Coverage Report

Created: 2026-07-25 06:39

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/php-src/ext/pcre/pcre2lib/pcre2_auto_possess.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) 2016-2022 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 that scan a compiled pattern and change
42
repeats into possessive repeats where possible. */
43
44
45
#ifdef HAVE_CONFIG_H
46
#include "config.h"
47
#endif
48
49
50
#include "pcre2_internal.h"
51
52
53
/*************************************************
54
*        Tables for auto-possessification        *
55
*************************************************/
56
57
/* This table is used to check whether auto-possessification is possible
58
between adjacent character-type opcodes. The left-hand (repeated) opcode is
59
used to select the row, and the right-hand opcode is use to select the column.
60
A value of 1 means that auto-possessification is OK. For example, the second
61
value in the first row means that \D+\d can be turned into \D++\d.
62
63
The Unicode property types (\P and \p) have to be present to fill out the table
64
because of what their opcode values are, but the table values should always be
65
zero because property types are handled separately in the code. The last four
66
columns apply to items that cannot be repeated, so there is no need to have
67
rows for them. Note that OP_DIGIT etc. are generated only when PCRE_UCP is
68
*not* set. When it is set, \d etc. are converted into OP_(NOT_)PROP codes. */
69
70
#define APTROWS (LAST_AUTOTAB_LEFT_OP - FIRST_AUTOTAB_OP + 1)
71
#define APTCOLS (LAST_AUTOTAB_RIGHT_OP - FIRST_AUTOTAB_OP + 1)
72
73
static const uint8_t autoposstab[APTROWS][APTCOLS] = {
74
/* \D \d \S \s \W \w  . .+ \C \P \p \R \H \h \V \v \X \Z \z  $ $M */
75
  { 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0 },  /* \D */
76
  { 1, 0, 0, 1, 1, 0, 0, 0, 0, 0, 0, 1, 0, 1, 0, 1, 0, 1, 1, 1, 1 },  /* \d */
77
  { 0, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 1, 0, 1, 0, 1, 0, 1, 1, 1, 1 },  /* \S */
78
  { 0, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0 },  /* \s */
79
  { 0, 1, 0, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0 },  /* \W */
80
  { 0, 0, 0, 1, 1, 0, 0, 0, 0, 0, 0, 1, 0, 1, 0, 1, 0, 1, 1, 1, 1 },  /* \w */
81
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, 0, 0, 0, 1, 0, 0 },  /* .  */
82
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0 },  /* .+ */
83
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0 },  /* \C */
84
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },  /* \P */
85
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },  /* \p */
86
  { 0, 1, 0, 1, 0, 1, 1, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0 },  /* \R */
87
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0 },  /* \H */
88
  { 0, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 1, 1, 0, 0, 1, 0, 0, 1, 0, 0 },  /* \h */
89
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, 1, 0, 0, 1, 0, 0 },  /* \V */
90
  { 0, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 1, 1, 0, 0, 0, 1, 0, 0 },  /* \v */
91
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0 }   /* \X */
92
};
93
94
#ifdef SUPPORT_UNICODE
95
/* This table is used to check whether auto-possessification is possible
96
between adjacent Unicode property opcodes (OP_PROP and OP_NOTPROP). The
97
left-hand (repeated) opcode is used to select the row, and the right-hand
98
opcode is used to select the column. The values are as follows:
99
100
  0   Always return FALSE (never auto-possessify)
101
  1   Character groups are distinct (possessify if both are OP_PROP)
102
  2   Check character categories in the same group (general or particular)
103
  3   TRUE if the two opcodes are not the same (PROP vs NOTPROP)
104
105
  4   Check left general category vs right particular category
106
  5   Check right general category vs left particular category
107
108
  6   Left alphanum vs right general category
109
  7   Left space vs right general category
110
  8   Left word vs right general category
111
112
  9   Right alphanum vs left general category
113
 10   Right space vs left general category
114
 11   Right word vs left general category
115
116
 12   Left alphanum vs right particular category
117
 13   Left space vs right particular category
118
 14   Left word vs right particular category
119
120
 15   Right alphanum vs left particular category
121
 16   Right space vs left particular category
122
 17   Right word vs left particular category
123
*/
124
125
static const uint8_t propposstab[PT_TABSIZE][PT_TABSIZE] = {
126
/* ANY LAMP GC  PC  SC  SCX ALNUM SPACE PXSPACE WORD CLIST UCNC BIDICL BOOL */
127
  { 0,  0,  0,  0,  0,   0,    0,    0,      0,   0,    0,   0,    0,    0 },  /* PT_ANY */
128
  { 0,  3,  0,  0,  0,   0,    3,    1,      1,   0,    0,   0,    0,    0 },  /* PT_LAMP */
129
  { 0,  0,  2,  4,  0,   0,    9,   10,     10,  11,    0,   0,    0,    0 },  /* PT_GC */
130
  { 0,  0,  5,  2,  0,   0,   15,   16,     16,  17,    0,   0,    0,    0 },  /* PT_PC */
131
  { 0,  0,  0,  0,  2,   2,    0,    0,      0,   0,    0,   0,    0,    0 },  /* PT_SC */
132
  { 0,  0,  0,  0,  2,   2,    0,    0,      0,   0,    0,   0,    0,    0 },  /* PT_SCX */
133
  { 0,  3,  6, 12,  0,   0,    3,    1,      1,   0,    0,   0,    0,    0 },  /* PT_ALNUM */
134
  { 0,  1,  7, 13,  0,   0,    1,    3,      3,   1,    0,   0,    0,    0 },  /* PT_SPACE */
135
  { 0,  1,  7, 13,  0,   0,    1,    3,      3,   1,    0,   0,    0,    0 },  /* PT_PXSPACE */
136
  { 0,  0,  8, 14,  0,   0,    0,    1,      1,   3,    0,   0,    0,    0 },  /* PT_WORD */
137
  { 0,  0,  0,  0,  0,   0,    0,    0,      0,   0,    0,   0,    0,    0 },  /* PT_CLIST */
138
  { 0,  0,  0,  0,  0,   0,    0,    0,      0,   0,    0,   3,    0,    0 },  /* PT_UCNC */
139
  { 0,  0,  0,  0,  0,   0,    0,    0,      0,   0,    0,   0,    0,    0 },  /* PT_BIDICL */
140
  { 0,  0,  0,  0,  0,   0,    0,    0,      0,   0,    0,   0,    0,    0 }   /* PT_BOOL */
141
};
142
143
/* This table is used to check whether auto-possessification is possible
144
between adjacent Unicode property opcodes (OP_PROP and OP_NOTPROP) when one
145
specifies a general category and the other specifies a particular category. The
146
row is selected by the general category and the column by the particular
147
category. The value is 1 if the particular category is not part of the general
148
category. */
149
150
static const uint8_t catposstab[7][30] = {
151
/* Cc Cf Cn Co Cs Ll Lm Lo Lt Lu Mc Me Mn Nd Nl No Pc Pd Pe Pf Pi Po Ps Sc Sk Sm So Zl Zp Zs */
152
  { 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1 },  /* C */
153
  { 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1 },  /* L */
154
  { 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1 },  /* M */
155
  { 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1 },  /* N */
156
  { 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1 },  /* P */
157
  { 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 1, 1, 1 },  /* S */
158
  { 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0 }   /* Z */
159
};
160
161
/* This table is used when checking ALNUM, (PX)SPACE, SPACE, and WORD against
162
a general or particular category. The properties in each row are those
163
that apply to the character set in question. Duplication means that a little
164
unnecessary work is done when checking, but this keeps things much simpler
165
because they can all use the same code. For more details see the comment where
166
this table is used.
167
168
Note: SPACE and PXSPACE used to be different because Perl excluded VT from
169
"space", but from Perl 5.18 it's included, so both categories are treated the
170
same here. */
171
172
static const uint8_t posspropstab[3][4] = {
173
  { ucp_L, ucp_N, ucp_N, ucp_Nl },  /* ALNUM, 3rd and 4th values redundant */
174
  { ucp_Z, ucp_Z, ucp_C, ucp_Cc },  /* SPACE and PXSPACE, 2nd value redundant */
175
  { ucp_L, ucp_N, ucp_P, ucp_Po }   /* WORD */
176
};
177
#endif  /* SUPPORT_UNICODE */
178
179
180
181
#ifdef SUPPORT_UNICODE
182
/*************************************************
183
*        Check a character and a property        *
184
*************************************************/
185
186
/* This function is called by compare_opcodes() when a property item is
187
adjacent to a fixed character.
188
189
Arguments:
190
  c            the character
191
  ptype        the property type
192
  pdata        the data for the type
193
  negated      TRUE if it's a negated property (\P or \p{^)
194
195
Returns:       TRUE if auto-possessifying is OK
196
*/
197
198
static BOOL
199
check_char_prop(uint32_t c, unsigned int ptype, unsigned int pdata,
200
  BOOL negated)
201
715
{
202
715
BOOL ok;
203
715
const uint32_t *p;
204
715
const ucd_record *prop = GET_UCD(c);
205
206
715
switch(ptype)
207
715
  {
208
0
  case PT_LAMP:
209
0
  return (prop->chartype == ucp_Lu ||
210
0
          prop->chartype == ucp_Ll ||
211
0
          prop->chartype == ucp_Lt) == negated;
212
213
43
  case PT_GC:
214
43
  return (pdata == PRIV(ucp_gentype)[prop->chartype]) == negated;
215
216
140
  case PT_PC:
217
140
  return (pdata == prop->chartype) == negated;
218
219
0
  case PT_SC:
220
0
  return (pdata == prop->script) == negated;
221
222
0
  case PT_SCX:
223
0
  ok = (pdata == prop->script
224
0
        || MAPBIT(PRIV(ucd_script_sets) + UCD_SCRIPTX_PROP(prop), pdata) != 0);
225
0
  return ok == negated;
226
227
  /* These are specials */
228
229
0
  case PT_ALNUM:
230
0
  return (PRIV(ucp_gentype)[prop->chartype] == ucp_L ||
231
0
          PRIV(ucp_gentype)[prop->chartype] == ucp_N) == negated;
232
233
  /* Perl space used to exclude VT, but from Perl 5.18 it is included, which
234
  means that Perl space and POSIX space are now identical. PCRE was changed
235
  at release 8.34. */
236
237
57
  case PT_SPACE:    /* Perl space */
238
57
  case PT_PXSPACE:  /* POSIX space */
239
57
  switch(c)
240
57
    {
241
0
    HSPACE_CASES:
242
7
    VSPACE_CASES:
243
7
    return negated;
244
245
50
    default:
246
50
    return (PRIV(ucp_gentype)[prop->chartype] == ucp_Z) == negated;
247
57
    }
248
0
  break;  /* Control never reaches here */
249
250
475
  case PT_WORD:
251
475
  return (PRIV(ucp_gentype)[prop->chartype] == ucp_L ||
252
351
          PRIV(ucp_gentype)[prop->chartype] == ucp_N ||
253
323
          c == CHAR_UNDERSCORE) == negated;
254
255
0
  case PT_CLIST:
256
0
  p = PRIV(ucd_caseless_sets) + prop->caseset;
257
0
  for (;;)
258
0
    {
259
0
    if (c < *p) return !negated;
260
0
    if (c == *p++) return negated;
261
0
    }
262
0
  break;  /* Control never reaches here */
263
264
  /* Haven't yet thought these through. */
265
266
0
  case PT_BIDICL:
267
0
  return FALSE;
268
269
0
  case PT_BOOL:
270
0
  return FALSE;
271
715
  }
272
273
0
return FALSE;
274
715
}
275
#endif  /* SUPPORT_UNICODE */
276
277
278
279
/*************************************************
280
*        Base opcode of repeated opcodes         *
281
*************************************************/
282
283
/* Returns the base opcode for repeated single character type opcodes. If the
284
opcode is not a repeated character type, it returns with the original value.
285
286
Arguments:  c opcode
287
Returns:    base opcode for the type
288
*/
289
290
static PCRE2_UCHAR
291
get_repeat_base(PCRE2_UCHAR c)
292
81.7k
{
293
81.7k
return (c > OP_TYPEPOSUPTO)? c :
294
81.7k
       (c >= OP_TYPESTAR)?   OP_TYPESTAR :
295
81.7k
       (c >= OP_NOTSTARI)?   OP_NOTSTARI :
296
58.8k
       (c >= OP_NOTSTAR)?    OP_NOTSTAR :
297
57.7k
       (c >= OP_STARI)?      OP_STARI :
298
57.1k
                             OP_STAR;
299
81.7k
}
300
301
302
/*************************************************
303
*        Fill the character property list        *
304
*************************************************/
305
306
/* Checks whether the code points to an opcode that can take part in auto-
307
possessification, and if so, fills a list with its properties.
308
309
Arguments:
310
  code        points to start of expression
311
  utf         TRUE if in UTF mode
312
  ucp         TRUE if in UCP mode
313
  fcc         points to the case-flipping table
314
  list        points to output list
315
              list[0] will be filled with the opcode
316
              list[1] will be non-zero if this opcode
317
                can match an empty character string
318
              list[2..7] depends on the opcode
319
320
Returns:      points to the start of the next opcode if *code is accepted
321
              NULL if *code is not accepted
322
*/
323
324
static PCRE2_SPTR
325
get_chr_property_list(PCRE2_SPTR code, BOOL utf, BOOL ucp, const uint8_t *fcc,
326
  uint32_t *list)
327
85.8k
{
328
85.8k
PCRE2_UCHAR c = *code;
329
85.8k
PCRE2_UCHAR base;
330
85.8k
PCRE2_SPTR end;
331
85.8k
uint32_t chr;
332
333
85.8k
#ifdef SUPPORT_UNICODE
334
85.8k
uint32_t *clist_dest;
335
85.8k
const uint32_t *clist_src;
336
#else
337
(void)utf;    /* Suppress "unused parameter" compiler warnings */
338
(void)ucp;
339
#endif
340
341
85.8k
list[0] = c;
342
85.8k
list[1] = FALSE;
343
85.8k
code++;
344
345
85.8k
if (c >= OP_STAR && c <= OP_TYPEPOSUPTO)
346
46.2k
  {
347
46.2k
  base = get_repeat_base(c);
348
46.2k
  c -= (base - OP_STAR);
349
350
46.2k
  if (c == OP_UPTO || c == OP_MINUPTO || c == OP_EXACT || c == OP_POSUPTO)
351
7
    code += IMM2_SIZE;
352
353
46.2k
  list[1] = (c != OP_PLUS && c != OP_MINPLUS && c != OP_EXACT &&
354
33.9k
             c != OP_POSPLUS);
355
356
46.2k
  switch(base)
357
46.2k
    {
358
20.6k
    case OP_STAR:
359
20.6k
    list[0] = OP_CHAR;
360
20.6k
    break;
361
362
11.5k
    case OP_STARI:
363
11.5k
    list[0] = OP_CHARI;
364
11.5k
    break;
365
366
366
    case OP_NOTSTAR:
367
366
    list[0] = OP_NOT;
368
366
    break;
369
370
615
    case OP_NOTSTARI:
371
615
    list[0] = OP_NOTI;
372
615
    break;
373
374
13.0k
    case OP_TYPESTAR:
375
13.0k
    list[0] = *code;
376
13.0k
    code++;
377
13.0k
    break;
378
46.2k
    }
379
46.2k
  c = list[0];
380
46.2k
  }
381
382
85.8k
switch(c)
383
85.8k
  {
384
363
  case OP_NOT_DIGIT:
385
1.84k
  case OP_DIGIT:
386
1.95k
  case OP_NOT_WHITESPACE:
387
2.67k
  case OP_WHITESPACE:
388
3.30k
  case OP_NOT_WORDCHAR:
389
7.07k
  case OP_WORDCHAR:
390
11.4k
  case OP_ANY:
391
11.8k
  case OP_ALLANY:
392
15.0k
  case OP_ANYNL:
393
15.6k
  case OP_NOT_HSPACE:
394
15.8k
  case OP_HSPACE:
395
16.5k
  case OP_NOT_VSPACE:
396
17.0k
  case OP_VSPACE:
397
17.2k
  case OP_EXTUNI:
398
17.2k
  case OP_EODN:
399
17.2k
  case OP_EOD:
400
17.4k
  case OP_DOLL:
401
17.4k
  case OP_DOLLM:
402
17.4k
  return code;
403
404
35.4k
  case OP_CHAR:
405
35.9k
  case OP_NOT:
406
35.9k
  GETCHARINCTEST(chr, code);
407
35.9k
  list[2] = chr;
408
35.9k
  list[3] = NOTACHAR;
409
35.9k
  return code;
410
411
19.3k
  case OP_CHARI:
412
19.9k
  case OP_NOTI:
413
19.9k
  list[0] = (c == OP_CHARI) ? OP_CHAR : OP_NOT;
414
19.9k
  GETCHARINCTEST(chr, code);
415
19.9k
  list[2] = chr;
416
417
19.9k
#ifdef SUPPORT_UNICODE
418
19.9k
  if (chr < 128 || (chr < 256 && !utf && !ucp))
419
19.7k
    list[3] = fcc[chr];
420
197
  else
421
197
    list[3] = UCD_OTHERCASE(chr);
422
#elif defined SUPPORT_WIDE_CHARS
423
  list[3] = (chr < 256) ? fcc[chr] : chr;
424
#else
425
  list[3] = fcc[chr];
426
#endif
427
428
  /* The othercase might be the same value. */
429
430
19.9k
  if (chr == list[3])
431
13.2k
    list[3] = NOTACHAR;
432
6.78k
  else
433
6.78k
    list[4] = NOTACHAR;
434
19.9k
  return code;
435
436
0
#ifdef SUPPORT_UNICODE
437
885
  case OP_PROP:
438
1.19k
  case OP_NOTPROP:
439
1.19k
  if (code[0] != PT_CLIST)
440
1.07k
    {
441
1.07k
    list[2] = code[0];
442
1.07k
    list[3] = code[1];
443
1.07k
    return code + 2;
444
1.07k
    }
445
446
  /* Convert only if we have enough space. */
447
448
121
  clist_src = PRIV(ucd_caseless_sets) + code[1];
449
121
  clist_dest = list + 2;
450
121
  code += 2;
451
452
484
  do {
453
484
     if (clist_dest >= list + 8)
454
0
       {
455
       /* Early return if there is not enough space. This should never
456
       happen, since all clists are shorter than 5 character now. */
457
0
       list[2] = code[0];
458
0
       list[3] = code[1];
459
0
       return code;
460
0
       }
461
484
     *clist_dest++ = *clist_src;
462
484
     }
463
484
  while(*clist_src++ != NOTACHAR);
464
465
  /* All characters are stored. The terminating NOTACHAR is copied from the
466
  clist itself. */
467
468
121
  list[0] = (c == OP_PROP) ? OP_CHAR : OP_NOT;
469
121
  return code;
470
0
#endif
471
472
1.57k
  case OP_NCLASS:
473
9.89k
  case OP_CLASS:
474
9.89k
#ifdef SUPPORT_WIDE_CHARS
475
10.5k
  case OP_XCLASS:
476
10.5k
  if (c == OP_XCLASS)
477
659
    end = code + GET(code, 0) - 1;
478
9.89k
  else
479
9.89k
#endif
480
9.89k
    end = code + 32 / sizeof(PCRE2_UCHAR);
481
482
10.5k
  switch(*end)
483
10.5k
    {
484
4.30k
    case OP_CRSTAR:
485
5.79k
    case OP_CRMINSTAR:
486
7.10k
    case OP_CRQUERY:
487
7.91k
    case OP_CRMINQUERY:
488
8.04k
    case OP_CRPOSSTAR:
489
8.05k
    case OP_CRPOSQUERY:
490
8.05k
    list[1] = TRUE;
491
8.05k
    end++;
492
8.05k
    break;
493
494
1.24k
    case OP_CRPLUS:
495
1.45k
    case OP_CRMINPLUS:
496
1.45k
    case OP_CRPOSPLUS:
497
1.45k
    end++;
498
1.45k
    break;
499
500
0
    case OP_CRRANGE:
501
0
    case OP_CRMINRANGE:
502
0
    case OP_CRPOSRANGE:
503
0
    list[1] = (GET2(end, 1) == 0);
504
0
    end += 1 + 2 * IMM2_SIZE;
505
0
    break;
506
10.5k
    }
507
10.5k
  list[2] = (uint32_t)(end - code);
508
10.5k
  return end;
509
85.8k
  }
510
511
712
return NULL;    /* Opcode not accepted */
512
85.8k
}
513
514
515
516
/*************************************************
517
*    Scan further character sets for match       *
518
*************************************************/
519
520
/* Checks whether the base and the current opcode have a common character, in
521
which case the base cannot be possessified.
522
523
Arguments:
524
  code        points to the byte code
525
  utf         TRUE in UTF mode
526
  ucp         TRUE in UCP mode
527
  cb          compile data block
528
  base_list   the data list of the base opcode
529
  base_end    the end of the base opcode
530
  rec_limit   points to recursion depth counter
531
532
Returns:      TRUE if the auto-possessification is possible
533
*/
534
535
static BOOL
536
compare_opcodes(PCRE2_SPTR code, BOOL utf, BOOL ucp, const compile_block *cb,
537
  const uint32_t *base_list, PCRE2_SPTR base_end, int *rec_limit)
538
39.2k
{
539
39.2k
PCRE2_UCHAR c;
540
39.2k
uint32_t list[8];
541
39.2k
const uint32_t *chr_ptr;
542
39.2k
const uint32_t *ochr_ptr;
543
39.2k
const uint32_t *list_ptr;
544
39.2k
PCRE2_SPTR next_code;
545
39.2k
#ifdef SUPPORT_WIDE_CHARS
546
39.2k
PCRE2_SPTR xclass_flags;
547
39.2k
#endif
548
39.2k
const uint8_t *class_bitset;
549
39.2k
const uint8_t *set1, *set2, *set_end;
550
39.2k
uint32_t chr;
551
39.2k
BOOL accepted, invert_bits;
552
39.2k
BOOL entered_a_group = FALSE;
553
554
39.2k
if (--(*rec_limit) <= 0) return FALSE;  /* Recursion has gone too deep */
555
556
/* Note: the base_list[1] contains whether the current opcode has a greedy
557
(represented by a non-zero value) quantifier. This is a different from
558
other character type lists, which store here that the character iterator
559
matches to an empty string (also represented by a non-zero value). */
560
561
39.2k
for(;;)
562
48.7k
  {
563
48.7k
  PCRE2_SPTR bracode;
564
565
  /* All operations move the code pointer forward.
566
  Therefore infinite recursions are not possible. */
567
568
48.7k
  c = *code;
569
570
  /* Skip over callouts */
571
572
48.7k
  if (c == OP_CALLOUT)
573
0
    {
574
0
    code += PRIV(OP_lengths)[c];
575
0
    continue;
576
0
    }
577
578
48.7k
  if (c == OP_CALLOUT_STR)
579
0
    {
580
0
    code += GET(code, 1 + 2*LINK_SIZE);
581
0
    continue;
582
0
    }
583
584
  /* At the end of a branch, skip to the end of the group. */
585
586
48.7k
  if (c == OP_ALT)
587
1.01k
    {
588
17.1k
    do code += GET(code, 1); while (*code == OP_ALT);
589
1.01k
    c = *code;
590
1.01k
    }
591
592
  /* Inspect the next opcode. */
593
594
48.7k
  switch(c)
595
48.7k
    {
596
    /* We can always possessify a greedy iterator at the end of the pattern,
597
    which is reached after skipping over the final OP_KET. A non-greedy
598
    iterator must never be possessified. */
599
600
874
    case OP_END:
601
874
    return base_list[1] != 0;
602
603
    /* When an iterator is at the end of certain kinds of group we can inspect
604
    what follows the group by skipping over the closing ket. Note that this
605
    does not apply to OP_KETRMAX or OP_KETRMIN because what follows any given
606
    iteration is variable (could be another iteration or could be the next
607
    item). As these two opcodes are not listed in the next switch, they will
608
    end up as the next code to inspect, and return FALSE by virtue of being
609
    unsupported. */
610
611
1.21k
    case OP_KET:
612
1.21k
    case OP_KETRPOS:
613
    /* The non-greedy case cannot be converted to a possessive form. */
614
615
1.21k
    if (base_list[1] == 0) return FALSE;
616
617
    /* If the bracket is capturing it might be referenced by an OP_RECURSE
618
    so its last iterator can never be possessified if the pattern contains
619
    recursions. (This could be improved by keeping a list of group numbers that
620
    are called by recursion.) */
621
622
1.12k
    bracode = code - GET(code, 1);
623
1.12k
    switch(*bracode)
624
1.12k
      {
625
174
      case OP_CBRA:
626
174
      case OP_SCBRA:
627
174
      case OP_CBRAPOS:
628
174
      case OP_SCBRAPOS:
629
174
      if (cb->had_recurse) return FALSE;
630
174
      break;
631
632
      /* A script run might have to backtrack if the iterated item can match
633
      characters from more than one script. So give up unless repeating an
634
      explicit character. */
635
636
174
      case OP_SCRIPT_RUN:
637
0
      if (base_list[0] != OP_CHAR && base_list[0] != OP_CHARI)
638
0
        return FALSE;
639
0
      break;
640
641
      /* Atomic sub-patterns and assertions can always auto-possessify their
642
      last iterator except for variable length lookbehinds. However, if the
643
      group was entered as a result of checking a previous iterator, this is
644
      not possible. */
645
646
9
      case OP_ASSERT:
647
12
      case OP_ASSERT_NOT:
648
12
      case OP_ONCE:
649
12
      return !entered_a_group;
650
651
0
      case OP_ASSERTBACK:
652
0
      case OP_ASSERTBACK_NOT:
653
0
      return (bracode[1+LINK_SIZE] == OP_VREVERSE)? FALSE : !entered_a_group;
654
655
      /* Non-atomic assertions - don't possessify last iterator. This needs
656
      more thought. */
657
658
11
      case OP_ASSERT_NA:
659
11
      case OP_ASSERTBACK_NA:
660
11
      return FALSE;
661
1.12k
      }
662
663
    /* Skip over the bracket and inspect what comes next. */
664
665
1.10k
    code += PRIV(OP_lengths)[c];
666
1.10k
    continue;
667
668
    /* Handle cases where the next item is a group. */
669
670
3
    case OP_ONCE:
671
3
    case OP_BRA:
672
69
    case OP_CBRA:
673
69
    next_code = code + GET(code, 1);
674
69
    code += PRIV(OP_lengths)[c];
675
676
    /* Check each branch. We have to recurse a level for all but the last
677
    branch. */
678
679
92
    while (*next_code == OP_ALT)
680
23
      {
681
23
      if (!compare_opcodes(code, utf, ucp, cb, base_list, base_end, rec_limit))
682
0
        return FALSE;
683
23
      code = next_code + 1 + LINK_SIZE;
684
23
      next_code += GET(next_code, 1);
685
23
      }
686
687
69
    entered_a_group = TRUE;
688
69
    continue;
689
690
2
    case OP_BRAZERO:
691
2
    case OP_BRAMINZERO:
692
693
2
    next_code = code + 1;
694
2
    if (*next_code != OP_BRA && *next_code != OP_CBRA &&
695
0
        *next_code != OP_ONCE) return FALSE;
696
697
2
    do next_code += GET(next_code, 1); while (*next_code == OP_ALT);
698
699
    /* The bracket content will be checked by the OP_BRA/OP_CBRA case above. */
700
701
2
    next_code += 1 + LINK_SIZE;
702
2
    if (!compare_opcodes(next_code, utf, ucp, cb, base_list, base_end,
703
2
         rec_limit))
704
1
      return FALSE;
705
706
1
    code += PRIV(OP_lengths)[c];
707
1
    continue;
708
709
    /* The next opcode does not need special handling; fall through and use it
710
    to see if the base can be possessified. */
711
712
46.5k
    default:
713
46.5k
    break;
714
48.7k
    }
715
716
  /* We now have the next appropriate opcode to compare with the base. Check
717
  for a supported opcode, and load its properties. */
718
719
46.5k
  code = get_chr_property_list(code, utf, ucp, cb->fcc, list);
720
46.5k
  if (code == NULL) return FALSE;    /* Unsupported */
721
722
  /* If either opcode is a small character list, set pointers for comparing
723
  characters from that list with another list, or with a property. */
724
725
45.9k
  if (base_list[0] == OP_CHAR)
726
29.0k
    {
727
29.0k
    chr_ptr = base_list + 2;
728
29.0k
    list_ptr = list;
729
29.0k
    }
730
16.9k
  else if (list[0] == OP_CHAR)
731
10.8k
    {
732
10.8k
    chr_ptr = list + 2;
733
10.8k
    list_ptr = base_list;
734
10.8k
    }
735
736
  /* Character bitsets can also be compared to certain opcodes. */
737
738
6.01k
  else if (base_list[0] == OP_CLASS || list[0] == OP_CLASS
739
4.36k
#if PCRE2_CODE_UNIT_WIDTH == 8
740
      /* In 8 bit, non-UTF mode, OP_CLASS and OP_NCLASS are the same. */
741
4.36k
      || (!utf && (base_list[0] == OP_NCLASS || list[0] == OP_NCLASS))
742
6.01k
#endif
743
6.01k
      )
744
2.06k
    {
745
2.06k
#if PCRE2_CODE_UNIT_WIDTH == 8
746
2.06k
    if (base_list[0] == OP_CLASS || (!utf && base_list[0] == OP_NCLASS))
747
#else
748
    if (base_list[0] == OP_CLASS)
749
#endif
750
1.45k
      {
751
1.45k
      set1 = (uint8_t *)(base_end - base_list[2]);
752
1.45k
      list_ptr = list;
753
1.45k
      }
754
611
    else
755
611
      {
756
611
      set1 = (uint8_t *)(code - list[2]);
757
611
      list_ptr = base_list;
758
611
      }
759
760
2.06k
    invert_bits = FALSE;
761
2.06k
    switch(list_ptr[0])
762
2.06k
      {
763
514
      case OP_CLASS:
764
636
      case OP_NCLASS:
765
636
      set2 = (uint8_t *)
766
636
        ((list_ptr == list ? code : base_end) - list_ptr[2]);
767
636
      break;
768
769
0
#ifdef SUPPORT_WIDE_CHARS
770
91
      case OP_XCLASS:
771
91
      xclass_flags = (list_ptr == list ? code : base_end) - list_ptr[2] + LINK_SIZE;
772
91
      if ((*xclass_flags & XCL_HASPROP) != 0) return FALSE;
773
3
      if ((*xclass_flags & XCL_MAP) == 0)
774
0
        {
775
        /* No bits are set for characters < 256. */
776
0
        if (list[1] == 0) return (*xclass_flags & XCL_NOT) == 0;
777
        /* Might be an empty repeat. */
778
0
        continue;
779
0
        }
780
3
      set2 = (uint8_t *)(xclass_flags + 1);
781
3
      break;
782
0
#endif
783
784
35
      case OP_NOT_DIGIT:
785
35
      invert_bits = TRUE;
786
      /* Fall through */
787
536
      case OP_DIGIT:
788
536
      set2 = (uint8_t *)(cb->cbits + cbit_digit);
789
536
      break;
790
791
1
      case OP_NOT_WHITESPACE:
792
1
      invert_bits = TRUE;
793
      /* Fall through */
794
138
      case OP_WHITESPACE:
795
138
      set2 = (uint8_t *)(cb->cbits + cbit_space);
796
138
      break;
797
798
91
      case OP_NOT_WORDCHAR:
799
91
      invert_bits = TRUE;
800
      /* Fall through */
801
312
      case OP_WORDCHAR:
802
312
      set2 = (uint8_t *)(cb->cbits + cbit_word);
803
312
      break;
804
805
348
      default:
806
348
      return FALSE;
807
2.06k
      }
808
809
    /* Because the bit sets are unaligned bytes, we need to perform byte
810
    comparison here. */
811
812
1.62k
    set_end = set1 + 32;
813
1.62k
    if (invert_bits)
814
127
      {
815
127
      do
816
228
        {
817
228
        if ((*set1++ & ~(*set2++)) != 0) return FALSE;
818
228
        }
819
127
      while (set1 < set_end);
820
127
      }
821
1.49k
    else
822
1.49k
      {
823
1.49k
      do
824
20.6k
        {
825
20.6k
        if ((*set1++ & *set2++) != 0) return FALSE;
826
20.6k
        }
827
19.5k
      while (set1 < set_end);
828
1.49k
      }
829
830
389
    if (list[1] == 0) return TRUE;
831
    /* Might be an empty repeat. */
832
226
    continue;
833
389
    }
834
835
  /* Some property combinations also acceptable. Unicode property opcodes are
836
  processed specially; the rest can be handled with a lookup table. */
837
838
3.95k
  else
839
3.95k
    {
840
3.95k
    uint32_t leftop, rightop;
841
842
3.95k
    leftop = base_list[0];
843
3.95k
    rightop = list[0];
844
845
3.95k
#ifdef SUPPORT_UNICODE
846
3.95k
    accepted = FALSE; /* Always set in non-unicode case. */
847
3.95k
    if (leftop == OP_PROP || leftop == OP_NOTPROP)
848
155
      {
849
155
      if (rightop == OP_EOD)
850
0
        accepted = TRUE;
851
155
      else if (rightop == OP_PROP || rightop == OP_NOTPROP)
852
45
        {
853
45
        int n;
854
45
        const uint8_t *p;
855
45
        BOOL same = leftop == rightop;
856
45
        BOOL lisprop = leftop == OP_PROP;
857
45
        BOOL risprop = rightop == OP_PROP;
858
45
        BOOL bothprop = lisprop && risprop;
859
860
        /* There's a table that specifies how each combination is to be
861
        processed:
862
          0   Always return FALSE (never auto-possessify)
863
          1   Character groups are distinct (possessify if both are OP_PROP)
864
          2   Check character categories in the same group (general or particular)
865
          3   Return TRUE if the two opcodes are not the same
866
          ... see comments below
867
        */
868
869
45
        n = propposstab[base_list[2]][list[2]];
870
45
        switch(n)
871
45
          {
872
0
          case 0: break;
873
12
          case 1: accepted = bothprop; break;
874
5
          case 2: accepted = (base_list[3] == list[3]) != same; break;
875
14
          case 3: accepted = !same; break;
876
877
0
          case 4:  /* Left general category, right particular category */
878
0
          accepted = risprop && catposstab[base_list[3]][list[3]] == same;
879
0
          break;
880
881
0
          case 5:  /* Right general category, left particular category */
882
0
          accepted = lisprop && catposstab[list[3]][base_list[3]] == same;
883
0
          break;
884
885
          /* This code is logically tricky. Think hard before fiddling with it.
886
          The posspropstab table has four entries per row. Each row relates to
887
          one of PCRE's special properties such as ALNUM or SPACE or WORD.
888
          Only WORD actually needs all four entries, but using repeats for the
889
          others means they can all use the same code below.
890
891
          The first two entries in each row are Unicode general categories, and
892
          apply always, because all the characters they include are part of the
893
          PCRE character set. The third and fourth entries are a general and a
894
          particular category, respectively, that include one or more relevant
895
          characters. One or the other is used, depending on whether the check
896
          is for a general or a particular category. However, in both cases the
897
          category contains more characters than the specials that are defined
898
          for the property being tested against. Therefore, it cannot be used
899
          in a NOTPROP case.
900
901
          Example: the row for WORD contains ucp_L, ucp_N, ucp_P, ucp_Po.
902
          Underscore is covered by ucp_P or ucp_Po. */
903
904
0
          case 6:  /* Left alphanum vs right general category */
905
0
          case 7:  /* Left space vs right general category */
906
0
          case 8:  /* Left word vs right general category */
907
0
          p = posspropstab[n-6];
908
0
          accepted = risprop && lisprop ==
909
0
            (list[3] != p[0] &&
910
0
             list[3] != p[1] &&
911
0
            (list[3] != p[2] || !lisprop));
912
0
          break;
913
914
0
          case 9:   /* Right alphanum vs left general category */
915
0
          case 10:  /* Right space vs left general category */
916
0
          case 11:  /* Right word vs left general category */
917
0
          p = posspropstab[n-9];
918
0
          accepted = lisprop && risprop ==
919
0
            (base_list[3] != p[0] &&
920
0
             base_list[3] != p[1] &&
921
0
            (base_list[3] != p[2] || !risprop));
922
0
          break;
923
924
0
          case 12:  /* Left alphanum vs right particular category */
925
8
          case 13:  /* Left space vs right particular category */
926
14
          case 14:  /* Left word vs right particular category */
927
14
          p = posspropstab[n-12];
928
14
          accepted = risprop && lisprop ==
929
10
            (catposstab[p[0]][list[3]] &&
930
10
             catposstab[p[1]][list[3]] &&
931
5
            (list[3] != p[3] || !lisprop));
932
14
          break;
933
934
0
          case 15:  /* Right alphanum vs left particular category */
935
0
          case 16:  /* Right space vs left particular category */
936
0
          case 17:  /* Right word vs left particular category */
937
0
          p = posspropstab[n-15];
938
0
          accepted = lisprop && risprop ==
939
0
            (catposstab[p[0]][base_list[3]] &&
940
0
             catposstab[p[1]][base_list[3]] &&
941
0
            (base_list[3] != p[3] || !risprop));
942
0
          break;
943
45
          }
944
45
        }
945
155
      }
946
947
3.80k
    else
948
3.80k
#endif  /* SUPPORT_UNICODE */
949
950
3.80k
    accepted = leftop >= FIRST_AUTOTAB_OP && leftop <= LAST_AUTOTAB_LEFT_OP &&
951
3.60k
           rightop >= FIRST_AUTOTAB_OP && rightop <= LAST_AUTOTAB_RIGHT_OP &&
952
3.59k
           autoposstab[leftop - FIRST_AUTOTAB_OP][rightop - FIRST_AUTOTAB_OP];
953
954
3.95k
    if (!accepted) return FALSE;
955
956
944
    if (list[1] == 0) return TRUE;
957
    /* Might be an empty repeat. */
958
510
    continue;
959
944
    }
960
961
  /* Control reaches here only if one of the items is a small character list.
962
  All characters are checked against the other side. */
963
964
39.9k
  do
965
42.8k
    {
966
42.8k
    chr = *chr_ptr;
967
968
42.8k
    switch(list_ptr[0])
969
42.8k
      {
970
22.2k
      case OP_CHAR:
971
22.2k
      ochr_ptr = list_ptr + 2;
972
22.2k
      do
973
25.3k
        {
974
25.3k
        if (chr == *ochr_ptr) return FALSE;
975
24.4k
        ochr_ptr++;
976
24.4k
        }
977
24.4k
      while(*ochr_ptr != NOTACHAR);
978
21.3k
      break;
979
980
21.3k
      case OP_NOT:
981
900
      ochr_ptr = list_ptr + 2;
982
900
      do
983
1.16k
        {
984
1.16k
        if (chr == *ochr_ptr)
985
256
          break;
986
905
        ochr_ptr++;
987
905
        }
988
905
      while(*ochr_ptr != NOTACHAR);
989
900
      if (*ochr_ptr == NOTACHAR) return FALSE;   /* Not found */
990
256
      break;
991
992
      /* Note that OP_DIGIT etc. are generated only when PCRE2_UCP is *not*
993
      set. When it is set, \d etc. are converted into OP_(NOT_)PROP codes. */
994
995
1.22k
      case OP_DIGIT:
996
1.22k
      if (chr < 256 && (cb->ctypes[chr] & ctype_digit) != 0) return FALSE;
997
1.19k
      break;
998
999
1.19k
      case OP_NOT_DIGIT:
1000
243
      if (chr > 255 || (cb->ctypes[chr] & ctype_digit) == 0) return FALSE;
1001
3
      break;
1002
1003
382
      case OP_WHITESPACE:
1004
382
      if (chr < 256 && (cb->ctypes[chr] & ctype_space) != 0) return FALSE;
1005
365
      break;
1006
1007
365
      case OP_NOT_WHITESPACE:
1008
38
      if (chr > 255 || (cb->ctypes[chr] & ctype_space) == 0) return FALSE;
1009
3
      break;
1010
1011
1.83k
      case OP_WORDCHAR:
1012
1.83k
      if (chr < 255 && (cb->ctypes[chr] & ctype_word) != 0) return FALSE;
1013
1.57k
      break;
1014
1015
1.57k
      case OP_NOT_WORDCHAR:
1016
619
      if (chr > 255 || (cb->ctypes[chr] & ctype_word) == 0) return FALSE;
1017
401
      break;
1018
1019
401
      case OP_HSPACE:
1020
161
      switch(chr)
1021
161
        {
1022
1
        HSPACE_CASES: return FALSE;
1023
160
        default: break;
1024
161
        }
1025
160
      break;
1026
1027
454
      case OP_NOT_HSPACE:
1028
454
      switch(chr)
1029
454
        {
1030
11
        HSPACE_CASES: break;
1031
443
        default: return FALSE;
1032
454
        }
1033
11
      break;
1034
1035
2.53k
      case OP_ANYNL:
1036
3.15k
      case OP_VSPACE:
1037
3.15k
      switch(chr)
1038
3.15k
        {
1039
255
        VSPACE_CASES: return FALSE;
1040
2.89k
        default: break;
1041
3.15k
        }
1042
2.89k
      break;
1043
1044
2.89k
      case OP_NOT_VSPACE:
1045
550
      switch(chr)
1046
550
        {
1047
7
        VSPACE_CASES: break;
1048
543
        default: return FALSE;
1049
550
        }
1050
7
      break;
1051
1052
153
      case OP_DOLL:
1053
157
      case OP_EODN:
1054
157
      switch (chr)
1055
157
        {
1056
0
        case CHAR_CR:
1057
0
        case CHAR_LF:
1058
2
        case CHAR_VT:
1059
2
        case CHAR_FF:
1060
2
        case CHAR_NEL:
1061
2
#ifndef EBCDIC
1062
2
        case 0x2028:
1063
2
        case 0x2029:
1064
2
#endif  /* Not EBCDIC */
1065
2
        return FALSE;
1066
157
        }
1067
155
      break;
1068
1069
155
      case OP_EOD:    /* Can always possessify before \z */
1070
5
      break;
1071
1072
0
#ifdef SUPPORT_UNICODE
1073
582
      case OP_PROP:
1074
715
      case OP_NOTPROP:
1075
715
      if (!check_char_prop(chr, list_ptr[2], list_ptr[3],
1076
715
            list_ptr[0] == OP_NOTPROP))
1077
249
        return FALSE;
1078
466
      break;
1079
466
#endif
1080
1081
1.10k
      case OP_NCLASS:
1082
1.10k
      if (chr > 255) return FALSE;
1083
      /* Fall through */
1084
1085
8.11k
      case OP_CLASS:
1086
8.11k
      if (chr > 255) break;
1087
8.09k
      class_bitset = (uint8_t *)
1088
8.09k
        ((list_ptr == list ? code : base_end) - list_ptr[2]);
1089
8.09k
      if ((class_bitset[chr >> 3] & (1u << (chr & 7))) != 0) return FALSE;
1090
4.72k
      break;
1091
1092
4.72k
#ifdef SUPPORT_WIDE_CHARS
1093
4.72k
      case OP_XCLASS:
1094
470
      if (PRIV(xclass)(chr, (list_ptr == list ? code : base_end) -
1095
470
          list_ptr[2] + LINK_SIZE, utf)) return FALSE;
1096
184
      break;
1097
184
#endif
1098
1099
1.62k
      default:
1100
1.62k
      return FALSE;
1101
42.8k
      }
1102
1103
33.7k
    chr_ptr++;
1104
33.7k
    }
1105
39.9k
  while(*chr_ptr != NOTACHAR);
1106
1107
  /* At least one character must be matched from this opcode. */
1108
1109
30.7k
  if (list[1] == 0) return TRUE;
1110
30.7k
  }
1111
1112
/* Control never reaches here. There used to be a fail-save return FALSE; here,
1113
but some compilers complain about an unreachable statement. */
1114
39.2k
}
1115
1116
1117
1118
/*************************************************
1119
*    Scan compiled regex for auto-possession     *
1120
*************************************************/
1121
1122
/* Replaces single character iterations with their possessive alternatives
1123
if appropriate. This function modifies the compiled opcode! Hitting a
1124
non-existent opcode may indicate a bug in PCRE2, but it can also be caused if a
1125
bad UTF string was compiled with PCRE2_NO_UTF_CHECK. The rec_limit catches
1126
overly complicated or large patterns. In these cases, the check just stops,
1127
leaving the remainder of the pattern unpossessified.
1128
1129
Arguments:
1130
  code        points to start of the byte code
1131
  cb          compile data block
1132
1133
Returns:      0 for success
1134
              -1 if a non-existant opcode is encountered
1135
*/
1136
1137
int
1138
PRIV(auto_possessify)(PCRE2_UCHAR *code, const compile_block *cb)
1139
1.79k
{
1140
1.79k
PCRE2_UCHAR c;
1141
1.79k
PCRE2_SPTR end;
1142
1.79k
PCRE2_UCHAR *repeat_opcode;
1143
1.79k
uint32_t list[8];
1144
1.79k
int rec_limit = 1000;  /* Was 10,000 but clang+ASAN uses a lot of stack. */
1145
1.79k
BOOL utf = (cb->external_options & PCRE2_UTF) != 0;
1146
1.79k
BOOL ucp = (cb->external_options & PCRE2_UCP) != 0;
1147
1148
1.79k
for (;;)
1149
445k
  {
1150
445k
  c = *code;
1151
1152
445k
  if (c >= OP_TABLE_LENGTH) return -1;   /* Something gone wrong */
1153
1154
445k
  if (c >= OP_STAR && c <= OP_TYPEPOSUPTO)
1155
35.5k
    {
1156
35.5k
    c -= get_repeat_base(c) - OP_STAR;
1157
35.5k
    end = (c <= OP_MINUPTO) ?
1158
35.5k
      get_chr_property_list(code, utf, ucp, cb->fcc, list) : NULL;
1159
35.5k
    list[1] = c == OP_STAR || c == OP_PLUS || c == OP_QUERY || c == OP_UPTO;
1160
1161
35.5k
    if (end != NULL && compare_opcodes(end, utf, ucp, cb, list, end,
1162
34.2k
        &rec_limit))
1163
22.7k
      {
1164
22.7k
      switch(c)
1165
22.7k
        {
1166
2.12k
        case OP_STAR:
1167
2.12k
        *code += OP_POSSTAR - OP_STAR;
1168
2.12k
        break;
1169
1170
1.09k
        case OP_MINSTAR:
1171
1.09k
        *code += OP_POSSTAR - OP_MINSTAR;
1172
1.09k
        break;
1173
1174
5.11k
        case OP_PLUS:
1175
5.11k
        *code += OP_POSPLUS - OP_PLUS;
1176
5.11k
        break;
1177
1178
1.51k
        case OP_MINPLUS:
1179
1.51k
        *code += OP_POSPLUS - OP_MINPLUS;
1180
1.51k
        break;
1181
1182
11.3k
        case OP_QUERY:
1183
11.3k
        *code += OP_POSQUERY - OP_QUERY;
1184
11.3k
        break;
1185
1186
1.58k
        case OP_MINQUERY:
1187
1.58k
        *code += OP_POSQUERY - OP_MINQUERY;
1188
1.58k
        break;
1189
1190
0
        case OP_UPTO:
1191
0
        *code += OP_POSUPTO - OP_UPTO;
1192
0
        break;
1193
1194
0
        case OP_MINUPTO:
1195
0
        *code += OP_POSUPTO - OP_MINUPTO;
1196
0
        break;
1197
22.7k
        }
1198
22.7k
      }
1199
35.5k
    c = *code;
1200
35.5k
    }
1201
410k
  else if (c == OP_CLASS || c == OP_NCLASS || c == OP_XCLASS)
1202
7.63k
    {
1203
7.63k
#ifdef SUPPORT_WIDE_CHARS
1204
7.63k
    if (c == OP_XCLASS)
1205
918
      repeat_opcode = code + GET(code, 1);
1206
6.71k
    else
1207
6.71k
#endif
1208
6.71k
      repeat_opcode = code + 1 + (32 / sizeof(PCRE2_UCHAR));
1209
1210
7.63k
    c = *repeat_opcode;
1211
7.63k
    if (c >= OP_CRSTAR && c <= OP_CRMINRANGE)
1212
5.03k
      {
1213
      /* The return from get_chr_property_list() will never be NULL when
1214
      *code (aka c) is one of the three class opcodes. However, gcc with
1215
      -fanalyzer notes that a NULL return is possible, and grumbles. Hence we
1216
      put in a check. */
1217
1218
5.03k
      end = get_chr_property_list(code, utf, ucp, cb->fcc, list);
1219
5.03k
      list[1] = (c & 1) == 0;
1220
1221
5.03k
      if (end != NULL &&
1222
5.03k
          compare_opcodes(end, utf, ucp, cb, list, end, &rec_limit))
1223
1.88k
        {
1224
1.88k
        switch (c)
1225
1.88k
          {
1226
862
          case OP_CRSTAR:
1227
910
          case OP_CRMINSTAR:
1228
910
          *repeat_opcode = OP_CRPOSSTAR;
1229
910
          break;
1230
1231
448
          case OP_CRPLUS:
1232
500
          case OP_CRMINPLUS:
1233
500
          *repeat_opcode = OP_CRPOSPLUS;
1234
500
          break;
1235
1236
369
          case OP_CRQUERY:
1237
473
          case OP_CRMINQUERY:
1238
473
          *repeat_opcode = OP_CRPOSQUERY;
1239
473
          break;
1240
1241
0
          case OP_CRRANGE:
1242
0
          case OP_CRMINRANGE:
1243
0
          *repeat_opcode = OP_CRPOSRANGE;
1244
0
          break;
1245
1.88k
          }
1246
1.88k
        }
1247
5.03k
      }
1248
7.63k
    c = *code;
1249
7.63k
    }
1250
1251
445k
  switch(c)
1252
445k
    {
1253
1.79k
    case OP_END:
1254
1.79k
    return 0;
1255
1256
1.43k
    case OP_TYPESTAR:
1257
1.45k
    case OP_TYPEMINSTAR:
1258
2.41k
    case OP_TYPEPLUS:
1259
3.07k
    case OP_TYPEMINPLUS:
1260
5.07k
    case OP_TYPEQUERY:
1261
5.33k
    case OP_TYPEMINQUERY:
1262
5.35k
    case OP_TYPEPOSSTAR:
1263
6.39k
    case OP_TYPEPOSPLUS:
1264
9.87k
    case OP_TYPEPOSQUERY:
1265
9.87k
    if (code[1] == OP_PROP || code[1] == OP_NOTPROP) code += 2;
1266
9.87k
    break;
1267
1268
0
    case OP_TYPEUPTO:
1269
0
    case OP_TYPEMINUPTO:
1270
0
    case OP_TYPEEXACT:
1271
0
    case OP_TYPEPOSUPTO:
1272
0
    if (code[1 + IMM2_SIZE] == OP_PROP || code[1 + IMM2_SIZE] == OP_NOTPROP)
1273
0
      code += 2;
1274
0
    break;
1275
1276
0
    case OP_CALLOUT_STR:
1277
0
    code += GET(code, 1 + 2*LINK_SIZE);
1278
0
    break;
1279
1280
0
#ifdef SUPPORT_WIDE_CHARS
1281
918
    case OP_XCLASS:
1282
918
    code += GET(code, 1);
1283
918
    break;
1284
0
#endif
1285
1286
8
    case OP_MARK:
1287
8
    case OP_COMMIT_ARG:
1288
8
    case OP_PRUNE_ARG:
1289
8
    case OP_SKIP_ARG:
1290
8
    case OP_THEN_ARG:
1291
8
    code += code[1];
1292
8
    break;
1293
445k
    }
1294
1295
  /* Add in the fixed length from the table */
1296
1297
444k
  code += PRIV(OP_lengths)[c];
1298
1299
  /* In UTF-8 and UTF-16 modes, opcodes that are followed by a character may be
1300
  followed by a multi-byte character. The length in the table is a minimum, so
1301
  we have to arrange to skip the extra code units. */
1302
1303
444k
#ifdef MAYBE_UTF_MULTI
1304
444k
  if (utf) switch(c)
1305
49.7k
    {
1306
8.56k
    case OP_CHAR:
1307
33.6k
    case OP_CHARI:
1308
33.7k
    case OP_NOT:
1309
33.8k
    case OP_NOTI:
1310
33.8k
    case OP_STAR:
1311
33.8k
    case OP_MINSTAR:
1312
33.9k
    case OP_PLUS:
1313
33.9k
    case OP_MINPLUS:
1314
34.0k
    case OP_QUERY:
1315
34.0k
    case OP_MINQUERY:
1316
34.0k
    case OP_UPTO:
1317
34.0k
    case OP_MINUPTO:
1318
34.0k
    case OP_EXACT:
1319
34.0k
    case OP_POSSTAR:
1320
34.3k
    case OP_POSPLUS:
1321
34.4k
    case OP_POSQUERY:
1322
34.4k
    case OP_POSUPTO:
1323
34.4k
    case OP_STARI:
1324
34.5k
    case OP_MINSTARI:
1325
34.6k
    case OP_PLUSI:
1326
34.6k
    case OP_MINPLUSI:
1327
34.7k
    case OP_QUERYI:
1328
34.9k
    case OP_MINQUERYI:
1329
34.9k
    case OP_UPTOI:
1330
34.9k
    case OP_MINUPTOI:
1331
34.9k
    case OP_EXACTI:
1332
35.0k
    case OP_POSSTARI:
1333
36.1k
    case OP_POSPLUSI:
1334
36.8k
    case OP_POSQUERYI:
1335
36.8k
    case OP_POSUPTOI:
1336
36.8k
    case OP_NOTSTAR:
1337
36.8k
    case OP_NOTMINSTAR:
1338
36.8k
    case OP_NOTPLUS:
1339
36.8k
    case OP_NOTMINPLUS:
1340
36.9k
    case OP_NOTQUERY:
1341
36.9k
    case OP_NOTMINQUERY:
1342
36.9k
    case OP_NOTUPTO:
1343
36.9k
    case OP_NOTMINUPTO:
1344
36.9k
    case OP_NOTEXACT:
1345
36.9k
    case OP_NOTPOSSTAR:
1346
36.9k
    case OP_NOTPOSPLUS:
1347
36.9k
    case OP_NOTPOSQUERY:
1348
36.9k
    case OP_NOTPOSUPTO:
1349
36.9k
    case OP_NOTSTARI:
1350
36.9k
    case OP_NOTMINSTARI:
1351
37.0k
    case OP_NOTPLUSI:
1352
37.0k
    case OP_NOTMINPLUSI:
1353
37.0k
    case OP_NOTQUERYI:
1354
37.1k
    case OP_NOTMINQUERYI:
1355
37.1k
    case OP_NOTUPTOI:
1356
37.1k
    case OP_NOTMINUPTOI:
1357
37.1k
    case OP_NOTEXACTI:
1358
37.1k
    case OP_NOTPOSSTARI:
1359
37.1k
    case OP_NOTPOSPLUSI:
1360
37.1k
    case OP_NOTPOSQUERYI:
1361
37.1k
    case OP_NOTPOSUPTOI:
1362
37.1k
    if (HAS_EXTRALEN(code[-1])) code += GET_EXTRALEN(code[-1]);
1363
37.1k
    break;
1364
49.7k
    }
1365
#else
1366
  (void)(utf);  /* Keep compiler happy by referencing function argument */
1367
#endif  /* SUPPORT_WIDE_CHARS */
1368
444k
  }
1369
1.79k
}
1370
1371
/* End of pcre2_auto_possess.c */