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1/* hv.h
2 *
3 * Copyright (C) 1991, 1992, 1993, 1996, 1997, 1998, 1999,
4 * 2000, 2001, 2002, 2003, 2005, 2006, 2007, 2008, by Larry Wall and others
5 *
6 * You may distribute under the terms of either the GNU General Public
7 * License or the Artistic License, as specified in the README file.
8 *
9 */
10
11/* These control hash traversal randomization and the environment variable PERL_PERTURB_KEYS.
12 * Currently disabling this functionality will break a few tests, but should otherwise work fine.
13 * See perlrun for more details. */
14
15#if defined(PERL_PERTURB_KEYS_DISABLED)
16# define PL_HASH_RAND_BITS_ENABLED 0
17# define PERL_HASH_ITER_BUCKET(iter) ((iter)->xhv_riter)
18#else
19# define PERL_HASH_RANDOMIZE_KEYS 1
20# if defined(PERL_PERTURB_KEYS_RANDOM)
21# define PL_HASH_RAND_BITS_ENABLED 1
22# elif defined(PERL_PERTURB_KEYS_DETERMINISTIC)
23# define PL_HASH_RAND_BITS_ENABLED 2
24# else
25# define USE_PERL_PERTURB_KEYS 1
26# define PL_HASH_RAND_BITS_ENABLED PL_hash_rand_bits_enabled
27# endif
28# define PERL_HASH_ITER_BUCKET(iter) (((iter)->xhv_riter) ^ ((iter)->xhv_rand))
29#endif
30
31/* entry in hash value chain */
32struct he {
33 /* Keep hent_next first in this structure, because sv_free_arenas take
34 advantage of this to share code between the he arenas and the SV
35 body arenas */
36 HE *hent_next; /* next entry in chain */
37 HEK *hent_hek; /* hash key */
38 union {
39 SV *hent_val; /* scalar value that was hashed */
40 Size_t hent_refcount; /* references for this shared hash key */
41 } he_valu;
42};
43
44/* hash key -- defined separately for use as shared pointer */
45struct hek {
46 U32 hek_hash; /* hash of key */
47 I32 hek_len; /* length of hash key */
48 char hek_key[1]; /* variable-length hash key */
49 /* the hash-key is \0-terminated */
50 /* after the \0 there is a byte for flags, such as whether the key
51 is UTF-8 */
52};
53
54struct shared_he {
55 struct he shared_he_he;
56 struct hek shared_he_hek;
57};
58
59/* Subject to change.
60 Don't access this directly.
61 Use the funcs in mro_core.c
62*/
63
64struct mro_alg {
65 AV *(*resolve)(pTHX_ HV* stash, U32 level);
66 const char *name;
67 U16 length;
68 U16 kflags; /* For the hash API - set HVhek_UTF8 if name is UTF-8 */
69 U32 hash; /* or 0 */
70};
71
72struct mro_meta {
73 /* a hash holding the different MROs private data. */
74 HV *mro_linear_all;
75 /* a pointer directly to the current MROs private data. If mro_linear_all
76 is NULL, this owns the SV reference, else it is just a pointer to a
77 value stored in and owned by mro_linear_all. */
78 SV *mro_linear_current;
79 HV *mro_nextmethod; /* next::method caching */
80 U32 cache_gen; /* Bumping this invalidates our method cache */
81 U32 pkg_gen; /* Bumps when local methods/@ISA change */
82 const struct mro_alg *mro_which; /* which mro alg is in use? */
83 HV *isa; /* Everything this class @ISA */
84 HV *super; /* SUPER method cache */
85 CV *destroy; /* DESTROY method if destroy_gen non-zero */
86 U32 destroy_gen; /* Generation number of DESTROY cache */
87};
88
89#define MRO_GET_PRIVATE_DATA(smeta, which) \
90 (((smeta)->mro_which && (which) == (smeta)->mro_which) \
91 ? (smeta)->mro_linear_current \
92 : Perl_mro_get_private_data(aTHX_ (smeta), (which)))
93
94/* Subject to change.
95 Don't access this directly.
96*/
97
98union _xhvnameu {
99 HEK *xhvnameu_name; /* When xhv_name_count is 0 */
100 HEK **xhvnameu_names; /* When xhv_name_count is non-0 */
101};
102
103struct xpvhv_aux {
104 union _xhvnameu xhv_name_u; /* name, if a symbol table */
105 AV *xhv_backreferences; /* back references for weak references */
106 HE *xhv_eiter; /* current entry of iterator */
107 I32 xhv_riter; /* current root of iterator */
108
109/* Concerning xhv_name_count: When non-zero, xhv_name_u contains a pointer
110 * to an array of HEK pointers, this being the length. The first element is
111 * the name of the stash, which may be NULL. If xhv_name_count is positive,
112 * then *xhv_name is one of the effective names. If xhv_name_count is nega-
113 * tive, then xhv_name_u.xhvnameu_names[1] is the first effective name.
114 */
115 I32 xhv_name_count;
116 struct mro_meta *xhv_mro_meta;
117#ifdef PERL_HASH_RANDOMIZE_KEYS
118 U32 xhv_rand; /* random value for hash traversal */
119 U32 xhv_last_rand; /* last random value for hash traversal,
120 used to detect each() after insert for warnings */
121#endif
122 U32 xhv_aux_flags; /* assorted extra flags */
123};
124
125#define HvAUXf_SCAN_STASH 0x1 /* stash is being scanned by gv_check */
126#define HvAUXf_NO_DEREF 0x2 /* @{}, %{} etc (and nomethod) not present */
127
128/* hash structure: */
129/* This structure must match the beginning of struct xpvmg in sv.h. */
130struct xpvhv {
131 HV* xmg_stash; /* class package */
132 union _xmgu xmg_u;
133 STRLEN xhv_keys; /* total keys, including placeholders */
134 STRLEN xhv_max; /* subscript of last element of xhv_array */
135};
136
137/*
138=head1 Hash Manipulation Functions
139
140=for apidoc AmU||HEf_SVKEY
141This flag, used in the length slot of hash entries and magic structures,
142specifies the structure contains an C<SV*> pointer where a C<char*> pointer
143is to be expected. (For information only--not to be used).
144
145=head1 Handy Values
146
147=for apidoc AmU||Nullhv
148Null HV pointer.
149
150(deprecated - use C<(HV *)NULL> instead)
151
152=head1 Hash Manipulation Functions
153
154=for apidoc Am|char*|HvNAME|HV* stash
155Returns the package name of a stash, or C<NULL> if C<stash> isn't a stash.
156See C<L</SvSTASH>>, C<L</CvSTASH>>.
157
158=for apidoc Am|STRLEN|HvNAMELEN|HV *stash
159Returns the length of the stash's name.
160
161=for apidoc Am|unsigned char|HvNAMEUTF8|HV *stash
162Returns true if the name is in UTF-8 encoding.
163
164=for apidoc Am|char*|HvENAME|HV* stash
165Returns the effective name of a stash, or NULL if there is none. The
166effective name represents a location in the symbol table where this stash
167resides. It is updated automatically when packages are aliased or deleted.
168A stash that is no longer in the symbol table has no effective name. This
169name is preferable to C<HvNAME> for use in MRO linearisations and isa
170caches.
171
172=for apidoc Am|STRLEN|HvENAMELEN|HV *stash
173Returns the length of the stash's effective name.
174
175=for apidoc Am|unsigned char|HvENAMEUTF8|HV *stash
176Returns true if the effective name is in UTF-8 encoding.
177
178=for apidoc Am|void*|HeKEY|HE* he
179Returns the actual pointer stored in the key slot of the hash entry. The
180pointer may be either C<char*> or C<SV*>, depending on the value of
181C<HeKLEN()>. Can be assigned to. The C<HePV()> or C<HeSVKEY()> macros are
182usually preferable for finding the value of a key.
183
184=for apidoc Am|STRLEN|HeKLEN|HE* he
185If this is negative, and amounts to C<HEf_SVKEY>, it indicates the entry
186holds an C<SV*> key. Otherwise, holds the actual length of the key. Can
187be assigned to. The C<HePV()> macro is usually preferable for finding key
188lengths.
189
190=for apidoc Am|SV*|HeVAL|HE* he
191Returns the value slot (type C<SV*>)
192stored in the hash entry. Can be assigned
193to.
194
195 SV *foo= HeVAL(hv);
196 HeVAL(hv)= sv;
197
198
199=for apidoc Am|U32|HeHASH|HE* he
200Returns the computed hash stored in the hash entry.
201
202=for apidoc Am|char*|HePV|HE* he|STRLEN len
203Returns the key slot of the hash entry as a C<char*> value, doing any
204necessary dereferencing of possibly C<SV*> keys. The length of the string
205is placed in C<len> (this is a macro, so do I<not> use C<&len>). If you do
206not care about what the length of the key is, you may use the global
207variable C<PL_na>, though this is rather less efficient than using a local
208variable. Remember though, that hash keys in perl are free to contain
209embedded nulls, so using C<strlen()> or similar is not a good way to find
210the length of hash keys. This is very similar to the C<SvPV()> macro
211described elsewhere in this document. See also C<L</HeUTF8>>.
212
213If you are using C<HePV> to get values to pass to C<newSVpvn()> to create a
214new SV, you should consider using C<newSVhek(HeKEY_hek(he))> as it is more
215efficient.
216
217=for apidoc Am|U32|HeUTF8|HE* he
218Returns whether the C<char *> value returned by C<HePV> is encoded in UTF-8,
219doing any necessary dereferencing of possibly C<SV*> keys. The value returned
220will be 0 or non-0, not necessarily 1 (or even a value with any low bits set),
221so B<do not> blindly assign this to a C<bool> variable, as C<bool> may be a
222typedef for C<char>.
223
224=for apidoc Am|SV*|HeSVKEY|HE* he
225Returns the key as an C<SV*>, or C<NULL> if the hash entry does not
226contain an C<SV*> key.
227
228=for apidoc Am|SV*|HeSVKEY_force|HE* he
229Returns the key as an C<SV*>. Will create and return a temporary mortal
230C<SV*> if the hash entry contains only a C<char*> key.
231
232=for apidoc Am|SV*|HeSVKEY_set|HE* he|SV* sv
233Sets the key to a given C<SV*>, taking care to set the appropriate flags to
234indicate the presence of an C<SV*> key, and returns the same
235C<SV*>.
236
237=cut
238*/
239
240#define PERL_HASH_DEFAULT_HvMAX 7
241
242/* During hsplit(), if HvMAX(hv)+1 (the new bucket count) is >= this value,
243 * we preallocate the HvAUX() struct.
244 * The assumption being that we are using so much space anyway we might
245 * as well allocate the extra bytes and speed up later keys()
246 * or each() operations. We don't do this to small hashes as we assume
247 * that a) it will be easy/fast to resize them to add the iterator, and b) that
248 * many of them will be objects which won't be traversed. Larger hashes however
249 * will take longer to extend, and the size of the aux struct is swamped by the
250 * overall length of the bucket array.
251 * */
252#define PERL_HV_ALLOC_AUX_SIZE (1 << 9)
253
254/* these hash entry flags ride on hent_klen (for use only in magic/tied HVs) */
255#define HEf_SVKEY -2 /* hent_key is an SV* */
256
257#ifndef PERL_CORE
258# define Nullhv Null(HV*)
259#endif
260#define HvARRAY(hv) ((hv)->sv_u.svu_hash)
261#define HvFILL(hv) Perl_hv_fill(aTHX_ MUTABLE_HV(hv))
262#define HvMAX(hv) ((XPVHV*) SvANY(hv))->xhv_max
263/* This quite intentionally does no flag checking first. That's your
264 responsibility. */
265#define HvAUX(hv) ((struct xpvhv_aux*)&(HvARRAY(hv)[HvMAX(hv)+1]))
266#define HvRITER(hv) (*Perl_hv_riter_p(aTHX_ MUTABLE_HV(hv)))
267#define HvEITER(hv) (*Perl_hv_eiter_p(aTHX_ MUTABLE_HV(hv)))
268#define HvRITER_set(hv,r) Perl_hv_riter_set(aTHX_ MUTABLE_HV(hv), r)
269#define HvEITER_set(hv,e) Perl_hv_eiter_set(aTHX_ MUTABLE_HV(hv), e)
270#define HvRITER_get(hv) (SvOOK(hv) ? HvAUX(hv)->xhv_riter : -1)
271#define HvEITER_get(hv) (SvOOK(hv) ? HvAUX(hv)->xhv_eiter : NULL)
272#define HvRAND_get(hv) (SvOOK(hv) ? HvAUX(hv)->xhv_rand : 0)
273#define HvLASTRAND_get(hv) (SvOOK(hv) ? HvAUX(hv)->xhv_last_rand : 0)
274
275#define HvNAME(hv) HvNAME_get(hv)
276#define HvNAMELEN(hv) HvNAMELEN_get(hv)
277#define HvENAME(hv) HvENAME_get(hv)
278#define HvENAMELEN(hv) HvENAMELEN_get(hv)
279
280/* Checking that hv is a valid package stash is the
281 caller's responsibility */
282#define HvMROMETA(hv) (HvAUX(hv)->xhv_mro_meta \
283 ? HvAUX(hv)->xhv_mro_meta \
284 : Perl_mro_meta_init(aTHX_ hv))
285
286#define HvNAME_HEK_NN(hv) \
287 ( \
288 HvAUX(hv)->xhv_name_count \
289 ? *HvAUX(hv)->xhv_name_u.xhvnameu_names \
290 : HvAUX(hv)->xhv_name_u.xhvnameu_name \
291 )
292/* This macro may go away without notice. */
293#define HvNAME_HEK(hv) \
294 (SvOOK(hv) && HvAUX(hv)->xhv_name_u.xhvnameu_name ? HvNAME_HEK_NN(hv) : NULL)
295#define HvNAME_get(hv) \
296 ((SvOOK(hv) && HvAUX(hv)->xhv_name_u.xhvnameu_name && HvNAME_HEK_NN(hv)) \
297 ? HEK_KEY(HvNAME_HEK_NN(hv)) : NULL)
298#define HvNAMELEN_get(hv) \
299 ((SvOOK(hv) && HvAUX(hv)->xhv_name_u.xhvnameu_name && HvNAME_HEK_NN(hv)) \
300 ? HEK_LEN(HvNAME_HEK_NN(hv)) : 0)
301#define HvNAMEUTF8(hv) \
302 ((SvOOK(hv) && HvAUX(hv)->xhv_name_u.xhvnameu_name && HvNAME_HEK_NN(hv)) \
303 ? HEK_UTF8(HvNAME_HEK_NN(hv)) : 0)
304#define HvENAME_HEK_NN(hv) \
305 ( \
306 HvAUX(hv)->xhv_name_count > 0 ? HvAUX(hv)->xhv_name_u.xhvnameu_names[0] : \
307 HvAUX(hv)->xhv_name_count < -1 ? HvAUX(hv)->xhv_name_u.xhvnameu_names[1] : \
308 HvAUX(hv)->xhv_name_count == -1 ? NULL : \
309 HvAUX(hv)->xhv_name_u.xhvnameu_name \
310 )
311#define HvENAME_HEK(hv) \
312 (SvOOK(hv) && HvAUX(hv)->xhv_name_u.xhvnameu_name ? HvENAME_HEK_NN(hv) : NULL)
313#define HvENAME_get(hv) \
314 ((SvOOK(hv) && HvAUX(hv)->xhv_name_u.xhvnameu_name && HvAUX(hv)->xhv_name_count != -1) \
315 ? HEK_KEY(HvENAME_HEK_NN(hv)) : NULL)
316#define HvENAMELEN_get(hv) \
317 ((SvOOK(hv) && HvAUX(hv)->xhv_name_u.xhvnameu_name && HvAUX(hv)->xhv_name_count != -1) \
318 ? HEK_LEN(HvENAME_HEK_NN(hv)) : 0)
319#define HvENAMEUTF8(hv) \
320 ((SvOOK(hv) && HvAUX(hv)->xhv_name_u.xhvnameu_name && HvAUX(hv)->xhv_name_count != -1) \
321 ? HEK_UTF8(HvENAME_HEK_NN(hv)) : 0)
322
323/* the number of keys (including any placeholders) */
324#define XHvTOTALKEYS(xhv) ((xhv)->xhv_keys)
325
326/*
327 * HvKEYS gets the number of keys that actually exist(), and is provided
328 * for backwards compatibility with old XS code. The core uses HvUSEDKEYS
329 * (keys, excluding placeholders) and HvTOTALKEYS (including placeholders)
330 */
331#define HvKEYS(hv) HvUSEDKEYS(hv)
332#define HvUSEDKEYS(hv) (HvTOTALKEYS(hv) - HvPLACEHOLDERS_get(hv))
333#define HvTOTALKEYS(hv) XHvTOTALKEYS((XPVHV*) SvANY(hv))
334#define HvPLACEHOLDERS(hv) (*Perl_hv_placeholders_p(aTHX_ MUTABLE_HV(hv)))
335#define HvPLACEHOLDERS_get(hv) (SvMAGIC(hv) ? Perl_hv_placeholders_get(aTHX_ (const HV *)hv) : 0)
336#define HvPLACEHOLDERS_set(hv,p) Perl_hv_placeholders_set(aTHX_ MUTABLE_HV(hv), p)
337
338#define HvSHAREKEYS(hv) (SvFLAGS(hv) & SVphv_SHAREKEYS)
339#define HvSHAREKEYS_on(hv) (SvFLAGS(hv) |= SVphv_SHAREKEYS)
340#define HvSHAREKEYS_off(hv) (SvFLAGS(hv) &= ~SVphv_SHAREKEYS)
341
342/* This is an optimisation flag. It won't be set if all hash keys have a 0
343 * flag. Currently the only flags relate to utf8.
344 * Hence it won't be set if all keys are 8 bit only. It will be set if any key
345 * is utf8 (including 8 bit keys that were entered as utf8, and need upgrading
346 * when retrieved during iteration. It may still be set when there are no longer
347 * any utf8 keys.
348 * See HVhek_ENABLEHVKFLAGS for the trigger.
349 */
350#define HvHASKFLAGS(hv) (SvFLAGS(hv) & SVphv_HASKFLAGS)
351#define HvHASKFLAGS_on(hv) (SvFLAGS(hv) |= SVphv_HASKFLAGS)
352#define HvHASKFLAGS_off(hv) (SvFLAGS(hv) &= ~SVphv_HASKFLAGS)
353
354#define HvLAZYDEL(hv) (SvFLAGS(hv) & SVphv_LAZYDEL)
355#define HvLAZYDEL_on(hv) (SvFLAGS(hv) |= SVphv_LAZYDEL)
356#define HvLAZYDEL_off(hv) (SvFLAGS(hv) &= ~SVphv_LAZYDEL)
357
358#ifndef PERL_CORE
359# define Nullhe Null(HE*)
360#endif
361#define HeNEXT(he) (he)->hent_next
362#define HeKEY_hek(he) (he)->hent_hek
363#define HeKEY(he) HEK_KEY(HeKEY_hek(he))
364#define HeKEY_sv(he) (*(SV**)HeKEY(he))
365#define HeKLEN(he) HEK_LEN(HeKEY_hek(he))
366#define HeKUTF8(he) HEK_UTF8(HeKEY_hek(he))
367#define HeKWASUTF8(he) HEK_WASUTF8(HeKEY_hek(he))
368#define HeKLEN_UTF8(he) (HeKUTF8(he) ? -HeKLEN(he) : HeKLEN(he))
369#define HeKFLAGS(he) HEK_FLAGS(HeKEY_hek(he))
370#define HeVAL(he) (he)->he_valu.hent_val
371#define HeHASH(he) HEK_HASH(HeKEY_hek(he))
372#define HePV(he,lp) ((HeKLEN(he) == HEf_SVKEY) ? \
373 SvPV(HeKEY_sv(he),lp) : \
374 ((lp = HeKLEN(he)), HeKEY(he)))
375#define HeUTF8(he) ((HeKLEN(he) == HEf_SVKEY) ? \
376 SvUTF8(HeKEY_sv(he)) : \
377 (U32)HeKUTF8(he))
378
379#define HeSVKEY(he) ((HeKEY(he) && \
380 HeKLEN(he) == HEf_SVKEY) ? \
381 HeKEY_sv(he) : NULL)
382
383#define HeSVKEY_force(he) (HeKEY(he) ? \
384 ((HeKLEN(he) == HEf_SVKEY) ? \
385 HeKEY_sv(he) : \
386 newSVpvn_flags(HeKEY(he), \
387 HeKLEN(he), \
388 SVs_TEMP | \
389 ( HeKUTF8(he) ? SVf_UTF8 : 0 ))) : \
390 &PL_sv_undef)
391#define HeSVKEY_set(he,sv) ((HeKLEN(he) = HEf_SVKEY), (HeKEY_sv(he) = sv))
392
393#ifndef PERL_CORE
394# define Nullhek Null(HEK*)
395#endif
396#define HEK_BASESIZE STRUCT_OFFSET(HEK, hek_key[0])
397#define HEK_HASH(hek) (hek)->hek_hash
398#define HEK_LEN(hek) (hek)->hek_len
399#define HEK_KEY(hek) (hek)->hek_key
400#define HEK_FLAGS(hek) (*((unsigned char *)(HEK_KEY(hek))+HEK_LEN(hek)+1))
401
402#define HVhek_UTF8 0x01 /* Key is utf8 encoded. */
403#define HVhek_WASUTF8 0x02 /* Key is bytes here, but was supplied as utf8. */
404#define HVhek_UNSHARED 0x08 /* This key isn't a shared hash key. */
405/* the following flags are options for functions, they are not stored in heks */
406#define HVhek_FREEKEY 0x100 /* Internal flag to say key is Newx()ed. */
407#define HVhek_PLACEHOLD 0x200 /* Internal flag to create placeholder.
408 * (may change, but Storable is a core module) */
409#define HVhek_KEYCANONICAL 0x400 /* Internal flag - key is in canonical form.
410 If the string is UTF-8, it cannot be
411 converted to bytes. */
412#define HVhek_MASK 0xFF
413
414#define HVhek_ENABLEHVKFLAGS (HVhek_MASK & ~(HVhek_UNSHARED))
415
416#define HEK_UTF8(hek) (HEK_FLAGS(hek) & HVhek_UTF8)
417#define HEK_UTF8_on(hek) (HEK_FLAGS(hek) |= HVhek_UTF8)
418#define HEK_UTF8_off(hek) (HEK_FLAGS(hek) &= ~HVhek_UTF8)
419#define HEK_WASUTF8(hek) (HEK_FLAGS(hek) & HVhek_WASUTF8)
420#define HEK_WASUTF8_on(hek) (HEK_FLAGS(hek) |= HVhek_WASUTF8)
421#define HEK_WASUTF8_off(hek) (HEK_FLAGS(hek) &= ~HVhek_WASUTF8)
422
423/* calculate HV array allocation */
424#ifndef PERL_USE_LARGE_HV_ALLOC
425/* Default to allocating the correct size - default to assuming that malloc()
426 is not broken and is efficient at allocating blocks sized at powers-of-two.
427*/
428# define PERL_HV_ARRAY_ALLOC_BYTES(size) ((size) * sizeof(HE*))
429#else
430# define MALLOC_OVERHEAD 16
431# define PERL_HV_ARRAY_ALLOC_BYTES(size) \
432 (((size) < 64) \
433 ? (size) * sizeof(HE*) \
434 : (size) * sizeof(HE*) * 2 - MALLOC_OVERHEAD)
435#endif
436
437/* Flags for hv_iternext_flags. */
438#define HV_ITERNEXT_WANTPLACEHOLDERS 0x01 /* Don't skip placeholders. */
439
440#define hv_iternext(hv) hv_iternext_flags(hv, 0)
441#define hv_magic(hv, gv, how) sv_magic(MUTABLE_SV(hv), MUTABLE_SV(gv), how, NULL, 0)
442#define hv_undef(hv) Perl_hv_undef_flags(aTHX_ hv, 0)
443
444#define Perl_sharepvn(pv, len, hash) HEK_KEY(share_hek(pv, len, hash))
445#define sharepvn(pv, len, hash) Perl_sharepvn(pv, len, hash)
446
447#define share_hek_hek(hek) \
448 (++(((struct shared_he *)(((char *)hek) \
449 - STRUCT_OFFSET(struct shared_he, \
450 shared_he_hek))) \
451 ->shared_he_he.he_valu.hent_refcount), \
452 hek)
453
454#define hv_store_ent(hv, keysv, val, hash) \
455 ((HE *) hv_common((hv), (keysv), NULL, 0, 0, HV_FETCH_ISSTORE, \
456 (val), (hash)))
457
458#define hv_exists_ent(hv, keysv, hash) \
459 (hv_common((hv), (keysv), NULL, 0, 0, HV_FETCH_ISEXISTS, 0, (hash)) \
460 ? TRUE : FALSE)
461#define hv_fetch_ent(hv, keysv, lval, hash) \
462 ((HE *) hv_common((hv), (keysv), NULL, 0, 0, \
463 ((lval) ? HV_FETCH_LVALUE : 0), NULL, (hash)))
464#define hv_delete_ent(hv, key, flags, hash) \
465 (MUTABLE_SV(hv_common((hv), (key), NULL, 0, 0, (flags) | HV_DELETE, \
466 NULL, (hash))))
467
468#define hv_store_flags(hv, key, klen, val, hash, flags) \
469 ((SV**) hv_common((hv), NULL, (key), (klen), (flags), \
470 (HV_FETCH_ISSTORE|HV_FETCH_JUST_SV), (val), \
471 (hash)))
472
473#define hv_store(hv, key, klen, val, hash) \
474 ((SV**) hv_common_key_len((hv), (key), (klen), \
475 (HV_FETCH_ISSTORE|HV_FETCH_JUST_SV), \
476 (val), (hash)))
477
478#define hv_exists(hv, key, klen) \
479 (hv_common_key_len((hv), (key), (klen), HV_FETCH_ISEXISTS, NULL, 0) \
480 ? TRUE : FALSE)
481
482#define hv_fetch(hv, key, klen, lval) \
483 ((SV**) hv_common_key_len((hv), (key), (klen), (lval) \
484 ? (HV_FETCH_JUST_SV | HV_FETCH_LVALUE) \
485 : HV_FETCH_JUST_SV, NULL, 0))
486
487#define hv_delete(hv, key, klen, flags) \
488 (MUTABLE_SV(hv_common_key_len((hv), (key), (klen), \
489 (flags) | HV_DELETE, NULL, 0)))
490
491#ifdef PERL_CORE
492# define hv_storehek(hv, hek, val) \
493 hv_common((hv), NULL, HEK_KEY(hek), HEK_LEN(hek), HEK_UTF8(hek), \
494 HV_FETCH_ISSTORE|HV_FETCH_JUST_SV, (val), HEK_HASH(hek))
495# define hv_fetchhek(hv, hek, lval) \
496 ((SV **) \
497 hv_common((hv), NULL, HEK_KEY(hek), HEK_LEN(hek), HEK_UTF8(hek), \
498 (lval) \
499 ? (HV_FETCH_JUST_SV | HV_FETCH_LVALUE) \
500 : HV_FETCH_JUST_SV, \
501 NULL, HEK_HASH(hek)))
502# define hv_deletehek(hv, hek, flags) \
503 hv_common((hv), NULL, HEK_KEY(hek), HEK_LEN(hek), HEK_UTF8(hek), \
504 (flags)|HV_DELETE, NULL, HEK_HASH(hek))
505#endif
506
507/* This refcounted he structure is used for storing the hints used for lexical
508 pragmas. Without threads, it's basically struct he + refcount.
509 With threads, life gets more complex as the structure needs to be shared
510 between threads (because it hangs from OPs, which are shared), hence the
511 alternate definition and mutex. */
512
513struct refcounted_he;
514
515/* flags for the refcounted_he API */
516#define REFCOUNTED_HE_KEY_UTF8 0x00000001
517#ifdef PERL_CORE
518# define REFCOUNTED_HE_EXISTS 0x00000002
519#endif
520
521#ifdef PERL_CORE
522
523/* Gosh. This really isn't a good name any longer. */
524struct refcounted_he {
525 struct refcounted_he *refcounted_he_next; /* next entry in chain */
526#ifdef USE_ITHREADS
527 U32 refcounted_he_hash;
528 U32 refcounted_he_keylen;
529#else
530 HEK *refcounted_he_hek; /* hint key */
531#endif
532 union {
533 IV refcounted_he_u_iv;
534 UV refcounted_he_u_uv;
535 STRLEN refcounted_he_u_len;
536 void *refcounted_he_u_ptr; /* Might be useful in future */
537 } refcounted_he_val;
538 U32 refcounted_he_refcnt; /* reference count */
539 /* First byte is flags. Then NUL-terminated value. Then for ithreads,
540 non-NUL terminated key. */
541 char refcounted_he_data[1];
542};
543
544/*
545=for apidoc m|SV *|refcounted_he_fetch_pvs|const struct refcounted_he *chain|const char *key|U32 flags
546
547Like L</refcounted_he_fetch_pvn>, but takes a C<NUL>-terminated literal string
548instead of a string/length pair, and no precomputed hash.
549
550=cut
551*/
552
553#define refcounted_he_fetch_pvs(chain, key, flags) \
554 Perl_refcounted_he_fetch_pvn(aTHX_ chain, STR_WITH_LEN(key), 0, flags)
555
556/*
557=for apidoc m|struct refcounted_he *|refcounted_he_new_pvs|struct refcounted_he *parent|const char *key|SV *value|U32 flags
558
559Like L</refcounted_he_new_pvn>, but takes a C<NUL>-terminated literal string
560instead of a string/length pair, and no precomputed hash.
561
562=cut
563*/
564
565#define refcounted_he_new_pvs(parent, key, value, flags) \
566 Perl_refcounted_he_new_pvn(aTHX_ parent, STR_WITH_LEN(key), 0, value, flags)
567
568/* Flag bits are HVhek_UTF8, HVhek_WASUTF8, then */
569#define HVrhek_undef 0x00 /* Value is undef. */
570#define HVrhek_delete 0x10 /* Value is placeholder - signifies delete. */
571#define HVrhek_IV 0x20 /* Value is IV. */
572#define HVrhek_UV 0x30 /* Value is UV. */
573#define HVrhek_PV 0x40 /* Value is a (byte) string. */
574#define HVrhek_PV_UTF8 0x50 /* Value is a (utf8) string. */
575/* Two spare. As these have to live in the optree, you can't store anything
576 interpreter specific, such as SVs. :-( */
577#define HVrhek_typemask 0x70
578
579#ifdef USE_ITHREADS
580/* A big expression to find the key offset */
581#define REF_HE_KEY(chain) \
582 ((((chain->refcounted_he_data[0] & 0x60) == 0x40) \
583 ? chain->refcounted_he_val.refcounted_he_u_len + 1 : 0) \
584 + 1 + chain->refcounted_he_data)
585#endif
586
587# ifdef USE_ITHREADS
588# define HINTS_REFCNT_LOCK MUTEX_LOCK(&PL_hints_mutex)
589# define HINTS_REFCNT_UNLOCK MUTEX_UNLOCK(&PL_hints_mutex)
590# else
591# define HINTS_REFCNT_LOCK NOOP
592# define HINTS_REFCNT_UNLOCK NOOP
593# endif
594#endif
595
596#ifdef USE_ITHREADS
597# define HINTS_REFCNT_INIT MUTEX_INIT(&PL_hints_mutex)
598# define HINTS_REFCNT_TERM MUTEX_DESTROY(&PL_hints_mutex)
599#else
600# define HINTS_REFCNT_INIT NOOP
601# define HINTS_REFCNT_TERM NOOP
602#endif
603
604/* Hash actions
605 * Passed in PERL_MAGIC_uvar calls
606 */
607#define HV_DISABLE_UVAR_XKEY 0x01
608/* We need to ensure that these don't clash with G_DISCARD, which is 2, as it
609 is documented as being passed to hv_delete(). */
610#define HV_FETCH_ISSTORE 0x04
611#define HV_FETCH_ISEXISTS 0x08
612#define HV_FETCH_LVALUE 0x10
613#define HV_FETCH_JUST_SV 0x20
614#define HV_DELETE 0x40
615#define HV_FETCH_EMPTY_HE 0x80 /* Leave HeVAL null. */
616
617/* Must not conflict with HVhek_UTF8 */
618#define HV_NAME_SETALL 0x02
619
620/*
621=for apidoc newHV
622
623Creates a new HV. The reference count is set to 1.
624
625=cut
626*/
627
628#define newHV() MUTABLE_HV(newSV_type(SVt_PVHV))
629
630#include "hv_func.h"
631
632/*
633 * ex: set ts=8 sts=4 sw=4 et:
634 */