Coverage Report

Created: 2026-07-30 07:03

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/curl/lib/connect.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
#include "urldata.h"
27
#include "curl_trc.h"
28
#include "strerror.h"
29
#include "cfilters.h"
30
#include "connect.h"
31
#include "cf-dns.h"
32
#include "cf-https-connect.h"
33
#include "cf-setup.h"
34
#include "multiif.h"
35
#include "progress.h"
36
#include "conncache.h"
37
#include "multihandle.h"
38
#include "select.h"
39
#include "curlx/strparse.h"
40
41
#if !defined(CURL_DISABLE_ALTSVC) || defined(USE_HTTPSRR)
42
43
enum alpnid Curl_alpn2alpnid(const unsigned char *name, size_t len)
44
0
{
45
0
  if(len == 2) {
46
0
    if(!memcmp(name, "h1", 2))
47
0
      return ALPN_h1;
48
0
    if(!memcmp(name, "h2", 2))
49
0
      return ALPN_h2;
50
0
    if(!memcmp(name, "h3", 2))
51
0
      return ALPN_h3;
52
0
  }
53
0
  else if(len == 8) {
54
0
    if(!memcmp(name, "http/1.1", 8))
55
0
      return ALPN_h1;
56
0
  }
57
0
  return ALPN_none; /* unknown, probably rubbish input */
58
0
}
59
60
#endif
61
62
/*
63
 * timeleft_now_ms() returns the amount of milliseconds left allowed for the
64
 * transfer/connection. If the value is 0, there is no timeout (ie there is
65
 * infinite time left). If the value is negative, the timeout time has already
66
 * elapsed.
67
 *
68
 * @unittest 1303
69
 */
70
UNITTEST timediff_t timeleft_now_ms(struct Curl_easy *data,
71
                                    const struct curltime *pnow);
72
UNITTEST timediff_t timeleft_now_ms(struct Curl_easy *data,
73
                                    const struct curltime *pnow)
74
0
{
75
0
  timediff_t timeleft_ms = 0;
76
0
  timediff_t ctimeleft_ms = 0;
77
78
0
  if(data->conn && Curl_shutdown_started(data->conn, FIRSTSOCKET))
79
0
    return Curl_shutdown_timeleft(data, data->conn, FIRSTSOCKET);
80
0
  else if(Curl_is_connecting(data)) {
81
0
    timediff_t ctimeout_ms = (data->set.connecttimeout > 0) ?
82
0
      data->set.connecttimeout : DEFAULT_CONNECT_TIMEOUT;
83
0
    ctimeleft_ms = ctimeout_ms -
84
0
      curlx_ptimediff_ms(pnow, &data->progress.t_startsingle);
85
0
    if(!ctimeleft_ms)
86
0
      ctimeleft_ms = -1; /* 0 is "no limit", fake 1 ms expiry */
87
0
  }
88
0
  else if(!data->set.timeout || data->set.connect_only) {
89
0
    return 0; /* no timeout in place or checked, return "no limit" */
90
0
  }
91
92
0
  if(data->set.timeout) {
93
0
    timeleft_ms = data->set.timeout -
94
0
      curlx_ptimediff_ms(pnow, &data->progress.t_startop);
95
0
    if(!timeleft_ms)
96
0
      timeleft_ms = -1; /* 0 is "no limit", fake 1 ms expiry */
97
0
  }
98
99
0
  if(!ctimeleft_ms)
100
0
    return timeleft_ms;
101
0
  else if(!timeleft_ms)
102
0
    return ctimeleft_ms;
103
0
  return CURLMIN(ctimeleft_ms, timeleft_ms);
104
0
}
105
106
timediff_t Curl_timeleft_ms(struct Curl_easy *data)
107
0
{
108
0
  return timeleft_now_ms(data, Curl_pgrs_now(data));
109
0
}
110
111
void Curl_shutdown_start(struct Curl_easy *data, int sockindex,
112
                         int timeout_ms)
113
0
{
114
0
  struct connectdata *conn = data->conn;
115
116
0
  DEBUGASSERT(conn);
117
0
  conn->shutdown.start[sockindex] = *Curl_pgrs_now(data);
118
0
  conn->shutdown.timeout_ms = (timeout_ms > 0) ?
119
0
    (timediff_t)timeout_ms :
120
0
    ((data->set.shutdowntimeout > 0) ?
121
0
     data->set.shutdowntimeout : DEFAULT_SHUTDOWN_TIMEOUT_MS);
122
  /* Set a timer, unless we operate on the admin handle */
123
0
  if(data->mid)
124
0
    Curl_expire_ex(data, conn->shutdown.timeout_ms, EXPIRE_SHUTDOWN);
125
0
  CURL_TRC_M(data, "shutdown start on%s connection",
126
0
             sockindex ? " secondary" : "");
127
0
}
128
129
timediff_t Curl_shutdown_timeleft(struct Curl_easy *data,
130
                                  struct connectdata *conn,
131
                                  int sockindex)
132
0
{
133
0
  timediff_t left_ms;
134
135
0
  if(!conn->shutdown.start[sockindex].tv_sec ||
136
0
     (conn->shutdown.timeout_ms <= 0))
137
0
    return 0; /* not started or no limits */
138
139
0
  left_ms = conn->shutdown.timeout_ms -
140
0
            curlx_ptimediff_ms(Curl_pgrs_now(data),
141
0
                               &conn->shutdown.start[sockindex]);
142
0
  return left_ms ? left_ms : -1;
143
0
}
144
145
timediff_t Curl_conn_shutdown_timeleft(struct Curl_easy *data,
146
                                       struct connectdata *conn)
147
0
{
148
0
  timediff_t left_ms = 0, ms;
149
0
  int i;
150
151
0
  for(i = 0; conn->shutdown.timeout_ms && (i < 2); ++i) {
152
0
    if(!conn->shutdown.start[i].tv_sec)
153
0
      continue;
154
0
    ms = Curl_shutdown_timeleft(data, conn, i);
155
0
    if(ms && (!left_ms || ms < left_ms))
156
0
      left_ms = ms;
157
0
  }
158
0
  return left_ms;
159
0
}
160
161
void Curl_shutdown_clear(struct Curl_easy *data, int sockindex)
162
0
{
163
0
  struct curltime *pt = &data->conn->shutdown.start[sockindex];
164
0
  memset(pt, 0, sizeof(*pt));
165
0
}
166
167
bool Curl_shutdown_started(struct connectdata *conn, int sockindex)
168
0
{
169
0
  const struct curltime *pt = &conn->shutdown.start[sockindex];
170
0
  return (pt->tv_sec > 0) || (pt->tv_usec > 0);
171
0
}
172
173
/*
174
 * Used to extract socket and connectdata struct for the most recent
175
 * transfer on the given Curl_easy.
176
 *
177
 * The returned socket will be CURL_SOCKET_BAD in case of failure!
178
 */
179
curl_socket_t Curl_getconnectinfo(struct Curl_easy *data,
180
                                  struct connectdata **connp)
181
0
{
182
0
  DEBUGASSERT(data);
183
184
  /* this works for an easy handle:
185
   * - that has been used for curl_easy_perform()
186
   * - that is associated with a multi handle, and whose connection
187
   *   was detached with CURLOPT_CONNECT_ONLY
188
   */
189
0
  if(data->state.lastconnect_id != -1) {
190
0
    struct connectdata *conn;
191
192
0
    conn = Curl_cpool_get_conn(data, data->state.lastconnect_id);
193
0
    if(!conn) {
194
0
      data->state.lastconnect_id = -1;
195
0
      if(connp)
196
0
        *connp = NULL;
197
0
      return CURL_SOCKET_BAD;
198
0
    }
199
200
0
    if(connp)
201
0
      *connp = conn;
202
0
    return conn->sock[FIRSTSOCKET];
203
0
  }
204
0
  if(connp)
205
0
    *connp = NULL;
206
0
  return CURL_SOCKET_BAD;
207
0
}
208
209
void Curl_conncontrol(struct connectdata *conn, int ctrl)
210
0
{
211
0
  if(!conn) {
212
0
    DEBUGASSERT(0);
213
0
    return;
214
0
  }
215
0
  switch(ctrl) {
216
0
    case CONNCTRL_CONN_KEEP:
217
0
      conn->bits.close = FALSE;
218
0
      break;
219
0
    case CONNCTRL_CONN_CLOSE:
220
0
      conn->bits.close = TRUE;
221
0
      break;
222
0
    case CONNCTRL_STREAM_CLOSE:
223
      /* stream close when multiplexing does not affect connection */
224
0
      if(!Curl_conn_is_multiplex(conn, FIRSTSOCKET))
225
0
        conn->bits.close = TRUE;
226
0
      break;
227
0
    default:
228
0
      DEBUGASSERT(0);
229
0
      break;
230
0
  }
231
0
}
232
233
CURLcode Curl_conn_setup(struct Curl_easy *data,
234
                         struct connectdata *conn,
235
                         int sockindex,
236
                         int ssl_mode)
237
0
{
238
0
  struct Curl_peer *first_peer = Curl_conn_get_first_peer(conn, sockindex);
239
0
  CURLcode result = CURLE_OK;
240
0
  uint8_t dns_queries;
241
242
0
  DEBUGASSERT(data);
243
0
  DEBUGASSERT(conn->scheme);
244
0
  DEBUGASSERT(!conn->cfilter[sockindex]);
245
246
0
  if(!first_peer)
247
0
    return CURLE_FAILED_INIT;
248
249
0
#ifndef CURL_DISABLE_HTTP
250
0
  if(!conn->cfilter[sockindex] &&
251
0
     conn->scheme->protocol == CURLPROTO_HTTPS) {
252
0
    DEBUGASSERT(ssl_mode != CURL_CF_SSL_DISABLE);
253
0
    result = Curl_cf_https_setup(
254
0
      data, Curl_conn_get_destination(conn, sockindex), conn, sockindex);
255
0
    if(result)
256
0
      goto out;
257
0
  }
258
0
#endif /* !CURL_DISABLE_HTTP */
259
260
  /* Still no cfilter set, apply default. */
261
0
  if(!conn->cfilter[sockindex]) {
262
0
    result = Curl_cf_setup_add(data, conn, sockindex,
263
0
                               conn->transport_wanted, ssl_mode);
264
0
    if(result)
265
0
      goto out;
266
0
  }
267
268
  /* Whatever the filter chain will be in the end, it will need the
269
   * resolving of `first_peer`. Add that now so the resolve is started
270
   * right away. */
271
0
  dns_queries = Curl_resolv_dns_queries(data, conn->ip_version);
272
0
  result = Curl_conn_dns_add_addr_resolve(data, conn, sockindex,
273
0
                                          first_peer, dns_queries,
274
0
                                          conn->transport_wanted);
275
0
  if(result)
276
0
    goto out;
277
278
0
  DEBUGASSERT(conn->cfilter[sockindex]);
279
0
out:
280
0
  return result;
281
0
}
282
283
#ifdef CURLVERBOSE
284
static CURLcode conn_connect_trace(struct Curl_easy *data,
285
                                   struct Curl_cfilter *cf)
286
0
{
287
0
  if(Curl_trc_is_verbose(data)) {
288
0
    struct ip_quadruple ipquad;
289
0
    bool is_ipv6;
290
0
    CURLcode result;
291
292
0
    result = Curl_conn_cf_get_ip_info(cf, data, &is_ipv6, &ipquad);
293
0
    if(result)
294
0
      return result;
295
296
0
    infof(data, "Established %sconnection to %s (%s port %u) from %s port %u ",
297
0
          (cf->sockindex == SECONDARYSOCKET) ? "2nd " : "",
298
0
          CURL_CONN_HOST_DISPNAME(data->conn),
299
0
          ipquad.remote_ip, ipquad.remote_port,
300
0
          ipquad.local_ip, ipquad.local_port);
301
0
  }
302
0
  return CURLE_OK;
303
0
}
304
#endif
305
306
/**
307
 * Update connection statistics
308
 */
309
static void conn_report_connect_stats(struct Curl_cfilter *cf,
310
                                      struct Curl_easy *data)
311
0
{
312
0
  if(cf) {
313
0
    struct curltime connected;
314
0
    struct curltime appconnected;
315
316
0
    memset(&connected, 0, sizeof(connected));
317
0
    cf->cft->query(cf, data, CF_QUERY_TIMER_CONNECT, NULL, &connected);
318
0
    if(connected.tv_sec || connected.tv_usec)
319
0
      Curl_pgrsTimeWas(data, TIMER_CONNECT, connected);
320
321
0
    memset(&appconnected, 0, sizeof(appconnected));
322
0
    cf->cft->query(cf, data, CF_QUERY_TIMER_APPCONNECT, NULL, &appconnected);
323
0
    if(appconnected.tv_sec || appconnected.tv_usec)
324
0
      Curl_pgrsTimeWas(data, TIMER_APPCONNECT, appconnected);
325
0
  }
326
0
}
327
328
CURLcode Curl_conn_connect(struct Curl_easy *data,
329
                           int sockindex,
330
                           bool blocking,
331
                           bool *done)
332
0
{
333
0
#define CF_CONN_NUM_POLLS_ON_STACK 5
334
0
  struct pollfd a_few_on_stack[CF_CONN_NUM_POLLS_ON_STACK];
335
0
  struct easy_pollset ps;
336
0
  struct curl_pollfds cpfds;
337
0
  struct Curl_cfilter *cf;
338
0
  CURLcode result = CURLE_OK;
339
340
0
  DEBUGASSERT(data);
341
0
  DEBUGASSERT(data->conn);
342
0
  if(!CONN_SOCK_IDX_VALID(sockindex))
343
0
    return CURLE_BAD_FUNCTION_ARGUMENT;
344
345
0
  if(data->conn->scheme->flags & PROTOPT_NONETWORK) {
346
0
    *done = TRUE;
347
0
    return CURLE_OK;
348
0
  }
349
350
0
  cf = data->conn->cfilter[sockindex];
351
0
  if(!cf) {
352
0
    *done = FALSE;
353
0
    return CURLE_FAILED_INIT;
354
0
  }
355
356
0
  *done = (bool)cf->connected;
357
0
  if(*done)
358
0
    return CURLE_OK;
359
360
0
  Curl_pollset_init(&ps);
361
0
  Curl_pollfds_init(&cpfds, a_few_on_stack, CF_CONN_NUM_POLLS_ON_STACK);
362
0
  while(!*done) {
363
0
    if(Curl_conn_needs_flush(data, sockindex)) {
364
0
      DEBUGF(infof(data, "Curl_conn_connect(index=%d), flush", sockindex));
365
0
      result = Curl_conn_flush(data, sockindex);
366
0
      if(result && (result != CURLE_AGAIN))
367
0
        goto out;
368
0
    }
369
370
0
    result = cf->cft->do_connect(cf, data, done);
371
0
    CURL_TRC_CF(data, cf, "Curl_conn_connect(block=%d) -> %d, done=%d",
372
0
                blocking, (int)result, *done);
373
0
    if(!result && *done) {
374
      /* A final sanity check on connection security */
375
0
      if((data->state.origin->scheme->flags & PROTOPT_SSL) &&
376
0
         (sockindex == FIRSTSOCKET) &&
377
0
         !Curl_conn_is_ssl(data->conn, FIRSTSOCKET)) {
378
0
        DEBUGASSERT(0);
379
0
        failf(data, "transfer requires SSL, but not connected via SSL");
380
0
        result = CURLE_FAILED_INIT;
381
0
        goto out;
382
0
      }
383
      /* Now that the complete filter chain is connected, let all filters
384
       * persist information at the connection. E.g. cf-socket sets the
385
       * socket and ip related information. */
386
0
      Curl_conn_cntrl_update_info(data, data->conn);
387
0
      conn_report_connect_stats(cf, data);
388
0
      data->conn->keepalive = *Curl_pgrs_now(data);
389
0
      VERBOSE(result = conn_connect_trace(data, cf));
390
0
      VERBOSE(Curl_conn_trc_filters(data, sockindex, "connected"));
391
0
      Curl_conn_remove_setup_filters(data, sockindex);
392
0
      VERBOSE(Curl_conn_trc_filters(data, sockindex, "reduced to"));
393
0
      goto out;
394
0
    }
395
0
    else if(result) {
396
0
      CURL_TRC_CF(data, cf, "Curl_conn_connect(), filter returned %d",
397
0
                  (int)result);
398
0
      VERBOSE(Curl_conn_trc_filters(data, sockindex, "failed to connect"));
399
0
      conn_report_connect_stats(cf, data);
400
0
      goto out;
401
0
    }
402
403
0
    if(!blocking)
404
0
      goto out;
405
0
    else {
406
      /* check allowed time left */
407
0
      const timediff_t timeout_ms = Curl_timeleft_ms(data);
408
0
      curl_socket_t sockfd = Curl_conn_cf_get_socket(cf, data);
409
0
      int rc;
410
411
0
      if(timeout_ms < 0) {
412
        /* no need to continue if time already is up */
413
0
        failf(data, "connect timeout");
414
0
        result = CURLE_OPERATION_TIMEDOUT;
415
0
        goto out;
416
0
      }
417
418
0
      CURL_TRC_CF(data, cf, "Curl_conn_connect(block=1), do poll");
419
0
      Curl_pollset_reset(&ps);
420
0
      Curl_pollfds_reset(&cpfds);
421
      /* In general, we want to send after connect, wait on that. */
422
0
      if(sockfd != CURL_SOCKET_BAD)
423
0
        result = Curl_pollset_set_out_only(data, &ps, sockfd);
424
0
      if(!result)
425
0
        result = Curl_conn_adjust_pollset(data, data->conn, &ps);
426
0
      if(result)
427
0
        goto out;
428
0
      result = Curl_pollfds_add_ps(&cpfds, &ps);
429
0
      if(result)
430
0
        goto out;
431
432
0
      rc = Curl_poll(cpfds.pfds, cpfds.n,
433
0
                     CURLMIN(timeout_ms, (cpfds.n ? 1000 : 10)));
434
0
      CURL_TRC_CF(data, cf, "Curl_conn_connect(block=1), Curl_poll() -> %d",
435
0
                  rc);
436
0
      if(rc < 0) {
437
0
        result = CURLE_COULDNT_CONNECT;
438
0
        goto out;
439
0
      }
440
      /* continue iterating */
441
0
    }
442
0
  }
443
444
0
out:
445
0
  Curl_pollset_cleanup(&ps);
446
0
  Curl_pollfds_cleanup(&cpfds);
447
0
  return result;
448
0
}
449
450
void Curl_conn_set_multiplex(struct connectdata *conn)
451
0
{
452
0
  if(!conn->bits.multiplex) {
453
0
    conn->bits.multiplex = TRUE;
454
0
    if(conn->attached_multi) {
455
0
      Curl_multi_connchanged(conn->attached_multi);
456
0
    }
457
0
  }
458
0
}
459
460
struct Curl_peer *Curl_conn_get_origin(struct connectdata *conn,
461
                                       int sockindex)
462
0
{
463
0
  return (sockindex == SECONDARYSOCKET) ?
464
0
    conn->origin2 : conn->origin;
465
0
}
466
467
struct Curl_peer *Curl_conn_get_destination(struct connectdata *conn,
468
                                            int sockindex)
469
0
{
470
0
  return (sockindex == SECONDARYSOCKET) ?
471
0
    (conn->via_peer2 ? conn->via_peer2 : conn->origin2) :
472
0
    (conn->via_peer ? conn->via_peer : conn->origin);
473
0
}
474
475
struct Curl_peer *Curl_conn_get_first_peer(struct connectdata *conn,
476
                                           int sockindex)
477
0
{
478
0
#ifndef CURL_DISABLE_PROXY
479
0
  if(conn->socks_proxy.peer)
480
0
    return conn->socks_proxy.peer;
481
0
  if(conn->http_proxy.peer)
482
0
    return conn->http_proxy.peer;
483
0
#endif
484
0
  return (sockindex == SECONDARYSOCKET) ?
485
0
    (conn->via_peer2 ? conn->via_peer2 : conn->origin2) :
486
0
    (conn->via_peer ? conn->via_peer : conn->origin);
487
0
}