Pull release into acpica branch
[deliverable/linux.git] / fs / cifs / cifsfs.c
1 /*
2 * fs/cifs/cifsfs.c
3 *
4 * Copyright (C) International Business Machines Corp., 2002,2004
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 "cifsfs.h"
37 #include "cifspdu.h"
38 #define DECLARE_GLOBALS_HERE
39 #include "cifsglob.h"
40 #include "cifsproto.h"
41 #include "cifs_debug.h"
42 #include "cifs_fs_sb.h"
43 #include <linux/mm.h>
44 #define CIFS_MAGIC_NUMBER 0xFF534D42 /* the first four bytes of SMB PDUs */
45
46 #ifdef CONFIG_CIFS_QUOTA
47 static struct quotactl_ops cifs_quotactl_ops;
48 #endif
49
50 int cifsFYI = 0;
51 int cifsERROR = 1;
52 int traceSMB = 0;
53 unsigned int oplockEnabled = 1;
54 unsigned int experimEnabled = 0;
55 unsigned int linuxExtEnabled = 1;
56 unsigned int lookupCacheEnabled = 1;
57 unsigned int multiuser_mount = 0;
58 unsigned int extended_security = 0;
59 unsigned int ntlmv2_support = 0;
60 unsigned int sign_CIFS_PDUs = 1;
61 extern struct task_struct * oplockThread; /* remove sparse warning */
62 struct task_struct * oplockThread = NULL;
63 extern struct task_struct * dnotifyThread; /* remove sparse warning */
64 struct task_struct * dnotifyThread = NULL;
65 unsigned int CIFSMaxBufSize = CIFS_MAX_MSGSIZE;
66 module_param(CIFSMaxBufSize, int, 0);
67 MODULE_PARM_DESC(CIFSMaxBufSize,"Network buffer size (not including header). Default: 16384 Range: 8192 to 130048");
68 unsigned int cifs_min_rcv = CIFS_MIN_RCV_POOL;
69 module_param(cifs_min_rcv, int, 0);
70 MODULE_PARM_DESC(cifs_min_rcv,"Network buffers in pool. Default: 4 Range: 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 Range: 2 to 256");
74 unsigned int cifs_max_pending = CIFS_MAX_REQ;
75 module_param(cifs_max_pending, int, 0);
76 MODULE_PARM_DESC(cifs_max_pending,"Simultaneous requests to server. Default: 50 Range: 2 to 256");
77
78 static DECLARE_COMPLETION(cifs_oplock_exited);
79 static DECLARE_COMPLETION(cifs_dnotify_exited);
80
81 extern mempool_t *cifs_sm_req_poolp;
82 extern mempool_t *cifs_req_poolp;
83 extern mempool_t *cifs_mid_poolp;
84
85 extern kmem_cache_t *cifs_oplock_cachep;
86
87 static int
88 cifs_read_super(struct super_block *sb, void *data,
89 const char *devname, int silent)
90 {
91 struct inode *inode;
92 struct cifs_sb_info *cifs_sb;
93 int rc = 0;
94
95 sb->s_flags |= MS_NODIRATIME; /* and probably even noatime */
96 sb->s_fs_info = kmalloc(sizeof(struct cifs_sb_info),GFP_KERNEL);
97 cifs_sb = CIFS_SB(sb);
98 if(cifs_sb == NULL)
99 return -ENOMEM;
100 else
101 memset(cifs_sb,0,sizeof(struct cifs_sb_info));
102
103
104 rc = cifs_mount(sb, cifs_sb, data, devname);
105
106 if (rc) {
107 if (!silent)
108 cERROR(1,
109 ("cifs_mount failed w/return code = %d", rc));
110 goto out_mount_failed;
111 }
112
113 sb->s_magic = CIFS_MAGIC_NUMBER;
114 sb->s_op = &cifs_super_ops;
115 /* if(cifs_sb->tcon->ses->server->maxBuf > MAX_CIFS_HDR_SIZE + 512)
116 sb->s_blocksize = cifs_sb->tcon->ses->server->maxBuf - MAX_CIFS_HDR_SIZE; */
117 #ifdef CONFIG_CIFS_QUOTA
118 sb->s_qcop = &cifs_quotactl_ops;
119 #endif
120 sb->s_blocksize = CIFS_MAX_MSGSIZE;
121 sb->s_blocksize_bits = 14; /* default 2**14 = CIFS_MAX_MSGSIZE */
122 inode = iget(sb, ROOT_I);
123
124 if (!inode) {
125 rc = -ENOMEM;
126 goto out_no_root;
127 }
128
129 sb->s_root = d_alloc_root(inode);
130
131 if (!sb->s_root) {
132 rc = -ENOMEM;
133 goto out_no_root;
134 }
135
136 return 0;
137
138 out_no_root:
139 cERROR(1, ("cifs_read_super: get root inode failed"));
140 if (inode)
141 iput(inode);
142
143 out_mount_failed:
144 if(cifs_sb) {
145 if(cifs_sb->local_nls)
146 unload_nls(cifs_sb->local_nls);
147 kfree(cifs_sb);
148 }
149 return rc;
150 }
151
152 static void
153 cifs_put_super(struct super_block *sb)
154 {
155 int rc = 0;
156 struct cifs_sb_info *cifs_sb;
157
158 cFYI(1, ("In cifs_put_super"));
159 cifs_sb = CIFS_SB(sb);
160 if(cifs_sb == NULL) {
161 cFYI(1,("Empty cifs superblock info passed to unmount"));
162 return;
163 }
164 rc = cifs_umount(sb, cifs_sb);
165 if (rc) {
166 cERROR(1, ("cifs_umount failed with return code %d", rc));
167 }
168 unload_nls(cifs_sb->local_nls);
169 kfree(cifs_sb);
170 return;
171 }
172
173 static int
174 cifs_statfs(struct super_block *sb, struct kstatfs *buf)
175 {
176 int xid;
177 int rc = -EOPNOTSUPP;
178 struct cifs_sb_info *cifs_sb;
179 struct cifsTconInfo *pTcon;
180
181 xid = GetXid();
182
183 cifs_sb = CIFS_SB(sb);
184 pTcon = cifs_sb->tcon;
185
186 buf->f_type = CIFS_MAGIC_NUMBER;
187
188 /* instead could get the real value via SMB_QUERY_FS_ATTRIBUTE_INFO */
189 buf->f_namelen = PATH_MAX; /* PATH_MAX may be too long - it would
190 presumably be total path, but note
191 that some servers (includinng Samba 3)
192 have a shorter maximum path */
193 buf->f_files = 0; /* undefined */
194 buf->f_ffree = 0; /* unlimited */
195
196 #ifdef CONFIG_CIFS_EXPERIMENTAL
197 /* BB we could add a second check for a QFS Unix capability bit */
198 /* BB FIXME check CIFS_POSIX_EXTENSIONS Unix cap first FIXME BB */
199 if ((pTcon->ses->capabilities & CAP_UNIX) && (CIFS_POSIX_EXTENSIONS &
200 le64_to_cpu(pTcon->fsUnixInfo.Capability)))
201 rc = CIFSSMBQFSPosixInfo(xid, pTcon, buf);
202
203 /* Only need to call the old QFSInfo if failed
204 on newer one */
205 if(rc)
206 #endif /* CIFS_EXPERIMENTAL */
207 rc = CIFSSMBQFSInfo(xid, pTcon, buf);
208
209 /* Old Windows servers do not support level 103, retry with level
210 one if old server failed the previous call */
211 if(rc)
212 rc = SMBOldQFSInfo(xid, pTcon, buf);
213 /*
214 int f_type;
215 __fsid_t f_fsid;
216 int f_namelen; */
217 /* BB get from info in tcon struct at mount time call to QFSAttrInfo */
218 FreeXid(xid);
219 return 0; /* always return success? what if volume is no
220 longer available? */
221 }
222
223 static int cifs_permission(struct inode * inode, int mask, struct nameidata *nd)
224 {
225 struct cifs_sb_info *cifs_sb;
226
227 cifs_sb = CIFS_SB(inode->i_sb);
228
229 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NO_PERM) {
230 return 0;
231 } else /* file mode might have been restricted at mount time
232 on the client (above and beyond ACL on servers) for
233 servers which do not support setting and viewing mode bits,
234 so allowing client to check permissions is useful */
235 return generic_permission(inode, mask, NULL);
236 }
237
238 static kmem_cache_t *cifs_inode_cachep;
239 static kmem_cache_t *cifs_req_cachep;
240 static kmem_cache_t *cifs_mid_cachep;
241 kmem_cache_t *cifs_oplock_cachep;
242 static kmem_cache_t *cifs_sm_req_cachep;
243 mempool_t *cifs_sm_req_poolp;
244 mempool_t *cifs_req_poolp;
245 mempool_t *cifs_mid_poolp;
246
247 static struct inode *
248 cifs_alloc_inode(struct super_block *sb)
249 {
250 struct cifsInodeInfo *cifs_inode;
251 cifs_inode = kmem_cache_alloc(cifs_inode_cachep, SLAB_KERNEL);
252 if (!cifs_inode)
253 return NULL;
254 cifs_inode->cifsAttrs = 0x20; /* default */
255 atomic_set(&cifs_inode->inUse, 0);
256 cifs_inode->time = 0;
257 /* Until the file is open and we have gotten oplock
258 info back from the server, can not assume caching of
259 file data or metadata */
260 cifs_inode->clientCanCacheRead = FALSE;
261 cifs_inode->clientCanCacheAll = FALSE;
262 cifs_inode->vfs_inode.i_blksize = CIFS_MAX_MSGSIZE;
263 cifs_inode->vfs_inode.i_blkbits = 14; /* 2**14 = CIFS_MAX_MSGSIZE */
264 cifs_inode->vfs_inode.i_flags = S_NOATIME | S_NOCMTIME;
265 INIT_LIST_HEAD(&cifs_inode->openFileList);
266 return &cifs_inode->vfs_inode;
267 }
268
269 static void
270 cifs_destroy_inode(struct inode *inode)
271 {
272 kmem_cache_free(cifs_inode_cachep, CIFS_I(inode));
273 }
274
275 /*
276 * cifs_show_options() is for displaying mount options in /proc/mounts.
277 * Not all settable options are displayed but most of the important
278 * ones are.
279 */
280 static int
281 cifs_show_options(struct seq_file *s, struct vfsmount *m)
282 {
283 struct cifs_sb_info *cifs_sb;
284
285 cifs_sb = CIFS_SB(m->mnt_sb);
286
287 if (cifs_sb) {
288 if (cifs_sb->tcon) {
289 seq_printf(s, ",unc=%s", cifs_sb->tcon->treeName);
290 if (cifs_sb->tcon->ses) {
291 if (cifs_sb->tcon->ses->userName)
292 seq_printf(s, ",username=%s",
293 cifs_sb->tcon->ses->userName);
294 if(cifs_sb->tcon->ses->domainName)
295 seq_printf(s, ",domain=%s",
296 cifs_sb->tcon->ses->domainName);
297 }
298 }
299 seq_printf(s, ",rsize=%d",cifs_sb->rsize);
300 seq_printf(s, ",wsize=%d",cifs_sb->wsize);
301 }
302 return 0;
303 }
304
305 #ifdef CONFIG_CIFS_QUOTA
306 int cifs_xquota_set(struct super_block * sb, int quota_type, qid_t qid,
307 struct fs_disk_quota * pdquota)
308 {
309 int xid;
310 int rc = 0;
311 struct cifs_sb_info *cifs_sb = CIFS_SB(sb);
312 struct cifsTconInfo *pTcon;
313
314 if(cifs_sb)
315 pTcon = cifs_sb->tcon;
316 else
317 return -EIO;
318
319
320 xid = GetXid();
321 if(pTcon) {
322 cFYI(1,("set type: 0x%x id: %d",quota_type,qid));
323 } else {
324 return -EIO;
325 }
326
327 FreeXid(xid);
328 return rc;
329 }
330
331 int cifs_xquota_get(struct super_block * sb, int quota_type, qid_t qid,
332 struct fs_disk_quota * pdquota)
333 {
334 int xid;
335 int rc = 0;
336 struct cifs_sb_info *cifs_sb = CIFS_SB(sb);
337 struct cifsTconInfo *pTcon;
338
339 if(cifs_sb)
340 pTcon = cifs_sb->tcon;
341 else
342 return -EIO;
343
344 xid = GetXid();
345 if(pTcon) {
346 cFYI(1,("set type: 0x%x id: %d",quota_type,qid));
347 } else {
348 rc = -EIO;
349 }
350
351 FreeXid(xid);
352 return rc;
353 }
354
355 int cifs_xstate_set(struct super_block * sb, unsigned int flags, int operation)
356 {
357 int xid;
358 int rc = 0;
359 struct cifs_sb_info *cifs_sb = CIFS_SB(sb);
360 struct cifsTconInfo *pTcon;
361
362 if(cifs_sb)
363 pTcon = cifs_sb->tcon;
364 else
365 return -EIO;
366
367 xid = GetXid();
368 if(pTcon) {
369 cFYI(1,("flags: 0x%x operation: 0x%x",flags,operation));
370 } else {
371 rc = -EIO;
372 }
373
374 FreeXid(xid);
375 return rc;
376 }
377
378 int cifs_xstate_get(struct super_block * sb, struct fs_quota_stat *qstats)
379 {
380 int xid;
381 int rc = 0;
382 struct cifs_sb_info *cifs_sb = CIFS_SB(sb);
383 struct cifsTconInfo *pTcon;
384
385 if(cifs_sb) {
386 pTcon = cifs_sb->tcon;
387 } else {
388 return -EIO;
389 }
390 xid = GetXid();
391 if(pTcon) {
392 cFYI(1,("pqstats %p",qstats));
393 } else {
394 rc = -EIO;
395 }
396
397 FreeXid(xid);
398 return rc;
399 }
400
401 static struct quotactl_ops cifs_quotactl_ops = {
402 .set_xquota = cifs_xquota_set,
403 .get_xquota = cifs_xquota_set,
404 .set_xstate = cifs_xstate_set,
405 .get_xstate = cifs_xstate_get,
406 };
407 #endif
408
409 #ifdef CONFIG_CIFS_EXPERIMENTAL
410 static void cifs_umount_begin(struct super_block * sblock)
411 {
412 struct cifs_sb_info *cifs_sb;
413 struct cifsTconInfo * tcon;
414
415 cifs_sb = CIFS_SB(sblock);
416 if(cifs_sb == NULL)
417 return;
418
419 tcon = cifs_sb->tcon;
420 if(tcon == NULL)
421 return;
422 down(&tcon->tconSem);
423 if (atomic_read(&tcon->useCount) == 1)
424 tcon->tidStatus = CifsExiting;
425 up(&tcon->tconSem);
426
427 /* cancel_brl_requests(tcon); */
428 /* cancel_notify_requests(tcon); */
429 if(tcon->ses && tcon->ses->server)
430 {
431 cFYI(1,("wake up tasks now - umount begin not complete"));
432 wake_up_all(&tcon->ses->server->request_q);
433 wake_up_all(&tcon->ses->server->response_q);
434 msleep(1); /* yield */
435 /* we have to kick the requests once more */
436 wake_up_all(&tcon->ses->server->response_q);
437 msleep(1);
438 }
439 /* BB FIXME - finish add checks for tidStatus BB */
440
441 return;
442 }
443 #endif
444
445 static int cifs_remount(struct super_block *sb, int *flags, char *data)
446 {
447 *flags |= MS_NODIRATIME;
448 return 0;
449 }
450
451 struct super_operations cifs_super_ops = {
452 .read_inode = cifs_read_inode,
453 .put_super = cifs_put_super,
454 .statfs = cifs_statfs,
455 .alloc_inode = cifs_alloc_inode,
456 .destroy_inode = cifs_destroy_inode,
457 /* .drop_inode = generic_delete_inode,
458 .delete_inode = cifs_delete_inode, *//* Do not need the above two functions
459 unless later we add lazy close of inodes or unless the kernel forgets to call
460 us with the same number of releases (closes) as opens */
461 .show_options = cifs_show_options,
462 #ifdef CONFIG_CIFS_EXPERIMENTAL
463 .umount_begin = cifs_umount_begin,
464 #endif
465 .remount_fs = cifs_remount,
466 };
467
468 static struct super_block *
469 cifs_get_sb(struct file_system_type *fs_type,
470 int flags, const char *dev_name, void *data)
471 {
472 int rc;
473 struct super_block *sb = sget(fs_type, NULL, set_anon_super, NULL);
474
475 cFYI(1, ("Devname: %s flags: %d ", dev_name, flags));
476
477 if (IS_ERR(sb))
478 return sb;
479
480 sb->s_flags = flags;
481
482 rc = cifs_read_super(sb, data, dev_name, flags & MS_VERBOSE ? 1 : 0);
483 if (rc) {
484 up_write(&sb->s_umount);
485 deactivate_super(sb);
486 return ERR_PTR(rc);
487 }
488 sb->s_flags |= MS_ACTIVE;
489 return sb;
490 }
491
492 static ssize_t cifs_file_writev(struct file *file, const struct iovec *iov,
493 unsigned long nr_segs, loff_t *ppos)
494 {
495 struct inode *inode = file->f_dentry->d_inode;
496 ssize_t written;
497
498 written = generic_file_writev(file, iov, nr_segs, ppos);
499 if (!CIFS_I(inode)->clientCanCacheAll)
500 filemap_fdatawrite(inode->i_mapping);
501 return written;
502 }
503
504 static ssize_t cifs_file_aio_write(struct kiocb *iocb, const char __user *buf,
505 size_t count, loff_t pos)
506 {
507 struct inode *inode = iocb->ki_filp->f_dentry->d_inode;
508 ssize_t written;
509
510 written = generic_file_aio_write(iocb, buf, count, pos);
511 if (!CIFS_I(inode)->clientCanCacheAll)
512 filemap_fdatawrite(inode->i_mapping);
513 return written;
514 }
515
516 static loff_t cifs_llseek(struct file *file, loff_t offset, int origin)
517 {
518 /* origin == SEEK_END => we must revalidate the cached file length */
519 if (origin == 2) {
520 int retval = cifs_revalidate(file->f_dentry);
521 if (retval < 0)
522 return (loff_t)retval;
523 }
524 return remote_llseek(file, offset, origin);
525 }
526
527 static struct file_system_type cifs_fs_type = {
528 .owner = THIS_MODULE,
529 .name = "cifs",
530 .get_sb = cifs_get_sb,
531 .kill_sb = kill_anon_super,
532 /* .fs_flags */
533 };
534 struct inode_operations cifs_dir_inode_ops = {
535 .create = cifs_create,
536 .lookup = cifs_lookup,
537 .getattr = cifs_getattr,
538 .unlink = cifs_unlink,
539 .link = cifs_hardlink,
540 .mkdir = cifs_mkdir,
541 .rmdir = cifs_rmdir,
542 .rename = cifs_rename,
543 .permission = cifs_permission,
544 /* revalidate:cifs_revalidate, */
545 .setattr = cifs_setattr,
546 .symlink = cifs_symlink,
547 .mknod = cifs_mknod,
548 #ifdef CONFIG_CIFS_XATTR
549 .setxattr = cifs_setxattr,
550 .getxattr = cifs_getxattr,
551 .listxattr = cifs_listxattr,
552 .removexattr = cifs_removexattr,
553 #endif
554 };
555
556 struct inode_operations cifs_file_inode_ops = {
557 /* revalidate:cifs_revalidate, */
558 .setattr = cifs_setattr,
559 .getattr = cifs_getattr, /* do we need this anymore? */
560 .rename = cifs_rename,
561 .permission = cifs_permission,
562 #ifdef CONFIG_CIFS_XATTR
563 .setxattr = cifs_setxattr,
564 .getxattr = cifs_getxattr,
565 .listxattr = cifs_listxattr,
566 .removexattr = cifs_removexattr,
567 #endif
568 };
569
570 struct inode_operations cifs_symlink_inode_ops = {
571 .readlink = generic_readlink,
572 .follow_link = cifs_follow_link,
573 .put_link = cifs_put_link,
574 .permission = cifs_permission,
575 /* BB add the following two eventually */
576 /* revalidate: cifs_revalidate,
577 setattr: cifs_notify_change, *//* BB do we need notify change */
578 #ifdef CONFIG_CIFS_XATTR
579 .setxattr = cifs_setxattr,
580 .getxattr = cifs_getxattr,
581 .listxattr = cifs_listxattr,
582 .removexattr = cifs_removexattr,
583 #endif
584 };
585
586 struct file_operations cifs_file_ops = {
587 .read = do_sync_read,
588 .write = do_sync_write,
589 .readv = generic_file_readv,
590 .writev = cifs_file_writev,
591 .aio_read = generic_file_aio_read,
592 .aio_write = cifs_file_aio_write,
593 .open = cifs_open,
594 .release = cifs_close,
595 .lock = cifs_lock,
596 .fsync = cifs_fsync,
597 .flush = cifs_flush,
598 .mmap = cifs_file_mmap,
599 .sendfile = generic_file_sendfile,
600 .llseek = cifs_llseek,
601 #ifdef CONFIG_CIFS_POSIX
602 .ioctl = cifs_ioctl,
603 #endif /* CONFIG_CIFS_POSIX */
604
605 #ifdef CONFIG_CIFS_EXPERIMENTAL
606 .dir_notify = cifs_dir_notify,
607 #endif /* CONFIG_CIFS_EXPERIMENTAL */
608 };
609
610 struct file_operations cifs_file_direct_ops = {
611 /* no mmap, no aio, no readv -
612 BB reevaluate whether they can be done with directio, no cache */
613 .read = cifs_user_read,
614 .write = cifs_user_write,
615 .open = cifs_open,
616 .release = cifs_close,
617 .lock = cifs_lock,
618 .fsync = cifs_fsync,
619 .flush = cifs_flush,
620 .sendfile = generic_file_sendfile, /* BB removeme BB */
621 #ifdef CONFIG_CIFS_POSIX
622 .ioctl = cifs_ioctl,
623 #endif /* CONFIG_CIFS_POSIX */
624 .llseek = cifs_llseek,
625 #ifdef CONFIG_CIFS_EXPERIMENTAL
626 .dir_notify = cifs_dir_notify,
627 #endif /* CONFIG_CIFS_EXPERIMENTAL */
628 };
629 struct file_operations cifs_file_nobrl_ops = {
630 .read = do_sync_read,
631 .write = do_sync_write,
632 .readv = generic_file_readv,
633 .writev = cifs_file_writev,
634 .aio_read = generic_file_aio_read,
635 .aio_write = cifs_file_aio_write,
636 .open = cifs_open,
637 .release = cifs_close,
638 .fsync = cifs_fsync,
639 .flush = cifs_flush,
640 .mmap = cifs_file_mmap,
641 .sendfile = generic_file_sendfile,
642 .llseek = cifs_llseek,
643 #ifdef CONFIG_CIFS_POSIX
644 .ioctl = cifs_ioctl,
645 #endif /* CONFIG_CIFS_POSIX */
646
647 #ifdef CONFIG_CIFS_EXPERIMENTAL
648 .dir_notify = cifs_dir_notify,
649 #endif /* CONFIG_CIFS_EXPERIMENTAL */
650 };
651
652 struct file_operations cifs_file_direct_nobrl_ops = {
653 /* no mmap, no aio, no readv -
654 BB reevaluate whether they can be done with directio, no cache */
655 .read = cifs_user_read,
656 .write = cifs_user_write,
657 .open = cifs_open,
658 .release = cifs_close,
659 .fsync = cifs_fsync,
660 .flush = cifs_flush,
661 .sendfile = generic_file_sendfile, /* BB removeme BB */
662 #ifdef CONFIG_CIFS_POSIX
663 .ioctl = cifs_ioctl,
664 #endif /* CONFIG_CIFS_POSIX */
665 .llseek = cifs_llseek,
666 #ifdef CONFIG_CIFS_EXPERIMENTAL
667 .dir_notify = cifs_dir_notify,
668 #endif /* CONFIG_CIFS_EXPERIMENTAL */
669 };
670
671 struct file_operations cifs_dir_ops = {
672 .readdir = cifs_readdir,
673 .release = cifs_closedir,
674 .read = generic_read_dir,
675 #ifdef CONFIG_CIFS_EXPERIMENTAL
676 .dir_notify = cifs_dir_notify,
677 #endif /* CONFIG_CIFS_EXPERIMENTAL */
678 .ioctl = cifs_ioctl,
679 };
680
681 static void
682 cifs_init_once(void *inode, kmem_cache_t * cachep, unsigned long flags)
683 {
684 struct cifsInodeInfo *cifsi = inode;
685
686 if ((flags & (SLAB_CTOR_VERIFY | SLAB_CTOR_CONSTRUCTOR)) ==
687 SLAB_CTOR_CONSTRUCTOR) {
688 inode_init_once(&cifsi->vfs_inode);
689 INIT_LIST_HEAD(&cifsi->lockList);
690 }
691 }
692
693 static int
694 cifs_init_inodecache(void)
695 {
696 cifs_inode_cachep = kmem_cache_create("cifs_inode_cache",
697 sizeof (struct cifsInodeInfo),
698 0, SLAB_RECLAIM_ACCOUNT,
699 cifs_init_once, NULL);
700 if (cifs_inode_cachep == NULL)
701 return -ENOMEM;
702
703 return 0;
704 }
705
706 static void
707 cifs_destroy_inodecache(void)
708 {
709 if (kmem_cache_destroy(cifs_inode_cachep))
710 printk(KERN_WARNING "cifs_inode_cache: error freeing\n");
711 }
712
713 static int
714 cifs_init_request_bufs(void)
715 {
716 if(CIFSMaxBufSize < 8192) {
717 /* Buffer size can not be smaller than 2 * PATH_MAX since maximum
718 Unicode path name has to fit in any SMB/CIFS path based frames */
719 CIFSMaxBufSize = 8192;
720 } else if (CIFSMaxBufSize > 1024*127) {
721 CIFSMaxBufSize = 1024 * 127;
722 } else {
723 CIFSMaxBufSize &= 0x1FE00; /* Round size to even 512 byte mult*/
724 }
725 /* cERROR(1,("CIFSMaxBufSize %d 0x%x",CIFSMaxBufSize,CIFSMaxBufSize)); */
726 cifs_req_cachep = kmem_cache_create("cifs_request",
727 CIFSMaxBufSize +
728 MAX_CIFS_HDR_SIZE, 0,
729 SLAB_HWCACHE_ALIGN, NULL, NULL);
730 if (cifs_req_cachep == NULL)
731 return -ENOMEM;
732
733 if(cifs_min_rcv < 1)
734 cifs_min_rcv = 1;
735 else if (cifs_min_rcv > 64) {
736 cifs_min_rcv = 64;
737 cERROR(1,("cifs_min_rcv set to maximum (64)"));
738 }
739
740 cifs_req_poolp = mempool_create(cifs_min_rcv,
741 mempool_alloc_slab,
742 mempool_free_slab,
743 cifs_req_cachep);
744
745 if(cifs_req_poolp == NULL) {
746 kmem_cache_destroy(cifs_req_cachep);
747 return -ENOMEM;
748 }
749 /* MAX_CIFS_SMALL_BUFFER_SIZE bytes is enough for most SMB responses and
750 almost all handle based requests (but not write response, nor is it
751 sufficient for path based requests). A smaller size would have
752 been more efficient (compacting multiple slab items on one 4k page)
753 for the case in which debug was on, but this larger size allows
754 more SMBs to use small buffer alloc and is still much more
755 efficient to alloc 1 per page off the slab compared to 17K (5page)
756 alloc of large cifs buffers even when page debugging is on */
757 cifs_sm_req_cachep = kmem_cache_create("cifs_small_rq",
758 MAX_CIFS_SMALL_BUFFER_SIZE, 0, SLAB_HWCACHE_ALIGN,
759 NULL, NULL);
760 if (cifs_sm_req_cachep == NULL) {
761 mempool_destroy(cifs_req_poolp);
762 kmem_cache_destroy(cifs_req_cachep);
763 return -ENOMEM;
764 }
765
766 if(cifs_min_small < 2)
767 cifs_min_small = 2;
768 else if (cifs_min_small > 256) {
769 cifs_min_small = 256;
770 cFYI(1,("cifs_min_small set to maximum (256)"));
771 }
772
773 cifs_sm_req_poolp = mempool_create(cifs_min_small,
774 mempool_alloc_slab,
775 mempool_free_slab,
776 cifs_sm_req_cachep);
777
778 if(cifs_sm_req_poolp == NULL) {
779 mempool_destroy(cifs_req_poolp);
780 kmem_cache_destroy(cifs_req_cachep);
781 kmem_cache_destroy(cifs_sm_req_cachep);
782 return -ENOMEM;
783 }
784
785 return 0;
786 }
787
788 static void
789 cifs_destroy_request_bufs(void)
790 {
791 mempool_destroy(cifs_req_poolp);
792 if (kmem_cache_destroy(cifs_req_cachep))
793 printk(KERN_WARNING
794 "cifs_destroy_request_cache: error not all structures were freed\n");
795 mempool_destroy(cifs_sm_req_poolp);
796 if (kmem_cache_destroy(cifs_sm_req_cachep))
797 printk(KERN_WARNING
798 "cifs_destroy_request_cache: cifs_small_rq free error\n");
799 }
800
801 static int
802 cifs_init_mids(void)
803 {
804 cifs_mid_cachep = kmem_cache_create("cifs_mpx_ids",
805 sizeof (struct mid_q_entry), 0,
806 SLAB_HWCACHE_ALIGN, NULL, NULL);
807 if (cifs_mid_cachep == NULL)
808 return -ENOMEM;
809
810 cifs_mid_poolp = mempool_create(3 /* a reasonable min simultan opers */,
811 mempool_alloc_slab,
812 mempool_free_slab,
813 cifs_mid_cachep);
814 if(cifs_mid_poolp == NULL) {
815 kmem_cache_destroy(cifs_mid_cachep);
816 return -ENOMEM;
817 }
818
819 cifs_oplock_cachep = kmem_cache_create("cifs_oplock_structs",
820 sizeof (struct oplock_q_entry), 0,
821 SLAB_HWCACHE_ALIGN, NULL, NULL);
822 if (cifs_oplock_cachep == NULL) {
823 kmem_cache_destroy(cifs_mid_cachep);
824 mempool_destroy(cifs_mid_poolp);
825 return -ENOMEM;
826 }
827
828 return 0;
829 }
830
831 static void
832 cifs_destroy_mids(void)
833 {
834 mempool_destroy(cifs_mid_poolp);
835 if (kmem_cache_destroy(cifs_mid_cachep))
836 printk(KERN_WARNING
837 "cifs_destroy_mids: error not all structures were freed\n");
838
839 if (kmem_cache_destroy(cifs_oplock_cachep))
840 printk(KERN_WARNING
841 "error not all oplock structures were freed\n");
842 }
843
844 static int cifs_oplock_thread(void * dummyarg)
845 {
846 struct oplock_q_entry * oplock_item;
847 struct cifsTconInfo *pTcon;
848 struct inode * inode;
849 __u16 netfid;
850 int rc;
851
852 daemonize("cifsoplockd");
853 allow_signal(SIGTERM);
854
855 oplockThread = current;
856 do {
857 if (try_to_freeze())
858 continue;
859
860 spin_lock(&GlobalMid_Lock);
861 if(list_empty(&GlobalOplock_Q)) {
862 spin_unlock(&GlobalMid_Lock);
863 set_current_state(TASK_INTERRUPTIBLE);
864 schedule_timeout(39*HZ);
865 } else {
866 oplock_item = list_entry(GlobalOplock_Q.next,
867 struct oplock_q_entry, qhead);
868 if(oplock_item) {
869 cFYI(1,("found oplock item to write out"));
870 pTcon = oplock_item->tcon;
871 inode = oplock_item->pinode;
872 netfid = oplock_item->netfid;
873 spin_unlock(&GlobalMid_Lock);
874 DeleteOplockQEntry(oplock_item);
875 /* can not grab inode sem here since it would
876 deadlock when oplock received on delete
877 since vfs_unlink holds the i_mutex across
878 the call */
879 /* mutex_lock(&inode->i_mutex);*/
880 if (S_ISREG(inode->i_mode)) {
881 rc = filemap_fdatawrite(inode->i_mapping);
882 if(CIFS_I(inode)->clientCanCacheRead == 0) {
883 filemap_fdatawait(inode->i_mapping);
884 invalidate_remote_inode(inode);
885 }
886 } else
887 rc = 0;
888 /* mutex_unlock(&inode->i_mutex);*/
889 if (rc)
890 CIFS_I(inode)->write_behind_rc = rc;
891 cFYI(1,("Oplock flush inode %p rc %d",inode,rc));
892
893 /* releasing a stale oplock after recent reconnection
894 of smb session using a now incorrect file
895 handle is not a data integrity issue but do
896 not bother sending an oplock release if session
897 to server still is disconnected since oplock
898 already released by the server in that case */
899 if(pTcon->tidStatus != CifsNeedReconnect) {
900 rc = CIFSSMBLock(0, pTcon, netfid,
901 0 /* len */ , 0 /* offset */, 0,
902 0, LOCKING_ANDX_OPLOCK_RELEASE,
903 0 /* wait flag */);
904 cFYI(1,("Oplock release rc = %d ",rc));
905 }
906 } else
907 spin_unlock(&GlobalMid_Lock);
908 set_current_state(TASK_INTERRUPTIBLE);
909 schedule_timeout(1); /* yield in case q were corrupt */
910 }
911 } while(!signal_pending(current));
912 oplockThread = NULL;
913 complete_and_exit (&cifs_oplock_exited, 0);
914 }
915
916 static int cifs_dnotify_thread(void * dummyarg)
917 {
918 struct list_head *tmp;
919 struct cifsSesInfo *ses;
920
921 daemonize("cifsdnotifyd");
922 allow_signal(SIGTERM);
923
924 dnotifyThread = current;
925 do {
926 if(try_to_freeze())
927 continue;
928 set_current_state(TASK_INTERRUPTIBLE);
929 schedule_timeout(15*HZ);
930 read_lock(&GlobalSMBSeslock);
931 /* check if any stuck requests that need
932 to be woken up and wakeq so the
933 thread can wake up and error out */
934 list_for_each(tmp, &GlobalSMBSessionList) {
935 ses = list_entry(tmp, struct cifsSesInfo,
936 cifsSessionList);
937 if(ses && ses->server &&
938 atomic_read(&ses->server->inFlight))
939 wake_up_all(&ses->server->response_q);
940 }
941 read_unlock(&GlobalSMBSeslock);
942 } while(!signal_pending(current));
943 complete_and_exit (&cifs_dnotify_exited, 0);
944 }
945
946 static int __init
947 init_cifs(void)
948 {
949 int rc = 0;
950 #ifdef CONFIG_PROC_FS
951 cifs_proc_init();
952 #endif
953 INIT_LIST_HEAD(&GlobalServerList); /* BB not implemented yet */
954 INIT_LIST_HEAD(&GlobalSMBSessionList);
955 INIT_LIST_HEAD(&GlobalTreeConnectionList);
956 INIT_LIST_HEAD(&GlobalOplock_Q);
957 #ifdef CONFIG_CIFS_EXPERIMENTAL
958 INIT_LIST_HEAD(&GlobalDnotifyReqList);
959 INIT_LIST_HEAD(&GlobalDnotifyRsp_Q);
960 #endif
961 /*
962 * Initialize Global counters
963 */
964 atomic_set(&sesInfoAllocCount, 0);
965 atomic_set(&tconInfoAllocCount, 0);
966 atomic_set(&tcpSesAllocCount,0);
967 atomic_set(&tcpSesReconnectCount, 0);
968 atomic_set(&tconInfoReconnectCount, 0);
969
970 atomic_set(&bufAllocCount, 0);
971 atomic_set(&smBufAllocCount, 0);
972 #ifdef CONFIG_CIFS_STATS2
973 atomic_set(&totBufAllocCount, 0);
974 atomic_set(&totSmBufAllocCount, 0);
975 #endif /* CONFIG_CIFS_STATS2 */
976
977 atomic_set(&midCount, 0);
978 GlobalCurrentXid = 0;
979 GlobalTotalActiveXid = 0;
980 GlobalMaxActiveXid = 0;
981 rwlock_init(&GlobalSMBSeslock);
982 spin_lock_init(&GlobalMid_Lock);
983
984 if(cifs_max_pending < 2) {
985 cifs_max_pending = 2;
986 cFYI(1,("cifs_max_pending set to min of 2"));
987 } else if(cifs_max_pending > 256) {
988 cifs_max_pending = 256;
989 cFYI(1,("cifs_max_pending set to max of 256"));
990 }
991
992 rc = cifs_init_inodecache();
993 if (!rc) {
994 rc = cifs_init_mids();
995 if (!rc) {
996 rc = cifs_init_request_bufs();
997 if (!rc) {
998 rc = register_filesystem(&cifs_fs_type);
999 if (!rc) {
1000 rc = (int)kernel_thread(cifs_oplock_thread, NULL,
1001 CLONE_FS | CLONE_FILES | CLONE_VM);
1002 if(rc > 0) {
1003 rc = (int)kernel_thread(cifs_dnotify_thread, NULL,
1004 CLONE_FS | CLONE_FILES | CLONE_VM);
1005 if(rc > 0)
1006 return 0;
1007 else
1008 cERROR(1,("error %d create dnotify thread", rc));
1009 } else {
1010 cERROR(1,("error %d create oplock thread",rc));
1011 }
1012 }
1013 cifs_destroy_request_bufs();
1014 }
1015 cifs_destroy_mids();
1016 }
1017 cifs_destroy_inodecache();
1018 }
1019 #ifdef CONFIG_PROC_FS
1020 cifs_proc_clean();
1021 #endif
1022 return rc;
1023 }
1024
1025 static void __exit
1026 exit_cifs(void)
1027 {
1028 cFYI(0, ("In unregister ie exit_cifs"));
1029 #ifdef CONFIG_PROC_FS
1030 cifs_proc_clean();
1031 #endif
1032 unregister_filesystem(&cifs_fs_type);
1033 cifs_destroy_inodecache();
1034 cifs_destroy_mids();
1035 cifs_destroy_request_bufs();
1036 if(oplockThread) {
1037 send_sig(SIGTERM, oplockThread, 1);
1038 wait_for_completion(&cifs_oplock_exited);
1039 }
1040 if(dnotifyThread) {
1041 send_sig(SIGTERM, dnotifyThread, 1);
1042 wait_for_completion(&cifs_dnotify_exited);
1043 }
1044 }
1045
1046 MODULE_AUTHOR("Steve French <sfrench@us.ibm.com>");
1047 MODULE_LICENSE("GPL"); /* combination of LGPL + GPL source behaves as GPL */
1048 MODULE_DESCRIPTION
1049 ("VFS to access servers complying with the SNIA CIFS Specification e.g. Samba and Windows");
1050 MODULE_VERSION(CIFS_VERSION);
1051 module_init(init_cifs)
1052 module_exit(exit_cifs)
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