Coverage Report

Created: 2023-06-07 06:14

/src/libxml2/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
#include "private/error.h"
23
24
/**
25
 * MAX_URI_LENGTH:
26
 *
27
 * The definition of the URI regexp in the above RFC has no size limit
28
 * In practice they are usually relatively short except for the
29
 * data URI scheme as defined in RFC 2397. Even for data URI the usual
30
 * maximum size before hitting random practical limits is around 64 KB
31
 * and 4KB is usually a maximum admitted limit for proper operations.
32
 * The value below is more a security limit than anything else and
33
 * really should never be hit by 'normal' operations
34
 * Set to 1 MByte in 2012, this is only enforced on output
35
 */
36
2.79k
#define MAX_URI_LENGTH 1024 * 1024
37
38
29.7k
#define PORT_EMPTY           0
39
0
#define PORT_EMPTY_SERVER   -1
40
41
static void
42
xmlURIErrMemory(const char *extra)
43
121
{
44
121
    if (extra)
45
121
        __xmlRaiseError(NULL, NULL, NULL,
46
121
                        NULL, NULL, XML_FROM_URI,
47
121
                        XML_ERR_NO_MEMORY, XML_ERR_FATAL, NULL, 0,
48
121
                        extra, NULL, NULL, 0, 0,
49
121
                        "Memory allocation failed : %s\n", extra);
50
0
    else
51
0
        __xmlRaiseError(NULL, NULL, NULL,
52
0
                        NULL, NULL, XML_FROM_URI,
53
0
                        XML_ERR_NO_MEMORY, XML_ERR_FATAL, NULL, 0,
54
0
                        NULL, NULL, NULL, 0, 0,
55
0
                        "Memory allocation failed\n");
56
121
}
57
58
static void xmlCleanURI(xmlURIPtr uri);
59
60
/*
61
 * Old rule from 2396 used in legacy handling code
62
 * alpha    = lowalpha | upalpha
63
 */
64
192M
#define IS_ALPHA(x) (IS_LOWALPHA(x) || IS_UPALPHA(x))
65
66
67
/*
68
 * lowalpha = "a" | "b" | "c" | "d" | "e" | "f" | "g" | "h" | "i" | "j" |
69
 *            "k" | "l" | "m" | "n" | "o" | "p" | "q" | "r" | "s" | "t" |
70
 *            "u" | "v" | "w" | "x" | "y" | "z"
71
 */
72
73
192M
#define IS_LOWALPHA(x) (((x) >= 'a') && ((x) <= 'z'))
74
75
/*
76
 * upalpha = "A" | "B" | "C" | "D" | "E" | "F" | "G" | "H" | "I" | "J" |
77
 *           "K" | "L" | "M" | "N" | "O" | "P" | "Q" | "R" | "S" | "T" |
78
 *           "U" | "V" | "W" | "X" | "Y" | "Z"
79
 */
80
96.2M
#define IS_UPALPHA(x) (((x) >= 'A') && ((x) <= 'Z'))
81
82
#ifdef IS_DIGIT
83
#undef IS_DIGIT
84
#endif
85
/*
86
 * digit = "0" | "1" | "2" | "3" | "4" | "5" | "6" | "7" | "8" | "9"
87
 */
88
31.8M
#define IS_DIGIT(x) (((x) >= '0') && ((x) <= '9'))
89
90
/*
91
 * alphanum = alpha | digit
92
 */
93
94
192M
#define IS_ALPHANUM(x) (IS_ALPHA(x) || IS_DIGIT(x))
95
96
/*
97
 * mark = "-" | "_" | "." | "!" | "~" | "*" | "'" | "(" | ")"
98
 */
99
100
31.8M
#define IS_MARK(x) (((x) == '-') || ((x) == '_') || ((x) == '.') ||     \
101
31.8M
    ((x) == '!') || ((x) == '~') || ((x) == '*') || ((x) == '\'') ||    \
102
31.8M
    ((x) == '(') || ((x) == ')'))
103
104
/*
105
 * unwise = "{" | "}" | "|" | "\" | "^" | "`"
106
 */
107
108
#define IS_UNWISE(p)                                                    \
109
0
      (((*(p) == '{')) || ((*(p) == '}')) || ((*(p) == '|')) ||         \
110
0
       ((*(p) == '\\')) || ((*(p) == '^')) || ((*(p) == '[')) ||        \
111
0
       ((*(p) == ']')) || ((*(p) == '`')))
112
/*
113
 * reserved = ";" | "/" | "?" | ":" | "@" | "&" | "=" | "+" | "$" | "," |
114
 *            "[" | "]"
115
 */
116
117
106
#define IS_RESERVED(x) (((x) == ';') || ((x) == '/') || ((x) == '?') || \
118
106
        ((x) == ':') || ((x) == '@') || ((x) == '&') || ((x) == '=') || \
119
106
        ((x) == '+') || ((x) == '$') || ((x) == ',') || ((x) == '[') || \
120
106
        ((x) == ']'))
121
122
/*
123
 * unreserved = alphanum | mark
124
 */
125
126
96.4M
#define IS_UNRESERVED(x) (IS_ALPHANUM(x) || IS_MARK(x))
127
128
/*
129
 * Skip to next pointer char, handle escaped sequences
130
 */
131
132
98.2M
#define NEXT(p) ((*p == '%')? p += 3 : p++)
133
134
/*
135
 * Productions from the spec.
136
 *
137
 *    authority     = server | reg_name
138
 *    reg_name      = 1*( unreserved | escaped | "$" | "," |
139
 *                        ";" | ":" | "@" | "&" | "=" | "+" )
140
 *
141
 * path          = [ abs_path | opaque_part ]
142
 */
143
144
7.19k
#define STRNDUP(s, n) (char *) xmlStrndup((const xmlChar *)(s), (n))
145
146
/************************************************************************
147
 *                  *
148
 *                         RFC 3986 parser        *
149
 *                  *
150
 ************************************************************************/
151
152
3.08M
#define ISA_DIGIT(p) ((*(p) >= '0') && (*(p) <= '9'))
153
104M
#define ISA_ALPHA(p) (((*(p) >= 'a') && (*(p) <= 'z')) ||   \
154
104M
                      ((*(p) >= 'A') && (*(p) <= 'Z')))
155
#define ISA_HEXDIG(p)             \
156
4.68k
       (ISA_DIGIT(p) || ((*(p) >= 'a') && (*(p) <= 'f')) ||   \
157
4.68k
        ((*(p) >= 'A') && (*(p) <= 'F')))
158
159
/*
160
 *    sub-delims    = "!" / "$" / "&" / "'" / "(" / ")"
161
 *                     / "*" / "+" / "," / ";" / "="
162
 */
163
#define ISA_SUB_DELIM(p)            \
164
67.2M
      (((*(p) == '!')) || ((*(p) == '$')) || ((*(p) == '&')) ||   \
165
106k
       ((*(p) == '(')) || ((*(p) == ')')) || ((*(p) == '*')) ||   \
166
106k
       ((*(p) == '+')) || ((*(p) == ',')) || ((*(p) == ';')) ||   \
167
106k
       ((*(p) == '=')) || ((*(p) == '\'')))
168
169
/*
170
 *    gen-delims    = ":" / "/" / "?" / "#" / "[" / "]" / "@"
171
 */
172
#define ISA_GEN_DELIM(p)            \
173
      (((*(p) == ':')) || ((*(p) == '/')) || ((*(p) == '?')) ||         \
174
       ((*(p) == '#')) || ((*(p) == '[')) || ((*(p) == ']')) ||         \
175
       ((*(p) == '@')))
176
177
/*
178
 *    reserved      = gen-delims / sub-delims
179
 */
180
#define ISA_RESERVED(p) (ISA_GEN_DELIM(p) || (ISA_SUB_DELIM(p)))
181
182
/*
183
 *    unreserved    = ALPHA / DIGIT / "-" / "." / "_" / "~"
184
 */
185
#define ISA_UNRESERVED(p)           \
186
196M
      ((ISA_ALPHA(p)) || (ISA_DIGIT(p)) || ((*(p) == '-')) ||   \
187
98.3M
       ((*(p) == '.')) || ((*(p) == '_')) || ((*(p) == '~')))
188
189
/*
190
 *    pct-encoded   = "%" HEXDIG HEXDIG
191
 */
192
#define ISA_PCT_ENCODED(p)            \
193
98.4M
     ((*(p) == '%') && (ISA_HEXDIG(p + 1)) && (ISA_HEXDIG(p + 2)))
194
195
/*
196
 *    pchar         = unreserved / pct-encoded / sub-delims / ":" / "@"
197
 */
198
#define ISA_PCHAR(p)              \
199
49.1M
     (ISA_UNRESERVED(p) || ISA_PCT_ENCODED(p) || ISA_SUB_DELIM(p) ||  \
200
36.3M
      ((*(p) == ':')) || ((*(p) == '@')))
201
202
/**
203
 * xmlParse3986Scheme:
204
 * @uri:  pointer to an URI structure
205
 * @str:  pointer to the string to analyze
206
 *
207
 * Parse an URI scheme
208
 *
209
 * ALPHA *( ALPHA / DIGIT / "+" / "-" / "." )
210
 *
211
 * Returns 0 or the error code
212
 */
213
static int
214
29.3k
xmlParse3986Scheme(xmlURIPtr uri, const char **str) {
215
29.3k
    const char *cur;
216
217
29.3k
    if (str == NULL)
218
0
  return(-1);
219
220
29.3k
    cur = *str;
221
29.3k
    if (!ISA_ALPHA(cur))
222
23.1k
  return(2);
223
6.23k
    cur++;
224
2.87M
    while (ISA_ALPHA(cur) || ISA_DIGIT(cur) ||
225
2.87M
           (*cur == '+') || (*cur == '-') || (*cur == '.')) cur++;
226
6.23k
    if (uri != NULL) {
227
6.23k
  if (uri->scheme != NULL) xmlFree(uri->scheme);
228
6.23k
  uri->scheme = STRNDUP(*str, cur - *str);
229
6.23k
    }
230
6.23k
    *str = cur;
231
6.23k
    return(0);
232
29.3k
}
233
234
/**
235
 * xmlParse3986Fragment:
236
 * @uri:  pointer to an URI structure
237
 * @str:  pointer to the string to analyze
238
 *
239
 * Parse the query part of an URI
240
 *
241
 * fragment      = *( pchar / "/" / "?" )
242
 * NOTE: the strict syntax as defined by 3986 does not allow '[' and ']'
243
 *       in the fragment identifier but this is used very broadly for
244
 *       xpointer scheme selection, so we are allowing it here to not break
245
 *       for example all the DocBook processing chains.
246
 *
247
 * Returns 0 or the error code
248
 */
249
static int
250
xmlParse3986Fragment(xmlURIPtr uri, const char **str)
251
958
{
252
958
    const char *cur;
253
254
958
    if (str == NULL)
255
0
        return (-1);
256
257
958
    cur = *str;
258
259
9.74M
    while ((ISA_PCHAR(cur)) || (*cur == '/') || (*cur == '?') ||
260
9.74M
           (*cur == '[') || (*cur == ']') ||
261
9.74M
           ((uri != NULL) && (uri->cleanup & 1) && (IS_UNWISE(cur))))
262
9.74M
        NEXT(cur);
263
958
    if (uri != NULL) {
264
958
        if (uri->fragment != NULL)
265
0
            xmlFree(uri->fragment);
266
958
  if (uri->cleanup & 2)
267
0
      uri->fragment = STRNDUP(*str, cur - *str);
268
958
  else
269
958
      uri->fragment = xmlURIUnescapeString(*str, cur - *str, NULL);
270
958
    }
271
958
    *str = cur;
272
958
    return (0);
273
958
}
274
275
/**
276
 * xmlParse3986Query:
277
 * @uri:  pointer to an URI structure
278
 * @str:  pointer to the string to analyze
279
 *
280
 * Parse the query part of an URI
281
 *
282
 * query = *uric
283
 *
284
 * Returns 0 or the error code
285
 */
286
static int
287
xmlParse3986Query(xmlURIPtr uri, const char **str)
288
958
{
289
958
    const char *cur;
290
291
958
    if (str == NULL)
292
0
        return (-1);
293
294
958
    cur = *str;
295
296
13.7M
    while ((ISA_PCHAR(cur)) || (*cur == '/') || (*cur == '?') ||
297
13.7M
           ((uri != NULL) && (uri->cleanup & 1) && (IS_UNWISE(cur))))
298
13.7M
        NEXT(cur);
299
958
    if (uri != NULL) {
300
958
        if (uri->query != NULL)
301
0
            xmlFree(uri->query);
302
958
  if (uri->cleanup & 2)
303
0
      uri->query = STRNDUP(*str, cur - *str);
304
958
  else
305
958
      uri->query = xmlURIUnescapeString(*str, cur - *str, NULL);
306
307
  /* Save the raw bytes of the query as well.
308
   * See: http://mail.gnome.org/archives/xml/2007-April/thread.html#00114
309
   */
310
958
  if (uri->query_raw != NULL)
311
0
      xmlFree (uri->query_raw);
312
958
  uri->query_raw = STRNDUP (*str, cur - *str);
313
958
    }
314
958
    *str = cur;
315
958
    return (0);
316
958
}
317
318
/**
319
 * xmlParse3986Port:
320
 * @uri:  pointer to an URI structure
321
 * @str:  the string to analyze
322
 *
323
 * Parse a port part and fills in the appropriate fields
324
 * of the @uri structure
325
 *
326
 * port          = *DIGIT
327
 *
328
 * Returns 0 or the error code
329
 */
330
static int
331
xmlParse3986Port(xmlURIPtr uri, const char **str)
332
16
{
333
16
    const char *cur = *str;
334
16
    int port = 0;
335
336
16
    if (ISA_DIGIT(cur)) {
337
50
  while (ISA_DIGIT(cur)) {
338
40
            int digit = *cur - '0';
339
340
40
            if (port > INT_MAX / 10)
341
0
                return(1);
342
40
            port *= 10;
343
40
            if (port > INT_MAX - digit)
344
0
                return(1);
345
40
      port += digit;
346
347
40
      cur++;
348
40
  }
349
10
  if (uri != NULL)
350
10
      uri->port = port;
351
10
  *str = cur;
352
10
  return(0);
353
10
    }
354
6
    return(1);
355
16
}
356
357
/**
358
 * xmlParse3986Userinfo:
359
 * @uri:  pointer to an URI structure
360
 * @str:  the string to analyze
361
 *
362
 * Parse an user information part and fills in the appropriate fields
363
 * of the @uri structure
364
 *
365
 * userinfo      = *( unreserved / pct-encoded / sub-delims / ":" )
366
 *
367
 * Returns 0 or the error code
368
 */
369
static int
370
xmlParse3986Userinfo(xmlURIPtr uri, const char **str)
371
5.82k
{
372
5.82k
    const char *cur;
373
374
5.82k
    cur = *str;
375
30.8M
    while (ISA_UNRESERVED(cur) || ISA_PCT_ENCODED(cur) ||
376
30.8M
           ISA_SUB_DELIM(cur) || (*cur == ':'))
377
30.7M
  NEXT(cur);
378
5.82k
    if (*cur == '@') {
379
4.35k
  if (uri != NULL) {
380
4.35k
      if (uri->user != NULL) xmlFree(uri->user);
381
4.35k
      if (uri->cleanup & 2)
382
0
    uri->user = STRNDUP(*str, cur - *str);
383
4.35k
      else
384
4.35k
    uri->user = xmlURIUnescapeString(*str, cur - *str, NULL);
385
4.35k
  }
386
4.35k
  *str = cur;
387
4.35k
  return(0);
388
4.35k
    }
389
1.46k
    return(1);
390
5.82k
}
391
392
/**
393
 * xmlParse3986DecOctet:
394
 * @str:  the string to analyze
395
 *
396
 *    dec-octet     = DIGIT                 ; 0-9
397
 *                  / %x31-39 DIGIT         ; 10-99
398
 *                  / "1" 2DIGIT            ; 100-199
399
 *                  / "2" %x30-34 DIGIT     ; 200-249
400
 *                  / "25" %x30-35          ; 250-255
401
 *
402
 * Skip a dec-octet.
403
 *
404
 * Returns 0 if found and skipped, 1 otherwise
405
 */
406
static int
407
4.00k
xmlParse3986DecOctet(const char **str) {
408
4.00k
    const char *cur = *str;
409
410
4.00k
    if (!(ISA_DIGIT(cur)))
411
0
        return(1);
412
4.00k
    if (!ISA_DIGIT(cur+1))
413
3.99k
  cur++;
414
7
    else if ((*cur != '0') && (ISA_DIGIT(cur + 1)) && (!ISA_DIGIT(cur+2)))
415
0
  cur += 2;
416
7
    else if ((*cur == '1') && (ISA_DIGIT(cur + 1)) && (ISA_DIGIT(cur + 2)))
417
1
  cur += 3;
418
6
    else if ((*cur == '2') && (*(cur + 1) >= '0') &&
419
6
       (*(cur + 1) <= '4') && (ISA_DIGIT(cur + 2)))
420
0
  cur += 3;
421
6
    else if ((*cur == '2') && (*(cur + 1) == '5') &&
422
6
       (*(cur + 2) >= '0') && (*(cur + 1) <= '5'))
423
0
  cur += 3;
424
6
    else
425
6
        return(1);
426
3.99k
    *str = cur;
427
3.99k
    return(0);
428
4.00k
}
429
/**
430
 * xmlParse3986Host:
431
 * @uri:  pointer to an URI structure
432
 * @str:  the string to analyze
433
 *
434
 * Parse an host part and fills in the appropriate fields
435
 * of the @uri structure
436
 *
437
 * host          = IP-literal / IPv4address / reg-name
438
 * IP-literal    = "[" ( IPv6address / IPvFuture  ) "]"
439
 * IPv4address   = dec-octet "." dec-octet "." dec-octet "." dec-octet
440
 * reg-name      = *( unreserved / pct-encoded / sub-delims )
441
 *
442
 * Returns 0 or the error code
443
 */
444
static int
445
xmlParse3986Host(xmlURIPtr uri, const char **str)
446
5.82k
{
447
5.82k
    const char *cur = *str;
448
5.82k
    const char *host;
449
450
5.82k
    host = cur;
451
    /*
452
     * IPv6 and future addressing scheme are enclosed between brackets
453
     */
454
5.82k
    if (*cur == '[') {
455
189
        cur++;
456
43.8M
  while ((*cur != ']') && (*cur != 0))
457
43.8M
      cur++;
458
189
  if (*cur != ']')
459
94
      return(1);
460
95
  cur++;
461
95
  goto found;
462
189
    }
463
    /*
464
     * try to parse an IPv4
465
     */
466
5.63k
    if (ISA_DIGIT(cur)) {
467
4.00k
        if (xmlParse3986DecOctet(&cur) != 0)
468
6
      goto not_ipv4;
469
3.99k
  if (*cur != '.')
470
3.99k
      goto not_ipv4;
471
0
  cur++;
472
0
        if (xmlParse3986DecOctet(&cur) != 0)
473
0
      goto not_ipv4;
474
0
  if (*cur != '.')
475
0
      goto not_ipv4;
476
0
        if (xmlParse3986DecOctet(&cur) != 0)
477
0
      goto not_ipv4;
478
0
  if (*cur != '.')
479
0
      goto not_ipv4;
480
0
        if (xmlParse3986DecOctet(&cur) != 0)
481
0
      goto not_ipv4;
482
0
  goto found;
483
4.00k
not_ipv4:
484
4.00k
        cur = *str;
485
4.00k
    }
486
    /*
487
     * then this should be a hostname which can be empty
488
     */
489
31.1M
    while (ISA_UNRESERVED(cur) || ISA_PCT_ENCODED(cur) || ISA_SUB_DELIM(cur))
490
31.1M
        NEXT(cur);
491
5.72k
found:
492
5.72k
    if (uri != NULL) {
493
5.72k
  if (uri->authority != NULL) xmlFree(uri->authority);
494
5.72k
  uri->authority = NULL;
495
5.72k
  if (uri->server != NULL) xmlFree(uri->server);
496
5.72k
  if (cur != host) {
497
4.76k
      if (uri->cleanup & 2)
498
0
    uri->server = STRNDUP(host, cur - host);
499
4.76k
      else
500
4.76k
    uri->server = xmlURIUnescapeString(host, cur - host, NULL);
501
4.76k
  } else
502
964
      uri->server = NULL;
503
5.72k
    }
504
5.72k
    *str = cur;
505
5.72k
    return(0);
506
5.63k
}
507
508
/**
509
 * xmlParse3986Authority:
510
 * @uri:  pointer to an URI structure
511
 * @str:  the string to analyze
512
 *
513
 * Parse an authority part and fills in the appropriate fields
514
 * of the @uri structure
515
 *
516
 * authority     = [ userinfo "@" ] host [ ":" port ]
517
 *
518
 * Returns 0 or the error code
519
 */
520
static int
521
xmlParse3986Authority(xmlURIPtr uri, const char **str)
522
5.82k
{
523
5.82k
    const char *cur;
524
5.82k
    int ret;
525
526
5.82k
    cur = *str;
527
    /*
528
     * try to parse an userinfo and check for the trailing @
529
     */
530
5.82k
    ret = xmlParse3986Userinfo(uri, &cur);
531
5.82k
    if ((ret != 0) || (*cur != '@'))
532
1.46k
        cur = *str;
533
4.35k
    else
534
4.35k
        cur++;
535
5.82k
    ret = xmlParse3986Host(uri, &cur);
536
5.82k
    if (ret != 0) return(ret);
537
5.72k
    if (*cur == ':') {
538
16
        cur++;
539
16
        ret = xmlParse3986Port(uri, &cur);
540
16
  if (ret != 0) return(ret);
541
16
    }
542
5.72k
    *str = cur;
543
5.72k
    return(0);
544
5.72k
}
545
546
/**
547
 * xmlParse3986Segment:
548
 * @str:  the string to analyze
549
 * @forbid: an optional forbidden character
550
 * @empty: allow an empty segment
551
 *
552
 * Parse a segment and fills in the appropriate fields
553
 * of the @uri structure
554
 *
555
 * segment       = *pchar
556
 * segment-nz    = 1*pchar
557
 * segment-nz-nc = 1*( unreserved / pct-encoded / sub-delims / "@" )
558
 *               ; non-zero-length segment without any colon ":"
559
 *
560
 * Returns 0 or the error code
561
 */
562
static int
563
xmlParse3986Segment(const char **str, char forbid, int empty)
564
38.8k
{
565
38.8k
    const char *cur;
566
567
38.8k
    cur = *str;
568
38.8k
    if (!ISA_PCHAR(cur)) {
569
11.2k
        if (empty)
570
11.2k
      return(0);
571
0
  return(1);
572
11.2k
    }
573
12.7M
    while (ISA_PCHAR(cur) && (*cur != forbid))
574
12.7M
        NEXT(cur);
575
27.6k
    *str = cur;
576
27.6k
    return (0);
577
38.8k
}
578
579
/**
580
 * xmlParse3986PathAbEmpty:
581
 * @uri:  pointer to an URI structure
582
 * @str:  the string to analyze
583
 *
584
 * Parse an path absolute or empty and fills in the appropriate fields
585
 * of the @uri structure
586
 *
587
 * path-abempty  = *( "/" segment )
588
 *
589
 * Returns 0 or the error code
590
 */
591
static int
592
xmlParse3986PathAbEmpty(xmlURIPtr uri, const char **str)
593
5.72k
{
594
5.72k
    const char *cur;
595
5.72k
    int ret;
596
597
5.72k
    cur = *str;
598
599
15.4k
    while (*cur == '/') {
600
9.72k
        cur++;
601
9.72k
  ret = xmlParse3986Segment(&cur, 0, 1);
602
9.72k
  if (ret != 0) return(ret);
603
9.72k
    }
604
5.72k
    if (uri != NULL) {
605
5.72k
  if (uri->path != NULL) xmlFree(uri->path);
606
5.72k
        if (*str != cur) {
607
4.31k
            if (uri->cleanup & 2)
608
0
                uri->path = STRNDUP(*str, cur - *str);
609
4.31k
            else
610
4.31k
                uri->path = xmlURIUnescapeString(*str, cur - *str, NULL);
611
4.31k
        } else {
612
1.41k
            uri->path = NULL;
613
1.41k
        }
614
5.72k
    }
615
5.72k
    *str = cur;
616
5.72k
    return (0);
617
5.72k
}
618
619
/**
620
 * xmlParse3986PathAbsolute:
621
 * @uri:  pointer to an URI structure
622
 * @str:  the string to analyze
623
 *
624
 * Parse an path absolute and fills in the appropriate fields
625
 * of the @uri structure
626
 *
627
 * path-absolute = "/" [ segment-nz *( "/" segment ) ]
628
 *
629
 * Returns 0 or the error code
630
 */
631
static int
632
xmlParse3986PathAbsolute(xmlURIPtr uri, const char **str)
633
51
{
634
51
    const char *cur;
635
51
    int ret;
636
637
51
    cur = *str;
638
639
51
    if (*cur != '/')
640
0
        return(1);
641
51
    cur++;
642
51
    ret = xmlParse3986Segment(&cur, 0, 0);
643
51
    if (ret == 0) {
644
113
  while (*cur == '/') {
645
62
      cur++;
646
62
      ret = xmlParse3986Segment(&cur, 0, 1);
647
62
      if (ret != 0) return(ret);
648
62
  }
649
51
    }
650
51
    if (uri != NULL) {
651
51
  if (uri->path != NULL) xmlFree(uri->path);
652
51
        if (cur != *str) {
653
51
            if (uri->cleanup & 2)
654
0
                uri->path = STRNDUP(*str, cur - *str);
655
51
            else
656
51
                uri->path = xmlURIUnescapeString(*str, cur - *str, NULL);
657
51
        } else {
658
0
            uri->path = NULL;
659
0
        }
660
51
    }
661
51
    *str = cur;
662
51
    return (0);
663
51
}
664
665
/**
666
 * xmlParse3986PathRootless:
667
 * @uri:  pointer to an URI structure
668
 * @str:  the string to analyze
669
 *
670
 * Parse an path without root and fills in the appropriate fields
671
 * of the @uri structure
672
 *
673
 * path-rootless = segment-nz *( "/" segment )
674
 *
675
 * Returns 0 or the error code
676
 */
677
static int
678
xmlParse3986PathRootless(xmlURIPtr uri, const char **str)
679
1.03k
{
680
1.03k
    const char *cur;
681
1.03k
    int ret;
682
683
1.03k
    cur = *str;
684
685
1.03k
    ret = xmlParse3986Segment(&cur, 0, 0);
686
1.03k
    if (ret != 0) return(ret);
687
1.03k
    while (*cur == '/') {
688
0
        cur++;
689
0
  ret = xmlParse3986Segment(&cur, 0, 1);
690
0
  if (ret != 0) return(ret);
691
0
    }
692
1.03k
    if (uri != NULL) {
693
1.03k
  if (uri->path != NULL) xmlFree(uri->path);
694
1.03k
        if (cur != *str) {
695
1.03k
            if (uri->cleanup & 2)
696
0
                uri->path = STRNDUP(*str, cur - *str);
697
1.03k
            else
698
1.03k
                uri->path = xmlURIUnescapeString(*str, cur - *str, NULL);
699
1.03k
        } else {
700
0
            uri->path = NULL;
701
0
        }
702
1.03k
    }
703
1.03k
    *str = cur;
704
1.03k
    return (0);
705
1.03k
}
706
707
/**
708
 * xmlParse3986PathNoScheme:
709
 * @uri:  pointer to an URI structure
710
 * @str:  the string to analyze
711
 *
712
 * Parse an path which is not a scheme and fills in the appropriate fields
713
 * of the @uri structure
714
 *
715
 * path-noscheme = segment-nz-nc *( "/" segment )
716
 *
717
 * Returns 0 or the error code
718
 */
719
static int
720
xmlParse3986PathNoScheme(xmlURIPtr uri, const char **str)
721
16.7k
{
722
16.7k
    const char *cur;
723
16.7k
    int ret;
724
725
16.7k
    cur = *str;
726
727
16.7k
    ret = xmlParse3986Segment(&cur, ':', 0);
728
16.7k
    if (ret != 0) return(ret);
729
27.9k
    while (*cur == '/') {
730
11.2k
        cur++;
731
11.2k
  ret = xmlParse3986Segment(&cur, 0, 1);
732
11.2k
  if (ret != 0) return(ret);
733
11.2k
    }
734
16.7k
    if (uri != NULL) {
735
16.7k
  if (uri->path != NULL) xmlFree(uri->path);
736
16.7k
        if (cur != *str) {
737
16.7k
            if (uri->cleanup & 2)
738
0
                uri->path = STRNDUP(*str, cur - *str);
739
16.7k
            else
740
16.7k
                uri->path = xmlURIUnescapeString(*str, cur - *str, NULL);
741
16.7k
        } else {
742
5
            uri->path = NULL;
743
5
        }
744
16.7k
    }
745
16.7k
    *str = cur;
746
16.7k
    return (0);
747
16.7k
}
748
749
/**
750
 * xmlParse3986HierPart:
751
 * @uri:  pointer to an URI structure
752
 * @str:  the string to analyze
753
 *
754
 * Parse an hierarchical part and fills in the appropriate fields
755
 * of the @uri structure
756
 *
757
 * hier-part     = "//" authority path-abempty
758
 *                / path-absolute
759
 *                / path-rootless
760
 *                / path-empty
761
 *
762
 * Returns 0 or the error code
763
 */
764
static int
765
xmlParse3986HierPart(xmlURIPtr uri, const char **str)
766
2.40k
{
767
2.40k
    const char *cur;
768
2.40k
    int ret;
769
770
2.40k
    cur = *str;
771
772
2.40k
    if ((*cur == '/') && (*(cur + 1) == '/')) {
773
51
        cur += 2;
774
51
  ret = xmlParse3986Authority(uri, &cur);
775
51
  if (ret != 0) return(ret);
776
        /*
777
         * An empty server is marked with a special URI value.
778
         */
779
51
  if ((uri->server == NULL) && (uri->port == PORT_EMPTY))
780
0
      uri->port = PORT_EMPTY_SERVER;
781
51
  ret = xmlParse3986PathAbEmpty(uri, &cur);
782
51
  if (ret != 0) return(ret);
783
51
  *str = cur;
784
51
  return(0);
785
2.35k
    } else if (*cur == '/') {
786
1
        ret = xmlParse3986PathAbsolute(uri, &cur);
787
1
  if (ret != 0) return(ret);
788
2.35k
    } else if (ISA_PCHAR(cur)) {
789
1.03k
        ret = xmlParse3986PathRootless(uri, &cur);
790
1.03k
  if (ret != 0) return(ret);
791
1.31k
    } else {
792
  /* path-empty is effectively empty */
793
1.31k
  if (uri != NULL) {
794
1.31k
      if (uri->path != NULL) xmlFree(uri->path);
795
1.31k
      uri->path = NULL;
796
1.31k
  }
797
1.31k
    }
798
2.35k
    *str = cur;
799
2.35k
    return (0);
800
2.40k
}
801
802
/**
803
 * xmlParse3986RelativeRef:
804
 * @uri:  pointer to an URI structure
805
 * @str:  the string to analyze
806
 *
807
 * Parse an URI string and fills in the appropriate fields
808
 * of the @uri structure
809
 *
810
 * relative-ref  = relative-part [ "?" query ] [ "#" fragment ]
811
 * relative-part = "//" authority path-abempty
812
 *               / path-absolute
813
 *               / path-noscheme
814
 *               / path-empty
815
 *
816
 * Returns 0 or the error code
817
 */
818
static int
819
28.2k
xmlParse3986RelativeRef(xmlURIPtr uri, const char *str) {
820
28.2k
    int ret;
821
822
28.2k
    if ((*str == '/') && (*(str + 1) == '/')) {
823
5.77k
        str += 2;
824
5.77k
  ret = xmlParse3986Authority(uri, &str);
825
5.77k
  if (ret != 0) return(ret);
826
5.67k
  ret = xmlParse3986PathAbEmpty(uri, &str);
827
5.67k
  if (ret != 0) return(ret);
828
22.5k
    } else if (*str == '/') {
829
50
  ret = xmlParse3986PathAbsolute(uri, &str);
830
50
  if (ret != 0) return(ret);
831
22.4k
    } else if (ISA_PCHAR(str)) {
832
16.7k
        ret = xmlParse3986PathNoScheme(uri, &str);
833
16.7k
  if (ret != 0) return(ret);
834
16.7k
    } else {
835
  /* path-empty is effectively empty */
836
5.72k
  if (uri != NULL) {
837
5.72k
      if (uri->path != NULL) xmlFree(uri->path);
838
5.72k
      uri->path = NULL;
839
5.72k
  }
840
5.72k
    }
841
842
28.1k
    if (*str == '?') {
843
958
  str++;
844
958
  ret = xmlParse3986Query(uri, &str);
845
958
  if (ret != 0) return(ret);
846
958
    }
847
28.1k
    if (*str == '#') {
848
958
  str++;
849
958
  ret = xmlParse3986Fragment(uri, &str);
850
958
  if (ret != 0) return(ret);
851
958
    }
852
28.1k
    if (*str != 0) {
853
21.4k
  xmlCleanURI(uri);
854
21.4k
  return(1);
855
21.4k
    }
856
6.69k
    return(0);
857
28.1k
}
858
859
860
/**
861
 * xmlParse3986URI:
862
 * @uri:  pointer to an URI structure
863
 * @str:  the string to analyze
864
 *
865
 * Parse an URI string and fills in the appropriate fields
866
 * of the @uri structure
867
 *
868
 * scheme ":" hier-part [ "?" query ] [ "#" fragment ]
869
 *
870
 * Returns 0 or the error code
871
 */
872
static int
873
29.3k
xmlParse3986URI(xmlURIPtr uri, const char *str) {
874
29.3k
    int ret;
875
876
29.3k
    ret = xmlParse3986Scheme(uri, &str);
877
29.3k
    if (ret != 0) return(ret);
878
6.23k
    if (*str != ':') {
879
3.82k
  return(1);
880
3.82k
    }
881
2.40k
    str++;
882
2.40k
    ret = xmlParse3986HierPart(uri, &str);
883
2.40k
    if (ret != 0) return(ret);
884
2.40k
    if (*str == '?') {
885
0
  str++;
886
0
  ret = xmlParse3986Query(uri, &str);
887
0
  if (ret != 0) return(ret);
888
0
    }
889
2.40k
    if (*str == '#') {
890
0
  str++;
891
0
  ret = xmlParse3986Fragment(uri, &str);
892
0
  if (ret != 0) return(ret);
893
0
    }
894
2.40k
    if (*str != 0) {
895
1.34k
  xmlCleanURI(uri);
896
1.34k
  return(1);
897
1.34k
    }
898
1.05k
    return(0);
899
2.40k
}
900
901
/**
902
 * xmlParse3986URIReference:
903
 * @uri:  pointer to an URI structure
904
 * @str:  the string to analyze
905
 *
906
 * Parse an URI reference string and fills in the appropriate fields
907
 * of the @uri structure
908
 *
909
 * URI-reference = URI / relative-ref
910
 *
911
 * Returns 0 or the error code
912
 */
913
static int
914
29.3k
xmlParse3986URIReference(xmlURIPtr uri, const char *str) {
915
29.3k
    int ret;
916
917
29.3k
    if (str == NULL)
918
0
  return(-1);
919
29.3k
    xmlCleanURI(uri);
920
921
    /*
922
     * Try first to parse absolute refs, then fallback to relative if
923
     * it fails.
924
     */
925
29.3k
    ret = xmlParse3986URI(uri, str);
926
29.3k
    if (ret != 0) {
927
28.2k
  xmlCleanURI(uri);
928
28.2k
        ret = xmlParse3986RelativeRef(uri, str);
929
28.2k
  if (ret != 0) {
930
21.5k
      xmlCleanURI(uri);
931
21.5k
      return(ret);
932
21.5k
  }
933
28.2k
    }
934
7.75k
    return(0);
935
29.3k
}
936
937
/**
938
 * xmlParseURI:
939
 * @str:  the URI string to analyze
940
 *
941
 * Parse an URI based on RFC 3986
942
 *
943
 * URI-reference = [ absoluteURI | relativeURI ] [ "#" fragment ]
944
 *
945
 * Returns a newly built xmlURIPtr or NULL in case of error
946
 */
947
xmlURIPtr
948
11.3k
xmlParseURI(const char *str) {
949
11.3k
    xmlURIPtr uri;
950
11.3k
    int ret;
951
952
11.3k
    if (str == NULL)
953
0
  return(NULL);
954
11.3k
    uri = xmlCreateURI();
955
11.3k
    if (uri != NULL) {
956
11.3k
  ret = xmlParse3986URIReference(uri, str);
957
11.3k
        if (ret) {
958
4.15k
      xmlFreeURI(uri);
959
4.15k
      return(NULL);
960
4.15k
  }
961
11.3k
    }
962
7.20k
    return(uri);
963
11.3k
}
964
965
/**
966
 * xmlParseURIReference:
967
 * @uri:  pointer to an URI structure
968
 * @str:  the string to analyze
969
 *
970
 * Parse an URI reference string based on RFC 3986 and fills in the
971
 * appropriate fields of the @uri structure
972
 *
973
 * URI-reference = URI / relative-ref
974
 *
975
 * Returns 0 or the error code
976
 */
977
int
978
17.9k
xmlParseURIReference(xmlURIPtr uri, const char *str) {
979
17.9k
    return(xmlParse3986URIReference(uri, str));
980
17.9k
}
981
982
/**
983
 * xmlParseURIRaw:
984
 * @str:  the URI string to analyze
985
 * @raw:  if 1 unescaping of URI pieces are disabled
986
 *
987
 * Parse an URI but allows to keep intact the original fragments.
988
 *
989
 * URI-reference = URI / relative-ref
990
 *
991
 * Returns a newly built xmlURIPtr or NULL in case of error
992
 */
993
xmlURIPtr
994
0
xmlParseURIRaw(const char *str, int raw) {
995
0
    xmlURIPtr uri;
996
0
    int ret;
997
998
0
    if (str == NULL)
999
0
  return(NULL);
1000
0
    uri = xmlCreateURI();
1001
0
    if (uri != NULL) {
1002
0
        if (raw) {
1003
0
      uri->cleanup |= 2;
1004
0
  }
1005
0
  ret = xmlParseURIReference(uri, str);
1006
0
        if (ret) {
1007
0
      xmlFreeURI(uri);
1008
0
      return(NULL);
1009
0
  }
1010
0
    }
1011
0
    return(uri);
1012
0
}
1013
1014
/************************************************************************
1015
 *                  *
1016
 *      Generic URI structure functions     *
1017
 *                  *
1018
 ************************************************************************/
1019
1020
/**
1021
 * xmlCreateURI:
1022
 *
1023
 * Simply creates an empty xmlURI
1024
 *
1025
 * Returns the new structure or NULL in case of error
1026
 */
1027
xmlURIPtr
1028
29.3k
xmlCreateURI(void) {
1029
29.3k
    xmlURIPtr ret;
1030
1031
29.3k
    ret = (xmlURIPtr) xmlMalloc(sizeof(xmlURI));
1032
29.3k
    if (ret == NULL) {
1033
0
        xmlURIErrMemory("creating URI structure\n");
1034
0
  return(NULL);
1035
0
    }
1036
29.3k
    memset(ret, 0, sizeof(xmlURI));
1037
29.3k
    ret->port = PORT_EMPTY;
1038
29.3k
    return(ret);
1039
29.3k
}
1040
1041
/**
1042
 * xmlSaveUriRealloc:
1043
 *
1044
 * Function to handle properly a reallocation when saving an URI
1045
 * Also imposes some limit on the length of an URI string output
1046
 */
1047
static xmlChar *
1048
2.79k
xmlSaveUriRealloc(xmlChar *ret, int *max) {
1049
2.79k
    xmlChar *temp;
1050
2.79k
    int tmp;
1051
1052
2.79k
    if (*max > MAX_URI_LENGTH) {
1053
118
        xmlURIErrMemory("reaching arbitrary MAX_URI_LENGTH limit\n");
1054
118
        return(NULL);
1055
118
    }
1056
2.67k
    tmp = *max * 2;
1057
2.67k
    temp = (xmlChar *) xmlRealloc(ret, (tmp + 1));
1058
2.67k
    if (temp == NULL) {
1059
0
        xmlURIErrMemory("saving URI\n");
1060
0
        return(NULL);
1061
0
    }
1062
2.67k
    *max = tmp;
1063
2.67k
    return(temp);
1064
2.67k
}
1065
1066
/**
1067
 * xmlSaveUri:
1068
 * @uri:  pointer to an xmlURI
1069
 *
1070
 * Save the URI as an escaped string
1071
 *
1072
 * Returns a new string (to be deallocated by caller)
1073
 */
1074
xmlChar *
1075
561
xmlSaveUri(xmlURIPtr uri) {
1076
561
    xmlChar *ret = NULL;
1077
561
    xmlChar *temp;
1078
561
    const char *p;
1079
561
    int len;
1080
561
    int max;
1081
1082
561
    if (uri == NULL) return(NULL);
1083
1084
1085
561
    max = 80;
1086
561
    ret = (xmlChar *) xmlMallocAtomic(max + 1);
1087
561
    if (ret == NULL) {
1088
0
        xmlURIErrMemory("saving URI\n");
1089
0
  return(NULL);
1090
0
    }
1091
561
    len = 0;
1092
1093
561
    if (uri->scheme != NULL) {
1094
0
  p = uri->scheme;
1095
0
  while (*p != 0) {
1096
0
      if (len >= max) {
1097
0
                temp = xmlSaveUriRealloc(ret, &max);
1098
0
                if (temp == NULL) goto mem_error;
1099
0
    ret = temp;
1100
0
      }
1101
0
      ret[len++] = *p++;
1102
0
  }
1103
0
  if (len >= max) {
1104
0
            temp = xmlSaveUriRealloc(ret, &max);
1105
0
            if (temp == NULL) goto mem_error;
1106
0
            ret = temp;
1107
0
  }
1108
0
  ret[len++] = ':';
1109
0
    }
1110
561
    if (uri->opaque != NULL) {
1111
0
  p = uri->opaque;
1112
0
  while (*p != 0) {
1113
0
      if (len + 3 >= max) {
1114
0
                temp = xmlSaveUriRealloc(ret, &max);
1115
0
                if (temp == NULL) goto mem_error;
1116
0
                ret = temp;
1117
0
      }
1118
0
      if (IS_RESERVED(*(p)) || IS_UNRESERVED(*(p)))
1119
0
    ret[len++] = *p++;
1120
0
      else {
1121
0
    int val = *(unsigned char *)p++;
1122
0
    int hi = val / 0x10, lo = val % 0x10;
1123
0
    ret[len++] = '%';
1124
0
    ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1125
0
    ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1126
0
      }
1127
0
  }
1128
561
    } else {
1129
561
  if ((uri->server != NULL) || (uri->port != PORT_EMPTY)) {
1130
184
      if (len + 3 >= max) {
1131
0
                temp = xmlSaveUriRealloc(ret, &max);
1132
0
                if (temp == NULL) goto mem_error;
1133
0
                ret = temp;
1134
0
      }
1135
184
      ret[len++] = '/';
1136
184
      ret[len++] = '/';
1137
184
      if (uri->user != NULL) {
1138
184
    p = uri->user;
1139
76.2M
    while (*p != 0) {
1140
76.2M
        if (len + 3 >= max) {
1141
2.40k
                        temp = xmlSaveUriRealloc(ret, &max);
1142
2.40k
                        if (temp == NULL) goto mem_error;
1143
2.40k
                        ret = temp;
1144
2.40k
        }
1145
76.2M
        if ((IS_UNRESERVED(*(p))) ||
1146
76.2M
      ((*(p) == ';')) || ((*(p) == ':')) ||
1147
76.2M
      ((*(p) == '&')) || ((*(p) == '=')) ||
1148
76.2M
      ((*(p) == '+')) || ((*(p) == '$')) ||
1149
76.2M
      ((*(p) == ',')))
1150
54.3M
      ret[len++] = *p++;
1151
21.9M
        else {
1152
21.9M
      int val = *(unsigned char *)p++;
1153
21.9M
      int hi = val / 0x10, lo = val % 0x10;
1154
21.9M
      ret[len++] = '%';
1155
21.9M
      ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1156
21.9M
      ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1157
21.9M
        }
1158
76.2M
    }
1159
184
    if (len + 3 >= max) {
1160
0
                    temp = xmlSaveUriRealloc(ret, &max);
1161
0
                    if (temp == NULL) goto mem_error;
1162
0
                    ret = temp;
1163
0
    }
1164
184
    ret[len++] = '@';
1165
184
      }
1166
184
      if (uri->server != NULL) {
1167
184
    p = uri->server;
1168
52.1M
    while (*p != 0) {
1169
52.1M
        if (len >= max) {
1170
135
      temp = xmlSaveUriRealloc(ret, &max);
1171
135
      if (temp == NULL) goto mem_error;
1172
35
      ret = temp;
1173
35
        }
1174
                    /* TODO: escaping? */
1175
52.1M
        ret[len++] = (xmlChar) *p++;
1176
52.1M
    }
1177
184
      }
1178
84
            if (uri->port > 0) {
1179
0
                if (len + 10 >= max) {
1180
0
                    temp = xmlSaveUriRealloc(ret, &max);
1181
0
                    if (temp == NULL) goto mem_error;
1182
0
                    ret = temp;
1183
0
                }
1184
0
                len += snprintf((char *) &ret[len], max - len, ":%d", uri->port);
1185
0
            }
1186
377
  } else if (uri->authority != NULL) {
1187
0
      if (len + 3 >= max) {
1188
0
                temp = xmlSaveUriRealloc(ret, &max);
1189
0
                if (temp == NULL) goto mem_error;
1190
0
                ret = temp;
1191
0
      }
1192
0
      ret[len++] = '/';
1193
0
      ret[len++] = '/';
1194
0
      p = uri->authority;
1195
0
      while (*p != 0) {
1196
0
    if (len + 3 >= max) {
1197
0
                    temp = xmlSaveUriRealloc(ret, &max);
1198
0
                    if (temp == NULL) goto mem_error;
1199
0
                    ret = temp;
1200
0
    }
1201
0
    if ((IS_UNRESERVED(*(p))) ||
1202
0
                    ((*(p) == '$')) || ((*(p) == ',')) || ((*(p) == ';')) ||
1203
0
                    ((*(p) == ':')) || ((*(p) == '@')) || ((*(p) == '&')) ||
1204
0
                    ((*(p) == '=')) || ((*(p) == '+')))
1205
0
        ret[len++] = *p++;
1206
0
    else {
1207
0
        int val = *(unsigned char *)p++;
1208
0
        int hi = val / 0x10, lo = val % 0x10;
1209
0
        ret[len++] = '%';
1210
0
        ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1211
0
        ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1212
0
    }
1213
0
      }
1214
377
  } else if (uri->scheme != NULL) {
1215
0
      if (len + 3 >= max) {
1216
0
                temp = xmlSaveUriRealloc(ret, &max);
1217
0
                if (temp == NULL) goto mem_error;
1218
0
                ret = temp;
1219
0
      }
1220
0
  }
1221
461
  if (uri->path != NULL) {
1222
256
      p = uri->path;
1223
      /*
1224
       * the colon in file:///d: should not be escaped or
1225
       * Windows accesses fail later.
1226
       */
1227
256
      if ((uri->scheme != NULL) &&
1228
256
    (p[0] == '/') &&
1229
256
    (((p[1] >= 'a') && (p[1] <= 'z')) ||
1230
0
     ((p[1] >= 'A') && (p[1] <= 'Z'))) &&
1231
256
    (p[2] == ':') &&
1232
256
          (xmlStrEqual(BAD_CAST uri->scheme, BAD_CAST "file"))) {
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
    ret[len++] = *p++;
1239
0
    ret[len++] = *p++;
1240
0
    ret[len++] = *p++;
1241
0
      }
1242
4.10M
      while (*p != 0) {
1243
4.10M
    if (len + 3 >= max) {
1244
144
                    temp = xmlSaveUriRealloc(ret, &max);
1245
144
                    if (temp == NULL) goto mem_error;
1246
139
                    ret = temp;
1247
139
    }
1248
4.10M
    if ((IS_UNRESERVED(*(p))) || ((*(p) == '/')) ||
1249
4.10M
                    ((*(p) == ';')) || ((*(p) == '@')) || ((*(p) == '&')) ||
1250
4.10M
              ((*(p) == '=')) || ((*(p) == '+')) || ((*(p) == '$')) ||
1251
4.10M
              ((*(p) == ',')))
1252
4.10M
        ret[len++] = *p++;
1253
19
    else {
1254
19
        int val = *(unsigned char *)p++;
1255
19
        int hi = val / 0x10, lo = val % 0x10;
1256
19
        ret[len++] = '%';
1257
19
        ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1258
19
        ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1259
19
    }
1260
4.10M
      }
1261
256
  }
1262
456
  if (uri->query_raw != NULL) {
1263
175
      if (len + 1 >= max) {
1264
0
                temp = xmlSaveUriRealloc(ret, &max);
1265
0
                if (temp == NULL) goto mem_error;
1266
0
                ret = temp;
1267
0
      }
1268
175
      ret[len++] = '?';
1269
175
      p = uri->query_raw;
1270
7.27M
      while (*p != 0) {
1271
7.27M
    if (len + 1 >= max) {
1272
19
                    temp = xmlSaveUriRealloc(ret, &max);
1273
19
                    if (temp == NULL) goto mem_error;
1274
14
                    ret = temp;
1275
14
    }
1276
7.27M
    ret[len++] = *p++;
1277
7.27M
      }
1278
281
  } else if (uri->query != NULL) {
1279
0
      if (len + 3 >= max) {
1280
0
                temp = xmlSaveUriRealloc(ret, &max);
1281
0
                if (temp == NULL) goto mem_error;
1282
0
                ret = temp;
1283
0
      }
1284
0
      ret[len++] = '?';
1285
0
      p = uri->query;
1286
0
      while (*p != 0) {
1287
0
    if (len + 3 >= max) {
1288
0
                    temp = xmlSaveUriRealloc(ret, &max);
1289
0
                    if (temp == NULL) goto mem_error;
1290
0
                    ret = temp;
1291
0
    }
1292
0
    if ((IS_UNRESERVED(*(p))) || (IS_RESERVED(*(p))))
1293
0
        ret[len++] = *p++;
1294
0
    else {
1295
0
        int val = *(unsigned char *)p++;
1296
0
        int hi = val / 0x10, lo = val % 0x10;
1297
0
        ret[len++] = '%';
1298
0
        ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1299
0
        ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1300
0
    }
1301
0
      }
1302
0
  }
1303
456
    }
1304
451
    if (uri->fragment != NULL) {
1305
18
  if (len + 3 >= max) {
1306
0
            temp = xmlSaveUriRealloc(ret, &max);
1307
0
            if (temp == NULL) goto mem_error;
1308
0
            ret = temp;
1309
0
  }
1310
18
  ret[len++] = '#';
1311
18
  p = uri->fragment;
1312
6.00M
  while (*p != 0) {
1313
6.00M
      if (len + 3 >= max) {
1314
44
                temp = xmlSaveUriRealloc(ret, &max);
1315
44
                if (temp == NULL) goto mem_error;
1316
39
                ret = temp;
1317
39
      }
1318
6.00M
      if ((IS_UNRESERVED(*(p))) || (IS_RESERVED(*(p))))
1319
6.00M
    ret[len++] = *p++;
1320
0
      else {
1321
0
    int val = *(unsigned char *)p++;
1322
0
    int hi = val / 0x10, lo = val % 0x10;
1323
0
    ret[len++] = '%';
1324
0
    ret[len++] = hi + (hi > 9? 'A'-10 : '0');
1325
0
    ret[len++] = lo + (lo > 9? 'A'-10 : '0');
1326
0
      }
1327
6.00M
  }
1328
18
    }
1329
446
    if (len >= max) {
1330
0
        temp = xmlSaveUriRealloc(ret, &max);
1331
0
        if (temp == NULL) goto mem_error;
1332
0
        ret = temp;
1333
0
    }
1334
446
    ret[len] = 0;
1335
446
    return(ret);
1336
1337
115
mem_error:
1338
115
    xmlFree(ret);
1339
115
    return(NULL);
1340
446
}
1341
1342
/**
1343
 * xmlPrintURI:
1344
 * @stream:  a FILE* for the output
1345
 * @uri:  pointer to an xmlURI
1346
 *
1347
 * Prints the URI in the stream @stream.
1348
 */
1349
void
1350
0
xmlPrintURI(FILE *stream, xmlURIPtr uri) {
1351
0
    xmlChar *out;
1352
1353
0
    out = xmlSaveUri(uri);
1354
0
    if (out != NULL) {
1355
0
  fprintf(stream, "%s", (char *) out);
1356
0
  xmlFree(out);
1357
0
    }
1358
0
}
1359
1360
/**
1361
 * xmlCleanURI:
1362
 * @uri:  pointer to an xmlURI
1363
 *
1364
 * Make sure the xmlURI struct is free of content
1365
 */
1366
static void
1367
102k
xmlCleanURI(xmlURIPtr uri) {
1368
102k
    if (uri == NULL) return;
1369
1370
102k
    if (uri->scheme != NULL) xmlFree(uri->scheme);
1371
102k
    uri->scheme = NULL;
1372
102k
    if (uri->server != NULL) xmlFree(uri->server);
1373
102k
    uri->server = NULL;
1374
102k
    if (uri->user != NULL) xmlFree(uri->user);
1375
102k
    uri->user = NULL;
1376
102k
    if (uri->path != NULL) xmlFree(uri->path);
1377
102k
    uri->path = NULL;
1378
102k
    if (uri->fragment != NULL) xmlFree(uri->fragment);
1379
102k
    uri->fragment = NULL;
1380
102k
    if (uri->opaque != NULL) xmlFree(uri->opaque);
1381
102k
    uri->opaque = NULL;
1382
102k
    if (uri->authority != NULL) xmlFree(uri->authority);
1383
102k
    uri->authority = NULL;
1384
102k
    if (uri->query != NULL) xmlFree(uri->query);
1385
102k
    uri->query = NULL;
1386
102k
    if (uri->query_raw != NULL) xmlFree(uri->query_raw);
1387
102k
    uri->query_raw = NULL;
1388
102k
}
1389
1390
/**
1391
 * xmlFreeURI:
1392
 * @uri:  pointer to an xmlURI
1393
 *
1394
 * Free up the xmlURI struct
1395
 */
1396
void
1397
29.3k
xmlFreeURI(xmlURIPtr uri) {
1398
29.3k
    if (uri == NULL) return;
1399
1400
29.3k
    if (uri->scheme != NULL) xmlFree(uri->scheme);
1401
29.3k
    if (uri->server != NULL) xmlFree(uri->server);
1402
29.3k
    if (uri->user != NULL) xmlFree(uri->user);
1403
29.3k
    if (uri->path != NULL) xmlFree(uri->path);
1404
29.3k
    if (uri->fragment != NULL) xmlFree(uri->fragment);
1405
29.3k
    if (uri->opaque != NULL) xmlFree(uri->opaque);
1406
29.3k
    if (uri->authority != NULL) xmlFree(uri->authority);
1407
29.3k
    if (uri->query != NULL) xmlFree(uri->query);
1408
29.3k
    if (uri->query_raw != NULL) xmlFree(uri->query_raw);
1409
29.3k
    xmlFree(uri);
1410
29.3k
}
1411
1412
/************************************************************************
1413
 *                  *
1414
 *      Helper functions        *
1415
 *                  *
1416
 ************************************************************************/
1417
1418
/**
1419
 * xmlNormalizeURIPath:
1420
 * @path:  pointer to the path string
1421
 *
1422
 * Applies the 5 normalization steps to a path string--that is, RFC 2396
1423
 * Section 5.2, steps 6.c through 6.g.
1424
 *
1425
 * Normalization occurs directly on the string, no new allocation is done
1426
 *
1427
 * Returns 0 or an error code
1428
 */
1429
int
1430
0
xmlNormalizeURIPath(char *path) {
1431
0
    char *cur, *out;
1432
1433
0
    if (path == NULL)
1434
0
  return(-1);
1435
1436
    /* Skip all initial "/" chars.  We want to get to the beginning of the
1437
     * first non-empty segment.
1438
     */
1439
0
    cur = path;
1440
0
    while (cur[0] == '/')
1441
0
      ++cur;
1442
0
    if (cur[0] == '\0')
1443
0
      return(0);
1444
1445
    /* Keep everything we've seen so far.  */
1446
0
    out = cur;
1447
1448
    /*
1449
     * Analyze each segment in sequence for cases (c) and (d).
1450
     */
1451
0
    while (cur[0] != '\0') {
1452
  /*
1453
   * c) All occurrences of "./", where "." is a complete path segment,
1454
   *    are removed from the buffer string.
1455
   */
1456
0
  if ((cur[0] == '.') && (cur[1] == '/')) {
1457
0
      cur += 2;
1458
      /* '//' normalization should be done at this point too */
1459
0
      while (cur[0] == '/')
1460
0
    cur++;
1461
0
      continue;
1462
0
  }
1463
1464
  /*
1465
   * d) If the buffer string ends with "." as a complete path segment,
1466
   *    that "." is removed.
1467
   */
1468
0
  if ((cur[0] == '.') && (cur[1] == '\0'))
1469
0
      break;
1470
1471
  /* Otherwise keep the segment.  */
1472
0
  while (cur[0] != '/') {
1473
0
            if (cur[0] == '\0')
1474
0
              goto done_cd;
1475
0
      (out++)[0] = (cur++)[0];
1476
0
  }
1477
  /* normalize // */
1478
0
  while ((cur[0] == '/') && (cur[1] == '/'))
1479
0
      cur++;
1480
1481
0
        (out++)[0] = (cur++)[0];
1482
0
    }
1483
0
 done_cd:
1484
0
    out[0] = '\0';
1485
1486
    /* Reset to the beginning of the first segment for the next sequence.  */
1487
0
    cur = path;
1488
0
    while (cur[0] == '/')
1489
0
      ++cur;
1490
0
    if (cur[0] == '\0')
1491
0
  return(0);
1492
1493
    /*
1494
     * Analyze each segment in sequence for cases (e) and (f).
1495
     *
1496
     * e) All occurrences of "<segment>/../", where <segment> is a
1497
     *    complete path segment not equal to "..", are removed from the
1498
     *    buffer string.  Removal of these path segments is performed
1499
     *    iteratively, removing the leftmost matching pattern on each
1500
     *    iteration, until no matching pattern remains.
1501
     *
1502
     * f) If the buffer string ends with "<segment>/..", where <segment>
1503
     *    is a complete path segment not equal to "..", that
1504
     *    "<segment>/.." is removed.
1505
     *
1506
     * To satisfy the "iterative" clause in (e), we need to collapse the
1507
     * string every time we find something that needs to be removed.  Thus,
1508
     * we don't need to keep two pointers into the string: we only need a
1509
     * "current position" pointer.
1510
     */
1511
0
    while (1) {
1512
0
        char *segp, *tmp;
1513
1514
        /* At the beginning of each iteration of this loop, "cur" points to
1515
         * the first character of the segment we want to examine.
1516
         */
1517
1518
        /* Find the end of the current segment.  */
1519
0
        segp = cur;
1520
0
        while ((segp[0] != '/') && (segp[0] != '\0'))
1521
0
          ++segp;
1522
1523
        /* If this is the last segment, we're done (we need at least two
1524
         * segments to meet the criteria for the (e) and (f) cases).
1525
         */
1526
0
        if (segp[0] == '\0')
1527
0
          break;
1528
1529
        /* If the first segment is "..", or if the next segment _isn't_ "..",
1530
         * keep this segment and try the next one.
1531
         */
1532
0
        ++segp;
1533
0
        if (((cur[0] == '.') && (cur[1] == '.') && (segp == cur+3))
1534
0
            || ((segp[0] != '.') || (segp[1] != '.')
1535
0
                || ((segp[2] != '/') && (segp[2] != '\0')))) {
1536
0
          cur = segp;
1537
0
          continue;
1538
0
        }
1539
1540
        /* If we get here, remove this segment and the next one and back up
1541
         * to the previous segment (if there is one), to implement the
1542
         * "iteratively" clause.  It's pretty much impossible to back up
1543
         * while maintaining two pointers into the buffer, so just compact
1544
         * the whole buffer now.
1545
         */
1546
1547
        /* If this is the end of the buffer, we're done.  */
1548
0
        if (segp[2] == '\0') {
1549
0
          cur[0] = '\0';
1550
0
          break;
1551
0
        }
1552
        /* Valgrind complained, strcpy(cur, segp + 3); */
1553
        /* string will overlap, do not use strcpy */
1554
0
        tmp = cur;
1555
0
        segp += 3;
1556
0
        while ((*tmp++ = *segp++) != 0)
1557
0
          ;
1558
1559
        /* If there are no previous segments, then keep going from here.  */
1560
0
        segp = cur;
1561
0
        while ((segp > path) && ((--segp)[0] == '/'))
1562
0
          ;
1563
0
        if (segp == path)
1564
0
          continue;
1565
1566
        /* "segp" is pointing to the end of a previous segment; find it's
1567
         * start.  We need to back up to the previous segment and start
1568
         * over with that to handle things like "foo/bar/../..".  If we
1569
         * don't do this, then on the first pass we'll remove the "bar/..",
1570
         * but be pointing at the second ".." so we won't realize we can also
1571
         * remove the "foo/..".
1572
         */
1573
0
        cur = segp;
1574
0
        while ((cur > path) && (cur[-1] != '/'))
1575
0
          --cur;
1576
0
    }
1577
0
    out[0] = '\0';
1578
1579
    /*
1580
     * g) If the resulting buffer string still begins with one or more
1581
     *    complete path segments of "..", then the reference is
1582
     *    considered to be in error. Implementations may handle this
1583
     *    error by retaining these components in the resolved path (i.e.,
1584
     *    treating them as part of the final URI), by removing them from
1585
     *    the resolved path (i.e., discarding relative levels above the
1586
     *    root), or by avoiding traversal of the reference.
1587
     *
1588
     * We discard them from the final path.
1589
     */
1590
0
    if (path[0] == '/') {
1591
0
      cur = path;
1592
0
      while ((cur[0] == '/') && (cur[1] == '.') && (cur[2] == '.')
1593
0
             && ((cur[3] == '/') || (cur[3] == '\0')))
1594
0
  cur += 3;
1595
1596
0
      if (cur != path) {
1597
0
  out = path;
1598
0
  while (cur[0] != '\0')
1599
0
          (out++)[0] = (cur++)[0];
1600
0
  out[0] = 0;
1601
0
      }
1602
0
    }
1603
1604
0
    return(0);
1605
0
}
1606
1607
2.31k
static int is_hex(char c) {
1608
2.31k
    if (((c >= '0') && (c <= '9')) ||
1609
2.31k
        ((c >= 'a') && (c <= 'f')) ||
1610
2.31k
        ((c >= 'A') && (c <= 'F')))
1611
2.29k
  return(1);
1612
21
    return(0);
1613
2.31k
}
1614
1615
/**
1616
 * xmlURIUnescapeString:
1617
 * @str:  the string to unescape
1618
 * @len:   the length in bytes to unescape (or <= 0 to indicate full string)
1619
 * @target:  optional destination buffer
1620
 *
1621
 * Unescaping routine, but does not check that the string is an URI. The
1622
 * output is a direct unsigned char translation of %XX values (no encoding)
1623
 * Note that the length of the result can only be smaller or same size as
1624
 * the input string.
1625
 *
1626
 * Returns a copy of the string, but unescaped, will return NULL only in case
1627
 * of error
1628
 */
1629
char *
1630
33.1k
xmlURIUnescapeString(const char *str, int len, char *target) {
1631
33.1k
    char *ret, *out;
1632
33.1k
    const char *in;
1633
1634
33.1k
    if (str == NULL)
1635
0
  return(NULL);
1636
33.1k
    if (len <= 0) len = strlen(str);
1637
33.1k
    if (len < 0) return(NULL);
1638
1639
33.1k
    if (target == NULL) {
1640
33.1k
  ret = (char *) xmlMallocAtomic(len + 1);
1641
33.1k
  if (ret == NULL) {
1642
0
            xmlURIErrMemory("unescaping URI value\n");
1643
0
      return(NULL);
1644
0
  }
1645
33.1k
    } else
1646
0
  ret = target;
1647
33.1k
    in = str;
1648
33.1k
    out = ret;
1649
220M
    while(len > 0) {
1650
220M
  if ((len > 2) && (*in == '%') && (is_hex(in[1])) && (is_hex(in[2]))) {
1651
1.14k
            int c = 0;
1652
1.14k
      in++;
1653
1.14k
      if ((*in >= '0') && (*in <= '9'))
1654
258
          c = (*in - '0');
1655
884
      else if ((*in >= 'a') && (*in <= 'f'))
1656
884
          c = (*in - 'a') + 10;
1657
0
      else if ((*in >= 'A') && (*in <= 'F'))
1658
0
          c = (*in - 'A') + 10;
1659
1.14k
      in++;
1660
1.14k
      if ((*in >= '0') && (*in <= '9'))
1661
140
          c = c * 16 + (*in - '0');
1662
1.00k
      else if ((*in >= 'a') && (*in <= 'f'))
1663
884
          c = c * 16 + (*in - 'a') + 10;
1664
118
      else if ((*in >= 'A') && (*in <= 'F'))
1665
118
          c = c * 16 + (*in - 'A') + 10;
1666
1.14k
      in++;
1667
1.14k
      len -= 3;
1668
            /* Explicit sign change */
1669
1.14k
      *out++ = (char) c;
1670
220M
  } else {
1671
220M
      *out++ = *in++;
1672
220M
      len--;
1673
220M
  }
1674
220M
    }
1675
33.1k
    *out = 0;
1676
33.1k
    return(ret);
1677
33.1k
}
1678
1679
/**
1680
 * xmlURIEscapeStr:
1681
 * @str:  string to escape
1682
 * @list: exception list string of chars not to escape
1683
 *
1684
 * This routine escapes a string to hex, ignoring reserved characters
1685
 * (a-z, A-Z, 0-9, "@-_.!~*'()") and the characters in the exception list.
1686
 *
1687
 * Returns a new escaped string or NULL in case of error.
1688
 */
1689
xmlChar *
1690
25
xmlURIEscapeStr(const xmlChar *str, const xmlChar *list) {
1691
25
    xmlChar *ret, ch;
1692
25
    xmlChar *temp;
1693
25
    const xmlChar *in;
1694
25
    int len, out;
1695
1696
25
    if (str == NULL)
1697
0
  return(NULL);
1698
25
    if (str[0] == 0)
1699
0
  return(xmlStrdup(str));
1700
25
    len = xmlStrlen(str);
1701
25
    if (!(len > 0)) return(NULL);
1702
1703
25
    len += 20;
1704
25
    ret = (xmlChar *) xmlMallocAtomic(len);
1705
25
    if (ret == NULL) {
1706
0
        xmlURIErrMemory("escaping URI value\n");
1707
0
  return(NULL);
1708
0
    }
1709
25
    in = (const xmlChar *) str;
1710
25
    out = 0;
1711
10.0M
    while(*in != 0) {
1712
10.0M
  if (len - out <= 3) {
1713
49
            temp = xmlSaveUriRealloc(ret, &len);
1714
49
      if (temp == NULL) {
1715
3
                xmlURIErrMemory("escaping URI value\n");
1716
3
    xmlFree(ret);
1717
3
    return(NULL);
1718
3
      }
1719
46
      ret = temp;
1720
46
  }
1721
1722
10.0M
  ch = *in;
1723
1724
10.0M
  if ((ch != '@') && (!IS_UNRESERVED(ch)) && (!xmlStrchr(list, ch))) {
1725
9.85M
      unsigned char val;
1726
9.85M
      ret[out++] = '%';
1727
9.85M
      val = ch >> 4;
1728
9.85M
      if (val <= 9)
1729
3.27M
    ret[out++] = '0' + val;
1730
6.58M
      else
1731
6.58M
    ret[out++] = 'A' + val - 0xA;
1732
9.85M
      val = ch & 0xF;
1733
9.85M
      if (val <= 9)
1734
6.42M
    ret[out++] = '0' + val;
1735
3.43M
      else
1736
3.43M
    ret[out++] = 'A' + val - 0xA;
1737
9.85M
      in++;
1738
9.85M
  } else {
1739
199k
      ret[out++] = *in++;
1740
199k
  }
1741
1742
10.0M
    }
1743
22
    ret[out] = 0;
1744
22
    return(ret);
1745
25
}
1746
1747
/**
1748
 * xmlURIEscape:
1749
 * @str:  the string of the URI to escape
1750
 *
1751
 * Escaping routine, does not do validity checks !
1752
 * It will try to escape the chars needing this, but this is heuristic
1753
 * based it's impossible to be sure.
1754
 *
1755
 * Returns an copy of the string, but escaped
1756
 *
1757
 * 25 May 2001
1758
 * Uses xmlParseURI and xmlURIEscapeStr to try to escape correctly
1759
 * according to RFC2396.
1760
 *   - Carl Douglas
1761
 */
1762
xmlChar *
1763
xmlURIEscape(const xmlChar * str)
1764
0
{
1765
0
    xmlChar *ret, *segment = NULL;
1766
0
    xmlURIPtr uri;
1767
0
    int ret2;
1768
1769
0
    if (str == NULL)
1770
0
        return (NULL);
1771
1772
0
    uri = xmlCreateURI();
1773
0
    if (uri != NULL) {
1774
  /*
1775
   * Allow escaping errors in the unescaped form
1776
   */
1777
0
        uri->cleanup = 1;
1778
0
        ret2 = xmlParseURIReference(uri, (const char *)str);
1779
0
        if (ret2) {
1780
0
            xmlFreeURI(uri);
1781
0
            return (NULL);
1782
0
        }
1783
0
    }
1784
1785
0
    if (!uri)
1786
0
        return NULL;
1787
1788
0
    ret = NULL;
1789
1790
0
#define NULLCHK(p) if(!p) { \
1791
0
         xmlURIErrMemory("escaping URI value\n"); \
1792
0
         xmlFreeURI(uri); \
1793
0
         xmlFree(ret); \
1794
0
         return NULL; } \
1795
0
1796
0
    if (uri->scheme) {
1797
0
        segment = xmlURIEscapeStr(BAD_CAST uri->scheme, BAD_CAST "+-.");
1798
0
        NULLCHK(segment)
1799
0
        ret = xmlStrcat(ret, segment);
1800
0
        ret = xmlStrcat(ret, BAD_CAST ":");
1801
0
        xmlFree(segment);
1802
0
    }
1803
1804
0
    if (uri->authority) {
1805
0
        segment =
1806
0
            xmlURIEscapeStr(BAD_CAST uri->authority, BAD_CAST "/?;:@");
1807
0
        NULLCHK(segment)
1808
0
        ret = xmlStrcat(ret, BAD_CAST "//");
1809
0
        ret = xmlStrcat(ret, segment);
1810
0
        xmlFree(segment);
1811
0
    }
1812
1813
0
    if (uri->user) {
1814
0
        segment = xmlURIEscapeStr(BAD_CAST uri->user, BAD_CAST ";:&=+$,");
1815
0
        NULLCHK(segment)
1816
0
        ret = xmlStrcat(ret,BAD_CAST "//");
1817
0
        ret = xmlStrcat(ret, segment);
1818
0
        ret = xmlStrcat(ret, BAD_CAST "@");
1819
0
        xmlFree(segment);
1820
0
    }
1821
1822
0
    if (uri->server) {
1823
0
        segment = xmlURIEscapeStr(BAD_CAST uri->server, BAD_CAST "/?;:@");
1824
0
        NULLCHK(segment)
1825
0
        if (uri->user == NULL)
1826
0
            ret = xmlStrcat(ret, BAD_CAST "//");
1827
0
        ret = xmlStrcat(ret, segment);
1828
0
        xmlFree(segment);
1829
0
    }
1830
1831
0
    if (uri->port > 0) {
1832
0
        xmlChar port[11];
1833
1834
0
        snprintf((char *) port, 11, "%d", uri->port);
1835
0
        ret = xmlStrcat(ret, BAD_CAST ":");
1836
0
        ret = xmlStrcat(ret, port);
1837
0
    }
1838
1839
0
    if (uri->path) {
1840
0
        segment =
1841
0
            xmlURIEscapeStr(BAD_CAST uri->path, BAD_CAST ":@&=+$,/?;");
1842
0
        NULLCHK(segment)
1843
0
        ret = xmlStrcat(ret, segment);
1844
0
        xmlFree(segment);
1845
0
    }
1846
1847
0
    if (uri->query_raw) {
1848
0
        ret = xmlStrcat(ret, BAD_CAST "?");
1849
0
        ret = xmlStrcat(ret, BAD_CAST uri->query_raw);
1850
0
    }
1851
0
    else if (uri->query) {
1852
0
        segment =
1853
0
            xmlURIEscapeStr(BAD_CAST uri->query, BAD_CAST ";/?:@&=+,$");
1854
0
        NULLCHK(segment)
1855
0
        ret = xmlStrcat(ret, BAD_CAST "?");
1856
0
        ret = xmlStrcat(ret, segment);
1857
0
        xmlFree(segment);
1858
0
    }
1859
1860
0
    if (uri->opaque) {
1861
0
        segment = xmlURIEscapeStr(BAD_CAST uri->opaque, BAD_CAST "");
1862
0
        NULLCHK(segment)
1863
0
        ret = xmlStrcat(ret, segment);
1864
0
        xmlFree(segment);
1865
0
    }
1866
1867
0
    if (uri->fragment) {
1868
0
        segment = xmlURIEscapeStr(BAD_CAST uri->fragment, BAD_CAST "#");
1869
0
        NULLCHK(segment)
1870
0
        ret = xmlStrcat(ret, BAD_CAST "#");
1871
0
        ret = xmlStrcat(ret, segment);
1872
0
        xmlFree(segment);
1873
0
    }
1874
1875
0
    xmlFreeURI(uri);
1876
0
#undef NULLCHK
1877
1878
0
    return (ret);
1879
0
}
1880
1881
/************************************************************************
1882
 *                  *
1883
 *      Public functions        *
1884
 *                  *
1885
 ************************************************************************/
1886
1887
/**
1888
 * xmlBuildURI:
1889
 * @URI:  the URI instance found in the document
1890
 * @base:  the base value
1891
 *
1892
 * Computes he final URI of the reference done by checking that
1893
 * the given URI is valid, and building the final URI using the
1894
 * base URI. This is processed according to section 5.2 of the
1895
 * RFC 2396
1896
 *
1897
 * 5.2. Resolving Relative References to Absolute Form
1898
 *
1899
 * Returns a new URI string (to be freed by the caller) or NULL in case
1900
 *         of error.
1901
 */
1902
xmlChar *
1903
31.4k
xmlBuildURI(const xmlChar *URI, const xmlChar *base) {
1904
31.4k
    xmlChar *val = NULL;
1905
31.4k
    int ret, len, indx, cur, out;
1906
31.4k
    xmlURIPtr ref = NULL;
1907
31.4k
    xmlURIPtr bas = NULL;
1908
31.4k
    xmlURIPtr res = NULL;
1909
1910
    /*
1911
     * 1) The URI reference is parsed into the potential four components and
1912
     *    fragment identifier, as described in Section 4.3.
1913
     *
1914
     *    NOTE that a completely empty URI is treated by modern browsers
1915
     *    as a reference to "." rather than as a synonym for the current
1916
     *    URI.  Should we do that here?
1917
     */
1918
31.4k
    if (URI == NULL)
1919
0
  ret = -1;
1920
31.4k
    else {
1921
31.4k
  if (*URI) {
1922
17.9k
      ref = xmlCreateURI();
1923
17.9k
      if (ref == NULL)
1924
0
    goto done;
1925
17.9k
      ret = xmlParseURIReference(ref, (const char *) URI);
1926
17.9k
  }
1927
13.4k
  else
1928
13.4k
      ret = 0;
1929
31.4k
    }
1930
31.4k
    if (ret != 0)
1931
17.4k
  goto done;
1932
13.9k
    if ((ref != NULL) && (ref->scheme != NULL)) {
1933
  /*
1934
   * The URI is absolute don't modify.
1935
   */
1936
0
  val = xmlStrdup(URI);
1937
0
  goto done;
1938
0
    }
1939
13.9k
    if (base == NULL)
1940
13.9k
  ret = -1;
1941
0
    else {
1942
0
  bas = xmlCreateURI();
1943
0
  if (bas == NULL)
1944
0
      goto done;
1945
0
  ret = xmlParseURIReference(bas, (const char *) base);
1946
0
    }
1947
13.9k
    if (ret != 0) {
1948
13.9k
  if (ref)
1949
548
      val = xmlSaveUri(ref);
1950
13.9k
  goto done;
1951
13.9k
    }
1952
0
    if (ref == NULL) {
1953
  /*
1954
   * the base fragment must be ignored
1955
   */
1956
0
  if (bas->fragment != NULL) {
1957
0
      xmlFree(bas->fragment);
1958
0
      bas->fragment = NULL;
1959
0
  }
1960
0
  val = xmlSaveUri(bas);
1961
0
  goto done;
1962
0
    }
1963
1964
    /*
1965
     * 2) If the path component is empty and the scheme, authority, and
1966
     *    query components are undefined, then it is a reference to the
1967
     *    current document and we are done.  Otherwise, the reference URI's
1968
     *    query and fragment components are defined as found (or not found)
1969
     *    within the URI reference and not inherited from the base URI.
1970
     *
1971
     *    NOTE that in modern browsers, the parsing differs from the above
1972
     *    in the following aspect:  the query component is allowed to be
1973
     *    defined while still treating this as a reference to the current
1974
     *    document.
1975
     */
1976
0
    res = xmlCreateURI();
1977
0
    if (res == NULL)
1978
0
  goto done;
1979
0
    if ((ref->scheme == NULL) && (ref->path == NULL) &&
1980
0
  ((ref->authority == NULL) && (ref->server == NULL) &&
1981
0
         (ref->port == PORT_EMPTY))) {
1982
0
  if (bas->scheme != NULL)
1983
0
      res->scheme = xmlMemStrdup(bas->scheme);
1984
0
  if (bas->authority != NULL)
1985
0
      res->authority = xmlMemStrdup(bas->authority);
1986
0
  else {
1987
0
      if (bas->server != NULL)
1988
0
    res->server = xmlMemStrdup(bas->server);
1989
0
      if (bas->user != NULL)
1990
0
    res->user = xmlMemStrdup(bas->user);
1991
0
      res->port = bas->port;
1992
0
  }
1993
0
  if (bas->path != NULL)
1994
0
      res->path = xmlMemStrdup(bas->path);
1995
0
  if (ref->query_raw != NULL)
1996
0
      res->query_raw = xmlMemStrdup (ref->query_raw);
1997
0
  else if (ref->query != NULL)
1998
0
      res->query = xmlMemStrdup(ref->query);
1999
0
  else if (bas->query_raw != NULL)
2000
0
      res->query_raw = xmlMemStrdup(bas->query_raw);
2001
0
  else if (bas->query != NULL)
2002
0
      res->query = xmlMemStrdup(bas->query);
2003
0
  if (ref->fragment != NULL)
2004
0
      res->fragment = xmlMemStrdup(ref->fragment);
2005
0
  goto step_7;
2006
0
    }
2007
2008
    /*
2009
     * 3) If the scheme component is defined, indicating that the reference
2010
     *    starts with a scheme name, then the reference is interpreted as an
2011
     *    absolute URI and we are done.  Otherwise, the reference URI's
2012
     *    scheme is inherited from the base URI's scheme component.
2013
     */
2014
0
    if (ref->scheme != NULL) {
2015
0
  val = xmlSaveUri(ref);
2016
0
  goto done;
2017
0
    }
2018
0
    if (bas->scheme != NULL)
2019
0
  res->scheme = xmlMemStrdup(bas->scheme);
2020
2021
0
    if (ref->query_raw != NULL)
2022
0
  res->query_raw = xmlMemStrdup(ref->query_raw);
2023
0
    else if (ref->query != NULL)
2024
0
  res->query = xmlMemStrdup(ref->query);
2025
0
    if (ref->fragment != NULL)
2026
0
  res->fragment = xmlMemStrdup(ref->fragment);
2027
2028
    /*
2029
     * 4) If the authority component is defined, then the reference is a
2030
     *    network-path and we skip to step 7.  Otherwise, the reference
2031
     *    URI's authority is inherited from the base URI's authority
2032
     *    component, which will also be undefined if the URI scheme does not
2033
     *    use an authority component.
2034
     */
2035
0
    if ((ref->authority != NULL) || (ref->server != NULL) ||
2036
0
         (ref->port != PORT_EMPTY)) {
2037
0
  if (ref->authority != NULL)
2038
0
      res->authority = xmlMemStrdup(ref->authority);
2039
0
  else {
2040
0
            if (ref->server != NULL)
2041
0
                res->server = xmlMemStrdup(ref->server);
2042
0
      if (ref->user != NULL)
2043
0
    res->user = xmlMemStrdup(ref->user);
2044
0
            res->port = ref->port;
2045
0
  }
2046
0
  if (ref->path != NULL)
2047
0
      res->path = xmlMemStrdup(ref->path);
2048
0
  goto step_7;
2049
0
    }
2050
0
    if (bas->authority != NULL)
2051
0
  res->authority = xmlMemStrdup(bas->authority);
2052
0
    else if ((bas->server != NULL) || (bas->port != PORT_EMPTY)) {
2053
0
  if (bas->server != NULL)
2054
0
      res->server = xmlMemStrdup(bas->server);
2055
0
  if (bas->user != NULL)
2056
0
      res->user = xmlMemStrdup(bas->user);
2057
0
  res->port = bas->port;
2058
0
    }
2059
2060
    /*
2061
     * 5) If the path component begins with a slash character ("/"), then
2062
     *    the reference is an absolute-path and we skip to step 7.
2063
     */
2064
0
    if ((ref->path != NULL) && (ref->path[0] == '/')) {
2065
0
  res->path = xmlMemStrdup(ref->path);
2066
0
  goto step_7;
2067
0
    }
2068
2069
2070
    /*
2071
     * 6) If this step is reached, then we are resolving a relative-path
2072
     *    reference.  The relative path needs to be merged with the base
2073
     *    URI's path.  Although there are many ways to do this, we will
2074
     *    describe a simple method using a separate string buffer.
2075
     *
2076
     * Allocate a buffer large enough for the result string.
2077
     */
2078
0
    len = 2; /* extra / and 0 */
2079
0
    if (ref->path != NULL)
2080
0
  len += strlen(ref->path);
2081
0
    if (bas->path != NULL)
2082
0
  len += strlen(bas->path);
2083
0
    res->path = (char *) xmlMallocAtomic(len);
2084
0
    if (res->path == NULL) {
2085
0
        xmlURIErrMemory("resolving URI against base\n");
2086
0
  goto done;
2087
0
    }
2088
0
    res->path[0] = 0;
2089
2090
    /*
2091
     * a) All but the last segment of the base URI's path component is
2092
     *    copied to the buffer.  In other words, any characters after the
2093
     *    last (right-most) slash character, if any, are excluded.
2094
     */
2095
0
    cur = 0;
2096
0
    out = 0;
2097
0
    if (bas->path != NULL) {
2098
0
  while (bas->path[cur] != 0) {
2099
0
      while ((bas->path[cur] != 0) && (bas->path[cur] != '/'))
2100
0
    cur++;
2101
0
      if (bas->path[cur] == 0)
2102
0
    break;
2103
2104
0
      cur++;
2105
0
      while (out < cur) {
2106
0
    res->path[out] = bas->path[out];
2107
0
    out++;
2108
0
      }
2109
0
  }
2110
0
    }
2111
0
    res->path[out] = 0;
2112
2113
    /*
2114
     * b) The reference's path component is appended to the buffer
2115
     *    string.
2116
     */
2117
0
    if (ref->path != NULL && ref->path[0] != 0) {
2118
0
  indx = 0;
2119
  /*
2120
   * Ensure the path includes a '/'
2121
   */
2122
0
  if ((out == 0) && ((bas->server != NULL) || bas->port != PORT_EMPTY))
2123
0
      res->path[out++] = '/';
2124
0
  while (ref->path[indx] != 0) {
2125
0
      res->path[out++] = ref->path[indx++];
2126
0
  }
2127
0
    }
2128
0
    res->path[out] = 0;
2129
2130
    /*
2131
     * Steps c) to h) are really path normalization steps
2132
     */
2133
0
    xmlNormalizeURIPath(res->path);
2134
2135
0
step_7:
2136
2137
    /*
2138
     * 7) The resulting URI components, including any inherited from the
2139
     *    base URI, are recombined to give the absolute form of the URI
2140
     *    reference.
2141
     */
2142
0
    val = xmlSaveUri(res);
2143
2144
31.4k
done:
2145
31.4k
    if (ref != NULL)
2146
17.9k
  xmlFreeURI(ref);
2147
31.4k
    if (bas != NULL)
2148
0
  xmlFreeURI(bas);
2149
31.4k
    if (res != NULL)
2150
0
  xmlFreeURI(res);
2151
31.4k
    return(val);
2152
0
}
2153
2154
/**
2155
 * xmlBuildRelativeURI:
2156
 * @URI:  the URI reference under consideration
2157
 * @base:  the base value
2158
 *
2159
 * Expresses the URI of the reference in terms relative to the
2160
 * base.  Some examples of this operation include:
2161
 *     base = "http://site1.com/docs/book1.html"
2162
 *        URI input                        URI returned
2163
 *     docs/pic1.gif                    pic1.gif
2164
 *     docs/img/pic1.gif                img/pic1.gif
2165
 *     img/pic1.gif                     ../img/pic1.gif
2166
 *     http://site1.com/docs/pic1.gif   pic1.gif
2167
 *     http://site2.com/docs/pic1.gif   http://site2.com/docs/pic1.gif
2168
 *
2169
 *     base = "docs/book1.html"
2170
 *        URI input                        URI returned
2171
 *     docs/pic1.gif                    pic1.gif
2172
 *     docs/img/pic1.gif                img/pic1.gif
2173
 *     img/pic1.gif                     ../img/pic1.gif
2174
 *     http://site1.com/docs/pic1.gif   http://site1.com/docs/pic1.gif
2175
 *
2176
 *
2177
 * Note: if the URI reference is really weird or complicated, it may be
2178
 *       worthwhile to first convert it into a "nice" one by calling
2179
 *       xmlBuildURI (using 'base') before calling this routine,
2180
 *       since this routine (for reasonable efficiency) assumes URI has
2181
 *       already been through some validation.
2182
 *
2183
 * Returns a new URI string (to be freed by the caller) or NULL in case
2184
 * error.
2185
 */
2186
xmlChar *
2187
xmlBuildRelativeURI (const xmlChar * URI, const xmlChar * base)
2188
0
{
2189
0
    xmlChar *val = NULL;
2190
0
    int ret;
2191
0
    int ix;
2192
0
    int nbslash = 0;
2193
0
    int len;
2194
0
    xmlURIPtr ref = NULL;
2195
0
    xmlURIPtr bas = NULL;
2196
0
    xmlChar *bptr, *uptr, *vptr;
2197
0
    int remove_path = 0;
2198
2199
0
    if ((URI == NULL) || (*URI == 0))
2200
0
  return NULL;
2201
2202
    /*
2203
     * First parse URI into a standard form
2204
     */
2205
0
    ref = xmlCreateURI ();
2206
0
    if (ref == NULL)
2207
0
  return NULL;
2208
    /* If URI not already in "relative" form */
2209
0
    if (URI[0] != '.') {
2210
0
  ret = xmlParseURIReference (ref, (const char *) URI);
2211
0
  if (ret != 0)
2212
0
      goto done;   /* Error in URI, return NULL */
2213
0
    } else
2214
0
  ref->path = (char *)xmlStrdup(URI);
2215
2216
    /*
2217
     * Next parse base into the same standard form
2218
     */
2219
0
    if ((base == NULL) || (*base == 0)) {
2220
0
  val = xmlStrdup (URI);
2221
0
  goto done;
2222
0
    }
2223
0
    bas = xmlCreateURI ();
2224
0
    if (bas == NULL)
2225
0
  goto done;
2226
0
    if (base[0] != '.') {
2227
0
  ret = xmlParseURIReference (bas, (const char *) base);
2228
0
  if (ret != 0)
2229
0
      goto done;   /* Error in base, return NULL */
2230
0
    } else
2231
0
  bas->path = (char *)xmlStrdup(base);
2232
2233
    /*
2234
     * If the scheme / server on the URI differs from the base,
2235
     * just return the URI
2236
     */
2237
0
    if ((ref->scheme != NULL) &&
2238
0
  ((bas->scheme == NULL) ||
2239
0
   (xmlStrcmp ((xmlChar *)bas->scheme, (xmlChar *)ref->scheme)) ||
2240
0
   (xmlStrcmp ((xmlChar *)bas->server, (xmlChar *)ref->server)) ||
2241
0
         (bas->port != ref->port))) {
2242
0
  val = xmlStrdup (URI);
2243
0
  goto done;
2244
0
    }
2245
0
    if (xmlStrEqual((xmlChar *)bas->path, (xmlChar *)ref->path)) {
2246
0
  val = xmlStrdup(BAD_CAST "");
2247
0
  goto done;
2248
0
    }
2249
0
    if (bas->path == NULL) {
2250
0
  val = xmlStrdup((xmlChar *)ref->path);
2251
0
  goto done;
2252
0
    }
2253
0
    if (ref->path == NULL) {
2254
0
        ref->path = (char *) "/";
2255
0
  remove_path = 1;
2256
0
    }
2257
2258
    /*
2259
     * At this point (at last!) we can compare the two paths
2260
     *
2261
     * First we take care of the special case where either of the
2262
     * two path components may be missing (bug 316224)
2263
     */
2264
0
    bptr = (xmlChar *)bas->path;
2265
0
    {
2266
0
        xmlChar *rptr = (xmlChar *) ref->path;
2267
0
        int pos = 0;
2268
2269
        /*
2270
         * Next we compare the two strings and find where they first differ
2271
         */
2272
0
  if ((*rptr == '.') && (rptr[1] == '/'))
2273
0
            rptr += 2;
2274
0
  if ((*bptr == '.') && (bptr[1] == '/'))
2275
0
            bptr += 2;
2276
0
  else if ((*bptr == '/') && (*rptr != '/'))
2277
0
      bptr++;
2278
0
  while ((bptr[pos] == rptr[pos]) && (bptr[pos] != 0))
2279
0
      pos++;
2280
2281
0
  if (bptr[pos] == rptr[pos]) {
2282
0
      val = xmlStrdup(BAD_CAST "");
2283
0
      goto done;    /* (I can't imagine why anyone would do this) */
2284
0
  }
2285
2286
  /*
2287
   * In URI, "back up" to the last '/' encountered.  This will be the
2288
   * beginning of the "unique" suffix of URI
2289
   */
2290
0
  ix = pos;
2291
0
  for (; ix > 0; ix--) {
2292
0
      if (rptr[ix - 1] == '/')
2293
0
    break;
2294
0
  }
2295
0
  uptr = (xmlChar *)&rptr[ix];
2296
2297
  /*
2298
   * In base, count the number of '/' from the differing point
2299
   */
2300
0
  for (; bptr[ix] != 0; ix++) {
2301
0
      if (bptr[ix] == '/')
2302
0
    nbslash++;
2303
0
  }
2304
2305
  /*
2306
   * e.g: URI="foo/" base="foo/bar" -> "./"
2307
   */
2308
0
  if (nbslash == 0 && !uptr[0]) {
2309
0
      val = xmlStrdup(BAD_CAST "./");
2310
0
      goto done;
2311
0
  }
2312
2313
0
  len = xmlStrlen (uptr) + 1;
2314
0
    }
2315
2316
0
    if (nbslash == 0) {
2317
0
  if (uptr != NULL)
2318
      /* exception characters from xmlSaveUri */
2319
0
      val = xmlURIEscapeStr(uptr, BAD_CAST "/;&=+$,");
2320
0
  goto done;
2321
0
    }
2322
2323
    /*
2324
     * Allocate just enough space for the returned string -
2325
     * length of the remainder of the URI, plus enough space
2326
     * for the "../" groups, plus one for the terminator
2327
     */
2328
0
    val = (xmlChar *) xmlMalloc (len + 3 * nbslash);
2329
0
    if (val == NULL) {
2330
0
        xmlURIErrMemory("building relative URI\n");
2331
0
  goto done;
2332
0
    }
2333
0
    vptr = val;
2334
    /*
2335
     * Put in as many "../" as needed
2336
     */
2337
0
    for (; nbslash>0; nbslash--) {
2338
0
  *vptr++ = '.';
2339
0
  *vptr++ = '.';
2340
0
  *vptr++ = '/';
2341
0
    }
2342
    /*
2343
     * Finish up with the end of the URI
2344
     */
2345
0
    if (uptr != NULL) {
2346
0
        if ((vptr > val) && (len > 0) &&
2347
0
      (uptr[0] == '/') && (vptr[-1] == '/')) {
2348
0
      memcpy (vptr, uptr + 1, len - 1);
2349
0
      vptr[len - 2] = 0;
2350
0
  } else {
2351
0
      memcpy (vptr, uptr, len);
2352
0
      vptr[len - 1] = 0;
2353
0
  }
2354
0
    } else {
2355
0
  vptr[len - 1] = 0;
2356
0
    }
2357
2358
    /* escape the freshly-built path */
2359
0
    vptr = val;
2360
  /* exception characters from xmlSaveUri */
2361
0
    val = xmlURIEscapeStr(vptr, BAD_CAST "/;&=+$,");
2362
0
    xmlFree(vptr);
2363
2364
0
done:
2365
    /*
2366
     * Free the working variables
2367
     */
2368
0
    if (remove_path != 0)
2369
0
        ref->path = NULL;
2370
0
    if (ref != NULL)
2371
0
  xmlFreeURI (ref);
2372
0
    if (bas != NULL)
2373
0
  xmlFreeURI (bas);
2374
2375
0
    return val;
2376
0
}
2377
2378
/**
2379
 * xmlCanonicPath:
2380
 * @path:  the resource locator in a filesystem notation
2381
 *
2382
 * Constructs a canonic path from the specified path.
2383
 *
2384
 * Returns a new canonic path, or a duplicate of the path parameter if the
2385
 * construction fails. The caller is responsible for freeing the memory occupied
2386
 * by the returned string. If there is insufficient memory available, or the
2387
 * argument is NULL, the function returns NULL.
2388
 */
2389
#define IS_WINDOWS_PATH(p)          \
2390
  ((p != NULL) &&           \
2391
   (((p[0] >= 'a') && (p[0] <= 'z')) ||     \
2392
    ((p[0] >= 'A') && (p[0] <= 'Z'))) &&      \
2393
   (p[1] == ':') && ((p[2] == '/') || (p[2] == '\\')))
2394
xmlChar *
2395
xmlCanonicPath(const xmlChar *path)
2396
0
{
2397
/*
2398
 * For Windows implementations, additional work needs to be done to
2399
 * replace backslashes in pathnames with "forward slashes"
2400
 */
2401
#if defined(_WIN32)
2402
    int len = 0;
2403
    char *p = NULL;
2404
#endif
2405
0
    xmlURIPtr uri;
2406
0
    xmlChar *ret;
2407
0
    const xmlChar *absuri;
2408
2409
0
    if (path == NULL)
2410
0
  return(NULL);
2411
2412
#if defined(_WIN32)
2413
    /*
2414
     * We must not change the backslashes to slashes if the the path
2415
     * starts with \\?\
2416
     * Those paths can be up to 32k characters long.
2417
     * Was added specifically for OpenOffice, those paths can't be converted
2418
     * to URIs anyway.
2419
     */
2420
    if ((path[0] == '\\') && (path[1] == '\\') && (path[2] == '?') &&
2421
        (path[3] == '\\') )
2422
  return xmlStrdup((const xmlChar *) path);
2423
#endif
2424
2425
  /* sanitize filename starting with // so it can be used as URI */
2426
0
    if ((path[0] == '/') && (path[1] == '/') && (path[2] != '/'))
2427
0
        path++;
2428
2429
0
    if ((uri = xmlParseURI((const char *) path)) != NULL) {
2430
0
  xmlFreeURI(uri);
2431
0
  return xmlStrdup(path);
2432
0
    }
2433
2434
    /* Check if this is an "absolute uri" */
2435
0
    absuri = xmlStrstr(path, BAD_CAST "://");
2436
0
    if (absuri != NULL) {
2437
0
        int l, j;
2438
0
  unsigned char c;
2439
0
  xmlChar *escURI;
2440
2441
        /*
2442
   * this looks like an URI where some parts have not been
2443
   * escaped leading to a parsing problem.  Check that the first
2444
   * part matches a protocol.
2445
   */
2446
0
  l = absuri - path;
2447
  /* Bypass if first part (part before the '://') is > 20 chars */
2448
0
  if ((l <= 0) || (l > 20))
2449
0
      goto path_processing;
2450
  /* Bypass if any non-alpha characters are present in first part */
2451
0
  for (j = 0;j < l;j++) {
2452
0
      c = path[j];
2453
0
      if (!(((c >= 'a') && (c <= 'z')) || ((c >= 'A') && (c <= 'Z'))))
2454
0
          goto path_processing;
2455
0
  }
2456
2457
  /* Escape all except the characters specified in the supplied path */
2458
0
        escURI = xmlURIEscapeStr(path, BAD_CAST ":/?_.#&;=");
2459
0
  if (escURI != NULL) {
2460
      /* Try parsing the escaped path */
2461
0
      uri = xmlParseURI((const char *) escURI);
2462
      /* If successful, return the escaped string */
2463
0
      if (uri != NULL) {
2464
0
          xmlFreeURI(uri);
2465
0
    return escURI;
2466
0
      }
2467
0
            xmlFree(escURI);
2468
0
  }
2469
0
    }
2470
2471
0
path_processing:
2472
/* For Windows implementations, replace backslashes with 'forward slashes' */
2473
#if defined(_WIN32)
2474
    /*
2475
     * Create a URI structure
2476
     */
2477
    uri = xmlCreateURI();
2478
    if (uri == NULL) {    /* Guard against 'out of memory' */
2479
        return(NULL);
2480
    }
2481
2482
    len = xmlStrlen(path);
2483
    if ((len > 2) && IS_WINDOWS_PATH(path)) {
2484
        /* make the scheme 'file' */
2485
  uri->scheme = (char *) xmlStrdup(BAD_CAST "file");
2486
  /* allocate space for leading '/' + path + string terminator */
2487
  uri->path = xmlMallocAtomic(len + 2);
2488
  if (uri->path == NULL) {
2489
      xmlFreeURI(uri);  /* Guard against 'out of memory' */
2490
      return(NULL);
2491
  }
2492
  /* Put in leading '/' plus path */
2493
  uri->path[0] = '/';
2494
  p = uri->path + 1;
2495
  strncpy(p, (char *) path, len + 1);
2496
    } else {
2497
  uri->path = (char *) xmlStrdup(path);
2498
  if (uri->path == NULL) {
2499
      xmlFreeURI(uri);
2500
      return(NULL);
2501
  }
2502
  p = uri->path;
2503
    }
2504
    /* Now change all occurrences of '\' to '/' */
2505
    while (*p != '\0') {
2506
  if (*p == '\\')
2507
      *p = '/';
2508
  p++;
2509
    }
2510
2511
    if (uri->scheme == NULL) {
2512
  ret = xmlStrdup((const xmlChar *) uri->path);
2513
    } else {
2514
  ret = xmlSaveUri(uri);
2515
    }
2516
2517
    xmlFreeURI(uri);
2518
#else
2519
0
    ret = xmlStrdup((const xmlChar *) path);
2520
0
#endif
2521
0
    return(ret);
2522
0
}
2523
2524
/**
2525
 * xmlPathToURI:
2526
 * @path:  the resource locator in a filesystem notation
2527
 *
2528
 * Constructs an URI expressing the existing path
2529
 *
2530
 * Returns a new URI, or a duplicate of the path parameter if the
2531
 * construction fails. The caller is responsible for freeing the memory
2532
 * occupied by the returned string. If there is insufficient memory available,
2533
 * or the argument is NULL, the function returns NULL.
2534
 */
2535
xmlChar *
2536
xmlPathToURI(const xmlChar *path)
2537
0
{
2538
0
    xmlURIPtr uri;
2539
0
    xmlURI temp;
2540
0
    xmlChar *ret, *cal;
2541
2542
0
    if (path == NULL)
2543
0
        return(NULL);
2544
2545
0
    if ((uri = xmlParseURI((const char *) path)) != NULL) {
2546
0
  xmlFreeURI(uri);
2547
0
  return xmlStrdup(path);
2548
0
    }
2549
0
    cal = xmlCanonicPath(path);
2550
0
    if (cal == NULL)
2551
0
        return(NULL);
2552
#if defined(_WIN32)
2553
    /* xmlCanonicPath can return an URI on Windows (is that the intended behaviour?)
2554
       If 'cal' is a valid URI already then we are done here, as continuing would make
2555
       it invalid. */
2556
    if ((uri = xmlParseURI((const char *) cal)) != NULL) {
2557
  xmlFreeURI(uri);
2558
  return cal;
2559
    }
2560
    /* 'cal' can contain a relative path with backslashes. If that is processed
2561
       by xmlSaveURI, they will be escaped and the external entity loader machinery
2562
       will fail. So convert them to slashes. Misuse 'ret' for walking. */
2563
    ret = cal;
2564
    while (*ret != '\0') {
2565
  if (*ret == '\\')
2566
      *ret = '/';
2567
  ret++;
2568
    }
2569
#endif
2570
0
    memset(&temp, 0, sizeof(temp));
2571
0
    temp.path = (char *) cal;
2572
0
    ret = xmlSaveUri(&temp);
2573
0
    xmlFree(cal);
2574
0
    return(ret);
2575
0
}