Coverage Report

Created: 2026-09-14 07:05

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/curl/lib/cookie.c
Line
Count
Source
1
/***************************************************************************
2
 *                                  _   _ ____  _
3
 *  Project                     ___| | | |  _ \| |
4
 *                             / __| | | | |_) | |
5
 *                            | (__| |_| |  _ <| |___
6
 *                             \___|\___/|_| \_\_____|
7
 *
8
 * Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al.
9
 *
10
 * This software is licensed as described in the file COPYING, which
11
 * you should have received as part of this distribution. The terms
12
 * are also available at https://curl.se/docs/copyright.html.
13
 *
14
 * You may opt to use, copy, modify, merge, publish, distribute and/or sell
15
 * copies of the Software, and permit persons to whom the Software is
16
 * furnished to do so, under the terms of the COPYING file.
17
 *
18
 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
19
 * KIND, either express or implied.
20
 *
21
 * SPDX-License-Identifier: curl
22
 *
23
 ***************************************************************************/
24
#include "curl_setup.h"
25
26
#if !defined(CURL_DISABLE_HTTP) && !defined(CURL_DISABLE_COOKIES)
27
28
#include "urldata.h"
29
#include "cookie.h"
30
#include "psl.h"
31
#include "curl_trc.h"
32
#include "transfer.h"
33
#include "slist.h"
34
#include "curl_share.h"
35
#include "strcase.h"
36
#include "curl_fopen.h"
37
#include "curl_get_line.h"
38
#include "curl_memrchr.h"
39
#include "parsedate.h"
40
#include "curlx/strdup.h"
41
#include "llist.h"
42
#include "curlx/strparse.h"
43
44
/* number of seconds in 400 days */
45
9.09k
#define COOKIES_MAXAGE (400 * 24 * 3600)
46
47
/* Make sure cookies never expire further away in time than 400 days into the
48
   future. (from RFC6265bis draft-19)
49
50
   For the sake of easier testing, align the capped time to an even 60 second
51
   boundary. */
52
static void cap_expires(time_t now, struct Cookie *co)
53
16.1k
{
54
16.1k
  if(co->expires && (TIME_T_MAX - COOKIES_MAXAGE - 30) > now) {
55
4.54k
    timediff_t cap = now + COOKIES_MAXAGE;
56
4.54k
    if(co->expires > cap) {
57
806
      cap += 30;
58
806
      co->expires = (cap / 60) * 60;
59
806
    }
60
4.54k
  }
61
16.1k
}
62
63
static void freecookie(struct Cookie *co, bool maintoo)
64
34.9k
{
65
34.9k
  curlx_free(co->domain);
66
34.9k
  curlx_free(co->path);
67
34.9k
  curlx_free(co->name);
68
34.9k
  curlx_free(co->value);
69
34.9k
  if(maintoo)
70
12.5k
    curlx_free(co);
71
34.9k
}
72
73
static bool cookie_tailmatch(const char *cookie_domain,
74
                             const size_t cookie_domain_len,
75
                             const char *hostname)
76
21.8k
{
77
21.8k
  size_t hostname_len = strlen(hostname);
78
79
21.8k
  if(hostname_len < cookie_domain_len)
80
961
    return FALSE;
81
82
20.8k
  if(!curl_strnequal(cookie_domain,
83
20.8k
                     hostname + hostname_len - cookie_domain_len,
84
20.8k
                     cookie_domain_len))
85
311
    return FALSE;
86
87
  /*
88
   * A lead char of cookie_domain is not '.'.
89
   * RFC6265 4.1.2.3. The Domain Attribute says:
90
   * For example, if the value of the Domain attribute is
91
   * "example.com", the user agent will include the cookie in the Cookie
92
   * header when making HTTP requests to example.com, www.example.com, and
93
   * www.corp.example.com.
94
   */
95
20.5k
  if(hostname_len == cookie_domain_len)
96
19.1k
    return TRUE;
97
1.40k
  if('.' == *(hostname + hostname_len - cookie_domain_len - 1))
98
1.29k
    return TRUE;
99
107
  return FALSE;
100
1.40k
}
101
102
/*
103
 * matching cookie path and URL path
104
 * RFC6265 5.1.4 Paths and Path-Match
105
 */
106
static bool pathmatch(const char *cookie_path, const char *uri_path)
107
0
{
108
0
  size_t cookie_path_len;
109
0
  size_t uri_path_len;
110
0
  bool ret = FALSE;
111
112
  /* cookie_path must not have last '/' separator. ex: /sample */
113
0
  cookie_path_len = strlen(cookie_path);
114
0
  if(cookie_path_len == 1) {
115
    /* cookie_path must be '/' */
116
0
    return TRUE;
117
0
  }
118
119
  /* #-fragments are already cut off! */
120
0
  if(strlen(uri_path) == 0 || uri_path[0] != '/')
121
0
    uri_path = "/";
122
123
  /*
124
   * here, RFC6265 5.1.4 says
125
   *  4. Output the characters of the uri-path from the first character up
126
   *     to, but not including, the right-most %x2F ("/").
127
   *  but URL path /hoge?fuga=xxx means /hoge/index.cgi?fuga=xxx in some site
128
   *  without redirect.
129
   *  Ignore this algorithm because /hoge is uri path for this case
130
   *  (uri path is not /).
131
   */
132
133
0
  uri_path_len = strlen(uri_path);
134
135
0
  if(uri_path_len < cookie_path_len)
136
0
    goto pathmatched;
137
138
  /* not using checkprefix() because matching should be case-sensitive */
139
0
  if(strncmp(cookie_path, uri_path, cookie_path_len))
140
0
    goto pathmatched;
141
142
  /* The cookie-path and the uri-path are identical. */
143
0
  if(cookie_path_len == uri_path_len) {
144
0
    ret = TRUE;
145
0
    goto pathmatched;
146
0
  }
147
148
  /* here, cookie_path_len < uri_path_len */
149
0
  if(uri_path[cookie_path_len] == '/') {
150
0
    ret = TRUE;
151
0
    goto pathmatched;
152
0
  }
153
154
0
pathmatched:
155
0
  return ret;
156
0
}
157
158
/*
159
 * Return the top-level domain, for optimal hashing.
160
 */
161
static const char *get_top_domain(const char * const domain, size_t *outlen)
162
10.9k
{
163
10.9k
  size_t len = 0;
164
10.9k
  const char *first = NULL, *last;
165
166
10.9k
  if(domain) {
167
10.9k
    len = strlen(domain);
168
10.9k
    last = memrchr(domain, '.', len);
169
10.9k
    if(last) {
170
3.06k
      first = memrchr(domain, '.', (last - domain));
171
3.06k
      if(first)
172
1.80k
        len -= (++first - domain);
173
3.06k
    }
174
10.9k
  }
175
176
10.9k
  if(outlen)
177
10.9k
    *outlen = len;
178
179
10.9k
  return first ? first : domain;
180
10.9k
}
181
182
/* Avoid C1001, an "internal error" with MSVC14 */
183
#if defined(_MSC_VER) && (_MSC_VER == 1900)
184
#pragma optimize("", off)
185
#endif
186
187
/*
188
 * A case-insensitive hash for the cookie domains.
189
 */
190
static size_t cookie_hash_domain(const char *domain, const size_t len)
191
10.9k
{
192
10.9k
  const char *end = domain + len;
193
10.9k
  size_t h = 5381;
194
195
40.2k
  while(domain < end) {
196
29.3k
    size_t j = (size_t)Curl_raw_toupper(*domain++);
197
29.3k
    h += h << 5;
198
29.3k
    h ^= j;
199
29.3k
  }
200
201
10.9k
  return (h % COOKIE_HASH_SIZE);
202
10.9k
}
203
204
#if defined(_MSC_VER) && (_MSC_VER == 1900)
205
#pragma optimize("", on)
206
#endif
207
208
/*
209
 * Hash this domain.
210
 */
211
static size_t cookiehash(const char * const domain)
212
25.1k
{
213
25.1k
  const char *top;
214
25.1k
  size_t len;
215
216
25.1k
  if(!domain || Curl_host_is_ipnum(domain))
217
14.2k
    return 0;
218
219
10.9k
  top = get_top_domain(domain, &len);
220
10.9k
  return cookie_hash_domain(top, len);
221
25.1k
}
222
223
/*
224
 * cookie path sanitize
225
 */
226
static char *sanitize_cookie_path(const char *cookie_path, size_t len)
227
11.2k
{
228
  /* some sites send path attribute within '"'. */
229
11.2k
  if(len && (cookie_path[0] == '\"')) {
230
270
    cookie_path++;
231
270
    len--;
232
233
270
    if(len && (cookie_path[len - 1] == '\"'))
234
75
      len--;
235
270
  }
236
237
  /* RFC6265 5.2.4 The Path Attribute */
238
11.2k
  if(!len || (cookie_path[0] != '/'))
239
    /* Let cookie-path be the default-path. */
240
343
    return curlx_strdup("/");
241
242
  /* remove trailing slash when path is non-empty */
243
  /* convert /hoge/ to /hoge */
244
10.8k
  if(len > 1 && cookie_path[len - 1] == '/')
245
1.38k
    len--;
246
247
10.8k
  return curlx_memdup0(cookie_path, len);
248
11.2k
}
249
250
/*
251
 * strstore
252
 *
253
 * A thin wrapper around curlx_memdup0().
254
 */
255
static CURLcode strstore(char **str, const char *newstr, size_t len)
256
25.5k
{
257
25.5k
  DEBUGASSERT(str);
258
25.5k
  *str = curlx_memdup0(newstr, len);
259
25.5k
  if(!*str)
260
0
    return CURLE_OUT_OF_MEMORY;
261
25.5k
  return CURLE_OK;
262
25.5k
}
263
264
/*
265
 * remove_expired
266
 *
267
 * Remove expired cookies from the hash by inspecting the expires timestamp on
268
 * each cookie in the hash, freeing and deleting any where the timestamp is in
269
 * the past. If the cookiejar has recorded the next timestamp at which one or
270
 * more cookies expire, then processing will exit early in case this timestamp
271
 * is in the future.
272
 */
273
static void remove_expired(struct CookieInfo *ci)
274
42.2k
{
275
42.2k
  struct Cookie *co;
276
42.2k
  curl_off_t now = (curl_off_t)time(NULL);
277
42.2k
  unsigned int i;
278
279
  /*
280
   * If the earliest expiration timestamp in the jar is in the future we can
281
   * skip scanning the whole jar and instead exit early as there will not be
282
   * any cookies to evict. If we need to evict, reset the next_expiration
283
   * counter in order to track the next one. In case the recorded first
284
   * expiration is the max offset, then perform the safe fallback of checking
285
   * all cookies.
286
   */
287
42.2k
  if(now < ci->next_expiration &&
288
41.0k
     ci->next_expiration != CURL_OFF_T_MAX)
289
3.07k
    return;
290
39.1k
  else
291
39.1k
    ci->next_expiration = CURL_OFF_T_MAX;
292
293
2.50M
  for(i = 0; i < COOKIE_HASH_SIZE; i++) {
294
2.46M
    struct Curl_llist_node *n;
295
2.46M
    struct Curl_llist_node *e = NULL;
296
297
2.50M
    for(n = Curl_llist_head(&ci->cookielist[i]); n; n = e) {
298
42.8k
      co = Curl_node_elem(n);
299
42.8k
      e = Curl_node_next(n);
300
42.8k
      if(co->expires) {
301
4.10k
        if(co->expires < now) {
302
1.11k
          Curl_node_remove(n);
303
1.11k
          freecookie(co, TRUE);
304
1.11k
          ci->numcookies--;
305
1.11k
        }
306
2.99k
        else if(co->expires < ci->next_expiration)
307
          /*
308
           * If this cookie has an expiration timestamp earlier than what we
309
           * have seen so far then record it for the next round of expirations.
310
           */
311
1.03k
          ci->next_expiration = co->expires;
312
4.10k
      }
313
42.8k
    }
314
2.46M
  }
315
39.1k
}
316
317
#ifndef USE_LIBPSL
318
/* Make sure domain contains a dot or is localhost. */
319
static bool bad_domain(const char *domain, size_t len)
320
3.12k
{
321
3.12k
  if((len == 9) && curl_strnequal(domain, "localhost", 9))
322
74
    return FALSE;
323
3.05k
  else {
324
    /* there must be a dot present, but that dot must not be a trailing dot */
325
3.05k
    const char *dot = memchr(domain, '.', len);
326
3.05k
    if(dot) {
327
2.33k
      size_t i = dot - domain;
328
2.33k
      if((len - i) > 1)
329
        /* the dot is not the last byte */
330
2.28k
        return FALSE;
331
2.33k
    }
332
3.05k
  }
333
767
  return TRUE;
334
3.12k
}
335
#endif
336
337
/* RFC 6265 section 4.1.1 says a server should accept this range:
338
339
   cookie-octet    = %x21 / %x23-2B / %x2D-3A / %x3C-5B / %x5D-7E
340
341
   Yet, Firefox and Chrome as of June 2022 accept space, comma and
342
   double-quotes fine. The prime reason for filtering out control bytes is that
343
   some HTTP servers return 400 for requests that contain such.
344
 */
345
static bool invalid_octets(const char *ptr, size_t len)
346
112k
{
347
112k
  const unsigned char *p = (const unsigned char *)ptr;
348
  /* Reject all bytes \x01 - \x1f + \x7f */
349
1.18M
  while(len && *p) {
350
1.07M
    if((*p < 0x20) || (*p == 0x7f))
351
3.00k
      return TRUE;
352
1.07M
    p++;
353
1.07M
    len--;
354
1.07M
  }
355
109k
  return FALSE;
356
112k
}
357
358
/* The maximum length we accept a date string for the 'expire' keyword. The
359
   standard date formats are within the 30 bytes range. This adds an extra
360
   margin to make sure it realistically works with what is used out there. */
361
13.5k
#define MAX_DATE_LENGTH 80
362
363
14.9k
#define COOKIE_NAME   0
364
14.9k
#define COOKIE_VALUE  1
365
3.12k
#define COOKIE_DOMAIN 2
366
2.21k
#define COOKIE_PATH   3
367
368
#define COOKIE_PIECES 4 /* the list above */
369
370
static CURLcode storecookie(struct Cookie *co, const struct Curl_str *cp,
371
                            const char *path, const char *domain)
372
12.4k
{
373
12.4k
  CURLcode result;
374
12.4k
  result = strstore(&co->name, curlx_str(&cp[COOKIE_NAME]),
375
12.4k
                    curlx_strlen(&cp[COOKIE_NAME]));
376
12.4k
  if(!result)
377
12.4k
    result = strstore(&co->value, curlx_str(&cp[COOKIE_VALUE]),
378
12.4k
                      curlx_strlen(&cp[COOKIE_VALUE]));
379
12.4k
  if(!result) {
380
12.4k
    size_t plen = 0;
381
12.4k
    if(curlx_strlen(&cp[COOKIE_PATH])) {
382
1.71k
      path = curlx_str(&cp[COOKIE_PATH]);
383
1.71k
      plen = curlx_strlen(&cp[COOKIE_PATH]);
384
1.71k
    }
385
10.7k
    else if(path) {
386
      /* No path was given in the header line, set the default */
387
9.44k
      const char *endslash = strrchr(path, '/');
388
9.44k
      if(endslash)
389
9.44k
        plen = endslash - path + 1; /* include end slash */
390
0
      else
391
0
        plen = strlen(path);
392
9.44k
    }
393
394
12.4k
    if(path) {
395
11.1k
      co->path = sanitize_cookie_path(path, plen);
396
11.1k
      if(!co->path)
397
0
        result = CURLE_OUT_OF_MEMORY;
398
11.1k
    }
399
12.4k
  }
400
12.4k
  if(!result) {
401
12.4k
    if(curlx_strlen(&cp[COOKIE_DOMAIN]))
402
576
      result = strstore(&co->domain, curlx_str(&cp[COOKIE_DOMAIN]),
403
576
                        curlx_strlen(&cp[COOKIE_DOMAIN]));
404
11.9k
    else if(domain) {
405
      /* no domain was given in the header line, set the default */
406
10.6k
      co->domain = curlx_strdup(domain);
407
10.6k
      if(!co->domain)
408
0
        result = CURLE_OUT_OF_MEMORY;
409
10.6k
    }
410
12.4k
  }
411
12.4k
  return result;
412
12.4k
}
413
414
/*
415
 * Parse the first name/value pair of the cookie header, which is the actual
416
 * cookie name and value.
417
 */
418
static bool parse_first_pair(struct Curl_easy *data, struct Cookie *co,
419
                             struct Curl_str *cookie,
420
                             struct Curl_str *name,
421
                             struct Curl_str *val,
422
                             bool sep)
423
16.7k
{
424
  /* The first name/value pair is the actual cookie name */
425
16.7k
  if(!sep || !curlx_strlen(name)) {
426
1.84k
    infof(data, "invalid cookie, dropped");
427
1.84k
    return FALSE;
428
1.84k
  }
429
430
  /*
431
   * Check for too long individual name or contents. Chrome and Firefox
432
   * support 4095 or 4096 bytes combo
433
   */
434
14.9k
  if((curlx_strlen(name) + curlx_strlen(val)) > MAX_NAME) {
435
10
    infof(data, "oversized cookie dropped, name/val %zu + %zu bytes",
436
10
          curlx_strlen(name), curlx_strlen(val));
437
10
    return FALSE;
438
10
  }
439
440
  /* Check if we have a reserved prefix set. */
441
14.9k
  if(!strncmp("__Secure-", curlx_str(name), 9))
442
302
    co->prefix_secure = TRUE;
443
14.6k
  else if(!strncmp("__Host-", curlx_str(name), 7))
444
463
    co->prefix_host = TRUE;
445
446
14.9k
  cookie[COOKIE_NAME] = *name;
447
14.9k
  cookie[COOKIE_VALUE] = *val;
448
14.9k
  return TRUE;
449
14.9k
}
450
451
static bool parse_flag(struct Curl_easy *data, struct Cookie *co,
452
                       const struct CookieInfo *ci,
453
                       struct Curl_str *name, bool secure)
454
11.5k
{
455
  /*
456
   * secure cookies are only allowed to be set when the connection is
457
   * using a secure protocol, or when the cookie is being set by
458
   * reading from file
459
   */
460
11.5k
  if(curlx_str_casecompare(name, "secure")) {
461
751
    if(secure || !ci->running)
462
489
      co->secure = TRUE;
463
262
    else {
464
262
      infof(data, "skipped cookie because not 'secure'");
465
262
      return FALSE;
466
262
    }
467
751
  }
468
10.8k
  else if(curlx_str_casecompare(name, "httponly"))
469
202
    co->httponly = TRUE;
470
471
11.2k
  return TRUE;
472
11.5k
}
473
474
static bool parse_domain(struct Curl_easy *data, struct Cookie *co,
475
                         struct Curl_str *cookie_domain,
476
                         struct Curl_str *val,
477
                         const char **domainp)
478
3.12k
{
479
3.12k
  bool is_ip;
480
3.12k
  const char *domain = *domainp;
481
3.12k
  const char *v = curlx_str(val);
482
  /*
483
   * Now, we make sure that our host is within the given domain, or
484
   * the given domain is not valid and thus cannot be set.
485
   */
486
487
3.12k
  if('.' == *v)
488
1.14k
    curlx_str_nudge(val, 1);
489
490
3.12k
#ifndef USE_LIBPSL
491
  /*
492
   * Without PSL we do not know when the incoming cookie is set on a
493
   * TLD or otherwise "protected" suffix. To reduce risk, we require a
494
   * dot OR the exact hostname being "localhost".
495
   */
496
3.12k
  if(bad_domain(curlx_str(val), curlx_strlen(val))) {
497
767
    *domainp = ":";
498
767
    domain = ":";
499
767
  }
500
3.12k
#endif
501
502
3.12k
  is_ip = Curl_host_is_ipnum(domain ? domain : curlx_str(val));
503
504
3.12k
  if(!domain ||
505
1.98k
     (is_ip &&
506
657
      !strncmp(curlx_str(val), domain, curlx_strlen(val)) &&
507
335
      (curlx_strlen(val) == strlen(domain))) ||
508
1.89k
     (!is_ip && cookie_tailmatch(curlx_str(val),
509
1.93k
                                  curlx_strlen(val), domain))) {
510
1.93k
    *cookie_domain = *val;
511
1.93k
    if(!is_ip)
512
1.84k
      co->tailmatch = TRUE; /* we always do that if the domain name was
513
                               given */
514
1.93k
  }
515
1.18k
  else {
516
    /*
517
     * We did not get a tailmatch and then the attempted set domain is
518
     * not a domain to which the current host belongs. Mark as bad.
519
     */
520
1.18k
    infof(data, "skipped cookie with bad tailmatch domain: %s",
521
1.18k
          curlx_str(val));
522
1.18k
    return FALSE;
523
1.18k
  }
524
1.93k
  return TRUE;
525
3.12k
}
526
527
static void parse_maxage(struct Cookie *co, struct Curl_str *val,
528
                         time_t *nowp)
529
2.71k
{
530
2.71k
  int rc;
531
2.71k
  const char *maxage = curlx_str(val);
532
2.71k
  if(*maxage == '\"')
533
361
    maxage++;
534
2.71k
  rc = curlx_str_number(&maxage, &co->expires, CURL_OFF_T_MAX);
535
2.71k
  if(!*nowp)
536
1.08k
    *nowp = time(NULL);
537
2.71k
  switch(rc) {
538
122
  case STRE_OVERFLOW:
539
    /* overflow, used max value */
540
122
    co->expires = CURL_OFF_T_MAX;
541
122
    break;
542
764
  default:
543
    /* negative or otherwise bad, expire */
544
764
    co->expires = 1;
545
764
    break;
546
1.83k
  case STRE_OK:
547
1.83k
    if(!co->expires)
548
514
      co->expires = 1; /* expire now */
549
1.31k
    else if(CURL_OFF_T_MAX - *nowp < co->expires)
550
      /* would overflow */
551
80
      co->expires = CURL_OFF_T_MAX;
552
1.23k
    else
553
1.23k
      co->expires += *nowp;
554
1.83k
    break;
555
2.71k
  }
556
2.71k
  cap_expires(*nowp, co);
557
2.71k
}
558
559
static void parse_expires(struct Cookie *co, struct Curl_str *val,
560
                          time_t *nowp)
561
13.8k
{
562
  /*
563
   * Let max-age have priority.
564
   *
565
   * If the date cannot get parsed for whatever reason, the cookie
566
   * will be treated as a session cookie
567
   */
568
13.8k
  if(!co->expires && (curlx_strlen(val) < MAX_DATE_LENGTH)) {
569
13.4k
    char dbuf[MAX_DATE_LENGTH + 1];
570
13.4k
    time_t date = 0;
571
13.4k
    memcpy(dbuf, curlx_str(val), curlx_strlen(val));
572
13.4k
    dbuf[curlx_strlen(val)] = 0;
573
13.4k
    if(!Curl_getdate_capped(dbuf, &date)) {
574
1.83k
      if(!date)
575
1
        date++;
576
1.83k
      co->expires = (curl_off_t)date;
577
1.83k
    }
578
11.5k
    else
579
11.5k
      co->expires = 0;
580
13.4k
    if(!*nowp)
581
3.21k
      *nowp = time(NULL);
582
13.4k
    cap_expires(*nowp, co);
583
13.4k
  }
584
13.8k
}
585
586
/* this function returns errors on OOM etc, not for cookie format problems */
587
static CURLcode
588
parse_cookie_header(struct Curl_easy *data,
589
                    struct Cookie *co,
590
                    const struct CookieInfo *ci,
591
                    bool *okay, /* if the cookie was fine */
592
                    const char *ptr, /* the header */
593
                    const char *domain, /* default domain */
594
                    /* full path used when this cookie is set */
595
                    const char *path,
596
                    bool secure_origin)
597
19.2k
{
598
  /* This line was read off an HTTP-header */
599
19.2k
  time_t now = 0;
600
19.2k
  size_t linelength = strlen(ptr);
601
19.2k
  CURLcode result = CURLE_OK;
602
19.2k
  struct Curl_str cookie[COOKIE_PIECES];
603
19.2k
  *okay = FALSE;
604
19.2k
  if(linelength > MAX_COOKIE_LINE)
605
    /* discard overly long lines at once */
606
111
    return CURLE_OK;
607
608
  /* memset instead of initializer because gcc 4.8.1 is silly */
609
19.1k
  memset(cookie, 0, sizeof(cookie));
610
66.6k
  do {
611
66.6k
    struct Curl_str name;
612
613
    /* we have a <name>=<value> pair or a stand-alone word here */
614
66.6k
    if(!curlx_str_cspn(&ptr, &name, ";\r\n=")) {
615
62.9k
      struct Curl_str val;
616
62.9k
      bool sep = FALSE;
617
62.9k
      curlx_str_trimblanks(&name);
618
619
62.9k
      if(invalid_octets(curlx_str(&name), curlx_strlen(&name))) {
620
1.49k
        infof(data, "invalid octets in name, cookie dropped");
621
1.49k
        return CURLE_OK;
622
1.49k
      }
623
624
61.4k
      if(!curlx_str_single(&ptr, '=')) {
625
48.1k
        sep = TRUE; /* a '=' was used */
626
48.1k
        if(!curlx_str_cspn(&ptr, &val, ";\r\n"))
627
34.0k
          curlx_str_trimblanks(&val);
628
629
48.1k
        if(invalid_octets(curlx_str(&val), curlx_strlen(&val))) {
630
1.49k
          infof(data, "invalid octets in value, cookie dropped");
631
1.49k
          return CURLE_OK;
632
1.49k
        }
633
48.1k
      }
634
13.3k
      else
635
13.3k
        curlx_str_init(&val);
636
637
59.9k
      if(!curlx_strlen(&cookie[COOKIE_NAME])) {
638
16.7k
        if(!parse_first_pair(data, co, cookie, &name, &val, sep))
639
1.85k
          return CURLE_OK;
640
16.7k
      }
641
43.2k
      else if(!sep) {
642
11.5k
        if(!parse_flag(data, co, ci, &name, secure_origin))
643
262
          return CURLE_OK;
644
11.5k
      }
645
31.6k
      else if(curlx_str_casecompare(&name, "path"))
646
2.21k
        cookie[COOKIE_PATH] = val;
647
29.4k
      else if(curlx_str_casecompare(&name, "domain") && curlx_strlen(&val)) {
648
3.12k
        if(!parse_domain(data, co, &cookie[COOKIE_DOMAIN], &val, &domain))
649
1.18k
          return CURLE_OK;
650
3.12k
      }
651
26.3k
      else if(curlx_str_casecompare(&name, "max-age") && curlx_strlen(&val))
652
2.71k
        parse_maxage(co, &val, &now);
653
23.5k
      else if(curlx_str_casecompare(&name, "expires") && curlx_strlen(&val))
654
13.8k
        parse_expires(co, &val, &now);
655
59.9k
    }
656
66.6k
  } while(!curlx_str_single(&ptr, ';'));
657
658
12.8k
  if(curlx_strlen(&cookie[COOKIE_NAME])) {
659
    /* the header was fine, now store the data */
660
12.4k
    result = storecookie(co, &cookie[0], path, domain);
661
12.4k
    if(!result)
662
12.4k
      *okay = TRUE;
663
12.4k
  }
664
12.8k
  return result;
665
19.1k
}
666
667
static CURLcode parse_netscape(struct Cookie *co,
668
                               const struct CookieInfo *ci,
669
                               bool *okay,
670
                               const char *lineptr,
671
                               bool secure_origin)
672
15.6k
{
673
  /*
674
   * This line is NOT an HTTP header style line, we do offer support for
675
   * reading the odd netscape cookies-file format here
676
   */
677
15.6k
  const char *ptr, *next;
678
15.6k
  int fields;
679
15.6k
  size_t len;
680
15.6k
  *okay = FALSE;
681
682
  /*
683
   * In 2008, Internet Explorer introduced HTTP-only cookies to prevent XSS
684
   * attacks. Cookies marked httpOnly are not accessible to JavaScript. In
685
   * Firefox's cookie files, they are prefixed #HttpOnly_ and the rest
686
   * remains as usual, so we skip 10 characters of the line.
687
   */
688
15.6k
  if(!strncmp(lineptr, "#HttpOnly_", 10)) {
689
1
    lineptr += 10;
690
1
    co->httponly = TRUE;
691
1
  }
692
693
15.6k
  if(lineptr[0] == '#')
694
    /* do not even try the comments */
695
80
    return CURLE_OK;
696
697
  /*
698
   * Now loop through the fields and init the struct we already have
699
   * allocated
700
   */
701
15.5k
  fields = 0;
702
34.4k
  for(next = lineptr; next; fields++) {
703
18.8k
    ptr = next;
704
18.8k
    len = strcspn(ptr, "\t\r\n");
705
18.8k
    next = (ptr[len] == '\t' ? &ptr[len + 1] : NULL);
706
18.8k
    switch(fields) {
707
15.5k
    case 0:
708
15.5k
      if(ptr[0] == '.') { /* skip preceding dots */
709
4
        ptr++;
710
4
        len--;
711
4
      }
712
15.5k
      co->domain = curlx_memdup0(ptr, len);
713
15.5k
      if(!co->domain)
714
0
        return CURLE_OUT_OF_MEMORY;
715
15.5k
      break;
716
15.5k
    case 1:
717
      /*
718
       * flag: A TRUE/FALSE value indicating if all machines within a given
719
       * domain can access the variable. Set TRUE when the cookie says
720
       * .example.com and to false when the domain is complete www.example.com
721
       */
722
672
      co->tailmatch = !!curl_strnequal(ptr, "TRUE", len);
723
672
      break;
724
669
    case 2:
725
      /* The file format allows the path field to remain not filled in */
726
669
      if(strncmp("TRUE", ptr, len) && strncmp("FALSE", ptr, len)) {
727
        /* only if the path does not look like a boolean option! */
728
80
        co->path = sanitize_cookie_path(ptr, len);
729
80
        if(!co->path)
730
0
          return CURLE_OUT_OF_MEMORY;
731
80
        break;
732
80
      }
733
589
      else {
734
        /* this does not look like a path, make one up! */
735
589
        co->path = curlx_strdup("/");
736
589
        if(!co->path)
737
0
          return CURLE_OUT_OF_MEMORY;
738
589
      }
739
589
      fields++; /* add a field and fall down to secure */
740
589
      FALLTHROUGH();
741
596
    case 3:
742
596
      co->secure = FALSE;
743
596
      if(curl_strnequal(ptr, "TRUE", len)) {
744
588
        if(secure_origin || ci->running)
745
588
          co->secure = TRUE;
746
0
        else
747
0
          return CURLE_OK;
748
588
      }
749
596
      break;
750
596
    case 4:
751
590
      if(curlx_str_number(&ptr, &co->expires, CURL_OFF_T_MAX))
752
47
        return CURLE_OK;
753
543
      break;
754
543
    case 5:
755
533
      co->name = curlx_memdup0(ptr, len);
756
533
      if(!co->name)
757
0
        return CURLE_OUT_OF_MEMORY;
758
533
      else {
759
        /* For Netscape file format cookies we check prefix on the name.
760
           These prefixes are matched case sensitively, same as on the
761
           header path and as the 6265bis document specifies. */
762
533
        if(!strncmp("__Secure-", co->name, 9))
763
2
          co->prefix_secure = TRUE;
764
531
        else if(!strncmp("__Host-", co->name, 7))
765
4
          co->prefix_host = TRUE;
766
533
      }
767
533
      break;
768
533
    case 6:
769
35
      co->value = curlx_memdup0(ptr, len);
770
35
      if(!co->value)
771
0
        return CURLE_OUT_OF_MEMORY;
772
35
      break;
773
18.8k
    }
774
18.8k
  }
775
15.5k
  if(fields == 6) {
776
    /* we got a cookie with blank contents, fix it */
777
498
    co->value = curlx_strdup("");
778
498
    if(!co->value)
779
0
      return CURLE_OUT_OF_MEMORY;
780
498
    else
781
498
      fields++;
782
498
  }
783
784
15.5k
  if(fields != 7)
785
    /* we did not find the sufficient number of fields */
786
14.9k
    return CURLE_OK;
787
788
  /* Reject control octets in the name or value, matching the filtering done
789
     for cookies set over HTTP. A cookie loaded from a file is later sent in
790
     request headers, so the same bytes that make a server reject a request
791
     must not slip in through the file. */
792
520
  if(invalid_octets(co->name, strlen(co->name)) ||
793
502
     invalid_octets(co->value, strlen(co->value)))
794
23
    return CURLE_OK;
795
796
497
  *okay = TRUE;
797
497
  return CURLE_OK;
798
520
}
799
800
static bool is_public_suffix(struct Curl_easy *data,
801
                             struct Cookie *co,
802
                             const char *domain)
803
10.9k
{
804
#ifdef USE_LIBPSL
805
  /*
806
   * Check if the domain is a Public Suffix and if yes, ignore the cookie.
807
   * 'domain' is NULL when the cookie is loaded from file or
808
   * CURLOPT_COOKIELIST.
809
   */
810
  DEBUGASSERT(data);
811
  DEBUGASSERT(co);
812
  DEBUGF(infof(data, "PSL check set-cookie '%s' for domain=%s in %s",
813
               co->name, co->domain ? co->domain : "[blank]",
814
               domain ? domain : "[file]"));
815
  if(!co->domain || Curl_host_is_ipnum(co->domain))
816
    return FALSE;
817
818
  else {
819
    bool acceptable = FALSE;
820
    char lcase[256];
821
    char lcookie[256];
822
    size_t dlen = domain ? strlen(domain) : 0;
823
    size_t clen = strlen(co->domain);
824
825
    /* trim trailing dots */
826
    if(dlen && (domain[dlen - 1] == '.'))
827
      dlen--;
828
    if(clen && (co->domain[clen - 1] == '.'))
829
      clen--;
830
831
    if((dlen < sizeof(lcase)) && (clen < sizeof(lcookie))) {
832
      const psl_ctx_t *psl = Curl_psl_use(data);
833
      if(psl) {
834
        /* the PSL check requires lowercase domain name and pattern */
835
        Curl_strntolower(lcookie, co->domain, clen);
836
        lcookie[clen] = 0;
837
        if(domain) {
838
          Curl_strntolower(lcase, domain, dlen);
839
          lcase[dlen] = 0;
840
          acceptable = psl_is_cookie_domain_acceptable(psl, lcase, lcookie);
841
842
          /* if the cookie is acceptable, but is set for a PSL domain, then it
843
             cannot be tailmatching */
844
          if(acceptable && co->tailmatch &&
845
             curl_strequal(co->domain, domain) &&
846
             psl_is_public_suffix(psl, lcookie))
847
            co->tailmatch = FALSE;
848
        }
849
        else {
850
          /* libpsl says localhost is a PSL, we think not */
851
          acceptable =
852
            curl_strequal(lcookie, "localhost") ||
853
            /* note that this PSL function returns the opposite value than
854
               psl_is_cookie_domain_acceptable() does */
855
            !psl_is_public_suffix(psl, lcookie);
856
        }
857
        Curl_psl_release(data);
858
      }
859
      else
860
        infof(data, "libpsl problem, rejecting cookie for safety");
861
    }
862
863
    if(!acceptable) {
864
      infof(data, "cookie '%s' dropped, domain '%s' must not "
865
            "set cookies for '%s'", co->name,
866
            domain ? domain : "[file]", co->domain);
867
      return TRUE;
868
    }
869
  }
870
#else
871
10.9k
  (void)data;
872
10.9k
  (void)co;
873
10.9k
  (void)domain;
874
10.9k
  DEBUGF(infof(data, "NO PSL to check set-cookie '%s' for domain=%s in %s",
875
10.9k
               co->name, co->domain, domain ? domain : "[file]"));
876
10.9k
#endif
877
10.9k
  return FALSE;
878
10.9k
}
879
880
/* returns TRUE when replaced */
881
static bool replace_existing(struct Curl_easy *data,
882
                             struct Cookie *co,
883
                             const struct CookieInfo *ci,
884
                             bool secure,
885
                             bool *replacep)
886
12.5k
{
887
12.5k
  bool replace_old = FALSE;
888
12.5k
  struct Curl_llist_node *replace_n = NULL;
889
12.5k
  struct Curl_llist_node *n;
890
12.5k
  size_t myhash = cookiehash(co->domain);
891
87.5k
  for(n = Curl_llist_head(&ci->cookielist[myhash]); n; n = Curl_node_next(n)) {
892
74.9k
    struct Cookie *clist = Curl_node_elem(n);
893
74.9k
    if(!strcmp(clist->name, co->name)) {
894
      /* the names are identical */
895
19.9k
      bool matching_domains = FALSE;
896
897
19.9k
      if(clist->domain && co->domain) {
898
19.9k
        if(cookie_tailmatch(clist->domain, strlen(clist->domain),
899
19.9k
                            co->domain) ||
900
614
           cookie_tailmatch(co->domain, strlen(co->domain), clist->domain))
901
          /* The existing one is a tail of the new or vice versa */
902
19.7k
          matching_domains = TRUE;
903
19.9k
      }
904
75
      else if(!clist->domain && !co->domain)
905
0
        matching_domains = TRUE;
906
907
19.9k
      if(matching_domains && /* the domains were identical */
908
19.7k
         clist->path && co->path && /* both have paths */
909
19.7k
         clist->secure && !co->secure && !secure) {
910
0
        size_t cllen;
911
0
        const char *sep = NULL;
912
913
        /*
914
         * A non-secure cookie may not overlay an existing secure cookie.
915
         * For an existing cookie "a" with path "/login", refuse a new
916
         * cookie "a" with for example path "/login/en", while the path
917
         * "/loginhelper" is ok.
918
         */
919
920
0
        DEBUGASSERT(clist->path[0]);
921
0
        if(clist->path[0])
922
0
          sep = strchr(clist->path + 1, '/');
923
0
        if(sep)
924
0
          cllen = sep - clist->path;
925
0
        else
926
0
          cllen = strlen(clist->path);
927
928
0
        if(!strncmp(clist->path, co->path, cllen)) {
929
0
          infof(data, "cookie '%s' for domain '%s' dropped, would "
930
0
                "overlay an existing cookie", co->name, co->domain);
931
0
          return FALSE;
932
0
        }
933
0
      }
934
19.9k
    }
935
936
74.9k
    if(!replace_n && !strcmp(clist->name, co->name)) {
937
      /* the names are identical */
938
939
15.7k
      if(clist->domain && co->domain) {
940
15.6k
        if(curl_strequal(clist->domain, co->domain) &&
941
14.6k
           (clist->tailmatch == co->tailmatch))
942
          /* The domains are identical */
943
14.5k
          replace_old = TRUE;
944
15.6k
      }
945
75
      else if(!clist->domain && !co->domain)
946
0
        replace_old = TRUE;
947
948
15.7k
      if(replace_old) {
949
        /* the domains were identical */
950
951
14.5k
        if(clist->path && co->path &&
952
14.5k
           strcmp(clist->path, co->path))
953
7.99k
          replace_old = FALSE;
954
6.52k
        else if(!clist->path != !co->path)
955
18
          replace_old = FALSE;
956
14.5k
      }
957
958
15.7k
      if(replace_old && !co->livecookie && clist->livecookie) {
959
        /*
960
         * Both cookies matched fine, except that the already present cookie
961
         * is "live", which means it was set from a header, while the new one
962
         * was read from a file and thus is not "live". "live" cookies are
963
         * preferred so the new cookie is freed.
964
         */
965
0
        return FALSE;
966
0
      }
967
15.7k
      if(replace_old)
968
6.50k
        replace_n = n;
969
15.7k
    }
970
74.9k
  }
971
12.5k
  if(replace_n) {
972
6.50k
    struct Cookie *repl = Curl_node_elem(replace_n);
973
974
    /* when replacing, creationtime is kept from old */
975
6.50k
    co->creationtime = repl->creationtime;
976
977
    /* unlink the old */
978
6.50k
    Curl_node_remove(replace_n);
979
980
    /* free the old cookie */
981
6.50k
    freecookie(repl, TRUE);
982
6.50k
  }
983
12.5k
  *replacep = replace_old;
984
12.5k
  return TRUE;
985
12.5k
}
986
987
/*
988
 * Curl_cookie_add
989
 *
990
 * Add a single cookie line to the cookie keeping object. Be aware that
991
 * sometimes we get an IP-only hostname, and that might also be a numerical
992
 * IPv6 address.
993
 *
994
 */
995
CURLcode Curl_cookie_add(struct Curl_easy *data,
996
                         struct CookieInfo *ci,
997
                         const char *lineptr, /* first character of the line */
998
                         const char *domain,  /* default domain */
999
                         const char *path,    /* full path used when this
1000
                                                 cookie is set, used to get
1001
                                                 default path for the cookie
1002
                                                 unless set */
1003
                         const int flags)
1004
35.4k
{
1005
35.4k
  struct Cookie comem;
1006
35.4k
  struct Cookie *co;
1007
35.4k
  size_t myhash;
1008
35.4k
  CURLcode result;
1009
35.4k
  bool replaces = FALSE;
1010
35.4k
  bool okay;
1011
1012
35.4k
  DEBUGASSERT(data);
1013
35.4k
  DEBUGASSERT(MAX_SET_COOKIE_AMOUNT <= 255); /* counter is an unsigned char */
1014
35.4k
  if(data->req.setcookies >= MAX_SET_COOKIE_AMOUNT)
1015
574
    return CURLE_OK; /* silently ignore */
1016
1017
34.9k
  co = &comem;
1018
34.9k
  memset(co, 0, sizeof(comem));
1019
1020
34.9k
  if(flags & COOKIE_HTTPHEADER)
1021
19.2k
    result = parse_cookie_header(data, co, ci, &okay,
1022
19.2k
                                 lineptr, domain, path, flags & COOKIE_SECURE);
1023
15.6k
  else
1024
15.6k
    result = parse_netscape(co, ci, &okay, lineptr, flags & COOKIE_SECURE);
1025
1026
34.9k
  if(result || !okay)
1027
21.9k
    goto fail;
1028
1029
12.9k
  if(co->prefix_secure && !co->secure)
1030
    /* The __Secure- prefix only requires that the cookie be set secure */
1031
171
    goto fail;
1032
1033
12.8k
  if(!(flags & COOKIE_NOPSL) && is_public_suffix(data, co, domain))
1034
0
    goto fail;
1035
1036
12.8k
  if(co->prefix_host) {
1037
    /*
1038
     * The __Host- prefix requires the cookie to be secure, have a "/" path
1039
     * and not have a domain set.
1040
     */
1041
330
    if(co->secure && co->path && !strcmp(co->path, "/") && !co->tailmatch)
1042
93
      ;
1043
237
    else
1044
237
      goto fail;
1045
330
  }
1046
1047
12.5k
  if(!ci->running &&    /* read from a file */
1048
1.81k
     ci->newsession &&  /* clean session cookies */
1049
0
     !co->expires)      /* this is a session cookie */
1050
0
    goto fail;
1051
1052
12.5k
  co->livecookie = ci->running;
1053
12.5k
  co->creationtime = ++ci->lastct;
1054
1055
12.5k
  if(!(flags & COOKIE_NOEXPIRE))
1056
12.5k
    remove_expired(ci);
1057
1058
  /*
1059
   * Now we have parsed the incoming line, we must now check if this supersedes
1060
   * an already existing cookie, which it may if the previous have the same
1061
   * domain and path as this.
1062
   */
1063
12.5k
  if(!replace_existing(data, co, ci, flags & COOKIE_SECURE, &replaces))
1064
0
    goto fail;
1065
1066
  /* clone the stack struct into heap */
1067
12.5k
  co = curlx_memdup(&comem, sizeof(comem));
1068
12.5k
  if(!co) {
1069
0
    co = &comem;
1070
0
    result = CURLE_OUT_OF_MEMORY;
1071
0
    goto fail; /* bail out if we are this low on memory */
1072
0
  }
1073
1074
  /* add this cookie to the list */
1075
12.5k
  myhash = cookiehash(co->domain);
1076
12.5k
  Curl_llist_append(&ci->cookielist[myhash], co, &co->node);
1077
1078
12.5k
  if(ci->running)
1079
    /* Only show this when NOT reading the cookies from a file */
1080
10.7k
    infof(data, "%s cookie %s=\"%s\" for domain %s, path %s, "
1081
12.5k
          "expire %" FMT_OFF_T,
1082
12.5k
          replaces ? "Replaced" : "Added", co->name, co->value,
1083
12.5k
          co->domain, co->path, co->expires);
1084
1085
12.5k
  if(!replaces)
1086
6.06k
    ci->numcookies++; /* one more cookie in the jar */
1087
1088
  /*
1089
   * Now that we have added a new cookie to the jar, update the expiration
1090
   * tracker in case it is the next one to expire.
1091
   */
1092
12.5k
  if(co->expires && (co->expires < ci->next_expiration))
1093
2.06k
    ci->next_expiration = co->expires;
1094
1095
12.5k
  if(flags & COOKIE_HTTPHEADER)
1096
12.0k
    data->req.setcookies++;
1097
1098
12.5k
  return result;
1099
22.3k
fail:
1100
22.3k
  freecookie(co, FALSE);
1101
22.3k
  return result;
1102
12.5k
}
1103
1104
/*
1105
 * Curl_cookie_init()
1106
 *
1107
 * Inits a cookie struct to read data from a local file. This is always
1108
 * called before any cookies are set. File may be NULL in which case only the
1109
 * struct is initialized. Is file is "-" then STDIN is read.
1110
 *
1111
 * If 'newsession' is TRUE, discard all "session cookies" on read from file.
1112
 *
1113
 * Note that 'data' might be called as NULL pointer. If data is NULL, 'file'
1114
 * will be ignored.
1115
 *
1116
 * Returns NULL on out of memory.
1117
 */
1118
struct CookieInfo *Curl_cookie_init(void)
1119
18.0k
{
1120
18.0k
  int i;
1121
18.0k
  struct CookieInfo *ci = curlx_calloc(1, sizeof(struct CookieInfo));
1122
18.0k
  if(!ci)
1123
0
    return NULL;
1124
1125
  /* This does not use the destructor callback since we want to add
1126
     and remove to lists while keeping the cookie struct intact */
1127
1.15M
  for(i = 0; i < COOKIE_HASH_SIZE; i++)
1128
1.14M
    Curl_llist_init(&ci->cookielist[i], NULL);
1129
  /*
1130
   * Initialize the next_expiration time to signal that we do not have enough
1131
   * information yet.
1132
   */
1133
18.0k
  ci->next_expiration = CURL_OFF_T_MAX;
1134
1135
18.0k
  return ci;
1136
18.0k
}
1137
1138
/*
1139
 * cookie_load()
1140
 *
1141
 * Reads cookies from a local file. This is always called before any cookies
1142
 * are set. If file is "-" then STDIN is read.
1143
 *
1144
 * If 'flags' has the COOKIE_NOSESSION bit set, discard all "session cookies"
1145
 * read from file.
1146
 */
1147
static CURLcode cookie_load(struct Curl_easy *data, const char *file,
1148
                            struct CookieInfo *ci, int flags)
1149
14.8k
{
1150
14.8k
  FILE *handle = NULL;
1151
14.8k
  CURLcode result = CURLE_OK;
1152
14.8k
  FILE *fp = NULL;
1153
14.8k
  DEBUGASSERT(ci);
1154
14.8k
  DEBUGASSERT(data);
1155
14.8k
  DEBUGASSERT(file);
1156
1157
14.8k
  ci->newsession = !!(flags & COOKIE_NOSESSION); /* new session? */
1158
14.8k
  ci->running = FALSE; /* this is not running, this is init */
1159
1160
14.8k
  if(file && *file) {
1161
14.8k
    if(!strcmp(file, "-"))
1162
0
      fp = stdin;
1163
14.8k
    else {
1164
14.8k
      fp = curlx_fopen(file, "rb");
1165
14.8k
      if(!fp)
1166
0
        infof(data, "WARNING: failed to open cookie file \"%s\"", file);
1167
14.8k
      else {
1168
14.8k
        curlx_struct_stat stat;
1169
14.8k
        if((curlx_fstat(fileno(fp), &stat) != -1) && S_ISDIR(stat.st_mode)) {
1170
0
          curlx_fclose(fp);
1171
0
          fp = NULL;
1172
0
          infof(data, "WARNING: cookie filename points to a directory: \"%s\"",
1173
0
                file);
1174
0
        }
1175
14.8k
        else
1176
14.8k
          handle = fp;
1177
14.8k
      }
1178
14.8k
    }
1179
14.8k
  }
1180
1181
14.8k
  if(fp) {
1182
14.8k
    struct dynbuf buf;
1183
14.8k
    bool eof = FALSE;
1184
14.8k
    curlx_dyn_init(&buf, MAX_COOKIE_LINE);
1185
14.8k
    do {
1186
14.8k
      result = Curl_get_line(&buf, fp, &eof);
1187
14.8k
      if(!result) {
1188
14.8k
        const char *lineptr = curlx_dyn_ptr(&buf);
1189
14.8k
        bool headerline = FALSE;
1190
14.8k
        if(checkprefix("Set-Cookie:", lineptr)) {
1191
          /* This is a cookie line, get it! */
1192
0
          lineptr += 11;
1193
0
          headerline = TRUE;
1194
0
          curlx_str_passblanks(&lineptr);
1195
0
        }
1196
1197
14.8k
        result = Curl_cookie_add(data, ci, lineptr, NULL, NULL,
1198
14.8k
                                 (headerline ? COOKIE_HTTPHEADER : 0) |
1199
14.8k
                                 COOKIE_NOEXPIRE | COOKIE_SECURE |
1200
14.8k
                                 (flags & COOKIE_NOPSL));
1201
        /* Ignore individual cookie problems unless we ran out of memory */
1202
14.8k
        if(result != CURLE_OUT_OF_MEMORY)
1203
14.8k
          result = CURLE_OK;
1204
14.8k
      }
1205
14.8k
    } while(!result && !eof);
1206
14.8k
    curlx_dyn_free(&buf); /* free the line buffer */
1207
1208
    /*
1209
     * Remove expired cookies from the hash. We must make sure to run this
1210
     * after reading the file, and not on every cookie.
1211
     */
1212
14.8k
    remove_expired(ci);
1213
1214
14.8k
    if(handle)
1215
14.8k
      curlx_fclose(handle);
1216
14.8k
  }
1217
14.8k
  data->state.cookie_engine = TRUE;
1218
14.8k
  ci->running = TRUE; /* now, we are running */
1219
1220
14.8k
  return result;
1221
14.8k
}
1222
1223
/*
1224
 * Load cookies from all given cookie files (CURLOPT_COOKIEFILE).
1225
 */
1226
CURLcode Curl_cookie_loadfiles(struct Curl_easy *data,
1227
                               int flags)
1228
14.8k
{
1229
14.8k
  CURLcode result = CURLE_OK;
1230
14.8k
  struct curl_slist *list = data->state.cookielist;
1231
14.8k
  if(list) {
1232
14.8k
    Curl_share_lock(data, CURL_LOCK_DATA_COOKIE, CURL_LOCK_ACCESS_SINGLE);
1233
14.8k
    if(!data->cookies)
1234
0
      data->cookies = Curl_cookie_init();
1235
14.8k
    if(!data->cookies)
1236
0
      result = CURLE_OUT_OF_MEMORY;
1237
14.8k
    else {
1238
14.8k
      data->state.cookie_engine = TRUE;
1239
29.6k
      while(list) {
1240
14.8k
        result = cookie_load(data, list->data, data->cookies, flags);
1241
14.8k
        if(result)
1242
0
          break;
1243
14.8k
        list = list->next;
1244
14.8k
      }
1245
14.8k
    }
1246
14.8k
    Curl_share_unlock(data, CURL_LOCK_DATA_COOKIE);
1247
14.8k
  }
1248
14.8k
  return result;
1249
14.8k
}
1250
1251
/*
1252
 * cookie_sort
1253
 *
1254
 * Helper function to sort cookies such that the longest path gets before the
1255
 * shorter path. Path, domain and name lengths are considered in that order,
1256
 * with the creationtime as the tiebreaker. The creationtime is guaranteed to
1257
 * be unique per cookie, so we know we will get an ordering at that point.
1258
 */
1259
static int cookie_sort(const void *p1, const void *p2)
1260
0
{
1261
0
  const struct Cookie *c1 = *(const struct Cookie * const *)p1;
1262
0
  const struct Cookie *c2 = *(const struct Cookie * const *)p2;
1263
0
  size_t l1, l2;
1264
1265
  /* 1 - compare cookie path lengths */
1266
0
  l1 = c1->path ? strlen(c1->path) : 0;
1267
0
  l2 = c2->path ? strlen(c2->path) : 0;
1268
1269
0
  if(l1 != l2)
1270
0
    return (l2 > l1) ? 1 : -1; /* avoid size_t <=> int conversions */
1271
1272
  /* 2 - compare cookie domain lengths */
1273
0
  l1 = c1->domain ? strlen(c1->domain) : 0;
1274
0
  l2 = c2->domain ? strlen(c2->domain) : 0;
1275
1276
0
  if(l1 != l2)
1277
0
    return (l2 > l1) ? 1 : -1; /* avoid size_t <=> int conversions */
1278
1279
  /* 3 - compare cookie name lengths */
1280
0
  l1 = c1->name ? strlen(c1->name) : 0;
1281
0
  l2 = c2->name ? strlen(c2->name) : 0;
1282
1283
0
  if(l1 != l2)
1284
0
    return (l2 > l1) ? 1 : -1;
1285
1286
  /* 4 - compare cookie creation time */
1287
0
  return (c2->creationtime > c1->creationtime) ? 1 : -1;
1288
0
}
1289
1290
/*
1291
 * cookie_sort_ct
1292
 *
1293
 * Helper function to sort cookies according to creation time.
1294
 */
1295
static int cookie_sort_ct(const void *p1, const void *p2)
1296
6.10k
{
1297
6.10k
  const struct Cookie *c1 = *(const struct Cookie * const *)p1;
1298
6.10k
  const struct Cookie *c2 = *(const struct Cookie * const *)p2;
1299
1300
6.10k
  return (c2->creationtime > c1->creationtime) ? 1 : -1;
1301
6.10k
}
1302
1303
bool Curl_secure_context(struct Curl_easy *data, const char *host)
1304
18.4k
{
1305
18.4k
  return Curl_xfer_is_secure(data) ||
1306
18.4k
    curl_strequal("localhost", host) ||
1307
18.2k
    !strcmp(host, "127.0.0.1") ||
1308
17.4k
    !strcmp(host, "::1");
1309
18.4k
}
1310
1311
/*
1312
 * Curl_cookie_getlist
1313
 *
1314
 * For a given host and path, return a linked list of cookies that the client
1315
 * should send to the server if used now.
1316
 *
1317
 * It shall only return cookies that have not expired.
1318
 *
1319
 * 'okay' is TRUE when there is a list returned.
1320
 */
1321
CURLcode Curl_cookie_getlist(struct Curl_easy *data,
1322
                             bool *okay,
1323
                             const char *host,
1324
                             struct Curl_llist *list)
1325
0
{
1326
0
  size_t matches = 0;
1327
0
  const bool is_ip = Curl_host_is_ipnum(host);
1328
0
  const size_t myhash = cookiehash(host);
1329
0
  struct Curl_llist_node *n;
1330
0
  const bool secure = Curl_secure_context(data, host);
1331
0
  struct CookieInfo *ci = data->cookies;
1332
0
  const char *path = data->state.up.path;
1333
0
  CURLcode result = CURLE_OK;
1334
0
  *okay = FALSE;
1335
1336
0
  Curl_llist_init(list, NULL);
1337
1338
0
  if(!ci || !Curl_llist_count(&ci->cookielist[myhash]))
1339
0
    return CURLE_OK; /* no cookie struct or no cookies in the struct */
1340
1341
  /* at first, remove expired cookies */
1342
0
  remove_expired(ci);
1343
1344
0
  for(n = Curl_llist_head(&ci->cookielist[myhash]); n; n = Curl_node_next(n)) {
1345
0
    struct Cookie *co = Curl_node_elem(n);
1346
1347
    /* if the cookie requires we are secure we must only continue if we are! */
1348
0
    if(co->secure ? secure : TRUE) {
1349
1350
      /* now check if the domain is correct */
1351
0
      if(!co->domain ||
1352
0
         (co->tailmatch && !is_ip &&
1353
0
          cookie_tailmatch(co->domain, strlen(co->domain), host)) ||
1354
0
         ((!co->tailmatch || is_ip) && curl_strequal(host, co->domain))) {
1355
        /*
1356
         * the right part of the host matches the domain stuff in the
1357
         * cookie data
1358
         */
1359
1360
        /*
1361
         * now check the left part of the path with the cookies path
1362
         * requirement
1363
         */
1364
0
        if(!co->path || pathmatch(co->path, path)) {
1365
1366
          /*
1367
           * This is a match and we add it to the return-linked-list
1368
           */
1369
0
          Curl_llist_append(list, co, &co->getnode);
1370
0
          matches++;
1371
0
          if(matches >= MAX_COOKIE_SEND_AMOUNT) {
1372
0
            infof(data, "Included max number of cookies (%zu) in request!",
1373
0
                  matches);
1374
0
            break;
1375
0
          }
1376
0
        }
1377
0
      }
1378
0
    }
1379
0
  }
1380
1381
0
  if(matches) {
1382
    /*
1383
     * Now we need to make sure that if there is a name appearing more than
1384
     * once, the longest specified path version comes first. To make this the
1385
     * swiftest way, we sort them all based on path length.
1386
     */
1387
0
    struct Cookie **array;
1388
0
    size_t i;
1389
1390
    /* alloc an array and store all cookie pointers */
1391
0
    array = curlx_malloc(sizeof(struct Cookie *) * matches);
1392
0
    if(!array) {
1393
0
      result = CURLE_OUT_OF_MEMORY;
1394
0
      goto fail;
1395
0
    }
1396
1397
0
    n = Curl_llist_head(list);
1398
1399
0
    for(i = 0; n; n = Curl_node_next(n))
1400
0
      array[i++] = Curl_node_elem(n);
1401
1402
    /* now sort the cookie pointers in path length order */
1403
0
    qsort(array, matches, sizeof(struct Cookie *), cookie_sort);
1404
1405
    /* remake the linked list order according to the new order */
1406
0
    Curl_llist_destroy(list, NULL);
1407
1408
0
    for(i = 0; i < matches; i++)
1409
0
      Curl_llist_append(list, array[i], &array[i]->getnode);
1410
1411
0
    curlx_free(array); /* remove the temporary data again */
1412
0
  }
1413
1414
0
  *okay = TRUE;
1415
0
  return CURLE_OK; /* success */
1416
1417
0
fail:
1418
  /* failure, clear up the allocated chain and return NULL */
1419
0
  Curl_llist_destroy(list, NULL);
1420
0
  return result; /* error */
1421
0
}
1422
1423
/*
1424
 * Curl_cookie_clearall
1425
 *
1426
 * Clear all existing cookies and reset the counter.
1427
 */
1428
void Curl_cookie_clearall(struct CookieInfo *ci)
1429
18.0k
{
1430
18.0k
  if(ci) {
1431
18.0k
    unsigned int i;
1432
1.15M
    for(i = 0; i < COOKIE_HASH_SIZE; i++) {
1433
1.14M
      struct Curl_llist_node *n;
1434
1.14M
      for(n = Curl_llist_head(&ci->cookielist[i]); n;) {
1435
4.94k
        struct Cookie *c = Curl_node_elem(n);
1436
4.94k
        struct Curl_llist_node *e = Curl_node_next(n);
1437
4.94k
        Curl_node_remove(n);
1438
4.94k
        freecookie(c, TRUE);
1439
4.94k
        n = e;
1440
4.94k
      }
1441
1.14M
    }
1442
18.0k
    ci->numcookies = 0;
1443
18.0k
  }
1444
18.0k
}
1445
1446
/*
1447
 * Curl_cookie_clearsess
1448
 *
1449
 * Free all session cookies in the cookies list.
1450
 */
1451
void Curl_cookie_clearsess(struct CookieInfo *ci)
1452
1
{
1453
1
  unsigned int i;
1454
1455
1
  if(!ci)
1456
1
    return;
1457
1458
0
  for(i = 0; i < COOKIE_HASH_SIZE; i++) {
1459
0
    struct Curl_llist_node *n = Curl_llist_head(&ci->cookielist[i]);
1460
0
    struct Curl_llist_node *e = NULL;
1461
1462
0
    for(; n; n = e) {
1463
0
      struct Cookie *curr = Curl_node_elem(n);
1464
0
      e = Curl_node_next(n); /* in case the node is removed, get it early */
1465
0
      if(!curr->expires) {
1466
0
        Curl_node_remove(n);
1467
0
        freecookie(curr, TRUE);
1468
0
        ci->numcookies--;
1469
0
      }
1470
0
    }
1471
0
  }
1472
0
}
1473
1474
/*
1475
 * Curl_cookie_cleanup()
1476
 *
1477
 * Free a "cookie object" previous created with Curl_cookie_init().
1478
 */
1479
void Curl_cookie_cleanup(struct CookieInfo *ci)
1480
18.0k
{
1481
18.0k
  if(ci) {
1482
18.0k
    Curl_cookie_clearall(ci);
1483
18.0k
    curlx_free(ci); /* free the base struct as well */
1484
18.0k
  }
1485
18.0k
}
1486
1487
/*
1488
 * get_netscape_format()
1489
 *
1490
 * Formats a string for Netscape output file, w/o a newline at the end.
1491
 * Function returns a char * to a formatted line. The caller is responsible
1492
 * for freeing the returned pointer.
1493
 */
1494
static char *get_netscape_format(const struct Cookie *co)
1495
3.53k
{
1496
3.53k
  return curl_maprintf(
1497
3.53k
    "%s"               /* httponly preamble */
1498
3.53k
    "%s%s\t"           /* domain */
1499
3.53k
    "%s\t"             /* tailmatch */
1500
3.53k
    "%s\t"             /* path */
1501
3.53k
    "%s\t"             /* secure */
1502
3.53k
    "%" FMT_OFF_T "\t" /* expires */
1503
3.53k
    "%s\t"             /* name */
1504
3.53k
    "%s",              /* value */
1505
3.53k
    co->httponly ? "#HttpOnly_" : "",
1506
    /*
1507
     * Make sure all domains are prefixed with a dot if they allow
1508
     * tailmatching. This is Mozilla-style.
1509
     */
1510
3.53k
    (co->tailmatch && co->domain && co->domain[0] != '.') ? "." : "",
1511
3.53k
    co->domain ? co->domain : "unknown",
1512
3.53k
    co->tailmatch ? "TRUE" : "FALSE",
1513
3.53k
    co->path ? co->path : "/",
1514
3.53k
    co->secure ? "TRUE" : "FALSE",
1515
3.53k
    co->expires,
1516
3.53k
    co->name,
1517
3.53k
    co->value ? co->value : "");
1518
3.53k
}
1519
1520
/*
1521
 * cookie_output()
1522
 *
1523
 * Writes all internally known cookies to the specified file. Specify
1524
 * "-" as filename to write to stdout.
1525
 *
1526
 * The function returns non-zero on write failure.
1527
 */
1528
static CURLcode cookie_output(struct Curl_easy *data,
1529
                              struct CookieInfo *ci,
1530
                              const char *filename)
1531
14.8k
{
1532
14.8k
  FILE *out = NULL;
1533
14.8k
  bool use_stdout = FALSE;
1534
14.8k
  char *tempstore = NULL;
1535
14.8k
  CURLcode result = CURLE_OK;
1536
1537
14.8k
  if(!ci)
1538
    /* no cookie engine alive */
1539
0
    return CURLE_OK;
1540
1541
  /* at first, remove expired cookies */
1542
14.8k
  remove_expired(ci);
1543
1544
14.8k
  if(!strcmp("-", filename)) {
1545
    /* use stdout */
1546
0
    out = stdout;
1547
0
    use_stdout = TRUE;
1548
0
  }
1549
14.8k
  else {
1550
14.8k
    result = Curl_fopen(data, filename, &out, &tempstore);
1551
14.8k
    if(result)
1552
0
      goto error;
1553
14.8k
  }
1554
1555
14.8k
  fputs("# Netscape HTTP Cookie File\n"
1556
14.8k
        "# https://curl.se/docs/http-cookies.html\n"
1557
14.8k
        "# This file was generated by libcurl! Edit at your own risk.\n\n",
1558
14.8k
        out);
1559
1560
14.8k
  if(ci->numcookies) {
1561
1.21k
    unsigned int i;
1562
1.21k
    size_t nvalid = 0;
1563
1.21k
    struct Cookie **array;
1564
1.21k
    struct Curl_llist_node *n;
1565
1566
1.21k
    array = curlx_calloc(1, sizeof(struct Cookie *) * ci->numcookies);
1567
1.21k
    if(!array) {
1568
0
      result = CURLE_OUT_OF_MEMORY;
1569
0
      goto error;
1570
0
    }
1571
1572
    /* only sort the cookies with a domain property */
1573
77.5k
    for(i = 0; i < COOKIE_HASH_SIZE; i++) {
1574
80.1k
      for(n = Curl_llist_head(&ci->cookielist[i]); n; n = Curl_node_next(n)) {
1575
3.83k
        struct Cookie *co = Curl_node_elem(n);
1576
3.83k
        if(!co->domain)
1577
299
          continue;
1578
3.53k
        array[nvalid++] = co;
1579
3.53k
      }
1580
76.2k
    }
1581
1582
1.21k
    qsort(array, nvalid, sizeof(struct Cookie *), cookie_sort_ct);
1583
1584
4.74k
    for(i = 0; i < nvalid; i++) {
1585
3.53k
      char *format_ptr = get_netscape_format(array[i]);
1586
3.53k
      if(!format_ptr) {
1587
0
        curlx_free(array);
1588
0
        result = CURLE_OUT_OF_MEMORY;
1589
0
        goto error;
1590
0
      }
1591
3.53k
      curl_mfprintf(out, "%s\n", format_ptr);
1592
3.53k
      curlx_free(format_ptr);
1593
3.53k
    }
1594
1595
1.21k
    curlx_free(array);
1596
1.21k
  }
1597
1598
14.8k
  if(!use_stdout) {
1599
14.8k
    curlx_fclose(out);
1600
14.8k
    out = NULL;
1601
14.8k
    if(tempstore && curlx_rename(tempstore, filename)) {
1602
0
      result = CURLE_WRITE_ERROR;
1603
0
      goto error;
1604
0
    }
1605
14.8k
  }
1606
1607
  /*
1608
   * If we reach here we have successfully written a cookie file so there is
1609
   * no need to inspect the error, any error case should have jumped into the
1610
   * error block below.
1611
   */
1612
14.8k
  curlx_free(tempstore);
1613
14.8k
  return CURLE_OK;
1614
1615
0
error:
1616
0
  if(out && !use_stdout)
1617
0
    curlx_fclose(out);
1618
0
  if(tempstore) {
1619
0
    unlink(tempstore);
1620
0
    curlx_free(tempstore);
1621
0
  }
1622
0
  return result;
1623
14.8k
}
1624
1625
static struct curl_slist *cookie_list(const struct Curl_easy *data)
1626
0
{
1627
0
  struct curl_slist *list = NULL;
1628
0
  struct curl_slist *beg;
1629
0
  unsigned int i;
1630
0
  struct Curl_llist_node *n;
1631
1632
0
  if(!data->cookies || (data->cookies->numcookies == 0))
1633
0
    return NULL;
1634
1635
  /* at first, remove expired cookies */
1636
0
  remove_expired(data->cookies);
1637
1638
0
  for(i = 0; i < COOKIE_HASH_SIZE; i++) {
1639
0
    for(n = Curl_llist_head(&data->cookies->cookielist[i]); n;
1640
0
        n = Curl_node_next(n)) {
1641
0
      struct Cookie *c = Curl_node_elem(n);
1642
0
      char *line;
1643
0
      if(!c->domain)
1644
0
        continue;
1645
0
      line = get_netscape_format(c);
1646
0
      if(!line) {
1647
0
        curl_slist_free_all(list);
1648
0
        return NULL;
1649
0
      }
1650
0
      beg = Curl_slist_append_nodup(list, line);
1651
0
      if(!beg) {
1652
0
        curlx_free(line);
1653
0
        curl_slist_free_all(list);
1654
0
        return NULL;
1655
0
      }
1656
0
      list = beg;
1657
0
    }
1658
0
  }
1659
1660
0
  return list;
1661
0
}
1662
1663
struct curl_slist *Curl_cookie_list(struct Curl_easy *data)
1664
0
{
1665
0
  struct curl_slist *list;
1666
0
  Curl_share_lock(data, CURL_LOCK_DATA_COOKIE, CURL_LOCK_ACCESS_SINGLE);
1667
0
  list = cookie_list(data);
1668
0
  Curl_share_unlock(data, CURL_LOCK_DATA_COOKIE);
1669
0
  return list;
1670
0
}
1671
1672
void Curl_flush_cookies(struct Curl_easy *data, bool cleanup)
1673
37.9k
{
1674
37.9k
  Curl_share_lock(data, CURL_LOCK_DATA_COOKIE, CURL_LOCK_ACCESS_SINGLE);
1675
  /* only save the cookie file if a transfer was started (cookies->running is
1676
     set), as otherwise the cookies were not completely initialized and there
1677
     might be cookie files that were not loaded so saving the file is the
1678
     wrong thing. */
1679
37.9k
  if(data->cookies) {
1680
18.0k
    const char *cookiejar = CURL_EASY_STR(data, STRING_COOKIEJAR);
1681
18.0k
    if(cookiejar && data->cookies->running) {
1682
      /* if we have a destination file for all the cookies to get dumped to */
1683
14.8k
      CURLcode result = cookie_output(data, data->cookies, cookiejar);
1684
14.8k
      if(result)
1685
0
        infof(data, "WARNING: failed to save cookies in %s: %s",
1686
14.8k
              cookiejar, curl_easy_strerror(result));
1687
14.8k
    }
1688
1689
18.0k
    if(cleanup && (!data->share || (data->cookies != data->share->cookies))) {
1690
18.0k
      Curl_cookie_cleanup(data->cookies);
1691
18.0k
      data->cookies = NULL;
1692
18.0k
    }
1693
18.0k
  }
1694
37.9k
  Curl_share_unlock(data, CURL_LOCK_DATA_COOKIE);
1695
37.9k
}
1696
1697
void Curl_cookie_run(struct Curl_easy *data)
1698
14.8k
{
1699
14.8k
  Curl_share_lock(data, CURL_LOCK_DATA_COOKIE, CURL_LOCK_ACCESS_SINGLE);
1700
14.8k
  if(data->cookies)
1701
14.8k
    data->cookies->running = TRUE;
1702
14.8k
  Curl_share_unlock(data, CURL_LOCK_DATA_COOKIE);
1703
14.8k
}
1704
1705
#endif /* CURL_DISABLE_HTTP || CURL_DISABLE_COOKIES */