Coverage Report

Created: 2025-11-16 07:09

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/pcre2-10.39/src/pcre2_study.c
Line
Count
Source
1
/*************************************************
2
*      Perl-Compatible Regular Expressions       *
3
*************************************************/
4
5
/* PCRE is a library of functions to support regular expressions whose syntax
6
and semantics are as close as possible to those of the Perl 5 language.
7
8
                       Written by Philip Hazel
9
     Original API code Copyright (c) 1997-2012 University of Cambridge
10
          New API code Copyright (c) 2016-2020 University of Cambridge
11
12
-----------------------------------------------------------------------------
13
Redistribution and use in source and binary forms, with or without
14
modification, are permitted provided that the following conditions are met:
15
16
    * Redistributions of source code must retain the above copyright notice,
17
      this list of conditions and the following disclaimer.
18
19
    * Redistributions in binary form must reproduce the above copyright
20
      notice, this list of conditions and the following disclaimer in the
21
      documentation and/or other materials provided with the distribution.
22
23
    * Neither the name of the University of Cambridge nor the names of its
24
      contributors may be used to endorse or promote products derived from
25
      this software without specific prior written permission.
26
27
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
28
AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
29
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
30
ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
31
LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32
CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33
SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34
INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35
CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36
ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37
POSSIBILITY OF SUCH DAMAGE.
38
-----------------------------------------------------------------------------
39
*/
40
41
/* This module contains functions for scanning a compiled pattern and
42
collecting data (e.g. minimum matching length). */
43
44
45
#ifdef HAVE_CONFIG_H
46
#include "config.h"
47
#endif
48
49
#include "pcre2_internal.h"
50
51
/* The maximum remembered capturing brackets minimum. */
52
53
872k
#define MAX_CACHE_BACKREF 128
54
55
/* Set a bit in the starting code unit bit map. */
56
57
2.09M
#define SET_BIT(c) re->start_bitmap[(c)/8] |= (1u << ((c)&7))
58
59
/* Returns from set_start_bits() */
60
61
enum { SSB_FAIL, SSB_DONE, SSB_CONTINUE, SSB_UNKNOWN, SSB_TOODEEP };
62
63
64
/*************************************************
65
*   Find the minimum subject length for a group  *
66
*************************************************/
67
68
/* Scan a parenthesized group and compute the minimum length of subject that
69
is needed to match it. This is a lower bound; it does not mean there is a
70
string of that length that matches. In UTF mode, the result is in characters
71
rather than code units. The field in a compiled pattern for storing the minimum
72
length is 16-bits long (on the grounds that anything longer than that is
73
pathological), so we give up when we reach that amount. This also means that
74
integer overflow for really crazy patterns cannot happen.
75
76
Backreference minimum lengths are cached to speed up multiple references. This
77
function is called only when the highest back reference in the pattern is less
78
than or equal to MAX_CACHE_BACKREF, which is one less than the size of the
79
caching vector. The zeroth element contains the number of the highest set
80
value.
81
82
Arguments:
83
  re              compiled pattern block
84
  code            pointer to start of group (the bracket)
85
  startcode       pointer to start of the whole pattern's code
86
  utf             UTF flag
87
  recurses        chain of recurse_check to catch mutual recursion
88
  countptr        pointer to call count (to catch over complexity)
89
  backref_cache   vector for caching back references.
90
91
This function is no longer called when the pattern contains (*ACCEPT); however,
92
the old code for returning -1 is retained, just in case.
93
94
Returns:   the minimum length
95
           -1 \C in UTF-8 mode
96
              or (*ACCEPT)
97
              or pattern too complicated
98
           -2 internal error (missing capturing bracket)
99
           -3 internal error (opcode not listed)
100
*/
101
102
static int
103
find_minlength(const pcre2_real_code *re, PCRE2_SPTR code,
104
  PCRE2_SPTR startcode, BOOL utf, recurse_check *recurses, int *countptr,
105
  int *backref_cache)
106
9.11M
{
107
9.11M
int length = -1;
108
9.11M
int branchlength = 0;
109
9.11M
int prev_cap_recno = -1;
110
9.11M
int prev_cap_d = 0;
111
9.11M
int prev_recurse_recno = -1;
112
9.11M
int prev_recurse_d = 0;
113
9.11M
uint32_t once_fudge = 0;
114
9.11M
BOOL had_recurse = FALSE;
115
9.11M
BOOL dupcapused = (re->flags & PCRE2_DUPCAPUSED) != 0;
116
9.11M
PCRE2_SPTR nextbranch = code + GET(code, 1);
117
9.11M
PCRE2_UCHAR *cc = (PCRE2_UCHAR *)code + 1 + LINK_SIZE;
118
9.11M
recurse_check this_recurse;
119
120
/* If this is a "could be empty" group, its minimum length is 0. */
121
122
9.11M
if (*code >= OP_SBRA && *code <= OP_SCOND) return 0;
123
124
/* Skip over capturing bracket number */
125
126
9.05M
if (*code == OP_CBRA || *code == OP_CBRAPOS) cc += IMM2_SIZE;
127
128
/* A large and/or complex regex can take too long to process. */
129
130
9.05M
if ((*countptr)++ > 1000) return -1;
131
132
/* Scan along the opcodes for this branch. If we get to the end of the branch,
133
check the length against that of the other branches. If the accumulated length
134
passes 16-bits, reset to that value and skip the rest of the branch. */
135
136
9.05M
for (;;)
137
73.1M
  {
138
73.1M
  int d, min, recno;
139
73.1M
  PCRE2_UCHAR op, *cs, *ce;
140
141
73.1M
  if (branchlength >= UINT16_MAX)
142
4.54k
    {
143
4.54k
    branchlength = UINT16_MAX;
144
4.54k
    cc = (PCRE2_UCHAR *)nextbranch;
145
4.54k
    }
146
147
73.1M
  op = *cc;
148
73.1M
  switch (op)
149
73.1M
    {
150
25.9k
    case OP_COND:
151
29.8k
    case OP_SCOND:
152
153
    /* If there is only one branch in a condition, the implied branch has zero
154
    length, so we don't add anything. This covers the DEFINE "condition"
155
    automatically. If there are two branches we can treat it the same as any
156
    other non-capturing subpattern. */
157
158
29.8k
    cs = cc + GET(cc, 1);
159
29.8k
    if (*cs != OP_ALT)
160
14.8k
      {
161
14.8k
      cc = cs + 1 + LINK_SIZE;
162
14.8k
      break;
163
14.8k
      }
164
15.0k
    goto PROCESS_NON_CAPTURE;
165
166
6.14M
    case OP_BRA:
167
    /* There's a special case of OP_BRA, when it is wrapped round a repeated
168
    OP_RECURSE. We'd like to process the latter at this level so that
169
    remembering the value works for repeated cases. So we do nothing, but
170
    set a fudge value to skip over the OP_KET after the recurse. */
171
172
6.14M
    if (cc[1+LINK_SIZE] == OP_RECURSE && cc[2*(1+LINK_SIZE)] == OP_KET)
173
4.74k
      {
174
4.74k
      once_fudge = 1 + LINK_SIZE;
175
4.74k
      cc += 1 + LINK_SIZE;
176
4.74k
      break;
177
4.74k
      }
178
    /* Fall through */
179
180
6.21M
    case OP_ONCE:
181
6.22M
    case OP_SCRIPT_RUN:
182
6.24M
    case OP_SBRA:
183
6.25M
    case OP_BRAPOS:
184
6.26M
    case OP_SBRAPOS:
185
6.27M
    PROCESS_NON_CAPTURE:
186
6.27M
    d = find_minlength(re, cc, startcode, utf, recurses, countptr,
187
6.27M
      backref_cache);
188
6.27M
    if (d < 0) return d;
189
6.27M
    branchlength += d;
190
8.80M
    do cc += GET(cc, 1); while (*cc == OP_ALT);
191
6.27M
    cc += 1 + LINK_SIZE;
192
6.27M
    break;
193
194
    /* To save time for repeated capturing subpatterns, we remember the
195
    length of the previous one. Unfortunately we can't do the same for
196
    the unnumbered ones above. Nor can we do this if (?| is present in the
197
    pattern because captures with the same number are not then identical. */
198
199
1.97M
    case OP_CBRA:
200
1.99M
    case OP_SCBRA:
201
2.00M
    case OP_CBRAPOS:
202
2.01M
    case OP_SCBRAPOS:
203
2.01M
    recno = (int)GET2(cc, 1+LINK_SIZE);
204
2.01M
    if (dupcapused || recno != prev_cap_recno)
205
1.72M
      {
206
1.72M
      prev_cap_recno = recno;
207
1.72M
      prev_cap_d = find_minlength(re, cc, startcode, utf, recurses, countptr,
208
1.72M
        backref_cache);
209
1.72M
      if (prev_cap_d < 0) return prev_cap_d;
210
1.72M
      }
211
2.00M
    branchlength += prev_cap_d;
212
2.62M
    do cc += GET(cc, 1); while (*cc == OP_ALT);
213
2.00M
    cc += 1 + LINK_SIZE;
214
2.00M
    break;
215
216
    /* ACCEPT makes things far too complicated; we have to give up. In fact,
217
    from 10.34 onwards, if a pattern contains (*ACCEPT), this function is not
218
    used. However, leave the code in place, just in case. */
219
220
0
    case OP_ACCEPT:
221
0
    case OP_ASSERT_ACCEPT:
222
0
    return -1;
223
224
    /* Reached end of a branch; if it's a ket it is the end of a nested
225
    call. If it's ALT it is an alternation in a nested call. If it is END it's
226
    the end of the outer call. All can be handled by the same code. If the
227
    length of any branch is zero, there is no need to scan any subsequent
228
    branches. */
229
230
1.75M
    case OP_ALT:
231
10.1M
    case OP_KET:
232
10.1M
    case OP_KETRMAX:
233
10.1M
    case OP_KETRMIN:
234
10.1M
    case OP_KETRPOS:
235
10.1M
    case OP_END:
236
10.1M
    if (length < 0 || (!had_recurse && branchlength < length))
237
9.90M
      length = branchlength;
238
10.1M
    if (op != OP_ALT || length == 0) return length;
239
1.11M
    nextbranch = cc + GET(cc, 1);
240
1.11M
    cc += 1 + LINK_SIZE;
241
1.11M
    branchlength = 0;
242
1.11M
    had_recurse = FALSE;
243
1.11M
    break;
244
245
    /* Skip over assertive subpatterns */
246
247
175k
    case OP_ASSERT:
248
180k
    case OP_ASSERT_NOT:
249
190k
    case OP_ASSERTBACK:
250
240k
    case OP_ASSERTBACK_NOT:
251
423k
    case OP_ASSERT_NA:
252
435k
    case OP_ASSERTBACK_NA:
253
1.58M
    do cc += GET(cc, 1); while (*cc == OP_ALT);
254
    /* Fall through */
255
256
    /* Skip over things that don't match chars */
257
258
435k
    case OP_REVERSE:
259
439k
    case OP_CREF:
260
445k
    case OP_DNCREF:
261
448k
    case OP_RREF:
262
449k
    case OP_DNRREF:
263
449k
    case OP_FALSE:
264
449k
    case OP_TRUE:
265
454k
    case OP_CALLOUT:
266
473k
    case OP_SOD:
267
479k
    case OP_SOM:
268
495k
    case OP_EOD:
269
503k
    case OP_EODN:
270
1.51M
    case OP_CIRC:
271
1.54M
    case OP_CIRCM:
272
1.93M
    case OP_DOLL:
273
1.94M
    case OP_DOLLM:
274
1.94M
    case OP_NOT_WORD_BOUNDARY:
275
1.95M
    case OP_WORD_BOUNDARY:
276
1.95M
    cc += PRIV(OP_lengths)[*cc];
277
1.95M
    break;
278
279
9.16k
    case OP_CALLOUT_STR:
280
9.16k
    cc += GET(cc, 1 + 2*LINK_SIZE);
281
9.16k
    break;
282
283
    /* Skip over a subpattern that has a {0} or {0,x} quantifier */
284
285
97.1k
    case OP_BRAZERO:
286
105k
    case OP_BRAMINZERO:
287
111k
    case OP_BRAPOSZERO:
288
117k
    case OP_SKIPZERO:
289
117k
    cc += PRIV(OP_lengths)[*cc];
290
213k
    do cc += GET(cc, 1); while (*cc == OP_ALT);
291
117k
    cc += 1 + LINK_SIZE;
292
117k
    break;
293
294
    /* Handle literal characters and + repetitions */
295
296
30.1M
    case OP_CHAR:
297
39.9M
    case OP_CHARI:
298
39.9M
    case OP_NOT:
299
39.9M
    case OP_NOTI:
300
40.4M
    case OP_PLUS:
301
40.5M
    case OP_PLUSI:
302
40.5M
    case OP_MINPLUS:
303
40.5M
    case OP_MINPLUSI:
304
40.9M
    case OP_POSPLUS:
305
41.0M
    case OP_POSPLUSI:
306
41.0M
    case OP_NOTPLUS:
307
41.0M
    case OP_NOTPLUSI:
308
41.0M
    case OP_NOTMINPLUS:
309
41.0M
    case OP_NOTMINPLUSI:
310
41.0M
    case OP_NOTPOSPLUS:
311
41.0M
    case OP_NOTPOSPLUSI:
312
41.0M
    branchlength++;
313
41.0M
    cc += 2;
314
41.0M
#ifdef SUPPORT_UNICODE
315
41.0M
    if (utf && HAS_EXTRALEN(cc[-1])) cc += GET_EXTRALEN(cc[-1]);
316
41.0M
#endif
317
41.0M
    break;
318
319
516k
    case OP_TYPEPLUS:
320
529k
    case OP_TYPEMINPLUS:
321
1.09M
    case OP_TYPEPOSPLUS:
322
1.09M
    branchlength++;
323
1.09M
    cc += (cc[1] == OP_PROP || cc[1] == OP_NOTPROP)? 4 : 2;
324
1.09M
    break;
325
326
    /* Handle exact repetitions. The count is already in characters, but we
327
    may need to skip over a multibyte character in UTF mode.  */
328
329
201k
    case OP_EXACT:
330
215k
    case OP_EXACTI:
331
218k
    case OP_NOTEXACT:
332
225k
    case OP_NOTEXACTI:
333
225k
    branchlength += GET2(cc,1);
334
225k
    cc += 2 + IMM2_SIZE;
335
225k
#ifdef SUPPORT_UNICODE
336
225k
    if (utf && HAS_EXTRALEN(cc[-1])) cc += GET_EXTRALEN(cc[-1]);
337
225k
#endif
338
225k
    break;
339
340
39.7k
    case OP_TYPEEXACT:
341
39.7k
    branchlength += GET2(cc,1);
342
39.7k
    cc += 2 + IMM2_SIZE + ((cc[1 + IMM2_SIZE] == OP_PROP
343
36.6k
      || cc[1 + IMM2_SIZE] == OP_NOTPROP)? 2 : 0);
344
39.7k
    break;
345
346
    /* Handle single-char non-literal matchers */
347
348
182k
    case OP_PROP:
349
451k
    case OP_NOTPROP:
350
451k
    cc += 2;
351
    /* Fall through */
352
353
463k
    case OP_NOT_DIGIT:
354
507k
    case OP_DIGIT:
355
527k
    case OP_NOT_WHITESPACE:
356
987k
    case OP_WHITESPACE:
357
1.00M
    case OP_NOT_WORDCHAR:
358
1.03M
    case OP_WORDCHAR:
359
1.45M
    case OP_ANY:
360
1.55M
    case OP_ALLANY:
361
1.56M
    case OP_EXTUNI:
362
1.60M
    case OP_HSPACE:
363
1.63M
    case OP_NOT_HSPACE:
364
1.64M
    case OP_VSPACE:
365
1.66M
    case OP_NOT_VSPACE:
366
1.66M
    branchlength++;
367
1.66M
    cc++;
368
1.66M
    break;
369
370
    /* "Any newline" might match two characters, but it also might match just
371
    one. */
372
373
14.0k
    case OP_ANYNL:
374
14.0k
    branchlength += 1;
375
14.0k
    cc++;
376
14.0k
    break;
377
378
    /* The single-byte matcher means we can't proceed in UTF mode. (In
379
    non-UTF mode \C will actually be turned into OP_ALLANY, so won't ever
380
    appear, but leave the code, just in case.) */
381
382
1.55k
    case OP_ANYBYTE:
383
1.55k
#ifdef SUPPORT_UNICODE
384
1.55k
    if (utf) return -1;
385
0
#endif
386
0
    branchlength++;
387
0
    cc++;
388
0
    break;
389
390
    /* For repeated character types, we have to test for \p and \P, which have
391
    an extra two bytes of parameters. */
392
393
530k
    case OP_TYPESTAR:
394
552k
    case OP_TYPEMINSTAR:
395
606k
    case OP_TYPEQUERY:
396
612k
    case OP_TYPEMINQUERY:
397
1.97M
    case OP_TYPEPOSSTAR:
398
1.99M
    case OP_TYPEPOSQUERY:
399
1.99M
    if (cc[1] == OP_PROP || cc[1] == OP_NOTPROP) cc += 2;
400
1.99M
    cc += PRIV(OP_lengths)[op];
401
1.99M
    break;
402
403
12.0k
    case OP_TYPEUPTO:
404
15.0k
    case OP_TYPEMINUPTO:
405
22.7k
    case OP_TYPEPOSUPTO:
406
22.7k
    if (cc[1 + IMM2_SIZE] == OP_PROP
407
18.8k
      || cc[1 + IMM2_SIZE] == OP_NOTPROP) cc += 2;
408
22.7k
    cc += PRIV(OP_lengths)[op];
409
22.7k
    break;
410
411
    /* Check a class for variable quantification */
412
413
4.37M
    case OP_CLASS:
414
4.43M
    case OP_NCLASS:
415
4.43M
#ifdef SUPPORT_WIDE_CHARS
416
4.71M
    case OP_XCLASS:
417
    /* The original code caused an unsigned overflow in 64 bit systems,
418
    so now we use a conditional statement. */
419
4.71M
    if (op == OP_XCLASS)
420
275k
      cc += GET(cc, 1);
421
4.43M
    else
422
4.43M
      cc += PRIV(OP_lengths)[OP_CLASS];
423
#else
424
    cc += PRIV(OP_lengths)[OP_CLASS];
425
#endif
426
427
4.71M
    switch (*cc)
428
4.71M
      {
429
156k
      case OP_CRPLUS:
430
272k
      case OP_CRMINPLUS:
431
488k
      case OP_CRPOSPLUS:
432
488k
      branchlength++;
433
      /* Fall through */
434
435
590k
      case OP_CRSTAR:
436
603k
      case OP_CRMINSTAR:
437
633k
      case OP_CRQUERY:
438
642k
      case OP_CRMINQUERY:
439
948k
      case OP_CRPOSSTAR:
440
964k
      case OP_CRPOSQUERY:
441
964k
      cc++;
442
964k
      break;
443
444
322k
      case OP_CRRANGE:
445
328k
      case OP_CRMINRANGE:
446
405k
      case OP_CRPOSRANGE:
447
405k
      branchlength += GET2(cc,1);
448
405k
      cc += 1 + 2 * IMM2_SIZE;
449
405k
      break;
450
451
3.34M
      default:
452
3.34M
      branchlength++;
453
3.34M
      break;
454
4.71M
      }
455
4.71M
    break;
456
457
    /* Backreferences and subroutine calls (OP_RECURSE) are treated in the same
458
    way: we find the minimum length for the subpattern. A recursion
459
    (backreference or subroutine) causes an a flag to be set that causes the
460
    length of this branch to be ignored. The logic is that a recursion can only
461
    make sense if there is another alternative that stops the recursing. That
462
    will provide the minimum length (when no recursion happens).
463
464
    If PCRE2_MATCH_UNSET_BACKREF is set, a backreference to an unset bracket
465
    matches an empty string (by default it causes a matching failure), so in
466
    that case we must set the minimum length to zero.
467
468
    For backreferenes, if duplicate numbers are present in the pattern we check
469
    for a reference to a duplicate. If it is, we don't know which version will
470
    be referenced, so we have to set the minimum length to zero. */
471
472
    /* Duplicate named pattern back reference. */
473
474
4.71M
    case OP_DNREF:
475
15.7k
    case OP_DNREFI:
476
15.7k
    if (!dupcapused && (re->overall_options & PCRE2_MATCH_UNSET_BACKREF) == 0)
477
13.9k
      {
478
13.9k
      int count = GET2(cc, 1+IMM2_SIZE);
479
13.9k
      PCRE2_UCHAR *slot =
480
13.9k
        (PCRE2_UCHAR *)((uint8_t *)re + sizeof(pcre2_real_code)) +
481
13.9k
          GET2(cc, 1) * re->name_entry_size;
482
483
13.9k
      d = INT_MAX;
484
485
      /* Scan all groups with the same name; find the shortest. */
486
487
58.0k
      while (count-- > 0)
488
51.4k
        {
489
51.4k
        int dd, i;
490
51.4k
        recno = GET2(slot, 0);
491
492
51.4k
        if (recno <= backref_cache[0] && backref_cache[recno] >= 0)
493
35.6k
          dd = backref_cache[recno];
494
15.7k
        else
495
15.7k
          {
496
15.7k
          ce = cs = (PCRE2_UCHAR *)PRIV(find_bracket)(startcode, utf, recno);
497
15.7k
          if (cs == NULL) return -2;
498
17.1k
          do ce += GET(ce, 1); while (*ce == OP_ALT);
499
500
15.7k
          dd = 0;
501
15.7k
          if (!dupcapused ||
502
0
              (PCRE2_UCHAR *)PRIV(find_bracket)(ce, utf, recno) == NULL)
503
15.7k
            {
504
15.7k
            if (cc > cs && cc < ce)    /* Simple recursion */
505
2.48k
              {
506
2.48k
              had_recurse = TRUE;
507
2.48k
              }
508
13.2k
            else
509
13.2k
              {
510
13.2k
              recurse_check *r = recurses;
511
28.9k
              for (r = recurses; r != NULL; r = r->prev)
512
16.7k
                if (r->group == cs) break;
513
13.2k
              if (r != NULL)           /* Mutual recursion */
514
1.06k
                {
515
1.06k
                had_recurse = TRUE;
516
1.06k
                }
517
12.1k
              else
518
12.1k
                {
519
12.1k
                this_recurse.prev = recurses;  /* No recursion */
520
12.1k
                this_recurse.group = cs;
521
12.1k
                dd = find_minlength(re, cs, startcode, utf, &this_recurse,
522
12.1k
                  countptr, backref_cache);
523
12.1k
                if (dd < 0) return dd;
524
12.1k
                }
525
13.2k
              }
526
15.7k
            }
527
528
15.6k
          backref_cache[recno] = dd;
529
44.2k
          for (i = backref_cache[0] + 1; i < recno; i++) backref_cache[i] = -1;
530
15.6k
          backref_cache[0] = recno;
531
15.6k
          }
532
533
51.3k
        if (dd < d) d = dd;
534
51.3k
        if (d <= 0) break;    /* No point looking at any more */
535
44.1k
        slot += re->name_entry_size;
536
44.1k
        }
537
13.9k
      }
538
1.86k
    else d = 0;
539
15.7k
    cc += 1 + 2*IMM2_SIZE;
540
15.7k
    goto REPEAT_BACK_REFERENCE;
541
542
    /* Single back reference by number. References by name are converted to by
543
    number when there is no duplication. */
544
545
220k
    case OP_REF:
546
313k
    case OP_REFI:
547
313k
    recno = GET2(cc, 1);
548
313k
    if (recno <= backref_cache[0] && backref_cache[recno] >= 0)
549
122k
      d = backref_cache[recno];
550
190k
    else
551
190k
      {
552
190k
      int i;
553
190k
      d = 0;
554
555
190k
      if ((re->overall_options & PCRE2_MATCH_UNSET_BACKREF) == 0)
556
190k
        {
557
190k
        ce = cs = (PCRE2_UCHAR *)PRIV(find_bracket)(startcode, utf, recno);
558
190k
        if (cs == NULL) return -2;
559
257k
        do ce += GET(ce, 1); while (*ce == OP_ALT);
560
561
190k
        if (!dupcapused ||
562
15.5k
            (PCRE2_UCHAR *)PRIV(find_bracket)(ce, utf, recno) == NULL)
563
189k
          {
564
189k
          if (cc > cs && cc < ce)    /* Simple recursion */
565
8.81k
            {
566
8.81k
            had_recurse = TRUE;
567
8.81k
            }
568
180k
          else
569
180k
            {
570
180k
            recurse_check *r = recurses;
571
206k
            for (r = recurses; r != NULL; r = r->prev) if (r->group == cs) break;
572
180k
            if (r != NULL)           /* Mutual recursion */
573
2.13k
              {
574
2.13k
              had_recurse = TRUE;
575
2.13k
              }
576
178k
            else                     /* No recursion */
577
178k
              {
578
178k
              this_recurse.prev = recurses;
579
178k
              this_recurse.group = cs;
580
178k
              d = find_minlength(re, cs, startcode, utf, &this_recurse, countptr,
581
178k
                backref_cache);
582
178k
              if (d < 0) return d;
583
178k
              }
584
180k
            }
585
189k
          }
586
190k
        }
587
588
190k
      backref_cache[recno] = d;
589
380k
      for (i = backref_cache[0] + 1; i < recno; i++) backref_cache[i] = -1;
590
190k
      backref_cache[0] = recno;
591
190k
      }
592
593
312k
    cc += 1 + IMM2_SIZE;
594
595
    /* Handle repeated back references */
596
597
328k
    REPEAT_BACK_REFERENCE:
598
328k
    switch (*cc)
599
328k
      {
600
9.70k
      case OP_CRSTAR:
601
11.4k
      case OP_CRMINSTAR:
602
15.7k
      case OP_CRQUERY:
603
18.7k
      case OP_CRMINQUERY:
604
18.7k
      case OP_CRPOSSTAR:
605
18.7k
      case OP_CRPOSQUERY:
606
18.7k
      min = 0;
607
18.7k
      cc++;
608
18.7k
      break;
609
610
19.9k
      case OP_CRPLUS:
611
25.0k
      case OP_CRMINPLUS:
612
25.0k
      case OP_CRPOSPLUS:
613
25.0k
      min = 1;
614
25.0k
      cc++;
615
25.0k
      break;
616
617
2.25k
      case OP_CRRANGE:
618
6.21k
      case OP_CRMINRANGE:
619
6.21k
      case OP_CRPOSRANGE:
620
6.21k
      min = GET2(cc, 1);
621
6.21k
      cc += 1 + 2 * IMM2_SIZE;
622
6.21k
      break;
623
624
278k
      default:
625
278k
      min = 1;
626
278k
      break;
627
328k
      }
628
629
     /* Take care not to overflow: (1) min and d are ints, so check that their
630
     product is not greater than INT_MAX. (2) branchlength is limited to
631
     UINT16_MAX (checked at the top of the loop). */
632
633
328k
    if ((d > 0 && (INT_MAX/d) < min) || UINT16_MAX - branchlength < min*d)
634
1.30k
      branchlength = UINT16_MAX;
635
327k
    else branchlength += min * d;
636
328k
    break;
637
638
    /* Recursion always refers to the first occurrence of a subpattern with a
639
    given number. Therefore, we can always make use of caching, even when the
640
    pattern contains multiple subpatterns with the same number. */
641
642
252k
    case OP_RECURSE:
643
252k
    cs = ce = (PCRE2_UCHAR *)startcode + GET(cc, 1);
644
252k
    recno = GET2(cs, 1+LINK_SIZE);
645
252k
    if (recno == prev_recurse_recno)
646
15.3k
      {
647
15.3k
      branchlength += prev_recurse_d;
648
15.3k
      }
649
237k
    else
650
237k
      {
651
250k
      do ce += GET(ce, 1); while (*ce == OP_ALT);
652
237k
      if (cc > cs && cc < ce)    /* Simple recursion */
653
180k
        had_recurse = TRUE;
654
56.6k
      else
655
56.6k
        {
656
56.6k
        recurse_check *r = recurses;
657
408k
        for (r = recurses; r != NULL; r = r->prev) if (r->group == cs) break;
658
56.6k
        if (r != NULL)          /* Mutual recursion */
659
9.94k
          had_recurse = TRUE;
660
46.6k
        else
661
46.6k
          {
662
46.6k
          this_recurse.prev = recurses;
663
46.6k
          this_recurse.group = cs;
664
46.6k
          prev_recurse_d = find_minlength(re, cs, startcode, utf, &this_recurse,
665
46.6k
            countptr, backref_cache);
666
46.6k
          if (prev_recurse_d < 0) return prev_recurse_d;
667
46.0k
          prev_recurse_recno = recno;
668
46.0k
          branchlength += prev_recurse_d;
669
46.0k
          }
670
56.6k
        }
671
237k
      }
672
251k
    cc += 1 + LINK_SIZE + once_fudge;
673
251k
    once_fudge = 0;
674
251k
    break;
675
676
    /* Anything else does not or need not match a character. We can get the
677
    item's length from the table, but for those that can match zero occurrences
678
    of a character, we must take special action for UTF-8 characters. As it
679
    happens, the "NOT" versions of these opcodes are used at present only for
680
    ASCII characters, so they could be omitted from this list. However, in
681
    future that may change, so we include them here so as not to leave a
682
    gotcha for a future maintainer. */
683
684
8.15k
    case OP_UPTO:
685
12.9k
    case OP_UPTOI:
686
15.3k
    case OP_NOTUPTO:
687
18.9k
    case OP_NOTUPTOI:
688
25.8k
    case OP_MINUPTO:
689
27.6k
    case OP_MINUPTOI:
690
32.9k
    case OP_NOTMINUPTO:
691
35.2k
    case OP_NOTMINUPTOI:
692
50.4k
    case OP_POSUPTO:
693
55.9k
    case OP_POSUPTOI:
694
60.8k
    case OP_NOTPOSUPTO:
695
62.7k
    case OP_NOTPOSUPTOI:
696
697
202k
    case OP_STAR:
698
273k
    case OP_STARI:
699
276k
    case OP_NOTSTAR:
700
282k
    case OP_NOTSTARI:
701
339k
    case OP_MINSTAR:
702
351k
    case OP_MINSTARI:
703
354k
    case OP_NOTMINSTAR:
704
357k
    case OP_NOTMINSTARI:
705
725k
    case OP_POSSTAR:
706
831k
    case OP_POSSTARI:
707
833k
    case OP_NOTPOSSTAR:
708
836k
    case OP_NOTPOSSTARI:
709
710
873k
    case OP_QUERY:
711
908k
    case OP_QUERYI:
712
914k
    case OP_NOTQUERY:
713
919k
    case OP_NOTQUERYI:
714
932k
    case OP_MINQUERY:
715
936k
    case OP_MINQUERYI:
716
938k
    case OP_NOTMINQUERY:
717
942k
    case OP_NOTMINQUERYI:
718
1.04M
    case OP_POSQUERY:
719
1.09M
    case OP_POSQUERYI:
720
1.09M
    case OP_NOTPOSQUERY:
721
1.10M
    case OP_NOTPOSQUERYI:
722
723
1.10M
    cc += PRIV(OP_lengths)[op];
724
1.10M
#ifdef SUPPORT_UNICODE
725
1.10M
    if (utf && HAS_EXTRALEN(cc[-1])) cc += GET_EXTRALEN(cc[-1]);
726
1.10M
#endif
727
1.10M
    break;
728
729
    /* Skip these, but we need to add in the name length. */
730
731
6.05k
    case OP_MARK:
732
6.05k
    case OP_COMMIT_ARG:
733
6.05k
    case OP_PRUNE_ARG:
734
6.05k
    case OP_SKIP_ARG:
735
6.05k
    case OP_THEN_ARG:
736
6.05k
    cc += PRIV(OP_lengths)[op] + cc[1];
737
6.05k
    break;
738
739
    /* The remaining opcodes are just skipped over. */
740
741
0
    case OP_CLOSE:
742
0
    case OP_COMMIT:
743
7.64k
    case OP_FAIL:
744
7.64k
    case OP_PRUNE:
745
10.2k
    case OP_SET_SOM:
746
10.2k
    case OP_SKIP:
747
10.2k
    case OP_THEN:
748
10.2k
    cc += PRIV(OP_lengths)[op];
749
10.2k
    break;
750
751
    /* This should not occur: we list all opcodes explicitly so that when
752
    new ones get added they are properly considered. */
753
754
0
    default:
755
0
    return -3;
756
73.1M
    }
757
73.1M
  }
758
/* Control never gets here */
759
9.05M
}
760
761
762
763
/*************************************************
764
*      Set a bit and maybe its alternate case    *
765
*************************************************/
766
767
/* Given a character, set its first code unit's bit in the table, and also the
768
corresponding bit for the other version of a letter if we are caseless.
769
770
Arguments:
771
  re            points to the regex block
772
  p             points to the first code unit of the character
773
  caseless      TRUE if caseless
774
  utf           TRUE for UTF mode
775
  ucp           TRUE for UCP mode
776
777
Returns:        pointer after the character
778
*/
779
780
static PCRE2_SPTR
781
set_table_bit(pcre2_real_code *re, PCRE2_SPTR p, BOOL caseless, BOOL utf,
782
  BOOL ucp)
783
1.51M
{
784
1.51M
uint32_t c = *p++;   /* First code unit */
785
786
1.51M
(void)utf;           /* Stop compiler warnings when UTF not supported */
787
1.51M
(void)ucp;
788
789
/* In 16-bit and 32-bit modes, code units greater than 0xff set the bit for
790
0xff. */
791
792
#if PCRE2_CODE_UNIT_WIDTH != 8
793
if (c > 0xff) SET_BIT(0xff); else
794
#endif
795
796
1.51M
SET_BIT(c);
797
798
/* In UTF-8 or UTF-16 mode, pick up the remaining code units in order to find
799
the end of the character, even when caseless. */
800
801
1.51M
#ifdef SUPPORT_UNICODE
802
1.51M
if (utf)
803
228k
  {
804
228k
#if PCRE2_CODE_UNIT_WIDTH == 8
805
228k
  if (c >= 0xc0) GETUTF8INC(c, p);
806
#elif PCRE2_CODE_UNIT_WIDTH == 16
807
  if ((c & 0xfc00) == 0xd800) GETUTF16INC(c, p);
808
#endif
809
228k
  }
810
1.51M
#endif  /* SUPPORT_UNICODE */
811
812
/* If caseless, handle the other case of the character. */
813
814
1.51M
if (caseless)
815
302k
  {
816
302k
#ifdef SUPPORT_UNICODE
817
302k
  if (utf || ucp)
818
58.6k
    {
819
58.6k
    c = UCD_OTHERCASE(c);
820
58.6k
#if PCRE2_CODE_UNIT_WIDTH == 8
821
58.6k
    if (utf)
822
51.7k
      {
823
51.7k
      PCRE2_UCHAR buff[6];
824
51.7k
      (void)PRIV(ord2utf)(c, buff);
825
51.7k
      SET_BIT(buff[0]);
826
51.7k
      }
827
6.87k
    else if (c < 256) SET_BIT(c);
828
#else  /* 16-bit or 32-bit mode */
829
    if (c > 0xff) SET_BIT(0xff); else SET_BIT(c);
830
#endif
831
58.6k
    }
832
833
244k
  else
834
244k
#endif  /* SUPPORT_UNICODE */
835
836
  /* Not UTF or UCP */
837
838
244k
  if (MAX_255(c)) SET_BIT(re->tables[fcc_offset + c]);
839
302k
  }
840
841
1.51M
return p;
842
1.51M
}
843
844
845
846
/*************************************************
847
*     Set bits for a positive character type     *
848
*************************************************/
849
850
/* This function sets starting bits for a character type. In UTF-8 mode, we can
851
only do a direct setting for bytes less than 128, as otherwise there can be
852
confusion with bytes in the middle of UTF-8 characters. In a "traditional"
853
environment, the tables will only recognize ASCII characters anyway, but in at
854
least one Windows environment, some higher bytes bits were set in the tables.
855
So we deal with that case by considering the UTF-8 encoding.
856
857
Arguments:
858
  re             the regex block
859
  cbit type      the type of character wanted
860
  table_limit    32 for non-UTF-8; 16 for UTF-8
861
862
Returns:         nothing
863
*/
864
865
static void
866
set_type_bits(pcre2_real_code *re, int cbit_type, unsigned int table_limit)
867
427k
{
868
427k
uint32_t c;
869
12.6M
for (c = 0; c < table_limit; c++)
870
12.1M
  re->start_bitmap[c] |= re->tables[c+cbits_offset+cbit_type];
871
427k
#if defined SUPPORT_UNICODE && PCRE2_CODE_UNIT_WIDTH == 8
872
427k
if (table_limit == 32) return;
873
12.2M
for (c = 128; c < 256; c++)
874
12.1M
  {
875
12.1M
  if ((re->tables[cbits_offset + c/8] & (1u << (c&7))) != 0)
876
0
    {
877
0
    PCRE2_UCHAR buff[6];
878
0
    (void)PRIV(ord2utf)(c, buff);
879
0
    SET_BIT(buff[0]);
880
0
    }
881
12.1M
  }
882
94.7k
#endif  /* UTF-8 */
883
94.7k
}
884
885
886
/*************************************************
887
*     Set bits for a negative character type     *
888
*************************************************/
889
890
/* This function sets starting bits for a negative character type such as \D.
891
In UTF-8 mode, we can only do a direct setting for bytes less than 128, as
892
otherwise there can be confusion with bytes in the middle of UTF-8 characters.
893
Unlike in the positive case, where we can set appropriate starting bits for
894
specific high-valued UTF-8 characters, in this case we have to set the bits for
895
all high-valued characters. The lowest is 0xc2, but we overkill by starting at
896
0xc0 (192) for simplicity.
897
898
Arguments:
899
  re             the regex block
900
  cbit type      the type of character wanted
901
  table_limit    32 for non-UTF-8; 16 for UTF-8
902
903
Returns:         nothing
904
*/
905
906
static void
907
set_nottype_bits(pcre2_real_code *re, int cbit_type, unsigned int table_limit)
908
113k
{
909
113k
uint32_t c;
910
3.25M
for (c = 0; c < table_limit; c++)
911
3.14M
  re->start_bitmap[c] |= ~(re->tables[c+cbits_offset+cbit_type]);
912
113k
#if defined SUPPORT_UNICODE && PCRE2_CODE_UNIT_WIDTH == 8
913
270k
if (table_limit != 32) for (c = 24; c < 32; c++) re->start_bitmap[c] = 0xff;
914
113k
#endif
915
113k
}
916
917
918
919
/*************************************************
920
*      Create bitmap of starting code units      *
921
*************************************************/
922
923
/* This function scans a compiled unanchored expression recursively and
924
attempts to build a bitmap of the set of possible starting code units whose
925
values are less than 256. In 16-bit and 32-bit mode, values above 255 all cause
926
the 255 bit to be set. When calling set[_not]_type_bits() in UTF-8 (sic) mode
927
we pass a value of 16 rather than 32 as the final argument. (See comments in
928
those functions for the reason.)
929
930
The SSB_CONTINUE return is useful for parenthesized groups in patterns such as
931
(a*)b where the group provides some optional starting code units but scanning
932
must continue at the outer level to find at least one mandatory code unit. At
933
the outermost level, this function fails unless the result is SSB_DONE.
934
935
We restrict recursion (for nested groups) to 1000 to avoid stack overflow
936
issues.
937
938
Arguments:
939
  re           points to the compiled regex block
940
  code         points to an expression
941
  utf          TRUE if in UTF mode
942
  ucp          TRUE if in UCP mode
943
  depthptr     pointer to recurse depth
944
945
Returns:       SSB_FAIL     => Failed to find any starting code units
946
               SSB_DONE     => Found mandatory starting code units
947
               SSB_CONTINUE => Found optional starting code units
948
               SSB_UNKNOWN  => Hit an unrecognized opcode
949
               SSB_TOODEEP  => Recursion is too deep
950
*/
951
952
static int
953
set_start_bits(pcre2_real_code *re, PCRE2_SPTR code, BOOL utf, BOOL ucp,
954
  int *depthptr)
955
2.29M
{
956
2.29M
uint32_t c;
957
2.29M
int yield = SSB_DONE;
958
959
2.29M
#if defined SUPPORT_UNICODE && PCRE2_CODE_UNIT_WIDTH == 8
960
2.29M
int table_limit = utf? 16:32;
961
#else
962
int table_limit = 32;
963
#endif
964
965
2.29M
*depthptr += 1;
966
2.29M
if (*depthptr > 1000) return SSB_TOODEEP;
967
968
2.29M
do
969
3.66M
  {
970
3.66M
  BOOL try_next = TRUE;
971
3.66M
  PCRE2_SPTR tcode = code + 1 + LINK_SIZE;
972
973
3.66M
  if (*code == OP_CBRA || *code == OP_SCBRA ||
974
3.56M
      *code == OP_CBRAPOS || *code == OP_SCBRAPOS) tcode += IMM2_SIZE;
975
976
8.46M
  while (try_next)    /* Loop for items in this branch */
977
6.31M
    {
978
6.31M
    int rc;
979
6.31M
    uint8_t *classmap = NULL;
980
6.31M
#ifdef SUPPORT_WIDE_CHARS
981
6.31M
    PCRE2_UCHAR xclassflags;
982
6.31M
#endif
983
984
6.31M
    switch(*tcode)
985
6.31M
      {
986
      /* If we reach something we don't understand, it means a new opcode has
987
      been created that hasn't been added to this function. Hopefully this
988
      problem will be discovered during testing. */
989
990
0
      default:
991
0
      return SSB_UNKNOWN;
992
993
      /* Fail for a valid opcode that implies no starting bits. */
994
995
0
      case OP_ACCEPT:
996
0
      case OP_ASSERT_ACCEPT:
997
1.48k
      case OP_ALLANY:
998
18.4k
      case OP_ANY:
999
19.0k
      case OP_ANYBYTE:
1000
28.3k
      case OP_CIRCM:
1001
28.3k
      case OP_CLOSE:
1002
28.3k
      case OP_COMMIT:
1003
28.3k
      case OP_COMMIT_ARG:
1004
31.8k
      case OP_COND:
1005
32.3k
      case OP_CREF:
1006
32.3k
      case OP_FALSE:
1007
32.3k
      case OP_TRUE:
1008
32.4k
      case OP_DNCREF:
1009
32.6k
      case OP_DNREF:
1010
32.8k
      case OP_DNREFI:
1011
32.8k
      case OP_DNRREF:
1012
34.8k
      case OP_DOLL:
1013
35.9k
      case OP_DOLLM:
1014
35.9k
      case OP_END:
1015
39.7k
      case OP_EOD:
1016
40.3k
      case OP_EODN:
1017
46.7k
      case OP_EXTUNI:
1018
47.9k
      case OP_FAIL:
1019
49.8k
      case OP_MARK:
1020
52.9k
      case OP_NOT:
1021
53.6k
      case OP_NOTEXACT:
1022
54.3k
      case OP_NOTEXACTI:
1023
56.4k
      case OP_NOTI:
1024
57.4k
      case OP_NOTMINPLUS:
1025
58.3k
      case OP_NOTMINPLUSI:
1026
58.8k
      case OP_NOTMINQUERY:
1027
59.5k
      case OP_NOTMINQUERYI:
1028
60.3k
      case OP_NOTMINSTAR:
1029
60.9k
      case OP_NOTMINSTARI:
1030
61.7k
      case OP_NOTMINUPTO:
1031
62.4k
      case OP_NOTMINUPTOI:
1032
63.1k
      case OP_NOTPLUS:
1033
64.2k
      case OP_NOTPLUSI:
1034
65.1k
      case OP_NOTPOSPLUS:
1035
65.9k
      case OP_NOTPOSPLUSI:
1036
67.1k
      case OP_NOTPOSQUERY:
1037
67.7k
      case OP_NOTPOSQUERYI:
1038
68.7k
      case OP_NOTPOSSTAR:
1039
69.3k
      case OP_NOTPOSSTARI:
1040
70.3k
      case OP_NOTPOSUPTO:
1041
70.8k
      case OP_NOTPOSUPTOI:
1042
191k
      case OP_NOTPROP:
1043
191k
      case OP_NOTQUERY:
1044
193k
      case OP_NOTQUERYI:
1045
195k
      case OP_NOTSTAR:
1046
195k
      case OP_NOTSTARI:
1047
196k
      case OP_NOTUPTO:
1048
197k
      case OP_NOTUPTOI:
1049
199k
      case OP_NOT_HSPACE:
1050
200k
      case OP_NOT_VSPACE:
1051
200k
      case OP_PRUNE:
1052
200k
      case OP_PRUNE_ARG:
1053
202k
      case OP_RECURSE:
1054
205k
      case OP_REF:
1055
216k
      case OP_REFI:
1056
217k
      case OP_REVERSE:
1057
217k
      case OP_RREF:
1058
219k
      case OP_SCOND:
1059
220k
      case OP_SET_SOM:
1060
220k
      case OP_SKIP:
1061
220k
      case OP_SKIP_ARG:
1062
221k
      case OP_SOD:
1063
222k
      case OP_SOM:
1064
222k
      case OP_THEN:
1065
222k
      case OP_THEN_ARG:
1066
222k
      return SSB_FAIL;
1067
1068
      /* OP_CIRC happens only at the start of an anchored branch (multiline ^
1069
      uses OP_CIRCM). Skip over it. */
1070
1071
451k
      case OP_CIRC:
1072
451k
      tcode += PRIV(OP_lengths)[OP_CIRC];
1073
451k
      break;
1074
1075
      /* A "real" property test implies no starting bits, but the fake property
1076
      PT_CLIST identifies a list of characters. These lists are short, as they
1077
      are used for characters with more than one "other case", so there is no
1078
      point in recognizing them for OP_NOTPROP. */
1079
1080
18.4k
      case OP_PROP:
1081
18.4k
      if (tcode[1] != PT_CLIST) return SSB_FAIL;
1082
17.0k
        {
1083
17.0k
        const uint32_t *p = PRIV(ucd_caseless_sets) + tcode[2];
1084
75.0k
        while ((c = *p++) < NOTACHAR)
1085
57.9k
          {
1086
57.9k
#if defined SUPPORT_UNICODE && PCRE2_CODE_UNIT_WIDTH == 8
1087
57.9k
          if (utf)
1088
49.6k
            {
1089
49.6k
            PCRE2_UCHAR buff[6];
1090
49.6k
            (void)PRIV(ord2utf)(c, buff);
1091
49.6k
            c = buff[0];
1092
49.6k
            }
1093
57.9k
#endif
1094
57.9k
          if (c > 0xff) SET_BIT(0xff); else SET_BIT(c);
1095
57.9k
          }
1096
17.0k
        }
1097
17.0k
      try_next = FALSE;
1098
17.0k
      break;
1099
1100
      /* We can ignore word boundary tests. */
1101
1102
8.13k
      case OP_WORD_BOUNDARY:
1103
11.2k
      case OP_NOT_WORD_BOUNDARY:
1104
11.2k
      tcode++;
1105
11.2k
      break;
1106
1107
      /* If we hit a bracket or a positive lookahead assertion, recurse to set
1108
      bits from within the subpattern. If it can't find anything, we have to
1109
      give up. If it finds some mandatory character(s), we are done for this
1110
      branch. Otherwise, carry on scanning after the subpattern. */
1111
1112
994k
      case OP_BRA:
1113
1.00M
      case OP_SBRA:
1114
1.09M
      case OP_CBRA:
1115
1.09M
      case OP_SCBRA:
1116
1.10M
      case OP_BRAPOS:
1117
1.10M
      case OP_SBRAPOS:
1118
1.11M
      case OP_CBRAPOS:
1119
1.11M
      case OP_SCBRAPOS:
1120
1.12M
      case OP_ONCE:
1121
1.13M
      case OP_SCRIPT_RUN:
1122
1.16M
      case OP_ASSERT:
1123
1.17M
      case OP_ASSERT_NA:
1124
1.17M
      rc = set_start_bits(re, tcode, utf, ucp, depthptr);
1125
1.17M
      if (rc == SSB_DONE)
1126
120k
        {
1127
120k
        try_next = FALSE;
1128
120k
        }
1129
1.05M
      else if (rc == SSB_CONTINUE)
1130
1.02M
        {
1131
2.03M
        do tcode += GET(tcode, 1); while (*tcode == OP_ALT);
1132
1.02M
        tcode += 1 + LINK_SIZE;
1133
1.02M
        }
1134
24.9k
      else return rc;   /* FAIL, UNKNOWN, or TOODEEP */
1135
1.14M
      break;
1136
1137
      /* If we hit ALT or KET, it means we haven't found anything mandatory in
1138
      this branch, though we might have found something optional. For ALT, we
1139
      continue with the next alternative, but we have to arrange that the final
1140
      result from subpattern is SSB_CONTINUE rather than SSB_DONE. For KET,
1141
      return SSB_CONTINUE: if this is the top level, that indicates failure,
1142
      but after a nested subpattern, it causes scanning to continue. */
1143
1144
1.14M
      case OP_ALT:
1145
431k
      yield = SSB_CONTINUE;
1146
431k
      try_next = FALSE;
1147
431k
      break;
1148
1149
952k
      case OP_KET:
1150
973k
      case OP_KETRMAX:
1151
978k
      case OP_KETRMIN:
1152
990k
      case OP_KETRPOS:
1153
990k
      return SSB_CONTINUE;
1154
1155
      /* Skip over callout */
1156
1157
1.44k
      case OP_CALLOUT:
1158
1.44k
      tcode += PRIV(OP_lengths)[OP_CALLOUT];
1159
1.44k
      break;
1160
1161
4.07k
      case OP_CALLOUT_STR:
1162
4.07k
      tcode += GET(tcode, 1 + 2*LINK_SIZE);
1163
4.07k
      break;
1164
1165
      /* Skip over lookbehind and negative lookahead assertions */
1166
1167
18.8k
      case OP_ASSERT_NOT:
1168
52.9k
      case OP_ASSERTBACK:
1169
298k
      case OP_ASSERTBACK_NOT:
1170
301k
      case OP_ASSERTBACK_NA:
1171
325k
      do tcode += GET(tcode, 1); while (*tcode == OP_ALT);
1172
301k
      tcode += 1 + LINK_SIZE;
1173
301k
      break;
1174
1175
      /* BRAZERO does the bracket, but carries on. */
1176
1177
300k
      case OP_BRAZERO:
1178
313k
      case OP_BRAMINZERO:
1179
317k
      case OP_BRAPOSZERO:
1180
317k
      rc = set_start_bits(re, ++tcode, utf, ucp, depthptr);
1181
317k
      if (rc == SSB_FAIL || rc == SSB_UNKNOWN || rc == SSB_TOODEEP) return rc;
1182
135k
      do tcode += GET(tcode,1); while (*tcode == OP_ALT);
1183
67.6k
      tcode += 1 + LINK_SIZE;
1184
67.6k
      break;
1185
1186
      /* SKIPZERO skips the bracket. */
1187
1188
3.79k
      case OP_SKIPZERO:
1189
3.79k
      tcode++;
1190
4.78k
      do tcode += GET(tcode,1); while (*tcode == OP_ALT);
1191
3.79k
      tcode += 1 + LINK_SIZE;
1192
3.79k
      break;
1193
1194
      /* Single-char * or ? sets the bit and tries the next item */
1195
1196
51.7k
      case OP_STAR:
1197
62.0k
      case OP_MINSTAR:
1198
100k
      case OP_POSSTAR:
1199
131k
      case OP_QUERY:
1200
141k
      case OP_MINQUERY:
1201
170k
      case OP_POSQUERY:
1202
170k
      tcode = set_table_bit(re, tcode + 1, FALSE, utf, ucp);
1203
170k
      break;
1204
1205
10.5k
      case OP_STARI:
1206
15.9k
      case OP_MINSTARI:
1207
23.6k
      case OP_POSSTARI:
1208
32.9k
      case OP_QUERYI:
1209
36.0k
      case OP_MINQUERYI:
1210
48.1k
      case OP_POSQUERYI:
1211
48.1k
      tcode = set_table_bit(re, tcode + 1, TRUE, utf, ucp);
1212
48.1k
      break;
1213
1214
      /* Single-char upto sets the bit and tries the next */
1215
1216
6.08k
      case OP_UPTO:
1217
7.29k
      case OP_MINUPTO:
1218
11.2k
      case OP_POSUPTO:
1219
11.2k
      tcode = set_table_bit(re, tcode + 1 + IMM2_SIZE, FALSE, utf, ucp);
1220
11.2k
      break;
1221
1222
3.19k
      case OP_UPTOI:
1223
4.34k
      case OP_MINUPTOI:
1224
6.58k
      case OP_POSUPTOI:
1225
6.58k
      tcode = set_table_bit(re, tcode + 1 + IMM2_SIZE, TRUE, utf, ucp);
1226
6.58k
      break;
1227
1228
      /* At least one single char sets the bit and stops */
1229
1230
39.7k
      case OP_EXACT:
1231
39.7k
      tcode += IMM2_SIZE;
1232
      /* Fall through */
1233
675k
      case OP_CHAR:
1234
1.00M
      case OP_PLUS:
1235
1.01M
      case OP_MINPLUS:
1236
1.03M
      case OP_POSPLUS:
1237
1.03M
      (void)set_table_bit(re, tcode + 1, FALSE, utf, ucp);
1238
1.03M
      try_next = FALSE;
1239
1.03M
      break;
1240
1241
3.09k
      case OP_EXACTI:
1242
3.09k
      tcode += IMM2_SIZE;
1243
      /* Fall through */
1244
228k
      case OP_CHARI:
1245
235k
      case OP_PLUSI:
1246
236k
      case OP_MINPLUSI:
1247
248k
      case OP_POSPLUSI:
1248
248k
      (void)set_table_bit(re, tcode + 1, TRUE, utf, ucp);
1249
248k
      try_next = FALSE;
1250
248k
      break;
1251
1252
      /* Special spacing and line-terminating items. These recognize specific
1253
      lists of characters. The difference between VSPACE and ANYNL is that the
1254
      latter can match the two-character CRLF sequence, but that is not
1255
      relevant for finding the first character, so their code here is
1256
      identical. */
1257
1258
7.77k
      case OP_HSPACE:
1259
7.77k
      SET_BIT(CHAR_HT);
1260
7.77k
      SET_BIT(CHAR_SPACE);
1261
1262
      /* For the 16-bit and 32-bit libraries (which can never be EBCDIC), set
1263
      the bits for 0xA0 and for code units >= 255, independently of UTF. */
1264
1265
#if PCRE2_CODE_UNIT_WIDTH != 8
1266
      SET_BIT(0xA0);
1267
      SET_BIT(0xFF);
1268
#else
1269
      /* For the 8-bit library in UTF-8 mode, set the bits for the first code
1270
      units of horizontal space characters. */
1271
1272
7.77k
#ifdef SUPPORT_UNICODE
1273
7.77k
      if (utf)
1274
2.82k
        {
1275
2.82k
        SET_BIT(0xC2);  /* For U+00A0 */
1276
2.82k
        SET_BIT(0xE1);  /* For U+1680, U+180E */
1277
2.82k
        SET_BIT(0xE2);  /* For U+2000 - U+200A, U+202F, U+205F */
1278
2.82k
        SET_BIT(0xE3);  /* For U+3000 */
1279
2.82k
        }
1280
4.95k
      else
1281
4.95k
#endif
1282
      /* For the 8-bit library not in UTF-8 mode, set the bit for 0xA0, unless
1283
      the code is EBCDIC. */
1284
4.95k
        {
1285
4.95k
#ifndef EBCDIC
1286
4.95k
        SET_BIT(0xA0);
1287
4.95k
#endif  /* Not EBCDIC */
1288
4.95k
        }
1289
7.77k
#endif  /* 8-bit support */
1290
1291
7.77k
      try_next = FALSE;
1292
7.77k
      break;
1293
1294
10.3k
      case OP_ANYNL:
1295
13.9k
      case OP_VSPACE:
1296
13.9k
      SET_BIT(CHAR_LF);
1297
13.9k
      SET_BIT(CHAR_VT);
1298
13.9k
      SET_BIT(CHAR_FF);
1299
13.9k
      SET_BIT(CHAR_CR);
1300
1301
      /* For the 16-bit and 32-bit libraries (which can never be EBCDIC), set
1302
      the bits for NEL and for code units >= 255, independently of UTF. */
1303
1304
#if PCRE2_CODE_UNIT_WIDTH != 8
1305
      SET_BIT(CHAR_NEL);
1306
      SET_BIT(0xFF);
1307
#else
1308
      /* For the 8-bit library in UTF-8 mode, set the bits for the first code
1309
      units of vertical space characters. */
1310
1311
13.9k
#ifdef SUPPORT_UNICODE
1312
13.9k
      if (utf)
1313
8.61k
        {
1314
8.61k
        SET_BIT(0xC2);  /* For U+0085 (NEL) */
1315
8.61k
        SET_BIT(0xE2);  /* For U+2028, U+2029 */
1316
8.61k
        }
1317
5.37k
      else
1318
5.37k
#endif
1319
      /* For the 8-bit library not in UTF-8 mode, set the bit for NEL. */
1320
5.37k
        {
1321
5.37k
        SET_BIT(CHAR_NEL);
1322
5.37k
        }
1323
13.9k
#endif  /* 8-bit support */
1324
1325
13.9k
      try_next = FALSE;
1326
13.9k
      break;
1327
1328
      /* Single character types set the bits and stop. Note that if PCRE2_UCP
1329
      is set, we do not see these opcodes because \d etc are converted to
1330
      properties. Therefore, these apply in the case when only characters less
1331
      than 256 are recognized to match the types. */
1332
1333
24.9k
      case OP_NOT_DIGIT:
1334
24.9k
      set_nottype_bits(re, cbit_digit, table_limit);
1335
24.9k
      try_next = FALSE;
1336
24.9k
      break;
1337
1338
22.9k
      case OP_DIGIT:
1339
22.9k
      set_type_bits(re, cbit_digit, table_limit);
1340
22.9k
      try_next = FALSE;
1341
22.9k
      break;
1342
1343
19.2k
      case OP_NOT_WHITESPACE:
1344
19.2k
      set_nottype_bits(re, cbit_space, table_limit);
1345
19.2k
      try_next = FALSE;
1346
19.2k
      break;
1347
1348
32.4k
      case OP_WHITESPACE:
1349
32.4k
      set_type_bits(re, cbit_space, table_limit);
1350
32.4k
      try_next = FALSE;
1351
32.4k
      break;
1352
1353
13.9k
      case OP_NOT_WORDCHAR:
1354
13.9k
      set_nottype_bits(re, cbit_word, table_limit);
1355
13.9k
      try_next = FALSE;
1356
13.9k
      break;
1357
1358
21.3k
      case OP_WORDCHAR:
1359
21.3k
      set_type_bits(re, cbit_word, table_limit);
1360
21.3k
      try_next = FALSE;
1361
21.3k
      break;
1362
1363
      /* One or more character type fudges the pointer and restarts, knowing
1364
      it will hit a single character type and stop there. */
1365
1366
14.4k
      case OP_TYPEPLUS:
1367
15.3k
      case OP_TYPEMINPLUS:
1368
22.9k
      case OP_TYPEPOSPLUS:
1369
22.9k
      tcode++;
1370
22.9k
      break;
1371
1372
21.2k
      case OP_TYPEEXACT:
1373
21.2k
      tcode += 1 + IMM2_SIZE;
1374
21.2k
      break;
1375
1376
      /* Zero or more repeats of character types set the bits and then
1377
      try again. */
1378
1379
3.13k
      case OP_TYPEUPTO:
1380
4.62k
      case OP_TYPEMINUPTO:
1381
7.26k
      case OP_TYPEPOSUPTO:
1382
7.26k
      tcode += IMM2_SIZE;  /* Fall through */
1383
1384
77.6k
      case OP_TYPESTAR:
1385
87.9k
      case OP_TYPEMINSTAR:
1386
377k
      case OP_TYPEPOSSTAR:
1387
425k
      case OP_TYPEQUERY:
1388
432k
      case OP_TYPEMINQUERY:
1389
443k
      case OP_TYPEPOSQUERY:
1390
443k
      switch(tcode[1])
1391
443k
        {
1392
1.47k
        default:
1393
5.78k
        case OP_ANY:
1394
16.7k
        case OP_ALLANY:
1395
16.7k
        return SSB_FAIL;
1396
1397
6.94k
        case OP_HSPACE:
1398
6.94k
        SET_BIT(CHAR_HT);
1399
6.94k
        SET_BIT(CHAR_SPACE);
1400
1401
        /* For the 16-bit and 32-bit libraries (which can never be EBCDIC), set
1402
        the bits for 0xA0 and for code units >= 255, independently of UTF. */
1403
1404
#if PCRE2_CODE_UNIT_WIDTH != 8
1405
        SET_BIT(0xA0);
1406
        SET_BIT(0xFF);
1407
#else
1408
        /* For the 8-bit library in UTF-8 mode, set the bits for the first code
1409
        units of horizontal space characters. */
1410
1411
6.94k
#ifdef SUPPORT_UNICODE
1412
6.94k
        if (utf)
1413
5.00k
          {
1414
5.00k
          SET_BIT(0xC2);  /* For U+00A0 */
1415
5.00k
          SET_BIT(0xE1);  /* For U+1680, U+180E */
1416
5.00k
          SET_BIT(0xE2);  /* For U+2000 - U+200A, U+202F, U+205F */
1417
5.00k
          SET_BIT(0xE3);  /* For U+3000 */
1418
5.00k
          }
1419
1.94k
        else
1420
1.94k
#endif
1421
        /* For the 8-bit library not in UTF-8 mode, set the bit for 0xA0, unless
1422
        the code is EBCDIC. */
1423
1.94k
          {
1424
1.94k
#ifndef EBCDIC
1425
1.94k
          SET_BIT(0xA0);
1426
1.94k
#endif  /* Not EBCDIC */
1427
1.94k
          }
1428
6.94k
#endif  /* 8-bit support */
1429
6.94k
        break;
1430
1431
7.11k
        case OP_ANYNL:
1432
13.6k
        case OP_VSPACE:
1433
13.6k
        SET_BIT(CHAR_LF);
1434
13.6k
        SET_BIT(CHAR_VT);
1435
13.6k
        SET_BIT(CHAR_FF);
1436
13.6k
        SET_BIT(CHAR_CR);
1437
1438
        /* For the 16-bit and 32-bit libraries (which can never be EBCDIC), set
1439
        the bits for NEL and for code units >= 255, independently of UTF. */
1440
1441
#if PCRE2_CODE_UNIT_WIDTH != 8
1442
        SET_BIT(CHAR_NEL);
1443
        SET_BIT(0xFF);
1444
#else
1445
        /* For the 8-bit library in UTF-8 mode, set the bits for the first code
1446
        units of vertical space characters. */
1447
1448
13.6k
#ifdef SUPPORT_UNICODE
1449
13.6k
        if (utf)
1450
7.35k
          {
1451
7.35k
          SET_BIT(0xC2);  /* For U+0085 (NEL) */
1452
7.35k
          SET_BIT(0xE2);  /* For U+2028, U+2029 */
1453
7.35k
          }
1454
6.33k
        else
1455
6.33k
#endif
1456
        /* For the 8-bit library not in UTF-8 mode, set the bit for NEL. */
1457
6.33k
          {
1458
6.33k
          SET_BIT(CHAR_NEL);
1459
6.33k
          }
1460
13.6k
#endif  /* 8-bit support */
1461
13.6k
        break;
1462
1463
12.0k
        case OP_NOT_DIGIT:
1464
12.0k
        set_nottype_bits(re, cbit_digit, table_limit);
1465
12.0k
        break;
1466
1467
33.7k
        case OP_DIGIT:
1468
33.7k
        set_type_bits(re, cbit_digit, table_limit);
1469
33.7k
        break;
1470
1471
27.3k
        case OP_NOT_WHITESPACE:
1472
27.3k
        set_nottype_bits(re, cbit_space, table_limit);
1473
27.3k
        break;
1474
1475
298k
        case OP_WHITESPACE:
1476
298k
        set_type_bits(re, cbit_space, table_limit);
1477
298k
        break;
1478
1479
15.8k
        case OP_NOT_WORDCHAR:
1480
15.8k
        set_nottype_bits(re, cbit_word, table_limit);
1481
15.8k
        break;
1482
1483
18.6k
        case OP_WORDCHAR:
1484
18.6k
        set_type_bits(re, cbit_word, table_limit);
1485
18.6k
        break;
1486
443k
        }
1487
1488
426k
      tcode += 2;
1489
426k
      break;
1490
1491
      /* Extended class: if there are any property checks, or if this is a
1492
      negative XCLASS without a map, give up. If there are no property checks,
1493
      there must be wide characters on the XCLASS list, because otherwise an
1494
      XCLASS would not have been created. This means that code points >= 255
1495
      are potential starters. In the UTF-8 case we can scan them and set bits
1496
      for the relevant leading bytes. */
1497
1498
0
#ifdef SUPPORT_WIDE_CHARS
1499
44.1k
      case OP_XCLASS:
1500
44.1k
      xclassflags = tcode[1 + LINK_SIZE];
1501
44.1k
      if ((xclassflags & XCL_HASPROP) != 0 ||
1502
42.9k
          (xclassflags & (XCL_MAP|XCL_NOT)) == XCL_NOT)
1503
1.48k
        return SSB_FAIL;
1504
1505
      /* We have a positive XCLASS or a negative one without a map. Set up the
1506
      map pointer if there is one, and fall through. */
1507
1508
42.6k
      classmap = ((xclassflags & XCL_MAP) == 0)? NULL :
1509
42.6k
        (uint8_t *)(tcode + 1 + LINK_SIZE + 1);
1510
1511
      /* In UTF-8 mode, scan the character list and set bits for leading bytes,
1512
      then jump to handle the map. */
1513
1514
42.6k
#if PCRE2_CODE_UNIT_WIDTH == 8
1515
42.6k
      if (utf && (xclassflags & XCL_NOT) == 0)
1516
29.1k
        {
1517
29.1k
        PCRE2_UCHAR b, e;
1518
29.1k
        PCRE2_SPTR p = tcode + 1 + LINK_SIZE + 1 + ((classmap == NULL)? 0:32);
1519
29.1k
        tcode += GET(tcode, 1);
1520
1521
171k
        for (;;) switch (*p++)
1522
171k
          {
1523
65.3k
          case XCL_SINGLE:
1524
65.3k
          b = *p++;
1525
145k
          while ((*p & 0xc0) == 0x80) p++;
1526
65.3k
          re->start_bitmap[b/8] |= (1u << (b&7));
1527
65.3k
          break;
1528
1529
77.1k
          case XCL_RANGE:
1530
77.1k
          b = *p++;
1531
210k
          while ((*p & 0xc0) == 0x80) p++;
1532
77.1k
          e = *p++;
1533
242k
          while ((*p & 0xc0) == 0x80) p++;
1534
903k
          for (; b <= e; b++)
1535
826k
            re->start_bitmap[b/8] |= (1u << (b&7));
1536
77.1k
          break;
1537
1538
29.1k
          case XCL_END:
1539
29.1k
          goto HANDLE_CLASSMAP;
1540
1541
0
          default:
1542
0
          return SSB_UNKNOWN;   /* Internal error, should not occur */
1543
171k
          }
1544
29.1k
        }
1545
13.4k
#endif  /* SUPPORT_UNICODE && PCRE2_CODE_UNIT_WIDTH == 8 */
1546
13.4k
#endif  /* SUPPORT_WIDE_CHARS */
1547
1548
      /* It seems that the fall through comment must be outside the #ifdef if
1549
      it is to avoid the gcc compiler warning. */
1550
1551
      /* Fall through */
1552
1553
      /* Enter here for a negative non-XCLASS. In the 8-bit library, if we are
1554
      in UTF mode, any byte with a value >= 0xc4 is a potentially valid starter
1555
      because it starts a character with a value > 255. In 8-bit non-UTF mode,
1556
      there is no difference between CLASS and NCLASS. In all other wide
1557
      character modes, set the 0xFF bit to indicate code units >= 255. */
1558
1559
27.5k
      case OP_NCLASS:
1560
27.5k
#if defined SUPPORT_UNICODE && PCRE2_CODE_UNIT_WIDTH == 8
1561
27.5k
      if (utf)
1562
14.5k
        {
1563
14.5k
        re->start_bitmap[24] |= 0xf0;            /* Bits for 0xc4 - 0xc8 */
1564
14.5k
        memset(re->start_bitmap+25, 0xff, 7);    /* Bits for 0xc9 - 0xff */
1565
14.5k
        }
1566
#elif PCRE2_CODE_UNIT_WIDTH != 8
1567
      SET_BIT(0xFF);                             /* For characters >= 255 */
1568
#endif
1569
      /* Fall through */
1570
1571
      /* Enter here for a positive non-XCLASS. If we have fallen through from
1572
      an XCLASS, classmap will already be set; just advance the code pointer.
1573
      Otherwise, set up classmap for a a non-XCLASS and advance past it. */
1574
1575
195k
      case OP_CLASS:
1576
195k
      if (*tcode == OP_XCLASS) tcode += GET(tcode, 1); else
1577
182k
        {
1578
182k
        classmap = (uint8_t *)(++tcode);
1579
182k
        tcode += 32 / sizeof(PCRE2_UCHAR);
1580
182k
        }
1581
1582
      /* When wide characters are supported, classmap may be NULL. In UTF-8
1583
      (sic) mode, the bits in a class bit map correspond to character values,
1584
      not to byte values. However, the bit map we are constructing is for byte
1585
      values. So we have to do a conversion for characters whose code point is
1586
      greater than 127. In fact, there are only two possible starting bytes for
1587
      characters in the range 128 - 255. */
1588
1589
195k
#if defined SUPPORT_WIDE_CHARS && PCRE2_CODE_UNIT_WIDTH == 8
1590
225k
      HANDLE_CLASSMAP:
1591
225k
#endif
1592
225k
      if (classmap != NULL)
1593
222k
        {
1594
222k
#if defined SUPPORT_UNICODE && PCRE2_CODE_UNIT_WIDTH == 8
1595
222k
        if (utf)
1596
54.9k
          {
1597
933k
          for (c = 0; c < 16; c++) re->start_bitmap[c] |= classmap[c];
1598
3.78M
          for (c = 128; c < 256; c++)
1599
3.73M
            {
1600
3.73M
            if ((classmap[c/8] & (1u << (c&7))) != 0)
1601
53.5k
              {
1602
53.5k
              int d = (c >> 6) | 0xc0;                 /* Set bit for this starter */
1603
53.5k
              re->start_bitmap[d/8] |= (1u << (d&7));  /* and then skip on to the */
1604
53.5k
              c = (c & 0xc0) + 0x40 - 1;               /* next relevant character. */
1605
53.5k
              }
1606
3.73M
            }
1607
54.9k
          }
1608
167k
        else
1609
167k
#endif
1610
        /* In all modes except UTF-8, the two bit maps are compatible. */
1611
1612
167k
          {
1613
5.54M
          for (c = 0; c < 32; c++) re->start_bitmap[c] |= classmap[c];
1614
167k
          }
1615
222k
        }
1616
1617
      /* Act on what follows the class. For a zero minimum repeat, continue;
1618
      otherwise stop processing. */
1619
1620
225k
      switch (*tcode)
1621
225k
        {
1622
21.1k
        case OP_CRSTAR:
1623
23.8k
        case OP_CRMINSTAR:
1624
36.7k
        case OP_CRQUERY:
1625
45.7k
        case OP_CRMINQUERY:
1626
63.5k
        case OP_CRPOSSTAR:
1627
67.1k
        case OP_CRPOSQUERY:
1628
67.1k
        tcode++;
1629
67.1k
        break;
1630
1631
5.04k
        case OP_CRRANGE:
1632
8.45k
        case OP_CRMINRANGE:
1633
14.2k
        case OP_CRPOSRANGE:
1634
14.2k
        if (GET2(tcode, 1) == 0) tcode += 1 + 2 * IMM2_SIZE;
1635
6.63k
          else try_next = FALSE;
1636
14.2k
        break;
1637
1638
143k
        default:
1639
143k
        try_next = FALSE;
1640
143k
        break;
1641
225k
        }
1642
225k
      break; /* End of class handling case */
1643
6.31M
      }      /* End of switch for opcodes */
1644
6.31M
    }        /* End of try_next loop */
1645
1646
2.15M
  code += GET(code, 1);   /* Advance to next branch */
1647
2.15M
  }
1648
2.29M
while (*code == OP_ALT);
1649
1650
788k
return yield;
1651
2.29M
}
1652
1653
1654
1655
/*************************************************
1656
*          Study a compiled expression           *
1657
*************************************************/
1658
1659
/* This function is handed a compiled expression that it must study to produce
1660
information that will speed up the matching.
1661
1662
Argument:
1663
  re       points to the compiled expression
1664
1665
Returns:   0 normally; non-zero should never normally occur
1666
           1 unknown opcode in set_start_bits
1667
           2 missing capturing bracket
1668
           3 unknown opcode in find_minlength
1669
*/
1670
1671
int
1672
PRIV(study)(pcre2_real_code *re)
1673
993k
{
1674
993k
int count = 0;
1675
993k
PCRE2_UCHAR *code;
1676
993k
BOOL utf = (re->overall_options & PCRE2_UTF) != 0;
1677
993k
BOOL ucp = (re->overall_options & PCRE2_UCP) != 0;
1678
1679
/* Find start of compiled code */
1680
1681
993k
code = (PCRE2_UCHAR *)((uint8_t *)re + sizeof(pcre2_real_code)) +
1682
993k
  re->name_entry_size * re->name_count;
1683
1684
/* For a pattern that has a first code unit, or a multiline pattern that
1685
matches only at "line start", there is no point in seeking a list of starting
1686
code units. */
1687
1688
993k
if ((re->flags & (PCRE2_FIRSTSET|PCRE2_STARTLINE)) == 0)
1689
808k
  {
1690
808k
  int depth = 0;
1691
808k
  int rc = set_start_bits(re, code, utf, ucp, &depth);
1692
808k
  if (rc == SSB_UNKNOWN) return 1;
1693
1694
  /* If a list of starting code units was set up, scan the list to see if only
1695
  one or two were listed. Having only one listed is rare because usually a
1696
  single starting code unit will have been recognized and PCRE2_FIRSTSET set.
1697
  If two are listed, see if they are caseless versions of the same character;
1698
  if so we can replace the list with a caseless first code unit. This gives
1699
  better performance and is plausibly worth doing for patterns such as [Ww]ord
1700
  or (word|WORD). */
1701
1702
808k
  if (rc == SSB_DONE)
1703
468k
    {
1704
468k
    int i;
1705
468k
    int a = -1;
1706
468k
    int b = -1;
1707
468k
    uint8_t *p = re->start_bitmap;
1708
468k
    uint32_t flags = PCRE2_FIRSTMAPSET;
1709
1710
2.35M
    for (i = 0; i < 256; p++, i += 8)
1711
2.35M
      {
1712
2.35M
      uint8_t x = *p;
1713
2.35M
      if (x != 0)
1714
523k
        {
1715
523k
        int c;
1716
523k
        uint8_t y = x & (~x + 1);   /* Least significant bit */
1717
523k
        if (y != x) goto DONE;      /* More than one bit set */
1718
1719
        /* In the 16-bit and 32-bit libraries, the bit for 0xff means "0xff and
1720
        all wide characters", so we cannot use it here. */
1721
1722
#if PCRE2_CODE_UNIT_WIDTH != 8
1723
        if (i == 248 && x == 0x80) goto DONE;
1724
#endif
1725
1726
        /* Compute the character value */
1727
1728
105k
        c = i;
1729
105k
        switch (x)
1730
105k
          {
1731
12.4k
          case 1:   break;
1732
11.9k
          case 2:   c += 1; break;  case 4:  c += 2; break;
1733
20.1k
          case 8:   c += 3; break;  case 16: c += 4; break;
1734
14.5k
          case 32:  c += 5; break;  case 64: c += 6; break;
1735
9.34k
          case 128: c += 7; break;
1736
105k
          }
1737
1738
        /* c contains the code unit value, in the range 0-255. In 8-bit UTF
1739
        mode, only values < 128 can be used. In all the other cases, c is a
1740
        character value. */
1741
1742
105k
#if PCRE2_CODE_UNIT_WIDTH == 8
1743
105k
        if (utf && c > 127) goto DONE;
1744
102k
#endif
1745
102k
        if (a < 0) a = c;   /* First one found, save in a */
1746
47.0k
        else if (b < 0)     /* Second one found */
1747
44.3k
          {
1748
44.3k
          int d = TABLE_GET((unsigned int)c, re->tables + fcc_offset, c);
1749
1750
44.3k
#ifdef SUPPORT_UNICODE
1751
44.3k
          if (utf || ucp)
1752
5.51k
            {
1753
5.51k
            if (UCD_CASESET(c) != 0) goto DONE;     /* Multiple case set */
1754
2.56k
            if (c > 127) d = UCD_OTHERCASE(c);
1755
2.56k
            }
1756
41.4k
#endif  /* SUPPORT_UNICODE */
1757
1758
41.4k
          if (d != a) goto DONE;   /* Not the other case of a */
1759
7.03k
          b = c;                   /* Save second in b */
1760
7.03k
          }
1761
2.65k
        else goto DONE;   /* More than two characters found */
1762
102k
        }
1763
2.35M
      }
1764
1765
    /* Replace the start code unit bits with a first code unit, but only if it
1766
    is not the same as a required later code unit. This is because a search for
1767
    a required code unit starts after an explicit first code unit, but at a
1768
    code unit found from the bitmap. Patterns such as /a*a/ don't work
1769
    if both the start unit and required unit are the same. */
1770
1771
8.22k
    if (a >= 0 &&
1772
7.63k
        (
1773
7.63k
        (re->flags & PCRE2_LASTSET) == 0 ||
1774
6.12k
          (
1775
6.12k
          re->last_codeunit != (uint32_t)a &&
1776
5.03k
          (b < 0 || re->last_codeunit != (uint32_t)b)
1777
6.12k
          )
1778
7.63k
        ))
1779
5.12k
      {
1780
5.12k
      re->first_codeunit = a;
1781
5.12k
      flags = PCRE2_FIRSTSET;
1782
5.12k
      if (b >= 0) flags |= PCRE2_FIRSTCASELESS;
1783
5.12k
      }
1784
1785
468k
    DONE:
1786
468k
    re->flags |= flags;
1787
468k
    }
1788
808k
  }
1789
1790
/* Find the minimum length of subject string. If the pattern can match an empty
1791
string, the minimum length is already known. If the pattern contains (*ACCEPT)
1792
all bets are off, and we don't even try to find a minimum length. If there are
1793
more back references than the size of the vector we are going to cache them in,
1794
do nothing. A pattern that complicated will probably take a long time to
1795
analyze and may in any case turn out to be too complicated. Note that back
1796
reference minima are held as 16-bit numbers. */
1797
1798
993k
if ((re->flags & (PCRE2_MATCH_EMPTY|PCRE2_HASACCEPT)) == 0 &&
1799
872k
     re->top_backref <= MAX_CACHE_BACKREF)
1800
872k
  {
1801
872k
  int min;
1802
872k
  int backref_cache[MAX_CACHE_BACKREF+1];
1803
872k
  backref_cache[0] = 0;    /* Highest one that is set */
1804
872k
  min = find_minlength(re, code, code, utf, NULL, &count, backref_cache);
1805
872k
  switch(min)
1806
872k
    {
1807
2.63k
    case -1:  /* \C in UTF mode or over-complex regex */
1808
2.63k
    break;    /* Leave minlength unchanged (will be zero) */
1809
1810
0
    case -2:
1811
0
    return 2; /* missing capturing bracket */
1812
1813
0
    case -3:
1814
0
    return 3; /* unrecognized opcode */
1815
1816
870k
    default:
1817
870k
    re->minlength = (min > UINT16_MAX)? UINT16_MAX : min;
1818
870k
    break;
1819
872k
    }
1820
872k
  }
1821
1822
993k
return 0;
1823
993k
}
1824
1825
/* End of pcre2_study.c */