1 // SPDX-License-Identifier: LGPL-2.1
2 /*
3 *
4 * Copyright (C) International Business Machines Corp., 2002,2011
5 * Author(s): Steve French (sfrench@us.ibm.com)
6 *
7 */
8 #include <linux/fs.h>
9 #include <linux/net.h>
10 #include <linux/string.h>
11 #include <linux/sched/mm.h>
12 #include <linux/sched/signal.h>
13 #include <linux/list.h>
14 #include <linux/wait.h>
15 #include <linux/slab.h>
16 #include <linux/pagemap.h>
17 #include <linux/ctype.h>
18 #include <linux/utsname.h>
19 #include <linux/mempool.h>
20 #include <linux/delay.h>
21 #include <linux/completion.h>
22 #include <linux/kthread.h>
23 #include <linux/pagevec.h>
24 #include <linux/freezer.h>
25 #include <linux/namei.h>
26 #include <linux/uuid.h>
27 #include <linux/uaccess.h>
28 #include <asm/processor.h>
29 #include <linux/inet.h>
30 #include <linux/module.h>
31 #include <keys/user-type.h>
32 #include <net/ipv6.h>
33 #include <linux/parser.h>
34 #include <linux/bvec.h>
35 #include "cifspdu.h"
36 #include "cifsglob.h"
37 #include "cifsproto.h"
38 #include "cifs_unicode.h"
39 #include "cifs_debug.h"
40 #include "cifs_fs_sb.h"
41 #include "ntlmssp.h"
42 #include "nterr.h"
43 #include "rfc1002pdu.h"
44 #include "fscache.h"
45 #include "smb2proto.h"
46 #include "smbdirect.h"
47 #include "dns_resolve.h"
48 #ifdef CONFIG_CIFS_DFS_UPCALL
49 #include "dfs.h"
50 #include "dfs_cache.h"
51 #endif
52 #include "fs_context.h"
53 #include "cifs_swn.h"
54
55 /* FIXME: should these be tunable? */
56 #define TLINK_ERROR_EXPIRE (1 * HZ)
57 #define TLINK_IDLE_EXPIRE (600 * HZ)
58
59 /* Drop the connection to not overload the server */
60 #define MAX_STATUS_IO_TIMEOUT 5
61
62 static int ip_connect(struct TCP_Server_Info *server);
63 static int generic_ip_connect(struct TCP_Server_Info *server);
64 static void tlink_rb_insert(struct rb_root *root, struct tcon_link *new_tlink);
65 static void cifs_prune_tlinks(struct work_struct *work);
66
67 /*
68 * Resolve hostname and set ip addr in tcp ses. Useful for hostnames that may
69 * get their ip addresses changed at some point.
70 *
71 * This should be called with server->srv_mutex held.
72 */
reconn_set_ipaddr_from_hostname(struct TCP_Server_Info * server)73 static int reconn_set_ipaddr_from_hostname(struct TCP_Server_Info *server)
74 {
75 int rc;
76 int len;
77 char *unc;
78 struct sockaddr_storage ss;
79
80 if (!server->hostname)
81 return -EINVAL;
82
83 /* if server hostname isn't populated, there's nothing to do here */
84 if (server->hostname[0] == '\0')
85 return 0;
86
87 len = strlen(server->hostname) + 3;
88
89 unc = kmalloc(len, GFP_KERNEL);
90 if (!unc) {
91 cifs_dbg(FYI, "%s: failed to create UNC path\n", __func__);
92 return -ENOMEM;
93 }
94 scnprintf(unc, len, "\\\\%s", server->hostname);
95
96 spin_lock(&server->srv_lock);
97 ss = server->dstaddr;
98 spin_unlock(&server->srv_lock);
99
100 rc = dns_resolve_server_name_to_ip(unc, (struct sockaddr *)&ss, NULL);
101 kfree(unc);
102
103 if (rc < 0) {
104 cifs_dbg(FYI, "%s: failed to resolve server part of %s to IP: %d\n",
105 __func__, server->hostname, rc);
106 } else {
107 spin_lock(&server->srv_lock);
108 memcpy(&server->dstaddr, &ss, sizeof(server->dstaddr));
109 spin_unlock(&server->srv_lock);
110 rc = 0;
111 }
112
113 return rc;
114 }
115
smb2_query_server_interfaces(struct work_struct * work)116 static void smb2_query_server_interfaces(struct work_struct *work)
117 {
118 int rc;
119 int xid;
120 struct cifs_tcon *tcon = container_of(work,
121 struct cifs_tcon,
122 query_interfaces.work);
123 struct TCP_Server_Info *server = tcon->ses->server;
124
125 /*
126 * query server network interfaces, in case they change
127 */
128 if (!server->ops->query_server_interfaces)
129 return;
130
131 xid = get_xid();
132 rc = server->ops->query_server_interfaces(xid, tcon, false);
133 free_xid(xid);
134
135 if (rc)
136 cifs_dbg(FYI, "%s: failed to query server interfaces: %d\n",
137 __func__, rc);
138
139 queue_delayed_work(cifsiod_wq, &tcon->query_interfaces,
140 (SMB_INTERFACE_POLL_INTERVAL * HZ));
141 }
142
143 /*
144 * Update the tcpStatus for the server.
145 * This is used to signal the cifsd thread to call cifs_reconnect
146 * ONLY cifsd thread should call cifs_reconnect. For any other
147 * thread, use this function
148 *
149 * @server: the tcp ses for which reconnect is needed
150 * @all_channels: if this needs to be done for all channels
151 */
152 void
cifs_signal_cifsd_for_reconnect(struct TCP_Server_Info * server,bool all_channels)153 cifs_signal_cifsd_for_reconnect(struct TCP_Server_Info *server,
154 bool all_channels)
155 {
156 struct TCP_Server_Info *pserver;
157 struct cifs_ses *ses;
158 int i;
159
160 /* If server is a channel, select the primary channel */
161 pserver = SERVER_IS_CHAN(server) ? server->primary_server : server;
162
163 /* if we need to signal just this channel */
164 if (!all_channels) {
165 spin_lock(&server->srv_lock);
166 if (server->tcpStatus != CifsExiting)
167 server->tcpStatus = CifsNeedReconnect;
168 spin_unlock(&server->srv_lock);
169 return;
170 }
171
172 spin_lock(&cifs_tcp_ses_lock);
173 list_for_each_entry(ses, &pserver->smb_ses_list, smb_ses_list) {
174 if (cifs_ses_exiting(ses))
175 continue;
176 spin_lock(&ses->chan_lock);
177 for (i = 0; i < ses->chan_count; i++) {
178 if (!ses->chans[i].server)
179 continue;
180
181 spin_lock(&ses->chans[i].server->srv_lock);
182 if (ses->chans[i].server->tcpStatus != CifsExiting)
183 ses->chans[i].server->tcpStatus = CifsNeedReconnect;
184 spin_unlock(&ses->chans[i].server->srv_lock);
185 }
186 spin_unlock(&ses->chan_lock);
187 }
188 spin_unlock(&cifs_tcp_ses_lock);
189 }
190
191 /*
192 * Mark all sessions and tcons for reconnect.
193 * IMPORTANT: make sure that this gets called only from
194 * cifsd thread. For any other thread, use
195 * cifs_signal_cifsd_for_reconnect
196 *
197 * @server: the tcp ses for which reconnect is needed
198 * @server needs to be previously set to CifsNeedReconnect.
199 * @mark_smb_session: whether even sessions need to be marked
200 */
201 void
cifs_mark_tcp_ses_conns_for_reconnect(struct TCP_Server_Info * server,bool mark_smb_session)202 cifs_mark_tcp_ses_conns_for_reconnect(struct TCP_Server_Info *server,
203 bool mark_smb_session)
204 {
205 struct TCP_Server_Info *pserver;
206 struct cifs_ses *ses, *nses;
207 struct cifs_tcon *tcon;
208
209 /*
210 * before reconnecting the tcp session, mark the smb session (uid) and the tid bad so they
211 * are not used until reconnected.
212 */
213 cifs_dbg(FYI, "%s: marking necessary sessions and tcons for reconnect\n", __func__);
214
215 /* If server is a channel, select the primary channel */
216 pserver = SERVER_IS_CHAN(server) ? server->primary_server : server;
217
218 /*
219 * if the server has been marked for termination, there is a
220 * chance that the remaining channels all need reconnect. To be
221 * on the safer side, mark the session and trees for reconnect
222 * for this scenario. This might cause a few redundant session
223 * setup and tree connect requests, but it is better than not doing
224 * a tree connect when needed, and all following requests failing
225 */
226 if (server->terminate) {
227 mark_smb_session = true;
228 server = pserver;
229 }
230
231 spin_lock(&cifs_tcp_ses_lock);
232 list_for_each_entry_safe(ses, nses, &pserver->smb_ses_list, smb_ses_list) {
233 spin_lock(&ses->ses_lock);
234 if (ses->ses_status == SES_EXITING) {
235 spin_unlock(&ses->ses_lock);
236 continue;
237 }
238 spin_unlock(&ses->ses_lock);
239
240 spin_lock(&ses->chan_lock);
241 if (cifs_ses_get_chan_index(ses, server) ==
242 CIFS_INVAL_CHAN_INDEX) {
243 spin_unlock(&ses->chan_lock);
244 continue;
245 }
246
247 if (!cifs_chan_is_iface_active(ses, server)) {
248 spin_unlock(&ses->chan_lock);
249 cifs_chan_update_iface(ses, server);
250 spin_lock(&ses->chan_lock);
251 }
252
253 if (!mark_smb_session && cifs_chan_needs_reconnect(ses, server)) {
254 spin_unlock(&ses->chan_lock);
255 continue;
256 }
257
258 if (mark_smb_session)
259 CIFS_SET_ALL_CHANS_NEED_RECONNECT(ses);
260 else
261 cifs_chan_set_need_reconnect(ses, server);
262
263 cifs_dbg(FYI, "%s: channel connect bitmap: 0x%lx\n",
264 __func__, ses->chans_need_reconnect);
265
266 /* If all channels need reconnect, then tcon needs reconnect */
267 if (!mark_smb_session && !CIFS_ALL_CHANS_NEED_RECONNECT(ses)) {
268 spin_unlock(&ses->chan_lock);
269 continue;
270 }
271 spin_unlock(&ses->chan_lock);
272
273 spin_lock(&ses->ses_lock);
274 ses->ses_status = SES_NEED_RECON;
275 spin_unlock(&ses->ses_lock);
276
277 list_for_each_entry(tcon, &ses->tcon_list, tcon_list) {
278 tcon->need_reconnect = true;
279 spin_lock(&tcon->tc_lock);
280 tcon->status = TID_NEED_RECON;
281 spin_unlock(&tcon->tc_lock);
282
283 cancel_delayed_work(&tcon->query_interfaces);
284 }
285 if (ses->tcon_ipc) {
286 ses->tcon_ipc->need_reconnect = true;
287 spin_lock(&ses->tcon_ipc->tc_lock);
288 ses->tcon_ipc->status = TID_NEED_RECON;
289 spin_unlock(&ses->tcon_ipc->tc_lock);
290 }
291 }
292 spin_unlock(&cifs_tcp_ses_lock);
293 }
294
295 static void
cifs_abort_connection(struct TCP_Server_Info * server)296 cifs_abort_connection(struct TCP_Server_Info *server)
297 {
298 struct mid_q_entry *mid, *nmid;
299 struct list_head retry_list;
300
301 server->maxBuf = 0;
302 server->max_read = 0;
303
304 /* do not want to be sending data on a socket we are freeing */
305 cifs_dbg(FYI, "%s: tearing down socket\n", __func__);
306 cifs_server_lock(server);
307 if (server->ssocket) {
308 cifs_dbg(FYI, "State: 0x%x Flags: 0x%lx\n", server->ssocket->state,
309 server->ssocket->flags);
310 kernel_sock_shutdown(server->ssocket, SHUT_WR);
311 cifs_dbg(FYI, "Post shutdown state: 0x%x Flags: 0x%lx\n", server->ssocket->state,
312 server->ssocket->flags);
313 sock_release(server->ssocket);
314 server->ssocket = NULL;
315 }
316 server->sequence_number = 0;
317 server->session_estab = false;
318 kfree_sensitive(server->session_key.response);
319 server->session_key.response = NULL;
320 server->session_key.len = 0;
321 server->lstrp = jiffies;
322
323 /* mark submitted MIDs for retry and issue callback */
324 INIT_LIST_HEAD(&retry_list);
325 cifs_dbg(FYI, "%s: moving mids to private list\n", __func__);
326 spin_lock(&server->mid_lock);
327 list_for_each_entry_safe(mid, nmid, &server->pending_mid_q, qhead) {
328 kref_get(&mid->refcount);
329 if (mid->mid_state == MID_REQUEST_SUBMITTED)
330 mid->mid_state = MID_RETRY_NEEDED;
331 list_move(&mid->qhead, &retry_list);
332 mid->mid_flags |= MID_DELETED;
333 }
334 spin_unlock(&server->mid_lock);
335 cifs_server_unlock(server);
336
337 cifs_dbg(FYI, "%s: issuing mid callbacks\n", __func__);
338 list_for_each_entry_safe(mid, nmid, &retry_list, qhead) {
339 list_del_init(&mid->qhead);
340 mid->callback(mid);
341 release_mid(mid);
342 }
343
344 if (cifs_rdma_enabled(server)) {
345 cifs_server_lock(server);
346 smbd_destroy(server);
347 cifs_server_unlock(server);
348 }
349 }
350
cifs_tcp_ses_needs_reconnect(struct TCP_Server_Info * server,int num_targets)351 static bool cifs_tcp_ses_needs_reconnect(struct TCP_Server_Info *server, int num_targets)
352 {
353 spin_lock(&server->srv_lock);
354 server->nr_targets = num_targets;
355 if (server->tcpStatus == CifsExiting) {
356 /* the demux thread will exit normally next time through the loop */
357 spin_unlock(&server->srv_lock);
358 wake_up(&server->response_q);
359 return false;
360 }
361
362 cifs_dbg(FYI, "Mark tcp session as need reconnect\n");
363 trace_smb3_reconnect(server->CurrentMid, server->conn_id,
364 server->hostname);
365 server->tcpStatus = CifsNeedReconnect;
366
367 spin_unlock(&server->srv_lock);
368 return true;
369 }
370
371 /*
372 * cifs tcp session reconnection
373 *
374 * mark tcp session as reconnecting so temporarily locked
375 * mark all smb sessions as reconnecting for tcp session
376 * reconnect tcp session
377 * wake up waiters on reconnection? - (not needed currently)
378 *
379 * if mark_smb_session is passed as true, unconditionally mark
380 * the smb session (and tcon) for reconnect as well. This value
381 * doesn't really matter for non-multichannel scenario.
382 *
383 */
__cifs_reconnect(struct TCP_Server_Info * server,bool mark_smb_session)384 static int __cifs_reconnect(struct TCP_Server_Info *server,
385 bool mark_smb_session)
386 {
387 int rc = 0;
388
389 if (!cifs_tcp_ses_needs_reconnect(server, 1))
390 return 0;
391
392 /*
393 * if smb session has been marked for reconnect, also reconnect all
394 * connections. This way, the other connections do not end up bad.
395 */
396 if (mark_smb_session)
397 cifs_signal_cifsd_for_reconnect(server, mark_smb_session);
398
399 cifs_mark_tcp_ses_conns_for_reconnect(server, mark_smb_session);
400
401 cifs_abort_connection(server);
402
403 do {
404 try_to_freeze();
405 cifs_server_lock(server);
406
407 if (!cifs_swn_set_server_dstaddr(server) &&
408 !SERVER_IS_CHAN(server)) {
409 /* resolve the hostname again to make sure that IP address is up-to-date */
410 rc = reconn_set_ipaddr_from_hostname(server);
411 cifs_dbg(FYI, "%s: reconn_set_ipaddr_from_hostname: rc=%d\n", __func__, rc);
412 }
413
414 if (cifs_rdma_enabled(server))
415 rc = smbd_reconnect(server);
416 else
417 rc = generic_ip_connect(server);
418 if (rc) {
419 cifs_server_unlock(server);
420 cifs_dbg(FYI, "%s: reconnect error %d\n", __func__, rc);
421 msleep(3000);
422 } else {
423 atomic_inc(&tcpSesReconnectCount);
424 set_credits(server, 1);
425 spin_lock(&server->srv_lock);
426 if (server->tcpStatus != CifsExiting)
427 server->tcpStatus = CifsNeedNegotiate;
428 spin_unlock(&server->srv_lock);
429 cifs_swn_reset_server_dstaddr(server);
430 cifs_server_unlock(server);
431 mod_delayed_work(cifsiod_wq, &server->reconnect, 0);
432 }
433 } while (server->tcpStatus == CifsNeedReconnect);
434
435 spin_lock(&server->srv_lock);
436 if (server->tcpStatus == CifsNeedNegotiate)
437 mod_delayed_work(cifsiod_wq, &server->echo, 0);
438 spin_unlock(&server->srv_lock);
439
440 wake_up(&server->response_q);
441 return rc;
442 }
443
444 #ifdef CONFIG_CIFS_DFS_UPCALL
__reconnect_target_unlocked(struct TCP_Server_Info * server,const char * target)445 static int __reconnect_target_unlocked(struct TCP_Server_Info *server, const char *target)
446 {
447 int rc;
448 char *hostname;
449
450 if (!cifs_swn_set_server_dstaddr(server)) {
451 if (server->hostname != target) {
452 hostname = extract_hostname(target);
453 if (!IS_ERR(hostname)) {
454 spin_lock(&server->srv_lock);
455 kfree(server->hostname);
456 server->hostname = hostname;
457 spin_unlock(&server->srv_lock);
458 } else {
459 cifs_dbg(FYI, "%s: couldn't extract hostname or address from dfs target: %ld\n",
460 __func__, PTR_ERR(hostname));
461 cifs_dbg(FYI, "%s: default to last target server: %s\n", __func__,
462 server->hostname);
463 }
464 }
465 /* resolve the hostname again to make sure that IP address is up-to-date. */
466 rc = reconn_set_ipaddr_from_hostname(server);
467 cifs_dbg(FYI, "%s: reconn_set_ipaddr_from_hostname: rc=%d\n", __func__, rc);
468 }
469 /* Reconnect the socket */
470 if (cifs_rdma_enabled(server))
471 rc = smbd_reconnect(server);
472 else
473 rc = generic_ip_connect(server);
474
475 return rc;
476 }
477
reconnect_target_unlocked(struct TCP_Server_Info * server,struct dfs_cache_tgt_list * tl,struct dfs_cache_tgt_iterator ** target_hint)478 static int reconnect_target_unlocked(struct TCP_Server_Info *server, struct dfs_cache_tgt_list *tl,
479 struct dfs_cache_tgt_iterator **target_hint)
480 {
481 int rc;
482 struct dfs_cache_tgt_iterator *tit;
483
484 *target_hint = NULL;
485
486 /* If dfs target list is empty, then reconnect to last server */
487 tit = dfs_cache_get_tgt_iterator(tl);
488 if (!tit)
489 return __reconnect_target_unlocked(server, server->hostname);
490
491 /* Otherwise, try every dfs target in @tl */
492 for (; tit; tit = dfs_cache_get_next_tgt(tl, tit)) {
493 rc = __reconnect_target_unlocked(server, dfs_cache_get_tgt_name(tit));
494 if (!rc) {
495 *target_hint = tit;
496 break;
497 }
498 }
499 return rc;
500 }
501
reconnect_dfs_server(struct TCP_Server_Info * server)502 static int reconnect_dfs_server(struct TCP_Server_Info *server)
503 {
504 struct dfs_cache_tgt_iterator *target_hint = NULL;
505
506 DFS_CACHE_TGT_LIST(tl);
507 int num_targets = 0;
508 int rc = 0;
509
510 /*
511 * Determine the number of dfs targets the referral path in @cifs_sb resolves to.
512 *
513 * smb2_reconnect() needs to know how long it should wait based upon the number of dfs
514 * targets (server->nr_targets). It's also possible that the cached referral was cleared
515 * through /proc/fs/cifs/dfscache or the target list is empty due to server settings after
516 * refreshing the referral, so, in this case, default it to 1.
517 */
518 mutex_lock(&server->refpath_lock);
519 if (!dfs_cache_noreq_find(server->leaf_fullpath + 1, NULL, &tl))
520 num_targets = dfs_cache_get_nr_tgts(&tl);
521 mutex_unlock(&server->refpath_lock);
522 if (!num_targets)
523 num_targets = 1;
524
525 if (!cifs_tcp_ses_needs_reconnect(server, num_targets))
526 return 0;
527
528 /*
529 * Unconditionally mark all sessions & tcons for reconnect as we might be connecting to a
530 * different server or share during failover. It could be improved by adding some logic to
531 * only do that in case it connects to a different server or share, though.
532 */
533 cifs_mark_tcp_ses_conns_for_reconnect(server, true);
534
535 cifs_abort_connection(server);
536
537 do {
538 try_to_freeze();
539 cifs_server_lock(server);
540
541 rc = reconnect_target_unlocked(server, &tl, &target_hint);
542 if (rc) {
543 /* Failed to reconnect socket */
544 cifs_server_unlock(server);
545 cifs_dbg(FYI, "%s: reconnect error %d\n", __func__, rc);
546 msleep(3000);
547 continue;
548 }
549 /*
550 * Socket was created. Update tcp session status to CifsNeedNegotiate so that a
551 * process waiting for reconnect will know it needs to re-establish session and tcon
552 * through the reconnected target server.
553 */
554 atomic_inc(&tcpSesReconnectCount);
555 set_credits(server, 1);
556 spin_lock(&server->srv_lock);
557 if (server->tcpStatus != CifsExiting)
558 server->tcpStatus = CifsNeedNegotiate;
559 spin_unlock(&server->srv_lock);
560 cifs_swn_reset_server_dstaddr(server);
561 cifs_server_unlock(server);
562 mod_delayed_work(cifsiod_wq, &server->reconnect, 0);
563 } while (server->tcpStatus == CifsNeedReconnect);
564
565 mutex_lock(&server->refpath_lock);
566 dfs_cache_noreq_update_tgthint(server->leaf_fullpath + 1, target_hint);
567 mutex_unlock(&server->refpath_lock);
568 dfs_cache_free_tgts(&tl);
569
570 /* Need to set up echo worker again once connection has been established */
571 spin_lock(&server->srv_lock);
572 if (server->tcpStatus == CifsNeedNegotiate)
573 mod_delayed_work(cifsiod_wq, &server->echo, 0);
574 spin_unlock(&server->srv_lock);
575
576 wake_up(&server->response_q);
577 return rc;
578 }
579
cifs_reconnect(struct TCP_Server_Info * server,bool mark_smb_session)580 int cifs_reconnect(struct TCP_Server_Info *server, bool mark_smb_session)
581 {
582 mutex_lock(&server->refpath_lock);
583 if (!server->leaf_fullpath) {
584 mutex_unlock(&server->refpath_lock);
585 return __cifs_reconnect(server, mark_smb_session);
586 }
587 mutex_unlock(&server->refpath_lock);
588
589 return reconnect_dfs_server(server);
590 }
591 #else
cifs_reconnect(struct TCP_Server_Info * server,bool mark_smb_session)592 int cifs_reconnect(struct TCP_Server_Info *server, bool mark_smb_session)
593 {
594 return __cifs_reconnect(server, mark_smb_session);
595 }
596 #endif
597
598 static void
cifs_echo_request(struct work_struct * work)599 cifs_echo_request(struct work_struct *work)
600 {
601 int rc;
602 struct TCP_Server_Info *server = container_of(work,
603 struct TCP_Server_Info, echo.work);
604
605 /*
606 * We cannot send an echo if it is disabled.
607 * Also, no need to ping if we got a response recently.
608 */
609
610 if (server->tcpStatus == CifsNeedReconnect ||
611 server->tcpStatus == CifsExiting ||
612 server->tcpStatus == CifsNew ||
613 (server->ops->can_echo && !server->ops->can_echo(server)) ||
614 time_before(jiffies, server->lstrp + server->echo_interval - HZ))
615 goto requeue_echo;
616
617 rc = server->ops->echo ? server->ops->echo(server) : -ENOSYS;
618 cifs_server_dbg(FYI, "send echo request: rc = %d\n", rc);
619
620 /* Check witness registrations */
621 cifs_swn_check();
622
623 requeue_echo:
624 queue_delayed_work(cifsiod_wq, &server->echo, server->echo_interval);
625 }
626
627 static bool
allocate_buffers(struct TCP_Server_Info * server)628 allocate_buffers(struct TCP_Server_Info *server)
629 {
630 if (!server->bigbuf) {
631 server->bigbuf = (char *)cifs_buf_get();
632 if (!server->bigbuf) {
633 cifs_server_dbg(VFS, "No memory for large SMB response\n");
634 msleep(3000);
635 /* retry will check if exiting */
636 return false;
637 }
638 } else if (server->large_buf) {
639 /* we are reusing a dirty large buf, clear its start */
640 memset(server->bigbuf, 0, HEADER_SIZE(server));
641 }
642
643 if (!server->smallbuf) {
644 server->smallbuf = (char *)cifs_small_buf_get();
645 if (!server->smallbuf) {
646 cifs_server_dbg(VFS, "No memory for SMB response\n");
647 msleep(1000);
648 /* retry will check if exiting */
649 return false;
650 }
651 /* beginning of smb buffer is cleared in our buf_get */
652 } else {
653 /* if existing small buf clear beginning */
654 memset(server->smallbuf, 0, HEADER_SIZE(server));
655 }
656
657 return true;
658 }
659
660 static bool
server_unresponsive(struct TCP_Server_Info * server)661 server_unresponsive(struct TCP_Server_Info *server)
662 {
663 /*
664 * If we're in the process of mounting a share or reconnecting a session
665 * and the server abruptly shut down (e.g. socket wasn't closed, packet
666 * had been ACK'ed but no SMB response), don't wait longer than 20s to
667 * negotiate protocol.
668 */
669 spin_lock(&server->srv_lock);
670 if (server->tcpStatus == CifsInNegotiate &&
671 time_after(jiffies, server->lstrp + 20 * HZ)) {
672 spin_unlock(&server->srv_lock);
673 cifs_reconnect(server, false);
674 return true;
675 }
676 /*
677 * We need to wait 3 echo intervals to make sure we handle such
678 * situations right:
679 * 1s client sends a normal SMB request
680 * 2s client gets a response
681 * 30s echo workqueue job pops, and decides we got a response recently
682 * and don't need to send another
683 * ...
684 * 65s kernel_recvmsg times out, and we see that we haven't gotten
685 * a response in >60s.
686 */
687 if ((server->tcpStatus == CifsGood ||
688 server->tcpStatus == CifsNeedNegotiate) &&
689 (!server->ops->can_echo || server->ops->can_echo(server)) &&
690 time_after(jiffies, server->lstrp + 3 * server->echo_interval)) {
691 spin_unlock(&server->srv_lock);
692 cifs_server_dbg(VFS, "has not responded in %lu seconds. Reconnecting...\n",
693 (3 * server->echo_interval) / HZ);
694 cifs_reconnect(server, false);
695 return true;
696 }
697 spin_unlock(&server->srv_lock);
698
699 return false;
700 }
701
702 static inline bool
zero_credits(struct TCP_Server_Info * server)703 zero_credits(struct TCP_Server_Info *server)
704 {
705 int val;
706
707 spin_lock(&server->req_lock);
708 val = server->credits + server->echo_credits + server->oplock_credits;
709 if (server->in_flight == 0 && val == 0) {
710 spin_unlock(&server->req_lock);
711 return true;
712 }
713 spin_unlock(&server->req_lock);
714 return false;
715 }
716
717 static int
cifs_readv_from_socket(struct TCP_Server_Info * server,struct msghdr * smb_msg)718 cifs_readv_from_socket(struct TCP_Server_Info *server, struct msghdr *smb_msg)
719 {
720 int length = 0;
721 int total_read;
722
723 for (total_read = 0; msg_data_left(smb_msg); total_read += length) {
724 try_to_freeze();
725
726 /* reconnect if no credits and no requests in flight */
727 if (zero_credits(server)) {
728 cifs_reconnect(server, false);
729 return -ECONNABORTED;
730 }
731
732 if (server_unresponsive(server))
733 return -ECONNABORTED;
734 if (cifs_rdma_enabled(server) && server->smbd_conn)
735 length = smbd_recv(server->smbd_conn, smb_msg);
736 else
737 length = sock_recvmsg(server->ssocket, smb_msg, 0);
738
739 spin_lock(&server->srv_lock);
740 if (server->tcpStatus == CifsExiting) {
741 spin_unlock(&server->srv_lock);
742 return -ESHUTDOWN;
743 }
744
745 if (server->tcpStatus == CifsNeedReconnect) {
746 spin_unlock(&server->srv_lock);
747 cifs_reconnect(server, false);
748 return -ECONNABORTED;
749 }
750 spin_unlock(&server->srv_lock);
751
752 if (length == -ERESTARTSYS ||
753 length == -EAGAIN ||
754 length == -EINTR) {
755 /*
756 * Minimum sleep to prevent looping, allowing socket
757 * to clear and app threads to set tcpStatus
758 * CifsNeedReconnect if server hung.
759 */
760 usleep_range(1000, 2000);
761 length = 0;
762 continue;
763 }
764
765 if (length <= 0) {
766 cifs_dbg(FYI, "Received no data or error: %d\n", length);
767 cifs_reconnect(server, false);
768 return -ECONNABORTED;
769 }
770 }
771 return total_read;
772 }
773
774 int
cifs_read_from_socket(struct TCP_Server_Info * server,char * buf,unsigned int to_read)775 cifs_read_from_socket(struct TCP_Server_Info *server, char *buf,
776 unsigned int to_read)
777 {
778 struct msghdr smb_msg = {};
779 struct kvec iov = {.iov_base = buf, .iov_len = to_read};
780
781 iov_iter_kvec(&smb_msg.msg_iter, ITER_DEST, &iov, 1, to_read);
782
783 return cifs_readv_from_socket(server, &smb_msg);
784 }
785
786 ssize_t
cifs_discard_from_socket(struct TCP_Server_Info * server,size_t to_read)787 cifs_discard_from_socket(struct TCP_Server_Info *server, size_t to_read)
788 {
789 struct msghdr smb_msg = {};
790
791 /*
792 * iov_iter_discard already sets smb_msg.type and count and iov_offset
793 * and cifs_readv_from_socket sets msg_control and msg_controllen
794 * so little to initialize in struct msghdr
795 */
796 iov_iter_discard(&smb_msg.msg_iter, ITER_DEST, to_read);
797
798 return cifs_readv_from_socket(server, &smb_msg);
799 }
800
801 int
cifs_read_page_from_socket(struct TCP_Server_Info * server,struct page * page,unsigned int page_offset,unsigned int to_read)802 cifs_read_page_from_socket(struct TCP_Server_Info *server, struct page *page,
803 unsigned int page_offset, unsigned int to_read)
804 {
805 struct msghdr smb_msg = {};
806 struct bio_vec bv;
807
808 bvec_set_page(&bv, page, to_read, page_offset);
809 iov_iter_bvec(&smb_msg.msg_iter, ITER_DEST, &bv, 1, to_read);
810 return cifs_readv_from_socket(server, &smb_msg);
811 }
812
813 int
cifs_read_iter_from_socket(struct TCP_Server_Info * server,struct iov_iter * iter,unsigned int to_read)814 cifs_read_iter_from_socket(struct TCP_Server_Info *server, struct iov_iter *iter,
815 unsigned int to_read)
816 {
817 struct msghdr smb_msg = { .msg_iter = *iter };
818 int ret;
819
820 iov_iter_truncate(&smb_msg.msg_iter, to_read);
821 ret = cifs_readv_from_socket(server, &smb_msg);
822 if (ret > 0)
823 iov_iter_advance(iter, ret);
824 return ret;
825 }
826
827 static bool
is_smb_response(struct TCP_Server_Info * server,unsigned char type)828 is_smb_response(struct TCP_Server_Info *server, unsigned char type)
829 {
830 /*
831 * The first byte big endian of the length field,
832 * is actually not part of the length but the type
833 * with the most common, zero, as regular data.
834 */
835 switch (type) {
836 case RFC1002_SESSION_MESSAGE:
837 /* Regular SMB response */
838 return true;
839 case RFC1002_SESSION_KEEP_ALIVE:
840 cifs_dbg(FYI, "RFC 1002 session keep alive\n");
841 break;
842 case RFC1002_POSITIVE_SESSION_RESPONSE:
843 cifs_dbg(FYI, "RFC 1002 positive session response\n");
844 break;
845 case RFC1002_NEGATIVE_SESSION_RESPONSE:
846 /*
847 * We get this from Windows 98 instead of an error on
848 * SMB negprot response.
849 */
850 cifs_dbg(FYI, "RFC 1002 negative session response\n");
851 /* give server a second to clean up */
852 msleep(1000);
853 /*
854 * Always try 445 first on reconnect since we get NACK
855 * on some if we ever connected to port 139 (the NACK
856 * is since we do not begin with RFC1001 session
857 * initialize frame).
858 */
859 cifs_set_port((struct sockaddr *)&server->dstaddr, CIFS_PORT);
860 cifs_reconnect(server, true);
861 break;
862 default:
863 cifs_server_dbg(VFS, "RFC 1002 unknown response type 0x%x\n", type);
864 cifs_reconnect(server, true);
865 }
866
867 return false;
868 }
869
870 void
dequeue_mid(struct mid_q_entry * mid,bool malformed)871 dequeue_mid(struct mid_q_entry *mid, bool malformed)
872 {
873 #ifdef CONFIG_CIFS_STATS2
874 mid->when_received = jiffies;
875 #endif
876 spin_lock(&mid->server->mid_lock);
877 if (!malformed)
878 mid->mid_state = MID_RESPONSE_RECEIVED;
879 else
880 mid->mid_state = MID_RESPONSE_MALFORMED;
881 /*
882 * Trying to handle/dequeue a mid after the send_recv()
883 * function has finished processing it is a bug.
884 */
885 if (mid->mid_flags & MID_DELETED) {
886 spin_unlock(&mid->server->mid_lock);
887 pr_warn_once("trying to dequeue a deleted mid\n");
888 } else {
889 list_del_init(&mid->qhead);
890 mid->mid_flags |= MID_DELETED;
891 spin_unlock(&mid->server->mid_lock);
892 }
893 }
894
895 static unsigned int
smb2_get_credits_from_hdr(char * buffer,struct TCP_Server_Info * server)896 smb2_get_credits_from_hdr(char *buffer, struct TCP_Server_Info *server)
897 {
898 struct smb2_hdr *shdr = (struct smb2_hdr *)buffer;
899
900 /*
901 * SMB1 does not use credits.
902 */
903 if (is_smb1(server))
904 return 0;
905
906 return le16_to_cpu(shdr->CreditRequest);
907 }
908
909 static void
handle_mid(struct mid_q_entry * mid,struct TCP_Server_Info * server,char * buf,int malformed)910 handle_mid(struct mid_q_entry *mid, struct TCP_Server_Info *server,
911 char *buf, int malformed)
912 {
913 if (server->ops->check_trans2 &&
914 server->ops->check_trans2(mid, server, buf, malformed))
915 return;
916 mid->credits_received = smb2_get_credits_from_hdr(buf, server);
917 mid->resp_buf = buf;
918 mid->large_buf = server->large_buf;
919 /* Was previous buf put in mpx struct for multi-rsp? */
920 if (!mid->multiRsp) {
921 /* smb buffer will be freed by user thread */
922 if (server->large_buf)
923 server->bigbuf = NULL;
924 else
925 server->smallbuf = NULL;
926 }
927 dequeue_mid(mid, malformed);
928 }
929
930 int
cifs_enable_signing(struct TCP_Server_Info * server,bool mnt_sign_required)931 cifs_enable_signing(struct TCP_Server_Info *server, bool mnt_sign_required)
932 {
933 bool srv_sign_required = server->sec_mode & server->vals->signing_required;
934 bool srv_sign_enabled = server->sec_mode & server->vals->signing_enabled;
935 bool mnt_sign_enabled;
936
937 /*
938 * Is signing required by mnt options? If not then check
939 * global_secflags to see if it is there.
940 */
941 if (!mnt_sign_required)
942 mnt_sign_required = ((global_secflags & CIFSSEC_MUST_SIGN) ==
943 CIFSSEC_MUST_SIGN);
944
945 /*
946 * If signing is required then it's automatically enabled too,
947 * otherwise, check to see if the secflags allow it.
948 */
949 mnt_sign_enabled = mnt_sign_required ? mnt_sign_required :
950 (global_secflags & CIFSSEC_MAY_SIGN);
951
952 /* If server requires signing, does client allow it? */
953 if (srv_sign_required) {
954 if (!mnt_sign_enabled) {
955 cifs_dbg(VFS, "Server requires signing, but it's disabled in SecurityFlags!\n");
956 return -EOPNOTSUPP;
957 }
958 server->sign = true;
959 }
960
961 /* If client requires signing, does server allow it? */
962 if (mnt_sign_required) {
963 if (!srv_sign_enabled) {
964 cifs_dbg(VFS, "Server does not support signing!\n");
965 return -EOPNOTSUPP;
966 }
967 server->sign = true;
968 }
969
970 if (cifs_rdma_enabled(server) && server->sign)
971 cifs_dbg(VFS, "Signing is enabled, and RDMA read/write will be disabled\n");
972
973 return 0;
974 }
975
976 static noinline_for_stack void
clean_demultiplex_info(struct TCP_Server_Info * server)977 clean_demultiplex_info(struct TCP_Server_Info *server)
978 {
979 int length;
980
981 /* take it off the list, if it's not already */
982 spin_lock(&server->srv_lock);
983 list_del_init(&server->tcp_ses_list);
984 spin_unlock(&server->srv_lock);
985
986 cancel_delayed_work_sync(&server->echo);
987
988 spin_lock(&server->srv_lock);
989 server->tcpStatus = CifsExiting;
990 spin_unlock(&server->srv_lock);
991 wake_up_all(&server->response_q);
992
993 /* check if we have blocked requests that need to free */
994 spin_lock(&server->req_lock);
995 if (server->credits <= 0)
996 server->credits = 1;
997 spin_unlock(&server->req_lock);
998 /*
999 * Although there should not be any requests blocked on this queue it
1000 * can not hurt to be paranoid and try to wake up requests that may
1001 * haven been blocked when more than 50 at time were on the wire to the
1002 * same server - they now will see the session is in exit state and get
1003 * out of SendReceive.
1004 */
1005 wake_up_all(&server->request_q);
1006 /* give those requests time to exit */
1007 msleep(125);
1008 if (cifs_rdma_enabled(server))
1009 smbd_destroy(server);
1010 if (server->ssocket) {
1011 sock_release(server->ssocket);
1012 server->ssocket = NULL;
1013 }
1014
1015 if (!list_empty(&server->pending_mid_q)) {
1016 struct list_head dispose_list;
1017 struct mid_q_entry *mid_entry;
1018 struct list_head *tmp, *tmp2;
1019
1020 INIT_LIST_HEAD(&dispose_list);
1021 spin_lock(&server->mid_lock);
1022 list_for_each_safe(tmp, tmp2, &server->pending_mid_q) {
1023 mid_entry = list_entry(tmp, struct mid_q_entry, qhead);
1024 cifs_dbg(FYI, "Clearing mid %llu\n", mid_entry->mid);
1025 kref_get(&mid_entry->refcount);
1026 mid_entry->mid_state = MID_SHUTDOWN;
1027 list_move(&mid_entry->qhead, &dispose_list);
1028 mid_entry->mid_flags |= MID_DELETED;
1029 }
1030 spin_unlock(&server->mid_lock);
1031
1032 /* now walk dispose list and issue callbacks */
1033 list_for_each_safe(tmp, tmp2, &dispose_list) {
1034 mid_entry = list_entry(tmp, struct mid_q_entry, qhead);
1035 cifs_dbg(FYI, "Callback mid %llu\n", mid_entry->mid);
1036 list_del_init(&mid_entry->qhead);
1037 mid_entry->callback(mid_entry);
1038 release_mid(mid_entry);
1039 }
1040 /* 1/8th of sec is more than enough time for them to exit */
1041 msleep(125);
1042 }
1043
1044 if (!list_empty(&server->pending_mid_q)) {
1045 /*
1046 * mpx threads have not exited yet give them at least the smb
1047 * send timeout time for long ops.
1048 *
1049 * Due to delays on oplock break requests, we need to wait at
1050 * least 45 seconds before giving up on a request getting a
1051 * response and going ahead and killing cifsd.
1052 */
1053 cifs_dbg(FYI, "Wait for exit from demultiplex thread\n");
1054 msleep(46000);
1055 /*
1056 * If threads still have not exited they are probably never
1057 * coming home not much else we can do but free the memory.
1058 */
1059 }
1060
1061 put_net(cifs_net_ns(server));
1062 kfree(server->leaf_fullpath);
1063 kfree(server->hostname);
1064 kfree(server);
1065
1066 length = atomic_dec_return(&tcpSesAllocCount);
1067 if (length > 0)
1068 mempool_resize(cifs_req_poolp, length + cifs_min_rcv);
1069 }
1070
1071 static int
standard_receive3(struct TCP_Server_Info * server,struct mid_q_entry * mid)1072 standard_receive3(struct TCP_Server_Info *server, struct mid_q_entry *mid)
1073 {
1074 int length;
1075 char *buf = server->smallbuf;
1076 unsigned int pdu_length = server->pdu_size;
1077
1078 /* make sure this will fit in a large buffer */
1079 if (pdu_length > CIFSMaxBufSize + MAX_HEADER_SIZE(server) -
1080 HEADER_PREAMBLE_SIZE(server)) {
1081 cifs_server_dbg(VFS, "SMB response too long (%u bytes)\n", pdu_length);
1082 cifs_reconnect(server, true);
1083 return -ECONNABORTED;
1084 }
1085
1086 /* switch to large buffer if too big for a small one */
1087 if (pdu_length > MAX_CIFS_SMALL_BUFFER_SIZE - 4) {
1088 server->large_buf = true;
1089 memcpy(server->bigbuf, buf, server->total_read);
1090 buf = server->bigbuf;
1091 }
1092
1093 /* now read the rest */
1094 length = cifs_read_from_socket(server, buf + HEADER_SIZE(server) - 1,
1095 pdu_length - MID_HEADER_SIZE(server));
1096
1097 if (length < 0)
1098 return length;
1099 server->total_read += length;
1100
1101 dump_smb(buf, server->total_read);
1102
1103 return cifs_handle_standard(server, mid);
1104 }
1105
1106 int
cifs_handle_standard(struct TCP_Server_Info * server,struct mid_q_entry * mid)1107 cifs_handle_standard(struct TCP_Server_Info *server, struct mid_q_entry *mid)
1108 {
1109 char *buf = server->large_buf ? server->bigbuf : server->smallbuf;
1110 int rc;
1111
1112 /*
1113 * We know that we received enough to get to the MID as we
1114 * checked the pdu_length earlier. Now check to see
1115 * if the rest of the header is OK.
1116 *
1117 * 48 bytes is enough to display the header and a little bit
1118 * into the payload for debugging purposes.
1119 */
1120 rc = server->ops->check_message(buf, server->total_read, server);
1121 if (rc)
1122 cifs_dump_mem("Bad SMB: ", buf,
1123 min_t(unsigned int, server->total_read, 48));
1124
1125 if (server->ops->is_session_expired &&
1126 server->ops->is_session_expired(buf)) {
1127 cifs_reconnect(server, true);
1128 return -1;
1129 }
1130
1131 if (server->ops->is_status_pending &&
1132 server->ops->is_status_pending(buf, server))
1133 return -1;
1134
1135 if (!mid)
1136 return rc;
1137
1138 handle_mid(mid, server, buf, rc);
1139 return 0;
1140 }
1141
1142 static void
smb2_add_credits_from_hdr(char * buffer,struct TCP_Server_Info * server)1143 smb2_add_credits_from_hdr(char *buffer, struct TCP_Server_Info *server)
1144 {
1145 struct smb2_hdr *shdr = (struct smb2_hdr *)buffer;
1146 int scredits, in_flight;
1147
1148 /*
1149 * SMB1 does not use credits.
1150 */
1151 if (is_smb1(server))
1152 return;
1153
1154 if (shdr->CreditRequest) {
1155 spin_lock(&server->req_lock);
1156 server->credits += le16_to_cpu(shdr->CreditRequest);
1157 scredits = server->credits;
1158 in_flight = server->in_flight;
1159 spin_unlock(&server->req_lock);
1160 wake_up(&server->request_q);
1161
1162 trace_smb3_hdr_credits(server->CurrentMid,
1163 server->conn_id, server->hostname, scredits,
1164 le16_to_cpu(shdr->CreditRequest), in_flight);
1165 cifs_server_dbg(FYI, "%s: added %u credits total=%d\n",
1166 __func__, le16_to_cpu(shdr->CreditRequest),
1167 scredits);
1168 }
1169 }
1170
1171
1172 static int
cifs_demultiplex_thread(void * p)1173 cifs_demultiplex_thread(void *p)
1174 {
1175 int i, num_mids, length;
1176 struct TCP_Server_Info *server = p;
1177 unsigned int pdu_length;
1178 unsigned int next_offset;
1179 char *buf = NULL;
1180 struct task_struct *task_to_wake = NULL;
1181 struct mid_q_entry *mids[MAX_COMPOUND];
1182 char *bufs[MAX_COMPOUND];
1183 unsigned int noreclaim_flag, num_io_timeout = 0;
1184 bool pending_reconnect = false;
1185
1186 noreclaim_flag = memalloc_noreclaim_save();
1187 cifs_dbg(FYI, "Demultiplex PID: %d\n", task_pid_nr(current));
1188
1189 length = atomic_inc_return(&tcpSesAllocCount);
1190 if (length > 1)
1191 mempool_resize(cifs_req_poolp, length + cifs_min_rcv);
1192
1193 set_freezable();
1194 allow_kernel_signal(SIGKILL);
1195 while (server->tcpStatus != CifsExiting) {
1196 if (try_to_freeze())
1197 continue;
1198
1199 if (!allocate_buffers(server))
1200 continue;
1201
1202 server->large_buf = false;
1203 buf = server->smallbuf;
1204 pdu_length = 4; /* enough to get RFC1001 header */
1205
1206 length = cifs_read_from_socket(server, buf, pdu_length);
1207 if (length < 0)
1208 continue;
1209
1210 if (is_smb1(server))
1211 server->total_read = length;
1212 else
1213 server->total_read = 0;
1214
1215 /*
1216 * The right amount was read from socket - 4 bytes,
1217 * so we can now interpret the length field.
1218 */
1219 pdu_length = get_rfc1002_length(buf);
1220
1221 cifs_dbg(FYI, "RFC1002 header 0x%x\n", pdu_length);
1222 if (!is_smb_response(server, buf[0]))
1223 continue;
1224
1225 pending_reconnect = false;
1226 next_pdu:
1227 server->pdu_size = pdu_length;
1228
1229 /* make sure we have enough to get to the MID */
1230 if (server->pdu_size < MID_HEADER_SIZE(server)) {
1231 cifs_server_dbg(VFS, "SMB response too short (%u bytes)\n",
1232 server->pdu_size);
1233 cifs_reconnect(server, true);
1234 continue;
1235 }
1236
1237 /* read down to the MID */
1238 length = cifs_read_from_socket(server,
1239 buf + HEADER_PREAMBLE_SIZE(server),
1240 MID_HEADER_SIZE(server));
1241 if (length < 0)
1242 continue;
1243 server->total_read += length;
1244
1245 if (server->ops->next_header) {
1246 if (server->ops->next_header(server, buf, &next_offset)) {
1247 cifs_dbg(VFS, "%s: malformed response (next_offset=%u)\n",
1248 __func__, next_offset);
1249 cifs_reconnect(server, true);
1250 continue;
1251 }
1252 if (next_offset)
1253 server->pdu_size = next_offset;
1254 }
1255
1256 memset(mids, 0, sizeof(mids));
1257 memset(bufs, 0, sizeof(bufs));
1258 num_mids = 0;
1259
1260 if (server->ops->is_transform_hdr &&
1261 server->ops->receive_transform &&
1262 server->ops->is_transform_hdr(buf)) {
1263 length = server->ops->receive_transform(server,
1264 mids,
1265 bufs,
1266 &num_mids);
1267 } else {
1268 mids[0] = server->ops->find_mid(server, buf);
1269 bufs[0] = buf;
1270 num_mids = 1;
1271
1272 if (!mids[0] || !mids[0]->receive)
1273 length = standard_receive3(server, mids[0]);
1274 else
1275 length = mids[0]->receive(server, mids[0]);
1276 }
1277
1278 if (length < 0) {
1279 for (i = 0; i < num_mids; i++)
1280 if (mids[i])
1281 release_mid(mids[i]);
1282 continue;
1283 }
1284
1285 if (server->ops->is_status_io_timeout &&
1286 server->ops->is_status_io_timeout(buf)) {
1287 num_io_timeout++;
1288 if (num_io_timeout > MAX_STATUS_IO_TIMEOUT) {
1289 cifs_server_dbg(VFS,
1290 "Number of request timeouts exceeded %d. Reconnecting",
1291 MAX_STATUS_IO_TIMEOUT);
1292
1293 pending_reconnect = true;
1294 num_io_timeout = 0;
1295 }
1296 }
1297
1298 server->lstrp = jiffies;
1299
1300 for (i = 0; i < num_mids; i++) {
1301 if (mids[i] != NULL) {
1302 mids[i]->resp_buf_size = server->pdu_size;
1303
1304 if (bufs[i] != NULL) {
1305 if (server->ops->is_network_name_deleted &&
1306 server->ops->is_network_name_deleted(bufs[i],
1307 server)) {
1308 cifs_server_dbg(FYI,
1309 "Share deleted. Reconnect needed");
1310 }
1311 }
1312
1313 if (!mids[i]->multiRsp || mids[i]->multiEnd)
1314 mids[i]->callback(mids[i]);
1315
1316 release_mid(mids[i]);
1317 } else if (server->ops->is_oplock_break &&
1318 server->ops->is_oplock_break(bufs[i],
1319 server)) {
1320 smb2_add_credits_from_hdr(bufs[i], server);
1321 cifs_dbg(FYI, "Received oplock break\n");
1322 } else {
1323 cifs_server_dbg(VFS, "No task to wake, unknown frame received! NumMids %d\n",
1324 atomic_read(&mid_count));
1325 cifs_dump_mem("Received Data is: ", bufs[i],
1326 HEADER_SIZE(server));
1327 smb2_add_credits_from_hdr(bufs[i], server);
1328 #ifdef CONFIG_CIFS_DEBUG2
1329 if (server->ops->dump_detail)
1330 server->ops->dump_detail(bufs[i],
1331 server);
1332 cifs_dump_mids(server);
1333 #endif /* CIFS_DEBUG2 */
1334 }
1335 }
1336
1337 if (pdu_length > server->pdu_size) {
1338 if (!allocate_buffers(server))
1339 continue;
1340 pdu_length -= server->pdu_size;
1341 server->total_read = 0;
1342 server->large_buf = false;
1343 buf = server->smallbuf;
1344 goto next_pdu;
1345 }
1346
1347 /* do this reconnect at the very end after processing all MIDs */
1348 if (pending_reconnect)
1349 cifs_reconnect(server, true);
1350
1351 } /* end while !EXITING */
1352
1353 /* buffer usually freed in free_mid - need to free it here on exit */
1354 cifs_buf_release(server->bigbuf);
1355 if (server->smallbuf) /* no sense logging a debug message if NULL */
1356 cifs_small_buf_release(server->smallbuf);
1357
1358 task_to_wake = xchg(&server->tsk, NULL);
1359 clean_demultiplex_info(server);
1360
1361 /* if server->tsk was NULL then wait for a signal before exiting */
1362 if (!task_to_wake) {
1363 set_current_state(TASK_INTERRUPTIBLE);
1364 while (!signal_pending(current)) {
1365 schedule();
1366 set_current_state(TASK_INTERRUPTIBLE);
1367 }
1368 set_current_state(TASK_RUNNING);
1369 }
1370
1371 memalloc_noreclaim_restore(noreclaim_flag);
1372 module_put_and_kthread_exit(0);
1373 }
1374
1375 int
cifs_ipaddr_cmp(struct sockaddr * srcaddr,struct sockaddr * rhs)1376 cifs_ipaddr_cmp(struct sockaddr *srcaddr, struct sockaddr *rhs)
1377 {
1378 struct sockaddr_in *saddr4 = (struct sockaddr_in *)srcaddr;
1379 struct sockaddr_in *vaddr4 = (struct sockaddr_in *)rhs;
1380 struct sockaddr_in6 *saddr6 = (struct sockaddr_in6 *)srcaddr;
1381 struct sockaddr_in6 *vaddr6 = (struct sockaddr_in6 *)rhs;
1382
1383 switch (srcaddr->sa_family) {
1384 case AF_UNSPEC:
1385 switch (rhs->sa_family) {
1386 case AF_UNSPEC:
1387 return 0;
1388 case AF_INET:
1389 case AF_INET6:
1390 return 1;
1391 default:
1392 return -1;
1393 }
1394 case AF_INET: {
1395 switch (rhs->sa_family) {
1396 case AF_UNSPEC:
1397 return -1;
1398 case AF_INET:
1399 return memcmp(saddr4, vaddr4,
1400 sizeof(struct sockaddr_in));
1401 case AF_INET6:
1402 return 1;
1403 default:
1404 return -1;
1405 }
1406 }
1407 case AF_INET6: {
1408 switch (rhs->sa_family) {
1409 case AF_UNSPEC:
1410 case AF_INET:
1411 return -1;
1412 case AF_INET6:
1413 return memcmp(saddr6,
1414 vaddr6,
1415 sizeof(struct sockaddr_in6));
1416 default:
1417 return -1;
1418 }
1419 }
1420 default:
1421 return -1; /* don't expect to be here */
1422 }
1423 }
1424
1425 /*
1426 * Returns true if srcaddr isn't specified and rhs isn't specified, or
1427 * if srcaddr is specified and matches the IP address of the rhs argument
1428 */
1429 bool
cifs_match_ipaddr(struct sockaddr * srcaddr,struct sockaddr * rhs)1430 cifs_match_ipaddr(struct sockaddr *srcaddr, struct sockaddr *rhs)
1431 {
1432 switch (srcaddr->sa_family) {
1433 case AF_UNSPEC:
1434 return (rhs->sa_family == AF_UNSPEC);
1435 case AF_INET: {
1436 struct sockaddr_in *saddr4 = (struct sockaddr_in *)srcaddr;
1437 struct sockaddr_in *vaddr4 = (struct sockaddr_in *)rhs;
1438
1439 return (saddr4->sin_addr.s_addr == vaddr4->sin_addr.s_addr);
1440 }
1441 case AF_INET6: {
1442 struct sockaddr_in6 *saddr6 = (struct sockaddr_in6 *)srcaddr;
1443 struct sockaddr_in6 *vaddr6 = (struct sockaddr_in6 *)rhs;
1444
1445 return (ipv6_addr_equal(&saddr6->sin6_addr, &vaddr6->sin6_addr)
1446 && saddr6->sin6_scope_id == vaddr6->sin6_scope_id);
1447 }
1448 default:
1449 WARN_ON(1);
1450 return false; /* don't expect to be here */
1451 }
1452 }
1453
1454 /*
1455 * If no port is specified in addr structure, we try to match with 445 port
1456 * and if it fails - with 139 ports. It should be called only if address
1457 * families of server and addr are equal.
1458 */
1459 static bool
match_port(struct TCP_Server_Info * server,struct sockaddr * addr)1460 match_port(struct TCP_Server_Info *server, struct sockaddr *addr)
1461 {
1462 __be16 port, *sport;
1463
1464 /* SMBDirect manages its own ports, don't match it here */
1465 if (server->rdma)
1466 return true;
1467
1468 switch (addr->sa_family) {
1469 case AF_INET:
1470 sport = &((struct sockaddr_in *) &server->dstaddr)->sin_port;
1471 port = ((struct sockaddr_in *) addr)->sin_port;
1472 break;
1473 case AF_INET6:
1474 sport = &((struct sockaddr_in6 *) &server->dstaddr)->sin6_port;
1475 port = ((struct sockaddr_in6 *) addr)->sin6_port;
1476 break;
1477 default:
1478 WARN_ON(1);
1479 return false;
1480 }
1481
1482 if (!port) {
1483 port = htons(CIFS_PORT);
1484 if (port == *sport)
1485 return true;
1486
1487 port = htons(RFC1001_PORT);
1488 }
1489
1490 return port == *sport;
1491 }
1492
match_server_address(struct TCP_Server_Info * server,struct sockaddr * addr)1493 static bool match_server_address(struct TCP_Server_Info *server, struct sockaddr *addr)
1494 {
1495 if (!cifs_match_ipaddr(addr, (struct sockaddr *)&server->dstaddr))
1496 return false;
1497
1498 return true;
1499 }
1500
1501 static bool
match_security(struct TCP_Server_Info * server,struct smb3_fs_context * ctx)1502 match_security(struct TCP_Server_Info *server, struct smb3_fs_context *ctx)
1503 {
1504 /*
1505 * The select_sectype function should either return the ctx->sectype
1506 * that was specified, or "Unspecified" if that sectype was not
1507 * compatible with the given NEGOTIATE request.
1508 */
1509 if (server->ops->select_sectype(server, ctx->sectype)
1510 == Unspecified)
1511 return false;
1512
1513 /*
1514 * Now check if signing mode is acceptable. No need to check
1515 * global_secflags at this point since if MUST_SIGN is set then
1516 * the server->sign had better be too.
1517 */
1518 if (ctx->sign && !server->sign)
1519 return false;
1520
1521 return true;
1522 }
1523
1524 /* this function must be called with srv_lock held */
match_server(struct TCP_Server_Info * server,struct smb3_fs_context * ctx,bool match_super)1525 static int match_server(struct TCP_Server_Info *server,
1526 struct smb3_fs_context *ctx,
1527 bool match_super)
1528 {
1529 struct sockaddr *addr = (struct sockaddr *)&ctx->dstaddr;
1530
1531 lockdep_assert_held(&server->srv_lock);
1532
1533 if (ctx->nosharesock)
1534 return 0;
1535
1536 /* this server does not share socket */
1537 if (server->nosharesock)
1538 return 0;
1539
1540 /* If multidialect negotiation see if existing sessions match one */
1541 if (strcmp(ctx->vals->version_string, SMB3ANY_VERSION_STRING) == 0) {
1542 if (server->vals->protocol_id < SMB30_PROT_ID)
1543 return 0;
1544 } else if (strcmp(ctx->vals->version_string,
1545 SMBDEFAULT_VERSION_STRING) == 0) {
1546 if (server->vals->protocol_id < SMB21_PROT_ID)
1547 return 0;
1548 } else if ((server->vals != ctx->vals) || (server->ops != ctx->ops))
1549 return 0;
1550
1551 if (!net_eq(cifs_net_ns(server), current->nsproxy->net_ns))
1552 return 0;
1553
1554 if (!cifs_match_ipaddr((struct sockaddr *)&ctx->srcaddr,
1555 (struct sockaddr *)&server->srcaddr))
1556 return 0;
1557 /*
1558 * When matching cifs.ko superblocks (@match_super == true), we can't
1559 * really match either @server->leaf_fullpath or @server->dstaddr
1560 * directly since this @server might belong to a completely different
1561 * server -- in case of domain-based DFS referrals or DFS links -- as
1562 * provided earlier by mount(2) through 'source' and 'ip' options.
1563 *
1564 * Otherwise, match the DFS referral in @server->leaf_fullpath or the
1565 * destination address in @server->dstaddr.
1566 *
1567 * When using 'nodfs' mount option, we avoid sharing it with DFS
1568 * connections as they might failover.
1569 */
1570 if (!match_super) {
1571 if (!ctx->nodfs) {
1572 if (server->leaf_fullpath) {
1573 if (!ctx->leaf_fullpath ||
1574 strcasecmp(server->leaf_fullpath,
1575 ctx->leaf_fullpath))
1576 return 0;
1577 } else if (ctx->leaf_fullpath) {
1578 return 0;
1579 }
1580 } else if (server->leaf_fullpath) {
1581 return 0;
1582 }
1583 }
1584
1585 /*
1586 * Match for a regular connection (address/hostname/port) which has no
1587 * DFS referrals set.
1588 */
1589 if (!server->leaf_fullpath &&
1590 (strcasecmp(server->hostname, ctx->server_hostname) ||
1591 !match_server_address(server, addr) ||
1592 !match_port(server, addr)))
1593 return 0;
1594
1595 if (!match_security(server, ctx))
1596 return 0;
1597
1598 if (server->echo_interval != ctx->echo_interval * HZ)
1599 return 0;
1600
1601 if (server->rdma != ctx->rdma)
1602 return 0;
1603
1604 if (server->ignore_signature != ctx->ignore_signature)
1605 return 0;
1606
1607 if (server->min_offload != ctx->min_offload)
1608 return 0;
1609
1610 if (server->retrans != ctx->retrans)
1611 return 0;
1612
1613 return 1;
1614 }
1615
1616 struct TCP_Server_Info *
cifs_find_tcp_session(struct smb3_fs_context * ctx)1617 cifs_find_tcp_session(struct smb3_fs_context *ctx)
1618 {
1619 struct TCP_Server_Info *server;
1620
1621 spin_lock(&cifs_tcp_ses_lock);
1622 list_for_each_entry(server, &cifs_tcp_ses_list, tcp_ses_list) {
1623 spin_lock(&server->srv_lock);
1624 /*
1625 * Skip ses channels since they're only handled in lower layers
1626 * (e.g. cifs_send_recv).
1627 */
1628 if (SERVER_IS_CHAN(server) ||
1629 !match_server(server, ctx, false)) {
1630 spin_unlock(&server->srv_lock);
1631 continue;
1632 }
1633 spin_unlock(&server->srv_lock);
1634
1635 ++server->srv_count;
1636 spin_unlock(&cifs_tcp_ses_lock);
1637 cifs_dbg(FYI, "Existing tcp session with server found\n");
1638 return server;
1639 }
1640 spin_unlock(&cifs_tcp_ses_lock);
1641 return NULL;
1642 }
1643
1644 void
cifs_put_tcp_session(struct TCP_Server_Info * server,int from_reconnect)1645 cifs_put_tcp_session(struct TCP_Server_Info *server, int from_reconnect)
1646 {
1647 struct task_struct *task;
1648
1649 spin_lock(&cifs_tcp_ses_lock);
1650 if (--server->srv_count > 0) {
1651 spin_unlock(&cifs_tcp_ses_lock);
1652 return;
1653 }
1654
1655 /* srv_count can never go negative */
1656 WARN_ON(server->srv_count < 0);
1657
1658 list_del_init(&server->tcp_ses_list);
1659 spin_unlock(&cifs_tcp_ses_lock);
1660
1661 cancel_delayed_work_sync(&server->echo);
1662
1663 if (from_reconnect)
1664 /*
1665 * Avoid deadlock here: reconnect work calls
1666 * cifs_put_tcp_session() at its end. Need to be sure
1667 * that reconnect work does nothing with server pointer after
1668 * that step.
1669 */
1670 cancel_delayed_work(&server->reconnect);
1671 else
1672 cancel_delayed_work_sync(&server->reconnect);
1673
1674 /* For secondary channels, we pick up ref-count on the primary server */
1675 if (SERVER_IS_CHAN(server))
1676 cifs_put_tcp_session(server->primary_server, from_reconnect);
1677
1678 spin_lock(&server->srv_lock);
1679 server->tcpStatus = CifsExiting;
1680 spin_unlock(&server->srv_lock);
1681
1682 cifs_crypto_secmech_release(server);
1683
1684 kfree_sensitive(server->session_key.response);
1685 server->session_key.response = NULL;
1686 server->session_key.len = 0;
1687
1688 task = xchg(&server->tsk, NULL);
1689 if (task)
1690 send_sig(SIGKILL, task, 1);
1691 }
1692
1693 struct TCP_Server_Info *
cifs_get_tcp_session(struct smb3_fs_context * ctx,struct TCP_Server_Info * primary_server)1694 cifs_get_tcp_session(struct smb3_fs_context *ctx,
1695 struct TCP_Server_Info *primary_server)
1696 {
1697 struct TCP_Server_Info *tcp_ses = NULL;
1698 int rc;
1699
1700 cifs_dbg(FYI, "UNC: %s\n", ctx->UNC);
1701
1702 /* see if we already have a matching tcp_ses */
1703 tcp_ses = cifs_find_tcp_session(ctx);
1704 if (tcp_ses)
1705 return tcp_ses;
1706
1707 tcp_ses = kzalloc(sizeof(struct TCP_Server_Info), GFP_KERNEL);
1708 if (!tcp_ses) {
1709 rc = -ENOMEM;
1710 goto out_err;
1711 }
1712
1713 tcp_ses->hostname = kstrdup(ctx->server_hostname, GFP_KERNEL);
1714 if (!tcp_ses->hostname) {
1715 rc = -ENOMEM;
1716 goto out_err;
1717 }
1718
1719 if (ctx->leaf_fullpath) {
1720 tcp_ses->leaf_fullpath = kstrdup(ctx->leaf_fullpath, GFP_KERNEL);
1721 if (!tcp_ses->leaf_fullpath) {
1722 rc = -ENOMEM;
1723 goto out_err;
1724 }
1725 }
1726
1727 if (ctx->nosharesock)
1728 tcp_ses->nosharesock = true;
1729
1730 tcp_ses->ops = ctx->ops;
1731 tcp_ses->vals = ctx->vals;
1732 cifs_set_net_ns(tcp_ses, get_net(current->nsproxy->net_ns));
1733
1734 tcp_ses->conn_id = atomic_inc_return(&tcpSesNextId);
1735 tcp_ses->noblockcnt = ctx->rootfs;
1736 tcp_ses->noblocksnd = ctx->noblocksnd || ctx->rootfs;
1737 tcp_ses->noautotune = ctx->noautotune;
1738 tcp_ses->tcp_nodelay = ctx->sockopt_tcp_nodelay;
1739 tcp_ses->rdma = ctx->rdma;
1740 tcp_ses->in_flight = 0;
1741 tcp_ses->max_in_flight = 0;
1742 tcp_ses->credits = 1;
1743 if (primary_server) {
1744 spin_lock(&cifs_tcp_ses_lock);
1745 ++primary_server->srv_count;
1746 spin_unlock(&cifs_tcp_ses_lock);
1747 tcp_ses->primary_server = primary_server;
1748 }
1749 init_waitqueue_head(&tcp_ses->response_q);
1750 init_waitqueue_head(&tcp_ses->request_q);
1751 INIT_LIST_HEAD(&tcp_ses->pending_mid_q);
1752 mutex_init(&tcp_ses->_srv_mutex);
1753 memcpy(tcp_ses->workstation_RFC1001_name,
1754 ctx->source_rfc1001_name, RFC1001_NAME_LEN_WITH_NULL);
1755 memcpy(tcp_ses->server_RFC1001_name,
1756 ctx->target_rfc1001_name, RFC1001_NAME_LEN_WITH_NULL);
1757 tcp_ses->session_estab = false;
1758 tcp_ses->sequence_number = 0;
1759 tcp_ses->channel_sequence_num = 0; /* only tracked for primary channel */
1760 tcp_ses->reconnect_instance = 1;
1761 tcp_ses->lstrp = jiffies;
1762 tcp_ses->compression.requested = ctx->compress;
1763 spin_lock_init(&tcp_ses->req_lock);
1764 spin_lock_init(&tcp_ses->srv_lock);
1765 spin_lock_init(&tcp_ses->mid_lock);
1766 INIT_LIST_HEAD(&tcp_ses->tcp_ses_list);
1767 INIT_LIST_HEAD(&tcp_ses->smb_ses_list);
1768 INIT_DELAYED_WORK(&tcp_ses->echo, cifs_echo_request);
1769 INIT_DELAYED_WORK(&tcp_ses->reconnect, smb2_reconnect_server);
1770 mutex_init(&tcp_ses->reconnect_mutex);
1771 #ifdef CONFIG_CIFS_DFS_UPCALL
1772 mutex_init(&tcp_ses->refpath_lock);
1773 #endif
1774 memcpy(&tcp_ses->srcaddr, &ctx->srcaddr,
1775 sizeof(tcp_ses->srcaddr));
1776 memcpy(&tcp_ses->dstaddr, &ctx->dstaddr,
1777 sizeof(tcp_ses->dstaddr));
1778 if (ctx->use_client_guid)
1779 memcpy(tcp_ses->client_guid, ctx->client_guid,
1780 SMB2_CLIENT_GUID_SIZE);
1781 else
1782 generate_random_uuid(tcp_ses->client_guid);
1783 /*
1784 * at this point we are the only ones with the pointer
1785 * to the struct since the kernel thread not created yet
1786 * no need to spinlock this init of tcpStatus or srv_count
1787 */
1788 tcp_ses->tcpStatus = CifsNew;
1789 ++tcp_ses->srv_count;
1790
1791 if (ctx->echo_interval >= SMB_ECHO_INTERVAL_MIN &&
1792 ctx->echo_interval <= SMB_ECHO_INTERVAL_MAX)
1793 tcp_ses->echo_interval = ctx->echo_interval * HZ;
1794 else
1795 tcp_ses->echo_interval = SMB_ECHO_INTERVAL_DEFAULT * HZ;
1796 if (tcp_ses->rdma) {
1797 #ifndef CONFIG_CIFS_SMB_DIRECT
1798 cifs_dbg(VFS, "CONFIG_CIFS_SMB_DIRECT is not enabled\n");
1799 rc = -ENOENT;
1800 goto out_err_crypto_release;
1801 #endif
1802 tcp_ses->smbd_conn = smbd_get_connection(
1803 tcp_ses, (struct sockaddr *)&ctx->dstaddr);
1804 if (tcp_ses->smbd_conn) {
1805 cifs_dbg(VFS, "RDMA transport established\n");
1806 rc = 0;
1807 goto smbd_connected;
1808 } else {
1809 rc = -ENOENT;
1810 goto out_err_crypto_release;
1811 }
1812 }
1813 rc = ip_connect(tcp_ses);
1814 if (rc < 0) {
1815 cifs_dbg(VFS, "Error connecting to socket. Aborting operation.\n");
1816 goto out_err_crypto_release;
1817 }
1818 smbd_connected:
1819 /*
1820 * since we're in a cifs function already, we know that
1821 * this will succeed. No need for try_module_get().
1822 */
1823 __module_get(THIS_MODULE);
1824 tcp_ses->tsk = kthread_run(cifs_demultiplex_thread,
1825 tcp_ses, "cifsd");
1826 if (IS_ERR(tcp_ses->tsk)) {
1827 rc = PTR_ERR(tcp_ses->tsk);
1828 cifs_dbg(VFS, "error %d create cifsd thread\n", rc);
1829 module_put(THIS_MODULE);
1830 goto out_err_crypto_release;
1831 }
1832 tcp_ses->min_offload = ctx->min_offload;
1833 tcp_ses->retrans = ctx->retrans;
1834 /*
1835 * at this point we are the only ones with the pointer
1836 * to the struct since the kernel thread not created yet
1837 * no need to spinlock this update of tcpStatus
1838 */
1839 spin_lock(&tcp_ses->srv_lock);
1840 tcp_ses->tcpStatus = CifsNeedNegotiate;
1841 spin_unlock(&tcp_ses->srv_lock);
1842
1843 if ((ctx->max_credits < 20) || (ctx->max_credits > 60000))
1844 tcp_ses->max_credits = SMB2_MAX_CREDITS_AVAILABLE;
1845 else
1846 tcp_ses->max_credits = ctx->max_credits;
1847
1848 tcp_ses->nr_targets = 1;
1849 tcp_ses->ignore_signature = ctx->ignore_signature;
1850 /* thread spawned, put it on the list */
1851 spin_lock(&cifs_tcp_ses_lock);
1852 list_add(&tcp_ses->tcp_ses_list, &cifs_tcp_ses_list);
1853 spin_unlock(&cifs_tcp_ses_lock);
1854
1855 /* queue echo request delayed work */
1856 queue_delayed_work(cifsiod_wq, &tcp_ses->echo, tcp_ses->echo_interval);
1857
1858 return tcp_ses;
1859
1860 out_err_crypto_release:
1861 cifs_crypto_secmech_release(tcp_ses);
1862
1863 put_net(cifs_net_ns(tcp_ses));
1864
1865 out_err:
1866 if (tcp_ses) {
1867 if (SERVER_IS_CHAN(tcp_ses))
1868 cifs_put_tcp_session(tcp_ses->primary_server, false);
1869 kfree(tcp_ses->hostname);
1870 kfree(tcp_ses->leaf_fullpath);
1871 if (tcp_ses->ssocket)
1872 sock_release(tcp_ses->ssocket);
1873 kfree(tcp_ses);
1874 }
1875 return ERR_PTR(rc);
1876 }
1877
1878 /* this function must be called with ses_lock and chan_lock held */
match_session(struct cifs_ses * ses,struct smb3_fs_context * ctx)1879 static int match_session(struct cifs_ses *ses, struct smb3_fs_context *ctx)
1880 {
1881 struct TCP_Server_Info *server = ses->server;
1882 enum securityEnum ctx_sec, ses_sec;
1883
1884 if (ctx->dfs_root_ses != ses->dfs_root_ses)
1885 return 0;
1886
1887 /*
1888 * If an existing session is limited to less channels than
1889 * requested, it should not be reused
1890 */
1891 if (ses->chan_max < ctx->max_channels)
1892 return 0;
1893
1894 ctx_sec = server->ops->select_sectype(server, ctx->sectype);
1895 ses_sec = server->ops->select_sectype(server, ses->sectype);
1896
1897 if (ctx_sec != ses_sec)
1898 return 0;
1899
1900 switch (ctx_sec) {
1901 case IAKerb:
1902 case Kerberos:
1903 if (!uid_eq(ctx->cred_uid, ses->cred_uid))
1904 return 0;
1905 break;
1906 case NTLMv2:
1907 case RawNTLMSSP:
1908 default:
1909 /* NULL username means anonymous session */
1910 if (ses->user_name == NULL) {
1911 if (!ctx->nullauth)
1912 return 0;
1913 break;
1914 }
1915
1916 /* anything else takes username/password */
1917 if (strncmp(ses->user_name,
1918 ctx->username ? ctx->username : "",
1919 CIFS_MAX_USERNAME_LEN))
1920 return 0;
1921 if ((ctx->username && strlen(ctx->username) != 0) &&
1922 ses->password != NULL) {
1923
1924 /* New mount can only share sessions with an existing mount if:
1925 * 1. Both password and password2 match, or
1926 * 2. password2 of the old mount matches password of the new mount
1927 * and password of the old mount matches password2 of the new
1928 * mount
1929 */
1930 if (ses->password2 != NULL && ctx->password2 != NULL) {
1931 if (!((strncmp(ses->password, ctx->password ?
1932 ctx->password : "", CIFS_MAX_PASSWORD_LEN) == 0 &&
1933 strncmp(ses->password2, ctx->password2,
1934 CIFS_MAX_PASSWORD_LEN) == 0) ||
1935 (strncmp(ses->password, ctx->password2,
1936 CIFS_MAX_PASSWORD_LEN) == 0 &&
1937 strncmp(ses->password2, ctx->password ?
1938 ctx->password : "", CIFS_MAX_PASSWORD_LEN) == 0)))
1939 return 0;
1940
1941 } else if ((ses->password2 == NULL && ctx->password2 != NULL) ||
1942 (ses->password2 != NULL && ctx->password2 == NULL)) {
1943 return 0;
1944
1945 } else {
1946 if (strncmp(ses->password, ctx->password ?
1947 ctx->password : "", CIFS_MAX_PASSWORD_LEN))
1948 return 0;
1949 }
1950 }
1951 }
1952
1953 if (strcmp(ctx->local_nls->charset, ses->local_nls->charset))
1954 return 0;
1955
1956 return 1;
1957 }
1958
1959 /**
1960 * cifs_setup_ipc - helper to setup the IPC tcon for the session
1961 * @ses: smb session to issue the request on
1962 * @ctx: the superblock configuration context to use for building the
1963 * new tree connection for the IPC (interprocess communication RPC)
1964 *
1965 * A new IPC connection is made and stored in the session
1966 * tcon_ipc. The IPC tcon has the same lifetime as the session.
1967 */
1968 static int
cifs_setup_ipc(struct cifs_ses * ses,struct smb3_fs_context * ctx)1969 cifs_setup_ipc(struct cifs_ses *ses, struct smb3_fs_context *ctx)
1970 {
1971 int rc = 0, xid;
1972 struct cifs_tcon *tcon;
1973 char unc[SERVER_NAME_LENGTH + sizeof("//x/IPC$")] = {0};
1974 bool seal = false;
1975 struct TCP_Server_Info *server = ses->server;
1976
1977 /*
1978 * If the mount request that resulted in the creation of the
1979 * session requires encryption, force IPC to be encrypted too.
1980 */
1981 if (ctx->seal) {
1982 if (server->capabilities & SMB2_GLOBAL_CAP_ENCRYPTION)
1983 seal = true;
1984 else {
1985 cifs_server_dbg(VFS,
1986 "IPC: server doesn't support encryption\n");
1987 return -EOPNOTSUPP;
1988 }
1989 }
1990
1991 /* no need to setup directory caching on IPC share, so pass in false */
1992 tcon = tcon_info_alloc(false, netfs_trace_tcon_ref_new_ipc);
1993 if (tcon == NULL)
1994 return -ENOMEM;
1995
1996 spin_lock(&server->srv_lock);
1997 scnprintf(unc, sizeof(unc), "\\\\%s\\IPC$", server->hostname);
1998 spin_unlock(&server->srv_lock);
1999
2000 xid = get_xid();
2001 tcon->ses = ses;
2002 tcon->ipc = true;
2003 tcon->seal = seal;
2004 rc = server->ops->tree_connect(xid, ses, unc, tcon, ctx->local_nls);
2005 free_xid(xid);
2006
2007 if (rc) {
2008 cifs_server_dbg(VFS, "failed to connect to IPC (rc=%d)\n", rc);
2009 tconInfoFree(tcon, netfs_trace_tcon_ref_free_ipc_fail);
2010 goto out;
2011 }
2012
2013 cifs_dbg(FYI, "IPC tcon rc=%d ipc tid=0x%x\n", rc, tcon->tid);
2014
2015 spin_lock(&tcon->tc_lock);
2016 tcon->status = TID_GOOD;
2017 spin_unlock(&tcon->tc_lock);
2018 ses->tcon_ipc = tcon;
2019 out:
2020 return rc;
2021 }
2022
2023 static struct cifs_ses *
cifs_find_smb_ses(struct TCP_Server_Info * server,struct smb3_fs_context * ctx)2024 cifs_find_smb_ses(struct TCP_Server_Info *server, struct smb3_fs_context *ctx)
2025 {
2026 struct cifs_ses *ses, *ret = NULL;
2027
2028 spin_lock(&cifs_tcp_ses_lock);
2029 list_for_each_entry(ses, &server->smb_ses_list, smb_ses_list) {
2030 spin_lock(&ses->ses_lock);
2031 if (ses->ses_status == SES_EXITING) {
2032 spin_unlock(&ses->ses_lock);
2033 continue;
2034 }
2035 spin_lock(&ses->chan_lock);
2036 if (match_session(ses, ctx)) {
2037 spin_unlock(&ses->chan_lock);
2038 spin_unlock(&ses->ses_lock);
2039 ret = ses;
2040 break;
2041 }
2042 spin_unlock(&ses->chan_lock);
2043 spin_unlock(&ses->ses_lock);
2044 }
2045 if (ret)
2046 cifs_smb_ses_inc_refcount(ret);
2047 spin_unlock(&cifs_tcp_ses_lock);
2048 return ret;
2049 }
2050
__cifs_put_smb_ses(struct cifs_ses * ses)2051 void __cifs_put_smb_ses(struct cifs_ses *ses)
2052 {
2053 struct TCP_Server_Info *server = ses->server;
2054 struct cifs_tcon *tcon;
2055 unsigned int xid;
2056 size_t i;
2057 bool do_logoff;
2058 int rc;
2059
2060 spin_lock(&cifs_tcp_ses_lock);
2061 spin_lock(&ses->ses_lock);
2062 cifs_dbg(FYI, "%s: id=0x%llx ses_count=%d ses_status=%u ipc=%s\n",
2063 __func__, ses->Suid, ses->ses_count, ses->ses_status,
2064 ses->tcon_ipc ? ses->tcon_ipc->tree_name : "none");
2065 if (ses->ses_status == SES_EXITING || --ses->ses_count > 0) {
2066 spin_unlock(&ses->ses_lock);
2067 spin_unlock(&cifs_tcp_ses_lock);
2068 return;
2069 }
2070 /* ses_count can never go negative */
2071 WARN_ON(ses->ses_count < 0);
2072
2073 spin_lock(&ses->chan_lock);
2074 cifs_chan_clear_need_reconnect(ses, server);
2075 spin_unlock(&ses->chan_lock);
2076
2077 do_logoff = ses->ses_status == SES_GOOD && server->ops->logoff;
2078 ses->ses_status = SES_EXITING;
2079 tcon = ses->tcon_ipc;
2080 ses->tcon_ipc = NULL;
2081 spin_unlock(&ses->ses_lock);
2082 spin_unlock(&cifs_tcp_ses_lock);
2083
2084 /*
2085 * On session close, the IPC is closed and the server must release all
2086 * tcons of the session. No need to send a tree disconnect here.
2087 *
2088 * Besides, it will make the server to not close durable and resilient
2089 * files on session close, as specified in MS-SMB2 3.3.5.6 Receiving an
2090 * SMB2 LOGOFF Request.
2091 */
2092 tconInfoFree(tcon, netfs_trace_tcon_ref_free_ipc);
2093 if (do_logoff) {
2094 xid = get_xid();
2095 rc = server->ops->logoff(xid, ses);
2096 if (rc)
2097 cifs_server_dbg(VFS, "%s: Session Logoff failure rc=%d\n",
2098 __func__, rc);
2099 _free_xid(xid);
2100 }
2101
2102 spin_lock(&cifs_tcp_ses_lock);
2103 list_del_init(&ses->smb_ses_list);
2104 spin_unlock(&cifs_tcp_ses_lock);
2105
2106 /* close any extra channels */
2107 for (i = 1; i < ses->chan_count; i++) {
2108 if (ses->chans[i].iface) {
2109 kref_put(&ses->chans[i].iface->refcount, release_iface);
2110 ses->chans[i].iface = NULL;
2111 }
2112 cifs_put_tcp_session(ses->chans[i].server, 0);
2113 ses->chans[i].server = NULL;
2114 }
2115
2116 /* we now account for primary channel in iface->refcount */
2117 if (ses->chans[0].iface) {
2118 kref_put(&ses->chans[0].iface->refcount, release_iface);
2119 ses->chans[0].server = NULL;
2120 }
2121
2122 sesInfoFree(ses);
2123 cifs_put_tcp_session(server, 0);
2124 }
2125
2126 #ifdef CONFIG_KEYS
2127
2128 /* strlen("cifs:a:") + CIFS_MAX_DOMAINNAME_LEN + 1 */
2129 #define CIFSCREDS_DESC_SIZE (7 + CIFS_MAX_DOMAINNAME_LEN + 1)
2130
2131 /* Populate username and pw fields from keyring if possible */
2132 static int
cifs_set_cifscreds(struct smb3_fs_context * ctx,struct cifs_ses * ses)2133 cifs_set_cifscreds(struct smb3_fs_context *ctx, struct cifs_ses *ses)
2134 {
2135 int rc = 0;
2136 int is_domain = 0;
2137 const char *delim, *payload;
2138 char *desc;
2139 ssize_t len;
2140 struct key *key;
2141 struct TCP_Server_Info *server = ses->server;
2142 struct sockaddr_in *sa;
2143 struct sockaddr_in6 *sa6;
2144 const struct user_key_payload *upayload;
2145
2146 desc = kmalloc(CIFSCREDS_DESC_SIZE, GFP_KERNEL);
2147 if (!desc)
2148 return -ENOMEM;
2149
2150 /* try to find an address key first */
2151 switch (server->dstaddr.ss_family) {
2152 case AF_INET:
2153 sa = (struct sockaddr_in *)&server->dstaddr;
2154 sprintf(desc, "cifs:a:%pI4", &sa->sin_addr.s_addr);
2155 break;
2156 case AF_INET6:
2157 sa6 = (struct sockaddr_in6 *)&server->dstaddr;
2158 sprintf(desc, "cifs:a:%pI6c", &sa6->sin6_addr.s6_addr);
2159 break;
2160 default:
2161 cifs_dbg(FYI, "Bad ss_family (%hu)\n",
2162 server->dstaddr.ss_family);
2163 rc = -EINVAL;
2164 goto out_err;
2165 }
2166
2167 cifs_dbg(FYI, "%s: desc=%s\n", __func__, desc);
2168 key = request_key(&key_type_logon, desc, "");
2169 if (IS_ERR(key)) {
2170 if (!ses->domainName) {
2171 cifs_dbg(FYI, "domainName is NULL\n");
2172 rc = PTR_ERR(key);
2173 goto out_err;
2174 }
2175
2176 /* didn't work, try to find a domain key */
2177 sprintf(desc, "cifs:d:%s", ses->domainName);
2178 cifs_dbg(FYI, "%s: desc=%s\n", __func__, desc);
2179 key = request_key(&key_type_logon, desc, "");
2180 if (IS_ERR(key)) {
2181 rc = PTR_ERR(key);
2182 goto out_err;
2183 }
2184 is_domain = 1;
2185 }
2186
2187 down_read(&key->sem);
2188 upayload = user_key_payload_locked(key);
2189 if (IS_ERR_OR_NULL(upayload)) {
2190 rc = upayload ? PTR_ERR(upayload) : -EINVAL;
2191 goto out_key_put;
2192 }
2193
2194 /* find first : in payload */
2195 payload = upayload->data;
2196 delim = strnchr(payload, upayload->datalen, ':');
2197 cifs_dbg(FYI, "payload=%s\n", payload);
2198 if (!delim) {
2199 cifs_dbg(FYI, "Unable to find ':' in payload (datalen=%d)\n",
2200 upayload->datalen);
2201 rc = -EINVAL;
2202 goto out_key_put;
2203 }
2204
2205 len = delim - payload;
2206 if (len > CIFS_MAX_USERNAME_LEN || len <= 0) {
2207 cifs_dbg(FYI, "Bad value from username search (len=%zd)\n",
2208 len);
2209 rc = -EINVAL;
2210 goto out_key_put;
2211 }
2212
2213 ctx->username = kstrndup(payload, len, GFP_KERNEL);
2214 if (!ctx->username) {
2215 cifs_dbg(FYI, "Unable to allocate %zd bytes for username\n",
2216 len);
2217 rc = -ENOMEM;
2218 goto out_key_put;
2219 }
2220 cifs_dbg(FYI, "%s: username=%s\n", __func__, ctx->username);
2221
2222 len = key->datalen - (len + 1);
2223 if (len > CIFS_MAX_PASSWORD_LEN || len <= 0) {
2224 cifs_dbg(FYI, "Bad len for password search (len=%zd)\n", len);
2225 rc = -EINVAL;
2226 kfree(ctx->username);
2227 ctx->username = NULL;
2228 goto out_key_put;
2229 }
2230
2231 ++delim;
2232 /* BB consider adding support for password2 (Key Rotation) for multiuser in future */
2233 ctx->password = kstrndup(delim, len, GFP_KERNEL);
2234 if (!ctx->password) {
2235 cifs_dbg(FYI, "Unable to allocate %zd bytes for password\n",
2236 len);
2237 rc = -ENOMEM;
2238 kfree(ctx->username);
2239 ctx->username = NULL;
2240 goto out_key_put;
2241 }
2242
2243 /*
2244 * If we have a domain key then we must set the domainName in the
2245 * for the request.
2246 */
2247 if (is_domain && ses->domainName) {
2248 ctx->domainname = kstrdup(ses->domainName, GFP_KERNEL);
2249 if (!ctx->domainname) {
2250 cifs_dbg(FYI, "Unable to allocate %zd bytes for domain\n",
2251 len);
2252 rc = -ENOMEM;
2253 kfree(ctx->username);
2254 ctx->username = NULL;
2255 kfree_sensitive(ctx->password);
2256 /* no need to free ctx->password2 since not allocated in this path */
2257 ctx->password = NULL;
2258 goto out_key_put;
2259 }
2260 }
2261
2262 strscpy(ctx->workstation_name, ses->workstation_name, sizeof(ctx->workstation_name));
2263
2264 out_key_put:
2265 up_read(&key->sem);
2266 key_put(key);
2267 out_err:
2268 kfree(desc);
2269 cifs_dbg(FYI, "%s: returning %d\n", __func__, rc);
2270 return rc;
2271 }
2272 #else /* ! CONFIG_KEYS */
2273 static inline int
cifs_set_cifscreds(struct smb3_fs_context * ctx,struct cifs_ses * ses)2274 cifs_set_cifscreds(struct smb3_fs_context *ctx __attribute__((unused)),
2275 struct cifs_ses *ses __attribute__((unused)))
2276 {
2277 return -ENOSYS;
2278 }
2279 #endif /* CONFIG_KEYS */
2280
2281 /**
2282 * cifs_get_smb_ses - get a session matching @ctx data from @server
2283 * @server: server to setup the session to
2284 * @ctx: superblock configuration context to use to setup the session
2285 *
2286 * This function assumes it is being called from cifs_mount() where we
2287 * already got a server reference (server refcount +1). See
2288 * cifs_get_tcon() for refcount explanations.
2289 */
2290 struct cifs_ses *
cifs_get_smb_ses(struct TCP_Server_Info * server,struct smb3_fs_context * ctx)2291 cifs_get_smb_ses(struct TCP_Server_Info *server, struct smb3_fs_context *ctx)
2292 {
2293 int rc = 0;
2294 int retries = 0;
2295 unsigned int xid;
2296 struct cifs_ses *ses;
2297 struct sockaddr_in *addr = (struct sockaddr_in *)&server->dstaddr;
2298 struct sockaddr_in6 *addr6 = (struct sockaddr_in6 *)&server->dstaddr;
2299
2300 xid = get_xid();
2301
2302 ses = cifs_find_smb_ses(server, ctx);
2303 if (ses) {
2304 cifs_dbg(FYI, "Existing smb sess found (status=%d)\n",
2305 ses->ses_status);
2306
2307 spin_lock(&ses->chan_lock);
2308 if (cifs_chan_needs_reconnect(ses, server)) {
2309 spin_unlock(&ses->chan_lock);
2310 cifs_dbg(FYI, "Session needs reconnect\n");
2311
2312 mutex_lock(&ses->session_mutex);
2313
2314 retry_old_session:
2315 rc = cifs_negotiate_protocol(xid, ses, server);
2316 if (rc) {
2317 mutex_unlock(&ses->session_mutex);
2318 /* problem -- put our ses reference */
2319 cifs_put_smb_ses(ses);
2320 free_xid(xid);
2321 return ERR_PTR(rc);
2322 }
2323
2324 rc = cifs_setup_session(xid, ses, server,
2325 ctx->local_nls);
2326 if (rc) {
2327 if (((rc == -EACCES) || (rc == -EKEYEXPIRED) ||
2328 (rc == -EKEYREVOKED)) && !retries && ses->password2) {
2329 retries++;
2330 cifs_dbg(FYI, "Session reconnect failed, retrying with alternate password\n");
2331 swap(ses->password, ses->password2);
2332 goto retry_old_session;
2333 }
2334 mutex_unlock(&ses->session_mutex);
2335 /* problem -- put our reference */
2336 cifs_put_smb_ses(ses);
2337 free_xid(xid);
2338 return ERR_PTR(rc);
2339 }
2340 mutex_unlock(&ses->session_mutex);
2341
2342 spin_lock(&ses->chan_lock);
2343 }
2344 spin_unlock(&ses->chan_lock);
2345
2346 /* existing SMB ses has a server reference already */
2347 cifs_put_tcp_session(server, 0);
2348 free_xid(xid);
2349 return ses;
2350 }
2351
2352 rc = -ENOMEM;
2353
2354 cifs_dbg(FYI, "Existing smb sess not found\n");
2355 ses = sesInfoAlloc();
2356 if (ses == NULL)
2357 goto get_ses_fail;
2358
2359 /* new SMB session uses our server ref */
2360 ses->server = server;
2361 if (server->dstaddr.ss_family == AF_INET6)
2362 sprintf(ses->ip_addr, "%pI6", &addr6->sin6_addr);
2363 else
2364 sprintf(ses->ip_addr, "%pI4", &addr->sin_addr);
2365
2366 if (ctx->username) {
2367 ses->user_name = kstrdup(ctx->username, GFP_KERNEL);
2368 if (!ses->user_name)
2369 goto get_ses_fail;
2370 }
2371
2372 /* ctx->password freed at unmount */
2373 if (ctx->password) {
2374 ses->password = kstrdup(ctx->password, GFP_KERNEL);
2375 if (!ses->password)
2376 goto get_ses_fail;
2377 }
2378 /* ctx->password freed at unmount */
2379 if (ctx->password2) {
2380 ses->password2 = kstrdup(ctx->password2, GFP_KERNEL);
2381 if (!ses->password2)
2382 goto get_ses_fail;
2383 }
2384 if (ctx->domainname) {
2385 ses->domainName = kstrdup(ctx->domainname, GFP_KERNEL);
2386 if (!ses->domainName)
2387 goto get_ses_fail;
2388 }
2389
2390 strscpy(ses->workstation_name, ctx->workstation_name, sizeof(ses->workstation_name));
2391
2392 if (ctx->domainauto)
2393 ses->domainAuto = ctx->domainauto;
2394 ses->cred_uid = ctx->cred_uid;
2395 ses->linux_uid = ctx->linux_uid;
2396
2397 ses->sectype = ctx->sectype;
2398 ses->sign = ctx->sign;
2399 ses->local_nls = load_nls(ctx->local_nls->charset);
2400
2401 /* add server as first channel */
2402 spin_lock(&ses->chan_lock);
2403 ses->chans[0].server = server;
2404 ses->chan_count = 1;
2405 ses->chan_max = ctx->multichannel ? ctx->max_channels:1;
2406 ses->chans_need_reconnect = 1;
2407 spin_unlock(&ses->chan_lock);
2408
2409 retry_new_session:
2410 mutex_lock(&ses->session_mutex);
2411 rc = cifs_negotiate_protocol(xid, ses, server);
2412 if (!rc)
2413 rc = cifs_setup_session(xid, ses, server, ctx->local_nls);
2414 mutex_unlock(&ses->session_mutex);
2415
2416 /* each channel uses a different signing key */
2417 spin_lock(&ses->chan_lock);
2418 memcpy(ses->chans[0].signkey, ses->smb3signingkey,
2419 sizeof(ses->smb3signingkey));
2420 spin_unlock(&ses->chan_lock);
2421
2422 if (rc) {
2423 if (((rc == -EACCES) || (rc == -EKEYEXPIRED) ||
2424 (rc == -EKEYREVOKED)) && !retries && ses->password2) {
2425 retries++;
2426 cifs_dbg(FYI, "Session setup failed, retrying with alternate password\n");
2427 swap(ses->password, ses->password2);
2428 goto retry_new_session;
2429 } else
2430 goto get_ses_fail;
2431 }
2432
2433 /*
2434 * success, put it on the list and add it as first channel
2435 * note: the session becomes active soon after this. So you'll
2436 * need to lock before changing something in the session.
2437 */
2438 spin_lock(&cifs_tcp_ses_lock);
2439 if (ctx->dfs_root_ses)
2440 cifs_smb_ses_inc_refcount(ctx->dfs_root_ses);
2441 ses->dfs_root_ses = ctx->dfs_root_ses;
2442 list_add(&ses->smb_ses_list, &server->smb_ses_list);
2443 spin_unlock(&cifs_tcp_ses_lock);
2444
2445 cifs_setup_ipc(ses, ctx);
2446
2447 free_xid(xid);
2448
2449 return ses;
2450
2451 get_ses_fail:
2452 sesInfoFree(ses);
2453 free_xid(xid);
2454 return ERR_PTR(rc);
2455 }
2456
2457 /* this function must be called with tc_lock held */
match_tcon(struct cifs_tcon * tcon,struct smb3_fs_context * ctx)2458 static int match_tcon(struct cifs_tcon *tcon, struct smb3_fs_context *ctx)
2459 {
2460 struct TCP_Server_Info *server = tcon->ses->server;
2461
2462 if (tcon->status == TID_EXITING)
2463 return 0;
2464
2465 if (tcon->origin_fullpath) {
2466 if (!ctx->source ||
2467 !dfs_src_pathname_equal(ctx->source,
2468 tcon->origin_fullpath))
2469 return 0;
2470 } else if (!server->leaf_fullpath &&
2471 strncmp(tcon->tree_name, ctx->UNC, MAX_TREE_SIZE)) {
2472 return 0;
2473 }
2474 if (tcon->seal != ctx->seal)
2475 return 0;
2476 if (tcon->snapshot_time != ctx->snapshot_time)
2477 return 0;
2478 if (tcon->handle_timeout != ctx->handle_timeout)
2479 return 0;
2480 if (tcon->no_lease != ctx->no_lease)
2481 return 0;
2482 if (tcon->nodelete != ctx->nodelete)
2483 return 0;
2484 if (tcon->posix_extensions != ctx->linux_ext)
2485 return 0;
2486 return 1;
2487 }
2488
2489 static struct cifs_tcon *
cifs_find_tcon(struct cifs_ses * ses,struct smb3_fs_context * ctx)2490 cifs_find_tcon(struct cifs_ses *ses, struct smb3_fs_context *ctx)
2491 {
2492 struct cifs_tcon *tcon;
2493
2494 spin_lock(&cifs_tcp_ses_lock);
2495 list_for_each_entry(tcon, &ses->tcon_list, tcon_list) {
2496 spin_lock(&tcon->tc_lock);
2497 if (!match_tcon(tcon, ctx)) {
2498 spin_unlock(&tcon->tc_lock);
2499 continue;
2500 }
2501 ++tcon->tc_count;
2502 trace_smb3_tcon_ref(tcon->debug_id, tcon->tc_count,
2503 netfs_trace_tcon_ref_get_find);
2504 spin_unlock(&tcon->tc_lock);
2505 spin_unlock(&cifs_tcp_ses_lock);
2506 return tcon;
2507 }
2508 spin_unlock(&cifs_tcp_ses_lock);
2509 return NULL;
2510 }
2511
2512 void
cifs_put_tcon(struct cifs_tcon * tcon,enum smb3_tcon_ref_trace trace)2513 cifs_put_tcon(struct cifs_tcon *tcon, enum smb3_tcon_ref_trace trace)
2514 {
2515 unsigned int xid;
2516 struct cifs_ses *ses;
2517
2518 /*
2519 * IPC tcon share the lifetime of their session and are
2520 * destroyed in the session put function
2521 */
2522 if (tcon == NULL || tcon->ipc)
2523 return;
2524
2525 ses = tcon->ses;
2526 cifs_dbg(FYI, "%s: tc_count=%d\n", __func__, tcon->tc_count);
2527 spin_lock(&cifs_tcp_ses_lock);
2528 spin_lock(&tcon->tc_lock);
2529 trace_smb3_tcon_ref(tcon->debug_id, tcon->tc_count - 1, trace);
2530 if (--tcon->tc_count > 0) {
2531 spin_unlock(&tcon->tc_lock);
2532 spin_unlock(&cifs_tcp_ses_lock);
2533 return;
2534 }
2535
2536 /* tc_count can never go negative */
2537 WARN_ON(tcon->tc_count < 0);
2538
2539 list_del_init(&tcon->tcon_list);
2540 tcon->status = TID_EXITING;
2541 spin_unlock(&tcon->tc_lock);
2542 spin_unlock(&cifs_tcp_ses_lock);
2543
2544 /* cancel polling of interfaces */
2545 cancel_delayed_work_sync(&tcon->query_interfaces);
2546 #ifdef CONFIG_CIFS_DFS_UPCALL
2547 cancel_delayed_work_sync(&tcon->dfs_cache_work);
2548 #endif
2549
2550 if (tcon->use_witness) {
2551 int rc;
2552
2553 rc = cifs_swn_unregister(tcon);
2554 if (rc < 0) {
2555 cifs_dbg(VFS, "%s: Failed to unregister for witness notifications: %d\n",
2556 __func__, rc);
2557 }
2558 }
2559
2560 xid = get_xid();
2561 if (ses->server->ops->tree_disconnect)
2562 ses->server->ops->tree_disconnect(xid, tcon);
2563 _free_xid(xid);
2564
2565 cifs_fscache_release_super_cookie(tcon);
2566 tconInfoFree(tcon, netfs_trace_tcon_ref_free);
2567 cifs_put_smb_ses(ses);
2568 }
2569
2570 /**
2571 * cifs_get_tcon - get a tcon matching @ctx data from @ses
2572 * @ses: smb session to issue the request on
2573 * @ctx: the superblock configuration context to use for building the
2574 *
2575 * - tcon refcount is the number of mount points using the tcon.
2576 * - ses refcount is the number of tcon using the session.
2577 *
2578 * 1. This function assumes it is being called from cifs_mount() where
2579 * we already got a session reference (ses refcount +1).
2580 *
2581 * 2. Since we're in the context of adding a mount point, the end
2582 * result should be either:
2583 *
2584 * a) a new tcon already allocated with refcount=1 (1 mount point) and
2585 * its session refcount incremented (1 new tcon). This +1 was
2586 * already done in (1).
2587 *
2588 * b) an existing tcon with refcount+1 (add a mount point to it) and
2589 * identical ses refcount (no new tcon). Because of (1) we need to
2590 * decrement the ses refcount.
2591 */
2592 static struct cifs_tcon *
cifs_get_tcon(struct cifs_ses * ses,struct smb3_fs_context * ctx)2593 cifs_get_tcon(struct cifs_ses *ses, struct smb3_fs_context *ctx)
2594 {
2595 struct cifs_tcon *tcon;
2596 bool nohandlecache;
2597 int rc, xid;
2598
2599 tcon = cifs_find_tcon(ses, ctx);
2600 if (tcon) {
2601 /*
2602 * tcon has refcount already incremented but we need to
2603 * decrement extra ses reference gotten by caller (case b)
2604 */
2605 cifs_dbg(FYI, "Found match on UNC path\n");
2606 cifs_put_smb_ses(ses);
2607 return tcon;
2608 }
2609
2610 if (!ses->server->ops->tree_connect) {
2611 rc = -ENOSYS;
2612 goto out_fail;
2613 }
2614
2615 if (ses->server->dialect >= SMB20_PROT_ID &&
2616 (ses->server->capabilities & SMB2_GLOBAL_CAP_DIRECTORY_LEASING))
2617 nohandlecache = ctx->nohandlecache || !dir_cache_timeout;
2618 else
2619 nohandlecache = true;
2620 tcon = tcon_info_alloc(!nohandlecache, netfs_trace_tcon_ref_new);
2621 if (tcon == NULL) {
2622 rc = -ENOMEM;
2623 goto out_fail;
2624 }
2625 tcon->nohandlecache = nohandlecache;
2626
2627 if (ctx->snapshot_time) {
2628 if (ses->server->vals->protocol_id == 0) {
2629 cifs_dbg(VFS,
2630 "Use SMB2 or later for snapshot mount option\n");
2631 rc = -EOPNOTSUPP;
2632 goto out_fail;
2633 } else
2634 tcon->snapshot_time = ctx->snapshot_time;
2635 }
2636
2637 if (ctx->handle_timeout) {
2638 if (ses->server->vals->protocol_id == 0) {
2639 cifs_dbg(VFS,
2640 "Use SMB2.1 or later for handle timeout option\n");
2641 rc = -EOPNOTSUPP;
2642 goto out_fail;
2643 } else
2644 tcon->handle_timeout = ctx->handle_timeout;
2645 }
2646
2647 tcon->ses = ses;
2648 if (ctx->password) {
2649 tcon->password = kstrdup(ctx->password, GFP_KERNEL);
2650 if (!tcon->password) {
2651 rc = -ENOMEM;
2652 goto out_fail;
2653 }
2654 }
2655
2656 if (ctx->seal) {
2657 if (ses->server->vals->protocol_id == 0) {
2658 cifs_dbg(VFS,
2659 "SMB3 or later required for encryption\n");
2660 rc = -EOPNOTSUPP;
2661 goto out_fail;
2662 } else if (tcon->ses->server->capabilities &
2663 SMB2_GLOBAL_CAP_ENCRYPTION)
2664 tcon->seal = true;
2665 else {
2666 cifs_dbg(VFS, "Encryption is not supported on share\n");
2667 rc = -EOPNOTSUPP;
2668 goto out_fail;
2669 }
2670 }
2671
2672 if (ctx->linux_ext) {
2673 if (ses->server->posix_ext_supported) {
2674 tcon->posix_extensions = true;
2675 pr_warn_once("SMB3.11 POSIX Extensions are experimental\n");
2676 } else if ((ses->server->vals->protocol_id == SMB311_PROT_ID) ||
2677 (strcmp(ses->server->vals->version_string,
2678 SMB3ANY_VERSION_STRING) == 0) ||
2679 (strcmp(ses->server->vals->version_string,
2680 SMBDEFAULT_VERSION_STRING) == 0)) {
2681 cifs_dbg(VFS, "Server does not support mounting with posix SMB3.11 extensions\n");
2682 rc = -EOPNOTSUPP;
2683 goto out_fail;
2684 } else if (ses->server->vals->protocol_id == SMB10_PROT_ID)
2685 if (cap_unix(ses))
2686 cifs_dbg(FYI, "Unix Extensions requested on SMB1 mount\n");
2687 else {
2688 cifs_dbg(VFS, "SMB1 Unix Extensions not supported by server\n");
2689 rc = -EOPNOTSUPP;
2690 goto out_fail;
2691 } else {
2692 cifs_dbg(VFS,
2693 "Check vers= mount option. SMB3.11 disabled but required for POSIX extensions\n");
2694 rc = -EOPNOTSUPP;
2695 goto out_fail;
2696 }
2697 }
2698
2699 xid = get_xid();
2700 rc = ses->server->ops->tree_connect(xid, ses, ctx->UNC, tcon,
2701 ctx->local_nls);
2702 free_xid(xid);
2703 cifs_dbg(FYI, "Tcon rc = %d\n", rc);
2704 if (rc)
2705 goto out_fail;
2706
2707 tcon->use_persistent = false;
2708 /* check if SMB2 or later, CIFS does not support persistent handles */
2709 if (ctx->persistent) {
2710 if (ses->server->vals->protocol_id == 0) {
2711 cifs_dbg(VFS,
2712 "SMB3 or later required for persistent handles\n");
2713 rc = -EOPNOTSUPP;
2714 goto out_fail;
2715 } else if (ses->server->capabilities &
2716 SMB2_GLOBAL_CAP_PERSISTENT_HANDLES)
2717 tcon->use_persistent = true;
2718 else /* persistent handles requested but not supported */ {
2719 cifs_dbg(VFS,
2720 "Persistent handles not supported on share\n");
2721 rc = -EOPNOTSUPP;
2722 goto out_fail;
2723 }
2724 } else if ((tcon->capabilities & SMB2_SHARE_CAP_CONTINUOUS_AVAILABILITY)
2725 && (ses->server->capabilities & SMB2_GLOBAL_CAP_PERSISTENT_HANDLES)
2726 && (ctx->nopersistent == false)) {
2727 cifs_dbg(FYI, "enabling persistent handles\n");
2728 tcon->use_persistent = true;
2729 } else if (ctx->resilient) {
2730 if (ses->server->vals->protocol_id == 0) {
2731 cifs_dbg(VFS,
2732 "SMB2.1 or later required for resilient handles\n");
2733 rc = -EOPNOTSUPP;
2734 goto out_fail;
2735 }
2736 tcon->use_resilient = true;
2737 }
2738
2739 tcon->use_witness = false;
2740 if (IS_ENABLED(CONFIG_CIFS_SWN_UPCALL) && ctx->witness) {
2741 if (ses->server->vals->protocol_id >= SMB30_PROT_ID) {
2742 if (tcon->capabilities & SMB2_SHARE_CAP_CLUSTER) {
2743 /*
2744 * Set witness in use flag in first place
2745 * to retry registration in the echo task
2746 */
2747 tcon->use_witness = true;
2748 /* And try to register immediately */
2749 rc = cifs_swn_register(tcon);
2750 if (rc < 0) {
2751 cifs_dbg(VFS, "Failed to register for witness notifications: %d\n", rc);
2752 goto out_fail;
2753 }
2754 } else {
2755 /* TODO: try to extend for non-cluster uses (eg multichannel) */
2756 cifs_dbg(VFS, "witness requested on mount but no CLUSTER capability on share\n");
2757 rc = -EOPNOTSUPP;
2758 goto out_fail;
2759 }
2760 } else {
2761 cifs_dbg(VFS, "SMB3 or later required for witness option\n");
2762 rc = -EOPNOTSUPP;
2763 goto out_fail;
2764 }
2765 }
2766
2767 /* If the user really knows what they are doing they can override */
2768 if (tcon->share_flags & SMB2_SHAREFLAG_NO_CACHING) {
2769 if (ctx->cache_ro)
2770 cifs_dbg(VFS, "cache=ro requested on mount but NO_CACHING flag set on share\n");
2771 else if (ctx->cache_rw)
2772 cifs_dbg(VFS, "cache=singleclient requested on mount but NO_CACHING flag set on share\n");
2773 }
2774
2775 if (ctx->no_lease) {
2776 if (ses->server->vals->protocol_id == 0) {
2777 cifs_dbg(VFS,
2778 "SMB2 or later required for nolease option\n");
2779 rc = -EOPNOTSUPP;
2780 goto out_fail;
2781 } else
2782 tcon->no_lease = ctx->no_lease;
2783 }
2784
2785 /*
2786 * We can have only one retry value for a connection to a share so for
2787 * resources mounted more than once to the same server share the last
2788 * value passed in for the retry flag is used.
2789 */
2790 tcon->retry = ctx->retry;
2791 tcon->nocase = ctx->nocase;
2792 tcon->broken_sparse_sup = ctx->no_sparse;
2793 tcon->max_cached_dirs = ctx->max_cached_dirs;
2794 tcon->nodelete = ctx->nodelete;
2795 tcon->local_lease = ctx->local_lease;
2796 INIT_LIST_HEAD(&tcon->pending_opens);
2797 tcon->status = TID_GOOD;
2798
2799 INIT_DELAYED_WORK(&tcon->query_interfaces,
2800 smb2_query_server_interfaces);
2801 if (ses->server->dialect >= SMB30_PROT_ID &&
2802 (ses->server->capabilities & SMB2_GLOBAL_CAP_MULTI_CHANNEL)) {
2803 /* schedule query interfaces poll */
2804 queue_delayed_work(cifsiod_wq, &tcon->query_interfaces,
2805 (SMB_INTERFACE_POLL_INTERVAL * HZ));
2806 }
2807 #ifdef CONFIG_CIFS_DFS_UPCALL
2808 INIT_DELAYED_WORK(&tcon->dfs_cache_work, dfs_cache_refresh);
2809 #endif
2810 spin_lock(&cifs_tcp_ses_lock);
2811 list_add(&tcon->tcon_list, &ses->tcon_list);
2812 spin_unlock(&cifs_tcp_ses_lock);
2813
2814 return tcon;
2815
2816 out_fail:
2817 tconInfoFree(tcon, netfs_trace_tcon_ref_free_fail);
2818 return ERR_PTR(rc);
2819 }
2820
2821 void
cifs_put_tlink(struct tcon_link * tlink)2822 cifs_put_tlink(struct tcon_link *tlink)
2823 {
2824 if (!tlink || IS_ERR(tlink))
2825 return;
2826
2827 if (!atomic_dec_and_test(&tlink->tl_count) ||
2828 test_bit(TCON_LINK_IN_TREE, &tlink->tl_flags)) {
2829 tlink->tl_time = jiffies;
2830 return;
2831 }
2832
2833 if (!IS_ERR(tlink_tcon(tlink)))
2834 cifs_put_tcon(tlink_tcon(tlink), netfs_trace_tcon_ref_put_tlink);
2835 kfree(tlink);
2836 }
2837
2838 static int
compare_mount_options(struct super_block * sb,struct cifs_mnt_data * mnt_data)2839 compare_mount_options(struct super_block *sb, struct cifs_mnt_data *mnt_data)
2840 {
2841 struct cifs_sb_info *old = CIFS_SB(sb);
2842 struct cifs_sb_info *new = mnt_data->cifs_sb;
2843 unsigned int oldflags = old->mnt_cifs_flags & CIFS_MOUNT_MASK;
2844 unsigned int newflags = new->mnt_cifs_flags & CIFS_MOUNT_MASK;
2845
2846 if ((sb->s_flags & CIFS_MS_MASK) != (mnt_data->flags & CIFS_MS_MASK))
2847 return 0;
2848
2849 if (old->mnt_cifs_serverino_autodisabled)
2850 newflags &= ~CIFS_MOUNT_SERVER_INUM;
2851
2852 if (oldflags != newflags)
2853 return 0;
2854
2855 /*
2856 * We want to share sb only if we don't specify an r/wsize or
2857 * specified r/wsize is greater than or equal to existing one.
2858 */
2859 if (new->ctx->wsize && new->ctx->wsize < old->ctx->wsize)
2860 return 0;
2861
2862 if (new->ctx->rsize && new->ctx->rsize < old->ctx->rsize)
2863 return 0;
2864
2865 if (!uid_eq(old->ctx->linux_uid, new->ctx->linux_uid) ||
2866 !gid_eq(old->ctx->linux_gid, new->ctx->linux_gid))
2867 return 0;
2868
2869 if (old->ctx->file_mode != new->ctx->file_mode ||
2870 old->ctx->dir_mode != new->ctx->dir_mode)
2871 return 0;
2872
2873 if (strcmp(old->local_nls->charset, new->local_nls->charset))
2874 return 0;
2875
2876 if (old->ctx->acregmax != new->ctx->acregmax)
2877 return 0;
2878 if (old->ctx->acdirmax != new->ctx->acdirmax)
2879 return 0;
2880 if (old->ctx->closetimeo != new->ctx->closetimeo)
2881 return 0;
2882 if (old->ctx->reparse_type != new->ctx->reparse_type)
2883 return 0;
2884
2885 return 1;
2886 }
2887
match_prepath(struct super_block * sb,struct cifs_tcon * tcon,struct cifs_mnt_data * mnt_data)2888 static int match_prepath(struct super_block *sb,
2889 struct cifs_tcon *tcon,
2890 struct cifs_mnt_data *mnt_data)
2891 {
2892 struct smb3_fs_context *ctx = mnt_data->ctx;
2893 struct cifs_sb_info *old = CIFS_SB(sb);
2894 struct cifs_sb_info *new = mnt_data->cifs_sb;
2895 bool old_set = (old->mnt_cifs_flags & CIFS_MOUNT_USE_PREFIX_PATH) &&
2896 old->prepath;
2897 bool new_set = (new->mnt_cifs_flags & CIFS_MOUNT_USE_PREFIX_PATH) &&
2898 new->prepath;
2899
2900 if (tcon->origin_fullpath &&
2901 dfs_src_pathname_equal(tcon->origin_fullpath, ctx->source))
2902 return 1;
2903
2904 if (old_set && new_set && !strcmp(new->prepath, old->prepath))
2905 return 1;
2906 else if (!old_set && !new_set)
2907 return 1;
2908
2909 return 0;
2910 }
2911
2912 int
cifs_match_super(struct super_block * sb,void * data)2913 cifs_match_super(struct super_block *sb, void *data)
2914 {
2915 struct cifs_mnt_data *mnt_data = data;
2916 struct smb3_fs_context *ctx;
2917 struct cifs_sb_info *cifs_sb;
2918 struct TCP_Server_Info *tcp_srv;
2919 struct cifs_ses *ses;
2920 struct cifs_tcon *tcon;
2921 struct tcon_link *tlink;
2922 int rc = 0;
2923
2924 spin_lock(&cifs_tcp_ses_lock);
2925 cifs_sb = CIFS_SB(sb);
2926
2927 /* We do not want to use a superblock that has been shutdown */
2928 if (CIFS_MOUNT_SHUTDOWN & cifs_sb->mnt_cifs_flags) {
2929 spin_unlock(&cifs_tcp_ses_lock);
2930 return 0;
2931 }
2932
2933 tlink = cifs_get_tlink(cifs_sb_master_tlink(cifs_sb));
2934 if (IS_ERR_OR_NULL(tlink)) {
2935 pr_warn_once("%s: skip super matching due to bad tlink(%p)\n",
2936 __func__, tlink);
2937 spin_unlock(&cifs_tcp_ses_lock);
2938 return 0;
2939 }
2940 tcon = tlink_tcon(tlink);
2941 ses = tcon->ses;
2942 tcp_srv = ses->server;
2943
2944 ctx = mnt_data->ctx;
2945
2946 spin_lock(&tcp_srv->srv_lock);
2947 spin_lock(&ses->ses_lock);
2948 spin_lock(&ses->chan_lock);
2949 spin_lock(&tcon->tc_lock);
2950 if (!match_server(tcp_srv, ctx, true) ||
2951 !match_session(ses, ctx) ||
2952 !match_tcon(tcon, ctx) ||
2953 !match_prepath(sb, tcon, mnt_data)) {
2954 rc = 0;
2955 goto out;
2956 }
2957
2958 rc = compare_mount_options(sb, mnt_data);
2959 out:
2960 spin_unlock(&tcon->tc_lock);
2961 spin_unlock(&ses->chan_lock);
2962 spin_unlock(&ses->ses_lock);
2963 spin_unlock(&tcp_srv->srv_lock);
2964
2965 spin_unlock(&cifs_tcp_ses_lock);
2966 cifs_put_tlink(tlink);
2967 return rc;
2968 }
2969
2970 #ifdef CONFIG_DEBUG_LOCK_ALLOC
2971 static struct lock_class_key cifs_key[2];
2972 static struct lock_class_key cifs_slock_key[2];
2973
2974 static inline void
cifs_reclassify_socket4(struct socket * sock)2975 cifs_reclassify_socket4(struct socket *sock)
2976 {
2977 struct sock *sk = sock->sk;
2978
2979 BUG_ON(!sock_allow_reclassification(sk));
2980 sock_lock_init_class_and_name(sk, "slock-AF_INET-CIFS",
2981 &cifs_slock_key[0], "sk_lock-AF_INET-CIFS", &cifs_key[0]);
2982 }
2983
2984 static inline void
cifs_reclassify_socket6(struct socket * sock)2985 cifs_reclassify_socket6(struct socket *sock)
2986 {
2987 struct sock *sk = sock->sk;
2988
2989 BUG_ON(!sock_allow_reclassification(sk));
2990 sock_lock_init_class_and_name(sk, "slock-AF_INET6-CIFS",
2991 &cifs_slock_key[1], "sk_lock-AF_INET6-CIFS", &cifs_key[1]);
2992 }
2993 #else
2994 static inline void
cifs_reclassify_socket4(struct socket * sock)2995 cifs_reclassify_socket4(struct socket *sock)
2996 {
2997 }
2998
2999 static inline void
cifs_reclassify_socket6(struct socket * sock)3000 cifs_reclassify_socket6(struct socket *sock)
3001 {
3002 }
3003 #endif
3004
3005 /* See RFC1001 section 14 on representation of Netbios names */
rfc1002mangle(char * target,char * source,unsigned int length)3006 static void rfc1002mangle(char *target, char *source, unsigned int length)
3007 {
3008 unsigned int i, j;
3009
3010 for (i = 0, j = 0; i < (length); i++) {
3011 /* mask a nibble at a time and encode */
3012 target[j] = 'A' + (0x0F & (source[i] >> 4));
3013 target[j+1] = 'A' + (0x0F & source[i]);
3014 j += 2;
3015 }
3016
3017 }
3018
3019 static int
bind_socket(struct TCP_Server_Info * server)3020 bind_socket(struct TCP_Server_Info *server)
3021 {
3022 int rc = 0;
3023
3024 if (server->srcaddr.ss_family != AF_UNSPEC) {
3025 /* Bind to the specified local IP address */
3026 struct socket *socket = server->ssocket;
3027
3028 rc = kernel_bind(socket,
3029 (struct sockaddr *) &server->srcaddr,
3030 sizeof(server->srcaddr));
3031 if (rc < 0) {
3032 struct sockaddr_in *saddr4;
3033 struct sockaddr_in6 *saddr6;
3034
3035 saddr4 = (struct sockaddr_in *)&server->srcaddr;
3036 saddr6 = (struct sockaddr_in6 *)&server->srcaddr;
3037 if (saddr6->sin6_family == AF_INET6)
3038 cifs_server_dbg(VFS, "Failed to bind to: %pI6c, error: %d\n",
3039 &saddr6->sin6_addr, rc);
3040 else
3041 cifs_server_dbg(VFS, "Failed to bind to: %pI4, error: %d\n",
3042 &saddr4->sin_addr.s_addr, rc);
3043 }
3044 }
3045 return rc;
3046 }
3047
3048 static int
ip_rfc1001_connect(struct TCP_Server_Info * server)3049 ip_rfc1001_connect(struct TCP_Server_Info *server)
3050 {
3051 int rc = 0;
3052 /*
3053 * some servers require RFC1001 sessinit before sending
3054 * negprot - BB check reconnection in case where second
3055 * sessinit is sent but no second negprot
3056 */
3057 struct rfc1002_session_packet req = {};
3058 struct msghdr msg = {};
3059 struct kvec iov = {};
3060 unsigned int len;
3061 size_t sent;
3062
3063 req.trailer.session_req.called_len = sizeof(req.trailer.session_req.called_name);
3064
3065 if (server->server_RFC1001_name[0] != 0)
3066 rfc1002mangle(req.trailer.session_req.called_name,
3067 server->server_RFC1001_name,
3068 RFC1001_NAME_LEN_WITH_NULL);
3069 else
3070 rfc1002mangle(req.trailer.session_req.called_name,
3071 DEFAULT_CIFS_CALLED_NAME,
3072 RFC1001_NAME_LEN_WITH_NULL);
3073
3074 req.trailer.session_req.calling_len = sizeof(req.trailer.session_req.calling_name);
3075
3076 /* calling name ends in null (byte 16) from old smb convention */
3077 if (server->workstation_RFC1001_name[0] != 0)
3078 rfc1002mangle(req.trailer.session_req.calling_name,
3079 server->workstation_RFC1001_name,
3080 RFC1001_NAME_LEN_WITH_NULL);
3081 else
3082 rfc1002mangle(req.trailer.session_req.calling_name,
3083 "LINUX_CIFS_CLNT",
3084 RFC1001_NAME_LEN_WITH_NULL);
3085
3086 /*
3087 * As per rfc1002, @len must be the number of bytes that follows the
3088 * length field of a rfc1002 session request payload.
3089 */
3090 len = sizeof(req.trailer.session_req);
3091 req.type = RFC1002_SESSION_REQUEST;
3092 req.flags = 0;
3093 req.length = cpu_to_be16(len);
3094 len += offsetof(typeof(req), trailer.session_req);
3095 iov.iov_base = &req;
3096 iov.iov_len = len;
3097 iov_iter_kvec(&msg.msg_iter, ITER_SOURCE, &iov, 1, len);
3098 rc = smb_send_kvec(server, &msg, &sent);
3099 if (rc < 0 || len != sent)
3100 return (rc == -EINTR || rc == -EAGAIN) ? rc : -ECONNABORTED;
3101
3102 /*
3103 * RFC1001 layer in at least one server requires very short break before
3104 * negprot presumably because not expecting negprot to follow so fast.
3105 * This is a simple solution that works without complicating the code
3106 * and causes no significant slowing down on mount for everyone else
3107 */
3108 usleep_range(1000, 2000);
3109
3110 return 0;
3111 }
3112
3113 static int
generic_ip_connect(struct TCP_Server_Info * server)3114 generic_ip_connect(struct TCP_Server_Info *server)
3115 {
3116 struct sockaddr *saddr;
3117 struct socket *socket;
3118 int slen, sfamily;
3119 __be16 sport;
3120 int rc = 0;
3121
3122 saddr = (struct sockaddr *) &server->dstaddr;
3123
3124 if (server->dstaddr.ss_family == AF_INET6) {
3125 struct sockaddr_in6 *ipv6 = (struct sockaddr_in6 *)&server->dstaddr;
3126
3127 sport = ipv6->sin6_port;
3128 slen = sizeof(struct sockaddr_in6);
3129 sfamily = AF_INET6;
3130 cifs_dbg(FYI, "%s: connecting to [%pI6]:%d\n", __func__, &ipv6->sin6_addr,
3131 ntohs(sport));
3132 } else {
3133 struct sockaddr_in *ipv4 = (struct sockaddr_in *)&server->dstaddr;
3134
3135 sport = ipv4->sin_port;
3136 slen = sizeof(struct sockaddr_in);
3137 sfamily = AF_INET;
3138 cifs_dbg(FYI, "%s: connecting to %pI4:%d\n", __func__, &ipv4->sin_addr,
3139 ntohs(sport));
3140 }
3141
3142 if (server->ssocket) {
3143 socket = server->ssocket;
3144 } else {
3145 struct net *net = cifs_net_ns(server);
3146 struct sock *sk;
3147
3148 rc = __sock_create(net, sfamily, SOCK_STREAM,
3149 IPPROTO_TCP, &server->ssocket, 1);
3150 if (rc < 0) {
3151 cifs_server_dbg(VFS, "Error %d creating socket\n", rc);
3152 return rc;
3153 }
3154
3155 sk = server->ssocket->sk;
3156 __netns_tracker_free(net, &sk->ns_tracker, false);
3157 sk->sk_net_refcnt = 1;
3158 get_net_track(net, &sk->ns_tracker, GFP_KERNEL);
3159 sock_inuse_add(net, 1);
3160
3161 /* BB other socket options to set KEEPALIVE, NODELAY? */
3162 cifs_dbg(FYI, "Socket created\n");
3163 socket = server->ssocket;
3164 socket->sk->sk_allocation = GFP_NOFS;
3165 socket->sk->sk_use_task_frag = false;
3166 if (sfamily == AF_INET6)
3167 cifs_reclassify_socket6(socket);
3168 else
3169 cifs_reclassify_socket4(socket);
3170 }
3171
3172 rc = bind_socket(server);
3173 if (rc < 0)
3174 return rc;
3175
3176 /*
3177 * Eventually check for other socket options to change from
3178 * the default. sock_setsockopt not used because it expects
3179 * user space buffer
3180 */
3181 socket->sk->sk_rcvtimeo = 7 * HZ;
3182 socket->sk->sk_sndtimeo = 5 * HZ;
3183
3184 /* make the bufsizes depend on wsize/rsize and max requests */
3185 if (server->noautotune) {
3186 if (socket->sk->sk_sndbuf < (200 * 1024))
3187 socket->sk->sk_sndbuf = 200 * 1024;
3188 if (socket->sk->sk_rcvbuf < (140 * 1024))
3189 socket->sk->sk_rcvbuf = 140 * 1024;
3190 }
3191
3192 if (server->tcp_nodelay)
3193 tcp_sock_set_nodelay(socket->sk);
3194
3195 cifs_dbg(FYI, "sndbuf %d rcvbuf %d rcvtimeo 0x%lx\n",
3196 socket->sk->sk_sndbuf,
3197 socket->sk->sk_rcvbuf, socket->sk->sk_rcvtimeo);
3198
3199 rc = kernel_connect(socket, saddr, slen,
3200 server->noblockcnt ? O_NONBLOCK : 0);
3201 /*
3202 * When mounting SMB root file systems, we do not want to block in
3203 * connect. Otherwise bail out and then let cifs_reconnect() perform
3204 * reconnect failover - if possible.
3205 */
3206 if (server->noblockcnt && rc == -EINPROGRESS)
3207 rc = 0;
3208 if (rc < 0) {
3209 cifs_dbg(FYI, "Error %d connecting to server\n", rc);
3210 trace_smb3_connect_err(server->hostname, server->conn_id, &server->dstaddr, rc);
3211 sock_release(socket);
3212 server->ssocket = NULL;
3213 return rc;
3214 }
3215 trace_smb3_connect_done(server->hostname, server->conn_id, &server->dstaddr);
3216 if (sport == htons(RFC1001_PORT))
3217 rc = ip_rfc1001_connect(server);
3218
3219 return rc;
3220 }
3221
3222 static int
ip_connect(struct TCP_Server_Info * server)3223 ip_connect(struct TCP_Server_Info *server)
3224 {
3225 __be16 *sport;
3226 struct sockaddr_in6 *addr6 = (struct sockaddr_in6 *)&server->dstaddr;
3227 struct sockaddr_in *addr = (struct sockaddr_in *)&server->dstaddr;
3228
3229 if (server->dstaddr.ss_family == AF_INET6)
3230 sport = &addr6->sin6_port;
3231 else
3232 sport = &addr->sin_port;
3233
3234 if (*sport == 0) {
3235 int rc;
3236
3237 /* try with 445 port at first */
3238 *sport = htons(CIFS_PORT);
3239
3240 rc = generic_ip_connect(server);
3241 if (rc >= 0)
3242 return rc;
3243
3244 /* if it failed, try with 139 port */
3245 *sport = htons(RFC1001_PORT);
3246 }
3247
3248 return generic_ip_connect(server);
3249 }
3250
3251 #ifdef CONFIG_CIFS_ALLOW_INSECURE_LEGACY
reset_cifs_unix_caps(unsigned int xid,struct cifs_tcon * tcon,struct cifs_sb_info * cifs_sb,struct smb3_fs_context * ctx)3252 void reset_cifs_unix_caps(unsigned int xid, struct cifs_tcon *tcon,
3253 struct cifs_sb_info *cifs_sb, struct smb3_fs_context *ctx)
3254 {
3255 /*
3256 * If we are reconnecting then should we check to see if
3257 * any requested capabilities changed locally e.g. via
3258 * remount but we can not do much about it here
3259 * if they have (even if we could detect it by the following)
3260 * Perhaps we could add a backpointer to array of sb from tcon
3261 * or if we change to make all sb to same share the same
3262 * sb as NFS - then we only have one backpointer to sb.
3263 * What if we wanted to mount the server share twice once with
3264 * and once without posixacls or posix paths?
3265 */
3266 __u64 saved_cap = le64_to_cpu(tcon->fsUnixInfo.Capability);
3267
3268 if (ctx && ctx->no_linux_ext) {
3269 tcon->fsUnixInfo.Capability = 0;
3270 tcon->unix_ext = 0; /* Unix Extensions disabled */
3271 cifs_dbg(FYI, "Linux protocol extensions disabled\n");
3272 return;
3273 } else if (ctx)
3274 tcon->unix_ext = 1; /* Unix Extensions supported */
3275
3276 if (!tcon->unix_ext) {
3277 cifs_dbg(FYI, "Unix extensions disabled so not set on reconnect\n");
3278 return;
3279 }
3280
3281 if (!CIFSSMBQFSUnixInfo(xid, tcon)) {
3282 __u64 cap = le64_to_cpu(tcon->fsUnixInfo.Capability);
3283
3284 cifs_dbg(FYI, "unix caps which server supports %lld\n", cap);
3285 /*
3286 * check for reconnect case in which we do not
3287 * want to change the mount behavior if we can avoid it
3288 */
3289 if (ctx == NULL) {
3290 /*
3291 * turn off POSIX ACL and PATHNAMES if not set
3292 * originally at mount time
3293 */
3294 if ((saved_cap & CIFS_UNIX_POSIX_ACL_CAP) == 0)
3295 cap &= ~CIFS_UNIX_POSIX_ACL_CAP;
3296 if ((saved_cap & CIFS_UNIX_POSIX_PATHNAMES_CAP) == 0) {
3297 if (cap & CIFS_UNIX_POSIX_PATHNAMES_CAP)
3298 cifs_dbg(VFS, "POSIXPATH support change\n");
3299 cap &= ~CIFS_UNIX_POSIX_PATHNAMES_CAP;
3300 } else if ((cap & CIFS_UNIX_POSIX_PATHNAMES_CAP) == 0) {
3301 cifs_dbg(VFS, "possible reconnect error\n");
3302 cifs_dbg(VFS, "server disabled POSIX path support\n");
3303 }
3304 }
3305
3306 if (cap & CIFS_UNIX_TRANSPORT_ENCRYPTION_MANDATORY_CAP)
3307 cifs_dbg(VFS, "per-share encryption not supported yet\n");
3308
3309 cap &= CIFS_UNIX_CAP_MASK;
3310 if (ctx && ctx->no_psx_acl)
3311 cap &= ~CIFS_UNIX_POSIX_ACL_CAP;
3312 else if (CIFS_UNIX_POSIX_ACL_CAP & cap) {
3313 cifs_dbg(FYI, "negotiated posix acl support\n");
3314 if (cifs_sb)
3315 cifs_sb->mnt_cifs_flags |=
3316 CIFS_MOUNT_POSIXACL;
3317 }
3318
3319 if (ctx && ctx->posix_paths == 0)
3320 cap &= ~CIFS_UNIX_POSIX_PATHNAMES_CAP;
3321 else if (cap & CIFS_UNIX_POSIX_PATHNAMES_CAP) {
3322 cifs_dbg(FYI, "negotiate posix pathnames\n");
3323 if (cifs_sb)
3324 cifs_sb->mnt_cifs_flags |=
3325 CIFS_MOUNT_POSIX_PATHS;
3326 }
3327
3328 cifs_dbg(FYI, "Negotiate caps 0x%x\n", (int)cap);
3329 #ifdef CONFIG_CIFS_DEBUG2
3330 if (cap & CIFS_UNIX_FCNTL_CAP)
3331 cifs_dbg(FYI, "FCNTL cap\n");
3332 if (cap & CIFS_UNIX_EXTATTR_CAP)
3333 cifs_dbg(FYI, "EXTATTR cap\n");
3334 if (cap & CIFS_UNIX_POSIX_PATHNAMES_CAP)
3335 cifs_dbg(FYI, "POSIX path cap\n");
3336 if (cap & CIFS_UNIX_XATTR_CAP)
3337 cifs_dbg(FYI, "XATTR cap\n");
3338 if (cap & CIFS_UNIX_POSIX_ACL_CAP)
3339 cifs_dbg(FYI, "POSIX ACL cap\n");
3340 if (cap & CIFS_UNIX_LARGE_READ_CAP)
3341 cifs_dbg(FYI, "very large read cap\n");
3342 if (cap & CIFS_UNIX_LARGE_WRITE_CAP)
3343 cifs_dbg(FYI, "very large write cap\n");
3344 if (cap & CIFS_UNIX_TRANSPORT_ENCRYPTION_CAP)
3345 cifs_dbg(FYI, "transport encryption cap\n");
3346 if (cap & CIFS_UNIX_TRANSPORT_ENCRYPTION_MANDATORY_CAP)
3347 cifs_dbg(FYI, "mandatory transport encryption cap\n");
3348 #endif /* CIFS_DEBUG2 */
3349 if (CIFSSMBSetFSUnixInfo(xid, tcon, cap)) {
3350 if (ctx == NULL)
3351 cifs_dbg(FYI, "resetting capabilities failed\n");
3352 else
3353 cifs_dbg(VFS, "Negotiating Unix capabilities with the server failed. Consider mounting with the Unix Extensions disabled if problems are found by specifying the nounix mount option.\n");
3354
3355 }
3356 }
3357 }
3358 #endif /* CONFIG_CIFS_ALLOW_INSECURE_LEGACY */
3359
cifs_setup_cifs_sb(struct cifs_sb_info * cifs_sb)3360 int cifs_setup_cifs_sb(struct cifs_sb_info *cifs_sb)
3361 {
3362 struct smb3_fs_context *ctx = cifs_sb->ctx;
3363
3364 INIT_DELAYED_WORK(&cifs_sb->prune_tlinks, cifs_prune_tlinks);
3365
3366 spin_lock_init(&cifs_sb->tlink_tree_lock);
3367 cifs_sb->tlink_tree = RB_ROOT;
3368
3369 cifs_dbg(FYI, "file mode: %04ho dir mode: %04ho\n",
3370 ctx->file_mode, ctx->dir_mode);
3371
3372 /* this is needed for ASCII cp to Unicode converts */
3373 if (ctx->iocharset == NULL) {
3374 /* load_nls_default cannot return null */
3375 cifs_sb->local_nls = load_nls_default();
3376 } else {
3377 cifs_sb->local_nls = load_nls(ctx->iocharset);
3378 if (cifs_sb->local_nls == NULL) {
3379 cifs_dbg(VFS, "CIFS mount error: iocharset %s not found\n",
3380 ctx->iocharset);
3381 return -ELIBACC;
3382 }
3383 }
3384 ctx->local_nls = cifs_sb->local_nls;
3385
3386 smb3_update_mnt_flags(cifs_sb);
3387
3388 if (ctx->direct_io)
3389 cifs_dbg(FYI, "mounting share using direct i/o\n");
3390 if (ctx->cache_ro) {
3391 cifs_dbg(VFS, "mounting share with read only caching. Ensure that the share will not be modified while in use.\n");
3392 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_RO_CACHE;
3393 } else if (ctx->cache_rw) {
3394 cifs_dbg(VFS, "mounting share in single client RW caching mode. Ensure that no other systems will be accessing the share.\n");
3395 cifs_sb->mnt_cifs_flags |= (CIFS_MOUNT_RO_CACHE |
3396 CIFS_MOUNT_RW_CACHE);
3397 }
3398
3399 if ((ctx->cifs_acl) && (ctx->dynperm))
3400 cifs_dbg(VFS, "mount option dynperm ignored if cifsacl mount option supported\n");
3401
3402 if (ctx->prepath) {
3403 cifs_sb->prepath = kstrdup(ctx->prepath, GFP_KERNEL);
3404 if (cifs_sb->prepath == NULL)
3405 return -ENOMEM;
3406 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_USE_PREFIX_PATH;
3407 }
3408
3409 return 0;
3410 }
3411
3412 /* Release all succeed connections */
cifs_mount_put_conns(struct cifs_mount_ctx * mnt_ctx)3413 void cifs_mount_put_conns(struct cifs_mount_ctx *mnt_ctx)
3414 {
3415 int rc = 0;
3416
3417 if (mnt_ctx->tcon)
3418 cifs_put_tcon(mnt_ctx->tcon, netfs_trace_tcon_ref_put_mnt_ctx);
3419 else if (mnt_ctx->ses)
3420 cifs_put_smb_ses(mnt_ctx->ses);
3421 else if (mnt_ctx->server)
3422 cifs_put_tcp_session(mnt_ctx->server, 0);
3423 mnt_ctx->ses = NULL;
3424 mnt_ctx->tcon = NULL;
3425 mnt_ctx->server = NULL;
3426 mnt_ctx->cifs_sb->mnt_cifs_flags &= ~CIFS_MOUNT_POSIX_PATHS;
3427 free_xid(mnt_ctx->xid);
3428 }
3429
cifs_mount_get_session(struct cifs_mount_ctx * mnt_ctx)3430 int cifs_mount_get_session(struct cifs_mount_ctx *mnt_ctx)
3431 {
3432 struct TCP_Server_Info *server = NULL;
3433 struct smb3_fs_context *ctx;
3434 struct cifs_ses *ses = NULL;
3435 unsigned int xid;
3436 int rc = 0;
3437
3438 xid = get_xid();
3439
3440 if (WARN_ON_ONCE(!mnt_ctx || !mnt_ctx->fs_ctx)) {
3441 rc = -EINVAL;
3442 goto out;
3443 }
3444 ctx = mnt_ctx->fs_ctx;
3445
3446 /* get a reference to a tcp session */
3447 server = cifs_get_tcp_session(ctx, NULL);
3448 if (IS_ERR(server)) {
3449 rc = PTR_ERR(server);
3450 server = NULL;
3451 goto out;
3452 }
3453
3454 /* get a reference to a SMB session */
3455 ses = cifs_get_smb_ses(server, ctx);
3456 if (IS_ERR(ses)) {
3457 rc = PTR_ERR(ses);
3458 ses = NULL;
3459 goto out;
3460 }
3461
3462 if ((ctx->persistent == true) && (!(ses->server->capabilities &
3463 SMB2_GLOBAL_CAP_PERSISTENT_HANDLES))) {
3464 cifs_server_dbg(VFS, "persistent handles not supported by server\n");
3465 rc = -EOPNOTSUPP;
3466 }
3467
3468 out:
3469 mnt_ctx->xid = xid;
3470 mnt_ctx->server = server;
3471 mnt_ctx->ses = ses;
3472 mnt_ctx->tcon = NULL;
3473
3474 return rc;
3475 }
3476
cifs_mount_get_tcon(struct cifs_mount_ctx * mnt_ctx)3477 int cifs_mount_get_tcon(struct cifs_mount_ctx *mnt_ctx)
3478 {
3479 struct TCP_Server_Info *server;
3480 struct cifs_sb_info *cifs_sb;
3481 struct smb3_fs_context *ctx;
3482 struct cifs_tcon *tcon = NULL;
3483 int rc = 0;
3484
3485 if (WARN_ON_ONCE(!mnt_ctx || !mnt_ctx->server || !mnt_ctx->ses || !mnt_ctx->fs_ctx ||
3486 !mnt_ctx->cifs_sb)) {
3487 rc = -EINVAL;
3488 goto out;
3489 }
3490 server = mnt_ctx->server;
3491 ctx = mnt_ctx->fs_ctx;
3492 cifs_sb = mnt_ctx->cifs_sb;
3493
3494 /* search for existing tcon to this server share */
3495 tcon = cifs_get_tcon(mnt_ctx->ses, ctx);
3496 if (IS_ERR(tcon)) {
3497 rc = PTR_ERR(tcon);
3498 tcon = NULL;
3499 goto out;
3500 }
3501
3502 /* if new SMB3.11 POSIX extensions are supported do not remap / and \ */
3503 if (tcon->posix_extensions)
3504 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_POSIX_PATHS;
3505
3506 #ifdef CONFIG_CIFS_ALLOW_INSECURE_LEGACY
3507 /* tell server which Unix caps we support */
3508 if (cap_unix(tcon->ses)) {
3509 /*
3510 * reset of caps checks mount to see if unix extensions disabled
3511 * for just this mount.
3512 */
3513 reset_cifs_unix_caps(mnt_ctx->xid, tcon, cifs_sb, ctx);
3514 spin_lock(&tcon->ses->server->srv_lock);
3515 if ((tcon->ses->server->tcpStatus == CifsNeedReconnect) &&
3516 (le64_to_cpu(tcon->fsUnixInfo.Capability) &
3517 CIFS_UNIX_TRANSPORT_ENCRYPTION_MANDATORY_CAP)) {
3518 spin_unlock(&tcon->ses->server->srv_lock);
3519 rc = -EACCES;
3520 goto out;
3521 }
3522 spin_unlock(&tcon->ses->server->srv_lock);
3523 } else
3524 #endif /* CONFIG_CIFS_ALLOW_INSECURE_LEGACY */
3525 tcon->unix_ext = 0; /* server does not support them */
3526
3527 /* do not care if a following call succeed - informational */
3528 if (!tcon->pipe && server->ops->qfs_tcon) {
3529 server->ops->qfs_tcon(mnt_ctx->xid, tcon, cifs_sb);
3530 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_RO_CACHE) {
3531 if (tcon->fsDevInfo.DeviceCharacteristics &
3532 cpu_to_le32(FILE_READ_ONLY_DEVICE))
3533 cifs_dbg(VFS, "mounted to read only share\n");
3534 else if ((cifs_sb->mnt_cifs_flags &
3535 CIFS_MOUNT_RW_CACHE) == 0)
3536 cifs_dbg(VFS, "read only mount of RW share\n");
3537 /* no need to log a RW mount of a typical RW share */
3538 }
3539 }
3540
3541 /*
3542 * Clamp the rsize/wsize mount arguments if they are too big for the server
3543 * and set the rsize/wsize to the negotiated values if not passed in by
3544 * the user on mount
3545 */
3546 if ((cifs_sb->ctx->wsize == 0) ||
3547 (cifs_sb->ctx->wsize > server->ops->negotiate_wsize(tcon, ctx))) {
3548 cifs_sb->ctx->wsize =
3549 round_down(server->ops->negotiate_wsize(tcon, ctx), PAGE_SIZE);
3550 /*
3551 * in the very unlikely event that the server sent a max write size under PAGE_SIZE,
3552 * (which would get rounded down to 0) then reset wsize to absolute minimum eg 4096
3553 */
3554 if (cifs_sb->ctx->wsize == 0) {
3555 cifs_sb->ctx->wsize = PAGE_SIZE;
3556 cifs_dbg(VFS, "wsize too small, reset to minimum ie PAGE_SIZE, usually 4096\n");
3557 }
3558 }
3559 if ((cifs_sb->ctx->rsize == 0) ||
3560 (cifs_sb->ctx->rsize > server->ops->negotiate_rsize(tcon, ctx)))
3561 cifs_sb->ctx->rsize = server->ops->negotiate_rsize(tcon, ctx);
3562
3563 /*
3564 * The cookie is initialized from volume info returned above.
3565 * Inside cifs_fscache_get_super_cookie it checks
3566 * that we do not get super cookie twice.
3567 */
3568 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_FSCACHE)
3569 cifs_fscache_get_super_cookie(tcon);
3570
3571 out:
3572 mnt_ctx->tcon = tcon;
3573 return rc;
3574 }
3575
mount_setup_tlink(struct cifs_sb_info * cifs_sb,struct cifs_ses * ses,struct cifs_tcon * tcon)3576 static int mount_setup_tlink(struct cifs_sb_info *cifs_sb, struct cifs_ses *ses,
3577 struct cifs_tcon *tcon)
3578 {
3579 struct tcon_link *tlink;
3580
3581 /* hang the tcon off of the superblock */
3582 tlink = kzalloc(sizeof(*tlink), GFP_KERNEL);
3583 if (tlink == NULL)
3584 return -ENOMEM;
3585
3586 tlink->tl_uid = ses->linux_uid;
3587 tlink->tl_tcon = tcon;
3588 tlink->tl_time = jiffies;
3589 set_bit(TCON_LINK_MASTER, &tlink->tl_flags);
3590 set_bit(TCON_LINK_IN_TREE, &tlink->tl_flags);
3591
3592 cifs_sb->master_tlink = tlink;
3593 spin_lock(&cifs_sb->tlink_tree_lock);
3594 tlink_rb_insert(&cifs_sb->tlink_tree, tlink);
3595 spin_unlock(&cifs_sb->tlink_tree_lock);
3596
3597 queue_delayed_work(cifsiod_wq, &cifs_sb->prune_tlinks,
3598 TLINK_IDLE_EXPIRE);
3599 return 0;
3600 }
3601
3602 static int
cifs_are_all_path_components_accessible(struct TCP_Server_Info * server,unsigned int xid,struct cifs_tcon * tcon,struct cifs_sb_info * cifs_sb,char * full_path,int added_treename)3603 cifs_are_all_path_components_accessible(struct TCP_Server_Info *server,
3604 unsigned int xid,
3605 struct cifs_tcon *tcon,
3606 struct cifs_sb_info *cifs_sb,
3607 char *full_path,
3608 int added_treename)
3609 {
3610 int rc;
3611 char *s;
3612 char sep, tmp;
3613 int skip = added_treename ? 1 : 0;
3614
3615 sep = CIFS_DIR_SEP(cifs_sb);
3616 s = full_path;
3617
3618 rc = server->ops->is_path_accessible(xid, tcon, cifs_sb, "");
3619 while (rc == 0) {
3620 /* skip separators */
3621 while (*s == sep)
3622 s++;
3623 if (!*s)
3624 break;
3625 /* next separator */
3626 while (*s && *s != sep)
3627 s++;
3628 /*
3629 * if the treename is added, we then have to skip the first
3630 * part within the separators
3631 */
3632 if (skip) {
3633 skip = 0;
3634 continue;
3635 }
3636 /*
3637 * temporarily null-terminate the path at the end of
3638 * the current component
3639 */
3640 tmp = *s;
3641 *s = 0;
3642 rc = server->ops->is_path_accessible(xid, tcon, cifs_sb,
3643 full_path);
3644 *s = tmp;
3645 }
3646 return rc;
3647 }
3648
3649 /*
3650 * Check if path is remote (i.e. a DFS share).
3651 *
3652 * Return -EREMOTE if it is, otherwise 0 or -errno.
3653 */
cifs_is_path_remote(struct cifs_mount_ctx * mnt_ctx)3654 int cifs_is_path_remote(struct cifs_mount_ctx *mnt_ctx)
3655 {
3656 int rc;
3657 struct cifs_sb_info *cifs_sb = mnt_ctx->cifs_sb;
3658 struct TCP_Server_Info *server = mnt_ctx->server;
3659 unsigned int xid = mnt_ctx->xid;
3660 struct cifs_tcon *tcon = mnt_ctx->tcon;
3661 struct smb3_fs_context *ctx = mnt_ctx->fs_ctx;
3662 char *full_path;
3663
3664 if (!server->ops->is_path_accessible)
3665 return -EOPNOTSUPP;
3666
3667 /*
3668 * cifs_build_path_to_root works only when we have a valid tcon
3669 */
3670 full_path = cifs_build_path_to_root(ctx, cifs_sb, tcon,
3671 tcon->Flags & SMB_SHARE_IS_IN_DFS);
3672 if (full_path == NULL)
3673 return -ENOMEM;
3674
3675 cifs_dbg(FYI, "%s: full_path: %s\n", __func__, full_path);
3676
3677 rc = server->ops->is_path_accessible(xid, tcon, cifs_sb,
3678 full_path);
3679 if (rc != 0 && rc != -EREMOTE)
3680 goto out;
3681
3682 if (rc != -EREMOTE) {
3683 rc = cifs_are_all_path_components_accessible(server, xid, tcon,
3684 cifs_sb, full_path, tcon->Flags & SMB_SHARE_IS_IN_DFS);
3685 if (rc != 0) {
3686 cifs_server_dbg(VFS, "cannot query dirs between root and final path, enabling CIFS_MOUNT_USE_PREFIX_PATH\n");
3687 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_USE_PREFIX_PATH;
3688 rc = 0;
3689 }
3690 }
3691
3692 out:
3693 kfree(full_path);
3694 return rc;
3695 }
3696
3697 #ifdef CONFIG_CIFS_DFS_UPCALL
cifs_mount(struct cifs_sb_info * cifs_sb,struct smb3_fs_context * ctx)3698 int cifs_mount(struct cifs_sb_info *cifs_sb, struct smb3_fs_context *ctx)
3699 {
3700 struct cifs_mount_ctx mnt_ctx = { .cifs_sb = cifs_sb, .fs_ctx = ctx, };
3701 bool isdfs;
3702 int rc;
3703
3704 rc = dfs_mount_share(&mnt_ctx, &isdfs);
3705 if (rc)
3706 goto error;
3707 if (!isdfs)
3708 goto out;
3709
3710 /*
3711 * After reconnecting to a different server, unique ids won't match anymore, so we disable
3712 * serverino. This prevents dentry revalidation to think the dentry are stale (ESTALE).
3713 */
3714 cifs_autodisable_serverino(cifs_sb);
3715 /*
3716 * Force the use of prefix path to support failover on DFS paths that resolve to targets
3717 * that have different prefix paths.
3718 */
3719 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_USE_PREFIX_PATH;
3720 kfree(cifs_sb->prepath);
3721 cifs_sb->prepath = ctx->prepath;
3722 ctx->prepath = NULL;
3723
3724 out:
3725 cifs_try_adding_channels(mnt_ctx.ses);
3726 rc = mount_setup_tlink(cifs_sb, mnt_ctx.ses, mnt_ctx.tcon);
3727 if (rc)
3728 goto error;
3729
3730 free_xid(mnt_ctx.xid);
3731 return rc;
3732
3733 error:
3734 cifs_mount_put_conns(&mnt_ctx);
3735 return rc;
3736 }
3737 #else
cifs_mount(struct cifs_sb_info * cifs_sb,struct smb3_fs_context * ctx)3738 int cifs_mount(struct cifs_sb_info *cifs_sb, struct smb3_fs_context *ctx)
3739 {
3740 int rc = 0;
3741 struct cifs_mount_ctx mnt_ctx = { .cifs_sb = cifs_sb, .fs_ctx = ctx, };
3742
3743 rc = cifs_mount_get_session(&mnt_ctx);
3744 if (rc)
3745 goto error;
3746
3747 rc = cifs_mount_get_tcon(&mnt_ctx);
3748 if (!rc) {
3749 /*
3750 * Prevent superblock from being created with any missing
3751 * connections.
3752 */
3753 if (WARN_ON(!mnt_ctx.server))
3754 rc = -EHOSTDOWN;
3755 else if (WARN_ON(!mnt_ctx.ses))
3756 rc = -EACCES;
3757 else if (WARN_ON(!mnt_ctx.tcon))
3758 rc = -ENOENT;
3759 }
3760 if (rc)
3761 goto error;
3762
3763 rc = cifs_is_path_remote(&mnt_ctx);
3764 if (rc == -EREMOTE)
3765 rc = -EOPNOTSUPP;
3766 if (rc)
3767 goto error;
3768
3769 rc = mount_setup_tlink(cifs_sb, mnt_ctx.ses, mnt_ctx.tcon);
3770 if (rc)
3771 goto error;
3772
3773 free_xid(mnt_ctx.xid);
3774 return rc;
3775
3776 error:
3777 cifs_mount_put_conns(&mnt_ctx);
3778 return rc;
3779 }
3780 #endif
3781
3782 #ifdef CONFIG_CIFS_ALLOW_INSECURE_LEGACY
3783 /*
3784 * Issue a TREE_CONNECT request.
3785 */
3786 int
CIFSTCon(const unsigned int xid,struct cifs_ses * ses,const char * tree,struct cifs_tcon * tcon,const struct nls_table * nls_codepage)3787 CIFSTCon(const unsigned int xid, struct cifs_ses *ses,
3788 const char *tree, struct cifs_tcon *tcon,
3789 const struct nls_table *nls_codepage)
3790 {
3791 struct smb_hdr *smb_buffer;
3792 struct smb_hdr *smb_buffer_response;
3793 TCONX_REQ *pSMB;
3794 TCONX_RSP *pSMBr;
3795 unsigned char *bcc_ptr;
3796 int rc = 0;
3797 int length;
3798 __u16 bytes_left, count;
3799
3800 if (ses == NULL)
3801 return -EIO;
3802
3803 smb_buffer = cifs_buf_get();
3804 if (smb_buffer == NULL)
3805 return -ENOMEM;
3806
3807 smb_buffer_response = smb_buffer;
3808
3809 header_assemble(smb_buffer, SMB_COM_TREE_CONNECT_ANDX,
3810 NULL /*no tid */, 4 /*wct */);
3811
3812 smb_buffer->Mid = get_next_mid(ses->server);
3813 smb_buffer->Uid = ses->Suid;
3814 pSMB = (TCONX_REQ *) smb_buffer;
3815 pSMBr = (TCONX_RSP *) smb_buffer_response;
3816
3817 pSMB->AndXCommand = 0xFF;
3818 pSMB->Flags = cpu_to_le16(TCON_EXTENDED_SECINFO);
3819 bcc_ptr = &pSMB->Password[0];
3820
3821 pSMB->PasswordLength = cpu_to_le16(1); /* minimum */
3822 *bcc_ptr = 0; /* password is null byte */
3823 bcc_ptr++; /* skip password */
3824 /* already aligned so no need to do it below */
3825
3826 if (ses->server->sign)
3827 smb_buffer->Flags2 |= SMBFLG2_SECURITY_SIGNATURE;
3828
3829 if (ses->capabilities & CAP_STATUS32)
3830 smb_buffer->Flags2 |= SMBFLG2_ERR_STATUS;
3831
3832 if (ses->capabilities & CAP_DFS)
3833 smb_buffer->Flags2 |= SMBFLG2_DFS;
3834
3835 if (ses->capabilities & CAP_UNICODE) {
3836 smb_buffer->Flags2 |= SMBFLG2_UNICODE;
3837 length =
3838 cifs_strtoUTF16((__le16 *) bcc_ptr, tree,
3839 6 /* max utf8 char length in bytes */ *
3840 (/* server len*/ + 256 /* share len */), nls_codepage);
3841 bcc_ptr += 2 * length; /* convert num 16 bit words to bytes */
3842 bcc_ptr += 2; /* skip trailing null */
3843 } else { /* ASCII */
3844 strcpy(bcc_ptr, tree);
3845 bcc_ptr += strlen(tree) + 1;
3846 }
3847 strcpy(bcc_ptr, "?????");
3848 bcc_ptr += strlen("?????");
3849 bcc_ptr += 1;
3850 count = bcc_ptr - &pSMB->Password[0];
3851 be32_add_cpu(&pSMB->hdr.smb_buf_length, count);
3852 pSMB->ByteCount = cpu_to_le16(count);
3853
3854 rc = SendReceive(xid, ses, smb_buffer, smb_buffer_response, &length,
3855 0);
3856
3857 /* above now done in SendReceive */
3858 if (rc == 0) {
3859 bool is_unicode;
3860
3861 tcon->tid = smb_buffer_response->Tid;
3862 bcc_ptr = pByteArea(smb_buffer_response);
3863 bytes_left = get_bcc(smb_buffer_response);
3864 length = strnlen(bcc_ptr, bytes_left - 2);
3865 if (smb_buffer->Flags2 & SMBFLG2_UNICODE)
3866 is_unicode = true;
3867 else
3868 is_unicode = false;
3869
3870
3871 /* skip service field (NB: this field is always ASCII) */
3872 if (length == 3) {
3873 if ((bcc_ptr[0] == 'I') && (bcc_ptr[1] == 'P') &&
3874 (bcc_ptr[2] == 'C')) {
3875 cifs_dbg(FYI, "IPC connection\n");
3876 tcon->ipc = true;
3877 tcon->pipe = true;
3878 }
3879 } else if (length == 2) {
3880 if ((bcc_ptr[0] == 'A') && (bcc_ptr[1] == ':')) {
3881 /* the most common case */
3882 cifs_dbg(FYI, "disk share connection\n");
3883 }
3884 }
3885 bcc_ptr += length + 1;
3886 bytes_left -= (length + 1);
3887 strscpy(tcon->tree_name, tree, sizeof(tcon->tree_name));
3888
3889 /* mostly informational -- no need to fail on error here */
3890 kfree(tcon->nativeFileSystem);
3891 tcon->nativeFileSystem = cifs_strndup_from_utf16(bcc_ptr,
3892 bytes_left, is_unicode,
3893 nls_codepage);
3894
3895 cifs_dbg(FYI, "nativeFileSystem=%s\n", tcon->nativeFileSystem);
3896
3897 if ((smb_buffer_response->WordCount == 3) ||
3898 (smb_buffer_response->WordCount == 7))
3899 /* field is in same location */
3900 tcon->Flags = le16_to_cpu(pSMBr->OptionalSupport);
3901 else
3902 tcon->Flags = 0;
3903 cifs_dbg(FYI, "Tcon flags: 0x%x\n", tcon->Flags);
3904
3905 /*
3906 * reset_cifs_unix_caps calls QFSInfo which requires
3907 * need_reconnect to be false, but we would not need to call
3908 * reset_caps if this were not a reconnect case so must check
3909 * need_reconnect flag here. The caller will also clear
3910 * need_reconnect when tcon was successful but needed to be
3911 * cleared earlier in the case of unix extensions reconnect
3912 */
3913 if (tcon->need_reconnect && tcon->unix_ext) {
3914 cifs_dbg(FYI, "resetting caps for %s\n", tcon->tree_name);
3915 tcon->need_reconnect = false;
3916 reset_cifs_unix_caps(xid, tcon, NULL, NULL);
3917 }
3918 }
3919 cifs_buf_release(smb_buffer);
3920 return rc;
3921 }
3922 #endif /* CONFIG_CIFS_ALLOW_INSECURE_LEGACY */
3923
delayed_free(struct rcu_head * p)3924 static void delayed_free(struct rcu_head *p)
3925 {
3926 struct cifs_sb_info *cifs_sb = container_of(p, struct cifs_sb_info, rcu);
3927
3928 unload_nls(cifs_sb->local_nls);
3929 smb3_cleanup_fs_context(cifs_sb->ctx);
3930 kfree(cifs_sb);
3931 }
3932
3933 void
cifs_umount(struct cifs_sb_info * cifs_sb)3934 cifs_umount(struct cifs_sb_info *cifs_sb)
3935 {
3936 struct rb_root *root = &cifs_sb->tlink_tree;
3937 struct rb_node *node;
3938 struct tcon_link *tlink;
3939
3940 cancel_delayed_work_sync(&cifs_sb->prune_tlinks);
3941
3942 spin_lock(&cifs_sb->tlink_tree_lock);
3943 while ((node = rb_first(root))) {
3944 tlink = rb_entry(node, struct tcon_link, tl_rbnode);
3945 cifs_get_tlink(tlink);
3946 clear_bit(TCON_LINK_IN_TREE, &tlink->tl_flags);
3947 rb_erase(node, root);
3948
3949 spin_unlock(&cifs_sb->tlink_tree_lock);
3950 cifs_put_tlink(tlink);
3951 spin_lock(&cifs_sb->tlink_tree_lock);
3952 }
3953 spin_unlock(&cifs_sb->tlink_tree_lock);
3954
3955 kfree(cifs_sb->prepath);
3956 call_rcu(&cifs_sb->rcu, delayed_free);
3957 }
3958
3959 int
cifs_negotiate_protocol(const unsigned int xid,struct cifs_ses * ses,struct TCP_Server_Info * server)3960 cifs_negotiate_protocol(const unsigned int xid, struct cifs_ses *ses,
3961 struct TCP_Server_Info *server)
3962 {
3963 bool in_retry = false;
3964 int rc = 0;
3965
3966 if (!server->ops->need_neg || !server->ops->negotiate)
3967 return -ENOSYS;
3968
3969 retry:
3970 /* only send once per connect */
3971 spin_lock(&server->srv_lock);
3972 if (server->tcpStatus != CifsGood &&
3973 server->tcpStatus != CifsNew &&
3974 server->tcpStatus != CifsNeedNegotiate) {
3975 spin_unlock(&server->srv_lock);
3976 return -EHOSTDOWN;
3977 }
3978
3979 if (!server->ops->need_neg(server) &&
3980 server->tcpStatus == CifsGood) {
3981 spin_unlock(&server->srv_lock);
3982 return 0;
3983 }
3984
3985 server->lstrp = jiffies;
3986 server->tcpStatus = CifsInNegotiate;
3987 spin_unlock(&server->srv_lock);
3988
3989 rc = server->ops->negotiate(xid, ses, server);
3990 if (rc == -EAGAIN) {
3991 /* Allow one retry attempt */
3992 if (!in_retry) {
3993 in_retry = true;
3994 goto retry;
3995 }
3996 rc = -EHOSTDOWN;
3997 }
3998 if (rc == 0) {
3999 spin_lock(&server->srv_lock);
4000 if (server->tcpStatus == CifsInNegotiate)
4001 server->tcpStatus = CifsGood;
4002 else
4003 rc = -EHOSTDOWN;
4004 spin_unlock(&server->srv_lock);
4005 } else {
4006 spin_lock(&server->srv_lock);
4007 if (server->tcpStatus == CifsInNegotiate)
4008 server->tcpStatus = CifsNeedNegotiate;
4009 spin_unlock(&server->srv_lock);
4010 }
4011
4012 return rc;
4013 }
4014
4015 int
cifs_setup_session(const unsigned int xid,struct cifs_ses * ses,struct TCP_Server_Info * server,struct nls_table * nls_info)4016 cifs_setup_session(const unsigned int xid, struct cifs_ses *ses,
4017 struct TCP_Server_Info *server,
4018 struct nls_table *nls_info)
4019 {
4020 int rc = -ENOSYS;
4021 struct TCP_Server_Info *pserver = SERVER_IS_CHAN(server) ? server->primary_server : server;
4022 struct sockaddr_in6 *addr6 = (struct sockaddr_in6 *)&pserver->dstaddr;
4023 struct sockaddr_in *addr = (struct sockaddr_in *)&pserver->dstaddr;
4024 bool is_binding = false;
4025
4026 spin_lock(&ses->ses_lock);
4027 cifs_dbg(FYI, "%s: channel connect bitmap: 0x%lx\n",
4028 __func__, ses->chans_need_reconnect);
4029
4030 if (ses->ses_status != SES_GOOD &&
4031 ses->ses_status != SES_NEW &&
4032 ses->ses_status != SES_NEED_RECON) {
4033 spin_unlock(&ses->ses_lock);
4034 return -EHOSTDOWN;
4035 }
4036
4037 /* only send once per connect */
4038 spin_lock(&ses->chan_lock);
4039 if (CIFS_ALL_CHANS_GOOD(ses)) {
4040 if (ses->ses_status == SES_NEED_RECON)
4041 ses->ses_status = SES_GOOD;
4042 spin_unlock(&ses->chan_lock);
4043 spin_unlock(&ses->ses_lock);
4044 return 0;
4045 }
4046
4047 cifs_chan_set_in_reconnect(ses, server);
4048 is_binding = !CIFS_ALL_CHANS_NEED_RECONNECT(ses);
4049 spin_unlock(&ses->chan_lock);
4050
4051 if (!is_binding) {
4052 ses->ses_status = SES_IN_SETUP;
4053
4054 /* force iface_list refresh */
4055 ses->iface_last_update = 0;
4056 }
4057 spin_unlock(&ses->ses_lock);
4058
4059 /* update ses ip_addr only for primary chan */
4060 if (server == pserver) {
4061 if (server->dstaddr.ss_family == AF_INET6)
4062 scnprintf(ses->ip_addr, sizeof(ses->ip_addr), "%pI6", &addr6->sin6_addr);
4063 else
4064 scnprintf(ses->ip_addr, sizeof(ses->ip_addr), "%pI4", &addr->sin_addr);
4065 }
4066
4067 if (!is_binding) {
4068 ses->capabilities = server->capabilities;
4069 if (!linuxExtEnabled)
4070 ses->capabilities &= (~server->vals->cap_unix);
4071
4072 if (ses->auth_key.response) {
4073 cifs_dbg(FYI, "Free previous auth_key.response = %p\n",
4074 ses->auth_key.response);
4075 kfree_sensitive(ses->auth_key.response);
4076 ses->auth_key.response = NULL;
4077 ses->auth_key.len = 0;
4078 }
4079 }
4080
4081 cifs_dbg(FYI, "Security Mode: 0x%x Capabilities: 0x%x TimeAdjust: %d\n",
4082 server->sec_mode, server->capabilities, server->timeAdj);
4083
4084 if (server->ops->sess_setup)
4085 rc = server->ops->sess_setup(xid, ses, server, nls_info);
4086
4087 if (rc) {
4088 cifs_server_dbg(VFS, "Send error in SessSetup = %d\n", rc);
4089 spin_lock(&ses->ses_lock);
4090 if (ses->ses_status == SES_IN_SETUP)
4091 ses->ses_status = SES_NEED_RECON;
4092 spin_lock(&ses->chan_lock);
4093 cifs_chan_clear_in_reconnect(ses, server);
4094 spin_unlock(&ses->chan_lock);
4095 spin_unlock(&ses->ses_lock);
4096 } else {
4097 spin_lock(&ses->ses_lock);
4098 if (ses->ses_status == SES_IN_SETUP)
4099 ses->ses_status = SES_GOOD;
4100 spin_lock(&ses->chan_lock);
4101 cifs_chan_clear_in_reconnect(ses, server);
4102 cifs_chan_clear_need_reconnect(ses, server);
4103 spin_unlock(&ses->chan_lock);
4104 spin_unlock(&ses->ses_lock);
4105 }
4106
4107 return rc;
4108 }
4109
4110 static int
cifs_set_vol_auth(struct smb3_fs_context * ctx,struct cifs_ses * ses)4111 cifs_set_vol_auth(struct smb3_fs_context *ctx, struct cifs_ses *ses)
4112 {
4113 ctx->sectype = ses->sectype;
4114
4115 /* krb5 is special, since we don't need username or pw */
4116 if (ctx->sectype == Kerberos)
4117 return 0;
4118
4119 return cifs_set_cifscreds(ctx, ses);
4120 }
4121
4122 static struct cifs_tcon *
__cifs_construct_tcon(struct cifs_sb_info * cifs_sb,kuid_t fsuid)4123 __cifs_construct_tcon(struct cifs_sb_info *cifs_sb, kuid_t fsuid)
4124 {
4125 int rc;
4126 struct cifs_tcon *master_tcon = cifs_sb_master_tcon(cifs_sb);
4127 struct cifs_ses *ses;
4128 struct cifs_tcon *tcon = NULL;
4129 struct smb3_fs_context *ctx;
4130 char *origin_fullpath = NULL;
4131
4132 ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
4133 if (ctx == NULL)
4134 return ERR_PTR(-ENOMEM);
4135
4136 ctx->local_nls = cifs_sb->local_nls;
4137 ctx->linux_uid = fsuid;
4138 ctx->cred_uid = fsuid;
4139 ctx->UNC = master_tcon->tree_name;
4140 ctx->retry = master_tcon->retry;
4141 ctx->nocase = master_tcon->nocase;
4142 ctx->nohandlecache = master_tcon->nohandlecache;
4143 ctx->local_lease = master_tcon->local_lease;
4144 ctx->no_lease = master_tcon->no_lease;
4145 ctx->resilient = master_tcon->use_resilient;
4146 ctx->persistent = master_tcon->use_persistent;
4147 ctx->handle_timeout = master_tcon->handle_timeout;
4148 ctx->no_linux_ext = !master_tcon->unix_ext;
4149 ctx->linux_ext = master_tcon->posix_extensions;
4150 ctx->sectype = master_tcon->ses->sectype;
4151 ctx->sign = master_tcon->ses->sign;
4152 ctx->seal = master_tcon->seal;
4153 ctx->witness = master_tcon->use_witness;
4154 ctx->dfs_root_ses = master_tcon->ses->dfs_root_ses;
4155
4156 rc = cifs_set_vol_auth(ctx, master_tcon->ses);
4157 if (rc) {
4158 tcon = ERR_PTR(rc);
4159 goto out;
4160 }
4161
4162 /* get a reference for the same TCP session */
4163 spin_lock(&cifs_tcp_ses_lock);
4164 ++master_tcon->ses->server->srv_count;
4165 spin_unlock(&cifs_tcp_ses_lock);
4166
4167 ses = cifs_get_smb_ses(master_tcon->ses->server, ctx);
4168 if (IS_ERR(ses)) {
4169 tcon = (struct cifs_tcon *)ses;
4170 cifs_put_tcp_session(master_tcon->ses->server, 0);
4171 goto out;
4172 }
4173
4174 #ifdef CONFIG_CIFS_DFS_UPCALL
4175 spin_lock(&master_tcon->tc_lock);
4176 if (master_tcon->origin_fullpath) {
4177 spin_unlock(&master_tcon->tc_lock);
4178 origin_fullpath = dfs_get_path(cifs_sb, cifs_sb->ctx->source);
4179 if (IS_ERR(origin_fullpath)) {
4180 tcon = ERR_CAST(origin_fullpath);
4181 origin_fullpath = NULL;
4182 cifs_put_smb_ses(ses);
4183 goto out;
4184 }
4185 } else {
4186 spin_unlock(&master_tcon->tc_lock);
4187 }
4188 #endif
4189
4190 tcon = cifs_get_tcon(ses, ctx);
4191 if (IS_ERR(tcon)) {
4192 cifs_put_smb_ses(ses);
4193 goto out;
4194 }
4195
4196 #ifdef CONFIG_CIFS_DFS_UPCALL
4197 if (origin_fullpath) {
4198 spin_lock(&tcon->tc_lock);
4199 tcon->origin_fullpath = origin_fullpath;
4200 spin_unlock(&tcon->tc_lock);
4201 origin_fullpath = NULL;
4202 queue_delayed_work(dfscache_wq, &tcon->dfs_cache_work,
4203 dfs_cache_get_ttl() * HZ);
4204 }
4205 #endif
4206
4207 #ifdef CONFIG_CIFS_ALLOW_INSECURE_LEGACY
4208 if (cap_unix(ses))
4209 reset_cifs_unix_caps(0, tcon, NULL, ctx);
4210 #endif /* CONFIG_CIFS_ALLOW_INSECURE_LEGACY */
4211
4212 out:
4213 kfree(ctx->username);
4214 kfree_sensitive(ctx->password);
4215 kfree(origin_fullpath);
4216 kfree(ctx);
4217
4218 return tcon;
4219 }
4220
4221 static struct cifs_tcon *
cifs_construct_tcon(struct cifs_sb_info * cifs_sb,kuid_t fsuid)4222 cifs_construct_tcon(struct cifs_sb_info *cifs_sb, kuid_t fsuid)
4223 {
4224 struct cifs_tcon *ret;
4225
4226 cifs_mount_lock();
4227 ret = __cifs_construct_tcon(cifs_sb, fsuid);
4228 cifs_mount_unlock();
4229 return ret;
4230 }
4231
4232 struct cifs_tcon *
cifs_sb_master_tcon(struct cifs_sb_info * cifs_sb)4233 cifs_sb_master_tcon(struct cifs_sb_info *cifs_sb)
4234 {
4235 return tlink_tcon(cifs_sb_master_tlink(cifs_sb));
4236 }
4237
4238 /* find and return a tlink with given uid */
4239 static struct tcon_link *
tlink_rb_search(struct rb_root * root,kuid_t uid)4240 tlink_rb_search(struct rb_root *root, kuid_t uid)
4241 {
4242 struct rb_node *node = root->rb_node;
4243 struct tcon_link *tlink;
4244
4245 while (node) {
4246 tlink = rb_entry(node, struct tcon_link, tl_rbnode);
4247
4248 if (uid_gt(tlink->tl_uid, uid))
4249 node = node->rb_left;
4250 else if (uid_lt(tlink->tl_uid, uid))
4251 node = node->rb_right;
4252 else
4253 return tlink;
4254 }
4255 return NULL;
4256 }
4257
4258 /* insert a tcon_link into the tree */
4259 static void
tlink_rb_insert(struct rb_root * root,struct tcon_link * new_tlink)4260 tlink_rb_insert(struct rb_root *root, struct tcon_link *new_tlink)
4261 {
4262 struct rb_node **new = &(root->rb_node), *parent = NULL;
4263 struct tcon_link *tlink;
4264
4265 while (*new) {
4266 tlink = rb_entry(*new, struct tcon_link, tl_rbnode);
4267 parent = *new;
4268
4269 if (uid_gt(tlink->tl_uid, new_tlink->tl_uid))
4270 new = &((*new)->rb_left);
4271 else
4272 new = &((*new)->rb_right);
4273 }
4274
4275 rb_link_node(&new_tlink->tl_rbnode, parent, new);
4276 rb_insert_color(&new_tlink->tl_rbnode, root);
4277 }
4278
4279 /*
4280 * Find or construct an appropriate tcon given a cifs_sb and the fsuid of the
4281 * current task.
4282 *
4283 * If the superblock doesn't refer to a multiuser mount, then just return
4284 * the master tcon for the mount.
4285 *
4286 * First, search the rbtree for an existing tcon for this fsuid. If one
4287 * exists, then check to see if it's pending construction. If it is then wait
4288 * for construction to complete. Once it's no longer pending, check to see if
4289 * it failed and either return an error or retry construction, depending on
4290 * the timeout.
4291 *
4292 * If one doesn't exist then insert a new tcon_link struct into the tree and
4293 * try to construct a new one.
4294 */
4295 struct tcon_link *
cifs_sb_tlink(struct cifs_sb_info * cifs_sb)4296 cifs_sb_tlink(struct cifs_sb_info *cifs_sb)
4297 {
4298 int ret;
4299 kuid_t fsuid = current_fsuid();
4300 struct tcon_link *tlink, *newtlink;
4301
4302 if (!(cifs_sb->mnt_cifs_flags & CIFS_MOUNT_MULTIUSER))
4303 return cifs_get_tlink(cifs_sb_master_tlink(cifs_sb));
4304
4305 spin_lock(&cifs_sb->tlink_tree_lock);
4306 tlink = tlink_rb_search(&cifs_sb->tlink_tree, fsuid);
4307 if (tlink)
4308 cifs_get_tlink(tlink);
4309 spin_unlock(&cifs_sb->tlink_tree_lock);
4310
4311 if (tlink == NULL) {
4312 newtlink = kzalloc(sizeof(*tlink), GFP_KERNEL);
4313 if (newtlink == NULL)
4314 return ERR_PTR(-ENOMEM);
4315 newtlink->tl_uid = fsuid;
4316 newtlink->tl_tcon = ERR_PTR(-EACCES);
4317 set_bit(TCON_LINK_PENDING, &newtlink->tl_flags);
4318 set_bit(TCON_LINK_IN_TREE, &newtlink->tl_flags);
4319 cifs_get_tlink(newtlink);
4320
4321 spin_lock(&cifs_sb->tlink_tree_lock);
4322 /* was one inserted after previous search? */
4323 tlink = tlink_rb_search(&cifs_sb->tlink_tree, fsuid);
4324 if (tlink) {
4325 cifs_get_tlink(tlink);
4326 spin_unlock(&cifs_sb->tlink_tree_lock);
4327 kfree(newtlink);
4328 goto wait_for_construction;
4329 }
4330 tlink = newtlink;
4331 tlink_rb_insert(&cifs_sb->tlink_tree, tlink);
4332 spin_unlock(&cifs_sb->tlink_tree_lock);
4333 } else {
4334 wait_for_construction:
4335 ret = wait_on_bit(&tlink->tl_flags, TCON_LINK_PENDING,
4336 TASK_INTERRUPTIBLE);
4337 if (ret) {
4338 cifs_put_tlink(tlink);
4339 return ERR_PTR(-ERESTARTSYS);
4340 }
4341
4342 /* if it's good, return it */
4343 if (!IS_ERR(tlink->tl_tcon))
4344 return tlink;
4345
4346 /* return error if we tried this already recently */
4347 if (time_before(jiffies, tlink->tl_time + TLINK_ERROR_EXPIRE)) {
4348 cifs_put_tlink(tlink);
4349 return ERR_PTR(-EACCES);
4350 }
4351
4352 if (test_and_set_bit(TCON_LINK_PENDING, &tlink->tl_flags))
4353 goto wait_for_construction;
4354 }
4355
4356 tlink->tl_tcon = cifs_construct_tcon(cifs_sb, fsuid);
4357 clear_bit(TCON_LINK_PENDING, &tlink->tl_flags);
4358 wake_up_bit(&tlink->tl_flags, TCON_LINK_PENDING);
4359
4360 if (IS_ERR(tlink->tl_tcon)) {
4361 cifs_put_tlink(tlink);
4362 return ERR_PTR(-EACCES);
4363 }
4364
4365 return tlink;
4366 }
4367
4368 /*
4369 * periodic workqueue job that scans tcon_tree for a superblock and closes
4370 * out tcons.
4371 */
4372 static void
cifs_prune_tlinks(struct work_struct * work)4373 cifs_prune_tlinks(struct work_struct *work)
4374 {
4375 struct cifs_sb_info *cifs_sb = container_of(work, struct cifs_sb_info,
4376 prune_tlinks.work);
4377 struct rb_root *root = &cifs_sb->tlink_tree;
4378 struct rb_node *node;
4379 struct rb_node *tmp;
4380 struct tcon_link *tlink;
4381
4382 /*
4383 * Because we drop the spinlock in the loop in order to put the tlink
4384 * it's not guarded against removal of links from the tree. The only
4385 * places that remove entries from the tree are this function and
4386 * umounts. Because this function is non-reentrant and is canceled
4387 * before umount can proceed, this is safe.
4388 */
4389 spin_lock(&cifs_sb->tlink_tree_lock);
4390 node = rb_first(root);
4391 while (node != NULL) {
4392 tmp = node;
4393 node = rb_next(tmp);
4394 tlink = rb_entry(tmp, struct tcon_link, tl_rbnode);
4395
4396 if (test_bit(TCON_LINK_MASTER, &tlink->tl_flags) ||
4397 atomic_read(&tlink->tl_count) != 0 ||
4398 time_after(tlink->tl_time + TLINK_IDLE_EXPIRE, jiffies))
4399 continue;
4400
4401 cifs_get_tlink(tlink);
4402 clear_bit(TCON_LINK_IN_TREE, &tlink->tl_flags);
4403 rb_erase(tmp, root);
4404
4405 spin_unlock(&cifs_sb->tlink_tree_lock);
4406 cifs_put_tlink(tlink);
4407 spin_lock(&cifs_sb->tlink_tree_lock);
4408 }
4409 spin_unlock(&cifs_sb->tlink_tree_lock);
4410
4411 queue_delayed_work(cifsiod_wq, &cifs_sb->prune_tlinks,
4412 TLINK_IDLE_EXPIRE);
4413 }
4414
4415 #ifndef CONFIG_CIFS_DFS_UPCALL
cifs_tree_connect(const unsigned int xid,struct cifs_tcon * tcon,const struct nls_table * nlsc)4416 int cifs_tree_connect(const unsigned int xid, struct cifs_tcon *tcon, const struct nls_table *nlsc)
4417 {
4418 int rc;
4419 const struct smb_version_operations *ops = tcon->ses->server->ops;
4420
4421 /* only send once per connect */
4422 spin_lock(&tcon->tc_lock);
4423
4424 /* if tcon is marked for needing reconnect, update state */
4425 if (tcon->need_reconnect)
4426 tcon->status = TID_NEED_TCON;
4427
4428 if (tcon->status == TID_GOOD) {
4429 spin_unlock(&tcon->tc_lock);
4430 return 0;
4431 }
4432
4433 if (tcon->status != TID_NEW &&
4434 tcon->status != TID_NEED_TCON) {
4435 spin_unlock(&tcon->tc_lock);
4436 return -EHOSTDOWN;
4437 }
4438
4439 tcon->status = TID_IN_TCON;
4440 spin_unlock(&tcon->tc_lock);
4441
4442 rc = ops->tree_connect(xid, tcon->ses, tcon->tree_name, tcon, nlsc);
4443 if (rc) {
4444 spin_lock(&tcon->tc_lock);
4445 if (tcon->status == TID_IN_TCON)
4446 tcon->status = TID_NEED_TCON;
4447 spin_unlock(&tcon->tc_lock);
4448 } else {
4449 spin_lock(&tcon->tc_lock);
4450 if (tcon->status == TID_IN_TCON)
4451 tcon->status = TID_GOOD;
4452 tcon->need_reconnect = false;
4453 spin_unlock(&tcon->tc_lock);
4454 }
4455
4456 return rc;
4457 }
4458 #endif
4459