Coverage Report

Created: 2025-08-28 07:12

/src/libxml2/xmlstring.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * string.c : an XML string utilities module
3
 *
4
 * This module provides various utility functions for manipulating
5
 * the xmlChar* type. All functions named xmlStr* have been moved here
6
 * from the parser.c file (their original home).
7
 *
8
 * See Copyright for the status of this software.
9
 *
10
 * UTF8 string routines from: William Brack
11
 *
12
 * Author: Daniel Veillard
13
 */
14
15
#define IN_LIBXML
16
#include "libxml.h"
17
18
#include <stdlib.h>
19
#include <string.h>
20
#include <limits.h>
21
#include <libxml/xmlmemory.h>
22
#include <libxml/parserInternals.h>
23
#include <libxml/xmlstring.h>
24
25
#include "private/parser.h"
26
#include "private/string.h"
27
28
#ifndef va_copy
29
  #ifdef __va_copy
30
    #define va_copy(dest, src) __va_copy(dest, src)
31
  #else
32
    #define va_copy(dest, src) memcpy(&(dest), &(src), sizeof(va_list))
33
  #endif
34
#endif
35
36
/************************************************************************
37
 *                                                                      *
38
 *                Commodity functions to handle xmlChars                *
39
 *                                                                      *
40
 ************************************************************************/
41
42
/**
43
 * a strndup for array of xmlChar's
44
 *
45
 * @param cur  the input xmlChar *
46
 * @param len  the len of `cur`
47
 * @returns a new xmlChar * or NULL
48
 */
49
xmlChar *
50
10.4M
xmlStrndup(const xmlChar *cur, int len) {
51
10.4M
    xmlChar *ret;
52
53
10.4M
    if ((cur == NULL) || (len < 0)) return(NULL);
54
10.4M
    ret = xmlMalloc((size_t) len + 1);
55
10.4M
    if (ret == NULL) {
56
0
        return(NULL);
57
0
    }
58
10.4M
    memcpy(ret, cur, len);
59
10.4M
    ret[len] = 0;
60
10.4M
    return(ret);
61
10.4M
}
62
63
/**
64
 * a strdup for array of xmlChar's. Since they are supposed to be
65
 * encoded in UTF-8 or an encoding with 8bit based chars, we assume
66
 * a termination mark of '0'.
67
 *
68
 * @param cur  the input xmlChar *
69
 * @returns a new xmlChar * or NULL
70
 */
71
xmlChar *
72
1.66M
xmlStrdup(const xmlChar *cur) {
73
1.66M
    const xmlChar *p = cur;
74
75
1.66M
    if (cur == NULL) return(NULL);
76
470M
    while (*p != 0) p++; /* non input consuming */
77
1.66M
    return(xmlStrndup(cur, p - cur));
78
1.66M
}
79
80
/**
81
 * a strndup for char's to xmlChar's
82
 *
83
 * @param cur  the input char *
84
 * @param len  the len of `cur`
85
 * @returns a new xmlChar * or NULL
86
 */
87
88
xmlChar *
89
67.7k
xmlCharStrndup(const char *cur, int len) {
90
67.7k
    int i;
91
67.7k
    xmlChar *ret;
92
93
67.7k
    if ((cur == NULL) || (len < 0)) return(NULL);
94
67.7k
    ret = xmlMalloc((size_t) len + 1);
95
67.7k
    if (ret == NULL) {
96
0
        return(NULL);
97
0
    }
98
1.76M
    for (i = 0;i < len;i++) {
99
        /* Explicit sign change */
100
1.69M
        ret[i] = (xmlChar) cur[i];
101
1.69M
        if (ret[i] == 0) return(ret);
102
1.69M
    }
103
67.7k
    ret[len] = 0;
104
67.7k
    return(ret);
105
67.7k
}
106
107
/**
108
 * a strdup for char's to xmlChar's
109
 *
110
 * @param cur  the input char *
111
 * @returns a new xmlChar * or NULL
112
 */
113
114
xmlChar *
115
67.7k
xmlCharStrdup(const char *cur) {
116
67.7k
    const char *p = cur;
117
118
67.7k
    if (cur == NULL) return(NULL);
119
1.76M
    while (*p != '\0') p++; /* non input consuming */
120
67.7k
    return(xmlCharStrndup(cur, p - cur));
121
67.7k
}
122
123
/**
124
 * a strcmp for xmlChar's
125
 *
126
 * @param str1  the first xmlChar *
127
 * @param str2  the second xmlChar *
128
 * @returns the integer result of the comparison
129
 */
130
131
int
132
2.83k
xmlStrcmp(const xmlChar *str1, const xmlChar *str2) {
133
2.83k
    if (str1 == str2) return(0);
134
2.83k
    if (str1 == NULL) return(-1);
135
2.83k
    if (str2 == NULL) return(1);
136
2.83k
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
137
2.83k
    return(strcmp((const char *)str1, (const char *)str2));
138
#else
139
    do {
140
        int tmp = *str1++ - *str2;
141
        if (tmp != 0) return(tmp);
142
    } while (*str2++ != 0);
143
    return 0;
144
#endif
145
2.83k
}
146
147
/**
148
 * Check if both strings are equal of have same content.
149
 * Should be a bit more readable and faster than #xmlStrcmp
150
 *
151
 * @param str1  the first xmlChar *
152
 * @param str2  the second xmlChar *
153
 * @returns 1 if they are equal, 0 if they are different
154
 */
155
156
int
157
15.0M
xmlStrEqual(const xmlChar *str1, const xmlChar *str2) {
158
15.0M
    if (str1 == str2) return(1);
159
15.0M
    if (str1 == NULL) return(0);
160
15.0M
    if (str2 == NULL) return(0);
161
15.0M
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
162
15.0M
    return(strcmp((const char *)str1, (const char *)str2) == 0);
163
#else
164
    do {
165
        if (*str1++ != *str2) return(0);
166
    } while (*str2++);
167
    return(1);
168
#endif
169
15.0M
}
170
171
/**
172
 * Check if a QName is Equal to a given string
173
 *
174
 * @param pref  the prefix of the QName
175
 * @param name  the localname of the QName
176
 * @param str  the second xmlChar *
177
 * @returns 1 if they are equal, 0 if they are different
178
 */
179
180
int
181
33.9k
xmlStrQEqual(const xmlChar *pref, const xmlChar *name, const xmlChar *str) {
182
33.9k
    if (pref == NULL) return(xmlStrEqual(name, str));
183
7.72k
    if (name == NULL) return(0);
184
7.72k
    if (str == NULL) return(0);
185
186
26.7k
    do {
187
26.7k
        if (*pref++ != *str) return(0);
188
26.7k
    } while ((*str++) && (*pref));
189
7.72k
    if (*str++ != ':') return(0);
190
42.0k
    do {
191
42.0k
        if (*name++ != *str) return(0);
192
42.0k
    } while (*str++);
193
7.72k
    return(1);
194
7.72k
}
195
196
/**
197
 * a strncmp for xmlChar's
198
 *
199
 * @param str1  the first xmlChar *
200
 * @param str2  the second xmlChar *
201
 * @param len  the max comparison length
202
 * @returns the integer result of the comparison
203
 */
204
205
int
206
13.1k
xmlStrncmp(const xmlChar *str1, const xmlChar *str2, int len) {
207
13.1k
    if (len <= 0) return(0);
208
13.1k
    if (str1 == str2) return(0);
209
13.1k
    if (str1 == NULL) return(-1);
210
13.1k
    if (str2 == NULL) return(1);
211
13.1k
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
212
13.1k
    return(strncmp((const char *)str1, (const char *)str2, len));
213
#else
214
    do {
215
        int tmp = *str1++ - *str2;
216
        if (tmp != 0 || --len == 0) return(tmp);
217
    } while (*str2++ != 0);
218
    return 0;
219
#endif
220
13.1k
}
221
222
static const xmlChar casemap[256] = {
223
    0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,
224
    0x08,0x09,0x0A,0x0B,0x0C,0x0D,0x0E,0x0F,
225
    0x10,0x11,0x12,0x13,0x14,0x15,0x16,0x17,
226
    0x18,0x19,0x1A,0x1B,0x1C,0x1D,0x1E,0x1F,
227
    0x20,0x21,0x22,0x23,0x24,0x25,0x26,0x27,
228
    0x28,0x29,0x2A,0x2B,0x2C,0x2D,0x2E,0x2F,
229
    0x30,0x31,0x32,0x33,0x34,0x35,0x36,0x37,
230
    0x38,0x39,0x3A,0x3B,0x3C,0x3D,0x3E,0x3F,
231
    0x40,0x61,0x62,0x63,0x64,0x65,0x66,0x67,
232
    0x68,0x69,0x6A,0x6B,0x6C,0x6D,0x6E,0x6F,
233
    0x70,0x71,0x72,0x73,0x74,0x75,0x76,0x77,
234
    0x78,0x79,0x7A,0x7B,0x5C,0x5D,0x5E,0x5F,
235
    0x60,0x61,0x62,0x63,0x64,0x65,0x66,0x67,
236
    0x68,0x69,0x6A,0x6B,0x6C,0x6D,0x6E,0x6F,
237
    0x70,0x71,0x72,0x73,0x74,0x75,0x76,0x77,
238
    0x78,0x79,0x7A,0x7B,0x7C,0x7D,0x7E,0x7F,
239
    0x80,0x81,0x82,0x83,0x84,0x85,0x86,0x87,
240
    0x88,0x89,0x8A,0x8B,0x8C,0x8D,0x8E,0x8F,
241
    0x90,0x91,0x92,0x93,0x94,0x95,0x96,0x97,
242
    0x98,0x99,0x9A,0x9B,0x9C,0x9D,0x9E,0x9F,
243
    0xA0,0xA1,0xA2,0xA3,0xA4,0xA5,0xA6,0xA7,
244
    0xA8,0xA9,0xAA,0xAB,0xAC,0xAD,0xAE,0xAF,
245
    0xB0,0xB1,0xB2,0xB3,0xB4,0xB5,0xB6,0xB7,
246
    0xB8,0xB9,0xBA,0xBB,0xBC,0xBD,0xBE,0xBF,
247
    0xC0,0xC1,0xC2,0xC3,0xC4,0xC5,0xC6,0xC7,
248
    0xC8,0xC9,0xCA,0xCB,0xCC,0xCD,0xCE,0xCF,
249
    0xD0,0xD1,0xD2,0xD3,0xD4,0xD5,0xD6,0xD7,
250
    0xD8,0xD9,0xDA,0xDB,0xDC,0xDD,0xDE,0xDF,
251
    0xE0,0xE1,0xE2,0xE3,0xE4,0xE5,0xE6,0xE7,
252
    0xE8,0xE9,0xEA,0xEB,0xEC,0xED,0xEE,0xEF,
253
    0xF0,0xF1,0xF2,0xF3,0xF4,0xF5,0xF6,0xF7,
254
    0xF8,0xF9,0xFA,0xFB,0xFC,0xFD,0xFE,0xFF
255
};
256
257
/**
258
 * a strcasecmp for xmlChar's
259
 *
260
 * @param str1  the first xmlChar *
261
 * @param str2  the second xmlChar *
262
 * @returns the integer result of the comparison
263
 */
264
265
int
266
59.8k
xmlStrcasecmp(const xmlChar *str1, const xmlChar *str2) {
267
59.8k
    register int tmp;
268
269
59.8k
    if (str1 == str2) return(0);
270
59.8k
    if (str1 == NULL) return(-1);
271
59.8k
    if (str2 == NULL) return(1);
272
186k
    do {
273
186k
        tmp = casemap[*str1++] - casemap[*str2];
274
186k
        if (tmp != 0) return(tmp);
275
186k
    } while (*str2++ != 0);
276
20.3k
    return 0;
277
59.8k
}
278
279
/**
280
 * a strncasecmp for xmlChar's
281
 *
282
 * @param str1  the first xmlChar *
283
 * @param str2  the second xmlChar *
284
 * @param len  the max comparison length
285
 * @returns the integer result of the comparison
286
 */
287
288
int
289
0
xmlStrncasecmp(const xmlChar *str1, const xmlChar *str2, int len) {
290
0
    register int tmp;
291
292
0
    if (len <= 0) return(0);
293
0
    if (str1 == str2) return(0);
294
0
    if (str1 == NULL) return(-1);
295
0
    if (str2 == NULL) return(1);
296
0
    do {
297
0
        tmp = casemap[*str1++] - casemap[*str2];
298
0
        if (tmp != 0 || --len == 0) return(tmp);
299
0
    } while (*str2++ != 0);
300
0
    return 0;
301
0
}
302
303
/**
304
 * a strchr for xmlChar's
305
 *
306
 * @param str  the xmlChar * array
307
 * @param val  the xmlChar to search
308
 * @returns the xmlChar * for the first occurrence or NULL.
309
 */
310
311
const xmlChar *
312
240k
xmlStrchr(const xmlChar *str, xmlChar val) {
313
240k
    if (str == NULL) return(NULL);
314
3.16M
    while (*str != 0) { /* non input consuming */
315
2.97M
        if (*str == val) return((xmlChar *) str);
316
2.92M
        str++;
317
2.92M
    }
318
194k
    return(NULL);
319
240k
}
320
321
/**
322
 * a strstr for xmlChar's
323
 *
324
 * @param str  the xmlChar * array (haystack)
325
 * @param val  the xmlChar to search (needle)
326
 * @returns the xmlChar * for the first occurrence or NULL.
327
 */
328
329
const xmlChar *
330
15.1k
xmlStrstr(const xmlChar *str, const xmlChar *val) {
331
15.1k
    int n;
332
333
15.1k
    if (str == NULL) return(NULL);
334
15.1k
    if (val == NULL) return(NULL);
335
15.1k
    n = xmlStrlen(val);
336
337
15.1k
    if (n == 0) return(str);
338
1.07M
    while (*str != 0) { /* non input consuming */
339
1.06M
        if (*str == *val) {
340
12.3k
            if (!xmlStrncmp(str, val, n)) return((const xmlChar *) str);
341
12.3k
        }
342
1.05M
        str++;
343
1.05M
    }
344
12.9k
    return(NULL);
345
15.1k
}
346
347
/**
348
 * a case-ignoring strstr for xmlChar's
349
 *
350
 * @param str  the xmlChar * array (haystack)
351
 * @param val  the xmlChar to search (needle)
352
 * @returns the xmlChar * for the first occurrence or NULL.
353
 */
354
355
const xmlChar *
356
0
xmlStrcasestr(const xmlChar *str, const xmlChar *val) {
357
0
    int n;
358
359
0
    if (str == NULL) return(NULL);
360
0
    if (val == NULL) return(NULL);
361
0
    n = xmlStrlen(val);
362
363
0
    if (n == 0) return(str);
364
0
    while (*str != 0) { /* non input consuming */
365
0
        if (casemap[*str] == casemap[*val])
366
0
            if (!xmlStrncasecmp(str, val, n)) return(str);
367
0
        str++;
368
0
    }
369
0
    return(NULL);
370
0
}
371
372
/**
373
 * Extract a substring of a given string
374
 *
375
 * @param str  the xmlChar * array (haystack)
376
 * @param start  the index of the first char (zero based)
377
 * @param len  the length of the substring
378
 * @returns the xmlChar * for the first occurrence or NULL.
379
 */
380
381
xmlChar *
382
0
xmlStrsub(const xmlChar *str, int start, int len) {
383
0
    int i;
384
385
0
    if (str == NULL) return(NULL);
386
0
    if (start < 0) return(NULL);
387
0
    if (len < 0) return(NULL);
388
389
0
    for (i = 0;i < start;i++) {
390
0
        if (*str == 0) return(NULL);
391
0
        str++;
392
0
    }
393
0
    if (*str == 0) return(NULL);
394
0
    return(xmlStrndup(str, len));
395
0
}
396
397
/**
398
 * length of a xmlChar's string
399
 *
400
 * @param str  the xmlChar * array
401
 * @returns the number of xmlChar contained in the ARRAY.
402
 */
403
404
int
405
1.06M
xmlStrlen(const xmlChar *str) {
406
1.06M
    size_t len = str ? strlen((const char *)str) : 0;
407
1.06M
    return(len > INT_MAX ? 0 : len);
408
1.06M
}
409
410
/**
411
 * a strncat for array of xmlChar's, it will extend `cur` with the len
412
 * first bytes of `add`. Note that if `len` < 0 then this is an API error
413
 * and NULL will be returned.
414
 *
415
 * @param cur  the original xmlChar * array
416
 * @param add  the xmlChar * array added
417
 * @param len  the length of `add`
418
 * @returns a new xmlChar *, the original `cur` is reallocated and should
419
 * not be freed.
420
 */
421
422
xmlChar *
423
0
xmlStrncat(xmlChar *cur, const xmlChar *add, int len) {
424
0
    int size;
425
0
    xmlChar *ret;
426
427
0
    if ((add == NULL) || (len == 0))
428
0
        return(cur);
429
0
    if (len < 0)
430
0
  return(NULL);
431
0
    if (cur == NULL)
432
0
        return(xmlStrndup(add, len));
433
434
0
    size = xmlStrlen(cur);
435
0
    if ((size < 0) || (size > INT_MAX - len))
436
0
        return(NULL);
437
0
    ret = (xmlChar *) xmlRealloc(cur, (size_t) size + len + 1);
438
0
    if (ret == NULL) {
439
0
        xmlFree(cur);
440
0
        return(NULL);
441
0
    }
442
0
    memcpy(&ret[size], add, len);
443
0
    ret[size + len] = 0;
444
0
    return(ret);
445
0
}
446
447
/**
448
 * same as #xmlStrncat, but creates a new string.  The original
449
 * two strings are not freed. If `len` is < 0 then the length
450
 * will be calculated automatically.
451
 *
452
 * @param str1  first xmlChar string
453
 * @param str2  second xmlChar string
454
 * @param len  the len of `str2` or < 0
455
 * @returns a new xmlChar * or NULL
456
 */
457
xmlChar *
458
0
xmlStrncatNew(const xmlChar *str1, const xmlChar *str2, int len) {
459
0
    int size;
460
0
    xmlChar *ret;
461
462
0
    if (len < 0) {
463
0
        len = xmlStrlen(str2);
464
0
        if (len < 0)
465
0
            return(NULL);
466
0
    }
467
0
    if (str1 == NULL)
468
0
        return(xmlStrndup(str2, len));
469
0
    if ((str2 == NULL) || (len == 0))
470
0
        return(xmlStrdup(str1));
471
472
0
    size = xmlStrlen(str1);
473
0
    if ((size < 0) || (size > INT_MAX - len))
474
0
        return(NULL);
475
0
    ret = (xmlChar *) xmlMalloc((size_t) size + len + 1);
476
0
    if (ret == NULL)
477
0
        return(NULL);
478
0
    memcpy(ret, str1, size);
479
0
    memcpy(&ret[size], str2, len);
480
0
    ret[size + len] = 0;
481
0
    return(ret);
482
0
}
483
484
/**
485
 * a strcat for array of xmlChar's. Since they are supposed to be
486
 * encoded in UTF-8 or an encoding with 8bit based chars, we assume
487
 * a termination mark of '0'.
488
 *
489
 * @param cur  the original xmlChar * array
490
 * @param add  the xmlChar * array added
491
 * @returns a new xmlChar * containing the concatenated string. The original
492
 * `cur` is reallocated and should not be freed.
493
 */
494
xmlChar *
495
0
xmlStrcat(xmlChar *cur, const xmlChar *add) {
496
0
    const xmlChar *p = add;
497
498
0
    if (add == NULL) return(cur);
499
0
    if (cur == NULL)
500
0
        return(xmlStrdup(add));
501
502
0
    while (*p != 0) p++; /* non input consuming */
503
0
    return(xmlStrncat(cur, add, p - add));
504
0
}
505
506
/**
507
 * Formats `msg` and places result into `buf`.
508
 *
509
 * @param buf  the result buffer.
510
 * @param len  the result buffer length.
511
 * @param msg  the message with printf formatting.
512
 * @param ...   extra parameters for the message.
513
 * @returns the number of characters written to `buf` or -1 if an error occurs.
514
 */
515
int
516
0
xmlStrPrintf(xmlChar *buf, int len, const char *msg, ...) {
517
0
    va_list args;
518
0
    int ret;
519
520
0
    if((buf == NULL) || (msg == NULL)) {
521
0
        return(-1);
522
0
    }
523
524
0
    va_start(args, msg);
525
0
    ret = vsnprintf((char *) buf, len, (const char *) msg, args);
526
0
    va_end(args);
527
0
    buf[len - 1] = 0; /* be safe ! */
528
529
0
    return(ret);
530
0
}
531
532
/**
533
 * Formats `msg` and places result into `buf`.
534
 *
535
 * @param buf  the result buffer.
536
 * @param len  the result buffer length.
537
 * @param msg  the message with printf formatting.
538
 * @param ap  extra parameters for the message.
539
 * @returns the number of characters written to `buf` or -1 if an error occurs.
540
 */
541
int
542
0
xmlStrVPrintf(xmlChar *buf, int len, const char *msg, va_list ap) {
543
0
    int ret;
544
545
0
    if((buf == NULL) || (msg == NULL)) {
546
0
        return(-1);
547
0
    }
548
549
0
    ret = vsnprintf((char *) buf, len, (const char *) msg, ap);
550
0
    buf[len - 1] = 0; /* be safe ! */
551
552
0
    return(ret);
553
0
}
554
555
/**
556
 * Creates a newly allocated string according to format.
557
 *
558
 * @param out  pointer to the resulting string
559
 * @param maxSize  maximum size of the output buffer
560
 * @param msg  printf format string
561
 * @param ap  arguments for format string
562
 * @returns 0 on success, 1 if the result was truncated or on other
563
 * errors, -1 if a memory allocation failed.
564
 */
565
int
566
1.79M
xmlStrVASPrintf(xmlChar **out, int maxSize, const char *msg, va_list ap) {
567
1.79M
    char empty[1];
568
1.79M
    va_list copy;
569
1.79M
    xmlChar *buf;
570
1.79M
    int res, size;
571
1.79M
    int truncated = 0;
572
573
1.79M
    if (out == NULL)
574
0
        return(1);
575
1.79M
    *out = NULL;
576
1.79M
    if (msg == NULL)
577
0
        return(1);
578
1.79M
    if (maxSize < 32)
579
0
        maxSize = 32;
580
581
1.79M
    va_copy(copy, ap);
582
1.79M
    res = vsnprintf(empty, 1, msg, copy);
583
1.79M
    va_end(copy);
584
585
1.79M
    if (res > 0) {
586
        /* snprintf seems to work according to C99. */
587
588
1.79M
        if (res < maxSize) {
589
1.79M
            size = res + 1;
590
1.79M
        } else {
591
477
            size = maxSize;
592
477
            truncated = 1;
593
477
        }
594
1.79M
        buf = xmlMalloc(size);
595
1.79M
        if (buf == NULL)
596
0
            return(-1);
597
1.79M
        if (vsnprintf((char *) buf, size, msg, ap) < 0) {
598
0
            xmlFree(buf);
599
0
            return(1);
600
0
        }
601
1.79M
    } else {
602
        /*
603
         * Unfortunately, older snprintf implementations don't follow the
604
         * C99 spec. If the output exceeds the size of the buffer, they can
605
         * return -1, 0 or the number of characters written instead of the
606
         * needed size. Older MSCVRT also won't write a terminating null
607
         * byte if the buffer is too small.
608
         *
609
         * If the value returned is non-negative and strictly less than
610
         * the buffer size (without terminating null), the result should
611
         * have been written completely, so we double the buffer size
612
         * until this condition is true. This assumes that snprintf will
613
         * eventually return a non-negative value. Otherwise, we will
614
         * allocate more and more memory until we run out.
615
         *
616
         * Note that this code path is also executed on conforming
617
         * platforms if the output is the empty string.
618
         */
619
620
0
        buf = NULL;
621
0
        size = 32;
622
0
        while (1) {
623
0
            buf = xmlMalloc(size);
624
0
            if (buf == NULL)
625
0
                return(-1);
626
627
0
            va_copy(copy, ap);
628
0
            res = vsnprintf((char *) buf, size, msg, copy);
629
0
            va_end(copy);
630
0
            if ((res >= 0) && (res < size - 1))
631
0
                break;
632
633
0
            if (size >= maxSize) {
634
0
                truncated = 1;
635
0
                break;
636
0
            }
637
638
0
            xmlFree(buf);
639
640
0
            if (size > maxSize / 2)
641
0
                size = maxSize;
642
0
            else
643
0
                size *= 2;
644
0
        }
645
0
    }
646
647
    /*
648
     * If the output was truncated, make sure that the buffer doesn't
649
     * end with a truncated UTF-8 sequence.
650
     */
651
1.79M
    if (truncated != 0) {
652
477
        int i = size - 1;
653
654
737
        while (i > 0) {
655
            /* Break after ASCII */
656
737
            if (buf[i-1] < 0x80)
657
155
                break;
658
582
            i -= 1;
659
            /* Break before non-ASCII */
660
582
            if (buf[i] >= 0xc0)
661
322
                break;
662
582
        }
663
664
477
        buf[i] = 0;
665
477
    }
666
667
1.79M
    *out = (xmlChar *) buf;
668
1.79M
    return(truncated);
669
1.79M
}
670
671
/**
672
 * See xmlStrVASPrintf.
673
 *
674
 * @param out  pointer to the resulting string
675
 * @param maxSize  maximum size of the output buffer
676
 * @param msg  printf format string
677
 * @param ...  arguments for format string
678
 * @returns 0 on success, 1 if the result was truncated or on other
679
 * errors, -1 if a memory allocation failed.
680
 */
681
int
682
0
xmlStrASPrintf(xmlChar **out, int maxSize, const char *msg, ...) {
683
0
    va_list ap;
684
0
    int ret;
685
686
0
    va_start(ap, msg);
687
0
    ret = xmlStrVASPrintf(out, maxSize, msg, ap);
688
0
    va_end(ap);
689
690
0
    return(ret);
691
0
}
692
693
/************************************************************************
694
 *                                                                      *
695
 *              Generic UTF8 handling routines                          *
696
 *                                                                      *
697
 * From rfc2044: encoding of the Unicode values on UTF-8:               *
698
 *                                                                      *
699
 * UCS-4 range (hex.)           UTF-8 octet sequence (binary)           *
700
 * 0000 0000-0000 007F   0xxxxxxx                                       *
701
 * 0000 0080-0000 07FF   110xxxxx 10xxxxxx                              *
702
 * 0000 0800-0000 FFFF   1110xxxx 10xxxxxx 10xxxxxx                     *
703
 *                                                                      *
704
 * I hope we won't use values > 0xFFFF anytime soon !                   *
705
 *                                                                      *
706
 ************************************************************************/
707
708
709
/**
710
 * calculates the internal size of a UTF8 character
711
 *
712
 * @param utf  pointer to the UTF8 character
713
 * @returns the numbers of bytes in the character, -1 on format error
714
 */
715
int
716
0
xmlUTF8Size(const xmlChar *utf) {
717
0
    xmlChar mask;
718
0
    int len;
719
720
0
    if (utf == NULL)
721
0
        return -1;
722
0
    if (*utf < 0x80)
723
0
        return 1;
724
    /* check valid UTF8 character */
725
0
    if (!(*utf & 0x40))
726
0
        return -1;
727
    /* determine number of bytes in char */
728
0
    len = 2;
729
0
    for (mask=0x20; mask != 0; mask>>=1) {
730
0
        if (!(*utf & mask))
731
0
            return len;
732
0
        len++;
733
0
    }
734
0
    return -1;
735
0
}
736
737
/**
738
 * compares the two UCS4 values
739
 *
740
 * @param utf1  pointer to first UTF8 char
741
 * @param utf2  pointer to second UTF8 char
742
 * @returns result of the compare as with #xmlStrncmp
743
 */
744
int
745
0
xmlUTF8Charcmp(const xmlChar *utf1, const xmlChar *utf2) {
746
747
0
    if (utf1 == NULL ) {
748
0
        if (utf2 == NULL)
749
0
            return 0;
750
0
        return -1;
751
0
    }
752
0
    return xmlStrncmp(utf1, utf2, xmlUTF8Size(utf1));
753
0
}
754
755
/**
756
 * compute the length of an UTF8 string, it doesn't do a full UTF8
757
 * checking of the content of the string.
758
 *
759
 * @param utf  a sequence of UTF-8 encoded bytes
760
 * @returns the number of characters in the string or -1 in case of error
761
 */
762
int
763
0
xmlUTF8Strlen(const xmlChar *utf) {
764
0
    size_t ret = 0;
765
766
0
    if (utf == NULL)
767
0
        return(-1);
768
769
0
    while (*utf != 0) {
770
0
        if (utf[0] & 0x80) {
771
0
            if ((utf[1] & 0xc0) != 0x80)
772
0
                return(-1);
773
0
            if ((utf[0] & 0xe0) == 0xe0) {
774
0
                if ((utf[2] & 0xc0) != 0x80)
775
0
                    return(-1);
776
0
                if ((utf[0] & 0xf0) == 0xf0) {
777
0
                    if ((utf[0] & 0xf8) != 0xf0 || (utf[3] & 0xc0) != 0x80)
778
0
                        return(-1);
779
0
                    utf += 4;
780
0
                } else {
781
0
                    utf += 3;
782
0
                }
783
0
            } else {
784
0
                utf += 2;
785
0
            }
786
0
        } else {
787
0
            utf++;
788
0
        }
789
0
        ret++;
790
0
    }
791
0
    return(ret > INT_MAX ? 0 : ret);
792
0
}
793
794
/**
795
 * Read the first UTF8 character from `utf`
796
 *
797
 * @param utf  a sequence of UTF-8 encoded bytes
798
 * @param len  a pointer to the minimum number of bytes present in
799
 *        the sequence.  This is used to assure the next character
800
 *        is completely contained within the sequence.
801
 * @returns the char value or -1 in case of error, and sets *len to
802
 *        the actual number of bytes consumed (0 in case of error)
803
 */
804
int
805
34.4M
xmlGetUTF8Char(const unsigned char *utf, int *len) {
806
34.4M
    unsigned int c;
807
808
34.4M
    if (utf == NULL)
809
0
        goto error;
810
34.4M
    if (len == NULL)
811
0
        goto error;
812
813
34.4M
    c = utf[0];
814
34.4M
    if (c < 0x80) {
815
30.2M
        if (*len < 1)
816
0
            goto error;
817
        /* 1-byte code */
818
30.2M
        *len = 1;
819
30.2M
    } else {
820
4.20M
        if ((*len < 2) || ((utf[1] & 0xc0) != 0x80))
821
288k
            goto error;
822
3.91M
        if (c < 0xe0) {
823
3.12M
            if (c < 0xc2)
824
42.4k
                goto error;
825
            /* 2-byte code */
826
3.08M
            *len = 2;
827
3.08M
            c = (c & 0x1f) << 6;
828
3.08M
            c |= utf[1] & 0x3f;
829
3.08M
        } else {
830
789k
            if ((*len < 3) || ((utf[2] & 0xc0) != 0x80))
831
8.03k
                goto error;
832
781k
            if (c < 0xf0) {
833
                /* 3-byte code */
834
743k
                *len = 3;
835
743k
                c = (c & 0xf) << 12;
836
743k
                c |= (utf[1] & 0x3f) << 6;
837
743k
                c |= utf[2] & 0x3f;
838
743k
                if ((c < 0x800) || ((c >= 0xd800) && (c < 0xe000)))
839
2.29k
                    goto error;
840
743k
            } else {
841
37.9k
                if ((*len < 4) || ((utf[3] & 0xc0) != 0x80))
842
2.99k
                    goto error;
843
34.9k
                *len = 4;
844
                /* 4-byte code */
845
34.9k
                c = (c & 0x7) << 18;
846
34.9k
                c |= (utf[1] & 0x3f) << 12;
847
34.9k
                c |= (utf[2] & 0x3f) << 6;
848
34.9k
                c |= utf[3] & 0x3f;
849
34.9k
                if ((c < 0x10000) || (c >= 0x110000))
850
2.69k
                    goto error;
851
34.9k
            }
852
781k
        }
853
3.91M
    }
854
34.1M
    return(c);
855
856
347k
error:
857
347k
    if (len != NULL)
858
347k
  *len = 0;
859
347k
    return(-1);
860
34.4M
}
861
862
/**
863
 * Checks `utf` for being valid UTF-8. `utf` is assumed to be
864
 * null-terminated. This function is not super-strict, as it will
865
 * allow longer UTF-8 sequences than necessary. Note that Java is
866
 * capable of producing these sequences if provoked. Also note, this
867
 * routine checks for the 4-byte maximum size, but does not check for
868
 * 0x10ffff maximum value.
869
 *
870
 * @param utf  Pointer to putative UTF-8 encoded string.
871
 * @returns value: true if `utf` is valid.
872
 **/
873
int
874
xmlCheckUTF8(const unsigned char *utf)
875
0
{
876
0
    int ix;
877
0
    unsigned char c;
878
879
0
    if (utf == NULL)
880
0
        return(0);
881
    /*
882
     * utf is a string of 1, 2, 3 or 4 bytes.  The valid strings
883
     * are as follows (in "bit format"):
884
     *    0xxxxxxx                                      valid 1-byte
885
     *    110xxxxx 10xxxxxx                             valid 2-byte
886
     *    1110xxxx 10xxxxxx 10xxxxxx                    valid 3-byte
887
     *    11110xxx 10xxxxxx 10xxxxxx 10xxxxxx           valid 4-byte
888
     */
889
0
    while ((c = utf[0])) {      /* string is 0-terminated */
890
0
        ix = 0;
891
0
        if ((c & 0x80) == 0x00) { /* 1-byte code, starts with 10 */
892
0
            ix = 1;
893
0
  } else if ((c & 0xe0) == 0xc0) {/* 2-byte code, starts with 110 */
894
0
      if ((utf[1] & 0xc0 ) != 0x80)
895
0
          return 0;
896
0
      ix = 2;
897
0
  } else if ((c & 0xf0) == 0xe0) {/* 3-byte code, starts with 1110 */
898
0
      if (((utf[1] & 0xc0) != 0x80) ||
899
0
          ((utf[2] & 0xc0) != 0x80))
900
0
        return 0;
901
0
      ix = 3;
902
0
  } else if ((c & 0xf8) == 0xf0) {/* 4-byte code, starts with 11110 */
903
0
      if (((utf[1] & 0xc0) != 0x80) ||
904
0
          ((utf[2] & 0xc0) != 0x80) ||
905
0
    ((utf[3] & 0xc0) != 0x80))
906
0
        return 0;
907
0
      ix = 4;
908
0
  } else       /* unknown encoding */
909
0
      return 0;
910
0
        utf += ix;
911
0
      }
912
0
      return(1);
913
0
}
914
915
/**
916
 * storage size of an UTF8 string
917
 * the behaviour is not guaranteed if the input string is not UTF-8
918
 *
919
 * @param utf  a sequence of UTF-8 encoded bytes
920
 * @param len  the number of characters in the array
921
 * @returns the storage size of
922
 * the first 'len' characters of ARRAY
923
 */
924
925
int
926
0
xmlUTF8Strsize(const xmlChar *utf, int len) {
927
0
    const xmlChar *ptr=utf;
928
0
    int ch;
929
0
    size_t ret;
930
931
0
    if (utf == NULL)
932
0
        return(0);
933
934
0
    if (len <= 0)
935
0
        return(0);
936
937
0
    while ( len-- > 0) {
938
0
        if ( !*ptr )
939
0
            break;
940
0
        ch = *ptr++;
941
0
        if ((ch & 0x80))
942
0
            while ((ch<<=1) & 0x80 ) {
943
0
    if (*ptr == 0) break;
944
0
                ptr++;
945
0
      }
946
0
    }
947
0
    ret = ptr - utf;
948
0
    return (ret > INT_MAX ? 0 : ret);
949
0
}
950
951
952
/**
953
 * a strndup for array of UTF8's
954
 *
955
 * @param utf  the input UTF8 *
956
 * @param len  the len of `utf` (in chars)
957
 * @returns a new UTF8 * or NULL
958
 */
959
xmlChar *
960
0
xmlUTF8Strndup(const xmlChar *utf, int len) {
961
0
    xmlChar *ret;
962
0
    int i;
963
964
0
    if ((utf == NULL) || (len < 0)) return(NULL);
965
0
    i = xmlUTF8Strsize(utf, len);
966
0
    ret = xmlMalloc((size_t) i + 1);
967
0
    if (ret == NULL) {
968
0
        return(NULL);
969
0
    }
970
0
    memcpy(ret, utf, i);
971
0
    ret[i] = 0;
972
0
    return(ret);
973
0
}
974
975
/**
976
 * a function to provide the equivalent of fetching a
977
 * character from a string array
978
 *
979
 * @param utf  the input UTF8 *
980
 * @param pos  the position of the desired UTF8 char (in chars)
981
 * @returns a pointer to the UTF8 character or NULL
982
 */
983
const xmlChar *
984
0
xmlUTF8Strpos(const xmlChar *utf, int pos) {
985
0
    int ch;
986
987
0
    if (utf == NULL) return(NULL);
988
0
    if (pos < 0)
989
0
        return(NULL);
990
0
    while (pos--) {
991
0
        ch = *utf++;
992
0
        if (ch == 0)
993
0
            return(NULL);
994
0
        if ( ch & 0x80 ) {
995
            /* if not simple ascii, verify proper format */
996
0
            if ( (ch & 0xc0) != 0xc0 )
997
0
                return(NULL);
998
            /* then skip over remaining bytes for this char */
999
0
            while ( (ch <<= 1) & 0x80 )
1000
0
                if ( (*utf++ & 0xc0) != 0x80 )
1001
0
                    return(NULL);
1002
0
        }
1003
0
    }
1004
0
    return((xmlChar *)utf);
1005
0
}
1006
1007
/**
1008
 * a function to provide the relative location of a UTF8 char
1009
 *
1010
 * @param utf  the input UTF8 *
1011
 * @param utfchar  the UTF8 character to be found
1012
 * @returns the relative character position of the desired char
1013
 * or -1 if not found
1014
 */
1015
int
1016
0
xmlUTF8Strloc(const xmlChar *utf, const xmlChar *utfchar) {
1017
0
    size_t i;
1018
0
    int size;
1019
0
    int ch;
1020
1021
0
    if (utf==NULL || utfchar==NULL) return -1;
1022
0
    size = xmlUTF8Strsize(utfchar, 1);
1023
0
        for(i=0; (ch=*utf) != 0; i++) {
1024
0
            if (xmlStrncmp(utf, utfchar, size)==0)
1025
0
                return(i > INT_MAX ? 0 : i);
1026
0
            utf++;
1027
0
            if ( ch & 0x80 ) {
1028
                /* if not simple ascii, verify proper format */
1029
0
                if ( (ch & 0xc0) != 0xc0 )
1030
0
                    return(-1);
1031
                /* then skip over remaining bytes for this char */
1032
0
                while ( (ch <<= 1) & 0x80 )
1033
0
                    if ( (*utf++ & 0xc0) != 0x80 )
1034
0
                        return(-1);
1035
0
            }
1036
0
        }
1037
1038
0
    return(-1);
1039
0
}
1040
/**
1041
 * Create a substring from a given UTF-8 string
1042
 * Note:  positions are given in units of UTF-8 chars
1043
 *
1044
 * @param utf  a sequence of UTF-8 encoded bytes
1045
 * @param start  relative pos of first char
1046
 * @param len  total number to copy
1047
 * @returns a pointer to a newly created string or NULL if the
1048
 * start index is out of bounds or a memory allocation failed.
1049
 * If len is too large, the result is truncated.
1050
 */
1051
1052
xmlChar *
1053
0
xmlUTF8Strsub(const xmlChar *utf, int start, int len) {
1054
0
    int i;
1055
0
    int ch;
1056
1057
0
    if (utf == NULL) return(NULL);
1058
0
    if (start < 0) return(NULL);
1059
0
    if (len < 0) return(NULL);
1060
1061
    /*
1062
     * Skip over any leading chars
1063
     */
1064
0
    for (i = 0; i < start; i++) {
1065
0
        ch = *utf++;
1066
0
        if (ch == 0)
1067
0
            return(NULL);
1068
        /* skip over remaining bytes for this char */
1069
0
        if (ch & 0x80) {
1070
0
            ch <<= 1;
1071
0
            while (ch & 0x80) {
1072
0
                if (*utf++ == 0)
1073
0
                    return(NULL);
1074
0
                ch <<= 1;
1075
0
            }
1076
0
        }
1077
0
    }
1078
1079
0
    return(xmlUTF8Strndup(utf, len));
1080
0
}
1081
1082
/**
1083
 * Replaces a string with an escaped string.
1084
 *
1085
 * `msg` must be a heap-allocated buffer created by libxml2 that may be
1086
 * returned, or that may be freed and replaced.
1087
 *
1088
 * @param msg  a pointer to the string in which to escape '%' characters.
1089
 * @returns the same string with all '%' characters escaped.
1090
 */
1091
xmlChar *
1092
xmlEscapeFormatString(xmlChar **msg)
1093
0
{
1094
0
    xmlChar *msgPtr = NULL;
1095
0
    xmlChar *result = NULL;
1096
0
    xmlChar *resultPtr = NULL;
1097
0
    size_t count = 0;
1098
0
    size_t msgLen = 0;
1099
0
    size_t resultLen = 0;
1100
1101
0
    if (!msg || !*msg)
1102
0
        return(NULL);
1103
1104
0
    for (msgPtr = *msg; *msgPtr != '\0'; ++msgPtr) {
1105
0
        ++msgLen;
1106
0
        if (*msgPtr == '%')
1107
0
            ++count;
1108
0
    }
1109
1110
0
    if (count == 0)
1111
0
        return(*msg);
1112
1113
0
    if ((count > INT_MAX) || (msgLen > INT_MAX - count))
1114
0
        return(NULL);
1115
0
    resultLen = msgLen + count + 1;
1116
0
    result = xmlMalloc(resultLen);
1117
0
    if (result == NULL) {
1118
        /* Clear *msg to prevent format string vulnerabilities in
1119
           out-of-memory situations. */
1120
0
        xmlFree(*msg);
1121
0
        *msg = NULL;
1122
0
        return(NULL);
1123
0
    }
1124
1125
0
    for (msgPtr = *msg, resultPtr = result; *msgPtr != '\0'; ++msgPtr, ++resultPtr) {
1126
0
        *resultPtr = *msgPtr;
1127
0
        if (*msgPtr == '%')
1128
0
            *(++resultPtr) = '%';
1129
0
    }
1130
0
    result[resultLen - 1] = '\0';
1131
1132
0
    xmlFree(*msg);
1133
0
    *msg = result;
1134
1135
0
    return *msg;
1136
0
}
1137