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1/* sv.h
2 *
3 * Copyright (C) 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
4 * 2000, 2001, 2002, 2003, 2004, by Larry Wall and others
5 *
6 * You may distribute under the terms of either the GNU General Public
7 * License or the Artistic License, as specified in the README file.
8 *
9 */
10
11#ifdef sv_flags
12#undef sv_flags /* Convex has this in <signal.h> for sigvec() */
13#endif
14
15/*
16=head1 SV Flags
17
18=for apidoc AmU||svtype
19An enum of flags for Perl types. These are found in the file B<sv.h>
20in the C<svtype> enum. Test these flags with the C<SvTYPE> macro.
21
22=for apidoc AmU||SVt_PV
23Pointer type flag for scalars. See C<svtype>.
24
25=for apidoc AmU||SVt_IV
26Integer type flag for scalars. See C<svtype>.
27
28=for apidoc AmU||SVt_NV
29Double type flag for scalars. See C<svtype>.
30
31=for apidoc AmU||SVt_PVMG
32Type flag for blessed scalars. See C<svtype>.
33
34=for apidoc AmU||SVt_PVAV
35Type flag for arrays. See C<svtype>.
36
37=for apidoc AmU||SVt_PVHV
38Type flag for hashes. See C<svtype>.
39
40=for apidoc AmU||SVt_PVCV
41Type flag for code refs. See C<svtype>.
42
43=cut
44*/
45
46typedef enum {
47 SVt_NULL, /* 0 */
48 SVt_IV, /* 1 */
49 SVt_NV, /* 2 */
50 SVt_RV, /* 3 */
51 SVt_PV, /* 4 */
52 SVt_PVIV, /* 5 */
53 SVt_PVNV, /* 6 */
54 SVt_PVMG, /* 7 */
55 SVt_PVBM, /* 8 */
56 SVt_PVGV, /* 9 */
57 SVt_PVLV, /* 10 */
58 SVt_PVAV, /* 11 */
59 SVt_PVHV, /* 12 */
60 SVt_PVCV, /* 13 */
61 SVt_PVFM, /* 14 */
62 SVt_PVIO /* 15 */
63} svtype;
64
65/* Using C's structural equivalence to help emulate C++ inheritance here... */
66
67struct STRUCT_SV { /* struct sv { */
68 void* sv_any; /* pointer to something */
69 U32 sv_refcnt; /* how many references to us */
70 U32 sv_flags; /* what we are */
71};
72
73struct gv {
74 XPVGV* sv_any; /* pointer to something */
75 U32 sv_refcnt; /* how many references to us */
76 U32 sv_flags; /* what we are */
77};
78
79struct cv {
80 XPVCV* sv_any; /* pointer to something */
81 U32 sv_refcnt; /* how many references to us */
82 U32 sv_flags; /* what we are */
83};
84
85struct av {
86 XPVAV* sv_any; /* pointer to something */
87 U32 sv_refcnt; /* how many references to us */
88 U32 sv_flags; /* what we are */
89};
90
91struct hv {
92 XPVHV* sv_any; /* pointer to something */
93 U32 sv_refcnt; /* how many references to us */
94 U32 sv_flags; /* what we are */
95};
96
97struct io {
98 XPVIO* sv_any; /* pointer to something */
99 U32 sv_refcnt; /* how many references to us */
100 U32 sv_flags; /* what we are */
101};
102
103/*
104=head1 SV Manipulation Functions
105
106=for apidoc Am|U32|SvREFCNT|SV* sv
107Returns the value of the object's reference count.
108
109=for apidoc Am|SV*|SvREFCNT_inc|SV* sv
110Increments the reference count of the given SV.
111
112=for apidoc Am|void|SvREFCNT_dec|SV* sv
113Decrements the reference count of the given SV.
114
115=for apidoc Am|svtype|SvTYPE|SV* sv
116Returns the type of the SV. See C<svtype>.
117
118=for apidoc Am|void|SvUPGRADE|SV* sv|svtype type
119Used to upgrade an SV to a more complex form. Uses C<sv_upgrade> to
120perform the upgrade if necessary. See C<svtype>.
121
122=cut
123*/
124
125#define SvANY(sv) (sv)->sv_any
126#define SvFLAGS(sv) (sv)->sv_flags
127#define SvREFCNT(sv) (sv)->sv_refcnt
128
129#if defined(__GNUC__) && !defined(__STRICT_ANSI__) && !defined(PERL_GCC_PEDANTIC)
130# define SvREFCNT_inc(sv) \
131 ({ \
132 SV *_sv = (SV*)(sv); \
133 if (_sv) \
134 (SvREFCNT(_sv))++; \
135 _sv; \
136 })
137#else
138# define SvREFCNT_inc(sv) \
139 ((PL_Sv=(SV*)(sv)), (PL_Sv && ++(SvREFCNT(PL_Sv))), (SV*)PL_Sv)
140#endif
141
142#if defined(__GNUC__) && !defined(__STRICT_ANSI__) && !defined(PERL_GCC_PEDANTIC)
143# define SvREFCNT_dec(sv) \
144 ({ \
145 SV *_sv = (SV*)(sv); \
146 if (_sv) { \
147 if (SvREFCNT(_sv)) { \
148 if (--(SvREFCNT(_sv)) == 0) \
149 Perl_sv_free2(aTHX_ _sv); \
150 } else { \
151 sv_free(_sv); \
152 } \
153 } \
154 })
155#else
156#define SvREFCNT_dec(sv) sv_free((SV*)(sv))
157#endif
158
159#define SVTYPEMASK 0xff
160#define SvTYPE(sv) ((sv)->sv_flags & SVTYPEMASK)
161
162#define SvUPGRADE(sv, mt) (SvTYPE(sv) >= mt || sv_upgrade(sv, mt))
163
164#define SVs_PADSTALE 0x00000100 /* lexical has gone out of scope */
165#define SVs_PADTMP 0x00000200 /* in use as tmp */
166#define SVs_PADMY 0x00000400 /* in use a "my" variable */
167#define SVs_TEMP 0x00000800 /* string is stealable? */
168#define SVs_OBJECT 0x00001000 /* is "blessed" */
169#define SVs_GMG 0x00002000 /* has magical get method */
170#define SVs_SMG 0x00004000 /* has magical set method */
171#define SVs_RMG 0x00008000 /* has random magical methods */
172
173#define SVf_IOK 0x00010000 /* has valid public integer value */
174#define SVf_NOK 0x00020000 /* has valid public numeric value */
175#define SVf_POK 0x00040000 /* has valid public pointer value */
176#define SVf_ROK 0x00080000 /* has a valid reference pointer */
177
178#define SVf_FAKE 0x00100000 /* glob or lexical is just a copy */
179#define SVf_OOK 0x00200000 /* has valid offset value */
180#define SVf_BREAK 0x00400000 /* refcnt is artificially low - used
181 * by SV's in final arena cleanup */
182#define SVf_READONLY 0x00800000 /* may not be modified */
183
184
185#define SVp_IOK 0x01000000 /* has valid non-public integer value */
186#define SVp_NOK 0x02000000 /* has valid non-public numeric value */
187#define SVp_POK 0x04000000 /* has valid non-public pointer value */
188#define SVp_SCREAM 0x08000000 /* has been studied? */
189
190#define SVf_UTF8 0x20000000 /* SvPV is UTF-8 encoded */
191
192#define SVf_THINKFIRST (SVf_READONLY|SVf_ROK|SVf_FAKE)
193
194#define SVf_OK (SVf_IOK|SVf_NOK|SVf_POK|SVf_ROK| \
195 SVp_IOK|SVp_NOK|SVp_POK)
196
197#define SVf_AMAGIC 0x10000000 /* has magical overloaded methods */
198
199#define PRIVSHIFT 8 /* (SVp_?OK >> PRIVSHIFT) == SVf_?OK */
200
201/* Some private flags. */
202
203/* SVpad_OUR may be set on SVt_PV{NV,MG,GV} types */
204#define SVpad_OUR 0x80000000 /* pad name is "our" instead of "my" */
205#define SVpad_TYPED 0x40000000 /* Typed Lexical */
206
207#define SVf_IVisUV 0x80000000 /* use XPVUV instead of XPVIV */
208
209#define SVpfm_COMPILED 0x80000000 /* FORMLINE is compiled */
210
211#define SVpbm_VALID 0x80000000
212#define SVpbm_TAIL 0x40000000
213
214#define SVrepl_EVAL 0x40000000 /* Replacement part of s///e */
215
216#define SVphv_REHASH 0x10000000 /* HV is recalculating hash values */
217#define SVphv_SHAREKEYS 0x20000000 /* keys live on shared string table */
218#define SVphv_LAZYDEL 0x40000000 /* entry in xhv_eiter must be deleted */
219#define SVphv_HASKFLAGS 0x80000000 /* keys have flag byte after hash */
220
221#define SVprv_WEAKREF 0x80000000 /* Weak reference */
222
223struct xrv {
224 SV * xrv_rv; /* pointer to another SV */
225};
226
227struct xpv {
228 char * xpv_pv; /* pointer to malloced string */
229 STRLEN xpv_cur; /* length of xpv_pv as a C string */
230 STRLEN xpv_len; /* allocated size */
231};
232
233struct xpviv {
234 char * xpv_pv; /* pointer to malloced string */
235 STRLEN xpv_cur; /* length of xpv_pv as a C string */
236 STRLEN xpv_len; /* allocated size */
237 IV xiv_iv; /* integer value or pv offset */
238};
239
240struct xpvuv {
241 char * xpv_pv; /* pointer to malloced string */
242 STRLEN xpv_cur; /* length of xpv_pv as a C string */
243 STRLEN xpv_len; /* allocated size */
244 UV xuv_uv; /* unsigned value or pv offset */
245};
246
247struct xpvnv {
248 char * xpv_pv; /* pointer to malloced string */
249 STRLEN xpv_cur; /* length of xpv_pv as a C string */
250 STRLEN xpv_len; /* allocated size */
251 IV xiv_iv; /* integer value or pv offset */
252 NV xnv_nv; /* numeric value, if any */
253};
254
255/* These structure must match the beginning of struct xpvhv in hv.h. */
256struct xpvmg {
257 char * xpv_pv; /* pointer to malloced string */
258 STRLEN xpv_cur; /* length of xpv_pv as a C string */
259 STRLEN xpv_len; /* allocated size */
260 IV xiv_iv; /* integer value or pv offset */
261 NV xnv_nv; /* numeric value, if any */
262 MAGIC* xmg_magic; /* linked list of magicalness */
263 HV* xmg_stash; /* class package */
264};
265
266struct xpvlv {
267 char * xpv_pv; /* pointer to malloced string */
268 STRLEN xpv_cur; /* length of xpv_pv as a C string */
269 STRLEN xpv_len; /* allocated size */
270 IV xiv_iv; /* integer value or pv offset */
271 NV xnv_nv; /* numeric value, if any */
272 MAGIC* xmg_magic; /* linked list of magicalness */
273 HV* xmg_stash; /* class package */
274
275 /* a full glob fits into this */
276 GP* xgv_gp;
277 char* xgv_name;
278 STRLEN xgv_namelen;
279 HV* xgv_stash;
280 U8 xgv_flags;
281
282 STRLEN xlv_targoff;
283 STRLEN xlv_targlen;
284 SV* xlv_targ;
285 char xlv_type; /* k=keys .=pos x=substr v=vec /=join/re
286 * y=alem/helem/iter t=tie T=tied HE */
287};
288
289struct xpvgv {
290 char * xpv_pv; /* pointer to malloced string */
291 STRLEN xpv_cur; /* length of xpv_pv as a C string */
292 STRLEN xpv_len; /* allocated size */
293 IV xiv_iv; /* integer value or pv offset */
294 NV xnv_nv; /* numeric value, if any */
295 MAGIC* xmg_magic; /* linked list of magicalness */
296 HV* xmg_stash; /* class package */
297
298 GP* xgv_gp;
299 char* xgv_name;
300 STRLEN xgv_namelen;
301 HV* xgv_stash;
302 U8 xgv_flags;
303};
304
305struct xpvbm {
306 char * xpv_pv; /* pointer to malloced string */
307 STRLEN xpv_cur; /* length of xpv_pv as a C string */
308 STRLEN xpv_len; /* allocated size */
309 IV xiv_iv; /* integer value or pv offset */
310 NV xnv_nv; /* numeric value, if any */
311 MAGIC* xmg_magic; /* linked list of magicalness */
312 HV* xmg_stash; /* class package */
313
314 I32 xbm_useful; /* is this constant pattern being useful? */
315 U16 xbm_previous; /* how many characters in string before rare? */
316 U8 xbm_rare; /* rarest character in string */
317};
318
319/* This structure must match XPVCV in cv.h */
320
321typedef U16 cv_flags_t;
322
323struct xpvfm {
324 char * xpv_pv; /* pointer to malloced string */
325 STRLEN xpv_cur; /* length of xpv_pv as a C string */
326 STRLEN xpv_len; /* allocated size */
327 IV xiv_iv; /* integer value or pv offset */
328 NV xnv_nv; /* numeric value, if any */
329 MAGIC* xmg_magic; /* linked list of magicalness */
330 HV* xmg_stash; /* class package */
331
332 HV * xcv_stash;
333 OP * xcv_start;
334 OP * xcv_root;
335 void (*xcv_xsub)(pTHX_ CV*);
336 ANY xcv_xsubany;
337 GV * xcv_gv;
338 char * xcv_file;
339 long xcv_depth; /* >= 2 indicates recursive call */
340 AV * xcv_padlist;
341 CV * xcv_outside;
342 cv_flags_t xcv_flags;
343 U32 xcv_outside_seq; /* the COP sequence (at the point of our
344 * compilation) in the lexically enclosing
345 * sub */
346 IV xfm_lines;
347};
348
349struct xpvio {
350 char * xpv_pv; /* pointer to malloced string */
351 STRLEN xpv_cur; /* length of xpv_pv as a C string */
352 STRLEN xpv_len; /* allocated size */
353 IV xiv_iv; /* integer value or pv offset */
354 NV xnv_nv; /* numeric value, if any */
355 MAGIC* xmg_magic; /* linked list of magicalness */
356 HV* xmg_stash; /* class package */
357
358 PerlIO * xio_ifp; /* ifp and ofp are normally the same */
359 PerlIO * xio_ofp; /* but sockets need separate streams */
360 /* Cray addresses everything by word boundaries (64 bits) and
361 * code and data pointers cannot be mixed (which is exactly what
362 * Perl_filter_add() tries to do with the dirp), hence the following
363 * union trick (as suggested by Gurusamy Sarathy).
364 * For further information see Geir Johansen's problem report titled
365 [ID 20000612.002] Perl problem on Cray system
366 * The any pointer (known as IoANY()) will also be a good place
367 * to hang any IO disciplines to.
368 */
369 union {
370 DIR * xiou_dirp; /* for opendir, readdir, etc */
371 void * xiou_any; /* for alignment */
372 } xio_dirpu;
373 IV xio_lines; /* $. */
374 IV xio_page; /* $% */
375 IV xio_page_len; /* $= */
376 IV xio_lines_left; /* $- */
377 char * xio_top_name; /* $^ */
378 GV * xio_top_gv; /* $^ */
379 char * xio_fmt_name; /* $~ */
380 GV * xio_fmt_gv; /* $~ */
381 char * xio_bottom_name;/* $^B */
382 GV * xio_bottom_gv; /* $^B */
383 short xio_subprocess; /* -| or |- */
384 char xio_type;
385 char xio_flags;
386};
387#define xio_dirp xio_dirpu.xiou_dirp
388#define xio_any xio_dirpu.xiou_any
389
390#define IOf_ARGV 1 /* this fp iterates over ARGV */
391#define IOf_START 2 /* check for null ARGV and substitute '-' */
392#define IOf_FLUSH 4 /* this fp wants a flush after write op */
393#define IOf_DIDTOP 8 /* just did top of form */
394#define IOf_UNTAINT 16 /* consider this fp (and its data) "safe" */
395#define IOf_NOLINE 32 /* slurped a pseudo-line from empty file */
396#define IOf_FAKE_DIRP 64 /* xio_dirp is fake (source filters kludge) */
397
398/* The following macros define implementation-independent predicates on SVs. */
399
400/*
401=for apidoc Am|bool|SvNIOK|SV* sv
402Returns a boolean indicating whether the SV contains a number, integer or
403double.
404
405=for apidoc Am|bool|SvNIOKp|SV* sv
406Returns a boolean indicating whether the SV contains a number, integer or
407double. Checks the B<private> setting. Use C<SvNIOK>.
408
409=for apidoc Am|void|SvNIOK_off|SV* sv
410Unsets the NV/IV status of an SV.
411
412=for apidoc Am|bool|SvOK|SV* sv
413Returns a boolean indicating whether the value is an SV. It also tells
414whether the value is defined or not.
415
416=for apidoc Am|bool|SvIOKp|SV* sv
417Returns a boolean indicating whether the SV contains an integer. Checks
418the B<private> setting. Use C<SvIOK>.
419
420=for apidoc Am|bool|SvNOKp|SV* sv
421Returns a boolean indicating whether the SV contains a double. Checks the
422B<private> setting. Use C<SvNOK>.
423
424=for apidoc Am|bool|SvPOKp|SV* sv
425Returns a boolean indicating whether the SV contains a character string.
426Checks the B<private> setting. Use C<SvPOK>.
427
428=for apidoc Am|bool|SvIOK|SV* sv
429Returns a boolean indicating whether the SV contains an integer.
430
431=for apidoc Am|void|SvIOK_on|SV* sv
432Tells an SV that it is an integer.
433
434=for apidoc Am|void|SvIOK_off|SV* sv
435Unsets the IV status of an SV.
436
437=for apidoc Am|void|SvIOK_only|SV* sv
438Tells an SV that it is an integer and disables all other OK bits.
439
440=for apidoc Am|void|SvIOK_only_UV|SV* sv
441Tells and SV that it is an unsigned integer and disables all other OK bits.
442
443=for apidoc Am|bool|SvIOK_UV|SV* sv
444Returns a boolean indicating whether the SV contains an unsigned integer.
445
446=for apidoc Am|void|SvUOK|SV* sv
447Returns a boolean indicating whether the SV contains an unsigned integer.
448
449=for apidoc Am|bool|SvIOK_notUV|SV* sv
450Returns a boolean indicating whether the SV contains a signed integer.
451
452=for apidoc Am|bool|SvNOK|SV* sv
453Returns a boolean indicating whether the SV contains a double.
454
455=for apidoc Am|void|SvNOK_on|SV* sv
456Tells an SV that it is a double.
457
458=for apidoc Am|void|SvNOK_off|SV* sv
459Unsets the NV status of an SV.
460
461=for apidoc Am|void|SvNOK_only|SV* sv
462Tells an SV that it is a double and disables all other OK bits.
463
464=for apidoc Am|bool|SvPOK|SV* sv
465Returns a boolean indicating whether the SV contains a character
466string.
467
468=for apidoc Am|void|SvPOK_on|SV* sv
469Tells an SV that it is a string.
470
471=for apidoc Am|void|SvPOK_off|SV* sv
472Unsets the PV status of an SV.
473
474=for apidoc Am|void|SvPOK_only|SV* sv
475Tells an SV that it is a string and disables all other OK bits.
476Will also turn off the UTF-8 status.
477
478=for apidoc Am|bool|SvVOK|SV* sv
479Returns a boolean indicating whether the SV contains a v-string.
480
481=for apidoc Am|bool|SvOOK|SV* sv
482Returns a boolean indicating whether the SvIVX is a valid offset value for
483the SvPVX. This hack is used internally to speed up removal of characters
484from the beginning of a SvPV. When SvOOK is true, then the start of the
485allocated string buffer is really (SvPVX - SvIVX).
486
487=for apidoc Am|bool|SvROK|SV* sv
488Tests if the SV is an RV.
489
490=for apidoc Am|void|SvROK_on|SV* sv
491Tells an SV that it is an RV.
492
493=for apidoc Am|void|SvROK_off|SV* sv
494Unsets the RV status of an SV.
495
496=for apidoc Am|SV*|SvRV|SV* sv
497Dereferences an RV to return the SV.
498
499=for apidoc Am|IV|SvIVX|SV* sv
500Returns the raw value in the SV's IV slot, without checks or conversions.
501Only use when you are sure SvIOK is true. See also C<SvIV()>.
502
503=for apidoc Am|UV|SvUVX|SV* sv
504Returns the raw value in the SV's UV slot, without checks or conversions.
505Only use when you are sure SvIOK is true. See also C<SvUV()>.
506
507=for apidoc Am|NV|SvNVX|SV* sv
508Returns the raw value in the SV's NV slot, without checks or conversions.
509Only use when you are sure SvNOK is true. See also C<SvNV()>.
510
511=for apidoc Am|char*|SvPVX|SV* sv
512Returns a pointer to the physical string in the SV. The SV must contain a
513string.
514
515=for apidoc Am|STRLEN|SvCUR|SV* sv
516Returns the length of the string which is in the SV. See C<SvLEN>.
517
518=for apidoc Am|STRLEN|SvLEN|SV* sv
519Returns the size of the string buffer in the SV, not including any part
520attributable to C<SvOOK>. See C<SvCUR>.
521
522=for apidoc Am|char*|SvEND|SV* sv
523Returns a pointer to the last character in the string which is in the SV.
524See C<SvCUR>. Access the character as *(SvEND(sv)).
525
526=for apidoc Am|HV*|SvSTASH|SV* sv
527Returns the stash of the SV.
528
529=for apidoc Am|void|SvCUR_set|SV* sv|STRLEN len
530Set the length of the string which is in the SV. See C<SvCUR>.
531
532=cut
533*/
534
535#define SvNIOK(sv) (SvFLAGS(sv) & (SVf_IOK|SVf_NOK))
536#define SvNIOKp(sv) (SvFLAGS(sv) & (SVp_IOK|SVp_NOK))
537#define SvNIOK_off(sv) (SvFLAGS(sv) &= ~(SVf_IOK|SVf_NOK| \
538 SVp_IOK|SVp_NOK|SVf_IVisUV))
539
540#if defined(__GNUC__) && !defined(PERL_GCC_BRACE_GROUPS_FORBIDDEN)
541#define assert_not_ROK(sv) ({assert(!SvROK(sv) || !SvRV(sv));}),
542#else
543#define assert_not_ROK(sv)
544#endif
545
546#define SvOK(sv) (SvFLAGS(sv) & SVf_OK)
547#define SvOK_off(sv) (assert_not_ROK(sv) \
548 SvFLAGS(sv) &= ~(SVf_OK|SVf_AMAGIC| \
549 SVf_IVisUV|SVf_UTF8), \
550 SvOOK_off(sv))
551#define SvOK_off_exc_UV(sv) (assert_not_ROK(sv) \
552 SvFLAGS(sv) &= ~(SVf_OK|SVf_AMAGIC| \
553 SVf_UTF8), \
554 SvOOK_off(sv))
555
556#define SvOKp(sv) (SvFLAGS(sv) & (SVp_IOK|SVp_NOK|SVp_POK))
557#define SvIOKp(sv) (SvFLAGS(sv) & SVp_IOK)
558#define SvIOKp_on(sv) (SvRELEASE_IVX(sv), \
559 SvFLAGS(sv) |= SVp_IOK)
560#define SvNOKp(sv) (SvFLAGS(sv) & SVp_NOK)
561#define SvNOKp_on(sv) (SvFLAGS(sv) |= SVp_NOK)
562#define SvPOKp(sv) (SvFLAGS(sv) & SVp_POK)
563#define SvPOKp_on(sv) (assert_not_ROK(sv) \
564 SvFLAGS(sv) |= SVp_POK)
565
566#define SvIOK(sv) (SvFLAGS(sv) & SVf_IOK)
567#define SvIOK_on(sv) (SvRELEASE_IVX(sv), \
568 SvFLAGS(sv) |= (SVf_IOK|SVp_IOK))
569#define SvIOK_off(sv) (SvFLAGS(sv) &= ~(SVf_IOK|SVp_IOK|SVf_IVisUV))
570#define SvIOK_only(sv) ((void)SvOK_off(sv), \
571 SvFLAGS(sv) |= (SVf_IOK|SVp_IOK))
572#define SvIOK_only_UV(sv) ((void)SvOK_off_exc_UV(sv), \
573 SvFLAGS(sv) |= (SVf_IOK|SVp_IOK))
574
575#define SvIOK_UV(sv) ((SvFLAGS(sv) & (SVf_IOK|SVf_IVisUV)) \
576 == (SVf_IOK|SVf_IVisUV))
577#define SvUOK(sv) SvIOK_UV(sv)
578#define SvIOK_notUV(sv) ((SvFLAGS(sv) & (SVf_IOK|SVf_IVisUV)) \
579 == SVf_IOK)
580
581#define SvIsUV(sv) (SvFLAGS(sv) & SVf_IVisUV)
582#define SvIsUV_on(sv) (SvFLAGS(sv) |= SVf_IVisUV)
583#define SvIsUV_off(sv) (SvFLAGS(sv) &= ~SVf_IVisUV)
584
585#define SvNOK(sv) (SvFLAGS(sv) & SVf_NOK)
586#define SvNOK_on(sv) (SvFLAGS(sv) |= (SVf_NOK|SVp_NOK))
587#define SvNOK_off(sv) (SvFLAGS(sv) &= ~(SVf_NOK|SVp_NOK))
588#define SvNOK_only(sv) ((void)SvOK_off(sv), \
589 SvFLAGS(sv) |= (SVf_NOK|SVp_NOK))
590
591/*
592=for apidoc Am|bool|SvUTF8|SV* sv
593Returns a boolean indicating whether the SV contains UTF-8 encoded data.
594
595=for apidoc Am|void|SvUTF8_on|SV *sv
596Turn on the UTF-8 status of an SV (the data is not changed, just the flag).
597Do not use frivolously.
598
599=for apidoc Am|void|SvUTF8_off|SV *sv
600Unsets the UTF-8 status of an SV.
601
602=for apidoc Am|void|SvPOK_only_UTF8|SV* sv
603Tells an SV that it is a string and disables all other OK bits,
604and leaves the UTF-8 status as it was.
605
606=cut
607 */
608
609#define SvUTF8(sv) (SvFLAGS(sv) & SVf_UTF8)
610#define SvUTF8_on(sv) (SvFLAGS(sv) |= (SVf_UTF8))
611#define SvUTF8_off(sv) (SvFLAGS(sv) &= ~(SVf_UTF8))
612
613#define SvPOK(sv) (SvFLAGS(sv) & SVf_POK)
614#define SvPOK_on(sv) (assert_not_ROK(sv) \
615 SvFLAGS(sv) |= (SVf_POK|SVp_POK))
616#define SvPOK_off(sv) (SvFLAGS(sv) &= ~(SVf_POK|SVp_POK))
617#define SvPOK_only(sv) (assert_not_ROK(sv) \
618 SvFLAGS(sv) &= ~(SVf_OK|SVf_AMAGIC| \
619 SVf_IVisUV|SVf_UTF8), \
620 SvFLAGS(sv) |= (SVf_POK|SVp_POK))
621#define SvPOK_only_UTF8(sv) (assert_not_ROK(sv) \
622 SvFLAGS(sv) &= ~(SVf_OK|SVf_AMAGIC| \
623 SVf_IVisUV), \
624 SvFLAGS(sv) |= (SVf_POK|SVp_POK))
625
626#define SvVOK(sv) (SvMAGICAL(sv) && mg_find(sv,'V'))
627#define SvOOK(sv) (SvFLAGS(sv) & SVf_OOK)
628#define SvOOK_on(sv) ((void)SvIOK_off(sv), SvFLAGS(sv) |= SVf_OOK)
629#define SvOOK_off(sv) (SvOOK(sv) && sv_backoff(sv))
630
631#define SvFAKE(sv) (SvFLAGS(sv) & SVf_FAKE)
632#define SvFAKE_on(sv) (SvFLAGS(sv) |= SVf_FAKE)
633#define SvFAKE_off(sv) (SvFLAGS(sv) &= ~SVf_FAKE)
634
635#define SvROK(sv) (SvFLAGS(sv) & SVf_ROK)
636#define SvROK_on(sv) (SvFLAGS(sv) |= SVf_ROK)
637#define SvROK_off(sv) (SvFLAGS(sv) &= ~(SVf_ROK|SVf_AMAGIC))
638
639#define SvMAGICAL(sv) (SvFLAGS(sv) & (SVs_GMG|SVs_SMG|SVs_RMG))
640#define SvMAGICAL_on(sv) (SvFLAGS(sv) |= (SVs_GMG|SVs_SMG|SVs_RMG))
641#define SvMAGICAL_off(sv) (SvFLAGS(sv) &= ~(SVs_GMG|SVs_SMG|SVs_RMG))
642
643#define SvGMAGICAL(sv) (SvFLAGS(sv) & SVs_GMG)
644#define SvGMAGICAL_on(sv) (SvFLAGS(sv) |= SVs_GMG)
645#define SvGMAGICAL_off(sv) (SvFLAGS(sv) &= ~SVs_GMG)
646
647#define SvSMAGICAL(sv) (SvFLAGS(sv) & SVs_SMG)
648#define SvSMAGICAL_on(sv) (SvFLAGS(sv) |= SVs_SMG)
649#define SvSMAGICAL_off(sv) (SvFLAGS(sv) &= ~SVs_SMG)
650
651#define SvRMAGICAL(sv) (SvFLAGS(sv) & SVs_RMG)
652#define SvRMAGICAL_on(sv) (SvFLAGS(sv) |= SVs_RMG)
653#define SvRMAGICAL_off(sv) (SvFLAGS(sv) &= ~SVs_RMG)
654
655#define SvAMAGIC(sv) (SvFLAGS(sv) & SVf_AMAGIC)
656#define SvAMAGIC_on(sv) (SvFLAGS(sv) |= SVf_AMAGIC)
657#define SvAMAGIC_off(sv) (SvFLAGS(sv) &= ~SVf_AMAGIC)
658
659#define SvGAMAGIC(sv) (SvFLAGS(sv) & (SVs_GMG|SVf_AMAGIC))
660
661/*
662#define Gv_AMG(stash) \
663 (HV_AMAGICmb(stash) && \
664 ((!HV_AMAGICbad(stash) && HV_AMAGIC(stash)) || Gv_AMupdate(stash)))
665*/
666#define Gv_AMG(stash) (PL_amagic_generation && Gv_AMupdate(stash))
667
668#define SvWEAKREF(sv) ((SvFLAGS(sv) & (SVf_ROK|SVprv_WEAKREF)) \
669 == (SVf_ROK|SVprv_WEAKREF))
670#define SvWEAKREF_on(sv) (SvFLAGS(sv) |= (SVf_ROK|SVprv_WEAKREF))
671#define SvWEAKREF_off(sv) (SvFLAGS(sv) &= ~(SVf_ROK|SVprv_WEAKREF))
672
673#define SvTHINKFIRST(sv) (SvFLAGS(sv) & SVf_THINKFIRST)
674
675#define SvPADSTALE(sv) (SvFLAGS(sv) & SVs_PADSTALE)
676#define SvPADSTALE_on(sv) (SvFLAGS(sv) |= SVs_PADSTALE)
677#define SvPADSTALE_off(sv) (SvFLAGS(sv) &= ~SVs_PADSTALE)
678
679#define SvPADTMP(sv) (SvFLAGS(sv) & SVs_PADTMP)
680#define SvPADTMP_on(sv) (SvFLAGS(sv) |= SVs_PADTMP)
681#define SvPADTMP_off(sv) (SvFLAGS(sv) &= ~SVs_PADTMP)
682
683#define SvPADMY(sv) (SvFLAGS(sv) & SVs_PADMY)
684#define SvPADMY_on(sv) (SvFLAGS(sv) |= SVs_PADMY)
685
686#define SvTEMP(sv) (SvFLAGS(sv) & SVs_TEMP)
687#define SvTEMP_on(sv) (SvFLAGS(sv) |= SVs_TEMP)
688#define SvTEMP_off(sv) (SvFLAGS(sv) &= ~SVs_TEMP)
689
690#define SvOBJECT(sv) (SvFLAGS(sv) & SVs_OBJECT)
691#define SvOBJECT_on(sv) (SvFLAGS(sv) |= SVs_OBJECT)
692#define SvOBJECT_off(sv) (SvFLAGS(sv) &= ~SVs_OBJECT)
693
694#define SvREADONLY(sv) (SvFLAGS(sv) & SVf_READONLY)
695#define SvREADONLY_on(sv) (SvFLAGS(sv) |= SVf_READONLY)
696#define SvREADONLY_off(sv) (SvFLAGS(sv) &= ~SVf_READONLY)
697
698#define SvSCREAM(sv) (SvFLAGS(sv) & SVp_SCREAM)
699#define SvSCREAM_on(sv) (SvFLAGS(sv) |= SVp_SCREAM)
700#define SvSCREAM_off(sv) (SvFLAGS(sv) &= ~SVp_SCREAM)
701
702#define SvCOMPILED(sv) (SvFLAGS(sv) & SVpfm_COMPILED)
703#define SvCOMPILED_on(sv) (SvFLAGS(sv) |= SVpfm_COMPILED)
704#define SvCOMPILED_off(sv) (SvFLAGS(sv) &= ~SVpfm_COMPILED)
705
706#define SvEVALED(sv) (SvFLAGS(sv) & SVrepl_EVAL)
707#define SvEVALED_on(sv) (SvFLAGS(sv) |= SVrepl_EVAL)
708#define SvEVALED_off(sv) (SvFLAGS(sv) &= ~SVrepl_EVAL)
709
710#define SvTAIL(sv) (SvFLAGS(sv) & SVpbm_TAIL)
711#define SvTAIL_on(sv) (SvFLAGS(sv) |= SVpbm_TAIL)
712#define SvTAIL_off(sv) (SvFLAGS(sv) &= ~SVpbm_TAIL)
713
714#define SvVALID(sv) (SvFLAGS(sv) & SVpbm_VALID)
715#define SvVALID_on(sv) (SvFLAGS(sv) |= SVpbm_VALID)
716#define SvVALID_off(sv) (SvFLAGS(sv) &= ~SVpbm_VALID)
717
718#ifdef USE_ITHREADS
719/* The following uses the FAKE flag to show that a regex pointer is infact
720 its own offset in the regexpad for ithreads */
721#define SvREPADTMP(sv) (SvFLAGS(sv) & SVf_FAKE)
722#define SvREPADTMP_on(sv) (SvFLAGS(sv) |= SVf_FAKE)
723#define SvREPADTMP_off(sv) (SvFLAGS(sv) &= ~SVf_FAKE)
724#endif
725
726#define SvRV(sv) ((XRV*) SvANY(sv))->xrv_rv
727#define SvRVx(sv) SvRV(sv)
728
729#define SvIVX(sv) ((XPVIV*) SvANY(sv))->xiv_iv
730#define SvIVXx(sv) SvIVX(sv)
731#define SvUVX(sv) ((XPVUV*) SvANY(sv))->xuv_uv
732#define SvUVXx(sv) SvUVX(sv)
733#define SvNVX(sv) ((XPVNV*)SvANY(sv))->xnv_nv
734#define SvNVXx(sv) SvNVX(sv)
735#define SvPVX(sv) ((XPV*) SvANY(sv))->xpv_pv
736#define SvPVXx(sv) SvPVX(sv)
737#define SvCUR(sv) ((XPV*) SvANY(sv))->xpv_cur
738#define SvLEN(sv) ((XPV*) SvANY(sv))->xpv_len
739#define SvLENx(sv) SvLEN(sv)
740#define SvEND(sv)(((XPV*) SvANY(sv))->xpv_pv + ((XPV*)SvANY(sv))->xpv_cur)
741#define SvENDx(sv) ((PL_Sv = (sv)), SvEND(PL_Sv))
742
743#ifdef DEBUGGING
744#define SvMAGIC(sv) (*(assert(SvTYPE(sv) >= SVt_PVMG), &((XPVMG*) SvANY(sv))->xmg_magic))
745#define SvSTASH(sv) (*(assert(SvTYPE(sv) >= SVt_PVMG), &((XPVMG*) SvANY(sv))->xmg_stash))
746#else
747#define SvMAGIC(sv) ((XPVMG*) SvANY(sv))->xmg_magic
748#define SvSTASH(sv) ((XPVMG*) SvANY(sv))->xmg_stash
749#endif
750
751/* Ask a scalar nicely to try to become an IV, if possible.
752 Not guaranteed to stay returning void */
753/* Macro won't actually call sv_2iv if already IOK */
754#define SvIV_please(sv) \
755 STMT_START {if (!SvIOKp(sv) && (SvNOK(sv) || SvPOK(sv))) \
756 (void) SvIV(sv); } STMT_END
757#define SvIV_set(sv, val) \
758 STMT_START { assert(SvTYPE(sv) == SVt_IV || SvTYPE(sv) >= SVt_PVIV); \
759 (SvIVX(sv) = (val)); } STMT_END
760#define SvNV_set(sv, val) \
761 STMT_START { assert(SvTYPE(sv) == SVt_NV || SvTYPE(sv) >= SVt_PVNV); \
762 (SvNVX(sv) = (val)); } STMT_END
763#define SvPV_set(sv, val) \
764 STMT_START { assert(SvTYPE(sv) >= SVt_PV); \
765 (SvPVX(sv) = (val)); } STMT_END
766#define SvCUR_set(sv, val) \
767 STMT_START { assert(SvTYPE(sv) >= SVt_PV); \
768 (SvCUR(sv) = (val)); } STMT_END
769#define SvLEN_set(sv, val) \
770 STMT_START { assert(SvTYPE(sv) >= SVt_PV); \
771 (SvLEN(sv) = (val)); } STMT_END
772#define SvEND_set(sv, val) \
773 STMT_START { assert(SvTYPE(sv) >= SVt_PV); \
774 (SvCUR(sv) = (val) - SvPVX(sv)); } STMT_END
775
776#define BmRARE(sv) ((XPVBM*) SvANY(sv))->xbm_rare
777#define BmUSEFUL(sv) ((XPVBM*) SvANY(sv))->xbm_useful
778#define BmPREVIOUS(sv) ((XPVBM*) SvANY(sv))->xbm_previous
779
780#define FmLINES(sv) ((XPVFM*) SvANY(sv))->xfm_lines
781
782#define LvTYPE(sv) ((XPVLV*) SvANY(sv))->xlv_type
783#define LvTARG(sv) ((XPVLV*) SvANY(sv))->xlv_targ
784#define LvTARGOFF(sv) ((XPVLV*) SvANY(sv))->xlv_targoff
785#define LvTARGLEN(sv) ((XPVLV*) SvANY(sv))->xlv_targlen
786
787#define IoIFP(sv) ((XPVIO*) SvANY(sv))->xio_ifp
788#define IoOFP(sv) ((XPVIO*) SvANY(sv))->xio_ofp
789#define IoDIRP(sv) ((XPVIO*) SvANY(sv))->xio_dirp
790#define IoANY(sv) ((XPVIO*) SvANY(sv))->xio_any
791#define IoLINES(sv) ((XPVIO*) SvANY(sv))->xio_lines
792#define IoPAGE(sv) ((XPVIO*) SvANY(sv))->xio_page
793#define IoPAGE_LEN(sv) ((XPVIO*) SvANY(sv))->xio_page_len
794#define IoLINES_LEFT(sv)((XPVIO*) SvANY(sv))->xio_lines_left
795#define IoTOP_NAME(sv) ((XPVIO*) SvANY(sv))->xio_top_name
796#define IoTOP_GV(sv) ((XPVIO*) SvANY(sv))->xio_top_gv
797#define IoFMT_NAME(sv) ((XPVIO*) SvANY(sv))->xio_fmt_name
798#define IoFMT_GV(sv) ((XPVIO*) SvANY(sv))->xio_fmt_gv
799#define IoBOTTOM_NAME(sv)((XPVIO*) SvANY(sv))->xio_bottom_name
800#define IoBOTTOM_GV(sv) ((XPVIO*) SvANY(sv))->xio_bottom_gv
801#define IoSUBPROCESS(sv)((XPVIO*) SvANY(sv))->xio_subprocess
802#define IoTYPE(sv) ((XPVIO*) SvANY(sv))->xio_type
803#define IoFLAGS(sv) ((XPVIO*) SvANY(sv))->xio_flags
804
805/* IoTYPE(sv) is a single character telling the type of I/O connection. */
806#define IoTYPE_RDONLY '<'
807#define IoTYPE_WRONLY '>'
808#define IoTYPE_RDWR '+'
809#define IoTYPE_APPEND 'a'
810#define IoTYPE_PIPE '|'
811#define IoTYPE_STD '-' /* stdin or stdout */
812#define IoTYPE_SOCKET 's'
813#define IoTYPE_CLOSED ' '
814#define IoTYPE_IMPLICIT 'I' /* stdin or stdout or stderr */
815#define IoTYPE_NUMERIC '#' /* fdopen */
816
817/*
818=for apidoc Am|bool|SvTAINTED|SV* sv
819Checks to see if an SV is tainted. Returns TRUE if it is, FALSE if
820not.
821
822=for apidoc Am|void|SvTAINTED_on|SV* sv
823Marks an SV as tainted if tainting is enabled.
824
825=for apidoc Am|void|SvTAINTED_off|SV* sv
826Untaints an SV. Be I<very> careful with this routine, as it short-circuits
827some of Perl's fundamental security features. XS module authors should not
828use this function unless they fully understand all the implications of
829unconditionally untainting the value. Untainting should be done in the
830standard perl fashion, via a carefully crafted regexp, rather than directly
831untainting variables.
832
833=for apidoc Am|void|SvTAINT|SV* sv
834Taints an SV if tainting is enabled.
835
836=cut
837*/
838
839#define SvTAINTED(sv) (SvMAGICAL(sv) && sv_tainted(sv))
840#define SvTAINTED_on(sv) STMT_START{ if(PL_tainting){sv_taint(sv);} }STMT_END
841#define SvTAINTED_off(sv) STMT_START{ if(PL_tainting){sv_untaint(sv);} }STMT_END
842
843#define SvTAINT(sv) \
844 STMT_START { \
845 if (PL_tainting) { \
846 if (PL_tainted) \
847 SvTAINTED_on(sv); \
848 } \
849 } STMT_END
850
851/*
852=for apidoc Am|char*|SvPV_force|SV* sv|STRLEN len
853Like C<SvPV> but will force the SV into containing just a string
854(C<SvPOK_only>). You want force if you are going to update the C<SvPVX>
855directly.
856
857=for apidoc Am|char*|SvPV_force_nomg|SV* sv|STRLEN len
858Like C<SvPV> but will force the SV into containing just a string
859(C<SvPOK_only>). You want force if you are going to update the C<SvPVX>
860directly. Doesn't process magic.
861
862=for apidoc Am|char*|SvPV|SV* sv|STRLEN len
863Returns a pointer to the string in the SV, or a stringified form of
864the SV if the SV does not contain a string. The SV may cache the
865stringified version becoming C<SvPOK>. Handles 'get' magic. See also
866C<SvPVx> for a version which guarantees to evaluate sv only once.
867
868=for apidoc Am|char*|SvPVx|SV* sv|STRLEN len
869A version of C<SvPV> which guarantees to evaluate sv only once.
870
871=for apidoc Am|char*|SvPV_nomg|SV* sv|STRLEN len
872Like C<SvPV> but doesn't process magic.
873
874=for apidoc Am|char*|SvPV_nolen|SV* sv
875Returns a pointer to the string in the SV, or a stringified form of
876the SV if the SV does not contain a string. The SV may cache the
877stringified form becoming C<SvPOK>. Handles 'get' magic.
878
879=for apidoc Am|IV|SvIV|SV* sv
880Coerces the given SV to an integer and returns it. See C<SvIVx> for a
881version which guarantees to evaluate sv only once.
882
883=for apidoc Am|IV|SvIV_nomg|SV* sv
884Like C<SvIV> but doesn't process magic.
885
886=for apidoc Am|IV|SvIVx|SV* sv
887Coerces the given SV to an integer and returns it. Guarantees to evaluate
888sv only once. Use the more efficient C<SvIV> otherwise.
889
890=for apidoc Am|NV|SvNV|SV* sv
891Coerce the given SV to a double and return it. See C<SvNVx> for a version
892which guarantees to evaluate sv only once.
893
894=for apidoc Am|NV|SvNVx|SV* sv
895Coerces the given SV to a double and returns it. Guarantees to evaluate
896sv only once. Use the more efficient C<SvNV> otherwise.
897
898=for apidoc Am|UV|SvUV|SV* sv
899Coerces the given SV to an unsigned integer and returns it. See C<SvUVx>
900for a version which guarantees to evaluate sv only once.
901
902=for apidoc Am|UV|SvUV_nomg|SV* sv
903Like C<SvUV> but doesn't process magic.
904
905=for apidoc Am|UV|SvUVx|SV* sv
906Coerces the given SV to an unsigned integer and returns it. Guarantees to
907evaluate sv only once. Use the more efficient C<SvUV> otherwise.
908
909=for apidoc Am|bool|SvTRUE|SV* sv
910Returns a boolean indicating whether Perl would evaluate the SV as true or
911false, defined or undefined. Does not handle 'get' magic.
912
913=for apidoc Am|char*|SvPVutf8_force|SV* sv|STRLEN len
914Like C<SvPV_force>, but converts sv to utf8 first if necessary.
915
916=for apidoc Am|char*|SvPVutf8|SV* sv|STRLEN len
917Like C<SvPV>, but converts sv to utf8 first if necessary.
918
919=for apidoc Am|char*|SvPVutf8_nolen|SV* sv
920Like C<SvPV_nolen>, but converts sv to utf8 first if necessary.
921
922=for apidoc Am|char*|SvPVbyte_force|SV* sv|STRLEN len
923Like C<SvPV_force>, but converts sv to byte representation first if necessary.
924
925=for apidoc Am|char*|SvPVbyte|SV* sv|STRLEN len
926Like C<SvPV>, but converts sv to byte representation first if necessary.
927
928=for apidoc Am|char*|SvPVbyte_nolen|SV* sv
929Like C<SvPV_nolen>, but converts sv to byte representation first if necessary.
930
931=for apidoc Am|char*|SvPVutf8x_force|SV* sv|STRLEN len
932Like C<SvPV_force>, but converts sv to utf8 first if necessary.
933Guarantees to evaluate sv only once; use the more efficient C<SvPVutf8_force>
934otherwise.
935
936=for apidoc Am|char*|SvPVutf8x|SV* sv|STRLEN len
937Like C<SvPV>, but converts sv to utf8 first if necessary.
938Guarantees to evaluate sv only once; use the more efficient C<SvPVutf8>
939otherwise.
940
941=for apidoc Am|char*|SvPVbytex_force|SV* sv|STRLEN len
942Like C<SvPV_force>, but converts sv to byte representation first if necessary.
943Guarantees to evaluate sv only once; use the more efficient C<SvPVbyte_force>
944otherwise.
945
946=for apidoc Am|char*|SvPVbytex|SV* sv|STRLEN len
947Like C<SvPV>, but converts sv to byte representation first if necessary.
948Guarantees to evaluate sv only once; use the more efficient C<SvPVbyte>
949otherwise.
950
951=for apidoc Am|bool|SvIsCOW|SV* sv
952Returns a boolean indicating whether the SV is Copy-On-Write. (either shared
953hash key scalars, or full Copy On Write scalars if 5.9.0 is configured for
954COW)
955
956=for apidoc Am|bool|SvIsCOW_shared_hash|SV* sv
957Returns a boolean indicating whether the SV is Copy-On-Write shared hash key
958scalar.
959
960=cut
961*/
962
963/* Let us hope that bitmaps for UV and IV are the same */
964#define SvIV(sv) (SvIOK(sv) ? SvIVX(sv) : sv_2iv(sv))
965#define SvUV(sv) (SvIOK(sv) ? SvUVX(sv) : sv_2uv(sv))
966#define SvNV(sv) (SvNOK(sv) ? SvNVX(sv) : sv_2nv(sv))
967
968#define SvIV_nomg(sv) (SvIOK(sv) ? SvIVX(sv) : sv_2iv_flags(sv, 0))
969#define SvUV_nomg(sv) (SvIOK(sv) ? SvUVX(sv) : sv_2uv_flags(sv, 0))
970
971/* ----*/
972
973#define SvPV(sv, lp) SvPV_flags(sv, lp, SV_GMAGIC)
974
975#define SvPV_flags(sv, lp, flags) \
976 ((SvFLAGS(sv) & (SVf_POK)) == SVf_POK \
977 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_2pv_flags(sv, &lp, flags))
978
979#define SvPV_force(sv, lp) SvPV_force_flags(sv, lp, SV_GMAGIC)
980
981#define SvPV_force_nomg(sv, lp) SvPV_force_flags(sv, lp, 0)
982
983#define SvPV_force_flags(sv, lp, flags) \
984 ((SvFLAGS(sv) & (SVf_POK|SVf_THINKFIRST)) == SVf_POK \
985 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_pvn_force_flags(sv, &lp, flags))
986
987#define SvPV_nolen(sv) \
988 ((SvFLAGS(sv) & (SVf_POK)) == SVf_POK \
989 ? SvPVX(sv) : sv_2pv_nolen(sv))
990
991#define SvPV_nomg(sv, lp) SvPV_flags(sv, lp, 0)
992
993/* ----*/
994
995#define SvPVutf8(sv, lp) \
996 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8)) == (SVf_POK|SVf_UTF8) \
997 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_2pvutf8(sv, &lp))
998
999#define SvPVutf8_force(sv, lp) \
1000 ((SvFLAGS(sv) & (SVf_POK|SVf_THINKFIRST)) == (SVf_POK|SVf_UTF8) \
1001 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_pvutf8n_force(sv, &lp))
1002
1003
1004#define SvPVutf8_nolen(sv) \
1005 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8)) == (SVf_POK|SVf_UTF8)\
1006 ? SvPVX(sv) : sv_2pvutf8_nolen(sv))
1007
1008/* ----*/
1009
1010#define SvPVbyte(sv, lp) \
1011 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8)) == (SVf_POK) \
1012 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_2pvbyte(sv, &lp))
1013
1014#define SvPVbyte_force(sv, lp) \
1015 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8|SVf_THINKFIRST)) == (SVf_POK) \
1016 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_pvbyten_force(sv, &lp))
1017
1018#define SvPVbyte_nolen(sv) \
1019 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8)) == (SVf_POK)\
1020 ? SvPVX(sv) : sv_2pvbyte_nolen(sv))
1021
1022
1023
1024/* define FOOx(): idempotent versions of FOO(). If possible, use a local
1025 * var to evaluate the arg once; failing that, use a global if possible;
1026 * failing that, call a function to do the work
1027 */
1028
1029#define SvPVx_force(sv, lp) sv_pvn_force(sv, &lp)
1030#define SvPVutf8x_force(sv, lp) sv_pvutf8n_force(sv, &lp)
1031#define SvPVbytex_force(sv, lp) sv_pvbyten_force(sv, &lp)
1032
1033#if defined(__GNUC__) && !defined(PERL_GCC_BRACE_GROUPS_FORBIDDEN)
1034
1035# define SvIVx(sv) ({SV *_sv = (SV*)(sv); SvIV(_sv); })
1036# define SvUVx(sv) ({SV *_sv = (SV*)(sv); SvUV(_sv); })
1037# define SvNVx(sv) ({SV *_sv = (SV*)(sv); SvNV(_sv); })
1038# define SvPVx(sv, lp) ({SV *_sv = (sv); SvPV(_sv, lp); })
1039# define SvPVutf8x(sv, lp) ({SV *_sv = (sv); SvPVutf8(_sv, lp); })
1040# define SvPVbytex(sv, lp) ({SV *_sv = (sv); SvPVbyte(_sv, lp); })
1041# define SvTRUE(sv) ( \
1042 !sv \
1043 ? 0 \
1044 : SvPOK(sv) \
1045 ? (({XPV *nxpv = (XPV*)SvANY(sv); \
1046 nxpv && \
1047 (nxpv->xpv_cur > 1 || \
1048 (nxpv->xpv_cur && *nxpv->xpv_pv != '0')); }) \
1049 ? 1 \
1050 : 0) \
1051 : \
1052 SvIOK(sv) \
1053 ? SvIVX(sv) != 0 \
1054 : SvNOK(sv) \
1055 ? SvNVX(sv) != 0.0 \
1056 : sv_2bool(sv) )
1057# define SvTRUEx(sv) ({SV *_sv = (sv); SvTRUE(_sv); })
1058
1059#else /* __GNUC__ */
1060
1061/* These inlined macros use globals, which will require a thread
1062 * declaration in user code, so we avoid them under threads */
1063
1064# define SvIVx(sv) ((PL_Sv = (sv)), SvIV(PL_Sv))
1065# define SvUVx(sv) ((PL_Sv = (sv)), SvUV(PL_Sv))
1066# define SvNVx(sv) ((PL_Sv = (sv)), SvNV(PL_Sv))
1067# define SvPVx(sv, lp) ((PL_Sv = (sv)), SvPV(PL_Sv, lp))
1068# define SvPVutf8x(sv, lp) ((PL_Sv = (sv)), SvPVutf8(PL_Sv, lp))
1069# define SvPVbytex(sv, lp) ((PL_Sv = (sv)), SvPVbyte(PL_Sv, lp))
1070# define SvTRUE(sv) ( \
1071 !sv \
1072 ? 0 \
1073 : SvPOK(sv) \
1074 ? ((PL_Xpv = (XPV*)SvANY(sv)) && \
1075 (PL_Xpv->xpv_cur > 1 || \
1076 (PL_Xpv->xpv_cur && *PL_Xpv->xpv_pv != '0')) \
1077 ? 1 \
1078 : 0) \
1079 : \
1080 SvIOK(sv) \
1081 ? SvIVX(sv) != 0 \
1082 : SvNOK(sv) \
1083 ? SvNVX(sv) != 0.0 \
1084 : sv_2bool(sv) )
1085# define SvTRUEx(sv) ((PL_Sv = (sv)), SvTRUE(PL_Sv))
1086#endif /* __GNU__ */
1087
1088#define SvIsCOW(sv) ((SvFLAGS(sv) & (SVf_FAKE | SVf_READONLY)) == \
1089 (SVf_FAKE | SVf_READONLY))
1090#define SvIsCOW_shared_hash(sv) (SvIsCOW(sv) && SvLEN(sv) == 0)
1091
1092/* flag values for sv_*_flags functions */
1093#define SV_IMMEDIATE_UNREF 1
1094#define SV_GMAGIC 2
1095#define SV_COW_DROP_PV 4
1096#define SV_UTF8_NO_ENCODING 8
1097
1098/* We are about to replace the SV's current value. So if it's copy on write
1099 we need to normalise it. Use the SV_COW_DROP_PV flag hint to say that
1100 the value is about to get thrown away, so drop the PV rather than go to
1101 the effort of making a read-write copy only for it to get immediately
1102 discarded. */
1103
1104#define SV_CHECK_THINKFIRST_COW_DROP(sv) if (SvTHINKFIRST(sv)) \
1105 sv_force_normal_flags(sv, SV_COW_DROP_PV)
1106
1107#ifdef PERL_COPY_ON_WRITE
1108# define SvRELEASE_IVX(sv) ((void)((SvFLAGS(sv) & (SVf_OOK|SVf_READONLY|SVf_FAKE)) \
1109 && Perl_sv_release_IVX(aTHX_ sv)))
1110# define SvIsCOW_normal(sv) (SvIsCOW(sv) && SvLEN(sv))
1111
1112#define CAN_COW_MASK (SVs_OBJECT|SVs_GMG|SVs_SMG|SVs_RMG|SVf_IOK|SVf_NOK| \
1113 SVf_POK|SVf_ROK|SVp_IOK|SVp_NOK|SVp_POK|SVf_FAKE| \
1114 SVf_OOK|SVf_BREAK|SVf_READONLY|SVf_AMAGIC)
1115#define CAN_COW_FLAGS (SVp_POK|SVf_POK)
1116
1117#else
1118# define SvRELEASE_IVX(sv) ((void)SvOOK_off(sv))
1119#endif /* PERL_COPY_ON_WRITE */
1120
1121#define SV_CHECK_THINKFIRST(sv) if (SvTHINKFIRST(sv)) \
1122 sv_force_normal_flags(sv, 0)
1123
1124
1125/* all these 'functions' are now just macros */
1126
1127#define sv_pv(sv) SvPV_nolen(sv)
1128#define sv_pvutf8(sv) SvPVutf8_nolen(sv)
1129#define sv_pvbyte(sv) SvPVbyte_nolen(sv)
1130
1131#define sv_pvn_force_nomg(sv, lp) sv_pvn_force_flags(sv, lp, 0)
1132#define sv_utf8_upgrade_nomg(sv) sv_utf8_upgrade_flags(sv, 0)
1133#define sv_catpvn_nomg(dsv, sstr, slen) sv_catpvn_flags(dsv, sstr, slen, 0)
1134#define sv_setsv(dsv, ssv) sv_setsv_flags(dsv, ssv, SV_GMAGIC)
1135#define sv_setsv_nomg(dsv, ssv) sv_setsv_flags(dsv, ssv, 0)
1136#define sv_catsv(dsv, ssv) sv_catsv_flags(dsv, ssv, SV_GMAGIC)
1137#define sv_catsv_nomg(dsv, ssv) sv_catsv_flags(dsv, ssv, 0)
1138#define sv_catpvn(dsv, sstr, slen) sv_catpvn_flags(dsv, sstr, slen, SV_GMAGIC)
1139#define sv_2pv(sv, lp) sv_2pv_flags(sv, lp, SV_GMAGIC)
1140#define sv_2pv_nomg(sv, lp) sv_2pv_flags(sv, lp, 0)
1141#define sv_pvn_force(sv, lp) sv_pvn_force_flags(sv, lp, SV_GMAGIC)
1142#define sv_utf8_upgrade(sv) sv_utf8_upgrade_flags(sv, SV_GMAGIC)
1143#define sv_2iv(sv) sv_2iv_flags(sv, SV_GMAGIC)
1144#define sv_2uv(sv) sv_2uv_flags(sv, SV_GMAGIC)
1145
1146/* Should be named SvCatPVN_utf8_upgrade? */
1147#define sv_catpvn_utf8_upgrade(dsv, sstr, slen, nsv) \
1148 STMT_START { \
1149 if (!(nsv)) \
1150 nsv = sv_2mortal(newSVpvn(sstr, slen)); \
1151 else \
1152 sv_setpvn(nsv, sstr, slen); \
1153 SvUTF8_off(nsv); \
1154 sv_utf8_upgrade(nsv); \
1155 sv_catsv(dsv, nsv); \
1156 } STMT_END
1157
1158/*
1159=for apidoc Am|SV*|newRV_inc|SV* sv
1160
1161Creates an RV wrapper for an SV. The reference count for the original SV is
1162incremented.
1163
1164=cut
1165*/
1166
1167#define newRV_inc(sv) newRV(sv)
1168
1169/* the following macros update any magic values this sv is associated with */
1170
1171/*
1172=head1 Magical Functions
1173
1174=for apidoc Am|void|SvGETMAGIC|SV* sv
1175Invokes C<mg_get> on an SV if it has 'get' magic. This macro evaluates its
1176argument more than once.
1177
1178=for apidoc Am|void|SvSETMAGIC|SV* sv
1179Invokes C<mg_set> on an SV if it has 'set' magic. This macro evaluates its
1180argument more than once.
1181
1182=for apidoc Am|void|SvSetSV|SV* dsb|SV* ssv
1183Calls C<sv_setsv> if dsv is not the same as ssv. May evaluate arguments
1184more than once.
1185
1186=for apidoc Am|void|SvSetSV_nosteal|SV* dsv|SV* ssv
1187Calls a non-destructive version of C<sv_setsv> if dsv is not the same as
1188ssv. May evaluate arguments more than once.
1189
1190=for apidoc Am|void|SvSetMagicSV|SV* dsb|SV* ssv
1191Like C<SvSetSV>, but does any set magic required afterwards.
1192
1193=for apidoc Am|void|SvSetMagicSV_nosteal|SV* dsv|SV* ssv
1194Like C<SvSetMagicSV>, but does any set magic required afterwards.
1195
1196=for apidoc Am|void|SvSHARE|SV* sv
1197Arranges for sv to be shared between threads if a suitable module
1198has been loaded.
1199
1200=for apidoc Am|void|SvLOCK|SV* sv
1201Arranges for a mutual exclusion lock to be obtained on sv if a suitable module
1202has been loaded.
1203
1204=for apidoc Am|void|SvUNLOCK|SV* sv
1205Releases a mutual exclusion lock on sv if a suitable module
1206has been loaded.
1207
1208=head1 SV Manipulation Functions
1209
1210=for apidoc Am|char *|SvGROW|SV* sv|STRLEN len
1211Expands the character buffer in the SV so that it has room for the
1212indicated number of bytes (remember to reserve space for an extra trailing
1213NUL character). Calls C<sv_grow> to perform the expansion if necessary.
1214Returns a pointer to the character buffer.
1215
1216=cut
1217*/
1218
1219#define SvSHARE(sv) CALL_FPTR(PL_sharehook)(aTHX_ sv)
1220#define SvLOCK(sv) CALL_FPTR(PL_lockhook)(aTHX_ sv)
1221#define SvUNLOCK(sv) CALL_FPTR(PL_unlockhook)(aTHX_ sv)
1222
1223#define SvGETMAGIC(x) STMT_START { if (SvGMAGICAL(x)) mg_get(x); } STMT_END
1224#define SvSETMAGIC(x) STMT_START { if (SvSMAGICAL(x)) mg_set(x); } STMT_END
1225
1226#define SvSetSV_and(dst,src,finally) \
1227 STMT_START { \
1228 if ((dst) != (src)) { \
1229 sv_setsv(dst, src); \
1230 finally; \
1231 } \
1232 } STMT_END
1233#define SvSetSV_nosteal_and(dst,src,finally) \
1234 STMT_START { \
1235 if ((dst) != (src)) { \
1236 U32 tMpF = SvFLAGS(src) & SVs_TEMP; \
1237 SvTEMP_off(src); \
1238 sv_setsv(dst, src); \
1239 SvFLAGS(src) |= tMpF; \
1240 finally; \
1241 } \
1242 } STMT_END
1243
1244#define SvSetSV(dst,src) \
1245 SvSetSV_and(dst,src,/*nothing*/;)
1246#define SvSetSV_nosteal(dst,src) \
1247 SvSetSV_nosteal_and(dst,src,/*nothing*/;)
1248
1249#define SvSetMagicSV(dst,src) \
1250 SvSetSV_and(dst,src,SvSETMAGIC(dst))
1251#define SvSetMagicSV_nosteal(dst,src) \
1252 SvSetSV_nosteal_and(dst,src,SvSETMAGIC(dst))
1253
1254
1255#if !defined(SKIP_DEBUGGING)
1256#define SvPEEK(sv) sv_peek(sv)
1257#else
1258#define SvPEEK(sv) ""
1259#endif
1260
1261#define SvIMMORTAL(sv) ((sv)==&PL_sv_undef || (sv)==&PL_sv_yes || (sv)==&PL_sv_no || (sv)==&PL_sv_placeholder)
1262
1263#define boolSV(b) ((b) ? &PL_sv_yes : &PL_sv_no)
1264
1265#define isGV(sv) (SvTYPE(sv) == SVt_PVGV)
1266
1267#define SvGROW(sv,len) (SvLEN(sv) < (len) ? sv_grow(sv,len) : SvPVX(sv))
1268#define Sv_Grow sv_grow
1269
1270#define CLONEf_COPY_STACKS 1
1271#define CLONEf_KEEP_PTR_TABLE 2
1272#define CLONEf_CLONE_HOST 4
1273#define CLONEf_JOIN_IN 8
1274
1275struct clone_params {
1276 AV* stashes;
1277 UV flags;
1278 PerlInterpreter *proto_perl;
1279};