CIFS: Extend credit mechanism to process request type
[deliverable/linux.git] / fs / cifs / connect.c
CommitLineData
1da177e4
LT
1/*
2 * fs/cifs/connect.c
3 *
1080ef75 4 * Copyright (C) International Business Machines Corp., 2002,2011
1da177e4
LT
5 * Author(s): Steve French (sfrench@us.ibm.com)
6 *
7 * This library is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU Lesser General Public License as published
9 * by the Free Software Foundation; either version 2.1 of the License, or
10 * (at your option) any later version.
11 *
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
15 * the GNU Lesser General Public License for more details.
16 *
17 * You should have received a copy of the GNU Lesser General Public License
18 * along with this library; if not, write to the Free Software
fb8c4b14 19 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
1da177e4
LT
20 */
21#include <linux/fs.h>
22#include <linux/net.h>
23#include <linux/string.h>
24#include <linux/list.h>
25#include <linux/wait.h>
5a0e3ad6 26#include <linux/slab.h>
1da177e4
LT
27#include <linux/pagemap.h>
28#include <linux/ctype.h>
29#include <linux/utsname.h>
30#include <linux/mempool.h>
b8643e1b 31#include <linux/delay.h>
f191401f 32#include <linux/completion.h>
aaf737ad 33#include <linux/kthread.h>
0ae0efad 34#include <linux/pagevec.h>
7dfb7103 35#include <linux/freezer.h>
5c2503a8 36#include <linux/namei.h>
1da177e4
LT
37#include <asm/uaccess.h>
38#include <asm/processor.h>
50b64e3b 39#include <linux/inet.h>
143cb494 40#include <linux/module.h>
8a8798a5 41#include <keys/user-type.h>
0e2bedaa 42#include <net/ipv6.h>
8830d7e0
SP
43#include <linux/parser.h>
44
1da177e4
LT
45#include "cifspdu.h"
46#include "cifsglob.h"
47#include "cifsproto.h"
48#include "cifs_unicode.h"
49#include "cifs_debug.h"
50#include "cifs_fs_sb.h"
51#include "ntlmssp.h"
52#include "nterr.h"
53#include "rfc1002pdu.h"
488f1d2d 54#include "fscache.h"
1da177e4
LT
55
56#define CIFS_PORT 445
57#define RFC1001_PORT 139
58
c74093b6
JL
59/* SMB echo "timeout" -- FIXME: tunable? */
60#define SMB_ECHO_INTERVAL (60 * HZ)
61
1da177e4
LT
62extern mempool_t *cifs_req_poolp;
63
2de970ff 64/* FIXME: should these be tunable? */
9d002df4 65#define TLINK_ERROR_EXPIRE (1 * HZ)
2de970ff 66#define TLINK_IDLE_EXPIRE (600 * HZ)
9d002df4 67
8830d7e0
SP
68enum {
69
70 /* Mount options that take no arguments */
71 Opt_user_xattr, Opt_nouser_xattr,
72 Opt_forceuid, Opt_noforceuid,
73 Opt_noblocksend, Opt_noautotune,
74 Opt_hard, Opt_soft, Opt_perm, Opt_noperm,
75 Opt_mapchars, Opt_nomapchars, Opt_sfu,
76 Opt_nosfu, Opt_nodfs, Opt_posixpaths,
77 Opt_noposixpaths, Opt_nounix,
78 Opt_nocase,
79 Opt_brl, Opt_nobrl,
80 Opt_forcemandatorylock, Opt_setuids,
81 Opt_nosetuids, Opt_dynperm, Opt_nodynperm,
82 Opt_nohard, Opt_nosoft,
83 Opt_nointr, Opt_intr,
84 Opt_nostrictsync, Opt_strictsync,
85 Opt_serverino, Opt_noserverino,
86 Opt_rwpidforward, Opt_cifsacl, Opt_nocifsacl,
87 Opt_acl, Opt_noacl, Opt_locallease,
88 Opt_sign, Opt_seal, Opt_direct,
89 Opt_strictcache, Opt_noac,
90 Opt_fsc, Opt_mfsymlinks,
d8162558 91 Opt_multiuser, Opt_sloppy,
8830d7e0
SP
92
93 /* Mount options which take numeric value */
94 Opt_backupuid, Opt_backupgid, Opt_uid,
95 Opt_cruid, Opt_gid, Opt_file_mode,
96 Opt_dirmode, Opt_port,
97 Opt_rsize, Opt_wsize, Opt_actimeo,
98
99 /* Mount options which take string value */
100 Opt_user, Opt_pass, Opt_ip,
101 Opt_unc, Opt_domain,
102 Opt_srcaddr, Opt_prefixpath,
103 Opt_iocharset, Opt_sockopt,
104 Opt_netbiosname, Opt_servern,
23db65f5 105 Opt_ver, Opt_vers, Opt_sec, Opt_cache,
8830d7e0
SP
106
107 /* Mount options to be ignored */
108 Opt_ignore,
109
110 /* Options which could be blank */
111 Opt_blank_pass,
4fe9e963
SP
112 Opt_blank_user,
113 Opt_blank_ip,
8830d7e0
SP
114
115 Opt_err
116};
117
118static const match_table_t cifs_mount_option_tokens = {
119
120 { Opt_user_xattr, "user_xattr" },
121 { Opt_nouser_xattr, "nouser_xattr" },
122 { Opt_forceuid, "forceuid" },
123 { Opt_noforceuid, "noforceuid" },
124 { Opt_noblocksend, "noblocksend" },
125 { Opt_noautotune, "noautotune" },
126 { Opt_hard, "hard" },
127 { Opt_soft, "soft" },
128 { Opt_perm, "perm" },
129 { Opt_noperm, "noperm" },
130 { Opt_mapchars, "mapchars" },
131 { Opt_nomapchars, "nomapchars" },
132 { Opt_sfu, "sfu" },
133 { Opt_nosfu, "nosfu" },
134 { Opt_nodfs, "nodfs" },
135 { Opt_posixpaths, "posixpaths" },
136 { Opt_noposixpaths, "noposixpaths" },
137 { Opt_nounix, "nounix" },
138 { Opt_nounix, "nolinux" },
139 { Opt_nocase, "nocase" },
140 { Opt_nocase, "ignorecase" },
141 { Opt_brl, "brl" },
142 { Opt_nobrl, "nobrl" },
143 { Opt_nobrl, "nolock" },
144 { Opt_forcemandatorylock, "forcemandatorylock" },
5cfdddcf 145 { Opt_forcemandatorylock, "forcemand" },
8830d7e0
SP
146 { Opt_setuids, "setuids" },
147 { Opt_nosetuids, "nosetuids" },
148 { Opt_dynperm, "dynperm" },
149 { Opt_nodynperm, "nodynperm" },
150 { Opt_nohard, "nohard" },
151 { Opt_nosoft, "nosoft" },
152 { Opt_nointr, "nointr" },
153 { Opt_intr, "intr" },
154 { Opt_nostrictsync, "nostrictsync" },
155 { Opt_strictsync, "strictsync" },
156 { Opt_serverino, "serverino" },
157 { Opt_noserverino, "noserverino" },
158 { Opt_rwpidforward, "rwpidforward" },
159 { Opt_cifsacl, "cifsacl" },
160 { Opt_nocifsacl, "nocifsacl" },
161 { Opt_acl, "acl" },
162 { Opt_noacl, "noacl" },
163 { Opt_locallease, "locallease" },
164 { Opt_sign, "sign" },
165 { Opt_seal, "seal" },
166 { Opt_direct, "direct" },
531c8ff0
JL
167 { Opt_direct, "directio" },
168 { Opt_direct, "forcedirectio" },
8830d7e0
SP
169 { Opt_strictcache, "strictcache" },
170 { Opt_noac, "noac" },
171 { Opt_fsc, "fsc" },
172 { Opt_mfsymlinks, "mfsymlinks" },
173 { Opt_multiuser, "multiuser" },
d8162558 174 { Opt_sloppy, "sloppy" },
8830d7e0
SP
175
176 { Opt_backupuid, "backupuid=%s" },
177 { Opt_backupgid, "backupgid=%s" },
178 { Opt_uid, "uid=%s" },
179 { Opt_cruid, "cruid=%s" },
180 { Opt_gid, "gid=%s" },
181 { Opt_file_mode, "file_mode=%s" },
182 { Opt_dirmode, "dirmode=%s" },
183 { Opt_dirmode, "dir_mode=%s" },
184 { Opt_port, "port=%s" },
185 { Opt_rsize, "rsize=%s" },
186 { Opt_wsize, "wsize=%s" },
187 { Opt_actimeo, "actimeo=%s" },
188
4fe9e963
SP
189 { Opt_blank_user, "user=" },
190 { Opt_blank_user, "username=" },
8830d7e0
SP
191 { Opt_user, "user=%s" },
192 { Opt_user, "username=%s" },
193 { Opt_blank_pass, "pass=" },
194 { Opt_pass, "pass=%s" },
195 { Opt_pass, "password=%s" },
4fe9e963
SP
196 { Opt_blank_ip, "ip=" },
197 { Opt_blank_ip, "addr=" },
8830d7e0
SP
198 { Opt_ip, "ip=%s" },
199 { Opt_ip, "addr=%s" },
200 { Opt_unc, "unc=%s" },
201 { Opt_unc, "target=%s" },
202 { Opt_unc, "path=%s" },
203 { Opt_domain, "dom=%s" },
204 { Opt_domain, "domain=%s" },
205 { Opt_domain, "workgroup=%s" },
206 { Opt_srcaddr, "srcaddr=%s" },
207 { Opt_prefixpath, "prefixpath=%s" },
208 { Opt_iocharset, "iocharset=%s" },
209 { Opt_sockopt, "sockopt=%s" },
210 { Opt_netbiosname, "netbiosname=%s" },
211 { Opt_servern, "servern=%s" },
212 { Opt_ver, "ver=%s" },
23db65f5 213 { Opt_vers, "vers=%s" },
8830d7e0 214 { Opt_sec, "sec=%s" },
15b6a473 215 { Opt_cache, "cache=%s" },
8830d7e0
SP
216
217 { Opt_ignore, "cred" },
218 { Opt_ignore, "credentials" },
a557b976
JL
219 { Opt_ignore, "cred=%s" },
220 { Opt_ignore, "credentials=%s" },
8830d7e0
SP
221 { Opt_ignore, "guest" },
222 { Opt_ignore, "rw" },
223 { Opt_ignore, "ro" },
224 { Opt_ignore, "suid" },
225 { Opt_ignore, "nosuid" },
226 { Opt_ignore, "exec" },
227 { Opt_ignore, "noexec" },
228 { Opt_ignore, "nodev" },
229 { Opt_ignore, "noauto" },
230 { Opt_ignore, "dev" },
231 { Opt_ignore, "mand" },
232 { Opt_ignore, "nomand" },
233 { Opt_ignore, "_netdev" },
234
235 { Opt_err, NULL }
236};
237
238enum {
239 Opt_sec_krb5, Opt_sec_krb5i, Opt_sec_krb5p,
240 Opt_sec_ntlmsspi, Opt_sec_ntlmssp,
7659624f
JL
241 Opt_ntlm, Opt_sec_ntlmi, Opt_sec_ntlmv2,
242 Opt_sec_ntlmv2i, Opt_sec_lanman,
8830d7e0
SP
243 Opt_sec_none,
244
245 Opt_sec_err
246};
247
248static const match_table_t cifs_secflavor_tokens = {
249 { Opt_sec_krb5, "krb5" },
250 { Opt_sec_krb5i, "krb5i" },
251 { Opt_sec_krb5p, "krb5p" },
252 { Opt_sec_ntlmsspi, "ntlmsspi" },
253 { Opt_sec_ntlmssp, "ntlmssp" },
254 { Opt_ntlm, "ntlm" },
255 { Opt_sec_ntlmi, "ntlmi" },
7659624f
JL
256 { Opt_sec_ntlmv2, "nontlm" },
257 { Opt_sec_ntlmv2, "ntlmv2" },
8830d7e0 258 { Opt_sec_ntlmv2i, "ntlmv2i" },
8830d7e0
SP
259 { Opt_sec_lanman, "lanman" },
260 { Opt_sec_none, "none" },
261
262 { Opt_sec_err, NULL }
263};
264
15b6a473
JL
265/* cache flavors */
266enum {
267 Opt_cache_loose,
268 Opt_cache_strict,
269 Opt_cache_none,
270 Opt_cache_err
271};
272
273static const match_table_t cifs_cacheflavor_tokens = {
274 { Opt_cache_loose, "loose" },
275 { Opt_cache_strict, "strict" },
276 { Opt_cache_none, "none" },
277 { Opt_cache_err, NULL }
278};
279
23db65f5
JL
280static const match_table_t cifs_smb_version_tokens = {
281 { Smb_1, SMB1_VERSION_STRING },
1080ef75 282 { Smb_21, SMB21_VERSION_STRING },
23db65f5
JL
283};
284
a9f1b85e
PS
285static int ip_connect(struct TCP_Server_Info *server);
286static int generic_ip_connect(struct TCP_Server_Info *server);
b647c35f 287static void tlink_rb_insert(struct rb_root *root, struct tcon_link *new_tlink);
2de970ff 288static void cifs_prune_tlinks(struct work_struct *work);
b9bce2e9
JL
289static int cifs_setup_volume_info(struct smb_vol *volume_info, char *mount_data,
290 const char *devname);
1da177e4 291
d5c5605c
JL
292/*
293 * cifs tcp session reconnection
294 *
295 * mark tcp session as reconnecting so temporarily locked
296 * mark all smb sessions as reconnecting for tcp session
297 * reconnect tcp session
298 * wake up waiters on reconnection? - (not needed currently)
299 */
2cd646a2 300static int
1da177e4
LT
301cifs_reconnect(struct TCP_Server_Info *server)
302{
303 int rc = 0;
f1987b44 304 struct list_head *tmp, *tmp2;
96daf2b0
SF
305 struct cifs_ses *ses;
306 struct cifs_tcon *tcon;
fb8c4b14 307 struct mid_q_entry *mid_entry;
3c1105df 308 struct list_head retry_list;
50c2f753 309
1da177e4 310 spin_lock(&GlobalMid_Lock);
469ee614 311 if (server->tcpStatus == CifsExiting) {
fb8c4b14 312 /* the demux thread will exit normally
1da177e4
LT
313 next time through the loop */
314 spin_unlock(&GlobalMid_Lock);
315 return rc;
316 } else
317 server->tcpStatus = CifsNeedReconnect;
318 spin_unlock(&GlobalMid_Lock);
319 server->maxBuf = 0;
320
b6b38f70 321 cFYI(1, "Reconnecting tcp session");
1da177e4
LT
322
323 /* before reconnecting the tcp session, mark the smb session (uid)
324 and the tid bad so they are not used until reconnected */
2b84a36c 325 cFYI(1, "%s: marking sessions and tcons for reconnect", __func__);
3f9bcca7 326 spin_lock(&cifs_tcp_ses_lock);
14fbf50d 327 list_for_each(tmp, &server->smb_ses_list) {
96daf2b0 328 ses = list_entry(tmp, struct cifs_ses, smb_ses_list);
14fbf50d
JL
329 ses->need_reconnect = true;
330 ses->ipc_tid = 0;
f1987b44 331 list_for_each(tmp2, &ses->tcon_list) {
96daf2b0 332 tcon = list_entry(tmp2, struct cifs_tcon, tcon_list);
3b795210 333 tcon->need_reconnect = true;
1da177e4 334 }
1da177e4 335 }
3f9bcca7 336 spin_unlock(&cifs_tcp_ses_lock);
2b84a36c 337
1da177e4 338 /* do not want to be sending data on a socket we are freeing */
2b84a36c 339 cFYI(1, "%s: tearing down socket", __func__);
72ca545b 340 mutex_lock(&server->srv_mutex);
fb8c4b14 341 if (server->ssocket) {
b6b38f70
JP
342 cFYI(1, "State: 0x%x Flags: 0x%lx", server->ssocket->state,
343 server->ssocket->flags);
91cf45f0 344 kernel_sock_shutdown(server->ssocket, SHUT_WR);
b6b38f70 345 cFYI(1, "Post shutdown state: 0x%x Flags: 0x%lx",
467a8f8d 346 server->ssocket->state,
b6b38f70 347 server->ssocket->flags);
1da177e4
LT
348 sock_release(server->ssocket);
349 server->ssocket = NULL;
350 }
5d0d2882
SP
351 server->sequence_number = 0;
352 server->session_estab = false;
21e73393
SP
353 kfree(server->session_key.response);
354 server->session_key.response = NULL;
355 server->session_key.len = 0;
fda35943 356 server->lstrp = jiffies;
2b84a36c 357 mutex_unlock(&server->srv_mutex);
1da177e4 358
2b84a36c 359 /* mark submitted MIDs for retry and issue callback */
3c1105df
JL
360 INIT_LIST_HEAD(&retry_list);
361 cFYI(1, "%s: moving mids to private list", __func__);
1da177e4 362 spin_lock(&GlobalMid_Lock);
2b84a36c
JL
363 list_for_each_safe(tmp, tmp2, &server->pending_mid_q) {
364 mid_entry = list_entry(tmp, struct mid_q_entry, qhead);
7c9421e1
PS
365 if (mid_entry->mid_state == MID_REQUEST_SUBMITTED)
366 mid_entry->mid_state = MID_RETRY_NEEDED;
3c1105df
JL
367 list_move(&mid_entry->qhead, &retry_list);
368 }
369 spin_unlock(&GlobalMid_Lock);
370
371 cFYI(1, "%s: issuing mid callbacks", __func__);
372 list_for_each_safe(tmp, tmp2, &retry_list) {
373 mid_entry = list_entry(tmp, struct mid_q_entry, qhead);
2b84a36c
JL
374 list_del_init(&mid_entry->qhead);
375 mid_entry->callback(mid_entry);
1da177e4 376 }
1da177e4 377
7fdbaa1b 378 do {
6c3d8909 379 try_to_freeze();
a9f1b85e
PS
380
381 /* we should try only the port we connected to before */
382 rc = generic_ip_connect(server);
fb8c4b14 383 if (rc) {
b6b38f70 384 cFYI(1, "reconnect error %d", rc);
0cb766ae 385 msleep(3000);
1da177e4
LT
386 } else {
387 atomic_inc(&tcpSesReconnectCount);
388 spin_lock(&GlobalMid_Lock);
469ee614 389 if (server->tcpStatus != CifsExiting)
fd88ce93 390 server->tcpStatus = CifsNeedNegotiate;
fb8c4b14 391 spin_unlock(&GlobalMid_Lock);
1da177e4 392 }
7fdbaa1b 393 } while (server->tcpStatus == CifsNeedReconnect);
2b84a36c 394
1da177e4
LT
395 return rc;
396}
397
c74093b6
JL
398static void
399cifs_echo_request(struct work_struct *work)
400{
401 int rc;
402 struct TCP_Server_Info *server = container_of(work,
403 struct TCP_Server_Info, echo.work);
404
247ec9b4 405 /*
195291e6
JL
406 * We cannot send an echo until the NEGOTIATE_PROTOCOL request is
407 * done, which is indicated by maxBuf != 0. Also, no need to ping if
408 * we got a response recently
247ec9b4 409 */
195291e6 410 if (server->maxBuf == 0 ||
247ec9b4 411 time_before(jiffies, server->lstrp + SMB_ECHO_INTERVAL - HZ))
c74093b6
JL
412 goto requeue_echo;
413
414 rc = CIFSSMBEcho(server);
415 if (rc)
416 cFYI(1, "Unable to send echo request to server: %s",
417 server->hostname);
418
419requeue_echo:
da472fc8 420 queue_delayed_work(cifsiod_wq, &server->echo, SMB_ECHO_INTERVAL);
c74093b6
JL
421}
422
3d9c2472 423static bool
2a37ef94 424allocate_buffers(struct TCP_Server_Info *server)
3d9c2472 425{
2a37ef94
JL
426 if (!server->bigbuf) {
427 server->bigbuf = (char *)cifs_buf_get();
428 if (!server->bigbuf) {
3d9c2472
PS
429 cERROR(1, "No memory for large SMB response");
430 msleep(3000);
431 /* retry will check if exiting */
432 return false;
433 }
2a37ef94 434 } else if (server->large_buf) {
3d9c2472 435 /* we are reusing a dirty large buf, clear its start */
1887f601 436 memset(server->bigbuf, 0, HEADER_SIZE(server));
3d9c2472
PS
437 }
438
2a37ef94
JL
439 if (!server->smallbuf) {
440 server->smallbuf = (char *)cifs_small_buf_get();
441 if (!server->smallbuf) {
3d9c2472
PS
442 cERROR(1, "No memory for SMB response");
443 msleep(1000);
444 /* retry will check if exiting */
445 return false;
446 }
447 /* beginning of smb buffer is cleared in our buf_get */
448 } else {
449 /* if existing small buf clear beginning */
1887f601 450 memset(server->smallbuf, 0, HEADER_SIZE(server));
3d9c2472
PS
451 }
452
3d9c2472
PS
453 return true;
454}
455
ba749e6d
JL
456static bool
457server_unresponsive(struct TCP_Server_Info *server)
458{
6dae51a5
PS
459 /*
460 * We need to wait 2 echo intervals to make sure we handle such
461 * situations right:
462 * 1s client sends a normal SMB request
463 * 2s client gets a response
464 * 30s echo workqueue job pops, and decides we got a response recently
465 * and don't need to send another
466 * ...
467 * 65s kernel_recvmsg times out, and we see that we haven't gotten
468 * a response in >60s.
469 */
470 if (server->tcpStatus == CifsGood &&
471 time_after(jiffies, server->lstrp + 2 * SMB_ECHO_INTERVAL)) {
ba749e6d
JL
472 cERROR(1, "Server %s has not responded in %d seconds. "
473 "Reconnecting...", server->hostname,
6dae51a5 474 (2 * SMB_ECHO_INTERVAL) / HZ);
ba749e6d
JL
475 cifs_reconnect(server);
476 wake_up(&server->response_q);
477 return true;
478 }
479
480 return false;
481}
482
42c4dfc2
JL
483/*
484 * kvec_array_init - clone a kvec array, and advance into it
485 * @new: pointer to memory for cloned array
486 * @iov: pointer to original array
487 * @nr_segs: number of members in original array
488 * @bytes: number of bytes to advance into the cloned array
489 *
490 * This function will copy the array provided in iov to a section of memory
491 * and advance the specified number of bytes into the new array. It returns
492 * the number of segments in the new array. "new" must be at least as big as
493 * the original iov array.
494 */
495static unsigned int
496kvec_array_init(struct kvec *new, struct kvec *iov, unsigned int nr_segs,
497 size_t bytes)
498{
499 size_t base = 0;
500
501 while (bytes || !iov->iov_len) {
502 int copy = min(bytes, iov->iov_len);
503
504 bytes -= copy;
505 base += copy;
506 if (iov->iov_len == base) {
507 iov++;
508 nr_segs--;
509 base = 0;
510 }
511 }
512 memcpy(new, iov, sizeof(*iov) * nr_segs);
513 new->iov_base += base;
514 new->iov_len -= base;
515 return nr_segs;
516}
517
1041e3f9
JL
518static struct kvec *
519get_server_iovec(struct TCP_Server_Info *server, unsigned int nr_segs)
e7015fb1 520{
1041e3f9
JL
521 struct kvec *new_iov;
522
523 if (server->iov && nr_segs <= server->nr_iov)
524 return server->iov;
525
526 /* not big enough -- allocate a new one and release the old */
527 new_iov = kmalloc(sizeof(*new_iov) * nr_segs, GFP_NOFS);
528 if (new_iov) {
529 kfree(server->iov);
530 server->iov = new_iov;
531 server->nr_iov = nr_segs;
532 }
533 return new_iov;
534}
535
e28bc5b1
JL
536int
537cifs_readv_from_socket(struct TCP_Server_Info *server, struct kvec *iov_orig,
538 unsigned int nr_segs, unsigned int to_read)
e7015fb1 539{
a52c1eb7
JL
540 int length = 0;
541 int total_read;
42c4dfc2 542 unsigned int segs;
e831e6cf 543 struct msghdr smb_msg;
42c4dfc2
JL
544 struct kvec *iov;
545
1041e3f9 546 iov = get_server_iovec(server, nr_segs);
42c4dfc2
JL
547 if (!iov)
548 return -ENOMEM;
e7015fb1 549
e831e6cf
JL
550 smb_msg.msg_control = NULL;
551 smb_msg.msg_controllen = 0;
552
a52c1eb7 553 for (total_read = 0; to_read; total_read += length, to_read -= length) {
95edcff4
JL
554 try_to_freeze();
555
ba749e6d 556 if (server_unresponsive(server)) {
a52c1eb7 557 total_read = -EAGAIN;
ba749e6d
JL
558 break;
559 }
560
42c4dfc2
JL
561 segs = kvec_array_init(iov, iov_orig, nr_segs, total_read);
562
563 length = kernel_recvmsg(server->ssocket, &smb_msg,
564 iov, segs, to_read, 0);
e7015fb1 565
e7015fb1 566 if (server->tcpStatus == CifsExiting) {
a52c1eb7 567 total_read = -ESHUTDOWN;
e7015fb1
PS
568 break;
569 } else if (server->tcpStatus == CifsNeedReconnect) {
570 cifs_reconnect(server);
a52c1eb7 571 total_read = -EAGAIN;
e7015fb1
PS
572 break;
573 } else if (length == -ERESTARTSYS ||
574 length == -EAGAIN ||
575 length == -EINTR) {
576 /*
577 * Minimum sleep to prevent looping, allowing socket
578 * to clear and app threads to set tcpStatus
579 * CifsNeedReconnect if server hung.
580 */
581 usleep_range(1000, 2000);
582 length = 0;
a52c1eb7 583 continue;
e7015fb1 584 } else if (length <= 0) {
a52c1eb7
JL
585 cFYI(1, "Received no data or error: expecting %d "
586 "got %d", to_read, length);
e7015fb1 587 cifs_reconnect(server);
a52c1eb7 588 total_read = -EAGAIN;
e7015fb1
PS
589 break;
590 }
591 }
a52c1eb7 592 return total_read;
e7015fb1 593}
e7015fb1 594
e28bc5b1
JL
595int
596cifs_read_from_socket(struct TCP_Server_Info *server, char *buf,
597 unsigned int to_read)
42c4dfc2
JL
598{
599 struct kvec iov;
600
601 iov.iov_base = buf;
602 iov.iov_len = to_read;
603
e28bc5b1 604 return cifs_readv_from_socket(server, &iov, 1, to_read);
e7015fb1
PS
605}
606
98bac62c 607static bool
fe11e4cc 608is_smb_response(struct TCP_Server_Info *server, unsigned char type)
98bac62c 609{
98bac62c
PS
610 /*
611 * The first byte big endian of the length field,
612 * is actually not part of the length but the type
613 * with the most common, zero, as regular data.
614 */
fe11e4cc
JL
615 switch (type) {
616 case RFC1002_SESSION_MESSAGE:
617 /* Regular SMB response */
618 return true;
619 case RFC1002_SESSION_KEEP_ALIVE:
620 cFYI(1, "RFC 1002 session keep alive");
621 break;
622 case RFC1002_POSITIVE_SESSION_RESPONSE:
623 cFYI(1, "RFC 1002 positive session response");
624 break;
625 case RFC1002_NEGATIVE_SESSION_RESPONSE:
98bac62c
PS
626 /*
627 * We get this from Windows 98 instead of an error on
628 * SMB negprot response.
629 */
fe11e4cc 630 cFYI(1, "RFC 1002 negative session response");
98bac62c
PS
631 /* give server a second to clean up */
632 msleep(1000);
633 /*
634 * Always try 445 first on reconnect since we get NACK
635 * on some if we ever connected to port 139 (the NACK
636 * is since we do not begin with RFC1001 session
637 * initialize frame).
638 */
fe11e4cc 639 cifs_set_port((struct sockaddr *)&server->dstaddr, CIFS_PORT);
98bac62c
PS
640 cifs_reconnect(server);
641 wake_up(&server->response_q);
fe11e4cc
JL
642 break;
643 default:
644 cERROR(1, "RFC 1002 unknown response type 0x%x", type);
98bac62c 645 cifs_reconnect(server);
98bac62c
PS
646 }
647
fe11e4cc 648 return false;
98bac62c
PS
649}
650
e28bc5b1
JL
651void
652dequeue_mid(struct mid_q_entry *mid, bool malformed)
ea1f4502 653{
ad69bae1 654#ifdef CONFIG_CIFS_STATS2
ea1f4502 655 mid->when_received = jiffies;
ad69bae1 656#endif
ea1f4502
JL
657 spin_lock(&GlobalMid_Lock);
658 if (!malformed)
7c9421e1 659 mid->mid_state = MID_RESPONSE_RECEIVED;
ea1f4502 660 else
7c9421e1 661 mid->mid_state = MID_RESPONSE_MALFORMED;
ea1f4502 662 list_del_init(&mid->qhead);
ad69bae1 663 spin_unlock(&GlobalMid_Lock);
ea1f4502 664}
ad69bae1 665
c8054ebd
JL
666static void
667handle_mid(struct mid_q_entry *mid, struct TCP_Server_Info *server,
d4e4854f 668 char *buf, int malformed)
ea1f4502 669{
316cf94a
PS
670 if (server->ops->check_trans2 &&
671 server->ops->check_trans2(mid, server, buf, malformed))
c8054ebd 672 return;
ea1f4502 673 mid->resp_buf = buf;
7c9421e1 674 mid->large_buf = server->large_buf;
2a37ef94
JL
675 /* Was previous buf put in mpx struct for multi-rsp? */
676 if (!mid->multiRsp) {
677 /* smb buffer will be freed by user thread */
678 if (server->large_buf)
679 server->bigbuf = NULL;
680 else
681 server->smallbuf = NULL;
682 }
ffc00e27 683 dequeue_mid(mid, malformed);
ad69bae1
PS
684}
685
762dfd10
PS
686static void clean_demultiplex_info(struct TCP_Server_Info *server)
687{
688 int length;
689
690 /* take it off the list, if it's not already */
691 spin_lock(&cifs_tcp_ses_lock);
692 list_del_init(&server->tcp_ses_list);
693 spin_unlock(&cifs_tcp_ses_lock);
694
695 spin_lock(&GlobalMid_Lock);
696 server->tcpStatus = CifsExiting;
697 spin_unlock(&GlobalMid_Lock);
698 wake_up_all(&server->response_q);
699
2d86dbc9 700 /* check if we have blocked requests that need to free */
fc40f9cf 701 spin_lock(&server->req_lock);
2d86dbc9
PS
702 if (server->credits <= 0)
703 server->credits = 1;
fc40f9cf 704 spin_unlock(&server->req_lock);
762dfd10
PS
705 /*
706 * Although there should not be any requests blocked on this queue it
707 * can not hurt to be paranoid and try to wake up requests that may
708 * haven been blocked when more than 50 at time were on the wire to the
709 * same server - they now will see the session is in exit state and get
710 * out of SendReceive.
711 */
712 wake_up_all(&server->request_q);
713 /* give those requests time to exit */
714 msleep(125);
715
716 if (server->ssocket) {
717 sock_release(server->ssocket);
718 server->ssocket = NULL;
719 }
720
721 if (!list_empty(&server->pending_mid_q)) {
722 struct list_head dispose_list;
723 struct mid_q_entry *mid_entry;
724 struct list_head *tmp, *tmp2;
725
726 INIT_LIST_HEAD(&dispose_list);
727 spin_lock(&GlobalMid_Lock);
728 list_for_each_safe(tmp, tmp2, &server->pending_mid_q) {
729 mid_entry = list_entry(tmp, struct mid_q_entry, qhead);
7c9421e1
PS
730 cFYI(1, "Clearing mid 0x%llx", mid_entry->mid);
731 mid_entry->mid_state = MID_SHUTDOWN;
762dfd10
PS
732 list_move(&mid_entry->qhead, &dispose_list);
733 }
734 spin_unlock(&GlobalMid_Lock);
735
736 /* now walk dispose list and issue callbacks */
737 list_for_each_safe(tmp, tmp2, &dispose_list) {
738 mid_entry = list_entry(tmp, struct mid_q_entry, qhead);
7c9421e1 739 cFYI(1, "Callback mid 0x%llx", mid_entry->mid);
762dfd10
PS
740 list_del_init(&mid_entry->qhead);
741 mid_entry->callback(mid_entry);
742 }
743 /* 1/8th of sec is more than enough time for them to exit */
744 msleep(125);
745 }
746
747 if (!list_empty(&server->pending_mid_q)) {
748 /*
749 * mpx threads have not exited yet give them at least the smb
750 * send timeout time for long ops.
751 *
752 * Due to delays on oplock break requests, we need to wait at
753 * least 45 seconds before giving up on a request getting a
754 * response and going ahead and killing cifsd.
755 */
756 cFYI(1, "Wait for exit from demultiplex thread");
757 msleep(46000);
758 /*
759 * If threads still have not exited they are probably never
760 * coming home not much else we can do but free the memory.
761 */
762 }
763
764 kfree(server->hostname);
1041e3f9 765 kfree(server->iov);
762dfd10
PS
766 kfree(server);
767
768 length = atomic_dec_return(&tcpSesAllocCount);
769 if (length > 0)
770 mempool_resize(cifs_req_poolp, length + cifs_min_rcv,
771 GFP_KERNEL);
772}
773
e9097ab4
JL
774static int
775standard_receive3(struct TCP_Server_Info *server, struct mid_q_entry *mid)
776{
777 int length;
778 char *buf = server->smallbuf;
d4e4854f 779 unsigned int pdu_length = get_rfc1002_length(buf);
e9097ab4
JL
780
781 /* make sure this will fit in a large buffer */
1887f601 782 if (pdu_length > CIFSMaxBufSize + MAX_HEADER_SIZE(server) - 4) {
e9097ab4
JL
783 cERROR(1, "SMB response too long (%u bytes)",
784 pdu_length);
785 cifs_reconnect(server);
786 wake_up(&server->response_q);
787 return -EAGAIN;
788 }
789
790 /* switch to large buffer if too big for a small one */
791 if (pdu_length > MAX_CIFS_SMALL_BUFFER_SIZE - 4) {
792 server->large_buf = true;
d4e4854f 793 memcpy(server->bigbuf, buf, server->total_read);
e9097ab4 794 buf = server->bigbuf;
e9097ab4
JL
795 }
796
797 /* now read the rest */
1887f601
PS
798 length = cifs_read_from_socket(server, buf + HEADER_SIZE(server) - 1,
799 pdu_length - HEADER_SIZE(server) + 1 + 4);
e9097ab4
JL
800 if (length < 0)
801 return length;
802 server->total_read += length;
803
d4e4854f 804 dump_smb(buf, server->total_read);
e9097ab4
JL
805
806 /*
807 * We know that we received enough to get to the MID as we
808 * checked the pdu_length earlier. Now check to see
809 * if the rest of the header is OK. We borrow the length
810 * var for the rest of the loop to avoid a new stack var.
811 *
812 * 48 bytes is enough to display the header and a little bit
813 * into the payload for debugging purposes.
814 */
8aa26f3e 815 length = server->ops->check_message(buf, server->total_read);
e9097ab4
JL
816 if (length != 0)
817 cifs_dump_mem("Bad SMB: ", buf,
818 min_t(unsigned int, server->total_read, 48));
819
ff4fa4a2
JL
820 if (!mid)
821 return length;
e9097ab4 822
d4e4854f 823 handle_mid(mid, server, buf, length);
ff4fa4a2 824 return 0;
e9097ab4
JL
825}
826
1da177e4 827static int
7c97c200 828cifs_demultiplex_thread(void *p)
1da177e4
LT
829{
830 int length;
7c97c200 831 struct TCP_Server_Info *server = p;
2a37ef94
JL
832 unsigned int pdu_length;
833 char *buf = NULL;
1da177e4
LT
834 struct task_struct *task_to_wake = NULL;
835 struct mid_q_entry *mid_entry;
1da177e4 836
1da177e4 837 current->flags |= PF_MEMALLOC;
b6b38f70 838 cFYI(1, "Demultiplex PID: %d", task_pid_nr(current));
93d0ec85
JL
839
840 length = atomic_inc_return(&tcpSesAllocCount);
841 if (length > 1)
26f57364
SF
842 mempool_resize(cifs_req_poolp, length + cifs_min_rcv,
843 GFP_KERNEL);
1da177e4 844
83144186 845 set_freezable();
469ee614 846 while (server->tcpStatus != CifsExiting) {
ede1327e
SF
847 if (try_to_freeze())
848 continue;
b8643e1b 849
2a37ef94 850 if (!allocate_buffers(server))
3d9c2472 851 continue;
b8643e1b 852
2a37ef94 853 server->large_buf = false;
2a37ef94 854 buf = server->smallbuf;
f01d5e14 855 pdu_length = 4; /* enough to get RFC1001 header */
fda35943 856
e28bc5b1 857 length = cifs_read_from_socket(server, buf, pdu_length);
a52c1eb7 858 if (length < 0)
1da177e4 859 continue;
2a37ef94 860 server->total_read = length;
1da177e4 861
98bac62c
PS
862 /*
863 * The right amount was read from socket - 4 bytes,
864 * so we can now interpret the length field.
865 */
d4e4854f 866 pdu_length = get_rfc1002_length(buf);
70ca734a 867
fe11e4cc
JL
868 cFYI(1, "RFC1002 header 0x%x", pdu_length);
869 if (!is_smb_response(server, buf[0]))
fb8c4b14 870 continue;
e4eb295d 871
89482a56 872 /* make sure we have enough to get to the MID */
1887f601 873 if (pdu_length < HEADER_SIZE(server) - 1 - 4) {
89482a56
JL
874 cERROR(1, "SMB response too short (%u bytes)",
875 pdu_length);
876 cifs_reconnect(server);
877 wake_up(&server->response_q);
878 continue;
e4eb295d 879 }
e7015fb1 880
89482a56 881 /* read down to the MID */
e28bc5b1 882 length = cifs_read_from_socket(server, buf + 4,
1887f601 883 HEADER_SIZE(server) - 1 - 4);
89482a56 884 if (length < 0)
e4eb295d 885 continue;
2a37ef94 886 server->total_read += length;
1da177e4 887
8aa26f3e 888 mid_entry = server->ops->find_mid(server, buf);
50c2f753 889
44d22d84
JL
890 if (!mid_entry || !mid_entry->receive)
891 length = standard_receive3(server, mid_entry);
892 else
893 length = mid_entry->receive(server, mid_entry);
71823baf 894
e9097ab4 895 if (length < 0)
fe11e4cc 896 continue;
1da177e4 897
d4e4854f 898 if (server->large_buf)
2a37ef94 899 buf = server->bigbuf;
fda35943 900
fda35943 901 server->lstrp = jiffies;
2b84a36c 902 if (mid_entry != NULL) {
2a37ef94
JL
903 if (!mid_entry->multiRsp || mid_entry->multiEnd)
904 mid_entry->callback(mid_entry);
7f0adb53
PS
905 } else if (!server->ops->is_oplock_break ||
906 !server->ops->is_oplock_break(buf, server)) {
b6b38f70 907 cERROR(1, "No task to wake, unknown frame received! "
8097531a 908 "NumMids %d", atomic_read(&midCount));
1887f601
PS
909 cifs_dump_mem("Received Data is: ", buf,
910 HEADER_SIZE(server));
3979877e 911#ifdef CONFIG_CIFS_DEBUG2
7f0adb53
PS
912 if (server->ops->dump_detail)
913 server->ops->dump_detail(buf);
3979877e
SF
914 cifs_dump_mids(server);
915#endif /* CIFS_DEBUG2 */
50c2f753 916
e4eb295d
SF
917 }
918 } /* end while !EXITING */
919
fd62cb7e 920 /* buffer usually freed in free_mid - need to free it here on exit */
2a37ef94
JL
921 cifs_buf_release(server->bigbuf);
922 if (server->smallbuf) /* no sense logging a debug message if NULL */
923 cifs_small_buf_release(server->smallbuf);
1da177e4 924
b1c8d2b4 925 task_to_wake = xchg(&server->tsk, NULL);
762dfd10 926 clean_demultiplex_info(server);
50c2f753 927
b1c8d2b4
JL
928 /* if server->tsk was NULL then wait for a signal before exiting */
929 if (!task_to_wake) {
930 set_current_state(TASK_INTERRUPTIBLE);
931 while (!signal_pending(current)) {
932 schedule();
933 set_current_state(TASK_INTERRUPTIBLE);
934 }
935 set_current_state(TASK_RUNNING);
936 }
937
0468a2cf 938 module_put_and_exit(0);
1da177e4
LT
939}
940
c359cf3c
JL
941/* extract the host portion of the UNC string */
942static char *
943extract_hostname(const char *unc)
944{
945 const char *src;
946 char *dst, *delim;
947 unsigned int len;
948
949 /* skip double chars at beginning of string */
950 /* BB: check validity of these bytes? */
951 src = unc + 2;
952
953 /* delimiter between hostname and sharename is always '\\' now */
954 delim = strchr(src, '\\');
955 if (!delim)
956 return ERR_PTR(-EINVAL);
957
958 len = delim - src;
959 dst = kmalloc((len + 1), GFP_KERNEL);
960 if (dst == NULL)
961 return ERR_PTR(-ENOMEM);
962
963 memcpy(dst, src, len);
964 dst[len] = '\0';
965
966 return dst;
967}
968
8830d7e0
SP
969static int get_option_ul(substring_t args[], unsigned long *option)
970{
971 int rc;
972 char *string;
973
974 string = match_strdup(args);
975 if (string == NULL)
976 return -ENOMEM;
bfa890a3 977 rc = kstrtoul(string, 0, option);
8830d7e0
SP
978 kfree(string);
979
980 return rc;
981}
982
983
984static int cifs_parse_security_flavors(char *value,
985 struct smb_vol *vol)
986{
987
988 substring_t args[MAX_OPT_ARGS];
989
990 switch (match_token(value, cifs_secflavor_tokens, args)) {
991 case Opt_sec_krb5:
992 vol->secFlg |= CIFSSEC_MAY_KRB5;
993 break;
994 case Opt_sec_krb5i:
995 vol->secFlg |= CIFSSEC_MAY_KRB5 | CIFSSEC_MUST_SIGN;
996 break;
997 case Opt_sec_krb5p:
998 /* vol->secFlg |= CIFSSEC_MUST_SEAL | CIFSSEC_MAY_KRB5; */
999 cERROR(1, "Krb5 cifs privacy not supported");
1000 break;
1001 case Opt_sec_ntlmssp:
1002 vol->secFlg |= CIFSSEC_MAY_NTLMSSP;
1003 break;
1004 case Opt_sec_ntlmsspi:
1005 vol->secFlg |= CIFSSEC_MAY_NTLMSSP | CIFSSEC_MUST_SIGN;
1006 break;
1007 case Opt_ntlm:
1008 /* ntlm is default so can be turned off too */
1009 vol->secFlg |= CIFSSEC_MAY_NTLM;
1010 break;
1011 case Opt_sec_ntlmi:
1012 vol->secFlg |= CIFSSEC_MAY_NTLM | CIFSSEC_MUST_SIGN;
1013 break;
7659624f 1014 case Opt_sec_ntlmv2:
8830d7e0
SP
1015 vol->secFlg |= CIFSSEC_MAY_NTLMV2;
1016 break;
1017 case Opt_sec_ntlmv2i:
1018 vol->secFlg |= CIFSSEC_MAY_NTLMV2 | CIFSSEC_MUST_SIGN;
1019 break;
1020#ifdef CONFIG_CIFS_WEAK_PW_HASH
1021 case Opt_sec_lanman:
1022 vol->secFlg |= CIFSSEC_MAY_LANMAN;
1023 break;
1024#endif
1025 case Opt_sec_none:
1026 vol->nullauth = 1;
1027 break;
1028 default:
1029 cERROR(1, "bad security option: %s", value);
1030 return 1;
1031 }
1032
1033 return 0;
1034}
1035
15b6a473
JL
1036static int
1037cifs_parse_cache_flavor(char *value, struct smb_vol *vol)
1038{
1039 substring_t args[MAX_OPT_ARGS];
1040
1041 switch (match_token(value, cifs_cacheflavor_tokens, args)) {
1042 case Opt_cache_loose:
1043 vol->direct_io = false;
1044 vol->strict_io = false;
1045 break;
1046 case Opt_cache_strict:
1047 vol->direct_io = false;
1048 vol->strict_io = true;
1049 break;
1050 case Opt_cache_none:
1051 vol->direct_io = true;
1052 vol->strict_io = false;
1053 break;
1054 default:
1055 cERROR(1, "bad cache= option: %s", value);
1056 return 1;
1057 }
1058 return 0;
1059}
1060
23db65f5
JL
1061static int
1062cifs_parse_smb_version(char *value, struct smb_vol *vol)
1063{
1064 substring_t args[MAX_OPT_ARGS];
1065
1066 switch (match_token(value, cifs_smb_version_tokens, args)) {
1067 case Smb_1:
1068 vol->ops = &smb1_operations;
1069 vol->vals = &smb1_values;
1070 break;
1080ef75
SF
1071#ifdef CONFIG_CIFS_SMB2
1072 case Smb_21:
1073 vol->ops = &smb21_operations;
1074 vol->vals = &smb21_values;
1075 break;
1076#endif
23db65f5
JL
1077 default:
1078 cERROR(1, "Unknown vers= option specified: %s", value);
1079 return 1;
1080 }
1081 return 0;
1082}
1083
1da177e4 1084static int
b946845a 1085cifs_parse_mount_options(const char *mountdata, const char *devname,
50c2f753 1086 struct smb_vol *vol)
1da177e4 1087{
8830d7e0 1088 char *data, *end;
957df453 1089 char *mountdata_copy = NULL, *options;
1da177e4
LT
1090 unsigned int temp_len, i, j;
1091 char separator[2];
9b9d6b24
JL
1092 short int override_uid = -1;
1093 short int override_gid = -1;
1094 bool uid_specified = false;
1095 bool gid_specified = false;
d8162558
JL
1096 bool sloppy = false;
1097 char *invalid = NULL;
88463999 1098 char *nodename = utsname()->nodename;
8830d7e0
SP
1099 char *string = NULL;
1100 char *tmp_end, *value;
1101 char delim;
296838b1
JL
1102 bool cache_specified = false;
1103 static bool cache_warned = false;
1da177e4
LT
1104
1105 separator[0] = ',';
50c2f753 1106 separator[1] = 0;
8830d7e0 1107 delim = separator[0];
1da177e4 1108
88463999
JL
1109 /*
1110 * does not have to be perfect mapping since field is
1111 * informational, only used for servers that do not support
1112 * port 445 and it can be overridden at mount time
1113 */
1397f2ee
JL
1114 memset(vol->source_rfc1001_name, 0x20, RFC1001_NAME_LEN);
1115 for (i = 0; i < strnlen(nodename, RFC1001_NAME_LEN); i++)
88463999
JL
1116 vol->source_rfc1001_name[i] = toupper(nodename[i]);
1117
1397f2ee 1118 vol->source_rfc1001_name[RFC1001_NAME_LEN] = 0;
a10faeb2
SF
1119 /* null target name indicates to use *SMBSERVR default called name
1120 if we end up sending RFC1001 session initialize */
1121 vol->target_rfc1001_name[0] = 0;
3e4b3e1f
JL
1122 vol->cred_uid = current_uid();
1123 vol->linux_uid = current_uid();
a001e5b5 1124 vol->linux_gid = current_gid();
f55ed1a8
JL
1125
1126 /* default to only allowing write access to owner of the mount */
1127 vol->dir_mode = vol->file_mode = S_IRUGO | S_IXUGO | S_IWUSR;
1da177e4
LT
1128
1129 /* vol->retry default is 0 (i.e. "soft" limited retry not hard retry) */
ac67055e
JA
1130 /* default is always to request posix paths. */
1131 vol->posix_paths = 1;
a0c9217f
JL
1132 /* default to using server inode numbers where available */
1133 vol->server_ino = 1;
ac67055e 1134
6d20e840
SJ
1135 vol->actimeo = CIFS_DEF_ACTIMEO;
1136
23db65f5
JL
1137 /* FIXME: add autonegotiation -- for now, SMB1 is default */
1138 vol->ops = &smb1_operations;
1139 vol->vals = &smb1_values;
1140
b946845a
SF
1141 if (!mountdata)
1142 goto cifs_parse_mount_err;
1143
1144 mountdata_copy = kstrndup(mountdata, PAGE_SIZE, GFP_KERNEL);
1145 if (!mountdata_copy)
1146 goto cifs_parse_mount_err;
1da177e4 1147
b946845a 1148 options = mountdata_copy;
4906e50b 1149 end = options + strlen(options);
8830d7e0 1150
50c2f753 1151 if (strncmp(options, "sep=", 4) == 0) {
fb8c4b14 1152 if (options[4] != 0) {
1da177e4
LT
1153 separator[0] = options[4];
1154 options += 5;
1155 } else {
b6b38f70 1156 cFYI(1, "Null separator not allowed");
1da177e4
LT
1157 }
1158 }
3d3ea8e6
SP
1159 vol->backupuid_specified = false; /* no backup intent for a user */
1160 vol->backupgid_specified = false; /* no backup intent for a group */
50c2f753 1161
1da177e4 1162 while ((data = strsep(&options, separator)) != NULL) {
8830d7e0
SP
1163 substring_t args[MAX_OPT_ARGS];
1164 unsigned long option;
1165 int token;
1166
1da177e4
LT
1167 if (!*data)
1168 continue;
1da177e4 1169
8830d7e0
SP
1170 token = match_token(data, cifs_mount_option_tokens, args);
1171
1172 switch (token) {
1173
1174 /* Ingnore the following */
1175 case Opt_ignore:
1176 break;
1177
1178 /* Boolean values */
1179 case Opt_user_xattr:
1da177e4 1180 vol->no_xattr = 0;
8830d7e0
SP
1181 break;
1182 case Opt_nouser_xattr:
1da177e4 1183 vol->no_xattr = 1;
8830d7e0
SP
1184 break;
1185 case Opt_forceuid:
9b9d6b24 1186 override_uid = 1;
8830d7e0
SP
1187 break;
1188 case Opt_noforceuid:
9b9d6b24 1189 override_uid = 0;
8830d7e0
SP
1190 break;
1191 case Opt_noblocksend:
edf1ae40 1192 vol->noblocksnd = 1;
8830d7e0
SP
1193 break;
1194 case Opt_noautotune:
edf1ae40 1195 vol->noautotune = 1;
8830d7e0
SP
1196 break;
1197 case Opt_hard:
1da177e4 1198 vol->retry = 1;
8830d7e0
SP
1199 break;
1200 case Opt_soft:
1da177e4 1201 vol->retry = 0;
8830d7e0
SP
1202 break;
1203 case Opt_perm:
1da177e4 1204 vol->noperm = 0;
8830d7e0
SP
1205 break;
1206 case Opt_noperm:
1da177e4 1207 vol->noperm = 1;
8830d7e0
SP
1208 break;
1209 case Opt_mapchars:
6a0b4824 1210 vol->remap = 1;
8830d7e0
SP
1211 break;
1212 case Opt_nomapchars:
6a0b4824 1213 vol->remap = 0;
8830d7e0
SP
1214 break;
1215 case Opt_sfu:
50c2f753 1216 vol->sfu_emul = 1;
8830d7e0
SP
1217 break;
1218 case Opt_nosfu:
50c2f753 1219 vol->sfu_emul = 0;
8830d7e0
SP
1220 break;
1221 case Opt_nodfs:
2c1b8615 1222 vol->nodfs = 1;
8830d7e0
SP
1223 break;
1224 case Opt_posixpaths:
ac67055e 1225 vol->posix_paths = 1;
8830d7e0
SP
1226 break;
1227 case Opt_noposixpaths:
ac67055e 1228 vol->posix_paths = 0;
8830d7e0
SP
1229 break;
1230 case Opt_nounix:
c18c842b 1231 vol->no_linux_ext = 1;
8830d7e0
SP
1232 break;
1233 case Opt_nocase:
50c2f753 1234 vol->nocase = 1;
8830d7e0
SP
1235 break;
1236 case Opt_brl:
c46fa8ac 1237 vol->nobrl = 0;
8830d7e0
SP
1238 break;
1239 case Opt_nobrl:
c46fa8ac 1240 vol->nobrl = 1;
5cfdddcf
PS
1241 /*
1242 * turn off mandatory locking in mode
8830d7e0 1243 * if remote locking is turned off since the
5cfdddcf
PS
1244 * local vfs will do advisory
1245 */
50c2f753
SF
1246 if (vol->file_mode ==
1247 (S_IALLUGO & ~(S_ISUID | S_IXGRP)))
d3485d37 1248 vol->file_mode = S_IALLUGO;
8830d7e0
SP
1249 break;
1250 case Opt_forcemandatorylock:
13a6e42a 1251 vol->mand_lock = 1;
8830d7e0
SP
1252 break;
1253 case Opt_setuids:
1da177e4 1254 vol->setuids = 1;
8830d7e0
SP
1255 break;
1256 case Opt_nosetuids:
1da177e4 1257 vol->setuids = 0;
8830d7e0
SP
1258 break;
1259 case Opt_dynperm:
d0a9c078 1260 vol->dynperm = true;
8830d7e0
SP
1261 break;
1262 case Opt_nodynperm:
d0a9c078 1263 vol->dynperm = false;
8830d7e0
SP
1264 break;
1265 case Opt_nohard:
1da177e4 1266 vol->retry = 0;
8830d7e0
SP
1267 break;
1268 case Opt_nosoft:
1da177e4 1269 vol->retry = 1;
8830d7e0
SP
1270 break;
1271 case Opt_nointr:
1da177e4 1272 vol->intr = 0;
8830d7e0
SP
1273 break;
1274 case Opt_intr:
1da177e4 1275 vol->intr = 1;
8830d7e0
SP
1276 break;
1277 case Opt_nostrictsync:
be652445 1278 vol->nostrictsync = 1;
8830d7e0
SP
1279 break;
1280 case Opt_strictsync:
be652445 1281 vol->nostrictsync = 0;
8830d7e0
SP
1282 break;
1283 case Opt_serverino:
1da177e4 1284 vol->server_ino = 1;
8830d7e0
SP
1285 break;
1286 case Opt_noserverino:
1da177e4 1287 vol->server_ino = 0;
8830d7e0
SP
1288 break;
1289 case Opt_rwpidforward:
d4ffff1f 1290 vol->rwpidforward = 1;
8830d7e0
SP
1291 break;
1292 case Opt_cifsacl:
0a4b92c0 1293 vol->cifs_acl = 1;
8830d7e0
SP
1294 break;
1295 case Opt_nocifsacl:
0a4b92c0 1296 vol->cifs_acl = 0;
8830d7e0
SP
1297 break;
1298 case Opt_acl:
1da177e4 1299 vol->no_psx_acl = 0;
8830d7e0
SP
1300 break;
1301 case Opt_noacl:
1da177e4 1302 vol->no_psx_acl = 1;
8830d7e0
SP
1303 break;
1304 case Opt_locallease:
84210e91 1305 vol->local_lease = 1;
8830d7e0
SP
1306 break;
1307 case Opt_sign:
750d1151 1308 vol->secFlg |= CIFSSEC_MUST_SIGN;
8830d7e0
SP
1309 break;
1310 case Opt_seal:
95b1cb90 1311 /* we do not do the following in secFlags because seal
8830d7e0
SP
1312 * is a per tree connection (mount) not a per socket
1313 * or per-smb connection option in the protocol
1314 * vol->secFlg |= CIFSSEC_MUST_SEAL;
1315 */
95b1cb90 1316 vol->seal = 1;
8830d7e0
SP
1317 break;
1318 case Opt_direct:
296838b1 1319 cache_specified = true;
15b6a473
JL
1320 vol->direct_io = true;
1321 vol->strict_io = false;
09983b2f
JL
1322 cERROR(1, "The \"directio\" option will be removed in "
1323 "3.7. Please switch to the \"cache=none\" "
1324 "option.");
8830d7e0
SP
1325 break;
1326 case Opt_strictcache:
296838b1 1327 cache_specified = true;
15b6a473
JL
1328 vol->direct_io = false;
1329 vol->strict_io = true;
09983b2f
JL
1330 cERROR(1, "The \"strictcache\" option will be removed "
1331 "in 3.7. Please switch to the \"cache=strict\" "
1332 "option.");
8830d7e0
SP
1333 break;
1334 case Opt_noac:
50c2f753
SF
1335 printk(KERN_WARNING "CIFS: Mount option noac not "
1336 "supported. Instead set "
1337 "/proc/fs/cifs/LookupCacheEnabled to 0\n");
8830d7e0
SP
1338 break;
1339 case Opt_fsc:
607a569d 1340#ifndef CONFIG_CIFS_FSCACHE
83fb086e 1341 cERROR(1, "FS-Cache support needs CONFIG_CIFS_FSCACHE "
607a569d 1342 "kernel config option set");
b946845a 1343 goto cifs_parse_mount_err;
607a569d 1344#endif
fa1df75d 1345 vol->fsc = true;
8830d7e0
SP
1346 break;
1347 case Opt_mfsymlinks:
736a3320 1348 vol->mfsymlinks = true;
8830d7e0
SP
1349 break;
1350 case Opt_multiuser:
0eb8a132 1351 vol->multiuser = true;
8830d7e0 1352 break;
d8162558
JL
1353 case Opt_sloppy:
1354 sloppy = true;
1355 break;
8830d7e0
SP
1356
1357 /* Numeric Values */
1358 case Opt_backupuid:
1359 if (get_option_ul(args, &option)) {
3d3ea8e6
SP
1360 cERROR(1, "%s: Invalid backupuid value",
1361 __func__);
1362 goto cifs_parse_mount_err;
1363 }
8830d7e0 1364 vol->backupuid = option;
3d3ea8e6 1365 vol->backupuid_specified = true;
8830d7e0
SP
1366 break;
1367 case Opt_backupgid:
1368 if (get_option_ul(args, &option)) {
3d3ea8e6
SP
1369 cERROR(1, "%s: Invalid backupgid value",
1370 __func__);
1371 goto cifs_parse_mount_err;
1372 }
8830d7e0 1373 vol->backupgid = option;
3d3ea8e6 1374 vol->backupgid_specified = true;
8830d7e0
SP
1375 break;
1376 case Opt_uid:
1377 if (get_option_ul(args, &option)) {
1378 cERROR(1, "%s: Invalid uid value",
1379 __func__);
1380 goto cifs_parse_mount_err;
1381 }
1382 vol->linux_uid = option;
1383 uid_specified = true;
1384 break;
1385 case Opt_cruid:
1386 if (get_option_ul(args, &option)) {
1387 cERROR(1, "%s: Invalid cruid value",
1388 __func__);
1389 goto cifs_parse_mount_err;
1390 }
1391 vol->cred_uid = option;
1392 break;
1393 case Opt_gid:
1394 if (get_option_ul(args, &option)) {
1395 cERROR(1, "%s: Invalid gid value",
1396 __func__);
1397 goto cifs_parse_mount_err;
1398 }
1399 vol->linux_gid = option;
1400 gid_specified = true;
1401 break;
1402 case Opt_file_mode:
1403 if (get_option_ul(args, &option)) {
1404 cERROR(1, "%s: Invalid file_mode value",
1405 __func__);
1406 goto cifs_parse_mount_err;
1407 }
1408 vol->file_mode = option;
1409 break;
1410 case Opt_dirmode:
1411 if (get_option_ul(args, &option)) {
1412 cERROR(1, "%s: Invalid dir_mode value",
1413 __func__);
1414 goto cifs_parse_mount_err;
1415 }
1416 vol->dir_mode = option;
1417 break;
1418 case Opt_port:
1419 if (get_option_ul(args, &option)) {
1420 cERROR(1, "%s: Invalid port value",
1421 __func__);
1422 goto cifs_parse_mount_err;
1423 }
1424 vol->port = option;
1425 break;
1426 case Opt_rsize:
1427 if (get_option_ul(args, &option)) {
1428 cERROR(1, "%s: Invalid rsize value",
1429 __func__);
b946845a 1430 goto cifs_parse_mount_err;
8830d7e0
SP
1431 }
1432 vol->rsize = option;
1433 break;
1434 case Opt_wsize:
1435 if (get_option_ul(args, &option)) {
1436 cERROR(1, "%s: Invalid wsize value",
1437 __func__);
1438 goto cifs_parse_mount_err;
1439 }
1440 vol->wsize = option;
1441 break;
1442 case Opt_actimeo:
1443 if (get_option_ul(args, &option)) {
1444 cERROR(1, "%s: Invalid actimeo value",
1445 __func__);
1446 goto cifs_parse_mount_err;
1447 }
1448 vol->actimeo = HZ * option;
1449 if (vol->actimeo > CIFS_MAX_ACTIMEO) {
1450 cERROR(1, "CIFS: attribute cache"
1451 "timeout too large");
1452 goto cifs_parse_mount_err;
1453 }
1454 break;
1455
1456 /* String Arguments */
1457
4fe9e963
SP
1458 case Opt_blank_user:
1459 /* null user, ie. anonymous authentication */
1460 vol->nullauth = 1;
1461 vol->username = NULL;
1462 break;
8830d7e0
SP
1463 case Opt_user:
1464 string = match_strdup(args);
1465 if (string == NULL)
1466 goto out_nomem;
1467
4fe9e963 1468 if (strnlen(string, MAX_USERNAME_SIZE) >
8830d7e0
SP
1469 MAX_USERNAME_SIZE) {
1470 printk(KERN_WARNING "CIFS: username too long\n");
1471 goto cifs_parse_mount_err;
1472 }
1473 vol->username = kstrdup(string, GFP_KERNEL);
1474 if (!vol->username) {
1475 printk(KERN_WARNING "CIFS: no memory "
1476 "for username\n");
1477 goto cifs_parse_mount_err;
1478 }
1479 break;
1480 case Opt_blank_pass:
1481 vol->password = NULL;
1482 break;
1483 case Opt_pass:
1484 /* passwords have to be handled differently
1485 * to allow the character used for deliminator
1486 * to be passed within them
1487 */
1488
1489 /* Obtain the value string */
1490 value = strchr(data, '=');
10238074 1491 value++;
8830d7e0
SP
1492
1493 /* Set tmp_end to end of the string */
1494 tmp_end = (char *) value + strlen(value);
1495
1496 /* Check if following character is the deliminator
1497 * If yes, we have encountered a double deliminator
1498 * reset the NULL character to the deliminator
1499 */
e73f843a 1500 if (tmp_end < end && tmp_end[1] == delim) {
8830d7e0
SP
1501 tmp_end[0] = delim;
1502
e73f843a
SJ
1503 /* Keep iterating until we get to a single
1504 * deliminator OR the end
1505 */
1506 while ((tmp_end = strchr(tmp_end, delim))
1507 != NULL && (tmp_end[1] == delim)) {
1508 tmp_end = (char *) &tmp_end[2];
1509 }
1510
1511 /* Reset var options to point to next element */
1512 if (tmp_end) {
1513 tmp_end[0] = '\0';
1514 options = (char *) &tmp_end[1];
1515 } else
1516 /* Reached the end of the mount option
1517 * string */
1518 options = end;
8830d7e0
SP
1519 }
1520
8830d7e0
SP
1521 /* Now build new password string */
1522 temp_len = strlen(value);
1523 vol->password = kzalloc(temp_len+1, GFP_KERNEL);
1524 if (vol->password == NULL) {
1525 printk(KERN_WARNING "CIFS: no memory "
1526 "for password\n");
1527 goto cifs_parse_mount_err;
1528 }
1529
1530 for (i = 0, j = 0; i < temp_len; i++, j++) {
1531 vol->password[j] = value[i];
1532 if ((value[i] == delim) &&
1533 value[i+1] == delim)
1534 /* skip the second deliminator */
1535 i++;
1536 }
1537 vol->password[j] = '\0';
1538 break;
4fe9e963
SP
1539 case Opt_blank_ip:
1540 vol->UNCip = NULL;
1541 break;
8830d7e0
SP
1542 case Opt_ip:
1543 string = match_strdup(args);
1544 if (string == NULL)
1545 goto out_nomem;
1546
4fe9e963 1547 if (strnlen(string, INET6_ADDRSTRLEN) >
8830d7e0
SP
1548 INET6_ADDRSTRLEN) {
1549 printk(KERN_WARNING "CIFS: ip address "
1550 "too long\n");
1551 goto cifs_parse_mount_err;
1552 }
1553 vol->UNCip = kstrdup(string, GFP_KERNEL);
1554 if (!vol->UNCip) {
1555 printk(KERN_WARNING "CIFS: no memory "
1556 "for UNC IP\n");
1557 goto cifs_parse_mount_err;
1558 }
1559 break;
1560 case Opt_unc:
1561 string = match_strdup(args);
1562 if (string == NULL)
1563 goto out_nomem;
1564
8830d7e0
SP
1565 temp_len = strnlen(string, 300);
1566 if (temp_len == 300) {
1567 printk(KERN_WARNING "CIFS: UNC name too long\n");
1568 goto cifs_parse_mount_err;
1569 }
1570
e4b41fb9
SP
1571 vol->UNC = kmalloc(temp_len+1, GFP_KERNEL);
1572 if (vol->UNC == NULL) {
1573 printk(KERN_WARNING "CIFS: no memory for UNC\n");
1574 goto cifs_parse_mount_err;
1575 }
1576 strcpy(vol->UNC, string);
1577
8830d7e0 1578 if (strncmp(string, "//", 2) == 0) {
1da177e4
LT
1579 vol->UNC[0] = '\\';
1580 vol->UNC[1] = '\\';
8830d7e0 1581 } else if (strncmp(string, "\\\\", 2) != 0) {
50c2f753 1582 printk(KERN_WARNING "CIFS: UNC Path does not "
8830d7e0 1583 "begin with // or \\\\\n");
b946845a 1584 goto cifs_parse_mount_err;
1da177e4 1585 }
8830d7e0 1586
8830d7e0
SP
1587 break;
1588 case Opt_domain:
1589 string = match_strdup(args);
1590 if (string == NULL)
1591 goto out_nomem;
1592
4fe9e963 1593 if (strnlen(string, 256) == 256) {
8830d7e0
SP
1594 printk(KERN_WARNING "CIFS: domain name too"
1595 " long\n");
1596 goto cifs_parse_mount_err;
1597 }
1598
1599 vol->domainname = kstrdup(string, GFP_KERNEL);
1600 if (!vol->domainname) {
1601 printk(KERN_WARNING "CIFS: no memory "
1602 "for domainname\n");
1603 goto cifs_parse_mount_err;
1604 }
1605 cFYI(1, "Domain name set");
1606 break;
1607 case Opt_srcaddr:
1608 string = match_strdup(args);
1609 if (string == NULL)
1610 goto out_nomem;
1611
4fe9e963 1612 if (!cifs_convert_address(
8830d7e0
SP
1613 (struct sockaddr *)&vol->srcaddr,
1614 string, strlen(string))) {
1615 printk(KERN_WARNING "CIFS: Could not parse"
1616 " srcaddr: %s\n", string);
1617 goto cifs_parse_mount_err;
1618 }
1619 break;
1620 case Opt_prefixpath:
1621 string = match_strdup(args);
1622 if (string == NULL)
1623 goto out_nomem;
1624
8830d7e0
SP
1625 temp_len = strnlen(string, 1024);
1626 if (string[0] != '/')
1627 temp_len++; /* missing leading slash */
1628 if (temp_len > 1024) {
1629 printk(KERN_WARNING "CIFS: prefix too long\n");
1630 goto cifs_parse_mount_err;
1631 }
1632
1633 vol->prepath = kmalloc(temp_len+1, GFP_KERNEL);
1634 if (vol->prepath == NULL) {
1635 printk(KERN_WARNING "CIFS: no memory "
1636 "for path prefix\n");
1637 goto cifs_parse_mount_err;
1638 }
1639
1640 if (string[0] != '/') {
1641 vol->prepath[0] = '/';
1642 strcpy(vol->prepath+1, string);
1643 } else
1644 strcpy(vol->prepath, string);
1645
1646 break;
1647 case Opt_iocharset:
1648 string = match_strdup(args);
1649 if (string == NULL)
1650 goto out_nomem;
1651
4fe9e963 1652 if (strnlen(string, 1024) >= 65) {
8830d7e0
SP
1653 printk(KERN_WARNING "CIFS: iocharset name "
1654 "too long.\n");
1655 goto cifs_parse_mount_err;
1656 }
1657
1658 if (strnicmp(string, "default", 7) != 0) {
1659 vol->iocharset = kstrdup(string,
1660 GFP_KERNEL);
1661 if (!vol->iocharset) {
1662 printk(KERN_WARNING "CIFS: no memory"
1663 "for charset\n");
1664 goto cifs_parse_mount_err;
1665 }
1666 }
1667 /* if iocharset not set then load_nls_default
1668 * is used by caller
1669 */
1670 cFYI(1, "iocharset set to %s", string);
1671 break;
1672 case Opt_sockopt:
1673 string = match_strdup(args);
1674 if (string == NULL)
1675 goto out_nomem;
1676
8830d7e0
SP
1677 if (strnicmp(string, "TCP_NODELAY", 11) == 0)
1678 vol->sockopt_tcp_nodelay = 1;
1679 break;
1680 case Opt_netbiosname:
1681 string = match_strdup(args);
1682 if (string == NULL)
1683 goto out_nomem;
1684
8830d7e0
SP
1685 memset(vol->source_rfc1001_name, 0x20,
1686 RFC1001_NAME_LEN);
1687 /*
1688 * FIXME: are there cases in which a comma can
1689 * be valid in workstation netbios name (and
1690 * need special handling)?
1691 */
1692 for (i = 0; i < RFC1001_NAME_LEN; i++) {
1693 /* don't ucase netbiosname for user */
1694 if (string[i] == 0)
1695 break;
1696 vol->source_rfc1001_name[i] = string[i];
1697 }
1698 /* The string has 16th byte zero still from
1699 * set at top of the function
1700 */
1701 if (i == RFC1001_NAME_LEN && string[i] != 0)
1702 printk(KERN_WARNING "CIFS: netbiosname"
1703 " longer than 15 truncated.\n");
1704
1705 break;
1706 case Opt_servern:
1707 /* servernetbiosname specified override *SMBSERVER */
1708 string = match_strdup(args);
1709 if (string == NULL)
1710 goto out_nomem;
1711
8830d7e0
SP
1712 /* last byte, type, is 0x20 for servr type */
1713 memset(vol->target_rfc1001_name, 0x20,
1714 RFC1001_NAME_LEN_WITH_NULL);
1715
1716 /* BB are there cases in which a comma can be
1717 valid in this workstation netbios name
1718 (and need special handling)? */
1719
1720 /* user or mount helper must uppercase the
1721 netbios name */
1722 for (i = 0; i < 15; i++) {
1723 if (string[i] == 0)
1724 break;
1725 vol->target_rfc1001_name[i] = string[i];
1726 }
1727 /* The string has 16th byte zero still from
1728 set at top of the function */
1729 if (i == RFC1001_NAME_LEN && string[i] != 0)
1730 printk(KERN_WARNING "CIFS: server net"
1731 "biosname longer than 15 truncated.\n");
1732 break;
1733 case Opt_ver:
1734 string = match_strdup(args);
1735 if (string == NULL)
1736 goto out_nomem;
1737
5249af32 1738 if (strnicmp(string, "1", 1) == 0) {
8830d7e0
SP
1739 /* This is the default */
1740 break;
1741 }
1742 /* For all other value, error */
1743 printk(KERN_WARNING "CIFS: Invalid version"
1744 " specified\n");
b946845a 1745 goto cifs_parse_mount_err;
23db65f5
JL
1746 case Opt_vers:
1747 string = match_strdup(args);
1748 if (string == NULL)
1749 goto out_nomem;
1750
1751 if (cifs_parse_smb_version(string, vol) != 0)
1752 goto cifs_parse_mount_err;
1753 break;
8830d7e0
SP
1754 case Opt_sec:
1755 string = match_strdup(args);
1756 if (string == NULL)
1757 goto out_nomem;
1758
8830d7e0
SP
1759 if (cifs_parse_security_flavors(string, vol) != 0)
1760 goto cifs_parse_mount_err;
1761 break;
15b6a473 1762 case Opt_cache:
296838b1 1763 cache_specified = true;
15b6a473
JL
1764 string = match_strdup(args);
1765 if (string == NULL)
1766 goto out_nomem;
1767
1768 if (cifs_parse_cache_flavor(string, vol) != 0)
1769 goto cifs_parse_mount_err;
1770 break;
8830d7e0 1771 default:
d8162558
JL
1772 /*
1773 * An option we don't recognize. Save it off for later
1774 * if we haven't already found one
1775 */
1776 if (!invalid)
1777 invalid = data;
8830d7e0 1778 break;
1da177e4 1779 }
8830d7e0
SP
1780 /* Free up any allocated string */
1781 kfree(string);
1782 string = NULL;
1da177e4 1783 }
0eb8a132 1784
d8162558
JL
1785 if (!sloppy && invalid) {
1786 printk(KERN_ERR "CIFS: Unknown mount option \"%s\"\n", invalid);
1787 goto cifs_parse_mount_err;
1788 }
1789
8a8798a5
JL
1790#ifndef CONFIG_KEYS
1791 /* Muliuser mounts require CONFIG_KEYS support */
1792 if (vol->multiuser) {
1793 cERROR(1, "Multiuser mounts require kernels with "
1794 "CONFIG_KEYS enabled.");
b946845a 1795 goto cifs_parse_mount_err;
0eb8a132 1796 }
8a8798a5 1797#endif
0eb8a132 1798
fb8c4b14 1799 if (vol->UNCip == NULL)
1da177e4
LT
1800 vol->UNCip = &vol->UNC[2];
1801
9b9d6b24
JL
1802 if (uid_specified)
1803 vol->override_uid = override_uid;
1804 else if (override_uid == 1)
1805 printk(KERN_NOTICE "CIFS: ignoring forceuid mount option "
1806 "specified with no uid= option.\n");
1807
1808 if (gid_specified)
1809 vol->override_gid = override_gid;
1810 else if (override_gid == 1)
1811 printk(KERN_NOTICE "CIFS: ignoring forcegid mount option "
1812 "specified with no gid= option.\n");
1813
296838b1
JL
1814 /* FIXME: remove this block in 3.7 */
1815 if (!cache_specified && !cache_warned) {
1816 cache_warned = true;
1817 printk(KERN_NOTICE "CIFS: no cache= option specified, using "
1818 "\"cache=loose\". This default will change "
1819 "to \"cache=strict\" in 3.7.\n");
1820 }
1821
b946845a 1822 kfree(mountdata_copy);
1da177e4 1823 return 0;
b946845a 1824
8830d7e0
SP
1825out_nomem:
1826 printk(KERN_WARNING "Could not allocate temporary buffer\n");
b946845a 1827cifs_parse_mount_err:
8830d7e0 1828 kfree(string);
b946845a
SF
1829 kfree(mountdata_copy);
1830 return 1;
1da177e4
LT
1831}
1832
3eb9a889
BG
1833/** Returns true if srcaddr isn't specified and rhs isn't
1834 * specified, or if srcaddr is specified and
1835 * matches the IP address of the rhs argument.
1836 */
1837static bool
1838srcip_matches(struct sockaddr *srcaddr, struct sockaddr *rhs)
1839{
1840 switch (srcaddr->sa_family) {
1841 case AF_UNSPEC:
1842 return (rhs->sa_family == AF_UNSPEC);
1843 case AF_INET: {
1844 struct sockaddr_in *saddr4 = (struct sockaddr_in *)srcaddr;
1845 struct sockaddr_in *vaddr4 = (struct sockaddr_in *)rhs;
1846 return (saddr4->sin_addr.s_addr == vaddr4->sin_addr.s_addr);
1847 }
1848 case AF_INET6: {
1849 struct sockaddr_in6 *saddr6 = (struct sockaddr_in6 *)srcaddr;
1850 struct sockaddr_in6 *vaddr6 = (struct sockaddr_in6 *)&rhs;
1851 return ipv6_addr_equal(&saddr6->sin6_addr, &vaddr6->sin6_addr);
1852 }
1853 default:
1854 WARN_ON(1);
1855 return false; /* don't expect to be here */
1856 }
1857}
1858
4b886136
PS
1859/*
1860 * If no port is specified in addr structure, we try to match with 445 port
1861 * and if it fails - with 139 ports. It should be called only if address
1862 * families of server and addr are equal.
1863 */
1864static bool
1865match_port(struct TCP_Server_Info *server, struct sockaddr *addr)
1866{
6da97910 1867 __be16 port, *sport;
4b886136
PS
1868
1869 switch (addr->sa_family) {
1870 case AF_INET:
1871 sport = &((struct sockaddr_in *) &server->dstaddr)->sin_port;
1872 port = ((struct sockaddr_in *) addr)->sin_port;
1873 break;
1874 case AF_INET6:
1875 sport = &((struct sockaddr_in6 *) &server->dstaddr)->sin6_port;
1876 port = ((struct sockaddr_in6 *) addr)->sin6_port;
1877 break;
1878 default:
1879 WARN_ON(1);
1880 return false;
1881 }
1882
1883 if (!port) {
1884 port = htons(CIFS_PORT);
1885 if (port == *sport)
1886 return true;
1887
1888 port = htons(RFC1001_PORT);
1889 }
1890
1891 return port == *sport;
1892}
3eb9a889 1893
4515148e 1894static bool
3eb9a889
BG
1895match_address(struct TCP_Server_Info *server, struct sockaddr *addr,
1896 struct sockaddr *srcaddr)
4515148e 1897{
4515148e 1898 switch (addr->sa_family) {
a9f1b85e
PS
1899 case AF_INET: {
1900 struct sockaddr_in *addr4 = (struct sockaddr_in *)addr;
1901 struct sockaddr_in *srv_addr4 =
1902 (struct sockaddr_in *)&server->dstaddr;
1903
1904 if (addr4->sin_addr.s_addr != srv_addr4->sin_addr.s_addr)
4515148e 1905 return false;
4515148e 1906 break;
a9f1b85e
PS
1907 }
1908 case AF_INET6: {
1909 struct sockaddr_in6 *addr6 = (struct sockaddr_in6 *)addr;
1910 struct sockaddr_in6 *srv_addr6 =
1911 (struct sockaddr_in6 *)&server->dstaddr;
1912
4515148e 1913 if (!ipv6_addr_equal(&addr6->sin6_addr,
a9f1b85e 1914 &srv_addr6->sin6_addr))
4515148e 1915 return false;
a9f1b85e 1916 if (addr6->sin6_scope_id != srv_addr6->sin6_scope_id)
4515148e 1917 return false;
4515148e
JL
1918 break;
1919 }
a9f1b85e
PS
1920 default:
1921 WARN_ON(1);
1922 return false; /* don't expect to be here */
1923 }
4515148e 1924
3eb9a889
BG
1925 if (!srcip_matches(srcaddr, (struct sockaddr *)&server->srcaddr))
1926 return false;
1927
4515148e
JL
1928 return true;
1929}
1930
daf5b0b6
JL
1931static bool
1932match_security(struct TCP_Server_Info *server, struct smb_vol *vol)
1933{
1934 unsigned int secFlags;
1935
1936 if (vol->secFlg & (~(CIFSSEC_MUST_SIGN | CIFSSEC_MUST_SEAL)))
1937 secFlags = vol->secFlg;
1938 else
1939 secFlags = global_secflags | vol->secFlg;
1940
1941 switch (server->secType) {
1942 case LANMAN:
1943 if (!(secFlags & (CIFSSEC_MAY_LANMAN|CIFSSEC_MAY_PLNTXT)))
1944 return false;
1945 break;
1946 case NTLMv2:
1947 if (!(secFlags & CIFSSEC_MAY_NTLMV2))
1948 return false;
1949 break;
1950 case NTLM:
1951 if (!(secFlags & CIFSSEC_MAY_NTLM))
1952 return false;
1953 break;
1954 case Kerberos:
1955 if (!(secFlags & CIFSSEC_MAY_KRB5))
1956 return false;
1957 break;
1958 case RawNTLMSSP:
1959 if (!(secFlags & CIFSSEC_MAY_NTLMSSP))
1960 return false;
1961 break;
1962 default:
1963 /* shouldn't happen */
1964 return false;
1965 }
1966
25985edc 1967 /* now check if signing mode is acceptable */
daf5b0b6 1968 if ((secFlags & CIFSSEC_MAY_SIGN) == 0 &&
96daf2b0 1969 (server->sec_mode & SECMODE_SIGN_REQUIRED))
daf5b0b6
JL
1970 return false;
1971 else if (((secFlags & CIFSSEC_MUST_SIGN) == CIFSSEC_MUST_SIGN) &&
96daf2b0 1972 (server->sec_mode &
daf5b0b6
JL
1973 (SECMODE_SIGN_ENABLED|SECMODE_SIGN_REQUIRED)) == 0)
1974 return false;
1975
1976 return true;
1977}
1978
37bb04e5
PS
1979static int match_server(struct TCP_Server_Info *server, struct sockaddr *addr,
1980 struct smb_vol *vol)
1981{
23db65f5
JL
1982 if ((server->vals != vol->vals) || (server->ops != vol->ops))
1983 return 0;
1984
37bb04e5
PS
1985 if (!net_eq(cifs_net_ns(server), current->nsproxy->net_ns))
1986 return 0;
1987
1988 if (!match_address(server, addr,
1989 (struct sockaddr *)&vol->srcaddr))
1990 return 0;
1991
1992 if (!match_port(server, addr))
1993 return 0;
1994
1995 if (!match_security(server, vol))
1996 return 0;
1997
1998 return 1;
1999}
2000
e7ddee90 2001static struct TCP_Server_Info *
daf5b0b6 2002cifs_find_tcp_session(struct sockaddr *addr, struct smb_vol *vol)
1da177e4 2003{
e7ddee90 2004 struct TCP_Server_Info *server;
e7ddee90 2005
3f9bcca7 2006 spin_lock(&cifs_tcp_ses_lock);
4515148e 2007 list_for_each_entry(server, &cifs_tcp_ses_list, tcp_ses_list) {
37bb04e5 2008 if (!match_server(server, addr, vol))
daf5b0b6
JL
2009 continue;
2010
e7ddee90 2011 ++server->srv_count;
3f9bcca7 2012 spin_unlock(&cifs_tcp_ses_lock);
b6b38f70 2013 cFYI(1, "Existing tcp session with server found");
e7ddee90 2014 return server;
1da177e4 2015 }
3f9bcca7 2016 spin_unlock(&cifs_tcp_ses_lock);
1da177e4
LT
2017 return NULL;
2018}
1b20d672 2019
14fbf50d 2020static void
e7ddee90 2021cifs_put_tcp_session(struct TCP_Server_Info *server)
1da177e4 2022{
e7ddee90 2023 struct task_struct *task;
1b20d672 2024
3f9bcca7 2025 spin_lock(&cifs_tcp_ses_lock);
e7ddee90 2026 if (--server->srv_count > 0) {
3f9bcca7 2027 spin_unlock(&cifs_tcp_ses_lock);
e7ddee90 2028 return;
1da177e4 2029 }
1b20d672 2030
f1d0c998
RL
2031 put_net(cifs_net_ns(server));
2032
e7ddee90 2033 list_del_init(&server->tcp_ses_list);
3f9bcca7 2034 spin_unlock(&cifs_tcp_ses_lock);
dea570e0 2035
c74093b6
JL
2036 cancel_delayed_work_sync(&server->echo);
2037
e7ddee90
JL
2038 spin_lock(&GlobalMid_Lock);
2039 server->tcpStatus = CifsExiting;
2040 spin_unlock(&GlobalMid_Lock);
dea570e0 2041
d2b91521 2042 cifs_crypto_shash_release(server);
488f1d2d
SJ
2043 cifs_fscache_release_client_cookie(server);
2044
21e73393
SP
2045 kfree(server->session_key.response);
2046 server->session_key.response = NULL;
2047 server->session_key.len = 0;
2048
e7ddee90
JL
2049 task = xchg(&server->tsk, NULL);
2050 if (task)
2051 force_sig(SIGKILL, task);
1da177e4
LT
2052}
2053
63c038c2
JL
2054static struct TCP_Server_Info *
2055cifs_get_tcp_session(struct smb_vol *volume_info)
2056{
2057 struct TCP_Server_Info *tcp_ses = NULL;
a9ac49d3 2058 struct sockaddr_storage addr;
63c038c2
JL
2059 struct sockaddr_in *sin_server = (struct sockaddr_in *) &addr;
2060 struct sockaddr_in6 *sin_server6 = (struct sockaddr_in6 *) &addr;
2061 int rc;
2062
a9ac49d3 2063 memset(&addr, 0, sizeof(struct sockaddr_storage));
63c038c2 2064
b6b38f70 2065 cFYI(1, "UNC: %s ip: %s", volume_info->UNC, volume_info->UNCip);
63c038c2 2066
1e68b2b2 2067 if (volume_info->UNCip && volume_info->UNC) {
50d97160
JL
2068 rc = cifs_fill_sockaddr((struct sockaddr *)&addr,
2069 volume_info->UNCip,
67b7626a 2070 strlen(volume_info->UNCip),
50d97160 2071 volume_info->port);
1e68b2b2 2072 if (!rc) {
63c038c2
JL
2073 /* we failed translating address */
2074 rc = -EINVAL;
2075 goto out_err;
2076 }
63c038c2
JL
2077 } else if (volume_info->UNCip) {
2078 /* BB using ip addr as tcp_ses name to connect to the
2079 DFS root below */
b6b38f70 2080 cERROR(1, "Connecting to DFS root not implemented yet");
63c038c2
JL
2081 rc = -EINVAL;
2082 goto out_err;
2083 } else /* which tcp_sess DFS root would we conect to */ {
b6b38f70
JP
2084 cERROR(1, "CIFS mount error: No UNC path (e.g. -o "
2085 "unc=//192.168.1.100/public) specified");
63c038c2
JL
2086 rc = -EINVAL;
2087 goto out_err;
2088 }
2089
2090 /* see if we already have a matching tcp_ses */
daf5b0b6 2091 tcp_ses = cifs_find_tcp_session((struct sockaddr *)&addr, volume_info);
63c038c2
JL
2092 if (tcp_ses)
2093 return tcp_ses;
2094
2095 tcp_ses = kzalloc(sizeof(struct TCP_Server_Info), GFP_KERNEL);
2096 if (!tcp_ses) {
2097 rc = -ENOMEM;
2098 goto out_err;
2099 }
2100
d2b91521
SP
2101 rc = cifs_crypto_shash_allocate(tcp_ses);
2102 if (rc) {
2103 cERROR(1, "could not setup hash structures rc %d", rc);
2104 goto out_err;
2105 }
2106
23db65f5
JL
2107 tcp_ses->ops = volume_info->ops;
2108 tcp_ses->vals = volume_info->vals;
f1d0c998 2109 cifs_set_net_ns(tcp_ses, get_net(current->nsproxy->net_ns));
63c038c2
JL
2110 tcp_ses->hostname = extract_hostname(volume_info->UNC);
2111 if (IS_ERR(tcp_ses->hostname)) {
2112 rc = PTR_ERR(tcp_ses->hostname);
f7c5445a 2113 goto out_err_crypto_release;
63c038c2
JL
2114 }
2115
2116 tcp_ses->noblocksnd = volume_info->noblocksnd;
2117 tcp_ses->noautotune = volume_info->noautotune;
6a5fa236 2118 tcp_ses->tcp_nodelay = volume_info->sockopt_tcp_nodelay;
fc40f9cf 2119 tcp_ses->in_flight = 0;
2d86dbc9 2120 tcp_ses->credits = 1;
63c038c2
JL
2121 init_waitqueue_head(&tcp_ses->response_q);
2122 init_waitqueue_head(&tcp_ses->request_q);
2123 INIT_LIST_HEAD(&tcp_ses->pending_mid_q);
2124 mutex_init(&tcp_ses->srv_mutex);
2125 memcpy(tcp_ses->workstation_RFC1001_name,
2126 volume_info->source_rfc1001_name, RFC1001_NAME_LEN_WITH_NULL);
2127 memcpy(tcp_ses->server_RFC1001_name,
2128 volume_info->target_rfc1001_name, RFC1001_NAME_LEN_WITH_NULL);
5d0d2882 2129 tcp_ses->session_estab = false;
63c038c2 2130 tcp_ses->sequence_number = 0;
fda35943 2131 tcp_ses->lstrp = jiffies;
58fa015f 2132 spin_lock_init(&tcp_ses->req_lock);
63c038c2
JL
2133 INIT_LIST_HEAD(&tcp_ses->tcp_ses_list);
2134 INIT_LIST_HEAD(&tcp_ses->smb_ses_list);
c74093b6 2135 INIT_DELAYED_WORK(&tcp_ses->echo, cifs_echo_request);
63c038c2
JL
2136
2137 /*
2138 * at this point we are the only ones with the pointer
2139 * to the struct since the kernel thread not created yet
2140 * no need to spinlock this init of tcpStatus or srv_count
2141 */
2142 tcp_ses->tcpStatus = CifsNew;
3eb9a889
BG
2143 memcpy(&tcp_ses->srcaddr, &volume_info->srcaddr,
2144 sizeof(tcp_ses->srcaddr));
63c038c2
JL
2145 ++tcp_ses->srv_count;
2146
a9ac49d3 2147 if (addr.ss_family == AF_INET6) {
b6b38f70 2148 cFYI(1, "attempting ipv6 connect");
63c038c2
JL
2149 /* BB should we allow ipv6 on port 139? */
2150 /* other OS never observed in Wild doing 139 with v6 */
a9f1b85e
PS
2151 memcpy(&tcp_ses->dstaddr, sin_server6,
2152 sizeof(struct sockaddr_in6));
2153 } else
2154 memcpy(&tcp_ses->dstaddr, sin_server,
2155 sizeof(struct sockaddr_in));
2156
2157 rc = ip_connect(tcp_ses);
63c038c2 2158 if (rc < 0) {
b6b38f70 2159 cERROR(1, "Error connecting to socket. Aborting operation");
f7c5445a 2160 goto out_err_crypto_release;
63c038c2
JL
2161 }
2162
2163 /*
2164 * since we're in a cifs function already, we know that
2165 * this will succeed. No need for try_module_get().
2166 */
2167 __module_get(THIS_MODULE);
7c97c200 2168 tcp_ses->tsk = kthread_run(cifs_demultiplex_thread,
63c038c2
JL
2169 tcp_ses, "cifsd");
2170 if (IS_ERR(tcp_ses->tsk)) {
2171 rc = PTR_ERR(tcp_ses->tsk);
b6b38f70 2172 cERROR(1, "error %d create cifsd thread", rc);
63c038c2 2173 module_put(THIS_MODULE);
f7c5445a 2174 goto out_err_crypto_release;
63c038c2 2175 }
fd88ce93 2176 tcp_ses->tcpStatus = CifsNeedNegotiate;
63c038c2
JL
2177
2178 /* thread spawned, put it on the list */
3f9bcca7 2179 spin_lock(&cifs_tcp_ses_lock);
63c038c2 2180 list_add(&tcp_ses->tcp_ses_list, &cifs_tcp_ses_list);
3f9bcca7 2181 spin_unlock(&cifs_tcp_ses_lock);
63c038c2 2182
488f1d2d
SJ
2183 cifs_fscache_get_client_cookie(tcp_ses);
2184
c74093b6 2185 /* queue echo request delayed work */
da472fc8 2186 queue_delayed_work(cifsiod_wq, &tcp_ses->echo, SMB_ECHO_INTERVAL);
c74093b6 2187
63c038c2
JL
2188 return tcp_ses;
2189
f7c5445a 2190out_err_crypto_release:
d2b91521
SP
2191 cifs_crypto_shash_release(tcp_ses);
2192
f1d0c998
RL
2193 put_net(cifs_net_ns(tcp_ses));
2194
63c038c2
JL
2195out_err:
2196 if (tcp_ses) {
8347a5cd
SF
2197 if (!IS_ERR(tcp_ses->hostname))
2198 kfree(tcp_ses->hostname);
63c038c2
JL
2199 if (tcp_ses->ssocket)
2200 sock_release(tcp_ses->ssocket);
2201 kfree(tcp_ses);
2202 }
2203 return ERR_PTR(rc);
2204}
2205
96daf2b0 2206static int match_session(struct cifs_ses *ses, struct smb_vol *vol)
37bb04e5
PS
2207{
2208 switch (ses->server->secType) {
2209 case Kerberos:
2210 if (vol->cred_uid != ses->cred_uid)
2211 return 0;
2212 break;
2213 default:
04febabc
JL
2214 /* NULL username means anonymous session */
2215 if (ses->user_name == NULL) {
2216 if (!vol->nullauth)
2217 return 0;
2218 break;
2219 }
2220
37bb04e5 2221 /* anything else takes username/password */
04febabc
JL
2222 if (strncmp(ses->user_name,
2223 vol->username ? vol->username : "",
37bb04e5
PS
2224 MAX_USERNAME_SIZE))
2225 return 0;
2226 if (strlen(vol->username) != 0 &&
2227 ses->password != NULL &&
2228 strncmp(ses->password,
2229 vol->password ? vol->password : "",
2230 MAX_PASSWORD_SIZE))
2231 return 0;
2232 }
2233 return 1;
2234}
2235
96daf2b0 2236static struct cifs_ses *
4ff67b72 2237cifs_find_smb_ses(struct TCP_Server_Info *server, struct smb_vol *vol)
1da177e4 2238{
96daf2b0 2239 struct cifs_ses *ses;
dea570e0 2240
3f9bcca7 2241 spin_lock(&cifs_tcp_ses_lock);
4ff67b72 2242 list_for_each_entry(ses, &server->smb_ses_list, smb_ses_list) {
37bb04e5
PS
2243 if (!match_session(ses, vol))
2244 continue;
14fbf50d 2245 ++ses->ses_count;
3f9bcca7 2246 spin_unlock(&cifs_tcp_ses_lock);
14fbf50d
JL
2247 return ses;
2248 }
3f9bcca7 2249 spin_unlock(&cifs_tcp_ses_lock);
14fbf50d
JL
2250 return NULL;
2251}
dea570e0 2252
14fbf50d 2253static void
96daf2b0 2254cifs_put_smb_ses(struct cifs_ses *ses)
14fbf50d
JL
2255{
2256 int xid;
2257 struct TCP_Server_Info *server = ses->server;
dea570e0 2258
ac3aa2f8 2259 cFYI(1, "%s: ses_count=%d", __func__, ses->ses_count);
3f9bcca7 2260 spin_lock(&cifs_tcp_ses_lock);
14fbf50d 2261 if (--ses->ses_count > 0) {
3f9bcca7 2262 spin_unlock(&cifs_tcp_ses_lock);
14fbf50d
JL
2263 return;
2264 }
dea570e0 2265
14fbf50d 2266 list_del_init(&ses->smb_ses_list);
3f9bcca7 2267 spin_unlock(&cifs_tcp_ses_lock);
dea570e0 2268
14fbf50d
JL
2269 if (ses->status == CifsGood) {
2270 xid = GetXid();
2271 CIFSSMBLogoff(xid, ses);
2272 _FreeXid(xid);
2273 }
2274 sesInfoFree(ses);
2275 cifs_put_tcp_session(server);
2276}
dea570e0 2277
8a8798a5
JL
2278#ifdef CONFIG_KEYS
2279
2280/* strlen("cifs:a:") + INET6_ADDRSTRLEN + 1 */
2281#define CIFSCREDS_DESC_SIZE (7 + INET6_ADDRSTRLEN + 1)
2282
2283/* Populate username and pw fields from keyring if possible */
2284static int
2285cifs_set_cifscreds(struct smb_vol *vol, struct cifs_ses *ses)
2286{
2287 int rc = 0;
2288 char *desc, *delim, *payload;
2289 ssize_t len;
2290 struct key *key;
2291 struct TCP_Server_Info *server = ses->server;
2292 struct sockaddr_in *sa;
2293 struct sockaddr_in6 *sa6;
2294 struct user_key_payload *upayload;
2295
2296 desc = kmalloc(CIFSCREDS_DESC_SIZE, GFP_KERNEL);
2297 if (!desc)
2298 return -ENOMEM;
2299
2300 /* try to find an address key first */
2301 switch (server->dstaddr.ss_family) {
2302 case AF_INET:
2303 sa = (struct sockaddr_in *)&server->dstaddr;
2304 sprintf(desc, "cifs:a:%pI4", &sa->sin_addr.s_addr);
2305 break;
2306 case AF_INET6:
2307 sa6 = (struct sockaddr_in6 *)&server->dstaddr;
2308 sprintf(desc, "cifs:a:%pI6c", &sa6->sin6_addr.s6_addr);
2309 break;
2310 default:
2311 cFYI(1, "Bad ss_family (%hu)", server->dstaddr.ss_family);
2312 rc = -EINVAL;
2313 goto out_err;
2314 }
2315
2316 cFYI(1, "%s: desc=%s", __func__, desc);
2317 key = request_key(&key_type_logon, desc, "");
2318 if (IS_ERR(key)) {
2319 if (!ses->domainName) {
2320 cFYI(1, "domainName is NULL");
2321 rc = PTR_ERR(key);
2322 goto out_err;
2323 }
2324
2325 /* didn't work, try to find a domain key */
2326 sprintf(desc, "cifs:d:%s", ses->domainName);
2327 cFYI(1, "%s: desc=%s", __func__, desc);
2328 key = request_key(&key_type_logon, desc, "");
2329 if (IS_ERR(key)) {
2330 rc = PTR_ERR(key);
2331 goto out_err;
2332 }
2333 }
2334
2335 down_read(&key->sem);
2336 upayload = key->payload.data;
2337 if (IS_ERR_OR_NULL(upayload)) {
4edc53c1 2338 rc = upayload ? PTR_ERR(upayload) : -EINVAL;
8a8798a5
JL
2339 goto out_key_put;
2340 }
2341
2342 /* find first : in payload */
2343 payload = (char *)upayload->data;
2344 delim = strnchr(payload, upayload->datalen, ':');
2345 cFYI(1, "payload=%s", payload);
2346 if (!delim) {
2347 cFYI(1, "Unable to find ':' in payload (datalen=%d)",
2348 upayload->datalen);
2349 rc = -EINVAL;
2350 goto out_key_put;
2351 }
2352
2353 len = delim - payload;
2354 if (len > MAX_USERNAME_SIZE || len <= 0) {
000f9bb8 2355 cFYI(1, "Bad value from username search (len=%zd)", len);
8a8798a5
JL
2356 rc = -EINVAL;
2357 goto out_key_put;
2358 }
2359
2360 vol->username = kstrndup(payload, len, GFP_KERNEL);
2361 if (!vol->username) {
000f9bb8 2362 cFYI(1, "Unable to allocate %zd bytes for username", len);
8a8798a5
JL
2363 rc = -ENOMEM;
2364 goto out_key_put;
2365 }
2366 cFYI(1, "%s: username=%s", __func__, vol->username);
2367
2368 len = key->datalen - (len + 1);
2369 if (len > MAX_PASSWORD_SIZE || len <= 0) {
000f9bb8 2370 cFYI(1, "Bad len for password search (len=%zd)", len);
8a8798a5
JL
2371 rc = -EINVAL;
2372 kfree(vol->username);
2373 vol->username = NULL;
2374 goto out_key_put;
2375 }
2376
2377 ++delim;
2378 vol->password = kstrndup(delim, len, GFP_KERNEL);
2379 if (!vol->password) {
000f9bb8 2380 cFYI(1, "Unable to allocate %zd bytes for password", len);
8a8798a5
JL
2381 rc = -ENOMEM;
2382 kfree(vol->username);
2383 vol->username = NULL;
2384 goto out_key_put;
2385 }
2386
2387out_key_put:
2388 up_read(&key->sem);
2389 key_put(key);
2390out_err:
2391 kfree(desc);
2392 cFYI(1, "%s: returning %d", __func__, rc);
2393 return rc;
2394}
2395#else /* ! CONFIG_KEYS */
2396static inline int
2397cifs_set_cifscreds(struct smb_vol *vol __attribute__((unused)),
2398 struct cifs_ses *ses __attribute__((unused)))
2399{
2400 return -ENOSYS;
2401}
2402#endif /* CONFIG_KEYS */
2403
d9b94201
SF
2404static bool warned_on_ntlm; /* globals init to false automatically */
2405
96daf2b0 2406static struct cifs_ses *
36988c76
JL
2407cifs_get_smb_ses(struct TCP_Server_Info *server, struct smb_vol *volume_info)
2408{
2409 int rc = -ENOMEM, xid;
96daf2b0 2410 struct cifs_ses *ses;
a9f1b85e
PS
2411 struct sockaddr_in *addr = (struct sockaddr_in *)&server->dstaddr;
2412 struct sockaddr_in6 *addr6 = (struct sockaddr_in6 *)&server->dstaddr;
36988c76
JL
2413
2414 xid = GetXid();
2415
4ff67b72 2416 ses = cifs_find_smb_ses(server, volume_info);
36988c76
JL
2417 if (ses) {
2418 cFYI(1, "Existing smb sess found (status=%d)", ses->status);
2419
36988c76 2420 mutex_lock(&ses->session_mutex);
198b5682
JL
2421 rc = cifs_negotiate_protocol(xid, ses);
2422 if (rc) {
2423 mutex_unlock(&ses->session_mutex);
2424 /* problem -- put our ses reference */
2425 cifs_put_smb_ses(ses);
2426 FreeXid(xid);
2427 return ERR_PTR(rc);
2428 }
36988c76
JL
2429 if (ses->need_reconnect) {
2430 cFYI(1, "Session needs reconnect");
2431 rc = cifs_setup_session(xid, ses,
2432 volume_info->local_nls);
2433 if (rc) {
2434 mutex_unlock(&ses->session_mutex);
2435 /* problem -- put our reference */
2436 cifs_put_smb_ses(ses);
2437 FreeXid(xid);
2438 return ERR_PTR(rc);
2439 }
2440 }
2441 mutex_unlock(&ses->session_mutex);
460cf341
JL
2442
2443 /* existing SMB ses has a server reference already */
2444 cifs_put_tcp_session(server);
36988c76
JL
2445 FreeXid(xid);
2446 return ses;
2447 }
2448
2449 cFYI(1, "Existing smb sess not found");
2450 ses = sesInfoAlloc();
2451 if (ses == NULL)
2452 goto get_ses_fail;
2453
2454 /* new SMB session uses our server ref */
2455 ses->server = server;
a9f1b85e
PS
2456 if (server->dstaddr.ss_family == AF_INET6)
2457 sprintf(ses->serverName, "%pI6", &addr6->sin6_addr);
36988c76 2458 else
a9f1b85e 2459 sprintf(ses->serverName, "%pI4", &addr->sin_addr);
36988c76 2460
8727c8a8
SF
2461 if (volume_info->username) {
2462 ses->user_name = kstrdup(volume_info->username, GFP_KERNEL);
2463 if (!ses->user_name)
2464 goto get_ses_fail;
2465 }
36988c76
JL
2466
2467 /* volume_info->password freed at unmount */
2468 if (volume_info->password) {
2469 ses->password = kstrdup(volume_info->password, GFP_KERNEL);
2470 if (!ses->password)
2471 goto get_ses_fail;
2472 }
2473 if (volume_info->domainname) {
d3686d54
SP
2474 ses->domainName = kstrdup(volume_info->domainname, GFP_KERNEL);
2475 if (!ses->domainName)
2476 goto get_ses_fail;
36988c76 2477 }
3e4b3e1f 2478 ses->cred_uid = volume_info->cred_uid;
36988c76 2479 ses->linux_uid = volume_info->linux_uid;
d9b94201
SF
2480
2481 /* ntlmv2 is much stronger than ntlm security, and has been broadly
2482 supported for many years, time to update default security mechanism */
2483 if ((volume_info->secFlg == 0) && warned_on_ntlm == false) {
2484 warned_on_ntlm = true;
2485 cERROR(1, "default security mechanism requested. The default "
2486 "security mechanism will be upgraded from ntlm to "
225de11e 2487 "ntlmv2 in kernel release 3.3");
d9b94201 2488 }
36988c76
JL
2489 ses->overrideSecFlg = volume_info->secFlg;
2490
2491 mutex_lock(&ses->session_mutex);
198b5682
JL
2492 rc = cifs_negotiate_protocol(xid, ses);
2493 if (!rc)
2494 rc = cifs_setup_session(xid, ses, volume_info->local_nls);
36988c76 2495 mutex_unlock(&ses->session_mutex);
c8e56f1f 2496 if (rc)
36988c76
JL
2497 goto get_ses_fail;
2498
2499 /* success, put it on the list */
3f9bcca7 2500 spin_lock(&cifs_tcp_ses_lock);
36988c76 2501 list_add(&ses->smb_ses_list, &server->smb_ses_list);
3f9bcca7 2502 spin_unlock(&cifs_tcp_ses_lock);
36988c76
JL
2503
2504 FreeXid(xid);
2505 return ses;
2506
2507get_ses_fail:
2508 sesInfoFree(ses);
2509 FreeXid(xid);
2510 return ERR_PTR(rc);
2511}
2512
96daf2b0 2513static int match_tcon(struct cifs_tcon *tcon, const char *unc)
37bb04e5
PS
2514{
2515 if (tcon->tidStatus == CifsExiting)
2516 return 0;
2517 if (strncmp(tcon->treeName, unc, MAX_TREE_SIZE))
2518 return 0;
2519 return 1;
2520}
2521
96daf2b0
SF
2522static struct cifs_tcon *
2523cifs_find_tcon(struct cifs_ses *ses, const char *unc)
f1987b44
JL
2524{
2525 struct list_head *tmp;
96daf2b0 2526 struct cifs_tcon *tcon;
f1987b44 2527
3f9bcca7 2528 spin_lock(&cifs_tcp_ses_lock);
f1987b44 2529 list_for_each(tmp, &ses->tcon_list) {
96daf2b0 2530 tcon = list_entry(tmp, struct cifs_tcon, tcon_list);
37bb04e5 2531 if (!match_tcon(tcon, unc))
f1987b44 2532 continue;
f1987b44 2533 ++tcon->tc_count;
3f9bcca7 2534 spin_unlock(&cifs_tcp_ses_lock);
dea570e0 2535 return tcon;
1da177e4 2536 }
3f9bcca7 2537 spin_unlock(&cifs_tcp_ses_lock);
1da177e4
LT
2538 return NULL;
2539}
2540
f1987b44 2541static void
96daf2b0 2542cifs_put_tcon(struct cifs_tcon *tcon)
f1987b44
JL
2543{
2544 int xid;
96daf2b0 2545 struct cifs_ses *ses = tcon->ses;
f1987b44 2546
ac3aa2f8 2547 cFYI(1, "%s: tc_count=%d", __func__, tcon->tc_count);
3f9bcca7 2548 spin_lock(&cifs_tcp_ses_lock);
f1987b44 2549 if (--tcon->tc_count > 0) {
3f9bcca7 2550 spin_unlock(&cifs_tcp_ses_lock);
f1987b44
JL
2551 return;
2552 }
2553
2554 list_del_init(&tcon->tcon_list);
3f9bcca7 2555 spin_unlock(&cifs_tcp_ses_lock);
f1987b44
JL
2556
2557 xid = GetXid();
2558 CIFSSMBTDis(xid, tcon);
2559 _FreeXid(xid);
2560
d03382ce 2561 cifs_fscache_release_super_cookie(tcon);
9f841593 2562 tconInfoFree(tcon);
f1987b44
JL
2563 cifs_put_smb_ses(ses);
2564}
2565
96daf2b0
SF
2566static struct cifs_tcon *
2567cifs_get_tcon(struct cifs_ses *ses, struct smb_vol *volume_info)
d00c28de
JL
2568{
2569 int rc, xid;
96daf2b0 2570 struct cifs_tcon *tcon;
d00c28de
JL
2571
2572 tcon = cifs_find_tcon(ses, volume_info->UNC);
2573 if (tcon) {
2574 cFYI(1, "Found match on UNC path");
2575 /* existing tcon already has a reference */
2576 cifs_put_smb_ses(ses);
2577 if (tcon->seal != volume_info->seal)
2578 cERROR(1, "transport encryption setting "
2579 "conflicts with existing tid");
2580 return tcon;
2581 }
2582
2583 tcon = tconInfoAlloc();
2584 if (tcon == NULL) {
2585 rc = -ENOMEM;
2586 goto out_fail;
2587 }
2588
2589 tcon->ses = ses;
2590 if (volume_info->password) {
2591 tcon->password = kstrdup(volume_info->password, GFP_KERNEL);
2592 if (!tcon->password) {
2593 rc = -ENOMEM;
2594 goto out_fail;
2595 }
2596 }
2597
2598 if (strchr(volume_info->UNC + 3, '\\') == NULL
2599 && strchr(volume_info->UNC + 3, '/') == NULL) {
2600 cERROR(1, "Missing share name");
2601 rc = -ENODEV;
2602 goto out_fail;
2603 }
2604
2605 /* BB Do we need to wrap session_mutex around
2606 * this TCon call and Unix SetFS as
2607 * we do on SessSetup and reconnect? */
2608 xid = GetXid();
2609 rc = CIFSTCon(xid, ses, volume_info->UNC, tcon, volume_info->local_nls);
2610 FreeXid(xid);
2611 cFYI(1, "CIFS Tcon rc = %d", rc);
2612 if (rc)
2613 goto out_fail;
2614
2615 if (volume_info->nodfs) {
2616 tcon->Flags &= ~SMB_SHARE_IS_IN_DFS;
2617 cFYI(1, "DFS disabled (%d)", tcon->Flags);
2618 }
2619 tcon->seal = volume_info->seal;
2620 /* we can have only one retry value for a connection
2621 to a share so for resources mounted more than once
2622 to the same server share the last value passed in
2623 for the retry flag is used */
2624 tcon->retry = volume_info->retry;
2625 tcon->nocase = volume_info->nocase;
2626 tcon->local_lease = volume_info->local_lease;
2627
3f9bcca7 2628 spin_lock(&cifs_tcp_ses_lock);
d00c28de 2629 list_add(&tcon->tcon_list, &ses->tcon_list);
3f9bcca7 2630 spin_unlock(&cifs_tcp_ses_lock);
d00c28de 2631
d03382ce
SJ
2632 cifs_fscache_get_super_cookie(tcon);
2633
d00c28de
JL
2634 return tcon;
2635
2636out_fail:
2637 tconInfoFree(tcon);
2638 return ERR_PTR(rc);
2639}
2640
9d002df4
JL
2641void
2642cifs_put_tlink(struct tcon_link *tlink)
2643{
2644 if (!tlink || IS_ERR(tlink))
2645 return;
2646
2647 if (!atomic_dec_and_test(&tlink->tl_count) ||
2648 test_bit(TCON_LINK_IN_TREE, &tlink->tl_flags)) {
2649 tlink->tl_time = jiffies;
2650 return;
2651 }
2652
2653 if (!IS_ERR(tlink_tcon(tlink)))
2654 cifs_put_tcon(tlink_tcon(tlink));
2655 kfree(tlink);
2656 return;
2657}
d00c28de 2658
25c7f41e 2659static inline struct tcon_link *
cd51875d
PS
2660cifs_sb_master_tlink(struct cifs_sb_info *cifs_sb)
2661{
2662 return cifs_sb->master_tlink;
2663}
25c7f41e
PS
2664
2665static int
2666compare_mount_options(struct super_block *sb, struct cifs_mnt_data *mnt_data)
2667{
2668 struct cifs_sb_info *old = CIFS_SB(sb);
2669 struct cifs_sb_info *new = mnt_data->cifs_sb;
2670
2671 if ((sb->s_flags & CIFS_MS_MASK) != (mnt_data->flags & CIFS_MS_MASK))
2672 return 0;
2673
2674 if ((old->mnt_cifs_flags & CIFS_MOUNT_MASK) !=
2675 (new->mnt_cifs_flags & CIFS_MOUNT_MASK))
2676 return 0;
2677
25c7f41e 2678 /*
5eba8ab3
JL
2679 * We want to share sb only if we don't specify an r/wsize or
2680 * specified r/wsize is greater than or equal to existing one.
25c7f41e
PS
2681 */
2682 if (new->wsize && new->wsize < old->wsize)
2683 return 0;
2684
5eba8ab3
JL
2685 if (new->rsize && new->rsize < old->rsize)
2686 return 0;
2687
25c7f41e
PS
2688 if (old->mnt_uid != new->mnt_uid || old->mnt_gid != new->mnt_gid)
2689 return 0;
2690
2691 if (old->mnt_file_mode != new->mnt_file_mode ||
2692 old->mnt_dir_mode != new->mnt_dir_mode)
2693 return 0;
2694
2695 if (strcmp(old->local_nls->charset, new->local_nls->charset))
2696 return 0;
2697
2698 if (old->actimeo != new->actimeo)
2699 return 0;
2700
2701 return 1;
2702}
2703
2704int
2705cifs_match_super(struct super_block *sb, void *data)
2706{
2707 struct cifs_mnt_data *mnt_data = (struct cifs_mnt_data *)data;
2708 struct smb_vol *volume_info;
2709 struct cifs_sb_info *cifs_sb;
2710 struct TCP_Server_Info *tcp_srv;
96daf2b0
SF
2711 struct cifs_ses *ses;
2712 struct cifs_tcon *tcon;
25c7f41e
PS
2713 struct tcon_link *tlink;
2714 struct sockaddr_storage addr;
2715 int rc = 0;
2716
2717 memset(&addr, 0, sizeof(struct sockaddr_storage));
2718
2719 spin_lock(&cifs_tcp_ses_lock);
2720 cifs_sb = CIFS_SB(sb);
2721 tlink = cifs_get_tlink(cifs_sb_master_tlink(cifs_sb));
2722 if (IS_ERR(tlink)) {
2723 spin_unlock(&cifs_tcp_ses_lock);
2724 return rc;
2725 }
2726 tcon = tlink_tcon(tlink);
2727 ses = tcon->ses;
2728 tcp_srv = ses->server;
2729
2730 volume_info = mnt_data->vol;
2731
2732 if (!volume_info->UNCip || !volume_info->UNC)
2733 goto out;
2734
2735 rc = cifs_fill_sockaddr((struct sockaddr *)&addr,
2736 volume_info->UNCip,
2737 strlen(volume_info->UNCip),
2738 volume_info->port);
2739 if (!rc)
2740 goto out;
2741
2742 if (!match_server(tcp_srv, (struct sockaddr *)&addr, volume_info) ||
2743 !match_session(ses, volume_info) ||
2744 !match_tcon(tcon, volume_info->UNC)) {
2745 rc = 0;
2746 goto out;
2747 }
2748
2749 rc = compare_mount_options(sb, mnt_data);
2750out:
25c7f41e 2751 spin_unlock(&cifs_tcp_ses_lock);
f484b5d0 2752 cifs_put_tlink(tlink);
25c7f41e
PS
2753 return rc;
2754}
2755
1da177e4 2756int
96daf2b0 2757get_dfs_path(int xid, struct cifs_ses *pSesInfo, const char *old_path,
50c2f753 2758 const struct nls_table *nls_codepage, unsigned int *pnum_referrals,
366781c1 2759 struct dfs_info3_param **preferrals, int remap)
1da177e4
LT
2760{
2761 char *temp_unc;
2762 int rc = 0;
2763
2764 *pnum_referrals = 0;
366781c1 2765 *preferrals = NULL;
1da177e4
LT
2766
2767 if (pSesInfo->ipc_tid == 0) {
2768 temp_unc = kmalloc(2 /* for slashes */ +
50c2f753
SF
2769 strnlen(pSesInfo->serverName,
2770 SERVER_NAME_LEN_WITH_NULL * 2)
1da177e4
LT
2771 + 1 + 4 /* slash IPC$ */ + 2,
2772 GFP_KERNEL);
2773 if (temp_unc == NULL)
2774 return -ENOMEM;
2775 temp_unc[0] = '\\';
2776 temp_unc[1] = '\\';
2777 strcpy(temp_unc + 2, pSesInfo->serverName);
2778 strcpy(temp_unc + 2 + strlen(pSesInfo->serverName), "\\IPC$");
2779 rc = CIFSTCon(xid, pSesInfo, temp_unc, NULL, nls_codepage);
b6b38f70 2780 cFYI(1, "CIFS Tcon rc = %d ipc_tid = %d", rc, pSesInfo->ipc_tid);
1da177e4
LT
2781 kfree(temp_unc);
2782 }
2783 if (rc == 0)
c2cf07d5 2784 rc = CIFSGetDFSRefer(xid, pSesInfo, old_path, preferrals,
737b758c 2785 pnum_referrals, nls_codepage, remap);
366781c1
SF
2786 /* BB map targetUNCs to dfs_info3 structures, here or
2787 in CIFSGetDFSRefer BB */
1da177e4
LT
2788
2789 return rc;
2790}
2791
09e50d55
JL
2792#ifdef CONFIG_DEBUG_LOCK_ALLOC
2793static struct lock_class_key cifs_key[2];
2794static struct lock_class_key cifs_slock_key[2];
2795
2796static inline void
2797cifs_reclassify_socket4(struct socket *sock)
2798{
2799 struct sock *sk = sock->sk;
2800 BUG_ON(sock_owned_by_user(sk));
2801 sock_lock_init_class_and_name(sk, "slock-AF_INET-CIFS",
2802 &cifs_slock_key[0], "sk_lock-AF_INET-CIFS", &cifs_key[0]);
2803}
2804
2805static inline void
2806cifs_reclassify_socket6(struct socket *sock)
2807{
2808 struct sock *sk = sock->sk;
2809 BUG_ON(sock_owned_by_user(sk));
2810 sock_lock_init_class_and_name(sk, "slock-AF_INET6-CIFS",
2811 &cifs_slock_key[1], "sk_lock-AF_INET6-CIFS", &cifs_key[1]);
2812}
2813#else
2814static inline void
2815cifs_reclassify_socket4(struct socket *sock)
2816{
2817}
2818
2819static inline void
2820cifs_reclassify_socket6(struct socket *sock)
2821{
2822}
2823#endif
2824
1da177e4 2825/* See RFC1001 section 14 on representation of Netbios names */
50c2f753 2826static void rfc1002mangle(char *target, char *source, unsigned int length)
1da177e4 2827{
50c2f753 2828 unsigned int i, j;
1da177e4 2829
50c2f753 2830 for (i = 0, j = 0; i < (length); i++) {
1da177e4
LT
2831 /* mask a nibble at a time and encode */
2832 target[j] = 'A' + (0x0F & (source[i] >> 4));
2833 target[j+1] = 'A' + (0x0F & source[i]);
50c2f753 2834 j += 2;
1da177e4
LT
2835 }
2836
2837}
2838
3eb9a889
BG
2839static int
2840bind_socket(struct TCP_Server_Info *server)
2841{
2842 int rc = 0;
2843 if (server->srcaddr.ss_family != AF_UNSPEC) {
2844 /* Bind to the specified local IP address */
2845 struct socket *socket = server->ssocket;
2846 rc = socket->ops->bind(socket,
2847 (struct sockaddr *) &server->srcaddr,
2848 sizeof(server->srcaddr));
2849 if (rc < 0) {
2850 struct sockaddr_in *saddr4;
2851 struct sockaddr_in6 *saddr6;
2852 saddr4 = (struct sockaddr_in *)&server->srcaddr;
2853 saddr6 = (struct sockaddr_in6 *)&server->srcaddr;
2854 if (saddr6->sin6_family == AF_INET6)
2855 cERROR(1, "cifs: "
ac3aa2f8 2856 "Failed to bind to: %pI6c, error: %d",
3eb9a889
BG
2857 &saddr6->sin6_addr, rc);
2858 else
2859 cERROR(1, "cifs: "
ac3aa2f8 2860 "Failed to bind to: %pI4, error: %d",
3eb9a889
BG
2861 &saddr4->sin_addr.s_addr, rc);
2862 }
2863 }
2864 return rc;
2865}
1da177e4
LT
2866
2867static int
a9f1b85e 2868ip_rfc1001_connect(struct TCP_Server_Info *server)
1da177e4
LT
2869{
2870 int rc = 0;
a9f1b85e
PS
2871 /*
2872 * some servers require RFC1001 sessinit before sending
2873 * negprot - BB check reconnection in case where second
2874 * sessinit is sent but no second negprot
2875 */
2876 struct rfc1002_session_packet *ses_init_buf;
2877 struct smb_hdr *smb_buf;
2878 ses_init_buf = kzalloc(sizeof(struct rfc1002_session_packet),
2879 GFP_KERNEL);
2880 if (ses_init_buf) {
2881 ses_init_buf->trailer.session_req.called_len = 32;
2882
2883 if (server->server_RFC1001_name &&
2884 server->server_RFC1001_name[0] != 0)
2885 rfc1002mangle(ses_init_buf->trailer.
2886 session_req.called_name,
2887 server->server_RFC1001_name,
2888 RFC1001_NAME_LEN_WITH_NULL);
2889 else
2890 rfc1002mangle(ses_init_buf->trailer.
2891 session_req.called_name,
2892 DEFAULT_CIFS_CALLED_NAME,
2893 RFC1001_NAME_LEN_WITH_NULL);
2894
2895 ses_init_buf->trailer.session_req.calling_len = 32;
2896
2897 /*
2898 * calling name ends in null (byte 16) from old smb
2899 * convention.
2900 */
2901 if (server->workstation_RFC1001_name &&
2902 server->workstation_RFC1001_name[0] != 0)
2903 rfc1002mangle(ses_init_buf->trailer.
2904 session_req.calling_name,
2905 server->workstation_RFC1001_name,
2906 RFC1001_NAME_LEN_WITH_NULL);
2907 else
2908 rfc1002mangle(ses_init_buf->trailer.
2909 session_req.calling_name,
2910 "LINUX_CIFS_CLNT",
2911 RFC1001_NAME_LEN_WITH_NULL);
2912
2913 ses_init_buf->trailer.session_req.scope1 = 0;
2914 ses_init_buf->trailer.session_req.scope2 = 0;
2915 smb_buf = (struct smb_hdr *)ses_init_buf;
2916
2917 /* sizeof RFC1002_SESSION_REQUEST with no scope */
be8e3b00 2918 smb_buf->smb_buf_length = cpu_to_be32(0x81000044);
a9f1b85e
PS
2919 rc = smb_send(server, smb_buf, 0x44);
2920 kfree(ses_init_buf);
2921 /*
2922 * RFC1001 layer in at least one server
2923 * requires very short break before negprot
2924 * presumably because not expecting negprot
2925 * to follow so fast. This is a simple
2926 * solution that works without
2927 * complicating the code and causes no
2928 * significant slowing down on mount
2929 * for everyone else
2930 */
2931 usleep_range(1000, 2000);
2932 }
2933 /*
2934 * else the negprot may still work without this
2935 * even though malloc failed
2936 */
2937
2938 return rc;
2939}
2940
2941static int
2942generic_ip_connect(struct TCP_Server_Info *server)
2943{
2944 int rc = 0;
6da97910 2945 __be16 sport;
a9f1b85e 2946 int slen, sfamily;
bcf4b106 2947 struct socket *socket = server->ssocket;
a9f1b85e
PS
2948 struct sockaddr *saddr;
2949
2950 saddr = (struct sockaddr *) &server->dstaddr;
2951
2952 if (server->dstaddr.ss_family == AF_INET6) {
2953 sport = ((struct sockaddr_in6 *) saddr)->sin6_port;
2954 slen = sizeof(struct sockaddr_in6);
2955 sfamily = AF_INET6;
2956 } else {
2957 sport = ((struct sockaddr_in *) saddr)->sin_port;
2958 slen = sizeof(struct sockaddr_in);
2959 sfamily = AF_INET;
2960 }
1da177e4 2961
bcf4b106 2962 if (socket == NULL) {
f1d0c998
RL
2963 rc = __sock_create(cifs_net_ns(server), sfamily, SOCK_STREAM,
2964 IPPROTO_TCP, &socket, 1);
1da177e4 2965 if (rc < 0) {
b6b38f70 2966 cERROR(1, "Error %d creating socket", rc);
a9f1b85e 2967 server->ssocket = NULL;
1da177e4 2968 return rc;
1da177e4 2969 }
bcf4b106
JL
2970
2971 /* BB other socket options to set KEEPALIVE, NODELAY? */
b6b38f70 2972 cFYI(1, "Socket created");
bcf4b106
JL
2973 server->ssocket = socket;
2974 socket->sk->sk_allocation = GFP_NOFS;
a9f1b85e
PS
2975 if (sfamily == AF_INET6)
2976 cifs_reclassify_socket6(socket);
2977 else
2978 cifs_reclassify_socket4(socket);
1da177e4
LT
2979 }
2980
3eb9a889
BG
2981 rc = bind_socket(server);
2982 if (rc < 0)
2983 return rc;
2984
bcf4b106
JL
2985 /*
2986 * Eventually check for other socket options to change from
a9f1b85e
PS
2987 * the default. sock_setsockopt not used because it expects
2988 * user space buffer
bcf4b106
JL
2989 */
2990 socket->sk->sk_rcvtimeo = 7 * HZ;
da505c38 2991 socket->sk->sk_sndtimeo = 5 * HZ;
edf1ae40 2992
b387eaeb 2993 /* make the bufsizes depend on wsize/rsize and max requests */
bcf4b106
JL
2994 if (server->noautotune) {
2995 if (socket->sk->sk_sndbuf < (200 * 1024))
2996 socket->sk->sk_sndbuf = 200 * 1024;
2997 if (socket->sk->sk_rcvbuf < (140 * 1024))
2998 socket->sk->sk_rcvbuf = 140 * 1024;
edf1ae40 2999 }
1da177e4 3000
6a5fa236 3001 if (server->tcp_nodelay) {
a9f1b85e 3002 int val = 1;
6a5fa236
SF
3003 rc = kernel_setsockopt(socket, SOL_TCP, TCP_NODELAY,
3004 (char *)&val, sizeof(val));
3005 if (rc)
b6b38f70 3006 cFYI(1, "set TCP_NODELAY socket option error %d", rc);
6a5fa236
SF
3007 }
3008
b6b38f70 3009 cFYI(1, "sndbuf %d rcvbuf %d rcvtimeo 0x%lx",
bcf4b106 3010 socket->sk->sk_sndbuf,
b6b38f70 3011 socket->sk->sk_rcvbuf, socket->sk->sk_rcvtimeo);
bcf4b106 3012
ee1b3ea9
JL
3013 rc = socket->ops->connect(socket, saddr, slen, 0);
3014 if (rc < 0) {
3015 cFYI(1, "Error %d connecting to server", rc);
3016 sock_release(socket);
3017 server->ssocket = NULL;
3018 return rc;
3019 }
3020
a9f1b85e
PS
3021 if (sport == htons(RFC1001_PORT))
3022 rc = ip_rfc1001_connect(server);
50c2f753 3023
1da177e4
LT
3024 return rc;
3025}
3026
3027static int
a9f1b85e 3028ip_connect(struct TCP_Server_Info *server)
1da177e4 3029{
6da97910 3030 __be16 *sport;
a9f1b85e
PS
3031 struct sockaddr_in6 *addr6 = (struct sockaddr_in6 *)&server->dstaddr;
3032 struct sockaddr_in *addr = (struct sockaddr_in *)&server->dstaddr;
1da177e4 3033
a9f1b85e
PS
3034 if (server->dstaddr.ss_family == AF_INET6)
3035 sport = &addr6->sin6_port;
3036 else
3037 sport = &addr->sin_port;
1da177e4 3038
a9f1b85e
PS
3039 if (*sport == 0) {
3040 int rc;
1da177e4 3041
a9f1b85e
PS
3042 /* try with 445 port at first */
3043 *sport = htons(CIFS_PORT);
3eb9a889 3044
a9f1b85e 3045 rc = generic_ip_connect(server);
1da177e4 3046 if (rc >= 0)
a9f1b85e 3047 return rc;
6a5fa236 3048
a9f1b85e
PS
3049 /* if it failed, try with 139 port */
3050 *sport = htons(RFC1001_PORT);
6a5fa236
SF
3051 }
3052
a9f1b85e 3053 return generic_ip_connect(server);
1da177e4
LT
3054}
3055
96daf2b0 3056void reset_cifs_unix_caps(int xid, struct cifs_tcon *tcon,
2c6292ae 3057 struct cifs_sb_info *cifs_sb, struct smb_vol *vol_info)
8af18971
SF
3058{
3059 /* if we are reconnecting then should we check to see if
3060 * any requested capabilities changed locally e.g. via
3061 * remount but we can not do much about it here
3062 * if they have (even if we could detect it by the following)
3063 * Perhaps we could add a backpointer to array of sb from tcon
3064 * or if we change to make all sb to same share the same
3065 * sb as NFS - then we only have one backpointer to sb.
3066 * What if we wanted to mount the server share twice once with
3067 * and once without posixacls or posix paths? */
3068 __u64 saved_cap = le64_to_cpu(tcon->fsUnixInfo.Capability);
50c2f753 3069
c18c842b
SF
3070 if (vol_info && vol_info->no_linux_ext) {
3071 tcon->fsUnixInfo.Capability = 0;
3072 tcon->unix_ext = 0; /* Unix Extensions disabled */
b6b38f70 3073 cFYI(1, "Linux protocol extensions disabled");
c18c842b
SF
3074 return;
3075 } else if (vol_info)
3076 tcon->unix_ext = 1; /* Unix Extensions supported */
3077
3078 if (tcon->unix_ext == 0) {
b6b38f70 3079 cFYI(1, "Unix extensions disabled so not set on reconnect");
c18c842b
SF
3080 return;
3081 }
50c2f753 3082
fb8c4b14 3083 if (!CIFSSMBQFSUnixInfo(xid, tcon)) {
8af18971 3084 __u64 cap = le64_to_cpu(tcon->fsUnixInfo.Capability);
6848b733 3085 cFYI(1, "unix caps which server supports %lld", cap);
8af18971
SF
3086 /* check for reconnect case in which we do not
3087 want to change the mount behavior if we can avoid it */
fb8c4b14 3088 if (vol_info == NULL) {
50c2f753 3089 /* turn off POSIX ACL and PATHNAMES if not set
8af18971
SF
3090 originally at mount time */
3091 if ((saved_cap & CIFS_UNIX_POSIX_ACL_CAP) == 0)
3092 cap &= ~CIFS_UNIX_POSIX_ACL_CAP;
11b6d645
IM
3093 if ((saved_cap & CIFS_UNIX_POSIX_PATHNAMES_CAP) == 0) {
3094 if (cap & CIFS_UNIX_POSIX_PATHNAMES_CAP)
b6b38f70 3095 cERROR(1, "POSIXPATH support change");
8af18971 3096 cap &= ~CIFS_UNIX_POSIX_PATHNAMES_CAP;
11b6d645 3097 } else if ((cap & CIFS_UNIX_POSIX_PATHNAMES_CAP) == 0) {
b6b38f70
JP
3098 cERROR(1, "possible reconnect error");
3099 cERROR(1, "server disabled POSIX path support");
11b6d645 3100 }
8af18971 3101 }
50c2f753 3102
6848b733
SF
3103 if (cap & CIFS_UNIX_TRANSPORT_ENCRYPTION_MANDATORY_CAP)
3104 cERROR(1, "per-share encryption not supported yet");
3105
8af18971 3106 cap &= CIFS_UNIX_CAP_MASK;
75865f8c 3107 if (vol_info && vol_info->no_psx_acl)
8af18971 3108 cap &= ~CIFS_UNIX_POSIX_ACL_CAP;
75865f8c 3109 else if (CIFS_UNIX_POSIX_ACL_CAP & cap) {
b6b38f70 3110 cFYI(1, "negotiated posix acl support");
2c6292ae
AV
3111 if (cifs_sb)
3112 cifs_sb->mnt_cifs_flags |=
3113 CIFS_MOUNT_POSIXACL;
8af18971
SF
3114 }
3115
75865f8c 3116 if (vol_info && vol_info->posix_paths == 0)
8af18971 3117 cap &= ~CIFS_UNIX_POSIX_PATHNAMES_CAP;
75865f8c 3118 else if (cap & CIFS_UNIX_POSIX_PATHNAMES_CAP) {
b6b38f70 3119 cFYI(1, "negotiate posix pathnames");
2c6292ae
AV
3120 if (cifs_sb)
3121 cifs_sb->mnt_cifs_flags |=
8af18971
SF
3122 CIFS_MOUNT_POSIX_PATHS;
3123 }
50c2f753 3124
b6b38f70 3125 cFYI(1, "Negotiate caps 0x%x", (int)cap);
8af18971 3126#ifdef CONFIG_CIFS_DEBUG2
75865f8c 3127 if (cap & CIFS_UNIX_FCNTL_CAP)
b6b38f70 3128 cFYI(1, "FCNTL cap");
75865f8c 3129 if (cap & CIFS_UNIX_EXTATTR_CAP)
b6b38f70 3130 cFYI(1, "EXTATTR cap");
75865f8c 3131 if (cap & CIFS_UNIX_POSIX_PATHNAMES_CAP)
b6b38f70 3132 cFYI(1, "POSIX path cap");
75865f8c 3133 if (cap & CIFS_UNIX_XATTR_CAP)
b6b38f70 3134 cFYI(1, "XATTR cap");
75865f8c 3135 if (cap & CIFS_UNIX_POSIX_ACL_CAP)
b6b38f70 3136 cFYI(1, "POSIX ACL cap");
75865f8c 3137 if (cap & CIFS_UNIX_LARGE_READ_CAP)
b6b38f70 3138 cFYI(1, "very large read cap");
75865f8c 3139 if (cap & CIFS_UNIX_LARGE_WRITE_CAP)
b6b38f70 3140 cFYI(1, "very large write cap");
6848b733
SF
3141 if (cap & CIFS_UNIX_TRANSPORT_ENCRYPTION_CAP)
3142 cFYI(1, "transport encryption cap");
3143 if (cap & CIFS_UNIX_TRANSPORT_ENCRYPTION_MANDATORY_CAP)
3144 cFYI(1, "mandatory transport encryption cap");
8af18971
SF
3145#endif /* CIFS_DEBUG2 */
3146 if (CIFSSMBSetFSUnixInfo(xid, tcon, cap)) {
442aa310 3147 if (vol_info == NULL) {
b6b38f70 3148 cFYI(1, "resetting capabilities failed");
442aa310 3149 } else
b6b38f70 3150 cERROR(1, "Negotiating Unix capabilities "
ac3aa2f8
JL
3151 "with the server failed. Consider "
3152 "mounting with the Unix Extensions "
3153 "disabled if problems are found "
5a44b319 3154 "by specifying the nounix mount "
b6b38f70 3155 "option.");
5a44b319 3156
8af18971
SF
3157 }
3158 }
3159}
3160
724d9f1c
PS
3161void cifs_setup_cifs_sb(struct smb_vol *pvolume_info,
3162 struct cifs_sb_info *cifs_sb)
b1c8d2b4 3163{
2de970ff
JL
3164 INIT_DELAYED_WORK(&cifs_sb->prune_tlinks, cifs_prune_tlinks);
3165
2ced6f69
AV
3166 spin_lock_init(&cifs_sb->tlink_tree_lock);
3167 cifs_sb->tlink_tree = RB_ROOT;
3168
25c7f41e 3169 /*
5eba8ab3
JL
3170 * Temporarily set r/wsize for matching superblock. If we end up using
3171 * new sb then client will later negotiate it downward if needed.
25c7f41e 3172 */
5eba8ab3 3173 cifs_sb->rsize = pvolume_info->rsize;
25c7f41e
PS
3174 cifs_sb->wsize = pvolume_info->wsize;
3175
3b795210
SF
3176 cifs_sb->mnt_uid = pvolume_info->linux_uid;
3177 cifs_sb->mnt_gid = pvolume_info->linux_gid;
3178 cifs_sb->mnt_file_mode = pvolume_info->file_mode;
3179 cifs_sb->mnt_dir_mode = pvolume_info->dir_mode;
5206efd6 3180 cFYI(1, "file mode: 0x%hx dir mode: 0x%hx",
b6b38f70 3181 cifs_sb->mnt_file_mode, cifs_sb->mnt_dir_mode);
3b795210 3182
6d20e840 3183 cifs_sb->actimeo = pvolume_info->actimeo;
724d9f1c 3184 cifs_sb->local_nls = pvolume_info->local_nls;
6d20e840 3185
3b795210
SF
3186 if (pvolume_info->noperm)
3187 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_NO_PERM;
3188 if (pvolume_info->setuids)
3189 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_SET_UID;
3190 if (pvolume_info->server_ino)
3191 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_SERVER_INUM;
3192 if (pvolume_info->remap)
3193 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_MAP_SPECIAL_CHR;
3194 if (pvolume_info->no_xattr)
3195 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_NO_XATTR;
3196 if (pvolume_info->sfu_emul)
3197 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_UNX_EMUL;
3198 if (pvolume_info->nobrl)
3199 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_NO_BRL;
be652445 3200 if (pvolume_info->nostrictsync)
4717bed6 3201 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_NOSSYNC;
13a6e42a
SF
3202 if (pvolume_info->mand_lock)
3203 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_NOPOSIXBRL;
d4ffff1f
PS
3204 if (pvolume_info->rwpidforward)
3205 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_RWPIDFORWARD;
3b795210
SF
3206 if (pvolume_info->cifs_acl)
3207 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_CIFS_ACL;
3c7c87fd 3208 if (pvolume_info->backupuid_specified) {
3d3ea8e6 3209 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_CIFS_BACKUPUID;
3c7c87fd
SP
3210 cifs_sb->mnt_backupuid = pvolume_info->backupuid;
3211 }
3212 if (pvolume_info->backupgid_specified) {
3d3ea8e6 3213 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_CIFS_BACKUPGID;
3c7c87fd
SP
3214 cifs_sb->mnt_backupgid = pvolume_info->backupgid;
3215 }
3b795210
SF
3216 if (pvolume_info->override_uid)
3217 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_OVERR_UID;
3218 if (pvolume_info->override_gid)
3219 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_OVERR_GID;
3220 if (pvolume_info->dynperm)
3221 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_DYNPERM;
fa1df75d
SJ
3222 if (pvolume_info->fsc)
3223 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_FSCACHE;
0eb8a132
JL
3224 if (pvolume_info->multiuser)
3225 cifs_sb->mnt_cifs_flags |= (CIFS_MOUNT_MULTIUSER |
3226 CIFS_MOUNT_NO_PERM);
d39454ff
PS
3227 if (pvolume_info->strict_io)
3228 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_STRICT_IO;
3b795210 3229 if (pvolume_info->direct_io) {
b6b38f70 3230 cFYI(1, "mounting share using direct i/o");
3b795210
SF
3231 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_DIRECT_IO;
3232 }
736a3320
SM
3233 if (pvolume_info->mfsymlinks) {
3234 if (pvolume_info->sfu_emul) {
3235 cERROR(1, "mount option mfsymlinks ignored if sfu "
3236 "mount option is used");
3237 } else {
3238 cifs_sb->mnt_cifs_flags |= CIFS_MOUNT_MF_SYMLINKS;
3239 }
3240 }
3b795210
SF
3241
3242 if ((pvolume_info->cifs_acl) && (pvolume_info->dynperm))
b6b38f70
JP
3243 cERROR(1, "mount option dynperm ignored if cifsacl "
3244 "mount option supported");
b1c8d2b4
JL
3245}
3246
f7910cbd 3247/*
5eba8ab3
JL
3248 * When the server supports very large reads and writes via POSIX extensions,
3249 * we can allow up to 2^24-1, minus the size of a READ/WRITE_AND_X header, not
3250 * including the RFC1001 length.
f7910cbd
JL
3251 *
3252 * Note that this might make for "interesting" allocation problems during
1190f6a0
JL
3253 * writeback however as we have to allocate an array of pointers for the
3254 * pages. A 16M write means ~32kb page array with PAGE_CACHE_SIZE == 4096.
5eba8ab3
JL
3255 *
3256 * For reads, there is a similar problem as we need to allocate an array
3257 * of kvecs to handle the receive, though that should only need to be done
3258 * once.
f7910cbd 3259 */
1190f6a0 3260#define CIFS_MAX_WSIZE ((1<<24) - 1 - sizeof(WRITE_REQ) + 4)
5eba8ab3 3261#define CIFS_MAX_RSIZE ((1<<24) - sizeof(READ_RSP) + 4)
f7910cbd
JL
3262
3263/*
5eba8ab3
JL
3264 * When the server doesn't allow large posix writes, only allow a rsize/wsize
3265 * of 2^17-1 minus the size of the call header. That allows for a read or
3266 * write up to the maximum size described by RFC1002.
f7910cbd 3267 */
94443f43 3268#define CIFS_MAX_RFC1002_WSIZE ((1<<17) - 1 - sizeof(WRITE_REQ) + 4)
5eba8ab3 3269#define CIFS_MAX_RFC1002_RSIZE ((1<<17) - 1 - sizeof(READ_RSP) + 4)
f7910cbd
JL
3270
3271/*
3272 * The default wsize is 1M. find_get_pages seems to return a maximum of 256
3273 * pages in a single call. With PAGE_CACHE_SIZE == 4k, this means we can fill
3274 * a single wsize request with a single call.
3275 */
5eba8ab3
JL
3276#define CIFS_DEFAULT_IOSIZE (1024 * 1024)
3277
3278/*
ce91acb3
JL
3279 * Windows only supports a max of 60kb reads and 65535 byte writes. Default to
3280 * those values when posix extensions aren't in force. In actuality here, we
3281 * use 65536 to allow for a write that is a multiple of 4k. Most servers seem
3282 * to be ok with the extra byte even though Windows doesn't send writes that
3283 * are that large.
3284 *
3285 * Citation:
3286 *
3287 * http://blogs.msdn.com/b/openspecification/archive/2009/04/10/smb-maximum-transmit-buffer-size-and-performance-tuning.aspx
5eba8ab3
JL
3288 */
3289#define CIFS_DEFAULT_NON_POSIX_RSIZE (60 * 1024)
ce91acb3 3290#define CIFS_DEFAULT_NON_POSIX_WSIZE (65536)
f7910cbd 3291
3ae629d9
JL
3292/*
3293 * On hosts with high memory, we can't currently support wsize/rsize that are
3294 * larger than we can kmap at once. Cap the rsize/wsize at
3295 * LAST_PKMAP * PAGE_SIZE. We'll never be able to fill a read or write request
3296 * larger than that anyway.
3297 */
3298#ifdef CONFIG_HIGHMEM
3299#define CIFS_KMAP_SIZE_LIMIT (LAST_PKMAP * PAGE_CACHE_SIZE)
3300#else /* CONFIG_HIGHMEM */
3301#define CIFS_KMAP_SIZE_LIMIT (1<<24)
3302#endif /* CONFIG_HIGHMEM */
3303
f7910cbd 3304static unsigned int
96daf2b0 3305cifs_negotiate_wsize(struct cifs_tcon *tcon, struct smb_vol *pvolume_info)
f7910cbd
JL
3306{
3307 __u64 unix_cap = le64_to_cpu(tcon->fsUnixInfo.Capability);
3308 struct TCP_Server_Info *server = tcon->ses->server;
ce91acb3
JL
3309 unsigned int wsize;
3310
3311 /* start with specified wsize, or default */
3312 if (pvolume_info->wsize)
3313 wsize = pvolume_info->wsize;
3314 else if (tcon->unix_ext && (unix_cap & CIFS_UNIX_LARGE_WRITE_CAP))
3315 wsize = CIFS_DEFAULT_IOSIZE;
3316 else
3317 wsize = CIFS_DEFAULT_NON_POSIX_WSIZE;
f7910cbd
JL
3318
3319 /* can server support 24-bit write sizes? (via UNIX extensions) */
3320 if (!tcon->unix_ext || !(unix_cap & CIFS_UNIX_LARGE_WRITE_CAP))
1190f6a0 3321 wsize = min_t(unsigned int, wsize, CIFS_MAX_RFC1002_WSIZE);
f7910cbd 3322
1190f6a0
JL
3323 /*
3324 * no CAP_LARGE_WRITE_X or is signing enabled without CAP_UNIX set?
3325 * Limit it to max buffer offered by the server, minus the size of the
3326 * WRITEX header, not including the 4 byte RFC1001 length.
3327 */
3328 if (!(server->capabilities & CAP_LARGE_WRITE_X) ||
3329 (!(server->capabilities & CAP_UNIX) &&
3330 (server->sec_mode & (SECMODE_SIGN_ENABLED|SECMODE_SIGN_REQUIRED))))
3331 wsize = min_t(unsigned int, wsize,
3332 server->maxBuf - sizeof(WRITE_REQ) + 4);
f7910cbd 3333
3ae629d9
JL
3334 /* limit to the amount that we can kmap at once */
3335 wsize = min_t(unsigned int, wsize, CIFS_KMAP_SIZE_LIMIT);
3336
f7910cbd
JL
3337 /* hard limit of CIFS_MAX_WSIZE */
3338 wsize = min_t(unsigned int, wsize, CIFS_MAX_WSIZE);
3339
3340 return wsize;
3341}
3342
5eba8ab3
JL
3343static unsigned int
3344cifs_negotiate_rsize(struct cifs_tcon *tcon, struct smb_vol *pvolume_info)
3345{
3346 __u64 unix_cap = le64_to_cpu(tcon->fsUnixInfo.Capability);
3347 struct TCP_Server_Info *server = tcon->ses->server;
3348 unsigned int rsize, defsize;
3349
3350 /*
3351 * Set default value...
3352 *
3353 * HACK alert! Ancient servers have very small buffers. Even though
3354 * MS-CIFS indicates that servers are only limited by the client's
3355 * bufsize for reads, testing against win98se shows that it throws
3356 * INVALID_PARAMETER errors if you try to request too large a read.
ec01d738 3357 * OS/2 just sends back short reads.
5eba8ab3 3358 *
ec01d738
JL
3359 * If the server doesn't advertise CAP_LARGE_READ_X, then assume that
3360 * it can't handle a read request larger than its MaxBufferSize either.
5eba8ab3
JL
3361 */
3362 if (tcon->unix_ext && (unix_cap & CIFS_UNIX_LARGE_READ_CAP))
3363 defsize = CIFS_DEFAULT_IOSIZE;
3364 else if (server->capabilities & CAP_LARGE_READ_X)
3365 defsize = CIFS_DEFAULT_NON_POSIX_RSIZE;
5eba8ab3
JL
3366 else
3367 defsize = server->maxBuf - sizeof(READ_RSP);
3368
3369 rsize = pvolume_info->rsize ? pvolume_info->rsize : defsize;
3370
3371 /*
3372 * no CAP_LARGE_READ_X? Then MS-CIFS states that we must limit this to
3373 * the client's MaxBufferSize.
3374 */
3375 if (!(server->capabilities & CAP_LARGE_READ_X))
3376 rsize = min_t(unsigned int, CIFSMaxBufSize, rsize);
3377
3ae629d9
JL
3378 /* limit to the amount that we can kmap at once */
3379 rsize = min_t(unsigned int, rsize, CIFS_KMAP_SIZE_LIMIT);
3380
5eba8ab3
JL
3381 /* hard limit of CIFS_MAX_RSIZE */
3382 rsize = min_t(unsigned int, rsize, CIFS_MAX_RSIZE);
3383
3384 return rsize;
3385}
3386
e4cce94c 3387static int
96daf2b0 3388is_path_accessible(int xid, struct cifs_tcon *tcon,
e4cce94c
IM
3389 struct cifs_sb_info *cifs_sb, const char *full_path)
3390{
3391 int rc;
e4cce94c
IM
3392 FILE_ALL_INFO *pfile_info;
3393
e4cce94c
IM
3394 pfile_info = kmalloc(sizeof(FILE_ALL_INFO), GFP_KERNEL);
3395 if (pfile_info == NULL)
3396 return -ENOMEM;
3397
3398 rc = CIFSSMBQPathInfo(xid, tcon, full_path, pfile_info,
3399 0 /* not legacy */, cifs_sb->local_nls,
3400 cifs_sb->mnt_cifs_flags &
3401 CIFS_MOUNT_MAP_SPECIAL_CHR);
221d1d79
JL
3402
3403 if (rc == -EOPNOTSUPP || rc == -EINVAL)
3404 rc = SMBQueryInformation(xid, tcon, full_path, pfile_info,
3405 cifs_sb->local_nls, cifs_sb->mnt_cifs_flags &
3406 CIFS_MOUNT_MAP_SPECIAL_CHR);
e4cce94c
IM
3407 kfree(pfile_info);
3408 return rc;
3409}
3410
b9bce2e9
JL
3411static void
3412cleanup_volume_info_contents(struct smb_vol *volume_info)
1bfe73c2 3413{
b946845a 3414 kfree(volume_info->username);
1bfe73c2 3415 kzfree(volume_info->password);
13589c43
SF
3416 if (volume_info->UNCip != volume_info->UNC + 2)
3417 kfree(volume_info->UNCip);
95c75454 3418 kfree(volume_info->UNC);
b946845a
SF
3419 kfree(volume_info->domainname);
3420 kfree(volume_info->iocharset);
1bfe73c2 3421 kfree(volume_info->prepath);
b9bce2e9
JL
3422}
3423
3424void
3425cifs_cleanup_volume_info(struct smb_vol *volume_info)
3426{
3427 if (!volume_info)
3428 return;
3429 cleanup_volume_info_contents(volume_info);
1bfe73c2 3430 kfree(volume_info);
1bfe73c2
IM
3431}
3432
b9bce2e9 3433
2d6d589d 3434#ifdef CONFIG_CIFS_DFS_UPCALL
1bfe73c2
IM
3435/* build_path_to_root returns full path to root when
3436 * we do not have an exiting connection (tcon) */
3437static char *
b2a0fa15 3438build_unc_path_to_root(const struct smb_vol *vol,
1bfe73c2
IM
3439 const struct cifs_sb_info *cifs_sb)
3440{
b2a0fa15
JL
3441 char *full_path, *pos;
3442 unsigned int pplen = vol->prepath ? strlen(vol->prepath) : 0;
3443 unsigned int unc_len = strnlen(vol->UNC, MAX_TREE_SIZE + 1);
1bfe73c2 3444
b2a0fa15 3445 full_path = kmalloc(unc_len + pplen + 1, GFP_KERNEL);
1bfe73c2
IM
3446 if (full_path == NULL)
3447 return ERR_PTR(-ENOMEM);
3448
b2a0fa15
JL
3449 strncpy(full_path, vol->UNC, unc_len);
3450 pos = full_path + unc_len;
3451
3452 if (pplen) {
3453 strncpy(pos, vol->prepath, pplen);
3454 pos += pplen;
3455 }
3456
3457 *pos = '\0'; /* add trailing null */
f87d39d9 3458 convert_delimiter(full_path, CIFS_DIR_SEP(cifs_sb));
b2a0fa15 3459 cFYI(1, "%s: full_path=%s", __func__, full_path);
1bfe73c2
IM
3460 return full_path;
3461}
dd613945
SF
3462
3463/*
3464 * Perform a dfs referral query for a share and (optionally) prefix
3465 *
046462ab
SF
3466 * If a referral is found, cifs_sb->mountdata will be (re-)allocated
3467 * to a string containing updated options for the submount. Otherwise it
3468 * will be left untouched.
dd613945
SF
3469 *
3470 * Returns the rc from get_dfs_path to the caller, which can be used to
3471 * determine whether there were referrals.
3472 */
3473static int
96daf2b0 3474expand_dfs_referral(int xid, struct cifs_ses *pSesInfo,
dd613945 3475 struct smb_vol *volume_info, struct cifs_sb_info *cifs_sb,
046462ab 3476 int check_prefix)
dd613945
SF
3477{
3478 int rc;
3479 unsigned int num_referrals = 0;
3480 struct dfs_info3_param *referrals = NULL;
3481 char *full_path = NULL, *ref_path = NULL, *mdata = NULL;
3482
3483 full_path = build_unc_path_to_root(volume_info, cifs_sb);
3484 if (IS_ERR(full_path))
3485 return PTR_ERR(full_path);
3486
3487 /* For DFS paths, skip the first '\' of the UNC */
3488 ref_path = check_prefix ? full_path + 1 : volume_info->UNC + 1;
3489
3490 rc = get_dfs_path(xid, pSesInfo , ref_path, cifs_sb->local_nls,
3491 &num_referrals, &referrals,
3492 cifs_sb->mnt_cifs_flags & CIFS_MOUNT_MAP_SPECIAL_CHR);
3493
3494 if (!rc && num_referrals > 0) {
3495 char *fake_devname = NULL;
3496
3497 mdata = cifs_compose_mount_options(cifs_sb->mountdata,
3498 full_path + 1, referrals,
3499 &fake_devname);
3500
3501 free_dfs_info_array(referrals, num_referrals);
046462ab 3502
dd613945
SF
3503 if (IS_ERR(mdata)) {
3504 rc = PTR_ERR(mdata);
3505 mdata = NULL;
b9bce2e9
JL
3506 } else {
3507 cleanup_volume_info_contents(volume_info);
3508 memset(volume_info, '\0', sizeof(*volume_info));
3509 rc = cifs_setup_volume_info(volume_info, mdata,
3510 fake_devname);
dd613945 3511 }
b9bce2e9
JL
3512 kfree(fake_devname);
3513 kfree(cifs_sb->mountdata);
046462ab 3514 cifs_sb->mountdata = mdata;
dd613945
SF
3515 }
3516 kfree(full_path);
3517 return rc;
3518}
2d6d589d 3519#endif
1bfe73c2 3520
04db79b0
JL
3521static int
3522cifs_setup_volume_info(struct smb_vol *volume_info, char *mount_data,
3523 const char *devname)
1da177e4 3524{
724d9f1c 3525 int rc = 0;
1da177e4 3526
04db79b0
JL
3527 if (cifs_parse_mount_options(mount_data, devname, volume_info))
3528 return -EINVAL;
1da177e4 3529
23db65f5 3530
7586b765 3531 if (volume_info->nullauth) {
04febabc
JL
3532 cFYI(1, "Anonymous login");
3533 kfree(volume_info->username);
3534 volume_info->username = NULL;
7586b765 3535 } else if (volume_info->username) {
1da177e4 3536 /* BB fixme parse for domain name here */
b6b38f70 3537 cFYI(1, "Username: %s", volume_info->username);
1da177e4 3538 } else {
bf820679 3539 cifserror("No username specified");
50c2f753
SF
3540 /* In userspace mount helper we can get user name from alternate
3541 locations such as env variables and files on disk */
04db79b0 3542 return -EINVAL;
1da177e4
LT
3543 }
3544
1da177e4 3545 /* this is needed for ASCII cp to Unicode converts */
7586b765 3546 if (volume_info->iocharset == NULL) {
a5fc4ce0
JL
3547 /* load_nls_default cannot return null */
3548 volume_info->local_nls = load_nls_default();
1da177e4 3549 } else {
a5fc4ce0
JL
3550 volume_info->local_nls = load_nls(volume_info->iocharset);
3551 if (volume_info->local_nls == NULL) {
b6b38f70
JP
3552 cERROR(1, "CIFS mount error: iocharset %s not found",
3553 volume_info->iocharset);
04db79b0 3554 return -ELIBACC;
1da177e4
LT
3555 }
3556 }
724d9f1c 3557
724d9f1c
PS
3558 return rc;
3559}
3560
04db79b0
JL
3561struct smb_vol *
3562cifs_get_volume_info(char *mount_data, const char *devname)
3563{
3564 int rc;
3565 struct smb_vol *volume_info;
3566
3567 volume_info = kzalloc(sizeof(struct smb_vol), GFP_KERNEL);
3568 if (!volume_info)
3569 return ERR_PTR(-ENOMEM);
3570
3571 rc = cifs_setup_volume_info(volume_info, mount_data, devname);
3572 if (rc) {
3573 cifs_cleanup_volume_info(volume_info);
3574 volume_info = ERR_PTR(rc);
3575 }
3576
3577 return volume_info;
3578}
3579
724d9f1c 3580int
2c6292ae 3581cifs_mount(struct cifs_sb_info *cifs_sb, struct smb_vol *volume_info)
724d9f1c 3582{
1daaae8f 3583 int rc;
724d9f1c 3584 int xid;
96daf2b0
SF
3585 struct cifs_ses *pSesInfo;
3586 struct cifs_tcon *tcon;
724d9f1c
PS
3587 struct TCP_Server_Info *srvTcp;
3588 char *full_path;
3589 struct tcon_link *tlink;
3590#ifdef CONFIG_CIFS_DFS_UPCALL
3591 int referral_walks_count = 0;
20547490 3592#endif
dd854466
AV
3593
3594 rc = bdi_setup_and_register(&cifs_sb->bdi, "cifs", BDI_CAP_MAP_COPY);
3595 if (rc)
3596 return rc;
3597
20547490 3598#ifdef CONFIG_CIFS_DFS_UPCALL
724d9f1c
PS
3599try_mount_again:
3600 /* cleanup activities if we're chasing a referral */
3601 if (referral_walks_count) {
3602 if (tcon)
3603 cifs_put_tcon(tcon);
3604 else if (pSesInfo)
3605 cifs_put_smb_ses(pSesInfo);
3606
724d9f1c
PS
3607 FreeXid(xid);
3608 }
3609#endif
1daaae8f 3610 rc = 0;
724d9f1c
PS
3611 tcon = NULL;
3612 pSesInfo = NULL;
3613 srvTcp = NULL;
3614 full_path = NULL;
3615 tlink = NULL;
3616
3617 xid = GetXid();
1da177e4 3618
63c038c2 3619 /* get a reference to a tcp session */
7586b765 3620 srvTcp = cifs_get_tcp_session(volume_info);
63c038c2
JL
3621 if (IS_ERR(srvTcp)) {
3622 rc = PTR_ERR(srvTcp);
dd854466 3623 bdi_destroy(&cifs_sb->bdi);
63c038c2 3624 goto out;
1da177e4
LT
3625 }
3626
36988c76
JL
3627 /* get a reference to a SMB session */
3628 pSesInfo = cifs_get_smb_ses(srvTcp, volume_info);
3629 if (IS_ERR(pSesInfo)) {
3630 rc = PTR_ERR(pSesInfo);
3631 pSesInfo = NULL;
3632 goto mount_fail_check;
1da177e4 3633 }
50c2f753 3634
d00c28de
JL
3635 /* search for existing tcon to this server share */
3636 tcon = cifs_get_tcon(pSesInfo, volume_info);
3637 if (IS_ERR(tcon)) {
3638 rc = PTR_ERR(tcon);
3639 tcon = NULL;
1bfe73c2 3640 goto remote_path_check;
d00c28de 3641 }
1bfe73c2 3642
d82c2df5 3643 /* tell server which Unix caps we support */
6848b733 3644 if (tcon->ses->capabilities & CAP_UNIX) {
d82c2df5
SF
3645 /* reset of caps checks mount to see if unix extensions
3646 disabled for just this mount */
2c6292ae 3647 reset_cifs_unix_caps(xid, tcon, cifs_sb, volume_info);
6848b733
SF
3648 if ((tcon->ses->server->tcpStatus == CifsNeedReconnect) &&
3649 (le64_to_cpu(tcon->fsUnixInfo.Capability) &
3650 CIFS_UNIX_TRANSPORT_ENCRYPTION_MANDATORY_CAP)) {
3651 rc = -EACCES;
3652 goto mount_fail_check;
3653 }
3654 } else
d82c2df5 3655 tcon->unix_ext = 0; /* server does not support them */
c18c842b 3656
6848b733
SF
3657 /* do not care if following two calls succeed - informational */
3658 if (!tcon->ipc) {
3659 CIFSSMBQFSDeviceInfo(xid, tcon);
3660 CIFSSMBQFSAttributeInfo(xid, tcon);
3661 }
3662
f7910cbd 3663 cifs_sb->wsize = cifs_negotiate_wsize(tcon, volume_info);
5eba8ab3 3664 cifs_sb->rsize = cifs_negotiate_rsize(tcon, volume_info);
f7910cbd 3665
66bfaadc 3666 /* tune readahead according to rsize */
8f71465c 3667 cifs_sb->bdi.ra_pages = cifs_sb->rsize / PAGE_CACHE_SIZE;
f7910cbd 3668
1bfe73c2 3669remote_path_check:
c1508ca2
SF
3670#ifdef CONFIG_CIFS_DFS_UPCALL
3671 /*
3672 * Perform an unconditional check for whether there are DFS
3673 * referrals for this path without prefix, to provide support
3674 * for DFS referrals from w2k8 servers which don't seem to respond
3675 * with PATH_NOT_COVERED to requests that include the prefix.
3676 * Chase the referral if found, otherwise continue normally.
3677 */
3678 if (referral_walks_count == 0) {
3679 int refrc = expand_dfs_referral(xid, pSesInfo, volume_info,
046462ab 3680 cifs_sb, false);
c1508ca2
SF
3681 if (!refrc) {
3682 referral_walks_count++;
3683 goto try_mount_again;
3684 }
3685 }
3686#endif
3687
f87d39d9 3688 /* check if a whole path is not remote */
70945643 3689 if (!rc && tcon) {
e4cce94c 3690 /* build_path_to_root works only when we have a valid tcon */
f87d39d9 3691 full_path = cifs_build_path_to_root(volume_info, cifs_sb, tcon);
e4cce94c
IM
3692 if (full_path == NULL) {
3693 rc = -ENOMEM;
3694 goto mount_fail_check;
3695 }
3696 rc = is_path_accessible(xid, tcon, cifs_sb, full_path);
03ceace5 3697 if (rc != 0 && rc != -EREMOTE) {
e4cce94c
IM
3698 kfree(full_path);
3699 goto mount_fail_check;
3700 }
3701 kfree(full_path);
3702 }
3703
1bfe73c2
IM
3704 /* get referral if needed */
3705 if (rc == -EREMOTE) {
d036f50f 3706#ifdef CONFIG_CIFS_DFS_UPCALL
5c2503a8
IM
3707 if (referral_walks_count > MAX_NESTED_LINKS) {
3708 /*
3709 * BB: when we implement proper loop detection,
3710 * we will remove this check. But now we need it
3711 * to prevent an indefinite loop if 'DFS tree' is
3712 * misconfigured (i.e. has loops).
3713 */
3714 rc = -ELOOP;
3715 goto mount_fail_check;
3716 }
1bfe73c2 3717
dd613945 3718 rc = expand_dfs_referral(xid, pSesInfo, volume_info, cifs_sb,
046462ab 3719 true);
7b91e266 3720
dd613945 3721 if (!rc) {
5c2503a8 3722 referral_walks_count++;
1bfe73c2
IM
3723 goto try_mount_again;
3724 }
dd613945 3725 goto mount_fail_check;
d036f50f
SF
3726#else /* No DFS support, return error on mount */
3727 rc = -EOPNOTSUPP;
3728#endif
1bfe73c2
IM
3729 }
3730
9d002df4
JL
3731 if (rc)
3732 goto mount_fail_check;
3733
3734 /* now, hang the tcon off of the superblock */
3735 tlink = kzalloc(sizeof *tlink, GFP_KERNEL);
3736 if (tlink == NULL) {
3737 rc = -ENOMEM;
3738 goto mount_fail_check;
3739 }
3740
b647c35f 3741 tlink->tl_uid = pSesInfo->linux_uid;
9d002df4
JL
3742 tlink->tl_tcon = tcon;
3743 tlink->tl_time = jiffies;
3744 set_bit(TCON_LINK_MASTER, &tlink->tl_flags);
3745 set_bit(TCON_LINK_IN_TREE, &tlink->tl_flags);
3746
b647c35f 3747 cifs_sb->master_tlink = tlink;
9d002df4 3748 spin_lock(&cifs_sb->tlink_tree_lock);
b647c35f 3749 tlink_rb_insert(&cifs_sb->tlink_tree, tlink);
9d002df4 3750 spin_unlock(&cifs_sb->tlink_tree_lock);
413e661c 3751
da472fc8 3752 queue_delayed_work(cifsiod_wq, &cifs_sb->prune_tlinks,
2de970ff
JL
3753 TLINK_IDLE_EXPIRE);
3754
1bfe73c2
IM
3755mount_fail_check:
3756 /* on error free sesinfo and tcon struct if needed */
3757 if (rc) {
1bfe73c2 3758 /* If find_unc succeeded then rc == 0 so we can not end */
25985edc 3759 /* up accidentally freeing someone elses tcon struct */
1bfe73c2
IM
3760 if (tcon)
3761 cifs_put_tcon(tcon);
3762 else if (pSesInfo)
3763 cifs_put_smb_ses(pSesInfo);
3764 else
3765 cifs_put_tcp_session(srvTcp);
dd854466 3766 bdi_destroy(&cifs_sb->bdi);
1bfe73c2
IM
3767 }
3768
70fe7dc0 3769out:
1da177e4
LT
3770 FreeXid(xid);
3771 return rc;
3772}
3773
8d1bca32
JL
3774/*
3775 * Issue a TREE_CONNECT request. Note that for IPC$ shares, that the tcon
3776 * pointer may be NULL.
3777 */
1da177e4 3778int
96daf2b0
SF
3779CIFSTCon(unsigned int xid, struct cifs_ses *ses,
3780 const char *tree, struct cifs_tcon *tcon,
1da177e4
LT
3781 const struct nls_table *nls_codepage)
3782{
3783 struct smb_hdr *smb_buffer;
3784 struct smb_hdr *smb_buffer_response;
3785 TCONX_REQ *pSMB;
3786 TCONX_RSP *pSMBr;
3787 unsigned char *bcc_ptr;
3788 int rc = 0;
690c522f
JL
3789 int length;
3790 __u16 bytes_left, count;
1da177e4
LT
3791
3792 if (ses == NULL)
3793 return -EIO;
3794
3795 smb_buffer = cifs_buf_get();
ca43e3be 3796 if (smb_buffer == NULL)
1da177e4 3797 return -ENOMEM;
ca43e3be 3798
1da177e4
LT
3799 smb_buffer_response = smb_buffer;
3800
3801 header_assemble(smb_buffer, SMB_COM_TREE_CONNECT_ANDX,
3802 NULL /*no tid */ , 4 /*wct */ );
1982c344 3803
88257360 3804 smb_buffer->Mid = get_next_mid(ses->server);
1da177e4
LT
3805 smb_buffer->Uid = ses->Suid;
3806 pSMB = (TCONX_REQ *) smb_buffer;
3807 pSMBr = (TCONX_RSP *) smb_buffer_response;
3808
3809 pSMB->AndXCommand = 0xFF;
3810 pSMB->Flags = cpu_to_le16(TCON_EXTENDED_SECINFO);
1da177e4 3811 bcc_ptr = &pSMB->Password[0];
8d1bca32 3812 if (!tcon || (ses->server->sec_mode & SECMODE_USER)) {
eeac8047 3813 pSMB->PasswordLength = cpu_to_le16(1); /* minimum */
7c7b25bc 3814 *bcc_ptr = 0; /* password is null byte */
eeac8047 3815 bcc_ptr++; /* skip password */
7c7b25bc 3816 /* already aligned so no need to do it below */
eeac8047 3817 } else {
540b2e37 3818 pSMB->PasswordLength = cpu_to_le16(CIFS_AUTH_RESP_SIZE);
eeac8047
SF
3819 /* BB FIXME add code to fail this if NTLMv2 or Kerberos
3820 specified as required (when that support is added to
3821 the vfs in the future) as only NTLM or the much
7c7b25bc 3822 weaker LANMAN (which we do not send by default) is accepted
eeac8047
SF
3823 by Samba (not sure whether other servers allow
3824 NTLMv2 password here) */
7c7b25bc 3825#ifdef CONFIG_CIFS_WEAK_PW_HASH
04912d6a 3826 if ((global_secflags & CIFSSEC_MAY_LANMAN) &&
00e485b0 3827 (ses->server->secType == LANMAN))
d3ba50b1 3828 calc_lanman_hash(tcon->password, ses->server->cryptkey,
96daf2b0 3829 ses->server->sec_mode &
4e53a3fb
JL
3830 SECMODE_PW_ENCRYPT ? true : false,
3831 bcc_ptr);
7c7b25bc
SF
3832 else
3833#endif /* CIFS_WEAK_PW_HASH */
ee2c9258 3834 rc = SMBNTencrypt(tcon->password, ses->server->cryptkey,
9ef5992e 3835 bcc_ptr, nls_codepage);
eeac8047 3836
540b2e37 3837 bcc_ptr += CIFS_AUTH_RESP_SIZE;
fb8c4b14 3838 if (ses->capabilities & CAP_UNICODE) {
7c7b25bc
SF
3839 /* must align unicode strings */
3840 *bcc_ptr = 0; /* null byte password */
3841 bcc_ptr++;
3842 }
eeac8047 3843 }
1da177e4 3844
96daf2b0 3845 if (ses->server->sec_mode &
a878fb22 3846 (SECMODE_SIGN_REQUIRED | SECMODE_SIGN_ENABLED))
1da177e4
LT
3847 smb_buffer->Flags2 |= SMBFLG2_SECURITY_SIGNATURE;
3848
3849 if (ses->capabilities & CAP_STATUS32) {
3850 smb_buffer->Flags2 |= SMBFLG2_ERR_STATUS;
3851 }
3852 if (ses->capabilities & CAP_DFS) {
3853 smb_buffer->Flags2 |= SMBFLG2_DFS;
3854 }
3855 if (ses->capabilities & CAP_UNICODE) {
3856 smb_buffer->Flags2 |= SMBFLG2_UNICODE;
3857 length =
acbbb76a 3858 cifs_strtoUTF16((__le16 *) bcc_ptr, tree,
50c2f753 3859 6 /* max utf8 char length in bytes */ *
a878fb22
SF
3860 (/* server len*/ + 256 /* share len */), nls_codepage);
3861 bcc_ptr += 2 * length; /* convert num 16 bit words to bytes */
1da177e4
LT
3862 bcc_ptr += 2; /* skip trailing null */
3863 } else { /* ASCII */
1da177e4
LT
3864 strcpy(bcc_ptr, tree);
3865 bcc_ptr += strlen(tree) + 1;
3866 }
3867 strcpy(bcc_ptr, "?????");
3868 bcc_ptr += strlen("?????");
3869 bcc_ptr += 1;
3870 count = bcc_ptr - &pSMB->Password[0];
be8e3b00
SF
3871 pSMB->hdr.smb_buf_length = cpu_to_be32(be32_to_cpu(
3872 pSMB->hdr.smb_buf_length) + count);
1da177e4
LT
3873 pSMB->ByteCount = cpu_to_le16(count);
3874
133672ef 3875 rc = SendReceive(xid, ses, smb_buffer, smb_buffer_response, &length,
7749981e 3876 0);
1da177e4 3877
1da177e4
LT
3878 /* above now done in SendReceive */
3879 if ((rc == 0) && (tcon != NULL)) {
0e0d2cf3
SF
3880 bool is_unicode;
3881
1da177e4 3882 tcon->tidStatus = CifsGood;
3b795210 3883 tcon->need_reconnect = false;
1da177e4
LT
3884 tcon->tid = smb_buffer_response->Tid;
3885 bcc_ptr = pByteArea(smb_buffer_response);
690c522f 3886 bytes_left = get_bcc(smb_buffer_response);
cc20c031 3887 length = strnlen(bcc_ptr, bytes_left - 2);
0e0d2cf3
SF
3888 if (smb_buffer->Flags2 & SMBFLG2_UNICODE)
3889 is_unicode = true;
3890 else
3891 is_unicode = false;
3892
cc20c031 3893
50c2f753 3894 /* skip service field (NB: this field is always ASCII) */
7f8ed420
SF
3895 if (length == 3) {
3896 if ((bcc_ptr[0] == 'I') && (bcc_ptr[1] == 'P') &&
3897 (bcc_ptr[2] == 'C')) {
b6b38f70 3898 cFYI(1, "IPC connection");
7f8ed420
SF
3899 tcon->ipc = 1;
3900 }
3901 } else if (length == 2) {
3902 if ((bcc_ptr[0] == 'A') && (bcc_ptr[1] == ':')) {
3903 /* the most common case */
b6b38f70 3904 cFYI(1, "disk share connection");
7f8ed420
SF
3905 }
3906 }
50c2f753 3907 bcc_ptr += length + 1;
cc20c031 3908 bytes_left -= (length + 1);
1da177e4 3909 strncpy(tcon->treeName, tree, MAX_TREE_SIZE);
cc20c031
JL
3910
3911 /* mostly informational -- no need to fail on error here */
90a98b2f 3912 kfree(tcon->nativeFileSystem);
acbbb76a 3913 tcon->nativeFileSystem = cifs_strndup_from_utf16(bcc_ptr,
0e0d2cf3 3914 bytes_left, is_unicode,
cc20c031
JL
3915 nls_codepage);
3916
b6b38f70 3917 cFYI(1, "nativeFileSystem=%s", tcon->nativeFileSystem);
cc20c031 3918
fb8c4b14 3919 if ((smb_buffer_response->WordCount == 3) ||
1a4e15a0
SF
3920 (smb_buffer_response->WordCount == 7))
3921 /* field is in same location */
3979877e
SF
3922 tcon->Flags = le16_to_cpu(pSMBr->OptionalSupport);
3923 else
3924 tcon->Flags = 0;
b6b38f70 3925 cFYI(1, "Tcon flags: 0x%x ", tcon->Flags);
1da177e4 3926 } else if ((rc == 0) && tcon == NULL) {
50c2f753 3927 /* all we need to save for IPC$ connection */
1da177e4
LT
3928 ses->ipc_tid = smb_buffer_response->Tid;
3929 }
3930
a8a11d39 3931 cifs_buf_release(smb_buffer);
1da177e4
LT
3932 return rc;
3933}
3934
2a9b9951
AV
3935void
3936cifs_umount(struct cifs_sb_info *cifs_sb)
1da177e4 3937{
b647c35f
JL
3938 struct rb_root *root = &cifs_sb->tlink_tree;
3939 struct rb_node *node;
3940 struct tcon_link *tlink;
9d002df4 3941
2de970ff
JL
3942 cancel_delayed_work_sync(&cifs_sb->prune_tlinks);
3943
b647c35f
JL
3944 spin_lock(&cifs_sb->tlink_tree_lock);
3945 while ((node = rb_first(root))) {
3946 tlink = rb_entry(node, struct tcon_link, tl_rbnode);
3947 cifs_get_tlink(tlink);
3948 clear_bit(TCON_LINK_IN_TREE, &tlink->tl_flags);
3949 rb_erase(node, root);
1da177e4 3950
b647c35f
JL
3951 spin_unlock(&cifs_sb->tlink_tree_lock);
3952 cifs_put_tlink(tlink);
3953 spin_lock(&cifs_sb->tlink_tree_lock);
3954 }
3955 spin_unlock(&cifs_sb->tlink_tree_lock);
50c2f753 3956
dd854466 3957 bdi_destroy(&cifs_sb->bdi);
d757d71b
AV
3958 kfree(cifs_sb->mountdata);
3959 unload_nls(cifs_sb->local_nls);
3960 kfree(cifs_sb);
50c2f753 3961}
1da177e4 3962
96daf2b0 3963int cifs_negotiate_protocol(unsigned int xid, struct cifs_ses *ses)
1da177e4
LT
3964{
3965 int rc = 0;
198b5682 3966 struct TCP_Server_Info *server = ses->server;
1da177e4 3967
198b5682
JL
3968 /* only send once per connect */
3969 if (server->maxBuf != 0)
3970 return 0;
3971
45275789 3972 set_credits(server, 1);
198b5682
JL
3973 rc = CIFSSMBNegotiate(xid, ses);
3974 if (rc == -EAGAIN) {
3975 /* retry only once on 1st time connection */
45275789 3976 set_credits(server, 1);
198b5682
JL
3977 rc = CIFSSMBNegotiate(xid, ses);
3978 if (rc == -EAGAIN)
3979 rc = -EHOSTDOWN;
1da177e4 3980 }
198b5682
JL
3981 if (rc == 0) {
3982 spin_lock(&GlobalMid_Lock);
7fdbaa1b 3983 if (server->tcpStatus == CifsNeedNegotiate)
198b5682
JL
3984 server->tcpStatus = CifsGood;
3985 else
3986 rc = -EHOSTDOWN;
3987 spin_unlock(&GlobalMid_Lock);
26b994fa 3988
198b5682
JL
3989 }
3990
3991 return rc;
3992}
3993
3994
96daf2b0 3995int cifs_setup_session(unsigned int xid, struct cifs_ses *ses,
198b5682
JL
3996 struct nls_table *nls_info)
3997{
3998 int rc = 0;
3999 struct TCP_Server_Info *server = ses->server;
26b994fa 4000
198b5682
JL
4001 ses->flags = 0;
4002 ses->capabilities = server->capabilities;
26b994fa 4003 if (linuxExtEnabled == 0)
198b5682 4004 ses->capabilities &= (~CAP_UNIX);
20418acd 4005
b6b38f70 4006 cFYI(1, "Security Mode: 0x%x Capabilities: 0x%x TimeAdjust: %d",
96daf2b0 4007 server->sec_mode, server->capabilities, server->timeAdj);
cb7691b6 4008
198b5682 4009 rc = CIFS_SessSetup(xid, ses, nls_info);
26b994fa 4010 if (rc) {
b6b38f70 4011 cERROR(1, "Send error in SessSetup = %d", rc);
26b994fa 4012 } else {
5d0d2882
SP
4013 mutex_lock(&ses->server->srv_mutex);
4014 if (!server->session_estab) {
21e73393 4015 server->session_key.response = ses->auth_key.response;
5d0d2882 4016 server->session_key.len = ses->auth_key.len;
21e73393
SP
4017 server->sequence_number = 0x2;
4018 server->session_estab = true;
4019 ses->auth_key.response = NULL;
5d0d2882
SP
4020 }
4021 mutex_unlock(&server->srv_mutex);
4022
b6b38f70 4023 cFYI(1, "CIFS Session Established successfully");
20418acd 4024 spin_lock(&GlobalMid_Lock);
198b5682
JL
4025 ses->status = CifsGood;
4026 ses->need_reconnect = false;
20418acd 4027 spin_unlock(&GlobalMid_Lock);
1da177e4 4028 }
26b994fa 4029
21e73393
SP
4030 kfree(ses->auth_key.response);
4031 ses->auth_key.response = NULL;
4032 ses->auth_key.len = 0;
d3686d54
SP
4033 kfree(ses->ntlmssp);
4034 ses->ntlmssp = NULL;
21e73393 4035
1da177e4
LT
4036 return rc;
4037}
4038
8a8798a5
JL
4039static int
4040cifs_set_vol_auth(struct smb_vol *vol, struct cifs_ses *ses)
4041{
4042 switch (ses->server->secType) {
4043 case Kerberos:
4044 vol->secFlg = CIFSSEC_MUST_KRB5;
4045 return 0;
4046 case NTLMv2:
4047 vol->secFlg = CIFSSEC_MUST_NTLMV2;
4048 break;
4049 case NTLM:
4050 vol->secFlg = CIFSSEC_MUST_NTLM;
4051 break;
4052 case RawNTLMSSP:
4053 vol->secFlg = CIFSSEC_MUST_NTLMSSP;
4054 break;
4055 case LANMAN:
4056 vol->secFlg = CIFSSEC_MUST_LANMAN;
4057 break;
4058 }
4059
4060 return cifs_set_cifscreds(vol, ses);
4061}
4062
96daf2b0 4063static struct cifs_tcon *
9d002df4
JL
4064cifs_construct_tcon(struct cifs_sb_info *cifs_sb, uid_t fsuid)
4065{
8a8798a5 4066 int rc;
96daf2b0
SF
4067 struct cifs_tcon *master_tcon = cifs_sb_master_tcon(cifs_sb);
4068 struct cifs_ses *ses;
4069 struct cifs_tcon *tcon = NULL;
9d002df4 4070 struct smb_vol *vol_info;
9d002df4
JL
4071
4072 vol_info = kzalloc(sizeof(*vol_info), GFP_KERNEL);
803ab977
DC
4073 if (vol_info == NULL)
4074 return ERR_PTR(-ENOMEM);
9d002df4 4075
9d002df4
JL
4076 vol_info->local_nls = cifs_sb->local_nls;
4077 vol_info->linux_uid = fsuid;
4078 vol_info->cred_uid = fsuid;
4079 vol_info->UNC = master_tcon->treeName;
4080 vol_info->retry = master_tcon->retry;
4081 vol_info->nocase = master_tcon->nocase;
4082 vol_info->local_lease = master_tcon->local_lease;
4083 vol_info->no_linux_ext = !master_tcon->unix_ext;
4084
8a8798a5
JL
4085 rc = cifs_set_vol_auth(vol_info, master_tcon->ses);
4086 if (rc) {
4087 tcon = ERR_PTR(rc);
4088 goto out;
4089 }
9d002df4
JL
4090
4091 /* get a reference for the same TCP session */
3f9bcca7 4092 spin_lock(&cifs_tcp_ses_lock);
9d002df4 4093 ++master_tcon->ses->server->srv_count;
3f9bcca7 4094 spin_unlock(&cifs_tcp_ses_lock);
9d002df4
JL
4095
4096 ses = cifs_get_smb_ses(master_tcon->ses->server, vol_info);
4097 if (IS_ERR(ses)) {
96daf2b0 4098 tcon = (struct cifs_tcon *)ses;
9d002df4
JL
4099 cifs_put_tcp_session(master_tcon->ses->server);
4100 goto out;
4101 }
4102
4103 tcon = cifs_get_tcon(ses, vol_info);
4104 if (IS_ERR(tcon)) {
4105 cifs_put_smb_ses(ses);
4106 goto out;
4107 }
4108
4109 if (ses->capabilities & CAP_UNIX)
4110 reset_cifs_unix_caps(0, tcon, NULL, vol_info);
4111out:
8a8798a5
JL
4112 kfree(vol_info->username);
4113 kfree(vol_info->password);
9d002df4
JL
4114 kfree(vol_info);
4115
4116 return tcon;
4117}
4118
96daf2b0 4119struct cifs_tcon *
9d002df4
JL
4120cifs_sb_master_tcon(struct cifs_sb_info *cifs_sb)
4121{
4122 return tlink_tcon(cifs_sb_master_tlink(cifs_sb));
4123}
4124
4125static int
4126cifs_sb_tcon_pending_wait(void *unused)
4127{
4128 schedule();
4129 return signal_pending(current) ? -ERESTARTSYS : 0;
4130}
4131
b647c35f
JL
4132/* find and return a tlink with given uid */
4133static struct tcon_link *
4134tlink_rb_search(struct rb_root *root, uid_t uid)
4135{
4136 struct rb_node *node = root->rb_node;
4137 struct tcon_link *tlink;
4138
4139 while (node) {
4140 tlink = rb_entry(node, struct tcon_link, tl_rbnode);
4141
4142 if (tlink->tl_uid > uid)
4143 node = node->rb_left;
4144 else if (tlink->tl_uid < uid)
4145 node = node->rb_right;
4146 else
4147 return tlink;
4148 }
4149 return NULL;
4150}
4151
4152/* insert a tcon_link into the tree */
4153static void
4154tlink_rb_insert(struct rb_root *root, struct tcon_link *new_tlink)
4155{
4156 struct rb_node **new = &(root->rb_node), *parent = NULL;
4157 struct tcon_link *tlink;
4158
4159 while (*new) {
4160 tlink = rb_entry(*new, struct tcon_link, tl_rbnode);
4161 parent = *new;
4162
4163 if (tlink->tl_uid > new_tlink->tl_uid)
4164 new = &((*new)->rb_left);
4165 else
4166 new = &((*new)->rb_right);
4167 }
4168
4169 rb_link_node(&new_tlink->tl_rbnode, parent, new);
4170 rb_insert_color(&new_tlink->tl_rbnode, root);
4171}
4172
9d002df4
JL
4173/*
4174 * Find or construct an appropriate tcon given a cifs_sb and the fsuid of the
4175 * current task.
4176 *
4177 * If the superblock doesn't refer to a multiuser mount, then just return
4178 * the master tcon for the mount.
4179 *
6ef933a3 4180 * First, search the rbtree for an existing tcon for this fsuid. If one
9d002df4
JL
4181 * exists, then check to see if it's pending construction. If it is then wait
4182 * for construction to complete. Once it's no longer pending, check to see if
4183 * it failed and either return an error or retry construction, depending on
4184 * the timeout.
4185 *
4186 * If one doesn't exist then insert a new tcon_link struct into the tree and
4187 * try to construct a new one.
4188 */
4189struct tcon_link *
4190cifs_sb_tlink(struct cifs_sb_info *cifs_sb)
4191{
4192 int ret;
b647c35f 4193 uid_t fsuid = current_fsuid();
9d002df4
JL
4194 struct tcon_link *tlink, *newtlink;
4195
4196 if (!(cifs_sb->mnt_cifs_flags & CIFS_MOUNT_MULTIUSER))
4197 return cifs_get_tlink(cifs_sb_master_tlink(cifs_sb));
4198
4199 spin_lock(&cifs_sb->tlink_tree_lock);
b647c35f 4200 tlink = tlink_rb_search(&cifs_sb->tlink_tree, fsuid);
9d002df4
JL
4201 if (tlink)
4202 cifs_get_tlink(tlink);
4203 spin_unlock(&cifs_sb->tlink_tree_lock);
4204
4205 if (tlink == NULL) {
4206 newtlink = kzalloc(sizeof(*tlink), GFP_KERNEL);
4207 if (newtlink == NULL)
4208 return ERR_PTR(-ENOMEM);
b647c35f 4209 newtlink->tl_uid = fsuid;
9d002df4
JL
4210 newtlink->tl_tcon = ERR_PTR(-EACCES);
4211 set_bit(TCON_LINK_PENDING, &newtlink->tl_flags);
4212 set_bit(TCON_LINK_IN_TREE, &newtlink->tl_flags);
4213 cifs_get_tlink(newtlink);
4214
9d002df4
JL
4215 spin_lock(&cifs_sb->tlink_tree_lock);
4216 /* was one inserted after previous search? */
b647c35f 4217 tlink = tlink_rb_search(&cifs_sb->tlink_tree, fsuid);
9d002df4
JL
4218 if (tlink) {
4219 cifs_get_tlink(tlink);
4220 spin_unlock(&cifs_sb->tlink_tree_lock);
9d002df4
JL
4221 kfree(newtlink);
4222 goto wait_for_construction;
4223 }
9d002df4 4224 tlink = newtlink;
b647c35f
JL
4225 tlink_rb_insert(&cifs_sb->tlink_tree, tlink);
4226 spin_unlock(&cifs_sb->tlink_tree_lock);
9d002df4
JL
4227 } else {
4228wait_for_construction:
4229 ret = wait_on_bit(&tlink->tl_flags, TCON_LINK_PENDING,
4230 cifs_sb_tcon_pending_wait,
4231 TASK_INTERRUPTIBLE);
4232 if (ret) {
4233 cifs_put_tlink(tlink);
4234 return ERR_PTR(ret);
4235 }
4236
4237 /* if it's good, return it */
4238 if (!IS_ERR(tlink->tl_tcon))
4239 return tlink;
4240
4241 /* return error if we tried this already recently */
4242 if (time_before(jiffies, tlink->tl_time + TLINK_ERROR_EXPIRE)) {
4243 cifs_put_tlink(tlink);
4244 return ERR_PTR(-EACCES);
4245 }
4246
4247 if (test_and_set_bit(TCON_LINK_PENDING, &tlink->tl_flags))
4248 goto wait_for_construction;
4249 }
4250
4251 tlink->tl_tcon = cifs_construct_tcon(cifs_sb, fsuid);
4252 clear_bit(TCON_LINK_PENDING, &tlink->tl_flags);
4253 wake_up_bit(&tlink->tl_flags, TCON_LINK_PENDING);
4254
4255 if (IS_ERR(tlink->tl_tcon)) {
4256 cifs_put_tlink(tlink);
4257 return ERR_PTR(-EACCES);
4258 }
4259
4260 return tlink;
4261}
2de970ff
JL
4262
4263/*
4264 * periodic workqueue job that scans tcon_tree for a superblock and closes
4265 * out tcons.
4266 */
4267static void
4268cifs_prune_tlinks(struct work_struct *work)
4269{
4270 struct cifs_sb_info *cifs_sb = container_of(work, struct cifs_sb_info,
4271 prune_tlinks.work);
b647c35f
JL
4272 struct rb_root *root = &cifs_sb->tlink_tree;
4273 struct rb_node *node = rb_first(root);
4274 struct rb_node *tmp;
4275 struct tcon_link *tlink;
2de970ff 4276
b647c35f
JL
4277 /*
4278 * Because we drop the spinlock in the loop in order to put the tlink
4279 * it's not guarded against removal of links from the tree. The only
4280 * places that remove entries from the tree are this function and
4281 * umounts. Because this function is non-reentrant and is canceled
4282 * before umount can proceed, this is safe.
4283 */
4284 spin_lock(&cifs_sb->tlink_tree_lock);
4285 node = rb_first(root);
4286 while (node != NULL) {
4287 tmp = node;
4288 node = rb_next(tmp);
4289 tlink = rb_entry(tmp, struct tcon_link, tl_rbnode);
4290
4291 if (test_bit(TCON_LINK_MASTER, &tlink->tl_flags) ||
4292 atomic_read(&tlink->tl_count) != 0 ||
4293 time_after(tlink->tl_time + TLINK_IDLE_EXPIRE, jiffies))
4294 continue;
2de970ff 4295
b647c35f
JL
4296 cifs_get_tlink(tlink);
4297 clear_bit(TCON_LINK_IN_TREE, &tlink->tl_flags);
4298 rb_erase(tmp, root);
4299
4300 spin_unlock(&cifs_sb->tlink_tree_lock);
4301 cifs_put_tlink(tlink);
4302 spin_lock(&cifs_sb->tlink_tree_lock);
4303 }
4304 spin_unlock(&cifs_sb->tlink_tree_lock);
2de970ff 4305
da472fc8 4306 queue_delayed_work(cifsiod_wq, &cifs_sb->prune_tlinks,
2de970ff
JL
4307 TLINK_IDLE_EXPIRE);
4308}
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