This is a live mirror of the Perl 5 development currently hosted at https://github.com/perl/perl5
integrate changes#6376..6378,6380,6383,6385..6388,6391
[perl5.git] / sv.c
... / ...
CommitLineData
1/* sv.c
2 *
3 * Copyright (c) 1991-2000, Larry Wall
4 *
5 * You may distribute under the terms of either the GNU General Public
6 * License or the Artistic License, as specified in the README file.
7 *
8 */
9
10/*
11 * "I wonder what the Entish is for 'yes' and 'no'," he thought.
12 */
13
14#include "EXTERN.h"
15#define PERL_IN_SV_C
16#include "perl.h"
17
18#define FCALL *f
19#define SV_CHECK_THINKFIRST(sv) if (SvTHINKFIRST(sv)) sv_force_normal(sv)
20
21static void do_report_used(pTHXo_ SV *sv);
22static void do_clean_objs(pTHXo_ SV *sv);
23#ifndef DISABLE_DESTRUCTOR_KLUDGE
24static void do_clean_named_objs(pTHXo_ SV *sv);
25#endif
26static void do_clean_all(pTHXo_ SV *sv);
27
28/*
29 * "A time to plant, and a time to uproot what was planted..."
30 */
31
32#define plant_SV(p) \
33 STMT_START { \
34 SvANY(p) = (void *)PL_sv_root; \
35 SvFLAGS(p) = SVTYPEMASK; \
36 PL_sv_root = (p); \
37 --PL_sv_count; \
38 } STMT_END
39
40/* sv_mutex must be held while calling uproot_SV() */
41#define uproot_SV(p) \
42 STMT_START { \
43 (p) = PL_sv_root; \
44 PL_sv_root = (SV*)SvANY(p); \
45 ++PL_sv_count; \
46 } STMT_END
47
48#define new_SV(p) \
49 STMT_START { \
50 LOCK_SV_MUTEX; \
51 if (PL_sv_root) \
52 uproot_SV(p); \
53 else \
54 (p) = more_sv(); \
55 UNLOCK_SV_MUTEX; \
56 SvANY(p) = 0; \
57 SvREFCNT(p) = 1; \
58 SvFLAGS(p) = 0; \
59 } STMT_END
60
61#ifdef DEBUGGING
62
63#define del_SV(p) \
64 STMT_START { \
65 LOCK_SV_MUTEX; \
66 if (PL_debug & 32768) \
67 del_sv(p); \
68 else \
69 plant_SV(p); \
70 UNLOCK_SV_MUTEX; \
71 } STMT_END
72
73STATIC void
74S_del_sv(pTHX_ SV *p)
75{
76 if (PL_debug & 32768) {
77 SV* sva;
78 SV* sv;
79 SV* svend;
80 int ok = 0;
81 for (sva = PL_sv_arenaroot; sva; sva = (SV *) SvANY(sva)) {
82 sv = sva + 1;
83 svend = &sva[SvREFCNT(sva)];
84 if (p >= sv && p < svend)
85 ok = 1;
86 }
87 if (!ok) {
88 if (ckWARN_d(WARN_INTERNAL))
89 Perl_warner(aTHX_ WARN_INTERNAL,
90 "Attempt to free non-arena SV: 0x%"UVxf,
91 PTR2UV(p));
92 return;
93 }
94 }
95 plant_SV(p);
96}
97
98#else /* ! DEBUGGING */
99
100#define del_SV(p) plant_SV(p)
101
102#endif /* DEBUGGING */
103
104void
105Perl_sv_add_arena(pTHX_ char *ptr, U32 size, U32 flags)
106{
107 SV* sva = (SV*)ptr;
108 register SV* sv;
109 register SV* svend;
110 Zero(ptr, size, char);
111
112 /* The first SV in an arena isn't an SV. */
113 SvANY(sva) = (void *) PL_sv_arenaroot; /* ptr to next arena */
114 SvREFCNT(sva) = size / sizeof(SV); /* number of SV slots */
115 SvFLAGS(sva) = flags; /* FAKE if not to be freed */
116
117 PL_sv_arenaroot = sva;
118 PL_sv_root = sva + 1;
119
120 svend = &sva[SvREFCNT(sva) - 1];
121 sv = sva + 1;
122 while (sv < svend) {
123 SvANY(sv) = (void *)(SV*)(sv + 1);
124 SvFLAGS(sv) = SVTYPEMASK;
125 sv++;
126 }
127 SvANY(sv) = 0;
128 SvFLAGS(sv) = SVTYPEMASK;
129}
130
131/* sv_mutex must be held while calling more_sv() */
132STATIC SV*
133S_more_sv(pTHX)
134{
135 register SV* sv;
136
137 if (PL_nice_chunk) {
138 sv_add_arena(PL_nice_chunk, PL_nice_chunk_size, 0);
139 PL_nice_chunk = Nullch;
140 }
141 else {
142 char *chunk; /* must use New here to match call to */
143 New(704,chunk,1008,char); /* Safefree() in sv_free_arenas() */
144 sv_add_arena(chunk, 1008, 0);
145 }
146 uproot_SV(sv);
147 return sv;
148}
149
150STATIC void
151S_visit(pTHX_ SVFUNC_t f)
152{
153 SV* sva;
154 SV* sv;
155 register SV* svend;
156
157 for (sva = PL_sv_arenaroot; sva; sva = (SV*)SvANY(sva)) {
158 svend = &sva[SvREFCNT(sva)];
159 for (sv = sva + 1; sv < svend; ++sv) {
160 if (SvTYPE(sv) != SVTYPEMASK)
161 (FCALL)(aTHXo_ sv);
162 }
163 }
164}
165
166void
167Perl_sv_report_used(pTHX)
168{
169 visit(do_report_used);
170}
171
172void
173Perl_sv_clean_objs(pTHX)
174{
175 PL_in_clean_objs = TRUE;
176 visit(do_clean_objs);
177#ifndef DISABLE_DESTRUCTOR_KLUDGE
178 /* some barnacles may yet remain, clinging to typeglobs */
179 visit(do_clean_named_objs);
180#endif
181 PL_in_clean_objs = FALSE;
182}
183
184void
185Perl_sv_clean_all(pTHX)
186{
187 PL_in_clean_all = TRUE;
188 visit(do_clean_all);
189 PL_in_clean_all = FALSE;
190}
191
192void
193Perl_sv_free_arenas(pTHX)
194{
195 SV* sva;
196 SV* svanext;
197 XPV *arena, *arenanext;
198
199 /* Free arenas here, but be careful about fake ones. (We assume
200 contiguity of the fake ones with the corresponding real ones.) */
201
202 for (sva = PL_sv_arenaroot; sva; sva = svanext) {
203 svanext = (SV*) SvANY(sva);
204 while (svanext && SvFAKE(svanext))
205 svanext = (SV*) SvANY(svanext);
206
207 if (!SvFAKE(sva))
208 Safefree((void *)sva);
209 }
210
211 for (arena = PL_xiv_arenaroot; arena; arena = arenanext) {
212 arenanext = (XPV*)arena->xpv_pv;
213 Safefree(arena);
214 }
215 PL_xiv_arenaroot = 0;
216
217 for (arena = PL_xnv_arenaroot; arena; arena = arenanext) {
218 arenanext = (XPV*)arena->xpv_pv;
219 Safefree(arena);
220 }
221 PL_xnv_arenaroot = 0;
222
223 for (arena = PL_xrv_arenaroot; arena; arena = arenanext) {
224 arenanext = (XPV*)arena->xpv_pv;
225 Safefree(arena);
226 }
227 PL_xrv_arenaroot = 0;
228
229 for (arena = PL_xpv_arenaroot; arena; arena = arenanext) {
230 arenanext = (XPV*)arena->xpv_pv;
231 Safefree(arena);
232 }
233 PL_xpv_arenaroot = 0;
234
235 for (arena = (XPV*)PL_xpviv_arenaroot; arena; arena = arenanext) {
236 arenanext = (XPV*)arena->xpv_pv;
237 Safefree(arena);
238 }
239 PL_xpviv_arenaroot = 0;
240
241 for (arena = (XPV*)PL_xpvnv_arenaroot; arena; arena = arenanext) {
242 arenanext = (XPV*)arena->xpv_pv;
243 Safefree(arena);
244 }
245 PL_xpvnv_arenaroot = 0;
246
247 for (arena = (XPV*)PL_xpvcv_arenaroot; arena; arena = arenanext) {
248 arenanext = (XPV*)arena->xpv_pv;
249 Safefree(arena);
250 }
251 PL_xpvcv_arenaroot = 0;
252
253 for (arena = (XPV*)PL_xpvav_arenaroot; arena; arena = arenanext) {
254 arenanext = (XPV*)arena->xpv_pv;
255 Safefree(arena);
256 }
257 PL_xpvav_arenaroot = 0;
258
259 for (arena = (XPV*)PL_xpvhv_arenaroot; arena; arena = arenanext) {
260 arenanext = (XPV*)arena->xpv_pv;
261 Safefree(arena);
262 }
263 PL_xpvhv_arenaroot = 0;
264
265 for (arena = (XPV*)PL_xpvmg_arenaroot; arena; arena = arenanext) {
266 arenanext = (XPV*)arena->xpv_pv;
267 Safefree(arena);
268 }
269 PL_xpvmg_arenaroot = 0;
270
271 for (arena = (XPV*)PL_xpvlv_arenaroot; arena; arena = arenanext) {
272 arenanext = (XPV*)arena->xpv_pv;
273 Safefree(arena);
274 }
275 PL_xpvlv_arenaroot = 0;
276
277 for (arena = (XPV*)PL_xpvbm_arenaroot; arena; arena = arenanext) {
278 arenanext = (XPV*)arena->xpv_pv;
279 Safefree(arena);
280 }
281 PL_xpvbm_arenaroot = 0;
282
283 for (arena = (XPV*)PL_he_arenaroot; arena; arena = arenanext) {
284 arenanext = (XPV*)arena->xpv_pv;
285 Safefree(arena);
286 }
287 PL_he_arenaroot = 0;
288
289 if (PL_nice_chunk)
290 Safefree(PL_nice_chunk);
291 PL_nice_chunk = Nullch;
292 PL_nice_chunk_size = 0;
293 PL_sv_arenaroot = 0;
294 PL_sv_root = 0;
295}
296
297void
298Perl_report_uninit(pTHX)
299{
300 if (PL_op)
301 Perl_warner(aTHX_ WARN_UNINITIALIZED, PL_warn_uninit,
302 " in ", PL_op_desc[PL_op->op_type]);
303 else
304 Perl_warner(aTHX_ WARN_UNINITIALIZED, PL_warn_uninit, "", "");
305}
306
307STATIC XPVIV*
308S_new_xiv(pTHX)
309{
310 IV* xiv;
311 LOCK_SV_MUTEX;
312 if (!PL_xiv_root)
313 more_xiv();
314 xiv = PL_xiv_root;
315 /*
316 * See comment in more_xiv() -- RAM.
317 */
318 PL_xiv_root = *(IV**)xiv;
319 UNLOCK_SV_MUTEX;
320 return (XPVIV*)((char*)xiv - STRUCT_OFFSET(XPVIV, xiv_iv));
321}
322
323STATIC void
324S_del_xiv(pTHX_ XPVIV *p)
325{
326 IV* xiv = (IV*)((char*)(p) + STRUCT_OFFSET(XPVIV, xiv_iv));
327 LOCK_SV_MUTEX;
328 *(IV**)xiv = PL_xiv_root;
329 PL_xiv_root = xiv;
330 UNLOCK_SV_MUTEX;
331}
332
333STATIC void
334S_more_xiv(pTHX)
335{
336 register IV* xiv;
337 register IV* xivend;
338 XPV* ptr;
339 New(705, ptr, 1008/sizeof(XPV), XPV);
340 ptr->xpv_pv = (char*)PL_xiv_arenaroot; /* linked list of xiv arenas */
341 PL_xiv_arenaroot = ptr; /* to keep Purify happy */
342
343 xiv = (IV*) ptr;
344 xivend = &xiv[1008 / sizeof(IV) - 1];
345 xiv += (sizeof(XPV) - 1) / sizeof(IV) + 1; /* fudge by size of XPV */
346 PL_xiv_root = xiv;
347 while (xiv < xivend) {
348 *(IV**)xiv = (IV *)(xiv + 1);
349 xiv++;
350 }
351 *(IV**)xiv = 0;
352}
353
354STATIC XPVNV*
355S_new_xnv(pTHX)
356{
357 NV* xnv;
358 LOCK_SV_MUTEX;
359 if (!PL_xnv_root)
360 more_xnv();
361 xnv = PL_xnv_root;
362 PL_xnv_root = *(NV**)xnv;
363 UNLOCK_SV_MUTEX;
364 return (XPVNV*)((char*)xnv - STRUCT_OFFSET(XPVNV, xnv_nv));
365}
366
367STATIC void
368S_del_xnv(pTHX_ XPVNV *p)
369{
370 NV* xnv = (NV*)((char*)(p) + STRUCT_OFFSET(XPVNV, xnv_nv));
371 LOCK_SV_MUTEX;
372 *(NV**)xnv = PL_xnv_root;
373 PL_xnv_root = xnv;
374 UNLOCK_SV_MUTEX;
375}
376
377STATIC void
378S_more_xnv(pTHX)
379{
380 register NV* xnv;
381 register NV* xnvend;
382 XPV *ptr;
383 New(711, ptr, 1008/sizeof(XPV), XPV);
384 ptr->xpv_pv = (char*)PL_xnv_arenaroot;
385 PL_xnv_arenaroot = ptr;
386
387 xnv = (NV*) ptr;
388 xnvend = &xnv[1008 / sizeof(NV) - 1];
389 xnv += (sizeof(XPVIV) - 1) / sizeof(NV) + 1; /* fudge by sizeof XPVIV */
390 PL_xnv_root = xnv;
391 while (xnv < xnvend) {
392 *(NV**)xnv = (NV*)(xnv + 1);
393 xnv++;
394 }
395 *(NV**)xnv = 0;
396}
397
398STATIC XRV*
399S_new_xrv(pTHX)
400{
401 XRV* xrv;
402 LOCK_SV_MUTEX;
403 if (!PL_xrv_root)
404 more_xrv();
405 xrv = PL_xrv_root;
406 PL_xrv_root = (XRV*)xrv->xrv_rv;
407 UNLOCK_SV_MUTEX;
408 return xrv;
409}
410
411STATIC void
412S_del_xrv(pTHX_ XRV *p)
413{
414 LOCK_SV_MUTEX;
415 p->xrv_rv = (SV*)PL_xrv_root;
416 PL_xrv_root = p;
417 UNLOCK_SV_MUTEX;
418}
419
420STATIC void
421S_more_xrv(pTHX)
422{
423 register XRV* xrv;
424 register XRV* xrvend;
425 XPV *ptr;
426 New(712, ptr, 1008/sizeof(XPV), XPV);
427 ptr->xpv_pv = (char*)PL_xrv_arenaroot;
428 PL_xrv_arenaroot = ptr;
429
430 xrv = (XRV*) ptr;
431 xrvend = &xrv[1008 / sizeof(XRV) - 1];
432 xrv += (sizeof(XPV) - 1) / sizeof(XRV) + 1;
433 PL_xrv_root = xrv;
434 while (xrv < xrvend) {
435 xrv->xrv_rv = (SV*)(xrv + 1);
436 xrv++;
437 }
438 xrv->xrv_rv = 0;
439}
440
441STATIC XPV*
442S_new_xpv(pTHX)
443{
444 XPV* xpv;
445 LOCK_SV_MUTEX;
446 if (!PL_xpv_root)
447 more_xpv();
448 xpv = PL_xpv_root;
449 PL_xpv_root = (XPV*)xpv->xpv_pv;
450 UNLOCK_SV_MUTEX;
451 return xpv;
452}
453
454STATIC void
455S_del_xpv(pTHX_ XPV *p)
456{
457 LOCK_SV_MUTEX;
458 p->xpv_pv = (char*)PL_xpv_root;
459 PL_xpv_root = p;
460 UNLOCK_SV_MUTEX;
461}
462
463STATIC void
464S_more_xpv(pTHX)
465{
466 register XPV* xpv;
467 register XPV* xpvend;
468 New(713, xpv, 1008/sizeof(XPV), XPV);
469 xpv->xpv_pv = (char*)PL_xpv_arenaroot;
470 PL_xpv_arenaroot = xpv;
471
472 xpvend = &xpv[1008 / sizeof(XPV) - 1];
473 PL_xpv_root = ++xpv;
474 while (xpv < xpvend) {
475 xpv->xpv_pv = (char*)(xpv + 1);
476 xpv++;
477 }
478 xpv->xpv_pv = 0;
479}
480
481STATIC XPVIV*
482S_new_xpviv(pTHX)
483{
484 XPVIV* xpviv;
485 LOCK_SV_MUTEX;
486 if (!PL_xpviv_root)
487 more_xpviv();
488 xpviv = PL_xpviv_root;
489 PL_xpviv_root = (XPVIV*)xpviv->xpv_pv;
490 UNLOCK_SV_MUTEX;
491 return xpviv;
492}
493
494STATIC void
495S_del_xpviv(pTHX_ XPVIV *p)
496{
497 LOCK_SV_MUTEX;
498 p->xpv_pv = (char*)PL_xpviv_root;
499 PL_xpviv_root = p;
500 UNLOCK_SV_MUTEX;
501}
502
503STATIC void
504S_more_xpviv(pTHX)
505{
506 register XPVIV* xpviv;
507 register XPVIV* xpvivend;
508 New(714, xpviv, 1008/sizeof(XPVIV), XPVIV);
509 xpviv->xpv_pv = (char*)PL_xpviv_arenaroot;
510 PL_xpviv_arenaroot = xpviv;
511
512 xpvivend = &xpviv[1008 / sizeof(XPVIV) - 1];
513 PL_xpviv_root = ++xpviv;
514 while (xpviv < xpvivend) {
515 xpviv->xpv_pv = (char*)(xpviv + 1);
516 xpviv++;
517 }
518 xpviv->xpv_pv = 0;
519}
520
521STATIC XPVNV*
522S_new_xpvnv(pTHX)
523{
524 XPVNV* xpvnv;
525 LOCK_SV_MUTEX;
526 if (!PL_xpvnv_root)
527 more_xpvnv();
528 xpvnv = PL_xpvnv_root;
529 PL_xpvnv_root = (XPVNV*)xpvnv->xpv_pv;
530 UNLOCK_SV_MUTEX;
531 return xpvnv;
532}
533
534STATIC void
535S_del_xpvnv(pTHX_ XPVNV *p)
536{
537 LOCK_SV_MUTEX;
538 p->xpv_pv = (char*)PL_xpvnv_root;
539 PL_xpvnv_root = p;
540 UNLOCK_SV_MUTEX;
541}
542
543STATIC void
544S_more_xpvnv(pTHX)
545{
546 register XPVNV* xpvnv;
547 register XPVNV* xpvnvend;
548 New(715, xpvnv, 1008/sizeof(XPVNV), XPVNV);
549 xpvnv->xpv_pv = (char*)PL_xpvnv_arenaroot;
550 PL_xpvnv_arenaroot = xpvnv;
551
552 xpvnvend = &xpvnv[1008 / sizeof(XPVNV) - 1];
553 PL_xpvnv_root = ++xpvnv;
554 while (xpvnv < xpvnvend) {
555 xpvnv->xpv_pv = (char*)(xpvnv + 1);
556 xpvnv++;
557 }
558 xpvnv->xpv_pv = 0;
559}
560
561STATIC XPVCV*
562S_new_xpvcv(pTHX)
563{
564 XPVCV* xpvcv;
565 LOCK_SV_MUTEX;
566 if (!PL_xpvcv_root)
567 more_xpvcv();
568 xpvcv = PL_xpvcv_root;
569 PL_xpvcv_root = (XPVCV*)xpvcv->xpv_pv;
570 UNLOCK_SV_MUTEX;
571 return xpvcv;
572}
573
574STATIC void
575S_del_xpvcv(pTHX_ XPVCV *p)
576{
577 LOCK_SV_MUTEX;
578 p->xpv_pv = (char*)PL_xpvcv_root;
579 PL_xpvcv_root = p;
580 UNLOCK_SV_MUTEX;
581}
582
583STATIC void
584S_more_xpvcv(pTHX)
585{
586 register XPVCV* xpvcv;
587 register XPVCV* xpvcvend;
588 New(716, xpvcv, 1008/sizeof(XPVCV), XPVCV);
589 xpvcv->xpv_pv = (char*)PL_xpvcv_arenaroot;
590 PL_xpvcv_arenaroot = xpvcv;
591
592 xpvcvend = &xpvcv[1008 / sizeof(XPVCV) - 1];
593 PL_xpvcv_root = ++xpvcv;
594 while (xpvcv < xpvcvend) {
595 xpvcv->xpv_pv = (char*)(xpvcv + 1);
596 xpvcv++;
597 }
598 xpvcv->xpv_pv = 0;
599}
600
601STATIC XPVAV*
602S_new_xpvav(pTHX)
603{
604 XPVAV* xpvav;
605 LOCK_SV_MUTEX;
606 if (!PL_xpvav_root)
607 more_xpvav();
608 xpvav = PL_xpvav_root;
609 PL_xpvav_root = (XPVAV*)xpvav->xav_array;
610 UNLOCK_SV_MUTEX;
611 return xpvav;
612}
613
614STATIC void
615S_del_xpvav(pTHX_ XPVAV *p)
616{
617 LOCK_SV_MUTEX;
618 p->xav_array = (char*)PL_xpvav_root;
619 PL_xpvav_root = p;
620 UNLOCK_SV_MUTEX;
621}
622
623STATIC void
624S_more_xpvav(pTHX)
625{
626 register XPVAV* xpvav;
627 register XPVAV* xpvavend;
628 New(717, xpvav, 1008/sizeof(XPVAV), XPVAV);
629 xpvav->xav_array = (char*)PL_xpvav_arenaroot;
630 PL_xpvav_arenaroot = xpvav;
631
632 xpvavend = &xpvav[1008 / sizeof(XPVAV) - 1];
633 PL_xpvav_root = ++xpvav;
634 while (xpvav < xpvavend) {
635 xpvav->xav_array = (char*)(xpvav + 1);
636 xpvav++;
637 }
638 xpvav->xav_array = 0;
639}
640
641STATIC XPVHV*
642S_new_xpvhv(pTHX)
643{
644 XPVHV* xpvhv;
645 LOCK_SV_MUTEX;
646 if (!PL_xpvhv_root)
647 more_xpvhv();
648 xpvhv = PL_xpvhv_root;
649 PL_xpvhv_root = (XPVHV*)xpvhv->xhv_array;
650 UNLOCK_SV_MUTEX;
651 return xpvhv;
652}
653
654STATIC void
655S_del_xpvhv(pTHX_ XPVHV *p)
656{
657 LOCK_SV_MUTEX;
658 p->xhv_array = (char*)PL_xpvhv_root;
659 PL_xpvhv_root = p;
660 UNLOCK_SV_MUTEX;
661}
662
663STATIC void
664S_more_xpvhv(pTHX)
665{
666 register XPVHV* xpvhv;
667 register XPVHV* xpvhvend;
668 New(718, xpvhv, 1008/sizeof(XPVHV), XPVHV);
669 xpvhv->xhv_array = (char*)PL_xpvhv_arenaroot;
670 PL_xpvhv_arenaroot = xpvhv;
671
672 xpvhvend = &xpvhv[1008 / sizeof(XPVHV) - 1];
673 PL_xpvhv_root = ++xpvhv;
674 while (xpvhv < xpvhvend) {
675 xpvhv->xhv_array = (char*)(xpvhv + 1);
676 xpvhv++;
677 }
678 xpvhv->xhv_array = 0;
679}
680
681STATIC XPVMG*
682S_new_xpvmg(pTHX)
683{
684 XPVMG* xpvmg;
685 LOCK_SV_MUTEX;
686 if (!PL_xpvmg_root)
687 more_xpvmg();
688 xpvmg = PL_xpvmg_root;
689 PL_xpvmg_root = (XPVMG*)xpvmg->xpv_pv;
690 UNLOCK_SV_MUTEX;
691 return xpvmg;
692}
693
694STATIC void
695S_del_xpvmg(pTHX_ XPVMG *p)
696{
697 LOCK_SV_MUTEX;
698 p->xpv_pv = (char*)PL_xpvmg_root;
699 PL_xpvmg_root = p;
700 UNLOCK_SV_MUTEX;
701}
702
703STATIC void
704S_more_xpvmg(pTHX)
705{
706 register XPVMG* xpvmg;
707 register XPVMG* xpvmgend;
708 New(719, xpvmg, 1008/sizeof(XPVMG), XPVMG);
709 xpvmg->xpv_pv = (char*)PL_xpvmg_arenaroot;
710 PL_xpvmg_arenaroot = xpvmg;
711
712 xpvmgend = &xpvmg[1008 / sizeof(XPVMG) - 1];
713 PL_xpvmg_root = ++xpvmg;
714 while (xpvmg < xpvmgend) {
715 xpvmg->xpv_pv = (char*)(xpvmg + 1);
716 xpvmg++;
717 }
718 xpvmg->xpv_pv = 0;
719}
720
721STATIC XPVLV*
722S_new_xpvlv(pTHX)
723{
724 XPVLV* xpvlv;
725 LOCK_SV_MUTEX;
726 if (!PL_xpvlv_root)
727 more_xpvlv();
728 xpvlv = PL_xpvlv_root;
729 PL_xpvlv_root = (XPVLV*)xpvlv->xpv_pv;
730 UNLOCK_SV_MUTEX;
731 return xpvlv;
732}
733
734STATIC void
735S_del_xpvlv(pTHX_ XPVLV *p)
736{
737 LOCK_SV_MUTEX;
738 p->xpv_pv = (char*)PL_xpvlv_root;
739 PL_xpvlv_root = p;
740 UNLOCK_SV_MUTEX;
741}
742
743STATIC void
744S_more_xpvlv(pTHX)
745{
746 register XPVLV* xpvlv;
747 register XPVLV* xpvlvend;
748 New(720, xpvlv, 1008/sizeof(XPVLV), XPVLV);
749 xpvlv->xpv_pv = (char*)PL_xpvlv_arenaroot;
750 PL_xpvlv_arenaroot = xpvlv;
751
752 xpvlvend = &xpvlv[1008 / sizeof(XPVLV) - 1];
753 PL_xpvlv_root = ++xpvlv;
754 while (xpvlv < xpvlvend) {
755 xpvlv->xpv_pv = (char*)(xpvlv + 1);
756 xpvlv++;
757 }
758 xpvlv->xpv_pv = 0;
759}
760
761STATIC XPVBM*
762S_new_xpvbm(pTHX)
763{
764 XPVBM* xpvbm;
765 LOCK_SV_MUTEX;
766 if (!PL_xpvbm_root)
767 more_xpvbm();
768 xpvbm = PL_xpvbm_root;
769 PL_xpvbm_root = (XPVBM*)xpvbm->xpv_pv;
770 UNLOCK_SV_MUTEX;
771 return xpvbm;
772}
773
774STATIC void
775S_del_xpvbm(pTHX_ XPVBM *p)
776{
777 LOCK_SV_MUTEX;
778 p->xpv_pv = (char*)PL_xpvbm_root;
779 PL_xpvbm_root = p;
780 UNLOCK_SV_MUTEX;
781}
782
783STATIC void
784S_more_xpvbm(pTHX)
785{
786 register XPVBM* xpvbm;
787 register XPVBM* xpvbmend;
788 New(721, xpvbm, 1008/sizeof(XPVBM), XPVBM);
789 xpvbm->xpv_pv = (char*)PL_xpvbm_arenaroot;
790 PL_xpvbm_arenaroot = xpvbm;
791
792 xpvbmend = &xpvbm[1008 / sizeof(XPVBM) - 1];
793 PL_xpvbm_root = ++xpvbm;
794 while (xpvbm < xpvbmend) {
795 xpvbm->xpv_pv = (char*)(xpvbm + 1);
796 xpvbm++;
797 }
798 xpvbm->xpv_pv = 0;
799}
800
801#ifdef LEAKTEST
802# define my_safemalloc(s) (void*)safexmalloc(717,s)
803# define my_safefree(p) safexfree((char*)p)
804#else
805# define my_safemalloc(s) (void*)safemalloc(s)
806# define my_safefree(p) safefree((char*)p)
807#endif
808
809#ifdef PURIFY
810
811#define new_XIV() my_safemalloc(sizeof(XPVIV))
812#define del_XIV(p) my_safefree(p)
813
814#define new_XNV() my_safemalloc(sizeof(XPVNV))
815#define del_XNV(p) my_safefree(p)
816
817#define new_XRV() my_safemalloc(sizeof(XRV))
818#define del_XRV(p) my_safefree(p)
819
820#define new_XPV() my_safemalloc(sizeof(XPV))
821#define del_XPV(p) my_safefree(p)
822
823#define new_XPVIV() my_safemalloc(sizeof(XPVIV))
824#define del_XPVIV(p) my_safefree(p)
825
826#define new_XPVNV() my_safemalloc(sizeof(XPVNV))
827#define del_XPVNV(p) my_safefree(p)
828
829#define new_XPVCV() my_safemalloc(sizeof(XPVCV))
830#define del_XPVCV(p) my_safefree(p)
831
832#define new_XPVAV() my_safemalloc(sizeof(XPVAV))
833#define del_XPVAV(p) my_safefree(p)
834
835#define new_XPVHV() my_safemalloc(sizeof(XPVHV))
836#define del_XPVHV(p) my_safefree(p)
837
838#define new_XPVMG() my_safemalloc(sizeof(XPVMG))
839#define del_XPVMG(p) my_safefree(p)
840
841#define new_XPVLV() my_safemalloc(sizeof(XPVLV))
842#define del_XPVLV(p) my_safefree(p)
843
844#define new_XPVBM() my_safemalloc(sizeof(XPVBM))
845#define del_XPVBM(p) my_safefree(p)
846
847#else /* !PURIFY */
848
849#define new_XIV() (void*)new_xiv()
850#define del_XIV(p) del_xiv((XPVIV*) p)
851
852#define new_XNV() (void*)new_xnv()
853#define del_XNV(p) del_xnv((XPVNV*) p)
854
855#define new_XRV() (void*)new_xrv()
856#define del_XRV(p) del_xrv((XRV*) p)
857
858#define new_XPV() (void*)new_xpv()
859#define del_XPV(p) del_xpv((XPV *)p)
860
861#define new_XPVIV() (void*)new_xpviv()
862#define del_XPVIV(p) del_xpviv((XPVIV *)p)
863
864#define new_XPVNV() (void*)new_xpvnv()
865#define del_XPVNV(p) del_xpvnv((XPVNV *)p)
866
867#define new_XPVCV() (void*)new_xpvcv()
868#define del_XPVCV(p) del_xpvcv((XPVCV *)p)
869
870#define new_XPVAV() (void*)new_xpvav()
871#define del_XPVAV(p) del_xpvav((XPVAV *)p)
872
873#define new_XPVHV() (void*)new_xpvhv()
874#define del_XPVHV(p) del_xpvhv((XPVHV *)p)
875
876#define new_XPVMG() (void*)new_xpvmg()
877#define del_XPVMG(p) del_xpvmg((XPVMG *)p)
878
879#define new_XPVLV() (void*)new_xpvlv()
880#define del_XPVLV(p) del_xpvlv((XPVLV *)p)
881
882#define new_XPVBM() (void*)new_xpvbm()
883#define del_XPVBM(p) del_xpvbm((XPVBM *)p)
884
885#endif /* PURIFY */
886
887#define new_XPVGV() my_safemalloc(sizeof(XPVGV))
888#define del_XPVGV(p) my_safefree(p)
889
890#define new_XPVFM() my_safemalloc(sizeof(XPVFM))
891#define del_XPVFM(p) my_safefree(p)
892
893#define new_XPVIO() my_safemalloc(sizeof(XPVIO))
894#define del_XPVIO(p) my_safefree(p)
895
896/*
897=for apidoc sv_upgrade
898
899Upgrade an SV to a more complex form. Use C<SvUPGRADE>. See
900C<svtype>.
901
902=cut
903*/
904
905bool
906Perl_sv_upgrade(pTHX_ register SV *sv, U32 mt)
907{
908 char* pv;
909 U32 cur;
910 U32 len;
911 IV iv;
912 NV nv;
913 MAGIC* magic;
914 HV* stash;
915
916 if (SvTYPE(sv) == mt)
917 return TRUE;
918
919 if (mt < SVt_PVIV)
920 (void)SvOOK_off(sv);
921
922 switch (SvTYPE(sv)) {
923 case SVt_NULL:
924 pv = 0;
925 cur = 0;
926 len = 0;
927 iv = 0;
928 nv = 0.0;
929 magic = 0;
930 stash = 0;
931 break;
932 case SVt_IV:
933 pv = 0;
934 cur = 0;
935 len = 0;
936 iv = SvIVX(sv);
937 nv = (NV)SvIVX(sv);
938 del_XIV(SvANY(sv));
939 magic = 0;
940 stash = 0;
941 if (mt == SVt_NV)
942 mt = SVt_PVNV;
943 else if (mt < SVt_PVIV)
944 mt = SVt_PVIV;
945 break;
946 case SVt_NV:
947 pv = 0;
948 cur = 0;
949 len = 0;
950 nv = SvNVX(sv);
951 iv = I_V(nv);
952 magic = 0;
953 stash = 0;
954 del_XNV(SvANY(sv));
955 SvANY(sv) = 0;
956 if (mt < SVt_PVNV)
957 mt = SVt_PVNV;
958 break;
959 case SVt_RV:
960 pv = (char*)SvRV(sv);
961 cur = 0;
962 len = 0;
963 iv = PTR2IV(pv);
964 nv = PTR2NV(pv);
965 del_XRV(SvANY(sv));
966 magic = 0;
967 stash = 0;
968 break;
969 case SVt_PV:
970 pv = SvPVX(sv);
971 cur = SvCUR(sv);
972 len = SvLEN(sv);
973 iv = 0;
974 nv = 0.0;
975 magic = 0;
976 stash = 0;
977 del_XPV(SvANY(sv));
978 if (mt <= SVt_IV)
979 mt = SVt_PVIV;
980 else if (mt == SVt_NV)
981 mt = SVt_PVNV;
982 break;
983 case SVt_PVIV:
984 pv = SvPVX(sv);
985 cur = SvCUR(sv);
986 len = SvLEN(sv);
987 iv = SvIVX(sv);
988 nv = 0.0;
989 magic = 0;
990 stash = 0;
991 del_XPVIV(SvANY(sv));
992 break;
993 case SVt_PVNV:
994 pv = SvPVX(sv);
995 cur = SvCUR(sv);
996 len = SvLEN(sv);
997 iv = SvIVX(sv);
998 nv = SvNVX(sv);
999 magic = 0;
1000 stash = 0;
1001 del_XPVNV(SvANY(sv));
1002 break;
1003 case SVt_PVMG:
1004 pv = SvPVX(sv);
1005 cur = SvCUR(sv);
1006 len = SvLEN(sv);
1007 iv = SvIVX(sv);
1008 nv = SvNVX(sv);
1009 magic = SvMAGIC(sv);
1010 stash = SvSTASH(sv);
1011 del_XPVMG(SvANY(sv));
1012 break;
1013 default:
1014 Perl_croak(aTHX_ "Can't upgrade that kind of scalar");
1015 }
1016
1017 switch (mt) {
1018 case SVt_NULL:
1019 Perl_croak(aTHX_ "Can't upgrade to undef");
1020 case SVt_IV:
1021 SvANY(sv) = new_XIV();
1022 SvIVX(sv) = iv;
1023 break;
1024 case SVt_NV:
1025 SvANY(sv) = new_XNV();
1026 SvNVX(sv) = nv;
1027 break;
1028 case SVt_RV:
1029 SvANY(sv) = new_XRV();
1030 SvRV(sv) = (SV*)pv;
1031 break;
1032 case SVt_PV:
1033 SvANY(sv) = new_XPV();
1034 SvPVX(sv) = pv;
1035 SvCUR(sv) = cur;
1036 SvLEN(sv) = len;
1037 break;
1038 case SVt_PVIV:
1039 SvANY(sv) = new_XPVIV();
1040 SvPVX(sv) = pv;
1041 SvCUR(sv) = cur;
1042 SvLEN(sv) = len;
1043 SvIVX(sv) = iv;
1044 if (SvNIOK(sv))
1045 (void)SvIOK_on(sv);
1046 SvNOK_off(sv);
1047 break;
1048 case SVt_PVNV:
1049 SvANY(sv) = new_XPVNV();
1050 SvPVX(sv) = pv;
1051 SvCUR(sv) = cur;
1052 SvLEN(sv) = len;
1053 SvIVX(sv) = iv;
1054 SvNVX(sv) = nv;
1055 break;
1056 case SVt_PVMG:
1057 SvANY(sv) = new_XPVMG();
1058 SvPVX(sv) = pv;
1059 SvCUR(sv) = cur;
1060 SvLEN(sv) = len;
1061 SvIVX(sv) = iv;
1062 SvNVX(sv) = nv;
1063 SvMAGIC(sv) = magic;
1064 SvSTASH(sv) = stash;
1065 break;
1066 case SVt_PVLV:
1067 SvANY(sv) = new_XPVLV();
1068 SvPVX(sv) = pv;
1069 SvCUR(sv) = cur;
1070 SvLEN(sv) = len;
1071 SvIVX(sv) = iv;
1072 SvNVX(sv) = nv;
1073 SvMAGIC(sv) = magic;
1074 SvSTASH(sv) = stash;
1075 LvTARGOFF(sv) = 0;
1076 LvTARGLEN(sv) = 0;
1077 LvTARG(sv) = 0;
1078 LvTYPE(sv) = 0;
1079 break;
1080 case SVt_PVAV:
1081 SvANY(sv) = new_XPVAV();
1082 if (pv)
1083 Safefree(pv);
1084 SvPVX(sv) = 0;
1085 AvMAX(sv) = -1;
1086 AvFILLp(sv) = -1;
1087 SvIVX(sv) = 0;
1088 SvNVX(sv) = 0.0;
1089 SvMAGIC(sv) = magic;
1090 SvSTASH(sv) = stash;
1091 AvALLOC(sv) = 0;
1092 AvARYLEN(sv) = 0;
1093 AvFLAGS(sv) = 0;
1094 break;
1095 case SVt_PVHV:
1096 SvANY(sv) = new_XPVHV();
1097 if (pv)
1098 Safefree(pv);
1099 SvPVX(sv) = 0;
1100 HvFILL(sv) = 0;
1101 HvMAX(sv) = 0;
1102 HvKEYS(sv) = 0;
1103 SvNVX(sv) = 0.0;
1104 SvMAGIC(sv) = magic;
1105 SvSTASH(sv) = stash;
1106 HvRITER(sv) = 0;
1107 HvEITER(sv) = 0;
1108 HvPMROOT(sv) = 0;
1109 HvNAME(sv) = 0;
1110 break;
1111 case SVt_PVCV:
1112 SvANY(sv) = new_XPVCV();
1113 Zero(SvANY(sv), 1, XPVCV);
1114 SvPVX(sv) = pv;
1115 SvCUR(sv) = cur;
1116 SvLEN(sv) = len;
1117 SvIVX(sv) = iv;
1118 SvNVX(sv) = nv;
1119 SvMAGIC(sv) = magic;
1120 SvSTASH(sv) = stash;
1121 break;
1122 case SVt_PVGV:
1123 SvANY(sv) = new_XPVGV();
1124 SvPVX(sv) = pv;
1125 SvCUR(sv) = cur;
1126 SvLEN(sv) = len;
1127 SvIVX(sv) = iv;
1128 SvNVX(sv) = nv;
1129 SvMAGIC(sv) = magic;
1130 SvSTASH(sv) = stash;
1131 GvGP(sv) = 0;
1132 GvNAME(sv) = 0;
1133 GvNAMELEN(sv) = 0;
1134 GvSTASH(sv) = 0;
1135 GvFLAGS(sv) = 0;
1136 break;
1137 case SVt_PVBM:
1138 SvANY(sv) = new_XPVBM();
1139 SvPVX(sv) = pv;
1140 SvCUR(sv) = cur;
1141 SvLEN(sv) = len;
1142 SvIVX(sv) = iv;
1143 SvNVX(sv) = nv;
1144 SvMAGIC(sv) = magic;
1145 SvSTASH(sv) = stash;
1146 BmRARE(sv) = 0;
1147 BmUSEFUL(sv) = 0;
1148 BmPREVIOUS(sv) = 0;
1149 break;
1150 case SVt_PVFM:
1151 SvANY(sv) = new_XPVFM();
1152 Zero(SvANY(sv), 1, XPVFM);
1153 SvPVX(sv) = pv;
1154 SvCUR(sv) = cur;
1155 SvLEN(sv) = len;
1156 SvIVX(sv) = iv;
1157 SvNVX(sv) = nv;
1158 SvMAGIC(sv) = magic;
1159 SvSTASH(sv) = stash;
1160 break;
1161 case SVt_PVIO:
1162 SvANY(sv) = new_XPVIO();
1163 Zero(SvANY(sv), 1, XPVIO);
1164 SvPVX(sv) = pv;
1165 SvCUR(sv) = cur;
1166 SvLEN(sv) = len;
1167 SvIVX(sv) = iv;
1168 SvNVX(sv) = nv;
1169 SvMAGIC(sv) = magic;
1170 SvSTASH(sv) = stash;
1171 IoPAGE_LEN(sv) = 60;
1172 break;
1173 }
1174 SvFLAGS(sv) &= ~SVTYPEMASK;
1175 SvFLAGS(sv) |= mt;
1176 return TRUE;
1177}
1178
1179int
1180Perl_sv_backoff(pTHX_ register SV *sv)
1181{
1182 assert(SvOOK(sv));
1183 if (SvIVX(sv)) {
1184 char *s = SvPVX(sv);
1185 SvLEN(sv) += SvIVX(sv);
1186 SvPVX(sv) -= SvIVX(sv);
1187 SvIV_set(sv, 0);
1188 Move(s, SvPVX(sv), SvCUR(sv)+1, char);
1189 }
1190 SvFLAGS(sv) &= ~SVf_OOK;
1191 return 0;
1192}
1193
1194/*
1195=for apidoc sv_grow
1196
1197Expands the character buffer in the SV. This will use C<sv_unref> and will
1198upgrade the SV to C<SVt_PV>. Returns a pointer to the character buffer.
1199Use C<SvGROW>.
1200
1201=cut
1202*/
1203
1204char *
1205Perl_sv_grow(pTHX_ register SV *sv, register STRLEN newlen)
1206{
1207 register char *s;
1208
1209#ifdef HAS_64K_LIMIT
1210 if (newlen >= 0x10000) {
1211 PerlIO_printf(Perl_debug_log,
1212 "Allocation too large: %"UVxf"\n", (UV)newlen);
1213 my_exit(1);
1214 }
1215#endif /* HAS_64K_LIMIT */
1216 if (SvROK(sv))
1217 sv_unref(sv);
1218 if (SvTYPE(sv) < SVt_PV) {
1219 sv_upgrade(sv, SVt_PV);
1220 s = SvPVX(sv);
1221 }
1222 else if (SvOOK(sv)) { /* pv is offset? */
1223 sv_backoff(sv);
1224 s = SvPVX(sv);
1225 if (newlen > SvLEN(sv))
1226 newlen += 10 * (newlen - SvCUR(sv)); /* avoid copy each time */
1227#ifdef HAS_64K_LIMIT
1228 if (newlen >= 0x10000)
1229 newlen = 0xFFFF;
1230#endif
1231 }
1232 else
1233 s = SvPVX(sv);
1234 if (newlen > SvLEN(sv)) { /* need more room? */
1235 if (SvLEN(sv) && s) {
1236#if defined(MYMALLOC) && !defined(LEAKTEST)
1237 STRLEN l = malloced_size((void*)SvPVX(sv));
1238 if (newlen <= l) {
1239 SvLEN_set(sv, l);
1240 return s;
1241 } else
1242#endif
1243 Renew(s,newlen,char);
1244 }
1245 else
1246 New(703,s,newlen,char);
1247 SvPV_set(sv, s);
1248 SvLEN_set(sv, newlen);
1249 }
1250 return s;
1251}
1252
1253/*
1254=for apidoc sv_setiv
1255
1256Copies an integer into the given SV. Does not handle 'set' magic. See
1257C<sv_setiv_mg>.
1258
1259=cut
1260*/
1261
1262void
1263Perl_sv_setiv(pTHX_ register SV *sv, IV i)
1264{
1265 SV_CHECK_THINKFIRST(sv);
1266 switch (SvTYPE(sv)) {
1267 case SVt_NULL:
1268 sv_upgrade(sv, SVt_IV);
1269 break;
1270 case SVt_NV:
1271 sv_upgrade(sv, SVt_PVNV);
1272 break;
1273 case SVt_RV:
1274 case SVt_PV:
1275 sv_upgrade(sv, SVt_PVIV);
1276 break;
1277
1278 case SVt_PVGV:
1279 case SVt_PVAV:
1280 case SVt_PVHV:
1281 case SVt_PVCV:
1282 case SVt_PVFM:
1283 case SVt_PVIO:
1284 {
1285 dTHR;
1286 Perl_croak(aTHX_ "Can't coerce %s to integer in %s", sv_reftype(sv,0),
1287 PL_op_desc[PL_op->op_type]);
1288 }
1289 }
1290 (void)SvIOK_only(sv); /* validate number */
1291 SvIVX(sv) = i;
1292 SvTAINT(sv);
1293}
1294
1295/*
1296=for apidoc sv_setiv_mg
1297
1298Like C<sv_setiv>, but also handles 'set' magic.
1299
1300=cut
1301*/
1302
1303void
1304Perl_sv_setiv_mg(pTHX_ register SV *sv, IV i)
1305{
1306 sv_setiv(sv,i);
1307 SvSETMAGIC(sv);
1308}
1309
1310/*
1311=for apidoc sv_setuv
1312
1313Copies an unsigned integer into the given SV. Does not handle 'set' magic.
1314See C<sv_setuv_mg>.
1315
1316=cut
1317*/
1318
1319void
1320Perl_sv_setuv(pTHX_ register SV *sv, UV u)
1321{
1322 sv_setiv(sv, 0);
1323 SvIsUV_on(sv);
1324 SvUVX(sv) = u;
1325}
1326
1327/*
1328=for apidoc sv_setuv_mg
1329
1330Like C<sv_setuv>, but also handles 'set' magic.
1331
1332=cut
1333*/
1334
1335void
1336Perl_sv_setuv_mg(pTHX_ register SV *sv, UV u)
1337{
1338 sv_setuv(sv,u);
1339 SvSETMAGIC(sv);
1340}
1341
1342/*
1343=for apidoc sv_setnv
1344
1345Copies a double into the given SV. Does not handle 'set' magic. See
1346C<sv_setnv_mg>.
1347
1348=cut
1349*/
1350
1351void
1352Perl_sv_setnv(pTHX_ register SV *sv, NV num)
1353{
1354 SV_CHECK_THINKFIRST(sv);
1355 switch (SvTYPE(sv)) {
1356 case SVt_NULL:
1357 case SVt_IV:
1358 sv_upgrade(sv, SVt_NV);
1359 break;
1360 case SVt_RV:
1361 case SVt_PV:
1362 case SVt_PVIV:
1363 sv_upgrade(sv, SVt_PVNV);
1364 break;
1365
1366 case SVt_PVGV:
1367 case SVt_PVAV:
1368 case SVt_PVHV:
1369 case SVt_PVCV:
1370 case SVt_PVFM:
1371 case SVt_PVIO:
1372 {
1373 dTHR;
1374 Perl_croak(aTHX_ "Can't coerce %s to number in %s", sv_reftype(sv,0),
1375 PL_op_name[PL_op->op_type]);
1376 }
1377 }
1378 SvNVX(sv) = num;
1379 (void)SvNOK_only(sv); /* validate number */
1380 SvTAINT(sv);
1381}
1382
1383/*
1384=for apidoc sv_setnv_mg
1385
1386Like C<sv_setnv>, but also handles 'set' magic.
1387
1388=cut
1389*/
1390
1391void
1392Perl_sv_setnv_mg(pTHX_ register SV *sv, NV num)
1393{
1394 sv_setnv(sv,num);
1395 SvSETMAGIC(sv);
1396}
1397
1398STATIC void
1399S_not_a_number(pTHX_ SV *sv)
1400{
1401 dTHR;
1402 char tmpbuf[64];
1403 char *d = tmpbuf;
1404 char *s;
1405 char *limit = tmpbuf + sizeof(tmpbuf) - 8;
1406 /* each *s can expand to 4 chars + "...\0",
1407 i.e. need room for 8 chars */
1408
1409 for (s = SvPVX(sv); *s && d < limit; s++) {
1410 int ch = *s & 0xFF;
1411 if (ch & 128 && !isPRINT_LC(ch)) {
1412 *d++ = 'M';
1413 *d++ = '-';
1414 ch &= 127;
1415 }
1416 if (ch == '\n') {
1417 *d++ = '\\';
1418 *d++ = 'n';
1419 }
1420 else if (ch == '\r') {
1421 *d++ = '\\';
1422 *d++ = 'r';
1423 }
1424 else if (ch == '\f') {
1425 *d++ = '\\';
1426 *d++ = 'f';
1427 }
1428 else if (ch == '\\') {
1429 *d++ = '\\';
1430 *d++ = '\\';
1431 }
1432 else if (isPRINT_LC(ch))
1433 *d++ = ch;
1434 else {
1435 *d++ = '^';
1436 *d++ = toCTRL(ch);
1437 }
1438 }
1439 if (*s) {
1440 *d++ = '.';
1441 *d++ = '.';
1442 *d++ = '.';
1443 }
1444 *d = '\0';
1445
1446 if (PL_op)
1447 Perl_warner(aTHX_ WARN_NUMERIC,
1448 "Argument \"%s\" isn't numeric in %s", tmpbuf,
1449 PL_op_desc[PL_op->op_type]);
1450 else
1451 Perl_warner(aTHX_ WARN_NUMERIC,
1452 "Argument \"%s\" isn't numeric", tmpbuf);
1453}
1454
1455/* the number can be converted to integer with atol() or atoll() */
1456#define IS_NUMBER_TO_INT_BY_ATOL 0x01
1457#define IS_NUMBER_TO_INT_BY_ATOF 0x02 /* atol() may be != atof() */
1458#define IS_NUMBER_NOT_IV 0x04 /* (IV)atof() may be != atof() */
1459#define IS_NUMBER_NEG 0x08 /* not good to cache UV */
1460#define IS_NUMBER_INFINITY 0x10 /* this is big */
1461
1462/* Actually, ISO C leaves conversion of UV to IV undefined, but
1463 until proven guilty, assume that things are not that bad... */
1464
1465IV
1466Perl_sv_2iv(pTHX_ register SV *sv)
1467{
1468 if (!sv)
1469 return 0;
1470 if (SvGMAGICAL(sv)) {
1471 mg_get(sv);
1472 if (SvIOKp(sv))
1473 return SvIVX(sv);
1474 if (SvNOKp(sv)) {
1475 return I_V(SvNVX(sv));
1476 }
1477 if (SvPOKp(sv) && SvLEN(sv))
1478 return asIV(sv);
1479 if (!SvROK(sv)) {
1480 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
1481 dTHR;
1482 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
1483 report_uninit();
1484 }
1485 return 0;
1486 }
1487 }
1488 if (SvTHINKFIRST(sv)) {
1489 if (SvROK(sv)) {
1490 SV* tmpstr;
1491 if (SvAMAGIC(sv) && (tmpstr=AMG_CALLun(sv, numer)))
1492 return SvIV(tmpstr);
1493 return PTR2IV(SvRV(sv));
1494 }
1495 if (SvREADONLY(sv) && !SvOK(sv)) {
1496 dTHR;
1497 if (ckWARN(WARN_UNINITIALIZED))
1498 report_uninit();
1499 return 0;
1500 }
1501 }
1502 if (SvIOKp(sv)) {
1503 if (SvIsUV(sv)) {
1504 return (IV)(SvUVX(sv));
1505 }
1506 else {
1507 return SvIVX(sv);
1508 }
1509 }
1510 if (SvNOKp(sv)) {
1511 /* We can cache the IV/UV value even if it not good enough
1512 * to reconstruct NV, since the conversion to PV will prefer
1513 * NV over IV/UV.
1514 */
1515
1516 if (SvTYPE(sv) == SVt_NV)
1517 sv_upgrade(sv, SVt_PVNV);
1518
1519 (void)SvIOK_on(sv);
1520 if (SvNVX(sv) < (NV)IV_MAX + 0.5)
1521 SvIVX(sv) = I_V(SvNVX(sv));
1522 else {
1523 SvUVX(sv) = U_V(SvNVX(sv));
1524 SvIsUV_on(sv);
1525 ret_iv_max:
1526 DEBUG_c(PerlIO_printf(Perl_debug_log,
1527 "0x%"UVxf" 2iv(%"UVuf" => %"IVdf") (as unsigned)\n",
1528 PTR2UV(sv),
1529 SvUVX(sv),
1530 SvUVX(sv)));
1531 return (IV)SvUVX(sv);
1532 }
1533 }
1534 else if (SvPOKp(sv) && SvLEN(sv)) {
1535 I32 numtype = looks_like_number(sv);
1536
1537 /* We want to avoid a possible problem when we cache an IV which
1538 may be later translated to an NV, and the resulting NV is not
1539 the translation of the initial data.
1540
1541 This means that if we cache such an IV, we need to cache the
1542 NV as well. Moreover, we trade speed for space, and do not
1543 cache the NV if not needed.
1544 */
1545 if (numtype & IS_NUMBER_NOT_IV) {
1546 /* May be not an integer. Need to cache NV if we cache IV
1547 * - otherwise future conversion to NV will be wrong. */
1548 NV d;
1549
1550 d = Atof(SvPVX(sv));
1551
1552 if (SvTYPE(sv) < SVt_PVNV)
1553 sv_upgrade(sv, SVt_PVNV);
1554 SvNVX(sv) = d;
1555 (void)SvNOK_on(sv);
1556 (void)SvIOK_on(sv);
1557#if defined(USE_LONG_DOUBLE)
1558 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2nv(%" PERL_PRIgldbl ")\n",
1559 PTR2UV(sv), SvNVX(sv)));
1560#else
1561 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2nv(%g)\n",
1562 PTR2UV(sv), SvNVX(sv)));
1563#endif
1564 if (SvNVX(sv) < (NV)IV_MAX + 0.5)
1565 SvIVX(sv) = I_V(SvNVX(sv));
1566 else {
1567 SvUVX(sv) = U_V(SvNVX(sv));
1568 SvIsUV_on(sv);
1569 goto ret_iv_max;
1570 }
1571 }
1572 else if (numtype) {
1573 /* The NV may be reconstructed from IV - safe to cache IV,
1574 which may be calculated by atol(). */
1575 if (SvTYPE(sv) == SVt_PV)
1576 sv_upgrade(sv, SVt_PVIV);
1577 (void)SvIOK_on(sv);
1578 SvIVX(sv) = Atol(SvPVX(sv));
1579 }
1580 else { /* Not a number. Cache 0. */
1581 dTHR;
1582
1583 if (SvTYPE(sv) < SVt_PVIV)
1584 sv_upgrade(sv, SVt_PVIV);
1585 (void)SvIOK_on(sv);
1586 SvIVX(sv) = 0;
1587 if (ckWARN(WARN_NUMERIC))
1588 not_a_number(sv);
1589 }
1590 }
1591 else {
1592 dTHR;
1593 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing && !(SvFLAGS(sv) & SVs_PADTMP))
1594 report_uninit();
1595 if (SvTYPE(sv) < SVt_IV)
1596 /* Typically the caller expects that sv_any is not NULL now. */
1597 sv_upgrade(sv, SVt_IV);
1598 return 0;
1599 }
1600 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2iv(%"IVdf")\n",
1601 PTR2UV(sv),SvIVX(sv)));
1602 return SvIsUV(sv) ? (IV)SvUVX(sv) : SvIVX(sv);
1603}
1604
1605UV
1606Perl_sv_2uv(pTHX_ register SV *sv)
1607{
1608 if (!sv)
1609 return 0;
1610 if (SvGMAGICAL(sv)) {
1611 mg_get(sv);
1612 if (SvIOKp(sv))
1613 return SvUVX(sv);
1614 if (SvNOKp(sv))
1615 return U_V(SvNVX(sv));
1616 if (SvPOKp(sv) && SvLEN(sv))
1617 return asUV(sv);
1618 if (!SvROK(sv)) {
1619 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
1620 dTHR;
1621 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
1622 report_uninit();
1623 }
1624 return 0;
1625 }
1626 }
1627 if (SvTHINKFIRST(sv)) {
1628 if (SvROK(sv)) {
1629 SV* tmpstr;
1630 if (SvAMAGIC(sv) && (tmpstr=AMG_CALLun(sv, numer)))
1631 return SvUV(tmpstr);
1632 return PTR2UV(SvRV(sv));
1633 }
1634 if (SvREADONLY(sv) && !SvOK(sv)) {
1635 dTHR;
1636 if (ckWARN(WARN_UNINITIALIZED))
1637 report_uninit();
1638 return 0;
1639 }
1640 }
1641 if (SvIOKp(sv)) {
1642 if (SvIsUV(sv)) {
1643 return SvUVX(sv);
1644 }
1645 else {
1646 return (UV)SvIVX(sv);
1647 }
1648 }
1649 if (SvNOKp(sv)) {
1650 /* We can cache the IV/UV value even if it not good enough
1651 * to reconstruct NV, since the conversion to PV will prefer
1652 * NV over IV/UV.
1653 */
1654 if (SvTYPE(sv) == SVt_NV)
1655 sv_upgrade(sv, SVt_PVNV);
1656 (void)SvIOK_on(sv);
1657 if (SvNVX(sv) >= -0.5) {
1658 SvIsUV_on(sv);
1659 SvUVX(sv) = U_V(SvNVX(sv));
1660 }
1661 else {
1662 SvIVX(sv) = I_V(SvNVX(sv));
1663 ret_zero:
1664 DEBUG_c(PerlIO_printf(Perl_debug_log,
1665 "0x%"UVxf" 2uv(%"IVdf" => %"IVdf") (as signed)\n",
1666 PTR2UV(sv),
1667 SvIVX(sv),
1668 (IV)(UV)SvIVX(sv)));
1669 return (UV)SvIVX(sv);
1670 }
1671 }
1672 else if (SvPOKp(sv) && SvLEN(sv)) {
1673 I32 numtype = looks_like_number(sv);
1674
1675 /* We want to avoid a possible problem when we cache a UV which
1676 may be later translated to an NV, and the resulting NV is not
1677 the translation of the initial data.
1678
1679 This means that if we cache such a UV, we need to cache the
1680 NV as well. Moreover, we trade speed for space, and do not
1681 cache the NV if not needed.
1682 */
1683 if (numtype & IS_NUMBER_NOT_IV) {
1684 /* May be not an integer. Need to cache NV if we cache IV
1685 * - otherwise future conversion to NV will be wrong. */
1686 NV d;
1687
1688 d = Atof(SvPVX(sv));
1689
1690 if (SvTYPE(sv) < SVt_PVNV)
1691 sv_upgrade(sv, SVt_PVNV);
1692 SvNVX(sv) = d;
1693 (void)SvNOK_on(sv);
1694 (void)SvIOK_on(sv);
1695#if defined(USE_LONG_DOUBLE)
1696 DEBUG_c(PerlIO_printf(Perl_debug_log,
1697 "0x%"UVxf" 2nv(%" PERL_PRIgldbl ")\n",
1698 PTR2UV(sv), SvNVX(sv)));
1699#else
1700 DEBUG_c(PerlIO_printf(Perl_debug_log,
1701 "0x%"UVxf" 2nv(%g)\n",
1702 PTR2UV(sv), SvNVX(sv)));
1703#endif
1704 if (SvNVX(sv) < -0.5) {
1705 SvIVX(sv) = I_V(SvNVX(sv));
1706 goto ret_zero;
1707 } else {
1708 SvUVX(sv) = U_V(SvNVX(sv));
1709 SvIsUV_on(sv);
1710 }
1711 }
1712 else if (numtype & IS_NUMBER_NEG) {
1713 /* The NV may be reconstructed from IV - safe to cache IV,
1714 which may be calculated by atol(). */
1715 if (SvTYPE(sv) == SVt_PV)
1716 sv_upgrade(sv, SVt_PVIV);
1717 (void)SvIOK_on(sv);
1718 SvIVX(sv) = (IV)Atol(SvPVX(sv));
1719 }
1720 else if (numtype) { /* Non-negative */
1721 /* The NV may be reconstructed from UV - safe to cache UV,
1722 which may be calculated by strtoul()/atol. */
1723 if (SvTYPE(sv) == SVt_PV)
1724 sv_upgrade(sv, SVt_PVIV);
1725 (void)SvIOK_on(sv);
1726 (void)SvIsUV_on(sv);
1727#ifdef HAS_STRTOUL
1728 SvUVX(sv) = Strtoul(SvPVX(sv), Null(char**), 10);
1729#else /* no atou(), but we know the number fits into IV... */
1730 /* The only problem may be if it is negative... */
1731 SvUVX(sv) = (UV)Atol(SvPVX(sv));
1732#endif
1733 }
1734 else { /* Not a number. Cache 0. */
1735 dTHR;
1736
1737 if (SvTYPE(sv) < SVt_PVIV)
1738 sv_upgrade(sv, SVt_PVIV);
1739 (void)SvIOK_on(sv);
1740 (void)SvIsUV_on(sv);
1741 SvUVX(sv) = 0; /* We assume that 0s have the
1742 same bitmap in IV and UV. */
1743 if (ckWARN(WARN_NUMERIC))
1744 not_a_number(sv);
1745 }
1746 }
1747 else {
1748 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
1749 dTHR;
1750 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
1751 report_uninit();
1752 }
1753 if (SvTYPE(sv) < SVt_IV)
1754 /* Typically the caller expects that sv_any is not NULL now. */
1755 sv_upgrade(sv, SVt_IV);
1756 return 0;
1757 }
1758
1759 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2uv(%"UVuf")\n",
1760 PTR2UV(sv),SvUVX(sv)));
1761 return SvIsUV(sv) ? SvUVX(sv) : (UV)SvIVX(sv);
1762}
1763
1764NV
1765Perl_sv_2nv(pTHX_ register SV *sv)
1766{
1767 if (!sv)
1768 return 0.0;
1769 if (SvGMAGICAL(sv)) {
1770 mg_get(sv);
1771 if (SvNOKp(sv))
1772 return SvNVX(sv);
1773 if (SvPOKp(sv) && SvLEN(sv)) {
1774 dTHR;
1775 if (ckWARN(WARN_NUMERIC) && !SvIOKp(sv) && !looks_like_number(sv))
1776 not_a_number(sv);
1777 return Atof(SvPVX(sv));
1778 }
1779 if (SvIOKp(sv)) {
1780 if (SvIsUV(sv))
1781 return (NV)SvUVX(sv);
1782 else
1783 return (NV)SvIVX(sv);
1784 }
1785 if (!SvROK(sv)) {
1786 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
1787 dTHR;
1788 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
1789 report_uninit();
1790 }
1791 return 0;
1792 }
1793 }
1794 if (SvTHINKFIRST(sv)) {
1795 if (SvROK(sv)) {
1796 SV* tmpstr;
1797 if (SvAMAGIC(sv) && (tmpstr=AMG_CALLun(sv,numer)))
1798 return SvNV(tmpstr);
1799 return PTR2NV(SvRV(sv));
1800 }
1801 if (SvREADONLY(sv) && !SvOK(sv)) {
1802 dTHR;
1803 if (ckWARN(WARN_UNINITIALIZED))
1804 report_uninit();
1805 return 0.0;
1806 }
1807 }
1808 if (SvTYPE(sv) < SVt_NV) {
1809 if (SvTYPE(sv) == SVt_IV)
1810 sv_upgrade(sv, SVt_PVNV);
1811 else
1812 sv_upgrade(sv, SVt_NV);
1813#if defined(USE_LONG_DOUBLE)
1814 DEBUG_c({
1815 RESTORE_NUMERIC_STANDARD();
1816 PerlIO_printf(Perl_debug_log,
1817 "0x%"UVxf" num(%" PERL_PRIgldbl ")\n",
1818 PTR2UV(sv), SvNVX(sv));
1819 RESTORE_NUMERIC_LOCAL();
1820 });
1821#else
1822 DEBUG_c({
1823 RESTORE_NUMERIC_STANDARD();
1824 PerlIO_printf(Perl_debug_log, "0x%"UVxf" num(%g)\n",
1825 PTR2UV(sv), SvNVX(sv));
1826 RESTORE_NUMERIC_LOCAL();
1827 });
1828#endif
1829 }
1830 else if (SvTYPE(sv) < SVt_PVNV)
1831 sv_upgrade(sv, SVt_PVNV);
1832 if (SvIOKp(sv) &&
1833 (!SvPOKp(sv) || !strchr(SvPVX(sv),'.') || !looks_like_number(sv)))
1834 {
1835 SvNVX(sv) = SvIsUV(sv) ? (NV)SvUVX(sv) : (NV)SvIVX(sv);
1836 }
1837 else if (SvPOKp(sv) && SvLEN(sv)) {
1838 dTHR;
1839 if (ckWARN(WARN_NUMERIC) && !SvIOKp(sv) && !looks_like_number(sv))
1840 not_a_number(sv);
1841 SvNVX(sv) = Atof(SvPVX(sv));
1842 }
1843 else {
1844 dTHR;
1845 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing && !(SvFLAGS(sv) & SVs_PADTMP))
1846 report_uninit();
1847 if (SvTYPE(sv) < SVt_NV)
1848 /* Typically the caller expects that sv_any is not NULL now. */
1849 sv_upgrade(sv, SVt_NV);
1850 return 0.0;
1851 }
1852 SvNOK_on(sv);
1853#if defined(USE_LONG_DOUBLE)
1854 DEBUG_c({
1855 RESTORE_NUMERIC_STANDARD();
1856 PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2nv(%" PERL_PRIgldbl ")\n",
1857 PTR2UV(sv), SvNVX(sv));
1858 RESTORE_NUMERIC_LOCAL();
1859 });
1860#else
1861 DEBUG_c({
1862 RESTORE_NUMERIC_STANDARD();
1863 PerlIO_printf(Perl_debug_log, "0x%"UVxf" 1nv(%g)\n",
1864 PTR2UV(sv), SvNVX(sv));
1865 RESTORE_NUMERIC_LOCAL();
1866 });
1867#endif
1868 return SvNVX(sv);
1869}
1870
1871STATIC IV
1872S_asIV(pTHX_ SV *sv)
1873{
1874 I32 numtype = looks_like_number(sv);
1875 NV d;
1876
1877 if (numtype & IS_NUMBER_TO_INT_BY_ATOL)
1878 return Atol(SvPVX(sv));
1879 if (!numtype) {
1880 dTHR;
1881 if (ckWARN(WARN_NUMERIC))
1882 not_a_number(sv);
1883 }
1884 d = Atof(SvPVX(sv));
1885 return I_V(d);
1886}
1887
1888STATIC UV
1889S_asUV(pTHX_ SV *sv)
1890{
1891 I32 numtype = looks_like_number(sv);
1892
1893#ifdef HAS_STRTOUL
1894 if (numtype & IS_NUMBER_TO_INT_BY_ATOL)
1895 return Strtoul(SvPVX(sv), Null(char**), 10);
1896#endif
1897 if (!numtype) {
1898 dTHR;
1899 if (ckWARN(WARN_NUMERIC))
1900 not_a_number(sv);
1901 }
1902 return U_V(Atof(SvPVX(sv)));
1903}
1904
1905/*
1906 * Returns a combination of (advisory only - can get false negatives)
1907 * IS_NUMBER_TO_INT_BY_ATOL, IS_NUMBER_TO_INT_BY_ATOF, IS_NUMBER_NOT_IV,
1908 * IS_NUMBER_NEG
1909 * 0 if does not look like number.
1910 *
1911 * In fact possible values are 0 and
1912 * IS_NUMBER_TO_INT_BY_ATOL 123
1913 * IS_NUMBER_TO_INT_BY_ATOL | IS_NUMBER_NOT_IV 123.1
1914 * IS_NUMBER_TO_INT_BY_ATOF | IS_NUMBER_NOT_IV 123e0
1915 * IS_NUMBER_INFINITY
1916 * with a possible addition of IS_NUMBER_NEG.
1917 */
1918
1919/*
1920=for apidoc looks_like_number
1921
1922Test if an the content of an SV looks like a number (or is a
1923number).
1924
1925=cut
1926*/
1927
1928I32
1929Perl_looks_like_number(pTHX_ SV *sv)
1930{
1931 register char *s;
1932 register char *send;
1933 register char *sbegin;
1934 register char *nbegin;
1935 I32 numtype = 0;
1936 I32 sawinf = 0;
1937 STRLEN len;
1938
1939 if (SvPOK(sv)) {
1940 sbegin = SvPVX(sv);
1941 len = SvCUR(sv);
1942 }
1943 else if (SvPOKp(sv))
1944 sbegin = SvPV(sv, len);
1945 else
1946 return 1;
1947 send = sbegin + len;
1948
1949 s = sbegin;
1950 while (isSPACE(*s))
1951 s++;
1952 if (*s == '-') {
1953 s++;
1954 numtype = IS_NUMBER_NEG;
1955 }
1956 else if (*s == '+')
1957 s++;
1958
1959 nbegin = s;
1960 /*
1961 * we return IS_NUMBER_TO_INT_BY_ATOL if the number can be converted
1962 * to _integer_ with atol() and IS_NUMBER_TO_INT_BY_ATOF if you need
1963 * (int)atof().
1964 */
1965
1966 /* next must be digit or the radix separator or beginning of infinity */
1967 if (isDIGIT(*s)) {
1968 do {
1969 s++;
1970 } while (isDIGIT(*s));
1971
1972 if (s - nbegin >= TYPE_DIGITS(IV)) /* Cannot cache ato[ul]() */
1973 numtype |= IS_NUMBER_TO_INT_BY_ATOF | IS_NUMBER_NOT_IV;
1974 else
1975 numtype |= IS_NUMBER_TO_INT_BY_ATOL;
1976
1977 if (*s == '.'
1978#ifdef USE_LOCALE_NUMERIC
1979 || IS_NUMERIC_RADIX(*s)
1980#endif
1981 ) {
1982 s++;
1983 numtype |= IS_NUMBER_NOT_IV;
1984 while (isDIGIT(*s)) /* optional digits after the radix */
1985 s++;
1986 }
1987 }
1988 else if (*s == '.'
1989#ifdef USE_LOCALE_NUMERIC
1990 || IS_NUMERIC_RADIX(*s)
1991#endif
1992 ) {
1993 s++;
1994 numtype |= IS_NUMBER_TO_INT_BY_ATOL | IS_NUMBER_NOT_IV;
1995 /* no digits before the radix means we need digits after it */
1996 if (isDIGIT(*s)) {
1997 do {
1998 s++;
1999 } while (isDIGIT(*s));
2000 }
2001 else
2002 return 0;
2003 }
2004 else if (*s == 'I' || *s == 'i') {
2005 s++; if (*s != 'N' && *s != 'n') return 0;
2006 s++; if (*s != 'F' && *s != 'f') return 0;
2007 s++; if (*s == 'I' || *s == 'i') {
2008 s++; if (*s != 'N' && *s != 'n') return 0;
2009 s++; if (*s != 'I' && *s != 'i') return 0;
2010 s++; if (*s != 'T' && *s != 't') return 0;
2011 s++; if (*s != 'Y' && *s != 'y') return 0;
2012 }
2013 sawinf = 1;
2014 }
2015 else
2016 return 0;
2017
2018 if (sawinf)
2019 numtype = IS_NUMBER_INFINITY;
2020 else {
2021 /* we can have an optional exponent part */
2022 if (*s == 'e' || *s == 'E') {
2023 numtype &= ~IS_NUMBER_NEG;
2024 numtype |= IS_NUMBER_TO_INT_BY_ATOF | IS_NUMBER_NOT_IV;
2025 s++;
2026 if (*s == '+' || *s == '-')
2027 s++;
2028 if (isDIGIT(*s)) {
2029 do {
2030 s++;
2031 } while (isDIGIT(*s));
2032 }
2033 else
2034 return 0;
2035 }
2036 }
2037 while (isSPACE(*s))
2038 s++;
2039 if (s >= send)
2040 return numtype;
2041 if (len == 10 && memEQ(sbegin, "0 but true", 10))
2042 return IS_NUMBER_TO_INT_BY_ATOL;
2043 return 0;
2044}
2045
2046char *
2047Perl_sv_2pv_nolen(pTHX_ register SV *sv)
2048{
2049 STRLEN n_a;
2050 return sv_2pv(sv, &n_a);
2051}
2052
2053/* We assume that buf is at least TYPE_CHARS(UV) long. */
2054static char *
2055uiv_2buf(char *buf, IV iv, UV uv, int is_uv, char **peob)
2056{
2057 char *ptr = buf + TYPE_CHARS(UV);
2058 char *ebuf = ptr;
2059 int sign;
2060
2061 if (is_uv)
2062 sign = 0;
2063 else if (iv >= 0) {
2064 uv = iv;
2065 sign = 0;
2066 } else {
2067 uv = -iv;
2068 sign = 1;
2069 }
2070 do {
2071 *--ptr = '0' + (uv % 10);
2072 } while (uv /= 10);
2073 if (sign)
2074 *--ptr = '-';
2075 *peob = ebuf;
2076 return ptr;
2077}
2078
2079char *
2080Perl_sv_2pv(pTHX_ register SV *sv, STRLEN *lp)
2081{
2082 register char *s;
2083 int olderrno;
2084 SV *tsv;
2085 char tbuf[64]; /* Must fit sprintf/Gconvert of longest IV/NV */
2086 char *tmpbuf = tbuf;
2087
2088 if (!sv) {
2089 *lp = 0;
2090 return "";
2091 }
2092 if (SvGMAGICAL(sv)) {
2093 mg_get(sv);
2094 if (SvPOKp(sv)) {
2095 *lp = SvCUR(sv);
2096 return SvPVX(sv);
2097 }
2098 if (SvIOKp(sv)) {
2099 if (SvIsUV(sv))
2100 (void)sprintf(tmpbuf,"%"UVuf, (UV)SvUVX(sv));
2101 else
2102 (void)sprintf(tmpbuf,"%"IVdf, (IV)SvIVX(sv));
2103 tsv = Nullsv;
2104 goto tokensave;
2105 }
2106 if (SvNOKp(sv)) {
2107 Gconvert(SvNVX(sv), NV_DIG, 0, tmpbuf);
2108 tsv = Nullsv;
2109 goto tokensave;
2110 }
2111 if (!SvROK(sv)) {
2112 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
2113 dTHR;
2114 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
2115 report_uninit();
2116 }
2117 *lp = 0;
2118 return "";
2119 }
2120 }
2121 if (SvTHINKFIRST(sv)) {
2122 if (SvROK(sv)) {
2123 SV* tmpstr;
2124 if (SvAMAGIC(sv) && (tmpstr=AMG_CALLun(sv,string)))
2125 return SvPV(tmpstr,*lp);
2126 sv = (SV*)SvRV(sv);
2127 if (!sv)
2128 s = "NULLREF";
2129 else {
2130 MAGIC *mg;
2131
2132 switch (SvTYPE(sv)) {
2133 case SVt_PVMG:
2134 if ( ((SvFLAGS(sv) &
2135 (SVs_OBJECT|SVf_OK|SVs_GMG|SVs_SMG|SVs_RMG))
2136 == (SVs_OBJECT|SVs_RMG))
2137 && strEQ(s=HvNAME(SvSTASH(sv)), "Regexp")
2138 && (mg = mg_find(sv, 'r'))) {
2139 dTHR;
2140 regexp *re = (regexp *)mg->mg_obj;
2141
2142 if (!mg->mg_ptr) {
2143 char *fptr = "msix";
2144 char reflags[6];
2145 char ch;
2146 int left = 0;
2147 int right = 4;
2148 U16 reganch = (re->reganch & PMf_COMPILETIME) >> 12;
2149
2150 while((ch = *fptr++)) {
2151 if(reganch & 1) {
2152 reflags[left++] = ch;
2153 }
2154 else {
2155 reflags[right--] = ch;
2156 }
2157 reganch >>= 1;
2158 }
2159 if(left != 4) {
2160 reflags[left] = '-';
2161 left = 5;
2162 }
2163
2164 mg->mg_len = re->prelen + 4 + left;
2165 New(616, mg->mg_ptr, mg->mg_len + 1 + left, char);
2166 Copy("(?", mg->mg_ptr, 2, char);
2167 Copy(reflags, mg->mg_ptr+2, left, char);
2168 Copy(":", mg->mg_ptr+left+2, 1, char);
2169 Copy(re->precomp, mg->mg_ptr+3+left, re->prelen, char);
2170 mg->mg_ptr[mg->mg_len - 1] = ')';
2171 mg->mg_ptr[mg->mg_len] = 0;
2172 }
2173 PL_reginterp_cnt += re->program[0].next_off;
2174 *lp = mg->mg_len;
2175 return mg->mg_ptr;
2176 }
2177 /* Fall through */
2178 case SVt_NULL:
2179 case SVt_IV:
2180 case SVt_NV:
2181 case SVt_RV:
2182 case SVt_PV:
2183 case SVt_PVIV:
2184 case SVt_PVNV:
2185 case SVt_PVBM: s = "SCALAR"; break;
2186 case SVt_PVLV: s = "LVALUE"; break;
2187 case SVt_PVAV: s = "ARRAY"; break;
2188 case SVt_PVHV: s = "HASH"; break;
2189 case SVt_PVCV: s = "CODE"; break;
2190 case SVt_PVGV: s = "GLOB"; break;
2191 case SVt_PVFM: s = "FORMAT"; break;
2192 case SVt_PVIO: s = "IO"; break;
2193 default: s = "UNKNOWN"; break;
2194 }
2195 tsv = NEWSV(0,0);
2196 if (SvOBJECT(sv))
2197 Perl_sv_setpvf(aTHX_ tsv, "%s=%s", HvNAME(SvSTASH(sv)), s);
2198 else
2199 sv_setpv(tsv, s);
2200 Perl_sv_catpvf(aTHX_ tsv, "(0x%"UVxf")", PTR2UV(sv));
2201 goto tokensaveref;
2202 }
2203 *lp = strlen(s);
2204 return s;
2205 }
2206 if (SvREADONLY(sv) && !SvOK(sv)) {
2207 dTHR;
2208 if (ckWARN(WARN_UNINITIALIZED))
2209 report_uninit();
2210 *lp = 0;
2211 return "";
2212 }
2213 }
2214 if (SvNOKp(sv)) { /* See note in sv_2uv() */
2215 /* XXXX 64-bit? IV may have better precision... */
2216 /* I tried changing this for to be 64-bit-aware and
2217 * the t/op/numconvert.t became very, very, angry.
2218 * --jhi Sep 1999 */
2219 if (SvTYPE(sv) < SVt_PVNV)
2220 sv_upgrade(sv, SVt_PVNV);
2221 SvGROW(sv, 28);
2222 s = SvPVX(sv);
2223 olderrno = errno; /* some Xenix systems wipe out errno here */
2224#ifdef apollo
2225 if (SvNVX(sv) == 0.0)
2226 (void)strcpy(s,"0");
2227 else
2228#endif /*apollo*/
2229 {
2230 Gconvert(SvNVX(sv), NV_DIG, 0, s);
2231 }
2232 errno = olderrno;
2233#ifdef FIXNEGATIVEZERO
2234 if (*s == '-' && s[1] == '0' && !s[2])
2235 strcpy(s,"0");
2236#endif
2237 while (*s) s++;
2238#ifdef hcx
2239 if (s[-1] == '.')
2240 *--s = '\0';
2241#endif
2242 }
2243 else if (SvIOKp(sv)) {
2244 U32 isIOK = SvIOK(sv);
2245 U32 isUIOK = SvIsUV(sv);
2246 char buf[TYPE_CHARS(UV)];
2247 char *ebuf, *ptr;
2248
2249 if (SvTYPE(sv) < SVt_PVIV)
2250 sv_upgrade(sv, SVt_PVIV);
2251 if (isUIOK)
2252 ptr = uiv_2buf(buf, 0, SvUVX(sv), 1, &ebuf);
2253 else
2254 ptr = uiv_2buf(buf, SvIVX(sv), 0, 0, &ebuf);
2255 SvGROW(sv, ebuf - ptr + 1); /* inlined from sv_setpvn */
2256 Move(ptr,SvPVX(sv),ebuf - ptr,char);
2257 SvCUR_set(sv, ebuf - ptr);
2258 s = SvEND(sv);
2259 *s = '\0';
2260 if (isIOK)
2261 SvIOK_on(sv);
2262 else
2263 SvIOKp_on(sv);
2264 if (isUIOK)
2265 SvIsUV_on(sv);
2266 SvPOK_on(sv);
2267 }
2268 else {
2269 dTHR;
2270 if (ckWARN(WARN_UNINITIALIZED)
2271 && !PL_localizing && !(SvFLAGS(sv) & SVs_PADTMP))
2272 {
2273 report_uninit();
2274 }
2275 *lp = 0;
2276 if (SvTYPE(sv) < SVt_PV)
2277 /* Typically the caller expects that sv_any is not NULL now. */
2278 sv_upgrade(sv, SVt_PV);
2279 return "";
2280 }
2281 *lp = s - SvPVX(sv);
2282 SvCUR_set(sv, *lp);
2283 SvPOK_on(sv);
2284 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2pv(%s)\n",
2285 PTR2UV(sv),SvPVX(sv)));
2286 return SvPVX(sv);
2287
2288 tokensave:
2289 if (SvROK(sv)) { /* XXX Skip this when sv_pvn_force calls */
2290 /* Sneaky stuff here */
2291
2292 tokensaveref:
2293 if (!tsv)
2294 tsv = newSVpv(tmpbuf, 0);
2295 sv_2mortal(tsv);
2296 *lp = SvCUR(tsv);
2297 return SvPVX(tsv);
2298 }
2299 else {
2300 STRLEN len;
2301 char *t;
2302
2303 if (tsv) {
2304 sv_2mortal(tsv);
2305 t = SvPVX(tsv);
2306 len = SvCUR(tsv);
2307 }
2308 else {
2309 t = tmpbuf;
2310 len = strlen(tmpbuf);
2311 }
2312#ifdef FIXNEGATIVEZERO
2313 if (len == 2 && t[0] == '-' && t[1] == '0') {
2314 t = "0";
2315 len = 1;
2316 }
2317#endif
2318 (void)SvUPGRADE(sv, SVt_PV);
2319 *lp = len;
2320 s = SvGROW(sv, len + 1);
2321 SvCUR_set(sv, len);
2322 (void)strcpy(s, t);
2323 SvPOKp_on(sv);
2324 return s;
2325 }
2326}
2327
2328char *
2329Perl_sv_2pvbyte_nolen(pTHX_ register SV *sv)
2330{
2331 STRLEN n_a;
2332 return sv_2pvbyte(sv, &n_a);
2333}
2334
2335char *
2336Perl_sv_2pvbyte(pTHX_ register SV *sv, STRLEN *lp)
2337{
2338 return sv_2pv(sv,lp);
2339}
2340
2341char *
2342Perl_sv_2pvutf8_nolen(pTHX_ register SV *sv)
2343{
2344 STRLEN n_a;
2345 return sv_2pvutf8(sv, &n_a);
2346}
2347
2348char *
2349Perl_sv_2pvutf8(pTHX_ register SV *sv, STRLEN *lp)
2350{
2351 sv_utf8_upgrade(sv);
2352 return sv_2pv(sv,lp);
2353}
2354
2355/* This function is only called on magical items */
2356bool
2357Perl_sv_2bool(pTHX_ register SV *sv)
2358{
2359 if (SvGMAGICAL(sv))
2360 mg_get(sv);
2361
2362 if (!SvOK(sv))
2363 return 0;
2364 if (SvROK(sv)) {
2365 dTHR;
2366 SV* tmpsv;
2367 if (SvAMAGIC(sv) && (tmpsv = AMG_CALLun(sv,bool_)))
2368 return SvTRUE(tmpsv);
2369 return SvRV(sv) != 0;
2370 }
2371 if (SvPOKp(sv)) {
2372 register XPV* Xpvtmp;
2373 if ((Xpvtmp = (XPV*)SvANY(sv)) &&
2374 (*Xpvtmp->xpv_pv > '0' ||
2375 Xpvtmp->xpv_cur > 1 ||
2376 (Xpvtmp->xpv_cur && *Xpvtmp->xpv_pv != '0')))
2377 return 1;
2378 else
2379 return 0;
2380 }
2381 else {
2382 if (SvIOKp(sv))
2383 return SvIVX(sv) != 0;
2384 else {
2385 if (SvNOKp(sv))
2386 return SvNVX(sv) != 0.0;
2387 else
2388 return FALSE;
2389 }
2390 }
2391}
2392
2393void
2394Perl_sv_utf8_upgrade(pTHX_ register SV *sv)
2395{
2396 int hicount;
2397 char *c;
2398
2399 if (!sv || !SvPOK(sv) || SvUTF8(sv))
2400 return;
2401
2402 /* This function could be much more efficient if we had a FLAG
2403 * to signal if there are any hibit chars in the string
2404 */
2405 hicount = 0;
2406 for (c = SvPVX(sv); c < SvEND(sv); c++) {
2407 if (*c & 0x80)
2408 hicount++;
2409 }
2410
2411 if (hicount) {
2412 char *src, *dst;
2413 SvGROW(sv, SvCUR(sv) + hicount + 1);
2414
2415 src = SvEND(sv) - 1;
2416 SvCUR_set(sv, SvCUR(sv) + hicount);
2417 dst = SvEND(sv) - 1;
2418
2419 while (src < dst) {
2420 if (*src & 0x80) {
2421 dst--;
2422 uv_to_utf8((U8*)dst, (U8)*src--);
2423 dst--;
2424 }
2425 else {
2426 *dst-- = *src--;
2427 }
2428 }
2429
2430 SvUTF8_on(sv);
2431 }
2432}
2433
2434bool
2435Perl_sv_utf8_downgrade(pTHX_ register SV* sv, bool fail_ok)
2436{
2437 if (SvPOK(sv) && SvUTF8(sv)) {
2438 char *c = SvPVX(sv);
2439 char *first_hi = 0;
2440 /* need to figure out if this is possible at all first */
2441 while (c < SvEND(sv)) {
2442 if (*c & 0x80) {
2443 I32 len;
2444 UV uv = utf8_to_uv((U8*)c, &len);
2445 if (uv >= 256) {
2446 if (fail_ok)
2447 return FALSE;
2448 else {
2449 /* XXX might want to make a callback here instead */
2450 Perl_croak(aTHX_ "Big byte");
2451 }
2452 }
2453 if (!first_hi)
2454 first_hi = c;
2455 c += len;
2456 }
2457 else {
2458 c++;
2459 }
2460 }
2461
2462 if (first_hi) {
2463 char *src = first_hi;
2464 char *dst = first_hi;
2465 while (src < SvEND(sv)) {
2466 if (*src & 0x80) {
2467 I32 len;
2468 U8 u = (U8)utf8_to_uv((U8*)src, &len);
2469 *dst++ = u;
2470 src += len;
2471 }
2472 else {
2473 *dst++ = *src++;
2474 }
2475 }
2476 SvCUR_set(sv, dst - SvPVX(sv));
2477 }
2478 SvUTF8_off(sv);
2479 }
2480 return TRUE;
2481}
2482
2483void
2484Perl_sv_utf8_encode(pTHX_ register SV *sv)
2485{
2486 sv_utf8_upgrade(sv);
2487 SvUTF8_off(sv);
2488}
2489
2490bool
2491Perl_sv_utf8_decode(pTHX_ register SV *sv)
2492{
2493 if (SvPOK(sv)) {
2494 char *c;
2495 bool has_utf = FALSE;
2496 if (!sv_utf8_downgrade(sv, TRUE))
2497 return FALSE;
2498
2499 /* it is actually just a matter of turning the utf8 flag on, but
2500 * we want to make sure everything inside is valid utf8 first.
2501 */
2502 c = SvPVX(sv);
2503 while (c < SvEND(sv)) {
2504 if (*c & 0x80) {
2505 I32 len;
2506 (void)utf8_to_uv((U8*)c, &len);
2507 if (len == 1) {
2508 /* bad utf8 */
2509 return FALSE;
2510 }
2511 c += len;
2512 has_utf = TRUE;
2513 }
2514 else {
2515 c++;
2516 }
2517 }
2518
2519 if (has_utf)
2520 SvUTF8_on(sv);
2521 }
2522 return TRUE;
2523}
2524
2525
2526/* Note: sv_setsv() should not be called with a source string that needs
2527 * to be reused, since it may destroy the source string if it is marked
2528 * as temporary.
2529 */
2530
2531/*
2532=for apidoc sv_setsv
2533
2534Copies the contents of the source SV C<ssv> into the destination SV C<dsv>.
2535The source SV may be destroyed if it is mortal. Does not handle 'set'
2536magic. See the macro forms C<SvSetSV>, C<SvSetSV_nosteal> and
2537C<sv_setsv_mg>.
2538
2539=cut
2540*/
2541
2542void
2543Perl_sv_setsv(pTHX_ SV *dstr, register SV *sstr)
2544{
2545 dTHR;
2546 register U32 sflags;
2547 register int dtype;
2548 register int stype;
2549
2550 if (sstr == dstr)
2551 return;
2552 SV_CHECK_THINKFIRST(dstr);
2553 if (!sstr)
2554 sstr = &PL_sv_undef;
2555 stype = SvTYPE(sstr);
2556 dtype = SvTYPE(dstr);
2557
2558 SvAMAGIC_off(dstr);
2559
2560 /* There's a lot of redundancy below but we're going for speed here */
2561
2562 switch (stype) {
2563 case SVt_NULL:
2564 undef_sstr:
2565 if (dtype != SVt_PVGV) {
2566 (void)SvOK_off(dstr);
2567 return;
2568 }
2569 break;
2570 case SVt_IV:
2571 if (SvIOK(sstr)) {
2572 switch (dtype) {
2573 case SVt_NULL:
2574 sv_upgrade(dstr, SVt_IV);
2575 break;
2576 case SVt_NV:
2577 sv_upgrade(dstr, SVt_PVNV);
2578 break;
2579 case SVt_RV:
2580 case SVt_PV:
2581 sv_upgrade(dstr, SVt_PVIV);
2582 break;
2583 }
2584 (void)SvIOK_only(dstr);
2585 SvIVX(dstr) = SvIVX(sstr);
2586 if (SvIsUV(sstr))
2587 SvIsUV_on(dstr);
2588 SvTAINT(dstr);
2589 return;
2590 }
2591 goto undef_sstr;
2592
2593 case SVt_NV:
2594 if (SvNOK(sstr)) {
2595 switch (dtype) {
2596 case SVt_NULL:
2597 case SVt_IV:
2598 sv_upgrade(dstr, SVt_NV);
2599 break;
2600 case SVt_RV:
2601 case SVt_PV:
2602 case SVt_PVIV:
2603 sv_upgrade(dstr, SVt_PVNV);
2604 break;
2605 }
2606 SvNVX(dstr) = SvNVX(sstr);
2607 (void)SvNOK_only(dstr);
2608 SvTAINT(dstr);
2609 return;
2610 }
2611 goto undef_sstr;
2612
2613 case SVt_RV:
2614 if (dtype < SVt_RV)
2615 sv_upgrade(dstr, SVt_RV);
2616 else if (dtype == SVt_PVGV &&
2617 SvTYPE(SvRV(sstr)) == SVt_PVGV) {
2618 sstr = SvRV(sstr);
2619 if (sstr == dstr) {
2620 if (GvIMPORTED(dstr) != GVf_IMPORTED
2621 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
2622 {
2623 GvIMPORTED_on(dstr);
2624 }
2625 GvMULTI_on(dstr);
2626 return;
2627 }
2628 goto glob_assign;
2629 }
2630 break;
2631 case SVt_PV:
2632 case SVt_PVFM:
2633 if (dtype < SVt_PV)
2634 sv_upgrade(dstr, SVt_PV);
2635 break;
2636 case SVt_PVIV:
2637 if (dtype < SVt_PVIV)
2638 sv_upgrade(dstr, SVt_PVIV);
2639 break;
2640 case SVt_PVNV:
2641 if (dtype < SVt_PVNV)
2642 sv_upgrade(dstr, SVt_PVNV);
2643 break;
2644 case SVt_PVAV:
2645 case SVt_PVHV:
2646 case SVt_PVCV:
2647 case SVt_PVIO:
2648 if (PL_op)
2649 Perl_croak(aTHX_ "Bizarre copy of %s in %s", sv_reftype(sstr, 0),
2650 PL_op_name[PL_op->op_type]);
2651 else
2652 Perl_croak(aTHX_ "Bizarre copy of %s", sv_reftype(sstr, 0));
2653 break;
2654
2655 case SVt_PVGV:
2656 if (dtype <= SVt_PVGV) {
2657 glob_assign:
2658 if (dtype != SVt_PVGV) {
2659 char *name = GvNAME(sstr);
2660 STRLEN len = GvNAMELEN(sstr);
2661 sv_upgrade(dstr, SVt_PVGV);
2662 sv_magic(dstr, dstr, '*', Nullch, 0);
2663 GvSTASH(dstr) = (HV*)SvREFCNT_inc(GvSTASH(sstr));
2664 GvNAME(dstr) = savepvn(name, len);
2665 GvNAMELEN(dstr) = len;
2666 SvFAKE_on(dstr); /* can coerce to non-glob */
2667 }
2668 /* ahem, death to those who redefine active sort subs */
2669 else if (PL_curstackinfo->si_type == PERLSI_SORT
2670 && GvCV(dstr) && PL_sortcop == CvSTART(GvCV(dstr)))
2671 Perl_croak(aTHX_ "Can't redefine active sort subroutine %s",
2672 GvNAME(dstr));
2673 (void)SvOK_off(dstr);
2674 GvINTRO_off(dstr); /* one-shot flag */
2675 gp_free((GV*)dstr);
2676 GvGP(dstr) = gp_ref(GvGP(sstr));
2677 SvTAINT(dstr);
2678 if (GvIMPORTED(dstr) != GVf_IMPORTED
2679 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
2680 {
2681 GvIMPORTED_on(dstr);
2682 }
2683 GvMULTI_on(dstr);
2684 return;
2685 }
2686 /* FALL THROUGH */
2687
2688 default:
2689 if (SvGMAGICAL(sstr)) {
2690 mg_get(sstr);
2691 if (SvTYPE(sstr) != stype) {
2692 stype = SvTYPE(sstr);
2693 if (stype == SVt_PVGV && dtype <= SVt_PVGV)
2694 goto glob_assign;
2695 }
2696 }
2697 if (stype == SVt_PVLV)
2698 (void)SvUPGRADE(dstr, SVt_PVNV);
2699 else
2700 (void)SvUPGRADE(dstr, stype);
2701 }
2702
2703 sflags = SvFLAGS(sstr);
2704
2705 if (sflags & SVf_ROK) {
2706 if (dtype >= SVt_PV) {
2707 if (dtype == SVt_PVGV) {
2708 SV *sref = SvREFCNT_inc(SvRV(sstr));
2709 SV *dref = 0;
2710 int intro = GvINTRO(dstr);
2711
2712 if (intro) {
2713 GP *gp;
2714 gp_free((GV*)dstr);
2715 GvINTRO_off(dstr); /* one-shot flag */
2716 Newz(602,gp, 1, GP);
2717 GvGP(dstr) = gp_ref(gp);
2718 GvSV(dstr) = NEWSV(72,0);
2719 GvLINE(dstr) = CopLINE(PL_curcop);
2720 GvEGV(dstr) = (GV*)dstr;
2721 }
2722 GvMULTI_on(dstr);
2723 switch (SvTYPE(sref)) {
2724 case SVt_PVAV:
2725 if (intro)
2726 SAVESPTR(GvAV(dstr));
2727 else
2728 dref = (SV*)GvAV(dstr);
2729 GvAV(dstr) = (AV*)sref;
2730 if (!GvIMPORTED_AV(dstr)
2731 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
2732 {
2733 GvIMPORTED_AV_on(dstr);
2734 }
2735 break;
2736 case SVt_PVHV:
2737 if (intro)
2738 SAVESPTR(GvHV(dstr));
2739 else
2740 dref = (SV*)GvHV(dstr);
2741 GvHV(dstr) = (HV*)sref;
2742 if (!GvIMPORTED_HV(dstr)
2743 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
2744 {
2745 GvIMPORTED_HV_on(dstr);
2746 }
2747 break;
2748 case SVt_PVCV:
2749 if (intro) {
2750 if (GvCVGEN(dstr) && GvCV(dstr) != (CV*)sref) {
2751 SvREFCNT_dec(GvCV(dstr));
2752 GvCV(dstr) = Nullcv;
2753 GvCVGEN(dstr) = 0; /* Switch off cacheness. */
2754 PL_sub_generation++;
2755 }
2756 SAVESPTR(GvCV(dstr));
2757 }
2758 else
2759 dref = (SV*)GvCV(dstr);
2760 if (GvCV(dstr) != (CV*)sref) {
2761 CV* cv = GvCV(dstr);
2762 if (cv) {
2763 if (!GvCVGEN((GV*)dstr) &&
2764 (CvROOT(cv) || CvXSUB(cv)))
2765 {
2766 SV *const_sv = cv_const_sv(cv);
2767 bool const_changed = TRUE;
2768 if(const_sv)
2769 const_changed = sv_cmp(const_sv,
2770 op_const_sv(CvSTART((CV*)sref),
2771 Nullcv));
2772 /* ahem, death to those who redefine
2773 * active sort subs */
2774 if (PL_curstackinfo->si_type == PERLSI_SORT &&
2775 PL_sortcop == CvSTART(cv))
2776 Perl_croak(aTHX_
2777 "Can't redefine active sort subroutine %s",
2778 GvENAME((GV*)dstr));
2779 if ((const_changed || const_sv) && ckWARN(WARN_REDEFINE))
2780 Perl_warner(aTHX_ WARN_REDEFINE, const_sv ?
2781 "Constant subroutine %s redefined"
2782 : "Subroutine %s redefined",
2783 GvENAME((GV*)dstr));
2784 }
2785 cv_ckproto(cv, (GV*)dstr,
2786 SvPOK(sref) ? SvPVX(sref) : Nullch);
2787 }
2788 GvCV(dstr) = (CV*)sref;
2789 GvCVGEN(dstr) = 0; /* Switch off cacheness. */
2790 GvASSUMECV_on(dstr);
2791 PL_sub_generation++;
2792 }
2793 if (!GvIMPORTED_CV(dstr)
2794 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
2795 {
2796 GvIMPORTED_CV_on(dstr);
2797 }
2798 break;
2799 case SVt_PVIO:
2800 if (intro)
2801 SAVESPTR(GvIOp(dstr));
2802 else
2803 dref = (SV*)GvIOp(dstr);
2804 GvIOp(dstr) = (IO*)sref;
2805 break;
2806 default:
2807 if (intro)
2808 SAVESPTR(GvSV(dstr));
2809 else
2810 dref = (SV*)GvSV(dstr);
2811 GvSV(dstr) = sref;
2812 if (!GvIMPORTED_SV(dstr)
2813 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
2814 {
2815 GvIMPORTED_SV_on(dstr);
2816 }
2817 break;
2818 }
2819 if (dref)
2820 SvREFCNT_dec(dref);
2821 if (intro)
2822 SAVEFREESV(sref);
2823 SvTAINT(dstr);
2824 return;
2825 }
2826 if (SvPVX(dstr)) {
2827 (void)SvOOK_off(dstr); /* backoff */
2828 if (SvLEN(dstr))
2829 Safefree(SvPVX(dstr));
2830 SvLEN(dstr)=SvCUR(dstr)=0;
2831 }
2832 }
2833 (void)SvOK_off(dstr);
2834 SvRV(dstr) = SvREFCNT_inc(SvRV(sstr));
2835 SvROK_on(dstr);
2836 if (sflags & SVp_NOK) {
2837 SvNOK_on(dstr);
2838 SvNVX(dstr) = SvNVX(sstr);
2839 }
2840 if (sflags & SVp_IOK) {
2841 (void)SvIOK_on(dstr);
2842 SvIVX(dstr) = SvIVX(sstr);
2843 if (sflags & SVf_IVisUV)
2844 SvIsUV_on(dstr);
2845 }
2846 if (SvAMAGIC(sstr)) {
2847 SvAMAGIC_on(dstr);
2848 }
2849 }
2850 else if (sflags & SVp_POK) {
2851
2852 /*
2853 * Check to see if we can just swipe the string. If so, it's a
2854 * possible small lose on short strings, but a big win on long ones.
2855 * It might even be a win on short strings if SvPVX(dstr)
2856 * has to be allocated and SvPVX(sstr) has to be freed.
2857 */
2858
2859 if (SvTEMP(sstr) && /* slated for free anyway? */
2860 SvREFCNT(sstr) == 1 && /* and no other references to it? */
2861 !(sflags & SVf_OOK)) /* and not involved in OOK hack? */
2862 {
2863 if (SvPVX(dstr)) { /* we know that dtype >= SVt_PV */
2864 if (SvOOK(dstr)) {
2865 SvFLAGS(dstr) &= ~SVf_OOK;
2866 Safefree(SvPVX(dstr) - SvIVX(dstr));
2867 }
2868 else if (SvLEN(dstr))
2869 Safefree(SvPVX(dstr));
2870 }
2871 (void)SvPOK_only(dstr);
2872 SvPV_set(dstr, SvPVX(sstr));
2873 SvLEN_set(dstr, SvLEN(sstr));
2874 SvCUR_set(dstr, SvCUR(sstr));
2875
2876 SvTEMP_off(dstr);
2877 (void)SvOK_off(sstr); /* NOTE: nukes most SvFLAGS on sstr */
2878 SvPV_set(sstr, Nullch);
2879 SvLEN_set(sstr, 0);
2880 SvCUR_set(sstr, 0);
2881 SvTEMP_off(sstr);
2882 }
2883 else { /* have to copy actual string */
2884 STRLEN len = SvCUR(sstr);
2885
2886 SvGROW(dstr, len + 1); /* inlined from sv_setpvn */
2887 Move(SvPVX(sstr),SvPVX(dstr),len,char);
2888 SvCUR_set(dstr, len);
2889 *SvEND(dstr) = '\0';
2890 (void)SvPOK_only(dstr);
2891 }
2892 if ((sflags & SVf_UTF8) && !IN_BYTE)
2893 SvUTF8_on(dstr);
2894 /*SUPPRESS 560*/
2895 if (sflags & SVp_NOK) {
2896 SvNOK_on(dstr);
2897 SvNVX(dstr) = SvNVX(sstr);
2898 }
2899 if (sflags & SVp_IOK) {
2900 (void)SvIOK_on(dstr);
2901 SvIVX(dstr) = SvIVX(sstr);
2902 if (sflags & SVf_IVisUV)
2903 SvIsUV_on(dstr);
2904 }
2905 }
2906 else if (sflags & SVp_NOK) {
2907 SvNVX(dstr) = SvNVX(sstr);
2908 (void)SvNOK_only(dstr);
2909 if (sflags & SVf_IOK) {
2910 (void)SvIOK_on(dstr);
2911 SvIVX(dstr) = SvIVX(sstr);
2912 /* XXXX Do we want to set IsUV for IV(ROK)? Be extra safe... */
2913 if (sflags & SVf_IVisUV)
2914 SvIsUV_on(dstr);
2915 }
2916 }
2917 else if (sflags & SVp_IOK) {
2918 (void)SvIOK_only(dstr);
2919 SvIVX(dstr) = SvIVX(sstr);
2920 if (sflags & SVf_IVisUV)
2921 SvIsUV_on(dstr);
2922 }
2923 else {
2924 if (dtype == SVt_PVGV) {
2925 if (ckWARN(WARN_MISC))
2926 Perl_warner(aTHX_ WARN_MISC, "Undefined value assigned to typeglob");
2927 }
2928 else
2929 (void)SvOK_off(dstr);
2930 }
2931 SvTAINT(dstr);
2932}
2933
2934/*
2935=for apidoc sv_setsv_mg
2936
2937Like C<sv_setsv>, but also handles 'set' magic.
2938
2939=cut
2940*/
2941
2942void
2943Perl_sv_setsv_mg(pTHX_ SV *dstr, register SV *sstr)
2944{
2945 sv_setsv(dstr,sstr);
2946 SvSETMAGIC(dstr);
2947}
2948
2949/*
2950=for apidoc sv_setpvn
2951
2952Copies a string into an SV. The C<len> parameter indicates the number of
2953bytes to be copied. Does not handle 'set' magic. See C<sv_setpvn_mg>.
2954
2955=cut
2956*/
2957
2958void
2959Perl_sv_setpvn(pTHX_ register SV *sv, register const char *ptr, register STRLEN len)
2960{
2961 register char *dptr;
2962 assert(len >= 0); /* STRLEN is probably unsigned, so this may
2963 elicit a warning, but it won't hurt. */
2964 SV_CHECK_THINKFIRST(sv);
2965 if (!ptr) {
2966 (void)SvOK_off(sv);
2967 return;
2968 }
2969 (void)SvUPGRADE(sv, SVt_PV);
2970
2971 SvGROW(sv, len + 1);
2972 dptr = SvPVX(sv);
2973 Move(ptr,dptr,len,char);
2974 dptr[len] = '\0';
2975 SvCUR_set(sv, len);
2976 (void)SvPOK_only(sv); /* validate pointer */
2977 SvTAINT(sv);
2978}
2979
2980/*
2981=for apidoc sv_setpvn_mg
2982
2983Like C<sv_setpvn>, but also handles 'set' magic.
2984
2985=cut
2986*/
2987
2988void
2989Perl_sv_setpvn_mg(pTHX_ register SV *sv, register const char *ptr, register STRLEN len)
2990{
2991 sv_setpvn(sv,ptr,len);
2992 SvSETMAGIC(sv);
2993}
2994
2995/*
2996=for apidoc sv_setpv
2997
2998Copies a string into an SV. The string must be null-terminated. Does not
2999handle 'set' magic. See C<sv_setpv_mg>.
3000
3001=cut
3002*/
3003
3004void
3005Perl_sv_setpv(pTHX_ register SV *sv, register const char *ptr)
3006{
3007 register STRLEN len;
3008
3009 SV_CHECK_THINKFIRST(sv);
3010 if (!ptr) {
3011 (void)SvOK_off(sv);
3012 return;
3013 }
3014 len = strlen(ptr);
3015 (void)SvUPGRADE(sv, SVt_PV);
3016
3017 SvGROW(sv, len + 1);
3018 Move(ptr,SvPVX(sv),len+1,char);
3019 SvCUR_set(sv, len);
3020 (void)SvPOK_only(sv); /* validate pointer */
3021 SvTAINT(sv);
3022}
3023
3024/*
3025=for apidoc sv_setpv_mg
3026
3027Like C<sv_setpv>, but also handles 'set' magic.
3028
3029=cut
3030*/
3031
3032void
3033Perl_sv_setpv_mg(pTHX_ register SV *sv, register const char *ptr)
3034{
3035 sv_setpv(sv,ptr);
3036 SvSETMAGIC(sv);
3037}
3038
3039/*
3040=for apidoc sv_usepvn
3041
3042Tells an SV to use C<ptr> to find its string value. Normally the string is
3043stored inside the SV but sv_usepvn allows the SV to use an outside string.
3044The C<ptr> should point to memory that was allocated by C<malloc>. The
3045string length, C<len>, must be supplied. This function will realloc the
3046memory pointed to by C<ptr>, so that pointer should not be freed or used by
3047the programmer after giving it to sv_usepvn. Does not handle 'set' magic.
3048See C<sv_usepvn_mg>.
3049
3050=cut
3051*/
3052
3053void
3054Perl_sv_usepvn(pTHX_ register SV *sv, register char *ptr, register STRLEN len)
3055{
3056 SV_CHECK_THINKFIRST(sv);
3057 (void)SvUPGRADE(sv, SVt_PV);
3058 if (!ptr) {
3059 (void)SvOK_off(sv);
3060 return;
3061 }
3062 (void)SvOOK_off(sv);
3063 if (SvPVX(sv) && SvLEN(sv))
3064 Safefree(SvPVX(sv));
3065 Renew(ptr, len+1, char);
3066 SvPVX(sv) = ptr;
3067 SvCUR_set(sv, len);
3068 SvLEN_set(sv, len+1);
3069 *SvEND(sv) = '\0';
3070 (void)SvPOK_only(sv); /* validate pointer */
3071 SvTAINT(sv);
3072}
3073
3074/*
3075=for apidoc sv_usepvn_mg
3076
3077Like C<sv_usepvn>, but also handles 'set' magic.
3078
3079=cut
3080*/
3081
3082void
3083Perl_sv_usepvn_mg(pTHX_ register SV *sv, register char *ptr, register STRLEN len)
3084{
3085 sv_usepvn(sv,ptr,len);
3086 SvSETMAGIC(sv);
3087}
3088
3089void
3090Perl_sv_force_normal(pTHX_ register SV *sv)
3091{
3092 if (SvREADONLY(sv)) {
3093 dTHR;
3094 if (PL_curcop != &PL_compiling)
3095 Perl_croak(aTHX_ PL_no_modify);
3096 }
3097 if (SvROK(sv))
3098 sv_unref(sv);
3099 else if (SvFAKE(sv) && SvTYPE(sv) == SVt_PVGV)
3100 sv_unglob(sv);
3101}
3102
3103/*
3104=for apidoc sv_chop
3105
3106Efficient removal of characters from the beginning of the string buffer.
3107SvPOK(sv) must be true and the C<ptr> must be a pointer to somewhere inside
3108the string buffer. The C<ptr> becomes the first character of the adjusted
3109string.
3110
3111=cut
3112*/
3113
3114void
3115Perl_sv_chop(pTHX_ register SV *sv, register char *ptr) /* like set but assuming ptr is in sv */
3116
3117
3118{
3119 register STRLEN delta;
3120
3121 if (!ptr || !SvPOKp(sv))
3122 return;
3123 SV_CHECK_THINKFIRST(sv);
3124 if (SvTYPE(sv) < SVt_PVIV)
3125 sv_upgrade(sv,SVt_PVIV);
3126
3127 if (!SvOOK(sv)) {
3128 if (!SvLEN(sv)) { /* make copy of shared string */
3129 char *pvx = SvPVX(sv);
3130 STRLEN len = SvCUR(sv);
3131 SvGROW(sv, len + 1);
3132 Move(pvx,SvPVX(sv),len,char);
3133 *SvEND(sv) = '\0';
3134 }
3135 SvIVX(sv) = 0;
3136 SvFLAGS(sv) |= SVf_OOK;
3137 }
3138 SvFLAGS(sv) &= ~(SVf_IOK|SVf_NOK|SVp_IOK|SVp_NOK|SVf_IVisUV);
3139 delta = ptr - SvPVX(sv);
3140 SvLEN(sv) -= delta;
3141 SvCUR(sv) -= delta;
3142 SvPVX(sv) += delta;
3143 SvIVX(sv) += delta;
3144}
3145
3146/*
3147=for apidoc sv_catpvn
3148
3149Concatenates the string onto the end of the string which is in the SV. The
3150C<len> indicates number of bytes to copy. Handles 'get' magic, but not
3151'set' magic. See C<sv_catpvn_mg>.
3152
3153=cut
3154*/
3155
3156void
3157Perl_sv_catpvn(pTHX_ register SV *sv, register const char *ptr, register STRLEN len)
3158{
3159 STRLEN tlen;
3160 char *junk;
3161
3162 junk = SvPV_force(sv, tlen);
3163 SvGROW(sv, tlen + len + 1);
3164 if (ptr == junk)
3165 ptr = SvPVX(sv);
3166 Move(ptr,SvPVX(sv)+tlen,len,char);
3167 SvCUR(sv) += len;
3168 *SvEND(sv) = '\0';
3169 (void)SvPOK_only_UTF8(sv); /* validate pointer */
3170 SvTAINT(sv);
3171}
3172
3173/*
3174=for apidoc sv_catpvn_mg
3175
3176Like C<sv_catpvn>, but also handles 'set' magic.
3177
3178=cut
3179*/
3180
3181void
3182Perl_sv_catpvn_mg(pTHX_ register SV *sv, register const char *ptr, register STRLEN len)
3183{
3184 sv_catpvn(sv,ptr,len);
3185 SvSETMAGIC(sv);
3186}
3187
3188/*
3189=for apidoc sv_catsv
3190
3191Concatenates the string from SV C<ssv> onto the end of the string in SV
3192C<dsv>. Handles 'get' magic, but not 'set' magic. See C<sv_catsv_mg>.
3193
3194=cut
3195*/
3196
3197void
3198Perl_sv_catsv(pTHX_ SV *dstr, register SV *sstr)
3199{
3200 char *s;
3201 STRLEN len;
3202 if (!sstr)
3203 return;
3204 if ((s = SvPV(sstr, len))) {
3205 if (DO_UTF8(sstr)) {
3206 sv_utf8_upgrade(dstr);
3207 sv_catpvn(dstr,s,len);
3208 SvUTF8_on(dstr);
3209 }
3210 else
3211 sv_catpvn(dstr,s,len);
3212 }
3213}
3214
3215/*
3216=for apidoc sv_catsv_mg
3217
3218Like C<sv_catsv>, but also handles 'set' magic.
3219
3220=cut
3221*/
3222
3223void
3224Perl_sv_catsv_mg(pTHX_ SV *dstr, register SV *sstr)
3225{
3226 sv_catsv(dstr,sstr);
3227 SvSETMAGIC(dstr);
3228}
3229
3230/*
3231=for apidoc sv_catpv
3232
3233Concatenates the string onto the end of the string which is in the SV.
3234Handles 'get' magic, but not 'set' magic. See C<sv_catpv_mg>.
3235
3236=cut
3237*/
3238
3239void
3240Perl_sv_catpv(pTHX_ register SV *sv, register const char *ptr)
3241{
3242 register STRLEN len;
3243 STRLEN tlen;
3244 char *junk;
3245
3246 if (!ptr)
3247 return;
3248 junk = SvPV_force(sv, tlen);
3249 len = strlen(ptr);
3250 SvGROW(sv, tlen + len + 1);
3251 if (ptr == junk)
3252 ptr = SvPVX(sv);
3253 Move(ptr,SvPVX(sv)+tlen,len+1,char);
3254 SvCUR(sv) += len;
3255 (void)SvPOK_only_UTF8(sv); /* validate pointer */
3256 SvTAINT(sv);
3257}
3258
3259/*
3260=for apidoc sv_catpv_mg
3261
3262Like C<sv_catpv>, but also handles 'set' magic.
3263
3264=cut
3265*/
3266
3267void
3268Perl_sv_catpv_mg(pTHX_ register SV *sv, register const char *ptr)
3269{
3270 sv_catpv(sv,ptr);
3271 SvSETMAGIC(sv);
3272}
3273
3274SV *
3275Perl_newSV(pTHX_ STRLEN len)
3276{
3277 register SV *sv;
3278
3279 new_SV(sv);
3280 if (len) {
3281 sv_upgrade(sv, SVt_PV);
3282 SvGROW(sv, len + 1);
3283 }
3284 return sv;
3285}
3286
3287/* name is assumed to contain an SV* if (name && namelen == HEf_SVKEY) */
3288
3289/*
3290=for apidoc sv_magic
3291
3292Adds magic to an SV.
3293
3294=cut
3295*/
3296
3297void
3298Perl_sv_magic(pTHX_ register SV *sv, SV *obj, int how, const char *name, I32 namlen)
3299{
3300 MAGIC* mg;
3301
3302 if (SvREADONLY(sv)) {
3303 dTHR;
3304 if (PL_curcop != &PL_compiling && !strchr("gBf", how))
3305 Perl_croak(aTHX_ PL_no_modify);
3306 }
3307 if (SvMAGICAL(sv) || (how == 't' && SvTYPE(sv) >= SVt_PVMG)) {
3308 if (SvMAGIC(sv) && (mg = mg_find(sv, how))) {
3309 if (how == 't')
3310 mg->mg_len |= 1;
3311 return;
3312 }
3313 }
3314 else {
3315 (void)SvUPGRADE(sv, SVt_PVMG);
3316 }
3317 Newz(702,mg, 1, MAGIC);
3318 mg->mg_moremagic = SvMAGIC(sv);
3319
3320 SvMAGIC(sv) = mg;
3321 if (!obj || obj == sv || how == '#' || how == 'r')
3322 mg->mg_obj = obj;
3323 else {
3324 dTHR;
3325 mg->mg_obj = SvREFCNT_inc(obj);
3326 mg->mg_flags |= MGf_REFCOUNTED;
3327 }
3328 mg->mg_type = how;
3329 mg->mg_len = namlen;
3330 if (name)
3331 if (namlen >= 0)
3332 mg->mg_ptr = savepvn(name, namlen);
3333 else if (namlen == HEf_SVKEY)
3334 mg->mg_ptr = (char*)SvREFCNT_inc((SV*)name);
3335
3336 switch (how) {
3337 case 0:
3338 mg->mg_virtual = &PL_vtbl_sv;
3339 break;
3340 case 'A':
3341 mg->mg_virtual = &PL_vtbl_amagic;
3342 break;
3343 case 'a':
3344 mg->mg_virtual = &PL_vtbl_amagicelem;
3345 break;
3346 case 'c':
3347 mg->mg_virtual = 0;
3348 break;
3349 case 'B':
3350 mg->mg_virtual = &PL_vtbl_bm;
3351 break;
3352 case 'D':
3353 mg->mg_virtual = &PL_vtbl_regdata;
3354 break;
3355 case 'd':
3356 mg->mg_virtual = &PL_vtbl_regdatum;
3357 break;
3358 case 'E':
3359 mg->mg_virtual = &PL_vtbl_env;
3360 break;
3361 case 'f':
3362 mg->mg_virtual = &PL_vtbl_fm;
3363 break;
3364 case 'e':
3365 mg->mg_virtual = &PL_vtbl_envelem;
3366 break;
3367 case 'g':
3368 mg->mg_virtual = &PL_vtbl_mglob;
3369 break;
3370 case 'I':
3371 mg->mg_virtual = &PL_vtbl_isa;
3372 break;
3373 case 'i':
3374 mg->mg_virtual = &PL_vtbl_isaelem;
3375 break;
3376 case 'k':
3377 mg->mg_virtual = &PL_vtbl_nkeys;
3378 break;
3379 case 'L':
3380 SvRMAGICAL_on(sv);
3381 mg->mg_virtual = 0;
3382 break;
3383 case 'l':
3384 mg->mg_virtual = &PL_vtbl_dbline;
3385 break;
3386#ifdef USE_THREADS
3387 case 'm':
3388 mg->mg_virtual = &PL_vtbl_mutex;
3389 break;
3390#endif /* USE_THREADS */
3391#ifdef USE_LOCALE_COLLATE
3392 case 'o':
3393 mg->mg_virtual = &PL_vtbl_collxfrm;
3394 break;
3395#endif /* USE_LOCALE_COLLATE */
3396 case 'P':
3397 mg->mg_virtual = &PL_vtbl_pack;
3398 break;
3399 case 'p':
3400 case 'q':
3401 mg->mg_virtual = &PL_vtbl_packelem;
3402 break;
3403 case 'r':
3404 mg->mg_virtual = &PL_vtbl_regexp;
3405 break;
3406 case 'S':
3407 mg->mg_virtual = &PL_vtbl_sig;
3408 break;
3409 case 's':
3410 mg->mg_virtual = &PL_vtbl_sigelem;
3411 break;
3412 case 't':
3413 mg->mg_virtual = &PL_vtbl_taint;
3414 mg->mg_len = 1;
3415 break;
3416 case 'U':
3417 mg->mg_virtual = &PL_vtbl_uvar;
3418 break;
3419 case 'v':
3420 mg->mg_virtual = &PL_vtbl_vec;
3421 break;
3422 case 'x':
3423 mg->mg_virtual = &PL_vtbl_substr;
3424 break;
3425 case 'y':
3426 mg->mg_virtual = &PL_vtbl_defelem;
3427 break;
3428 case '*':
3429 mg->mg_virtual = &PL_vtbl_glob;
3430 break;
3431 case '#':
3432 mg->mg_virtual = &PL_vtbl_arylen;
3433 break;
3434 case '.':
3435 mg->mg_virtual = &PL_vtbl_pos;
3436 break;
3437 case '<':
3438 mg->mg_virtual = &PL_vtbl_backref;
3439 break;
3440 case '~': /* Reserved for use by extensions not perl internals. */
3441 /* Useful for attaching extension internal data to perl vars. */
3442 /* Note that multiple extensions may clash if magical scalars */
3443 /* etc holding private data from one are passed to another. */
3444 SvRMAGICAL_on(sv);
3445 break;
3446 default:
3447 Perl_croak(aTHX_ "Don't know how to handle magic of type '%c'", how);
3448 }
3449 mg_magical(sv);
3450 if (SvGMAGICAL(sv))
3451 SvFLAGS(sv) &= ~(SVf_IOK|SVf_NOK|SVf_POK);
3452}
3453
3454int
3455Perl_sv_unmagic(pTHX_ SV *sv, int type)
3456{
3457 MAGIC* mg;
3458 MAGIC** mgp;
3459 if (SvTYPE(sv) < SVt_PVMG || !SvMAGIC(sv))
3460 return 0;
3461 mgp = &SvMAGIC(sv);
3462 for (mg = *mgp; mg; mg = *mgp) {
3463 if (mg->mg_type == type) {
3464 MGVTBL* vtbl = mg->mg_virtual;
3465 *mgp = mg->mg_moremagic;
3466 if (vtbl && vtbl->svt_free)
3467 CALL_FPTR(vtbl->svt_free)(aTHX_ sv, mg);
3468 if (mg->mg_ptr && mg->mg_type != 'g')
3469 if (mg->mg_len >= 0)
3470 Safefree(mg->mg_ptr);
3471 else if (mg->mg_len == HEf_SVKEY)
3472 SvREFCNT_dec((SV*)mg->mg_ptr);
3473 if (mg->mg_flags & MGf_REFCOUNTED)
3474 SvREFCNT_dec(mg->mg_obj);
3475 Safefree(mg);
3476 }
3477 else
3478 mgp = &mg->mg_moremagic;
3479 }
3480 if (!SvMAGIC(sv)) {
3481 SvMAGICAL_off(sv);
3482 SvFLAGS(sv) |= (SvFLAGS(sv) & (SVp_IOK|SVp_NOK|SVp_POK)) >> PRIVSHIFT;
3483 }
3484
3485 return 0;
3486}
3487
3488SV *
3489Perl_sv_rvweaken(pTHX_ SV *sv)
3490{
3491 SV *tsv;
3492 if (!SvOK(sv)) /* let undefs pass */
3493 return sv;
3494 if (!SvROK(sv))
3495 Perl_croak(aTHX_ "Can't weaken a nonreference");
3496 else if (SvWEAKREF(sv)) {
3497 dTHR;
3498 if (ckWARN(WARN_MISC))
3499 Perl_warner(aTHX_ WARN_MISC, "Reference is already weak");
3500 return sv;
3501 }
3502 tsv = SvRV(sv);
3503 sv_add_backref(tsv, sv);
3504 SvWEAKREF_on(sv);
3505 SvREFCNT_dec(tsv);
3506 return sv;
3507}
3508
3509STATIC void
3510S_sv_add_backref(pTHX_ SV *tsv, SV *sv)
3511{
3512 AV *av;
3513 MAGIC *mg;
3514 if (SvMAGICAL(tsv) && (mg = mg_find(tsv, '<')))
3515 av = (AV*)mg->mg_obj;
3516 else {
3517 av = newAV();
3518 sv_magic(tsv, (SV*)av, '<', NULL, 0);
3519 SvREFCNT_dec(av); /* for sv_magic */
3520 }
3521 av_push(av,sv);
3522}
3523
3524STATIC void
3525S_sv_del_backref(pTHX_ SV *sv)
3526{
3527 AV *av;
3528 SV **svp;
3529 I32 i;
3530 SV *tsv = SvRV(sv);
3531 MAGIC *mg;
3532 if (!SvMAGICAL(tsv) || !(mg = mg_find(tsv, '<')))
3533 Perl_croak(aTHX_ "panic: del_backref");
3534 av = (AV *)mg->mg_obj;
3535 svp = AvARRAY(av);
3536 i = AvFILLp(av);
3537 while (i >= 0) {
3538 if (svp[i] == sv) {
3539 svp[i] = &PL_sv_undef; /* XXX */
3540 }
3541 i--;
3542 }
3543}
3544
3545/*
3546=for apidoc sv_insert
3547
3548Inserts a string at the specified offset/length within the SV. Similar to
3549the Perl substr() function.
3550
3551=cut
3552*/
3553
3554void
3555Perl_sv_insert(pTHX_ SV *bigstr, STRLEN offset, STRLEN len, char *little, STRLEN littlelen)
3556{
3557 register char *big;
3558 register char *mid;
3559 register char *midend;
3560 register char *bigend;
3561 register I32 i;
3562 STRLEN curlen;
3563
3564
3565 if (!bigstr)
3566 Perl_croak(aTHX_ "Can't modify non-existent substring");
3567 SvPV_force(bigstr, curlen);
3568 (void)SvPOK_only_UTF8(bigstr);
3569 if (offset + len > curlen) {
3570 SvGROW(bigstr, offset+len+1);
3571 Zero(SvPVX(bigstr)+curlen, offset+len-curlen, char);
3572 SvCUR_set(bigstr, offset+len);
3573 }
3574
3575 SvTAINT(bigstr);
3576 i = littlelen - len;
3577 if (i > 0) { /* string might grow */
3578 big = SvGROW(bigstr, SvCUR(bigstr) + i + 1);
3579 mid = big + offset + len;
3580 midend = bigend = big + SvCUR(bigstr);
3581 bigend += i;
3582 *bigend = '\0';
3583 while (midend > mid) /* shove everything down */
3584 *--bigend = *--midend;
3585 Move(little,big+offset,littlelen,char);
3586 SvCUR(bigstr) += i;
3587 SvSETMAGIC(bigstr);
3588 return;
3589 }
3590 else if (i == 0) {
3591 Move(little,SvPVX(bigstr)+offset,len,char);
3592 SvSETMAGIC(bigstr);
3593 return;
3594 }
3595
3596 big = SvPVX(bigstr);
3597 mid = big + offset;
3598 midend = mid + len;
3599 bigend = big + SvCUR(bigstr);
3600
3601 if (midend > bigend)
3602 Perl_croak(aTHX_ "panic: sv_insert");
3603
3604 if (mid - big > bigend - midend) { /* faster to shorten from end */
3605 if (littlelen) {
3606 Move(little, mid, littlelen,char);
3607 mid += littlelen;
3608 }
3609 i = bigend - midend;
3610 if (i > 0) {
3611 Move(midend, mid, i,char);
3612 mid += i;
3613 }
3614 *mid = '\0';
3615 SvCUR_set(bigstr, mid - big);
3616 }
3617 /*SUPPRESS 560*/
3618 else if ((i = mid - big)) { /* faster from front */
3619 midend -= littlelen;
3620 mid = midend;
3621 sv_chop(bigstr,midend-i);
3622 big += i;
3623 while (i--)
3624 *--midend = *--big;
3625 if (littlelen)
3626 Move(little, mid, littlelen,char);
3627 }
3628 else if (littlelen) {
3629 midend -= littlelen;
3630 sv_chop(bigstr,midend);
3631 Move(little,midend,littlelen,char);
3632 }
3633 else {
3634 sv_chop(bigstr,midend);
3635 }
3636 SvSETMAGIC(bigstr);
3637}
3638
3639/* make sv point to what nstr did */
3640
3641void
3642Perl_sv_replace(pTHX_ register SV *sv, register SV *nsv)
3643{
3644 dTHR;
3645 U32 refcnt = SvREFCNT(sv);
3646 SV_CHECK_THINKFIRST(sv);
3647 if (SvREFCNT(nsv) != 1 && ckWARN_d(WARN_INTERNAL))
3648 Perl_warner(aTHX_ WARN_INTERNAL, "Reference miscount in sv_replace()");
3649 if (SvMAGICAL(sv)) {
3650 if (SvMAGICAL(nsv))
3651 mg_free(nsv);
3652 else
3653 sv_upgrade(nsv, SVt_PVMG);
3654 SvMAGIC(nsv) = SvMAGIC(sv);
3655 SvFLAGS(nsv) |= SvMAGICAL(sv);
3656 SvMAGICAL_off(sv);
3657 SvMAGIC(sv) = 0;
3658 }
3659 SvREFCNT(sv) = 0;
3660 sv_clear(sv);
3661 assert(!SvREFCNT(sv));
3662 StructCopy(nsv,sv,SV);
3663 SvREFCNT(sv) = refcnt;
3664 SvFLAGS(nsv) |= SVTYPEMASK; /* Mark as freed */
3665 del_SV(nsv);
3666}
3667
3668void
3669Perl_sv_clear(pTHX_ register SV *sv)
3670{
3671 HV* stash;
3672 assert(sv);
3673 assert(SvREFCNT(sv) == 0);
3674
3675 if (SvOBJECT(sv)) {
3676 dTHR;
3677 if (PL_defstash) { /* Still have a symbol table? */
3678 djSP;
3679 GV* destructor;
3680 SV tmpref;
3681
3682 Zero(&tmpref, 1, SV);
3683 sv_upgrade(&tmpref, SVt_RV);
3684 SvROK_on(&tmpref);
3685 SvREADONLY_on(&tmpref); /* DESTROY() could be naughty */
3686 SvREFCNT(&tmpref) = 1;
3687
3688 do {
3689 stash = SvSTASH(sv);
3690 destructor = gv_fetchmethod(SvSTASH(sv), "DESTROY");
3691 if (destructor) {
3692 ENTER;
3693 PUSHSTACKi(PERLSI_DESTROY);
3694 SvRV(&tmpref) = SvREFCNT_inc(sv);
3695 EXTEND(SP, 2);
3696 PUSHMARK(SP);
3697 PUSHs(&tmpref);
3698 PUTBACK;
3699 call_sv((SV*)GvCV(destructor),
3700 G_DISCARD|G_EVAL|G_KEEPERR);
3701 SvREFCNT(sv)--;
3702 POPSTACK;
3703 SPAGAIN;
3704 LEAVE;
3705 }
3706 } while (SvOBJECT(sv) && SvSTASH(sv) != stash);
3707
3708 del_XRV(SvANY(&tmpref));
3709
3710 if (SvREFCNT(sv)) {
3711 if (PL_in_clean_objs)
3712 Perl_croak(aTHX_ "DESTROY created new reference to dead object '%s'",
3713 HvNAME(stash));
3714 /* DESTROY gave object new lease on life */
3715 return;
3716 }
3717 }
3718
3719 if (SvOBJECT(sv)) {
3720 SvREFCNT_dec(SvSTASH(sv)); /* possibly of changed persuasion */
3721 SvOBJECT_off(sv); /* Curse the object. */
3722 if (SvTYPE(sv) != SVt_PVIO)
3723 --PL_sv_objcount; /* XXX Might want something more general */
3724 }
3725 }
3726 if (SvTYPE(sv) >= SVt_PVMG && SvMAGIC(sv))
3727 mg_free(sv);
3728 stash = NULL;
3729 switch (SvTYPE(sv)) {
3730 case SVt_PVIO:
3731 if (IoIFP(sv) &&
3732 IoIFP(sv) != PerlIO_stdin() &&
3733 IoIFP(sv) != PerlIO_stdout() &&
3734 IoIFP(sv) != PerlIO_stderr())
3735 {
3736 io_close((IO*)sv, FALSE);
3737 }
3738 if (IoDIRP(sv) && !(IoFLAGS(sv) & IOf_FAKE_DIRP))
3739 PerlDir_close(IoDIRP(sv));
3740 IoDIRP(sv) = (DIR*)NULL;
3741 Safefree(IoTOP_NAME(sv));
3742 Safefree(IoFMT_NAME(sv));
3743 Safefree(IoBOTTOM_NAME(sv));
3744 /* FALL THROUGH */
3745 case SVt_PVBM:
3746 goto freescalar;
3747 case SVt_PVCV:
3748 case SVt_PVFM:
3749 cv_undef((CV*)sv);
3750 goto freescalar;
3751 case SVt_PVHV:
3752 hv_undef((HV*)sv);
3753 break;
3754 case SVt_PVAV:
3755 av_undef((AV*)sv);
3756 break;
3757 case SVt_PVLV:
3758 SvREFCNT_dec(LvTARG(sv));
3759 goto freescalar;
3760 case SVt_PVGV:
3761 gp_free((GV*)sv);
3762 Safefree(GvNAME(sv));
3763 /* cannot decrease stash refcount yet, as we might recursively delete
3764 ourselves when the refcnt drops to zero. Delay SvREFCNT_dec
3765 of stash until current sv is completely gone.
3766 -- JohnPC, 27 Mar 1998 */
3767 stash = GvSTASH(sv);
3768 /* FALL THROUGH */
3769 case SVt_PVMG:
3770 case SVt_PVNV:
3771 case SVt_PVIV:
3772 freescalar:
3773 (void)SvOOK_off(sv);
3774 /* FALL THROUGH */
3775 case SVt_PV:
3776 case SVt_RV:
3777 if (SvROK(sv)) {
3778 if (SvWEAKREF(sv))
3779 sv_del_backref(sv);
3780 else
3781 SvREFCNT_dec(SvRV(sv));
3782 }
3783 else if (SvPVX(sv) && SvLEN(sv))
3784 Safefree(SvPVX(sv));
3785 break;
3786/*
3787 case SVt_NV:
3788 case SVt_IV:
3789 case SVt_NULL:
3790 break;
3791*/
3792 }
3793
3794 switch (SvTYPE(sv)) {
3795 case SVt_NULL:
3796 break;
3797 case SVt_IV:
3798 del_XIV(SvANY(sv));
3799 break;
3800 case SVt_NV:
3801 del_XNV(SvANY(sv));
3802 break;
3803 case SVt_RV:
3804 del_XRV(SvANY(sv));
3805 break;
3806 case SVt_PV:
3807 del_XPV(SvANY(sv));
3808 break;
3809 case SVt_PVIV:
3810 del_XPVIV(SvANY(sv));
3811 break;
3812 case SVt_PVNV:
3813 del_XPVNV(SvANY(sv));
3814 break;
3815 case SVt_PVMG:
3816 del_XPVMG(SvANY(sv));
3817 break;
3818 case SVt_PVLV:
3819 del_XPVLV(SvANY(sv));
3820 break;
3821 case SVt_PVAV:
3822 del_XPVAV(SvANY(sv));
3823 break;
3824 case SVt_PVHV:
3825 del_XPVHV(SvANY(sv));
3826 break;
3827 case SVt_PVCV:
3828 del_XPVCV(SvANY(sv));
3829 break;
3830 case SVt_PVGV:
3831 del_XPVGV(SvANY(sv));
3832 /* code duplication for increased performance. */
3833 SvFLAGS(sv) &= SVf_BREAK;
3834 SvFLAGS(sv) |= SVTYPEMASK;
3835 /* decrease refcount of the stash that owns this GV, if any */
3836 if (stash)
3837 SvREFCNT_dec(stash);
3838 return; /* not break, SvFLAGS reset already happened */
3839 case SVt_PVBM:
3840 del_XPVBM(SvANY(sv));
3841 break;
3842 case SVt_PVFM:
3843 del_XPVFM(SvANY(sv));
3844 break;
3845 case SVt_PVIO:
3846 del_XPVIO(SvANY(sv));
3847 break;
3848 }
3849 SvFLAGS(sv) &= SVf_BREAK;
3850 SvFLAGS(sv) |= SVTYPEMASK;
3851}
3852
3853SV *
3854Perl_sv_newref(pTHX_ SV *sv)
3855{
3856 if (sv)
3857 ATOMIC_INC(SvREFCNT(sv));
3858 return sv;
3859}
3860
3861void
3862Perl_sv_free(pTHX_ SV *sv)
3863{
3864 dTHR;
3865 int refcount_is_zero;
3866
3867 if (!sv)
3868 return;
3869 if (SvREFCNT(sv) == 0) {
3870 if (SvFLAGS(sv) & SVf_BREAK)
3871 return;
3872 if (PL_in_clean_all) /* All is fair */
3873 return;
3874 if (SvREADONLY(sv) && SvIMMORTAL(sv)) {
3875 /* make sure SvREFCNT(sv)==0 happens very seldom */
3876 SvREFCNT(sv) = (~(U32)0)/2;
3877 return;
3878 }
3879 if (ckWARN_d(WARN_INTERNAL))
3880 Perl_warner(aTHX_ WARN_INTERNAL, "Attempt to free unreferenced scalar");
3881 return;
3882 }
3883 ATOMIC_DEC_AND_TEST(refcount_is_zero, SvREFCNT(sv));
3884 if (!refcount_is_zero)
3885 return;
3886#ifdef DEBUGGING
3887 if (SvTEMP(sv)) {
3888 if (ckWARN_d(WARN_DEBUGGING))
3889 Perl_warner(aTHX_ WARN_DEBUGGING,
3890 "Attempt to free temp prematurely: SV 0x%"UVxf,
3891 PTR2UV(sv));
3892 return;
3893 }
3894#endif
3895 if (SvREADONLY(sv) && SvIMMORTAL(sv)) {
3896 /* make sure SvREFCNT(sv)==0 happens very seldom */
3897 SvREFCNT(sv) = (~(U32)0)/2;
3898 return;
3899 }
3900 sv_clear(sv);
3901 if (! SvREFCNT(sv))
3902 del_SV(sv);
3903}
3904
3905/*
3906=for apidoc sv_len
3907
3908Returns the length of the string in the SV. See also C<SvCUR>.
3909
3910=cut
3911*/
3912
3913STRLEN
3914Perl_sv_len(pTHX_ register SV *sv)
3915{
3916 char *junk;
3917 STRLEN len;
3918
3919 if (!sv)
3920 return 0;
3921
3922 if (SvGMAGICAL(sv))
3923 len = mg_length(sv);
3924 else
3925 junk = SvPV(sv, len);
3926 return len;
3927}
3928
3929STRLEN
3930Perl_sv_len_utf8(pTHX_ register SV *sv)
3931{
3932 U8 *s;
3933 U8 *send;
3934 STRLEN len;
3935
3936 if (!sv)
3937 return 0;
3938
3939#ifdef NOTYET
3940 if (SvGMAGICAL(sv))
3941 len = mg_length(sv);
3942 else
3943#endif
3944 s = (U8*)SvPV(sv, len);
3945 send = s + len;
3946 len = 0;
3947 while (s < send) {
3948 s += UTF8SKIP(s);
3949 len++;
3950 }
3951 return len;
3952}
3953
3954void
3955Perl_sv_pos_u2b(pTHX_ register SV *sv, I32* offsetp, I32* lenp)
3956{
3957 U8 *start;
3958 U8 *s;
3959 U8 *send;
3960 I32 uoffset = *offsetp;
3961 STRLEN len;
3962
3963 if (!sv)
3964 return;
3965
3966 start = s = (U8*)SvPV(sv, len);
3967 send = s + len;
3968 while (s < send && uoffset--)
3969 s += UTF8SKIP(s);
3970 if (s >= send)
3971 s = send;
3972 *offsetp = s - start;
3973 if (lenp) {
3974 I32 ulen = *lenp;
3975 start = s;
3976 while (s < send && ulen--)
3977 s += UTF8SKIP(s);
3978 if (s >= send)
3979 s = send;
3980 *lenp = s - start;
3981 }
3982 return;
3983}
3984
3985void
3986Perl_sv_pos_b2u(pTHX_ register SV *sv, I32* offsetp)
3987{
3988 U8 *s;
3989 U8 *send;
3990 STRLEN len;
3991
3992 if (!sv)
3993 return;
3994
3995 s = (U8*)SvPV(sv, len);
3996 if (len < *offsetp)
3997 Perl_croak(aTHX_ "panic: bad byte offset");
3998 send = s + *offsetp;
3999 len = 0;
4000 while (s < send) {
4001 s += UTF8SKIP(s);
4002 ++len;
4003 }
4004 if (s != send) {
4005 dTHR;
4006 if (ckWARN_d(WARN_UTF8))
4007 Perl_warner(aTHX_ WARN_UTF8, "Malformed UTF-8 character");
4008 --len;
4009 }
4010 *offsetp = len;
4011 return;
4012}
4013
4014/*
4015=for apidoc sv_eq
4016
4017Returns a boolean indicating whether the strings in the two SVs are
4018identical.
4019
4020=cut
4021*/
4022
4023I32
4024Perl_sv_eq(pTHX_ register SV *str1, register SV *str2)
4025{
4026 char *pv1;
4027 STRLEN cur1;
4028 char *pv2;
4029 STRLEN cur2;
4030
4031 if (!str1) {
4032 pv1 = "";
4033 cur1 = 0;
4034 }
4035 else
4036 pv1 = SvPV(str1, cur1);
4037
4038 if (cur1) {
4039 if (!str2)
4040 return 0;
4041 if (SvUTF8(str1) != SvUTF8(str2) && !IN_BYTE) {
4042 if (SvUTF8(str1)) {
4043 sv_utf8_upgrade(str2);
4044 }
4045 else {
4046 sv_utf8_upgrade(str1);
4047 }
4048 }
4049 }
4050 pv2 = SvPV(str2, cur2);
4051
4052 if (cur1 != cur2)
4053 return 0;
4054
4055 return memEQ(pv1, pv2, cur1);
4056}
4057
4058/*
4059=for apidoc sv_cmp
4060
4061Compares the strings in two SVs. Returns -1, 0, or 1 indicating whether the
4062string in C<sv1> is less than, equal to, or greater than the string in
4063C<sv2>.
4064
4065=cut
4066*/
4067
4068I32
4069Perl_sv_cmp(pTHX_ register SV *str1, register SV *str2)
4070{
4071 STRLEN cur1, cur2;
4072 char *pv1, *pv2;
4073 I32 retval;
4074
4075 if (str1) {
4076 pv1 = SvPV(str1, cur1);
4077 }
4078 else {
4079 cur1 = 0;
4080 }
4081
4082 if (str2) {
4083 if (SvPOK(str2)) {
4084 if (SvPOK(str1) && SvUTF8(str1) != SvUTF8(str2) && !IN_BYTE) {
4085 /* must upgrade other to UTF8 first */
4086 if (SvUTF8(str1)) {
4087 sv_utf8_upgrade(str2);
4088 }
4089 else {
4090 sv_utf8_upgrade(str1);
4091 /* refresh pointer and length */
4092 pv1 = SvPVX(str1);
4093 cur1 = SvCUR(str1);
4094 }
4095 }
4096 pv2 = SvPVX(str2);
4097 cur2 = SvCUR(str2);
4098 }
4099 else {
4100 pv2 = sv_2pv(str2, &cur2);
4101 }
4102 }
4103 else {
4104 cur2 = 0;
4105 }
4106
4107 if (!cur1)
4108 return cur2 ? -1 : 0;
4109
4110 if (!cur2)
4111 return 1;
4112
4113 retval = memcmp((void*)pv1, (void*)pv2, cur1 < cur2 ? cur1 : cur2);
4114
4115 if (retval)
4116 return retval < 0 ? -1 : 1;
4117
4118 if (cur1 == cur2)
4119 return 0;
4120 else
4121 return cur1 < cur2 ? -1 : 1;
4122}
4123
4124I32
4125Perl_sv_cmp_locale(pTHX_ register SV *sv1, register SV *sv2)
4126{
4127#ifdef USE_LOCALE_COLLATE
4128
4129 char *pv1, *pv2;
4130 STRLEN len1, len2;
4131 I32 retval;
4132
4133 if (PL_collation_standard)
4134 goto raw_compare;
4135
4136 len1 = 0;
4137 pv1 = sv1 ? sv_collxfrm(sv1, &len1) : (char *) NULL;
4138 len2 = 0;
4139 pv2 = sv2 ? sv_collxfrm(sv2, &len2) : (char *) NULL;
4140
4141 if (!pv1 || !len1) {
4142 if (pv2 && len2)
4143 return -1;
4144 else
4145 goto raw_compare;
4146 }
4147 else {
4148 if (!pv2 || !len2)
4149 return 1;
4150 }
4151
4152 retval = memcmp((void*)pv1, (void*)pv2, len1 < len2 ? len1 : len2);
4153
4154 if (retval)
4155 return retval < 0 ? -1 : 1;
4156
4157 /*
4158 * When the result of collation is equality, that doesn't mean
4159 * that there are no differences -- some locales exclude some
4160 * characters from consideration. So to avoid false equalities,
4161 * we use the raw string as a tiebreaker.
4162 */
4163
4164 raw_compare:
4165 /* FALL THROUGH */
4166
4167#endif /* USE_LOCALE_COLLATE */
4168
4169 return sv_cmp(sv1, sv2);
4170}
4171
4172#ifdef USE_LOCALE_COLLATE
4173/*
4174 * Any scalar variable may carry an 'o' magic that contains the
4175 * scalar data of the variable transformed to such a format that
4176 * a normal memory comparison can be used to compare the data
4177 * according to the locale settings.
4178 */
4179char *
4180Perl_sv_collxfrm(pTHX_ SV *sv, STRLEN *nxp)
4181{
4182 MAGIC *mg;
4183
4184 mg = SvMAGICAL(sv) ? mg_find(sv, 'o') : (MAGIC *) NULL;
4185 if (!mg || !mg->mg_ptr || *(U32*)mg->mg_ptr != PL_collation_ix) {
4186 char *s, *xf;
4187 STRLEN len, xlen;
4188
4189 if (mg)
4190 Safefree(mg->mg_ptr);
4191 s = SvPV(sv, len);
4192 if ((xf = mem_collxfrm(s, len, &xlen))) {
4193 if (SvREADONLY(sv)) {
4194 SAVEFREEPV(xf);
4195 *nxp = xlen;
4196 return xf + sizeof(PL_collation_ix);
4197 }
4198 if (! mg) {
4199 sv_magic(sv, 0, 'o', 0, 0);
4200 mg = mg_find(sv, 'o');
4201 assert(mg);
4202 }
4203 mg->mg_ptr = xf;
4204 mg->mg_len = xlen;
4205 }
4206 else {
4207 if (mg) {
4208 mg->mg_ptr = NULL;
4209 mg->mg_len = -1;
4210 }
4211 }
4212 }
4213 if (mg && mg->mg_ptr) {
4214 *nxp = mg->mg_len;
4215 return mg->mg_ptr + sizeof(PL_collation_ix);
4216 }
4217 else {
4218 *nxp = 0;
4219 return NULL;
4220 }
4221}
4222
4223#endif /* USE_LOCALE_COLLATE */
4224
4225char *
4226Perl_sv_gets(pTHX_ register SV *sv, register PerlIO *fp, I32 append)
4227{
4228 dTHR;
4229 char *rsptr;
4230 STRLEN rslen;
4231 register STDCHAR rslast;
4232 register STDCHAR *bp;
4233 register I32 cnt;
4234 I32 i;
4235
4236 SV_CHECK_THINKFIRST(sv);
4237 (void)SvUPGRADE(sv, SVt_PV);
4238
4239 SvSCREAM_off(sv);
4240
4241 if (RsSNARF(PL_rs)) {
4242 rsptr = NULL;
4243 rslen = 0;
4244 }
4245 else if (RsRECORD(PL_rs)) {
4246 I32 recsize, bytesread;
4247 char *buffer;
4248
4249 /* Grab the size of the record we're getting */
4250 recsize = SvIV(SvRV(PL_rs));
4251 (void)SvPOK_only(sv); /* Validate pointer */
4252 buffer = SvGROW(sv, recsize + 1);
4253 /* Go yank in */
4254#ifdef VMS
4255 /* VMS wants read instead of fread, because fread doesn't respect */
4256 /* RMS record boundaries. This is not necessarily a good thing to be */
4257 /* doing, but we've got no other real choice */
4258 bytesread = PerlLIO_read(PerlIO_fileno(fp), buffer, recsize);
4259#else
4260 bytesread = PerlIO_read(fp, buffer, recsize);
4261#endif
4262 SvCUR_set(sv, bytesread);
4263 buffer[bytesread] = '\0';
4264 return(SvCUR(sv) ? SvPVX(sv) : Nullch);
4265 }
4266 else if (RsPARA(PL_rs)) {
4267 rsptr = "\n\n";
4268 rslen = 2;
4269 }
4270 else
4271 rsptr = SvPV(PL_rs, rslen);
4272 rslast = rslen ? rsptr[rslen - 1] : '\0';
4273
4274 if (RsPARA(PL_rs)) { /* have to do this both before and after */
4275 do { /* to make sure file boundaries work right */
4276 if (PerlIO_eof(fp))
4277 return 0;
4278 i = PerlIO_getc(fp);
4279 if (i != '\n') {
4280 if (i == -1)
4281 return 0;
4282 PerlIO_ungetc(fp,i);
4283 break;
4284 }
4285 } while (i != EOF);
4286 }
4287
4288 /* See if we know enough about I/O mechanism to cheat it ! */
4289
4290 /* This used to be #ifdef test - it is made run-time test for ease
4291 of abstracting out stdio interface. One call should be cheap
4292 enough here - and may even be a macro allowing compile
4293 time optimization.
4294 */
4295
4296 if (PerlIO_fast_gets(fp)) {
4297
4298 /*
4299 * We're going to steal some values from the stdio struct
4300 * and put EVERYTHING in the innermost loop into registers.
4301 */
4302 register STDCHAR *ptr;
4303 STRLEN bpx;
4304 I32 shortbuffered;
4305
4306#if defined(VMS) && defined(PERLIO_IS_STDIO)
4307 /* An ungetc()d char is handled separately from the regular
4308 * buffer, so we getc() it back out and stuff it in the buffer.
4309 */
4310 i = PerlIO_getc(fp);
4311 if (i == EOF) return 0;
4312 *(--((*fp)->_ptr)) = (unsigned char) i;
4313 (*fp)->_cnt++;
4314#endif
4315
4316 /* Here is some breathtakingly efficient cheating */
4317
4318 cnt = PerlIO_get_cnt(fp); /* get count into register */
4319 (void)SvPOK_only(sv); /* validate pointer */
4320 if (SvLEN(sv) - append <= cnt + 1) { /* make sure we have the room */
4321 if (cnt > 80 && SvLEN(sv) > append) {
4322 shortbuffered = cnt - SvLEN(sv) + append + 1;
4323 cnt -= shortbuffered;
4324 }
4325 else {
4326 shortbuffered = 0;
4327 /* remember that cnt can be negative */
4328 SvGROW(sv, append + (cnt <= 0 ? 2 : (cnt + 1)));
4329 }
4330 }
4331 else
4332 shortbuffered = 0;
4333 bp = (STDCHAR*)SvPVX(sv) + append; /* move these two too to registers */
4334 ptr = (STDCHAR*)PerlIO_get_ptr(fp);
4335 DEBUG_P(PerlIO_printf(Perl_debug_log,
4336 "Screamer: entering, ptr=%"UVuf", cnt=%ld\n",PTR2UV(ptr),(long)cnt));
4337 DEBUG_P(PerlIO_printf(Perl_debug_log,
4338 "Screamer: entering: FILE * thinks ptr=%"UVuf", cnt=%ld, base=%"UVuf"\n",
4339 PTR2UV(PerlIO_get_ptr(fp)), (long)PerlIO_get_cnt(fp),
4340 PTR2UV(PerlIO_has_base(fp) ? PerlIO_get_base(fp) : 0)));
4341 for (;;) {
4342 screamer:
4343 if (cnt > 0) {
4344 if (rslen) {
4345 while (cnt > 0) { /* this | eat */
4346 cnt--;
4347 if ((*bp++ = *ptr++) == rslast) /* really | dust */
4348 goto thats_all_folks; /* screams | sed :-) */
4349 }
4350 }
4351 else {
4352 Copy(ptr, bp, cnt, char); /* this | eat */
4353 bp += cnt; /* screams | dust */
4354 ptr += cnt; /* louder | sed :-) */
4355 cnt = 0;
4356 }
4357 }
4358
4359 if (shortbuffered) { /* oh well, must extend */
4360 cnt = shortbuffered;
4361 shortbuffered = 0;
4362 bpx = bp - (STDCHAR*)SvPVX(sv); /* box up before relocation */
4363 SvCUR_set(sv, bpx);
4364 SvGROW(sv, SvLEN(sv) + append + cnt + 2);
4365 bp = (STDCHAR*)SvPVX(sv) + bpx; /* unbox after relocation */
4366 continue;
4367 }
4368
4369 DEBUG_P(PerlIO_printf(Perl_debug_log,
4370 "Screamer: going to getc, ptr=%"UVuf", cnt=%ld\n",
4371 PTR2UV(ptr),(long)cnt));
4372 PerlIO_set_ptrcnt(fp, ptr, cnt); /* deregisterize cnt and ptr */
4373 DEBUG_P(PerlIO_printf(Perl_debug_log,
4374 "Screamer: pre: FILE * thinks ptr=%"UVuf", cnt=%ld, base=%"UVuf"\n",
4375 PTR2UV(PerlIO_get_ptr(fp)), (long)PerlIO_get_cnt(fp),
4376 PTR2UV(PerlIO_has_base (fp) ? PerlIO_get_base(fp) : 0)));
4377 /* This used to call 'filbuf' in stdio form, but as that behaves like
4378 getc when cnt <= 0 we use PerlIO_getc here to avoid introducing
4379 another abstraction. */
4380 i = PerlIO_getc(fp); /* get more characters */
4381 DEBUG_P(PerlIO_printf(Perl_debug_log,
4382 "Screamer: post: FILE * thinks ptr=%"UVuf", cnt=%ld, base=%"UVuf"\n",
4383 PTR2UV(PerlIO_get_ptr(fp)), (long)PerlIO_get_cnt(fp),
4384 PTR2UV(PerlIO_has_base (fp) ? PerlIO_get_base(fp) : 0)));
4385 cnt = PerlIO_get_cnt(fp);
4386 ptr = (STDCHAR*)PerlIO_get_ptr(fp); /* reregisterize cnt and ptr */
4387 DEBUG_P(PerlIO_printf(Perl_debug_log,
4388 "Screamer: after getc, ptr=%"UVuf", cnt=%ld\n",PTR2UV(ptr),(long)cnt));
4389
4390 if (i == EOF) /* all done for ever? */
4391 goto thats_really_all_folks;
4392
4393 bpx = bp - (STDCHAR*)SvPVX(sv); /* box up before relocation */
4394 SvCUR_set(sv, bpx);
4395 SvGROW(sv, bpx + cnt + 2);
4396 bp = (STDCHAR*)SvPVX(sv) + bpx; /* unbox after relocation */
4397
4398 *bp++ = i; /* store character from PerlIO_getc */
4399
4400 if (rslen && (STDCHAR)i == rslast) /* all done for now? */
4401 goto thats_all_folks;
4402 }
4403
4404thats_all_folks:
4405 if ((rslen > 1 && (bp - (STDCHAR*)SvPVX(sv) < rslen)) ||
4406 memNE((char*)bp - rslen, rsptr, rslen))
4407 goto screamer; /* go back to the fray */
4408thats_really_all_folks:
4409 if (shortbuffered)
4410 cnt += shortbuffered;
4411 DEBUG_P(PerlIO_printf(Perl_debug_log,
4412 "Screamer: quitting, ptr=%"UVuf", cnt=%ld\n",PTR2UV(ptr),(long)cnt));
4413 PerlIO_set_ptrcnt(fp, ptr, cnt); /* put these back or we're in trouble */
4414 DEBUG_P(PerlIO_printf(Perl_debug_log,
4415 "Screamer: end: FILE * thinks ptr=%"UVuf", cnt=%ld, base=%"UVuf"\n",
4416 PTR2UV(PerlIO_get_ptr(fp)), (long)PerlIO_get_cnt(fp),
4417 PTR2UV(PerlIO_has_base (fp) ? PerlIO_get_base(fp) : 0)));
4418 *bp = '\0';
4419 SvCUR_set(sv, bp - (STDCHAR*)SvPVX(sv)); /* set length */
4420 DEBUG_P(PerlIO_printf(Perl_debug_log,
4421 "Screamer: done, len=%ld, string=|%.*s|\n",
4422 (long)SvCUR(sv),(int)SvCUR(sv),SvPVX(sv)));
4423 }
4424 else
4425 {
4426#ifndef EPOC
4427 /*The big, slow, and stupid way */
4428 STDCHAR buf[8192];
4429#else
4430 /* Need to work around EPOC SDK features */
4431 /* On WINS: MS VC5 generates calls to _chkstk, */
4432 /* if a `large' stack frame is allocated */
4433 /* gcc on MARM does not generate calls like these */
4434 STDCHAR buf[1024];
4435#endif
4436
4437screamer2:
4438 if (rslen) {
4439 register STDCHAR *bpe = buf + sizeof(buf);
4440 bp = buf;
4441 while ((i = PerlIO_getc(fp)) != EOF && (*bp++ = i) != rslast && bp < bpe)
4442 ; /* keep reading */
4443 cnt = bp - buf;
4444 }
4445 else {
4446 cnt = PerlIO_read(fp,(char*)buf, sizeof(buf));
4447 /* Accomodate broken VAXC compiler, which applies U8 cast to
4448 * both args of ?: operator, causing EOF to change into 255
4449 */
4450 if (cnt) { i = (U8)buf[cnt - 1]; } else { i = EOF; }
4451 }
4452
4453 if (append)
4454 sv_catpvn(sv, (char *) buf, cnt);
4455 else
4456 sv_setpvn(sv, (char *) buf, cnt);
4457
4458 if (i != EOF && /* joy */
4459 (!rslen ||
4460 SvCUR(sv) < rslen ||
4461 memNE(SvPVX(sv) + SvCUR(sv) - rslen, rsptr, rslen)))
4462 {
4463 append = -1;
4464 /*
4465 * If we're reading from a TTY and we get a short read,
4466 * indicating that the user hit his EOF character, we need
4467 * to notice it now, because if we try to read from the TTY
4468 * again, the EOF condition will disappear.
4469 *
4470 * The comparison of cnt to sizeof(buf) is an optimization
4471 * that prevents unnecessary calls to feof().
4472 *
4473 * - jik 9/25/96
4474 */
4475 if (!(cnt < sizeof(buf) && PerlIO_eof(fp)))
4476 goto screamer2;
4477 }
4478 }
4479
4480 if (RsPARA(PL_rs)) { /* have to do this both before and after */
4481 while (i != EOF) { /* to make sure file boundaries work right */
4482 i = PerlIO_getc(fp);
4483 if (i != '\n') {
4484 PerlIO_ungetc(fp,i);
4485 break;
4486 }
4487 }
4488 }
4489
4490 return (SvCUR(sv) - append) ? SvPVX(sv) : Nullch;
4491}
4492
4493
4494/*
4495=for apidoc sv_inc
4496
4497Auto-increment of the value in the SV.
4498
4499=cut
4500*/
4501
4502void
4503Perl_sv_inc(pTHX_ register SV *sv)
4504{
4505 register char *d;
4506 int flags;
4507
4508 if (!sv)
4509 return;
4510 if (SvGMAGICAL(sv))
4511 mg_get(sv);
4512 if (SvTHINKFIRST(sv)) {
4513 if (SvREADONLY(sv)) {
4514 dTHR;
4515 if (PL_curcop != &PL_compiling)
4516 Perl_croak(aTHX_ PL_no_modify);
4517 }
4518 if (SvROK(sv)) {
4519 IV i;
4520 if (SvAMAGIC(sv) && AMG_CALLun(sv,inc))
4521 return;
4522 i = PTR2IV(SvRV(sv));
4523 sv_unref(sv);
4524 sv_setiv(sv, i);
4525 }
4526 }
4527 flags = SvFLAGS(sv);
4528 if (flags & SVp_NOK) {
4529 (void)SvNOK_only(sv);
4530 SvNVX(sv) += 1.0;
4531 return;
4532 }
4533 if (flags & SVp_IOK) {
4534 if (SvIsUV(sv)) {
4535 if (SvUVX(sv) == UV_MAX)
4536 sv_setnv(sv, (NV)UV_MAX + 1.0);
4537 else
4538 (void)SvIOK_only_UV(sv);
4539 ++SvUVX(sv);
4540 } else {
4541 if (SvIVX(sv) == IV_MAX)
4542 sv_setnv(sv, (NV)IV_MAX + 1.0);
4543 else {
4544 (void)SvIOK_only(sv);
4545 ++SvIVX(sv);
4546 }
4547 }
4548 return;
4549 }
4550 if (!(flags & SVp_POK) || !*SvPVX(sv)) {
4551 if ((flags & SVTYPEMASK) < SVt_PVNV)
4552 sv_upgrade(sv, SVt_NV);
4553 SvNVX(sv) = 1.0;
4554 (void)SvNOK_only(sv);
4555 return;
4556 }
4557 d = SvPVX(sv);
4558 while (isALPHA(*d)) d++;
4559 while (isDIGIT(*d)) d++;
4560 if (*d) {
4561 sv_setnv(sv,Atof(SvPVX(sv)) + 1.0); /* punt */
4562 return;
4563 }
4564 d--;
4565 while (d >= SvPVX(sv)) {
4566 if (isDIGIT(*d)) {
4567 if (++*d <= '9')
4568 return;
4569 *(d--) = '0';
4570 }
4571 else {
4572#ifdef EBCDIC
4573 /* MKS: The original code here died if letters weren't consecutive.
4574 * at least it didn't have to worry about non-C locales. The
4575 * new code assumes that ('z'-'a')==('Z'-'A'), letters are
4576 * arranged in order (although not consecutively) and that only
4577 * [A-Za-z] are accepted by isALPHA in the C locale.
4578 */
4579 if (*d != 'z' && *d != 'Z') {
4580 do { ++*d; } while (!isALPHA(*d));
4581 return;
4582 }
4583 *(d--) -= 'z' - 'a';
4584#else
4585 ++*d;
4586 if (isALPHA(*d))
4587 return;
4588 *(d--) -= 'z' - 'a' + 1;
4589#endif
4590 }
4591 }
4592 /* oh,oh, the number grew */
4593 SvGROW(sv, SvCUR(sv) + 2);
4594 SvCUR(sv)++;
4595 for (d = SvPVX(sv) + SvCUR(sv); d > SvPVX(sv); d--)
4596 *d = d[-1];
4597 if (isDIGIT(d[1]))
4598 *d = '1';
4599 else
4600 *d = d[1];
4601}
4602
4603/*
4604=for apidoc sv_dec
4605
4606Auto-decrement of the value in the SV.
4607
4608=cut
4609*/
4610
4611void
4612Perl_sv_dec(pTHX_ register SV *sv)
4613{
4614 int flags;
4615
4616 if (!sv)
4617 return;
4618 if (SvGMAGICAL(sv))
4619 mg_get(sv);
4620 if (SvTHINKFIRST(sv)) {
4621 if (SvREADONLY(sv)) {
4622 dTHR;
4623 if (PL_curcop != &PL_compiling)
4624 Perl_croak(aTHX_ PL_no_modify);
4625 }
4626 if (SvROK(sv)) {
4627 IV i;
4628 if (SvAMAGIC(sv) && AMG_CALLun(sv,dec))
4629 return;
4630 i = PTR2IV(SvRV(sv));
4631 sv_unref(sv);
4632 sv_setiv(sv, i);
4633 }
4634 }
4635 flags = SvFLAGS(sv);
4636 if (flags & SVp_NOK) {
4637 SvNVX(sv) -= 1.0;
4638 (void)SvNOK_only(sv);
4639 return;
4640 }
4641 if (flags & SVp_IOK) {
4642 if (SvIsUV(sv)) {
4643 if (SvUVX(sv) == 0) {
4644 (void)SvIOK_only(sv);
4645 SvIVX(sv) = -1;
4646 }
4647 else {
4648 (void)SvIOK_only_UV(sv);
4649 --SvUVX(sv);
4650 }
4651 } else {
4652 if (SvIVX(sv) == IV_MIN)
4653 sv_setnv(sv, (NV)IV_MIN - 1.0);
4654 else {
4655 (void)SvIOK_only(sv);
4656 --SvIVX(sv);
4657 }
4658 }
4659 return;
4660 }
4661 if (!(flags & SVp_POK)) {
4662 if ((flags & SVTYPEMASK) < SVt_PVNV)
4663 sv_upgrade(sv, SVt_NV);
4664 SvNVX(sv) = -1.0;
4665 (void)SvNOK_only(sv);
4666 return;
4667 }
4668 sv_setnv(sv,Atof(SvPVX(sv)) - 1.0); /* punt */
4669}
4670
4671/*
4672=for apidoc sv_mortalcopy
4673
4674Creates a new SV which is a copy of the original SV. The new SV is marked
4675as mortal.
4676
4677=cut
4678*/
4679
4680/* Make a string that will exist for the duration of the expression
4681 * evaluation. Actually, it may have to last longer than that, but
4682 * hopefully we won't free it until it has been assigned to a
4683 * permanent location. */
4684
4685SV *
4686Perl_sv_mortalcopy(pTHX_ SV *oldstr)
4687{
4688 dTHR;
4689 register SV *sv;
4690
4691 new_SV(sv);
4692 sv_setsv(sv,oldstr);
4693 EXTEND_MORTAL(1);
4694 PL_tmps_stack[++PL_tmps_ix] = sv;
4695 SvTEMP_on(sv);
4696 return sv;
4697}
4698
4699/*
4700=for apidoc sv_newmortal
4701
4702Creates a new SV which is mortal. The reference count of the SV is set to 1.
4703
4704=cut
4705*/
4706
4707SV *
4708Perl_sv_newmortal(pTHX)
4709{
4710 dTHR;
4711 register SV *sv;
4712
4713 new_SV(sv);
4714 SvFLAGS(sv) = SVs_TEMP;
4715 EXTEND_MORTAL(1);
4716 PL_tmps_stack[++PL_tmps_ix] = sv;
4717 return sv;
4718}
4719
4720/*
4721=for apidoc sv_2mortal
4722
4723Marks an SV as mortal. The SV will be destroyed when the current context
4724ends.
4725
4726=cut
4727*/
4728
4729/* same thing without the copying */
4730
4731SV *
4732Perl_sv_2mortal(pTHX_ register SV *sv)
4733{
4734 dTHR;
4735 if (!sv)
4736 return sv;
4737 if (SvREADONLY(sv) && SvIMMORTAL(sv))
4738 return sv;
4739 EXTEND_MORTAL(1);
4740 PL_tmps_stack[++PL_tmps_ix] = sv;
4741 SvTEMP_on(sv);
4742 return sv;
4743}
4744
4745/*
4746=for apidoc newSVpv
4747
4748Creates a new SV and copies a string into it. The reference count for the
4749SV is set to 1. If C<len> is zero, Perl will compute the length using
4750strlen(). For efficiency, consider using C<newSVpvn> instead.
4751
4752=cut
4753*/
4754
4755SV *
4756Perl_newSVpv(pTHX_ const char *s, STRLEN len)
4757{
4758 register SV *sv;
4759
4760 new_SV(sv);
4761 if (!len)
4762 len = strlen(s);
4763 sv_setpvn(sv,s,len);
4764 return sv;
4765}
4766
4767/*
4768=for apidoc newSVpvn
4769
4770Creates a new SV and copies a string into it. The reference count for the
4771SV is set to 1. Note that if C<len> is zero, Perl will create a zero length
4772string. You are responsible for ensuring that the source string is at least
4773C<len> bytes long.
4774
4775=cut
4776*/
4777
4778SV *
4779Perl_newSVpvn(pTHX_ const char *s, STRLEN len)
4780{
4781 register SV *sv;
4782
4783 new_SV(sv);
4784 sv_setpvn(sv,s,len);
4785 return sv;
4786}
4787
4788#if defined(PERL_IMPLICIT_CONTEXT)
4789SV *
4790Perl_newSVpvf_nocontext(const char* pat, ...)
4791{
4792 dTHX;
4793 register SV *sv;
4794 va_list args;
4795 va_start(args, pat);
4796 sv = vnewSVpvf(pat, &args);
4797 va_end(args);
4798 return sv;
4799}
4800#endif
4801
4802/*
4803=for apidoc newSVpvf
4804
4805Creates a new SV an initialize it with the string formatted like
4806C<sprintf>.
4807
4808=cut
4809*/
4810
4811SV *
4812Perl_newSVpvf(pTHX_ const char* pat, ...)
4813{
4814 register SV *sv;
4815 va_list args;
4816 va_start(args, pat);
4817 sv = vnewSVpvf(pat, &args);
4818 va_end(args);
4819 return sv;
4820}
4821
4822SV *
4823Perl_vnewSVpvf(pTHX_ const char* pat, va_list* args)
4824{
4825 register SV *sv;
4826 new_SV(sv);
4827 sv_vsetpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
4828 return sv;
4829}
4830
4831/*
4832=for apidoc newSVnv
4833
4834Creates a new SV and copies a floating point value into it.
4835The reference count for the SV is set to 1.
4836
4837=cut
4838*/
4839
4840SV *
4841Perl_newSVnv(pTHX_ NV n)
4842{
4843 register SV *sv;
4844
4845 new_SV(sv);
4846 sv_setnv(sv,n);
4847 return sv;
4848}
4849
4850/*
4851=for apidoc newSViv
4852
4853Creates a new SV and copies an integer into it. The reference count for the
4854SV is set to 1.
4855
4856=cut
4857*/
4858
4859SV *
4860Perl_newSViv(pTHX_ IV i)
4861{
4862 register SV *sv;
4863
4864 new_SV(sv);
4865 sv_setiv(sv,i);
4866 return sv;
4867}
4868
4869/*
4870=for apidoc newSVuv
4871
4872Creates a new SV and copies an unsigned integer into it.
4873The reference count for the SV is set to 1.
4874
4875=cut
4876*/
4877
4878SV *
4879Perl_newSVuv(pTHX_ UV u)
4880{
4881 register SV *sv;
4882
4883 new_SV(sv);
4884 sv_setuv(sv,u);
4885 return sv;
4886}
4887
4888/*
4889=for apidoc newRV_noinc
4890
4891Creates an RV wrapper for an SV. The reference count for the original
4892SV is B<not> incremented.
4893
4894=cut
4895*/
4896
4897SV *
4898Perl_newRV_noinc(pTHX_ SV *tmpRef)
4899{
4900 dTHR;
4901 register SV *sv;
4902
4903 new_SV(sv);
4904 sv_upgrade(sv, SVt_RV);
4905 SvTEMP_off(tmpRef);
4906 SvRV(sv) = tmpRef;
4907 SvROK_on(sv);
4908 return sv;
4909}
4910
4911/* newRV_inc is #defined to newRV in sv.h */
4912SV *
4913Perl_newRV(pTHX_ SV *tmpRef)
4914{
4915 return newRV_noinc(SvREFCNT_inc(tmpRef));
4916}
4917
4918/*
4919=for apidoc newSVsv
4920
4921Creates a new SV which is an exact duplicate of the original SV.
4922
4923=cut
4924*/
4925
4926/* make an exact duplicate of old */
4927
4928SV *
4929Perl_newSVsv(pTHX_ register SV *old)
4930{
4931 dTHR;
4932 register SV *sv;
4933
4934 if (!old)
4935 return Nullsv;
4936 if (SvTYPE(old) == SVTYPEMASK) {
4937 if (ckWARN_d(WARN_INTERNAL))
4938 Perl_warner(aTHX_ WARN_INTERNAL, "semi-panic: attempt to dup freed string");
4939 return Nullsv;
4940 }
4941 new_SV(sv);
4942 if (SvTEMP(old)) {
4943 SvTEMP_off(old);
4944 sv_setsv(sv,old);
4945 SvTEMP_on(old);
4946 }
4947 else
4948 sv_setsv(sv,old);
4949 return sv;
4950}
4951
4952void
4953Perl_sv_reset(pTHX_ register char *s, HV *stash)
4954{
4955 register HE *entry;
4956 register GV *gv;
4957 register SV *sv;
4958 register I32 i;
4959 register PMOP *pm;
4960 register I32 max;
4961 char todo[PERL_UCHAR_MAX+1];
4962
4963 if (!stash)
4964 return;
4965
4966 if (!*s) { /* reset ?? searches */
4967 for (pm = HvPMROOT(stash); pm; pm = pm->op_pmnext) {
4968 pm->op_pmdynflags &= ~PMdf_USED;
4969 }
4970 return;
4971 }
4972
4973 /* reset variables */
4974
4975 if (!HvARRAY(stash))
4976 return;
4977
4978 Zero(todo, 256, char);
4979 while (*s) {
4980 i = (unsigned char)*s;
4981 if (s[1] == '-') {
4982 s += 2;
4983 }
4984 max = (unsigned char)*s++;
4985 for ( ; i <= max; i++) {
4986 todo[i] = 1;
4987 }
4988 for (i = 0; i <= (I32) HvMAX(stash); i++) {
4989 for (entry = HvARRAY(stash)[i];
4990 entry;
4991 entry = HeNEXT(entry))
4992 {
4993 if (!todo[(U8)*HeKEY(entry)])
4994 continue;
4995 gv = (GV*)HeVAL(entry);
4996 sv = GvSV(gv);
4997 if (SvTHINKFIRST(sv)) {
4998 if (!SvREADONLY(sv) && SvROK(sv))
4999 sv_unref(sv);
5000 continue;
5001 }
5002 (void)SvOK_off(sv);
5003 if (SvTYPE(sv) >= SVt_PV) {
5004 SvCUR_set(sv, 0);
5005 if (SvPVX(sv) != Nullch)
5006 *SvPVX(sv) = '\0';
5007 SvTAINT(sv);
5008 }
5009 if (GvAV(gv)) {
5010 av_clear(GvAV(gv));
5011 }
5012 if (GvHV(gv) && !HvNAME(GvHV(gv))) {
5013 hv_clear(GvHV(gv));
5014#ifndef VMS /* VMS has no environ array */
5015 if (gv == PL_envgv)
5016 environ[0] = Nullch;
5017#endif
5018 }
5019 }
5020 }
5021 }
5022}
5023
5024IO*
5025Perl_sv_2io(pTHX_ SV *sv)
5026{
5027 IO* io;
5028 GV* gv;
5029 STRLEN n_a;
5030
5031 switch (SvTYPE(sv)) {
5032 case SVt_PVIO:
5033 io = (IO*)sv;
5034 break;
5035 case SVt_PVGV:
5036 gv = (GV*)sv;
5037 io = GvIO(gv);
5038 if (!io)
5039 Perl_croak(aTHX_ "Bad filehandle: %s", GvNAME(gv));
5040 break;
5041 default:
5042 if (!SvOK(sv))
5043 Perl_croak(aTHX_ PL_no_usym, "filehandle");
5044 if (SvROK(sv))
5045 return sv_2io(SvRV(sv));
5046 gv = gv_fetchpv(SvPV(sv,n_a), FALSE, SVt_PVIO);
5047 if (gv)
5048 io = GvIO(gv);
5049 else
5050 io = 0;
5051 if (!io)
5052 Perl_croak(aTHX_ "Bad filehandle: %s", SvPV(sv,n_a));
5053 break;
5054 }
5055 return io;
5056}
5057
5058CV *
5059Perl_sv_2cv(pTHX_ SV *sv, HV **st, GV **gvp, I32 lref)
5060{
5061 GV *gv;
5062 CV *cv;
5063 STRLEN n_a;
5064
5065 if (!sv)
5066 return *gvp = Nullgv, Nullcv;
5067 switch (SvTYPE(sv)) {
5068 case SVt_PVCV:
5069 *st = CvSTASH(sv);
5070 *gvp = Nullgv;
5071 return (CV*)sv;
5072 case SVt_PVHV:
5073 case SVt_PVAV:
5074 *gvp = Nullgv;
5075 return Nullcv;
5076 case SVt_PVGV:
5077 gv = (GV*)sv;
5078 *gvp = gv;
5079 *st = GvESTASH(gv);
5080 goto fix_gv;
5081
5082 default:
5083 if (SvGMAGICAL(sv))
5084 mg_get(sv);
5085 if (SvROK(sv)) {
5086 dTHR;
5087 SV **sp = &sv; /* Used in tryAMAGICunDEREF macro. */
5088 tryAMAGICunDEREF(to_cv);
5089
5090 sv = SvRV(sv);
5091 if (SvTYPE(sv) == SVt_PVCV) {
5092 cv = (CV*)sv;
5093 *gvp = Nullgv;
5094 *st = CvSTASH(cv);
5095 return cv;
5096 }
5097 else if(isGV(sv))
5098 gv = (GV*)sv;
5099 else
5100 Perl_croak(aTHX_ "Not a subroutine reference");
5101 }
5102 else if (isGV(sv))
5103 gv = (GV*)sv;
5104 else
5105 gv = gv_fetchpv(SvPV(sv, n_a), lref, SVt_PVCV);
5106 *gvp = gv;
5107 if (!gv)
5108 return Nullcv;
5109 *st = GvESTASH(gv);
5110 fix_gv:
5111 if (lref && !GvCVu(gv)) {
5112 SV *tmpsv;
5113 ENTER;
5114 tmpsv = NEWSV(704,0);
5115 gv_efullname3(tmpsv, gv, Nullch);
5116 /* XXX this is probably not what they think they're getting.
5117 * It has the same effect as "sub name;", i.e. just a forward
5118 * declaration! */
5119 newSUB(start_subparse(FALSE, 0),
5120 newSVOP(OP_CONST, 0, tmpsv),
5121 Nullop,
5122 Nullop);
5123 LEAVE;
5124 if (!GvCVu(gv))
5125 Perl_croak(aTHX_ "Unable to create sub named \"%s\"", SvPV(sv,n_a));
5126 }
5127 return GvCVu(gv);
5128 }
5129}
5130
5131I32
5132Perl_sv_true(pTHX_ register SV *sv)
5133{
5134 dTHR;
5135 if (!sv)
5136 return 0;
5137 if (SvPOK(sv)) {
5138 register XPV* tXpv;
5139 if ((tXpv = (XPV*)SvANY(sv)) &&
5140 (tXpv->xpv_cur > 1 ||
5141 (tXpv->xpv_cur && *tXpv->xpv_pv != '0')))
5142 return 1;
5143 else
5144 return 0;
5145 }
5146 else {
5147 if (SvIOK(sv))
5148 return SvIVX(sv) != 0;
5149 else {
5150 if (SvNOK(sv))
5151 return SvNVX(sv) != 0.0;
5152 else
5153 return sv_2bool(sv);
5154 }
5155 }
5156}
5157
5158IV
5159Perl_sv_iv(pTHX_ register SV *sv)
5160{
5161 if (SvIOK(sv)) {
5162 if (SvIsUV(sv))
5163 return (IV)SvUVX(sv);
5164 return SvIVX(sv);
5165 }
5166 return sv_2iv(sv);
5167}
5168
5169UV
5170Perl_sv_uv(pTHX_ register SV *sv)
5171{
5172 if (SvIOK(sv)) {
5173 if (SvIsUV(sv))
5174 return SvUVX(sv);
5175 return (UV)SvIVX(sv);
5176 }
5177 return sv_2uv(sv);
5178}
5179
5180NV
5181Perl_sv_nv(pTHX_ register SV *sv)
5182{
5183 if (SvNOK(sv))
5184 return SvNVX(sv);
5185 return sv_2nv(sv);
5186}
5187
5188char *
5189Perl_sv_pv(pTHX_ SV *sv)
5190{
5191 STRLEN n_a;
5192
5193 if (SvPOK(sv))
5194 return SvPVX(sv);
5195
5196 return sv_2pv(sv, &n_a);
5197}
5198
5199char *
5200Perl_sv_pvn(pTHX_ SV *sv, STRLEN *lp)
5201{
5202 if (SvPOK(sv)) {
5203 *lp = SvCUR(sv);
5204 return SvPVX(sv);
5205 }
5206 return sv_2pv(sv, lp);
5207}
5208
5209char *
5210Perl_sv_pvn_force(pTHX_ SV *sv, STRLEN *lp)
5211{
5212 char *s;
5213
5214 if (SvTHINKFIRST(sv) && !SvROK(sv))
5215 sv_force_normal(sv);
5216
5217 if (SvPOK(sv)) {
5218 *lp = SvCUR(sv);
5219 }
5220 else {
5221 if (SvTYPE(sv) > SVt_PVLV && SvTYPE(sv) != SVt_PVFM) {
5222 dTHR;
5223 Perl_croak(aTHX_ "Can't coerce %s to string in %s", sv_reftype(sv,0),
5224 PL_op_name[PL_op->op_type]);
5225 }
5226 else
5227 s = sv_2pv(sv, lp);
5228 if (s != SvPVX(sv)) { /* Almost, but not quite, sv_setpvn() */
5229 STRLEN len = *lp;
5230
5231 if (SvROK(sv))
5232 sv_unref(sv);
5233 (void)SvUPGRADE(sv, SVt_PV); /* Never FALSE */
5234 SvGROW(sv, len + 1);
5235 Move(s,SvPVX(sv),len,char);
5236 SvCUR_set(sv, len);
5237 *SvEND(sv) = '\0';
5238 }
5239 if (!SvPOK(sv)) {
5240 SvPOK_on(sv); /* validate pointer */
5241 SvTAINT(sv);
5242 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2pv(%s)\n",
5243 PTR2UV(sv),SvPVX(sv)));
5244 }
5245 }
5246 return SvPVX(sv);
5247}
5248
5249char *
5250Perl_sv_pvbyte(pTHX_ SV *sv)
5251{
5252 return sv_pv(sv);
5253}
5254
5255char *
5256Perl_sv_pvbyten(pTHX_ SV *sv, STRLEN *lp)
5257{
5258 return sv_pvn(sv,lp);
5259}
5260
5261char *
5262Perl_sv_pvbyten_force(pTHX_ SV *sv, STRLEN *lp)
5263{
5264 return sv_pvn_force(sv,lp);
5265}
5266
5267char *
5268Perl_sv_pvutf8(pTHX_ SV *sv)
5269{
5270 sv_utf8_upgrade(sv);
5271 return sv_pv(sv);
5272}
5273
5274char *
5275Perl_sv_pvutf8n(pTHX_ SV *sv, STRLEN *lp)
5276{
5277 sv_utf8_upgrade(sv);
5278 return sv_pvn(sv,lp);
5279}
5280
5281char *
5282Perl_sv_pvutf8n_force(pTHX_ SV *sv, STRLEN *lp)
5283{
5284 sv_utf8_upgrade(sv);
5285 return sv_pvn_force(sv,lp);
5286}
5287
5288char *
5289Perl_sv_reftype(pTHX_ SV *sv, int ob)
5290{
5291 if (ob && SvOBJECT(sv))
5292 return HvNAME(SvSTASH(sv));
5293 else {
5294 switch (SvTYPE(sv)) {
5295 case SVt_NULL:
5296 case SVt_IV:
5297 case SVt_NV:
5298 case SVt_RV:
5299 case SVt_PV:
5300 case SVt_PVIV:
5301 case SVt_PVNV:
5302 case SVt_PVMG:
5303 case SVt_PVBM:
5304 if (SvROK(sv))
5305 return "REF";
5306 else
5307 return "SCALAR";
5308 case SVt_PVLV: return "LVALUE";
5309 case SVt_PVAV: return "ARRAY";
5310 case SVt_PVHV: return "HASH";
5311 case SVt_PVCV: return "CODE";
5312 case SVt_PVGV: return "GLOB";
5313 case SVt_PVFM: return "FORMAT";
5314 case SVt_PVIO: return "IO";
5315 default: return "UNKNOWN";
5316 }
5317 }
5318}
5319
5320/*
5321=for apidoc sv_isobject
5322
5323Returns a boolean indicating whether the SV is an RV pointing to a blessed
5324object. If the SV is not an RV, or if the object is not blessed, then this
5325will return false.
5326
5327=cut
5328*/
5329
5330int
5331Perl_sv_isobject(pTHX_ SV *sv)
5332{
5333 if (!sv)
5334 return 0;
5335 if (SvGMAGICAL(sv))
5336 mg_get(sv);
5337 if (!SvROK(sv))
5338 return 0;
5339 sv = (SV*)SvRV(sv);
5340 if (!SvOBJECT(sv))
5341 return 0;
5342 return 1;
5343}
5344
5345/*
5346=for apidoc sv_isa
5347
5348Returns a boolean indicating whether the SV is blessed into the specified
5349class. This does not check for subtypes; use C<sv_derived_from> to verify
5350an inheritance relationship.
5351
5352=cut
5353*/
5354
5355int
5356Perl_sv_isa(pTHX_ SV *sv, const char *name)
5357{
5358 if (!sv)
5359 return 0;
5360 if (SvGMAGICAL(sv))
5361 mg_get(sv);
5362 if (!SvROK(sv))
5363 return 0;
5364 sv = (SV*)SvRV(sv);
5365 if (!SvOBJECT(sv))
5366 return 0;
5367
5368 return strEQ(HvNAME(SvSTASH(sv)), name);
5369}
5370
5371/*
5372=for apidoc newSVrv
5373
5374Creates a new SV for the RV, C<rv>, to point to. If C<rv> is not an RV then
5375it will be upgraded to one. If C<classname> is non-null then the new SV will
5376be blessed in the specified package. The new SV is returned and its
5377reference count is 1.
5378
5379=cut
5380*/
5381
5382SV*
5383Perl_newSVrv(pTHX_ SV *rv, const char *classname)
5384{
5385 dTHR;
5386 SV *sv;
5387
5388 new_SV(sv);
5389
5390 SV_CHECK_THINKFIRST(rv);
5391 SvAMAGIC_off(rv);
5392
5393 if (SvTYPE(rv) < SVt_RV)
5394 sv_upgrade(rv, SVt_RV);
5395
5396 (void)SvOK_off(rv);
5397 SvRV(rv) = sv;
5398 SvROK_on(rv);
5399
5400 if (classname) {
5401 HV* stash = gv_stashpv(classname, TRUE);
5402 (void)sv_bless(rv, stash);
5403 }
5404 return sv;
5405}
5406
5407/*
5408=for apidoc sv_setref_pv
5409
5410Copies a pointer into a new SV, optionally blessing the SV. The C<rv>
5411argument will be upgraded to an RV. That RV will be modified to point to
5412the new SV. If the C<pv> argument is NULL then C<PL_sv_undef> will be placed
5413into the SV. The C<classname> argument indicates the package for the
5414blessing. Set C<classname> to C<Nullch> to avoid the blessing. The new SV
5415will be returned and will have a reference count of 1.
5416
5417Do not use with other Perl types such as HV, AV, SV, CV, because those
5418objects will become corrupted by the pointer copy process.
5419
5420Note that C<sv_setref_pvn> copies the string while this copies the pointer.
5421
5422=cut
5423*/
5424
5425SV*
5426Perl_sv_setref_pv(pTHX_ SV *rv, const char *classname, void *pv)
5427{
5428 if (!pv) {
5429 sv_setsv(rv, &PL_sv_undef);
5430 SvSETMAGIC(rv);
5431 }
5432 else
5433 sv_setiv(newSVrv(rv,classname), PTR2IV(pv));
5434 return rv;
5435}
5436
5437/*
5438=for apidoc sv_setref_iv
5439
5440Copies an integer into a new SV, optionally blessing the SV. The C<rv>
5441argument will be upgraded to an RV. That RV will be modified to point to
5442the new SV. The C<classname> argument indicates the package for the
5443blessing. Set C<classname> to C<Nullch> to avoid the blessing. The new SV
5444will be returned and will have a reference count of 1.
5445
5446=cut
5447*/
5448
5449SV*
5450Perl_sv_setref_iv(pTHX_ SV *rv, const char *classname, IV iv)
5451{
5452 sv_setiv(newSVrv(rv,classname), iv);
5453 return rv;
5454}
5455
5456/*
5457=for apidoc sv_setref_nv
5458
5459Copies a double into a new SV, optionally blessing the SV. The C<rv>
5460argument will be upgraded to an RV. That RV will be modified to point to
5461the new SV. The C<classname> argument indicates the package for the
5462blessing. Set C<classname> to C<Nullch> to avoid the blessing. The new SV
5463will be returned and will have a reference count of 1.
5464
5465=cut
5466*/
5467
5468SV*
5469Perl_sv_setref_nv(pTHX_ SV *rv, const char *classname, NV nv)
5470{
5471 sv_setnv(newSVrv(rv,classname), nv);
5472 return rv;
5473}
5474
5475/*
5476=for apidoc sv_setref_pvn
5477
5478Copies a string into a new SV, optionally blessing the SV. The length of the
5479string must be specified with C<n>. The C<rv> argument will be upgraded to
5480an RV. That RV will be modified to point to the new SV. The C<classname>
5481argument indicates the package for the blessing. Set C<classname> to
5482C<Nullch> to avoid the blessing. The new SV will be returned and will have
5483a reference count of 1.
5484
5485Note that C<sv_setref_pv> copies the pointer while this copies the string.
5486
5487=cut
5488*/
5489
5490SV*
5491Perl_sv_setref_pvn(pTHX_ SV *rv, const char *classname, char *pv, STRLEN n)
5492{
5493 sv_setpvn(newSVrv(rv,classname), pv, n);
5494 return rv;
5495}
5496
5497/*
5498=for apidoc sv_bless
5499
5500Blesses an SV into a specified package. The SV must be an RV. The package
5501must be designated by its stash (see C<gv_stashpv()>). The reference count
5502of the SV is unaffected.
5503
5504=cut
5505*/
5506
5507SV*
5508Perl_sv_bless(pTHX_ SV *sv, HV *stash)
5509{
5510 dTHR;
5511 SV *tmpRef;
5512 if (!SvROK(sv))
5513 Perl_croak(aTHX_ "Can't bless non-reference value");
5514 tmpRef = SvRV(sv);
5515 if (SvFLAGS(tmpRef) & (SVs_OBJECT|SVf_READONLY)) {
5516 if (SvREADONLY(tmpRef))
5517 Perl_croak(aTHX_ PL_no_modify);
5518 if (SvOBJECT(tmpRef)) {
5519 if (SvTYPE(tmpRef) != SVt_PVIO)
5520 --PL_sv_objcount;
5521 SvREFCNT_dec(SvSTASH(tmpRef));
5522 }
5523 }
5524 SvOBJECT_on(tmpRef);
5525 if (SvTYPE(tmpRef) != SVt_PVIO)
5526 ++PL_sv_objcount;
5527 (void)SvUPGRADE(tmpRef, SVt_PVMG);
5528 SvSTASH(tmpRef) = (HV*)SvREFCNT_inc(stash);
5529
5530 if (Gv_AMG(stash))
5531 SvAMAGIC_on(sv);
5532 else
5533 SvAMAGIC_off(sv);
5534
5535 return sv;
5536}
5537
5538STATIC void
5539S_sv_unglob(pTHX_ SV *sv)
5540{
5541 void *xpvmg;
5542
5543 assert(SvTYPE(sv) == SVt_PVGV);
5544 SvFAKE_off(sv);
5545 if (GvGP(sv))
5546 gp_free((GV*)sv);
5547 if (GvSTASH(sv)) {
5548 SvREFCNT_dec(GvSTASH(sv));
5549 GvSTASH(sv) = Nullhv;
5550 }
5551 sv_unmagic(sv, '*');
5552 Safefree(GvNAME(sv));
5553 GvMULTI_off(sv);
5554
5555 /* need to keep SvANY(sv) in the right arena */
5556 xpvmg = new_XPVMG();
5557 StructCopy(SvANY(sv), xpvmg, XPVMG);
5558 del_XPVGV(SvANY(sv));
5559 SvANY(sv) = xpvmg;
5560
5561 SvFLAGS(sv) &= ~SVTYPEMASK;
5562 SvFLAGS(sv) |= SVt_PVMG;
5563}
5564
5565/*
5566=for apidoc sv_unref
5567
5568Unsets the RV status of the SV, and decrements the reference count of
5569whatever was being referenced by the RV. This can almost be thought of
5570as a reversal of C<newSVrv>. See C<SvROK_off>.
5571
5572=cut
5573*/
5574
5575void
5576Perl_sv_unref(pTHX_ SV *sv)
5577{
5578 SV* rv = SvRV(sv);
5579
5580 if (SvWEAKREF(sv)) {
5581 sv_del_backref(sv);
5582 SvWEAKREF_off(sv);
5583 SvRV(sv) = 0;
5584 return;
5585 }
5586 SvRV(sv) = 0;
5587 SvROK_off(sv);
5588 if (SvREFCNT(rv) != 1 || SvREADONLY(rv))
5589 SvREFCNT_dec(rv);
5590 else
5591 sv_2mortal(rv); /* Schedule for freeing later */
5592}
5593
5594void
5595Perl_sv_taint(pTHX_ SV *sv)
5596{
5597 sv_magic((sv), Nullsv, 't', Nullch, 0);
5598}
5599
5600void
5601Perl_sv_untaint(pTHX_ SV *sv)
5602{
5603 if (SvTYPE(sv) >= SVt_PVMG && SvMAGIC(sv)) {
5604 MAGIC *mg = mg_find(sv, 't');
5605 if (mg)
5606 mg->mg_len &= ~1;
5607 }
5608}
5609
5610bool
5611Perl_sv_tainted(pTHX_ SV *sv)
5612{
5613 if (SvTYPE(sv) >= SVt_PVMG && SvMAGIC(sv)) {
5614 MAGIC *mg = mg_find(sv, 't');
5615 if (mg && ((mg->mg_len & 1) || ((mg->mg_len & 2) && mg->mg_obj == sv)))
5616 return TRUE;
5617 }
5618 return FALSE;
5619}
5620
5621/*
5622=for apidoc sv_setpviv
5623
5624Copies an integer into the given SV, also updating its string value.
5625Does not handle 'set' magic. See C<sv_setpviv_mg>.
5626
5627=cut
5628*/
5629
5630void
5631Perl_sv_setpviv(pTHX_ SV *sv, IV iv)
5632{
5633 char buf[TYPE_CHARS(UV)];
5634 char *ebuf;
5635 char *ptr = uiv_2buf(buf, iv, 0, 0, &ebuf);
5636
5637 sv_setpvn(sv, ptr, ebuf - ptr);
5638}
5639
5640
5641/*
5642=for apidoc sv_setpviv_mg
5643
5644Like C<sv_setpviv>, but also handles 'set' magic.
5645
5646=cut
5647*/
5648
5649void
5650Perl_sv_setpviv_mg(pTHX_ SV *sv, IV iv)
5651{
5652 char buf[TYPE_CHARS(UV)];
5653 char *ebuf;
5654 char *ptr = uiv_2buf(buf, iv, 0, 0, &ebuf);
5655
5656 sv_setpvn(sv, ptr, ebuf - ptr);
5657 SvSETMAGIC(sv);
5658}
5659
5660#if defined(PERL_IMPLICIT_CONTEXT)
5661void
5662Perl_sv_setpvf_nocontext(SV *sv, const char* pat, ...)
5663{
5664 dTHX;
5665 va_list args;
5666 va_start(args, pat);
5667 sv_vsetpvf(sv, pat, &args);
5668 va_end(args);
5669}
5670
5671
5672void
5673Perl_sv_setpvf_mg_nocontext(SV *sv, const char* pat, ...)
5674{
5675 dTHX;
5676 va_list args;
5677 va_start(args, pat);
5678 sv_vsetpvf_mg(sv, pat, &args);
5679 va_end(args);
5680}
5681#endif
5682
5683/*
5684=for apidoc sv_setpvf
5685
5686Processes its arguments like C<sprintf> and sets an SV to the formatted
5687output. Does not handle 'set' magic. See C<sv_setpvf_mg>.
5688
5689=cut
5690*/
5691
5692void
5693Perl_sv_setpvf(pTHX_ SV *sv, const char* pat, ...)
5694{
5695 va_list args;
5696 va_start(args, pat);
5697 sv_vsetpvf(sv, pat, &args);
5698 va_end(args);
5699}
5700
5701void
5702Perl_sv_vsetpvf(pTHX_ SV *sv, const char* pat, va_list* args)
5703{
5704 sv_vsetpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
5705}
5706
5707/*
5708=for apidoc sv_setpvf_mg
5709
5710Like C<sv_setpvf>, but also handles 'set' magic.
5711
5712=cut
5713*/
5714
5715void
5716Perl_sv_setpvf_mg(pTHX_ SV *sv, const char* pat, ...)
5717{
5718 va_list args;
5719 va_start(args, pat);
5720 sv_vsetpvf_mg(sv, pat, &args);
5721 va_end(args);
5722}
5723
5724void
5725Perl_sv_vsetpvf_mg(pTHX_ SV *sv, const char* pat, va_list* args)
5726{
5727 sv_vsetpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
5728 SvSETMAGIC(sv);
5729}
5730
5731#if defined(PERL_IMPLICIT_CONTEXT)
5732void
5733Perl_sv_catpvf_nocontext(SV *sv, const char* pat, ...)
5734{
5735 dTHX;
5736 va_list args;
5737 va_start(args, pat);
5738 sv_vcatpvf(sv, pat, &args);
5739 va_end(args);
5740}
5741
5742void
5743Perl_sv_catpvf_mg_nocontext(SV *sv, const char* pat, ...)
5744{
5745 dTHX;
5746 va_list args;
5747 va_start(args, pat);
5748 sv_vcatpvf_mg(sv, pat, &args);
5749 va_end(args);
5750}
5751#endif
5752
5753/*
5754=for apidoc sv_catpvf
5755
5756Processes its arguments like C<sprintf> and appends the formatted output
5757to an SV. Handles 'get' magic, but not 'set' magic. C<SvSETMAGIC()> must
5758typically be called after calling this function to handle 'set' magic.
5759
5760=cut
5761*/
5762
5763void
5764Perl_sv_catpvf(pTHX_ SV *sv, const char* pat, ...)
5765{
5766 va_list args;
5767 va_start(args, pat);
5768 sv_vcatpvf(sv, pat, &args);
5769 va_end(args);
5770}
5771
5772void
5773Perl_sv_vcatpvf(pTHX_ SV *sv, const char* pat, va_list* args)
5774{
5775 sv_vcatpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
5776}
5777
5778/*
5779=for apidoc sv_catpvf_mg
5780
5781Like C<sv_catpvf>, but also handles 'set' magic.
5782
5783=cut
5784*/
5785
5786void
5787Perl_sv_catpvf_mg(pTHX_ SV *sv, const char* pat, ...)
5788{
5789 va_list args;
5790 va_start(args, pat);
5791 sv_vcatpvf_mg(sv, pat, &args);
5792 va_end(args);
5793}
5794
5795void
5796Perl_sv_vcatpvf_mg(pTHX_ SV *sv, const char* pat, va_list* args)
5797{
5798 sv_vcatpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
5799 SvSETMAGIC(sv);
5800}
5801
5802/*
5803=for apidoc sv_vsetpvfn
5804
5805Works like C<vcatpvfn> but copies the text into the SV instead of
5806appending it.
5807
5808=cut
5809*/
5810
5811void
5812Perl_sv_vsetpvfn(pTHX_ SV *sv, const char *pat, STRLEN patlen, va_list *args, SV **svargs, I32 svmax, bool *maybe_tainted)
5813{
5814 sv_setpvn(sv, "", 0);
5815 sv_vcatpvfn(sv, pat, patlen, args, svargs, svmax, maybe_tainted);
5816}
5817
5818/*
5819=for apidoc sv_vcatpvfn
5820
5821Processes its arguments like C<vsprintf> and appends the formatted output
5822to an SV. Uses an array of SVs if the C style variable argument list is
5823missing (NULL). When running with taint checks enabled, indicates via
5824C<maybe_tainted> if results are untrustworthy (often due to the use of
5825locales).
5826
5827=cut
5828*/
5829
5830void
5831Perl_sv_vcatpvfn(pTHX_ SV *sv, const char *pat, STRLEN patlen, va_list *args, SV **svargs, I32 svmax, bool *maybe_tainted)
5832{
5833 dTHR;
5834 char *p;
5835 char *q;
5836 char *patend;
5837 STRLEN origlen;
5838 I32 svix = 0;
5839 static char nullstr[] = "(null)";
5840 SV *argsv;
5841
5842 /* no matter what, this is a string now */
5843 (void)SvPV_force(sv, origlen);
5844
5845 /* special-case "", "%s", and "%_" */
5846 if (patlen == 0)
5847 return;
5848 if (patlen == 2 && pat[0] == '%') {
5849 switch (pat[1]) {
5850 case 's':
5851 if (args) {
5852 char *s = va_arg(*args, char*);
5853 sv_catpv(sv, s ? s : nullstr);
5854 }
5855 else if (svix < svmax) {
5856 sv_catsv(sv, *svargs);
5857 if (DO_UTF8(*svargs))
5858 SvUTF8_on(sv);
5859 }
5860 return;
5861 case '_':
5862 if (args) {
5863 argsv = va_arg(*args, SV*);
5864 sv_catsv(sv, argsv);
5865 if (DO_UTF8(argsv))
5866 SvUTF8_on(sv);
5867 return;
5868 }
5869 /* See comment on '_' below */
5870 break;
5871 }
5872 }
5873
5874 patend = (char*)pat + patlen;
5875 for (p = (char*)pat; p < patend; p = q) {
5876 bool alt = FALSE;
5877 bool left = FALSE;
5878 bool vectorize = FALSE;
5879 bool utf = FALSE;
5880 char fill = ' ';
5881 char plus = 0;
5882 char intsize = 0;
5883 STRLEN width = 0;
5884 STRLEN zeros = 0;
5885 bool has_precis = FALSE;
5886 STRLEN precis = 0;
5887 bool is_utf = FALSE;
5888
5889 char esignbuf[4];
5890 U8 utf8buf[UTF8_MAXLEN];
5891 STRLEN esignlen = 0;
5892
5893 char *eptr = Nullch;
5894 STRLEN elen = 0;
5895 /* Times 4: a decimal digit takes more than 3 binary digits.
5896 * NV_DIG: mantissa takes than many decimal digits.
5897 * Plus 32: Playing safe. */
5898 char ebuf[IV_DIG * 4 + NV_DIG + 32];
5899 /* large enough for "%#.#f" --chip */
5900 /* what about long double NVs? --jhi */
5901
5902 SV *vecsv;
5903 U8 *vecstr = Null(U8*);
5904 STRLEN veclen = 0;
5905 char c;
5906 int i;
5907 unsigned base;
5908 IV iv;
5909 UV uv;
5910 NV nv;
5911 STRLEN have;
5912 STRLEN need;
5913 STRLEN gap;
5914 char *dotstr = ".";
5915 STRLEN dotstrlen = 1;
5916
5917 for (q = p; q < patend && *q != '%'; ++q) ;
5918 if (q > p) {
5919 sv_catpvn(sv, p, q - p);
5920 p = q;
5921 }
5922 if (q++ >= patend)
5923 break;
5924
5925 /* FLAGS */
5926
5927 while (*q) {
5928 switch (*q) {
5929 case ' ':
5930 case '+':
5931 plus = *q++;
5932 continue;
5933
5934 case '-':
5935 left = TRUE;
5936 q++;
5937 continue;
5938
5939 case '0':
5940 fill = *q++;
5941 continue;
5942
5943 case '#':
5944 alt = TRUE;
5945 q++;
5946 continue;
5947
5948 case '*': /* printf("%*vX",":",$ipv6addr) */
5949 if (q[1] != 'v')
5950 break;
5951 q++;
5952 if (args)
5953 vecsv = va_arg(*args, SV*);
5954 else if (svix < svmax)
5955 vecsv = svargs[svix++];
5956 else
5957 continue;
5958 dotstr = SvPVx(vecsv,dotstrlen);
5959 if (DO_UTF8(vecsv))
5960 is_utf = TRUE;
5961 /* FALL THROUGH */
5962
5963 case 'v':
5964 vectorize = TRUE;
5965 q++;
5966 continue;
5967
5968 default:
5969 break;
5970 }
5971 break;
5972 }
5973
5974 /* WIDTH */
5975
5976 switch (*q) {
5977 case '1': case '2': case '3':
5978 case '4': case '5': case '6':
5979 case '7': case '8': case '9':
5980 width = 0;
5981 while (isDIGIT(*q))
5982 width = width * 10 + (*q++ - '0');
5983 break;
5984
5985 case '*':
5986 if (args)
5987 i = va_arg(*args, int);
5988 else
5989 i = (svix < svmax) ? SvIVx(svargs[svix++]) : 0;
5990 left |= (i < 0);
5991 width = (i < 0) ? -i : i;
5992 q++;
5993 break;
5994 }
5995
5996 /* PRECISION */
5997
5998 if (*q == '.') {
5999 q++;
6000 if (*q == '*') {
6001 if (args)
6002 i = va_arg(*args, int);
6003 else
6004 i = (svix < svmax) ? SvIVx(svargs[svix++]) : 0;
6005 precis = (i < 0) ? 0 : i;
6006 q++;
6007 }
6008 else {
6009 precis = 0;
6010 while (isDIGIT(*q))
6011 precis = precis * 10 + (*q++ - '0');
6012 }
6013 has_precis = TRUE;
6014 }
6015
6016 if (vectorize) {
6017 if (args) {
6018 vecsv = va_arg(*args, SV*);
6019 vecstr = (U8*)SvPVx(vecsv,veclen);
6020 utf = DO_UTF8(vecsv);
6021 }
6022 else if (svix < svmax) {
6023 vecsv = svargs[svix++];
6024 vecstr = (U8*)SvPVx(vecsv,veclen);
6025 utf = DO_UTF8(vecsv);
6026 }
6027 else {
6028 vecstr = (U8*)"";
6029 veclen = 0;
6030 }
6031 }
6032
6033 /* SIZE */
6034
6035 switch (*q) {
6036#ifdef HAS_QUAD
6037 case 'L': /* Ld */
6038 case 'q': /* qd */
6039 intsize = 'q';
6040 q++;
6041 break;
6042#endif
6043 case 'l':
6044#ifdef HAS_QUAD
6045 if (*(q + 1) == 'l') { /* lld */
6046 intsize = 'q';
6047 q += 2;
6048 break;
6049 }
6050#endif
6051 /* FALL THROUGH */
6052 case 'h':
6053 /* FALL THROUGH */
6054 case 'V':
6055 intsize = *q++;
6056 break;
6057 }
6058
6059 /* CONVERSION */
6060
6061 switch (c = *q++) {
6062
6063 /* STRINGS */
6064
6065 case '%':
6066 eptr = q - 1;
6067 elen = 1;
6068 goto string;
6069
6070 case 'c':
6071 if (args)
6072 uv = va_arg(*args, int);
6073 else
6074 uv = (svix < svmax) ? SvIVx(svargs[svix++]) : 0;
6075 if ((uv > 255 || (uv > 127 && SvUTF8(sv))) && !IN_BYTE) {
6076 eptr = (char*)utf8buf;
6077 elen = uv_to_utf8((U8*)eptr, uv) - utf8buf;
6078 is_utf = TRUE;
6079 }
6080 else {
6081 c = (char)uv;
6082 eptr = &c;
6083 elen = 1;
6084 }
6085 goto string;
6086
6087 case 's':
6088 if (args) {
6089 eptr = va_arg(*args, char*);
6090 if (eptr)
6091#ifdef MACOS_TRADITIONAL
6092 /* On MacOS, %#s format is used for Pascal strings */
6093 if (alt)
6094 elen = *eptr++;
6095 else
6096#endif
6097 elen = strlen(eptr);
6098 else {
6099 eptr = nullstr;
6100 elen = sizeof nullstr - 1;
6101 }
6102 }
6103 else if (svix < svmax) {
6104 argsv = svargs[svix++];
6105 eptr = SvPVx(argsv, elen);
6106 if (DO_UTF8(argsv)) {
6107 if (has_precis && precis < elen) {
6108 I32 p = precis;
6109 sv_pos_u2b(argsv, &p, 0); /* sticks at end */
6110 precis = p;
6111 }
6112 if (width) { /* fudge width (can't fudge elen) */
6113 width += elen - sv_len_utf8(argsv);
6114 }
6115 is_utf = TRUE;
6116 }
6117 }
6118 goto string;
6119
6120 case '_':
6121 /*
6122 * The "%_" hack might have to be changed someday,
6123 * if ISO or ANSI decide to use '_' for something.
6124 * So we keep it hidden from users' code.
6125 */
6126 if (!args)
6127 goto unknown;
6128 argsv = va_arg(*args,SV*);
6129 eptr = SvPVx(argsv, elen);
6130 if (DO_UTF8(argsv))
6131 is_utf = TRUE;
6132
6133 string:
6134 vectorize = FALSE;
6135 if (has_precis && elen > precis)
6136 elen = precis;
6137 break;
6138
6139 /* INTEGERS */
6140
6141 case 'p':
6142 if (alt)
6143 goto unknown;
6144 if (args)
6145 uv = PTR2UV(va_arg(*args, void*));
6146 else
6147 uv = (svix < svmax) ? PTR2UV(svargs[svix++]) : 0;
6148 base = 16;
6149 goto integer;
6150
6151 case 'D':
6152#ifdef IV_IS_QUAD
6153 intsize = 'q';
6154#else
6155 intsize = 'l';
6156#endif
6157 /* FALL THROUGH */
6158 case 'd':
6159 case 'i':
6160 if (vectorize) {
6161 I32 ulen;
6162 if (!veclen) {
6163 vectorize = FALSE;
6164 break;
6165 }
6166 if (utf)
6167 iv = (IV)utf8_to_uv(vecstr, &ulen);
6168 else {
6169 iv = *vecstr;
6170 ulen = 1;
6171 }
6172 vecstr += ulen;
6173 veclen -= ulen;
6174 }
6175 else if (args) {
6176 switch (intsize) {
6177 case 'h': iv = (short)va_arg(*args, int); break;
6178 default: iv = va_arg(*args, int); break;
6179 case 'l': iv = va_arg(*args, long); break;
6180 case 'V': iv = va_arg(*args, IV); break;
6181#ifdef HAS_QUAD
6182 case 'q': iv = va_arg(*args, Quad_t); break;
6183#endif
6184 }
6185 }
6186 else {
6187 iv = (svix < svmax) ? SvIVx(svargs[svix++]) : 0;
6188 switch (intsize) {
6189 case 'h': iv = (short)iv; break;
6190 default: break;
6191 case 'l': iv = (long)iv; break;
6192 case 'V': break;
6193#ifdef HAS_QUAD
6194 case 'q': iv = (Quad_t)iv; break;
6195#endif
6196 }
6197 }
6198 if (iv >= 0) {
6199 uv = iv;
6200 if (plus)
6201 esignbuf[esignlen++] = plus;
6202 }
6203 else {
6204 uv = -iv;
6205 esignbuf[esignlen++] = '-';
6206 }
6207 base = 10;
6208 goto integer;
6209
6210 case 'U':
6211#ifdef IV_IS_QUAD
6212 intsize = 'q';
6213#else
6214 intsize = 'l';
6215#endif
6216 /* FALL THROUGH */
6217 case 'u':
6218 base = 10;
6219 goto uns_integer;
6220
6221 case 'b':
6222 base = 2;
6223 goto uns_integer;
6224
6225 case 'O':
6226#ifdef IV_IS_QUAD
6227 intsize = 'q';
6228#else
6229 intsize = 'l';
6230#endif
6231 /* FALL THROUGH */
6232 case 'o':
6233 base = 8;
6234 goto uns_integer;
6235
6236 case 'X':
6237 case 'x':
6238 base = 16;
6239
6240 uns_integer:
6241 if (vectorize) {
6242 I32 ulen;
6243 vector:
6244 if (!veclen) {
6245 vectorize = FALSE;
6246 break;
6247 }
6248 if (utf)
6249 uv = utf8_to_uv(vecstr, &ulen);
6250 else {
6251 uv = *vecstr;
6252 ulen = 1;
6253 }
6254 vecstr += ulen;
6255 veclen -= ulen;
6256 }
6257 else if (args) {
6258 switch (intsize) {
6259 case 'h': uv = (unsigned short)va_arg(*args, unsigned); break;
6260 default: uv = va_arg(*args, unsigned); break;
6261 case 'l': uv = va_arg(*args, unsigned long); break;
6262 case 'V': uv = va_arg(*args, UV); break;
6263#ifdef HAS_QUAD
6264 case 'q': uv = va_arg(*args, Quad_t); break;
6265#endif
6266 }
6267 }
6268 else {
6269 uv = (svix < svmax) ? SvUVx(svargs[svix++]) : 0;
6270 switch (intsize) {
6271 case 'h': uv = (unsigned short)uv; break;
6272 default: break;
6273 case 'l': uv = (unsigned long)uv; break;
6274 case 'V': break;
6275#ifdef HAS_QUAD
6276 case 'q': uv = (Quad_t)uv; break;
6277#endif
6278 }
6279 }
6280
6281 integer:
6282 eptr = ebuf + sizeof ebuf;
6283 switch (base) {
6284 unsigned dig;
6285 case 16:
6286 if (!uv)
6287 alt = FALSE;
6288 p = (char*)((c == 'X')
6289 ? "0123456789ABCDEF" : "0123456789abcdef");
6290 do {
6291 dig = uv & 15;
6292 *--eptr = p[dig];
6293 } while (uv >>= 4);
6294 if (alt) {
6295 esignbuf[esignlen++] = '0';
6296 esignbuf[esignlen++] = c; /* 'x' or 'X' */
6297 }
6298 break;
6299 case 8:
6300 do {
6301 dig = uv & 7;
6302 *--eptr = '0' + dig;
6303 } while (uv >>= 3);
6304 if (alt && *eptr != '0')
6305 *--eptr = '0';
6306 break;
6307 case 2:
6308 do {
6309 dig = uv & 1;
6310 *--eptr = '0' + dig;
6311 } while (uv >>= 1);
6312 if (alt) {
6313 esignbuf[esignlen++] = '0';
6314 esignbuf[esignlen++] = 'b';
6315 }
6316 break;
6317 default: /* it had better be ten or less */
6318#if defined(PERL_Y2KWARN)
6319 if (ckWARN(WARN_Y2K)) {
6320 STRLEN n;
6321 char *s = SvPV(sv,n);
6322 if (n >= 2 && s[n-2] == '1' && s[n-1] == '9'
6323 && (n == 2 || !isDIGIT(s[n-3])))
6324 {
6325 Perl_warner(aTHX_ WARN_Y2K,
6326 "Possible Y2K bug: %%%c %s",
6327 c, "format string following '19'");
6328 }
6329 }
6330#endif
6331 do {
6332 dig = uv % base;
6333 *--eptr = '0' + dig;
6334 } while (uv /= base);
6335 break;
6336 }
6337 elen = (ebuf + sizeof ebuf) - eptr;
6338 if (has_precis) {
6339 if (precis > elen)
6340 zeros = precis - elen;
6341 else if (precis == 0 && elen == 1 && *eptr == '0')
6342 elen = 0;
6343 }
6344 break;
6345
6346 /* FLOATING POINT */
6347
6348 case 'F':
6349 c = 'f'; /* maybe %F isn't supported here */
6350 /* FALL THROUGH */
6351 case 'e': case 'E':
6352 case 'f':
6353 case 'g': case 'G':
6354
6355 /* This is evil, but floating point is even more evil */
6356
6357 vectorize = FALSE;
6358 if (args)
6359 nv = va_arg(*args, NV);
6360 else
6361 nv = (svix < svmax) ? SvNVx(svargs[svix++]) : 0.0;
6362
6363 need = 0;
6364 if (c != 'e' && c != 'E') {
6365 i = PERL_INT_MIN;
6366 (void)Perl_frexp(nv, &i);
6367 if (i == PERL_INT_MIN)
6368 Perl_die(aTHX_ "panic: frexp");
6369 if (i > 0)
6370 need = BIT_DIGITS(i);
6371 }
6372 need += has_precis ? precis : 6; /* known default */
6373 if (need < width)
6374 need = width;
6375
6376 need += 20; /* fudge factor */
6377 if (PL_efloatsize < need) {
6378 Safefree(PL_efloatbuf);
6379 PL_efloatsize = need + 20; /* more fudge */
6380 New(906, PL_efloatbuf, PL_efloatsize, char);
6381 PL_efloatbuf[0] = '\0';
6382 }
6383
6384 eptr = ebuf + sizeof ebuf;
6385 *--eptr = '\0';
6386 *--eptr = c;
6387#ifdef USE_LONG_DOUBLE
6388 {
6389 static char const my_prifldbl[] = PERL_PRIfldbl;
6390 char const *p = my_prifldbl + sizeof my_prifldbl - 3;
6391 while (p >= my_prifldbl) { *--eptr = *p--; }
6392 }
6393#endif
6394 if (has_precis) {
6395 base = precis;
6396 do { *--eptr = '0' + (base % 10); } while (base /= 10);
6397 *--eptr = '.';
6398 }
6399 if (width) {
6400 base = width;
6401 do { *--eptr = '0' + (base % 10); } while (base /= 10);
6402 }
6403 if (fill == '0')
6404 *--eptr = fill;
6405 if (left)
6406 *--eptr = '-';
6407 if (plus)
6408 *--eptr = plus;
6409 if (alt)
6410 *--eptr = '#';
6411 *--eptr = '%';
6412
6413 {
6414 RESTORE_NUMERIC_STANDARD();
6415 (void)sprintf(PL_efloatbuf, eptr, nv);
6416 RESTORE_NUMERIC_LOCAL();
6417 }
6418
6419 eptr = PL_efloatbuf;
6420 elen = strlen(PL_efloatbuf);
6421 break;
6422
6423 /* SPECIAL */
6424
6425 case 'n':
6426 vectorize = FALSE;
6427 i = SvCUR(sv) - origlen;
6428 if (args) {
6429 switch (intsize) {
6430 case 'h': *(va_arg(*args, short*)) = i; break;
6431 default: *(va_arg(*args, int*)) = i; break;
6432 case 'l': *(va_arg(*args, long*)) = i; break;
6433 case 'V': *(va_arg(*args, IV*)) = i; break;
6434#ifdef HAS_QUAD
6435 case 'q': *(va_arg(*args, Quad_t*)) = i; break;
6436#endif
6437 }
6438 }
6439 else if (svix < svmax)
6440 sv_setuv_mg(svargs[svix++], (UV)i);
6441 continue; /* not "break" */
6442
6443 /* UNKNOWN */
6444
6445 default:
6446 unknown:
6447 vectorize = FALSE;
6448 if (!args && ckWARN(WARN_PRINTF) &&
6449 (PL_op->op_type == OP_PRTF || PL_op->op_type == OP_SPRINTF)) {
6450 SV *msg = sv_newmortal();
6451 Perl_sv_setpvf(aTHX_ msg, "Invalid conversion in %s: ",
6452 (PL_op->op_type == OP_PRTF) ? "printf" : "sprintf");
6453 if (c) {
6454 if (isPRINT(c))
6455 Perl_sv_catpvf(aTHX_ msg,
6456 "\"%%%c\"", c & 0xFF);
6457 else
6458 Perl_sv_catpvf(aTHX_ msg,
6459 "\"%%\\%03"UVof"\"",
6460 (UV)c & 0xFF);
6461 } else
6462 sv_catpv(msg, "end of string");
6463 Perl_warner(aTHX_ WARN_PRINTF, "%"SVf, msg); /* yes, this is reentrant */
6464 }
6465
6466 /* output mangled stuff ... */
6467 if (c == '\0')
6468 --q;
6469 eptr = p;
6470 elen = q - p;
6471
6472 /* ... right here, because formatting flags should not apply */
6473 SvGROW(sv, SvCUR(sv) + elen + 1);
6474 p = SvEND(sv);
6475 memcpy(p, eptr, elen);
6476 p += elen;
6477 *p = '\0';
6478 SvCUR(sv) = p - SvPVX(sv);
6479 continue; /* not "break" */
6480 }
6481
6482 have = esignlen + zeros + elen;
6483 need = (have > width ? have : width);
6484 gap = need - have;
6485
6486 SvGROW(sv, SvCUR(sv) + need + dotstrlen + 1);
6487 p = SvEND(sv);
6488 if (esignlen && fill == '0') {
6489 for (i = 0; i < esignlen; i++)
6490 *p++ = esignbuf[i];
6491 }
6492 if (gap && !left) {
6493 memset(p, fill, gap);
6494 p += gap;
6495 }
6496 if (esignlen && fill != '0') {
6497 for (i = 0; i < esignlen; i++)
6498 *p++ = esignbuf[i];
6499 }
6500 if (zeros) {
6501 for (i = zeros; i; i--)
6502 *p++ = '0';
6503 }
6504 if (elen) {
6505 memcpy(p, eptr, elen);
6506 p += elen;
6507 }
6508 if (gap && left) {
6509 memset(p, ' ', gap);
6510 p += gap;
6511 }
6512 if (vectorize) {
6513 if (veclen) {
6514 memcpy(p, dotstr, dotstrlen);
6515 p += dotstrlen;
6516 }
6517 else
6518 vectorize = FALSE; /* done iterating over vecstr */
6519 }
6520 if (is_utf)
6521 SvUTF8_on(sv);
6522 *p = '\0';
6523 SvCUR(sv) = p - SvPVX(sv);
6524 if (vectorize) {
6525 esignlen = 0;
6526 goto vector;
6527 }
6528 }
6529}
6530
6531#if defined(USE_ITHREADS)
6532
6533#if defined(USE_THREADS)
6534# include "error: USE_THREADS and USE_ITHREADS are incompatible"
6535#endif
6536
6537#ifndef GpREFCNT_inc
6538# define GpREFCNT_inc(gp) ((gp) ? (++(gp)->gp_refcnt, (gp)) : (GP*)NULL)
6539#endif
6540
6541
6542#define sv_dup_inc(s) SvREFCNT_inc(sv_dup(s))
6543#define av_dup(s) (AV*)sv_dup((SV*)s)
6544#define av_dup_inc(s) (AV*)SvREFCNT_inc(sv_dup((SV*)s))
6545#define hv_dup(s) (HV*)sv_dup((SV*)s)
6546#define hv_dup_inc(s) (HV*)SvREFCNT_inc(sv_dup((SV*)s))
6547#define cv_dup(s) (CV*)sv_dup((SV*)s)
6548#define cv_dup_inc(s) (CV*)SvREFCNT_inc(sv_dup((SV*)s))
6549#define io_dup(s) (IO*)sv_dup((SV*)s)
6550#define io_dup_inc(s) (IO*)SvREFCNT_inc(sv_dup((SV*)s))
6551#define gv_dup(s) (GV*)sv_dup((SV*)s)
6552#define gv_dup_inc(s) (GV*)SvREFCNT_inc(sv_dup((SV*)s))
6553#define SAVEPV(p) (p ? savepv(p) : Nullch)
6554#define SAVEPVN(p,n) (p ? savepvn(p,n) : Nullch)
6555
6556REGEXP *
6557Perl_re_dup(pTHX_ REGEXP *r)
6558{
6559 /* XXX fix when pmop->op_pmregexp becomes shared */
6560 return ReREFCNT_inc(r);
6561}
6562
6563PerlIO *
6564Perl_fp_dup(pTHX_ PerlIO *fp, char type)
6565{
6566 PerlIO *ret;
6567 if (!fp)
6568 return (PerlIO*)NULL;
6569
6570 /* look for it in the table first */
6571 ret = (PerlIO*)ptr_table_fetch(PL_ptr_table, fp);
6572 if (ret)
6573 return ret;
6574
6575 /* create anew and remember what it is */
6576 ret = PerlIO_fdupopen(fp);
6577 ptr_table_store(PL_ptr_table, fp, ret);
6578 return ret;
6579}
6580
6581DIR *
6582Perl_dirp_dup(pTHX_ DIR *dp)
6583{
6584 if (!dp)
6585 return (DIR*)NULL;
6586 /* XXX TODO */
6587 return dp;
6588}
6589
6590GP *
6591Perl_gp_dup(pTHX_ GP *gp)
6592{
6593 GP *ret;
6594 if (!gp)
6595 return (GP*)NULL;
6596 /* look for it in the table first */
6597 ret = (GP*)ptr_table_fetch(PL_ptr_table, gp);
6598 if (ret)
6599 return ret;
6600
6601 /* create anew and remember what it is */
6602 Newz(0, ret, 1, GP);
6603 ptr_table_store(PL_ptr_table, gp, ret);
6604
6605 /* clone */
6606 ret->gp_refcnt = 0; /* must be before any other dups! */
6607 ret->gp_sv = sv_dup_inc(gp->gp_sv);
6608 ret->gp_io = io_dup_inc(gp->gp_io);
6609 ret->gp_form = cv_dup_inc(gp->gp_form);
6610 ret->gp_av = av_dup_inc(gp->gp_av);
6611 ret->gp_hv = hv_dup_inc(gp->gp_hv);
6612 ret->gp_egv = gv_dup(gp->gp_egv); /* GvEGV is not refcounted */
6613 ret->gp_cv = cv_dup_inc(gp->gp_cv);
6614 ret->gp_cvgen = gp->gp_cvgen;
6615 ret->gp_flags = gp->gp_flags;
6616 ret->gp_line = gp->gp_line;
6617 ret->gp_file = gp->gp_file; /* points to COP.cop_file */
6618 return ret;
6619}
6620
6621MAGIC *
6622Perl_mg_dup(pTHX_ MAGIC *mg)
6623{
6624 MAGIC *mgret = (MAGIC*)NULL;
6625 MAGIC *mgprev;
6626 if (!mg)
6627 return (MAGIC*)NULL;
6628 /* look for it in the table first */
6629 mgret = (MAGIC*)ptr_table_fetch(PL_ptr_table, mg);
6630 if (mgret)
6631 return mgret;
6632
6633 for (; mg; mg = mg->mg_moremagic) {
6634 MAGIC *nmg;
6635 Newz(0, nmg, 1, MAGIC);
6636 if (!mgret)
6637 mgret = nmg;
6638 else
6639 mgprev->mg_moremagic = nmg;
6640 nmg->mg_virtual = mg->mg_virtual; /* XXX copy dynamic vtable? */
6641 nmg->mg_private = mg->mg_private;
6642 nmg->mg_type = mg->mg_type;
6643 nmg->mg_flags = mg->mg_flags;
6644 if (mg->mg_type == 'r') {
6645 nmg->mg_obj = (SV*)re_dup((REGEXP*)mg->mg_obj);
6646 }
6647 else {
6648 nmg->mg_obj = (mg->mg_flags & MGf_REFCOUNTED)
6649 ? sv_dup_inc(mg->mg_obj)
6650 : sv_dup(mg->mg_obj);
6651 }
6652 nmg->mg_len = mg->mg_len;
6653 nmg->mg_ptr = mg->mg_ptr; /* XXX random ptr? */
6654 if (mg->mg_ptr && mg->mg_type != 'g') {
6655 if (mg->mg_len >= 0) {
6656 nmg->mg_ptr = SAVEPVN(mg->mg_ptr, mg->mg_len);
6657 if (mg->mg_type == 'c' && AMT_AMAGIC((AMT*)mg->mg_ptr)) {
6658 AMT *amtp = (AMT*)mg->mg_ptr;
6659 AMT *namtp = (AMT*)nmg->mg_ptr;
6660 I32 i;
6661 for (i = 1; i < NofAMmeth; i++) {
6662 namtp->table[i] = cv_dup_inc(amtp->table[i]);
6663 }
6664 }
6665 }
6666 else if (mg->mg_len == HEf_SVKEY)
6667 nmg->mg_ptr = (char*)sv_dup_inc((SV*)mg->mg_ptr);
6668 }
6669 mgprev = nmg;
6670 }
6671 return mgret;
6672}
6673
6674PTR_TBL_t *
6675Perl_ptr_table_new(pTHX)
6676{
6677 PTR_TBL_t *tbl;
6678 Newz(0, tbl, 1, PTR_TBL_t);
6679 tbl->tbl_max = 511;
6680 tbl->tbl_items = 0;
6681 Newz(0, tbl->tbl_ary, tbl->tbl_max + 1, PTR_TBL_ENT_t*);
6682 return tbl;
6683}
6684
6685void *
6686Perl_ptr_table_fetch(pTHX_ PTR_TBL_t *tbl, void *sv)
6687{
6688 PTR_TBL_ENT_t *tblent;
6689 UV hash = PTR2UV(sv);
6690 assert(tbl);
6691 tblent = tbl->tbl_ary[hash & tbl->tbl_max];
6692 for (; tblent; tblent = tblent->next) {
6693 if (tblent->oldval == sv)
6694 return tblent->newval;
6695 }
6696 return (void*)NULL;
6697}
6698
6699void
6700Perl_ptr_table_store(pTHX_ PTR_TBL_t *tbl, void *oldv, void *newv)
6701{
6702 PTR_TBL_ENT_t *tblent, **otblent;
6703 /* XXX this may be pessimal on platforms where pointers aren't good
6704 * hash values e.g. if they grow faster in the most significant
6705 * bits */
6706 UV hash = PTR2UV(oldv);
6707 bool i = 1;
6708
6709 assert(tbl);
6710 otblent = &tbl->tbl_ary[hash & tbl->tbl_max];
6711 for (tblent = *otblent; tblent; i=0, tblent = tblent->next) {
6712 if (tblent->oldval == oldv) {
6713 tblent->newval = newv;
6714 tbl->tbl_items++;
6715 return;
6716 }
6717 }
6718 Newz(0, tblent, 1, PTR_TBL_ENT_t);
6719 tblent->oldval = oldv;
6720 tblent->newval = newv;
6721 tblent->next = *otblent;
6722 *otblent = tblent;
6723 tbl->tbl_items++;
6724 if (i && tbl->tbl_items > tbl->tbl_max)
6725 ptr_table_split(tbl);
6726}
6727
6728void
6729Perl_ptr_table_split(pTHX_ PTR_TBL_t *tbl)
6730{
6731 PTR_TBL_ENT_t **ary = tbl->tbl_ary;
6732 UV oldsize = tbl->tbl_max + 1;
6733 UV newsize = oldsize * 2;
6734 UV i;
6735
6736 Renew(ary, newsize, PTR_TBL_ENT_t*);
6737 Zero(&ary[oldsize], newsize-oldsize, PTR_TBL_ENT_t*);
6738 tbl->tbl_max = --newsize;
6739 tbl->tbl_ary = ary;
6740 for (i=0; i < oldsize; i++, ary++) {
6741 PTR_TBL_ENT_t **curentp, **entp, *ent;
6742 if (!*ary)
6743 continue;
6744 curentp = ary + oldsize;
6745 for (entp = ary, ent = *ary; ent; ent = *entp) {
6746 if ((newsize & PTR2UV(ent->oldval)) != i) {
6747 *entp = ent->next;
6748 ent->next = *curentp;
6749 *curentp = ent;
6750 continue;
6751 }
6752 else
6753 entp = &ent->next;
6754 }
6755 }
6756}
6757
6758#ifdef DEBUGGING
6759char *PL_watch_pvx;
6760#endif
6761
6762SV *
6763Perl_sv_dup(pTHX_ SV *sstr)
6764{
6765 SV *dstr;
6766
6767 if (!sstr || SvTYPE(sstr) == SVTYPEMASK)
6768 return Nullsv;
6769 /* look for it in the table first */
6770 dstr = (SV*)ptr_table_fetch(PL_ptr_table, sstr);
6771 if (dstr)
6772 return dstr;
6773
6774 /* create anew and remember what it is */
6775 new_SV(dstr);
6776 ptr_table_store(PL_ptr_table, sstr, dstr);
6777
6778 /* clone */
6779 SvFLAGS(dstr) = SvFLAGS(sstr);
6780 SvFLAGS(dstr) &= ~SVf_OOK; /* don't propagate OOK hack */
6781 SvREFCNT(dstr) = 0; /* must be before any other dups! */
6782
6783#ifdef DEBUGGING
6784 if (SvANY(sstr) && PL_watch_pvx && SvPVX(sstr) == PL_watch_pvx)
6785 PerlIO_printf(Perl_debug_log, "watch at %p hit, found string \"%s\"\n",
6786 PL_watch_pvx, SvPVX(sstr));
6787#endif
6788
6789 switch (SvTYPE(sstr)) {
6790 case SVt_NULL:
6791 SvANY(dstr) = NULL;
6792 break;
6793 case SVt_IV:
6794 SvANY(dstr) = new_XIV();
6795 SvIVX(dstr) = SvIVX(sstr);
6796 break;
6797 case SVt_NV:
6798 SvANY(dstr) = new_XNV();
6799 SvNVX(dstr) = SvNVX(sstr);
6800 break;
6801 case SVt_RV:
6802 SvANY(dstr) = new_XRV();
6803 SvRV(dstr) = sv_dup_inc(SvRV(sstr));
6804 break;
6805 case SVt_PV:
6806 SvANY(dstr) = new_XPV();
6807 SvCUR(dstr) = SvCUR(sstr);
6808 SvLEN(dstr) = SvLEN(sstr);
6809 if (SvROK(sstr))
6810 SvRV(dstr) = sv_dup_inc(SvRV(sstr));
6811 else if (SvPVX(sstr) && SvLEN(sstr))
6812 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
6813 else
6814 SvPVX(dstr) = SvPVX(sstr); /* XXX shared string/random ptr? */
6815 break;
6816 case SVt_PVIV:
6817 SvANY(dstr) = new_XPVIV();
6818 SvCUR(dstr) = SvCUR(sstr);
6819 SvLEN(dstr) = SvLEN(sstr);
6820 SvIVX(dstr) = SvIVX(sstr);
6821 if (SvROK(sstr))
6822 SvRV(dstr) = sv_dup_inc(SvRV(sstr));
6823 else if (SvPVX(sstr) && SvLEN(sstr))
6824 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
6825 else
6826 SvPVX(dstr) = SvPVX(sstr); /* XXX shared string/random ptr? */
6827 break;
6828 case SVt_PVNV:
6829 SvANY(dstr) = new_XPVNV();
6830 SvCUR(dstr) = SvCUR(sstr);
6831 SvLEN(dstr) = SvLEN(sstr);
6832 SvIVX(dstr) = SvIVX(sstr);
6833 SvNVX(dstr) = SvNVX(sstr);
6834 if (SvROK(sstr))
6835 SvRV(dstr) = sv_dup_inc(SvRV(sstr));
6836 else if (SvPVX(sstr) && SvLEN(sstr))
6837 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
6838 else
6839 SvPVX(dstr) = SvPVX(sstr); /* XXX shared string/random ptr? */
6840 break;
6841 case SVt_PVMG:
6842 SvANY(dstr) = new_XPVMG();
6843 SvCUR(dstr) = SvCUR(sstr);
6844 SvLEN(dstr) = SvLEN(sstr);
6845 SvIVX(dstr) = SvIVX(sstr);
6846 SvNVX(dstr) = SvNVX(sstr);
6847 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr));
6848 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr));
6849 if (SvROK(sstr))
6850 SvRV(dstr) = sv_dup_inc(SvRV(sstr));
6851 else if (SvPVX(sstr) && SvLEN(sstr))
6852 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
6853 else
6854 SvPVX(dstr) = SvPVX(sstr); /* XXX shared string/random ptr? */
6855 break;
6856 case SVt_PVBM:
6857 SvANY(dstr) = new_XPVBM();
6858 SvCUR(dstr) = SvCUR(sstr);
6859 SvLEN(dstr) = SvLEN(sstr);
6860 SvIVX(dstr) = SvIVX(sstr);
6861 SvNVX(dstr) = SvNVX(sstr);
6862 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr));
6863 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr));
6864 if (SvROK(sstr))
6865 SvRV(dstr) = sv_dup_inc(SvRV(sstr));
6866 else if (SvPVX(sstr) && SvLEN(sstr))
6867 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
6868 else
6869 SvPVX(dstr) = SvPVX(sstr); /* XXX shared string/random ptr? */
6870 BmRARE(dstr) = BmRARE(sstr);
6871 BmUSEFUL(dstr) = BmUSEFUL(sstr);
6872 BmPREVIOUS(dstr)= BmPREVIOUS(sstr);
6873 break;
6874 case SVt_PVLV:
6875 SvANY(dstr) = new_XPVLV();
6876 SvCUR(dstr) = SvCUR(sstr);
6877 SvLEN(dstr) = SvLEN(sstr);
6878 SvIVX(dstr) = SvIVX(sstr);
6879 SvNVX(dstr) = SvNVX(sstr);
6880 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr));
6881 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr));
6882 if (SvROK(sstr))
6883 SvRV(dstr) = sv_dup_inc(SvRV(sstr));
6884 else if (SvPVX(sstr) && SvLEN(sstr))
6885 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
6886 else
6887 SvPVX(dstr) = SvPVX(sstr); /* XXX shared string/random ptr? */
6888 LvTARGOFF(dstr) = LvTARGOFF(sstr); /* XXX sometimes holds PMOP* when DEBUGGING */
6889 LvTARGLEN(dstr) = LvTARGLEN(sstr);
6890 LvTARG(dstr) = sv_dup_inc(LvTARG(sstr));
6891 LvTYPE(dstr) = LvTYPE(sstr);
6892 break;
6893 case SVt_PVGV:
6894 SvANY(dstr) = new_XPVGV();
6895 SvCUR(dstr) = SvCUR(sstr);
6896 SvLEN(dstr) = SvLEN(sstr);
6897 SvIVX(dstr) = SvIVX(sstr);
6898 SvNVX(dstr) = SvNVX(sstr);
6899 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr));
6900 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr));
6901 if (SvROK(sstr))
6902 SvRV(dstr) = sv_dup_inc(SvRV(sstr));
6903 else if (SvPVX(sstr) && SvLEN(sstr))
6904 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
6905 else
6906 SvPVX(dstr) = SvPVX(sstr); /* XXX shared string/random ptr? */
6907 GvNAMELEN(dstr) = GvNAMELEN(sstr);
6908 GvNAME(dstr) = SAVEPVN(GvNAME(sstr), GvNAMELEN(sstr));
6909 GvSTASH(dstr) = hv_dup_inc(GvSTASH(sstr));
6910 GvFLAGS(dstr) = GvFLAGS(sstr);
6911 GvGP(dstr) = gp_dup(GvGP(sstr));
6912 (void)GpREFCNT_inc(GvGP(dstr));
6913 break;
6914 case SVt_PVIO:
6915 SvANY(dstr) = new_XPVIO();
6916 SvCUR(dstr) = SvCUR(sstr);
6917 SvLEN(dstr) = SvLEN(sstr);
6918 SvIVX(dstr) = SvIVX(sstr);
6919 SvNVX(dstr) = SvNVX(sstr);
6920 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr));
6921 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr));
6922 if (SvROK(sstr))
6923 SvRV(dstr) = sv_dup_inc(SvRV(sstr));
6924 else if (SvPVX(sstr) && SvLEN(sstr))
6925 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
6926 else
6927 SvPVX(dstr) = SvPVX(sstr); /* XXX shared string/random ptr? */
6928 IoIFP(dstr) = fp_dup(IoIFP(sstr), IoTYPE(sstr));
6929 if (IoOFP(sstr) == IoIFP(sstr))
6930 IoOFP(dstr) = IoIFP(dstr);
6931 else
6932 IoOFP(dstr) = fp_dup(IoOFP(sstr), IoTYPE(sstr));
6933 /* PL_rsfp_filters entries have fake IoDIRP() */
6934 if (IoDIRP(sstr) && !(IoFLAGS(sstr) & IOf_FAKE_DIRP))
6935 IoDIRP(dstr) = dirp_dup(IoDIRP(sstr));
6936 else
6937 IoDIRP(dstr) = IoDIRP(sstr);
6938 IoLINES(dstr) = IoLINES(sstr);
6939 IoPAGE(dstr) = IoPAGE(sstr);
6940 IoPAGE_LEN(dstr) = IoPAGE_LEN(sstr);
6941 IoLINES_LEFT(dstr) = IoLINES_LEFT(sstr);
6942 IoTOP_NAME(dstr) = SAVEPV(IoTOP_NAME(sstr));
6943 IoTOP_GV(dstr) = gv_dup(IoTOP_GV(sstr));
6944 IoFMT_NAME(dstr) = SAVEPV(IoFMT_NAME(sstr));
6945 IoFMT_GV(dstr) = gv_dup(IoFMT_GV(sstr));
6946 IoBOTTOM_NAME(dstr) = SAVEPV(IoBOTTOM_NAME(sstr));
6947 IoBOTTOM_GV(dstr) = gv_dup(IoBOTTOM_GV(sstr));
6948 IoSUBPROCESS(dstr) = IoSUBPROCESS(sstr);
6949 IoTYPE(dstr) = IoTYPE(sstr);
6950 IoFLAGS(dstr) = IoFLAGS(sstr);
6951 break;
6952 case SVt_PVAV:
6953 SvANY(dstr) = new_XPVAV();
6954 SvCUR(dstr) = SvCUR(sstr);
6955 SvLEN(dstr) = SvLEN(sstr);
6956 SvIVX(dstr) = SvIVX(sstr);
6957 SvNVX(dstr) = SvNVX(sstr);
6958 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr));
6959 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr));
6960 AvARYLEN((AV*)dstr) = sv_dup_inc(AvARYLEN((AV*)sstr));
6961 AvFLAGS((AV*)dstr) = AvFLAGS((AV*)sstr);
6962 if (AvARRAY((AV*)sstr)) {
6963 SV **dst_ary, **src_ary;
6964 SSize_t items = AvFILLp((AV*)sstr) + 1;
6965
6966 src_ary = AvARRAY((AV*)sstr);
6967 Newz(0, dst_ary, AvMAX((AV*)sstr)+1, SV*);
6968 ptr_table_store(PL_ptr_table, src_ary, dst_ary);
6969 SvPVX(dstr) = (char*)dst_ary;
6970 AvALLOC((AV*)dstr) = dst_ary;
6971 if (AvREAL((AV*)sstr)) {
6972 while (items-- > 0)
6973 *dst_ary++ = sv_dup_inc(*src_ary++);
6974 }
6975 else {
6976 while (items-- > 0)
6977 *dst_ary++ = sv_dup(*src_ary++);
6978 }
6979 items = AvMAX((AV*)sstr) - AvFILLp((AV*)sstr);
6980 while (items-- > 0) {
6981 *dst_ary++ = &PL_sv_undef;
6982 }
6983 }
6984 else {
6985 SvPVX(dstr) = Nullch;
6986 AvALLOC((AV*)dstr) = (SV**)NULL;
6987 }
6988 break;
6989 case SVt_PVHV:
6990 SvANY(dstr) = new_XPVHV();
6991 SvCUR(dstr) = SvCUR(sstr);
6992 SvLEN(dstr) = SvLEN(sstr);
6993 SvIVX(dstr) = SvIVX(sstr);
6994 SvNVX(dstr) = SvNVX(sstr);
6995 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr));
6996 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr));
6997 HvRITER((HV*)dstr) = HvRITER((HV*)sstr);
6998 if (HvARRAY((HV*)sstr)) {
6999 STRLEN i = 0;
7000 XPVHV *dxhv = (XPVHV*)SvANY(dstr);
7001 XPVHV *sxhv = (XPVHV*)SvANY(sstr);
7002 Newz(0, dxhv->xhv_array,
7003 PERL_HV_ARRAY_ALLOC_BYTES(dxhv->xhv_max+1), char);
7004 while (i <= sxhv->xhv_max) {
7005 ((HE**)dxhv->xhv_array)[i] = he_dup(((HE**)sxhv->xhv_array)[i],
7006 !!HvSHAREKEYS(sstr));
7007 ++i;
7008 }
7009 dxhv->xhv_eiter = he_dup(sxhv->xhv_eiter, !!HvSHAREKEYS(sstr));
7010 }
7011 else {
7012 SvPVX(dstr) = Nullch;
7013 HvEITER((HV*)dstr) = (HE*)NULL;
7014 }
7015 HvPMROOT((HV*)dstr) = HvPMROOT((HV*)sstr); /* XXX */
7016 HvNAME((HV*)dstr) = SAVEPV(HvNAME((HV*)sstr));
7017 break;
7018 case SVt_PVFM:
7019 SvANY(dstr) = new_XPVFM();
7020 FmLINES(dstr) = FmLINES(sstr);
7021 goto dup_pvcv;
7022 /* NOTREACHED */
7023 case SVt_PVCV:
7024 SvANY(dstr) = new_XPVCV();
7025dup_pvcv:
7026 SvCUR(dstr) = SvCUR(sstr);
7027 SvLEN(dstr) = SvLEN(sstr);
7028 SvIVX(dstr) = SvIVX(sstr);
7029 SvNVX(dstr) = SvNVX(sstr);
7030 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr));
7031 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr));
7032 if (SvPVX(sstr) && SvLEN(sstr))
7033 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
7034 else
7035 SvPVX(dstr) = SvPVX(sstr); /* XXX shared string/random ptr? */
7036 CvSTASH(dstr) = hv_dup(CvSTASH(sstr));/* NOTE: not refcounted */
7037 CvSTART(dstr) = CvSTART(sstr);
7038 CvROOT(dstr) = OpREFCNT_inc(CvROOT(sstr));
7039 CvXSUB(dstr) = CvXSUB(sstr);
7040 CvXSUBANY(dstr) = CvXSUBANY(sstr);
7041 CvGV(dstr) = gv_dup_inc(CvGV(sstr));
7042 CvDEPTH(dstr) = CvDEPTH(sstr);
7043 if (CvPADLIST(sstr) && !AvREAL(CvPADLIST(sstr))) {
7044 /* XXX padlists are real, but pretend to be not */
7045 AvREAL_on(CvPADLIST(sstr));
7046 CvPADLIST(dstr) = av_dup_inc(CvPADLIST(sstr));
7047 AvREAL_off(CvPADLIST(sstr));
7048 AvREAL_off(CvPADLIST(dstr));
7049 }
7050 else
7051 CvPADLIST(dstr) = av_dup_inc(CvPADLIST(sstr));
7052 CvOUTSIDE(dstr) = cv_dup_inc(CvOUTSIDE(sstr));
7053 CvFLAGS(dstr) = CvFLAGS(sstr);
7054 break;
7055 default:
7056 Perl_croak(aTHX_ "Bizarre SvTYPE [%d]", SvTYPE(sstr));
7057 break;
7058 }
7059
7060 if (SvOBJECT(dstr) && SvTYPE(dstr) != SVt_PVIO)
7061 ++PL_sv_objcount;
7062
7063 return dstr;
7064}
7065
7066PERL_CONTEXT *
7067Perl_cx_dup(pTHX_ PERL_CONTEXT *cxs, I32 ix, I32 max)
7068{
7069 PERL_CONTEXT *ncxs;
7070
7071 if (!cxs)
7072 return (PERL_CONTEXT*)NULL;
7073
7074 /* look for it in the table first */
7075 ncxs = (PERL_CONTEXT*)ptr_table_fetch(PL_ptr_table, cxs);
7076 if (ncxs)
7077 return ncxs;
7078
7079 /* create anew and remember what it is */
7080 Newz(56, ncxs, max + 1, PERL_CONTEXT);
7081 ptr_table_store(PL_ptr_table, cxs, ncxs);
7082
7083 while (ix >= 0) {
7084 PERL_CONTEXT *cx = &cxs[ix];
7085 PERL_CONTEXT *ncx = &ncxs[ix];
7086 ncx->cx_type = cx->cx_type;
7087 if (CxTYPE(cx) == CXt_SUBST) {
7088 Perl_croak(aTHX_ "Cloning substitution context is unimplemented");
7089 }
7090 else {
7091 ncx->blk_oldsp = cx->blk_oldsp;
7092 ncx->blk_oldcop = cx->blk_oldcop;
7093 ncx->blk_oldretsp = cx->blk_oldretsp;
7094 ncx->blk_oldmarksp = cx->blk_oldmarksp;
7095 ncx->blk_oldscopesp = cx->blk_oldscopesp;
7096 ncx->blk_oldpm = cx->blk_oldpm;
7097 ncx->blk_gimme = cx->blk_gimme;
7098 switch (CxTYPE(cx)) {
7099 case CXt_SUB:
7100 ncx->blk_sub.cv = (cx->blk_sub.olddepth == 0
7101 ? cv_dup_inc(cx->blk_sub.cv)
7102 : cv_dup(cx->blk_sub.cv));
7103 ncx->blk_sub.argarray = (cx->blk_sub.hasargs
7104 ? av_dup_inc(cx->blk_sub.argarray)
7105 : Nullav);
7106 ncx->blk_sub.savearray = av_dup(cx->blk_sub.savearray);
7107 ncx->blk_sub.olddepth = cx->blk_sub.olddepth;
7108 ncx->blk_sub.hasargs = cx->blk_sub.hasargs;
7109 ncx->blk_sub.lval = cx->blk_sub.lval;
7110 break;
7111 case CXt_EVAL:
7112 ncx->blk_eval.old_in_eval = cx->blk_eval.old_in_eval;
7113 ncx->blk_eval.old_op_type = cx->blk_eval.old_op_type;
7114 ncx->blk_eval.old_namesv = sv_dup_inc(cx->blk_eval.old_namesv);
7115 ncx->blk_eval.old_eval_root = cx->blk_eval.old_eval_root;
7116 ncx->blk_eval.cur_text = sv_dup(cx->blk_eval.cur_text);
7117 break;
7118 case CXt_LOOP:
7119 ncx->blk_loop.label = cx->blk_loop.label;
7120 ncx->blk_loop.resetsp = cx->blk_loop.resetsp;
7121 ncx->blk_loop.redo_op = cx->blk_loop.redo_op;
7122 ncx->blk_loop.next_op = cx->blk_loop.next_op;
7123 ncx->blk_loop.last_op = cx->blk_loop.last_op;
7124 ncx->blk_loop.iterdata = (CxPADLOOP(cx)
7125 ? cx->blk_loop.iterdata
7126 : gv_dup((GV*)cx->blk_loop.iterdata));
7127 ncx->blk_loop.oldcurpad
7128 = (SV**)ptr_table_fetch(PL_ptr_table,
7129 cx->blk_loop.oldcurpad);
7130 ncx->blk_loop.itersave = sv_dup_inc(cx->blk_loop.itersave);
7131 ncx->blk_loop.iterlval = sv_dup_inc(cx->blk_loop.iterlval);
7132 ncx->blk_loop.iterary = av_dup_inc(cx->blk_loop.iterary);
7133 ncx->blk_loop.iterix = cx->blk_loop.iterix;
7134 ncx->blk_loop.itermax = cx->blk_loop.itermax;
7135 break;
7136 case CXt_FORMAT:
7137 ncx->blk_sub.cv = cv_dup(cx->blk_sub.cv);
7138 ncx->blk_sub.gv = gv_dup(cx->blk_sub.gv);
7139 ncx->blk_sub.dfoutgv = gv_dup_inc(cx->blk_sub.dfoutgv);
7140 ncx->blk_sub.hasargs = cx->blk_sub.hasargs;
7141 break;
7142 case CXt_BLOCK:
7143 case CXt_NULL:
7144 break;
7145 }
7146 }
7147 --ix;
7148 }
7149 return ncxs;
7150}
7151
7152PERL_SI *
7153Perl_si_dup(pTHX_ PERL_SI *si)
7154{
7155 PERL_SI *nsi;
7156
7157 if (!si)
7158 return (PERL_SI*)NULL;
7159
7160 /* look for it in the table first */
7161 nsi = (PERL_SI*)ptr_table_fetch(PL_ptr_table, si);
7162 if (nsi)
7163 return nsi;
7164
7165 /* create anew and remember what it is */
7166 Newz(56, nsi, 1, PERL_SI);
7167 ptr_table_store(PL_ptr_table, si, nsi);
7168
7169 nsi->si_stack = av_dup_inc(si->si_stack);
7170 nsi->si_cxix = si->si_cxix;
7171 nsi->si_cxmax = si->si_cxmax;
7172 nsi->si_cxstack = cx_dup(si->si_cxstack, si->si_cxix, si->si_cxmax);
7173 nsi->si_type = si->si_type;
7174 nsi->si_prev = si_dup(si->si_prev);
7175 nsi->si_next = si_dup(si->si_next);
7176 nsi->si_markoff = si->si_markoff;
7177
7178 return nsi;
7179}
7180
7181#define POPINT(ss,ix) ((ss)[--(ix)].any_i32)
7182#define TOPINT(ss,ix) ((ss)[ix].any_i32)
7183#define POPLONG(ss,ix) ((ss)[--(ix)].any_long)
7184#define TOPLONG(ss,ix) ((ss)[ix].any_long)
7185#define POPIV(ss,ix) ((ss)[--(ix)].any_iv)
7186#define TOPIV(ss,ix) ((ss)[ix].any_iv)
7187#define POPPTR(ss,ix) ((ss)[--(ix)].any_ptr)
7188#define TOPPTR(ss,ix) ((ss)[ix].any_ptr)
7189#define POPDPTR(ss,ix) ((ss)[--(ix)].any_dptr)
7190#define TOPDPTR(ss,ix) ((ss)[ix].any_dptr)
7191#define POPDXPTR(ss,ix) ((ss)[--(ix)].any_dxptr)
7192#define TOPDXPTR(ss,ix) ((ss)[ix].any_dxptr)
7193
7194/* XXXXX todo */
7195#define pv_dup_inc(p) SAVEPV(p)
7196#define pv_dup(p) SAVEPV(p)
7197#define svp_dup_inc(p,pp) any_dup(p,pp)
7198
7199void *
7200Perl_any_dup(pTHX_ void *v, PerlInterpreter *proto_perl)
7201{
7202 void *ret;
7203
7204 if (!v)
7205 return (void*)NULL;
7206
7207 /* look for it in the table first */
7208 ret = ptr_table_fetch(PL_ptr_table, v);
7209 if (ret)
7210 return ret;
7211
7212 /* see if it is part of the interpreter structure */
7213 if (v >= (void*)proto_perl && v < (void*)(proto_perl+1))
7214 ret = (void*)(((char*)aTHXo) + (((char*)v) - (char*)proto_perl));
7215 else
7216 ret = v;
7217
7218 return ret;
7219}
7220
7221ANY *
7222Perl_ss_dup(pTHX_ PerlInterpreter *proto_perl)
7223{
7224 ANY *ss = proto_perl->Tsavestack;
7225 I32 ix = proto_perl->Tsavestack_ix;
7226 I32 max = proto_perl->Tsavestack_max;
7227 ANY *nss;
7228 SV *sv;
7229 GV *gv;
7230 AV *av;
7231 HV *hv;
7232 void* ptr;
7233 int intval;
7234 long longval;
7235 GP *gp;
7236 IV iv;
7237 I32 i;
7238 char *c;
7239 void (*dptr) (void*);
7240 void (*dxptr) (pTHXo_ void*);
7241 OP *o;
7242
7243 Newz(54, nss, max, ANY);
7244
7245 while (ix > 0) {
7246 i = POPINT(ss,ix);
7247 TOPINT(nss,ix) = i;
7248 switch (i) {
7249 case SAVEt_ITEM: /* normal string */
7250 sv = (SV*)POPPTR(ss,ix);
7251 TOPPTR(nss,ix) = sv_dup_inc(sv);
7252 sv = (SV*)POPPTR(ss,ix);
7253 TOPPTR(nss,ix) = sv_dup_inc(sv);
7254 break;
7255 case SAVEt_SV: /* scalar reference */
7256 sv = (SV*)POPPTR(ss,ix);
7257 TOPPTR(nss,ix) = sv_dup_inc(sv);
7258 gv = (GV*)POPPTR(ss,ix);
7259 TOPPTR(nss,ix) = gv_dup_inc(gv);
7260 break;
7261 case SAVEt_GENERIC_PVREF: /* generic char* */
7262 c = (char*)POPPTR(ss,ix);
7263 TOPPTR(nss,ix) = pv_dup(c);
7264 ptr = POPPTR(ss,ix);
7265 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7266 break;
7267 case SAVEt_GENERIC_SVREF: /* generic sv */
7268 case SAVEt_SVREF: /* scalar reference */
7269 sv = (SV*)POPPTR(ss,ix);
7270 TOPPTR(nss,ix) = sv_dup_inc(sv);
7271 ptr = POPPTR(ss,ix);
7272 TOPPTR(nss,ix) = svp_dup_inc((SV**)ptr, proto_perl);/* XXXXX */
7273 break;
7274 case SAVEt_AV: /* array reference */
7275 av = (AV*)POPPTR(ss,ix);
7276 TOPPTR(nss,ix) = av_dup_inc(av);
7277 gv = (GV*)POPPTR(ss,ix);
7278 TOPPTR(nss,ix) = gv_dup(gv);
7279 break;
7280 case SAVEt_HV: /* hash reference */
7281 hv = (HV*)POPPTR(ss,ix);
7282 TOPPTR(nss,ix) = hv_dup_inc(hv);
7283 gv = (GV*)POPPTR(ss,ix);
7284 TOPPTR(nss,ix) = gv_dup(gv);
7285 break;
7286 case SAVEt_INT: /* int reference */
7287 ptr = POPPTR(ss,ix);
7288 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7289 intval = (int)POPINT(ss,ix);
7290 TOPINT(nss,ix) = intval;
7291 break;
7292 case SAVEt_LONG: /* long reference */
7293 ptr = POPPTR(ss,ix);
7294 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7295 longval = (long)POPLONG(ss,ix);
7296 TOPLONG(nss,ix) = longval;
7297 break;
7298 case SAVEt_I32: /* I32 reference */
7299 case SAVEt_I16: /* I16 reference */
7300 case SAVEt_I8: /* I8 reference */
7301 ptr = POPPTR(ss,ix);
7302 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7303 i = POPINT(ss,ix);
7304 TOPINT(nss,ix) = i;
7305 break;
7306 case SAVEt_IV: /* IV reference */
7307 ptr = POPPTR(ss,ix);
7308 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7309 iv = POPIV(ss,ix);
7310 TOPIV(nss,ix) = iv;
7311 break;
7312 case SAVEt_SPTR: /* SV* reference */
7313 ptr = POPPTR(ss,ix);
7314 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7315 sv = (SV*)POPPTR(ss,ix);
7316 TOPPTR(nss,ix) = sv_dup(sv);
7317 break;
7318 case SAVEt_VPTR: /* random* reference */
7319 ptr = POPPTR(ss,ix);
7320 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7321 ptr = POPPTR(ss,ix);
7322 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7323 break;
7324 case SAVEt_PPTR: /* char* reference */
7325 ptr = POPPTR(ss,ix);
7326 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7327 c = (char*)POPPTR(ss,ix);
7328 TOPPTR(nss,ix) = pv_dup(c);
7329 break;
7330 case SAVEt_HPTR: /* HV* reference */
7331 ptr = POPPTR(ss,ix);
7332 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7333 hv = (HV*)POPPTR(ss,ix);
7334 TOPPTR(nss,ix) = hv_dup(hv);
7335 break;
7336 case SAVEt_APTR: /* AV* reference */
7337 ptr = POPPTR(ss,ix);
7338 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
7339 av = (AV*)POPPTR(ss,ix);
7340 TOPPTR(nss,ix) = av_dup(av);
7341 break;
7342 case SAVEt_NSTAB:
7343 gv = (GV*)POPPTR(ss,ix);
7344 TOPPTR(nss,ix) = gv_dup(gv);
7345 break;
7346 case SAVEt_GP: /* scalar reference */
7347 gp = (GP*)POPPTR(ss,ix);
7348 TOPPTR(nss,ix) = gp = gp_dup(gp);
7349 (void)GpREFCNT_inc(gp);
7350 gv = (GV*)POPPTR(ss,ix);
7351 TOPPTR(nss,ix) = gv_dup_inc(c);
7352 c = (char*)POPPTR(ss,ix);
7353 TOPPTR(nss,ix) = pv_dup(c);
7354 iv = POPIV(ss,ix);
7355 TOPIV(nss,ix) = iv;
7356 iv = POPIV(ss,ix);
7357 TOPIV(nss,ix) = iv;
7358 break;
7359 case SAVEt_FREESV:
7360 sv = (SV*)POPPTR(ss,ix);
7361 TOPPTR(nss,ix) = sv_dup_inc(sv);
7362 break;
7363 case SAVEt_FREEOP:
7364 ptr = POPPTR(ss,ix);
7365 if (ptr && (((OP*)ptr)->op_private & OPpREFCOUNTED)) {
7366 /* these are assumed to be refcounted properly */
7367 switch (((OP*)ptr)->op_type) {
7368 case OP_LEAVESUB:
7369 case OP_LEAVESUBLV:
7370 case OP_LEAVEEVAL:
7371 case OP_LEAVE:
7372 case OP_SCOPE:
7373 case OP_LEAVEWRITE:
7374 TOPPTR(nss,ix) = ptr;
7375 o = (OP*)ptr;
7376 OpREFCNT_inc(o);
7377 break;
7378 default:
7379 TOPPTR(nss,ix) = Nullop;
7380 break;
7381 }
7382 }
7383 else
7384 TOPPTR(nss,ix) = Nullop;
7385 break;
7386 case SAVEt_FREEPV:
7387 c = (char*)POPPTR(ss,ix);
7388 TOPPTR(nss,ix) = pv_dup_inc(c);
7389 break;
7390 case SAVEt_CLEARSV:
7391 longval = POPLONG(ss,ix);
7392 TOPLONG(nss,ix) = longval;
7393 break;
7394 case SAVEt_DELETE:
7395 hv = (HV*)POPPTR(ss,ix);
7396 TOPPTR(nss,ix) = hv_dup_inc(hv);
7397 c = (char*)POPPTR(ss,ix);
7398 TOPPTR(nss,ix) = pv_dup_inc(c);
7399 i = POPINT(ss,ix);
7400 TOPINT(nss,ix) = i;
7401 break;
7402 case SAVEt_DESTRUCTOR:
7403 ptr = POPPTR(ss,ix);
7404 TOPPTR(nss,ix) = any_dup(ptr, proto_perl); /* XXX quite arbitrary */
7405 dptr = POPDPTR(ss,ix);
7406 TOPDPTR(nss,ix) = (void (*)(void*))any_dup((void *)dptr, proto_perl);
7407 break;
7408 case SAVEt_DESTRUCTOR_X:
7409 ptr = POPPTR(ss,ix);
7410 TOPPTR(nss,ix) = any_dup(ptr, proto_perl); /* XXX quite arbitrary */
7411 dxptr = POPDXPTR(ss,ix);
7412 TOPDXPTR(nss,ix) = (void (*)(pTHXo_ void*))any_dup((void *)dxptr, proto_perl);
7413 break;
7414 case SAVEt_REGCONTEXT:
7415 case SAVEt_ALLOC:
7416 i = POPINT(ss,ix);
7417 TOPINT(nss,ix) = i;
7418 ix -= i;
7419 break;
7420 case SAVEt_STACK_POS: /* Position on Perl stack */
7421 i = POPINT(ss,ix);
7422 TOPINT(nss,ix) = i;
7423 break;
7424 case SAVEt_AELEM: /* array element */
7425 sv = (SV*)POPPTR(ss,ix);
7426 TOPPTR(nss,ix) = sv_dup_inc(sv);
7427 i = POPINT(ss,ix);
7428 TOPINT(nss,ix) = i;
7429 av = (AV*)POPPTR(ss,ix);
7430 TOPPTR(nss,ix) = av_dup_inc(av);
7431 break;
7432 case SAVEt_HELEM: /* hash element */
7433 sv = (SV*)POPPTR(ss,ix);
7434 TOPPTR(nss,ix) = sv_dup_inc(sv);
7435 sv = (SV*)POPPTR(ss,ix);
7436 TOPPTR(nss,ix) = sv_dup_inc(sv);
7437 hv = (HV*)POPPTR(ss,ix);
7438 TOPPTR(nss,ix) = hv_dup_inc(hv);
7439 break;
7440 case SAVEt_OP:
7441 ptr = POPPTR(ss,ix);
7442 TOPPTR(nss,ix) = ptr;
7443 break;
7444 case SAVEt_HINTS:
7445 i = POPINT(ss,ix);
7446 TOPINT(nss,ix) = i;
7447 break;
7448 case SAVEt_COMPPAD:
7449 av = (AV*)POPPTR(ss,ix);
7450 TOPPTR(nss,ix) = av_dup(av);
7451 break;
7452 default:
7453 Perl_croak(aTHX_ "panic: ss_dup inconsistency");
7454 }
7455 }
7456
7457 return nss;
7458}
7459
7460#ifdef PERL_OBJECT
7461#include "XSUB.h"
7462#endif
7463
7464PerlInterpreter *
7465perl_clone(PerlInterpreter *proto_perl, UV flags)
7466{
7467#ifdef PERL_OBJECT
7468 CPerlObj *pPerl = (CPerlObj*)proto_perl;
7469#endif
7470
7471#ifdef PERL_IMPLICIT_SYS
7472 return perl_clone_using(proto_perl, flags,
7473 proto_perl->IMem,
7474 proto_perl->IMemShared,
7475 proto_perl->IMemParse,
7476 proto_perl->IEnv,
7477 proto_perl->IStdIO,
7478 proto_perl->ILIO,
7479 proto_perl->IDir,
7480 proto_perl->ISock,
7481 proto_perl->IProc);
7482}
7483
7484PerlInterpreter *
7485perl_clone_using(PerlInterpreter *proto_perl, UV flags,
7486 struct IPerlMem* ipM, struct IPerlMem* ipMS,
7487 struct IPerlMem* ipMP, struct IPerlEnv* ipE,
7488 struct IPerlStdIO* ipStd, struct IPerlLIO* ipLIO,
7489 struct IPerlDir* ipD, struct IPerlSock* ipS,
7490 struct IPerlProc* ipP)
7491{
7492 /* XXX many of the string copies here can be optimized if they're
7493 * constants; they need to be allocated as common memory and just
7494 * their pointers copied. */
7495
7496 IV i;
7497# ifdef PERL_OBJECT
7498 CPerlObj *pPerl = new(ipM) CPerlObj(ipM, ipMS, ipMP, ipE, ipStd, ipLIO,
7499 ipD, ipS, ipP);
7500 PERL_SET_THX(pPerl);
7501# else /* !PERL_OBJECT */
7502 PerlInterpreter *my_perl = (PerlInterpreter*)(*ipM->pMalloc)(ipM, sizeof(PerlInterpreter));
7503 PERL_SET_THX(my_perl);
7504
7505# ifdef DEBUGGING
7506 memset(my_perl, 0xab, sizeof(PerlInterpreter));
7507 PL_markstack = 0;
7508 PL_scopestack = 0;
7509 PL_savestack = 0;
7510 PL_retstack = 0;
7511# else /* !DEBUGGING */
7512 Zero(my_perl, 1, PerlInterpreter);
7513# endif /* DEBUGGING */
7514
7515 /* host pointers */
7516 PL_Mem = ipM;
7517 PL_MemShared = ipMS;
7518 PL_MemParse = ipMP;
7519 PL_Env = ipE;
7520 PL_StdIO = ipStd;
7521 PL_LIO = ipLIO;
7522 PL_Dir = ipD;
7523 PL_Sock = ipS;
7524 PL_Proc = ipP;
7525# endif /* PERL_OBJECT */
7526#else /* !PERL_IMPLICIT_SYS */
7527 IV i;
7528 PerlInterpreter *my_perl = (PerlInterpreter*)PerlMem_malloc(sizeof(PerlInterpreter));
7529 PERL_SET_THX(my_perl);
7530
7531# ifdef DEBUGGING
7532 memset(my_perl, 0xab, sizeof(PerlInterpreter));
7533 PL_markstack = 0;
7534 PL_scopestack = 0;
7535 PL_savestack = 0;
7536 PL_retstack = 0;
7537# else /* !DEBUGGING */
7538 Zero(my_perl, 1, PerlInterpreter);
7539# endif /* DEBUGGING */
7540#endif /* PERL_IMPLICIT_SYS */
7541
7542 /* arena roots */
7543 PL_xiv_arenaroot = NULL;
7544 PL_xiv_root = NULL;
7545 PL_xnv_arenaroot = NULL;
7546 PL_xnv_root = NULL;
7547 PL_xrv_arenaroot = NULL;
7548 PL_xrv_root = NULL;
7549 PL_xpv_arenaroot = NULL;
7550 PL_xpv_root = NULL;
7551 PL_xpviv_arenaroot = NULL;
7552 PL_xpviv_root = NULL;
7553 PL_xpvnv_arenaroot = NULL;
7554 PL_xpvnv_root = NULL;
7555 PL_xpvcv_arenaroot = NULL;
7556 PL_xpvcv_root = NULL;
7557 PL_xpvav_arenaroot = NULL;
7558 PL_xpvav_root = NULL;
7559 PL_xpvhv_arenaroot = NULL;
7560 PL_xpvhv_root = NULL;
7561 PL_xpvmg_arenaroot = NULL;
7562 PL_xpvmg_root = NULL;
7563 PL_xpvlv_arenaroot = NULL;
7564 PL_xpvlv_root = NULL;
7565 PL_xpvbm_arenaroot = NULL;
7566 PL_xpvbm_root = NULL;
7567 PL_he_arenaroot = NULL;
7568 PL_he_root = NULL;
7569 PL_nice_chunk = NULL;
7570 PL_nice_chunk_size = 0;
7571 PL_sv_count = 0;
7572 PL_sv_objcount = 0;
7573 PL_sv_root = Nullsv;
7574 PL_sv_arenaroot = Nullsv;
7575
7576 PL_debug = proto_perl->Idebug;
7577
7578 /* create SV map for pointer relocation */
7579 PL_ptr_table = ptr_table_new();
7580
7581 /* initialize these special pointers as early as possible */
7582 SvANY(&PL_sv_undef) = NULL;
7583 SvREFCNT(&PL_sv_undef) = (~(U32)0)/2;
7584 SvFLAGS(&PL_sv_undef) = SVf_READONLY|SVt_NULL;
7585 ptr_table_store(PL_ptr_table, &proto_perl->Isv_undef, &PL_sv_undef);
7586
7587#ifdef PERL_OBJECT
7588 SvUPGRADE(&PL_sv_no, SVt_PVNV);
7589#else
7590 SvANY(&PL_sv_no) = new_XPVNV();
7591#endif
7592 SvREFCNT(&PL_sv_no) = (~(U32)0)/2;
7593 SvFLAGS(&PL_sv_no) = SVp_NOK|SVf_NOK|SVp_POK|SVf_POK|SVf_READONLY|SVt_PVNV;
7594 SvPVX(&PL_sv_no) = SAVEPVN(PL_No, 0);
7595 SvCUR(&PL_sv_no) = 0;
7596 SvLEN(&PL_sv_no) = 1;
7597 SvNVX(&PL_sv_no) = 0;
7598 ptr_table_store(PL_ptr_table, &proto_perl->Isv_no, &PL_sv_no);
7599
7600#ifdef PERL_OBJECT
7601 SvUPGRADE(&PL_sv_yes, SVt_PVNV);
7602#else
7603 SvANY(&PL_sv_yes) = new_XPVNV();
7604#endif
7605 SvREFCNT(&PL_sv_yes) = (~(U32)0)/2;
7606 SvFLAGS(&PL_sv_yes) = SVp_NOK|SVf_NOK|SVp_POK|SVf_POK|SVf_READONLY|SVt_PVNV;
7607 SvPVX(&PL_sv_yes) = SAVEPVN(PL_Yes, 1);
7608 SvCUR(&PL_sv_yes) = 1;
7609 SvLEN(&PL_sv_yes) = 2;
7610 SvNVX(&PL_sv_yes) = 1;
7611 ptr_table_store(PL_ptr_table, &proto_perl->Isv_yes, &PL_sv_yes);
7612
7613 /* create shared string table */
7614 PL_strtab = newHV();
7615 HvSHAREKEYS_off(PL_strtab);
7616 hv_ksplit(PL_strtab, 512);
7617 ptr_table_store(PL_ptr_table, proto_perl->Istrtab, PL_strtab);
7618
7619 PL_compiling = proto_perl->Icompiling;
7620 PL_compiling.cop_stashpv = SAVEPV(PL_compiling.cop_stashpv);
7621 PL_compiling.cop_file = SAVEPV(PL_compiling.cop_file);
7622 ptr_table_store(PL_ptr_table, &proto_perl->Icompiling, &PL_compiling);
7623 if (!specialWARN(PL_compiling.cop_warnings))
7624 PL_compiling.cop_warnings = sv_dup_inc(PL_compiling.cop_warnings);
7625 PL_curcop = (COP*)any_dup(proto_perl->Tcurcop, proto_perl);
7626
7627 /* pseudo environmental stuff */
7628 PL_origargc = proto_perl->Iorigargc;
7629 i = PL_origargc;
7630 New(0, PL_origargv, i+1, char*);
7631 PL_origargv[i] = '\0';
7632 while (i-- > 0) {
7633 PL_origargv[i] = SAVEPV(proto_perl->Iorigargv[i]);
7634 }
7635 PL_envgv = gv_dup(proto_perl->Ienvgv);
7636 PL_incgv = gv_dup(proto_perl->Iincgv);
7637 PL_hintgv = gv_dup(proto_perl->Ihintgv);
7638 PL_origfilename = SAVEPV(proto_perl->Iorigfilename);
7639 PL_diehook = sv_dup_inc(proto_perl->Idiehook);
7640 PL_warnhook = sv_dup_inc(proto_perl->Iwarnhook);
7641
7642 /* switches */
7643 PL_minus_c = proto_perl->Iminus_c;
7644 PL_patchlevel = sv_dup_inc(proto_perl->Ipatchlevel);
7645 PL_localpatches = proto_perl->Ilocalpatches;
7646 PL_splitstr = proto_perl->Isplitstr;
7647 PL_preprocess = proto_perl->Ipreprocess;
7648 PL_minus_n = proto_perl->Iminus_n;
7649 PL_minus_p = proto_perl->Iminus_p;
7650 PL_minus_l = proto_perl->Iminus_l;
7651 PL_minus_a = proto_perl->Iminus_a;
7652 PL_minus_F = proto_perl->Iminus_F;
7653 PL_doswitches = proto_perl->Idoswitches;
7654 PL_dowarn = proto_perl->Idowarn;
7655 PL_doextract = proto_perl->Idoextract;
7656 PL_sawampersand = proto_perl->Isawampersand;
7657 PL_unsafe = proto_perl->Iunsafe;
7658 PL_inplace = SAVEPV(proto_perl->Iinplace);
7659 PL_e_script = sv_dup_inc(proto_perl->Ie_script);
7660 PL_perldb = proto_perl->Iperldb;
7661 PL_perl_destruct_level = proto_perl->Iperl_destruct_level;
7662
7663 /* magical thingies */
7664 /* XXX time(&PL_basetime) when asked for? */
7665 PL_basetime = proto_perl->Ibasetime;
7666 PL_formfeed = sv_dup(proto_perl->Iformfeed);
7667
7668 PL_maxsysfd = proto_perl->Imaxsysfd;
7669 PL_multiline = proto_perl->Imultiline;
7670 PL_statusvalue = proto_perl->Istatusvalue;
7671#ifdef VMS
7672 PL_statusvalue_vms = proto_perl->Istatusvalue_vms;
7673#endif
7674
7675 /* shortcuts to various I/O objects */
7676 PL_stdingv = gv_dup(proto_perl->Istdingv);
7677 PL_stderrgv = gv_dup(proto_perl->Istderrgv);
7678 PL_defgv = gv_dup(proto_perl->Idefgv);
7679 PL_argvgv = gv_dup(proto_perl->Iargvgv);
7680 PL_argvoutgv = gv_dup(proto_perl->Iargvoutgv);
7681 PL_argvout_stack = av_dup(proto_perl->Iargvout_stack);
7682
7683 /* shortcuts to regexp stuff */
7684 PL_replgv = gv_dup(proto_perl->Ireplgv);
7685
7686 /* shortcuts to misc objects */
7687 PL_errgv = gv_dup(proto_perl->Ierrgv);
7688
7689 /* shortcuts to debugging objects */
7690 PL_DBgv = gv_dup(proto_perl->IDBgv);
7691 PL_DBline = gv_dup(proto_perl->IDBline);
7692 PL_DBsub = gv_dup(proto_perl->IDBsub);
7693 PL_DBsingle = sv_dup(proto_perl->IDBsingle);
7694 PL_DBtrace = sv_dup(proto_perl->IDBtrace);
7695 PL_DBsignal = sv_dup(proto_perl->IDBsignal);
7696 PL_lineary = av_dup(proto_perl->Ilineary);
7697 PL_dbargs = av_dup(proto_perl->Idbargs);
7698
7699 /* symbol tables */
7700 PL_defstash = hv_dup_inc(proto_perl->Tdefstash);
7701 PL_curstash = hv_dup(proto_perl->Tcurstash);
7702 PL_debstash = hv_dup(proto_perl->Idebstash);
7703 PL_globalstash = hv_dup(proto_perl->Iglobalstash);
7704 PL_curstname = sv_dup_inc(proto_perl->Icurstname);
7705
7706 PL_beginav = av_dup_inc(proto_perl->Ibeginav);
7707 PL_endav = av_dup_inc(proto_perl->Iendav);
7708 PL_checkav = av_dup_inc(proto_perl->Icheckav);
7709 PL_initav = av_dup_inc(proto_perl->Iinitav);
7710
7711 PL_sub_generation = proto_perl->Isub_generation;
7712
7713 /* funky return mechanisms */
7714 PL_forkprocess = proto_perl->Iforkprocess;
7715
7716 /* subprocess state */
7717 PL_fdpid = av_dup_inc(proto_perl->Ifdpid);
7718
7719 /* internal state */
7720 PL_tainting = proto_perl->Itainting;
7721 PL_maxo = proto_perl->Imaxo;
7722 if (proto_perl->Iop_mask)
7723 PL_op_mask = SAVEPVN(proto_perl->Iop_mask, PL_maxo);
7724 else
7725 PL_op_mask = Nullch;
7726
7727 /* current interpreter roots */
7728 PL_main_cv = cv_dup_inc(proto_perl->Imain_cv);
7729 PL_main_root = OpREFCNT_inc(proto_perl->Imain_root);
7730 PL_main_start = proto_perl->Imain_start;
7731 PL_eval_root = proto_perl->Ieval_root;
7732 PL_eval_start = proto_perl->Ieval_start;
7733
7734 /* runtime control stuff */
7735 PL_curcopdb = (COP*)any_dup(proto_perl->Icurcopdb, proto_perl);
7736 PL_copline = proto_perl->Icopline;
7737
7738 PL_filemode = proto_perl->Ifilemode;
7739 PL_lastfd = proto_perl->Ilastfd;
7740 PL_oldname = proto_perl->Ioldname; /* XXX not quite right */
7741 PL_Argv = NULL;
7742 PL_Cmd = Nullch;
7743 PL_gensym = proto_perl->Igensym;
7744 PL_preambled = proto_perl->Ipreambled;
7745 PL_preambleav = av_dup_inc(proto_perl->Ipreambleav);
7746 PL_laststatval = proto_perl->Ilaststatval;
7747 PL_laststype = proto_perl->Ilaststype;
7748 PL_mess_sv = Nullsv;
7749
7750 PL_orslen = proto_perl->Iorslen;
7751 PL_ors = SAVEPVN(proto_perl->Iors, PL_orslen);
7752 PL_ofmt = SAVEPV(proto_perl->Iofmt);
7753
7754 /* interpreter atexit processing */
7755 PL_exitlistlen = proto_perl->Iexitlistlen;
7756 if (PL_exitlistlen) {
7757 New(0, PL_exitlist, PL_exitlistlen, PerlExitListEntry);
7758 Copy(proto_perl->Iexitlist, PL_exitlist, PL_exitlistlen, PerlExitListEntry);
7759 }
7760 else
7761 PL_exitlist = (PerlExitListEntry*)NULL;
7762 PL_modglobal = hv_dup_inc(proto_perl->Imodglobal);
7763
7764 PL_profiledata = NULL;
7765 PL_rsfp = fp_dup(proto_perl->Irsfp, '<');
7766 /* PL_rsfp_filters entries have fake IoDIRP() */
7767 PL_rsfp_filters = av_dup_inc(proto_perl->Irsfp_filters);
7768
7769 PL_compcv = cv_dup(proto_perl->Icompcv);
7770 PL_comppad = av_dup(proto_perl->Icomppad);
7771 PL_comppad_name = av_dup(proto_perl->Icomppad_name);
7772 PL_comppad_name_fill = proto_perl->Icomppad_name_fill;
7773 PL_comppad_name_floor = proto_perl->Icomppad_name_floor;
7774 PL_curpad = (SV**)ptr_table_fetch(PL_ptr_table,
7775 proto_perl->Tcurpad);
7776
7777#ifdef HAVE_INTERP_INTERN
7778 sys_intern_dup(&proto_perl->Isys_intern, &PL_sys_intern);
7779#endif
7780
7781 /* more statics moved here */
7782 PL_generation = proto_perl->Igeneration;
7783 PL_DBcv = cv_dup(proto_perl->IDBcv);
7784
7785 PL_in_clean_objs = proto_perl->Iin_clean_objs;
7786 PL_in_clean_all = proto_perl->Iin_clean_all;
7787
7788 PL_uid = proto_perl->Iuid;
7789 PL_euid = proto_perl->Ieuid;
7790 PL_gid = proto_perl->Igid;
7791 PL_egid = proto_perl->Iegid;
7792 PL_nomemok = proto_perl->Inomemok;
7793 PL_an = proto_perl->Ian;
7794 PL_cop_seqmax = proto_perl->Icop_seqmax;
7795 PL_op_seqmax = proto_perl->Iop_seqmax;
7796 PL_evalseq = proto_perl->Ievalseq;
7797 PL_origenviron = proto_perl->Iorigenviron; /* XXX not quite right */
7798 PL_origalen = proto_perl->Iorigalen;
7799 PL_pidstatus = newHV(); /* XXX flag for cloning? */
7800 PL_osname = SAVEPV(proto_perl->Iosname);
7801 PL_sh_path = SAVEPV(proto_perl->Ish_path);
7802 PL_sighandlerp = proto_perl->Isighandlerp;
7803
7804
7805 PL_runops = proto_perl->Irunops;
7806
7807 Copy(proto_perl->Itokenbuf, PL_tokenbuf, 256, char);
7808
7809#ifdef CSH
7810 PL_cshlen = proto_perl->Icshlen;
7811 PL_cshname = SAVEPVN(proto_perl->Icshname, PL_cshlen);
7812#endif
7813
7814 PL_lex_state = proto_perl->Ilex_state;
7815 PL_lex_defer = proto_perl->Ilex_defer;
7816 PL_lex_expect = proto_perl->Ilex_expect;
7817 PL_lex_formbrack = proto_perl->Ilex_formbrack;
7818 PL_lex_dojoin = proto_perl->Ilex_dojoin;
7819 PL_lex_starts = proto_perl->Ilex_starts;
7820 PL_lex_stuff = sv_dup_inc(proto_perl->Ilex_stuff);
7821 PL_lex_repl = sv_dup_inc(proto_perl->Ilex_repl);
7822 PL_lex_op = proto_perl->Ilex_op;
7823 PL_lex_inpat = proto_perl->Ilex_inpat;
7824 PL_lex_inwhat = proto_perl->Ilex_inwhat;
7825 PL_lex_brackets = proto_perl->Ilex_brackets;
7826 i = (PL_lex_brackets < 120 ? 120 : PL_lex_brackets);
7827 PL_lex_brackstack = SAVEPVN(proto_perl->Ilex_brackstack,i);
7828 PL_lex_casemods = proto_perl->Ilex_casemods;
7829 i = (PL_lex_casemods < 12 ? 12 : PL_lex_casemods);
7830 PL_lex_casestack = SAVEPVN(proto_perl->Ilex_casestack,i);
7831
7832 Copy(proto_perl->Inextval, PL_nextval, 5, YYSTYPE);
7833 Copy(proto_perl->Inexttype, PL_nexttype, 5, I32);
7834 PL_nexttoke = proto_perl->Inexttoke;
7835
7836 PL_linestr = sv_dup_inc(proto_perl->Ilinestr);
7837 i = proto_perl->Ibufptr - SvPVX(proto_perl->Ilinestr);
7838 PL_bufptr = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
7839 i = proto_perl->Ioldbufptr - SvPVX(proto_perl->Ilinestr);
7840 PL_oldbufptr = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
7841 i = proto_perl->Ioldoldbufptr - SvPVX(proto_perl->Ilinestr);
7842 PL_oldoldbufptr = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
7843 PL_bufend = SvPVX(PL_linestr) + SvCUR(PL_linestr);
7844 i = proto_perl->Ilinestart - SvPVX(proto_perl->Ilinestr);
7845 PL_linestart = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
7846 PL_pending_ident = proto_perl->Ipending_ident;
7847 PL_sublex_info = proto_perl->Isublex_info; /* XXX not quite right */
7848
7849 PL_expect = proto_perl->Iexpect;
7850
7851 PL_multi_start = proto_perl->Imulti_start;
7852 PL_multi_end = proto_perl->Imulti_end;
7853 PL_multi_open = proto_perl->Imulti_open;
7854 PL_multi_close = proto_perl->Imulti_close;
7855
7856 PL_error_count = proto_perl->Ierror_count;
7857 PL_subline = proto_perl->Isubline;
7858 PL_subname = sv_dup_inc(proto_perl->Isubname);
7859
7860 PL_min_intro_pending = proto_perl->Imin_intro_pending;
7861 PL_max_intro_pending = proto_perl->Imax_intro_pending;
7862 PL_padix = proto_perl->Ipadix;
7863 PL_padix_floor = proto_perl->Ipadix_floor;
7864 PL_pad_reset_pending = proto_perl->Ipad_reset_pending;
7865
7866 i = proto_perl->Ilast_uni - SvPVX(proto_perl->Ilinestr);
7867 PL_last_uni = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
7868 i = proto_perl->Ilast_lop - SvPVX(proto_perl->Ilinestr);
7869 PL_last_lop = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
7870 PL_last_lop_op = proto_perl->Ilast_lop_op;
7871 PL_in_my = proto_perl->Iin_my;
7872 PL_in_my_stash = hv_dup(proto_perl->Iin_my_stash);
7873#ifdef FCRYPT
7874 PL_cryptseen = proto_perl->Icryptseen;
7875#endif
7876
7877 PL_hints = proto_perl->Ihints;
7878
7879 PL_amagic_generation = proto_perl->Iamagic_generation;
7880
7881#ifdef USE_LOCALE_COLLATE
7882 PL_collation_ix = proto_perl->Icollation_ix;
7883 PL_collation_name = SAVEPV(proto_perl->Icollation_name);
7884 PL_collation_standard = proto_perl->Icollation_standard;
7885 PL_collxfrm_base = proto_perl->Icollxfrm_base;
7886 PL_collxfrm_mult = proto_perl->Icollxfrm_mult;
7887#endif /* USE_LOCALE_COLLATE */
7888
7889#ifdef USE_LOCALE_NUMERIC
7890 PL_numeric_name = SAVEPV(proto_perl->Inumeric_name);
7891 PL_numeric_standard = proto_perl->Inumeric_standard;
7892 PL_numeric_local = proto_perl->Inumeric_local;
7893 PL_numeric_radix = proto_perl->Inumeric_radix;
7894#endif /* !USE_LOCALE_NUMERIC */
7895
7896 /* utf8 character classes */
7897 PL_utf8_alnum = sv_dup_inc(proto_perl->Iutf8_alnum);
7898 PL_utf8_alnumc = sv_dup_inc(proto_perl->Iutf8_alnumc);
7899 PL_utf8_ascii = sv_dup_inc(proto_perl->Iutf8_ascii);
7900 PL_utf8_alpha = sv_dup_inc(proto_perl->Iutf8_alpha);
7901 PL_utf8_space = sv_dup_inc(proto_perl->Iutf8_space);
7902 PL_utf8_cntrl = sv_dup_inc(proto_perl->Iutf8_cntrl);
7903 PL_utf8_graph = sv_dup_inc(proto_perl->Iutf8_graph);
7904 PL_utf8_digit = sv_dup_inc(proto_perl->Iutf8_digit);
7905 PL_utf8_upper = sv_dup_inc(proto_perl->Iutf8_upper);
7906 PL_utf8_lower = sv_dup_inc(proto_perl->Iutf8_lower);
7907 PL_utf8_print = sv_dup_inc(proto_perl->Iutf8_print);
7908 PL_utf8_punct = sv_dup_inc(proto_perl->Iutf8_punct);
7909 PL_utf8_xdigit = sv_dup_inc(proto_perl->Iutf8_xdigit);
7910 PL_utf8_mark = sv_dup_inc(proto_perl->Iutf8_mark);
7911 PL_utf8_toupper = sv_dup_inc(proto_perl->Iutf8_toupper);
7912 PL_utf8_totitle = sv_dup_inc(proto_perl->Iutf8_totitle);
7913 PL_utf8_tolower = sv_dup_inc(proto_perl->Iutf8_tolower);
7914
7915 /* swatch cache */
7916 PL_last_swash_hv = Nullhv; /* reinits on demand */
7917 PL_last_swash_klen = 0;
7918 PL_last_swash_key[0]= '\0';
7919 PL_last_swash_tmps = (U8*)NULL;
7920 PL_last_swash_slen = 0;
7921
7922 /* perly.c globals */
7923 PL_yydebug = proto_perl->Iyydebug;
7924 PL_yynerrs = proto_perl->Iyynerrs;
7925 PL_yyerrflag = proto_perl->Iyyerrflag;
7926 PL_yychar = proto_perl->Iyychar;
7927 PL_yyval = proto_perl->Iyyval;
7928 PL_yylval = proto_perl->Iyylval;
7929
7930 PL_glob_index = proto_perl->Iglob_index;
7931 PL_srand_called = proto_perl->Isrand_called;
7932 PL_uudmap['M'] = 0; /* reinits on demand */
7933 PL_bitcount = Nullch; /* reinits on demand */
7934
7935 if (proto_perl->Ipsig_ptr) {
7936 int sig_num[] = { SIG_NUM };
7937 Newz(0, PL_psig_ptr, sizeof(sig_num)/sizeof(*sig_num), SV*);
7938 Newz(0, PL_psig_name, sizeof(sig_num)/sizeof(*sig_num), SV*);
7939 for (i = 1; PL_sig_name[i]; i++) {
7940 PL_psig_ptr[i] = sv_dup_inc(proto_perl->Ipsig_ptr[i]);
7941 PL_psig_name[i] = sv_dup_inc(proto_perl->Ipsig_name[i]);
7942 }
7943 }
7944 else {
7945 PL_psig_ptr = (SV**)NULL;
7946 PL_psig_name = (SV**)NULL;
7947 }
7948
7949 /* thrdvar.h stuff */
7950
7951 if (flags & 1) {
7952 /* next allocation will be PL_tmps_stack[PL_tmps_ix+1] */
7953 PL_tmps_ix = proto_perl->Ttmps_ix;
7954 PL_tmps_max = proto_perl->Ttmps_max;
7955 PL_tmps_floor = proto_perl->Ttmps_floor;
7956 Newz(50, PL_tmps_stack, PL_tmps_max, SV*);
7957 i = 0;
7958 while (i <= PL_tmps_ix) {
7959 PL_tmps_stack[i] = sv_dup_inc(proto_perl->Ttmps_stack[i]);
7960 ++i;
7961 }
7962
7963 /* next PUSHMARK() sets *(PL_markstack_ptr+1) */
7964 i = proto_perl->Tmarkstack_max - proto_perl->Tmarkstack;
7965 Newz(54, PL_markstack, i, I32);
7966 PL_markstack_max = PL_markstack + (proto_perl->Tmarkstack_max
7967 - proto_perl->Tmarkstack);
7968 PL_markstack_ptr = PL_markstack + (proto_perl->Tmarkstack_ptr
7969 - proto_perl->Tmarkstack);
7970 Copy(proto_perl->Tmarkstack, PL_markstack,
7971 PL_markstack_ptr - PL_markstack + 1, I32);
7972
7973 /* next push_scope()/ENTER sets PL_scopestack[PL_scopestack_ix]
7974 * NOTE: unlike the others! */
7975 PL_scopestack_ix = proto_perl->Tscopestack_ix;
7976 PL_scopestack_max = proto_perl->Tscopestack_max;
7977 Newz(54, PL_scopestack, PL_scopestack_max, I32);
7978 Copy(proto_perl->Tscopestack, PL_scopestack, PL_scopestack_ix, I32);
7979
7980 /* next push_return() sets PL_retstack[PL_retstack_ix]
7981 * NOTE: unlike the others! */
7982 PL_retstack_ix = proto_perl->Tretstack_ix;
7983 PL_retstack_max = proto_perl->Tretstack_max;
7984 Newz(54, PL_retstack, PL_retstack_max, OP*);
7985 Copy(proto_perl->Tretstack, PL_retstack, PL_retstack_ix, I32);
7986
7987 /* NOTE: si_dup() looks at PL_markstack */
7988 PL_curstackinfo = si_dup(proto_perl->Tcurstackinfo);
7989
7990 /* PL_curstack = PL_curstackinfo->si_stack; */
7991 PL_curstack = av_dup(proto_perl->Tcurstack);
7992 PL_mainstack = av_dup(proto_perl->Tmainstack);
7993
7994 /* next PUSHs() etc. set *(PL_stack_sp+1) */
7995 PL_stack_base = AvARRAY(PL_curstack);
7996 PL_stack_sp = PL_stack_base + (proto_perl->Tstack_sp
7997 - proto_perl->Tstack_base);
7998 PL_stack_max = PL_stack_base + AvMAX(PL_curstack);
7999
8000 /* next SSPUSHFOO() sets PL_savestack[PL_savestack_ix]
8001 * NOTE: unlike the others! */
8002 PL_savestack_ix = proto_perl->Tsavestack_ix;
8003 PL_savestack_max = proto_perl->Tsavestack_max;
8004 /*Newz(54, PL_savestack, PL_savestack_max, ANY);*/
8005 PL_savestack = ss_dup(proto_perl);
8006 }
8007 else {
8008 init_stacks();
8009 ENTER; /* perl_destruct() wants to LEAVE; */
8010 }
8011
8012 PL_start_env = proto_perl->Tstart_env; /* XXXXXX */
8013 PL_top_env = &PL_start_env;
8014
8015 PL_op = proto_perl->Top;
8016
8017 PL_Sv = Nullsv;
8018 PL_Xpv = (XPV*)NULL;
8019 PL_na = proto_perl->Tna;
8020
8021 PL_statbuf = proto_perl->Tstatbuf;
8022 PL_statcache = proto_perl->Tstatcache;
8023 PL_statgv = gv_dup(proto_perl->Tstatgv);
8024 PL_statname = sv_dup_inc(proto_perl->Tstatname);
8025#ifdef HAS_TIMES
8026 PL_timesbuf = proto_perl->Ttimesbuf;
8027#endif
8028
8029 PL_tainted = proto_perl->Ttainted;
8030 PL_curpm = proto_perl->Tcurpm; /* XXX No PMOP ref count */
8031 PL_nrs = sv_dup_inc(proto_perl->Tnrs);
8032 PL_rs = sv_dup_inc(proto_perl->Trs);
8033 PL_last_in_gv = gv_dup(proto_perl->Tlast_in_gv);
8034 PL_ofslen = proto_perl->Tofslen;
8035 PL_ofs = SAVEPVN(proto_perl->Tofs, PL_ofslen);
8036 PL_defoutgv = gv_dup_inc(proto_perl->Tdefoutgv);
8037 PL_chopset = proto_perl->Tchopset; /* XXX never deallocated */
8038 PL_toptarget = sv_dup_inc(proto_perl->Ttoptarget);
8039 PL_bodytarget = sv_dup_inc(proto_perl->Tbodytarget);
8040 PL_formtarget = sv_dup(proto_perl->Tformtarget);
8041
8042 PL_restartop = proto_perl->Trestartop;
8043 PL_in_eval = proto_perl->Tin_eval;
8044 PL_delaymagic = proto_perl->Tdelaymagic;
8045 PL_dirty = proto_perl->Tdirty;
8046 PL_localizing = proto_perl->Tlocalizing;
8047
8048#ifdef PERL_FLEXIBLE_EXCEPTIONS
8049 PL_protect = proto_perl->Tprotect;
8050#endif
8051 PL_errors = sv_dup_inc(proto_perl->Terrors);
8052 PL_av_fetch_sv = Nullsv;
8053 PL_hv_fetch_sv = Nullsv;
8054 Zero(&PL_hv_fetch_ent_mh, 1, HE); /* XXX */
8055 PL_modcount = proto_perl->Tmodcount;
8056 PL_lastgotoprobe = Nullop;
8057 PL_dumpindent = proto_perl->Tdumpindent;
8058
8059 PL_sortcop = (OP*)any_dup(proto_perl->Tsortcop, proto_perl);
8060 PL_sortstash = hv_dup(proto_perl->Tsortstash);
8061 PL_firstgv = gv_dup(proto_perl->Tfirstgv);
8062 PL_secondgv = gv_dup(proto_perl->Tsecondgv);
8063 PL_sortcxix = proto_perl->Tsortcxix;
8064 PL_efloatbuf = Nullch; /* reinits on demand */
8065 PL_efloatsize = 0; /* reinits on demand */
8066
8067 /* regex stuff */
8068
8069 PL_screamfirst = NULL;
8070 PL_screamnext = NULL;
8071 PL_maxscream = -1; /* reinits on demand */
8072 PL_lastscream = Nullsv;
8073
8074 PL_watchaddr = NULL;
8075 PL_watchok = Nullch;
8076
8077 PL_regdummy = proto_perl->Tregdummy;
8078 PL_regcomp_parse = Nullch;
8079 PL_regxend = Nullch;
8080 PL_regcode = (regnode*)NULL;
8081 PL_regnaughty = 0;
8082 PL_regsawback = 0;
8083 PL_regprecomp = Nullch;
8084 PL_regnpar = 0;
8085 PL_regsize = 0;
8086 PL_regflags = 0;
8087 PL_regseen = 0;
8088 PL_seen_zerolen = 0;
8089 PL_seen_evals = 0;
8090 PL_regcomp_rx = (regexp*)NULL;
8091 PL_extralen = 0;
8092 PL_colorset = 0; /* reinits PL_colors[] */
8093 /*PL_colors[6] = {0,0,0,0,0,0};*/
8094 PL_reg_whilem_seen = 0;
8095 PL_reginput = Nullch;
8096 PL_regbol = Nullch;
8097 PL_regeol = Nullch;
8098 PL_regstartp = (I32*)NULL;
8099 PL_regendp = (I32*)NULL;
8100 PL_reglastparen = (U32*)NULL;
8101 PL_regtill = Nullch;
8102 PL_regprev = '\n';
8103 PL_reg_start_tmp = (char**)NULL;
8104 PL_reg_start_tmpl = 0;
8105 PL_regdata = (struct reg_data*)NULL;
8106 PL_bostr = Nullch;
8107 PL_reg_flags = 0;
8108 PL_reg_eval_set = 0;
8109 PL_regnarrate = 0;
8110 PL_regprogram = (regnode*)NULL;
8111 PL_regindent = 0;
8112 PL_regcc = (CURCUR*)NULL;
8113 PL_reg_call_cc = (struct re_cc_state*)NULL;
8114 PL_reg_re = (regexp*)NULL;
8115 PL_reg_ganch = Nullch;
8116 PL_reg_sv = Nullsv;
8117 PL_reg_magic = (MAGIC*)NULL;
8118 PL_reg_oldpos = 0;
8119 PL_reg_oldcurpm = (PMOP*)NULL;
8120 PL_reg_curpm = (PMOP*)NULL;
8121 PL_reg_oldsaved = Nullch;
8122 PL_reg_oldsavedlen = 0;
8123 PL_reg_maxiter = 0;
8124 PL_reg_leftiter = 0;
8125 PL_reg_poscache = Nullch;
8126 PL_reg_poscache_size= 0;
8127
8128 /* RE engine - function pointers */
8129 PL_regcompp = proto_perl->Tregcompp;
8130 PL_regexecp = proto_perl->Tregexecp;
8131 PL_regint_start = proto_perl->Tregint_start;
8132 PL_regint_string = proto_perl->Tregint_string;
8133 PL_regfree = proto_perl->Tregfree;
8134
8135 PL_reginterp_cnt = 0;
8136 PL_reg_starttry = 0;
8137
8138#ifdef PERL_OBJECT
8139 return (PerlInterpreter*)pPerl;
8140#else
8141 return my_perl;
8142#endif
8143}
8144
8145#else /* !USE_ITHREADS */
8146
8147#ifdef PERL_OBJECT
8148#include "XSUB.h"
8149#endif
8150
8151#endif /* USE_ITHREADS */
8152
8153static void
8154do_report_used(pTHXo_ SV *sv)
8155{
8156 if (SvTYPE(sv) != SVTYPEMASK) {
8157 PerlIO_printf(Perl_debug_log, "****\n");
8158 sv_dump(sv);
8159 }
8160}
8161
8162static void
8163do_clean_objs(pTHXo_ SV *sv)
8164{
8165 SV* rv;
8166
8167 if (SvROK(sv) && SvOBJECT(rv = SvRV(sv))) {
8168 DEBUG_D((PerlIO_printf(Perl_debug_log, "Cleaning object ref:\n "), sv_dump(sv));)
8169 SvROK_off(sv);
8170 SvRV(sv) = 0;
8171 SvREFCNT_dec(rv);
8172 }
8173
8174 /* XXX Might want to check arrays, etc. */
8175}
8176
8177#ifndef DISABLE_DESTRUCTOR_KLUDGE
8178static void
8179do_clean_named_objs(pTHXo_ SV *sv)
8180{
8181 if (SvTYPE(sv) == SVt_PVGV && GvGP(sv)) {
8182 if ( SvOBJECT(GvSV(sv)) ||
8183 (GvAV(sv) && SvOBJECT(GvAV(sv))) ||
8184 (GvHV(sv) && SvOBJECT(GvHV(sv))) ||
8185 (GvIO(sv) && SvOBJECT(GvIO(sv))) ||
8186 (GvCV(sv) && SvOBJECT(GvCV(sv))) )
8187 {
8188 DEBUG_D((PerlIO_printf(Perl_debug_log, "Cleaning named glob object:\n "), sv_dump(sv));)
8189 SvREFCNT_dec(sv);
8190 }
8191 }
8192}
8193#endif
8194
8195static void
8196do_clean_all(pTHXo_ SV *sv)
8197{
8198 DEBUG_D((PerlIO_printf(Perl_debug_log, "Cleaning loops: SV at 0x%"UVxf"\n", PTR2UV(sv)) );)
8199 SvFLAGS(sv) |= SVf_BREAK;
8200 SvREFCNT_dec(sv);
8201}
8202