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1/* regcomp.c
2 */
3
4/*
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5 * 'A fair jaw-cracker dwarf-language must be.' --Samwise Gamgee
6 *
7 * [p.285 of _The Lord of the Rings_, II/iii: "The Ring Goes South"]
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8 */
9
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10/* This file contains functions for compiling a regular expression. See
11 * also regexec.c which funnily enough, contains functions for executing
166f8a29 12 * a regular expression.
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13 *
14 * This file is also copied at build time to ext/re/re_comp.c, where
15 * it's built with -DPERL_EXT_RE_BUILD -DPERL_EXT_RE_DEBUG -DPERL_EXT.
16 * This causes the main functions to be compiled under new names and with
17 * debugging support added, which makes "use re 'debug'" work.
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18 */
19
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20/* NOTE: this is derived from Henry Spencer's regexp code, and should not
21 * confused with the original package (see point 3 below). Thanks, Henry!
22 */
23
24/* Additional note: this code is very heavily munged from Henry's version
25 * in places. In some spots I've traded clarity for efficiency, so don't
26 * blame Henry for some of the lack of readability.
27 */
28
e50aee73 29/* The names of the functions have been changed from regcomp and
3b753521 30 * regexec to pregcomp and pregexec in order to avoid conflicts
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31 * with the POSIX routines of the same names.
32*/
33
b9d5759e 34#ifdef PERL_EXT_RE_BUILD
54df2634 35#include "re_top.h"
b81d288d 36#endif
56953603 37
a687059c 38/*
e50aee73 39 * pregcomp and pregexec -- regsub and regerror are not used in perl
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40 *
41 * Copyright (c) 1986 by University of Toronto.
42 * Written by Henry Spencer. Not derived from licensed software.
43 *
44 * Permission is granted to anyone to use this software for any
45 * purpose on any computer system, and to redistribute it freely,
46 * subject to the following restrictions:
47 *
48 * 1. The author is not responsible for the consequences of use of
49 * this software, no matter how awful, even if they arise
50 * from defects in it.
51 *
52 * 2. The origin of this software must not be misrepresented, either
53 * by explicit claim or by omission.
54 *
55 * 3. Altered versions must be plainly marked as such, and must not
56 * be misrepresented as being the original software.
57 *
58 *
59 **** Alterations to Henry's code are...
60 ****
4bb101f2 61 **** Copyright (C) 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
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62 **** 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008
63 **** by Larry Wall and others
a687059c 64 ****
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65 **** You may distribute under the terms of either the GNU General Public
66 **** License or the Artistic License, as specified in the README file.
67
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68 *
69 * Beware that some of this code is subtly aware of the way operator
70 * precedence is structured in regular expressions. Serious changes in
71 * regular-expression syntax might require a total rethink.
72 */
73#include "EXTERN.h"
864dbfa3 74#define PERL_IN_REGCOMP_C
a687059c 75#include "perl.h"
d06ea78c 76
acfe0abc 77#ifndef PERL_IN_XSUB_RE
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78# include "INTERN.h"
79#endif
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80
81#define REG_COMP_C
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82#ifdef PERL_IN_XSUB_RE
83# include "re_comp.h"
84#else
85# include "regcomp.h"
86#endif
a687059c 87
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88#include "dquote_static.c"
89
d4cce5f1 90#ifdef op
11343788 91#undef op
d4cce5f1 92#endif /* op */
11343788 93
fe14fcc3 94#ifdef MSDOS
7e4e8c89 95# if defined(BUGGY_MSC6)
fe14fcc3 96 /* MSC 6.00A breaks on op/regexp.t test 85 unless we turn this off */
7e4e8c89 97# pragma optimize("a",off)
fe14fcc3 98 /* But MSC 6.00A is happy with 'w', for aliases only across function calls*/
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99# pragma optimize("w",on )
100# endif /* BUGGY_MSC6 */
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101#endif /* MSDOS */
102
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103#ifndef STATIC
104#define STATIC static
105#endif
106
830247a4 107typedef struct RExC_state_t {
e2509266 108 U32 flags; /* are we folding, multilining? */
830247a4 109 char *precomp; /* uncompiled string. */
288b8c02 110 REGEXP *rx_sv; /* The SV that is the regexp. */
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111 regexp *rx; /* perl core regexp structure */
112 regexp_internal *rxi; /* internal data for regexp object pprivate field */
fac92740 113 char *start; /* Start of input for compile */
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114 char *end; /* End of input for compile */
115 char *parse; /* Input-scan pointer. */
116 I32 whilem_seen; /* number of WHILEM in this expr */
fac92740 117 regnode *emit_start; /* Start of emitted-code area */
3b57cd43 118 regnode *emit_bound; /* First regnode outside of the allocated space */
ffc61ed2 119 regnode *emit; /* Code-emit pointer; &regdummy = don't = compiling */
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120 I32 naughty; /* How bad is this pattern? */
121 I32 sawback; /* Did we see \1, ...? */
122 U32 seen;
123 I32 size; /* Code size. */
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124 I32 npar; /* Capture buffer count, (OPEN). */
125 I32 cpar; /* Capture buffer count, (CLOSE). */
e2e6a0f1 126 I32 nestroot; /* root parens we are in - used by accept */
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127 I32 extralen;
128 I32 seen_zerolen;
129 I32 seen_evals;
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130 regnode **open_parens; /* pointers to open parens */
131 regnode **close_parens; /* pointers to close parens */
132 regnode *opend; /* END node in program */
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133 I32 utf8; /* whether the pattern is utf8 or not */
134 I32 orig_utf8; /* whether the pattern was originally in utf8 */
135 /* XXX use this for future optimisation of case
136 * where pattern must be upgraded to utf8. */
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137 I32 uni_semantics; /* If a d charset modifier should use unicode
138 rules, even if the pattern is not in
139 utf8 */
81714fb9 140 HV *paren_names; /* Paren names */
1f1031fe 141
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142 regnode **recurse; /* Recurse regops */
143 I32 recurse_count; /* Number of recurse regops */
b57e4118 144 I32 in_lookbehind;
4624b182 145 I32 contains_locale;
bb3f3ed2 146 I32 override_recoding;
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147#if ADD_TO_REGEXEC
148 char *starttry; /* -Dr: where regtry was called. */
149#define RExC_starttry (pRExC_state->starttry)
150#endif
3dab1dad 151#ifdef DEBUGGING
be8e71aa 152 const char *lastparse;
3dab1dad 153 I32 lastnum;
1f1031fe 154 AV *paren_name_list; /* idx -> name */
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155#define RExC_lastparse (pRExC_state->lastparse)
156#define RExC_lastnum (pRExC_state->lastnum)
1f1031fe 157#define RExC_paren_name_list (pRExC_state->paren_name_list)
3dab1dad 158#endif
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159} RExC_state_t;
160
e2509266 161#define RExC_flags (pRExC_state->flags)
830247a4 162#define RExC_precomp (pRExC_state->precomp)
288b8c02 163#define RExC_rx_sv (pRExC_state->rx_sv)
830247a4 164#define RExC_rx (pRExC_state->rx)
f8fc2ecf 165#define RExC_rxi (pRExC_state->rxi)
fac92740 166#define RExC_start (pRExC_state->start)
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167#define RExC_end (pRExC_state->end)
168#define RExC_parse (pRExC_state->parse)
169#define RExC_whilem_seen (pRExC_state->whilem_seen)
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170#ifdef RE_TRACK_PATTERN_OFFSETS
171#define RExC_offsets (pRExC_state->rxi->u.offsets) /* I am not like the others */
172#endif
830247a4 173#define RExC_emit (pRExC_state->emit)
fac92740 174#define RExC_emit_start (pRExC_state->emit_start)
3b57cd43 175#define RExC_emit_bound (pRExC_state->emit_bound)
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176#define RExC_naughty (pRExC_state->naughty)
177#define RExC_sawback (pRExC_state->sawback)
178#define RExC_seen (pRExC_state->seen)
179#define RExC_size (pRExC_state->size)
180#define RExC_npar (pRExC_state->npar)
e2e6a0f1 181#define RExC_nestroot (pRExC_state->nestroot)
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182#define RExC_extralen (pRExC_state->extralen)
183#define RExC_seen_zerolen (pRExC_state->seen_zerolen)
184#define RExC_seen_evals (pRExC_state->seen_evals)
1aa99e6b 185#define RExC_utf8 (pRExC_state->utf8)
e40e74fe 186#define RExC_uni_semantics (pRExC_state->uni_semantics)
02daf0ab 187#define RExC_orig_utf8 (pRExC_state->orig_utf8)
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188#define RExC_open_parens (pRExC_state->open_parens)
189#define RExC_close_parens (pRExC_state->close_parens)
190#define RExC_opend (pRExC_state->opend)
81714fb9 191#define RExC_paren_names (pRExC_state->paren_names)
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192#define RExC_recurse (pRExC_state->recurse)
193#define RExC_recurse_count (pRExC_state->recurse_count)
b57e4118 194#define RExC_in_lookbehind (pRExC_state->in_lookbehind)
4624b182 195#define RExC_contains_locale (pRExC_state->contains_locale)
bb3f3ed2 196#define RExC_override_recoding (pRExC_state->override_recoding)
830247a4 197
cde0cee5 198
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199#define ISMULT1(c) ((c) == '*' || (c) == '+' || (c) == '?')
200#define ISMULT2(s) ((*s) == '*' || (*s) == '+' || (*s) == '?' || \
201 ((*s) == '{' && regcurly(s)))
a687059c 202
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203#ifdef SPSTART
204#undef SPSTART /* dratted cpp namespace... */
205#endif
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206/*
207 * Flags to be passed up and down.
208 */
a687059c 209#define WORST 0 /* Worst case. */
a3b492c3 210#define HASWIDTH 0x01 /* Known to match non-null strings. */
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211
212/* Simple enough to be STAR/PLUS operand, in an EXACT node must be a single
d7b56a3c 213 * character, and if utf8, must be invariant. Note that this is not the same thing as REGNODE_SIMPLE */
fda99bee 214#define SIMPLE 0x02
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215#define SPSTART 0x04 /* Starts with * or +. */
216#define TRYAGAIN 0x08 /* Weeded out a declaration. */
217#define POSTPONED 0x10 /* (?1),(?&name), (??{...}) or similar */
a687059c 218
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219#define REG_NODE_NUM(x) ((x) ? (int)((x)-RExC_emit_start) : -1)
220
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221/* whether trie related optimizations are enabled */
222#if PERL_ENABLE_EXTENDED_TRIE_OPTIMISATION
223#define TRIE_STUDY_OPT
786e8c11 224#define FULL_TRIE_STUDY
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225#define TRIE_STCLASS
226#endif
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227
228
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229
230#define PBYTE(u8str,paren) ((U8*)(u8str))[(paren) >> 3]
231#define PBITVAL(paren) (1 << ((paren) & 7))
232#define PAREN_TEST(u8str,paren) ( PBYTE(u8str,paren) & PBITVAL(paren))
233#define PAREN_SET(u8str,paren) PBYTE(u8str,paren) |= PBITVAL(paren)
234#define PAREN_UNSET(u8str,paren) PBYTE(u8str,paren) &= (~PBITVAL(paren))
235
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236/* If not already in utf8, do a longjmp back to the beginning */
237#define UTF8_LONGJMP 42 /* Choose a value not likely to ever conflict */
238#define REQUIRE_UTF8 STMT_START { \
239 if (! UTF) JMPENV_JUMP(UTF8_LONGJMP); \
240 } STMT_END
40d049e4 241
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242/* About scan_data_t.
243
244 During optimisation we recurse through the regexp program performing
245 various inplace (keyhole style) optimisations. In addition study_chunk
246 and scan_commit populate this data structure with information about
247 what strings MUST appear in the pattern. We look for the longest
3b753521 248 string that must appear at a fixed location, and we look for the
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249 longest string that may appear at a floating location. So for instance
250 in the pattern:
251
252 /FOO[xX]A.*B[xX]BAR/
253
254 Both 'FOO' and 'A' are fixed strings. Both 'B' and 'BAR' are floating
255 strings (because they follow a .* construct). study_chunk will identify
256 both FOO and BAR as being the longest fixed and floating strings respectively.
257
258 The strings can be composites, for instance
259
260 /(f)(o)(o)/
261
262 will result in a composite fixed substring 'foo'.
263
264 For each string some basic information is maintained:
265
266 - offset or min_offset
267 This is the position the string must appear at, or not before.
268 It also implicitly (when combined with minlenp) tells us how many
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269 characters must match before the string we are searching for.
270 Likewise when combined with minlenp and the length of the string it
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271 tells us how many characters must appear after the string we have
272 found.
273
274 - max_offset
275 Only used for floating strings. This is the rightmost point that
3b753521 276 the string can appear at. If set to I32 max it indicates that the
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277 string can occur infinitely far to the right.
278
279 - minlenp
280 A pointer to the minimum length of the pattern that the string
281 was found inside. This is important as in the case of positive
282 lookahead or positive lookbehind we can have multiple patterns
283 involved. Consider
284
285 /(?=FOO).*F/
286
287 The minimum length of the pattern overall is 3, the minimum length
288 of the lookahead part is 3, but the minimum length of the part that
289 will actually match is 1. So 'FOO's minimum length is 3, but the
290 minimum length for the F is 1. This is important as the minimum length
291 is used to determine offsets in front of and behind the string being
292 looked for. Since strings can be composites this is the length of the
486ec47a 293 pattern at the time it was committed with a scan_commit. Note that
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294 the length is calculated by study_chunk, so that the minimum lengths
295 are not known until the full pattern has been compiled, thus the
296 pointer to the value.
297
298 - lookbehind
299
300 In the case of lookbehind the string being searched for can be
301 offset past the start point of the final matching string.
302 If this value was just blithely removed from the min_offset it would
303 invalidate some of the calculations for how many chars must match
304 before or after (as they are derived from min_offset and minlen and
305 the length of the string being searched for).
306 When the final pattern is compiled and the data is moved from the
307 scan_data_t structure into the regexp structure the information
308 about lookbehind is factored in, with the information that would
309 have been lost precalculated in the end_shift field for the
310 associated string.
311
312 The fields pos_min and pos_delta are used to store the minimum offset
313 and the delta to the maximum offset at the current point in the pattern.
314
315*/
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316
317typedef struct scan_data_t {
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318 /*I32 len_min; unused */
319 /*I32 len_delta; unused */
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320 I32 pos_min;
321 I32 pos_delta;
322 SV *last_found;
1de06328 323 I32 last_end; /* min value, <0 unless valid. */
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324 I32 last_start_min;
325 I32 last_start_max;
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326 SV **longest; /* Either &l_fixed, or &l_float. */
327 SV *longest_fixed; /* longest fixed string found in pattern */
328 I32 offset_fixed; /* offset where it starts */
486ec47a 329 I32 *minlen_fixed; /* pointer to the minlen relevant to the string */
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330 I32 lookbehind_fixed; /* is the position of the string modfied by LB */
331 SV *longest_float; /* longest floating string found in pattern */
332 I32 offset_float_min; /* earliest point in string it can appear */
333 I32 offset_float_max; /* latest point in string it can appear */
486ec47a 334 I32 *minlen_float; /* pointer to the minlen relevant to the string */
1de06328 335 I32 lookbehind_float; /* is the position of the string modified by LB */
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336 I32 flags;
337 I32 whilem_c;
cb434fcc 338 I32 *last_closep;
653099ff 339 struct regnode_charclass_class *start_class;
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340} scan_data_t;
341
a687059c 342/*
e50aee73 343 * Forward declarations for pregcomp()'s friends.
a687059c 344 */
a0d0e21e 345
27da23d5 346static const scan_data_t zero_scan_data =
1de06328 347 { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 ,0};
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348
349#define SF_BEFORE_EOL (SF_BEFORE_SEOL|SF_BEFORE_MEOL)
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350#define SF_BEFORE_SEOL 0x0001
351#define SF_BEFORE_MEOL 0x0002
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352#define SF_FIX_BEFORE_EOL (SF_FIX_BEFORE_SEOL|SF_FIX_BEFORE_MEOL)
353#define SF_FL_BEFORE_EOL (SF_FL_BEFORE_SEOL|SF_FL_BEFORE_MEOL)
354
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355#ifdef NO_UNARY_PLUS
356# define SF_FIX_SHIFT_EOL (0+2)
357# define SF_FL_SHIFT_EOL (0+4)
358#else
359# define SF_FIX_SHIFT_EOL (+2)
360# define SF_FL_SHIFT_EOL (+4)
361#endif
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362
363#define SF_FIX_BEFORE_SEOL (SF_BEFORE_SEOL << SF_FIX_SHIFT_EOL)
364#define SF_FIX_BEFORE_MEOL (SF_BEFORE_MEOL << SF_FIX_SHIFT_EOL)
365
366#define SF_FL_BEFORE_SEOL (SF_BEFORE_SEOL << SF_FL_SHIFT_EOL)
367#define SF_FL_BEFORE_MEOL (SF_BEFORE_MEOL << SF_FL_SHIFT_EOL) /* 0x20 */
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368#define SF_IS_INF 0x0040
369#define SF_HAS_PAR 0x0080
370#define SF_IN_PAR 0x0100
371#define SF_HAS_EVAL 0x0200
372#define SCF_DO_SUBSTR 0x0400
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373#define SCF_DO_STCLASS_AND 0x0800
374#define SCF_DO_STCLASS_OR 0x1000
375#define SCF_DO_STCLASS (SCF_DO_STCLASS_AND|SCF_DO_STCLASS_OR)
e1901655 376#define SCF_WHILEM_VISITED_POS 0x2000
c277df42 377
786e8c11 378#define SCF_TRIE_RESTUDY 0x4000 /* Do restudy? */
e2e6a0f1 379#define SCF_SEEN_ACCEPT 0x8000
07be1b83 380
43fead97 381#define UTF cBOOL(RExC_utf8)
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382#define LOC (get_regex_charset(RExC_flags) == REGEX_LOCALE_CHARSET)
383#define UNI_SEMANTICS (get_regex_charset(RExC_flags) == REGEX_UNICODE_CHARSET)
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384#define DEPENDS_SEMANTICS (get_regex_charset(RExC_flags) == REGEX_DEPENDS_CHARSET)
385#define AT_LEAST_UNI_SEMANTICS (get_regex_charset(RExC_flags) >= REGEX_UNICODE_CHARSET)
386#define ASCII_RESTRICTED (get_regex_charset(RExC_flags) == REGEX_ASCII_RESTRICTED_CHARSET)
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387#define MORE_ASCII_RESTRICTED (get_regex_charset(RExC_flags) == REGEX_ASCII_MORE_RESTRICTED_CHARSET)
388#define AT_LEAST_ASCII_RESTRICTED (get_regex_charset(RExC_flags) >= REGEX_ASCII_RESTRICTED_CHARSET)
a62b1201 389
43fead97 390#define FOLD cBOOL(RExC_flags & RXf_PMf_FOLD)
a0ed51b3 391
ffc61ed2 392#define OOB_UNICODE 12345678
93733859 393#define OOB_NAMEDCLASS -1
b8c5462f 394
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395#define CHR_SVLEN(sv) (UTF ? sv_len_utf8(sv) : SvCUR(sv))
396#define CHR_DIST(a,b) (UTF ? utf8_distance(a,b) : a - b)
397
8615cb43 398
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399/* length of regex to show in messages that don't mark a position within */
400#define RegexLengthToShowInErrorMessages 127
401
402/*
403 * If MARKER[12] are adjusted, be sure to adjust the constants at the top
404 * of t/op/regmesg.t, the tests in t/op/re_tests, and those in
405 * op/pragma/warn/regcomp.
406 */
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407#define MARKER1 "<-- HERE" /* marker as it appears in the description */
408#define MARKER2 " <-- HERE " /* marker as it appears within the regex */
b81d288d 409
7253e4e3 410#define REPORT_LOCATION " in regex; marked by " MARKER1 " in m/%.*s" MARKER2 "%s/"
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411
412/*
413 * Calls SAVEDESTRUCTOR_X if needed, then calls Perl_croak with the given
414 * arg. Show regex, up to a maximum length. If it's too long, chop and add
415 * "...".
416 */
58e23c8d 417#define _FAIL(code) STMT_START { \
bfed75c6 418 const char *ellipses = ""; \
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419 IV len = RExC_end - RExC_precomp; \
420 \
421 if (!SIZE_ONLY) \
288b8c02 422 SAVEDESTRUCTOR_X(clear_re,(void*)RExC_rx_sv); \
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423 if (len > RegexLengthToShowInErrorMessages) { \
424 /* chop 10 shorter than the max, to ensure meaning of "..." */ \
425 len = RegexLengthToShowInErrorMessages - 10; \
426 ellipses = "..."; \
427 } \
58e23c8d 428 code; \
ccb2c380 429} STMT_END
8615cb43 430
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431#define FAIL(msg) _FAIL( \
432 Perl_croak(aTHX_ "%s in regex m/%.*s%s/", \
433 msg, (int)len, RExC_precomp, ellipses))
434
435#define FAIL2(msg,arg) _FAIL( \
436 Perl_croak(aTHX_ msg " in regex m/%.*s%s/", \
437 arg, (int)len, RExC_precomp, ellipses))
438
b45f050a 439/*
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440 * Simple_vFAIL -- like FAIL, but marks the current location in the scan
441 */
ccb2c380 442#define Simple_vFAIL(m) STMT_START { \
a28509cc 443 const IV offset = RExC_parse - RExC_precomp; \
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MP
444 Perl_croak(aTHX_ "%s" REPORT_LOCATION, \
445 m, (int)offset, RExC_precomp, RExC_precomp + offset); \
446} STMT_END
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447
448/*
449 * Calls SAVEDESTRUCTOR_X if needed, then Simple_vFAIL()
450 */
ccb2c380
MP
451#define vFAIL(m) STMT_START { \
452 if (!SIZE_ONLY) \
288b8c02 453 SAVEDESTRUCTOR_X(clear_re,(void*)RExC_rx_sv); \
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454 Simple_vFAIL(m); \
455} STMT_END
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456
457/*
458 * Like Simple_vFAIL(), but accepts two arguments.
459 */
ccb2c380 460#define Simple_vFAIL2(m,a1) STMT_START { \
a28509cc 461 const IV offset = RExC_parse - RExC_precomp; \
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462 S_re_croak2(aTHX_ m, REPORT_LOCATION, a1, \
463 (int)offset, RExC_precomp, RExC_precomp + offset); \
464} STMT_END
b45f050a
JF
465
466/*
467 * Calls SAVEDESTRUCTOR_X if needed, then Simple_vFAIL2().
468 */
ccb2c380
MP
469#define vFAIL2(m,a1) STMT_START { \
470 if (!SIZE_ONLY) \
288b8c02 471 SAVEDESTRUCTOR_X(clear_re,(void*)RExC_rx_sv); \
ccb2c380
MP
472 Simple_vFAIL2(m, a1); \
473} STMT_END
b45f050a
JF
474
475
476/*
477 * Like Simple_vFAIL(), but accepts three arguments.
478 */
ccb2c380 479#define Simple_vFAIL3(m, a1, a2) STMT_START { \
a28509cc 480 const IV offset = RExC_parse - RExC_precomp; \
ccb2c380
MP
481 S_re_croak2(aTHX_ m, REPORT_LOCATION, a1, a2, \
482 (int)offset, RExC_precomp, RExC_precomp + offset); \
483} STMT_END
b45f050a
JF
484
485/*
486 * Calls SAVEDESTRUCTOR_X if needed, then Simple_vFAIL3().
487 */
ccb2c380
MP
488#define vFAIL3(m,a1,a2) STMT_START { \
489 if (!SIZE_ONLY) \
288b8c02 490 SAVEDESTRUCTOR_X(clear_re,(void*)RExC_rx_sv); \
ccb2c380
MP
491 Simple_vFAIL3(m, a1, a2); \
492} STMT_END
b45f050a
JF
493
494/*
495 * Like Simple_vFAIL(), but accepts four arguments.
496 */
ccb2c380 497#define Simple_vFAIL4(m, a1, a2, a3) STMT_START { \
a28509cc 498 const IV offset = RExC_parse - RExC_precomp; \
ccb2c380
MP
499 S_re_croak2(aTHX_ m, REPORT_LOCATION, a1, a2, a3, \
500 (int)offset, RExC_precomp, RExC_precomp + offset); \
501} STMT_END
b45f050a 502
668c081a 503#define ckWARNreg(loc,m) STMT_START { \
a28509cc 504 const IV offset = loc - RExC_precomp; \
f10f4c18
NC
505 Perl_ck_warner(aTHX_ packWARN(WARN_REGEXP), m REPORT_LOCATION, \
506 (int)offset, RExC_precomp, RExC_precomp + offset); \
ccb2c380
MP
507} STMT_END
508
668c081a 509#define ckWARNregdep(loc,m) STMT_START { \
a28509cc 510 const IV offset = loc - RExC_precomp; \
d1d15184 511 Perl_ck_warner_d(aTHX_ packWARN2(WARN_DEPRECATED, WARN_REGEXP), \
f10f4c18
NC
512 m REPORT_LOCATION, \
513 (int)offset, RExC_precomp, RExC_precomp + offset); \
ccb2c380
MP
514} STMT_END
515
2335b3d3
KW
516#define ckWARN2regdep(loc,m, a1) STMT_START { \
517 const IV offset = loc - RExC_precomp; \
518 Perl_ck_warner_d(aTHX_ packWARN2(WARN_DEPRECATED, WARN_REGEXP), \
519 m REPORT_LOCATION, \
520 a1, (int)offset, RExC_precomp, RExC_precomp + offset); \
521} STMT_END
522
668c081a 523#define ckWARN2reg(loc, m, a1) STMT_START { \
a28509cc 524 const IV offset = loc - RExC_precomp; \
668c081a 525 Perl_ck_warner(aTHX_ packWARN(WARN_REGEXP), m REPORT_LOCATION, \
ccb2c380
MP
526 a1, (int)offset, RExC_precomp, RExC_precomp + offset); \
527} STMT_END
528
529#define vWARN3(loc, m, a1, a2) STMT_START { \
a28509cc 530 const IV offset = loc - RExC_precomp; \
ccb2c380
MP
531 Perl_warner(aTHX_ packWARN(WARN_REGEXP), m REPORT_LOCATION, \
532 a1, a2, (int)offset, RExC_precomp, RExC_precomp + offset); \
533} STMT_END
534
668c081a
NC
535#define ckWARN3reg(loc, m, a1, a2) STMT_START { \
536 const IV offset = loc - RExC_precomp; \
537 Perl_ck_warner(aTHX_ packWARN(WARN_REGEXP), m REPORT_LOCATION, \
538 a1, a2, (int)offset, RExC_precomp, RExC_precomp + offset); \
539} STMT_END
540
ccb2c380 541#define vWARN4(loc, m, a1, a2, a3) STMT_START { \
a28509cc 542 const IV offset = loc - RExC_precomp; \
ccb2c380
MP
543 Perl_warner(aTHX_ packWARN(WARN_REGEXP), m REPORT_LOCATION, \
544 a1, a2, a3, (int)offset, RExC_precomp, RExC_precomp + offset); \
545} STMT_END
546
668c081a
NC
547#define ckWARN4reg(loc, m, a1, a2, a3) STMT_START { \
548 const IV offset = loc - RExC_precomp; \
549 Perl_ck_warner(aTHX_ packWARN(WARN_REGEXP), m REPORT_LOCATION, \
550 a1, a2, a3, (int)offset, RExC_precomp, RExC_precomp + offset); \
551} STMT_END
552
ccb2c380 553#define vWARN5(loc, m, a1, a2, a3, a4) STMT_START { \
a28509cc 554 const IV offset = loc - RExC_precomp; \
ccb2c380
MP
555 Perl_warner(aTHX_ packWARN(WARN_REGEXP), m REPORT_LOCATION, \
556 a1, a2, a3, a4, (int)offset, RExC_precomp, RExC_precomp + offset); \
557} STMT_END
9d1d55b5 558
8615cb43 559
cd439c50 560/* Allow for side effects in s */
ccb2c380
MP
561#define REGC(c,s) STMT_START { \
562 if (!SIZE_ONLY) *(s) = (c); else (void)(s); \
563} STMT_END
cd439c50 564
fac92740
MJD
565/* Macros for recording node offsets. 20001227 mjd@plover.com
566 * Nodes are numbered 1, 2, 3, 4. Node #n's position is recorded in
567 * element 2*n-1 of the array. Element #2n holds the byte length node #n.
568 * Element 0 holds the number n.
07be1b83 569 * Position is 1 indexed.
fac92740 570 */
7122b237
YO
571#ifndef RE_TRACK_PATTERN_OFFSETS
572#define Set_Node_Offset_To_R(node,byte)
573#define Set_Node_Offset(node,byte)
574#define Set_Cur_Node_Offset
575#define Set_Node_Length_To_R(node,len)
576#define Set_Node_Length(node,len)
577#define Set_Node_Cur_Length(node)
578#define Node_Offset(n)
579#define Node_Length(n)
580#define Set_Node_Offset_Length(node,offset,len)
581#define ProgLen(ri) ri->u.proglen
582#define SetProgLen(ri,x) ri->u.proglen = x
583#else
584#define ProgLen(ri) ri->u.offsets[0]
585#define SetProgLen(ri,x) ri->u.offsets[0] = x
ccb2c380
MP
586#define Set_Node_Offset_To_R(node,byte) STMT_START { \
587 if (! SIZE_ONLY) { \
588 MJD_OFFSET_DEBUG(("** (%d) offset of node %d is %d.\n", \
2a49f0f5 589 __LINE__, (int)(node), (int)(byte))); \
ccb2c380 590 if((node) < 0) { \
551405c4 591 Perl_croak(aTHX_ "value of node is %d in Offset macro", (int)(node)); \
ccb2c380
MP
592 } else { \
593 RExC_offsets[2*(node)-1] = (byte); \
594 } \
595 } \
596} STMT_END
597
598#define Set_Node_Offset(node,byte) \
599 Set_Node_Offset_To_R((node)-RExC_emit_start, (byte)-RExC_start)
600#define Set_Cur_Node_Offset Set_Node_Offset(RExC_emit, RExC_parse)
601
602#define Set_Node_Length_To_R(node,len) STMT_START { \
603 if (! SIZE_ONLY) { \
604 MJD_OFFSET_DEBUG(("** (%d) size of node %d is %d.\n", \
551405c4 605 __LINE__, (int)(node), (int)(len))); \
ccb2c380 606 if((node) < 0) { \
551405c4 607 Perl_croak(aTHX_ "value of node is %d in Length macro", (int)(node)); \
ccb2c380
MP
608 } else { \
609 RExC_offsets[2*(node)] = (len); \
610 } \
611 } \
612} STMT_END
613
614#define Set_Node_Length(node,len) \
615 Set_Node_Length_To_R((node)-RExC_emit_start, len)
616#define Set_Cur_Node_Length(len) Set_Node_Length(RExC_emit, len)
617#define Set_Node_Cur_Length(node) \
618 Set_Node_Length(node, RExC_parse - parse_start)
fac92740
MJD
619
620/* Get offsets and lengths */
621#define Node_Offset(n) (RExC_offsets[2*((n)-RExC_emit_start)-1])
622#define Node_Length(n) (RExC_offsets[2*((n)-RExC_emit_start)])
623
07be1b83
YO
624#define Set_Node_Offset_Length(node,offset,len) STMT_START { \
625 Set_Node_Offset_To_R((node)-RExC_emit_start, (offset)); \
626 Set_Node_Length_To_R((node)-RExC_emit_start, (len)); \
627} STMT_END
7122b237 628#endif
07be1b83
YO
629
630#if PERL_ENABLE_EXPERIMENTAL_REGEX_OPTIMISATIONS
631#define EXPERIMENTAL_INPLACESCAN
f427392e 632#endif /*PERL_ENABLE_EXPERIMENTAL_REGEX_OPTIMISATIONS*/
07be1b83 633
304ee84b
YO
634#define DEBUG_STUDYDATA(str,data,depth) \
635DEBUG_OPTIMISE_MORE_r(if(data){ \
1de06328 636 PerlIO_printf(Perl_debug_log, \
304ee84b
YO
637 "%*s" str "Pos:%"IVdf"/%"IVdf \
638 " Flags: 0x%"UVXf" Whilem_c: %"IVdf" Lcp: %"IVdf" %s", \
1de06328
YO
639 (int)(depth)*2, "", \
640 (IV)((data)->pos_min), \
641 (IV)((data)->pos_delta), \
304ee84b 642 (UV)((data)->flags), \
1de06328 643 (IV)((data)->whilem_c), \
304ee84b
YO
644 (IV)((data)->last_closep ? *((data)->last_closep) : -1), \
645 is_inf ? "INF " : "" \
1de06328
YO
646 ); \
647 if ((data)->last_found) \
648 PerlIO_printf(Perl_debug_log, \
649 "Last:'%s' %"IVdf":%"IVdf"/%"IVdf" %sFixed:'%s' @ %"IVdf \
650 " %sFloat: '%s' @ %"IVdf"/%"IVdf"", \
651 SvPVX_const((data)->last_found), \
652 (IV)((data)->last_end), \
653 (IV)((data)->last_start_min), \
654 (IV)((data)->last_start_max), \
655 ((data)->longest && \
656 (data)->longest==&((data)->longest_fixed)) ? "*" : "", \
657 SvPVX_const((data)->longest_fixed), \
658 (IV)((data)->offset_fixed), \
659 ((data)->longest && \
660 (data)->longest==&((data)->longest_float)) ? "*" : "", \
661 SvPVX_const((data)->longest_float), \
662 (IV)((data)->offset_float_min), \
663 (IV)((data)->offset_float_max) \
664 ); \
665 PerlIO_printf(Perl_debug_log,"\n"); \
666});
667
acfe0abc 668static void clear_re(pTHX_ void *r);
4327152a 669
653099ff 670/* Mark that we cannot extend a found fixed substring at this point.
786e8c11 671 Update the longest found anchored substring and the longest found
653099ff
GS
672 floating substrings if needed. */
673
4327152a 674STATIC void
304ee84b 675S_scan_commit(pTHX_ const RExC_state_t *pRExC_state, scan_data_t *data, I32 *minlenp, int is_inf)
c277df42 676{
e1ec3a88
AL
677 const STRLEN l = CHR_SVLEN(data->last_found);
678 const STRLEN old_l = CHR_SVLEN(*data->longest);
1de06328 679 GET_RE_DEBUG_FLAGS_DECL;
b81d288d 680
7918f24d
NC
681 PERL_ARGS_ASSERT_SCAN_COMMIT;
682
c277df42 683 if ((l >= old_l) && ((l > old_l) || (data->flags & SF_BEFORE_EOL))) {
6b43b216 684 SvSetMagicSV(*data->longest, data->last_found);
c277df42
IZ
685 if (*data->longest == data->longest_fixed) {
686 data->offset_fixed = l ? data->last_start_min : data->pos_min;
687 if (data->flags & SF_BEFORE_EOL)
b81d288d 688 data->flags
c277df42
IZ
689 |= ((data->flags & SF_BEFORE_EOL) << SF_FIX_SHIFT_EOL);
690 else
691 data->flags &= ~SF_FIX_BEFORE_EOL;
1de06328
YO
692 data->minlen_fixed=minlenp;
693 data->lookbehind_fixed=0;
a0ed51b3 694 }
304ee84b 695 else { /* *data->longest == data->longest_float */
c277df42 696 data->offset_float_min = l ? data->last_start_min : data->pos_min;
b81d288d
AB
697 data->offset_float_max = (l
698 ? data->last_start_max
c277df42 699 : data->pos_min + data->pos_delta);
304ee84b 700 if (is_inf || (U32)data->offset_float_max > (U32)I32_MAX)
9051bda5 701 data->offset_float_max = I32_MAX;
c277df42 702 if (data->flags & SF_BEFORE_EOL)
b81d288d 703 data->flags
c277df42
IZ
704 |= ((data->flags & SF_BEFORE_EOL) << SF_FL_SHIFT_EOL);
705 else
706 data->flags &= ~SF_FL_BEFORE_EOL;
1de06328
YO
707 data->minlen_float=minlenp;
708 data->lookbehind_float=0;
c277df42
IZ
709 }
710 }
711 SvCUR_set(data->last_found, 0);
0eda9292 712 {
a28509cc 713 SV * const sv = data->last_found;
097eb12c
AL
714 if (SvUTF8(sv) && SvMAGICAL(sv)) {
715 MAGIC * const mg = mg_find(sv, PERL_MAGIC_utf8);
716 if (mg)
717 mg->mg_len = 0;
718 }
0eda9292 719 }
c277df42
IZ
720 data->last_end = -1;
721 data->flags &= ~SF_BEFORE_EOL;
bcdf7404 722 DEBUG_STUDYDATA("commit: ",data,0);
c277df42
IZ
723}
724
653099ff
GS
725/* Can match anything (initialization) */
726STATIC void
3fffb88a 727S_cl_anything(const RExC_state_t *pRExC_state, struct regnode_charclass_class *cl)
653099ff 728{
7918f24d
NC
729 PERL_ARGS_ASSERT_CL_ANYTHING;
730
f8bef550 731 ANYOF_BITMAP_SETALL(cl);
dd58aee1 732 cl->flags = ANYOF_CLASS|ANYOF_EOS|ANYOF_UNICODE_ALL
3ad98780 733 |ANYOF_LOC_NONBITMAP_FOLD|ANYOF_NON_UTF8_LATIN1_ALL;
3fffb88a
KW
734
735 /* If any portion of the regex is to operate under locale rules,
736 * initialization includes it. The reason this isn't done for all regexes
737 * is that the optimizer was written under the assumption that locale was
738 * all-or-nothing. Given the complexity and lack of documentation in the
739 * optimizer, and that there are inadequate test cases for locale, so many
740 * parts of it may not work properly, it is safest to avoid locale unless
741 * necessary. */
742 if (RExC_contains_locale) {
9d7a1e63 743 ANYOF_CLASS_SETALL(cl); /* /l uses class */
3fffb88a
KW
744 cl->flags |= ANYOF_LOCALE;
745 }
9d7a1e63
KW
746 else {
747 ANYOF_CLASS_ZERO(cl); /* Only /l uses class now */
748 }
653099ff
GS
749}
750
751/* Can match anything (initialization) */
752STATIC int
5f66b61c 753S_cl_is_anything(const struct regnode_charclass_class *cl)
653099ff
GS
754{
755 int value;
756
7918f24d
NC
757 PERL_ARGS_ASSERT_CL_IS_ANYTHING;
758
aaa51d5e 759 for (value = 0; value <= ANYOF_MAX; value += 2)
653099ff
GS
760 if (ANYOF_CLASS_TEST(cl, value) && ANYOF_CLASS_TEST(cl, value + 1))
761 return 1;
1aa99e6b
IH
762 if (!(cl->flags & ANYOF_UNICODE_ALL))
763 return 0;
10edeb5d 764 if (!ANYOF_BITMAP_TESTALLSET((const void*)cl))
f8bef550 765 return 0;
653099ff
GS
766 return 1;
767}
768
769/* Can match anything (initialization) */
770STATIC void
e755fd73 771S_cl_init(const RExC_state_t *pRExC_state, struct regnode_charclass_class *cl)
653099ff 772{
7918f24d
NC
773 PERL_ARGS_ASSERT_CL_INIT;
774
8ecf7187 775 Zero(cl, 1, struct regnode_charclass_class);
653099ff 776 cl->type = ANYOF;
3fffb88a 777 cl_anything(pRExC_state, cl);
1411dba4 778 ARG_SET(cl, ANYOF_NONBITMAP_EMPTY);
653099ff
GS
779}
780
1051e1c4
KW
781/* These two functions currently do the exact same thing */
782#define cl_init_zero S_cl_init
653099ff 783
dd58aee1
KW
784/* 'AND' a given class with another one. Can create false positives. 'cl'
785 * should not be inverted. 'and_with->flags & ANYOF_CLASS' should be 0 if
786 * 'and_with' is a regnode_charclass instead of a regnode_charclass_class. */
653099ff 787STATIC void
5f66b61c 788S_cl_and(struct regnode_charclass_class *cl,
a28509cc 789 const struct regnode_charclass_class *and_with)
653099ff 790{
7918f24d 791 PERL_ARGS_ASSERT_CL_AND;
40d049e4
YO
792
793 assert(and_with->type == ANYOF);
1e6ade67 794
c6b76537 795 /* I (khw) am not sure all these restrictions are necessary XXX */
1e6ade67
KW
796 if (!(ANYOF_CLASS_TEST_ANY_SET(and_with))
797 && !(ANYOF_CLASS_TEST_ANY_SET(cl))
653099ff 798 && (and_with->flags & ANYOF_LOCALE) == (cl->flags & ANYOF_LOCALE)
39065660
KW
799 && !(and_with->flags & ANYOF_LOC_NONBITMAP_FOLD)
800 && !(cl->flags & ANYOF_LOC_NONBITMAP_FOLD)) {
653099ff
GS
801 int i;
802
803 if (and_with->flags & ANYOF_INVERT)
804 for (i = 0; i < ANYOF_BITMAP_SIZE; i++)
805 cl->bitmap[i] &= ~and_with->bitmap[i];
806 else
807 for (i = 0; i < ANYOF_BITMAP_SIZE; i++)
808 cl->bitmap[i] &= and_with->bitmap[i];
809 } /* XXXX: logic is complicated otherwise, leave it along for a moment. */
1aa99e6b 810
c6b76537 811 if (and_with->flags & ANYOF_INVERT) {
8951c461 812
c6b76537
KW
813 /* Here, the and'ed node is inverted. Get the AND of the flags that
814 * aren't affected by the inversion. Those that are affected are
815 * handled individually below */
816 U8 affected_flags = cl->flags & ~INVERSION_UNAFFECTED_FLAGS;
817 cl->flags &= (and_with->flags & INVERSION_UNAFFECTED_FLAGS);
818 cl->flags |= affected_flags;
819
820 /* We currently don't know how to deal with things that aren't in the
821 * bitmap, but we know that the intersection is no greater than what
822 * is already in cl, so let there be false positives that get sorted
823 * out after the synthetic start class succeeds, and the node is
824 * matched for real. */
825
826 /* The inversion of these two flags indicate that the resulting
827 * intersection doesn't have them */
828 if (and_with->flags & ANYOF_UNICODE_ALL) {
4713bfe1
KW
829 cl->flags &= ~ANYOF_UNICODE_ALL;
830 }
c6b76537
KW
831 if (and_with->flags & ANYOF_NON_UTF8_LATIN1_ALL) {
832 cl->flags &= ~ANYOF_NON_UTF8_LATIN1_ALL;
137165a6 833 }
1aa99e6b 834 }
c6b76537 835 else { /* and'd node is not inverted */
3ad98780
KW
836 U8 outside_bitmap_but_not_utf8; /* Temp variable */
837
137165a6 838 if (! ANYOF_NONBITMAP(and_with)) {
c6b76537
KW
839
840 /* Here 'and_with' doesn't match anything outside the bitmap
841 * (except possibly ANYOF_UNICODE_ALL), which means the
842 * intersection can't either, except for ANYOF_UNICODE_ALL, in
843 * which case we don't know what the intersection is, but it's no
844 * greater than what cl already has, so can just leave it alone,
845 * with possible false positives */
846 if (! (and_with->flags & ANYOF_UNICODE_ALL)) {
847 ARG_SET(cl, ANYOF_NONBITMAP_EMPTY);
871d0d1a 848 cl->flags &= ~ANYOF_NONBITMAP_NON_UTF8;
c6b76537 849 }
137165a6 850 }
c6b76537
KW
851 else if (! ANYOF_NONBITMAP(cl)) {
852
853 /* Here, 'and_with' does match something outside the bitmap, and cl
854 * doesn't have a list of things to match outside the bitmap. If
855 * cl can match all code points above 255, the intersection will
3ad98780
KW
856 * be those above-255 code points that 'and_with' matches. If cl
857 * can't match all Unicode code points, it means that it can't
858 * match anything outside the bitmap (since the 'if' that got us
859 * into this block tested for that), so we leave the bitmap empty.
860 */
c6b76537
KW
861 if (cl->flags & ANYOF_UNICODE_ALL) {
862 ARG_SET(cl, ARG(and_with));
3ad98780
KW
863
864 /* and_with's ARG may match things that don't require UTF8.
865 * And now cl's will too, in spite of this being an 'and'. See
866 * the comments below about the kludge */
867 cl->flags |= and_with->flags & ANYOF_NONBITMAP_NON_UTF8;
c6b76537
KW
868 }
869 }
870 else {
871 /* Here, both 'and_with' and cl match something outside the
872 * bitmap. Currently we do not do the intersection, so just match
873 * whatever cl had at the beginning. */
874 }
875
876
3ad98780
KW
877 /* Take the intersection of the two sets of flags. However, the
878 * ANYOF_NONBITMAP_NON_UTF8 flag is treated as an 'or'. This is a
879 * kludge around the fact that this flag is not treated like the others
880 * which are initialized in cl_anything(). The way the optimizer works
881 * is that the synthetic start class (SSC) is initialized to match
882 * anything, and then the first time a real node is encountered, its
883 * values are AND'd with the SSC's with the result being the values of
884 * the real node. However, there are paths through the optimizer where
885 * the AND never gets called, so those initialized bits are set
886 * inappropriately, which is not usually a big deal, as they just cause
887 * false positives in the SSC, which will just mean a probably
888 * imperceptible slow down in execution. However this bit has a
889 * higher false positive consequence in that it can cause utf8.pm,
890 * utf8_heavy.pl ... to be loaded when not necessary, which is a much
891 * bigger slowdown and also causes significant extra memory to be used.
892 * In order to prevent this, the code now takes a different tack. The
893 * bit isn't set unless some part of the regular expression needs it,
894 * but once set it won't get cleared. This means that these extra
895 * modules won't get loaded unless there was some path through the
896 * pattern that would have required them anyway, and so any false
897 * positives that occur by not ANDing them out when they could be
898 * aren't as severe as they would be if we treated this bit like all
899 * the others */
900 outside_bitmap_but_not_utf8 = (cl->flags | and_with->flags)
901 & ANYOF_NONBITMAP_NON_UTF8;
c6b76537 902 cl->flags &= and_with->flags;
3ad98780 903 cl->flags |= outside_bitmap_but_not_utf8;
137165a6 904 }
653099ff
GS
905}
906
dd58aee1
KW
907/* 'OR' a given class with another one. Can create false positives. 'cl'
908 * should not be inverted. 'or_with->flags & ANYOF_CLASS' should be 0 if
909 * 'or_with' is a regnode_charclass instead of a regnode_charclass_class. */
653099ff 910STATIC void
3fffb88a 911S_cl_or(const RExC_state_t *pRExC_state, struct regnode_charclass_class *cl, const struct regnode_charclass_class *or_with)
653099ff 912{
7918f24d
NC
913 PERL_ARGS_ASSERT_CL_OR;
914
653099ff 915 if (or_with->flags & ANYOF_INVERT) {
c6b76537
KW
916
917 /* Here, the or'd node is to be inverted. This means we take the
918 * complement of everything not in the bitmap, but currently we don't
919 * know what that is, so give up and match anything */
920 if (ANYOF_NONBITMAP(or_with)) {
3fffb88a 921 cl_anything(pRExC_state, cl);
c6b76537 922 }
653099ff
GS
923 /* We do not use
924 * (B1 | CL1) | (!B2 & !CL2) = (B1 | !B2 & !CL2) | (CL1 | (!B2 & !CL2))
925 * <= (B1 | !B2) | (CL1 | !CL2)
926 * which is wasteful if CL2 is small, but we ignore CL2:
927 * (B1 | CL1) | (!B2 & !CL2) <= (B1 | CL1) | !B2 = (B1 | !B2) | CL1
928 * XXXX Can we handle case-fold? Unclear:
929 * (OK1(i) | OK1(i')) | !(OK1(i) | OK1(i')) =
930 * (OK1(i) | OK1(i')) | (!OK1(i) & !OK1(i'))
931 */
c6b76537 932 else if ( (or_with->flags & ANYOF_LOCALE) == (cl->flags & ANYOF_LOCALE)
39065660
KW
933 && !(or_with->flags & ANYOF_LOC_NONBITMAP_FOLD)
934 && !(cl->flags & ANYOF_LOC_NONBITMAP_FOLD) ) {
653099ff
GS
935 int i;
936
937 for (i = 0; i < ANYOF_BITMAP_SIZE; i++)
938 cl->bitmap[i] |= ~or_with->bitmap[i];
939 } /* XXXX: logic is complicated otherwise */
940 else {
3fffb88a 941 cl_anything(pRExC_state, cl);
653099ff 942 }
c6b76537
KW
943
944 /* And, we can just take the union of the flags that aren't affected
945 * by the inversion */
946 cl->flags |= or_with->flags & INVERSION_UNAFFECTED_FLAGS;
947
948 /* For the remaining flags:
949 ANYOF_UNICODE_ALL and inverted means to not match anything above
950 255, which means that the union with cl should just be
951 what cl has in it, so can ignore this flag
952 ANYOF_NON_UTF8_LATIN1_ALL and inverted means if not utf8 and ord
953 is 127-255 to match them, but then invert that, so the
954 union with cl should just be what cl has in it, so can
955 ignore this flag
956 */
957 } else { /* 'or_with' is not inverted */
653099ff
GS
958 /* (B1 | CL1) | (B2 | CL2) = (B1 | B2) | (CL1 | CL2)) */
959 if ( (or_with->flags & ANYOF_LOCALE) == (cl->flags & ANYOF_LOCALE)
39065660
KW
960 && (!(or_with->flags & ANYOF_LOC_NONBITMAP_FOLD)
961 || (cl->flags & ANYOF_LOC_NONBITMAP_FOLD)) ) {
653099ff
GS
962 int i;
963
964 /* OR char bitmap and class bitmap separately */
965 for (i = 0; i < ANYOF_BITMAP_SIZE; i++)
966 cl->bitmap[i] |= or_with->bitmap[i];
1e6ade67 967 if (ANYOF_CLASS_TEST_ANY_SET(or_with)) {
653099ff
GS
968 for (i = 0; i < ANYOF_CLASSBITMAP_SIZE; i++)
969 cl->classflags[i] |= or_with->classflags[i];
970 cl->flags |= ANYOF_CLASS;
971 }
972 }
973 else { /* XXXX: logic is complicated, leave it along for a moment. */
3fffb88a 974 cl_anything(pRExC_state, cl);
653099ff 975 }
9826f543 976
c6b76537
KW
977 if (ANYOF_NONBITMAP(or_with)) {
978
979 /* Use the added node's outside-the-bit-map match if there isn't a
980 * conflict. If there is a conflict (both nodes match something
981 * outside the bitmap, but what they match outside is not the same
982 * pointer, and hence not easily compared until XXX we extend
983 * inversion lists this far), give up and allow the start class to
d94b1d13
KW
984 * match everything outside the bitmap. If that stuff is all above
985 * 255, can just set UNICODE_ALL, otherwise caould be anything. */
c6b76537
KW
986 if (! ANYOF_NONBITMAP(cl)) {
987 ARG_SET(cl, ARG(or_with));
988 }
989 else if (ARG(cl) != ARG(or_with)) {
d94b1d13
KW
990
991 if ((or_with->flags & ANYOF_NONBITMAP_NON_UTF8)) {
992 cl_anything(pRExC_state, cl);
993 }
994 else {
995 cl->flags |= ANYOF_UNICODE_ALL;
996 }
c6b76537 997 }
4c34a693 998 }
0b9668ee
KW
999
1000 /* Take the union */
1001 cl->flags |= or_with->flags;
1aa99e6b 1002 }
653099ff
GS
1003}
1004
a3621e74
YO
1005#define TRIE_LIST_ITEM(state,idx) (trie->states[state].trans.list)[ idx ]
1006#define TRIE_LIST_CUR(state) ( TRIE_LIST_ITEM( state, 0 ).forid )
1007#define TRIE_LIST_LEN(state) ( TRIE_LIST_ITEM( state, 0 ).newstate )
1008#define TRIE_LIST_USED(idx) ( trie->states[state].trans.list ? (TRIE_LIST_CUR( idx ) - 1) : 0 )
1009
3dab1dad
YO
1010
1011#ifdef DEBUGGING
07be1b83 1012/*
2b8b4781
NC
1013 dump_trie(trie,widecharmap,revcharmap)
1014 dump_trie_interim_list(trie,widecharmap,revcharmap,next_alloc)
1015 dump_trie_interim_table(trie,widecharmap,revcharmap,next_alloc)
3dab1dad
YO
1016
1017 These routines dump out a trie in a somewhat readable format.
07be1b83
YO
1018 The _interim_ variants are used for debugging the interim
1019 tables that are used to generate the final compressed
1020 representation which is what dump_trie expects.
1021
486ec47a 1022 Part of the reason for their existence is to provide a form
3dab1dad 1023 of documentation as to how the different representations function.
07be1b83
YO
1024
1025*/
3dab1dad
YO
1026
1027/*
3dab1dad
YO
1028 Dumps the final compressed table form of the trie to Perl_debug_log.
1029 Used for debugging make_trie().
1030*/
b9a59e08 1031
3dab1dad 1032STATIC void
2b8b4781
NC
1033S_dump_trie(pTHX_ const struct _reg_trie_data *trie, HV *widecharmap,
1034 AV *revcharmap, U32 depth)
3dab1dad
YO
1035{
1036 U32 state;
ab3bbdeb 1037 SV *sv=sv_newmortal();
55eed653 1038 int colwidth= widecharmap ? 6 : 4;
2e64971a 1039 U16 word;
3dab1dad
YO
1040 GET_RE_DEBUG_FLAGS_DECL;
1041
7918f24d 1042 PERL_ARGS_ASSERT_DUMP_TRIE;
ab3bbdeb 1043
3dab1dad
YO
1044 PerlIO_printf( Perl_debug_log, "%*sChar : %-6s%-6s%-4s ",
1045 (int)depth * 2 + 2,"",
1046 "Match","Base","Ofs" );
1047
1048 for( state = 0 ; state < trie->uniquecharcount ; state++ ) {
2b8b4781 1049 SV ** const tmp = av_fetch( revcharmap, state, 0);
3dab1dad 1050 if ( tmp ) {
ab3bbdeb
YO
1051 PerlIO_printf( Perl_debug_log, "%*s",
1052 colwidth,
ddc5bc0f 1053 pv_pretty(sv, SvPV_nolen_const(*tmp), SvCUR(*tmp), colwidth,
ab3bbdeb
YO
1054 PL_colors[0], PL_colors[1],
1055 (SvUTF8(*tmp) ? PERL_PV_ESCAPE_UNI : 0) |
1056 PERL_PV_ESCAPE_FIRSTCHAR
1057 )
1058 );
3dab1dad
YO
1059 }
1060 }
1061 PerlIO_printf( Perl_debug_log, "\n%*sState|-----------------------",
1062 (int)depth * 2 + 2,"");
1063
1064 for( state = 0 ; state < trie->uniquecharcount ; state++ )
ab3bbdeb 1065 PerlIO_printf( Perl_debug_log, "%.*s", colwidth, "--------");
3dab1dad
YO
1066 PerlIO_printf( Perl_debug_log, "\n");
1067
1e2e3d02 1068 for( state = 1 ; state < trie->statecount ; state++ ) {
be8e71aa 1069 const U32 base = trie->states[ state ].trans.base;
3dab1dad
YO
1070
1071 PerlIO_printf( Perl_debug_log, "%*s#%4"UVXf"|", (int)depth * 2 + 2,"", (UV)state);
1072
1073 if ( trie->states[ state ].wordnum ) {
1074 PerlIO_printf( Perl_debug_log, " W%4X", trie->states[ state ].wordnum );
1075 } else {
1076 PerlIO_printf( Perl_debug_log, "%6s", "" );
1077 }
1078
1079 PerlIO_printf( Perl_debug_log, " @%4"UVXf" ", (UV)base );
1080
1081 if ( base ) {
1082 U32 ofs = 0;
1083
1084 while( ( base + ofs < trie->uniquecharcount ) ||
1085 ( base + ofs - trie->uniquecharcount < trie->lasttrans
1086 && trie->trans[ base + ofs - trie->uniquecharcount ].check != state))
1087 ofs++;
1088
1089 PerlIO_printf( Perl_debug_log, "+%2"UVXf"[ ", (UV)ofs);
1090
1091 for ( ofs = 0 ; ofs < trie->uniquecharcount ; ofs++ ) {
1092 if ( ( base + ofs >= trie->uniquecharcount ) &&
1093 ( base + ofs - trie->uniquecharcount < trie->lasttrans ) &&
1094 trie->trans[ base + ofs - trie->uniquecharcount ].check == state )
1095 {
ab3bbdeb
YO
1096 PerlIO_printf( Perl_debug_log, "%*"UVXf,
1097 colwidth,
3dab1dad
YO
1098 (UV)trie->trans[ base + ofs - trie->uniquecharcount ].next );
1099 } else {
ab3bbdeb 1100 PerlIO_printf( Perl_debug_log, "%*s",colwidth," ." );
3dab1dad
YO
1101 }
1102 }
1103
1104 PerlIO_printf( Perl_debug_log, "]");
1105
1106 }
1107 PerlIO_printf( Perl_debug_log, "\n" );
1108 }
2e64971a
DM
1109 PerlIO_printf(Perl_debug_log, "%*sword_info N:(prev,len)=", (int)depth*2, "");
1110 for (word=1; word <= trie->wordcount; word++) {
1111 PerlIO_printf(Perl_debug_log, " %d:(%d,%d)",
1112 (int)word, (int)(trie->wordinfo[word].prev),
1113 (int)(trie->wordinfo[word].len));
1114 }
1115 PerlIO_printf(Perl_debug_log, "\n" );
3dab1dad
YO
1116}
1117/*
3dab1dad
YO
1118 Dumps a fully constructed but uncompressed trie in list form.
1119 List tries normally only are used for construction when the number of
1120 possible chars (trie->uniquecharcount) is very high.
1121 Used for debugging make_trie().
1122*/
1123STATIC void
55eed653 1124S_dump_trie_interim_list(pTHX_ const struct _reg_trie_data *trie,
2b8b4781
NC
1125 HV *widecharmap, AV *revcharmap, U32 next_alloc,
1126 U32 depth)
3dab1dad
YO
1127{
1128 U32 state;
ab3bbdeb 1129 SV *sv=sv_newmortal();
55eed653 1130 int colwidth= widecharmap ? 6 : 4;
3dab1dad 1131 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
1132
1133 PERL_ARGS_ASSERT_DUMP_TRIE_INTERIM_LIST;
1134
3dab1dad 1135 /* print out the table precompression. */
ab3bbdeb
YO
1136 PerlIO_printf( Perl_debug_log, "%*sState :Word | Transition Data\n%*s%s",
1137 (int)depth * 2 + 2,"", (int)depth * 2 + 2,"",
1138 "------:-----+-----------------\n" );
3dab1dad
YO
1139
1140 for( state=1 ; state < next_alloc ; state ++ ) {
1141 U16 charid;
1142
ab3bbdeb 1143 PerlIO_printf( Perl_debug_log, "%*s %4"UVXf" :",
3dab1dad
YO
1144 (int)depth * 2 + 2,"", (UV)state );
1145 if ( ! trie->states[ state ].wordnum ) {
1146 PerlIO_printf( Perl_debug_log, "%5s| ","");
1147 } else {
1148 PerlIO_printf( Perl_debug_log, "W%4x| ",
1149 trie->states[ state ].wordnum
1150 );
1151 }
1152 for( charid = 1 ; charid <= TRIE_LIST_USED( state ) ; charid++ ) {
2b8b4781 1153 SV ** const tmp = av_fetch( revcharmap, TRIE_LIST_ITEM(state,charid).forid, 0);
ab3bbdeb
YO
1154 if ( tmp ) {
1155 PerlIO_printf( Perl_debug_log, "%*s:%3X=%4"UVXf" | ",
1156 colwidth,
ddc5bc0f 1157 pv_pretty(sv, SvPV_nolen_const(*tmp), SvCUR(*tmp), colwidth,
ab3bbdeb
YO
1158 PL_colors[0], PL_colors[1],
1159 (SvUTF8(*tmp) ? PERL_PV_ESCAPE_UNI : 0) |
1160 PERL_PV_ESCAPE_FIRSTCHAR
1161 ) ,
1e2e3d02
YO
1162 TRIE_LIST_ITEM(state,charid).forid,
1163 (UV)TRIE_LIST_ITEM(state,charid).newstate
1164 );
1165 if (!(charid % 10))
664e119d
RGS
1166 PerlIO_printf(Perl_debug_log, "\n%*s| ",
1167 (int)((depth * 2) + 14), "");
1e2e3d02 1168 }
ab3bbdeb
YO
1169 }
1170 PerlIO_printf( Perl_debug_log, "\n");
3dab1dad
YO
1171 }
1172}
1173
1174/*
3dab1dad
YO
1175 Dumps a fully constructed but uncompressed trie in table form.
1176 This is the normal DFA style state transition table, with a few
1177 twists to facilitate compression later.
1178 Used for debugging make_trie().
1179*/
1180STATIC void
55eed653 1181S_dump_trie_interim_table(pTHX_ const struct _reg_trie_data *trie,
2b8b4781
NC
1182 HV *widecharmap, AV *revcharmap, U32 next_alloc,
1183 U32 depth)
3dab1dad
YO
1184{
1185 U32 state;
1186 U16 charid;
ab3bbdeb 1187 SV *sv=sv_newmortal();
55eed653 1188 int colwidth= widecharmap ? 6 : 4;
3dab1dad 1189 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
1190
1191 PERL_ARGS_ASSERT_DUMP_TRIE_INTERIM_TABLE;
3dab1dad
YO
1192
1193 /*
1194 print out the table precompression so that we can do a visual check
1195 that they are identical.
1196 */
1197
1198 PerlIO_printf( Perl_debug_log, "%*sChar : ",(int)depth * 2 + 2,"" );
1199
1200 for( charid = 0 ; charid < trie->uniquecharcount ; charid++ ) {
2b8b4781 1201 SV ** const tmp = av_fetch( revcharmap, charid, 0);
3dab1dad 1202 if ( tmp ) {
ab3bbdeb
YO
1203 PerlIO_printf( Perl_debug_log, "%*s",
1204 colwidth,
ddc5bc0f 1205 pv_pretty(sv, SvPV_nolen_const(*tmp), SvCUR(*tmp), colwidth,
ab3bbdeb
YO
1206 PL_colors[0], PL_colors[1],
1207 (SvUTF8(*tmp) ? PERL_PV_ESCAPE_UNI : 0) |
1208 PERL_PV_ESCAPE_FIRSTCHAR
1209 )
1210 );
3dab1dad
YO
1211 }
1212 }
1213
1214 PerlIO_printf( Perl_debug_log, "\n%*sState+-",(int)depth * 2 + 2,"" );
1215
1216 for( charid=0 ; charid < trie->uniquecharcount ; charid++ ) {
ab3bbdeb 1217 PerlIO_printf( Perl_debug_log, "%.*s", colwidth,"--------");
3dab1dad
YO
1218 }
1219
1220 PerlIO_printf( Perl_debug_log, "\n" );
1221
1222 for( state=1 ; state < next_alloc ; state += trie->uniquecharcount ) {
1223
1224 PerlIO_printf( Perl_debug_log, "%*s%4"UVXf" : ",
1225 (int)depth * 2 + 2,"",
1226 (UV)TRIE_NODENUM( state ) );
1227
1228 for( charid = 0 ; charid < trie->uniquecharcount ; charid++ ) {
ab3bbdeb
YO
1229 UV v=(UV)SAFE_TRIE_NODENUM( trie->trans[ state + charid ].next );
1230 if (v)
1231 PerlIO_printf( Perl_debug_log, "%*"UVXf, colwidth, v );
1232 else
1233 PerlIO_printf( Perl_debug_log, "%*s", colwidth, "." );
3dab1dad
YO
1234 }
1235 if ( ! trie->states[ TRIE_NODENUM( state ) ].wordnum ) {
1236 PerlIO_printf( Perl_debug_log, " (%4"UVXf")\n", (UV)trie->trans[ state ].check );
1237 } else {
1238 PerlIO_printf( Perl_debug_log, " (%4"UVXf") W%4X\n", (UV)trie->trans[ state ].check,
1239 trie->states[ TRIE_NODENUM( state ) ].wordnum );
1240 }
1241 }
07be1b83 1242}
3dab1dad
YO
1243
1244#endif
1245
2e64971a 1246
786e8c11
YO
1247/* make_trie(startbranch,first,last,tail,word_count,flags,depth)
1248 startbranch: the first branch in the whole branch sequence
1249 first : start branch of sequence of branch-exact nodes.
1250 May be the same as startbranch
1251 last : Thing following the last branch.
1252 May be the same as tail.
1253 tail : item following the branch sequence
1254 count : words in the sequence
1255 flags : currently the OP() type we will be building one of /EXACT(|F|Fl)/
1256 depth : indent depth
3dab1dad 1257
786e8c11 1258Inplace optimizes a sequence of 2 or more Branch-Exact nodes into a TRIE node.
07be1b83 1259
786e8c11
YO
1260A trie is an N'ary tree where the branches are determined by digital
1261decomposition of the key. IE, at the root node you look up the 1st character and
1262follow that branch repeat until you find the end of the branches. Nodes can be
1263marked as "accepting" meaning they represent a complete word. Eg:
07be1b83 1264
786e8c11 1265 /he|she|his|hers/
72f13be8 1266
786e8c11
YO
1267would convert into the following structure. Numbers represent states, letters
1268following numbers represent valid transitions on the letter from that state, if
1269the number is in square brackets it represents an accepting state, otherwise it
1270will be in parenthesis.
07be1b83 1271
786e8c11
YO
1272 +-h->+-e->[3]-+-r->(8)-+-s->[9]
1273 | |
1274 | (2)
1275 | |
1276 (1) +-i->(6)-+-s->[7]
1277 |
1278 +-s->(3)-+-h->(4)-+-e->[5]
07be1b83 1279
786e8c11
YO
1280 Accept Word Mapping: 3=>1 (he),5=>2 (she), 7=>3 (his), 9=>4 (hers)
1281
1282This shows that when matching against the string 'hers' we will begin at state 1
1283read 'h' and move to state 2, read 'e' and move to state 3 which is accepting,
1284then read 'r' and go to state 8 followed by 's' which takes us to state 9 which
1285is also accepting. Thus we know that we can match both 'he' and 'hers' with a
1286single traverse. We store a mapping from accepting to state to which word was
1287matched, and then when we have multiple possibilities we try to complete the
1288rest of the regex in the order in which they occured in the alternation.
1289
1290The only prior NFA like behaviour that would be changed by the TRIE support is
1291the silent ignoring of duplicate alternations which are of the form:
1292
1293 / (DUPE|DUPE) X? (?{ ... }) Y /x
1294
4b714af6 1295Thus EVAL blocks following a trie may be called a different number of times with
786e8c11 1296and without the optimisation. With the optimisations dupes will be silently
486ec47a 1297ignored. This inconsistent behaviour of EVAL type nodes is well established as
786e8c11
YO
1298the following demonstrates:
1299
1300 'words'=~/(word|word|word)(?{ print $1 })[xyz]/
1301
1302which prints out 'word' three times, but
1303
1304 'words'=~/(word|word|word)(?{ print $1 })S/
1305
1306which doesnt print it out at all. This is due to other optimisations kicking in.
1307
1308Example of what happens on a structural level:
1309
486ec47a 1310The regexp /(ac|ad|ab)+/ will produce the following debug output:
786e8c11
YO
1311
1312 1: CURLYM[1] {1,32767}(18)
1313 5: BRANCH(8)
1314 6: EXACT <ac>(16)
1315 8: BRANCH(11)
1316 9: EXACT <ad>(16)
1317 11: BRANCH(14)
1318 12: EXACT <ab>(16)
1319 16: SUCCEED(0)
1320 17: NOTHING(18)
1321 18: END(0)
1322
1323This would be optimizable with startbranch=5, first=5, last=16, tail=16
1324and should turn into:
1325
1326 1: CURLYM[1] {1,32767}(18)
1327 5: TRIE(16)
1328 [Words:3 Chars Stored:6 Unique Chars:4 States:5 NCP:1]
1329 <ac>
1330 <ad>
1331 <ab>
1332 16: SUCCEED(0)
1333 17: NOTHING(18)
1334 18: END(0)
1335
1336Cases where tail != last would be like /(?foo|bar)baz/:
1337
1338 1: BRANCH(4)
1339 2: EXACT <foo>(8)
1340 4: BRANCH(7)
1341 5: EXACT <bar>(8)
1342 7: TAIL(8)
1343 8: EXACT <baz>(10)
1344 10: END(0)
1345
1346which would be optimizable with startbranch=1, first=1, last=7, tail=8
1347and would end up looking like:
1348
1349 1: TRIE(8)
1350 [Words:2 Chars Stored:6 Unique Chars:5 States:7 NCP:1]
1351 <foo>
1352 <bar>
1353 7: TAIL(8)
1354 8: EXACT <baz>(10)
1355 10: END(0)
1356
1357 d = uvuni_to_utf8_flags(d, uv, 0);
1358
1359is the recommended Unicode-aware way of saying
1360
1361 *(d++) = uv;
1362*/
1363
1e2e3d02 1364#define TRIE_STORE_REVCHAR \
786e8c11 1365 STMT_START { \
73031816
NC
1366 if (UTF) { \
1367 SV *zlopp = newSV(2); \
88c9ea1e
CB
1368 unsigned char *flrbbbbb = (unsigned char *) SvPVX(zlopp); \
1369 unsigned const char *const kapow = uvuni_to_utf8(flrbbbbb, uvc & 0xFF); \
73031816
NC
1370 SvCUR_set(zlopp, kapow - flrbbbbb); \
1371 SvPOK_on(zlopp); \
1372 SvUTF8_on(zlopp); \
1373 av_push(revcharmap, zlopp); \
1374 } else { \
6bdeddd2 1375 char ooooff = (char)uvc; \
73031816
NC
1376 av_push(revcharmap, newSVpvn(&ooooff, 1)); \
1377 } \
1378 } STMT_END
786e8c11
YO
1379
1380#define TRIE_READ_CHAR STMT_START { \
1381 wordlen++; \
1382 if ( UTF ) { \
1383 if ( folder ) { \
1384 if ( foldlen > 0 ) { \
1385 uvc = utf8n_to_uvuni( scan, UTF8_MAXLEN, &len, uniflags ); \
1386 foldlen -= len; \
1387 scan += len; \
1388 len = 0; \
1389 } else { \
1390 uvc = utf8n_to_uvuni( (const U8*)uc, UTF8_MAXLEN, &len, uniflags);\
1391 uvc = to_uni_fold( uvc, foldbuf, &foldlen ); \
1392 foldlen -= UNISKIP( uvc ); \
1393 scan = foldbuf + UNISKIP( uvc ); \
1394 } \
1395 } else { \
1396 uvc = utf8n_to_uvuni( (const U8*)uc, UTF8_MAXLEN, &len, uniflags);\
1397 } \
1398 } else { \
1399 uvc = (U32)*uc; \
1400 len = 1; \
1401 } \
1402} STMT_END
1403
1404
1405
1406#define TRIE_LIST_PUSH(state,fid,ns) STMT_START { \
1407 if ( TRIE_LIST_CUR( state ) >=TRIE_LIST_LEN( state ) ) { \
f9003953
NC
1408 U32 ging = TRIE_LIST_LEN( state ) *= 2; \
1409 Renew( trie->states[ state ].trans.list, ging, reg_trie_trans_le ); \
786e8c11
YO
1410 } \
1411 TRIE_LIST_ITEM( state, TRIE_LIST_CUR( state ) ).forid = fid; \
1412 TRIE_LIST_ITEM( state, TRIE_LIST_CUR( state ) ).newstate = ns; \
1413 TRIE_LIST_CUR( state )++; \
1414} STMT_END
07be1b83 1415
786e8c11
YO
1416#define TRIE_LIST_NEW(state) STMT_START { \
1417 Newxz( trie->states[ state ].trans.list, \
1418 4, reg_trie_trans_le ); \
1419 TRIE_LIST_CUR( state ) = 1; \
1420 TRIE_LIST_LEN( state ) = 4; \
1421} STMT_END
07be1b83 1422
786e8c11
YO
1423#define TRIE_HANDLE_WORD(state) STMT_START { \
1424 U16 dupe= trie->states[ state ].wordnum; \
1425 regnode * const noper_next = regnext( noper ); \
1426 \
786e8c11
YO
1427 DEBUG_r({ \
1428 /* store the word for dumping */ \
1429 SV* tmp; \
1430 if (OP(noper) != NOTHING) \
740cce10 1431 tmp = newSVpvn_utf8(STRING(noper), STR_LEN(noper), UTF); \
786e8c11 1432 else \
740cce10 1433 tmp = newSVpvn_utf8( "", 0, UTF ); \
2b8b4781 1434 av_push( trie_words, tmp ); \
786e8c11
YO
1435 }); \
1436 \
1437 curword++; \
2e64971a
DM
1438 trie->wordinfo[curword].prev = 0; \
1439 trie->wordinfo[curword].len = wordlen; \
1440 trie->wordinfo[curword].accept = state; \
786e8c11
YO
1441 \
1442 if ( noper_next < tail ) { \
1443 if (!trie->jump) \
c944940b 1444 trie->jump = (U16 *) PerlMemShared_calloc( word_count + 1, sizeof(U16) ); \
7f69552c 1445 trie->jump[curword] = (U16)(noper_next - convert); \
786e8c11
YO
1446 if (!jumper) \
1447 jumper = noper_next; \
1448 if (!nextbranch) \
1449 nextbranch= regnext(cur); \
1450 } \
1451 \
1452 if ( dupe ) { \
2e64971a
DM
1453 /* It's a dupe. Pre-insert into the wordinfo[].prev */\
1454 /* chain, so that when the bits of chain are later */\
1455 /* linked together, the dups appear in the chain */\
1456 trie->wordinfo[curword].prev = trie->wordinfo[dupe].prev; \
1457 trie->wordinfo[dupe].prev = curword; \
786e8c11
YO
1458 } else { \
1459 /* we haven't inserted this word yet. */ \
1460 trie->states[ state ].wordnum = curword; \
1461 } \
1462} STMT_END
07be1b83 1463
3dab1dad 1464
786e8c11
YO
1465#define TRIE_TRANS_STATE(state,base,ucharcount,charid,special) \
1466 ( ( base + charid >= ucharcount \
1467 && base + charid < ubound \
1468 && state == trie->trans[ base - ucharcount + charid ].check \
1469 && trie->trans[ base - ucharcount + charid ].next ) \
1470 ? trie->trans[ base - ucharcount + charid ].next \
1471 : ( state==1 ? special : 0 ) \
1472 )
3dab1dad 1473
786e8c11
YO
1474#define MADE_TRIE 1
1475#define MADE_JUMP_TRIE 2
1476#define MADE_EXACT_TRIE 4
3dab1dad 1477
a3621e74 1478STATIC I32
786e8c11 1479S_make_trie(pTHX_ RExC_state_t *pRExC_state, regnode *startbranch, regnode *first, regnode *last, regnode *tail, U32 word_count, U32 flags, U32 depth)
a3621e74 1480{
27da23d5 1481 dVAR;
a3621e74
YO
1482 /* first pass, loop through and scan words */
1483 reg_trie_data *trie;
55eed653 1484 HV *widecharmap = NULL;
2b8b4781 1485 AV *revcharmap = newAV();
a3621e74 1486 regnode *cur;
9f7f3913 1487 const U32 uniflags = UTF8_ALLOW_DEFAULT;
a3621e74
YO
1488 STRLEN len = 0;
1489 UV uvc = 0;
1490 U16 curword = 0;
1491 U32 next_alloc = 0;
786e8c11
YO
1492 regnode *jumper = NULL;
1493 regnode *nextbranch = NULL;
7f69552c 1494 regnode *convert = NULL;
2e64971a 1495 U32 *prev_states; /* temp array mapping each state to previous one */
a3621e74 1496 /* we just use folder as a flag in utf8 */
1e696034 1497 const U8 * folder = NULL;
a3621e74 1498
2b8b4781
NC
1499#ifdef DEBUGGING
1500 const U32 data_slot = add_data( pRExC_state, 4, "tuuu" );
1501 AV *trie_words = NULL;
1502 /* along with revcharmap, this only used during construction but both are
1503 * useful during debugging so we store them in the struct when debugging.
8e11feef 1504 */
2b8b4781
NC
1505#else
1506 const U32 data_slot = add_data( pRExC_state, 2, "tu" );
3dab1dad 1507 STRLEN trie_charcount=0;
3dab1dad 1508#endif
2b8b4781 1509 SV *re_trie_maxbuff;
a3621e74 1510 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
1511
1512 PERL_ARGS_ASSERT_MAKE_TRIE;
72f13be8
YO
1513#ifndef DEBUGGING
1514 PERL_UNUSED_ARG(depth);
1515#endif
a3621e74 1516
1e696034 1517 switch (flags) {
2f7f8cb1 1518 case EXACTFA:
1e696034
KW
1519 case EXACTFU: folder = PL_fold_latin1; break;
1520 case EXACTF: folder = PL_fold; break;
1521 case EXACTFL: folder = PL_fold_locale; break;
1522 }
1523
c944940b 1524 trie = (reg_trie_data *) PerlMemShared_calloc( 1, sizeof(reg_trie_data) );
a3621e74 1525 trie->refcount = 1;
3dab1dad 1526 trie->startstate = 1;
786e8c11 1527 trie->wordcount = word_count;
f8fc2ecf 1528 RExC_rxi->data->data[ data_slot ] = (void*)trie;
c944940b 1529 trie->charmap = (U16 *) PerlMemShared_calloc( 256, sizeof(U16) );
3dab1dad 1530 if (!(UTF && folder))
c944940b 1531 trie->bitmap = (char *) PerlMemShared_calloc( ANYOF_BITMAP_SIZE, 1 );
2e64971a
DM
1532 trie->wordinfo = (reg_trie_wordinfo *) PerlMemShared_calloc(
1533 trie->wordcount+1, sizeof(reg_trie_wordinfo));
1534
a3621e74 1535 DEBUG_r({
2b8b4781 1536 trie_words = newAV();
a3621e74 1537 });
a3621e74 1538
0111c4fd 1539 re_trie_maxbuff = get_sv(RE_TRIE_MAXBUF_NAME, 1);
a3621e74 1540 if (!SvIOK(re_trie_maxbuff)) {
0111c4fd 1541 sv_setiv(re_trie_maxbuff, RE_TRIE_MAXBUF_INIT);
a3621e74 1542 }
3dab1dad
YO
1543 DEBUG_OPTIMISE_r({
1544 PerlIO_printf( Perl_debug_log,
786e8c11 1545 "%*smake_trie start==%d, first==%d, last==%d, tail==%d depth=%d\n",
3dab1dad
YO
1546 (int)depth * 2 + 2, "",
1547 REG_NODE_NUM(startbranch),REG_NODE_NUM(first),
786e8c11 1548 REG_NODE_NUM(last), REG_NODE_NUM(tail),
85c3142d 1549 (int)depth);
3dab1dad 1550 });
7f69552c
YO
1551
1552 /* Find the node we are going to overwrite */
1553 if ( first == startbranch && OP( last ) != BRANCH ) {
1554 /* whole branch chain */
1555 convert = first;
1556 } else {
1557 /* branch sub-chain */
1558 convert = NEXTOPER( first );
1559 }
1560
a3621e74
YO
1561 /* -- First loop and Setup --
1562
1563 We first traverse the branches and scan each word to determine if it
1564 contains widechars, and how many unique chars there are, this is
1565 important as we have to build a table with at least as many columns as we
1566 have unique chars.
1567
1568 We use an array of integers to represent the character codes 0..255
38a44b82 1569 (trie->charmap) and we use a an HV* to store Unicode characters. We use the
a3621e74
YO
1570 native representation of the character value as the key and IV's for the
1571 coded index.
1572
1573 *TODO* If we keep track of how many times each character is used we can
1574 remap the columns so that the table compression later on is more
3b753521 1575 efficient in terms of memory by ensuring the most common value is in the
a3621e74
YO
1576 middle and the least common are on the outside. IMO this would be better
1577 than a most to least common mapping as theres a decent chance the most
1578 common letter will share a node with the least common, meaning the node
486ec47a 1579 will not be compressible. With a middle is most common approach the worst
a3621e74
YO
1580 case is when we have the least common nodes twice.
1581
1582 */
1583
a3621e74 1584 for ( cur = first ; cur < last ; cur = regnext( cur ) ) {
c445ea15 1585 regnode * const noper = NEXTOPER( cur );
e1ec3a88 1586 const U8 *uc = (U8*)STRING( noper );
a28509cc 1587 const U8 * const e = uc + STR_LEN( noper );
a3621e74
YO
1588 STRLEN foldlen = 0;
1589 U8 foldbuf[ UTF8_MAXBYTES_CASE + 1 ];
2af232bd 1590 const U8 *scan = (U8*)NULL;
07be1b83 1591 U32 wordlen = 0; /* required init */
02daf0ab
YO
1592 STRLEN chars = 0;
1593 bool set_bit = trie->bitmap ? 1 : 0; /*store the first char in the bitmap?*/
a3621e74 1594
3dab1dad
YO
1595 if (OP(noper) == NOTHING) {
1596 trie->minlen= 0;
1597 continue;
1598 }
02daf0ab
YO
1599 if ( set_bit ) /* bitmap only alloced when !(UTF&&Folding) */
1600 TRIE_BITMAP_SET(trie,*uc); /* store the raw first byte
1601 regardless of encoding */
1602
a3621e74 1603 for ( ; uc < e ; uc += len ) {
3dab1dad 1604 TRIE_CHARCOUNT(trie)++;
a3621e74 1605 TRIE_READ_CHAR;
3dab1dad 1606 chars++;
a3621e74
YO
1607 if ( uvc < 256 ) {
1608 if ( !trie->charmap[ uvc ] ) {
1609 trie->charmap[ uvc ]=( ++trie->uniquecharcount );
1610 if ( folder )
1611 trie->charmap[ folder[ uvc ] ] = trie->charmap[ uvc ];
3dab1dad 1612 TRIE_STORE_REVCHAR;
a3621e74 1613 }
02daf0ab 1614 if ( set_bit ) {
62012aee
KW
1615 /* store the codepoint in the bitmap, and its folded
1616 * equivalent. */
02daf0ab 1617 TRIE_BITMAP_SET(trie,uvc);
0921ee73
T
1618
1619 /* store the folded codepoint */
1620 if ( folder ) TRIE_BITMAP_SET(trie,folder[ uvc ]);
1621
1622 if ( !UTF ) {
1623 /* store first byte of utf8 representation of
acdf4139
KW
1624 variant codepoints */
1625 if (! UNI_IS_INVARIANT(uvc)) {
1626 TRIE_BITMAP_SET(trie, UTF8_TWO_BYTE_HI(uvc));
0921ee73
T
1627 }
1628 }
02daf0ab
YO
1629 set_bit = 0; /* We've done our bit :-) */
1630 }
a3621e74
YO
1631 } else {
1632 SV** svpp;
55eed653
NC
1633 if ( !widecharmap )
1634 widecharmap = newHV();
a3621e74 1635
55eed653 1636 svpp = hv_fetch( widecharmap, (char*)&uvc, sizeof( UV ), 1 );
a3621e74
YO
1637
1638 if ( !svpp )
e4584336 1639 Perl_croak( aTHX_ "error creating/fetching widecharmap entry for 0x%"UVXf, uvc );
a3621e74
YO
1640
1641 if ( !SvTRUE( *svpp ) ) {
1642 sv_setiv( *svpp, ++trie->uniquecharcount );
3dab1dad 1643 TRIE_STORE_REVCHAR;
a3621e74
YO
1644 }
1645 }
1646 }
3dab1dad
YO
1647 if( cur == first ) {
1648 trie->minlen=chars;
1649 trie->maxlen=chars;
1650 } else if (chars < trie->minlen) {
1651 trie->minlen=chars;
1652 } else if (chars > trie->maxlen) {
1653 trie->maxlen=chars;
1654 }
1655
a3621e74
YO
1656 } /* end first pass */
1657 DEBUG_TRIE_COMPILE_r(
3dab1dad
YO
1658 PerlIO_printf( Perl_debug_log, "%*sTRIE(%s): W:%d C:%d Uq:%d Min:%d Max:%d\n",
1659 (int)depth * 2 + 2,"",
55eed653 1660 ( widecharmap ? "UTF8" : "NATIVE" ), (int)word_count,
be8e71aa
YO
1661 (int)TRIE_CHARCOUNT(trie), trie->uniquecharcount,
1662 (int)trie->minlen, (int)trie->maxlen )
a3621e74 1663 );
a3621e74
YO
1664
1665 /*
1666 We now know what we are dealing with in terms of unique chars and
1667 string sizes so we can calculate how much memory a naive
0111c4fd
RGS
1668 representation using a flat table will take. If it's over a reasonable
1669 limit (as specified by ${^RE_TRIE_MAXBUF}) we use a more memory
a3621e74
YO
1670 conservative but potentially much slower representation using an array
1671 of lists.
1672
1673 At the end we convert both representations into the same compressed
1674 form that will be used in regexec.c for matching with. The latter
1675 is a form that cannot be used to construct with but has memory
1676 properties similar to the list form and access properties similar
1677 to the table form making it both suitable for fast searches and
1678 small enough that its feasable to store for the duration of a program.
1679
1680 See the comment in the code where the compressed table is produced
1681 inplace from the flat tabe representation for an explanation of how
1682 the compression works.
1683
1684 */
1685
1686
2e64971a
DM
1687 Newx(prev_states, TRIE_CHARCOUNT(trie) + 2, U32);
1688 prev_states[1] = 0;
1689
3dab1dad 1690 if ( (IV)( ( TRIE_CHARCOUNT(trie) + 1 ) * trie->uniquecharcount + 1) > SvIV(re_trie_maxbuff) ) {
a3621e74
YO
1691 /*
1692 Second Pass -- Array Of Lists Representation
1693
1694 Each state will be represented by a list of charid:state records
1695 (reg_trie_trans_le) the first such element holds the CUR and LEN
1696 points of the allocated array. (See defines above).
1697
1698 We build the initial structure using the lists, and then convert
1699 it into the compressed table form which allows faster lookups
1700 (but cant be modified once converted).
a3621e74
YO
1701 */
1702
a3621e74
YO
1703 STRLEN transcount = 1;
1704
1e2e3d02
YO
1705 DEBUG_TRIE_COMPILE_MORE_r( PerlIO_printf( Perl_debug_log,
1706 "%*sCompiling trie using list compiler\n",
1707 (int)depth * 2 + 2, ""));
446bd890 1708
c944940b
JH
1709 trie->states = (reg_trie_state *)
1710 PerlMemShared_calloc( TRIE_CHARCOUNT(trie) + 2,
1711 sizeof(reg_trie_state) );
a3621e74
YO
1712 TRIE_LIST_NEW(1);
1713 next_alloc = 2;
1714
1715 for ( cur = first ; cur < last ; cur = regnext( cur ) ) {
1716
c445ea15
AL
1717 regnode * const noper = NEXTOPER( cur );
1718 U8 *uc = (U8*)STRING( noper );
1719 const U8 * const e = uc + STR_LEN( noper );
1720 U32 state = 1; /* required init */
1721 U16 charid = 0; /* sanity init */
1722 U8 *scan = (U8*)NULL; /* sanity init */
1723 STRLEN foldlen = 0; /* required init */
07be1b83 1724 U32 wordlen = 0; /* required init */
c445ea15
AL
1725 U8 foldbuf[ UTF8_MAXBYTES_CASE + 1 ];
1726
3dab1dad 1727 if (OP(noper) != NOTHING) {
786e8c11 1728 for ( ; uc < e ; uc += len ) {
c445ea15 1729
786e8c11 1730 TRIE_READ_CHAR;
c445ea15 1731
786e8c11
YO
1732 if ( uvc < 256 ) {
1733 charid = trie->charmap[ uvc ];
c445ea15 1734 } else {
55eed653 1735 SV** const svpp = hv_fetch( widecharmap, (char*)&uvc, sizeof( UV ), 0);
786e8c11
YO
1736 if ( !svpp ) {
1737 charid = 0;
1738 } else {
1739 charid=(U16)SvIV( *svpp );
1740 }
c445ea15 1741 }
786e8c11
YO
1742 /* charid is now 0 if we dont know the char read, or nonzero if we do */
1743 if ( charid ) {
a3621e74 1744
786e8c11
YO
1745 U16 check;
1746 U32 newstate = 0;
a3621e74 1747
786e8c11
YO
1748 charid--;
1749 if ( !trie->states[ state ].trans.list ) {
1750 TRIE_LIST_NEW( state );
c445ea15 1751 }
786e8c11
YO
1752 for ( check = 1; check <= TRIE_LIST_USED( state ); check++ ) {
1753 if ( TRIE_LIST_ITEM( state, check ).forid == charid ) {
1754 newstate = TRIE_LIST_ITEM( state, check ).newstate;
1755 break;
1756 }
1757 }
1758 if ( ! newstate ) {
1759 newstate = next_alloc++;
2e64971a 1760 prev_states[newstate] = state;
786e8c11
YO
1761 TRIE_LIST_PUSH( state, charid, newstate );
1762 transcount++;
1763 }
1764 state = newstate;
1765 } else {
1766 Perl_croak( aTHX_ "panic! In trie construction, no char mapping for %"IVdf, uvc );
c445ea15 1767 }
a28509cc 1768 }
c445ea15 1769 }
3dab1dad 1770 TRIE_HANDLE_WORD(state);
a3621e74
YO
1771
1772 } /* end second pass */
1773
1e2e3d02
YO
1774 /* next alloc is the NEXT state to be allocated */
1775 trie->statecount = next_alloc;
c944940b
JH
1776 trie->states = (reg_trie_state *)
1777 PerlMemShared_realloc( trie->states,
1778 next_alloc
1779 * sizeof(reg_trie_state) );
a3621e74 1780
3dab1dad 1781 /* and now dump it out before we compress it */
2b8b4781
NC
1782 DEBUG_TRIE_COMPILE_MORE_r(dump_trie_interim_list(trie, widecharmap,
1783 revcharmap, next_alloc,
1784 depth+1)
1e2e3d02 1785 );
a3621e74 1786
c944940b
JH
1787 trie->trans = (reg_trie_trans *)
1788 PerlMemShared_calloc( transcount, sizeof(reg_trie_trans) );
a3621e74
YO
1789 {
1790 U32 state;
a3621e74
YO
1791 U32 tp = 0;
1792 U32 zp = 0;
1793
1794
1795 for( state=1 ; state < next_alloc ; state ++ ) {
1796 U32 base=0;
1797
1798 /*
1799 DEBUG_TRIE_COMPILE_MORE_r(
1800 PerlIO_printf( Perl_debug_log, "tp: %d zp: %d ",tp,zp)
1801 );
1802 */
1803
1804 if (trie->states[state].trans.list) {
1805 U16 minid=TRIE_LIST_ITEM( state, 1).forid;
1806 U16 maxid=minid;
a28509cc 1807 U16 idx;
a3621e74
YO
1808
1809 for( idx = 2 ; idx <= TRIE_LIST_USED( state ) ; idx++ ) {
c445ea15
AL
1810 const U16 forid = TRIE_LIST_ITEM( state, idx).forid;
1811 if ( forid < minid ) {
1812 minid=forid;
1813 } else if ( forid > maxid ) {
1814 maxid=forid;
1815 }
a3621e74
YO
1816 }
1817 if ( transcount < tp + maxid - minid + 1) {
1818 transcount *= 2;
c944940b
JH
1819 trie->trans = (reg_trie_trans *)
1820 PerlMemShared_realloc( trie->trans,
446bd890
NC
1821 transcount
1822 * sizeof(reg_trie_trans) );
a3621e74
YO
1823 Zero( trie->trans + (transcount / 2), transcount / 2 , reg_trie_trans );
1824 }
1825 base = trie->uniquecharcount + tp - minid;
1826 if ( maxid == minid ) {
1827 U32 set = 0;
1828 for ( ; zp < tp ; zp++ ) {
1829 if ( ! trie->trans[ zp ].next ) {
1830 base = trie->uniquecharcount + zp - minid;
1831 trie->trans[ zp ].next = TRIE_LIST_ITEM( state, 1).newstate;
1832 trie->trans[ zp ].check = state;
1833 set = 1;
1834 break;
1835 }
1836 }
1837 if ( !set ) {
1838 trie->trans[ tp ].next = TRIE_LIST_ITEM( state, 1).newstate;
1839 trie->trans[ tp ].check = state;
1840 tp++;
1841 zp = tp;
1842 }
1843 } else {
1844 for ( idx=1; idx <= TRIE_LIST_USED( state ) ; idx++ ) {
c445ea15 1845 const U32 tid = base - trie->uniquecharcount + TRIE_LIST_ITEM( state, idx ).forid;
a3621e74
YO
1846 trie->trans[ tid ].next = TRIE_LIST_ITEM( state, idx ).newstate;
1847 trie->trans[ tid ].check = state;
1848 }
1849 tp += ( maxid - minid + 1 );
1850 }
1851 Safefree(trie->states[ state ].trans.list);
1852 }
1853 /*
1854 DEBUG_TRIE_COMPILE_MORE_r(
1855 PerlIO_printf( Perl_debug_log, " base: %d\n",base);
1856 );
1857 */
1858 trie->states[ state ].trans.base=base;
1859 }
cc601c31 1860 trie->lasttrans = tp + 1;
a3621e74
YO
1861 }
1862 } else {
1863 /*
1864 Second Pass -- Flat Table Representation.
1865
1866 we dont use the 0 slot of either trans[] or states[] so we add 1 to each.
1867 We know that we will need Charcount+1 trans at most to store the data
1868 (one row per char at worst case) So we preallocate both structures
1869 assuming worst case.
1870
1871 We then construct the trie using only the .next slots of the entry
1872 structs.
1873
3b753521 1874 We use the .check field of the first entry of the node temporarily to
a3621e74
YO
1875 make compression both faster and easier by keeping track of how many non
1876 zero fields are in the node.
1877
1878 Since trans are numbered from 1 any 0 pointer in the table is a FAIL
1879 transition.
1880
1881 There are two terms at use here: state as a TRIE_NODEIDX() which is a
1882 number representing the first entry of the node, and state as a
1883 TRIE_NODENUM() which is the trans number. state 1 is TRIE_NODEIDX(1) and
1884 TRIE_NODENUM(1), state 2 is TRIE_NODEIDX(2) and TRIE_NODENUM(3) if there
1885 are 2 entrys per node. eg:
1886
1887 A B A B
1888 1. 2 4 1. 3 7
1889 2. 0 3 3. 0 5
1890 3. 0 0 5. 0 0
1891 4. 0 0 7. 0 0
1892
1893 The table is internally in the right hand, idx form. However as we also
1894 have to deal with the states array which is indexed by nodenum we have to
1895 use TRIE_NODENUM() to convert.
1896
1897 */
1e2e3d02
YO
1898 DEBUG_TRIE_COMPILE_MORE_r( PerlIO_printf( Perl_debug_log,
1899 "%*sCompiling trie using table compiler\n",
1900 (int)depth * 2 + 2, ""));
3dab1dad 1901
c944940b
JH
1902 trie->trans = (reg_trie_trans *)
1903 PerlMemShared_calloc( ( TRIE_CHARCOUNT(trie) + 1 )
1904 * trie->uniquecharcount + 1,
1905 sizeof(reg_trie_trans) );
1906 trie->states = (reg_trie_state *)
1907 PerlMemShared_calloc( TRIE_CHARCOUNT(trie) + 2,
1908 sizeof(reg_trie_state) );
a3621e74
YO
1909 next_alloc = trie->uniquecharcount + 1;
1910
3dab1dad 1911
a3621e74
YO
1912 for ( cur = first ; cur < last ; cur = regnext( cur ) ) {
1913
c445ea15 1914 regnode * const noper = NEXTOPER( cur );
a28509cc
AL
1915 const U8 *uc = (U8*)STRING( noper );
1916 const U8 * const e = uc + STR_LEN( noper );
a3621e74
YO
1917
1918 U32 state = 1; /* required init */
1919
1920 U16 charid = 0; /* sanity init */
1921 U32 accept_state = 0; /* sanity init */
1922 U8 *scan = (U8*)NULL; /* sanity init */
1923
1924 STRLEN foldlen = 0; /* required init */
07be1b83 1925 U32 wordlen = 0; /* required init */
a3621e74
YO
1926 U8 foldbuf[ UTF8_MAXBYTES_CASE + 1 ];
1927
3dab1dad 1928 if ( OP(noper) != NOTHING ) {
786e8c11 1929 for ( ; uc < e ; uc += len ) {
a3621e74 1930
786e8c11 1931 TRIE_READ_CHAR;
a3621e74 1932
786e8c11
YO
1933 if ( uvc < 256 ) {
1934 charid = trie->charmap[ uvc ];
1935 } else {
55eed653 1936 SV* const * const svpp = hv_fetch( widecharmap, (char*)&uvc, sizeof( UV ), 0);
786e8c11 1937 charid = svpp ? (U16)SvIV(*svpp) : 0;
a3621e74 1938 }
786e8c11
YO
1939 if ( charid ) {
1940 charid--;
1941 if ( !trie->trans[ state + charid ].next ) {
1942 trie->trans[ state + charid ].next = next_alloc;
1943 trie->trans[ state ].check++;
2e64971a
DM
1944 prev_states[TRIE_NODENUM(next_alloc)]
1945 = TRIE_NODENUM(state);
786e8c11
YO
1946 next_alloc += trie->uniquecharcount;
1947 }
1948 state = trie->trans[ state + charid ].next;
1949 } else {
1950 Perl_croak( aTHX_ "panic! In trie construction, no char mapping for %"IVdf, uvc );
1951 }
1952 /* charid is now 0 if we dont know the char read, or nonzero if we do */
a3621e74 1953 }
a3621e74 1954 }
3dab1dad
YO
1955 accept_state = TRIE_NODENUM( state );
1956 TRIE_HANDLE_WORD(accept_state);
a3621e74
YO
1957
1958 } /* end second pass */
1959
3dab1dad 1960 /* and now dump it out before we compress it */
2b8b4781
NC
1961 DEBUG_TRIE_COMPILE_MORE_r(dump_trie_interim_table(trie, widecharmap,
1962 revcharmap,
1963 next_alloc, depth+1));
a3621e74 1964
a3621e74
YO
1965 {
1966 /*
1967 * Inplace compress the table.*
1968
1969 For sparse data sets the table constructed by the trie algorithm will
1970 be mostly 0/FAIL transitions or to put it another way mostly empty.
1971 (Note that leaf nodes will not contain any transitions.)
1972
1973 This algorithm compresses the tables by eliminating most such
1974 transitions, at the cost of a modest bit of extra work during lookup:
1975
1976 - Each states[] entry contains a .base field which indicates the
1977 index in the state[] array wheres its transition data is stored.
1978
3b753521 1979 - If .base is 0 there are no valid transitions from that node.
a3621e74
YO
1980
1981 - If .base is nonzero then charid is added to it to find an entry in
1982 the trans array.
1983
1984 -If trans[states[state].base+charid].check!=state then the
1985 transition is taken to be a 0/Fail transition. Thus if there are fail
1986 transitions at the front of the node then the .base offset will point
1987 somewhere inside the previous nodes data (or maybe even into a node
1988 even earlier), but the .check field determines if the transition is
1989 valid.
1990
786e8c11 1991 XXX - wrong maybe?
a3621e74 1992 The following process inplace converts the table to the compressed
3b753521 1993 table: We first do not compress the root node 1,and mark all its
a3621e74 1994 .check pointers as 1 and set its .base pointer as 1 as well. This
3b753521
FN
1995 allows us to do a DFA construction from the compressed table later,
1996 and ensures that any .base pointers we calculate later are greater
1997 than 0.
a3621e74
YO
1998
1999 - We set 'pos' to indicate the first entry of the second node.
2000
2001 - We then iterate over the columns of the node, finding the first and
2002 last used entry at l and m. We then copy l..m into pos..(pos+m-l),
2003 and set the .check pointers accordingly, and advance pos
2004 appropriately and repreat for the next node. Note that when we copy
2005 the next pointers we have to convert them from the original
2006 NODEIDX form to NODENUM form as the former is not valid post
2007 compression.
2008
2009 - If a node has no transitions used we mark its base as 0 and do not
2010 advance the pos pointer.
2011
2012 - If a node only has one transition we use a second pointer into the
2013 structure to fill in allocated fail transitions from other states.
2014 This pointer is independent of the main pointer and scans forward
2015 looking for null transitions that are allocated to a state. When it
2016 finds one it writes the single transition into the "hole". If the
786e8c11 2017 pointer doesnt find one the single transition is appended as normal.
a3621e74
YO
2018
2019 - Once compressed we can Renew/realloc the structures to release the
2020 excess space.
2021
2022 See "Table-Compression Methods" in sec 3.9 of the Red Dragon,
2023 specifically Fig 3.47 and the associated pseudocode.
2024
2025 demq
2026 */
a3b680e6 2027 const U32 laststate = TRIE_NODENUM( next_alloc );
a28509cc 2028 U32 state, charid;
a3621e74 2029 U32 pos = 0, zp=0;
1e2e3d02 2030 trie->statecount = laststate;
a3621e74
YO
2031
2032 for ( state = 1 ; state < laststate ; state++ ) {
2033 U8 flag = 0;
a28509cc
AL
2034 const U32 stateidx = TRIE_NODEIDX( state );
2035 const U32 o_used = trie->trans[ stateidx ].check;
2036 U32 used = trie->trans[ stateidx ].check;
a3621e74
YO
2037 trie->trans[ stateidx ].check = 0;
2038
2039 for ( charid = 0 ; used && charid < trie->uniquecharcount ; charid++ ) {
2040 if ( flag || trie->trans[ stateidx + charid ].next ) {
2041 if ( trie->trans[ stateidx + charid ].next ) {
2042 if (o_used == 1) {
2043 for ( ; zp < pos ; zp++ ) {
2044 if ( ! trie->trans[ zp ].next ) {
2045 break;
2046 }
2047 }
2048 trie->states[ state ].trans.base = zp + trie->uniquecharcount - charid ;
2049 trie->trans[ zp ].next = SAFE_TRIE_NODENUM( trie->trans[ stateidx + charid ].next );
2050 trie->trans[ zp ].check = state;
2051 if ( ++zp > pos ) pos = zp;
2052 break;
2053 }
2054 used--;
2055 }
2056 if ( !flag ) {
2057 flag = 1;
2058 trie->states[ state ].trans.base = pos + trie->uniquecharcount - charid ;
2059 }
2060 trie->trans[ pos ].next = SAFE_TRIE_NODENUM( trie->trans[ stateidx + charid ].next );
2061 trie->trans[ pos ].check = state;
2062 pos++;
2063 }
2064 }
2065 }
cc601c31 2066 trie->lasttrans = pos + 1;
c944940b
JH
2067 trie->states = (reg_trie_state *)
2068 PerlMemShared_realloc( trie->states, laststate
2069 * sizeof(reg_trie_state) );
a3621e74 2070 DEBUG_TRIE_COMPILE_MORE_r(
e4584336 2071 PerlIO_printf( Perl_debug_log,
3dab1dad
YO
2072 "%*sAlloc: %d Orig: %"IVdf" elements, Final:%"IVdf". Savings of %%%5.2f\n",
2073 (int)depth * 2 + 2,"",
2074 (int)( ( TRIE_CHARCOUNT(trie) + 1 ) * trie->uniquecharcount + 1 ),
5d7488b2
AL
2075 (IV)next_alloc,
2076 (IV)pos,
a3621e74
YO
2077 ( ( next_alloc - pos ) * 100 ) / (double)next_alloc );
2078 );
2079
2080 } /* end table compress */
2081 }
1e2e3d02
YO
2082 DEBUG_TRIE_COMPILE_MORE_r(
2083 PerlIO_printf(Perl_debug_log, "%*sStatecount:%"UVxf" Lasttrans:%"UVxf"\n",
2084 (int)depth * 2 + 2, "",
2085 (UV)trie->statecount,
2086 (UV)trie->lasttrans)
2087 );
cc601c31 2088 /* resize the trans array to remove unused space */
c944940b
JH
2089 trie->trans = (reg_trie_trans *)
2090 PerlMemShared_realloc( trie->trans, trie->lasttrans
2091 * sizeof(reg_trie_trans) );
a3621e74 2092
3b753521 2093 { /* Modify the program and insert the new TRIE node */
3dab1dad
YO
2094 U8 nodetype =(U8)(flags & 0xFF);
2095 char *str=NULL;
786e8c11 2096
07be1b83 2097#ifdef DEBUGGING
e62cc96a 2098 regnode *optimize = NULL;
7122b237
YO
2099#ifdef RE_TRACK_PATTERN_OFFSETS
2100
b57a0404
JH
2101 U32 mjd_offset = 0;
2102 U32 mjd_nodelen = 0;
7122b237
YO
2103#endif /* RE_TRACK_PATTERN_OFFSETS */
2104#endif /* DEBUGGING */
a3621e74 2105 /*
3dab1dad
YO
2106 This means we convert either the first branch or the first Exact,
2107 depending on whether the thing following (in 'last') is a branch
2108 or not and whther first is the startbranch (ie is it a sub part of
2109 the alternation or is it the whole thing.)
3b753521 2110 Assuming its a sub part we convert the EXACT otherwise we convert
3dab1dad 2111 the whole branch sequence, including the first.
a3621e74 2112 */
3dab1dad 2113 /* Find the node we are going to overwrite */
7f69552c 2114 if ( first != startbranch || OP( last ) == BRANCH ) {
07be1b83 2115 /* branch sub-chain */
3dab1dad 2116 NEXT_OFF( first ) = (U16)(last - first);
7122b237 2117#ifdef RE_TRACK_PATTERN_OFFSETS
07be1b83
YO
2118 DEBUG_r({
2119 mjd_offset= Node_Offset((convert));
2120 mjd_nodelen= Node_Length((convert));
2121 });
7122b237 2122#endif
7f69552c 2123 /* whole branch chain */
7122b237
YO
2124 }
2125#ifdef RE_TRACK_PATTERN_OFFSETS
2126 else {
7f69552c
YO
2127 DEBUG_r({
2128 const regnode *nop = NEXTOPER( convert );
2129 mjd_offset= Node_Offset((nop));
2130 mjd_nodelen= Node_Length((nop));
2131 });
07be1b83
YO
2132 }
2133 DEBUG_OPTIMISE_r(
2134 PerlIO_printf(Perl_debug_log, "%*sMJD offset:%"UVuf" MJD length:%"UVuf"\n",
2135 (int)depth * 2 + 2, "",
786e8c11 2136 (UV)mjd_offset, (UV)mjd_nodelen)
07be1b83 2137 );
7122b237 2138#endif
3dab1dad
YO
2139 /* But first we check to see if there is a common prefix we can
2140 split out as an EXACT and put in front of the TRIE node. */
2141 trie->startstate= 1;
55eed653 2142 if ( trie->bitmap && !widecharmap && !trie->jump ) {
3dab1dad 2143 U32 state;
1e2e3d02 2144 for ( state = 1 ; state < trie->statecount-1 ; state++ ) {
a3621e74 2145 U32 ofs = 0;
8e11feef
RGS
2146 I32 idx = -1;
2147 U32 count = 0;
2148 const U32 base = trie->states[ state ].trans.base;
a3621e74 2149
3dab1dad 2150 if ( trie->states[state].wordnum )
8e11feef 2151 count = 1;
a3621e74 2152
8e11feef 2153 for ( ofs = 0 ; ofs < trie->uniquecharcount ; ofs++ ) {
cc601c31
YO
2154 if ( ( base + ofs >= trie->uniquecharcount ) &&
2155 ( base + ofs - trie->uniquecharcount < trie->lasttrans ) &&
a3621e74
YO
2156 trie->trans[ base + ofs - trie->uniquecharcount ].check == state )
2157 {
3dab1dad 2158 if ( ++count > 1 ) {
2b8b4781 2159 SV **tmp = av_fetch( revcharmap, ofs, 0);
07be1b83 2160 const U8 *ch = (U8*)SvPV_nolen_const( *tmp );
8e11feef 2161 if ( state == 1 ) break;
3dab1dad
YO
2162 if ( count == 2 ) {
2163 Zero(trie->bitmap, ANYOF_BITMAP_SIZE, char);
2164 DEBUG_OPTIMISE_r(
8e11feef
RGS
2165 PerlIO_printf(Perl_debug_log,
2166 "%*sNew Start State=%"UVuf" Class: [",
2167 (int)depth * 2 + 2, "",
786e8c11 2168 (UV)state));
be8e71aa 2169 if (idx >= 0) {
2b8b4781 2170 SV ** const tmp = av_fetch( revcharmap, idx, 0);
be8e71aa 2171 const U8 * const ch = (U8*)SvPV_nolen_const( *tmp );
8e11feef 2172
3dab1dad 2173 TRIE_BITMAP_SET(trie,*ch);
8e11feef
RGS
2174 if ( folder )
2175 TRIE_BITMAP_SET(trie, folder[ *ch ]);
3dab1dad 2176 DEBUG_OPTIMISE_r(
f1f66076 2177 PerlIO_printf(Perl_debug_log, "%s", (char*)ch)
3dab1dad 2178 );
8e11feef
RGS
2179 }
2180 }
2181 TRIE_BITMAP_SET(trie,*ch);
2182 if ( folder )
2183 TRIE_BITMAP_SET(trie,folder[ *ch ]);
2184 DEBUG_OPTIMISE_r(PerlIO_printf( Perl_debug_log,"%s", ch));
2185 }
2186 idx = ofs;
2187 }
3dab1dad
YO
2188 }
2189 if ( count == 1 ) {
2b8b4781 2190 SV **tmp = av_fetch( revcharmap, idx, 0);
c490c714
YO
2191 STRLEN len;
2192 char *ch = SvPV( *tmp, len );
de734bd5
A
2193 DEBUG_OPTIMISE_r({
2194 SV *sv=sv_newmortal();
8e11feef
RGS
2195 PerlIO_printf( Perl_debug_log,
2196 "%*sPrefix State: %"UVuf" Idx:%"UVuf" Char='%s'\n",
2197 (int)depth * 2 + 2, "",
de734bd5
A
2198 (UV)state, (UV)idx,
2199 pv_pretty(sv, SvPV_nolen_const(*tmp), SvCUR(*tmp), 6,
2200 PL_colors[0], PL_colors[1],
2201 (SvUTF8(*tmp) ? PERL_PV_ESCAPE_UNI : 0) |
2202 PERL_PV_ESCAPE_FIRSTCHAR
2203 )
2204 );
2205 });
3dab1dad
YO
2206 if ( state==1 ) {
2207 OP( convert ) = nodetype;
2208 str=STRING(convert);
2209 STR_LEN(convert)=0;
2210 }
c490c714
YO
2211 STR_LEN(convert) += len;
2212 while (len--)
de734bd5 2213 *str++ = *ch++;
8e11feef 2214 } else {
f9049ba1 2215#ifdef DEBUGGING
8e11feef
RGS
2216 if (state>1)
2217 DEBUG_OPTIMISE_r(PerlIO_printf( Perl_debug_log,"]\n"));
f9049ba1 2218#endif
8e11feef
RGS
2219 break;
2220 }
2221 }
2e64971a 2222 trie->prefixlen = (state-1);
3dab1dad 2223 if (str) {
8e11feef 2224 regnode *n = convert+NODE_SZ_STR(convert);
07be1b83 2225 NEXT_OFF(convert) = NODE_SZ_STR(convert);
8e11feef 2226 trie->startstate = state;
07be1b83
YO
2227 trie->minlen -= (state - 1);
2228 trie->maxlen -= (state - 1);
33809eae
JH
2229#ifdef DEBUGGING
2230 /* At least the UNICOS C compiler choked on this
2231 * being argument to DEBUG_r(), so let's just have
2232 * it right here. */
2233 if (
2234#ifdef PERL_EXT_RE_BUILD
2235 1
2236#else
2237 DEBUG_r_TEST
2238#endif
2239 ) {
2240 regnode *fix = convert;
2241 U32 word = trie->wordcount;
2242 mjd_nodelen++;
2243 Set_Node_Offset_Length(convert, mjd_offset, state - 1);
2244 while( ++fix < n ) {
2245 Set_Node_Offset_Length(fix, 0, 0);
2246 }
2247 while (word--) {
2248 SV ** const tmp = av_fetch( trie_words, word, 0 );
2249 if (tmp) {
2250 if ( STR_LEN(convert) <= SvCUR(*tmp) )
2251 sv_chop(*tmp, SvPV_nolen(*tmp) + STR_LEN(convert));
2252 else
2253 sv_chop(*tmp, SvPV_nolen(*tmp) + SvCUR(*tmp));
2254 }
2255 }
2256 }
2257#endif
8e11feef
RGS
2258 if (trie->maxlen) {
2259 convert = n;
2260 } else {
3dab1dad 2261 NEXT_OFF(convert) = (U16)(tail - convert);
a5ca303d 2262 DEBUG_r(optimize= n);
3dab1dad
YO
2263 }
2264 }
2265 }
a5ca303d
YO
2266 if (!jumper)
2267 jumper = last;
3dab1dad 2268 if ( trie->maxlen ) {
8e11feef
RGS
2269 NEXT_OFF( convert ) = (U16)(tail - convert);
2270 ARG_SET( convert, data_slot );
786e8c11
YO
2271 /* Store the offset to the first unabsorbed branch in
2272 jump[0], which is otherwise unused by the jump logic.
2273 We use this when dumping a trie and during optimisation. */
2274 if (trie->jump)
7f69552c 2275 trie->jump[0] = (U16)(nextbranch - convert);
a5ca303d 2276
6c48061a
YO
2277 /* If the start state is not accepting (meaning there is no empty string/NOTHING)
2278 * and there is a bitmap
2279 * and the first "jump target" node we found leaves enough room
2280 * then convert the TRIE node into a TRIEC node, with the bitmap
2281 * embedded inline in the opcode - this is hypothetically faster.
2282 */
2283 if ( !trie->states[trie->startstate].wordnum
2284 && trie->bitmap
2285 && ( (char *)jumper - (char *)convert) >= (int)sizeof(struct regnode_charclass) )
786e8c11
YO
2286 {
2287 OP( convert ) = TRIEC;
2288 Copy(trie->bitmap, ((struct regnode_charclass *)convert)->bitmap, ANYOF_BITMAP_SIZE, char);
446bd890 2289 PerlMemShared_free(trie->bitmap);
786e8c11
YO
2290 trie->bitmap= NULL;
2291 } else
2292 OP( convert ) = TRIE;
a3621e74 2293
3dab1dad
YO
2294 /* store the type in the flags */
2295 convert->flags = nodetype;
a5ca303d
YO
2296 DEBUG_r({
2297 optimize = convert
2298 + NODE_STEP_REGNODE
2299 + regarglen[ OP( convert ) ];
2300 });
2301 /* XXX We really should free up the resource in trie now,
2302 as we won't use them - (which resources?) dmq */
3dab1dad 2303 }
a3621e74 2304 /* needed for dumping*/
e62cc96a 2305 DEBUG_r(if (optimize) {
07be1b83 2306 regnode *opt = convert;
bcdf7404 2307
e62cc96a 2308 while ( ++opt < optimize) {
07be1b83
YO
2309 Set_Node_Offset_Length(opt,0,0);
2310 }
786e8c11
YO
2311 /*
2312 Try to clean up some of the debris left after the
2313 optimisation.
a3621e74 2314 */
786e8c11 2315 while( optimize < jumper ) {
07be1b83 2316 mjd_nodelen += Node_Length((optimize));
a3621e74 2317 OP( optimize ) = OPTIMIZED;
07be1b83 2318 Set_Node_Offset_Length(optimize,0,0);
a3621e74
YO
2319 optimize++;
2320 }
07be1b83 2321 Set_Node_Offset_Length(convert,mjd_offset,mjd_nodelen);
a3621e74
YO
2322 });
2323 } /* end node insert */
2e64971a
DM
2324
2325 /* Finish populating the prev field of the wordinfo array. Walk back
2326 * from each accept state until we find another accept state, and if
2327 * so, point the first word's .prev field at the second word. If the
2328 * second already has a .prev field set, stop now. This will be the
2329 * case either if we've already processed that word's accept state,
3b753521
FN
2330 * or that state had multiple words, and the overspill words were
2331 * already linked up earlier.
2e64971a
DM
2332 */
2333 {
2334 U16 word;
2335 U32 state;
2336 U16 prev;
2337
2338 for (word=1; word <= trie->wordcount; word++) {
2339 prev = 0;
2340 if (trie->wordinfo[word].prev)
2341 continue;
2342 state = trie->wordinfo[word].accept;
2343 while (state) {
2344 state = prev_states[state];
2345 if (!state)
2346 break;
2347 prev = trie->states[state].wordnum;
2348 if (prev)
2349 break;
2350 }
2351 trie->wordinfo[word].prev = prev;
2352 }
2353 Safefree(prev_states);
2354 }
2355
2356
2357 /* and now dump out the compressed format */
2358 DEBUG_TRIE_COMPILE_r(dump_trie(trie, widecharmap, revcharmap, depth+1));
2359
55eed653 2360 RExC_rxi->data->data[ data_slot + 1 ] = (void*)widecharmap;
2b8b4781
NC
2361#ifdef DEBUGGING
2362 RExC_rxi->data->data[ data_slot + TRIE_WORDS_OFFSET ] = (void*)trie_words;
2363 RExC_rxi->data->data[ data_slot + 3 ] = (void*)revcharmap;
2364#else
2365 SvREFCNT_dec(revcharmap);
07be1b83 2366#endif
786e8c11
YO
2367 return trie->jump
2368 ? MADE_JUMP_TRIE
2369 : trie->startstate>1
2370 ? MADE_EXACT_TRIE
2371 : MADE_TRIE;
2372}
2373
2374STATIC void
2375S_make_trie_failtable(pTHX_ RExC_state_t *pRExC_state, regnode *source, regnode *stclass, U32 depth)
2376{
3b753521 2377/* The Trie is constructed and compressed now so we can build a fail array if it's needed
786e8c11
YO
2378
2379 This is basically the Aho-Corasick algorithm. Its from exercise 3.31 and 3.32 in the
2380 "Red Dragon" -- Compilers, principles, techniques, and tools. Aho, Sethi, Ullman 1985/88
2381 ISBN 0-201-10088-6
2382
2383 We find the fail state for each state in the trie, this state is the longest proper
3b753521
FN
2384 suffix of the current state's 'word' that is also a proper prefix of another word in our
2385 trie. State 1 represents the word '' and is thus the default fail state. This allows
786e8c11
YO
2386 the DFA not to have to restart after its tried and failed a word at a given point, it
2387 simply continues as though it had been matching the other word in the first place.
2388 Consider
2389 'abcdgu'=~/abcdefg|cdgu/
2390 When we get to 'd' we are still matching the first word, we would encounter 'g' which would
3b753521
FN
2391 fail, which would bring us to the state representing 'd' in the second word where we would
2392 try 'g' and succeed, proceeding to match 'cdgu'.
786e8c11
YO
2393 */
2394 /* add a fail transition */
3251b653
NC
2395 const U32 trie_offset = ARG(source);
2396 reg_trie_data *trie=(reg_trie_data *)RExC_rxi->data->data[trie_offset];
786e8c11
YO
2397 U32 *q;
2398 const U32 ucharcount = trie->uniquecharcount;
1e2e3d02 2399 const U32 numstates = trie->statecount;
786e8c11
YO
2400 const U32 ubound = trie->lasttrans + ucharcount;
2401 U32 q_read = 0;
2402 U32 q_write = 0;
2403 U32 charid;
2404 U32 base = trie->states[ 1 ].trans.base;
2405 U32 *fail;
2406 reg_ac_data *aho;
2407 const U32 data_slot = add_data( pRExC_state, 1, "T" );
2408 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
2409
2410 PERL_ARGS_ASSERT_MAKE_TRIE_FAILTABLE;
786e8c11
YO
2411#ifndef DEBUGGING
2412 PERL_UNUSED_ARG(depth);
2413#endif
2414
2415
2416 ARG_SET( stclass, data_slot );
c944940b 2417 aho = (reg_ac_data *) PerlMemShared_calloc( 1, sizeof(reg_ac_data) );
f8fc2ecf 2418 RExC_rxi->data->data[ data_slot ] = (void*)aho;
3251b653 2419 aho->trie=trie_offset;
446bd890
NC
2420 aho->states=(reg_trie_state *)PerlMemShared_malloc( numstates * sizeof(reg_trie_state) );
2421 Copy( trie->states, aho->states, numstates, reg_trie_state );
786e8c11 2422 Newxz( q, numstates, U32);
c944940b 2423 aho->fail = (U32 *) PerlMemShared_calloc( numstates, sizeof(U32) );
786e8c11
YO
2424 aho->refcount = 1;
2425 fail = aho->fail;
2426 /* initialize fail[0..1] to be 1 so that we always have
2427 a valid final fail state */
2428 fail[ 0 ] = fail[ 1 ] = 1;
2429
2430 for ( charid = 0; charid < ucharcount ; charid++ ) {
2431 const U32 newstate = TRIE_TRANS_STATE( 1, base, ucharcount, charid, 0 );
2432 if ( newstate ) {
2433 q[ q_write ] = newstate;
2434 /* set to point at the root */
2435 fail[ q[ q_write++ ] ]=1;
2436 }
2437 }
2438 while ( q_read < q_write) {
2439 const U32 cur = q[ q_read++ % numstates ];
2440 base = trie->states[ cur ].trans.base;
2441
2442 for ( charid = 0 ; charid < ucharcount ; charid++ ) {
2443 const U32 ch_state = TRIE_TRANS_STATE( cur, base, ucharcount, charid, 1 );
2444 if (ch_state) {
2445 U32 fail_state = cur;
2446 U32 fail_base;
2447 do {
2448 fail_state = fail[ fail_state ];
2449 fail_base = aho->states[ fail_state ].trans.base;
2450 } while ( !TRIE_TRANS_STATE( fail_state, fail_base, ucharcount, charid, 1 ) );
2451
2452 fail_state = TRIE_TRANS_STATE( fail_state, fail_base, ucharcount, charid, 1 );
2453 fail[ ch_state ] = fail_state;
2454 if ( !aho->states[ ch_state ].wordnum && aho->states[ fail_state ].wordnum )
2455 {
2456 aho->states[ ch_state ].wordnum = aho->states[ fail_state ].wordnum;
2457 }
2458 q[ q_write++ % numstates] = ch_state;
2459 }
2460 }
2461 }
2462 /* restore fail[0..1] to 0 so that we "fall out" of the AC loop
2463 when we fail in state 1, this allows us to use the
2464 charclass scan to find a valid start char. This is based on the principle
2465 that theres a good chance the string being searched contains lots of stuff
2466 that cant be a start char.
2467 */
2468 fail[ 0 ] = fail[ 1 ] = 0;
2469 DEBUG_TRIE_COMPILE_r({
6d99fb9b
JH
2470 PerlIO_printf(Perl_debug_log,
2471 "%*sStclass Failtable (%"UVuf" states): 0",
2472 (int)(depth * 2), "", (UV)numstates
1e2e3d02 2473 );
786e8c11
YO
2474 for( q_read=1; q_read<numstates; q_read++ ) {
2475 PerlIO_printf(Perl_debug_log, ", %"UVuf, (UV)fail[q_read]);
2476 }
2477 PerlIO_printf(Perl_debug_log, "\n");
2478 });
2479 Safefree(q);
2480 /*RExC_seen |= REG_SEEN_TRIEDFA;*/
a3621e74
YO
2481}
2482
786e8c11 2483
a3621e74 2484/*
5d1c421c
JH
2485 * There are strange code-generation bugs caused on sparc64 by gcc-2.95.2.
2486 * These need to be revisited when a newer toolchain becomes available.
2487 */
2488#if defined(__sparc64__) && defined(__GNUC__)
2489# if __GNUC__ < 2 || (__GNUC__ == 2 && __GNUC_MINOR__ < 96)
2490# undef SPARC64_GCC_WORKAROUND
2491# define SPARC64_GCC_WORKAROUND 1
2492# endif
2493#endif
2494
07be1b83 2495#define DEBUG_PEEP(str,scan,depth) \
b515a41d 2496 DEBUG_OPTIMISE_r({if (scan){ \
07be1b83
YO
2497 SV * const mysv=sv_newmortal(); \
2498 regnode *Next = regnext(scan); \
2499 regprop(RExC_rx, mysv, scan); \
7f69552c 2500 PerlIO_printf(Perl_debug_log, "%*s" str ">%3d: %s (%d)\n", \
07be1b83
YO
2501 (int)depth*2, "", REG_NODE_NUM(scan), SvPV_nolen_const(mysv),\
2502 Next ? (REG_NODE_NUM(Next)) : 0 ); \
b515a41d 2503 }});
07be1b83 2504
1de06328
YO
2505
2506
2507
2508
07be1b83
YO
2509#define JOIN_EXACT(scan,min,flags) \
2510 if (PL_regkind[OP(scan)] == EXACT) \
2511 join_exact(pRExC_state,(scan),(min),(flags),NULL,depth+1)
2512
be8e71aa 2513STATIC U32
07be1b83
YO
2514S_join_exact(pTHX_ RExC_state_t *pRExC_state, regnode *scan, I32 *min, U32 flags,regnode *val, U32 depth) {
2515 /* Merge several consecutive EXACTish nodes into one. */
2516 regnode *n = regnext(scan);
2517 U32 stringok = 1;
2518 regnode *next = scan + NODE_SZ_STR(scan);
2519 U32 merged = 0;
2520 U32 stopnow = 0;
2521#ifdef DEBUGGING
2522 regnode *stop = scan;
72f13be8 2523 GET_RE_DEBUG_FLAGS_DECL;
f9049ba1 2524#else
d47053eb
RGS
2525 PERL_UNUSED_ARG(depth);
2526#endif
7918f24d
NC
2527
2528 PERL_ARGS_ASSERT_JOIN_EXACT;
d47053eb 2529#ifndef EXPERIMENTAL_INPLACESCAN
f9049ba1
SP
2530 PERL_UNUSED_ARG(flags);
2531 PERL_UNUSED_ARG(val);
07be1b83 2532#endif
07be1b83
YO
2533 DEBUG_PEEP("join",scan,depth);
2534
2535 /* Skip NOTHING, merge EXACT*. */
2536 while (n &&
2537 ( PL_regkind[OP(n)] == NOTHING ||
2538 (stringok && (OP(n) == OP(scan))))
2539 && NEXT_OFF(n)
2540 && NEXT_OFF(scan) + NEXT_OFF(n) < I16_MAX) {
2541
2542 if (OP(n) == TAIL || n > next)
2543 stringok = 0;
2544 if (PL_regkind[OP(n)] == NOTHING) {
07be1b83
YO
2545 DEBUG_PEEP("skip:",n,depth);
2546 NEXT_OFF(scan) += NEXT_OFF(n);
2547 next = n + NODE_STEP_REGNODE;
2548#ifdef DEBUGGING
2549 if (stringok)
2550 stop = n;
2551#endif
2552 n = regnext(n);
2553 }
2554 else if (stringok) {
786e8c11 2555 const unsigned int oldl = STR_LEN(scan);
07be1b83
YO
2556 regnode * const nnext = regnext(n);
2557
2558 DEBUG_PEEP("merg",n,depth);
2559
2560 merged++;
2561 if (oldl + STR_LEN(n) > U8_MAX)
2562 break;
2563 NEXT_OFF(scan) += NEXT_OFF(n);
2564 STR_LEN(scan) += STR_LEN(n);
2565 next = n + NODE_SZ_STR(n);
2566 /* Now we can overwrite *n : */
2567 Move(STRING(n), STRING(scan) + oldl, STR_LEN(n), char);
2568#ifdef DEBUGGING
2569 stop = next - 1;
2570#endif
2571 n = nnext;
2572 if (stopnow) break;
2573 }
2574
d47053eb
RGS
2575#ifdef EXPERIMENTAL_INPLACESCAN
2576 if (flags && !NEXT_OFF(n)) {
2577 DEBUG_PEEP("atch", val, depth);
2578 if (reg_off_by_arg[OP(n)]) {
2579 ARG_SET(n, val - n);
2580 }
2581 else {
2582 NEXT_OFF(n) = val - n;
2583 }
2584 stopnow = 1;
2585 }
07be1b83
YO
2586#endif
2587 }
ced7f090
KW
2588#define GREEK_SMALL_LETTER_IOTA_WITH_DIALYTIKA_AND_TONOS 0x0390
2589#define IOTA_D_T GREEK_SMALL_LETTER_IOTA_WITH_DIALYTIKA_AND_TONOS
2590#define GREEK_SMALL_LETTER_UPSILON_WITH_DIALYTIKA_AND_TONOS 0x03B0
2591#define UPSILON_D_T GREEK_SMALL_LETTER_UPSILON_WITH_DIALYTIKA_AND_TONOS
2c2b7f86
KW
2592
2593 if (UTF
2f7f8cb1 2594 && ( OP(scan) == EXACTF || OP(scan) == EXACTFU || OP(scan) == EXACTFA)
2c2b7f86
KW
2595 && ( STR_LEN(scan) >= 6 ) )
2596 {
07be1b83
YO
2597 /*
2598 Two problematic code points in Unicode casefolding of EXACT nodes:
2599
2600 U+0390 - GREEK SMALL LETTER IOTA WITH DIALYTIKA AND TONOS
2601 U+03B0 - GREEK SMALL LETTER UPSILON WITH DIALYTIKA AND TONOS
2602
2603 which casefold to
2604
2605 Unicode UTF-8
2606
2607 U+03B9 U+0308 U+0301 0xCE 0xB9 0xCC 0x88 0xCC 0x81
2608 U+03C5 U+0308 U+0301 0xCF 0x85 0xCC 0x88 0xCC 0x81
2609
2610 This means that in case-insensitive matching (or "loose matching",
2611 as Unicode calls it), an EXACTF of length six (the UTF-8 encoded byte
2612 length of the above casefolded versions) can match a target string
2613 of length two (the byte length of UTF-8 encoded U+0390 or U+03B0).
2614 This would rather mess up the minimum length computation.
2615
2616 What we'll do is to look for the tail four bytes, and then peek
2617 at the preceding two bytes to see whether we need to decrease
2618 the minimum length by four (six minus two).
2619
2620 Thanks to the design of UTF-8, there cannot be false matches:
2621 A sequence of valid UTF-8 bytes cannot be a subsequence of
2622 another valid sequence of UTF-8 bytes.
2623
2624 */
2625 char * const s0 = STRING(scan), *s, *t;
2626 char * const s1 = s0 + STR_LEN(scan) - 1;
2627 char * const s2 = s1 - 4;
e294cc5d
JH
2628#ifdef EBCDIC /* RD tunifold greek 0390 and 03B0 */
2629 const char t0[] = "\xaf\x49\xaf\x42";
2630#else
07be1b83 2631 const char t0[] = "\xcc\x88\xcc\x81";
e294cc5d 2632#endif
07be1b83
YO
2633 const char * const t1 = t0 + 3;
2634
2635 for (s = s0 + 2;
2636 s < s2 && (t = ninstr(s, s1, t0, t1));
2637 s = t + 4) {
e294cc5d
JH
2638#ifdef EBCDIC
2639 if (((U8)t[-1] == 0x68 && (U8)t[-2] == 0xB4) ||
2640 ((U8)t[-1] == 0x46 && (U8)t[-2] == 0xB5))
2641#else
07be1b83
YO
2642 if (((U8)t[-1] == 0xB9 && (U8)t[-2] == 0xCE) ||
2643 ((U8)t[-1] == 0x85 && (U8)t[-2] == 0xCF))
e294cc5d 2644#endif
07be1b83
YO
2645 *min -= 4;
2646 }
2647 }
2648
2649#ifdef DEBUGGING
bb789b09
DM
2650 /* Allow dumping but overwriting the collection of skipped
2651 * ops and/or strings with fake optimized ops */
07be1b83
YO
2652 n = scan + NODE_SZ_STR(scan);
2653 while (n <= stop) {
bb789b09
DM
2654 OP(n) = OPTIMIZED;
2655 FLAGS(n) = 0;
2656 NEXT_OFF(n) = 0;
07be1b83
YO
2657 n++;
2658 }
2659#endif
2660 DEBUG_OPTIMISE_r(if (merged){DEBUG_PEEP("finl",scan,depth)});
2661 return stopnow;
2662}
2663
486ec47a 2664/* REx optimizer. Converts nodes into quicker variants "in place".
653099ff
GS
2665 Finds fixed substrings. */
2666
a0288114 2667/* Stops at toplevel WHILEM as well as at "last". At end *scanp is set
c277df42
IZ
2668 to the position after last scanned or to NULL. */
2669
40d049e4
YO
2670#define INIT_AND_WITHP \
2671 assert(!and_withp); \
2672 Newx(and_withp,1,struct regnode_charclass_class); \
2673 SAVEFREEPV(and_withp)
07be1b83 2674
b515a41d 2675/* this is a chain of data about sub patterns we are processing that
486ec47a 2676 need to be handled separately/specially in study_chunk. Its so
b515a41d
YO
2677 we can simulate recursion without losing state. */
2678struct scan_frame;
2679typedef struct scan_frame {
2680 regnode *last; /* last node to process in this frame */
2681 regnode *next; /* next node to process when last is reached */
2682 struct scan_frame *prev; /*previous frame*/
2683 I32 stop; /* what stopparen do we use */
2684} scan_frame;
2685
304ee84b
YO
2686
2687#define SCAN_COMMIT(s, data, m) scan_commit(s, data, m, is_inf)
2688
e1d1eefb
YO
2689#define CASE_SYNST_FNC(nAmE) \
2690case nAmE: \
2691 if (flags & SCF_DO_STCLASS_AND) { \
2692 for (value = 0; value < 256; value++) \
2693 if (!is_ ## nAmE ## _cp(value)) \
2694 ANYOF_BITMAP_CLEAR(data->start_class, value); \
2695 } \
2696 else { \
2697 for (value = 0; value < 256; value++) \
2698 if (is_ ## nAmE ## _cp(value)) \
2699 ANYOF_BITMAP_SET(data->start_class, value); \
2700 } \
2701 break; \
2702case N ## nAmE: \
2703 if (flags & SCF_DO_STCLASS_AND) { \
2704 for (value = 0; value < 256; value++) \
2705 if (is_ ## nAmE ## _cp(value)) \
2706 ANYOF_BITMAP_CLEAR(data->start_class, value); \
2707 } \
2708 else { \
2709 for (value = 0; value < 256; value++) \
2710 if (!is_ ## nAmE ## _cp(value)) \
2711 ANYOF_BITMAP_SET(data->start_class, value); \
2712 } \
2713 break
2714
2715
2716
76e3520e 2717STATIC I32
40d049e4 2718S_study_chunk(pTHX_ RExC_state_t *pRExC_state, regnode **scanp,
1de06328 2719 I32 *minlenp, I32 *deltap,
40d049e4
YO
2720 regnode *last,
2721 scan_data_t *data,
2722 I32 stopparen,
2723 U8* recursed,
2724 struct regnode_charclass_class *and_withp,
2725 U32 flags, U32 depth)
c277df42
IZ
2726 /* scanp: Start here (read-write). */
2727 /* deltap: Write maxlen-minlen here. */
2728 /* last: Stop before this one. */
40d049e4
YO
2729 /* data: string data about the pattern */
2730 /* stopparen: treat close N as END */
2731 /* recursed: which subroutines have we recursed into */
2732 /* and_withp: Valid if flags & SCF_DO_STCLASS_OR */
c277df42 2733{
97aff369 2734 dVAR;
c277df42
IZ
2735 I32 min = 0, pars = 0, code;
2736 regnode *scan = *scanp, *next;
2737 I32 delta = 0;
2738 int is_inf = (flags & SCF_DO_SUBSTR) && (data->flags & SF_IS_INF);
aca2d497 2739 int is_inf_internal = 0; /* The studied chunk is infinite */
c277df42
IZ
2740 I32 is_par = OP(scan) == OPEN ? ARG(scan) : 0;
2741 scan_data_t data_fake;
a3621e74 2742 SV *re_trie_maxbuff = NULL;
786e8c11 2743 regnode *first_non_open = scan;
e2e6a0f1 2744 I32 stopmin = I32_MAX;
8aa23a47 2745 scan_frame *frame = NULL;
a3621e74 2746 GET_RE_DEBUG_FLAGS_DECL;
8aa23a47 2747
7918f24d
NC
2748 PERL_ARGS_ASSERT_STUDY_CHUNK;
2749
13a24bad 2750#ifdef DEBUGGING
40d049e4 2751 StructCopy(&zero_scan_data, &data_fake, scan_data_t);
13a24bad 2752#endif
40d049e4 2753
786e8c11 2754 if ( depth == 0 ) {
40d049e4 2755 while (first_non_open && OP(first_non_open) == OPEN)
786e8c11
YO
2756 first_non_open=regnext(first_non_open);
2757 }
2758
b81d288d 2759
8aa23a47
YO
2760 fake_study_recurse:
2761 while ( scan && OP(scan) != END && scan < last ){
2762 /* Peephole optimizer: */
304ee84b 2763 DEBUG_STUDYDATA("Peep:", data,depth);
8aa23a47
YO
2764 DEBUG_PEEP("Peep",scan,depth);
2765 JOIN_EXACT(scan,&min,0);
2766
2767 /* Follow the next-chain of the current node and optimize
2768 away all the NOTHINGs from it. */
2769 if (OP(scan) != CURLYX) {
2770 const int max = (reg_off_by_arg[OP(scan)]
2771 ? I32_MAX
2772 /* I32 may be smaller than U16 on CRAYs! */
2773 : (I32_MAX < U16_MAX ? I32_MAX : U16_MAX));
2774 int off = (reg_off_by_arg[OP(scan)] ? ARG(scan) : NEXT_OFF(scan));
2775 int noff;
2776 regnode *n = scan;
2777
2778 /* Skip NOTHING and LONGJMP. */
2779 while ((n = regnext(n))
2780 && ((PL_regkind[OP(n)] == NOTHING && (noff = NEXT_OFF(n)))
2781 || ((OP(n) == LONGJMP) && (noff = ARG(n))))
2782 && off + noff < max)
2783 off += noff;
2784 if (reg_off_by_arg[OP(scan)])
2785 ARG(scan) = off;
2786 else
2787 NEXT_OFF(scan) = off;
2788 }
a3621e74 2789
c277df42 2790
8aa23a47
YO
2791
2792 /* The principal pseudo-switch. Cannot be a switch, since we
2793 look into several different things. */
2794 if (OP(scan) == BRANCH || OP(scan) == BRANCHJ
2795 || OP(scan) == IFTHEN) {
2796 next = regnext(scan);
2797 code = OP(scan);
2798 /* demq: the op(next)==code check is to see if we have "branch-branch" AFAICT */
2799
2800 if (OP(next) == code || code == IFTHEN) {
2801 /* NOTE - There is similar code to this block below for handling
2802 TRIE nodes on a re-study. If you change stuff here check there
2803 too. */
2804 I32 max1 = 0, min1 = I32_MAX, num = 0;
2805 struct regnode_charclass_class accum;
2806 regnode * const startbranch=scan;
2807
2808 if (flags & SCF_DO_SUBSTR)
304ee84b 2809 SCAN_COMMIT(pRExC_state, data, minlenp); /* Cannot merge strings after this. */
8aa23a47 2810 if (flags & SCF_DO_STCLASS)
e755fd73 2811 cl_init_zero(pRExC_state, &accum);
8aa23a47
YO
2812
2813 while (OP(scan) == code) {
2814 I32 deltanext, minnext, f = 0, fake;
2815 struct regnode_charclass_class this_class;
2816
2817 num++;
2818 data_fake.flags = 0;
2819 if (data) {
2820 data_fake.whilem_c = data->whilem_c;
2821 data_fake.last_closep = data->last_closep;
2822 }
2823 else
2824 data_fake.last_closep = &fake;
58e23c8d
YO
2825
2826 data_fake.pos_delta = delta;
8aa23a47
YO
2827 next = regnext(scan);
2828 scan = NEXTOPER(scan);
2829 if (code != BRANCH)
c277df42 2830 scan = NEXTOPER(scan);
8aa23a47 2831 if (flags & SCF_DO_STCLASS) {
e755fd73 2832 cl_init(pRExC_state, &this_class);
8aa23a47
YO
2833 data_fake.start_class = &this_class;
2834 f = SCF_DO_STCLASS_AND;
58e23c8d 2835 }
8aa23a47
YO
2836 if (flags & SCF_WHILEM_VISITED_POS)
2837 f |= SCF_WHILEM_VISITED_POS;
2838
2839 /* we suppose the run is continuous, last=next...*/
2840 minnext = study_chunk(pRExC_state, &scan, minlenp, &deltanext,
2841 next, &data_fake,
2842 stopparen, recursed, NULL, f,depth+1);
2843 if (min1 > minnext)
2844 min1 = minnext;
2845 if (max1 < minnext + deltanext)
2846 max1 = minnext + deltanext;
2847 if (deltanext == I32_MAX)
2848 is_inf = is_inf_internal = 1;
2849 scan = next;
2850 if (data_fake.flags & (SF_HAS_PAR|SF_IN_PAR))
2851 pars++;
2852 if (data_fake.flags & SCF_SEEN_ACCEPT) {
2853 if ( stopmin > minnext)
2854 stopmin = min + min1;
2855 flags &= ~SCF_DO_SUBSTR;
2856 if (data)
2857 data->flags |= SCF_SEEN_ACCEPT;
2858 }
2859 if (data) {
2860 if (data_fake.flags & SF_HAS_EVAL)
2861 data->flags |= SF_HAS_EVAL;
2862 data->whilem_c = data_fake.whilem_c;
3dab1dad 2863 }
8aa23a47 2864 if (flags & SCF_DO_STCLASS)
3fffb88a 2865 cl_or(pRExC_state, &accum, &this_class);
8aa23a47
YO
2866 }
2867 if (code == IFTHEN && num < 2) /* Empty ELSE branch */
2868 min1 = 0;
2869 if (flags & SCF_DO_SUBSTR) {
2870 data->pos_min += min1;
2871 data->pos_delta += max1 - min1;
2872 if (max1 != min1 || is_inf)
2873 data->longest = &(data->longest_float);
2874 }
2875 min += min1;
2876 delta += max1 - min1;
2877 if (flags & SCF_DO_STCLASS_OR) {
3fffb88a 2878 cl_or(pRExC_state, data->start_class, &accum);
8aa23a47
YO
2879 if (min1) {
2880 cl_and(data->start_class, and_withp);
2881 flags &= ~SCF_DO_STCLASS;
653099ff 2882 }
8aa23a47
YO
2883 }
2884 else if (flags & SCF_DO_STCLASS_AND) {
2885 if (min1) {
2886 cl_and(data->start_class, &accum);
2887 flags &= ~SCF_DO_STCLASS;
de0c8cb8 2888 }
8aa23a47
YO
2889 else {
2890 /* Switch to OR mode: cache the old value of
2891 * data->start_class */
2892 INIT_AND_WITHP;
2893 StructCopy(data->start_class, and_withp,
2894 struct regnode_charclass_class);
2895 flags &= ~SCF_DO_STCLASS_AND;
2896 StructCopy(&accum, data->start_class,
2897 struct regnode_charclass_class);
2898 flags |= SCF_DO_STCLASS_OR;
2899 data->start_class->flags |= ANYOF_EOS;
de0c8cb8 2900 }
8aa23a47 2901 }
a3621e74 2902
8aa23a47
YO
2903 if (PERL_ENABLE_TRIE_OPTIMISATION && OP( startbranch ) == BRANCH ) {
2904 /* demq.
a3621e74 2905
8aa23a47
YO
2906 Assuming this was/is a branch we are dealing with: 'scan' now
2907 points at the item that follows the branch sequence, whatever
2908 it is. We now start at the beginning of the sequence and look
2909 for subsequences of
a3621e74 2910
8aa23a47
YO
2911 BRANCH->EXACT=>x1
2912 BRANCH->EXACT=>x2
2913 tail
a3621e74 2914
8aa23a47 2915 which would be constructed from a pattern like /A|LIST|OF|WORDS/
a3621e74 2916
486ec47a 2917 If we can find such a subsequence we need to turn the first
8aa23a47
YO
2918 element into a trie and then add the subsequent branch exact
2919 strings to the trie.
a3621e74 2920
8aa23a47 2921 We have two cases
a3621e74 2922
3b753521 2923 1. patterns where the whole set of branches can be converted.
a3621e74 2924
8aa23a47 2925 2. patterns where only a subset can be converted.
a3621e74 2926
8aa23a47
YO
2927 In case 1 we can replace the whole set with a single regop
2928 for the trie. In case 2 we need to keep the start and end
3b753521 2929 branches so
a3621e74 2930
8aa23a47
YO
2931 'BRANCH EXACT; BRANCH EXACT; BRANCH X'
2932 becomes BRANCH TRIE; BRANCH X;
786e8c11 2933
8aa23a47
YO
2934 There is an additional case, that being where there is a
2935 common prefix, which gets split out into an EXACT like node
2936 preceding the TRIE node.
a3621e74 2937
8aa23a47
YO
2938 If x(1..n)==tail then we can do a simple trie, if not we make
2939 a "jump" trie, such that when we match the appropriate word
486ec47a 2940 we "jump" to the appropriate tail node. Essentially we turn
8aa23a47 2941 a nested if into a case structure of sorts.
b515a41d 2942
8aa23a47
YO
2943 */
2944
2945 int made=0;
2946 if (!re_trie_maxbuff) {
2947 re_trie_maxbuff = get_sv(RE_TRIE_MAXBUF_NAME, 1);
2948 if (!SvIOK(re_trie_maxbuff))
2949 sv_setiv(re_trie_maxbuff, RE_TRIE_MAXBUF_INIT);
2950 }
2951 if ( SvIV(re_trie_maxbuff)>=0 ) {
2952 regnode *cur;
2953 regnode *first = (regnode *)NULL;
2954 regnode *last = (regnode *)NULL;
2955 regnode *tail = scan;
2956 U8 optype = 0;
2957 U32 count=0;
a3621e74
YO
2958
2959#ifdef DEBUGGING
8aa23a47 2960 SV * const mysv = sv_newmortal(); /* for dumping */
a3621e74 2961#endif
8aa23a47
YO
2962 /* var tail is used because there may be a TAIL
2963 regop in the way. Ie, the exacts will point to the
2964 thing following the TAIL, but the last branch will
2965 point at the TAIL. So we advance tail. If we
2966 have nested (?:) we may have to move through several
2967 tails.
2968 */
2969
2970 while ( OP( tail ) == TAIL ) {
2971 /* this is the TAIL generated by (?:) */
2972 tail = regnext( tail );
2973 }
a3621e74 2974
8aa23a47
YO
2975
2976 DEBUG_OPTIMISE_r({
2977 regprop(RExC_rx, mysv, tail );
2978 PerlIO_printf( Perl_debug_log, "%*s%s%s\n",
2979 (int)depth * 2 + 2, "",
2980 "Looking for TRIE'able sequences. Tail node is: ",
2981 SvPV_nolen_const( mysv )
2982 );
2983 });
2984
2985 /*
2986
2987 step through the branches, cur represents each
2988 branch, noper is the first thing to be matched
2989 as part of that branch and noper_next is the
2990 regnext() of that node. if noper is an EXACT
2991 and noper_next is the same as scan (our current
2992 position in the regex) then the EXACT branch is
2993 a possible optimization target. Once we have
486ec47a 2994 two or more consecutive such branches we can
8aa23a47
YO
2995 create a trie of the EXACT's contents and stich
2996 it in place. If the sequence represents all of
2997 the branches we eliminate the whole thing and
2998 replace it with a single TRIE. If it is a
2999 subsequence then we need to stitch it in. This
3000 means the first branch has to remain, and needs
3001 to be repointed at the item on the branch chain
3002 following the last branch optimized. This could
3003 be either a BRANCH, in which case the
3004 subsequence is internal, or it could be the
3005 item following the branch sequence in which
3006 case the subsequence is at the end.
3007
3008 */
3009
3010 /* dont use tail as the end marker for this traverse */
3011 for ( cur = startbranch ; cur != scan ; cur = regnext( cur ) ) {
3012 regnode * const noper = NEXTOPER( cur );
b515a41d 3013#if defined(DEBUGGING) || defined(NOJUMPTRIE)
8aa23a47 3014 regnode * const noper_next = regnext( noper );
b515a41d
YO
3015#endif
3016
8aa23a47
YO
3017 DEBUG_OPTIMISE_r({
3018 regprop(RExC_rx, mysv, cur);
3019 PerlIO_printf( Perl_debug_log, "%*s- %s (%d)",
3020 (int)depth * 2 + 2,"", SvPV_nolen_const( mysv ), REG_NODE_NUM(cur) );
3021
3022 regprop(RExC_rx, mysv, noper);
3023 PerlIO_printf( Perl_debug_log, " -> %s",
3024 SvPV_nolen_const(mysv));
3025
3026 if ( noper_next ) {
3027 regprop(RExC_rx, mysv, noper_next );
3028 PerlIO_printf( Perl_debug_log,"\t=> %s\t",
3029 SvPV_nolen_const(mysv));
3030 }
3031 PerlIO_printf( Perl_debug_log, "(First==%d,Last==%d,Cur==%d)\n",
3032 REG_NODE_NUM(first), REG_NODE_NUM(last), REG_NODE_NUM(cur) );
3033 });
3034 if ( (((first && optype!=NOTHING) ? OP( noper ) == optype
3035 : PL_regkind[ OP( noper ) ] == EXACT )
3036 || OP(noper) == NOTHING )
786e8c11 3037#ifdef NOJUMPTRIE
8aa23a47 3038 && noper_next == tail
786e8c11 3039#endif
8aa23a47
YO
3040 && count < U16_MAX)
3041 {
3042 count++;
3043 if ( !first || optype == NOTHING ) {
3044 if (!first) first = cur;
3045 optype = OP( noper );
3046 } else {
3047 last = cur;
3048 }
3049 } else {
a0a388a1 3050/*
fbebf34e
KW
3051 Currently the trie logic handles case insensitive matching properly only
3052 when the pattern is UTF-8 and the node is EXACTFU (thus forcing unicode
3053 semantics).
0abd0d78
YO
3054
3055 If/when this is fixed the following define can be swapped
3056 in below to fully enable trie logic.
3057
a0a388a1 3058#define TRIE_TYPE_IS_SAFE 1
0abd0d78
YO
3059
3060*/
fbebf34e 3061#define TRIE_TYPE_IS_SAFE ((UTF && optype == EXACTFU) || optype==EXACT)
0abd0d78 3062
a0a388a1 3063 if ( last && TRIE_TYPE_IS_SAFE ) {
8aa23a47
YO
3064 make_trie( pRExC_state,
3065 startbranch, first, cur, tail, count,
3066 optype, depth+1 );
3067 }
3068 if ( PL_regkind[ OP( noper ) ] == EXACT
786e8c11 3069#ifdef NOJUMPTRIE
8aa23a47 3070 && noper_next == tail
786e8c11 3071#endif
8aa23a47
YO
3072 ){
3073 count = 1;
3074 first = cur;
3075 optype = OP( noper );
3076 } else {
3077 count = 0;
3078 first = NULL;
3079 optype = 0;
3080 }
3081 last = NULL;
3082 }
3083 }
3084 DEBUG_OPTIMISE_r({
3085 regprop(RExC_rx, mysv, cur);
3086 PerlIO_printf( Perl_debug_log,
3087 "%*s- %s (%d) <SCAN FINISHED>\n", (int)depth * 2 + 2,
3088 "", SvPV_nolen_const( mysv ),REG_NODE_NUM(cur));
3089
3090 });
a0a388a1
YO
3091
3092 if ( last && TRIE_TYPE_IS_SAFE ) {
8aa23a47 3093 made= make_trie( pRExC_state, startbranch, first, scan, tail, count, optype, depth+1 );
3dab1dad 3094#ifdef TRIE_STUDY_OPT
8aa23a47
YO
3095 if ( ((made == MADE_EXACT_TRIE &&
3096 startbranch == first)
3097 || ( first_non_open == first )) &&
3098 depth==0 ) {
3099 flags |= SCF_TRIE_RESTUDY;
3100 if ( startbranch == first
3101 && scan == tail )
3102 {
3103 RExC_seen &=~REG_TOP_LEVEL_BRANCHES;
3104 }
3105 }
3dab1dad 3106#endif
8aa23a47
YO
3107 }
3108 }
3109
3110 } /* do trie */
3111
653099ff 3112 }
8aa23a47
YO
3113 else if ( code == BRANCHJ ) { /* single branch is optimized. */
3114 scan = NEXTOPER(NEXTOPER(scan));
3115 } else /* single branch is optimized. */
3116 scan = NEXTOPER(scan);
3117 continue;
3118 } else if (OP(scan) == SUSPEND || OP(scan) == GOSUB || OP(scan) == GOSTART) {
3119 scan_frame *newframe = NULL;
3120 I32 paren;
3121 regnode *start;
3122 regnode *end;
3123
3124 if (OP(scan) != SUSPEND) {
3125 /* set the pointer */
3126 if (OP(scan) == GOSUB) {
3127 paren = ARG(scan);
3128 RExC_recurse[ARG2L(scan)] = scan;
3129 start = RExC_open_parens[paren-1];
3130 end = RExC_close_parens[paren-1];
3131 } else {
3132 paren = 0;
f8fc2ecf 3133 start = RExC_rxi->program + 1;
8aa23a47
YO
3134 end = RExC_opend;
3135 }
3136 if (!recursed) {
3137 Newxz(recursed, (((RExC_npar)>>3) +1), U8);
3138 SAVEFREEPV(recursed);
3139 }
3140 if (!PAREN_TEST(recursed,paren+1)) {
3141 PAREN_SET(recursed,paren+1);
3142 Newx(newframe,1,scan_frame);
3143 } else {
3144 if (flags & SCF_DO_SUBSTR) {
304ee84b 3145 SCAN_COMMIT(pRExC_state,data,minlenp);
8aa23a47
YO
3146 data->longest = &(data->longest_float);
3147 }
3148 is_inf = is_inf_internal = 1;
3149 if (flags & SCF_DO_STCLASS_OR) /* Allow everything */
3fffb88a 3150 cl_anything(pRExC_state, data->start_class);
8aa23a47
YO
3151 flags &= ~SCF_DO_STCLASS;
3152 }
3153 } else {
3154 Newx(newframe,1,scan_frame);
3155 paren = stopparen;
3156 start = scan+2;
3157 end = regnext(scan);
3158 }
3159 if (newframe) {
3160 assert(start);
3161 assert(end);
3162 SAVEFREEPV(newframe);
3163 newframe->next = regnext(scan);
3164 newframe->last = last;
3165 newframe->stop = stopparen;
3166 newframe->prev = frame;
3167
3168 frame = newframe;
3169 scan = start;
3170 stopparen = paren;
3171 last = end;
3172
3173 continue;
3174 }
3175 }
3176 else if (OP(scan) == EXACT) {
3177 I32 l = STR_LEN(scan);
3178 UV uc;
3179 if (UTF) {
3180 const U8 * const s = (U8*)STRING(scan);
3181 l = utf8_length(s, s + l);
3182 uc = utf8_to_uvchr(s, NULL);
3183 } else {
3184 uc = *((U8*)STRING(scan));
3185 }
3186 min += l;
3187 if (flags & SCF_DO_SUBSTR) { /* Update longest substr. */
3188 /* The code below prefers earlier match for fixed
3189 offset, later match for variable offset. */
3190 if (data->last_end == -1) { /* Update the start info. */
3191 data->last_start_min = data->pos_min;
3192 data->last_start_max = is_inf
3193 ? I32_MAX : data->pos_min + data->pos_delta;
b515a41d 3194 }
8aa23a47
YO
3195 sv_catpvn(data->last_found, STRING(scan), STR_LEN(scan));
3196 if (UTF)
3197 SvUTF8_on(data->last_found);
3198 {
3199 SV * const sv = data->last_found;
3200 MAGIC * const mg = SvUTF8(sv) && SvMAGICAL(sv) ?
3201 mg_find(sv, PERL_MAGIC_utf8) : NULL;
3202 if (mg && mg->mg_len >= 0)
3203 mg->mg_len += utf8_length((U8*)STRING(scan),
3204 (U8*)STRING(scan)+STR_LEN(scan));
b515a41d 3205 }
8aa23a47
YO
3206 data->last_end = data->pos_min + l;
3207 data->pos_min += l; /* As in the first entry. */
3208 data->flags &= ~SF_BEFORE_EOL;
3209 }
3210 if (flags & SCF_DO_STCLASS_AND) {
3211 /* Check whether it is compatible with what we know already! */
3212 int compat = 1;
3213
54251c2e 3214
486ec47a 3215 /* If compatible, we or it in below. It is compatible if is
54251c2e
KW
3216 * in the bitmp and either 1) its bit or its fold is set, or 2)
3217 * it's for a locale. Even if there isn't unicode semantics
3218 * here, at runtime there may be because of matching against a
3219 * utf8 string, so accept a possible false positive for
3220 * latin1-range folds */
8aa23a47
YO
3221 if (uc >= 0x100 ||
3222 (!(data->start_class->flags & (ANYOF_CLASS | ANYOF_LOCALE))
3223 && !ANYOF_BITMAP_TEST(data->start_class, uc)
39065660 3224 && (!(data->start_class->flags & ANYOF_LOC_NONBITMAP_FOLD)
54251c2e 3225 || !ANYOF_BITMAP_TEST(data->start_class, PL_fold_latin1[uc])))
8aa23a47 3226 )
d18bf9dc 3227 {
8aa23a47 3228 compat = 0;
d18bf9dc 3229 }
8aa23a47
YO
3230 ANYOF_CLASS_ZERO(data->start_class);
3231 ANYOF_BITMAP_ZERO(data->start_class);
3232 if (compat)
3233 ANYOF_BITMAP_SET(data->start_class, uc);
d18bf9dc
KW
3234 else if (uc >= 0x100) {
3235 int i;
3236
3237 /* Some Unicode code points fold to the Latin1 range; as
3238 * XXX temporary code, instead of figuring out if this is
3239 * one, just assume it is and set all the start class bits
3240 * that could be some such above 255 code point's fold
3241 * which will generate fals positives. As the code
3242 * elsewhere that does compute the fold settles down, it
3243 * can be extracted out and re-used here */
3244 for (i = 0; i < 256; i++){
3245 if (_HAS_NONLATIN1_FOLD_CLOSURE_ONLY_FOR_USE_BY_REGCOMP_DOT_C_AND_REGEXEC_DOT_C(i)) {
3246 ANYOF_BITMAP_SET(data->start_class, i);
3247 }
3248 }
3249 }
8aa23a47
YO
3250 data->start_class->flags &= ~ANYOF_EOS;
3251 if (uc < 0x100)
3252 data->start_class->flags &= ~ANYOF_UNICODE_ALL;
3253 }
3254 else if (flags & SCF_DO_STCLASS_OR) {
3255 /* false positive possible if the class is case-folded */
3256 if (uc < 0x100)
3257 ANYOF_BITMAP_SET(data->start_class, uc);
3258 else
3259 data->start_class->flags |= ANYOF_UNICODE_ALL;
3260 data->start_class->flags &= ~ANYOF_EOS;
3261 cl_and(data->start_class, and_withp);
3262 }
3263 flags &= ~SCF_DO_STCLASS;
3264 }
3265 else if (PL_regkind[OP(scan)] == EXACT) { /* But OP != EXACT! */
3266 I32 l = STR_LEN(scan);
3267 UV uc = *((U8*)STRING(scan));
3268
3269 /* Search for fixed substrings supports EXACT only. */
3270 if (flags & SCF_DO_SUBSTR) {
3271 assert(data);
304ee84b 3272 SCAN_COMMIT(pRExC_state, data, minlenp);
8aa23a47
YO
3273 }
3274 if (UTF) {
3275 const U8 * const s = (U8 *)STRING(scan);
3276 l = utf8_length(s, s + l);
3277 uc = utf8_to_uvchr(s, NULL);
3278 }
3279 min += l;
3280 if (flags & SCF_DO_SUBSTR)
3281 data->pos_min += l;
3282 if (flags & SCF_DO_STCLASS_AND) {
3283 /* Check whether it is compatible with what we know already! */
3284 int compat = 1;
8aa23a47 3285 if (uc >= 0x100 ||
54251c2e
KW
3286 (!(data->start_class->flags & (ANYOF_CLASS | ANYOF_LOCALE))
3287 && !ANYOF_BITMAP_TEST(data->start_class, uc)
3288 && !ANYOF_BITMAP_TEST(data->start_class, PL_fold_latin1[uc])))
3289 {
8aa23a47 3290 compat = 0;
54251c2e 3291 }
8aa23a47
YO
3292 ANYOF_CLASS_ZERO(data->start_class);
3293 ANYOF_BITMAP_ZERO(data->start_class);
3294 if (compat) {
3295 ANYOF_BITMAP_SET(data->start_class, uc);
653099ff 3296 data->start_class->flags &= ~ANYOF_EOS;
39065660 3297 data->start_class->flags |= ANYOF_LOC_NONBITMAP_FOLD;
970c8436 3298 if (OP(scan) == EXACTFL) {
af302e7f
KW
3299 /* XXX This set is probably no longer necessary, and
3300 * probably wrong as LOCALE now is on in the initial
3301 * state */
8aa23a47 3302 data->start_class->flags |= ANYOF_LOCALE;
970c8436
KW
3303 }
3304 else {
3305
54251c2e
KW
3306 /* Also set the other member of the fold pair. In case
3307 * that unicode semantics is called for at runtime, use
3308 * the full latin1 fold. (Can't do this for locale,
3309 * because not known until runtime */
3310 ANYOF_BITMAP_SET(data->start_class, PL_fold_latin1[uc]);
970c8436 3311 }
653099ff 3312 }
d18bf9dc
KW
3313 else if (uc >= 0x100) {
3314 int i;
3315 for (i = 0; i < 256; i++){
3316 if (_HAS_NONLATIN1_FOLD_CLOSURE_ONLY_FOR_USE_BY_REGCOMP_DOT_C_AND_REGEXEC_DOT_C(i)) {
3317 ANYOF_BITMAP_SET(data->start_class, i);
3318 }
3319 }
3320 }
8aa23a47
YO
3321 }
3322 else if (flags & SCF_DO_STCLASS_OR) {
39065660 3323 if (data->start_class->flags & ANYOF_LOC_NONBITMAP_FOLD) {
8aa23a47
YO
3324 /* false positive possible if the class is case-folded.
3325 Assume that the locale settings are the same... */
970c8436 3326 if (uc < 0x100) {
1aa99e6b 3327 ANYOF_BITMAP_SET(data->start_class, uc);
970c8436
KW
3328 if (OP(scan) != EXACTFL) {
3329
3330 /* And set the other member of the fold pair, but
3331 * can't do that in locale because not known until
3332 * run-time */
3333 ANYOF_BITMAP_SET(data->start_class,
54251c2e 3334 PL_fold_latin1[uc]);
970c8436
KW
3335 }
3336 }
653099ff
GS
3337 data->start_class->flags &= ~ANYOF_EOS;
3338 }
8aa23a47 3339 cl_and(data->start_class, and_withp);
653099ff 3340 }
8aa23a47
YO
3341 flags &= ~SCF_DO_STCLASS;
3342 }
e52fc539 3343 else if (REGNODE_VARIES(OP(scan))) {
8aa23a47
YO
3344 I32 mincount, maxcount, minnext, deltanext, fl = 0;
3345 I32 f = flags, pos_before = 0;
3346 regnode * const oscan = scan;
3347 struct regnode_charclass_class this_class;
3348 struct regnode_charclass_class *oclass = NULL;
3349 I32 next_is_eval = 0;
3350
3351 switch (PL_regkind[OP(scan)]) {
3352 case WHILEM: /* End of (?:...)* . */
3353 scan = NEXTOPER(scan);
3354 goto finish;
3355 case PLUS:
3356 if (flags & (SCF_DO_SUBSTR | SCF_DO_STCLASS)) {
3357 next = NEXTOPER(scan);
3358 if (OP(next) == EXACT || (flags & SCF_DO_STCLASS)) {
3359 mincount = 1;
3360 maxcount = REG_INFTY;
3361 next = regnext(scan);
3362 scan = NEXTOPER(scan);
3363 goto do_curly;
3364 }
3365 }
3366 if (flags & SCF_DO_SUBSTR)
3367 data->pos_min++;
3368 min++;
3369 /* Fall through. */
3370 case STAR:
3371 if (flags & SCF_DO_STCLASS) {
3372 mincount = 0;
3373 maxcount = REG_INFTY;
3374 next = regnext(scan);
3375 scan = NEXTOPER(scan);
3376 goto do_curly;
3377 }
3378 is_inf = is_inf_internal = 1;
3379 scan = regnext(scan);
c277df42 3380 if (flags & SCF_DO_SUBSTR) {
304ee84b 3381 SCAN_COMMIT(pRExC_state, data, minlenp); /* Cannot extend fixed substrings */
8aa23a47 3382 data->longest = &(data->longest_float);
c277df42 3383 }
8aa23a47
YO
3384 goto optimize_curly_tail;
3385 case CURLY:
3386 if (stopparen>0 && (OP(scan)==CURLYN || OP(scan)==CURLYM)
3387 && (scan->flags == stopparen))
3388 {
3389 mincount = 1;
3390 maxcount = 1;
3391 } else {
3392 mincount = ARG1(scan);
3393 maxcount = ARG2(scan);
653099ff 3394 }
8aa23a47
YO
3395 next = regnext(scan);
3396 if (OP(scan) == CURLYX) {
3397 I32 lp = (data ? *(data->last_closep) : 0);
3398 scan->flags = ((lp <= (I32)U8_MAX) ? (U8)lp : U8_MAX);
653099ff 3399 }
8aa23a47
YO
3400 scan = NEXTOPER(scan) + EXTRA_STEP_2ARGS;
3401 next_is_eval = (OP(scan) == EVAL);
3402 do_curly:
3403 if (flags & SCF_DO_SUBSTR) {
304ee84b 3404 if (mincount == 0) SCAN_COMMIT(pRExC_state,data,minlenp); /* Cannot extend fixed substrings */
8aa23a47 3405 pos_before = data->pos_min;
b45f050a 3406 }
8aa23a47
YO
3407 if (data) {
3408 fl = data->flags;
3409 data->flags &= ~(SF_HAS_PAR|SF_IN_PAR|SF_HAS_EVAL);
3410 if (is_inf)
3411 data->flags |= SF_IS_INF;
3412 }
3413 if (flags & SCF_DO_STCLASS) {
e755fd73 3414 cl_init(pRExC_state, &this_class);
8aa23a47
YO
3415 oclass = data->start_class;
3416 data->start_class = &this_class;
3417 f |= SCF_DO_STCLASS_AND;
3418 f &= ~SCF_DO_STCLASS_OR;
3419 }
779bcb7d
NC
3420 /* Exclude from super-linear cache processing any {n,m}
3421 regops for which the combination of input pos and regex
3422 pos is not enough information to determine if a match
3423 will be possible.
3424
3425 For example, in the regex /foo(bar\s*){4,8}baz/ with the
3426 regex pos at the \s*, the prospects for a match depend not
3427 only on the input position but also on how many (bar\s*)
3428 repeats into the {4,8} we are. */
3429 if ((mincount > 1) || (maxcount > 1 && maxcount != REG_INFTY))
8aa23a47 3430 f &= ~SCF_WHILEM_VISITED_POS;
b45f050a 3431
8aa23a47
YO
3432 /* This will finish on WHILEM, setting scan, or on NULL: */
3433 minnext = study_chunk(pRExC_state, &scan, minlenp, &deltanext,
3434 last, data, stopparen, recursed, NULL,
3435 (mincount == 0
3436 ? (f & ~SCF_DO_SUBSTR) : f),depth+1);
b515a41d 3437
8aa23a47
YO
3438 if (flags & SCF_DO_STCLASS)
3439 data->start_class = oclass;
3440 if (mincount == 0 || minnext == 0) {
3441 if (flags & SCF_DO_STCLASS_OR) {
3fffb88a 3442 cl_or(pRExC_state, data->start_class, &this_class);
8aa23a47
YO
3443 }
3444 else if (flags & SCF_DO_STCLASS_AND) {
3445 /* Switch to OR mode: cache the old value of
3446 * data->start_class */
3447 INIT_AND_WITHP;
3448 StructCopy(data->start_class, and_withp,
3449 struct regnode_charclass_class);
3450 flags &= ~SCF_DO_STCLASS_AND;
3451 StructCopy(&this_class, data->start_class,
3452 struct regnode_charclass_class);
3453 flags |= SCF_DO_STCLASS_OR;
3454 data->start_class->flags |= ANYOF_EOS;
3455 }
3456 } else { /* Non-zero len */
3457 if (flags & SCF_DO_STCLASS_OR) {
3fffb88a 3458 cl_or(pRExC_state, data->start_class, &this_class);
8aa23a47
YO
3459 cl_and(data->start_class, and_withp);
3460 }
3461 else if (flags & SCF_DO_STCLASS_AND)
3462 cl_and(data->start_class, &this_class);
3463 flags &= ~SCF_DO_STCLASS;
3464 }
3465 if (!scan) /* It was not CURLYX, but CURLY. */
3466 scan = next;
3467 if ( /* ? quantifier ok, except for (?{ ... }) */
3468 (next_is_eval || !(mincount == 0 && maxcount == 1))
3469 && (minnext == 0) && (deltanext == 0)
3470 && data && !(data->flags & (SF_HAS_PAR|SF_IN_PAR))
668c081a 3471 && maxcount <= REG_INFTY/3) /* Complement check for big count */
8aa23a47 3472 {
668c081a
NC
3473 ckWARNreg(RExC_parse,
3474 "Quantifier unexpected on zero-length expression");
8aa23a47
YO
3475 }
3476
3477 min += minnext * mincount;
3478 is_inf_internal |= ((maxcount == REG_INFTY
3479 && (minnext + deltanext) > 0)
3480 || deltanext == I32_MAX);
3481 is_inf |= is_inf_internal;
3482 delta += (minnext + deltanext) * maxcount - minnext * mincount;
3483
3484 /* Try powerful optimization CURLYX => CURLYN. */
3485 if ( OP(oscan) == CURLYX && data
3486 && data->flags & SF_IN_PAR
3487 && !(data->flags & SF_HAS_EVAL)
3488 && !deltanext && minnext == 1 ) {
3489 /* Try to optimize to CURLYN. */
3490 regnode *nxt = NEXTOPER(oscan) + EXTRA_STEP_2ARGS;
3491 regnode * const nxt1 = nxt;
497b47a8 3492#ifdef DEBUGGING
8aa23a47 3493 regnode *nxt2;
497b47a8 3494#endif
c277df42 3495
8aa23a47
YO
3496 /* Skip open. */
3497 nxt = regnext(nxt);
e52fc539 3498 if (!REGNODE_SIMPLE(OP(nxt))
8aa23a47
YO
3499 && !(PL_regkind[OP(nxt)] == EXACT
3500 && STR_LEN(nxt) == 1))
3501 goto nogo;
497b47a8 3502#ifdef DEBUGGING
8aa23a47 3503 nxt2 = nxt;
497b47a8 3504#endif
8aa23a47
YO
3505 nxt = regnext(nxt);
3506 if (OP(nxt) != CLOSE)
3507 goto nogo;
3508 if (RExC_open_parens) {
3509 RExC_open_parens[ARG(nxt1)-1]=oscan; /*open->CURLYM*/
3510 RExC_close_parens[ARG(nxt1)-1]=nxt+2; /*close->while*/
3511 }
3512 /* Now we know that nxt2 is the only contents: */
3513 oscan->flags = (U8)ARG(nxt);
3514 OP(oscan) = CURLYN;
3515 OP(nxt1) = NOTHING; /* was OPEN. */
40d049e4 3516
c277df42 3517#ifdef DEBUGGING
8aa23a47 3518 OP(nxt1 + 1) = OPTIMIZED; /* was count. */
fda99bee
KW
3519 NEXT_OFF(nxt1+ 1) = 0; /* just for consistency. */
3520 NEXT_OFF(nxt2) = 0; /* just for consistency with CURLY. */
8aa23a47
YO
3521 OP(nxt) = OPTIMIZED; /* was CLOSE. */
3522 OP(nxt + 1) = OPTIMIZED; /* was count. */
fda99bee 3523 NEXT_OFF(nxt+ 1) = 0; /* just for consistency. */
b81d288d 3524#endif
8aa23a47
YO
3525 }
3526 nogo:
3527
3528 /* Try optimization CURLYX => CURLYM. */
3529 if ( OP(oscan) == CURLYX && data
3530 && !(data->flags & SF_HAS_PAR)
3531 && !(data->flags & SF_HAS_EVAL)
3532 && !deltanext /* atom is fixed width */
3533 && minnext != 0 /* CURLYM can't handle zero width */
3534 ) {
3535 /* XXXX How to optimize if data == 0? */
3536 /* Optimize to a simpler form. */
3537 regnode *nxt = NEXTOPER(oscan) + EXTRA_STEP_2ARGS; /* OPEN */
3538 regnode *nxt2;
3539
3540 OP(oscan) = CURLYM;
3541 while ( (nxt2 = regnext(nxt)) /* skip over embedded stuff*/
3542 && (OP(nxt2) != WHILEM))
3543 nxt = nxt2;
3544 OP(nxt2) = SUCCEED; /* Whas WHILEM */
3545 /* Need to optimize away parenths. */
b3c0965f 3546 if ((data->flags & SF_IN_PAR) && OP(nxt) == CLOSE) {
8aa23a47
YO
3547 /* Set the parenth number. */
3548 regnode *nxt1 = NEXTOPER(oscan) + EXTRA_STEP_2ARGS; /* OPEN*/
3549
8aa23a47
YO
3550 oscan->flags = (U8)ARG(nxt);
3551 if (RExC_open_parens) {
3552 RExC_open_parens[ARG(nxt1)-1]=oscan; /*open->CURLYM*/
3553 RExC_close_parens[ARG(nxt1)-1]=nxt2+1; /*close->NOTHING*/
40d049e4 3554 }
8aa23a47
YO
3555 OP(nxt1) = OPTIMIZED; /* was OPEN. */
3556 OP(nxt) = OPTIMIZED; /* was CLOSE. */
40d049e4 3557
c277df42 3558#ifdef DEBUGGING
8aa23a47
YO
3559 OP(nxt1 + 1) = OPTIMIZED; /* was count. */
3560 OP(nxt + 1) = OPTIMIZED; /* was count. */
486ec47a
PA
3561 NEXT_OFF(nxt1 + 1) = 0; /* just for consistency. */
3562 NEXT_OFF(nxt + 1) = 0; /* just for consistency. */
b81d288d 3563#endif
c277df42 3564#if 0
8aa23a47
YO
3565 while ( nxt1 && (OP(nxt1) != WHILEM)) {
3566 regnode *nnxt = regnext(nxt1);
8aa23a47
YO
3567 if (nnxt == nxt) {
3568 if (reg_off_by_arg[OP(nxt1)])
3569 ARG_SET(nxt1, nxt2 - nxt1);
3570 else if (nxt2 - nxt1 < U16_MAX)
3571 NEXT_OFF(nxt1) = nxt2 - nxt1;
3572 else
3573 OP(nxt) = NOTHING; /* Cannot beautify */
c277df42 3574 }
8aa23a47 3575 nxt1 = nnxt;
c277df42 3576 }
5d1c421c 3577#endif
8aa23a47
YO
3578 /* Optimize again: */
3579 study_chunk(pRExC_state, &nxt1, minlenp, &deltanext, nxt,
3580 NULL, stopparen, recursed, NULL, 0,depth+1);
3581 }
3582 else
3583 oscan->flags = 0;
3584 }
3585 else if ((OP(oscan) == CURLYX)
3586 && (flags & SCF_WHILEM_VISITED_POS)
3587 /* See the comment on a similar expression above.
3b753521 3588 However, this time it's not a subexpression
8aa23a47
YO
3589 we care about, but the expression itself. */
3590 && (maxcount == REG_INFTY)
3591 && data && ++data->whilem_c < 16) {
3592 /* This stays as CURLYX, we can put the count/of pair. */
3593 /* Find WHILEM (as in regexec.c) */
3594 regnode *nxt = oscan + NEXT_OFF(oscan);
3595
3596 if (OP(PREVOPER(nxt)) == NOTHING) /* LONGJMP */
3597 nxt += ARG(nxt);
3598 PREVOPER(nxt)->flags = (U8)(data->whilem_c
3599 | (RExC_whilem_seen << 4)); /* On WHILEM */
3600 }
3601 if (data && fl & (SF_HAS_PAR|SF_IN_PAR))
3602 pars++;
3603 if (flags & SCF_DO_SUBSTR) {
3604 SV *last_str = NULL;
3605 int counted = mincount != 0;
a0ed51b3 3606
8aa23a47
YO
3607 if (data->last_end > 0 && mincount != 0) { /* Ends with a string. */
3608#if defined(SPARC64_GCC_WORKAROUND)
3609 I32 b = 0;
3610 STRLEN l = 0;
3611 const char *s = NULL;
3612 I32 old = 0;
b515a41d 3613
8aa23a47
YO
3614 if (pos_before >= data->last_start_min)
3615 b = pos_before;
3616 else
3617 b = data->last_start_min;
b515a41d 3618
8aa23a47
YO
3619 l = 0;
3620 s = SvPV_const(data->last_found, l);
3621 old = b - data->last_start_min;
3622
3623#else
3624 I32 b = pos_before >= data->last_start_min
3625 ? pos_before : data->last_start_min;
3626 STRLEN l;
3627 const char * const s = SvPV_const(data->last_found, l);
3628 I32 old = b - data->last_start_min;
3629#endif
3630
3631 if (UTF)
3632 old = utf8_hop((U8*)s, old) - (U8*)s;
8aa23a47
YO
3633 l -= old;
3634 /* Get the added string: */
740cce10 3635 last_str = newSVpvn_utf8(s + old, l, UTF);
8aa23a47
YO
3636 if (deltanext == 0 && pos_before == b) {
3637 /* What was added is a constant string */
3638 if (mincount > 1) {
3639 SvGROW(last_str, (mincount * l) + 1);
3640 repeatcpy(SvPVX(last_str) + l,
3641 SvPVX_const(last_str), l, mincount - 1);
3642 SvCUR_set(last_str, SvCUR(last_str) * mincount);
3643 /* Add additional parts. */
3644 SvCUR_set(data->last_found,
3645 SvCUR(data->last_found) - l);
3646 sv_catsv(data->last_found, last_str);
3647 {
3648 SV * sv = data->last_found;
3649 MAGIC *mg =
3650 SvUTF8(sv) && SvMAGICAL(sv) ?
3651 mg_find(sv, PERL_MAGIC_utf8) : NULL;
3652 if (mg && mg->mg_len >= 0)
bd94e887 3653 mg->mg_len += CHR_SVLEN(last_str) - l;
b515a41d 3654 }
8aa23a47 3655 data->last_end += l * (mincount - 1);
b515a41d 3656 }
8aa23a47
YO
3657 } else {
3658 /* start offset must point into the last copy */
3659 data->last_start_min += minnext * (mincount - 1);
3660 data->last_start_max += is_inf ? I32_MAX
3661 : (maxcount - 1) * (minnext + data->pos_delta);
3662 }
c277df42 3663 }
8aa23a47
YO
3664 /* It is counted once already... */
3665 data->pos_min += minnext * (mincount - counted);
3666 data->pos_delta += - counted * deltanext +
3667 (minnext + deltanext) * maxcount - minnext * mincount;
3668 if (mincount != maxcount) {
3669 /* Cannot extend fixed substrings found inside
3670 the group. */
304ee84b 3671 SCAN_COMMIT(pRExC_state,data,minlenp);
8aa23a47
YO
3672 if (mincount && last_str) {
3673 SV * const sv = data->last_found;
3674 MAGIC * const mg = SvUTF8(sv) && SvMAGICAL(sv) ?
3675 mg_find(sv, PERL_MAGIC_utf8) : NULL;
3676
3677 if (mg)
3678 mg->mg_len = -1;
3679 sv_setsv(sv, last_str);
3680 data->last_end = data->pos_min;
3681 data->last_start_min =
3682 data->pos_min - CHR_SVLEN(last_str);
3683 data->last_start_max = is_inf
3684 ? I32_MAX
3685 : data->pos_min + data->pos_delta
3686 - CHR_SVLEN(last_str);
3687 }
3688 data->longest = &(data->longest_float);
3689 }
3690 SvREFCNT_dec(last_str);
c277df42 3691 }
8aa23a47
YO
3692 if (data && (fl & SF_HAS_EVAL))
3693 data->flags |= SF_HAS_EVAL;
3694 optimize_curly_tail:
3695 if (OP(oscan) != CURLYX) {
3696 while (PL_regkind[OP(next = regnext(oscan))] == NOTHING
3697 && NEXT_OFF(next))
3698 NEXT_OFF(oscan) += NEXT_OFF(next);
3699 }
3700 continue;
f56b6394 3701 default: /* REF, ANYOFV, and CLUMP only? */
8aa23a47 3702 if (flags & SCF_DO_SUBSTR) {
304ee84b 3703 SCAN_COMMIT(pRExC_state,data,minlenp); /* Cannot expect anything... */
8aa23a47
YO
3704 data->longest = &(data->longest_float);
3705 }
3706 is_inf = is_inf_internal = 1;
3707 if (flags & SCF_DO_STCLASS_OR)
3fffb88a 3708 cl_anything(pRExC_state, data->start_class);
8aa23a47
YO
3709 flags &= ~SCF_DO_STCLASS;
3710 break;
c277df42 3711 }
8aa23a47 3712 }
e1d1eefb
YO
3713 else if (OP(scan) == LNBREAK) {
3714 if (flags & SCF_DO_STCLASS) {
3715 int value = 0;
3716 data->start_class->flags &= ~ANYOF_EOS; /* No match on empty */
3717 if (flags & SCF_DO_STCLASS_AND) {
3718 for (value = 0; value < 256; value++)
e64b1bd1 3719 if (!is_VERTWS_cp(value))
b9a59e08
KW
3720 ANYOF_BITMAP_CLEAR(data->start_class, value);
3721 }
3722 else {
e1d1eefb 3723 for (value = 0; value < 256; value++)
e64b1bd1 3724 if (is_VERTWS_cp(value))
b9a59e08
KW
3725 ANYOF_BITMAP_SET(data->start_class, value);
3726 }
e1d1eefb
YO
3727 if (flags & SCF_DO_STCLASS_OR)
3728 cl_and(data->start_class, and_withp);
3729 flags &= ~SCF_DO_STCLASS;
3730 }
3731 min += 1;
f9a79580 3732 delta += 1;
e1d1eefb
YO
3733 if (flags & SCF_DO_SUBSTR) {
3734 SCAN_COMMIT(pRExC_state,data,minlenp); /* Cannot expect anything... */
3735 data->pos_min += 1;
f9a79580 3736 data->pos_delta += 1;
e1d1eefb
YO
3737 data->longest = &(data->longest_float);
3738 }
e1d1eefb 3739 }
f9a79580 3740 else if (OP(scan) == FOLDCHAR) {
ced7f090 3741 int d = ARG(scan) == LATIN_SMALL_LETTER_SHARP_S ? 1 : 2;
f9a79580
RGS
3742 flags &= ~SCF_DO_STCLASS;
3743 min += 1;
3744 delta += d;
3745 if (flags & SCF_DO_SUBSTR) {
3746 SCAN_COMMIT(pRExC_state,data,minlenp); /* Cannot expect anything... */
3747 data->pos_min += 1;
3748 data->pos_delta += d;
3749 data->longest = &(data->longest_float);
3750 }
3751 }
e52fc539 3752 else if (REGNODE_SIMPLE(OP(scan))) {
8aa23a47 3753 int value = 0;
653099ff 3754
8aa23a47 3755 if (flags & SCF_DO_SUBSTR) {
304ee84b 3756 SCAN_COMMIT(pRExC_state,data,minlenp);
8aa23a47
YO
3757 data->pos_min++;
3758 }
3759 min++;
3760 if (flags & SCF_DO_STCLASS) {
3761 data->start_class->flags &= ~ANYOF_EOS; /* No match on empty */
b515a41d 3762
8aa23a47
YO
3763 /* Some of the logic below assumes that switching
3764 locale on will only add false positives. */
3765 switch (PL_regkind[OP(scan)]) {
3766 case SANY:
3767 default:
3768 do_default:
3769 /* Perl_croak(aTHX_ "panic: unexpected simple REx opcode %d", OP(scan)); */
3770 if (flags & SCF_DO_STCLASS_OR) /* Allow everything */
3fffb88a 3771 cl_anything(pRExC_state, data->start_class);
8aa23a47
YO
3772 break;
3773 case REG_ANY:
3774 if (OP(scan) == SANY)
3775 goto do_default;
3776 if (flags & SCF_DO_STCLASS_OR) { /* Everything but \n */
3777 value = (ANYOF_BITMAP_TEST(data->start_class,'\n')
3a15e693 3778 || ANYOF_CLASS_TEST_ANY_SET(data->start_class));
3fffb88a 3779 cl_anything(pRExC_state, data->start_class);
653099ff 3780 }
8aa23a47
YO
3781 if (flags & SCF_DO_STCLASS_AND || !value)
3782 ANYOF_BITMAP_CLEAR(data->start_class,'\n');
3783 break;
3784 case ANYOF:
3785 if (flags & SCF_DO_STCLASS_AND)
3786 cl_and(data->start_class,
3787 (struct regnode_charclass_class*)scan);
653099ff 3788 else
3fffb88a 3789 cl_or(pRExC_state, data->start_class,
8aa23a47
YO
3790 (struct regnode_charclass_class*)scan);
3791 break;
3792 case ALNUM:
3793 if (flags & SCF_DO_STCLASS_AND) {
3794 if (!(data->start_class->flags & ANYOF_LOCALE)) {
3795 ANYOF_CLASS_CLEAR(data->start_class,ANYOF_NALNUM);
980866de 3796 if (OP(scan) == ALNUMU) {
a12cf05f
KW
3797 for (value = 0; value < 256; value++) {
3798 if (!isWORDCHAR_L1(value)) {
3799 ANYOF_BITMAP_CLEAR(data->start_class, value);
3800 }
3801 }
3802 } else {
3803 for (value = 0; value < 256; value++) {
3804 if (!isALNUM(value)) {
3805 ANYOF_BITMAP_CLEAR(data->start_class, value);
3806 }
3807 }
3808 }
8aa23a47 3809 }
653099ff 3810 }
8aa23a47
YO
3811 else {
3812 if (data->start_class->flags & ANYOF_LOCALE)
3813 ANYOF_CLASS_SET(data->start_class,ANYOF_ALNUM);
af302e7f
KW
3814
3815 /* Even if under locale, set the bits for non-locale
3816 * in case it isn't a true locale-node. This will
3817 * create false positives if it truly is locale */
3818 if (OP(scan) == ALNUMU) {
a12cf05f
KW
3819 for (value = 0; value < 256; value++) {
3820 if (isWORDCHAR_L1(value)) {
3821 ANYOF_BITMAP_SET(data->start_class, value);
3822 }
3823 }
3824 } else {
3825 for (value = 0; value < 256; value++) {
3826 if (isALNUM(value)) {
3827 ANYOF_BITMAP_SET(data->start_class, value);
3828 }
3829 }
3830 }
8aa23a47
YO
3831 }
3832 break;
8aa23a47
YO
3833 case NALNUM:
3834 if (flags & SCF_DO_STCLASS_AND) {
3835 if (!(data->start_class->flags & ANYOF_LOCALE)) {
3836 ANYOF_CLASS_CLEAR(data->start_class,ANYOF_ALNUM);
980866de 3837 if (OP(scan) == NALNUMU) {
a12cf05f
KW
3838 for (value = 0; value < 256; value++) {
3839 if (isWORDCHAR_L1(value)) {
3840 ANYOF_BITMAP_CLEAR(data->start_class, value);
3841 }
3842 }
3843 } else {
3844 for (value = 0; value < 256; value++) {
3845 if (isALNUM(value)) {
3846 ANYOF_BITMAP_CLEAR(data->start_class, value);
3847 }
3848 }
3849 }
653099ff
GS
3850 }
3851 }
8aa23a47
YO
3852 else {
3853 if (data->start_class->flags & ANYOF_LOCALE)
3854 ANYOF_CLASS_SET(data->start_class,ANYOF_NALNUM);
af302e7f 3855
75950e1c
KW
3856 /* Even if under locale, set the bits for non-locale in
3857 * case it isn't a true locale-node. This will create
3858 * false positives if it truly is locale */
3859 if (OP(scan) == NALNUMU) {
3860 for (value = 0; value < 256; value++) {
3861 if (! isWORDCHAR_L1(value)) {
3862 ANYOF_BITMAP_SET(data->start_class, value);
3863 }
e9a9c1bc 3864 }
75950e1c
KW
3865 } else {
3866 for (value = 0; value < 256; value++) {
3867 if (! isALNUM(value)) {
3868 ANYOF_BITMAP_SET(data->start_class, value);
3869 }
3870 }
3871 }
653099ff 3872 }
8aa23a47 3873 break;
8aa23a47
YO
3874 case SPACE:
3875 if (flags & SCF_DO_STCLASS_AND) {
3876 if (!(data->start_class->flags & ANYOF_LOCALE)) {
3877 ANYOF_CLASS_CLEAR(data->start_class,ANYOF_NSPACE);
980866de 3878 if (OP(scan) == SPACEU) {
a12cf05f
KW
3879 for (value = 0; value < 256; value++) {
3880 if (!isSPACE_L1(value)) {
3881 ANYOF_BITMAP_CLEAR(data->start_class, value);
3882 }
3883 }
3884 } else {
3885 for (value = 0; value < 256; value++) {
3886 if (!isSPACE(value)) {
3887 ANYOF_BITMAP_CLEAR(data->start_class, value);
3888 }
3889 }
3890 }
653099ff
GS
3891 }
3892 }
8aa23a47 3893 else {
a12cf05f 3894 if (data->start_class->flags & ANYOF_LOCALE) {
8aa23a47 3895 ANYOF_CLASS_SET(data->start_class,ANYOF_SPACE);
a12cf05f 3896 }
af302e7f 3897 if (OP(scan) == SPACEU) {
a12cf05f
KW
3898 for (value = 0; value < 256; value++) {
3899 if (isSPACE_L1(value)) {
3900 ANYOF_BITMAP_SET(data->start_class, value);
3901 }
3902 }
3903 } else {
3904 for (value = 0; value < 256; value++) {
3905 if (isSPACE(value)) {
3906 ANYOF_BITMAP_SET(data->start_class, value);
3907 }
3908 }
8aa23a47 3909 }
653099ff 3910 }
8aa23a47 3911 break;
8aa23a47
YO
3912 case NSPACE:
3913 if (flags & SCF_DO_STCLASS_AND) {
3914 if (!(data->start_class->flags & ANYOF_LOCALE)) {
3915 ANYOF_CLASS_CLEAR(data->start_class,ANYOF_SPACE);
980866de 3916 if (OP(scan) == NSPACEU) {
a12cf05f
KW
3917 for (value = 0; value < 256; value++) {
3918 if (isSPACE_L1(value)) {
3919 ANYOF_BITMAP_CLEAR(data->start_class, value);
3920 }
3921 }
3922 } else {
3923 for (value = 0; value < 256; value++) {
3924 if (isSPACE(value)) {
3925 ANYOF_BITMAP_CLEAR(data->start_class, value);
3926 }
3927 }
3928 }
653099ff 3929 }
8aa23a47
YO
3930 }
3931 else {
3932 if (data->start_class->flags & ANYOF_LOCALE)
3933 ANYOF_CLASS_SET(data->start_class,ANYOF_NSPACE);
af302e7f 3934 if (OP(scan) == NSPACEU) {
a12cf05f
KW
3935 for (value = 0; value < 256; value++) {
3936 if (!isSPACE_L1(value)) {
3937 ANYOF_BITMAP_SET(data->start_class, value);
3938 }
3939 }
3940 }
3941 else {
3942 for (value = 0; value < 256; value++) {
3943 if (!isSPACE(value)) {
3944 ANYOF_BITMAP_SET(data->start_class, value);
3945 }
3946 }
3947 }
653099ff 3948 }
8aa23a47 3949 break;
8aa23a47
YO
3950 case DIGIT:
3951 if (flags & SCF_DO_STCLASS_AND) {
bcc0256f 3952 if (!(data->start_class->flags & ANYOF_LOCALE)) {
bf3c5c06
KW
3953 ANYOF_CLASS_CLEAR(data->start_class,ANYOF_NDIGIT);
3954 for (value = 0; value < 256; value++)
3955 if (!isDIGIT(value))
3956 ANYOF_BITMAP_CLEAR(data->start_class, value);
bcc0256f 3957 }
8aa23a47
YO
3958 }
3959 else {
3960 if (data->start_class->flags & ANYOF_LOCALE)
3961 ANYOF_CLASS_SET(data->start_class,ANYOF_DIGIT);
75950e1c
KW
3962 for (value = 0; value < 256; value++)
3963 if (isDIGIT(value))
3964 ANYOF_BITMAP_SET(data->start_class, value);
8aa23a47
YO
3965 }
3966 break;
3967 case NDIGIT:
3968 if (flags & SCF_DO_STCLASS_AND) {
bcc0256f 3969 if (!(data->start_class->flags & ANYOF_LOCALE))
bf3c5c06 3970 ANYOF_CLASS_CLEAR(data->start_class,ANYOF_DIGIT);
8aa23a47
YO
3971 for (value = 0; value < 256; value++)
3972 if (isDIGIT(value))
3973 ANYOF_BITMAP_CLEAR(data->start_class, value);
3974 }
3975 else {
3976 if (data->start_class->flags & ANYOF_LOCALE)
3977 ANYOF_CLASS_SET(data->start_class,ANYOF_NDIGIT);
75950e1c
KW
3978 for (value = 0; value < 256; value++)
3979 if (!isDIGIT(value))
3980 ANYOF_BITMAP_SET(data->start_class, value);
653099ff 3981 }
8aa23a47 3982 break;
e1d1eefb
YO
3983 CASE_SYNST_FNC(VERTWS);
3984 CASE_SYNST_FNC(HORIZWS);
3985
8aa23a47
YO
3986 }
3987 if (flags & SCF_DO_STCLASS_OR)
3988 cl_and(data->start_class, and_withp);
3989 flags &= ~SCF_DO_STCLASS;
3990 }
3991 }
3992 else if (PL_regkind[OP(scan)] == EOL && flags & SCF_DO_SUBSTR) {
3993 data->flags |= (OP(scan) == MEOL
3994 ? SF_BEFORE_MEOL
3995 : SF_BEFORE_SEOL);
3996 }
3997 else if ( PL_regkind[OP(scan)] == BRANCHJ
3998 /* Lookbehind, or need to calculate parens/evals/stclass: */
3999 && (scan->flags || data || (flags & SCF_DO_STCLASS))
4000 && (OP(scan) == IFMATCH || OP(scan) == UNLESSM)) {
4001 if ( !PERL_ENABLE_POSITIVE_ASSERTION_STUDY
4002 || OP(scan) == UNLESSM )
4003 {
4004 /* Negative Lookahead/lookbehind
4005 In this case we can't do fixed string optimisation.
4006 */
1de06328 4007
8aa23a47
YO
4008 I32 deltanext, minnext, fake = 0;
4009 regnode *nscan;
4010 struct regnode_charclass_class intrnl;
4011 int f = 0;
1de06328 4012
8aa23a47
YO
4013 data_fake.flags = 0;
4014 if (data) {
4015 data_fake.whilem_c = data->whilem_c;
4016 data_fake.last_closep = data->last_closep;
c277df42 4017 }
8aa23a47
YO
4018 else
4019 data_fake.last_closep = &fake;
58e23c8d 4020 data_fake.pos_delta = delta;
8aa23a47
YO
4021 if ( flags & SCF_DO_STCLASS && !scan->flags
4022 && OP(scan) == IFMATCH ) { /* Lookahead */
e755fd73 4023 cl_init(pRExC_state, &intrnl);
8aa23a47
YO
4024 data_fake.start_class = &intrnl;
4025 f |= SCF_DO_STCLASS_AND;
4026 }
4027 if (flags & SCF_WHILEM_VISITED_POS)
4028 f |= SCF_WHILEM_VISITED_POS;
4029 next = regnext(scan);
4030 nscan = NEXTOPER(NEXTOPER(scan));
4031 minnext = study_chunk(pRExC_state, &nscan, minlenp, &deltanext,
4032 last, &data_fake, stopparen, recursed, NULL, f, depth+1);
4033 if (scan->flags) {
4034 if (deltanext) {
58e23c8d 4035 FAIL("Variable length lookbehind not implemented");
8aa23a47
YO
4036 }
4037 else if (minnext > (I32)U8_MAX) {
58e23c8d 4038 FAIL2("Lookbehind longer than %"UVuf" not implemented", (UV)U8_MAX);
8aa23a47
YO
4039 }
4040 scan->flags = (U8)minnext;
4041 }
4042 if (data) {
4043 if (data_fake.flags & (SF_HAS_PAR|SF_IN_PAR))
4044 pars++;
4045 if (data_fake.flags & SF_HAS_EVAL)
4046 data->flags |= SF_HAS_EVAL;
4047 data->whilem_c = data_fake.whilem_c;
4048 }
4049 if (f & SCF_DO_STCLASS_AND) {
906cdd2b
HS
4050 if (flags & SCF_DO_STCLASS_OR) {
4051 /* OR before, AND after: ideally we would recurse with
4052 * data_fake to get the AND applied by study of the
4053 * remainder of the pattern, and then derecurse;
4054 * *** HACK *** for now just treat as "no information".
4055 * See [perl #56690].
4056 */
e755fd73 4057 cl_init(pRExC_state, data->start_class);
906cdd2b
HS
4058 } else {
4059 /* AND before and after: combine and continue */
4060 const int was = (data->start_class->flags & ANYOF_EOS);
4061
4062 cl_and(data->start_class, &intrnl);
4063 if (was)
4064 data->start_class->flags |= ANYOF_EOS;
4065 }
8aa23a47 4066 }
cb434fcc 4067 }
8aa23a47
YO
4068#if PERL_ENABLE_POSITIVE_ASSERTION_STUDY
4069 else {
4070 /* Positive Lookahead/lookbehind
4071 In this case we can do fixed string optimisation,
4072 but we must be careful about it. Note in the case of
4073 lookbehind the positions will be offset by the minimum
4074 length of the pattern, something we won't know about
4075 until after the recurse.
4076 */
4077 I32 deltanext, fake = 0;
4078 regnode *nscan;
4079 struct regnode_charclass_class intrnl;
4080 int f = 0;
4081 /* We use SAVEFREEPV so that when the full compile
4082 is finished perl will clean up the allocated
3b753521 4083 minlens when it's all done. This way we don't
8aa23a47
YO
4084 have to worry about freeing them when we know
4085 they wont be used, which would be a pain.
4086 */
4087 I32 *minnextp;
4088 Newx( minnextp, 1, I32 );
4089 SAVEFREEPV(minnextp);
4090
4091 if (data) {
4092 StructCopy(data, &data_fake, scan_data_t);
4093 if ((flags & SCF_DO_SUBSTR) && data->last_found) {
4094 f |= SCF_DO_SUBSTR;
4095 if (scan->flags)
304ee84b 4096 SCAN_COMMIT(pRExC_state, &data_fake,minlenp);
8aa23a47
YO
4097 data_fake.last_found=newSVsv(data->last_found);
4098 }
4099 }
4100 else
4101 data_fake.last_closep = &fake;
4102 data_fake.flags = 0;
58e23c8d 4103 data_fake.pos_delta = delta;
8aa23a47
YO
4104 if (is_inf)
4105 data_fake.flags |= SF_IS_INF;
4106 if ( flags & SCF_DO_STCLASS && !scan->flags
4107 && OP(scan) == IFMATCH ) { /* Lookahead */
e755fd73 4108 cl_init(pRExC_state, &intrnl);
8aa23a47
YO
4109 data_fake.start_class = &intrnl;
4110 f |= SCF_DO_STCLASS_AND;
4111 }
4112 if (flags & SCF_WHILEM_VISITED_POS)
4113 f |= SCF_WHILEM_VISITED_POS;
4114 next = regnext(scan);
4115 nscan = NEXTOPER(NEXTOPER(scan));
4116
4117 *minnextp = study_chunk(pRExC_state, &nscan, minnextp, &deltanext,
4118 last, &data_fake, stopparen, recursed, NULL, f,depth+1);
4119 if (scan->flags) {
4120 if (deltanext) {
58e23c8d 4121 FAIL("Variable length lookbehind not implemented");
8aa23a47
YO
4122 }
4123 else if (*minnextp > (I32)U8_MAX) {
58e23c8d 4124 FAIL2("Lookbehind longer than %"UVuf" not implemented", (UV)U8_MAX);
8aa23a47
YO
4125 }
4126 scan->flags = (U8)*minnextp;
4127 }
4128
4129 *minnextp += min;
4130
4131 if (f & SCF_DO_STCLASS_AND) {
4132 const int was = (data->start_class->flags & ANYOF_EOS);
4133
4134 cl_and(data->start_class, &intrnl);
4135 if (was)
4136 data->start_class->flags |= ANYOF_EOS;
4137 }
4138 if (data) {
4139 if (data_fake.flags & (SF_HAS_PAR|SF_IN_PAR))
4140 pars++;
4141 if (data_fake.flags & SF_HAS_EVAL)
4142 data->flags |= SF_HAS_EVAL;
4143 data->whilem_c = data_fake.whilem_c;
4144 if ((flags & SCF_DO_SUBSTR) && data_fake.last_found) {
4145 if (RExC_rx->minlen<*minnextp)
4146 RExC_rx->minlen=*minnextp;
304ee84b 4147 SCAN_COMMIT(pRExC_state, &data_fake, minnextp);
8aa23a47
YO
4148 SvREFCNT_dec(data_fake.last_found);
4149
4150 if ( data_fake.minlen_fixed != minlenp )
4151 {
4152 data->offset_fixed= data_fake.offset_fixed;
4153 data->minlen_fixed= data_fake.minlen_fixed;
4154 data->lookbehind_fixed+= scan->flags;
4155 }
4156 if ( data_fake.minlen_float != minlenp )
4157 {
4158 data->minlen_float= data_fake.minlen_float;
4159 data->offset_float_min=data_fake.offset_float_min;
4160 data->offset_float_max=data_fake.offset_float_max;
4161 data->lookbehind_float+= scan->flags;
4162 }
4163 }
4164 }
4165
4166
40d049e4 4167 }
8aa23a47
YO
4168#endif
4169 }
4170 else if (OP(scan) == OPEN) {
4171 if (stopparen != (I32)ARG(scan))
4172 pars++;
4173 }
4174 else if (OP(scan) == CLOSE) {
4175 if (stopparen == (I32)ARG(scan)) {
4176 break;
4177 }
4178 if ((I32)ARG(scan) == is_par) {
4179 next = regnext(scan);
b515a41d 4180
8aa23a47
YO
4181 if ( next && (OP(next) != WHILEM) && next < last)
4182 is_par = 0; /* Disable optimization */
40d049e4 4183 }
8aa23a47
YO
4184 if (data)
4185 *(data->last_closep) = ARG(scan);
4186 }
4187 else if (OP(scan) == EVAL) {
c277df42
IZ
4188 if (data)
4189 data->flags |= SF_HAS_EVAL;
8aa23a47
YO
4190 }
4191 else if ( PL_regkind[OP(scan)] == ENDLIKE ) {
4192 if (flags & SCF_DO_SUBSTR) {
304ee84b 4193 SCAN_COMMIT(pRExC_state,data,minlenp);
8aa23a47 4194 flags &= ~SCF_DO_SUBSTR;
40d049e4 4195 }
8aa23a47
YO
4196 if (data && OP(scan)==ACCEPT) {
4197 data->flags |= SCF_SEEN_ACCEPT;
4198 if (stopmin > min)
4199 stopmin = min;
e2e6a0f1 4200 }
8aa23a47
YO
4201 }
4202 else if (OP(scan) == LOGICAL && scan->flags == 2) /* Embedded follows */
4203 {
0f5d15d6 4204 if (flags & SCF_DO_SUBSTR) {
304ee84b 4205 SCAN_COMMIT(pRExC_state,data,minlenp);
0f5d15d6
IZ
4206 data->longest = &(data->longest_float);
4207 }
4208 is_inf = is_inf_internal = 1;
653099ff 4209 if (flags & SCF_DO_STCLASS_OR) /* Allow everything */
3fffb88a 4210 cl_anything(pRExC_state, data->start_class);
96776eda 4211 flags &= ~SCF_DO_STCLASS;
8aa23a47 4212 }
58e23c8d 4213 else if (OP(scan) == GPOS) {
bbe252da 4214 if (!(RExC_rx->extflags & RXf_GPOS_FLOAT) &&
58e23c8d
YO
4215 !(delta || is_inf || (data && data->pos_delta)))
4216 {
bbe252da
YO
4217 if (!(RExC_rx->extflags & RXf_ANCH) && (flags & SCF_DO_SUBSTR))
4218 RExC_rx->extflags |= RXf_ANCH_GPOS;
58e23c8d
YO
4219 if (RExC_rx->gofs < (U32)min)
4220 RExC_rx->gofs = min;
4221 } else {
bbe252da 4222 RExC_rx->extflags |= RXf_GPOS_FLOAT;
58e23c8d
YO
4223 RExC_rx->gofs = 0;
4224 }
4225 }
786e8c11 4226#ifdef TRIE_STUDY_OPT
40d049e4 4227#ifdef FULL_TRIE_STUDY
8aa23a47
YO
4228 else if (PL_regkind[OP(scan)] == TRIE) {
4229 /* NOTE - There is similar code to this block above for handling
4230 BRANCH nodes on the initial study. If you change stuff here
4231 check there too. */
4232 regnode *trie_node= scan;
4233 regnode *tail= regnext(scan);
f8fc2ecf 4234 reg_trie_data *trie = (reg_trie_data*)RExC_rxi->data->data[ ARG(scan) ];
8aa23a47
YO
4235 I32 max1 = 0, min1 = I32_MAX;
4236 struct regnode_charclass_class accum;
4237
4238 if (flags & SCF_DO_SUBSTR) /* XXXX Add !SUSPEND? */
304ee84b 4239 SCAN_COMMIT(pRExC_state, data,minlenp); /* Cannot merge strings after this. */
8aa23a47 4240 if (flags & SCF_DO_STCLASS)
e755fd73 4241 cl_init_zero(pRExC_state, &accum);
8aa23a47
YO
4242
4243 if (!trie->jump) {
4244 min1= trie->minlen;
4245 max1= trie->maxlen;
4246 } else {
4247 const regnode *nextbranch= NULL;
4248 U32 word;
4249
4250 for ( word=1 ; word <= trie->wordcount ; word++)
4251 {
4252 I32 deltanext=0, minnext=0, f = 0, fake;
4253 struct regnode_charclass_class this_class;
4254
4255 data_fake.flags = 0;
4256 if (data) {
4257 data_fake.whilem_c = data->whilem_c;
4258 data_fake.last_closep = data->last_closep;
4259 }
4260 else
4261 data_fake.last_closep = &fake;
58e23c8d 4262 data_fake.pos_delta = delta;
8aa23a47 4263 if (flags & SCF_DO_STCLASS) {
e755fd73 4264 cl_init(pRExC_state, &this_class);
8aa23a47
YO
4265 data_fake.start_class = &this_class;
4266 f = SCF_DO_STCLASS_AND;
4267 }
4268 if (flags & SCF_WHILEM_VISITED_POS)
4269 f |= SCF_WHILEM_VISITED_POS;
4270
4271 if (trie->jump[word]) {
4272 if (!nextbranch)
4273 nextbranch = trie_node + trie->jump[0];
4274 scan= trie_node + trie->jump[word];
4275 /* We go from the jump point to the branch that follows
4276 it. Note this means we need the vestigal unused branches
4277 even though they arent otherwise used.
4278 */
4279 minnext = study_chunk(pRExC_state, &scan, minlenp,
4280 &deltanext, (regnode *)nextbranch, &data_fake,
4281 stopparen, recursed, NULL, f,depth+1);
4282 }
4283 if (nextbranch && PL_regkind[OP(nextbranch)]==BRANCH)
4284 nextbranch= regnext((regnode*)nextbranch);
4285
4286 if (min1 > (I32)(minnext + trie->minlen))
4287 min1 = minnext + trie->minlen;
4288 if (max1 < (I32)(minnext + deltanext + trie->maxlen))
4289 max1 = minnext + deltanext + trie->maxlen;
4290 if (deltanext == I32_MAX)
4291 is_inf = is_inf_internal = 1;
4292
4293 if (data_fake.flags & (SF_HAS_PAR|SF_IN_PAR))
4294 pars++;
4295 if (data_fake.flags & SCF_SEEN_ACCEPT) {
4296 if ( stopmin > min + min1)
4297 stopmin = min + min1;
4298 flags &= ~SCF_DO_SUBSTR;
4299 if (data)
4300 data->flags |= SCF_SEEN_ACCEPT;
4301 }
4302 if (data) {
4303 if (data_fake.flags & SF_HAS_EVAL)
4304 data->flags |= SF_HAS_EVAL;
4305 data->whilem_c = data_fake.whilem_c;
4306 }
4307 if (flags & SCF_DO_STCLASS)
3fffb88a 4308 cl_or(pRExC_state, &accum, &this_class);
8aa23a47
YO
4309 }
4310 }
4311 if (flags & SCF_DO_SUBSTR) {
4312 data->pos_min += min1;
4313 data->pos_delta += max1 - min1;
4314 if (max1 != min1 || is_inf)
4315 data->longest = &(data->longest_float);
4316 }
4317 min += min1;
4318 delta += max1 - min1;
4319 if (flags & SCF_DO_STCLASS_OR) {
3fffb88a 4320 cl_or(pRExC_state, data->start_class, &accum);
8aa23a47
YO
4321 if (min1) {
4322 cl_and(data->start_class, and_withp);
4323 flags &= ~SCF_DO_STCLASS;
4324 }
4325 }
4326 else if (flags & SCF_DO_STCLASS_AND) {
4327 if (min1) {
4328 cl_and(data->start_class, &accum);
4329 flags &= ~SCF_DO_STCLASS;
4330 }
4331 else {
4332 /* Switch to OR mode: cache the old value of
4333 * data->start_class */
4334 INIT_AND_WITHP;
4335 StructCopy(data->start_class, and_withp,
4336 struct regnode_charclass_class);
4337 flags &= ~SCF_DO_STCLASS_AND;
4338 StructCopy(&accum, data->start_class,
4339 struct regnode_charclass_class);
4340 flags |= SCF_DO_STCLASS_OR;
4341 data->start_class->flags |= ANYOF_EOS;
4342 }
4343 }
4344 scan= tail;
4345 continue;
4346 }
786e8c11 4347#else
8aa23a47 4348 else if (PL_regkind[OP(scan)] == TRIE) {
f8fc2ecf 4349 reg_trie_data *trie = (reg_trie_data*)RExC_rxi->data->data[ ARG(scan) ];
8aa23a47
YO
4350 U8*bang=NULL;
4351
4352 min += trie->minlen;
4353 delta += (trie->maxlen - trie->minlen);
4354 flags &= ~SCF_DO_STCLASS; /* xxx */
4355 if (flags & SCF_DO_SUBSTR) {
304ee84b 4356 SCAN_COMMIT(pRExC_state,data,minlenp); /* Cannot expect anything... */
8aa23a47
YO
4357 data->pos_min += trie->minlen;
4358 data->pos_delta += (trie->maxlen - trie->minlen);
4359 if (trie->maxlen != trie->minlen)
4360 data->longest = &(data->longest_float);
4361 }
4362 if (trie->jump) /* no more substrings -- for now /grr*/
4363 flags &= ~SCF_DO_SUBSTR;
b515a41d 4364 }
8aa23a47
YO
4365#endif /* old or new */
4366#endif /* TRIE_STUDY_OPT */
e1d1eefb 4367
8aa23a47
YO
4368 /* Else: zero-length, ignore. */
4369 scan = regnext(scan);
4370 }
4371 if (frame) {
4372 last = frame->last;
4373 scan = frame->next;
4374 stopparen = frame->stop;
4375 frame = frame->prev;
4376 goto fake_study_recurse;
c277df42
IZ
4377 }
4378
4379 finish:
8aa23a47 4380 assert(!frame);
304ee84b 4381 DEBUG_STUDYDATA("pre-fin:",data,depth);
8aa23a47 4382
c277df42 4383 *scanp = scan;
aca2d497 4384 *deltap = is_inf_internal ? I32_MAX : delta;
b81d288d 4385 if (flags & SCF_DO_SUBSTR && is_inf)
c277df42 4386 data->pos_delta = I32_MAX - data->pos_min;
786e8c11 4387 if (is_par > (I32)U8_MAX)
c277df42
IZ
4388 is_par = 0;
4389 if (is_par && pars==1 && data) {
4390 data->flags |= SF_IN_PAR;
4391 data->flags &= ~SF_HAS_PAR;
a0ed51b3
LW
4392 }
4393 else if (pars && data) {
c277df42
IZ
4394 data->flags |= SF_HAS_PAR;
4395 data->flags &= ~SF_IN_PAR;
4396 }
653099ff 4397 if (flags & SCF_DO_STCLASS_OR)
40d049e4 4398 cl_and(data->start_class, and_withp);
786e8c11
YO
4399 if (flags & SCF_TRIE_RESTUDY)
4400 data->flags |= SCF_TRIE_RESTUDY;
1de06328 4401
304ee84b 4402 DEBUG_STUDYDATA("post-fin:",data,depth);
1de06328 4403
e2e6a0f1 4404 return min < stopmin ? min : stopmin;
c277df42
IZ
4405}
4406
2eccd3b2
NC
4407STATIC U32
4408S_add_data(RExC_state_t *pRExC_state, U32 n, const char *s)
c277df42 4409{
4a4e7719
NC
4410 U32 count = RExC_rxi->data ? RExC_rxi->data->count : 0;
4411
7918f24d
NC
4412 PERL_ARGS_ASSERT_ADD_DATA;
4413
4a4e7719
NC
4414 Renewc(RExC_rxi->data,
4415 sizeof(*RExC_rxi->data) + sizeof(void*) * (count + n - 1),
4416 char, struct reg_data);
4417 if(count)
f8fc2ecf 4418 Renew(RExC_rxi->data->what, count + n, U8);
4a4e7719 4419 else
f8fc2ecf 4420 Newx(RExC_rxi->data->what, n, U8);
4a4e7719
NC
4421 RExC_rxi->data->count = count + n;
4422 Copy(s, RExC_rxi->data->what + count, n, U8);
4423 return count;
c277df42
IZ
4424}
4425
f8149455 4426/*XXX: todo make this not included in a non debugging perl */
76234dfb 4427#ifndef PERL_IN_XSUB_RE
d88dccdf 4428void
864dbfa3 4429Perl_reginitcolors(pTHX)
d88dccdf 4430{
97aff369 4431 dVAR;
1df70142 4432 const char * const s = PerlEnv_getenv("PERL_RE_COLORS");
d88dccdf 4433 if (s) {
1df70142
AL
4434 char *t = savepv(s);
4435 int i = 0;
4436 PL_colors[0] = t;
d88dccdf 4437 while (++i < 6) {
1df70142
AL
4438 t = strchr(t, '\t');
4439 if (t) {
4440 *t = '\0';
4441 PL_colors[i] = ++t;
d88dccdf
IZ
4442 }
4443 else
1df70142 4444 PL_colors[i] = t = (char *)"";
d88dccdf
IZ
4445 }
4446 } else {
1df70142 4447 int i = 0;
b81d288d 4448 while (i < 6)
06b5626a 4449 PL_colors[i++] = (char *)"";
d88dccdf
IZ
4450 }
4451 PL_colorset = 1;
4452}
76234dfb 4453#endif
8615cb43 4454
07be1b83 4455
786e8c11
YO
4456#ifdef TRIE_STUDY_OPT
4457#define CHECK_RESTUDY_GOTO \
4458 if ( \
4459 (data.flags & SCF_TRIE_RESTUDY) \
4460 && ! restudied++ \
4461 ) goto reStudy
4462#else
4463#define CHECK_RESTUDY_GOTO
4464#endif
f9f4320a 4465
a687059c 4466/*
e50aee73 4467 - pregcomp - compile a regular expression into internal code
a687059c
LW
4468 *
4469 * We can't allocate space until we know how big the compiled form will be,
4470 * but we can't compile it (and thus know how big it is) until we've got a
4471 * place to put the code. So we cheat: we compile it twice, once with code
4472 * generation turned off and size counting turned on, and once "for real".
4473 * This also means that we don't allocate space until we are sure that the
4474 * thing really will compile successfully, and we never have to move the
4475 * code and thus invalidate pointers into it. (Note that it has to be in
4476 * one piece because free() must be able to free it all.) [NB: not true in perl]
4477 *
4478 * Beware that the optimization-preparation code in here knows about some
4479 * of the structure of the compiled regexp. [I'll say.]
4480 */
b9b4dddf
YO
4481
4482
4483
f9f4320a 4484#ifndef PERL_IN_XSUB_RE
f9f4320a
YO
4485#define RE_ENGINE_PTR &PL_core_reg_engine
4486#else
f9f4320a
YO
4487extern const struct regexp_engine my_reg_engine;
4488#define RE_ENGINE_PTR &my_reg_engine
4489#endif
6d5c990f
RGS
4490
4491#ifndef PERL_IN_XSUB_RE
3ab4a224 4492REGEXP *
1593ad57 4493Perl_pregcomp(pTHX_ SV * const pattern, const U32 flags)
a687059c 4494{
97aff369 4495 dVAR;
6d5c990f 4496 HV * const table = GvHV(PL_hintgv);
7918f24d
NC
4497
4498 PERL_ARGS_ASSERT_PREGCOMP;
4499
f9f4320a
YO
4500 /* Dispatch a request to compile a regexp to correct
4501 regexp engine. */
f9f4320a
YO
4502 if (table) {
4503 SV **ptr= hv_fetchs(table, "regcomp", FALSE);
6d5c990f 4504 GET_RE_DEBUG_FLAGS_DECL;
1e2e3d02 4505 if (ptr && SvIOK(*ptr) && SvIV(*ptr)) {
f9f4320a
YO
4506 const regexp_engine *eng=INT2PTR(regexp_engine*,SvIV(*ptr));
4507 DEBUG_COMPILE_r({
8d8756e7 4508 PerlIO_printf(Perl_debug_log, "Using engine %"UVxf"\n",
f9f4320a
YO
4509 SvIV(*ptr));
4510 });
3ab4a224 4511 return CALLREGCOMP_ENG(eng, pattern, flags);
f9f4320a 4512 }
b9b4dddf 4513 }
3ab4a224 4514 return Perl_re_compile(aTHX_ pattern, flags);
2a5d9b1d 4515}
6d5c990f 4516#endif
2a5d9b1d 4517
3ab4a224 4518REGEXP *
29b09c41 4519Perl_re_compile(pTHX_ SV * const pattern, U32 orig_pm_flags)
2a5d9b1d
RGS
4520{
4521 dVAR;
288b8c02
NC
4522 REGEXP *rx;
4523 struct regexp *r;
f8fc2ecf 4524 register regexp_internal *ri;
3ab4a224 4525 STRLEN plen;
5d51ce98
KW
4526 char *exp;
4527 char* xend;
c277df42 4528 regnode *scan;
a0d0e21e 4529 I32 flags;
a0d0e21e 4530 I32 minlen = 0;
29b09c41 4531 U32 pm_flags;
e7f38d0f
YO
4532
4533 /* these are all flags - maybe they should be turned
4534 * into a single int with different bit masks */
4535 I32 sawlookahead = 0;
a0d0e21e
LW
4536 I32 sawplus = 0;
4537 I32 sawopen = 0;
29b09c41 4538 bool used_setjump = FALSE;
4624b182 4539 regex_charset initial_charset = get_regex_charset(orig_pm_flags);
e7f38d0f 4540
bbd61b5f
KW
4541 U8 jump_ret = 0;
4542 dJMPENV;
2c2d71f5 4543 scan_data_t data;
830247a4 4544 RExC_state_t RExC_state;
be8e71aa 4545 RExC_state_t * const pRExC_state = &RExC_state;
07be1b83 4546#ifdef TRIE_STUDY_OPT
5d51ce98 4547 int restudied;
07be1b83
YO
4548 RExC_state_t copyRExC_state;
4549#endif
2a5d9b1d 4550 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
4551
4552 PERL_ARGS_ASSERT_RE_COMPILE;
4553
6d5c990f 4554 DEBUG_r(if (!PL_colorset) reginitcolors());
a0d0e21e 4555
29b09c41 4556 RExC_utf8 = RExC_orig_utf8 = SvUTF8(pattern);
e40e74fe 4557 RExC_uni_semantics = 0;
4624b182 4558 RExC_contains_locale = 0;
7b597bb8 4559
d6bd454d 4560 /****************** LONG JUMP TARGET HERE***********************/
bbd61b5f
KW
4561 /* Longjmp back to here if have to switch in midstream to utf8 */
4562 if (! RExC_orig_utf8) {
4563 JMPENV_PUSH(jump_ret);
29b09c41 4564 used_setjump = TRUE;
bbd61b5f
KW
4565 }
4566
5d51ce98 4567 if (jump_ret == 0) { /* First time through */
29b09c41
KW
4568 exp = SvPV(pattern, plen);
4569 xend = exp + plen;
4570 /* ignore the utf8ness if the pattern is 0 length */
4571 if (plen == 0) {
4572 RExC_utf8 = RExC_orig_utf8 = 0;
4573 }
4574
5d51ce98
KW
4575 DEBUG_COMPILE_r({
4576 SV *dsv= sv_newmortal();
4577 RE_PV_QUOTED_DECL(s, RExC_utf8,
4578 dsv, exp, plen, 60);
4579 PerlIO_printf(Perl_debug_log, "%sCompiling REx%s %s\n",
4580 PL_colors[4],PL_colors[5],s);
4581 });
4582 }
4583 else { /* longjumped back */
bbd61b5f
KW
4584 STRLEN len = plen;
4585
5d51ce98
KW
4586 /* If the cause for the longjmp was other than changing to utf8, pop
4587 * our own setjmp, and longjmp to the correct handler */
bbd61b5f
KW
4588 if (jump_ret != UTF8_LONGJMP) {
4589 JMPENV_POP;
4590 JMPENV_JUMP(jump_ret);
4591 }
4592
595598ee
KW
4593 GET_RE_DEBUG_FLAGS;
4594
bbd61b5f
KW
4595 /* It's possible to write a regexp in ascii that represents Unicode
4596 codepoints outside of the byte range, such as via \x{100}. If we
4597 detect such a sequence we have to convert the entire pattern to utf8
4598 and then recompile, as our sizing calculation will have been based
4599 on 1 byte == 1 character, but we will need to use utf8 to encode
4600 at least some part of the pattern, and therefore must convert the whole
4601 thing.
4602 -- dmq */
4603 DEBUG_PARSE_r(PerlIO_printf(Perl_debug_log,
4604 "UTF8 mismatch! Converting to utf8 for resizing and compile\n"));
595598ee 4605 exp = (char*)Perl_bytes_to_utf8(aTHX_ (U8*)SvPV(pattern, plen), &len);
bbd61b5f
KW
4606 xend = exp + len;
4607 RExC_orig_utf8 = RExC_utf8 = 1;
4608 SAVEFREEPV(exp);
4609 }
4610
5d51ce98
KW
4611#ifdef TRIE_STUDY_OPT
4612 restudied = 0;
4613#endif
4614
29b09c41 4615 pm_flags = orig_pm_flags;
a62b1201 4616
4624b182
KW
4617 if (initial_charset == REGEX_LOCALE_CHARSET) {
4618 RExC_contains_locale = 1;
4619 }
4620 else if (RExC_utf8 && initial_charset == REGEX_DEPENDS_CHARSET) {
4621
4622 /* Set to use unicode semantics if the pattern is in utf8 and has the
4623 * 'depends' charset specified, as it means unicode when utf8 */
a62b1201 4624 set_regex_charset(&pm_flags, REGEX_UNICODE_CHARSET);
29b09c41
KW
4625 }
4626
02daf0ab 4627 RExC_precomp = exp;
c737faaf 4628 RExC_flags = pm_flags;
830247a4 4629 RExC_sawback = 0;
bbce6d69 4630
830247a4 4631 RExC_seen = 0;
b57e4118 4632 RExC_in_lookbehind = 0;
830247a4
IZ
4633 RExC_seen_zerolen = *exp == '^' ? -1 : 0;
4634 RExC_seen_evals = 0;
4635 RExC_extralen = 0;
e2a7e165 4636 RExC_override_recoding = 0;
c277df42 4637
bbce6d69 4638 /* First pass: determine size, legality. */
830247a4 4639 RExC_parse = exp;
fac92740 4640 RExC_start = exp;
830247a4
IZ
4641 RExC_end = xend;
4642 RExC_naughty = 0;
4643 RExC_npar = 1;
e2e6a0f1 4644 RExC_nestroot = 0;
830247a4
IZ
4645 RExC_size = 0L;
4646 RExC_emit = &PL_regdummy;
4647 RExC_whilem_seen = 0;
40d049e4
YO
4648 RExC_open_parens = NULL;
4649 RExC_close_parens = NULL;
4650 RExC_opend = NULL;
81714fb9 4651 RExC_paren_names = NULL;
1f1031fe
YO
4652#ifdef DEBUGGING
4653 RExC_paren_name_list = NULL;
4654#endif
40d049e4
YO
4655 RExC_recurse = NULL;
4656 RExC_recurse_count = 0;
81714fb9 4657
85ddcde9
JH
4658#if 0 /* REGC() is (currently) a NOP at the first pass.
4659 * Clever compilers notice this and complain. --jhi */
830247a4 4660 REGC((U8)REG_MAGIC, (char*)RExC_emit);
85ddcde9 4661#endif
3dab1dad
YO
4662 DEBUG_PARSE_r(PerlIO_printf(Perl_debug_log, "Starting first pass (sizing)\n"));
4663 if (reg(pRExC_state, 0, &flags,1) == NULL) {
c445ea15 4664 RExC_precomp = NULL;
a0d0e21e
LW
4665 return(NULL);
4666 }
bbd61b5f 4667
29b09c41
KW
4668 /* Here, finished first pass. Get rid of any added setjmp */
4669 if (used_setjump) {
bbd61b5f 4670 JMPENV_POP;
02daf0ab 4671 }
e40e74fe 4672
07be1b83 4673 DEBUG_PARSE_r({
81714fb9
YO
4674 PerlIO_printf(Perl_debug_log,
4675 "Required size %"IVdf" nodes\n"
4676 "Starting second pass (creation)\n",
4677 (IV)RExC_size);
07be1b83
YO
4678 RExC_lastnum=0;
4679 RExC_lastparse=NULL;
4680 });
e40e74fe
KW
4681
4682 /* The first pass could have found things that force Unicode semantics */
4683 if ((RExC_utf8 || RExC_uni_semantics)
4684 && get_regex_charset(pm_flags) == REGEX_DEPENDS_CHARSET)
4685 {
4686 set_regex_charset(&pm_flags, REGEX_UNICODE_CHARSET);
4687 }
4688
c277df42
IZ
4689 /* Small enough for pointer-storage convention?
4690 If extralen==0, this means that we will not need long jumps. */
830247a4
IZ
4691 if (RExC_size >= 0x10000L && RExC_extralen)
4692 RExC_size += RExC_extralen;
c277df42 4693 else
830247a4
IZ
4694 RExC_extralen = 0;
4695 if (RExC_whilem_seen > 15)
4696 RExC_whilem_seen = 15;
a0d0e21e 4697
f9f4320a
YO
4698 /* Allocate space and zero-initialize. Note, the two step process
4699 of zeroing when in debug mode, thus anything assigned has to
4700 happen after that */
d2f13c59 4701 rx = (REGEXP*) newSV_type(SVt_REGEXP);
288b8c02 4702 r = (struct regexp*)SvANY(rx);
f8fc2ecf
YO
4703 Newxc(ri, sizeof(regexp_internal) + (unsigned)RExC_size * sizeof(regnode),
4704 char, regexp_internal);
4705 if ( r == NULL || ri == NULL )
b45f050a 4706 FAIL("Regexp out of space");
0f79a09d
GS
4707#ifdef DEBUGGING
4708 /* avoid reading uninitialized memory in DEBUGGING code in study_chunk() */
f8fc2ecf 4709 Zero(ri, sizeof(regexp_internal) + (unsigned)RExC_size * sizeof(regnode), char);
58e23c8d 4710#else
f8fc2ecf
YO
4711 /* bulk initialize base fields with 0. */
4712 Zero(ri, sizeof(regexp_internal), char);
0f79a09d 4713#endif
58e23c8d
YO
4714
4715 /* non-zero initialization begins here */
f8fc2ecf 4716 RXi_SET( r, ri );
f9f4320a 4717 r->engine= RE_ENGINE_PTR;
c737faaf 4718 r->extflags = pm_flags;
bcdf7404 4719 {
f7819f85 4720 bool has_p = ((r->extflags & RXf_PMf_KEEPCOPY) == RXf_PMf_KEEPCOPY);
a62b1201 4721 bool has_charset = (get_regex_charset(r->extflags) != REGEX_DEPENDS_CHARSET);
c5ea2ffa
KW
4722
4723 /* The caret is output if there are any defaults: if not all the STD
4724 * flags are set, or if no character set specifier is needed */
4725 bool has_default =
4726 (((r->extflags & RXf_PMf_STD_PMMOD) != RXf_PMf_STD_PMMOD)
4727 || ! has_charset);
bcdf7404 4728 bool has_runon = ((RExC_seen & REG_SEEN_RUN_ON_COMMENT)==REG_SEEN_RUN_ON_COMMENT);
14f3b9f2
NC
4729 U16 reganch = (U16)((r->extflags & RXf_PMf_STD_PMMOD)
4730 >> RXf_PMf_STD_PMMOD_SHIFT);
bcdf7404
YO
4731 const char *fptr = STD_PAT_MODS; /*"msix"*/
4732 char *p;
fb85c044 4733 /* Allocate for the worst case, which is all the std flags are turned
c5ea2ffa
KW
4734 * on. If more precision is desired, we could do a population count of
4735 * the flags set. This could be done with a small lookup table, or by
4736 * shifting, masking and adding, or even, when available, assembly
4737 * language for a machine-language population count.
4738 * We never output a minus, as all those are defaults, so are
4739 * covered by the caret */
fb85c044 4740 const STRLEN wraplen = plen + has_p + has_runon
c5ea2ffa 4741 + has_default /* If needs a caret */
a62b1201
KW
4742
4743 /* If needs a character set specifier */
4744 + ((has_charset) ? MAX_CHARSET_NAME_LENGTH : 0)
bcdf7404
YO
4745 + (sizeof(STD_PAT_MODS) - 1)
4746 + (sizeof("(?:)") - 1);
4747
c5ea2ffa 4748 p = sv_grow(MUTABLE_SV(rx), wraplen + 1); /* +1 for the ending NUL */
f7c278bf 4749 SvPOK_on(rx);
8f6ae13c 4750 SvFLAGS(rx) |= SvUTF8(pattern);
bcdf7404 4751 *p++='('; *p++='?';
9de15fec
KW
4752
4753 /* If a default, cover it using the caret */
c5ea2ffa 4754 if (has_default) {
85508812 4755 *p++= DEFAULT_PAT_MOD;
fb85c044 4756 }
c5ea2ffa 4757 if (has_charset) {
a62b1201
KW
4758 STRLEN len;
4759 const char* const name = get_regex_charset_name(r->extflags, &len);
4760 Copy(name, p, len, char);
4761 p += len;
9de15fec 4762 }
f7819f85
A
4763 if (has_p)
4764 *p++ = KEEPCOPY_PAT_MOD; /*'p'*/
bcdf7404 4765 {
bcdf7404 4766 char ch;
bcdf7404
YO
4767 while((ch = *fptr++)) {
4768 if(reganch & 1)
4769 *p++ = ch;
bcdf7404
YO
4770 reganch >>= 1;
4771 }
bcdf7404
YO
4772 }
4773
28d8d7f4 4774 *p++ = ':';
bb661a58 4775 Copy(RExC_precomp, p, plen, char);
efd26800
NC
4776 assert ((RX_WRAPPED(rx) - p) < 16);
4777 r->pre_prefix = p - RX_WRAPPED(rx);
bb661a58 4778 p += plen;
bcdf7404 4779 if (has_runon)
28d8d7f4
YO
4780 *p++ = '\n';
4781 *p++ = ')';
4782 *p = 0;
fb85c044 4783 SvCUR_set(rx, p - SvPVX_const(rx));
bcdf7404
YO
4784 }
4785
bbe252da 4786 r->intflags = 0;
830247a4 4787 r->nparens = RExC_npar - 1; /* set early to validate backrefs */
81714fb9 4788
6bda09f9 4789 if (RExC_seen & REG_SEEN_RECURSE) {
40d049e4
YO
4790 Newxz(RExC_open_parens, RExC_npar,regnode *);
4791 SAVEFREEPV(RExC_open_parens);
4792 Newxz(RExC_close_parens,RExC_npar,regnode *);
4793 SAVEFREEPV(RExC_close_parens);
6bda09f9
YO
4794 }
4795
4796 /* Useful during FAIL. */
7122b237
YO
4797#ifdef RE_TRACK_PATTERN_OFFSETS
4798 Newxz(ri->u.offsets, 2*RExC_size+1, U32); /* MJD 20001228 */
a3621e74 4799 DEBUG_OFFSETS_r(PerlIO_printf(Perl_debug_log,
2af232bd 4800 "%s %"UVuf" bytes for offset annotations.\n",
7122b237 4801 ri->u.offsets ? "Got" : "Couldn't get",
392fbf5d 4802 (UV)((2*RExC_size+1) * sizeof(U32))));
7122b237
YO
4803#endif
4804 SetProgLen(ri,RExC_size);
288b8c02 4805 RExC_rx_sv = rx;
830247a4 4806 RExC_rx = r;
f8fc2ecf 4807 RExC_rxi = ri;
bbce6d69 4808
4809 /* Second pass: emit code. */
c737faaf 4810 RExC_flags = pm_flags; /* don't let top level (?i) bleed */
830247a4
IZ
4811 RExC_parse = exp;
4812 RExC_end = xend;
4813 RExC_naughty = 0;
4814 RExC_npar = 1;
f8fc2ecf
YO
4815 RExC_emit_start = ri->program;
4816 RExC_emit = ri->program;
3b57cd43
YO
4817 RExC_emit_bound = ri->program + RExC_size + 1;
4818
2cd61cdb 4819 /* Store the count of eval-groups for security checks: */
f8149455 4820 RExC_rx->seen_evals = RExC_seen_evals;
830247a4 4821 REGC((U8)REG_MAGIC, (char*) RExC_emit++);
80757612 4822 if (reg(pRExC_state, 0, &flags,1) == NULL) {
288b8c02 4823 ReREFCNT_dec(rx);
a0d0e21e 4824 return(NULL);
80757612 4825 }
07be1b83
YO
4826 /* XXXX To minimize changes to RE engine we always allocate
4827 3-units-long substrs field. */
4828 Newx(r->substrs, 1, struct reg_substr_data);
40d049e4
YO
4829 if (RExC_recurse_count) {
4830 Newxz(RExC_recurse,RExC_recurse_count,regnode *);
4831 SAVEFREEPV(RExC_recurse);
4832 }
a0d0e21e 4833
07be1b83 4834reStudy:
e7f38d0f 4835 r->minlen = minlen = sawlookahead = sawplus = sawopen = 0;
07be1b83 4836 Zero(r->substrs, 1, struct reg_substr_data);
a3621e74 4837
07be1b83 4838#ifdef TRIE_STUDY_OPT
0934c9d9
SH
4839 if (!restudied) {
4840 StructCopy(&zero_scan_data, &data, scan_data_t);
4841 copyRExC_state = RExC_state;
4842 } else {
5d458dd8 4843 U32 seen=RExC_seen;
07be1b83 4844 DEBUG_OPTIMISE_r(PerlIO_printf(Perl_debug_log,"Restudying\n"));
5d458dd8
YO
4845
4846 RExC_state = copyRExC_state;
4847 if (seen & REG_TOP_LEVEL_BRANCHES)
4848 RExC_seen |= REG_TOP_LEVEL_BRANCHES;
4849 else
4850 RExC_seen &= ~REG_TOP_LEVEL_BRANCHES;
1de06328 4851 if (data.last_found) {
07be1b83 4852 SvREFCNT_dec(data.longest_fixed);
07be1b83 4853 SvREFCNT_dec(data.longest_float);
07be1b83 4854 SvREFCNT_dec(data.last_found);
1de06328 4855 }
40d049e4 4856 StructCopy(&zero_scan_data, &data, scan_data_t);
07be1b83 4857 }
40d049e4
YO
4858#else
4859 StructCopy(&zero_scan_data, &data, scan_data_t);
07be1b83 4860#endif
fc8cd66c 4861
a0d0e21e 4862 /* Dig out information for optimizations. */
f7819f85 4863 r->extflags = RExC_flags; /* was pm_op */
c737faaf
YO
4864 /*dmq: removed as part of de-PMOP: pm->op_pmflags = RExC_flags; */
4865
a0ed51b3 4866 if (UTF)
8f6ae13c 4867 SvUTF8_on(rx); /* Unicode in it? */
f8fc2ecf 4868 ri->regstclass = NULL;
830247a4 4869 if (RExC_naughty >= 10) /* Probably an expensive pattern. */
bbe252da 4870 r->intflags |= PREGf_NAUGHTY;
f8fc2ecf 4871 scan = ri->program + 1; /* First BRANCH. */
2779dcf1 4872
1de06328
YO
4873 /* testing for BRANCH here tells us whether there is "must appear"
4874 data in the pattern. If there is then we can use it for optimisations */
eaf3ca90 4875 if (!(RExC_seen & REG_TOP_LEVEL_BRANCHES)) { /* Only one top-level choice. */
c277df42 4876 I32 fake;
c5254dd6 4877 STRLEN longest_float_length, longest_fixed_length;
07be1b83 4878 struct regnode_charclass_class ch_class; /* pointed to by data */
653099ff 4879 int stclass_flag;
07be1b83 4880 I32 last_close = 0; /* pointed to by data */
5339e136
YO
4881 regnode *first= scan;
4882 regnode *first_next= regnext(first);
639081d6
YO
4883 /*
4884 * Skip introductions and multiplicators >= 1
4885 * so that we can extract the 'meat' of the pattern that must
4886 * match in the large if() sequence following.
4887 * NOTE that EXACT is NOT covered here, as it is normally
4888 * picked up by the optimiser separately.
4889 *
4890 * This is unfortunate as the optimiser isnt handling lookahead
4891 * properly currently.
4892 *
4893 */
a0d0e21e 4894 while ((OP(first) == OPEN && (sawopen = 1)) ||
653099ff 4895 /* An OR of *one* alternative - should not happen now. */
5339e136 4896 (OP(first) == BRANCH && OP(first_next) != BRANCH) ||
07be1b83 4897 /* for now we can't handle lookbehind IFMATCH*/
e7f38d0f 4898 (OP(first) == IFMATCH && !first->flags && (sawlookahead = 1)) ||
a0d0e21e
LW
4899 (OP(first) == PLUS) ||
4900 (OP(first) == MINMOD) ||
653099ff 4901 /* An {n,m} with n>0 */
5339e136
YO
4902 (PL_regkind[OP(first)] == CURLY && ARG1(first) > 0) ||
4903 (OP(first) == NOTHING && PL_regkind[OP(first_next)] != END ))
07be1b83 4904 {
639081d6
YO
4905 /*
4906 * the only op that could be a regnode is PLUS, all the rest
4907 * will be regnode_1 or regnode_2.
4908 *
4909 */
a0d0e21e
LW
4910 if (OP(first) == PLUS)
4911 sawplus = 1;
4912 else
3dab1dad 4913 first += regarglen[OP(first)];
639081d6
YO
4914
4915 first = NEXTOPER(first);
5339e136 4916 first_next= regnext(first);
a687059c
LW
4917 }
4918
a0d0e21e
LW
4919 /* Starting-point info. */
4920 again:
786e8c11 4921 DEBUG_PEEP("first:",first,0);
07be1b83 4922 /* Ignore EXACT as we deal with it later. */
3dab1dad 4923 if (PL_regkind[OP(first)] == EXACT) {
1aa99e6b 4924 if (OP(first) == EXACT)
6f207bd3 4925 NOOP; /* Empty, get anchored substr later. */
e5fbd0ff 4926 else
f8fc2ecf 4927 ri->regstclass = first;
b3c9acc1 4928 }
07be1b83 4929#ifdef TRIE_STCLASS
786e8c11 4930 else if (PL_regkind[OP(first)] == TRIE &&
f8fc2ecf 4931 ((reg_trie_data *)ri->data->data[ ARG(first) ])->minlen>0)
07be1b83 4932 {
786e8c11 4933 regnode *trie_op;
07be1b83 4934 /* this can happen only on restudy */
786e8c11 4935 if ( OP(first) == TRIE ) {
c944940b 4936 struct regnode_1 *trieop = (struct regnode_1 *)
446bd890 4937 PerlMemShared_calloc(1, sizeof(struct regnode_1));
786e8c11
YO
4938 StructCopy(first,trieop,struct regnode_1);
4939 trie_op=(regnode *)trieop;
4940 } else {
c944940b 4941 struct regnode_charclass *trieop = (struct regnode_charclass *)
446bd890 4942 PerlMemShared_calloc(1, sizeof(struct regnode_charclass));
786e8c11
YO
4943 StructCopy(first,trieop,struct regnode_charclass);
4944 trie_op=(regnode *)trieop;
4945 }
1de06328 4946 OP(trie_op)+=2;
786e8c11 4947 make_trie_failtable(pRExC_state, (regnode *)first, trie_op, 0);
f8fc2ecf 4948 ri->regstclass = trie_op;
07be1b83
YO
4949 }
4950#endif
e52fc539 4951 else if (REGNODE_SIMPLE(OP(first)))
f8fc2ecf 4952 ri->regstclass = first;
3dab1dad
YO
4953 else if (PL_regkind[OP(first)] == BOUND ||
4954 PL_regkind[OP(first)] == NBOUND)
f8fc2ecf 4955 ri->regstclass = first;
3dab1dad 4956 else if (PL_regkind[OP(first)] == BOL) {
bbe252da
YO
4957 r->extflags |= (OP(first) == MBOL
4958 ? RXf_ANCH_MBOL
cad2e5aa 4959 : (OP(first) == SBOL
bbe252da
YO
4960 ? RXf_ANCH_SBOL
4961 : RXf_ANCH_BOL));
a0d0e21e 4962 first = NEXTOPER(first);
774d564b 4963 goto again;
4964 }
4965 else if (OP(first) == GPOS) {
bbe252da 4966 r->extflags |= RXf_ANCH_GPOS;
774d564b 4967 first = NEXTOPER(first);
4968 goto again;
a0d0e21e 4969 }
cf2a2b69
YO
4970 else if ((!sawopen || !RExC_sawback) &&
4971 (OP(first) == STAR &&
3dab1dad 4972 PL_regkind[OP(NEXTOPER(first))] == REG_ANY) &&
bbe252da 4973 !(r->extflags & RXf_ANCH) && !(RExC_seen & REG_SEEN_EVAL))
a0d0e21e
LW
4974 {
4975 /* turn .* into ^.* with an implied $*=1 */
1df70142
AL
4976 const int type =
4977 (OP(NEXTOPER(first)) == REG_ANY)
bbe252da
YO
4978 ? RXf_ANCH_MBOL
4979 : RXf_ANCH_SBOL;
4980 r->extflags |= type;
4981 r->intflags |= PREGf_IMPLICIT;
a0d0e21e 4982 first = NEXTOPER(first);
774d564b 4983 goto again;
a0d0e21e 4984 }
e7f38d0f 4985 if (sawplus && !sawlookahead && (!sawopen || !RExC_sawback)
830247a4 4986 && !(RExC_seen & REG_SEEN_EVAL)) /* May examine pos and $& */
cad2e5aa 4987 /* x+ must match at the 1st pos of run of x's */
bbe252da 4988 r->intflags |= PREGf_SKIP;
a0d0e21e 4989
c277df42 4990 /* Scan is after the zeroth branch, first is atomic matcher. */
be8e71aa 4991#ifdef TRIE_STUDY_OPT
81714fb9 4992 DEBUG_PARSE_r(
be8e71aa
YO
4993 if (!restudied)
4994 PerlIO_printf(Perl_debug_log, "first at %"IVdf"\n",
4995 (IV)(first - scan + 1))
4996 );
4997#else
81714fb9 4998 DEBUG_PARSE_r(
be8e71aa
YO
4999 PerlIO_printf(Perl_debug_log, "first at %"IVdf"\n",
5000 (IV)(first - scan + 1))
5001 );
5002#endif
5003
5004
a0d0e21e
LW
5005 /*
5006 * If there's something expensive in the r.e., find the
5007 * longest literal string that must appear and make it the
5008 * regmust. Resolve ties in favor of later strings, since
5009 * the regstart check works with the beginning of the r.e.
5010 * and avoiding duplication strengthens checking. Not a
5011 * strong reason, but sufficient in the absence of others.
5012 * [Now we resolve ties in favor of the earlier string if
c277df42 5013 * it happens that c_offset_min has been invalidated, since the
a0d0e21e
LW
5014 * earlier string may buy us something the later one won't.]
5015 */
de8c5301 5016
396482e1
GA
5017 data.longest_fixed = newSVpvs("");
5018 data.longest_float = newSVpvs("");
5019 data.last_found = newSVpvs("");
c277df42
IZ
5020 data.longest = &(data.longest_fixed);
5021 first = scan;
f8fc2ecf 5022 if (!ri->regstclass) {
e755fd73 5023 cl_init(pRExC_state, &ch_class);
653099ff
GS
5024 data.start_class = &ch_class;
5025 stclass_flag = SCF_DO_STCLASS_AND;
5026 } else /* XXXX Check for BOUND? */
5027 stclass_flag = 0;
cb434fcc 5028 data.last_closep = &last_close;
de8c5301 5029
1de06328 5030 minlen = study_chunk(pRExC_state, &first, &minlen, &fake, scan + RExC_size, /* Up to end */
40d049e4
YO
5031 &data, -1, NULL, NULL,
5032 SCF_DO_SUBSTR | SCF_WHILEM_VISITED_POS | stclass_flag,0);
07be1b83 5033
07be1b83 5034
786e8c11
YO
5035 CHECK_RESTUDY_GOTO;
5036
5037
830247a4 5038 if ( RExC_npar == 1 && data.longest == &(data.longest_fixed)
b81d288d 5039 && data.last_start_min == 0 && data.last_end > 0
830247a4 5040 && !RExC_seen_zerolen
2bf803e2 5041 && !(RExC_seen & REG_SEEN_VERBARG)
bbe252da
YO
5042 && (!(RExC_seen & REG_SEEN_GPOS) || (r->extflags & RXf_ANCH_GPOS)))
5043 r->extflags |= RXf_CHECK_ALL;
304ee84b 5044 scan_commit(pRExC_state, &data,&minlen,0);
c277df42
IZ
5045 SvREFCNT_dec(data.last_found);
5046
1de06328
YO
5047 /* Note that code very similar to this but for anchored string
5048 follows immediately below, changes may need to be made to both.
5049 Be careful.
5050 */
a0ed51b3 5051 longest_float_length = CHR_SVLEN(data.longest_float);
c5254dd6 5052 if (longest_float_length
c277df42
IZ
5053 || (data.flags & SF_FL_BEFORE_EOL
5054 && (!(data.flags & SF_FL_BEFORE_MEOL)
bbe252da 5055 || (RExC_flags & RXf_PMf_MULTILINE))))
1de06328 5056 {
1182767e 5057 I32 t,ml;
cf93c79d 5058
1de06328 5059 if (SvCUR(data.longest_fixed) /* ok to leave SvCUR */
aca2d497
IZ
5060 && data.offset_fixed == data.offset_float_min
5061 && SvCUR(data.longest_fixed) == SvCUR(data.longest_float))
5062 goto remove_float; /* As in (a)+. */
5063
1de06328
YO
5064 /* copy the information about the longest float from the reg_scan_data
5065 over to the program. */
33b8afdf
JH
5066 if (SvUTF8(data.longest_float)) {
5067 r->float_utf8 = data.longest_float;
c445ea15 5068 r->float_substr = NULL;
33b8afdf
JH
5069 } else {
5070 r->float_substr = data.longest_float;
c445ea15 5071 r->float_utf8 = NULL;
33b8afdf 5072 }
1de06328
YO
5073 /* float_end_shift is how many chars that must be matched that
5074 follow this item. We calculate it ahead of time as once the
5075 lookbehind offset is added in we lose the ability to correctly
5076 calculate it.*/
5077 ml = data.minlen_float ? *(data.minlen_float)
1182767e 5078 : (I32)longest_float_length;
1de06328
YO
5079 r->float_end_shift = ml - data.offset_float_min
5080 - longest_float_length + (SvTAIL(data.longest_float) != 0)
5081 + data.lookbehind_float;
5082 r->float_min_offset = data.offset_float_min - data.lookbehind_float;
c277df42 5083 r->float_max_offset = data.offset_float_max;
1182767e 5084 if (data.offset_float_max < I32_MAX) /* Don't offset infinity */
1de06328
YO
5085 r->float_max_offset -= data.lookbehind_float;
5086
cf93c79d
IZ
5087 t = (data.flags & SF_FL_BEFORE_EOL /* Can't have SEOL and MULTI */
5088 && (!(data.flags & SF_FL_BEFORE_MEOL)
bbe252da 5089 || (RExC_flags & RXf_PMf_MULTILINE)));
33b8afdf 5090 fbm_compile(data.longest_float, t ? FBMcf_TAIL : 0);
a0ed51b3
LW
5091 }
5092 else {
aca2d497 5093 remove_float:
c445ea15 5094 r->float_substr = r->float_utf8 = NULL;
c277df42 5095 SvREFCNT_dec(data.longest_float);
c5254dd6 5096 longest_float_length = 0;
a0d0e21e 5097 }
c277df42 5098
1de06328
YO
5099 /* Note that code very similar to this but for floating string
5100 is immediately above, changes may need to be made to both.
5101 Be careful.
5102 */
a0ed51b3 5103 longest_fixed_length = CHR_SVLEN(data.longest_fixed);
c5254dd6 5104 if (longest_fixed_length
c277df42
IZ
5105 || (data.flags & SF_FIX_BEFORE_EOL /* Cannot have SEOL and MULTI */
5106 && (!(data.flags & SF_FIX_BEFORE_MEOL)
bbe252da 5107 || (RExC_flags & RXf_PMf_MULTILINE))))
1de06328 5108 {
1182767e 5109 I32 t,ml;
cf93c79d 5110
1de06328
YO
5111 /* copy the information about the longest fixed
5112 from the reg_scan_data over to the program. */
33b8afdf
JH
5113 if (SvUTF8(data.longest_fixed)) {
5114 r->anchored_utf8 = data.longest_fixed;
c445ea15 5115 r->anchored_substr = NULL;
33b8afdf
JH
5116 } else {
5117 r->anchored_substr = data.longest_fixed;
c445ea15 5118 r->anchored_utf8 = NULL;
33b8afdf 5119 }
1de06328
YO
5120 /* fixed_end_shift is how many chars that must be matched that
5121 follow this item. We calculate it ahead of time as once the
5122 lookbehind offset is added in we lose the ability to correctly
5123 calculate it.*/
5124 ml = data.minlen_fixed ? *(data.minlen_fixed)
1182767e 5125 : (I32)longest_fixed_length;
1de06328
YO
5126 r->anchored_end_shift = ml - data.offset_fixed
5127 - longest_fixed_length + (SvTAIL(data.longest_fixed) != 0)
5128 + data.lookbehind_fixed;
5129 r->anchored_offset = data.offset_fixed - data.lookbehind_fixed;
5130
cf93c79d
IZ
5131 t = (data.flags & SF_FIX_BEFORE_EOL /* Can't have SEOL and MULTI */
5132 && (!(data.flags & SF_FIX_BEFORE_MEOL)
bbe252da 5133 || (RExC_flags & RXf_PMf_MULTILINE)));
33b8afdf 5134 fbm_compile(data.longest_fixed, t ? FBMcf_TAIL : 0);
a0ed51b3
LW
5135 }
5136 else {
c445ea15 5137 r->anchored_substr = r->anchored_utf8 = NULL;
c277df42 5138 SvREFCNT_dec(data.longest_fixed);
c5254dd6 5139 longest_fixed_length = 0;
a0d0e21e 5140 }
f8fc2ecf
YO
5141 if (ri->regstclass
5142 && (OP(ri->regstclass) == REG_ANY || OP(ri->regstclass) == SANY))
5143 ri->regstclass = NULL;
f4244008 5144
33b8afdf
JH
5145 if ((!(r->anchored_substr || r->anchored_utf8) || r->anchored_offset)
5146 && stclass_flag
653099ff 5147 && !(data.start_class->flags & ANYOF_EOS)
eb160463
GS
5148 && !cl_is_anything(data.start_class))
5149 {
2eccd3b2 5150 const U32 n = add_data(pRExC_state, 1, "f");
c613755a 5151 data.start_class->flags |= ANYOF_IS_SYNTHETIC;
653099ff 5152
f8fc2ecf 5153 Newx(RExC_rxi->data->data[n], 1,
653099ff
GS
5154 struct regnode_charclass_class);
5155 StructCopy(data.start_class,
f8fc2ecf 5156 (struct regnode_charclass_class*)RExC_rxi->data->data[n],
653099ff 5157 struct regnode_charclass_class);
f8fc2ecf 5158 ri->regstclass = (regnode*)RExC_rxi->data->data[n];
bbe252da 5159 r->intflags &= ~PREGf_SKIP; /* Used in find_byclass(). */
a3621e74 5160 DEBUG_COMPILE_r({ SV *sv = sv_newmortal();
32fc9b6a 5161 regprop(r, sv, (regnode*)data.start_class);
9c5ffd7c 5162 PerlIO_printf(Perl_debug_log,
a0288114 5163 "synthetic stclass \"%s\".\n",
3f7c398e 5164 SvPVX_const(sv));});
653099ff 5165 }
c277df42
IZ
5166
5167 /* A temporary algorithm prefers floated substr to fixed one to dig more info. */
c5254dd6 5168 if (longest_fixed_length > longest_float_length) {
1de06328 5169 r->check_end_shift = r->anchored_end_shift;
c277df42 5170 r->check_substr = r->anchored_substr;
33b8afdf 5171 r->check_utf8 = r->anchored_utf8;
c277df42 5172 r->check_offset_min = r->check_offset_max = r->anchored_offset;
bbe252da
YO
5173 if (r->extflags & RXf_ANCH_SINGLE)
5174 r->extflags |= RXf_NOSCAN;
a0ed51b3
LW
5175 }
5176 else {
1de06328 5177 r->check_end_shift = r->float_end_shift;
c277df42 5178 r->check_substr = r->float_substr;
33b8afdf 5179 r->check_utf8 = r->float_utf8;
1de06328
YO
5180 r->check_offset_min = r->float_min_offset;
5181 r->check_offset_max = r->float_max_offset;
a0d0e21e 5182 }
30382c73
IZ
5183 /* XXXX Currently intuiting is not compatible with ANCH_GPOS.
5184 This should be changed ASAP! */
bbe252da
YO
5185 if ((r->check_substr || r->check_utf8) && !(r->extflags & RXf_ANCH_GPOS)) {
5186 r->extflags |= RXf_USE_INTUIT;
33b8afdf 5187 if (SvTAIL(r->check_substr ? r->check_substr : r->check_utf8))
bbe252da 5188 r->extflags |= RXf_INTUIT_TAIL;
cad2e5aa 5189 }
1de06328
YO
5190 /* XXX Unneeded? dmq (shouldn't as this is handled elsewhere)
5191 if ( (STRLEN)minlen < longest_float_length )
5192 minlen= longest_float_length;
5193 if ( (STRLEN)minlen < longest_fixed_length )
5194 minlen= longest_fixed_length;
5195 */
a0ed51b3
LW
5196 }
5197 else {
c277df42
IZ
5198 /* Several toplevels. Best we can is to set minlen. */
5199 I32 fake;
653099ff 5200 struct regnode_charclass_class ch_class;
cb434fcc 5201 I32 last_close = 0;
c277df42 5202
5d458dd8 5203 DEBUG_PARSE_r(PerlIO_printf(Perl_debug_log, "\nMulti Top Level\n"));
07be1b83 5204
f8fc2ecf 5205 scan = ri->program + 1;
e755fd73 5206 cl_init(pRExC_state, &ch_class);
653099ff 5207 data.start_class = &ch_class;
cb434fcc 5208 data.last_closep = &last_close;
07be1b83 5209
de8c5301 5210
1de06328 5211 minlen = study_chunk(pRExC_state, &scan, &minlen, &fake, scan + RExC_size,
40d049e4 5212 &data, -1, NULL, NULL, SCF_DO_STCLASS_AND|SCF_WHILEM_VISITED_POS,0);
de8c5301 5213
786e8c11 5214 CHECK_RESTUDY_GOTO;
07be1b83 5215
33b8afdf 5216 r->check_substr = r->check_utf8 = r->anchored_substr = r->anchored_utf8
c445ea15 5217 = r->float_substr = r->float_utf8 = NULL;
f4244008 5218
653099ff 5219 if (!(data.start_class->flags & ANYOF_EOS)
eb160463
GS
5220 && !cl_is_anything(data.start_class))
5221 {
2eccd3b2 5222 const U32 n = add_data(pRExC_state, 1, "f");
c613755a 5223 data.start_class->flags |= ANYOF_IS_SYNTHETIC;
653099ff 5224
f8fc2ecf 5225 Newx(RExC_rxi->data->data[n], 1,
653099ff
GS
5226 struct regnode_charclass_class);
5227 StructCopy(data.start_class,
f8fc2ecf 5228 (struct regnode_charclass_class*)RExC_rxi->data->data[n],
653099ff 5229 struct regnode_charclass_class);
f8fc2ecf 5230 ri->regstclass = (regnode*)RExC_rxi->data->data[n];
bbe252da 5231 r->intflags &= ~PREGf_SKIP; /* Used in find_byclass(). */
a3621e74 5232 DEBUG_COMPILE_r({ SV* sv = sv_newmortal();
32fc9b6a 5233 regprop(r, sv, (regnode*)data.start_class);
9c5ffd7c 5234 PerlIO_printf(Perl_debug_log,
a0288114 5235 "synthetic stclass \"%s\".\n",
3f7c398e 5236 SvPVX_const(sv));});
653099ff 5237 }
a0d0e21e
LW
5238 }
5239
1de06328
YO
5240 /* Guard against an embedded (?=) or (?<=) with a longer minlen than
5241 the "real" pattern. */
cf9788e3
RGS
5242 DEBUG_OPTIMISE_r({
5243 PerlIO_printf(Perl_debug_log,"minlen: %"IVdf" r->minlen:%"IVdf"\n",
70685ca0 5244 (IV)minlen, (IV)r->minlen);
cf9788e3 5245 });
de8c5301 5246 r->minlenret = minlen;
1de06328
YO
5247 if (r->minlen < minlen)
5248 r->minlen = minlen;
5249
b81d288d 5250 if (RExC_seen & REG_SEEN_GPOS)
bbe252da 5251 r->extflags |= RXf_GPOS_SEEN;
830247a4 5252 if (RExC_seen & REG_SEEN_LOOKBEHIND)
bbe252da 5253 r->extflags |= RXf_LOOKBEHIND_SEEN;
830247a4 5254 if (RExC_seen & REG_SEEN_EVAL)
bbe252da 5255 r->extflags |= RXf_EVAL_SEEN;
f33976b4 5256 if (RExC_seen & REG_SEEN_CANY)
bbe252da 5257 r->extflags |= RXf_CANY_SEEN;
e2e6a0f1 5258 if (RExC_seen & REG_SEEN_VERBARG)
bbe252da 5259 r->intflags |= PREGf_VERBARG_SEEN;
5d458dd8 5260 if (RExC_seen & REG_SEEN_CUTGROUP)
bbe252da 5261 r->intflags |= PREGf_CUTGROUP_SEEN;
81714fb9 5262 if (RExC_paren_names)
85fbaab2 5263 RXp_PAREN_NAMES(r) = MUTABLE_HV(SvREFCNT_inc(RExC_paren_names));
81714fb9 5264 else
5daac39c 5265 RXp_PAREN_NAMES(r) = NULL;
0ac6acae 5266
7bd1e614 5267#ifdef STUPID_PATTERN_CHECKS
5509d87a 5268 if (RX_PRELEN(rx) == 0)
640f820d 5269 r->extflags |= RXf_NULL;
5509d87a 5270 if (r->extflags & RXf_SPLIT && RX_PRELEN(rx) == 1 && RX_PRECOMP(rx)[0] == ' ')
0ac6acae
AB
5271 /* XXX: this should happen BEFORE we compile */
5272 r->extflags |= (RXf_SKIPWHITE|RXf_WHITE);
5509d87a 5273 else if (RX_PRELEN(rx) == 3 && memEQ("\\s+", RX_PRECOMP(rx), 3))
0ac6acae 5274 r->extflags |= RXf_WHITE;
5509d87a 5275 else if (RX_PRELEN(rx) == 1 && RXp_PRECOMP(rx)[0] == '^')
e357fc67 5276 r->extflags |= RXf_START_ONLY;
f1b875a0 5277#else
5509d87a 5278 if (r->extflags & RXf_SPLIT && RX_PRELEN(rx) == 1 && RX_PRECOMP(rx)[0] == ' ')
7bd1e614
YO
5279 /* XXX: this should happen BEFORE we compile */
5280 r->extflags |= (RXf_SKIPWHITE|RXf_WHITE);
5281 else {
5282 regnode *first = ri->program + 1;
39aa8307 5283 U8 fop = OP(first);
f6d9469c
DM
5284
5285 if (PL_regkind[fop] == NOTHING && OP(NEXTOPER(first)) == END)
640f820d 5286 r->extflags |= RXf_NULL;
f6d9469c 5287 else if (PL_regkind[fop] == BOL && OP(NEXTOPER(first)) == END)
7bd1e614 5288 r->extflags |= RXf_START_ONLY;
f6d9469c
DM
5289 else if (fop == PLUS && OP(NEXTOPER(first)) == SPACE
5290 && OP(regnext(first)) == END)
7bd1e614
YO
5291 r->extflags |= RXf_WHITE;
5292 }
f1b875a0 5293#endif
1f1031fe
YO
5294#ifdef DEBUGGING
5295 if (RExC_paren_names) {
af534a04 5296 ri->name_list_idx = add_data( pRExC_state, 1, "a" );
1f1031fe
YO
5297 ri->data->data[ri->name_list_idx] = (void*)SvREFCNT_inc(RExC_paren_name_list);
5298 } else
1f1031fe 5299#endif
cde0cee5 5300 ri->name_list_idx = 0;
1f1031fe 5301
40d049e4
YO
5302 if (RExC_recurse_count) {
5303 for ( ; RExC_recurse_count ; RExC_recurse_count-- ) {
5304 const regnode *scan = RExC_recurse[RExC_recurse_count-1];
5305 ARG2L_SET( scan, RExC_open_parens[ARG(scan)-1] - scan );
5306 }
5307 }
f0ab9afb 5308 Newxz(r->offs, RExC_npar, regexp_paren_pair);
c74340f9
YO
5309 /* assume we don't need to swap parens around before we match */
5310
be8e71aa
YO
5311 DEBUG_DUMP_r({
5312 PerlIO_printf(Perl_debug_log,"Final program:\n");
3dab1dad
YO
5313 regdump(r);
5314 });
7122b237
YO
5315#ifdef RE_TRACK_PATTERN_OFFSETS
5316 DEBUG_OFFSETS_r(if (ri->u.offsets) {
5317 const U32 len = ri->u.offsets[0];
8e9a8a48
YO
5318 U32 i;
5319 GET_RE_DEBUG_FLAGS_DECL;
7122b237 5320 PerlIO_printf(Perl_debug_log, "Offsets: [%"UVuf"]\n\t", (UV)ri->u.offsets[0]);
8e9a8a48 5321 for (i = 1; i <= len; i++) {
7122b237 5322 if (ri->u.offsets[i*2-1] || ri->u.offsets[i*2])
8e9a8a48 5323 PerlIO_printf(Perl_debug_log, "%"UVuf":%"UVuf"[%"UVuf"] ",
7122b237 5324 (UV)i, (UV)ri->u.offsets[i*2-1], (UV)ri->u.offsets[i*2]);
8e9a8a48
YO
5325 }
5326 PerlIO_printf(Perl_debug_log, "\n");
5327 });
7122b237 5328#endif
288b8c02 5329 return rx;
a687059c
LW
5330}
5331
f9f4320a 5332#undef RE_ENGINE_PTR
3dab1dad 5333
93b32b6d 5334
81714fb9 5335SV*
192b9cd1
AB
5336Perl_reg_named_buff(pTHX_ REGEXP * const rx, SV * const key, SV * const value,
5337 const U32 flags)
5338{
7918f24d
NC
5339 PERL_ARGS_ASSERT_REG_NAMED_BUFF;
5340
192b9cd1
AB
5341 PERL_UNUSED_ARG(value);
5342
f1b875a0 5343 if (flags & RXapif_FETCH) {
192b9cd1 5344 return reg_named_buff_fetch(rx, key, flags);
f1b875a0 5345 } else if (flags & (RXapif_STORE | RXapif_DELETE | RXapif_CLEAR)) {
6ad8f254 5346 Perl_croak_no_modify(aTHX);
192b9cd1 5347 return NULL;
f1b875a0 5348 } else if (flags & RXapif_EXISTS) {
192b9cd1
AB
5349 return reg_named_buff_exists(rx, key, flags)
5350 ? &PL_sv_yes
5351 : &PL_sv_no;
f1b875a0 5352 } else if (flags & RXapif_REGNAMES) {
192b9cd1 5353 return reg_named_buff_all(rx, flags);
f1b875a0 5354 } else if (flags & (RXapif_SCALAR | RXapif_REGNAMES_COUNT)) {
192b9cd1
AB
5355 return reg_named_buff_scalar(rx, flags);
5356 } else {
5357 Perl_croak(aTHX_ "panic: Unknown flags %d in named_buff", (int)flags);
5358 return NULL;
5359 }
5360}
5361
5362SV*
5363Perl_reg_named_buff_iter(pTHX_ REGEXP * const rx, const SV * const lastkey,
5364 const U32 flags)
5365{
7918f24d 5366 PERL_ARGS_ASSERT_REG_NAMED_BUFF_ITER;
192b9cd1
AB
5367 PERL_UNUSED_ARG(lastkey);
5368
f1b875a0 5369 if (flags & RXapif_FIRSTKEY)
192b9cd1 5370 return reg_named_buff_firstkey(rx, flags);
f1b875a0 5371 else if (flags & RXapif_NEXTKEY)
192b9cd1
AB
5372 return reg_named_buff_nextkey(rx, flags);
5373 else {
5374 Perl_croak(aTHX_ "panic: Unknown flags %d in named_buff_iter", (int)flags);
5375 return NULL;
5376 }
5377}
5378
5379SV*
288b8c02
NC
5380Perl_reg_named_buff_fetch(pTHX_ REGEXP * const r, SV * const namesv,
5381 const U32 flags)
81714fb9 5382{
44a2ac75
YO
5383 AV *retarray = NULL;
5384 SV *ret;
288b8c02 5385 struct regexp *const rx = (struct regexp *)SvANY(r);
7918f24d
NC
5386
5387 PERL_ARGS_ASSERT_REG_NAMED_BUFF_FETCH;
5388
f1b875a0 5389 if (flags & RXapif_ALL)
44a2ac75 5390 retarray=newAV();
93b32b6d 5391
5daac39c
NC
5392 if (rx && RXp_PAREN_NAMES(rx)) {
5393 HE *he_str = hv_fetch_ent( RXp_PAREN_NAMES(rx), namesv, 0, 0 );
93b32b6d
YO
5394 if (he_str) {
5395 IV i;
5396 SV* sv_dat=HeVAL(he_str);
5397 I32 *nums=(I32*)SvPVX(sv_dat);
5398 for ( i=0; i<SvIVX(sv_dat); i++ ) {
192b9cd1
AB
5399 if ((I32)(rx->nparens) >= nums[i]
5400 && rx->offs[nums[i]].start != -1
5401 && rx->offs[nums[i]].end != -1)
93b32b6d 5402 {
49d7dfbc 5403 ret = newSVpvs("");
288b8c02 5404 CALLREG_NUMBUF_FETCH(r,nums[i],ret);
93b32b6d
YO
5405 if (!retarray)
5406 return ret;
5407 } else {
5408 ret = newSVsv(&PL_sv_undef);
5409 }
ec83ea38 5410 if (retarray)
93b32b6d 5411 av_push(retarray, ret);
81714fb9 5412 }
93b32b6d 5413 if (retarray)
ad64d0ec 5414 return newRV_noinc(MUTABLE_SV(retarray));
192b9cd1
AB
5415 }
5416 }
5417 return NULL;
5418}
5419
5420bool
288b8c02 5421Perl_reg_named_buff_exists(pTHX_ REGEXP * const r, SV * const key,
192b9cd1
AB
5422 const U32 flags)
5423{
288b8c02 5424 struct regexp *const rx = (struct regexp *)SvANY(r);
7918f24d
NC
5425
5426 PERL_ARGS_ASSERT_REG_NAMED_BUFF_EXISTS;
5427
5daac39c 5428 if (rx && RXp_PAREN_NAMES(rx)) {
f1b875a0 5429 if (flags & RXapif_ALL) {
5daac39c 5430 return hv_exists_ent(RXp_PAREN_NAMES(rx), key, 0);
192b9cd1 5431 } else {
288b8c02 5432 SV *sv = CALLREG_NAMED_BUFF_FETCH(r, key, flags);
6499cc01
RGS
5433 if (sv) {
5434 SvREFCNT_dec(sv);
192b9cd1
AB
5435 return TRUE;
5436 } else {
5437 return FALSE;
5438 }
5439 }
5440 } else {
5441 return FALSE;
5442 }
5443}
5444
5445SV*
288b8c02 5446Perl_reg_named_buff_firstkey(pTHX_ REGEXP * const r, const U32 flags)
192b9cd1 5447{
288b8c02 5448 struct regexp *const rx = (struct regexp *)SvANY(r);
7918f24d
NC
5449
5450 PERL_ARGS_ASSERT_REG_NAMED_BUFF_FIRSTKEY;
5451
5daac39c
NC
5452 if ( rx && RXp_PAREN_NAMES(rx) ) {
5453 (void)hv_iterinit(RXp_PAREN_NAMES(rx));
192b9cd1 5454
288b8c02 5455 return CALLREG_NAMED_BUFF_NEXTKEY(r, NULL, flags & ~RXapif_FIRSTKEY);
1e1d4b91
JJ
5456 } else {
5457 return FALSE;
5458 }
192b9cd1
AB
5459}
5460
5461SV*
288b8c02 5462Perl_reg_named_buff_nextkey(pTHX_ REGEXP * const r, const U32 flags)
192b9cd1 5463{
288b8c02 5464 struct regexp *const rx = (struct regexp *)SvANY(r);
250257bb 5465 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
5466
5467 PERL_ARGS_ASSERT_REG_NAMED_BUFF_NEXTKEY;
5468
5daac39c
NC
5469 if (rx && RXp_PAREN_NAMES(rx)) {
5470 HV *hv = RXp_PAREN_NAMES(rx);
192b9cd1
AB
5471 HE *temphe;
5472 while ( (temphe = hv_iternext_flags(hv,0)) ) {
5473 IV i;
5474 IV parno = 0;
5475 SV* sv_dat = HeVAL(temphe);
5476 I32 *nums = (I32*)SvPVX(sv_dat);
5477 for ( i = 0; i < SvIVX(sv_dat); i++ ) {
250257bb 5478 if ((I32)(rx->lastparen) >= nums[i] &&
192b9cd1
AB
5479 rx->offs[nums[i]].start != -1 &&
5480 rx->offs[nums[i]].end != -1)
5481 {
5482 parno = nums[i];
5483 break;
5484 }
5485 }
f1b875a0 5486 if (parno || flags & RXapif_ALL) {
a663657d 5487 return newSVhek(HeKEY_hek(temphe));
192b9cd1 5488 }
81714fb9
YO
5489 }
5490 }
44a2ac75
YO
5491 return NULL;
5492}
5493
192b9cd1 5494SV*
288b8c02 5495Perl_reg_named_buff_scalar(pTHX_ REGEXP * const r, const U32 flags)
192b9cd1
AB
5496{
5497 SV *ret;
5498 AV *av;
5499 I32 length;
288b8c02 5500 struct regexp *const rx = (struct regexp *)SvANY(r);
192b9cd1 5501
7918f24d
NC
5502 PERL_ARGS_ASSERT_REG_NAMED_BUFF_SCALAR;
5503
5daac39c 5504 if (rx && RXp_PAREN_NAMES(rx)) {
f1b875a0 5505 if (flags & (RXapif_ALL | RXapif_REGNAMES_COUNT)) {
5daac39c 5506 return newSViv(HvTOTALKEYS(RXp_PAREN_NAMES(rx)));
f1b875a0 5507 } else if (flags & RXapif_ONE) {
288b8c02 5508 ret = CALLREG_NAMED_BUFF_ALL(r, (flags | RXapif_REGNAMES));
502c6561 5509 av = MUTABLE_AV(SvRV(ret));
192b9cd1 5510 length = av_len(av);
ec83ea38 5511 SvREFCNT_dec(ret);
192b9cd1
AB
5512 return newSViv(length + 1);
5513 } else {
5514 Perl_croak(aTHX_ "panic: Unknown flags %d in named_buff_scalar", (int)flags);
5515 return NULL;
5516 }
5517 }
5518 return &PL_sv_undef;
5519}
5520
5521SV*
288b8c02 5522Perl_reg_named_buff_all(pTHX_ REGEXP * const r, const U32 flags)
192b9cd1 5523{
288b8c02 5524 struct regexp *const rx = (struct regexp *)SvANY(r);
192b9cd1
AB
5525 AV *av = newAV();
5526
7918f24d
NC
5527 PERL_ARGS_ASSERT_REG_NAMED_BUFF_ALL;
5528
5daac39c
NC
5529 if (rx && RXp_PAREN_NAMES(rx)) {
5530 HV *hv= RXp_PAREN_NAMES(rx);
192b9cd1
AB
5531 HE *temphe;
5532 (void)hv_iterinit(hv);
5533 while ( (temphe = hv_iternext_flags(hv,0)) ) {
5534 IV i;
5535 IV parno = 0;
5536 SV* sv_dat = HeVAL(temphe);
5537 I32 *nums = (I32*)SvPVX(sv_dat);
5538 for ( i = 0; i < SvIVX(sv_dat); i++ ) {
250257bb 5539 if ((I32)(rx->lastparen) >= nums[i] &&
192b9cd1
AB
5540 rx->offs[nums[i]].start != -1 &&
5541 rx->offs[nums[i]].end != -1)
5542 {
5543 parno = nums[i];
5544 break;
5545 }
5546 }
f1b875a0 5547 if (parno || flags & RXapif_ALL) {
a663657d 5548 av_push(av, newSVhek(HeKEY_hek(temphe)));
192b9cd1
AB
5549 }
5550 }
5551 }
5552
ad64d0ec 5553 return newRV_noinc(MUTABLE_SV(av));
192b9cd1
AB
5554}
5555
49d7dfbc 5556void
288b8c02
NC
5557Perl_reg_numbered_buff_fetch(pTHX_ REGEXP * const r, const I32 paren,
5558 SV * const sv)
44a2ac75 5559{
288b8c02 5560 struct regexp *const rx = (struct regexp *)SvANY(r);
44a2ac75 5561 char *s = NULL;
a9d504c3 5562 I32 i = 0;
44a2ac75 5563 I32 s1, t1;
7918f24d
NC
5564
5565 PERL_ARGS_ASSERT_REG_NUMBERED_BUFF_FETCH;
44a2ac75 5566
cde0cee5
YO
5567 if (!rx->subbeg) {
5568 sv_setsv(sv,&PL_sv_undef);
49d7dfbc 5569 return;
cde0cee5
YO
5570 }
5571 else
f1b875a0 5572 if (paren == RX_BUFF_IDX_PREMATCH && rx->offs[0].start != -1) {
44a2ac75 5573 /* $` */
f0ab9afb 5574 i = rx->offs[0].start;
cde0cee5 5575 s = rx->subbeg;
44a2ac75
YO
5576 }
5577 else
f1b875a0 5578 if (paren == RX_BUFF_IDX_POSTMATCH && rx->offs[0].end != -1) {
44a2ac75 5579 /* $' */
f0ab9afb
NC
5580 s = rx->subbeg + rx->offs[0].end;
5581 i = rx->sublen - rx->offs[0].end;
44a2ac75
YO
5582 }
5583 else
5584 if ( 0 <= paren && paren <= (I32)rx->nparens &&
f0ab9afb
NC
5585 (s1 = rx->offs[paren].start) != -1 &&
5586 (t1 = rx->offs[paren].end) != -1)
44a2ac75
YO
5587 {
5588 /* $& $1 ... */
5589 i = t1 - s1;
5590 s = rx->subbeg + s1;
cde0cee5
YO
5591 } else {
5592 sv_setsv(sv,&PL_sv_undef);
49d7dfbc 5593 return;
cde0cee5
YO
5594 }
5595 assert(rx->sublen >= (s - rx->subbeg) + i );
5596 if (i >= 0) {
5597 const int oldtainted = PL_tainted;
5598 TAINT_NOT;
5599 sv_setpvn(sv, s, i);
5600 PL_tainted = oldtainted;
5601 if ( (rx->extflags & RXf_CANY_SEEN)
07bc277f 5602 ? (RXp_MATCH_UTF8(rx)
cde0cee5 5603 && (!i || is_utf8_string((U8*)s, i)))
07bc277f 5604 : (RXp_MATCH_UTF8(rx)) )
cde0cee5
YO
5605 {
5606 SvUTF8_on(sv);
5607 }
5608 else
5609 SvUTF8_off(sv);
5610 if (PL_tainting) {
07bc277f 5611 if (RXp_MATCH_TAINTED(rx)) {
cde0cee5
YO
5612 if (SvTYPE(sv) >= SVt_PVMG) {
5613 MAGIC* const mg = SvMAGIC(sv);
5614 MAGIC* mgt;
5615 PL_tainted = 1;
5616 SvMAGIC_set(sv, mg->mg_moremagic);
5617 SvTAINT(sv);
5618 if ((mgt = SvMAGIC(sv))) {
5619 mg->mg_moremagic = mgt;
5620 SvMAGIC_set(sv, mg);
44a2ac75 5621 }
cde0cee5
YO
5622 } else {
5623 PL_tainted = 1;
5624 SvTAINT(sv);
5625 }
5626 } else
5627 SvTAINTED_off(sv);
44a2ac75 5628 }
81714fb9 5629 } else {
44a2ac75 5630 sv_setsv(sv,&PL_sv_undef);
49d7dfbc 5631 return;
81714fb9
YO
5632 }
5633}
93b32b6d 5634
2fdbfb4d
AB
5635void
5636Perl_reg_numbered_buff_store(pTHX_ REGEXP * const rx, const I32 paren,
5637 SV const * const value)
5638{
7918f24d
NC
5639 PERL_ARGS_ASSERT_REG_NUMBERED_BUFF_STORE;
5640
2fdbfb4d
AB
5641 PERL_UNUSED_ARG(rx);
5642 PERL_UNUSED_ARG(paren);
5643 PERL_UNUSED_ARG(value);
5644
5645 if (!PL_localizing)
6ad8f254 5646 Perl_croak_no_modify(aTHX);
2fdbfb4d
AB
5647}
5648
5649I32
288b8c02 5650Perl_reg_numbered_buff_length(pTHX_ REGEXP * const r, const SV * const sv,
2fdbfb4d
AB
5651 const I32 paren)
5652{
288b8c02 5653 struct regexp *const rx = (struct regexp *)SvANY(r);
2fdbfb4d
AB
5654 I32 i;
5655 I32 s1, t1;
5656
7918f24d
NC
5657 PERL_ARGS_ASSERT_REG_NUMBERED_BUFF_LENGTH;
5658
2fdbfb4d
AB
5659 /* Some of this code was originally in C<Perl_magic_len> in F<mg.c> */
5660 switch (paren) {
192b9cd1 5661 /* $` / ${^PREMATCH} */
f1b875a0 5662 case RX_BUFF_IDX_PREMATCH:
2fdbfb4d
AB
5663 if (rx->offs[0].start != -1) {
5664 i = rx->offs[0].start;
5665 if (i > 0) {
5666 s1 = 0;
5667 t1 = i;
5668 goto getlen;
5669 }
5670 }
5671 return 0;
192b9cd1 5672 /* $' / ${^POSTMATCH} */
f1b875a0 5673 case RX_BUFF_IDX_POSTMATCH:
2fdbfb4d
AB
5674 if (rx->offs[0].end != -1) {
5675 i = rx->sublen - rx->offs[0].end;
5676 if (i > 0) {
5677 s1 = rx->offs[0].end;
5678 t1 = rx->sublen;
5679 goto getlen;
5680 }
5681 }
5682 return 0;
192b9cd1
AB
5683 /* $& / ${^MATCH}, $1, $2, ... */
5684 default:
2fdbfb4d
AB
5685 if (paren <= (I32)rx->nparens &&
5686 (s1 = rx->offs[paren].start) != -1 &&
5687 (t1 = rx->offs[paren].end) != -1)
5688 {
5689 i = t1 - s1;
5690 goto getlen;
5691 } else {
5692 if (ckWARN(WARN_UNINITIALIZED))
ad64d0ec 5693 report_uninit((const SV *)sv);
2fdbfb4d
AB
5694 return 0;
5695 }
5696 }
5697 getlen:
07bc277f 5698 if (i > 0 && RXp_MATCH_UTF8(rx)) {
2fdbfb4d
AB
5699 const char * const s = rx->subbeg + s1;
5700 const U8 *ep;
5701 STRLEN el;
5702
5703 i = t1 - s1;
5704 if (is_utf8_string_loclen((U8*)s, i, &ep, &el))
5705 i = el;
5706 }
5707 return i;
5708}
5709
fe578d7f 5710SV*
49d7dfbc 5711Perl_reg_qr_package(pTHX_ REGEXP * const rx)
fe578d7f 5712{
7918f24d 5713 PERL_ARGS_ASSERT_REG_QR_PACKAGE;
fe578d7f 5714 PERL_UNUSED_ARG(rx);
0fc92fc6
YO
5715 if (0)
5716 return NULL;
5717 else
5718 return newSVpvs("Regexp");
fe578d7f 5719}
0a4db386 5720
894be9b7 5721/* Scans the name of a named buffer from the pattern.
0a4db386
YO
5722 * If flags is REG_RSN_RETURN_NULL returns null.
5723 * If flags is REG_RSN_RETURN_NAME returns an SV* containing the name
5724 * If flags is REG_RSN_RETURN_DATA returns the data SV* corresponding
5725 * to the parsed name as looked up in the RExC_paren_names hash.
5726 * If there is an error throws a vFAIL().. type exception.
894be9b7 5727 */
0a4db386
YO
5728
5729#define REG_RSN_RETURN_NULL 0
5730#define REG_RSN_RETURN_NAME 1
5731#define REG_RSN_RETURN_DATA 2
5732
894be9b7 5733STATIC SV*
7918f24d
NC
5734S_reg_scan_name(pTHX_ RExC_state_t *pRExC_state, U32 flags)
5735{
894be9b7 5736 char *name_start = RExC_parse;
1f1031fe 5737
7918f24d
NC
5738 PERL_ARGS_ASSERT_REG_SCAN_NAME;
5739
1f1031fe
YO
5740 if (isIDFIRST_lazy_if(RExC_parse, UTF)) {
5741 /* skip IDFIRST by using do...while */
5742 if (UTF)
5743 do {
5744 RExC_parse += UTF8SKIP(RExC_parse);
5745 } while (isALNUM_utf8((U8*)RExC_parse));
5746 else
5747 do {
5748 RExC_parse++;
5749 } while (isALNUM(*RExC_parse));
894be9b7 5750 }
1f1031fe 5751
0a4db386 5752 if ( flags ) {
59cd0e26
NC
5753 SV* sv_name
5754 = newSVpvn_flags(name_start, (int)(RExC_parse - name_start),
5755 SVs_TEMP | (UTF ? SVf_UTF8 : 0));
0a4db386
YO
5756 if ( flags == REG_RSN_RETURN_NAME)
5757 return sv_name;
5758 else if (flags==REG_RSN_RETURN_DATA) {
5759 HE *he_str = NULL;
5760 SV *sv_dat = NULL;
5761 if ( ! sv_name ) /* should not happen*/
5762 Perl_croak(aTHX_ "panic: no svname in reg_scan_name");
5763 if (RExC_paren_names)
5764 he_str = hv_fetch_ent( RExC_paren_names, sv_name, 0, 0 );
5765 if ( he_str )
5766 sv_dat = HeVAL(he_str);
5767 if ( ! sv_dat )
5768 vFAIL("Reference to nonexistent named group");
5769 return sv_dat;
5770 }
5771 else {
5772 Perl_croak(aTHX_ "panic: bad flag in reg_scan_name");
5773 }
5774 /* NOT REACHED */
894be9b7 5775 }
0a4db386 5776 return NULL;
894be9b7
YO
5777}
5778
3dab1dad
YO
5779#define DEBUG_PARSE_MSG(funcname) DEBUG_PARSE_r({ \
5780 int rem=(int)(RExC_end - RExC_parse); \
5781 int cut; \
5782 int num; \
5783 int iscut=0; \
5784 if (rem>10) { \
5785 rem=10; \
5786 iscut=1; \
5787 } \
5788 cut=10-rem; \
5789 if (RExC_lastparse!=RExC_parse) \
5790 PerlIO_printf(Perl_debug_log," >%.*s%-*s", \
5791 rem, RExC_parse, \
5792 cut + 4, \
5793 iscut ? "..." : "<" \
5794 ); \
5795 else \
5796 PerlIO_printf(Perl_debug_log,"%16s",""); \
5797 \
5798 if (SIZE_ONLY) \
3b57cd43 5799 num = RExC_size + 1; \
3dab1dad
YO
5800 else \
5801 num=REG_NODE_NUM(RExC_emit); \
5802 if (RExC_lastnum!=num) \
0a4db386 5803 PerlIO_printf(Perl_debug_log,"|%4d",num); \
3dab1dad 5804 else \
0a4db386 5805 PerlIO_printf(Perl_debug_log,"|%4s",""); \
be8e71aa
YO
5806 PerlIO_printf(Perl_debug_log,"|%*s%-4s", \
5807 (int)((depth*2)), "", \
3dab1dad
YO
5808 (funcname) \
5809 ); \
5810 RExC_lastnum=num; \
5811 RExC_lastparse=RExC_parse; \
5812})
5813
07be1b83
YO
5814
5815
3dab1dad
YO
5816#define DEBUG_PARSE(funcname) DEBUG_PARSE_r({ \
5817 DEBUG_PARSE_MSG((funcname)); \
5818 PerlIO_printf(Perl_debug_log,"%4s","\n"); \
5819})
6bda09f9
YO
5820#define DEBUG_PARSE_FMT(funcname,fmt,args) DEBUG_PARSE_r({ \
5821 DEBUG_PARSE_MSG((funcname)); \
5822 PerlIO_printf(Perl_debug_log,fmt "\n",args); \
5823})
d764b54e
KW
5824
5825/* This section of code defines the inversion list object and its methods. The
5826 * interfaces are highly subject to change, so as much as possible is static to
fa2d2a23
KW
5827 * this file. An inversion list is here implemented as a malloc'd C UV array
5828 * with some added info that is placed as UVs at the beginning in a header
5829 * portion. An inversion list for Unicode is an array of code points, sorted
5830 * by ordinal number. The zeroth element is the first code point in the list.
5831 * The 1th element is the first element beyond that not in the list. In other
5832 * words, the first range is
5833 * invlist[0]..(invlist[1]-1)
5834 * The other ranges follow. Thus every element that is divisible by two marks
5835 * the beginning of a range that is in the list, and every element not
5836 * divisible by two marks the beginning of a range not in the list. A single
5837 * element inversion list that contains the single code point N generally
5838 * consists of two elements
5839 * invlist[0] == N
5840 * invlist[1] == N+1
5841 * (The exception is when N is the highest representable value on the
5842 * machine, in which case the list containing just it would be a single
5843 * element, itself. By extension, if the last range in the list extends to
5844 * infinity, then the first element of that range will be in the inversion list
5845 * at a position that is divisible by two, and is the final element in the
5846 * list.)
f1b67122
KW
5847 * Taking the complement (inverting) an inversion list is quite simple, if the
5848 * first element is 0, remove it; otherwise add a 0 element at the beginning.
5849 * This implementation reserves an element at the beginning of each inversion list
5850 * to contain 0 when the list contains 0, and contains 1 otherwise. The actual
5851 * beginning of the list is either that element if 0, or the next one if 1.
5852 *
fa2d2a23
KW
5853 * More about inversion lists can be found in "Unicode Demystified"
5854 * Chapter 13 by Richard Gillam, published by Addison-Wesley.
97b14ce7 5855 * More will be coming when functionality is added later.
d764b54e 5856 *
fa2d2a23
KW
5857 * The inversion list data structure is currently implemented as an SV pointing
5858 * to an array of UVs that the SV thinks are bytes. This allows us to have an
5859 * array of UV whose memory management is automatically handled by the existing
5860 * facilities for SV's.
62672576 5861 *
d764b54e
KW
5862 * Some of the methods should always be private to the implementation, and some
5863 * should eventually be made public */
5864
fa2d2a23
KW
5865#define INVLIST_LEN_OFFSET 0 /* Number of elements in the inversion list */
5866#define INVLIST_ITER_OFFSET 1 /* Current iteration position */
5867
f1b67122
KW
5868#define INVLIST_ZERO_OFFSET 2 /* 0 or 1; must be last element in header */
5869/* The UV at position ZERO contains either 0 or 1. If 0, the inversion list
5870 * contains the code point U+00000, and begins here. If 1, the inversion list
5871 * doesn't contain U+0000, and it begins at the next UV in the array.
5872 * Inverting an inversion list consists of adding or removing the 0 at the
5873 * beginning of it. By reserving a space for that 0, inversion can be made
5874 * very fast */
5875
5876#define HEADER_LENGTH (INVLIST_ZERO_OFFSET + 1)
97b14ce7
KW
5877
5878/* Internally things are UVs */
5879#define TO_INTERNAL_SIZE(x) ((x + HEADER_LENGTH) * sizeof(UV))
5880#define FROM_INTERNAL_SIZE(x) ((x / sizeof(UV)) - HEADER_LENGTH)
5881
d764b54e 5882#define INVLIST_INITIAL_LEN 10
d764b54e
KW
5883
5884PERL_STATIC_INLINE UV*
f1b67122
KW
5885S__invlist_array_init(pTHX_ SV* const invlist, const bool will_have_0)
5886{
5887 /* Returns a pointer to the first element in the inversion list's array.
5888 * This is called upon initialization of an inversion list. Where the
5889 * array begins depends on whether the list has the code point U+0000
5890 * in it or not. The other parameter tells it whether the code that
5891 * follows this call is about to put a 0 in the inversion list or not.
5892 * The first element is either the element with 0, if 0, or the next one,
5893 * if 1 */
5894
5895 UV* zero = get_invlist_zero_addr(invlist);
5896
5897 PERL_ARGS_ASSERT__INVLIST_ARRAY_INIT;
5898
5899 /* Must be empty */
5900 assert(! *get_invlist_len_addr(invlist));
5901
5902 /* 1^1 = 0; 1^0 = 1 */
5903 *zero = 1 ^ will_have_0;
5904 return zero + *zero;
5905}
5906
5907PERL_STATIC_INLINE UV*
a25abddc 5908S_invlist_array(pTHX_ SV* const invlist)
d764b54e
KW
5909{
5910 /* Returns the pointer to the inversion list's array. Every time the
5911 * length changes, this needs to be called in case malloc or realloc moved
5912 * it */
5913
d764b54e
KW
5914 PERL_ARGS_ASSERT_INVLIST_ARRAY;
5915
f1b67122
KW
5916 /* Must not be empty */
5917 assert(*get_invlist_len_addr(invlist));
5918 assert(*get_invlist_zero_addr(invlist) == 0
5919 || *get_invlist_zero_addr(invlist) == 1);
5920
5921 /* The array begins either at the element reserved for zero if the
5922 * list contains 0 (that element will be set to 0), or otherwise the next
5923 * element (in which case the reserved element will be set to 1). */
5924 return (UV *) (get_invlist_zero_addr(invlist)
5925 + *get_invlist_zero_addr(invlist));
d764b54e
KW
5926}
5927
61bdbf38
KW
5928PERL_STATIC_INLINE UV*
5929S_get_invlist_len_addr(pTHX_ SV* invlist)
5930{
5931 /* Return the address of the UV that contains the current number
5932 * of used elements in the inversion list */
5933
5934 PERL_ARGS_ASSERT_GET_INVLIST_LEN_ADDR;
5935
5936 return (UV *) (SvPVX(invlist) + (INVLIST_LEN_OFFSET * sizeof (UV)));
5937}
5938
d764b54e 5939PERL_STATIC_INLINE UV
a25abddc 5940S_invlist_len(pTHX_ SV* const invlist)
d764b54e
KW
5941{
5942 /* Returns the current number of elements in the inversion list's array */
5943
d764b54e
KW
5944 PERL_ARGS_ASSERT_INVLIST_LEN;
5945
61bdbf38 5946 return *get_invlist_len_addr(invlist);
d764b54e
KW
5947}
5948
c56a880b
KW
5949PERL_STATIC_INLINE void
5950S_invlist_set_len(pTHX_ SV* const invlist, const UV len)
5951{
5952 /* Sets the current number of elements stored in the inversion list */
5953
5954 PERL_ARGS_ASSERT_INVLIST_SET_LEN;
5955
c56a880b 5956 *get_invlist_len_addr(invlist) = len;
f1b67122 5957
32f89ef6
KW
5958 assert(len <= SvLEN(invlist));
5959
f1b67122
KW
5960 SvCUR_set(invlist, TO_INTERNAL_SIZE(len));
5961 /* If the list contains U+0000, that element is part of the header,
5962 * and should not be counted as part of the array. It will contain
5963 * 0 in that case, and 1 otherwise. So we could flop 0=>1, 1=>0 and
5964 * subtract:
5965 * SvCUR_set(invlist,
5966 * TO_INTERNAL_SIZE(len
5967 * - (*get_invlist_zero_addr(inv_list) ^ 1)));
5968 * But, this is only valid if len is not 0. The consequences of not doing
9479a769
KW
5969 * this is that the memory allocation code may think that 1 more UV is
5970 * being used than actually is, and so might do an unnecessary grow. That
5971 * seems worth not bothering to make this the precise amount.
25e94a65
KW
5972 *
5973 * Note that when inverting, SvCUR shouldn't change */
c56a880b
KW
5974}
5975
d764b54e 5976PERL_STATIC_INLINE UV
a25abddc 5977S_invlist_max(pTHX_ SV* const invlist)
d764b54e
KW
5978{
5979 /* Returns the maximum number of elements storable in the inversion list's
5980 * array, without having to realloc() */
5981
d764b54e
KW
5982 PERL_ARGS_ASSERT_INVLIST_MAX;
5983
005b65ed 5984 return FROM_INTERNAL_SIZE(SvLEN(invlist));
d764b54e
KW
5985}
5986
f1b67122
KW
5987PERL_STATIC_INLINE UV*
5988S_get_invlist_zero_addr(pTHX_ SV* invlist)
5989{
5990 /* Return the address of the UV that is reserved to hold 0 if the inversion
5991 * list contains 0. This has to be the last element of the heading, as the
5992 * list proper starts with either it if 0, or the next element if not.
5993 * (But we force it to contain either 0 or 1) */
5994
5995 PERL_ARGS_ASSERT_GET_INVLIST_ZERO_ADDR;
5996
5997 return (UV *) (SvPVX(invlist) + (INVLIST_ZERO_OFFSET * sizeof (UV)));
5998}
d764b54e 5999
8d69a883 6000#ifndef PERL_IN_XSUB_RE
a25abddc 6001SV*
d764b54e
KW
6002Perl__new_invlist(pTHX_ IV initial_size)
6003{
6004
6005 /* Return a pointer to a newly constructed inversion list, with enough
6006 * space to store 'initial_size' elements. If that number is negative, a
6007 * system default is used instead */
6008
97b14ce7
KW
6009 SV* new_list;
6010
d764b54e
KW
6011 if (initial_size < 0) {
6012 initial_size = INVLIST_INITIAL_LEN;
6013 }
6014
6015 /* Allocate the initial space */
97b14ce7
KW
6016 new_list = newSV(TO_INTERNAL_SIZE(initial_size));
6017 invlist_set_len(new_list, 0);
6018
f3dc70d1
KW
6019 /* Force iterinit() to be used to get iteration to work */
6020 *get_invlist_iter_addr(new_list) = UV_MAX;
6021
f1b67122
KW
6022 /* This should force a segfault if a method doesn't initialize this
6023 * properly */
6024 *get_invlist_zero_addr(new_list) = UV_MAX;
6025
97b14ce7 6026 return new_list;
d764b54e 6027}
8d69a883 6028#endif
d764b54e 6029
d764b54e 6030STATIC void
a25abddc 6031S_invlist_extend(pTHX_ SV* const invlist, const UV new_max)
d764b54e 6032{
62672576 6033 /* Grow the maximum size of an inversion list */
d764b54e
KW
6034
6035 PERL_ARGS_ASSERT_INVLIST_EXTEND;
6036
005b65ed 6037 SvGROW((SV *)invlist, TO_INTERNAL_SIZE(new_max));
d764b54e
KW
6038}
6039
6040PERL_STATIC_INLINE void
a25abddc 6041S_invlist_trim(pTHX_ SV* const invlist)
d764b54e
KW
6042{
6043 PERL_ARGS_ASSERT_INVLIST_TRIM;
6044
6045 /* Change the length of the inversion list to how many entries it currently
6046 * has */
6047
62672576 6048 SvPV_shrink_to_cur((SV *) invlist);
d764b54e
KW
6049}
6050
6051/* An element is in an inversion list iff its index is even numbered: 0, 2, 4,
6052 * etc */
6053
6054#define ELEMENT_IN_INVLIST_SET(i) (! ((i) & 1))
874816bc 6055#define PREV_ELEMENT_IN_INVLIST_SET(i) (! ELEMENT_IN_INVLIST_SET(i))
d764b54e 6056
8d69a883 6057#ifndef PERL_IN_XSUB_RE
d764b54e 6058void
a25abddc 6059Perl__append_range_to_invlist(pTHX_ SV* const invlist, const UV start, const UV end)
d764b54e
KW
6060{
6061 /* Subject to change or removal. Append the range from 'start' to 'end' at
6062 * the end of the inversion list. The range must be above any existing
6063 * ones. */
6064
f1b67122 6065 UV* array;
d764b54e
KW
6066 UV max = invlist_max(invlist);
6067 UV len = invlist_len(invlist);
6068
6069 PERL_ARGS_ASSERT__APPEND_RANGE_TO_INVLIST;
6070
f1b67122
KW
6071 if (len == 0) { /* Empty lists must be initialized */
6072 array = _invlist_array_init(invlist, start == 0);
6073 }
6074 else {
d764b54e
KW
6075 /* Here, the existing list is non-empty. The current max entry in the
6076 * list is generally the first value not in the set, except when the
6077 * set extends to the end of permissible values, in which case it is
6078 * the first entry in that final set, and so this call is an attempt to
6079 * append out-of-order */
6080
6081 UV final_element = len - 1;
f1b67122 6082 array = invlist_array(invlist);
d764b54e
KW
6083 if (array[final_element] > start
6084 || ELEMENT_IN_INVLIST_SET(final_element))
6085 {
6086 Perl_croak(aTHX_ "panic: attempting to append to an inversion list, but wasn't at the end of the list");
6087 }
6088
6089 /* Here, it is a legal append. If the new range begins with the first
6090 * value not in the set, it is extending the set, so the new first
6091 * value not in the set is one greater than the newly extended range.
6092 * */
6093 if (array[final_element] == start) {
6094 if (end != UV_MAX) {
6095 array[final_element] = end + 1;
6096 }
6097 else {
6098 /* But if the end is the maximum representable on the machine,
6099 * just let the range that this would extend have no end */
6100 invlist_set_len(invlist, len - 1);
6101 }
6102 return;
6103 }
6104 }
6105
6106 /* Here the new range doesn't extend any existing set. Add it */
6107
6108 len += 2; /* Includes an element each for the start and end of range */
6109
6110 /* If overflows the existing space, extend, which may cause the array to be
6111 * moved */
6112 if (max < len) {
6113 invlist_extend(invlist, len);
f1b67122
KW
6114 invlist_set_len(invlist, len); /* Have to set len here to avoid assert
6115 failure in invlist_array() */
d764b54e
KW
6116 array = invlist_array(invlist);
6117 }
f1b67122
KW
6118 else {
6119 invlist_set_len(invlist, len);
6120 }
d764b54e
KW
6121
6122 /* The next item on the list starts the range, the one after that is
6123 * one past the new range. */
6124 array[len - 2] = start;
6125 if (end != UV_MAX) {
6126 array[len - 1] = end + 1;
6127 }
6128 else {
6129 /* But if the end is the maximum representable on the machine, just let
6130 * the range have no end */
6131 invlist_set_len(invlist, len - 1);
6132 }
6133}
6134
86f766ab
KW
6135void
6136Perl__invlist_union(pTHX_ SV* const a, SV* const b, SV** output)
d764b54e 6137{
a2995b7f
KW
6138 /* Take the union of two inversion lists and point 'result' to it. If
6139 * 'result' on input points to one of the two lists, the reference count to
6140 * that list will be decremented.
d764b54e
KW
6141 * The basis for this comes from "Unicode Demystified" Chapter 13 by
6142 * Richard Gillam, published by Addison-Wesley, and explained at some
6143 * length there. The preface says to incorporate its examples into your
6144 * code at your own risk.
6145 *
6146 * The algorithm is like a merge sort.
6147 *
6148 * XXX A potential performance improvement is to keep track as we go along
6149 * if only one of the inputs contributes to the result, meaning the other
6150 * is a subset of that one. In that case, we can skip the final copy and
a2995b7f
KW
6151 * return the larger of the input lists, but then outside code might need
6152 * to keep track of whether to free the input list or not */
d764b54e 6153
f1b67122
KW
6154 UV* array_a; /* a's array */
6155 UV* array_b;
6156 UV len_a; /* length of a's array */
6157 UV len_b;
d764b54e 6158
a25abddc 6159 SV* u; /* the resulting union */
d764b54e
KW
6160 UV* array_u;
6161 UV len_u;
6162
6163 UV i_a = 0; /* current index into a's array */
6164 UV i_b = 0;
6165 UV i_u = 0;
6166
6167 /* running count, as explained in the algorithm source book; items are
6168 * stopped accumulating and are output when the count changes to/from 0.
6169 * The count is incremented when we start a range that's in the set, and
6170 * decremented when we start a range that's not in the set. So its range
6171 * is 0 to 2. Only when the count is zero is something not in the set.
6172 */
6173 UV count = 0;
6174
37e85ffe 6175 PERL_ARGS_ASSERT__INVLIST_UNION;
d764b54e 6176
f1b67122
KW
6177 /* If either one is empty, the union is the other one */
6178 len_a = invlist_len(a);
6179 if (len_a == 0) {
6180 if (output == &a) {
6181 SvREFCNT_dec(a);
6182 }
6183 else if (output != &b) {
6184 *output = invlist_clone(b);
6185 }
6186 /* else *output already = b; */
6187 return;
6188 }
6189 else if ((len_b = invlist_len(b)) == 0) {
6190 if (output == &b) {
6191 SvREFCNT_dec(b);
6192 }
6193 else if (output != &a) {
6194 *output = invlist_clone(a);
6195 }
6196 /* else *output already = a; */
6197 return;
6198 }
6199
6200 /* Here both lists exist and are non-empty */
6201 array_a = invlist_array(a);
6202 array_b = invlist_array(b);
6203
d764b54e
KW
6204 /* Size the union for the worst case: that the sets are completely
6205 * disjoint */
6206 u = _new_invlist(len_a + len_b);
f1b67122
KW
6207
6208 /* Will contain U+0000 if either component does */
6209 array_u = _invlist_array_init(u, (len_a > 0 && array_a[0] == 0)
6210 || (len_b > 0 && array_b[0] == 0));
d764b54e
KW
6211
6212 /* Go through each list item by item, stopping when exhausted one of
6213 * them */
6214 while (i_a < len_a && i_b < len_b) {
6215 UV cp; /* The element to potentially add to the union's array */
6216 bool cp_in_set; /* is it in the the input list's set or not */
6217
6218 /* We need to take one or the other of the two inputs for the union.
6219 * Since we are merging two sorted lists, we take the smaller of the
6220 * next items. In case of a tie, we take the one that is in its set
6221 * first. If we took one not in the set first, it would decrement the
6222 * count, possibly to 0 which would cause it to be output as ending the
6223 * range, and the next time through we would take the same number, and
6224 * output it again as beginning the next range. By doing it the
6225 * opposite way, there is no possibility that the count will be
6226 * momentarily decremented to 0, and thus the two adjoining ranges will
6227 * be seamlessly merged. (In a tie and both are in the set or both not
6228 * in the set, it doesn't matter which we take first.) */
6229 if (array_a[i_a] < array_b[i_b]
6230 || (array_a[i_a] == array_b[i_b] && ELEMENT_IN_INVLIST_SET(i_a)))
6231 {
6232 cp_in_set = ELEMENT_IN_INVLIST_SET(i_a);
6233 cp= array_a[i_a++];
6234 }
6235 else {
6236 cp_in_set = ELEMENT_IN_INVLIST_SET(i_b);
6237 cp= array_b[i_b++];
6238 }
6239
6240 /* Here, have chosen which of the two inputs to look at. Only output
6241 * if the running count changes to/from 0, which marks the
6242 * beginning/end of a range in that's in the set */
6243 if (cp_in_set) {
6244 if (count == 0) {
6245 array_u[i_u++] = cp;
6246 }
6247 count++;
6248 }
6249 else {
6250 count--;
6251 if (count == 0) {
6252 array_u[i_u++] = cp;
6253 }
6254 }
6255 }
6256
6257 /* Here, we are finished going through at least one of the lists, which
6258 * means there is something remaining in at most one. We check if the list
6259 * that hasn't been exhausted is positioned such that we are in the middle
bac5f0ae
KW
6260 * of a range in its set or not. (i_a and i_b point to the element beyond
6261 * the one we care about.) If in the set, we decrement 'count'; if 0, there
6262 * is potentially more to output.
d764b54e
KW
6263 * There are four cases:
6264 * 1) Both weren't in their sets, count is 0, and remains 0. What's left
6265 * in the union is entirely from the non-exhausted set.
6266 * 2) Both were in their sets, count is 2. Nothing further should
6267 * be output, as everything that remains will be in the exhausted
6268 * list's set, hence in the union; decrementing to 1 but not 0 insures
6269 * that
6270 * 3) the exhausted was in its set, non-exhausted isn't, count is 1.
6271 * Nothing further should be output because the union includes
bac5f0ae 6272 * everything from the exhausted set. Not decrementing ensures that.
d764b54e
KW
6273 * 4) the exhausted wasn't in its set, non-exhausted is, count is 1;
6274 * decrementing to 0 insures that we look at the remainder of the
6275 * non-exhausted set */
bac5f0ae
KW
6276 if ((i_a != len_a && PREV_ELEMENT_IN_INVLIST_SET(i_a))
6277 || (i_b != len_b && PREV_ELEMENT_IN_INVLIST_SET(i_b)))
d764b54e
KW
6278 {
6279 count--;
6280 }
6281
6282 /* The final length is what we've output so far, plus what else is about to
6283 * be output. (If 'count' is non-zero, then the input list we exhausted
6284 * has everything remaining up to the machine's limit in its set, and hence
6285 * in the union, so there will be no further output. */
6286 len_u = i_u;
6287 if (count == 0) {
6288 /* At most one of the subexpressions will be non-zero */
6289 len_u += (len_a - i_a) + (len_b - i_b);
6290 }
6291
6292 /* Set result to final length, which can change the pointer to array_u, so
6293 * re-find it */
6294 if (len_u != invlist_len(u)) {
6295 invlist_set_len(u, len_u);
6296 invlist_trim(u);
6297 array_u = invlist_array(u);
6298 }
6299
6300 /* When 'count' is 0, the list that was exhausted (if one was shorter than
6301 * the other) ended with everything above it not in its set. That means
6302 * that the remaining part of the union is precisely the same as the
6303 * non-exhausted list, so can just copy it unchanged. (If both list were
6304 * exhausted at the same time, then the operations below will be both 0.)
6305 */
6306 if (count == 0) {
6307 IV copy_count; /* At most one will have a non-zero copy count */
6308 if ((copy_count = len_a - i_a) > 0) {
6309 Copy(array_a + i_a, array_u + i_u, copy_count, UV);
6310 }
6311 else if ((copy_count = len_b - i_b) > 0) {
6312 Copy(array_b + i_b, array_u + i_u, copy_count, UV);
6313 }
6314 }
6315
a2995b7f
KW
6316 /* We may be removing a reference to one of the inputs */
6317 if (&a == output || &b == output) {
6318 SvREFCNT_dec(*output);
6319 }
6320
6321 *output = u;
6322 return;
d764b54e
KW
6323}
6324
86f766ab
KW
6325void
6326Perl__invlist_intersection(pTHX_ SV* const a, SV* const b, SV** i)
d764b54e 6327{
a2995b7f
KW
6328 /* Take the intersection of two inversion lists and point 'i' to it. If
6329 * 'i' on input points to one of the two lists, the reference count to that
6330 * list will be decremented.
6331 * The basis for this comes from "Unicode Demystified" Chapter 13 by
6332 * Richard Gillam, published by Addison-Wesley, and explained at some
6333 * length there. The preface says to incorporate its examples into your
6334 * code at your own risk. In fact, it had bugs
d764b54e
KW
6335 *
6336 * The algorithm is like a merge sort, and is essentially the same as the
6337 * union above
6338 */
6339
f1b67122
KW
6340 UV* array_a; /* a's array */
6341 UV* array_b;
6342 UV len_a; /* length of a's array */
6343 UV len_b;
d764b54e 6344
a25abddc 6345 SV* r; /* the resulting intersection */
d764b54e
KW
6346 UV* array_r;
6347 UV len_r;
6348
6349 UV i_a = 0; /* current index into a's array */
6350 UV i_b = 0;
6351 UV i_r = 0;
6352
6353 /* running count, as explained in the algorithm source book; items are
6354 * stopped accumulating and are output when the count changes to/from 2.
6355 * The count is incremented when we start a range that's in the set, and
6356 * decremented when we start a range that's not in the set. So its range
6357 * is 0 to 2. Only when the count is 2 is something in the intersection.
6358 */
6359 UV count = 0;
6360
37e85ffe 6361 PERL_ARGS_ASSERT__INVLIST_INTERSECTION;
d764b54e 6362
f1b67122
KW
6363 /* If either one is empty, the intersection is null */
6364 len_a = invlist_len(a);
6365 if ((len_a == 0) || ((len_b = invlist_len(b)) == 0)) {
6366 *i = _new_invlist(0);
6367
6368 /* If the result is the same as one of the inputs, the input is being
6369 * overwritten */
6370 if (i == &a) {
6371 SvREFCNT_dec(a);
6372 }
6373 else if (i == &b) {
6374 SvREFCNT_dec(b);
6375 }
6376 return;
6377 }
6378
6379 /* Here both lists exist and are non-empty */
6380 array_a = invlist_array(a);
6381 array_b = invlist_array(b);
6382
d764b54e
KW
6383 /* Size the intersection for the worst case: that the intersection ends up
6384 * fragmenting everything to be completely disjoint */
6385 r= _new_invlist(len_a + len_b);
f1b67122
KW
6386
6387 /* Will contain U+0000 iff both components do */
6388 array_r = _invlist_array_init(r, len_a > 0 && array_a[0] == 0
6389 && len_b > 0 && array_b[0] == 0);
d764b54e
KW
6390
6391 /* Go through each list item by item, stopping when exhausted one of
6392 * them */
6393 while (i_a < len_a && i_b < len_b) {
6394 UV cp; /* The element to potentially add to the intersection's
6395 array */
6396 bool cp_in_set; /* Is it in the input list's set or not */
6397
c4a30257
KW
6398 /* We need to take one or the other of the two inputs for the
6399 * intersection. Since we are merging two sorted lists, we take the
6400 * smaller of the next items. In case of a tie, we take the one that
6401 * is not in its set first (a difference from the union algorithm). If
6402 * we took one in the set first, it would increment the count, possibly
6403 * to 2 which would cause it to be output as starting a range in the
6404 * intersection, and the next time through we would take that same
6405 * number, and output it again as ending the set. By doing it the
6406 * opposite of this, there is no possibility that the count will be
6407 * momentarily incremented to 2. (In a tie and both are in the set or
6408 * both not in the set, it doesn't matter which we take first.) */
d764b54e
KW
6409 if (array_a[i_a] < array_b[i_b]
6410 || (array_a[i_a] == array_b[i_b] && ! ELEMENT_IN_INVLIST_SET(i_a)))
6411 {
6412 cp_in_set = ELEMENT_IN_INVLIST_SET(i_a);
6413 cp= array_a[i_a++];
6414 }
6415 else {
6416 cp_in_set = ELEMENT_IN_INVLIST_SET(i_b);
6417 cp= array_b[i_b++];
6418 }
6419
6420 /* Here, have chosen which of the two inputs to look at. Only output
6421 * if the running count changes to/from 2, which marks the
6422 * beginning/end of a range that's in the intersection */
6423 if (cp_in_set) {
6424 count++;
6425 if (count == 2) {
6426 array_r[i_r++] = cp;
6427 }
6428 }
6429 else {
6430 if (count == 2) {
6431 array_r[i_r++] = cp;
6432 }
6433 count--;
6434 }
6435 }
6436
c4a30257
KW
6437 /* Here, we are finished going through at least one of the lists, which
6438 * means there is something remaining in at most one. We check if the list
6439 * that has been exhausted is positioned such that we are in the middle
6440 * of a range in its set or not. (i_a and i_b point to elements 1 beyond
6441 * the ones we care about.) There are four cases:
6442 * 1) Both weren't in their sets, count is 0, and remains 0. There's
6443 * nothing left in the intersection.
6444 * 2) Both were in their sets, count is 2 and perhaps is incremented to
6445 * above 2. What should be output is exactly that which is in the
6446 * non-exhausted set, as everything it has is also in the intersection
6447 * set, and everything it doesn't have can't be in the intersection
6448 * 3) The exhausted was in its set, non-exhausted isn't, count is 1, and
6449 * gets incremented to 2. Like the previous case, the intersection is
6450 * everything that remains in the non-exhausted set.
6451 * 4) the exhausted wasn't in its set, non-exhausted is, count is 1, and
6452 * remains 1. And the intersection has nothing more. */
6453 if ((i_a == len_a && PREV_ELEMENT_IN_INVLIST_SET(i_a))
6454 || (i_b == len_b && PREV_ELEMENT_IN_INVLIST_SET(i_b)))
d764b54e 6455 {
c4a30257 6456 count++;
d764b54e
KW
6457 }
6458
6459 /* The final length is what we've output so far plus what else is in the
c4a30257 6460 * intersection. At most one of the subexpressions below will be non-zero */
d764b54e 6461 len_r = i_r;
c4a30257 6462 if (count >= 2) {
d764b54e
KW
6463 len_r += (len_a - i_a) + (len_b - i_b);
6464 }
6465
6466 /* Set result to final length, which can change the pointer to array_r, so
6467 * re-find it */
6468 if (len_r != invlist_len(r)) {
6469 invlist_set_len(r, len_r);
6470 invlist_trim(r);
6471 array_r = invlist_array(r);
6472 }
6473
6474 /* Finish outputting any remaining */
c4a30257 6475 if (count >= 2) { /* At most one will have a non-zero copy count */
d764b54e
KW
6476 IV copy_count;
6477 if ((copy_count = len_a - i_a) > 0) {
6478 Copy(array_a + i_a, array_r + i_r, copy_count, UV);
6479 }
6480 else if ((copy_count = len_b - i_b) > 0) {
6481 Copy(array_b + i_b, array_r + i_r, copy_count, UV);
6482 }
6483 }
6484
a2995b7f
KW
6485 /* We may be removing a reference to one of the inputs */
6486 if (&a == i || &b == i) {
6487 SvREFCNT_dec(*i);
6488 }
6489
6490 *i = r;
6491 return;
d764b54e
KW
6492}
6493
3c234b35
TC
6494#endif
6495
a25abddc
KW
6496STATIC SV*
6497S_add_range_to_invlist(pTHX_ SV* invlist, const UV start, const UV end)
d764b54e
KW
6498{
6499 /* Add the range from 'start' to 'end' inclusive to the inversion list's
6500 * set. A pointer to the inversion list is returned. This may actually be
c52a3e71
KW
6501 * a new list, in which case the passed in one has been destroyed. The
6502 * passed in inversion list can be NULL, in which case a new one is created
6503 * with just the one range in it */
d764b54e 6504
a25abddc 6505 SV* range_invlist;
c52a3e71 6506 UV len;
d764b54e 6507
c52a3e71
KW
6508 if (invlist == NULL) {
6509 invlist = _new_invlist(2);
6510 len = 0;
6511 }
6512 else {
6513 len = invlist_len(invlist);
6514 }
d764b54e
KW
6515
6516 /* If comes after the final entry, can just append it to the end */
6517 if (len == 0
6518 || start >= invlist_array(invlist)
6519 [invlist_len(invlist) - 1])
6520 {
6521 _append_range_to_invlist(invlist, start, end);
6522 return invlist;
6523 }
6524
6525 /* Here, can't just append things, create and return a new inversion list
6526 * which is the union of this range and the existing inversion list */
6527 range_invlist = _new_invlist(2);
6528 _append_range_to_invlist(range_invlist, start, end);
6529
37e85ffe 6530 _invlist_union(invlist, range_invlist, &invlist);
d764b54e 6531
0a89af2f 6532 /* The temporary can be freed */
318c430e 6533 SvREFCNT_dec(range_invlist);
d764b54e 6534
6d63a9fb 6535 return invlist;
d764b54e
KW
6536}
6537
a25abddc
KW
6538PERL_STATIC_INLINE SV*
6539S_add_cp_to_invlist(pTHX_ SV* invlist, const UV cp) {
c229b64c
KW
6540 return add_range_to_invlist(invlist, cp, cp);
6541}
6542
3c234b35 6543#ifndef PERL_IN_XSUB_RE
86f766ab
KW
6544void
6545Perl__invlist_invert(pTHX_ SV* const invlist)
25e94a65
KW
6546{
6547 /* Complement the input inversion list. This adds a 0 if the list didn't
6548 * have a zero; removes it otherwise. As described above, the data
6549 * structure is set up so that this is very efficient */
6550
6551 UV* len_pos = get_invlist_len_addr(invlist);
6552
37e85ffe 6553 PERL_ARGS_ASSERT__INVLIST_INVERT;
25e94a65
KW
6554
6555 /* The inverse of matching nothing is matching everything */
6556 if (*len_pos == 0) {
6557 _append_range_to_invlist(invlist, 0, UV_MAX);
6558 return;
6559 }
6560
6561 /* The exclusive or complents 0 to 1; and 1 to 0. If the result is 1, the
6562 * zero element was a 0, so it is being removed, so the length decrements
6563 * by 1; and vice-versa. SvCUR is unaffected */
6564 if (*get_invlist_zero_addr(invlist) ^= 1) {
6565 (*len_pos)--;
6566 }
6567 else {
6568 (*len_pos)++;
6569 }
6570}
89302fc2
KW
6571
6572void
6573Perl__invlist_invert_prop(pTHX_ SV* const invlist)
6574{
6575 /* Complement the input inversion list (which must be a Unicode property,
6576 * all of which don't match above the Unicode maximum code point.) And
6577 * Perl has chosen to not have the inversion match above that either. This
6578 * adds a 0x110000 if the list didn't end with it, and removes it if it did
6579 */
6580
6581 UV len;
6582 UV* array;
6583
6584 PERL_ARGS_ASSERT__INVLIST_INVERT_PROP;
6585
6586 _invlist_invert(invlist);
6587
6588 len = invlist_len(invlist);
6589
6590 if (len != 0) { /* If empty do nothing */
6591 array = invlist_array(invlist);
6592 if (array[len - 1] != PERL_UNICODE_MAX + 1) {
6593 /* Add 0x110000. First, grow if necessary */
6594 len++;
6595 if (invlist_max(invlist) < len) {
6596 invlist_extend(invlist, len);
6597 array = invlist_array(invlist);
6598 }
6599 invlist_set_len(invlist, len);
6600 array[len - 1] = PERL_UNICODE_MAX + 1;
6601 }
6602 else { /* Remove the 0x110000 */
6603 invlist_set_len(invlist, len - 1);
6604 }
6605 }
6606
6607 return;
6608}
3c234b35 6609#endif
25e94a65
KW
6610
6611PERL_STATIC_INLINE SV*
6612S_invlist_clone(pTHX_ SV* const invlist)
6613{
6614
6615 /* Return a new inversion list that is a copy of the input one, which is
6616 * unchanged */
6617
6618 SV* new_invlist = _new_invlist(SvCUR(invlist));
6619
6620 PERL_ARGS_ASSERT_INVLIST_CLONE;
6621
6622 Copy(SvPVX(invlist), SvPVX(new_invlist), SvCUR(invlist), char);
6623 return new_invlist;
6624}
6625
3c234b35 6626#ifndef PERL_IN_XSUB_RE
86f766ab
KW
6627void
6628Perl__invlist_subtract(pTHX_ SV* const a, SV* const b, SV** result)
25e94a65
KW
6629{
6630 /* Point result to an inversion list which consists of all elements in 'a'
6631 * that aren't also in 'b' */
6632
37e85ffe 6633 PERL_ARGS_ASSERT__INVLIST_SUBTRACT;
25e94a65
KW
6634
6635 /* Subtracting nothing retains the original */
6636 if (invlist_len(b) == 0) {
6637
6638 /* If the result is not to be the same variable as the original, create
6639 * a copy */
6640 if (result != &a) {
6641 *result = invlist_clone(a);
6642 }
6643 } else {
6644 SV *b_copy = invlist_clone(b);
37e85ffe
KW
6645 _invlist_invert(b_copy); /* Everything not in 'b' */
6646 _invlist_intersection(a, b_copy, result); /* Everything in 'a' not in
25e94a65
KW
6647 'b' */
6648 SvREFCNT_dec(b_copy);
6649 }
6650
6651 if (result == &b) {
6652 SvREFCNT_dec(b);
6653 }
6654
6655 return;
6656}
3c234b35 6657#endif
25e94a65 6658
f3dc70d1
KW
6659PERL_STATIC_INLINE UV*
6660S_get_invlist_iter_addr(pTHX_ SV* invlist)
6661{
6662 /* Return the address of the UV that contains the current iteration
6663 * position */
6664
6665 PERL_ARGS_ASSERT_GET_INVLIST_ITER_ADDR;
6666
6667 return (UV *) (SvPVX(invlist) + (INVLIST_ITER_OFFSET * sizeof (UV)));
6668}
6669
6670PERL_STATIC_INLINE void
6671S_invlist_iterinit(pTHX_ SV* invlist) /* Initialize iterator for invlist */
6672{
6673 PERL_ARGS_ASSERT_INVLIST_ITERINIT;
6674
6675 *get_invlist_iter_addr(invlist) = 0;
6676}
6677
6678STATIC bool
6679S_invlist_iternext(pTHX_ SV* invlist, UV* start, UV* end)
6680{
6681 UV* pos = get_invlist_iter_addr(invlist);
6682 UV len = invlist_len(invlist);
6683 UV *array;
6684
6685 PERL_ARGS_ASSERT_INVLIST_ITERNEXT;
6686
6687 if (*pos >= len) {
6688 *pos = UV_MAX; /* Force iternit() to be required next time */
6689 return FALSE;
6690 }
6691
6692 array = invlist_array(invlist);
6693
6694 *start = array[(*pos)++];
6695
6696 if (*pos >= len) {
6697 *end = UV_MAX;
6698 }
6699 else {
6700 *end = array[(*pos)++] - 1;
6701 }
6702
6703 return TRUE;
6704}
6705
768318b8
KW
6706#if 0
6707void
6708S_invlist_dump(pTHX_ SV* const invlist, const char * const header)
6709{
6710 /* Dumps out the ranges in an inversion list. The string 'header'
6711 * if present is output on a line before the first range */
6712
6713 UV start, end;
6714
6715 if (header && strlen(header)) {
6716 PerlIO_printf(Perl_debug_log, "%s\n", header);
6717 }
6718 invlist_iterinit(invlist);
6719 while (invlist_iternext(invlist, &start, &end)) {
6720 if (end == UV_MAX) {
6721 PerlIO_printf(Perl_debug_log, "0x%04"UVXf" .. INFINITY\n", start);
6722 }
6723 else {
6724 PerlIO_printf(Perl_debug_log, "0x%04"UVXf" .. 0x%04"UVXf"\n", start, end);
6725 }
6726 }
6727}
6728#endif
6729
97b14ce7 6730#undef HEADER_LENGTH
060b7a35 6731#undef INVLIST_INITIAL_LENGTH
005b65ed
KW
6732#undef TO_INTERNAL_SIZE
6733#undef FROM_INTERNAL_SIZE
f1b67122
KW
6734#undef INVLIST_LEN_OFFSET
6735#undef INVLIST_ZERO_OFFSET
f3dc70d1 6736#undef INVLIST_ITER_OFFSET
060b7a35 6737
d764b54e
KW
6738/* End of inversion list object */
6739
a687059c
LW
6740/*
6741 - reg - regular expression, i.e. main body or parenthesized thing
6742 *
6743 * Caller must absorb opening parenthesis.
6744 *
6745 * Combining parenthesis handling with the base level of regular expression
6746 * is a trifle forced, but the need to tie the tails of the branches to what
6747 * follows makes it hard to avoid.
6748 */
07be1b83
YO
6749#define REGTAIL(x,y,z) regtail((x),(y),(z),depth+1)
6750#ifdef DEBUGGING
6751#define REGTAIL_STUDY(x,y,z) regtail_study((x),(y),(z),depth+1)
6752#else
6753#define REGTAIL_STUDY(x,y,z) regtail((x),(y),(z),depth+1)
6754#endif
3dab1dad 6755
76e3520e 6756STATIC regnode *
3dab1dad 6757S_reg(pTHX_ RExC_state_t *pRExC_state, I32 paren, I32 *flagp,U32 depth)
c277df42 6758 /* paren: Parenthesized? 0=top, 1=(, inside: changed to letter. */
a687059c 6759{
27da23d5 6760 dVAR;
c277df42
IZ
6761 register regnode *ret; /* Will be the head of the group. */
6762 register regnode *br;
6763 register regnode *lastbr;
cbbf8932 6764 register regnode *ender = NULL;
a0d0e21e 6765 register I32 parno = 0;
cbbf8932 6766 I32 flags;
f7819f85 6767 U32 oregflags = RExC_flags;
6136c704
AL
6768 bool have_branch = 0;
6769 bool is_open = 0;
594d7033
YO
6770 I32 freeze_paren = 0;
6771 I32 after_freeze = 0;
9d1d55b5
JP
6772
6773 /* for (?g), (?gc), and (?o) warnings; warning
6774 about (?c) will warn about (?g) -- japhy */
6775
6136c704
AL
6776#define WASTED_O 0x01
6777#define WASTED_G 0x02
6778#define WASTED_C 0x04
6779#define WASTED_GC (0x02|0x04)
cbbf8932 6780 I32 wastedflags = 0x00;
9d1d55b5 6781
fac92740 6782 char * parse_start = RExC_parse; /* MJD */
a28509cc 6783 char * const oregcomp_parse = RExC_parse;
a0d0e21e 6784
3dab1dad 6785 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
6786
6787 PERL_ARGS_ASSERT_REG;
3dab1dad
YO
6788 DEBUG_PARSE("reg ");
6789
821b33a5 6790 *flagp = 0; /* Tentatively. */
a0d0e21e 6791
9d1d55b5 6792
a0d0e21e
LW
6793 /* Make an OPEN node, if parenthesized. */
6794 if (paren) {
e2e6a0f1
YO
6795 if ( *RExC_parse == '*') { /* (*VERB:ARG) */
6796 char *start_verb = RExC_parse;
6797 STRLEN verb_len = 0;
6798 char *start_arg = NULL;
6799 unsigned char op = 0;
6800 int argok = 1;
6801 int internal_argval = 0; /* internal_argval is only useful if !argok */
6802 while ( *RExC_parse && *RExC_parse != ')' ) {
6803 if ( *RExC_parse == ':' ) {
6804 start_arg = RExC_parse + 1;
6805 break;
6806 }
6807 RExC_parse++;
6808 }
6809 ++start_verb;
6810 verb_len = RExC_parse - start_verb;
6811 if ( start_arg ) {
6812 RExC_parse++;
6813 while ( *RExC_parse && *RExC_parse != ')' )
6814 RExC_parse++;
6815 if ( *RExC_parse != ')' )
6816 vFAIL("Unterminated verb pattern argument");
6817 if ( RExC_parse == start_arg )
6818 start_arg = NULL;
6819 } else {
6820 if ( *RExC_parse != ')' )
6821 vFAIL("Unterminated verb pattern");
6822 }
5d458dd8 6823
e2e6a0f1
YO
6824 switch ( *start_verb ) {
6825 case 'A': /* (*ACCEPT) */
568a785a 6826 if ( memEQs(start_verb,verb_len,"ACCEPT") ) {
e2e6a0f1
YO
6827 op = ACCEPT;
6828 internal_argval = RExC_nestroot;
6829 }
6830 break;
6831 case 'C': /* (*COMMIT) */
568a785a 6832 if ( memEQs(start_verb,verb_len,"COMMIT") )
e2e6a0f1 6833 op = COMMIT;
e2e6a0f1
YO
6834 break;
6835 case 'F': /* (*FAIL) */
568a785a 6836 if ( verb_len==1 || memEQs(start_verb,verb_len,"FAIL") ) {
e2e6a0f1
YO
6837 op = OPFAIL;
6838 argok = 0;
6839 }
6840 break;
5d458dd8
YO
6841 case ':': /* (*:NAME) */
6842 case 'M': /* (*MARK:NAME) */
568a785a 6843 if ( verb_len==0 || memEQs(start_verb,verb_len,"MARK") ) {
e2e6a0f1 6844 op = MARKPOINT;
5d458dd8
YO
6845 argok = -1;
6846 }
6847 break;
6848 case 'P': /* (*PRUNE) */
568a785a 6849 if ( memEQs(start_verb,verb_len,"PRUNE") )
5d458dd8 6850 op = PRUNE;
e2e6a0f1 6851 break;
5d458dd8 6852 case 'S': /* (*SKIP) */
568a785a 6853 if ( memEQs(start_verb,verb_len,"SKIP") )
5d458dd8
YO
6854 op = SKIP;
6855 break;
6856 case 'T': /* (*THEN) */
6857 /* [19:06] <TimToady> :: is then */
568a785a 6858 if ( memEQs(start_verb,verb_len,"THEN") ) {
5d458dd8
YO
6859 op = CUTGROUP;
6860 RExC_seen |= REG_SEEN_CUTGROUP;
6861 }
e2e6a0f1
YO
6862 break;
6863 }
6864 if ( ! op ) {
6865 RExC_parse++;
6866 vFAIL3("Unknown verb pattern '%.*s'",
6867 verb_len, start_verb);
6868 }
6869 if ( argok ) {
6870 if ( start_arg && internal_argval ) {
6871 vFAIL3("Verb pattern '%.*s' may not have an argument",
6872 verb_len, start_verb);
6873 } else if ( argok < 0 && !start_arg ) {
6874 vFAIL3("Verb pattern '%.*s' has a mandatory argument",
6875 verb_len, start_verb);
6876 } else {
6877 ret = reganode(pRExC_state, op, internal_argval);
6878 if ( ! internal_argval && ! SIZE_ONLY ) {
6879 if (start_arg) {
6880 SV *sv = newSVpvn( start_arg, RExC_parse - start_arg);
6881 ARG(ret) = add_data( pRExC_state, 1, "S" );
f8fc2ecf 6882 RExC_rxi->data->data[ARG(ret)]=(void*)sv;
e2e6a0f1
YO
6883 ret->flags = 0;
6884 } else {
6885 ret->flags = 1;
6886 }
6887 }
6888 }
6889 if (!internal_argval)
6890 RExC_seen |= REG_SEEN_VERBARG;
6891 } else if ( start_arg ) {
6892 vFAIL3("Verb pattern '%.*s' may not have an argument",
6893 verb_len, start_verb);
6894 } else {
6895 ret = reg_node(pRExC_state, op);
6896 }
6897 nextchar(pRExC_state);
6898 return ret;
6899 } else
fac92740 6900 if (*RExC_parse == '?') { /* (?...) */
6136c704 6901 bool is_logical = 0;
a28509cc 6902 const char * const seqstart = RExC_parse;
fb85c044 6903 bool has_use_defaults = FALSE;
ca9dfc88 6904
830247a4
IZ
6905 RExC_parse++;
6906 paren = *RExC_parse++;
c277df42 6907 ret = NULL; /* For look-ahead/behind. */
a0d0e21e 6908 switch (paren) {
894be9b7 6909
1f1031fe
YO
6910 case 'P': /* (?P...) variants for those used to PCRE/Python */
6911 paren = *RExC_parse++;
6912 if ( paren == '<') /* (?P<...>) named capture */
6913 goto named_capture;
6914 else if (paren == '>') { /* (?P>name) named recursion */
6915 goto named_recursion;
6916 }
6917 else if (paren == '=') { /* (?P=...) named backref */
6918 /* this pretty much dupes the code for \k<NAME> in regatom(), if
6919 you change this make sure you change that */
6920 char* name_start = RExC_parse;
6921 U32 num = 0;
6922 SV *sv_dat = reg_scan_name(pRExC_state,
6923 SIZE_ONLY ? REG_RSN_RETURN_NULL : REG_RSN_RETURN_DATA);
6924 if (RExC_parse == name_start || *RExC_parse != ')')
6925 vFAIL2("Sequence %.3s... not terminated",parse_start);
6926
6927 if (!SIZE_ONLY) {
6928 num = add_data( pRExC_state, 1, "S" );
6929 RExC_rxi->data->data[num]=(void*)sv_dat;
5a5094bd 6930 SvREFCNT_inc_simple_void(sv_dat);
1f1031fe
YO
6931 }
6932 RExC_sawback = 1;
4444fd9f
KW
6933 ret = reganode(pRExC_state,
6934 ((! FOLD)
6935 ? NREF
2f7f8cb1
KW
6936 : (MORE_ASCII_RESTRICTED)
6937 ? NREFFA
6938 : (AT_LEAST_UNI_SEMANTICS)
6939 ? NREFFU
6940 : (LOC)
6941 ? NREFFL
6942 : NREFF),
4444fd9f 6943 num);
1f1031fe
YO
6944 *flagp |= HASWIDTH;
6945
6946 Set_Node_Offset(ret, parse_start+1);
6947 Set_Node_Cur_Length(ret); /* MJD */
6948
6949 nextchar(pRExC_state);
6950 return ret;
6951 }
57b84237
YO
6952 RExC_parse++;
6953 vFAIL3("Sequence (%.*s...) not recognized", RExC_parse-seqstart, seqstart);
6954 /*NOTREACHED*/
6955 case '<': /* (?<...) */
b81d288d 6956 if (*RExC_parse == '!')
c277df42 6957 paren = ',';
0a4db386 6958 else if (*RExC_parse != '=')
1f1031fe 6959 named_capture:
0a4db386 6960 { /* (?<...>) */
81714fb9 6961 char *name_start;
894be9b7 6962 SV *svname;
81714fb9
YO
6963 paren= '>';
6964 case '\'': /* (?'...') */
6965 name_start= RExC_parse;
0a4db386
YO
6966 svname = reg_scan_name(pRExC_state,
6967 SIZE_ONLY ? /* reverse test from the others */
6968 REG_RSN_RETURN_NAME :
6969 REG_RSN_RETURN_NULL);
57b84237
YO
6970 if (RExC_parse == name_start) {
6971 RExC_parse++;
6972 vFAIL3("Sequence (%.*s...) not recognized", RExC_parse-seqstart, seqstart);
6973 /*NOTREACHED*/
6974 }
81714fb9
YO
6975 if (*RExC_parse != paren)
6976 vFAIL2("Sequence (?%c... not terminated",
6977 paren=='>' ? '<' : paren);
6978 if (SIZE_ONLY) {
e62cc96a
YO
6979 HE *he_str;
6980 SV *sv_dat = NULL;
486ec47a 6981 if (!svname) /* shouldn't happen */
894be9b7
YO
6982 Perl_croak(aTHX_
6983 "panic: reg_scan_name returned NULL");
81714fb9
YO
6984 if (!RExC_paren_names) {
6985 RExC_paren_names= newHV();
ad64d0ec 6986 sv_2mortal(MUTABLE_SV(RExC_paren_names));
1f1031fe
YO
6987#ifdef DEBUGGING
6988 RExC_paren_name_list= newAV();
ad64d0ec 6989 sv_2mortal(MUTABLE_SV(RExC_paren_name_list));
1f1031fe 6990#endif
81714fb9
YO
6991 }
6992 he_str = hv_fetch_ent( RExC_paren_names, svname, 1, 0 );
e62cc96a 6993 if ( he_str )
81714fb9 6994 sv_dat = HeVAL(he_str);
e62cc96a 6995 if ( ! sv_dat ) {
81714fb9 6996 /* croak baby croak */
e62cc96a
YO
6997 Perl_croak(aTHX_
6998 "panic: paren_name hash element allocation failed");
6999 } else if ( SvPOK(sv_dat) ) {
76a476f9
YO
7000 /* (?|...) can mean we have dupes so scan to check
7001 its already been stored. Maybe a flag indicating
7002 we are inside such a construct would be useful,
7003 but the arrays are likely to be quite small, so
7004 for now we punt -- dmq */
7005 IV count = SvIV(sv_dat);
7006 I32 *pv = (I32*)SvPVX(sv_dat);
7007 IV i;
7008 for ( i = 0 ; i < count ; i++ ) {
7009 if ( pv[i] == RExC_npar ) {
7010 count = 0;
7011 break;
7012 }
7013 }
7014 if ( count ) {
7015 pv = (I32*)SvGROW(sv_dat, SvCUR(sv_dat) + sizeof(I32)+1);
7016 SvCUR_set(sv_dat, SvCUR(sv_dat) + sizeof(I32));
7017 pv[count] = RExC_npar;
3a92e6ae 7018 SvIV_set(sv_dat, SvIVX(sv_dat) + 1);
76a476f9 7019 }
81714fb9
YO
7020 } else {
7021 (void)SvUPGRADE(sv_dat,SVt_PVNV);
7022 sv_setpvn(sv_dat, (char *)&(RExC_npar), sizeof(I32));
7023 SvIOK_on(sv_dat);
3ec35e0f 7024 SvIV_set(sv_dat, 1);
e62cc96a 7025 }
1f1031fe 7026#ifdef DEBUGGING
17a3c617 7027 /* Yes this does cause a memory leak in debugging Perls */
1f1031fe
YO
7028 if (!av_store(RExC_paren_name_list, RExC_npar, SvREFCNT_inc(svname)))
7029 SvREFCNT_dec(svname);
7030#endif
e62cc96a 7031
81714fb9
YO
7032 /*sv_dump(sv_dat);*/
7033 }
7034 nextchar(pRExC_state);
7035 paren = 1;
7036 goto capturing_parens;
7037 }
7038 RExC_seen |= REG_SEEN_LOOKBEHIND;
b57e4118 7039 RExC_in_lookbehind++;
830247a4 7040 RExC_parse++;
fac92740 7041 case '=': /* (?=...) */
89c6a13e 7042 RExC_seen_zerolen++;
5c3fa2e7 7043 break;
fac92740 7044 case '!': /* (?!...) */
830247a4 7045 RExC_seen_zerolen++;
e2e6a0f1
YO
7046 if (*RExC_parse == ')') {
7047 ret=reg_node(pRExC_state, OPFAIL);
7048 nextchar(pRExC_state);
7049 return ret;
7050 }
594d7033
YO
7051 break;
7052 case '|': /* (?|...) */
7053 /* branch reset, behave like a (?:...) except that
7054 buffers in alternations share the same numbers */
7055 paren = ':';
7056 after_freeze = freeze_paren = RExC_npar;
7057 break;
fac92740
MJD
7058 case ':': /* (?:...) */
7059 case '>': /* (?>...) */
a0d0e21e 7060 break;
fac92740
MJD
7061 case '$': /* (?$...) */
7062 case '@': /* (?@...) */
8615cb43 7063 vFAIL2("Sequence (?%c...) not implemented", (int)paren);
a0d0e21e 7064 break;
fac92740 7065 case '#': /* (?#...) */
830247a4
IZ
7066 while (*RExC_parse && *RExC_parse != ')')
7067 RExC_parse++;
7068 if (*RExC_parse != ')')
c277df42 7069 FAIL("Sequence (?#... not terminated");
830247a4 7070 nextchar(pRExC_state);
a0d0e21e
LW
7071 *flagp = TRYAGAIN;
7072 return NULL;
894be9b7
YO
7073 case '0' : /* (?0) */
7074 case 'R' : /* (?R) */
7075 if (*RExC_parse != ')')
6bda09f9 7076 FAIL("Sequence (?R) not terminated");
1a147d38 7077 ret = reg_node(pRExC_state, GOSTART);
a3b492c3 7078 *flagp |= POSTPONED;
7f69552c
YO
7079 nextchar(pRExC_state);
7080 return ret;
7081 /*notreached*/
894be9b7
YO
7082 { /* named and numeric backreferences */
7083 I32 num;
894be9b7
YO
7084 case '&': /* (?&NAME) */
7085 parse_start = RExC_parse - 1;
1f1031fe 7086 named_recursion:
894be9b7 7087 {
0a4db386
YO
7088 SV *sv_dat = reg_scan_name(pRExC_state,
7089 SIZE_ONLY ? REG_RSN_RETURN_NULL : REG_RSN_RETURN_DATA);
7090 num = sv_dat ? *((I32 *)SvPVX(sv_dat)) : 0;
894be9b7
YO
7091 }
7092 goto gen_recurse_regop;
7093 /* NOT REACHED */
542fa716
YO
7094 case '+':
7095 if (!(RExC_parse[0] >= '1' && RExC_parse[0] <= '9')) {
7096 RExC_parse++;
7097 vFAIL("Illegal pattern");
7098 }
7099 goto parse_recursion;
7100 /* NOT REACHED*/
7101 case '-': /* (?-1) */
7102 if (!(RExC_parse[0] >= '1' && RExC_parse[0] <= '9')) {
7103 RExC_parse--; /* rewind to let it be handled later */
7104 goto parse_flags;
7105 }
7106 /*FALLTHROUGH */
6bda09f9
YO
7107 case '1': case '2': case '3': case '4': /* (?1) */
7108 case '5': case '6': case '7': case '8': case '9':
7109 RExC_parse--;
542fa716 7110 parse_recursion:
894be9b7
YO
7111 num = atoi(RExC_parse);
7112 parse_start = RExC_parse - 1; /* MJD */
542fa716
YO
7113 if (*RExC_parse == '-')
7114 RExC_parse++;
6bda09f9
YO
7115 while (isDIGIT(*RExC_parse))
7116 RExC_parse++;
7117 if (*RExC_parse!=')')
7118 vFAIL("Expecting close bracket");
894be9b7
YO
7119
7120 gen_recurse_regop:
542fa716
YO
7121 if ( paren == '-' ) {
7122 /*
7123 Diagram of capture buffer numbering.
7124 Top line is the normal capture buffer numbers
3b753521 7125 Bottom line is the negative indexing as from
542fa716
YO
7126 the X (the (?-2))
7127
7128 + 1 2 3 4 5 X 6 7
7129 /(a(x)y)(a(b(c(?-2)d)e)f)(g(h))/
7130 - 5 4 3 2 1 X x x
7131
7132 */
7133 num = RExC_npar + num;
7134 if (num < 1) {
7135 RExC_parse++;
7136 vFAIL("Reference to nonexistent group");
7137 }
7138 } else if ( paren == '+' ) {
7139 num = RExC_npar + num - 1;
7140 }
7141
1a147d38 7142 ret = reganode(pRExC_state, GOSUB, num);
6bda09f9
YO
7143 if (!SIZE_ONLY) {
7144 if (num > (I32)RExC_rx->nparens) {
7145 RExC_parse++;
7146 vFAIL("Reference to nonexistent group");
7147 }
40d049e4 7148 ARG2L_SET( ret, RExC_recurse_count++);
6bda09f9 7149 RExC_emit++;
226de585 7150 DEBUG_OPTIMISE_MORE_r(PerlIO_printf(Perl_debug_log,
acff02b8 7151 "Recurse #%"UVuf" to %"IVdf"\n", (UV)ARG(ret), (IV)ARG2L(ret)));
894be9b7 7152 } else {
6bda09f9 7153 RExC_size++;
6bda09f9 7154 }
0a4db386 7155 RExC_seen |= REG_SEEN_RECURSE;
6bda09f9 7156 Set_Node_Length(ret, 1 + regarglen[OP(ret)]); /* MJD */
58663417
RGS
7157 Set_Node_Offset(ret, parse_start); /* MJD */
7158
a3b492c3 7159 *flagp |= POSTPONED;
6bda09f9
YO
7160 nextchar(pRExC_state);
7161 return ret;
894be9b7
YO
7162 } /* named and numeric backreferences */
7163 /* NOT REACHED */
7164
fac92740 7165 case '?': /* (??...) */
6136c704 7166 is_logical = 1;
57b84237
YO
7167 if (*RExC_parse != '{') {
7168 RExC_parse++;
7169 vFAIL3("Sequence (%.*s...) not recognized", RExC_parse-seqstart, seqstart);
7170 /*NOTREACHED*/
7171 }
a3b492c3 7172 *flagp |= POSTPONED;
830247a4 7173 paren = *RExC_parse++;
0f5d15d6 7174 /* FALL THROUGH */
fac92740 7175 case '{': /* (?{...}) */
c277df42 7176 {
2eccd3b2
NC
7177 I32 count = 1;
7178 U32 n = 0;
c277df42 7179 char c;
830247a4 7180 char *s = RExC_parse;
c277df42 7181
830247a4
IZ
7182 RExC_seen_zerolen++;
7183 RExC_seen |= REG_SEEN_EVAL;
7184 while (count && (c = *RExC_parse)) {
6136c704
AL
7185 if (c == '\\') {
7186 if (RExC_parse[1])
7187 RExC_parse++;
7188 }
b81d288d 7189 else if (c == '{')
c277df42 7190 count++;
b81d288d 7191 else if (c == '}')
c277df42 7192 count--;
830247a4 7193 RExC_parse++;
c277df42 7194 }
6136c704 7195 if (*RExC_parse != ')') {
b81d288d 7196 RExC_parse = s;
b45f050a
JF
7197 vFAIL("Sequence (?{...}) not terminated or not {}-balanced");
7198 }
c277df42 7199 if (!SIZE_ONLY) {
f3548bdc 7200 PAD *pad;
6136c704
AL
7201 OP_4tree *sop, *rop;
7202 SV * const sv = newSVpvn(s, RExC_parse - 1 - s);
c277df42 7203
569233ed
SB
7204 ENTER;
7205 Perl_save_re_context(aTHX);
d59a8b3e 7206 rop = Perl_sv_compile_2op_is_broken(aTHX_ sv, &sop, "re", &pad);
9b978d73
DM
7207 sop->op_private |= OPpREFCOUNTED;
7208 /* re_dup will OpREFCNT_inc */
7209 OpREFCNT_set(sop, 1);
569233ed 7210 LEAVE;
c277df42 7211
830247a4 7212 n = add_data(pRExC_state, 3, "nop");
f8fc2ecf
YO
7213 RExC_rxi->data->data[n] = (void*)rop;
7214 RExC_rxi->data->data[n+1] = (void*)sop;
7215 RExC_rxi->data->data[n+2] = (void*)pad;
c277df42 7216 SvREFCNT_dec(sv);
a0ed51b3 7217 }
e24b16f9 7218 else { /* First pass */
830247a4 7219 if (PL_reginterp_cnt < ++RExC_seen_evals
923e4eb5 7220 && IN_PERL_RUNTIME)
2cd61cdb
IZ
7221 /* No compiled RE interpolated, has runtime
7222 components ===> unsafe. */
7223 FAIL("Eval-group not allowed at runtime, use re 'eval'");
5b61d3f7 7224 if (PL_tainting && PL_tainted)
cc6b7395 7225 FAIL("Eval-group in insecure regular expression");
54df2634 7226#if PERL_VERSION > 8
923e4eb5 7227 if (IN_PERL_COMPILETIME)
b5c19bd7 7228 PL_cv_has_eval = 1;
54df2634 7229#endif
c277df42 7230 }
b5c19bd7 7231
830247a4 7232 nextchar(pRExC_state);
6136c704 7233 if (is_logical) {
830247a4 7234 ret = reg_node(pRExC_state, LOGICAL);
0f5d15d6
IZ
7235 if (!SIZE_ONLY)
7236 ret->flags = 2;
3dab1dad 7237 REGTAIL(pRExC_state, ret, reganode(pRExC_state, EVAL, n));
fac92740 7238 /* deal with the length of this later - MJD */
0f5d15d6
IZ
7239 return ret;
7240 }
ccb2c380
MP
7241 ret = reganode(pRExC_state, EVAL, n);
7242 Set_Node_Length(ret, RExC_parse - parse_start + 1);
7243 Set_Node_Offset(ret, parse_start);
7244 return ret;
c277df42 7245 }
fac92740 7246 case '(': /* (?(?{...})...) and (?(?=...)...) */
c277df42 7247 {
0a4db386 7248 int is_define= 0;
fac92740 7249 if (RExC_parse[0] == '?') { /* (?(?...)) */
b81d288d
AB
7250 if (RExC_parse[1] == '=' || RExC_parse[1] == '!'
7251 || RExC_parse[1] == '<'
830247a4 7252 || RExC_parse[1] == '{') { /* Lookahead or eval. */
c277df42
IZ
7253 I32 flag;
7254
830247a4 7255 ret = reg_node(pRExC_state, LOGICAL);
0f5d15d6
IZ
7256 if (!SIZE_ONLY)
7257 ret->flags = 1;
3dab1dad 7258 REGTAIL(pRExC_state, ret, reg(pRExC_state, 1, &flag,depth+1));
c277df42 7259 goto insert_if;
b81d288d 7260 }
a0ed51b3 7261 }
0a4db386
YO
7262 else if ( RExC_parse[0] == '<' /* (?(<NAME>)...) */
7263 || RExC_parse[0] == '\'' ) /* (?('NAME')...) */
7264 {
7265 char ch = RExC_parse[0] == '<' ? '>' : '\'';
7266 char *name_start= RExC_parse++;
2eccd3b2 7267 U32 num = 0;
0a4db386
YO
7268 SV *sv_dat=reg_scan_name(pRExC_state,
7269 SIZE_ONLY ? REG_RSN_RETURN_NULL : REG_RSN_RETURN_DATA);
7270 if (RExC_parse == name_start || *RExC_parse != ch)
7271 vFAIL2("Sequence (?(%c... not terminated",
7272 (ch == '>' ? '<' : ch));
7273 RExC_parse++;
7274 if (!SIZE_ONLY) {
7275 num = add_data( pRExC_state, 1, "S" );
f8fc2ecf 7276 RExC_rxi->data->data[num]=(void*)sv_dat;
5a5094bd 7277 SvREFCNT_inc_simple_void(sv_dat);
0a4db386
YO
7278 }
7279 ret = reganode(pRExC_state,NGROUPP,num);
7280 goto insert_if_check_paren;
7281 }
7282 else if (RExC_parse[0] == 'D' &&
7283 RExC_parse[1] == 'E' &&
7284 RExC_parse[2] == 'F' &&
7285 RExC_parse[3] == 'I' &&
7286 RExC_parse[4] == 'N' &&
7287 RExC_parse[5] == 'E')
7288 {
7289 ret = reganode(pRExC_state,DEFINEP,0);
7290 RExC_parse +=6 ;
7291 is_define = 1;
7292 goto insert_if_check_paren;
7293 }
7294 else if (RExC_parse[0] == 'R') {
7295 RExC_parse++;
7296 parno = 0;
7297 if (RExC_parse[0] >= '1' && RExC_parse[0] <= '9' ) {
7298 parno = atoi(RExC_parse++);
7299 while (isDIGIT(*RExC_parse))
7300 RExC_parse++;
7301 } else if (RExC_parse[0] == '&') {
7302 SV *sv_dat;
7303 RExC_parse++;
7304 sv_dat = reg_scan_name(pRExC_state,
7305 SIZE_ONLY ? REG_RSN_RETURN_NULL : REG_RSN_RETURN_DATA);
7306 parno = sv_dat ? *((I32 *)SvPVX(sv_dat)) : 0;
7307 }
1a147d38 7308 ret = reganode(pRExC_state,INSUBP,parno);
0a4db386
YO
7309 goto insert_if_check_paren;
7310 }
830247a4 7311 else if (RExC_parse[0] >= '1' && RExC_parse[0] <= '9' ) {
fac92740 7312 /* (?(1)...) */
6136c704 7313 char c;
830247a4 7314 parno = atoi(RExC_parse++);
c277df42 7315
830247a4
IZ
7316 while (isDIGIT(*RExC_parse))
7317 RExC_parse++;
fac92740 7318 ret = reganode(pRExC_state, GROUPP, parno);
2af232bd 7319
0a4db386 7320 insert_if_check_paren:
830247a4 7321 if ((c = *nextchar(pRExC_state)) != ')')
b45f050a 7322 vFAIL("Switch condition not recognized");
c277df42 7323 insert_if:
3dab1dad
YO
7324 REGTAIL(pRExC_state, ret, reganode(pRExC_state, IFTHEN, 0));
7325 br = regbranch(pRExC_state, &flags, 1,depth+1);
c277df42 7326 if (br == NULL)
830247a4 7327 br = reganode(pRExC_state, LONGJMP, 0);
c277df42 7328 else
3dab1dad 7329 REGTAIL(pRExC_state, br, reganode(pRExC_state, LONGJMP, 0));
830247a4 7330 c = *nextchar(pRExC_state);
d1b80229
IZ
7331 if (flags&HASWIDTH)
7332 *flagp |= HASWIDTH;
c277df42 7333 if (c == '|') {
0a4db386
YO
7334 if (is_define)
7335 vFAIL("(?(DEFINE)....) does not allow branches");
830247a4 7336 lastbr = reganode(pRExC_state, IFTHEN, 0); /* Fake one for optimizer. */
3dab1dad
YO
7337 regbranch(pRExC_state, &flags, 1,depth+1);
7338 REGTAIL(pRExC_state, ret, lastbr);
d1b80229
IZ
7339 if (flags&HASWIDTH)
7340 *flagp |= HASWIDTH;
830247a4 7341 c = *nextchar(pRExC_state);
a0ed51b3
LW
7342 }
7343 else
c277df42
IZ
7344 lastbr = NULL;
7345 if (c != ')')
8615cb43 7346 vFAIL("Switch (?(condition)... contains too many branches");
830247a4 7347 ender = reg_node(pRExC_state, TAIL);
3dab1dad 7348 REGTAIL(pRExC_state, br, ender);
c277df42 7349 if (lastbr) {
3dab1dad
YO
7350 REGTAIL(pRExC_state, lastbr, ender);
7351 REGTAIL(pRExC_state, NEXTOPER(NEXTOPER(lastbr)), ender);
a0ed51b3
LW
7352 }
7353 else
3dab1dad 7354 REGTAIL(pRExC_state, ret, ender);
3b57cd43
YO
7355 RExC_size++; /* XXX WHY do we need this?!!
7356 For large programs it seems to be required
7357 but I can't figure out why. -- dmq*/
c277df42 7358 return ret;
a0ed51b3
LW
7359 }
7360 else {
830247a4 7361 vFAIL2("Unknown switch condition (?(%.2s", RExC_parse);
c277df42
IZ
7362 }
7363 }
1b1626e4 7364 case 0:
830247a4 7365 RExC_parse--; /* for vFAIL to print correctly */
8615cb43 7366 vFAIL("Sequence (? incomplete");
1b1626e4 7367 break;
85508812
KW
7368 case DEFAULT_PAT_MOD: /* Use default flags with the exceptions
7369 that follow */
fb85c044
KW
7370 has_use_defaults = TRUE;
7371 STD_PMMOD_FLAGS_CLEAR(&RExC_flags);
e40e74fe
KW
7372 set_regex_charset(&RExC_flags, (RExC_utf8 || RExC_uni_semantics)
7373 ? REGEX_UNICODE_CHARSET
7374 : REGEX_DEPENDS_CHARSET);
fb85c044 7375 goto parse_flags;
a0d0e21e 7376 default:
cde0cee5
YO
7377 --RExC_parse;
7378 parse_flags: /* (?i) */
7379 {
7380 U32 posflags = 0, negflags = 0;
7381 U32 *flagsp = &posflags;
f6a766d5 7382 char has_charset_modifier = '\0';
295c2f7d
KW
7383 regex_charset cs = (RExC_utf8 || RExC_uni_semantics)
7384 ? REGEX_UNICODE_CHARSET
7385 : REGEX_DEPENDS_CHARSET;
cde0cee5
YO
7386
7387 while (*RExC_parse) {
7388 /* && strchr("iogcmsx", *RExC_parse) */
9d1d55b5
JP
7389 /* (?g), (?gc) and (?o) are useless here
7390 and must be globally applied -- japhy */
cde0cee5
YO
7391 switch (*RExC_parse) {
7392 CASE_STD_PMMOD_FLAGS_PARSE_SET(flagsp);
9de15fec 7393 case LOCALE_PAT_MOD:
f6a766d5
KW
7394 if (has_charset_modifier) {
7395 goto excess_modifier;
7396 }
7397 else if (flagsp == &negflags) {
9442e3b8 7398 goto neg_modifier;
9de15fec 7399 }
a62b1201 7400 cs = REGEX_LOCALE_CHARSET;
f6a766d5 7401 has_charset_modifier = LOCALE_PAT_MOD;
4624b182 7402 RExC_contains_locale = 1;
9de15fec
KW
7403 break;
7404 case UNICODE_PAT_MOD:
f6a766d5
KW
7405 if (has_charset_modifier) {
7406 goto excess_modifier;
7407 }
7408 else if (flagsp == &negflags) {
9442e3b8 7409 goto neg_modifier;
9de15fec 7410 }
a62b1201 7411 cs = REGEX_UNICODE_CHARSET;
f6a766d5 7412 has_charset_modifier = UNICODE_PAT_MOD;
9de15fec 7413 break;
cfaf538b 7414 case ASCII_RESTRICT_PAT_MOD:
f6a766d5 7415 if (flagsp == &negflags) {
9442e3b8 7416 goto neg_modifier;
cfaf538b 7417 }
f6a766d5
KW
7418 if (has_charset_modifier) {
7419 if (cs != REGEX_ASCII_RESTRICTED_CHARSET) {
7420 goto excess_modifier;
7421 }
2f7f8cb1 7422 /* Doubled modifier implies more restricted */
f6a766d5
KW
7423 cs = REGEX_ASCII_MORE_RESTRICTED_CHARSET;
7424 }
2f7f8cb1
KW
7425 else {
7426 cs = REGEX_ASCII_RESTRICTED_CHARSET;
7427 }
f6a766d5 7428 has_charset_modifier = ASCII_RESTRICT_PAT_MOD;
cfaf538b 7429 break;
50e91148 7430 case DEPENDS_PAT_MOD:
9442e3b8 7431 if (has_use_defaults) {
9de15fec 7432 goto fail_modifiers;
f6a766d5 7433 }
9442e3b8
KW
7434 else if (flagsp == &negflags) {
7435 goto neg_modifier;
7436 }
f6a766d5
KW
7437 else if (has_charset_modifier) {
7438 goto excess_modifier;
9de15fec 7439 }
7b98bc43
KW
7440
7441 /* The dual charset means unicode semantics if the
7442 * pattern (or target, not known until runtime) are
e40e74fe
KW
7443 * utf8, or something in the pattern indicates unicode
7444 * semantics */
7445 cs = (RExC_utf8 || RExC_uni_semantics)
a62b1201
KW
7446 ? REGEX_UNICODE_CHARSET
7447 : REGEX_DEPENDS_CHARSET;
f6a766d5 7448 has_charset_modifier = DEPENDS_PAT_MOD;
9de15fec 7449 break;
f6a766d5
KW
7450 excess_modifier:
7451 RExC_parse++;
7452 if (has_charset_modifier == ASCII_RESTRICT_PAT_MOD) {
0c96c706 7453 vFAIL2("Regexp modifier \"%c\" may appear a maximum of twice", ASCII_RESTRICT_PAT_MOD);
f6a766d5
KW
7454 }
7455 else if (has_charset_modifier == *(RExC_parse - 1)) {
0c96c706 7456 vFAIL2("Regexp modifier \"%c\" may not appear twice", *(RExC_parse - 1));
f6a766d5
KW
7457 }
7458 else {
0c96c706 7459 vFAIL3("Regexp modifiers \"%c\" and \"%c\" are mutually exclusive", has_charset_modifier, *(RExC_parse - 1));
f6a766d5
KW
7460 }
7461 /*NOTREACHED*/
9442e3b8
KW
7462 neg_modifier:
7463 RExC_parse++;
7464 vFAIL2("Regexp modifier \"%c\" may not appear after the \"-\"", *(RExC_parse - 1));
7465 /*NOTREACHED*/
f7819f85
A
7466 case ONCE_PAT_MOD: /* 'o' */
7467 case GLOBAL_PAT_MOD: /* 'g' */
9d1d55b5 7468 if (SIZE_ONLY && ckWARN(WARN_REGEXP)) {
6136c704 7469 const I32 wflagbit = *RExC_parse == 'o' ? WASTED_O : WASTED_G;
9d1d55b5
JP
7470 if (! (wastedflags & wflagbit) ) {
7471 wastedflags |= wflagbit;
7472 vWARN5(
7473 RExC_parse + 1,
7474 "Useless (%s%c) - %suse /%c modifier",
7475 flagsp == &negflags ? "?-" : "?",
7476 *RExC_parse,
7477 flagsp == &negflags ? "don't " : "",
7478 *RExC_parse
7479 );
7480 }
7481 }
cde0cee5
YO
7482 break;
7483
f7819f85 7484 case CONTINUE_PAT_MOD: /* 'c' */
9d1d55b5 7485 if (SIZE_ONLY && ckWARN(WARN_REGEXP)) {
6136c704
AL
7486 if (! (wastedflags & WASTED_C) ) {
7487 wastedflags |= WASTED_GC;
9d1d55b5
JP
7488 vWARN3(
7489 RExC_parse + 1,
7490 "Useless (%sc) - %suse /gc modifier",
7491 flagsp == &negflags ? "?-" : "?",
7492 flagsp == &negflags ? "don't " : ""
7493 );
7494 }
7495 }
cde0cee5 7496 break;
f7819f85 7497 case KEEPCOPY_PAT_MOD: /* 'p' */
cde0cee5 7498 if (flagsp == &negflags) {
668c081a
NC
7499 if (SIZE_ONLY)
7500 ckWARNreg(RExC_parse + 1,"Useless use of (?-p)");
cde0cee5
YO
7501 } else {
7502 *flagsp |= RXf_PMf_KEEPCOPY;
7503 }
7504 break;
7505 case '-':
3b753521 7506 /* A flag is a default iff it is following a minus, so
fb85c044
KW
7507 * if there is a minus, it means will be trying to
7508 * re-specify a default which is an error */
7509 if (has_use_defaults || flagsp == &negflags) {
9de15fec 7510 fail_modifiers:
57b84237
YO
7511 RExC_parse++;
7512 vFAIL3("Sequence (%.*s...) not recognized", RExC_parse-seqstart, seqstart);
7513 /*NOTREACHED*/
7514 }
cde0cee5
YO
7515 flagsp = &negflags;
7516 wastedflags = 0; /* reset so (?g-c) warns twice */
7517 break;
7518 case ':':
7519 paren = ':';
7520 /*FALLTHROUGH*/
7521 case ')':
7522 RExC_flags |= posflags;
7523 RExC_flags &= ~negflags;
a62b1201 7524 set_regex_charset(&RExC_flags, cs);
f7819f85
A
7525 if (paren != ':') {
7526 oregflags |= posflags;
7527 oregflags &= ~negflags;
a62b1201 7528 set_regex_charset(&oregflags, cs);
f7819f85 7529 }
cde0cee5
YO
7530 nextchar(pRExC_state);
7531 if (paren != ':') {
7532 *flagp = TRYAGAIN;
7533 return NULL;
7534 } else {
7535 ret = NULL;
7536 goto parse_rest;
7537 }
7538 /*NOTREACHED*/
7539 default:
cde0cee5
YO
7540 RExC_parse++;
7541 vFAIL3("Sequence (%.*s...) not recognized", RExC_parse-seqstart, seqstart);
7542 /*NOTREACHED*/
7543 }
830247a4 7544 ++RExC_parse;
48c036b1 7545 }
cde0cee5 7546 }} /* one for the default block, one for the switch */
a0d0e21e 7547 }
fac92740 7548 else { /* (...) */
81714fb9 7549 capturing_parens:
830247a4
IZ
7550 parno = RExC_npar;
7551 RExC_npar++;
e2e6a0f1 7552
830247a4 7553 ret = reganode(pRExC_state, OPEN, parno);
e2e6a0f1
YO
7554 if (!SIZE_ONLY ){
7555 if (!RExC_nestroot)
7556 RExC_nestroot = parno;
c009da3d
YO
7557 if (RExC_seen & REG_SEEN_RECURSE
7558 && !RExC_open_parens[parno-1])
7559 {
e2e6a0f1 7560 DEBUG_OPTIMISE_MORE_r(PerlIO_printf(Perl_debug_log,
40d049e4
YO
7561 "Setting open paren #%"IVdf" to %d\n",
7562 (IV)parno, REG_NODE_NUM(ret)));
e2e6a0f1
YO
7563 RExC_open_parens[parno-1]= ret;
7564 }
6bda09f9 7565 }
fac92740
MJD
7566 Set_Node_Length(ret, 1); /* MJD */
7567 Set_Node_Offset(ret, RExC_parse); /* MJD */
6136c704 7568 is_open = 1;
a0d0e21e 7569 }
a0ed51b3 7570 }
fac92740 7571 else /* ! paren */
a0d0e21e 7572 ret = NULL;
cde0cee5
YO
7573
7574 parse_rest:
a0d0e21e 7575 /* Pick up the branches, linking them together. */
fac92740 7576 parse_start = RExC_parse; /* MJD */
3dab1dad 7577 br = regbranch(pRExC_state, &flags, 1,depth+1);
ee91d26e 7578
fac92740 7579 /* branch_len = (paren != 0); */
2af232bd 7580
a0d0e21e
LW
7581 if (br == NULL)
7582 return(NULL);
830247a4
IZ
7583 if (*RExC_parse == '|') {
7584 if (!SIZE_ONLY && RExC_extralen) {
6bda09f9 7585 reginsert(pRExC_state, BRANCHJ, br, depth+1);
a0ed51b3 7586 }
fac92740 7587 else { /* MJD */
6bda09f9 7588 reginsert(pRExC_state, BRANCH, br, depth+1);
fac92740
MJD
7589 Set_Node_Length(br, paren != 0);
7590 Set_Node_Offset_To_R(br-RExC_emit_start, parse_start-RExC_start);
7591 }
c277df42
IZ
7592 have_branch = 1;
7593 if (SIZE_ONLY)
830247a4 7594 RExC_extralen += 1; /* For BRANCHJ-BRANCH. */
a0ed51b3
LW
7595 }
7596 else if (paren == ':') {
c277df42
IZ
7597 *flagp |= flags&SIMPLE;
7598 }
6136c704 7599 if (is_open) { /* Starts with OPEN. */
3dab1dad 7600 REGTAIL(pRExC_state, ret, br); /* OPEN -> first. */
a0ed51b3
LW
7601 }
7602 else if (paren != '?') /* Not Conditional */
a0d0e21e 7603 ret = br;
8ae10a67 7604 *flagp |= flags & (SPSTART | HASWIDTH | POSTPONED);
c277df42 7605 lastbr = br;
830247a4
IZ
7606 while (*RExC_parse == '|') {
7607 if (!SIZE_ONLY && RExC_extralen) {
7608 ender = reganode(pRExC_state, LONGJMP,0);
3dab1dad 7609 REGTAIL(pRExC_state, NEXTOPER(NEXTOPER(lastbr)), ender); /* Append to the previous. */
c277df42
IZ
7610 }
7611 if (SIZE_ONLY)
830247a4
IZ
7612 RExC_extralen += 2; /* Account for LONGJMP. */
7613 nextchar(pRExC_state);
594d7033
YO
7614 if (freeze_paren) {
7615 if (RExC_npar > after_freeze)
7616 after_freeze = RExC_npar;
7617 RExC_npar = freeze_paren;
7618 }
3dab1dad 7619 br = regbranch(pRExC_state, &flags, 0, depth+1);
2af232bd 7620
a687059c 7621 if (br == NULL)
a0d0e21e 7622 return(NULL);
3dab1dad 7623 REGTAIL(pRExC_state, lastbr, br); /* BRANCH -> BRANCH. */
c277df42 7624 lastbr = br;
8ae10a67 7625 *flagp |= flags & (SPSTART | HASWIDTH | POSTPONED);
a0d0e21e
LW
7626 }
7627
c277df42
IZ
7628 if (have_branch || paren != ':') {
7629 /* Make a closing node, and hook it on the end. */
7630 switch (paren) {
7631 case ':':
830247a4 7632 ender = reg_node(pRExC_state, TAIL);
c277df42
IZ
7633 break;
7634 case 1:
830247a4 7635 ender = reganode(pRExC_state, CLOSE, parno);
40d049e4
YO
7636 if (!SIZE_ONLY && RExC_seen & REG_SEEN_RECURSE) {
7637 DEBUG_OPTIMISE_MORE_r(PerlIO_printf(Perl_debug_log,
7638 "Setting close paren #%"IVdf" to %d\n",
7639 (IV)parno, REG_NODE_NUM(ender)));
7640 RExC_close_parens[parno-1]= ender;
e2e6a0f1
YO
7641 if (RExC_nestroot == parno)
7642 RExC_nestroot = 0;
40d049e4 7643 }
fac92740
MJD
7644 Set_Node_Offset(ender,RExC_parse+1); /* MJD */
7645 Set_Node_Length(ender,1); /* MJD */
c277df42
IZ
7646 break;
7647 case '<':
c277df42
IZ
7648 case ',':
7649 case '=':
7650 case '!':
c277df42 7651 *flagp &= ~HASWIDTH;
821b33a5
IZ
7652 /* FALL THROUGH */
7653 case '>':
830247a4 7654 ender = reg_node(pRExC_state, SUCCEED);
c277df42
IZ
7655 break;
7656 case 0:
830247a4 7657 ender = reg_node(pRExC_state, END);
40d049e4
YO
7658 if (!SIZE_ONLY) {
7659 assert(!RExC_opend); /* there can only be one! */
7660 RExC_opend = ender;
7661 }
c277df42
IZ
7662 break;
7663 }
eaf3ca90 7664 REGTAIL(pRExC_state, lastbr, ender);
a0d0e21e 7665
9674d46a 7666 if (have_branch && !SIZE_ONLY) {
eaf3ca90
YO
7667 if (depth==1)
7668 RExC_seen |= REG_TOP_LEVEL_BRANCHES;
7669
c277df42 7670 /* Hook the tails of the branches to the closing node. */
9674d46a
AL
7671 for (br = ret; br; br = regnext(br)) {
7672 const U8 op = PL_regkind[OP(br)];
7673 if (op == BRANCH) {
07be1b83 7674 REGTAIL_STUDY(pRExC_state, NEXTOPER(br), ender);
9674d46a
AL
7675 }
7676 else if (op == BRANCHJ) {
07be1b83 7677 REGTAIL_STUDY(pRExC_state, NEXTOPER(NEXTOPER(br)), ender);
9674d46a 7678 }
c277df42
IZ
7679 }
7680 }
a0d0e21e 7681 }
c277df42
IZ
7682
7683 {
e1ec3a88
AL
7684 const char *p;
7685 static const char parens[] = "=!<,>";
c277df42
IZ
7686
7687 if (paren && (p = strchr(parens, paren))) {
eb160463 7688 U8 node = ((p - parens) % 2) ? UNLESSM : IFMATCH;
c277df42
IZ
7689 int flag = (p - parens) > 1;
7690
7691 if (paren == '>')
7692 node = SUSPEND, flag = 0;
6bda09f9 7693 reginsert(pRExC_state, node,ret, depth+1);
45948336
EP
7694 Set_Node_Cur_Length(ret);
7695 Set_Node_Offset(ret, parse_start + 1);
c277df42 7696 ret->flags = flag;
07be1b83 7697 REGTAIL_STUDY(pRExC_state, ret, reg_node(pRExC_state, TAIL));
c277df42 7698 }
a0d0e21e
LW
7699 }
7700
7701 /* Check for proper termination. */
ce3e6498 7702 if (paren) {
e2509266 7703 RExC_flags = oregflags;
830247a4
IZ
7704 if (RExC_parse >= RExC_end || *nextchar(pRExC_state) != ')') {
7705 RExC_parse = oregcomp_parse;
380a0633 7706 vFAIL("Unmatched (");
ce3e6498 7707 }
a0ed51b3 7708 }
830247a4
IZ
7709 else if (!paren && RExC_parse < RExC_end) {
7710 if (*RExC_parse == ')') {
7711 RExC_parse++;
380a0633 7712 vFAIL("Unmatched )");
a0ed51b3
LW
7713 }
7714 else
b45f050a 7715 FAIL("Junk on end of regexp"); /* "Can't happen". */
a0d0e21e
LW
7716 /* NOTREACHED */
7717 }
b57e4118
KW
7718
7719 if (RExC_in_lookbehind) {
7720 RExC_in_lookbehind--;
7721 }
fd4be6f0 7722 if (after_freeze > RExC_npar)
594d7033 7723 RExC_npar = after_freeze;
a0d0e21e 7724 return(ret);
a687059c
LW
7725}
7726
7727/*
7728 - regbranch - one alternative of an | operator
7729 *
7730 * Implements the concatenation operator.
7731 */
76e3520e 7732STATIC regnode *
3dab1dad 7733S_regbranch(pTHX_ RExC_state_t *pRExC_state, I32 *flagp, I32 first, U32 depth)
a687059c 7734{
97aff369 7735 dVAR;
c277df42
IZ
7736 register regnode *ret;
7737 register regnode *chain = NULL;
7738 register regnode *latest;
7739 I32 flags = 0, c = 0;
3dab1dad 7740 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
7741
7742 PERL_ARGS_ASSERT_REGBRANCH;
7743
3dab1dad 7744 DEBUG_PARSE("brnc");
02daf0ab 7745
b81d288d 7746 if (first)
c277df42
IZ
7747 ret = NULL;
7748 else {
b81d288d 7749 if (!SIZE_ONLY && RExC_extralen)
830247a4 7750 ret = reganode(pRExC_state, BRANCHJ,0);
fac92740 7751 else {
830247a4 7752 ret = reg_node(pRExC_state, BRANCH);
fac92740
MJD
7753 Set_Node_Length(ret, 1);
7754 }
c277df42
IZ
7755 }
7756
b81d288d 7757 if (!first && SIZE_ONLY)
830247a4 7758 RExC_extralen += 1; /* BRANCHJ */
b81d288d 7759
c277df42 7760 *flagp = WORST; /* Tentatively. */
a0d0e21e 7761
830247a4
IZ
7762 RExC_parse--;
7763 nextchar(pRExC_state);
7764 while (RExC_parse < RExC_end && *RExC_parse != '|' && *RExC_parse != ')') {
a0d0e21e 7765 flags &= ~TRYAGAIN;
3dab1dad 7766 latest = regpiece(pRExC_state, &flags,depth+1);
a0d0e21e
LW
7767 if (latest == NULL) {
7768 if (flags & TRYAGAIN)
7769 continue;
7770 return(NULL);
a0ed51b3
LW
7771 }
7772 else if (ret == NULL)
c277df42 7773 ret = latest;
8ae10a67 7774 *flagp |= flags&(HASWIDTH|POSTPONED);
c277df42 7775 if (chain == NULL) /* First piece. */
a0d0e21e
LW
7776 *flagp |= flags&SPSTART;
7777 else {
830247a4 7778 RExC_naughty++;
3dab1dad 7779 REGTAIL(pRExC_state, chain, latest);
a687059c 7780 }
a0d0e21e 7781 chain = latest;
c277df42
IZ
7782 c++;
7783 }
7784 if (chain == NULL) { /* Loop ran zero times. */
830247a4 7785 chain = reg_node(pRExC_state, NOTHING);
c277df42
IZ
7786 if (ret == NULL)
7787 ret = chain;
7788 }
7789 if (c == 1) {
7790 *flagp |= flags&SIMPLE;
a0d0e21e 7791 }
a687059c 7792
d4c19fe8 7793 return ret;
a687059c
LW
7794}
7795
7796/*
7797 - regpiece - something followed by possible [*+?]
7798 *
7799 * Note that the branching code sequences used for ? and the general cases
7800 * of * and + are somewhat optimized: they use the same NOTHING node as
7801 * both the endmarker for their branch list and the body of the last branch.
7802 * It might seem that this node could be dispensed with entirely, but the
7803 * endmarker role is not redundant.
7804 */
76e3520e 7805STATIC regnode *
3dab1dad 7806S_regpiece(pTHX_ RExC_state_t *pRExC_state, I32 *flagp, U32 depth)
a687059c 7807{
97aff369 7808 dVAR;
c277df42 7809 register regnode *ret;
a0d0e21e
LW
7810 register char op;
7811 register char *next;
7812 I32 flags;
1df70142 7813 const char * const origparse = RExC_parse;
a0d0e21e 7814 I32 min;
c277df42 7815 I32 max = REG_INFTY;
f19a8d85 7816#ifdef RE_TRACK_PATTERN_OFFSETS
fac92740 7817 char *parse_start;
f19a8d85 7818#endif
10edeb5d 7819 const char *maxpos = NULL;
3dab1dad 7820 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
7821
7822 PERL_ARGS_ASSERT_REGPIECE;
7823
3dab1dad 7824 DEBUG_PARSE("piec");
a0d0e21e 7825
3dab1dad 7826 ret = regatom(pRExC_state, &flags,depth+1);
a0d0e21e
LW
7827 if (ret == NULL) {
7828 if (flags & TRYAGAIN)
7829 *flagp |= TRYAGAIN;
7830 return(NULL);
7831 }
7832
830247a4 7833 op = *RExC_parse;
a0d0e21e 7834
830247a4 7835 if (op == '{' && regcurly(RExC_parse)) {
10edeb5d 7836 maxpos = NULL;
f19a8d85 7837#ifdef RE_TRACK_PATTERN_OFFSETS
fac92740 7838 parse_start = RExC_parse; /* MJD */
f19a8d85 7839#endif
830247a4 7840 next = RExC_parse + 1;
a0d0e21e
LW
7841 while (isDIGIT(*next) || *next == ',') {
7842 if (*next == ',') {
7843 if (maxpos)
7844 break;
7845 else
7846 maxpos = next;
a687059c 7847 }
a0d0e21e
LW
7848 next++;
7849 }
7850 if (*next == '}') { /* got one */
7851 if (!maxpos)
7852 maxpos = next;
830247a4
IZ
7853 RExC_parse++;
7854 min = atoi(RExC_parse);
a0d0e21e
LW
7855 if (*maxpos == ',')
7856 maxpos++;
7857 else
830247a4 7858 maxpos = RExC_parse;
a0d0e21e
LW
7859 max = atoi(maxpos);
7860 if (!max && *maxpos != '0')
c277df42
IZ
7861 max = REG_INFTY; /* meaning "infinity" */
7862 else if (max >= REG_INFTY)
8615cb43 7863 vFAIL2("Quantifier in {,} bigger than %d", REG_INFTY - 1);
830247a4
IZ
7864 RExC_parse = next;
7865 nextchar(pRExC_state);
a0d0e21e
LW
7866
7867 do_curly:
7868 if ((flags&SIMPLE)) {
830247a4 7869 RExC_naughty += 2 + RExC_naughty / 2;
6bda09f9 7870 reginsert(pRExC_state, CURLY, ret, depth+1);
fac92740
MJD
7871 Set_Node_Offset(ret, parse_start+1); /* MJD */
7872 Set_Node_Cur_Length(ret);
a0d0e21e
LW
7873 }
7874 else {
3dab1dad 7875 regnode * const w = reg_node(pRExC_state, WHILEM);
2c2d71f5
JH
7876
7877 w->flags = 0;
3dab1dad 7878 REGTAIL(pRExC_state, ret, w);
830247a4 7879 if (!SIZE_ONLY && RExC_extralen) {
6bda09f9
YO
7880 reginsert(pRExC_state, LONGJMP,ret, depth+1);
7881 reginsert(pRExC_state, NOTHING,ret, depth+1);
c277df42
IZ
7882 NEXT_OFF(ret) = 3; /* Go over LONGJMP. */
7883 }
6bda09f9 7884 reginsert(pRExC_state, CURLYX,ret, depth+1);
fac92740
MJD
7885 /* MJD hk */
7886 Set_Node_Offset(ret, parse_start+1);
2af232bd 7887 Set_Node_Length(ret,
fac92740 7888 op == '{' ? (RExC_parse - parse_start) : 1);
2af232bd 7889
830247a4 7890 if (!SIZE_ONLY && RExC_extralen)
c277df42 7891 NEXT_OFF(ret) = 3; /* Go over NOTHING to LONGJMP. */
3dab1dad 7892 REGTAIL(pRExC_state, ret, reg_node(pRExC_state, NOTHING));
c277df42 7893 if (SIZE_ONLY)
830247a4
IZ
7894 RExC_whilem_seen++, RExC_extralen += 3;
7895 RExC_naughty += 4 + RExC_naughty; /* compound interest */
a0d0e21e 7896 }
c277df42 7897 ret->flags = 0;
a0d0e21e
LW
7898
7899 if (min > 0)
821b33a5
IZ
7900 *flagp = WORST;
7901 if (max > 0)
7902 *flagp |= HASWIDTH;
8fa23287 7903 if (max < min)
8615cb43 7904 vFAIL("Can't do {n,m} with n > m");
c277df42 7905 if (!SIZE_ONLY) {
eb160463
GS
7906 ARG1_SET(ret, (U16)min);
7907 ARG2_SET(ret, (U16)max);
a687059c 7908 }
a687059c 7909
a0d0e21e 7910 goto nest_check;
a687059c 7911 }
a0d0e21e 7912 }
a687059c 7913
a0d0e21e
LW
7914 if (!ISMULT1(op)) {
7915 *flagp = flags;
a687059c 7916 return(ret);
a0d0e21e 7917 }
bb20fd44 7918
c277df42 7919#if 0 /* Now runtime fix should be reliable. */
b45f050a
JF
7920
7921 /* if this is reinstated, don't forget to put this back into perldiag:
7922
7923 =item Regexp *+ operand could be empty at {#} in regex m/%s/
7924
7925 (F) The part of the regexp subject to either the * or + quantifier
7926 could match an empty string. The {#} shows in the regular
7927 expression about where the problem was discovered.
7928
7929 */
7930
bb20fd44 7931 if (!(flags&HASWIDTH) && op != '?')
b45f050a 7932 vFAIL("Regexp *+ operand could be empty");
b81d288d 7933#endif
bb20fd44 7934
f19a8d85 7935#ifdef RE_TRACK_PATTERN_OFFSETS
fac92740 7936 parse_start = RExC_parse;
f19a8d85 7937#endif
830247a4 7938 nextchar(pRExC_state);
a0d0e21e 7939
821b33a5 7940 *flagp = (op != '+') ? (WORST|SPSTART|HASWIDTH) : (WORST|HASWIDTH);
a0d0e21e
LW
7941
7942 if (op == '*' && (flags&SIMPLE)) {
6bda09f9 7943 reginsert(pRExC_state, STAR, ret, depth+1);
c277df42 7944 ret->flags = 0;
830247a4 7945 RExC_naughty += 4;
a0d0e21e
LW
7946 }
7947 else if (op == '*') {
7948 min = 0;
7949 goto do_curly;
a0ed51b3
LW
7950 }
7951 else if (op == '+' && (flags&SIMPLE)) {
6bda09f9 7952 reginsert(pRExC_state, PLUS, ret, depth+1);
c277df42 7953 ret->flags = 0;
830247a4 7954 RExC_naughty += 3;
a0d0e21e
LW
7955 }
7956 else if (op == '+') {
7957 min = 1;
7958 goto do_curly;
a0ed51b3
LW
7959 }
7960 else if (op == '?') {
a0d0e21e
LW
7961 min = 0; max = 1;
7962 goto do_curly;
7963 }
7964 nest_check:
668c081a
NC
7965 if (!SIZE_ONLY && !(flags&(HASWIDTH|POSTPONED)) && max > REG_INFTY/3) {
7966 ckWARN3reg(RExC_parse,
7967 "%.*s matches null string many times",
7968 (int)(RExC_parse >= origparse ? RExC_parse - origparse : 0),
7969 origparse);
a0d0e21e
LW
7970 }
7971
b9b4dddf 7972 if (RExC_parse < RExC_end && *RExC_parse == '?') {
830247a4 7973 nextchar(pRExC_state);
6bda09f9 7974 reginsert(pRExC_state, MINMOD, ret, depth+1);
3dab1dad 7975 REGTAIL(pRExC_state, ret, ret + NODE_STEP_REGNODE);
a0d0e21e 7976 }
b9b4dddf
YO
7977#ifndef REG_ALLOW_MINMOD_SUSPEND
7978 else
7979#endif
7980 if (RExC_parse < RExC_end && *RExC_parse == '+') {
7981 regnode *ender;
7982 nextchar(pRExC_state);
7983 ender = reg_node(pRExC_state, SUCCEED);
7984 REGTAIL(pRExC_state, ret, ender);
7985 reginsert(pRExC_state, SUSPEND, ret, depth+1);
7986 ret->flags = 0;
7987 ender = reg_node(pRExC_state, TAIL);
7988 REGTAIL(pRExC_state, ret, ender);
7989 /*ret= ender;*/
7990 }
7991
7992 if (RExC_parse < RExC_end && ISMULT2(RExC_parse)) {
830247a4 7993 RExC_parse++;
b45f050a
JF
7994 vFAIL("Nested quantifiers");
7995 }
a0d0e21e
LW
7996
7997 return(ret);
a687059c
LW
7998}
7999
fc8cd66c 8000
9d64099b 8001/* reg_namedseq(pRExC_state,UVp, UV depth)
fc8cd66c
YO
8002
8003 This is expected to be called by a parser routine that has
afefe6bf 8004 recognized '\N' and needs to handle the rest. RExC_parse is
fc8cd66c
YO
8005 expected to point at the first char following the N at the time
8006 of the call.
ff3f963a
KW
8007
8008 The \N may be inside (indicated by valuep not being NULL) or outside a
8009 character class.
8010
8011 \N may begin either a named sequence, or if outside a character class, mean
8012 to match a non-newline. For non single-quoted regexes, the tokenizer has
8013 attempted to decide which, and in the case of a named sequence converted it
8014 into one of the forms: \N{} (if the sequence is null), or \N{U+c1.c2...},
8015 where c1... are the characters in the sequence. For single-quoted regexes,
8016 the tokenizer passes the \N sequence through unchanged; this code will not
8017 attempt to determine this nor expand those. The net effect is that if the
8018 beginning of the passed-in pattern isn't '{U+' or there is no '}', it
8019 signals that this \N occurrence means to match a non-newline.
8020
8021 Only the \N{U+...} form should occur in a character class, for the same
8022 reason that '.' inside a character class means to just match a period: it
8023 just doesn't make sense.
fc8cd66c
YO
8024
8025 If valuep is non-null then it is assumed that we are parsing inside
8026 of a charclass definition and the first codepoint in the resolved
8027 string is returned via *valuep and the routine will return NULL.
8028 In this mode if a multichar string is returned from the charnames
ff3f963a 8029 handler, a warning will be issued, and only the first char in the
fc8cd66c
YO
8030 sequence will be examined. If the string returned is zero length
8031 then the value of *valuep is undefined and NON-NULL will
8032 be returned to indicate failure. (This will NOT be a valid pointer
8033 to a regnode.)
8034
ff3f963a
KW
8035 If valuep is null then it is assumed that we are parsing normal text and a
8036 new EXACT node is inserted into the program containing the resolved string,
8037 and a pointer to the new node is returned. But if the string is zero length
8038 a NOTHING node is emitted instead.
afefe6bf 8039
fc8cd66c 8040 On success RExC_parse is set to the char following the endbrace.
ff3f963a 8041 Parsing failures will generate a fatal error via vFAIL(...)
fc8cd66c
YO
8042 */
8043STATIC regnode *
9d64099b 8044S_reg_namedseq(pTHX_ RExC_state_t *pRExC_state, UV *valuep, I32 *flagp, U32 depth)
fc8cd66c 8045{
c3c41406 8046 char * endbrace; /* '}' following the name */
fc8cd66c 8047 regnode *ret = NULL;
c3c41406 8048 char* p;
ff3f963a
KW
8049
8050 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
8051
8052 PERL_ARGS_ASSERT_REG_NAMEDSEQ;
ff3f963a
KW
8053
8054 GET_RE_DEBUG_FLAGS;
c3c41406
KW
8055
8056 /* The [^\n] meaning of \N ignores spaces and comments under the /x
8057 * modifier. The other meaning does not */
8058 p = (RExC_flags & RXf_PMf_EXTENDED)
8059 ? regwhite( pRExC_state, RExC_parse )
8060 : RExC_parse;
7918f24d 8061
ff3f963a 8062 /* Disambiguate between \N meaning a named character versus \N meaning
c3c41406
KW
8063 * [^\n]. The former is assumed when it can't be the latter. */
8064 if (*p != '{' || regcurly(p)) {
8065 RExC_parse = p;
ff3f963a 8066 if (valuep) {
afefe6bf 8067 /* no bare \N in a charclass */
ff3f963a
KW
8068 vFAIL("\\N in a character class must be a named character: \\N{...}");
8069 }
afefe6bf
RGS
8070 nextchar(pRExC_state);
8071 ret = reg_node(pRExC_state, REG_ANY);
8072 *flagp |= HASWIDTH|SIMPLE;
8073 RExC_naughty++;
8074 RExC_parse--;
8075 Set_Node_Length(ret, 1); /* MJD */
8076 return ret;
fc8cd66c 8077 }
a4893424 8078
c3c41406
KW
8079 /* Here, we have decided it should be a named sequence */
8080
8081 /* The test above made sure that the next real character is a '{', but
8082 * under the /x modifier, it could be separated by space (or a comment and
8083 * \n) and this is not allowed (for consistency with \x{...} and the
8084 * tokenizer handling of \N{NAME}). */
8085 if (*RExC_parse != '{') {
8086 vFAIL("Missing braces on \\N{}");
8087 }
8088
ff3f963a 8089 RExC_parse++; /* Skip past the '{' */
c3c41406
KW
8090
8091 if (! (endbrace = strchr(RExC_parse, '}')) /* no trailing brace */
8092 || ! (endbrace == RExC_parse /* nothing between the {} */
8093 || (endbrace - RExC_parse >= 2 /* U+ (bad hex is checked below */
8094 && strnEQ(RExC_parse, "U+", 2)))) /* for a better error msg) */
8095 {
8096 if (endbrace) RExC_parse = endbrace; /* position msg's '<--HERE' */
8097 vFAIL("\\N{NAME} must be resolved by the lexer");
8098 }
8099
ff3f963a
KW
8100 if (endbrace == RExC_parse) { /* empty: \N{} */
8101 if (! valuep) {
8102 RExC_parse = endbrace + 1;
8103 return reg_node(pRExC_state,NOTHING);
a4893424 8104 }
fc8cd66c 8105
ff3f963a
KW
8106 if (SIZE_ONLY) {
8107 ckWARNreg(RExC_parse,
8108 "Ignoring zero length \\N{} in character class"
8109 );
8110 RExC_parse = endbrace + 1;
8111 }
8112 *valuep = 0;
8113 return (regnode *) &RExC_parse; /* Invalid regnode pointer */
fc8cd66c 8114 }
ff3f963a 8115
62fed28b 8116 REQUIRE_UTF8; /* named sequences imply Unicode semantics */
ff3f963a
KW
8117 RExC_parse += 2; /* Skip past the 'U+' */
8118
8119 if (valuep) { /* In a bracketed char class */
8120 /* We only pay attention to the first char of
8121 multichar strings being returned. I kinda wonder
8122 if this makes sense as it does change the behaviour
8123 from earlier versions, OTOH that behaviour was broken
8124 as well. XXX Solution is to recharacterize as
8125 [rest-of-class]|multi1|multi2... */
8126
8127 STRLEN length_of_hex;
8128 I32 flags = PERL_SCAN_ALLOW_UNDERSCORES
8129 | PERL_SCAN_DISALLOW_PREFIX
8130 | (SIZE_ONLY ? PERL_SCAN_SILENT_ILLDIGIT : 0);
8131
37820adc
KW
8132 char * endchar = RExC_parse + strcspn(RExC_parse, ".}");
8133 if (endchar < endbrace) {
ff3f963a
KW
8134 ckWARNreg(endchar, "Using just the first character returned by \\N{} in character class");
8135 }
ff3f963a
KW
8136
8137 length_of_hex = (STRLEN)(endchar - RExC_parse);
8138 *valuep = grok_hex(RExC_parse, &length_of_hex, &flags, NULL);
8139
8140 /* The tokenizer should have guaranteed validity, but it's possible to
8141 * bypass it by using single quoting, so check */
c3c41406
KW
8142 if (length_of_hex == 0
8143 || length_of_hex != (STRLEN)(endchar - RExC_parse) )
8144 {
8145 RExC_parse += length_of_hex; /* Includes all the valid */
8146 RExC_parse += (RExC_orig_utf8) /* point to after 1st invalid */
8147 ? UTF8SKIP(RExC_parse)
8148 : 1;
8149 /* Guard against malformed utf8 */
8150 if (RExC_parse >= endchar) RExC_parse = endchar;
8151 vFAIL("Invalid hexadecimal number in \\N{U+...}");
ff3f963a
KW
8152 }
8153
8154 RExC_parse = endbrace + 1;
8155 if (endchar == endbrace) return NULL;
8156
8157 ret = (regnode *) &RExC_parse; /* Invalid regnode pointer */
fc8cd66c 8158 }
ff3f963a 8159 else { /* Not a char class */
e2a7e165
KW
8160
8161 /* What is done here is to convert this to a sub-pattern of the form
8162 * (?:\x{char1}\x{char2}...)
8163 * and then call reg recursively. That way, it retains its atomicness,
8164 * while not having to worry about special handling that some code
8165 * points may have. toke.c has converted the original Unicode values
8166 * to native, so that we can just pass on the hex values unchanged. We
8167 * do have to set a flag to keep recoding from happening in the
8168 * recursion */
8169
8170 SV * substitute_parse = newSVpvn_flags("?:", 2, SVf_UTF8|SVs_TEMP);
8171 STRLEN len;
ff3f963a
KW
8172 char *endchar; /* Points to '.' or '}' ending cur char in the input
8173 stream */
e2a7e165
KW
8174 char *orig_end = RExC_end;
8175
8176 while (RExC_parse < endbrace) {
ff3f963a
KW
8177
8178 /* Code points are separated by dots. If none, there is only one
8179 * code point, and is terminated by the brace */
37820adc 8180 endchar = RExC_parse + strcspn(RExC_parse, ".}");
ff3f963a 8181
e2a7e165
KW
8182 /* Convert to notation the rest of the code understands */
8183 sv_catpv(substitute_parse, "\\x{");
8184 sv_catpvn(substitute_parse, RExC_parse, endchar - RExC_parse);
8185 sv_catpv(substitute_parse, "}");
ff3f963a
KW
8186
8187 /* Point to the beginning of the next character in the sequence. */
8188 RExC_parse = endchar + 1;
ff3f963a 8189 }
e2a7e165 8190 sv_catpv(substitute_parse, ")");
ff3f963a 8191
e2a7e165 8192 RExC_parse = SvPV(substitute_parse, len);
ff3f963a 8193
e2a7e165
KW
8194 /* Don't allow empty number */
8195 if (len < 8) {
8196 vFAIL("Invalid hexadecimal number in \\N{U+...}");
ff3f963a 8197 }
e2a7e165 8198 RExC_end = RExC_parse + len;
ff3f963a 8199
e2a7e165
KW
8200 /* The values are Unicode, and therefore not subject to recoding */
8201 RExC_override_recoding = 1;
8202
8203 ret = reg(pRExC_state, 1, flagp, depth+1);
8204
8205 RExC_parse = endbrace;
8206 RExC_end = orig_end;
8207 RExC_override_recoding = 0;
ff3f963a 8208
ff3f963a
KW
8209 nextchar(pRExC_state);
8210 }
8211
8212 return ret;
fc8cd66c
YO
8213}
8214
8215
9e08bc66
TS
8216/*
8217 * reg_recode
8218 *
8219 * It returns the code point in utf8 for the value in *encp.
8220 * value: a code value in the source encoding
8221 * encp: a pointer to an Encode object
8222 *
8223 * If the result from Encode is not a single character,
8224 * it returns U+FFFD (Replacement character) and sets *encp to NULL.
8225 */
8226STATIC UV
8227S_reg_recode(pTHX_ const char value, SV **encp)
8228{
8229 STRLEN numlen = 1;
59cd0e26 8230 SV * const sv = newSVpvn_flags(&value, numlen, SVs_TEMP);
c86f7df5 8231 const char * const s = *encp ? sv_recode_to_utf8(sv, *encp) : SvPVX(sv);
9e08bc66
TS
8232 const STRLEN newlen = SvCUR(sv);
8233 UV uv = UNICODE_REPLACEMENT;
8234
7918f24d
NC
8235 PERL_ARGS_ASSERT_REG_RECODE;
8236
9e08bc66
TS
8237 if (newlen)
8238 uv = SvUTF8(sv)
8239 ? utf8n_to_uvchr((U8*)s, newlen, &numlen, UTF8_ALLOW_DEFAULT)
8240 : *(U8*)s;
8241
8242 if (!newlen || numlen != newlen) {
8243 uv = UNICODE_REPLACEMENT;
c86f7df5 8244 *encp = NULL;
9e08bc66
TS
8245 }
8246 return uv;
8247}
8248
fc8cd66c 8249
a687059c
LW
8250/*
8251 - regatom - the lowest level
ee9b8eae
YO
8252
8253 Try to identify anything special at the start of the pattern. If there
8254 is, then handle it as required. This may involve generating a single regop,
8255 such as for an assertion; or it may involve recursing, such as to
8256 handle a () structure.
8257
8258 If the string doesn't start with something special then we gobble up
8259 as much literal text as we can.
8260
8261 Once we have been able to handle whatever type of thing started the
8262 sequence, we return.
8263
8264 Note: we have to be careful with escapes, as they can be both literal
8265 and special, and in the case of \10 and friends can either, depending
486ec47a 8266 on context. Specifically there are two separate switches for handling
ee9b8eae
YO
8267 escape sequences, with the one for handling literal escapes requiring
8268 a dummy entry for all of the special escapes that are actually handled
8269 by the other.
8270*/
8271
76e3520e 8272STATIC regnode *
3dab1dad 8273S_regatom(pTHX_ RExC_state_t *pRExC_state, I32 *flagp, U32 depth)
a687059c 8274{
97aff369 8275 dVAR;
cbbf8932 8276 register regnode *ret = NULL;
a0d0e21e 8277 I32 flags;
45948336 8278 char *parse_start = RExC_parse;
980866de 8279 U8 op;
3dab1dad
YO
8280 GET_RE_DEBUG_FLAGS_DECL;
8281 DEBUG_PARSE("atom");
a0d0e21e
LW
8282 *flagp = WORST; /* Tentatively. */
8283
7918f24d 8284 PERL_ARGS_ASSERT_REGATOM;
ee9b8eae 8285
a0d0e21e 8286tryagain:
f9a79580 8287 switch ((U8)*RExC_parse) {
a0d0e21e 8288 case '^':
830247a4
IZ
8289 RExC_seen_zerolen++;
8290 nextchar(pRExC_state);
bbe252da 8291 if (RExC_flags & RXf_PMf_MULTILINE)
830247a4 8292 ret = reg_node(pRExC_state, MBOL);
bbe252da 8293 else if (RExC_flags & RXf_PMf_SINGLELINE)
830247a4 8294 ret = reg_node(pRExC_state, SBOL);
a0d0e21e 8295 else
830247a4 8296 ret = reg_node(pRExC_state, BOL);
fac92740 8297 Set_Node_Length(ret, 1); /* MJD */
a0d0e21e
LW
8298 break;
8299 case '$':
830247a4 8300 nextchar(pRExC_state);
b81d288d 8301 if (*RExC_parse)
830247a4 8302 RExC_seen_zerolen++;
bbe252da 8303 if (RExC_flags & RXf_PMf_MULTILINE)
830247a4 8304 ret = reg_node(pRExC_state, MEOL);
bbe252da 8305 else if (RExC_flags & RXf_PMf_SINGLELINE)
830247a4 8306 ret = reg_node(pRExC_state, SEOL);
a0d0e21e 8307 else
830247a4 8308 ret = reg_node(pRExC_state, EOL);
fac92740 8309 Set_Node_Length(ret, 1); /* MJD */
a0d0e21e
LW
8310 break;
8311 case '.':
830247a4 8312 nextchar(pRExC_state);
bbe252da 8313 if (RExC_flags & RXf_PMf_SINGLELINE)
ffc61ed2
JH
8314 ret = reg_node(pRExC_state, SANY);
8315 else
8316 ret = reg_node(pRExC_state, REG_ANY);
8317 *flagp |= HASWIDTH|SIMPLE;
830247a4 8318 RExC_naughty++;
fac92740 8319 Set_Node_Length(ret, 1); /* MJD */
a0d0e21e
LW
8320 break;
8321 case '[':
b45f050a 8322 {
3dab1dad
YO
8323 char * const oregcomp_parse = ++RExC_parse;
8324 ret = regclass(pRExC_state,depth+1);
830247a4
IZ
8325 if (*RExC_parse != ']') {
8326 RExC_parse = oregcomp_parse;
b45f050a
JF
8327 vFAIL("Unmatched [");
8328 }
830247a4 8329 nextchar(pRExC_state);
a0d0e21e 8330 *flagp |= HASWIDTH|SIMPLE;
fac92740 8331 Set_Node_Length(ret, RExC_parse - oregcomp_parse + 1); /* MJD */
a0d0e21e 8332 break;
b45f050a 8333 }
a0d0e21e 8334 case '(':
830247a4 8335 nextchar(pRExC_state);
3dab1dad 8336 ret = reg(pRExC_state, 1, &flags,depth+1);
a0d0e21e 8337 if (ret == NULL) {
bf93d4cc 8338 if (flags & TRYAGAIN) {
830247a4 8339 if (RExC_parse == RExC_end) {
bf93d4cc
GS
8340 /* Make parent create an empty node if needed. */
8341 *flagp |= TRYAGAIN;
8342 return(NULL);
8343 }
a0d0e21e 8344 goto tryagain;
bf93d4cc 8345 }
a0d0e21e
LW
8346 return(NULL);
8347 }
a3b492c3 8348 *flagp |= flags&(HASWIDTH|SPSTART|SIMPLE|POSTPONED);
a0d0e21e
LW
8349 break;
8350 case '|':
8351 case ')':
8352 if (flags & TRYAGAIN) {
8353 *flagp |= TRYAGAIN;
8354 return NULL;
8355 }
b45f050a 8356 vFAIL("Internal urp");
a0d0e21e
LW
8357 /* Supposed to be caught earlier. */
8358 break;
85afd4ae 8359 case '{':
830247a4
IZ
8360 if (!regcurly(RExC_parse)) {
8361 RExC_parse++;
85afd4ae
CS
8362 goto defchar;
8363 }
8364 /* FALL THROUGH */
a0d0e21e
LW
8365 case '?':
8366 case '+':
8367 case '*':
830247a4 8368 RExC_parse++;
b45f050a 8369 vFAIL("Quantifier follows nothing");
a0d0e21e
LW
8370 break;
8371 case '\\':
ee9b8eae
YO
8372 /* Special Escapes
8373
8374 This switch handles escape sequences that resolve to some kind
8375 of special regop and not to literal text. Escape sequnces that
8376 resolve to literal text are handled below in the switch marked
8377 "Literal Escapes".
8378
8379 Every entry in this switch *must* have a corresponding entry
8380 in the literal escape switch. However, the opposite is not
8381 required, as the default for this switch is to jump to the
8382 literal text handling code.
8383 */
a0a388a1 8384 switch ((U8)*++RExC_parse) {
ee9b8eae 8385 /* Special Escapes */
a0d0e21e 8386 case 'A':
830247a4
IZ
8387 RExC_seen_zerolen++;
8388 ret = reg_node(pRExC_state, SBOL);
a0d0e21e 8389 *flagp |= SIMPLE;
ee9b8eae 8390 goto finish_meta_pat;
a0d0e21e 8391 case 'G':
830247a4
IZ
8392 ret = reg_node(pRExC_state, GPOS);
8393 RExC_seen |= REG_SEEN_GPOS;
a0d0e21e 8394 *flagp |= SIMPLE;
ee9b8eae
YO
8395 goto finish_meta_pat;
8396 case 'K':
8397 RExC_seen_zerolen++;
8398 ret = reg_node(pRExC_state, KEEPS);
8399 *flagp |= SIMPLE;
37923168
RGS
8400 /* XXX:dmq : disabling in-place substitution seems to
8401 * be necessary here to avoid cases of memory corruption, as
8402 * with: C<$_="x" x 80; s/x\K/y/> -- rgs
8403 */
8404 RExC_seen |= REG_SEEN_LOOKBEHIND;
ee9b8eae 8405 goto finish_meta_pat;
a0d0e21e 8406 case 'Z':
830247a4 8407 ret = reg_node(pRExC_state, SEOL);
a0d0e21e 8408 *flagp |= SIMPLE;
a1917ab9 8409 RExC_seen_zerolen++; /* Do not optimize RE away */
ee9b8eae 8410 goto finish_meta_pat;
b85d18e9 8411 case 'z':
830247a4 8412 ret = reg_node(pRExC_state, EOS);
b85d18e9 8413 *flagp |= SIMPLE;
830247a4 8414 RExC_seen_zerolen++; /* Do not optimize RE away */
ee9b8eae 8415 goto finish_meta_pat;
4a2d328f 8416 case 'C':
f33976b4
DB
8417 ret = reg_node(pRExC_state, CANY);
8418 RExC_seen |= REG_SEEN_CANY;
a0ed51b3 8419 *flagp |= HASWIDTH|SIMPLE;
ee9b8eae 8420 goto finish_meta_pat;
a0ed51b3 8421 case 'X':
830247a4 8422 ret = reg_node(pRExC_state, CLUMP);
a0ed51b3 8423 *flagp |= HASWIDTH;
ee9b8eae 8424 goto finish_meta_pat;
a0d0e21e 8425 case 'w':
980866de
KW
8426 switch (get_regex_charset(RExC_flags)) {
8427 case REGEX_LOCALE_CHARSET:
8428 op = ALNUML;
8429 break;
8430 case REGEX_UNICODE_CHARSET:
8431 op = ALNUMU;
8432 break;
cfaf538b 8433 case REGEX_ASCII_RESTRICTED_CHARSET:
2f7f8cb1 8434 case REGEX_ASCII_MORE_RESTRICTED_CHARSET:
cfaf538b
KW
8435 op = ALNUMA;
8436 break;
980866de
KW
8437 case REGEX_DEPENDS_CHARSET:
8438 op = ALNUM;
8439 break;
8440 default:
8441 goto bad_charset;
a12cf05f 8442 }
980866de 8443 ret = reg_node(pRExC_state, op);
a0d0e21e 8444 *flagp |= HASWIDTH|SIMPLE;
ee9b8eae 8445 goto finish_meta_pat;
a0d0e21e 8446 case 'W':
980866de
KW
8447 switch (get_regex_charset(RExC_flags)) {
8448 case REGEX_LOCALE_CHARSET:
8449 op = NALNUML;
8450 break;
8451 case REGEX_UNICODE_CHARSET:
8452 op = NALNUMU;
8453 break;
cfaf538b 8454 case REGEX_ASCII_RESTRICTED_CHARSET:
2f7f8cb1 8455 case REGEX_ASCII_MORE_RESTRICTED_CHARSET:
cfaf538b
KW
8456 op = NALNUMA;
8457 break;
980866de
KW
8458 case REGEX_DEPENDS_CHARSET:
8459 op = NALNUM;
8460 break;
8461 default:
8462 goto bad_charset;
a12cf05f 8463 }
980866de 8464 ret = reg_node(pRExC_state, op);
a0d0e21e 8465 *flagp |= HASWIDTH|SIMPLE;
ee9b8eae 8466 goto finish_meta_pat;
a0d0e21e 8467 case 'b':
830247a4
IZ
8468 RExC_seen_zerolen++;
8469 RExC_seen |= REG_SEEN_LOOKBEHIND;
63ac0dad
KW
8470 switch (get_regex_charset(RExC_flags)) {
8471 case REGEX_LOCALE_CHARSET:
8472 op = BOUNDL;
8473 break;
8474 case REGEX_UNICODE_CHARSET:
8475 op = BOUNDU;
8476 break;
cfaf538b 8477 case REGEX_ASCII_RESTRICTED_CHARSET:
2f7f8cb1 8478 case REGEX_ASCII_MORE_RESTRICTED_CHARSET:
cfaf538b
KW
8479 op = BOUNDA;
8480 break;
63ac0dad
KW
8481 case REGEX_DEPENDS_CHARSET:
8482 op = BOUND;
8483 break;
8484 default:
8485 goto bad_charset;
a12cf05f 8486 }
63ac0dad 8487 ret = reg_node(pRExC_state, op);
b988e673 8488 FLAGS(ret) = get_regex_charset(RExC_flags);
a0d0e21e 8489 *flagp |= SIMPLE;
5024bc2d
KW
8490 if (! SIZE_ONLY && (U8) *(RExC_parse + 1) == '{') {
8491 ckWARNregdep(RExC_parse, "\"\\b{\" is deprecated; use \"\\b\\{\" instead");
8492 }
ee9b8eae 8493 goto finish_meta_pat;
a0d0e21e 8494 case 'B':
830247a4
IZ
8495 RExC_seen_zerolen++;
8496 RExC_seen |= REG_SEEN_LOOKBEHIND;
63ac0dad
KW
8497 switch (get_regex_charset(RExC_flags)) {
8498 case REGEX_LOCALE_CHARSET:
8499 op = NBOUNDL;
8500 break;
8501 case REGEX_UNICODE_CHARSET:
8502 op = NBOUNDU;
8503 break;
cfaf538b 8504 case REGEX_ASCII_RESTRICTED_CHARSET:
2f7f8cb1 8505 case REGEX_ASCII_MORE_RESTRICTED_CHARSET:
cfaf538b
KW
8506 op = NBOUNDA;
8507 break;
63ac0dad
KW
8508 case REGEX_DEPENDS_CHARSET:
8509 op = NBOUND;
8510 break;
8511 default:
8512 goto bad_charset;
a12cf05f 8513 }
63ac0dad 8514 ret = reg_node(pRExC_state, op);
b988e673 8515 FLAGS(ret) = get_regex_charset(RExC_flags);
a0d0e21e 8516 *flagp |= SIMPLE;
5024bc2d
KW
8517 if (! SIZE_ONLY && (U8) *(RExC_parse + 1) == '{') {
8518 ckWARNregdep(RExC_parse, "\"\\B{\" is deprecated; use \"\\B\\{\" instead");
8519 }
ee9b8eae 8520 goto finish_meta_pat;
a0d0e21e 8521 case 's':
980866de
KW
8522 switch (get_regex_charset(RExC_flags)) {
8523 case REGEX_LOCALE_CHARSET:
8524 op = SPACEL;
8525 break;
8526 case REGEX_UNICODE_CHARSET:
8527 op = SPACEU;
8528 break;
cfaf538b 8529 case REGEX_ASCII_RESTRICTED_CHARSET:
2f7f8cb1 8530 case REGEX_ASCII_MORE_RESTRICTED_CHARSET:
cfaf538b
KW
8531 op = SPACEA;
8532 break;
980866de
KW
8533 case REGEX_DEPENDS_CHARSET:
8534 op = SPACE;
8535 break;
8536 default:
8537 goto bad_charset;
a12cf05f 8538 }
980866de 8539 ret = reg_node(pRExC_state, op);
a0d0e21e 8540 *flagp |= HASWIDTH|SIMPLE;
ee9b8eae 8541 goto finish_meta_pat;
a0d0e21e 8542 case 'S':
980866de
KW
8543 switch (get_regex_charset(RExC_flags)) {
8544 case REGEX_LOCALE_CHARSET:
8545 op = NSPACEL;
8546 break;
8547 case REGEX_UNICODE_CHARSET:
8548 op = NSPACEU;
8549 break;
cfaf538b 8550 case REGEX_ASCII_RESTRICTED_CHARSET:
2f7f8cb1 8551 case REGEX_ASCII_MORE_RESTRICTED_CHARSET:
cfaf538b
KW
8552 op = NSPACEA;
8553 break;
980866de
KW
8554 case REGEX_DEPENDS_CHARSET:
8555 op = NSPACE;
8556 break;
8557 default:
8558 goto bad_charset;
a12cf05f 8559 }
980866de 8560 ret = reg_node(pRExC_state, op);
a0d0e21e 8561 *flagp |= HASWIDTH|SIMPLE;
ee9b8eae 8562 goto finish_meta_pat;
a0d0e21e 8563 case 'd':
56ae17b4
KW
8564 switch (get_regex_charset(RExC_flags)) {
8565 case REGEX_LOCALE_CHARSET:
8566 op = DIGITL;
8567 break;
cfaf538b 8568 case REGEX_ASCII_RESTRICTED_CHARSET:
2f7f8cb1 8569 case REGEX_ASCII_MORE_RESTRICTED_CHARSET:
cfaf538b
KW
8570 op = DIGITA;
8571 break;
56ae17b4
KW
8572 case REGEX_DEPENDS_CHARSET: /* No difference between these */
8573 case REGEX_UNICODE_CHARSET:
8574 op = DIGIT;
8575 break;
8576 default:
8577 goto bad_charset;
6ab9ea91 8578 }
56ae17b4 8579 ret = reg_node(pRExC_state, op);
a0d0e21e 8580 *flagp |= HASWIDTH|SIMPLE;
ee9b8eae 8581 goto finish_meta_pat;
a0d0e21e 8582 case 'D':
56ae17b4
KW
8583 switch (get_regex_charset(RExC_flags)) {
8584 case REGEX_LOCALE_CHARSET:
8585 op = NDIGITL;
8586 break;
cfaf538b 8587 case REGEX_ASCII_RESTRICTED_CHARSET:
2f7f8cb1 8588 case REGEX_ASCII_MORE_RESTRICTED_CHARSET:
cfaf538b
KW
8589 op = NDIGITA;
8590 break;
56ae17b4
KW
8591 case REGEX_DEPENDS_CHARSET: /* No difference between these */
8592 case REGEX_UNICODE_CHARSET:
8593 op = NDIGIT;
8594 break;
8595 default:
8596 goto bad_charset;
6ab9ea91 8597 }
56ae17b4 8598 ret = reg_node(pRExC_state, op);
a0d0e21e 8599 *flagp |= HASWIDTH|SIMPLE;
ee9b8eae 8600 goto finish_meta_pat;
e1d1eefb
YO
8601 case 'R':
8602 ret = reg_node(pRExC_state, LNBREAK);
8603 *flagp |= HASWIDTH|SIMPLE;
8604 goto finish_meta_pat;
8605 case 'h':
8606 ret = reg_node(pRExC_state, HORIZWS);
8607 *flagp |= HASWIDTH|SIMPLE;
8608 goto finish_meta_pat;
8609 case 'H':
8610 ret = reg_node(pRExC_state, NHORIZWS);
8611 *flagp |= HASWIDTH|SIMPLE;
8612 goto finish_meta_pat;
ee9b8eae 8613 case 'v':
e1d1eefb
YO
8614 ret = reg_node(pRExC_state, VERTWS);
8615 *flagp |= HASWIDTH|SIMPLE;
ee9b8eae
YO
8616 goto finish_meta_pat;
8617 case 'V':
e1d1eefb
YO
8618 ret = reg_node(pRExC_state, NVERTWS);
8619 *flagp |= HASWIDTH|SIMPLE;
ee9b8eae 8620 finish_meta_pat:
830247a4 8621 nextchar(pRExC_state);
fac92740 8622 Set_Node_Length(ret, 2); /* MJD */
ee9b8eae 8623 break;
a14b48bc
LW
8624 case 'p':
8625 case 'P':
3568d838 8626 {
3dab1dad 8627 char* const oldregxend = RExC_end;
d008bc60 8628#ifdef DEBUGGING
ccb2c380 8629 char* parse_start = RExC_parse - 2;
d008bc60 8630#endif
a14b48bc 8631
830247a4 8632 if (RExC_parse[1] == '{') {
3568d838 8633 /* a lovely hack--pretend we saw [\pX] instead */
830247a4
IZ
8634 RExC_end = strchr(RExC_parse, '}');
8635 if (!RExC_end) {
3dab1dad 8636 const U8 c = (U8)*RExC_parse;
830247a4
IZ
8637 RExC_parse += 2;
8638 RExC_end = oldregxend;
0da60cf5 8639 vFAIL2("Missing right brace on \\%c{}", c);
b45f050a 8640 }
830247a4 8641 RExC_end++;
a14b48bc 8642 }
af6f566e 8643 else {
830247a4 8644 RExC_end = RExC_parse + 2;
af6f566e
HS
8645 if (RExC_end > oldregxend)
8646 RExC_end = oldregxend;
8647 }
830247a4 8648 RExC_parse--;
a14b48bc 8649
3dab1dad 8650 ret = regclass(pRExC_state,depth+1);
a14b48bc 8651
830247a4
IZ
8652 RExC_end = oldregxend;
8653 RExC_parse--;
ccb2c380
MP
8654
8655 Set_Node_Offset(ret, parse_start + 2);
8656 Set_Node_Cur_Length(ret);
830247a4 8657 nextchar(pRExC_state);
a14b48bc
LW
8658 *flagp |= HASWIDTH|SIMPLE;
8659 }
8660 break;
fc8cd66c 8661 case 'N':
afefe6bf 8662 /* Handle \N and \N{NAME} here and not below because it can be
fc8cd66c
YO
8663 multicharacter. join_exact() will join them up later on.
8664 Also this makes sure that things like /\N{BLAH}+/ and
8665 \N{BLAH} being multi char Just Happen. dmq*/
8666 ++RExC_parse;
9d64099b 8667 ret= reg_namedseq(pRExC_state, NULL, flagp, depth);
fc8cd66c 8668 break;
0a4db386 8669 case 'k': /* Handle \k<NAME> and \k'NAME' */
1f1031fe 8670 parse_named_seq:
81714fb9
YO
8671 {
8672 char ch= RExC_parse[1];
1f1031fe
YO
8673 if (ch != '<' && ch != '\'' && ch != '{') {
8674 RExC_parse++;
8675 vFAIL2("Sequence %.2s... not terminated",parse_start);
81714fb9 8676 } else {
1f1031fe
YO
8677 /* this pretty much dupes the code for (?P=...) in reg(), if
8678 you change this make sure you change that */
81714fb9 8679 char* name_start = (RExC_parse += 2);
2eccd3b2 8680 U32 num = 0;
0a4db386
YO
8681 SV *sv_dat = reg_scan_name(pRExC_state,
8682 SIZE_ONLY ? REG_RSN_RETURN_NULL : REG_RSN_RETURN_DATA);
1f1031fe 8683 ch= (ch == '<') ? '>' : (ch == '{') ? '}' : '\'';
81714fb9 8684 if (RExC_parse == name_start || *RExC_parse != ch)
1f1031fe
YO
8685 vFAIL2("Sequence %.3s... not terminated",parse_start);
8686
8687 if (!SIZE_ONLY) {
8688 num = add_data( pRExC_state, 1, "S" );
8689 RExC_rxi->data->data[num]=(void*)sv_dat;
5a5094bd 8690 SvREFCNT_inc_simple_void(sv_dat);
1f1031fe
YO
8691 }
8692
81714fb9
YO
8693 RExC_sawback = 1;
8694 ret = reganode(pRExC_state,
4444fd9f
KW
8695 ((! FOLD)
8696 ? NREF
2f7f8cb1
KW
8697 : (MORE_ASCII_RESTRICTED)
8698 ? NREFFA
8699 : (AT_LEAST_UNI_SEMANTICS)
8700 ? NREFFU
8701 : (LOC)
8702 ? NREFFL
8703 : NREFF),
4444fd9f 8704 num);
81714fb9 8705 *flagp |= HASWIDTH;
1f1031fe 8706
81714fb9
YO
8707 /* override incorrect value set in reganode MJD */
8708 Set_Node_Offset(ret, parse_start+1);
8709 Set_Node_Cur_Length(ret); /* MJD */
8710 nextchar(pRExC_state);
1f1031fe 8711
81714fb9
YO
8712 }
8713 break;
1f1031fe 8714 }
2bf803e2 8715 case 'g':
a0d0e21e
LW
8716 case '1': case '2': case '3': case '4':
8717 case '5': case '6': case '7': case '8': case '9':
8718 {
c74340f9 8719 I32 num;
2bf803e2
YO
8720 bool isg = *RExC_parse == 'g';
8721 bool isrel = 0;
8722 bool hasbrace = 0;
8723 if (isg) {
c74340f9 8724 RExC_parse++;
2bf803e2
YO
8725 if (*RExC_parse == '{') {
8726 RExC_parse++;
8727 hasbrace = 1;
8728 }
8729 if (*RExC_parse == '-') {
8730 RExC_parse++;
8731 isrel = 1;
8732 }
1f1031fe
YO
8733 if (hasbrace && !isDIGIT(*RExC_parse)) {
8734 if (isrel) RExC_parse--;
8735 RExC_parse -= 2;
8736 goto parse_named_seq;
8737 } }
c74340f9 8738 num = atoi(RExC_parse);
b72d83b2
RGS
8739 if (isg && num == 0)
8740 vFAIL("Reference to invalid group 0");
c74340f9 8741 if (isrel) {
5624f11d 8742 num = RExC_npar - num;
c74340f9
YO
8743 if (num < 1)
8744 vFAIL("Reference to nonexistent or unclosed group");
8745 }
2bf803e2 8746 if (!isg && num > 9 && num >= RExC_npar)
a0d0e21e
LW
8747 goto defchar;
8748 else {
3dab1dad 8749 char * const parse_start = RExC_parse - 1; /* MJD */
830247a4
IZ
8750 while (isDIGIT(*RExC_parse))
8751 RExC_parse++;
1f1031fe
YO
8752 if (parse_start == RExC_parse - 1)
8753 vFAIL("Unterminated \\g... pattern");
2bf803e2
YO
8754 if (hasbrace) {
8755 if (*RExC_parse != '}')
8756 vFAIL("Unterminated \\g{...} pattern");
8757 RExC_parse++;
8758 }
c74340f9
YO
8759 if (!SIZE_ONLY) {
8760 if (num > (I32)RExC_rx->nparens)
8761 vFAIL("Reference to nonexistent group");
c74340f9 8762 }
830247a4 8763 RExC_sawback = 1;
eb160463 8764 ret = reganode(pRExC_state,
4444fd9f
KW
8765 ((! FOLD)
8766 ? REF
2f7f8cb1
KW
8767 : (MORE_ASCII_RESTRICTED)
8768 ? REFFA
8769 : (AT_LEAST_UNI_SEMANTICS)
8770 ? REFFU
8771 : (LOC)
8772 ? REFFL
8773 : REFF),
4444fd9f 8774 num);
a0d0e21e 8775 *flagp |= HASWIDTH;
2af232bd 8776
fac92740 8777 /* override incorrect value set in reganode MJD */
2af232bd 8778 Set_Node_Offset(ret, parse_start+1);
fac92740 8779 Set_Node_Cur_Length(ret); /* MJD */
830247a4
IZ
8780 RExC_parse--;
8781 nextchar(pRExC_state);
a0d0e21e
LW
8782 }
8783 }
8784 break;
8785 case '\0':
830247a4 8786 if (RExC_parse >= RExC_end)
b45f050a 8787 FAIL("Trailing \\");
a0d0e21e
LW
8788 /* FALL THROUGH */
8789 default:
a0288114 8790 /* Do not generate "unrecognized" warnings here, we fall
c9f97d15 8791 back into the quick-grab loop below */
45948336 8792 parse_start--;
a0d0e21e
LW
8793 goto defchar;
8794 }
8795 break;
4633a7c4
LW
8796
8797 case '#':
bbe252da 8798 if (RExC_flags & RXf_PMf_EXTENDED) {
bcdf7404 8799 if ( reg_skipcomment( pRExC_state ) )
4633a7c4
LW
8800 goto tryagain;
8801 }
8802 /* FALL THROUGH */
8803
f9a79580 8804 default:
561784a5
KW
8805
8806 parse_start = RExC_parse - 1;
8807
8808 RExC_parse++;
8809
8810 defchar: {
d669c36c 8811 typedef enum {
9bed422d
KW
8812 generic_char = 0,
8813 char_s,
d669c36c
KW
8814 upsilon_1,
8815 upsilon_2,
8816 iota_1,
8817 iota_2,
8818 } char_state;
9bed422d 8819 char_state latest_char_state = generic_char;
ba210ebe 8820 register STRLEN len;
58ae7d3f 8821 register UV ender;
a0d0e21e 8822 register char *p;
3dab1dad 8823 char *s;
80aecb99 8824 STRLEN foldlen;
89ebb4a3 8825 U8 tmpbuf[UTF8_MAXBYTES_CASE+1], *foldbuf;
6e326e84 8826 regnode * orig_emit;
f06dbbb7 8827
58ae7d3f 8828 ender = 0;
6e326e84
KW
8829 orig_emit = RExC_emit; /* Save the original output node position in
8830 case we need to output a different node
8831 type */
eb160463 8832 ret = reg_node(pRExC_state,
2c2b7f86
KW
8833 (U8) ((! FOLD) ? EXACT
8834 : (LOC)
8835 ? EXACTFL
2f7f8cb1
KW
8836 : (MORE_ASCII_RESTRICTED)
8837 ? EXACTFA
8838 : (AT_LEAST_UNI_SEMANTICS)
8839 ? EXACTFU
8840 : EXACTF)
2c2b7f86 8841 );
cd439c50 8842 s = STRING(ret);
830247a4
IZ
8843 for (len = 0, p = RExC_parse - 1;
8844 len < 127 && p < RExC_end;
a0d0e21e
LW
8845 len++)
8846 {
3dab1dad 8847 char * const oldp = p;
5b5a24f7 8848
bbe252da 8849 if (RExC_flags & RXf_PMf_EXTENDED)
bcdf7404 8850 p = regwhite( pRExC_state, p );
f9a79580 8851 switch ((U8)*p) {
a0d0e21e
LW
8852 case '^':
8853 case '$':
8854 case '.':
8855 case '[':
8856 case '(':
8857 case ')':
8858 case '|':
8859 goto loopdone;
8860 case '\\':
ee9b8eae
YO
8861 /* Literal Escapes Switch
8862
8863 This switch is meant to handle escape sequences that
8864 resolve to a literal character.
8865
8866 Every escape sequence that represents something
8867 else, like an assertion or a char class, is handled
8868 in the switch marked 'Special Escapes' above in this
8869 routine, but also has an entry here as anything that
8870 isn't explicitly mentioned here will be treated as
8871 an unescaped equivalent literal.
8872 */
8873
a0a388a1 8874 switch ((U8)*++p) {
ee9b8eae
YO
8875 /* These are all the special escapes. */
8876 case 'A': /* Start assertion */
8877 case 'b': case 'B': /* Word-boundary assertion*/
8878 case 'C': /* Single char !DANGEROUS! */
8879 case 'd': case 'D': /* digit class */
8880 case 'g': case 'G': /* generic-backref, pos assertion */
e1d1eefb 8881 case 'h': case 'H': /* HORIZWS */
ee9b8eae
YO
8882 case 'k': case 'K': /* named backref, keep marker */
8883 case 'N': /* named char sequence */
38a44b82 8884 case 'p': case 'P': /* Unicode property */
e1d1eefb 8885 case 'R': /* LNBREAK */
ee9b8eae 8886 case 's': case 'S': /* space class */
e1d1eefb 8887 case 'v': case 'V': /* VERTWS */
ee9b8eae
YO
8888 case 'w': case 'W': /* word class */
8889 case 'X': /* eXtended Unicode "combining character sequence" */
8890 case 'z': case 'Z': /* End of line/string assertion */
a0d0e21e
LW
8891 --p;
8892 goto loopdone;
ee9b8eae
YO
8893
8894 /* Anything after here is an escape that resolves to a
8895 literal. (Except digits, which may or may not)
8896 */
a0d0e21e
LW
8897 case 'n':
8898 ender = '\n';
8899 p++;
a687059c 8900 break;
a0d0e21e
LW
8901 case 'r':
8902 ender = '\r';
8903 p++;
a687059c 8904 break;
a0d0e21e
LW
8905 case 't':
8906 ender = '\t';
8907 p++;
a687059c 8908 break;
a0d0e21e
LW
8909 case 'f':
8910 ender = '\f';
8911 p++;
a687059c 8912 break;
a0d0e21e 8913 case 'e':
c7f1f016 8914 ender = ASCII_TO_NATIVE('\033');
a0d0e21e 8915 p++;
a687059c 8916 break;
a0d0e21e 8917 case 'a':
c7f1f016 8918 ender = ASCII_TO_NATIVE('\007');
a0d0e21e 8919 p++;
a687059c 8920 break;
f0a2b745
KW
8921 case 'o':
8922 {
8923 STRLEN brace_len = len;
00c0cb6d 8924 UV result;
454155d9
KW
8925 const char* error_msg;
8926
8927 bool valid = grok_bslash_o(p,
8928 &result,
8929 &brace_len,
8930 &error_msg,
8931 1);
8932 p += brace_len;
8933 if (! valid) {
8934 RExC_parse = p; /* going to die anyway; point
8935 to exact spot of failure */
f0a2b745
KW
8936 vFAIL(error_msg);
8937 }
00c0cb6d
DG
8938 else
8939 {
8940 ender = result;
8941 }
f0a2b745
KW
8942 if (PL_encoding && ender < 0x100) {
8943 goto recode_encoding;
8944 }
8945 if (ender > 0xff) {
62fed28b 8946 REQUIRE_UTF8;
f0a2b745
KW
8947 }
8948 break;
8949 }
a0d0e21e 8950 case 'x':
a0ed51b3 8951 if (*++p == '{') {
1df70142 8952 char* const e = strchr(p, '}');
b81d288d 8953
b45f050a 8954 if (!e) {
830247a4 8955 RExC_parse = p + 1;
b45f050a
JF
8956 vFAIL("Missing right brace on \\x{}");
8957 }
de5f0749 8958 else {
a4c04bdc
NC
8959 I32 flags = PERL_SCAN_ALLOW_UNDERSCORES
8960 | PERL_SCAN_DISALLOW_PREFIX;
1df70142 8961 STRLEN numlen = e - p - 1;
53305cf1 8962 ender = grok_hex(p + 1, &numlen, &flags, NULL);
aaa80028 8963 if (ender > 0xff)
62fed28b 8964 REQUIRE_UTF8;
a0ed51b3
LW
8965 p = e + 1;
8966 }
a0ed51b3
LW
8967 }
8968 else {
a4c04bdc 8969 I32 flags = PERL_SCAN_DISALLOW_PREFIX;
1df70142 8970 STRLEN numlen = 2;
53305cf1 8971 ender = grok_hex(p, &numlen, &flags, NULL);
a0ed51b3
LW
8972 p += numlen;
8973 }
9e08bc66
TS
8974 if (PL_encoding && ender < 0x100)
8975 goto recode_encoding;
a687059c 8976 break;
a0d0e21e
LW
8977 case 'c':
8978 p++;
17a3df4c 8979 ender = grok_bslash_c(*p++, UTF, SIZE_ONLY);
a687059c 8980 break;
a0d0e21e
LW
8981 case '0': case '1': case '2': case '3':case '4':
8982 case '5': case '6': case '7': case '8':case '9':
8983 if (*p == '0' ||
ca67da41 8984 (isDIGIT(p[1]) && atoi(p) >= RExC_npar))
c99e91e9
KW
8985 {
8986 I32 flags = PERL_SCAN_SILENT_ILLDIGIT;
1df70142 8987 STRLEN numlen = 3;
53305cf1 8988 ender = grok_oct(p, &numlen, &flags, NULL);
fa1639c5 8989 if (ender > 0xff) {
62fed28b 8990 REQUIRE_UTF8;
609122bd 8991 }
a0d0e21e
LW
8992 p += numlen;
8993 }
8994 else {
8995 --p;
8996 goto loopdone;
a687059c 8997 }
9e08bc66
TS
8998 if (PL_encoding && ender < 0x100)
8999 goto recode_encoding;
9000 break;
9001 recode_encoding:
e2a7e165 9002 if (! RExC_override_recoding) {
9e08bc66
TS
9003 SV* enc = PL_encoding;
9004 ender = reg_recode((const char)(U8)ender, &enc);
668c081a
NC
9005 if (!enc && SIZE_ONLY)
9006 ckWARNreg(p, "Invalid escape in the specified encoding");
62fed28b 9007 REQUIRE_UTF8;
9e08bc66 9008 }
a687059c 9009 break;
a0d0e21e 9010 case '\0':
830247a4 9011 if (p >= RExC_end)
b45f050a 9012 FAIL("Trailing \\");
a687059c 9013 /* FALL THROUGH */
a0d0e21e 9014 default:
216bfc0a
KW
9015 if (!SIZE_ONLY&& isALPHA(*p)) {
9016 /* Include any { following the alpha to emphasize
9017 * that it could be part of an escape at some point
9018 * in the future */
9019 int len = (*(p + 1) == '{') ? 2 : 1;
9020 ckWARN3reg(p + len, "Unrecognized escape \\%.*s passed through", len, p);
9021 }
a0ed51b3 9022 goto normal_default;
a0d0e21e
LW
9023 }
9024 break;
a687059c 9025 default:
a0ed51b3 9026 normal_default:
fd400ab9 9027 if (UTF8_IS_START(*p) && UTF) {
1df70142 9028 STRLEN numlen;
5e12f4fb 9029 ender = utf8n_to_uvchr((U8*)p, RExC_end - p,
9f7f3913 9030 &numlen, UTF8_ALLOW_DEFAULT);
a0ed51b3
LW
9031 p += numlen;
9032 }
9033 else
5b67c30a 9034 ender = (U8) *p++;
a0d0e21e 9035 break;
7e2509c1
KW
9036 } /* End of switch on the literal */
9037
6e326e84
KW
9038 /* Certain characters are problematic because their folded
9039 * length is so different from their original length that it
9040 * isn't handleable by the optimizer. They are therefore not
9041 * placed in an EXACTish node; and are here handled specially.
9042 * (Even if the optimizer handled LATIN_SMALL_LETTER_SHARP_S,
9043 * putting it in a special node keeps regexec from having to
9044 * deal with a non-utf8 multi-char fold */
2f7f8cb1 9045 if (FOLD
d669c36c 9046 && (ender > 255 || (! MORE_ASCII_RESTRICTED && ! LOC)))
2f7f8cb1 9047 {
d669c36c
KW
9048 /* We look for either side of the fold. For example \xDF
9049 * folds to 'ss'. We look for both the single character
9050 * \xDF and the sequence 'ss'. When we find something that
9051 * could be one of those, we stop and flush whatever we
9052 * have output so far into the EXACTish node that was being
9053 * built. Then restore the input pointer to what it was.
9054 * regatom will return that EXACT node, and will be called
9055 * again, positioned so the first character is the one in
9056 * question, which we return in a different node type.
9057 * The multi-char folds are a sequence, so the occurrence
9058 * of the first character in that sequence doesn't
9059 * necessarily mean that what follows is the rest of the
9060 * sequence. We keep track of that with a state machine,
9061 * with the state being set to the latest character
9062 * processed before the current one. Most characters will
9063 * set the state to 0, but if one occurs that is part of a
9064 * potential tricky fold sequence, the state is set to that
9065 * character, and the next loop iteration sees if the state
9066 * should progress towards the final folded-from character,
9067 * or if it was a false alarm. If it turns out to be a
9068 * false alarm, the character(s) will be output in a new
9069 * EXACTish node, and join_exact() will later combine them.
9070 * In the case of the 'ss' sequence, which is more common
9071 * and more easily checked, some look-ahead is done to
9072 * save time by ruling-out some false alarms */
9073 switch (ender) {
9074 default:
9bed422d 9075 latest_char_state = generic_char;
d669c36c
KW
9076 break;
9077 case 's':
9078 case 'S':
fe5a0c86 9079 case 0x17F: /* LATIN SMALL LETTER LONG S */
d669c36c
KW
9080 if (AT_LEAST_UNI_SEMANTICS) {
9081 if (latest_char_state == char_s) { /* 'ss' */
9082 ender = LATIN_SMALL_LETTER_SHARP_S;
9083 goto do_tricky;
9084 }
9085 else if (p < RExC_end) {
9086
9087 /* Look-ahead at the next character. If it
9088 * is also an s, we handle as a sharp s
9089 * tricky regnode. */
9090 if (*p == 's' || *p == 'S') {
9091
9092 /* But first flush anything in the
9093 * EXACTish buffer */
9094 if (len != 0) {
9095 p = oldp;
9096 goto loopdone;
9097 }
9098 p++; /* Account for swallowing this
9099 's' up */
9100 ender = LATIN_SMALL_LETTER_SHARP_S;
9101 goto do_tricky;
9102 }
9103 /* Here, the next character is not a
9104 * literal 's', but still could
9105 * evaluate to one if part of a \o{},
9106 * \x or \OCTAL-DIGIT. The minimum
9107 * length required for that is 4, eg
9108 * \x53 or \123 */
9109 else if (*p == '\\'
9110 && p < RExC_end - 4
9111 && (isDIGIT(*(p + 1))
9112 || *(p + 1) == 'x'
9113 || *(p + 1) == 'o' ))
9114 {
9115
9116 /* Here, it could be an 's', too much
9117 * bother to figure it out here. Flush
9118 * the buffer if any; when come back
9119 * here, set the state so know that the
9120 * previous char was an 's' */
9121 if (len != 0) {
9bed422d 9122 latest_char_state = generic_char;
d669c36c
KW
9123 p = oldp;
9124 goto loopdone;
9125 }
9126 latest_char_state = char_s;
9127 break;
9128 }
9129 }
9130 }
6e326e84 9131
d669c36c
KW
9132 /* Here, can't be an 'ss' sequence, or at least not
9133 * one that could fold to/from the sharp ss */
9bed422d 9134 latest_char_state = generic_char;
d669c36c
KW
9135 break;
9136 case 0x03C5: /* First char in upsilon series */
13d34caa
KW
9137 case 0x03A5: /* Also capital UPSILON, which folds to
9138 03C5, and hence exhibits the same
9139 problem */
d669c36c
KW
9140 if (p < RExC_end - 4) { /* Need >= 4 bytes left */
9141 latest_char_state = upsilon_1;
9142 if (len != 0) {
9143 p = oldp;
9144 goto loopdone;
9145 }
9146 }
9147 else {
9bed422d 9148 latest_char_state = generic_char;
d669c36c
KW
9149 }
9150 break;
9151 case 0x03B9: /* First char in iota series */
13d34caa 9152 case 0x0399: /* Also capital IOTA */
2d74afe1
KW
9153 case 0x1FBE: /* GREEK PROSGEGRAMMENI folds to 3B9 */
9154 case 0x0345: /* COMBINING GREEK YPOGEGRAMMENI folds
9155 to 3B9 */
d669c36c
KW
9156 if (p < RExC_end - 4) {
9157 latest_char_state = iota_1;
9158 if (len != 0) {
9159 p = oldp;
9160 goto loopdone;
9161 }
9162 }
9163 else {
9bed422d 9164 latest_char_state = generic_char;
d669c36c
KW
9165 }
9166 break;
9167 case 0x0308:
9168 if (latest_char_state == upsilon_1) {
9169 latest_char_state = upsilon_2;
9170 }
9171 else if (latest_char_state == iota_1) {
9172 latest_char_state = iota_2;
9173 }
9174 else {
9bed422d 9175 latest_char_state = generic_char;
d669c36c
KW
9176 }
9177 break;
9178 case 0x301:
9179 if (latest_char_state == upsilon_2) {
9180 ender = GREEK_SMALL_LETTER_UPSILON_WITH_DIALYTIKA_AND_TONOS;
9181 goto do_tricky;
9182 }
9183 else if (latest_char_state == iota_2) {
9184 ender = GREEK_SMALL_LETTER_IOTA_WITH_DIALYTIKA_AND_TONOS;
9185 goto do_tricky;
9186 }
9bed422d 9187 latest_char_state = generic_char;
d669c36c 9188 break;
6e326e84 9189
d669c36c 9190 /* These are the tricky fold characters. Flush any
dddecdc7
KW
9191 * buffer first. (When adding to this list, also should
9192 * add them to fold_grind.t to make sure get tested) */
d669c36c
KW
9193 case GREEK_SMALL_LETTER_UPSILON_WITH_DIALYTIKA_AND_TONOS:
9194 case GREEK_SMALL_LETTER_IOTA_WITH_DIALYTIKA_AND_TONOS:
9195 case LATIN_SMALL_LETTER_SHARP_S:
9196 case LATIN_CAPITAL_LETTER_SHARP_S:
dddecdc7
KW
9197 case 0x1FD3: /* GREEK SMALL LETTER IOTA WITH DIALYTIKA AND OXIA */
9198 case 0x1FE3: /* GREEK SMALL LETTER UPSILON WITH DIALYTIKA AND OXIA */
d669c36c
KW
9199 if (len != 0) {
9200 p = oldp;
9201 goto loopdone;
9202 }
9203 /* FALL THROUGH */
9204 do_tricky: {
9205 char* const oldregxend = RExC_end;
9206 U8 tmpbuf[UTF8_MAXBYTES+1];
9207
9208 /* Here, we know we need to generate a special
9209 * regnode, and 'ender' contains the tricky
9210 * character. What's done is to pretend it's in a
9211 * [bracketed] class, and let the code that deals
9212 * with those handle it, as that code has all the
9213 * intelligence necessary. First save the current
9214 * parse state, get rid of the already allocated
9215 * but empty EXACT node that the ANYOFV node will
9216 * replace, and point the parse to a buffer which
9217 * we fill with the character we want the regclass
9218 * code to think is being parsed */
9219 RExC_emit = orig_emit;
9220 RExC_parse = (char *) tmpbuf;
9221 if (UTF) {
9222 U8 *d = uvchr_to_utf8(tmpbuf, ender);
9223 *d = '\0';
9224 RExC_end = (char *) d;
9225 }
0169d36e
KW
9226 else { /* ender above 255 already excluded */
9227 tmpbuf[0] = (U8) ender;
d669c36c
KW
9228 tmpbuf[1] = '\0';
9229 RExC_end = RExC_parse + 1;
9230 }
6e326e84 9231
d669c36c
KW
9232 ret = regclass(pRExC_state,depth+1);
9233
9234 /* Here, have parsed the buffer. Reset the parse to
9235 * the actual input, and return */
9236 RExC_end = oldregxend;
9237 RExC_parse = p - 1;
6e326e84 9238
d669c36c
KW
9239 Set_Node_Offset(ret, RExC_parse);
9240 Set_Node_Cur_Length(ret);
9241 nextchar(pRExC_state);
9242 *flagp |= HASWIDTH|SIMPLE;
9243 return ret;
9244 }
6e326e84
KW
9245 }
9246 }
9247
bcdf7404
YO
9248 if ( RExC_flags & RXf_PMf_EXTENDED)
9249 p = regwhite( pRExC_state, p );
60a8b682 9250 if (UTF && FOLD) {
17580e7a
KW
9251 /* Prime the casefolded buffer. Locale rules, which apply
9252 * only to code points < 256, aren't known until execution,
9253 * so for them, just output the original character using
9254 * utf8 */
9255 if (LOC && ender < 256) {
9256 if (UNI_IS_INVARIANT(ender)) {
9257 *tmpbuf = (U8) ender;
9258 foldlen = 1;
9259 } else {
9260 *tmpbuf = UTF8_TWO_BYTE_HI(ender);
9261 *(tmpbuf + 1) = UTF8_TWO_BYTE_LO(ender);
9262 foldlen = 2;
9263 }
9264 }
9265 else if (isASCII(ender)) { /* Note: Here can't also be LOC
9266 */
2f7f8cb1 9267 ender = toLOWER(ender);
cd64649c 9268 *tmpbuf = (U8) ender;
2f7f8cb1
KW
9269 foldlen = 1;
9270 }
17580e7a
KW
9271 else if (! MORE_ASCII_RESTRICTED && ! LOC) {
9272
9273 /* Locale and /aa require more selectivity about the
9274 * fold, so are handled below. Otherwise, here, just
9275 * use the fold */
2f7f8cb1
KW
9276 ender = toFOLD_uni(ender, tmpbuf, &foldlen);
9277 }
9278 else {
17580e7a
KW
9279 /* Under locale rules or /aa we are not to mix,
9280 * respectively, ords < 256 or ASCII with non-. So
9281 * reject folds that mix them, using only the
9282 * non-folded code point. So do the fold to a
9283 * temporary, and inspect each character in it. */
2f7f8cb1
KW
9284 U8 trialbuf[UTF8_MAXBYTES_CASE+1];
9285 U8* s = trialbuf;
9286 UV tmpender = toFOLD_uni(ender, trialbuf, &foldlen);
9287 U8* e = s + foldlen;
9288 bool fold_ok = TRUE;
9289
9290 while (s < e) {
17580e7a
KW
9291 if (isASCII(*s)
9292 || (LOC && (UTF8_IS_INVARIANT(*s)
9293 || UTF8_IS_DOWNGRADEABLE_START(*s))))
9294 {
2f7f8cb1
KW
9295 fold_ok = FALSE;
9296 break;
9297 }
9298 s += UTF8SKIP(s);
9299 }
9300 if (fold_ok) {
9301 Copy(trialbuf, tmpbuf, foldlen, U8);
9302 ender = tmpender;
9303 }
9304 else {
9305 uvuni_to_utf8(tmpbuf, ender);
9306 foldlen = UNISKIP(ender);
9307 }
9308 }
60a8b682 9309 }
bcdf7404 9310 if (p < RExC_end && ISMULT2(p)) { /* Back off on ?+*. */
a0d0e21e
LW
9311 if (len)
9312 p = oldp;
16ea2a2e 9313 else if (UTF) {
80aecb99 9314 if (FOLD) {
60a8b682 9315 /* Emit all the Unicode characters. */
1df70142 9316 STRLEN numlen;
80aecb99
JH
9317 for (foldbuf = tmpbuf;
9318 foldlen;
9319 foldlen -= numlen) {
9320 ender = utf8_to_uvchr(foldbuf, &numlen);
9dc45d57 9321 if (numlen > 0) {
71207a34 9322 const STRLEN unilen = reguni(pRExC_state, ender, s);
0ebc6274
JH
9323 s += unilen;
9324 len += unilen;
9325 /* In EBCDIC the numlen
9326 * and unilen can differ. */
9dc45d57 9327 foldbuf += numlen;
47654450
JH
9328 if (numlen >= foldlen)
9329 break;
9dc45d57
JH
9330 }
9331 else
9332 break; /* "Can't happen." */
80aecb99
JH
9333 }
9334 }
9335 else {
71207a34 9336 const STRLEN unilen = reguni(pRExC_state, ender, s);
9ede7db1 9337 if (unilen > 0) {
0ebc6274
JH
9338 s += unilen;
9339 len += unilen;
9dc45d57 9340 }
80aecb99 9341 }
a0ed51b3 9342 }
a0d0e21e
LW
9343 else {
9344 len++;
eb160463 9345 REGC((char)ender, s++);
a0d0e21e
LW
9346 }
9347 break;
a687059c 9348 }
16ea2a2e 9349 if (UTF) {
80aecb99 9350 if (FOLD) {
60a8b682 9351 /* Emit all the Unicode characters. */
1df70142 9352 STRLEN numlen;
80aecb99
JH
9353 for (foldbuf = tmpbuf;
9354 foldlen;
9355 foldlen -= numlen) {
9356 ender = utf8_to_uvchr(foldbuf, &numlen);
9dc45d57 9357 if (numlen > 0) {
71207a34 9358 const STRLEN unilen = reguni(pRExC_state, ender, s);
0ebc6274
JH
9359 len += unilen;
9360 s += unilen;
9361 /* In EBCDIC the numlen
9362 * and unilen can differ. */
9dc45d57 9363 foldbuf += numlen;
47654450
JH
9364 if (numlen >= foldlen)
9365 break;
9dc45d57
JH
9366 }
9367 else
9368 break;
80aecb99
JH
9369 }
9370 }
9371 else {
71207a34 9372 const STRLEN unilen = reguni(pRExC_state, ender, s);
9ede7db1 9373 if (unilen > 0) {
0ebc6274
JH
9374 s += unilen;
9375 len += unilen;
9dc45d57 9376 }
80aecb99
JH
9377 }
9378 len--;
a0ed51b3 9379 }
d669c36c 9380 else {
eb160463 9381 REGC((char)ender, s++);
d669c36c 9382 }
a0d0e21e 9383 }
7e2509c1
KW
9384 loopdone: /* Jumped to when encounters something that shouldn't be in
9385 the node */
830247a4 9386 RExC_parse = p - 1;
fac92740 9387 Set_Node_Cur_Length(ret); /* MJD */
830247a4 9388 nextchar(pRExC_state);
793db0cb
JH
9389 {
9390 /* len is STRLEN which is unsigned, need to copy to signed */
9391 IV iv = len;
9392 if (iv < 0)
9393 vFAIL("Internal disaster");
9394 }
a0d0e21e
LW
9395 if (len > 0)
9396 *flagp |= HASWIDTH;
090f7165 9397 if (len == 1 && UNI_IS_INVARIANT(ender))
a0d0e21e 9398 *flagp |= SIMPLE;
3dab1dad 9399
cd439c50 9400 if (SIZE_ONLY)
830247a4 9401 RExC_size += STR_SZ(len);
3dab1dad
YO
9402 else {
9403 STR_LEN(ret) = len;
830247a4 9404 RExC_emit += STR_SZ(len);
07be1b83 9405 }
3dab1dad 9406 }
a0d0e21e
LW
9407 break;
9408 }
a687059c 9409
a0d0e21e 9410 return(ret);
980866de
KW
9411
9412/* Jumped to when an unrecognized character set is encountered */
9413bad_charset:
9414 Perl_croak(aTHX_ "panic: Unknown regex character set encoding: %u", get_regex_charset(RExC_flags));
9415 return(NULL);
a687059c
LW
9416}
9417
873ef191 9418STATIC char *
bcdf7404 9419S_regwhite( RExC_state_t *pRExC_state, char *p )
5b5a24f7 9420{
bcdf7404 9421 const char *e = RExC_end;
7918f24d
NC
9422
9423 PERL_ARGS_ASSERT_REGWHITE;
9424
5b5a24f7
CS
9425 while (p < e) {
9426 if (isSPACE(*p))
9427 ++p;
9428 else if (*p == '#') {
bcdf7404 9429 bool ended = 0;
5b5a24f7 9430 do {
bcdf7404
YO
9431 if (*p++ == '\n') {
9432 ended = 1;
9433 break;
9434 }
9435 } while (p < e);
9436 if (!ended)
9437 RExC_seen |= REG_SEEN_RUN_ON_COMMENT;
5b5a24f7
CS
9438 }
9439 else
9440 break;
9441 }
9442 return p;
9443}
9444
b8c5462f
JH
9445/* Parse POSIX character classes: [[:foo:]], [[=foo=]], [[.foo.]].
9446 Character classes ([:foo:]) can also be negated ([:^foo:]).
9447 Returns a named class id (ANYOF_XXX) if successful, -1 otherwise.
9448 Equivalence classes ([=foo=]) and composites ([.foo.]) are parsed,
beeb77fc 9449 but trigger failures because they are currently unimplemented. */
9a86a77b
JH
9450
9451#define POSIXCC_DONE(c) ((c) == ':')
9452#define POSIXCC_NOTYET(c) ((c) == '=' || (c) == '.')
9453#define POSIXCC(c) (POSIXCC_DONE(c) || POSIXCC_NOTYET(c))
9454
b8c5462f 9455STATIC I32
830247a4 9456S_regpposixcc(pTHX_ RExC_state_t *pRExC_state, I32 value)
620e46c5 9457{
97aff369 9458 dVAR;
936ed897 9459 I32 namedclass = OOB_NAMEDCLASS;
620e46c5 9460
7918f24d
NC
9461 PERL_ARGS_ASSERT_REGPPOSIXCC;
9462
830247a4 9463 if (value == '[' && RExC_parse + 1 < RExC_end &&
620e46c5 9464 /* I smell either [: or [= or [. -- POSIX has been here, right? */
9a86a77b 9465 POSIXCC(UCHARAT(RExC_parse))) {
1df70142 9466 const char c = UCHARAT(RExC_parse);
097eb12c 9467 char* const s = RExC_parse++;
b81d288d 9468
9a86a77b 9469 while (RExC_parse < RExC_end && UCHARAT(RExC_parse) != c)
830247a4
IZ
9470 RExC_parse++;
9471 if (RExC_parse == RExC_end)
620e46c5 9472 /* Grandfather lone [:, [=, [. */
830247a4 9473 RExC_parse = s;
620e46c5 9474 else {
3dab1dad 9475 const char* const t = RExC_parse++; /* skip over the c */
80916619
NC
9476 assert(*t == c);
9477
9a86a77b 9478 if (UCHARAT(RExC_parse) == ']') {
3dab1dad 9479 const char *posixcc = s + 1;
830247a4 9480 RExC_parse++; /* skip over the ending ] */
3dab1dad 9481
b8c5462f 9482 if (*s == ':') {
1df70142
AL
9483 const I32 complement = *posixcc == '^' ? *posixcc++ : 0;
9484 const I32 skip = t - posixcc;
80916619
NC
9485
9486 /* Initially switch on the length of the name. */
9487 switch (skip) {
9488 case 4:
3dab1dad
YO
9489 if (memEQ(posixcc, "word", 4)) /* this is not POSIX, this is the Perl \w */
9490 namedclass = complement ? ANYOF_NALNUM : ANYOF_ALNUM;
cc4319de 9491 break;
80916619
NC
9492 case 5:
9493 /* Names all of length 5. */
9494 /* alnum alpha ascii blank cntrl digit graph lower
9495 print punct space upper */
9496 /* Offset 4 gives the best switch position. */
9497 switch (posixcc[4]) {
9498 case 'a':
3dab1dad
YO
9499 if (memEQ(posixcc, "alph", 4)) /* alpha */
9500 namedclass = complement ? ANYOF_NALPHA : ANYOF_ALPHA;
80916619
NC
9501 break;
9502 case 'e':
3dab1dad
YO
9503 if (memEQ(posixcc, "spac", 4)) /* space */
9504 namedclass = complement ? ANYOF_NPSXSPC : ANYOF_PSXSPC;
80916619
NC
9505 break;
9506 case 'h':
3dab1dad
YO
9507 if (memEQ(posixcc, "grap", 4)) /* graph */
9508 namedclass = complement ? ANYOF_NGRAPH : ANYOF_GRAPH;
80916619
NC
9509 break;
9510 case 'i':
3dab1dad
YO
9511 if (memEQ(posixcc, "asci", 4)) /* ascii */
9512 namedclass = complement ? ANYOF_NASCII : ANYOF_ASCII;
80916619
NC
9513 break;
9514 case 'k':
3dab1dad
YO
9515 if (memEQ(posixcc, "blan", 4)) /* blank */
9516 namedclass = complement ? ANYOF_NBLANK : ANYOF_BLANK;
80916619
NC
9517 break;
9518 case 'l':
3dab1dad
YO
9519 if (memEQ(posixcc, "cntr", 4)) /* cntrl */
9520 namedclass = complement ? ANYOF_NCNTRL : ANYOF_CNTRL;
80916619
NC
9521 break;
9522 case 'm':
3dab1dad
YO
9523 if (memEQ(posixcc, "alnu", 4)) /* alnum */
9524 namedclass = complement ? ANYOF_NALNUMC : ANYOF_ALNUMC;
80916619
NC
9525 break;
9526 case 'r':
3dab1dad
YO
9527 if (memEQ(posixcc, "lowe", 4)) /* lower */
9528 namedclass = complement ? ANYOF_NLOWER : ANYOF_LOWER;
9529 else if (memEQ(posixcc, "uppe", 4)) /* upper */
9530 namedclass = complement ? ANYOF_NUPPER : ANYOF_UPPER;
80916619
NC
9531 break;
9532 case 't':
3dab1dad
YO
9533 if (memEQ(posixcc, "digi", 4)) /* digit */
9534 namedclass = complement ? ANYOF_NDIGIT : ANYOF_DIGIT;
9535 else if (memEQ(posixcc, "prin", 4)) /* print */
9536 namedclass = complement ? ANYOF_NPRINT : ANYOF_PRINT;
9537 else if (memEQ(posixcc, "punc", 4)) /* punct */
9538 namedclass = complement ? ANYOF_NPUNCT : ANYOF_PUNCT;
80916619 9539 break;
b8c5462f
JH
9540 }
9541 break;
80916619 9542 case 6:
3dab1dad
YO
9543 if (memEQ(posixcc, "xdigit", 6))
9544 namedclass = complement ? ANYOF_NXDIGIT : ANYOF_XDIGIT;
b8c5462f
JH
9545 break;
9546 }
80916619
NC
9547
9548 if (namedclass == OOB_NAMEDCLASS)
b45f050a
JF
9549 Simple_vFAIL3("POSIX class [:%.*s:] unknown",
9550 t - s - 1, s + 1);
80916619
NC
9551 assert (posixcc[skip] == ':');
9552 assert (posixcc[skip+1] == ']');
b45f050a 9553 } else if (!SIZE_ONLY) {
b8c5462f 9554 /* [[=foo=]] and [[.foo.]] are still future. */
b45f050a 9555
830247a4 9556 /* adjust RExC_parse so the warning shows after
b45f050a 9557 the class closes */
9a86a77b 9558 while (UCHARAT(RExC_parse) && UCHARAT(RExC_parse) != ']')
830247a4 9559 RExC_parse++;
b45f050a
JF
9560 Simple_vFAIL3("POSIX syntax [%c %c] is reserved for future extensions", c, c);
9561 }
b8c5462f
JH
9562 } else {
9563 /* Maternal grandfather:
9564 * "[:" ending in ":" but not in ":]" */
830247a4 9565 RExC_parse = s;
767d463e 9566 }
620e46c5
JH
9567 }
9568 }
9569
b8c5462f
JH
9570 return namedclass;
9571}
9572
9573STATIC void
830247a4 9574S_checkposixcc(pTHX_ RExC_state_t *pRExC_state)
b8c5462f 9575{
97aff369 9576 dVAR;
7918f24d
NC
9577
9578 PERL_ARGS_ASSERT_CHECKPOSIXCC;
9579
3dab1dad 9580 if (POSIXCC(UCHARAT(RExC_parse))) {
1df70142
AL
9581 const char *s = RExC_parse;
9582 const char c = *s++;
b8c5462f 9583
3dab1dad 9584 while (isALNUM(*s))
b8c5462f
JH
9585 s++;
9586 if (*s && c == *s && s[1] == ']') {
668c081a
NC
9587 ckWARN3reg(s+2,
9588 "POSIX syntax [%c %c] belongs inside character classes",
9589 c, c);
b45f050a
JF
9590
9591 /* [[=foo=]] and [[.foo.]] are still future. */
9a86a77b 9592 if (POSIXCC_NOTYET(c)) {
830247a4 9593 /* adjust RExC_parse so the error shows after
b45f050a 9594 the class closes */
9a86a77b 9595 while (UCHARAT(RExC_parse) && UCHARAT(RExC_parse++) != ']')
3dab1dad 9596 NOOP;
b45f050a
JF
9597 Simple_vFAIL3("POSIX syntax [%c %c] is reserved for future extensions", c, c);
9598 }
b8c5462f
JH
9599 }
9600 }
620e46c5
JH
9601}
9602
003331de
KW
9603/* No locale test, and always Unicode semantics */
9604#define _C_C_T_NOLOC_(NAME,TEST,WORD) \
9605ANYOF_##NAME: \
9606 for (value = 0; value < 256; value++) \
9607 if (TEST) \
5bfec14d 9608 stored += set_regclass_bit(pRExC_state, ret, (U8) value, &l1_fold_invlist, &unicode_alternate); \
003331de
KW
9609 yesno = '+'; \
9610 what = WORD; \
9611 break; \
9612case ANYOF_N##NAME: \
9613 for (value = 0; value < 256; value++) \
9614 if (!TEST) \
5bfec14d 9615 stored += set_regclass_bit(pRExC_state, ret, (U8) value, &l1_fold_invlist, &unicode_alternate); \
003331de
KW
9616 yesno = '!'; \
9617 what = WORD; \
e1d1eefb 9618 break
89836f1f 9619
a12cf05f
KW
9620/* Like the above, but there are differences if we are in uni-8-bit or not, so
9621 * there are two tests passed in, to use depending on that. There aren't any
9622 * cases where the label is different from the name, so no need for that
9623 * parameter */
f952827c 9624#define _C_C_T_(NAME, TEST_8, TEST_7, WORD) \
003331de
KW
9625ANYOF_##NAME: \
9626 if (LOC) ANYOF_CLASS_SET(ret, ANYOF_##NAME); \
9627 else if (UNI_SEMANTICS) { \
9628 for (value = 0; value < 256; value++) { \
f952827c 9629 if (TEST_8(value)) stored += \
5bfec14d 9630 set_regclass_bit(pRExC_state, ret, (U8) value, &l1_fold_invlist, &unicode_alternate); \
003331de
KW
9631 } \
9632 } \
9633 else { \
9634 for (value = 0; value < 128; value++) { \
f952827c 9635 if (TEST_7(UNI_TO_NATIVE(value))) stored += \
4c9daa0a 9636 set_regclass_bit(pRExC_state, ret, \
5bfec14d 9637 (U8) UNI_TO_NATIVE(value), &l1_fold_invlist, &unicode_alternate); \
003331de
KW
9638 } \
9639 } \
9640 yesno = '+'; \
9641 what = WORD; \
9642 break; \
9643case ANYOF_N##NAME: \
9644 if (LOC) ANYOF_CLASS_SET(ret, ANYOF_N##NAME); \
9645 else if (UNI_SEMANTICS) { \
9646 for (value = 0; value < 256; value++) { \
f952827c 9647 if (! TEST_8(value)) stored += \
5bfec14d 9648 set_regclass_bit(pRExC_state, ret, (U8) value, &l1_fold_invlist, &unicode_alternate); \
003331de
KW
9649 } \
9650 } \
9651 else { \
9652 for (value = 0; value < 128; value++) { \
4c9daa0a 9653 if (! TEST_7(UNI_TO_NATIVE(value))) stored += set_regclass_bit( \
5bfec14d 9654 pRExC_state, ret, (U8) UNI_TO_NATIVE(value), &l1_fold_invlist, &unicode_alternate); \
003331de 9655 } \
2f7f8cb1 9656 if (AT_LEAST_ASCII_RESTRICTED) { \
cfaf538b 9657 for (value = 128; value < 256; value++) { \
4c9daa0a 9658 stored += set_regclass_bit( \
5bfec14d 9659 pRExC_state, ret, (U8) UNI_TO_NATIVE(value), &l1_fold_invlist, &unicode_alternate); \
cfaf538b 9660 } \
137165a6 9661 ANYOF_FLAGS(ret) |= ANYOF_UNICODE_ALL; \
cfaf538b
KW
9662 } \
9663 else { \
9664 /* For a non-ut8 target string with DEPENDS semantics, all above \
9665 * ASCII Latin1 code points match the complement of any of the \
9666 * classes. But in utf8, they have their Unicode semantics, so \
9667 * can't just set them in the bitmap, or else regexec.c will think \
9668 * they matched when they shouldn't. */ \
137165a6 9669 ANYOF_FLAGS(ret) |= ANYOF_NON_UTF8_LATIN1_ALL; \
cfaf538b 9670 } \
003331de
KW
9671 } \
9672 yesno = '!'; \
9673 what = WORD; \
a12cf05f
KW
9674 break
9675
2283d326 9676STATIC U8
a25abddc 9677S_set_regclass_bit_fold(pTHX_ RExC_state_t *pRExC_state, regnode* node, const U8 value, SV** invlist_ptr, AV** alternate_ptr)
2283d326
KW
9678{
9679
9680 /* Handle the setting of folds in the bitmap for non-locale ANYOF nodes.
9681 * Locale folding is done at run-time, so this function should not be
9682 * called for nodes that are for locales.
9683 *
d50a4f90 9684 * This function sets the bit corresponding to the fold of the input
2283d326
KW
9685 * 'value', if not already set. The fold of 'f' is 'F', and the fold of
9686 * 'F' is 'f'.
9687 *
d50a4f90
KW
9688 * It also knows about the characters that are in the bitmap that have
9689 * folds that are matchable only outside it, and sets the appropriate lists
9690 * and flags.
9691 *
9692 * It returns the number of bits that actually changed from 0 to 1 */
2283d326
KW
9693
9694 U8 stored = 0;
2283d326
KW
9695 U8 fold;
9696
4c9daa0a
KW
9697 PERL_ARGS_ASSERT_SET_REGCLASS_BIT_FOLD;
9698
cfaf538b 9699 fold = (AT_LEAST_UNI_SEMANTICS) ? PL_fold_latin1[value]
2f7f8cb1 9700 : PL_fold[value];
2283d326
KW
9701
9702 /* It assumes the bit for 'value' has already been set */
9703 if (fold != value && ! ANYOF_BITMAP_TEST(node, fold)) {
9704 ANYOF_BITMAP_SET(node, fold);
9705 stored++;
9706 }
d50a4f90
KW
9707 if (_HAS_NONLATIN1_FOLD_CLOSURE_ONLY_FOR_USE_BY_REGCOMP_DOT_C_AND_REGEXEC_DOT_C(value) && (! isASCII(value) || ! MORE_ASCII_RESTRICTED)) {
9708 /* Certain Latin1 characters have matches outside the bitmap. To get
9709 * here, 'value' is one of those characters. None of these matches is
9710 * valid for ASCII characters under /aa, which have been excluded by
9711 * the 'if' above. The matches fall into three categories:
9712 * 1) They are singly folded-to or -from an above 255 character, as
9713 * LATIN SMALL LETTER Y WITH DIAERESIS and LATIN CAPITAL LETTER Y
9714 * WITH DIAERESIS;
9715 * 2) They are part of a multi-char fold with another character in the
9716 * bitmap, only LATIN SMALL LETTER SHARP S => "ss" fits that bill;
9717 * 3) They are part of a multi-char fold with a character not in the
9718 * bitmap, such as various ligatures.
9719 * We aren't dealing fully with multi-char folds, except we do deal
9720 * with the pattern containing a character that has a multi-char fold
9721 * (not so much the inverse).
9722 * For types 1) and 3), the matches only happen when the target string
9723 * is utf8; that's not true for 2), and we set a flag for it.
9724 *
9725 * The code below adds to the passed in inversion list the single fold
9726 * closures for 'value'. The values are hard-coded here so that an
9727 * innocent-looking character class, like /[ks]/i won't have to go out
9728 * to disk to find the possible matches. XXX It would be better to
9729 * generate these via regen, in case a new version of the Unicode
9730 * standard adds new mappings, though that is not really likely. */
9731 switch (value) {
9732 case 'k':
9733 case 'K':
9734 /* KELVIN SIGN */
9735 *invlist_ptr = add_cp_to_invlist(*invlist_ptr, 0x212A);
9736 break;
9737 case 's':
9738 case 'S':
9739 /* LATIN SMALL LETTER LONG S */
9740 *invlist_ptr = add_cp_to_invlist(*invlist_ptr, 0x017F);
9741 break;
9742 case MICRO_SIGN:
9743 *invlist_ptr = add_cp_to_invlist(*invlist_ptr,
9744 GREEK_SMALL_LETTER_MU);
9745 *invlist_ptr = add_cp_to_invlist(*invlist_ptr,
9746 GREEK_CAPITAL_LETTER_MU);
9747 break;
9748 case LATIN_CAPITAL_LETTER_A_WITH_RING_ABOVE:
9749 case LATIN_SMALL_LETTER_A_WITH_RING_ABOVE:
9750 /* ANGSTROM SIGN */
9751 *invlist_ptr = add_cp_to_invlist(*invlist_ptr, 0x212B);
9752 if (DEPENDS_SEMANTICS) { /* See DEPENDS comment below */
9753 *invlist_ptr = add_cp_to_invlist(*invlist_ptr,
9754 PL_fold_latin1[value]);
9755 }
9756 break;
9757 case LATIN_SMALL_LETTER_Y_WITH_DIAERESIS:
9758 *invlist_ptr = add_cp_to_invlist(*invlist_ptr,
9759 LATIN_CAPITAL_LETTER_Y_WITH_DIAERESIS);
9760 break;
9761 case LATIN_SMALL_LETTER_SHARP_S:
1d4120df
KW
9762 *invlist_ptr = add_cp_to_invlist(*invlist_ptr,
9763 LATIN_CAPITAL_LETTER_SHARP_S);
d50a4f90 9764
419d8974 9765 /* Under /a, /d, and /u, this can match the two chars "ss" */
d50a4f90
KW
9766 if (! MORE_ASCII_RESTRICTED) {
9767 add_alternate(alternate_ptr, (U8 *) "ss", 2);
9768
419d8974
KW
9769 /* And under /u or /a, it can match even if the target is
9770 * not utf8 */
9771 if (AT_LEAST_UNI_SEMANTICS) {
d50a4f90
KW
9772 ANYOF_FLAGS(node) |= ANYOF_NONBITMAP_NON_UTF8;
9773 }
9774 }
9775 break;
9776 case 'F': case 'f':
9777 case 'I': case 'i':
9778 case 'L': case 'l':
9779 case 'T': case 't':
d50a4f90
KW
9780 case 'A': case 'a':
9781 case 'H': case 'h':
9782 case 'J': case 'j':
9783 case 'N': case 'n':
9784 case 'W': case 'w':
9785 case 'Y': case 'y':
f580a93d
KW
9786 /* These all are targets of multi-character folds from code
9787 * points that require UTF8 to express, so they can't match
9788 * unless the target string is in UTF-8, so no action here is
9789 * necessary, as regexec.c properly handles the general case
9790 * for UTF-8 matching */
d50a4f90
KW
9791 break;
9792 default:
9793 /* Use deprecated warning to increase the chances of this
9794 * being output */
9795 ckWARN2regdep(RExC_parse, "Perl folding rules are not up-to-date for 0x%x; please use the perlbug utility to report;", value);
9796 break;
9797 }
9798 }
9799 else if (DEPENDS_SEMANTICS
f56b6394 9800 && ! isASCII(value)
d50a4f90
KW
9801 && PL_fold_latin1[value] != value)
9802 {
9803 /* Under DEPENDS rules, non-ASCII Latin1 characters match their
9804 * folds only when the target string is in UTF-8. We add the fold
9805 * here to the list of things to match outside the bitmap, which
9806 * won't be looked at unless it is UTF8 (or else if something else
9807 * says to look even if not utf8, but those things better not happen
9808 * under DEPENDS semantics. */
9809 *invlist_ptr = add_cp_to_invlist(*invlist_ptr, PL_fold_latin1[value]);
2283d326
KW
9810 }
9811
9812 return stored;
9813}
9814
9815
9816PERL_STATIC_INLINE U8
a25abddc 9817S_set_regclass_bit(pTHX_ RExC_state_t *pRExC_state, regnode* node, const U8 value, SV** invlist_ptr, AV** alternate_ptr)
2283d326
KW
9818{
9819 /* This inline function sets a bit in the bitmap if not already set, and if
9820 * appropriate, its fold, returning the number of bits that actually
9821 * changed from 0 to 1 */
9822
9823 U8 stored;
9824
4c9daa0a
KW
9825 PERL_ARGS_ASSERT_SET_REGCLASS_BIT;
9826
2283d326
KW
9827 if (ANYOF_BITMAP_TEST(node, value)) { /* Already set */
9828 return 0;
9829 }
9830
9831 ANYOF_BITMAP_SET(node, value);
9832 stored = 1;
9833
9834 if (FOLD && ! LOC) { /* Locale folds aren't known until runtime */
2c6aa593 9835 stored += set_regclass_bit_fold(pRExC_state, node, value, invlist_ptr, alternate_ptr);
2283d326
KW
9836 }
9837
9838 return stored;
9839}
9840
c8453963
KW
9841STATIC void
9842S_add_alternate(pTHX_ AV** alternate_ptr, U8* string, STRLEN len)
9843{
9844 /* Adds input 'string' with length 'len' to the ANYOF node's unicode
9845 * alternate list, pointed to by 'alternate_ptr'. This is an array of
9846 * the multi-character folds of characters in the node */
9847 SV *sv;
9848
9849 PERL_ARGS_ASSERT_ADD_ALTERNATE;
9850
9851 if (! *alternate_ptr) {
9852 *alternate_ptr = newAV();
9853 }
9854 sv = newSVpvn_utf8((char*)string, len, TRUE);
9855 av_push(*alternate_ptr, sv);
9856 return;
9857}
9858
7f6f358c
YO
9859/*
9860 parse a class specification and produce either an ANYOF node that
ddad5e0b 9861 matches the pattern or perhaps will be optimized into an EXACTish node
679d1424
KW
9862 instead. The node contains a bit map for the first 256 characters, with the
9863 corresponding bit set if that character is in the list. For characters
9864 above 255, a range list is used */
89836f1f 9865
76e3520e 9866STATIC regnode *
3dab1dad 9867S_regclass(pTHX_ RExC_state_t *pRExC_state, U32 depth)
a687059c 9868{
97aff369 9869 dVAR;
9a86a77b 9870 register UV nextvalue;
3568d838 9871 register IV prevvalue = OOB_UNICODE;
ffc61ed2 9872 register IV range = 0;
e1d1eefb 9873 UV value = 0; /* XXX:dmq: needs to be referenceable (unfortunately) */
c277df42 9874 register regnode *ret;
ba210ebe 9875 STRLEN numlen;
ffc61ed2 9876 IV namedclass;
cbbf8932 9877 char *rangebegin = NULL;
936ed897 9878 bool need_class = 0;
827f5bb8 9879 bool allow_full_fold = TRUE; /* Assume wants multi-char folding */
c445ea15 9880 SV *listsv = NULL;
137165a6
KW
9881 STRLEN initial_listsv_len = 0; /* Kind of a kludge to see if it is more
9882 than just initialized. */
ffc61ed2 9883 UV n;
53742956
KW
9884
9885 /* code points this node matches that can't be stored in the bitmap */
a25abddc 9886 SV* nonbitmap = NULL;
53742956
KW
9887
9888 /* The items that are to match that aren't stored in the bitmap, but are a
9889 * result of things that are stored there. This is the fold closure of
9890 * such a character, either because it has DEPENDS semantics and shouldn't
9891 * be matched unless the target string is utf8, or is a code point that is
9892 * too large for the bit map, as for example, the fold of the MICRO SIGN is
9893 * above 255. This all is solely for performance reasons. By having this
9894 * code know the outside-the-bitmap folds that the bitmapped characters are
9895 * involved with, we don't have to go out to disk to find the list of
9896 * matches, unless the character class includes code points that aren't
9897 * storable in the bit map. That means that a character class with an 's'
9898 * in it, for example, doesn't need to go out to disk to find everything
9899 * that matches. A 2nd list is used so that the 'nonbitmap' list is kept
9900 * empty unless there is something whose fold we don't know about, and will
9901 * have to go out to the disk to find. */
a25abddc 9902 SV* l1_fold_invlist = NULL;
53742956
KW
9903
9904 /* List of multi-character folds that are matched by this node */
cbbf8932 9905 AV* unicode_alternate = NULL;
1b2d223b
JH
9906#ifdef EBCDIC
9907 UV literal_endpoint = 0;
9908#endif
ffc130aa 9909 UV stored = 0; /* how many chars stored in the bitmap */
ffc61ed2 9910
3dab1dad 9911 regnode * const orig_emit = RExC_emit; /* Save the original RExC_emit in
7f6f358c 9912 case we need to change the emitted regop to an EXACT. */
07be1b83 9913 const char * orig_parse = RExC_parse;
72f13be8 9914 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
9915
9916 PERL_ARGS_ASSERT_REGCLASS;
76e84362
SH
9917#ifndef DEBUGGING
9918 PERL_UNUSED_ARG(depth);
9919#endif
72f13be8 9920
3dab1dad 9921 DEBUG_PARSE("clas");
7f6f358c
YO
9922
9923 /* Assume we are going to generate an ANYOF node. */
ffc61ed2
JH
9924 ret = reganode(pRExC_state, ANYOF, 0);
9925
56ca34ca
KW
9926
9927 if (!SIZE_ONLY) {
ffc61ed2 9928 ANYOF_FLAGS(ret) = 0;
56ca34ca 9929 }
ffc61ed2 9930
9a86a77b 9931 if (UCHARAT(RExC_parse) == '^') { /* Complement of range. */
ffc61ed2
JH
9932 RExC_naughty++;
9933 RExC_parse++;
9934 if (!SIZE_ONLY)
9935 ANYOF_FLAGS(ret) |= ANYOF_INVERT;
827f5bb8
KW
9936
9937 /* We have decided to not allow multi-char folds in inverted character
ac455f4c
KW
9938 * classes, due to the confusion that can happen, especially with
9939 * classes that are designed for a non-Unicode world: You have the
9940 * peculiar case that:
827f5bb8
KW
9941 "s s" =~ /^[^\xDF]+$/i => Y
9942 "ss" =~ /^[^\xDF]+$/i => N
9943 *
9944 * See [perl #89750] */
9945 allow_full_fold = FALSE;
ffc61ed2 9946 }
a0d0e21e 9947
73060fc4 9948 if (SIZE_ONLY) {
830247a4 9949 RExC_size += ANYOF_SKIP;
73060fc4
JH
9950 listsv = &PL_sv_undef; /* For code scanners: listsv always non-NULL. */
9951 }
936ed897 9952 else {
830247a4 9953 RExC_emit += ANYOF_SKIP;
3a15e693 9954 if (LOC) {
936ed897 9955 ANYOF_FLAGS(ret) |= ANYOF_LOCALE;
3a15e693 9956 }
ffc61ed2 9957 ANYOF_BITMAP_ZERO(ret);
396482e1 9958 listsv = newSVpvs("# comment\n");
137165a6 9959 initial_listsv_len = SvCUR(listsv);
a0d0e21e 9960 }
b8c5462f 9961
9a86a77b
JH
9962 nextvalue = RExC_parse < RExC_end ? UCHARAT(RExC_parse) : 0;
9963
b938889d 9964 if (!SIZE_ONLY && POSIXCC(nextvalue))
830247a4 9965 checkposixcc(pRExC_state);
b8c5462f 9966
f064b6ad
HS
9967 /* allow 1st char to be ] (allowing it to be - is dealt with later) */
9968 if (UCHARAT(RExC_parse) == ']')
9969 goto charclassloop;
ffc61ed2 9970
fc8cd66c 9971parseit:
9a86a77b 9972 while (RExC_parse < RExC_end && UCHARAT(RExC_parse) != ']') {
ffc61ed2
JH
9973
9974 charclassloop:
9975
9976 namedclass = OOB_NAMEDCLASS; /* initialize as illegal */
9977
73b437c8 9978 if (!range)
830247a4 9979 rangebegin = RExC_parse;
ffc61ed2 9980 if (UTF) {
5e12f4fb 9981 value = utf8n_to_uvchr((U8*)RExC_parse,
3568d838 9982 RExC_end - RExC_parse,
9f7f3913 9983 &numlen, UTF8_ALLOW_DEFAULT);
ffc61ed2
JH
9984 RExC_parse += numlen;
9985 }
9986 else
9987 value = UCHARAT(RExC_parse++);
7f6f358c 9988
9a86a77b
JH
9989 nextvalue = RExC_parse < RExC_end ? UCHARAT(RExC_parse) : 0;
9990 if (value == '[' && POSIXCC(nextvalue))
830247a4 9991 namedclass = regpposixcc(pRExC_state, value);
620e46c5 9992 else if (value == '\\') {
ffc61ed2 9993 if (UTF) {
5e12f4fb 9994 value = utf8n_to_uvchr((U8*)RExC_parse,
ffc61ed2 9995 RExC_end - RExC_parse,
9f7f3913 9996 &numlen, UTF8_ALLOW_DEFAULT);
ffc61ed2
JH
9997 RExC_parse += numlen;
9998 }
9999 else
10000 value = UCHARAT(RExC_parse++);
470c3474 10001 /* Some compilers cannot handle switching on 64-bit integer
ffc61ed2 10002 * values, therefore value cannot be an UV. Yes, this will
e2962f66
JH
10003 * be a problem later if we want switch on Unicode.
10004 * A similar issue a little bit later when switching on
10005 * namedclass. --jhi */
ffc61ed2 10006 switch ((I32)value) {
b8c5462f
JH
10007 case 'w': namedclass = ANYOF_ALNUM; break;
10008 case 'W': namedclass = ANYOF_NALNUM; break;
10009 case 's': namedclass = ANYOF_SPACE; break;
10010 case 'S': namedclass = ANYOF_NSPACE; break;
10011 case 'd': namedclass = ANYOF_DIGIT; break;
10012 case 'D': namedclass = ANYOF_NDIGIT; break;
e1d1eefb
YO
10013 case 'v': namedclass = ANYOF_VERTWS; break;
10014 case 'V': namedclass = ANYOF_NVERTWS; break;
10015 case 'h': namedclass = ANYOF_HORIZWS; break;
10016 case 'H': namedclass = ANYOF_NHORIZWS; break;
fc8cd66c
YO
10017 case 'N': /* Handle \N{NAME} in class */
10018 {
10019 /* We only pay attention to the first char of
10020 multichar strings being returned. I kinda wonder
10021 if this makes sense as it does change the behaviour
10022 from earlier versions, OTOH that behaviour was broken
10023 as well. */
10024 UV v; /* value is register so we cant & it /grrr */
9d64099b 10025 if (reg_namedseq(pRExC_state, &v, NULL, depth)) {
fc8cd66c
YO
10026 goto parseit;
10027 }
10028 value= v;
10029 }
10030 break;
ffc61ed2
JH
10031 case 'p':
10032 case 'P':
3dab1dad
YO
10033 {
10034 char *e;
af6f566e 10035 if (RExC_parse >= RExC_end)
2a4859cd 10036 vFAIL2("Empty \\%c{}", (U8)value);
ffc61ed2 10037 if (*RExC_parse == '{') {
1df70142 10038 const U8 c = (U8)value;
ffc61ed2
JH
10039 e = strchr(RExC_parse++, '}');
10040 if (!e)
0da60cf5 10041 vFAIL2("Missing right brace on \\%c{}", c);
ab13f0c7
JH
10042 while (isSPACE(UCHARAT(RExC_parse)))
10043 RExC_parse++;
10044 if (e == RExC_parse)
0da60cf5 10045 vFAIL2("Empty \\%c{}", c);
ffc61ed2 10046 n = e - RExC_parse;
ab13f0c7
JH
10047 while (isSPACE(UCHARAT(RExC_parse + n - 1)))
10048 n--;
ffc61ed2
JH
10049 }
10050 else {
10051 e = RExC_parse;
10052 n = 1;
10053 }
ee410026 10054 if (!SIZE_ONLY) {
ab13f0c7
JH
10055 if (UCHARAT(RExC_parse) == '^') {
10056 RExC_parse++;
10057 n--;
10058 value = value == 'p' ? 'P' : 'p'; /* toggle */
10059 while (isSPACE(UCHARAT(RExC_parse))) {
10060 RExC_parse++;
10061 n--;
10062 }
10063 }
2f833f52
KW
10064
10065 /* Add the property name to the list. If /i matching, give
10066 * a different name which consists of the normal name
10067 * sandwiched between two underscores and '_i'. The design
10068 * is discussed in the commit message for this. */
10069 Perl_sv_catpvf(aTHX_ listsv, "%cutf8::%s%.*s%s\n",
10070 (value=='p' ? '+' : '!'),
10071 (FOLD) ? "__" : "",
10072 (int)n,
10073 RExC_parse,
10074 (FOLD) ? "_i" : ""
10075 );
ffc61ed2
JH
10076 }
10077 RExC_parse = e + 1;
08fc12dd
KW
10078
10079 /* The \p could match something in the Latin1 range, hence
10080 * something that isn't utf8 */
db8c82dd 10081 ANYOF_FLAGS(ret) |= ANYOF_NONBITMAP_NON_UTF8;
f81125e2 10082 namedclass = ANYOF_MAX; /* no official name, but it's named */
e40e74fe
KW
10083
10084 /* \p means they want Unicode semantics */
10085 RExC_uni_semantics = 1;
3dab1dad 10086 }
f81125e2 10087 break;
b8c5462f
JH
10088 case 'n': value = '\n'; break;
10089 case 'r': value = '\r'; break;
10090 case 't': value = '\t'; break;
10091 case 'f': value = '\f'; break;
10092 case 'b': value = '\b'; break;
c7f1f016
NIS
10093 case 'e': value = ASCII_TO_NATIVE('\033');break;
10094 case 'a': value = ASCII_TO_NATIVE('\007');break;
f0a2b745
KW
10095 case 'o':
10096 RExC_parse--; /* function expects to be pointed at the 'o' */
454155d9
KW
10097 {
10098 const char* error_msg;
10099 bool valid = grok_bslash_o(RExC_parse,
f0a2b745
KW
10100 &value,
10101 &numlen,
454155d9
KW
10102 &error_msg,
10103 SIZE_ONLY);
10104 RExC_parse += numlen;
10105 if (! valid) {
10106 vFAIL(error_msg);
10107 }
f0a2b745 10108 }
f0a2b745
KW
10109 if (PL_encoding && value < 0x100) {
10110 goto recode_encoding;
10111 }
10112 break;
b8c5462f 10113 case 'x':
ffc61ed2 10114 if (*RExC_parse == '{') {
a4c04bdc
NC
10115 I32 flags = PERL_SCAN_ALLOW_UNDERSCORES
10116 | PERL_SCAN_DISALLOW_PREFIX;
3dab1dad 10117 char * const e = strchr(RExC_parse++, '}');
b81d288d 10118 if (!e)
ffc61ed2 10119 vFAIL("Missing right brace on \\x{}");
53305cf1
NC
10120
10121 numlen = e - RExC_parse;
10122 value = grok_hex(RExC_parse, &numlen, &flags, NULL);
ffc61ed2
JH
10123 RExC_parse = e + 1;
10124 }
10125 else {
a4c04bdc 10126 I32 flags = PERL_SCAN_DISALLOW_PREFIX;
53305cf1
NC
10127 numlen = 2;
10128 value = grok_hex(RExC_parse, &numlen, &flags, NULL);
ffc61ed2
JH
10129 RExC_parse += numlen;
10130 }
9e08bc66
TS
10131 if (PL_encoding && value < 0x100)
10132 goto recode_encoding;
b8c5462f
JH
10133 break;
10134 case 'c':
17a3df4c 10135 value = grok_bslash_c(*RExC_parse++, UTF, SIZE_ONLY);
b8c5462f
JH
10136 break;
10137 case '0': case '1': case '2': case '3': case '4':
c99e91e9 10138 case '5': case '6': case '7':
9e08bc66 10139 {
c99e91e9
KW
10140 /* Take 1-3 octal digits */
10141 I32 flags = PERL_SCAN_SILENT_ILLDIGIT;
9e08bc66
TS
10142 numlen = 3;
10143 value = grok_oct(--RExC_parse, &numlen, &flags, NULL);
10144 RExC_parse += numlen;
10145 if (PL_encoding && value < 0x100)
10146 goto recode_encoding;
10147 break;
10148 }
10149 recode_encoding:
e2a7e165 10150 if (! RExC_override_recoding) {
9e08bc66
TS
10151 SV* enc = PL_encoding;
10152 value = reg_recode((const char)(U8)value, &enc);
668c081a
NC
10153 if (!enc && SIZE_ONLY)
10154 ckWARNreg(RExC_parse,
10155 "Invalid escape in the specified encoding");
9e08bc66
TS
10156 break;
10157 }
1028017a 10158 default:
c99e91e9
KW
10159 /* Allow \_ to not give an error */
10160 if (!SIZE_ONLY && isALNUM(value) && value != '_') {
668c081a
NC
10161 ckWARN2reg(RExC_parse,
10162 "Unrecognized escape \\%c in character class passed through",
10163 (int)value);
c99e91e9 10164 }
1028017a 10165 break;
b8c5462f 10166 }
ffc61ed2 10167 } /* end of \blah */
1b2d223b
JH
10168#ifdef EBCDIC
10169 else
10170 literal_endpoint++;
10171#endif
ffc61ed2
JH
10172
10173 if (namedclass > OOB_NAMEDCLASS) { /* this is a named class \blah */
10174
2c63ecad
KW
10175 /* What matches in a locale is not known until runtime, so need to
10176 * (one time per class) allocate extra space to pass to regexec.
10177 * The space will contain a bit for each named class that is to be
10178 * matched against. This isn't needed for \p{} and pseudo-classes,
10179 * as they are not affected by locale, and hence are dealt with
10180 * separately */
10181 if (LOC && namedclass < ANYOF_MAX && ! need_class) {
10182 need_class = 1;
10183 if (SIZE_ONLY) {
dd58aee1 10184 RExC_size += ANYOF_CLASS_SKIP - ANYOF_SKIP;
2c63ecad
KW
10185 }
10186 else {
dd58aee1 10187 RExC_emit += ANYOF_CLASS_SKIP - ANYOF_SKIP;
2c63ecad
KW
10188 ANYOF_CLASS_ZERO(ret);
10189 }
9051cfd9 10190 ANYOF_FLAGS(ret) |= ANYOF_CLASS;
2c63ecad 10191 }
ffc61ed2 10192
d5788240 10193 /* a bad range like a-\d, a-[:digit:]. The '-' is taken as a
1d791ab2
KW
10194 * literal, as is the character that began the false range, i.e.
10195 * the 'a' in the examples */
ffc61ed2 10196 if (range) {
73b437c8 10197 if (!SIZE_ONLY) {
668c081a
NC
10198 const int w =
10199 RExC_parse >= rangebegin ?
10200 RExC_parse - rangebegin : 0;
10201 ckWARN4reg(RExC_parse,
b45f050a 10202 "False [] range \"%*.*s\"",
097eb12c 10203 w, w, rangebegin);
668c081a 10204
1d791ab2 10205 stored +=
5bfec14d 10206 set_regclass_bit(pRExC_state, ret, '-', &l1_fold_invlist, &unicode_alternate);
3568d838 10207 if (prevvalue < 256) {
2283d326 10208 stored +=
5bfec14d 10209 set_regclass_bit(pRExC_state, ret, (U8) prevvalue, &l1_fold_invlist, &unicode_alternate);
ffc61ed2
JH
10210 }
10211 else {
1d791ab2 10212 nonbitmap = add_cp_to_invlist(nonbitmap, prevvalue);
ffc61ed2 10213 }
b8c5462f 10214 }
ffc61ed2
JH
10215
10216 range = 0; /* this was not a true range */
73b437c8 10217 }
ffc61ed2 10218
89836f1f
YO
10219
10220
73b437c8 10221 if (!SIZE_ONLY) {
c49a72a9
NC
10222 const char *what = NULL;
10223 char yesno = 0;
10224
e2962f66
JH
10225 /* Possible truncation here but in some 64-bit environments
10226 * the compiler gets heartburn about switch on 64-bit values.
10227 * A similar issue a little earlier when switching on value.
98f323fa 10228 * --jhi */
e2962f66 10229 switch ((I32)namedclass) {
da7fcca4 10230
f952827c
KW
10231 case _C_C_T_(ALNUMC, isALNUMC_L1, isALNUMC, "XPosixAlnum");
10232 case _C_C_T_(ALPHA, isALPHA_L1, isALPHA, "XPosixAlpha");
10233 case _C_C_T_(BLANK, isBLANK_L1, isBLANK, "XPosixBlank");
10234 case _C_C_T_(CNTRL, isCNTRL_L1, isCNTRL, "XPosixCntrl");
10235 case _C_C_T_(GRAPH, isGRAPH_L1, isGRAPH, "XPosixGraph");
10236 case _C_C_T_(LOWER, isLOWER_L1, isLOWER, "XPosixLower");
10237 case _C_C_T_(PRINT, isPRINT_L1, isPRINT, "XPosixPrint");
10238 case _C_C_T_(PSXSPC, isPSXSPC_L1, isPSXSPC, "XPosixSpace");
10239 case _C_C_T_(PUNCT, isPUNCT_L1, isPUNCT, "XPosixPunct");
10240 case _C_C_T_(UPPER, isUPPER_L1, isUPPER, "XPosixUpper");
a12cf05f 10241 /* \s, \w match all unicode if utf8. */
f952827c
KW
10242 case _C_C_T_(SPACE, isSPACE_L1, isSPACE, "SpacePerl");
10243 case _C_C_T_(ALNUM, isWORDCHAR_L1, isALNUM, "Word");
f952827c 10244 case _C_C_T_(XDIGIT, isXDIGIT_L1, isXDIGIT, "XPosixXDigit");
e1d1eefb
YO
10245 case _C_C_T_NOLOC_(VERTWS, is_VERTWS_latin1(&value), "VertSpace");
10246 case _C_C_T_NOLOC_(HORIZWS, is_HORIZWS_latin1(&value), "HorizSpace");
73b437c8
JH
10247 case ANYOF_ASCII:
10248 if (LOC)
936ed897 10249 ANYOF_CLASS_SET(ret, ANYOF_ASCII);
73b437c8 10250 else {
1ba5c669 10251 for (value = 0; value < 128; value++)
2283d326 10252 stored +=
5bfec14d 10253 set_regclass_bit(pRExC_state, ret, (U8) ASCII_TO_NATIVE(value), &l1_fold_invlist, &unicode_alternate);
73b437c8 10254 }
c49a72a9 10255 yesno = '+';
ce1c68b2
KW
10256 what = NULL; /* Doesn't match outside ascii, so
10257 don't want to add +utf8:: */
73b437c8
JH
10258 break;
10259 case ANYOF_NASCII:
10260 if (LOC)
936ed897 10261 ANYOF_CLASS_SET(ret, ANYOF_NASCII);
73b437c8 10262 else {
1ba5c669 10263 for (value = 128; value < 256; value++)
2283d326 10264 stored +=
5bfec14d 10265 set_regclass_bit(pRExC_state, ret, (U8) ASCII_TO_NATIVE(value), &l1_fold_invlist, &unicode_alternate);
73b437c8 10266 }
cfaf538b 10267 ANYOF_FLAGS(ret) |= ANYOF_UNICODE_ALL;
c49a72a9
NC
10268 yesno = '!';
10269 what = "ASCII";
89836f1f 10270 break;
ffc61ed2
JH
10271 case ANYOF_DIGIT:
10272 if (LOC)
10273 ANYOF_CLASS_SET(ret, ANYOF_DIGIT);
10274 else {
10275 /* consecutive digits assumed */
10276 for (value = '0'; value <= '9'; value++)
2283d326 10277 stored +=
5bfec14d 10278 set_regclass_bit(pRExC_state, ret, (U8) value, &l1_fold_invlist, &unicode_alternate);
ffc61ed2 10279 }
c49a72a9 10280 yesno = '+';
779d7b58 10281 what = "Digit";
ffc61ed2
JH
10282 break;
10283 case ANYOF_NDIGIT:
10284 if (LOC)
10285 ANYOF_CLASS_SET(ret, ANYOF_NDIGIT);
10286 else {
10287 /* consecutive digits assumed */
10288 for (value = 0; value < '0'; value++)
2283d326 10289 stored +=
5bfec14d 10290 set_regclass_bit(pRExC_state, ret, (U8) value, &l1_fold_invlist, &unicode_alternate);
ffc61ed2 10291 for (value = '9' + 1; value < 256; value++)
2283d326 10292 stored +=
5bfec14d 10293 set_regclass_bit(pRExC_state, ret, (U8) value, &l1_fold_invlist, &unicode_alternate);
ffc61ed2 10294 }
c49a72a9 10295 yesno = '!';
779d7b58 10296 what = "Digit";
2f7f8cb1 10297 if (AT_LEAST_ASCII_RESTRICTED ) {
cfaf538b
KW
10298 ANYOF_FLAGS(ret) |= ANYOF_UNICODE_ALL;
10299 }
89836f1f 10300 break;
f81125e2
JP
10301 case ANYOF_MAX:
10302 /* this is to handle \p and \P */
10303 break;
73b437c8 10304 default:
b45f050a 10305 vFAIL("Invalid [::] class");
73b437c8 10306 break;
b8c5462f 10307 }
2f7f8cb1 10308 if (what && ! (AT_LEAST_ASCII_RESTRICTED)) {
c49a72a9
NC
10309 /* Strings such as "+utf8::isWord\n" */
10310 Perl_sv_catpvf(aTHX_ listsv, "%cutf8::Is%s\n", yesno, what);
ef87b810 10311 }
ce1c68b2 10312
73b437c8 10313 continue;
a0d0e21e 10314 }
ffc61ed2
JH
10315 } /* end of namedclass \blah */
10316
a0d0e21e 10317 if (range) {
eb160463 10318 if (prevvalue > (IV)value) /* b-a */ {
d4c19fe8
AL
10319 const int w = RExC_parse - rangebegin;
10320 Simple_vFAIL4("Invalid [] range \"%*.*s\"", w, w, rangebegin);
3568d838 10321 range = 0; /* not a valid range */
73b437c8 10322 }
a0d0e21e
LW
10323 }
10324 else {
3568d838 10325 prevvalue = value; /* save the beginning of the range */
646253b5
KW
10326 if (RExC_parse+1 < RExC_end
10327 && *RExC_parse == '-'
10328 && RExC_parse[1] != ']')
10329 {
830247a4 10330 RExC_parse++;
ffc61ed2
JH
10331
10332 /* a bad range like \w-, [:word:]- ? */
10333 if (namedclass > OOB_NAMEDCLASS) {
afd78fd5 10334 if (ckWARN(WARN_REGEXP)) {
d4c19fe8 10335 const int w =
afd78fd5
JH
10336 RExC_parse >= rangebegin ?
10337 RExC_parse - rangebegin : 0;
830247a4 10338 vWARN4(RExC_parse,
b45f050a 10339 "False [] range \"%*.*s\"",
097eb12c 10340 w, w, rangebegin);
afd78fd5 10341 }
73b437c8 10342 if (!SIZE_ONLY)
2283d326 10343 stored +=
5bfec14d 10344 set_regclass_bit(pRExC_state, ret, '-', &l1_fold_invlist, &unicode_alternate);
73b437c8 10345 } else
ffc61ed2
JH
10346 range = 1; /* yeah, it's a range! */
10347 continue; /* but do it the next time */
a0d0e21e 10348 }
a687059c 10349 }
ffc61ed2 10350
046c4055
KW
10351 /* non-Latin1 code point implies unicode semantics. Must be set in
10352 * pass1 so is there for the whole of pass 2 */
56ca34ca
KW
10353 if (value > 255) {
10354 RExC_uni_semantics = 1;
10355 }
10356
93733859 10357 /* now is the next time */
ae5c130c 10358 if (!SIZE_ONLY) {
3568d838 10359 if (prevvalue < 256) {
1df70142 10360 const IV ceilvalue = value < 256 ? value : 255;
3dab1dad 10361 IV i;
3568d838 10362#ifdef EBCDIC
1b2d223b
JH
10363 /* In EBCDIC [\x89-\x91] should include
10364 * the \x8e but [i-j] should not. */
10365 if (literal_endpoint == 2 &&
10366 ((isLOWER(prevvalue) && isLOWER(ceilvalue)) ||
10367 (isUPPER(prevvalue) && isUPPER(ceilvalue))))
ffc61ed2 10368 {
3568d838
JH
10369 if (isLOWER(prevvalue)) {
10370 for (i = prevvalue; i <= ceilvalue; i++)
2670d666 10371 if (isLOWER(i) && !ANYOF_BITMAP_TEST(ret,i)) {
2283d326 10372 stored +=
5bfec14d 10373 set_regclass_bit(pRExC_state, ret, (U8) i, &l1_fold_invlist, &unicode_alternate);
2670d666 10374 }
ffc61ed2 10375 } else {
3568d838 10376 for (i = prevvalue; i <= ceilvalue; i++)
2670d666 10377 if (isUPPER(i) && !ANYOF_BITMAP_TEST(ret,i)) {
2283d326 10378 stored +=
5bfec14d 10379 set_regclass_bit(pRExC_state, ret, (U8) i, &l1_fold_invlist, &unicode_alternate);
2670d666 10380 }
ffc61ed2 10381 }
8ada0baa 10382 }
ffc61ed2 10383 else
8ada0baa 10384#endif
07be1b83 10385 for (i = prevvalue; i <= ceilvalue; i++) {
5bfec14d 10386 stored += set_regclass_bit(pRExC_state, ret, (U8) i, &l1_fold_invlist, &unicode_alternate);
07be1b83 10387 }
3568d838 10388 }
56ca34ca
KW
10389 if (value > 255) {
10390 const UV prevnatvalue = NATIVE_TO_UNI(prevvalue);
10391 const UV natvalue = NATIVE_TO_UNI(value);
56ca34ca 10392 nonbitmap = add_range_to_invlist(nonbitmap, prevnatvalue, natvalue);
56ca34ca 10393 }
1b2d223b
JH
10394#ifdef EBCDIC
10395 literal_endpoint = 0;
10396#endif
8ada0baa 10397 }
ffc61ed2
JH
10398
10399 range = 0; /* this range (if it was one) is done now */
a0d0e21e 10400 }
ffc61ed2 10401
ffc61ed2 10402
7f6f358c
YO
10403
10404 if (SIZE_ONLY)
10405 return ret;
10406 /****** !SIZE_ONLY AFTER HERE *********/
10407
0c6e4288
KW
10408 /* If folding and there are code points above 255, we calculate all
10409 * characters that could fold to or from the ones already on the list */
10410 if (FOLD && nonbitmap) {
0d527bf8 10411 UV start, end; /* End points of code point ranges */
56ca34ca 10412
a25abddc 10413 SV* fold_intersection;
93e5bb1c
KW
10414
10415 /* This is a list of all the characters that participate in folds
10416 * (except marks, etc in multi-char folds */
10417 if (! PL_utf8_foldable) {
10418 SV* swash = swash_init("utf8", "Cased", &PL_sv_undef, 1, 0);
10419 PL_utf8_foldable = _swash_to_invlist(swash);
10420 }
56ca34ca 10421
93e5bb1c
KW
10422 /* This is a hash that for a particular fold gives all characters
10423 * that are involved in it */
10424 if (! PL_utf8_foldclosures) {
10425
10426 /* If we were unable to find any folds, then we likely won't be
10427 * able to find the closures. So just create an empty list.
10428 * Folding will effectively be restricted to the non-Unicode rules
10429 * hard-coded into Perl. (This case happens legitimately during
10430 * compilation of Perl itself before the Unicode tables are
10431 * generated) */
10432 if (invlist_len(PL_utf8_foldable) == 0) {
ddc1cd80 10433 PL_utf8_foldclosures = newHV();
93e5bb1c
KW
10434 } else {
10435 /* If the folds haven't been read in, call a fold function
10436 * to force that */
10437 if (! PL_utf8_tofold) {
10438 U8 dummy[UTF8_MAXBYTES+1];
10439 STRLEN dummy_len;
10440 to_utf8_fold((U8*) "A", dummy, &dummy_len);
56ca34ca 10441 }
93e5bb1c 10442 PL_utf8_foldclosures = _swash_inversion_hash(PL_utf8_tofold);
56ca34ca 10443 }
93e5bb1c
KW
10444 }
10445
10446 /* Only the characters in this class that participate in folds need
10447 * be checked. Get the intersection of this class and all the
10448 * possible characters that are foldable. This can quickly narrow
10449 * down a large class */
37e85ffe 10450 _invlist_intersection(PL_utf8_foldable, nonbitmap, &fold_intersection);
93e5bb1c
KW
10451
10452 /* Now look at the foldable characters in this class individually */
0d527bf8
KW
10453 invlist_iterinit(fold_intersection);
10454 while (invlist_iternext(fold_intersection, &start, &end)) {
93e5bb1c
KW
10455 UV j;
10456
93e5bb1c
KW
10457 /* Look at every character in the range */
10458 for (j = start; j <= end; j++) {
10459
10460 /* Get its fold */
10461 U8 foldbuf[UTF8_MAXBYTES_CASE+1];
10462 STRLEN foldlen;
827f5bb8
KW
10463 const UV f =
10464 _to_uni_fold_flags(j, foldbuf, &foldlen, allow_full_fold);
93e5bb1c
KW
10465
10466 if (foldlen > (STRLEN)UNISKIP(f)) {
10467
10468 /* Any multicharacter foldings (disallowed in
10469 * lookbehind patterns) require the following
10470 * transform: [ABCDEF] -> (?:[ABCabcDEFd]|pq|rst) where
10471 * E folds into "pq" and F folds into "rst", all other
10472 * characters fold to single characters. We save away
10473 * these multicharacter foldings, to be later saved as
10474 * part of the additional "s" data. */
10475 if (! RExC_in_lookbehind) {
10476 U8* loc = foldbuf;
10477 U8* e = foldbuf + foldlen;
10478
10479 /* If any of the folded characters of this are in
10480 * the Latin1 range, tell the regex engine that
10481 * this can match a non-utf8 target string. The
10482 * only multi-byte fold whose source is in the
10483 * Latin1 range (U+00DF) applies only when the
10484 * target string is utf8, or under unicode rules */
10485 if (j > 255 || AT_LEAST_UNI_SEMANTICS) {
10486 while (loc < e) {
10487
10488 /* Can't mix ascii with non- under /aa */
10489 if (MORE_ASCII_RESTRICTED
10490 && (isASCII(*loc) != isASCII(j)))
10491 {
10492 goto end_multi_fold;
10493 }
10494 if (UTF8_IS_INVARIANT(*loc)
10495 || UTF8_IS_DOWNGRADEABLE_START(*loc))
10496 {
10497 /* Can't mix above and below 256 under
10498 * LOC */
10499 if (LOC) {
2f7f8cb1
KW
10500 goto end_multi_fold;
10501 }
93e5bb1c
KW
10502 ANYOF_FLAGS(ret)
10503 |= ANYOF_NONBITMAP_NON_UTF8;
10504 break;
8e3094e5 10505 }
93e5bb1c 10506 loc += UTF8SKIP(loc);
8e3094e5 10507 }
56ca34ca 10508 }
17580e7a 10509
93e5bb1c
KW
10510 add_alternate(&unicode_alternate, foldbuf, foldlen);
10511 end_multi_fold: ;
10512 }
14e30abc
KW
10513
10514 /* This is special-cased, as it is the only letter which
10515 * has both a multi-fold and single-fold in Latin1. All
10516 * the other chars that have single and multi-folds are
10517 * always in utf8, and the utf8 folding algorithm catches
10518 * them */
10519 if (! LOC && j == LATIN_CAPITAL_LETTER_SHARP_S) {
10520 stored += set_regclass_bit(pRExC_state,
10521 ret,
10522 LATIN_SMALL_LETTER_SHARP_S,
10523 &l1_fold_invlist, &unicode_alternate);
10524 }
93e5bb1c
KW
10525 }
10526 else {
10527 /* Single character fold. Add everything in its fold
10528 * closure to the list that this node should match */
10529 SV** listp;
10530
10531 /* The fold closures data structure is a hash with the
10532 * keys being every character that is folded to, like
10533 * 'k', and the values each an array of everything that
10534 * folds to its key. e.g. [ 'k', 'K', KELVIN_SIGN ] */
10535 if ((listp = hv_fetch(PL_utf8_foldclosures,
10536 (char *) foldbuf, foldlen, FALSE)))
10537 {
10538 AV* list = (AV*) *listp;
10539 IV k;
10540 for (k = 0; k <= av_len(list); k++) {
10541 SV** c_p = av_fetch(list, k, FALSE);
10542 UV c;
10543 if (c_p == NULL) {
10544 Perl_croak(aTHX_ "panic: invalid PL_utf8_foldclosures structure");
10545 }
10546 c = SvUV(*c_p);
10547
10548 /* /aa doesn't allow folds between ASCII and
10549 * non-; /l doesn't allow them between above
10550 * and below 256 */
10551 if ((MORE_ASCII_RESTRICTED
10552 && (isASCII(c) != isASCII(j)))
10553 || (LOC && ((c < 256) != (j < 256))))
10554 {
10555 continue;
10556 }
56ca34ca 10557
93e5bb1c
KW
10558 if (c < 256 && AT_LEAST_UNI_SEMANTICS) {
10559 stored += set_regclass_bit(pRExC_state,
10560 ret,
10561 (U8) c,
10562 &l1_fold_invlist, &unicode_alternate);
10563 }
10564 /* It may be that the code point is already
10565 * in this range or already in the bitmap,
10566 * in which case we need do nothing */
10567 else if ((c < start || c > end)
10568 && (c > 255
10569 || ! ANYOF_BITMAP_TEST(ret, c)))
10570 {
10571 nonbitmap = add_cp_to_invlist(nonbitmap, c);
56ca34ca
KW
10572 }
10573 }
10574 }
10575 }
10576 }
93e5bb1c 10577 }
318c430e 10578 SvREFCNT_dec(fold_intersection);
56ca34ca
KW
10579 }
10580
53742956
KW
10581 /* Combine the two lists into one. */
10582 if (l1_fold_invlist) {
10583 if (nonbitmap) {
37e85ffe 10584 _invlist_union(nonbitmap, l1_fold_invlist, &nonbitmap);
318c430e 10585 SvREFCNT_dec(l1_fold_invlist);
53742956
KW
10586 }
10587 else {
10588 nonbitmap = l1_fold_invlist;
10589 }
10590 }
10591
fb9bfbf7
KW
10592 /* Here, we have calculated what code points should be in the character
10593 * class. Now we can see about various optimizations. Fold calculation
10594 * needs to take place before inversion. Otherwise /[^k]/i would invert to
10595 * include K, which under /i would match k. */
10596
f56b6394
KW
10597 /* Optimize inverted simple patterns (e.g. [^a-z]). Note that we haven't
10598 * set the FOLD flag yet, so this this does optimize those. It doesn't
40c78556
KW
10599 * optimize locale. Doing so perhaps could be done as long as there is
10600 * nothing like \w in it; some thought also would have to be given to the
10601 * interaction with above 0x100 chars */
137165a6 10602 if (! LOC
2fde50e1 10603 && (ANYOF_FLAGS(ret) & ANYOF_INVERT)
137165a6 10604 && ! unicode_alternate
2fde50e1
KW
10605 /* In case of /d, there are some things that should match only when in
10606 * not in the bitmap, i.e., they require UTF8 to match. These are
10607 * listed in nonbitmap. */
10608 && (! nonbitmap
10609 || ! DEPENDS_SEMANTICS
10610 || (ANYOF_FLAGS(ret) & ANYOF_NONBITMAP_NON_UTF8))
137165a6
KW
10611 && SvCUR(listsv) == initial_listsv_len)
10612 {
2fde50e1 10613 if (! nonbitmap) {
641b49c8
KW
10614 for (value = 0; value < ANYOF_BITMAP_SIZE; ++value)
10615 ANYOF_BITMAP(ret)[value] ^= 0xFF;
2fde50e1
KW
10616 /* The inversion means that everything above 255 is matched */
10617 ANYOF_FLAGS(ret) |= ANYOF_UNICODE_ALL;
10618 }
10619 else {
10620 /* Here, also has things outside the bitmap. Go through each bit
10621 * individually and add it to the list to get rid of from those
10622 * things not in the bitmap */
10623 SV *remove_list = _new_invlist(2);
37e85ffe 10624 _invlist_invert(nonbitmap);
2fde50e1
KW
10625 for (value = 0; value < 256; ++value) {
10626 if (ANYOF_BITMAP_TEST(ret, value)) {
10627 ANYOF_BITMAP_CLEAR(ret, value);
10628 remove_list = add_cp_to_invlist(remove_list, value);
10629 }
10630 else {
10631 ANYOF_BITMAP_SET(ret, value);
10632 }
10633 }
37e85ffe 10634 _invlist_subtract(nonbitmap, remove_list, &nonbitmap);
2fde50e1
KW
10635 SvREFCNT_dec(remove_list);
10636 }
10637
40c78556
KW
10638 stored = 256 - stored;
10639
2fde50e1
KW
10640 /* Clear the invert flag since have just done it here */
10641 ANYOF_FLAGS(ret) &= ~ANYOF_INVERT;
40c78556
KW
10642 }
10643
0222889f
KW
10644 /* Folding in the bitmap is taken care of above, but not for locale (for
10645 * which we have to wait to see what folding is in effect at runtime), and
10646 * for things not in the bitmap. Set run-time fold flag for these */
53742956 10647 if (FOLD && (LOC || nonbitmap || unicode_alternate)) {
0222889f 10648 ANYOF_FLAGS(ret) |= ANYOF_LOC_NONBITMAP_FOLD;
f56b6394
KW
10649 }
10650
2786be71
KW
10651 /* A single character class can be "optimized" into an EXACTish node.
10652 * Note that since we don't currently count how many characters there are
10653 * outside the bitmap, we are XXX missing optimization possibilities for
10654 * them. This optimization can't happen unless this is a truly single
10655 * character class, which means that it can't be an inversion into a
10656 * many-character class, and there must be no possibility of there being
10657 * things outside the bitmap. 'stored' (only) for locales doesn't include
6da63e10
KW
10658 * \w, etc, so have to make a special test that they aren't present
10659 *
10660 * Similarly A 2-character class of the very special form like [bB] can be
10661 * optimized into an EXACTFish node, but only for non-locales, and for
10662 * characters which only have the two folds; so things like 'fF' and 'Ii'
10663 * wouldn't work because they are part of the fold of 'LATIN SMALL LIGATURE
10664 * FI'. */
137165a6 10665 if (! nonbitmap
53742956 10666 && ! unicode_alternate
137165a6
KW
10667 && SvCUR(listsv) == initial_listsv_len
10668 && ! (ANYOF_FLAGS(ret) & (ANYOF_INVERT|ANYOF_UNICODE_ALL))
6da63e10
KW
10669 && (((stored == 1 && ((! (ANYOF_FLAGS(ret) & ANYOF_LOCALE))
10670 || (! ANYOF_CLASS_TEST_ANY_SET(ret)))))
10671 || (stored == 2 && ((! (ANYOF_FLAGS(ret) & ANYOF_LOCALE))
10672 && (! _HAS_NONLATIN1_FOLD_CLOSURE_ONLY_FOR_USE_BY_REGCOMP_DOT_C_AND_REGEXEC_DOT_C(value))
10673 /* If the latest code point has a fold whose
10674 * bit is set, it must be the only other one */
2dcac756 10675 && ((prevvalue = PL_fold_latin1[value]) != (IV)value)
6da63e10 10676 && ANYOF_BITMAP_TEST(ret, prevvalue)))))
2786be71
KW
10677 {
10678 /* Note that the information needed to decide to do this optimization
10679 * is not currently available until the 2nd pass, and that the actually
6da63e10
KW
10680 * used EXACTish node takes less space than the calculated ANYOF node,
10681 * and hence the amount of space calculated in the first pass is larger
2786be71
KW
10682 * than actually used, so this optimization doesn't gain us any space.
10683 * But an EXACT node is faster than an ANYOF node, and can be combined
10684 * with any adjacent EXACT nodes later by the optimizer for further
6da63e10
KW
10685 * gains. The speed of executing an EXACTF is similar to an ANYOF
10686 * node, so the optimization advantage comes from the ability to join
10687 * it to adjacent EXACT nodes */
2786be71 10688
07be1b83 10689 const char * cur_parse= RExC_parse;
6da63e10 10690 U8 op;
07be1b83
YO
10691 RExC_emit = (regnode *)orig_emit;
10692 RExC_parse = (char *)orig_parse;
2786be71 10693
6da63e10
KW
10694 if (stored == 1) {
10695
10696 /* A locale node with one point can be folded; all the other cases
10697 * with folding will have two points, since we calculate them above
10698 */
39065660 10699 if (ANYOF_FLAGS(ret) & ANYOF_LOC_NONBITMAP_FOLD) {
6da63e10
KW
10700 op = EXACTFL;
10701 }
10702 else {
10703 op = EXACT;
10704 }
10705 } /* else 2 chars in the bit map: the folds of each other */
cfaf538b 10706 else if (AT_LEAST_UNI_SEMANTICS || !isASCII(value)) {
6da63e10
KW
10707
10708 /* To join adjacent nodes, they must be the exact EXACTish type.
10709 * Try to use the most likely type, by using EXACTFU if the regex
10710 * calls for them, or is required because the character is
10711 * non-ASCII */
10712 op = EXACTFU;
10713 }
10714 else { /* Otherwise, more likely to be EXACTF type */
10715 op = EXACTF;
10716 }
10717
10718 ret = reg_node(pRExC_state, op);
07be1b83 10719 RExC_parse = (char *)cur_parse;
2786be71
KW
10720 if (UTF && ! NATIVE_IS_INVARIANT(value)) {
10721 *STRING(ret)= UTF8_EIGHT_BIT_HI((U8) value);
10722 *(STRING(ret) + 1)= UTF8_EIGHT_BIT_LO((U8) value);
10723 STR_LEN(ret)= 2;
10724 RExC_emit += STR_SZ(2);
10725 }
10726 else {
10727 *STRING(ret)= (char)value;
10728 STR_LEN(ret)= 1;
10729 RExC_emit += STR_SZ(1);
10730 }
ef8d46e8 10731 SvREFCNT_dec(listsv);
7f6f358c
YO
10732 return ret;
10733 }
ffc61ed2 10734
9e791dfe 10735 if (nonbitmap) {
0d527bf8
KW
10736 UV start, end;
10737 invlist_iterinit(nonbitmap);
10738 while (invlist_iternext(nonbitmap, &start, &end)) {
9e791dfe
KW
10739 if (start == end) {
10740 Perl_sv_catpvf(aTHX_ listsv, "%04"UVxf"\n", start);
10741 }
10742 else {
10743 /* The \t sets the whole range */
10744 Perl_sv_catpvf(aTHX_ listsv, "%04"UVxf"\t%04"UVxf"\n",
10745 /* XXX EBCDIC */
10746 start, end);
10747 }
10748 }
318c430e 10749 SvREFCNT_dec(nonbitmap);
9e791dfe
KW
10750 }
10751
137165a6
KW
10752 if (SvCUR(listsv) == initial_listsv_len && ! unicode_alternate) {
10753 ARG_SET(ret, ANYOF_NONBITMAP_EMPTY);
10754 SvREFCNT_dec(listsv);
10755 SvREFCNT_dec(unicode_alternate);
10756 }
10757 else {
10758
097eb12c 10759 AV * const av = newAV();
ffc61ed2 10760 SV *rv;
9e55ce06 10761 /* The 0th element stores the character class description
6a0407ee 10762 * in its textual form: used later (regexec.c:Perl_regclass_swash())
9e55ce06
JH
10763 * to initialize the appropriate swash (which gets stored in
10764 * the 1st element), and also useful for dumping the regnode.
10765 * The 2nd element stores the multicharacter foldings,
6a0407ee 10766 * used later (regexec.c:S_reginclass()). */
ffc61ed2
JH
10767 av_store(av, 0, listsv);
10768 av_store(av, 1, NULL);
827f5bb8
KW
10769
10770 /* Store any computed multi-char folds only if we are allowing
10771 * them */
10772 if (allow_full_fold) {
7b4a7e58
KW
10773 av_store(av, 2, MUTABLE_SV(unicode_alternate));
10774 if (unicode_alternate) { /* This node is variable length */
10775 OP(ret) = ANYOFV;
10776 }
827f5bb8
KW
10777 }
10778 else {
10779 av_store(av, 2, NULL);
10780 }
ad64d0ec 10781 rv = newRV_noinc(MUTABLE_SV(av));
19860706 10782 n = add_data(pRExC_state, 1, "s");
f8fc2ecf 10783 RExC_rxi->data->data[n] = (void*)rv;
ffc61ed2 10784 ARG_SET(ret, n);
a0ed51b3 10785 }
a0ed51b3
LW
10786 return ret;
10787}
89836f1f
YO
10788#undef _C_C_T_
10789
a0ed51b3 10790
bcdf7404
YO
10791/* reg_skipcomment()
10792
10793 Absorbs an /x style # comments from the input stream.
10794 Returns true if there is more text remaining in the stream.
10795 Will set the REG_SEEN_RUN_ON_COMMENT flag if the comment
10796 terminates the pattern without including a newline.
10797
10798 Note its the callers responsibility to ensure that we are
10799 actually in /x mode
10800
10801*/
10802
10803STATIC bool
10804S_reg_skipcomment(pTHX_ RExC_state_t *pRExC_state)
10805{
10806 bool ended = 0;
7918f24d
NC
10807
10808 PERL_ARGS_ASSERT_REG_SKIPCOMMENT;
10809
bcdf7404
YO
10810 while (RExC_parse < RExC_end)
10811 if (*RExC_parse++ == '\n') {
10812 ended = 1;
10813 break;
10814 }
10815 if (!ended) {
10816 /* we ran off the end of the pattern without ending
10817 the comment, so we have to add an \n when wrapping */
10818 RExC_seen |= REG_SEEN_RUN_ON_COMMENT;
10819 return 0;
10820 } else
10821 return 1;
10822}
10823
10824/* nextchar()
10825
3b753521 10826 Advances the parse position, and optionally absorbs
bcdf7404
YO
10827 "whitespace" from the inputstream.
10828
10829 Without /x "whitespace" means (?#...) style comments only,
10830 with /x this means (?#...) and # comments and whitespace proper.
10831
10832 Returns the RExC_parse point from BEFORE the scan occurs.
10833
10834 This is the /x friendly way of saying RExC_parse++.
10835*/
10836
76e3520e 10837STATIC char*
830247a4 10838S_nextchar(pTHX_ RExC_state_t *pRExC_state)
a0d0e21e 10839{
097eb12c 10840 char* const retval = RExC_parse++;
a0d0e21e 10841
7918f24d
NC
10842 PERL_ARGS_ASSERT_NEXTCHAR;
10843
4633a7c4 10844 for (;;) {
830247a4
IZ
10845 if (*RExC_parse == '(' && RExC_parse[1] == '?' &&
10846 RExC_parse[2] == '#') {
e994fd66
AE
10847 while (*RExC_parse != ')') {
10848 if (RExC_parse == RExC_end)
10849 FAIL("Sequence (?#... not terminated");
830247a4 10850 RExC_parse++;
e994fd66 10851 }
830247a4 10852 RExC_parse++;
4633a7c4
LW
10853 continue;
10854 }
bbe252da 10855 if (RExC_flags & RXf_PMf_EXTENDED) {
830247a4
IZ
10856 if (isSPACE(*RExC_parse)) {
10857 RExC_parse++;
748a9306
LW
10858 continue;
10859 }
830247a4 10860 else if (*RExC_parse == '#') {
bcdf7404
YO
10861 if ( reg_skipcomment( pRExC_state ) )
10862 continue;
748a9306 10863 }
748a9306 10864 }
4633a7c4 10865 return retval;
a0d0e21e 10866 }
a687059c
LW
10867}
10868
10869/*
c277df42 10870- reg_node - emit a node
a0d0e21e 10871*/
76e3520e 10872STATIC regnode * /* Location. */
830247a4 10873S_reg_node(pTHX_ RExC_state_t *pRExC_state, U8 op)
a687059c 10874{
97aff369 10875 dVAR;
c277df42 10876 register regnode *ptr;
504618e9 10877 regnode * const ret = RExC_emit;
07be1b83 10878 GET_RE_DEBUG_FLAGS_DECL;
a687059c 10879
7918f24d
NC
10880 PERL_ARGS_ASSERT_REG_NODE;
10881
c277df42 10882 if (SIZE_ONLY) {
830247a4
IZ
10883 SIZE_ALIGN(RExC_size);
10884 RExC_size += 1;
a0d0e21e
LW
10885 return(ret);
10886 }
3b57cd43
YO
10887 if (RExC_emit >= RExC_emit_bound)
10888 Perl_croak(aTHX_ "panic: reg_node overrun trying to emit %d", op);
10889
c277df42 10890 NODE_ALIGN_FILL(ret);
a0d0e21e 10891 ptr = ret;
c277df42 10892 FILL_ADVANCE_NODE(ptr, op);
7122b237 10893#ifdef RE_TRACK_PATTERN_OFFSETS
fac92740 10894 if (RExC_offsets) { /* MJD */
07be1b83 10895 MJD_OFFSET_DEBUG(("%s:%d: (op %s) %s %"UVuf" (len %"UVuf") (max %"UVuf").\n",
fac92740 10896 "reg_node", __LINE__,
13d6edb4 10897 PL_reg_name[op],
07be1b83
YO
10898 (UV)(RExC_emit - RExC_emit_start) > RExC_offsets[0]
10899 ? "Overwriting end of array!\n" : "OK",
10900 (UV)(RExC_emit - RExC_emit_start),
10901 (UV)(RExC_parse - RExC_start),
10902 (UV)RExC_offsets[0]));
ccb2c380 10903 Set_Node_Offset(RExC_emit, RExC_parse + (op == END));
fac92740 10904 }
7122b237 10905#endif
830247a4 10906 RExC_emit = ptr;
a0d0e21e 10907 return(ret);
a687059c
LW
10908}
10909
10910/*
a0d0e21e
LW
10911- reganode - emit a node with an argument
10912*/
76e3520e 10913STATIC regnode * /* Location. */
830247a4 10914S_reganode(pTHX_ RExC_state_t *pRExC_state, U8 op, U32 arg)
fe14fcc3 10915{
97aff369 10916 dVAR;
c277df42 10917 register regnode *ptr;
504618e9 10918 regnode * const ret = RExC_emit;
07be1b83 10919 GET_RE_DEBUG_FLAGS_DECL;
fe14fcc3 10920
7918f24d
NC
10921 PERL_ARGS_ASSERT_REGANODE;
10922
c277df42 10923 if (SIZE_ONLY) {
830247a4
IZ
10924 SIZE_ALIGN(RExC_size);
10925 RExC_size += 2;
6bda09f9
YO
10926 /*
10927 We can't do this:
10928
10929 assert(2==regarglen[op]+1);
10930
10931 Anything larger than this has to allocate the extra amount.
10932 If we changed this to be:
10933
10934 RExC_size += (1 + regarglen[op]);
10935
10936 then it wouldn't matter. Its not clear what side effect
10937 might come from that so its not done so far.
10938 -- dmq
10939 */
a0d0e21e
LW
10940 return(ret);
10941 }
3b57cd43
YO
10942 if (RExC_emit >= RExC_emit_bound)
10943 Perl_croak(aTHX_ "panic: reg_node overrun trying to emit %d", op);
10944
c277df42 10945 NODE_ALIGN_FILL(ret);
a0d0e21e 10946 ptr = ret;
c277df42 10947 FILL_ADVANCE_NODE_ARG(ptr, op, arg);
7122b237 10948#ifdef RE_TRACK_PATTERN_OFFSETS
fac92740 10949 if (RExC_offsets) { /* MJD */
07be1b83 10950 MJD_OFFSET_DEBUG(("%s(%d): (op %s) %s %"UVuf" <- %"UVuf" (max %"UVuf").\n",
fac92740 10951 "reganode",
ccb2c380 10952 __LINE__,
13d6edb4 10953 PL_reg_name[op],
07be1b83 10954 (UV)(RExC_emit - RExC_emit_start) > RExC_offsets[0] ?
fac92740 10955 "Overwriting end of array!\n" : "OK",
07be1b83
YO
10956 (UV)(RExC_emit - RExC_emit_start),
10957 (UV)(RExC_parse - RExC_start),
10958 (UV)RExC_offsets[0]));
ccb2c380 10959 Set_Cur_Node_Offset;
fac92740 10960 }
7122b237 10961#endif
830247a4 10962 RExC_emit = ptr;
a0d0e21e 10963 return(ret);
fe14fcc3
LW
10964}
10965
10966/*
cd439c50 10967- reguni - emit (if appropriate) a Unicode character
a0ed51b3 10968*/
71207a34
AL
10969STATIC STRLEN
10970S_reguni(pTHX_ const RExC_state_t *pRExC_state, UV uv, char* s)
a0ed51b3 10971{
97aff369 10972 dVAR;
7918f24d
NC
10973
10974 PERL_ARGS_ASSERT_REGUNI;
10975
71207a34 10976 return SIZE_ONLY ? UNISKIP(uv) : (uvchr_to_utf8((U8*)s, uv) - (U8*)s);
a0ed51b3
LW
10977}
10978
10979/*
a0d0e21e
LW
10980- reginsert - insert an operator in front of already-emitted operand
10981*
10982* Means relocating the operand.
10983*/
76e3520e 10984STATIC void
6bda09f9 10985S_reginsert(pTHX_ RExC_state_t *pRExC_state, U8 op, regnode *opnd, U32 depth)
a687059c 10986{
97aff369 10987 dVAR;
c277df42
IZ
10988 register regnode *src;
10989 register regnode *dst;
10990 register regnode *place;
504618e9 10991 const int offset = regarglen[(U8)op];
6bda09f9 10992 const int size = NODE_STEP_REGNODE + offset;
07be1b83 10993 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
10994
10995 PERL_ARGS_ASSERT_REGINSERT;
def51078 10996 PERL_UNUSED_ARG(depth);
22c35a8c 10997/* (PL_regkind[(U8)op] == CURLY ? EXTRA_STEP_2ARGS : 0); */
13d6edb4 10998 DEBUG_PARSE_FMT("inst"," - %s",PL_reg_name[op]);
c277df42 10999 if (SIZE_ONLY) {
6bda09f9 11000 RExC_size += size;
a0d0e21e
LW
11001 return;
11002 }
a687059c 11003
830247a4 11004 src = RExC_emit;
6bda09f9 11005 RExC_emit += size;
830247a4 11006 dst = RExC_emit;
40d049e4 11007 if (RExC_open_parens) {
6bda09f9 11008 int paren;
3b57cd43 11009 /*DEBUG_PARSE_FMT("inst"," - %"IVdf, (IV)RExC_npar);*/
6bda09f9 11010 for ( paren=0 ; paren < RExC_npar ; paren++ ) {
40d049e4 11011 if ( RExC_open_parens[paren] >= opnd ) {
3b57cd43 11012 /*DEBUG_PARSE_FMT("open"," - %d",size);*/
40d049e4
YO
11013 RExC_open_parens[paren] += size;
11014 } else {
3b57cd43 11015 /*DEBUG_PARSE_FMT("open"," - %s","ok");*/
40d049e4
YO
11016 }
11017 if ( RExC_close_parens[paren] >= opnd ) {
3b57cd43 11018 /*DEBUG_PARSE_FMT("close"," - %d",size);*/
40d049e4
YO
11019 RExC_close_parens[paren] += size;
11020 } else {
3b57cd43 11021 /*DEBUG_PARSE_FMT("close"," - %s","ok");*/
40d049e4
YO
11022 }
11023 }
6bda09f9 11024 }
40d049e4 11025
fac92740 11026 while (src > opnd) {
c277df42 11027 StructCopy(--src, --dst, regnode);
7122b237 11028#ifdef RE_TRACK_PATTERN_OFFSETS
fac92740 11029 if (RExC_offsets) { /* MJD 20010112 */
07be1b83 11030 MJD_OFFSET_DEBUG(("%s(%d): (op %s) %s copy %"UVuf" -> %"UVuf" (max %"UVuf").\n",
fac92740 11031 "reg_insert",
ccb2c380 11032 __LINE__,
13d6edb4 11033 PL_reg_name[op],
07be1b83
YO
11034 (UV)(dst - RExC_emit_start) > RExC_offsets[0]
11035 ? "Overwriting end of array!\n" : "OK",
11036 (UV)(src - RExC_emit_start),
11037 (UV)(dst - RExC_emit_start),
11038 (UV)RExC_offsets[0]));
ccb2c380
MP
11039 Set_Node_Offset_To_R(dst-RExC_emit_start, Node_Offset(src));
11040 Set_Node_Length_To_R(dst-RExC_emit_start, Node_Length(src));
fac92740 11041 }
7122b237 11042#endif
fac92740
MJD
11043 }
11044
a0d0e21e
LW
11045
11046 place = opnd; /* Op node, where operand used to be. */
7122b237 11047#ifdef RE_TRACK_PATTERN_OFFSETS
fac92740 11048 if (RExC_offsets) { /* MJD */
07be1b83 11049 MJD_OFFSET_DEBUG(("%s(%d): (op %s) %s %"UVuf" <- %"UVuf" (max %"UVuf").\n",
fac92740 11050 "reginsert",
ccb2c380 11051 __LINE__,
13d6edb4 11052 PL_reg_name[op],
07be1b83 11053 (UV)(place - RExC_emit_start) > RExC_offsets[0]
fac92740 11054 ? "Overwriting end of array!\n" : "OK",
07be1b83
YO
11055 (UV)(place - RExC_emit_start),
11056 (UV)(RExC_parse - RExC_start),
786e8c11 11057 (UV)RExC_offsets[0]));
ccb2c380 11058 Set_Node_Offset(place, RExC_parse);
45948336 11059 Set_Node_Length(place, 1);
fac92740 11060 }
7122b237 11061#endif
c277df42
IZ
11062 src = NEXTOPER(place);
11063 FILL_ADVANCE_NODE(place, op);
11064 Zero(src, offset, regnode);
a687059c
LW
11065}
11066
11067/*
c277df42 11068- regtail - set the next-pointer at the end of a node chain of p to val.
3dab1dad 11069- SEE ALSO: regtail_study
a0d0e21e 11070*/
097eb12c 11071/* TODO: All three parms should be const */
76e3520e 11072STATIC void
3dab1dad 11073S_regtail(pTHX_ RExC_state_t *pRExC_state, regnode *p, const regnode *val,U32 depth)
a687059c 11074{
97aff369 11075 dVAR;
c277df42 11076 register regnode *scan;
72f13be8 11077 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
11078
11079 PERL_ARGS_ASSERT_REGTAIL;
f9049ba1
SP
11080#ifndef DEBUGGING
11081 PERL_UNUSED_ARG(depth);
11082#endif
a0d0e21e 11083
c277df42 11084 if (SIZE_ONLY)
a0d0e21e
LW
11085 return;
11086
11087 /* Find last node. */
11088 scan = p;
11089 for (;;) {
504618e9 11090 regnode * const temp = regnext(scan);
3dab1dad
YO
11091 DEBUG_PARSE_r({
11092 SV * const mysv=sv_newmortal();
11093 DEBUG_PARSE_MSG((scan==p ? "tail" : ""));
11094 regprop(RExC_rx, mysv, scan);
eaf3ca90
YO
11095 PerlIO_printf(Perl_debug_log, "~ %s (%d) %s %s\n",
11096 SvPV_nolen_const(mysv), REG_NODE_NUM(scan),
11097 (temp == NULL ? "->" : ""),
13d6edb4 11098 (temp == NULL ? PL_reg_name[OP(val)] : "")
eaf3ca90 11099 );
3dab1dad
YO
11100 });
11101 if (temp == NULL)
11102 break;
11103 scan = temp;
11104 }
11105
11106 if (reg_off_by_arg[OP(scan)]) {
11107 ARG_SET(scan, val - scan);
11108 }
11109 else {
11110 NEXT_OFF(scan) = val - scan;
11111 }
11112}
11113
07be1b83 11114#ifdef DEBUGGING
3dab1dad
YO
11115/*
11116- regtail_study - set the next-pointer at the end of a node chain of p to val.
11117- Look for optimizable sequences at the same time.
11118- currently only looks for EXACT chains.
07be1b83 11119
486ec47a 11120This is experimental code. The idea is to use this routine to perform
07be1b83
YO
11121in place optimizations on branches and groups as they are constructed,
11122with the long term intention of removing optimization from study_chunk so
11123that it is purely analytical.
11124
11125Currently only used when in DEBUG mode. The macro REGTAIL_STUDY() is used
11126to control which is which.
11127
3dab1dad
YO
11128*/
11129/* TODO: All four parms should be const */
07be1b83 11130
3dab1dad
YO
11131STATIC U8
11132S_regtail_study(pTHX_ RExC_state_t *pRExC_state, regnode *p, const regnode *val,U32 depth)
11133{
11134 dVAR;
11135 register regnode *scan;
07be1b83
YO
11136 U8 exact = PSEUDO;
11137#ifdef EXPERIMENTAL_INPLACESCAN
11138 I32 min = 0;
11139#endif
3dab1dad
YO
11140 GET_RE_DEBUG_FLAGS_DECL;
11141
7918f24d
NC
11142 PERL_ARGS_ASSERT_REGTAIL_STUDY;
11143
07be1b83 11144
3dab1dad
YO
11145 if (SIZE_ONLY)
11146 return exact;
11147
11148 /* Find last node. */
11149
11150 scan = p;
11151 for (;;) {
11152 regnode * const temp = regnext(scan);
07be1b83
YO
11153#ifdef EXPERIMENTAL_INPLACESCAN
11154 if (PL_regkind[OP(scan)] == EXACT)
11155 if (join_exact(pRExC_state,scan,&min,1,val,depth+1))
11156 return EXACT;
11157#endif
3dab1dad
YO
11158 if ( exact ) {
11159 switch (OP(scan)) {
11160 case EXACT:
11161 case EXACTF:
2f7f8cb1 11162 case EXACTFA:
2c2b7f86 11163 case EXACTFU:
3dab1dad
YO
11164 case EXACTFL:
11165 if( exact == PSEUDO )
11166 exact= OP(scan);
07be1b83
YO
11167 else if ( exact != OP(scan) )
11168 exact= 0;
3dab1dad
YO
11169 case NOTHING:
11170 break;
11171 default:
11172 exact= 0;
11173 }
11174 }
11175 DEBUG_PARSE_r({
11176 SV * const mysv=sv_newmortal();
11177 DEBUG_PARSE_MSG((scan==p ? "tsdy" : ""));
11178 regprop(RExC_rx, mysv, scan);
eaf3ca90 11179 PerlIO_printf(Perl_debug_log, "~ %s (%d) -> %s\n",
3dab1dad 11180 SvPV_nolen_const(mysv),
eaf3ca90 11181 REG_NODE_NUM(scan),
13d6edb4 11182 PL_reg_name[exact]);
3dab1dad 11183 });
a0d0e21e
LW
11184 if (temp == NULL)
11185 break;
11186 scan = temp;
11187 }
07be1b83
YO
11188 DEBUG_PARSE_r({
11189 SV * const mysv_val=sv_newmortal();
11190 DEBUG_PARSE_MSG("");
11191 regprop(RExC_rx, mysv_val, val);
70685ca0
JH
11192 PerlIO_printf(Perl_debug_log, "~ attach to %s (%"IVdf") offset to %"IVdf"\n",
11193 SvPV_nolen_const(mysv_val),
11194 (IV)REG_NODE_NUM(val),
11195 (IV)(val - scan)
07be1b83
YO
11196 );
11197 });
c277df42
IZ
11198 if (reg_off_by_arg[OP(scan)]) {
11199 ARG_SET(scan, val - scan);
a0ed51b3
LW
11200 }
11201 else {
c277df42
IZ
11202 NEXT_OFF(scan) = val - scan;
11203 }
3dab1dad
YO
11204
11205 return exact;
a687059c 11206}
07be1b83 11207#endif
a687059c
LW
11208
11209/*
fd181c75 11210 - regdump - dump a regexp onto Perl_debug_log in vaguely comprehensible form
a687059c 11211 */
f7819f85 11212#ifdef DEBUGGING
c33269f7 11213static void
7918f24d
NC
11214S_regdump_extflags(pTHX_ const char *lead, const U32 flags)
11215{
f7819f85
A
11216 int bit;
11217 int set=0;
a62b1201 11218 regex_charset cs;
7918f24d 11219
f7819f85
A
11220 for (bit=0; bit<32; bit++) {
11221 if (flags & (1<<bit)) {
a62b1201
KW
11222 if ((1<<bit) & RXf_PMf_CHARSET) { /* Output separately, below */
11223 continue;
11224 }
f7819f85
A
11225 if (!set++ && lead)
11226 PerlIO_printf(Perl_debug_log, "%s",lead);
11227 PerlIO_printf(Perl_debug_log, "%s ",PL_reg_extflags_name[bit]);
11228 }
11229 }
a62b1201
KW
11230 if ((cs = get_regex_charset(flags)) != REGEX_DEPENDS_CHARSET) {
11231 if (!set++ && lead) {
11232 PerlIO_printf(Perl_debug_log, "%s",lead);
11233 }
11234 switch (cs) {
11235 case REGEX_UNICODE_CHARSET:
11236 PerlIO_printf(Perl_debug_log, "UNICODE");
11237 break;
11238 case REGEX_LOCALE_CHARSET:
11239 PerlIO_printf(Perl_debug_log, "LOCALE");
11240 break;
cfaf538b
KW
11241 case REGEX_ASCII_RESTRICTED_CHARSET:
11242 PerlIO_printf(Perl_debug_log, "ASCII-RESTRICTED");
11243 break;
2f7f8cb1
KW
11244 case REGEX_ASCII_MORE_RESTRICTED_CHARSET:
11245 PerlIO_printf(Perl_debug_log, "ASCII-MORE_RESTRICTED");
11246 break;
a62b1201
KW
11247 default:
11248 PerlIO_printf(Perl_debug_log, "UNKNOWN CHARACTER SET");
11249 break;
11250 }
11251 }
f7819f85
A
11252 if (lead) {
11253 if (set)
11254 PerlIO_printf(Perl_debug_log, "\n");
11255 else
11256 PerlIO_printf(Perl_debug_log, "%s[none-set]\n",lead);
11257 }
11258}
11259#endif
11260
a687059c 11261void
097eb12c 11262Perl_regdump(pTHX_ const regexp *r)
a687059c 11263{
35ff7856 11264#ifdef DEBUGGING
97aff369 11265 dVAR;
c445ea15 11266 SV * const sv = sv_newmortal();
ab3bbdeb 11267 SV *dsv= sv_newmortal();
f8fc2ecf 11268 RXi_GET_DECL(r,ri);
f7819f85 11269 GET_RE_DEBUG_FLAGS_DECL;
a687059c 11270
7918f24d
NC
11271 PERL_ARGS_ASSERT_REGDUMP;
11272
f8fc2ecf 11273 (void)dumpuntil(r, ri->program, ri->program + 1, NULL, NULL, sv, 0, 0);
a0d0e21e
LW
11274
11275 /* Header fields of interest. */
ab3bbdeb
YO
11276 if (r->anchored_substr) {
11277 RE_PV_QUOTED_DECL(s, 0, dsv, SvPVX_const(r->anchored_substr),
11278 RE_SV_DUMPLEN(r->anchored_substr), 30);
7b0972df 11279 PerlIO_printf(Perl_debug_log,
ab3bbdeb
YO
11280 "anchored %s%s at %"IVdf" ",
11281 s, RE_SV_TAIL(r->anchored_substr),
7b0972df 11282 (IV)r->anchored_offset);
ab3bbdeb
YO
11283 } else if (r->anchored_utf8) {
11284 RE_PV_QUOTED_DECL(s, 1, dsv, SvPVX_const(r->anchored_utf8),
11285 RE_SV_DUMPLEN(r->anchored_utf8), 30);
33b8afdf 11286 PerlIO_printf(Perl_debug_log,
ab3bbdeb
YO
11287 "anchored utf8 %s%s at %"IVdf" ",
11288 s, RE_SV_TAIL(r->anchored_utf8),
33b8afdf 11289 (IV)r->anchored_offset);
ab3bbdeb
YO
11290 }
11291 if (r->float_substr) {
11292 RE_PV_QUOTED_DECL(s, 0, dsv, SvPVX_const(r->float_substr),
11293 RE_SV_DUMPLEN(r->float_substr), 30);
7b0972df 11294 PerlIO_printf(Perl_debug_log,
ab3bbdeb
YO
11295 "floating %s%s at %"IVdf"..%"UVuf" ",
11296 s, RE_SV_TAIL(r->float_substr),
7b0972df 11297 (IV)r->float_min_offset, (UV)r->float_max_offset);
ab3bbdeb
YO
11298 } else if (r->float_utf8) {
11299 RE_PV_QUOTED_DECL(s, 1, dsv, SvPVX_const(r->float_utf8),
11300 RE_SV_DUMPLEN(r->float_utf8), 30);
33b8afdf 11301 PerlIO_printf(Perl_debug_log,
ab3bbdeb
YO
11302 "floating utf8 %s%s at %"IVdf"..%"UVuf" ",
11303 s, RE_SV_TAIL(r->float_utf8),
33b8afdf 11304 (IV)r->float_min_offset, (UV)r->float_max_offset);
ab3bbdeb 11305 }
33b8afdf 11306 if (r->check_substr || r->check_utf8)
b81d288d 11307 PerlIO_printf(Perl_debug_log,
10edeb5d
JH
11308 (const char *)
11309 (r->check_substr == r->float_substr
11310 && r->check_utf8 == r->float_utf8
11311 ? "(checking floating" : "(checking anchored"));
bbe252da 11312 if (r->extflags & RXf_NOSCAN)
c277df42 11313 PerlIO_printf(Perl_debug_log, " noscan");
bbe252da 11314 if (r->extflags & RXf_CHECK_ALL)
c277df42 11315 PerlIO_printf(Perl_debug_log, " isall");
33b8afdf 11316 if (r->check_substr || r->check_utf8)
c277df42
IZ
11317 PerlIO_printf(Perl_debug_log, ") ");
11318
f8fc2ecf
YO
11319 if (ri->regstclass) {
11320 regprop(r, sv, ri->regstclass);
1de06328 11321 PerlIO_printf(Perl_debug_log, "stclass %s ", SvPVX_const(sv));
46fc3d4c 11322 }
bbe252da 11323 if (r->extflags & RXf_ANCH) {
774d564b 11324 PerlIO_printf(Perl_debug_log, "anchored");
bbe252da 11325 if (r->extflags & RXf_ANCH_BOL)
774d564b 11326 PerlIO_printf(Perl_debug_log, "(BOL)");
bbe252da 11327 if (r->extflags & RXf_ANCH_MBOL)
c277df42 11328 PerlIO_printf(Perl_debug_log, "(MBOL)");
bbe252da 11329 if (r->extflags & RXf_ANCH_SBOL)
cad2e5aa 11330 PerlIO_printf(Perl_debug_log, "(SBOL)");
bbe252da 11331 if (r->extflags & RXf_ANCH_GPOS)
774d564b 11332 PerlIO_printf(Perl_debug_log, "(GPOS)");
11333 PerlIO_putc(Perl_debug_log, ' ');
11334 }
bbe252da 11335 if (r->extflags & RXf_GPOS_SEEN)
70685ca0 11336 PerlIO_printf(Perl_debug_log, "GPOS:%"UVuf" ", (UV)r->gofs);
bbe252da 11337 if (r->intflags & PREGf_SKIP)
760ac839 11338 PerlIO_printf(Perl_debug_log, "plus ");
bbe252da 11339 if (r->intflags & PREGf_IMPLICIT)
760ac839 11340 PerlIO_printf(Perl_debug_log, "implicit ");
70685ca0 11341 PerlIO_printf(Perl_debug_log, "minlen %"IVdf" ", (IV)r->minlen);
bbe252da 11342 if (r->extflags & RXf_EVAL_SEEN)
ce862d02 11343 PerlIO_printf(Perl_debug_log, "with eval ");
760ac839 11344 PerlIO_printf(Perl_debug_log, "\n");
f7819f85 11345 DEBUG_FLAGS_r(regdump_extflags("r->extflags: ",r->extflags));
65e66c80 11346#else
7918f24d 11347 PERL_ARGS_ASSERT_REGDUMP;
96a5add6 11348 PERL_UNUSED_CONTEXT;
65e66c80 11349 PERL_UNUSED_ARG(r);
17c3b450 11350#endif /* DEBUGGING */
a687059c
LW
11351}
11352
11353/*
a0d0e21e
LW
11354- regprop - printable representation of opcode
11355*/
3339dfd8
YO
11356#define EMIT_ANYOF_TEST_SEPARATOR(do_sep,sv,flags) \
11357STMT_START { \
11358 if (do_sep) { \
11359 Perl_sv_catpvf(aTHX_ sv,"%s][%s",PL_colors[1],PL_colors[0]); \
11360 if (flags & ANYOF_INVERT) \
11361 /*make sure the invert info is in each */ \
11362 sv_catpvs(sv, "^"); \
11363 do_sep = 0; \
11364 } \
11365} STMT_END
11366
46fc3d4c 11367void
32fc9b6a 11368Perl_regprop(pTHX_ const regexp *prog, SV *sv, const regnode *o)
a687059c 11369{
35ff7856 11370#ifdef DEBUGGING
97aff369 11371 dVAR;
9b155405 11372 register int k;
f8fc2ecf 11373 RXi_GET_DECL(prog,progi);
1de06328 11374 GET_RE_DEBUG_FLAGS_DECL;
f8fc2ecf 11375
7918f24d 11376 PERL_ARGS_ASSERT_REGPROP;
a0d0e21e 11377
76f68e9b 11378 sv_setpvs(sv, "");
8aa23a47 11379
03363afd 11380 if (OP(o) > REGNODE_MAX) /* regnode.type is unsigned */
830247a4
IZ
11381 /* It would be nice to FAIL() here, but this may be called from
11382 regexec.c, and it would be hard to supply pRExC_state. */
a5ca303d 11383 Perl_croak(aTHX_ "Corrupted regexp opcode %d > %d", (int)OP(o), (int)REGNODE_MAX);
13d6edb4 11384 sv_catpv(sv, PL_reg_name[OP(o)]); /* Take off const! */
9b155405 11385
3dab1dad 11386 k = PL_regkind[OP(o)];
9b155405 11387
2a782b5b 11388 if (k == EXACT) {
f92a2122 11389 sv_catpvs(sv, " ");
ab3bbdeb
YO
11390 /* Using is_utf8_string() (via PERL_PV_UNI_DETECT)
11391 * is a crude hack but it may be the best for now since
11392 * we have no flag "this EXACTish node was UTF-8"
11393 * --jhi */
f92a2122
NC
11394 pv_pretty(sv, STRING(o), STR_LEN(o), 60, PL_colors[0], PL_colors[1],
11395 PERL_PV_ESCAPE_UNI_DETECT |
c89df6cf 11396 PERL_PV_ESCAPE_NONASCII |
f92a2122
NC
11397 PERL_PV_PRETTY_ELLIPSES |
11398 PERL_PV_PRETTY_LTGT |
11399 PERL_PV_PRETTY_NOCLEAR
11400 );
bb263b4e 11401 } else if (k == TRIE) {
3dab1dad 11402 /* print the details of the trie in dumpuntil instead, as
f8fc2ecf 11403 * progi->data isn't available here */
1de06328 11404 const char op = OP(o);
647f639f 11405 const U32 n = ARG(o);
1de06328 11406 const reg_ac_data * const ac = IS_TRIE_AC(op) ?
f8fc2ecf 11407 (reg_ac_data *)progi->data->data[n] :
1de06328 11408 NULL;
3251b653
NC
11409 const reg_trie_data * const trie
11410 = (reg_trie_data*)progi->data->data[!IS_TRIE_AC(op) ? n : ac->trie];
1de06328 11411
13d6edb4 11412 Perl_sv_catpvf(aTHX_ sv, "-%s",PL_reg_name[o->flags]);
1de06328
YO
11413 DEBUG_TRIE_COMPILE_r(
11414 Perl_sv_catpvf(aTHX_ sv,
11415 "<S:%"UVuf"/%"IVdf" W:%"UVuf" L:%"UVuf"/%"UVuf" C:%"UVuf"/%"UVuf">",
11416 (UV)trie->startstate,
1e2e3d02 11417 (IV)trie->statecount-1, /* -1 because of the unused 0 element */
1de06328
YO
11418 (UV)trie->wordcount,
11419 (UV)trie->minlen,
11420 (UV)trie->maxlen,
11421 (UV)TRIE_CHARCOUNT(trie),
11422 (UV)trie->uniquecharcount
11423 )
11424 );
11425 if ( IS_ANYOF_TRIE(op) || trie->bitmap ) {
11426 int i;
11427 int rangestart = -1;
f46cb337 11428 U8* bitmap = IS_ANYOF_TRIE(op) ? (U8*)ANYOF_BITMAP(o) : (U8*)TRIE_BITMAP(trie);
f3a2811a 11429 sv_catpvs(sv, "[");
1de06328
YO
11430 for (i = 0; i <= 256; i++) {
11431 if (i < 256 && BITMAP_TEST(bitmap,i)) {
11432 if (rangestart == -1)
11433 rangestart = i;
11434 } else if (rangestart != -1) {
11435 if (i <= rangestart + 3)
11436 for (; rangestart < i; rangestart++)
11437 put_byte(sv, rangestart);
11438 else {
11439 put_byte(sv, rangestart);
11440 sv_catpvs(sv, "-");
11441 put_byte(sv, i - 1);
11442 }
11443 rangestart = -1;
11444 }
11445 }
f3a2811a 11446 sv_catpvs(sv, "]");
1de06328
YO
11447 }
11448
a3621e74 11449 } else if (k == CURLY) {
cb434fcc 11450 if (OP(o) == CURLYM || OP(o) == CURLYN || OP(o) == CURLYX)
cea2e8a9
GS
11451 Perl_sv_catpvf(aTHX_ sv, "[%d]", o->flags); /* Parenth number */
11452 Perl_sv_catpvf(aTHX_ sv, " {%d,%d}", ARG1(o), ARG2(o));
a0d0e21e 11453 }
2c2d71f5
JH
11454 else if (k == WHILEM && o->flags) /* Ordinal/of */
11455 Perl_sv_catpvf(aTHX_ sv, "[%d/%d]", o->flags & 0xf, o->flags>>4);
1f1031fe 11456 else if (k == REF || k == OPEN || k == CLOSE || k == GROUPP || OP(o)==ACCEPT) {
894356b3 11457 Perl_sv_catpvf(aTHX_ sv, "%d", (int)ARG(o)); /* Parenth number */
5daac39c 11458 if ( RXp_PAREN_NAMES(prog) ) {
9d6ecd7a 11459 if ( k != REF || (OP(o) < NREF)) {
502c6561 11460 AV *list= MUTABLE_AV(progi->data->data[progi->name_list_idx]);
ee9b8eae
YO
11461 SV **name= av_fetch(list, ARG(o), 0 );
11462 if (name)
11463 Perl_sv_catpvf(aTHX_ sv, " '%"SVf"'", SVfARG(*name));
11464 }
11465 else {
502c6561 11466 AV *list= MUTABLE_AV(progi->data->data[ progi->name_list_idx ]);
ad64d0ec 11467 SV *sv_dat= MUTABLE_SV(progi->data->data[ ARG( o ) ]);
ee9b8eae
YO
11468 I32 *nums=(I32*)SvPVX(sv_dat);
11469 SV **name= av_fetch(list, nums[0], 0 );
11470 I32 n;
11471 if (name) {
11472 for ( n=0; n<SvIVX(sv_dat); n++ ) {
11473 Perl_sv_catpvf(aTHX_ sv, "%s%"IVdf,
11474 (n ? "," : ""), (IV)nums[n]);
11475 }
11476 Perl_sv_catpvf(aTHX_ sv, " '%"SVf"'", SVfARG(*name));
1f1031fe 11477 }
1f1031fe 11478 }
ee9b8eae 11479 }
1f1031fe 11480 } else if (k == GOSUB)
6bda09f9 11481 Perl_sv_catpvf(aTHX_ sv, "%d[%+d]", (int)ARG(o),(int)ARG2L(o)); /* Paren and offset */
e2e6a0f1
YO
11482 else if (k == VERB) {
11483 if (!o->flags)
11484 Perl_sv_catpvf(aTHX_ sv, ":%"SVf,
ad64d0ec 11485 SVfARG((MUTABLE_SV(progi->data->data[ ARG( o ) ]))));
e2e6a0f1 11486 } else if (k == LOGICAL)
04ebc1ab 11487 Perl_sv_catpvf(aTHX_ sv, "[%d]", o->flags); /* 2: embedded, otherwise 1 */
f9a79580 11488 else if (k == FOLDCHAR)
df44d732 11489 Perl_sv_catpvf(aTHX_ sv, "[0x%"UVXf"]", PTR2UV(ARG(o)) );
653099ff
GS
11490 else if (k == ANYOF) {
11491 int i, rangestart = -1;
2d03de9c 11492 const U8 flags = ANYOF_FLAGS(o);
24d786f4 11493 int do_sep = 0;
0bd48802
AL
11494
11495 /* Should be synchronized with * ANYOF_ #xdefines in regcomp.h */
11496 static const char * const anyofs[] = {
653099ff
GS
11497 "\\w",
11498 "\\W",
11499 "\\s",
11500 "\\S",
11501 "\\d",
11502 "\\D",
11503 "[:alnum:]",
11504 "[:^alnum:]",
11505 "[:alpha:]",
11506 "[:^alpha:]",
11507 "[:ascii:]",
11508 "[:^ascii:]",
24d786f4
YO
11509 "[:cntrl:]",
11510 "[:^cntrl:]",
653099ff
GS
11511 "[:graph:]",
11512 "[:^graph:]",
11513 "[:lower:]",
11514 "[:^lower:]",
11515 "[:print:]",
11516 "[:^print:]",
11517 "[:punct:]",
11518 "[:^punct:]",
11519 "[:upper:]",
aaa51d5e 11520 "[:^upper:]",
653099ff 11521 "[:xdigit:]",
aaa51d5e
JF
11522 "[:^xdigit:]",
11523 "[:space:]",
11524 "[:^space:]",
11525 "[:blank:]",
11526 "[:^blank:]"
653099ff
GS
11527 };
11528
19860706 11529 if (flags & ANYOF_LOCALE)
396482e1 11530 sv_catpvs(sv, "{loc}");
39065660 11531 if (flags & ANYOF_LOC_NONBITMAP_FOLD)
396482e1 11532 sv_catpvs(sv, "{i}");
653099ff 11533 Perl_sv_catpvf(aTHX_ sv, "[%s", PL_colors[0]);
19860706 11534 if (flags & ANYOF_INVERT)
396482e1 11535 sv_catpvs(sv, "^");
3339dfd8
YO
11536
11537 /* output what the standard cp 0-255 bitmap matches */
ffc61ed2
JH
11538 for (i = 0; i <= 256; i++) {
11539 if (i < 256 && ANYOF_BITMAP_TEST(o,i)) {
11540 if (rangestart == -1)
11541 rangestart = i;
11542 } else if (rangestart != -1) {
11543 if (i <= rangestart + 3)
11544 for (; rangestart < i; rangestart++)
653099ff 11545 put_byte(sv, rangestart);
ffc61ed2
JH
11546 else {
11547 put_byte(sv, rangestart);
396482e1 11548 sv_catpvs(sv, "-");
ffc61ed2 11549 put_byte(sv, i - 1);
653099ff 11550 }
24d786f4 11551 do_sep = 1;
ffc61ed2 11552 rangestart = -1;
653099ff 11553 }
847a199f 11554 }
3339dfd8
YO
11555
11556 EMIT_ANYOF_TEST_SEPARATOR(do_sep,sv,flags);
3a15e693
KW
11557 /* output any special charclass tests (used entirely under use locale) */
11558 if (ANYOF_CLASS_TEST_ANY_SET(o))
bb7a0f54 11559 for (i = 0; i < (int)(sizeof(anyofs)/sizeof(char*)); i++)
24d786f4 11560 if (ANYOF_CLASS_TEST(o,i)) {
ffc61ed2 11561 sv_catpv(sv, anyofs[i]);
24d786f4
YO
11562 do_sep = 1;
11563 }
11564
3339dfd8
YO
11565 EMIT_ANYOF_TEST_SEPARATOR(do_sep,sv,flags);
11566
11454c59
KW
11567 if (flags & ANYOF_NON_UTF8_LATIN1_ALL) {
11568 sv_catpvs(sv, "{non-utf8-latin1-all}");
11569 }
11570
3339dfd8 11571 /* output information about the unicode matching */
ef87b810 11572 if (flags & ANYOF_UNICODE_ALL)
396482e1 11573 sv_catpvs(sv, "{unicode_all}");
137165a6 11574 else if (ANYOF_NONBITMAP(o))
ef87b810 11575 sv_catpvs(sv, "{unicode}");
f5ecd18d 11576 if (flags & ANYOF_NONBITMAP_NON_UTF8)
ef87b810 11577 sv_catpvs(sv, "{outside bitmap}");
ffc61ed2 11578
1aa9930e 11579 if (ANYOF_NONBITMAP(o)) {
ffc61ed2 11580 SV *lv;
32fc9b6a 11581 SV * const sw = regclass_swash(prog, o, FALSE, &lv, 0);
b81d288d 11582
ffc61ed2
JH
11583 if (lv) {
11584 if (sw) {
89ebb4a3 11585 U8 s[UTF8_MAXBYTES_CASE+1];
24d786f4 11586
ffc61ed2 11587 for (i = 0; i <= 256; i++) { /* just the first 256 */
1df70142 11588 uvchr_to_utf8(s, i);
ffc61ed2 11589
3568d838 11590 if (i < 256 && swash_fetch(sw, s, TRUE)) {
ffc61ed2
JH
11591 if (rangestart == -1)
11592 rangestart = i;
11593 } else if (rangestart != -1) {
ffc61ed2
JH
11594 if (i <= rangestart + 3)
11595 for (; rangestart < i; rangestart++) {
2d03de9c
AL
11596 const U8 * const e = uvchr_to_utf8(s,rangestart);
11597 U8 *p;
11598 for(p = s; p < e; p++)
ffc61ed2
JH
11599 put_byte(sv, *p);
11600 }
11601 else {
2d03de9c
AL
11602 const U8 *e = uvchr_to_utf8(s,rangestart);
11603 U8 *p;
11604 for (p = s; p < e; p++)
ffc61ed2 11605 put_byte(sv, *p);
396482e1 11606 sv_catpvs(sv, "-");
2d03de9c
AL
11607 e = uvchr_to_utf8(s, i-1);
11608 for (p = s; p < e; p++)
1df70142 11609 put_byte(sv, *p);
ffc61ed2
JH
11610 }
11611 rangestart = -1;
11612 }
19860706 11613 }
ffc61ed2 11614
396482e1 11615 sv_catpvs(sv, "..."); /* et cetera */
19860706 11616 }
fde631ed 11617
ffc61ed2 11618 {
2e0de35c 11619 char *s = savesvpv(lv);
c445ea15 11620 char * const origs = s;
b81d288d 11621
3dab1dad
YO
11622 while (*s && *s != '\n')
11623 s++;
b81d288d 11624
ffc61ed2 11625 if (*s == '\n') {
2d03de9c 11626 const char * const t = ++s;
ffc61ed2
JH
11627
11628 while (*s) {
11629 if (*s == '\n')
11630 *s = ' ';
11631 s++;
11632 }
11633 if (s[-1] == ' ')
11634 s[-1] = 0;
11635
11636 sv_catpv(sv, t);
fde631ed 11637 }
b81d288d 11638
ffc61ed2 11639 Safefree(origs);
fde631ed
JH
11640 }
11641 }
653099ff 11642 }
ffc61ed2 11643
653099ff
GS
11644 Perl_sv_catpvf(aTHX_ sv, "%s]", PL_colors[1]);
11645 }
9b155405 11646 else if (k == BRANCHJ && (OP(o) == UNLESSM || OP(o) == IFMATCH))
07be1b83 11647 Perl_sv_catpvf(aTHX_ sv, "[%d]", -(o->flags));
65e66c80 11648#else
96a5add6 11649 PERL_UNUSED_CONTEXT;
65e66c80
SP
11650 PERL_UNUSED_ARG(sv);
11651 PERL_UNUSED_ARG(o);
f9049ba1 11652 PERL_UNUSED_ARG(prog);
17c3b450 11653#endif /* DEBUGGING */
35ff7856 11654}
a687059c 11655
cad2e5aa 11656SV *
288b8c02 11657Perl_re_intuit_string(pTHX_ REGEXP * const r)
cad2e5aa 11658{ /* Assume that RE_INTUIT is set */
97aff369 11659 dVAR;
288b8c02 11660 struct regexp *const prog = (struct regexp *)SvANY(r);
a3621e74 11661 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
11662
11663 PERL_ARGS_ASSERT_RE_INTUIT_STRING;
96a5add6
AL
11664 PERL_UNUSED_CONTEXT;
11665
a3621e74 11666 DEBUG_COMPILE_r(
cfd0369c 11667 {
2d03de9c 11668 const char * const s = SvPV_nolen_const(prog->check_substr
cfd0369c 11669 ? prog->check_substr : prog->check_utf8);
cad2e5aa
JH
11670
11671 if (!PL_colorset) reginitcolors();
11672 PerlIO_printf(Perl_debug_log,
a0288114 11673 "%sUsing REx %ssubstr:%s \"%s%.60s%s%s\"\n",
33b8afdf
JH
11674 PL_colors[4],
11675 prog->check_substr ? "" : "utf8 ",
11676 PL_colors[5],PL_colors[0],
cad2e5aa
JH
11677 s,
11678 PL_colors[1],
11679 (strlen(s) > 60 ? "..." : ""));
11680 } );
11681
33b8afdf 11682 return prog->check_substr ? prog->check_substr : prog->check_utf8;
cad2e5aa
JH
11683}
11684
84da74a7 11685/*
f8149455 11686 pregfree()
84da74a7 11687
f8149455
YO
11688 handles refcounting and freeing the perl core regexp structure. When
11689 it is necessary to actually free the structure the first thing it
3b753521 11690 does is call the 'free' method of the regexp_engine associated to
f8149455
YO
11691 the regexp, allowing the handling of the void *pprivate; member
11692 first. (This routine is not overridable by extensions, which is why
11693 the extensions free is called first.)
11694
11695 See regdupe and regdupe_internal if you change anything here.
84da74a7 11696*/
f8149455 11697#ifndef PERL_IN_XSUB_RE
2b69d0c2 11698void
84679df5 11699Perl_pregfree(pTHX_ REGEXP *r)
a687059c 11700{
288b8c02
NC
11701 SvREFCNT_dec(r);
11702}
11703
11704void
11705Perl_pregfree2(pTHX_ REGEXP *rx)
11706{
27da23d5 11707 dVAR;
288b8c02 11708 struct regexp *const r = (struct regexp *)SvANY(rx);
fc32ee4a 11709 GET_RE_DEBUG_FLAGS_DECL;
a3621e74 11710
7918f24d
NC
11711 PERL_ARGS_ASSERT_PREGFREE2;
11712
28d8d7f4
YO
11713 if (r->mother_re) {
11714 ReREFCNT_dec(r->mother_re);
11715 } else {
288b8c02 11716 CALLREGFREE_PVT(rx); /* free the private data */
ef8d46e8 11717 SvREFCNT_dec(RXp_PAREN_NAMES(r));
28d8d7f4
YO
11718 }
11719 if (r->substrs) {
ef8d46e8
VP
11720 SvREFCNT_dec(r->anchored_substr);
11721 SvREFCNT_dec(r->anchored_utf8);
11722 SvREFCNT_dec(r->float_substr);
11723 SvREFCNT_dec(r->float_utf8);
28d8d7f4
YO
11724 Safefree(r->substrs);
11725 }
288b8c02 11726 RX_MATCH_COPY_FREE(rx);
f8c7b90f 11727#ifdef PERL_OLD_COPY_ON_WRITE
ef8d46e8 11728 SvREFCNT_dec(r->saved_copy);
ed252734 11729#endif
f0ab9afb 11730 Safefree(r->offs);
f8149455 11731}
28d8d7f4
YO
11732
11733/* reg_temp_copy()
11734
11735 This is a hacky workaround to the structural issue of match results
11736 being stored in the regexp structure which is in turn stored in
11737 PL_curpm/PL_reg_curpm. The problem is that due to qr// the pattern
11738 could be PL_curpm in multiple contexts, and could require multiple
11739 result sets being associated with the pattern simultaneously, such
11740 as when doing a recursive match with (??{$qr})
11741
11742 The solution is to make a lightweight copy of the regexp structure
11743 when a qr// is returned from the code executed by (??{$qr}) this
486ec47a 11744 lightweight copy doesn't actually own any of its data except for
28d8d7f4
YO
11745 the starp/end and the actual regexp structure itself.
11746
11747*/
11748
11749
84679df5 11750REGEXP *
f0826785 11751Perl_reg_temp_copy (pTHX_ REGEXP *ret_x, REGEXP *rx)
7918f24d 11752{
f0826785 11753 struct regexp *ret;
288b8c02 11754 struct regexp *const r = (struct regexp *)SvANY(rx);
28d8d7f4 11755 register const I32 npar = r->nparens+1;
7918f24d
NC
11756
11757 PERL_ARGS_ASSERT_REG_TEMP_COPY;
11758
f0826785
BM
11759 if (!ret_x)
11760 ret_x = (REGEXP*) newSV_type(SVt_REGEXP);
11761 ret = (struct regexp *)SvANY(ret_x);
11762
288b8c02 11763 (void)ReREFCNT_inc(rx);
f7c278bf
NC
11764 /* We can take advantage of the existing "copied buffer" mechanism in SVs
11765 by pointing directly at the buffer, but flagging that the allocated
11766 space in the copy is zero. As we've just done a struct copy, it's now
11767 a case of zero-ing that, rather than copying the current length. */
11768 SvPV_set(ret_x, RX_WRAPPED(rx));
8f6ae13c 11769 SvFLAGS(ret_x) |= SvFLAGS(rx) & (SVf_POK|SVp_POK|SVf_UTF8);
b6f60916
NC
11770 memcpy(&(ret->xpv_cur), &(r->xpv_cur),
11771 sizeof(regexp) - STRUCT_OFFSET(regexp, xpv_cur));
f7c278bf 11772 SvLEN_set(ret_x, 0);
b9ad13ac 11773 SvSTASH_set(ret_x, NULL);
703c388d 11774 SvMAGIC_set(ret_x, NULL);
f0ab9afb
NC
11775 Newx(ret->offs, npar, regexp_paren_pair);
11776 Copy(r->offs, ret->offs, npar, regexp_paren_pair);
28d8d7f4 11777 if (r->substrs) {
28d8d7f4 11778 Newx(ret->substrs, 1, struct reg_substr_data);
6ab65676
NC
11779 StructCopy(r->substrs, ret->substrs, struct reg_substr_data);
11780
11781 SvREFCNT_inc_void(ret->anchored_substr);
11782 SvREFCNT_inc_void(ret->anchored_utf8);
11783 SvREFCNT_inc_void(ret->float_substr);
11784 SvREFCNT_inc_void(ret->float_utf8);
11785
11786 /* check_substr and check_utf8, if non-NULL, point to either their
11787 anchored or float namesakes, and don't hold a second reference. */
486913e4 11788 }
288b8c02 11789 RX_MATCH_COPIED_off(ret_x);
28d8d7f4 11790#ifdef PERL_OLD_COPY_ON_WRITE
b89b0c6f 11791 ret->saved_copy = NULL;
28d8d7f4 11792#endif
288b8c02 11793 ret->mother_re = rx;
28d8d7f4 11794
288b8c02 11795 return ret_x;
28d8d7f4 11796}
f8149455
YO
11797#endif
11798
11799/* regfree_internal()
11800
11801 Free the private data in a regexp. This is overloadable by
11802 extensions. Perl takes care of the regexp structure in pregfree(),
3b753521 11803 this covers the *pprivate pointer which technically perl doesn't
f8149455
YO
11804 know about, however of course we have to handle the
11805 regexp_internal structure when no extension is in use.
11806
11807 Note this is called before freeing anything in the regexp
11808 structure.
11809 */
11810
11811void
288b8c02 11812Perl_regfree_internal(pTHX_ REGEXP * const rx)
f8149455
YO
11813{
11814 dVAR;
288b8c02 11815 struct regexp *const r = (struct regexp *)SvANY(rx);
f8149455
YO
11816 RXi_GET_DECL(r,ri);
11817 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
11818
11819 PERL_ARGS_ASSERT_REGFREE_INTERNAL;
11820
f8149455
YO
11821 DEBUG_COMPILE_r({
11822 if (!PL_colorset)
11823 reginitcolors();
11824 {
11825 SV *dsv= sv_newmortal();
3c8556c3 11826 RE_PV_QUOTED_DECL(s, RX_UTF8(rx),
5509d87a 11827 dsv, RX_PRECOMP(rx), RX_PRELEN(rx), 60);
f8149455
YO
11828 PerlIO_printf(Perl_debug_log,"%sFreeing REx:%s %s\n",
11829 PL_colors[4],PL_colors[5],s);
11830 }
11831 });
7122b237
YO
11832#ifdef RE_TRACK_PATTERN_OFFSETS
11833 if (ri->u.offsets)
11834 Safefree(ri->u.offsets); /* 20010421 MJD */
11835#endif
f8fc2ecf
YO
11836 if (ri->data) {
11837 int n = ri->data->count;
f3548bdc
DM
11838 PAD* new_comppad = NULL;
11839 PAD* old_comppad;
4026c95a 11840 PADOFFSET refcnt;
dfad63ad 11841
c277df42 11842 while (--n >= 0) {
261faec3 11843 /* If you add a ->what type here, update the comment in regcomp.h */
f8fc2ecf 11844 switch (ri->data->what[n]) {
af534a04 11845 case 'a':
c277df42 11846 case 's':
81714fb9 11847 case 'S':
55eed653 11848 case 'u':
ad64d0ec 11849 SvREFCNT_dec(MUTABLE_SV(ri->data->data[n]));
c277df42 11850 break;
653099ff 11851 case 'f':
f8fc2ecf 11852 Safefree(ri->data->data[n]);
653099ff 11853 break;
dfad63ad 11854 case 'p':
502c6561 11855 new_comppad = MUTABLE_AV(ri->data->data[n]);
dfad63ad 11856 break;
c277df42 11857 case 'o':
dfad63ad 11858 if (new_comppad == NULL)
cea2e8a9 11859 Perl_croak(aTHX_ "panic: pregfree comppad");
f3548bdc
DM
11860 PAD_SAVE_LOCAL(old_comppad,
11861 /* Watch out for global destruction's random ordering. */
c445ea15 11862 (SvTYPE(new_comppad) == SVt_PVAV) ? new_comppad : NULL
f3548bdc 11863 );
b34c0dd4 11864 OP_REFCNT_LOCK;
f8fc2ecf 11865 refcnt = OpREFCNT_dec((OP_4tree*)ri->data->data[n]);
4026c95a
SH
11866 OP_REFCNT_UNLOCK;
11867 if (!refcnt)
f8fc2ecf 11868 op_free((OP_4tree*)ri->data->data[n]);
9b978d73 11869
f3548bdc 11870 PAD_RESTORE_LOCAL(old_comppad);
ad64d0ec 11871 SvREFCNT_dec(MUTABLE_SV(new_comppad));
dfad63ad 11872 new_comppad = NULL;
c277df42
IZ
11873 break;
11874 case 'n':
9e55ce06 11875 break;
07be1b83 11876 case 'T':
be8e71aa
YO
11877 { /* Aho Corasick add-on structure for a trie node.
11878 Used in stclass optimization only */
07be1b83 11879 U32 refcount;
f8fc2ecf 11880 reg_ac_data *aho=(reg_ac_data*)ri->data->data[n];
07be1b83
YO
11881 OP_REFCNT_LOCK;
11882 refcount = --aho->refcount;
11883 OP_REFCNT_UNLOCK;
11884 if ( !refcount ) {
446bd890
NC
11885 PerlMemShared_free(aho->states);
11886 PerlMemShared_free(aho->fail);
446bd890
NC
11887 /* do this last!!!! */
11888 PerlMemShared_free(ri->data->data[n]);
11889 PerlMemShared_free(ri->regstclass);
07be1b83
YO
11890 }
11891 }
11892 break;
a3621e74 11893 case 't':
07be1b83 11894 {
be8e71aa 11895 /* trie structure. */
07be1b83 11896 U32 refcount;
f8fc2ecf 11897 reg_trie_data *trie=(reg_trie_data*)ri->data->data[n];
07be1b83
YO
11898 OP_REFCNT_LOCK;
11899 refcount = --trie->refcount;
11900 OP_REFCNT_UNLOCK;
11901 if ( !refcount ) {
446bd890 11902 PerlMemShared_free(trie->charmap);
446bd890
NC
11903 PerlMemShared_free(trie->states);
11904 PerlMemShared_free(trie->trans);
07be1b83 11905 if (trie->bitmap)
446bd890 11906 PerlMemShared_free(trie->bitmap);
786e8c11 11907 if (trie->jump)
446bd890 11908 PerlMemShared_free(trie->jump);
2e64971a 11909 PerlMemShared_free(trie->wordinfo);
446bd890
NC
11910 /* do this last!!!! */
11911 PerlMemShared_free(ri->data->data[n]);
a3621e74 11912 }
07be1b83
YO
11913 }
11914 break;
c277df42 11915 default:
f8fc2ecf 11916 Perl_croak(aTHX_ "panic: regfree data code '%c'", ri->data->what[n]);
c277df42
IZ
11917 }
11918 }
f8fc2ecf
YO
11919 Safefree(ri->data->what);
11920 Safefree(ri->data);
a0d0e21e 11921 }
28d8d7f4 11922
f8fc2ecf 11923 Safefree(ri);
a687059c 11924}
c277df42 11925
a09252eb
NC
11926#define av_dup_inc(s,t) MUTABLE_AV(sv_dup_inc((const SV *)s,t))
11927#define hv_dup_inc(s,t) MUTABLE_HV(sv_dup_inc((const SV *)s,t))
84da74a7
YO
11928#define SAVEPVN(p,n) ((p) ? savepvn(p,n) : NULL)
11929
11930/*
32cd70f6 11931 re_dup - duplicate a regexp.
84da74a7 11932
8233f606
DM
11933 This routine is expected to clone a given regexp structure. It is only
11934 compiled under USE_ITHREADS.
32cd70f6 11935
f8149455
YO
11936 After all of the core data stored in struct regexp is duplicated
11937 the regexp_engine.dupe method is used to copy any private data
11938 stored in the *pprivate pointer. This allows extensions to handle
11939 any duplication it needs to do.
11940
11941 See pregfree() and regfree_internal() if you change anything here.
84da74a7 11942*/
a3c0e9ca 11943#if defined(USE_ITHREADS)
f8149455 11944#ifndef PERL_IN_XSUB_RE
288b8c02
NC
11945void
11946Perl_re_dup_guts(pTHX_ const REGEXP *sstr, REGEXP *dstr, CLONE_PARAMS *param)
84da74a7 11947{
84da74a7 11948 dVAR;
a86a1ca7 11949 I32 npar;
288b8c02
NC
11950 const struct regexp *r = (const struct regexp *)SvANY(sstr);
11951 struct regexp *ret = (struct regexp *)SvANY(dstr);
f8149455 11952
7918f24d
NC
11953 PERL_ARGS_ASSERT_RE_DUP_GUTS;
11954
84da74a7 11955 npar = r->nparens+1;
f0ab9afb
NC
11956 Newx(ret->offs, npar, regexp_paren_pair);
11957 Copy(r->offs, ret->offs, npar, regexp_paren_pair);
6057429f 11958 if(ret->swap) {
28d8d7f4 11959 /* no need to copy these */
f0ab9afb 11960 Newx(ret->swap, npar, regexp_paren_pair);
28d8d7f4 11961 }
84da74a7 11962
6057429f 11963 if (ret->substrs) {
32cd70f6
NC
11964 /* Do it this way to avoid reading from *r after the StructCopy().
11965 That way, if any of the sv_dup_inc()s dislodge *r from the L1
11966 cache, it doesn't matter. */
66b1de87
NC
11967 const bool anchored = r->check_substr
11968 ? r->check_substr == r->anchored_substr
11969 : r->check_utf8 == r->anchored_utf8;
785a26d5 11970 Newx(ret->substrs, 1, struct reg_substr_data);
a86a1ca7
NC
11971 StructCopy(r->substrs, ret->substrs, struct reg_substr_data);
11972
32cd70f6
NC
11973 ret->anchored_substr = sv_dup_inc(ret->anchored_substr, param);
11974 ret->anchored_utf8 = sv_dup_inc(ret->anchored_utf8, param);
11975 ret->float_substr = sv_dup_inc(ret->float_substr, param);
11976 ret->float_utf8 = sv_dup_inc(ret->float_utf8, param);
a86a1ca7 11977
32cd70f6
NC
11978 /* check_substr and check_utf8, if non-NULL, point to either their
11979 anchored or float namesakes, and don't hold a second reference. */
11980
11981 if (ret->check_substr) {
11982 if (anchored) {
11983 assert(r->check_utf8 == r->anchored_utf8);
11984 ret->check_substr = ret->anchored_substr;
11985 ret->check_utf8 = ret->anchored_utf8;
11986 } else {
11987 assert(r->check_substr == r->float_substr);
11988 assert(r->check_utf8 == r->float_utf8);
11989 ret->check_substr = ret->float_substr;
11990 ret->check_utf8 = ret->float_utf8;
11991 }
66b1de87
NC
11992 } else if (ret->check_utf8) {
11993 if (anchored) {
11994 ret->check_utf8 = ret->anchored_utf8;
11995 } else {
11996 ret->check_utf8 = ret->float_utf8;
11997 }
32cd70f6 11998 }
6057429f 11999 }
f8149455 12000
5daac39c 12001 RXp_PAREN_NAMES(ret) = hv_dup_inc(RXp_PAREN_NAMES(ret), param);
bcdf7404 12002
6057429f 12003 if (ret->pprivate)
288b8c02 12004 RXi_SET(ret,CALLREGDUPE_PVT(dstr,param));
f8149455 12005
288b8c02 12006 if (RX_MATCH_COPIED(dstr))
6057429f 12007 ret->subbeg = SAVEPVN(ret->subbeg, ret->sublen);
f8149455
YO
12008 else
12009 ret->subbeg = NULL;
12010#ifdef PERL_OLD_COPY_ON_WRITE
12011 ret->saved_copy = NULL;
12012#endif
6057429f 12013
c2123ae3
NC
12014 if (ret->mother_re) {
12015 if (SvPVX_const(dstr) == SvPVX_const(ret->mother_re)) {
12016 /* Our storage points directly to our mother regexp, but that's
12017 1: a buffer in a different thread
12018 2: something we no longer hold a reference on
12019 so we need to copy it locally. */
12020 /* Note we need to sue SvCUR() on our mother_re, because it, in
12021 turn, may well be pointing to its own mother_re. */
12022 SvPV_set(dstr, SAVEPVN(SvPVX_const(ret->mother_re),
12023 SvCUR(ret->mother_re)+1));
12024 SvLEN_set(dstr, SvCUR(ret->mother_re)+1);
12025 }
12026 ret->mother_re = NULL;
12027 }
6057429f 12028 ret->gofs = 0;
f8149455
YO
12029}
12030#endif /* PERL_IN_XSUB_RE */
12031
12032/*
12033 regdupe_internal()
12034
12035 This is the internal complement to regdupe() which is used to copy
12036 the structure pointed to by the *pprivate pointer in the regexp.
12037 This is the core version of the extension overridable cloning hook.
12038 The regexp structure being duplicated will be copied by perl prior
12039 to this and will be provided as the regexp *r argument, however
12040 with the /old/ structures pprivate pointer value. Thus this routine
12041 may override any copying normally done by perl.
12042
12043 It returns a pointer to the new regexp_internal structure.
12044*/
12045
12046void *
288b8c02 12047Perl_regdupe_internal(pTHX_ REGEXP * const rx, CLONE_PARAMS *param)
f8149455
YO
12048{
12049 dVAR;
288b8c02 12050 struct regexp *const r = (struct regexp *)SvANY(rx);
f8149455 12051 regexp_internal *reti;
0780bc72 12052 int len;
f8149455 12053 RXi_GET_DECL(r,ri);
7918f24d
NC
12054
12055 PERL_ARGS_ASSERT_REGDUPE_INTERNAL;
f8149455 12056
7122b237 12057 len = ProgLen(ri);
f8149455 12058
45cf4570 12059 Newxc(reti, sizeof(regexp_internal) + len*sizeof(regnode), char, regexp_internal);
f8149455
YO
12060 Copy(ri->program, reti->program, len+1, regnode);
12061
f8149455 12062
f8fc2ecf 12063 reti->regstclass = NULL;
bcdf7404 12064
f8fc2ecf 12065 if (ri->data) {
84da74a7 12066 struct reg_data *d;
f8fc2ecf 12067 const int count = ri->data->count;
84da74a7
YO
12068 int i;
12069
12070 Newxc(d, sizeof(struct reg_data) + count*sizeof(void *),
12071 char, struct reg_data);
12072 Newx(d->what, count, U8);
12073
12074 d->count = count;
12075 for (i = 0; i < count; i++) {
f8fc2ecf 12076 d->what[i] = ri->data->what[i];
84da74a7 12077 switch (d->what[i]) {
af534a04 12078 /* legal options are one of: sSfpontTua
84da74a7 12079 see also regcomp.h and pregfree() */
af534a04 12080 case 'a': /* actually an AV, but the dup function is identical. */
84da74a7 12081 case 's':
81714fb9 12082 case 'S':
0536c0a7 12083 case 'p': /* actually an AV, but the dup function is identical. */
55eed653 12084 case 'u': /* actually an HV, but the dup function is identical. */
ad64d0ec 12085 d->data[i] = sv_dup_inc((const SV *)ri->data->data[i], param);
84da74a7 12086 break;
84da74a7
YO
12087 case 'f':
12088 /* This is cheating. */
12089 Newx(d->data[i], 1, struct regnode_charclass_class);
f8fc2ecf 12090 StructCopy(ri->data->data[i], d->data[i],
84da74a7 12091 struct regnode_charclass_class);
f8fc2ecf 12092 reti->regstclass = (regnode*)d->data[i];
84da74a7
YO
12093 break;
12094 case 'o':
bbe252da
YO
12095 /* Compiled op trees are readonly and in shared memory,
12096 and can thus be shared without duplication. */
84da74a7 12097 OP_REFCNT_LOCK;
f8fc2ecf 12098 d->data[i] = (void*)OpREFCNT_inc((OP*)ri->data->data[i]);
84da74a7
YO
12099 OP_REFCNT_UNLOCK;
12100 break;
23eab42c
NC
12101 case 'T':
12102 /* Trie stclasses are readonly and can thus be shared
12103 * without duplication. We free the stclass in pregfree
12104 * when the corresponding reg_ac_data struct is freed.
12105 */
12106 reti->regstclass= ri->regstclass;
12107 /* Fall through */
84da74a7 12108 case 't':
84da74a7 12109 OP_REFCNT_LOCK;
0536c0a7 12110 ((reg_trie_data*)ri->data->data[i])->refcount++;
84da74a7 12111 OP_REFCNT_UNLOCK;
0536c0a7
NC
12112 /* Fall through */
12113 case 'n':
12114 d->data[i] = ri->data->data[i];
84da74a7 12115 break;
84da74a7 12116 default:
f8fc2ecf 12117 Perl_croak(aTHX_ "panic: re_dup unknown data code '%c'", ri->data->what[i]);
84da74a7
YO
12118 }
12119 }
12120
f8fc2ecf 12121 reti->data = d;
84da74a7
YO
12122 }
12123 else
f8fc2ecf 12124 reti->data = NULL;
84da74a7 12125
cde0cee5
YO
12126 reti->name_list_idx = ri->name_list_idx;
12127
7122b237
YO
12128#ifdef RE_TRACK_PATTERN_OFFSETS
12129 if (ri->u.offsets) {
12130 Newx(reti->u.offsets, 2*len+1, U32);
12131 Copy(ri->u.offsets, reti->u.offsets, 2*len+1, U32);
12132 }
12133#else
12134 SetProgLen(reti,len);
12135#endif
12136
f8149455 12137 return (void*)reti;
84da74a7 12138}
f8149455
YO
12139
12140#endif /* USE_ITHREADS */
84da74a7 12141
f8149455 12142#ifndef PERL_IN_XSUB_RE
bcdf7404 12143
c277df42
IZ
12144/*
12145 - regnext - dig the "next" pointer out of a node
c277df42
IZ
12146 */
12147regnode *
864dbfa3 12148Perl_regnext(pTHX_ register regnode *p)
c277df42 12149{
97aff369 12150 dVAR;
c277df42
IZ
12151 register I32 offset;
12152
f8fc2ecf 12153 if (!p)
c277df42
IZ
12154 return(NULL);
12155
35db910f
KW
12156 if (OP(p) > REGNODE_MAX) { /* regnode.type is unsigned */
12157 Perl_croak(aTHX_ "Corrupted regexp opcode %d > %d", (int)OP(p), (int)REGNODE_MAX);
12158 }
12159
c277df42
IZ
12160 offset = (reg_off_by_arg[OP(p)] ? ARG(p) : NEXT_OFF(p));
12161 if (offset == 0)
12162 return(NULL);
12163
c277df42 12164 return(p+offset);
c277df42 12165}
76234dfb 12166#endif
c277df42 12167
01f988be 12168STATIC void
cea2e8a9 12169S_re_croak2(pTHX_ const char* pat1,const char* pat2,...)
c277df42
IZ
12170{
12171 va_list args;
12172 STRLEN l1 = strlen(pat1);
12173 STRLEN l2 = strlen(pat2);
12174 char buf[512];
06bf62c7 12175 SV *msv;
73d840c0 12176 const char *message;
c277df42 12177
7918f24d
NC
12178 PERL_ARGS_ASSERT_RE_CROAK2;
12179
c277df42
IZ
12180 if (l1 > 510)
12181 l1 = 510;
12182 if (l1 + l2 > 510)
12183 l2 = 510 - l1;
12184 Copy(pat1, buf, l1 , char);
12185 Copy(pat2, buf + l1, l2 , char);
3b818b81
GS
12186 buf[l1 + l2] = '\n';
12187 buf[l1 + l2 + 1] = '\0';
8736538c
AS
12188#ifdef I_STDARG
12189 /* ANSI variant takes additional second argument */
c277df42 12190 va_start(args, pat2);
8736538c
AS
12191#else
12192 va_start(args);
12193#endif
5a844595 12194 msv = vmess(buf, &args);
c277df42 12195 va_end(args);
cfd0369c 12196 message = SvPV_const(msv,l1);
c277df42
IZ
12197 if (l1 > 512)
12198 l1 = 512;
12199 Copy(message, buf, l1 , char);
197cf9b9 12200 buf[l1-1] = '\0'; /* Overwrite \n */
cea2e8a9 12201 Perl_croak(aTHX_ "%s", buf);
c277df42 12202}
a0ed51b3
LW
12203
12204/* XXX Here's a total kludge. But we need to re-enter for swash routines. */
12205
76234dfb 12206#ifndef PERL_IN_XSUB_RE
a0ed51b3 12207void
864dbfa3 12208Perl_save_re_context(pTHX)
b81d288d 12209{
97aff369 12210 dVAR;
1ade1aa1
NC
12211
12212 struct re_save_state *state;
12213
12214 SAVEVPTR(PL_curcop);
12215 SSGROW(SAVESTACK_ALLOC_FOR_RE_SAVE_STATE + 1);
12216
12217 state = (struct re_save_state *)(PL_savestack + PL_savestack_ix);
12218 PL_savestack_ix += SAVESTACK_ALLOC_FOR_RE_SAVE_STATE;
c6bf6a65 12219 SSPUSHUV(SAVEt_RE_STATE);
1ade1aa1 12220
46ab3289 12221 Copy(&PL_reg_state, state, 1, struct re_save_state);
1ade1aa1 12222
a0ed51b3 12223 PL_reg_start_tmp = 0;
a0ed51b3 12224 PL_reg_start_tmpl = 0;
c445ea15 12225 PL_reg_oldsaved = NULL;
a5db57d6 12226 PL_reg_oldsavedlen = 0;
a5db57d6 12227 PL_reg_maxiter = 0;
a5db57d6 12228 PL_reg_leftiter = 0;
c445ea15 12229 PL_reg_poscache = NULL;
a5db57d6 12230 PL_reg_poscache_size = 0;
1ade1aa1
NC
12231#ifdef PERL_OLD_COPY_ON_WRITE
12232 PL_nrs = NULL;
12233#endif
ada6e8a9 12234
c445ea15
AL
12235 /* Save $1..$n (#18107: UTF-8 s/(\w+)/uc($1)/e); AMS 20021106. */
12236 if (PL_curpm) {
12237 const REGEXP * const rx = PM_GETRE(PL_curpm);
12238 if (rx) {
1df70142 12239 U32 i;
07bc277f 12240 for (i = 1; i <= RX_NPARENS(rx); i++) {
1df70142 12241 char digits[TYPE_CHARS(long)];
d9fad198 12242 const STRLEN len = my_snprintf(digits, sizeof(digits), "%lu", (long)i);
49f27e4b
NC
12243 GV *const *const gvp
12244 = (GV**)hv_fetch(PL_defstash, digits, len, 0);
12245
b37c2d43
AL
12246 if (gvp) {
12247 GV * const gv = *gvp;
12248 if (SvTYPE(gv) == SVt_PVGV && GvSV(gv))
12249 save_scalar(gv);
49f27e4b 12250 }
ada6e8a9
AMS
12251 }
12252 }
12253 }
a0ed51b3 12254}
76234dfb 12255#endif
51371543 12256
51371543 12257static void
acfe0abc 12258clear_re(pTHX_ void *r)
51371543 12259{
97aff369 12260 dVAR;
84679df5 12261 ReREFCNT_dec((REGEXP *)r);
51371543 12262}
ffbc6a93 12263
a28509cc
AL
12264#ifdef DEBUGGING
12265
12266STATIC void
12267S_put_byte(pTHX_ SV *sv, int c)
12268{
7918f24d
NC
12269 PERL_ARGS_ASSERT_PUT_BYTE;
12270
7fddd944
NC
12271 /* Our definition of isPRINT() ignores locales, so only bytes that are
12272 not part of UTF-8 are considered printable. I assume that the same
12273 holds for UTF-EBCDIC.
12274 Also, code point 255 is not printable in either (it's E0 in EBCDIC,
12275 which Wikipedia says:
12276
12277 EO, or Eight Ones, is an 8-bit EBCDIC character code represented as all
12278 ones (binary 1111 1111, hexadecimal FF). It is similar, but not
12279 identical, to the ASCII delete (DEL) or rubout control character.
12280 ) So the old condition can be simplified to !isPRINT(c) */
9ce2357e
KW
12281 if (!isPRINT(c)) {
12282 if (c < 256) {
12283 Perl_sv_catpvf(aTHX_ sv, "\\x%02x", c);
12284 }
12285 else {
12286 Perl_sv_catpvf(aTHX_ sv, "\\x{%x}", c);
12287 }
12288 }
5e7aa789 12289 else {
88c9ea1e 12290 const char string = c;
5e7aa789
NC
12291 if (c == '-' || c == ']' || c == '\\' || c == '^')
12292 sv_catpvs(sv, "\\");
12293 sv_catpvn(sv, &string, 1);
12294 }
a28509cc
AL
12295}
12296
786e8c11 12297
3dab1dad
YO
12298#define CLEAR_OPTSTART \
12299 if (optstart) STMT_START { \
70685ca0 12300 DEBUG_OPTIMISE_r(PerlIO_printf(Perl_debug_log, " (%"IVdf" nodes)\n", (IV)(node - optstart))); \
3dab1dad
YO
12301 optstart=NULL; \
12302 } STMT_END
12303
786e8c11 12304#define DUMPUNTIL(b,e) CLEAR_OPTSTART; node=dumpuntil(r,start,(b),(e),last,sv,indent+1,depth+1);
3dab1dad 12305
b5a2f8d8
NC
12306STATIC const regnode *
12307S_dumpuntil(pTHX_ const regexp *r, const regnode *start, const regnode *node,
786e8c11
YO
12308 const regnode *last, const regnode *plast,
12309 SV* sv, I32 indent, U32 depth)
a28509cc 12310{
97aff369 12311 dVAR;
786e8c11 12312 register U8 op = PSEUDO; /* Arbitrary non-END op. */
b5a2f8d8 12313 register const regnode *next;
3dab1dad 12314 const regnode *optstart= NULL;
1f1031fe 12315
f8fc2ecf 12316 RXi_GET_DECL(r,ri);
3dab1dad 12317 GET_RE_DEBUG_FLAGS_DECL;
7918f24d
NC
12318
12319 PERL_ARGS_ASSERT_DUMPUNTIL;
12320
786e8c11
YO
12321#ifdef DEBUG_DUMPUNTIL
12322 PerlIO_printf(Perl_debug_log, "--- %d : %d - %d - %d\n",indent,node-start,
12323 last ? last-start : 0,plast ? plast-start : 0);
12324#endif
12325
12326 if (plast && plast < last)
12327 last= plast;
12328
12329 while (PL_regkind[op] != END && (!last || node < last)) {
a28509cc 12330 /* While that wasn't END last time... */
a28509cc
AL
12331 NODE_ALIGN(node);
12332 op = OP(node);
de734bd5 12333 if (op == CLOSE || op == WHILEM)
786e8c11 12334 indent--;
b5a2f8d8 12335 next = regnext((regnode *)node);
1f1031fe 12336
a28509cc 12337 /* Where, what. */
8e11feef 12338 if (OP(node) == OPTIMIZED) {
e68ec53f 12339 if (!optstart && RE_DEBUG_FLAG(RE_DEBUG_COMPILE_OPTIMISE))
8e11feef 12340 optstart = node;
3dab1dad 12341 else
8e11feef 12342 goto after_print;
3dab1dad
YO
12343 } else
12344 CLEAR_OPTSTART;
1f1031fe 12345
32fc9b6a 12346 regprop(r, sv, node);
a28509cc 12347 PerlIO_printf(Perl_debug_log, "%4"IVdf":%*s%s", (IV)(node - start),
786e8c11 12348 (int)(2*indent + 1), "", SvPVX_const(sv));
1f1031fe
YO
12349
12350 if (OP(node) != OPTIMIZED) {
12351 if (next == NULL) /* Next ptr. */
12352 PerlIO_printf(Perl_debug_log, " (0)");
12353 else if (PL_regkind[(U8)op] == BRANCH && PL_regkind[OP(next)] != BRANCH )
12354 PerlIO_printf(Perl_debug_log, " (FAIL)");
12355 else
12356 PerlIO_printf(Perl_debug_log, " (%"IVdf")", (IV)(next - start));
12357 (void)PerlIO_putc(Perl_debug_log, '\n');
12358 }
12359
a28509cc
AL
12360 after_print:
12361 if (PL_regkind[(U8)op] == BRANCHJ) {
be8e71aa
YO
12362 assert(next);
12363 {
12364 register const regnode *nnode = (OP(next) == LONGJMP
b5a2f8d8
NC
12365 ? regnext((regnode *)next)
12366 : next);
be8e71aa
YO
12367 if (last && nnode > last)
12368 nnode = last;
786e8c11 12369 DUMPUNTIL(NEXTOPER(NEXTOPER(node)), nnode);
be8e71aa 12370 }
a28509cc
AL
12371 }
12372 else if (PL_regkind[(U8)op] == BRANCH) {
be8e71aa 12373 assert(next);
786e8c11 12374 DUMPUNTIL(NEXTOPER(node), next);
a28509cc
AL
12375 }
12376 else if ( PL_regkind[(U8)op] == TRIE ) {
7f69552c 12377 const regnode *this_trie = node;
1de06328 12378 const char op = OP(node);
647f639f 12379 const U32 n = ARG(node);
1de06328 12380 const reg_ac_data * const ac = op>=AHOCORASICK ?
f8fc2ecf 12381 (reg_ac_data *)ri->data->data[n] :
1de06328 12382 NULL;
3251b653
NC
12383 const reg_trie_data * const trie =
12384 (reg_trie_data*)ri->data->data[op<AHOCORASICK ? n : ac->trie];
2b8b4781 12385#ifdef DEBUGGING
502c6561 12386 AV *const trie_words = MUTABLE_AV(ri->data->data[n + TRIE_WORDS_OFFSET]);
2b8b4781 12387#endif
786e8c11 12388 const regnode *nextbranch= NULL;
a28509cc 12389 I32 word_idx;
76f68e9b 12390 sv_setpvs(sv, "");
786e8c11 12391 for (word_idx= 0; word_idx < (I32)trie->wordcount; word_idx++) {
2b8b4781 12392 SV ** const elem_ptr = av_fetch(trie_words,word_idx,0);
786e8c11
YO
12393
12394 PerlIO_printf(Perl_debug_log, "%*s%s ",
12395 (int)(2*(indent+3)), "",
12396 elem_ptr ? pv_pretty(sv, SvPV_nolen_const(*elem_ptr), SvCUR(*elem_ptr), 60,
ab3bbdeb
YO
12397 PL_colors[0], PL_colors[1],
12398 (SvUTF8(*elem_ptr) ? PERL_PV_ESCAPE_UNI : 0) |
95b611b0 12399 PERL_PV_PRETTY_ELLIPSES |
7f69552c 12400 PERL_PV_PRETTY_LTGT
786e8c11
YO
12401 )
12402 : "???"
12403 );
12404 if (trie->jump) {
40d049e4 12405 U16 dist= trie->jump[word_idx+1];
70685ca0
JH
12406 PerlIO_printf(Perl_debug_log, "(%"UVuf")\n",
12407 (UV)((dist ? this_trie + dist : next) - start));
786e8c11
YO
12408 if (dist) {
12409 if (!nextbranch)
24b23f37 12410 nextbranch= this_trie + trie->jump[0];
7f69552c
YO
12411 DUMPUNTIL(this_trie + dist, nextbranch);
12412 }
786e8c11
YO
12413 if (nextbranch && PL_regkind[OP(nextbranch)]==BRANCH)
12414 nextbranch= regnext((regnode *)nextbranch);
12415 } else {
12416 PerlIO_printf(Perl_debug_log, "\n");
a28509cc 12417 }
786e8c11
YO
12418 }
12419 if (last && next > last)
12420 node= last;
12421 else
12422 node= next;
a28509cc 12423 }
786e8c11
YO
12424 else if ( op == CURLY ) { /* "next" might be very big: optimizer */
12425 DUMPUNTIL(NEXTOPER(node) + EXTRA_STEP_2ARGS,
12426 NEXTOPER(node) + EXTRA_STEP_2ARGS + 1);
a28509cc
AL
12427 }
12428 else if (PL_regkind[(U8)op] == CURLY && op != CURLYX) {
be8e71aa 12429 assert(next);
786e8c11 12430 DUMPUNTIL(NEXTOPER(node) + EXTRA_STEP_2ARGS, next);
a28509cc
AL
12431 }
12432 else if ( op == PLUS || op == STAR) {
786e8c11 12433 DUMPUNTIL(NEXTOPER(node), NEXTOPER(node) + 1);
a28509cc 12434 }
f56b6394 12435 else if (PL_regkind[(U8)op] == ANYOF) {
a28509cc 12436 /* arglen 1 + class block */
4a3ee7a8 12437 node += 1 + ((ANYOF_FLAGS(node) & ANYOF_CLASS)
a28509cc
AL
12438 ? ANYOF_CLASS_SKIP : ANYOF_SKIP);
12439 node = NEXTOPER(node);
12440 }
12441 else if (PL_regkind[(U8)op] == EXACT) {
12442 /* Literal string, where present. */
12443 node += NODE_SZ_STR(node) - 1;
12444 node = NEXTOPER(node);
12445 }
12446 else {
12447 node = NEXTOPER(node);
12448 node += regarglen[(U8)op];
12449 }
12450 if (op == CURLYX || op == OPEN)
786e8c11 12451 indent++;
a28509cc 12452 }
3dab1dad 12453 CLEAR_OPTSTART;
786e8c11 12454#ifdef DEBUG_DUMPUNTIL
70685ca0 12455 PerlIO_printf(Perl_debug_log, "--- %d\n", (int)indent);
786e8c11 12456#endif
1de06328 12457 return node;
a28509cc
AL
12458}
12459
12460#endif /* DEBUGGING */
12461
241d1a3b
NC
12462/*
12463 * Local variables:
12464 * c-indentation-style: bsd
12465 * c-basic-offset: 4
12466 * indent-tabs-mode: t
12467 * End:
12468 *
37442d52
RGS
12469 * ex: set ts=8 sts=4 sw=4 noet:
12470 */