Coverage Report

Created: 2026-08-13 07:18

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/curl/lib/transfer.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
#include <signal.h>
42
43
#ifdef HAVE_SYS_PARAM_H
44
#include <sys/param.h>
45
#endif
46
47
#ifdef HAVE_SYS_SELECT_H
48
#include <sys/select.h>
49
#elif defined(HAVE_UNISTD_H)
50
#include <unistd.h>
51
#endif
52
53
#ifndef HAVE_SOCKET
54
#error "We cannot compile without socket() support"
55
#endif
56
57
#include "urldata.h"
58
59
#include "cfilters.h"
60
#include "cw-out.h"
61
#include "transfer.h"
62
#include "sendf.h"
63
#include "curl_trc.h"
64
#include "progress.h"
65
#include "http.h"
66
#include "url.h"
67
#include "getinfo.h"
68
#include "multiif.h"
69
#include "connect.h"
70
#include "hsts.h"
71
#include "setopt.h"
72
#include "headers.h"
73
#include "bufref.h"
74
#include "rtsp.h"
75
76
#if !defined(CURL_DISABLE_HTTP) || !defined(CURL_DISABLE_SMTP) || \
77
  !defined(CURL_DISABLE_IMAP)
78
/*
79
 * checkheaders() checks the linked list of custom headers for a
80
 * particular header (prefix). Provide the prefix without colon!
81
 *
82
 * Returns a pointer to the first matching header or NULL if none matched.
83
 */
84
char *Curl_checkheaders(const struct Curl_easy *data,
85
                        const char *thisheader,
86
                        const size_t thislen)
87
0
{
88
0
  struct curl_slist *head;
89
0
  DEBUGASSERT(thislen);
90
0
  DEBUGASSERT(thisheader[thislen - 1] != ':');
91
92
0
  for(head = data->set.headers; head; head = head->next) {
93
0
    if(curl_strnequal(head->data, thisheader, thislen) &&
94
0
       Curl_headersep(head->data[thislen]))
95
0
      return head->data;
96
0
  }
97
98
0
  return NULL;
99
0
}
100
#endif
101
102
static int data_pending(struct Curl_easy *data, bool rcvd_eagain)
103
0
{
104
0
  struct connectdata *conn = data->conn;
105
106
0
  if(conn->scheme->protocol & PROTO_FAMILY_FTP)
107
0
    return Curl_conn_data_pending(data, SECONDARYSOCKET);
108
109
  /* in the case of libssh2, we can never be really sure that we have emptied
110
     its internal buffers so we MUST always try until we get EAGAIN back */
111
0
  return (!rcvd_eagain &&
112
0
          conn->scheme->protocol & (CURLPROTO_SCP | CURLPROTO_SFTP)) ||
113
0
         Curl_conn_data_pending(data, FIRSTSOCKET);
114
0
}
115
116
/*
117
 * Check to see if CURLOPT_TIMECONDITION was met by comparing the time of the
118
 * remote document with the time provided by CURLOPT_TIMEVAL
119
 */
120
bool Curl_meets_timecondition(struct Curl_easy *data, time_t timeofdoc)
121
0
{
122
0
  if((timeofdoc == 0) || (data->set.timevalue == 0))
123
0
    return TRUE;
124
125
0
  switch(data->set.timecondition) {
126
0
  case CURL_TIMECOND_IFMODSINCE:
127
0
  default:
128
0
    if(timeofdoc <= data->set.timevalue) {
129
0
      infof(data, "The requested document is not new enough");
130
0
      data->info.timecond = TRUE;
131
0
      return FALSE;
132
0
    }
133
0
    break;
134
0
  case CURL_TIMECOND_IFUNMODSINCE:
135
0
    if(timeofdoc >= data->set.timevalue) {
136
0
      infof(data, "The requested document is not old enough");
137
0
      data->info.timecond = TRUE;
138
0
      return FALSE;
139
0
    }
140
0
    break;
141
0
  }
142
143
0
  return TRUE;
144
0
}
145
146
static CURLcode xfer_recv_shutdown(struct Curl_easy *data, bool *done)
147
0
{
148
0
  if(!data || !data->conn)
149
0
    return CURLE_FAILED_INIT;
150
0
  return Curl_conn_shutdown(data, data->conn->recv_idx, done);
151
0
}
152
153
static bool xfer_recv_shutdown_started(struct Curl_easy *data)
154
0
{
155
0
  if(!data || !data->conn)
156
0
    return FALSE;
157
0
  return Curl_shutdown_started(data->conn, data->conn->recv_idx);
158
0
}
159
160
CURLcode Curl_xfer_send_shutdown(struct Curl_easy *data, bool *done)
161
0
{
162
0
  if(!data || !data->conn)
163
0
    return CURLE_FAILED_INIT;
164
0
  return Curl_conn_shutdown(data, data->conn->send_idx, done);
165
0
}
166
167
/**
168
 * Receive raw response data for the transfer.
169
 * @param data         the transfer
170
 * @param buf          buffer to keep response data received
171
 * @param blen         length of `buf`
172
 * @param eos_reliable if EOS detection in underlying connection is reliable
173
 * @return number of bytes read or -1 for error
174
 */
175
static CURLcode xfer_recv_resp(struct Curl_easy *data,
176
                               char *buf, size_t blen,
177
                               bool eos_reliable,
178
                               size_t *pnread)
179
0
{
180
0
  CURLcode result;
181
182
0
  DEBUGASSERT(blen > 0);
183
0
  *pnread = 0;
184
  /* If we are reading BODY data and the connection does NOT handle EOF
185
   * and we know the size of the BODY data, limit the read amount */
186
0
  if(!eos_reliable && !data->req.header && data->req.size != -1) {
187
0
    blen = curlx_sotouz_range(data->req.size - data->req.bytecount, 0, blen);
188
0
  }
189
0
  else if(xfer_recv_shutdown_started(data)) {
190
    /* we already received everything. Do not try more. */
191
0
    blen = 0;
192
0
  }
193
194
0
  if(blen) {
195
0
    result = Curl_xfer_recv(data, buf, blen, pnread);
196
0
    if(result)
197
0
      return result;
198
0
  }
199
200
0
  if(*pnread == 0) {
201
0
    if(data->req.shutdown) {
202
0
      bool done;
203
0
      result = xfer_recv_shutdown(data, &done);
204
0
      if(result)
205
0
        return result;
206
0
      if(!done) {
207
0
        return CURLE_AGAIN;
208
0
      }
209
0
    }
210
0
    DEBUGF(infof(data, "sendrecv_dl: we are done"));
211
0
  }
212
0
  return CURLE_OK;
213
0
}
214
215
/*
216
 * Go ahead and do a read if we have a readable socket or if
217
 * the stream was rewound (in which case we have data in a
218
 * buffer)
219
 */
220
static CURLcode sendrecv_dl(struct Curl_easy *data,
221
                            struct SingleRequest *k)
222
0
{
223
0
  struct connectdata *conn = data->conn;
224
0
  CURLcode result = CURLE_OK;
225
0
  char *buf, *xfer_buf;
226
0
  size_t blen, xfer_blen;
227
0
  int maxloops = 10;
228
0
  bool is_multiplex = FALSE;
229
0
  bool rcvd_eagain = FALSE;
230
0
  bool is_eos = FALSE, rate_limited = FALSE;
231
232
0
  result = Curl_multi_xfer_buf_borrow(data, &xfer_buf, &xfer_blen);
233
0
  if(result)
234
0
    goto out;
235
236
  /* This is where we loop until we have read everything there is to
237
     read or we get a CURLE_AGAIN */
238
0
  do {
239
0
    size_t bytestoread;
240
241
0
    if(!is_multiplex) {
242
      /* Multiplexed connection have inherent handling of EOF and we do not
243
       * have to carefully restrict the amount we try to read.
244
       * Multiplexed changes only in one direction. */
245
0
      is_multiplex = Curl_conn_is_multiplex(conn, FIRSTSOCKET);
246
0
    }
247
248
0
    buf = xfer_buf;
249
0
    bytestoread = xfer_blen;
250
251
0
    if(bytestoread && Curl_rlimit_active(&data->progress.dl.rlimit)) {
252
0
      curl_off_t dl_avail = Curl_rlimit_avail(&data->progress.dl.rlimit, NULL);
253
#if 0
254
      DEBUGF(infof(data, "dl_rlimit, available=%" FMT_OFF_T, dl_avail));
255
#endif
256
      /* In case of rate limited downloads: if this loop already got data and
257
       * less than 16k is left in the limit, break out. We want to stutter a
258
       * bit to keep in the limit, but too small receives will cost cpu
259
       * unnecessarily. */
260
0
      if(dl_avail <= 0) {
261
0
        rate_limited = TRUE;
262
0
        break;
263
0
      }
264
0
      if(dl_avail < (curl_off_t)bytestoread)
265
0
        bytestoread = (size_t)dl_avail;
266
0
    }
267
268
0
    rcvd_eagain = FALSE;
269
0
    result = xfer_recv_resp(data, buf, bytestoread, is_multiplex, &blen);
270
0
    if(result) {
271
0
      if(result != CURLE_AGAIN)
272
0
        goto out; /* real error */
273
0
      rcvd_eagain = TRUE;
274
0
      result = CURLE_OK;
275
0
      if(data->req.download_done && data->req.no_body &&
276
0
         !data->req.resp_trailer) {
277
0
        DEBUGF(infof(data, "EAGAIN, download done, no trailer announced, "
278
0
                     "not waiting for EOS"));
279
0
        blen = 0;
280
        /* continue as if we received the EOS */
281
0
      }
282
0
      else
283
0
        break; /* get out of loop */
284
0
    }
285
286
    /* We only get a 0-length receive at the end of the response */
287
0
    is_eos = (blen == 0);
288
289
0
    if(!blen) {
290
0
      result = Curl_req_stop_send_recv(data);
291
0
      if(result)
292
0
        goto out;
293
0
      if(k->eos_written) /* already did write this to client, leave */
294
0
        break;
295
0
    }
296
297
0
    result = Curl_xfer_write_resp(data, buf, blen, is_eos);
298
0
    if(result || data->req.done)
299
0
      goto out;
300
301
    /* if we are done, we stop receiving. On multiplexed connections,
302
     * we should read the EOS. Which may arrive as meta data after
303
     * the bytes. Not taking it in might lead to RST of streams. */
304
0
    if((!is_multiplex && data->req.download_done) || is_eos) {
305
0
      CURL_REQ_CLEAR_RECV(data);
306
0
    }
307
    /* if we stopped receiving, leave the loop */
308
0
    if(!CURL_REQ_WANT_RECV(data))
309
0
      break;
310
311
0
  } while(maxloops--);
312
313
0
  if(!is_eos && !rate_limited && CURL_REQ_WANT_RECV(data) &&
314
0
     (!rcvd_eagain || data_pending(data, rcvd_eagain))) {
315
    /* Did not read until EAGAIN/EOS or there is still data pending
316
     * in buffers. Mark as read-again via simulated SELECT results. */
317
0
    Curl_multi_mark_dirty(data);
318
0
    CURL_TRC_M(data, "sendrecv_dl() no EAGAIN/pending data, mark as dirty");
319
0
  }
320
321
0
  if(!CURL_REQ_WANT_RECV(data) && CURL_REQ_WANT_SEND(data) &&
322
0
     (conn->bits.close || is_multiplex)) {
323
    /* When we have read the entire thing and the close bit is set, the server
324
       may now close the connection. If there is now any kind of sending going
325
       on from our side, we need to stop that immediately. */
326
0
    infof(data, "we are done reading and this is set to close, stop send");
327
0
    Curl_req_abort_sending(data);
328
0
  }
329
330
0
out:
331
0
  Curl_multi_xfer_buf_release(data, xfer_buf);
332
0
  if(result)
333
0
    DEBUGF(infof(data, "sendrecv_dl() -> %d", (int)result));
334
0
  return result;
335
0
}
336
337
/*
338
 * Send data to upload to the server, when the socket is writable.
339
 */
340
static CURLcode sendrecv_ul(struct Curl_easy *data)
341
0
{
342
  /* We should not get here when the sending is already done. */
343
0
  DEBUGASSERT(!Curl_req_done_sending(data));
344
345
0
  if(!Curl_req_done_sending(data))
346
0
    return Curl_req_send_more(data);
347
0
  return CURLE_OK;
348
0
}
349
350
/*
351
 * Curl_sendrecv() is the low-level function to be called when data is to
352
 * be read and written to/from the connection.
353
 */
354
CURLcode Curl_sendrecv(struct Curl_easy *data)
355
0
{
356
0
  struct SingleRequest *k = &data->req;
357
0
  CURLcode result = CURLE_OK;
358
359
0
  if(Curl_xfer_is_blocked(data)) {
360
0
    result = CURLE_OK;
361
0
    goto out;
362
0
  }
363
364
  /* We go ahead and do a read if we have a readable socket or if the stream
365
     was rewound (in which case we have data in a buffer) */
366
0
  if(CURL_REQ_WANT_RECV(data)) {
367
0
    result = sendrecv_dl(data, k);
368
0
    if(result || data->req.done)
369
0
      goto out;
370
0
  }
371
372
  /* If we still have writing to do, we check if we have a writable socket. */
373
0
  if(Curl_req_want_send(data)) {
374
0
    result = sendrecv_ul(data);
375
0
    if(result)
376
0
      goto out;
377
0
  }
378
379
0
  result = Curl_pgrsCheck(data);
380
0
  if(result)
381
0
    goto out;
382
383
0
  if(CURL_REQ_WANT_IO(data)) {
384
0
    if(Curl_timeleft_ms(data) < 0) {
385
0
      if(k->size != -1) {
386
0
        failf(data, "Operation timed out after %" FMT_TIMEDIFF_T
387
0
              " milliseconds with %" FMT_OFF_T " out of %"
388
0
              FMT_OFF_T " bytes received",
389
0
              Curl_pgrs_since_ms(data, NULL, TIMER_STARTSINGLE),
390
0
              k->bytecount, k->size);
391
0
      }
392
0
      else {
393
0
        failf(data, "Operation timed out after %" FMT_TIMEDIFF_T
394
0
              " milliseconds with %" FMT_OFF_T " bytes received",
395
0
              Curl_pgrs_since_ms(data, NULL, TIMER_STARTSINGLE),
396
0
              k->bytecount);
397
0
      }
398
0
      result = CURLE_OPERATION_TIMEDOUT;
399
0
      goto out;
400
0
    }
401
0
  }
402
0
  else {
403
    /*
404
     * The transfer has been performed. Make some general checks before
405
     * returning.
406
     */
407
0
    if(!(data->req.no_body) && (k->size != -1) &&
408
0
       (k->bytecount != k->size) && !k->newurl) {
409
0
      failf(data, "transfer closed with %" FMT_OFF_T
410
0
            " bytes remaining to read", k->size - k->bytecount);
411
0
      result = CURLE_PARTIAL_FILE;
412
0
      goto out;
413
0
    }
414
0
  }
415
416
  /* If there is nothing more to send/recv, the request is done */
417
0
  if(!CURL_REQ_WANT_IO(data))
418
0
    data->req.done = TRUE;
419
420
0
  result = Curl_pgrsUpdate(data);
421
422
0
out:
423
0
  if(result)
424
0
    DEBUGF(infof(data, "Curl_sendrecv() -> %d", (int)result));
425
0
  return result;
426
0
}
427
428
/* Curl_init_CONNECT() gets called each time the handle switches to CONNECT
429
   which means this gets called once for each subsequent redirect etc */
430
void Curl_init_CONNECT(struct Curl_easy *data)
431
0
{
432
0
  data->state.fread_func = data->set.fread_func_set;
433
0
  data->state.in = data->set.in_set;
434
0
  data->state.upload = (data->state.httpreq == HTTPREQ_PUT);
435
0
}
436
437
/*
438
 * Curl_pretransfer() is called immediately before a transfer starts, and only
439
 * once for one transfer no matter if it has redirects or do multi-pass
440
 * authentication etc.
441
 */
442
CURLcode Curl_pretransfer(struct Curl_easy *data)
443
0
{
444
0
  CURLcode result = CURLE_OK;
445
446
  /* Reset the retry count at the start of each request.
447
   * If the retry count is not reset, when the connection drops,
448
   * it will not enter the retry mechanism on CONN_MAX_RETRIES + 1 attempts
449
   * and will immediately throw
450
   * "Connection died, tried CONN_MAX_RETRIES times before giving up".
451
   * By resetting it here, we ensure each new request starts fresh. */
452
0
  data->state.retrycount = 0;
453
454
0
  if(!data->set.str[STRING_SET_URL] && !data->set.uh) {
455
    /* we cannot do anything without URL */
456
0
    failf(data, "No URL set");
457
0
    return CURLE_URL_MALFORMAT;
458
0
  }
459
460
  /* CURLOPT_CURLU overrides CURLOPT_URL and the contents of the CURLU handle
461
     is allowed to be changed by the user between transfers */
462
0
  if(data->set.uh) {
463
0
    CURLUcode uc;
464
0
    curlx_free(data->set.str[STRING_SET_URL]);
465
0
    uc = curl_url_get(data->set.uh,
466
0
                      CURLUPART_URL, &data->set.str[STRING_SET_URL], 0);
467
0
    if(uc) {
468
      /* clear the pointer to not point to freed memory anymore */
469
0
      Curl_bufref_set(&data->state.url, NULL, 0, NULL);
470
0
      failf(data, "No URL set");
471
0
      return CURLE_URL_MALFORMAT;
472
0
    }
473
0
  }
474
475
0
  Curl_bufref_set(&data->state.url, data->set.str[STRING_SET_URL], 0, NULL);
476
477
0
  if(data->set.postfields && data->set.set_resume_from) {
478
    /* we cannot */
479
0
    failf(data, "cannot mix POSTFIELDS with RESUME_FROM");
480
0
    return CURLE_BAD_FUNCTION_ARGUMENT;
481
0
  }
482
483
0
  data->state.prefer_ascii = data->set.prefer_ascii;
484
0
#ifdef CURL_LIST_ONLY_PROTOCOL
485
0
  data->state.list_only = data->set.list_only;
486
0
#endif
487
0
  data->state.httpreq = data->set.method;
488
489
  /* initial transfer request coming up, forget the initial origin
490
   * from a previous perform() on this handle. */
491
0
  Curl_peer_unlink(&data->state.initial_origin);
492
0
  Curl_peer_unlink(&data->state.origin);
493
0
  data->state.requests = 0;
494
0
  data->state.followlocation = 0; /* reset the location-follow counter */
495
0
  data->state.this_is_a_follow = FALSE; /* reset this */
496
0
  data->state.http_ignorecustom = FALSE; /* use custom HTTP method */
497
0
  data->state.errorbuf = FALSE; /* no error has occurred */
498
0
#ifndef CURL_DISABLE_HTTP
499
0
  Curl_http_neg_init(data, &data->state.http_neg);
500
0
#endif
501
0
  data->state.authproblem = FALSE;
502
0
  data->state.authhost.want = data->set.httpauth;
503
0
  data->state.authproxy.want = data->set.proxyauth;
504
0
  curlx_safefree(data->info.wouldredirect);
505
0
  Curl_data_priority_clear_state(data);
506
0
  if(data->set.http_auto_referer)
507
0
    Curl_bufref_free(&data->state.referer);
508
0
  if(data->set.str[STRING_SET_REFERER])
509
0
    Curl_bufref_set(&data->state.referer, data->set.str[STRING_SET_REFERER],
510
0
                    0, NULL);
511
0
  else
512
0
    Curl_bufref_free(&data->state.referer);
513
514
0
  if(data->state.httpreq == HTTPREQ_PUT)
515
0
    data->state.infilesize = data->set.filesize;
516
0
  else if((data->state.httpreq != HTTPREQ_GET) &&
517
0
          (data->state.httpreq != HTTPREQ_HEAD)) {
518
0
    data->state.infilesize = data->set.postfieldsize;
519
0
    if(data->set.postfields && (data->state.infilesize == -1))
520
0
      data->state.infilesize = (curl_off_t)strlen(data->set.postfields);
521
0
  }
522
0
  else
523
0
    data->state.infilesize = 0;
524
525
  /* If there is a list of cookie files to read, do it now! */
526
0
  result = Curl_cookie_loadfiles(data,
527
0
                                 data->set.cookiesession ?
528
0
                                 COOKIE_NOSESSION : 0);
529
0
  if(!result)
530
0
    Curl_cookie_run(data); /* activate */
531
532
  /* If there is a list of host pairs to deal with */
533
0
  if(!result && data->state.resolve)
534
0
    result = Curl_loadhostpairs(data);
535
536
0
  if(!result)
537
    /* If there is a list of hsts files to read */
538
0
    result = Curl_hsts_loadfiles(data);
539
540
0
  if(!result) {
541
    /* Allow data->set.use_port to set which port to use. This needs to be
542
     * disabled for example when we follow Location: headers to URLs using
543
     * different ports! */
544
0
    data->state.allow_port = TRUE;
545
546
#if defined(HAVE_SIGNAL) && defined(SIGPIPE) && !defined(MSG_NOSIGNAL)
547
    /*************************************************************
548
     * Tell signal handler to ignore SIGPIPE
549
     *************************************************************/
550
    if(!data->set.no_signal)
551
      data->state.prev_signal = signal(SIGPIPE, SIG_IGN);
552
#endif
553
554
0
    Curl_initinfo(data); /* reset session-specific information "variables" */
555
0
    Curl_pgrsResetTransferSizes(data);
556
0
    Curl_pgrsStart(data, NULL);
557
558
    /* In case the handle is reused and an authentication method was picked
559
       in the session we need to make sure we only use the one(s) we now
560
       consider to be fine */
561
0
    data->state.authhost.picked &= data->state.authhost.want;
562
0
    data->state.authproxy.picked &= data->state.authproxy.want;
563
564
0
#ifndef CURL_DISABLE_FTP
565
0
    data->state.wildcardmatch = data->set.wildcard_enabled;
566
0
    if(data->state.wildcardmatch) {
567
0
      struct WildcardData *wc;
568
0
      if(!data->wildcard) {
569
0
        data->wildcard = curlx_calloc(1, sizeof(struct WildcardData));
570
0
        if(!data->wildcard)
571
0
          return CURLE_OUT_OF_MEMORY;
572
0
      }
573
0
      wc = data->wildcard;
574
0
      if(wc->state < CURLWC_INIT) {
575
0
        if(wc->ftpwc)
576
0
          wc->dtor(wc->ftpwc);
577
0
        curlx_safefree(wc->pattern);
578
0
        curlx_safefree(wc->path);
579
0
        Curl_wildcard_init(wc); /* init wildcard structures */
580
0
      }
581
0
    }
582
0
#endif
583
0
    result = Curl_hsts_loadcb(data, data->hsts);
584
0
  }
585
586
  /*
587
   * Set user-agent. Used for HTTP, but since we can attempt to tunnel
588
   * anything through an HTTP proxy we cannot limit this based on protocol.
589
   */
590
0
  if(!result && data->set.str[STRING_USERAGENT]) {
591
0
    curlx_free(data->state.aptr.uagent);
592
0
    data->state.aptr.uagent =
593
0
      curl_maprintf("User-Agent: %s\r\n", data->set.str[STRING_USERAGENT]);
594
0
    if(!data->state.aptr.uagent)
595
0
      return CURLE_OUT_OF_MEMORY;
596
0
  }
597
598
0
  data->req.headerbytecount = 0;
599
0
  Curl_headers_cleanup(data);
600
0
  return result;
601
0
}
602
603
/* Returns CURLE_OK *and* sets '*url' if a request retry is wanted.
604
605
   NOTE: that the *url is curlx_malloc()ed. */
606
CURLcode Curl_retry_request(struct Curl_easy *data, char **url)
607
0
{
608
0
  struct connectdata *conn = data->conn;
609
0
  bool retry = FALSE;
610
0
  *url = NULL;
611
612
  /* if we are talking upload, we cannot do the checks below, unless the
613
     protocol is HTTP as when uploading over HTTP we will still get a
614
     response */
615
0
  if(data->state.upload &&
616
0
     !(conn->scheme->protocol & (PROTO_FAMILY_HTTP | CURLPROTO_RTSP)))
617
0
    return CURLE_OK;
618
619
0
  if(conn->bits.reuse &&
620
0
     (data->req.bytecount + data->req.headerbytecount == 0) &&
621
0
     ((!data->req.no_body && !data->req.done) ||
622
0
      (conn->scheme->protocol & PROTO_FAMILY_HTTP))
623
0
#ifndef CURL_DISABLE_RTSP
624
0
     && (data->set.rtspreq != RTSPREQ_RECEIVE)
625
0
#endif
626
0
    )
627
    /* We got no data, we attempted to reuse a connection. For HTTP this
628
       can be a retry so we try again regardless if we expected a body.
629
       For other protocols we only try again only if we expected a body.
630
631
       This might happen if the connection was left alive when we were
632
       done using it before, but that was closed when we wanted to read from
633
       it again. Bad luck. Retry the same request on a fresh connect! */
634
0
    retry = TRUE;
635
0
  else if(data->state.refused_stream &&
636
0
          (data->req.bytecount + data->req.headerbytecount == 0)) {
637
    /* This was sent on a refused stream, safe to rerun. A refused stream
638
       error can typically only happen on HTTP/2 level if the stream is safe
639
       to issue again, but the nghttp2 API can deliver the message to other
640
       streams as well, which is why this adds the check the data counters
641
       too. */
642
0
    infof(data, "REFUSED_STREAM, retrying a fresh connect");
643
0
    data->state.refused_stream = FALSE; /* clear again */
644
0
    retry = TRUE;
645
0
  }
646
0
  if(retry) {
647
0
#define CONN_MAX_RETRIES 5
648
0
    if(data->state.retrycount++ >= CONN_MAX_RETRIES) {
649
0
      failf(data, "Connection died, tried %d times before giving up",
650
0
            CONN_MAX_RETRIES);
651
0
      data->state.retrycount = 0;
652
0
      return CURLE_SEND_ERROR;
653
0
    }
654
0
    infof(data, "Connection died, retrying a fresh connect (retry count: %d)",
655
0
          data->state.retrycount);
656
0
    *url = Curl_bufref_dup(&data->state.url);
657
0
    if(!*url)
658
0
      return CURLE_OUT_OF_MEMORY;
659
660
0
    connclose(conn); /* close this connection */
661
0
    conn->bits.retry = TRUE; /* mark this as a connection we are about to
662
                                retry. Marking it this way should prevent i.e
663
                                HTTP transfers to return error because nothing
664
                                has been transferred! */
665
0
    Curl_creader_set_rewind(data, TRUE);
666
0
  }
667
0
  return CURLE_OK;
668
0
}
669
670
static void xfer_setup(
671
  struct Curl_easy *data,   /* transfer */
672
  int send_idx,             /* sockindex to send on or -1 */
673
  int recv_idx,             /* sockindex to receive on or -1 */
674
  curl_off_t recv_size      /* how much to receive, -1 if unknown */
675
  )
676
0
{
677
0
  struct SingleRequest *k = &data->req;
678
0
  struct connectdata *conn = data->conn;
679
680
0
  DEBUGASSERT(conn);
681
  /* indexes are in range */
682
0
  DEBUGASSERT((send_idx <= 1) && (send_idx >= -1));
683
0
  DEBUGASSERT((recv_idx <= 1) && (recv_idx >= -1));
684
  /* if request wants to send, switching off the send direction is wrong */
685
0
  DEBUGASSERT((send_idx >= 0) || !Curl_req_want_send(data));
686
687
0
  conn->send_idx = send_idx;
688
0
  conn->recv_idx = recv_idx;
689
690
  /* without receiving, there should be not recv_size */
691
0
  DEBUGASSERT((conn->recv_idx >= 0) || (recv_size == -1));
692
0
  k->size = recv_size;
693
0
  k->header = !!conn->scheme->run->write_resp_hd;
694
  /* by default, we do not shutdown at the end of the transfer */
695
0
  k->shutdown = FALSE;
696
0
  k->shutdown_err_ignore = FALSE;
697
698
  /* The code sequence below is placed in this function because all necessary
699
     input is not always known in do_complete() as this function may be called
700
     after that */
701
0
  if(!k->header && (recv_size > 0))
702
0
    Curl_pgrsSetDownloadSize(data, recv_size);
703
704
  /* we want header and/or body, if neither then do not do this! */
705
0
  if(conn->scheme->run->write_resp_hd || !data->req.no_body) {
706
0
    if(conn->recv_idx != -1)
707
0
      CURL_REQ_SET_RECV(data);
708
0
    if(conn->send_idx != -1)
709
0
      CURL_REQ_SET_SEND(data);
710
0
  }
711
0
  CURL_TRC_M(data, "xfer_setup: recv_idx=%d, send_idx=%d",
712
0
             conn->recv_idx, conn->send_idx);
713
0
}
714
715
void Curl_xfer_setup_nop(struct Curl_easy *data)
716
0
{
717
0
  xfer_setup(data, -1, -1, -1);
718
0
}
719
720
void Curl_xfer_setup_sendrecv(struct Curl_easy *data,
721
                              int sockindex,
722
                              curl_off_t recv_size)
723
0
{
724
0
  xfer_setup(data, sockindex, sockindex, recv_size);
725
0
}
726
727
void Curl_xfer_setup_send(struct Curl_easy *data,
728
                          int sockindex)
729
0
{
730
0
  xfer_setup(data, sockindex, -1, -1);
731
0
}
732
733
void Curl_xfer_setup_recv(struct Curl_easy *data,
734
                          int sockindex,
735
                          curl_off_t recv_size)
736
0
{
737
0
  xfer_setup(data, -1, sockindex, recv_size);
738
0
}
739
740
void Curl_xfer_set_shutdown(struct Curl_easy *data,
741
                            bool shutdown,
742
                            bool ignore_errors)
743
0
{
744
  /* Shutdown should only be set when the transfer only sends or receives. */
745
0
  DEBUGASSERT(!shutdown ||
746
0
              (data->conn->send_idx < 0) || (data->conn->recv_idx < 0));
747
0
  data->req.shutdown = shutdown;
748
0
  data->req.shutdown_err_ignore = ignore_errors;
749
0
}
750
751
CURLcode Curl_xfer_write_resp(struct Curl_easy *data,
752
                              const char *buf, size_t blen,
753
                              bool is_eos)
754
0
{
755
0
  CURLcode result = CURLE_OK;
756
757
0
  if(data->conn->scheme->run->write_resp) {
758
    /* protocol handlers offering this function take full responsibility
759
     * for writing all received download data to the client. */
760
0
    result = data->conn->scheme->run->write_resp(data, buf, blen, is_eos);
761
0
  }
762
0
  else {
763
    /* No special handling by protocol handler, write all received data
764
     * as BODY to the client. */
765
0
    if(blen || is_eos) {
766
0
      int cwtype = CLIENTWRITE_BODY;
767
0
      if(is_eos)
768
0
        cwtype |= CLIENTWRITE_EOS;
769
0
      result = Curl_client_write(data, cwtype, buf, blen);
770
0
    }
771
0
  }
772
773
0
  if(!result && is_eos) {
774
    /* If we wrote the EOS, we are definitely done */
775
0
    data->req.eos_written = TRUE;
776
0
    data->req.download_done = TRUE;
777
0
  }
778
0
  CURL_TRC_WRITE(data, "xfer_write_resp(len=%zu, eos=%d) -> %d",
779
0
                 blen, is_eos, (int)result);
780
0
  return result;
781
0
}
782
783
bool Curl_xfer_write_is_paused(struct Curl_easy *data)
784
0
{
785
0
  return Curl_cwriter_is_paused(data);
786
0
}
787
788
CURLcode Curl_xfer_write_resp_hd(struct Curl_easy *data,
789
                                 const char *hd0, size_t hdlen, bool is_eos)
790
0
{
791
0
  if(data->conn->scheme->run->write_resp_hd) {
792
0
    DEBUGASSERT(!hd0[hdlen]); /* null-terminated */
793
    /* protocol handlers offering this function take full responsibility
794
     * for writing all received download data to the client. */
795
0
    return data->conn->scheme->run->write_resp_hd(data, hd0, hdlen, is_eos);
796
0
  }
797
  /* No special handling by protocol handler, write as response bytes */
798
0
  return Curl_xfer_write_resp(data, hd0, hdlen, is_eos);
799
0
}
800
801
CURLcode Curl_xfer_write_done(struct Curl_easy *data, bool premature)
802
0
{
803
0
  (void)premature;
804
0
  return Curl_cw_out_done(data);
805
0
}
806
807
bool Curl_xfer_needs_flush(struct Curl_easy *data)
808
0
{
809
0
  return Curl_conn_needs_flush(data, data->conn->send_idx);
810
0
}
811
812
CURLcode Curl_xfer_flush(struct Curl_easy *data)
813
0
{
814
0
  return Curl_conn_flush(data, data->conn->send_idx);
815
0
}
816
817
CURLcode Curl_xfer_send(struct Curl_easy *data,
818
                        const void *buf, size_t blen, bool eos,
819
                        size_t *pnwritten)
820
0
{
821
0
  CURLcode result;
822
823
0
  DEBUGASSERT(data);
824
0
  DEBUGASSERT(data->conn);
825
826
0
  result = Curl_conn_send(data, data->conn->send_idx,
827
0
                          buf, blen, eos, pnwritten);
828
0
  if(result == CURLE_AGAIN) {
829
0
    result = CURLE_OK;
830
0
    *pnwritten = 0;
831
0
  }
832
0
  else if(!result && *pnwritten)
833
0
    data->info.request_size += *pnwritten;
834
835
0
  DEBUGF(infof(data, "Curl_xfer_send(len=%zu, eos=%d) -> %d, %zu",
836
0
               blen, eos, (int)result, *pnwritten));
837
0
  return result;
838
0
}
839
840
CURLcode Curl_xfer_recv(struct Curl_easy *data,
841
                        char *buf, size_t blen,
842
                        size_t *pnrcvd)
843
0
{
844
0
  DEBUGASSERT(data);
845
0
  DEBUGASSERT(data->conn);
846
0
  DEBUGASSERT(data->set.buffer_size > 0);
847
848
0
  if(curlx_uitouz(data->set.buffer_size) < blen)
849
0
    blen = curlx_uitouz(data->set.buffer_size);
850
0
  return Curl_conn_recv(data, data->conn->recv_idx, buf, blen, pnrcvd);
851
0
}
852
853
CURLcode Curl_xfer_send_close(struct Curl_easy *data)
854
0
{
855
0
  Curl_conn_ev_data_done_send(data);
856
0
  return CURLE_OK;
857
0
}
858
859
bool Curl_xfer_is_blocked(struct Curl_easy *data)
860
0
{
861
0
  bool want_send = CURL_REQ_WANT_SEND(data);
862
0
  bool want_recv = CURL_REQ_WANT_RECV(data);
863
0
  if(!want_send)
864
0
    return want_recv && Curl_xfer_recv_is_paused(data);
865
0
  else if(!want_recv)
866
0
    return want_send && Curl_xfer_send_is_paused(data);
867
0
  else
868
0
    return Curl_xfer_recv_is_paused(data) && Curl_xfer_send_is_paused(data);
869
0
}
870
871
bool Curl_xfer_send_is_paused(struct Curl_easy *data)
872
0
{
873
0
  return Curl_rlimit_is_blocked(&data->progress.ul.rlimit);
874
0
}
875
876
bool Curl_xfer_recv_is_paused(struct Curl_easy *data)
877
0
{
878
0
  return Curl_rlimit_is_blocked(&data->progress.dl.rlimit);
879
0
}
880
881
CURLcode Curl_xfer_pause_send(struct Curl_easy *data, bool enable)
882
0
{
883
0
  CURLcode result = CURLE_OK;
884
0
  Curl_rlimit_block(&data->progress.ul.rlimit, enable, Curl_pgrs_now(data));
885
0
  if(!enable && Curl_creader_is_paused(data))
886
0
    result = Curl_creader_unpause(data);
887
0
  Curl_pgrsSendPause(data, enable);
888
0
  return result;
889
0
}
890
891
CURLcode Curl_xfer_pause_recv(struct Curl_easy *data, bool enable)
892
0
{
893
0
  CURLcode result = CURLE_OK;
894
0
  Curl_rlimit_block(&data->progress.dl.rlimit, enable, Curl_pgrs_now(data));
895
0
  if(!enable && Curl_cwriter_is_paused(data))
896
0
    result = Curl_cwriter_unpause(data);
897
0
  Curl_conn_ev_data_pause(data, enable);
898
0
  Curl_pgrsRecvPause(data, enable);
899
0
  return result;
900
0
}
901
902
bool Curl_xfer_is_secure(struct Curl_easy *data)
903
0
{
904
0
#ifndef CURL_DISABLE_PROXY
905
0
  if(data->conn && data->conn->bits.origin_is_proxy) {
906
    /* talking to a forward proxy, not secure. we do not use
907
     * a forward proxy for https: and other 's' URLs. Let's just check that
908
     * this did not fail somewhere. */
909
0
    DEBUGASSERT(!(data->state.origin->scheme->flags & PROTOPT_SSL));
910
0
    return FALSE;
911
0
  }
912
0
#endif
913
0
  return (data->state.origin->scheme->flags & PROTOPT_SSL);
914
0
}