Coverage Report

Created: 2026-09-14 07:06

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/curl/lib/multi_ev.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 "url.h"
28
#include "cfilters.h"
29
#include "curl_trc.h"
30
#include "multiif.h"
31
#include "multi_ev.h"
32
#include "select.h"
33
#include "uint-bset.h"
34
#include "uint-spbset.h"
35
#include "multihandle.h"
36
37
#ifdef DEBUGBUILD
38
0
#define SH_ENTRY_MAGIC 0x570091d
39
#endif
40
41
/* Information about a socket for which we inform the libcurl application
42
 * what to supervise (CURL_POLL_IN/CURL_POLL_OUT/CURL_POLL_REMOVE)
43
 */
44
struct mev_sh_entry {
45
  struct uint32_spbset xfers; /* bitset of transfers `mid`s on this socket */
46
  struct connectdata *conn; /* connection using this socket or NULL */
47
  void *user_data;      /* libcurl app data via curl_multi_assign() */
48
  unsigned int action;  /* CURL_POLL_IN/CURL_POLL_OUT we last told the
49
                         * libcurl application to watch out for */
50
  unsigned int readers; /* this many transfers want to read */
51
  unsigned int writers; /* this many transfers want to write */
52
#ifdef DEBUGBUILD
53
  unsigned int magic;
54
#endif
55
  BIT(announced);       /* this socket has been passed to the socket
56
                           callback at least once */
57
};
58
59
/* sockhash entry destructor callback */
60
static void mev_sh_entry_dtor(void *freethis)
61
0
{
62
0
  struct mev_sh_entry *entry = (struct mev_sh_entry *)freethis;
63
0
  Curl_uint32_spbset_destroy(&entry->xfers);
64
0
#ifdef DEBUGBUILD
65
0
  entry->magic = 0;
66
0
#endif
67
0
  curlx_free(entry);
68
0
}
69
70
/* look up a given socket in the socket hash, skip invalid sockets */
71
static struct mev_sh_entry *mev_sh_entry_get(struct Curl_hash *sh,
72
                                             curl_socket_t s)
73
7.44k
{
74
7.44k
  if(s != CURL_SOCKET_BAD) {
75
    /* only look for proper sockets */
76
7.44k
    return Curl_hash_pick(sh, (const char *)&s, sizeof(curl_socket_t));
77
7.44k
  }
78
0
  return NULL;
79
7.44k
}
80
81
/* make sure this socket is present in the hash for this handle */
82
static struct mev_sh_entry *mev_sh_entry_add(struct Curl_hash *sh,
83
                                             curl_socket_t s)
84
0
{
85
0
  struct mev_sh_entry *there = mev_sh_entry_get(sh, s);
86
0
  struct mev_sh_entry *check;
87
88
0
  if(there) {
89
    /* it is present, return fine */
90
0
    return there;
91
0
  }
92
93
  /* not present, add it */
94
0
  check = curlx_calloc(1, sizeof(struct mev_sh_entry));
95
0
  if(!check)
96
0
    return NULL; /* major failure */
97
98
0
  Curl_uint32_spbset_init(&check->xfers);
99
100
  /* make/add new hash entry */
101
0
  if(!Curl_hash_add(sh, (char *)&s, sizeof(curl_socket_t), check)) {
102
0
    mev_sh_entry_dtor(check);
103
0
    return NULL; /* major failure */
104
0
  }
105
0
#ifdef DEBUGBUILD
106
0
  check->magic = SH_ENTRY_MAGIC;
107
0
#endif
108
0
  return check; /* things are good in sockhash land */
109
0
}
110
111
/* delete the given socket entry from the hash */
112
static void mev_sh_entry_kill(struct Curl_multi *multi, curl_socket_t s)
113
0
{
114
0
  Curl_hash_delete(&multi->ev.sh_entries, (char *)&s, sizeof(curl_socket_t));
115
0
}
116
117
static size_t mev_sh_entry_user_count(struct mev_sh_entry *e)
118
0
{
119
0
  return Curl_uint32_spbset_count(&e->xfers) + (e->conn ? 1 : 0);
120
0
}
121
122
static bool mev_sh_entry_xfer_known(struct mev_sh_entry *e,
123
                                    struct Curl_easy *data)
124
0
{
125
0
  return Curl_uint32_spbset_contains(&e->xfers, data->mid);
126
0
}
127
128
static bool mev_sh_entry_conn_known(struct mev_sh_entry *e,
129
                                    struct connectdata *conn)
130
0
{
131
0
  return (e->conn == conn);
132
0
}
133
134
static void mev_pollset_dtor(const void *key, size_t klen, void *entry)
135
0
{
136
0
  struct easy_pollset *ps = entry;
137
0
  (void)key;
138
0
  (void)klen;
139
0
  if(ps) {
140
0
    Curl_pollset_cleanup(ps);
141
0
    curlx_free(ps);
142
0
  }
143
0
}
144
145
static struct easy_pollset *mev_add_new_conn_pollset(struct connectdata *conn)
146
0
{
147
0
  struct easy_pollset *ps;
148
149
0
  ps = Curl_pollset_create();
150
0
  if(!ps)
151
0
    return NULL;
152
0
  if(Curl_conn_meta_set(conn, CURL_META_MEV_POLLSET, ps, mev_pollset_dtor))
153
0
    return NULL;
154
0
  return ps;
155
0
}
156
157
static struct easy_pollset *mev_add_new_xfer_pollset(struct Curl_easy *data)
158
0
{
159
0
  struct easy_pollset *ps;
160
161
0
  ps = Curl_pollset_create();
162
0
  if(!ps)
163
0
    return NULL;
164
0
  if(Curl_meta_set(data, CURL_META_MEV_POLLSET, ps, mev_pollset_dtor))
165
0
    return NULL;
166
0
  return ps;
167
0
}
168
169
static struct easy_pollset *mev_get_last_pollset(struct Curl_easy *data,
170
                                                 struct connectdata *conn)
171
0
{
172
0
  if(data) {
173
0
    if(conn)
174
0
      return Curl_conn_meta_get(conn, CURL_META_MEV_POLLSET);
175
0
    return Curl_meta_get(data, CURL_META_MEV_POLLSET);
176
0
  }
177
0
  return NULL;
178
0
}
179
180
static bool mev_sh_entry_xfer_add(struct mev_sh_entry *e,
181
                                  struct Curl_easy *data)
182
0
{
183
   /* detect weird values */
184
0
  DEBUGASSERT(mev_sh_entry_user_count(e) < 100000);
185
0
  return Curl_uint32_spbset_add(&e->xfers, data->mid);
186
0
}
187
188
static bool mev_sh_entry_conn_add(struct mev_sh_entry *e,
189
                                  struct connectdata *conn)
190
0
{
191
   /* detect weird values */
192
0
  DEBUGASSERT(mev_sh_entry_user_count(e) < 100000);
193
0
  DEBUGASSERT(!e->conn);
194
0
  if(e->conn)
195
0
    return FALSE;
196
0
  e->conn = conn;
197
0
  return TRUE;
198
0
}
199
200
static bool mev_sh_entry_xfer_remove(struct mev_sh_entry *e,
201
                                     struct Curl_easy *data)
202
0
{
203
0
  bool present = Curl_uint32_spbset_contains(&e->xfers, data->mid);
204
0
  if(present)
205
0
    Curl_uint32_spbset_remove(&e->xfers, data->mid);
206
0
  return present;
207
0
}
208
209
static bool mev_sh_entry_conn_remove(struct mev_sh_entry *e,
210
                                     struct connectdata *conn)
211
0
{
212
0
  DEBUGASSERT(e->conn == conn);
213
0
  if(e->conn == conn) {
214
0
    e->conn = NULL;
215
0
    return TRUE;
216
0
  }
217
0
  return FALSE;
218
0
}
219
220
/* Purge any information about socket `s`.
221
 * Let the socket callback know as well when necessary */
222
static CURLMcode mev_forget_socket(struct Curl_multi *multi,
223
                                   struct Curl_easy *data,
224
                                   curl_socket_t s,
225
                                   const char *cause)
226
7.44k
{
227
7.44k
  struct mev_sh_entry *entry = mev_sh_entry_get(&multi->ev.sh_entries, s);
228
7.44k
  uint32_t mid;
229
7.44k
  int rc = 0;
230
231
7.44k
  if(!entry) /* we never knew or already forgot about this socket */
232
7.44k
    return CURLM_OK;
233
234
  /* Remove the socket from any pollset that is still registered. */
235
0
  if(Curl_uint32_spbset_first(&entry->xfers, &mid)) {
236
0
    do {
237
0
      struct Curl_easy *sdata = Curl_multi_get_easy(multi, mid);
238
0
      if(sdata) {
239
0
        struct easy_pollset *ps = mev_get_last_pollset(sdata, NULL);
240
0
        if(ps)
241
0
          Curl_pollset_remove(ps, s);
242
0
      }
243
0
    } while(Curl_uint32_spbset_next(&entry->xfers, mid, &mid));
244
0
  }
245
246
0
  if(entry->conn) {
247
0
    struct easy_pollset *ps = mev_get_last_pollset(data, entry->conn);
248
0
    if(ps)
249
0
      Curl_pollset_remove(ps, s);
250
0
  }
251
252
  /* We managed this socket before, tell the socket callback to forget it. */
253
0
  if(entry->announced && multi->socket_cb) {
254
0
    struct Curl_mapi_guard guard;
255
256
0
    NOVERBOSE((void)cause);
257
0
    CURL_TRC_M(data, "ev %s, call(fd=%" FMT_SOCKET_T ", ev=REMOVE)", cause, s);
258
0
    CURL_CBAPI_MULTI_START(&guard, multi, multi_socket_cb);
259
0
    rc = multi->socket_cb(data, s, CURL_POLL_REMOVE,
260
0
                          multi->socket_userp, entry->user_data);
261
0
    CURL_CBAPI_END(&guard);
262
0
    entry = mev_sh_entry_get(&multi->ev.sh_entries, s);
263
0
    if(entry)
264
0
      entry->announced = FALSE;
265
0
  }
266
267
0
  mev_sh_entry_kill(multi, s);
268
0
  if(rc == -1) {
269
0
    multi->dead = TRUE;
270
0
    return CURLM_ABORTED_BY_CALLBACK;
271
0
  }
272
0
  return CURLM_OK;
273
0
}
274
275
static CURLMcode mev_sh_entry_update(struct Curl_multi *multi,
276
                                     struct Curl_easy *data,
277
                                     struct mev_sh_entry *entry,
278
                                     curl_socket_t s,
279
                                     unsigned char last_action,
280
                                     unsigned char cur_action)
281
0
{
282
0
  int rc, comboaction;
283
284
  /* we should only be called when the callback exists */
285
0
  DEBUGASSERT(multi->socket_cb);
286
0
  DEBUGASSERT(entry->magic == SH_ENTRY_MAGIC);
287
0
  if(!multi->socket_cb)
288
0
    return CURLM_OK;
289
290
  /* Transfer `data` goes from `last_action` to `cur_action` on socket `s`
291
   * with `multi->ev.sh_entries` entry `entry`. Update `entry` and trigger
292
   * `multi->socket_cb` on change, if the callback is set. */
293
0
  if(last_action == cur_action)  /* nothing from `data` changed */
294
0
    return CURLM_OK;
295
296
0
  if(last_action & CURL_POLL_IN) {
297
0
    DEBUGASSERT(entry->readers);
298
0
    if(!(cur_action & CURL_POLL_IN))
299
0
      entry->readers--;
300
0
  }
301
0
  else if(cur_action & CURL_POLL_IN)
302
0
    entry->readers++;
303
304
0
  if(last_action & CURL_POLL_OUT) {
305
0
    DEBUGASSERT(entry->writers);
306
0
    if(!(cur_action & CURL_POLL_OUT))
307
0
      entry->writers--;
308
0
  }
309
0
  else if(cur_action & CURL_POLL_OUT)
310
0
    entry->writers++;
311
312
0
  DEBUGASSERT(entry->readers <= mev_sh_entry_user_count(entry));
313
0
  DEBUGASSERT(entry->writers <= mev_sh_entry_user_count(entry));
314
0
  DEBUGASSERT(entry->writers + entry->readers);
315
316
0
  CURL_TRC_M(data, "ev update fd=%" FMT_SOCKET_T ", action '%s%s' -> '%s%s'"
317
0
             " (%u/%u r/w)", s,
318
0
             (last_action & CURL_POLL_IN) ? "IN" : "",
319
0
             (last_action & CURL_POLL_OUT) ? "OUT" : "",
320
0
             (cur_action & CURL_POLL_IN) ? "IN" : "",
321
0
             (cur_action & CURL_POLL_OUT) ? "OUT" : "",
322
0
             entry->readers, entry->writers);
323
324
0
  comboaction = (entry->writers ? CURL_POLL_OUT : 0) |
325
0
                (entry->readers ? CURL_POLL_IN : 0);
326
0
  if(((int)entry->action == comboaction)) /* nothing for socket changed */
327
0
    return CURLM_OK;
328
329
0
  CURL_TRC_M(data, "ev update call(fd=%" FMT_SOCKET_T ", ev=%s%s)",
330
0
             s, (comboaction & CURL_POLL_IN) ? "IN" : "",
331
0
             (comboaction & CURL_POLL_OUT) ? "OUT" : "");
332
0
  {
333
0
    struct Curl_mapi_guard guard;
334
0
    CURL_CBAPI_MULTI_START(&guard, multi, multi_socket_cb);
335
0
    rc = multi->socket_cb(data, s, comboaction, multi->socket_userp,
336
0
                          entry->user_data);
337
0
    CURL_CBAPI_MULTI_END(&guard);
338
0
  }
339
0
  if(rc == -1) {
340
0
    multi->dead = TRUE;
341
0
    return CURLM_ABORTED_BY_CALLBACK;
342
0
  }
343
  /* curl_easy_pause() is documented as callable from any callback; it
344
   * re-enters mev_assess() which may free this 'entry'. Re-fetch. */
345
0
  entry = mev_sh_entry_get(&multi->ev.sh_entries, s);
346
0
  if(entry) {
347
0
    DEBUGASSERT(entry->magic == SH_ENTRY_MAGIC);
348
0
    entry->announced = TRUE;
349
0
    entry->action = (unsigned int)comboaction;
350
0
  }
351
0
  return CURLM_OK;
352
0
}
353
354
static CURLMcode mev_pollset_diff(struct Curl_multi *multi,
355
                                  struct Curl_easy *data,
356
                                  struct connectdata *conn,
357
                                  struct easy_pollset *ps,
358
                                  struct easy_pollset *prev_ps)
359
0
{
360
0
  struct mev_sh_entry *entry;
361
0
  curl_socket_t s;
362
0
  unsigned int i, j;
363
0
  CURLMcode mresult;
364
365
  /* The transfer `data` reports in `ps` the sockets it is interested
366
   * in and which combination of CURL_POLL_IN/CURL_POLL_OUT it wants
367
   * to have monitored for events.
368
   * There can be more than 1 transfer interested in the same socket
369
   * and 1 transfer might be interested in more than 1 socket.
370
   * `prev_ps` is the pollset copy from the previous call here. On
371
   * the 1st call it will be empty.
372
   */
373
0
  DEBUGASSERT(ps);
374
0
  DEBUGASSERT(prev_ps);
375
376
  /* Handle changes to sockets the transfer is interested in. */
377
0
  for(i = 0; i < ps->n; i++) {
378
0
    unsigned char last_action;
379
0
    bool first_time = FALSE; /* data/conn appears first time on socket */
380
381
0
    s = ps->sockets[i];
382
    /* Have we handled this socket before? */
383
0
    entry = mev_sh_entry_get(&multi->ev.sh_entries, s);
384
0
    if(!entry) {
385
      /* new socket, add new entry */
386
0
      first_time = TRUE;
387
0
      entry = mev_sh_entry_add(&multi->ev.sh_entries, s);
388
0
      if(!entry) /* fatal */
389
0
        return CURLM_OUT_OF_MEMORY;
390
0
      CURL_TRC_M(data, "ev new entry fd=%" FMT_SOCKET_T, s);
391
0
    }
392
0
    else if(conn) {
393
0
      first_time = !mev_sh_entry_conn_known(entry, conn);
394
0
    }
395
0
    else {
396
0
      first_time = !mev_sh_entry_xfer_known(entry, data);
397
0
    }
398
399
    /* What was the previous action the transfer had regarding this socket?
400
     * If the transfer is new to the socket, disregard the information
401
     * in `last_poll`, because the socket might have been destroyed and
402
     * reopened. We would have cleared the sh_entry for that, but the socket
403
     * might still be mentioned in the hashed pollsets. */
404
0
    last_action = 0;
405
0
    if(first_time) {
406
0
      if(conn) {
407
0
        if(!mev_sh_entry_conn_add(entry, conn))
408
0
          return CURLM_OUT_OF_MEMORY;
409
0
      }
410
0
      else {
411
0
        if(!mev_sh_entry_xfer_add(entry, data))
412
0
          return CURLM_OUT_OF_MEMORY;
413
0
      }
414
0
      CURL_TRC_M(data, "ev entry fd=%" FMT_SOCKET_T ", added %s #%" FMT_OFF_T
415
0
                 ", total=%u/%d (xfer/conn)", s,
416
0
                 conn ? "connection" : "transfer",
417
0
                 conn ? conn->connection_id : data->mid,
418
0
                 Curl_uint32_spbset_count(&entry->xfers),
419
0
                 entry->conn ? 1 : 0);
420
0
    }
421
0
    else {
422
0
      for(j = 0; j < prev_ps->n; j++) {
423
0
        if(s == prev_ps->sockets[j]) {
424
0
          last_action = prev_ps->actions[j];
425
0
          break;
426
0
        }
427
0
      }
428
0
    }
429
    /* track readers/writers changes and report to socket callback */
430
0
    mresult = mev_sh_entry_update(multi, data, entry, s,
431
0
                                  last_action, ps->actions[i]);
432
0
    if(mresult)
433
0
      return mresult;
434
0
  }
435
436
  /* Handle changes to sockets the transfer is NO LONGER interested in. */
437
0
  for(i = 0; i < prev_ps->n; i++) {
438
0
    bool stillused = FALSE;
439
440
0
    s = prev_ps->sockets[i];
441
0
    for(j = 0; j < ps->n; j++) {
442
0
      if(s == ps->sockets[j]) {
443
        /* socket is still supervised */
444
0
        stillused = TRUE;
445
0
        break;
446
0
      }
447
0
    }
448
0
    if(stillused)
449
0
      continue;
450
451
0
    entry = mev_sh_entry_get(&multi->ev.sh_entries, s);
452
    /* if entry does not exist, we were either never told about it or
453
     * have already cleaned up this socket via Curl_multi_ev_socket_done().
454
     * In other words: this is perfectly normal */
455
0
    if(!entry)
456
0
      continue;
457
458
0
    if(conn && !mev_sh_entry_conn_remove(entry, conn)) {
459
      /* `conn` says in `prev_ps` that it had been using a socket,
460
       * but `conn` has not been registered for it.
461
       * This should not happen if our book-keeping is correct? */
462
0
      CURL_TRC_M(data, "ev entry fd=%" FMT_SOCKET_T ", conn lost "
463
0
                 "interest but is not registered", s);
464
0
      DEBUGASSERT(NULL);
465
0
      continue;
466
0
    }
467
468
0
    if(!conn && !mev_sh_entry_xfer_remove(entry, data)) {
469
      /* `data` says in `prev_ps` that it had been using a socket,
470
       * but `data` has not been registered for it.
471
       * This should not happen if our book-keeping is correct? */
472
0
      CURL_TRC_M(data, "ev entry fd=%" FMT_SOCKET_T ", transfer lost "
473
0
                 "interest but is not registered", s);
474
0
      DEBUGASSERT(NULL);
475
0
      continue;
476
0
    }
477
478
0
    if(mev_sh_entry_user_count(entry)) {
479
      /* track readers/writers changes and report to socket callback */
480
0
      mresult = mev_sh_entry_update(multi, data, entry, s,
481
0
                                    prev_ps->actions[i], 0);
482
0
      if(mresult)
483
0
        return mresult;
484
0
      CURL_TRC_M(data, "ev entry fd=%" FMT_SOCKET_T ", removed transfer, "
485
0
                 "total=%u/%d (xfer/conn)", s,
486
0
                 Curl_uint32_spbset_count(&entry->xfers),
487
0
                 entry->conn ? 1 : 0);
488
0
    }
489
0
    else {
490
0
      mresult = mev_forget_socket(multi, data, s, "last user gone");
491
0
      if(mresult)
492
0
        return mresult;
493
0
    }
494
0
  } /* for loop over num */
495
496
  /* Remember for next time */
497
0
  Curl_pollset_move(prev_ps, ps);
498
0
  return CURLM_OK;
499
0
}
500
501
static CURLMcode mev_assess(struct Curl_multi *multi,
502
                            struct Curl_easy *data,
503
                            struct connectdata *conn)
504
20.4k
{
505
20.4k
  struct easy_pollset ps, *last_ps;
506
20.4k
  CURLMcode mresult = CURLM_OK;
507
508
20.4k
  if(!multi || !multi->socket_cb)
509
20.4k
    return CURLM_OK;
510
511
0
  Curl_pollset_init(&ps);
512
0
  if(conn) {
513
0
    CURLcode result = Curl_conn_adjust_pollset(data, conn, &ps);
514
0
    if(result) {
515
0
      mresult = (result == CURLE_OUT_OF_MEMORY) ?
516
0
        CURLM_OUT_OF_MEMORY : CURLM_INTERNAL_ERROR;
517
0
      goto out;
518
0
    }
519
0
  }
520
0
  else
521
0
    Curl_multi_pollset(data, &ps);
522
0
  last_ps = mev_get_last_pollset(data, conn);
523
524
0
  if(!last_ps && ps.n) {
525
0
    if(conn)
526
0
      last_ps = mev_add_new_conn_pollset(conn);
527
0
    else
528
0
      last_ps = mev_add_new_xfer_pollset(data);
529
0
    if(!last_ps) {
530
0
      mresult = CURLM_OUT_OF_MEMORY;
531
0
      goto out;
532
0
    }
533
0
  }
534
535
0
  if(last_ps)
536
0
    mresult = mev_pollset_diff(multi, data, conn, &ps, last_ps);
537
0
  else
538
0
    DEBUGASSERT(!ps.n);
539
0
out:
540
0
  Curl_pollset_cleanup(&ps);
541
0
  return mresult;
542
0
}
543
544
CURLMcode Curl_multi_ev_assess_xfer(struct Curl_multi *multi,
545
                                    struct Curl_easy *data)
546
0
{
547
0
  return mev_assess(multi, data, NULL);
548
0
}
549
550
CURLMcode Curl_multi_ev_assess_conn(struct Curl_multi *multi,
551
                                    struct Curl_easy *data,
552
                                    struct connectdata *conn)
553
0
{
554
0
  return mev_assess(multi, data, conn);
555
0
}
556
557
CURLMcode Curl_multi_ev_assess_xfer_bset(struct Curl_multi *multi,
558
                                         struct uint32_bset *set)
559
0
{
560
0
  uint32_t mid;
561
0
  CURLMcode mresult = CURLM_OK;
562
563
0
  if(multi && multi->socket_cb && Curl_uint32_bset_first(set, &mid)) {
564
0
    do {
565
0
      struct Curl_easy *data = Curl_multi_get_easy(multi, mid);
566
0
      if(data) {
567
0
        mresult = Curl_multi_ev_assess_xfer(multi, data);
568
0
      }
569
0
    } while(!mresult && Curl_uint32_bset_next(set, mid, &mid));
570
0
  }
571
0
  return mresult;
572
0
}
573
574
CURLMcode Curl_multi_ev_assign(struct Curl_multi *multi,
575
                               curl_socket_t s,
576
                               void *user_data)
577
0
{
578
0
  struct mev_sh_entry *e = mev_sh_entry_get(&multi->ev.sh_entries, s);
579
0
  if(!e)
580
0
    return CURLM_BAD_SOCKET;
581
0
  e->user_data = user_data;
582
0
  return CURLM_OK;
583
0
}
584
585
void Curl_multi_ev_dirty_xfers(struct Curl_multi *multi,
586
                               curl_socket_t s)
587
0
{
588
0
  struct mev_sh_entry *entry;
589
590
0
  DEBUGASSERT(s != CURL_SOCKET_TIMEOUT);
591
0
  entry = mev_sh_entry_get(&multi->ev.sh_entries, s);
592
593
  /* Unmatched socket, we cannot act on it but we ignore this fact. In
594
     real-world tests it has been proved that libevent can in fact give
595
     the application actions even though the socket was previously
596
     asked to get removed, so thus we better survive stray socket actions
597
     and move on. */
598
0
  if(entry) {
599
0
    struct Curl_easy *data;
600
0
    uint32_t mid;
601
602
0
    if(Curl_uint32_spbset_first(&entry->xfers, &mid)) {
603
0
      do {
604
0
        data = Curl_multi_get_easy(multi, mid);
605
0
        if(data) {
606
0
          Curl_multi_mark_dirty(data);
607
0
        }
608
0
        else {
609
0
          CURL_TRC_M(multi->admin, "socket transfer %u no longer found", mid);
610
0
          Curl_uint32_spbset_remove(&entry->xfers, mid);
611
0
        }
612
0
      } while(Curl_uint32_spbset_next(&entry->xfers, mid, &mid));
613
0
    }
614
615
0
    if(entry->conn)
616
0
      Curl_multi_mark_dirty(multi->admin);
617
0
  }
618
0
}
619
620
void Curl_multi_ev_socket_done(struct Curl_multi *multi,
621
                               struct Curl_easy *data, curl_socket_t s)
622
7.44k
{
623
7.44k
  mev_forget_socket(multi, data, s, "socket done");
624
7.44k
}
625
626
void Curl_multi_ev_xfer_done(struct Curl_multi *multi,
627
                             struct Curl_easy *data)
628
13.0k
{
629
13.0k
  DEBUGASSERT(!data->conn); /* transfer should have been detached */
630
13.0k
  (void)mev_assess(multi, data, NULL);
631
13.0k
  Curl_meta_remove(data, CURL_META_MEV_POLLSET);
632
13.0k
}
633
634
void Curl_multi_ev_conn_done(struct Curl_multi *multi,
635
                             struct Curl_easy *data,
636
                             struct connectdata *conn)
637
7.47k
{
638
7.47k
  (void)mev_assess(multi, data, conn);
639
7.47k
  Curl_conn_meta_remove(conn, CURL_META_MEV_POLLSET);
640
7.47k
}
641
642
void Curl_multi_ev_init(struct Curl_multi *multi, size_t hashsize)
643
13.0k
{
644
13.0k
  Curl_hash_init(&multi->ev.sh_entries, hashsize, CURL_HASH_TYPE_SOCKET,
645
13.0k
                 mev_sh_entry_dtor);
646
13.0k
}
647
648
void Curl_multi_ev_cleanup(struct Curl_multi *multi)
649
13.0k
{
650
13.0k
  Curl_hash_destroy(&multi->ev.sh_entries);
651
13.0k
}