Ruby 4.1.0dev (2026-05-14 revision 4c3de1a7b063c91015a54b8b125676b60d565959)
re.c (4c3de1a7b063c91015a54b8b125676b60d565959)
1/**********************************************************************
2
3 re.c -
4
5 $Author$
6 created at: Mon Aug 9 18:24:49 JST 1993
7
8 Copyright (C) 1993-2007 Yukihiro Matsumoto
9
10**********************************************************************/
11
12#include "ruby/internal/config.h"
13
14#include <ctype.h>
15
16#include "encindex.h"
17#include "hrtime.h"
18#include "internal.h"
19#include "internal/bignum.h"
20#include "internal/encoding.h"
21#include "internal/error.h"
22#include "internal/hash.h"
23#include "internal/imemo.h"
24#include "internal/re.h"
25#include "internal/string.h"
26#include "internal/object.h"
27#include "internal/ractor.h"
28#include "internal/variable.h"
29#include "regint.h"
30#include "ruby/encoding.h"
31#include "ruby/re.h"
32#include "ruby/util.h"
33#include "ractor_core.h"
34
35VALUE rb_eRegexpError, rb_eRegexpTimeoutError;
36
37typedef char onig_errmsg_buffer[ONIG_MAX_ERROR_MESSAGE_LEN];
38#define errcpy(err, msg) strlcpy((err), (msg), ONIG_MAX_ERROR_MESSAGE_LEN)
39
40#if 'a' == 97 /* it's ascii */
41static const char casetable[] = {
42 '\000', '\001', '\002', '\003', '\004', '\005', '\006', '\007',
43 '\010', '\011', '\012', '\013', '\014', '\015', '\016', '\017',
44 '\020', '\021', '\022', '\023', '\024', '\025', '\026', '\027',
45 '\030', '\031', '\032', '\033', '\034', '\035', '\036', '\037',
46 /* ' ' '!' '"' '#' '$' '%' '&' ''' */
47 '\040', '\041', '\042', '\043', '\044', '\045', '\046', '\047',
48 /* '(' ')' '*' '+' ',' '-' '.' '/' */
49 '\050', '\051', '\052', '\053', '\054', '\055', '\056', '\057',
50 /* '0' '1' '2' '3' '4' '5' '6' '7' */
51 '\060', '\061', '\062', '\063', '\064', '\065', '\066', '\067',
52 /* '8' '9' ':' ';' '<' '=' '>' '?' */
53 '\070', '\071', '\072', '\073', '\074', '\075', '\076', '\077',
54 /* '@' 'A' 'B' 'C' 'D' 'E' 'F' 'G' */
55 '\100', '\141', '\142', '\143', '\144', '\145', '\146', '\147',
56 /* 'H' 'I' 'J' 'K' 'L' 'M' 'N' 'O' */
57 '\150', '\151', '\152', '\153', '\154', '\155', '\156', '\157',
58 /* 'P' 'Q' 'R' 'S' 'T' 'U' 'V' 'W' */
59 '\160', '\161', '\162', '\163', '\164', '\165', '\166', '\167',
60 /* 'X' 'Y' 'Z' '[' '\' ']' '^' '_' */
61 '\170', '\171', '\172', '\133', '\134', '\135', '\136', '\137',
62 /* '`' 'a' 'b' 'c' 'd' 'e' 'f' 'g' */
63 '\140', '\141', '\142', '\143', '\144', '\145', '\146', '\147',
64 /* 'h' 'i' 'j' 'k' 'l' 'm' 'n' 'o' */
65 '\150', '\151', '\152', '\153', '\154', '\155', '\156', '\157',
66 /* 'p' 'q' 'r' 's' 't' 'u' 'v' 'w' */
67 '\160', '\161', '\162', '\163', '\164', '\165', '\166', '\167',
68 /* 'x' 'y' 'z' '{' '|' '}' '~' */
69 '\170', '\171', '\172', '\173', '\174', '\175', '\176', '\177',
70 '\200', '\201', '\202', '\203', '\204', '\205', '\206', '\207',
71 '\210', '\211', '\212', '\213', '\214', '\215', '\216', '\217',
72 '\220', '\221', '\222', '\223', '\224', '\225', '\226', '\227',
73 '\230', '\231', '\232', '\233', '\234', '\235', '\236', '\237',
74 '\240', '\241', '\242', '\243', '\244', '\245', '\246', '\247',
75 '\250', '\251', '\252', '\253', '\254', '\255', '\256', '\257',
76 '\260', '\261', '\262', '\263', '\264', '\265', '\266', '\267',
77 '\270', '\271', '\272', '\273', '\274', '\275', '\276', '\277',
78 '\300', '\301', '\302', '\303', '\304', '\305', '\306', '\307',
79 '\310', '\311', '\312', '\313', '\314', '\315', '\316', '\317',
80 '\320', '\321', '\322', '\323', '\324', '\325', '\326', '\327',
81 '\330', '\331', '\332', '\333', '\334', '\335', '\336', '\337',
82 '\340', '\341', '\342', '\343', '\344', '\345', '\346', '\347',
83 '\350', '\351', '\352', '\353', '\354', '\355', '\356', '\357',
84 '\360', '\361', '\362', '\363', '\364', '\365', '\366', '\367',
85 '\370', '\371', '\372', '\373', '\374', '\375', '\376', '\377',
86};
87#else
88# error >>> "You lose. You will need a translation table for your character set." <<<
89#endif
90
91// The process-global timeout for regexp matching
92rb_hrtime_t rb_reg_match_time_limit = 0;
93
94int
95rb_memcicmp(const void *x, const void *y, long len)
96{
97 const unsigned char *p1 = x, *p2 = y;
98 int tmp;
99
100 while (len--) {
101 if ((tmp = casetable[(unsigned)*p1++] - casetable[(unsigned)*p2++]))
102 return tmp;
103 }
104 return 0;
105}
106
107#if defined(HAVE_MEMMEM) && !defined(__APPLE__)
108static inline long
109rb_memsearch_ss(const unsigned char *xs, long m, const unsigned char *ys, long n)
110{
111 const unsigned char *y;
112
113 if ((y = memmem(ys, n, xs, m)) != NULL)
114 return y - ys;
115 else
116 return -1;
117}
118#else
119static inline long
120rb_memsearch_ss(const unsigned char *xs, long m, const unsigned char *ys, long n)
121{
122 const unsigned char *x = xs, *xe = xs + m;
123 const unsigned char *y = ys, *ye = ys + n;
124#define VALUE_MAX ((VALUE)~(VALUE)0)
125 VALUE hx, hy, mask = VALUE_MAX >> ((SIZEOF_VALUE - m) * CHAR_BIT);
126
127 if (m > SIZEOF_VALUE)
128 rb_bug("!!too long pattern string!!");
129
130 if (!(y = memchr(y, *x, n - m + 1)))
131 return -1;
132
133 /* Prepare hash value */
134 for (hx = *x++, hy = *y++; x < xe; ++x, ++y) {
135 hx <<= CHAR_BIT;
136 hy <<= CHAR_BIT;
137 hx |= *x;
138 hy |= *y;
139 }
140 /* Searching */
141 while (hx != hy) {
142 if (y == ye)
143 return -1;
144 hy <<= CHAR_BIT;
145 hy |= *y;
146 hy &= mask;
147 y++;
148 }
149 return y - ys - m;
150}
151#endif
152
153static inline long
154rb_memsearch_qs(const unsigned char *xs, long m, const unsigned char *ys, long n)
155{
156 const unsigned char *x = xs, *xe = xs + m;
157 const unsigned char *y = ys;
158 VALUE i, qstable[256];
159
160 /* Preprocessing */
161 for (i = 0; i < 256; ++i)
162 qstable[i] = m + 1;
163 for (; x < xe; ++x)
164 qstable[*x] = xe - x;
165 /* Searching */
166 for (; y + m <= ys + n; y += *(qstable + y[m])) {
167 if (*xs == *y && memcmp(xs, y, m) == 0)
168 return y - ys;
169 }
170 return -1;
171}
172
173static inline unsigned int
174rb_memsearch_qs_utf8_hash(const unsigned char *x)
175{
176 register const unsigned int mix = 8353;
177 register unsigned int h = *x;
178 if (h < 0xC0) {
179 return h + 256;
180 }
181 else if (h < 0xE0) {
182 h *= mix;
183 h += x[1];
184 }
185 else if (h < 0xF0) {
186 h *= mix;
187 h += x[1];
188 h *= mix;
189 h += x[2];
190 }
191 else if (h < 0xF5) {
192 h *= mix;
193 h += x[1];
194 h *= mix;
195 h += x[2];
196 h *= mix;
197 h += x[3];
198 }
199 else {
200 return h + 256;
201 }
202 return (unsigned char)h;
203}
204
205static inline long
206rb_memsearch_qs_utf8(const unsigned char *xs, long m, const unsigned char *ys, long n)
207{
208 const unsigned char *x = xs, *xe = xs + m;
209 const unsigned char *y = ys;
210 VALUE i, qstable[512];
211
212 /* Preprocessing */
213 for (i = 0; i < 512; ++i) {
214 qstable[i] = m + 1;
215 }
216 for (; x < xe; ++x) {
217 qstable[rb_memsearch_qs_utf8_hash(x)] = xe - x;
218 }
219 /* Searching */
220 for (; y + m <= ys + n; y += qstable[rb_memsearch_qs_utf8_hash(y+m)]) {
221 if (*xs == *y && memcmp(xs, y, m) == 0)
222 return y - ys;
223 }
224 return -1;
225}
226
227static inline long
228rb_memsearch_with_char_size(const unsigned char *xs, long m, const unsigned char *ys, long n, int char_size)
229{
230 const unsigned char *x = xs, x0 = *xs, *y = ys;
231
232 for (n -= m; n >= 0; n -= char_size, y += char_size) {
233 if (x0 == *y && memcmp(x+1, y+1, m-1) == 0)
234 return y - ys;
235 }
236 return -1;
237}
238
239static inline long
240rb_memsearch_wchar(const unsigned char *xs, long m, const unsigned char *ys, long n)
241{
242 return rb_memsearch_with_char_size(xs, m, ys, n, 2);
243}
244
245static inline long
246rb_memsearch_qchar(const unsigned char *xs, long m, const unsigned char *ys, long n)
247{
248 return rb_memsearch_with_char_size(xs, m, ys, n, 4);
249}
250
251long
252rb_memsearch(const void *x0, long m, const void *y0, long n, rb_encoding *enc)
253{
254 const unsigned char *x = x0, *y = y0;
255
256 if (m > n) return -1;
257 else if (m == n) {
258 return memcmp(x0, y0, m) == 0 ? 0 : -1;
259 }
260 else if (m < 1) {
261 return 0;
262 }
263 else if (m == 1) {
264 const unsigned char *ys = memchr(y, *x, n);
265
266 if (ys)
267 return ys - y;
268 else
269 return -1;
270 }
271 else if (LIKELY(rb_enc_mbminlen(enc) == 1)) {
272 if (m <= SIZEOF_VALUE) {
273 return rb_memsearch_ss(x0, m, y0, n);
274 }
275 else if (enc == rb_utf8_encoding()){
276 return rb_memsearch_qs_utf8(x0, m, y0, n);
277 }
278 }
279 else if (LIKELY(rb_enc_mbminlen(enc) == 2)) {
280 return rb_memsearch_wchar(x0, m, y0, n);
281 }
282 else if (LIKELY(rb_enc_mbminlen(enc) == 4)) {
283 return rb_memsearch_qchar(x0, m, y0, n);
284 }
285 return rb_memsearch_qs(x0, m, y0, n);
286}
287
288#define REG_ENCODING_NONE FL_USER6
289
290#define KCODE_FIXED FL_USER4
291
292static int
293char_to_option(int c)
294{
295 int val;
296
297 switch (c) {
298 case 'i':
299 val = ONIG_OPTION_IGNORECASE;
300 break;
301 case 'x':
302 val = ONIG_OPTION_EXTEND;
303 break;
304 case 'm':
305 val = ONIG_OPTION_MULTILINE;
306 break;
307 default:
308 val = 0;
309 break;
310 }
311 return val;
312}
313
314enum { OPTBUF_SIZE = 4 };
315
316static char *
317option_to_str(char str[OPTBUF_SIZE], int options)
318{
319 char *p = str;
320 if (options & ONIG_OPTION_MULTILINE) *p++ = 'm';
321 if (options & ONIG_OPTION_IGNORECASE) *p++ = 'i';
322 if (options & ONIG_OPTION_EXTEND) *p++ = 'x';
323 *p = 0;
324 return str;
325}
326
327extern int
328rb_char_to_option_kcode(int c, int *option, int *kcode)
329{
330 *option = 0;
331
332 switch (c) {
333 case 'n':
334 *kcode = rb_ascii8bit_encindex();
335 return (*option = ARG_ENCODING_NONE);
336 case 'e':
337 *kcode = ENCINDEX_EUC_JP;
338 break;
339 case 's':
340 *kcode = ENCINDEX_Windows_31J;
341 break;
342 case 'u':
343 *kcode = rb_utf8_encindex();
344 break;
345 default:
346 *kcode = -1;
347 return (*option = char_to_option(c));
348 }
349 *option = ARG_ENCODING_FIXED;
350 return 1;
351}
352
353static void
354rb_reg_check(VALUE re)
355{
356 if (!RREGEXP_PTR(re) || !RREGEXP_SRC(re) || !RREGEXP_SRC_PTR(re)) {
357 rb_raise(rb_eTypeError, "uninitialized Regexp");
358 }
359}
360
361static void
362rb_reg_expr_str(VALUE str, const char *s, long len,
363 rb_encoding *enc, rb_encoding *resenc, int term)
364{
365 const char *p, *pend;
366 int cr = ENC_CODERANGE_UNKNOWN;
367 int need_escape = 0;
368 int c, clen;
369
370 p = s; pend = p + len;
371 rb_str_coderange_scan_restartable(p, pend, enc, &cr);
372 if (rb_enc_asciicompat(enc) && ENC_CODERANGE_CLEAN_P(cr)) {
373 while (p < pend) {
374 c = rb_enc_ascget(p, pend, &clen, enc);
375 if (c == -1) {
376 if (enc == resenc) {
377 p += mbclen(p, pend, enc);
378 }
379 else {
380 need_escape = 1;
381 break;
382 }
383 }
384 else if (c != term && rb_enc_isprint(c, enc)) {
385 p += clen;
386 }
387 else {
388 need_escape = 1;
389 break;
390 }
391 }
392 }
393 else {
394 need_escape = 1;
395 }
396
397 if (!need_escape) {
398 rb_str_buf_cat(str, s, len);
399 }
400 else {
401 int unicode_p = rb_enc_unicode_p(enc);
402 p = s;
403 while (p<pend) {
404 c = rb_enc_ascget(p, pend, &clen, enc);
405 if (c == '\\' && p+clen < pend) {
406 int n = clen + mbclen(p+clen, pend, enc);
407 rb_str_buf_cat(str, p, n);
408 p += n;
409 continue;
410 }
411 else if (c == -1) {
412 clen = rb_enc_precise_mbclen(p, pend, enc);
413 if (!MBCLEN_CHARFOUND_P(clen)) {
414 c = (unsigned char)*p;
415 clen = 1;
416 goto hex;
417 }
418 if (resenc) {
419 unsigned int c = rb_enc_mbc_to_codepoint(p, pend, enc);
420 rb_str_buf_cat_escaped_char(str, c, unicode_p);
421 }
422 else {
423 clen = MBCLEN_CHARFOUND_LEN(clen);
424 rb_str_buf_cat(str, p, clen);
425 }
426 }
427 else if (c == term) {
428 char c = '\\';
429 rb_str_buf_cat(str, &c, 1);
430 rb_str_buf_cat(str, p, clen);
431 }
432 else if (rb_enc_isprint(c, enc)) {
433 rb_str_buf_cat(str, p, clen);
434 }
435 else if (!rb_enc_isspace(c, enc)) {
436 char b[8];
437
438 hex:
439 snprintf(b, sizeof(b), "\\x%02X", c);
440 rb_str_buf_cat(str, b, 4);
441 }
442 else {
443 rb_str_buf_cat(str, p, clen);
444 }
445 p += clen;
446 }
447 }
448}
449
450static VALUE
451rb_reg_desc(VALUE re)
452{
453 rb_encoding *enc = rb_enc_get(re);
454 VALUE str = rb_str_buf_new2("/");
455 rb_encoding *resenc = rb_default_internal_encoding();
456 if (resenc == NULL) resenc = rb_default_external_encoding();
457
458 if (re && rb_enc_asciicompat(enc)) {
459 rb_enc_copy(str, re);
460 }
461 else {
462 rb_enc_associate(str, rb_usascii_encoding());
463 }
464
465 VALUE src_str = RREGEXP_SRC(re);
466 rb_reg_expr_str(str, RSTRING_PTR(src_str), RSTRING_LEN(src_str), enc, resenc, '/');
467 RB_GC_GUARD(src_str);
468
469 rb_str_buf_cat2(str, "/");
470 if (re) {
471 char opts[OPTBUF_SIZE];
472 rb_reg_check(re);
473 if (*option_to_str(opts, RREGEXP_PTR(re)->options))
474 rb_str_buf_cat2(str, opts);
475 if (RBASIC(re)->flags & REG_ENCODING_NONE)
476 rb_str_buf_cat2(str, "n");
477 }
478 return str;
479}
480
481
482/*
483 * call-seq:
484 * source -> string
485 *
486 * Returns the original string of +self+:
487 *
488 * /ab+c/ix.source # => "ab+c"
489 *
490 * Regexp escape sequences are retained:
491 *
492 * /\x20\+/.source # => "\\x20\\+"
493 *
494 * Lexer escape characters are not retained:
495 *
496 * /\//.source # => "/"
497 *
498 */
499
500static VALUE
501rb_reg_source(VALUE re)
502{
503 VALUE str;
504
505 rb_reg_check(re);
506 str = rb_str_dup(RREGEXP_SRC(re));
507 return str;
508}
509
510/*
511 * call-seq:
512 * inspect -> string
513 *
514 * Returns a nicely-formatted string representation of +self+:
515 *
516 * /ab+c/ix.inspect # => "/ab+c/ix"
517 *
518 * Related: Regexp#to_s.
519 */
520
521static VALUE
522rb_reg_inspect(VALUE re)
523{
524 if (!RREGEXP_PTR(re) || !RREGEXP_SRC(re) || !RREGEXP_SRC_PTR(re)) {
525 return rb_any_to_s(re);
526 }
527 return rb_reg_desc(re);
528}
529
530static VALUE rb_reg_str_with_term(VALUE re, int term);
531
532/*
533 * call-seq:
534 * to_s -> string
535 *
536 * Returns a string showing the options and string of +self+:
537 *
538 * r0 = /ab+c/ix
539 * s0 = r0.to_s # => "(?ix-m:ab+c)"
540 *
541 * The returned string may be used as an argument to Regexp.new,
542 * or as interpolated text for a
543 * {Regexp interpolation}[rdoc-ref:Regexp@Interpolation+Mode]:
544 *
545 * r1 = Regexp.new(s0) # => /(?ix-m:ab+c)/
546 * r2 = /#{s0}/ # => /(?ix-m:ab+c)/
547 *
548 * Note that +r1+ and +r2+ are not equal to +r0+
549 * because their original strings are different:
550 *
551 * r0 == r1 # => false
552 * r0.source # => "ab+c"
553 * r1.source # => "(?ix-m:ab+c)"
554 *
555 * Related: Regexp#inspect.
556 *
557 */
558
559static VALUE
560rb_reg_to_s(VALUE re)
561{
562 return rb_reg_str_with_term(re, '/');
563}
564
565static VALUE
566rb_reg_str_with_term(VALUE re, int term)
567{
568 int options, opt;
569 const int embeddable = ONIG_OPTION_MULTILINE|ONIG_OPTION_IGNORECASE|ONIG_OPTION_EXTEND;
570 VALUE str = rb_str_buf_new2("(?");
571 char optbuf[OPTBUF_SIZE + 1]; /* for '-' */
572 rb_encoding *enc = rb_enc_get(re);
573
574 rb_reg_check(re);
575
576 rb_enc_copy(str, re);
577 options = RREGEXP_PTR(re)->options;
578 VALUE src_str = RREGEXP_SRC(re);
579 const UChar *ptr = (UChar *)RSTRING_PTR(src_str);
580 long len = RSTRING_LEN(src_str);
581 again:
582 if (len >= 4 && ptr[0] == '(' && ptr[1] == '?') {
583 int err = 1;
584 ptr += 2;
585 if ((len -= 2) > 0) {
586 do {
587 opt = char_to_option((int )*ptr);
588 if (opt != 0) {
589 options |= opt;
590 }
591 else {
592 break;
593 }
594 ++ptr;
595 } while (--len > 0);
596 }
597 if (len > 1 && *ptr == '-') {
598 ++ptr;
599 --len;
600 do {
601 opt = char_to_option((int )*ptr);
602 if (opt != 0) {
603 options &= ~opt;
604 }
605 else {
606 break;
607 }
608 ++ptr;
609 } while (--len > 0);
610 }
611 if (*ptr == ')') {
612 --len;
613 ++ptr;
614 goto again;
615 }
616 if (*ptr == ':' && ptr[len-1] == ')') {
617 Regexp *rp;
618 VALUE verbose = ruby_verbose;
620
621 ++ptr;
622 len -= 2;
623 err = onig_new(&rp, ptr, ptr + len, options,
624 enc, OnigDefaultSyntax, NULL);
625 onig_free(rp);
626 ruby_verbose = verbose;
627 }
628 if (err) {
629 options = RREGEXP_PTR(re)->options;
630 ptr = (UChar*)RREGEXP_SRC_PTR(re);
631 len = RREGEXP_SRC_LEN(re);
632 }
633 }
634
635 if (*option_to_str(optbuf, options)) rb_str_buf_cat2(str, optbuf);
636
637 if ((options & embeddable) != embeddable) {
638 optbuf[0] = '-';
639 option_to_str(optbuf + 1, ~options);
640 rb_str_buf_cat2(str, optbuf);
641 }
642
643 rb_str_buf_cat2(str, ":");
644 if (rb_enc_asciicompat(enc)) {
645 rb_reg_expr_str(str, (char*)ptr, len, enc, NULL, term);
646 rb_str_buf_cat2(str, ")");
647 }
648 else {
649 const char *s, *e;
650 char *paren;
651 ptrdiff_t n;
652 rb_str_buf_cat2(str, ")");
653 rb_enc_associate(str, rb_usascii_encoding());
654 str = rb_str_encode(str, rb_enc_from_encoding(enc), 0, Qnil);
655
656 /* backup encoded ")" to paren */
657 s = RSTRING_PTR(str);
658 e = RSTRING_END(str);
659 s = rb_enc_left_char_head(s, e-1, e, enc);
660 n = e - s;
661 paren = ALLOCA_N(char, n);
662 memcpy(paren, s, n);
663 rb_str_resize(str, RSTRING_LEN(str) - n);
664
665 rb_reg_expr_str(str, (char*)ptr, len, enc, NULL, term);
666 rb_str_buf_cat(str, paren, n);
667 }
668 rb_enc_copy(str, re);
669
670 RB_GC_GUARD(src_str);
671
672 return str;
673}
674
675NORETURN(static void rb_reg_raise(const char *err, VALUE re));
676
677static void
678rb_reg_raise(const char *err, VALUE re)
679{
680 VALUE desc = rb_reg_desc(re);
681
682 rb_raise(rb_eRegexpError, "%s: %"PRIsVALUE, err, desc);
683}
684
685static VALUE
686rb_enc_reg_error_desc(const char *s, long len, rb_encoding *enc, int options, const char *err)
687{
688 char opts[OPTBUF_SIZE + 1]; /* for '/' */
689 VALUE desc = rb_str_buf_new2(err);
690 rb_encoding *resenc = rb_default_internal_encoding();
691 if (resenc == NULL) resenc = rb_default_external_encoding();
692
693 rb_enc_associate(desc, enc);
694 rb_str_buf_cat2(desc, ": /");
695 rb_reg_expr_str(desc, s, len, enc, resenc, '/');
696 opts[0] = '/';
697 option_to_str(opts + 1, options);
698 rb_str_buf_cat2(desc, opts);
699 return rb_exc_new3(rb_eRegexpError, desc);
700}
701
702NORETURN(static void rb_enc_reg_raise(const char *s, long len, rb_encoding *enc, int options, const char *err));
703
704static void
705rb_enc_reg_raise(const char *s, long len, rb_encoding *enc, int options, const char *err)
706{
707 rb_exc_raise(rb_enc_reg_error_desc(s, len, enc, options, err));
708}
709
710static VALUE
711rb_reg_error_desc(VALUE str, int options, const char *err)
712{
713 return rb_enc_reg_error_desc(RSTRING_PTR(str), RSTRING_LEN(str),
714 rb_enc_get(str), options, err);
715}
716
717NORETURN(static void rb_reg_raise_str(VALUE str, int options, const char *err));
718
719static void
720rb_reg_raise_str(VALUE str, int options, const char *err)
721{
722 rb_exc_raise(rb_reg_error_desc(str, options, err));
723}
724
725
726/*
727 * call-seq:
728 * casefold?-> true or false
729 *
730 * Returns +true+ if the case-insensitivity flag in +self+ is set,
731 * +false+ otherwise:
732 *
733 * /a/.casefold? # => false
734 * /a/i.casefold? # => true
735 * /(?i:a)/.casefold? # => false
736 *
737 */
738
739static VALUE
740rb_reg_casefold_p(VALUE re)
741{
742 rb_reg_check(re);
743 return RBOOL(RREGEXP_PTR(re)->options & ONIG_OPTION_IGNORECASE);
744}
745
746
747/*
748 * call-seq:
749 * options -> integer
750 *
751 * Returns an integer whose bits show the options set in +self+.
752 *
753 * The option bits are:
754 *
755 * Regexp::IGNORECASE # => 1
756 * Regexp::EXTENDED # => 2
757 * Regexp::MULTILINE # => 4
758 *
759 * Examples:
760 *
761 * /foo/.options # => 0
762 * /foo/i.options # => 1
763 * /foo/x.options # => 2
764 * /foo/m.options # => 4
765 * /foo/mix.options # => 7
766 *
767 * Note that additional bits may be set in the returned integer;
768 * these are maintained internally in +self+, are ignored if passed
769 * to Regexp.new, and may be ignored by the caller:
770 *
771 * Returns the set of bits corresponding to the options used when
772 * creating this regexp (see Regexp::new for details). Note that
773 * additional bits may be set in the returned options: these are used
774 * internally by the regular expression code. These extra bits are
775 * ignored if the options are passed to Regexp::new:
776 *
777 * r = /\xa1\xa2/e # => /\xa1\xa2/
778 * r.source # => "\\xa1\\xa2"
779 * r.options # => 16
780 * Regexp.new(r.source, r.options) # => /\xa1\xa2/
781 *
782 */
783
784static VALUE
785rb_reg_options_m(VALUE re)
786{
787 int options = rb_reg_options(re);
788 return INT2NUM(options);
789}
790
791static int
792reg_names_iter(const OnigUChar *name, const OnigUChar *name_end,
793 int back_num, int *back_refs, OnigRegex regex, void *arg)
794{
795 VALUE ary = (VALUE)arg;
796 rb_ary_push(ary, rb_enc_str_new((const char *)name, name_end-name, regex->enc));
797 return 0;
798}
799
800/*
801 * call-seq:
802 * names -> array_of_names
803 *
804 * Returns an array of names of captures
805 * (see {Named Captures}[rdoc-ref:Regexp@Named+Captures]):
806 *
807 * /(?<foo>.)(?<bar>.)(?<baz>.)/.names # => ["foo", "bar", "baz"]
808 * /(?<foo>.)(?<foo>.)/.names # => ["foo"]
809 * /(.)(.)/.names # => []
810 *
811 */
812
813static VALUE
814rb_reg_names(VALUE re)
815{
816 VALUE ary;
817 rb_reg_check(re);
818 ary = rb_ary_new_capa(onig_number_of_names(RREGEXP_PTR(re)));
819 onig_foreach_name(RREGEXP_PTR(re), reg_names_iter, (void*)ary);
820 return ary;
821}
822
823static int
824reg_named_captures_iter(const OnigUChar *name, const OnigUChar *name_end,
825 int back_num, int *back_refs, OnigRegex regex, void *arg)
826{
827 VALUE hash = (VALUE)arg;
828 VALUE ary = rb_ary_new2(back_num);
829 int i;
830
831 for (i = 0; i < back_num; i++)
832 rb_ary_store(ary, i, INT2NUM(back_refs[i]));
833
834 rb_hash_aset(hash, rb_str_new((const char*)name, name_end-name),ary);
835
836 return 0;
837}
838
839/*
840 * call-seq:
841 * named_captures -> hash
842 *
843 * Returns a hash representing named captures of +self+
844 * (see {Named Captures}[rdoc-ref:Regexp@Named+Captures]):
845 *
846 * - Each key is the name of a named capture.
847 * - Each value is an array of integer indexes for that named capture.
848 *
849 * Examples:
850 *
851 * /(?<foo>.)(?<bar>.)/.named_captures # => {"foo"=>[1], "bar"=>[2]}
852 * /(?<foo>.)(?<foo>.)/.named_captures # => {"foo"=>[1, 2]}
853 * /(.)(.)/.named_captures # => {}
854 *
855 */
856
857static VALUE
858rb_reg_named_captures(VALUE re)
859{
860 regex_t *reg = (rb_reg_check(re), RREGEXP_PTR(re));
861 VALUE hash = rb_hash_new_with_size(onig_number_of_names(reg));
862 onig_foreach_name(reg, reg_named_captures_iter, (void*)hash);
863 return hash;
864}
865
866static int
867onig_new_with_source(regex_t** reg, const UChar* pattern, const UChar* pattern_end,
868 OnigOptionType option, OnigEncoding enc, const OnigSyntaxType* syntax,
869 OnigErrorInfo* einfo, const char *sourcefile, int sourceline)
870{
871 int r;
872
873 *reg = (regex_t* )malloc(sizeof(regex_t));
874 if (IS_NULL(*reg)) return ONIGERR_MEMORY;
875
876 r = onig_reg_init(*reg, option, ONIGENC_CASE_FOLD_DEFAULT, enc, syntax);
877 if (r) goto err;
878
879 r = onig_compile_ruby(*reg, pattern, pattern_end, einfo, sourcefile, sourceline);
880 if (r) {
881 err:
882 onig_free(*reg);
883 *reg = NULL;
884 }
885 return r;
886}
887
888static Regexp*
889make_regexp(const char *s, long len, rb_encoding *enc, int flags, onig_errmsg_buffer err,
890 const char *sourcefile, int sourceline)
891{
892 Regexp *rp;
893 int r;
894 OnigErrorInfo einfo;
895
896 /* Handle escaped characters first. */
897
898 /* Build a copy of the string (in dest) with the
899 escaped characters translated, and generate the regex
900 from that.
901 */
902
903 r = onig_new_with_source(&rp, (UChar*)s, (UChar*)(s + len), flags,
904 enc, OnigDefaultSyntax, &einfo, sourcefile, sourceline);
905 if (r) {
906 onig_error_code_to_str((UChar*)err, r, &einfo);
907 return 0;
908 }
909 return rp;
910}
911
912
913/*
914 * Document-class: MatchData
915 *
916 * MatchData encapsulates the result of matching a Regexp against
917 * string. It is returned by Regexp#match and String#match, and also
918 * stored in a global variable returned by Regexp.last_match.
919 *
920 * Usage:
921 *
922 * url = 'https://docs.ruby-lang.org/en/2.5.0/MatchData.html'
923 * m = url.match(/(\d\.?)+/) # => #<MatchData "2.5.0" 1:"0">
924 * m.string # => "https://docs.ruby-lang.org/en/2.5.0/MatchData.html"
925 * m.regexp # => /(\d\.?)+/
926 * # entire matched substring:
927 * m[0] # => "2.5.0"
928 *
929 * # Working with unnamed captures
930 * m = url.match(%r{([^/]+)/([^/]+)\.html$})
931 * m.captures # => ["2.5.0", "MatchData"]
932 * m[1] # => "2.5.0"
933 * m.values_at(1, 2) # => ["2.5.0", "MatchData"]
934 *
935 * # Working with named captures
936 * m = url.match(%r{(?<version>[^/]+)/(?<module>[^/]+)\.html$})
937 * m.captures # => ["2.5.0", "MatchData"]
938 * m.named_captures # => {"version"=>"2.5.0", "module"=>"MatchData"}
939 * m[:version] # => "2.5.0"
940 * m.values_at(:version, :module)
941 * # => ["2.5.0", "MatchData"]
942 * # Numerical indexes are working, too
943 * m[1] # => "2.5.0"
944 * m.values_at(1, 2) # => ["2.5.0", "MatchData"]
945 *
946 * == Global variables equivalence
947 *
948 * Parts of last MatchData (returned by Regexp.last_match) are also
949 * aliased as global variables:
950 *
951 * * <code>$~</code> is Regexp.last_match;
952 * * <code>$&</code> is Regexp.last_match<code>[ 0 ]</code>;
953 * * <code>$1</code>, <code>$2</code>, and so on are
954 * Regexp.last_match<code>[ i ]</code> (captures by number);
955 * * <code>$`</code> is Regexp.last_match<code>.pre_match</code>;
956 * * <code>$'</code> is Regexp.last_match<code>.post_match</code>;
957 * * <code>$+</code> is Regexp.last_match<code>[ -1 ]</code> (the last capture).
958 *
959 * See also Regexp@Global+Variables.
960 */
961
963
964static VALUE
965match_alloc_n(VALUE klass, int num_regs)
966{
967 int capa = num_regs * 2;
968 size_t alloc_size = offsetof(struct RMatch, as) + sizeof(OnigPosition) * capa;
969 if (alloc_size < sizeof(struct RMatch)) {
970 alloc_size = sizeof(struct RMatch);
971 }
972
973 VALUE flags = T_MATCH;
974 if (!rb_gc_size_allocatable_p(alloc_size)) {
975 alloc_size = sizeof(struct RMatch);
976 flags |= RMATCH_ONIG;
977 capa = 0;
978 }
979
980 NEWOBJ_OF(match, struct RMatch, klass, flags, alloc_size);
981 memset(((char *)match) + sizeof(struct RBasic), 0, alloc_size - sizeof(struct RBasic));
982 match->capa = capa;
983 return (VALUE)match;
984}
985
986static VALUE
987match_alloc(VALUE klass)
988{
989 return match_alloc_n(klass, 0);
990}
991
992int
993rb_reg_region_copy(struct re_registers *to, const struct re_registers *from)
994{
995 onig_region_copy(to, (OnigRegion *)from);
996 if (to->allocated) return 0;
997 rb_gc();
998 onig_region_copy(to, (OnigRegion *)from);
999 if (to->allocated) return 0;
1000 return ONIGERR_MEMORY;
1001}
1002
1003static void
1004match_to_onig(VALUE match, int num_regs, const OnigPosition *src_beg, const OnigPosition *src_end)
1005{
1006 struct RMatch *rm = RMATCH(match);
1007 struct re_registers tmp = {0};
1008 if (onig_region_resize(&tmp, num_regs)) {
1009 rb_memerror();
1010 }
1011 memcpy(tmp.beg, src_beg, num_regs * sizeof(OnigPosition));
1012 memcpy(tmp.end, src_end, num_regs * sizeof(OnigPosition));
1013 rm->as.onig = tmp;
1014 FL_SET_RAW(match, RMATCH_ONIG);
1015}
1016
1017void
1018rb_match_ensure_onig(VALUE match)
1019{
1020 if (FL_TEST_RAW(match, RMATCH_ONIG)) return;
1021 struct RMatch *rm = RMATCH(match);
1022 int n = rm->num_regs;
1023 match_to_onig(match, n, &rm->as.embed[0], &rm->as.embed[n]);
1024}
1025
1026/* Replace `match`'s registers with a copy of (num_regs, beg, end). If the
1027 * data does not fit in the embed form, the match is evicted to onig form.
1028 * Raises on OOM. */
1029static void
1030match_set_regs(VALUE match, int num_regs, const OnigPosition *beg, const OnigPosition *end)
1031{
1032 struct RMatch *rm = RMATCH(match);
1033
1034 if (FL_TEST_RAW(match, RMATCH_ONIG)) {
1035 if (onig_region_resize(&rm->as.onig, num_regs)) {
1036 rb_memerror();
1037 }
1038 memcpy(rm->as.onig.beg, beg, num_regs * sizeof(OnigPosition));
1039 memcpy(rm->as.onig.end, end, num_regs * sizeof(OnigPosition));
1040 }
1041 else if (num_regs * 2 <= rm->capa) {
1042 memcpy(&rm->as.embed[0], beg, num_regs * sizeof(OnigPosition));
1043 memcpy(&rm->as.embed[num_regs], end, num_regs * sizeof(OnigPosition));
1044 }
1045 else {
1046 match_to_onig(match, num_regs, beg, end);
1047 }
1048 rm->num_regs = num_regs;
1049}
1050
1051typedef struct {
1052 long byte_pos;
1053 long char_pos;
1054} pair_t;
1055
1056static int
1057pair_byte_cmp(const void *pair1, const void *pair2)
1058{
1059 long diff = ((pair_t*)pair1)->byte_pos - ((pair_t*)pair2)->byte_pos;
1060#if SIZEOF_LONG > SIZEOF_INT
1061 return diff ? diff > 0 ? 1 : -1 : 0;
1062#else
1063 return (int)diff;
1064#endif
1065}
1066
1067static void
1068update_char_offset(VALUE match)
1069{
1070 struct RMatch *rm = RMATCH(match);
1071 int i, num_regs, num_pos;
1072 long c;
1073 char *s, *p, *q;
1074 rb_encoding *enc;
1075 pair_t *pairs;
1076 VALUE pairs_obj = Qnil;
1077
1079 return;
1080
1081 num_regs = RMATCH_NREGS(match);
1082
1084 SIZED_REALLOC_N(rm->char_offset, struct rmatch_offset, num_regs, rm->char_offset_num_allocated);
1086 }
1087
1088 enc = rb_enc_get(RMATCH(match)->str);
1089 if (rb_enc_mbmaxlen(enc) == 1) {
1090 for (i = 0; i < num_regs; i++) {
1091 rm->char_offset[i].beg = RMATCH_BEG(match, i);
1092 rm->char_offset[i].end = RMATCH_END(match, i);
1093 }
1094 return;
1095 }
1096
1097 pairs = RB_ALLOCV_N(pair_t, pairs_obj, num_regs * 2);
1098 num_pos = 0;
1099 for (i = 0; i < num_regs; i++) {
1100 if (RMATCH_BEG(match, i) < 0)
1101 continue;
1102 pairs[num_pos++].byte_pos = RMATCH_BEG(match, i);
1103 pairs[num_pos++].byte_pos = RMATCH_END(match, i);
1104 }
1105 qsort(pairs, num_pos, sizeof(pair_t), pair_byte_cmp);
1106
1107 s = p = RSTRING_PTR(RMATCH(match)->str);
1108 c = 0;
1109 for (i = 0; i < num_pos; i++) {
1110 q = s + pairs[i].byte_pos;
1111 c += rb_enc_strlen(p, q, enc);
1112 pairs[i].char_pos = c;
1113 p = q;
1114 }
1115
1116 for (i = 0; i < num_regs; i++) {
1117 pair_t key, *found;
1118 if (RMATCH_BEG(match, i) < 0) {
1119 rm->char_offset[i].beg = -1;
1120 rm->char_offset[i].end = -1;
1121 continue;
1122 }
1123
1124 key.byte_pos = RMATCH_BEG(match, i);
1125 found = bsearch(&key, pairs, num_pos, sizeof(pair_t), pair_byte_cmp);
1126 rm->char_offset[i].beg = found->char_pos;
1127
1128 key.byte_pos = RMATCH_END(match, i);
1129 found = bsearch(&key, pairs, num_pos, sizeof(pair_t), pair_byte_cmp);
1130 rm->char_offset[i].end = found->char_pos;
1131 }
1132
1133 RB_ALLOCV_END(pairs_obj);
1134}
1135
1136static VALUE
1137match_check(VALUE match)
1138{
1139 if (!RMATCH(match)->regexp) {
1140 rb_raise(rb_eTypeError, "uninitialized MatchData");
1141 }
1142 return match;
1143}
1144
1145/* :nodoc: */
1146static VALUE
1147match_init_copy(VALUE obj, VALUE orig)
1148{
1149 struct RMatch *rm = RMATCH(obj);
1150
1151 if (!OBJ_INIT_COPY(obj, orig)) return obj;
1152
1153 RB_OBJ_WRITE(obj, &rm->str, RMATCH(orig)->str);
1154 RB_OBJ_WRITE(obj, &rm->regexp, RMATCH(orig)->regexp);
1155
1156 match_set_regs(obj, RMATCH_NREGS(orig), RMATCH_BEG_PTR(orig), RMATCH_END_PTR(orig));
1157
1158 if (RMATCH(orig)->char_offset_num_allocated) {
1159 if (rm->char_offset_num_allocated < rm->num_regs) {
1160 SIZED_REALLOC_N(rm->char_offset, struct rmatch_offset, rm->num_regs, rm->char_offset_num_allocated);
1162 }
1164 struct rmatch_offset, rm->num_regs);
1165 RB_GC_GUARD(orig);
1166 }
1167
1168 return obj;
1169}
1170
1171
1172/*
1173 * call-seq:
1174 * regexp -> regexp
1175 *
1176 * Returns the regexp that produced the match:
1177 *
1178 * m = /a.*b/.match("abc") # => #<MatchData "ab">
1179 * m.regexp # => /a.*b/
1180 *
1181 */
1182
1183static VALUE
1184match_regexp(VALUE match)
1185{
1186 VALUE regexp;
1187 match_check(match);
1188 regexp = RMATCH(match)->regexp;
1189 if (NIL_P(regexp)) {
1190 VALUE str = rb_reg_nth_match(0, match);
1192 RB_OBJ_WRITE(match, &RMATCH(match)->regexp, regexp);
1193 }
1194 return regexp;
1195}
1196
1197/*
1198 * call-seq:
1199 * names -> array_of_names
1200 *
1201 * Returns an array of the capture names
1202 * (see {Named Captures}[rdoc-ref:Regexp@Named+Captures]):
1203 *
1204 * m = /(?<foo>.)(?<bar>.)(?<baz>.)/.match("hoge")
1205 * # => #<MatchData "hog" foo:"h" bar:"o" baz:"g">
1206 * m.names # => ["foo", "bar", "baz"]
1207 *
1208 * m = /foo/.match('foo') # => #<MatchData "foo">
1209 * m.names # => [] # No named captures.
1210 *
1211 * Equivalent to:
1212 *
1213 * m = /(?<foo>.)(?<bar>.)(?<baz>.)/.match("hoge")
1214 * m.regexp.names # => ["foo", "bar", "baz"]
1215 *
1216 */
1217
1218static VALUE
1219match_names(VALUE match)
1220{
1221 match_check(match);
1222 if (NIL_P(RMATCH(match)->regexp))
1223 return rb_ary_new_capa(0);
1224 return rb_reg_names(RMATCH(match)->regexp);
1225}
1226
1227/*
1228 * call-seq:
1229 * size -> integer
1230 *
1231 * Returns size of the match array:
1232 *
1233 * m = /(.)(.)(\d+)(\d)/.match("THX1138.")
1234 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8">
1235 * m.size # => 5
1236 *
1237 */
1238
1239static VALUE
1240match_size(VALUE match)
1241{
1242 match_check(match);
1243 return INT2FIX(RMATCH_NREGS(match));
1244}
1245
1246static int match_name_to_backref_number(VALUE match, VALUE name);
1247NORETURN(static void name_to_backref_error(VALUE name));
1248
1249static void
1250name_to_backref_error(VALUE name)
1251{
1252 rb_raise(rb_eIndexError, "undefined group name reference: % "PRIsVALUE,
1253 name);
1254}
1255
1256static void
1257backref_number_check(VALUE match, int i)
1258{
1259 if (i < 0 || RMATCH_NREGS(match) <= i)
1260 rb_raise(rb_eIndexError, "index %d out of matches", i);
1261}
1262
1263static int
1264match_backref_number(VALUE match, VALUE backref)
1265{
1266 int num;
1267
1268 match_check(match);
1269 if (SYMBOL_P(backref)) {
1270 backref = rb_sym2str(backref);
1271 }
1272 else if (!RB_TYPE_P(backref, T_STRING)) {
1273 return NUM2INT(backref);
1274 }
1275
1276 num = match_name_to_backref_number(match, backref);
1277
1278 if (num < 1) {
1279 name_to_backref_error(backref);
1280 }
1281
1282 return num;
1283}
1284
1285int
1287{
1288 return match_backref_number(match, backref);
1289}
1290
1291/*
1292 * call-seq:
1293 * offset(n) -> [start_offset, end_offset]
1294 * offset(name) -> [start_offset, end_offset]
1295 *
1296 * :include: doc/matchdata/offset.rdoc
1297 *
1298 */
1299
1300static VALUE
1301match_offset(VALUE match, VALUE n)
1302{
1303 int i = match_backref_number(match, n);
1304
1305 match_check(match);
1306 backref_number_check(match, i);
1307
1308 if (RMATCH_BEG(match, i) < 0)
1309 return rb_assoc_new(Qnil, Qnil);
1310
1311 update_char_offset(match);
1312 return rb_assoc_new(LONG2NUM(RMATCH(match)->char_offset[i].beg),
1313 LONG2NUM(RMATCH(match)->char_offset[i].end));
1314}
1315
1316/*
1317 * call-seq:
1318 * mtch.byteoffset(n) -> array
1319 *
1320 * Returns a two-element array containing the beginning and ending byte-based offsets of
1321 * the <em>n</em>th match.
1322 * <em>n</em> can be a string or symbol to reference a named capture.
1323 *
1324 * m = /(.)(.)(\d+)(\d)/.match("THX1138.")
1325 * m.byteoffset(0) #=> [1, 7]
1326 * m.byteoffset(4) #=> [6, 7]
1327 *
1328 * m = /(?<foo>.)(.)(?<bar>.)/.match("hoge")
1329 * p m.byteoffset(:foo) #=> [0, 1]
1330 * p m.byteoffset(:bar) #=> [2, 3]
1331 *
1332 */
1333
1334static VALUE
1335match_byteoffset(VALUE match, VALUE n)
1336{
1337 int i = match_backref_number(match, n);
1338
1339 match_check(match);
1340 backref_number_check(match, i);
1341
1342 if (RMATCH_BEG(match, i) < 0)
1343 return rb_assoc_new(Qnil, Qnil);
1344 return rb_assoc_new(LONG2NUM(RMATCH_BEG(match, i)), LONG2NUM(RMATCH_END(match, i)));
1345}
1346
1347
1348/*
1349 * call-seq:
1350 * bytebegin(n) -> integer
1351 * bytebegin(name) -> integer
1352 *
1353 * :include: doc/matchdata/bytebegin.rdoc
1354 *
1355 */
1356
1357static VALUE
1358match_bytebegin(VALUE match, VALUE n)
1359{
1360 int i = match_backref_number(match, n);
1361
1362 match_check(match);
1363 backref_number_check(match, i);
1364
1365 if (RMATCH_BEG(match, i) < 0)
1366 return Qnil;
1367 return LONG2NUM(RMATCH_BEG(match, i));
1368}
1369
1370
1371/*
1372 * call-seq:
1373 * byteend(n) -> integer
1374 * byteend(name) -> integer
1375 *
1376 * :include: doc/matchdata/byteend.rdoc
1377 *
1378 */
1379
1380static VALUE
1381match_byteend(VALUE match, VALUE n)
1382{
1383 int i = match_backref_number(match, n);
1384
1385 match_check(match);
1386 backref_number_check(match, i);
1387
1388 if (RMATCH_BEG(match, i) < 0)
1389 return Qnil;
1390 return LONG2NUM(RMATCH_END(match, i));
1391}
1392
1393
1394/*
1395 * call-seq:
1396 * begin(n) -> integer
1397 * begin(name) -> integer
1398 *
1399 * :include: doc/matchdata/begin.rdoc
1400 *
1401 */
1402
1403static VALUE
1404match_begin(VALUE match, VALUE n)
1405{
1406 int i = match_backref_number(match, n);
1407
1408 match_check(match);
1409 backref_number_check(match, i);
1410
1411 if (RMATCH_BEG(match, i) < 0)
1412 return Qnil;
1413
1414 update_char_offset(match);
1415 return LONG2NUM(RMATCH(match)->char_offset[i].beg);
1416}
1417
1418
1419/*
1420 * call-seq:
1421 * end(n) -> integer
1422 * end(name) -> integer
1423 *
1424 * :include: doc/matchdata/end.rdoc
1425 *
1426 */
1427
1428static VALUE
1429match_end(VALUE match, VALUE n)
1430{
1431 int i = match_backref_number(match, n);
1432
1433 match_check(match);
1434 backref_number_check(match, i);
1435
1436 if (RMATCH_BEG(match, i) < 0)
1437 return Qnil;
1438
1439 update_char_offset(match);
1440 return LONG2NUM(RMATCH(match)->char_offset[i].end);
1441}
1442
1443/*
1444 * call-seq:
1445 * match(n) -> string or nil
1446 * match(name) -> string or nil
1447 *
1448 * Returns the matched substring corresponding to the given argument.
1449 *
1450 * When non-negative argument +n+ is given,
1451 * returns the matched substring for the <tt>n</tt>th match:
1452 *
1453 * m = /(.)(.)(\d+)(\d)(\w)?/.match("THX1138.")
1454 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8" 5:nil>
1455 * m.match(0) # => "HX1138"
1456 * m.match(4) # => "8"
1457 * m.match(5) # => nil
1458 *
1459 * When string or symbol argument +name+ is given,
1460 * returns the matched substring for the given name:
1461 *
1462 * m = /(?<foo>.)(.)(?<bar>.+)/.match("hoge")
1463 * # => #<MatchData "hoge" foo:"h" bar:"ge">
1464 * m.match('foo') # => "h"
1465 * m.match(:bar) # => "ge"
1466 *
1467 */
1468
1469static VALUE
1470match_nth(VALUE match, VALUE n)
1471{
1472 int i = match_backref_number(match, n);
1473
1474 backref_number_check(match, i);
1475
1476 long start = RMATCH_BEG(match, i), end = RMATCH_END(match, i);
1477 if (start < 0)
1478 return Qnil;
1479
1480 return rb_str_subseq(RMATCH(match)->str, start, end - start);
1481}
1482
1483/*
1484 * call-seq:
1485 * match_length(n) -> integer or nil
1486 * match_length(name) -> integer or nil
1487 *
1488 * Returns the length (in characters) of the matched substring
1489 * corresponding to the given argument.
1490 *
1491 * When non-negative argument +n+ is given,
1492 * returns the length of the matched substring
1493 * for the <tt>n</tt>th match:
1494 *
1495 * m = /(.)(.)(\d+)(\d)(\w)?/.match("THX1138.")
1496 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8" 5:nil>
1497 * m.match_length(0) # => 6
1498 * m.match_length(4) # => 1
1499 * m.match_length(5) # => nil
1500 *
1501 * When string or symbol argument +name+ is given,
1502 * returns the length of the matched substring
1503 * for the named match:
1504 *
1505 * m = /(?<foo>.)(.)(?<bar>.+)/.match("hoge")
1506 * # => #<MatchData "hoge" foo:"h" bar:"ge">
1507 * m.match_length('foo') # => 1
1508 * m.match_length(:bar) # => 2
1509 *
1510 */
1511
1512static VALUE
1513match_nth_length(VALUE match, VALUE n)
1514{
1515 int i = match_backref_number(match, n);
1516
1517 match_check(match);
1518 backref_number_check(match, i);
1519
1520 if (RMATCH_BEG(match, i) < 0)
1521 return Qnil;
1522
1523 update_char_offset(match);
1524 const struct rmatch_offset *const ofs =
1525 &RMATCH(match)->char_offset[i];
1526 return LONG2NUM(ofs->end - ofs->beg);
1527}
1528
1529#define MATCH_BUSY FL_USER2
1530
1531void
1533{
1534 FL_SET(match, MATCH_BUSY);
1535}
1536
1537void
1538rb_match_unbusy(VALUE match)
1539{
1540 FL_UNSET(match, MATCH_BUSY);
1541}
1542
1543int
1544rb_match_count(VALUE match)
1545{
1546 if (NIL_P(match)) return -1;
1547 return RMATCH_NREGS(match);
1548}
1549
1550static VALUE
1551match_alloc_or_reuse(VALUE existing, int num_regs)
1552{
1553 if (!NIL_P(existing) &&
1554 !FL_TEST(existing, MATCH_BUSY) &&
1555 RMATCH(existing)->capa >= num_regs * 2) {
1556 return existing;
1557 }
1558 return match_alloc_n(rb_cMatch, num_regs);
1559}
1560
1561static void
1562match_set_string(VALUE m, VALUE string, long pos, long len)
1563{
1564 struct RMatch *match = (struct RMatch *)m;
1565
1566 RB_OBJ_WRITE(match, &match->str, string);
1567 RB_OBJ_WRITE(match, &match->regexp, Qnil);
1568 OnigPosition beg = pos, end = pos + len;
1569 match_set_regs(m, 1, &beg, &end);
1570}
1571
1572VALUE
1573rb_backref_set_string(VALUE string, long pos, long len)
1574{
1575 VALUE match = match_alloc_or_reuse(rb_backref_get(), 1);
1576 match_set_string(match, string, pos, len);
1577 rb_backref_set(match);
1578 return match;
1579}
1580
1581/*
1582 * call-seq:
1583 * fixed_encoding? -> true or false
1584 *
1585 * Returns +false+ if +self+ is applicable to
1586 * a string with any ASCII-compatible encoding;
1587 * otherwise returns +true+:
1588 *
1589 * r = /a/ # => /a/
1590 * r.fixed_encoding? # => false
1591 * r.match?("\u{6666} a") # => true
1592 * r.match?("\xa1\xa2 a".force_encoding("euc-jp")) # => true
1593 * r.match?("abc".force_encoding("euc-jp")) # => true
1594 *
1595 * r = /a/u # => /a/
1596 * r.fixed_encoding? # => true
1597 * r.match?("\u{6666} a") # => true
1598 * r.match?("\xa1\xa2".force_encoding("euc-jp")) # Raises exception.
1599 * r.match?("abc".force_encoding("euc-jp")) # => true
1600 *
1601 * r = /\u{6666}/ # => /\u{6666}/
1602 * r.fixed_encoding? # => true
1603 * r.encoding # => #<Encoding:UTF-8>
1604 * r.match?("\u{6666} a") # => true
1605 * r.match?("\xa1\xa2".force_encoding("euc-jp")) # Raises exception.
1606 * r.match?("abc".force_encoding("euc-jp")) # => false
1607 *
1608 */
1609
1610static VALUE
1611rb_reg_fixed_encoding_p(VALUE re)
1612{
1613 return RBOOL(FL_TEST(re, KCODE_FIXED));
1614}
1615
1616static VALUE
1617rb_reg_preprocess(const char *p, const char *end, rb_encoding *enc,
1618 rb_encoding **fixed_enc, onig_errmsg_buffer err, int options);
1619
1620NORETURN(static void reg_enc_error(VALUE re, VALUE str));
1621
1622static void
1623reg_enc_error(VALUE re, VALUE str)
1624{
1625 rb_raise(rb_eEncCompatError,
1626 "incompatible encoding regexp match (%s regexp with %s string)",
1627 rb_enc_inspect_name(rb_enc_get(re)),
1628 rb_enc_inspect_name(rb_enc_get(str)));
1629}
1630
1631static rb_encoding*
1632rb_reg_prepare_enc(VALUE re, VALUE str, int warn)
1633{
1634 rb_encoding *enc = 0;
1635 int cr = rb_enc_str_coderange(str);
1636
1637 if (cr == ENC_CODERANGE_BROKEN) {
1638 rb_raise(rb_eArgError,
1639 "invalid byte sequence in %s",
1640 rb_enc_name(rb_enc_get(str)));
1641 }
1642
1643 rb_reg_check(re);
1644 enc = rb_enc_get(str);
1645 if (RREGEXP_PTR(re)->enc == enc) {
1646 }
1647 else if (cr == ENC_CODERANGE_7BIT &&
1648 RREGEXP_PTR(re)->enc == rb_usascii_encoding()) {
1649 enc = RREGEXP_PTR(re)->enc;
1650 }
1651 else if (!rb_enc_asciicompat(enc)) {
1652 reg_enc_error(re, str);
1653 }
1654 else if (rb_reg_fixed_encoding_p(re)) {
1655 if ((!rb_enc_asciicompat(RREGEXP_PTR(re)->enc) ||
1656 cr != ENC_CODERANGE_7BIT)) {
1657 reg_enc_error(re, str);
1658 }
1659 enc = RREGEXP_PTR(re)->enc;
1660 }
1661 else if (warn && (RBASIC(re)->flags & REG_ENCODING_NONE) &&
1662 enc != rb_ascii8bit_encoding() &&
1663 cr != ENC_CODERANGE_7BIT) {
1664 rb_warn("historical binary regexp match /.../n against %s string",
1665 rb_enc_name(enc));
1666 }
1667 return enc;
1668}
1669
1670regex_t *
1672{
1673 int r;
1674 OnigErrorInfo einfo;
1675 VALUE unescaped;
1676 rb_encoding *fixed_enc = 0;
1677 rb_encoding *enc = rb_reg_prepare_enc(re, str, 1);
1678
1679 regex_t *reg = RREGEXP_PTR(re);
1680 if (reg->enc == enc) return reg;
1681
1682 rb_reg_check(re);
1683
1684 VALUE src_str = RREGEXP_SRC(re);
1685 const char *pattern = RSTRING_PTR(src_str);
1686
1687 onig_errmsg_buffer err = "";
1688 unescaped = rb_reg_preprocess(
1689 pattern, pattern + RSTRING_LEN(src_str), enc,
1690 &fixed_enc, err, 0);
1691
1692 if (NIL_P(unescaped)) {
1693 rb_raise(rb_eArgError, "regexp preprocess failed: %s", err);
1694 }
1695
1696 // inherit the timeout settings
1697 rb_hrtime_t timelimit = reg->timelimit;
1698
1699 const char *ptr;
1700 long len;
1701 RSTRING_GETMEM(unescaped, ptr, len);
1702
1703 /* If there are no other users of this regex, then we can directly overwrite it. */
1704 if (ruby_single_main_ractor && RREGEXP(re)->usecnt == 0) {
1705 regex_t tmp_reg;
1706 r = onig_new_without_alloc(&tmp_reg, (UChar *)ptr, (UChar *)(ptr + len),
1707 reg->options, enc,
1708 OnigDefaultSyntax, &einfo);
1709
1710 if (r) {
1711 /* There was an error so perform cleanups. */
1712 onig_free_body(&tmp_reg);
1713 }
1714 else {
1715 onig_free_body(reg);
1716 /* There are no errors so set reg to tmp_reg. */
1717 *reg = tmp_reg;
1718 }
1719 }
1720 else {
1721 r = onig_new(&reg, (UChar *)ptr, (UChar *)(ptr + len),
1722 reg->options, enc,
1723 OnigDefaultSyntax, &einfo);
1724 }
1725
1726 if (r) {
1727 onig_error_code_to_str((UChar*)err, r, &einfo);
1728 rb_reg_raise(err, re);
1729 }
1730
1731 reg->timelimit = timelimit;
1732
1733 RB_GC_GUARD(unescaped);
1734 RB_GC_GUARD(src_str);
1735 return reg;
1736}
1737
1738OnigPosition
1740 OnigPosition (*match)(regex_t *reg, VALUE str, struct re_registers *regs, void *args),
1741 void *args, struct re_registers *regs)
1742{
1743 regex_t *reg = rb_reg_prepare_re(re, str);
1744
1745 bool tmpreg = reg != RREGEXP_PTR(re);
1746 if (!tmpreg) RREGEXP(re)->usecnt++;
1747
1748 OnigPosition result = match(reg, str, regs, args);
1749
1750 if (!tmpreg) RREGEXP(re)->usecnt--;
1751 if (tmpreg) {
1752 onig_free(reg);
1753 }
1754
1755 if (result < 0) {
1756 switch (result) {
1757 case ONIG_MISMATCH:
1758 break;
1759 case ONIGERR_TIMEOUT:
1760 rb_raise(rb_eRegexpTimeoutError, "regexp match timeout");
1761 default: {
1762 onig_errmsg_buffer err = "";
1763 onig_error_code_to_str((UChar*)err, (int)result);
1764 rb_reg_raise(err, re);
1765 }
1766 }
1767 }
1768
1769 return result;
1770}
1771
1772long
1773rb_reg_adjust_startpos(VALUE re, VALUE str, long pos, int reverse)
1774{
1775 long range;
1776 rb_encoding *enc;
1777 UChar *p, *string;
1778
1779 enc = rb_reg_prepare_enc(re, str, 0);
1780
1781 if (reverse) {
1782 range = -pos;
1783 }
1784 else {
1785 range = RSTRING_LEN(str) - pos;
1786 }
1787
1788 if (pos > 0 && ONIGENC_MBC_MAXLEN(enc) != 1 && pos < RSTRING_LEN(str)) {
1789 string = (UChar*)RSTRING_PTR(str);
1790
1791 if (range > 0) {
1792 p = onigenc_get_right_adjust_char_head(enc, string, string + pos, string + RSTRING_LEN(str));
1793 }
1794 else {
1795 p = ONIGENC_LEFT_ADJUST_CHAR_HEAD(enc, string, string + pos, string + RSTRING_LEN(str));
1796 }
1797 return p - string;
1798 }
1799
1800 return pos;
1801}
1802
1804 long pos;
1805 long range;
1806};
1807
1808static OnigPosition
1809reg_onig_search(regex_t *reg, VALUE str, struct re_registers *regs, void *args_ptr)
1810{
1811 struct reg_onig_search_args *args = (struct reg_onig_search_args *)args_ptr;
1812 const char *ptr;
1813 long len;
1814 RSTRING_GETMEM(str, ptr, len);
1815
1816 return onig_search(
1817 reg,
1818 (UChar *)ptr,
1819 (UChar *)(ptr + len),
1820 (UChar *)(ptr + args->pos),
1821 (UChar *)(ptr + args->range),
1822 regs,
1823 ONIG_OPTION_NONE);
1824}
1825
1826/* returns byte offset */
1827static long
1828rb_reg_search_set_match(VALUE re, VALUE str, long pos, int reverse, int set_backref_str, VALUE *set_match)
1829{
1830 long len = RSTRING_LEN(str);
1831 if (pos > len || pos < 0) {
1833 return -1;
1834 }
1835
1836 struct reg_onig_search_args args = {
1837 .pos = pos,
1838 .range = reverse ? 0 : len,
1839 };
1840
1841 rb_reg_check(re);
1842
1843 /* Stack-backed regs sized to max(num_mem+1, ONIG_NREGION) so
1844 * onig_region_resize_clear takes its no-op branch. */
1845 int n = RREGEXP_PTR(re)->num_mem + 1;
1846 int cap = n < ONIG_NREGION ? ONIG_NREGION : n;
1847 VALUE regs_buf;
1848 OnigPosition *buf = ALLOCV_N(OnigPosition, regs_buf, (size_t)cap * 2);
1849 struct re_registers regs = {
1850 .allocated = cap,
1851 .num_regs = 0,
1852 .beg = buf,
1853 .end = buf + cap,
1854 };
1855
1856 OnigPosition result = rb_reg_onig_match(re, str, reg_onig_search, &args, &regs);
1857
1858 if (result == ONIG_MISMATCH) {
1859 ALLOCV_END(regs_buf);
1861 return ONIG_MISMATCH;
1862 }
1863
1864 VALUE existing = (set_match && !NIL_P(*set_match)) ? *set_match : rb_backref_get();
1865 VALUE match = match_alloc_or_reuse(existing, regs.num_regs);
1866
1867 match_set_regs(match, regs.num_regs, regs.beg, regs.end);
1868 ALLOCV_END(regs_buf);
1869
1870 if (set_backref_str) {
1871 RB_OBJ_WRITE(match, &RMATCH(match)->str, rb_str_new4(str));
1872 rb_obj_reveal(match, rb_cMatch);
1873 }
1874 else {
1875 /* Note that a MatchData object with RMATCH(match)->str == 0 is incomplete!
1876 * We need to hide the object from ObjectSpace.each_object.
1877 * https://bugs.ruby-lang.org/issues/19159
1878 */
1879 rb_obj_hide(match);
1880 }
1881
1882 RB_OBJ_WRITE(match, &RMATCH(match)->regexp, re);
1883 rb_backref_set(match);
1884 if (set_match) *set_match = match;
1885
1886 return result;
1887}
1888
1889long
1890rb_reg_search0(VALUE re, VALUE str, long pos, int reverse, int set_backref_str, VALUE *match)
1891{
1892 return rb_reg_search_set_match(re, str, pos, reverse, set_backref_str, match);
1893}
1894
1895long
1896rb_reg_search(VALUE re, VALUE str, long pos, int reverse)
1897{
1898 return rb_reg_search_set_match(re, str, pos, reverse, 1, NULL);
1899}
1900
1901static OnigPosition
1902reg_onig_match(regex_t *reg, VALUE str, struct re_registers *regs, void *_)
1903{
1904 const char *ptr;
1905 long len;
1906 RSTRING_GETMEM(str, ptr, len);
1907
1908 return onig_match(
1909 reg,
1910 (UChar *)ptr,
1911 (UChar *)(ptr + len),
1912 (UChar *)ptr,
1913 regs,
1914 ONIG_OPTION_NONE);
1915}
1916
1917bool
1918rb_reg_start_with_p(VALUE re, VALUE str)
1919{
1920 rb_reg_check(re);
1921
1922 int n = RREGEXP_PTR(re)->num_mem + 1;
1923 int cap = n < ONIG_NREGION ? ONIG_NREGION : n;
1924 VALUE regs_buf;
1925 OnigPosition *buf = ALLOCV_N(OnigPosition, regs_buf, (size_t)cap * 2);
1926 struct re_registers regs = {
1927 .allocated = cap,
1928 .num_regs = 0,
1929 .beg = buf,
1930 .end = buf + cap,
1931 };
1932
1933 if (rb_reg_onig_match(re, str, reg_onig_match, NULL, &regs) == ONIG_MISMATCH) {
1934 ALLOCV_END(regs_buf);
1936 return false;
1937 }
1938
1939 VALUE match = match_alloc_or_reuse(rb_backref_get(), regs.num_regs);
1940 match_set_regs(match, regs.num_regs, regs.beg, regs.end);
1941 ALLOCV_END(regs_buf);
1942
1943 RB_OBJ_WRITE(match, &RMATCH(match)->str, rb_str_new4(str));
1944 RB_OBJ_WRITE(match, &RMATCH(match)->regexp, re);
1945 rb_backref_set(match);
1946
1947 return true;
1948}
1949
1950VALUE
1952{
1953 if (NIL_P(match)) return Qnil;
1954 match_check(match);
1955 int num_regs = RMATCH_NREGS(match);
1956 if (nth >= num_regs) {
1957 return Qnil;
1958 }
1959 if (nth < 0) {
1960 nth += num_regs;
1961 if (nth <= 0) return Qnil;
1962 }
1963 return RBOOL(RMATCH_BEG(match, nth) != -1);
1964}
1965
1966VALUE
1968{
1969 VALUE str;
1970 long start, end, len;
1971
1972 if (NIL_P(match)) return Qnil;
1973 match_check(match);
1974 int num_regs = RMATCH_NREGS(match);
1975 if (nth >= num_regs) {
1976 return Qnil;
1977 }
1978 if (nth < 0) {
1979 nth += num_regs;
1980 if (nth <= 0) return Qnil;
1981 }
1982 start = RMATCH_BEG(match, nth);
1983 if (start == -1) return Qnil;
1984 end = RMATCH_END(match, nth);
1985 len = end - start;
1986 str = rb_str_subseq(RMATCH(match)->str, start, len);
1987 return str;
1988}
1989
1990VALUE
1992{
1993 return rb_reg_nth_match(0, match);
1994}
1995
1996
1997/*
1998 * call-seq:
1999 * pre_match -> string
2000 *
2001 * Returns the substring of the target string from its beginning
2002 * up to the first match in +self+ (that is, <tt>self[0]</tt>);
2003 * equivalent to regexp global variable <tt>$`</tt>:
2004 *
2005 * m = /(.)(.)(\d+)(\d)/.match("THX1138.")
2006 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8">
2007 * m[0] # => "HX1138"
2008 * m.pre_match # => "T"
2009 *
2010 * Related: MatchData#post_match.
2011 *
2012 */
2013
2014VALUE
2016{
2017 VALUE str;
2018
2019 if (NIL_P(match)) return Qnil;
2020 match_check(match);
2021 if (RMATCH_BEG(match, 0) == -1) return Qnil;
2022 str = rb_str_subseq(RMATCH(match)->str, 0, RMATCH_BEG(match, 0));
2023 return str;
2024}
2025
2026
2027/*
2028 * call-seq:
2029 * post_match -> str
2030 *
2031 * Returns the substring of the target string from
2032 * the end of the first match in +self+ (that is, <tt>self[0]</tt>)
2033 * to the end of the string;
2034 * equivalent to regexp global variable <tt>$'</tt>:
2035 *
2036 * m = /(.)(.)(\d+)(\d)/.match("THX1138: The Movie")
2037 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8">
2038 * m[0] # => "HX1138"
2039 * m.post_match # => ": The Movie"\
2040 *
2041 * Related: MatchData.pre_match.
2042 *
2043 */
2044
2045VALUE
2047{
2048 VALUE str;
2049 long pos;
2050
2051 if (NIL_P(match)) return Qnil;
2052 match_check(match);
2053 if (RMATCH_BEG(match, 0) == -1) return Qnil;
2054 str = RMATCH(match)->str;
2055 pos = RMATCH_END(match, 0);
2056 str = rb_str_subseq(str, pos, RSTRING_LEN(str) - pos);
2057 return str;
2058}
2059
2060static int
2061match_last_index(VALUE match)
2062{
2063 int i;
2064
2065 if (NIL_P(match)) return -1;
2066 match_check(match);
2067 if (RMATCH_BEG(match, 0) == -1) return -1;
2068
2069 for (i = RMATCH_NREGS(match) - 1; RMATCH_BEG(match, i) == -1 && i > 0; i--)
2070 ;
2071 return i;
2072}
2073
2074VALUE
2076{
2077 int i = match_last_index(match);
2078 if (i <= 0) return Qnil;
2079 long start = RMATCH_BEG(match, i);
2080 return rb_str_subseq(RMATCH(match)->str, start, RMATCH_END(match, i) - start);
2081}
2082
2083VALUE
2084rb_reg_last_defined(VALUE match)
2085{
2086 int i = match_last_index(match);
2087 if (i < 0) return Qnil;
2088 return RBOOL(i);
2089}
2090
2091static VALUE
2092last_match_getter(ID _x, VALUE *_y)
2093{
2095}
2096
2097static VALUE
2098prematch_getter(ID _x, VALUE *_y)
2099{
2101}
2102
2103static VALUE
2104postmatch_getter(ID _x, VALUE *_y)
2105{
2107}
2108
2109static VALUE
2110last_paren_match_getter(ID _x, VALUE *_y)
2111{
2113}
2114
2115static VALUE
2116match_array(VALUE match, int start)
2117{
2118 VALUE ary;
2119 VALUE target;
2120 int i;
2121
2122 match_check(match);
2123 int num_regs = RMATCH_NREGS(match);
2124 ary = rb_ary_new2(num_regs);
2125 target = RMATCH(match)->str;
2126
2127 for (i = start; i < num_regs; i++) {
2128 long beg = RMATCH_BEG(match, i);
2129 if (beg == -1) {
2130 rb_ary_push(ary, Qnil);
2131 }
2132 else {
2133 VALUE str = rb_str_subseq(target, beg, RMATCH_END(match, i) - beg);
2134 rb_ary_push(ary, str);
2135 }
2136 }
2137 return ary;
2138}
2139
2140
2141/*
2142 * call-seq:
2143 * to_a -> array
2144 *
2145 * Returns the array of matches:
2146 *
2147 * m = /(.)(.)(\d+)(\d)/.match("THX1138.")
2148 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8">
2149 * m.to_a # => ["HX1138", "H", "X", "113", "8"]
2150 *
2151 * Related: MatchData#captures.
2152 *
2153 */
2154
2155static VALUE
2156match_to_a(VALUE match)
2157{
2158 return match_array(match, 0);
2159}
2160
2161
2162/*
2163 * call-seq:
2164 * captures -> array
2165 *
2166 * Returns the array of captures,
2167 * which are all matches except <tt>m[0]</tt>:
2168 *
2169 * m = /(.)(.)(\d+)(\d)/.match("THX1138.")
2170 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8">
2171 * m[0] # => "HX1138"
2172 * m.captures # => ["H", "X", "113", "8"]
2173 *
2174 * Related: MatchData.to_a.
2175 *
2176 */
2177static VALUE
2178match_captures(VALUE match)
2179{
2180 return match_array(match, 1);
2181}
2182
2183static int
2184name_to_backref_number(const struct re_registers *regs, VALUE regexp, const char* name, const char* name_end)
2185{
2186 if (NIL_P(regexp)) return -1;
2187 return onig_name_to_backref_number(RREGEXP_PTR(regexp),
2188 (const unsigned char *)name, (const unsigned char *)name_end, regs);
2189}
2190
2191#define NAME_TO_NUMBER(regs, re, name, name_ptr, name_end) \
2192 (NIL_P(re) ? 0 : \
2193 !rb_enc_compatible(RREGEXP_SRC(re), (name)) ? 0 : \
2194 name_to_backref_number((regs), (re), (name_ptr), (name_end)))
2195
2196static int
2197match_name_to_backref_number(VALUE match, VALUE name)
2198{
2199 VALUE regexp = RMATCH(match)->regexp;
2200 if (NIL_P(regexp)) return -1;
2201
2202 int *nums;
2203 int n = onig_name_to_group_numbers(RREGEXP_PTR(regexp),
2204 (const unsigned char *)RSTRING_PTR(name),
2205 (const unsigned char *)RSTRING_END(name), &nums);
2206 if (n < 0) return n;
2207 if (n == 0) return ONIGERR_PARSER_BUG;
2208 if (n == 1) return nums[0];
2209 for (int i = n - 1; i >= 0; i--) {
2210 if (RMATCH_BEG(match, nums[i]) != ONIG_REGION_NOTPOS)
2211 return nums[i];
2212 }
2213 return nums[n - 1];
2214}
2215
2216static int
2217namev_to_backref_number(VALUE match, VALUE name)
2218{
2219 int num;
2220
2221 if (SYMBOL_P(name)) {
2222 name = rb_sym2str(name);
2223 }
2224 else if (!RB_TYPE_P(name, T_STRING)) {
2225 return -1;
2226 }
2227
2228 VALUE re = RMATCH(match)->regexp;
2229 if (NIL_P(re) || !rb_enc_compatible(RREGEXP_SRC(re), name)) {
2230 num = 0;
2231 }
2232 else {
2233 num = match_name_to_backref_number(match, name);
2234 }
2235 if (num < 1) {
2236 name_to_backref_error(name);
2237 }
2238 return num;
2239}
2240
2241static VALUE
2242match_ary_subseq(VALUE match, long beg, long len, VALUE result)
2243{
2244 long olen = RMATCH_NREGS(match);
2245 long j, end = olen < beg+len ? olen : beg+len;
2246 if (NIL_P(result)) result = rb_ary_new_capa(len);
2247 if (len == 0) return result;
2248
2249 for (j = beg; j < end; j++) {
2250 rb_ary_push(result, rb_reg_nth_match((int)j, match));
2251 }
2252 if (beg + len > j) {
2253 rb_ary_resize(result, RARRAY_LEN(result) + (beg + len) - j);
2254 }
2255 return result;
2256}
2257
2258static VALUE
2259match_ary_aref(VALUE match, VALUE idx, VALUE result)
2260{
2261 long beg, len;
2262 int num_regs = RMATCH_NREGS(match);
2263
2264 /* check if idx is Range */
2265 switch (rb_range_beg_len(idx, &beg, &len, (long)num_regs, !NIL_P(result))) {
2266 case Qfalse:
2267 if (NIL_P(result)) return rb_reg_nth_match(NUM2INT(idx), match);
2268 rb_ary_push(result, rb_reg_nth_match(NUM2INT(idx), match));
2269 return result;
2270 case Qnil:
2271 return Qnil;
2272 default:
2273 return match_ary_subseq(match, beg, len, result);
2274 }
2275}
2276
2277/*
2278 * call-seq:
2279 * self[offset] -> string or nil
2280 * self[offset, size] -> array
2281 * self[range] -> array
2282 * self[name] -> string or nil
2283 *
2284 * When arguments +offset+, +offset+ and +size+, or +range+ are given,
2285 * returns match and captures in the style of Array#[]:
2286 *
2287 * m = /(.)(.)(\d+)(\d)/.match("THX1138.")
2288 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8">
2289 * m[0] # => "HX1138"
2290 * m[1, 2] # => ["H", "X"]
2291 * m[1..3] # => ["H", "X", "113"]
2292 * m[-3, 2] # => ["X", "113"]
2293 *
2294 * When string or symbol argument +name+ is given,
2295 * returns the matched substring for the given name:
2296 *
2297 * m = /(?<foo>.)(.)(?<bar>.+)/.match("hoge")
2298 * # => #<MatchData "hoge" foo:"h" bar:"ge">
2299 * m['foo'] # => "h"
2300 * m[:bar] # => "ge"
2301 *
2302 * If multiple captures have the same name, returns the last matched
2303 * substring.
2304 *
2305 * m = /(?<foo>.)(?<foo>.+)/.match("hoge")
2306 * # => #<MatchData "hoge" foo:"h" foo:"oge">
2307 * m[:foo] #=> "oge"
2308 *
2309 * m = /\W(?<foo>.+)|\w(?<foo>.+)|(?<foo>.+)/.match("hoge")
2310 * #<MatchData "hoge" foo:nil foo:"oge" foo:nil>
2311 * m[:foo] #=> "oge"
2312 *
2313 */
2314
2315static VALUE
2316match_aref(int argc, VALUE *argv, VALUE match)
2317{
2318 VALUE idx, length;
2319
2320 match_check(match);
2321 rb_scan_args(argc, argv, "11", &idx, &length);
2322
2323 if (NIL_P(length)) {
2324 if (FIXNUM_P(idx)) {
2325 return rb_reg_nth_match(FIX2INT(idx), match);
2326 }
2327 else {
2328 int num = namev_to_backref_number(match, idx);
2329 if (num >= 0) {
2330 return rb_reg_nth_match(num, match);
2331 }
2332 else {
2333 return match_ary_aref(match, idx, Qnil);
2334 }
2335 }
2336 }
2337 else {
2338 long beg = NUM2LONG(idx);
2339 long len = NUM2LONG(length);
2340 long num_regs = RMATCH_NREGS(match);
2341 if (len < 0) {
2342 return Qnil;
2343 }
2344 if (beg < 0) {
2345 beg += num_regs;
2346 if (beg < 0) return Qnil;
2347 }
2348 else if (beg > num_regs) {
2349 return Qnil;
2350 }
2351 if (beg+len > num_regs) {
2352 len = num_regs - beg;
2353 }
2354 return match_ary_subseq(match, beg, len, Qnil);
2355 }
2356}
2357
2358/*
2359 * call-seq:
2360 * values_at(*indexes) -> array
2361 *
2362 * Returns match and captures at the given +indexes+,
2363 * which may include any mixture of:
2364 *
2365 * - Integers.
2366 * - Ranges.
2367 * - Names (strings and symbols).
2368 *
2369 *
2370 * Examples:
2371 *
2372 * m = /(.)(.)(\d+)(\d)/.match("THX1138: The Movie")
2373 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8">
2374 * m.values_at(0, 2, -2) # => ["HX1138", "X", "113"]
2375 * m.values_at(1..2, -1) # => ["H", "X", "8"]
2376 *
2377 * m = /(?<a>\d+) *(?<op>[+\-*\/]) *(?<b>\d+)/.match("1 + 2")
2378 * # => #<MatchData "1 + 2" a:"1" op:"+" b:"2">
2379 * m.values_at(0, 1..2, :a, :b, :op)
2380 * # => ["1 + 2", "1", "+", "1", "2", "+"]
2381 *
2382 */
2383
2384static VALUE
2385match_values_at(int argc, VALUE *argv, VALUE match)
2386{
2387 VALUE result;
2388 int i;
2389
2390 match_check(match);
2391 result = rb_ary_new2(argc);
2392
2393 for (i=0; i<argc; i++) {
2394 if (FIXNUM_P(argv[i])) {
2395 rb_ary_push(result, rb_reg_nth_match(FIX2INT(argv[i]), match));
2396 }
2397 else {
2398 int num = namev_to_backref_number(match, argv[i]);
2399 if (num >= 0) {
2400 rb_ary_push(result, rb_reg_nth_match(num, match));
2401 }
2402 else {
2403 match_ary_aref(match, argv[i], result);
2404 }
2405 }
2406 }
2407 return result;
2408}
2409
2410
2411/*
2412 * call-seq:
2413 * to_s -> string
2414 *
2415 * Returns the matched string:
2416 *
2417 * m = /(.)(.)(\d+)(\d)/.match("THX1138.")
2418 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8">
2419 * m.to_s # => "HX1138"
2420 *
2421 * m = /(?<foo>.)(.)(?<bar>.+)/.match("hoge")
2422 * # => #<MatchData "hoge" foo:"h" bar:"ge">
2423 * m.to_s # => "hoge"
2424 *
2425 * Related: MatchData.inspect.
2426 *
2427 */
2428
2429static VALUE
2430match_to_s(VALUE match)
2431{
2432 VALUE str = rb_reg_last_match(match_check(match));
2433
2434 if (NIL_P(str)) str = rb_str_new(0,0);
2435 return str;
2436}
2437
2439 VALUE hash;
2440 VALUE match;
2441 int symbolize;
2442};
2443
2444static int
2445match_named_captures_iter(const OnigUChar *name, const OnigUChar *name_end,
2446 int back_num, int *back_refs, OnigRegex regex, void *arg)
2447{
2448 struct named_captures_data *data = arg;
2449 VALUE hash = data->hash;
2450 VALUE match = data->match;
2451
2452 VALUE key = rb_enc_str_new((const char *)name, name_end-name, regex->enc);
2453
2454 if (data->symbolize) {
2455 key = rb_str_intern(key);
2456 }
2457
2458 VALUE value;
2459
2460 int i;
2461 int found = 0;
2462
2463 for (i = 0; i < back_num; i++) {
2464 value = rb_reg_nth_match(back_refs[i], match);
2465 if (RTEST(value)) {
2466 rb_hash_aset(hash, key, value);
2467 found = 1;
2468 }
2469 }
2470
2471 if (found == 0) {
2472 rb_hash_aset(hash, key, Qnil);
2473 }
2474
2475 return 0;
2476}
2477
2478/*
2479 * call-seq:
2480 * named_captures(symbolize_names: false) -> hash
2481 *
2482 * Returns a hash of the named captures;
2483 * each key is a capture name; each value is its captured string or +nil+:
2484 *
2485 * m = /(?<foo>.)(.)(?<bar>.+)/.match("hoge")
2486 * # => #<MatchData "hoge" foo:"h" bar:"ge">
2487 * m.named_captures # => {"foo"=>"h", "bar"=>"ge"}
2488 *
2489 * m = /(?<a>.)(?<b>.)/.match("01")
2490 * # => #<MatchData "01" a:"0" b:"1">
2491 * m.named_captures #=> {"a" => "0", "b" => "1"}
2492 *
2493 * m = /(?<a>.)(?<b>.)?/.match("0")
2494 * # => #<MatchData "0" a:"0" b:nil>
2495 * m.named_captures #=> {"a" => "0", "b" => nil}
2496 *
2497 * m = /(?<a>.)(?<a>.)/.match("01")
2498 * # => #<MatchData "01" a:"0" a:"1">
2499 * m.named_captures #=> {"a" => "1"}
2500 *
2501 * If keyword argument +symbolize_names+ is given
2502 * a true value, the keys in the resulting hash are Symbols:
2503 *
2504 * m = /(?<a>.)(?<a>.)/.match("01")
2505 * # => #<MatchData "01" a:"0" a:"1">
2506 * m.named_captures(symbolize_names: true) #=> {:a => "1"}
2507 *
2508 */
2509
2510static VALUE
2511match_named_captures(int argc, VALUE *argv, VALUE match)
2512{
2513 VALUE hash;
2514
2515 match_check(match);
2516 if (NIL_P(RMATCH(match)->regexp))
2517 return rb_hash_new();
2518
2519 VALUE opt;
2520 int symbolize_names = 0;
2521
2522 rb_scan_args(argc, argv, "0:", &opt);
2523
2524 if (!NIL_P(opt)) {
2525 static ID keyword_ids[1];
2526
2527 VALUE symbolize_names_val;
2528
2529 if (!keyword_ids[0]) {
2530 keyword_ids[0] = rb_intern_const("symbolize_names");
2531 }
2532 rb_get_kwargs(opt, keyword_ids, 0, 1, &symbolize_names_val);
2533 if (!UNDEF_P(symbolize_names_val) && RTEST(symbolize_names_val)) {
2534 symbolize_names = 1;
2535 }
2536 }
2537
2538 hash = rb_hash_new();
2539 struct named_captures_data data = { hash, match, symbolize_names };
2540
2541 onig_foreach_name(RREGEXP(RMATCH(match)->regexp)->ptr, match_named_captures_iter, &data);
2542
2543 return hash;
2544}
2545
2546/*
2547 * call-seq:
2548 * deconstruct_keys(array_of_names) -> hash
2549 *
2550 * Returns a hash of the named captures for the given names.
2551 *
2552 * m = /(?<hours>\d{2}):(?<minutes>\d{2}):(?<seconds>\d{2})/.match("18:37:22")
2553 * m.deconstruct_keys([:hours, :minutes]) # => {:hours => "18", :minutes => "37"}
2554 * m.deconstruct_keys(nil) # => {:hours => "18", :minutes => "37", :seconds => "22"}
2555 *
2556 * Returns an empty hash if no named captures were defined:
2557 *
2558 * m = /(\d{2}):(\d{2}):(\d{2})/.match("18:37:22")
2559 * m.deconstruct_keys(nil) # => {}
2560 *
2561 */
2562static VALUE
2563match_deconstruct_keys(VALUE match, VALUE keys)
2564{
2565 VALUE h;
2566 long i;
2567
2568 match_check(match);
2569
2570 if (NIL_P(RMATCH(match)->regexp)) {
2571 return rb_hash_new_with_size(0);
2572 }
2573
2574 if (NIL_P(keys)) {
2575 h = rb_hash_new_with_size(onig_number_of_names(RREGEXP_PTR(RMATCH(match)->regexp)));
2576
2577 struct named_captures_data data = { h, match, 1 };
2578
2579 onig_foreach_name(RREGEXP_PTR(RMATCH(match)->regexp), match_named_captures_iter, &data);
2580
2581 return h;
2582 }
2583
2584 Check_Type(keys, T_ARRAY);
2585
2586 if (onig_number_of_names(RREGEXP_PTR(RMATCH(match)->regexp)) < RARRAY_LEN(keys)) {
2587 return rb_hash_new_with_size(0);
2588 }
2589
2590 h = rb_hash_new_with_size(RARRAY_LEN(keys));
2591
2592 for (i=0; i<RARRAY_LEN(keys); i++) {
2593 VALUE key = RARRAY_AREF(keys, i);
2594 VALUE name;
2595
2596 Check_Type(key, T_SYMBOL);
2597
2598 name = rb_sym2str(key);
2599
2600 int num = match_name_to_backref_number(match, name);
2601
2602 if (num >= 0) {
2603 rb_hash_aset(h, key, rb_reg_nth_match(num, match));
2604 }
2605 else {
2606 return h;
2607 }
2608 }
2609
2610 return h;
2611}
2612
2613/*
2614 * call-seq:
2615 * string -> string
2616 *
2617 * Returns the target string if it was frozen;
2618 * otherwise, returns a frozen copy of the target string:
2619 *
2620 * m = /(.)(.)(\d+)(\d)/.match("THX1138.")
2621 * # => #<MatchData "HX1138" 1:"H" 2:"X" 3:"113" 4:"8">
2622 * m.string # => "THX1138."
2623 *
2624 */
2625
2626static VALUE
2627match_string(VALUE match)
2628{
2629 match_check(match);
2630 return RMATCH(match)->str; /* str is frozen */
2631}
2632
2634 const UChar *name;
2635 long len;
2636};
2637
2638static int
2639match_inspect_name_iter(const OnigUChar *name, const OnigUChar *name_end,
2640 int back_num, int *back_refs, OnigRegex regex, void *arg0)
2641{
2642 struct backref_name_tag *arg = (struct backref_name_tag *)arg0;
2643 int i;
2644
2645 for (i = 0; i < back_num; i++) {
2646 arg[back_refs[i]].name = name;
2647 arg[back_refs[i]].len = name_end - name;
2648 }
2649 return 0;
2650}
2651
2652/*
2653 * call-seq:
2654 * inspect -> string
2655 *
2656 * Returns a string representation of +self+:
2657 *
2658 * m = /.$/.match("foo")
2659 * # => #<MatchData "o">
2660 * m.inspect # => "#<MatchData \"o\">"
2661 *
2662 * m = /(.)(.)(.)/.match("foo")
2663 * # => #<MatchData "foo" 1:"f" 2:"o" 3:"o">
2664 * m.inspect # => "#<MatchData \"foo\" 1:\"f\" 2:\"o\
2665 *
2666 * m = /(.)(.)?(.)/.match("fo")
2667 * # => #<MatchData "fo" 1:"f" 2:nil 3:"o">
2668 * m.inspect # => "#<MatchData \"fo\" 1:\"f\" 2:nil 3:\"o\">"
2669 *
2670 * Related: MatchData#to_s.
2671 */
2672
2673static VALUE
2674match_inspect(VALUE match)
2675{
2676 VALUE cname = rb_class_path(rb_obj_class(match));
2677 VALUE str;
2678 int i;
2679 int num_regs = RMATCH_NREGS(match);
2680 struct backref_name_tag *names;
2681 VALUE names_obj = Qnil;
2682 VALUE regexp = RMATCH(match)->regexp;
2683
2684 if (regexp == 0) {
2685 return rb_sprintf("#<%"PRIsVALUE":%p>", cname, (void*)match);
2686 }
2687 else if (NIL_P(regexp)) {
2688 return rb_sprintf("#<%"PRIsVALUE": %"PRIsVALUE">",
2689 cname, rb_reg_nth_match(0, match));
2690 }
2691
2692 names = RB_ALLOCV_N(struct backref_name_tag, names_obj, num_regs);
2693 MEMZERO(names, struct backref_name_tag, num_regs);
2694
2695 onig_foreach_name(RREGEXP_PTR(regexp),
2696 match_inspect_name_iter, names);
2697
2698 str = rb_str_buf_new2("#<");
2699 rb_str_append(str, cname);
2700
2701 for (i = 0; i < num_regs; i++) {
2702 VALUE v;
2703 rb_str_buf_cat2(str, " ");
2704 if (0 < i) {
2705 if (names[i].name)
2706 rb_str_buf_cat(str, (const char *)names[i].name, names[i].len);
2707 else {
2708 rb_str_catf(str, "%d", i);
2709 }
2710 rb_str_buf_cat2(str, ":");
2711 }
2712 v = rb_reg_nth_match(i, match);
2713 if (NIL_P(v))
2714 rb_str_buf_cat2(str, "nil");
2715 else
2717 }
2718 rb_str_buf_cat2(str, ">");
2719
2720 RB_ALLOCV_END(names_obj);
2721 return str;
2722}
2723
2725
2726static int
2727read_escaped_byte(const char **pp, const char *end, onig_errmsg_buffer err)
2728{
2729 const char *p = *pp;
2730 int code;
2731 int meta_prefix = 0, ctrl_prefix = 0;
2732 size_t len;
2733
2734 if (p == end || *p++ != '\\') {
2735 errcpy(err, "too short escaped multibyte character");
2736 return -1;
2737 }
2738
2739again:
2740 if (p == end) {
2741 errcpy(err, "too short escape sequence");
2742 return -1;
2743 }
2744 switch (*p++) {
2745 case '\\': code = '\\'; break;
2746 case 'n': code = '\n'; break;
2747 case 't': code = '\t'; break;
2748 case 'r': code = '\r'; break;
2749 case 'f': code = '\f'; break;
2750 case 'v': code = '\013'; break;
2751 case 'a': code = '\007'; break;
2752 case 'e': code = '\033'; break;
2753
2754 /* \OOO */
2755 case '0': case '1': case '2': case '3':
2756 case '4': case '5': case '6': case '7':
2757 p--;
2758 code = scan_oct(p, end < p+3 ? end-p : 3, &len);
2759 p += len;
2760 break;
2761
2762 case 'x': /* \xHH */
2763 code = scan_hex(p, end < p+2 ? end-p : 2, &len);
2764 if (len < 1) {
2765 errcpy(err, "invalid hex escape");
2766 return -1;
2767 }
2768 p += len;
2769 break;
2770
2771 case 'M': /* \M-X, \M-\C-X, \M-\cX */
2772 if (meta_prefix) {
2773 errcpy(err, "duplicate meta escape");
2774 return -1;
2775 }
2776 meta_prefix = 1;
2777 if (p+1 < end && *p++ == '-' && (*p & 0x80) == 0) {
2778 if (*p == '\\') {
2779 p++;
2780 goto again;
2781 }
2782 else {
2783 code = *p++;
2784 break;
2785 }
2786 }
2787 errcpy(err, "too short meta escape");
2788 return -1;
2789
2790 case 'C': /* \C-X, \C-\M-X */
2791 if (p == end || *p++ != '-') {
2792 errcpy(err, "too short control escape");
2793 return -1;
2794 }
2795 case 'c': /* \cX, \c\M-X */
2796 if (ctrl_prefix) {
2797 errcpy(err, "duplicate control escape");
2798 return -1;
2799 }
2800 ctrl_prefix = 1;
2801 if (p < end && (*p & 0x80) == 0) {
2802 if (*p == '\\') {
2803 p++;
2804 goto again;
2805 }
2806 else {
2807 code = *p++;
2808 break;
2809 }
2810 }
2811 errcpy(err, "too short control escape");
2812 return -1;
2813
2814 default:
2815 errcpy(err, "unexpected escape sequence");
2816 return -1;
2817 }
2818 if (code < 0 || 0xff < code) {
2819 errcpy(err, "invalid escape code");
2820 return -1;
2821 }
2822
2823 if (ctrl_prefix)
2824 code &= 0x1f;
2825 if (meta_prefix)
2826 code |= 0x80;
2827
2828 *pp = p;
2829 return code;
2830}
2831
2832static int
2833unescape_escaped_nonascii(const char **pp, const char *end, rb_encoding *enc,
2834 VALUE buf, rb_encoding **encp, onig_errmsg_buffer err)
2835{
2836 const char *p = *pp;
2837 int chmaxlen = rb_enc_mbmaxlen(enc);
2838 unsigned char *area = ALLOCA_N(unsigned char, chmaxlen);
2839 char *chbuf = (char *)area;
2840 int chlen = 0;
2841 int byte;
2842 int l;
2843
2844 memset(chbuf, 0, chmaxlen);
2845
2846 byte = read_escaped_byte(&p, end, err);
2847 if (byte == -1) {
2848 return -1;
2849 }
2850
2851 area[chlen++] = byte;
2852 while (chlen < chmaxlen &&
2853 MBCLEN_NEEDMORE_P(rb_enc_precise_mbclen(chbuf, chbuf+chlen, enc))) {
2854 byte = read_escaped_byte(&p, end, err);
2855 if (byte == -1) {
2856 return -1;
2857 }
2858 area[chlen++] = byte;
2859 }
2860
2861 l = rb_enc_precise_mbclen(chbuf, chbuf+chlen, enc);
2862 if (MBCLEN_INVALID_P(l)) {
2863 errcpy(err, "invalid multibyte escape");
2864 return -1;
2865 }
2866 if (1 < chlen || (area[0] & 0x80)) {
2867 rb_str_buf_cat(buf, chbuf, chlen);
2868
2869 if (*encp == 0)
2870 *encp = enc;
2871 else if (*encp != enc) {
2872 errcpy(err, "escaped non ASCII character in UTF-8 regexp");
2873 return -1;
2874 }
2875 }
2876 else {
2877 char escbuf[5];
2878 snprintf(escbuf, sizeof(escbuf), "\\x%02X", area[0]&0xff);
2879 rb_str_buf_cat(buf, escbuf, 4);
2880 }
2881 *pp = p;
2882 return 0;
2883}
2884
2885static int
2886check_unicode_range(unsigned long code, onig_errmsg_buffer err)
2887{
2888 if ((0xd800 <= code && code <= 0xdfff) || /* Surrogates */
2889 0x10ffff < code) {
2890 errcpy(err, "invalid Unicode range");
2891 return -1;
2892 }
2893 return 0;
2894}
2895
2896static int
2897append_utf8(unsigned long uv,
2898 VALUE buf, rb_encoding **encp, onig_errmsg_buffer err)
2899{
2900 if (check_unicode_range(uv, err) != 0)
2901 return -1;
2902 if (uv < 0x80) {
2903 char escbuf[5];
2904 snprintf(escbuf, sizeof(escbuf), "\\x%02X", (int)uv);
2905 rb_str_buf_cat(buf, escbuf, 4);
2906 }
2907 else {
2908 int len;
2909 char utf8buf[6];
2910 len = rb_uv_to_utf8(utf8buf, uv);
2911 rb_str_buf_cat(buf, utf8buf, len);
2912
2913 if (*encp == 0)
2914 *encp = rb_utf8_encoding();
2915 else if (*encp != rb_utf8_encoding()) {
2916 errcpy(err, "UTF-8 character in non UTF-8 regexp");
2917 return -1;
2918 }
2919 }
2920 return 0;
2921}
2922
2923static int
2924unescape_unicode_list(const char **pp, const char *end,
2925 VALUE buf, rb_encoding **encp, onig_errmsg_buffer err)
2926{
2927 const char *p = *pp;
2928 int has_unicode = 0;
2929 unsigned long code;
2930 size_t len;
2931
2932 while (p < end && ISSPACE(*p)) p++;
2933
2934 while (1) {
2935 code = ruby_scan_hex(p, end-p, &len);
2936 if (len == 0)
2937 break;
2938 if (6 < len) { /* max 10FFFF */
2939 errcpy(err, "invalid Unicode range");
2940 return -1;
2941 }
2942 p += len;
2943 if (append_utf8(code, buf, encp, err) != 0)
2944 return -1;
2945 has_unicode = 1;
2946
2947 while (p < end && ISSPACE(*p)) p++;
2948 }
2949
2950 if (has_unicode == 0) {
2951 errcpy(err, "invalid Unicode list");
2952 return -1;
2953 }
2954
2955 *pp = p;
2956
2957 return 0;
2958}
2959
2960static int
2961unescape_unicode_bmp(const char **pp, const char *end,
2962 VALUE buf, rb_encoding **encp, onig_errmsg_buffer err)
2963{
2964 const char *p = *pp;
2965 size_t len;
2966 unsigned long code;
2967
2968 if (end < p+4) {
2969 errcpy(err, "invalid Unicode escape");
2970 return -1;
2971 }
2972 code = ruby_scan_hex(p, 4, &len);
2973 if (len != 4) {
2974 errcpy(err, "invalid Unicode escape");
2975 return -1;
2976 }
2977 if (append_utf8(code, buf, encp, err) != 0)
2978 return -1;
2979 *pp = p + 4;
2980 return 0;
2981}
2982
2983static int
2984unescape_nonascii0(const char **pp, const char *end, rb_encoding *enc,
2985 VALUE buf, rb_encoding **encp, int *has_property,
2986 onig_errmsg_buffer err, int options, int recurse)
2987{
2988 const char *p = *pp;
2989 unsigned char c;
2990 char smallbuf[2];
2991 int in_char_class = 0;
2992 int parens = 1; /* ignored unless recurse is true */
2993 int extended_mode = options & ONIG_OPTION_EXTEND;
2994
2995begin_scan:
2996 while (p < end) {
2997 int chlen = rb_enc_precise_mbclen(p, end, enc);
2998 if (!MBCLEN_CHARFOUND_P(chlen)) {
2999 invalid_multibyte:
3000 errcpy(err, "invalid multibyte character");
3001 return -1;
3002 }
3003 chlen = MBCLEN_CHARFOUND_LEN(chlen);
3004 if (1 < chlen || (*p & 0x80)) {
3005 multibyte:
3006 rb_str_buf_cat(buf, p, chlen);
3007 p += chlen;
3008 if (*encp == 0)
3009 *encp = enc;
3010 else if (*encp != enc) {
3011 errcpy(err, "non ASCII character in UTF-8 regexp");
3012 return -1;
3013 }
3014 continue;
3015 }
3016
3017 switch (c = *p++) {
3018 case '\\':
3019 if (p == end) {
3020 errcpy(err, "too short escape sequence");
3021 return -1;
3022 }
3023 chlen = rb_enc_precise_mbclen(p, end, enc);
3024 if (!MBCLEN_CHARFOUND_P(chlen)) {
3025 goto invalid_multibyte;
3026 }
3027 if ((chlen = MBCLEN_CHARFOUND_LEN(chlen)) > 1) {
3028 /* include the previous backslash */
3029 --p;
3030 ++chlen;
3031 goto multibyte;
3032 }
3033 switch (c = *p++) {
3034 case '1': case '2': case '3':
3035 case '4': case '5': case '6': case '7': /* \O, \OO, \OOO or backref */
3036 {
3037 size_t len = end-(p-1), octlen;
3038 if (ruby_scan_oct(p-1, len < 3 ? len : 3, &octlen) <= 0177) {
3039 /* backref or 7bit octal.
3040 no need to unescape anyway.
3041 re-escaping may break backref */
3042 goto escape_asis;
3043 }
3044 }
3045 /* xxx: How about more than 199 subexpressions? */
3046
3047 case '0': /* \0, \0O, \0OO */
3048
3049 case 'x': /* \xHH */
3050 case 'c': /* \cX, \c\M-X */
3051 case 'C': /* \C-X, \C-\M-X */
3052 case 'M': /* \M-X, \M-\C-X, \M-\cX */
3053 p = p-2;
3054 if (rb_is_usascii_enc(enc)) {
3055 const char *pbeg = p;
3056 int byte = read_escaped_byte(&p, end, err);
3057 if (byte == -1) return -1;
3058 c = byte;
3059 rb_str_buf_cat(buf, pbeg, p-pbeg);
3060 }
3061 else {
3062 if (unescape_escaped_nonascii(&p, end, enc, buf, encp, err) != 0)
3063 return -1;
3064 }
3065 break;
3066
3067 case 'u':
3068 if (p == end) {
3069 errcpy(err, "too short escape sequence");
3070 return -1;
3071 }
3072 if (*p == '{') {
3073 /* \u{H HH HHH HHHH HHHHH HHHHHH ...} */
3074 p++;
3075 if (unescape_unicode_list(&p, end, buf, encp, err) != 0)
3076 return -1;
3077 if (p == end || *p++ != '}') {
3078 errcpy(err, "invalid Unicode list");
3079 return -1;
3080 }
3081 break;
3082 }
3083 else {
3084 /* \uHHHH */
3085 if (unescape_unicode_bmp(&p, end, buf, encp, err) != 0)
3086 return -1;
3087 break;
3088 }
3089
3090 case 'p': /* \p{Hiragana} */
3091 case 'P':
3092 if (!*encp) {
3093 *has_property = 1;
3094 }
3095 goto escape_asis;
3096
3097 default: /* \n, \\, \d, \9, etc. */
3098escape_asis:
3099 smallbuf[0] = '\\';
3100 smallbuf[1] = c;
3101 rb_str_buf_cat(buf, smallbuf, 2);
3102 break;
3103 }
3104 break;
3105
3106 case '#':
3107 if (extended_mode && !in_char_class) {
3108 /* consume and ignore comment in extended regexp */
3109 while ((p < end) && ((c = *p++) != '\n')) {
3110 if ((c & 0x80) && !*encp && enc == rb_utf8_encoding()) {
3111 *encp = enc;
3112 }
3113 }
3114 break;
3115 }
3116 rb_str_buf_cat(buf, (char *)&c, 1);
3117 break;
3118 case '[':
3119 in_char_class++;
3120 rb_str_buf_cat(buf, (char *)&c, 1);
3121 break;
3122 case ']':
3123 if (in_char_class) {
3124 in_char_class--;
3125 }
3126 rb_str_buf_cat(buf, (char *)&c, 1);
3127 break;
3128 case ')':
3129 rb_str_buf_cat(buf, (char *)&c, 1);
3130 if (!in_char_class && recurse) {
3131 if (--parens == 0) {
3132 *pp = p;
3133 return 0;
3134 }
3135 }
3136 break;
3137 case '(':
3138 if (!in_char_class && p + 1 < end && *p == '?') {
3139 if (*(p+1) == '#') {
3140 /* (?# is comment inside any regexp, and content inside should be ignored */
3141 const char *orig_p = p;
3142 int cont = 1;
3143
3144 while (cont && (p < end)) {
3145 switch (c = *p++) {
3146 default:
3147 if (!(c & 0x80)) break;
3148 if (!*encp && enc == rb_utf8_encoding()) {
3149 *encp = enc;
3150 }
3151 --p;
3152 /* fallthrough */
3153 case '\\':
3154 chlen = rb_enc_precise_mbclen(p, end, enc);
3155 if (!MBCLEN_CHARFOUND_P(chlen)) {
3156 goto invalid_multibyte;
3157 }
3158 p += MBCLEN_CHARFOUND_LEN(chlen);
3159 break;
3160 case ')':
3161 cont = 0;
3162 break;
3163 }
3164 }
3165
3166 if (cont) {
3167 /* unterminated (?#, rewind so it is syntax error */
3168 p = orig_p;
3169 c = '(';
3170 rb_str_buf_cat(buf, (char *)&c, 1);
3171 }
3172 break;
3173 }
3174 else {
3175 /* potential change of extended option */
3176 int invert = 0;
3177 int local_extend = 0;
3178 const char *s;
3179
3180 if (recurse) {
3181 parens++;
3182 }
3183
3184 for (s = p+1; s < end; s++) {
3185 switch(*s) {
3186 case 'x':
3187 local_extend = invert ? -1 : 1;
3188 break;
3189 case '-':
3190 invert = 1;
3191 break;
3192 case ':':
3193 case ')':
3194 if (local_extend == 0 ||
3195 (local_extend == -1 && !extended_mode) ||
3196 (local_extend == 1 && extended_mode)) {
3197 /* no changes to extended flag */
3198 goto fallthrough;
3199 }
3200
3201 if (*s == ':') {
3202 /* change extended flag until ')' */
3203 int local_options = options;
3204 if (local_extend == 1) {
3205 local_options |= ONIG_OPTION_EXTEND;
3206 }
3207 else {
3208 local_options &= ~ONIG_OPTION_EXTEND;
3209 }
3210
3211 rb_str_buf_cat(buf, (char *)&c, 1);
3212 int ret = unescape_nonascii0(&p, end, enc, buf, encp,
3213 has_property, err,
3214 local_options, 1);
3215 if (ret < 0) return ret;
3216 goto begin_scan;
3217 }
3218 else {
3219 /* change extended flag for rest of expression */
3220 extended_mode = local_extend == 1;
3221 goto fallthrough;
3222 }
3223 case 'i':
3224 case 'm':
3225 case 'a':
3226 case 'd':
3227 case 'u':
3228 /* other option flags, ignored during scanning */
3229 break;
3230 default:
3231 /* other character, no extended flag change*/
3232 goto fallthrough;
3233 }
3234 }
3235 }
3236 }
3237 else if (!in_char_class && recurse) {
3238 parens++;
3239 }
3240 /* FALLTHROUGH */
3241 default:
3242fallthrough:
3243 rb_str_buf_cat(buf, (char *)&c, 1);
3244 break;
3245 }
3246 }
3247
3248 if (recurse) {
3249 *pp = p;
3250 }
3251 return 0;
3252}
3253
3254static int
3255unescape_nonascii(const char *p, const char *end, rb_encoding *enc,
3256 VALUE buf, rb_encoding **encp, int *has_property,
3257 onig_errmsg_buffer err, int options)
3258{
3259 return unescape_nonascii0(&p, end, enc, buf, encp, has_property,
3260 err, options, 0);
3261}
3262
3263static VALUE
3264rb_reg_preprocess(const char *p, const char *end, rb_encoding *enc,
3265 rb_encoding **fixed_enc, onig_errmsg_buffer err, int options)
3266{
3267 VALUE buf;
3268 int has_property = 0;
3269
3270 buf = rb_str_buf_new(0);
3271
3272 if (rb_enc_asciicompat(enc))
3273 *fixed_enc = 0;
3274 else {
3275 *fixed_enc = enc;
3276 rb_enc_associate(buf, enc);
3277 }
3278
3279 if (unescape_nonascii(p, end, enc, buf, fixed_enc, &has_property, err, options) != 0)
3280 return Qnil;
3281
3282 if (has_property && !*fixed_enc) {
3283 *fixed_enc = enc;
3284 }
3285
3286 if (*fixed_enc) {
3287 rb_enc_associate(buf, *fixed_enc);
3288 }
3289
3290 return buf;
3291}
3292
3293VALUE
3294rb_reg_check_preprocess(VALUE str)
3295{
3296 rb_encoding *fixed_enc = 0;
3297 onig_errmsg_buffer err = "";
3298 VALUE buf;
3299 char *p, *end;
3300 rb_encoding *enc;
3301
3302 StringValue(str);
3303 p = RSTRING_PTR(str);
3304 end = p + RSTRING_LEN(str);
3305 enc = rb_enc_get(str);
3306
3307 buf = rb_reg_preprocess(p, end, enc, &fixed_enc, err, 0);
3308 RB_GC_GUARD(str);
3309
3310 if (NIL_P(buf)) {
3311 return rb_reg_error_desc(str, 0, err);
3312 }
3313 return Qnil;
3314}
3315
3316static VALUE
3317rb_reg_preprocess_dregexp(VALUE ary, int options)
3318{
3319 rb_encoding *fixed_enc = 0;
3320 rb_encoding *regexp_enc = 0;
3321 onig_errmsg_buffer err = "";
3322 int i;
3323 VALUE result = 0;
3324 rb_encoding *ascii8bit = rb_ascii8bit_encoding();
3325
3326 if (RARRAY_LEN(ary) == 0) {
3327 rb_raise(rb_eArgError, "no arguments given");
3328 }
3329
3330 for (i = 0; i < RARRAY_LEN(ary); i++) {
3331 VALUE str = RARRAY_AREF(ary, i);
3332 VALUE buf;
3333 char *p, *end;
3334 rb_encoding *src_enc;
3335
3336 src_enc = rb_enc_get(str);
3337 if (options & ARG_ENCODING_NONE &&
3338 src_enc != ascii8bit) {
3339 if (rb_enc_str_coderange(str) != ENC_CODERANGE_7BIT)
3340 rb_raise(rb_eRegexpError, "/.../n has a non escaped non ASCII character in non ASCII-8BIT script");
3341 else
3342 src_enc = ascii8bit;
3343 }
3344
3345 StringValue(str);
3346 p = RSTRING_PTR(str);
3347 end = p + RSTRING_LEN(str);
3348
3349 buf = rb_reg_preprocess(p, end, src_enc, &fixed_enc, err, options);
3350
3351 if (NIL_P(buf))
3352 rb_raise(rb_eArgError, "%s", err);
3353
3354 if (fixed_enc != 0) {
3355 if (regexp_enc != 0 && regexp_enc != fixed_enc) {
3356 rb_raise(rb_eRegexpError, "encoding mismatch in dynamic regexp : %s and %s",
3357 rb_enc_name(regexp_enc), rb_enc_name(fixed_enc));
3358 }
3359 regexp_enc = fixed_enc;
3360 }
3361
3362 if (!result)
3363 result = rb_str_new3(str);
3364 else
3365 rb_str_buf_append(result, str);
3366 }
3367 if (regexp_enc) {
3368 rb_enc_associate(result, regexp_enc);
3369 }
3370
3371 return result;
3372}
3373
3374static void
3375rb_reg_initialize_check(VALUE obj)
3376{
3377 rb_check_frozen(obj);
3378 if (RREGEXP_PTR(obj)) {
3379 rb_raise(rb_eTypeError, "already initialized regexp");
3380 }
3381}
3382
3383static int
3384rb_reg_initialize(VALUE obj, const char *s, long len, rb_encoding *enc,
3385 int options, onig_errmsg_buffer err,
3386 const char *sourcefile, int sourceline)
3387{
3388 struct RRegexp *re = RREGEXP(obj);
3389 VALUE unescaped;
3390 rb_encoding *fixed_enc = 0;
3391 rb_encoding *a_enc = rb_ascii8bit_encoding();
3392
3393 rb_reg_initialize_check(obj);
3394
3395 if (rb_enc_dummy_p(enc)) {
3396 errcpy(err, "can't make regexp with dummy encoding");
3397 return -1;
3398 }
3399
3400 unescaped = rb_reg_preprocess(s, s+len, enc, &fixed_enc, err, options);
3401 if (NIL_P(unescaped))
3402 return -1;
3403
3404 if (fixed_enc) {
3405 if ((fixed_enc != enc && (options & ARG_ENCODING_FIXED)) ||
3406 (fixed_enc != a_enc && (options & ARG_ENCODING_NONE))) {
3407 errcpy(err, "incompatible character encoding");
3408 return -1;
3409 }
3410 if (fixed_enc != a_enc) {
3411 options |= ARG_ENCODING_FIXED;
3412 enc = fixed_enc;
3413 }
3414 }
3415 else if (!(options & ARG_ENCODING_FIXED)) {
3416 enc = rb_usascii_encoding();
3417 }
3418
3419 rb_enc_associate((VALUE)re, enc);
3420 if ((options & ARG_ENCODING_FIXED) || fixed_enc) {
3421 re->basic.flags |= KCODE_FIXED;
3422 }
3423 if (options & ARG_ENCODING_NONE) {
3424 re->basic.flags |= REG_ENCODING_NONE;
3425 }
3426
3427 re->ptr = make_regexp(RSTRING_PTR(unescaped), RSTRING_LEN(unescaped), enc,
3428 options & ARG_REG_OPTION_MASK, err,
3429 sourcefile, sourceline);
3430 if (!re->ptr) return -1;
3431 if (RBASIC_CLASS(obj) == rb_cRegexp) {
3432 OBJ_FREEZE(obj);
3433 }
3434 RB_GC_GUARD(unescaped);
3435 return 0;
3436}
3437
3438static void
3439reg_set_source(VALUE reg, VALUE str, rb_encoding *enc)
3440{
3441 rb_encoding *regenc = rb_enc_get(reg);
3442
3443 if (regenc != enc) {
3444 VALUE dup = rb_str_dup(str);
3445 str = rb_enc_associate(dup, enc = regenc);
3446 }
3447 str = rb_fstring(str);
3448 RB_OBJ_WRITE(reg, &RREGEXP(reg)->src, str);
3449}
3450
3451static int
3452rb_reg_initialize_str(VALUE obj, VALUE str, int options, onig_errmsg_buffer err,
3453 const char *sourcefile, int sourceline)
3454{
3455 int ret;
3456 rb_encoding *str_enc = rb_enc_get(str), *enc = str_enc;
3457 if (options & ARG_ENCODING_NONE) {
3458 rb_encoding *ascii8bit = rb_ascii8bit_encoding();
3459 if (enc != ascii8bit) {
3460 if (rb_enc_str_coderange(str) != ENC_CODERANGE_7BIT) {
3461 errcpy(err, "/.../n has a non escaped non ASCII character in non ASCII-8BIT script");
3462 return -1;
3463 }
3464 enc = ascii8bit;
3465 }
3466 }
3467 ret = rb_reg_initialize(obj, RSTRING_PTR(str), RSTRING_LEN(str), enc,
3468 options, err, sourcefile, sourceline);
3469 if (ret == 0) reg_set_source(obj, str, str_enc);
3470 return ret;
3471}
3472
3473VALUE
3474rb_reg_s_alloc(VALUE klass)
3475{
3476 NEWOBJ_OF(re, struct RRegexp, klass, T_REGEXP, sizeof(struct RRegexp));
3477
3478 re->ptr = 0;
3479 RB_OBJ_WRITE(re, &re->src, 0);
3480 re->usecnt = 0;
3481
3482 return (VALUE)re;
3483}
3484
3485VALUE
3486rb_reg_alloc(void)
3487{
3488 return rb_reg_s_alloc(rb_cRegexp);
3489}
3490
3491VALUE
3492rb_reg_new_str(VALUE s, int options)
3493{
3494 return rb_reg_init_str(rb_reg_alloc(), s, options);
3495}
3496
3497VALUE
3498rb_reg_init_str(VALUE re, VALUE s, int options)
3499{
3500 onig_errmsg_buffer err = "";
3501
3502 if (rb_reg_initialize_str(re, s, options, err, NULL, 0) != 0) {
3503 rb_reg_raise_str(s, options, err);
3504 }
3505
3506 return re;
3507}
3508
3509static VALUE
3510rb_reg_init_str_enc(VALUE re, VALUE s, rb_encoding *enc, int options)
3511{
3512 onig_errmsg_buffer err = "";
3513
3514 if (rb_reg_initialize(re, RSTRING_PTR(s), RSTRING_LEN(s),
3515 enc, options, err, NULL, 0) != 0) {
3516 rb_reg_raise_str(s, options, err);
3517 }
3518 reg_set_source(re, s, enc);
3519
3520 return re;
3521}
3522
3523VALUE
3524rb_reg_new_ary(VALUE ary, int opt)
3525{
3526 return rb_reg_new_str(rb_reg_preprocess_dregexp(ary, opt), opt);
3527}
3528
3529VALUE
3530rb_enc_reg_new(const char *s, long len, rb_encoding *enc, int options)
3531{
3532 VALUE re = rb_reg_alloc();
3533 onig_errmsg_buffer err = "";
3534
3535 if (rb_reg_initialize(re, s, len, enc, options, err, NULL, 0) != 0) {
3536 rb_enc_reg_raise(s, len, enc, options, err);
3537 }
3538 RB_OBJ_WRITE(re, &RREGEXP(re)->src, rb_fstring(rb_enc_str_new(s, len, enc)));
3539
3540 return re;
3541}
3542
3543VALUE
3544rb_reg_new(const char *s, long len, int options)
3545{
3546 return rb_enc_reg_new(s, len, rb_ascii8bit_encoding(), options);
3547}
3548
3549VALUE
3550rb_reg_compile(VALUE str, int options, const char *sourcefile, int sourceline)
3551{
3552 VALUE re = rb_reg_alloc();
3553 onig_errmsg_buffer err = "";
3554
3555 if (!str) str = rb_str_new(0,0);
3556 if (rb_reg_initialize_str(re, str, options, err, sourcefile, sourceline) != 0) {
3557 rb_set_errinfo(rb_reg_error_desc(str, options, err));
3558 return Qnil;
3559 }
3560 return re;
3561}
3562
3563static VALUE reg_cache;
3564
3565VALUE
3567{
3568 if (rb_ractor_main_p()) {
3569 if (reg_cache && RREGEXP_SRC_LEN(reg_cache) == RSTRING_LEN(str)
3570 && ENCODING_GET(reg_cache) == ENCODING_GET(str)
3571 && memcmp(RREGEXP_SRC_PTR(reg_cache), RSTRING_PTR(str), RSTRING_LEN(str)) == 0)
3572 return reg_cache;
3573
3574 return reg_cache = rb_reg_new_str(str, 0);
3575 }
3576 else {
3577 return rb_reg_new_str(str, 0);
3578 }
3579}
3580
3581static st_index_t reg_hash(VALUE re);
3582/*
3583 * call-seq:
3584 * hash -> integer
3585 *
3586 * Returns the integer hash value for +self+.
3587 *
3588 * Related: Object#hash.
3589 *
3590 */
3591
3592VALUE
3593rb_reg_hash(VALUE re)
3594{
3595 st_index_t hashval = reg_hash(re);
3596 return ST2FIX(hashval);
3597}
3598
3599static st_index_t
3600reg_hash(VALUE re)
3601{
3602 st_index_t hashval;
3603
3604 rb_reg_check(re);
3605 hashval = RREGEXP_PTR(re)->options;
3606 hashval = rb_hash_uint(hashval, rb_memhash(RREGEXP_SRC_PTR(re), RREGEXP_SRC_LEN(re)));
3607 return rb_hash_end(hashval);
3608}
3609
3610
3611/*
3612 * call-seq:
3613 * self == other -> true or false
3614 *
3615 * Returns whether +other+ is another \Regexp whose pattern,
3616 * flags, and encoding are the same as +self+:
3617 *
3618 * /foo/ == Regexp.new('foo') # => true
3619 * /foo/ == /foo/i # => false
3620 * /foo/ == Regexp.new('food') # => false
3621 * /foo/ == Regexp.new("abc".force_encoding("euc-jp")) # => false
3622 *
3623 */
3624
3625VALUE
3626rb_reg_equal(VALUE re1, VALUE re2)
3627{
3628 if (re1 == re2) return Qtrue;
3629 if (!RB_TYPE_P(re2, T_REGEXP)) return Qfalse;
3630 rb_reg_check(re1); rb_reg_check(re2);
3631 if (FL_TEST(re1, KCODE_FIXED) != FL_TEST(re2, KCODE_FIXED)) return Qfalse;
3632 if (RREGEXP_PTR(re1)->options != RREGEXP_PTR(re2)->options) return Qfalse;
3633 if (RREGEXP_SRC_LEN(re1) != RREGEXP_SRC_LEN(re2)) return Qfalse;
3634 if (ENCODING_GET(re1) != ENCODING_GET(re2)) return Qfalse;
3635 return RBOOL(memcmp(RREGEXP_SRC_PTR(re1), RREGEXP_SRC_PTR(re2), RREGEXP_SRC_LEN(re1)) == 0);
3636}
3637
3638/*
3639 * call-seq:
3640 * hash -> integer
3641 *
3642 * Returns the integer hash value for +self+,
3643 * based on the target string, regexp, match, and captures.
3644 *
3645 * See also Object#hash.
3646 *
3647 */
3648
3649static VALUE
3650match_hash(VALUE match)
3651{
3652 st_index_t hashval;
3653
3654 match_check(match);
3655 hashval = rb_hash_start(rb_str_hash(RMATCH(match)->str));
3656 hashval = rb_hash_uint(hashval, reg_hash(match_regexp(match)));
3657 int num_regs = RMATCH_NREGS(match);
3658 hashval = rb_hash_uint(hashval, num_regs);
3659 hashval = rb_hash_uint(hashval, rb_memhash(RMATCH_BEG_PTR(match), num_regs * sizeof(OnigPosition)));
3660 hashval = rb_hash_uint(hashval, rb_memhash(RMATCH_END_PTR(match), num_regs * sizeof(OnigPosition)));
3661 hashval = rb_hash_end(hashval);
3662 return ST2FIX(hashval);
3663}
3664
3665/*
3666 * call-seq:
3667 * self == other -> true or false
3668 *
3669 * Returns whether +other+ is another \MatchData object
3670 * whose target string, regexp, match, and captures
3671 * are the same as +self+.
3672 */
3673
3674static VALUE
3675match_equal(VALUE match1, VALUE match2)
3676{
3677 if (match1 == match2) return Qtrue;
3678 if (!RB_TYPE_P(match2, T_MATCH)) return Qfalse;
3679 if (!RMATCH(match1)->regexp || !RMATCH(match2)->regexp) return Qfalse;
3680 if (!rb_str_equal(RMATCH(match1)->str, RMATCH(match2)->str)) return Qfalse;
3681 if (!rb_reg_equal(match_regexp(match1), match_regexp(match2))) return Qfalse;
3682 int num_regs = RMATCH_NREGS(match1);
3683 if (num_regs != RMATCH_NREGS(match2)) return Qfalse;
3684 if (memcmp(RMATCH_BEG_PTR(match1), RMATCH_BEG_PTR(match2), num_regs * sizeof(OnigPosition))) return Qfalse;
3685 if (memcmp(RMATCH_END_PTR(match1), RMATCH_END_PTR(match2), num_regs * sizeof(OnigPosition))) return Qfalse;
3686 return Qtrue;
3687}
3688
3689/*
3690 * call-seq:
3691 * integer_at(index, base = 10) -> integer or nil
3692 * integer_at(name, base = 10) -> integer or nil
3693 *
3694 * Converts the matched substring to integer and return the result.
3695 * +$~.integer_at(N)+ is equivalent to +$N&.to_i+.
3696 *
3697 * m = /(\d+{4})(\d+{2})(\d+{2})/.match("20260308")
3698 * # => #<MatchData "20260308" 1:"2026" 2:"03" 3:"08">
3699 * m.integer_at(0) # => 20260308
3700 * m.integer_at(1) # => 2026
3701 * m.integer_at(2) # => 3
3702 * m.integer_at(3) # => 8
3703 *
3704 * m = /(?<y>\d+{4})(?<m>\d+{2})(?<d>\d+{2})/.match("20260308")
3705 * m.integer_at("y") # => 2026
3706 * m.integer_at("m") # => 3
3707 * m.integer_at("d") # => 8
3708 *
3709 * If the substring does not match, returns +nil+.
3710 *
3711 * re = /(\d+)?/
3712 * re.match("123").integer_at(1) #=> 123
3713 * re.match("abc").integer_at(1) #=> nil
3714 *
3715 * The string is converted in decimal by default.
3716 *
3717 * /\d+/.match("011").integer_at(0) #=> 10
3718 * /\d+/.match("011").integer_at(0, 12) #=> 13
3719 * /\d+/.match("011").integer_at(0, 0) #=> 9
3720 *
3721 * See also MatchData#[], String#to_i.
3722 */
3723static VALUE
3724match_integer_at(int argc, VALUE *argv, VALUE match)
3725{
3726 match_check(match);
3727
3728 int base = 10;
3729 VALUE idx;
3730 int nth;
3731
3732 argc = rb_check_arity(argc, 1, 2);
3733 if (FIXNUM_P(idx = argv[0])) {
3734 nth = NUM2INT(idx);
3735 }
3736 else if ((nth = namev_to_backref_number(match, idx)) < 0) {
3737 name_to_backref_error(idx);
3738 }
3739
3740 if (argc > 1 && (base = NUM2INT(argv[1])) < 0) {
3741 rb_raise(rb_eArgError, "invalid radix %d", base);
3742 }
3743
3744 if (nth >= RMATCH_NREGS(match)) return Qnil;
3745 if (nth < 0 && (nth += RMATCH_NREGS(match)) <= 0) return Qnil;
3746
3747 long start = RMATCH_BEG(match, nth), end = RMATCH_END(match, nth);
3748 if (start < 0) return Qnil;
3749 RUBY_ASSERT(start <= end, "%ld > %ld", start, end);
3750
3751 VALUE str = RMATCH(match)->str;
3752 RUBY_ASSERT(end <= RSTRING_LEN(str), "%ld > %ld", end, RSTRING_LEN(str));
3753
3754 char *endp;
3755 return rb_int_parse_cstr(RSTRING_PTR(str) + start, end - start, &endp, NULL,
3756 base, RB_INT_PARSE_DEFAULT);
3757}
3758
3759static VALUE
3760reg_operand(VALUE s, int check)
3761{
3762 if (SYMBOL_P(s)) {
3763 return rb_sym2str(s);
3764 }
3765 else if (RB_TYPE_P(s, T_STRING)) {
3766 return s;
3767 }
3768 else {
3769 return check ? rb_str_to_str(s) : rb_check_string_type(s);
3770 }
3771}
3772
3773static long
3774reg_match_pos(VALUE re, VALUE *strp, long pos, VALUE* set_match)
3775{
3776 VALUE str = *strp;
3777
3778 if (NIL_P(str)) {
3779 rb_backref_set(Qnil);
3780 return -1;
3781 }
3782 *strp = str = reg_operand(str, TRUE);
3783 if (pos != 0) {
3784 if (pos < 0) {
3785 VALUE l = rb_str_length(str);
3786 pos += NUM2INT(l);
3787 if (pos < 0) {
3788 return pos;
3789 }
3790 }
3791 pos = rb_str_offset(str, pos);
3792 }
3793 return rb_reg_search_set_match(re, str, pos, 0, 1, set_match);
3794}
3795
3796/*
3797 * call-seq:
3798 * self =~ other -> integer or nil
3799 *
3800 * Returns the integer index (in characters) of the first match
3801 * for +self+ and +other+, or +nil+ if none;
3802 * updates {Regexp-related global variables}[rdoc-ref:Regexp@Global+Variables].
3803 *
3804 * /at/ =~ 'input data' # => 7
3805 * $~ # => #<MatchData "at">
3806 * /ax/ =~ 'input data' # => nil
3807 * $~ # => nil
3808 *
3809 * Assigns named captures to local variables of the same names
3810 * if and only if +self+:
3811 *
3812 * - Is a regexp literal;
3813 * see {Regexp Literals}[rdoc-ref:syntax/literals.rdoc@Regexp+Literals].
3814 * - Does not contain interpolations;
3815 * see {Regexp interpolation}[rdoc-ref:Regexp@Interpolation+Mode].
3816 * - Is at the left of the expression.
3817 *
3818 * Example:
3819 *
3820 * /(?<lhs>\w+)\s*=\s*(?<rhs>\w+)/ =~ ' x = y '
3821 * p lhs # => "x"
3822 * p rhs # => "y"
3823 *
3824 * Assigns +nil+ if not matched:
3825 *
3826 * /(?<lhs>\w+)\s*=\s*(?<rhs>\w+)/ =~ ' x = '
3827 * p lhs # => nil
3828 * p rhs # => nil
3829 *
3830 * Does not make local variable assignments if +self+ is not a regexp literal:
3831 *
3832 * r = /(?<foo>\w+)\s*=\s*(?<foo>\w+)/
3833 * r =~ ' x = y '
3834 * p foo # Undefined local variable
3835 * p bar # Undefined local variable
3836 *
3837 * The assignment does not occur if the regexp is not at the left:
3838 *
3839 * ' x = y ' =~ /(?<foo>\w+)\s*=\s*(?<foo>\w+)/
3840 * p foo, foo # Undefined local variables
3841 *
3842 * A regexp interpolation, <tt>#{}</tt>, also disables
3843 * the assignment:
3844 *
3845 * r = /(?<foo>\w+)/
3846 * /(?<foo>\w+)\s*=\s*#{r}/ =~ 'x = y'
3847 * p foo # Undefined local variable
3848 *
3849 */
3850
3851VALUE
3852rb_reg_match(VALUE re, VALUE str)
3853{
3854 long pos = reg_match_pos(re, &str, 0, NULL);
3855 if (pos < 0) return Qnil;
3856 pos = rb_str_sublen(str, pos);
3857 return LONG2FIX(pos);
3858}
3859
3860/*
3861 * call-seq:
3862 * self === other -> true or false
3863 *
3864 * Returns whether +self+ finds a match in +other+:
3865 *
3866 * /^[a-z]*$/ === 'HELLO' # => false
3867 * /^[A-Z]*$/ === 'HELLO' # => true
3868 *
3869 * This method is called in case statements:
3870 *
3871 * s = 'HELLO'
3872 * case s
3873 * when /\A[a-z]*\z/; print "Lower case\n"
3874 * when /\A[A-Z]*\z/; print "Upper case\n"
3875 * else print "Mixed case\n"
3876 * end # => "Upper case"
3877 *
3878 */
3879
3880static VALUE
3881rb_reg_eqq(VALUE re, VALUE str)
3882{
3883 long start;
3884
3885 str = reg_operand(str, FALSE);
3886 if (NIL_P(str)) {
3887 rb_backref_set(Qnil);
3888 return Qfalse;
3889 }
3890 start = rb_reg_search(re, str, 0, 0);
3891 return RBOOL(start >= 0);
3892}
3893
3894
3895/*
3896 * call-seq:
3897 * ~ rxp -> integer or nil
3898 *
3899 * Equivalent to <tt><i>rxp</i> =~ $_</tt>:
3900 *
3901 * $_ = "input data"
3902 * ~ /at/ # => 7
3903 *
3904 */
3905
3906VALUE
3907rb_reg_match2(VALUE re)
3908{
3909 long start;
3910 VALUE line = rb_lastline_get();
3911
3912 if (!RB_TYPE_P(line, T_STRING)) {
3913 rb_backref_set(Qnil);
3914 return Qnil;
3915 }
3916
3917 start = rb_reg_search(re, line, 0, 0);
3918 if (start < 0) {
3919 return Qnil;
3920 }
3921 start = rb_str_sublen(line, start);
3922 return LONG2FIX(start);
3923}
3924
3925
3926/*
3927 * call-seq:
3928 * match(string, offset = 0) -> matchdata or nil
3929 * match(string, offset = 0) {|matchdata| ... } -> object
3930 *
3931 * With no block given, returns the MatchData object
3932 * that describes the match, if any, or +nil+ if none;
3933 * the search begins at the given character +offset+ in +string+:
3934 *
3935 * /abra/.match('abracadabra') # => #<MatchData "abra">
3936 * /abra/.match('abracadabra', 4) # => #<MatchData "abra">
3937 * /abra/.match('abracadabra', 8) # => nil
3938 * /abra/.match('abracadabra', 800) # => nil
3939 *
3940 * string = "\u{5d0 5d1 5e8 5d0}cadabra"
3941 * /abra/.match(string, 7) #=> #<MatchData "abra">
3942 * /abra/.match(string, 8) #=> nil
3943 * /abra/.match(string.b, 8) #=> #<MatchData "abra">
3944 *
3945 * With a block given, calls the block if and only if a match is found;
3946 * returns the block's value:
3947 *
3948 * /abra/.match('abracadabra') {|matchdata| p matchdata }
3949 * # => #<MatchData "abra">
3950 * /abra/.match('abracadabra', 4) {|matchdata| p matchdata }
3951 * # => #<MatchData "abra">
3952 * /abra/.match('abracadabra', 8) {|matchdata| p matchdata }
3953 * # => nil
3954 * /abra/.match('abracadabra', 8) {|marchdata| fail 'Cannot happen' }
3955 * # => nil
3956 *
3957 * Output (from the first two blocks above):
3958 *
3959 * #<MatchData "abra">
3960 * #<MatchData "abra">
3961 *
3962 * /(.)(.)(.)/.match("abc")[2] # => "b"
3963 * /(.)(.)/.match("abc", 1)[2] # => "c"
3964 *
3965 */
3966
3967static VALUE
3968rb_reg_match_m(int argc, VALUE *argv, VALUE re)
3969{
3970 VALUE result = Qnil, str, initpos;
3971 long pos;
3972
3973 if (rb_scan_args(argc, argv, "11", &str, &initpos) == 2) {
3974 pos = NUM2LONG(initpos);
3975 }
3976 else {
3977 pos = 0;
3978 }
3979
3980 pos = reg_match_pos(re, &str, pos, &result);
3981 if (pos < 0) {
3982 rb_backref_set(Qnil);
3983 return Qnil;
3984 }
3985 rb_match_busy(result);
3986 if (!NIL_P(result) && rb_block_given_p()) {
3987 return rb_yield(result);
3988 }
3989 return result;
3990}
3991
3992/*
3993 * call-seq:
3994 * match?(string) -> true or false
3995 * match?(string, offset = 0) -> true or false
3996 *
3997 * Returns <code>true</code> or <code>false</code> to indicate whether the
3998 * regexp is matched or not without updating $~ and other related variables.
3999 * If the second parameter is present, it specifies the position in the string
4000 * to begin the search.
4001 *
4002 * /R.../.match?("Ruby") # => true
4003 * /R.../.match?("Ruby", 1) # => false
4004 * /P.../.match?("Ruby") # => false
4005 * $& # => nil
4006 */
4007
4008static VALUE
4009rb_reg_match_m_p(int argc, VALUE *argv, VALUE re)
4010{
4011 long pos = rb_check_arity(argc, 1, 2) > 1 ? NUM2LONG(argv[1]) : 0;
4012 return rb_reg_match_p(re, argv[0], pos);
4013}
4014
4015VALUE
4016rb_reg_match_p(VALUE re, VALUE str, long pos)
4017{
4018 if (NIL_P(str)) return Qfalse;
4019 str = SYMBOL_P(str) ? rb_sym2str(str) : StringValue(str);
4020 if (pos) {
4021 if (pos < 0) {
4022 pos += NUM2LONG(rb_str_length(str));
4023 if (pos < 0) return Qfalse;
4024 }
4025 if (pos > 0) {
4026 long len = 1;
4027 const char *beg = rb_str_subpos(str, pos, &len);
4028 if (!beg) return Qfalse;
4029 pos = beg - RSTRING_PTR(str);
4030 }
4031 }
4032
4033 struct reg_onig_search_args args = {
4034 .pos = pos,
4035 .range = RSTRING_LEN(str),
4036 };
4037
4038 return rb_reg_onig_match(re, str, reg_onig_search, &args, NULL) == ONIG_MISMATCH ? Qfalse : Qtrue;
4039}
4040
4041/*
4042 * Document-method: compile
4043 *
4044 * Alias for Regexp.new
4045 */
4046
4047static int
4048str_to_option(VALUE str)
4049{
4050 int flag = 0;
4051 const char *ptr;
4052 long len;
4053 str = rb_check_string_type(str);
4054 if (NIL_P(str)) return -1;
4055 RSTRING_GETMEM(str, ptr, len);
4056 for (long i = 0; i < len; ++i) {
4057 int f = char_to_option(ptr[i]);
4058 if (!f) {
4059 rb_raise(rb_eArgError, "unknown regexp option: %"PRIsVALUE, str);
4060 }
4061 flag |= f;
4062 }
4063 return flag;
4064}
4065
4066static void
4067set_timeout(rb_hrtime_t *hrt, VALUE timeout)
4068{
4069 double timeout_d = NIL_P(timeout) ? 0.0 : NUM2DBL(timeout);
4070 if (!NIL_P(timeout) && !(timeout_d > 0)) {
4071 rb_raise(rb_eArgError, "invalid timeout: %"PRIsVALUE, timeout);
4072 }
4073 double2hrtime(hrt, timeout_d);
4074}
4075
4076static VALUE
4077reg_copy(VALUE copy, VALUE orig)
4078{
4079 int r;
4080 regex_t *re;
4081
4082 rb_reg_initialize_check(copy);
4083 if ((r = onig_reg_copy(&re, RREGEXP_PTR(orig))) != 0) {
4084 /* ONIGERR_MEMORY only */
4085 rb_raise(rb_eRegexpError, "%s", onig_error_code_to_format(r));
4086 }
4087 RREGEXP_PTR(copy) = re;
4088 RB_OBJ_WRITE(copy, &RREGEXP(copy)->src, RREGEXP(orig)->src);
4089 RREGEXP_PTR(copy)->timelimit = RREGEXP_PTR(orig)->timelimit;
4090 rb_enc_copy(copy, orig);
4091 FL_SET_RAW(copy, FL_TEST_RAW(orig, KCODE_FIXED|REG_ENCODING_NONE));
4092 if (RBASIC_CLASS(copy) == rb_cRegexp) {
4093 OBJ_FREEZE(copy);
4094 }
4095
4096 return copy;
4097}
4098
4099struct reg_init_args {
4100 VALUE str;
4101 VALUE timeout;
4102 rb_encoding *enc;
4103 int flags;
4104};
4105
4106static VALUE reg_extract_args(int argc, VALUE *argv, struct reg_init_args *args);
4107static VALUE reg_init_args(VALUE self, VALUE str, rb_encoding *enc, int flags);
4108
4109/*
4110 * call-seq:
4111 * Regexp.new(string, options = 0, timeout: nil) -> regexp
4112 * Regexp.new(regexp, timeout: nil) -> regexp
4113 *
4114 * With argument +string+ given, returns a new regexp with the given string
4115 * and options:
4116 *
4117 * r = Regexp.new('foo') # => /foo/
4118 * r.source # => "foo"
4119 * r.options # => 0
4120 *
4121 * Optional argument +options+ is one of the following:
4122 *
4123 * - A String of options:
4124 *
4125 * Regexp.new('foo', 'i') # => /foo/i
4126 * Regexp.new('foo', 'im') # => /foo/im
4127 *
4128 * - The bit-wise OR of one or more of the constants
4129 * Regexp::EXTENDED, Regexp::IGNORECASE, Regexp::MULTILINE, and
4130 * Regexp::NOENCODING:
4131 *
4132 * Regexp.new('foo', Regexp::IGNORECASE) # => /foo/i
4133 * Regexp.new('foo', Regexp::EXTENDED) # => /foo/x
4134 * Regexp.new('foo', Regexp::MULTILINE) # => /foo/m
4135 * Regexp.new('foo', Regexp::NOENCODING) # => /foo/n
4136 * flags = Regexp::IGNORECASE | Regexp::EXTENDED | Regexp::MULTILINE
4137 * Regexp.new('foo', flags) # => /foo/mix
4138 *
4139 * - +nil+ or +false+, which is ignored.
4140 * - Any other truthy value, in which case the regexp will be
4141 * case-insensitive.
4142 *
4143 * If optional keyword argument +timeout+ is given,
4144 * its float value overrides the timeout interval for the class,
4145 * Regexp.timeout.
4146 * If +nil+ is passed as +timeout, it uses the timeout interval
4147 * for the class, Regexp.timeout.
4148 *
4149 * With argument +regexp+ given, returns a new regexp. The source,
4150 * options, timeout are the same as +regexp+. +options+ and +n_flag+
4151 * arguments are ineffective. The timeout can be overridden by
4152 * +timeout+ keyword.
4153 *
4154 * options = Regexp::MULTILINE
4155 * r = Regexp.new('foo', options, timeout: 1.1) # => /foo/m
4156 * r2 = Regexp.new(r) # => /foo/m
4157 * r2.timeout # => 1.1
4158 * r3 = Regexp.new(r, timeout: 3.14) # => /foo/m
4159 * r3.timeout # => 3.14
4160 *
4161 */
4162
4163static VALUE
4164rb_reg_initialize_m(int argc, VALUE *argv, VALUE self)
4165{
4166 struct reg_init_args args;
4167 VALUE re = reg_extract_args(argc, argv, &args);
4168
4169 if (NIL_P(re)) {
4170 reg_init_args(self, args.str, args.enc, args.flags);
4171 }
4172 else {
4173 reg_copy(self, re);
4174 }
4175
4176 set_timeout(&RREGEXP_PTR(self)->timelimit, args.timeout);
4177 if (RBASIC_CLASS(self) == rb_cRegexp) {
4178 OBJ_FREEZE(self);
4179 }
4180
4181 return self;
4182}
4183
4184static VALUE
4185reg_extract_args(int argc, VALUE *argv, struct reg_init_args *args)
4186{
4187 int flags = 0;
4188 rb_encoding *enc = 0;
4189 VALUE str, src, opts = Qundef, kwargs;
4190 VALUE re = Qnil;
4191
4192 rb_scan_args(argc, argv, "11:", &src, &opts, &kwargs);
4193
4194 args->timeout = Qnil;
4195 if (!NIL_P(kwargs)) {
4196 static ID keywords[1];
4197 if (!keywords[0]) {
4198 keywords[0] = rb_intern_const("timeout");
4199 }
4200 rb_get_kwargs(kwargs, keywords, 0, 1, &args->timeout);
4201 }
4202
4203 if (RB_TYPE_P(src, T_REGEXP)) {
4204 re = src;
4205
4206 if (!NIL_P(opts)) {
4207 rb_warn("flags ignored");
4208 }
4209 rb_reg_check(re);
4210 flags = rb_reg_options(re);
4211 str = RREGEXP_SRC(re);
4212 }
4213 else {
4214 if (!NIL_P(opts)) {
4215 int f;
4216 if (FIXNUM_P(opts)) flags = FIX2INT(opts);
4217 else if ((f = str_to_option(opts)) >= 0) flags = f;
4218 else if (rb_bool_expected(opts, "ignorecase", FALSE))
4219 flags = ONIG_OPTION_IGNORECASE;
4220 }
4221 str = StringValue(src);
4222 }
4223 args->str = str;
4224 args->enc = enc;
4225 args->flags = flags;
4226 return re;
4227}
4228
4229static VALUE
4230reg_init_args(VALUE self, VALUE str, rb_encoding *enc, int flags)
4231{
4232 if (enc && rb_enc_get(str) != enc)
4233 rb_reg_init_str_enc(self, str, enc, flags);
4234 else
4235 rb_reg_init_str(self, str, flags);
4236 return self;
4237}
4238
4239VALUE
4240rb_reg_quote(VALUE str)
4241{
4242 rb_encoding *enc = rb_enc_get(str);
4243 char *s, *send, *t;
4244 VALUE tmp;
4245 int c, clen;
4246 int ascii_only = rb_enc_str_asciionly_p(str);
4247
4248 s = RSTRING_PTR(str);
4249 send = s + RSTRING_LEN(str);
4250 while (s < send) {
4251 c = rb_enc_ascget(s, send, &clen, enc);
4252 if (c == -1) {
4253 s += mbclen(s, send, enc);
4254 continue;
4255 }
4256 switch (c) {
4257 case '[': case ']': case '{': case '}':
4258 case '(': case ')': case '|': case '-':
4259 case '*': case '.': case '\\':
4260 case '?': case '+': case '^': case '$':
4261 case ' ': case '#':
4262 case '\t': case '\f': case '\v': case '\n': case '\r':
4263 goto meta_found;
4264 }
4265 s += clen;
4266 }
4267 tmp = rb_str_new3(str);
4268 if (ascii_only) {
4269 rb_enc_associate(tmp, rb_usascii_encoding());
4270 }
4271 return tmp;
4272
4273 meta_found:
4274 tmp = rb_str_new(0, RSTRING_LEN(str)*2);
4275 if (ascii_only) {
4276 rb_enc_associate(tmp, rb_usascii_encoding());
4277 }
4278 else {
4279 rb_enc_copy(tmp, str);
4280 }
4281 t = RSTRING_PTR(tmp);
4282 /* copy upto metacharacter */
4283 const char *p = RSTRING_PTR(str);
4284 memcpy(t, p, s - p);
4285 t += s - p;
4286
4287 while (s < send) {
4288 c = rb_enc_ascget(s, send, &clen, enc);
4289 if (c == -1) {
4290 int n = mbclen(s, send, enc);
4291
4292 while (n--)
4293 *t++ = *s++;
4294 continue;
4295 }
4296 s += clen;
4297 switch (c) {
4298 case '[': case ']': case '{': case '}':
4299 case '(': case ')': case '|': case '-':
4300 case '*': case '.': case '\\':
4301 case '?': case '+': case '^': case '$':
4302 case '#':
4303 t += rb_enc_mbcput('\\', t, enc);
4304 break;
4305 case ' ':
4306 t += rb_enc_mbcput('\\', t, enc);
4307 t += rb_enc_mbcput(' ', t, enc);
4308 continue;
4309 case '\t':
4310 t += rb_enc_mbcput('\\', t, enc);
4311 t += rb_enc_mbcput('t', t, enc);
4312 continue;
4313 case '\n':
4314 t += rb_enc_mbcput('\\', t, enc);
4315 t += rb_enc_mbcput('n', t, enc);
4316 continue;
4317 case '\r':
4318 t += rb_enc_mbcput('\\', t, enc);
4319 t += rb_enc_mbcput('r', t, enc);
4320 continue;
4321 case '\f':
4322 t += rb_enc_mbcput('\\', t, enc);
4323 t += rb_enc_mbcput('f', t, enc);
4324 continue;
4325 case '\v':
4326 t += rb_enc_mbcput('\\', t, enc);
4327 t += rb_enc_mbcput('v', t, enc);
4328 continue;
4329 }
4330 t += rb_enc_mbcput(c, t, enc);
4331 }
4332 rb_str_resize(tmp, t - RSTRING_PTR(tmp));
4333 return tmp;
4334}
4335
4336
4337/*
4338 * call-seq:
4339 * Regexp.escape(string) -> new_string
4340 *
4341 * Returns a new string that escapes any characters
4342 * that have special meaning in a regular expression:
4343 *
4344 * s = Regexp.escape('\*?{}.') # => "\\\\\\*\\?\\{\\}\\."
4345 *
4346 * For any string +s+, this call returns a MatchData object:
4347 *
4348 * r = Regexp.new(Regexp.escape(s)) # => /\\\\\\\*\\\?\\\{\\\}\\\./
4349 * r.match(s) # => #<MatchData "\\\\\\*\\?\\{\\}\\.">
4350 *
4351 */
4352
4353static VALUE
4354rb_reg_s_quote(VALUE c, VALUE str)
4355{
4356 return rb_reg_quote(reg_operand(str, TRUE));
4357}
4358
4359int
4360rb_reg_options(VALUE re)
4361{
4362 int options;
4363
4364 rb_reg_check(re);
4365 options = RREGEXP_PTR(re)->options & ARG_REG_OPTION_MASK;
4366 if (RBASIC(re)->flags & KCODE_FIXED) options |= ARG_ENCODING_FIXED;
4367 if (RBASIC(re)->flags & REG_ENCODING_NONE) options |= ARG_ENCODING_NONE;
4368 return options;
4369}
4370
4371static VALUE
4372rb_check_regexp_type(VALUE re)
4373{
4374 return rb_check_convert_type(re, T_REGEXP, "Regexp", "to_regexp");
4375}
4376
4377/*
4378 * call-seq:
4379 * Regexp.try_convert(object) -> regexp or nil
4380 *
4381 * Returns +object+ if it is a regexp:
4382 *
4383 * Regexp.try_convert(/re/) # => /re/
4384 *
4385 * Otherwise if +object+ responds to <tt>:to_regexp</tt>,
4386 * calls <tt>object.to_regexp</tt> and returns the result.
4387 *
4388 * Returns +nil+ if +object+ does not respond to <tt>:to_regexp</tt>.
4389 *
4390 * Regexp.try_convert('re') # => nil
4391 *
4392 * Raises an exception unless <tt>object.to_regexp</tt> returns a regexp.
4393 *
4394 */
4395static VALUE
4396rb_reg_s_try_convert(VALUE dummy, VALUE re)
4397{
4398 return rb_check_regexp_type(re);
4399}
4400
4401static VALUE
4402rb_reg_s_union(VALUE self, VALUE args0)
4403{
4404 long argc = RARRAY_LEN(args0);
4405
4406 if (argc == 0) {
4407 VALUE args[1];
4408 args[0] = rb_str_new2("(?!)");
4409 return rb_class_new_instance(1, args, rb_cRegexp);
4410 }
4411 else if (argc == 1) {
4412 VALUE arg = rb_ary_entry(args0, 0);
4413 VALUE re = rb_check_regexp_type(arg);
4414 if (!NIL_P(re))
4415 return re;
4416 else {
4417 VALUE quoted;
4418 quoted = rb_reg_s_quote(Qnil, arg);
4419 return rb_reg_new_str(quoted, 0);
4420 }
4421 }
4422 else {
4423 int i;
4424 VALUE source = rb_str_buf_new(0);
4425 rb_encoding *result_enc;
4426
4427 int has_asciionly = 0;
4428 rb_encoding *has_ascii_compat_fixed = 0;
4429 rb_encoding *has_ascii_incompat = 0;
4430
4431 for (i = 0; i < argc; i++) {
4432 volatile VALUE v;
4433 VALUE e = rb_ary_entry(args0, i);
4434
4435 if (0 < i)
4436 rb_str_buf_cat_ascii(source, "|");
4437
4438 v = rb_check_regexp_type(e);
4439 if (!NIL_P(v)) {
4440 rb_encoding *enc = rb_enc_get(v);
4441 if (!rb_enc_asciicompat(enc)) {
4442 if (!has_ascii_incompat)
4443 has_ascii_incompat = enc;
4444 else if (has_ascii_incompat != enc)
4445 rb_raise(rb_eArgError, "incompatible encodings: %s and %s",
4446 rb_enc_name(has_ascii_incompat), rb_enc_name(enc));
4447 }
4448 else if (rb_reg_fixed_encoding_p(v)) {
4449 if (!has_ascii_compat_fixed)
4450 has_ascii_compat_fixed = enc;
4451 else if (has_ascii_compat_fixed != enc)
4452 rb_raise(rb_eArgError, "incompatible encodings: %s and %s",
4453 rb_enc_name(has_ascii_compat_fixed), rb_enc_name(enc));
4454 }
4455 else {
4456 has_asciionly = 1;
4457 }
4458 v = rb_reg_str_with_term(v, -1);
4459 }
4460 else {
4461 rb_encoding *enc;
4462 StringValue(e);
4463 enc = rb_enc_get(e);
4464 if (!rb_enc_asciicompat(enc)) {
4465 if (!has_ascii_incompat)
4466 has_ascii_incompat = enc;
4467 else if (has_ascii_incompat != enc)
4468 rb_raise(rb_eArgError, "incompatible encodings: %s and %s",
4469 rb_enc_name(has_ascii_incompat), rb_enc_name(enc));
4470 }
4471 else if (rb_enc_str_asciionly_p(e)) {
4472 has_asciionly = 1;
4473 }
4474 else {
4475 if (!has_ascii_compat_fixed)
4476 has_ascii_compat_fixed = enc;
4477 else if (has_ascii_compat_fixed != enc)
4478 rb_raise(rb_eArgError, "incompatible encodings: %s and %s",
4479 rb_enc_name(has_ascii_compat_fixed), rb_enc_name(enc));
4480 }
4481 v = rb_reg_s_quote(Qnil, e);
4482 }
4483 if (has_ascii_incompat) {
4484 if (has_asciionly) {
4485 rb_raise(rb_eArgError, "ASCII incompatible encoding: %s",
4486 rb_enc_name(has_ascii_incompat));
4487 }
4488 if (has_ascii_compat_fixed) {
4489 rb_raise(rb_eArgError, "incompatible encodings: %s and %s",
4490 rb_enc_name(has_ascii_incompat), rb_enc_name(has_ascii_compat_fixed));
4491 }
4492 }
4493
4494 if (i == 0) {
4495 rb_enc_copy(source, v);
4496 }
4497 rb_str_append(source, v);
4498 }
4499
4500 if (has_ascii_incompat) {
4501 result_enc = has_ascii_incompat;
4502 }
4503 else if (has_ascii_compat_fixed) {
4504 result_enc = has_ascii_compat_fixed;
4505 }
4506 else {
4507 result_enc = rb_ascii8bit_encoding();
4508 }
4509
4510 rb_enc_associate(source, result_enc);
4511 return rb_class_new_instance(1, &source, rb_cRegexp);
4512 }
4513}
4514
4515/*
4516 * call-seq:
4517 * Regexp.union(*patterns) -> regexp
4518 * Regexp.union(array_of_patterns) -> regexp
4519 *
4520 * Returns a new regexp that is the union of the given patterns:
4521 *
4522 * r = Regexp.union(%w[cat dog]) # => /cat|dog/
4523 * r.match('cat') # => #<MatchData "cat">
4524 * r.match('dog') # => #<MatchData "dog">
4525 * r.match('cog') # => nil
4526 *
4527 * For each pattern that is a string, <tt>Regexp.new(pattern)</tt> is used:
4528 *
4529 * Regexp.union('penzance') # => /penzance/
4530 * Regexp.union('a+b*c') # => /a\+b\*c/
4531 * Regexp.union('skiing', 'sledding') # => /skiing|sledding/
4532 * Regexp.union(['skiing', 'sledding']) # => /skiing|sledding/
4533 *
4534 * For each pattern that is a regexp, it is used as is,
4535 * including its flags:
4536 *
4537 * Regexp.union(/foo/i, /bar/m, /baz/x)
4538 * # => /(?i-mx:foo)|(?m-ix:bar)|(?x-mi:baz)/
4539 * Regexp.union([/foo/i, /bar/m, /baz/x])
4540 * # => /(?i-mx:foo)|(?m-ix:bar)|(?x-mi:baz)/
4541 *
4542 * With no arguments, returns <tt>/(?!)/</tt>:
4543 *
4544 * Regexp.union # => /(?!)/
4545 *
4546 * If any regexp pattern contains captures, the behavior is unspecified.
4547 *
4548 */
4549static VALUE
4550rb_reg_s_union_m(VALUE self, VALUE args)
4551{
4552 VALUE v;
4553 if (RARRAY_LEN(args) == 1 &&
4554 !NIL_P(v = rb_check_array_type(rb_ary_entry(args, 0)))) {
4555 return rb_reg_s_union(self, v);
4556 }
4557 return rb_reg_s_union(self, args);
4558}
4559
4560/*
4561 * call-seq:
4562 * Regexp.linear_time?(re)
4563 * Regexp.linear_time?(string, options = 0)
4564 *
4565 * Returns +true+ if matching against <tt>re</tt> can be
4566 * done in linear time to the input string.
4567 *
4568 * Regexp.linear_time?(/re/) # => true
4569 *
4570 * Note that this is a property of the ruby interpreter, not of the argument
4571 * regular expression. Identical regexp can or cannot run in linear time
4572 * depending on your ruby binary. Neither forward nor backward compatibility
4573 * is guaranteed about the return value of this method. Our current algorithm
4574 * is (*1) but this is subject to change in the future. Alternative
4575 * implementations can also behave differently. They might always return
4576 * false for everything.
4577 *
4578 * (*1): https://doi.org/10.1109/SP40001.2021.00032
4579 *
4580 */
4581static VALUE
4582rb_reg_s_linear_time_p(int argc, VALUE *argv, VALUE self)
4583{
4584 struct reg_init_args args;
4585 VALUE re = reg_extract_args(argc, argv, &args);
4586
4587 if (NIL_P(re)) {
4588 re = reg_init_args(rb_reg_alloc(), args.str, args.enc, args.flags);
4589 }
4590
4591 return RBOOL(onig_check_linear_time(RREGEXP_PTR(re)));
4592}
4593
4594/* :nodoc: */
4595static VALUE
4596rb_reg_init_copy(VALUE copy, VALUE re)
4597{
4598 if (!OBJ_INIT_COPY(copy, re)) return copy;
4599 rb_reg_check(re);
4600 return reg_copy(copy, re);
4601}
4602
4603static VALUE
4604do_regsub(VALUE str, VALUE src, VALUE regexp, int num_regs, const OnigPosition *beg, const OnigPosition *end)
4605{
4606 VALUE val = 0;
4607 char *p, *s, *e;
4608 int no, clen;
4609 rb_encoding *str_enc = rb_enc_get(str);
4610 rb_encoding *src_enc = rb_enc_get(src);
4611 int acompat = rb_enc_asciicompat(str_enc);
4612 long n;
4613#define ASCGET(s,e,cl) (acompat ? (*(cl)=1,ISASCII((s)[0])?(s)[0]:-1) : rb_enc_ascget((s), (e), (cl), str_enc))
4614
4615 RSTRING_GETMEM(str, s, n);
4616 p = s;
4617 e = s + n;
4618
4619 while (s < e) {
4620 int c = ASCGET(s, e, &clen);
4621 char *ss;
4622
4623 if (c == -1) {
4624 s += mbclen(s, e, str_enc);
4625 continue;
4626 }
4627 ss = s;
4628 s += clen;
4629
4630 if (c != '\\' || s == e) continue;
4631
4632 if (!val) {
4633 val = rb_str_buf_new(ss-p);
4634 }
4635 rb_enc_str_buf_cat(val, p, ss-p, str_enc);
4636
4637 c = ASCGET(s, e, &clen);
4638 if (c == -1) {
4639 s += mbclen(s, e, str_enc);
4640 rb_enc_str_buf_cat(val, ss, s-ss, str_enc);
4641 p = s;
4642 continue;
4643 }
4644 s += clen;
4645
4646 p = s;
4647 switch (c) {
4648 case '1': case '2': case '3': case '4':
4649 case '5': case '6': case '7': case '8': case '9':
4650 if (!NIL_P(regexp) && onig_noname_group_capture_is_active(RREGEXP_PTR(regexp))) {
4651 no = c - '0';
4652 }
4653 else {
4654 continue;
4655 }
4656 break;
4657
4658 case 'k':
4659 if (s < e && ASCGET(s, e, &clen) == '<') {
4660 char *name, *name_end;
4661
4662 name_end = name = s + clen;
4663 while (name_end < e) {
4664 c = ASCGET(name_end, e, &clen);
4665 if (c == '>') break;
4666 name_end += c == -1 ? mbclen(name_end, e, str_enc) : clen;
4667 }
4668 if (name_end < e) {
4669 VALUE n = rb_str_subseq(str, (long)(name - RSTRING_PTR(str)),
4670 (long)(name_end - name));
4671 struct re_registers tmp = {
4672 .allocated = num_regs,
4673 .num_regs = num_regs,
4674 .beg = (OnigPosition *)beg,
4675 .end = (OnigPosition *)end,
4676 };
4677 if ((no = NAME_TO_NUMBER(&tmp, regexp, n, name, name_end)) < 1) {
4678 name_to_backref_error(n);
4679 }
4680 p = s = name_end + clen;
4681 break;
4682 }
4683 else {
4684 rb_raise(rb_eRuntimeError, "invalid group name reference format");
4685 }
4686 }
4687
4688 rb_enc_str_buf_cat(val, ss, s-ss, str_enc);
4689 continue;
4690
4691 case '0':
4692 case '&':
4693 no = 0;
4694 break;
4695
4696 case '`':
4697 rb_enc_str_buf_cat(val, RSTRING_PTR(src), beg[0], src_enc);
4698 continue;
4699
4700 case '\'':
4701 rb_enc_str_buf_cat(val, RSTRING_PTR(src)+end[0], RSTRING_LEN(src)-end[0], src_enc);
4702 continue;
4703
4704 case '+':
4705 no = num_regs-1;
4706 while (beg[no] == -1 && no > 0) no--;
4707 if (no == 0) continue;
4708 break;
4709
4710 case '\\':
4711 rb_enc_str_buf_cat(val, s-clen, clen, str_enc);
4712 continue;
4713
4714 default:
4715 rb_enc_str_buf_cat(val, ss, s-ss, str_enc);
4716 continue;
4717 }
4718
4719 if (no >= 0) {
4720 if (no >= num_regs) continue;
4721 if (beg[no] == -1) continue;
4722 rb_enc_str_buf_cat(val, RSTRING_PTR(src)+beg[no], end[no]-beg[no], src_enc);
4723 }
4724 }
4725
4726 if (!val) return str;
4727 if (p < e) {
4728 rb_enc_str_buf_cat(val, p, e-p, str_enc);
4729 }
4730
4731 return val;
4732#undef ASCGET
4733}
4734
4735VALUE
4736rb_reg_regsub(VALUE str, VALUE src, struct re_registers *regs, VALUE regexp)
4737{
4738 return do_regsub(str, src, regexp, regs->num_regs, regs->beg, regs->end);
4739}
4740
4741VALUE
4742rb_reg_regsub_match(VALUE str, VALUE src, VALUE match)
4743{
4744 return do_regsub(str, src, RMATCH(match)->regexp,
4745 RMATCH_NREGS(match), RMATCH_BEG_PTR(match), RMATCH_END_PTR(match));
4746}
4747
4748static VALUE
4749ignorecase_getter(ID _x, VALUE *_y)
4750{
4751 rb_category_warn(RB_WARN_CATEGORY_DEPRECATED, "variable $= is no longer effective");
4752 return Qfalse;
4753}
4754
4755static void
4756ignorecase_setter(VALUE val, ID id, VALUE *_)
4757{
4758 rb_category_warn(RB_WARN_CATEGORY_DEPRECATED, "variable $= is no longer effective; ignored");
4759}
4760
4761static VALUE
4762match_getter(void)
4763{
4764 VALUE match = rb_backref_get();
4765
4766 if (NIL_P(match)) return Qnil;
4767 rb_match_busy(match);
4768 return match;
4769}
4770
4771static VALUE
4772get_LAST_MATCH_INFO(ID _x, VALUE *_y)
4773{
4774 return match_getter();
4775}
4776
4777static void
4778match_setter(VALUE val, ID _x, VALUE *_y)
4779{
4780 if (!NIL_P(val)) {
4781 Check_Type(val, T_MATCH);
4782 }
4783 rb_backref_set(val);
4784}
4785
4786/*
4787 * call-seq:
4788 * Regexp.last_match -> matchdata or nil
4789 * Regexp.last_match(n) -> string or nil
4790 * Regexp.last_match(name) -> string or nil
4791 *
4792 * With no argument, returns the value of <tt>$~</tt>,
4793 * which is the result of the most recent pattern match
4794 * (see {Regexp global variables}[rdoc-ref:Regexp@Global+Variables]):
4795 *
4796 * /c(.)t/ =~ 'cat' # => 0
4797 * Regexp.last_match # => #<MatchData "cat" 1:"a">
4798 * /a/ =~ 'foo' # => nil
4799 * Regexp.last_match # => nil
4800 *
4801 * With non-negative integer argument +n+, returns the _n_th field in the
4802 * matchdata, if any, or nil if none:
4803 *
4804 * /c(.)t/ =~ 'cat' # => 0
4805 * Regexp.last_match(0) # => "cat"
4806 * Regexp.last_match(1) # => "a"
4807 * Regexp.last_match(2) # => nil
4808 *
4809 * With negative integer argument +n+, counts backwards from the last field:
4810 *
4811 * Regexp.last_match(-1) # => "a"
4812 *
4813 * With string or symbol argument +name+,
4814 * returns the string value for the named capture, if any:
4815 *
4816 * /(?<lhs>\w+)\s*=\s*(?<rhs>\w+)/ =~ 'var = val'
4817 * Regexp.last_match # => #<MatchData "var = val" lhs:"var"rhs:"val">
4818 * Regexp.last_match(:lhs) # => "var"
4819 * Regexp.last_match('rhs') # => "val"
4820 * Regexp.last_match('foo') # Raises IndexError.
4821 *
4822 */
4823
4824static VALUE
4825rb_reg_s_last_match(int argc, VALUE *argv, VALUE _)
4826{
4827 if (rb_check_arity(argc, 0, 1) == 1) {
4828 VALUE match = rb_backref_get();
4829 int n;
4830 if (NIL_P(match)) return Qnil;
4831 n = match_backref_number(match, argv[0]);
4832 return rb_reg_nth_match(n, match);
4833 }
4834 return match_getter();
4835}
4836
4837static void
4838re_warn(const char *s)
4839{
4840 rb_warn("%s", s);
4841}
4842
4843// This function is periodically called during regexp matching
4844bool
4845rb_reg_timeout_p(regex_t *reg, void *end_time_)
4846{
4847 rb_hrtime_t *end_time = (rb_hrtime_t *)end_time_;
4848
4849 if (*end_time == 0) {
4850 // This is the first time to check interrupts;
4851 // just measure the current time and determine the end time
4852 // if timeout is set.
4853 rb_hrtime_t timelimit = reg->timelimit;
4854
4855 if (!timelimit) {
4856 // no per-object timeout.
4857 timelimit = rb_reg_match_time_limit;
4858 }
4859
4860 if (timelimit) {
4861 *end_time = rb_hrtime_add(timelimit, rb_hrtime_now());
4862 }
4863 else {
4864 // no timeout is set
4865 *end_time = RB_HRTIME_MAX;
4866 }
4867 }
4868 else {
4869 if (*end_time < rb_hrtime_now()) {
4870 // Timeout has exceeded
4871 return true;
4872 }
4873 }
4874
4875 return false;
4876}
4877
4878/*
4879 * call-seq:
4880 * Regexp.timeout -> float or nil
4881 *
4882 * It returns the current default timeout interval for Regexp matching in second.
4883 * +nil+ means no default timeout configuration.
4884 */
4885
4886static VALUE
4887rb_reg_s_timeout_get(VALUE dummy)
4888{
4889 double d = hrtime2double(rb_reg_match_time_limit);
4890 if (d == 0.0) return Qnil;
4891 return DBL2NUM(d);
4892}
4893
4894/*
4895 * call-seq:
4896 * Regexp.timeout = float or nil
4897 *
4898 * It sets the default timeout interval for Regexp matching in second.
4899 * +nil+ means no default timeout configuration.
4900 * This configuration is process-global. If you want to set timeout for
4901 * each Regexp, use +timeout+ keyword for <code>Regexp.new</code>.
4902 *
4903 * Regexp.timeout = 1
4904 * /^a*b?a*$/ =~ "a" * 100000 + "x" #=> regexp match timeout (RuntimeError)
4905 */
4906
4907static VALUE
4908rb_reg_s_timeout_set(VALUE dummy, VALUE timeout)
4909{
4910 rb_ractor_ensure_main_ractor("can not access Regexp.timeout from non-main Ractors");
4911
4912 set_timeout(&rb_reg_match_time_limit, timeout);
4913
4914 return timeout;
4915}
4916
4917/*
4918 * call-seq:
4919 * rxp.timeout -> float or nil
4920 *
4921 * It returns the timeout interval for Regexp matching in second.
4922 * +nil+ means no default timeout configuration.
4923 *
4924 * This configuration is per-object. The global configuration set by
4925 * Regexp.timeout= is ignored if per-object configuration is set.
4926 *
4927 * re = Regexp.new("^a*b?a*$", timeout: 1)
4928 * re.timeout #=> 1.0
4929 * re =~ "a" * 100000 + "x" #=> regexp match timeout (RuntimeError)
4930 */
4931
4932static VALUE
4933rb_reg_timeout_get(VALUE re)
4934{
4935 rb_reg_check(re);
4936 double d = hrtime2double(RREGEXP_PTR(re)->timelimit);
4937 if (d == 0.0) return Qnil;
4938 return DBL2NUM(d);
4939}
4940
4941/*
4942 * Document-class: RegexpError
4943 *
4944 * Raised when given an invalid regexp expression.
4945 *
4946 * Regexp.new("?")
4947 *
4948 * <em>raises the exception:</em>
4949 *
4950 * RegexpError: target of repeat operator is not specified: /?/
4951 */
4952
4953/*
4954 * Document-class: Regexp
4955 *
4956 * :include: doc/_regexp.rdoc
4957 */
4958
4959void
4960Init_Regexp(void)
4961{
4962 rb_eRegexpError = rb_define_class("RegexpError", rb_eStandardError);
4963
4964 onigenc_set_default_encoding(ONIG_ENCODING_ASCII);
4965 onig_set_warn_func(re_warn);
4966 onig_set_verb_warn_func(re_warn);
4967
4968 rb_define_virtual_variable("$~", get_LAST_MATCH_INFO, match_setter);
4969 rb_define_virtual_variable("$&", last_match_getter, 0);
4970 rb_define_virtual_variable("$`", prematch_getter, 0);
4971 rb_define_virtual_variable("$'", postmatch_getter, 0);
4972 rb_define_virtual_variable("$+", last_paren_match_getter, 0);
4973
4974 rb_gvar_ractor_local("$~");
4975 rb_gvar_ractor_local("$&");
4976 rb_gvar_ractor_local("$`");
4977 rb_gvar_ractor_local("$'");
4978 rb_gvar_ractor_local("$+");
4979 rb_gvar_box_dynamic("$~");
4980 rb_gvar_box_ready("$&");
4981 rb_gvar_box_ready("$`");
4982 rb_gvar_box_ready("$'");
4983 rb_gvar_box_ready("$+");
4984
4985 rb_define_virtual_variable("$=", ignorecase_getter, ignorecase_setter);
4986
4987 rb_cRegexp = rb_define_class("Regexp", rb_cObject);
4988 rb_define_alloc_func(rb_cRegexp, rb_reg_s_alloc);
4989 rb_define_singleton_method(rb_cRegexp, "compile", rb_class_new_instance_pass_kw, -1);
4990 rb_define_singleton_method(rb_cRegexp, "quote", rb_reg_s_quote, 1);
4991 rb_define_singleton_method(rb_cRegexp, "escape", rb_reg_s_quote, 1);
4992 rb_define_singleton_method(rb_cRegexp, "union", rb_reg_s_union_m, -2);
4993 rb_define_singleton_method(rb_cRegexp, "last_match", rb_reg_s_last_match, -1);
4994 rb_define_singleton_method(rb_cRegexp, "try_convert", rb_reg_s_try_convert, 1);
4995 rb_define_singleton_method(rb_cRegexp, "linear_time?", rb_reg_s_linear_time_p, -1);
4996
4997 rb_define_method(rb_cRegexp, "initialize", rb_reg_initialize_m, -1);
4998 rb_define_method(rb_cRegexp, "initialize_copy", rb_reg_init_copy, 1);
4999 rb_define_method(rb_cRegexp, "hash", rb_reg_hash, 0);
5000 rb_define_method(rb_cRegexp, "eql?", rb_reg_equal, 1);
5001 rb_define_method(rb_cRegexp, "==", rb_reg_equal, 1);
5002 rb_define_method(rb_cRegexp, "=~", rb_reg_match, 1);
5003 rb_define_method(rb_cRegexp, "===", rb_reg_eqq, 1);
5004 rb_define_method(rb_cRegexp, "~", rb_reg_match2, 0);
5005 rb_define_method(rb_cRegexp, "match", rb_reg_match_m, -1);
5006 rb_define_method(rb_cRegexp, "match?", rb_reg_match_m_p, -1);
5007 rb_define_method(rb_cRegexp, "to_s", rb_reg_to_s, 0);
5008 rb_define_method(rb_cRegexp, "inspect", rb_reg_inspect, 0);
5009 rb_define_method(rb_cRegexp, "source", rb_reg_source, 0);
5010 rb_define_method(rb_cRegexp, "casefold?", rb_reg_casefold_p, 0);
5011 rb_define_method(rb_cRegexp, "options", rb_reg_options_m, 0);
5012 rb_define_method(rb_cRegexp, "encoding", rb_obj_encoding, 0); /* in encoding.c */
5013 rb_define_method(rb_cRegexp, "fixed_encoding?", rb_reg_fixed_encoding_p, 0);
5014 rb_define_method(rb_cRegexp, "names", rb_reg_names, 0);
5015 rb_define_method(rb_cRegexp, "named_captures", rb_reg_named_captures, 0);
5016 rb_define_method(rb_cRegexp, "timeout", rb_reg_timeout_get, 0);
5017
5018 /* Raised when regexp matching timed out. */
5019 rb_eRegexpTimeoutError = rb_define_class_under(rb_cRegexp, "TimeoutError", rb_eRegexpError);
5020 rb_define_singleton_method(rb_cRegexp, "timeout", rb_reg_s_timeout_get, 0);
5021 rb_define_singleton_method(rb_cRegexp, "timeout=", rb_reg_s_timeout_set, 1);
5022
5023 /* see Regexp.options and Regexp.new */
5024 rb_define_const(rb_cRegexp, "IGNORECASE", INT2FIX(ONIG_OPTION_IGNORECASE));
5025 /* see Regexp.options and Regexp.new */
5026 rb_define_const(rb_cRegexp, "EXTENDED", INT2FIX(ONIG_OPTION_EXTEND));
5027 /* see Regexp.options and Regexp.new */
5028 rb_define_const(rb_cRegexp, "MULTILINE", INT2FIX(ONIG_OPTION_MULTILINE));
5029 /* see Regexp.options and Regexp.new */
5030 rb_define_const(rb_cRegexp, "FIXEDENCODING", INT2FIX(ARG_ENCODING_FIXED));
5031 /* see Regexp.options and Regexp.new */
5032 rb_define_const(rb_cRegexp, "NOENCODING", INT2FIX(ARG_ENCODING_NONE));
5033
5034 rb_global_variable(&reg_cache);
5035
5036 rb_cMatch = rb_define_class("MatchData", rb_cObject);
5037 rb_define_alloc_func(rb_cMatch, match_alloc);
5038 rb_undef_method(CLASS_OF(rb_cMatch), "new");
5039 rb_undef_method(CLASS_OF(rb_cMatch), "allocate");
5040
5041 rb_define_method(rb_cMatch, "initialize_copy", match_init_copy, 1);
5042 rb_define_method(rb_cMatch, "regexp", match_regexp, 0);
5043 rb_define_method(rb_cMatch, "names", match_names, 0);
5044 rb_define_method(rb_cMatch, "size", match_size, 0);
5045 rb_define_method(rb_cMatch, "length", match_size, 0);
5046 rb_define_method(rb_cMatch, "offset", match_offset, 1);
5047 rb_define_method(rb_cMatch, "byteoffset", match_byteoffset, 1);
5048 rb_define_method(rb_cMatch, "bytebegin", match_bytebegin, 1);
5049 rb_define_method(rb_cMatch, "byteend", match_byteend, 1);
5050 rb_define_method(rb_cMatch, "begin", match_begin, 1);
5051 rb_define_method(rb_cMatch, "end", match_end, 1);
5052 rb_define_method(rb_cMatch, "match", match_nth, 1);
5053 rb_define_method(rb_cMatch, "match_length", match_nth_length, 1);
5054 rb_define_method(rb_cMatch, "to_a", match_to_a, 0);
5055 rb_define_method(rb_cMatch, "[]", match_aref, -1);
5056 rb_define_method(rb_cMatch, "captures", match_captures, 0);
5057 rb_define_alias(rb_cMatch, "deconstruct", "captures");
5058 rb_define_method(rb_cMatch, "named_captures", match_named_captures, -1);
5059 rb_define_method(rb_cMatch, "deconstruct_keys", match_deconstruct_keys, 1);
5060 rb_define_method(rb_cMatch, "values_at", match_values_at, -1);
5061 rb_define_method(rb_cMatch, "pre_match", rb_reg_match_pre, 0);
5062 rb_define_method(rb_cMatch, "post_match", rb_reg_match_post, 0);
5063 rb_define_method(rb_cMatch, "to_s", match_to_s, 0);
5064 rb_define_method(rb_cMatch, "inspect", match_inspect, 0);
5065 rb_define_method(rb_cMatch, "string", match_string, 0);
5066 rb_define_method(rb_cMatch, "hash", match_hash, 0);
5067 rb_define_method(rb_cMatch, "eql?", match_equal, 1);
5068 rb_define_method(rb_cMatch, "==", match_equal, 1);
5069 rb_define_method(rb_cMatch, "integer_at", match_integer_at, -1);
5070}
#define RUBY_ASSERT(...)
Asserts that the given expression is truthy if and only if RUBY_DEBUG is truthy.
Definition assert.h:219
static bool rb_enc_isprint(OnigCodePoint c, rb_encoding *enc)
Identical to rb_isprint(), except it additionally takes an encoding.
Definition ctype.h:180
int rb_scan_args(int argc, const VALUE *argv, const char *fmt,...)
Retrieves argument from argc and argv to given VALUE references according to the format string.
Definition class.c:3061
int rb_get_kwargs(VALUE keyword_hash, const ID *table, int required, int optional, VALUE *values)
Keyword argument deconstructor.
Definition class.c:2850
#define ENC_CODERANGE_7BIT
Old name of RUBY_ENC_CODERANGE_7BIT.
Definition coderange.h:180
#define rb_str_buf_cat2
Old name of rb_usascii_str_new_cstr.
Definition string.h:1683
#define OBJ_INIT_COPY(obj, orig)
Old name of RB_OBJ_INIT_COPY.
Definition object.h:41
#define ISSPACE
Old name of rb_isspace.
Definition ctype.h:88
#define T_STRING
Old name of RUBY_T_STRING.
Definition value_type.h:78
#define ENC_CODERANGE_CLEAN_P(cr)
Old name of RB_ENC_CODERANGE_CLEAN_P.
Definition coderange.h:183
#define INT2FIX
Old name of RB_INT2FIX.
Definition long.h:48
#define rb_str_buf_new2
Old name of rb_str_buf_new_cstr.
Definition string.h:1680
#define OBJ_FREEZE
Old name of RB_OBJ_FREEZE.
Definition fl_type.h:131
#define ENC_CODERANGE_UNKNOWN
Old name of RUBY_ENC_CODERANGE_UNKNOWN.
Definition coderange.h:179
#define ENCODING_GET(obj)
Old name of RB_ENCODING_GET.
Definition encoding.h:109
#define FIX2INT
Old name of RB_FIX2INT.
Definition int.h:41
#define rb_str_new3
Old name of rb_str_new_shared.
Definition string.h:1677
#define MBCLEN_CHARFOUND_LEN(ret)
Old name of ONIGENC_MBCLEN_CHARFOUND_LEN.
Definition encoding.h:517
#define FL_TEST_RAW
Old name of RB_FL_TEST_RAW.
Definition fl_type.h:128
#define FL_SET
Old name of RB_FL_SET.
Definition fl_type.h:125
#define LONG2NUM
Old name of RB_LONG2NUM.
Definition long.h:50
#define rb_exc_new3
Old name of rb_exc_new_str.
Definition error.h:38
#define MBCLEN_INVALID_P(ret)
Old name of ONIGENC_MBCLEN_INVALID_P.
Definition encoding.h:518
#define Qtrue
Old name of RUBY_Qtrue.
#define ST2FIX
Old name of RB_ST2FIX.
Definition st_data_t.h:33
#define MBCLEN_NEEDMORE_P(ret)
Old name of ONIGENC_MBCLEN_NEEDMORE_P.
Definition encoding.h:519
#define NUM2INT
Old name of RB_NUM2INT.
Definition int.h:44
#define INT2NUM
Old name of RB_INT2NUM.
Definition int.h:43
#define Qnil
Old name of RUBY_Qnil.
#define Qfalse
Old name of RUBY_Qfalse.
#define ENC_CODERANGE_BROKEN
Old name of RUBY_ENC_CODERANGE_BROKEN.
Definition coderange.h:182
#define T_ARRAY
Old name of RUBY_T_ARRAY.
Definition value_type.h:56
#define scan_hex(s, l, e)
Old name of ruby_scan_hex.
Definition util.h:108
#define NIL_P
Old name of RB_NIL_P.
#define ALLOCV_N
Old name of RB_ALLOCV_N.
Definition memory.h:405
#define MBCLEN_CHARFOUND_P(ret)
Old name of ONIGENC_MBCLEN_CHARFOUND_P.
Definition encoding.h:516
#define T_SYMBOL
Old name of RUBY_T_SYMBOL.
Definition value_type.h:80
#define T_MATCH
Old name of RUBY_T_MATCH.
Definition value_type.h:69
#define FL_TEST
Old name of RB_FL_TEST.
Definition fl_type.h:127
#define NUM2LONG
Old name of RB_NUM2LONG.
Definition long.h:51
#define FL_UNSET
Old name of RB_FL_UNSET.
Definition fl_type.h:129
#define FIXNUM_P
Old name of RB_FIXNUM_P.
#define scan_oct(s, l, e)
Old name of ruby_scan_oct.
Definition util.h:85
#define rb_ary_new2
Old name of rb_ary_new_capa.
Definition array.h:657
#define FL_SET_RAW
Old name of RB_FL_SET_RAW.
Definition fl_type.h:126
#define rb_str_new4
Old name of rb_str_new_frozen.
Definition string.h:1678
#define ALLOCV_END
Old name of RB_ALLOCV_END.
Definition memory.h:406
#define SYMBOL_P
Old name of RB_SYMBOL_P.
Definition value_type.h:88
#define T_REGEXP
Old name of RUBY_T_REGEXP.
Definition value_type.h:77
void rb_exc_raise(VALUE mesg)
Raises an exception in the current thread.
Definition eval.c:661
VALUE rb_eRegexpError
RegexpError exception.
Definition re.c:35
#define ruby_verbose
This variable controls whether the interpreter is in debug mode.
Definition error.h:476
VALUE rb_eTypeError
TypeError exception.
Definition error.c:1427
VALUE rb_eEncCompatError
Encoding::CompatibilityError exception.
Definition error.c:1434
void rb_warn(const char *fmt,...)
Identical to rb_warning(), except it reports unless $VERBOSE is nil.
Definition error.c:467
VALUE rb_eIndexError
IndexError exception.
Definition error.c:1429
VALUE rb_obj_reveal(VALUE obj, VALUE klass)
Make a hidden object visible again.
Definition object.c:104
VALUE rb_any_to_s(VALUE obj)
Generates a textual representation of the given object.
Definition object.c:646
VALUE rb_cMatch
MatchData class.
Definition re.c:962
VALUE rb_obj_hide(VALUE obj)
Make the object invisible from Ruby code.
Definition object.c:95
VALUE rb_cRegexp
Regexp class.
Definition re.c:2724
VALUE rb_obj_class(VALUE obj)
Queries the class of an object.
Definition object.c:235
#define RB_OBJ_WRITE(old, slot, young)
Declaration of a "back" pointer.
Definition gc.h:456
Encoding relates APIs.
static char * rb_enc_left_char_head(const char *s, const char *p, const char *e, rb_encoding *enc)
Queries the left boundary of a character.
Definition encoding.h:683
int rb_char_to_option_kcode(int c, int *option, int *kcode)
Converts a character option to its encoding.
Definition re.c:328
static int rb_enc_mbmaxlen(rb_encoding *enc)
Queries the maximum number of bytes that the passed encoding needs to represent a character.
Definition encoding.h:447
VALUE rb_enc_reg_new(const char *ptr, long len, rb_encoding *enc, int opts)
Identical to rb_reg_new(), except it additionally takes an encoding.
Definition re.c:3530
long rb_memsearch(const void *x, long m, const void *y, long n, rb_encoding *enc)
Looks for the passed string in the passed buffer.
Definition re.c:252
long rb_enc_strlen(const char *head, const char *tail, rb_encoding *enc)
Counts the number of characters of the passed string, according to the passed encoding.
Definition string.c:2334
long rb_str_coderange_scan_restartable(const char *str, const char *end, rb_encoding *enc, int *cr)
Scans the passed string until it finds something odd.
Definition string.c:826
VALUE rb_str_encode(VALUE str, VALUE to, int ecflags, VALUE ecopts)
Converts the contents of the passed string from its encoding to the passed one.
Definition transcode.c:2977
VALUE rb_ary_new_capa(long capa)
Identical to rb_ary_new(), except it additionally specifies how many rooms of objects it should alloc...
VALUE rb_ary_resize(VALUE ary, long len)
Expands or shrinks the passed array to the passed length.
VALUE rb_ary_push(VALUE ary, VALUE elem)
Special case of rb_ary_cat() that it adds only one element.
VALUE rb_assoc_new(VALUE car, VALUE cdr)
Identical to rb_ary_new_from_values(), except it expects exactly two parameters.
void rb_ary_store(VALUE ary, long key, VALUE val)
Destructively stores the passed value to the passed array's passed index.
int rb_uv_to_utf8(char buf[6], unsigned long uv)
Encodes a Unicode codepoint into its UTF-8 representation.
Definition pack.c:1691
static int rb_check_arity(int argc, int min, int max)
Ensures that the passed integer is in the passed range.
Definition error.h:284
VALUE rb_backref_get(void)
Queries the last match, or Regexp.last_match, or the $~.
Definition vm.c:2037
void rb_backref_set(VALUE md)
Updates $~.
Definition vm.c:2043
VALUE rb_range_beg_len(VALUE range, long *begp, long *lenp, long len, int err)
Deconstructs a numerical range.
Definition range.c:1949
int rb_reg_backref_number(VALUE match, VALUE backref)
Queries the index of the given named capture.
Definition re.c:1286
int rb_reg_options(VALUE re)
Queries the options of the passed regular expression.
Definition re.c:4360
VALUE rb_reg_last_match(VALUE md)
This just returns the argument, stringified.
Definition re.c:1991
void rb_match_busy(VALUE md)
Asserts that the given MatchData is "occupied".
Definition re.c:1532
VALUE rb_reg_nth_match(int n, VALUE md)
Queries the nth captured substring.
Definition re.c:1967
VALUE rb_reg_match_post(VALUE md)
The portion of the original string after the given match.
Definition re.c:2046
VALUE rb_reg_nth_defined(int n, VALUE md)
Identical to rb_reg_nth_match(), except it just returns Boolean.
Definition re.c:1951
VALUE rb_reg_match_pre(VALUE md)
The portion of the original string before the given match.
Definition re.c:2015
VALUE rb_reg_new_str(VALUE src, int opts)
Identical to rb_reg_new(), except it takes the expression in Ruby's string instead of C's.
Definition re.c:3492
VALUE rb_reg_match_last(VALUE md)
The portion of the original string that captured at the very last.
Definition re.c:2075
VALUE rb_reg_new(const char *src, long len, int opts)
Creates a new Regular expression.
Definition re.c:3544
#define rb_hash_uint(h, i)
Just another name of st_hash_uint.
Definition string.h:943
#define rb_hash_end(h)
Just another name of st_hash_end.
Definition string.h:946
VALUE rb_str_append(VALUE dst, VALUE src)
Identical to rb_str_buf_append(), except it converts the right hand side before concatenating.
Definition string.c:3836
VALUE rb_str_subseq(VALUE str, long beg, long len)
Identical to rb_str_substr(), except the numbers are interpreted as byte offsets instead of character...
Definition string.c:3189
st_index_t rb_memhash(const void *ptr, long len)
This is a universal hash function.
Definition random.c:1791
#define rb_str_new(str, len)
Allocates an instance of rb_cString.
Definition string.h:1499
#define rb_str_buf_cat
Just another name of rb_str_cat.
Definition string.h:1682
VALUE rb_str_dup(VALUE str)
Duplicates a string.
Definition string.c:1996
st_index_t rb_str_hash(VALUE str)
Calculates a hash value of a string.
Definition string.c:4185
VALUE rb_str_buf_append(VALUE dst, VALUE src)
Identical to rb_str_cat_cstr(), except it takes Ruby's string instead of C's.
Definition string.c:3802
VALUE rb_str_equal(VALUE str1, VALUE str2)
Equality of two strings.
Definition string.c:4306
st_index_t rb_hash_start(st_index_t i)
Starts a series of hashing.
Definition random.c:1785
VALUE rb_str_inspect(VALUE str)
Generates a "readable" version of the receiver.
Definition string.c:7266
VALUE rb_str_buf_new(long capa)
Allocates a "string buffer".
Definition string.c:1720
VALUE rb_str_intern(VALUE str)
Identical to rb_to_symbol(), except it assumes the receiver being an instance of RString.
Definition symbol.c:968
VALUE rb_class_path(VALUE mod)
Identical to rb_mod_name(), except it returns #<Class: ...> style inspection for anonymous modules.
Definition variable.c:380
static ID rb_intern_const(const char *str)
This is a "tiny optimisation" over rb_intern().
Definition symbol.h:285
VALUE rb_sym2str(VALUE symbol)
Obtain a frozen string representation of a symbol (not including the leading colon).
Definition symbol.c:1024
int capa
Designed capacity of the buffer.
Definition io.h:11
int len
Length of the buffer.
Definition io.h:8
long rb_reg_search(VALUE re, VALUE str, long pos, int dir)
Runs the passed regular expression over the passed string.
Definition re.c:1896
regex_t * rb_reg_prepare_re(VALUE re, VALUE str)
Exercises various checks and preprocesses so that the given regular expression can be applied to the ...
Definition re.c:1671
long rb_reg_adjust_startpos(VALUE re, VALUE str, long pos, int dir)
Tell us if this is a wrong idea, but it seems this function has no usage at all.
Definition re.c:1773
OnigPosition rb_reg_onig_match(VALUE re, VALUE str, OnigPosition(*match)(regex_t *reg, VALUE str, struct re_registers *regs, void *args), void *args, struct re_registers *regs)
Runs a regular expression match using function match.
Definition re.c:1739
VALUE rb_reg_regcomp(VALUE str)
Creates a new instance of rb_cRegexp.
Definition re.c:3566
VALUE rb_reg_quote(VALUE str)
Escapes any characters that would have special meaning in a regular expression.
Definition re.c:4240
int rb_reg_region_copy(struct re_registers *dst, const struct re_registers *src)
Duplicates a match data.
Definition re.c:993
#define MEMCPY(p1, p2, type, n)
Handy macro to call memcpy.
Definition memory.h:372
#define ALLOCA_N(type, n)
Definition memory.h:292
#define RB_ALLOCV_N(type, v, n)
Allocates a memory region, possibly on stack.
Definition memory.h:336
#define MEMZERO(p, type, n)
Handy macro to erase a region of memory.
Definition memory.h:360
#define RB_GC_GUARD(v)
Prevents premature destruction of local objects.
Definition memory.h:167
#define RB_ALLOCV_END(v)
Polite way to declare that the given array is not used any longer.
Definition memory.h:349
#define RARRAY_LEN
Just another name of rb_array_len.
Definition rarray.h:51
#define RARRAY_AREF(a, i)
Definition rarray.h:403
static VALUE RBASIC_CLASS(VALUE obj)
Queries the class of an object.
Definition rbasic.h:166
#define RBASIC(obj)
Convenient casting macro.
Definition rbasic.h:40
#define RMATCH(obj)
Convenient casting macro.
Definition rmatch.h:37
#define RREGEXP(obj)
Convenient casting macro.
Definition rregexp.h:37
static VALUE RREGEXP_SRC(VALUE rexp)
Convenient getter function.
Definition rregexp.h:103
#define RREGEXP_PTR(obj)
Convenient accessor macro.
Definition rregexp.h:45
static long RREGEXP_SRC_LEN(VALUE rexp)
Convenient getter function.
Definition rregexp.h:144
static char * RREGEXP_SRC_PTR(VALUE rexp)
Convenient getter function.
Definition rregexp.h:125
#define StringValue(v)
Ensures that the parameter object is a String.
Definition rstring.h:66
static char * RSTRING_END(VALUE str)
Queries the end of the contents pointer of the string.
Definition rstring.h:409
#define RSTRING_GETMEM(str, ptrvar, lenvar)
Convenient macro to obtain the contents and length at once.
Definition rstring.h:450
#define RTEST
This is an old name of RB_TEST.
#define _(args)
This was a transition path from K&R to ANSI.
Definition stdarg.h:35
Ruby object's base components.
Definition rbasic.h:69
VALUE flags
Per-object flags.
Definition rbasic.h:81
Regular expression execution context.
Definition rmatch.h:79
VALUE regexp
The expression of this match.
Definition rmatch.h:92
union RMatch::@55 as
"Registers" of a match.
struct rmatch_offset * char_offset
Capture group offsets, in C array.
Definition rmatch.h:98
int char_offset_num_allocated
Number of rmatch_offset that ::rmatch::char_offset holds.
Definition rmatch.h:95
int num_regs
Number of capture-group registers.
Definition rmatch.h:101
int capa
Capacity of as.embed, in OnigPosition slots.
Definition rmatch.h:104
VALUE str
The target string that the match was made against.
Definition rmatch.h:87
Ruby's regular expression.
Definition rregexp.h:60
struct RBasic basic
Basic part, including flags and class.
Definition rregexp.h:63
const VALUE src
Source code of this expression.
Definition rregexp.h:74
unsigned long usecnt
Reference count.
Definition rregexp.h:90
struct re_pattern_buffer * ptr
The pattern buffer.
Definition rregexp.h:71
Definition re.c:1051
Represents the region of a capture group.
Definition rmatch.h:65
long beg
Beginning of a group.
Definition rmatch.h:66
long end
End of a group.
Definition rmatch.h:67
uintptr_t ID
Type that represents a Ruby identifier such as a variable name.
Definition value.h:52
#define SIZEOF_VALUE
Identical to sizeof(VALUE), except it is a macro that can also be used inside of preprocessor directi...
Definition value.h:69
uintptr_t VALUE
Type that represents a Ruby object.
Definition value.h:40
static void Check_Type(VALUE v, enum ruby_value_type t)
Identical to RB_TYPE_P(), except it raises exceptions on predication failure.
Definition value_type.h:433
static bool RB_TYPE_P(VALUE obj, enum ruby_value_type t)
Queries if the given object is of given type.
Definition value_type.h:376