3 * Copyright (C) 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
4 * 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, by Larry Wall and others
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.
12 #undef sv_flags /* Convex has this in <signal.h> for sigvec() */
18 =for apidoc AmU||svtype
19 An enum of flags for Perl types. These are found in the file B<sv.h>
20 in the C<svtype> enum. Test these flags with the C<SvTYPE> macro.
22 =for apidoc AmU||SVt_PV
23 Pointer type flag for scalars. See C<svtype>.
25 =for apidoc AmU||SVt_IV
26 Integer type flag for scalars. See C<svtype>.
28 =for apidoc AmU||SVt_NV
29 Double type flag for scalars. See C<svtype>.
31 =for apidoc AmU||SVt_PVMG
32 Type flag for blessed scalars. See C<svtype>.
34 =for apidoc AmU||SVt_PVAV
35 Type flag for arrays. See C<svtype>.
37 =for apidoc AmU||SVt_PVHV
38 Type flag for hashes. See C<svtype>.
40 =for apidoc AmU||SVt_PVCV
41 Type flag for code refs. See C<svtype>.
56 /* PVBM was here, before BIND replaced it. */
64 SVt_LAST /* keep last in enum. used to size arrays */
68 /* Although Fast Boyer Moore tables are now being stored in PVGVs, for most
69 purposes eternal code wanting to consider PVBM probably needs to think of
71 # define SVt_PVBM SVt_PVMG
74 /* There is collusion here with sv_clear - sv_clear exits early for SVt_NULL
75 and SVt_IV, so never reaches the clause at the end that uses
76 sv_type_details->body_size to determine whether to call safefree(). Hence
77 body_size can be set no-zero to record the size of PTEs and HEs, without
78 fear of bogus frees. */
80 #define PTE_SVSLOT SVt_IV
82 #if defined(PERL_IN_HV_C) || defined(PERL_IN_XS_APITEST)
83 #define HE_SVSLOT SVt_NULL
86 #define PERL_ARENA_ROOTS_SIZE (SVt_LAST)
88 /* typedefs to eliminate some typing */
90 typedef struct hek HEK;
92 /* Using C's structural equivalence to help emulate C++ inheritance here... */
94 /* start with 2 sv-head building blocks */
95 #define _SV_HEAD(ptrtype) \
96 ptrtype sv_any; /* pointer to body */ \
97 U32 sv_refcnt; /* how many references to us */ \
98 U32 sv_flags /* what we are */
100 #define _SV_HEAD_UNION \
104 SV* svu_rv; /* pointer to another SV */ \
105 char* svu_pv; /* pointer to malloced string */ \
112 struct STRUCT_SV { /* struct sv { */
115 #ifdef DEBUG_LEAKING_SCALARS
116 unsigned sv_debug_optype:9; /* the type of OP that allocated us */
117 unsigned sv_debug_inpad:1; /* was allocated in a pad for an OP */
118 unsigned sv_debug_cloned:1; /* was cloned for an ithread */
119 unsigned sv_debug_line:16; /* the line where we were allocated */
120 char * sv_debug_file; /* the file where we were allocated */
125 _SV_HEAD(XPVGV*); /* pointer to xpvgv body */
130 _SV_HEAD(XPVCV*); /* pointer to xpvcv body */
135 _SV_HEAD(XPVAV*); /* pointer to xpvav body */
140 _SV_HEAD(XPVHV*); /* pointer to xpvhv body */
145 _SV_HEAD(XPVIO*); /* pointer to xpvio body */
150 #undef _SV_HEAD_UNION /* ensure no pollution */
153 =head1 SV Manipulation Functions
155 =for apidoc Am|U32|SvREFCNT|SV* sv
156 Returns the value of the object's reference count.
158 =for apidoc Am|SV*|SvREFCNT_inc|SV* sv
159 Increments the reference count of the given SV.
161 All of the following SvREFCNT_inc* macros are optimized versions of
162 SvREFCNT_inc, and can be replaced with SvREFCNT_inc.
164 =for apidoc Am|SV*|SvREFCNT_inc_NN|SV* sv
165 Same as SvREFCNT_inc, but can only be used if you know I<sv>
166 is not NULL. Since we don't have to check the NULLness, it's faster
169 =for apidoc Am|void|SvREFCNT_inc_void|SV* sv
170 Same as SvREFCNT_inc, but can only be used if you don't need the
171 return value. The macro doesn't need to return a meaningful value.
173 =for apidoc Am|void|SvREFCNT_inc_void_NN|SV* sv
174 Same as SvREFCNT_inc, but can only be used if you don't need the return
175 value, and you know that I<sv> is not NULL. The macro doesn't need
176 to return a meaningful value, or check for NULLness, so it's smaller
179 =for apidoc Am|SV*|SvREFCNT_inc_simple|SV* sv
180 Same as SvREFCNT_inc, but can only be used with expressions without side
181 effects. Since we don't have to store a temporary value, it's faster.
183 =for apidoc Am|SV*|SvREFCNT_inc_simple_NN|SV* sv
184 Same as SvREFCNT_inc_simple, but can only be used if you know I<sv>
185 is not NULL. Since we don't have to check the NULLness, it's faster
188 =for apidoc Am|void|SvREFCNT_inc_simple_void|SV* sv
189 Same as SvREFCNT_inc_simple, but can only be used if you don't need the
190 return value. The macro doesn't need to return a meaningful value.
192 =for apidoc Am|void|SvREFCNT_inc_simple_void_NN|SV* sv
193 Same as SvREFCNT_inc, but can only be used if you don't need the return
194 value, and you know that I<sv> is not NULL. The macro doesn't need
195 to return a meaningful value, or check for NULLness, so it's smaller
198 =for apidoc Am|void|SvREFCNT_dec|SV* sv
199 Decrements the reference count of the given SV.
201 =for apidoc Am|svtype|SvTYPE|SV* sv
202 Returns the type of the SV. See C<svtype>.
204 =for apidoc Am|void|SvUPGRADE|SV* sv|svtype type
205 Used to upgrade an SV to a more complex form. Uses C<sv_upgrade> to
206 perform the upgrade if necessary. See C<svtype>.
211 #define SvANY(sv) (sv)->sv_any
212 #define SvFLAGS(sv) (sv)->sv_flags
213 #define SvREFCNT(sv) (sv)->sv_refcnt
215 #if defined(__GNUC__) && !defined(__STRICT_ANSI__) && !defined(PERL_GCC_PEDANTIC)
216 # define SvREFCNT_inc(sv) \
218 SV * const _sv = (SV*)(sv); \
223 # define SvREFCNT_inc_simple(sv) \
229 # define SvREFCNT_inc_NN(sv) \
231 SV * const _sv = (SV*)(sv); \
235 # define SvREFCNT_inc_void(sv) \
237 SV * const _sv = (SV*)(sv); \
239 (void)(SvREFCNT(_sv)++); \
242 # define SvREFCNT_inc(sv) \
243 ((PL_Sv=(SV*)(sv)) ? (++(SvREFCNT(PL_Sv)),PL_Sv) : NULL)
244 # define SvREFCNT_inc_simple(sv) \
245 ((sv) ? (SvREFCNT(sv)++,(SV*)(sv)) : NULL)
246 # define SvREFCNT_inc_NN(sv) \
247 (PL_Sv=(SV*)(sv),++(SvREFCNT(PL_Sv)),PL_Sv)
248 # define SvREFCNT_inc_void(sv) \
249 (void)((PL_Sv=(SV*)(sv)) ? ++(SvREFCNT(PL_Sv)) : 0)
252 /* These guys don't need the curly blocks */
253 #define SvREFCNT_inc_simple_void(sv) STMT_START { if (sv) SvREFCNT(sv)++; } STMT_END
254 #define SvREFCNT_inc_simple_NN(sv) (++(SvREFCNT(sv)),(SV*)(sv))
255 #define SvREFCNT_inc_void_NN(sv) (void)(++SvREFCNT((SV*)(sv)))
256 #define SvREFCNT_inc_simple_void_NN(sv) (void)(++SvREFCNT((SV*)(sv)))
258 #if defined(__GNUC__) && !defined(__STRICT_ANSI__) && !defined(PERL_GCC_PEDANTIC)
259 # define SvREFCNT_dec(sv) \
261 SV * const _sv = (SV*)(sv); \
263 if (SvREFCNT(_sv)) { \
264 if (--(SvREFCNT(_sv)) == 0) \
265 Perl_sv_free2(aTHX_ _sv); \
272 #define SvREFCNT_dec(sv) sv_free((SV*)(sv))
275 #define SVTYPEMASK 0xff
276 #define SvTYPE(sv) ((svtype)((sv)->sv_flags & SVTYPEMASK))
278 /* Sadly there are some parts of the core that have pointers to already-freed
279 SV heads, and rely on being able to tell that they are now free. So mark
280 them all by using a consistent macro. */
281 #define SvIS_FREED(sv) ((sv)->sv_flags == SVTYPEMASK)
283 #define SvUPGRADE(sv, mt) (SvTYPE(sv) >= (mt) || (sv_upgrade(sv, mt), 1))
285 #define SVf_IOK 0x00000100 /* has valid public integer value */
286 #define SVf_NOK 0x00000200 /* has valid public numeric value */
287 #define SVf_POK 0x00000400 /* has valid public pointer value */
288 #define SVf_ROK 0x00000800 /* has a valid reference pointer */
290 #define SVp_IOK 0x00001000 /* has valid non-public integer value */
291 #define SVp_NOK 0x00002000 /* has valid non-public numeric value */
292 #define SVp_POK 0x00004000 /* has valid non-public pointer value */
293 #define SVp_SCREAM 0x00008000 /* has been studied? */
294 #define SVphv_CLONEABLE SVp_SCREAM /* PVHV (stashes) clone its objects */
295 #define SVpgv_GP SVp_SCREAM /* GV has a valid GP */
296 #define SVprv_PCS_IMPORTED SVp_SCREAM /* RV is a proxy for a constant
297 subroutine in another package. Set the
298 CvIMPORTED_CV_ON() if it needs to be
299 expanded to a real GV */
301 #define SVs_PADSTALE 0x00010000 /* lexical has gone out of scope */
302 #define SVpad_STATE 0x00010000 /* pad name is a "state" var */
303 #define SVs_PADTMP 0x00020000 /* in use as tmp */
304 #define SVpad_TYPED 0x00020000 /* pad name is a Typed Lexical */
305 #define SVs_PADMY 0x00040000 /* in use a "my" variable */
306 #define SVpad_OUR 0x00040000 /* pad name is "our" instead of "my" */
307 #define SVs_TEMP 0x00080000 /* string is stealable? */
308 #define SVs_OBJECT 0x00100000 /* is "blessed" */
309 #define SVs_GMG 0x00200000 /* has magical get method */
310 #define SVs_SMG 0x00400000 /* has magical set method */
311 #define SVs_RMG 0x00800000 /* has random magical methods */
313 #define SVf_FAKE 0x01000000 /* 0: glob or lexical is just a copy
314 1: SV head arena wasn't malloc()ed
315 2: in conjunction with SVf_READONLY
316 marks a shared hash key scalar
317 (SvLEN == 0) or a copy on write
318 string (SvLEN != 0) [SvIsCOW(sv)]
319 3: For PVCV, whether CvUNIQUE(cv)
320 refers to an eval or once only
321 [CvEVAL(cv), CvSPECIAL(cv)]
322 4: Whether the regexp pointer is in
323 fact an offset [SvREPADTMP(sv)]
324 5: On a pad name SV, that slot in the
325 frame AV is a REFCNT'ed reference
326 to a lexical from "outside". */
327 #define SVphv_REHASH SVf_FAKE /* 6: On a PVHV, hash values are being
329 #define SVf_OOK 0x02000000 /* has valid offset value. For a PVHV this
330 means that a hv_aux struct is present
331 after the main array */
332 #define SVf_BREAK 0x04000000 /* refcnt is artificially low - used by
333 SV's in final arena cleanup */
334 #define SVf_READONLY 0x08000000 /* may not be modified */
339 #define SVf_THINKFIRST (SVf_READONLY|SVf_ROK|SVf_FAKE)
341 #define SVf_OK (SVf_IOK|SVf_NOK|SVf_POK|SVf_ROK| \
342 SVp_IOK|SVp_NOK|SVp_POK|SVpgv_GP)
344 #define PRIVSHIFT 4 /* (SVp_?OK >> PRIVSHIFT) == SVf_?OK */
346 #define SVf_AMAGIC 0x10000000 /* has magical overloaded methods */
347 #define SVf_UTF8 0x20000000 /* SvPV is UTF-8 encoded
348 This is also set on RVs whose overloaded
349 stringification is UTF-8. This might
350 only happen as a side effect of SvPV() */
352 /* Ensure this value does not clash with the GV_ADD* flags in gv.h */
354 /* Some private flags. */
357 #define SVphv_SHAREKEYS 0x20000000 /* PVHV keys live on shared string table */
358 /* PVNV, PVMG, presumably only inside pads */
359 #define SVpad_NAME 0x40000000 /* This SV is a name in the PAD, so
360 SVpad_TYPED, SVpad_OUR and SVpad_STATE
363 #define SVpav_REAL 0x40000000 /* free old entries */
365 #define SVphv_LAZYDEL 0x40000000 /* entry in xhv_eiter must be deleted */
366 /* This is only set true on a PVGV when it's playing "PVBM", but is tested for
367 on any regular scalar (anything <= PVLV) */
368 #define SVpbm_VALID 0x40000000
370 #define SVrepl_EVAL 0x40000000 /* Replacement part of s///e */
372 /* IV, PVIV, PVNV, PVMG, PVGV and (I assume) PVLV */
373 /* Presumably IVs aren't stored in pads */
374 #define SVf_IVisUV 0x80000000 /* use XPVUV instead of XPVIV */
376 #define SVpav_REIFY 0x80000000 /* can become real */
378 #define SVphv_HASKFLAGS 0x80000000 /* keys have flag byte after hash */
380 #define SVpfm_COMPILED 0x80000000 /* FORMLINE is compiled */
381 /* PVGV when SVpbm_VALID is true */
382 #define SVpbm_TAIL 0x80000000
383 /* RV upwards. However, SVf_ROK and SVp_IOK are exclusive */
384 #define SVprv_WEAKREF 0x80000000 /* Weak reference */
389 NV xnv_nv; /* numeric value, if any */
394 } xpad_cop_seq; /* used by pad.c for cop_sequence */
396 U32 xbm_previous; /* how many characters in string before rare? */
398 U8 xbm_rare; /* rarest character in string */
399 } xbm_s; /* fields from PVBM */
401 STRLEN xpv_cur; /* length of svu_pv as a C string */
402 STRLEN xpv_len; /* allocated size */
406 STRLEN xpv_cur; /* length of svu_pv as a C string */
407 STRLEN xpv_len; /* allocated size */
412 NV xnv_nv; /* numeric value, if any */
417 } xpad_cop_seq; /* used by pad.c for cop_sequence */
419 U32 xbm_previous; /* how many characters in string before rare? */
421 U8 xbm_rare; /* rarest character in string */
422 } xbm_s; /* fields from PVBM */
424 STRLEN xpv_cur; /* length of svu_pv as a C string */
425 STRLEN xpv_len; /* allocated size */
427 IV xivu_iv; /* integer value or pv offset */
436 STRLEN xpv_cur; /* length of svu_pv as a C string */
437 STRLEN xpv_len; /* allocated size */
439 IV xivu_iv; /* integer value or pv offset */
447 #define xiv_iv xiv_u.xivu_iv
451 NV xnv_nv; /* numeric value, if any */
456 } xpad_cop_seq; /* used by pad.c for cop_sequence */
458 U32 xbm_previous; /* how many characters in string before rare? */
460 U8 xbm_rare; /* rarest character in string */
461 } xbm_s; /* fields from PVBM */
463 STRLEN xpv_cur; /* length of svu_pv as a C string */
464 STRLEN xpv_len; /* allocated size */
467 UV xuvu_uv; /* unsigned value or pv offset */
473 #define xuv_uv xuv_u.xuvu_uv
477 NV xnv_nv; /* numeric value, if any */
482 } xpad_cop_seq; /* used by pad.c for cop_sequence */
484 U32 xbm_previous; /* how many characters in string before rare? */
486 U8 xbm_rare; /* rarest character in string */
487 } xbm_s; /* fields from PVBM */
489 STRLEN xpv_cur; /* length of svu_pv as a C string */
490 STRLEN xpv_len; /* allocated size */
492 IV xivu_iv; /* integer value or pv offset */
500 /* These structure must match the beginning of struct xpvhv in hv.h. */
503 NV xnv_nv; /* numeric value, if any */
508 } xpad_cop_seq; /* used by pad.c for cop_sequence */
510 U32 xbm_previous; /* how many characters in string before rare? */
512 U8 xbm_rare; /* rarest character in string */
513 } xbm_s; /* fields from PVBM */
515 STRLEN xpv_cur; /* length of svu_pv as a C string */
516 STRLEN xpv_len; /* allocated size */
518 IV xivu_iv; /* integer value or pv offset */
525 MAGIC* xmg_magic; /* linked list of magicalness */
526 HV* xmg_ourstash; /* Stash for our (when SvPAD_OUR is true) */
528 HV* xmg_stash; /* class package */
533 NV xnv_nv; /* numeric value, if any */
538 } xpad_cop_seq; /* used by pad.c for cop_sequence */
540 U32 xbm_previous; /* how many characters in string before rare? */
542 U8 xbm_rare; /* rarest character in string */
543 } xbm_s; /* fields from PVBM */
545 STRLEN xpv_cur; /* length of svu_pv as a C string */
546 STRLEN xpv_len; /* allocated size */
548 IV xivu_iv; /* integer value or pv offset */
552 HEK * xivu_namehek; /* GvNAME */
555 MAGIC* xmg_magic; /* linked list of magicalness */
556 HV* xmg_ourstash; /* Stash for our (when SvPAD_OUR is true) */
558 HV* xmg_stash; /* class package */
563 char xlv_type; /* k=keys .=pos x=substr v=vec /=join/re
564 * y=alem/helem/iter t=tie T=tied HE */
567 /* This structure works in 3 ways - regular scalar, GV with GP, or fast
572 HV * xgv_stash; /* The stash of this GV */
576 } xpad_cop_seq; /* used by pad.c for cop_sequence */
578 U32 xbm_previous; /* how many characters in string before rare? */
580 U8 xbm_rare; /* rarest character in string */
581 } xbm_s; /* fields from PVBM */
583 STRLEN xpv_cur; /* xgv_flags */
584 STRLEN xpv_len; /* 0 */
589 I32 xivu_i32; /* is this constant pattern being useful? */
590 HEK * xivu_namehek; /* GvNAME */
593 MAGIC* xmg_magic; /* linked list of magicalness */
594 HV* xmg_ourstash; /* Stash for our (when SvPAD_OUR is true) */
596 HV* xmg_stash; /* class package */
600 /* This structure must match XPVCV in cv.h */
602 typedef U16 cv_flags_t;
606 NV xnv_nv; /* numeric value, if any */
611 } xpad_cop_seq; /* used by pad.c for cop_sequence */
613 U32 xbm_previous; /* how many characters in string before rare? */
615 U8 xbm_rare; /* rarest character in string */
616 } xbm_s; /* fields from PVBM */
618 STRLEN xpv_cur; /* length of svu_pv as a C string */
619 STRLEN xpv_len; /* allocated size */
621 IV xivu_iv; /* PVFMs use the pv offset */
628 MAGIC* xmg_magic; /* linked list of magicalness */
629 HV* xmg_ourstash; /* Stash for our (when SvPAD_OUR is true) */
631 HV* xmg_stash; /* class package */
640 void (*xcv_xsub) (pTHX_ CV*);
646 U32 xcv_outside_seq; /* the COP sequence (at the point of our
647 * compilation) in the lexically enclosing
649 cv_flags_t xcv_flags;
654 STRLEN xpv_cur; /* length of svu_pv as a C string */
655 STRLEN xpv_len; /* allocated size */
657 IV xivu_iv; /* PVFMs use the pv offset */
664 MAGIC* xmg_magic; /* linked list of magicalness */
665 HV* xmg_ourstash; /* Stash for our (when SvPAD_OUR is true) */
667 HV* xmg_stash; /* class package */
676 void (*xcv_xsub) (pTHX_ CV*);
682 U32 xcv_outside_seq; /* the COP sequence (at the point of our
683 * compilation) in the lexically enclosing
685 cv_flags_t xcv_flags;
691 NV xnv_nv; /* numeric value, if any */
696 } xpad_cop_seq; /* used by pad.c for cop_sequence */
698 U32 xbm_previous; /* how many characters in string before rare? */
700 U8 xbm_rare; /* rarest character in string */
701 } xbm_s; /* fields from PVBM */
703 STRLEN xpv_cur; /* length of svu_pv as a C string */
704 STRLEN xpv_len; /* allocated size */
706 IV xivu_iv; /* integer value or pv offset */
713 MAGIC* xmg_magic; /* linked list of magicalness */
714 HV* xmg_ourstash; /* Stash for our (when SvPAD_OUR is true) */
716 HV* xmg_stash; /* class package */
718 PerlIO * xio_ifp; /* ifp and ofp are normally the same */
719 PerlIO * xio_ofp; /* but sockets need separate streams */
720 /* Cray addresses everything by word boundaries (64 bits) and
721 * code and data pointers cannot be mixed (which is exactly what
722 * Perl_filter_add() tries to do with the dirp), hence the following
723 * union trick (as suggested by Gurusamy Sarathy).
724 * For further information see Geir Johansen's problem report titled
725 [ID 20000612.002] Perl problem on Cray system
726 * The any pointer (known as IoANY()) will also be a good place
727 * to hang any IO disciplines to.
730 DIR * xiou_dirp; /* for opendir, readdir, etc */
731 void * xiou_any; /* for alignment */
733 IV xio_lines; /* $. */
734 IV xio_page; /* $% */
735 IV xio_page_len; /* $= */
736 IV xio_lines_left; /* $- */
737 char * xio_top_name; /* $^ */
738 GV * xio_top_gv; /* $^ */
739 char * xio_fmt_name; /* $~ */
740 GV * xio_fmt_gv; /* $~ */
741 char * xio_bottom_name;/* $^B */
742 GV * xio_bottom_gv; /* $^B */
743 short xio_subprocess; /* -| or |- */
747 #define xio_dirp xio_dirpu.xiou_dirp
748 #define xio_any xio_dirpu.xiou_any
750 #define IOf_ARGV 1 /* this fp iterates over ARGV */
751 #define IOf_START 2 /* check for null ARGV and substitute '-' */
752 #define IOf_FLUSH 4 /* this fp wants a flush after write op */
753 #define IOf_DIDTOP 8 /* just did top of form */
754 #define IOf_UNTAINT 16 /* consider this fp (and its data) "safe" */
755 #define IOf_NOLINE 32 /* slurped a pseudo-line from empty file */
756 #define IOf_FAKE_DIRP 64 /* xio_dirp is fake (source filters kludge) */
758 /* The following macros define implementation-independent predicates on SVs. */
761 =for apidoc Am|U32|SvNIOK|SV* sv
762 Returns a U32 value indicating whether the SV contains a number, integer or
765 =for apidoc Am|U32|SvNIOKp|SV* sv
766 Returns a U32 value indicating whether the SV contains a number, integer or
767 double. Checks the B<private> setting. Use C<SvNIOK>.
769 =for apidoc Am|void|SvNIOK_off|SV* sv
770 Unsets the NV/IV status of an SV.
772 =for apidoc Am|U32|SvOK|SV* sv
773 Returns a U32 value indicating whether the value is an SV. It also tells
774 whether the value is defined or not.
776 =for apidoc Am|U32|SvIOKp|SV* sv
777 Returns a U32 value indicating whether the SV contains an integer. Checks
778 the B<private> setting. Use C<SvIOK>.
780 =for apidoc Am|U32|SvNOKp|SV* sv
781 Returns a U32 value indicating whether the SV contains a double. Checks the
782 B<private> setting. Use C<SvNOK>.
784 =for apidoc Am|U32|SvPOKp|SV* sv
785 Returns a U32 value indicating whether the SV contains a character string.
786 Checks the B<private> setting. Use C<SvPOK>.
788 =for apidoc Am|U32|SvIOK|SV* sv
789 Returns a U32 value indicating whether the SV contains an integer.
791 =for apidoc Am|void|SvIOK_on|SV* sv
792 Tells an SV that it is an integer.
794 =for apidoc Am|void|SvIOK_off|SV* sv
795 Unsets the IV status of an SV.
797 =for apidoc Am|void|SvIOK_only|SV* sv
798 Tells an SV that it is an integer and disables all other OK bits.
800 =for apidoc Am|void|SvIOK_only_UV|SV* sv
801 Tells and SV that it is an unsigned integer and disables all other OK bits.
803 =for apidoc Am|bool|SvIOK_UV|SV* sv
804 Returns a boolean indicating whether the SV contains an unsigned integer.
806 =for apidoc Am|bool|SvUOK|SV* sv
807 Returns a boolean indicating whether the SV contains an unsigned integer.
809 =for apidoc Am|bool|SvIOK_notUV|SV* sv
810 Returns a boolean indicating whether the SV contains a signed integer.
812 =for apidoc Am|U32|SvNOK|SV* sv
813 Returns a U32 value indicating whether the SV contains a double.
815 =for apidoc Am|void|SvNOK_on|SV* sv
816 Tells an SV that it is a double.
818 =for apidoc Am|void|SvNOK_off|SV* sv
819 Unsets the NV status of an SV.
821 =for apidoc Am|void|SvNOK_only|SV* sv
822 Tells an SV that it is a double and disables all other OK bits.
824 =for apidoc Am|U32|SvPOK|SV* sv
825 Returns a U32 value indicating whether the SV contains a character
828 =for apidoc Am|void|SvPOK_on|SV* sv
829 Tells an SV that it is a string.
831 =for apidoc Am|void|SvPOK_off|SV* sv
832 Unsets the PV status of an SV.
834 =for apidoc Am|void|SvPOK_only|SV* sv
835 Tells an SV that it is a string and disables all other OK bits.
836 Will also turn off the UTF-8 status.
838 =for apidoc Am|bool|SvVOK|SV* sv
839 Returns a boolean indicating whether the SV contains a v-string.
841 =for apidoc Am|U32|SvOOK|SV* sv
842 Returns a U32 indicating whether the SvIVX is a valid offset value for
843 the SvPVX. This hack is used internally to speed up removal of characters
844 from the beginning of a SvPV. When SvOOK is true, then the start of the
845 allocated string buffer is really (SvPVX - SvIVX).
847 =for apidoc Am|U32|SvROK|SV* sv
848 Tests if the SV is an RV.
850 =for apidoc Am|void|SvROK_on|SV* sv
851 Tells an SV that it is an RV.
853 =for apidoc Am|void|SvROK_off|SV* sv
854 Unsets the RV status of an SV.
856 =for apidoc Am|SV*|SvRV|SV* sv
857 Dereferences an RV to return the SV.
859 =for apidoc Am|IV|SvIVX|SV* sv
860 Returns the raw value in the SV's IV slot, without checks or conversions.
861 Only use when you are sure SvIOK is true. See also C<SvIV()>.
863 =for apidoc Am|UV|SvUVX|SV* sv
864 Returns the raw value in the SV's UV slot, without checks or conversions.
865 Only use when you are sure SvIOK is true. See also C<SvUV()>.
867 =for apidoc Am|NV|SvNVX|SV* sv
868 Returns the raw value in the SV's NV slot, without checks or conversions.
869 Only use when you are sure SvNOK is true. See also C<SvNV()>.
871 =for apidoc Am|char*|SvPVX|SV* sv
872 Returns a pointer to the physical string in the SV. The SV must contain a
875 =for apidoc Am|STRLEN|SvCUR|SV* sv
876 Returns the length of the string which is in the SV. See C<SvLEN>.
878 =for apidoc Am|STRLEN|SvLEN|SV* sv
879 Returns the size of the string buffer in the SV, not including any part
880 attributable to C<SvOOK>. See C<SvCUR>.
882 =for apidoc Am|char*|SvEND|SV* sv
883 Returns a pointer to the last character in the string which is in the SV.
884 See C<SvCUR>. Access the character as *(SvEND(sv)).
886 =for apidoc Am|HV*|SvSTASH|SV* sv
887 Returns the stash of the SV.
889 =for apidoc Am|void|SvIV_set|SV* sv|IV val
890 Set the value of the IV pointer in sv to val. It is possible to perform
891 the same function of this macro with an lvalue assignment to C<SvIVX>.
892 With future Perls, however, it will be more efficient to use
893 C<SvIV_set> instead of the lvalue assignment to C<SvIVX>.
895 =for apidoc Am|void|SvNV_set|SV* sv|NV val
896 Set the value of the NV pointer in sv to val. See C<SvIV_set>.
898 =for apidoc Am|void|SvPV_set|SV* sv|char* val
899 Set the value of the PV pointer in sv to val. See C<SvIV_set>.
901 =for apidoc Am|void|SvUV_set|SV* sv|UV val
902 Set the value of the UV pointer in sv to val. See C<SvIV_set>.
904 =for apidoc Am|void|SvRV_set|SV* sv|SV* val
905 Set the value of the RV pointer in sv to val. See C<SvIV_set>.
907 =for apidoc Am|void|SvMAGIC_set|SV* sv|MAGIC* val
908 Set the value of the MAGIC pointer in sv to val. See C<SvIV_set>.
910 =for apidoc Am|void|SvSTASH_set|SV* sv|HV* val
911 Set the value of the STASH pointer in sv to val. See C<SvIV_set>.
913 =for apidoc Am|void|SvCUR_set|SV* sv|STRLEN len
914 Set the current length of the string which is in the SV. See C<SvCUR>
917 =for apidoc Am|void|SvLEN_set|SV* sv|STRLEN len
918 Set the actual length of the string which is in the SV. See C<SvIV_set>.
923 #define SvNIOK(sv) (SvFLAGS(sv) & (SVf_IOK|SVf_NOK))
924 #define SvNIOKp(sv) (SvFLAGS(sv) & (SVp_IOK|SVp_NOK))
925 #define SvNIOK_off(sv) (SvFLAGS(sv) &= ~(SVf_IOK|SVf_NOK| \
926 SVp_IOK|SVp_NOK|SVf_IVisUV))
928 #if defined(__GNUC__) && !defined(PERL_GCC_BRACE_GROUPS_FORBIDDEN)
929 #define assert_not_ROK(sv) ({assert(!SvROK(sv) || !SvRV(sv));}),
930 #define assert_not_glob(sv) ({assert(!isGV_with_GP(sv));}),
932 #define assert_not_ROK(sv)
933 #define assert_not_glob(sv)
936 #define SvOK(sv) ((SvTYPE(sv) == SVt_BIND) \
937 ? (SvFLAGS(SvRV(sv)) & SVf_OK) \
938 : (SvFLAGS(sv) & SVf_OK))
939 #define SvOK_off(sv) (assert_not_ROK(sv) assert_not_glob(sv) \
940 SvFLAGS(sv) &= ~(SVf_OK| \
941 SVf_IVisUV|SVf_UTF8), \
943 #define SvOK_off_exc_UV(sv) (assert_not_ROK(sv) \
944 SvFLAGS(sv) &= ~(SVf_OK| \
948 #define SvOKp(sv) (SvFLAGS(sv) & (SVp_IOK|SVp_NOK|SVp_POK))
949 #define SvIOKp(sv) (SvFLAGS(sv) & SVp_IOK)
950 #define SvIOKp_on(sv) (assert_not_glob(sv) SvRELEASE_IVX(sv), \
951 SvFLAGS(sv) |= SVp_IOK)
952 #define SvNOKp(sv) (SvFLAGS(sv) & SVp_NOK)
953 #define SvNOKp_on(sv) (assert_not_glob(sv) SvFLAGS(sv) |= SVp_NOK)
954 #define SvPOKp(sv) (SvFLAGS(sv) & SVp_POK)
955 #define SvPOKp_on(sv) (assert_not_ROK(sv) assert_not_glob(sv) \
956 SvFLAGS(sv) |= SVp_POK)
958 #define SvIOK(sv) (SvFLAGS(sv) & SVf_IOK)
959 #define SvIOK_on(sv) (assert_not_glob(sv) SvRELEASE_IVX(sv), \
960 SvFLAGS(sv) |= (SVf_IOK|SVp_IOK))
961 #define SvIOK_off(sv) (SvFLAGS(sv) &= ~(SVf_IOK|SVp_IOK|SVf_IVisUV))
962 #define SvIOK_only(sv) (SvOK_off(sv), \
963 SvFLAGS(sv) |= (SVf_IOK|SVp_IOK))
964 #define SvIOK_only_UV(sv) (assert_not_glob(sv) SvOK_off_exc_UV(sv), \
965 SvFLAGS(sv) |= (SVf_IOK|SVp_IOK))
967 #define SvIOK_UV(sv) ((SvFLAGS(sv) & (SVf_IOK|SVf_IVisUV)) \
968 == (SVf_IOK|SVf_IVisUV))
969 #define SvUOK(sv) SvIOK_UV(sv)
970 #define SvIOK_notUV(sv) ((SvFLAGS(sv) & (SVf_IOK|SVf_IVisUV)) \
973 #define SvIsUV(sv) (SvFLAGS(sv) & SVf_IVisUV)
974 #define SvIsUV_on(sv) (SvFLAGS(sv) |= SVf_IVisUV)
975 #define SvIsUV_off(sv) (SvFLAGS(sv) &= ~SVf_IVisUV)
977 #define SvNOK(sv) (SvFLAGS(sv) & SVf_NOK)
978 #define SvNOK_on(sv) (assert_not_glob(sv) \
979 SvFLAGS(sv) |= (SVf_NOK|SVp_NOK))
980 #define SvNOK_off(sv) (SvFLAGS(sv) &= ~(SVf_NOK|SVp_NOK))
981 #define SvNOK_only(sv) (SvOK_off(sv), \
982 SvFLAGS(sv) |= (SVf_NOK|SVp_NOK))
985 =for apidoc Am|U32|SvUTF8|SV* sv
986 Returns a U32 value indicating whether the SV contains UTF-8 encoded data.
987 Call this after SvPV() in case any call to string overloading updates the
990 =for apidoc Am|void|SvUTF8_on|SV *sv
991 Turn on the UTF-8 status of an SV (the data is not changed, just the flag).
992 Do not use frivolously.
994 =for apidoc Am|void|SvUTF8_off|SV *sv
995 Unsets the UTF-8 status of an SV.
997 =for apidoc Am|void|SvPOK_only_UTF8|SV* sv
998 Tells an SV that it is a string and disables all other OK bits,
999 and leaves the UTF-8 status as it was.
1004 /* Ensure the return value of this macro does not clash with the GV_ADD* flags
1006 #define SvUTF8(sv) (SvFLAGS(sv) & SVf_UTF8)
1007 #define SvUTF8_on(sv) (SvFLAGS(sv) |= (SVf_UTF8))
1008 #define SvUTF8_off(sv) (SvFLAGS(sv) &= ~(SVf_UTF8))
1010 #define SvPOK(sv) (SvFLAGS(sv) & SVf_POK)
1011 #define SvPOK_on(sv) (assert_not_ROK(sv) assert_not_glob(sv) \
1012 SvFLAGS(sv) |= (SVf_POK|SVp_POK))
1013 #define SvPOK_off(sv) (SvFLAGS(sv) &= ~(SVf_POK|SVp_POK))
1014 #define SvPOK_only(sv) (assert_not_ROK(sv) assert_not_glob(sv) \
1015 SvFLAGS(sv) &= ~(SVf_OK| \
1016 SVf_IVisUV|SVf_UTF8), \
1017 SvFLAGS(sv) |= (SVf_POK|SVp_POK))
1018 #define SvPOK_only_UTF8(sv) (assert_not_ROK(sv) assert_not_glob(sv) \
1019 SvFLAGS(sv) &= ~(SVf_OK| \
1021 SvFLAGS(sv) |= (SVf_POK|SVp_POK))
1023 #define SvVOK(sv) (SvMAGICAL(sv) \
1024 && mg_find(sv,PERL_MAGIC_vstring))
1025 /* returns the vstring magic, if any */
1026 #define SvVSTRING_mg(sv) (SvMAGICAL(sv) \
1027 ? mg_find(sv,PERL_MAGIC_vstring) : NULL)
1029 #define SvOOK(sv) (SvFLAGS(sv) & SVf_OOK)
1030 #define SvOOK_on(sv) ((void)SvIOK_off(sv), SvFLAGS(sv) |= SVf_OOK)
1031 #define SvOOK_off(sv) ((void)(SvOOK(sv) && sv_backoff(sv)))
1033 #define SvFAKE(sv) (SvFLAGS(sv) & SVf_FAKE)
1034 #define SvFAKE_on(sv) (SvFLAGS(sv) |= SVf_FAKE)
1035 #define SvFAKE_off(sv) (SvFLAGS(sv) &= ~SVf_FAKE)
1037 #define SvROK(sv) (SvFLAGS(sv) & SVf_ROK)
1038 #define SvROK_on(sv) (SvFLAGS(sv) |= SVf_ROK)
1039 #define SvROK_off(sv) (SvFLAGS(sv) &= ~(SVf_ROK))
1041 #define SvMAGICAL(sv) (SvFLAGS(sv) & (SVs_GMG|SVs_SMG|SVs_RMG))
1042 #define SvMAGICAL_on(sv) (SvFLAGS(sv) |= (SVs_GMG|SVs_SMG|SVs_RMG))
1043 #define SvMAGICAL_off(sv) (SvFLAGS(sv) &= ~(SVs_GMG|SVs_SMG|SVs_RMG))
1045 #define SvGMAGICAL(sv) (SvFLAGS(sv) & SVs_GMG)
1046 #define SvGMAGICAL_on(sv) (SvFLAGS(sv) |= SVs_GMG)
1047 #define SvGMAGICAL_off(sv) (SvFLAGS(sv) &= ~SVs_GMG)
1049 #define SvSMAGICAL(sv) (SvFLAGS(sv) & SVs_SMG)
1050 #define SvSMAGICAL_on(sv) (SvFLAGS(sv) |= SVs_SMG)
1051 #define SvSMAGICAL_off(sv) (SvFLAGS(sv) &= ~SVs_SMG)
1053 #define SvRMAGICAL(sv) (SvFLAGS(sv) & SVs_RMG)
1054 #define SvRMAGICAL_on(sv) (SvFLAGS(sv) |= SVs_RMG)
1055 #define SvRMAGICAL_off(sv) (SvFLAGS(sv) &= ~SVs_RMG)
1057 #define SvAMAGIC(sv) (SvROK(sv) && (SvFLAGS(SvRV(sv)) & SVf_AMAGIC))
1058 #if defined(__GNUC__) && !defined(PERL_GCC_BRACE_GROUPS_FORBIDDEN)
1059 # define SvAMAGIC_on(sv) ({ SV * const kloink = sv; \
1060 assert(SvROK(kloink)); \
1061 SvFLAGS(SvRV(kloink)) |= SVf_AMAGIC; \
1063 # define SvAMAGIC_off(sv) ({ SV * const kloink = sv; \
1065 SvFLAGS(SvRV(kloink)) &= ~SVf_AMAGIC;\
1068 # define SvAMAGIC_on(sv) (SvFLAGS(SvRV(sv)) |= SVf_AMAGIC)
1069 # define SvAMAGIC_off(sv) \
1070 (SvROK(sv) && (SvFLAGS(SvRV(sv)) &= ~SVf_AMAGIC))
1074 =for apidoc Am|char*|SvGAMAGIC|SV* sv
1076 Returns true if the SV has get magic or overloading. If either is true then
1077 the scalar is active data, and has the potential to return a new value every
1078 time it is accessed. Hence you must be careful to only read it once per user
1079 logical operation and work with that returned value. If neither is true then
1080 the scalar's value cannot change unless written to.
1085 #define SvGAMAGIC(sv) (SvGMAGICAL(sv) || SvAMAGIC(sv))
1087 #define Gv_AMG(stash) (PL_amagic_generation && Gv_AMupdate(stash))
1089 #define SvWEAKREF(sv) ((SvFLAGS(sv) & (SVf_ROK|SVprv_WEAKREF)) \
1090 == (SVf_ROK|SVprv_WEAKREF))
1091 #define SvWEAKREF_on(sv) (SvFLAGS(sv) |= (SVf_ROK|SVprv_WEAKREF))
1092 #define SvWEAKREF_off(sv) (SvFLAGS(sv) &= ~(SVf_ROK|SVprv_WEAKREF))
1094 #define SvPCS_IMPORTED(sv) ((SvFLAGS(sv) & (SVf_ROK|SVprv_PCS_IMPORTED)) \
1095 == (SVf_ROK|SVprv_PCS_IMPORTED))
1096 #define SvPCS_IMPORTED_on(sv) (SvFLAGS(sv) |= (SVf_ROK|SVprv_PCS_IMPORTED))
1097 #define SvPCS_IMPORTED_off(sv) (SvFLAGS(sv) &= ~(SVf_ROK|SVprv_PCS_IMPORTED))
1099 #define SvTHINKFIRST(sv) (SvFLAGS(sv) & SVf_THINKFIRST)
1101 #define SvPADSTALE(sv) (SvFLAGS(sv) & SVs_PADSTALE)
1102 #define SvPADSTALE_on(sv) (SvFLAGS(sv) |= SVs_PADSTALE)
1103 #define SvPADSTALE_off(sv) (SvFLAGS(sv) &= ~SVs_PADSTALE)
1105 #define SvPADTMP(sv) (SvFLAGS(sv) & SVs_PADTMP)
1106 #define SvPADTMP_on(sv) (SvFLAGS(sv) |= SVs_PADTMP)
1107 #define SvPADTMP_off(sv) (SvFLAGS(sv) &= ~SVs_PADTMP)
1109 #define SvPADMY(sv) (SvFLAGS(sv) & SVs_PADMY)
1110 #define SvPADMY_on(sv) (SvFLAGS(sv) |= SVs_PADMY)
1112 #define SvTEMP(sv) (SvFLAGS(sv) & SVs_TEMP)
1113 #define SvTEMP_on(sv) (SvFLAGS(sv) |= SVs_TEMP)
1114 #define SvTEMP_off(sv) (SvFLAGS(sv) &= ~SVs_TEMP)
1116 #define SvOBJECT(sv) (SvFLAGS(sv) & SVs_OBJECT)
1117 #define SvOBJECT_on(sv) (SvFLAGS(sv) |= SVs_OBJECT)
1118 #define SvOBJECT_off(sv) (SvFLAGS(sv) &= ~SVs_OBJECT)
1120 #define SvREADONLY(sv) (SvFLAGS(sv) & SVf_READONLY)
1121 #define SvREADONLY_on(sv) (SvFLAGS(sv) |= SVf_READONLY)
1122 #define SvREADONLY_off(sv) (SvFLAGS(sv) &= ~SVf_READONLY)
1124 #define SvSCREAM(sv) ((SvFLAGS(sv) & (SVp_SCREAM|SVp_POK)) == (SVp_SCREAM|SVp_POK))
1125 #define SvSCREAM_on(sv) (SvFLAGS(sv) |= SVp_SCREAM)
1126 #define SvSCREAM_off(sv) (SvFLAGS(sv) &= ~SVp_SCREAM)
1128 #define SvCOMPILED(sv) (SvFLAGS(sv) & SVpfm_COMPILED)
1129 #define SvCOMPILED_on(sv) (SvFLAGS(sv) |= SVpfm_COMPILED)
1130 #define SvCOMPILED_off(sv) (SvFLAGS(sv) &= ~SVpfm_COMPILED)
1132 #define SvEVALED(sv) (SvFLAGS(sv) & SVrepl_EVAL)
1133 #define SvEVALED_on(sv) (SvFLAGS(sv) |= SVrepl_EVAL)
1134 #define SvEVALED_off(sv) (SvFLAGS(sv) &= ~SVrepl_EVAL)
1136 #if defined (DEBUGGING) && defined(__GNUC__) && !defined(PERL_GCC_BRACE_GROUPS_FORBIDDEN)
1137 # define SvVALID(sv) ({ SV *const thwacke = (SV *) (sv); \
1138 if (SvFLAGS(thwacke) & SVpbm_VALID) \
1139 assert(!isGV_with_GP(thwacke)); \
1140 (SvFLAGS(thwacke) & SVpbm_VALID); \
1142 # define SvVALID_on(sv) ({ SV *const thwacke = (SV *) (sv); \
1143 assert(!isGV_with_GP(thwacke)); \
1144 (SvFLAGS(thwacke) |= SVpbm_VALID); \
1146 # define SvVALID_off(sv) ({ SV *const thwacke = (SV *) (sv); \
1147 assert(!isGV_with_GP(thwacke)); \
1148 (SvFLAGS(thwacke) &= ~SVpbm_VALID); \
1151 # define SvTAIL(sv) ({ SV *const _svi = (SV *) (sv); \
1152 assert(SvTYPE(_svi) != SVt_PVAV); \
1153 assert(SvTYPE(_svi) != SVt_PVHV); \
1154 (SvFLAGS(sv) & (SVpbm_TAIL|SVpbm_VALID)) \
1155 == (SVpbm_TAIL|SVpbm_VALID); \
1158 # define SvVALID(sv) (SvFLAGS(sv) & SVpbm_VALID)
1159 # define SvVALID_on(sv) (SvFLAGS(sv) |= SVpbm_VALID)
1160 # define SvVALID_off(sv) (SvFLAGS(sv) &= ~SVpbm_VALID)
1161 # define SvTAIL(sv) ((SvFLAGS(sv) & (SVpbm_TAIL|SVpbm_VALID)) \
1162 == (SVpbm_TAIL|SVpbm_VALID))
1165 #define SvTAIL_on(sv) (SvFLAGS(sv) |= SVpbm_TAIL)
1166 #define SvTAIL_off(sv) (SvFLAGS(sv) &= ~SVpbm_TAIL)
1170 /* The following uses the FAKE flag to show that a regex pointer is infact
1171 its own offset in the regexpad for ithreads */
1172 #define SvREPADTMP(sv) (SvFLAGS(sv) & SVf_FAKE)
1173 #define SvREPADTMP_on(sv) (SvFLAGS(sv) |= SVf_FAKE)
1174 #define SvREPADTMP_off(sv) (SvFLAGS(sv) &= ~SVf_FAKE)
1177 #define SvPAD_TYPED(sv) \
1178 ((SvFLAGS(sv) & (SVpad_NAME|SVpad_TYPED)) == (SVpad_NAME|SVpad_TYPED))
1180 #define SvPAD_OUR(sv) \
1181 ((SvFLAGS(sv) & (SVpad_NAME|SVpad_OUR)) == (SVpad_NAME|SVpad_OUR))
1183 #define SvPAD_STATE(sv) \
1184 ((SvFLAGS(sv) & (SVpad_NAME|SVpad_STATE)) == (SVpad_NAME|SVpad_STATE))
1186 #if defined (DEBUGGING) && defined(__GNUC__) && !defined(PERL_GCC_BRACE_GROUPS_FORBIDDEN)
1187 # define SvPAD_TYPED_on(sv) ({ \
1188 SV *const whap = (SV *) (sv); \
1189 assert(SvTYPE(whap) == SVt_PVMG); \
1190 (SvFLAGS(whap) |= SVpad_NAME|SVpad_TYPED); \
1192 #define SvPAD_OUR_on(sv) ({ \
1193 SV *const whap = (SV *) (sv); \
1194 assert(SvTYPE(whap) == SVt_PVMG); \
1195 (SvFLAGS(whap) |= SVpad_NAME|SVpad_OUR); \
1197 #define SvPAD_STATE_on(sv) ({ \
1198 SV *const whap = (SV *) (sv); \
1199 assert(SvTYPE(whap) == SVt_PVNV || SvTYPE(whap) == SVt_PVMG); \
1200 (SvFLAGS(whap) |= SVpad_NAME|SVpad_STATE); \
1203 # define SvPAD_TYPED_on(sv) (SvFLAGS(sv) |= SVpad_NAME|SVpad_TYPED)
1204 # define SvPAD_OUR_on(sv) (SvFLAGS(sv) |= SVpad_NAME|SVpad_OUR)
1205 # define SvPAD_STATE_on(sv) (SvFLAGS(sv) |= SVpad_NAME|SVpad_STATE)
1208 #define SvOURSTASH(sv) \
1209 (SvPAD_OUR(sv) ? ((XPVMG*) SvANY(sv))->xmg_u.xmg_ourstash : NULL)
1210 #define SvOURSTASH_set(sv, st) \
1212 assert(SvTYPE(sv) == SVt_PVMG); \
1213 ((XPVMG*) SvANY(sv))->xmg_u.xmg_ourstash = st; \
1216 #ifdef PERL_DEBUG_COW
1217 #define SvRV(sv) (0 + (sv)->sv_u.svu_rv)
1219 #define SvRV(sv) ((sv)->sv_u.svu_rv)
1221 #define SvRVx(sv) SvRV(sv)
1223 #ifdef PERL_DEBUG_COW
1224 /* Need -0.0 for SvNVX to preserve IEEE FP "negative zero" because
1225 +0.0 + -0.0 => +0.0 but -0.0 + -0.0 => -0.0 */
1226 # define SvIVX(sv) (0 + ((XPVIV*) SvANY(sv))->xiv_iv)
1227 # define SvUVX(sv) (0 + ((XPVUV*) SvANY(sv))->xuv_uv)
1228 # define SvNVX(sv) (-0.0 + ((XPVNV*) SvANY(sv))->xnv_u.xnv_nv)
1229 /* Don't test the core XS code yet. */
1230 # if defined (PERL_CORE) && PERL_DEBUG_COW > 1
1231 # define SvPVX(sv) (0 + (assert(!SvREADONLY(sv)), (sv)->sv_u.svu_pv))
1233 # define SvPVX(sv) SvPVX_mutable(sv)
1235 # define SvCUR(sv) (0 + ((XPV*) SvANY(sv))->xpv_cur)
1236 # define SvLEN(sv) (0 + ((XPV*) SvANY(sv))->xpv_len)
1237 # define SvEND(sv) ((sv)->sv_u.svu_pv + ((XPV*)SvANY(sv))->xpv_cur)
1240 # define SvMAGIC(sv) (0 + *(assert(SvTYPE(sv) >= SVt_PVMG), &((XPVMG*) SvANY(sv))->xmg_u.xmg_magic))
1241 # define SvSTASH(sv) (0 + *(assert(SvTYPE(sv) >= SVt_PVMG), &((XPVMG*) SvANY(sv))->xmg_stash))
1243 # define SvMAGIC(sv) (0 + ((XPVMG*) SvANY(sv))->xmg_u.xmg_magic)
1244 # define SvSTASH(sv) (0 + ((XPVMG*) SvANY(sv))->xmg_stash)
1247 # define SvLEN(sv) ((XPV*) SvANY(sv))->xpv_len
1248 # define SvEND(sv) ((sv)->sv_u.svu_pv + ((XPV*)SvANY(sv))->xpv_cur)
1250 # if defined (DEBUGGING) && defined(__GNUC__) && !defined(PERL_GCC_BRACE_GROUPS_FORBIDDEN)
1251 /* These get expanded inside other macros that already use a variable _sv */
1252 # define SvPVX(sv) \
1253 (*({ SV *const _svi = (SV *) (sv); \
1254 assert(SvTYPE(_svi) >= SVt_PV); \
1255 assert(SvTYPE(_svi) != SVt_PVAV); \
1256 assert(SvTYPE(_svi) != SVt_PVHV); \
1257 assert(!isGV_with_GP(_svi)); \
1258 &((_svi)->sv_u.svu_pv); \
1260 # define SvCUR(sv) \
1261 (*({ SV *const _svi = (SV *) (sv); \
1262 assert(SvTYPE(_svi) >= SVt_PV); \
1263 assert(SvTYPE(_svi) != SVt_PVAV); \
1264 assert(SvTYPE(_svi) != SVt_PVHV); \
1265 assert(!isGV_with_GP(_svi)); \
1266 &(((XPV*) SvANY(_svi))->xpv_cur); \
1268 # define SvIVX(sv) \
1269 (*({ SV *const _svi = (SV *) (sv); \
1270 assert(SvTYPE(_svi) == SVt_IV || SvTYPE(_svi) >= SVt_PVIV); \
1271 assert(SvTYPE(_svi) != SVt_PVAV); \
1272 assert(SvTYPE(_svi) != SVt_PVHV); \
1273 assert(SvTYPE(_svi) != SVt_PVCV); \
1274 assert(!isGV_with_GP(_svi)); \
1275 &(((XPVIV*) SvANY(_svi))->xiv_iv); \
1277 # define SvUVX(sv) \
1278 (*({ SV *const _svi = (SV *) (sv); \
1279 assert(SvTYPE(_svi) == SVt_IV || SvTYPE(_svi) >= SVt_PVIV); \
1280 assert(SvTYPE(_svi) != SVt_PVAV); \
1281 assert(SvTYPE(_svi) != SVt_PVHV); \
1282 assert(SvTYPE(_svi) != SVt_PVCV); \
1283 assert(!isGV_with_GP(_svi)); \
1284 &(((XPVUV*) SvANY(_svi))->xuv_uv); \
1286 # define SvNVX(sv) \
1287 (*({ SV *const _svi = (SV *) (sv); \
1288 assert(SvTYPE(_svi) == SVt_NV || SvTYPE(_svi) >= SVt_PVNV); \
1289 assert(SvTYPE(_svi) != SVt_PVAV); \
1290 assert(SvTYPE(_svi) != SVt_PVHV); \
1291 assert(SvTYPE(_svi) != SVt_PVCV); \
1292 assert(SvTYPE(_svi) != SVt_PVFM); \
1293 assert(!isGV_with_GP(_svi)); \
1294 &(((XPVNV*) SvANY(_svi))->xnv_u.xnv_nv); \
1296 # define SvMAGIC(sv) \
1297 (*({ SV *const _svi = (SV *) (sv); \
1298 assert(SvTYPE(_svi) >= SVt_PVMG); \
1299 if(SvTYPE(_svi) == SVt_PVMG) \
1300 assert(!SvPAD_OUR(_svi)); \
1301 &(((XPVMG*) SvANY(_svi))->xmg_u.xmg_magic); \
1303 # define SvSTASH(sv) \
1304 (*({ SV *const _svi = (SV *) (sv); \
1305 assert(SvTYPE(_svi) >= SVt_PVMG); \
1306 &(((XPVMG*) SvANY(_svi))->xmg_stash); \
1309 # define SvPVX(sv) ((sv)->sv_u.svu_pv)
1310 # define SvCUR(sv) ((XPV*) SvANY(sv))->xpv_cur
1311 # define SvIVX(sv) ((XPVIV*) SvANY(sv))->xiv_iv
1312 # define SvUVX(sv) ((XPVUV*) SvANY(sv))->xuv_uv
1313 # define SvNVX(sv) ((XPVNV*) SvANY(sv))->xnv_u.xnv_nv
1314 # define SvMAGIC(sv) ((XPVMG*) SvANY(sv))->xmg_u.xmg_magic
1315 # define SvSTASH(sv) ((XPVMG*) SvANY(sv))->xmg_stash
1320 /* Given that these two are new, there can't be any existing code using them
1322 # define SvPVX_mutable(sv) (0 + (sv)->sv_u.svu_pv)
1323 # define SvPVX_const(sv) ((const char*)(0 + (sv)->sv_u.svu_pv))
1325 /* Except for the poison code, which uses & to scribble over the pointer after
1326 free() is called. */
1327 # define SvPVX_mutable(sv) ((sv)->sv_u.svu_pv)
1328 # define SvPVX_const(sv) ((const char*)((sv)->sv_u.svu_pv))
1331 #define SvIVXx(sv) SvIVX(sv)
1332 #define SvUVXx(sv) SvUVX(sv)
1333 #define SvNVXx(sv) SvNVX(sv)
1334 #define SvPVXx(sv) SvPVX(sv)
1335 #define SvLENx(sv) SvLEN(sv)
1336 #define SvENDx(sv) ((PL_Sv = (sv)), SvEND(PL_Sv))
1339 /* Ask a scalar nicely to try to become an IV, if possible.
1340 Not guaranteed to stay returning void */
1341 /* Macro won't actually call sv_2iv if already IOK */
1342 #define SvIV_please(sv) \
1343 STMT_START {if (!SvIOKp(sv) && (SvNOK(sv) || SvPOK(sv))) \
1344 (void) SvIV(sv); } STMT_END
1345 #define SvIV_set(sv, val) \
1346 STMT_START { assert(SvTYPE(sv) == SVt_IV || SvTYPE(sv) >= SVt_PVIV); \
1347 assert(SvTYPE(sv) != SVt_PVAV); \
1348 assert(SvTYPE(sv) != SVt_PVHV); \
1349 assert(SvTYPE(sv) != SVt_PVCV); \
1350 assert(!isGV_with_GP(sv)); \
1351 (((XPVIV*) SvANY(sv))->xiv_iv = (val)); } STMT_END
1352 #define SvNV_set(sv, val) \
1353 STMT_START { assert(SvTYPE(sv) == SVt_NV || SvTYPE(sv) >= SVt_PVNV); \
1354 assert(SvTYPE(sv) != SVt_PVAV); assert(SvTYPE(sv) != SVt_PVHV); \
1355 assert(SvTYPE(sv) != SVt_PVCV); assert(SvTYPE(sv) != SVt_PVFM); \
1356 assert(!isGV_with_GP(sv)); \
1357 (((XPVNV*)SvANY(sv))->xnv_u.xnv_nv = (val)); } STMT_END
1358 #define SvPV_set(sv, val) \
1359 STMT_START { assert(SvTYPE(sv) >= SVt_PV); \
1360 assert(SvTYPE(sv) != SVt_PVAV); \
1361 assert(SvTYPE(sv) != SVt_PVHV); \
1362 assert(!isGV_with_GP(sv)); \
1363 ((sv)->sv_u.svu_pv = (val)); } STMT_END
1364 #define SvUV_set(sv, val) \
1365 STMT_START { assert(SvTYPE(sv) == SVt_IV || SvTYPE(sv) >= SVt_PVIV); \
1366 assert(SvTYPE(sv) != SVt_PVAV); \
1367 assert(SvTYPE(sv) != SVt_PVHV); \
1368 assert(SvTYPE(sv) != SVt_PVCV); \
1369 assert(!isGV_with_GP(sv)); \
1370 (((XPVUV*)SvANY(sv))->xuv_uv = (val)); } STMT_END
1371 #define SvRV_set(sv, val) \
1372 STMT_START { assert(SvTYPE(sv) >= SVt_RV); \
1373 assert(!isGV_with_GP(sv)); \
1374 ((sv)->sv_u.svu_rv = (val)); } STMT_END
1375 #define SvMAGIC_set(sv, val) \
1376 STMT_START { assert(SvTYPE(sv) >= SVt_PVMG); \
1377 (((XPVMG*)SvANY(sv))->xmg_u.xmg_magic = (val)); } STMT_END
1378 #define SvSTASH_set(sv, val) \
1379 STMT_START { assert(SvTYPE(sv) >= SVt_PVMG); \
1380 (((XPVMG*) SvANY(sv))->xmg_stash = (val)); } STMT_END
1381 #define SvCUR_set(sv, val) \
1382 STMT_START { assert(SvTYPE(sv) >= SVt_PV); \
1383 assert(SvTYPE(sv) != SVt_PVAV); \
1384 assert(SvTYPE(sv) != SVt_PVHV); \
1385 assert(!isGV_with_GP(sv)); \
1386 (((XPV*) SvANY(sv))->xpv_cur = (val)); } STMT_END
1387 #define SvLEN_set(sv, val) \
1388 STMT_START { assert(SvTYPE(sv) >= SVt_PV); \
1389 assert(SvTYPE(sv) != SVt_PVAV); \
1390 assert(SvTYPE(sv) != SVt_PVHV); \
1391 assert(!isGV_with_GP(sv)); \
1392 (((XPV*) SvANY(sv))->xpv_len = (val)); } STMT_END
1393 #define SvEND_set(sv, val) \
1394 STMT_START { assert(SvTYPE(sv) >= SVt_PV); \
1395 (SvCUR(sv) = (val) - SvPVX(sv)); } STMT_END
1397 #define SvPV_renew(sv,n) \
1398 STMT_START { SvLEN_set(sv, n); \
1399 SvPV_set((sv), (MEM_WRAP_CHECK_(n,char) \
1400 (char*)saferealloc((Malloc_t)SvPVX(sv), \
1401 (MEM_SIZE)((n))))); \
1404 #define SvPV_shrink_to_cur(sv) STMT_START { \
1405 const STRLEN _lEnGtH = SvCUR(sv) + 1; \
1406 SvPV_renew(sv, _lEnGtH); \
1409 #define SvPV_free(sv) \
1411 assert(SvTYPE(sv) >= SVt_PV); \
1414 SvPV_set(sv, SvPVX_mutable(sv) - SvIVX(sv)); \
1415 SvFLAGS(sv) &= ~SVf_OOK; \
1417 Safefree(SvPVX(sv)); \
1422 #define PERL_FBM_TABLE_OFFSET 1 /* Number of bytes between EOS and table */
1424 /* SvPOKp not SvPOK in the assertion because the string can be tainted! eg
1427 #if defined (DEBUGGING) && defined(__GNUC__) && !defined(PERL_GCC_BRACE_GROUPS_FORBIDDEN)
1428 # define BmFLAGS(sv) \
1429 (*({ SV *const uggh = (SV *) (sv); \
1430 assert(SvTYPE(uggh) == SVt_PVGV); \
1431 assert(SvVALID(uggh)); \
1432 &(((XPVGV*) SvANY(uggh))->xnv_u.xbm_s.xbm_flags); \
1434 # define BmRARE(sv) \
1435 (*({ SV *const uggh = (SV *) (sv); \
1436 assert(SvTYPE(uggh) == SVt_PVGV); \
1437 assert(SvVALID(uggh)); \
1438 &(((XPVGV*) SvANY(uggh))->xnv_u.xbm_s.xbm_rare); \
1440 # define BmUSEFUL(sv) \
1441 (*({ SV *const uggh = (SV *) (sv); \
1442 assert(SvTYPE(uggh) == SVt_PVGV); \
1443 assert(SvVALID(uggh)); \
1444 assert(!SvIOK(uggh)); \
1445 &(((XPVGV*) SvANY(uggh))->xiv_u.xivu_i32); \
1447 # define BmPREVIOUS(sv) \
1448 (*({ SV *const uggh = (SV *) (sv); \
1449 assert(SvTYPE(uggh) == SVt_PVGV); \
1450 assert(SvVALID(uggh)); \
1451 &(((XPVGV*) SvANY(uggh))->xnv_u.xbm_s.xbm_previous); \
1454 # define BmFLAGS(sv) ((XPVGV*) SvANY(sv))->xnv_u.xbm_s.xbm_flags
1455 # define BmRARE(sv) ((XPVGV*) SvANY(sv))->xnv_u.xbm_s.xbm_rare
1456 # define BmUSEFUL(sv) ((XPVGV*) SvANY(sv))->xiv_u.xivu_i32
1457 # define BmPREVIOUS(sv) ((XPVGV*) SvANY(sv))->xnv_u.xbm_s.xbm_previous
1461 #define FmLINES(sv) ((XPVFM*) SvANY(sv))->xfm_lines
1463 #define LvTYPE(sv) ((XPVLV*) SvANY(sv))->xlv_type
1464 #define LvTARG(sv) ((XPVLV*) SvANY(sv))->xlv_targ
1465 #define LvTARGOFF(sv) ((XPVLV*) SvANY(sv))->xlv_targoff
1466 #define LvTARGLEN(sv) ((XPVLV*) SvANY(sv))->xlv_targlen
1468 #define IoIFP(sv) ((XPVIO*) SvANY(sv))->xio_ifp
1469 #define IoOFP(sv) ((XPVIO*) SvANY(sv))->xio_ofp
1470 #define IoDIRP(sv) ((XPVIO*) SvANY(sv))->xio_dirp
1471 #define IoANY(sv) ((XPVIO*) SvANY(sv))->xio_any
1472 #define IoLINES(sv) ((XPVIO*) SvANY(sv))->xio_lines
1473 #define IoPAGE(sv) ((XPVIO*) SvANY(sv))->xio_page
1474 #define IoPAGE_LEN(sv) ((XPVIO*) SvANY(sv))->xio_page_len
1475 #define IoLINES_LEFT(sv)((XPVIO*) SvANY(sv))->xio_lines_left
1476 #define IoTOP_NAME(sv) ((XPVIO*) SvANY(sv))->xio_top_name
1477 #define IoTOP_GV(sv) ((XPVIO*) SvANY(sv))->xio_top_gv
1478 #define IoFMT_NAME(sv) ((XPVIO*) SvANY(sv))->xio_fmt_name
1479 #define IoFMT_GV(sv) ((XPVIO*) SvANY(sv))->xio_fmt_gv
1480 #define IoBOTTOM_NAME(sv)((XPVIO*) SvANY(sv))->xio_bottom_name
1481 #define IoBOTTOM_GV(sv) ((XPVIO*) SvANY(sv))->xio_bottom_gv
1482 #define IoSUBPROCESS(sv)((XPVIO*) SvANY(sv))->xio_subprocess
1483 #define IoTYPE(sv) ((XPVIO*) SvANY(sv))->xio_type
1484 #define IoFLAGS(sv) ((XPVIO*) SvANY(sv))->xio_flags
1486 /* IoTYPE(sv) is a single character telling the type of I/O connection. */
1487 #define IoTYPE_RDONLY '<'
1488 #define IoTYPE_WRONLY '>'
1489 #define IoTYPE_RDWR '+'
1490 #define IoTYPE_APPEND 'a'
1491 #define IoTYPE_PIPE '|'
1492 #define IoTYPE_STD '-' /* stdin or stdout */
1493 #define IoTYPE_SOCKET 's'
1494 #define IoTYPE_CLOSED ' '
1495 #define IoTYPE_IMPLICIT 'I' /* stdin or stdout or stderr */
1496 #define IoTYPE_NUMERIC '#' /* fdopen */
1499 =for apidoc Am|bool|SvTAINTED|SV* sv
1500 Checks to see if an SV is tainted. Returns TRUE if it is, FALSE if
1503 =for apidoc Am|void|SvTAINTED_on|SV* sv
1504 Marks an SV as tainted if tainting is enabled.
1506 =for apidoc Am|void|SvTAINTED_off|SV* sv
1507 Untaints an SV. Be I<very> careful with this routine, as it short-circuits
1508 some of Perl's fundamental security features. XS module authors should not
1509 use this function unless they fully understand all the implications of
1510 unconditionally untainting the value. Untainting should be done in the
1511 standard perl fashion, via a carefully crafted regexp, rather than directly
1512 untainting variables.
1514 =for apidoc Am|void|SvTAINT|SV* sv
1515 Taints an SV if tainting is enabled.
1520 #define sv_taint(sv) sv_magic((sv), NULL, PERL_MAGIC_taint, NULL, 0)
1522 #define SvTAINTED(sv) (SvMAGICAL(sv) && sv_tainted(sv))
1523 #define SvTAINTED_on(sv) STMT_START{ if(PL_tainting){sv_taint(sv);} }STMT_END
1524 #define SvTAINTED_off(sv) STMT_START{ if(PL_tainting){sv_untaint(sv);} }STMT_END
1526 #define SvTAINT(sv) \
1528 if (PL_tainting) { \
1535 =for apidoc Am|char*|SvPV_force|SV* sv|STRLEN len
1536 Like C<SvPV> but will force the SV into containing just a string
1537 (C<SvPOK_only>). You want force if you are going to update the C<SvPVX>
1540 =for apidoc Am|char*|SvPV_force_nomg|SV* sv|STRLEN len
1541 Like C<SvPV> but will force the SV into containing just a string
1542 (C<SvPOK_only>). You want force if you are going to update the C<SvPVX>
1543 directly. Doesn't process magic.
1545 =for apidoc Am|char*|SvPV|SV* sv|STRLEN len
1546 Returns a pointer to the string in the SV, or a stringified form of
1547 the SV if the SV does not contain a string. The SV may cache the
1548 stringified version becoming C<SvPOK>. Handles 'get' magic. See also
1549 C<SvPVx> for a version which guarantees to evaluate sv only once.
1551 =for apidoc Am|char*|SvPVx|SV* sv|STRLEN len
1552 A version of C<SvPV> which guarantees to evaluate C<sv> only once.
1553 Only use this if C<sv> is an expression with side effects, otherwise use the
1554 more efficient C<SvPVX>.
1556 =for apidoc Am|char*|SvPV_nomg|SV* sv|STRLEN len
1557 Like C<SvPV> but doesn't process magic.
1559 =for apidoc Am|char*|SvPV_nolen|SV* sv
1560 Returns a pointer to the string in the SV, or a stringified form of
1561 the SV if the SV does not contain a string. The SV may cache the
1562 stringified form becoming C<SvPOK>. Handles 'get' magic.
1564 =for apidoc Am|IV|SvIV|SV* sv
1565 Coerces the given SV to an integer and returns it. See C<SvIVx> for a
1566 version which guarantees to evaluate sv only once.
1568 =for apidoc Am|IV|SvIV_nomg|SV* sv
1569 Like C<SvIV> but doesn't process magic.
1571 =for apidoc Am|IV|SvIVx|SV* sv
1572 Coerces the given SV to an integer and returns it. Guarantees to evaluate
1573 C<sv> only once. Only use this if C<sv> is an expression with side effects,
1574 otherwise use the more efficient C<SvIV>.
1576 =for apidoc Am|NV|SvNV|SV* sv
1577 Coerce the given SV to a double and return it. See C<SvNVx> for a version
1578 which guarantees to evaluate sv only once.
1580 =for apidoc Am|NV|SvNVx|SV* sv
1581 Coerces the given SV to a double and returns it. Guarantees to evaluate
1582 C<sv> only once. Only use this if C<sv> is an expression with side effects,
1583 otherwise use the more efficient C<SvNV>.
1585 =for apidoc Am|UV|SvUV|SV* sv
1586 Coerces the given SV to an unsigned integer and returns it. See C<SvUVx>
1587 for a version which guarantees to evaluate sv only once.
1589 =for apidoc Am|UV|SvUV_nomg|SV* sv
1590 Like C<SvUV> but doesn't process magic.
1592 =for apidoc Am|UV|SvUVx|SV* sv
1593 Coerces the given SV to an unsigned integer and returns it. Guarantees to
1594 C<sv> only once. Only use this if C<sv> is an expression with side effects,
1595 otherwise use the more efficient C<SvUV>.
1597 =for apidoc Am|bool|SvTRUE|SV* sv
1598 Returns a boolean indicating whether Perl would evaluate the SV as true or
1599 false, defined or undefined. Does not handle 'get' magic.
1601 =for apidoc Am|char*|SvPVutf8_force|SV* sv|STRLEN len
1602 Like C<SvPV_force>, but converts sv to utf8 first if necessary.
1604 =for apidoc Am|char*|SvPVutf8|SV* sv|STRLEN len
1605 Like C<SvPV>, but converts sv to utf8 first if necessary.
1607 =for apidoc Am|char*|SvPVutf8_nolen|SV* sv
1608 Like C<SvPV_nolen>, but converts sv to utf8 first if necessary.
1610 =for apidoc Am|char*|SvPVbyte_force|SV* sv|STRLEN len
1611 Like C<SvPV_force>, but converts sv to byte representation first if necessary.
1613 =for apidoc Am|char*|SvPVbyte|SV* sv|STRLEN len
1614 Like C<SvPV>, but converts sv to byte representation first if necessary.
1616 =for apidoc Am|char*|SvPVbyte_nolen|SV* sv
1617 Like C<SvPV_nolen>, but converts sv to byte representation first if necessary.
1619 =for apidoc Am|char*|SvPVutf8x_force|SV* sv|STRLEN len
1620 Like C<SvPV_force>, but converts sv to utf8 first if necessary.
1621 Guarantees to evaluate sv only once; use the more efficient C<SvPVutf8_force>
1624 =for apidoc Am|char*|SvPVutf8x|SV* sv|STRLEN len
1625 Like C<SvPV>, but converts sv to utf8 first if necessary.
1626 Guarantees to evaluate sv only once; use the more efficient C<SvPVutf8>
1629 =for apidoc Am|char*|SvPVbytex_force|SV* sv|STRLEN len
1630 Like C<SvPV_force>, but converts sv to byte representation first if necessary.
1631 Guarantees to evaluate sv only once; use the more efficient C<SvPVbyte_force>
1634 =for apidoc Am|char*|SvPVbytex|SV* sv|STRLEN len
1635 Like C<SvPV>, but converts sv to byte representation first if necessary.
1636 Guarantees to evaluate sv only once; use the more efficient C<SvPVbyte>
1639 =for apidoc Am|bool|SvIsCOW|SV* sv
1640 Returns a boolean indicating whether the SV is Copy-On-Write. (either shared
1641 hash key scalars, or full Copy On Write scalars if 5.9.0 is configured for
1644 =for apidoc Am|bool|SvIsCOW_shared_hash|SV* sv
1645 Returns a boolean indicating whether the SV is Copy-On-Write shared hash key
1648 =for apidoc Am|void|sv_catpvn_nomg|SV* sv|const char* ptr|STRLEN len
1649 Like C<sv_catpvn> but doesn't process magic.
1651 =for apidoc Am|void|sv_setsv_nomg|SV* dsv|SV* ssv
1652 Like C<sv_setsv> but doesn't process magic.
1654 =for apidoc Am|void|sv_catsv_nomg|SV* dsv|SV* ssv
1655 Like C<sv_catsv> but doesn't process magic.
1660 /* Let us hope that bitmaps for UV and IV are the same */
1661 #define SvIV(sv) (SvIOK(sv) ? SvIVX(sv) : sv_2iv(sv))
1662 #define SvUV(sv) (SvIOK(sv) ? SvUVX(sv) : sv_2uv(sv))
1663 #define SvNV(sv) (SvNOK(sv) ? SvNVX(sv) : sv_2nv(sv))
1665 #define SvIV_nomg(sv) (SvIOK(sv) ? SvIVX(sv) : sv_2iv_flags(sv, 0))
1666 #define SvUV_nomg(sv) (SvIOK(sv) ? SvUVX(sv) : sv_2uv_flags(sv, 0))
1670 #define SvPV(sv, lp) SvPV_flags(sv, lp, SV_GMAGIC)
1671 #define SvPV_const(sv, lp) SvPV_flags_const(sv, lp, SV_GMAGIC)
1672 #define SvPV_mutable(sv, lp) SvPV_flags_mutable(sv, lp, SV_GMAGIC)
1674 #define SvPV_flags(sv, lp, flags) \
1675 ((SvFLAGS(sv) & (SVf_POK)) == SVf_POK \
1676 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_2pv_flags(sv, &lp, flags))
1677 #define SvPV_flags_const(sv, lp, flags) \
1678 ((SvFLAGS(sv) & (SVf_POK)) == SVf_POK \
1679 ? ((lp = SvCUR(sv)), SvPVX_const(sv)) : \
1680 (const char*) sv_2pv_flags(sv, &lp, flags|SV_CONST_RETURN))
1681 #define SvPV_flags_const_nolen(sv, flags) \
1682 ((SvFLAGS(sv) & (SVf_POK)) == SVf_POK \
1683 ? SvPVX_const(sv) : \
1684 (const char*) sv_2pv_flags(sv, 0, flags|SV_CONST_RETURN))
1685 #define SvPV_flags_mutable(sv, lp, flags) \
1686 ((SvFLAGS(sv) & (SVf_POK)) == SVf_POK \
1687 ? ((lp = SvCUR(sv)), SvPVX_mutable(sv)) : \
1688 sv_2pv_flags(sv, &lp, flags|SV_MUTABLE_RETURN))
1690 #define SvPV_force(sv, lp) SvPV_force_flags(sv, lp, SV_GMAGIC)
1691 #define SvPV_force_nolen(sv) SvPV_force_flags_nolen(sv, SV_GMAGIC)
1692 #define SvPV_force_mutable(sv, lp) SvPV_force_flags_mutable(sv, lp, SV_GMAGIC)
1694 #define SvPV_force_nomg(sv, lp) SvPV_force_flags(sv, lp, 0)
1695 #define SvPV_force_nomg_nolen(sv) SvPV_force_flags_nolen(sv, 0)
1697 #define SvPV_force_flags(sv, lp, flags) \
1698 ((SvFLAGS(sv) & (SVf_POK|SVf_THINKFIRST)) == SVf_POK \
1699 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_pvn_force_flags(sv, &lp, flags))
1700 #define SvPV_force_flags_nolen(sv, flags) \
1701 ((SvFLAGS(sv) & (SVf_POK|SVf_THINKFIRST)) == SVf_POK \
1702 ? SvPVX(sv) : sv_pvn_force_flags(sv, 0, flags))
1703 #define SvPV_force_flags_mutable(sv, lp, flags) \
1704 ((SvFLAGS(sv) & (SVf_POK|SVf_THINKFIRST)) == SVf_POK \
1705 ? ((lp = SvCUR(sv)), SvPVX_mutable(sv)) \
1706 : sv_pvn_force_flags(sv, &lp, flags|SV_MUTABLE_RETURN))
1708 #define SvPV_nolen(sv) \
1709 ((SvFLAGS(sv) & (SVf_POK)) == SVf_POK \
1710 ? SvPVX(sv) : sv_2pv_flags(sv, 0, SV_GMAGIC))
1712 #define SvPV_nolen_const(sv) \
1713 ((SvFLAGS(sv) & (SVf_POK)) == SVf_POK \
1714 ? SvPVX_const(sv) : sv_2pv_flags(sv, 0, SV_GMAGIC|SV_CONST_RETURN))
1716 #define SvPV_nomg(sv, lp) SvPV_flags(sv, lp, 0)
1717 #define SvPV_nomg_const(sv, lp) SvPV_flags_const(sv, lp, 0)
1718 #define SvPV_nomg_const_nolen(sv) SvPV_flags_const_nolen(sv, 0)
1722 #define SvPVutf8(sv, lp) \
1723 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8)) == (SVf_POK|SVf_UTF8) \
1724 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_2pvutf8(sv, &lp))
1726 #define SvPVutf8_force(sv, lp) \
1727 ((SvFLAGS(sv) & (SVf_POK|SVf_THINKFIRST)) == (SVf_POK|SVf_UTF8) \
1728 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_pvutf8n_force(sv, &lp))
1731 #define SvPVutf8_nolen(sv) \
1732 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8)) == (SVf_POK|SVf_UTF8)\
1733 ? SvPVX(sv) : sv_2pvutf8(sv, 0))
1737 #define SvPVbyte(sv, lp) \
1738 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8)) == (SVf_POK) \
1739 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_2pvbyte(sv, &lp))
1741 #define SvPVbyte_force(sv, lp) \
1742 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8|SVf_THINKFIRST)) == (SVf_POK) \
1743 ? ((lp = SvCUR(sv)), SvPVX(sv)) : sv_pvbyten_force(sv, &lp))
1745 #define SvPVbyte_nolen(sv) \
1746 ((SvFLAGS(sv) & (SVf_POK|SVf_UTF8)) == (SVf_POK)\
1747 ? SvPVX(sv) : sv_2pvbyte(sv, 0))
1751 /* define FOOx(): idempotent versions of FOO(). If possible, use a local
1752 * var to evaluate the arg once; failing that, use a global if possible;
1753 * failing that, call a function to do the work
1756 #define SvPVx_force(sv, lp) sv_pvn_force(sv, &lp)
1757 #define SvPVutf8x_force(sv, lp) sv_pvutf8n_force(sv, &lp)
1758 #define SvPVbytex_force(sv, lp) sv_pvbyten_force(sv, &lp)
1760 #if defined(__GNUC__) && !defined(PERL_GCC_BRACE_GROUPS_FORBIDDEN)
1762 # define SvIVx(sv) ({SV *_sv = (SV*)(sv); SvIV(_sv); })
1763 # define SvUVx(sv) ({SV *_sv = (SV*)(sv); SvUV(_sv); })
1764 # define SvNVx(sv) ({SV *_sv = (SV*)(sv); SvNV(_sv); })
1765 # define SvPVx(sv, lp) ({SV *_sv = (sv); SvPV(_sv, lp); })
1766 # define SvPVx_const(sv, lp) ({SV *_sv = (sv); SvPV_const(_sv, lp); })
1767 # define SvPVx_nolen(sv) ({SV *_sv = (sv); SvPV_nolen(_sv); })
1768 # define SvPVx_nolen_const(sv) ({SV *_sv = (sv); SvPV_nolen_const(_sv); })
1769 # define SvPVutf8x(sv, lp) ({SV *_sv = (sv); SvPVutf8(_sv, lp); })
1770 # define SvPVbytex(sv, lp) ({SV *_sv = (sv); SvPVbyte(_sv, lp); })
1771 # define SvPVbytex_nolen(sv) ({SV *_sv = (sv); SvPVbyte_nolen(_sv); })
1772 # define SvTRUE(sv) ( \
1776 ? (({XPV *nxpv = (XPV*)SvANY(sv); \
1778 (nxpv->xpv_cur > 1 || \
1779 (nxpv->xpv_cur && *(sv)->sv_u.svu_pv != '0')); }) \
1786 ? SvNVX(sv) != 0.0 \
1788 # define SvTRUEx(sv) ({SV *_sv = (sv); SvTRUE(_sv); })
1790 #else /* __GNUC__ */
1792 /* These inlined macros use globals, which will require a thread
1793 * declaration in user code, so we avoid them under threads */
1795 # define SvIVx(sv) ((PL_Sv = (sv)), SvIV(PL_Sv))
1796 # define SvUVx(sv) ((PL_Sv = (sv)), SvUV(PL_Sv))
1797 # define SvNVx(sv) ((PL_Sv = (sv)), SvNV(PL_Sv))
1798 # define SvPVx(sv, lp) ((PL_Sv = (sv)), SvPV(PL_Sv, lp))
1799 # define SvPVx_const(sv, lp) ((PL_Sv = (sv)), SvPV_const(PL_Sv, lp))
1800 # define SvPVx_nolen(sv) ((PL_Sv = (sv)), SvPV_nolen(PL_Sv))
1801 # define SvPVx_nolen_const(sv) ((PL_Sv = (sv)), SvPV_nolen_const(PL_Sv))
1802 # define SvPVutf8x(sv, lp) ((PL_Sv = (sv)), SvPVutf8(PL_Sv, lp))
1803 # define SvPVbytex(sv, lp) ((PL_Sv = (sv)), SvPVbyte(PL_Sv, lp))
1804 # define SvPVbytex_nolen(sv) ((PL_Sv = (sv)), SvPVbyte_nolen(PL_Sv))
1805 # define SvTRUE(sv) ( \
1809 ? ((PL_Xpv = (XPV*)SvANY(PL_Sv = (sv))) && \
1810 (PL_Xpv->xpv_cur > 1 || \
1811 (PL_Xpv->xpv_cur && *PL_Sv->sv_u.svu_pv != '0')) \
1818 ? SvNVX(sv) != 0.0 \
1820 # define SvTRUEx(sv) ((PL_Sv = (sv)), SvTRUE(PL_Sv))
1821 #endif /* __GNU__ */
1823 #define SvIsCOW(sv) ((SvFLAGS(sv) & (SVf_FAKE | SVf_READONLY)) == \
1824 (SVf_FAKE | SVf_READONLY))
1825 #define SvIsCOW_shared_hash(sv) (SvIsCOW(sv) && SvLEN(sv) == 0)
1827 #define SvSHARED_HEK_FROM_PV(pvx) \
1828 ((struct hek*)(pvx - STRUCT_OFFSET(struct hek, hek_key)))
1829 #define SvSHARED_HASH(sv) (0 + SvSHARED_HEK_FROM_PV(SvPVX_const(sv))->hek_hash)
1831 /* flag values for sv_*_flags functions */
1832 #define SV_IMMEDIATE_UNREF 1
1834 #define SV_COW_DROP_PV 4
1835 #define SV_UTF8_NO_ENCODING 8
1836 #define SV_NOSTEAL 16
1837 #define SV_CONST_RETURN 32
1838 #define SV_MUTABLE_RETURN 64
1839 #define SV_SMAGIC 128
1840 #define SV_HAS_TRAILING_NUL 256
1841 #define SV_COW_SHARED_HASH_KEYS 512
1842 /* This one is only enabled for PERL_OLD_COPY_ON_WRITE */
1843 #define SV_COW_OTHER_PVS 1024
1845 /* The core is safe for this COW optimisation. XS code on CPAN may not be.
1846 So only default to doing the COW setup if we're in the core.
1849 # ifndef SV_DO_COW_SVSETSV
1850 # define SV_DO_COW_SVSETSV SV_COW_SHARED_HASH_KEYS|SV_COW_OTHER_PVS
1854 #ifndef SV_DO_COW_SVSETSV
1855 # define SV_DO_COW_SVSETSV 0
1859 #define sv_unref(sv) sv_unref_flags(sv, 0)
1860 #define sv_force_normal(sv) sv_force_normal_flags(sv, 0)
1861 #define sv_usepvn(sv, p, l) sv_usepvn_flags(sv, p, l, 0)
1862 #define sv_usepvn_mg(sv, p, l) sv_usepvn_flags(sv, p, l, SV_SMAGIC)
1864 /* We are about to replace the SV's current value. So if it's copy on write
1865 we need to normalise it. Use the SV_COW_DROP_PV flag hint to say that
1866 the value is about to get thrown away, so drop the PV rather than go to
1867 the effort of making a read-write copy only for it to get immediately
1870 #define SV_CHECK_THINKFIRST_COW_DROP(sv) if (SvTHINKFIRST(sv)) \
1871 sv_force_normal_flags(sv, SV_COW_DROP_PV)
1873 #ifdef PERL_OLD_COPY_ON_WRITE
1874 #define SvRELEASE_IVX(sv) \
1875 ((SvIsCOW(sv) ? sv_force_normal_flags(sv, 0) : (void) 0), SvOOK_off(sv))
1876 # define SvIsCOW_normal(sv) (SvIsCOW(sv) && SvLEN(sv))
1878 # define SvRELEASE_IVX(sv) SvOOK_off(sv)
1879 #endif /* PERL_OLD_COPY_ON_WRITE */
1881 #define CAN_COW_MASK (SVs_OBJECT|SVs_GMG|SVs_SMG|SVs_RMG|SVf_IOK|SVf_NOK| \
1882 SVf_POK|SVf_ROK|SVp_IOK|SVp_NOK|SVp_POK|SVf_FAKE| \
1883 SVf_OOK|SVf_BREAK|SVf_READONLY)
1884 #define CAN_COW_FLAGS (SVp_POK|SVf_POK)
1886 #define SV_CHECK_THINKFIRST(sv) if (SvTHINKFIRST(sv)) \
1887 sv_force_normal_flags(sv, 0)
1890 /* all these 'functions' are now just macros */
1892 #define sv_pv(sv) SvPV_nolen(sv)
1893 #define sv_pvutf8(sv) SvPVutf8_nolen(sv)
1894 #define sv_pvbyte(sv) SvPVbyte_nolen(sv)
1896 #define sv_pvn_force_nomg(sv, lp) sv_pvn_force_flags(sv, lp, 0)
1897 #define sv_utf8_upgrade_nomg(sv) sv_utf8_upgrade_flags(sv, 0)
1898 #define sv_catpvn_nomg(dsv, sstr, slen) sv_catpvn_flags(dsv, sstr, slen, 0)
1899 #define sv_setsv(dsv, ssv) \
1900 sv_setsv_flags(dsv, ssv, SV_GMAGIC|SV_DO_COW_SVSETSV)
1901 #define sv_setsv_nomg(dsv, ssv) sv_setsv_flags(dsv, ssv, SV_DO_COW_SVSETSV)
1902 #define sv_catsv(dsv, ssv) sv_catsv_flags(dsv, ssv, SV_GMAGIC)
1903 #define sv_catsv_nomg(dsv, ssv) sv_catsv_flags(dsv, ssv, 0)
1904 #define sv_catsv_mg(dsv, ssv) sv_catsv_flags(dsv, ssv, SV_GMAGIC|SV_SMAGIC)
1905 #define sv_catpvn(dsv, sstr, slen) sv_catpvn_flags(dsv, sstr, slen, SV_GMAGIC)
1906 #define sv_catpvn_mg(sv, sstr, slen) \
1907 sv_catpvn_flags(sv, sstr, slen, SV_GMAGIC|SV_SMAGIC);
1908 #define sv_2pv(sv, lp) sv_2pv_flags(sv, lp, SV_GMAGIC)
1909 #define sv_2pv_nolen(sv) sv_2pv(sv, 0)
1910 #define sv_2pvbyte_nolen(sv) sv_2pvbyte(sv, 0)
1911 #define sv_2pvutf8_nolen(sv) sv_2pvutf8(sv, 0)
1912 #define sv_2pv_nomg(sv, lp) sv_2pv_flags(sv, lp, 0)
1913 #define sv_pvn_force(sv, lp) sv_pvn_force_flags(sv, lp, SV_GMAGIC)
1914 #define sv_utf8_upgrade(sv) sv_utf8_upgrade_flags(sv, SV_GMAGIC)
1915 #define sv_2iv(sv) sv_2iv_flags(sv, SV_GMAGIC)
1916 #define sv_2uv(sv) sv_2uv_flags(sv, SV_GMAGIC)
1918 /* Should be named SvCatPVN_utf8_upgrade? */
1919 #define sv_catpvn_utf8_upgrade(dsv, sstr, slen, nsv) \
1922 nsv = sv_2mortal(newSVpvn(sstr, slen)); \
1924 sv_setpvn(nsv, sstr, slen); \
1926 sv_utf8_upgrade(nsv); \
1927 sv_catsv(dsv, nsv); \
1931 =for apidoc Am|SV*|newRV_inc|SV* sv
1933 Creates an RV wrapper for an SV. The reference count for the original SV is
1939 #define newRV_inc(sv) newRV(sv)
1941 /* the following macros update any magic values this sv is associated with */
1944 =head1 Magical Functions
1946 =for apidoc Am|void|SvGETMAGIC|SV* sv
1947 Invokes C<mg_get> on an SV if it has 'get' magic. This macro evaluates its
1948 argument more than once.
1950 =for apidoc Am|void|SvSETMAGIC|SV* sv
1951 Invokes C<mg_set> on an SV if it has 'set' magic. This macro evaluates its
1952 argument more than once.
1954 =for apidoc Am|void|SvSetSV|SV* dsb|SV* ssv
1955 Calls C<sv_setsv> if dsv is not the same as ssv. May evaluate arguments
1958 =for apidoc Am|void|SvSetSV_nosteal|SV* dsv|SV* ssv
1959 Calls a non-destructive version of C<sv_setsv> if dsv is not the same as
1960 ssv. May evaluate arguments more than once.
1962 =for apidoc Am|void|SvSetMagicSV|SV* dsb|SV* ssv
1963 Like C<SvSetSV>, but does any set magic required afterwards.
1965 =for apidoc Am|void|SvSetMagicSV_nosteal|SV* dsv|SV* ssv
1966 Like C<SvSetSV_nosteal>, but does any set magic required afterwards.
1968 =for apidoc Am|void|SvSHARE|SV* sv
1969 Arranges for sv to be shared between threads if a suitable module
1972 =for apidoc Am|void|SvLOCK|SV* sv
1973 Arranges for a mutual exclusion lock to be obtained on sv if a suitable module
1976 =for apidoc Am|void|SvUNLOCK|SV* sv
1977 Releases a mutual exclusion lock on sv if a suitable module
1980 =head1 SV Manipulation Functions
1982 =for apidoc Am|char *|SvGROW|SV* sv|STRLEN len
1983 Expands the character buffer in the SV so that it has room for the
1984 indicated number of bytes (remember to reserve space for an extra trailing
1985 NUL character). Calls C<sv_grow> to perform the expansion if necessary.
1986 Returns a pointer to the character buffer.
1991 #define SvSHARE(sv) CALL_FPTR(PL_sharehook)(aTHX_ sv)
1992 #define SvLOCK(sv) CALL_FPTR(PL_lockhook)(aTHX_ sv)
1993 #define SvUNLOCK(sv) CALL_FPTR(PL_unlockhook)(aTHX_ sv)
1995 #define SvGETMAGIC(x) STMT_START { if (SvGMAGICAL(x)) mg_get(x); } STMT_END
1996 #define SvSETMAGIC(x) STMT_START { if (SvSMAGICAL(x)) mg_set(x); } STMT_END
1998 #define SvSetSV_and(dst,src,finally) \
2000 if ((dst) != (src)) { \
2001 sv_setsv(dst, src); \
2005 #define SvSetSV_nosteal_and(dst,src,finally) \
2007 if ((dst) != (src)) { \
2008 sv_setsv_flags(dst, src, SV_GMAGIC | SV_NOSTEAL | SV_DO_COW_SVSETSV); \
2013 #define SvSetSV(dst,src) \
2014 SvSetSV_and(dst,src,/*nothing*/;)
2015 #define SvSetSV_nosteal(dst,src) \
2016 SvSetSV_nosteal_and(dst,src,/*nothing*/;)
2018 #define SvSetMagicSV(dst,src) \
2019 SvSetSV_and(dst,src,SvSETMAGIC(dst))
2020 #define SvSetMagicSV_nosteal(dst,src) \
2021 SvSetSV_nosteal_and(dst,src,SvSETMAGIC(dst))
2024 #if !defined(SKIP_DEBUGGING)
2025 #define SvPEEK(sv) sv_peek(sv)
2027 #define SvPEEK(sv) ""
2030 #define SvIMMORTAL(sv) ((sv)==&PL_sv_undef || (sv)==&PL_sv_yes || (sv)==&PL_sv_no || (sv)==&PL_sv_placeholder)
2032 #define boolSV(b) ((b) ? &PL_sv_yes : &PL_sv_no)
2034 #define isGV(sv) (SvTYPE(sv) == SVt_PVGV)
2035 /* If I give every macro argument a different name, then there won't be bugs
2036 where nested macros get confused. Been there, done that. */
2037 #define isGV_with_GP(pwadak) \
2038 (((SvFLAGS(pwadak) & (SVp_POK|SVpgv_GP)) == SVpgv_GP) \
2039 && (SvTYPE(pwadak) == SVt_PVGV || SvTYPE(pwadak) == SVt_PVLV))
2040 #define isGV_with_GP_on(sv) STMT_START { \
2041 assert (SvTYPE(sv) == SVt_PVGV || SvTYPE(sv) == SVt_PVLV); \
2042 assert (!SvPOKp(sv)); \
2043 assert (!SvIOKp(sv)); \
2044 (SvFLAGS(sv) |= SVpgv_GP); \
2046 #define isGV_with_GP_off(sv) STMT_START { \
2047 assert (SvTYPE(sv) == SVt_PVGV || SvTYPE(sv) == SVt_PVLV); \
2048 assert (!SvPOKp(sv)); \
2049 assert (!SvIOKp(sv)); \
2050 (SvFLAGS(sv) &= ~SVpgv_GP); \
2054 #define SvGROW(sv,len) (SvLEN(sv) < (len) ? sv_grow(sv,len) : SvPVX(sv))
2055 #define SvGROW_mutable(sv,len) \
2056 (SvLEN(sv) < (len) ? sv_grow(sv,len) : SvPVX_mutable(sv))
2057 #define Sv_Grow sv_grow
2059 #define CLONEf_COPY_STACKS 1
2060 #define CLONEf_KEEP_PTR_TABLE 2
2061 #define CLONEf_CLONE_HOST 4
2062 #define CLONEf_JOIN_IN 8
2064 struct clone_params {
2067 PerlInterpreter *proto_perl;
2072 * c-indentation-style: bsd
2074 * indent-tabs-mode: t
2077 * ex: set ts=8 sts=4 sw=4 noet: