Coverage Report

Created: 2026-09-14 07:04

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/curl/lib/easy.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
#ifdef HAVE_NETINET_IN_H
27
#include <netinet/in.h>
28
#endif
29
#ifdef HAVE_NETDB_H
30
#include <netdb.h>
31
#endif
32
#ifdef HAVE_ARPA_INET_H
33
#include <arpa/inet.h>
34
#endif
35
#ifdef HAVE_NET_IF_H
36
#include <net/if.h>
37
#endif
38
#ifdef HAVE_SYS_IOCTL_H
39
#include <sys/ioctl.h>
40
#endif
41
42
#ifdef HAVE_SYS_PARAM_H
43
#include <sys/param.h>
44
#endif
45
46
#include "urldata.h"
47
#include "api.h"
48
#include "transfer.h"
49
#include "vdns/hostip.h"
50
#include "vtls/vtls.h"
51
#include "vtls/vtls_scache.h"
52
#include "vquic/vquic.h"
53
#include "url.h"
54
#include "getinfo.h"
55
#include "curlx/strdup.h"
56
#include "easyif.h"
57
#include "multiif.h"
58
#include "multi_ev.h"
59
#include "select.h"
60
#include "cfilters.h"
61
#include "sendf.h"
62
#include "curl_trc.h"
63
#include "connect.h" /* for Curl_getconnectinfo */
64
#include "slist.h"
65
#include "mime.h"
66
#include "amigaos.h"
67
#include "macos.h"
68
#include "curlx/wait.h"
69
#include "sigpipe.h"
70
#include "vssh/ssh.h"
71
#include "setopt.h"
72
#include "http_digest.h"
73
#include "curlx/dynbuf.h"
74
#include "bufref.h"
75
#include "altsvc.h"
76
#include "hsts.h"
77
#include "curl_sspi.h" /* Curl_sspi_global_init()/Curl_sspi_global_cleanup() */
78
#include "curlx/timeval.h" /* for curlx_now_init() */
79
#include "curlx/version_win32.h" /* for curlx_verify_windows_init() */
80
81
#include "easy_lock.h"
82
83
/* true globals -- for curl_global_init() and curl_global_cleanup() */
84
static unsigned int initialized;
85
#ifdef USE_WINSOCK
86
static bool winsock_initialized;
87
#endif
88
89
#ifdef GLOBAL_INIT_IS_THREADSAFE
90
91
static curl_simple_lock s_lock = CURL_SIMPLE_LOCK_INIT;
92
19.0k
#define global_init_lock()   curl_simple_lock_lock(&s_lock)
93
19.0k
#define global_init_unlock() curl_simple_lock_unlock(&s_lock)
94
95
#else
96
97
#define global_init_lock()
98
#define global_init_unlock()
99
100
#endif
101
102
#if defined(_MSC_VER) && defined(_DLL)
103
#  pragma warning(push)
104
#  pragma warning(disable:4232) /* MSVC extension, dllimport identity */
105
#endif
106
107
/*
108
 * If a memory-using function (like curl_getenv) is used before
109
 * curl_global_init() is called, we need to have these pointers set already.
110
 */
111
curl_malloc_callback Curl_cmalloc = (curl_malloc_callback)malloc;
112
curl_free_callback Curl_cfree = (curl_free_callback)free;
113
curl_realloc_callback Curl_crealloc = (curl_realloc_callback)realloc;
114
curl_strdup_callback Curl_cstrdup = (curl_strdup_callback)CURLX_STRDUP_LOW;
115
curl_calloc_callback Curl_ccalloc = (curl_calloc_callback)calloc;
116
117
#if defined(_MSC_VER) && defined(_DLL)
118
#  pragma warning(pop)
119
#endif
120
121
#ifdef DEBUGBUILD
122
static char *leakpointer;
123
#endif
124
125
/**
126
 * curl_global_init() globally initializes curl given a bitwise set of the
127
 * different features of what to initialize.
128
 */
129
static CURLcode global_init(long flags, bool memoryfuncs)
130
1
{
131
1
  (void)flags;
132
133
1
  if(initialized++)
134
0
    return CURLE_OK;
135
136
1
  if(memoryfuncs) {
137
    /* Setup the default memory functions here (again) */
138
1
    Curl_cmalloc = (curl_malloc_callback)malloc;
139
1
    Curl_cfree = (curl_free_callback)free;
140
1
    Curl_crealloc = (curl_realloc_callback)realloc;
141
1
    Curl_cstrdup = (curl_strdup_callback)CURLX_STRDUP_LOW;
142
1
    Curl_ccalloc = (curl_calloc_callback)calloc;
143
1
  }
144
145
#ifdef _WIN32
146
  curlx_verify_windows_init();
147
  curlx_now_init();
148
#endif
149
150
1
  if(Curl_trc_init()) {
151
0
    DEBUGF(curl_mfprintf(stderr, "Error: Curl_trc_init failed\n"));
152
0
    goto fail;
153
0
  }
154
155
#ifdef USE_WINDOWS_SSPI
156
  if(Curl_sspi_global_init()) {
157
    DEBUGF(curl_mfprintf(stderr, "Error: Curl_sspi_global_init() failed\n"));
158
    goto fail;
159
  }
160
#endif
161
162
#ifdef USE_WINSOCK
163
  /* CURL_GLOBAL_WINSOCK controls the *optional* part of the Windows
164
     initialization which is for the Windows sockets library (Winsock). */
165
  if(flags & CURL_GLOBAL_WINSOCK) {
166
    WSADATA wsa;
167
    if(WSAStartup(MAKEWORD(2, 2), &wsa)) {
168
      DEBUGF(curl_mfprintf(stderr, "Error: WSAStartup() failed\n"));
169
      goto fail;
170
    }
171
    winsock_initialized = TRUE;
172
  }
173
#endif
174
175
1
  if(!Curl_ssl_init()) {
176
0
    DEBUGF(curl_mfprintf(stderr, "Error: Curl_ssl_init failed\n"));
177
0
    goto fail;
178
0
  }
179
180
1
  if(!Curl_vquic_init()) {
181
0
    DEBUGF(curl_mfprintf(stderr, "Error: Curl_vquic_init failed\n"));
182
0
    goto fail;
183
0
  }
184
185
1
  if(Curl_amiga_init()) {
186
0
    DEBUGF(curl_mfprintf(stderr, "Error: Curl_amiga_init failed\n"));
187
0
    goto fail;
188
0
  }
189
190
1
  if(Curl_macos_init()) {
191
0
    DEBUGF(curl_mfprintf(stderr, "Error: Curl_macos_init failed\n"));
192
0
    goto fail;
193
0
  }
194
195
1
  if(Curl_async_global_init()) {
196
0
    DEBUGF(curl_mfprintf(stderr, "Error: Curl_async_global_init failed\n"));
197
0
    goto fail;
198
0
  }
199
200
1
  if(Curl_ssh_init()) {
201
0
    DEBUGF(curl_mfprintf(stderr, "Error: Curl_ssh_init failed\n"));
202
0
    goto fail;
203
0
  }
204
205
1
#ifdef DEBUGBUILD
206
1
  if(getenv("CURL_GLOBAL_INIT"))
207
    /* alloc data that will leak if *cleanup() is not called! */
208
0
    leakpointer = curlx_malloc(1);
209
1
#endif
210
211
1
  return CURLE_OK;
212
213
0
fail:
214
#ifdef USE_WINSOCK
215
  if(winsock_initialized) {
216
    WSACleanup();
217
    winsock_initialized = FALSE;
218
  }
219
#endif
220
0
  initialized--; /* undo the increase */
221
0
  return CURLE_FAILED_INIT;
222
1
}
223
224
/**
225
 * curl_global_init() globally initializes curl given a bitwise set of the
226
 * different features of what to initialize.
227
 */
228
CURLcode curl_global_init(long flags)
229
0
{
230
0
  CURLcode result;
231
0
  global_init_lock();
232
233
0
  result = global_init(flags, TRUE);
234
235
0
  global_init_unlock();
236
237
0
  return result;
238
0
}
239
240
/*
241
 * curl_global_init_mem() globally initializes curl and also registers the
242
 * user provided callback routines.
243
 */
244
CURLcode curl_global_init_mem(long flags, curl_malloc_callback m,
245
                              curl_free_callback f, curl_realloc_callback r,
246
                              curl_strdup_callback s, curl_calloc_callback c)
247
0
{
248
0
  CURLcode result;
249
250
  /* Invalid input, return immediately */
251
0
  if(!m || !f || !r || !s || !c)
252
0
    return CURLE_FAILED_INIT;
253
254
0
  global_init_lock();
255
256
0
  if(initialized) {
257
    /* Already initialized, do not do it again, but bump the variable anyway to
258
       work like curl_global_init() and require the same amount of cleanup
259
       calls. */
260
0
    initialized++;
261
0
    global_init_unlock();
262
0
    return CURLE_OK;
263
0
  }
264
265
  /* set memory functions before global_init() in case it wants memory
266
     functions */
267
0
  Curl_cmalloc = m;
268
0
  Curl_cfree = f;
269
0
  Curl_cstrdup = s;
270
0
  Curl_crealloc = r;
271
0
  Curl_ccalloc = c;
272
273
  /* Call the actual init function, but without setting */
274
0
  result = global_init(flags, FALSE);
275
276
0
  global_init_unlock();
277
278
0
  return result;
279
0
}
280
281
/**
282
 * curl_global_cleanup() globally cleanups curl.
283
 */
284
void curl_global_cleanup(void)
285
0
{
286
0
  global_init_lock();
287
288
0
  if(!initialized) {
289
0
    global_init_unlock();
290
0
    return;
291
0
  }
292
293
0
  if(--initialized) {
294
0
    global_init_unlock();
295
0
    return;
296
0
  }
297
298
0
  Curl_ssh_cleanup();
299
0
  Curl_ssl_cleanup();
300
0
  Curl_vquic_cleanup();
301
0
  Curl_async_global_cleanup();
302
0
  Curl_amiga_cleanup();
303
304
#ifdef USE_WINSOCK
305
  if(winsock_initialized) {
306
    WSACleanup();
307
    winsock_initialized = FALSE;
308
  }
309
#endif
310
311
#ifdef USE_WINDOWS_SSPI
312
  Curl_sspi_global_cleanup();
313
#endif
314
315
0
#ifdef DEBUGBUILD
316
0
  curlx_free(leakpointer);
317
0
#endif
318
319
0
  global_init_unlock();
320
0
}
321
322
/**
323
 * curl_global_trace() globally initializes curl logging.
324
 */
325
CURLcode curl_global_trace(const char *config)
326
0
{
327
0
#ifndef CURL_DISABLE_VERBOSE_STRINGS
328
0
  CURLcode result;
329
0
  global_init_lock();
330
331
0
  result = Curl_trc_opt(config);
332
333
0
  global_init_unlock();
334
335
0
  return result;
336
#else
337
  (void)config;
338
  return CURLE_OK;
339
#endif
340
0
}
341
342
/*
343
 * curl_global_sslset() globally initializes the SSL backend to use.
344
 */
345
CURLsslset curl_global_sslset(curl_sslbackend id, const char *name,
346
                              const curl_ssl_backend ***avail)
347
0
{
348
0
  CURLsslset rc;
349
350
0
  global_init_lock();
351
352
0
  rc = Curl_init_sslset_nolock(id, name, avail);
353
354
0
  global_init_unlock();
355
356
0
  return rc;
357
0
}
358
359
/*
360
 * curl_easy_init() is the external interface to alloc, setup and init an
361
 * easy handle that is returned. If anything goes wrong, NULL is returned.
362
 */
363
CURL *curl_easy_init(void)
364
19.0k
{
365
19.0k
  CURLcode result;
366
19.0k
  struct Curl_easy *data;
367
368
  /* Make sure we inited the global SSL stuff */
369
19.0k
  global_init_lock();
370
371
19.0k
  if(!initialized) {
372
1
    result = global_init(CURL_GLOBAL_DEFAULT, TRUE);
373
1
    if(result) {
374
      /* something in the global init failed, return nothing */
375
0
      DEBUGF(curl_mfprintf(stderr, "Error: curl_global_init failed\n"));
376
0
      global_init_unlock();
377
0
      return NULL;
378
0
    }
379
1
  }
380
19.0k
  global_init_unlock();
381
382
  /* We use Curl_open() with undefined URL so far */
383
19.0k
  result = Curl_open(&data);
384
19.0k
  if(result) {
385
0
    DEBUGF(curl_mfprintf(stderr, "Error: Curl_open failed\n"));
386
0
    return NULL;
387
0
  }
388
389
19.0k
  return data;
390
19.0k
}
391
392
#ifdef DEBUGBUILD
393
394
struct socketmonitor {
395
  struct socketmonitor *next; /* the next node in the list or NULL */
396
  struct pollfd socket; /* socket info of what to monitor */
397
};
398
399
struct events {
400
  long ms;              /* timeout, run the timeout function when reached */
401
  bool msbump;          /* set TRUE when timeout is set by callback */
402
  int num_sockets;      /* number of nodes in the monitor list */
403
  struct socketmonitor *list; /* list of sockets to monitor */
404
  int running_handles;  /* store the returned number */
405
};
406
407
#define DEBUG_EV_POLL   0
408
409
/* events_timer
410
 *
411
 * Callback that gets called with a new value when the timeout should be
412
 * updated.
413
 */
414
static int events_timer(CURLM *multi,    /* multi handle */
415
                        long timeout_ms, /* see above */
416
                        void *userp)     /* private callback pointer */
417
0
{
418
0
  struct events *ev = userp;
419
0
  (void)multi;
420
#if DEBUG_EV_POLL
421
  curl_mfprintf(stderr, "events_timer: set timeout %ldms\n", timeout_ms);
422
#endif
423
0
  ev->ms = timeout_ms;
424
0
  ev->msbump = TRUE;
425
0
  return 0;
426
0
}
427
428
/* poll2cselect
429
 *
430
 * convert from poll() bit definitions to libcurl's CURL_CSELECT_* ones
431
 */
432
static int poll2cselect(int pollmask)
433
0
{
434
0
  int omask = 0;
435
0
  if(pollmask & POLLIN)
436
0
    omask |= CURL_CSELECT_IN;
437
0
  if(pollmask & POLLOUT)
438
0
    omask |= CURL_CSELECT_OUT;
439
0
  if(pollmask & POLLERR)
440
0
    omask |= CURL_CSELECT_ERR;
441
0
  return omask;
442
0
}
443
444
/* socketcb2poll
445
 *
446
 * convert from libcurl' CURL_POLL_* bit definitions to poll()'s
447
 */
448
static short socketcb2poll(int pollmask)
449
0
{
450
0
  short omask = 0;
451
0
  if(pollmask & CURL_POLL_IN)
452
0
    omask |= POLLIN;
453
0
  if(pollmask & CURL_POLL_OUT)
454
0
    omask |= POLLOUT;
455
0
  return omask;
456
0
}
457
458
/* events_socket
459
 *
460
 * Callback that gets called with information about socket activity to
461
 * monitor.
462
 */
463
static int events_socket(CURL *easy,      /* easy handle */
464
                         curl_socket_t s, /* socket */
465
                         int what,        /* see above */
466
                         void *userp,     /* private callback
467
                                             pointer */
468
                         void *socketp)   /* private socket
469
                                             pointer */
470
0
{
471
0
  struct events *ev = userp;
472
0
  struct socketmonitor *m;
473
0
  struct socketmonitor *prev = NULL;
474
0
  bool found = FALSE;
475
0
  struct Curl_easy *data = easy;
476
477
#ifdef CURL_DISABLE_VERBOSE_STRINGS
478
  (void)easy;
479
#endif
480
0
  (void)socketp;
481
482
0
  m = ev->list;
483
0
  while(m) {
484
0
    if(m->socket.fd == s) {
485
0
      found = TRUE;
486
0
      if(what == CURL_POLL_REMOVE) {
487
0
        struct socketmonitor *nxt = m->next;
488
        /* remove this node from the list of monitored sockets */
489
0
        if(prev)
490
0
          prev->next = nxt;
491
0
        else
492
0
          ev->list = nxt;
493
0
        curlx_free(m);
494
0
        infof(data, "socket cb: socket %" FMT_SOCKET_T " REMOVED", s);
495
0
      }
496
0
      else {
497
        /* The socket 's' is already being monitored, update the activity
498
           mask. Convert from libcurl bitmask to the poll one. */
499
0
        m->socket.events = socketcb2poll(what);
500
0
        infof(data, "socket cb: socket %" FMT_SOCKET_T " UPDATED as %s%s", s,
501
0
              (what & CURL_POLL_IN) ? "IN" : "",
502
0
              (what & CURL_POLL_OUT) ? "OUT" : "");
503
0
      }
504
0
      break;
505
0
    }
506
0
    prev = m;
507
0
    m = m->next; /* move to next node */
508
0
  }
509
510
0
  if(!found) {
511
0
    if(what == CURL_POLL_REMOVE) {
512
      /* should not happen if our logic is correct, but is no drama. */
513
0
      DEBUGF(infof(data, "socket cb: asked to REMOVE socket %"
514
0
                   FMT_SOCKET_T "but not present!", s));
515
0
      DEBUGASSERT(0);
516
0
    }
517
0
    else {
518
0
      m = curlx_malloc(sizeof(struct socketmonitor));
519
0
      if(m) {
520
0
        m->next = ev->list;
521
0
        m->socket.fd = s;
522
0
        m->socket.events = socketcb2poll(what);
523
0
        m->socket.revents = 0;
524
0
        ev->list = m;
525
0
        infof(data, "socket cb: socket %" FMT_SOCKET_T " ADDED as %s%s", s,
526
0
              (what & CURL_POLL_IN) ? "IN" : "",
527
0
              (what & CURL_POLL_OUT) ? "OUT" : "");
528
0
      }
529
0
      else
530
0
        return CURLE_OUT_OF_MEMORY;
531
0
    }
532
0
  }
533
534
0
  return 0;
535
0
}
536
537
/*
538
 * events_setup()
539
 *
540
 * Do the multi handle setups that only event-based transfers need.
541
 */
542
static void events_setup(struct Curl_multi *multi, struct events *ev)
543
{
544
  /* timer callback */
545
  curl_multi_setopt(multi, CURLMOPT_TIMERFUNCTION, events_timer);
546
  curl_multi_setopt(multi, CURLMOPT_TIMERDATA, ev);
547
548
  /* socket callback */
549
  curl_multi_setopt(multi, CURLMOPT_SOCKETFUNCTION, events_socket);
550
  curl_multi_setopt(multi, CURLMOPT_SOCKETDATA, ev);
551
}
552
553
/* populate_fds()
554
 *
555
 * populate the fds[] array
556
 */
557
static unsigned int populate_fds(struct pollfd *fds, struct events *ev)
558
0
{
559
0
  unsigned int numfds = 0;
560
0
  struct pollfd *f;
561
0
  struct socketmonitor *m;
562
563
0
  f = &fds[0];
564
0
  for(m = ev->list; m; m = m->next) {
565
0
    f->fd = m->socket.fd;
566
0
    f->events = m->socket.events;
567
0
    f->revents = 0;
568
#if DEBUG_EV_POLL
569
    curl_mfprintf(stderr, "poll() %d check socket %d\n", numfds, f->fd);
570
#endif
571
0
    f++;
572
0
    numfds++;
573
0
  }
574
0
  return numfds;
575
0
}
576
577
/* poll_fds()
578
 *
579
 * poll the fds[] array
580
 */
581
static CURLcode poll_fds(struct events *ev,
582
                         struct pollfd *fds,
583
                         const unsigned int numfds,
584
                         int *pollrc)
585
0
{
586
0
  if(numfds) {
587
    /* wait for activity or timeout */
588
#if DEBUG_EV_POLL
589
    curl_mfprintf(stderr, "poll(numfds=%u, timeout=%ldms)\n", numfds, ev->ms);
590
#endif
591
0
    *pollrc = Curl_poll(fds, numfds, ev->ms);
592
#if DEBUG_EV_POLL
593
    curl_mfprintf(stderr, "poll(numfds=%u, timeout=%ldms) -> %d\n",
594
                  numfds, ev->ms, *pollrc);
595
#endif
596
0
    if(*pollrc < 0)
597
0
      return CURLE_UNRECOVERABLE_POLL;
598
0
  }
599
0
  else {
600
#if DEBUG_EV_POLL
601
    curl_mfprintf(stderr, "poll, but no fds, wait timeout=%ldms\n", ev->ms);
602
#endif
603
0
    *pollrc = 0;
604
0
    if(ev->ms > 0)
605
0
      curlx_wait_ms(ev->ms);
606
0
  }
607
0
  return CURLE_OK;
608
0
}
609
610
/* wait_or_timeout()
611
 *
612
 * waits for activity on any of the given sockets, or the timeout to trigger.
613
 */
614
static CURLcode wait_or_timeout(struct Curl_multi *multi, struct events *ev)
615
0
{
616
0
  bool done = FALSE;
617
0
  CURLMcode mresult = CURLM_OK;
618
0
  CURLcode result = CURLE_OK;
619
620
0
  while(!done) {
621
0
    CURLMsg *msg;
622
0
    struct pollfd fds[4];
623
0
    int pollrc;
624
0
    struct curltime start;
625
0
    const unsigned int numfds = populate_fds(fds, ev);
626
627
    /* get the time stamp to use to figure out how long poll takes */
628
0
    curlx_pnow(&start);
629
630
0
    result = poll_fds(ev, fds, numfds, &pollrc);
631
0
    if(result)
632
0
      return result;
633
634
0
    ev->msbump = FALSE; /* reset here */
635
636
0
    if(!pollrc) {
637
      /* timeout! */
638
0
      ev->ms = 0;
639
#if 0
640
      curl_mfprintf(stderr, "call curl_multi_socket_action(TIMEOUT)\n");
641
#endif
642
0
      mresult = curl_multi_socket_action(multi, CURL_SOCKET_TIMEOUT, 0,
643
0
                                         &ev->running_handles);
644
0
    }
645
0
    else {
646
      /* here pollrc is > 0 */
647
      /* loop over the monitored sockets to see which ones had activity */
648
0
      unsigned int i;
649
0
      for(i = 0; i < numfds; i++) {
650
0
        if(fds[i].revents) {
651
          /* socket activity, tell libcurl */
652
0
          int act = poll2cselect(fds[i].revents); /* convert */
653
654
          /* sending infof "randomly" to the first easy handle */
655
0
          infof(multi->admin, "call curl_multi_socket_action(socket "
656
0
                "%" FMT_SOCKET_T ")", (curl_socket_t)fds[i].fd);
657
0
          mresult = curl_multi_socket_action(multi, fds[i].fd, act,
658
0
                                             &ev->running_handles);
659
0
        }
660
0
      }
661
662
0
      if(!ev->msbump && ev->ms >= 0) {
663
        /* If nothing updated the timeout, we decrease it by the spent time.
664
         * If it was updated, it has the new timeout time stored already.
665
         */
666
0
        timediff_t spent_ms = curlx_timediff_ms(curlx_now(), start);
667
0
        if(spent_ms > 0) {
668
#if DEBUG_EV_POLL
669
        curl_mfprintf(stderr, "poll timeout %ldms not updated, decrease by "
670
                      "time spent %ldms\n", ev->ms, (long)spent_ms);
671
#endif
672
0
          if(spent_ms > ev->ms)
673
0
            ev->ms = 0;
674
0
          else
675
0
            ev->ms -= (long)spent_ms;
676
0
        }
677
0
      }
678
0
    }
679
680
0
    if(mresult)
681
0
      return CURLE_URL_MALFORMAT;
682
683
    /* we do not really care about the "msgs_in_queue" value returned in the
684
       second argument */
685
0
    msg = curl_multi_info_read(multi, &pollrc);
686
0
    if(msg) {
687
0
      result = msg->data.result;
688
0
      done = TRUE;
689
0
    }
690
0
  }
691
692
0
  return result;
693
0
}
694
695
/* easy_events()
696
 *
697
 * Runs a transfer in a blocking manner using the events-based API
698
 */
699
static CURLcode easy_events(struct Curl_multi *multi)
700
0
{
701
  /* this struct is made static to allow it to be used after this function
702
     returns and curl_multi_remove_handle() is called */
703
0
  static struct events evs = { -1, FALSE, 0, NULL, 0 };
704
705
  /* if running event-based, do some further multi inits */
706
0
  events_setup(multi, &evs);
707
708
0
  return wait_or_timeout(multi, &evs);
709
0
}
710
#else /* DEBUGBUILD */
711
/* when not built with debug, this function does not exist */
712
#define easy_events(x) CURLE_NOT_BUILT_IN
713
#endif
714
715
static CURLcode easy_transfer(struct Curl_multi *multi)
716
0
{
717
0
  bool done = FALSE;
718
0
  CURLMcode mresult = CURLM_OK;
719
0
  CURLcode result = CURLE_OK;
720
721
0
  while(!done && !mresult) {
722
0
    int still_running = 0;
723
724
0
    mresult = curl_multi_poll(multi, NULL, 0, 1000, NULL);
725
726
0
    if(!mresult)
727
0
      mresult = curl_multi_perform(multi, &still_running);
728
729
    /* only read 'still_running' if curl_multi_perform() return OK */
730
0
    if(!mresult && !still_running) {
731
0
      int rc;
732
0
      CURLMsg *msg = curl_multi_info_read(multi, &rc);
733
0
      if(msg) {
734
0
        result = msg->data.result;
735
0
        done = TRUE;
736
0
      }
737
0
    }
738
0
  }
739
740
  /* Make sure to return some kind of error if there was a multi problem */
741
0
  if(mresult) {
742
0
    result = (mresult == CURLM_OUT_OF_MEMORY) ? CURLE_OUT_OF_MEMORY :
743
      /* The other multi errors should never happen, so return
744
         something suitably generic */
745
0
      CURLE_BAD_FUNCTION_ARGUMENT;
746
0
  }
747
748
0
  return result;
749
0
}
750
751
/*
752
 * easy_perform() is the internal interface that performs a blocking
753
 * transfer as previously setup.
754
 *
755
 * CONCEPT: This function creates a multi handle, adds the easy handle to it,
756
 * runs curl_multi_perform() until the transfer is done, then detaches the
757
 * easy handle, destroys the multi handle and returns the easy handle's return
758
 * code.
759
 *
760
 * REALITY: it cannot create and destroy the multi handle that easily. It
761
 * needs to keep it around since if this easy handle is used again by this
762
 * function, the same multi handle must be reused so that the same pools and
763
 * caches can be used.
764
 *
765
 * DEBUG: if 'events' is set TRUE, this function will use a replacement engine
766
 * instead of curl_multi_perform() and use curl_multi_socket_action().
767
 */
768
static CURLcode easy_perform(struct Curl_easy *data, bool events)
769
0
{
770
0
  struct Curl_multi *multi;
771
0
  CURLMcode mresult;
772
0
  CURLcode result = CURLE_OK;
773
0
  struct Curl_sigpipe_ctx sigpipe_ctx;
774
775
0
  if(!data)
776
0
    return CURLE_BAD_FUNCTION_ARGUMENT;
777
778
0
  if(data->set.errorbuffer)
779
    /* clear this as early as possible */
780
0
    data->set.errorbuffer[0] = 0;
781
782
0
  data->state.os_errno = 0;
783
784
0
  if(data->multi) {
785
0
    failf(data, "easy handle already used in multi handle");
786
0
    return CURLE_FAILED_INIT;
787
0
  }
788
789
  /* if the handle has a connection still attached (it is/was a connect-only
790
     handle) then disconnect before performing */
791
0
  if(data->conn) {
792
0
    struct connectdata *conn = data->conn;
793
0
    Curl_detach_connection(data);
794
0
    Curl_conn_close(data, conn, TRUE);
795
0
    DEBUGASSERT(!data->conn);
796
0
  }
797
798
0
  if(data->multi_easy)
799
0
    multi = data->multi_easy;
800
0
  else {
801
    /* this multi handle will only ever have a single easy handle attached to
802
       it, so make it use minimal hash sizes */
803
0
    multi = Curl_multi_handle(16, 1, 3, 7, 3);
804
0
    if(!multi)
805
0
      return CURLE_OUT_OF_MEMORY;
806
0
  }
807
808
0
  if(Curl_api_multi_is_in_callback(multi))
809
0
    return CURLE_RECURSIVE_API_CALL;
810
811
  /* Copy relevant easy options to the multi handle */
812
0
  curl_multi_setopt(multi, CURLMOPT_MAXCONNECTS, (long)data->set.maxconnects);
813
0
  curl_multi_setopt(multi, CURLMOPT_QUICK_EXIT, (long)data->set.quick_exit);
814
815
0
  data->multi_easy = NULL; /* pretend it does not exist */
816
0
  mresult = Curl_multi_add_handle(multi, data);
817
0
  if(mresult) {
818
0
    curl_multi_cleanup(multi);
819
0
    if(mresult == CURLM_OUT_OF_MEMORY)
820
0
      return CURLE_OUT_OF_MEMORY;
821
0
    return CURLE_FAILED_INIT;
822
0
  }
823
824
  /* assign this after curl_multi_add_handle() */
825
0
  data->multi_easy = multi;
826
827
0
  sigpipe_init(&sigpipe_ctx);
828
0
  sigpipe_apply(data, &sigpipe_ctx);
829
830
  /* run the transfer */
831
0
  result = events ? easy_events(multi) : easy_transfer(multi);
832
833
  /* ignoring the return code is not nice, but atm we cannot really handle
834
     a failure here, room for future improvement! */
835
0
  (void)Curl_multi_remove_handle(multi, data);
836
837
0
  sigpipe_restore(&sigpipe_ctx);
838
839
  /* The multi handle is kept alive, owned by the easy handle */
840
0
  return result;
841
0
}
842
843
/*
844
 * curl_easy_perform() is the external interface that performs a blocking
845
 * transfer as previously setup.
846
 */
847
CURLcode curl_easy_perform(CURL *curl)
848
0
{
849
0
  struct Curl_eapi_guard guard = { 0 };
850
0
  CURLcode result;
851
852
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_perform, &result)) {
853
0
    result = easy_perform(curl, FALSE);
854
0
  }
855
0
  CURL_EAPI_LEAVE(&guard);
856
0
  return result;
857
0
}
858
859
#ifdef DEBUGBUILD
860
/*
861
 * curl_easy_perform_ev() is the external interface that performs a blocking
862
 * transfer using the event-based API internally.
863
 */
864
CURLcode curl_easy_perform_ev(struct Curl_easy *easy)
865
0
{
866
0
  struct Curl_eapi_guard guard;
867
0
  CURLcode result;
868
869
0
  if(CURL_EAPI_ENTER(&guard, easy, easy_perform_ev, &result)) {
870
0
    result = easy_perform(easy, TRUE);
871
0
  }
872
0
  CURL_EAPI_LEAVE(&guard);
873
0
  return result;
874
0
}
875
#endif
876
877
/*
878
 * curl_easy_cleanup() is the external interface to cleaning/freeing the given
879
 * easy handle.
880
 */
881
void curl_easy_cleanup(CURL *curl)
882
10.4k
{
883
10.4k
  struct Curl_eapi_guard guard;
884
885
10.4k
  if(CURL_EAPI_ENTER(&guard, curl, easy_cleanup, NULL)) {
886
10.4k
    struct Curl_easy *data = curl;
887
10.4k
    struct Curl_sigpipe_ctx sigpipe_ctx;
888
10.4k
    sigpipe_ignore(data, &sigpipe_ctx);
889
10.4k
    Curl_close(&data);
890
10.4k
    sigpipe_restore(&sigpipe_ctx);
891
10.4k
  }
892
10.4k
  CURL_EAPI_LEAVE(&guard);
893
10.4k
}
894
895
/*
896
 * curl_easy_getinfo() is an external interface that allows an app to retrieve
897
 * information from a performed transfer and similar.
898
 */
899
#undef curl_easy_getinfo
900
CURLcode curl_easy_getinfo(CURL *curl, CURLINFO info, ...)
901
0
{
902
0
  struct Curl_eapi_guard guard;
903
0
  CURLcode result;
904
905
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_getinfo, &result)) {
906
0
    struct Curl_easy *data = curl;
907
0
    va_list arg;
908
0
    void *paramp;
909
910
0
    va_start(arg, info);
911
0
    paramp = va_arg(arg, void *);
912
913
0
    result = Curl_getinfo(data, info, paramp);
914
915
0
    va_end(arg);
916
0
  }
917
0
  CURL_EAPI_LEAVE(&guard);
918
0
  return result;
919
0
}
920
921
static CURLcode dupset(struct Curl_easy *dst, struct Curl_easy *src)
922
0
{
923
0
  CURLcode result = CURLE_OK;
924
0
  enum dupblob j;
925
926
  /* Copy src->set into dst->set first, then deal with the strings
927
     afterwards */
928
0
  dst->set = src->set;
929
0
#if !defined(CURL_DISABLE_MIME) || !defined(CURL_DISABLE_FORM_API)
930
0
  dst->set.mimepostp = NULL;
931
0
#endif
932
0
  dst->set.str_copypostfields = NULL;
933
934
0
  Curl_u8_strset_init(&dst->set.strings);
935
  /* clear all dest string and blob pointers first, in case we error out
936
     mid-function */
937
0
  memset(dst->set.blobs, 0, BLOB_LAST * sizeof(struct curl_blob *));
938
939
  /* duplicate all strings */
940
0
  result = Curl_u8_strset_copy(&dst->set.strings, &src->set.strings);
941
0
  if(result)
942
0
    return result;
943
944
  /* duplicate all blobs */
945
0
  for(j = (enum dupblob)0; j < BLOB_LAST; j++) {
946
0
    result = Curl_setblobopt(&dst->set.blobs[j], src->set.blobs[j]);
947
0
    if(result)
948
0
      return result;
949
0
  }
950
951
  /* duplicate memory areas pointed to */
952
0
  if(src->set.str_copypostfields) {
953
0
    if(src->set.postfieldsize == -1)
954
0
      dst->set.str_copypostfields = curlx_strdup(src->set.str_copypostfields);
955
0
    else
956
      /* postfieldsize is curl_off_t, curlx_memdup0() takes a size_t ... */
957
0
      dst->set.str_copypostfields =
958
0
        curlx_memdup0(src->set.str_copypostfields,
959
0
                      curlx_sotouz(src->set.postfieldsize));
960
0
    if(!dst->set.str_copypostfields)
961
0
      return CURLE_OUT_OF_MEMORY;
962
    /* point to the new copy */
963
0
    dst->set.postfields = dst->set.str_copypostfields;
964
0
  }
965
966
0
#if !defined(CURL_DISABLE_MIME) || !defined(CURL_DISABLE_FORM_API)
967
0
  if(src->set.mimepostp) {
968
    /* Duplicate mime data. Get a mimepost struct for the clone as well */
969
0
    dst->set.mimepostp = curlx_malloc(sizeof(*dst->set.mimepostp));
970
0
    if(!dst->set.mimepostp)
971
0
      return CURLE_OUT_OF_MEMORY;
972
973
0
    Curl_mime_initpart(dst->set.mimepostp);
974
0
    result = Curl_mime_duppart(dst, dst->set.mimepostp, src->set.mimepostp);
975
0
    if(result)
976
0
      return result;
977
0
  }
978
0
#endif
979
980
0
  if(src->set.resolve)
981
0
    dst->state.resolve = dst->set.resolve;
982
983
0
  return result;
984
0
}
985
986
static void dupeasy_meta_freeentry(void *p)
987
0
{
988
0
  (void)p;
989
  /* Always FALSE. Cannot use a 0 assert here since compilers
990
   * are not in agreement if they then want a NORETURN attribute or
991
   * not. *sigh* */
992
0
  DEBUGASSERT(!p);
993
0
}
994
995
/*
996
 * curl_easy_duphandle() is an external interface to allow duplication of a
997
 * given input easy handle. The returned handle will be a new working handle
998
 * with all options set exactly as the input source handle.
999
 */
1000
CURL *curl_easy_duphandle(CURL *curl)
1001
0
{
1002
0
  struct Curl_eapi_guard guard;
1003
0
  struct Curl_easy *outcurl = NULL;
1004
1005
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_duphandle, NULL)) {
1006
0
    struct Curl_easy *data = curl;
1007
0
    const char *str;
1008
1009
0
    outcurl = curlx_calloc(1, sizeof(struct Curl_easy));
1010
0
    if(!outcurl)
1011
0
      goto fail;
1012
1013
    /*
1014
     * We setup a few buffers we need. We should probably make them
1015
     * get setup on-demand in the code, as that would probably decrease
1016
     * the likeliness of us forgetting to init a buffer here in the future.
1017
     */
1018
0
    outcurl->set.buffer_size = data->set.buffer_size;
1019
1020
0
    Curl_hash_init(&outcurl->meta_hash, 23, CURL_HASH_TYPE_BYTES,
1021
0
                   dupeasy_meta_freeentry);
1022
0
    curlx_dyn_init(&outcurl->state.headerb, CURL_MAX_HTTP_HEADER);
1023
0
    Curl_bufref_init(&outcurl->state.url);
1024
0
    Curl_bufref_init(&outcurl->state.referer);
1025
0
    Curl_netrc_init(&outcurl->state.netrc);
1026
1027
    /* the connection pool is setup on demand */
1028
0
    outcurl->state.lastconnect_id = -1;
1029
0
    outcurl->id = -1;
1030
0
    outcurl->mid = UINT32_MAX;
1031
0
    outcurl->master_mid = UINT32_MAX;
1032
1033
0
#ifndef CURL_DISABLE_HTTP
1034
0
    Curl_llist_init(&outcurl->state.httphdrs, NULL);
1035
0
#endif
1036
0
    Curl_initinfo(outcurl);
1037
1038
    /* copy all userdefined values */
1039
0
    if(dupset(outcurl, data))
1040
0
      goto fail;
1041
1042
0
    outcurl->progress.hide     = data->progress.hide;
1043
0
    outcurl->progress.callback = data->progress.callback;
1044
1045
0
#ifndef CURL_DISABLE_COOKIES
1046
0
    outcurl->state.cookielist = NULL;
1047
0
    if(data->cookies && data->state.cookie_engine) {
1048
      /* If cookies are enabled in the parent handle, we enable them
1049
         in the clone as well! */
1050
0
      outcurl->cookies = Curl_cookie_init();
1051
0
      if(!outcurl->cookies)
1052
0
        goto fail;
1053
0
      outcurl->state.cookie_engine = TRUE;
1054
0
    }
1055
1056
0
    if(data->state.cookielist) {
1057
0
      outcurl->state.cookielist = Curl_slist_duplicate(data->state.cookielist);
1058
0
      if(!outcurl->state.cookielist)
1059
0
        goto fail;
1060
0
    }
1061
0
#endif
1062
1063
0
    if(Curl_bufref_ptr(&data->state.url)) {
1064
0
      Curl_bufref_set(&outcurl->state.url,
1065
0
                      Curl_bufref_dup(&data->state.url), 0,
1066
0
                      curl_free);
1067
0
      if(!Curl_bufref_ptr(&outcurl->state.url))
1068
0
        goto fail;
1069
0
    }
1070
0
    if(Curl_bufref_ptr(&data->state.referer)) {
1071
0
      Curl_bufref_set(&outcurl->state.referer,
1072
0
                      Curl_bufref_dup(&data->state.referer), 0,
1073
0
                      curl_free);
1074
0
      if(!Curl_bufref_ptr(&outcurl->state.referer))
1075
0
        goto fail;
1076
0
    }
1077
1078
    /* Reinitialize an SSL engine for the new handle
1079
     * note: the engine name has already been copied by dupset */
1080
0
    str = CURL_EASY_STR(outcurl, STRING_SSL_ENGINE);
1081
0
    if(str) {
1082
0
      if(Curl_ssl_set_engine(outcurl, str))
1083
0
        goto fail;
1084
0
    }
1085
1086
0
#ifndef CURL_DISABLE_ALTSVC
1087
0
    if(data->asi) {
1088
0
      outcurl->asi = Curl_altsvc_init();
1089
0
      if(!outcurl->asi)
1090
0
        goto fail;
1091
0
      str = CURL_EASY_STR(outcurl, STRING_ALTSVC);
1092
0
      if(str)
1093
0
        (void)Curl_altsvc_load(outcurl->asi, str);
1094
0
    }
1095
0
#endif
1096
0
#ifndef CURL_DISABLE_HSTS
1097
0
    if(data->hsts) {
1098
0
      outcurl->hsts = Curl_hsts_init();
1099
0
      if(!outcurl->hsts)
1100
0
        goto fail;
1101
0
      str = CURL_EASY_STR(outcurl, STRING_HSTS);
1102
0
      if(str)
1103
0
        (void)Curl_hsts_loadfile(outcurl, outcurl->hsts, str);
1104
0
      (void)Curl_hsts_loadcb(outcurl, outcurl->hsts);
1105
1106
      /* Copy entries learned at runtime. (E.g. Strict-Transport-Security
1107
         headers.) */
1108
0
      if(Curl_hsts_copy(outcurl->hsts, data->hsts))
1109
0
        goto fail;
1110
0
    }
1111
0
#endif
1112
1113
    /* we reach this point and thus we are OK */
1114
0
    outcurl->magic = CURLEASY_MAGIC_NUMBER;
1115
0
  }
1116
0
  CURL_EAPI_LEAVE(&guard);
1117
0
  return outcurl;
1118
1119
0
fail:
1120
0
  if(outcurl) {
1121
0
#ifndef CURL_DISABLE_COOKIES
1122
0
    curlx_free(outcurl->cookies);
1123
0
#endif
1124
0
    curlx_dyn_free(&outcurl->state.headerb);
1125
0
    Curl_altsvc_cleanup(&outcurl->asi);
1126
0
    Curl_hsts_cleanup(&outcurl->hsts);
1127
0
    Curl_freeset(outcurl);
1128
0
    curlx_free(outcurl);
1129
0
  }
1130
1131
0
  CURL_EAPI_LEAVE(&guard);
1132
0
  return NULL;
1133
0
}
1134
1135
/*
1136
 * curl_easy_reset() is an external interface that allows an app to re-
1137
 * initialize a session handle to the default values.
1138
 */
1139
void curl_easy_reset(CURL *curl)
1140
0
{
1141
0
  struct Curl_eapi_guard guard;
1142
1143
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_reset, NULL)) {
1144
0
    struct Curl_easy *data = curl;
1145
1146
0
    data->state.lastconnect_id = -1; /* clear remembered connection id */
1147
0
    Curl_req_hard_reset(&data->req, data);
1148
0
    Curl_hash_clean(&data->meta_hash);
1149
1150
    /* clear all meta data */
1151
0
    Curl_meta_reset(data);
1152
    /* zero out UserDefined data: */
1153
0
    Curl_freeset(data);
1154
0
    memset(&data->set, 0, sizeof(struct UserDefined));
1155
0
    Curl_init_userdefined(data);
1156
1157
    /* zero out Progress data: */
1158
0
    memset(&data->progress, 0, sizeof(struct Progress));
1159
1160
    /* zero out PureInfo data: */
1161
0
    Curl_initinfo(data);
1162
1163
0
    data->progress.hide = TRUE;
1164
1165
    /* zero out authentication data: */
1166
0
    memset(&data->state.authhost, 0, sizeof(struct auth));
1167
0
    memset(&data->state.authproxy, 0, sizeof(struct auth));
1168
1169
0
#if !defined(CURL_DISABLE_HTTP) && !defined(CURL_DISABLE_DIGEST_AUTH)
1170
0
    Curl_http_auth_cleanup_digest(data);
1171
0
#endif
1172
0
    data->master_mid = UINT32_MAX;
1173
0
  }
1174
0
  CURL_EAPI_LEAVE(&guard);
1175
0
}
1176
1177
/*
1178
 * curl_easy_pause() allows an application to pause or unpause a specific
1179
 * transfer and direction. This function sets the full new state for the
1180
 * current connection this easy handle operates on.
1181
 *
1182
 * NOTE: if you have the receiving paused and you call this function to remove
1183
 * the pausing, you may get your write callback called at this point.
1184
 *
1185
 * Action is a bitmask consisting of CURLPAUSE_* bits in curl/curl.h
1186
 *
1187
 * NOTE: This is one of few API functions that are allowed to be called from
1188
 * within a callback.
1189
 */
1190
CURLcode curl_easy_pause(CURL *curl, int action)
1191
0
{
1192
0
  struct Curl_eapi_guard guard;
1193
0
  CURLcode result = CURLE_OK;
1194
1195
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_pause, &result)) {
1196
0
    bool changed = FALSE;
1197
0
    struct Curl_easy *data = curl;
1198
0
    bool recv_paused, recv_paused_new;
1199
0
    bool send_paused, send_paused_new;
1200
1201
0
    if(!data->conn) {
1202
      /* crazy input, do not continue */
1203
0
      result = CURLE_BAD_FUNCTION_ARGUMENT;
1204
0
      goto out;
1205
0
    }
1206
1207
0
    recv_paused = Curl_xfer_recv_is_paused(data);
1208
0
    recv_paused_new = (action & CURLPAUSE_RECV);
1209
0
    send_paused = Curl_xfer_send_is_paused(data);
1210
0
    send_paused_new = (action & CURLPAUSE_SEND);
1211
1212
0
    if((send_paused != send_paused_new) ||
1213
0
       (send_paused_new != Curl_creader_is_paused(data))) {
1214
0
      changed = TRUE;
1215
0
      result = Curl_1st_fatal(
1216
0
        result, Curl_xfer_pause_send(data, send_paused_new));
1217
0
    }
1218
1219
0
    if(recv_paused != recv_paused_new) {
1220
0
      changed = TRUE;
1221
0
      result = Curl_1st_fatal(
1222
0
        result, Curl_xfer_pause_recv(data, recv_paused_new));
1223
0
    }
1224
1225
    /* If not completely pausing both directions, run again in any case. */
1226
0
    if(!Curl_xfer_is_blocked(data)) {
1227
      /* reset the too-slow time keeper */
1228
0
      data->state.keeps_speed.tv_sec = 0;
1229
0
      if(data->multi) {
1230
0
        Curl_multi_mark_dirty(data); /* make it run */
1231
        /* On changes, tell application to update its timers. */
1232
0
        if(changed && Curl_update_timer(data->multi) && !result)
1233
0
          result = CURLE_ABORTED_BY_CALLBACK;
1234
0
      }
1235
0
    }
1236
1237
0
    if(!result && changed && !data->state.done && data->multi &&
1238
       /* pause/unpausing may result in multi event changes */
1239
0
       Curl_multi_ev_assess_xfer(data->multi, data))
1240
0
      result = CURLE_ABORTED_BY_CALLBACK;
1241
0
  }
1242
0
out:
1243
0
  CURL_EAPI_LEAVE(&guard);
1244
0
  return result;
1245
0
}
1246
1247
static CURLcode easy_connection(struct Curl_easy *data,
1248
                                struct connectdata **connp)
1249
0
{
1250
0
  curl_socket_t sfd;
1251
1252
0
  if(!data)
1253
0
    return CURLE_BAD_FUNCTION_ARGUMENT;
1254
1255
  /* only allow these to be called on handles with CURLOPT_CONNECT_ONLY */
1256
0
  if(!data->set.connect_only) {
1257
0
    failf(data, "CONNECT_ONLY is required");
1258
0
    return CURLE_UNSUPPORTED_PROTOCOL;
1259
0
  }
1260
1261
0
  sfd = Curl_getconnectinfo(data, connp);
1262
1263
0
  if(sfd == CURL_SOCKET_BAD) {
1264
0
    failf(data, "Failed to get last socket used for connection #%" FMT_OFF_T,
1265
0
          data->state.lastconnect_id);
1266
0
    return CURLE_UNSUPPORTED_PROTOCOL;
1267
0
  }
1268
1269
0
  return CURLE_OK;
1270
0
}
1271
1272
/*
1273
 * Receives data from the connected socket. Use after successful
1274
 * curl_easy_perform() with CURLOPT_CONNECT_ONLY option.
1275
 * Returns CURLE_OK on success, error code on error.
1276
 */
1277
CURLcode Curl_easy_recv(struct Curl_easy *data,
1278
                        void *buffer, size_t buflen, size_t *n)
1279
0
{
1280
0
  CURLcode result;
1281
0
  struct connectdata *c;
1282
1283
0
  result = easy_connection(data, &c);
1284
0
  if(result)
1285
0
    return result;
1286
1287
0
  if(!data->conn)
1288
    /* on first invoke, the transfer has been detached from the connection and
1289
       needs to be reattached */
1290
0
    Curl_attach_connection(data, c, TRUE);
1291
1292
0
  *n = 0;
1293
0
  return Curl_conn_recv(data, FIRSTSOCKET, buffer, buflen, n);
1294
0
}
1295
1296
CURLcode curl_easy_recv(CURL *curl, void *buffer, size_t buflen, size_t *n)
1297
0
{
1298
0
  struct Curl_eapi_guard guard;
1299
0
  CURLcode result;
1300
1301
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_recv, &result)) {
1302
0
    result = Curl_easy_recv(curl, buffer, buflen, n);
1303
0
  }
1304
0
  CURL_EAPI_LEAVE(&guard);
1305
0
  return result;
1306
0
}
1307
1308
#ifndef CURL_DISABLE_WEBSOCKETS
1309
CURLcode Curl_connect_only_attach(struct Curl_easy *data)
1310
0
{
1311
0
  CURLcode result;
1312
0
  struct connectdata *c = NULL;
1313
1314
0
  result = easy_connection(data, &c);
1315
0
  if(result)
1316
0
    return result;
1317
1318
0
  if(!data->conn)
1319
    /* on first invoke, the transfer has been detached from the connection and
1320
       needs to be reattached */
1321
0
    Curl_attach_connection(data, c, TRUE);
1322
1323
0
  return CURLE_OK;
1324
0
}
1325
#endif /* !CURL_DISABLE_WEBSOCKETS */
1326
1327
/*
1328
 * Sends data over the connected socket.
1329
 *
1330
 * This is the private internal version of curl_easy_send()
1331
 */
1332
CURLcode Curl_senddata(struct Curl_easy *data, const void *buffer,
1333
                       size_t buflen, size_t *n)
1334
0
{
1335
0
  CURLcode result;
1336
0
  struct connectdata *c = NULL;
1337
0
  struct Curl_sigpipe_ctx sigpipe_ctx;
1338
1339
0
  *n = 0;
1340
0
  result = easy_connection(data, &c);
1341
0
  if(result)
1342
0
    return result;
1343
1344
0
  if(!data->conn)
1345
    /* on first invoke, the transfer has been detached from the connection and
1346
       needs to be reattached */
1347
0
    Curl_attach_connection(data, c, TRUE);
1348
1349
0
  sigpipe_ignore(data, &sigpipe_ctx);
1350
0
  result = Curl_conn_send(data, FIRSTSOCKET, buffer, buflen, FALSE, n);
1351
0
  sigpipe_restore(&sigpipe_ctx);
1352
1353
0
  if(result && result != CURLE_AGAIN)
1354
0
    return CURLE_SEND_ERROR;
1355
0
  return result;
1356
0
}
1357
1358
/*
1359
 * Sends data over the connected socket. Use after successful
1360
 * curl_easy_perform() with CURLOPT_CONNECT_ONLY option.
1361
 */
1362
CURLcode curl_easy_send(CURL *curl, const void *buffer, size_t buflen,
1363
                        size_t *n)
1364
0
{
1365
0
  struct Curl_eapi_guard guard;
1366
0
  CURLcode result;
1367
1368
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_send, &result)) {
1369
0
    struct Curl_easy *data = curl;
1370
0
    size_t written = 0;
1371
1372
0
    result = Curl_senddata(data, buffer, buflen, &written);
1373
0
    *n = written;
1374
0
  }
1375
0
  CURL_EAPI_LEAVE(&guard);
1376
0
  return result;
1377
0
}
1378
1379
/*
1380
 * Performs connection upkeep for the given session handle.
1381
 */
1382
CURLcode curl_easy_upkeep(CURL *curl)
1383
0
{
1384
0
  struct Curl_eapi_guard guard;
1385
0
  CURLcode result;
1386
1387
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_upkeep, &result)) {
1388
    /* Use the common function to keep connections alive. */
1389
0
    result = Curl_cpool_upkeep((struct Curl_easy *)curl);
1390
0
  }
1391
0
  CURL_EAPI_LEAVE(&guard);
1392
0
  return result;
1393
0
}
1394
1395
CURLcode curl_easy_ssls_import(CURL *curl, const char *session_key,
1396
                               const unsigned char *shmac, size_t shmac_len,
1397
                               const unsigned char *sdata, size_t sdata_len)
1398
0
{
1399
0
#if defined(USE_SSL) && defined(USE_SSLS_EXPORT)
1400
0
  struct Curl_eapi_guard guard;
1401
0
  CURLcode result;
1402
1403
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_ssls_import, &result)) {
1404
0
    result = Curl_ssl_session_import((struct Curl_easy *)curl, session_key,
1405
0
                                     shmac, shmac_len, sdata, sdata_len);
1406
0
  }
1407
0
  CURL_EAPI_LEAVE(&guard);
1408
0
  return result;
1409
#else
1410
  (void)curl;
1411
  (void)session_key;
1412
  (void)shmac;
1413
  (void)shmac_len;
1414
  (void)sdata;
1415
  (void)sdata_len;
1416
  return CURLE_NOT_BUILT_IN;
1417
#endif
1418
0
}
1419
1420
CURLcode curl_easy_ssls_export(CURL *curl,
1421
                               curl_ssls_export_cb *export_fn,
1422
                               void *userptr)
1423
0
{
1424
0
#if defined(USE_SSL) && defined(USE_SSLS_EXPORT)
1425
0
  struct Curl_eapi_guard guard;
1426
0
  CURLcode result;
1427
1428
0
  if(CURL_EAPI_ENTER(&guard, curl, easy_ssls_export, &result)) {
1429
0
    result = Curl_ssl_session_export((struct Curl_easy *)curl,
1430
0
                                     export_fn, userptr);
1431
0
  }
1432
0
  CURL_EAPI_LEAVE(&guard);
1433
0
  return result;
1434
#else
1435
  (void)curl;
1436
  (void)export_fn;
1437
  (void)userptr;
1438
  return CURLE_NOT_BUILT_IN;
1439
#endif
1440
0
}
1441
1442
CURLcode Curl_meta_set(struct Curl_easy *data, const char *key,
1443
                       void *meta_data, Curl_meta_dtor *meta_dtor)
1444
1.56k
{
1445
1.56k
  DEBUGASSERT(meta_data); /* never set to NULL */
1446
1.56k
  if(!Curl_hash_add2(&data->meta_hash, key, strlen(key) + 1,
1447
1.56k
                     meta_data, meta_dtor)) {
1448
0
    meta_dtor(key, strlen(key) + 1, meta_data);
1449
0
    return CURLE_OUT_OF_MEMORY;
1450
0
  }
1451
1.56k
  return CURLE_OK;
1452
1.56k
}
1453
1454
void Curl_meta_remove(struct Curl_easy *data, const char *key)
1455
8.56k
{
1456
8.56k
  Curl_hash_delete(&data->meta_hash, key, strlen(key) + 1);
1457
8.56k
}
1458
1459
void *Curl_meta_get(struct Curl_easy *data, const char *key)
1460
7.64k
{
1461
7.64k
  return Curl_hash_pick(&data->meta_hash, key, strlen(key) + 1);
1462
7.64k
}
1463
1464
void Curl_meta_reset(struct Curl_easy *data)
1465
0
{
1466
0
  Curl_hash_clean(&data->meta_hash);
1467
0
}