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Need to stub the public functions to keep some existing code
[perl5.git] / sv.c
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a0d0e21e 1/* sv.c
79072805 2 *
4bb101f2 3 * Copyright (C) 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
b5f8cc5c 4 * 2000, 2001, 2002, 2003, 2004, by Larry Wall and others
79072805
LW
5 *
6 * You may distribute under the terms of either the GNU General Public
7 * License or the Artistic License, as specified in the README file.
8 *
a0d0e21e 9 * "I wonder what the Entish is for 'yes' and 'no'," he thought.
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10 *
11 *
5e045b90
AMS
12 * This file contains the code that creates, manipulates and destroys
13 * scalar values (SVs). The other types (AV, HV, GV, etc.) reuse the
14 * structure of an SV, so their creation and destruction is handled
15 * here; higher-level functions are in av.c, hv.c, and so on. Opcode
16 * level functions (eg. substr, split, join) for each of the types are
17 * in the pp*.c files.
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LW
18 */
19
20#include "EXTERN.h"
864dbfa3 21#define PERL_IN_SV_C
79072805 22#include "perl.h"
d2f185dc 23#include "regcomp.h"
79072805 24
51371543 25#define FCALL *f
2c5424a7 26
2f8ed50e
OS
27#ifdef __Lynx__
28/* Missing proto on LynxOS */
29 char *gconvert(double, int, int, char *);
30#endif
31
e23c8137
JH
32#ifdef PERL_UTF8_CACHE_ASSERT
33/* The cache element 0 is the Unicode offset;
34 * the cache element 1 is the byte offset of the element 0;
35 * the cache element 2 is the Unicode length of the substring;
36 * the cache element 3 is the byte length of the substring;
37 * The checking of the substring side would be good
38 * but substr() has enough code paths to make my head spin;
39 * if adding more checks watch out for the following tests:
40 * t/op/index.t t/op/length.t t/op/pat.t t/op/substr.t
41 * lib/utf8.t lib/Unicode/Collate/t/index.t
42 * --jhi
43 */
44#define ASSERT_UTF8_CACHE(cache) \
45 STMT_START { if (cache) { assert((cache)[0] <= (cache)[1]); } } STMT_END
46#else
47#define ASSERT_UTF8_CACHE(cache) NOOP
48#endif
49
765f542d
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50#ifdef PERL_COPY_ON_WRITE
51#define SV_COW_NEXT_SV(sv) INT2PTR(SV *,SvUVX(sv))
a29f6d03 52#define SV_COW_NEXT_SV_SET(current,next) SvUVX(current) = PTR2UV(next)
b5ccf5f2 53/* This is a pessimistic view. Scalar must be purely a read-write PV to copy-
765f542d 54 on-write. */
765f542d 55#endif
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56
57/* ============================================================================
58
59=head1 Allocation and deallocation of SVs.
60
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AMS
61An SV (or AV, HV, etc.) is allocated in two parts: the head (struct sv,
62av, hv...) contains type and reference count information, as well as a
63pointer to the body (struct xrv, xpv, xpviv...), which contains fields
64specific to each type.
65
66Normally, this allocation is done using arenas, which are approximately
671K chunks of memory parcelled up into N heads or bodies. The first slot
68in each arena is reserved, and is used to hold a link to the next arena.
69In the case of heads, the unused first slot also contains some flags and
70a note of the number of slots. Snaked through each arena chain is a
71linked list of free items; when this becomes empty, an extra arena is
72allocated and divided up into N items which are threaded into the free
73list.
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74
75The following global variables are associated with arenas:
76
77 PL_sv_arenaroot pointer to list of SV arenas
78 PL_sv_root pointer to list of free SV structures
79
80 PL_foo_arenaroot pointer to list of foo arenas,
81 PL_foo_root pointer to list of free foo bodies
82 ... for foo in xiv, xnv, xrv, xpv etc.
83
84Note that some of the larger and more rarely used body types (eg xpvio)
85are not allocated using arenas, but are instead just malloc()/free()ed as
86required. Also, if PURIFY is defined, arenas are abandoned altogether,
87with all items individually malloc()ed. In addition, a few SV heads are
88not allocated from an arena, but are instead directly created as static
89or auto variables, eg PL_sv_undef.
90
91The SV arena serves the secondary purpose of allowing still-live SVs
92to be located and destroyed during final cleanup.
93
94At the lowest level, the macros new_SV() and del_SV() grab and free
95an SV head. (If debugging with -DD, del_SV() calls the function S_del_sv()
96to return the SV to the free list with error checking.) new_SV() calls
97more_sv() / sv_add_arena() to add an extra arena if the free list is empty.
98SVs in the free list have their SvTYPE field set to all ones.
99
100Similarly, there are macros new_XIV()/del_XIV(), new_XNV()/del_XNV() etc
101that allocate and return individual body types. Normally these are mapped
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RG
102to the arena-manipulating functions new_xiv()/del_xiv() etc, but may be
103instead mapped directly to malloc()/free() if PURIFY is defined. The
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104new/del functions remove from, or add to, the appropriate PL_foo_root
105list, and call more_xiv() etc to add a new arena if the list is empty.
106
ff276b08 107At the time of very final cleanup, sv_free_arenas() is called from
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108perl_destruct() to physically free all the arenas allocated since the
109start of the interpreter. Note that this also clears PL_he_arenaroot,
110which is otherwise dealt with in hv.c.
111
112Manipulation of any of the PL_*root pointers is protected by enclosing
113LOCK_SV_MUTEX; ... UNLOCK_SV_MUTEX calls which should Do the Right Thing
114if threads are enabled.
115
116The function visit() scans the SV arenas list, and calls a specified
117function for each SV it finds which is still live - ie which has an SvTYPE
118other than all 1's, and a non-zero SvREFCNT. visit() is used by the
119following functions (specified as [function that calls visit()] / [function
120called by visit() for each SV]):
121
122 sv_report_used() / do_report_used()
123 dump all remaining SVs (debugging aid)
124
125 sv_clean_objs() / do_clean_objs(),do_clean_named_objs()
126 Attempt to free all objects pointed to by RVs,
127 and, unless DISABLE_DESTRUCTOR_KLUDGE is defined,
128 try to do the same for all objects indirectly
129 referenced by typeglobs too. Called once from
130 perl_destruct(), prior to calling sv_clean_all()
131 below.
132
133 sv_clean_all() / do_clean_all()
134 SvREFCNT_dec(sv) each remaining SV, possibly
135 triggering an sv_free(). It also sets the
136 SVf_BREAK flag on the SV to indicate that the
137 refcnt has been artificially lowered, and thus
138 stopping sv_free() from giving spurious warnings
139 about SVs which unexpectedly have a refcnt
140 of zero. called repeatedly from perl_destruct()
141 until there are no SVs left.
142
143=head2 Summary
144
145Private API to rest of sv.c
146
147 new_SV(), del_SV(),
148
149 new_XIV(), del_XIV(),
150 new_XNV(), del_XNV(),
151 etc
152
153Public API:
154
8cf8f3d1 155 sv_report_used(), sv_clean_objs(), sv_clean_all(), sv_free_arenas()
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156
157
158=cut
159
160============================================================================ */
161
162
51371543 163
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164/*
165 * "A time to plant, and a time to uproot what was planted..."
166 */
167
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168#define plant_SV(p) \
169 STMT_START { \
170 SvANY(p) = (void *)PL_sv_root; \
171 SvFLAGS(p) = SVTYPEMASK; \
172 PL_sv_root = (p); \
173 --PL_sv_count; \
174 } STMT_END
a0d0e21e 175
fba3b22e 176/* sv_mutex must be held while calling uproot_SV() */
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177#define uproot_SV(p) \
178 STMT_START { \
179 (p) = PL_sv_root; \
180 PL_sv_root = (SV*)SvANY(p); \
181 ++PL_sv_count; \
182 } STMT_END
183
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184
185/* new_SV(): return a new, empty SV head */
186
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DM
187#ifdef DEBUG_LEAKING_SCALARS
188/* provide a real function for a debugger to play with */
189STATIC SV*
190S_new_SV(pTHX)
191{
192 SV* sv;
193
194 LOCK_SV_MUTEX;
195 if (PL_sv_root)
196 uproot_SV(sv);
197 else
198 sv = more_sv();
199 UNLOCK_SV_MUTEX;
200 SvANY(sv) = 0;
201 SvREFCNT(sv) = 1;
202 SvFLAGS(sv) = 0;
203 return sv;
204}
205# define new_SV(p) (p)=S_new_SV(aTHX)
206
207#else
208# define new_SV(p) \
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209 STMT_START { \
210 LOCK_SV_MUTEX; \
211 if (PL_sv_root) \
212 uproot_SV(p); \
213 else \
214 (p) = more_sv(); \
215 UNLOCK_SV_MUTEX; \
216 SvANY(p) = 0; \
217 SvREFCNT(p) = 1; \
218 SvFLAGS(p) = 0; \
219 } STMT_END
eba0f806 220#endif
463ee0b2 221
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222
223/* del_SV(): return an empty SV head to the free list */
224
a0d0e21e 225#ifdef DEBUGGING
4561caa4 226
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227#define del_SV(p) \
228 STMT_START { \
229 LOCK_SV_MUTEX; \
aea4f609 230 if (DEBUG_D_TEST) \
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231 del_sv(p); \
232 else \
233 plant_SV(p); \
234 UNLOCK_SV_MUTEX; \
235 } STMT_END
a0d0e21e 236
76e3520e 237STATIC void
cea2e8a9 238S_del_sv(pTHX_ SV *p)
463ee0b2 239{
aea4f609 240 if (DEBUG_D_TEST) {
4633a7c4 241 SV* sva;
a0d0e21e
LW
242 SV* sv;
243 SV* svend;
244 int ok = 0;
3280af22 245 for (sva = PL_sv_arenaroot; sva; sva = (SV *) SvANY(sva)) {
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LW
246 sv = sva + 1;
247 svend = &sva[SvREFCNT(sva)];
a0d0e21e
LW
248 if (p >= sv && p < svend)
249 ok = 1;
250 }
251 if (!ok) {
0453d815 252 if (ckWARN_d(WARN_INTERNAL))
9014280d 253 Perl_warner(aTHX_ packWARN(WARN_INTERNAL),
472d47bc
SB
254 "Attempt to free non-arena SV: 0x%"UVxf
255 pTHX__FORMAT, PTR2UV(p) pTHX__VALUE);
a0d0e21e
LW
256 return;
257 }
258 }
4561caa4 259 plant_SV(p);
463ee0b2 260}
a0d0e21e 261
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CS
262#else /* ! DEBUGGING */
263
264#define del_SV(p) plant_SV(p)
265
266#endif /* DEBUGGING */
463ee0b2 267
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268
269/*
ccfc67b7
JH
270=head1 SV Manipulation Functions
271
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272=for apidoc sv_add_arena
273
274Given a chunk of memory, link it to the head of the list of arenas,
275and split it into a list of free SVs.
276
277=cut
278*/
279
4633a7c4 280void
864dbfa3 281Perl_sv_add_arena(pTHX_ char *ptr, U32 size, U32 flags)
463ee0b2 282{
4633a7c4 283 SV* sva = (SV*)ptr;
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LW
284 register SV* sv;
285 register SV* svend;
4633a7c4
LW
286
287 /* The first SV in an arena isn't an SV. */
3280af22 288 SvANY(sva) = (void *) PL_sv_arenaroot; /* ptr to next arena */
4633a7c4
LW
289 SvREFCNT(sva) = size / sizeof(SV); /* number of SV slots */
290 SvFLAGS(sva) = flags; /* FAKE if not to be freed */
291
3280af22
NIS
292 PL_sv_arenaroot = sva;
293 PL_sv_root = sva + 1;
4633a7c4
LW
294
295 svend = &sva[SvREFCNT(sva) - 1];
296 sv = sva + 1;
463ee0b2 297 while (sv < svend) {
a0d0e21e 298 SvANY(sv) = (void *)(SV*)(sv + 1);
978b032e 299 SvREFCNT(sv) = 0;
8990e307 300 SvFLAGS(sv) = SVTYPEMASK;
463ee0b2
LW
301 sv++;
302 }
303 SvANY(sv) = 0;
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LW
304 SvFLAGS(sv) = SVTYPEMASK;
305}
306
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307/* make some more SVs by adding another arena */
308
fba3b22e 309/* sv_mutex must be held while calling more_sv() */
76e3520e 310STATIC SV*
cea2e8a9 311S_more_sv(pTHX)
4633a7c4 312{
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CS
313 register SV* sv;
314
3280af22
NIS
315 if (PL_nice_chunk) {
316 sv_add_arena(PL_nice_chunk, PL_nice_chunk_size, 0);
317 PL_nice_chunk = Nullch;
30ad99e7 318 PL_nice_chunk_size = 0;
c07a80fd 319 }
1edc1566 320 else {
321 char *chunk; /* must use New here to match call to */
322 New(704,chunk,1008,char); /* Safefree() in sv_free_arenas() */
323 sv_add_arena(chunk, 1008, 0);
324 }
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CS
325 uproot_SV(sv);
326 return sv;
463ee0b2
LW
327}
328
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DM
329/* visit(): call the named function for each non-free SV in the arenas
330 * whose flags field matches the flags/mask args. */
645c22ef 331
5226ed68 332STATIC I32
055972dc 333S_visit(pTHX_ SVFUNC_t f, U32 flags, U32 mask)
8990e307 334{
4633a7c4 335 SV* sva;
8990e307
LW
336 SV* sv;
337 register SV* svend;
5226ed68 338 I32 visited = 0;
8990e307 339
3280af22 340 for (sva = PL_sv_arenaroot; sva; sva = (SV*)SvANY(sva)) {
4633a7c4 341 svend = &sva[SvREFCNT(sva)];
4561caa4 342 for (sv = sva + 1; sv < svend; ++sv) {
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DM
343 if (SvTYPE(sv) != SVTYPEMASK
344 && (sv->sv_flags & mask) == flags
345 && SvREFCNT(sv))
346 {
acfe0abc 347 (FCALL)(aTHX_ sv);
5226ed68
JH
348 ++visited;
349 }
8990e307
LW
350 }
351 }
5226ed68 352 return visited;
8990e307
LW
353}
354
758a08c3
JH
355#ifdef DEBUGGING
356
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357/* called by sv_report_used() for each live SV */
358
359static void
acfe0abc 360do_report_used(pTHX_ SV *sv)
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DM
361{
362 if (SvTYPE(sv) != SVTYPEMASK) {
363 PerlIO_printf(Perl_debug_log, "****\n");
364 sv_dump(sv);
365 }
366}
758a08c3 367#endif
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368
369/*
370=for apidoc sv_report_used
371
372Dump the contents of all SVs not yet freed. (Debugging aid).
373
374=cut
375*/
376
8990e307 377void
864dbfa3 378Perl_sv_report_used(pTHX)
4561caa4 379{
ff270d3a 380#ifdef DEBUGGING
055972dc 381 visit(do_report_used, 0, 0);
ff270d3a 382#endif
4561caa4
CS
383}
384
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DM
385/* called by sv_clean_objs() for each live SV */
386
387static void
acfe0abc 388do_clean_objs(pTHX_ SV *sv)
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DM
389{
390 SV* rv;
391
392 if (SvROK(sv) && SvOBJECT(rv = SvRV(sv))) {
393 DEBUG_D((PerlIO_printf(Perl_debug_log, "Cleaning object ref:\n "), sv_dump(sv)));
394 if (SvWEAKREF(sv)) {
395 sv_del_backref(sv);
396 SvWEAKREF_off(sv);
397 SvRV(sv) = 0;
398 } else {
399 SvROK_off(sv);
400 SvRV(sv) = 0;
401 SvREFCNT_dec(rv);
402 }
403 }
404
405 /* XXX Might want to check arrays, etc. */
406}
407
408/* called by sv_clean_objs() for each live SV */
409
410#ifndef DISABLE_DESTRUCTOR_KLUDGE
411static void
acfe0abc 412do_clean_named_objs(pTHX_ SV *sv)
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DM
413{
414 if (SvTYPE(sv) == SVt_PVGV && GvGP(sv)) {
415 if ( SvOBJECT(GvSV(sv)) ||
416 (GvAV(sv) && SvOBJECT(GvAV(sv))) ||
417 (GvHV(sv) && SvOBJECT(GvHV(sv))) ||
418 (GvIO(sv) && SvOBJECT(GvIO(sv))) ||
419 (GvCV(sv) && SvOBJECT(GvCV(sv))) )
420 {
421 DEBUG_D((PerlIO_printf(Perl_debug_log, "Cleaning named glob object:\n "), sv_dump(sv)));
ec5f3c78 422 SvFLAGS(sv) |= SVf_BREAK;
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DM
423 SvREFCNT_dec(sv);
424 }
425 }
426}
427#endif
428
429/*
430=for apidoc sv_clean_objs
431
432Attempt to destroy all objects not yet freed
433
434=cut
435*/
436
4561caa4 437void
864dbfa3 438Perl_sv_clean_objs(pTHX)
4561caa4 439{
3280af22 440 PL_in_clean_objs = TRUE;
055972dc 441 visit(do_clean_objs, SVf_ROK, SVf_ROK);
4561caa4 442#ifndef DISABLE_DESTRUCTOR_KLUDGE
2d0f3c12 443 /* some barnacles may yet remain, clinging to typeglobs */
055972dc 444 visit(do_clean_named_objs, SVt_PVGV, SVTYPEMASK);
4561caa4 445#endif
3280af22 446 PL_in_clean_objs = FALSE;
4561caa4
CS
447}
448
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DM
449/* called by sv_clean_all() for each live SV */
450
451static void
acfe0abc 452do_clean_all(pTHX_ SV *sv)
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DM
453{
454 DEBUG_D((PerlIO_printf(Perl_debug_log, "Cleaning loops: SV at 0x%"UVxf"\n", PTR2UV(sv)) ));
455 SvFLAGS(sv) |= SVf_BREAK;
0e705b3b
DM
456 if (PL_comppad == (AV*)sv) {
457 PL_comppad = Nullav;
458 PL_curpad = Null(SV**);
459 }
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DM
460 SvREFCNT_dec(sv);
461}
462
463/*
464=for apidoc sv_clean_all
465
466Decrement the refcnt of each remaining SV, possibly triggering a
467cleanup. This function may have to be called multiple times to free
ff276b08 468SVs which are in complex self-referential hierarchies.
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469
470=cut
471*/
472
5226ed68 473I32
864dbfa3 474Perl_sv_clean_all(pTHX)
8990e307 475{
5226ed68 476 I32 cleaned;
3280af22 477 PL_in_clean_all = TRUE;
055972dc 478 cleaned = visit(do_clean_all, 0,0);
3280af22 479 PL_in_clean_all = FALSE;
5226ed68 480 return cleaned;
8990e307 481}
463ee0b2 482
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483/*
484=for apidoc sv_free_arenas
485
486Deallocate the memory used by all arenas. Note that all the individual SV
487heads and bodies within the arenas must already have been freed.
488
489=cut
490*/
491
4633a7c4 492void
864dbfa3 493Perl_sv_free_arenas(pTHX)
4633a7c4
LW
494{
495 SV* sva;
496 SV* svanext;
612f20c3 497 XPV *arena, *arenanext;
4633a7c4
LW
498
499 /* Free arenas here, but be careful about fake ones. (We assume
500 contiguity of the fake ones with the corresponding real ones.) */
501
3280af22 502 for (sva = PL_sv_arenaroot; sva; sva = svanext) {
4633a7c4
LW
503 svanext = (SV*) SvANY(sva);
504 while (svanext && SvFAKE(svanext))
505 svanext = (SV*) SvANY(svanext);
506
507 if (!SvFAKE(sva))
1edc1566 508 Safefree((void *)sva);
4633a7c4 509 }
5f05dabc 510
612f20c3
GS
511 for (arena = PL_xiv_arenaroot; arena; arena = arenanext) {
512 arenanext = (XPV*)arena->xpv_pv;
513 Safefree(arena);
514 }
515 PL_xiv_arenaroot = 0;
bf9cdc68 516 PL_xiv_root = 0;
612f20c3
GS
517
518 for (arena = PL_xnv_arenaroot; arena; arena = arenanext) {
519 arenanext = (XPV*)arena->xpv_pv;
520 Safefree(arena);
521 }
522 PL_xnv_arenaroot = 0;
bf9cdc68 523 PL_xnv_root = 0;
612f20c3
GS
524
525 for (arena = PL_xrv_arenaroot; arena; arena = arenanext) {
526 arenanext = (XPV*)arena->xpv_pv;
527 Safefree(arena);
528 }
529 PL_xrv_arenaroot = 0;
bf9cdc68 530 PL_xrv_root = 0;
612f20c3
GS
531
532 for (arena = PL_xpv_arenaroot; arena; arena = arenanext) {
533 arenanext = (XPV*)arena->xpv_pv;
534 Safefree(arena);
535 }
536 PL_xpv_arenaroot = 0;
bf9cdc68 537 PL_xpv_root = 0;
612f20c3
GS
538
539 for (arena = (XPV*)PL_xpviv_arenaroot; arena; arena = arenanext) {
540 arenanext = (XPV*)arena->xpv_pv;
541 Safefree(arena);
542 }
543 PL_xpviv_arenaroot = 0;
bf9cdc68 544 PL_xpviv_root = 0;
612f20c3
GS
545
546 for (arena = (XPV*)PL_xpvnv_arenaroot; arena; arena = arenanext) {
547 arenanext = (XPV*)arena->xpv_pv;
548 Safefree(arena);
549 }
550 PL_xpvnv_arenaroot = 0;
bf9cdc68 551 PL_xpvnv_root = 0;
612f20c3
GS
552
553 for (arena = (XPV*)PL_xpvcv_arenaroot; arena; arena = arenanext) {
554 arenanext = (XPV*)arena->xpv_pv;
555 Safefree(arena);
556 }
557 PL_xpvcv_arenaroot = 0;
bf9cdc68 558 PL_xpvcv_root = 0;
612f20c3
GS
559
560 for (arena = (XPV*)PL_xpvav_arenaroot; arena; arena = arenanext) {
561 arenanext = (XPV*)arena->xpv_pv;
562 Safefree(arena);
563 }
564 PL_xpvav_arenaroot = 0;
bf9cdc68 565 PL_xpvav_root = 0;
612f20c3
GS
566
567 for (arena = (XPV*)PL_xpvhv_arenaroot; arena; arena = arenanext) {
568 arenanext = (XPV*)arena->xpv_pv;
569 Safefree(arena);
570 }
571 PL_xpvhv_arenaroot = 0;
bf9cdc68 572 PL_xpvhv_root = 0;
612f20c3
GS
573
574 for (arena = (XPV*)PL_xpvmg_arenaroot; arena; arena = arenanext) {
575 arenanext = (XPV*)arena->xpv_pv;
576 Safefree(arena);
577 }
578 PL_xpvmg_arenaroot = 0;
bf9cdc68 579 PL_xpvmg_root = 0;
612f20c3
GS
580
581 for (arena = (XPV*)PL_xpvlv_arenaroot; arena; arena = arenanext) {
582 arenanext = (XPV*)arena->xpv_pv;
583 Safefree(arena);
584 }
585 PL_xpvlv_arenaroot = 0;
bf9cdc68 586 PL_xpvlv_root = 0;
612f20c3
GS
587
588 for (arena = (XPV*)PL_xpvbm_arenaroot; arena; arena = arenanext) {
589 arenanext = (XPV*)arena->xpv_pv;
590 Safefree(arena);
591 }
592 PL_xpvbm_arenaroot = 0;
bf9cdc68 593 PL_xpvbm_root = 0;
612f20c3
GS
594
595 for (arena = (XPV*)PL_he_arenaroot; arena; arena = arenanext) {
596 arenanext = (XPV*)arena->xpv_pv;
597 Safefree(arena);
598 }
599 PL_he_arenaroot = 0;
bf9cdc68 600 PL_he_root = 0;
612f20c3 601
3280af22
NIS
602 if (PL_nice_chunk)
603 Safefree(PL_nice_chunk);
604 PL_nice_chunk = Nullch;
605 PL_nice_chunk_size = 0;
606 PL_sv_arenaroot = 0;
607 PL_sv_root = 0;
4633a7c4
LW
608}
609
29489e7c
DM
610/* ---------------------------------------------------------------------
611 *
612 * support functions for report_uninit()
613 */
614
615/* the maxiumum size of array or hash where we will scan looking
616 * for the undefined element that triggered the warning */
617
618#define FUV_MAX_SEARCH_SIZE 1000
619
620/* Look for an entry in the hash whose value has the same SV as val;
621 * If so, return a mortal copy of the key. */
622
623STATIC SV*
624S_find_hash_subscript(pTHX_ HV *hv, SV* val)
625{
626 register HE **array;
627 register HE *entry;
628 I32 i;
629
630 if (!hv || SvMAGICAL(hv) || !HvARRAY(hv) ||
631 (HvTOTALKEYS(hv) > FUV_MAX_SEARCH_SIZE))
632 return Nullsv;
633
634 array = HvARRAY(hv);
635
636 for (i=HvMAX(hv); i>0; i--) {
637 for (entry = array[i]; entry; entry = HeNEXT(entry)) {
638 if (HeVAL(entry) != val)
639 continue;
640 if ( HeVAL(entry) == &PL_sv_undef ||
641 HeVAL(entry) == &PL_sv_placeholder)
642 continue;
643 if (!HeKEY(entry))
644 return Nullsv;
645 if (HeKLEN(entry) == HEf_SVKEY)
646 return sv_mortalcopy(HeKEY_sv(entry));
647 return sv_2mortal(newSVpvn(HeKEY(entry), HeKLEN(entry)));
648 }
649 }
650 return Nullsv;
651}
652
653/* Look for an entry in the array whose value has the same SV as val;
654 * If so, return the index, otherwise return -1. */
655
656STATIC I32
657S_find_array_subscript(pTHX_ AV *av, SV* val)
658{
659 SV** svp;
660 I32 i;
661 if (!av || SvMAGICAL(av) || !AvARRAY(av) ||
662 (AvFILLp(av) > FUV_MAX_SEARCH_SIZE))
663 return -1;
664
665 svp = AvARRAY(av);
666 for (i=AvFILLp(av); i>=0; i--) {
667 if (svp[i] == val && svp[i] != &PL_sv_undef)
668 return i;
669 }
670 return -1;
671}
672
673/* S_varname(): return the name of a variable, optionally with a subscript.
674 * If gv is non-zero, use the name of that global, along with gvtype (one
675 * of "$", "@", "%"); otherwise use the name of the lexical at pad offset
676 * targ. Depending on the value of the subscript_type flag, return:
677 */
678
679#define FUV_SUBSCRIPT_NONE 1 /* "@foo" */
680#define FUV_SUBSCRIPT_ARRAY 2 /* "$foo[aindex]" */
681#define FUV_SUBSCRIPT_HASH 3 /* "$foo{keyname}" */
682#define FUV_SUBSCRIPT_WITHIN 4 /* "within @foo" */
683
684STATIC SV*
685S_varname(pTHX_ GV *gv, char *gvtype, PADOFFSET targ,
686 SV* keyname, I32 aindex, int subscript_type)
687{
688 AV *av;
689
690 SV *sv, *name;
691
692 name = sv_newmortal();
693 if (gv) {
694
695 /* simulate gv_fullname4(), but add literal '^' for $^FOO names
696 * XXX get rid of all this if gv_fullnameX() ever supports this
697 * directly */
698
699 char *p;
700 HV *hv = GvSTASH(gv);
701 sv_setpv(name, gvtype);
702 if (!hv)
703 p = "???";
704 else if (!HvNAME(hv))
705 p = "__ANON__";
7a5fa8a2 706 else
29489e7c
DM
707 p = HvNAME(hv);
708 if (strNE(p, "main")) {
709 sv_catpv(name,p);
710 sv_catpvn(name,"::", 2);
711 }
712 if (GvNAMELEN(gv)>= 1 &&
713 ((unsigned int)*GvNAME(gv)) <= 26)
714 { /* handle $^FOO */
715 Perl_sv_catpvf(aTHX_ name,"^%c", *GvNAME(gv) + 'A' - 1);
716 sv_catpvn(name,GvNAME(gv)+1,GvNAMELEN(gv)-1);
717 }
718 else
719 sv_catpvn(name,GvNAME(gv),GvNAMELEN(gv));
720 }
721 else {
722 U32 u;
723 CV *cv = find_runcv(&u);
724 if (!cv || !CvPADLIST(cv))
725 return Nullsv;;
726 av = (AV*)(*av_fetch(CvPADLIST(cv), 0, FALSE));
727 sv = *av_fetch(av, targ, FALSE);
728 /* SvLEN in a pad name is not to be trusted */
729 sv_setpv(name, SvPV_nolen(sv));
730 }
731
732 if (subscript_type == FUV_SUBSCRIPT_HASH) {
733 *SvPVX(name) = '$';
734 sv = NEWSV(0,0);
735 Perl_sv_catpvf(aTHX_ name, "{%s}",
736 pv_display(sv,SvPVX(keyname), SvCUR(keyname), 0, 32));
737 SvREFCNT_dec(sv);
738 }
739 else if (subscript_type == FUV_SUBSCRIPT_ARRAY) {
740 *SvPVX(name) = '$';
265a12b8 741 Perl_sv_catpvf(aTHX_ name, "[%"IVdf"]", (IV)aindex);
29489e7c
DM
742 }
743 else if (subscript_type == FUV_SUBSCRIPT_WITHIN)
744 sv_insert(name, 0, 0, "within ", 7);
745
746 return name;
747}
748
749
750/*
751=for apidoc find_uninit_var
752
753Find the name of the undefined variable (if any) that caused the operator o
754to issue a "Use of uninitialized value" warning.
755If match is true, only return a name if it's value matches uninit_sv.
756So roughly speaking, if a unary operator (such as OP_COS) generates a
757warning, then following the direct child of the op may yield an
758OP_PADSV or OP_GV that gives the name of the undefined variable. On the
759other hand, with OP_ADD there are two branches to follow, so we only print
760the variable name if we get an exact match.
761
762The name is returned as a mortal SV.
763
764Assumes that PL_op is the op that originally triggered the error, and that
765PL_comppad/PL_curpad points to the currently executing pad.
766
767=cut
768*/
769
770STATIC SV *
771S_find_uninit_var(pTHX_ OP* obase, SV* uninit_sv, bool match)
772{
773 SV *sv;
774 AV *av;
775 SV **svp;
776 GV *gv;
777 OP *o, *o2, *kid;
778
779 if (!obase || (match && (!uninit_sv || uninit_sv == &PL_sv_undef ||
780 uninit_sv == &PL_sv_placeholder)))
781 return Nullsv;
782
783 switch (obase->op_type) {
784
785 case OP_RV2AV:
786 case OP_RV2HV:
787 case OP_PADAV:
788 case OP_PADHV:
789 {
790 bool pad = (obase->op_type == OP_PADAV || obase->op_type == OP_PADHV);
791 bool hash = (obase->op_type == OP_PADHV || obase->op_type == OP_RV2HV);
112dcc46
RGS
792 I32 index = 0;
793 SV *keysv = Nullsv;
29489e7c
DM
794 int subscript_type = FUV_SUBSCRIPT_WITHIN;
795
796 if (pad) { /* @lex, %lex */
797 sv = PAD_SVl(obase->op_targ);
798 gv = Nullgv;
799 }
800 else {
801 if (cUNOPx(obase)->op_first->op_type == OP_GV) {
802 /* @global, %global */
803 gv = cGVOPx_gv(cUNOPx(obase)->op_first);
804 if (!gv)
805 break;
806 sv = hash ? (SV*)GvHV(gv): (SV*)GvAV(gv);
807 }
808 else /* @{expr}, %{expr} */
809 return find_uninit_var(cUNOPx(obase)->op_first,
810 uninit_sv, match);
811 }
812
813 /* attempt to find a match within the aggregate */
814 if (hash) {
815 keysv = S_find_hash_subscript(aTHX_ (HV*)sv, uninit_sv);
816 if (keysv)
817 subscript_type = FUV_SUBSCRIPT_HASH;
818 }
819 else {
820 index = S_find_array_subscript(aTHX_ (AV*)sv, uninit_sv);
821 if (index >= 0)
822 subscript_type = FUV_SUBSCRIPT_ARRAY;
823 }
824
825 if (match && subscript_type == FUV_SUBSCRIPT_WITHIN)
826 break;
827
828 return S_varname(aTHX_ gv, hash ? "%" : "@", obase->op_targ,
829 keysv, index, subscript_type);
830 }
831
832 case OP_PADSV:
833 if (match && PAD_SVl(obase->op_targ) != uninit_sv)
834 break;
835 return S_varname(aTHX_ Nullgv, "$", obase->op_targ,
836 Nullsv, 0, FUV_SUBSCRIPT_NONE);
837
838 case OP_GVSV:
839 gv = cGVOPx_gv(obase);
840 if (!gv || (match && GvSV(gv) != uninit_sv))
841 break;
842 return S_varname(aTHX_ gv, "$", 0, Nullsv, 0, FUV_SUBSCRIPT_NONE);
843
844 case OP_AELEMFAST:
845 if (obase->op_flags & OPf_SPECIAL) { /* lexical array */
846 if (match) {
847 av = (AV*)PAD_SV(obase->op_targ);
848 if (!av || SvRMAGICAL(av))
849 break;
850 svp = av_fetch(av, (I32)obase->op_private, FALSE);
851 if (!svp || *svp != uninit_sv)
852 break;
853 }
854 return S_varname(aTHX_ Nullgv, "$", obase->op_targ,
855 Nullsv, (I32)obase->op_private, FUV_SUBSCRIPT_ARRAY);
856 }
857 else {
858 gv = cGVOPx_gv(obase);
859 if (!gv)
860 break;
861 if (match) {
862 av = GvAV(gv);
863 if (!av || SvRMAGICAL(av))
864 break;
865 svp = av_fetch(av, (I32)obase->op_private, FALSE);
866 if (!svp || *svp != uninit_sv)
867 break;
868 }
869 return S_varname(aTHX_ gv, "$", 0,
870 Nullsv, (I32)obase->op_private, FUV_SUBSCRIPT_ARRAY);
871 }
872 break;
873
874 case OP_EXISTS:
875 o = cUNOPx(obase)->op_first;
876 if (!o || o->op_type != OP_NULL ||
877 ! (o->op_targ == OP_AELEM || o->op_targ == OP_HELEM))
878 break;
879 return find_uninit_var(cBINOPo->op_last, uninit_sv, match);
880
881 case OP_AELEM:
882 case OP_HELEM:
883 if (PL_op == obase)
884 /* $a[uninit_expr] or $h{uninit_expr} */
885 return find_uninit_var(cBINOPx(obase)->op_last, uninit_sv, match);
886
887 gv = Nullgv;
888 o = cBINOPx(obase)->op_first;
889 kid = cBINOPx(obase)->op_last;
890
891 /* get the av or hv, and optionally the gv */
892 sv = Nullsv;
893 if (o->op_type == OP_PADAV || o->op_type == OP_PADHV) {
894 sv = PAD_SV(o->op_targ);
895 }
896 else if ((o->op_type == OP_RV2AV || o->op_type == OP_RV2HV)
897 && cUNOPo->op_first->op_type == OP_GV)
898 {
899 gv = cGVOPx_gv(cUNOPo->op_first);
900 if (!gv)
901 break;
902 sv = o->op_type == OP_RV2HV ? (SV*)GvHV(gv) : (SV*)GvAV(gv);
903 }
904 if (!sv)
905 break;
906
907 if (kid && kid->op_type == OP_CONST && SvOK(cSVOPx_sv(kid))) {
908 /* index is constant */
909 if (match) {
910 if (SvMAGICAL(sv))
911 break;
912 if (obase->op_type == OP_HELEM) {
913 HE* he = hv_fetch_ent((HV*)sv, cSVOPx_sv(kid), 0, 0);
914 if (!he || HeVAL(he) != uninit_sv)
915 break;
916 }
917 else {
918 svp = av_fetch((AV*)sv, SvIV(cSVOPx_sv(kid)), FALSE);
919 if (!svp || *svp != uninit_sv)
920 break;
921 }
922 }
923 if (obase->op_type == OP_HELEM)
924 return S_varname(aTHX_ gv, "%", o->op_targ,
925 cSVOPx_sv(kid), 0, FUV_SUBSCRIPT_HASH);
926 else
927 return S_varname(aTHX_ gv, "@", o->op_targ, Nullsv,
928 SvIV(cSVOPx_sv(kid)), FUV_SUBSCRIPT_ARRAY);
929 ;
930 }
931 else {
932 /* index is an expression;
933 * attempt to find a match within the aggregate */
934 if (obase->op_type == OP_HELEM) {
935 SV *keysv = S_find_hash_subscript(aTHX_ (HV*)sv, uninit_sv);
936 if (keysv)
937 return S_varname(aTHX_ gv, "%", o->op_targ,
938 keysv, 0, FUV_SUBSCRIPT_HASH);
939 }
940 else {
941 I32 index = S_find_array_subscript(aTHX_ (AV*)sv, uninit_sv);
942 if (index >= 0)
943 return S_varname(aTHX_ gv, "@", o->op_targ,
944 Nullsv, index, FUV_SUBSCRIPT_ARRAY);
945 }
946 if (match)
947 break;
948 return S_varname(aTHX_ gv,
949 (o->op_type == OP_PADAV || o->op_type == OP_RV2AV)
950 ? "@" : "%",
951 o->op_targ, Nullsv, 0, FUV_SUBSCRIPT_WITHIN);
952 }
953
954 break;
955
956 case OP_AASSIGN:
957 /* only examine RHS */
958 return find_uninit_var(cBINOPx(obase)->op_first, uninit_sv, match);
959
960 case OP_OPEN:
961 o = cUNOPx(obase)->op_first;
962 if (o->op_type == OP_PUSHMARK)
963 o = o->op_sibling;
964
965 if (!o->op_sibling) {
966 /* one-arg version of open is highly magical */
967
968 if (o->op_type == OP_GV) { /* open FOO; */
969 gv = cGVOPx_gv(o);
970 if (match && GvSV(gv) != uninit_sv)
971 break;
7a5fa8a2 972 return S_varname(aTHX_ gv, "$", 0,
29489e7c
DM
973 Nullsv, 0, FUV_SUBSCRIPT_NONE);
974 }
975 /* other possibilities not handled are:
976 * open $x; or open my $x; should return '${*$x}'
977 * open expr; should return '$'.expr ideally
978 */
979 break;
980 }
981 goto do_op;
982
983 /* ops where $_ may be an implicit arg */
984 case OP_TRANS:
985 case OP_SUBST:
986 case OP_MATCH:
987 if ( !(obase->op_flags & OPf_STACKED)) {
988 if (uninit_sv == ((obase->op_private & OPpTARGET_MY)
989 ? PAD_SVl(obase->op_targ)
990 : DEFSV))
991 {
992 sv = sv_newmortal();
993 sv_setpv(sv, "$_");
994 return sv;
995 }
996 }
997 goto do_op;
998
999 case OP_PRTF:
1000 case OP_PRINT:
1001 /* skip filehandle as it can't produce 'undef' warning */
1002 o = cUNOPx(obase)->op_first;
1003 if ((obase->op_flags & OPf_STACKED) && o->op_type == OP_PUSHMARK)
1004 o = o->op_sibling->op_sibling;
1005 goto do_op2;
1006
1007
e21bd382 1008 case OP_RV2SV:
29489e7c
DM
1009 case OP_CUSTOM:
1010 case OP_ENTERSUB:
1011 match = 1; /* XS or custom code could trigger random warnings */
1012 goto do_op;
1013
1014 case OP_SCHOMP:
1015 case OP_CHOMP:
1016 if (SvROK(PL_rs) && uninit_sv == SvRV(PL_rs))
1017 return sv_2mortal(newSVpv("${$/}", 0));
1018 /* FALL THROUGH */
1019
1020 default:
1021 do_op:
1022 if (!(obase->op_flags & OPf_KIDS))
1023 break;
1024 o = cUNOPx(obase)->op_first;
1025
1026 do_op2:
1027 if (!o)
1028 break;
1029
1030 /* if all except one arg are constant, or have no side-effects,
1031 * or are optimized away, then it's unambiguous */
1032 o2 = Nullop;
1033 for (kid=o; kid; kid = kid->op_sibling) {
1034 if (kid &&
1035 ( (kid->op_type == OP_CONST && SvOK(cSVOPx_sv(kid)))
1036 || (kid->op_type == OP_NULL && ! (kid->op_flags & OPf_KIDS))
1037 || (kid->op_type == OP_PUSHMARK)
1038 )
1039 )
1040 continue;
1041 if (o2) { /* more than one found */
1042 o2 = Nullop;
1043 break;
1044 }
1045 o2 = kid;
1046 }
1047 if (o2)
1048 return find_uninit_var(o2, uninit_sv, match);
1049
1050 /* scan all args */
1051 while (o) {
1052 sv = find_uninit_var(o, uninit_sv, 1);
1053 if (sv)
1054 return sv;
1055 o = o->op_sibling;
1056 }
1057 break;
1058 }
1059 return Nullsv;
1060}
1061
1062
645c22ef
DM
1063/*
1064=for apidoc report_uninit
1065
1066Print appropriate "Use of uninitialized variable" warning
1067
1068=cut
1069*/
1070
1d7c1841 1071void
29489e7c
DM
1072Perl_report_uninit(pTHX_ SV* uninit_sv)
1073{
1074 if (PL_op) {
112dcc46 1075 SV* varname = Nullsv;
29489e7c
DM
1076 if (uninit_sv) {
1077 varname = find_uninit_var(PL_op, uninit_sv,0);
1078 if (varname)
1079 sv_insert(varname, 0, 0, " ", 1);
1080 }
9014280d 1081 Perl_warner(aTHX_ packWARN(WARN_UNINITIALIZED), PL_warn_uninit,
29489e7c
DM
1082 varname ? SvPV_nolen(varname) : "",
1083 " in ", OP_DESC(PL_op));
1084 }
1d7c1841 1085 else
29489e7c
DM
1086 Perl_warner(aTHX_ packWARN(WARN_UNINITIALIZED), PL_warn_uninit,
1087 "", "", "");
1d7c1841
GS
1088}
1089
645c22ef
DM
1090/* grab a new IV body from the free list, allocating more if necessary */
1091
76e3520e 1092STATIC XPVIV*
cea2e8a9 1093S_new_xiv(pTHX)
463ee0b2 1094{
ea7c11a3 1095 IV* xiv;
cbe51380
GS
1096 LOCK_SV_MUTEX;
1097 if (!PL_xiv_root)
1098 more_xiv();
1099 xiv = PL_xiv_root;
1100 /*
1101 * See comment in more_xiv() -- RAM.
1102 */
1103 PL_xiv_root = *(IV**)xiv;
1104 UNLOCK_SV_MUTEX;
1105 return (XPVIV*)((char*)xiv - STRUCT_OFFSET(XPVIV, xiv_iv));
463ee0b2
LW
1106}
1107
645c22ef
DM
1108/* return an IV body to the free list */
1109
76e3520e 1110STATIC void
cea2e8a9 1111S_del_xiv(pTHX_ XPVIV *p)
463ee0b2 1112{
23e6a22f 1113 IV* xiv = (IV*)((char*)(p) + STRUCT_OFFSET(XPVIV, xiv_iv));
cbe51380 1114 LOCK_SV_MUTEX;
3280af22
NIS
1115 *(IV**)xiv = PL_xiv_root;
1116 PL_xiv_root = xiv;
cbe51380 1117 UNLOCK_SV_MUTEX;
463ee0b2
LW
1118}
1119
645c22ef
DM
1120/* allocate another arena's worth of IV bodies */
1121
cbe51380 1122STATIC void
cea2e8a9 1123S_more_xiv(pTHX)
463ee0b2 1124{
ea7c11a3
SM
1125 register IV* xiv;
1126 register IV* xivend;
8c52afec
IZ
1127 XPV* ptr;
1128 New(705, ptr, 1008/sizeof(XPV), XPV);
645c22ef 1129 ptr->xpv_pv = (char*)PL_xiv_arenaroot; /* linked list of xiv arenas */
3280af22 1130 PL_xiv_arenaroot = ptr; /* to keep Purify happy */
a0d0e21e 1131
ea7c11a3
SM
1132 xiv = (IV*) ptr;
1133 xivend = &xiv[1008 / sizeof(IV) - 1];
645c22ef 1134 xiv += (sizeof(XPV) - 1) / sizeof(IV) + 1; /* fudge by size of XPV */
3280af22 1135 PL_xiv_root = xiv;
463ee0b2 1136 while (xiv < xivend) {
ea7c11a3 1137 *(IV**)xiv = (IV *)(xiv + 1);
463ee0b2
LW
1138 xiv++;
1139 }
ea7c11a3 1140 *(IV**)xiv = 0;
463ee0b2
LW
1141}
1142
645c22ef
DM
1143/* grab a new NV body from the free list, allocating more if necessary */
1144
76e3520e 1145STATIC XPVNV*
cea2e8a9 1146S_new_xnv(pTHX)
463ee0b2 1147{
65202027 1148 NV* xnv;
cbe51380
GS
1149 LOCK_SV_MUTEX;
1150 if (!PL_xnv_root)
1151 more_xnv();
1152 xnv = PL_xnv_root;
65202027 1153 PL_xnv_root = *(NV**)xnv;
cbe51380
GS
1154 UNLOCK_SV_MUTEX;
1155 return (XPVNV*)((char*)xnv - STRUCT_OFFSET(XPVNV, xnv_nv));
463ee0b2
LW
1156}
1157
645c22ef
DM
1158/* return an NV body to the free list */
1159
76e3520e 1160STATIC void
cea2e8a9 1161S_del_xnv(pTHX_ XPVNV *p)
463ee0b2 1162{
65202027 1163 NV* xnv = (NV*)((char*)(p) + STRUCT_OFFSET(XPVNV, xnv_nv));
cbe51380 1164 LOCK_SV_MUTEX;
65202027 1165 *(NV**)xnv = PL_xnv_root;
3280af22 1166 PL_xnv_root = xnv;
cbe51380 1167 UNLOCK_SV_MUTEX;
463ee0b2
LW
1168}
1169
645c22ef
DM
1170/* allocate another arena's worth of NV bodies */
1171
cbe51380 1172STATIC void
cea2e8a9 1173S_more_xnv(pTHX)
463ee0b2 1174{
65202027
DS
1175 register NV* xnv;
1176 register NV* xnvend;
612f20c3
GS
1177 XPV *ptr;
1178 New(711, ptr, 1008/sizeof(XPV), XPV);
1179 ptr->xpv_pv = (char*)PL_xnv_arenaroot;
1180 PL_xnv_arenaroot = ptr;
1181
1182 xnv = (NV*) ptr;
65202027
DS
1183 xnvend = &xnv[1008 / sizeof(NV) - 1];
1184 xnv += (sizeof(XPVIV) - 1) / sizeof(NV) + 1; /* fudge by sizeof XPVIV */
3280af22 1185 PL_xnv_root = xnv;
463ee0b2 1186 while (xnv < xnvend) {
65202027 1187 *(NV**)xnv = (NV*)(xnv + 1);
463ee0b2
LW
1188 xnv++;
1189 }
65202027 1190 *(NV**)xnv = 0;
463ee0b2
LW
1191}
1192
645c22ef
DM
1193/* grab a new struct xrv from the free list, allocating more if necessary */
1194
76e3520e 1195STATIC XRV*
cea2e8a9 1196S_new_xrv(pTHX)
ed6116ce
LW
1197{
1198 XRV* xrv;
cbe51380
GS
1199 LOCK_SV_MUTEX;
1200 if (!PL_xrv_root)
1201 more_xrv();
1202 xrv = PL_xrv_root;
1203 PL_xrv_root = (XRV*)xrv->xrv_rv;
1204 UNLOCK_SV_MUTEX;
1205 return xrv;
ed6116ce
LW
1206}
1207
645c22ef
DM
1208/* return a struct xrv to the free list */
1209
76e3520e 1210STATIC void
cea2e8a9 1211S_del_xrv(pTHX_ XRV *p)
ed6116ce 1212{
cbe51380 1213 LOCK_SV_MUTEX;
3280af22
NIS
1214 p->xrv_rv = (SV*)PL_xrv_root;
1215 PL_xrv_root = p;
cbe51380 1216 UNLOCK_SV_MUTEX;
ed6116ce
LW
1217}
1218
645c22ef
DM
1219/* allocate another arena's worth of struct xrv */
1220
cbe51380 1221STATIC void
cea2e8a9 1222S_more_xrv(pTHX)
ed6116ce 1223{
ed6116ce
LW
1224 register XRV* xrv;
1225 register XRV* xrvend;
612f20c3
GS
1226 XPV *ptr;
1227 New(712, ptr, 1008/sizeof(XPV), XPV);
1228 ptr->xpv_pv = (char*)PL_xrv_arenaroot;
1229 PL_xrv_arenaroot = ptr;
1230
1231 xrv = (XRV*) ptr;
ed6116ce 1232 xrvend = &xrv[1008 / sizeof(XRV) - 1];
612f20c3
GS
1233 xrv += (sizeof(XPV) - 1) / sizeof(XRV) + 1;
1234 PL_xrv_root = xrv;
ed6116ce
LW
1235 while (xrv < xrvend) {
1236 xrv->xrv_rv = (SV*)(xrv + 1);
1237 xrv++;
1238 }
1239 xrv->xrv_rv = 0;
ed6116ce
LW
1240}
1241
645c22ef
DM
1242/* grab a new struct xpv from the free list, allocating more if necessary */
1243
76e3520e 1244STATIC XPV*
cea2e8a9 1245S_new_xpv(pTHX)
463ee0b2
LW
1246{
1247 XPV* xpv;
cbe51380
GS
1248 LOCK_SV_MUTEX;
1249 if (!PL_xpv_root)
1250 more_xpv();
1251 xpv = PL_xpv_root;
1252 PL_xpv_root = (XPV*)xpv->xpv_pv;
1253 UNLOCK_SV_MUTEX;
1254 return xpv;
463ee0b2
LW
1255}
1256
645c22ef
DM
1257/* return a struct xpv to the free list */
1258
76e3520e 1259STATIC void
cea2e8a9 1260S_del_xpv(pTHX_ XPV *p)
463ee0b2 1261{
cbe51380 1262 LOCK_SV_MUTEX;
3280af22
NIS
1263 p->xpv_pv = (char*)PL_xpv_root;
1264 PL_xpv_root = p;
cbe51380 1265 UNLOCK_SV_MUTEX;
463ee0b2
LW
1266}
1267
645c22ef
DM
1268/* allocate another arena's worth of struct xpv */
1269
cbe51380 1270STATIC void
cea2e8a9 1271S_more_xpv(pTHX)
463ee0b2 1272{
463ee0b2
LW
1273 register XPV* xpv;
1274 register XPV* xpvend;
612f20c3
GS
1275 New(713, xpv, 1008/sizeof(XPV), XPV);
1276 xpv->xpv_pv = (char*)PL_xpv_arenaroot;
1277 PL_xpv_arenaroot = xpv;
1278
463ee0b2 1279 xpvend = &xpv[1008 / sizeof(XPV) - 1];
612f20c3 1280 PL_xpv_root = ++xpv;
463ee0b2
LW
1281 while (xpv < xpvend) {
1282 xpv->xpv_pv = (char*)(xpv + 1);
1283 xpv++;
1284 }
1285 xpv->xpv_pv = 0;
463ee0b2
LW
1286}
1287
645c22ef
DM
1288/* grab a new struct xpviv from the free list, allocating more if necessary */
1289
932e9ff9
VB
1290STATIC XPVIV*
1291S_new_xpviv(pTHX)
1292{
1293 XPVIV* xpviv;
1294 LOCK_SV_MUTEX;
1295 if (!PL_xpviv_root)
1296 more_xpviv();
1297 xpviv = PL_xpviv_root;
1298 PL_xpviv_root = (XPVIV*)xpviv->xpv_pv;
1299 UNLOCK_SV_MUTEX;
1300 return xpviv;
1301}
1302
645c22ef
DM
1303/* return a struct xpviv to the free list */
1304
932e9ff9
VB
1305STATIC void
1306S_del_xpviv(pTHX_ XPVIV *p)
1307{
1308 LOCK_SV_MUTEX;
1309 p->xpv_pv = (char*)PL_xpviv_root;
1310 PL_xpviv_root = p;
1311 UNLOCK_SV_MUTEX;
1312}
1313
645c22ef
DM
1314/* allocate another arena's worth of struct xpviv */
1315
932e9ff9
VB
1316STATIC void
1317S_more_xpviv(pTHX)
1318{
1319 register XPVIV* xpviv;
1320 register XPVIV* xpvivend;
612f20c3
GS
1321 New(714, xpviv, 1008/sizeof(XPVIV), XPVIV);
1322 xpviv->xpv_pv = (char*)PL_xpviv_arenaroot;
1323 PL_xpviv_arenaroot = xpviv;
1324
932e9ff9 1325 xpvivend = &xpviv[1008 / sizeof(XPVIV) - 1];
612f20c3 1326 PL_xpviv_root = ++xpviv;
932e9ff9
VB
1327 while (xpviv < xpvivend) {
1328 xpviv->xpv_pv = (char*)(xpviv + 1);
1329 xpviv++;
1330 }
1331 xpviv->xpv_pv = 0;
1332}
1333
645c22ef
DM
1334/* grab a new struct xpvnv from the free list, allocating more if necessary */
1335
932e9ff9
VB
1336STATIC XPVNV*
1337S_new_xpvnv(pTHX)
1338{
1339 XPVNV* xpvnv;
1340 LOCK_SV_MUTEX;
1341 if (!PL_xpvnv_root)
1342 more_xpvnv();
1343 xpvnv = PL_xpvnv_root;
1344 PL_xpvnv_root = (XPVNV*)xpvnv->xpv_pv;
1345 UNLOCK_SV_MUTEX;
1346 return xpvnv;
1347}
1348
645c22ef
DM
1349/* return a struct xpvnv to the free list */
1350
932e9ff9
VB
1351STATIC void
1352S_del_xpvnv(pTHX_ XPVNV *p)
1353{
1354 LOCK_SV_MUTEX;
1355 p->xpv_pv = (char*)PL_xpvnv_root;
1356 PL_xpvnv_root = p;
1357 UNLOCK_SV_MUTEX;
1358}
1359
645c22ef
DM
1360/* allocate another arena's worth of struct xpvnv */
1361
932e9ff9
VB
1362STATIC void
1363S_more_xpvnv(pTHX)
1364{
1365 register XPVNV* xpvnv;
1366 register XPVNV* xpvnvend;
612f20c3
GS
1367 New(715, xpvnv, 1008/sizeof(XPVNV), XPVNV);
1368 xpvnv->xpv_pv = (char*)PL_xpvnv_arenaroot;
1369 PL_xpvnv_arenaroot = xpvnv;
1370
932e9ff9 1371 xpvnvend = &xpvnv[1008 / sizeof(XPVNV) - 1];
612f20c3 1372 PL_xpvnv_root = ++xpvnv;
932e9ff9
VB
1373 while (xpvnv < xpvnvend) {
1374 xpvnv->xpv_pv = (char*)(xpvnv + 1);
1375 xpvnv++;
1376 }
1377 xpvnv->xpv_pv = 0;
1378}
1379
645c22ef
DM
1380/* grab a new struct xpvcv from the free list, allocating more if necessary */
1381
932e9ff9
VB
1382STATIC XPVCV*
1383S_new_xpvcv(pTHX)
1384{
1385 XPVCV* xpvcv;
1386 LOCK_SV_MUTEX;
1387 if (!PL_xpvcv_root)
1388 more_xpvcv();
1389 xpvcv = PL_xpvcv_root;
1390 PL_xpvcv_root = (XPVCV*)xpvcv->xpv_pv;
1391 UNLOCK_SV_MUTEX;
1392 return xpvcv;
1393}
1394
645c22ef
DM
1395/* return a struct xpvcv to the free list */
1396
932e9ff9
VB
1397STATIC void
1398S_del_xpvcv(pTHX_ XPVCV *p)
1399{
1400 LOCK_SV_MUTEX;
1401 p->xpv_pv = (char*)PL_xpvcv_root;
1402 PL_xpvcv_root = p;
1403 UNLOCK_SV_MUTEX;
1404}
1405
645c22ef
DM
1406/* allocate another arena's worth of struct xpvcv */
1407
932e9ff9
VB
1408STATIC void
1409S_more_xpvcv(pTHX)
1410{
1411 register XPVCV* xpvcv;
1412 register XPVCV* xpvcvend;
612f20c3
GS
1413 New(716, xpvcv, 1008/sizeof(XPVCV), XPVCV);
1414 xpvcv->xpv_pv = (char*)PL_xpvcv_arenaroot;
1415 PL_xpvcv_arenaroot = xpvcv;
1416
932e9ff9 1417 xpvcvend = &xpvcv[1008 / sizeof(XPVCV) - 1];
612f20c3 1418 PL_xpvcv_root = ++xpvcv;
932e9ff9
VB
1419 while (xpvcv < xpvcvend) {
1420 xpvcv->xpv_pv = (char*)(xpvcv + 1);
1421 xpvcv++;
1422 }
1423 xpvcv->xpv_pv = 0;
1424}
1425
645c22ef
DM
1426/* grab a new struct xpvav from the free list, allocating more if necessary */
1427
932e9ff9
VB
1428STATIC XPVAV*
1429S_new_xpvav(pTHX)
1430{
1431 XPVAV* xpvav;
1432 LOCK_SV_MUTEX;
1433 if (!PL_xpvav_root)
1434 more_xpvav();
1435 xpvav = PL_xpvav_root;
1436 PL_xpvav_root = (XPVAV*)xpvav->xav_array;
1437 UNLOCK_SV_MUTEX;
1438 return xpvav;
1439}
1440
645c22ef
DM
1441/* return a struct xpvav to the free list */
1442
932e9ff9
VB
1443STATIC void
1444S_del_xpvav(pTHX_ XPVAV *p)
1445{
1446 LOCK_SV_MUTEX;
1447 p->xav_array = (char*)PL_xpvav_root;
1448 PL_xpvav_root = p;
1449 UNLOCK_SV_MUTEX;
1450}
1451
645c22ef
DM
1452/* allocate another arena's worth of struct xpvav */
1453
932e9ff9
VB
1454STATIC void
1455S_more_xpvav(pTHX)
1456{
1457 register XPVAV* xpvav;
1458 register XPVAV* xpvavend;
612f20c3
GS
1459 New(717, xpvav, 1008/sizeof(XPVAV), XPVAV);
1460 xpvav->xav_array = (char*)PL_xpvav_arenaroot;
1461 PL_xpvav_arenaroot = xpvav;
1462
932e9ff9 1463 xpvavend = &xpvav[1008 / sizeof(XPVAV) - 1];
612f20c3 1464 PL_xpvav_root = ++xpvav;
932e9ff9
VB
1465 while (xpvav < xpvavend) {
1466 xpvav->xav_array = (char*)(xpvav + 1);
1467 xpvav++;
1468 }
1469 xpvav->xav_array = 0;
1470}
1471
645c22ef
DM
1472/* grab a new struct xpvhv from the free list, allocating more if necessary */
1473
932e9ff9
VB
1474STATIC XPVHV*
1475S_new_xpvhv(pTHX)
1476{
1477 XPVHV* xpvhv;
1478 LOCK_SV_MUTEX;
1479 if (!PL_xpvhv_root)
1480 more_xpvhv();
1481 xpvhv = PL_xpvhv_root;
1482 PL_xpvhv_root = (XPVHV*)xpvhv->xhv_array;
1483 UNLOCK_SV_MUTEX;
1484 return xpvhv;
1485}
1486
645c22ef
DM
1487/* return a struct xpvhv to the free list */
1488
932e9ff9
VB
1489STATIC void
1490S_del_xpvhv(pTHX_ XPVHV *p)
1491{
1492 LOCK_SV_MUTEX;
1493 p->xhv_array = (char*)PL_xpvhv_root;
1494 PL_xpvhv_root = p;
1495 UNLOCK_SV_MUTEX;
1496}
1497
645c22ef
DM
1498/* allocate another arena's worth of struct xpvhv */
1499
932e9ff9
VB
1500STATIC void
1501S_more_xpvhv(pTHX)
1502{
1503 register XPVHV* xpvhv;
1504 register XPVHV* xpvhvend;
612f20c3
GS
1505 New(718, xpvhv, 1008/sizeof(XPVHV), XPVHV);
1506 xpvhv->xhv_array = (char*)PL_xpvhv_arenaroot;
1507 PL_xpvhv_arenaroot = xpvhv;
1508
932e9ff9 1509 xpvhvend = &xpvhv[1008 / sizeof(XPVHV) - 1];
612f20c3 1510 PL_xpvhv_root = ++xpvhv;
932e9ff9
VB
1511 while (xpvhv < xpvhvend) {
1512 xpvhv->xhv_array = (char*)(xpvhv + 1);
1513 xpvhv++;
1514 }
1515 xpvhv->xhv_array = 0;
1516}
1517
645c22ef
DM
1518/* grab a new struct xpvmg from the free list, allocating more if necessary */
1519
932e9ff9
VB
1520STATIC XPVMG*
1521S_new_xpvmg(pTHX)
1522{
1523 XPVMG* xpvmg;
1524 LOCK_SV_MUTEX;
1525 if (!PL_xpvmg_root)
1526 more_xpvmg();
1527 xpvmg = PL_xpvmg_root;
1528 PL_xpvmg_root = (XPVMG*)xpvmg->xpv_pv;
1529 UNLOCK_SV_MUTEX;
1530 return xpvmg;
1531}
1532
645c22ef
DM
1533/* return a struct xpvmg to the free list */
1534
932e9ff9
VB
1535STATIC void
1536S_del_xpvmg(pTHX_ XPVMG *p)
1537{
1538 LOCK_SV_MUTEX;
1539 p->xpv_pv = (char*)PL_xpvmg_root;
1540 PL_xpvmg_root = p;
1541 UNLOCK_SV_MUTEX;
1542}
1543
645c22ef
DM
1544/* allocate another arena's worth of struct xpvmg */
1545
932e9ff9
VB
1546STATIC void
1547S_more_xpvmg(pTHX)
1548{
1549 register XPVMG* xpvmg;
1550 register XPVMG* xpvmgend;
612f20c3
GS
1551 New(719, xpvmg, 1008/sizeof(XPVMG), XPVMG);
1552 xpvmg->xpv_pv = (char*)PL_xpvmg_arenaroot;
1553 PL_xpvmg_arenaroot = xpvmg;
1554
932e9ff9 1555 xpvmgend = &xpvmg[1008 / sizeof(XPVMG) - 1];
612f20c3 1556 PL_xpvmg_root = ++xpvmg;
932e9ff9
VB
1557 while (xpvmg < xpvmgend) {
1558 xpvmg->xpv_pv = (char*)(xpvmg + 1);
1559 xpvmg++;
1560 }
1561 xpvmg->xpv_pv = 0;
1562}
1563
645c22ef
DM
1564/* grab a new struct xpvlv from the free list, allocating more if necessary */
1565
932e9ff9
VB
1566STATIC XPVLV*
1567S_new_xpvlv(pTHX)
1568{
1569 XPVLV* xpvlv;
1570 LOCK_SV_MUTEX;
1571 if (!PL_xpvlv_root)
1572 more_xpvlv();
1573 xpvlv = PL_xpvlv_root;
1574 PL_xpvlv_root = (XPVLV*)xpvlv->xpv_pv;
1575 UNLOCK_SV_MUTEX;
1576 return xpvlv;
1577}
1578
645c22ef
DM
1579/* return a struct xpvlv to the free list */
1580
932e9ff9
VB
1581STATIC void
1582S_del_xpvlv(pTHX_ XPVLV *p)
1583{
1584 LOCK_SV_MUTEX;
1585 p->xpv_pv = (char*)PL_xpvlv_root;
1586 PL_xpvlv_root = p;
1587 UNLOCK_SV_MUTEX;
1588}
1589
645c22ef
DM
1590/* allocate another arena's worth of struct xpvlv */
1591
932e9ff9
VB
1592STATIC void
1593S_more_xpvlv(pTHX)
1594{
1595 register XPVLV* xpvlv;
1596 register XPVLV* xpvlvend;
612f20c3
GS
1597 New(720, xpvlv, 1008/sizeof(XPVLV), XPVLV);
1598 xpvlv->xpv_pv = (char*)PL_xpvlv_arenaroot;
1599 PL_xpvlv_arenaroot = xpvlv;
1600
932e9ff9 1601 xpvlvend = &xpvlv[1008 / sizeof(XPVLV) - 1];
612f20c3 1602 PL_xpvlv_root = ++xpvlv;
932e9ff9
VB
1603 while (xpvlv < xpvlvend) {
1604 xpvlv->xpv_pv = (char*)(xpvlv + 1);
1605 xpvlv++;
1606 }
1607 xpvlv->xpv_pv = 0;
1608}
1609
645c22ef
DM
1610/* grab a new struct xpvbm from the free list, allocating more if necessary */
1611
932e9ff9
VB
1612STATIC XPVBM*
1613S_new_xpvbm(pTHX)
1614{
1615 XPVBM* xpvbm;
1616 LOCK_SV_MUTEX;
1617 if (!PL_xpvbm_root)
1618 more_xpvbm();
1619 xpvbm = PL_xpvbm_root;
1620 PL_xpvbm_root = (XPVBM*)xpvbm->xpv_pv;
1621 UNLOCK_SV_MUTEX;
1622 return xpvbm;
1623}
1624
645c22ef
DM
1625/* return a struct xpvbm to the free list */
1626
932e9ff9
VB
1627STATIC void
1628S_del_xpvbm(pTHX_ XPVBM *p)
1629{
1630 LOCK_SV_MUTEX;
1631 p->xpv_pv = (char*)PL_xpvbm_root;
1632 PL_xpvbm_root = p;
1633 UNLOCK_SV_MUTEX;
1634}
1635
645c22ef
DM
1636/* allocate another arena's worth of struct xpvbm */
1637
932e9ff9
VB
1638STATIC void
1639S_more_xpvbm(pTHX)
1640{
1641 register XPVBM* xpvbm;
1642 register XPVBM* xpvbmend;
612f20c3
GS
1643 New(721, xpvbm, 1008/sizeof(XPVBM), XPVBM);
1644 xpvbm->xpv_pv = (char*)PL_xpvbm_arenaroot;
1645 PL_xpvbm_arenaroot = xpvbm;
1646
932e9ff9 1647 xpvbmend = &xpvbm[1008 / sizeof(XPVBM) - 1];
612f20c3 1648 PL_xpvbm_root = ++xpvbm;
932e9ff9
VB
1649 while (xpvbm < xpvbmend) {
1650 xpvbm->xpv_pv = (char*)(xpvbm + 1);
1651 xpvbm++;
1652 }
1653 xpvbm->xpv_pv = 0;
1654}
1655
7bab3ede
MB
1656#define my_safemalloc(s) (void*)safemalloc(s)
1657#define my_safefree(p) safefree((char*)p)
463ee0b2 1658
d33b2eba 1659#ifdef PURIFY
463ee0b2 1660
d33b2eba
GS
1661#define new_XIV() my_safemalloc(sizeof(XPVIV))
1662#define del_XIV(p) my_safefree(p)
ed6116ce 1663
d33b2eba
GS
1664#define new_XNV() my_safemalloc(sizeof(XPVNV))
1665#define del_XNV(p) my_safefree(p)
463ee0b2 1666
d33b2eba
GS
1667#define new_XRV() my_safemalloc(sizeof(XRV))
1668#define del_XRV(p) my_safefree(p)
8c52afec 1669
d33b2eba
GS
1670#define new_XPV() my_safemalloc(sizeof(XPV))
1671#define del_XPV(p) my_safefree(p)
9b94d1dd 1672
d33b2eba
GS
1673#define new_XPVIV() my_safemalloc(sizeof(XPVIV))
1674#define del_XPVIV(p) my_safefree(p)
932e9ff9 1675
d33b2eba
GS
1676#define new_XPVNV() my_safemalloc(sizeof(XPVNV))
1677#define del_XPVNV(p) my_safefree(p)
932e9ff9 1678
d33b2eba
GS
1679#define new_XPVCV() my_safemalloc(sizeof(XPVCV))
1680#define del_XPVCV(p) my_safefree(p)
932e9ff9 1681
d33b2eba
GS
1682#define new_XPVAV() my_safemalloc(sizeof(XPVAV))
1683#define del_XPVAV(p) my_safefree(p)
1684
1685#define new_XPVHV() my_safemalloc(sizeof(XPVHV))
1686#define del_XPVHV(p) my_safefree(p)
1c846c1f 1687
d33b2eba
GS
1688#define new_XPVMG() my_safemalloc(sizeof(XPVMG))
1689#define del_XPVMG(p) my_safefree(p)
1690
1691#define new_XPVLV() my_safemalloc(sizeof(XPVLV))
1692#define del_XPVLV(p) my_safefree(p)
1693
1694#define new_XPVBM() my_safemalloc(sizeof(XPVBM))
1695#define del_XPVBM(p) my_safefree(p)
1696
1697#else /* !PURIFY */
1698
1699#define new_XIV() (void*)new_xiv()
1700#define del_XIV(p) del_xiv((XPVIV*) p)
1701
1702#define new_XNV() (void*)new_xnv()
1703#define del_XNV(p) del_xnv((XPVNV*) p)
9b94d1dd 1704
d33b2eba
GS
1705#define new_XRV() (void*)new_xrv()
1706#define del_XRV(p) del_xrv((XRV*) p)
9b94d1dd 1707
d33b2eba
GS
1708#define new_XPV() (void*)new_xpv()
1709#define del_XPV(p) del_xpv((XPV *)p)
1710
1711#define new_XPVIV() (void*)new_xpviv()
1712#define del_XPVIV(p) del_xpviv((XPVIV *)p)
1713
1714#define new_XPVNV() (void*)new_xpvnv()
1715#define del_XPVNV(p) del_xpvnv((XPVNV *)p)
1716
1717#define new_XPVCV() (void*)new_xpvcv()
1718#define del_XPVCV(p) del_xpvcv((XPVCV *)p)
1719
1720#define new_XPVAV() (void*)new_xpvav()
1721#define del_XPVAV(p) del_xpvav((XPVAV *)p)
1722
1723#define new_XPVHV() (void*)new_xpvhv()
1724#define del_XPVHV(p) del_xpvhv((XPVHV *)p)
1c846c1f 1725
d33b2eba
GS
1726#define new_XPVMG() (void*)new_xpvmg()
1727#define del_XPVMG(p) del_xpvmg((XPVMG *)p)
1728
1729#define new_XPVLV() (void*)new_xpvlv()
1730#define del_XPVLV(p) del_xpvlv((XPVLV *)p)
1731
1732#define new_XPVBM() (void*)new_xpvbm()
1733#define del_XPVBM(p) del_xpvbm((XPVBM *)p)
1734
1735#endif /* PURIFY */
9b94d1dd 1736
d33b2eba
GS
1737#define new_XPVGV() my_safemalloc(sizeof(XPVGV))
1738#define del_XPVGV(p) my_safefree(p)
1c846c1f 1739
d33b2eba
GS
1740#define new_XPVFM() my_safemalloc(sizeof(XPVFM))
1741#define del_XPVFM(p) my_safefree(p)
1c846c1f 1742
d33b2eba
GS
1743#define new_XPVIO() my_safemalloc(sizeof(XPVIO))
1744#define del_XPVIO(p) my_safefree(p)
8990e307 1745
954c1994
GS
1746/*
1747=for apidoc sv_upgrade
1748
ff276b08 1749Upgrade an SV to a more complex form. Generally adds a new body type to the
645c22ef 1750SV, then copies across as much information as possible from the old body.
ff276b08 1751You generally want to use the C<SvUPGRADE> macro wrapper. See also C<svtype>.
954c1994
GS
1752
1753=cut
1754*/
1755
79072805 1756bool
864dbfa3 1757Perl_sv_upgrade(pTHX_ register SV *sv, U32 mt)
79072805 1758{
e763e3dc 1759
c04a4dfe
JH
1760 char* pv = NULL;
1761 U32 cur = 0;
1762 U32 len = 0;
1763 IV iv = 0;
1764 NV nv = 0.0;
1765 MAGIC* magic = NULL;
1766 HV* stash = Nullhv;
79072805 1767
765f542d
NC
1768 if (mt != SVt_PV && SvIsCOW(sv)) {
1769 sv_force_normal_flags(sv, 0);
f130fd45
NIS
1770 }
1771
79072805
LW
1772 if (SvTYPE(sv) == mt)
1773 return TRUE;
1774
a5f75d66
AD
1775 if (mt < SVt_PVIV)
1776 (void)SvOOK_off(sv);
1777
79072805
LW
1778 switch (SvTYPE(sv)) {
1779 case SVt_NULL:
1780 pv = 0;
1781 cur = 0;
1782 len = 0;
1783 iv = 0;
1784 nv = 0.0;
1785 magic = 0;
1786 stash = 0;
1787 break;
79072805
LW
1788 case SVt_IV:
1789 pv = 0;
1790 cur = 0;
1791 len = 0;
463ee0b2 1792 iv = SvIVX(sv);
65202027 1793 nv = (NV)SvIVX(sv);
79072805
LW
1794 del_XIV(SvANY(sv));
1795 magic = 0;
1796 stash = 0;
ed6116ce 1797 if (mt == SVt_NV)
463ee0b2 1798 mt = SVt_PVNV;
ed6116ce
LW
1799 else if (mt < SVt_PVIV)
1800 mt = SVt_PVIV;
79072805
LW
1801 break;
1802 case SVt_NV:
1803 pv = 0;
1804 cur = 0;
1805 len = 0;
463ee0b2 1806 nv = SvNVX(sv);
1bd302c3 1807 iv = I_V(nv);
79072805
LW
1808 magic = 0;
1809 stash = 0;
1810 del_XNV(SvANY(sv));
1811 SvANY(sv) = 0;
ed6116ce 1812 if (mt < SVt_PVNV)
79072805
LW
1813 mt = SVt_PVNV;
1814 break;
ed6116ce
LW
1815 case SVt_RV:
1816 pv = (char*)SvRV(sv);
1817 cur = 0;
1818 len = 0;
56431972
RB
1819 iv = PTR2IV(pv);
1820 nv = PTR2NV(pv);
ed6116ce
LW
1821 del_XRV(SvANY(sv));
1822 magic = 0;
1823 stash = 0;
1824 break;
79072805 1825 case SVt_PV:
463ee0b2 1826 pv = SvPVX(sv);
79072805
LW
1827 cur = SvCUR(sv);
1828 len = SvLEN(sv);
1829 iv = 0;
1830 nv = 0.0;
1831 magic = 0;
1832 stash = 0;
1833 del_XPV(SvANY(sv));
748a9306
LW
1834 if (mt <= SVt_IV)
1835 mt = SVt_PVIV;
1836 else if (mt == SVt_NV)
1837 mt = SVt_PVNV;
79072805
LW
1838 break;
1839 case SVt_PVIV:
463ee0b2 1840 pv = SvPVX(sv);
79072805
LW
1841 cur = SvCUR(sv);
1842 len = SvLEN(sv);
463ee0b2 1843 iv = SvIVX(sv);
79072805
LW
1844 nv = 0.0;
1845 magic = 0;
1846 stash = 0;
1847 del_XPVIV(SvANY(sv));
1848 break;
1849 case SVt_PVNV:
463ee0b2 1850 pv = SvPVX(sv);
79072805
LW
1851 cur = SvCUR(sv);
1852 len = SvLEN(sv);
463ee0b2
LW
1853 iv = SvIVX(sv);
1854 nv = SvNVX(sv);
79072805
LW
1855 magic = 0;
1856 stash = 0;
1857 del_XPVNV(SvANY(sv));
1858 break;
1859 case SVt_PVMG:
463ee0b2 1860 pv = SvPVX(sv);
79072805
LW
1861 cur = SvCUR(sv);
1862 len = SvLEN(sv);
463ee0b2
LW
1863 iv = SvIVX(sv);
1864 nv = SvNVX(sv);
79072805
LW
1865 magic = SvMAGIC(sv);
1866 stash = SvSTASH(sv);
1867 del_XPVMG(SvANY(sv));
1868 break;
1869 default:
cea2e8a9 1870 Perl_croak(aTHX_ "Can't upgrade that kind of scalar");
79072805
LW
1871 }
1872
ffb05e06
NC
1873 SvFLAGS(sv) &= ~SVTYPEMASK;
1874 SvFLAGS(sv) |= mt;
1875
79072805
LW
1876 switch (mt) {
1877 case SVt_NULL:
cea2e8a9 1878 Perl_croak(aTHX_ "Can't upgrade to undef");
79072805
LW
1879 case SVt_IV:
1880 SvANY(sv) = new_XIV();
463ee0b2 1881 SvIVX(sv) = iv;
79072805
LW
1882 break;
1883 case SVt_NV:
1884 SvANY(sv) = new_XNV();
463ee0b2 1885 SvNVX(sv) = nv;
79072805 1886 break;
ed6116ce
LW
1887 case SVt_RV:
1888 SvANY(sv) = new_XRV();
1889 SvRV(sv) = (SV*)pv;
ed6116ce 1890 break;
79072805
LW
1891 case SVt_PV:
1892 SvANY(sv) = new_XPV();
463ee0b2 1893 SvPVX(sv) = pv;
79072805
LW
1894 SvCUR(sv) = cur;
1895 SvLEN(sv) = len;
1896 break;
1897 case SVt_PVIV:
1898 SvANY(sv) = new_XPVIV();
463ee0b2 1899 SvPVX(sv) = pv;
79072805
LW
1900 SvCUR(sv) = cur;
1901 SvLEN(sv) = len;
463ee0b2 1902 SvIVX(sv) = iv;
79072805 1903 if (SvNIOK(sv))
a0d0e21e 1904 (void)SvIOK_on(sv);
79072805
LW
1905 SvNOK_off(sv);
1906 break;
1907 case SVt_PVNV:
1908 SvANY(sv) = new_XPVNV();
463ee0b2 1909 SvPVX(sv) = pv;
79072805
LW
1910 SvCUR(sv) = cur;
1911 SvLEN(sv) = len;
463ee0b2
LW
1912 SvIVX(sv) = iv;
1913 SvNVX(sv) = nv;
79072805
LW
1914 break;
1915 case SVt_PVMG:
1916 SvANY(sv) = new_XPVMG();
463ee0b2 1917 SvPVX(sv) = pv;
79072805
LW
1918 SvCUR(sv) = cur;
1919 SvLEN(sv) = len;
463ee0b2
LW
1920 SvIVX(sv) = iv;
1921 SvNVX(sv) = nv;
79072805
LW
1922 SvMAGIC(sv) = magic;
1923 SvSTASH(sv) = stash;
1924 break;
1925 case SVt_PVLV:
1926 SvANY(sv) = new_XPVLV();
463ee0b2 1927 SvPVX(sv) = pv;
79072805
LW
1928 SvCUR(sv) = cur;
1929 SvLEN(sv) = len;
463ee0b2
LW
1930 SvIVX(sv) = iv;
1931 SvNVX(sv) = nv;
79072805
LW
1932 SvMAGIC(sv) = magic;
1933 SvSTASH(sv) = stash;
1934 LvTARGOFF(sv) = 0;
1935 LvTARGLEN(sv) = 0;
1936 LvTARG(sv) = 0;
1937 LvTYPE(sv) = 0;
b76195c2
DM
1938 GvGP(sv) = 0;
1939 GvNAME(sv) = 0;
1940 GvNAMELEN(sv) = 0;
1941 GvSTASH(sv) = 0;
1942 GvFLAGS(sv) = 0;
79072805
LW
1943 break;
1944 case SVt_PVAV:
1945 SvANY(sv) = new_XPVAV();
463ee0b2
LW
1946 if (pv)
1947 Safefree(pv);
2304df62 1948 SvPVX(sv) = 0;
d1bf51dd 1949 AvMAX(sv) = -1;
93965878 1950 AvFILLp(sv) = -1;
463ee0b2
LW
1951 SvIVX(sv) = 0;
1952 SvNVX(sv) = 0.0;
1953 SvMAGIC(sv) = magic;
1954 SvSTASH(sv) = stash;
1955 AvALLOC(sv) = 0;
79072805 1956 AvARYLEN(sv) = 0;
e763e3dc 1957 AvFLAGS(sv) = AVf_REAL;
79072805
LW
1958 break;
1959 case SVt_PVHV:
1960 SvANY(sv) = new_XPVHV();
463ee0b2
LW
1961 if (pv)
1962 Safefree(pv);
1963 SvPVX(sv) = 0;
1964 HvFILL(sv) = 0;
1965 HvMAX(sv) = 0;
8aacddc1
NIS
1966 HvTOTALKEYS(sv) = 0;
1967 HvPLACEHOLDERS(sv) = 0;
79072805
LW
1968 SvMAGIC(sv) = magic;
1969 SvSTASH(sv) = stash;
79072805
LW
1970 HvRITER(sv) = 0;
1971 HvEITER(sv) = 0;
1972 HvPMROOT(sv) = 0;
1973 HvNAME(sv) = 0;
79072805
LW
1974 break;
1975 case SVt_PVCV:
1976 SvANY(sv) = new_XPVCV();
748a9306 1977 Zero(SvANY(sv), 1, XPVCV);
463ee0b2 1978 SvPVX(sv) = pv;
79072805
LW
1979 SvCUR(sv) = cur;
1980 SvLEN(sv) = len;
463ee0b2
LW
1981 SvIVX(sv) = iv;
1982 SvNVX(sv) = nv;
79072805
LW
1983 SvMAGIC(sv) = magic;
1984 SvSTASH(sv) = stash;
79072805
LW
1985 break;
1986 case SVt_PVGV:
1987 SvANY(sv) = new_XPVGV();
463ee0b2 1988 SvPVX(sv) = pv;
79072805
LW
1989 SvCUR(sv) = cur;
1990 SvLEN(sv) = len;
463ee0b2
LW
1991 SvIVX(sv) = iv;
1992 SvNVX(sv) = nv;
79072805
LW
1993 SvMAGIC(sv) = magic;
1994 SvSTASH(sv) = stash;
93a17b20 1995 GvGP(sv) = 0;
79072805
LW
1996 GvNAME(sv) = 0;
1997 GvNAMELEN(sv) = 0;
1998 GvSTASH(sv) = 0;
a5f75d66 1999 GvFLAGS(sv) = 0;
79072805
LW
2000 break;
2001 case SVt_PVBM:
2002 SvANY(sv) = new_XPVBM();
463ee0b2 2003 SvPVX(sv) = pv;
79072805
LW
2004 SvCUR(sv) = cur;
2005 SvLEN(sv) = len;
463ee0b2
LW
2006 SvIVX(sv) = iv;
2007 SvNVX(sv) = nv;
79072805
LW
2008 SvMAGIC(sv) = magic;
2009 SvSTASH(sv) = stash;
2010 BmRARE(sv) = 0;
2011 BmUSEFUL(sv) = 0;
2012 BmPREVIOUS(sv) = 0;
2013 break;
2014 case SVt_PVFM:
2015 SvANY(sv) = new_XPVFM();
748a9306 2016 Zero(SvANY(sv), 1, XPVFM);
463ee0b2 2017 SvPVX(sv) = pv;
79072805
LW
2018 SvCUR(sv) = cur;
2019 SvLEN(sv) = len;
463ee0b2
LW
2020 SvIVX(sv) = iv;
2021 SvNVX(sv) = nv;
79072805
LW
2022 SvMAGIC(sv) = magic;
2023 SvSTASH(sv) = stash;
79072805 2024 break;
8990e307
LW
2025 case SVt_PVIO:
2026 SvANY(sv) = new_XPVIO();
748a9306 2027 Zero(SvANY(sv), 1, XPVIO);
8990e307
LW
2028 SvPVX(sv) = pv;
2029 SvCUR(sv) = cur;
2030 SvLEN(sv) = len;
2031 SvIVX(sv) = iv;
2032 SvNVX(sv) = nv;
2033 SvMAGIC(sv) = magic;
2034 SvSTASH(sv) = stash;
85e6fe83 2035 IoPAGE_LEN(sv) = 60;
8990e307
LW
2036 break;
2037 }
79072805
LW
2038 return TRUE;
2039}
2040
645c22ef
DM
2041/*
2042=for apidoc sv_backoff
2043
2044Remove any string offset. You should normally use the C<SvOOK_off> macro
2045wrapper instead.
2046
2047=cut
2048*/
2049
79072805 2050int
864dbfa3 2051Perl_sv_backoff(pTHX_ register SV *sv)
79072805
LW
2052{
2053 assert(SvOOK(sv));
463ee0b2
LW
2054 if (SvIVX(sv)) {
2055 char *s = SvPVX(sv);
2056 SvLEN(sv) += SvIVX(sv);
2057 SvPVX(sv) -= SvIVX(sv);
79072805 2058 SvIV_set(sv, 0);
463ee0b2 2059 Move(s, SvPVX(sv), SvCUR(sv)+1, char);
79072805
LW
2060 }
2061 SvFLAGS(sv) &= ~SVf_OOK;
a0d0e21e 2062 return 0;
79072805
LW
2063}
2064
954c1994
GS
2065/*
2066=for apidoc sv_grow
2067
645c22ef
DM
2068Expands the character buffer in the SV. If necessary, uses C<sv_unref> and
2069upgrades the SV to C<SVt_PV>. Returns a pointer to the character buffer.
2070Use the C<SvGROW> wrapper instead.
954c1994
GS
2071
2072=cut
2073*/
2074
79072805 2075char *
864dbfa3 2076Perl_sv_grow(pTHX_ register SV *sv, register STRLEN newlen)
79072805
LW
2077{
2078 register char *s;
2079
55497cff 2080#ifdef HAS_64K_LIMIT
79072805 2081 if (newlen >= 0x10000) {
1d7c1841
GS
2082 PerlIO_printf(Perl_debug_log,
2083 "Allocation too large: %"UVxf"\n", (UV)newlen);
79072805
LW
2084 my_exit(1);
2085 }
55497cff 2086#endif /* HAS_64K_LIMIT */
a0d0e21e
LW
2087 if (SvROK(sv))
2088 sv_unref(sv);
79072805
LW
2089 if (SvTYPE(sv) < SVt_PV) {
2090 sv_upgrade(sv, SVt_PV);
463ee0b2 2091 s = SvPVX(sv);
79072805
LW
2092 }
2093 else if (SvOOK(sv)) { /* pv is offset? */
2094 sv_backoff(sv);
463ee0b2 2095 s = SvPVX(sv);
79072805
LW
2096 if (newlen > SvLEN(sv))
2097 newlen += 10 * (newlen - SvCUR(sv)); /* avoid copy each time */
c6f8c383
GA
2098#ifdef HAS_64K_LIMIT
2099 if (newlen >= 0x10000)
2100 newlen = 0xFFFF;
2101#endif
79072805 2102 }
bc44a8a2 2103 else
463ee0b2 2104 s = SvPVX(sv);
54f0641b 2105
79072805 2106 if (newlen > SvLEN(sv)) { /* need more room? */
8d6dde3e 2107 if (SvLEN(sv) && s) {
7bab3ede 2108#ifdef MYMALLOC
8d6dde3e
IZ
2109 STRLEN l = malloced_size((void*)SvPVX(sv));
2110 if (newlen <= l) {
2111 SvLEN_set(sv, l);
2112 return s;
2113 } else
c70c8a0a 2114#endif
79072805 2115 Renew(s,newlen,char);
8d6dde3e 2116 }
4e83176d 2117 else {
4e83176d 2118 New(703, s, newlen, char);
40565179 2119 if (SvPVX(sv) && SvCUR(sv)) {
54f0641b 2120 Move(SvPVX(sv), s, (newlen < SvCUR(sv)) ? newlen : SvCUR(sv), char);
40565179 2121 }
4e83176d 2122 }
79072805
LW
2123 SvPV_set(sv, s);
2124 SvLEN_set(sv, newlen);
2125 }
2126 return s;
2127}
2128
954c1994
GS
2129/*
2130=for apidoc sv_setiv
2131
645c22ef
DM
2132Copies an integer into the given SV, upgrading first if necessary.
2133Does not handle 'set' magic. See also C<sv_setiv_mg>.
954c1994
GS
2134
2135=cut
2136*/
2137
79072805 2138void
864dbfa3 2139Perl_sv_setiv(pTHX_ register SV *sv, IV i)
79072805 2140{
765f542d 2141 SV_CHECK_THINKFIRST_COW_DROP(sv);
463ee0b2
LW
2142 switch (SvTYPE(sv)) {
2143 case SVt_NULL:
79072805 2144 sv_upgrade(sv, SVt_IV);
463ee0b2
LW
2145 break;
2146 case SVt_NV:
2147 sv_upgrade(sv, SVt_PVNV);
2148 break;
ed6116ce 2149 case SVt_RV:
463ee0b2 2150 case SVt_PV:
79072805 2151 sv_upgrade(sv, SVt_PVIV);
463ee0b2 2152 break;
a0d0e21e
LW
2153
2154 case SVt_PVGV:
a0d0e21e
LW
2155 case SVt_PVAV:
2156 case SVt_PVHV:
2157 case SVt_PVCV:
2158 case SVt_PVFM:
2159 case SVt_PVIO:
411caa50 2160 Perl_croak(aTHX_ "Can't coerce %s to integer in %s", sv_reftype(sv,0),
53e06cf0 2161 OP_DESC(PL_op));
463ee0b2 2162 }
a0d0e21e 2163 (void)SvIOK_only(sv); /* validate number */
a5f75d66 2164 SvIVX(sv) = i;
463ee0b2 2165 SvTAINT(sv);
79072805
LW
2166}
2167
954c1994
GS
2168/*
2169=for apidoc sv_setiv_mg
2170
2171Like C<sv_setiv>, but also handles 'set' magic.
2172
2173=cut
2174*/
2175
79072805 2176void
864dbfa3 2177Perl_sv_setiv_mg(pTHX_ register SV *sv, IV i)
ef50df4b
GS
2178{
2179 sv_setiv(sv,i);
2180 SvSETMAGIC(sv);
2181}
2182
954c1994
GS
2183/*
2184=for apidoc sv_setuv
2185
645c22ef
DM
2186Copies an unsigned integer into the given SV, upgrading first if necessary.
2187Does not handle 'set' magic. See also C<sv_setuv_mg>.
954c1994
GS
2188
2189=cut
2190*/
2191
ef50df4b 2192void
864dbfa3 2193Perl_sv_setuv(pTHX_ register SV *sv, UV u)
55497cff 2194{
55ada374
NC
2195 /* With these two if statements:
2196 u=1.49 s=0.52 cu=72.49 cs=10.64 scripts=270 tests=20865
d460ef45 2197
55ada374
NC
2198 without
2199 u=1.35 s=0.47 cu=73.45 cs=11.43 scripts=270 tests=20865
d460ef45 2200
55ada374
NC
2201 If you wish to remove them, please benchmark to see what the effect is
2202 */
28e5dec8
JH
2203 if (u <= (UV)IV_MAX) {
2204 sv_setiv(sv, (IV)u);
2205 return;
2206 }
25da4f38
IZ
2207 sv_setiv(sv, 0);
2208 SvIsUV_on(sv);
2209 SvUVX(sv) = u;
55497cff 2210}
2211
954c1994
GS
2212/*
2213=for apidoc sv_setuv_mg
2214
2215Like C<sv_setuv>, but also handles 'set' magic.
2216
2217=cut
2218*/
2219
55497cff 2220void
864dbfa3 2221Perl_sv_setuv_mg(pTHX_ register SV *sv, UV u)
ef50df4b 2222{
55ada374
NC
2223 /* With these two if statements:
2224 u=1.49 s=0.52 cu=72.49 cs=10.64 scripts=270 tests=20865
d460ef45 2225
55ada374
NC
2226 without
2227 u=1.35 s=0.47 cu=73.45 cs=11.43 scripts=270 tests=20865
d460ef45 2228
55ada374
NC
2229 If you wish to remove them, please benchmark to see what the effect is
2230 */
28e5dec8
JH
2231 if (u <= (UV)IV_MAX) {
2232 sv_setiv(sv, (IV)u);
2233 } else {
2234 sv_setiv(sv, 0);
2235 SvIsUV_on(sv);
2236 sv_setuv(sv,u);
2237 }
ef50df4b
GS
2238 SvSETMAGIC(sv);
2239}
2240
954c1994
GS
2241/*
2242=for apidoc sv_setnv
2243
645c22ef
DM
2244Copies a double into the given SV, upgrading first if necessary.
2245Does not handle 'set' magic. See also C<sv_setnv_mg>.
954c1994
GS
2246
2247=cut
2248*/
2249
ef50df4b 2250void
65202027 2251Perl_sv_setnv(pTHX_ register SV *sv, NV num)
79072805 2252{
765f542d 2253 SV_CHECK_THINKFIRST_COW_DROP(sv);
a0d0e21e
LW
2254 switch (SvTYPE(sv)) {
2255 case SVt_NULL:
2256 case SVt_IV:
79072805 2257 sv_upgrade(sv, SVt_NV);
a0d0e21e 2258 break;
a0d0e21e
LW
2259 case SVt_RV:
2260 case SVt_PV:
2261 case SVt_PVIV:
79072805 2262 sv_upgrade(sv, SVt_PVNV);
a0d0e21e 2263 break;
827b7e14 2264
a0d0e21e 2265 case SVt_PVGV:
a0d0e21e
LW
2266 case SVt_PVAV:
2267 case SVt_PVHV:
2268 case SVt_PVCV:
2269 case SVt_PVFM:
2270 case SVt_PVIO:
411caa50 2271 Perl_croak(aTHX_ "Can't coerce %s to number in %s", sv_reftype(sv,0),
53e06cf0 2272 OP_NAME(PL_op));
79072805 2273 }
463ee0b2 2274 SvNVX(sv) = num;
a0d0e21e 2275 (void)SvNOK_only(sv); /* validate number */
463ee0b2 2276 SvTAINT(sv);
79072805
LW
2277}
2278
954c1994
GS
2279/*
2280=for apidoc sv_setnv_mg
2281
2282Like C<sv_setnv>, but also handles 'set' magic.
2283
2284=cut
2285*/
2286
ef50df4b 2287void
65202027 2288Perl_sv_setnv_mg(pTHX_ register SV *sv, NV num)
ef50df4b
GS
2289{
2290 sv_setnv(sv,num);
2291 SvSETMAGIC(sv);
2292}
2293
645c22ef
DM
2294/* Print an "isn't numeric" warning, using a cleaned-up,
2295 * printable version of the offending string
2296 */
2297
76e3520e 2298STATIC void
cea2e8a9 2299S_not_a_number(pTHX_ SV *sv)
a0d0e21e 2300{
94463019
JH
2301 SV *dsv;
2302 char tmpbuf[64];
2303 char *pv;
2304
2305 if (DO_UTF8(sv)) {
2306 dsv = sv_2mortal(newSVpv("", 0));
2307 pv = sv_uni_display(dsv, sv, 10, 0);
2308 } else {
2309 char *d = tmpbuf;
2310 char *limit = tmpbuf + sizeof(tmpbuf) - 8;
2311 /* each *s can expand to 4 chars + "...\0",
2312 i.e. need room for 8 chars */
ecdeb87c 2313
94463019
JH
2314 char *s, *end;
2315 for (s = SvPVX(sv), end = s + SvCUR(sv); s < end && d < limit; s++) {
2316 int ch = *s & 0xFF;
2317 if (ch & 128 && !isPRINT_LC(ch)) {
2318 *d++ = 'M';
2319 *d++ = '-';
2320 ch &= 127;
2321 }
2322 if (ch == '\n') {
2323 *d++ = '\\';
2324 *d++ = 'n';
2325 }
2326 else if (ch == '\r') {
2327 *d++ = '\\';
2328 *d++ = 'r';
2329 }
2330 else if (ch == '\f') {
2331 *d++ = '\\';
2332 *d++ = 'f';
2333 }
2334 else if (ch == '\\') {
2335 *d++ = '\\';
2336 *d++ = '\\';
2337 }
2338 else if (ch == '\0') {
2339 *d++ = '\\';
2340 *d++ = '0';
2341 }
2342 else if (isPRINT_LC(ch))
2343 *d++ = ch;
2344 else {
2345 *d++ = '^';
2346 *d++ = toCTRL(ch);
2347 }
2348 }
2349 if (s < end) {
2350 *d++ = '.';
2351 *d++ = '.';
2352 *d++ = '.';
2353 }
2354 *d = '\0';
2355 pv = tmpbuf;
a0d0e21e 2356 }
a0d0e21e 2357
533c011a 2358 if (PL_op)
9014280d 2359 Perl_warner(aTHX_ packWARN(WARN_NUMERIC),
94463019
JH
2360 "Argument \"%s\" isn't numeric in %s", pv,
2361 OP_DESC(PL_op));
a0d0e21e 2362 else
9014280d 2363 Perl_warner(aTHX_ packWARN(WARN_NUMERIC),
94463019 2364 "Argument \"%s\" isn't numeric", pv);
a0d0e21e
LW
2365}
2366
c2988b20
NC
2367/*
2368=for apidoc looks_like_number
2369
645c22ef
DM
2370Test if the content of an SV looks like a number (or is a number).
2371C<Inf> and C<Infinity> are treated as numbers (so will not issue a
2372non-numeric warning), even if your atof() doesn't grok them.
c2988b20
NC
2373
2374=cut
2375*/
2376
2377I32
2378Perl_looks_like_number(pTHX_ SV *sv)
2379{
2380 register char *sbegin;
2381 STRLEN len;
2382
2383 if (SvPOK(sv)) {
2384 sbegin = SvPVX(sv);
2385 len = SvCUR(sv);
2386 }
2387 else if (SvPOKp(sv))
2388 sbegin = SvPV(sv, len);
2389 else
e0ab1c0e 2390 return SvFLAGS(sv) & (SVf_NOK|SVp_NOK|SVf_IOK|SVp_IOK);
c2988b20
NC
2391 return grok_number(sbegin, len, NULL);
2392}
25da4f38
IZ
2393
2394/* Actually, ISO C leaves conversion of UV to IV undefined, but
2395 until proven guilty, assume that things are not that bad... */
2396
645c22ef
DM
2397/*
2398 NV_PRESERVES_UV:
2399
2400 As 64 bit platforms often have an NV that doesn't preserve all bits of
28e5dec8
JH
2401 an IV (an assumption perl has been based on to date) it becomes necessary
2402 to remove the assumption that the NV always carries enough precision to
2403 recreate the IV whenever needed, and that the NV is the canonical form.
2404 Instead, IV/UV and NV need to be given equal rights. So as to not lose
645c22ef 2405 precision as a side effect of conversion (which would lead to insanity
28e5dec8
JH
2406 and the dragon(s) in t/op/numconvert.t getting very angry) the intent is
2407 1) to distinguish between IV/UV/NV slots that have cached a valid
2408 conversion where precision was lost and IV/UV/NV slots that have a
2409 valid conversion which has lost no precision
645c22ef 2410 2) to ensure that if a numeric conversion to one form is requested that
28e5dec8
JH
2411 would lose precision, the precise conversion (or differently
2412 imprecise conversion) is also performed and cached, to prevent
2413 requests for different numeric formats on the same SV causing
2414 lossy conversion chains. (lossless conversion chains are perfectly
2415 acceptable (still))
2416
2417
2418 flags are used:
2419 SvIOKp is true if the IV slot contains a valid value
2420 SvIOK is true only if the IV value is accurate (UV if SvIOK_UV true)
2421 SvNOKp is true if the NV slot contains a valid value
2422 SvNOK is true only if the NV value is accurate
2423
2424 so
645c22ef 2425 while converting from PV to NV, check to see if converting that NV to an
28e5dec8
JH
2426 IV(or UV) would lose accuracy over a direct conversion from PV to
2427 IV(or UV). If it would, cache both conversions, return NV, but mark
2428 SV as IOK NOKp (ie not NOK).
2429
645c22ef 2430 While converting from PV to IV, check to see if converting that IV to an
28e5dec8
JH
2431 NV would lose accuracy over a direct conversion from PV to NV. If it
2432 would, cache both conversions, flag similarly.
2433
2434 Before, the SV value "3.2" could become NV=3.2 IV=3 NOK, IOK quite
2435 correctly because if IV & NV were set NV *always* overruled.
645c22ef
DM
2436 Now, "3.2" will become NV=3.2 IV=3 NOK, IOKp, because the flag's meaning
2437 changes - now IV and NV together means that the two are interchangeable:
28e5dec8 2438 SvIVX == (IV) SvNVX && SvNVX == (NV) SvIVX;
d460ef45 2439
645c22ef
DM
2440 The benefit of this is that operations such as pp_add know that if
2441 SvIOK is true for both left and right operands, then integer addition
2442 can be used instead of floating point (for cases where the result won't
2443 overflow). Before, floating point was always used, which could lead to
28e5dec8
JH
2444 loss of precision compared with integer addition.
2445
2446 * making IV and NV equal status should make maths accurate on 64 bit
2447 platforms
2448 * may speed up maths somewhat if pp_add and friends start to use
645c22ef 2449 integers when possible instead of fp. (Hopefully the overhead in
28e5dec8
JH
2450 looking for SvIOK and checking for overflow will not outweigh the
2451 fp to integer speedup)
2452 * will slow down integer operations (callers of SvIV) on "inaccurate"
2453 values, as the change from SvIOK to SvIOKp will cause a call into
2454 sv_2iv each time rather than a macro access direct to the IV slot
2455 * should speed up number->string conversion on integers as IV is
645c22ef 2456 favoured when IV and NV are equally accurate
28e5dec8
JH
2457
2458 ####################################################################
645c22ef
DM
2459 You had better be using SvIOK_notUV if you want an IV for arithmetic:
2460 SvIOK is true if (IV or UV), so you might be getting (IV)SvUV.
2461 On the other hand, SvUOK is true iff UV.
28e5dec8
JH
2462 ####################################################################
2463
645c22ef 2464 Your mileage will vary depending your CPU's relative fp to integer
28e5dec8
JH
2465 performance ratio.
2466*/
2467
2468#ifndef NV_PRESERVES_UV
645c22ef
DM
2469# define IS_NUMBER_UNDERFLOW_IV 1
2470# define IS_NUMBER_UNDERFLOW_UV 2
2471# define IS_NUMBER_IV_AND_UV 2
2472# define IS_NUMBER_OVERFLOW_IV 4
2473# define IS_NUMBER_OVERFLOW_UV 5
2474
2475/* sv_2iuv_non_preserve(): private routine for use by sv_2iv() and sv_2uv() */
28e5dec8
JH
2476
2477/* For sv_2nv these three cases are "SvNOK and don't bother casting" */
2478STATIC int
645c22ef 2479S_sv_2iuv_non_preserve(pTHX_ register SV *sv, I32 numtype)
28e5dec8 2480{
1779d84d 2481 DEBUG_c(PerlIO_printf(Perl_debug_log,"sv_2iuv_non '%s', IV=0x%"UVxf" NV=%"NVgf" inttype=%"UVXf"\n", SvPVX(sv), SvIVX(sv), SvNVX(sv), (UV)numtype));
28e5dec8
JH
2482 if (SvNVX(sv) < (NV)IV_MIN) {
2483 (void)SvIOKp_on(sv);
2484 (void)SvNOK_on(sv);
2485 SvIVX(sv) = IV_MIN;
2486 return IS_NUMBER_UNDERFLOW_IV;
2487 }
2488 if (SvNVX(sv) > (NV)UV_MAX) {
2489 (void)SvIOKp_on(sv);
2490 (void)SvNOK_on(sv);
2491 SvIsUV_on(sv);
2492 SvUVX(sv) = UV_MAX;
2493 return IS_NUMBER_OVERFLOW_UV;
2494 }
c2988b20
NC
2495 (void)SvIOKp_on(sv);
2496 (void)SvNOK_on(sv);
2497 /* Can't use strtol etc to convert this string. (See truth table in
2498 sv_2iv */
2499 if (SvNVX(sv) <= (UV)IV_MAX) {
2500 SvIVX(sv) = I_V(SvNVX(sv));
2501 if ((NV)(SvIVX(sv)) == SvNVX(sv)) {
2502 SvIOK_on(sv); /* Integer is precise. NOK, IOK */
2503 } else {
2504 /* Integer is imprecise. NOK, IOKp */
2505 }
2506 return SvNVX(sv) < 0 ? IS_NUMBER_UNDERFLOW_UV : IS_NUMBER_IV_AND_UV;
2507 }
2508 SvIsUV_on(sv);
2509 SvUVX(sv) = U_V(SvNVX(sv));
2510 if ((NV)(SvUVX(sv)) == SvNVX(sv)) {
2511 if (SvUVX(sv) == UV_MAX) {
2512 /* As we know that NVs don't preserve UVs, UV_MAX cannot
2513 possibly be preserved by NV. Hence, it must be overflow.
2514 NOK, IOKp */
2515 return IS_NUMBER_OVERFLOW_UV;
2516 }
2517 SvIOK_on(sv); /* Integer is precise. NOK, UOK */
2518 } else {
2519 /* Integer is imprecise. NOK, IOKp */
28e5dec8 2520 }
c2988b20 2521 return IS_NUMBER_OVERFLOW_IV;
28e5dec8 2522}
645c22ef
DM
2523#endif /* !NV_PRESERVES_UV*/
2524
891f9566
YST
2525/* sv_2iv() is now a macro using Perl_sv_2iv_flags();
2526 * this function provided for binary compatibility only
2527 */
2528
2529IV
2530Perl_sv_2iv(pTHX_ register SV *sv)
2531{
2532 return sv_2iv_flags(sv, SV_GMAGIC);
2533}
2534
645c22ef 2535/*
891f9566 2536=for apidoc sv_2iv_flags
645c22ef 2537
891f9566
YST
2538Return the integer value of an SV, doing any necessary string
2539conversion. If flags includes SV_GMAGIC, does an mg_get() first.
2540Normally used via the C<SvIV(sv)> and C<SvIVx(sv)> macros.
645c22ef
DM
2541
2542=cut
2543*/
28e5dec8 2544
a0d0e21e 2545IV
891f9566 2546Perl_sv_2iv_flags(pTHX_ register SV *sv, I32 flags)
79072805
LW
2547{
2548 if (!sv)
2549 return 0;
8990e307 2550 if (SvGMAGICAL(sv)) {
891f9566
YST
2551 if (flags & SV_GMAGIC)
2552 mg_get(sv);
463ee0b2
LW
2553 if (SvIOKp(sv))
2554 return SvIVX(sv);
748a9306 2555 if (SvNOKp(sv)) {
25da4f38 2556 return I_V(SvNVX(sv));
748a9306 2557 }
36477c24 2558 if (SvPOKp(sv) && SvLEN(sv))
2559 return asIV(sv);
3fe9a6f1 2560 if (!SvROK(sv)) {
d008e5eb 2561 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
d008e5eb 2562 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
29489e7c 2563 report_uninit(sv);
c6ee37c5 2564 }
36477c24 2565 return 0;
3fe9a6f1 2566 }
463ee0b2 2567 }
ed6116ce 2568 if (SvTHINKFIRST(sv)) {
a0d0e21e 2569 if (SvROK(sv)) {
a0d0e21e 2570 SV* tmpstr;
1554e226 2571 if (SvAMAGIC(sv) && (tmpstr=AMG_CALLun(sv,numer)) &&
b4b9a328 2572 (!SvROK(tmpstr) || (SvRV(tmpstr) != SvRV(sv))))
9e7bc3e8 2573 return SvIV(tmpstr);
56431972 2574 return PTR2IV(SvRV(sv));
a0d0e21e 2575 }
765f542d
NC
2576 if (SvIsCOW(sv)) {
2577 sv_force_normal_flags(sv, 0);
47deb5e7 2578 }
0336b60e 2579 if (SvREADONLY(sv) && !SvOK(sv)) {
0336b60e 2580 if (ckWARN(WARN_UNINITIALIZED))
29489e7c 2581 report_uninit(sv);
ed6116ce
LW
2582 return 0;
2583 }
79072805 2584 }
25da4f38
IZ
2585 if (SvIOKp(sv)) {
2586 if (SvIsUV(sv)) {
2587 return (IV)(SvUVX(sv));
2588 }
2589 else {
2590 return SvIVX(sv);
2591 }
463ee0b2 2592 }
748a9306 2593 if (SvNOKp(sv)) {
28e5dec8
JH
2594 /* erm. not sure. *should* never get NOKp (without NOK) from sv_2nv
2595 * without also getting a cached IV/UV from it at the same time
2596 * (ie PV->NV conversion should detect loss of accuracy and cache
2597 * IV or UV at same time to avoid this. NWC */
25da4f38
IZ
2598
2599 if (SvTYPE(sv) == SVt_NV)
2600 sv_upgrade(sv, SVt_PVNV);
2601
28e5dec8
JH
2602 (void)SvIOKp_on(sv); /* Must do this first, to clear any SvOOK */
2603 /* < not <= as for NV doesn't preserve UV, ((NV)IV_MAX+1) will almost
2604 certainly cast into the IV range at IV_MAX, whereas the correct
2605 answer is the UV IV_MAX +1. Hence < ensures that dodgy boundary
2606 cases go to UV */
2607 if (SvNVX(sv) < (NV)IV_MAX + 0.5) {
748a9306 2608 SvIVX(sv) = I_V(SvNVX(sv));
28e5dec8
JH
2609 if (SvNVX(sv) == (NV) SvIVX(sv)
2610#ifndef NV_PRESERVES_UV
2611 && (((UV)1 << NV_PRESERVES_UV_BITS) >
2612 (UV)(SvIVX(sv) > 0 ? SvIVX(sv) : -SvIVX(sv)))
2613 /* Don't flag it as "accurately an integer" if the number
2614 came from a (by definition imprecise) NV operation, and
2615 we're outside the range of NV integer precision */
2616#endif
2617 ) {
2618 SvIOK_on(sv); /* Can this go wrong with rounding? NWC */
2619 DEBUG_c(PerlIO_printf(Perl_debug_log,
7234c960 2620 "0x%"UVxf" iv(%"NVgf" => %"IVdf") (precise)\n",
28e5dec8
JH
2621 PTR2UV(sv),
2622 SvNVX(sv),
2623 SvIVX(sv)));
2624
2625 } else {
2626 /* IV not precise. No need to convert from PV, as NV
2627 conversion would already have cached IV if it detected
2628 that PV->IV would be better than PV->NV->IV
2629 flags already correct - don't set public IOK. */
2630 DEBUG_c(PerlIO_printf(Perl_debug_log,
7234c960 2631 "0x%"UVxf" iv(%"NVgf" => %"IVdf") (imprecise)\n",
28e5dec8
JH
2632 PTR2UV(sv),
2633 SvNVX(sv),
2634 SvIVX(sv)));
2635 }
2636 /* Can the above go wrong if SvIVX == IV_MIN and SvNVX < IV_MIN,
2637 but the cast (NV)IV_MIN rounds to a the value less (more
2638 negative) than IV_MIN which happens to be equal to SvNVX ??
2639 Analogous to 0xFFFFFFFFFFFFFFFF rounding up to NV (2**64) and
2640 NV rounding back to 0xFFFFFFFFFFFFFFFF, so UVX == UV(NVX) and
2641 (NV)UVX == NVX are both true, but the values differ. :-(
2642 Hopefully for 2s complement IV_MIN is something like
2643 0x8000000000000000 which will be exact. NWC */
d460ef45 2644 }
25da4f38 2645 else {
ff68c719 2646 SvUVX(sv) = U_V(SvNVX(sv));
28e5dec8
JH
2647 if (
2648 (SvNVX(sv) == (NV) SvUVX(sv))
2649#ifndef NV_PRESERVES_UV
2650 /* Make sure it's not 0xFFFFFFFFFFFFFFFF */
2651 /*&& (SvUVX(sv) != UV_MAX) irrelevant with code below */
2652 && (((UV)1 << NV_PRESERVES_UV_BITS) > SvUVX(sv))
2653 /* Don't flag it as "accurately an integer" if the number
2654 came from a (by definition imprecise) NV operation, and
2655 we're outside the range of NV integer precision */
2656#endif
2657 )
2658 SvIOK_on(sv);
25da4f38
IZ
2659 SvIsUV_on(sv);
2660 ret_iv_max:
1c846c1f 2661 DEBUG_c(PerlIO_printf(Perl_debug_log,
57def98f 2662 "0x%"UVxf" 2iv(%"UVuf" => %"IVdf") (as unsigned)\n",
56431972 2663 PTR2UV(sv),
57def98f
JH
2664 SvUVX(sv),
2665 SvUVX(sv)));
25da4f38
IZ
2666 return (IV)SvUVX(sv);
2667 }
748a9306
LW
2668 }
2669 else if (SvPOKp(sv) && SvLEN(sv)) {
c2988b20
NC
2670 UV value;
2671 int numtype = grok_number(SvPVX(sv), SvCUR(sv), &value);
25da4f38
IZ
2672 /* We want to avoid a possible problem when we cache an IV which
2673 may be later translated to an NV, and the resulting NV is not
c2988b20
NC
2674 the same as the direct translation of the initial string
2675 (eg 123.456 can shortcut to the IV 123 with atol(), but we must
2676 be careful to ensure that the value with the .456 is around if the
2677 NV value is requested in the future).
1c846c1f 2678
25da4f38
IZ
2679 This means that if we cache such an IV, we need to cache the
2680 NV as well. Moreover, we trade speed for space, and do not
28e5dec8 2681 cache the NV if we are sure it's not needed.
25da4f38 2682 */
16b7a9a4 2683
c2988b20
NC
2684 /* SVt_PVNV is one higher than SVt_PVIV, hence this order */
2685 if ((numtype & (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT))
2686 == IS_NUMBER_IN_UV) {
5e045b90 2687 /* It's definitely an integer, only upgrade to PVIV */
28e5dec8
JH
2688 if (SvTYPE(sv) < SVt_PVIV)
2689 sv_upgrade(sv, SVt_PVIV);
f7bbb42a 2690 (void)SvIOK_on(sv);
c2988b20
NC
2691 } else if (SvTYPE(sv) < SVt_PVNV)
2692 sv_upgrade(sv, SVt_PVNV);
28e5dec8 2693
c2988b20
NC
2694 /* If NV preserves UV then we only use the UV value if we know that
2695 we aren't going to call atof() below. If NVs don't preserve UVs
2696 then the value returned may have more precision than atof() will
2697 return, even though value isn't perfectly accurate. */
2698 if ((numtype & (IS_NUMBER_IN_UV
2699#ifdef NV_PRESERVES_UV
2700 | IS_NUMBER_NOT_INT
2701#endif
2702 )) == IS_NUMBER_IN_UV) {
2703 /* This won't turn off the public IOK flag if it was set above */
2704 (void)SvIOKp_on(sv);
2705
2706 if (!(numtype & IS_NUMBER_NEG)) {
2707 /* positive */;
2708 if (value <= (UV)IV_MAX) {
2709 SvIVX(sv) = (IV)value;
2710 } else {
2711 SvUVX(sv) = value;
2712 SvIsUV_on(sv);
2713 }
2714 } else {
2715 /* 2s complement assumption */
2716 if (value <= (UV)IV_MIN) {
2717 SvIVX(sv) = -(IV)value;
2718 } else {
2719 /* Too negative for an IV. This is a double upgrade, but
d1be9408 2720 I'm assuming it will be rare. */
c2988b20
NC
2721 if (SvTYPE(sv) < SVt_PVNV)
2722 sv_upgrade(sv, SVt_PVNV);
2723 SvNOK_on(sv);
2724 SvIOK_off(sv);
2725 SvIOKp_on(sv);
2726 SvNVX(sv) = -(NV)value;
2727 SvIVX(sv) = IV_MIN;
2728 }
2729 }
2730 }
2731 /* For !NV_PRESERVES_UV and IS_NUMBER_IN_UV and IS_NUMBER_NOT_INT we
2732 will be in the previous block to set the IV slot, and the next
2733 block to set the NV slot. So no else here. */
2734
2735 if ((numtype & (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT))
2736 != IS_NUMBER_IN_UV) {
2737 /* It wasn't an (integer that doesn't overflow the UV). */
2738 SvNVX(sv) = Atof(SvPVX(sv));
28e5dec8 2739
c2988b20
NC
2740 if (! numtype && ckWARN(WARN_NUMERIC))
2741 not_a_number(sv);
28e5dec8 2742
65202027 2743#if defined(USE_LONG_DOUBLE)
c2988b20
NC
2744 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2iv(%" PERL_PRIgldbl ")\n",
2745 PTR2UV(sv), SvNVX(sv)));
65202027 2746#else
1779d84d 2747 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2iv(%"NVgf")\n",
c2988b20 2748 PTR2UV(sv), SvNVX(sv)));
65202027 2749#endif
28e5dec8
JH
2750
2751
2752#ifdef NV_PRESERVES_UV
c2988b20
NC
2753 (void)SvIOKp_on(sv);
2754 (void)SvNOK_on(sv);
2755 if (SvNVX(sv) < (NV)IV_MAX + 0.5) {
2756 SvIVX(sv) = I_V(SvNVX(sv));
2757 if ((NV)(SvIVX(sv)) == SvNVX(sv)) {
2758 SvIOK_on(sv);
28e5dec8 2759 } else {
c2988b20
NC
2760 /* Integer is imprecise. NOK, IOKp */
2761 }
2762 /* UV will not work better than IV */
2763 } else {
2764 if (SvNVX(sv) > (NV)UV_MAX) {
2765 SvIsUV_on(sv);
2766 /* Integer is inaccurate. NOK, IOKp, is UV */
2767 SvUVX(sv) = UV_MAX;
2768 SvIsUV_on(sv);
2769 } else {
2770 SvUVX(sv) = U_V(SvNVX(sv));
2771 /* 0xFFFFFFFFFFFFFFFF not an issue in here */
2772 if ((NV)(SvUVX(sv)) == SvNVX(sv)) {
2773 SvIOK_on(sv);
28e5dec8
JH
2774 SvIsUV_on(sv);
2775 } else {
c2988b20
NC
2776 /* Integer is imprecise. NOK, IOKp, is UV */
2777 SvIsUV_on(sv);
28e5dec8 2778 }
28e5dec8 2779 }
c2988b20
NC
2780 goto ret_iv_max;
2781 }
28e5dec8 2782#else /* NV_PRESERVES_UV */
c2988b20
NC
2783 if ((numtype & (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT))
2784 == (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT)) {
2785 /* The IV slot will have been set from value returned by
2786 grok_number above. The NV slot has just been set using
2787 Atof. */
560b0c46 2788 SvNOK_on(sv);
c2988b20
NC
2789 assert (SvIOKp(sv));
2790 } else {
2791 if (((UV)1 << NV_PRESERVES_UV_BITS) >
2792 U_V(SvNVX(sv) > 0 ? SvNVX(sv) : -SvNVX(sv))) {
2793 /* Small enough to preserve all bits. */
2794 (void)SvIOKp_on(sv);
2795 SvNOK_on(sv);
2796 SvIVX(sv) = I_V(SvNVX(sv));
2797 if ((NV)(SvIVX(sv)) == SvNVX(sv))
2798 SvIOK_on(sv);
2799 /* Assumption: first non-preserved integer is < IV_MAX,
2800 this NV is in the preserved range, therefore: */
2801 if (!(U_V(SvNVX(sv) > 0 ? SvNVX(sv) : -SvNVX(sv))
2802 < (UV)IV_MAX)) {
32fdb065 2803 Perl_croak(aTHX_ "sv_2iv assumed (U_V(fabs((double)SvNVX(sv))) < (UV)IV_MAX) but SvNVX(sv)=%"NVgf" U_V is 0x%"UVxf", IV_MAX is 0x%"UVxf"\n", SvNVX(sv), U_V(SvNVX(sv)), (UV)IV_MAX);
c2988b20
NC
2804 }
2805 } else {
2806 /* IN_UV NOT_INT
2807 0 0 already failed to read UV.
2808 0 1 already failed to read UV.
2809 1 0 you won't get here in this case. IV/UV
2810 slot set, public IOK, Atof() unneeded.
2811 1 1 already read UV.
2812 so there's no point in sv_2iuv_non_preserve() attempting
2813 to use atol, strtol, strtoul etc. */
2814 if (sv_2iuv_non_preserve (sv, numtype)
2815 >= IS_NUMBER_OVERFLOW_IV)
2816 goto ret_iv_max;
2817 }
2818 }
28e5dec8 2819#endif /* NV_PRESERVES_UV */
25da4f38 2820 }
28e5dec8 2821 } else {
599cee73 2822 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing && !(SvFLAGS(sv) & SVs_PADTMP))
29489e7c 2823 report_uninit(sv);
25da4f38
IZ
2824 if (SvTYPE(sv) < SVt_IV)
2825 /* Typically the caller expects that sv_any is not NULL now. */
2826 sv_upgrade(sv, SVt_IV);
a0d0e21e 2827 return 0;
79072805 2828 }
1d7c1841
GS
2829 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2iv(%"IVdf")\n",
2830 PTR2UV(sv),SvIVX(sv)));
25da4f38 2831 return SvIsUV(sv) ? (IV)SvUVX(sv) : SvIVX(sv);
79072805
LW
2832}
2833
891f9566
YST
2834/* sv_2uv() is now a macro using Perl_sv_2uv_flags();
2835 * this function provided for binary compatibility only
2836 */
2837
2838UV
2839Perl_sv_2uv(pTHX_ register SV *sv)
2840{
2841 return sv_2uv_flags(sv, SV_GMAGIC);
2842}
2843
645c22ef 2844/*
891f9566 2845=for apidoc sv_2uv_flags
645c22ef
DM
2846
2847Return the unsigned integer value of an SV, doing any necessary string
891f9566
YST
2848conversion. If flags includes SV_GMAGIC, does an mg_get() first.
2849Normally used via the C<SvUV(sv)> and C<SvUVx(sv)> macros.
645c22ef
DM
2850
2851=cut
2852*/
2853
ff68c719 2854UV
891f9566 2855Perl_sv_2uv_flags(pTHX_ register SV *sv, I32 flags)
ff68c719 2856{
2857 if (!sv)
2858 return 0;
2859 if (SvGMAGICAL(sv)) {
891f9566
YST
2860 if (flags & SV_GMAGIC)
2861 mg_get(sv);
ff68c719 2862 if (SvIOKp(sv))
2863 return SvUVX(sv);
2864 if (SvNOKp(sv))
2865 return U_V(SvNVX(sv));
36477c24 2866 if (SvPOKp(sv) && SvLEN(sv))
2867 return asUV(sv);
3fe9a6f1 2868 if (!SvROK(sv)) {
d008e5eb 2869 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
d008e5eb 2870 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
29489e7c 2871 report_uninit(sv);
c6ee37c5 2872 }
36477c24 2873 return 0;
3fe9a6f1 2874 }
ff68c719 2875 }
2876 if (SvTHINKFIRST(sv)) {
2877 if (SvROK(sv)) {
ff68c719 2878 SV* tmpstr;
1554e226 2879 if (SvAMAGIC(sv) && (tmpstr=AMG_CALLun(sv,numer)) &&
b4b9a328 2880 (!SvROK(tmpstr) || (SvRV(tmpstr) != SvRV(sv))))
9e7bc3e8 2881 return SvUV(tmpstr);
56431972 2882 return PTR2UV(SvRV(sv));
ff68c719 2883 }
765f542d
NC
2884 if (SvIsCOW(sv)) {
2885 sv_force_normal_flags(sv, 0);
8a818333 2886 }
0336b60e 2887 if (SvREADONLY(sv) && !SvOK(sv)) {
0336b60e 2888 if (ckWARN(WARN_UNINITIALIZED))
29489e7c 2889 report_uninit(sv);
ff68c719 2890 return 0;
2891 }
2892 }
25da4f38
IZ
2893 if (SvIOKp(sv)) {
2894 if (SvIsUV(sv)) {
2895 return SvUVX(sv);
2896 }
2897 else {
2898 return (UV)SvIVX(sv);
2899 }
ff68c719 2900 }
2901 if (SvNOKp(sv)) {
28e5dec8
JH
2902 /* erm. not sure. *should* never get NOKp (without NOK) from sv_2nv
2903 * without also getting a cached IV/UV from it at the same time
2904 * (ie PV->NV conversion should detect loss of accuracy and cache
2905 * IV or UV at same time to avoid this. */
2906 /* IV-over-UV optimisation - choose to cache IV if possible */
2907
25da4f38
IZ
2908 if (SvTYPE(sv) == SVt_NV)
2909 sv_upgrade(sv, SVt_PVNV);
28e5dec8
JH
2910
2911 (void)SvIOKp_on(sv); /* Must do this first, to clear any SvOOK */
2912 if (SvNVX(sv) < (NV)IV_MAX + 0.5) {
f7bbb42a 2913 SvIVX(sv) = I_V(SvNVX(sv));
28e5dec8
JH
2914 if (SvNVX(sv) == (NV) SvIVX(sv)
2915#ifndef NV_PRESERVES_UV
2916 && (((UV)1 << NV_PRESERVES_UV_BITS) >
2917 (UV)(SvIVX(sv) > 0 ? SvIVX(sv) : -SvIVX(sv)))
2918 /* Don't flag it as "accurately an integer" if the number
2919 came from a (by definition imprecise) NV operation, and
2920 we're outside the range of NV integer precision */
2921#endif
2922 ) {
2923 SvIOK_on(sv); /* Can this go wrong with rounding? NWC */
2924 DEBUG_c(PerlIO_printf(Perl_debug_log,
7234c960 2925 "0x%"UVxf" uv(%"NVgf" => %"IVdf") (precise)\n",
28e5dec8
JH
2926 PTR2UV(sv),
2927 SvNVX(sv),
2928 SvIVX(sv)));
2929
2930 } else {
2931 /* IV not precise. No need to convert from PV, as NV
2932 conversion would already have cached IV if it detected
2933 that PV->IV would be better than PV->NV->IV
2934 flags already correct - don't set public IOK. */
2935 DEBUG_c(PerlIO_printf(Perl_debug_log,
7234c960 2936 "0x%"UVxf" uv(%"NVgf" => %"IVdf") (imprecise)\n",
28e5dec8
JH
2937 PTR2UV(sv),
2938 SvNVX(sv),
2939 SvIVX(sv)));
2940 }
2941 /* Can the above go wrong if SvIVX == IV_MIN and SvNVX < IV_MIN,
2942 but the cast (NV)IV_MIN rounds to a the value less (more
2943 negative) than IV_MIN which happens to be equal to SvNVX ??
2944 Analogous to 0xFFFFFFFFFFFFFFFF rounding up to NV (2**64) and
2945 NV rounding back to 0xFFFFFFFFFFFFFFFF, so UVX == UV(NVX) and
2946 (NV)UVX == NVX are both true, but the values differ. :-(
2947 Hopefully for 2s complement IV_MIN is something like
2948 0x8000000000000000 which will be exact. NWC */
d460ef45 2949 }
28e5dec8
JH
2950 else {
2951 SvUVX(sv) = U_V(SvNVX(sv));
2952 if (
2953 (SvNVX(sv) == (NV) SvUVX(sv))
2954#ifndef NV_PRESERVES_UV
2955 /* Make sure it's not 0xFFFFFFFFFFFFFFFF */
2956 /*&& (SvUVX(sv) != UV_MAX) irrelevant with code below */
2957 && (((UV)1 << NV_PRESERVES_UV_BITS) > SvUVX(sv))
2958 /* Don't flag it as "accurately an integer" if the number
2959 came from a (by definition imprecise) NV operation, and
2960 we're outside the range of NV integer precision */
2961#endif
2962 )
2963 SvIOK_on(sv);
2964 SvIsUV_on(sv);
1c846c1f 2965 DEBUG_c(PerlIO_printf(Perl_debug_log,
28e5dec8 2966 "0x%"UVxf" 2uv(%"UVuf" => %"IVdf") (as unsigned)\n",
57def98f 2967 PTR2UV(sv),
28e5dec8
JH
2968 SvUVX(sv),
2969 SvUVX(sv)));
25da4f38 2970 }
ff68c719 2971 }
2972 else if (SvPOKp(sv) && SvLEN(sv)) {
c2988b20
NC
2973 UV value;
2974 int numtype = grok_number(SvPVX(sv), SvCUR(sv), &value);
25da4f38
IZ
2975
2976 /* We want to avoid a possible problem when we cache a UV which
2977 may be later translated to an NV, and the resulting NV is not
2978 the translation of the initial data.
1c846c1f 2979
25da4f38
IZ
2980 This means that if we cache such a UV, we need to cache the
2981 NV as well. Moreover, we trade speed for space, and do not
2982 cache the NV if not needed.
2983 */
16b7a9a4 2984
c2988b20
NC
2985 /* SVt_PVNV is one higher than SVt_PVIV, hence this order */
2986 if ((numtype & (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT))
2987 == IS_NUMBER_IN_UV) {
5e045b90 2988 /* It's definitely an integer, only upgrade to PVIV */
28e5dec8 2989 if (SvTYPE(sv) < SVt_PVIV)
f7bbb42a
JH
2990 sv_upgrade(sv, SVt_PVIV);
2991 (void)SvIOK_on(sv);
c2988b20
NC
2992 } else if (SvTYPE(sv) < SVt_PVNV)
2993 sv_upgrade(sv, SVt_PVNV);
d460ef45 2994
c2988b20
NC
2995 /* If NV preserves UV then we only use the UV value if we know that
2996 we aren't going to call atof() below. If NVs don't preserve UVs
2997 then the value returned may have more precision than atof() will
2998 return, even though it isn't accurate. */
2999 if ((numtype & (IS_NUMBER_IN_UV
3000#ifdef NV_PRESERVES_UV
3001 | IS_NUMBER_NOT_INT
3002#endif
3003 )) == IS_NUMBER_IN_UV) {
3004 /* This won't turn off the public IOK flag if it was set above */
3005 (void)SvIOKp_on(sv);
3006
3007 if (!(numtype & IS_NUMBER_NEG)) {
3008 /* positive */;
3009 if (value <= (UV)IV_MAX) {
3010 SvIVX(sv) = (IV)value;
28e5dec8
JH
3011 } else {
3012 /* it didn't overflow, and it was positive. */
c2988b20 3013 SvUVX(sv) = value;
28e5dec8
JH
3014 SvIsUV_on(sv);
3015 }
c2988b20
NC
3016 } else {
3017 /* 2s complement assumption */
3018 if (value <= (UV)IV_MIN) {
3019 SvIVX(sv) = -(IV)value;
3020 } else {
3021 /* Too negative for an IV. This is a double upgrade, but
d1be9408 3022 I'm assuming it will be rare. */
c2988b20
NC
3023 if (SvTYPE(sv) < SVt_PVNV)
3024 sv_upgrade(sv, SVt_PVNV);
3025 SvNOK_on(sv);
3026 SvIOK_off(sv);
3027 SvIOKp_on(sv);
3028 SvNVX(sv) = -(NV)value;
3029 SvIVX(sv) = IV_MIN;
3030 }
3031 }
3032 }
3033
3034 if ((numtype & (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT))
3035 != IS_NUMBER_IN_UV) {
3036 /* It wasn't an integer, or it overflowed the UV. */
3037 SvNVX(sv) = Atof(SvPVX(sv));
28e5dec8 3038
c2988b20 3039 if (! numtype && ckWARN(WARN_NUMERIC))
28e5dec8
JH
3040 not_a_number(sv);
3041
3042#if defined(USE_LONG_DOUBLE)
c2988b20
NC
3043 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2uv(%" PERL_PRIgldbl ")\n",
3044 PTR2UV(sv), SvNVX(sv)));
28e5dec8 3045#else
1779d84d 3046 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2uv(%"NVgf")\n",
c2988b20 3047 PTR2UV(sv), SvNVX(sv)));
28e5dec8
JH
3048#endif
3049
3050#ifdef NV_PRESERVES_UV
c2988b20
NC
3051 (void)SvIOKp_on(sv);
3052 (void)SvNOK_on(sv);
3053 if (SvNVX(sv) < (NV)IV_MAX + 0.5) {
3054 SvIVX(sv) = I_V(SvNVX(sv));
3055 if ((NV)(SvIVX(sv)) == SvNVX(sv)) {
3056 SvIOK_on(sv);
3057 } else {
3058 /* Integer is imprecise. NOK, IOKp */
3059 }
3060 /* UV will not work better than IV */
3061 } else {
3062 if (SvNVX(sv) > (NV)UV_MAX) {
3063 SvIsUV_on(sv);
3064 /* Integer is inaccurate. NOK, IOKp, is UV */
3065 SvUVX(sv) = UV_MAX;
3066 SvIsUV_on(sv);
3067 } else {
3068 SvUVX(sv) = U_V(SvNVX(sv));
3069 /* 0xFFFFFFFFFFFFFFFF not an issue in here, NVs
3070 NV preservse UV so can do correct comparison. */
3071 if ((NV)(SvUVX(sv)) == SvNVX(sv)) {
3072 SvIOK_on(sv);
3073 SvIsUV_on(sv);
3074 } else {
3075 /* Integer is imprecise. NOK, IOKp, is UV */
3076 SvIsUV_on(sv);
3077 }
3078 }
3079 }
28e5dec8 3080#else /* NV_PRESERVES_UV */
c2988b20
NC
3081 if ((numtype & (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT))
3082 == (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT)) {
3083 /* The UV slot will have been set from value returned by
3084 grok_number above. The NV slot has just been set using
3085 Atof. */
560b0c46 3086 SvNOK_on(sv);
c2988b20
NC
3087 assert (SvIOKp(sv));
3088 } else {
3089 if (((UV)1 << NV_PRESERVES_UV_BITS) >
3090 U_V(SvNVX(sv) > 0 ? SvNVX(sv) : -SvNVX(sv))) {
3091 /* Small enough to preserve all bits. */
3092 (void)SvIOKp_on(sv);
3093 SvNOK_on(sv);
3094 SvIVX(sv) = I_V(SvNVX(sv));
3095 if ((NV)(SvIVX(sv)) == SvNVX(sv))
3096 SvIOK_on(sv);
3097 /* Assumption: first non-preserved integer is < IV_MAX,
3098 this NV is in the preserved range, therefore: */
3099 if (!(U_V(SvNVX(sv) > 0 ? SvNVX(sv) : -SvNVX(sv))
3100 < (UV)IV_MAX)) {
32fdb065 3101 Perl_croak(aTHX_ "sv_2uv assumed (U_V(fabs((double)SvNVX(sv))) < (UV)IV_MAX) but SvNVX(sv)=%"NVgf" U_V is 0x%"UVxf", IV_MAX is 0x%"UVxf"\n", SvNVX(sv), U_V(SvNVX(sv)), (UV)IV_MAX);
c2988b20
NC
3102 }
3103 } else
3104 sv_2iuv_non_preserve (sv, numtype);
3105 }
28e5dec8 3106#endif /* NV_PRESERVES_UV */
f7bbb42a 3107 }
ff68c719 3108 }
3109 else {
d008e5eb 3110 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
d008e5eb 3111 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
29489e7c 3112 report_uninit(sv);
c6ee37c5 3113 }
25da4f38
IZ
3114 if (SvTYPE(sv) < SVt_IV)
3115 /* Typically the caller expects that sv_any is not NULL now. */
3116 sv_upgrade(sv, SVt_IV);
ff68c719 3117 return 0;
3118 }
25da4f38 3119
1d7c1841
GS
3120 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2uv(%"UVuf")\n",
3121 PTR2UV(sv),SvUVX(sv)));
25da4f38 3122 return SvIsUV(sv) ? SvUVX(sv) : (UV)SvIVX(sv);
ff68c719 3123}
3124
645c22ef
DM
3125/*
3126=for apidoc sv_2nv
3127
3128Return the num value of an SV, doing any necessary string or integer
3129conversion, magic etc. Normally used via the C<SvNV(sv)> and C<SvNVx(sv)>
3130macros.
3131
3132=cut
3133*/
3134
65202027 3135NV
864dbfa3 3136Perl_sv_2nv(pTHX_ register SV *sv)
79072805
LW
3137{
3138 if (!sv)
3139 return 0.0;
8990e307 3140 if (SvGMAGICAL(sv)) {
463ee0b2
LW
3141 mg_get(sv);
3142 if (SvNOKp(sv))
3143 return SvNVX(sv);
a0d0e21e 3144 if (SvPOKp(sv) && SvLEN(sv)) {
c2988b20
NC
3145 if (ckWARN(WARN_NUMERIC) && !SvIOKp(sv) &&
3146 !grok_number(SvPVX(sv), SvCUR(sv), NULL))
a0d0e21e 3147 not_a_number(sv);
097ee67d 3148 return Atof(SvPVX(sv));
a0d0e21e 3149 }
25da4f38 3150 if (SvIOKp(sv)) {
1c846c1f 3151 if (SvIsUV(sv))
65202027 3152 return (NV)SvUVX(sv);
25da4f38 3153 else
65202027 3154 return (NV)SvIVX(sv);
25da4f38 3155 }
16d20bd9 3156 if (!SvROK(sv)) {
d008e5eb 3157 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
d008e5eb 3158 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
29489e7c 3159 report_uninit(sv);
c6ee37c5 3160 }
16d20bd9
AD
3161 return 0;
3162 }
463ee0b2 3163 }
ed6116ce 3164 if (SvTHINKFIRST(sv)) {
a0d0e21e 3165 if (SvROK(sv)) {
a0d0e21e 3166 SV* tmpstr;
1554e226 3167 if (SvAMAGIC(sv) && (tmpstr=AMG_CALLun(sv,numer)) &&
b4b9a328 3168 (!SvROK(tmpstr) || (SvRV(tmpstr) != SvRV(sv))))
9e7bc3e8 3169 return SvNV(tmpstr);
56431972 3170 return PTR2NV(SvRV(sv));
a0d0e21e 3171 }
765f542d
NC
3172 if (SvIsCOW(sv)) {
3173 sv_force_normal_flags(sv, 0);
8a818333 3174 }
0336b60e 3175 if (SvREADONLY(sv) && !SvOK(sv)) {
599cee73 3176 if (ckWARN(WARN_UNINITIALIZED))
29489e7c 3177 report_uninit(sv);
ed6116ce
LW
3178 return 0.0;
3179 }
79072805
LW
3180 }
3181 if (SvTYPE(sv) < SVt_NV) {
463ee0b2
LW
3182 if (SvTYPE(sv) == SVt_IV)
3183 sv_upgrade(sv, SVt_PVNV);
3184 else
3185 sv_upgrade(sv, SVt_NV);
906f284f 3186#ifdef USE_LONG_DOUBLE
097ee67d 3187 DEBUG_c({
f93f4e46 3188 STORE_NUMERIC_LOCAL_SET_STANDARD();
1d7c1841
GS
3189 PerlIO_printf(Perl_debug_log,
3190 "0x%"UVxf" num(%" PERL_PRIgldbl ")\n",
3191 PTR2UV(sv), SvNVX(sv));
572bbb43
GS
3192 RESTORE_NUMERIC_LOCAL();
3193 });
65202027 3194#else
572bbb43 3195 DEBUG_c({
f93f4e46 3196 STORE_NUMERIC_LOCAL_SET_STANDARD();
1779d84d 3197 PerlIO_printf(Perl_debug_log, "0x%"UVxf" num(%"NVgf")\n",
1d7c1841 3198 PTR2UV(sv), SvNVX(sv));
097ee67d
JH
3199 RESTORE_NUMERIC_LOCAL();
3200 });
572bbb43 3201#endif
79072805
LW
3202 }
3203 else if (SvTYPE(sv) < SVt_PVNV)
3204 sv_upgrade(sv, SVt_PVNV);
59d8ce62
NC
3205 if (SvNOKp(sv)) {
3206 return SvNVX(sv);
61604483 3207 }
59d8ce62 3208 if (SvIOKp(sv)) {
65202027 3209 SvNVX(sv) = SvIsUV(sv) ? (NV)SvUVX(sv) : (NV)SvIVX(sv);
28e5dec8
JH
3210#ifdef NV_PRESERVES_UV
3211 SvNOK_on(sv);
3212#else
3213 /* Only set the public NV OK flag if this NV preserves the IV */
3214 /* Check it's not 0xFFFFFFFFFFFFFFFF */
3215 if (SvIsUV(sv) ? ((SvUVX(sv) != UV_MAX)&&(SvUVX(sv) == U_V(SvNVX(sv))))
3216 : (SvIVX(sv) == I_V(SvNVX(sv))))
3217 SvNOK_on(sv);
3218 else
3219 SvNOKp_on(sv);
3220#endif
93a17b20 3221 }
748a9306 3222 else if (SvPOKp(sv) && SvLEN(sv)) {
c2988b20
NC
3223 UV value;
3224 int numtype = grok_number(SvPVX(sv), SvCUR(sv), &value);
3225 if (ckWARN(WARN_NUMERIC) && !SvIOKp(sv) && !numtype)
a0d0e21e 3226 not_a_number(sv);
28e5dec8 3227#ifdef NV_PRESERVES_UV
c2988b20
NC
3228 if ((numtype & (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT))
3229 == IS_NUMBER_IN_UV) {
5e045b90 3230 /* It's definitely an integer */
c2988b20
NC
3231 SvNVX(sv) = (numtype & IS_NUMBER_NEG) ? -(NV)value : (NV)value;
3232 } else
3233 SvNVX(sv) = Atof(SvPVX(sv));
28e5dec8
JH
3234 SvNOK_on(sv);
3235#else
c2988b20 3236 SvNVX(sv) = Atof(SvPVX(sv));
28e5dec8
JH
3237 /* Only set the public NV OK flag if this NV preserves the value in
3238 the PV at least as well as an IV/UV would.
3239 Not sure how to do this 100% reliably. */
3240 /* if that shift count is out of range then Configure's test is
3241 wonky. We shouldn't be in here with NV_PRESERVES_UV_BITS ==
3242 UV_BITS */
3243 if (((UV)1 << NV_PRESERVES_UV_BITS) >
c2988b20 3244 U_V(SvNVX(sv) > 0 ? SvNVX(sv) : -SvNVX(sv))) {
28e5dec8 3245 SvNOK_on(sv); /* Definitely small enough to preserve all bits */
c2988b20
NC
3246 } else if (!(numtype & IS_NUMBER_IN_UV)) {
3247 /* Can't use strtol etc to convert this string, so don't try.
3248 sv_2iv and sv_2uv will use the NV to convert, not the PV. */
3249 SvNOK_on(sv);
3250 } else {
3251 /* value has been set. It may not be precise. */
3252 if ((numtype & IS_NUMBER_NEG) && (value > (UV)IV_MIN)) {
3253 /* 2s complement assumption for (UV)IV_MIN */
3254 SvNOK_on(sv); /* Integer is too negative. */
3255 } else {
3256 SvNOKp_on(sv);
3257 SvIOKp_on(sv);
6fa402ec 3258
c2988b20
NC
3259 if (numtype & IS_NUMBER_NEG) {
3260 SvIVX(sv) = -(IV)value;
3261 } else if (value <= (UV)IV_MAX) {
3262 SvIVX(sv) = (IV)value;
3263 } else {
3264 SvUVX(sv) = value;
3265 SvIsUV_on(sv);
3266 }
3267
3268 if (numtype & IS_NUMBER_NOT_INT) {
3269 /* I believe that even if the original PV had decimals,
3270 they are lost beyond the limit of the FP precision.
3271 However, neither is canonical, so both only get p
3272 flags. NWC, 2000/11/25 */
3273 /* Both already have p flags, so do nothing */
3274 } else {
3275 NV nv = SvNVX(sv);
3276 if (SvNVX(sv) < (NV)IV_MAX + 0.5) {
3277 if (SvIVX(sv) == I_V(nv)) {
3278 SvNOK_on(sv);
3279 SvIOK_on(sv);
3280 } else {
3281 SvIOK_on(sv);
3282 /* It had no "." so it must be integer. */
3283 }
3284 } else {
3285 /* between IV_MAX and NV(UV_MAX).
3286 Could be slightly > UV_MAX */
6fa402ec 3287
c2988b20
NC
3288 if (numtype & IS_NUMBER_NOT_INT) {
3289 /* UV and NV both imprecise. */
3290 } else {
3291 UV nv_as_uv = U_V(nv);
3292
3293 if (value == nv_as_uv && SvUVX(sv) != UV_MAX) {
3294 SvNOK_on(sv);
3295 SvIOK_on(sv);
3296 } else {
3297 SvIOK_on(sv);
3298 }
3299 }
3300 }
3301 }
3302 }
3303 }
28e5dec8 3304#endif /* NV_PRESERVES_UV */
93a17b20 3305 }
79072805 3306 else {
599cee73 3307 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing && !(SvFLAGS(sv) & SVs_PADTMP))
29489e7c 3308 report_uninit(sv);
25da4f38
IZ
3309 if (SvTYPE(sv) < SVt_NV)
3310 /* Typically the caller expects that sv_any is not NULL now. */
28e5dec8
JH
3311 /* XXX Ilya implies that this is a bug in callers that assume this
3312 and ideally should be fixed. */
25da4f38 3313 sv_upgrade(sv, SVt_NV);
a0d0e21e 3314 return 0.0;
79072805 3315 }
572bbb43 3316#if defined(USE_LONG_DOUBLE)
097ee67d 3317 DEBUG_c({
f93f4e46 3318 STORE_NUMERIC_LOCAL_SET_STANDARD();
1d7c1841
GS
3319 PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2nv(%" PERL_PRIgldbl ")\n",
3320 PTR2UV(sv), SvNVX(sv));
572bbb43
GS
3321 RESTORE_NUMERIC_LOCAL();
3322 });
65202027 3323#else
572bbb43 3324 DEBUG_c({
f93f4e46 3325 STORE_NUMERIC_LOCAL_SET_STANDARD();
1779d84d 3326 PerlIO_printf(Perl_debug_log, "0x%"UVxf" 1nv(%"NVgf")\n",
1d7c1841 3327 PTR2UV(sv), SvNVX(sv));
097ee67d
JH
3328 RESTORE_NUMERIC_LOCAL();
3329 });
572bbb43 3330#endif
463ee0b2 3331 return SvNVX(sv);
79072805
LW
3332}
3333
645c22ef
DM
3334/* asIV(): extract an integer from the string value of an SV.
3335 * Caller must validate PVX */
3336
76e3520e 3337STATIC IV
cea2e8a9 3338S_asIV(pTHX_ SV *sv)
36477c24 3339{
c2988b20
NC
3340 UV value;
3341 int numtype = grok_number(SvPVX(sv), SvCUR(sv), &value);
3342
3343 if ((numtype & (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT))
3344 == IS_NUMBER_IN_UV) {
645c22ef 3345 /* It's definitely an integer */
c2988b20
NC
3346 if (numtype & IS_NUMBER_NEG) {
3347 if (value < (UV)IV_MIN)
3348 return -(IV)value;
3349 } else {
3350 if (value < (UV)IV_MAX)
3351 return (IV)value;
3352 }
3353 }
d008e5eb 3354 if (!numtype) {
d008e5eb
GS
3355 if (ckWARN(WARN_NUMERIC))
3356 not_a_number(sv);
3357 }
c2988b20 3358 return I_V(Atof(SvPVX(sv)));
36477c24 3359}
3360
645c22ef
DM
3361/* asUV(): extract an unsigned integer from the string value of an SV
3362 * Caller must validate PVX */
3363
76e3520e 3364STATIC UV
cea2e8a9 3365S_asUV(pTHX_ SV *sv)
36477c24 3366{
c2988b20
NC
3367 UV value;
3368 int numtype = grok_number(SvPVX(sv), SvCUR(sv), &value);
36477c24 3369
c2988b20
NC
3370 if ((numtype & (IS_NUMBER_IN_UV | IS_NUMBER_NOT_INT))
3371 == IS_NUMBER_IN_UV) {
645c22ef 3372 /* It's definitely an integer */
6fa402ec 3373 if (!(numtype & IS_NUMBER_NEG))
c2988b20
NC
3374 return value;
3375 }
d008e5eb 3376 if (!numtype) {
d008e5eb
GS
3377 if (ckWARN(WARN_NUMERIC))
3378 not_a_number(sv);
3379 }
097ee67d 3380 return U_V(Atof(SvPVX(sv)));
36477c24 3381}
3382
645c22ef
DM
3383/*
3384=for apidoc sv_2pv_nolen
3385
3386Like C<sv_2pv()>, but doesn't return the length too. You should usually
3387use the macro wrapper C<SvPV_nolen(sv)> instead.
3388=cut
3389*/
3390
79072805 3391char *
864dbfa3 3392Perl_sv_2pv_nolen(pTHX_ register SV *sv)
1fa8b10d
JD
3393{
3394 STRLEN n_a;
3395 return sv_2pv(sv, &n_a);
3396}
3397
645c22ef
DM
3398/* uiv_2buf(): private routine for use by sv_2pv_flags(): print an IV or
3399 * UV as a string towards the end of buf, and return pointers to start and
3400 * end of it.
3401 *
3402 * We assume that buf is at least TYPE_CHARS(UV) long.
3403 */
3404
864dbfa3 3405static char *
25da4f38
IZ
3406uiv_2buf(char *buf, IV iv, UV uv, int is_uv, char **peob)
3407{
25da4f38
IZ
3408 char *ptr = buf + TYPE_CHARS(UV);
3409 char *ebuf = ptr;
3410 int sign;
25da4f38
IZ
3411
3412 if (is_uv)
3413 sign = 0;
3414 else if (iv >= 0) {
3415 uv = iv;
3416 sign = 0;
3417 } else {
3418 uv = -iv;
3419 sign = 1;
3420 }
3421 do {
eb160463 3422 *--ptr = '0' + (char)(uv % 10);
25da4f38
IZ
3423 } while (uv /= 10);
3424 if (sign)
3425 *--ptr = '-';
3426 *peob = ebuf;
3427 return ptr;
3428}
3429
09540bc3
JH
3430/* sv_2pv() is now a macro using Perl_sv_2pv_flags();
3431 * this function provided for binary compatibility only
3432 */
3433
3434char *
3435Perl_sv_2pv(pTHX_ register SV *sv, STRLEN *lp)
3436{
3437 return sv_2pv_flags(sv, lp, SV_GMAGIC);
3438}
3439
645c22ef
DM
3440/*
3441=for apidoc sv_2pv_flags
3442
ff276b08 3443Returns a pointer to the string value of an SV, and sets *lp to its length.
645c22ef
DM
3444If flags includes SV_GMAGIC, does an mg_get() first. Coerces sv to a string
3445if necessary.
3446Normally invoked via the C<SvPV_flags> macro. C<sv_2pv()> and C<sv_2pv_nomg>
3447usually end up here too.
3448
3449=cut
3450*/
3451
8d6d96c1
HS
3452char *
3453Perl_sv_2pv_flags(pTHX_ register SV *sv, STRLEN *lp, I32 flags)
3454{
79072805
LW
3455 register char *s;
3456 int olderrno;
cb50f42d 3457 SV *tsv, *origsv;
25da4f38
IZ
3458 char tbuf[64]; /* Must fit sprintf/Gconvert of longest IV/NV */
3459 char *tmpbuf = tbuf;
79072805 3460
463ee0b2
LW
3461 if (!sv) {
3462 *lp = 0;
3463 return "";
3464 }
8990e307 3465 if (SvGMAGICAL(sv)) {
8d6d96c1
HS
3466 if (flags & SV_GMAGIC)
3467 mg_get(sv);
463ee0b2
LW
3468 if (SvPOKp(sv)) {
3469 *lp = SvCUR(sv);
3470 return SvPVX(sv);
3471 }
cf2093f6 3472 if (SvIOKp(sv)) {
1c846c1f 3473 if (SvIsUV(sv))
57def98f 3474 (void)sprintf(tmpbuf,"%"UVuf, (UV)SvUVX(sv));
cf2093f6 3475 else
57def98f 3476 (void)sprintf(tmpbuf,"%"IVdf, (IV)SvIVX(sv));
46fc3d4c 3477 tsv = Nullsv;
a0d0e21e 3478 goto tokensave;
463ee0b2
LW
3479 }
3480 if (SvNOKp(sv)) {
2d4389e4 3481 Gconvert(SvNVX(sv), NV_DIG, 0, tmpbuf);
46fc3d4c 3482 tsv = Nullsv;
a0d0e21e 3483 goto tokensave;
463ee0b2 3484 }
16d20bd9 3485 if (!SvROK(sv)) {
d008e5eb 3486 if (!(SvFLAGS(sv) & SVs_PADTMP)) {
d008e5eb 3487 if (ckWARN(WARN_UNINITIALIZED) && !PL_localizing)
29489e7c 3488 report_uninit(sv);
c6ee37c5 3489 }
16d20bd9
AD
3490 *lp = 0;
3491 return "";
3492 }
463ee0b2 3493 }
ed6116ce
LW
3494 if (SvTHINKFIRST(sv)) {
3495 if (SvROK(sv)) {
a0d0e21e 3496 SV* tmpstr;
1554e226 3497 if (SvAMAGIC(sv) && (tmpstr=AMG_CALLun(sv,string)) &&
b4b9a328 3498 (!SvROK(tmpstr) || (SvRV(tmpstr) != SvRV(sv)))) {
446eaa42
YST
3499 char *pv = SvPV(tmpstr, *lp);
3500 if (SvUTF8(tmpstr))
3501 SvUTF8_on(sv);
3502 else
3503 SvUTF8_off(sv);
3504 return pv;
3505 }
cb50f42d 3506 origsv = sv;
ed6116ce
LW
3507 sv = (SV*)SvRV(sv);
3508 if (!sv)
3509 s = "NULLREF";
3510 else {
f9277f47
IZ
3511 MAGIC *mg;
3512
ed6116ce 3513 switch (SvTYPE(sv)) {
f9277f47
IZ
3514 case SVt_PVMG:
3515 if ( ((SvFLAGS(sv) &
1c846c1f 3516 (SVs_OBJECT|SVf_OK|SVs_GMG|SVs_SMG|SVs_RMG))
faf82a0b 3517 == (SVs_OBJECT|SVs_SMG))
14befaf4 3518 && (mg = mg_find(sv, PERL_MAGIC_qr))) {
2cd61cdb 3519 regexp *re = (regexp *)mg->mg_obj;
1bd3ad17 3520
2cd61cdb 3521 if (!mg->mg_ptr) {
8782bef2
GB
3522 char *fptr = "msix";
3523 char reflags[6];
3524 char ch;
3525 int left = 0;
3526 int right = 4;
ff385a1b 3527 char need_newline = 0;
eb160463 3528 U16 reganch = (U16)((re->reganch & PMf_COMPILETIME) >> 12);
8782bef2 3529
155aba94 3530 while((ch = *fptr++)) {
8782bef2
GB
3531 if(reganch & 1) {
3532 reflags[left++] = ch;
3533 }
3534 else {
3535 reflags[right--] = ch;
3536 }
3537 reganch >>= 1;
3538 }
3539 if(left != 4) {
3540 reflags[left] = '-';
3541 left = 5;
3542 }
3543
3544 mg->mg_len = re->prelen + 4 + left;
ff385a1b
JF
3545 /*
3546 * If /x was used, we have to worry about a regex
3547 * ending with a comment later being embedded
3548 * within another regex. If so, we don't want this
3549 * regex's "commentization" to leak out to the
3550 * right part of the enclosing regex, we must cap
3551 * it with a newline.
3552 *
3553 * So, if /x was used, we scan backwards from the
3554 * end of the regex. If we find a '#' before we
3555 * find a newline, we need to add a newline
3556 * ourself. If we find a '\n' first (or if we
3557 * don't find '#' or '\n'), we don't need to add
3558 * anything. -jfriedl
3559 */
3560 if (PMf_EXTENDED & re->reganch)
3561 {
3562 char *endptr = re->precomp + re->prelen;
3563 while (endptr >= re->precomp)
3564 {
3565 char c = *(endptr--);
3566 if (c == '\n')
3567 break; /* don't need another */
3568 if (c == '#') {
3569 /* we end while in a comment, so we
3570 need a newline */
3571 mg->mg_len++; /* save space for it */
3572 need_newline = 1; /* note to add it */
ab01544f 3573 break;
ff385a1b
JF
3574 }
3575 }
3576 }
3577
8782bef2
GB
3578 New(616, mg->mg_ptr, mg->mg_len + 1 + left, char);
3579 Copy("(?", mg->mg_ptr, 2, char);
3580 Copy(reflags, mg->mg_ptr+2, left, char);
3581 Copy(":", mg->mg_ptr+left+2, 1, char);
3582 Copy(re->precomp, mg->mg_ptr+3+left, re->prelen, char);
ff385a1b
JF
3583 if (need_newline)
3584 mg->mg_ptr[mg->mg_len - 2] = '\n';
1bd3ad17
IZ
3585 mg->mg_ptr[mg->mg_len - 1] = ')';
3586 mg->mg_ptr[mg->mg_len] = 0;
3587 }
3280af22 3588 PL_reginterp_cnt += re->program[0].next_off;
cb50f42d
YST
3589
3590 if (re->reganch & ROPT_UTF8)
3591 SvUTF8_on(origsv);
3592 else
3593 SvUTF8_off(origsv);
1bd3ad17
IZ
3594 *lp = mg->mg_len;
3595 return mg->mg_ptr;
f9277f47
IZ
3596 }
3597 /* Fall through */
ed6116ce
LW
3598 case SVt_NULL:
3599 case SVt_IV:
3600 case SVt_NV:
3601 case SVt_RV:
3602 case SVt_PV:
3603 case SVt_PVIV:
3604 case SVt_PVNV:
81689caa
HS
3605 case SVt_PVBM: if (SvROK(sv))
3606 s = "REF";
3607 else
3608 s = "SCALAR"; break;
be65207d
DM
3609 case SVt_PVLV: s = SvROK(sv) ? "REF"
3610 /* tied lvalues should appear to be
3611 * scalars for backwards compatitbility */
3612 : (LvTYPE(sv) == 't' || LvTYPE(sv) == 'T')
3613 ? "SCALAR" : "LVALUE"; break;
ed6116ce
LW
3614 case SVt_PVAV: s = "ARRAY"; break;
3615 case SVt_PVHV: s = "HASH"; break;
3616 case SVt_PVCV: s = "CODE"; break;
3617 case SVt_PVGV: s = "GLOB"; break;
1d2dff63 3618 case SVt_PVFM: s = "FORMAT"; break;
36477c24 3619 case SVt_PVIO: s = "IO"; break;
ed6116ce
LW
3620 default: s = "UNKNOWN"; break;
3621 }
46fc3d4c 3622 tsv = NEWSV(0,0);
de11ba31 3623 if (SvOBJECT(sv))
e27ad1f2
AV
3624 if (HvNAME(SvSTASH(sv)))
3625 Perl_sv_setpvf(aTHX_ tsv, "%s=%s", HvNAME(SvSTASH(sv)), s);
3626 else
3627 Perl_sv_setpvf(aTHX_ tsv, "__ANON__=%s", s);
ed6116ce 3628 else
46fc3d4c 3629 sv_setpv(tsv, s);
57def98f 3630 Perl_sv_catpvf(aTHX_ tsv, "(0x%"UVxf")", PTR2UV(sv));
a0d0e21e 3631 goto tokensaveref;
463ee0b2 3632 }
ed6116ce
LW
3633 *lp = strlen(s);
3634 return s;
79072805 3635 }
0336b60e 3636 if (SvREADONLY(sv) && !SvOK(sv)) {
0336b60e 3637 if (ckWARN(WARN_UNINITIALIZED))
29489e7c 3638 report_uninit(sv);
ed6116ce
LW
3639 *lp = 0;
3640 return "";
79072805 3641 }
79072805 3642 }
28e5dec8
JH
3643 if (SvIOK(sv) || ((SvIOKp(sv) && !SvNOKp(sv)))) {
3644 /* I'm assuming that if both IV and NV are equally valid then
3645 converting the IV is going to be more efficient */
3646 U32 isIOK = SvIOK(sv);
3647 U32 isUIOK = SvIsUV(sv);
3648 char buf[TYPE_CHARS(UV)];
3649 char *ebuf, *ptr;
3650
3651 if (SvTYPE(sv) < SVt_PVIV)
3652 sv_upgrade(sv, SVt_PVIV);
3653 if (isUIOK)
3654 ptr = uiv_2buf(buf, 0, SvUVX(sv), 1, &ebuf);
3655 else
3656 ptr = uiv_2buf(buf, SvIVX(sv), 0, 0, &ebuf);
eb160463 3657 SvGROW(sv, (STRLEN)(ebuf - ptr + 1)); /* inlined from sv_setpvn */
28e5dec8
JH
3658 Move(ptr,SvPVX(sv),ebuf - ptr,char);
3659 SvCUR_set(sv, ebuf - ptr);
3660 s = SvEND(sv);
3661 *s = '\0';
3662 if (isIOK)
3663 SvIOK_on(sv);
3664 else
3665 SvIOKp_on(sv);
3666 if (isUIOK)
3667 SvIsUV_on(sv);
3668 }
3669 else if (SvNOKp(sv)) {
79072805
LW
3670 if (SvTYPE(sv) < SVt_PVNV)
3671 sv_upgrade(sv, SVt_PVNV);
1c846c1f 3672 /* The +20 is pure guesswork. Configure test needed. --jhi */
59155cc0 3673 SvGROW(sv, NV_DIG + 20);
463ee0b2 3674 s = SvPVX(sv);
79072805 3675 olderrno = errno; /* some Xenix systems wipe out errno here */
79072805 3676#ifdef apollo
463ee0b2 3677 if (SvNVX(sv) == 0.0)
79072805
LW
3678 (void)strcpy(s,"0");
3679 else
3680#endif /*apollo*/
bbce6d69 3681 {
2d4389e4 3682 Gconvert(SvNVX(sv), NV_DIG, 0, s);
bbce6d69 3683 }
79072805 3684 errno = olderrno;
a0d0e21e
LW
3685#ifdef FIXNEGATIVEZERO
3686 if (*s == '-' && s[1] == '0' && !s[2])
3687 strcpy(s,"0");
3688#endif
79072805
LW
3689 while (*s) s++;
3690#ifdef hcx
3691 if (s[-1] == '.')
46fc3d4c 3692 *--s = '\0';
79072805
LW
3693#endif
3694 }
79072805 3695 else {
0336b60e
IZ
3696 if (ckWARN(WARN_UNINITIALIZED)
3697 && !PL_localizing && !(SvFLAGS(sv) & SVs_PADTMP))
29489e7c 3698 report_uninit(sv);
a0d0e21e 3699 *lp = 0;
25da4f38
IZ
3700 if (SvTYPE(sv) < SVt_PV)
3701 /* Typically the caller expects that sv_any is not NULL now. */
3702 sv_upgrade(sv, SVt_PV);
a0d0e21e 3703 return "";
79072805 3704 }
463ee0b2
LW
3705 *lp = s - SvPVX(sv);
3706 SvCUR_set(sv, *lp);
79072805 3707 SvPOK_on(sv);
1d7c1841
GS
3708 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2pv(%s)\n",
3709 PTR2UV(sv),SvPVX(sv)));
463ee0b2 3710 return SvPVX(sv);
a0d0e21e
LW
3711
3712 tokensave:
3713 if (SvROK(sv)) { /* XXX Skip this when sv_pvn_force calls */
3714 /* Sneaky stuff here */
3715
3716 tokensaveref:
46fc3d4c 3717 if (!tsv)
96827780 3718 tsv = newSVpv(tmpbuf, 0);
46fc3d4c 3719 sv_2mortal(tsv);
3720 *lp = SvCUR(tsv);
3721 return SvPVX(tsv);
a0d0e21e
LW
3722 }
3723 else {
3724 STRLEN len;
46fc3d4c 3725 char *t;
3726
3727 if (tsv) {
3728 sv_2mortal(tsv);
3729 t = SvPVX(tsv);
3730 len = SvCUR(tsv);
3731 }
3732 else {
96827780
MB
3733 t = tmpbuf;
3734 len = strlen(tmpbuf);
46fc3d4c 3735 }
a0d0e21e 3736#ifdef FIXNEGATIVEZERO
46fc3d4c 3737 if (len == 2 && t[0] == '-' && t[1] == '0') {
3738 t = "0";
3739 len = 1;
3740 }
a0d0e21e
LW
3741#endif
3742 (void)SvUPGRADE(sv, SVt_PV);
46fc3d4c 3743 *lp = len;
a0d0e21e
LW
3744 s = SvGROW(sv, len + 1);
3745 SvCUR_set(sv, len);
6bf554b4 3746 SvPOKp_on(sv);
e90e2364 3747 return strcpy(s, t);
a0d0e21e 3748 }
463ee0b2
LW
3749}
3750
645c22ef 3751/*
6050d10e
JP
3752=for apidoc sv_copypv
3753
3754Copies a stringified representation of the source SV into the
3755destination SV. Automatically performs any necessary mg_get and
54f0641b 3756coercion of numeric values into strings. Guaranteed to preserve
6050d10e 3757UTF-8 flag even from overloaded objects. Similar in nature to
54f0641b
NIS
3758sv_2pv[_flags] but operates directly on an SV instead of just the
3759string. Mostly uses sv_2pv_flags to do its work, except when that
6050d10e
JP
3760would lose the UTF-8'ness of the PV.
3761
3762=cut
3763*/
3764
3765void
3766Perl_sv_copypv(pTHX_ SV *dsv, register SV *ssv)
3767{
446eaa42
YST
3768 STRLEN len;
3769 char *s;
3770 s = SvPV(ssv,len);
cb50f42d 3771 sv_setpvn(dsv,s,len);
446eaa42 3772 if (SvUTF8(ssv))
cb50f42d 3773 SvUTF8_on(dsv);
446eaa42 3774 else
cb50f42d 3775 SvUTF8_off(dsv);
6050d10e
JP
3776}
3777
3778/*
645c22ef
DM
3779=for apidoc sv_2pvbyte_nolen
3780
3781Return a pointer to the byte-encoded representation of the SV.
1e54db1a 3782May cause the SV to be downgraded from UTF-8 as a side-effect.
645c22ef
DM
3783
3784Usually accessed via the C<SvPVbyte_nolen> macro.
3785
3786=cut
3787*/
3788
7340a771
GS
3789char *
3790Perl_sv_2pvbyte_nolen(pTHX_ register SV *sv)
3791{
560a288e
GS
3792 STRLEN n_a;
3793 return sv_2pvbyte(sv, &n_a);
7340a771
GS
3794}
3795
645c22ef
DM
3796/*
3797=for apidoc sv_2pvbyte
3798
3799Return a pointer to the byte-encoded representation of the SV, and set *lp
1e54db1a 3800to its length. May cause the SV to be downgraded from UTF-8 as a
645c22ef
DM
3801side-effect.
3802
3803Usually accessed via the C<SvPVbyte> macro.
3804
3805=cut
3806*/
3807
7340a771
GS
3808char *
3809Perl_sv_2pvbyte(pTHX_ register SV *sv, STRLEN *lp)
3810{
0875d2fe
NIS
3811 sv_utf8_downgrade(sv,0);
3812 return SvPV(sv,*lp);
7340a771
GS
3813}
3814
645c22ef
DM
3815/*
3816=for apidoc sv_2pvutf8_nolen
3817
1e54db1a
JH
3818Return a pointer to the UTF-8-encoded representation of the SV.
3819May cause the SV to be upgraded to UTF-8 as a side-effect.
645c22ef
DM
3820
3821Usually accessed via the C<SvPVutf8_nolen> macro.
3822
3823=cut
3824*/
3825
7340a771
GS
3826char *
3827Perl_sv_2pvutf8_nolen(pTHX_ register SV *sv)
3828{
560a288e
GS
3829 STRLEN n_a;
3830 return sv_2pvutf8(sv, &n_a);
7340a771
GS
3831}
3832
645c22ef
DM
3833/*
3834=for apidoc sv_2pvutf8
3835
1e54db1a
JH
3836Return a pointer to the UTF-8-encoded representation of the SV, and set *lp
3837to its length. May cause the SV to be upgraded to UTF-8 as a side-effect.
645c22ef
DM
3838
3839Usually accessed via the C<SvPVutf8> macro.
3840
3841=cut
3842*/
3843
7340a771
GS
3844char *
3845Perl_sv_2pvutf8(pTHX_ register SV *sv, STRLEN *lp)
3846{
560a288e 3847 sv_utf8_upgrade(sv);
7d59b7e4 3848 return SvPV(sv,*lp);
7340a771 3849}
1c846c1f 3850
645c22ef
DM
3851/*
3852=for apidoc sv_2bool
3853
3854This function is only called on magical items, and is only used by
8cf8f3d1 3855sv_true() or its macro equivalent.
645c22ef
DM
3856
3857=cut
3858*/
3859
463ee0b2 3860bool
864dbfa3 3861Perl_sv_2bool(pTHX_ register SV *sv)
463ee0b2 3862{
8990e307 3863 if (SvGMAGICAL(sv))
463ee0b2
LW
3864 mg_get(sv);
3865
a0d0e21e
LW
3866 if (!SvOK(sv))
3867 return 0;
3868 if (SvROK(sv)) {
a0d0e21e 3869 SV* tmpsv;
1554e226 3870 if (SvAMAGIC(sv) && (tmpsv=AMG_CALLun(sv,bool_)) &&
9e3013b1 3871 (!SvROK(tmpsv) || (SvRV(tmpsv) != SvRV(sv))))
8a31060d 3872 return (bool)SvTRUE(tmpsv);
a0d0e21e
LW
3873 return SvRV(sv) != 0;
3874 }
463ee0b2 3875 if (SvPOKp(sv)) {
11343788
MB
3876 register XPV* Xpvtmp;
3877 if ((Xpvtmp = (XPV*)SvANY(sv)) &&
3878 (*Xpvtmp->xpv_pv > '0' ||
3879 Xpvtmp->xpv_cur > 1 ||
3880 (Xpvtmp->xpv_cur && *Xpvtmp->xpv_pv != '0')))
463ee0b2
LW
3881 return 1;
3882 else
3883 return 0;
3884 }
3885 else {
3886 if (SvIOKp(sv))
3887 return SvIVX(sv) != 0;
3888 else {
3889 if (SvNOKp(sv))
3890 return SvNVX(sv) != 0.0;
3891 else
3892 return FALSE;
3893 }
3894 }
79072805
LW
3895}
3896
09540bc3
JH
3897/* sv_utf8_upgrade() is now a macro using sv_utf8_upgrade_flags();
3898 * this function provided for binary compatibility only
3899 */
3900
3901
3902STRLEN
3903Perl_sv_utf8_upgrade(pTHX_ register SV *sv)
3904{
3905 return sv_utf8_upgrade_flags(sv, SV_GMAGIC);
3906}
3907
c461cf8f
JH
3908/*
3909=for apidoc sv_utf8_upgrade
3910
78ea37eb 3911Converts the PV of an SV to its UTF-8-encoded form.
645c22ef 3912Forces the SV to string form if it is not already.
4411f3b6
NIS
3913Always sets the SvUTF8 flag to avoid future validity checks even
3914if all the bytes have hibit clear.
c461cf8f 3915
13a6c0e0
JH
3916This is not as a general purpose byte encoding to Unicode interface:
3917use the Encode extension for that.
3918
8d6d96c1
HS
3919=for apidoc sv_utf8_upgrade_flags
3920
78ea37eb 3921Converts the PV of an SV to its UTF-8-encoded form.
645c22ef 3922Forces the SV to string form if it is not already.
8d6d96c1
HS
3923Always sets the SvUTF8 flag to avoid future validity checks even
3924if all the bytes have hibit clear. If C<flags> has C<SV_GMAGIC> bit set,
3925will C<mg_get> on C<sv> if appropriate, else not. C<sv_utf8_upgrade> and
3926C<sv_utf8_upgrade_nomg> are implemented in terms of this function.
3927
13a6c0e0
JH
3928This is not as a general purpose byte encoding to Unicode interface:
3929use the Encode extension for that.
3930
8d6d96c1
HS
3931=cut
3932*/
3933
3934STRLEN
3935Perl_sv_utf8_upgrade_flags(pTHX_ register SV *sv, I32 flags)
3936{
db42d148 3937 U8 *s, *t, *e;
511c2ff0 3938 int hibit = 0;
560a288e 3939
808c356f
RGS
3940 if (sv == &PL_sv_undef)
3941 return 0;
e0e62c2a
NIS
3942 if (!SvPOK(sv)) {
3943 STRLEN len = 0;
d52b7888
NC
3944 if (SvREADONLY(sv) && (SvPOKp(sv) || SvIOKp(sv) || SvNOKp(sv))) {
3945 (void) sv_2pv_flags(sv,&len, flags);
3946 if (SvUTF8(sv))
3947 return len;
3948 } else {
3949 (void) SvPV_force(sv,len);
3950 }
e0e62c2a 3951 }
4411f3b6 3952
f5cee72b 3953 if (SvUTF8(sv)) {
5fec3b1d 3954 return SvCUR(sv);
f5cee72b 3955 }
5fec3b1d 3956
765f542d
NC
3957 if (SvIsCOW(sv)) {
3958 sv_force_normal_flags(sv, 0);
db42d148
NIS
3959 }
3960
88632417 3961 if (PL_encoding && !(flags & SV_UTF8_NO_ENCODING))
799ef3cb 3962 sv_recode_to_utf8(sv, PL_encoding);
9f4817db 3963 else { /* Assume Latin-1/EBCDIC */
0a378802
JH
3964 /* This function could be much more efficient if we
3965 * had a FLAG in SVs to signal if there are any hibit
3966 * chars in the PV. Given that there isn't such a flag
3967 * make the loop as fast as possible. */
3968 s = (U8 *) SvPVX(sv);
3969 e = (U8 *) SvEND(sv);
3970 t = s;
3971 while (t < e) {
3972 U8 ch = *t++;
3973 if ((hibit = !NATIVE_IS_INVARIANT(ch)))
3974 break;
3975 }
3976 if (hibit) {
3977 STRLEN len;
cc2578a4 3978 (void)SvOOK_off(sv);
06a45632 3979 s = (U8*)SvPVX(sv);
0a378802
JH
3980 len = SvCUR(sv) + 1; /* Plus the \0 */
3981 SvPVX(sv) = (char*)bytes_to_utf8((U8*)s, &len);
3982 SvCUR(sv) = len - 1;
3983 if (SvLEN(sv) != 0)
3984 Safefree(s); /* No longer using what was there before. */
3985 SvLEN(sv) = len; /* No longer know the real size. */
3986 }
9f4817db
JH
3987 /* Mark as UTF-8 even if no hibit - saves scanning loop */
3988 SvUTF8_on(sv);
560a288e 3989 }
4411f3b6 3990 return SvCUR(sv);
560a288e
GS
3991}
3992
c461cf8f
JH
3993/*
3994=for apidoc sv_utf8_downgrade
3995
78ea37eb
TS
3996Attempts to convert the PV of an SV from characters to bytes.
3997If the PV contains a character beyond byte, this conversion will fail;
3998in this case, either returns false or, if C<fail_ok> is not
c461cf8f
JH
3999true, croaks.
4000
13a6c0e0
JH
4001This is not as a general purpose Unicode to byte encoding interface:
4002use the Encode extension for that.
4003
c461cf8f
JH
4004=cut
4005*/
4006
560a288e
GS
4007bool
4008Perl_sv_utf8_downgrade(pTHX_ register SV* sv, bool fail_ok)
4009{
78ea37eb 4010 if (SvPOKp(sv) && SvUTF8(sv)) {
fa301091 4011 if (SvCUR(sv)) {
03cfe0ae 4012 U8 *s;
652088fc 4013 STRLEN len;
fa301091 4014
765f542d
NC
4015 if (SvIsCOW(sv)) {
4016 sv_force_normal_flags(sv, 0);
4017 }
03cfe0ae
NIS
4018 s = (U8 *) SvPV(sv, len);
4019 if (!utf8_to_bytes(s, &len)) {
fa301091
JH
4020 if (fail_ok)
4021 return FALSE;
4022 else {
4023 if (PL_op)
4024 Perl_croak(aTHX_ "Wide character in %s",
53e06cf0 4025 OP_DESC(PL_op));
fa301091
JH
4026 else
4027 Perl_croak(aTHX_ "Wide character");
4028 }
4b3603a4 4029 }
fa301091 4030 SvCUR(sv) = len;
67e989fb 4031 }
560a288e 4032 }
ffebcc3e 4033 SvUTF8_off(sv);
560a288e
GS
4034 return TRUE;
4035}
4036
c461cf8f
JH
4037/*
4038=for apidoc sv_utf8_encode
4039
78ea37eb
TS
4040Converts the PV of an SV to UTF-8, but then turns the C<SvUTF8>
4041flag off so that it looks like octets again.
c461cf8f
JH
4042
4043=cut
4044*/
4045
560a288e
GS
4046void
4047Perl_sv_utf8_encode(pTHX_ register SV *sv)
4048{
4411f3b6 4049 (void) sv_utf8_upgrade(sv);
4c94c214
NC
4050 if (SvIsCOW(sv)) {
4051 sv_force_normal_flags(sv, 0);
4052 }
4053 if (SvREADONLY(sv)) {
4054 Perl_croak(aTHX_ PL_no_modify);
4055 }
560a288e
GS
4056 SvUTF8_off(sv);
4057}
4058
4411f3b6
NIS
4059/*
4060=for apidoc sv_utf8_decode
4061
78ea37eb
TS
4062If the PV of the SV is an octet sequence in UTF-8
4063and contains a multiple-byte character, the C<SvUTF8> flag is turned on
4064so that it looks like a character. If the PV contains only single-byte
4065characters, the C<SvUTF8> flag stays being off.
4066Scans PV for validity and returns false if the PV is invalid UTF-8.
4411f3b6
NIS
4067
4068=cut
4069*/
4070
560a288e
GS
4071bool
4072Perl_sv_utf8_decode(pTHX_ register SV *sv)
4073{
78ea37eb 4074 if (SvPOKp(sv)) {
63cd0674
NIS
4075 U8 *c;
4076 U8 *e;
9cbac4c7 4077
645c22ef
DM
4078 /* The octets may have got themselves encoded - get them back as
4079 * bytes
4080 */
4081 if (!sv_utf8_downgrade(sv, TRUE))
560a288e
GS
4082 return FALSE;
4083
4084 /* it is actually just a matter of turning the utf8 flag on, but
4085 * we want to make sure everything inside is valid utf8 first.
4086 */
63cd0674
NIS
4087 c = (U8 *) SvPVX(sv);
4088 if (!is_utf8_string(c, SvCUR(sv)+1))
67e989fb 4089 return FALSE;
63cd0674 4090 e = (U8 *) SvEND(sv);
511c2ff0 4091 while (c < e) {
c4d5f83a
NIS
4092 U8 ch = *c++;
4093 if (!UTF8_IS_INVARIANT(ch)) {
67e989fb
JH
4094 SvUTF8_on(sv);
4095 break;
4096 }
560a288e 4097 }
560a288e
GS
4098 }
4099 return TRUE;
4100}
4101
09540bc3
JH
4102/* sv_setsv() is now a macro using Perl_sv_setsv_flags();
4103 * this function provided for binary compatibility only
4104 */
4105
4106void
4107Perl_sv_setsv(pTHX_ SV *dstr, register SV *sstr)
4108{
4109 sv_setsv_flags(dstr, sstr, SV_GMAGIC);
4110}
4111
954c1994
GS
4112/*
4113=for apidoc sv_setsv
4114
645c22ef
DM
4115Copies the contents of the source SV C<ssv> into the destination SV
4116C<dsv>. The source SV may be destroyed if it is mortal, so don't use this
4117function if the source SV needs to be reused. Does not handle 'set' magic.
4118Loosely speaking, it performs a copy-by-value, obliterating any previous
4119content of the destination.
4120
4121You probably want to use one of the assortment of wrappers, such as
4122C<SvSetSV>, C<SvSetSV_nosteal>, C<SvSetMagicSV> and
4123C<SvSetMagicSV_nosteal>.
4124
8d6d96c1
HS
4125=for apidoc sv_setsv_flags
4126
645c22ef
DM
4127Copies the contents of the source SV C<ssv> into the destination SV
4128C<dsv>. The source SV may be destroyed if it is mortal, so don't use this
4129function if the source SV needs to be reused. Does not handle 'set' magic.
4130Loosely speaking, it performs a copy-by-value, obliterating any previous
4131content of the destination.
4132If the C<flags> parameter has the C<SV_GMAGIC> bit set, will C<mg_get> on
5fcdf167
NC
4133C<ssv> if appropriate, else not. If the C<flags> parameter has the
4134C<NOSTEAL> bit set then the buffers of temps will not be stolen. <sv_setsv>
4135and C<sv_setsv_nomg> are implemented in terms of this function.
645c22ef
DM
4136
4137You probably want to use one of the assortment of wrappers, such as
4138C<SvSetSV>, C<SvSetSV_nosteal>, C<SvSetMagicSV> and
4139C<SvSetMagicSV_nosteal>.
4140
4141This is the primary function for copying scalars, and most other
4142copy-ish functions and macros use this underneath.
8d6d96c1
HS
4143
4144=cut
4145*/
4146
4147void
4148Perl_sv_setsv_flags(pTHX_ SV *dstr, register SV *sstr, I32 flags)
4149{
8990e307
LW
4150 register U32 sflags;
4151 register int dtype;
4152 register int stype;
463ee0b2 4153
79072805
LW
4154 if (sstr == dstr)
4155 return;
765f542d 4156 SV_CHECK_THINKFIRST_COW_DROP(dstr);
79072805 4157 if (!sstr)
3280af22 4158 sstr = &PL_sv_undef;
8990e307
LW
4159 stype = SvTYPE(sstr);
4160 dtype = SvTYPE(dstr);
79072805 4161
a0d0e21e 4162 SvAMAGIC_off(dstr);
7a5fa8a2 4163 if ( SvVOK(dstr) )
ece467f9
JP
4164 {
4165 /* need to nuke the magic */
4166 mg_free(dstr);
4167 SvRMAGICAL_off(dstr);
4168 }
9e7bc3e8 4169
463ee0b2 4170 /* There's a lot of redundancy below but we're going for speed here */
79072805 4171
8990e307 4172 switch (stype) {
79072805 4173 case SVt_NULL:
aece5585 4174 undef_sstr:
20408e3c
GS
4175 if (dtype != SVt_PVGV) {
4176 (void)SvOK_off(dstr);
4177 return;
4178 }
4179 break;
463ee0b2 4180 case SVt_IV:
aece5585
GA
4181 if (SvIOK(sstr)) {
4182 switch (dtype) {
4183 case SVt_NULL:
8990e307 4184 sv_upgrade(dstr, SVt_IV);
aece5585
GA
4185 break;
4186 case SVt_NV:
8990e307 4187 sv_upgrade(dstr, SVt_PVNV);
aece5585
GA
4188 break;
4189 case SVt_RV:
4190 case SVt_PV:
a0d0e21e 4191 sv_upgrade(dstr, SVt_PVIV);
aece5585
GA
4192 break;
4193 }
4194 (void)SvIOK_only(dstr);
4195 SvIVX(dstr) = SvIVX(sstr);
25da4f38
IZ
4196 if (SvIsUV(sstr))
4197 SvIsUV_on(dstr);
27c9684d
AP
4198 if (SvTAINTED(sstr))
4199 SvTAINT(dstr);
aece5585 4200 return;
8990e307 4201 }
aece5585
GA
4202 goto undef_sstr;
4203
463ee0b2 4204 case SVt_NV:
aece5585
GA
4205 if (SvNOK(sstr)) {
4206 switch (dtype) {
4207 case SVt_NULL:
4208 case SVt_IV:
8990e307 4209 sv_upgrade(dstr, SVt_NV);
aece5585
GA
4210 break;
4211 case SVt_RV:
4212 case SVt_PV:
4213 case SVt_PVIV:
a0d0e21e 4214 sv_upgrade(dstr, SVt_PVNV);
aece5585
GA
4215 break;
4216 }
4217 SvNVX(dstr) = SvNVX(sstr);
4218 (void)SvNOK_only(dstr);
27c9684d
AP
4219 if (SvTAINTED(sstr))
4220 SvTAINT(dstr);
aece5585 4221 return;
8990e307 4222 }
aece5585
GA
4223 goto undef_sstr;
4224
ed6116ce 4225 case SVt_RV:
8990e307 4226 if (dtype < SVt_RV)
ed6116ce 4227 sv_upgrade(dstr, SVt_RV);
c07a80fd 4228 else if (dtype == SVt_PVGV &&
23bb1b96 4229 SvROK(sstr) && SvTYPE(SvRV(sstr)) == SVt_PVGV) {
c07a80fd 4230 sstr = SvRV(sstr);
a5f75d66 4231 if (sstr == dstr) {
1d7c1841
GS
4232 if (GvIMPORTED(dstr) != GVf_IMPORTED
4233 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
4234 {
a5f75d66 4235 GvIMPORTED_on(dstr);
1d7c1841 4236 }
a5f75d66
AD
4237 GvMULTI_on(dstr);
4238 return;
4239 }
c07a80fd 4240 goto glob_assign;
4241 }
ed6116ce 4242 break;
fc36a67e 4243 case SVt_PVFM:
d89fc664
NC
4244#ifdef PERL_COPY_ON_WRITE
4245 if ((SvFLAGS(sstr) & CAN_COW_MASK) == CAN_COW_FLAGS) {
4246 if (dtype < SVt_PVIV)
4247 sv_upgrade(dstr, SVt_PVIV);
4248 break;
4249 }
4250 /* Fall through */
4251#endif
4252 case SVt_PV:
8990e307 4253 if (dtype < SVt_PV)
463ee0b2 4254 sv_upgrade(dstr, SVt_PV);
463ee0b2
LW
4255 break;
4256 case SVt_PVIV:
8990e307 4257 if (dtype < SVt_PVIV)
463ee0b2 4258 sv_upgrade(dstr, SVt_PVIV);
463ee0b2
LW
4259 break;
4260 case SVt_PVNV:
8990e307 4261 if (dtype < SVt_PVNV)
463ee0b2 4262 sv_upgrade(dstr, SVt_PVNV);
463ee0b2 4263 break;
4633a7c4
LW
4264 case SVt_PVAV:
4265 case SVt_PVHV:
4266 case SVt_PVCV:
4633a7c4 4267 case SVt_PVIO:
533c011a 4268 if (PL_op)
cea2e8a9 4269 Perl_croak(aTHX_ "Bizarre copy of %s in %s", sv_reftype(sstr, 0),
53e06cf0 4270 OP_NAME(PL_op));
4633a7c4 4271 else
cea2e8a9 4272 Perl_croak(aTHX_ "Bizarre copy of %s", sv_reftype(sstr, 0));
4633a7c4
LW
4273 break;
4274
79072805 4275 case SVt_PVGV:
8990e307 4276 if (dtype <= SVt_PVGV) {
c07a80fd 4277 glob_assign:
a5f75d66 4278 if (dtype != SVt_PVGV) {
a0d0e21e
LW
4279 char *name = GvNAME(sstr);
4280 STRLEN len = GvNAMELEN(sstr);
b76195c2
DM
4281 /* don't upgrade SVt_PVLV: it can hold a glob */
4282 if (dtype != SVt_PVLV)
4283 sv_upgrade(dstr, SVt_PVGV);
14befaf4 4284 sv_magic(dstr, dstr, PERL_MAGIC_glob, Nullch, 0);
85aff577 4285 GvSTASH(dstr) = (HV*)SvREFCNT_inc(GvSTASH(sstr));
a0d0e21e
LW
4286 GvNAME(dstr) = savepvn(name, len);
4287 GvNAMELEN(dstr) = len;
4288 SvFAKE_on(dstr); /* can coerce to non-glob */
4289 }
7bac28a0 4290 /* ahem, death to those who redefine active sort subs */
3280af22
NIS
4291 else if (PL_curstackinfo->si_type == PERLSI_SORT
4292 && GvCV(dstr) && PL_sortcop == CvSTART(GvCV(dstr)))
cea2e8a9 4293 Perl_croak(aTHX_ "Can't redefine active sort subroutine %s",
7bac28a0 4294 GvNAME(dstr));
5bd07a3d 4295
7fb37951
AMS
4296#ifdef GV_UNIQUE_CHECK
4297 if (GvUNIQUE((GV*)dstr)) {
5bd07a3d
DM
4298 Perl_croak(aTHX_ PL_no_modify);
4299 }
4300#endif
4301
a0d0e21e 4302 (void)SvOK_off(dstr);
a5f75d66 4303 GvINTRO_off(dstr); /* one-shot flag */
1edc1566 4304 gp_free((GV*)dstr);
79072805 4305 GvGP(dstr) = gp_ref(GvGP(sstr));
27c9684d
AP
4306 if (SvTAINTED(sstr))
4307 SvTAINT(dstr);
1d7c1841
GS
4308 if (GvIMPORTED(dstr) != GVf_IMPORTED
4309 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
4310 {
a5f75d66 4311 GvIMPORTED_on(dstr);
1d7c1841 4312 }
a5f75d66 4313 GvMULTI_on(dstr);
79072805
LW
4314 return;
4315 }
4316 /* FALL THROUGH */
4317
4318 default:
8d6d96c1 4319 if (SvGMAGICAL(sstr) && (flags & SV_GMAGIC)) {
973f89ab 4320 mg_get(sstr);
eb160463 4321 if ((int)SvTYPE(sstr) != stype) {
973f89ab
CS
4322 stype = SvTYPE(sstr);
4323 if (stype == SVt_PVGV && dtype <= SVt_PVGV)
4324 goto glob_assign;
4325 }
4326 }
ded42b9f 4327 if (stype == SVt_PVLV)
6fc92669 4328 (void)SvUPGRADE(dstr, SVt_PVNV);
ded42b9f 4329 else
eb160463 4330 (void)SvUPGRADE(dstr, (U32)stype);
79072805
LW
4331 }
4332
8990e307
LW
4333 sflags = SvFLAGS(sstr);
4334
4335 if (sflags & SVf_ROK) {
4336 if (dtype >= SVt_PV) {
4337 if (dtype == SVt_PVGV) {
4338 SV *sref = SvREFCNT_inc(SvRV(sstr));
4339 SV *dref = 0;
a5f75d66 4340 int intro = GvINTRO(dstr);
a0d0e21e 4341
7fb37951
AMS
4342#ifdef GV_UNIQUE_CHECK
4343 if (GvUNIQUE((GV*)dstr)) {
5bd07a3d
DM
4344 Perl_croak(aTHX_ PL_no_modify);
4345 }
4346#endif
4347
a0d0e21e 4348 if (intro) {
a5f75d66 4349 GvINTRO_off(dstr); /* one-shot flag */
1d7c1841 4350 GvLINE(dstr) = CopLINE(PL_curcop);
1edc1566 4351 GvEGV(dstr) = (GV*)dstr;
a0d0e21e 4352 }
a5f75d66 4353 GvMULTI_on(dstr);
8990e307
LW
4354 switch (SvTYPE(sref)) {
4355 case SVt_PVAV:
a0d0e21e 4356 if (intro)
890ed176 4357 SAVEGENERICSV(GvAV(dstr));
a0d0e21e
LW
4358 else
4359 dref = (SV*)GvAV(dstr);
8990e307 4360 GvAV(dstr) = (AV*)sref;
39bac7f7 4361 if (!GvIMPORTED_AV(dstr)
1d7c1841
GS
4362 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
4363 {
a5f75d66 4364 GvIMPORTED_AV_on(dstr);
1d7c1841 4365 }
8990e307
LW
4366 break;
4367 case SVt_PVHV:
a0d0e21e 4368 if (intro)
890ed176 4369 SAVEGENERICSV(GvHV(dstr));
a0d0e21e
LW
4370 else
4371 dref = (SV*)GvHV(dstr);
8990e307 4372 GvHV(dstr) = (HV*)sref;
39bac7f7 4373 if (!GvIMPORTED_HV(dstr)
1d7c1841
GS
4374 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
4375 {
a5f75d66 4376 GvIMPORTED_HV_on(dstr);
1d7c1841 4377 }
8990e307
LW
4378 break;
4379 case SVt_PVCV:
8ebc5c01 4380 if (intro) {
4381 if (GvCVGEN(dstr) && GvCV(dstr) != (CV*)sref) {
4382 SvREFCNT_dec(GvCV(dstr));
4383 GvCV(dstr) = Nullcv;
68dc0745 4384 GvCVGEN(dstr) = 0; /* Switch off cacheness. */
3280af22 4385 PL_sub_generation++;
8ebc5c01 4386 }
890ed176 4387 SAVEGENERICSV(GvCV(dstr));
8ebc5c01 4388 }
68dc0745 4389 else
4390 dref = (SV*)GvCV(dstr);
4391 if (GvCV(dstr) != (CV*)sref) {
748a9306 4392 CV* cv = GvCV(dstr);
4633a7c4 4393 if (cv) {
68dc0745 4394 if (!GvCVGEN((GV*)dstr) &&
4395 (CvROOT(cv) || CvXSUB(cv)))
4396 {
7bac28a0 4397 /* ahem, death to those who redefine
4398 * active sort subs */
3280af22
NIS
4399 if (PL_curstackinfo->si_type == PERLSI_SORT &&
4400 PL_sortcop == CvSTART(cv))
1c846c1f 4401 Perl_croak(aTHX_
7bac28a0 4402 "Can't redefine active sort subroutine %s",
4403 GvENAME((GV*)dstr));
beab0874
JT
4404 /* Redefining a sub - warning is mandatory if
4405 it was a const and its value changed. */
4406 if (ckWARN(WARN_REDEFINE)
4407 || (CvCONST(cv)
4408 && (!CvCONST((CV*)sref)
4409 || sv_cmp(cv_const_sv(cv),
4410 cv_const_sv((CV*)sref)))))
4411 {
9014280d 4412 Perl_warner(aTHX_ packWARN(WARN_REDEFINE),
beab0874 4413 CvCONST(cv)
910764e6
RGS
4414 ? "Constant subroutine %s::%s redefined"
4415 : "Subroutine %s::%s redefined",
4416 HvNAME(GvSTASH((GV*)dstr)),
beab0874
JT
4417 GvENAME((GV*)dstr));
4418 }
9607fc9c 4419 }
fb24441d
RGS
4420 if (!intro)
4421 cv_ckproto(cv, (GV*)dstr,
4422 SvPOK(sref) ? SvPVX(sref) : Nullch);
4633a7c4 4423 }
a5f75d66 4424 GvCV(dstr) = (CV*)sref;
7a4c00b4 4425 GvCVGEN(dstr) = 0; /* Switch off cacheness. */
a5f75d66 4426 GvASSUMECV_on(dstr);
3280af22 4427 PL_sub_generation++;
a5f75d66 4428 }
39bac7f7 4429 if (!GvIMPORTED_CV(dstr)
1d7c1841
GS
4430 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
4431 {
a5f75d66 4432 GvIMPORTED_CV_on(dstr);
1d7c1841 4433 }
8990e307 4434 break;
91bba347
LW
4435 case SVt_PVIO:
4436 if (intro)
890ed176 4437 SAVEGENERICSV(GvIOp(dstr));
91bba347
LW
4438 else
4439 dref = (SV*)GvIOp(dstr);
4440 GvIOp(dstr) = (IO*)sref;
4441 break;
f4d13ee9
JH
4442 case SVt_PVFM:
4443 if (intro)
890ed176 4444 SAVEGENERICSV(GvFORM(dstr));
f4d13ee9
JH
4445 else
4446 dref = (SV*)GvFORM(dstr);
4447 GvFORM(dstr) = (CV*)sref;
4448 break;
8990e307 4449 default:
a0d0e21e 4450 if (intro)
890ed176 4451 SAVEGENERICSV(GvSV(dstr));
a0d0e21e
LW
4452 else
4453 dref = (SV*)GvSV(dstr);
8990e307 4454 GvSV(dstr) = sref;
39bac7f7 4455 if (!GvIMPORTED_SV(dstr)
1d7c1841
GS
4456 && CopSTASH_ne(PL_curcop, GvSTASH(dstr)))
4457 {
a5f75d66 4458 GvIMPORTED_SV_on(dstr);
1d7c1841 4459 }
8990e307
LW
4460 break;
4461 }
4462 if (dref)
4463 SvREFCNT_dec(dref);
27c9684d
AP
4464 if (SvTAINTED(sstr))
4465 SvTAINT(dstr);
8990e307
LW
4466 return;
4467 }
a0d0e21e 4468 if (SvPVX(dstr)) {
760ac839 4469 (void)SvOOK_off(dstr); /* backoff */
50483b2c
JD
4470 if (SvLEN(dstr))
4471 Safefree(SvPVX(dstr));
a0d0e21e
LW
4472 SvLEN(dstr)=SvCUR(dstr)=0;
4473 }
8990e307 4474 }
a0d0e21e 4475 (void)SvOK_off(dstr);
8990e307 4476 SvRV(dstr) = SvREFCNT_inc(SvRV(sstr));
ed6116ce 4477 SvROK_on(dstr);
8990e307 4478 if (sflags & SVp_NOK) {
3332b3c1
JH
4479 SvNOKp_on(dstr);
4480 /* Only set the public OK flag if the source has public OK. */
4481 if (sflags & SVf_NOK)
4482 SvFLAGS(dstr) |= SVf_NOK;
ed6116ce
LW
4483 SvNVX(dstr) = SvNVX(sstr);
4484 }
8990e307 4485 if (sflags & SVp_IOK) {
3332b3c1
JH
4486 (void)SvIOKp_on(dstr);
4487 if (sflags & SVf_IOK)
4488 SvFLAGS(dstr) |= SVf_IOK;
2b1c7e3e 4489 if (sflags & SVf_IVisUV)
25da4f38 4490 SvIsUV_on(dstr);
3332b3c1 4491 SvIVX(dstr) = SvIVX(sstr);
ed6116ce 4492 }
a0d0e21e
LW
4493 if (SvAMAGIC(sstr)) {
4494 SvAMAGIC_on(dstr);
4495 }
ed6116ce 4496 }
8990e307 4497 else if (sflags & SVp_POK) {
765f542d 4498 bool isSwipe = 0;
79072805
LW
4499
4500 /*
4501 * Check to see if we can just swipe the string. If so, it's a
4502 * possible small lose on short strings, but a big win on long ones.
463ee0b2
LW
4503 * It might even be a win on short strings if SvPVX(dstr)
4504 * has to be allocated and SvPVX(sstr) has to be freed.
79072805
LW
4505 */
4506
120fac95
NC
4507 /* Whichever path we take through the next code, we want this true,
4508 and doing it now facilitates the COW check. */
4509 (void)SvPOK_only(dstr);
4510
765f542d
NC
4511 if (
4512#ifdef PERL_COPY_ON_WRITE
4513 (sflags & (SVf_FAKE | SVf_READONLY)) != (SVf_FAKE | SVf_READONLY)
4514 &&
4515#endif
4516 !(isSwipe =
4517 (sflags & SVs_TEMP) && /* slated for free anyway? */
4518 !(sflags & SVf_OOK) && /* and not involved in OOK hack? */
5fcdf167
NC
4519 (!(flags & SV_NOSTEAL)) &&
4520 /* and we're allowed to steal temps */
765f542d
NC
4521 SvREFCNT(sstr) == 1 && /* and no other references to it? */
4522 SvLEN(sstr) && /* and really is a string */
645c22ef 4523 /* and won't be needed again, potentially */
765f542d
NC
4524 !(PL_op && PL_op->op_type == OP_AASSIGN))
4525#ifdef PERL_COPY_ON_WRITE
4526 && !((sflags & CAN_COW_MASK) == CAN_COW_FLAGS
120fac95 4527 && (SvFLAGS(dstr) & CAN_COW_MASK) == CAN_COW_FLAGS
765f542d
NC
4528 && SvTYPE(sstr) >= SVt_PVIV)
4529#endif
4530 ) {
4531 /* Failed the swipe test, and it's not a shared hash key either.
4532 Have to copy the string. */
4533 STRLEN len = SvCUR(sstr);
4534 SvGROW(dstr, len + 1); /* inlined from sv_setpvn */
4535 Move(SvPVX(sstr),SvPVX(dstr),len,char);
4536 SvCUR_set(dstr, len);
4537 *SvEND(dstr) = '\0';
765f542d
NC
4538 } else {
4539 /* If PERL_COPY_ON_WRITE is not defined, then isSwipe will always
4540 be true in here. */
4541#ifdef PERL_COPY_ON_WRITE
4542 /* Either it's a shared hash key, or it's suitable for
4543 copy-on-write or we can swipe the string. */
46187eeb 4544 if (DEBUG_C_TEST) {
ed252734 4545 PerlIO_printf(Perl_debug_log, "Copy on write: sstr --> dstr\n");
e419cbc5
NC
4546 sv_dump(sstr);
4547 sv_dump(dstr);
46187eeb 4548 }
765f542d
NC
4549 if (!isSwipe) {
4550 /* I believe I should acquire a global SV mutex if
4551 it's a COW sv (not a shared hash key) to stop
4552 it going un copy-on-write.
4553 If the source SV has gone un copy on write between up there
4554 and down here, then (assert() that) it is of the correct
4555 form to make it copy on write again */
4556 if ((sflags & (SVf_FAKE | SVf_READONLY))
4557 != (SVf_FAKE | SVf_READONLY)) {
4558 SvREADONLY_on(sstr);
4559 SvFAKE_on(sstr);
4560 /* Make the source SV into a loop of 1.
4561 (about to become 2) */
a29f6d03 4562 SV_COW_NEXT_SV_SET(sstr, sstr);
765f542d
NC
4563 }
4564 }
4565#endif
4566 /* Initial code is common. */
adbc6bb1 4567 if (SvPVX(dstr)) { /* we know that dtype >= SVt_PV */
a5f75d66
AD
4568 if (SvOOK(dstr)) {
4569 SvFLAGS(dstr) &= ~SVf_OOK;
4570 Safefree(SvPVX(dstr) - SvIVX(dstr));
4571 }
50483b2c 4572 else if (SvLEN(dstr))
a5f75d66 4573 Safefree(SvPVX(dstr));
79072805 4574 }
765f542d
NC
4575
4576#ifdef PERL_COPY_ON_WRITE
4577 if (!isSwipe) {
4578 /* making another shared SV. */
4579 STRLEN cur = SvCUR(sstr);
4580 STRLEN len = SvLEN(sstr);
d89fc664 4581 assert (SvTYPE(dstr) >= SVt_PVIV);
765f542d
NC
4582 if (len) {
4583 /* SvIsCOW_normal */
4584 /* splice us in between source and next-after-source. */
a29f6d03
NC
4585 SV_COW_NEXT_SV_SET(dstr, SV_COW_NEXT_SV(sstr));
4586 SV_COW_NEXT_SV_SET(sstr, dstr);
765f542d
NC
4587 SvPV_set(dstr, SvPVX(sstr));
4588 } else {
4589 /* SvIsCOW_shared_hash */
4590 UV hash = SvUVX(sstr);
46187eeb
NC
4591 DEBUG_C(PerlIO_printf(Perl_debug_log,
4592 "Copy on write: Sharing hash\n"));
765f542d
NC
4593 SvPV_set(dstr,
4594 sharepvn(SvPVX(sstr),
4595 (sflags & SVf_UTF8?-cur:cur), hash));
4596 SvUVX(dstr) = hash;
4597 }
4598 SvLEN(dstr) = len;
4599 SvCUR(dstr) = cur;
4600 SvREADONLY_on(dstr);
4601 SvFAKE_on(dstr);
4602 /* Relesase a global SV mutex. */
4603 }
4604 else
4605#endif
4606 { /* Passes the swipe test. */
4607 SvPV_set(dstr, SvPVX(sstr));
4608 SvLEN_set(dstr, SvLEN(sstr));
4609 SvCUR_set(dstr, SvCUR(sstr));
4610
4611 SvTEMP_off(dstr);
4612 (void)SvOK_off(sstr); /* NOTE: nukes most SvFLAGS on sstr */
4613 SvPV_set(sstr, Nullch);
4614 SvLEN_set(sstr, 0);
4615 SvCUR_set(sstr, 0);
4616 SvTEMP_off(sstr);
4617 }
4618 }
9aa983d2 4619 if (sflags & SVf_UTF8)
a7cb1f99 4620 SvUTF8_on(dstr);
79072805 4621 /*SUPPRESS 560*/
8990e307 4622 if (sflags & SVp_NOK) {
3332b3c1
JH
4623 SvNOKp_on(dstr);
4624 if (sflags & SVf_NOK)
4625 SvFLAGS(dstr) |= SVf_NOK;
463ee0b2 4626 SvNVX(dstr) = SvNVX(sstr);
79072805 4627 }
8990e307 4628 if (sflags & SVp_IOK) {
3332b3c1
JH
4629 (void)SvIOKp_on(dstr);
4630 if (sflags & SVf_IOK)
4631 SvFLAGS(dstr) |= SVf_IOK;
2b1c7e3e 4632 if (sflags & SVf_IVisUV)
25da4f38 4633 SvIsUV_on(dstr);
463ee0b2 4634 SvIVX(dstr) = SvIVX(sstr);
79072805 4635 }
92f0c265 4636 if (SvVOK(sstr)) {
7a5fa8a2 4637 MAGIC *smg = mg_find(sstr,PERL_MAGIC_vstring);
ece467f9
JP
4638 sv_magic(dstr, NULL, PERL_MAGIC_vstring,
4639 smg->mg_ptr, smg->mg_len);
439cb1c4 4640 SvRMAGICAL_on(dstr);
7a5fa8a2 4641 }
79072805 4642 }
8990e307 4643 else if (sflags & SVp_IOK) {
3332b3c1
JH
4644 if (sflags & SVf_IOK)
4645 (void)SvIOK_only(dstr);
4646 else {
9cbac4c7
DM
4647 (void)SvOK_off(dstr);
4648 (void)SvIOKp_on(dstr);
3332b3c1
JH
4649 }
4650 /* XXXX Do we want to set IsUV for IV(ROK)? Be extra safe... */
2b1c7e3e 4651 if (sflags & SVf_IVisUV)
25da4f38 4652 SvIsUV_on(dstr);
3332b3c1
JH
4653 SvIVX(dstr) = SvIVX(sstr);
4654 if (sflags & SVp_NOK) {
4655 if (sflags & SVf_NOK)
4656 (void)SvNOK_on(dstr);
4657 else
4658 (void)SvNOKp_on(dstr);
4659 SvNVX(dstr) = SvNVX(sstr);
4660 }
4661 }
4662 else if (sflags & SVp_NOK) {
4663 if (sflags & SVf_NOK)
4664 (void)SvNOK_only(dstr);
4665 else {
9cbac4c7 4666 (void)SvOK_off(dstr);
3332b3c1
JH
4667 SvNOKp_on(dstr);
4668 }
4669 SvNVX(dstr) = SvNVX(sstr);
79072805
LW
4670 }
4671 else {
20408e3c 4672 if (dtype == SVt_PVGV) {
e476b1b5 4673 if (ckWARN(WARN_MISC))
9014280d 4674 Perl_warner(aTHX_ packWARN(WARN_MISC), "Undefined value assigned to typeglob");
20408e3c
GS
4675 }
4676 else
4677 (void)SvOK_off(dstr);
a0d0e21e 4678 }
27c9684d
AP
4679 if (SvTAINTED(sstr))
4680 SvTAINT(dstr);
79072805
LW
4681}
4682
954c1994
GS
4683/*
4684=for apidoc sv_setsv_mg
4685
4686Like C<sv_setsv>, but also handles 'set' magic.
4687
4688=cut
4689*/
4690
79072805 4691void
864dbfa3 4692Perl_sv_setsv_mg(pTHX_ SV *dstr, register SV *sstr)
ef50df4b
GS
4693{
4694 sv_setsv(dstr,sstr);
4695 SvSETMAGIC(dstr);
4696}
4697
ed252734
NC
4698#ifdef PERL_COPY_ON_WRITE
4699SV *
4700Perl_sv_setsv_cow(pTHX_ SV *dstr, SV *sstr)
4701{
4702 STRLEN cur = SvCUR(sstr);
4703 STRLEN len = SvLEN(sstr);
4704 register char *new_pv;
4705
4706 if (DEBUG_C_TEST) {
4707 PerlIO_printf(Perl_debug_log, "Fast copy on write: %p -> %p\n",
4708 sstr, dstr);
4709 sv_dump(sstr);
4710 if (dstr)
4711 sv_dump(dstr);
4712 }
4713
4714 if (dstr) {
4715 if (SvTHINKFIRST(dstr))
4716 sv_force_normal_flags(dstr, SV_COW_DROP_PV);
4717 else if (SvPVX(dstr))
4718 Safefree(SvPVX(dstr));
4719 }
4720 else
4721 new_SV(dstr);
b988aa42 4722 (void)SvUPGRADE (dstr, SVt_PVIV);
ed252734
NC
4723
4724 assert (SvPOK(sstr));
4725 assert (SvPOKp(sstr));
4726 assert (!SvIOK(sstr));
4727 assert (!SvIOKp(sstr));
4728 assert (!SvNOK(sstr));
4729 assert (!SvNOKp(sstr));
4730
4731 if (SvIsCOW(sstr)) {
4732
4733 if (SvLEN(sstr) == 0) {
4734 /* source is a COW shared hash key. */
4735 UV hash = SvUVX(sstr);
4736 DEBUG_C(PerlIO_printf(Perl_debug_log,
4737 "Fast copy on write: Sharing hash\n"));
4738 SvUVX(dstr) = hash;
4739 new_pv = sharepvn(SvPVX(sstr), (SvUTF8(sstr)?-cur:cur), hash);
4740 goto common_exit;
4741 }
4742 SV_COW_NEXT_SV_SET(dstr, SV_COW_NEXT_SV(sstr));
4743 } else {
4744 assert ((SvFLAGS(sstr) & CAN_COW_MASK) == CAN_COW_FLAGS);
b988aa42 4745 (void)SvUPGRADE (sstr, SVt_PVIV);
ed252734
NC
4746 SvREADONLY_on(sstr);
4747 SvFAKE_on(sstr);
4748 DEBUG_C(PerlIO_printf(Perl_debug_log,
4749 "Fast copy on write: Converting sstr to COW\n"));
4750 SV_COW_NEXT_SV_SET(dstr, sstr);
4751 }
4752 SV_COW_NEXT_SV_SET(sstr, dstr);
4753 new_pv = SvPVX(sstr);
4754
4755 common_exit:
4756 SvPV_set(dstr, new_pv);
4757 SvFLAGS(dstr) = (SVt_PVIV|SVf_POK|SVp_POK|SVf_FAKE|SVf_READONLY);
4758 if (SvUTF8(sstr))
4759 SvUTF8_on(dstr);
4760 SvLEN(dstr) = len;
4761 SvCUR(dstr) = cur;
4762 if (DEBUG_C_TEST) {
4763 sv_dump(dstr);
4764 }
4765 return dstr;
4766}
4767#endif
4768
954c1994
GS
4769/*
4770=for apidoc sv_setpvn
4771
4772Copies a string into an SV. The C<len> parameter indicates the number of
9e09f5f2
MHM
4773bytes to be copied. If the C<ptr> argument is NULL the SV will become
4774undefined. Does not handle 'set' magic. See C<sv_setpvn_mg>.
954c1994
GS
4775
4776=cut
4777*/
4778
ef50df4b 4779void
864dbfa3 4780Perl_sv_setpvn(pTHX_ register SV *sv, register const char *ptr, register STRLEN len)
79072805 4781{
c6f8c383 4782 register char *dptr;
22c522df 4783
765f542d 4784 SV_CHECK_THINKFIRST_COW_DROP(sv);
463ee0b2 4785 if (!ptr) {
a0d0e21e 4786 (void)SvOK_off(sv);
463ee0b2
LW
4787 return;
4788 }
22c522df
JH
4789 else {
4790 /* len is STRLEN which is unsigned, need to copy to signed */
4791 IV iv = len;
9c5ffd7c
JH
4792 if (iv < 0)
4793 Perl_croak(aTHX_ "panic: sv_setpvn called with negative strlen");
22c522df 4794 }
6fc92669 4795 (void)SvUPGRADE(sv, SVt_PV);
c6f8c383 4796
79072805 4797 SvGROW(sv, len + 1);
c6f8c383
GA
4798 dptr = SvPVX(sv);
4799 Move(ptr,dptr,len,char);
4800 dptr[len] = '\0';
79072805 4801 SvCUR_set(sv, len);
1aa99e6b 4802 (void)SvPOK_only_UTF8(sv); /* validate pointer */
463ee0b2 4803 SvTAINT(sv);
79072805
LW
4804}
4805
954c1994
GS
4806/*
4807=for apidoc sv_setpvn_mg
4808
4809Like C<sv_setpvn>, but also handles 'set' magic.
4810
4811=cut
4812*/
4813
79072805 4814void
864dbfa3 4815Perl_sv_setpvn_mg(pTHX_ register SV *sv, register const char *ptr, register STRLEN len)
ef50df4b
GS
4816{
4817 sv_setpvn(sv,ptr,len);
4818 SvSETMAGIC(sv);
4819}
4820
954c1994
GS
4821/*
4822=for apidoc sv_setpv
4823
4824Copies a string into an SV. The string must be null-terminated. Does not
4825handle 'set' magic. See C<sv_setpv_mg>.
4826
4827=cut
4828*/
4829
ef50df4b 4830void
864dbfa3 4831Perl_sv_setpv(pTHX_ register SV *sv, register const char *ptr)
79072805
LW
4832{
4833 register STRLEN len;
4834
765f542d 4835 SV_CHECK_THINKFIRST_COW_DROP(sv);
463ee0b2 4836 if (!ptr) {
a0d0e21e 4837 (void)SvOK_off(sv);
463ee0b2
LW
4838 return;
4839 }
79072805 4840 len = strlen(ptr);
6fc92669 4841 (void)SvUPGRADE(sv, SVt_PV);
c6f8c383 4842
79072805 4843 SvGROW(sv, len + 1);
463ee0b2 4844 Move(ptr,SvPVX(sv),len+1,char);
79072805 4845 SvCUR_set(sv, len);
1aa99e6b 4846 (void)SvPOK_only_UTF8(sv); /* validate pointer */
463ee0b2
LW
4847 SvTAINT(sv);
4848}
4849
954c1994
GS
4850/*
4851=for apidoc sv_setpv_mg
4852
4853Like C<sv_setpv>, but also handles 'set' magic.
4854
4855=cut
4856*/
4857
463ee0b2 4858void
864dbfa3 4859Perl_sv_setpv_mg(pTHX_ register SV *sv, register const char *ptr)
ef50df4b
GS
4860{
4861 sv_setpv(sv,ptr);
4862 SvSETMAGIC(sv);
4863}
4864
954c1994
GS
4865/*
4866=for apidoc sv_usepvn
4867
4868Tells an SV to use C<ptr> to find its string value. Normally the string is
1c846c1f 4869stored inside the SV but sv_usepvn allows the SV to use an outside string.
954c1994
GS
4870The C<ptr> should point to memory that was allocated by C<malloc>. The
4871string length, C<len>, must be supplied. This function will realloc the
4872memory pointed to by C<ptr>, so that pointer should not be freed or used by
4873the programmer after giving it to sv_usepvn. Does not handle 'set' magic.
4874See C<sv_usepvn_mg>.
4875
4876=cut
4877*/
4878
ef50df4b 4879void
864dbfa3 4880Perl_sv_usepvn(pTHX_ register SV *sv, register char *ptr, register STRLEN len)
463ee0b2 4881{
765f542d 4882 SV_CHECK_THINKFIRST_COW_DROP(sv);
c6f8c383 4883 (void)SvUPGRADE(sv, SVt_PV);
463ee0b2 4884 if (!ptr) {
a0d0e21e 4885 (void)SvOK_off(sv);
463ee0b2
LW
4886 return;
4887 }
a0ed51b3 4888 (void)SvOOK_off(sv);
50483b2c 4889 if (SvPVX(sv) && SvLEN(sv))
463ee0b2
LW
4890 Safefree(SvPVX(sv));
4891 Renew(ptr, len+1, char);
4892 SvPVX(sv) = ptr;
4893 SvCUR_set(sv, len);
4894 SvLEN_set(sv, len+1);
4895 *SvEND(sv) = '\0';
1aa99e6b 4896 (void)SvPOK_only_UTF8(sv); /* validate pointer */
463ee0b2 4897 SvTAINT(sv);
79072805
LW
4898}
4899
954c1994
GS
4900/*
4901=for apidoc sv_usepvn_mg
4902
4903Like C<sv_usepvn>, but also handles 'set' magic.
4904
4905=cut
4906*/
4907
ef50df4b 4908void
864dbfa3 4909Perl_sv_usepvn_mg(pTHX_ register SV *sv, register char *ptr, register STRLEN len)
ef50df4b 4910{
51c1089b 4911 sv_usepvn(sv,ptr,len);
ef50df4b
GS
4912 SvSETMAGIC(sv);
4913}
4914
765f542d
NC
4915#ifdef PERL_COPY_ON_WRITE
4916/* Need to do this *after* making the SV normal, as we need the buffer
4917 pointer to remain valid until after we've copied it. If we let go too early,
4918 another thread could invalidate it by unsharing last of the same hash key
4919 (which it can do by means other than releasing copy-on-write Svs)
4920 or by changing the other copy-on-write SVs in the loop. */
4921STATIC void
4922S_sv_release_COW(pTHX_ register SV *sv, char *pvx, STRLEN cur, STRLEN len,
4923 U32 hash, SV *after)
4924{
4925 if (len) { /* this SV was SvIsCOW_normal(sv) */
4926 /* we need to find the SV pointing to us. */
4927 SV *current = SV_COW_NEXT_SV(after);
7a5fa8a2 4928
765f542d
NC
4929 if (current == sv) {
4930 /* The SV we point to points back to us (there were only two of us
4931 in the loop.)
4932 Hence other SV is no longer copy on write either. */
4933 SvFAKE_off(after);
4934 SvREADONLY_off(after);
4935 } else {
4936 /* We need to follow the pointers around the loop. */
4937 SV *next;
4938 while ((next = SV_COW_NEXT_SV(current)) != sv) {
4939 assert (next);
4940 current = next;
4941 /* don't loop forever if the structure is bust, and we have
4942 a pointer into a closed loop. */
4943 assert (current != after);
e419cbc5 4944 assert (SvPVX(current) == pvx);
765f542d
NC
4945 }
4946 /* Make the SV before us point to the SV after us. */
a29f6d03 4947 SV_COW_NEXT_SV_SET(current, after);
765f542d
NC
4948 }
4949 } else {
4950 unsharepvn(pvx, SvUTF8(sv) ? -(I32)cur : cur, hash);
4951 }
4952}
4953
4954int
4955Perl_sv_release_IVX(pTHX_ register SV *sv)
4956{
4957 if (SvIsCOW(sv))
4958 sv_force_normal_flags(sv, 0);
0c34ef67
MHM
4959 SvOOK_off(sv);
4960 return 0;
765f542d
NC
4961}
4962#endif
645c22ef
DM
4963/*
4964=for apidoc sv_force_normal_flags
4965
4966Undo various types of fakery on an SV: if the PV is a shared string, make
4967a private copy; if we're a ref, stop refing; if we're a glob, downgrade to
765f542d
NC
4968an xpvmg; if we're a copy-on-write scalar, this is the on-write time when
4969we do the copy, and is also used locally. If C<SV_COW_DROP_PV> is set
4970then a copy-on-write scalar drops its PV buffer (if any) and becomes
4971SvPOK_off rather than making a copy. (Used where this scalar is about to be
d3050d9d 4972set to some other value.) In addition, the C<flags> parameter gets passed to
765f542d
NC
4973C<sv_unref_flags()> when unrefing. C<sv_force_normal> calls this function
4974with flags set to 0.
645c22ef
DM
4975
4976=cut
4977*/
4978
6fc92669 4979void
840a7b70 4980Perl_sv_force_normal_flags(pTHX_ register SV *sv, U32 flags)
0f15f207 4981{
765f542d
NC
4982#ifdef PERL_COPY_ON_WRITE
4983 if (SvREADONLY(sv)) {
4984 /* At this point I believe I should acquire a global SV mutex. */
4985 if (SvFAKE(sv)) {
4986 char *pvx = SvPVX(sv);
4987 STRLEN len = SvLEN(sv);
4988 STRLEN cur = SvCUR(sv);
4989 U32 hash = SvUVX(sv);
4990 SV *next = SV_COW_NEXT_SV(sv); /* next COW sv in the loop. */
46187eeb
NC
4991 if (DEBUG_C_TEST) {
4992 PerlIO_printf(Perl_debug_log,
4993 "Copy on write: Force normal %ld\n",
4994 (long) flags);
e419cbc5 4995 sv_dump(sv);
46187eeb 4996 }
765f542d
NC
4997 SvFAKE_off(sv);
4998 SvREADONLY_off(sv);
4999 /* This SV doesn't own the buffer, so need to New() a new one: */
5000 SvPVX(sv) = 0;
5001 SvLEN(sv) = 0;
5002 if (flags & SV_COW_DROP_PV) {
5003 /* OK, so we don't need to copy our buffer. */
5004 SvPOK_off(sv);
5005 } else {
5006 SvGROW(sv, cur + 1);
5007 Move(pvx,SvPVX(sv),cur,char);
5008 SvCUR(sv) = cur;
5009 *SvEND(sv) = '\0';
5010 }
e419cbc5 5011 sv_release_COW(sv, pvx, cur, len, hash, next);
46187eeb 5012 if (DEBUG_C_TEST) {
e419cbc5 5013 sv_dump(sv);
46187eeb 5014 }
765f542d 5015 }
923e4eb5 5016 else if (IN_PERL_RUNTIME)
765f542d
NC
5017 Perl_croak(aTHX_ PL_no_modify);
5018 /* At this point I believe that I can drop the global SV mutex. */
5019 }
5020#else
2213622d 5021 if (SvREADONLY(sv)) {
1c846c1f
NIS
5022 if (SvFAKE(sv)) {
5023 char *pvx = SvPVX(sv);
5c98da1c 5024 int is_utf8 = SvUTF8(sv);
1c846c1f
NIS
5025 STRLEN len = SvCUR(sv);
5026 U32 hash = SvUVX(sv);
10bcdfd6
NC
5027 SvFAKE_off(sv);
5028 SvREADONLY_off(sv);
5c98da1c
NC
5029 SvPVX(sv) = 0;
5030 SvLEN(sv) = 0;
1c846c1f
NIS
5031 SvGROW(sv, len + 1);
5032 Move(pvx,SvPVX(sv),len,char);
5033 *SvEND(sv) = '\0';
5c98da1c 5034 unsharepvn(pvx, is_utf8 ? -(I32)len : len, hash);
1c846c1f 5035 }
923e4eb5 5036 else if (IN_PERL_RUNTIME)
cea2e8a9 5037 Perl_croak(aTHX_ PL_no_modify);
0f15f207 5038 }
765f542d 5039#endif
2213622d 5040 if (SvROK(sv))
840a7b70 5041 sv_unref_flags(sv, flags);
6fc92669
GS
5042 else if (SvFAKE(sv) && SvTYPE(sv) == SVt_PVGV)
5043 sv_unglob(sv);
0f15f207 5044}
1c846c1f 5045
645c22ef
DM
5046/*
5047=for apidoc sv_force_normal
5048
5049Undo various types of fakery on an SV: if the PV is a shared string, make
5050a private copy; if we're a ref, stop refing; if we're a glob, downgrade to
5051an xpvmg. See also C<sv_force_normal_flags>.
5052
5053=cut
5054*/
5055
840a7b70
IZ
5056void
5057Perl_sv_force_normal(pTHX_ register SV *sv)
5058{
5059 sv_force_normal_flags(sv, 0);
5060}
5061
954c1994
GS
5062/*
5063=for apidoc sv_chop
5064
1c846c1f 5065Efficient removal of characters from the beginning of the string buffer.
954c1994
GS
5066SvPOK(sv) must be true and the C<ptr> must be a pointer to somewhere inside
5067the string buffer. The C<ptr> becomes the first character of the adjusted
645c22ef 5068string. Uses the "OOK hack".
31869a79
AE
5069Beware: after this function returns, C<ptr> and SvPVX(sv) may no longer
5070refer to the same chunk of data.
954c1994
GS
5071
5072=cut
5073*/
5074
79072805 5075void
645c22ef 5076Perl_sv_chop(pTHX_ register SV *sv, register char *ptr)
79072805
LW
5077{
5078 register STRLEN delta;
a0d0e21e 5079 if (!ptr || !SvPOKp(sv))
79072805 5080 return;
31869a79 5081 delta = ptr - SvPVX(sv);
2213622d 5082 SV_CHECK_THINKFIRST(sv);
79072805
LW
5083 if (SvTYPE(sv) < SVt_PVIV)
5084 sv_upgrade(sv,SVt_PVIV);
5085
5086 if (!SvOOK(sv)) {
50483b2c
JD
5087 if (!SvLEN(sv)) { /* make copy of shared string */
5088 char *pvx = SvPVX(sv);
5089 STRLEN len = SvCUR(sv);
5090 SvGROW(sv, len + 1);
5091 Move(pvx,SvPVX(sv),len,char);
5092 *SvEND(sv) = '\0';
5093 }
463ee0b2 5094 SvIVX(sv) = 0;
a4bfb290
AB
5095 /* Same SvOOK_on but SvOOK_on does a SvIOK_off
5096 and we do that anyway inside the SvNIOK_off
5097 */
7a5fa8a2 5098 SvFLAGS(sv) |= SVf_OOK;
79072805 5099 }
a4bfb290 5100 SvNIOK_off(sv);
79072805
LW
5101 SvLEN(sv) -= delta;
5102 SvCUR(sv) -= delta;
463ee0b2
LW
5103 SvPVX(sv) += delta;
5104 SvIVX(sv) += delta;
79072805
LW
5105}
5106
09540bc3
JH
5107/* sv_catpvn() is now a macro using Perl_sv_catpvn_flags();
5108 * this function provided for binary compatibility only
5109 */
5110
5111void
5112Perl_sv_catpvn(pTHX_ SV *dsv, const char* sstr, STRLEN slen)
5113{
5114 sv_catpvn_flags(dsv, sstr, slen, SV_GMAGIC);
5115}
5116
954c1994
GS
5117/*
5118=for apidoc sv_catpvn
5119
5120Concatenates the string onto the end of the string which is in the SV. The
1e54db1a
JH
5121C<len> indicates number of bytes to copy. If the SV has the UTF-8
5122status set, then the bytes appended should be valid UTF-8.
d5ce4a7c 5123Handles 'get' magic, but not 'set' magic. See C<sv_catpvn_mg>.
954c1994 5124
8d6d96c1
HS
5125=for apidoc sv_catpvn_flags
5126
5127Concatenates the string onto the end of the string which is in the SV. The
1e54db1a
JH
5128C<len> indicates number of bytes to copy. If the SV has the UTF-8
5129status set, then the bytes appended should be valid UTF-8.
8d6d96c1
HS
5130If C<flags> has C<SV_GMAGIC> bit set, will C<mg_get> on C<dsv> if
5131appropriate, else not. C<sv_catpvn> and C<sv_catpvn_nomg> are implemented
5132in terms of this function.
5133
5134=cut
5135*/
5136
5137void
5138Perl_sv_catpvn_flags(pTHX_ register SV *dsv, register const char *sstr, register STRLEN slen, I32 flags)
5139{
5140 STRLEN dlen;
5141 char *dstr;
5142
5143 dstr = SvPV_force_flags(dsv, dlen, flags);
5144 SvGROW(dsv, dlen + slen + 1);
5145 if (sstr == dstr)
5146 sstr = SvPVX(dsv);
5147 Move(sstr, SvPVX(dsv) + dlen, slen, char);
5148 SvCUR(dsv) += slen;
5149 *SvEND(dsv) = '\0';
5150 (void)SvPOK_only_UTF8(dsv); /* validate pointer */
5151 SvTAINT(dsv);
79072805
LW
5152}
5153
954c1994
GS
5154/*
5155=for apidoc sv_catpvn_mg
5156
5157Like C<sv_catpvn>, but also handles 'set' magic.
5158
5159=cut
5160*/
5161
79072805 5162void
864dbfa3 5163Perl_sv_catpvn_mg(pTHX_ register SV *sv, register const char *ptr, register STRLEN len)
ef50df4b
GS
5164{
5165 sv_catpvn(sv,ptr,len);
5166 SvSETMAGIC(sv);
5167}
5168
09540bc3
JH
5169/* sv_catsv() is now a macro using Perl_sv_catsv_flags();
5170 * this function provided for binary compatibility only
5171 */
5172
5173void
5174Perl_sv_catsv(pTHX_ SV *dstr, register SV *sstr)
5175{
5176 sv_catsv_flags(dstr, sstr, SV_GMAGIC);
5177}
5178
954c1994
GS
5179/*
5180=for apidoc sv_catsv
5181
13e8c8e3
JH
5182Concatenates the string from SV C<ssv> onto the end of the string in
5183SV C<dsv>. Modifies C<dsv> but not C<ssv>. Handles 'get' magic, but
5184not 'set' magic. See C<sv_catsv_mg>.
954c1994 5185
8d6d96c1
HS
5186=for apidoc sv_catsv_flags
5187
5188Concatenates the string from SV C<ssv> onto the end of the string in
5189SV C<dsv>. Modifies C<dsv> but not C<ssv>. If C<flags> has C<SV_GMAGIC>
5190bit set, will C<mg_get> on the SVs if appropriate, else not. C<sv_catsv>
5191and C<sv_catsv_nomg> are implemented in terms of this function.
5192
5193=cut */
5194
ef50df4b 5195void
8d6d96c1 5196Perl_sv_catsv_flags(pTHX_ SV *dsv, register SV *ssv, I32 flags)
79072805 5197{
13e8c8e3
JH
5198 char *spv;
5199 STRLEN slen;
46199a12 5200 if (!ssv)
79072805 5201 return;
46199a12 5202 if ((spv = SvPV(ssv, slen))) {
4fd84b44
AD
5203 /* sutf8 and dutf8 were type bool, but under USE_ITHREADS,
5204 gcc version 2.95.2 20000220 (Debian GNU/Linux) for
8cf8f3d1
NIS
5205 Linux xxx 2.2.17 on sparc64 with gcc -O2, we erroneously
5206 get dutf8 = 0x20000000, (i.e. SVf_UTF8) even though
4fd84b44
AD
5207 dsv->sv_flags doesn't have that bit set.
5208 Andy Dougherty 12 Oct 2001
5209 */
5210 I32 sutf8 = DO_UTF8(ssv);
5211 I32 dutf8;
13e8c8e3 5212
8d6d96c1
HS
5213 if (SvGMAGICAL(dsv) && (flags & SV_GMAGIC))
5214 mg_get(dsv);
5215 dutf8 = DO_UTF8(dsv);
5216
5217 if (dutf8 != sutf8) {
13e8c8e3 5218 if (dutf8) {
46199a12 5219 /* Not modifying source SV, so taking a temporary copy. */
8d6d96c1 5220 SV* csv = sv_2mortal(newSVpvn(spv, slen));
13e8c8e3 5221
46199a12 5222 sv_utf8_upgrade(csv);
8d6d96c1 5223 spv = SvPV(csv, slen);
13e8c8e3 5224 }
8d6d96c1
HS
5225 else
5226 sv_utf8_upgrade_nomg(dsv);
e84ff256 5227 }
8d6d96c1 5228 sv_catpvn_nomg(dsv, spv, slen);
560a288e 5229 }
79072805
LW
5230}
5231
954c1994
GS
5232/*
5233=for apidoc sv_catsv_mg
5234
5235Like C<sv_catsv>, but also handles 'set' magic.
5236
5237=cut
5238*/
5239
79072805 5240void
46199a12 5241Perl_sv_catsv_mg(pTHX_ SV *dsv, register SV *ssv)
ef50df4b 5242{
46199a12
JH
5243 sv_catsv(dsv,ssv);
5244 SvSETMAGIC(dsv);
ef50df4b
GS
5245}
5246
954c1994
GS
5247/*
5248=for apidoc sv_catpv
5249
5250Concatenates the string onto the end of the string which is in the SV.
1e54db1a
JH
5251If the SV has the UTF-8 status set, then the bytes appended should be
5252valid UTF-8. Handles 'get' magic, but not 'set' magic. See C<sv_catpv_mg>.
954c1994 5253
d5ce4a7c 5254=cut */
954c1994 5255
ef50df4b 5256void
0c981600 5257Perl_sv_catpv(pTHX_ register SV *sv, register const char *ptr)
79072805
LW
5258{
5259 register STRLEN len;
463ee0b2 5260 STRLEN tlen;
748a9306 5261 char *junk;
79072805 5262
0c981600 5263 if (!ptr)
79072805 5264 return;
748a9306 5265 junk = SvPV_force(sv, tlen);
0c981600 5266 len = strlen(ptr);
463ee0b2 5267 SvGROW(sv, tlen + len + 1);
0c981600
JH
5268 if (ptr == junk)
5269 ptr = SvPVX(sv);
5270 Move(ptr,SvPVX(sv)+tlen,len+1,char);
79072805 5271 SvCUR(sv) += len;
d41ff1b8 5272 (void)SvPOK_only_UTF8(sv); /* validate pointer */
463ee0b2 5273 SvTAINT(sv);
79072805
LW
5274}
5275
954c1994
GS
5276/*
5277=for apidoc sv_catpv_mg
5278
5279Like C<sv_catpv>, but also handles 'set' magic.
5280
5281=cut
5282*/
5283
ef50df4b 5284void
0c981600 5285Perl_sv_catpv_mg(pTHX_ register SV *sv, register const char *ptr)
ef50df4b 5286{
0c981600 5287 sv_catpv(sv,ptr);
ef50df4b
GS
5288 SvSETMAGIC(sv);
5289}
5290
645c22ef
DM
5291/*
5292=for apidoc newSV
5293
5294Create a new null SV, or if len > 0, create a new empty SVt_PV type SV
5295with an initial PV allocation of len+1. Normally accessed via the C<NEWSV>
5296macro.
5297
5298=cut
5299*/
5300
79072805 5301SV *
864dbfa3 5302Perl_newSV(pTHX_ STRLEN len)
79072805
LW
5303{
5304 register SV *sv;
1c846c1f 5305
4561caa4 5306 new_SV(sv);
79072805
LW
5307 if (len) {
5308 sv_upgrade(sv, SVt_PV);
5309 SvGROW(sv, len + 1);
5310 }
5311 return sv;
5312}
954c1994 5313/*
92110913 5314=for apidoc sv_magicext
954c1994 5315
68795e93 5316Adds magic to an SV, upgrading it if necessary. Applies the
2d8d5d5a 5317supplied vtable and returns a pointer to the magic added.
92110913 5318
2d8d5d5a
SH
5319Note that C<sv_magicext> will allow things that C<sv_magic> will not.
5320In particular, you can add magic to SvREADONLY SVs, and add more than
5321one instance of the same 'how'.
645c22ef 5322
2d8d5d5a
SH
5323If C<namlen> is greater than zero then a C<savepvn> I<copy> of C<name> is
5324stored, if C<namlen> is zero then C<name> is stored as-is and - as another
5325special case - if C<(name && namlen == HEf_SVKEY)> then C<name> is assumed
5326to contain an C<SV*> and is stored as-is with its REFCNT incremented.
92110913 5327
2d8d5d5a 5328(This is now used as a subroutine by C<sv_magic>.)
954c1994
GS
5329
5330=cut
5331*/
92110913
NIS
5332MAGIC *
5333Perl_sv_magicext(pTHX_ SV* sv, SV* obj, int how, MGVTBL *vtable,
5334 const char* name, I32 namlen)
79072805
LW
5335{
5336 MAGIC* mg;
68795e93 5337
92110913
NIS
5338 if (SvTYPE(sv) < SVt_PVMG) {
5339 (void)SvUPGRADE(sv, SVt_PVMG);
463ee0b2 5340 }
79072805
LW
5341 Newz(702,mg, 1, MAGIC);
5342 mg->mg_moremagic = SvMAGIC(sv);
79072805 5343 SvMAGIC(sv) = mg;
75f9d97a 5344
18808301 5345 /* Some magic sontains a reference loop, where the sv and object refer to
bb03859b
RS
5346 each other. To prevent a reference loop that would prevent such
5347 objects being freed, we look for such loops and if we find one we
87f0b213
JH
5348 avoid incrementing the object refcount.
5349
5350 Note we cannot do this to avoid self-tie loops as intervening RV must
b5ccf5f2 5351 have its REFCNT incremented to keep it in existence.
87f0b213
JH
5352
5353 */
14befaf4
DM
5354 if (!obj || obj == sv ||
5355 how == PERL_MAGIC_arylen ||
5356 how == PERL_MAGIC_qr ||
75f9d97a
JH
5357 (SvTYPE(obj) == SVt_PVGV &&
5358 (GvSV(obj) == sv || GvHV(obj) == (HV*)sv || GvAV(obj) == (AV*)sv ||
5359 GvCV(obj) == (CV*)sv || GvIOp(obj) == (IO*)sv ||
2628be26 5360 GvFORM(obj) == (CV*)sv)))
75f9d97a 5361 {
8990e307 5362 mg->mg_obj = obj;
75f9d97a 5363 }
85e6fe83 5364 else {
8990e307 5365 mg->mg_obj = SvREFCNT_inc(obj);
85e6fe83
LW
5366 mg->mg_flags |= MGf_REFCOUNTED;
5367 }
b5ccf5f2
YST
5368
5369 /* Normal self-ties simply pass a null object, and instead of
5370 using mg_obj directly, use the SvTIED_obj macro to produce a
5371 new RV as needed. For glob "self-ties", we are tieing the PVIO
5372 with an RV obj pointing to the glob containing the PVIO. In
5373 this case, to avoid a reference loop, we need to weaken the
5374 reference.
5375 */
5376
5377 if (how == PERL_MAGIC_tiedscalar && SvTYPE(sv) == SVt_PVIO &&
5378 obj && SvROK(obj) && GvIO(SvRV(obj)) == (IO*)sv)
5379 {
5380 sv_rvweaken(obj);
5381 }
5382
79072805 5383 mg->mg_type = how;
565764a8 5384 mg->mg_len = namlen;
9cbac4c7 5385 if (name) {
92110913 5386 if (namlen > 0)
1edc1566 5387 mg->mg_ptr = savepvn(name, namlen);
c6ee37c5 5388 else if (namlen == HEf_SVKEY)
1edc1566 5389 mg->mg_ptr = (char*)SvREFCNT_inc((SV*)name);
68795e93 5390 else
92110913 5391 mg->mg_ptr = (char *) name;
9cbac4c7 5392 }
92110913 5393 mg->mg_virtual = vtable;
68795e93 5394
92110913
NIS
5395 mg_magical(sv);
5396 if (SvGMAGICAL(sv))
5397 SvFLAGS(sv) &= ~(SVf_IOK|SVf_NOK|SVf_POK);
5398 return mg;
5399}
5400
5401/*
5402=for apidoc sv_magic
1c846c1f 5403
92110913
NIS
5404Adds magic to an SV. First upgrades C<sv> to type C<SVt_PVMG> if necessary,
5405then adds a new magic item of type C<how> to the head of the magic list.
5406
2d8d5d5a
SH
5407See C<sv_magicext> (which C<sv_magic> now calls) for a description of the
5408handling of the C<name> and C<namlen> arguments.
5409
92110913
NIS
5410=cut
5411*/
5412
5413void
5414Perl_sv_magic(pTHX_ register SV *sv, SV *obj, int how, const char *name, I32 namlen)
68795e93 5415{
92110913
NIS
5416 MAGIC* mg;
5417 MGVTBL *vtable = 0;
5418
765f542d
NC
5419#ifdef PERL_COPY_ON_WRITE
5420 if (SvIsCOW(sv))
5421 sv_force_normal_flags(sv, 0);
5422#endif
92110913 5423 if (SvREADONLY(sv)) {
923e4eb5 5424 if (IN_PERL_RUNTIME
92110913
NIS
5425 && how != PERL_MAGIC_regex_global
5426 && how != PERL_MAGIC_bm
5427 && how != PERL_MAGIC_fm
5428 && how != PERL_MAGIC_sv
e6469971 5429 && how != PERL_MAGIC_backref
92110913
NIS
5430 )
5431 {
5432 Perl_croak(aTHX_ PL_no_modify);
5433 }
5434 }
5435 if (SvMAGICAL(sv) || (how == PERL_MAGIC_taint && SvTYPE(sv) >= SVt_PVMG)) {
5436 if (SvMAGIC(sv) && (mg = mg_find(sv, how))) {
68795e93
NIS
5437 /* sv_magic() refuses to add a magic of the same 'how' as an
5438 existing one
92110913
NIS
5439 */
5440 if (how == PERL_MAGIC_taint)
5441 mg->mg_len |= 1;
5442 return;
5443 }
5444 }
68795e93 5445
79072805 5446 switch (how) {
14befaf4 5447 case PERL_MAGIC_sv:
92110913 5448 vtable = &PL_vtbl_sv;
79072805 5449 break;
14befaf4 5450 case PERL_MAGIC_overload:
92110913 5451 vtable = &PL_vtbl_amagic;
a0d0e21e 5452 break;
14befaf4 5453 case PERL_MAGIC_overload_elem:
92110913 5454 vtable = &PL_vtbl_amagicelem;
a0d0e21e 5455 break;
14befaf4 5456 case PERL_MAGIC_overload_table:
92110913 5457 vtable = &PL_vtbl_ovrld;
a0d0e21e 5458 break;
14befaf4 5459 case PERL_MAGIC_bm:
92110913 5460 vtable = &PL_vtbl_bm;
79072805 5461 break;
14befaf4 5462 case PERL_MAGIC_regdata:
92110913 5463 vtable = &PL_vtbl_regdata;
6cef1e77 5464 break;
14befaf4 5465 case PERL_MAGIC_regdatum:
92110913 5466 vtable = &PL_vtbl_regdatum;
6cef1e77 5467 break;
14befaf4 5468 case PERL_MAGIC_env:
92110913 5469 vtable = &PL_vtbl_env;
79072805 5470 break;
14befaf4 5471 case PERL_MAGIC_fm:
92110913 5472 vtable = &PL_vtbl_fm;
55497cff 5473 break;
14befaf4 5474 case PERL_MAGIC_envelem:
92110913 5475 vtable = &PL_vtbl_envelem;
79072805 5476 break;
14befaf4 5477 case PERL_MAGIC_regex_global:
92110913 5478 vtable = &PL_vtbl_mglob;
93a17b20 5479 break;
14befaf4 5480 case PERL_MAGIC_isa:
92110913 5481 vtable = &PL_vtbl_isa;
463ee0b2 5482 break;
14befaf4 5483 case PERL_MAGIC_isaelem:
92110913 5484 vtable = &PL_vtbl_isaelem;
463ee0b2 5485 break;
14befaf4 5486 case PERL_MAGIC_nkeys:
92110913 5487 vtable = &PL_vtbl_nkeys;
16660edb 5488 break;
14befaf4 5489 case PERL_MAGIC_dbfile:
92110913 5490 vtable = 0;
93a17b20 5491 break;
14befaf4 5492 case PERL_MAGIC_dbline:
92110913 5493 vtable = &PL_vtbl_dbline;
79072805 5494 break;
36477c24 5495#ifdef USE_LOCALE_COLLATE
14befaf4 5496 case PERL_MAGIC_collxfrm:
92110913 5497 vtable = &PL_vtbl_collxfrm;
bbce6d69 5498 break;
36477c24 5499#endif /* USE_LOCALE_COLLATE */
14befaf4 5500 case PERL_MAGIC_tied:
92110913 5501 vtable = &PL_vtbl_pack;
463ee0b2 5502 break;
14befaf4
DM
5503 case PERL_MAGIC_tiedelem:
5504 case PERL_MAGIC_tiedscalar:
92110913 5505 vtable = &PL_vtbl_packelem;
463ee0b2 5506 break;
14befaf4 5507 case PERL_MAGIC_qr:
92110913 5508 vtable = &PL_vtbl_regexp;
c277df42 5509 break;
14befaf4 5510 case PERL_MAGIC_sig:
92110913 5511 vtable = &PL_vtbl_sig;
79072805 5512 break;
14befaf4 5513 case PERL_MAGIC_sigelem:
92110913 5514 vtable = &PL_vtbl_sigelem;
79072805 5515 break;
14befaf4 5516 case PERL_MAGIC_taint:
92110913 5517 vtable = &PL_vtbl_taint;
463ee0b2 5518 break;
14befaf4 5519 case PERL_MAGIC_uvar:
92110913 5520 vtable = &PL_vtbl_uvar;
79072805 5521 break;
14befaf4 5522 case PERL_MAGIC_vec:
92110913 5523 vtable = &PL_vtbl_vec;
79072805 5524 break;
ece467f9
JP
5525 case PERL_MAGIC_vstring:
5526 vtable = 0;
5527 break;
7e8c5dac
HS
5528 case PERL_MAGIC_utf8:
5529 vtable = &PL_vtbl_utf8;
5530 break;
14befaf4 5531 case PERL_MAGIC_substr:
92110913 5532 vtable = &PL_vtbl_substr;
79072805 5533 break;
14befaf4 5534 case PERL_MAGIC_defelem:
92110913 5535 vtable = &PL_vtbl_defelem;
5f05dabc 5536 break;
14befaf4 5537 case PERL_MAGIC_glob:
92110913 5538 vtable = &PL_vtbl_glob;
79072805 5539 break;
14befaf4 5540 case PERL_MAGIC_arylen:
92110913 5541 vtable = &PL_vtbl_arylen;
79072805 5542 break;
14befaf4 5543 case PERL_MAGIC_pos:
92110913 5544 vtable = &PL_vtbl_pos;
a0d0e21e 5545 break;
14befaf4 5546 case PERL_MAGIC_backref:
92110913 5547 vtable = &PL_vtbl_backref;
810b8aa5 5548 break;
14befaf4
DM
5549 case PERL_MAGIC_ext:
5550 /* Reserved for use by extensions not perl internals. */
4633a7c4
LW
5551 /* Useful for attaching extension internal data to perl vars. */
5552 /* Note that multiple extensions may clash if magical scalars */
5553 /* etc holding private data from one are passed to another. */
a0d0e21e 5554 break;
79072805 5555 default:
14befaf4 5556 Perl_croak(aTHX_ "Don't know how to handle magic of type \\%o", how);
463ee0b2 5557 }
68795e93 5558
92110913
NIS
5559 /* Rest of work is done else where */
5560 mg = sv_magicext(sv,obj,how,vtable,name,namlen);
68795e93 5561
92110913
NIS
5562 switch (how) {
5563 case PERL_MAGIC_taint:
5564 mg->mg_len = 1;
5565 break;
5566 case PERL_MAGIC_ext:
5567 case PERL_MAGIC_dbfile:
5568 SvRMAGICAL_on(sv);
5569 break;
5570 }
463ee0b2
LW
5571}
5572
c461cf8f
JH
5573/*
5574=for apidoc sv_unmagic
5575
645c22ef 5576Removes all magic of type C<type> from an SV.
c461cf8f
JH
5577
5578=cut
5579*/
5580
463ee0b2 5581int
864dbfa3 5582Perl_sv_unmagic(pTHX_ SV *sv, int type)
463ee0b2
LW
5583{
5584 MAGIC* mg;
5585 MAGIC** mgp;
91bba347 5586 if (SvTYPE(sv) < SVt_PVMG || !SvMAGIC(sv))
463ee0b2
LW
5587 return 0;
5588 mgp = &SvMAGIC(sv);
5589 for (mg = *mgp; mg; mg = *mgp) {
5590 if (mg->mg_type == type) {
5591 MGVTBL* vtbl = mg->mg_virtual;
5592 *mgp = mg->mg_moremagic;
1d7c1841 5593 if (vtbl && vtbl->svt_free)
fc0dc3b3 5594 CALL_FPTR(vtbl->svt_free)(aTHX_ sv, mg);
14befaf4 5595 if (mg->mg_ptr && mg->mg_type != PERL_MAGIC_regex_global) {
92110913 5596 if (mg->mg_len > 0)
1edc1566 5597 Safefree(mg->mg_ptr);
565764a8 5598 else if (mg->mg_len == HEf_SVKEY)
1edc1566 5599 SvREFCNT_dec((SV*)mg->mg_ptr);
7e8c5dac
HS
5600 else if (mg->mg_type == PERL_MAGIC_utf8 && mg->mg_ptr)
5601 Safefree(mg->mg_ptr);
9cbac4c7 5602 }
a0d0e21e
LW
5603 if (mg->mg_flags & MGf_REFCOUNTED)
5604 SvREFCNT_dec(mg->mg_obj);
463ee0b2
LW
5605 Safefree(mg);
5606 }
5607 else
5608 mgp = &mg->mg_moremagic;
79072805 5609 }
91bba347 5610 if (!SvMAGIC(sv)) {
463ee0b2 5611 SvMAGICAL_off(sv);
06759ea0 5612 SvFLAGS(sv) |= (SvFLAGS(sv) & (SVp_NOK|SVp_POK)) >> PRIVSHIFT;
463ee0b2
LW
5613 }
5614
5615 return 0;
79072805
LW
5616}
5617
c461cf8f
JH
5618/*
5619=for apidoc sv_rvweaken
5620
645c22ef
DM
5621Weaken a reference: set the C<SvWEAKREF> flag on this RV; give the
5622referred-to SV C<PERL_MAGIC_backref> magic if it hasn't already; and
5623push a back-reference to this RV onto the array of backreferences
5624associated with that magic.
c461cf8f
JH
5625
5626=cut
5627*/
5628
810b8aa5 5629SV *
864dbfa3 5630Perl_sv_rvweaken(pTHX_ SV *sv)
810b8aa5
GS
5631{
5632 SV *tsv;
5633 if (!SvOK(sv)) /* let undefs pass */
5634 return sv;
5635 if (!SvROK(sv))
cea2e8a9 5636 Perl_croak(aTHX_ "Can't weaken a nonreference");
810b8aa5 5637 else if (SvWEAKREF(sv)) {
810b8aa5 5638 if (ckWARN(WARN_MISC))
9014280d 5639 Perl_warner(aTHX_ packWARN(WARN_MISC), "Reference is already weak");
810b8aa5
GS
5640 return sv;
5641 }
5642 tsv = SvRV(sv);
5643 sv_add_backref(tsv, sv);
5644 SvWEAKREF_on(sv);
1c846c1f 5645 SvREFCNT_dec(tsv);
810b8aa5
GS
5646 return sv;
5647}
5648
645c22ef
DM
5649/* Give tsv backref magic if it hasn't already got it, then push a
5650 * back-reference to sv onto the array associated with the backref magic.
5651 */
5652
810b8aa5 5653STATIC void
cea2e8a9 5654S_sv_add_backref(pTHX_ SV *tsv, SV *sv)
810b8aa5
GS
5655{
5656 AV *av;
5657 MAGIC *mg;
14befaf4 5658 if (SvMAGICAL(tsv) && (mg = mg_find(tsv, PERL_MAGIC_backref)))
810b8aa5
GS
5659 av = (AV*)mg->mg_obj;
5660 else {
5661 av = newAV();
14befaf4 5662 sv_magic(tsv, (SV*)av, PERL_MAGIC_backref, NULL, 0);
d99b02a1
DM
5663 /* av now has a refcnt of 2, which avoids it getting freed
5664 * before us during global cleanup. The extra ref is removed
5665 * by magic_killbackrefs() when tsv is being freed */
810b8aa5 5666 }
d91d49e8 5667 if (AvFILLp(av) >= AvMAX(av)) {
fdc9a813 5668 I32 i;
d91d49e8 5669 SV **svp = AvARRAY(av);
fdc9a813
AE
5670 for (i = AvFILLp(av); i >= 0; i--)
5671 if (!svp[i]) {
d91d49e8
MM
5672 svp[i] = sv; /* reuse the slot */
5673 return;
5674 }
d91d49e8
MM
5675 av_extend(av, AvFILLp(av)+1);
5676 }
5677 AvARRAY(av)[++AvFILLp(av)] = sv; /* av_push() */
810b8aa5
GS
5678}
5679
645c22ef
DM
5680/* delete a back-reference to ourselves from the backref magic associated
5681 * with the SV we point to.
5682 */
5683
1c846c1f 5684STATIC void
cea2e8a9 5685S_sv_del_backref(pTHX_ SV *sv)
810b8aa5
GS
5686{
5687 AV *av;
5688 SV **svp;
5689 I32 i;
5690 SV *tsv = SvRV(sv);
c04a4dfe 5691 MAGIC *mg = NULL;
14befaf4 5692 if (!SvMAGICAL(tsv) || !(mg = mg_find(tsv, PERL_MAGIC_backref)))
cea2e8a9 5693 Perl_croak(aTHX_ "panic: del_backref");
810b8aa5
GS
5694 av = (AV *)mg->mg_obj;
5695 svp = AvARRAY(av);
fdc9a813
AE
5696 for (i = AvFILLp(av); i >= 0; i--)
5697 if (svp[i] == sv) svp[i] = Nullsv;
810b8aa5
GS
5698}
5699
954c1994
GS
5700/*
5701=for apidoc sv_insert
5702
5703Inserts a string at the specified offset/length within the SV. Similar to
5704the Perl substr() function.
5705
5706=cut
5707*/
5708
79072805 5709void
864dbfa3 5710Perl_sv_insert(pTHX_ SV *bigstr, STRLEN offset, STRLEN len, char *little, STRLEN littlelen)
79072805
LW
5711{
5712 register char *big;
5713 register char *mid;
5714 register char *midend;
5715 register char *bigend;
5716 register I32 i;
6ff81951 5717 STRLEN curlen;
1c846c1f 5718
79072805 5719
8990e307 5720 if (!bigstr)
cea2e8a9 5721 Perl_croak(aTHX_ "Can't modify non-existent substring");
6ff81951 5722 SvPV_force(bigstr, curlen);
60fa28ff 5723 (void)SvPOK_only_UTF8(bigstr);
6ff81951
GS
5724 if (offset + len > curlen) {
5725 SvGROW(bigstr, offset+len+1);
5726 Zero(SvPVX(bigstr)+curlen, offset+len-curlen, char);
5727 SvCUR_set(bigstr, offset+len);
5728 }
79072805 5729
69b47968 5730 SvTAINT(bigstr);
79072805
LW
5731 i = littlelen - len;
5732 if (i > 0) { /* string might grow */
a0d0e21e 5733 big = SvGROW(bigstr, SvCUR(bigstr) + i + 1);
79072805
LW
5734 mid = big + offset + len;
5735 midend = bigend = big + SvCUR(bigstr);
5736 bigend += i;
5737 *bigend = '\0';
5738 while (midend > mid) /* shove everything down */
5739 *--bigend = *--midend;
5740 Move(little,big+offset,littlelen,char);
5741 SvCUR(bigstr) += i;
5742 SvSETMAGIC(bigstr);
5743 return;
5744 }
5745 else if (i == 0) {
463ee0b2 5746 Move(little,SvPVX(bigstr)+offset,len,char);
79072805
LW
5747 SvSETMAGIC(bigstr);
5748 return;
5749 }
5750
463ee0b2 5751 big = SvPVX(bigstr);
79072805
LW
5752 mid = big + offset;
5753 midend = mid + len;
5754 bigend = big + SvCUR(bigstr);
5755
5756 if (midend > bigend)
cea2e8a9 5757 Perl_croak(aTHX_ "panic: sv_insert");
79072805
LW
5758
5759 if (mid - big > bigend - midend) { /* faster to shorten from end */
5760 if (littlelen) {
5761 Move(little, mid, littlelen,char);
5762 mid += littlelen;
5763 }
5764 i = bigend - midend;
5765 if (i > 0) {
5766 Move(midend, mid, i,char);
5767 mid += i;
5768 }
5769 *mid = '\0';
5770 SvCUR_set(bigstr, mid - big);
5771 }
5772 /*SUPPRESS 560*/
155aba94 5773 else if ((i = mid - big)) { /* faster from front */
79072805
LW
5774 midend -= littlelen;
5775 mid = midend;
5776 sv_chop(bigstr,midend-i);
5777 big += i;
5778 while (i--)
5779 *--midend = *--big;
5780 if (littlelen)
5781 Move(little, mid, littlelen,char);
5782 }
5783 else if (littlelen) {
5784 midend -= littlelen;
5785 sv_chop(bigstr,midend);
5786 Move(little,midend,littlelen,char);
5787 }
5788 else {
5789 sv_chop(bigstr,midend);
5790 }
5791 SvSETMAGIC(bigstr);
5792}
5793
c461cf8f
JH
5794/*
5795=for apidoc sv_replace
5796
5797Make the first argument a copy of the second, then delete the original.
645c22ef
DM
5798The target SV physically takes over ownership of the body of the source SV
5799and inherits its flags; however, the target keeps any magic it owns,
5800and any magic in the source is discarded.
ff276b08 5801Note that this is a rather specialist SV copying operation; most of the
645c22ef 5802time you'll want to use C<sv_setsv> or one of its many macro front-ends.
c461cf8f
JH
5803
5804=cut
5805*/
79072805
LW
5806
5807void
864dbfa3 5808Perl_sv_replace(pTHX_ register SV *sv, register SV *nsv)
79072805
LW
5809{
5810 U32 refcnt = SvREFCNT(sv);
765f542d 5811 SV_CHECK_THINKFIRST_COW_DROP(sv);
0453d815 5812 if (SvREFCNT(nsv) != 1 && ckWARN_d(WARN_INTERNAL))
9014280d 5813 Perl_warner(aTHX_ packWARN(WARN_INTERNAL), "Reference miscount in sv_replace()");
93a17b20 5814 if (SvMAGICAL(sv)) {
a0d0e21e
LW
5815 if (SvMAGICAL(nsv))
5816 mg_free(nsv);
5817 else
5818 sv_upgrade(nsv, SVt_PVMG);
93a17b20 5819 SvMAGIC(nsv) = SvMAGIC(sv);
a0d0e21e 5820 SvFLAGS(nsv) |= SvMAGICAL(sv);
93a17b20
LW
5821 SvMAGICAL_off(sv);
5822 SvMAGIC(sv) = 0;
5823 }
79072805
LW
5824 SvREFCNT(sv) = 0;
5825 sv_clear(sv);
477f5d66 5826 assert(!SvREFCNT(sv));
79072805 5827 StructCopy(nsv,sv,SV);
d3d0e6f1
NC
5828#ifdef PERL_COPY_ON_WRITE
5829 if (SvIsCOW_normal(nsv)) {
5830 /* We need to follow the pointers around the loop to make the
5831 previous SV point to sv, rather than nsv. */
5832 SV *next;
5833 SV *current = nsv;
5834 while ((next = SV_COW_NEXT_SV(current)) != nsv) {
5835 assert(next);
5836 current = next;
5837 assert(SvPVX(current) == SvPVX(nsv));
5838 }
5839 /* Make the SV before us point to the SV after us. */
5840 if (DEBUG_C_TEST) {
5841 PerlIO_printf(Perl_debug_log, "previous is\n");
5842 sv_dump(current);
a29f6d03
NC
5843 PerlIO_printf(Perl_debug_log,
5844 "move it from 0x%"UVxf" to 0x%"UVxf"\n",
d3d0e6f1
NC
5845 (UV) SV_COW_NEXT_SV(current), (UV) sv);
5846 }
a29f6d03 5847 SV_COW_NEXT_SV_SET(current, sv);
d3d0e6f1
NC
5848 }
5849#endif
79072805 5850 SvREFCNT(sv) = refcnt;
1edc1566 5851 SvFLAGS(nsv) |= SVTYPEMASK; /* Mark as freed */
39cf41c2 5852 SvREFCNT(nsv) = 0;
463ee0b2 5853 del_SV(nsv);
79072805
LW
5854}
5855
c461cf8f
JH
5856/*
5857=for apidoc sv_clear
5858
645c22ef
DM
5859Clear an SV: call any destructors, free up any memory used by the body,
5860and free the body itself. The SV's head is I<not> freed, although
5861its type is set to all 1's so that it won't inadvertently be assumed
5862to be live during global destruction etc.
5863This function should only be called when REFCNT is zero. Most of the time
5864you'll want to call C<sv_free()> (or its macro wrapper C<SvREFCNT_dec>)
5865instead.
c461cf8f
JH
5866
5867=cut
5868*/
5869
79072805 5870void
864dbfa3 5871Perl_sv_clear(pTHX_ register SV *sv)
79072805 5872{
ec12f114 5873 HV* stash;
79072805
LW
5874 assert(sv);
5875 assert(SvREFCNT(sv) == 0);
5876
ed6116ce 5877 if (SvOBJECT(sv)) {
3280af22 5878 if (PL_defstash) { /* Still have a symbol table? */
39644a26 5879 dSP;
32251b26 5880 CV* destructor;
a0d0e21e 5881
5cc433a6 5882
8ebc5c01 5883
d460ef45 5884 do {
4e8e7886 5885 stash = SvSTASH(sv);
32251b26 5886 destructor = StashHANDLER(stash,DESTROY);
4e8e7886 5887 if (destructor) {
5cc433a6
AB
5888 SV* tmpref = newRV(sv);
5889 SvREADONLY_on(tmpref); /* DESTROY() could be naughty */
4e8e7886 5890 ENTER;
e788e7d3 5891 PUSHSTACKi(PERLSI_DESTROY);
4e8e7886
GS
5892 EXTEND(SP, 2);
5893 PUSHMARK(SP);
5cc433a6 5894 PUSHs(tmpref);
4e8e7886 5895 PUTBACK;
44389ee9 5896 call_sv((SV*)destructor, G_DISCARD|G_EVAL|G_KEEPERR|G_VOID);
7a5fa8a2
NIS
5897
5898
d3acc0f7 5899 POPSTACK;
3095d977 5900 SPAGAIN;
4e8e7886 5901 LEAVE;
5cc433a6
AB
5902 if(SvREFCNT(tmpref) < 2) {
5903 /* tmpref is not kept alive! */
5904 SvREFCNT(sv)--;
5905 SvRV(tmpref) = 0;
5906 SvROK_off(tmpref);
5907 }
5908 SvREFCNT_dec(tmpref);
4e8e7886
GS
5909 }
5910 } while (SvOBJECT(sv) && SvSTASH(sv) != stash);
8ebc5c01 5911
6f44e0a4
JP
5912
5913 if (SvREFCNT(sv)) {
5914 if (PL_in_clean_objs)
cea2e8a9 5915 Perl_croak(aTHX_ "DESTROY created new reference to dead object '%s'",
6f44e0a4
JP
5916 HvNAME(stash));
5917 /* DESTROY gave object new lease on life */
5918 return;
5919 }
a0d0e21e 5920 }
4e8e7886 5921
a0d0e21e 5922 if (SvOBJECT(sv)) {
4e8e7886 5923 SvREFCNT_dec(SvSTASH(sv)); /* possibly of changed persuasion */
a0d0e21e
LW
5924 SvOBJECT_off(sv); /* Curse the object. */
5925 if (SvTYPE(sv) != SVt_PVIO)
3280af22 5926 --PL_sv_objcount; /* XXX Might want something more general */
a0d0e21e 5927 }
463ee0b2 5928 }
524189f1
JH
5929 if (SvTYPE(sv) >= SVt_PVMG) {
5930 if (SvMAGIC(sv))
5931 mg_free(sv);
5932 if (SvFLAGS(sv) & SVpad_TYPED)
5933 SvREFCNT_dec(SvSTASH(sv));
5934 }
ec12f114 5935 stash = NULL;
79072805 5936 switch (SvTYPE(sv)) {
8990e307 5937 case SVt_PVIO:
df0bd2f4
GS
5938 if (IoIFP(sv) &&
5939 IoIFP(sv) != PerlIO_stdin() &&
5f05dabc 5940 IoIFP(sv) != PerlIO_stdout() &&
5941 IoIFP(sv) != PerlIO_stderr())
93578b34 5942 {
f2b5be74 5943 io_close((IO*)sv, FALSE);
93578b34 5944 }
1d7c1841 5945 if (IoDIRP(sv) && !(IoFLAGS(sv) & IOf_FAKE_DIRP))
1236053a 5946 PerlDir_close(IoDIRP(sv));
1d7c1841 5947 IoDIRP(sv) = (DIR*)NULL;
8990e307
LW
5948 Safefree(IoTOP_NAME(sv));
5949 Safefree(IoFMT_NAME(sv));
5950 Safefree(IoBOTTOM_NAME(sv));
a0d0e21e 5951 /* FALL THROUGH */
79072805 5952 case SVt_PVBM:
a0d0e21e 5953 goto freescalar;
79072805 5954 case SVt_PVCV:
748a9306 5955 case SVt_PVFM:
85e6fe83 5956 cv_undef((CV*)sv);
a0d0e21e 5957 goto freescalar;
79072805 5958 case SVt_PVHV:
85e6fe83 5959 hv_undef((HV*)sv);
a0d0e21e 5960 break;
79072805 5961 case SVt_PVAV:
85e6fe83 5962 av_undef((AV*)sv);
a0d0e21e 5963 break;
02270b4e 5964 case SVt_PVLV:
dd28f7bb
DM
5965 if (LvTYPE(sv) == 'T') { /* for tie: return HE to pool */
5966 SvREFCNT_dec(HeKEY_sv((HE*)LvTARG(sv)));
5967 HeNEXT((HE*)LvTARG(sv)) = PL_hv_fetch_ent_mh;
5968 PL_hv_fetch_ent_mh = (HE*)LvTARG(sv);
5969 }
5970 else if (LvTYPE(sv) != 't') /* unless tie: unrefcnted fake SV** */
5971 SvREFCNT_dec(LvTARG(sv));
02270b4e 5972 goto freescalar;
a0d0e21e 5973 case SVt_PVGV:
1edc1566 5974 gp_free((GV*)sv);
a0d0e21e 5975 Safefree(GvNAME(sv));
ec12f114
JPC
5976 /* cannot decrease stash refcount yet, as we might recursively delete
5977 ourselves when the refcnt drops to zero. Delay SvREFCNT_dec
5978 of stash until current sv is completely gone.
5979 -- JohnPC, 27 Mar 1998 */
5980 stash = GvSTASH(sv);
a0d0e21e 5981 /* FALL THROUGH */
79072805 5982 case SVt_PVMG:
79072805
LW
5983 case SVt_PVNV:
5984 case SVt_PVIV:
a0d0e21e 5985 freescalar:
0c34ef67 5986 SvOOK_off(sv);
79072805
LW
5987 /* FALL THROUGH */
5988 case SVt_PV:
a0d0e21e 5989 case SVt_RV:
810b8aa5
GS
5990 if (SvROK(sv)) {
5991 if (SvWEAKREF(sv))
5992 sv_del_backref(sv);
5993 else
5994 SvREFCNT_dec(SvRV(sv));
5995 }
765f542d
NC
5996#ifdef PERL_COPY_ON_WRITE
5997 else if (SvPVX(sv)) {
5998 if (SvIsCOW(sv)) {
5999 /* I believe I need to grab the global SV mutex here and
6000 then recheck the COW status. */
46187eeb
NC
6001 if (DEBUG_C_TEST) {
6002 PerlIO_printf(Perl_debug_log, "Copy on write: clear\n");
e419cbc5 6003 sv_dump(sv);
46187eeb 6004 }
e419cbc5 6005 sv_release_COW(sv, SvPVX(sv), SvCUR(sv), SvLEN(sv),
765f542d
NC
6006 SvUVX(sv), SV_COW_NEXT_SV(sv));
6007 /* And drop it here. */
6008 SvFAKE_off(sv);
6009 } else if (SvLEN(sv)) {
6010 Safefree(SvPVX(sv));
6011 }
6012 }
6013#else
1edc1566 6014 else if (SvPVX(sv) && SvLEN(sv))
463ee0b2 6015 Safefree(SvPVX(sv));
1c846c1f 6016 else if (SvPVX(sv) && SvREADONLY(sv) && SvFAKE(sv)) {
25716404
GS
6017 unsharepvn(SvPVX(sv),
6018 SvUTF8(sv) ? -(I32)SvCUR(sv) : SvCUR(sv),
6019 SvUVX(sv));
1c846c1f
NIS
6020 SvFAKE_off(sv);
6021 }
765f542d 6022#endif
79072805 6023 break;
a0d0e21e 6024/*
79072805 6025 case SVt_NV:
79072805 6026 case SVt_IV:
79072805
LW
6027 case SVt_NULL:
6028 break;
a0d0e21e 6029*/
79072805
LW
6030 }
6031
6032 switch (SvTYPE(sv)) {
6033 case SVt_NULL:
6034 break;
79072805
LW
6035 case SVt_IV:
6036 del_XIV(SvANY(sv));
6037 break;
6038 case SVt_NV:
6039 del_XNV(SvANY(sv));
6040 break;
ed6116ce
LW
6041 case SVt_RV:
6042 del_XRV(SvANY(sv));
6043 break;
79072805
LW
6044 case SVt_PV:
6045 del_XPV(SvANY(sv));
6046 break;
6047 case SVt_PVIV:
6048 del_XPVIV(SvANY(sv));
6049 break;
6050 case SVt_PVNV:
6051 del_XPVNV(SvANY(sv));
6052 break;
6053 case SVt_PVMG:
6054 del_XPVMG(SvANY(sv));
6055 break;
6056 case SVt_PVLV:
6057 del_XPVLV(SvANY(sv));
6058 break;
6059 case SVt_PVAV:
6060 del_XPVAV(SvANY(sv));
6061 break;
6062 case SVt_PVHV:
6063 del_XPVHV(SvANY(sv));
6064 break;
6065 case SVt_PVCV:
6066 del_XPVCV(SvANY(sv));
6067 break;
6068 case SVt_PVGV:
6069 del_XPVGV(SvANY(sv));
ec12f114
JPC
6070 /* code duplication for increased performance. */
6071 SvFLAGS(sv) &= SVf_BREAK;
6072 SvFLAGS(sv) |= SVTYPEMASK;
6073 /* decrease refcount of the stash that owns this GV, if any */
6074 if (stash)
6075 SvREFCNT_dec(stash);
6076 return; /* not break, SvFLAGS reset already happened */
79072805
LW
6077 case SVt_PVBM:
6078 del_XPVBM(SvANY(sv));
6079 break;
6080 case SVt_PVFM:
6081 del_XPVFM(SvANY(sv));
6082 break;
8990e307
LW
6083 case SVt_PVIO:
6084 del_XPVIO(SvANY(sv));
6085 break;
79072805 6086 }
a0d0e21e 6087 SvFLAGS(sv) &= SVf_BREAK;
8990e307 6088 SvFLAGS(sv) |= SVTYPEMASK;
79072805
LW
6089}
6090
645c22ef
DM
6091/*
6092=for apidoc sv_newref
6093
6094Increment an SV's reference count. Use the C<SvREFCNT_inc()> wrapper
6095instead.
6096
6097=cut
6098*/
6099
79072805 6100SV *
864dbfa3 6101Perl_sv_newref(pTHX_ SV *sv)
79072805 6102{
463ee0b2 6103 if (sv)
4db098f4 6104 (SvREFCNT(sv))++;
79072805
LW
6105 return sv;
6106}
6107
c461cf8f
JH
6108/*
6109=for apidoc sv_free
6110
645c22ef
DM
6111Decrement an SV's reference count, and if it drops to zero, call
6112C<sv_clear> to invoke destructors and free up any memory used by
6113the body; finally, deallocate the SV's head itself.
6114Normally called via a wrapper macro C<SvREFCNT_dec>.
c461cf8f
JH
6115
6116=cut
6117*/
6118
79072805 6119void
864dbfa3 6120Perl_sv_free(pTHX_ SV *sv)
79072805
LW
6121{
6122 if (!sv)
6123 return;
a0d0e21e
LW
6124 if (SvREFCNT(sv) == 0) {
6125 if (SvFLAGS(sv) & SVf_BREAK)
645c22ef
DM
6126 /* this SV's refcnt has been artificially decremented to
6127 * trigger cleanup */
a0d0e21e 6128 return;
3280af22 6129 if (PL_in_clean_all) /* All is fair */
1edc1566 6130 return;
d689ffdd
JP
6131 if (SvREADONLY(sv) && SvIMMORTAL(sv)) {
6132 /* make sure SvREFCNT(sv)==0 happens very seldom */
6133 SvREFCNT(sv) = (~(U32)0)/2;
6134 return;
6135 }
0453d815 6136 if (ckWARN_d(WARN_INTERNAL))
d5dede04 6137 Perl_warner(aTHX_ packWARN(WARN_INTERNAL),
472d47bc
SB
6138 "Attempt to free unreferenced scalar: SV 0x%"UVxf
6139 pTHX__FORMAT, PTR2UV(sv) pTHX__VALUE);
79072805
LW
6140 return;
6141 }
4db098f4 6142 if (--(SvREFCNT(sv)) > 0)
8990e307 6143 return;
8c4d3c90
NC
6144 Perl_sv_free2(aTHX_ sv);
6145}
6146
6147void
6148Perl_sv_free2(pTHX_ SV *sv)
6149{
463ee0b2
LW
6150#ifdef DEBUGGING
6151 if (SvTEMP(sv)) {
0453d815 6152 if (ckWARN_d(WARN_DEBUGGING))
9014280d 6153 Perl_warner(aTHX_ packWARN(WARN_DEBUGGING),
472d47bc
SB
6154 "Attempt to free temp prematurely: SV 0x%"UVxf
6155 pTHX__FORMAT, PTR2UV(sv) pTHX__VALUE);
79072805 6156 return;
79072805 6157 }
463ee0b2 6158#endif
d689ffdd
JP
6159 if (SvREADONLY(sv) && SvIMMORTAL(sv)) {
6160 /* make sure SvREFCNT(sv)==0 happens very seldom */
6161 SvREFCNT(sv) = (~(U32)0)/2;
6162 return;
6163 }
79072805 6164 sv_clear(sv);
477f5d66
CS
6165 if (! SvREFCNT(sv))
6166 del_SV(sv);
79072805
LW
6167}
6168
954c1994
GS
6169/*
6170=for apidoc sv_len
6171
645c22ef
DM
6172Returns the length of the string in the SV. Handles magic and type
6173coercion. See also C<SvCUR>, which gives raw access to the xpv_cur slot.
954c1994
GS
6174
6175=cut
6176*/
6177
79072805 6178STRLEN
864dbfa3 6179Perl_sv_len(pTHX_ register SV *sv)
79072805 6180{
463ee0b2 6181 STRLEN len;
79072805
LW
6182
6183 if (!sv)
6184 return 0;
6185
8990e307 6186 if (SvGMAGICAL(sv))
565764a8 6187 len = mg_length(sv);
8990e307 6188 else
497b47a8 6189 (void)SvPV(sv, len);
463ee0b2 6190 return len;
79072805
LW
6191}
6192
c461cf8f
JH
6193/*
6194=for apidoc sv_len_utf8
6195
6196Returns the number of characters in the string in an SV, counting wide
1e54db1a 6197UTF-8 bytes as a single character. Handles magic and type coercion.
c461cf8f
JH
6198
6199=cut
6200*/
6201
7e8c5dac
HS
6202/*
6203 * The length is cached in PERL_UTF8_magic, in the mg_len field. Also the
6204 * mg_ptr is used, by sv_pos_u2b(), see the comments of S_utf8_mg_pos_init().
6205 * (Note that the mg_len is not the length of the mg_ptr field.)
7a5fa8a2 6206 *
7e8c5dac
HS
6207 */
6208
a0ed51b3 6209STRLEN
864dbfa3 6210Perl_sv_len_utf8(pTHX_ register SV *sv)
a0ed51b3 6211{
a0ed51b3
LW
6212 if (!sv)
6213 return 0;
6214
a0ed51b3 6215 if (SvGMAGICAL(sv))
b76347f2 6216 return mg_length(sv);
a0ed51b3 6217 else
b76347f2 6218 {
7e8c5dac 6219 STRLEN len, ulen;
b76347f2 6220 U8 *s = (U8*)SvPV(sv, len);
7e8c5dac
HS
6221 MAGIC *mg = SvMAGICAL(sv) ? mg_find(sv, PERL_MAGIC_utf8) : 0;
6222
e23c8137 6223 if (mg && mg->mg_len != -1 && (mg->mg_len > 0 || len == 0)) {
7e8c5dac 6224 ulen = mg->mg_len;
e23c8137
JH
6225#ifdef PERL_UTF8_CACHE_ASSERT
6226 assert(ulen == Perl_utf8_length(aTHX_ s, s + len));
6227#endif
6228 }
7e8c5dac
HS
6229 else {
6230 ulen = Perl_utf8_length(aTHX_ s, s + len);
6231 if (!mg && !SvREADONLY(sv)) {
6232 sv_magic(sv, 0, PERL_MAGIC_utf8, 0, 0);
6233 mg = mg_find(sv, PERL_MAGIC_utf8);
6234 assert(mg);
6235 }
6236 if (mg)
6237 mg->mg_len = ulen;
6238 }
6239 return ulen;
6240 }
6241}
6242
6243/* S_utf8_mg_pos_init() is used to initialize the mg_ptr field of
6244 * a PERL_UTF8_magic. The mg_ptr is used to store the mapping
6245 * between UTF-8 and byte offsets. There are two (substr offset and substr
6246 * length, the i offset, PERL_MAGIC_UTF8_CACHESIZE) times two (UTF-8 offset
6247 * and byte offset) cache positions.
6248 *
6249 * The mg_len field is used by sv_len_utf8(), see its comments.
6250 * Note that the mg_len is not the length of the mg_ptr field.
6251 *
6252 */
6253STATIC bool
6e551876 6254S_utf8_mg_pos_init(pTHX_ SV *sv, MAGIC **mgp, STRLEN **cachep, I32 i, I32 *offsetp, U8 *s, U8 *start)
7e8c5dac 6255{
7a5fa8a2 6256 bool found = FALSE;
7e8c5dac
HS
6257
6258 if (SvMAGICAL(sv) && !SvREADONLY(sv)) {
8f78557a
AE
6259 if (!*mgp)
6260 *mgp = sv_magicext(sv, 0, PERL_MAGIC_utf8, &PL_vtbl_utf8, 0, 0);
7e8c5dac 6261 assert(*mgp);
b76347f2 6262
7e8c5dac
HS
6263 if ((*mgp)->mg_ptr)
6264 *cachep = (STRLEN *) (*mgp)->mg_ptr;
6265 else {
6266 Newz(0, *cachep, PERL_MAGIC_UTF8_CACHESIZE * 2, STRLEN);
6267 (*mgp)->mg_ptr = (char *) *cachep;
6268 }
6269 assert(*cachep);
6270
6271 (*cachep)[i] = *offsetp;
6272 (*cachep)[i+1] = s - start;
6273 found = TRUE;
a0ed51b3 6274 }
7e8c5dac
HS
6275
6276 return found;
a0ed51b3
LW
6277}
6278
645c22ef 6279/*
7e8c5dac
HS
6280 * S_utf8_mg_pos() is used to query and update mg_ptr field of
6281 * a PERL_UTF8_magic. The mg_ptr is used to store the mapping
6282 * between UTF-8 and byte offsets. See also the comments of
6283 * S_utf8_mg_pos_init().
6284 *
6285 */
6286STATIC bool
6e551876 6287S_utf8_mg_pos(pTHX_ SV *sv, MAGIC **mgp, STRLEN **cachep, I32 i, I32 *offsetp, I32 uoff, U8 **sp, U8 *start, U8 *send)
7e8c5dac
HS
6288{
6289 bool found = FALSE;
6290
6291 if (SvMAGICAL(sv) && !SvREADONLY(sv)) {
6292 if (!*mgp)
6293 *mgp = mg_find(sv, PERL_MAGIC_utf8);
6294 if (*mgp && (*mgp)->mg_ptr) {
6295 *cachep = (STRLEN *) (*mgp)->mg_ptr;
e23c8137 6296 ASSERT_UTF8_CACHE(*cachep);
667208dd 6297 if ((*cachep)[i] == (STRLEN)uoff) /* An exact match. */
7a5fa8a2 6298 found = TRUE;
7e8c5dac
HS
6299 else { /* We will skip to the right spot. */
6300 STRLEN forw = 0;
6301 STRLEN backw = 0;
6302 U8* p = NULL;
6303
6304 /* The assumption is that going backward is half
6305 * the speed of going forward (that's where the
6306 * 2 * backw in the below comes from). (The real
6307 * figure of course depends on the UTF-8 data.) */
6308
667208dd 6309 if ((*cachep)[i] > (STRLEN)uoff) {
7e8c5dac 6310 forw = uoff;
667208dd 6311 backw = (*cachep)[i] - (STRLEN)uoff;
7e8c5dac
HS
6312
6313 if (forw < 2 * backw)
6314 p = start;
6315 else
6316 p = start + (*cachep)[i+1];
6317 }
6318 /* Try this only for the substr offset (i == 0),
6319 * not for the substr length (i == 2). */
6320 else if (i == 0) { /* (*cachep)[i] < uoff */
6321 STRLEN ulen = sv_len_utf8(sv);
6322
667208dd
JH
6323 if ((STRLEN)uoff < ulen) {
6324 forw = (STRLEN)uoff - (*cachep)[i];
6325 backw = ulen - (STRLEN)uoff;
7e8c5dac
HS
6326
6327 if (forw < 2 * backw)
6328 p = start + (*cachep)[i+1];
6329 else
6330 p = send;
6331 }
6332
6333 /* If the string is not long enough for uoff,
6334 * we could extend it, but not at this low a level. */
6335 }
6336
6337 if (p) {
6338 if (forw < 2 * backw) {
6339 while (forw--)
6340 p += UTF8SKIP(p);
6341 }
6342 else {
6343 while (backw--) {
6344 p--;
6345 while (UTF8_IS_CONTINUATION(*p))
6346 p--;
6347 }
6348 }
6349
6350 /* Update the cache. */
667208dd 6351 (*cachep)[i] = (STRLEN)uoff;
7e8c5dac 6352 (*cachep)[i+1] = p - start;
8f78557a
AE
6353
6354 /* Drop the stale "length" cache */
6355 if (i == 0) {
6356 (*cachep)[2] = 0;
6357 (*cachep)[3] = 0;
6358 }
7a5fa8a2 6359
7e8c5dac
HS
6360 found = TRUE;
6361 }
6362 }
6363 if (found) { /* Setup the return values. */
6364 *offsetp = (*cachep)[i+1];
6365 *sp = start + *offsetp;
6366 if (*sp >= send) {
6367 *sp = send;
6368 *offsetp = send - start;
6369 }
6370 else if (*sp < start) {
6371 *sp = start;
6372 *offsetp = 0;
6373 }
6374 }
6375 }
e23c8137
JH
6376#ifdef PERL_UTF8_CACHE_ASSERT
6377 if (found) {
6378 U8 *s = start;
6379 I32 n = uoff;
6380
6381 while (n-- && s < send)
6382 s += UTF8SKIP(s);
6383
6384 if (i == 0) {
6385 assert(*offsetp == s - start);
6386 assert((*cachep)[0] == (STRLEN)uoff);
6387 assert((*cachep)[1] == *offsetp);
6388 }
6389 ASSERT_UTF8_CACHE(*cachep);
6390 }
6391#endif
7e8c5dac 6392 }
e23c8137 6393
7e8c5dac
HS
6394 return found;
6395}
7a5fa8a2 6396
7e8c5dac 6397/*
645c22ef
DM
6398=for apidoc sv_pos_u2b
6399
1e54db1a 6400Converts the value pointed to by offsetp from a count of UTF-8 chars from
645c22ef
DM
6401the start of the string, to a count of the equivalent number of bytes; if
6402lenp is non-zero, it does the same to lenp, but this time starting from
6403the offset, rather than from the start of the string. Handles magic and
6404type coercion.
6405
6406=cut
6407*/
6408
7e8c5dac
HS
6409/*
6410 * sv_pos_u2b() uses, like sv_pos_b2u(), the mg_ptr of the potential
6411 * PERL_UTF8_magic of the sv to store the mapping between UTF-8 and
6412 * byte offsets. See also the comments of S_utf8_mg_pos().
6413 *
6414 */
6415
a0ed51b3 6416void
864dbfa3 6417Perl_sv_pos_u2b(pTHX_ register SV *sv, I32* offsetp, I32* lenp)
a0ed51b3 6418{
dfe13c55
GS
6419 U8 *start;
6420 U8 *s;
a0ed51b3 6421 STRLEN len;
7e8c5dac
HS
6422 STRLEN *cache = 0;
6423 STRLEN boffset = 0;
a0ed51b3
LW
6424
6425 if (!sv)
6426 return;
6427
dfe13c55 6428 start = s = (U8*)SvPV(sv, len);
7e8c5dac
HS
6429 if (len) {
6430 I32 uoffset = *offsetp;
6431 U8 *send = s + len;
6432 MAGIC *mg = 0;
6433 bool found = FALSE;
6434
bdf77a2a 6435 if (utf8_mg_pos(sv, &mg, &cache, 0, offsetp, *offsetp, &s, start, send))
7e8c5dac
HS
6436 found = TRUE;
6437 if (!found && uoffset > 0) {
6438 while (s < send && uoffset--)
6439 s += UTF8SKIP(s);
6440 if (s >= send)
6441 s = send;
bdf77a2a 6442 if (utf8_mg_pos_init(sv, &mg, &cache, 0, offsetp, s, start))
7e8c5dac
HS
6443 boffset = cache[1];
6444 *offsetp = s - start;
6445 }
6446 if (lenp) {
6447 found = FALSE;
6448 start = s;
bdf77a2a 6449 if (utf8_mg_pos(sv, &mg, &cache, 2, lenp, *lenp + *offsetp, &s, start, send)) {
7e8c5dac
HS
6450 *lenp -= boffset;
6451 found = TRUE;
6452 }
6453 if (!found && *lenp > 0) {
6454 I32 ulen = *lenp;
6455 if (ulen > 0)
6456 while (s < send && ulen--)
6457 s += UTF8SKIP(s);
6458 if (s >= send)
6459 s = send;
a67d7df9 6460 utf8_mg_pos_init(sv, &mg, &cache, 2, lenp, s, start);
7e8c5dac
HS
6461 }
6462 *lenp = s - start;
6463 }
e23c8137 6464 ASSERT_UTF8_CACHE(cache);
7e8c5dac
HS
6465 }
6466 else {
6467 *offsetp = 0;
6468 if (lenp)
6469 *lenp = 0;
a0ed51b3 6470 }
e23c8137 6471
a0ed51b3
LW
6472 return;
6473}
6474
645c22ef
DM
6475/*
6476=for apidoc sv_pos_b2u
6477
6478Converts the value pointed to by offsetp from a count of bytes from the
1e54db1a 6479start of the string, to a count of the equivalent number of UTF-8 chars.
645c22ef
DM
6480Handles magic and type coercion.
6481
6482=cut
6483*/
6484
7e8c5dac
HS
6485/*
6486 * sv_pos_b2u() uses, like sv_pos_u2b(), the mg_ptr of the potential
6487 * PERL_UTF8_magic of the sv to store the mapping between UTF-8 and
6488 * byte offsets. See also the comments of S_utf8_mg_pos().
6489 *
6490 */
6491
a0ed51b3 6492void
7e8c5dac 6493Perl_sv_pos_b2u(pTHX_ register SV* sv, I32* offsetp)
a0ed51b3 6494{
7e8c5dac 6495 U8* s;
a0ed51b3
LW
6496 STRLEN len;
6497
6498 if (!sv)
6499 return;
6500
dfe13c55 6501 s = (U8*)SvPV(sv, len);
eb160463 6502 if ((I32)len < *offsetp)
a0dbb045 6503 Perl_croak(aTHX_ "panic: sv_pos_b2u: bad byte offset");
7e8c5dac
HS
6504 else {
6505 U8* send = s + *offsetp;
6506 MAGIC* mg = NULL;
6507 STRLEN *cache = NULL;
6508
6509 len = 0;
6510
6511 if (SvMAGICAL(sv) && !SvREADONLY(sv)) {
6512 mg = mg_find(sv, PERL_MAGIC_utf8);
6513 if (mg && mg->mg_ptr) {
6514 cache = (STRLEN *) mg->mg_ptr;
c5661c80 6515 if (cache[1] == (STRLEN)*offsetp) {
7e8c5dac
HS
6516 /* An exact match. */
6517 *offsetp = cache[0];
6518
6519 return;
6520 }
c5661c80 6521 else if (cache[1] < (STRLEN)*offsetp) {
7e8c5dac
HS
6522 /* We already know part of the way. */
6523 len = cache[0];
6524 s += cache[1];
7a5fa8a2 6525 /* Let the below loop do the rest. */
7e8c5dac
HS
6526 }
6527 else { /* cache[1] > *offsetp */
6528 /* We already know all of the way, now we may
6529 * be able to walk back. The same assumption
6530 * is made as in S_utf8_mg_pos(), namely that
6531 * walking backward is twice slower than
6532 * walking forward. */
6533 STRLEN forw = *offsetp;
6534 STRLEN backw = cache[1] - *offsetp;
6535
6536 if (!(forw < 2 * backw)) {
6537 U8 *p = s + cache[1];
6538 STRLEN ubackw = 0;
7a5fa8a2 6539
a5b510f2
AE
6540 cache[1] -= backw;
6541
7e8c5dac
HS
6542 while (backw--) {
6543 p--;
0aeb64d0 6544 while (UTF8_IS_CONTINUATION(*p)) {
7e8c5dac 6545 p--;
0aeb64d0
JH
6546 backw--;
6547 }
7e8c5dac
HS
6548 ubackw++;
6549 }
6550
6551 cache[0] -= ubackw;
0aeb64d0 6552 *offsetp = cache[0];
a67d7df9
TS
6553
6554 /* Drop the stale "length" cache */
6555 cache[2] = 0;
6556 cache[3] = 0;
6557
0aeb64d0 6558 return;
7e8c5dac
HS
6559 }
6560 }
6561 }
e23c8137 6562 ASSERT_UTF8_CACHE(cache);
a0dbb045 6563 }
7e8c5dac
HS
6564
6565 while (s < send) {
6566 STRLEN n = 1;
6567
6568 /* Call utf8n_to_uvchr() to validate the sequence
6569 * (unless a simple non-UTF character) */
6570 if (!UTF8_IS_INVARIANT(*s))
6571 utf8n_to_uvchr(s, UTF8SKIP(s), &n, 0);
6572 if (n > 0) {
6573 s += n;
6574 len++;
6575 }
6576 else
6577 break;
6578 }
6579
6580 if (!SvREADONLY(sv)) {
6581 if (!mg) {
6582 sv_magic(sv, 0, PERL_MAGIC_utf8, 0, 0);
6583 mg = mg_find(sv, PERL_MAGIC_utf8);
6584 }
6585 assert(mg);
6586
6587 if (!mg->mg_ptr) {
979acdb5 6588 Newz(0, cache, PERL_MAGIC_UTF8_CACHESIZE * 2, STRLEN);
7e8c5dac
HS
6589 mg->mg_ptr = (char *) cache;
6590 }
6591 assert(cache);
6592
6593 cache[0] = len;
6594 cache[1] = *offsetp;
a67d7df9
TS
6595 /* Drop the stale "length" cache */
6596 cache[2] = 0;
6597 cache[3] = 0;
7e8c5dac
HS
6598 }
6599
6600 *offsetp = len;
a0ed51b3 6601 }
a0ed51b3
LW
6602 return;
6603}
6604
954c1994
GS
6605/*
6606=for apidoc sv_eq
6607
6608Returns a boolean indicating whether the strings in the two SVs are
645c22ef
DM
6609identical. Is UTF-8 and 'use bytes' aware, handles get magic, and will
6610coerce its args to strings if necessary.
954c1994
GS
6611
6612=cut
6613*/
6614
79072805 6615I32
e01b9e88 6616Perl_sv_eq(pTHX_ register SV *sv1, register SV *sv2)
79072805
LW
6617{
6618 char *pv1;
463ee0b2 6619 STRLEN cur1;
79072805 6620 char *pv2;
463ee0b2 6621 STRLEN cur2;
e01b9e88 6622 I32 eq = 0;
553e1bcc
AT
6623 char *tpv = Nullch;
6624 SV* svrecode = Nullsv;
79072805 6625
e01b9e88 6626 if (!sv1) {
79072805
LW
6627 pv1 = "";
6628 cur1 = 0;
6629 }
463ee0b2 6630 else
e01b9e88 6631 pv1 = SvPV(sv1, cur1);
79072805 6632
e01b9e88
SC
6633 if (!sv2){
6634 pv2 = "";
6635 cur2 = 0;
92d29cee 6636 }
e01b9e88
SC
6637 else
6638 pv2 = SvPV(sv2, cur2);
79072805 6639
cf48d248 6640 if (cur1 && cur2 && SvUTF8(sv1) != SvUTF8(sv2) && !IN_BYTES) {
799ef3cb
JH
6641 /* Differing utf8ness.
6642 * Do not UTF8size the comparands as a side-effect. */
6643 if (PL_encoding) {
6644 if (SvUTF8(sv1)) {
553e1bcc
AT
6645 svrecode = newSVpvn(pv2, cur2);
6646 sv_recode_to_utf8(svrecode, PL_encoding);
6647 pv2 = SvPV(svrecode, cur2);
799ef3cb
JH
6648 }
6649 else {
553e1bcc
AT
6650 svrecode = newSVpvn(pv1, cur1);
6651 sv_recode_to_utf8(svrecode, PL_encoding);
6652 pv1 = SvPV(svrecode, cur1);
799ef3cb
JH
6653 }
6654 /* Now both are in UTF-8. */
0a1bd7ac
DM
6655 if (cur1 != cur2) {
6656 SvREFCNT_dec(svrecode);
799ef3cb 6657 return FALSE;
0a1bd7ac 6658 }
799ef3cb
JH
6659 }
6660 else {
6661 bool is_utf8 = TRUE;
6662
6663 if (SvUTF8(sv1)) {
6664 /* sv1 is the UTF-8 one,
6665 * if is equal it must be downgrade-able */
6666 char *pv = (char*)bytes_from_utf8((U8*)pv1,
6667 &cur1, &is_utf8);
6668 if (pv != pv1)
553e1bcc 6669 pv1 = tpv = pv;
799ef3cb
JH
6670 }
6671 else {
6672 /* sv2 is the UTF-8 one,
6673 * if is equal it must be downgrade-able */
6674 char *pv = (char *)bytes_from_utf8((U8*)pv2,
6675 &cur2, &is_utf8);
6676 if (pv != pv2)
553e1bcc 6677 pv2 = tpv = pv;
799ef3cb
JH
6678 }
6679 if (is_utf8) {
6680 /* Downgrade not possible - cannot be eq */
bf694877 6681 assert (tpv == 0);
799ef3cb
JH
6682 return FALSE;
6683 }
6684 }
cf48d248
JH
6685 }
6686
6687 if (cur1 == cur2)
765f542d 6688 eq = (pv1 == pv2) || memEQ(pv1, pv2, cur1);
e01b9e88 6689
553e1bcc
AT
6690 if (svrecode)
6691 SvREFCNT_dec(svrecode);
799ef3cb 6692
553e1bcc
AT
6693 if (tpv)
6694 Safefree(tpv);
cf48d248 6695
e01b9e88 6696 return eq;
79072805
LW
6697}
6698
954c1994
GS
6699/*
6700=for apidoc sv_cmp
6701
6702Compares the strings in two SVs. Returns -1, 0, or 1 indicating whether the
6703string in C<sv1> is less than, equal to, or greater than the string in
645c22ef
DM
6704C<sv2>. Is UTF-8 and 'use bytes' aware, handles get magic, and will
6705coerce its args to strings if necessary. See also C<sv_cmp_locale>.
954c1994
GS
6706
6707=cut
6708*/
6709
79072805 6710I32
e01b9e88 6711Perl_sv_cmp(pTHX_ register SV *sv1, register SV *sv2)
79072805 6712{
560a288e 6713 STRLEN cur1, cur2;
553e1bcc 6714 char *pv1, *pv2, *tpv = Nullch;
cf48d248 6715 I32 cmp;
553e1bcc 6716 SV *svrecode = Nullsv;
560a288e 6717
e01b9e88
SC
6718 if (!sv1) {
6719 pv1 = "";
560a288e
GS
6720 cur1 = 0;
6721 }
e01b9e88
SC
6722 else
6723 pv1 = SvPV(sv1, cur1);
560a288e 6724
553e1bcc 6725 if (!sv2) {
e01b9e88 6726 pv2 = "";
560a288e
GS
6727 cur2 = 0;
6728 }
e01b9e88
SC
6729 else
6730 pv2 = SvPV(sv2, cur2);
79072805 6731
cf48d248 6732 if (cur1 && cur2 && SvUTF8(sv1) != SvUTF8(sv2) && !IN_BYTES) {
799ef3cb
JH
6733 /* Differing utf8ness.
6734 * Do not UTF8size the comparands as a side-effect. */
cf48d248 6735 if (SvUTF8(sv1)) {
799ef3cb 6736 if (PL_encoding) {
553e1bcc
AT
6737 svrecode = newSVpvn(pv2, cur2);
6738 sv_recode_to_utf8(svrecode, PL_encoding);
6739 pv2 = SvPV(svrecode, cur2);
799ef3cb
JH
6740 }
6741 else {
553e1bcc 6742 pv2 = tpv = (char*)bytes_to_utf8((U8*)pv2, &cur2);
799ef3cb 6743 }
cf48d248
JH
6744 }
6745 else {
799ef3cb 6746 if (PL_encoding) {
553e1bcc
AT
6747 svrecode = newSVpvn(pv1, cur1);
6748 sv_recode_to_utf8(svrecode, PL_encoding);
6749 pv1 = SvPV(svrecode, cur1);
799ef3cb
JH
6750 }
6751 else {
553e1bcc 6752 pv1 = tpv = (char*)bytes_to_utf8((U8*)pv1, &cur1);
799ef3cb 6753 }
cf48d248
JH
6754 }
6755 }
6756
e01b9e88 6757 if (!cur1) {
cf48d248 6758 cmp = cur2 ? -1 : 0;
e01b9e88 6759 } else if (!cur2) {
cf48d248
JH
6760 cmp = 1;
6761 } else {
6762 I32 retval = memcmp((void*)pv1, (void*)pv2, cur1 < cur2 ? cur1 : cur2);
e01b9e88
SC
6763
6764 if (retval) {
cf48d248 6765 cmp = retval < 0 ? -1 : 1;
e01b9e88 6766 } else if (cur1 == cur2) {
cf48d248
JH
6767 cmp = 0;
6768 } else {
6769 cmp = cur1 < cur2 ? -1 : 1;
e01b9e88 6770 }
cf48d248 6771 }
16660edb 6772
553e1bcc
AT
6773 if (svrecode)
6774 SvREFCNT_dec(svrecode);
799ef3cb 6775
553e1bcc
AT
6776 if (tpv)
6777 Safefree(tpv);
cf48d248
JH
6778
6779 return cmp;
bbce6d69 6780}
16660edb 6781
c461cf8f
JH
6782/*
6783=for apidoc sv_cmp_locale
6784
645c22ef
DM
6785Compares the strings in two SVs in a locale-aware manner. Is UTF-8 and
6786'use bytes' aware, handles get magic, and will coerce its args to strings
6787if necessary. See also C<sv_cmp_locale>. See also C<sv_cmp>.
c461cf8f
JH
6788
6789=cut
6790*/
6791
bbce6d69 6792I32
864dbfa3 6793Perl_sv_cmp_locale(pTHX_ register SV *sv1, register SV *sv2)
bbce6d69 6794{
36477c24 6795#ifdef USE_LOCALE_COLLATE
16660edb 6796
bbce6d69 6797 char *pv1, *pv2;
6798 STRLEN len1, len2;
6799 I32 retval;
16660edb 6800
3280af22 6801 if (PL_collation_standard)
bbce6d69 6802 goto raw_compare;
16660edb 6803
bbce6d69 6804 len1 = 0;
8ac85365 6805 pv1 = sv1 ? sv_collxfrm(sv1, &len1) : (char *) NULL;
bbce6d69 6806 len2 = 0;
8ac85365 6807 pv2 = sv2 ? sv_collxfrm(sv2, &len2) : (char *) NULL;
16660edb 6808
bbce6d69 6809 if (!pv1 || !len1) {
6810 if (pv2 && len2)
6811 return -1;
6812 else
6813 goto raw_compare;
6814 }
6815 else {
6816 if (!pv2 || !len2)
6817 return 1;
6818 }
16660edb 6819
bbce6d69 6820 retval = memcmp((void*)pv1, (void*)pv2, len1 < len2 ? len1 : len2);
16660edb 6821
bbce6d69 6822 if (retval)
16660edb 6823 return retval < 0 ? -1 : 1;
6824
bbce6d69 6825 /*
6826 * When the result of collation is equality, that doesn't mean
6827 * that there are no differences -- some locales exclude some
6828 * characters from consideration. So to avoid false equalities,
6829 * we use the raw string as a tiebreaker.
6830 */
16660edb 6831
bbce6d69 6832 raw_compare:
6833 /* FALL THROUGH */
16660edb 6834
36477c24 6835#endif /* USE_LOCALE_COLLATE */
16660edb 6836
bbce6d69 6837 return sv_cmp(sv1, sv2);
6838}
79072805 6839
645c22ef 6840
36477c24 6841#ifdef USE_LOCALE_COLLATE
645c22ef 6842
7a4c00b4 6843/*
645c22ef
DM
6844=for apidoc sv_collxfrm
6845
6846Add Collate Transform magic to an SV if it doesn't already have it.
6847
6848Any scalar variable may carry PERL_MAGIC_collxfrm magic that contains the
6849scalar data of the variable, but transformed to such a format that a normal
6850memory comparison can be used to compare the data according to the locale
6851settings.
6852
6853=cut
6854*/
6855
bbce6d69 6856char *
864dbfa3 6857Perl_sv_collxfrm(pTHX_ SV *sv, STRLEN *nxp)
bbce6d69 6858{
7a4c00b4 6859 MAGIC *mg;
16660edb 6860
14befaf4 6861 mg = SvMAGICAL(sv) ? mg_find(sv, PERL_MAGIC_collxfrm) : (MAGIC *) NULL;
3280af22 6862 if (!mg || !mg->mg_ptr || *(U32*)mg->mg_ptr != PL_collation_ix) {
bbce6d69 6863 char *s, *xf;
6864 STRLEN len, xlen;
6865
7a4c00b4 6866 if (mg)
6867 Safefree(mg->mg_ptr);
bbce6d69 6868 s = SvPV(sv, len);
6869 if ((xf = mem_collxfrm(s, len, &xlen))) {
ff0cee69 6870 if (SvREADONLY(sv)) {
6871 SAVEFREEPV(xf);
6872 *nxp = xlen;
3280af22 6873 return xf + sizeof(PL_collation_ix);
ff0cee69 6874 }
7a4c00b4 6875 if (! mg) {
14befaf4
DM
6876 sv_magic(sv, 0, PERL_MAGIC_collxfrm, 0, 0);
6877 mg = mg_find(sv, PERL_MAGIC_collxfrm);
7a4c00b4 6878 assert(mg);
bbce6d69 6879 }
7a4c00b4 6880 mg->mg_ptr = xf;
565764a8 6881 mg->mg_len = xlen;
7a4c00b4 6882 }
6883 else {
ff0cee69 6884 if (mg) {
6885 mg->mg_ptr = NULL;
565764a8 6886 mg->mg_len = -1;
ff0cee69 6887 }
bbce6d69 6888 }
6889 }
7a4c00b4 6890 if (mg && mg->mg_ptr) {
565764a8 6891 *nxp = mg->mg_len;
3280af22 6892 return mg->mg_ptr + sizeof(PL_collation_ix);
bbce6d69 6893 }
6894 else {
6895 *nxp = 0;
6896 return NULL;
16660edb 6897 }
79072805
LW
6898}
6899
36477c24 6900#endif /* USE_LOCALE_COLLATE */
bbce6d69 6901
c461cf8f
JH
6902/*
6903=for apidoc sv_gets
6904
6905Get a line from the filehandle and store it into the SV, optionally
6906appending to the currently-stored string.
6907
6908=cut
6909*/
6910
79072805 6911char *
864dbfa3 6912Perl_sv_gets(pTHX_ register SV *sv, register PerlIO *fp, I32 append)
79072805 6913{
c07a80fd 6914 char *rsptr;
6915 STRLEN rslen;
6916 register STDCHAR rslast;
6917 register STDCHAR *bp;
6918 register I32 cnt;
9c5ffd7c 6919 I32 i = 0;
8bfdd7d9 6920 I32 rspara = 0;
e311fd51 6921 I32 recsize;
c07a80fd 6922
bc44a8a2
NC
6923 if (SvTHINKFIRST(sv))
6924 sv_force_normal_flags(sv, append ? 0 : SV_COW_DROP_PV);
765f542d
NC
6925 /* XXX. If you make this PVIV, then copy on write can copy scalars read
6926 from <>.
6927 However, perlbench says it's slower, because the existing swipe code
6928 is faster than copy on write.
6929 Swings and roundabouts. */
6fc92669 6930 (void)SvUPGRADE(sv, SVt_PV);
99491443 6931
ff68c719 6932 SvSCREAM_off(sv);
efd8b2ba
AE
6933
6934 if (append) {
6935 if (PerlIO_isutf8(fp)) {
6936 if (!SvUTF8(sv)) {
6937 sv_utf8_upgrade_nomg(sv);
6938 sv_pos_u2b(sv,&append,0);
6939 }
6940 } else if (SvUTF8(sv)) {
6941 SV *tsv = NEWSV(0,0);
6942 sv_gets(tsv, fp, 0);
6943 sv_utf8_upgrade_nomg(tsv);
6944 SvCUR_set(sv,append);
6945 sv_catsv(sv,tsv);
6946 sv_free(tsv);
6947 goto return_string_or_null;
6948 }
6949 }
6950
6951 SvPOK_only(sv);
6952 if (PerlIO_isutf8(fp))
6953 SvUTF8_on(sv);
c07a80fd 6954
923e4eb5 6955 if (IN_PERL_COMPILETIME) {
8bfdd7d9
HS
6956 /* we always read code in line mode */
6957 rsptr = "\n";
6958 rslen = 1;
6959 }
6960 else if (RsSNARF(PL_rs)) {
7a5fa8a2
NIS
6961 /* If it is a regular disk file use size from stat() as estimate
6962 of amount we are going to read - may result in malloc-ing
6963 more memory than we realy need if layers bellow reduce
e468d35b
NIS
6964 size we read (e.g. CRLF or a gzip layer)
6965 */
e311fd51 6966 Stat_t st;
e468d35b
NIS
6967 if (!PerlLIO_fstat(PerlIO_fileno(fp), &st) && S_ISREG(st.st_mode)) {
6968 Off_t offset = PerlIO_tell(fp);
58f1856e 6969 if (offset != (Off_t) -1 && st.st_size + append > offset) {
e468d35b
NIS
6970 (void) SvGROW(sv, (STRLEN)((st.st_size - offset) + append + 1));
6971 }
6972 }
c07a80fd 6973 rsptr = NULL;
6974 rslen = 0;
6975 }
3280af22 6976 else if (RsRECORD(PL_rs)) {
e311fd51 6977 I32 bytesread;
5b2b9c68
HM
6978 char *buffer;
6979
6980 /* Grab the size of the record we're getting */
3280af22 6981 recsize = SvIV(SvRV(PL_rs));
e311fd51 6982 buffer = SvGROW(sv, (STRLEN)(recsize + append + 1)) + append;
5b2b9c68
HM
6983 /* Go yank in */
6984#ifdef VMS
6985 /* VMS wants read instead of fread, because fread doesn't respect */
6986 /* RMS record boundaries. This is not necessarily a good thing to be */
e468d35b
NIS
6987 /* doing, but we've got no other real choice - except avoid stdio
6988 as implementation - perhaps write a :vms layer ?
6989 */
5b2b9c68
HM
6990 bytesread = PerlLIO_read(PerlIO_fileno(fp), buffer, recsize);
6991#else
6992 bytesread = PerlIO_read(fp, buffer, recsize);
6993#endif
27e6ca2d
AE
6994 if (bytesread < 0)
6995 bytesread = 0;
e311fd51 6996 SvCUR_set(sv, bytesread += append);
e670df4e 6997 buffer[bytesread] = '\0';
efd8b2ba 6998 goto return_string_or_null;
5b2b9c68 6999 }
3280af22 7000 else if (RsPARA(PL_rs)) {
c07a80fd 7001 rsptr = "\n\n";
7002 rslen = 2;
8bfdd7d9 7003 rspara = 1;
c07a80fd 7004 }
7d59b7e4
NIS
7005 else {
7006 /* Get $/ i.e. PL_rs into same encoding as stream wants */
7007 if (PerlIO_isutf8(fp)) {
7008 rsptr = SvPVutf8(PL_rs, rslen);
7009 }
7010 else {
7011 if (SvUTF8(PL_rs)) {
7012 if (!sv_utf8_downgrade(PL_rs, TRUE)) {
7013 Perl_croak(aTHX_ "Wide character in $/");
7014 }
7015 }
7016 rsptr = SvPV(PL_rs, rslen);
7017 }
7018 }
7019
c07a80fd 7020 rslast = rslen ? rsptr[rslen - 1] : '\0';
7021
8bfdd7d9 7022 if (rspara) { /* have to do this both before and after */
79072805 7023 do { /* to make sure file boundaries work right */
760ac839 7024 if (PerlIO_eof(fp))
a0d0e21e 7025 return 0;
760ac839 7026 i = PerlIO_getc(fp);
79072805 7027 if (i != '\n') {
a0d0e21e
LW
7028 if (i == -1)
7029 return 0;
760ac839 7030 PerlIO_ungetc(fp,i);
79072805
LW
7031 break;
7032 }
7033 } while (i != EOF);
7034 }
c07a80fd 7035
760ac839
LW
7036 /* See if we know enough about I/O mechanism to cheat it ! */
7037
7038 /* This used to be #ifdef test - it is made run-time test for ease
1c846c1f 7039 of abstracting out stdio interface. One call should be cheap
760ac839
LW
7040 enough here - and may even be a macro allowing compile
7041 time optimization.
7042 */
7043
7044 if (PerlIO_fast_gets(fp)) {
7045
7046 /*
7047 * We're going to steal some values from the stdio struct
7048 * and put EVERYTHING in the innermost loop into registers.
7049 */
7050 register STDCHAR *ptr;
7051 STRLEN bpx;
7052 I32 shortbuffered;
7053
16660edb 7054#if defined(VMS) && defined(PERLIO_IS_STDIO)
7055 /* An ungetc()d char is handled separately from the regular
7056 * buffer, so we getc() it back out and stuff it in the buffer.
7057 */
7058 i = PerlIO_getc(fp);
7059 if (i == EOF) return 0;
7060 *(--((*fp)->_ptr)) = (unsigned char) i;
7061 (*fp)->_cnt++;
7062#endif
c07a80fd 7063
c2960299 7064 /* Here is some breathtakingly efficient cheating */
c07a80fd 7065
a20bf0c3 7066 cnt = PerlIO_get_cnt(fp); /* get count into register */
e468d35b 7067 /* make sure we have the room */
7a5fa8a2 7068 if ((I32)(SvLEN(sv) - append) <= cnt + 1) {
e468d35b 7069 /* Not room for all of it
7a5fa8a2 7070 if we are looking for a separator and room for some
e468d35b
NIS
7071 */
7072 if (rslen && cnt > 80 && (I32)SvLEN(sv) > append) {
7a5fa8a2 7073 /* just process what we have room for */
79072805
LW
7074 shortbuffered = cnt - SvLEN(sv) + append + 1;
7075 cnt -= shortbuffered;
7076 }
7077 else {
7078 shortbuffered = 0;
bbce6d69 7079 /* remember that cnt can be negative */
eb160463 7080 SvGROW(sv, (STRLEN)(append + (cnt <= 0 ? 2 : (cnt + 1))));
79072805
LW
7081 }
7082 }
7a5fa8a2 7083 else
79072805 7084 shortbuffered = 0;
c07a80fd 7085 bp = (STDCHAR*)SvPVX(sv) + append; /* move these two too to registers */
a20bf0c3 7086 ptr = (STDCHAR*)PerlIO_get_ptr(fp);
16660edb 7087 DEBUG_P(PerlIO_printf(Perl_debug_log,
1d7c1841 7088 "Screamer: entering, ptr=%"UVuf", cnt=%ld\n",PTR2UV(ptr),(long)cnt));
16660edb 7089 DEBUG_P(PerlIO_printf(Perl_debug_log,
ba7abf9d 7090 "Screamer: entering: PerlIO * thinks ptr=%"UVuf", cnt=%ld, base=%"UVuf"\n",
1c846c1f 7091 PTR2UV(PerlIO_get_ptr(fp)), (long)PerlIO_get_cnt(fp),
1d7c1841 7092 PTR2UV(PerlIO_has_base(fp) ? PerlIO_get_base(fp) : 0)));
79072805
LW
7093 for (;;) {
7094 screamer:
93a17b20 7095 if (cnt > 0) {
c07a80fd 7096 if (rslen) {
760ac839
LW
7097 while (cnt > 0) { /* this | eat */
7098 cnt--;
c07a80fd 7099 if ((*bp++ = *ptr++) == rslast) /* really | dust */
7100 goto thats_all_folks; /* screams | sed :-) */
7101 }
7102 }
7103 else {
1c846c1f
NIS
7104 Copy(ptr, bp, cnt, char); /* this | eat */
7105 bp += cnt; /* screams | dust */
c07a80fd 7106 ptr += cnt; /* louder | sed :-) */
a5f75d66 7107 cnt = 0;
93a17b20 7108 }
79072805
LW
7109 }
7110
748a9306 7111 if (shortbuffered) { /* oh well, must extend */
79072805
LW
7112 cnt = shortbuffered;
7113 shortbuffered = 0;
c07a80fd 7114 bpx = bp - (STDCHAR*)SvPVX(sv); /* box up before relocation */
79072805
LW
7115 SvCUR_set(sv, bpx);
7116 SvGROW(sv, SvLEN(sv) + append + cnt + 2);
c07a80fd 7117 bp = (STDCHAR*)SvPVX(sv) + bpx; /* unbox after relocation */
79072805
LW
7118 continue;
7119 }
7120
16660edb 7121 DEBUG_P(PerlIO_printf(Perl_debug_log,
1d7c1841
GS
7122 "Screamer: going to getc, ptr=%"UVuf", cnt=%ld\n",
7123 PTR2UV(ptr),(long)cnt));
cc00df79 7124 PerlIO_set_ptrcnt(fp, (STDCHAR*)ptr, cnt); /* deregisterize cnt and ptr */
ba7abf9d 7125#if 0
16660edb 7126 DEBUG_P(PerlIO_printf(Perl_debug_log,
1d7c1841 7127 "Screamer: pre: FILE * thinks ptr=%"UVuf", cnt=%ld, base=%"UVuf"\n",
1c846c1f 7128 PTR2UV(PerlIO_get_ptr(fp)), (long)PerlIO_get_cnt(fp),
1d7c1841 7129 PTR2UV(PerlIO_has_base (fp) ? PerlIO_get_base(fp) : 0)));
ba7abf9d 7130#endif
1c846c1f 7131 /* This used to call 'filbuf' in stdio form, but as that behaves like
774d564b 7132 getc when cnt <= 0 we use PerlIO_getc here to avoid introducing
7133 another abstraction. */
760ac839 7134 i = PerlIO_getc(fp); /* get more characters */
ba7abf9d 7135#if 0
16660edb 7136 DEBUG_P(PerlIO_printf(Perl_debug_log,
1d7c1841 7137 "Screamer: post: FILE * thinks ptr=%"UVuf", cnt=%ld, base=%"UVuf"\n",
1c846c1f 7138 PTR2UV(PerlIO_get_ptr(fp)), (long)PerlIO_get_cnt(fp),
1d7c1841 7139 PTR2UV(PerlIO_has_base (fp) ? PerlIO_get_base(fp) : 0)));
ba7abf9d 7140#endif
a20bf0c3
JH
7141 cnt = PerlIO_get_cnt(fp);
7142 ptr = (STDCHAR*)PerlIO_get_ptr(fp); /* reregisterize cnt and ptr */
16660edb 7143 DEBUG_P(PerlIO_printf(Perl_debug_log,
1d7c1841 7144 "Screamer: after getc, ptr=%"UVuf", cnt=%ld\n",PTR2UV(ptr),(long)cnt));
79072805 7145
748a9306
LW
7146 if (i == EOF) /* all done for ever? */
7147 goto thats_really_all_folks;
7148
c07a80fd 7149 bpx = bp - (STDCHAR*)SvPVX(sv); /* box up before relocation */
79072805
LW
7150 SvCUR_set(sv, bpx);
7151 SvGROW(sv, bpx + cnt + 2);
c07a80fd 7152 bp = (STDCHAR*)SvPVX(sv) + bpx; /* unbox after relocation */
7153
eb160463 7154 *bp++ = (STDCHAR)i; /* store character from PerlIO_getc */
79072805 7155
c07a80fd 7156 if (rslen && (STDCHAR)i == rslast) /* all done for now? */
79072805 7157 goto thats_all_folks;
79072805
LW
7158 }
7159
7160thats_all_folks:
eb160463 7161 if ((rslen > 1 && (STRLEN)(bp - (STDCHAR*)SvPVX(sv)) < rslen) ||
36477c24 7162 memNE((char*)bp - rslen, rsptr, rslen))
760ac839 7163 goto screamer; /* go back to the fray */
79072805
LW
7164thats_really_all_folks:
7165 if (shortbuffered)
7166 cnt += shortbuffered;
16660edb 7167 DEBUG_P(PerlIO_printf(Perl_debug_log,
1d7c1841 7168 "Screamer: quitting, ptr=%"UVuf", cnt=%ld\n",PTR2UV(ptr),(long)cnt));
cc00df79 7169 PerlIO_set_ptrcnt(fp, (STDCHAR*)ptr, cnt); /* put these back or we're in trouble */
16660edb 7170 DEBUG_P(PerlIO_printf(Perl_debug_log,
1d7c1841 7171 "Screamer: end: FILE * thinks ptr=%"UVuf", cnt=%ld, base=%"UVuf"\n",
1c846c1f 7172 PTR2UV(PerlIO_get_ptr(fp)), (long)PerlIO_get_cnt(fp),
1d7c1841 7173 PTR2UV(PerlIO_has_base (fp) ? PerlIO_get_base(fp) : 0)));
79072805 7174 *bp = '\0';
760ac839 7175 SvCUR_set(sv, bp - (STDCHAR*)SvPVX(sv)); /* set length */
16660edb 7176 DEBUG_P(PerlIO_printf(Perl_debug_log,
fb73857a 7177 "Screamer: done, len=%ld, string=|%.*s|\n",
7178 (long)SvCUR(sv),(int)SvCUR(sv),SvPVX(sv)));
760ac839
LW
7179 }
7180 else
79072805 7181 {
6edd2cd5
JH
7182 /*The big, slow, and stupid way. */
7183
7184 /* Any stack-challenged places. */
33d5f59c 7185#if defined(EPOC)
6edd2cd5
JH
7186 /* EPOC: need to work around SDK features. *
7187 * On WINS: MS VC5 generates calls to _chkstk, *
7188 * if a "large" stack frame is allocated. *
7189 * gcc on MARM does not generate calls like these. */
7190# define USEHEAPINSTEADOFSTACK
7191#endif
7192
7193#ifdef USEHEAPINSTEADOFSTACK
7194 STDCHAR *buf = 0;
7195 New(0, buf, 8192, STDCHAR);
7196 assert(buf);
4d2c4e07 7197#else
6edd2cd5 7198 STDCHAR buf[8192];
4d2c4e07 7199#endif
79072805 7200
760ac839 7201screamer2:
c07a80fd 7202 if (rslen) {
760ac839
LW
7203 register STDCHAR *bpe = buf + sizeof(buf);
7204 bp = buf;
eb160463 7205 while ((i = PerlIO_getc(fp)) != EOF && (*bp++ = (STDCHAR)i) != rslast && bp < bpe)
760ac839
LW
7206 ; /* keep reading */
7207 cnt = bp - buf;
c07a80fd 7208 }
7209 else {
760ac839 7210 cnt = PerlIO_read(fp,(char*)buf, sizeof(buf));
16660edb 7211 /* Accomodate broken VAXC compiler, which applies U8 cast to
7212 * both args of ?: operator, causing EOF to change into 255
7213 */
37be0adf 7214 if (cnt > 0)
cbe9e203
JH
7215 i = (U8)buf[cnt - 1];
7216 else
37be0adf 7217 i = EOF;
c07a80fd 7218 }
79072805 7219
cbe9e203
JH
7220 if (cnt < 0)
7221 cnt = 0; /* we do need to re-set the sv even when cnt <= 0 */
7222 if (append)
7223 sv_catpvn(sv, (char *) buf, cnt);
7224 else
7225 sv_setpvn(sv, (char *) buf, cnt);
c07a80fd 7226
7227 if (i != EOF && /* joy */
7228 (!rslen ||
7229 SvCUR(sv) < rslen ||
36477c24 7230 memNE(SvPVX(sv) + SvCUR(sv) - rslen, rsptr, rslen)))
79072805
LW
7231 {
7232 append = -1;
63e4d877
CS
7233 /*
7234 * If we're reading from a TTY and we get a short read,
7235 * indicating that the user hit his EOF character, we need
7236 * to notice it now, because if we try to read from the TTY
7237 * again, the EOF condition will disappear.
7238 *
7239 * The comparison of cnt to sizeof(buf) is an optimization
7240 * that prevents unnecessary calls to feof().
7241 *
7242 * - jik 9/25/96
7243 */
7244 if (!(cnt < sizeof(buf) && PerlIO_eof(fp)))
7245 goto screamer2;
79072805 7246 }
6edd2cd5
JH
7247
7248#ifdef USEHEAPINSTEADOFSTACK
7249 Safefree(buf);
7250#endif
79072805
LW
7251 }
7252
8bfdd7d9 7253 if (rspara) { /* have to do this both before and after */
c07a80fd 7254 while (i != EOF) { /* to make sure file boundaries work right */
760ac839 7255 i = PerlIO_getc(fp);
79072805 7256 if (i != '\n') {
760ac839 7257 PerlIO_ungetc(fp,i);
79072805
LW
7258 break;
7259 }
7260 }
7261 }
c07a80fd 7262
efd8b2ba 7263return_string_or_null:
c07a80fd 7264 return (SvCUR(sv) - append) ? SvPVX(sv) : Nullch;
79072805
LW
7265}
7266
954c1994
GS
7267/*
7268=for apidoc sv_inc
7269
645c22ef
DM
7270Auto-increment of the value in the SV, doing string to numeric conversion
7271if necessary. Handles 'get' magic.
954c1994
GS
7272
7273=cut
7274*/
7275
79072805 7276void
864dbfa3 7277Perl_sv_inc(pTHX_ register SV *sv)
79072805
LW
7278{
7279 register char *d;
463ee0b2 7280 int flags;
79072805
LW
7281
7282 if (!sv)
7283 return;
b23a5f78
GB
7284 if (SvGMAGICAL(sv))
7285 mg_get(sv);
ed6116ce 7286 if (SvTHINKFIRST(sv)) {
765f542d
NC
7287 if (SvIsCOW(sv))
7288 sv_force_normal_flags(sv, 0);
0f15f207 7289 if (SvREADONLY(sv)) {
923e4eb5 7290 if (IN_PERL_RUNTIME)
cea2e8a9 7291 Perl_croak(aTHX_ PL_no_modify);
0f15f207 7292 }
a0d0e21e 7293 if (SvROK(sv)) {
b5be31e9 7294 IV i;
9e7bc3e8
JD
7295 if (SvAMAGIC(sv) && AMG_CALLun(sv,inc))
7296 return;
56431972 7297 i = PTR2IV(SvRV(sv));
b5be31e9
SM
7298 sv_unref(sv);
7299 sv_setiv(sv, i);
a0d0e21e 7300 }
ed6116ce 7301 }
8990e307 7302 flags = SvFLAGS(sv);
28e5dec8
JH
7303 if ((flags & (SVp_NOK|SVp_IOK)) == SVp_NOK) {
7304 /* It's (privately or publicly) a float, but not tested as an
7305 integer, so test it to see. */
d460ef45 7306 (void) SvIV(sv);
28e5dec8
JH
7307 flags = SvFLAGS(sv);
7308 }
7309 if ((flags & SVf_IOK) || ((flags & (SVp_IOK | SVp_NOK)) == SVp_IOK)) {
7310 /* It's publicly an integer, or privately an integer-not-float */
59d8ce62 7311#ifdef PERL_PRESERVE_IVUV
28e5dec8 7312 oops_its_int:
59d8ce62 7313#endif
25da4f38
IZ
7314 if (SvIsUV(sv)) {
7315 if (SvUVX(sv) == UV_MAX)
a1e868e7 7316 sv_setnv(sv, UV_MAX_P1);
25da4f38
IZ
7317 else
7318 (void)SvIOK_only_UV(sv);
7319 ++SvUVX(sv);
7320 } else {
7321 if (SvIVX(sv) == IV_MAX)
28e5dec8 7322 sv_setuv(sv, (UV)IV_MAX + 1);
25da4f38
IZ
7323 else {
7324 (void)SvIOK_only(sv);
7325 ++SvIVX(sv);
1c846c1f 7326 }
55497cff 7327 }
79072805
LW
7328 return;
7329 }
28e5dec8
JH
7330 if (flags & SVp_NOK) {
7331 (void)SvNOK_only(sv);
7332 SvNVX(sv) += 1.0;
7333 return;
7334 }
7335
8990e307 7336 if (!(flags & SVp_POK) || !*SvPVX(sv)) {
28e5dec8
JH
7337 if ((flags & SVTYPEMASK) < SVt_PVIV)
7338 sv_upgrade(sv, SVt_IV);
7339 (void)SvIOK_only(sv);
7340 SvIVX(sv) = 1;
79072805
LW
7341 return;
7342 }
463ee0b2 7343 d = SvPVX(sv);
79072805
LW
7344 while (isALPHA(*d)) d++;
7345 while (isDIGIT(*d)) d++;
7346 if (*d) {
28e5dec8 7347#ifdef PERL_PRESERVE_IVUV
d1be9408 7348 /* Got to punt this as an integer if needs be, but we don't issue
28e5dec8
JH
7349 warnings. Probably ought to make the sv_iv_please() that does
7350 the conversion if possible, and silently. */
c2988b20 7351 int numtype = grok_number(SvPVX(sv), SvCUR(sv), NULL);
28e5dec8
JH
7352 if (numtype && !(numtype & IS_NUMBER_INFINITY)) {
7353 /* Need to try really hard to see if it's an integer.
7354 9.22337203685478e+18 is an integer.
7355 but "9.22337203685478e+18" + 0 is UV=9223372036854779904
7356 so $a="9.22337203685478e+18"; $a+0; $a++
7357 needs to be the same as $a="9.22337203685478e+18"; $a++
7358 or we go insane. */
d460ef45 7359
28e5dec8
JH
7360 (void) sv_2iv(sv);
7361 if (SvIOK(sv))
7362 goto oops_its_int;
7363
7364 /* sv_2iv *should* have made this an NV */
7365 if (flags & SVp_NOK) {
7366 (void)SvNOK_only(sv);
7367 SvNVX(sv) += 1.0;
7368 return;
7369 }
7370 /* I don't think we can get here. Maybe I should assert this
7371 And if we do get here I suspect that sv_setnv will croak. NWC
7372 Fall through. */
7373#if defined(USE_LONG_DOUBLE)
7374 DEBUG_c(PerlIO_printf(Perl_debug_log,"sv_inc punt failed to convert '%s' to IOK or NOKp, UV=0x%"UVxf" NV=%"PERL_PRIgldbl"\n",
7375 SvPVX(sv), SvIVX(sv), SvNVX(sv)));
7376#else
1779d84d 7377 DEBUG_c(PerlIO_printf(Perl_debug_log,"sv_inc punt failed to convert '%s' to IOK or NOKp, UV=0x%"UVxf" NV=%"NVgf"\n",
28e5dec8
JH
7378 SvPVX(sv), SvIVX(sv), SvNVX(sv)));
7379#endif
7380 }
7381#endif /* PERL_PRESERVE_IVUV */
7382 sv_setnv(sv,Atof(SvPVX(sv)) + 1.0);
79072805
LW
7383 return;
7384 }
7385 d--;
463ee0b2 7386 while (d >= SvPVX(sv)) {
79072805
LW
7387 if (isDIGIT(*d)) {
7388 if (++*d <= '9')
7389 return;
7390 *(d--) = '0';
7391 }
7392 else {
9d116dd7
JH
7393#ifdef EBCDIC
7394 /* MKS: The original code here died if letters weren't consecutive.
7395 * at least it didn't have to worry about non-C locales. The
7396 * new code assumes that ('z'-'a')==('Z'-'A'), letters are
1c846c1f 7397 * arranged in order (although not consecutively) and that only
9d116dd7
JH
7398 * [A-Za-z] are accepted by isALPHA in the C locale.
7399 */
7400 if (*d != 'z' && *d != 'Z') {
7401 do { ++*d; } while (!isALPHA(*d));
7402 return;
7403 }
7404 *(d--) -= 'z' - 'a';
7405#else
79072805
LW
7406 ++*d;
7407 if (isALPHA(*d))
7408 return;
7409 *(d--) -= 'z' - 'a' + 1;
9d116dd7 7410#endif
79072805
LW
7411 }
7412 }
7413 /* oh,oh, the number grew */
7414 SvGROW(sv, SvCUR(sv) + 2);
7415 SvCUR(sv)++;
463ee0b2 7416 for (d = SvPVX(sv) + SvCUR(sv); d > SvPVX(sv); d--)
79072805
LW
7417 *d = d[-1];
7418 if (isDIGIT(d[1]))
7419 *d = '1';
7420 else
7421 *d = d[1];
7422}
7423
954c1994
GS
7424/*
7425=for apidoc sv_dec
7426
645c22ef
DM
7427Auto-decrement of the value in the SV, doing string to numeric conversion
7428if necessary. Handles 'get' magic.
954c1994
GS
7429
7430=cut
7431*/
7432
79072805 7433void
864dbfa3 7434Perl_sv_dec(pTHX_ register SV *sv)
79072805 7435{
463ee0b2
LW
7436 int flags;
7437
79072805
LW
7438 if (!sv)
7439 return;
b23a5f78
GB
7440 if (SvGMAGICAL(sv))
7441 mg_get(sv);
ed6116ce 7442 if (SvTHINKFIRST(sv)) {
765f542d
NC
7443 if (SvIsCOW(sv))
7444 sv_force_normal_flags(sv, 0);
0f15f207 7445 if (SvREADONLY(sv)) {
923e4eb5 7446 if (IN_PERL_RUNTIME)
cea2e8a9 7447 Perl_croak(aTHX_ PL_no_modify);
0f15f207 7448 }
a0d0e21e 7449 if (SvROK(sv)) {
b5be31e9 7450 IV i;
9e7bc3e8
JD
7451 if (SvAMAGIC(sv) && AMG_CALLun(sv,dec))
7452 return;
56431972 7453 i = PTR2IV(SvRV(sv));
b5be31e9
SM
7454 sv_unref(sv);
7455 sv_setiv(sv, i);
a0d0e21e 7456 }
ed6116ce 7457 }
28e5dec8
JH
7458 /* Unlike sv_inc we don't have to worry about string-never-numbers
7459 and keeping them magic. But we mustn't warn on punting */
8990e307 7460 flags = SvFLAGS(sv);
28e5dec8
JH
7461 if ((flags & SVf_IOK) || ((flags & (SVp_IOK | SVp_NOK)) == SVp_IOK)) {
7462 /* It's publicly an integer, or privately an integer-not-float */
59d8ce62 7463#ifdef PERL_PRESERVE_IVUV
28e5dec8 7464 oops_its_int:
59d8ce62 7465#endif
25da4f38
IZ
7466 if (SvIsUV(sv)) {
7467 if (SvUVX(sv) == 0) {
7468 (void)SvIOK_only(sv);
7469 SvIVX(sv) = -1;
7470 }
7471 else {
7472 (void)SvIOK_only_UV(sv);
7473 --SvUVX(sv);
1c846c1f 7474 }
25da4f38
IZ
7475 } else {
7476 if (SvIVX(sv) == IV_MIN)
65202027 7477 sv_setnv(sv, (NV)IV_MIN - 1.0);
25da4f38
IZ
7478 else {
7479 (void)SvIOK_only(sv);
7480 --SvIVX(sv);
1c846c1f 7481 }
55497cff 7482 }
7483 return;
7484 }
28e5dec8
JH
7485 if (flags & SVp_NOK) {
7486 SvNVX(sv) -= 1.0;
7487 (void)SvNOK_only(sv);
7488 return;
7489 }
8990e307 7490 if (!(flags & SVp_POK)) {
4633a7c4
LW
7491 if ((flags & SVTYPEMASK) < SVt_PVNV)
7492 sv_upgrade(sv, SVt_NV);
463ee0b2 7493 SvNVX(sv) = -1.0;
a0d0e21e 7494 (void)SvNOK_only(sv);
79072805
LW
7495 return;
7496 }
28e5dec8
JH
7497#ifdef PERL_PRESERVE_IVUV
7498 {
c2988b20 7499 int numtype = grok_number(SvPVX(sv), SvCUR(sv), NULL);
28e5dec8
JH
7500 if (numtype && !(numtype & IS_NUMBER_INFINITY)) {
7501 /* Need to try really hard to see if it's an integer.
7502 9.22337203685478e+18 is an integer.
7503 but "9.22337203685478e+18" + 0 is UV=9223372036854779904
7504 so $a="9.22337203685478e+18"; $a+0; $a--
7505 needs to be the same as $a="9.22337203685478e+18"; $a--
7506 or we go insane. */
d460ef45 7507
28e5dec8
JH
7508 (void) sv_2iv(sv);
7509 if (SvIOK(sv))
7510 goto oops_its_int;
7511
7512 /* sv_2iv *should* have made this an NV */
7513 if (flags & SVp_NOK) {
7514 (void)SvNOK_only(sv);
7515 SvNVX(sv) -= 1.0;
7516 return;
7517 }
7518 /* I don't think we can get here. Maybe I should assert this
7519 And if we do get here I suspect that sv_setnv will croak. NWC
7520 Fall through. */
7521#if defined(USE_LONG_DOUBLE)
7522 DEBUG_c(PerlIO_printf(Perl_debug_log,"sv_dec punt failed to convert '%s' to IOK or NOKp, UV=0x%"UVxf" NV=%"PERL_PRIgldbl"\n",
7523 SvPVX(sv), SvIVX(sv), SvNVX(sv)));
7524#else
1779d84d 7525 DEBUG_c(PerlIO_printf(Perl_debug_log,"sv_dec punt failed to convert '%s' to IOK or NOKp, UV=0x%"UVxf" NV=%"NVgf"\n",
28e5dec8
JH
7526 SvPVX(sv), SvIVX(sv), SvNVX(sv)));
7527#endif
7528 }
7529 }
7530#endif /* PERL_PRESERVE_IVUV */
097ee67d 7531 sv_setnv(sv,Atof(SvPVX(sv)) - 1.0); /* punt */
79072805
LW
7532}
7533
954c1994
GS
7534/*
7535=for apidoc sv_mortalcopy
7536
645c22ef 7537Creates a new SV which is a copy of the original SV (using C<sv_setsv>).
d4236ebc
DM
7538The new SV is marked as mortal. It will be destroyed "soon", either by an
7539explicit call to FREETMPS, or by an implicit call at places such as
7540statement boundaries. See also C<sv_newmortal> and C<sv_2mortal>.
954c1994
GS
7541
7542=cut
7543*/
7544
79072805
LW
7545/* Make a string that will exist for the duration of the expression
7546 * evaluation. Actually, it may have to last longer than that, but
7547 * hopefully we won't free it until it has been assigned to a
7548 * permanent location. */
7549
7550SV *
864dbfa3 7551Perl_sv_mortalcopy(pTHX_ SV *oldstr)
79072805 7552{
463ee0b2 7553 register SV *sv;
b881518d 7554
4561caa4 7555 new_SV(sv);
79072805 7556 sv_setsv(sv,oldstr);
677b06e3
GS
7557 EXTEND_MORTAL(1);
7558 PL_tmps_stack[++PL_tmps_ix] = sv;
8990e307
LW
7559 SvTEMP_on(sv);
7560 return sv;
7561}
7562
954c1994
GS
7563/*
7564=for apidoc sv_newmortal
7565
645c22ef 7566Creates a new null SV which is mortal. The reference count of the SV is
d4236ebc
DM
7567set to 1. It will be destroyed "soon", either by an explicit call to
7568FREETMPS, or by an implicit call at places such as statement boundaries.
7569See also C<sv_mortalcopy> and C<sv_2mortal>.
954c1994
GS
7570
7571=cut
7572*/
7573
8990e307 7574SV *
864dbfa3 7575Perl_sv_newmortal(pTHX)
8990e307
LW
7576{
7577 register SV *sv;
7578
4561caa4 7579 new_SV(sv);
8990e307 7580 SvFLAGS(sv) = SVs_TEMP;
677b06e3
GS
7581 EXTEND_MORTAL(1);
7582 PL_tmps_stack[++PL_tmps_ix] = sv;
79072805
LW
7583 return sv;
7584}
7585
954c1994
GS
7586/*
7587=for apidoc sv_2mortal
7588
d4236ebc
DM
7589Marks an existing SV as mortal. The SV will be destroyed "soon", either
7590by an explicit call to FREETMPS, or by an implicit call at places such as
37d2ac18
NC
7591statement boundaries. SvTEMP() is turned on which means that the SV's
7592string buffer can be "stolen" if this SV is copied. See also C<sv_newmortal>
7593and C<sv_mortalcopy>.
954c1994
GS
7594
7595=cut
7596*/
7597
79072805 7598SV *
864dbfa3 7599Perl_sv_2mortal(pTHX_ register SV *sv)
79072805
LW
7600{
7601 if (!sv)
7602 return sv;
d689ffdd 7603 if (SvREADONLY(sv) && SvIMMORTAL(sv))
11162842 7604 return sv;
677b06e3
GS
7605 EXTEND_MORTAL(1);
7606 PL_tmps_stack[++PL_tmps_ix] = sv;
8990e307 7607 SvTEMP_on(sv);
79072805
LW
7608 return sv;
7609}
7610
954c1994
GS
7611/*
7612=for apidoc newSVpv
7613
7614Creates a new SV and copies a string into it. The reference count for the
7615SV is set to 1. If C<len> is zero, Perl will compute the length using
7616strlen(). For efficiency, consider using C<newSVpvn> instead.
7617
7618=cut
7619*/
7620
79072805 7621SV *
864dbfa3 7622Perl_newSVpv(pTHX_ const char *s, STRLEN len)
79072805 7623{
463ee0b2 7624 register SV *sv;
79072805 7625
4561caa4 7626 new_SV(sv);
79072805
LW
7627 if (!len)
7628 len = strlen(s);
7629 sv_setpvn(sv,s,len);
7630 return sv;
7631}
7632
954c1994
GS
7633/*
7634=for apidoc newSVpvn
7635
7636Creates a new SV and copies a string into it. The reference count for the
1c846c1f 7637SV is set to 1. Note that if C<len> is zero, Perl will create a zero length
954c1994 7638string. You are responsible for ensuring that the source string is at least
9e09f5f2 7639C<len> bytes long. If the C<s> argument is NULL the new SV will be undefined.
954c1994
GS
7640
7641=cut
7642*/
7643
9da1e3b5 7644SV *
864dbfa3 7645Perl_newSVpvn(pTHX_ const char *s, STRLEN len)
9da1e3b5
MUN
7646{
7647 register SV *sv;
7648
7649 new_SV(sv);
9da1e3b5
MUN
7650 sv_setpvn(sv,s,len);
7651 return sv;
7652}
7653
1c846c1f
NIS
7654/*
7655=for apidoc newSVpvn_share
7656
645c22ef
DM
7657Creates a new SV with its SvPVX pointing to a shared string in the string
7658table. If the string does not already exist in the table, it is created
7659first. Turns on READONLY and FAKE. The string's hash is stored in the UV
7660slot of the SV; if the C<hash> parameter is non-zero, that value is used;
7661otherwise the hash is computed. The idea here is that as the string table
7662is used for shared hash keys these strings will have SvPVX == HeKEY and
7663hash lookup will avoid string compare.
1c846c1f
NIS
7664
7665=cut
7666*/
7667
7668SV *
c3654f1a 7669Perl_newSVpvn_share(pTHX_ const char *src, I32 len, U32 hash)
1c846c1f
NIS
7670{
7671 register SV *sv;
c3654f1a
IH
7672 bool is_utf8 = FALSE;
7673 if (len < 0) {
77caf834 7674 STRLEN tmplen = -len;
c3654f1a 7675 is_utf8 = TRUE;
75a54232
JH
7676 /* See the note in hv.c:hv_fetch() --jhi */
7677 src = (char*)bytes_from_utf8((U8*)src, &tmplen, &is_utf8);
7678 len = tmplen;
7679 }
1c846c1f 7680 if (!hash)
5afd6d42 7681 PERL_HASH(hash, src, len);
1c846c1f
NIS
7682 new_SV(sv);
7683 sv_upgrade(sv, SVt_PVIV);
c3654f1a 7684 SvPVX(sv) = sharepvn(src, is_utf8?-len:len, hash);
1c846c1f
NIS
7685 SvCUR(sv) = len;
7686 SvUVX(sv) = hash;
7687 SvLEN(sv) = 0;
7688 SvREADONLY_on(sv);
7689 SvFAKE_on(sv);
7690 SvPOK_on(sv);
c3654f1a
IH
7691 if (is_utf8)
7692 SvUTF8_on(sv);
1c846c1f
NIS
7693 return sv;
7694}
7695
645c22ef 7696
cea2e8a9 7697#if defined(PERL_IMPLICIT_CONTEXT)
645c22ef
DM
7698
7699/* pTHX_ magic can't cope with varargs, so this is a no-context
7700 * version of the main function, (which may itself be aliased to us).
7701 * Don't access this version directly.
7702 */
7703
46fc3d4c 7704SV *
cea2e8a9 7705Perl_newSVpvf_nocontext(const char* pat, ...)
46fc3d4c 7706{
cea2e8a9 7707 dTHX;
46fc3d4c 7708 register SV *sv;
7709 va_list args;
46fc3d4c 7710 va_start(args, pat);
c5be433b 7711 sv = vnewSVpvf(pat, &args);
46fc3d4c 7712 va_end(args);
7713 return sv;
7714}
cea2e8a9 7715#endif
46fc3d4c 7716
954c1994
GS
7717/*
7718=for apidoc newSVpvf
7719
645c22ef 7720Creates a new SV and initializes it with the string formatted like
954c1994
GS
7721C<sprintf>.
7722
7723=cut
7724*/
7725
cea2e8a9
GS
7726SV *
7727Perl_newSVpvf(pTHX_ const char* pat, ...)
7728{
7729 register SV *sv;
7730 va_list args;
cea2e8a9 7731 va_start(args, pat);
c5be433b 7732 sv = vnewSVpvf(pat, &args);
cea2e8a9
GS
7733 va_end(args);
7734 return sv;
7735}
46fc3d4c 7736
645c22ef
DM
7737/* backend for newSVpvf() and newSVpvf_nocontext() */
7738
79072805 7739SV *
c5be433b
GS
7740Perl_vnewSVpvf(pTHX_ const char* pat, va_list* args)
7741{
7742 register SV *sv;
7743 new_SV(sv);
7744 sv_vsetpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
7745 return sv;
7746}
7747
954c1994
GS
7748/*
7749=for apidoc newSVnv
7750
7751Creates a new SV and copies a floating point value into it.
7752The reference count for the SV is set to 1.
7753
7754=cut
7755*/
7756
c5be433b 7757SV *
65202027 7758Perl_newSVnv(pTHX_ NV n)
79072805 7759{
463ee0b2 7760 register SV *sv;
79072805 7761
4561caa4 7762 new_SV(sv);
79072805
LW
7763 sv_setnv(sv,n);
7764 return sv;
7765}
7766
954c1994
GS
7767/*
7768=for apidoc newSViv
7769
7770Creates a new SV and copies an integer into it. The reference count for the
7771SV is set to 1.
7772
7773=cut
7774*/
7775
79072805 7776SV *
864dbfa3 7777Perl_newSViv(pTHX_ IV i)
79072805 7778{
463ee0b2 7779 register SV *sv;
79072805 7780
4561caa4 7781 new_SV(sv);
79072805
LW
7782 sv_setiv(sv,i);
7783 return sv;
7784}
7785
954c1994 7786/*
1a3327fb
JH
7787=for apidoc newSVuv
7788
7789Creates a new SV and copies an unsigned integer into it.
7790The reference count for the SV is set to 1.
7791
7792=cut
7793*/
7794
7795SV *
7796Perl_newSVuv(pTHX_ UV u)
7797{
7798 register SV *sv;
7799
7800 new_SV(sv);
7801 sv_setuv(sv,u);
7802 return sv;
7803}
7804
7805/*
954c1994
GS
7806=for apidoc newRV_noinc
7807
7808Creates an RV wrapper for an SV. The reference count for the original
7809SV is B<not> incremented.
7810
7811=cut
7812*/
7813
2304df62 7814SV *
864dbfa3 7815Perl_newRV_noinc(pTHX_ SV *tmpRef)
2304df62
AD
7816{
7817 register SV *sv;
7818
4561caa4 7819 new_SV(sv);
2304df62 7820 sv_upgrade(sv, SVt_RV);
76e3520e 7821 SvTEMP_off(tmpRef);
d689ffdd 7822 SvRV(sv) = tmpRef;
2304df62 7823 SvROK_on(sv);
2304df62
AD
7824 return sv;
7825}
7826
ff276b08 7827/* newRV_inc is the official function name to use now.
645c22ef
DM
7828 * newRV_inc is in fact #defined to newRV in sv.h
7829 */
7830
5f05dabc 7831SV *
864dbfa3 7832Perl_newRV(pTHX_ SV *tmpRef)
5f05dabc 7833{
5f6447b6 7834 return newRV_noinc(SvREFCNT_inc(tmpRef));
5f05dabc 7835}
5f05dabc 7836
954c1994
GS
7837/*
7838=for apidoc newSVsv
7839
7840Creates a new SV which is an exact duplicate of the original SV.
645c22ef 7841(Uses C<sv_setsv>).
954c1994
GS
7842
7843=cut
7844*/
7845
79072805 7846SV *
864dbfa3 7847Perl_newSVsv(pTHX_ register SV *old)
79072805 7848{
463ee0b2 7849 register SV *sv;
79072805
LW
7850
7851 if (!old)
7852 return Nullsv;
8990e307 7853 if (SvTYPE(old) == SVTYPEMASK) {
0453d815 7854 if (ckWARN_d(WARN_INTERNAL))
9014280d 7855 Perl_warner(aTHX_ packWARN(WARN_INTERNAL), "semi-panic: attempt to dup freed string");
79072805
LW
7856 return Nullsv;
7857 }
4561caa4 7858 new_SV(sv);
ff68c719 7859 if (SvTEMP(old)) {
7860 SvTEMP_off(old);
463ee0b2 7861 sv_setsv(sv,old);
ff68c719 7862 SvTEMP_on(old);
79072805
LW
7863 }
7864 else
463ee0b2
LW
7865 sv_setsv(sv,old);
7866 return sv;
79072805
LW
7867}
7868
645c22ef
DM
7869/*
7870=for apidoc sv_reset
7871
7872Underlying implementation for the C<reset> Perl function.
7873Note that the perl-level function is vaguely deprecated.
7874
7875=cut
7876*/
7877
79072805 7878void
864dbfa3 7879Perl_sv_reset(pTHX_ register char *s, HV *stash)
79072805
LW
7880{
7881 register HE *entry;
7882 register GV *gv;
7883 register SV *sv;
7884 register I32 i;
7885 register PMOP *pm;
7886 register I32 max;
4802d5d7 7887 char todo[PERL_UCHAR_MAX+1];
79072805 7888
49d8d3a1
MB
7889 if (!stash)
7890 return;
7891
79072805
LW
7892 if (!*s) { /* reset ?? searches */
7893 for (pm = HvPMROOT(stash); pm; pm = pm->op_pmnext) {
48c036b1 7894 pm->op_pmdynflags &= ~PMdf_USED;
79072805
LW
7895 }
7896 return;
7897 }
7898
7899 /* reset variables */
7900
7901 if (!HvARRAY(stash))
7902 return;
463ee0b2
LW
7903
7904 Zero(todo, 256, char);
79072805 7905 while (*s) {
4802d5d7 7906 i = (unsigned char)*s;
79072805
LW
7907 if (s[1] == '-') {
7908 s += 2;
7909 }
4802d5d7 7910 max = (unsigned char)*s++;
79072805 7911 for ( ; i <= max; i++) {
463ee0b2
LW
7912 todo[i] = 1;
7913 }
a0d0e21e 7914 for (i = 0; i <= (I32) HvMAX(stash); i++) {
79072805 7915 for (entry = HvARRAY(stash)[i];
9e35f4b3
GS
7916 entry;
7917 entry = HeNEXT(entry))
7918 {
1edc1566 7919 if (!todo[(U8)*HeKEY(entry)])
463ee0b2 7920 continue;
1edc1566 7921 gv = (GV*)HeVAL(entry);
79072805 7922 sv = GvSV(gv);
9e35f4b3
GS
7923 if (SvTHINKFIRST(sv)) {
7924 if (!SvREADONLY(sv) && SvROK(sv))
7925 sv_unref(sv);
7926 continue;
7927 }
0c34ef67 7928 SvOK_off(sv);
79072805
LW
7929 if (SvTYPE(sv) >= SVt_PV) {
7930 SvCUR_set(sv, 0);
463ee0b2
LW
7931 if (SvPVX(sv) != Nullch)
7932 *SvPVX(sv) = '\0';
44a8e56a 7933 SvTAINT(sv);
79072805
LW
7934 }
7935 if (GvAV(gv)) {
7936 av_clear(GvAV(gv));
7937 }
44a8e56a 7938 if (GvHV(gv) && !HvNAME(GvHV(gv))) {
463ee0b2 7939 hv_clear(GvHV(gv));
2f42fcb0 7940#ifndef PERL_MICRO
fa6a1c44 7941#ifdef USE_ENVIRON_ARRAY
4efc5df6
GS
7942 if (gv == PL_envgv
7943# ifdef USE_ITHREADS
7944 && PL_curinterp == aTHX
7945# endif
7946 )
7947 {
79072805 7948 environ[0] = Nullch;
4efc5df6 7949 }
a0d0e21e 7950#endif
2f42fcb0 7951#endif /* !PERL_MICRO */
79072805
LW
7952 }
7953 }
7954 }
7955 }
7956}
7957
645c22ef
DM
7958/*
7959=for apidoc sv_2io
7960
7961Using various gambits, try to get an IO from an SV: the IO slot if its a
7962GV; or the recursive result if we're an RV; or the IO slot of the symbol
7963named after the PV if we're a string.
7964
7965=cut
7966*/
7967
46fc3d4c 7968IO*
864dbfa3 7969Perl_sv_2io(pTHX_ SV *sv)
46fc3d4c 7970{
7971 IO* io;
7972 GV* gv;
2d8e6c8d 7973 STRLEN n_a;
46fc3d4c 7974
7975 switch (SvTYPE(sv)) {
7976 case SVt_PVIO:
7977 io = (IO*)sv;
7978 break;
7979 case SVt_PVGV:
7980 gv = (GV*)sv;
7981 io = GvIO(gv);
7982 if (!io)
cea2e8a9 7983 Perl_croak(aTHX_ "Bad filehandle: %s", GvNAME(gv));
46fc3d4c 7984 break;
7985 default:
7986 if (!SvOK(sv))
cea2e8a9 7987 Perl_croak(aTHX_ PL_no_usym, "filehandle");
46fc3d4c 7988 if (SvROK(sv))
7989 return sv_2io(SvRV(sv));
2d8e6c8d 7990 gv = gv_fetchpv(SvPV(sv,n_a), FALSE, SVt_PVIO);
46fc3d4c 7991 if (gv)
7992 io = GvIO(gv);
7993 else
7994 io = 0;
7995 if (!io)
35c1215d 7996 Perl_croak(aTHX_ "Bad filehandle: %"SVf, sv);
46fc3d4c 7997 break;
7998 }
7999 return io;
8000}
8001
645c22ef
DM
8002/*
8003=for apidoc sv_2cv
8004
8005Using various gambits, try to get a CV from an SV; in addition, try if
8006possible to set C<*st> and C<*gvp> to the stash and GV associated with it.
8007
8008=cut
8009*/
8010
79072805 8011CV *
864dbfa3 8012Perl_sv_2cv(pTHX_ SV *sv, HV **st, GV **gvp, I32 lref)
79072805 8013{
c04a4dfe
JH
8014 GV *gv = Nullgv;
8015 CV *cv = Nullcv;
2d8e6c8d 8016 STRLEN n_a;
79072805
LW
8017
8018 if (!sv)
93a17b20 8019 return *gvp = Nullgv, Nullcv;
79072805 8020 switch (SvTYPE(sv)) {
79072805
LW
8021 case SVt_PVCV:
8022 *st = CvSTASH(sv);
8023 *gvp = Nullgv;
8024 return (CV*)sv;
8025 case SVt_PVHV:
8026 case SVt_PVAV:
8027 *gvp = Nullgv;
8028 return Nullcv;
8990e307
LW
8029 case SVt_PVGV:
8030 gv = (GV*)sv;
a0d0e21e 8031 *gvp = gv;
8990e307
LW
8032 *st = GvESTASH(gv);
8033 goto fix_gv;
8034
79072805 8035 default:
a0d0e21e
LW
8036 if (SvGMAGICAL(sv))
8037 mg_get(sv);
8038 if (SvROK(sv)) {
f5284f61
IZ
8039 SV **sp = &sv; /* Used in tryAMAGICunDEREF macro. */
8040 tryAMAGICunDEREF(to_cv);
8041
62f274bf
GS
8042 sv = SvRV(sv);
8043 if (SvTYPE(sv) == SVt_PVCV) {
8044 cv = (CV*)sv;
8045 *gvp = Nullgv;
8046 *st = CvSTASH(cv);
8047 return cv;
8048 }
8049 else if(isGV(sv))
8050 gv = (GV*)sv;
8051 else
cea2e8a9 8052 Perl_croak(aTHX_ "Not a subroutine reference");
a0d0e21e 8053 }
62f274bf 8054 else if (isGV(sv))
79072805
LW
8055 gv = (GV*)sv;
8056 else
2d8e6c8d 8057 gv = gv_fetchpv(SvPV(sv, n_a), lref, SVt_PVCV);
79072805
LW
8058 *gvp = gv;
8059 if (!gv)
8060 return Nullcv;
8061 *st = GvESTASH(gv);
8990e307 8062 fix_gv:
8ebc5c01 8063 if (lref && !GvCVu(gv)) {
4633a7c4 8064 SV *tmpsv;
748a9306 8065 ENTER;
4633a7c4 8066 tmpsv = NEWSV(704,0);
16660edb 8067 gv_efullname3(tmpsv, gv, Nullch);
f6ec51f7
GS
8068 /* XXX this is probably not what they think they're getting.
8069 * It has the same effect as "sub name;", i.e. just a forward
8070 * declaration! */
774d564b 8071 newSUB(start_subparse(FALSE, 0),
4633a7c4
LW
8072 newSVOP(OP_CONST, 0, tmpsv),
8073 Nullop,
8990e307 8074 Nullop);
748a9306 8075 LEAVE;
8ebc5c01 8076 if (!GvCVu(gv))
35c1215d
NC
8077 Perl_croak(aTHX_ "Unable to create sub named \"%"SVf"\"",
8078 sv);
8990e307 8079 }
8ebc5c01 8080 return GvCVu(gv);
79072805
LW
8081 }
8082}
8083
c461cf8f
JH
8084/*
8085=for apidoc sv_true
8086
8087Returns true if the SV has a true value by Perl's rules.
645c22ef
DM
8088Use the C<SvTRUE> macro instead, which may call C<sv_true()> or may
8089instead use an in-line version.
c461cf8f
JH
8090
8091=cut
8092*/
8093
79072805 8094I32
864dbfa3 8095Perl_sv_true(pTHX_ register SV *sv)
79072805 8096{
8990e307
LW
8097 if (!sv)
8098 return 0;
79072805 8099 if (SvPOK(sv)) {
4e35701f
NIS
8100 register XPV* tXpv;
8101 if ((tXpv = (XPV*)SvANY(sv)) &&
c2f1de04 8102 (tXpv->xpv_cur > 1 ||
4e35701f 8103 (tXpv->xpv_cur && *tXpv->xpv_pv != '0')))
79072805
LW
8104 return 1;
8105 else
8106 return 0;
8107 }
8108 else {
8109 if (SvIOK(sv))
463ee0b2 8110 return SvIVX(sv) != 0;
79072805
LW
8111 else {
8112 if (SvNOK(sv))
463ee0b2 8113 return SvNVX(sv) != 0.0;
79072805 8114 else
463ee0b2 8115 return sv_2bool(sv);
79072805
LW
8116 }
8117 }
8118}
79072805 8119
645c22ef
DM
8120/*
8121=for apidoc sv_iv
8122
8123A private implementation of the C<SvIVx> macro for compilers which can't
8124cope with complex macro expressions. Always use the macro instead.
8125
8126=cut
8127*/
8128
ff68c719 8129IV
864dbfa3 8130Perl_sv_iv(pTHX_ register SV *sv)
85e6fe83 8131{
25da4f38
IZ
8132 if (SvIOK(sv)) {
8133 if (SvIsUV(sv))
8134 return (IV)SvUVX(sv);
ff68c719 8135 return SvIVX(sv);
25da4f38 8136 }
ff68c719 8137 return sv_2iv(sv);
85e6fe83 8138}
85e6fe83 8139
645c22ef
DM
8140/*
8141=for apidoc sv_uv
8142
8143A private implementation of the C<SvUVx> macro for compilers which can't
8144cope with complex macro expressions. Always use the macro instead.
8145
8146=cut
8147*/
8148
ff68c719 8149UV
864dbfa3 8150Perl_sv_uv(pTHX_ register SV *sv)
ff68c719 8151{
25da4f38
IZ
8152 if (SvIOK(sv)) {
8153 if (SvIsUV(sv))
8154 return SvUVX(sv);
8155 return (UV)SvIVX(sv);
8156 }
ff68c719 8157 return sv_2uv(sv);
8158}
85e6fe83 8159
645c22ef
DM
8160/*
8161=for apidoc sv_nv
8162
8163A private implementation of the C<SvNVx> macro for compilers which can't
8164cope with complex macro expressions. Always use the macro instead.
8165
8166=cut
8167*/
8168
65202027 8169NV
864dbfa3 8170Perl_sv_nv(pTHX_ register SV *sv)
79072805 8171{
ff68c719 8172 if (SvNOK(sv))
8173 return SvNVX(sv);
8174 return sv_2nv(sv);
79072805 8175}
79072805 8176
09540bc3
JH
8177/* sv_pv() is now a macro using SvPV_nolen();
8178 * this function provided for binary compatibility only
8179 */
8180
8181char *
8182Perl_sv_pv(pTHX_ SV *sv)
8183{
8184 STRLEN n_a;
8185
8186 if (SvPOK(sv))
8187 return SvPVX(sv);
8188
8189 return sv_2pv(sv, &n_a);
8190}
8191
645c22ef
DM
8192/*
8193=for apidoc sv_pv
8194
baca2b92 8195Use the C<SvPV_nolen> macro instead
645c22ef 8196
645c22ef
DM
8197=for apidoc sv_pvn
8198
8199A private implementation of the C<SvPV> macro for compilers which can't
8200cope with complex macro expressions. Always use the macro instead.
8201
8202=cut
8203*/
8204
1fa8b10d 8205char *
864dbfa3 8206Perl_sv_pvn(pTHX_ SV *sv, STRLEN *lp)
79072805 8207{
85e6fe83
LW
8208 if (SvPOK(sv)) {
8209 *lp = SvCUR(sv);
a0d0e21e 8210 return SvPVX(sv);
85e6fe83 8211 }
463ee0b2 8212 return sv_2pv(sv, lp);
79072805 8213}
79072805 8214
6e9d1081
NC
8215
8216char *
8217Perl_sv_pvn_nomg(pTHX_ register SV *sv, STRLEN *lp)
8218{
8219 if (SvPOK(sv)) {
8220 *lp = SvCUR(sv);
8221 return SvPVX(sv);
8222 }
8223 return sv_2pv_flags(sv, lp, 0);
8224}
8225
09540bc3
JH
8226/* sv_pvn_force() is now a macro using Perl_sv_pvn_force_flags();
8227 * this function provided for binary compatibility only
8228 */
8229
8230char *
8231Perl_sv_pvn_force(pTHX_ SV *sv, STRLEN *lp)
8232{
8233 return sv_pvn_force_flags(sv, lp, SV_GMAGIC);
8234}
8235
c461cf8f
JH
8236/*
8237=for apidoc sv_pvn_force
8238
8239Get a sensible string out of the SV somehow.
645c22ef
DM
8240A private implementation of the C<SvPV_force> macro for compilers which
8241can't cope with complex macro expressions. Always use the macro instead.
c461cf8f 8242
8d6d96c1
HS
8243=for apidoc sv_pvn_force_flags
8244
8245Get a sensible string out of the SV somehow.
8246If C<flags> has C<SV_GMAGIC> bit set, will C<mg_get> on C<sv> if
8247appropriate, else not. C<sv_pvn_force> and C<sv_pvn_force_nomg> are
8248implemented in terms of this function.
645c22ef
DM
8249You normally want to use the various wrapper macros instead: see
8250C<SvPV_force> and C<SvPV_force_nomg>
8d6d96c1
HS
8251
8252=cut
8253*/
8254
8255char *
8256Perl_sv_pvn_force_flags(pTHX_ SV *sv, STRLEN *lp, I32 flags)
8257{
c04a4dfe 8258 char *s = NULL;
a0d0e21e 8259
6fc92669 8260 if (SvTHINKFIRST(sv) && !SvROK(sv))
765f542d 8261 sv_force_normal_flags(sv, 0);
1c846c1f 8262
a0d0e21e
LW
8263 if (SvPOK(sv)) {
8264 *lp = SvCUR(sv);
8265 }
8266 else {
748a9306 8267 if (SvTYPE(sv) > SVt_PVLV && SvTYPE(sv) != SVt_PVFM) {
cea2e8a9 8268 Perl_croak(aTHX_ "Can't coerce %s to string in %s", sv_reftype(sv,0),
53e06cf0 8269 OP_NAME(PL_op));
a0d0e21e 8270 }
4633a7c4 8271 else
8d6d96c1 8272 s = sv_2pv_flags(sv, lp, flags);
a0d0e21e
LW
8273 if (s != SvPVX(sv)) { /* Almost, but not quite, sv_setpvn() */
8274 STRLEN len = *lp;
1c846c1f 8275
a0d0e21e
LW
8276 if (SvROK(sv))
8277 sv_unref(sv);
8278 (void)SvUPGRADE(sv, SVt_PV); /* Never FALSE */
8279 SvGROW(sv, len + 1);
8280 Move(s,SvPVX(sv),len,char);
8281 SvCUR_set(sv, len);
8282 *SvEND(sv) = '\0';
8283 }
8284 if (!SvPOK(sv)) {
8285 SvPOK_on(sv); /* validate pointer */
8286 SvTAINT(sv);
1d7c1841
GS
8287 DEBUG_c(PerlIO_printf(Perl_debug_log, "0x%"UVxf" 2pv(%s)\n",
8288 PTR2UV(sv),SvPVX(sv)));
a0d0e21e
LW
8289 }
8290 }
8291 return SvPVX(sv);
8292}
8293
09540bc3
JH
8294/* sv_pvbyte () is now a macro using Perl_sv_2pv_flags();
8295 * this function provided for binary compatibility only
8296 */
8297
8298char *
8299Perl_sv_pvbyte(pTHX_ SV *sv)
8300{
8301 sv_utf8_downgrade(sv,0);
8302 return sv_pv(sv);
8303}
8304
645c22ef
DM
8305/*
8306=for apidoc sv_pvbyte
8307
baca2b92 8308Use C<SvPVbyte_nolen> instead.
645c22ef 8309
645c22ef
DM
8310=for apidoc sv_pvbyten
8311
8312A private implementation of the C<SvPVbyte> macro for compilers
8313which can't cope with complex macro expressions. Always use the macro
8314instead.
8315
8316=cut
8317*/
8318
7340a771
GS
8319char *
8320Perl_sv_pvbyten(pTHX_ SV *sv, STRLEN *lp)
8321{
ffebcc3e 8322 sv_utf8_downgrade(sv,0);
7340a771
GS
8323 return sv_pvn(sv,lp);
8324}
8325
645c22ef
DM
8326/*
8327=for apidoc sv_pvbyten_force
8328
8329A private implementation of the C<SvPVbytex_force> macro for compilers
8330which can't cope with complex macro expressions. Always use the macro
8331instead.
8332
8333=cut
8334*/
8335
7340a771
GS
8336char *
8337Perl_sv_pvbyten_force(pTHX_ SV *sv, STRLEN *lp)
8338{
46ec2f14 8339 sv_pvn_force(sv,lp);
ffebcc3e 8340 sv_utf8_downgrade(sv,0);
46ec2f14
TS
8341 *lp = SvCUR(sv);
8342 return SvPVX(sv);
7340a771
GS
8343}
8344
09540bc3
JH
8345/* sv_pvutf8 () is now a macro using Perl_sv_2pv_flags();
8346 * this function provided for binary compatibility only
8347 */
8348
8349char *
8350Perl_sv_pvutf8(pTHX_ SV *sv)
8351{
8352 sv_utf8_upgrade(sv);
8353 return sv_pv(sv);
8354}
8355
645c22ef
DM
8356/*
8357=for apidoc sv_pvutf8
8358
baca2b92 8359Use the C<SvPVutf8_nolen> macro instead
645c22ef 8360
645c22ef
DM
8361=for apidoc sv_pvutf8n
8362
8363A private implementation of the C<SvPVutf8> macro for compilers
8364which can't cope with complex macro expressions. Always use the macro
8365instead.
8366
8367=cut
8368*/
8369
7340a771
GS
8370char *
8371Perl_sv_pvutf8n(pTHX_ SV *sv, STRLEN *lp)
8372{
560a288e 8373 sv_utf8_upgrade(sv);
7340a771
GS
8374 return sv_pvn(sv,lp);
8375}
8376
c461cf8f
JH
8377/*
8378=for apidoc sv_pvutf8n_force
8379
645c22ef
DM
8380A private implementation of the C<SvPVutf8_force> macro for compilers
8381which can't cope with complex macro expressions. Always use the macro
8382instead.
c461cf8f
JH
8383
8384=cut
8385*/
8386
7340a771
GS
8387char *
8388Perl_sv_pvutf8n_force(pTHX_ SV *sv, STRLEN *lp)
8389{
46ec2f14 8390 sv_pvn_force(sv,lp);
560a288e 8391 sv_utf8_upgrade(sv);
46ec2f14
TS
8392 *lp = SvCUR(sv);
8393 return SvPVX(sv);
7340a771
GS
8394}
8395
c461cf8f
JH
8396/*
8397=for apidoc sv_reftype
8398
8399Returns a string describing what the SV is a reference to.
8400
8401=cut
8402*/
8403
7340a771 8404char *
864dbfa3 8405Perl_sv_reftype(pTHX_ SV *sv, int ob)
a0d0e21e 8406{
c86bf373 8407 if (ob && SvOBJECT(sv)) {
e27ad1f2
AV
8408 if (HvNAME(SvSTASH(sv)))
8409 return HvNAME(SvSTASH(sv));
8410 else
8411 return "__ANON__";
c86bf373 8412 }
a0d0e21e
LW
8413 else {
8414 switch (SvTYPE(sv)) {
8415 case SVt_NULL:
8416 case SVt_IV:
8417 case SVt_NV:
8418 case SVt_RV:
8419 case SVt_PV:
8420 case SVt_PVIV:
8421 case SVt_PVNV:
8422 case SVt_PVMG:
8423 case SVt_PVBM:
439cb1c4
JP
8424 if (SvVOK(sv))
8425 return "VSTRING";
a0d0e21e
LW
8426 if (SvROK(sv))
8427 return "REF";
8428 else
8429 return "SCALAR";
be65207d
DM
8430
8431 case SVt_PVLV: return SvROK(sv) ? "REF"
8432 /* tied lvalues should appear to be
8433 * scalars for backwards compatitbility */
8434 : (LvTYPE(sv) == 't' || LvTYPE(sv) == 'T')
8435 ? "SCALAR" : "LVALUE";
a0d0e21e
LW
8436 case SVt_PVAV: return "ARRAY";
8437 case SVt_PVHV: return "HASH";
8438 case SVt_PVCV: return "CODE";
8439 case SVt_PVGV: return "GLOB";
1d2dff63 8440 case SVt_PVFM: return "FORMAT";
27f9d8f3 8441 case SVt_PVIO: return "IO";
a0d0e21e
LW
8442 default: return "UNKNOWN";
8443 }
8444 }
8445}
8446
954c1994
GS
8447/*
8448=for apidoc sv_isobject
8449
8450Returns a boolean indicating whether the SV is an RV pointing to a blessed
8451object. If the SV is not an RV, or if the object is not blessed, then this
8452will return false.
8453
8454=cut
8455*/
8456
463ee0b2 8457int
864dbfa3 8458Perl_sv_isobject(pTHX_ SV *sv)
85e6fe83 8459{
68dc0745 8460 if (!sv)
8461 return 0;
8462 if (SvGMAGICAL(sv))
8463 mg_get(sv);
85e6fe83
LW
8464 if (!SvROK(sv))
8465 return 0;
8466 sv = (SV*)SvRV(sv);
8467 if (!SvOBJECT(sv))
8468 return 0;
8469 return 1;
8470}
8471
954c1994
GS
8472/*
8473=for apidoc sv_isa
8474
8475Returns a boolean indicating whether the SV is blessed into the specified
8476class. This does not check for subtypes; use C<sv_derived_from> to verify
8477an inheritance relationship.
8478
8479=cut
8480*/
8481
85e6fe83 8482int
864dbfa3 8483Perl_sv_isa(pTHX_ SV *sv, const char *name)
463ee0b2 8484{
68dc0745 8485 if (!sv)
8486 return 0;
8487 if (SvGMAGICAL(sv))
8488 mg_get(sv);
ed6116ce 8489 if (!SvROK(sv))
463ee0b2 8490 return 0;
ed6116ce
LW
8491 sv = (SV*)SvRV(sv);
8492 if (!SvOBJECT(sv))
463ee0b2 8493 return 0;
e27ad1f2
AV
8494 if (!HvNAME(SvSTASH(sv)))
8495 return 0;
463ee0b2
LW
8496
8497 return strEQ(HvNAME(SvSTASH(sv)), name);
8498}
8499
954c1994
GS
8500/*
8501=for apidoc newSVrv
8502
8503Creates a new SV for the RV, C<rv>, to point to. If C<rv> is not an RV then
8504it will be upgraded to one. If C<classname> is non-null then the new SV will
8505be blessed in the specified package. The new SV is returned and its
8506reference count is 1.
8507
8508=cut
8509*/
8510
463ee0b2 8511SV*
864dbfa3 8512Perl_newSVrv(pTHX_ SV *rv, const char *classname)
463ee0b2 8513{
463ee0b2
LW
8514 SV *sv;
8515
4561caa4 8516 new_SV(sv);
51cf62d8 8517
765f542d 8518 SV_CHECK_THINKFIRST_COW_DROP(rv);
51cf62d8 8519 SvAMAGIC_off(rv);
51cf62d8 8520
0199fce9
JD
8521 if (SvTYPE(rv) >= SVt_PVMG) {
8522 U32 refcnt = SvREFCNT(rv);
8523 SvREFCNT(rv) = 0;
8524 sv_clear(rv);
8525 SvFLAGS(rv) = 0;
8526 SvREFCNT(rv) = refcnt;
8527 }
8528
51cf62d8 8529 if (SvTYPE(rv) < SVt_RV)
0199fce9
JD
8530 sv_upgrade(rv, SVt_RV);
8531 else if (SvTYPE(rv) > SVt_RV) {
0c34ef67 8532 SvOOK_off(rv);
0199fce9
JD
8533 if (SvPVX(rv) && SvLEN(rv))
8534 Safefree(SvPVX(rv));
8535 SvCUR_set(rv, 0);
8536 SvLEN_set(rv, 0);
8537 }
51cf62d8 8538
0c34ef67 8539 SvOK_off(rv);
053fc874 8540 SvRV(rv) = sv;
ed6116ce 8541 SvROK_on(rv);
463ee0b2 8542
a0d0e21e
LW
8543 if (classname) {
8544 HV* stash = gv_stashpv(classname, TRUE);
8545 (void)sv_bless(rv, stash);
8546 }
8547 return sv;
8548}
8549
954c1994
GS
8550/*
8551=for apidoc sv_setref_pv
8552
8553Copies a pointer into a new SV, optionally blessing the SV. The C<rv>
8554argument will be upgraded to an RV. That RV will be modified to point to
8555the new SV. If the C<pv> argument is NULL then C<PL_sv_undef> will be placed
8556into the SV. The C<classname> argument indicates the package for the
8557blessing. Set C<classname> to C<Nullch> to avoid the blessing. The new SV
d34c2299 8558will have a reference count of 1, and the RV will be returned.
954c1994
GS
8559
8560Do not use with other Perl types such as HV, AV, SV, CV, because those
8561objects will become corrupted by the pointer copy process.
8562
8563Note that C<sv_setref_pvn> copies the string while this copies the pointer.
8564
8565=cut
8566*/
8567
a0d0e21e 8568SV*
864dbfa3 8569Perl_sv_setref_pv(pTHX_ SV *rv, const char *classname, void *pv)
a0d0e21e 8570{
189b2af5 8571 if (!pv) {
3280af22 8572 sv_setsv(rv, &PL_sv_undef);
189b2af5
GS
8573 SvSETMAGIC(rv);
8574 }
a0d0e21e 8575 else
56431972 8576 sv_setiv(newSVrv(rv,classname), PTR2IV(pv));
a0d0e21e
LW
8577 return rv;
8578}
8579
954c1994
GS
8580/*
8581=for apidoc sv_setref_iv
8582
8583Copies an integer into a new SV, optionally blessing the SV. The C<rv>
8584argument will be upgraded to an RV. That RV will be modified to point to
8585the new SV. The C<classname> argument indicates the package for the
8586blessing. Set C<classname> to C<Nullch> to avoid the blessing. The new SV
d34c2299 8587will have a reference count of 1, and the RV will be returned.
954c1994
GS
8588
8589=cut
8590*/
8591
a0d0e21e 8592SV*
864dbfa3 8593Perl_sv_setref_iv(pTHX_ SV *rv, const char *classname, IV iv)
a0d0e21e
LW
8594{
8595 sv_setiv(newSVrv(rv,classname), iv);
8596 return rv;
8597}
8598
954c1994 8599/*
e1c57cef
JH
8600=for apidoc sv_setref_uv
8601
8602Copies an unsigned integer into a new SV, optionally blessing the SV. The C<rv>
8603argument will be upgraded to an RV. That RV will be modified to point to
8604the new SV. The C<classname> argument indicates the package for the
8605blessing. Set C<classname> to C<Nullch> to avoid the blessing. The new SV
d34c2299 8606will have a reference count of 1, and the RV will be returned.
e1c57cef
JH
8607
8608=cut
8609*/
8610
8611SV*
8612Perl_sv_setref_uv(pTHX_ SV *rv, const char *classname, UV uv)
8613{
8614 sv_setuv(newSVrv(rv,classname), uv);
8615 return rv;
8616}
8617
8618/*
954c1994
GS
8619=for apidoc sv_setref_nv
8620
8621Copies a double into a new SV, optionally blessing the SV. The C<rv>
8622argument will be upgraded to an RV. That RV will be modified to point to
8623the new SV. The C<classname> argument indicates the package for the
8624blessing. Set C<classname> to C<Nullch> to avoid the blessing. The new SV
d34c2299 8625will have a reference count of 1, and the RV will be returned.
954c1994
GS
8626
8627=cut
8628*/
8629
a0d0e21e 8630SV*
65202027 8631Perl_sv_setref_nv(pTHX_ SV *rv, const char *classname, NV nv)
a0d0e21e
LW
8632{
8633 sv_setnv(newSVrv(rv,classname), nv);
8634 return rv;
8635}
463ee0b2 8636
954c1994
GS
8637/*
8638=for apidoc sv_setref_pvn
8639
8640Copies a string into a new SV, optionally blessing the SV. The length of the
8641string must be specified with C<n>. The C<rv> argument will be upgraded to
8642an RV. That RV will be modified to point to the new SV. The C<classname>
8643argument indicates the package for the blessing. Set C<classname> to
7a5fa8a2 8644C<Nullch> to avoid the blessing. The new SV will have a reference count
d34c2299 8645of 1, and the RV will be returned.
954c1994
GS
8646
8647Note that C<sv_setref_pv> copies the pointer while this copies the string.
8648
8649=cut
8650*/
8651
a0d0e21e 8652SV*
864dbfa3 8653Perl_sv_setref_pvn(pTHX_ SV *rv, const char *classname, char *pv, STRLEN n)
a0d0e21e
LW
8654{
8655 sv_setpvn(newSVrv(rv,classname), pv, n);
463ee0b2
LW
8656 return rv;
8657}
8658
954c1994
GS
8659/*
8660=for apidoc sv_bless
8661
8662Blesses an SV into a specified package. The SV must be an RV. The package
8663must be designated by its stash (see C<gv_stashpv()>). The reference count
8664of the SV is unaffected.
8665
8666=cut
8667*/
8668
a0d0e21e 8669SV*
864dbfa3 8670Perl_sv_bless(pTHX_ SV *sv, HV *stash)
a0d0e21e 8671{
76e3520e 8672 SV *tmpRef;
a0d0e21e 8673 if (!SvROK(sv))
cea2e8a9 8674 Perl_croak(aTHX_ "Can't bless non-reference value");
76e3520e
GS
8675 tmpRef = SvRV(sv);
8676 if (SvFLAGS(tmpRef) & (SVs_OBJECT|SVf_READONLY)) {
8677 if (SvREADONLY(tmpRef))
cea2e8a9 8678 Perl_croak(aTHX_ PL_no_modify);
76e3520e
GS
8679 if (SvOBJECT(tmpRef)) {
8680 if (SvTYPE(tmpRef) != SVt_PVIO)
3280af22 8681 --PL_sv_objcount;
76e3520e 8682 SvREFCNT_dec(SvSTASH(tmpRef));
2e3febc6 8683 }
a0d0e21e 8684 }
76e3520e
GS
8685 SvOBJECT_on(tmpRef);
8686 if (SvTYPE(tmpRef) != SVt_PVIO)
3280af22 8687 ++PL_sv_objcount;
76e3520e
GS
8688 (void)SvUPGRADE(tmpRef, SVt_PVMG);
8689 SvSTASH(tmpRef) = (HV*)SvREFCNT_inc(stash);
a0d0e21e 8690
2e3febc6
CS
8691 if (Gv_AMG(stash))
8692 SvAMAGIC_on(sv);
8693 else
8694 SvAMAGIC_off(sv);
a0d0e21e 8695
1edbfb88
AB
8696 if(SvSMAGICAL(tmpRef))
8697 if(mg_find(tmpRef, PERL_MAGIC_ext) || mg_find(tmpRef, PERL_MAGIC_uvar))
8698 mg_set(tmpRef);
8699
8700
ecdeb87c 8701
a0d0e21e
LW
8702 return sv;
8703}
8704
645c22ef 8705/* Downgrades a PVGV to a PVMG.
645c22ef
DM
8706 */
8707
76e3520e 8708STATIC void
cea2e8a9 8709S_sv_unglob(pTHX_ SV *sv)
a0d0e21e 8710{
850fabdf
GS
8711 void *xpvmg;
8712
a0d0e21e
LW
8713 assert(SvTYPE(sv) == SVt_PVGV);
8714 SvFAKE_off(sv);
8715 if (GvGP(sv))
1edc1566 8716 gp_free((GV*)sv);
e826b3c7
GS
8717 if (GvSTASH(sv)) {
8718 SvREFCNT_dec(GvSTASH(sv));
8719 GvSTASH(sv) = Nullhv;
8720 }
14befaf4 8721 sv_unmagic(sv, PERL_MAGIC_glob);
a0d0e21e 8722 Safefree(GvNAME(sv));
a5f75d66 8723 GvMULTI_off(sv);
850fabdf
GS
8724
8725 /* need to keep SvANY(sv) in the right arena */
8726 xpvmg = new_XPVMG();
8727 StructCopy(SvANY(sv), xpvmg, XPVMG);
8728 del_XPVGV(SvANY(sv));
8729 SvANY(sv) = xpvmg;
8730
a0d0e21e
LW
8731 SvFLAGS(sv) &= ~SVTYPEMASK;
8732 SvFLAGS(sv) |= SVt_PVMG;
8733}
8734
954c1994 8735/*
840a7b70 8736=for apidoc sv_unref_flags
954c1994
GS
8737
8738Unsets the RV status of the SV, and decrements the reference count of
8739whatever was being referenced by the RV. This can almost be thought of
840a7b70
IZ
8740as a reversal of C<newSVrv>. The C<cflags> argument can contain
8741C<SV_IMMEDIATE_UNREF> to force the reference count to be decremented
8742(otherwise the decrementing is conditional on the reference count being
8743different from one or the reference being a readonly SV).
7889fe52 8744See C<SvROK_off>.
954c1994
GS
8745
8746=cut
8747*/
8748
ed6116ce 8749void
840a7b70 8750Perl_sv_unref_flags(pTHX_ SV *sv, U32 flags)
ed6116ce 8751{
a0d0e21e 8752 SV* rv = SvRV(sv);
810b8aa5
GS
8753
8754 if (SvWEAKREF(sv)) {
8755 sv_del_backref(sv);
8756 SvWEAKREF_off(sv);
8757 SvRV(sv) = 0;
8758 return;
8759 }
ed6116ce
LW
8760 SvRV(sv) = 0;
8761 SvROK_off(sv);
04ca4930
NC
8762 /* You can't have a || SvREADONLY(rv) here, as $a = $$a, where $a was
8763 assigned to as BEGIN {$a = \"Foo"} will fail. */
8764 if (SvREFCNT(rv) != 1 || (flags & SV_IMMEDIATE_UNREF))
4633a7c4 8765 SvREFCNT_dec(rv);
840a7b70 8766 else /* XXX Hack, but hard to make $a=$a->[1] work otherwise */
4633a7c4 8767 sv_2mortal(rv); /* Schedule for freeing later */
ed6116ce 8768}
8990e307 8769
840a7b70
IZ
8770/*
8771=for apidoc sv_unref
8772
8773Unsets the RV status of the SV, and decrements the reference count of
8774whatever was being referenced by the RV. This can almost be thought of
8775as a reversal of C<newSVrv>. This is C<sv_unref_flags> with the C<flag>
7889fe52 8776being zero. See C<SvROK_off>.
840a7b70
IZ
8777
8778=cut
8779*/
8780
8781void
8782Perl_sv_unref(pTHX_ SV *sv)
8783{
8784 sv_unref_flags(sv, 0);
8785}
8786
645c22ef
DM
8787/*
8788=for apidoc sv_taint
8789
8790Taint an SV. Use C<SvTAINTED_on> instead.
8791=cut
8792*/
8793
bbce6d69 8794void
864dbfa3 8795Perl_sv_taint(pTHX_ SV *sv)
bbce6d69 8796{
14befaf4 8797 sv_magic((sv), Nullsv, PERL_MAGIC_taint, Nullch, 0);
bbce6d69 8798}
8799
645c22ef
DM
8800/*
8801=for apidoc sv_untaint
8802
8803Untaint an SV. Use C<SvTAINTED_off> instead.
8804=cut
8805*/
8806
bbce6d69 8807void
864dbfa3 8808Perl_sv_untaint(pTHX_ SV *sv)
bbce6d69 8809{
13f57bf8 8810 if (SvTYPE(sv) >= SVt_PVMG && SvMAGIC(sv)) {
14befaf4 8811 MAGIC *mg = mg_find(sv, PERL_MAGIC_taint);
36477c24 8812 if (mg)
565764a8 8813 mg->mg_len &= ~1;
36477c24 8814 }
bbce6d69 8815}
8816
645c22ef
DM
8817/*
8818=for apidoc sv_tainted
8819
8820Test an SV for taintedness. Use C<SvTAINTED> instead.
8821=cut
8822*/
8823
bbce6d69 8824bool
864dbfa3 8825Perl_sv_tainted(pTHX_ SV *sv)
bbce6d69 8826{
13f57bf8 8827 if (SvTYPE(sv) >= SVt_PVMG && SvMAGIC(sv)) {
14befaf4 8828 MAGIC *mg = mg_find(sv, PERL_MAGIC_taint);
155aba94 8829 if (mg && ((mg->mg_len & 1) || ((mg->mg_len & 2) && mg->mg_obj == sv)))
36477c24 8830 return TRUE;
8831 }
8832 return FALSE;
bbce6d69 8833}
8834
09540bc3
JH
8835/*
8836=for apidoc sv_setpviv
8837
8838Copies an integer into the given SV, also updating its string value.
8839Does not handle 'set' magic. See C<sv_setpviv_mg>.
8840
8841=cut
8842*/
8843
8844void
8845Perl_sv_setpviv(pTHX_ SV *sv, IV iv)
8846{
8847 char buf[TYPE_CHARS(UV)];
8848 char *ebuf;
8849 char *ptr = uiv_2buf(buf, iv, 0, 0, &ebuf);
8850
8851 sv_setpvn(sv, ptr, ebuf - ptr);
8852}
8853
8854/*
8855=for apidoc sv_setpviv_mg
8856
8857Like C<sv_setpviv>, but also handles 'set' magic.
8858
8859=cut
8860*/
8861
8862void
8863Perl_sv_setpviv_mg(pTHX_ SV *sv, IV iv)
8864{
8865 char buf[TYPE_CHARS(UV)];
8866 char *ebuf;
8867 char *ptr = uiv_2buf(buf, iv, 0, 0, &ebuf);
8868
8869 sv_setpvn(sv, ptr, ebuf - ptr);
8870 SvSETMAGIC(sv);
8871}
8872
cea2e8a9 8873#if defined(PERL_IMPLICIT_CONTEXT)
645c22ef
DM
8874
8875/* pTHX_ magic can't cope with varargs, so this is a no-context
8876 * version of the main function, (which may itself be aliased to us).
8877 * Don't access this version directly.
8878 */
8879
cea2e8a9
GS
8880void
8881Perl_sv_setpvf_nocontext(SV *sv, const char* pat, ...)
8882{
8883 dTHX;
8884 va_list args;
8885 va_start(args, pat);
c5be433b 8886 sv_vsetpvf(sv, pat, &args);
cea2e8a9
GS
8887 va_end(args);
8888}
8889
645c22ef
DM
8890/* pTHX_ magic can't cope with varargs, so this is a no-context
8891 * version of the main function, (which may itself be aliased to us).
8892 * Don't access this version directly.
8893 */
cea2e8a9
GS
8894
8895void
8896Perl_sv_setpvf_mg_nocontext(SV *sv, const char* pat, ...)
8897{
8898 dTHX;
8899 va_list args;
8900 va_start(args, pat);
c5be433b 8901 sv_vsetpvf_mg(sv, pat, &args);
cea2e8a9 8902 va_end(args);
cea2e8a9
GS
8903}
8904#endif
8905
954c1994
GS
8906/*
8907=for apidoc sv_setpvf
8908
bffc3d17
SH
8909Works like C<sv_catpvf> but copies the text into the SV instead of
8910appending it. Does not handle 'set' magic. See C<sv_setpvf_mg>.
954c1994
GS
8911
8912=cut
8913*/
8914
46fc3d4c 8915void
864dbfa3 8916Perl_sv_setpvf(pTHX_ SV *sv, const char* pat, ...)
46fc3d4c 8917{
8918 va_list args;
46fc3d4c 8919 va_start(args, pat);
c5be433b 8920 sv_vsetpvf(sv, pat, &args);
46fc3d4c 8921 va_end(args);
8922}
8923
bffc3d17
SH
8924/*
8925=for apidoc sv_vsetpvf
8926
8927Works like C<sv_vcatpvf> but copies the text into the SV instead of
8928appending it. Does not handle 'set' magic. See C<sv_vsetpvf_mg>.
8929
8930Usually used via its frontend C<sv_setpvf>.
8931
8932=cut
8933*/
645c22ef 8934
c5be433b
GS
8935void
8936Perl_sv_vsetpvf(pTHX_ SV *sv, const char* pat, va_list* args)
8937{
8938 sv_vsetpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
8939}
ef50df4b 8940
954c1994
GS
8941/*
8942=for apidoc sv_setpvf_mg
8943
8944Like C<sv_setpvf>, but also handles 'set' magic.
8945
8946=cut
8947*/
8948
ef50df4b 8949void
864dbfa3 8950Perl_sv_setpvf_mg(pTHX_ SV *sv, const char* pat, ...)
ef50df4b
GS
8951{
8952 va_list args;
ef50df4b 8953 va_start(args, pat);
c5be433b 8954 sv_vsetpvf_mg(sv, pat, &args);
ef50df4b 8955 va_end(args);
c5be433b
GS
8956}
8957
bffc3d17
SH
8958/*
8959=for apidoc sv_vsetpvf_mg
8960
8961Like C<sv_vsetpvf>, but also handles 'set' magic.
8962
8963Usually used via its frontend C<sv_setpvf_mg>.
8964
8965=cut
8966*/
645c22ef 8967
c5be433b
GS
8968void
8969Perl_sv_vsetpvf_mg(pTHX_ SV *sv, const char* pat, va_list* args)
8970{
8971 sv_vsetpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
ef50df4b
GS
8972 SvSETMAGIC(sv);
8973}
8974
cea2e8a9 8975#if defined(PERL_IMPLICIT_CONTEXT)
645c22ef
DM
8976
8977/* pTHX_ magic can't cope with varargs, so this is a no-context
8978 * version of the main function, (which may itself be aliased to us).
8979 * Don't access this version directly.
8980 */
8981
cea2e8a9
GS
8982void
8983Perl_sv_catpvf_nocontext(SV *sv, const char* pat, ...)
8984{
8985 dTHX;
8986 va_list args;
8987 va_start(args, pat);
c5be433b 8988 sv_vcatpvf(sv, pat, &args);
cea2e8a9
GS
8989 va_end(args);
8990}
8991
645c22ef
DM
8992/* pTHX_ magic can't cope with varargs, so this is a no-context
8993 * version of the main function, (which may itself be aliased to us).
8994 * Don't access this version directly.
8995 */
8996
cea2e8a9
GS
8997void
8998Perl_sv_catpvf_mg_nocontext(SV *sv, const char* pat, ...)
8999{
9000 dTHX;
9001 va_list args;
9002 va_start(args, pat);
c5be433b 9003 sv_vcatpvf_mg(sv, pat, &args);
cea2e8a9 9004 va_end(args);
cea2e8a9
GS
9005}
9006#endif
9007
954c1994
GS
9008/*
9009=for apidoc sv_catpvf
9010
d5ce4a7c
GA
9011Processes its arguments like C<sprintf> and appends the formatted
9012output to an SV. If the appended data contains "wide" characters
9013(including, but not limited to, SVs with a UTF-8 PV formatted with %s,
9014and characters >255 formatted with %c), the original SV might get
bffc3d17
SH
9015upgraded to UTF-8. Handles 'get' magic, but not 'set' magic. See
9016C<sv_catpvf_mg>.
954c1994 9017
d5ce4a7c 9018=cut */
954c1994 9019
46fc3d4c 9020void
864dbfa3 9021Perl_sv_catpvf(pTHX_ SV *sv, const char* pat, ...)
46fc3d4c 9022{
9023 va_list args;
46fc3d4c 9024 va_start(args, pat);
c5be433b 9025 sv_vcatpvf(sv, pat, &args);
46fc3d4c 9026 va_end(args);
9027}
9028
bffc3d17
SH
9029/*
9030=for apidoc sv_vcatpvf
9031
9032Processes its arguments like C<vsprintf> and appends the formatted output
9033to an SV. Does not handle 'set' magic. See C<sv_vcatpvf_mg>.
9034
9035Usually used via its frontend C<sv_catpvf>.
9036
9037=cut
9038*/
645c22ef 9039
ef50df4b 9040void
c5be433b
GS
9041Perl_sv_vcatpvf(pTHX_ SV *sv, const char* pat, va_list* args)
9042{
9043 sv_vcatpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
9044}
9045
954c1994
GS
9046/*
9047=for apidoc sv_catpvf_mg
9048
9049Like C<sv_catpvf>, but also handles 'set' magic.
9050
9051=cut
9052*/
9053
c5be433b 9054void
864dbfa3 9055Perl_sv_catpvf_mg(pTHX_ SV *sv, const char* pat, ...)
ef50df4b
GS
9056{
9057 va_list args;
ef50df4b 9058 va_start(args, pat);
c5be433b 9059 sv_vcatpvf_mg(sv, pat, &args);
ef50df4b 9060 va_end(args);
c5be433b
GS
9061}
9062
bffc3d17
SH
9063/*
9064=for apidoc sv_vcatpvf_mg
9065
9066Like C<sv_vcatpvf>, but also handles 'set' magic.
9067
9068Usually used via its frontend C<sv_catpvf_mg>.
9069
9070=cut
9071*/
645c22ef 9072
c5be433b
GS
9073void
9074Perl_sv_vcatpvf_mg(pTHX_ SV *sv, const char* pat, va_list* args)
9075{
9076 sv_vcatpvfn(sv, pat, strlen(pat), args, Null(SV**), 0, Null(bool*));
ef50df4b
GS
9077 SvSETMAGIC(sv);
9078}
9079
954c1994
GS
9080/*
9081=for apidoc sv_vsetpvfn
9082
bffc3d17 9083Works like C<sv_vcatpvfn> but copies the text into the SV instead of
954c1994
GS
9084appending it.
9085
bffc3d17 9086Usually used via one of its frontends C<sv_vsetpvf> and C<sv_vsetpvf_mg>.
645c22ef 9087
954c1994
GS
9088=cut
9089*/
9090
46fc3d4c 9091void
7d5ea4e7 9092Perl_sv_vsetpvfn(pTHX_ SV *sv, const char *pat, STRLEN patlen, va_list *args, SV **svargs, I32 svmax, bool *maybe_tainted)
46fc3d4c 9093{
9094 sv_setpvn(sv, "", 0);
7d5ea4e7 9095 sv_vcatpvfn(sv, pat, patlen, args, svargs, svmax, maybe_tainted);
46fc3d4c 9096}
9097
645c22ef
DM
9098/* private function for use in sv_vcatpvfn via the EXPECT_NUMBER macro */
9099
2d00ba3b 9100STATIC I32
9dd79c3f 9101S_expect_number(pTHX_ char** pattern)
211dfcf1
HS
9102{
9103 I32 var = 0;
9104 switch (**pattern) {
9105 case '1': case '2': case '3':
9106 case '4': case '5': case '6':
9107 case '7': case '8': case '9':
9108 while (isDIGIT(**pattern))
9109 var = var * 10 + (*(*pattern)++ - '0');
9110 }
9111 return var;
9112}
9dd79c3f 9113#define EXPECT_NUMBER(pattern, var) (var = S_expect_number(aTHX_ &pattern))
211dfcf1 9114
4151a5fe
IZ
9115static char *
9116F0convert(NV nv, char *endbuf, STRLEN *len)
9117{
9118 int neg = nv < 0;
9119 UV uv;
9120 char *p = endbuf;
9121
9122 if (neg)
9123 nv = -nv;
9124 if (nv < UV_MAX) {
9125 nv += 0.5;
028f8eaa 9126 uv = (UV)nv;
4151a5fe
IZ
9127 if (uv & 1 && uv == nv)
9128 uv--; /* Round to even */
9129 do {
9130 unsigned dig = uv % 10;
9131 *--p = '0' + dig;
9132 } while (uv /= 10);
9133 if (neg)
9134 *--p = '-';
9135 *len = endbuf - p;
9136 return p;
9137 }
9138 return Nullch;
9139}
9140
9141
954c1994
GS
9142/*
9143=for apidoc sv_vcatpvfn
9144
9145Processes its arguments like C<vsprintf> and appends the formatted output
9146to an SV. Uses an array of SVs if the C style variable argument list is
9147missing (NULL). When running with taint checks enabled, indicates via
9148C<maybe_tainted> if results are untrustworthy (often due to the use of
9149locales).
9150
bffc3d17 9151Usually used via one of its frontends C<sv_vcatpvf> and C<sv_vcatpvf_mg>.
645c22ef 9152
954c1994
GS
9153=cut
9154*/
9155
46fc3d4c 9156void
7d5ea4e7 9157Perl_sv_vcatpvfn(pTHX_ SV *sv, const char *pat, STRLEN patlen, va_list *args, SV **svargs, I32 svmax, bool *maybe_tainted)
46fc3d4c 9158{
9159 char *p;
9160 char *q;
9161 char *patend;
fc36a67e 9162 STRLEN origlen;
46fc3d4c 9163 I32 svix = 0;
c635e13b 9164 static char nullstr[] = "(null)";
9c5ffd7c 9165 SV *argsv = Nullsv;
db79b45b
JH
9166 bool has_utf8; /* has the result utf8? */
9167 bool pat_utf8; /* the pattern is in utf8? */
9168 SV *nsv = Nullsv;
4151a5fe
IZ
9169 /* Times 4: a decimal digit takes more than 3 binary digits.
9170 * NV_DIG: mantissa takes than many decimal digits.
9171 * Plus 32: Playing safe. */
9172 char ebuf[IV_DIG * 4 + NV_DIG + 32];
9173 /* large enough for "%#.#f" --chip */
9174 /* what about long double NVs? --jhi */
db79b45b
JH
9175
9176 has_utf8 = pat_utf8 = DO_UTF8(sv);
46fc3d4c 9177
9178 /* no matter what, this is a string now */
fc36a67e 9179 (void)SvPV_force(sv, origlen);
46fc3d4c 9180
fc36a67e 9181 /* special-case "", "%s", and "%_" */
46fc3d4c 9182 if (patlen == 0)
9183 return;
fc36a67e 9184 if (patlen == 2 && pat[0] == '%') {
9185 switch (pat[1]) {
9186 case 's':
c635e13b 9187 if (args) {
9188 char *s = va_arg(*args, char*);
9189 sv_catpv(sv, s ? s : nullstr);
9190 }
7e2040f0 9191 else if (svix < svmax) {
fc36a67e 9192 sv_catsv(sv, *svargs);
7e2040f0
GS
9193 if (DO_UTF8(*svargs))
9194 SvUTF8_on(sv);
9195 }
fc36a67e 9196 return;
9197 case '_':
9198 if (args) {
7e2040f0
GS
9199 argsv = va_arg(*args, SV*);
9200 sv_catsv(sv, argsv);
9201 if (DO_UTF8(argsv))
9202 SvUTF8_on(sv);
fc36a67e 9203 return;
9204 }
9205 /* See comment on '_' below */
9206 break;
9207 }
46fc3d4c 9208 }
9209
1d917b39 9210#ifndef USE_LONG_DOUBLE
4151a5fe
IZ
9211 /* special-case "%.<number>[gf]" */
9212 if ( patlen <= 5 && pat[0] == '%' && pat[1] == '.'
9213 && (pat[patlen-1] == 'g' || pat[patlen-1] == 'f') ) {
9214 unsigned digits = 0;
9215 const char *pp;
9216
9217 pp = pat + 2;
9218 while (*pp >= '0' && *pp <= '9')
9219 digits = 10 * digits + (*pp++ - '0');
028f8eaa 9220 if (pp - pat == (int)patlen - 1) {
4151a5fe
IZ
9221 NV nv;
9222
9223 if (args)
9224 nv = (NV)va_arg(*args, double);
9225 else if (svix < svmax)
9226 nv = SvNV(*svargs);
9227 else
9228 return;
9229 if (*pp == 'g') {
2873255c
NC
9230 /* Add check for digits != 0 because it seems that some
9231 gconverts are buggy in this case, and we don't yet have
9232 a Configure test for this. */
9233 if (digits && digits < sizeof(ebuf) - NV_DIG - 10) {
9234 /* 0, point, slack */
2e59c212 9235 Gconvert(nv, (int)digits, 0, ebuf);
4151a5fe
IZ
9236 sv_catpv(sv, ebuf);
9237 if (*ebuf) /* May return an empty string for digits==0 */
9238 return;
9239 }
9240 } else if (!digits) {
9241 STRLEN l;
9242
9243 if ((p = F0convert(nv, ebuf + sizeof ebuf, &l))) {
9244 sv_catpvn(sv, p, l);
9245 return;
9246 }
9247 }
9248 }
9249 }
1d917b39 9250#endif /* !USE_LONG_DOUBLE */
4151a5fe 9251
2cf2cfc6 9252 if (!args && svix < svmax && DO_UTF8(*svargs))
205f51d8 9253 has_utf8 = TRUE;
2cf2cfc6 9254
46fc3d4c 9255 patend = (char*)pat + patlen;
9256 for (p = (char*)pat; p < patend; p = q) {
9257 bool alt = FALSE;
9258 bool left = FALSE;
b22c7a20 9259 bool vectorize = FALSE;
211dfcf1 9260 bool vectorarg = FALSE;
2cf2cfc6 9261 bool vec_utf8 = FALSE;
46fc3d4c 9262 char fill = ' ';
9263 char plus = 0;
9264 char intsize = 0;
9265 STRLEN width = 0;
fc36a67e 9266 STRLEN zeros = 0;
46fc3d4c 9267 bool has_precis = FALSE;
9268 STRLEN precis = 0;
58e33a90 9269 I32 osvix = svix;
2cf2cfc6 9270 bool is_utf8 = FALSE; /* is this item utf8? */
20f6aaab
AS
9271#ifdef HAS_LDBL_SPRINTF_BUG
9272 /* This is to try to fix a bug with irix/nonstop-ux/powerux and
205f51d8 9273 with sfio - Allen <allens@cpan.org> */
20f6aaab
AS
9274 bool fix_ldbl_sprintf_bug = FALSE;
9275#endif
205f51d8 9276
46fc3d4c 9277 char esignbuf[4];
ad391ad9 9278 U8 utf8buf[UTF8_MAXLEN+1];
46fc3d4c 9279 STRLEN esignlen = 0;
9280
9281 char *eptr = Nullch;
fc36a67e 9282 STRLEN elen = 0;
81f715da 9283 SV *vecsv = Nullsv;
a05b299f 9284 U8 *vecstr = Null(U8*);
b22c7a20 9285 STRLEN veclen = 0;
934abaf1 9286 char c = 0;
46fc3d4c 9287 int i;
9c5ffd7c 9288 unsigned base = 0;
8c8eb53c
RB
9289 IV iv = 0;
9290 UV uv = 0;
9e5b023a
JH
9291 /* we need a long double target in case HAS_LONG_DOUBLE but
9292 not USE_LONG_DOUBLE
9293 */
35fff930 9294#if defined(HAS_LONG_DOUBLE) && LONG_DOUBLESIZE > DOUBLESIZE
9e5b023a
JH
9295 long double nv;
9296#else
65202027 9297 NV nv;
9e5b023a 9298#endif
46fc3d4c 9299 STRLEN have;
9300 STRLEN need;
9301 STRLEN gap;
b22c7a20
GS
9302 char *dotstr = ".";
9303 STRLEN dotstrlen = 1;
211dfcf1 9304 I32 efix = 0; /* explicit format parameter index */
eb3fce90 9305 I32 ewix = 0; /* explicit width index */
211dfcf1
HS
9306 I32 epix = 0; /* explicit precision index */
9307 I32 evix = 0; /* explicit vector index */
eb3fce90 9308 bool asterisk = FALSE;
46fc3d4c 9309
211dfcf1 9310 /* echo everything up to the next format specification */
46fc3d4c 9311 for (q = p; q < patend && *q != '%'; ++q) ;
9312 if (q > p) {
db79b45b
JH
9313 if (has_utf8 && !pat_utf8)
9314 sv_catpvn_utf8_upgrade(sv, p, q - p, nsv);
9315 else
9316 sv_catpvn(sv, p, q - p);
46fc3d4c 9317 p = q;
9318 }
9319 if (q++ >= patend)
9320 break;
9321
211dfcf1
HS
9322/*
9323 We allow format specification elements in this order:
9324 \d+\$ explicit format parameter index
9325 [-+ 0#]+ flags
a472f209 9326 v|\*(\d+\$)?v vector with optional (optionally specified) arg
f3583277 9327 0 flag (as above): repeated to allow "v02"
211dfcf1
HS
9328 \d+|\*(\d+\$)? width using optional (optionally specified) arg
9329 \.(\d*|\*(\d+\$)?) precision using optional (optionally specified) arg
9330 [hlqLV] size
9331 [%bcdefginopsux_DFOUX] format (mandatory)
9332*/
9333 if (EXPECT_NUMBER(q, width)) {
9334 if (*q == '$') {
9335 ++q;
9336 efix = width;
9337 } else {
9338 goto gotwidth;
9339 }
9340 }
9341
fc36a67e 9342 /* FLAGS */
9343
46fc3d4c 9344 while (*q) {
9345 switch (*q) {
9346 case ' ':
9347 case '+':
9348 plus = *q++;
9349 continue;
9350
9351 case '-':
9352 left = TRUE;
9353 q++;
9354 continue;
9355
9356 case '0':
9357 fill = *q++;
9358 continue;
9359
9360 case '#':
9361 alt = TRUE;
9362 q++;
9363 continue;
9364
fc36a67e 9365 default:
9366 break;
9367 }
9368 break;
9369 }
46fc3d4c 9370
211dfcf1 9371 tryasterisk:
eb3fce90 9372 if (*q == '*') {
211dfcf1
HS
9373 q++;
9374 if (EXPECT_NUMBER(q, ewix))
9375 if (*q++ != '$')
9376 goto unknown;
eb3fce90 9377 asterisk = TRUE;
211dfcf1
HS
9378 }
9379 if (*q == 'v') {
eb3fce90 9380 q++;
211dfcf1
HS
9381 if (vectorize)
9382 goto unknown;
9cbac4c7 9383 if ((vectorarg = asterisk)) {
211dfcf1
HS
9384 evix = ewix;
9385 ewix = 0;
9386 asterisk = FALSE;
9387 }
9388 vectorize = TRUE;
9389 goto tryasterisk;
eb3fce90
JH
9390 }
9391
211dfcf1 9392 if (!asterisk)
7a5fa8a2 9393 if( *q == '0' )
f3583277 9394 fill = *q++;
211dfcf1
HS
9395 EXPECT_NUMBER(q, width);
9396
9397 if (vectorize) {
9398 if (vectorarg) {
9399 if (args)
9400 vecsv = va_arg(*args, SV*);
9401 else
9402 vecsv = (evix ? evix <= svmax : svix < svmax) ?
3a7a539e 9403 svargs[evix ? evix-1 : svix++] : &PL_sv_undef;
4459522c 9404 dotstr = SvPVx(vecsv, dotstrlen);
211dfcf1 9405 if (DO_UTF8(vecsv))
2cf2cfc6 9406 is_utf8 = TRUE;
211dfcf1
HS
9407 }
9408 if (args) {
9409 vecsv = va_arg(*args, SV*);
9410 vecstr = (U8*)SvPVx(vecsv,veclen);
2cf2cfc6 9411 vec_utf8 = DO_UTF8(vecsv);
eb3fce90 9412 }
211dfcf1
HS
9413 else if (efix ? efix <= svmax : svix < svmax) {
9414 vecsv = svargs[efix ? efix-1 : svix++];
9415 vecstr = (U8*)SvPVx(vecsv,veclen);
2cf2cfc6 9416 vec_utf8 = DO_UTF8(vecsv);
d7aa5382
JP
9417 /* if this is a version object, we need to return the
9418 * stringified representation (which the SvPVX has
9419 * already done for us), but not vectorize the args
9420 */
9421 if ( *q == 'd' && sv_derived_from(vecsv,"version") )
9422 {
9423 q++; /* skip past the rest of the %vd format */
da6068d9 9424 eptr = (char *) vecstr;
d7aa5382
JP
9425 elen = strlen(eptr);
9426 vectorize=FALSE;
9427 goto string;
9428 }
211dfcf1
HS
9429 }
9430 else {
9431 vecstr = (U8*)"";
9432 veclen = 0;
9433 }
eb3fce90 9434 }
fc36a67e 9435
eb3fce90 9436 if (asterisk) {
fc36a67e 9437 if (args)
9438 i = va_arg(*args, int);
9439 else
eb3fce90
JH
9440 i = (ewix ? ewix <= svmax : svix < svmax) ?
9441 SvIVx(svargs[ewix ? ewix-1 : svix++]) : 0;
fc36a67e 9442 left |= (i < 0);
9443 width = (i < 0) ? -i : i;
fc36a67e 9444 }
211dfcf1 9445 gotwidth:
fc36a67e 9446
9447 /* PRECISION */
46fc3d4c 9448
fc36a67e 9449 if (*q == '.') {
9450 q++;
9451 if (*q == '*') {
211dfcf1 9452 q++;
7b8dd722
HS
9453 if (EXPECT_NUMBER(q, epix) && *q++ != '$')
9454 goto unknown;
9455 /* XXX: todo, support specified precision parameter */
9456 if (epix)
211dfcf1 9457 goto unknown;
46fc3d4c 9458 if (args)
9459 i = va_arg(*args, int);
9460 else
eb3fce90
JH
9461 i = (ewix ? ewix <= svmax : svix < svmax)
9462 ? SvIVx(svargs[ewix ? ewix-1 : svix++]) : 0;
fc36a67e 9463 precis = (i < 0) ? 0 : i;
fc36a67e 9464 }
9465 else {
9466 precis = 0;
9467 while (isDIGIT(*q))
9468 precis = precis * 10 + (*q++ - '0');
9469 }
9470 has_precis = TRUE;
9471 }
46fc3d4c 9472
fc36a67e 9473 /* SIZE */
46fc3d4c 9474
fc36a67e 9475 switch (*q) {
c623ac67
GS
9476#ifdef WIN32
9477 case 'I': /* Ix, I32x, and I64x */
9478# ifdef WIN64
9479 if (q[1] == '6' && q[2] == '4') {
9480 q += 3;
9481 intsize = 'q';
9482 break;
9483 }
9484# endif
9485 if (q[1] == '3' && q[2] == '2') {
9486 q += 3;
9487 break;
9488 }
9489# ifdef WIN64
9490 intsize = 'q';
9491# endif
9492 q++;
9493 break;
9494#endif
9e5b023a 9495#if defined(HAS_QUAD) || defined(HAS_LONG_DOUBLE)
6f9bb7fd 9496 case 'L': /* Ld */
e5c81feb 9497 /* FALL THROUGH */
e5c81feb 9498#ifdef HAS_QUAD
6f9bb7fd 9499 case 'q': /* qd */
9e5b023a 9500#endif
6f9bb7fd
GS
9501 intsize = 'q';
9502 q++;
9503 break;
9504#endif
fc36a67e 9505 case 'l':
9e5b023a 9506#if defined(HAS_QUAD) || defined(HAS_LONG_DOUBLE)
205f51d8 9507 if (*(q + 1) == 'l') { /* lld, llf */
fc36a67e 9508 intsize = 'q';
9509 q += 2;
46fc3d4c 9510 break;
cf2093f6 9511 }
fc36a67e 9512#endif
6f9bb7fd 9513 /* FALL THROUGH */
fc36a67e 9514 case 'h':
cf2093f6 9515 /* FALL THROUGH */
fc36a67e 9516 case 'V':
9517 intsize = *q++;
46fc3d4c 9518 break;
9519 }
9520
fc36a67e 9521 /* CONVERSION */
9522
211dfcf1
HS
9523 if (*q == '%') {
9524 eptr = q++;
9525 elen = 1;
9526 goto string;
9527 }
9528
be75b157
HS
9529 if (vectorize)
9530 argsv = vecsv;
9531 else if (!args)
211dfcf1
HS
9532 argsv = (efix ? efix <= svmax : svix < svmax) ?
9533 svargs[efix ? efix-1 : svix++] : &PL_sv_undef;
9534
46fc3d4c 9535 switch (c = *q++) {
9536
9537 /* STRINGS */
9538
46fc3d4c 9539 case 'c':
be75b157 9540 uv = (args && !vectorize) ? va_arg(*args, int) : SvIVx(argsv);
1bd104fb
JH
9541 if ((uv > 255 ||
9542 (!UNI_IS_INVARIANT(uv) && SvUTF8(sv)))
0064a8a9 9543 && !IN_BYTES) {
dfe13c55 9544 eptr = (char*)utf8buf;
9041c2e3 9545 elen = uvchr_to_utf8((U8*)eptr, uv) - utf8buf;
2cf2cfc6 9546 is_utf8 = TRUE;
7e2040f0
GS
9547 }
9548 else {
9549 c = (char)uv;
9550 eptr = &c;
9551 elen = 1;
a0ed51b3 9552 }
46fc3d4c 9553 goto string;
9554
46fc3d4c 9555 case 's':
be75b157 9556 if (args && !vectorize) {
fc36a67e 9557 eptr = va_arg(*args, char*);
c635e13b 9558 if (eptr)
1d7c1841
GS
9559#ifdef MACOS_TRADITIONAL
9560 /* On MacOS, %#s format is used for Pascal strings */
9561 if (alt)
9562 elen = *eptr++;
9563 else
9564#endif
c635e13b 9565 elen = strlen(eptr);
9566 else {
9567 eptr = nullstr;
9568 elen = sizeof nullstr - 1;
9569 }
46fc3d4c 9570 }
211dfcf1 9571 else {
7e2040f0
GS
9572 eptr = SvPVx(argsv, elen);
9573 if (DO_UTF8(argsv)) {
a0ed51b3
LW
9574 if (has_precis && precis < elen) {
9575 I32 p = precis;
7e2040f0 9576 sv_pos_u2b(argsv, &p, 0); /* sticks at end */
a0ed51b3
LW
9577 precis = p;
9578 }
9579 if (width) { /* fudge width (can't fudge elen) */
7e2040f0 9580 width += elen - sv_len_utf8(argsv);
a0ed51b3 9581 }
2cf2cfc6 9582 is_utf8 = TRUE;
a0ed51b3
LW
9583 }
9584 }
46fc3d4c 9585 goto string;
9586
fc36a67e 9587 case '_':
9588 /*
9589 * The "%_" hack might have to be changed someday,
9590 * if ISO or ANSI decide to use '_' for something.
9591 * So we keep it hidden from users' code.
9592 */
be75b157 9593 if (!args || vectorize)
fc36a67e 9594 goto unknown;
211dfcf1 9595 argsv = va_arg(*args, SV*);
7e2040f0
GS
9596 eptr = SvPVx(argsv, elen);
9597 if (DO_UTF8(argsv))
2cf2cfc6 9598 is_utf8 = TRUE;
fc36a67e 9599
46fc3d4c 9600 string:
b22c7a20 9601 vectorize = FALSE;
46fc3d4c 9602 if (has_precis && elen > precis)
9603 elen = precis;
9604 break;
9605
9606 /* INTEGERS */
9607
fc36a67e 9608 case 'p':
be75b157 9609 if (alt || vectorize)
c2e66d9e 9610 goto unknown;
211dfcf1 9611 uv = PTR2UV(args ? va_arg(*args, void*) : argsv);
fc36a67e 9612 base = 16;
9613 goto integer;
9614
46fc3d4c 9615 case 'D':
29fe7a80 9616#ifdef IV_IS_QUAD
22f3ae8c 9617 intsize = 'q';
29fe7a80 9618#else
46fc3d4c 9619 intsize = 'l';
29fe7a80 9620#endif
46fc3d4c 9621 /* FALL THROUGH */
9622 case 'd':
9623 case 'i':
b22c7a20 9624 if (vectorize) {
ba210ebe 9625 STRLEN ulen;
211dfcf1
HS
9626 if (!veclen)
9627 continue;
2cf2cfc6
A
9628 if (vec_utf8)
9629 uv = utf8n_to_uvchr(vecstr, veclen, &ulen,
9630 UTF8_ALLOW_ANYUV);
b22c7a20 9631 else {
e83d50c9 9632 uv = *vecstr;
b22c7a20
GS
9633 ulen = 1;
9634 }
9635 vecstr += ulen;
9636 veclen -= ulen;
e83d50c9
JP
9637 if (plus)
9638 esignbuf[esignlen++] = plus;
b22c7a20
GS
9639 }
9640 else if (args) {
46fc3d4c 9641 switch (intsize) {
9642 case 'h': iv = (short)va_arg(*args, int); break;
46fc3d4c 9643 case 'l': iv = va_arg(*args, long); break;
fc36a67e 9644 case 'V': iv = va_arg(*args, IV); break;
b10c0dba 9645 default: iv = va_arg(*args, int); break;
cf2093f6
JH
9646#ifdef HAS_QUAD
9647 case 'q': iv = va_arg(*args, Quad_t); break;
9648#endif
46fc3d4c 9649 }
9650 }
9651 else {
b10c0dba 9652 IV tiv = SvIVx(argsv); /* work around GCC bug #13488 */
46fc3d4c 9653 switch (intsize) {
b10c0dba
MHM
9654 case 'h': iv = (short)tiv; break;
9655 case 'l': iv = (long)tiv; break;
9656 case 'V':
9657 default: iv = tiv; break;
cf2093f6 9658#ifdef HAS_QUAD
b10c0dba 9659 case 'q': iv = (Quad_t)tiv; break;
cf2093f6 9660#endif
46fc3d4c 9661 }
9662 }
e83d50c9
JP
9663 if ( !vectorize ) /* we already set uv above */
9664 {
9665 if (iv >= 0) {
9666 uv = iv;
9667 if (plus)
9668 esignbuf[esignlen++] = plus;
9669 }
9670 else {
9671 uv = -iv;
9672 esignbuf[esignlen++] = '-';
9673 }
46fc3d4c 9674 }
9675 base = 10;
9676 goto integer;
9677
fc36a67e 9678 case 'U':
29fe7a80 9679#ifdef IV_IS_QUAD
22f3ae8c 9680 intsize = 'q';
29fe7a80 9681#else
fc36a67e 9682 intsize = 'l';
29fe7a80 9683#endif
fc36a67e 9684 /* FALL THROUGH */
9685 case 'u':
9686 base = 10;
9687 goto uns_integer;
9688
4f19785b
WSI
9689 case 'b':
9690 base = 2;
9691 goto uns_integer;
9692
46fc3d4c 9693 case 'O':
29fe7a80 9694#ifdef IV_IS_QUAD
22f3ae8c 9695 intsize = 'q';
29fe7a80 9696#else
46fc3d4c 9697 intsize = 'l';
29fe7a80 9698#endif
46fc3d4c 9699 /* FALL THROUGH */
9700 case 'o':
9701 base = 8;
9702 goto uns_integer;
9703
9704 case 'X':
46fc3d4c 9705 case 'x':
9706 base = 16;
46fc3d4c 9707
9708 uns_integer:
b22c7a20 9709 if (vectorize) {
ba210ebe 9710 STRLEN ulen;
b22c7a20 9711 vector:
211dfcf1
HS
9712 if (!veclen)
9713 continue;
2cf2cfc6
A
9714 if (vec_utf8)
9715 uv = utf8n_to_uvchr(vecstr, veclen, &ulen,
9716 UTF8_ALLOW_ANYUV);
b22c7a20 9717 else {
a05b299f 9718 uv = *vecstr;
b22c7a20
GS
9719 ulen = 1;
9720 }
9721 vecstr += ulen;
9722 veclen -= ulen;
9723 }
9724 else if (args) {
46fc3d4c 9725 switch (intsize) {
9726 case 'h': uv = (unsigned short)va_arg(*args, unsigned); break;
46fc3d4c 9727 case 'l': uv = va_arg(*args, unsigned long); break;
fc36a67e 9728 case 'V': uv = va_arg(*args, UV); break;
b10c0dba 9729 default: uv = va_arg(*args, unsigned); break;
cf2093f6 9730#ifdef HAS_QUAD
9e3321a5 9731 case 'q': uv = va_arg(*args, Uquad_t); break;
cf2093f6 9732#endif
46fc3d4c 9733 }
9734 }
9735 else {
b10c0dba 9736 UV tuv = SvUVx(argsv); /* work around GCC bug #13488 */
46fc3d4c 9737 switch (intsize) {
b10c0dba
MHM
9738 case 'h': uv = (unsigned short)tuv; break;
9739 case 'l': uv = (unsigned long)tuv; break;
9740 case 'V':
9741 default: uv = tuv; break;
cf2093f6 9742#ifdef HAS_QUAD
b10c0dba 9743 case 'q': uv = (Uquad_t)tuv; break;
cf2093f6 9744#endif
46fc3d4c 9745 }
9746 }
9747
9748 integer:
46fc3d4c 9749 eptr = ebuf + sizeof ebuf;
fc36a67e 9750 switch (base) {
9751 unsigned dig;
9752 case 16:
c10ed8b9
HS
9753 if (!uv)
9754 alt = FALSE;
1d7c1841
GS
9755 p = (char*)((c == 'X')
9756 ? "0123456789ABCDEF" : "0123456789abcdef");
fc36a67e 9757 do {
9758 dig = uv & 15;
9759 *--eptr = p[dig];
9760 } while (uv >>= 4);
9761 if (alt) {
46fc3d4c 9762 esignbuf[esignlen++] = '0';
fc36a67e 9763 esignbuf[esignlen++] = c; /* 'x' or 'X' */
46fc3d4c 9764 }
fc36a67e 9765 break;
9766 case 8:
9767 do {
9768 dig = uv & 7;
9769 *--eptr = '0' + dig;
9770 } while (uv >>= 3);
9771 if (alt && *eptr != '0')
9772 *--eptr = '0';
9773 break;
4f19785b
WSI
9774 case 2:
9775 do {
9776 dig = uv & 1;
9777 *--eptr = '0' + dig;
9778 } while (uv >>= 1);
eda88b6d
JH
9779 if (alt) {
9780 esignbuf[esignlen++] = '0';
7481bb52 9781 esignbuf[esignlen++] = 'b';
eda88b6d 9782 }
4f19785b 9783 break;
fc36a67e 9784 default: /* it had better be ten or less */
6bc102ca 9785#if defined(PERL_Y2KWARN)
e476b1b5 9786 if (ckWARN(WARN_Y2K)) {
6bc102ca
GS
9787 STRLEN n;
9788 char *s = SvPV(sv,n);
9789 if (n >= 2 && s[n-2] == '1' && s[n-1] == '9'
9790 && (n == 2 || !isDIGIT(s[n-3])))
9791 {
9014280d 9792 Perl_warner(aTHX_ packWARN(WARN_Y2K),
6bc102ca
GS
9793 "Possible Y2K bug: %%%c %s",
9794 c, "format string following '19'");
9795 }
9796 }
9797#endif
fc36a67e 9798 do {
9799 dig = uv % base;
9800 *--eptr = '0' + dig;
9801 } while (uv /= base);
9802 break;
46fc3d4c 9803 }
9804 elen = (ebuf + sizeof ebuf) - eptr;
c10ed8b9
HS
9805 if (has_precis) {
9806 if (precis > elen)
9807 zeros = precis - elen;
9808 else if (precis == 0 && elen == 1 && *eptr == '0')
9809 elen = 0;
9810 }
46fc3d4c 9811 break;
9812
9813 /* FLOATING POINT */
9814
fc36a67e 9815 case 'F':
9816 c = 'f'; /* maybe %F isn't supported here */
9817 /* FALL THROUGH */
46fc3d4c 9818 case 'e': case 'E':
fc36a67e 9819 case 'f':
46fc3d4c 9820 case 'g': case 'G':
9821
9822 /* This is evil, but floating point is even more evil */
9823
9e5b023a
JH
9824 /* for SV-style calling, we can only get NV
9825 for C-style calling, we assume %f is double;
9826 for simplicity we allow any of %Lf, %llf, %qf for long double
9827 */
9828 switch (intsize) {
9829 case 'V':
9830#if defined(USE_LONG_DOUBLE)
9831 intsize = 'q';
9832#endif
9833 break;
8a2e3f14 9834/* [perl #20339] - we should accept and ignore %lf rather than die */
00e17364
HS
9835 case 'l':
9836 /* FALL THROUGH */
9e5b023a
JH
9837 default:
9838#if defined(USE_LONG_DOUBLE)
9839 intsize = args ? 0 : 'q';
9840#endif
9841 break;
9842 case 'q':
9843#if defined(HAS_LONG_DOUBLE)
9844 break;
9845#else
9846 /* FALL THROUGH */
9847#endif
9848 case 'h':
9e5b023a
JH
9849 goto unknown;
9850 }
9851
9852 /* now we need (long double) if intsize == 'q', else (double) */
be75b157 9853 nv = (args && !vectorize) ?
35fff930
JH
9854#if LONG_DOUBLESIZE > DOUBLESIZE
9855 intsize == 'q' ?
205f51d8
AS
9856 va_arg(*args, long double) :
9857 va_arg(*args, double)
35fff930 9858#else
205f51d8 9859 va_arg(*args, double)
35fff930 9860#endif
9e5b023a 9861 : SvNVx(argsv);
fc36a67e 9862
9863 need = 0;
be75b157 9864 vectorize = FALSE;
fc36a67e 9865 if (c != 'e' && c != 'E') {
9866 i = PERL_INT_MIN;
9e5b023a
JH
9867 /* FIXME: if HAS_LONG_DOUBLE but not USE_LONG_DOUBLE this
9868 will cast our (long double) to (double) */
73b309ea 9869 (void)Perl_frexp(nv, &i);
fc36a67e 9870 if (i == PERL_INT_MIN)
cea2e8a9 9871 Perl_die(aTHX_ "panic: frexp");
c635e13b 9872 if (i > 0)
fc36a67e 9873 need = BIT_DIGITS(i);
9874 }
9875 need += has_precis ? precis : 6; /* known default */
20f6aaab 9876
fc36a67e 9877 if (need < width)
9878 need = width;
9879
20f6aaab
AS
9880#ifdef HAS_LDBL_SPRINTF_BUG
9881 /* This is to try to fix a bug with irix/nonstop-ux/powerux and
205f51d8
AS
9882 with sfio - Allen <allens@cpan.org> */
9883
9884# ifdef DBL_MAX
9885# define MY_DBL_MAX DBL_MAX
9886# else /* XXX guessing! HUGE_VAL may be defined as infinity, so not using */
9887# if DOUBLESIZE >= 8
9888# define MY_DBL_MAX 1.7976931348623157E+308L
9889# else
9890# define MY_DBL_MAX 3.40282347E+38L
9891# endif
9892# endif
9893
9894# ifdef HAS_LDBL_SPRINTF_BUG_LESS1 /* only between -1L & 1L - Allen */
9895# define MY_DBL_MAX_BUG 1L
20f6aaab 9896# else
205f51d8 9897# define MY_DBL_MAX_BUG MY_DBL_MAX
20f6aaab 9898# endif
20f6aaab 9899
205f51d8
AS
9900# ifdef DBL_MIN
9901# define MY_DBL_MIN DBL_MIN
9902# else /* XXX guessing! -Allen */
9903# if DOUBLESIZE >= 8
9904# define MY_DBL_MIN 2.2250738585072014E-308L
9905# else
9906# define MY_DBL_MIN 1.17549435E-38L
9907# endif
9908# endif
20f6aaab 9909
205f51d8
AS
9910 if ((intsize == 'q') && (c == 'f') &&
9911 ((nv < MY_DBL_MAX_BUG) && (nv > -MY_DBL_MAX_BUG)) &&
9912 (need < DBL_DIG)) {
9913 /* it's going to be short enough that
9914 * long double precision is not needed */
9915
9916 if ((nv <= 0L) && (nv >= -0L))
9917 fix_ldbl_sprintf_bug = TRUE; /* 0 is 0 - easiest */
9918 else {
9919 /* would use Perl_fp_class as a double-check but not
9920 * functional on IRIX - see perl.h comments */
9921
9922 if ((nv >= MY_DBL_MIN) || (nv <= -MY_DBL_MIN)) {
9923 /* It's within the range that a double can represent */
9924#if defined(DBL_MAX) && !defined(DBL_MIN)
9925 if ((nv >= ((long double)1/DBL_MAX)) ||
9926 (nv <= (-(long double)1/DBL_MAX)))
20f6aaab 9927#endif
205f51d8 9928 fix_ldbl_sprintf_bug = TRUE;
20f6aaab 9929 }
205f51d8
AS
9930 }
9931 if (fix_ldbl_sprintf_bug == TRUE) {
9932 double temp;
9933
9934 intsize = 0;
9935 temp = (double)nv;
9936 nv = (NV)temp;
9937 }
20f6aaab 9938 }
205f51d8
AS
9939
9940# undef MY_DBL_MAX
9941# undef MY_DBL_MAX_BUG
9942# undef MY_DBL_MIN
9943
20f6aaab
AS
9944#endif /* HAS_LDBL_SPRINTF_BUG */
9945
46fc3d4c 9946 need += 20; /* fudge factor */
80252599
GS
9947 if (PL_efloatsize < need) {
9948 Safefree(PL_efloatbuf);
9949 PL_efloatsize = need + 20; /* more fudge */
9950 New(906, PL_efloatbuf, PL_efloatsize, char);
7d5ea4e7 9951 PL_efloatbuf[0] = '\0';
46fc3d4c 9952 }
9953
4151a5fe
IZ
9954 if ( !(width || left || plus || alt) && fill != '0'
9955 && has_precis && intsize != 'q' ) { /* Shortcuts */
2873255c
NC
9956 /* See earlier comment about buggy Gconvert when digits,
9957 aka precis is 0 */
9958 if ( c == 'g' && precis) {
2e59c212 9959 Gconvert((NV)nv, (int)precis, 0, PL_efloatbuf);
4151a5fe
IZ
9960 if (*PL_efloatbuf) /* May return an empty string for digits==0 */
9961 goto float_converted;
9962 } else if ( c == 'f' && !precis) {
9963 if ((eptr = F0convert(nv, ebuf + sizeof ebuf, &elen)))
9964 break;
9965 }
9966 }
46fc3d4c 9967 eptr = ebuf + sizeof ebuf;
9968 *--eptr = '\0';
9969 *--eptr = c;
9e5b023a
JH
9970 /* FIXME: what to do if HAS_LONG_DOUBLE but not PERL_PRIfldbl? */
9971#if defined(HAS_LONG_DOUBLE) && defined(PERL_PRIfldbl)
9972 if (intsize == 'q') {
e5c81feb
JH
9973 /* Copy the one or more characters in a long double
9974 * format before the 'base' ([efgEFG]) character to
9975 * the format string. */
9976 static char const prifldbl[] = PERL_PRIfldbl;
9977 char const *p = prifldbl + sizeof(prifldbl) - 3;
9978 while (p >= prifldbl) { *--eptr = *p--; }
cf2093f6 9979 }
65202027 9980#endif
46fc3d4c 9981 if (has_precis) {
9982 base = precis;
9983 do { *--eptr = '0' + (base % 10); } while (base /= 10);
9984 *--eptr = '.';
9985 }
9986 if (width) {
9987 base = width;
9988 do { *--eptr = '0' + (base % 10); } while (base /= 10);
9989 }
9990 if (fill == '0')
9991 *--eptr = fill;
84902520
TB
9992 if (left)
9993 *--eptr = '-';
46fc3d4c 9994 if (plus)
9995 *--eptr = plus;
9996 if (alt)
9997 *--eptr = '#';
9998 *--eptr = '%';
9999
ff9121f8
JH
10000 /* No taint. Otherwise we are in the strange situation
10001 * where printf() taints but print($float) doesn't.
bda0f7a5 10002 * --jhi */
9e5b023a
JH
10003#if defined(HAS_LONG_DOUBLE)
10004 if (intsize == 'q')
10005 (void)sprintf(PL_efloatbuf, eptr, nv);
10006 else
10007 (void)sprintf(PL_efloatbuf, eptr, (double)nv);
10008#else
dd8482fc 10009 (void)sprintf(PL_efloatbuf, eptr, nv);
9e5b023a 10010#endif
4151a5fe 10011 float_converted:
80252599
GS
10012 eptr = PL_efloatbuf;
10013 elen = strlen(PL_efloatbuf);
46fc3d4c 10014 break;
10015
fc36a67e 10016 /* SPECIAL */
10017
10018 case 'n':
10019 i = SvCUR(sv) - origlen;
be75b157 10020 if (args && !vectorize) {
c635e13b 10021 switch (intsize) {
10022 case 'h': *(va_arg(*args, short*)) = i; break;
10023 default: *(va_arg(*args, int*)) = i; break;
10024 case 'l': *(va_arg(*args, long*)) = i; break;
10025 case 'V': *(va_arg(*args, IV*)) = i; break;
cf2093f6
JH
10026#ifdef HAS_QUAD
10027 case 'q': *(va_arg(*args, Quad_t*)) = i; break;
10028#endif
c635e13b 10029 }
fc36a67e 10030 }
9dd79c3f 10031 else
211dfcf1 10032 sv_setuv_mg(argsv, (UV)i);
be75b157 10033 vectorize = FALSE;
fc36a67e 10034 continue; /* not "break" */
10035
10036 /* UNKNOWN */
10037
46fc3d4c 10038 default:
fc36a67e 10039 unknown:
599cee73 10040 if (!args && ckWARN(WARN_PRINTF) &&
533c011a 10041 (PL_op->op_type == OP_PRTF || PL_op->op_type == OP_SPRINTF)) {
c635e13b 10042 SV *msg = sv_newmortal();
35c1215d
NC
10043 Perl_sv_setpvf(aTHX_ msg, "Invalid conversion in %sprintf: ",
10044 (PL_op->op_type == OP_PRTF) ? "" : "s");
0f4b6630 10045 if (c) {
0f4b6630 10046 if (isPRINT(c))
1c846c1f 10047 Perl_sv_catpvf(aTHX_ msg,
0f4b6630
JH
10048 "\"%%%c\"", c & 0xFF);
10049 else
10050 Perl_sv_catpvf(aTHX_ msg,
57def98f 10051 "\"%%\\%03"UVof"\"",
0f4b6630 10052 (UV)c & 0xFF);
0f4b6630 10053 } else
c635e13b 10054 sv_catpv(msg, "end of string");
9014280d 10055 Perl_warner(aTHX_ packWARN(WARN_PRINTF), "%"SVf, msg); /* yes, this is reentrant */
c635e13b 10056 }
fb73857a 10057
10058 /* output mangled stuff ... */
10059 if (c == '\0')
10060 --q;
46fc3d4c 10061 eptr = p;
10062 elen = q - p;
fb73857a 10063
10064 /* ... right here, because formatting flags should not apply */
10065 SvGROW(sv, SvCUR(sv) + elen + 1);
10066 p = SvEND(sv);
4459522c 10067 Copy(eptr, p, elen, char);
fb73857a 10068 p += elen;
10069 *p = '\0';
10070 SvCUR(sv) = p - SvPVX(sv);
58e33a90 10071 svix = osvix;
fb73857a 10072 continue; /* not "break" */
46fc3d4c 10073 }
10074
6c94ec8b
HS
10075 /* calculate width before utf8_upgrade changes it */
10076 have = esignlen + zeros + elen;
10077
d2876be5
JH
10078 if (is_utf8 != has_utf8) {
10079 if (is_utf8) {
10080 if (SvCUR(sv))
10081 sv_utf8_upgrade(sv);
10082 }
10083 else {
10084 SV *nsv = sv_2mortal(newSVpvn(eptr, elen));
10085 sv_utf8_upgrade(nsv);
10086 eptr = SvPVX(nsv);
10087 elen = SvCUR(nsv);
10088 }
10089 SvGROW(sv, SvCUR(sv) + elen + 1);
10090 p = SvEND(sv);
10091 *p = '\0';
10092 }
6af65485 10093
46fc3d4c 10094 need = (have > width ? have : width);
10095 gap = need - have;
10096
b22c7a20 10097 SvGROW(sv, SvCUR(sv) + need + dotstrlen + 1);
46fc3d4c 10098 p = SvEND(sv);
10099 if (esignlen && fill == '0') {
eb160463 10100 for (i = 0; i < (int)esignlen; i++)
46fc3d4c 10101 *p++ = esignbuf[i];
10102 }
10103 if (gap && !left) {
10104 memset(p, fill, gap);
10105 p += gap;
10106 }
10107 if (esignlen && fill != '0') {
eb160463 10108 for (i = 0; i < (int)esignlen; i++)
46fc3d4c 10109 *p++ = esignbuf[i];
10110 }
fc36a67e 10111 if (zeros) {
10112 for (i = zeros; i; i--)
10113 *p++ = '0';
10114 }
46fc3d4c 10115 if (elen) {
4459522c 10116 Copy(eptr, p, elen, char);
46fc3d4c 10117 p += elen;
10118 }
10119 if (gap && left) {
10120 memset(p, ' ', gap);
10121 p += gap;
10122 }
b22c7a20
GS
10123 if (vectorize) {
10124 if (veclen) {
4459522c 10125 Copy(dotstr, p, dotstrlen, char);
b22c7a20
GS
10126 p += dotstrlen;
10127 }
10128 else
10129 vectorize = FALSE; /* done iterating over vecstr */
10130 }
2cf2cfc6
A
10131 if (is_utf8)
10132 has_utf8 = TRUE;
10133 if (has_utf8)
7e2040f0 10134 SvUTF8_on(sv);
46fc3d4c 10135 *p = '\0';
10136 SvCUR(sv) = p - SvPVX(sv);
b22c7a20
GS
10137 if (vectorize) {
10138 esignlen = 0;
10139 goto vector;
10140 }
46fc3d4c 10141 }
10142}
51371543 10143
645c22ef
DM
10144/* =========================================================================
10145
10146=head1 Cloning an interpreter
10147
10148All the macros and functions in this section are for the private use of
10149the main function, perl_clone().
10150
10151The foo_dup() functions make an exact copy of an existing foo thinngy.
10152During the course of a cloning, a hash table is used to map old addresses
10153to new addresses. The table is created and manipulated with the
10154ptr_table_* functions.
10155
10156=cut
10157
10158============================================================================*/
10159
10160
1d7c1841
GS
10161#if defined(USE_ITHREADS)
10162
1d7c1841
GS
10163#ifndef GpREFCNT_inc
10164# define GpREFCNT_inc(gp) ((gp) ? (++(gp)->gp_refcnt, (gp)) : (GP*)NULL)
10165#endif
10166
10167
d2d73c3e
AB
10168#define sv_dup_inc(s,t) SvREFCNT_inc(sv_dup(s,t))
10169#define av_dup(s,t) (AV*)sv_dup((SV*)s,t)
10170#define av_dup_inc(s,t) (AV*)SvREFCNT_inc(sv_dup((SV*)s,t))
10171#define hv_dup(s,t) (HV*)sv_dup((SV*)s,t)
10172#define hv_dup_inc(s,t) (HV*)SvREFCNT_inc(sv_dup((SV*)s,t))
10173#define cv_dup(s,t) (CV*)sv_dup((SV*)s,t)
10174#define cv_dup_inc(s,t) (CV*)SvREFCNT_inc(sv_dup((SV*)s,t))
10175#define io_dup(s,t) (IO*)sv_dup((SV*)s,t)
10176#define io_dup_inc(s,t) (IO*)SvREFCNT_inc(sv_dup((SV*)s,t))
10177#define gv_dup(s,t) (GV*)sv_dup((SV*)s,t)
10178#define gv_dup_inc(s,t) (GV*)SvREFCNT_inc(sv_dup((SV*)s,t))
1d7c1841
GS
10179#define SAVEPV(p) (p ? savepv(p) : Nullch)
10180#define SAVEPVN(p,n) (p ? savepvn(p,n) : Nullch)
8cf8f3d1 10181
d2d73c3e 10182
d2f185dc
AMS
10183/* Duplicate a regexp. Required reading: pregcomp() and pregfree() in
10184 regcomp.c. AMS 20010712 */
645c22ef 10185
1d7c1841 10186REGEXP *
a8fc9800 10187Perl_re_dup(pTHX_ REGEXP *r, CLONE_PARAMS *param)
1d7c1841 10188{
d2f185dc
AMS
10189 REGEXP *ret;
10190 int i, len, npar;
10191 struct reg_substr_datum *s;
10192
10193 if (!r)
10194 return (REGEXP *)NULL;
10195
10196 if ((ret = (REGEXP *)ptr_table_fetch(PL_ptr_table, r)))
10197 return ret;
10198
10199 len = r->offsets[0];
10200 npar = r->nparens+1;
10201
10202 Newc(0, ret, sizeof(regexp) + (len+1)*sizeof(regnode), char, regexp);
10203 Copy(r->program, ret->program, len+1, regnode);
10204
10205 New(0, ret->startp, npar, I32);
10206 Copy(r->startp, ret->startp, npar, I32);
10207 New(0, ret->endp, npar, I32);
10208 Copy(r->startp, ret->startp, npar, I32);
10209
d2f185dc
AMS
10210 New(0, ret->substrs, 1, struct reg_substr_data);
10211 for (s = ret->substrs->data, i = 0; i < 3; i++, s++) {
10212 s->min_offset = r->substrs->data[i].min_offset;
10213 s->max_offset = r->substrs->data[i].max_offset;
10214 s->substr = sv_dup_inc(r->substrs->data[i].substr, param);
33b8afdf 10215 s->utf8_substr = sv_dup_inc(r->substrs->data[i].utf8_substr, param);
d2f185dc
AMS
10216 }
10217
70612e96 10218 ret->regstclass = NULL;
d2f185dc
AMS
10219 if (r->data) {
10220 struct reg_data *d;
10221 int count = r->data->count;
10222
10223 Newc(0, d, sizeof(struct reg_data) + count*sizeof(void *),
10224 char, struct reg_data);
10225 New(0, d->what, count, U8);
10226
10227 d->count = count;
10228 for (i = 0; i < count; i++) {
10229 d->what[i] = r->data->what[i];
10230 switch (d->what[i]) {
10231 case 's':
10232 d->data[i] = sv_dup_inc((SV *)r->data->data[i], param);
10233 break;
10234 case 'p':
10235 d->data[i] = av_dup_inc((AV *)r->data->data[i], param);
10236 break;
10237 case 'f':
10238 /* This is cheating. */
10239 New(0, d->data[i], 1, struct regnode_charclass_class);
10240 StructCopy(r->data->data[i], d->data[i],
10241 struct regnode_charclass_class);
70612e96 10242 ret->regstclass = (regnode*)d->data[i];
d2f185dc
AMS
10243 break;
10244 case 'o':
33773810
AMS
10245 /* Compiled op trees are readonly, and can thus be
10246 shared without duplication. */
b34c0dd4 10247 OP_REFCNT_LOCK;
9b978d73 10248 d->data[i] = (void*)OpREFCNT_inc((OP*)r->data->data[i]);
b34c0dd4 10249 OP_REFCNT_UNLOCK;
9b978d73 10250 break;
d2f185dc
AMS
10251 case 'n':
10252 d->data[i] = r->data->data[i];
10253 break;
10254 }
10255 }
10256
10257 ret->data = d;
10258 }
10259 else
10260 ret->data = NULL;
10261
10262 New(0, ret->offsets, 2*len+1, U32);
10263 Copy(r->offsets, ret->offsets, 2*len+1, U32);
10264
e01c5899 10265 ret->precomp = SAVEPVN(r->precomp, r->prelen);
d2f185dc
AMS
10266 ret->refcnt = r->refcnt;
10267 ret->minlen = r->minlen;
10268 ret->prelen = r->prelen;
10269 ret->nparens = r->nparens;
10270 ret->lastparen = r->lastparen;
10271 ret->lastcloseparen = r->lastcloseparen;
10272 ret->reganch = r->reganch;
10273
70612e96
RG
10274 ret->sublen = r->sublen;
10275
10276 if (RX_MATCH_COPIED(ret))
e01c5899 10277 ret->subbeg = SAVEPVN(r->subbeg, r->sublen);
70612e96
RG
10278 else
10279 ret->subbeg = Nullch;
9a26048b
NC
10280#ifdef PERL_COPY_ON_WRITE
10281 ret->saved_copy = Nullsv;
10282#endif
70612e96 10283
d2f185dc
AMS
10284 ptr_table_store(PL_ptr_table, r, ret);
10285 return ret;
1d7c1841
GS
10286}
10287
d2d73c3e 10288/* duplicate a file handle */
645c22ef 10289
1d7c1841 10290PerlIO *
a8fc9800 10291Perl_fp_dup(pTHX_ PerlIO *fp, char type, CLONE_PARAMS *param)
1d7c1841
GS
10292{
10293 PerlIO *ret;
10294 if (!fp)
10295 return (PerlIO*)NULL;
10296
10297 /* look for it in the table first */
10298 ret = (PerlIO*)ptr_table_fetch(PL_ptr_table, fp);
10299 if (ret)
10300 return ret;
10301
10302 /* create anew and remember what it is */
ecdeb87c 10303 ret = PerlIO_fdupopen(aTHX_ fp, param, PERLIO_DUP_CLONE);
1d7c1841
GS
10304 ptr_table_store(PL_ptr_table, fp, ret);
10305 return ret;
10306}
10307
645c22ef
DM
10308/* duplicate a directory handle */
10309
1d7c1841
GS
10310DIR *
10311Perl_dirp_dup(pTHX_ DIR *dp)
10312{
10313 if (!dp)
10314 return (DIR*)NULL;
10315 /* XXX TODO */
10316 return dp;
10317}
10318
ff276b08 10319/* duplicate a typeglob */
645c22ef 10320
1d7c1841 10321GP *
a8fc9800 10322Perl_gp_dup(pTHX_ GP *gp, CLONE_PARAMS* param)
1d7c1841
GS
10323{
10324 GP *ret;
10325 if (!gp)
10326 return (GP*)NULL;
10327 /* look for it in the table first */
10328 ret = (GP*)ptr_table_fetch(PL_ptr_table, gp);
10329 if (ret)
10330 return ret;
10331
10332 /* create anew and remember what it is */
10333 Newz(0, ret, 1, GP);
10334 ptr_table_store(PL_ptr_table, gp, ret);
10335
10336 /* clone */
10337 ret->gp_refcnt = 0; /* must be before any other dups! */
d2d73c3e
AB
10338 ret->gp_sv = sv_dup_inc(gp->gp_sv, param);
10339 ret->gp_io = io_dup_inc(gp->gp_io, param);
10340 ret->gp_form = cv_dup_inc(gp->gp_form, param);
10341 ret->gp_av = av_dup_inc(gp->gp_av, param);
10342 ret->gp_hv = hv_dup_inc(gp->gp_hv, param);
10343 ret->gp_egv = gv_dup(gp->gp_egv, param);/* GvEGV is not refcounted */
10344 ret->gp_cv = cv_dup_inc(gp->gp_cv, param);
1d7c1841
GS
10345 ret->gp_cvgen = gp->gp_cvgen;
10346 ret->gp_flags = gp->gp_flags;
10347 ret->gp_line = gp->gp_line;
10348 ret->gp_file = gp->gp_file; /* points to COP.cop_file */
10349 return ret;
10350}
10351
645c22ef
DM
10352/* duplicate a chain of magic */
10353
1d7c1841 10354MAGIC *
a8fc9800 10355Perl_mg_dup(pTHX_ MAGIC *mg, CLONE_PARAMS* param)
1d7c1841 10356{
cb359b41
JH
10357 MAGIC *mgprev = (MAGIC*)NULL;
10358 MAGIC *mgret;
1d7c1841
GS
10359 if (!mg)
10360 return (MAGIC*)NULL;
10361 /* look for it in the table first */
10362 mgret = (MAGIC*)ptr_table_fetch(PL_ptr_table, mg);
10363 if (mgret)
10364 return mgret;
10365
10366 for (; mg; mg = mg->mg_moremagic) {
10367 MAGIC *nmg;
10368 Newz(0, nmg, 1, MAGIC);
cb359b41 10369 if (mgprev)
1d7c1841 10370 mgprev->mg_moremagic = nmg;
cb359b41
JH
10371 else
10372 mgret = nmg;
1d7c1841
GS
10373 nmg->mg_virtual = mg->mg_virtual; /* XXX copy dynamic vtable? */
10374 nmg->mg_private = mg->mg_private;
10375 nmg->mg_type = mg->mg_type;
10376 nmg->mg_flags = mg->mg_flags;
14befaf4 10377 if (mg->mg_type == PERL_MAGIC_qr) {
d2f185dc 10378 nmg->mg_obj = (SV*)re_dup((REGEXP*)mg->mg_obj, param);
1d7c1841 10379 }
05bd4103 10380 else if(mg->mg_type == PERL_MAGIC_backref) {
fdc9a813
AE
10381 AV *av = (AV*) mg->mg_obj;
10382 SV **svp;
10383 I32 i;
10384 SvREFCNT_inc(nmg->mg_obj = (SV*)newAV());
10385 svp = AvARRAY(av);
10386 for (i = AvFILLp(av); i >= 0; i--) {
3a81978b 10387 if (!svp[i]) continue;
fdc9a813
AE
10388 av_push((AV*)nmg->mg_obj,sv_dup(svp[i],param));
10389 }
05bd4103 10390 }
1d7c1841
GS
10391 else {
10392 nmg->mg_obj = (mg->mg_flags & MGf_REFCOUNTED)
d2d73c3e
AB
10393 ? sv_dup_inc(mg->mg_obj, param)
10394 : sv_dup(mg->mg_obj, param);
1d7c1841
GS
10395 }
10396 nmg->mg_len = mg->mg_len;
10397 nmg->mg_ptr = mg->mg_ptr; /* XXX random ptr? */
14befaf4 10398 if (mg->mg_ptr && mg->mg_type != PERL_MAGIC_regex_global) {
68795e93 10399 if (mg->mg_len > 0) {
1d7c1841 10400 nmg->mg_ptr = SAVEPVN(mg->mg_ptr, mg->mg_len);
14befaf4
DM
10401 if (mg->mg_type == PERL_MAGIC_overload_table &&
10402 AMT_AMAGIC((AMT*)mg->mg_ptr))
10403 {
1d7c1841
GS
10404 AMT *amtp = (AMT*)mg->mg_ptr;
10405 AMT *namtp = (AMT*)nmg->mg_ptr;
10406 I32 i;
10407 for (i = 1; i < NofAMmeth; i++) {
d2d73c3e 10408 namtp->table[i] = cv_dup_inc(amtp->table[i], param);
1d7c1841
GS
10409 }
10410 }
10411 }
10412 else if (mg->mg_len == HEf_SVKEY)
d2d73c3e 10413 nmg->mg_ptr = (char*)sv_dup_inc((SV*)mg->mg_ptr, param);
1d7c1841 10414 }
68795e93
NIS
10415 if ((mg->mg_flags & MGf_DUP) && mg->mg_virtual && mg->mg_virtual->svt_dup) {
10416 CALL_FPTR(nmg->mg_virtual->svt_dup)(aTHX_ nmg, param);
10417 }
1d7c1841
GS
10418 mgprev = nmg;
10419 }
10420 return mgret;
10421}
10422
645c22ef
DM
10423/* create a new pointer-mapping table */
10424
1d7c1841
GS
10425PTR_TBL_t *
10426Perl_ptr_table_new(pTHX)
10427{
10428 PTR_TBL_t *tbl;
10429 Newz(0, tbl, 1, PTR_TBL_t);
10430 tbl->tbl_max = 511;
10431 tbl->tbl_items = 0;
10432 Newz(0, tbl->tbl_ary, tbl->tbl_max + 1, PTR_TBL_ENT_t*);
10433 return tbl;
10434}
10435
134ca3d6
DM
10436#if (PTRSIZE == 8)
10437# define PTR_TABLE_HASH(ptr) (PTR2UV(ptr) >> 3)
10438#else
10439# define PTR_TABLE_HASH(ptr) (PTR2UV(ptr) >> 2)
10440#endif
10441
645c22ef
DM
10442/* map an existing pointer using a table */
10443
1d7c1841
GS
10444void *
10445Perl_ptr_table_fetch(pTHX_ PTR_TBL_t *tbl, void *sv)
10446{
10447 PTR_TBL_ENT_t *tblent;
134ca3d6 10448 UV hash = PTR_TABLE_HASH(sv);
1d7c1841
GS
10449 assert(tbl);
10450 tblent = tbl->tbl_ary[hash & tbl->tbl_max];
10451 for (; tblent; tblent = tblent->next) {
10452 if (tblent->oldval == sv)
10453 return tblent->newval;
10454 }
10455 return (void*)NULL;
10456}
10457
645c22ef
DM
10458/* add a new entry to a pointer-mapping table */
10459
1d7c1841
GS
10460void
10461Perl_ptr_table_store(pTHX_ PTR_TBL_t *tbl, void *oldv, void *newv)
10462{
10463 PTR_TBL_ENT_t *tblent, **otblent;
10464 /* XXX this may be pessimal on platforms where pointers aren't good
10465 * hash values e.g. if they grow faster in the most significant
10466 * bits */
134ca3d6 10467 UV hash = PTR_TABLE_HASH(oldv);
14cade97 10468 bool empty = 1;
1d7c1841
GS
10469
10470 assert(tbl);
10471 otblent = &tbl->tbl_ary[hash & tbl->tbl_max];
14cade97 10472 for (tblent = *otblent; tblent; empty=0, tblent = tblent->next) {
1d7c1841
GS
10473 if (tblent->oldval == oldv) {
10474 tblent->newval = newv;
1d7c1841
GS
10475 return;
10476 }
10477 }
10478 Newz(0, tblent, 1, PTR_TBL_ENT_t);
10479 tblent->oldval = oldv;
10480 tblent->newval = newv;
10481 tblent->next = *otblent;
10482 *otblent = tblent;
10483 tbl->tbl_items++;
14cade97 10484 if (!empty && tbl->tbl_items > tbl->tbl_max)
1d7c1841
GS
10485 ptr_table_split(tbl);
10486}
10487
645c22ef
DM
10488/* double the hash bucket size of an existing ptr table */
10489
1d7c1841
GS
10490void
10491Perl_ptr_table_split(pTHX_ PTR_TBL_t *tbl)
10492{
10493 PTR_TBL_ENT_t **ary = tbl->tbl_ary;
10494 UV oldsize = tbl->tbl_max + 1;
10495 UV newsize = oldsize * 2;
10496 UV i;
10497
10498 Renew(ary, newsize, PTR_TBL_ENT_t*);
10499 Zero(&ary[oldsize], newsize-oldsize, PTR_TBL_ENT_t*);
10500 tbl->tbl_max = --newsize;
10501 tbl->tbl_ary = ary;
10502 for (i=0; i < oldsize; i++, ary++) {
10503 PTR_TBL_ENT_t **curentp, **entp, *ent;
10504 if (!*ary)
10505 continue;
10506 curentp = ary + oldsize;
10507 for (entp = ary, ent = *ary; ent; ent = *entp) {
134ca3d6 10508 if ((newsize & PTR_TABLE_HASH(ent->oldval)) != i) {
1d7c1841
GS
10509 *entp = ent->next;
10510 ent->next = *curentp;
10511 *curentp = ent;
10512 continue;
10513 }
10514 else
10515 entp = &ent->next;
10516 }
10517 }
10518}
10519
645c22ef
DM
10520/* remove all the entries from a ptr table */
10521
a0739874
DM
10522void
10523Perl_ptr_table_clear(pTHX_ PTR_TBL_t *tbl)
10524{
10525 register PTR_TBL_ENT_t **array;
10526 register PTR_TBL_ENT_t *entry;
10527 register PTR_TBL_ENT_t *oentry = Null(PTR_TBL_ENT_t*);
10528 UV riter = 0;
10529 UV max;
10530
10531 if (!tbl || !tbl->tbl_items) {
10532 return;
10533 }
10534
10535 array = tbl->tbl_ary;
10536 entry = array[0];
10537 max = tbl->tbl_max;
10538
10539 for (;;) {
10540 if (entry) {
10541 oentry = entry;
10542 entry = entry->next;
10543 Safefree(oentry);
10544 }
10545 if (!entry) {
10546 if (++riter > max) {
10547 break;
10548 }
10549 entry = array[riter];
10550 }
10551 }
10552
10553 tbl->tbl_items = 0;
10554}
10555
645c22ef
DM
10556/* clear and free a ptr table */
10557
a0739874
DM
10558void
10559Perl_ptr_table_free(pTHX_ PTR_TBL_t *tbl)
10560{
10561 if (!tbl) {
10562 return;
10563 }
10564 ptr_table_clear(tbl);
10565 Safefree(tbl->tbl_ary);
10566 Safefree(tbl);
10567}
10568
1d7c1841
GS
10569#ifdef DEBUGGING
10570char *PL_watch_pvx;
10571#endif
10572
645c22ef
DM
10573/* attempt to make everything in the typeglob readonly */
10574
5bd07a3d 10575STATIC SV *
59b40662 10576S_gv_share(pTHX_ SV *sstr, CLONE_PARAMS *param)
5bd07a3d
DM
10577{
10578 GV *gv = (GV*)sstr;
59b40662 10579 SV *sv = &param->proto_perl->Isv_no; /* just need SvREADONLY-ness */
5bd07a3d
DM
10580
10581 if (GvIO(gv) || GvFORM(gv)) {
7fb37951 10582 GvUNIQUE_off(gv); /* GvIOs cannot be shared. nor can GvFORMs */
5bd07a3d
DM
10583 }
10584 else if (!GvCV(gv)) {
10585 GvCV(gv) = (CV*)sv;
10586 }
10587 else {
10588 /* CvPADLISTs cannot be shared */
37e20706 10589 if (!SvREADONLY(GvCV(gv)) && !CvXSUB(GvCV(gv))) {
7fb37951 10590 GvUNIQUE_off(gv);
5bd07a3d
DM
10591 }
10592 }
10593
7fb37951 10594 if (!GvUNIQUE(gv)) {
5bd07a3d
DM
10595#if 0
10596 PerlIO_printf(Perl_debug_log, "gv_share: unable to share %s::%s\n",
10597 HvNAME(GvSTASH(gv)), GvNAME(gv));
10598#endif
10599 return Nullsv;
10600 }
10601
4411f3b6 10602 /*
5bd07a3d
DM
10603 * write attempts will die with
10604 * "Modification of a read-only value attempted"
10605 */
10606 if (!GvSV(gv)) {
10607 GvSV(gv) = sv;
10608 }
10609 else {
10610 SvREADONLY_on(GvSV(gv));
10611 }
10612
10613 if (!GvAV(gv)) {
10614 GvAV(gv) = (AV*)sv;
10615 }
10616 else {
10617 SvREADONLY_on(GvAV(gv));
10618 }
10619
10620 if (!GvHV(gv)) {
10621 GvHV(gv) = (HV*)sv;
10622 }
10623 else {
53c33732 10624 SvREADONLY_on(GvHV(gv));
5bd07a3d
DM
10625 }
10626
10627 return sstr; /* he_dup() will SvREFCNT_inc() */
10628}
10629
645c22ef
DM
10630/* duplicate an SV of any type (including AV, HV etc) */
10631
83841fad
NIS
10632void
10633Perl_rvpv_dup(pTHX_ SV *dstr, SV *sstr, CLONE_PARAMS* param)
10634{
10635 if (SvROK(sstr)) {
d3d0e6f1 10636 SvRV(dstr) = SvWEAKREF(sstr)
83841fad
NIS
10637 ? sv_dup(SvRV(sstr), param)
10638 : sv_dup_inc(SvRV(sstr), param);
10639 }
10640 else if (SvPVX(sstr)) {
10641 /* Has something there */
10642 if (SvLEN(sstr)) {
68795e93 10643 /* Normal PV - clone whole allocated space */
83841fad 10644 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvLEN(sstr)-1);
d3d0e6f1
NC
10645 if (SvREADONLY(sstr) && SvFAKE(sstr)) {
10646 /* Not that normal - actually sstr is copy on write.
10647 But we are a true, independant SV, so: */
10648 SvREADONLY_off(dstr);
10649 SvFAKE_off(dstr);
10650 }
68795e93 10651 }
83841fad
NIS
10652 else {
10653 /* Special case - not normally malloced for some reason */
10654 if (SvREADONLY(sstr) && SvFAKE(sstr)) {
10655 /* A "shared" PV - clone it as unshared string */
281b2760 10656 if(SvPADTMP(sstr)) {
5e6160dc
AB
10657 /* However, some of them live in the pad
10658 and they should not have these flags
10659 turned off */
281b2760
AB
10660
10661 SvPVX(dstr) = sharepvn(SvPVX(sstr), SvCUR(sstr),
10662 SvUVX(sstr));
10663 SvUVX(dstr) = SvUVX(sstr);
10664 } else {
10665
10666 SvPVX(dstr) = SAVEPVN(SvPVX(sstr), SvCUR(sstr));
10667 SvFAKE_off(dstr);
10668 SvREADONLY_off(dstr);
5e6160dc 10669 }
83841fad
NIS
10670 }
10671 else {
10672 /* Some other special case - random pointer */
10673 SvPVX(dstr) = SvPVX(sstr);
d3d0e6f1 10674 }
83841fad
NIS
10675 }
10676 }
10677 else {
10678 /* Copy the Null */
10679 SvPVX(dstr) = SvPVX(sstr);
10680 }
10681}
10682
1d7c1841 10683SV *
a8fc9800 10684Perl_sv_dup(pTHX_ SV *sstr, CLONE_PARAMS* param)
1d7c1841 10685{
1d7c1841
GS
10686 SV *dstr;
10687
10688 if (!sstr || SvTYPE(sstr) == SVTYPEMASK)
10689 return Nullsv;
10690 /* look for it in the table first */
10691 dstr = (SV*)ptr_table_fetch(PL_ptr_table, sstr);
10692 if (dstr)
10693 return dstr;
10694
0405e91e
AB
10695 if(param->flags & CLONEf_JOIN_IN) {
10696 /** We are joining here so we don't want do clone
10697 something that is bad **/
10698
10699 if(SvTYPE(sstr) == SVt_PVHV &&
10700 HvNAME(sstr)) {
10701 /** don't clone stashes if they already exist **/
10702 HV* old_stash = gv_stashpv(HvNAME(sstr),0);
10703 return (SV*) old_stash;
10704 }
10705 }
10706
1d7c1841
GS
10707 /* create anew and remember what it is */
10708 new_SV(dstr);
10709 ptr_table_store(PL_ptr_table, sstr, dstr);
10710
10711 /* clone */
10712 SvFLAGS(dstr) = SvFLAGS(sstr);
10713 SvFLAGS(dstr) &= ~SVf_OOK; /* don't propagate OOK hack */
10714 SvREFCNT(dstr) = 0; /* must be before any other dups! */
10715
10716#ifdef DEBUGGING
10717 if (SvANY(sstr) && PL_watch_pvx && SvPVX(sstr) == PL_watch_pvx)
10718 PerlIO_printf(Perl_debug_log, "watch at %p hit, found string \"%s\"\n",
10719 PL_watch_pvx, SvPVX(sstr));
10720#endif
10721
10722 switch (SvTYPE(sstr)) {
10723 case SVt_NULL:
10724 SvANY(dstr) = NULL;
10725 break;
10726 case SVt_IV:
10727 SvANY(dstr) = new_XIV();
10728 SvIVX(dstr) = SvIVX(sstr);
10729 break;
10730 case SVt_NV:
10731 SvANY(dstr) = new_XNV();
10732 SvNVX(dstr) = SvNVX(sstr);
10733 break;
10734 case SVt_RV:
10735 SvANY(dstr) = new_XRV();
83841fad 10736 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
1d7c1841
GS
10737 break;
10738 case SVt_PV:
10739 SvANY(dstr) = new_XPV();
10740 SvCUR(dstr) = SvCUR(sstr);
10741 SvLEN(dstr) = SvLEN(sstr);
83841fad 10742 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
1d7c1841
GS
10743 break;
10744 case SVt_PVIV:
10745 SvANY(dstr) = new_XPVIV();
10746 SvCUR(dstr) = SvCUR(sstr);
10747 SvLEN(dstr) = SvLEN(sstr);
10748 SvIVX(dstr) = SvIVX(sstr);
83841fad 10749 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
1d7c1841
GS
10750 break;
10751 case SVt_PVNV:
10752 SvANY(dstr) = new_XPVNV();
10753 SvCUR(dstr) = SvCUR(sstr);
10754 SvLEN(dstr) = SvLEN(sstr);
10755 SvIVX(dstr) = SvIVX(sstr);
10756 SvNVX(dstr) = SvNVX(sstr);
83841fad 10757 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
1d7c1841
GS
10758 break;
10759 case SVt_PVMG:
10760 SvANY(dstr) = new_XPVMG();
10761 SvCUR(dstr) = SvCUR(sstr);
10762 SvLEN(dstr) = SvLEN(sstr);
10763 SvIVX(dstr) = SvIVX(sstr);
10764 SvNVX(dstr) = SvNVX(sstr);
d2d73c3e
AB
10765 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr), param);
10766 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr), param);
83841fad 10767 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
1d7c1841
GS
10768 break;
10769 case SVt_PVBM:
10770 SvANY(dstr) = new_XPVBM();
10771 SvCUR(dstr) = SvCUR(sstr);
10772 SvLEN(dstr) = SvLEN(sstr);
10773 SvIVX(dstr) = SvIVX(sstr);
10774 SvNVX(dstr) = SvNVX(sstr);
d2d73c3e
AB
10775 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr), param);
10776 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr), param);
83841fad 10777 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
1d7c1841
GS
10778 BmRARE(dstr) = BmRARE(sstr);
10779 BmUSEFUL(dstr) = BmUSEFUL(sstr);
10780 BmPREVIOUS(dstr)= BmPREVIOUS(sstr);
10781 break;
10782 case SVt_PVLV:
10783 SvANY(dstr) = new_XPVLV();
10784 SvCUR(dstr) = SvCUR(sstr);
10785 SvLEN(dstr) = SvLEN(sstr);
10786 SvIVX(dstr) = SvIVX(sstr);
10787 SvNVX(dstr) = SvNVX(sstr);
d2d73c3e
AB
10788 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr), param);
10789 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr), param);
83841fad 10790 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
1d7c1841
GS
10791 LvTARGOFF(dstr) = LvTARGOFF(sstr); /* XXX sometimes holds PMOP* when DEBUGGING */
10792 LvTARGLEN(dstr) = LvTARGLEN(sstr);
dd28f7bb
DM
10793 if (LvTYPE(sstr) == 't') /* for tie: unrefcnted fake (SV**) */
10794 LvTARG(dstr) = dstr;
10795 else if (LvTYPE(sstr) == 'T') /* for tie: fake HE */
10796 LvTARG(dstr) = (SV*)he_dup((HE*)LvTARG(sstr), 0, param);
10797 else
10798 LvTARG(dstr) = sv_dup_inc(LvTARG(sstr), param);
1d7c1841
GS
10799 LvTYPE(dstr) = LvTYPE(sstr);
10800 break;
10801 case SVt_PVGV:
7fb37951 10802 if (GvUNIQUE((GV*)sstr)) {
5bd07a3d 10803 SV *share;
59b40662 10804 if ((share = gv_share(sstr, param))) {
5bd07a3d
DM
10805 del_SV(dstr);
10806 dstr = share;
37e20706 10807 ptr_table_store(PL_ptr_table, sstr, dstr);
5bd07a3d
DM
10808#if 0
10809 PerlIO_printf(Perl_debug_log, "sv_dup: sharing %s::%s\n",
10810 HvNAME(GvSTASH(share)), GvNAME(share));
10811#endif
10812 break;
10813 }
10814 }
1d7c1841
GS
10815 SvANY(dstr) = new_XPVGV();
10816 SvCUR(dstr) = SvCUR(sstr);
10817 SvLEN(dstr) = SvLEN(sstr);
10818 SvIVX(dstr) = SvIVX(sstr);
10819 SvNVX(dstr) = SvNVX(sstr);
d2d73c3e
AB
10820 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr), param);
10821 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr), param);
83841fad 10822 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
1d7c1841
GS
10823 GvNAMELEN(dstr) = GvNAMELEN(sstr);
10824 GvNAME(dstr) = SAVEPVN(GvNAME(sstr), GvNAMELEN(sstr));
d2d73c3e 10825 GvSTASH(dstr) = hv_dup_inc(GvSTASH(sstr), param);
1d7c1841 10826 GvFLAGS(dstr) = GvFLAGS(sstr);
d2d73c3e 10827 GvGP(dstr) = gp_dup(GvGP(sstr), param);
1d7c1841
GS
10828 (void)GpREFCNT_inc(GvGP(dstr));
10829 break;
10830 case SVt_PVIO:
10831 SvANY(dstr) = new_XPVIO();
10832 SvCUR(dstr) = SvCUR(sstr);
10833 SvLEN(dstr) = SvLEN(sstr);
10834 SvIVX(dstr) = SvIVX(sstr);
10835 SvNVX(dstr) = SvNVX(sstr);
d2d73c3e
AB
10836 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr), param);
10837 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr), param);
83841fad 10838 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
a8fc9800 10839 IoIFP(dstr) = fp_dup(IoIFP(sstr), IoTYPE(sstr), param);
1d7c1841
GS
10840 if (IoOFP(sstr) == IoIFP(sstr))
10841 IoOFP(dstr) = IoIFP(dstr);
10842 else
a8fc9800 10843 IoOFP(dstr) = fp_dup(IoOFP(sstr), IoTYPE(sstr), param);
1d7c1841
GS
10844 /* PL_rsfp_filters entries have fake IoDIRP() */
10845 if (IoDIRP(sstr) && !(IoFLAGS(sstr) & IOf_FAKE_DIRP))
10846 IoDIRP(dstr) = dirp_dup(IoDIRP(sstr));
10847 else
10848 IoDIRP(dstr) = IoDIRP(sstr);
10849 IoLINES(dstr) = IoLINES(sstr);
10850 IoPAGE(dstr) = IoPAGE(sstr);
10851 IoPAGE_LEN(dstr) = IoPAGE_LEN(sstr);
10852 IoLINES_LEFT(dstr) = IoLINES_LEFT(sstr);
7a5fa8a2 10853 if(IoFLAGS(sstr) & IOf_FAKE_DIRP) {
5a37521b
AB
10854 /* I have no idea why fake dirp (rsfps)
10855 should be treaded differently but otherwise
10856 we end up with leaks -- sky*/
10857 IoTOP_GV(dstr) = gv_dup_inc(IoTOP_GV(sstr), param);
10858 IoFMT_GV(dstr) = gv_dup_inc(IoFMT_GV(sstr), param);
10859 IoBOTTOM_GV(dstr) = gv_dup_inc(IoBOTTOM_GV(sstr), param);
10860 } else {
10861 IoTOP_GV(dstr) = gv_dup(IoTOP_GV(sstr), param);
10862 IoFMT_GV(dstr) = gv_dup(IoFMT_GV(sstr), param);
10863 IoBOTTOM_GV(dstr) = gv_dup(IoBOTTOM_GV(sstr), param);
10864 }
1d7c1841 10865 IoTOP_NAME(dstr) = SAVEPV(IoTOP_NAME(sstr));
1d7c1841 10866 IoFMT_NAME(dstr) = SAVEPV(IoFMT_NAME(sstr));
1d7c1841 10867 IoBOTTOM_NAME(dstr) = SAVEPV(IoBOTTOM_NAME(sstr));
1d7c1841
GS
10868 IoSUBPROCESS(dstr) = IoSUBPROCESS(sstr);
10869 IoTYPE(dstr) = IoTYPE(sstr);
10870 IoFLAGS(dstr) = IoFLAGS(sstr);
10871 break;
10872 case SVt_PVAV:
10873 SvANY(dstr) = new_XPVAV();
10874 SvCUR(dstr) = SvCUR(sstr);
10875 SvLEN(dstr) = SvLEN(sstr);
10876 SvIVX(dstr) = SvIVX(sstr);
10877 SvNVX(dstr) = SvNVX(sstr);
d2d73c3e
AB
10878 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr), param);
10879 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr), param);
10880 AvARYLEN((AV*)dstr) = sv_dup_inc(AvARYLEN((AV*)sstr), param);
1d7c1841
GS
10881 AvFLAGS((AV*)dstr) = AvFLAGS((AV*)sstr);
10882 if (AvARRAY((AV*)sstr)) {
10883 SV **dst_ary, **src_ary;
10884 SSize_t items = AvFILLp((AV*)sstr) + 1;
10885
10886 src_ary = AvARRAY((AV*)sstr);
10887 Newz(0, dst_ary, AvMAX((AV*)sstr)+1, SV*);
10888 ptr_table_store(PL_ptr_table, src_ary, dst_ary);
10889 SvPVX(dstr) = (char*)dst_ary;
10890 AvALLOC((AV*)dstr) = dst_ary;
10891 if (AvREAL((AV*)sstr)) {
10892 while (items-- > 0)
d2d73c3e 10893 *dst_ary++ = sv_dup_inc(*src_ary++, param);
1d7c1841
GS
10894 }
10895 else {
10896 while (items-- > 0)
d2d73c3e 10897 *dst_ary++ = sv_dup(*src_ary++, param);
1d7c1841
GS
10898 }
10899 items = AvMAX((AV*)sstr) - AvFILLp((AV*)sstr);
10900 while (items-- > 0) {
10901 *dst_ary++ = &PL_sv_undef;
10902 }
10903 }
10904 else {
10905 SvPVX(dstr) = Nullch;
10906 AvALLOC((AV*)dstr) = (SV**)NULL;
10907 }
10908 break;
10909 case SVt_PVHV:
10910 SvANY(dstr) = new_XPVHV();
10911 SvCUR(dstr) = SvCUR(sstr);
10912 SvLEN(dstr) = SvLEN(sstr);
10913 SvIVX(dstr) = SvIVX(sstr);
10914 SvNVX(dstr) = SvNVX(sstr);
d2d73c3e
AB
10915 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr), param);
10916 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr), param);
1d7c1841
GS
10917 HvRITER((HV*)dstr) = HvRITER((HV*)sstr);
10918 if (HvARRAY((HV*)sstr)) {
1d7c1841
GS
10919 STRLEN i = 0;
10920 XPVHV *dxhv = (XPVHV*)SvANY(dstr);
10921 XPVHV *sxhv = (XPVHV*)SvANY(sstr);
10922 Newz(0, dxhv->xhv_array,
10923 PERL_HV_ARRAY_ALLOC_BYTES(dxhv->xhv_max+1), char);
10924 while (i <= sxhv->xhv_max) {
10925 ((HE**)dxhv->xhv_array)[i] = he_dup(((HE**)sxhv->xhv_array)[i],
eb160463
GS
10926 (bool)!!HvSHAREKEYS(sstr),
10927 param);
1d7c1841
GS
10928 ++i;
10929 }
eb160463
GS
10930 dxhv->xhv_eiter = he_dup(sxhv->xhv_eiter,
10931 (bool)!!HvSHAREKEYS(sstr), param);
1d7c1841
GS
10932 }
10933 else {
10934 SvPVX(dstr) = Nullch;
10935 HvEITER((HV*)dstr) = (HE*)NULL;
10936 }
10937 HvPMROOT((HV*)dstr) = HvPMROOT((HV*)sstr); /* XXX */
10938 HvNAME((HV*)dstr) = SAVEPV(HvNAME((HV*)sstr));
c43294b8 10939 /* Record stashes for possible cloning in Perl_clone(). */
6676db26 10940 if(HvNAME((HV*)dstr))
d2d73c3e 10941 av_push(param->stashes, dstr);
1d7c1841
GS
10942 break;
10943 case SVt_PVFM:
10944 SvANY(dstr) = new_XPVFM();
10945 FmLINES(dstr) = FmLINES(sstr);
10946 goto dup_pvcv;
10947 /* NOTREACHED */
10948 case SVt_PVCV:
10949 SvANY(dstr) = new_XPVCV();
d2d73c3e 10950 dup_pvcv:
1d7c1841
GS
10951 SvCUR(dstr) = SvCUR(sstr);
10952 SvLEN(dstr) = SvLEN(sstr);
10953 SvIVX(dstr) = SvIVX(sstr);
10954 SvNVX(dstr) = SvNVX(sstr);
d2d73c3e
AB
10955 SvMAGIC(dstr) = mg_dup(SvMAGIC(sstr), param);
10956 SvSTASH(dstr) = hv_dup_inc(SvSTASH(sstr), param);
83841fad 10957 Perl_rvpv_dup(aTHX_ dstr, sstr, param);
d2d73c3e 10958 CvSTASH(dstr) = hv_dup(CvSTASH(sstr), param); /* NOTE: not refcounted */
1d7c1841 10959 CvSTART(dstr) = CvSTART(sstr);
b34c0dd4 10960 OP_REFCNT_LOCK;
1d7c1841 10961 CvROOT(dstr) = OpREFCNT_inc(CvROOT(sstr));
b34c0dd4 10962 OP_REFCNT_UNLOCK;
1d7c1841
GS
10963 CvXSUB(dstr) = CvXSUB(sstr);
10964 CvXSUBANY(dstr) = CvXSUBANY(sstr);
01485f8b
DM
10965 if (CvCONST(sstr)) {
10966 CvXSUBANY(dstr).any_ptr = GvUNIQUE(CvGV(sstr)) ?
10967 SvREFCNT_inc(CvXSUBANY(sstr).any_ptr) :
10968 sv_dup_inc(CvXSUBANY(sstr).any_ptr, param);
10969 }
b23f1a86
DM
10970 /* don't dup if copying back - CvGV isn't refcounted, so the
10971 * duped GV may never be freed. A bit of a hack! DAPM */
10972 CvGV(dstr) = (param->flags & CLONEf_JOIN_IN) ?
10973 Nullgv : gv_dup(CvGV(sstr), param) ;
d2d73c3e
AB
10974 if (param->flags & CLONEf_COPY_STACKS) {
10975 CvDEPTH(dstr) = CvDEPTH(sstr);
10976 } else {
10977 CvDEPTH(dstr) = 0;
10978 }
dd2155a4 10979 PAD_DUP(CvPADLIST(dstr), CvPADLIST(sstr), param);
7dafbf52
DM
10980 CvOUTSIDE_SEQ(dstr) = CvOUTSIDE_SEQ(sstr);
10981 CvOUTSIDE(dstr) =
10982 CvWEAKOUTSIDE(sstr)
10983 ? cv_dup( CvOUTSIDE(sstr), param)
10984 : cv_dup_inc(CvOUTSIDE(sstr), param);
1d7c1841 10985 CvFLAGS(dstr) = CvFLAGS(sstr);
54356c7d 10986 CvFILE(dstr) = CvXSUB(sstr) ? CvFILE(sstr) : SAVEPV(CvFILE(sstr));
1d7c1841
GS
10987 break;
10988 default:
c803eecc 10989 Perl_croak(aTHX_ "Bizarre SvTYPE [%" IVdf "]", (IV)SvTYPE(sstr));
1d7c1841
GS
10990 break;
10991 }
10992
10993 if (SvOBJECT(dstr) && SvTYPE(dstr) != SVt_PVIO)
10994 ++PL_sv_objcount;
10995
10996 return dstr;
d2d73c3e 10997 }
1d7c1841 10998
645c22ef
DM
10999/* duplicate a context */
11000
1d7c1841 11001PERL_CONTEXT *
a8fc9800 11002Perl_cx_dup(pTHX_ PERL_CONTEXT *cxs, I32 ix, I32 max, CLONE_PARAMS* param)
1d7c1841
GS
11003{
11004 PERL_CONTEXT *ncxs;
11005
11006 if (!cxs)
11007 return (PERL_CONTEXT*)NULL;
11008
11009 /* look for it in the table first */
11010 ncxs = (PERL_CONTEXT*)ptr_table_fetch(PL_ptr_table, cxs);
11011 if (ncxs)
11012 return ncxs;
11013
11014 /* create anew and remember what it is */
11015 Newz(56, ncxs, max + 1, PERL_CONTEXT);
11016 ptr_table_store(PL_ptr_table, cxs, ncxs);
11017
11018 while (ix >= 0) {
11019 PERL_CONTEXT *cx = &cxs[ix];
11020 PERL_CONTEXT *ncx = &ncxs[ix];
11021 ncx->cx_type = cx->cx_type;
11022 if (CxTYPE(cx) == CXt_SUBST) {
11023 Perl_croak(aTHX_ "Cloning substitution context is unimplemented");
11024 }
11025 else {
11026 ncx->blk_oldsp = cx->blk_oldsp;
11027 ncx->blk_oldcop = cx->blk_oldcop;
1d7c1841
GS
11028 ncx->blk_oldmarksp = cx->blk_oldmarksp;
11029 ncx->blk_oldscopesp = cx->blk_oldscopesp;
11030 ncx->blk_oldpm = cx->blk_oldpm;
11031 ncx->blk_gimme = cx->blk_gimme;
11032 switch (CxTYPE(cx)) {
11033 case CXt_SUB:
11034 ncx->blk_sub.cv = (cx->blk_sub.olddepth == 0
d2d73c3e
AB
11035 ? cv_dup_inc(cx->blk_sub.cv, param)
11036 : cv_dup(cx->blk_sub.cv,param));
1d7c1841 11037 ncx->blk_sub.argarray = (cx->blk_sub.hasargs
d2d73c3e 11038 ? av_dup_inc(cx->blk_sub.argarray, param)
1d7c1841 11039 : Nullav);
d2d73c3e 11040 ncx->blk_sub.savearray = av_dup_inc(cx->blk_sub.savearray, param);
1d7c1841
GS
11041 ncx->blk_sub.olddepth = cx->blk_sub.olddepth;
11042 ncx->blk_sub.hasargs = cx->blk_sub.hasargs;
11043 ncx->blk_sub.lval = cx->blk_sub.lval;
f39bc417 11044 ncx->blk_sub.retop = cx->blk_sub.retop;
1d7c1841
GS
11045 break;
11046 case CXt_EVAL:
11047 ncx->blk_eval.old_in_eval = cx->blk_eval.old_in_eval;
11048 ncx->blk_eval.old_op_type = cx->blk_eval.old_op_type;
b47cad08 11049 ncx->blk_eval.old_namesv = sv_dup_inc(cx->blk_eval.old_namesv, param);
1d7c1841 11050 ncx->blk_eval.old_eval_root = cx->blk_eval.old_eval_root;
d2d73c3e 11051 ncx->blk_eval.cur_text = sv_dup(cx->blk_eval.cur_text, param);
f39bc417 11052 ncx->blk_eval.retop = cx->blk_eval.retop;
1d7c1841
GS
11053 break;
11054 case CXt_LOOP:
11055 ncx->blk_loop.label = cx->blk_loop.label;
11056 ncx->blk_loop.resetsp = cx->blk_loop.resetsp;
11057 ncx->blk_loop.redo_op = cx->blk_loop.redo_op;
11058 ncx->blk_loop.next_op = cx->blk_loop.next_op;
11059 ncx->blk_loop.last_op = cx->blk_loop.last_op;
11060 ncx->blk_loop.iterdata = (CxPADLOOP(cx)
11061 ? cx->blk_loop.iterdata
d2d73c3e 11062 : gv_dup((GV*)cx->blk_loop.iterdata, param));
f3548bdc
DM
11063 ncx->blk_loop.oldcomppad
11064 = (PAD*)ptr_table_fetch(PL_ptr_table,
11065 cx->blk_loop.oldcomppad);
d2d73c3e
AB
11066 ncx->blk_loop.itersave = sv_dup_inc(cx->blk_loop.itersave, param);
11067 ncx->blk_loop.iterlval = sv_dup_inc(cx->blk_loop.iterlval, param);
11068 ncx->blk_loop.iterary = av_dup_inc(cx->blk_loop.iterary, param);
1d7c1841
GS
11069 ncx->blk_loop.iterix = cx->blk_loop.iterix;
11070 ncx->blk_loop.itermax = cx->blk_loop.itermax;
11071 break;
11072 case CXt_FORMAT:
d2d73c3e
AB
11073 ncx->blk_sub.cv = cv_dup(cx->blk_sub.cv, param);
11074 ncx->blk_sub.gv = gv_dup(cx->blk_sub.gv, param);
11075 ncx->blk_sub.dfoutgv = gv_dup_inc(cx->blk_sub.dfoutgv, param);
1d7c1841 11076 ncx->blk_sub.hasargs = cx->blk_sub.hasargs;
f39bc417 11077 ncx->blk_sub.retop = cx->blk_sub.retop;
1d7c1841
GS
11078 break;
11079 case CXt_BLOCK:
11080 case CXt_NULL:
11081 break;
11082 }
11083 }
11084 --ix;
11085 }
11086 return ncxs;
11087}
11088
645c22ef
DM
11089/* duplicate a stack info structure */
11090
1d7c1841 11091PERL_SI *
a8fc9800 11092Perl_si_dup(pTHX_ PERL_SI *si, CLONE_PARAMS* param)
1d7c1841
GS
11093{
11094 PERL_SI *nsi;
11095
11096 if (!si)
11097 return (PERL_SI*)NULL;
11098
11099 /* look for it in the table first */
11100 nsi = (PERL_SI*)ptr_table_fetch(PL_ptr_table, si);
11101 if (nsi)
11102 return nsi;
11103
11104 /* create anew and remember what it is */
11105 Newz(56, nsi, 1, PERL_SI);
11106 ptr_table_store(PL_ptr_table, si, nsi);
11107
d2d73c3e 11108 nsi->si_stack = av_dup_inc(si->si_stack, param);
1d7c1841
GS
11109 nsi->si_cxix = si->si_cxix;
11110 nsi->si_cxmax = si->si_cxmax;
d2d73c3e 11111 nsi->si_cxstack = cx_dup(si->si_cxstack, si->si_cxix, si->si_cxmax, param);
1d7c1841 11112 nsi->si_type = si->si_type;
d2d73c3e
AB
11113 nsi->si_prev = si_dup(si->si_prev, param);
11114 nsi->si_next = si_dup(si->si_next, param);
1d7c1841
GS
11115 nsi->si_markoff = si->si_markoff;
11116
11117 return nsi;
11118}
11119
11120#define POPINT(ss,ix) ((ss)[--(ix)].any_i32)
11121#define TOPINT(ss,ix) ((ss)[ix].any_i32)
11122#define POPLONG(ss,ix) ((ss)[--(ix)].any_long)
11123#define TOPLONG(ss,ix) ((ss)[ix].any_long)
11124#define POPIV(ss,ix) ((ss)[--(ix)].any_iv)
11125#define TOPIV(ss,ix) ((ss)[ix].any_iv)
38d8b13e
HS
11126#define POPBOOL(ss,ix) ((ss)[--(ix)].any_bool)
11127#define TOPBOOL(ss,ix) ((ss)[ix].any_bool)
1d7c1841
GS
11128#define POPPTR(ss,ix) ((ss)[--(ix)].any_ptr)
11129#define TOPPTR(ss,ix) ((ss)[ix].any_ptr)
11130#define POPDPTR(ss,ix) ((ss)[--(ix)].any_dptr)
11131#define TOPDPTR(ss,ix) ((ss)[ix].any_dptr)
11132#define POPDXPTR(ss,ix) ((ss)[--(ix)].any_dxptr)
11133#define TOPDXPTR(ss,ix) ((ss)[ix].any_dxptr)
11134
11135/* XXXXX todo */
11136#define pv_dup_inc(p) SAVEPV(p)
11137#define pv_dup(p) SAVEPV(p)
11138#define svp_dup_inc(p,pp) any_dup(p,pp)
11139
645c22ef
DM
11140/* map any object to the new equivent - either something in the
11141 * ptr table, or something in the interpreter structure
11142 */
11143
1d7c1841
GS
11144void *
11145Perl_any_dup(pTHX_ void *v, PerlInterpreter *proto_perl)
11146{
11147 void *ret;
11148
11149 if (!v)
11150 return (void*)NULL;
11151
11152 /* look for it in the table first */
11153 ret = ptr_table_fetch(PL_ptr_table, v);
11154 if (ret)
11155 return ret;
11156
11157 /* see if it is part of the interpreter structure */
11158 if (v >= (void*)proto_perl && v < (void*)(proto_perl+1))
acfe0abc 11159 ret = (void*)(((char*)aTHX) + (((char*)v) - (char*)proto_perl));
05ec9bb3 11160 else {
1d7c1841 11161 ret = v;
05ec9bb3 11162 }
1d7c1841
GS
11163
11164 return ret;
11165}
11166
645c22ef
DM
11167/* duplicate the save stack */
11168
1d7c1841 11169ANY *
a8fc9800 11170Perl_ss_dup(pTHX_ PerlInterpreter *proto_perl, CLONE_PARAMS* param)
1d7c1841
GS
11171{
11172 ANY *ss = proto_perl->Tsavestack;
11173 I32 ix = proto_perl->Tsavestack_ix;
11174 I32 max = proto_perl->Tsavestack_max;
11175 ANY *nss;
11176 SV *sv;
11177 GV *gv;
11178 AV *av;
11179 HV *hv;
11180 void* ptr;
11181 int intval;
11182 long longval;
11183 GP *gp;
11184 IV iv;
11185 I32 i;
c4e33207 11186 char *c = NULL;
1d7c1841 11187 void (*dptr) (void*);
acfe0abc 11188 void (*dxptr) (pTHX_ void*);
e977893f 11189 OP *o;
1d7c1841
GS
11190
11191 Newz(54, nss, max, ANY);
11192
11193 while (ix > 0) {
11194 i = POPINT(ss,ix);
11195 TOPINT(nss,ix) = i;
11196 switch (i) {
11197 case SAVEt_ITEM: /* normal string */
11198 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11199 TOPPTR(nss,ix) = sv_dup_inc(sv, param);
1d7c1841 11200 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11201 TOPPTR(nss,ix) = sv_dup_inc(sv, param);
1d7c1841
GS
11202 break;
11203 case SAVEt_SV: /* scalar reference */
11204 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11205 TOPPTR(nss,ix) = sv_dup_inc(sv, param);
1d7c1841 11206 gv = (GV*)POPPTR(ss,ix);
d2d73c3e 11207 TOPPTR(nss,ix) = gv_dup_inc(gv, param);
1d7c1841 11208 break;
f4dd75d9
GS
11209 case SAVEt_GENERIC_PVREF: /* generic char* */
11210 c = (char*)POPPTR(ss,ix);
11211 TOPPTR(nss,ix) = pv_dup(c);
11212 ptr = POPPTR(ss,ix);
11213 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11214 break;
05ec9bb3
NIS
11215 case SAVEt_SHARED_PVREF: /* char* in shared space */
11216 c = (char*)POPPTR(ss,ix);
11217 TOPPTR(nss,ix) = savesharedpv(c);
11218 ptr = POPPTR(ss,ix);
11219 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11220 break;
1d7c1841
GS
11221 case SAVEt_GENERIC_SVREF: /* generic sv */
11222 case SAVEt_SVREF: /* scalar reference */
11223 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11224 TOPPTR(nss,ix) = sv_dup_inc(sv, param);
1d7c1841
GS
11225 ptr = POPPTR(ss,ix);
11226 TOPPTR(nss,ix) = svp_dup_inc((SV**)ptr, proto_perl);/* XXXXX */
11227 break;
11228 case SAVEt_AV: /* array reference */
11229 av = (AV*)POPPTR(ss,ix);
d2d73c3e 11230 TOPPTR(nss,ix) = av_dup_inc(av, param);
1d7c1841 11231 gv = (GV*)POPPTR(ss,ix);
d2d73c3e 11232 TOPPTR(nss,ix) = gv_dup(gv, param);
1d7c1841
GS
11233 break;
11234 case SAVEt_HV: /* hash reference */
11235 hv = (HV*)POPPTR(ss,ix);
d2d73c3e 11236 TOPPTR(nss,ix) = hv_dup_inc(hv, param);
1d7c1841 11237 gv = (GV*)POPPTR(ss,ix);
d2d73c3e 11238 TOPPTR(nss,ix) = gv_dup(gv, param);
1d7c1841
GS
11239 break;
11240 case SAVEt_INT: /* int reference */
11241 ptr = POPPTR(ss,ix);
11242 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11243 intval = (int)POPINT(ss,ix);
11244 TOPINT(nss,ix) = intval;
11245 break;
11246 case SAVEt_LONG: /* long reference */
11247 ptr = POPPTR(ss,ix);
11248 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11249 longval = (long)POPLONG(ss,ix);
11250 TOPLONG(nss,ix) = longval;
11251 break;
11252 case SAVEt_I32: /* I32 reference */
11253 case SAVEt_I16: /* I16 reference */
11254 case SAVEt_I8: /* I8 reference */
11255 ptr = POPPTR(ss,ix);
11256 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11257 i = POPINT(ss,ix);
11258 TOPINT(nss,ix) = i;
11259 break;
11260 case SAVEt_IV: /* IV reference */
11261 ptr = POPPTR(ss,ix);
11262 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11263 iv = POPIV(ss,ix);
11264 TOPIV(nss,ix) = iv;
11265 break;
11266 case SAVEt_SPTR: /* SV* reference */
11267 ptr = POPPTR(ss,ix);
11268 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11269 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11270 TOPPTR(nss,ix) = sv_dup(sv, param);
1d7c1841
GS
11271 break;
11272 case SAVEt_VPTR: /* random* reference */
11273 ptr = POPPTR(ss,ix);
11274 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11275 ptr = POPPTR(ss,ix);
11276 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11277 break;
11278 case SAVEt_PPTR: /* char* reference */
11279 ptr = POPPTR(ss,ix);
11280 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11281 c = (char*)POPPTR(ss,ix);
11282 TOPPTR(nss,ix) = pv_dup(c);
11283 break;
11284 case SAVEt_HPTR: /* HV* reference */
11285 ptr = POPPTR(ss,ix);
11286 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11287 hv = (HV*)POPPTR(ss,ix);
d2d73c3e 11288 TOPPTR(nss,ix) = hv_dup(hv, param);
1d7c1841
GS
11289 break;
11290 case SAVEt_APTR: /* AV* reference */
11291 ptr = POPPTR(ss,ix);
11292 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11293 av = (AV*)POPPTR(ss,ix);
d2d73c3e 11294 TOPPTR(nss,ix) = av_dup(av, param);
1d7c1841
GS
11295 break;
11296 case SAVEt_NSTAB:
11297 gv = (GV*)POPPTR(ss,ix);
d2d73c3e 11298 TOPPTR(nss,ix) = gv_dup(gv, param);
1d7c1841
GS
11299 break;
11300 case SAVEt_GP: /* scalar reference */
11301 gp = (GP*)POPPTR(ss,ix);
d2d73c3e 11302 TOPPTR(nss,ix) = gp = gp_dup(gp, param);
1d7c1841
GS
11303 (void)GpREFCNT_inc(gp);
11304 gv = (GV*)POPPTR(ss,ix);
2ed3c8fc 11305 TOPPTR(nss,ix) = gv_dup_inc(gv, param);
1d7c1841
GS
11306 c = (char*)POPPTR(ss,ix);
11307 TOPPTR(nss,ix) = pv_dup(c);
11308 iv = POPIV(ss,ix);
11309 TOPIV(nss,ix) = iv;
11310 iv = POPIV(ss,ix);
11311 TOPIV(nss,ix) = iv;
11312 break;
11313 case SAVEt_FREESV:
26d9b02f 11314 case SAVEt_MORTALIZESV:
1d7c1841 11315 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11316 TOPPTR(nss,ix) = sv_dup_inc(sv, param);
1d7c1841
GS
11317 break;
11318 case SAVEt_FREEOP:
11319 ptr = POPPTR(ss,ix);
11320 if (ptr && (((OP*)ptr)->op_private & OPpREFCOUNTED)) {
11321 /* these are assumed to be refcounted properly */
11322 switch (((OP*)ptr)->op_type) {
11323 case OP_LEAVESUB:
11324 case OP_LEAVESUBLV:
11325 case OP_LEAVEEVAL:
11326 case OP_LEAVE:
11327 case OP_SCOPE:
11328 case OP_LEAVEWRITE:
e977893f
GS
11329 TOPPTR(nss,ix) = ptr;
11330 o = (OP*)ptr;
11331 OpREFCNT_inc(o);
1d7c1841
GS
11332 break;
11333 default:
11334 TOPPTR(nss,ix) = Nullop;
11335 break;
11336 }
11337 }
11338 else
11339 TOPPTR(nss,ix) = Nullop;
11340 break;
11341 case SAVEt_FREEPV:
11342 c = (char*)POPPTR(ss,ix);
11343 TOPPTR(nss,ix) = pv_dup_inc(c);
11344 break;
11345 case SAVEt_CLEARSV:
11346 longval = POPLONG(ss,ix);
11347 TOPLONG(nss,ix) = longval;
11348 break;
11349 case SAVEt_DELETE:
11350 hv = (HV*)POPPTR(ss,ix);
d2d73c3e 11351 TOPPTR(nss,ix) = hv_dup_inc(hv, param);
1d7c1841
GS
11352 c = (char*)POPPTR(ss,ix);
11353 TOPPTR(nss,ix) = pv_dup_inc(c);
11354 i = POPINT(ss,ix);
11355 TOPINT(nss,ix) = i;
11356 break;
11357 case SAVEt_DESTRUCTOR:
11358 ptr = POPPTR(ss,ix);
11359 TOPPTR(nss,ix) = any_dup(ptr, proto_perl); /* XXX quite arbitrary */
11360 dptr = POPDPTR(ss,ix);
ef75a179 11361 TOPDPTR(nss,ix) = (void (*)(void*))any_dup((void *)dptr, proto_perl);
1d7c1841
GS
11362 break;
11363 case SAVEt_DESTRUCTOR_X:
11364 ptr = POPPTR(ss,ix);
11365 TOPPTR(nss,ix) = any_dup(ptr, proto_perl); /* XXX quite arbitrary */
11366 dxptr = POPDXPTR(ss,ix);
acfe0abc 11367 TOPDXPTR(nss,ix) = (void (*)(pTHX_ void*))any_dup((void *)dxptr, proto_perl);
1d7c1841
GS
11368 break;
11369 case SAVEt_REGCONTEXT:
11370 case SAVEt_ALLOC:
11371 i = POPINT(ss,ix);
11372 TOPINT(nss,ix) = i;
11373 ix -= i;
11374 break;
11375 case SAVEt_STACK_POS: /* Position on Perl stack */
11376 i = POPINT(ss,ix);
11377 TOPINT(nss,ix) = i;
11378 break;
11379 case SAVEt_AELEM: /* array element */
11380 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11381 TOPPTR(nss,ix) = sv_dup_inc(sv, param);
1d7c1841
GS
11382 i = POPINT(ss,ix);
11383 TOPINT(nss,ix) = i;
11384 av = (AV*)POPPTR(ss,ix);
d2d73c3e 11385 TOPPTR(nss,ix) = av_dup_inc(av, param);
1d7c1841
GS
11386 break;
11387 case SAVEt_HELEM: /* hash element */
11388 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11389 TOPPTR(nss,ix) = sv_dup_inc(sv, param);
1d7c1841 11390 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11391 TOPPTR(nss,ix) = sv_dup_inc(sv, param);
1d7c1841 11392 hv = (HV*)POPPTR(ss,ix);
d2d73c3e 11393 TOPPTR(nss,ix) = hv_dup_inc(hv, param);
1d7c1841
GS
11394 break;
11395 case SAVEt_OP:
11396 ptr = POPPTR(ss,ix);
11397 TOPPTR(nss,ix) = ptr;
11398 break;
11399 case SAVEt_HINTS:
11400 i = POPINT(ss,ix);
11401 TOPINT(nss,ix) = i;
11402 break;
c4410b1b
GS
11403 case SAVEt_COMPPAD:
11404 av = (AV*)POPPTR(ss,ix);
58ed4fbe 11405 TOPPTR(nss,ix) = av_dup(av, param);
c4410b1b 11406 break;
c3564e5c
GS
11407 case SAVEt_PADSV:
11408 longval = (long)POPLONG(ss,ix);
11409 TOPLONG(nss,ix) = longval;
11410 ptr = POPPTR(ss,ix);
11411 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
11412 sv = (SV*)POPPTR(ss,ix);
d2d73c3e 11413 TOPPTR(nss,ix) = sv_dup(sv, param);
c3564e5c 11414 break;
a1bb4754 11415 case SAVEt_BOOL:
38d8b13e 11416 ptr = POPPTR(ss,ix);
b9609c01 11417 TOPPTR(nss,ix) = any_dup(ptr, proto_perl);
38d8b13e 11418 longval = (long)POPBOOL(ss,ix);
b9609c01 11419 TOPBOOL(nss,ix) = (bool)longval;
a1bb4754 11420 break;
8bd2680e
MHM
11421 case SAVEt_SET_SVFLAGS:
11422 i = POPINT(ss,ix);
11423 TOPINT(nss,ix) = i;
11424 i = POPINT(ss,ix);
11425 TOPINT(nss,ix) = i;
11426 sv = (SV*)POPPTR(ss,ix);
11427 TOPPTR(nss,ix) = sv_dup(sv, param);
11428 break;
1d7c1841
GS
11429 default:
11430 Perl_croak(aTHX_ "panic: ss_dup inconsistency");
11431 }
11432 }
11433
11434 return nss;
11435}
11436
645c22ef
DM
11437/*
11438=for apidoc perl_clone
11439
11440Create and return a new interpreter by cloning the current one.
11441
4be49ee6 11442perl_clone takes these flags as parameters:
6a78b4db 11443
7a5fa8a2
NIS
11444CLONEf_COPY_STACKS - is used to, well, copy the stacks also,
11445without it we only clone the data and zero the stacks,
11446with it we copy the stacks and the new perl interpreter is
11447ready to run at the exact same point as the previous one.
11448The pseudo-fork code uses COPY_STACKS while the
6a78b4db
AB
11449threads->new doesn't.
11450
11451CLONEf_KEEP_PTR_TABLE
7a5fa8a2
NIS
11452perl_clone keeps a ptr_table with the pointer of the old
11453variable as a key and the new variable as a value,
11454this allows it to check if something has been cloned and not
11455clone it again but rather just use the value and increase the
11456refcount. If KEEP_PTR_TABLE is not set then perl_clone will kill
11457the ptr_table using the function
11458C<ptr_table_free(PL_ptr_table); PL_ptr_table = NULL;>,
11459reason to keep it around is if you want to dup some of your own
11460variable who are outside the graph perl scans, example of this
6a78b4db
AB
11461code is in threads.xs create
11462
11463CLONEf_CLONE_HOST
7a5fa8a2
NIS
11464This is a win32 thing, it is ignored on unix, it tells perls
11465win32host code (which is c++) to clone itself, this is needed on
11466win32 if you want to run two threads at the same time,
11467if you just want to do some stuff in a separate perl interpreter
11468and then throw it away and return to the original one,
6a78b4db
AB
11469you don't need to do anything.
11470
645c22ef
DM
11471=cut
11472*/
11473
11474/* XXX the above needs expanding by someone who actually understands it ! */
3fc56081
NK
11475EXTERN_C PerlInterpreter *
11476perl_clone_host(PerlInterpreter* proto_perl, UV flags);
645c22ef 11477
1d7c1841
GS
11478PerlInterpreter *
11479perl_clone(PerlInterpreter *proto_perl, UV flags)
11480{
1d7c1841 11481#ifdef PERL_IMPLICIT_SYS
c43294b8
AB
11482
11483 /* perlhost.h so we need to call into it
11484 to clone the host, CPerlHost should have a c interface, sky */
11485
11486 if (flags & CLONEf_CLONE_HOST) {
11487 return perl_clone_host(proto_perl,flags);
11488 }
11489 return perl_clone_using(proto_perl, flags,
1d7c1841
GS
11490 proto_perl->IMem,
11491 proto_perl->IMemShared,
11492 proto_perl->IMemParse,
11493 proto_perl->IEnv,
11494 proto_perl->IStdIO,
11495 proto_perl->ILIO,
11496 proto_perl->IDir,
11497 proto_perl->ISock,
11498 proto_perl->IProc);
11499}
11500
11501PerlInterpreter *
11502perl_clone_using(PerlInterpreter *proto_perl, UV flags,
11503 struct IPerlMem* ipM, struct IPerlMem* ipMS,
11504 struct IPerlMem* ipMP, struct IPerlEnv* ipE,
11505 struct IPerlStdIO* ipStd, struct IPerlLIO* ipLIO,
11506 struct IPerlDir* ipD, struct IPerlSock* ipS,
11507 struct IPerlProc* ipP)
11508{
11509 /* XXX many of the string copies here can be optimized if they're
11510 * constants; they need to be allocated as common memory and just
11511 * their pointers copied. */
11512
11513 IV i;
64aa0685
GS
11514 CLONE_PARAMS clone_params;
11515 CLONE_PARAMS* param = &clone_params;
d2d73c3e 11516
1d7c1841 11517 PerlInterpreter *my_perl = (PerlInterpreter*)(*ipM->pMalloc)(ipM, sizeof(PerlInterpreter));
ba869deb 11518 PERL_SET_THX(my_perl);
1d7c1841 11519
acfe0abc 11520# ifdef DEBUGGING
a4530404 11521 Poison(my_perl, 1, PerlInterpreter);
1d7c1841
GS
11522 PL_markstack = 0;
11523 PL_scopestack = 0;
11524 PL_savestack = 0;
22f7c9c9
JH
11525 PL_savestack_ix = 0;
11526 PL_savestack_max = -1;
66fe0623 11527 PL_sig_pending = 0;
25596c82 11528 Zero(&PL_debug_pad, 1, struct perl_debug_pad);
acfe0abc 11529# else /* !DEBUGGING */
1d7c1841 11530 Zero(my_perl, 1, PerlInterpreter);
acfe0abc 11531# endif /* DEBUGGING */
1d7c1841
GS
11532
11533 /* host pointers */
11534 PL_Mem = ipM;
11535 PL_MemShared = ipMS;
11536 PL_MemParse = ipMP;
11537 PL_Env = ipE;
11538 PL_StdIO = ipStd;
11539 PL_LIO = ipLIO;
11540 PL_Dir = ipD;
11541 PL_Sock = ipS;
11542 PL_Proc = ipP;
1d7c1841
GS
11543#else /* !PERL_IMPLICIT_SYS */
11544 IV i;
64aa0685
GS
11545 CLONE_PARAMS clone_params;
11546 CLONE_PARAMS* param = &clone_params;
1d7c1841 11547 PerlInterpreter *my_perl = (PerlInterpreter*)PerlMem_malloc(sizeof(PerlInterpreter));
ba869deb 11548 PERL_SET_THX(my_perl);
1d7c1841 11549
d2d73c3e
AB
11550
11551
1d7c1841 11552# ifdef DEBUGGING
a4530404 11553 Poison(my_perl, 1, PerlInterpreter);
1d7c1841
GS
11554 PL_markstack = 0;
11555 PL_scopestack = 0;
11556 PL_savestack = 0;
22f7c9c9
JH
11557 PL_savestack_ix = 0;
11558 PL_savestack_max = -1;
66fe0623 11559 PL_sig_pending = 0;
25596c82 11560 Zero(&PL_debug_pad, 1, struct perl_debug_pad);
1d7c1841
GS
11561# else /* !DEBUGGING */
11562 Zero(my_perl, 1, PerlInterpreter);
11563# endif /* DEBUGGING */
11564#endif /* PERL_IMPLICIT_SYS */
83236556 11565 param->flags = flags;
59b40662 11566 param->proto_perl = proto_perl;
1d7c1841
GS
11567
11568 /* arena roots */
11569 PL_xiv_arenaroot = NULL;
11570 PL_xiv_root = NULL;
612f20c3 11571 PL_xnv_arenaroot = NULL;
1d7c1841 11572 PL_xnv_root = NULL;
612f20c3 11573 PL_xrv_arenaroot = NULL;
1d7c1841 11574 PL_xrv_root = NULL;
612f20c3 11575 PL_xpv_arenaroot = NULL;
1d7c1841 11576 PL_xpv_root = NULL;
612f20c3 11577 PL_xpviv_arenaroot = NULL;
1d7c1841 11578 PL_xpviv_root = NULL;
612f20c3 11579 PL_xpvnv_arenaroot = NULL;
1d7c1841 11580 PL_xpvnv_root = NULL;
612f20c3 11581 PL_xpvcv_arenaroot = NULL;
1d7c1841 11582 PL_xpvcv_root = NULL;
612f20c3 11583 PL_xpvav_arenaroot = NULL;
1d7c1841 11584 PL_xpvav_root = NULL;
612f20c3 11585 PL_xpvhv_arenaroot = NULL;
1d7c1841 11586 PL_xpvhv_root = NULL;
612f20c3 11587 PL_xpvmg_arenaroot = NULL;
1d7c1841 11588 PL_xpvmg_root = NULL;
612f20c3 11589 PL_xpvlv_arenaroot = NULL;
1d7c1841 11590 PL_xpvlv_root = NULL;
612f20c3 11591 PL_xpvbm_arenaroot = NULL;
1d7c1841 11592 PL_xpvbm_root = NULL;
612f20c3 11593 PL_he_arenaroot = NULL;
1d7c1841
GS
11594 PL_he_root = NULL;
11595 PL_nice_chunk = NULL;
11596 PL_nice_chunk_size = 0;
11597 PL_sv_count = 0;
11598 PL_sv_objcount = 0;
11599 PL_sv_root = Nullsv;
11600 PL_sv_arenaroot = Nullsv;
11601
11602 PL_debug = proto_perl->Idebug;
11603
e5dd39fc 11604#ifdef USE_REENTRANT_API
68853529
SB
11605 /* XXX: things like -Dm will segfault here in perlio, but doing
11606 * PERL_SET_CONTEXT(proto_perl);
11607 * breaks too many other things
11608 */
59bd0823 11609 Perl_reentrant_init(aTHX);
e5dd39fc
AB
11610#endif
11611
1d7c1841
GS
11612 /* create SV map for pointer relocation */
11613 PL_ptr_table = ptr_table_new();
11614
11615 /* initialize these special pointers as early as possible */
11616 SvANY(&PL_sv_undef) = NULL;
11617 SvREFCNT(&PL_sv_undef) = (~(U32)0)/2;
11618 SvFLAGS(&PL_sv_undef) = SVf_READONLY|SVt_NULL;
11619 ptr_table_store(PL_ptr_table, &proto_perl->Isv_undef, &PL_sv_undef);
11620
1d7c1841 11621 SvANY(&PL_sv_no) = new_XPVNV();
1d7c1841 11622 SvREFCNT(&PL_sv_no) = (~(U32)0)/2;
0309f36e
NC
11623 SvFLAGS(&PL_sv_no) = SVp_IOK|SVf_IOK|SVp_NOK|SVf_NOK
11624 |SVp_POK|SVf_POK|SVf_READONLY|SVt_PVNV;
1d7c1841
GS
11625 SvPVX(&PL_sv_no) = SAVEPVN(PL_No, 0);
11626 SvCUR(&PL_sv_no) = 0;
11627 SvLEN(&PL_sv_no) = 1;
0309f36e 11628 SvIVX(&PL_sv_no) = 0;
1d7c1841
GS
11629 SvNVX(&PL_sv_no) = 0;
11630 ptr_table_store(PL_ptr_table, &proto_perl->Isv_no, &PL_sv_no);
11631
1d7c1841 11632 SvANY(&PL_sv_yes) = new_XPVNV();
1d7c1841 11633 SvREFCNT(&PL_sv_yes) = (~(U32)0)/2;
0309f36e
NC
11634 SvFLAGS(&PL_sv_yes) = SVp_IOK|SVf_IOK|SVp_NOK|SVf_NOK
11635 |SVp_POK|SVf_POK|SVf_READONLY|SVt_PVNV;
1d7c1841
GS
11636 SvPVX(&PL_sv_yes) = SAVEPVN(PL_Yes, 1);
11637 SvCUR(&PL_sv_yes) = 1;
11638 SvLEN(&PL_sv_yes) = 2;
0309f36e 11639 SvIVX(&PL_sv_yes) = 1;
1d7c1841
GS
11640 SvNVX(&PL_sv_yes) = 1;
11641 ptr_table_store(PL_ptr_table, &proto_perl->Isv_yes, &PL_sv_yes);
11642
05ec9bb3 11643 /* create (a non-shared!) shared string table */
1d7c1841
GS
11644 PL_strtab = newHV();
11645 HvSHAREKEYS_off(PL_strtab);
11646 hv_ksplit(PL_strtab, 512);
11647 ptr_table_store(PL_ptr_table, proto_perl->Istrtab, PL_strtab);
11648
05ec9bb3
NIS
11649 PL_compiling = proto_perl->Icompiling;
11650
11651 /* These two PVs will be free'd special way so must set them same way op.c does */
11652 PL_compiling.cop_stashpv = savesharedpv(PL_compiling.cop_stashpv);
11653 ptr_table_store(PL_ptr_table, proto_perl->Icompiling.cop_stashpv, PL_compiling.cop_stashpv);
11654
11655 PL_compiling.cop_file = savesharedpv(PL_compiling.cop_file);
11656 ptr_table_store(PL_ptr_table, proto_perl->Icompiling.cop_file, PL_compiling.cop_file);
11657
1d7c1841
GS
11658 ptr_table_store(PL_ptr_table, &proto_perl->Icompiling, &PL_compiling);
11659 if (!specialWARN(PL_compiling.cop_warnings))
d2d73c3e 11660 PL_compiling.cop_warnings = sv_dup_inc(PL_compiling.cop_warnings, param);
ac27b0f5 11661 if (!specialCopIO(PL_compiling.cop_io))
d2d73c3e 11662 PL_compiling.cop_io = sv_dup_inc(PL_compiling.cop_io, param);
1d7c1841
GS
11663 PL_curcop = (COP*)any_dup(proto_perl->Tcurcop, proto_perl);
11664
11665 /* pseudo environmental stuff */
11666 PL_origargc = proto_perl->Iorigargc;
e2975953 11667 PL_origargv = proto_perl->Iorigargv;
d2d73c3e 11668
d2d73c3e
AB
11669 param->stashes = newAV(); /* Setup array of objects to call clone on */
11670
a1ea730d 11671#ifdef PERLIO_LAYERS
3a1ee7e8
NIS
11672 /* Clone PerlIO tables as soon as we can handle general xx_dup() */
11673 PerlIO_clone(aTHX_ proto_perl, param);
a1ea730d 11674#endif
d2d73c3e
AB
11675
11676 PL_envgv = gv_dup(proto_perl->Ienvgv, param);
11677 PL_incgv = gv_dup(proto_perl->Iincgv, param);
11678 PL_hintgv = gv_dup(proto_perl->Ihintgv, param);
1d7c1841 11679 PL_origfilename = SAVEPV(proto_perl->Iorigfilename);
d2d73c3e
AB
11680 PL_diehook = sv_dup_inc(proto_perl->Idiehook, param);
11681 PL_warnhook = sv_dup_inc(proto_perl->Iwarnhook, param);
1d7c1841
GS
11682
11683 /* switches */
11684 PL_minus_c = proto_perl->Iminus_c;
d2d73c3e 11685 PL_patchlevel = sv_dup_inc(proto_perl->Ipatchlevel, param);
1d7c1841
GS
11686 PL_localpatches = proto_perl->Ilocalpatches;
11687 PL_splitstr = proto_perl->Isplitstr;
11688 PL_preprocess = proto_perl->Ipreprocess;
11689 PL_minus_n = proto_perl->Iminus_n;
11690 PL_minus_p = proto_perl->Iminus_p;
11691 PL_minus_l = proto_perl->Iminus_l;
11692 PL_minus_a = proto_perl->Iminus_a;
11693 PL_minus_F = proto_perl->Iminus_F;
11694 PL_doswitches = proto_perl->Idoswitches;
11695 PL_dowarn = proto_perl->Idowarn;
11696 PL_doextract = proto_perl->Idoextract;
11697 PL_sawampersand = proto_perl->Isawampersand;
11698 PL_unsafe = proto_perl->Iunsafe;
11699 PL_inplace = SAVEPV(proto_perl->Iinplace);
d2d73c3e 11700 PL_e_script = sv_dup_inc(proto_perl->Ie_script, param);
1d7c1841
GS
11701 PL_perldb = proto_perl->Iperldb;
11702 PL_perl_destruct_level = proto_perl->Iperl_destruct_level;
1cbb0781 11703 PL_exit_flags = proto_perl->Iexit_flags;
1d7c1841
GS
11704
11705 /* magical thingies */
11706 /* XXX time(&PL_basetime) when asked for? */
11707 PL_basetime = proto_perl->Ibasetime;
d2d73c3e 11708 PL_formfeed = sv_dup(proto_perl->Iformfeed, param);
1d7c1841
GS
11709
11710 PL_maxsysfd = proto_perl->Imaxsysfd;
11711 PL_multiline = proto_perl->Imultiline;
11712 PL_statusvalue = proto_perl->Istatusvalue;
11713#ifdef VMS
11714 PL_statusvalue_vms = proto_perl->Istatusvalue_vms;
11715#endif
0a378802 11716 PL_encoding = sv_dup(proto_perl->Iencoding, param);
1d7c1841 11717
4a4c6fe3 11718 sv_setpvn(PERL_DEBUG_PAD(0), "", 0); /* For regex debugging. */
1f483ca1
JH
11719 sv_setpvn(PERL_DEBUG_PAD(1), "", 0); /* ext/re needs these */
11720 sv_setpvn(PERL_DEBUG_PAD(2), "", 0); /* even without DEBUGGING. */
4a4c6fe3 11721
d2f185dc
AMS
11722 /* Clone the regex array */
11723 PL_regex_padav = newAV();
11724 {
11725 I32 len = av_len((AV*)proto_perl->Iregex_padav);
11726 SV** regexen = AvARRAY((AV*)proto_perl->Iregex_padav);
0f95fc41
AB
11727 av_push(PL_regex_padav,
11728 sv_dup_inc(regexen[0],param));
11729 for(i = 1; i <= len; i++) {
11730 if(SvREPADTMP(regexen[i])) {
11731 av_push(PL_regex_padav, sv_dup_inc(regexen[i], param));
8cf8f3d1 11732 } else {
0f95fc41
AB
11733 av_push(PL_regex_padav,
11734 SvREFCNT_inc(
8cf8f3d1 11735 newSViv(PTR2IV(re_dup(INT2PTR(REGEXP *,
cbfa9890 11736 SvIVX(regexen[i])), param)))
0f95fc41
AB
11737 ));
11738 }
d2f185dc
AMS
11739 }
11740 }
11741 PL_regex_pad = AvARRAY(PL_regex_padav);
1fcf4c12 11742
1d7c1841 11743 /* shortcuts to various I/O objects */
d2d73c3e
AB
11744 PL_stdingv = gv_dup(proto_perl->Istdingv, param);
11745 PL_stderrgv = gv_dup(proto_perl->Istderrgv, param);
11746 PL_defgv = gv_dup(proto_perl->Idefgv, param);
11747 PL_argvgv = gv_dup(proto_perl->Iargvgv, param);
11748 PL_argvoutgv = gv_dup(proto_perl->Iargvoutgv, param);
11749 PL_argvout_stack = av_dup_inc(proto_perl->Iargvout_stack, param);
1d7c1841
GS
11750
11751 /* shortcuts to regexp stuff */
d2d73c3e 11752 PL_replgv = gv_dup(proto_perl->Ireplgv, param);
1d7c1841
GS
11753
11754 /* shortcuts to misc objects */
d2d73c3e 11755 PL_errgv = gv_dup(proto_perl->Ierrgv, param);
1d7c1841
GS
11756
11757 /* shortcuts to debugging objects */
d2d73c3e
AB
11758 PL_DBgv = gv_dup(proto_perl->IDBgv, param);
11759 PL_DBline = gv_dup(proto_perl->IDBline, param);
11760 PL_DBsub = gv_dup(proto_perl->IDBsub, param);
11761 PL_DBsingle = sv_dup(proto_perl->IDBsingle, param);
11762 PL_DBtrace = sv_dup(proto_perl->IDBtrace, param);
11763 PL_DBsignal = sv_dup(proto_perl->IDBsignal, param);
06492da6 11764 PL_DBassertion = sv_dup(proto_perl->IDBassertion, param);
d2d73c3e
AB
11765 PL_lineary = av_dup(proto_perl->Ilineary, param);
11766 PL_dbargs = av_dup(proto_perl->Idbargs, param);
1d7c1841
GS
11767
11768 /* symbol tables */
d2d73c3e
AB
11769 PL_defstash = hv_dup_inc(proto_perl->Tdefstash, param);
11770 PL_curstash = hv_dup(proto_perl->Tcurstash, param);
d2d73c3e
AB
11771 PL_debstash = hv_dup(proto_perl->Idebstash, param);
11772 PL_globalstash = hv_dup(proto_perl->Iglobalstash, param);
11773 PL_curstname = sv_dup_inc(proto_perl->Icurstname, param);
11774
11775 PL_beginav = av_dup_inc(proto_perl->Ibeginav, param);
ee1c5a4e 11776 PL_beginav_save = av_dup_inc(proto_perl->Ibeginav_save, param);
ece599bd 11777 PL_checkav_save = av_dup_inc(proto_perl->Icheckav_save, param);
d2d73c3e
AB
11778 PL_endav = av_dup_inc(proto_perl->Iendav, param);
11779 PL_checkav = av_dup_inc(proto_perl->Icheckav, param);
11780 PL_initav = av_dup_inc(proto_perl->Iinitav, param);
1d7c1841
GS
11781
11782 PL_sub_generation = proto_perl->Isub_generation;
11783
11784 /* funky return mechanisms */
11785 PL_forkprocess = proto_perl->Iforkprocess;
11786
11787 /* subprocess state */
d2d73c3e 11788 PL_fdpid = av_dup_inc(proto_perl->Ifdpid, param);
1d7c1841
GS
11789
11790 /* internal state */
11791 PL_tainting = proto_perl->Itainting;
7135f00b 11792 PL_taint_warn = proto_perl->Itaint_warn;
1d7c1841
GS
11793 PL_maxo = proto_perl->Imaxo;
11794 if (proto_perl->Iop_mask)
11795 PL_op_mask = SAVEPVN(proto_perl->Iop_mask, PL_maxo);
11796 else
11797 PL_op_mask = Nullch;
06492da6 11798 /* PL_asserting = proto_perl->Iasserting; */
1d7c1841
GS
11799
11800 /* current interpreter roots */
d2d73c3e 11801 PL_main_cv = cv_dup_inc(proto_perl->Imain_cv, param);
1d7c1841
GS
11802 PL_main_root = OpREFCNT_inc(proto_perl->Imain_root);
11803 PL_main_start = proto_perl->Imain_start;
e977893f 11804 PL_eval_root = proto_perl->Ieval_root;
1d7c1841
GS
11805 PL_eval_start = proto_perl->Ieval_start;
11806
11807 /* runtime control stuff */
11808 PL_curcopdb = (COP*)any_dup(proto_perl->Icurcopdb, proto_perl);
11809 PL_copline = proto_perl->Icopline;
11810
11811 PL_filemode = proto_perl->Ifilemode;
11812 PL_lastfd = proto_perl->Ilastfd;
11813 PL_oldname = proto_perl->Ioldname; /* XXX not quite right */
11814 PL_Argv = NULL;
11815 PL_Cmd = Nullch;
11816 PL_gensym = proto_perl->Igensym;
11817 PL_preambled = proto_perl->Ipreambled;
d2d73c3e 11818 PL_preambleav = av_dup_inc(proto_perl->Ipreambleav, param);
1d7c1841
GS
11819 PL_laststatval = proto_perl->Ilaststatval;
11820 PL_laststype = proto_perl->Ilaststype;
11821 PL_mess_sv = Nullsv;
11822
d2d73c3e 11823 PL_ors_sv = sv_dup_inc(proto_perl->Iors_sv, param);
1d7c1841
GS
11824 PL_ofmt = SAVEPV(proto_perl->Iofmt);
11825
11826 /* interpreter atexit processing */
11827 PL_exitlistlen = proto_perl->Iexitlistlen;
11828 if (PL_exitlistlen) {
11829 New(0, PL_exitlist, PL_exitlistlen, PerlExitListEntry);
11830 Copy(proto_perl->Iexitlist, PL_exitlist, PL_exitlistlen, PerlExitListEntry);
11831 }
11832 else
11833 PL_exitlist = (PerlExitListEntry*)NULL;
d2d73c3e 11834 PL_modglobal = hv_dup_inc(proto_perl->Imodglobal, param);
19e8ce8e
AB
11835 PL_custom_op_names = hv_dup_inc(proto_perl->Icustom_op_names,param);
11836 PL_custom_op_descs = hv_dup_inc(proto_perl->Icustom_op_descs,param);
1d7c1841
GS
11837
11838 PL_profiledata = NULL;
a8fc9800 11839 PL_rsfp = fp_dup(proto_perl->Irsfp, '<', param);
1d7c1841 11840 /* PL_rsfp_filters entries have fake IoDIRP() */
d2d73c3e 11841 PL_rsfp_filters = av_dup_inc(proto_perl->Irsfp_filters, param);
1d7c1841 11842
d2d73c3e 11843 PL_compcv = cv_dup(proto_perl->Icompcv, param);
dd2155a4
DM
11844
11845 PAD_CLONE_VARS(proto_perl, param);
1d7c1841
GS
11846
11847#ifdef HAVE_INTERP_INTERN
11848 sys_intern_dup(&proto_perl->Isys_intern, &PL_sys_intern);
11849#endif
11850
11851 /* more statics moved here */
11852 PL_generation = proto_perl->Igeneration;
d2d73c3e 11853 PL_DBcv = cv_dup(proto_perl->IDBcv, param);
1d7c1841
GS
11854
11855 PL_in_clean_objs = proto_perl->Iin_clean_objs;
11856 PL_in_clean_all = proto_perl->Iin_clean_all;
11857
11858 PL_uid = proto_perl->Iuid;
11859 PL_euid = proto_perl->Ieuid;
11860 PL_gid = proto_perl->Igid;
11861 PL_egid = proto_perl->Iegid;
11862 PL_nomemok = proto_perl->Inomemok;
11863 PL_an = proto_perl->Ian;
1d7c1841
GS
11864 PL_evalseq = proto_perl->Ievalseq;
11865 PL_origenviron = proto_perl->Iorigenviron; /* XXX not quite right */
11866 PL_origalen = proto_perl->Iorigalen;
11867 PL_pidstatus = newHV(); /* XXX flag for cloning? */
11868 PL_osname = SAVEPV(proto_perl->Iosname);
5c728af0 11869 PL_sh_path_compat = proto_perl->Ish_path_compat; /* XXX never deallocated */
1d7c1841
GS
11870 PL_sighandlerp = proto_perl->Isighandlerp;
11871
11872
11873 PL_runops = proto_perl->Irunops;
11874
11875 Copy(proto_perl->Itokenbuf, PL_tokenbuf, 256, char);
11876
11877#ifdef CSH
11878 PL_cshlen = proto_perl->Icshlen;
74f1b2b8 11879 PL_cshname = proto_perl->Icshname; /* XXX never deallocated */
1d7c1841
GS
11880#endif
11881
11882 PL_lex_state = proto_perl->Ilex_state;
11883 PL_lex_defer = proto_perl->Ilex_defer;
11884 PL_lex_expect = proto_perl->Ilex_expect;
11885 PL_lex_formbrack = proto_perl->Ilex_formbrack;
11886 PL_lex_dojoin = proto_perl->Ilex_dojoin;
11887 PL_lex_starts = proto_perl->Ilex_starts;
d2d73c3e
AB
11888 PL_lex_stuff = sv_dup_inc(proto_perl->Ilex_stuff, param);
11889 PL_lex_repl = sv_dup_inc(proto_perl->Ilex_repl, param);
1d7c1841
GS
11890 PL_lex_op = proto_perl->Ilex_op;
11891 PL_lex_inpat = proto_perl->Ilex_inpat;
11892 PL_lex_inwhat = proto_perl->Ilex_inwhat;
11893 PL_lex_brackets = proto_perl->Ilex_brackets;
11894 i = (PL_lex_brackets < 120 ? 120 : PL_lex_brackets);
11895 PL_lex_brackstack = SAVEPVN(proto_perl->Ilex_brackstack,i);
11896 PL_lex_casemods = proto_perl->Ilex_casemods;
11897 i = (PL_lex_casemods < 12 ? 12 : PL_lex_casemods);
11898 PL_lex_casestack = SAVEPVN(proto_perl->Ilex_casestack,i);
11899
11900 Copy(proto_perl->Inextval, PL_nextval, 5, YYSTYPE);
11901 Copy(proto_perl->Inexttype, PL_nexttype, 5, I32);
11902 PL_nexttoke = proto_perl->Inexttoke;
11903
1d773130
TB
11904 /* XXX This is probably masking the deeper issue of why
11905 * SvANY(proto_perl->Ilinestr) can be NULL at this point. For test case:
11906 * http://archive.develooper.com/perl5-porters%40perl.org/msg83298.html
11907 * (A little debugging with a watchpoint on it may help.)
11908 */
389edf32
TB
11909 if (SvANY(proto_perl->Ilinestr)) {
11910 PL_linestr = sv_dup_inc(proto_perl->Ilinestr, param);
11911 i = proto_perl->Ibufptr - SvPVX(proto_perl->Ilinestr);
11912 PL_bufptr = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
11913 i = proto_perl->Ioldbufptr - SvPVX(proto_perl->Ilinestr);
11914 PL_oldbufptr = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
11915 i = proto_perl->Ioldoldbufptr - SvPVX(proto_perl->Ilinestr);
11916 PL_oldoldbufptr = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
11917 i = proto_perl->Ilinestart - SvPVX(proto_perl->Ilinestr);
11918 PL_linestart = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
11919 }
11920 else {
11921 PL_linestr = NEWSV(65,79);
11922 sv_upgrade(PL_linestr,SVt_PVIV);
11923 sv_setpvn(PL_linestr,"",0);
11924 PL_bufptr = PL_oldbufptr = PL_oldoldbufptr = PL_linestart = SvPVX(PL_linestr);
11925 }
1d7c1841 11926 PL_bufend = SvPVX(PL_linestr) + SvCUR(PL_linestr);
1d7c1841
GS
11927 PL_pending_ident = proto_perl->Ipending_ident;
11928 PL_sublex_info = proto_perl->Isublex_info; /* XXX not quite right */
11929
11930 PL_expect = proto_perl->Iexpect;
11931
11932 PL_multi_start = proto_perl->Imulti_start;
11933 PL_multi_end = proto_perl->Imulti_end;
11934 PL_multi_open = proto_perl->Imulti_open;
11935 PL_multi_close = proto_perl->Imulti_close;
11936
11937 PL_error_count = proto_perl->Ierror_count;
11938 PL_subline = proto_perl->Isubline;
d2d73c3e 11939 PL_subname = sv_dup_inc(proto_perl->Isubname, param);
1d7c1841 11940
1d773130 11941 /* XXX See comment on SvANY(proto_perl->Ilinestr) above */
389edf32
TB
11942 if (SvANY(proto_perl->Ilinestr)) {
11943 i = proto_perl->Ilast_uni - SvPVX(proto_perl->Ilinestr);
11944 PL_last_uni = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
11945 i = proto_perl->Ilast_lop - SvPVX(proto_perl->Ilinestr);
11946 PL_last_lop = SvPVX(PL_linestr) + (i < 0 ? 0 : i);
11947 PL_last_lop_op = proto_perl->Ilast_lop_op;
11948 }
11949 else {
11950 PL_last_uni = SvPVX(PL_linestr);
11951 PL_last_lop = SvPVX(PL_linestr);
11952 PL_last_lop_op = 0;
11953 }
1d7c1841 11954 PL_in_my = proto_perl->Iin_my;
d2d73c3e 11955 PL_in_my_stash = hv_dup(proto_perl->Iin_my_stash, param);
1d7c1841
GS
11956#ifdef FCRYPT
11957 PL_cryptseen = proto_perl->Icryptseen;
11958#endif
11959
11960 PL_hints = proto_perl->Ihints;
11961
11962 PL_amagic_generation = proto_perl->Iamagic_generation;
11963
11964#ifdef USE_LOCALE_COLLATE
11965 PL_collation_ix = proto_perl->Icollation_ix;
11966 PL_collation_name = SAVEPV(proto_perl->Icollation_name);
11967 PL_collation_standard = proto_perl->Icollation_standard;
11968 PL_collxfrm_base = proto_perl->Icollxfrm_base;
11969 PL_collxfrm_mult = proto_perl->Icollxfrm_mult;
11970#endif /* USE_LOCALE_COLLATE */
11971
11972#ifdef USE_LOCALE_NUMERIC
11973 PL_numeric_name = SAVEPV(proto_perl->Inumeric_name);
11974 PL_numeric_standard = proto_perl->Inumeric_standard;
11975 PL_numeric_local = proto_perl->Inumeric_local;
d2d73c3e 11976 PL_numeric_radix_sv = sv_dup_inc(proto_perl->Inumeric_radix_sv, param);
1d7c1841
GS
11977#endif /* !USE_LOCALE_NUMERIC */
11978
11979 /* utf8 character classes */
d2d73c3e
AB
11980 PL_utf8_alnum = sv_dup_inc(proto_perl->Iutf8_alnum, param);
11981 PL_utf8_alnumc = sv_dup_inc(proto_perl->Iutf8_alnumc, param);
11982 PL_utf8_ascii = sv_dup_inc(proto_perl->Iutf8_ascii, param);
11983 PL_utf8_alpha = sv_dup_inc(proto_perl->Iutf8_alpha, param);
11984 PL_utf8_space = sv_dup_inc(proto_perl->Iutf8_space, param);
11985 PL_utf8_cntrl = sv_dup_inc(proto_perl->Iutf8_cntrl, param);
11986 PL_utf8_graph = sv_dup_inc(proto_perl->Iutf8_graph, param);
11987 PL_utf8_digit = sv_dup_inc(proto_perl->Iutf8_digit, param);
11988 PL_utf8_upper = sv_dup_inc(proto_perl->Iutf8_upper, param);
11989 PL_utf8_lower = sv_dup_inc(proto_perl->Iutf8_lower, param);
11990 PL_utf8_print = sv_dup_inc(proto_perl->Iutf8_print, param);
11991 PL_utf8_punct = sv_dup_inc(proto_perl->Iutf8_punct, param);
11992 PL_utf8_xdigit = sv_dup_inc(proto_perl->Iutf8_xdigit, param);
11993 PL_utf8_mark = sv_dup_inc(proto_perl->Iutf8_mark, param);
11994 PL_utf8_toupper = sv_dup_inc(proto_perl->Iutf8_toupper, param);
11995 PL_utf8_totitle = sv_dup_inc(proto_perl->Iutf8_totitle, param);
11996 PL_utf8_tolower = sv_dup_inc(proto_perl->Iutf8_tolower, param);
b4e400f9 11997 PL_utf8_tofold = sv_dup_inc(proto_perl->Iutf8_tofold, param);
82686b01
JH
11998 PL_utf8_idstart = sv_dup_inc(proto_perl->Iutf8_idstart, param);
11999 PL_utf8_idcont = sv_dup_inc(proto_perl->Iutf8_idcont, param);
1d7c1841 12000
6c3182a5 12001 /* Did the locale setup indicate UTF-8? */
9769094f 12002 PL_utf8locale = proto_perl->Iutf8locale;
6c3182a5
JH
12003 /* Unicode features (see perlrun/-C) */
12004 PL_unicode = proto_perl->Iunicode;
12005
12006 /* Pre-5.8 signals control */
12007 PL_signals = proto_perl->Isignals;
12008
12009 /* times() ticks per second */
12010 PL_clocktick = proto_perl->Iclocktick;
12011
12012 /* Recursion stopper for PerlIO_find_layer */
12013 PL_in_load_module = proto_perl->Iin_load_module;
12014
12015 /* sort() routine */
12016 PL_sort_RealCmp = proto_perl->Isort_RealCmp;
12017
57c6e6d2
JH
12018 /* Not really needed/useful since the reenrant_retint is "volatile",
12019 * but do it for consistency's sake. */
12020 PL_reentrant_retint = proto_perl->Ireentrant_retint;
12021
15a5279a
JH
12022 /* Hooks to shared SVs and locks. */
12023 PL_sharehook = proto_perl->Isharehook;
12024 PL_lockhook = proto_perl->Ilockhook;
12025 PL_unlockhook = proto_perl->Iunlockhook;
12026 PL_threadhook = proto_perl->Ithreadhook;
12027
bce260cd
JH
12028 PL_runops_std = proto_perl->Irunops_std;
12029 PL_runops_dbg = proto_perl->Irunops_dbg;
12030
12031#ifdef THREADS_HAVE_PIDS
12032 PL_ppid = proto_perl->Ippid;
12033#endif
12034
1d7c1841
GS
12035 /* swatch cache */
12036 PL_last_swash_hv = Nullhv; /* reinits on demand */
12037 PL_last_swash_klen = 0;
12038 PL_last_swash_key[0]= '\0';
12039 PL_last_swash_tmps = (U8*)NULL;
12040 PL_last_swash_slen = 0;
12041
1d7c1841
GS
12042 PL_glob_index = proto_perl->Iglob_index;
12043 PL_srand_called = proto_perl->Isrand_called;
504f80c1 12044 PL_hash_seed = proto_perl->Ihash_seed;
008fb0c0 12045 PL_rehash_seed = proto_perl->Irehash_seed;
1d7c1841
GS
12046 PL_uudmap['M'] = 0; /* reinits on demand */
12047 PL_bitcount = Nullch; /* reinits on demand */
12048
66fe0623
NIS
12049 if (proto_perl->Ipsig_pend) {
12050 Newz(0, PL_psig_pend, SIG_SIZE, int);
9dd79c3f 12051 }
66fe0623
NIS
12052 else {
12053 PL_psig_pend = (int*)NULL;
12054 }
12055
1d7c1841 12056 if (proto_perl->Ipsig_ptr) {
76d3c696
JH
12057 Newz(0, PL_psig_ptr, SIG_SIZE, SV*);
12058 Newz(0, PL_psig_name, SIG_SIZE, SV*);
76d3c696 12059 for (i = 1; i < SIG_SIZE; i++) {
d2d73c3e
AB
12060 PL_psig_ptr[i] = sv_dup_inc(proto_perl->Ipsig_ptr[i], param);
12061 PL_psig_name[i] = sv_dup_inc(proto_perl->Ipsig_name[i], param);
1d7c1841
GS
12062 }
12063 }
12064 else {
12065 PL_psig_ptr = (SV**)NULL;
12066 PL_psig_name = (SV**)NULL;
12067 }
12068
12069 /* thrdvar.h stuff */
12070
a0739874 12071 if (flags & CLONEf_COPY_STACKS) {
1d7c1841
GS
12072 /* next allocation will be PL_tmps_stack[PL_tmps_ix+1] */
12073 PL_tmps_ix = proto_perl->Ttmps_ix;
12074 PL_tmps_max = proto_perl->Ttmps_max;
12075 PL_tmps_floor = proto_perl->Ttmps_floor;
12076 Newz(50, PL_tmps_stack, PL_tmps_max, SV*);
12077 i = 0;
12078 while (i <= PL_tmps_ix) {
d2d73c3e 12079 PL_tmps_stack[i] = sv_dup_inc(proto_perl->Ttmps_stack[i], param);
1d7c1841
GS
12080 ++i;
12081 }
12082
12083 /* next PUSHMARK() sets *(PL_markstack_ptr+1) */
12084 i = proto_perl->Tmarkstack_max - proto_perl->Tmarkstack;
12085 Newz(54, PL_markstack, i, I32);
12086 PL_markstack_max = PL_markstack + (proto_perl->Tmarkstack_max
12087 - proto_perl->Tmarkstack);
12088 PL_markstack_ptr = PL_markstack + (proto_perl->Tmarkstack_ptr
12089 - proto_perl->Tmarkstack);
12090 Copy(proto_perl->Tmarkstack, PL_markstack,
12091 PL_markstack_ptr - PL_markstack + 1, I32);
12092
12093 /* next push_scope()/ENTER sets PL_scopestack[PL_scopestack_ix]
12094 * NOTE: unlike the others! */
12095 PL_scopestack_ix = proto_perl->Tscopestack_ix;
12096 PL_scopestack_max = proto_perl->Tscopestack_max;
12097 Newz(54, PL_scopestack, PL_scopestack_max, I32);
12098 Copy(proto_perl->Tscopestack, PL_scopestack, PL_scopestack_ix, I32);
12099
1d7c1841 12100 /* NOTE: si_dup() looks at PL_markstack */
d2d73c3e 12101 PL_curstackinfo = si_dup(proto_perl->Tcurstackinfo, param);
1d7c1841
GS
12102
12103 /* PL_curstack = PL_curstackinfo->si_stack; */
d2d73c3e
AB
12104 PL_curstack = av_dup(proto_perl->Tcurstack, param);
12105 PL_mainstack = av_dup(proto_perl->Tmainstack, param);
1d7c1841
GS
12106
12107 /* next PUSHs() etc. set *(PL_stack_sp+1) */
12108 PL_stack_base = AvARRAY(PL_curstack);
12109 PL_stack_sp = PL_stack_base + (proto_perl->Tstack_sp
12110 - proto_perl->Tstack_base);
12111 PL_stack_max = PL_stack_base + AvMAX(PL_curstack);
12112
12113 /* next SSPUSHFOO() sets PL_savestack[PL_savestack_ix]
12114 * NOTE: unlike the others! */
12115 PL_savestack_ix = proto_perl->Tsavestack_ix;
12116 PL_savestack_max = proto_perl->Tsavestack_max;
12117 /*Newz(54, PL_savestack, PL_savestack_max, ANY);*/
d2d73c3e 12118 PL_savestack = ss_dup(proto_perl, param);
1d7c1841
GS
12119 }
12120 else {
12121 init_stacks();
985e7056 12122 ENTER; /* perl_destruct() wants to LEAVE; */
1d7c1841
GS
12123 }
12124
12125 PL_start_env = proto_perl->Tstart_env; /* XXXXXX */
12126 PL_top_env = &PL_start_env;
12127
12128 PL_op = proto_perl->Top;
12129
12130 PL_Sv = Nullsv;
12131 PL_Xpv = (XPV*)NULL;
12132 PL_na = proto_perl->Tna;
12133
12134 PL_statbuf = proto_perl->Tstatbuf;
12135 PL_statcache = proto_perl->Tstatcache;
d2d73c3e
AB
12136 PL_statgv = gv_dup(proto_perl->Tstatgv, param);
12137 PL_statname = sv_dup_inc(proto_perl->Tstatname, param);
1d7c1841
GS
12138#ifdef HAS_TIMES
12139 PL_timesbuf = proto_perl->Ttimesbuf;
12140#endif
12141
12142 PL_tainted = proto_perl->Ttainted;
12143 PL_curpm = proto_perl->Tcurpm; /* XXX No PMOP ref count */
d2d73c3e
AB
12144 PL_rs = sv_dup_inc(proto_perl->Trs, param);
12145 PL_last_in_gv = gv_dup(proto_perl->Tlast_in_gv, param);
12146 PL_ofs_sv = sv_dup_inc(proto_perl->Tofs_sv, param);
12147 PL_defoutgv = gv_dup_inc(proto_perl->Tdefoutgv, param);
1d7c1841 12148 PL_chopset = proto_perl->Tchopset; /* XXX never deallocated */
d2d73c3e
AB
12149 PL_toptarget = sv_dup_inc(proto_perl->Ttoptarget, param);
12150 PL_bodytarget = sv_dup_inc(proto_perl->Tbodytarget, param);
12151 PL_formtarget = sv_dup(proto_perl->Tformtarget, param);
1d7c1841
GS
12152
12153 PL_restartop = proto_perl->Trestartop;
12154 PL_in_eval = proto_perl->Tin_eval;
12155 PL_delaymagic = proto_perl->Tdelaymagic;
12156 PL_dirty = proto_perl->Tdirty;
12157 PL_localizing = proto_perl->Tlocalizing;
12158
14dd3ad8 12159#ifdef PERL_FLEXIBLE_EXCEPTIONS
1d7c1841 12160 PL_protect = proto_perl->Tprotect;
14dd3ad8 12161#endif
d2d73c3e 12162 PL_errors = sv_dup_inc(proto_perl->Terrors, param);
dd28f7bb 12163 PL_hv_fetch_ent_mh = Nullhe;
1d7c1841
GS
12164 PL_modcount = proto_perl->Tmodcount;
12165 PL_lastgotoprobe = Nullop;
12166 PL_dumpindent = proto_perl->Tdumpindent;
12167
12168 PL_sortcop = (OP*)any_dup(proto_perl->Tsortcop, proto_perl);
d2d73c3e
AB
12169 PL_sortstash = hv_dup(proto_perl->Tsortstash, param);
12170 PL_firstgv = gv_dup(proto_perl->Tfirstgv, param);
12171 PL_secondgv = gv_dup(proto_perl->Tsecondgv, param);
1d7c1841
GS
12172 PL_sortcxix = proto_perl->Tsortcxix;
12173 PL_efloatbuf = Nullch; /* reinits on demand */
12174 PL_efloatsize = 0; /* reinits on demand */
12175
12176 /* regex stuff */
12177
12178 PL_screamfirst = NULL;
12179 PL_screamnext = NULL;
12180 PL_maxscream = -1; /* reinits on demand */
12181 PL_lastscream = Nullsv;
12182
12183 PL_watchaddr = NULL;
12184 PL_watchok = Nullch;
12185
12186 PL_regdummy = proto_perl->Tregdummy;
1d7c1841
GS
12187 PL_regprecomp = Nullch;
12188 PL_regnpar = 0;
12189 PL_regsize = 0;
1d7c1841
GS
12190 PL_colorset = 0; /* reinits PL_colors[] */
12191 /*PL_colors[6] = {0,0,0,0,0,0};*/
1d7c1841
GS
12192 PL_reginput = Nullch;
12193 PL_regbol = Nullch;
12194 PL_regeol = Nullch;
12195 PL_regstartp = (I32*)NULL;
12196 PL_regendp = (I32*)NULL;
12197 PL_reglastparen = (U32*)NULL;
2d862feb 12198 PL_reglastcloseparen = (U32*)NULL;
1d7c1841 12199 PL_regtill = Nullch;
1d7c1841
GS
12200 PL_reg_start_tmp = (char**)NULL;
12201 PL_reg_start_tmpl = 0;
12202 PL_regdata = (struct reg_data*)NULL;
12203 PL_bostr = Nullch;
12204 PL_reg_flags = 0;
12205 PL_reg_eval_set = 0;
12206 PL_regnarrate = 0;
12207 PL_regprogram = (regnode*)NULL;
12208 PL_regindent = 0;
12209 PL_regcc = (CURCUR*)NULL;
12210 PL_reg_call_cc = (struct re_cc_state*)NULL;
12211 PL_reg_re = (regexp*)NULL;
12212 PL_reg_ganch = Nullch;
12213 PL_reg_sv = Nullsv;
53c4c00c 12214 PL_reg_match_utf8 = FALSE;
1d7c1841
GS
12215 PL_reg_magic = (MAGIC*)NULL;
12216 PL_reg_oldpos = 0;
12217 PL_reg_oldcurpm = (PMOP*)NULL;
12218 PL_reg_curpm = (PMOP*)NULL;
12219 PL_reg_oldsaved = Nullch;
12220 PL_reg_oldsavedlen = 0;
ed252734 12221#ifdef PERL_COPY_ON_WRITE
504cff3b 12222 PL_nrs = Nullsv;
ed252734 12223#endif
1d7c1841
GS
12224 PL_reg_maxiter = 0;
12225 PL_reg_leftiter = 0;
12226 PL_reg_poscache = Nullch;
12227 PL_reg_poscache_size= 0;
12228
12229 /* RE engine - function pointers */
12230 PL_regcompp = proto_perl->Tregcompp;
12231 PL_regexecp = proto_perl->Tregexecp;
12232 PL_regint_start = proto_perl->Tregint_start;
12233 PL_regint_string = proto_perl->Tregint_string;
12234 PL_regfree = proto_perl->Tregfree;
12235
12236 PL_reginterp_cnt = 0;
12237 PL_reg_starttry = 0;
12238
a2efc822
SC
12239 /* Pluggable optimizer */
12240 PL_peepp = proto_perl->Tpeepp;
12241
081fc587
AB
12242 PL_stashcache = newHV();
12243
a0739874
DM
12244 if (!(flags & CLONEf_KEEP_PTR_TABLE)) {
12245 ptr_table_free(PL_ptr_table);
12246 PL_ptr_table = NULL;
12247 }
8cf8f3d1 12248
f284b03f
AMS
12249 /* Call the ->CLONE method, if it exists, for each of the stashes
12250 identified by sv_dup() above.
12251 */
d2d73c3e
AB
12252 while(av_len(param->stashes) != -1) {
12253 HV* stash = (HV*) av_shift(param->stashes);
f284b03f
AMS
12254 GV* cloner = gv_fetchmethod_autoload(stash, "CLONE", 0);
12255 if (cloner && GvCV(cloner)) {
12256 dSP;
12257 ENTER;
12258 SAVETMPS;
12259 PUSHMARK(SP);
dc507217 12260 XPUSHs(sv_2mortal(newSVpv(HvNAME(stash), 0)));
f284b03f
AMS
12261 PUTBACK;
12262 call_sv((SV*)GvCV(cloner), G_DISCARD);
12263 FREETMPS;
12264 LEAVE;
12265 }
4a09accc 12266 }
a0739874 12267
dc507217 12268 SvREFCNT_dec(param->stashes);
dc507217 12269
1d7c1841 12270 return my_perl;
1d7c1841
GS
12271}
12272
1d7c1841 12273#endif /* USE_ITHREADS */
a0ae6670 12274
9f4817db 12275/*
ccfc67b7
JH
12276=head1 Unicode Support
12277
9f4817db
JH
12278=for apidoc sv_recode_to_utf8
12279
5d170f3a
JH
12280The encoding is assumed to be an Encode object, on entry the PV
12281of the sv is assumed to be octets in that encoding, and the sv
12282will be converted into Unicode (and UTF-8).
9f4817db 12283
5d170f3a
JH
12284If the sv already is UTF-8 (or if it is not POK), or if the encoding
12285is not a reference, nothing is done to the sv. If the encoding is not
1768d7eb
JH
12286an C<Encode::XS> Encoding object, bad things will happen.
12287(See F<lib/encoding.pm> and L<Encode>).
9f4817db 12288
5d170f3a 12289The PV of the sv is returned.
9f4817db 12290
5d170f3a
JH
12291=cut */
12292
12293char *
12294Perl_sv_recode_to_utf8(pTHX_ SV *sv, SV *encoding)
12295{
220e2d4e 12296 if (SvPOK(sv) && !SvUTF8(sv) && !IN_BYTES && SvROK(encoding)) {
d0063567
DK
12297 SV *uni;
12298 STRLEN len;
12299 char *s;
12300 dSP;
12301 ENTER;
12302 SAVETMPS;
220e2d4e 12303 save_re_context();
d0063567
DK
12304 PUSHMARK(sp);
12305 EXTEND(SP, 3);
12306 XPUSHs(encoding);
12307 XPUSHs(sv);
7a5fa8a2 12308/*
f9893866
NIS
12309 NI-S 2002/07/09
12310 Passing sv_yes is wrong - it needs to be or'ed set of constants
7a5fa8a2 12311 for Encode::XS, while UTf-8 decode (currently) assumes a true value means
f9893866
NIS
12312 remove converted chars from source.
12313
12314 Both will default the value - let them.
7a5fa8a2 12315
d0063567 12316 XPUSHs(&PL_sv_yes);
f9893866 12317*/
d0063567
DK
12318 PUTBACK;
12319 call_method("decode", G_SCALAR);
12320 SPAGAIN;
12321 uni = POPs;
12322 PUTBACK;
12323 s = SvPV(uni, len);
d0063567
DK
12324 if (s != SvPVX(sv)) {
12325 SvGROW(sv, len + 1);
12326 Move(s, SvPVX(sv), len, char);
12327 SvCUR_set(sv, len);
12328 SvPVX(sv)[len] = 0;
12329 }
12330 FREETMPS;
12331 LEAVE;
d0063567 12332 SvUTF8_on(sv);
95899a2a 12333 return SvPVX(sv);
f9893866 12334 }
95899a2a 12335 return SvPOKp(sv) ? SvPVX(sv) : NULL;
9f4817db
JH
12336}
12337
220e2d4e
IH
12338/*
12339=for apidoc sv_cat_decode
12340
12341The encoding is assumed to be an Encode object, the PV of the ssv is
12342assumed to be octets in that encoding and decoding the input starts
12343from the position which (PV + *offset) pointed to. The dsv will be
12344concatenated the decoded UTF-8 string from ssv. Decoding will terminate
12345when the string tstr appears in decoding output or the input ends on
12346the PV of the ssv. The value which the offset points will be modified
12347to the last input position on the ssv.
68795e93 12348
220e2d4e
IH
12349Returns TRUE if the terminator was found, else returns FALSE.
12350
12351=cut */
12352
12353bool
12354Perl_sv_cat_decode(pTHX_ SV *dsv, SV *encoding,
12355 SV *ssv, int *offset, char *tstr, int tlen)
12356{
a73e8557 12357 bool ret = FALSE;
220e2d4e 12358 if (SvPOK(ssv) && SvPOK(dsv) && SvROK(encoding) && offset) {
220e2d4e
IH
12359 SV *offsv;
12360 dSP;
12361 ENTER;
12362 SAVETMPS;
12363 save_re_context();
12364 PUSHMARK(sp);
12365 EXTEND(SP, 6);
12366 XPUSHs(encoding);
12367 XPUSHs(dsv);
12368 XPUSHs(ssv);
12369 XPUSHs(offsv = sv_2mortal(newSViv(*offset)));
12370 XPUSHs(sv_2mortal(newSVpvn(tstr, tlen)));
12371 PUTBACK;
12372 call_method("cat_decode", G_SCALAR);
12373 SPAGAIN;
12374 ret = SvTRUE(TOPs);
12375 *offset = SvIV(offsv);
12376 PUTBACK;
12377 FREETMPS;
12378 LEAVE;
220e2d4e 12379 }
a73e8557
JH
12380 else
12381 Perl_croak(aTHX_ "Invalid argument to sv_cat_decode");
12382 return ret;
220e2d4e 12383}
f9893866 12384