Coverage Report

Created: 2023-06-07 06:05

/src/libxml2-2.10.3/uri.c
Line
Count
Source (jump to first uncovered line)
1
/**
2
 * uri.c: set of generic URI related routines
3
 *
4
 * Reference: RFCs 3986, 2732 and 2373
5
 *
6
 * See Copyright for the status of this software.
7
 *
8
 * daniel@veillard.com
9
 */
10
11
#define IN_LIBXML
12
#include "libxml.h"
13
14
#include <limits.h>
15
#include <string.h>
16
17
#include <libxml/xmlmemory.h>
18
#include <libxml/uri.h>
19
#include <libxml/globals.h>
20
#include <libxml/xmlerror.h>
21
22
/**
23
 * MAX_URI_LENGTH:
24
 *
25
 * The definition of the URI regexp in the above RFC has no size limit
26
 * In practice they are usually relatively short except for the
27
 * data URI scheme as defined in RFC 2397. Even for data URI the usual
28
 * maximum size before hitting random practical limits is around 64 KB
29
 * and 4KB is usually a maximum admitted limit for proper operations.
30
 * The value below is more a security limit than anything else and
31
 * really should never be hit by 'normal' operations
32
 * Set to 1 MByte in 2012, this is only enforced on output
33
 */
34
0
#define MAX_URI_LENGTH 1024 * 1024
35
36
static void
37
xmlURIErrMemory(const char *extra)
38
0
{
39
0
    if (extra)
40
0
        __xmlRaiseError(NULL, NULL, NULL,
41
0
                        NULL, NULL, XML_FROM_URI,
42
0
                        XML_ERR_NO_MEMORY, XML_ERR_FATAL, NULL, 0,
43
0
                        extra, NULL, NULL, 0, 0,
44
0
                        "Memory allocation failed : %s\n", extra);
45
0
    else
46
0
        __xmlRaiseError(NULL, NULL, NULL,
47
0
                        NULL, NULL, XML_FROM_URI,
48
0
                        XML_ERR_NO_MEMORY, XML_ERR_FATAL, NULL, 0,
49
0
                        NULL, NULL, NULL, 0, 0,
50
0
                        "Memory allocation failed\n");
51
0
}
52
53
static void xmlCleanURI(xmlURIPtr uri);
54
55
/*
56
 * Old rule from 2396 used in legacy handling code
57
 * alpha    = lowalpha | upalpha
58
 */
59
0
#define IS_ALPHA(x) (IS_LOWALPHA(x) || IS_UPALPHA(x))
60
61
62
/*
63
 * lowalpha = "a" | "b" | "c" | "d" | "e" | "f" | "g" | "h" | "i" | "j" |
64
 *            "k" | "l" | "m" | "n" | "o" | "p" | "q" | "r" | "s" | "t" |
65
 *            "u" | "v" | "w" | "x" | "y" | "z"
66
 */
67
68
0
#define IS_LOWALPHA(x) (((x) >= 'a') && ((x) <= 'z'))
69
70
/*
71
 * upalpha = "A" | "B" | "C" | "D" | "E" | "F" | "G" | "H" | "I" | "J" |
72
 *           "K" | "L" | "M" | "N" | "O" | "P" | "Q" | "R" | "S" | "T" |
73
 *           "U" | "V" | "W" | "X" | "Y" | "Z"
74
 */
75
0
#define IS_UPALPHA(x) (((x) >= 'A') && ((x) <= 'Z'))
76
77
#ifdef IS_DIGIT
78
#undef IS_DIGIT
79
#endif
80
/*
81
 * digit = "0" | "1" | "2" | "3" | "4" | "5" | "6" | "7" | "8" | "9"
82
 */
83
0
#define IS_DIGIT(x) (((x) >= '0') && ((x) <= '9'))
84
85
/*
86
 * alphanum = alpha | digit
87
 */
88
89
0
#define IS_ALPHANUM(x) (IS_ALPHA(x) || IS_DIGIT(x))
90
91
/*
92
 * mark = "-" | "_" | "." | "!" | "~" | "*" | "'" | "(" | ")"
93
 */
94
95
0
#define IS_MARK(x) (((x) == '-') || ((x) == '_') || ((x) == '.') ||     \
96
0
    ((x) == '!') || ((x) == '~') || ((x) == '*') || ((x) == '\'') ||    \
97
0
    ((x) == '(') || ((x) == ')'))
98
99
/*
100
 * unwise = "{" | "}" | "|" | "\" | "^" | "`"
101
 */
102
103
#define IS_UNWISE(p)                                                    \
104
0
      (((*(p) == '{')) || ((*(p) == '}')) || ((*(p) == '|')) ||         \
105
0
       ((*(p) == '\\')) || ((*(p) == '^')) || ((*(p) == '[')) ||        \
106
0
       ((*(p) == ']')) || ((*(p) == '`')))
107
/*
108
 * reserved = ";" | "/" | "?" | ":" | "@" | "&" | "=" | "+" | "$" | "," |
109
 *            "[" | "]"
110
 */
111
112
0
#define IS_RESERVED(x) (((x) == ';') || ((x) == '/') || ((x) == '?') || \
113
0
        ((x) == ':') || ((x) == '@') || ((x) == '&') || ((x) == '=') || \
114
0
        ((x) == '+') || ((x) == '$') || ((x) == ',') || ((x) == '[') || \
115
0
        ((x) == ']'))
116
117
/*
118
 * unreserved = alphanum | mark
119
 */
120
121
0
#define IS_UNRESERVED(x) (IS_ALPHANUM(x) || IS_MARK(x))
122
123
/*
124
 * Skip to next pointer char, handle escaped sequences
125
 */
126
127
873k
#define NEXT(p) ((*p == '%')? p += 3 : p++)
128
129
/*
130
 * Productions from the spec.
131
 *
132
 *    authority     = server | reg_name
133
 *    reg_name      = 1*( unreserved | escaped | "$" | "," |
134
 *                        ";" | ":" | "@" | "&" | "=" | "+" )
135
 *
136
 * path          = [ abs_path | opaque_part ]
137
 */
138
139
28.7k
#define STRNDUP(s, n) (char *) xmlStrndup((const xmlChar *)(s), (n))
140
141
/************************************************************************
142
 *                  *
143
 *                         RFC 3986 parser        *
144
 *                  *
145
 ************************************************************************/
146
147
709k
#define ISA_DIGIT(p) ((*(p) >= '0') && (*(p) <= '9'))
148
1.22M
#define ISA_ALPHA(p) (((*(p) >= 'a') && (*(p) <= 'z')) ||   \
149
1.22M
                      ((*(p) >= 'A') && (*(p) <= 'Z')))
150
#define ISA_HEXDIG(p)             \
151
68.6k
       (ISA_DIGIT(p) || ((*(p) >= 'a') && (*(p) <= 'f')) ||   \
152
68.6k
        ((*(p) >= 'A') && (*(p) <= 'F')))
153
154
/*
155
 *    sub-delims    = "!" / "$" / "&" / "'" / "(" / ")"
156
 *                     / "*" / "+" / "," / ";" / "="
157
 */
158
#define ISA_SUB_DELIM(p)            \
159
1.12M
      (((*(p) == '!')) || ((*(p) == '$')) || ((*(p) == '&')) ||   \
160
269k
       ((*(p) == '(')) || ((*(p) == ')')) || ((*(p) == '*')) ||   \
161
269k
       ((*(p) == '+')) || ((*(p) == ',')) || ((*(p) == ';')) ||   \
162
269k
       ((*(p) == '=')) || ((*(p) == '\'')))
163
164
/*
165
 *    gen-delims    = ":" / "/" / "?" / "#" / "[" / "]" / "@"
166
 */
167
#define ISA_GEN_DELIM(p)            \
168
      (((*(p) == ':')) || ((*(p) == '/')) || ((*(p) == '?')) ||         \
169
       ((*(p) == '#')) || ((*(p) == '[')) || ((*(p) == ']')) ||         \
170
       ((*(p) == '@')))
171
172
/*
173
 *    reserved      = gen-delims / sub-delims
174
 */
175
#define ISA_RESERVED(p) (ISA_GEN_DELIM(p) || (ISA_SUB_DELIM(p)))
176
177
/*
178
 *    unreserved    = ALPHA / DIGIT / "-" / "." / "_" / "~"
179
 */
180
#define ISA_UNRESERVED(p)           \
181
1.99M
      ((ISA_ALPHA(p)) || (ISA_DIGIT(p)) || ((*(p) == '-')) ||   \
182
999k
       ((*(p) == '.')) || ((*(p) == '_')) || ((*(p) == '~')))
183
184
/*
185
 *    pct-encoded   = "%" HEXDIG HEXDIG
186
 */
187
#define ISA_PCT_ENCODED(p)            \
188
1.28M
     ((*(p) == '%') && (ISA_HEXDIG(p + 1)) && (ISA_HEXDIG(p + 2)))
189
190
/*
191
 *    pchar         = unreserved / pct-encoded / sub-delims / ":" / "@"
192
 */
193
#define ISA_PCHAR(p)              \
194
966k
     (ISA_UNRESERVED(p) || ISA_PCT_ENCODED(p) || ISA_SUB_DELIM(p) ||  \
195
651k
      ((*(p) == ':')) || ((*(p) == '@')))
196
197
/**
198
 * xmlParse3986Scheme:
199
 * @uri:  pointer to an URI structure
200
 * @str:  pointer to the string to analyze
201
 *
202
 * Parse an URI scheme
203
 *
204
 * ALPHA *( ALPHA / DIGIT / "+" / "-" / "." )
205
 *
206
 * Returns 0 or the error code
207
 */
208
static int
209
49.7k
xmlParse3986Scheme(xmlURIPtr uri, const char **str) {
210
49.7k
    const char *cur;
211
212
49.7k
    if (str == NULL)
213
0
  return(-1);
214
215
49.7k
    cur = *str;
216
49.7k
    if (!ISA_ALPHA(cur))
217
26.4k
  return(2);
218
23.3k
    cur++;
219
89.0k
    while (ISA_ALPHA(cur) || ISA_DIGIT(cur) ||
220
89.0k
           (*cur == '+') || (*cur == '-') || (*cur == '.')) cur++;
221
23.3k
    if (uri != NULL) {
222
23.3k
  if (uri->scheme != NULL) xmlFree(uri->scheme);
223
23.3k
  uri->scheme = STRNDUP(*str, cur - *str);
224
23.3k
    }
225
23.3k
    *str = cur;
226
23.3k
    return(0);
227
49.7k
}
228
229
/**
230
 * xmlParse3986Fragment:
231
 * @uri:  pointer to an URI structure
232
 * @str:  pointer to the string to analyze
233
 *
234
 * Parse the query part of an URI
235
 *
236
 * fragment      = *( pchar / "/" / "?" )
237
 * NOTE: the strict syntax as defined by 3986 does not allow '[' and ']'
238
 *       in the fragment identifier but this is used very broadly for
239
 *       xpointer scheme selection, so we are allowing it here to not break
240
 *       for example all the DocBook processing chains.
241
 *
242
 * Returns 0 or the error code
243
 */
244
static int
245
xmlParse3986Fragment(xmlURIPtr uri, const char **str)
246
4.49k
{
247
4.49k
    const char *cur;
248
249
4.49k
    if (str == NULL)
250
0
        return (-1);
251
252
4.49k
    cur = *str;
253
254
60.6k
    while ((ISA_PCHAR(cur)) || (*cur == '/') || (*cur == '?') ||
255
60.6k
           (*cur == '[') || (*cur == ']') ||
256
60.6k
           ((uri != NULL) && (uri->cleanup & 1) && (IS_UNWISE(cur))))
257
56.2k
        NEXT(cur);
258
4.49k
    if (uri != NULL) {
259
4.49k
        if (uri->fragment != NULL)
260
0
            xmlFree(uri->fragment);
261
4.49k
  if (uri->cleanup & 2)
262
0
      uri->fragment = STRNDUP(*str, cur - *str);
263
4.49k
  else
264
4.49k
      uri->fragment = xmlURIUnescapeString(*str, cur - *str, NULL);
265
4.49k
    }
266
4.49k
    *str = cur;
267
4.49k
    return (0);
268
4.49k
}
269
270
/**
271
 * xmlParse3986Query:
272
 * @uri:  pointer to an URI structure
273
 * @str:  pointer to the string to analyze
274
 *
275
 * Parse the query part of an URI
276
 *
277
 * query = *uric
278
 *
279
 * Returns 0 or the error code
280
 */
281
static int
282
xmlParse3986Query(xmlURIPtr uri, const char **str)
283
5.46k
{
284
5.46k
    const char *cur;
285
286
5.46k
    if (str == NULL)
287
0
        return (-1);
288
289
5.46k
    cur = *str;
290
291
162k
    while ((ISA_PCHAR(cur)) || (*cur == '/') || (*cur == '?') ||
292
162k
           ((uri != NULL) && (uri->cleanup & 1) && (IS_UNWISE(cur))))
293
157k
        NEXT(cur);
294
5.46k
    if (uri != NULL) {
295
5.46k
        if (uri->query != NULL)
296
0
            xmlFree(uri->query);
297
5.46k
  if (uri->cleanup & 2)
298
0
      uri->query = STRNDUP(*str, cur - *str);
299
5.46k
  else
300
5.46k
      uri->query = xmlURIUnescapeString(*str, cur - *str, NULL);
301
302
  /* Save the raw bytes of the query as well.
303
   * See: http://mail.gnome.org/archives/xml/2007-April/thread.html#00114
304
   */
305
5.46k
  if (uri->query_raw != NULL)
306
0
      xmlFree (uri->query_raw);
307
5.46k
  uri->query_raw = STRNDUP (*str, cur - *str);
308
5.46k
    }
309
5.46k
    *str = cur;
310
5.46k
    return (0);
311
5.46k
}
312
313
/**
314
 * xmlParse3986Port:
315
 * @uri:  pointer to an URI structure
316
 * @str:  the string to analyze
317
 *
318
 * Parse a port part and fills in the appropriate fields
319
 * of the @uri structure
320
 *
321
 * port          = *DIGIT
322
 *
323
 * Returns 0 or the error code
324
 */
325
static int
326
xmlParse3986Port(xmlURIPtr uri, const char **str)
327
2.57k
{
328
2.57k
    const char *cur = *str;
329
2.57k
    int port = 0;
330
331
2.57k
    if (ISA_DIGIT(cur)) {
332
6.26k
  while (ISA_DIGIT(cur)) {
333
5.74k
            int digit = *cur - '0';
334
335
5.74k
            if (port > INT_MAX / 10)
336
236
                return(1);
337
5.50k
            port *= 10;
338
5.50k
            if (port > INT_MAX - digit)
339
197
                return(1);
340
5.30k
      port += digit;
341
342
5.30k
      cur++;
343
5.30k
  }
344
526
  if (uri != NULL)
345
526
      uri->port = port;
346
526
  *str = cur;
347
526
  return(0);
348
959
    }
349
1.61k
    return(1);
350
2.57k
}
351
352
/**
353
 * xmlParse3986Userinfo:
354
 * @uri:  pointer to an URI structure
355
 * @str:  the string to analyze
356
 *
357
 * Parse an user information part and fills in the appropriate fields
358
 * of the @uri structure
359
 *
360
 * userinfo      = *( unreserved / pct-encoded / sub-delims / ":" )
361
 *
362
 * Returns 0 or the error code
363
 */
364
static int
365
xmlParse3986Userinfo(xmlURIPtr uri, const char **str)
366
12.5k
{
367
12.5k
    const char *cur;
368
369
12.5k
    cur = *str;
370
201k
    while (ISA_UNRESERVED(cur) || ISA_PCT_ENCODED(cur) ||
371
201k
           ISA_SUB_DELIM(cur) || (*cur == ':'))
372
189k
  NEXT(cur);
373
12.5k
    if (*cur == '@') {
374
1.59k
  if (uri != NULL) {
375
1.59k
      if (uri->user != NULL) xmlFree(uri->user);
376
1.59k
      if (uri->cleanup & 2)
377
0
    uri->user = STRNDUP(*str, cur - *str);
378
1.59k
      else
379
1.59k
    uri->user = xmlURIUnescapeString(*str, cur - *str, NULL);
380
1.59k
  }
381
1.59k
  *str = cur;
382
1.59k
  return(0);
383
1.59k
    }
384
10.9k
    return(1);
385
12.5k
}
386
387
/**
388
 * xmlParse3986DecOctet:
389
 * @str:  the string to analyze
390
 *
391
 *    dec-octet     = DIGIT                 ; 0-9
392
 *                  / %x31-39 DIGIT         ; 10-99
393
 *                  / "1" 2DIGIT            ; 100-199
394
 *                  / "2" %x30-34 DIGIT     ; 200-249
395
 *                  / "25" %x30-35          ; 250-255
396
 *
397
 * Skip a dec-octet.
398
 *
399
 * Returns 0 if found and skipped, 1 otherwise
400
 */
401
static int
402
2.31k
xmlParse3986DecOctet(const char **str) {
403
2.31k
    const char *cur = *str;
404
405
2.31k
    if (!(ISA_DIGIT(cur)))
406
150
        return(1);
407
2.16k
    if (!ISA_DIGIT(cur+1))
408
1.50k
  cur++;
409
665
    else if ((*cur != '0') && (ISA_DIGIT(cur + 1)) && (!ISA_DIGIT(cur+2)))
410
277
  cur += 2;
411
388
    else if ((*cur == '1') && (ISA_DIGIT(cur + 1)) && (ISA_DIGIT(cur + 2)))
412
5
  cur += 3;
413
383
    else if ((*cur == '2') && (*(cur + 1) >= '0') &&
414
383
       (*(cur + 1) <= '4') && (ISA_DIGIT(cur + 2)))
415
6
  cur += 3;
416
377
    else if ((*cur == '2') && (*(cur + 1) == '5') &&
417
377
       (*(cur + 2) >= '0') && (*(cur + 1) <= '5'))
418
105
  cur += 3;
419
272
    else
420
272
        return(1);
421
1.89k
    *str = cur;
422
1.89k
    return(0);
423
2.16k
}
424
/**
425
 * xmlParse3986Host:
426
 * @uri:  pointer to an URI structure
427
 * @str:  the string to analyze
428
 *
429
 * Parse an host part and fills in the appropriate fields
430
 * of the @uri structure
431
 *
432
 * host          = IP-literal / IPv4address / reg-name
433
 * IP-literal    = "[" ( IPv6address / IPvFuture  ) "]"
434
 * IPv4address   = dec-octet "." dec-octet "." dec-octet "." dec-octet
435
 * reg-name      = *( unreserved / pct-encoded / sub-delims )
436
 *
437
 * Returns 0 or the error code
438
 */
439
static int
440
xmlParse3986Host(xmlURIPtr uri, const char **str)
441
12.5k
{
442
12.5k
    const char *cur = *str;
443
12.5k
    const char *host;
444
445
12.5k
    host = cur;
446
    /*
447
     * IPv6 and future addressing scheme are enclosed between brackets
448
     */
449
12.5k
    if (*cur == '[') {
450
417
        cur++;
451
15.4k
  while ((*cur != ']') && (*cur != 0))
452
15.0k
      cur++;
453
417
  if (*cur != ']')
454
221
      return(1);
455
196
  cur++;
456
196
  goto found;
457
417
    }
458
    /*
459
     * try to parse an IPv4
460
     */
461
12.1k
    if (ISA_DIGIT(cur)) {
462
2.15k
        if (xmlParse3986DecOctet(&cur) != 0)
463
272
      goto not_ipv4;
464
1.88k
  if (*cur != '.')
465
1.73k
      goto not_ipv4;
466
156
  cur++;
467
156
        if (xmlParse3986DecOctet(&cur) != 0)
468
148
      goto not_ipv4;
469
8
  if (*cur != '.')
470
6
      goto not_ipv4;
471
2
        if (xmlParse3986DecOctet(&cur) != 0)
472
2
      goto not_ipv4;
473
0
  if (*cur != '.')
474
0
      goto not_ipv4;
475
0
        if (xmlParse3986DecOctet(&cur) != 0)
476
0
      goto not_ipv4;
477
0
  goto found;
478
2.15k
not_ipv4:
479
2.15k
        cur = *str;
480
2.15k
    }
481
    /*
482
     * then this should be a hostname which can be empty
483
     */
484
145k
    while (ISA_UNRESERVED(cur) || ISA_PCT_ENCODED(cur) || ISA_SUB_DELIM(cur))
485
133k
        NEXT(cur);
486
12.3k
found:
487
12.3k
    if (uri != NULL) {
488
12.3k
  if (uri->authority != NULL) xmlFree(uri->authority);
489
12.3k
  uri->authority = NULL;
490
12.3k
  if (uri->server != NULL) xmlFree(uri->server);
491
12.3k
  if (cur != host) {
492
10.6k
      if (uri->cleanup & 2)
493
0
    uri->server = STRNDUP(host, cur - host);
494
10.6k
      else
495
10.6k
    uri->server = xmlURIUnescapeString(host, cur - host, NULL);
496
10.6k
  } else
497
1.65k
      uri->server = NULL;
498
12.3k
    }
499
12.3k
    *str = cur;
500
12.3k
    return(0);
501
12.1k
}
502
503
/**
504
 * xmlParse3986Authority:
505
 * @uri:  pointer to an URI structure
506
 * @str:  the string to analyze
507
 *
508
 * Parse an authority part and fills in the appropriate fields
509
 * of the @uri structure
510
 *
511
 * authority     = [ userinfo "@" ] host [ ":" port ]
512
 *
513
 * Returns 0 or the error code
514
 */
515
static int
516
xmlParse3986Authority(xmlURIPtr uri, const char **str)
517
12.5k
{
518
12.5k
    const char *cur;
519
12.5k
    int ret;
520
521
12.5k
    cur = *str;
522
    /*
523
     * try to parse an userinfo and check for the trailing @
524
     */
525
12.5k
    ret = xmlParse3986Userinfo(uri, &cur);
526
12.5k
    if ((ret != 0) || (*cur != '@'))
527
10.9k
        cur = *str;
528
1.59k
    else
529
1.59k
        cur++;
530
12.5k
    ret = xmlParse3986Host(uri, &cur);
531
12.5k
    if (ret != 0) return(ret);
532
12.3k
    if (*cur == ':') {
533
2.57k
        cur++;
534
2.57k
        ret = xmlParse3986Port(uri, &cur);
535
2.57k
  if (ret != 0) return(ret);
536
2.57k
    }
537
10.2k
    *str = cur;
538
10.2k
    return(0);
539
12.3k
}
540
541
/**
542
 * xmlParse3986Segment:
543
 * @str:  the string to analyze
544
 * @forbid: an optional forbidden character
545
 * @empty: allow an empty segment
546
 *
547
 * Parse a segment and fills in the appropriate fields
548
 * of the @uri structure
549
 *
550
 * segment       = *pchar
551
 * segment-nz    = 1*pchar
552
 * segment-nz-nc = 1*( unreserved / pct-encoded / sub-delims / "@" )
553
 *               ; non-zero-length segment without any colon ":"
554
 *
555
 * Returns 0 or the error code
556
 */
557
static int
558
xmlParse3986Segment(const char **str, char forbid, int empty)
559
68.4k
{
560
68.4k
    const char *cur;
561
562
68.4k
    cur = *str;
563
68.4k
    if (!ISA_PCHAR(cur)) {
564
14.9k
        if (empty)
565
13.8k
      return(0);
566
1.10k
  return(1);
567
14.9k
    }
568
314k
    while (ISA_PCHAR(cur) && (*cur != forbid))
569
261k
        NEXT(cur);
570
53.5k
    *str = cur;
571
53.5k
    return (0);
572
68.4k
}
573
574
/**
575
 * xmlParse3986PathAbEmpty:
576
 * @uri:  pointer to an URI structure
577
 * @str:  the string to analyze
578
 *
579
 * Parse an path absolute or empty and fills in the appropriate fields
580
 * of the @uri structure
581
 *
582
 * path-abempty  = *( "/" segment )
583
 *
584
 * Returns 0 or the error code
585
 */
586
static int
587
xmlParse3986PathAbEmpty(xmlURIPtr uri, const char **str)
588
10.2k
{
589
10.2k
    const char *cur;
590
10.2k
    int ret;
591
592
10.2k
    cur = *str;
593
594
19.5k
    while (*cur == '/') {
595
9.27k
        cur++;
596
9.27k
  ret = xmlParse3986Segment(&cur, 0, 1);
597
9.27k
  if (ret != 0) return(ret);
598
9.27k
    }
599
10.2k
    if (uri != NULL) {
600
10.2k
  if (uri->path != NULL) xmlFree(uri->path);
601
10.2k
        if (*str != cur) {
602
3.53k
            if (uri->cleanup & 2)
603
0
                uri->path = STRNDUP(*str, cur - *str);
604
3.53k
            else
605
3.53k
                uri->path = xmlURIUnescapeString(*str, cur - *str, NULL);
606
6.73k
        } else {
607
6.73k
            uri->path = NULL;
608
6.73k
        }
609
10.2k
    }
610
10.2k
    *str = cur;
611
10.2k
    return (0);
612
10.2k
}
613
614
/**
615
 * xmlParse3986PathAbsolute:
616
 * @uri:  pointer to an URI structure
617
 * @str:  the string to analyze
618
 *
619
 * Parse an path absolute and fills in the appropriate fields
620
 * of the @uri structure
621
 *
622
 * path-absolute = "/" [ segment-nz *( "/" segment ) ]
623
 *
624
 * Returns 0 or the error code
625
 */
626
static int
627
xmlParse3986PathAbsolute(xmlURIPtr uri, const char **str)
628
4.54k
{
629
4.54k
    const char *cur;
630
4.54k
    int ret;
631
632
4.54k
    cur = *str;
633
634
4.54k
    if (*cur != '/')
635
0
        return(1);
636
4.54k
    cur++;
637
4.54k
    ret = xmlParse3986Segment(&cur, 0, 0);
638
4.54k
    if (ret == 0) {
639
7.48k
  while (*cur == '/') {
640
4.04k
      cur++;
641
4.04k
      ret = xmlParse3986Segment(&cur, 0, 1);
642
4.04k
      if (ret != 0) return(ret);
643
4.04k
  }
644
3.44k
    }
645
4.54k
    if (uri != NULL) {
646
4.54k
  if (uri->path != NULL) xmlFree(uri->path);
647
4.54k
        if (cur != *str) {
648
4.54k
            if (uri->cleanup & 2)
649
0
                uri->path = STRNDUP(*str, cur - *str);
650
4.54k
            else
651
4.54k
                uri->path = xmlURIUnescapeString(*str, cur - *str, NULL);
652
4.54k
        } else {
653
0
            uri->path = NULL;
654
0
        }
655
4.54k
    }
656
4.54k
    *str = cur;
657
4.54k
    return (0);
658
4.54k
}
659
660
/**
661
 * xmlParse3986PathRootless:
662
 * @uri:  pointer to an URI structure
663
 * @str:  the string to analyze
664
 *
665
 * Parse an path without root and fills in the appropriate fields
666
 * of the @uri structure
667
 *
668
 * path-rootless = segment-nz *( "/" segment )
669
 *
670
 * Returns 0 or the error code
671
 */
672
static int
673
xmlParse3986PathRootless(xmlURIPtr uri, const char **str)
674
7.26k
{
675
7.26k
    const char *cur;
676
7.26k
    int ret;
677
678
7.26k
    cur = *str;
679
680
7.26k
    ret = xmlParse3986Segment(&cur, 0, 0);
681
7.26k
    if (ret != 0) return(ret);
682
10.4k
    while (*cur == '/') {
683
3.21k
        cur++;
684
3.21k
  ret = xmlParse3986Segment(&cur, 0, 1);
685
3.21k
  if (ret != 0) return(ret);
686
3.21k
    }
687
7.26k
    if (uri != NULL) {
688
7.26k
  if (uri->path != NULL) xmlFree(uri->path);
689
7.26k
        if (cur != *str) {
690
7.26k
            if (uri->cleanup & 2)
691
0
                uri->path = STRNDUP(*str, cur - *str);
692
7.26k
            else
693
7.26k
                uri->path = xmlURIUnescapeString(*str, cur - *str, NULL);
694
7.26k
        } else {
695
0
            uri->path = NULL;
696
0
        }
697
7.26k
    }
698
7.26k
    *str = cur;
699
7.26k
    return (0);
700
7.26k
}
701
702
/**
703
 * xmlParse3986PathNoScheme:
704
 * @uri:  pointer to an URI structure
705
 * @str:  the string to analyze
706
 *
707
 * Parse an path which is not a scheme and fills in the appropriate fields
708
 * of the @uri structure
709
 *
710
 * path-noscheme = segment-nz-nc *( "/" segment )
711
 *
712
 * Returns 0 or the error code
713
 */
714
static int
715
xmlParse3986PathNoScheme(xmlURIPtr uri, const char **str)
716
29.4k
{
717
29.4k
    const char *cur;
718
29.4k
    int ret;
719
720
29.4k
    cur = *str;
721
722
29.4k
    ret = xmlParse3986Segment(&cur, ':', 0);
723
29.4k
    if (ret != 0) return(ret);
724
40.1k
    while (*cur == '/') {
725
10.7k
        cur++;
726
10.7k
  ret = xmlParse3986Segment(&cur, 0, 1);
727
10.7k
  if (ret != 0) return(ret);
728
10.7k
    }
729
29.4k
    if (uri != NULL) {
730
29.4k
  if (uri->path != NULL) xmlFree(uri->path);
731
29.4k
        if (cur != *str) {
732
28.9k
            if (uri->cleanup & 2)
733
0
                uri->path = STRNDUP(*str, cur - *str);
734
28.9k
            else
735
28.9k
                uri->path = xmlURIUnescapeString(*str, cur - *str, NULL);
736
28.9k
        } else {
737
454
            uri->path = NULL;
738
454
        }
739
29.4k
    }
740
29.4k
    *str = cur;
741
29.4k
    return (0);
742
29.4k
}
743
744
/**
745
 * xmlParse3986HierPart:
746
 * @uri:  pointer to an URI structure
747
 * @str:  the string to analyze
748
 *
749
 * Parse an hierarchical part and fills in the appropriate fields
750
 * of the @uri structure
751
 *
752
 * hier-part     = "//" authority path-abempty
753
 *                / path-absolute
754
 *                / path-rootless
755
 *                / path-empty
756
 *
757
 * Returns 0 or the error code
758
 */
759
static int
760
xmlParse3986HierPart(xmlURIPtr uri, const char **str)
761
17.7k
{
762
17.7k
    const char *cur;
763
17.7k
    int ret;
764
765
17.7k
    cur = *str;
766
767
17.7k
    if ((*cur == '/') && (*(cur + 1) == '/')) {
768
5.99k
        cur += 2;
769
5.99k
  ret = xmlParse3986Authority(uri, &cur);
770
5.99k
  if (ret != 0) return(ret);
771
4.76k
  if (uri->server == NULL)
772
523
      uri->port = -1;
773
4.76k
  ret = xmlParse3986PathAbEmpty(uri, &cur);
774
4.76k
  if (ret != 0) return(ret);
775
4.76k
  *str = cur;
776
4.76k
  return(0);
777
11.7k
    } else if (*cur == '/') {
778
2.38k
        ret = xmlParse3986PathAbsolute(uri, &cur);
779
2.38k
  if (ret != 0) return(ret);
780
9.37k
    } else if (ISA_PCHAR(cur)) {
781
7.26k
        ret = xmlParse3986PathRootless(uri, &cur);
782
7.26k
  if (ret != 0) return(ret);
783
7.26k
    } else {
784
  /* path-empty is effectively empty */
785
2.11k
  if (uri != NULL) {
786
2.11k
      if (uri->path != NULL) xmlFree(uri->path);
787
2.11k
      uri->path = NULL;
788
2.11k
  }
789
2.11k
    }
790
11.7k
    *str = cur;
791
11.7k
    return (0);
792
17.7k
}
793
794
/**
795
 * xmlParse3986RelativeRef:
796
 * @uri:  pointer to an URI structure
797
 * @str:  the string to analyze
798
 *
799
 * Parse an URI string and fills in the appropriate fields
800
 * of the @uri structure
801
 *
802
 * relative-ref  = relative-part [ "?" query ] [ "#" fragment ]
803
 * relative-part = "//" authority path-abempty
804
 *               / path-absolute
805
 *               / path-noscheme
806
 *               / path-empty
807
 *
808
 * Returns 0 or the error code
809
 */
810
static int
811
44.2k
xmlParse3986RelativeRef(xmlURIPtr uri, const char *str) {
812
44.2k
    int ret;
813
814
44.2k
    if ((*str == '/') && (*(str + 1) == '/')) {
815
6.55k
        str += 2;
816
6.55k
  ret = xmlParse3986Authority(uri, &str);
817
6.55k
  if (ret != 0) return(ret);
818
5.50k
  ret = xmlParse3986PathAbEmpty(uri, &str);
819
5.50k
  if (ret != 0) return(ret);
820
37.7k
    } else if (*str == '/') {
821
2.16k
  ret = xmlParse3986PathAbsolute(uri, &str);
822
2.16k
  if (ret != 0) return(ret);
823
35.5k
    } else if (ISA_PCHAR(str)) {
824
29.4k
        ret = xmlParse3986PathNoScheme(uri, &str);
825
29.4k
  if (ret != 0) return(ret);
826
29.4k
    } else {
827
  /* path-empty is effectively empty */
828
6.11k
  if (uri != NULL) {
829
6.11k
      if (uri->path != NULL) xmlFree(uri->path);
830
6.11k
      uri->path = NULL;
831
6.11k
  }
832
6.11k
    }
833
834
43.2k
    if (*str == '?') {
835
1.97k
  str++;
836
1.97k
  ret = xmlParse3986Query(uri, &str);
837
1.97k
  if (ret != 0) return(ret);
838
1.97k
    }
839
43.2k
    if (*str == '#') {
840
3.49k
  str++;
841
3.49k
  ret = xmlParse3986Fragment(uri, &str);
842
3.49k
  if (ret != 0) return(ret);
843
3.49k
    }
844
43.2k
    if (*str != 0) {
845
29.4k
  xmlCleanURI(uri);
846
29.4k
  return(1);
847
29.4k
    }
848
13.8k
    return(0);
849
43.2k
}
850
851
852
/**
853
 * xmlParse3986URI:
854
 * @uri:  pointer to an URI structure
855
 * @str:  the string to analyze
856
 *
857
 * Parse an URI string and fills in the appropriate fields
858
 * of the @uri structure
859
 *
860
 * scheme ":" hier-part [ "?" query ] [ "#" fragment ]
861
 *
862
 * Returns 0 or the error code
863
 */
864
static int
865
49.7k
xmlParse3986URI(xmlURIPtr uri, const char *str) {
866
49.7k
    int ret;
867
868
49.7k
    ret = xmlParse3986Scheme(uri, &str);
869
49.7k
    if (ret != 0) return(ret);
870
23.3k
    if (*str != ':') {
871
5.58k
  return(1);
872
5.58k
    }
873
17.7k
    str++;
874
17.7k
    ret = xmlParse3986HierPart(uri, &str);
875
17.7k
    if (ret != 0) return(ret);
876
16.5k
    if (*str == '?') {
877
3.49k
  str++;
878
3.49k
  ret = xmlParse3986Query(uri, &str);
879
3.49k
  if (ret != 0) return(ret);
880
3.49k
    }
881
16.5k
    if (*str == '#') {
882
999
  str++;
883
999
  ret = xmlParse3986Fragment(uri, &str);
884
999
  if (ret != 0) return(ret);
885
999
    }
886
16.5k
    if (*str != 0) {
887
11.0k
  xmlCleanURI(uri);
888
11.0k
  return(1);
889
11.0k
    }
890
5.49k
    return(0);
891
16.5k
}
892
893
/**
894
 * xmlParse3986URIReference:
895
 * @uri:  pointer to an URI structure
896
 * @str:  the string to analyze
897
 *
898
 * Parse an URI reference string and fills in the appropriate fields
899
 * of the @uri structure
900
 *
901
 * URI-reference = URI / relative-ref
902
 *
903
 * Returns 0 or the error code
904
 */
905
static int
906
49.7k
xmlParse3986URIReference(xmlURIPtr uri, const char *str) {
907
49.7k
    int ret;
908
909
49.7k
    if (str == NULL)
910
0
  return(-1);
911
49.7k
    xmlCleanURI(uri);
912
913
    /*
914
     * Try first to parse absolute refs, then fallback to relative if
915
     * it fails.
916
     */
917
49.7k
    ret = xmlParse3986URI(uri, str);
918
49.7k
    if (ret != 0) {
919
44.2k
  xmlCleanURI(uri);
920
44.2k
        ret = xmlParse3986RelativeRef(uri, str);
921
44.2k
  if (ret != 0) {
922
30.4k
      xmlCleanURI(uri);
923
30.4k
      return(ret);
924
30.4k
  }
925
44.2k
    }
926
19.2k
    return(0);
927
49.7k
}
928
929
/**
930
 * xmlParseURI:
931
 * @str:  the URI string to analyze
932
 *
933
 * Parse an URI based on RFC 3986
934
 *
935
 * URI-reference = [ absoluteURI | relativeURI ] [ "#" fragment ]
936
 *
937
 * Returns a newly built xmlURIPtr or NULL in case of error
938
 */
939
xmlURIPtr
940
49.7k
xmlParseURI(const char *str) {
941
49.7k
    xmlURIPtr uri;
942
49.7k
    int ret;
943
944
49.7k
    if (str == NULL)
945
0
  return(NULL);
946
49.7k
    uri = xmlCreateURI();
947
49.7k
    if (uri != NULL) {
948
49.7k
  ret = xmlParse3986URIReference(uri, str);
949
49.7k
        if (ret) {
950
30.4k
      xmlFreeURI(uri);
951
30.4k
      return(NULL);
952
30.4k
  }
953
49.7k
    }
954
19.2k
    return(uri);
955
49.7k
}
956
957
/**
958
 * xmlParseURIReference:
959
 * @uri:  pointer to an URI structure
960
 * @str:  the string to analyze
961
 *
962
 * Parse an URI reference string based on RFC 3986 and fills in the
963
 * appropriate fields of the @uri structure
964
 *
965
 * URI-reference = URI / relative-ref
966
 *
967
 * Returns 0 or the error code
968
 */
969
int
970
0
xmlParseURIReference(xmlURIPtr uri, const char *str) {
971
0
    return(xmlParse3986URIReference(uri, str));
972
0
}
973
974
/**
975
 * xmlParseURIRaw:
976
 * @str:  the URI string to analyze
977
 * @raw:  if 1 unescaping of URI pieces are disabled
978
 *
979
 * Parse an URI but allows to keep intact the original fragments.
980
 *
981
 * URI-reference = URI / relative-ref
982
 *
983
 * Returns a newly built xmlURIPtr or NULL in case of error
984
 */
985
xmlURIPtr
986
0
xmlParseURIRaw(const char *str, int raw) {
987
0
    xmlURIPtr uri;
988
0
    int ret;
989
990
0
    if (str == NULL)
991
0
  return(NULL);
992
0
    uri = xmlCreateURI();
993
0
    if (uri != NULL) {
994
0
        if (raw) {
995
0
      uri->cleanup |= 2;
996
0
  }
997
0
  ret = xmlParseURIReference(uri, str);
998
0
        if (ret) {
999
0
      xmlFreeURI(uri);
1000
0
      return(NULL);
1001
0
  }
1002
0
    }
1003
0
    return(uri);
1004
0
}
1005
1006
/************************************************************************
1007
 *                  *
1008
 *      Generic URI structure functions     *
1009
 *                  *
1010
 ************************************************************************/
1011
1012
/**
1013
 * xmlCreateURI:
1014
 *
1015
 * Simply creates an empty xmlURI
1016
 *
1017
 * Returns the new structure or NULL in case of error
1018
 */
1019
xmlURIPtr
1020
49.7k
xmlCreateURI(void) {
1021
49.7k
    xmlURIPtr ret;
1022
1023
49.7k
    ret = (xmlURIPtr) xmlMalloc(sizeof(xmlURI));
1024
49.7k
    if (ret == NULL) {
1025
0
        xmlURIErrMemory("creating URI structure\n");
1026
0
  return(NULL);
1027
0
    }
1028
49.7k
    memset(ret, 0, sizeof(xmlURI));
1029
49.7k
    return(ret);
1030
49.7k
}
1031
1032
/**
1033
 * xmlSaveUriRealloc:
1034
 *
1035
 * Function to handle properly a reallocation when saving an URI
1036
 * Also imposes some limit on the length of an URI string output
1037
 */
1038
static xmlChar *
1039
0
xmlSaveUriRealloc(xmlChar *ret, int *max) {
1040
0
    xmlChar *temp;
1041
0
    int tmp;
1042
1043
0
    if (*max > MAX_URI_LENGTH) {
1044
0
        xmlURIErrMemory("reaching arbitrary MAX_URI_LENGTH limit\n");
1045
0
        return(NULL);
1046
0
    }
1047
0
    tmp = *max * 2;
1048
0
    temp = (xmlChar *) xmlRealloc(ret, (tmp + 1));
1049
0
    if (temp == NULL) {
1050
0
        xmlURIErrMemory("saving URI\n");
1051
0
        return(NULL);
1052
0
    }
1053
0
    *max = tmp;
1054
0
    return(temp);
1055
0
}
1056
1057
/**
1058
 * xmlSaveUri:
1059
 * @uri:  pointer to an xmlURI
1060
 *
1061
 * Save the URI as an escaped string
1062
 *
1063
 * Returns a new string (to be deallocated by caller)
1064
 */
1065
xmlChar *
1066
0
xmlSaveUri(xmlURIPtr uri) {
1067
0
    xmlChar *ret = NULL;
1068
0
    xmlChar *temp;
1069
0
    const char *p;
1070
0
    int len;
1071
0
    int max;
1072
1073
0
    if (uri == NULL) return(NULL);
1074
1075
1076
0
    max = 80;
1077
0
    ret = (xmlChar *) xmlMallocAtomic((max + 1) * sizeof(xmlChar));
1078
0
    if (ret == NULL) {
1079
0
        xmlURIErrMemory("saving URI\n");
1080
0
  return(NULL);
1081
0
    }
1082
0
    len = 0;
1083
1084
0
    if (uri->scheme != NULL) {
1085
0
  p = uri->scheme;
1086
0
  while (*p != 0) {
1087
0
      if (len >= max) {
1088
0
                temp = xmlSaveUriRealloc(ret, &max);
1089
0
                if (temp == NULL) goto mem_error;
1090
0
    ret = temp;
1091
0
      }
1092
0
      ret[len++] = *p++;
1093
0
  }
1094
0
  if (len >= max) {
1095
0
            temp = xmlSaveUriRealloc(ret, &max);
1096
0
            if (temp == NULL) goto mem_error;
1097
0
            ret = temp;
1098
0
  }
1099
0
  ret[len++] = ':';
1100
0
    }
1101
0
    if (uri->opaque != NULL) {
1102
0
  p = uri->opaque;
1103
0
  while (*p != 0) {
1104
0
      if (len + 3 >= max) {
1105
0
                temp = xmlSaveUriRealloc(ret, &max);
1106
0
                if (temp == NULL) goto mem_error;
1107
0
                ret = temp;
1108
0
      }
1109
0
      if (IS_RESERVED(*(p)) || IS_UNRESERVED(*(p)))
1110
0
    ret[len++] = *p++;
1111
0
      else {
1112
0
    int val = *(unsigned char *)p++;
1113
0
    int hi = val / 0x10, lo = val % 0x10;
1114
0
    ret[len++] = '%';
1115
0
    ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1116
0
    ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1117
0
      }
1118
0
  }
1119
0
    } else {
1120
0
  if ((uri->server != NULL) || (uri->port == -1)) {
1121
0
      if (len + 3 >= max) {
1122
0
                temp = xmlSaveUriRealloc(ret, &max);
1123
0
                if (temp == NULL) goto mem_error;
1124
0
                ret = temp;
1125
0
      }
1126
0
      ret[len++] = '/';
1127
0
      ret[len++] = '/';
1128
0
      if (uri->user != NULL) {
1129
0
    p = uri->user;
1130
0
    while (*p != 0) {
1131
0
        if (len + 3 >= max) {
1132
0
                        temp = xmlSaveUriRealloc(ret, &max);
1133
0
                        if (temp == NULL) goto mem_error;
1134
0
                        ret = temp;
1135
0
        }
1136
0
        if ((IS_UNRESERVED(*(p))) ||
1137
0
      ((*(p) == ';')) || ((*(p) == ':')) ||
1138
0
      ((*(p) == '&')) || ((*(p) == '=')) ||
1139
0
      ((*(p) == '+')) || ((*(p) == '$')) ||
1140
0
      ((*(p) == ',')))
1141
0
      ret[len++] = *p++;
1142
0
        else {
1143
0
      int val = *(unsigned char *)p++;
1144
0
      int hi = val / 0x10, lo = val % 0x10;
1145
0
      ret[len++] = '%';
1146
0
      ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1147
0
      ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1148
0
        }
1149
0
    }
1150
0
    if (len + 3 >= max) {
1151
0
                    temp = xmlSaveUriRealloc(ret, &max);
1152
0
                    if (temp == NULL) goto mem_error;
1153
0
                    ret = temp;
1154
0
    }
1155
0
    ret[len++] = '@';
1156
0
      }
1157
0
      if (uri->server != NULL) {
1158
0
    p = uri->server;
1159
0
    while (*p != 0) {
1160
0
        if (len >= max) {
1161
0
      temp = xmlSaveUriRealloc(ret, &max);
1162
0
      if (temp == NULL) goto mem_error;
1163
0
      ret = temp;
1164
0
        }
1165
0
        ret[len++] = *p++;
1166
0
    }
1167
0
    if (uri->port > 0) {
1168
0
        if (len + 10 >= max) {
1169
0
      temp = xmlSaveUriRealloc(ret, &max);
1170
0
      if (temp == NULL) goto mem_error;
1171
0
      ret = temp;
1172
0
        }
1173
0
        len += snprintf((char *) &ret[len], max - len, ":%d", uri->port);
1174
0
    }
1175
0
      }
1176
0
  } else if (uri->authority != NULL) {
1177
0
      if (len + 3 >= max) {
1178
0
                temp = xmlSaveUriRealloc(ret, &max);
1179
0
                if (temp == NULL) goto mem_error;
1180
0
                ret = temp;
1181
0
      }
1182
0
      ret[len++] = '/';
1183
0
      ret[len++] = '/';
1184
0
      p = uri->authority;
1185
0
      while (*p != 0) {
1186
0
    if (len + 3 >= max) {
1187
0
                    temp = xmlSaveUriRealloc(ret, &max);
1188
0
                    if (temp == NULL) goto mem_error;
1189
0
                    ret = temp;
1190
0
    }
1191
0
    if ((IS_UNRESERVED(*(p))) ||
1192
0
                    ((*(p) == '$')) || ((*(p) == ',')) || ((*(p) == ';')) ||
1193
0
                    ((*(p) == ':')) || ((*(p) == '@')) || ((*(p) == '&')) ||
1194
0
                    ((*(p) == '=')) || ((*(p) == '+')))
1195
0
        ret[len++] = *p++;
1196
0
    else {
1197
0
        int val = *(unsigned char *)p++;
1198
0
        int hi = val / 0x10, lo = val % 0x10;
1199
0
        ret[len++] = '%';
1200
0
        ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1201
0
        ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1202
0
    }
1203
0
      }
1204
0
  } else if (uri->scheme != NULL) {
1205
0
      if (len + 3 >= max) {
1206
0
                temp = xmlSaveUriRealloc(ret, &max);
1207
0
                if (temp == NULL) goto mem_error;
1208
0
                ret = temp;
1209
0
      }
1210
0
  }
1211
0
  if (uri->path != NULL) {
1212
0
      p = uri->path;
1213
      /*
1214
       * the colon in file:///d: should not be escaped or
1215
       * Windows accesses fail later.
1216
       */
1217
0
      if ((uri->scheme != NULL) &&
1218
0
    (p[0] == '/') &&
1219
0
    (((p[1] >= 'a') && (p[1] <= 'z')) ||
1220
0
     ((p[1] >= 'A') && (p[1] <= 'Z'))) &&
1221
0
    (p[2] == ':') &&
1222
0
          (xmlStrEqual(BAD_CAST uri->scheme, BAD_CAST "file"))) {
1223
0
    if (len + 3 >= max) {
1224
0
                    temp = xmlSaveUriRealloc(ret, &max);
1225
0
                    if (temp == NULL) goto mem_error;
1226
0
                    ret = temp;
1227
0
    }
1228
0
    ret[len++] = *p++;
1229
0
    ret[len++] = *p++;
1230
0
    ret[len++] = *p++;
1231
0
      }
1232
0
      while (*p != 0) {
1233
0
    if (len + 3 >= max) {
1234
0
                    temp = xmlSaveUriRealloc(ret, &max);
1235
0
                    if (temp == NULL) goto mem_error;
1236
0
                    ret = temp;
1237
0
    }
1238
0
    if ((IS_UNRESERVED(*(p))) || ((*(p) == '/')) ||
1239
0
                    ((*(p) == ';')) || ((*(p) == '@')) || ((*(p) == '&')) ||
1240
0
              ((*(p) == '=')) || ((*(p) == '+')) || ((*(p) == '$')) ||
1241
0
              ((*(p) == ',')))
1242
0
        ret[len++] = *p++;
1243
0
    else {
1244
0
        int val = *(unsigned char *)p++;
1245
0
        int hi = val / 0x10, lo = val % 0x10;
1246
0
        ret[len++] = '%';
1247
0
        ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1248
0
        ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1249
0
    }
1250
0
      }
1251
0
  }
1252
0
  if (uri->query_raw != NULL) {
1253
0
      if (len + 1 >= max) {
1254
0
                temp = xmlSaveUriRealloc(ret, &max);
1255
0
                if (temp == NULL) goto mem_error;
1256
0
                ret = temp;
1257
0
      }
1258
0
      ret[len++] = '?';
1259
0
      p = uri->query_raw;
1260
0
      while (*p != 0) {
1261
0
    if (len + 1 >= max) {
1262
0
                    temp = xmlSaveUriRealloc(ret, &max);
1263
0
                    if (temp == NULL) goto mem_error;
1264
0
                    ret = temp;
1265
0
    }
1266
0
    ret[len++] = *p++;
1267
0
      }
1268
0
  } else if (uri->query != NULL) {
1269
0
      if (len + 3 >= max) {
1270
0
                temp = xmlSaveUriRealloc(ret, &max);
1271
0
                if (temp == NULL) goto mem_error;
1272
0
                ret = temp;
1273
0
      }
1274
0
      ret[len++] = '?';
1275
0
      p = uri->query;
1276
0
      while (*p != 0) {
1277
0
    if (len + 3 >= max) {
1278
0
                    temp = xmlSaveUriRealloc(ret, &max);
1279
0
                    if (temp == NULL) goto mem_error;
1280
0
                    ret = temp;
1281
0
    }
1282
0
    if ((IS_UNRESERVED(*(p))) || (IS_RESERVED(*(p))))
1283
0
        ret[len++] = *p++;
1284
0
    else {
1285
0
        int val = *(unsigned char *)p++;
1286
0
        int hi = val / 0x10, lo = val % 0x10;
1287
0
        ret[len++] = '%';
1288
0
        ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1289
0
        ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1290
0
    }
1291
0
      }
1292
0
  }
1293
0
    }
1294
0
    if (uri->fragment != NULL) {
1295
0
  if (len + 3 >= max) {
1296
0
            temp = xmlSaveUriRealloc(ret, &max);
1297
0
            if (temp == NULL) goto mem_error;
1298
0
            ret = temp;
1299
0
  }
1300
0
  ret[len++] = '#';
1301
0
  p = uri->fragment;
1302
0
  while (*p != 0) {
1303
0
      if (len + 3 >= max) {
1304
0
                temp = xmlSaveUriRealloc(ret, &max);
1305
0
                if (temp == NULL) goto mem_error;
1306
0
                ret = temp;
1307
0
      }
1308
0
      if ((IS_UNRESERVED(*(p))) || (IS_RESERVED(*(p))))
1309
0
    ret[len++] = *p++;
1310
0
      else {
1311
0
    int val = *(unsigned char *)p++;
1312
0
    int hi = val / 0x10, lo = val % 0x10;
1313
0
    ret[len++] = '%';
1314
0
    ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1315
0
    ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1316
0
      }
1317
0
  }
1318
0
    }
1319
0
    if (len >= max) {
1320
0
        temp = xmlSaveUriRealloc(ret, &max);
1321
0
        if (temp == NULL) goto mem_error;
1322
0
        ret = temp;
1323
0
    }
1324
0
    ret[len] = 0;
1325
0
    return(ret);
1326
1327
0
mem_error:
1328
0
    xmlFree(ret);
1329
0
    return(NULL);
1330
0
}
1331
1332
/**
1333
 * xmlPrintURI:
1334
 * @stream:  a FILE* for the output
1335
 * @uri:  pointer to an xmlURI
1336
 *
1337
 * Prints the URI in the stream @stream.
1338
 */
1339
void
1340
0
xmlPrintURI(FILE *stream, xmlURIPtr uri) {
1341
0
    xmlChar *out;
1342
1343
0
    out = xmlSaveUri(uri);
1344
0
    if (out != NULL) {
1345
0
  fprintf(stream, "%s", (char *) out);
1346
0
  xmlFree(out);
1347
0
    }
1348
0
}
1349
1350
/**
1351
 * xmlCleanURI:
1352
 * @uri:  pointer to an xmlURI
1353
 *
1354
 * Make sure the xmlURI struct is free of content
1355
 */
1356
static void
1357
164k
xmlCleanURI(xmlURIPtr uri) {
1358
164k
    if (uri == NULL) return;
1359
1360
164k
    if (uri->scheme != NULL) xmlFree(uri->scheme);
1361
164k
    uri->scheme = NULL;
1362
164k
    if (uri->server != NULL) xmlFree(uri->server);
1363
164k
    uri->server = NULL;
1364
164k
    if (uri->user != NULL) xmlFree(uri->user);
1365
164k
    uri->user = NULL;
1366
164k
    if (uri->path != NULL) xmlFree(uri->path);
1367
164k
    uri->path = NULL;
1368
164k
    if (uri->fragment != NULL) xmlFree(uri->fragment);
1369
164k
    uri->fragment = NULL;
1370
164k
    if (uri->opaque != NULL) xmlFree(uri->opaque);
1371
164k
    uri->opaque = NULL;
1372
164k
    if (uri->authority != NULL) xmlFree(uri->authority);
1373
164k
    uri->authority = NULL;
1374
164k
    if (uri->query != NULL) xmlFree(uri->query);
1375
164k
    uri->query = NULL;
1376
164k
    if (uri->query_raw != NULL) xmlFree(uri->query_raw);
1377
164k
    uri->query_raw = NULL;
1378
164k
}
1379
1380
/**
1381
 * xmlFreeURI:
1382
 * @uri:  pointer to an xmlURI
1383
 *
1384
 * Free up the xmlURI struct
1385
 */
1386
void
1387
49.7k
xmlFreeURI(xmlURIPtr uri) {
1388
49.7k
    if (uri == NULL) return;
1389
1390
49.7k
    if (uri->scheme != NULL) xmlFree(uri->scheme);
1391
49.7k
    if (uri->server != NULL) xmlFree(uri->server);
1392
49.7k
    if (uri->user != NULL) xmlFree(uri->user);
1393
49.7k
    if (uri->path != NULL) xmlFree(uri->path);
1394
49.7k
    if (uri->fragment != NULL) xmlFree(uri->fragment);
1395
49.7k
    if (uri->opaque != NULL) xmlFree(uri->opaque);
1396
49.7k
    if (uri->authority != NULL) xmlFree(uri->authority);
1397
49.7k
    if (uri->query != NULL) xmlFree(uri->query);
1398
49.7k
    if (uri->query_raw != NULL) xmlFree(uri->query_raw);
1399
49.7k
    xmlFree(uri);
1400
49.7k
}
1401
1402
/************************************************************************
1403
 *                  *
1404
 *      Helper functions        *
1405
 *                  *
1406
 ************************************************************************/
1407
1408
/**
1409
 * xmlNormalizeURIPath:
1410
 * @path:  pointer to the path string
1411
 *
1412
 * Applies the 5 normalization steps to a path string--that is, RFC 2396
1413
 * Section 5.2, steps 6.c through 6.g.
1414
 *
1415
 * Normalization occurs directly on the string, no new allocation is done
1416
 *
1417
 * Returns 0 or an error code
1418
 */
1419
int
1420
0
xmlNormalizeURIPath(char *path) {
1421
0
    char *cur, *out;
1422
1423
0
    if (path == NULL)
1424
0
  return(-1);
1425
1426
    /* Skip all initial "/" chars.  We want to get to the beginning of the
1427
     * first non-empty segment.
1428
     */
1429
0
    cur = path;
1430
0
    while (cur[0] == '/')
1431
0
      ++cur;
1432
0
    if (cur[0] == '\0')
1433
0
      return(0);
1434
1435
    /* Keep everything we've seen so far.  */
1436
0
    out = cur;
1437
1438
    /*
1439
     * Analyze each segment in sequence for cases (c) and (d).
1440
     */
1441
0
    while (cur[0] != '\0') {
1442
  /*
1443
   * c) All occurrences of "./", where "." is a complete path segment,
1444
   *    are removed from the buffer string.
1445
   */
1446
0
  if ((cur[0] == '.') && (cur[1] == '/')) {
1447
0
      cur += 2;
1448
      /* '//' normalization should be done at this point too */
1449
0
      while (cur[0] == '/')
1450
0
    cur++;
1451
0
      continue;
1452
0
  }
1453
1454
  /*
1455
   * d) If the buffer string ends with "." as a complete path segment,
1456
   *    that "." is removed.
1457
   */
1458
0
  if ((cur[0] == '.') && (cur[1] == '\0'))
1459
0
      break;
1460
1461
  /* Otherwise keep the segment.  */
1462
0
  while (cur[0] != '/') {
1463
0
            if (cur[0] == '\0')
1464
0
              goto done_cd;
1465
0
      (out++)[0] = (cur++)[0];
1466
0
  }
1467
  /* normalize // */
1468
0
  while ((cur[0] == '/') && (cur[1] == '/'))
1469
0
      cur++;
1470
1471
0
        (out++)[0] = (cur++)[0];
1472
0
    }
1473
0
 done_cd:
1474
0
    out[0] = '\0';
1475
1476
    /* Reset to the beginning of the first segment for the next sequence.  */
1477
0
    cur = path;
1478
0
    while (cur[0] == '/')
1479
0
      ++cur;
1480
0
    if (cur[0] == '\0')
1481
0
  return(0);
1482
1483
    /*
1484
     * Analyze each segment in sequence for cases (e) and (f).
1485
     *
1486
     * e) All occurrences of "<segment>/../", where <segment> is a
1487
     *    complete path segment not equal to "..", are removed from the
1488
     *    buffer string.  Removal of these path segments is performed
1489
     *    iteratively, removing the leftmost matching pattern on each
1490
     *    iteration, until no matching pattern remains.
1491
     *
1492
     * f) If the buffer string ends with "<segment>/..", where <segment>
1493
     *    is a complete path segment not equal to "..", that
1494
     *    "<segment>/.." is removed.
1495
     *
1496
     * To satisfy the "iterative" clause in (e), we need to collapse the
1497
     * string every time we find something that needs to be removed.  Thus,
1498
     * we don't need to keep two pointers into the string: we only need a
1499
     * "current position" pointer.
1500
     */
1501
0
    while (1) {
1502
0
        char *segp, *tmp;
1503
1504
        /* At the beginning of each iteration of this loop, "cur" points to
1505
         * the first character of the segment we want to examine.
1506
         */
1507
1508
        /* Find the end of the current segment.  */
1509
0
        segp = cur;
1510
0
        while ((segp[0] != '/') && (segp[0] != '\0'))
1511
0
          ++segp;
1512
1513
        /* If this is the last segment, we're done (we need at least two
1514
         * segments to meet the criteria for the (e) and (f) cases).
1515
         */
1516
0
        if (segp[0] == '\0')
1517
0
          break;
1518
1519
        /* If the first segment is "..", or if the next segment _isn't_ "..",
1520
         * keep this segment and try the next one.
1521
         */
1522
0
        ++segp;
1523
0
        if (((cur[0] == '.') && (cur[1] == '.') && (segp == cur+3))
1524
0
            || ((segp[0] != '.') || (segp[1] != '.')
1525
0
                || ((segp[2] != '/') && (segp[2] != '\0')))) {
1526
0
          cur = segp;
1527
0
          continue;
1528
0
        }
1529
1530
        /* If we get here, remove this segment and the next one and back up
1531
         * to the previous segment (if there is one), to implement the
1532
         * "iteratively" clause.  It's pretty much impossible to back up
1533
         * while maintaining two pointers into the buffer, so just compact
1534
         * the whole buffer now.
1535
         */
1536
1537
        /* If this is the end of the buffer, we're done.  */
1538
0
        if (segp[2] == '\0') {
1539
0
          cur[0] = '\0';
1540
0
          break;
1541
0
        }
1542
        /* Valgrind complained, strcpy(cur, segp + 3); */
1543
        /* string will overlap, do not use strcpy */
1544
0
        tmp = cur;
1545
0
        segp += 3;
1546
0
        while ((*tmp++ = *segp++) != 0)
1547
0
          ;
1548
1549
        /* If there are no previous segments, then keep going from here.  */
1550
0
        segp = cur;
1551
0
        while ((segp > path) && ((--segp)[0] == '/'))
1552
0
          ;
1553
0
        if (segp == path)
1554
0
          continue;
1555
1556
        /* "segp" is pointing to the end of a previous segment; find it's
1557
         * start.  We need to back up to the previous segment and start
1558
         * over with that to handle things like "foo/bar/../..".  If we
1559
         * don't do this, then on the first pass we'll remove the "bar/..",
1560
         * but be pointing at the second ".." so we won't realize we can also
1561
         * remove the "foo/..".
1562
         */
1563
0
        cur = segp;
1564
0
        while ((cur > path) && (cur[-1] != '/'))
1565
0
          --cur;
1566
0
    }
1567
0
    out[0] = '\0';
1568
1569
    /*
1570
     * g) If the resulting buffer string still begins with one or more
1571
     *    complete path segments of "..", then the reference is
1572
     *    considered to be in error. Implementations may handle this
1573
     *    error by retaining these components in the resolved path (i.e.,
1574
     *    treating them as part of the final URI), by removing them from
1575
     *    the resolved path (i.e., discarding relative levels above the
1576
     *    root), or by avoiding traversal of the reference.
1577
     *
1578
     * We discard them from the final path.
1579
     */
1580
0
    if (path[0] == '/') {
1581
0
      cur = path;
1582
0
      while ((cur[0] == '/') && (cur[1] == '.') && (cur[2] == '.')
1583
0
             && ((cur[3] == '/') || (cur[3] == '\0')))
1584
0
  cur += 3;
1585
1586
0
      if (cur != path) {
1587
0
  out = path;
1588
0
  while (cur[0] != '\0')
1589
0
          (out++)[0] = (cur++)[0];
1590
0
  out[0] = 0;
1591
0
      }
1592
0
    }
1593
1594
0
    return(0);
1595
0
}
1596
1597
34.0k
static int is_hex(char c) {
1598
34.0k
    if (((c >= '0') && (c <= '9')) ||
1599
34.0k
        ((c >= 'a') && (c <= 'f')) ||
1600
34.0k
        ((c >= 'A') && (c <= 'F')))
1601
30.9k
  return(1);
1602
3.06k
    return(0);
1603
34.0k
}
1604
1605
/**
1606
 * xmlURIUnescapeString:
1607
 * @str:  the string to unescape
1608
 * @len:   the length in bytes to unescape (or <= 0 to indicate full string)
1609
 * @target:  optional destination buffer
1610
 *
1611
 * Unescaping routine, but does not check that the string is an URI. The
1612
 * output is a direct unsigned char translation of %XX values (no encoding)
1613
 * Note that the length of the result can only be smaller or same size as
1614
 * the input string.
1615
 *
1616
 * Returns a copy of the string, but unescaped, will return NULL only in case
1617
 * of error
1618
 */
1619
char *
1620
66.5k
xmlURIUnescapeString(const char *str, int len, char *target) {
1621
66.5k
    char *ret, *out;
1622
66.5k
    const char *in;
1623
1624
66.5k
    if (str == NULL)
1625
0
  return(NULL);
1626
66.5k
    if (len <= 0) len = strlen(str);
1627
66.5k
    if (len < 0) return(NULL);
1628
1629
66.5k
    if (target == NULL) {
1630
66.5k
  ret = (char *) xmlMallocAtomic(len + 1);
1631
66.5k
  if (ret == NULL) {
1632
0
            xmlURIErrMemory("unescaping URI value\n");
1633
0
      return(NULL);
1634
0
  }
1635
66.5k
    } else
1636
0
  ret = target;
1637
66.5k
    in = str;
1638
66.5k
    out = ret;
1639
136M
    while(len > 0) {
1640
136M
  if ((len > 2) && (*in == '%') && (is_hex(in[1])) && (is_hex(in[2]))) {
1641
14.6k
            int c = 0;
1642
14.6k
      in++;
1643
14.6k
      if ((*in >= '0') && (*in <= '9'))
1644
4.46k
          c = (*in - '0');
1645
10.2k
      else if ((*in >= 'a') && (*in <= 'f'))
1646
4.76k
          c = (*in - 'a') + 10;
1647
5.47k
      else if ((*in >= 'A') && (*in <= 'F'))
1648
5.47k
          c = (*in - 'A') + 10;
1649
14.6k
      in++;
1650
14.6k
      if ((*in >= '0') && (*in <= '9'))
1651
4.50k
          c = c * 16 + (*in - '0');
1652
10.1k
      else if ((*in >= 'a') && (*in <= 'f'))
1653
4.93k
          c = c * 16 + (*in - 'a') + 10;
1654
5.25k
      else if ((*in >= 'A') && (*in <= 'F'))
1655
5.25k
          c = c * 16 + (*in - 'A') + 10;
1656
14.6k
      in++;
1657
14.6k
      len -= 3;
1658
14.6k
      *out++ = (char) c;
1659
136M
  } else {
1660
136M
      *out++ = *in++;
1661
136M
      len--;
1662
136M
  }
1663
136M
    }
1664
66.5k
    *out = 0;
1665
66.5k
    return(ret);
1666
66.5k
}
1667
1668
/**
1669
 * xmlURIEscapeStr:
1670
 * @str:  string to escape
1671
 * @list: exception list string of chars not to escape
1672
 *
1673
 * This routine escapes a string to hex, ignoring reserved characters (a-z)
1674
 * and the characters in the exception list.
1675
 *
1676
 * Returns a new escaped string or NULL in case of error.
1677
 */
1678
xmlChar *
1679
0
xmlURIEscapeStr(const xmlChar *str, const xmlChar *list) {
1680
0
    xmlChar *ret, ch;
1681
0
    xmlChar *temp;
1682
0
    const xmlChar *in;
1683
0
    int len, out;
1684
1685
0
    if (str == NULL)
1686
0
  return(NULL);
1687
0
    if (str[0] == 0)
1688
0
  return(xmlStrdup(str));
1689
0
    len = xmlStrlen(str);
1690
0
    if (!(len > 0)) return(NULL);
1691
1692
0
    len += 20;
1693
0
    ret = (xmlChar *) xmlMallocAtomic(len);
1694
0
    if (ret == NULL) {
1695
0
        xmlURIErrMemory("escaping URI value\n");
1696
0
  return(NULL);
1697
0
    }
1698
0
    in = (const xmlChar *) str;
1699
0
    out = 0;
1700
0
    while(*in != 0) {
1701
0
  if (len - out <= 3) {
1702
0
            temp = xmlSaveUriRealloc(ret, &len);
1703
0
      if (temp == NULL) {
1704
0
                xmlURIErrMemory("escaping URI value\n");
1705
0
    xmlFree(ret);
1706
0
    return(NULL);
1707
0
      }
1708
0
      ret = temp;
1709
0
  }
1710
1711
0
  ch = *in;
1712
1713
0
  if ((ch != '@') && (!IS_UNRESERVED(ch)) && (!xmlStrchr(list, ch))) {
1714
0
      unsigned char val;
1715
0
      ret[out++] = '%';
1716
0
      val = ch >> 4;
1717
0
      if (val <= 9)
1718
0
    ret[out++] = '0' + val;
1719
0
      else
1720
0
    ret[out++] = 'A' + val - 0xA;
1721
0
      val = ch & 0xF;
1722
0
      if (val <= 9)
1723
0
    ret[out++] = '0' + val;
1724
0
      else
1725
0
    ret[out++] = 'A' + val - 0xA;
1726
0
      in++;
1727
0
  } else {
1728
0
      ret[out++] = *in++;
1729
0
  }
1730
1731
0
    }
1732
0
    ret[out] = 0;
1733
0
    return(ret);
1734
0
}
1735
1736
/**
1737
 * xmlURIEscape:
1738
 * @str:  the string of the URI to escape
1739
 *
1740
 * Escaping routine, does not do validity checks !
1741
 * It will try to escape the chars needing this, but this is heuristic
1742
 * based it's impossible to be sure.
1743
 *
1744
 * Returns an copy of the string, but escaped
1745
 *
1746
 * 25 May 2001
1747
 * Uses xmlParseURI and xmlURIEscapeStr to try to escape correctly
1748
 * according to RFC2396.
1749
 *   - Carl Douglas
1750
 */
1751
xmlChar *
1752
xmlURIEscape(const xmlChar * str)
1753
0
{
1754
0
    xmlChar *ret, *segment = NULL;
1755
0
    xmlURIPtr uri;
1756
0
    int ret2;
1757
1758
0
    if (str == NULL)
1759
0
        return (NULL);
1760
1761
0
    uri = xmlCreateURI();
1762
0
    if (uri != NULL) {
1763
  /*
1764
   * Allow escaping errors in the unescaped form
1765
   */
1766
0
        uri->cleanup = 1;
1767
0
        ret2 = xmlParseURIReference(uri, (const char *)str);
1768
0
        if (ret2) {
1769
0
            xmlFreeURI(uri);
1770
0
            return (NULL);
1771
0
        }
1772
0
    }
1773
1774
0
    if (!uri)
1775
0
        return NULL;
1776
1777
0
    ret = NULL;
1778
1779
0
#define NULLCHK(p) if(!p) { \
1780
0
         xmlURIErrMemory("escaping URI value\n"); \
1781
0
         xmlFreeURI(uri); \
1782
0
         xmlFree(ret); \
1783
0
         return NULL; } \
1784
0
1785
0
    if (uri->scheme) {
1786
0
        segment = xmlURIEscapeStr(BAD_CAST uri->scheme, BAD_CAST "+-.");
1787
0
        NULLCHK(segment)
1788
0
        ret = xmlStrcat(ret, segment);
1789
0
        ret = xmlStrcat(ret, BAD_CAST ":");
1790
0
        xmlFree(segment);
1791
0
    }
1792
1793
0
    if (uri->authority) {
1794
0
        segment =
1795
0
            xmlURIEscapeStr(BAD_CAST uri->authority, BAD_CAST "/?;:@");
1796
0
        NULLCHK(segment)
1797
0
        ret = xmlStrcat(ret, BAD_CAST "//");
1798
0
        ret = xmlStrcat(ret, segment);
1799
0
        xmlFree(segment);
1800
0
    }
1801
1802
0
    if (uri->user) {
1803
0
        segment = xmlURIEscapeStr(BAD_CAST uri->user, BAD_CAST ";:&=+$,");
1804
0
        NULLCHK(segment)
1805
0
        ret = xmlStrcat(ret,BAD_CAST "//");
1806
0
        ret = xmlStrcat(ret, segment);
1807
0
        ret = xmlStrcat(ret, BAD_CAST "@");
1808
0
        xmlFree(segment);
1809
0
    }
1810
1811
0
    if (uri->server) {
1812
0
        segment = xmlURIEscapeStr(BAD_CAST uri->server, BAD_CAST "/?;:@");
1813
0
        NULLCHK(segment)
1814
0
        if (uri->user == NULL)
1815
0
            ret = xmlStrcat(ret, BAD_CAST "//");
1816
0
        ret = xmlStrcat(ret, segment);
1817
0
        xmlFree(segment);
1818
0
    }
1819
1820
0
    if (uri->port) {
1821
0
        xmlChar port[10];
1822
1823
0
        snprintf((char *) port, 10, "%d", uri->port);
1824
0
        ret = xmlStrcat(ret, BAD_CAST ":");
1825
0
        ret = xmlStrcat(ret, port);
1826
0
    }
1827
1828
0
    if (uri->path) {
1829
0
        segment =
1830
0
            xmlURIEscapeStr(BAD_CAST uri->path, BAD_CAST ":@&=+$,/?;");
1831
0
        NULLCHK(segment)
1832
0
        ret = xmlStrcat(ret, segment);
1833
0
        xmlFree(segment);
1834
0
    }
1835
1836
0
    if (uri->query_raw) {
1837
0
        ret = xmlStrcat(ret, BAD_CAST "?");
1838
0
        ret = xmlStrcat(ret, BAD_CAST uri->query_raw);
1839
0
    }
1840
0
    else if (uri->query) {
1841
0
        segment =
1842
0
            xmlURIEscapeStr(BAD_CAST uri->query, BAD_CAST ";/?:@&=+,$");
1843
0
        NULLCHK(segment)
1844
0
        ret = xmlStrcat(ret, BAD_CAST "?");
1845
0
        ret = xmlStrcat(ret, segment);
1846
0
        xmlFree(segment);
1847
0
    }
1848
1849
0
    if (uri->opaque) {
1850
0
        segment = xmlURIEscapeStr(BAD_CAST uri->opaque, BAD_CAST "");
1851
0
        NULLCHK(segment)
1852
0
        ret = xmlStrcat(ret, segment);
1853
0
        xmlFree(segment);
1854
0
    }
1855
1856
0
    if (uri->fragment) {
1857
0
        segment = xmlURIEscapeStr(BAD_CAST uri->fragment, BAD_CAST "#");
1858
0
        NULLCHK(segment)
1859
0
        ret = xmlStrcat(ret, BAD_CAST "#");
1860
0
        ret = xmlStrcat(ret, segment);
1861
0
        xmlFree(segment);
1862
0
    }
1863
1864
0
    xmlFreeURI(uri);
1865
0
#undef NULLCHK
1866
1867
0
    return (ret);
1868
0
}
1869
1870
/************************************************************************
1871
 *                  *
1872
 *      Public functions        *
1873
 *                  *
1874
 ************************************************************************/
1875
1876
/**
1877
 * xmlBuildURI:
1878
 * @URI:  the URI instance found in the document
1879
 * @base:  the base value
1880
 *
1881
 * Computes he final URI of the reference done by checking that
1882
 * the given URI is valid, and building the final URI using the
1883
 * base URI. This is processed according to section 5.2 of the
1884
 * RFC 2396
1885
 *
1886
 * 5.2. Resolving Relative References to Absolute Form
1887
 *
1888
 * Returns a new URI string (to be freed by the caller) or NULL in case
1889
 *         of error.
1890
 */
1891
xmlChar *
1892
0
xmlBuildURI(const xmlChar *URI, const xmlChar *base) {
1893
0
    xmlChar *val = NULL;
1894
0
    int ret, len, indx, cur, out;
1895
0
    xmlURIPtr ref = NULL;
1896
0
    xmlURIPtr bas = NULL;
1897
0
    xmlURIPtr res = NULL;
1898
1899
    /*
1900
     * 1) The URI reference is parsed into the potential four components and
1901
     *    fragment identifier, as described in Section 4.3.
1902
     *
1903
     *    NOTE that a completely empty URI is treated by modern browsers
1904
     *    as a reference to "." rather than as a synonym for the current
1905
     *    URI.  Should we do that here?
1906
     */
1907
0
    if (URI == NULL)
1908
0
  ret = -1;
1909
0
    else {
1910
0
  if (*URI) {
1911
0
      ref = xmlCreateURI();
1912
0
      if (ref == NULL)
1913
0
    goto done;
1914
0
      ret = xmlParseURIReference(ref, (const char *) URI);
1915
0
  }
1916
0
  else
1917
0
      ret = 0;
1918
0
    }
1919
0
    if (ret != 0)
1920
0
  goto done;
1921
0
    if ((ref != NULL) && (ref->scheme != NULL)) {
1922
  /*
1923
   * The URI is absolute don't modify.
1924
   */
1925
0
  val = xmlStrdup(URI);
1926
0
  goto done;
1927
0
    }
1928
0
    if (base == NULL)
1929
0
  ret = -1;
1930
0
    else {
1931
0
  bas = xmlCreateURI();
1932
0
  if (bas == NULL)
1933
0
      goto done;
1934
0
  ret = xmlParseURIReference(bas, (const char *) base);
1935
0
    }
1936
0
    if (ret != 0) {
1937
0
  if (ref)
1938
0
      val = xmlSaveUri(ref);
1939
0
  goto done;
1940
0
    }
1941
0
    if (ref == NULL) {
1942
  /*
1943
   * the base fragment must be ignored
1944
   */
1945
0
  if (bas->fragment != NULL) {
1946
0
      xmlFree(bas->fragment);
1947
0
      bas->fragment = NULL;
1948
0
  }
1949
0
  val = xmlSaveUri(bas);
1950
0
  goto done;
1951
0
    }
1952
1953
    /*
1954
     * 2) If the path component is empty and the scheme, authority, and
1955
     *    query components are undefined, then it is a reference to the
1956
     *    current document and we are done.  Otherwise, the reference URI's
1957
     *    query and fragment components are defined as found (or not found)
1958
     *    within the URI reference and not inherited from the base URI.
1959
     *
1960
     *    NOTE that in modern browsers, the parsing differs from the above
1961
     *    in the following aspect:  the query component is allowed to be
1962
     *    defined while still treating this as a reference to the current
1963
     *    document.
1964
     */
1965
0
    res = xmlCreateURI();
1966
0
    if (res == NULL)
1967
0
  goto done;
1968
0
    if ((ref->scheme == NULL) && (ref->path == NULL) &&
1969
0
  ((ref->authority == NULL) && (ref->server == NULL))) {
1970
0
  if (bas->scheme != NULL)
1971
0
      res->scheme = xmlMemStrdup(bas->scheme);
1972
0
  if (bas->authority != NULL)
1973
0
      res->authority = xmlMemStrdup(bas->authority);
1974
0
  else if ((bas->server != NULL) || (bas->port == -1)) {
1975
0
      if (bas->server != NULL)
1976
0
    res->server = xmlMemStrdup(bas->server);
1977
0
      if (bas->user != NULL)
1978
0
    res->user = xmlMemStrdup(bas->user);
1979
0
      res->port = bas->port;
1980
0
  }
1981
0
  if (bas->path != NULL)
1982
0
      res->path = xmlMemStrdup(bas->path);
1983
0
  if (ref->query_raw != NULL)
1984
0
      res->query_raw = xmlMemStrdup (ref->query_raw);
1985
0
  else if (ref->query != NULL)
1986
0
      res->query = xmlMemStrdup(ref->query);
1987
0
  else if (bas->query_raw != NULL)
1988
0
      res->query_raw = xmlMemStrdup(bas->query_raw);
1989
0
  else if (bas->query != NULL)
1990
0
      res->query = xmlMemStrdup(bas->query);
1991
0
  if (ref->fragment != NULL)
1992
0
      res->fragment = xmlMemStrdup(ref->fragment);
1993
0
  goto step_7;
1994
0
    }
1995
1996
    /*
1997
     * 3) If the scheme component is defined, indicating that the reference
1998
     *    starts with a scheme name, then the reference is interpreted as an
1999
     *    absolute URI and we are done.  Otherwise, the reference URI's
2000
     *    scheme is inherited from the base URI's scheme component.
2001
     */
2002
0
    if (ref->scheme != NULL) {
2003
0
  val = xmlSaveUri(ref);
2004
0
  goto done;
2005
0
    }
2006
0
    if (bas->scheme != NULL)
2007
0
  res->scheme = xmlMemStrdup(bas->scheme);
2008
2009
0
    if (ref->query_raw != NULL)
2010
0
  res->query_raw = xmlMemStrdup(ref->query_raw);
2011
0
    else if (ref->query != NULL)
2012
0
  res->query = xmlMemStrdup(ref->query);
2013
0
    if (ref->fragment != NULL)
2014
0
  res->fragment = xmlMemStrdup(ref->fragment);
2015
2016
    /*
2017
     * 4) If the authority component is defined, then the reference is a
2018
     *    network-path and we skip to step 7.  Otherwise, the reference
2019
     *    URI's authority is inherited from the base URI's authority
2020
     *    component, which will also be undefined if the URI scheme does not
2021
     *    use an authority component.
2022
     */
2023
0
    if ((ref->authority != NULL) || (ref->server != NULL)) {
2024
0
  if (ref->authority != NULL)
2025
0
      res->authority = xmlMemStrdup(ref->authority);
2026
0
  else {
2027
0
      res->server = xmlMemStrdup(ref->server);
2028
0
      if (ref->user != NULL)
2029
0
    res->user = xmlMemStrdup(ref->user);
2030
0
            res->port = ref->port;
2031
0
  }
2032
0
  if (ref->path != NULL)
2033
0
      res->path = xmlMemStrdup(ref->path);
2034
0
  goto step_7;
2035
0
    }
2036
0
    if (bas->authority != NULL)
2037
0
  res->authority = xmlMemStrdup(bas->authority);
2038
0
    else if ((bas->server != NULL) || (bas->port == -1)) {
2039
0
  if (bas->server != NULL)
2040
0
      res->server = xmlMemStrdup(bas->server);
2041
0
  if (bas->user != NULL)
2042
0
      res->user = xmlMemStrdup(bas->user);
2043
0
  res->port = bas->port;
2044
0
    }
2045
2046
    /*
2047
     * 5) If the path component begins with a slash character ("/"), then
2048
     *    the reference is an absolute-path and we skip to step 7.
2049
     */
2050
0
    if ((ref->path != NULL) && (ref->path[0] == '/')) {
2051
0
  res->path = xmlMemStrdup(ref->path);
2052
0
  goto step_7;
2053
0
    }
2054
2055
2056
    /*
2057
     * 6) If this step is reached, then we are resolving a relative-path
2058
     *    reference.  The relative path needs to be merged with the base
2059
     *    URI's path.  Although there are many ways to do this, we will
2060
     *    describe a simple method using a separate string buffer.
2061
     *
2062
     * Allocate a buffer large enough for the result string.
2063
     */
2064
0
    len = 2; /* extra / and 0 */
2065
0
    if (ref->path != NULL)
2066
0
  len += strlen(ref->path);
2067
0
    if (bas->path != NULL)
2068
0
  len += strlen(bas->path);
2069
0
    res->path = (char *) xmlMallocAtomic(len);
2070
0
    if (res->path == NULL) {
2071
0
        xmlURIErrMemory("resolving URI against base\n");
2072
0
  goto done;
2073
0
    }
2074
0
    res->path[0] = 0;
2075
2076
    /*
2077
     * a) All but the last segment of the base URI's path component is
2078
     *    copied to the buffer.  In other words, any characters after the
2079
     *    last (right-most) slash character, if any, are excluded.
2080
     */
2081
0
    cur = 0;
2082
0
    out = 0;
2083
0
    if (bas->path != NULL) {
2084
0
  while (bas->path[cur] != 0) {
2085
0
      while ((bas->path[cur] != 0) && (bas->path[cur] != '/'))
2086
0
    cur++;
2087
0
      if (bas->path[cur] == 0)
2088
0
    break;
2089
2090
0
      cur++;
2091
0
      while (out < cur) {
2092
0
    res->path[out] = bas->path[out];
2093
0
    out++;
2094
0
      }
2095
0
  }
2096
0
    }
2097
0
    res->path[out] = 0;
2098
2099
    /*
2100
     * b) The reference's path component is appended to the buffer
2101
     *    string.
2102
     */
2103
0
    if (ref->path != NULL && ref->path[0] != 0) {
2104
0
  indx = 0;
2105
  /*
2106
   * Ensure the path includes a '/'
2107
   */
2108
0
  if ((out == 0) && (bas->server != NULL))
2109
0
      res->path[out++] = '/';
2110
0
  while (ref->path[indx] != 0) {
2111
0
      res->path[out++] = ref->path[indx++];
2112
0
  }
2113
0
    }
2114
0
    res->path[out] = 0;
2115
2116
    /*
2117
     * Steps c) to h) are really path normalization steps
2118
     */
2119
0
    xmlNormalizeURIPath(res->path);
2120
2121
0
step_7:
2122
2123
    /*
2124
     * 7) The resulting URI components, including any inherited from the
2125
     *    base URI, are recombined to give the absolute form of the URI
2126
     *    reference.
2127
     */
2128
0
    val = xmlSaveUri(res);
2129
2130
0
done:
2131
0
    if (ref != NULL)
2132
0
  xmlFreeURI(ref);
2133
0
    if (bas != NULL)
2134
0
  xmlFreeURI(bas);
2135
0
    if (res != NULL)
2136
0
  xmlFreeURI(res);
2137
0
    return(val);
2138
0
}
2139
2140
/**
2141
 * xmlBuildRelativeURI:
2142
 * @URI:  the URI reference under consideration
2143
 * @base:  the base value
2144
 *
2145
 * Expresses the URI of the reference in terms relative to the
2146
 * base.  Some examples of this operation include:
2147
 *     base = "http://site1.com/docs/book1.html"
2148
 *        URI input                        URI returned
2149
 *     docs/pic1.gif                    pic1.gif
2150
 *     docs/img/pic1.gif                img/pic1.gif
2151
 *     img/pic1.gif                     ../img/pic1.gif
2152
 *     http://site1.com/docs/pic1.gif   pic1.gif
2153
 *     http://site2.com/docs/pic1.gif   http://site2.com/docs/pic1.gif
2154
 *
2155
 *     base = "docs/book1.html"
2156
 *        URI input                        URI returned
2157
 *     docs/pic1.gif                    pic1.gif
2158
 *     docs/img/pic1.gif                img/pic1.gif
2159
 *     img/pic1.gif                     ../img/pic1.gif
2160
 *     http://site1.com/docs/pic1.gif   http://site1.com/docs/pic1.gif
2161
 *
2162
 *
2163
 * Note: if the URI reference is really weird or complicated, it may be
2164
 *       worthwhile to first convert it into a "nice" one by calling
2165
 *       xmlBuildURI (using 'base') before calling this routine,
2166
 *       since this routine (for reasonable efficiency) assumes URI has
2167
 *       already been through some validation.
2168
 *
2169
 * Returns a new URI string (to be freed by the caller) or NULL in case
2170
 * error.
2171
 */
2172
xmlChar *
2173
xmlBuildRelativeURI (const xmlChar * URI, const xmlChar * base)
2174
0
{
2175
0
    xmlChar *val = NULL;
2176
0
    int ret;
2177
0
    int ix;
2178
0
    int nbslash = 0;
2179
0
    int len;
2180
0
    xmlURIPtr ref = NULL;
2181
0
    xmlURIPtr bas = NULL;
2182
0
    xmlChar *bptr, *uptr, *vptr;
2183
0
    int remove_path = 0;
2184
2185
0
    if ((URI == NULL) || (*URI == 0))
2186
0
  return NULL;
2187
2188
    /*
2189
     * First parse URI into a standard form
2190
     */
2191
0
    ref = xmlCreateURI ();
2192
0
    if (ref == NULL)
2193
0
  return NULL;
2194
    /* If URI not already in "relative" form */
2195
0
    if (URI[0] != '.') {
2196
0
  ret = xmlParseURIReference (ref, (const char *) URI);
2197
0
  if (ret != 0)
2198
0
      goto done;   /* Error in URI, return NULL */
2199
0
    } else
2200
0
  ref->path = (char *)xmlStrdup(URI);
2201
2202
    /*
2203
     * Next parse base into the same standard form
2204
     */
2205
0
    if ((base == NULL) || (*base == 0)) {
2206
0
  val = xmlStrdup (URI);
2207
0
  goto done;
2208
0
    }
2209
0
    bas = xmlCreateURI ();
2210
0
    if (bas == NULL)
2211
0
  goto done;
2212
0
    if (base[0] != '.') {
2213
0
  ret = xmlParseURIReference (bas, (const char *) base);
2214
0
  if (ret != 0)
2215
0
      goto done;   /* Error in base, return NULL */
2216
0
    } else
2217
0
  bas->path = (char *)xmlStrdup(base);
2218
2219
    /*
2220
     * If the scheme / server on the URI differs from the base,
2221
     * just return the URI
2222
     */
2223
0
    if ((ref->scheme != NULL) &&
2224
0
  ((bas->scheme == NULL) ||
2225
0
   (xmlStrcmp ((xmlChar *)bas->scheme, (xmlChar *)ref->scheme)) ||
2226
0
   (xmlStrcmp ((xmlChar *)bas->server, (xmlChar *)ref->server)))) {
2227
0
  val = xmlStrdup (URI);
2228
0
  goto done;
2229
0
    }
2230
0
    if (xmlStrEqual((xmlChar *)bas->path, (xmlChar *)ref->path)) {
2231
0
  val = xmlStrdup(BAD_CAST "");
2232
0
  goto done;
2233
0
    }
2234
0
    if (bas->path == NULL) {
2235
0
  val = xmlStrdup((xmlChar *)ref->path);
2236
0
  goto done;
2237
0
    }
2238
0
    if (ref->path == NULL) {
2239
0
        ref->path = (char *) "/";
2240
0
  remove_path = 1;
2241
0
    }
2242
2243
    /*
2244
     * At this point (at last!) we can compare the two paths
2245
     *
2246
     * First we take care of the special case where either of the
2247
     * two path components may be missing (bug 316224)
2248
     */
2249
0
    bptr = (xmlChar *)bas->path;
2250
0
    {
2251
0
        xmlChar *rptr = (xmlChar *) ref->path;
2252
0
        int pos = 0;
2253
2254
        /*
2255
         * Next we compare the two strings and find where they first differ
2256
         */
2257
0
  if ((*rptr == '.') && (rptr[1] == '/'))
2258
0
            rptr += 2;
2259
0
  if ((*bptr == '.') && (bptr[1] == '/'))
2260
0
            bptr += 2;
2261
0
  else if ((*bptr == '/') && (*rptr != '/'))
2262
0
      bptr++;
2263
0
  while ((bptr[pos] == rptr[pos]) && (bptr[pos] != 0))
2264
0
      pos++;
2265
2266
0
  if (bptr[pos] == rptr[pos]) {
2267
0
      val = xmlStrdup(BAD_CAST "");
2268
0
      goto done;    /* (I can't imagine why anyone would do this) */
2269
0
  }
2270
2271
  /*
2272
   * In URI, "back up" to the last '/' encountered.  This will be the
2273
   * beginning of the "unique" suffix of URI
2274
   */
2275
0
  ix = pos;
2276
0
  for (; ix > 0; ix--) {
2277
0
      if (rptr[ix - 1] == '/')
2278
0
    break;
2279
0
  }
2280
0
  uptr = (xmlChar *)&rptr[ix];
2281
2282
  /*
2283
   * In base, count the number of '/' from the differing point
2284
   */
2285
0
  for (; bptr[ix] != 0; ix++) {
2286
0
      if (bptr[ix] == '/')
2287
0
    nbslash++;
2288
0
  }
2289
2290
  /*
2291
   * e.g: URI="foo/" base="foo/bar" -> "./"
2292
   */
2293
0
  if (nbslash == 0 && !uptr[0]) {
2294
0
      val = xmlStrdup(BAD_CAST "./");
2295
0
      goto done;
2296
0
  }
2297
2298
0
  len = xmlStrlen (uptr) + 1;
2299
0
    }
2300
2301
0
    if (nbslash == 0) {
2302
0
  if (uptr != NULL)
2303
      /* exception characters from xmlSaveUri */
2304
0
      val = xmlURIEscapeStr(uptr, BAD_CAST "/;&=+$,");
2305
0
  goto done;
2306
0
    }
2307
2308
    /*
2309
     * Allocate just enough space for the returned string -
2310
     * length of the remainder of the URI, plus enough space
2311
     * for the "../" groups, plus one for the terminator
2312
     */
2313
0
    val = (xmlChar *) xmlMalloc (len + 3 * nbslash);
2314
0
    if (val == NULL) {
2315
0
        xmlURIErrMemory("building relative URI\n");
2316
0
  goto done;
2317
0
    }
2318
0
    vptr = val;
2319
    /*
2320
     * Put in as many "../" as needed
2321
     */
2322
0
    for (; nbslash>0; nbslash--) {
2323
0
  *vptr++ = '.';
2324
0
  *vptr++ = '.';
2325
0
  *vptr++ = '/';
2326
0
    }
2327
    /*
2328
     * Finish up with the end of the URI
2329
     */
2330
0
    if (uptr != NULL) {
2331
0
        if ((vptr > val) && (len > 0) &&
2332
0
      (uptr[0] == '/') && (vptr[-1] == '/')) {
2333
0
      memcpy (vptr, uptr + 1, len - 1);
2334
0
      vptr[len - 2] = 0;
2335
0
  } else {
2336
0
      memcpy (vptr, uptr, len);
2337
0
      vptr[len - 1] = 0;
2338
0
  }
2339
0
    } else {
2340
0
  vptr[len - 1] = 0;
2341
0
    }
2342
2343
    /* escape the freshly-built path */
2344
0
    vptr = val;
2345
  /* exception characters from xmlSaveUri */
2346
0
    val = xmlURIEscapeStr(vptr, BAD_CAST "/;&=+$,");
2347
0
    xmlFree(vptr);
2348
2349
0
done:
2350
    /*
2351
     * Free the working variables
2352
     */
2353
0
    if (remove_path != 0)
2354
0
        ref->path = NULL;
2355
0
    if (ref != NULL)
2356
0
  xmlFreeURI (ref);
2357
0
    if (bas != NULL)
2358
0
  xmlFreeURI (bas);
2359
2360
0
    return val;
2361
0
}
2362
2363
/**
2364
 * xmlCanonicPath:
2365
 * @path:  the resource locator in a filesystem notation
2366
 *
2367
 * Constructs a canonic path from the specified path.
2368
 *
2369
 * Returns a new canonic path, or a duplicate of the path parameter if the
2370
 * construction fails. The caller is responsible for freeing the memory occupied
2371
 * by the returned string. If there is insufficient memory available, or the
2372
 * argument is NULL, the function returns NULL.
2373
 */
2374
#define IS_WINDOWS_PATH(p)          \
2375
  ((p != NULL) &&           \
2376
   (((p[0] >= 'a') && (p[0] <= 'z')) ||     \
2377
    ((p[0] >= 'A') && (p[0] <= 'Z'))) &&      \
2378
   (p[1] == ':') && ((p[2] == '/') || (p[2] == '\\')))
2379
xmlChar *
2380
xmlCanonicPath(const xmlChar *path)
2381
0
{
2382
/*
2383
 * For Windows implementations, additional work needs to be done to
2384
 * replace backslashes in pathnames with "forward slashes"
2385
 */
2386
#if defined(_WIN32)
2387
    int len = 0;
2388
    char *p = NULL;
2389
#endif
2390
0
    xmlURIPtr uri;
2391
0
    xmlChar *ret;
2392
0
    const xmlChar *absuri;
2393
2394
0
    if (path == NULL)
2395
0
  return(NULL);
2396
2397
#if defined(_WIN32)
2398
    /*
2399
     * We must not change the backslashes to slashes if the the path
2400
     * starts with \\?\
2401
     * Those paths can be up to 32k characters long.
2402
     * Was added specifically for OpenOffice, those paths can't be converted
2403
     * to URIs anyway.
2404
     */
2405
    if ((path[0] == '\\') && (path[1] == '\\') && (path[2] == '?') &&
2406
        (path[3] == '\\') )
2407
  return xmlStrdup((const xmlChar *) path);
2408
#endif
2409
2410
  /* sanitize filename starting with // so it can be used as URI */
2411
0
    if ((path[0] == '/') && (path[1] == '/') && (path[2] != '/'))
2412
0
        path++;
2413
2414
0
    if ((uri = xmlParseURI((const char *) path)) != NULL) {
2415
0
  xmlFreeURI(uri);
2416
0
  return xmlStrdup(path);
2417
0
    }
2418
2419
    /* Check if this is an "absolute uri" */
2420
0
    absuri = xmlStrstr(path, BAD_CAST "://");
2421
0
    if (absuri != NULL) {
2422
0
        int l, j;
2423
0
  unsigned char c;
2424
0
  xmlChar *escURI;
2425
2426
        /*
2427
   * this looks like an URI where some parts have not been
2428
   * escaped leading to a parsing problem.  Check that the first
2429
   * part matches a protocol.
2430
   */
2431
0
  l = absuri - path;
2432
  /* Bypass if first part (part before the '://') is > 20 chars */
2433
0
  if ((l <= 0) || (l > 20))
2434
0
      goto path_processing;
2435
  /* Bypass if any non-alpha characters are present in first part */
2436
0
  for (j = 0;j < l;j++) {
2437
0
      c = path[j];
2438
0
      if (!(((c >= 'a') && (c <= 'z')) || ((c >= 'A') && (c <= 'Z'))))
2439
0
          goto path_processing;
2440
0
  }
2441
2442
  /* Escape all except the characters specified in the supplied path */
2443
0
        escURI = xmlURIEscapeStr(path, BAD_CAST ":/?_.#&;=");
2444
0
  if (escURI != NULL) {
2445
      /* Try parsing the escaped path */
2446
0
      uri = xmlParseURI((const char *) escURI);
2447
      /* If successful, return the escaped string */
2448
0
      if (uri != NULL) {
2449
0
          xmlFreeURI(uri);
2450
0
    return escURI;
2451
0
      }
2452
0
            xmlFree(escURI);
2453
0
  }
2454
0
    }
2455
2456
0
path_processing:
2457
/* For Windows implementations, replace backslashes with 'forward slashes' */
2458
#if defined(_WIN32)
2459
    /*
2460
     * Create a URI structure
2461
     */
2462
    uri = xmlCreateURI();
2463
    if (uri == NULL) {    /* Guard against 'out of memory' */
2464
        return(NULL);
2465
    }
2466
2467
    len = xmlStrlen(path);
2468
    if ((len > 2) && IS_WINDOWS_PATH(path)) {
2469
        /* make the scheme 'file' */
2470
  uri->scheme = (char *) xmlStrdup(BAD_CAST "file");
2471
  /* allocate space for leading '/' + path + string terminator */
2472
  uri->path = xmlMallocAtomic(len + 2);
2473
  if (uri->path == NULL) {
2474
      xmlFreeURI(uri);  /* Guard against 'out of memory' */
2475
      return(NULL);
2476
  }
2477
  /* Put in leading '/' plus path */
2478
  uri->path[0] = '/';
2479
  p = uri->path + 1;
2480
  strncpy(p, (char *) path, len + 1);
2481
    } else {
2482
  uri->path = (char *) xmlStrdup(path);
2483
  if (uri->path == NULL) {
2484
      xmlFreeURI(uri);
2485
      return(NULL);
2486
  }
2487
  p = uri->path;
2488
    }
2489
    /* Now change all occurrences of '\' to '/' */
2490
    while (*p != '\0') {
2491
  if (*p == '\\')
2492
      *p = '/';
2493
  p++;
2494
    }
2495
2496
    if (uri->scheme == NULL) {
2497
  ret = xmlStrdup((const xmlChar *) uri->path);
2498
    } else {
2499
  ret = xmlSaveUri(uri);
2500
    }
2501
2502
    xmlFreeURI(uri);
2503
#else
2504
0
    ret = xmlStrdup((const xmlChar *) path);
2505
0
#endif
2506
0
    return(ret);
2507
0
}
2508
2509
/**
2510
 * xmlPathToURI:
2511
 * @path:  the resource locator in a filesystem notation
2512
 *
2513
 * Constructs an URI expressing the existing path
2514
 *
2515
 * Returns a new URI, or a duplicate of the path parameter if the
2516
 * construction fails. The caller is responsible for freeing the memory
2517
 * occupied by the returned string. If there is insufficient memory available,
2518
 * or the argument is NULL, the function returns NULL.
2519
 */
2520
xmlChar *
2521
xmlPathToURI(const xmlChar *path)
2522
0
{
2523
0
    xmlURIPtr uri;
2524
0
    xmlURI temp;
2525
0
    xmlChar *ret, *cal;
2526
2527
0
    if (path == NULL)
2528
0
        return(NULL);
2529
2530
0
    if ((uri = xmlParseURI((const char *) path)) != NULL) {
2531
0
  xmlFreeURI(uri);
2532
0
  return xmlStrdup(path);
2533
0
    }
2534
0
    cal = xmlCanonicPath(path);
2535
0
    if (cal == NULL)
2536
0
        return(NULL);
2537
#if defined(_WIN32)
2538
    /* xmlCanonicPath can return an URI on Windows (is that the intended behaviour?)
2539
       If 'cal' is a valid URI already then we are done here, as continuing would make
2540
       it invalid. */
2541
    if ((uri = xmlParseURI((const char *) cal)) != NULL) {
2542
  xmlFreeURI(uri);
2543
  return cal;
2544
    }
2545
    /* 'cal' can contain a relative path with backslashes. If that is processed
2546
       by xmlSaveURI, they will be escaped and the external entity loader machinery
2547
       will fail. So convert them to slashes. Misuse 'ret' for walking. */
2548
    ret = cal;
2549
    while (*ret != '\0') {
2550
  if (*ret == '\\')
2551
      *ret = '/';
2552
  ret++;
2553
    }
2554
#endif
2555
0
    memset(&temp, 0, sizeof(temp));
2556
0
    temp.path = (char *) cal;
2557
0
    ret = xmlSaveUri(&temp);
2558
0
    xmlFree(cal);
2559
0
    return(ret);
2560
0
}