **svp;
989 I32 i;
990 SV *sv;
991
992 case SAVEt_CLEARPADRANGE:
993 i = (I32)((uv >> SAVE_TIGHT_SHIFT) & OPpPADRANGE_COUNTMASK);
994 svp = &PL_curpad[uv >>
995 (OPpPADRANGE_COUNTSHIFT + SAVE_TIGHT_SHIFT)] + i - 1;
996 goto clearsv;
997 case SAVEt_CLEARSV:
998 svp = &PL_curpad[uv >> SAVE_TIGHT_SHIFT];
999 i = 1;
1000 clearsv:
1001 for (; i; i--, svp--) {
1002 sv = *svp;
1003
1004 DEBUG_Xv(PerlIO_printf(Perl_debug_log,
1005 "Pad 0x%"UVxf"[0x%"UVxf"] clearsv: %ld sv=0x%"UVxf"<%"IVdf"> %s\n",
1006 PTR2UV(PL_comppad), PTR2UV(PL_curpad),
1007 (long)(svp-PL_curpad), PTR2UV(sv), (IV)SvREFCNT(sv),
1008 (SvREFCNT(sv) <= 1 && !SvOBJECT(sv)) ? "clear" : "abandon"
1009 ));
1010
1011 /* Can clear pad variable in place? */
1012 if (SvREFCNT(sv) <= 1 && !SvOBJECT(sv)) {
1013 /*
1014 * if a my variable that was made readonly is going out of
1015 * scope, we want to remove the readonlyness so that it can
1016 * go out of scope quietly
1017 */
1018 if (SvPADMY(sv) && !SvFAKE(sv))
1019 SvREADONLY_off(sv);
1020
1021 if (SvTHINKFIRST(sv))
1022 sv_force_normal_flags(sv, SV_IMMEDIATE_UNREF
1023 |SV_COW_DROP_PV);
1024 if (SvTYPE(sv) == SVt_PVHV)
1025 Perl_hv_kill_backrefs(aTHX_ MUTABLE_HV(sv));
1026 if (SvMAGICAL(sv))
1027 {
1028 sv_unmagic(sv, PERL_MAGIC_backref);
1029 if (SvTYPE(sv) != SVt_PVCV)
1030 mg_free(sv);
1031 }
1032
1033 switch (SvTYPE(sv)) {
1034 case SVt_NULL:
1035 break;
1036 case SVt_PVAV:
1037 av_clear(MUTABLE_AV(sv));
1038 break;
1039 case SVt_PVHV:
1040 hv_clear(MUTABLE_HV(sv));
1041 break;
1042 case SVt_PVCV:
1043 {
1044 HEK * const hek = CvNAME_HEK((CV *)sv);
1045 assert(hek);
1046 share_hek_hek(hek);
1047 cv_undef((CV *)sv);
1048 CvNAME_HEK_set(sv, hek);
1049 break;
1050 }
1051 default:
1052 SvOK_off(sv);
1053 break;
1054 }
1055 SvPADSTALE_on(sv); /* mark as no longer live */
1056 }
1057 else { /* Someone has a claim on this, so abandon it. */
1058 assert( SvFLAGS(sv) & SVs_PADMY);
1059 assert(!(SvFLAGS(sv) & SVs_PADTMP));
1060 switch (SvTYPE(sv)) { /* Console ourselves with a new value */
1061 case SVt_PVAV: *svp = MUTABLE_SV(newAV()); break;
1062 case SVt_PVHV: *svp = MUTABLE_SV(newHV()); break;
1063 case SVt_PVCV:
1064 {
1065 /* Create a stub */
1066 *svp = newSV_type(SVt_PVCV);
1067
1068 /* Share name */
1069 assert(CvNAMED(sv));
1070 CvNAME_HEK_set(*svp,
1071 share_hek_hek(CvNAME_HEK((CV *)sv)));
1072 break;
1073 }
1074 default: *svp = newSV(0); break;
1075 }
1076 SvREFCNT_dec_NN(sv); /* Cast current value to the winds. */
1077 /* preserve pad nature, but also mark as not live
1078 * for any closure capturing */
1079 SvFLAGS(*svp) |= (SVs_PADMY|SVs_PADSTALE);
1080 }
1081 }
1082 break;
1083 }
1084 case SAVEt_DELETE:
1085 (void)hv_delete(ARG0_HV, ARG2_PV, ARG1_I32, G_DISCARD);
1086 SvREFCNT_dec(ARG0_HV);
1087 Safefree(arg2.any_ptr);
1088 break;
1089 case SAVEt_ADELETE:
1090 (void)av_delete(ARG0_AV, ARG1_I32, G_DISCARD);
1091 SvREFCNT_dec(ARG0_AV);
1092 break;
1093 case SAVEt_DESTRUCTOR_X:
1094 (*arg1.any_dxptr)(aTHX_ ARG0_PTR);
1095 break;
1096 case SAVEt_REGCONTEXT:
1097 /* regexp must have croaked */
1098 case SAVEt_ALLOC:
1099 PL_savestack_ix -= uv >> SAVE_TIGHT_SHIFT;
1100 break;
1101 case SAVEt_STACK_POS: /* Position on Perl stack */
1102 PL_stack_sp = PL_stack_base + arg0.any_i32;
1103 break;
1104 case SAVEt_STACK_CXPOS: /* blk_oldsp on context stack */
1105 cxstack[ARG0_I32].blk_oldsp = ARG1_I32;
1106 break;
1107 case SAVEt_AELEM: /* array element */
1108 svp = av_fetch(ARG2_AV, ARG1_I32, 1);
1109 if (!AvREAL(ARG2_AV) && AvREIFY(ARG2_AV)) /* undo reify guard */
1110 SvREFCNT_dec(ARG0_SV);
1111 if (svp) {
1112 SV * const sv = *svp;
1113 if (sv && sv != &PL_sv_undef) {
1114 if (SvTIED_mg((const SV *)ARG2_AV, PERL_MAGIC_tied))
1115 SvREFCNT_inc_void_NN(sv);
1116 refsv = ARG2_SV;
1117 goto restore_sv;
1118 }
1119 }
1120 SvREFCNT_dec(ARG2_AV);
1121 SvREFCNT_dec(ARG0_SV);
1122 break;
1123 case SAVEt_HELEM: /* hash element */
1124 {
1125 HE * const he = hv_fetch_ent(ARG2_HV, ARG1_SV, 1, 0);
1126 SvREFCNT_dec(ARG1_SV);
1127 if (he) {
1128 const SV * const oval = HeVAL(he);
1129 if (oval && oval != &PL_sv_undef) {
1130 svp = &HeVAL(he);
1131 if (SvTIED_mg((const SV *)ARG2_HV, PERL_MAGIC_tied))
1132 SvREFCNT_inc_void(*svp);
1133 refsv = ARG2_SV; /* what to refcnt_dec */
1134 goto restore_sv;
1135 }
1136 }
1137 SvREFCNT_dec(ARG2_HV);
1138 SvREFCNT_dec(ARG0_SV);
1139 break;
1140 }
1141 case SAVEt_OP:
1142 PL_op = (OP*)ARG0_PTR;
1143 break;
1144 case SAVEt_HINTS:
1145 if ((PL_hints & HINT_LOCALIZE_HH)) {
1146 while (GvHV(PL_hintgv)) {
1147 HV *hv = GvHV(PL_hintgv);
1148 GvHV(PL_hintgv) = NULL;
1149 SvREFCNT_dec(MUTABLE_SV(hv));
1150 }
1151 }
1152 cophh_free(CopHINTHASH_get(&PL_compiling));
1153 CopHINTHASH_set(&PL_compiling, (COPHH*)ARG0_PTR);
1154 *(I32*)&PL_hints = ARG1_I32;
1155 if (PL_hints & HINT_LOCALIZE_HH) {
1156 SvREFCNT_dec(MUTABLE_SV(GvHV(PL_hintgv)));
1157 GvHV(PL_hintgv) = MUTABLE_HV(SSPOPPTR);
1158 }
1159 if (!GvHV(PL_hintgv)) {
1160 /* Need to add a new one manually, else rv2hv can
1161 add one via GvHVn and it won't have the magic set. */
1162 HV *const hv = newHV();
1163 hv_magic(hv, NULL, PERL_MAGIC_hints);
1164 GvHV(PL_hintgv) = hv;
1165 }
1166 assert(GvHV(PL_hintgv));
1167 break;
1168 case SAVEt_COMPPAD:
1169 PL_comppad = (PAD*)ARG0_PTR;
1170 if (PL_comppad)
1171 PL_curpad = AvARRAY(PL_comppad);
1172 else
1173 PL_curpad = NULL;
1174 break;
1175 case SAVEt_PADSV_AND_MORTALIZE:
1176 {
1177 SV **svp;
1178 assert (ARG1_PTR);
1179 svp = AvARRAY((PAD*)ARG1_PTR) + (PADOFFSET)arg0.any_uv;
1180 /* This mortalizing used to be done by POPLOOP() via itersave.
1181 But as we have all the information here, we can do it here,
1182 save even having to have itersave in the struct. */
1183 sv_2mortal(*svp);
1184 *svp = ARG2_SV;
1185 }
1186 break;
1187 case SAVEt_SAVESWITCHSTACK:
1188 {
1189 dSP;
1190 SWITCHSTACK(ARG0_AV, ARG1_AV);
1191 PL_curstackinfo->si_stack = ARG1_AV;
1192 }
1193 break;
1194 case SAVEt_SET_SVFLAGS:
1195 SvFLAGS(ARG2_SV) &= ~((U32)ARG1_I32);
1196 SvFLAGS(ARG2_SV) |= (U32)ARG0_I32;
1197 break;
1198
1199 /* These are only saved in mathoms.c */
1200 case SAVEt_NSTAB:
1201 (void)sv_clear(ARG0_SV);
1202 break;
1203 case SAVEt_LONG: /* long reference */
1204 *(long*)ARG0_PTR = arg1.any_long;
1205 break;
1206 case SAVEt_IV: /* IV reference */
1207 *(IV*)ARG0_PTR = arg1.any_iv;
1208 break;
1209
1210 case SAVEt_I16: /* I16 reference */
1211 *(I16*)ARG0_PTR = (I16)(uv >> 8);
1212 break;
1213 case SAVEt_I8: /* I8 reference */
1214 *(I8*)ARG0_PTR = (I8)(uv >> 8);
1215 break;
1216 case SAVEt_DESTRUCTOR:
1217 (*arg1.any_dptr)(ARG0_PTR);
1218 break;
1219 case SAVEt_COMPILE_WARNINGS:
1220 if (!specialWARN(PL_compiling.cop_warnings))
1221 PerlMemShared_free(PL_compiling.cop_warnings);
1222
1223 PL_compiling.cop_warnings = (STRLEN*)ARG0_PTR;
1224 break;
1225 case SAVEt_RE_STATE:
1226 {
1227 const struct re_save_state *const state
1228 = (struct re_save_state *)
1229 (PL_savestack + PL_savestack_ix
1230 - SAVESTACK_ALLOC_FOR_RE_SAVE_STATE);
1231 PL_savestack_ix -= SAVESTACK_ALLOC_FOR_RE_SAVE_STATE;
1232
1233 if (PL_reg_poscache != state->re_state_reg_poscache) {
1234 Safefree(PL_reg_poscache);
1235 }
1236 Copy(state, &PL_reg_state, 1, struct re_save_state);
1237 }
1238 break;
1239 case SAVEt_PARSER:
1240 parser_free((yy_parser *) ARG0_PTR);
1241 break;
1242 default:
1243 Perl_croak(aTHX_ "panic: leave_scope inconsistency %u", type);
1244 }
1245 }
1246
1247 TAINT_set(was);
1248
1249 PERL_ASYNC_CHECK();
1250}
1251
1252void
1253Perl_cx_dump(pTHX_ PERL_CONTEXT *cx)
1254{
1255 dVAR;
1256
1257 PERL_ARGS_ASSERT_CX_DUMP;
1258
1259#ifdef DEBUGGING
1260 PerlIO_printf(Perl_debug_log, "CX %ld = %s\n", (long)(cx - cxstack), PL_block_type[CxTYPE(cx)]);
1261 if (CxTYPE(cx) != CXt_SUBST) {
1262 const char *gimme_text;
1263 PerlIO_printf(Perl_debug_log, "BLK_OLDSP = %ld\n", (long)cx->blk_oldsp);
1264 PerlIO_printf(Perl_debug_log, "BLK_OLDCOP = 0x%"UVxf"\n",
1265 PTR2UV(cx->blk_oldcop));
1266 PerlIO_printf(Perl_debug_log, "BLK_OLDMARKSP = %ld\n", (long)cx->blk_oldmarksp);
1267 PerlIO_printf(Perl_debug_log, "BLK_OLDSCOPESP = %ld\n", (long)cx->blk_oldscopesp);
1268 PerlIO_printf(Perl_debug_log, "BLK_OLDPM = 0x%"UVxf"\n",
1269 PTR2UV(cx->blk_oldpm));
1270 switch (cx->blk_gimme) {
1271 case G_VOID:
1272 gimme_text = "VOID";
1273 break;
1274 case G_SCALAR:
1275 gimme_text = "SCALAR";
1276 break;
1277 case G_ARRAY:
1278 gimme_text = "LIST";
1279 break;
1280 default:
1281 gimme_text = "UNKNOWN";
1282 break;
1283 }
1284 PerlIO_printf(Perl_debug_log, "BLK_GIMME = %s\n", gimme_text);
1285 }
1286 switch (CxTYPE(cx)) {
1287 case CXt_NULL:
1288 case CXt_BLOCK:
1289 break;
1290 case CXt_FORMAT:
1291 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.CV = 0x%"UVxf"\n",
1292 PTR2UV(cx->blk_format.cv));
1293 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.GV = 0x%"UVxf"\n",
1294 PTR2UV(cx->blk_format.gv));
1295 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.DFOUTGV = 0x%"UVxf"\n",
1296 PTR2UV(cx->blk_format.dfoutgv));
1297 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.HASARGS = %d\n",
1298 (int)CxHASARGS(cx));
1299 PerlIO_printf(Perl_debug_log, "BLK_FORMAT.RETOP = 0x%"UVxf"\n",
1300 PTR2UV(cx->blk_format.retop));
1301 break;
1302 case CXt_SUB:
1303 PerlIO_printf(Perl_debug_log, "BLK_SUB.CV = 0x%"UVxf"\n",
1304 PTR2UV(cx->blk_sub.cv));
1305 PerlIO_printf(Perl_debug_log, "BLK_SUB.OLDDEPTH = %ld\n",
1306 (long)cx->blk_sub.olddepth);
1307 PerlIO_printf(Perl_debug_log, "BLK_SUB.HASARGS = %d\n",
1308 (int)CxHASARGS(cx));
1309 PerlIO_printf(Perl_debug_log, "BLK_SUB.LVAL = %d\n", (int)CxLVAL(cx));
1310 PerlIO_printf(Perl_debug_log, "BLK_SUB.RETOP = 0x%"UVxf"\n",
1311 PTR2UV(cx->blk_sub.retop));
1312 break;
1313 case CXt_EVAL:
1314 PerlIO_printf(Perl_debug_log, "BLK_EVAL.OLD_IN_EVAL = %ld\n",
1315 (long)CxOLD_IN_EVAL(cx));
1316 PerlIO_printf(Perl_debug_log, "BLK_EVAL.OLD_OP_TYPE = %s (%s)\n",
1317 PL_op_name[CxOLD_OP_TYPE(cx)],
1318 PL_op_desc[CxOLD_OP_TYPE(cx)]);
1319 if (cx->blk_eval.old_namesv)
1320 PerlIO_printf(Perl_debug_log, "BLK_EVAL.OLD_NAME = %s\n",
1321 SvPVX_const(cx->blk_eval.old_namesv));
1322 PerlIO_printf(Perl_debug_log, "BLK_EVAL.OLD_EVAL_ROOT = 0x%"UVxf"\n",
1323 PTR2UV(cx->blk_eval.old_eval_root));
1324 PerlIO_printf(Perl_debug_log, "BLK_EVAL.RETOP = 0x%"UVxf"\n",
1325 PTR2UV(cx->blk_eval.retop));
1326 break;
1327
1328 case CXt_LOOP_LAZYIV:
1329 case CXt_LOOP_LAZYSV:
1330 case CXt_LOOP_FOR:
1331 case CXt_LOOP_PLAIN:
1332 PerlIO_printf(Perl_debug_log, "BLK_LOOP.LABEL = %s\n", CxLABEL(cx));
1333 PerlIO_printf(Perl_debug_log, "BLK_LOOP.RESETSP = %ld\n",
1334 (long)cx->blk_loop.resetsp);
1335 PerlIO_printf(Perl_debug_log, "BLK_LOOP.MY_OP = 0x%"UVxf"\n",
1336 PTR2UV(cx->blk_loop.my_op));
1337 /* XXX: not accurate for LAZYSV/IV */
1338 PerlIO_printf(Perl_debug_log, "BLK_LOOP.ITERARY = 0x%"UVxf"\n",
1339 PTR2UV(cx->blk_loop.state_u.ary.ary));
1340 PerlIO_printf(Perl_debug_log, "BLK_LOOP.ITERIX = %ld\n",
1341 (long)cx->blk_loop.state_u.ary.ix);
1342 PerlIO_printf(Perl_debug_log, "BLK_LOOP.ITERVAR = 0x%"UVxf"\n",
1343 PTR2UV(CxITERVAR(cx)));
1344 break;
1345
1346 case CXt_SUBST:
1347 PerlIO_printf(Perl_debug_log, "SB_ITERS = %ld\n",
1348 (long)cx->sb_iters);
1349 PerlIO_printf(Perl_debug_log, "SB_MAXITERS = %ld\n",
1350 (long)cx->sb_maxiters);
1351 PerlIO_printf(Perl_debug_log, "SB_RFLAGS = %ld\n",
1352 (long)cx->sb_rflags);
1353 PerlIO_printf(Perl_debug_log, "SB_ONCE = %ld\n",
1354 (long)CxONCE(cx));
1355 PerlIO_printf(Perl_debug_log, "SB_ORIG = %s\n",
1356 cx->sb_orig);
1357 PerlIO_printf(Perl_debug_log, "SB_DSTR = 0x%"UVxf"\n",
1358 PTR2UV(cx->sb_dstr));
1359 PerlIO_printf(Perl_debug_log, "SB_TARG = 0x%"UVxf"\n",
1360 PTR2UV(cx->sb_targ));
1361 PerlIO_printf(Perl_debug_log, "SB_S = 0x%"UVxf"\n",
1362 PTR2UV(cx->sb_s));
1363 PerlIO_printf(Perl_debug_log, "SB_M = 0x%"UVxf"\n",
1364 PTR2UV(cx->sb_m));
1365 PerlIO_printf(Perl_debug_log, "SB_STREND = 0x%"UVxf"\n",
1366 PTR2UV(cx->sb_strend));
1367 PerlIO_printf(Perl_debug_log, "SB_RXRES = 0x%"UVxf"\n",
1368 PTR2UV(cx->sb_rxres));
1369 break;
1370 }
1371#else
1372 PERL_UNUSED_CONTEXT;
1373 PERL_UNUSED_ARG(cx);
1374#endif /* DEBUGGING */
1375}
1376
1377/*
1378 * Local variables:
1379 * c-indentation-style: bsd
1380 * c-basic-offset: 4
1381 * indent-tabs-mode: nil
1382 * End:
1383 *
1384 * ex: set ts=8 sts=4 sw=4 et:
1385 */