Coverage Report

Created: 2026-09-01 06:58

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/curl_fuzzer/legacy_fuzzer.cc
Line
Count
Source
1
/***************************************************************************
2
 *                                  _   _ ____  _
3
 *  Project                     ___| | | |  _ \| |
4
 *                             / __| | | | |_) | |
5
 *                            | (__| |_| |  _ <| |___
6
 *                             \___|\___/|_| \_\_____|
7
 *
8
 * Copyright (C) Max Dymond, <cmeister2@gmail.com>, 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
 ***************************************************************************/
22
23
#include <stdlib.h>
24
#include <signal.h>
25
#include <string.h>
26
#include <unistd.h>
27
#include <curl/curl.h>
28
#include "curl_fuzzer.h"
29
#include "legacy_fuzzer.h"
30
#include "legacy_protocol_allowlist.h"
31
#include "legacy_tlv_mutator.h"
32
33
/**
34
 * Run one legacy TLV input independently of the exported libFuzzer symbol.
35
 * Keeping the implementation behind a normal C++ function lets every
36
 * protocol binary expose its own same-named source entrypoint, which is how
37
 * Fuzz Introspector attributes a binary's runtime coverage to its call tree.
38
 */
39
int LegacyFuzzerTestOneInput(const uint8_t *data, size_t size)
40
11.7k
{
41
11.7k
  int rc = 0;
42
11.7k
  int tlv_rc;
43
11.7k
  FUZZ_DATA fuzz;
44
11.7k
  TLV tlv;
45
46
  /* Ignore SIGPIPE errors. We'll handle the errors ourselves. */
47
11.7k
  signal(SIGPIPE, SIG_IGN);
48
49
  /* Have to set all fields to zero before getting to the terminate function */
50
11.7k
  memset(&fuzz, 0, sizeof(FUZZ_DATA));
51
52
11.7k
  if(size < sizeof(TLV_RAW)) {
53
    /* Not enough data for a single TLV - don't continue */
54
4
    goto EXIT_LABEL;
55
4
  }
56
57
  /* Try to initialize the fuzz data */
58
11.7k
  FTRY(fuzz_initialize_fuzz_data(&fuzz, data, size));
59
60
11.7k
  for(tlv_rc = fuzz_get_first_tlv(&fuzz, &tlv);
61
49.2k
      tlv_rc == 0;
62
39.8k
      tlv_rc = fuzz_get_next_tlv(&fuzz, &tlv)) {
63
64
    /* Have the TLV in hand. Parse the TLV. */
65
39.8k
    rc = fuzz_parse_tlv(&fuzz, &tlv);
66
67
39.8k
    if(rc != 0) {
68
      /* Failed to parse the TLV. Can't continue. */
69
2.30k
      goto EXIT_LABEL;
70
2.30k
    }
71
39.8k
  }
72
73
9.44k
  if(tlv_rc != TLV_RC_NO_MORE_TLVS) {
74
    /* A TLV call failed. Can't continue. */
75
164
    goto EXIT_LABEL;
76
164
  }
77
78
  /* Set up the standard easy options. */
79
9.27k
  FTRY(fuzz_set_easy_options(&fuzz));
80
81
  /**
82
   * Add in more curl options that have been accumulated over possibly
83
   * multiple TLVs.
84
   */
85
9.27k
  if(fuzz.header_list != NULL) {
86
41
    curl_easy_setopt(fuzz.easy, CURLOPT_HTTPHEADER, fuzz.header_list);
87
41
  }
88
89
9.27k
  if(fuzz.mail_recipients_list != NULL) {
90
38
    curl_easy_setopt(fuzz.easy, CURLOPT_MAIL_RCPT, fuzz.mail_recipients_list);
91
38
  }
92
93
9.27k
  if(fuzz.mime != NULL) {
94
166
    curl_easy_setopt(fuzz.easy, CURLOPT_MIMEPOST, fuzz.mime);
95
166
  }
96
97
9.27k
  if (fuzz.httppost != NULL) {
98
35
    curl_easy_setopt(fuzz.easy, CURLOPT_HTTPPOST, fuzz.httppost);
99
35
  }
100
101
  /* Run the transfer. */
102
9.27k
  fuzz_handle_transfer(&fuzz);
103
104
11.7k
EXIT_LABEL:
105
106
11.7k
  fuzz_terminate_fuzz_data(&fuzz);
107
108
  /* This function must always return 0. Non-zero codes are reserved. */
109
11.7k
  return 0;
110
9.27k
}
111
112
/**
113
 * Utility function to convert 4 bytes to a u32 predictably.
114
 */
115
uint32_t to_u32(const uint8_t b[4])
116
46.2k
{
117
46.2k
  uint32_t u;
118
  /* Promote into the unsigned result type before shifting. uint8_t otherwise
119
     promotes to signed int, and values with the high bit set make the
120
     left-shift undefined before curl ever observes the fuzzed boundary. */
121
46.2k
  u = (static_cast<uint32_t>(b[0]) << 24) |
122
46.2k
      (static_cast<uint32_t>(b[1]) << 16) |
123
46.2k
      (static_cast<uint32_t>(b[2]) << 8) |
124
46.2k
      static_cast<uint32_t>(b[3]);
125
46.2k
  return u;
126
46.2k
}
127
128
/**
129
 * Utility function to convert 2 bytes to a u16 predictably.
130
 */
131
uint16_t to_u16(const uint8_t b[2])
132
41.8k
{
133
41.8k
  uint16_t u;
134
41.8k
  u = (b[0] << 8) + b[1];
135
41.8k
  return u;
136
41.8k
}
137
138
/**
139
 * Initialize the local fuzz data structure.
140
 */
141
int fuzz_initialize_fuzz_data(FUZZ_DATA *fuzz,
142
                              const uint8_t *data,
143
                              size_t data_len)
144
11.7k
{
145
11.7k
  int rc = 0;
146
11.7k
  int ii;
147
148
  /* Initialize the fuzz data. */
149
11.7k
  memset(fuzz, 0, sizeof(FUZZ_DATA));
150
151
  /* Create an easy handle. This will have all of the settings configured on
152
     it. */
153
11.7k
  fuzz->easy = curl_easy_init();
154
11.7k
  FCHECK(fuzz->easy != NULL);
155
156
  /* Set up the state parser */
157
11.7k
  fuzz->state.data = data;
158
11.7k
  fuzz->state.data_len = data_len;
159
160
  /* Set up the state of the server sockets. */
161
35.2k
  for(ii = 0; ii < FUZZ_NUM_CONNECTIONS; ii++) {
162
23.4k
    fuzz->sockman[ii].index = ii;
163
23.4k
    fuzz->sockman[ii].fd_state = FUZZ_SOCK_CLOSED;
164
23.4k
  }
165
166
  /* Check for verbose mode. */
167
11.7k
  fuzz->verbose = (getenv("FUZZ_VERBOSE") != NULL);
168
169
11.7k
  FCHECK(setenv("CURL_HSTS_HTTP", "1", 0) == 0);
170
11.7k
  FCHECK(setenv("CURL_ALTSVC_HTTP", "1", 0) == 0);
171
172
11.7k
EXIT_LABEL:
173
174
11.7k
  return rc;
175
11.7k
}
176
177
/**
178
 * Reapply resolver-sensitive string options with their canonical loopback
179
 * values before starting a transfer.
180
 *
181
 * Custom mutation and crossover already finalize generated buffers, but an
182
 * initial corpus entry or standalone reproducer is executed without passing
183
 * through either callback. The option tracker identifies only values that the
184
 * TLV parser successfully applied, so this does not enable routing options that
185
 * were absent from the input. DNS_INTERFACE is deliberately excluded: with
186
 * c-ares it is a device name passed to ares_set_local_dev(), not a hostname.
187
 */
188
static int fuzz_finalize_routing_options(FUZZ_DATA *fuzz)
189
9.27k
{
190
9.27k
  int rc = 0;
191
192
9.27k
#define FFINALIZE_ROUTING_OPTION(TLVTYPE, CURLOPTNAME)                         \
193
37.1k
  if(fuzz->options[(CURLOPTNAME) % 1000]) {                                   \
194
192
    const char *canonical =                                                   \
195
192
      legacy_tlv_mutator::CanonicalRoutingValue((TLVTYPE));                   \
196
192
    FCHECK(canonical != NULL);                                                 \
197
192
    FTRY(curl_easy_setopt(fuzz->easy, (CURLOPTNAME), canonical));              \
198
192
  }
199
200
9.27k
  FFINALIZE_ROUTING_OPTION(TLV_TYPE_PROXY, CURLOPT_PROXY);
201
9.27k
  FFINALIZE_ROUTING_OPTION(TLV_TYPE_FTPPORT, CURLOPT_FTPPORT);
202
9.27k
  FFINALIZE_ROUTING_OPTION(TLV_TYPE_INTERFACE, CURLOPT_INTERFACE);
203
9.27k
  FFINALIZE_ROUTING_OPTION(TLV_TYPE_PRE_PROXY, CURLOPT_PRE_PROXY);
204
205
9.27k
#undef FFINALIZE_ROUTING_OPTION
206
207
9.27k
EXIT_LABEL:
208
9.27k
  return rc;
209
9.27k
}
210
211
/**
212
 * Set standard options on the curl easy.
213
 */
214
int fuzz_set_easy_options(FUZZ_DATA *fuzz)
215
9.27k
{
216
9.27k
  int rc = 0;
217
218
  /* Existing seeds and direct reproducers bypass the custom mutator. Close
219
     that path before any transfer can resolve a corpus-provided endpoint. */
220
9.27k
  FTRY(fuzz_finalize_routing_options(fuzz));
221
222
  /* Set some standard options on the CURL easy handle. We need to override the
223
     socket function so that we create our own sockets to present to CURL. */
224
9.27k
  FTRY(curl_easy_setopt(fuzz->easy,
225
9.27k
                        CURLOPT_OPENSOCKETFUNCTION,
226
9.27k
                        fuzz_open_socket));
227
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_OPENSOCKETDATA, fuzz));
228
229
  /* In case something tries to set a socket option, intercept this. */
230
9.27k
  FTRY(curl_easy_setopt(fuzz->easy,
231
9.27k
                        CURLOPT_SOCKOPTFUNCTION,
232
9.27k
                        fuzz_sockopt_callback));
233
234
  /* Set the standard read function callback. */
235
9.27k
  FTRY(curl_easy_setopt(fuzz->easy,
236
9.27k
                        CURLOPT_READFUNCTION,
237
9.27k
                        fuzz_read_callback));
238
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_READDATA, fuzz));
239
240
  /* Set the standard write function callback. */
241
9.27k
  FTRY(curl_easy_setopt(fuzz->easy,
242
9.27k
                        CURLOPT_WRITEFUNCTION,
243
9.27k
                        fuzz_write_callback));
244
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_WRITEDATA, fuzz));
245
246
  /* Set the writable cookie jar path so cookies are tested. */
247
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_COOKIEJAR, FUZZ_COOKIE_JAR_PATH));
248
249
  /* Set the RO cookie file path so cookies are tested. */
250
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_COOKIEFILE, FUZZ_RO_COOKIE_FILE_PATH));
251
252
  /* Set altsvc header cache filepath so that it can be fuzzed. */
253
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_ALTSVC, FUZZ_ALT_SVC_HEADER_CACHE_PATH));
254
255
  /* Set the hsts header cache filepath so that it can be fuzzed. */
256
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_HSTS, FUZZ_HSTS_HEADER_CACHE_PATH));
257
258
  /* Set the Certificate Revocation List file path so it can be fuzzed */
259
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_CRLFILE, FUZZ_CRL_FILE_PATH));
260
261
  /* Loading the host trust store for every WSS mutation dominates the
262
     WebSocket target even when the in-process mock immediately ends the TLS
263
     handshake. Keep this exception local to that target: the other legacy
264
     fuzzers should retain libcurl's verification default so their ordinary
265
     mutations continue to cover certificate setup. An explicit
266
     SSL_VERIFYPEER TLV still restores verification in the WebSocket target. */
267
#ifdef FUZZ_PROTOCOLS_WS
268
  if(!fuzz->options[CURLOPT_SSL_VERIFYPEER % 1000]) {
269
    FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_SSL_VERIFYPEER, 0L));
270
  }
271
#endif
272
273
  /* Set the .netrc file path so it can be fuzzed */
274
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_NETRC_FILE, FUZZ_NETRC_FILE_PATH));
275
276
  /* Time out requests quickly. */
277
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_TIMEOUT_MS, 200L));
278
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_SERVER_RESPONSE_TIMEOUT, 1L));
279
280
  /* Can enable verbose mode by having the environment variable FUZZ_VERBOSE. */
281
9.27k
  if(fuzz->verbose) {
282
0
    FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_VERBOSE, 1L));
283
0
  }
284
285
  /* Force resolution of all addresses to a specific IP address. */
286
9.27k
  fuzz->connect_to_list = curl_slist_append(NULL, "::127.0.1.127:");
287
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_CONNECT_TO, fuzz->connect_to_list));
288
289
  /* Limit the protocols in use by this fuzzer. */
290
9.27k
  FTRY(fuzz_set_allowed_protocols(fuzz));
291
292
9.27k
EXIT_LABEL:
293
294
9.27k
  return rc;
295
9.27k
}
296
297
/**
298
 * Terminate the fuzz data structure, including freeing any allocated memory.
299
 */
300
void fuzz_terminate_fuzz_data(FUZZ_DATA *fuzz)
301
11.7k
{
302
11.7k
  int ii;
303
304
11.7k
  fuzz_free((void **)&fuzz->postfields);
305
306
35.2k
  for(ii = 0; ii < FUZZ_NUM_CONNECTIONS; ii++) {
307
23.4k
    if(fuzz->sockman[ii].fd_state != FUZZ_SOCK_CLOSED) {
308
0
      close(fuzz->sockman[ii].fd);
309
0
      fuzz->sockman[ii].fd_state = FUZZ_SOCK_CLOSED;
310
0
    }
311
23.4k
  }
312
313
11.7k
  if(fuzz->connect_to_list != NULL) {
314
9.27k
    curl_slist_free_all(fuzz->connect_to_list);
315
9.27k
    fuzz->connect_to_list = NULL;
316
9.27k
  }
317
318
11.7k
  if(fuzz->header_list != NULL) {
319
49
    curl_slist_free_all(fuzz->header_list);
320
49
    fuzz->header_list = NULL;
321
49
  }
322
323
11.7k
  if(fuzz->mail_recipients_list != NULL) {
324
40
    curl_slist_free_all(fuzz->mail_recipients_list);
325
40
    fuzz->mail_recipients_list = NULL;
326
40
  }
327
328
11.7k
  if(fuzz->mime != NULL) {
329
193
    curl_mime_free(fuzz->mime);
330
193
    fuzz->mime = NULL;
331
193
  }
332
333
11.7k
  if(fuzz->easy != NULL) {
334
11.7k
    curl_easy_cleanup(fuzz->easy);
335
11.7k
    fuzz->easy = NULL;
336
11.7k
  }
337
338
  /* When you have passed the struct curl_httppost pointer to curl_easy_setopt
339
   * (using the CURLOPT_HTTPPOST option), you must not free the list until after
340
   *  you have called curl_easy_cleanup for the curl handle.
341
   *  https://curl.se/libcurl/c/curl_formadd.html */
342
11.7k
  if (fuzz->httppost != NULL) {
343
41
    curl_formfree(fuzz->httppost);
344
41
    fuzz->httppost = NULL;
345
41
  }
346
347
  // free after httppost and last_post_part.
348
11.7k
  if (fuzz->post_body != NULL) {
349
41
    fuzz_free((void **)&fuzz->post_body);
350
41
  }
351
11.7k
}
352
353
/**
354
 * If a pointer has been allocated, free that pointer.
355
 */
356
void fuzz_free(void **ptr)
357
51.8k
{
358
51.8k
  if(*ptr != NULL) {
359
28.5k
    free(*ptr);
360
28.5k
    *ptr = NULL;
361
28.5k
  }
362
51.8k
}
363
364
/**
365
 * Function for handling the fuzz transfer, including sending responses to
366
 * requests.
367
 */
368
int fuzz_handle_transfer(FUZZ_DATA *fuzz)
369
9.27k
{
370
9.27k
  int rc = 0;
371
9.27k
  CURLM *multi_handle;
372
9.27k
  int still_running; /* keep number of running handles */
373
9.27k
  CURLMsg *msg; /* for picking up messages with the transfer status */
374
9.27k
  int msgs_left; /* how many messages are left */
375
9.27k
  int double_timeout = 0;
376
9.27k
  fd_set fdread;
377
9.27k
  fd_set fdwrite;
378
9.27k
  fd_set fdexcep;
379
9.27k
  struct timeval timeout;
380
9.27k
  int select_rc;
381
9.27k
  CURLMcode mc;
382
9.27k
  int maxfd = -1;
383
9.27k
  long curl_timeo = -1;
384
9.27k
  int ii;
385
9.27k
  FUZZ_SOCKET_MANAGER *sman[FUZZ_NUM_CONNECTIONS];
386
387
27.8k
  for(ii = 0; ii < FUZZ_NUM_CONNECTIONS; ii++) {
388
18.5k
    sman[ii] = &fuzz->sockman[ii];
389
390
    /* Set up the starting index for responses. */
391
18.5k
    sman[ii]->response_index = 1;
392
18.5k
  }
393
394
  /* init a multi stack */
395
9.27k
  multi_handle = curl_multi_init();
396
397
  /* add the individual transfers */
398
9.27k
  curl_multi_add_handle(multi_handle, fuzz->easy);
399
400
  /* Do an initial process. This might end the transfer immediately. */
401
9.27k
  curl_multi_perform(multi_handle, &still_running);
402
9.27k
  FV_PRINTF(fuzz,
403
9.27k
            "FUZZ: Initial perform; still running? %d \n",
404
9.27k
            still_running);
405
406
9.27k
  while(still_running) {
407
    /* Reset the sets of file descriptors. */
408
0
    FD_ZERO(&fdread);
409
0
    FD_ZERO(&fdwrite);
410
0
    FD_ZERO(&fdexcep);
411
412
    /* Set a timeout of 10ms. This is lower than recommended by the multi guide
413
       but we're not going to any remote servers, so everything should complete
414
       very quickly. */
415
0
    timeout.tv_sec = 0;
416
0
    timeout.tv_usec = 10000;
417
418
    /* get file descriptors from the transfers */
419
0
    mc = curl_multi_fdset(multi_handle, &fdread, &fdwrite, &fdexcep, &maxfd);
420
0
    if(mc != CURLM_OK) {
421
0
      fprintf(stderr, "curl_multi_fdset() failed, code %d.\n", mc);
422
0
      rc = -1;
423
0
      break;
424
0
    }
425
426
0
    for(ii = 0; ii < FUZZ_NUM_CONNECTIONS; ii++) {
427
      /* Add the socket FD into the readable set if connected. */
428
0
      if(sman[ii]->fd_state == FUZZ_SOCK_OPEN) {
429
0
        FD_SET(sman[ii]->fd, &fdread);
430
431
        /* Work out the maximum FD between the cURL file descriptors and the
432
           server FD. */
433
0
        maxfd = FUZZ_MAX(sman[ii]->fd, maxfd);
434
0
      }
435
0
    }
436
437
    /* Work out what file descriptors need work. */
438
0
    rc = fuzz_select(maxfd + 1, &fdread, &fdwrite, &fdexcep, &timeout);
439
440
0
    if(rc == -1) {
441
      /* Had an issue while selecting a file descriptor. Let's just exit. */
442
0
      FV_PRINTF(fuzz, "FUZZ: select failed, exiting \n");
443
0
      break;
444
0
    }
445
446
    /* Check to see if a server file descriptor is readable. If it is,
447
       then send the next response from the fuzzing data. */
448
0
    int server_data_sent = 0;
449
0
    for(ii = 0; ii < FUZZ_NUM_CONNECTIONS; ii++) {
450
0
      if(sman[ii]->fd_state == FUZZ_SOCK_OPEN &&
451
0
         FD_ISSET(sman[ii]->fd, &fdread)) {
452
0
        rc = fuzz_send_next_response(fuzz, sman[ii]);
453
0
        if(rc != 0) {
454
          /* Failed to send a response. Break out here. */
455
0
          break;
456
0
        }
457
0
        server_data_sent = 1;
458
0
      }
459
0
    }
460
461
    /* Stall detection: exit after two consecutive iterations where no new
462
       data was provided to curl. This handles both select() timeouts and
463
       cases where curl registers a writable fd but cannot make progress
464
       (e.g. HTTP/2 egress stuck with no real peer to drain to). */
465
0
    if(!server_data_sent) {
466
0
      FV_PRINTF(fuzz, "FUZZ: No data sent; stall count %d \n", double_timeout);
467
0
      if(double_timeout == 1) {
468
0
        break;
469
0
      }
470
0
      double_timeout = 1;
471
0
    }
472
0
    else {
473
0
      double_timeout = 0;
474
0
    }
475
476
0
    curl_multi_perform(multi_handle, &still_running);
477
0
  }
478
479
  /* Remove the easy handle from the multi stack. */
480
9.27k
  curl_multi_remove_handle(multi_handle, fuzz->easy);
481
482
  /* Clean up the multi handle - the top level function will handle the easy
483
     handle. */
484
9.27k
  curl_multi_cleanup(multi_handle);
485
486
9.27k
  return rc;
487
9.27k
}
488
489
/**
490
 * Sends the next fuzzing response to the server file descriptor.
491
 */
492
int fuzz_send_next_response(FUZZ_DATA *fuzz, FUZZ_SOCKET_MANAGER *sman)
493
0
{
494
0
  int rc = 0;
495
0
  ssize_t ret_in;
496
0
  ssize_t ret_out;
497
0
  char buffer[8192];
498
0
  const uint8_t *data;
499
0
  size_t data_len;
500
501
  /* Need to read all data sent by the client so the file descriptor becomes
502
     unreadable. Because the file descriptor is non-blocking we won't just
503
     hang here. */
504
0
  do {
505
0
    ret_in = read(sman->fd, buffer, sizeof(buffer));
506
0
    if(fuzz->verbose && ret_in > 0) {
507
0
      printf("FUZZ[%d]: Received %zu bytes \n==>\n", sman->index, ret_in);
508
0
      fwrite(buffer, ret_in, 1, stdout);
509
0
      printf("\n<==\n");
510
0
    }
511
0
  } while (ret_in > 0);
512
513
  /* Now send a response to the request that the client just made. */
514
0
  FV_PRINTF(fuzz,
515
0
            "FUZZ[%d]: Sending next response: %d \n",
516
0
            sman->index,
517
0
            sman->response_index);
518
0
  data = sman->responses[sman->response_index].data;
519
0
  data_len = sman->responses[sman->response_index].data_len;
520
521
0
  if(data != NULL) {
522
0
    if(write(sman->fd, data, data_len) != (ssize_t)data_len) {
523
      /* Failed to write the data back to the client. Prevent any further
524
         testing. */
525
0
      rc = -1;
526
0
    }
527
0
  }
528
529
  /* Work out if there are any more responses. If not, then shut down the
530
     server. */
531
0
  sman->response_index++;
532
533
0
  if(sman->response_index >= TLV_MAX_NUM_RESPONSES ||
534
0
     sman->responses[sman->response_index].data == NULL) {
535
0
    FV_PRINTF(fuzz,
536
0
              "FUZZ[%d]: Shutting down server socket: %d \n",
537
0
              sman->index,
538
0
              sman->fd);
539
0
    shutdown(sman->fd, SHUT_WR);
540
0
    sman->fd_state = FUZZ_SOCK_SHUTDOWN;
541
0
  }
542
543
0
  return rc;
544
0
}
545
546
/**
547
 * Wrapper for select() so profiling can track it.
548
 */
549
int fuzz_select(int nfds,
550
                fd_set *readfds,
551
                fd_set *writefds,
552
                fd_set *exceptfds,
553
0
                struct timeval *timeout) {
554
0
  return select(nfds, readfds, writefds, exceptfds, timeout);
555
0
}
556
557
/**
558
 * Set allowed protocols based on the compile options.
559
 *
560
 * Note that it can only use ONE of the FUZZ_PROTOCOLS_* defines.
561
 */
562
int fuzz_set_allowed_protocols(FUZZ_DATA *fuzz)
563
9.27k
{
564
9.27k
  int rc = 0;
565
9.27k
  const char *allowed_protocols = "";
566
567
#ifdef FUZZ_PROTOCOLS_ALL
568
  /* CURLOPT_PROTOCOLS_STR rejects the complete value if even one requested
569
     protocol was compiled out. Derive the generic target's stable safety
570
     policy from this libcurl build so optional RTMP and SSH backends cannot
571
     prevent every transfer from starting. */
572
  allowed_protocols = legacy_protocol_allowlist::ForCurrentCurl().c_str();
573
#endif
574
#ifdef FUZZ_PROTOCOLS_DICT
575
  allowed_protocols = "dict";
576
#endif
577
9.27k
#ifdef FUZZ_PROTOCOLS_FILE
578
9.27k
  allowed_protocols = "file";
579
9.27k
#endif
580
#ifdef FUZZ_PROTOCOLS_FTP
581
  allowed_protocols = "ftp,ftps";
582
#endif
583
#ifdef FUZZ_PROTOCOLS_GOPHER
584
  allowed_protocols = "gopher,gophers";
585
#endif
586
#ifdef FUZZ_PROTOCOLS_HTTP
587
  allowed_protocols = "http";
588
#endif
589
#ifdef FUZZ_PROTOCOLS_HTTPS
590
  allowed_protocols = "https";
591
#endif
592
#ifdef FUZZ_PROTOCOLS_IMAP
593
  allowed_protocols = "imap,imaps";
594
#endif
595
#ifdef FUZZ_PROTOCOLS_LDAP
596
  allowed_protocols = "ldap,ldaps";
597
#endif
598
#ifdef FUZZ_PROTOCOLS_MQTT
599
  allowed_protocols = "mqtt";
600
#endif
601
#ifdef FUZZ_PROTOCOLS_POP3
602
  allowed_protocols = "pop3,pop3s";
603
#endif
604
#ifdef FUZZ_PROTOCOLS_RTMP
605
  allowed_protocols = "rtmp,rtmpe,rtmps,rtmpt,rtmpte,rtmpts";
606
#endif
607
#ifdef FUZZ_PROTOCOLS_RTSP
608
  allowed_protocols = "rtsp";
609
#endif
610
#ifdef FUZZ_PROTOCOLS_SCP
611
  allowed_protocols = "scp";
612
#endif
613
#ifdef FUZZ_PROTOCOLS_SFTP
614
  allowed_protocols = "sftp";
615
#endif
616
#ifdef FUZZ_PROTOCOLS_SMB
617
  allowed_protocols = "smb,smbs";
618
#endif
619
#ifdef FUZZ_PROTOCOLS_SMTP
620
  allowed_protocols = "smtp,smtps";
621
#endif
622
#ifdef FUZZ_PROTOCOLS_TFTP
623
  allowed_protocols = "tftp";
624
#endif
625
#ifdef FUZZ_PROTOCOLS_WS
626
  // http is required by websockets
627
  allowed_protocols = "http,ws,wss";
628
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_CONNECT_ONLY, 2L));
629
#endif
630
631
9.27k
  FTRY(curl_easy_setopt(fuzz->easy, CURLOPT_PROTOCOLS_STR, allowed_protocols));
632
633
9.27k
EXIT_LABEL:
634
635
9.27k
  return rc;
636
9.27k
}