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1 /*
2 * fs/cifs/cifsfs.c
3 *
4 * Copyright (C) International Business Machines Corp., 2002,2008
5 * Author(s): Steve French (sfrench@us.ibm.com)
6 *
7 * Common Internet FileSystem (CIFS) client
8 *
9 * This library is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU Lesser General Public License as published
11 * by the Free Software Foundation; either version 2.1 of the License, or
12 * (at your option) any later version.
13 *
14 * This library is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
17 * the GNU Lesser General Public License for more details.
18 *
19 * You should have received a copy of the GNU Lesser General Public License
20 * along with this library; if not, write to the Free Software
21 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
22 */
23
24 /* Note that BB means BUGBUG (ie something to fix eventually) */
25
26 #include <linux/module.h>
27 #include <linux/fs.h>
28 #include <linux/mount.h>
29 #include <linux/slab.h>
30 #include <linux/init.h>
31 #include <linux/list.h>
32 #include <linux/seq_file.h>
33 #include <linux/vfs.h>
34 #include <linux/mempool.h>
35 #include <linux/delay.h>
36 #include <linux/kthread.h>
37 #include <linux/freezer.h>
38 #include <net/ipv6.h>
39 #include "cifsfs.h"
40 #include "cifspdu.h"
41 #define DECLARE_GLOBALS_HERE
42 #include "cifsglob.h"
43 #include "cifsproto.h"
44 #include "cifs_debug.h"
45 #include "cifs_fs_sb.h"
46 #include <linux/mm.h>
47 #include <linux/key-type.h>
48 #include "cifs_spnego.h"
49 #include "fscache.h"
50 #define CIFS_MAGIC_NUMBER 0xFF534D42 /* the first four bytes of SMB PDUs */
51
52 int cifsFYI = 0;
53 int cifsERROR = 1;
54 int traceSMB = 0;
55 unsigned int oplockEnabled = 1;
56 unsigned int linuxExtEnabled = 1;
57 unsigned int lookupCacheEnabled = 1;
58 unsigned int multiuser_mount = 0;
59 unsigned int global_secflags = CIFSSEC_DEF;
60 /* unsigned int ntlmv2_support = 0; */
61 unsigned int sign_CIFS_PDUs = 1;
62 static const struct super_operations cifs_super_ops;
63 unsigned int CIFSMaxBufSize = CIFS_MAX_MSGSIZE;
64 module_param(CIFSMaxBufSize, int, 0);
65 MODULE_PARM_DESC(CIFSMaxBufSize, "Network buffer size (not including header). "
66 "Default: 16384 Range: 8192 to 130048");
67 unsigned int cifs_min_rcv = CIFS_MIN_RCV_POOL;
68 module_param(cifs_min_rcv, int, 0);
69 MODULE_PARM_DESC(cifs_min_rcv, "Network buffers in pool. Default: 4 Range: "
70 "1 to 64");
71 unsigned int cifs_min_small = 30;
72 module_param(cifs_min_small, int, 0);
73 MODULE_PARM_DESC(cifs_min_small, "Small network buffers in pool. Default: 30 "
74 "Range: 2 to 256");
75 unsigned int cifs_max_pending = CIFS_MAX_REQ;
76 module_param(cifs_max_pending, int, 0);
77 MODULE_PARM_DESC(cifs_max_pending, "Simultaneous requests to server. "
78 "Default: 50 Range: 2 to 256");
79 unsigned short echo_retries = 5;
80 module_param(echo_retries, ushort, 0644);
81 MODULE_PARM_DESC(echo_retries, "Number of echo attempts before giving up and "
82 "reconnecting server. Default: 5. 0 means "
83 "never reconnect.");
84 extern mempool_t *cifs_sm_req_poolp;
85 extern mempool_t *cifs_req_poolp;
86 extern mempool_t *cifs_mid_poolp;
87
88 void
89 cifs_sb_active(struct super_block *sb)
90 {
91 struct cifs_sb_info *server = CIFS_SB(sb);
92
93 if (atomic_inc_return(&server->active) == 1)
94 atomic_inc(&sb->s_active);
95 }
96
97 void
98 cifs_sb_deactive(struct super_block *sb)
99 {
100 struct cifs_sb_info *server = CIFS_SB(sb);
101
102 if (atomic_dec_and_test(&server->active))
103 deactivate_super(sb);
104 }
105
106 static int
107 cifs_read_super(struct super_block *sb, struct smb_vol *volume_info,
108 const char *devname, int silent)
109 {
110 struct inode *inode;
111 struct cifs_sb_info *cifs_sb;
112 int rc = 0;
113
114 cifs_sb = CIFS_SB(sb);
115
116 spin_lock_init(&cifs_sb->tlink_tree_lock);
117 cifs_sb->tlink_tree = RB_ROOT;
118
119 rc = bdi_setup_and_register(&cifs_sb->bdi, "cifs", BDI_CAP_MAP_COPY);
120 if (rc)
121 return rc;
122
123 cifs_sb->bdi.ra_pages = default_backing_dev_info.ra_pages;
124
125 rc = cifs_mount(sb, cifs_sb, volume_info, devname);
126
127 if (rc) {
128 if (!silent)
129 cERROR(1, "cifs_mount failed w/return code = %d", rc);
130 goto out_mount_failed;
131 }
132
133 sb->s_magic = CIFS_MAGIC_NUMBER;
134 sb->s_op = &cifs_super_ops;
135 sb->s_bdi = &cifs_sb->bdi;
136 sb->s_blocksize = CIFS_MAX_MSGSIZE;
137 sb->s_blocksize_bits = 14; /* default 2**14 = CIFS_MAX_MSGSIZE */
138 inode = cifs_root_iget(sb);
139
140 if (IS_ERR(inode)) {
141 rc = PTR_ERR(inode);
142 inode = NULL;
143 goto out_no_root;
144 }
145
146 sb->s_root = d_alloc_root(inode);
147
148 if (!sb->s_root) {
149 rc = -ENOMEM;
150 goto out_no_root;
151 }
152
153 /* do that *after* d_alloc_root() - we want NULL ->d_op for root here */
154 if (cifs_sb_master_tcon(cifs_sb)->nocase)
155 sb->s_d_op = &cifs_ci_dentry_ops;
156 else
157 sb->s_d_op = &cifs_dentry_ops;
158
159 #ifdef CIFS_NFSD_EXPORT
160 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_SERVER_INUM) {
161 cFYI(1, "export ops supported");
162 sb->s_export_op = &cifs_export_ops;
163 }
164 #endif /* CIFS_NFSD_EXPORT */
165
166 return 0;
167
168 out_no_root:
169 cERROR(1, "cifs_read_super: get root inode failed");
170 if (inode)
171 iput(inode);
172
173 cifs_umount(sb, cifs_sb);
174
175 out_mount_failed:
176 bdi_destroy(&cifs_sb->bdi);
177 return rc;
178 }
179
180 static void
181 cifs_put_super(struct super_block *sb)
182 {
183 int rc = 0;
184 struct cifs_sb_info *cifs_sb;
185
186 cFYI(1, "In cifs_put_super");
187 cifs_sb = CIFS_SB(sb);
188 if (cifs_sb == NULL) {
189 cFYI(1, "Empty cifs superblock info passed to unmount");
190 return;
191 }
192
193 rc = cifs_umount(sb, cifs_sb);
194 if (rc)
195 cERROR(1, "cifs_umount failed with return code %d", rc);
196 if (cifs_sb->mountdata) {
197 kfree(cifs_sb->mountdata);
198 cifs_sb->mountdata = NULL;
199 }
200
201 unload_nls(cifs_sb->local_nls);
202 bdi_destroy(&cifs_sb->bdi);
203 kfree(cifs_sb);
204 }
205
206 static int
207 cifs_statfs(struct dentry *dentry, struct kstatfs *buf)
208 {
209 struct super_block *sb = dentry->d_sb;
210 struct cifs_sb_info *cifs_sb = CIFS_SB(sb);
211 struct cifs_tcon *tcon = cifs_sb_master_tcon(cifs_sb);
212 int rc = -EOPNOTSUPP;
213 int xid;
214
215 xid = GetXid();
216
217 buf->f_type = CIFS_MAGIC_NUMBER;
218
219 /*
220 * PATH_MAX may be too long - it would presumably be total path,
221 * but note that some servers (includinng Samba 3) have a shorter
222 * maximum path.
223 *
224 * Instead could get the real value via SMB_QUERY_FS_ATTRIBUTE_INFO.
225 */
226 buf->f_namelen = PATH_MAX;
227 buf->f_files = 0; /* undefined */
228 buf->f_ffree = 0; /* unlimited */
229
230 /*
231 * We could add a second check for a QFS Unix capability bit
232 */
233 if ((tcon->ses->capabilities & CAP_UNIX) &&
234 (CIFS_POSIX_EXTENSIONS & le64_to_cpu(tcon->fsUnixInfo.Capability)))
235 rc = CIFSSMBQFSPosixInfo(xid, tcon, buf);
236
237 /*
238 * Only need to call the old QFSInfo if failed on newer one,
239 * e.g. by OS/2.
240 **/
241 if (rc && (tcon->ses->capabilities & CAP_NT_SMBS))
242 rc = CIFSSMBQFSInfo(xid, tcon, buf);
243
244 /*
245 * Some old Windows servers also do not support level 103, retry with
246 * older level one if old server failed the previous call or we
247 * bypassed it because we detected that this was an older LANMAN sess
248 */
249 if (rc)
250 rc = SMBOldQFSInfo(xid, tcon, buf);
251
252 FreeXid(xid);
253 return 0;
254 }
255
256 static int cifs_permission(struct inode *inode, int mask, unsigned int flags)
257 {
258 struct cifs_sb_info *cifs_sb;
259
260 if (flags & IPERM_FLAG_RCU)
261 return -ECHILD;
262
263 cifs_sb = CIFS_SB(inode->i_sb);
264
265 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NO_PERM) {
266 if ((mask & MAY_EXEC) && !execute_ok(inode))
267 return -EACCES;
268 else
269 return 0;
270 } else /* file mode might have been restricted at mount time
271 on the client (above and beyond ACL on servers) for
272 servers which do not support setting and viewing mode bits,
273 so allowing client to check permissions is useful */
274 return generic_permission(inode, mask, flags, NULL);
275 }
276
277 static struct kmem_cache *cifs_inode_cachep;
278 static struct kmem_cache *cifs_req_cachep;
279 static struct kmem_cache *cifs_mid_cachep;
280 static struct kmem_cache *cifs_sm_req_cachep;
281 mempool_t *cifs_sm_req_poolp;
282 mempool_t *cifs_req_poolp;
283 mempool_t *cifs_mid_poolp;
284
285 static struct inode *
286 cifs_alloc_inode(struct super_block *sb)
287 {
288 struct cifsInodeInfo *cifs_inode;
289 cifs_inode = kmem_cache_alloc(cifs_inode_cachep, GFP_KERNEL);
290 if (!cifs_inode)
291 return NULL;
292 cifs_inode->cifsAttrs = 0x20; /* default */
293 cifs_inode->time = 0;
294 /* Until the file is open and we have gotten oplock
295 info back from the server, can not assume caching of
296 file data or metadata */
297 cifs_set_oplock_level(cifs_inode, 0);
298 cifs_inode->delete_pending = false;
299 cifs_inode->invalid_mapping = false;
300 cifs_inode->vfs_inode.i_blkbits = 14; /* 2**14 = CIFS_MAX_MSGSIZE */
301 cifs_inode->server_eof = 0;
302 cifs_inode->uniqueid = 0;
303 cifs_inode->createtime = 0;
304
305 /* Can not set i_flags here - they get immediately overwritten
306 to zero by the VFS */
307 /* cifs_inode->vfs_inode.i_flags = S_NOATIME | S_NOCMTIME;*/
308 INIT_LIST_HEAD(&cifs_inode->openFileList);
309 return &cifs_inode->vfs_inode;
310 }
311
312 static void cifs_i_callback(struct rcu_head *head)
313 {
314 struct inode *inode = container_of(head, struct inode, i_rcu);
315 INIT_LIST_HEAD(&inode->i_dentry);
316 kmem_cache_free(cifs_inode_cachep, CIFS_I(inode));
317 }
318
319 static void
320 cifs_destroy_inode(struct inode *inode)
321 {
322 call_rcu(&inode->i_rcu, cifs_i_callback);
323 }
324
325 static void
326 cifs_evict_inode(struct inode *inode)
327 {
328 truncate_inode_pages(&inode->i_data, 0);
329 end_writeback(inode);
330 cifs_fscache_release_inode_cookie(inode);
331 }
332
333 static void
334 cifs_show_address(struct seq_file *s, struct TCP_Server_Info *server)
335 {
336 struct sockaddr_in *sa = (struct sockaddr_in *) &server->dstaddr;
337 struct sockaddr_in6 *sa6 = (struct sockaddr_in6 *) &server->dstaddr;
338
339 seq_printf(s, ",addr=");
340
341 switch (server->dstaddr.ss_family) {
342 case AF_INET:
343 seq_printf(s, "%pI4", &sa->sin_addr.s_addr);
344 break;
345 case AF_INET6:
346 seq_printf(s, "%pI6", &sa6->sin6_addr.s6_addr);
347 if (sa6->sin6_scope_id)
348 seq_printf(s, "%%%u", sa6->sin6_scope_id);
349 break;
350 default:
351 seq_printf(s, "(unknown)");
352 }
353 }
354
355 /*
356 * cifs_show_options() is for displaying mount options in /proc/mounts.
357 * Not all settable options are displayed but most of the important
358 * ones are.
359 */
360 static int
361 cifs_show_options(struct seq_file *s, struct vfsmount *m)
362 {
363 struct cifs_sb_info *cifs_sb = CIFS_SB(m->mnt_sb);
364 struct cifs_tcon *tcon = cifs_sb_master_tcon(cifs_sb);
365 struct sockaddr *srcaddr;
366 srcaddr = (struct sockaddr *)&tcon->ses->server->srcaddr;
367
368 seq_printf(s, ",unc=%s", tcon->treeName);
369
370 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_MULTIUSER)
371 seq_printf(s, ",multiuser");
372 else if (tcon->ses->user_name)
373 seq_printf(s, ",username=%s", tcon->ses->user_name);
374
375 if (tcon->ses->domainName)
376 seq_printf(s, ",domain=%s", tcon->ses->domainName);
377
378 if (srcaddr->sa_family != AF_UNSPEC) {
379 struct sockaddr_in *saddr4;
380 struct sockaddr_in6 *saddr6;
381 saddr4 = (struct sockaddr_in *)srcaddr;
382 saddr6 = (struct sockaddr_in6 *)srcaddr;
383 if (srcaddr->sa_family == AF_INET6)
384 seq_printf(s, ",srcaddr=%pI6c",
385 &saddr6->sin6_addr);
386 else if (srcaddr->sa_family == AF_INET)
387 seq_printf(s, ",srcaddr=%pI4",
388 &saddr4->sin_addr.s_addr);
389 else
390 seq_printf(s, ",srcaddr=BAD-AF:%i",
391 (int)(srcaddr->sa_family));
392 }
393
394 seq_printf(s, ",uid=%d", cifs_sb->mnt_uid);
395 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_OVERR_UID)
396 seq_printf(s, ",forceuid");
397 else
398 seq_printf(s, ",noforceuid");
399
400 seq_printf(s, ",gid=%d", cifs_sb->mnt_gid);
401 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_OVERR_GID)
402 seq_printf(s, ",forcegid");
403 else
404 seq_printf(s, ",noforcegid");
405
406 cifs_show_address(s, tcon->ses->server);
407
408 if (!tcon->unix_ext)
409 seq_printf(s, ",file_mode=0%o,dir_mode=0%o",
410 cifs_sb->mnt_file_mode,
411 cifs_sb->mnt_dir_mode);
412 if (tcon->seal)
413 seq_printf(s, ",seal");
414 if (tcon->nocase)
415 seq_printf(s, ",nocase");
416 if (tcon->retry)
417 seq_printf(s, ",hard");
418 if (tcon->unix_ext)
419 seq_printf(s, ",unix");
420 else
421 seq_printf(s, ",nounix");
422 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_POSIX_PATHS)
423 seq_printf(s, ",posixpaths");
424 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_SET_UID)
425 seq_printf(s, ",setuids");
426 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_SERVER_INUM)
427 seq_printf(s, ",serverino");
428 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_RWPIDFORWARD)
429 seq_printf(s, ",rwpidforward");
430 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NOPOSIXBRL)
431 seq_printf(s, ",forcemand");
432 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_DIRECT_IO)
433 seq_printf(s, ",directio");
434 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NO_XATTR)
435 seq_printf(s, ",nouser_xattr");
436 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_MAP_SPECIAL_CHR)
437 seq_printf(s, ",mapchars");
438 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_UNX_EMUL)
439 seq_printf(s, ",sfu");
440 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NO_BRL)
441 seq_printf(s, ",nobrl");
442 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_CIFS_ACL)
443 seq_printf(s, ",cifsacl");
444 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_DYNPERM)
445 seq_printf(s, ",dynperm");
446 if (m->mnt_sb->s_flags & MS_POSIXACL)
447 seq_printf(s, ",acl");
448 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_MF_SYMLINKS)
449 seq_printf(s, ",mfsymlinks");
450 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_FSCACHE)
451 seq_printf(s, ",fsc");
452
453 seq_printf(s, ",rsize=%d", cifs_sb->rsize);
454 seq_printf(s, ",wsize=%d", cifs_sb->wsize);
455 /* convert actimeo and display it in seconds */
456 seq_printf(s, ",actimeo=%lu", cifs_sb->actimeo / HZ);
457
458 return 0;
459 }
460
461 static void cifs_umount_begin(struct super_block *sb)
462 {
463 struct cifs_sb_info *cifs_sb = CIFS_SB(sb);
464 struct cifs_tcon *tcon;
465
466 if (cifs_sb == NULL)
467 return;
468
469 tcon = cifs_sb_master_tcon(cifs_sb);
470
471 spin_lock(&cifs_tcp_ses_lock);
472 if ((tcon->tc_count > 1) || (tcon->tidStatus == CifsExiting)) {
473 /* we have other mounts to same share or we have
474 already tried to force umount this and woken up
475 all waiting network requests, nothing to do */
476 spin_unlock(&cifs_tcp_ses_lock);
477 return;
478 } else if (tcon->tc_count == 1)
479 tcon->tidStatus = CifsExiting;
480 spin_unlock(&cifs_tcp_ses_lock);
481
482 /* cancel_brl_requests(tcon); */ /* BB mark all brl mids as exiting */
483 /* cancel_notify_requests(tcon); */
484 if (tcon->ses && tcon->ses->server) {
485 cFYI(1, "wake up tasks now - umount begin not complete");
486 wake_up_all(&tcon->ses->server->request_q);
487 wake_up_all(&tcon->ses->server->response_q);
488 msleep(1); /* yield */
489 /* we have to kick the requests once more */
490 wake_up_all(&tcon->ses->server->response_q);
491 msleep(1);
492 }
493
494 return;
495 }
496
497 #ifdef CONFIG_CIFS_STATS2
498 static int cifs_show_stats(struct seq_file *s, struct vfsmount *mnt)
499 {
500 /* BB FIXME */
501 return 0;
502 }
503 #endif
504
505 static int cifs_remount(struct super_block *sb, int *flags, char *data)
506 {
507 *flags |= MS_NODIRATIME;
508 return 0;
509 }
510
511 static int cifs_drop_inode(struct inode *inode)
512 {
513 struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb);
514
515 /* no serverino => unconditional eviction */
516 return !(cifs_sb->mnt_cifs_flags & CIFS_MOUNT_SERVER_INUM) ||
517 generic_drop_inode(inode);
518 }
519
520 static const struct super_operations cifs_super_ops = {
521 .put_super = cifs_put_super,
522 .statfs = cifs_statfs,
523 .alloc_inode = cifs_alloc_inode,
524 .destroy_inode = cifs_destroy_inode,
525 .drop_inode = cifs_drop_inode,
526 .evict_inode = cifs_evict_inode,
527 /* .delete_inode = cifs_delete_inode, */ /* Do not need above
528 function unless later we add lazy close of inodes or unless the
529 kernel forgets to call us with the same number of releases (closes)
530 as opens */
531 .show_options = cifs_show_options,
532 .umount_begin = cifs_umount_begin,
533 .remount_fs = cifs_remount,
534 #ifdef CONFIG_CIFS_STATS2
535 .show_stats = cifs_show_stats,
536 #endif
537 };
538
539 /*
540 * Get root dentry from superblock according to prefix path mount option.
541 * Return dentry with refcount + 1 on success and NULL otherwise.
542 */
543 static struct dentry *
544 cifs_get_root(struct smb_vol *vol, struct super_block *sb)
545 {
546 int xid, rc;
547 struct inode *inode;
548 struct qstr name;
549 struct dentry *dparent = NULL, *dchild = NULL, *alias;
550 struct cifs_sb_info *cifs_sb = CIFS_SB(sb);
551 unsigned int i, full_len, len;
552 char *full_path = NULL, *pstart;
553 char sep;
554
555 full_path = cifs_build_path_to_root(vol, cifs_sb,
556 cifs_sb_master_tcon(cifs_sb));
557 if (full_path == NULL)
558 return NULL;
559
560 cFYI(1, "Get root dentry for %s", full_path);
561
562 xid = GetXid();
563 sep = CIFS_DIR_SEP(cifs_sb);
564 dparent = dget(sb->s_root);
565 full_len = strlen(full_path);
566 full_path[full_len] = sep;
567 pstart = full_path + 1;
568
569 for (i = 1, len = 0; i <= full_len; i++) {
570 if (full_path[i] != sep || !len) {
571 len++;
572 continue;
573 }
574
575 full_path[i] = 0;
576 cFYI(1, "get dentry for %s", pstart);
577
578 name.name = pstart;
579 name.len = len;
580 name.hash = full_name_hash(pstart, len);
581 dchild = d_lookup(dparent, &name);
582 if (dchild == NULL) {
583 cFYI(1, "not exists");
584 dchild = d_alloc(dparent, &name);
585 if (dchild == NULL) {
586 dput(dparent);
587 dparent = NULL;
588 goto out;
589 }
590 }
591
592 cFYI(1, "get inode");
593 if (dchild->d_inode == NULL) {
594 cFYI(1, "not exists");
595 inode = NULL;
596 if (cifs_sb_master_tcon(CIFS_SB(sb))->unix_ext)
597 rc = cifs_get_inode_info_unix(&inode, full_path,
598 sb, xid);
599 else
600 rc = cifs_get_inode_info(&inode, full_path,
601 NULL, sb, xid, NULL);
602 if (rc) {
603 dput(dchild);
604 dput(dparent);
605 dparent = NULL;
606 goto out;
607 }
608 alias = d_materialise_unique(dchild, inode);
609 if (alias != NULL) {
610 dput(dchild);
611 if (IS_ERR(alias)) {
612 dput(dparent);
613 dparent = NULL;
614 goto out;
615 }
616 dchild = alias;
617 }
618 }
619 cFYI(1, "parent %p, child %p", dparent, dchild);
620
621 dput(dparent);
622 dparent = dchild;
623 len = 0;
624 pstart = full_path + i + 1;
625 full_path[i] = sep;
626 }
627 out:
628 _FreeXid(xid);
629 kfree(full_path);
630 return dparent;
631 }
632
633 static struct dentry *
634 cifs_do_mount(struct file_system_type *fs_type,
635 int flags, const char *dev_name, void *data)
636 {
637 int rc;
638 struct super_block *sb;
639 struct cifs_sb_info *cifs_sb;
640 struct smb_vol *volume_info;
641 struct cifs_mnt_data mnt_data;
642 struct dentry *root;
643
644 cFYI(1, "Devname: %s flags: %d ", dev_name, flags);
645
646 rc = cifs_setup_volume_info(&volume_info, (char *)data, dev_name);
647 if (rc)
648 return ERR_PTR(rc);
649
650 cifs_sb = kzalloc(sizeof(struct cifs_sb_info), GFP_KERNEL);
651 if (cifs_sb == NULL) {
652 root = ERR_PTR(-ENOMEM);
653 goto out;
654 }
655
656 cifs_setup_cifs_sb(volume_info, cifs_sb);
657
658 mnt_data.vol = volume_info;
659 mnt_data.cifs_sb = cifs_sb;
660 mnt_data.flags = flags;
661
662 sb = sget(fs_type, cifs_match_super, set_anon_super, &mnt_data);
663 if (IS_ERR(sb)) {
664 root = ERR_CAST(sb);
665 goto out_cifs_sb;
666 }
667
668 if (sb->s_fs_info) {
669 cFYI(1, "Use existing superblock");
670 goto out_shared;
671 }
672
673 /*
674 * Copy mount params for use in submounts. Better to do
675 * the copy here and deal with the error before cleanup gets
676 * complicated post-mount.
677 */
678 cifs_sb->mountdata = kstrndup(data, PAGE_SIZE, GFP_KERNEL);
679 if (cifs_sb->mountdata == NULL) {
680 root = ERR_PTR(-ENOMEM);
681 goto out_super;
682 }
683
684 sb->s_flags = flags;
685 /* BB should we make this contingent on mount parm? */
686 sb->s_flags |= MS_NODIRATIME | MS_NOATIME;
687 sb->s_fs_info = cifs_sb;
688
689 rc = cifs_read_super(sb, volume_info, dev_name,
690 flags & MS_SILENT ? 1 : 0);
691 if (rc) {
692 root = ERR_PTR(rc);
693 goto out_super;
694 }
695
696 sb->s_flags |= MS_ACTIVE;
697
698 root = cifs_get_root(volume_info, sb);
699 if (root == NULL)
700 goto out_super;
701
702 cFYI(1, "dentry root is: %p", root);
703 goto out;
704
705 out_shared:
706 root = cifs_get_root(volume_info, sb);
707 if (root)
708 cFYI(1, "dentry root is: %p", root);
709 goto out;
710
711 out_super:
712 kfree(cifs_sb->mountdata);
713 deactivate_locked_super(sb);
714
715 out_cifs_sb:
716 unload_nls(cifs_sb->local_nls);
717 kfree(cifs_sb);
718
719 out:
720 cifs_cleanup_volume_info(&volume_info);
721 return root;
722 }
723
724 static ssize_t cifs_file_aio_write(struct kiocb *iocb, const struct iovec *iov,
725 unsigned long nr_segs, loff_t pos)
726 {
727 struct inode *inode = iocb->ki_filp->f_path.dentry->d_inode;
728 ssize_t written;
729 int rc;
730
731 written = generic_file_aio_write(iocb, iov, nr_segs, pos);
732
733 if (CIFS_I(inode)->clientCanCacheAll)
734 return written;
735
736 rc = filemap_fdatawrite(inode->i_mapping);
737 if (rc)
738 cFYI(1, "cifs_file_aio_write: %d rc on %p inode", rc, inode);
739
740 return written;
741 }
742
743 static loff_t cifs_llseek(struct file *file, loff_t offset, int origin)
744 {
745 /* origin == SEEK_END => we must revalidate the cached file length */
746 if (origin == SEEK_END) {
747 int rc;
748 struct inode *inode = file->f_path.dentry->d_inode;
749
750 /*
751 * We need to be sure that all dirty pages are written and the
752 * server has the newest file length.
753 */
754 if (!CIFS_I(inode)->clientCanCacheRead && inode->i_mapping &&
755 inode->i_mapping->nrpages != 0) {
756 rc = filemap_fdatawait(inode->i_mapping);
757 if (rc) {
758 mapping_set_error(inode->i_mapping, rc);
759 return rc;
760 }
761 }
762 /*
763 * Some applications poll for the file length in this strange
764 * way so we must seek to end on non-oplocked files by
765 * setting the revalidate time to zero.
766 */
767 CIFS_I(inode)->time = 0;
768
769 rc = cifs_revalidate_file_attr(file);
770 if (rc < 0)
771 return (loff_t)rc;
772 }
773 return generic_file_llseek_unlocked(file, offset, origin);
774 }
775
776 static int cifs_setlease(struct file *file, long arg, struct file_lock **lease)
777 {
778 /* note that this is called by vfs setlease with lock_flocks held
779 to protect *lease from going away */
780 struct inode *inode = file->f_path.dentry->d_inode;
781 struct cifsFileInfo *cfile = file->private_data;
782
783 if (!(S_ISREG(inode->i_mode)))
784 return -EINVAL;
785
786 /* check if file is oplocked */
787 if (((arg == F_RDLCK) &&
788 (CIFS_I(inode)->clientCanCacheRead)) ||
789 ((arg == F_WRLCK) &&
790 (CIFS_I(inode)->clientCanCacheAll)))
791 return generic_setlease(file, arg, lease);
792 else if (tlink_tcon(cfile->tlink)->local_lease &&
793 !CIFS_I(inode)->clientCanCacheRead)
794 /* If the server claims to support oplock on this
795 file, then we still need to check oplock even
796 if the local_lease mount option is set, but there
797 are servers which do not support oplock for which
798 this mount option may be useful if the user
799 knows that the file won't be changed on the server
800 by anyone else */
801 return generic_setlease(file, arg, lease);
802 else
803 return -EAGAIN;
804 }
805
806 struct file_system_type cifs_fs_type = {
807 .owner = THIS_MODULE,
808 .name = "cifs",
809 .mount = cifs_do_mount,
810 .kill_sb = kill_anon_super,
811 /* .fs_flags */
812 };
813 const struct inode_operations cifs_dir_inode_ops = {
814 .create = cifs_create,
815 .lookup = cifs_lookup,
816 .getattr = cifs_getattr,
817 .unlink = cifs_unlink,
818 .link = cifs_hardlink,
819 .mkdir = cifs_mkdir,
820 .rmdir = cifs_rmdir,
821 .rename = cifs_rename,
822 .permission = cifs_permission,
823 /* revalidate:cifs_revalidate, */
824 .setattr = cifs_setattr,
825 .symlink = cifs_symlink,
826 .mknod = cifs_mknod,
827 #ifdef CONFIG_CIFS_XATTR
828 .setxattr = cifs_setxattr,
829 .getxattr = cifs_getxattr,
830 .listxattr = cifs_listxattr,
831 .removexattr = cifs_removexattr,
832 #endif
833 };
834
835 const struct inode_operations cifs_file_inode_ops = {
836 /* revalidate:cifs_revalidate, */
837 .setattr = cifs_setattr,
838 .getattr = cifs_getattr, /* do we need this anymore? */
839 .rename = cifs_rename,
840 .permission = cifs_permission,
841 #ifdef CONFIG_CIFS_XATTR
842 .setxattr = cifs_setxattr,
843 .getxattr = cifs_getxattr,
844 .listxattr = cifs_listxattr,
845 .removexattr = cifs_removexattr,
846 #endif
847 };
848
849 const struct inode_operations cifs_symlink_inode_ops = {
850 .readlink = generic_readlink,
851 .follow_link = cifs_follow_link,
852 .put_link = cifs_put_link,
853 .permission = cifs_permission,
854 /* BB add the following two eventually */
855 /* revalidate: cifs_revalidate,
856 setattr: cifs_notify_change, *//* BB do we need notify change */
857 #ifdef CONFIG_CIFS_XATTR
858 .setxattr = cifs_setxattr,
859 .getxattr = cifs_getxattr,
860 .listxattr = cifs_listxattr,
861 .removexattr = cifs_removexattr,
862 #endif
863 };
864
865 const struct file_operations cifs_file_ops = {
866 .read = do_sync_read,
867 .write = do_sync_write,
868 .aio_read = generic_file_aio_read,
869 .aio_write = cifs_file_aio_write,
870 .open = cifs_open,
871 .release = cifs_close,
872 .lock = cifs_lock,
873 .fsync = cifs_fsync,
874 .flush = cifs_flush,
875 .mmap = cifs_file_mmap,
876 .splice_read = generic_file_splice_read,
877 .llseek = cifs_llseek,
878 #ifdef CONFIG_CIFS_POSIX
879 .unlocked_ioctl = cifs_ioctl,
880 #endif /* CONFIG_CIFS_POSIX */
881 .setlease = cifs_setlease,
882 };
883
884 const struct file_operations cifs_file_strict_ops = {
885 .read = do_sync_read,
886 .write = do_sync_write,
887 .aio_read = cifs_strict_readv,
888 .aio_write = cifs_strict_writev,
889 .open = cifs_open,
890 .release = cifs_close,
891 .lock = cifs_lock,
892 .fsync = cifs_strict_fsync,
893 .flush = cifs_flush,
894 .mmap = cifs_file_strict_mmap,
895 .splice_read = generic_file_splice_read,
896 .llseek = cifs_llseek,
897 #ifdef CONFIG_CIFS_POSIX
898 .unlocked_ioctl = cifs_ioctl,
899 #endif /* CONFIG_CIFS_POSIX */
900 .setlease = cifs_setlease,
901 };
902
903 const struct file_operations cifs_file_direct_ops = {
904 /* BB reevaluate whether they can be done with directio, no cache */
905 .read = do_sync_read,
906 .write = do_sync_write,
907 .aio_read = cifs_user_readv,
908 .aio_write = cifs_user_writev,
909 .open = cifs_open,
910 .release = cifs_close,
911 .lock = cifs_lock,
912 .fsync = cifs_fsync,
913 .flush = cifs_flush,
914 .mmap = cifs_file_mmap,
915 .splice_read = generic_file_splice_read,
916 #ifdef CONFIG_CIFS_POSIX
917 .unlocked_ioctl = cifs_ioctl,
918 #endif /* CONFIG_CIFS_POSIX */
919 .llseek = cifs_llseek,
920 .setlease = cifs_setlease,
921 };
922
923 const struct file_operations cifs_file_nobrl_ops = {
924 .read = do_sync_read,
925 .write = do_sync_write,
926 .aio_read = generic_file_aio_read,
927 .aio_write = cifs_file_aio_write,
928 .open = cifs_open,
929 .release = cifs_close,
930 .fsync = cifs_fsync,
931 .flush = cifs_flush,
932 .mmap = cifs_file_mmap,
933 .splice_read = generic_file_splice_read,
934 .llseek = cifs_llseek,
935 #ifdef CONFIG_CIFS_POSIX
936 .unlocked_ioctl = cifs_ioctl,
937 #endif /* CONFIG_CIFS_POSIX */
938 .setlease = cifs_setlease,
939 };
940
941 const struct file_operations cifs_file_strict_nobrl_ops = {
942 .read = do_sync_read,
943 .write = do_sync_write,
944 .aio_read = cifs_strict_readv,
945 .aio_write = cifs_strict_writev,
946 .open = cifs_open,
947 .release = cifs_close,
948 .fsync = cifs_strict_fsync,
949 .flush = cifs_flush,
950 .mmap = cifs_file_strict_mmap,
951 .splice_read = generic_file_splice_read,
952 .llseek = cifs_llseek,
953 #ifdef CONFIG_CIFS_POSIX
954 .unlocked_ioctl = cifs_ioctl,
955 #endif /* CONFIG_CIFS_POSIX */
956 .setlease = cifs_setlease,
957 };
958
959 const struct file_operations cifs_file_direct_nobrl_ops = {
960 /* BB reevaluate whether they can be done with directio, no cache */
961 .read = do_sync_read,
962 .write = do_sync_write,
963 .aio_read = cifs_user_readv,
964 .aio_write = cifs_user_writev,
965 .open = cifs_open,
966 .release = cifs_close,
967 .fsync = cifs_fsync,
968 .flush = cifs_flush,
969 .mmap = cifs_file_mmap,
970 .splice_read = generic_file_splice_read,
971 #ifdef CONFIG_CIFS_POSIX
972 .unlocked_ioctl = cifs_ioctl,
973 #endif /* CONFIG_CIFS_POSIX */
974 .llseek = cifs_llseek,
975 .setlease = cifs_setlease,
976 };
977
978 const struct file_operations cifs_dir_ops = {
979 .readdir = cifs_readdir,
980 .release = cifs_closedir,
981 .read = generic_read_dir,
982 .unlocked_ioctl = cifs_ioctl,
983 .llseek = generic_file_llseek,
984 };
985
986 static void
987 cifs_init_once(void *inode)
988 {
989 struct cifsInodeInfo *cifsi = inode;
990
991 inode_init_once(&cifsi->vfs_inode);
992 INIT_LIST_HEAD(&cifsi->lockList);
993 }
994
995 static int
996 cifs_init_inodecache(void)
997 {
998 cifs_inode_cachep = kmem_cache_create("cifs_inode_cache",
999 sizeof(struct cifsInodeInfo),
1000 0, (SLAB_RECLAIM_ACCOUNT|
1001 SLAB_MEM_SPREAD),
1002 cifs_init_once);
1003 if (cifs_inode_cachep == NULL)
1004 return -ENOMEM;
1005
1006 return 0;
1007 }
1008
1009 static void
1010 cifs_destroy_inodecache(void)
1011 {
1012 kmem_cache_destroy(cifs_inode_cachep);
1013 }
1014
1015 static int
1016 cifs_init_request_bufs(void)
1017 {
1018 if (CIFSMaxBufSize < 8192) {
1019 /* Buffer size can not be smaller than 2 * PATH_MAX since maximum
1020 Unicode path name has to fit in any SMB/CIFS path based frames */
1021 CIFSMaxBufSize = 8192;
1022 } else if (CIFSMaxBufSize > 1024*127) {
1023 CIFSMaxBufSize = 1024 * 127;
1024 } else {
1025 CIFSMaxBufSize &= 0x1FE00; /* Round size to even 512 byte mult*/
1026 }
1027 /* cERROR(1, "CIFSMaxBufSize %d 0x%x",CIFSMaxBufSize,CIFSMaxBufSize); */
1028 cifs_req_cachep = kmem_cache_create("cifs_request",
1029 CIFSMaxBufSize +
1030 MAX_CIFS_HDR_SIZE, 0,
1031 SLAB_HWCACHE_ALIGN, NULL);
1032 if (cifs_req_cachep == NULL)
1033 return -ENOMEM;
1034
1035 if (cifs_min_rcv < 1)
1036 cifs_min_rcv = 1;
1037 else if (cifs_min_rcv > 64) {
1038 cifs_min_rcv = 64;
1039 cERROR(1, "cifs_min_rcv set to maximum (64)");
1040 }
1041
1042 cifs_req_poolp = mempool_create_slab_pool(cifs_min_rcv,
1043 cifs_req_cachep);
1044
1045 if (cifs_req_poolp == NULL) {
1046 kmem_cache_destroy(cifs_req_cachep);
1047 return -ENOMEM;
1048 }
1049 /* MAX_CIFS_SMALL_BUFFER_SIZE bytes is enough for most SMB responses and
1050 almost all handle based requests (but not write response, nor is it
1051 sufficient for path based requests). A smaller size would have
1052 been more efficient (compacting multiple slab items on one 4k page)
1053 for the case in which debug was on, but this larger size allows
1054 more SMBs to use small buffer alloc and is still much more
1055 efficient to alloc 1 per page off the slab compared to 17K (5page)
1056 alloc of large cifs buffers even when page debugging is on */
1057 cifs_sm_req_cachep = kmem_cache_create("cifs_small_rq",
1058 MAX_CIFS_SMALL_BUFFER_SIZE, 0, SLAB_HWCACHE_ALIGN,
1059 NULL);
1060 if (cifs_sm_req_cachep == NULL) {
1061 mempool_destroy(cifs_req_poolp);
1062 kmem_cache_destroy(cifs_req_cachep);
1063 return -ENOMEM;
1064 }
1065
1066 if (cifs_min_small < 2)
1067 cifs_min_small = 2;
1068 else if (cifs_min_small > 256) {
1069 cifs_min_small = 256;
1070 cFYI(1, "cifs_min_small set to maximum (256)");
1071 }
1072
1073 cifs_sm_req_poolp = mempool_create_slab_pool(cifs_min_small,
1074 cifs_sm_req_cachep);
1075
1076 if (cifs_sm_req_poolp == NULL) {
1077 mempool_destroy(cifs_req_poolp);
1078 kmem_cache_destroy(cifs_req_cachep);
1079 kmem_cache_destroy(cifs_sm_req_cachep);
1080 return -ENOMEM;
1081 }
1082
1083 return 0;
1084 }
1085
1086 static void
1087 cifs_destroy_request_bufs(void)
1088 {
1089 mempool_destroy(cifs_req_poolp);
1090 kmem_cache_destroy(cifs_req_cachep);
1091 mempool_destroy(cifs_sm_req_poolp);
1092 kmem_cache_destroy(cifs_sm_req_cachep);
1093 }
1094
1095 static int
1096 cifs_init_mids(void)
1097 {
1098 cifs_mid_cachep = kmem_cache_create("cifs_mpx_ids",
1099 sizeof(struct mid_q_entry), 0,
1100 SLAB_HWCACHE_ALIGN, NULL);
1101 if (cifs_mid_cachep == NULL)
1102 return -ENOMEM;
1103
1104 /* 3 is a reasonable minimum number of simultaneous operations */
1105 cifs_mid_poolp = mempool_create_slab_pool(3, cifs_mid_cachep);
1106 if (cifs_mid_poolp == NULL) {
1107 kmem_cache_destroy(cifs_mid_cachep);
1108 return -ENOMEM;
1109 }
1110
1111 return 0;
1112 }
1113
1114 static void
1115 cifs_destroy_mids(void)
1116 {
1117 mempool_destroy(cifs_mid_poolp);
1118 kmem_cache_destroy(cifs_mid_cachep);
1119 }
1120
1121 static int __init
1122 init_cifs(void)
1123 {
1124 int rc = 0;
1125 cifs_proc_init();
1126 INIT_LIST_HEAD(&cifs_tcp_ses_list);
1127 #ifdef CONFIG_CIFS_DNOTIFY_EXPERIMENTAL /* unused temporarily */
1128 INIT_LIST_HEAD(&GlobalDnotifyReqList);
1129 INIT_LIST_HEAD(&GlobalDnotifyRsp_Q);
1130 #endif /* was needed for dnotify, and will be needed for inotify when VFS fix */
1131 /*
1132 * Initialize Global counters
1133 */
1134 atomic_set(&sesInfoAllocCount, 0);
1135 atomic_set(&tconInfoAllocCount, 0);
1136 atomic_set(&tcpSesAllocCount, 0);
1137 atomic_set(&tcpSesReconnectCount, 0);
1138 atomic_set(&tconInfoReconnectCount, 0);
1139
1140 atomic_set(&bufAllocCount, 0);
1141 atomic_set(&smBufAllocCount, 0);
1142 #ifdef CONFIG_CIFS_STATS2
1143 atomic_set(&totBufAllocCount, 0);
1144 atomic_set(&totSmBufAllocCount, 0);
1145 #endif /* CONFIG_CIFS_STATS2 */
1146
1147 atomic_set(&midCount, 0);
1148 GlobalCurrentXid = 0;
1149 GlobalTotalActiveXid = 0;
1150 GlobalMaxActiveXid = 0;
1151 spin_lock_init(&cifs_tcp_ses_lock);
1152 spin_lock_init(&cifs_file_list_lock);
1153 spin_lock_init(&GlobalMid_Lock);
1154
1155 if (cifs_max_pending < 2) {
1156 cifs_max_pending = 2;
1157 cFYI(1, "cifs_max_pending set to min of 2");
1158 } else if (cifs_max_pending > 256) {
1159 cifs_max_pending = 256;
1160 cFYI(1, "cifs_max_pending set to max of 256");
1161 }
1162
1163 rc = cifs_fscache_register();
1164 if (rc)
1165 goto out_clean_proc;
1166
1167 rc = cifs_init_inodecache();
1168 if (rc)
1169 goto out_unreg_fscache;
1170
1171 rc = cifs_init_mids();
1172 if (rc)
1173 goto out_destroy_inodecache;
1174
1175 rc = cifs_init_request_bufs();
1176 if (rc)
1177 goto out_destroy_mids;
1178
1179 #ifdef CONFIG_CIFS_UPCALL
1180 rc = register_key_type(&cifs_spnego_key_type);
1181 if (rc)
1182 goto out_destroy_request_bufs;
1183 #endif /* CONFIG_CIFS_UPCALL */
1184
1185 #ifdef CONFIG_CIFS_ACL
1186 rc = init_cifs_idmap();
1187 if (rc)
1188 goto out_register_key_type;
1189 #endif /* CONFIG_CIFS_ACL */
1190
1191 rc = register_filesystem(&cifs_fs_type);
1192 if (rc)
1193 goto out_init_cifs_idmap;
1194
1195 return 0;
1196
1197 out_init_cifs_idmap:
1198 #ifdef CONFIG_CIFS_ACL
1199 exit_cifs_idmap();
1200 out_register_key_type:
1201 #endif
1202 #ifdef CONFIG_CIFS_UPCALL
1203 unregister_key_type(&cifs_spnego_key_type);
1204 out_destroy_request_bufs:
1205 #endif
1206 cifs_destroy_request_bufs();
1207 out_destroy_mids:
1208 cifs_destroy_mids();
1209 out_destroy_inodecache:
1210 cifs_destroy_inodecache();
1211 out_unreg_fscache:
1212 cifs_fscache_unregister();
1213 out_clean_proc:
1214 cifs_proc_clean();
1215 return rc;
1216 }
1217
1218 static void __exit
1219 exit_cifs(void)
1220 {
1221 cFYI(DBG2, "exit_cifs");
1222 cifs_proc_clean();
1223 cifs_fscache_unregister();
1224 #ifdef CONFIG_CIFS_DFS_UPCALL
1225 cifs_dfs_release_automount_timer();
1226 #endif
1227 #ifdef CONFIG_CIFS_ACL
1228 cifs_destroy_idmaptrees();
1229 exit_cifs_idmap();
1230 #endif
1231 #ifdef CONFIG_CIFS_UPCALL
1232 unregister_key_type(&cifs_spnego_key_type);
1233 #endif
1234 unregister_filesystem(&cifs_fs_type);
1235 cifs_destroy_inodecache();
1236 cifs_destroy_mids();
1237 cifs_destroy_request_bufs();
1238 }
1239
1240 MODULE_AUTHOR("Steve French <sfrench@us.ibm.com>");
1241 MODULE_LICENSE("GPL"); /* combination of LGPL + GPL source behaves as GPL */
1242 MODULE_DESCRIPTION
1243 ("VFS to access servers complying with the SNIA CIFS Specification "
1244 "e.g. Samba and Windows");
1245 MODULE_VERSION(CIFS_VERSION);
1246 module_init(init_cifs)
1247 module_exit(exit_cifs)