]> git.proxmox.com Git - mirror_ubuntu-artful-kernel.git/blame - fs/cifs/file.c
Clarify locking of cifs file and tcon structures and make more granular
[mirror_ubuntu-artful-kernel.git] / fs / cifs / file.c
CommitLineData
1da177e4
LT
1/*
2 * fs/cifs/file.c
3 *
4 * vfs operations that deal with files
fb8c4b14 5 *
f19159dc 6 * Copyright (C) International Business Machines Corp., 2002,2010
1da177e4 7 * Author(s): Steve French (sfrench@us.ibm.com)
7ee1af76 8 * Jeremy Allison (jra@samba.org)
1da177e4
LT
9 *
10 * This library is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU Lesser General Public License as published
12 * by the Free Software Foundation; either version 2.1 of the License, or
13 * (at your option) any later version.
14 *
15 * This library is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
18 * the GNU Lesser General Public License for more details.
19 *
20 * You should have received a copy of the GNU Lesser General Public License
21 * along with this library; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
23 */
24#include <linux/fs.h>
37c0eb46 25#include <linux/backing-dev.h>
1da177e4
LT
26#include <linux/stat.h>
27#include <linux/fcntl.h>
28#include <linux/pagemap.h>
29#include <linux/pagevec.h>
37c0eb46 30#include <linux/writeback.h>
6f88cc2e 31#include <linux/task_io_accounting_ops.h>
23e7dd7d 32#include <linux/delay.h>
3bc303c2 33#include <linux/mount.h>
5a0e3ad6 34#include <linux/slab.h>
690c5e31 35#include <linux/swap.h>
1da177e4
LT
36#include <asm/div64.h>
37#include "cifsfs.h"
38#include "cifspdu.h"
39#include "cifsglob.h"
40#include "cifsproto.h"
41#include "cifs_unicode.h"
42#include "cifs_debug.h"
43#include "cifs_fs_sb.h"
9451a9a5 44#include "fscache.h"
1da177e4 45
07b92d0d 46
1da177e4
LT
47static inline int cifs_convert_flags(unsigned int flags)
48{
49 if ((flags & O_ACCMODE) == O_RDONLY)
50 return GENERIC_READ;
51 else if ((flags & O_ACCMODE) == O_WRONLY)
52 return GENERIC_WRITE;
53 else if ((flags & O_ACCMODE) == O_RDWR) {
54 /* GENERIC_ALL is too much permission to request
55 can cause unnecessary access denied on create */
56 /* return GENERIC_ALL; */
57 return (GENERIC_READ | GENERIC_WRITE);
58 }
59
e10f7b55
JL
60 return (READ_CONTROL | FILE_WRITE_ATTRIBUTES | FILE_READ_ATTRIBUTES |
61 FILE_WRITE_EA | FILE_APPEND_DATA | FILE_WRITE_DATA |
62 FILE_READ_DATA);
7fc8f4e9 63}
e10f7b55 64
608712fe 65static u32 cifs_posix_convert_flags(unsigned int flags)
7fc8f4e9 66{
608712fe 67 u32 posix_flags = 0;
e10f7b55 68
7fc8f4e9 69 if ((flags & O_ACCMODE) == O_RDONLY)
608712fe 70 posix_flags = SMB_O_RDONLY;
7fc8f4e9 71 else if ((flags & O_ACCMODE) == O_WRONLY)
608712fe
JL
72 posix_flags = SMB_O_WRONLY;
73 else if ((flags & O_ACCMODE) == O_RDWR)
74 posix_flags = SMB_O_RDWR;
75
07b92d0d 76 if (flags & O_CREAT) {
608712fe 77 posix_flags |= SMB_O_CREAT;
07b92d0d
SF
78 if (flags & O_EXCL)
79 posix_flags |= SMB_O_EXCL;
80 } else if (flags & O_EXCL)
f96637be
JP
81 cifs_dbg(FYI, "Application %s pid %d has incorrectly set O_EXCL flag but not O_CREAT on file open. Ignoring O_EXCL\n",
82 current->comm, current->tgid);
07b92d0d 83
608712fe
JL
84 if (flags & O_TRUNC)
85 posix_flags |= SMB_O_TRUNC;
86 /* be safe and imply O_SYNC for O_DSYNC */
6b2f3d1f 87 if (flags & O_DSYNC)
608712fe 88 posix_flags |= SMB_O_SYNC;
7fc8f4e9 89 if (flags & O_DIRECTORY)
608712fe 90 posix_flags |= SMB_O_DIRECTORY;
7fc8f4e9 91 if (flags & O_NOFOLLOW)
608712fe 92 posix_flags |= SMB_O_NOFOLLOW;
7fc8f4e9 93 if (flags & O_DIRECT)
608712fe 94 posix_flags |= SMB_O_DIRECT;
7fc8f4e9
SF
95
96 return posix_flags;
1da177e4
LT
97}
98
99static inline int cifs_get_disposition(unsigned int flags)
100{
101 if ((flags & (O_CREAT | O_EXCL)) == (O_CREAT | O_EXCL))
102 return FILE_CREATE;
103 else if ((flags & (O_CREAT | O_TRUNC)) == (O_CREAT | O_TRUNC))
104 return FILE_OVERWRITE_IF;
105 else if ((flags & O_CREAT) == O_CREAT)
106 return FILE_OPEN_IF;
55aa2e09
SF
107 else if ((flags & O_TRUNC) == O_TRUNC)
108 return FILE_OVERWRITE;
1da177e4
LT
109 else
110 return FILE_OPEN;
111}
112
608712fe
JL
113int cifs_posix_open(char *full_path, struct inode **pinode,
114 struct super_block *sb, int mode, unsigned int f_flags,
6d5786a3 115 __u32 *poplock, __u16 *pnetfid, unsigned int xid)
608712fe
JL
116{
117 int rc;
118 FILE_UNIX_BASIC_INFO *presp_data;
119 __u32 posix_flags = 0;
120 struct cifs_sb_info *cifs_sb = CIFS_SB(sb);
121 struct cifs_fattr fattr;
122 struct tcon_link *tlink;
96daf2b0 123 struct cifs_tcon *tcon;
608712fe 124
f96637be 125 cifs_dbg(FYI, "posix open %s\n", full_path);
608712fe
JL
126
127 presp_data = kzalloc(sizeof(FILE_UNIX_BASIC_INFO), GFP_KERNEL);
128 if (presp_data == NULL)
129 return -ENOMEM;
130
131 tlink = cifs_sb_tlink(cifs_sb);
132 if (IS_ERR(tlink)) {
133 rc = PTR_ERR(tlink);
134 goto posix_open_ret;
135 }
136
137 tcon = tlink_tcon(tlink);
138 mode &= ~current_umask();
139
140 posix_flags = cifs_posix_convert_flags(f_flags);
141 rc = CIFSPOSIXCreate(xid, tcon, posix_flags, mode, pnetfid, presp_data,
142 poplock, full_path, cifs_sb->local_nls,
bc8ebdc4 143 cifs_remap(cifs_sb));
608712fe
JL
144 cifs_put_tlink(tlink);
145
146 if (rc)
147 goto posix_open_ret;
148
149 if (presp_data->Type == cpu_to_le32(-1))
150 goto posix_open_ret; /* open ok, caller does qpathinfo */
151
152 if (!pinode)
153 goto posix_open_ret; /* caller does not need info */
154
155 cifs_unix_basic_to_fattr(&fattr, presp_data, cifs_sb);
156
157 /* get new inode and set it up */
158 if (*pinode == NULL) {
159 cifs_fill_uniqueid(sb, &fattr);
160 *pinode = cifs_iget(sb, &fattr);
161 if (!*pinode) {
162 rc = -ENOMEM;
163 goto posix_open_ret;
164 }
165 } else {
166 cifs_fattr_to_inode(*pinode, &fattr);
167 }
168
169posix_open_ret:
170 kfree(presp_data);
171 return rc;
172}
173
eeb910a6
PS
174static int
175cifs_nt_open(char *full_path, struct inode *inode, struct cifs_sb_info *cifs_sb,
fb1214e4
PS
176 struct cifs_tcon *tcon, unsigned int f_flags, __u32 *oplock,
177 struct cifs_fid *fid, unsigned int xid)
eeb910a6
PS
178{
179 int rc;
fb1214e4 180 int desired_access;
eeb910a6 181 int disposition;
3d3ea8e6 182 int create_options = CREATE_NOT_DIR;
eeb910a6 183 FILE_ALL_INFO *buf;
b8c32dbb 184 struct TCP_Server_Info *server = tcon->ses->server;
226730b4 185 struct cifs_open_parms oparms;
eeb910a6 186
b8c32dbb 187 if (!server->ops->open)
fb1214e4
PS
188 return -ENOSYS;
189
190 desired_access = cifs_convert_flags(f_flags);
eeb910a6
PS
191
192/*********************************************************************
193 * open flag mapping table:
194 *
195 * POSIX Flag CIFS Disposition
196 * ---------- ----------------
197 * O_CREAT FILE_OPEN_IF
198 * O_CREAT | O_EXCL FILE_CREATE
199 * O_CREAT | O_TRUNC FILE_OVERWRITE_IF
200 * O_TRUNC FILE_OVERWRITE
201 * none of the above FILE_OPEN
202 *
203 * Note that there is not a direct match between disposition
204 * FILE_SUPERSEDE (ie create whether or not file exists although
205 * O_CREAT | O_TRUNC is similar but truncates the existing
206 * file rather than creating a new file as FILE_SUPERSEDE does
207 * (which uses the attributes / metadata passed in on open call)
208 *?
209 *? O_SYNC is a reasonable match to CIFS writethrough flag
210 *? and the read write flags match reasonably. O_LARGEFILE
211 *? is irrelevant because largefile support is always used
212 *? by this client. Flags O_APPEND, O_DIRECT, O_DIRECTORY,
213 * O_FASYNC, O_NOFOLLOW, O_NONBLOCK need further investigation
214 *********************************************************************/
215
216 disposition = cifs_get_disposition(f_flags);
217
218 /* BB pass O_SYNC flag through on file attributes .. BB */
219
220 buf = kmalloc(sizeof(FILE_ALL_INFO), GFP_KERNEL);
221 if (!buf)
222 return -ENOMEM;
223
3d3ea8e6
SP
224 if (backup_cred(cifs_sb))
225 create_options |= CREATE_OPEN_BACKUP_INTENT;
226
226730b4
PS
227 oparms.tcon = tcon;
228 oparms.cifs_sb = cifs_sb;
229 oparms.desired_access = desired_access;
230 oparms.create_options = create_options;
231 oparms.disposition = disposition;
232 oparms.path = full_path;
233 oparms.fid = fid;
9cbc0b73 234 oparms.reconnect = false;
226730b4
PS
235
236 rc = server->ops->open(xid, &oparms, oplock, buf);
eeb910a6
PS
237
238 if (rc)
239 goto out;
240
241 if (tcon->unix_ext)
242 rc = cifs_get_inode_info_unix(&inode, full_path, inode->i_sb,
243 xid);
244 else
245 rc = cifs_get_inode_info(&inode, full_path, buf, inode->i_sb,
42eacf9e 246 xid, fid);
eeb910a6
PS
247
248out:
249 kfree(buf);
250 return rc;
251}
252
63b7d3a4
PS
253static bool
254cifs_has_mand_locks(struct cifsInodeInfo *cinode)
255{
256 struct cifs_fid_locks *cur;
257 bool has_locks = false;
258
259 down_read(&cinode->lock_sem);
260 list_for_each_entry(cur, &cinode->llist, llist) {
261 if (!list_empty(&cur->locks)) {
262 has_locks = true;
263 break;
264 }
265 }
266 up_read(&cinode->lock_sem);
267 return has_locks;
268}
269
15ecb436 270struct cifsFileInfo *
fb1214e4 271cifs_new_fileinfo(struct cifs_fid *fid, struct file *file,
15ecb436
JL
272 struct tcon_link *tlink, __u32 oplock)
273{
1f1735cb 274 struct dentry *dentry = file_dentry(file);
2b0143b5 275 struct inode *inode = d_inode(dentry);
4b4de76e
PS
276 struct cifsInodeInfo *cinode = CIFS_I(inode);
277 struct cifsFileInfo *cfile;
f45d3416 278 struct cifs_fid_locks *fdlocks;
233839b1 279 struct cifs_tcon *tcon = tlink_tcon(tlink);
63b7d3a4 280 struct TCP_Server_Info *server = tcon->ses->server;
4b4de76e
PS
281
282 cfile = kzalloc(sizeof(struct cifsFileInfo), GFP_KERNEL);
283 if (cfile == NULL)
284 return cfile;
285
f45d3416
PS
286 fdlocks = kzalloc(sizeof(struct cifs_fid_locks), GFP_KERNEL);
287 if (!fdlocks) {
288 kfree(cfile);
289 return NULL;
290 }
291
292 INIT_LIST_HEAD(&fdlocks->locks);
293 fdlocks->cfile = cfile;
294 cfile->llist = fdlocks;
1b4b55a1 295 down_write(&cinode->lock_sem);
f45d3416 296 list_add(&fdlocks->llist, &cinode->llist);
1b4b55a1 297 up_write(&cinode->lock_sem);
f45d3416 298
4b4de76e 299 cfile->count = 1;
4b4de76e
PS
300 cfile->pid = current->tgid;
301 cfile->uid = current_fsuid();
302 cfile->dentry = dget(dentry);
303 cfile->f_flags = file->f_flags;
304 cfile->invalidHandle = false;
305 cfile->tlink = cifs_get_tlink(tlink);
4b4de76e 306 INIT_WORK(&cfile->oplock_break, cifs_oplock_break);
f45d3416 307 mutex_init(&cfile->fh_mutex);
3afca265 308 spin_lock_init(&cfile->file_info_lock);
15ecb436 309
24261fc2
MG
310 cifs_sb_active(inode->i_sb);
311
63b7d3a4
PS
312 /*
313 * If the server returned a read oplock and we have mandatory brlocks,
314 * set oplock level to None.
315 */
53ef1016 316 if (server->ops->is_read_op(oplock) && cifs_has_mand_locks(cinode)) {
f96637be 317 cifs_dbg(FYI, "Reset oplock val from read to None due to mand locks\n");
63b7d3a4
PS
318 oplock = 0;
319 }
320
3afca265 321 spin_lock(&tcon->open_file_lock);
63b7d3a4 322 if (fid->pending_open->oplock != CIFS_OPLOCK_NO_CHANGE && oplock)
233839b1
PS
323 oplock = fid->pending_open->oplock;
324 list_del(&fid->pending_open->olist);
325
42873b0a 326 fid->purge_cache = false;
63b7d3a4 327 server->ops->set_fid(cfile, fid, oplock);
233839b1
PS
328
329 list_add(&cfile->tlist, &tcon->openFileList);
3afca265 330
15ecb436
JL
331 /* if readable file instance put first in list*/
332 if (file->f_mode & FMODE_READ)
4b4de76e 333 list_add(&cfile->flist, &cinode->openFileList);
15ecb436 334 else
4b4de76e 335 list_add_tail(&cfile->flist, &cinode->openFileList);
3afca265 336 spin_unlock(&tcon->open_file_lock);
15ecb436 337
42873b0a 338 if (fid->purge_cache)
4f73c7d3 339 cifs_zap_mapping(inode);
42873b0a 340
4b4de76e
PS
341 file->private_data = cfile;
342 return cfile;
15ecb436
JL
343}
344
764a1b1a
JL
345struct cifsFileInfo *
346cifsFileInfo_get(struct cifsFileInfo *cifs_file)
347{
3afca265 348 spin_lock(&cifs_file->file_info_lock);
764a1b1a 349 cifsFileInfo_get_locked(cifs_file);
3afca265 350 spin_unlock(&cifs_file->file_info_lock);
764a1b1a
JL
351 return cifs_file;
352}
353
cdff08e7
SF
354/*
355 * Release a reference on the file private data. This may involve closing
5f6dbc9e 356 * the filehandle out on the server. Must be called without holding
3afca265 357 * tcon->open_file_lock and cifs_file->file_info_lock.
cdff08e7 358 */
b33879aa
JL
359void cifsFileInfo_put(struct cifsFileInfo *cifs_file)
360{
2b0143b5 361 struct inode *inode = d_inode(cifs_file->dentry);
96daf2b0 362 struct cifs_tcon *tcon = tlink_tcon(cifs_file->tlink);
233839b1 363 struct TCP_Server_Info *server = tcon->ses->server;
e66673e3 364 struct cifsInodeInfo *cifsi = CIFS_I(inode);
24261fc2
MG
365 struct super_block *sb = inode->i_sb;
366 struct cifs_sb_info *cifs_sb = CIFS_SB(sb);
cdff08e7 367 struct cifsLockInfo *li, *tmp;
233839b1
PS
368 struct cifs_fid fid;
369 struct cifs_pending_open open;
ca7df8e0 370 bool oplock_break_cancelled;
cdff08e7 371
3afca265
SF
372 spin_lock(&tcon->open_file_lock);
373
374 spin_lock(&cifs_file->file_info_lock);
5f6dbc9e 375 if (--cifs_file->count > 0) {
3afca265
SF
376 spin_unlock(&cifs_file->file_info_lock);
377 spin_unlock(&tcon->open_file_lock);
cdff08e7
SF
378 return;
379 }
3afca265 380 spin_unlock(&cifs_file->file_info_lock);
cdff08e7 381
233839b1
PS
382 if (server->ops->get_lease_key)
383 server->ops->get_lease_key(inode, &fid);
384
385 /* store open in pending opens to make sure we don't miss lease break */
386 cifs_add_pending_open_locked(&fid, cifs_file->tlink, &open);
387
cdff08e7
SF
388 /* remove it from the lists */
389 list_del(&cifs_file->flist);
390 list_del(&cifs_file->tlist);
391
392 if (list_empty(&cifsi->openFileList)) {
f96637be 393 cifs_dbg(FYI, "closing last open instance for inode %p\n",
2b0143b5 394 d_inode(cifs_file->dentry));
25364138
PS
395 /*
396 * In strict cache mode we need invalidate mapping on the last
397 * close because it may cause a error when we open this file
398 * again and get at least level II oplock.
399 */
4f8ba8a0 400 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_STRICT_IO)
aff8d5ca 401 set_bit(CIFS_INO_INVALID_MAPPING, &cifsi->flags);
c6723628 402 cifs_set_oplock_level(cifsi, 0);
cdff08e7 403 }
3afca265
SF
404
405 spin_unlock(&tcon->open_file_lock);
cdff08e7 406
ca7df8e0 407 oplock_break_cancelled = cancel_work_sync(&cifs_file->oplock_break);
ad635942 408
cdff08e7 409 if (!tcon->need_reconnect && !cifs_file->invalidHandle) {
0ff78a22 410 struct TCP_Server_Info *server = tcon->ses->server;
6d5786a3 411 unsigned int xid;
0ff78a22 412
6d5786a3 413 xid = get_xid();
0ff78a22 414 if (server->ops->close)
760ad0ca
PS
415 server->ops->close(xid, tcon, &cifs_file->fid);
416 _free_xid(xid);
cdff08e7
SF
417 }
418
ca7df8e0
SP
419 if (oplock_break_cancelled)
420 cifs_done_oplock_break(cifsi);
421
233839b1
PS
422 cifs_del_pending_open(&open);
423
f45d3416
PS
424 /*
425 * Delete any outstanding lock records. We'll lose them when the file
cdff08e7
SF
426 * is closed anyway.
427 */
1b4b55a1 428 down_write(&cifsi->lock_sem);
f45d3416 429 list_for_each_entry_safe(li, tmp, &cifs_file->llist->locks, llist) {
cdff08e7 430 list_del(&li->llist);
85160e03 431 cifs_del_lock_waiters(li);
cdff08e7 432 kfree(li);
b33879aa 433 }
f45d3416
PS
434 list_del(&cifs_file->llist->llist);
435 kfree(cifs_file->llist);
1b4b55a1 436 up_write(&cifsi->lock_sem);
cdff08e7
SF
437
438 cifs_put_tlink(cifs_file->tlink);
439 dput(cifs_file->dentry);
24261fc2 440 cifs_sb_deactive(sb);
cdff08e7 441 kfree(cifs_file);
b33879aa
JL
442}
443
1da177e4 444int cifs_open(struct inode *inode, struct file *file)
233839b1 445
1da177e4
LT
446{
447 int rc = -EACCES;
6d5786a3 448 unsigned int xid;
590a3fe0 449 __u32 oplock;
1da177e4 450 struct cifs_sb_info *cifs_sb;
b8c32dbb 451 struct TCP_Server_Info *server;
96daf2b0 452 struct cifs_tcon *tcon;
7ffec372 453 struct tcon_link *tlink;
fb1214e4 454 struct cifsFileInfo *cfile = NULL;
1da177e4 455 char *full_path = NULL;
7e12eddb 456 bool posix_open_ok = false;
fb1214e4 457 struct cifs_fid fid;
233839b1 458 struct cifs_pending_open open;
1da177e4 459
6d5786a3 460 xid = get_xid();
1da177e4
LT
461
462 cifs_sb = CIFS_SB(inode->i_sb);
7ffec372
JL
463 tlink = cifs_sb_tlink(cifs_sb);
464 if (IS_ERR(tlink)) {
6d5786a3 465 free_xid(xid);
7ffec372
JL
466 return PTR_ERR(tlink);
467 }
468 tcon = tlink_tcon(tlink);
b8c32dbb 469 server = tcon->ses->server;
1da177e4 470
1f1735cb 471 full_path = build_path_from_dentry(file_dentry(file));
1da177e4 472 if (full_path == NULL) {
0f3bc09e 473 rc = -ENOMEM;
232341ba 474 goto out;
1da177e4
LT
475 }
476
f96637be 477 cifs_dbg(FYI, "inode = 0x%p file flags are 0x%x for %s\n",
b6b38f70 478 inode, file->f_flags, full_path);
276a74a4 479
787aded6
NJ
480 if (file->f_flags & O_DIRECT &&
481 cifs_sb->mnt_cifs_flags & CIFS_MOUNT_STRICT_IO) {
482 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NO_BRL)
483 file->f_op = &cifs_file_direct_nobrl_ops;
484 else
485 file->f_op = &cifs_file_direct_ops;
486 }
487
233839b1 488 if (server->oplocks)
276a74a4
SF
489 oplock = REQ_OPLOCK;
490 else
491 oplock = 0;
492
64cc2c63 493 if (!tcon->broken_posix_open && tcon->unix_ext &&
29e20f9c
PS
494 cap_unix(tcon->ses) && (CIFS_UNIX_POSIX_PATH_OPS_CAP &
495 le64_to_cpu(tcon->fsUnixInfo.Capability))) {
276a74a4 496 /* can not refresh inode info since size could be stale */
2422f676 497 rc = cifs_posix_open(full_path, &inode, inode->i_sb,
fa588e0c 498 cifs_sb->mnt_file_mode /* ignored */,
fb1214e4 499 file->f_flags, &oplock, &fid.netfid, xid);
276a74a4 500 if (rc == 0) {
f96637be 501 cifs_dbg(FYI, "posix open succeeded\n");
7e12eddb 502 posix_open_ok = true;
64cc2c63
SF
503 } else if ((rc == -EINVAL) || (rc == -EOPNOTSUPP)) {
504 if (tcon->ses->serverNOS)
f96637be
JP
505 cifs_dbg(VFS, "server %s of type %s returned unexpected error on SMB posix open, disabling posix open support. Check if server update available.\n",
506 tcon->ses->serverName,
507 tcon->ses->serverNOS);
64cc2c63 508 tcon->broken_posix_open = true;
276a74a4
SF
509 } else if ((rc != -EIO) && (rc != -EREMOTE) &&
510 (rc != -EOPNOTSUPP)) /* path not found or net err */
511 goto out;
fb1214e4
PS
512 /*
513 * Else fallthrough to retry open the old way on network i/o
514 * or DFS errors.
515 */
276a74a4
SF
516 }
517
233839b1
PS
518 if (server->ops->get_lease_key)
519 server->ops->get_lease_key(inode, &fid);
520
521 cifs_add_pending_open(&fid, tlink, &open);
522
7e12eddb 523 if (!posix_open_ok) {
b8c32dbb
PS
524 if (server->ops->get_lease_key)
525 server->ops->get_lease_key(inode, &fid);
526
7e12eddb 527 rc = cifs_nt_open(full_path, inode, cifs_sb, tcon,
fb1214e4 528 file->f_flags, &oplock, &fid, xid);
233839b1
PS
529 if (rc) {
530 cifs_del_pending_open(&open);
7e12eddb 531 goto out;
233839b1 532 }
7e12eddb 533 }
47c78b7f 534
fb1214e4
PS
535 cfile = cifs_new_fileinfo(&fid, file, tlink, oplock);
536 if (cfile == NULL) {
b8c32dbb
PS
537 if (server->ops->close)
538 server->ops->close(xid, tcon, &fid);
233839b1 539 cifs_del_pending_open(&open);
1da177e4
LT
540 rc = -ENOMEM;
541 goto out;
542 }
1da177e4 543
9451a9a5
SJ
544 cifs_fscache_set_inode_cookie(inode, file);
545
7e12eddb 546 if ((oplock & CIFS_CREATE_ACTION) && !posix_open_ok && tcon->unix_ext) {
fb1214e4
PS
547 /*
548 * Time to set mode which we can not set earlier due to
549 * problems creating new read-only files.
550 */
7e12eddb
PS
551 struct cifs_unix_set_info_args args = {
552 .mode = inode->i_mode,
49418b2c
EB
553 .uid = INVALID_UID, /* no change */
554 .gid = INVALID_GID, /* no change */
7e12eddb
PS
555 .ctime = NO_CHANGE_64,
556 .atime = NO_CHANGE_64,
557 .mtime = NO_CHANGE_64,
558 .device = 0,
559 };
fb1214e4
PS
560 CIFSSMBUnixSetFileInfo(xid, tcon, &args, fid.netfid,
561 cfile->pid);
1da177e4
LT
562 }
563
564out:
1da177e4 565 kfree(full_path);
6d5786a3 566 free_xid(xid);
7ffec372 567 cifs_put_tlink(tlink);
1da177e4
LT
568 return rc;
569}
570
f152fd5f
PS
571static int cifs_push_posix_locks(struct cifsFileInfo *cfile);
572
2ae78ba8
PS
573/*
574 * Try to reacquire byte range locks that were released when session
f152fd5f 575 * to server was lost.
2ae78ba8 576 */
f152fd5f
PS
577static int
578cifs_relock_file(struct cifsFileInfo *cfile)
1da177e4 579{
f152fd5f 580 struct cifs_sb_info *cifs_sb = CIFS_SB(cfile->dentry->d_sb);
2b0143b5 581 struct cifsInodeInfo *cinode = CIFS_I(d_inode(cfile->dentry));
f152fd5f 582 struct cifs_tcon *tcon = tlink_tcon(cfile->tlink);
1da177e4
LT
583 int rc = 0;
584
689c3db4 585 down_read(&cinode->lock_sem);
f152fd5f 586 if (cinode->can_cache_brlcks) {
689c3db4
PS
587 /* can cache locks - no need to relock */
588 up_read(&cinode->lock_sem);
f152fd5f
PS
589 return rc;
590 }
591
592 if (cap_unix(tcon->ses) &&
593 (CIFS_UNIX_FCNTL_CAP & le64_to_cpu(tcon->fsUnixInfo.Capability)) &&
594 ((cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NOPOSIXBRL) == 0))
595 rc = cifs_push_posix_locks(cfile);
596 else
597 rc = tcon->ses->server->ops->push_mand_locks(cfile);
1da177e4 598
689c3db4 599 up_read(&cinode->lock_sem);
1da177e4
LT
600 return rc;
601}
602
2ae78ba8
PS
603static int
604cifs_reopen_file(struct cifsFileInfo *cfile, bool can_flush)
1da177e4
LT
605{
606 int rc = -EACCES;
6d5786a3 607 unsigned int xid;
590a3fe0 608 __u32 oplock;
1da177e4 609 struct cifs_sb_info *cifs_sb;
96daf2b0 610 struct cifs_tcon *tcon;
2ae78ba8
PS
611 struct TCP_Server_Info *server;
612 struct cifsInodeInfo *cinode;
fb8c4b14 613 struct inode *inode;
1da177e4 614 char *full_path = NULL;
2ae78ba8 615 int desired_access;
1da177e4 616 int disposition = FILE_OPEN;
3d3ea8e6 617 int create_options = CREATE_NOT_DIR;
226730b4 618 struct cifs_open_parms oparms;
1da177e4 619
6d5786a3 620 xid = get_xid();
2ae78ba8
PS
621 mutex_lock(&cfile->fh_mutex);
622 if (!cfile->invalidHandle) {
623 mutex_unlock(&cfile->fh_mutex);
0f3bc09e 624 rc = 0;
6d5786a3 625 free_xid(xid);
0f3bc09e 626 return rc;
1da177e4
LT
627 }
628
2b0143b5 629 inode = d_inode(cfile->dentry);
1da177e4 630 cifs_sb = CIFS_SB(inode->i_sb);
2ae78ba8
PS
631 tcon = tlink_tcon(cfile->tlink);
632 server = tcon->ses->server;
633
634 /*
635 * Can not grab rename sem here because various ops, including those
636 * that already have the rename sem can end up causing writepage to get
637 * called and if the server was down that means we end up here, and we
638 * can never tell if the caller already has the rename_sem.
639 */
640 full_path = build_path_from_dentry(cfile->dentry);
1da177e4 641 if (full_path == NULL) {
3a9f462f 642 rc = -ENOMEM;
2ae78ba8 643 mutex_unlock(&cfile->fh_mutex);
6d5786a3 644 free_xid(xid);
3a9f462f 645 return rc;
1da177e4
LT
646 }
647
f96637be
JP
648 cifs_dbg(FYI, "inode = 0x%p file flags 0x%x for %s\n",
649 inode, cfile->f_flags, full_path);
1da177e4 650
10b9b98e 651 if (tcon->ses->server->oplocks)
1da177e4
LT
652 oplock = REQ_OPLOCK;
653 else
4b18f2a9 654 oplock = 0;
1da177e4 655
29e20f9c 656 if (tcon->unix_ext && cap_unix(tcon->ses) &&
7fc8f4e9 657 (CIFS_UNIX_POSIX_PATH_OPS_CAP &
29e20f9c 658 le64_to_cpu(tcon->fsUnixInfo.Capability))) {
608712fe
JL
659 /*
660 * O_CREAT, O_EXCL and O_TRUNC already had their effect on the
661 * original open. Must mask them off for a reopen.
662 */
2ae78ba8 663 unsigned int oflags = cfile->f_flags &
15886177 664 ~(O_CREAT | O_EXCL | O_TRUNC);
608712fe 665
2422f676 666 rc = cifs_posix_open(full_path, NULL, inode->i_sb,
2ae78ba8 667 cifs_sb->mnt_file_mode /* ignored */,
9cbc0b73 668 oflags, &oplock, &cfile->fid.netfid, xid);
7fc8f4e9 669 if (rc == 0) {
f96637be 670 cifs_dbg(FYI, "posix reopen succeeded\n");
fe090e4e 671 oparms.reconnect = true;
7fc8f4e9
SF
672 goto reopen_success;
673 }
2ae78ba8
PS
674 /*
675 * fallthrough to retry open the old way on errors, especially
676 * in the reconnect path it is important to retry hard
677 */
7fc8f4e9
SF
678 }
679
2ae78ba8 680 desired_access = cifs_convert_flags(cfile->f_flags);
7fc8f4e9 681
3d3ea8e6
SP
682 if (backup_cred(cifs_sb))
683 create_options |= CREATE_OPEN_BACKUP_INTENT;
684
b8c32dbb 685 if (server->ops->get_lease_key)
9cbc0b73 686 server->ops->get_lease_key(inode, &cfile->fid);
b8c32dbb 687
226730b4
PS
688 oparms.tcon = tcon;
689 oparms.cifs_sb = cifs_sb;
690 oparms.desired_access = desired_access;
691 oparms.create_options = create_options;
692 oparms.disposition = disposition;
693 oparms.path = full_path;
9cbc0b73
PS
694 oparms.fid = &cfile->fid;
695 oparms.reconnect = true;
226730b4 696
2ae78ba8
PS
697 /*
698 * Can not refresh inode by passing in file_info buf to be returned by
d81b8a40 699 * ops->open and then calling get_inode_info with returned buf since
2ae78ba8
PS
700 * file might have write behind data that needs to be flushed and server
701 * version of file size can be stale. If we knew for sure that inode was
702 * not dirty locally we could do this.
703 */
226730b4 704 rc = server->ops->open(xid, &oparms, &oplock, NULL);
b33fcf1c
PS
705 if (rc == -ENOENT && oparms.reconnect == false) {
706 /* durable handle timeout is expired - open the file again */
707 rc = server->ops->open(xid, &oparms, &oplock, NULL);
708 /* indicate that we need to relock the file */
709 oparms.reconnect = true;
710 }
711
1da177e4 712 if (rc) {
2ae78ba8 713 mutex_unlock(&cfile->fh_mutex);
f96637be
JP
714 cifs_dbg(FYI, "cifs_reopen returned 0x%x\n", rc);
715 cifs_dbg(FYI, "oplock: %d\n", oplock);
15886177
JL
716 goto reopen_error_exit;
717 }
718
7fc8f4e9 719reopen_success:
2ae78ba8
PS
720 cfile->invalidHandle = false;
721 mutex_unlock(&cfile->fh_mutex);
722 cinode = CIFS_I(inode);
15886177
JL
723
724 if (can_flush) {
725 rc = filemap_write_and_wait(inode->i_mapping);
eb4b756b 726 mapping_set_error(inode->i_mapping, rc);
15886177 727
15886177 728 if (tcon->unix_ext)
2ae78ba8
PS
729 rc = cifs_get_inode_info_unix(&inode, full_path,
730 inode->i_sb, xid);
15886177 731 else
2ae78ba8
PS
732 rc = cifs_get_inode_info(&inode, full_path, NULL,
733 inode->i_sb, xid, NULL);
734 }
735 /*
736 * Else we are writing out data to server already and could deadlock if
737 * we tried to flush data, and since we do not know if we have data that
738 * would invalidate the current end of file on the server we can not go
739 * to the server to get the new inode info.
740 */
741
9cbc0b73
PS
742 server->ops->set_fid(cfile, &cfile->fid, oplock);
743 if (oparms.reconnect)
744 cifs_relock_file(cfile);
15886177
JL
745
746reopen_error_exit:
1da177e4 747 kfree(full_path);
6d5786a3 748 free_xid(xid);
1da177e4
LT
749 return rc;
750}
751
752int cifs_close(struct inode *inode, struct file *file)
753{
77970693
JL
754 if (file->private_data != NULL) {
755 cifsFileInfo_put(file->private_data);
756 file->private_data = NULL;
757 }
7ee1af76 758
cdff08e7
SF
759 /* return code from the ->release op is always ignored */
760 return 0;
1da177e4
LT
761}
762
763int cifs_closedir(struct inode *inode, struct file *file)
764{
765 int rc = 0;
6d5786a3 766 unsigned int xid;
4b4de76e 767 struct cifsFileInfo *cfile = file->private_data;
92fc65a7
PS
768 struct cifs_tcon *tcon;
769 struct TCP_Server_Info *server;
770 char *buf;
1da177e4 771
f96637be 772 cifs_dbg(FYI, "Closedir inode = 0x%p\n", inode);
1da177e4 773
92fc65a7
PS
774 if (cfile == NULL)
775 return rc;
776
6d5786a3 777 xid = get_xid();
92fc65a7
PS
778 tcon = tlink_tcon(cfile->tlink);
779 server = tcon->ses->server;
1da177e4 780
f96637be 781 cifs_dbg(FYI, "Freeing private data in close dir\n");
3afca265 782 spin_lock(&cfile->file_info_lock);
52755808 783 if (server->ops->dir_needs_close(cfile)) {
92fc65a7 784 cfile->invalidHandle = true;
3afca265 785 spin_unlock(&cfile->file_info_lock);
92fc65a7
PS
786 if (server->ops->close_dir)
787 rc = server->ops->close_dir(xid, tcon, &cfile->fid);
788 else
789 rc = -ENOSYS;
f96637be 790 cifs_dbg(FYI, "Closing uncompleted readdir with rc %d\n", rc);
92fc65a7
PS
791 /* not much we can do if it fails anyway, ignore rc */
792 rc = 0;
793 } else
3afca265 794 spin_unlock(&cfile->file_info_lock);
92fc65a7
PS
795
796 buf = cfile->srch_inf.ntwrk_buf_start;
797 if (buf) {
f96637be 798 cifs_dbg(FYI, "closedir free smb buf in srch struct\n");
92fc65a7
PS
799 cfile->srch_inf.ntwrk_buf_start = NULL;
800 if (cfile->srch_inf.smallBuf)
801 cifs_small_buf_release(buf);
802 else
803 cifs_buf_release(buf);
1da177e4 804 }
92fc65a7
PS
805
806 cifs_put_tlink(cfile->tlink);
807 kfree(file->private_data);
808 file->private_data = NULL;
1da177e4 809 /* BB can we lock the filestruct while this is going on? */
6d5786a3 810 free_xid(xid);
1da177e4
LT
811 return rc;
812}
813
85160e03 814static struct cifsLockInfo *
fbd35aca 815cifs_lock_init(__u64 offset, __u64 length, __u8 type)
7ee1af76 816{
a88b4707 817 struct cifsLockInfo *lock =
fb8c4b14 818 kmalloc(sizeof(struct cifsLockInfo), GFP_KERNEL);
a88b4707
PS
819 if (!lock)
820 return lock;
821 lock->offset = offset;
822 lock->length = length;
823 lock->type = type;
a88b4707
PS
824 lock->pid = current->tgid;
825 INIT_LIST_HEAD(&lock->blist);
826 init_waitqueue_head(&lock->block_q);
827 return lock;
85160e03
PS
828}
829
f7ba7fe6 830void
85160e03
PS
831cifs_del_lock_waiters(struct cifsLockInfo *lock)
832{
833 struct cifsLockInfo *li, *tmp;
834 list_for_each_entry_safe(li, tmp, &lock->blist, blist) {
835 list_del_init(&li->blist);
836 wake_up(&li->block_q);
837 }
838}
839
081c0414
PS
840#define CIFS_LOCK_OP 0
841#define CIFS_READ_OP 1
842#define CIFS_WRITE_OP 2
843
844/* @rw_check : 0 - no op, 1 - read, 2 - write */
85160e03 845static bool
f45d3416
PS
846cifs_find_fid_lock_conflict(struct cifs_fid_locks *fdlocks, __u64 offset,
847 __u64 length, __u8 type, struct cifsFileInfo *cfile,
081c0414 848 struct cifsLockInfo **conf_lock, int rw_check)
85160e03 849{
fbd35aca 850 struct cifsLockInfo *li;
f45d3416 851 struct cifsFileInfo *cur_cfile = fdlocks->cfile;
106dc538 852 struct TCP_Server_Info *server = tlink_tcon(cfile->tlink)->ses->server;
85160e03 853
f45d3416 854 list_for_each_entry(li, &fdlocks->locks, llist) {
85160e03
PS
855 if (offset + length <= li->offset ||
856 offset >= li->offset + li->length)
857 continue;
081c0414
PS
858 if (rw_check != CIFS_LOCK_OP && current->tgid == li->pid &&
859 server->ops->compare_fids(cfile, cur_cfile)) {
860 /* shared lock prevents write op through the same fid */
861 if (!(li->type & server->vals->shared_lock_type) ||
862 rw_check != CIFS_WRITE_OP)
863 continue;
864 }
f45d3416
PS
865 if ((type & server->vals->shared_lock_type) &&
866 ((server->ops->compare_fids(cfile, cur_cfile) &&
867 current->tgid == li->pid) || type == li->type))
85160e03 868 continue;
579f9053
PS
869 if (conf_lock)
870 *conf_lock = li;
f45d3416 871 return true;
85160e03
PS
872 }
873 return false;
874}
875
579f9053 876bool
55157dfb 877cifs_find_lock_conflict(struct cifsFileInfo *cfile, __u64 offset, __u64 length,
579f9053 878 __u8 type, struct cifsLockInfo **conf_lock,
081c0414 879 int rw_check)
161ebf9f 880{
fbd35aca 881 bool rc = false;
f45d3416 882 struct cifs_fid_locks *cur;
2b0143b5 883 struct cifsInodeInfo *cinode = CIFS_I(d_inode(cfile->dentry));
fbd35aca 884
f45d3416
PS
885 list_for_each_entry(cur, &cinode->llist, llist) {
886 rc = cifs_find_fid_lock_conflict(cur, offset, length, type,
579f9053 887 cfile, conf_lock, rw_check);
fbd35aca
PS
888 if (rc)
889 break;
890 }
fbd35aca
PS
891
892 return rc;
161ebf9f
PS
893}
894
9a5101c8
PS
895/*
896 * Check if there is another lock that prevents us to set the lock (mandatory
897 * style). If such a lock exists, update the flock structure with its
898 * properties. Otherwise, set the flock type to F_UNLCK if we can cache brlocks
899 * or leave it the same if we can't. Returns 0 if we don't need to request to
900 * the server or 1 otherwise.
901 */
85160e03 902static int
fbd35aca
PS
903cifs_lock_test(struct cifsFileInfo *cfile, __u64 offset, __u64 length,
904 __u8 type, struct file_lock *flock)
85160e03
PS
905{
906 int rc = 0;
907 struct cifsLockInfo *conf_lock;
2b0143b5 908 struct cifsInodeInfo *cinode = CIFS_I(d_inode(cfile->dentry));
106dc538 909 struct TCP_Server_Info *server = tlink_tcon(cfile->tlink)->ses->server;
85160e03
PS
910 bool exist;
911
1b4b55a1 912 down_read(&cinode->lock_sem);
85160e03 913
55157dfb 914 exist = cifs_find_lock_conflict(cfile, offset, length, type,
081c0414 915 &conf_lock, CIFS_LOCK_OP);
85160e03
PS
916 if (exist) {
917 flock->fl_start = conf_lock->offset;
918 flock->fl_end = conf_lock->offset + conf_lock->length - 1;
919 flock->fl_pid = conf_lock->pid;
106dc538 920 if (conf_lock->type & server->vals->shared_lock_type)
85160e03
PS
921 flock->fl_type = F_RDLCK;
922 else
923 flock->fl_type = F_WRLCK;
924 } else if (!cinode->can_cache_brlcks)
925 rc = 1;
926 else
927 flock->fl_type = F_UNLCK;
928
1b4b55a1 929 up_read(&cinode->lock_sem);
85160e03
PS
930 return rc;
931}
932
161ebf9f 933static void
fbd35aca 934cifs_lock_add(struct cifsFileInfo *cfile, struct cifsLockInfo *lock)
85160e03 935{
2b0143b5 936 struct cifsInodeInfo *cinode = CIFS_I(d_inode(cfile->dentry));
1b4b55a1 937 down_write(&cinode->lock_sem);
f45d3416 938 list_add_tail(&lock->llist, &cfile->llist->locks);
1b4b55a1 939 up_write(&cinode->lock_sem);
7ee1af76
JA
940}
941
9a5101c8
PS
942/*
943 * Set the byte-range lock (mandatory style). Returns:
944 * 1) 0, if we set the lock and don't need to request to the server;
945 * 2) 1, if no locks prevent us but we need to request to the server;
946 * 3) -EACCESS, if there is a lock that prevents us and wait is false.
947 */
85160e03 948static int
fbd35aca 949cifs_lock_add_if(struct cifsFileInfo *cfile, struct cifsLockInfo *lock,
161ebf9f 950 bool wait)
85160e03 951{
161ebf9f 952 struct cifsLockInfo *conf_lock;
2b0143b5 953 struct cifsInodeInfo *cinode = CIFS_I(d_inode(cfile->dentry));
85160e03
PS
954 bool exist;
955 int rc = 0;
956
85160e03
PS
957try_again:
958 exist = false;
1b4b55a1 959 down_write(&cinode->lock_sem);
85160e03 960
55157dfb 961 exist = cifs_find_lock_conflict(cfile, lock->offset, lock->length,
081c0414 962 lock->type, &conf_lock, CIFS_LOCK_OP);
85160e03 963 if (!exist && cinode->can_cache_brlcks) {
f45d3416 964 list_add_tail(&lock->llist, &cfile->llist->locks);
1b4b55a1 965 up_write(&cinode->lock_sem);
85160e03
PS
966 return rc;
967 }
968
969 if (!exist)
970 rc = 1;
971 else if (!wait)
972 rc = -EACCES;
973 else {
974 list_add_tail(&lock->blist, &conf_lock->blist);
1b4b55a1 975 up_write(&cinode->lock_sem);
85160e03
PS
976 rc = wait_event_interruptible(lock->block_q,
977 (lock->blist.prev == &lock->blist) &&
978 (lock->blist.next == &lock->blist));
979 if (!rc)
980 goto try_again;
1b4b55a1 981 down_write(&cinode->lock_sem);
a88b4707 982 list_del_init(&lock->blist);
85160e03
PS
983 }
984
1b4b55a1 985 up_write(&cinode->lock_sem);
85160e03
PS
986 return rc;
987}
988
9a5101c8
PS
989/*
990 * Check if there is another lock that prevents us to set the lock (posix
991 * style). If such a lock exists, update the flock structure with its
992 * properties. Otherwise, set the flock type to F_UNLCK if we can cache brlocks
993 * or leave it the same if we can't. Returns 0 if we don't need to request to
994 * the server or 1 otherwise.
995 */
85160e03 996static int
4f6bcec9
PS
997cifs_posix_lock_test(struct file *file, struct file_lock *flock)
998{
999 int rc = 0;
496ad9aa 1000 struct cifsInodeInfo *cinode = CIFS_I(file_inode(file));
4f6bcec9
PS
1001 unsigned char saved_type = flock->fl_type;
1002
50792760
PS
1003 if ((flock->fl_flags & FL_POSIX) == 0)
1004 return 1;
1005
1b4b55a1 1006 down_read(&cinode->lock_sem);
4f6bcec9
PS
1007 posix_test_lock(file, flock);
1008
1009 if (flock->fl_type == F_UNLCK && !cinode->can_cache_brlcks) {
1010 flock->fl_type = saved_type;
1011 rc = 1;
1012 }
1013
1b4b55a1 1014 up_read(&cinode->lock_sem);
4f6bcec9
PS
1015 return rc;
1016}
1017
9a5101c8
PS
1018/*
1019 * Set the byte-range lock (posix style). Returns:
1020 * 1) 0, if we set the lock and don't need to request to the server;
1021 * 2) 1, if we need to request to the server;
1022 * 3) <0, if the error occurs while setting the lock.
1023 */
4f6bcec9
PS
1024static int
1025cifs_posix_lock_set(struct file *file, struct file_lock *flock)
1026{
496ad9aa 1027 struct cifsInodeInfo *cinode = CIFS_I(file_inode(file));
50792760
PS
1028 int rc = 1;
1029
1030 if ((flock->fl_flags & FL_POSIX) == 0)
1031 return rc;
4f6bcec9 1032
66189be7 1033try_again:
1b4b55a1 1034 down_write(&cinode->lock_sem);
4f6bcec9 1035 if (!cinode->can_cache_brlcks) {
1b4b55a1 1036 up_write(&cinode->lock_sem);
50792760 1037 return rc;
4f6bcec9 1038 }
66189be7
PS
1039
1040 rc = posix_lock_file(file, flock, NULL);
1b4b55a1 1041 up_write(&cinode->lock_sem);
66189be7
PS
1042 if (rc == FILE_LOCK_DEFERRED) {
1043 rc = wait_event_interruptible(flock->fl_wait, !flock->fl_next);
1044 if (!rc)
1045 goto try_again;
1a9e64a7 1046 posix_unblock_lock(flock);
66189be7 1047 }
9ebb389d 1048 return rc;
4f6bcec9
PS
1049}
1050
d39a4f71 1051int
4f6bcec9 1052cifs_push_mandatory_locks(struct cifsFileInfo *cfile)
85160e03 1053{
6d5786a3
PS
1054 unsigned int xid;
1055 int rc = 0, stored_rc;
85160e03
PS
1056 struct cifsLockInfo *li, *tmp;
1057 struct cifs_tcon *tcon;
0013fb4c 1058 unsigned int num, max_num, max_buf;
32b9aaf1
PS
1059 LOCKING_ANDX_RANGE *buf, *cur;
1060 int types[] = {LOCKING_ANDX_LARGE_FILES,
1061 LOCKING_ANDX_SHARED_LOCK | LOCKING_ANDX_LARGE_FILES};
1062 int i;
85160e03 1063
6d5786a3 1064 xid = get_xid();
85160e03
PS
1065 tcon = tlink_tcon(cfile->tlink);
1066
0013fb4c
PS
1067 /*
1068 * Accessing maxBuf is racy with cifs_reconnect - need to store value
1069 * and check it for zero before using.
1070 */
1071 max_buf = tcon->ses->server->maxBuf;
1072 if (!max_buf) {
6d5786a3 1073 free_xid(xid);
0013fb4c
PS
1074 return -EINVAL;
1075 }
1076
1077 max_num = (max_buf - sizeof(struct smb_hdr)) /
1078 sizeof(LOCKING_ANDX_RANGE);
4b99d39b 1079 buf = kcalloc(max_num, sizeof(LOCKING_ANDX_RANGE), GFP_KERNEL);
32b9aaf1 1080 if (!buf) {
6d5786a3 1081 free_xid(xid);
e2f2886a 1082 return -ENOMEM;
32b9aaf1
PS
1083 }
1084
1085 for (i = 0; i < 2; i++) {
1086 cur = buf;
1087 num = 0;
f45d3416 1088 list_for_each_entry_safe(li, tmp, &cfile->llist->locks, llist) {
32b9aaf1
PS
1089 if (li->type != types[i])
1090 continue;
1091 cur->Pid = cpu_to_le16(li->pid);
1092 cur->LengthLow = cpu_to_le32((u32)li->length);
1093 cur->LengthHigh = cpu_to_le32((u32)(li->length>>32));
1094 cur->OffsetLow = cpu_to_le32((u32)li->offset);
1095 cur->OffsetHigh = cpu_to_le32((u32)(li->offset>>32));
1096 if (++num == max_num) {
4b4de76e
PS
1097 stored_rc = cifs_lockv(xid, tcon,
1098 cfile->fid.netfid,
04a6aa8a
PS
1099 (__u8)li->type, 0, num,
1100 buf);
32b9aaf1
PS
1101 if (stored_rc)
1102 rc = stored_rc;
1103 cur = buf;
1104 num = 0;
1105 } else
1106 cur++;
1107 }
1108
1109 if (num) {
4b4de76e 1110 stored_rc = cifs_lockv(xid, tcon, cfile->fid.netfid,
04a6aa8a 1111 (__u8)types[i], 0, num, buf);
32b9aaf1
PS
1112 if (stored_rc)
1113 rc = stored_rc;
1114 }
85160e03
PS
1115 }
1116
32b9aaf1 1117 kfree(buf);
6d5786a3 1118 free_xid(xid);
85160e03
PS
1119 return rc;
1120}
1121
3d22462a
JL
1122static __u32
1123hash_lockowner(fl_owner_t owner)
1124{
1125 return cifs_lock_secret ^ hash32_ptr((const void *)owner);
1126}
1127
d5751469
PS
1128struct lock_to_push {
1129 struct list_head llist;
1130 __u64 offset;
1131 __u64 length;
1132 __u32 pid;
1133 __u16 netfid;
1134 __u8 type;
1135};
1136
4f6bcec9 1137static int
b8db928b 1138cifs_push_posix_locks(struct cifsFileInfo *cfile)
4f6bcec9 1139{
2b0143b5 1140 struct inode *inode = d_inode(cfile->dentry);
4f6bcec9 1141 struct cifs_tcon *tcon = tlink_tcon(cfile->tlink);
bd61e0a9
JL
1142 struct file_lock *flock;
1143 struct file_lock_context *flctx = inode->i_flctx;
e084c1bd 1144 unsigned int count = 0, i;
4f6bcec9 1145 int rc = 0, xid, type;
d5751469
PS
1146 struct list_head locks_to_send, *el;
1147 struct lock_to_push *lck, *tmp;
4f6bcec9 1148 __u64 length;
4f6bcec9 1149
6d5786a3 1150 xid = get_xid();
4f6bcec9 1151
bd61e0a9
JL
1152 if (!flctx)
1153 goto out;
d5751469 1154
e084c1bd
JL
1155 spin_lock(&flctx->flc_lock);
1156 list_for_each(el, &flctx->flc_posix) {
1157 count++;
1158 }
1159 spin_unlock(&flctx->flc_lock);
1160
4f6bcec9
PS
1161 INIT_LIST_HEAD(&locks_to_send);
1162
d5751469 1163 /*
e084c1bd
JL
1164 * Allocating count locks is enough because no FL_POSIX locks can be
1165 * added to the list while we are holding cinode->lock_sem that
ce85852b 1166 * protects locking operations of this inode.
d5751469 1167 */
e084c1bd 1168 for (i = 0; i < count; i++) {
d5751469
PS
1169 lck = kmalloc(sizeof(struct lock_to_push), GFP_KERNEL);
1170 if (!lck) {
1171 rc = -ENOMEM;
1172 goto err_out;
1173 }
1174 list_add_tail(&lck->llist, &locks_to_send);
1175 }
1176
d5751469 1177 el = locks_to_send.next;
6109c850 1178 spin_lock(&flctx->flc_lock);
bd61e0a9 1179 list_for_each_entry(flock, &flctx->flc_posix, fl_list) {
d5751469 1180 if (el == &locks_to_send) {
ce85852b
PS
1181 /*
1182 * The list ended. We don't have enough allocated
1183 * structures - something is really wrong.
1184 */
f96637be 1185 cifs_dbg(VFS, "Can't push all brlocks!\n");
d5751469
PS
1186 break;
1187 }
4f6bcec9
PS
1188 length = 1 + flock->fl_end - flock->fl_start;
1189 if (flock->fl_type == F_RDLCK || flock->fl_type == F_SHLCK)
1190 type = CIFS_RDLCK;
1191 else
1192 type = CIFS_WRLCK;
d5751469 1193 lck = list_entry(el, struct lock_to_push, llist);
3d22462a 1194 lck->pid = hash_lockowner(flock->fl_owner);
4b4de76e 1195 lck->netfid = cfile->fid.netfid;
d5751469
PS
1196 lck->length = length;
1197 lck->type = type;
1198 lck->offset = flock->fl_start;
4f6bcec9 1199 }
6109c850 1200 spin_unlock(&flctx->flc_lock);
4f6bcec9
PS
1201
1202 list_for_each_entry_safe(lck, tmp, &locks_to_send, llist) {
4f6bcec9
PS
1203 int stored_rc;
1204
4f6bcec9 1205 stored_rc = CIFSSMBPosixLock(xid, tcon, lck->netfid, lck->pid,
c5fd363d 1206 lck->offset, lck->length, NULL,
4f6bcec9
PS
1207 lck->type, 0);
1208 if (stored_rc)
1209 rc = stored_rc;
1210 list_del(&lck->llist);
1211 kfree(lck);
1212 }
1213
d5751469 1214out:
6d5786a3 1215 free_xid(xid);
4f6bcec9 1216 return rc;
d5751469
PS
1217err_out:
1218 list_for_each_entry_safe(lck, tmp, &locks_to_send, llist) {
1219 list_del(&lck->llist);
1220 kfree(lck);
1221 }
1222 goto out;
4f6bcec9
PS
1223}
1224
9ec3c882 1225static int
b8db928b 1226cifs_push_locks(struct cifsFileInfo *cfile)
9ec3c882 1227{
b8db928b 1228 struct cifs_sb_info *cifs_sb = CIFS_SB(cfile->dentry->d_sb);
2b0143b5 1229 struct cifsInodeInfo *cinode = CIFS_I(d_inode(cfile->dentry));
b8db928b 1230 struct cifs_tcon *tcon = tlink_tcon(cfile->tlink);
9ec3c882
PS
1231 int rc = 0;
1232
1233 /* we are going to update can_cache_brlcks here - need a write access */
1234 down_write(&cinode->lock_sem);
1235 if (!cinode->can_cache_brlcks) {
1236 up_write(&cinode->lock_sem);
1237 return rc;
1238 }
4f6bcec9 1239
29e20f9c 1240 if (cap_unix(tcon->ses) &&
4f6bcec9
PS
1241 (CIFS_UNIX_FCNTL_CAP & le64_to_cpu(tcon->fsUnixInfo.Capability)) &&
1242 ((cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NOPOSIXBRL) == 0))
b8db928b
PS
1243 rc = cifs_push_posix_locks(cfile);
1244 else
1245 rc = tcon->ses->server->ops->push_mand_locks(cfile);
4f6bcec9 1246
b8db928b
PS
1247 cinode->can_cache_brlcks = false;
1248 up_write(&cinode->lock_sem);
1249 return rc;
4f6bcec9
PS
1250}
1251
03776f45 1252static void
04a6aa8a 1253cifs_read_flock(struct file_lock *flock, __u32 *type, int *lock, int *unlock,
106dc538 1254 bool *wait_flag, struct TCP_Server_Info *server)
1da177e4 1255{
03776f45 1256 if (flock->fl_flags & FL_POSIX)
f96637be 1257 cifs_dbg(FYI, "Posix\n");
03776f45 1258 if (flock->fl_flags & FL_FLOCK)
f96637be 1259 cifs_dbg(FYI, "Flock\n");
03776f45 1260 if (flock->fl_flags & FL_SLEEP) {
f96637be 1261 cifs_dbg(FYI, "Blocking lock\n");
03776f45 1262 *wait_flag = true;
1da177e4 1263 }
03776f45 1264 if (flock->fl_flags & FL_ACCESS)
f96637be 1265 cifs_dbg(FYI, "Process suspended by mandatory locking - not implemented yet\n");
03776f45 1266 if (flock->fl_flags & FL_LEASE)
f96637be 1267 cifs_dbg(FYI, "Lease on file - not implemented yet\n");
03776f45 1268 if (flock->fl_flags &
3d6d854a
JL
1269 (~(FL_POSIX | FL_FLOCK | FL_SLEEP |
1270 FL_ACCESS | FL_LEASE | FL_CLOSE)))
f96637be 1271 cifs_dbg(FYI, "Unknown lock flags 0x%x\n", flock->fl_flags);
1da177e4 1272
106dc538 1273 *type = server->vals->large_lock_type;
03776f45 1274 if (flock->fl_type == F_WRLCK) {
f96637be 1275 cifs_dbg(FYI, "F_WRLCK\n");
106dc538 1276 *type |= server->vals->exclusive_lock_type;
03776f45
PS
1277 *lock = 1;
1278 } else if (flock->fl_type == F_UNLCK) {
f96637be 1279 cifs_dbg(FYI, "F_UNLCK\n");
106dc538 1280 *type |= server->vals->unlock_lock_type;
03776f45
PS
1281 *unlock = 1;
1282 /* Check if unlock includes more than one lock range */
1283 } else if (flock->fl_type == F_RDLCK) {
f96637be 1284 cifs_dbg(FYI, "F_RDLCK\n");
106dc538 1285 *type |= server->vals->shared_lock_type;
03776f45
PS
1286 *lock = 1;
1287 } else if (flock->fl_type == F_EXLCK) {
f96637be 1288 cifs_dbg(FYI, "F_EXLCK\n");
106dc538 1289 *type |= server->vals->exclusive_lock_type;
03776f45
PS
1290 *lock = 1;
1291 } else if (flock->fl_type == F_SHLCK) {
f96637be 1292 cifs_dbg(FYI, "F_SHLCK\n");
106dc538 1293 *type |= server->vals->shared_lock_type;
03776f45 1294 *lock = 1;
1da177e4 1295 } else
f96637be 1296 cifs_dbg(FYI, "Unknown type of lock\n");
03776f45 1297}
1da177e4 1298
03776f45 1299static int
04a6aa8a 1300cifs_getlk(struct file *file, struct file_lock *flock, __u32 type,
6d5786a3 1301 bool wait_flag, bool posix_lck, unsigned int xid)
03776f45
PS
1302{
1303 int rc = 0;
1304 __u64 length = 1 + flock->fl_end - flock->fl_start;
4f6bcec9
PS
1305 struct cifsFileInfo *cfile = (struct cifsFileInfo *)file->private_data;
1306 struct cifs_tcon *tcon = tlink_tcon(cfile->tlink);
106dc538 1307 struct TCP_Server_Info *server = tcon->ses->server;
4b4de76e 1308 __u16 netfid = cfile->fid.netfid;
f05337c6 1309
03776f45
PS
1310 if (posix_lck) {
1311 int posix_lock_type;
4f6bcec9
PS
1312
1313 rc = cifs_posix_lock_test(file, flock);
1314 if (!rc)
1315 return rc;
1316
106dc538 1317 if (type & server->vals->shared_lock_type)
03776f45
PS
1318 posix_lock_type = CIFS_RDLCK;
1319 else
1320 posix_lock_type = CIFS_WRLCK;
3d22462a
JL
1321 rc = CIFSSMBPosixLock(xid, tcon, netfid,
1322 hash_lockowner(flock->fl_owner),
c5fd363d 1323 flock->fl_start, length, flock,
4f6bcec9 1324 posix_lock_type, wait_flag);
03776f45
PS
1325 return rc;
1326 }
1da177e4 1327
fbd35aca 1328 rc = cifs_lock_test(cfile, flock->fl_start, length, type, flock);
85160e03
PS
1329 if (!rc)
1330 return rc;
1331
03776f45 1332 /* BB we could chain these into one lock request BB */
d39a4f71
PS
1333 rc = server->ops->mand_lock(xid, cfile, flock->fl_start, length, type,
1334 1, 0, false);
03776f45 1335 if (rc == 0) {
d39a4f71
PS
1336 rc = server->ops->mand_lock(xid, cfile, flock->fl_start, length,
1337 type, 0, 1, false);
03776f45
PS
1338 flock->fl_type = F_UNLCK;
1339 if (rc != 0)
f96637be
JP
1340 cifs_dbg(VFS, "Error unlocking previously locked range %d during test of lock\n",
1341 rc);
a88b4707 1342 return 0;
1da177e4 1343 }
7ee1af76 1344
106dc538 1345 if (type & server->vals->shared_lock_type) {
03776f45 1346 flock->fl_type = F_WRLCK;
a88b4707 1347 return 0;
7ee1af76
JA
1348 }
1349
d39a4f71
PS
1350 type &= ~server->vals->exclusive_lock_type;
1351
1352 rc = server->ops->mand_lock(xid, cfile, flock->fl_start, length,
1353 type | server->vals->shared_lock_type,
1354 1, 0, false);
03776f45 1355 if (rc == 0) {
d39a4f71
PS
1356 rc = server->ops->mand_lock(xid, cfile, flock->fl_start, length,
1357 type | server->vals->shared_lock_type, 0, 1, false);
03776f45
PS
1358 flock->fl_type = F_RDLCK;
1359 if (rc != 0)
f96637be
JP
1360 cifs_dbg(VFS, "Error unlocking previously locked range %d during test of lock\n",
1361 rc);
03776f45
PS
1362 } else
1363 flock->fl_type = F_WRLCK;
1364
a88b4707 1365 return 0;
03776f45
PS
1366}
1367
f7ba7fe6 1368void
9ee305b7
PS
1369cifs_move_llist(struct list_head *source, struct list_head *dest)
1370{
1371 struct list_head *li, *tmp;
1372 list_for_each_safe(li, tmp, source)
1373 list_move(li, dest);
1374}
1375
f7ba7fe6 1376void
9ee305b7
PS
1377cifs_free_llist(struct list_head *llist)
1378{
1379 struct cifsLockInfo *li, *tmp;
1380 list_for_each_entry_safe(li, tmp, llist, llist) {
1381 cifs_del_lock_waiters(li);
1382 list_del(&li->llist);
1383 kfree(li);
1384 }
1385}
1386
d39a4f71 1387int
6d5786a3
PS
1388cifs_unlock_range(struct cifsFileInfo *cfile, struct file_lock *flock,
1389 unsigned int xid)
9ee305b7
PS
1390{
1391 int rc = 0, stored_rc;
1392 int types[] = {LOCKING_ANDX_LARGE_FILES,
1393 LOCKING_ANDX_SHARED_LOCK | LOCKING_ANDX_LARGE_FILES};
1394 unsigned int i;
0013fb4c 1395 unsigned int max_num, num, max_buf;
9ee305b7
PS
1396 LOCKING_ANDX_RANGE *buf, *cur;
1397 struct cifs_tcon *tcon = tlink_tcon(cfile->tlink);
2b0143b5 1398 struct cifsInodeInfo *cinode = CIFS_I(d_inode(cfile->dentry));
9ee305b7
PS
1399 struct cifsLockInfo *li, *tmp;
1400 __u64 length = 1 + flock->fl_end - flock->fl_start;
1401 struct list_head tmp_llist;
1402
1403 INIT_LIST_HEAD(&tmp_llist);
1404
0013fb4c
PS
1405 /*
1406 * Accessing maxBuf is racy with cifs_reconnect - need to store value
1407 * and check it for zero before using.
1408 */
1409 max_buf = tcon->ses->server->maxBuf;
1410 if (!max_buf)
1411 return -EINVAL;
1412
1413 max_num = (max_buf - sizeof(struct smb_hdr)) /
1414 sizeof(LOCKING_ANDX_RANGE);
4b99d39b 1415 buf = kcalloc(max_num, sizeof(LOCKING_ANDX_RANGE), GFP_KERNEL);
9ee305b7
PS
1416 if (!buf)
1417 return -ENOMEM;
1418
1b4b55a1 1419 down_write(&cinode->lock_sem);
9ee305b7
PS
1420 for (i = 0; i < 2; i++) {
1421 cur = buf;
1422 num = 0;
f45d3416 1423 list_for_each_entry_safe(li, tmp, &cfile->llist->locks, llist) {
9ee305b7
PS
1424 if (flock->fl_start > li->offset ||
1425 (flock->fl_start + length) <
1426 (li->offset + li->length))
1427 continue;
1428 if (current->tgid != li->pid)
1429 continue;
9ee305b7
PS
1430 if (types[i] != li->type)
1431 continue;
ea319d57 1432 if (cinode->can_cache_brlcks) {
9ee305b7
PS
1433 /*
1434 * We can cache brlock requests - simply remove
fbd35aca 1435 * a lock from the file's list.
9ee305b7
PS
1436 */
1437 list_del(&li->llist);
1438 cifs_del_lock_waiters(li);
1439 kfree(li);
ea319d57 1440 continue;
9ee305b7 1441 }
ea319d57
PS
1442 cur->Pid = cpu_to_le16(li->pid);
1443 cur->LengthLow = cpu_to_le32((u32)li->length);
1444 cur->LengthHigh = cpu_to_le32((u32)(li->length>>32));
1445 cur->OffsetLow = cpu_to_le32((u32)li->offset);
1446 cur->OffsetHigh = cpu_to_le32((u32)(li->offset>>32));
1447 /*
1448 * We need to save a lock here to let us add it again to
1449 * the file's list if the unlock range request fails on
1450 * the server.
1451 */
1452 list_move(&li->llist, &tmp_llist);
1453 if (++num == max_num) {
4b4de76e
PS
1454 stored_rc = cifs_lockv(xid, tcon,
1455 cfile->fid.netfid,
ea319d57
PS
1456 li->type, num, 0, buf);
1457 if (stored_rc) {
1458 /*
1459 * We failed on the unlock range
1460 * request - add all locks from the tmp
1461 * list to the head of the file's list.
1462 */
1463 cifs_move_llist(&tmp_llist,
f45d3416 1464 &cfile->llist->locks);
ea319d57
PS
1465 rc = stored_rc;
1466 } else
1467 /*
1468 * The unlock range request succeed -
1469 * free the tmp list.
1470 */
1471 cifs_free_llist(&tmp_llist);
1472 cur = buf;
1473 num = 0;
1474 } else
1475 cur++;
9ee305b7
PS
1476 }
1477 if (num) {
4b4de76e 1478 stored_rc = cifs_lockv(xid, tcon, cfile->fid.netfid,
9ee305b7
PS
1479 types[i], num, 0, buf);
1480 if (stored_rc) {
f45d3416
PS
1481 cifs_move_llist(&tmp_llist,
1482 &cfile->llist->locks);
9ee305b7
PS
1483 rc = stored_rc;
1484 } else
1485 cifs_free_llist(&tmp_llist);
1486 }
1487 }
1488
1b4b55a1 1489 up_write(&cinode->lock_sem);
9ee305b7
PS
1490 kfree(buf);
1491 return rc;
1492}
1493
03776f45 1494static int
f45d3416 1495cifs_setlk(struct file *file, struct file_lock *flock, __u32 type,
6d5786a3
PS
1496 bool wait_flag, bool posix_lck, int lock, int unlock,
1497 unsigned int xid)
03776f45
PS
1498{
1499 int rc = 0;
1500 __u64 length = 1 + flock->fl_end - flock->fl_start;
1501 struct cifsFileInfo *cfile = (struct cifsFileInfo *)file->private_data;
1502 struct cifs_tcon *tcon = tlink_tcon(cfile->tlink);
106dc538 1503 struct TCP_Server_Info *server = tcon->ses->server;
2b0143b5 1504 struct inode *inode = d_inode(cfile->dentry);
03776f45
PS
1505
1506 if (posix_lck) {
08547b03 1507 int posix_lock_type;
4f6bcec9
PS
1508
1509 rc = cifs_posix_lock_set(file, flock);
1510 if (!rc || rc < 0)
1511 return rc;
1512
106dc538 1513 if (type & server->vals->shared_lock_type)
08547b03
SF
1514 posix_lock_type = CIFS_RDLCK;
1515 else
1516 posix_lock_type = CIFS_WRLCK;
50c2f753 1517
03776f45 1518 if (unlock == 1)
beb84dc8 1519 posix_lock_type = CIFS_UNLCK;
7ee1af76 1520
f45d3416 1521 rc = CIFSSMBPosixLock(xid, tcon, cfile->fid.netfid,
3d22462a
JL
1522 hash_lockowner(flock->fl_owner),
1523 flock->fl_start, length,
f45d3416 1524 NULL, posix_lock_type, wait_flag);
03776f45
PS
1525 goto out;
1526 }
7ee1af76 1527
03776f45 1528 if (lock) {
161ebf9f
PS
1529 struct cifsLockInfo *lock;
1530
fbd35aca 1531 lock = cifs_lock_init(flock->fl_start, length, type);
161ebf9f
PS
1532 if (!lock)
1533 return -ENOMEM;
1534
fbd35aca 1535 rc = cifs_lock_add_if(cfile, lock, wait_flag);
21cb2d90 1536 if (rc < 0) {
161ebf9f 1537 kfree(lock);
21cb2d90
PS
1538 return rc;
1539 }
1540 if (!rc)
85160e03
PS
1541 goto out;
1542
63b7d3a4
PS
1543 /*
1544 * Windows 7 server can delay breaking lease from read to None
1545 * if we set a byte-range lock on a file - break it explicitly
1546 * before sending the lock to the server to be sure the next
1547 * read won't conflict with non-overlapted locks due to
1548 * pagereading.
1549 */
18cceb6a
PS
1550 if (!CIFS_CACHE_WRITE(CIFS_I(inode)) &&
1551 CIFS_CACHE_READ(CIFS_I(inode))) {
4f73c7d3 1552 cifs_zap_mapping(inode);
f96637be
JP
1553 cifs_dbg(FYI, "Set no oplock for inode=%p due to mand locks\n",
1554 inode);
18cceb6a 1555 CIFS_I(inode)->oplock = 0;
63b7d3a4
PS
1556 }
1557
d39a4f71
PS
1558 rc = server->ops->mand_lock(xid, cfile, flock->fl_start, length,
1559 type, 1, 0, wait_flag);
161ebf9f
PS
1560 if (rc) {
1561 kfree(lock);
21cb2d90 1562 return rc;
03776f45 1563 }
161ebf9f 1564
fbd35aca 1565 cifs_lock_add(cfile, lock);
9ee305b7 1566 } else if (unlock)
d39a4f71 1567 rc = server->ops->mand_unlock_range(cfile, flock, xid);
03776f45 1568
03776f45 1569out:
00b8c95b 1570 if (flock->fl_flags & FL_POSIX && !rc)
4f656367 1571 rc = locks_lock_file_wait(file, flock);
03776f45
PS
1572 return rc;
1573}
1574
1575int cifs_lock(struct file *file, int cmd, struct file_lock *flock)
1576{
1577 int rc, xid;
1578 int lock = 0, unlock = 0;
1579 bool wait_flag = false;
1580 bool posix_lck = false;
1581 struct cifs_sb_info *cifs_sb;
1582 struct cifs_tcon *tcon;
1583 struct cifsInodeInfo *cinode;
1584 struct cifsFileInfo *cfile;
1585 __u16 netfid;
04a6aa8a 1586 __u32 type;
03776f45
PS
1587
1588 rc = -EACCES;
6d5786a3 1589 xid = get_xid();
03776f45 1590
f96637be
JP
1591 cifs_dbg(FYI, "Lock parm: 0x%x flockflags: 0x%x flocktype: 0x%x start: %lld end: %lld\n",
1592 cmd, flock->fl_flags, flock->fl_type,
1593 flock->fl_start, flock->fl_end);
03776f45 1594
03776f45
PS
1595 cfile = (struct cifsFileInfo *)file->private_data;
1596 tcon = tlink_tcon(cfile->tlink);
106dc538
PS
1597
1598 cifs_read_flock(flock, &type, &lock, &unlock, &wait_flag,
1599 tcon->ses->server);
1600
7119e220 1601 cifs_sb = CIFS_FILE_SB(file);
4b4de76e 1602 netfid = cfile->fid.netfid;
496ad9aa 1603 cinode = CIFS_I(file_inode(file));
03776f45 1604
29e20f9c 1605 if (cap_unix(tcon->ses) &&
03776f45
PS
1606 (CIFS_UNIX_FCNTL_CAP & le64_to_cpu(tcon->fsUnixInfo.Capability)) &&
1607 ((cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NOPOSIXBRL) == 0))
1608 posix_lck = true;
1609 /*
1610 * BB add code here to normalize offset and length to account for
1611 * negative length which we can not accept over the wire.
1612 */
1613 if (IS_GETLK(cmd)) {
4f6bcec9 1614 rc = cifs_getlk(file, flock, type, wait_flag, posix_lck, xid);
6d5786a3 1615 free_xid(xid);
03776f45
PS
1616 return rc;
1617 }
1618
1619 if (!lock && !unlock) {
1620 /*
1621 * if no lock or unlock then nothing to do since we do not
1622 * know what it is
1623 */
6d5786a3 1624 free_xid(xid);
03776f45 1625 return -EOPNOTSUPP;
7ee1af76
JA
1626 }
1627
03776f45
PS
1628 rc = cifs_setlk(file, flock, type, wait_flag, posix_lck, lock, unlock,
1629 xid);
6d5786a3 1630 free_xid(xid);
1da177e4
LT
1631 return rc;
1632}
1633
597b027f
JL
1634/*
1635 * update the file size (if needed) after a write. Should be called with
1636 * the inode->i_lock held
1637 */
72432ffc 1638void
fbec9ab9
JL
1639cifs_update_eof(struct cifsInodeInfo *cifsi, loff_t offset,
1640 unsigned int bytes_written)
1641{
1642 loff_t end_of_write = offset + bytes_written;
1643
1644 if (end_of_write > cifsi->server_eof)
1645 cifsi->server_eof = end_of_write;
1646}
1647
ba9ad725
PS
1648static ssize_t
1649cifs_write(struct cifsFileInfo *open_file, __u32 pid, const char *write_data,
1650 size_t write_size, loff_t *offset)
1da177e4
LT
1651{
1652 int rc = 0;
1653 unsigned int bytes_written = 0;
1654 unsigned int total_written;
1655 struct cifs_sb_info *cifs_sb;
ba9ad725
PS
1656 struct cifs_tcon *tcon;
1657 struct TCP_Server_Info *server;
6d5786a3 1658 unsigned int xid;
7da4b49a 1659 struct dentry *dentry = open_file->dentry;
2b0143b5 1660 struct cifsInodeInfo *cifsi = CIFS_I(d_inode(dentry));
fa2989f4 1661 struct cifs_io_parms io_parms;
1da177e4 1662
7da4b49a 1663 cifs_sb = CIFS_SB(dentry->d_sb);
1da177e4 1664
35c265e0
AV
1665 cifs_dbg(FYI, "write %zd bytes to offset %lld of %pd\n",
1666 write_size, *offset, dentry);
1da177e4 1667
ba9ad725
PS
1668 tcon = tlink_tcon(open_file->tlink);
1669 server = tcon->ses->server;
1670
1671 if (!server->ops->sync_write)
1672 return -ENOSYS;
50c2f753 1673
6d5786a3 1674 xid = get_xid();
1da177e4 1675
1da177e4
LT
1676 for (total_written = 0; write_size > total_written;
1677 total_written += bytes_written) {
1678 rc = -EAGAIN;
1679 while (rc == -EAGAIN) {
ca83ce3d
JL
1680 struct kvec iov[2];
1681 unsigned int len;
1682
1da177e4 1683 if (open_file->invalidHandle) {
1da177e4
LT
1684 /* we could deadlock if we called
1685 filemap_fdatawait from here so tell
fb8c4b14 1686 reopen_file not to flush data to
1da177e4 1687 server now */
15886177 1688 rc = cifs_reopen_file(open_file, false);
1da177e4
LT
1689 if (rc != 0)
1690 break;
1691 }
ca83ce3d 1692
2b0143b5 1693 len = min(server->ops->wp_retry_size(d_inode(dentry)),
cb7e9eab 1694 (unsigned int)write_size - total_written);
ca83ce3d
JL
1695 /* iov[0] is reserved for smb header */
1696 iov[1].iov_base = (char *)write_data + total_written;
1697 iov[1].iov_len = len;
fa2989f4 1698 io_parms.pid = pid;
ba9ad725
PS
1699 io_parms.tcon = tcon;
1700 io_parms.offset = *offset;
fa2989f4 1701 io_parms.length = len;
db8b631d
SF
1702 rc = server->ops->sync_write(xid, &open_file->fid,
1703 &io_parms, &bytes_written, iov, 1);
1da177e4
LT
1704 }
1705 if (rc || (bytes_written == 0)) {
1706 if (total_written)
1707 break;
1708 else {
6d5786a3 1709 free_xid(xid);
1da177e4
LT
1710 return rc;
1711 }
fbec9ab9 1712 } else {
2b0143b5 1713 spin_lock(&d_inode(dentry)->i_lock);
ba9ad725 1714 cifs_update_eof(cifsi, *offset, bytes_written);
2b0143b5 1715 spin_unlock(&d_inode(dentry)->i_lock);
ba9ad725 1716 *offset += bytes_written;
fbec9ab9 1717 }
1da177e4
LT
1718 }
1719
ba9ad725 1720 cifs_stats_bytes_written(tcon, total_written);
1da177e4 1721
7da4b49a 1722 if (total_written > 0) {
2b0143b5
DH
1723 spin_lock(&d_inode(dentry)->i_lock);
1724 if (*offset > d_inode(dentry)->i_size)
1725 i_size_write(d_inode(dentry), *offset);
1726 spin_unlock(&d_inode(dentry)->i_lock);
1da177e4 1727 }
2b0143b5 1728 mark_inode_dirty_sync(d_inode(dentry));
6d5786a3 1729 free_xid(xid);
1da177e4
LT
1730 return total_written;
1731}
1732
6508d904
JL
1733struct cifsFileInfo *find_readable_file(struct cifsInodeInfo *cifs_inode,
1734 bool fsuid_only)
630f3f0c
SF
1735{
1736 struct cifsFileInfo *open_file = NULL;
6508d904 1737 struct cifs_sb_info *cifs_sb = CIFS_SB(cifs_inode->vfs_inode.i_sb);
3afca265 1738 struct cifs_tcon *tcon = cifs_sb_master_tcon(cifs_sb);
6508d904
JL
1739
1740 /* only filter by fsuid on multiuser mounts */
1741 if (!(cifs_sb->mnt_cifs_flags & CIFS_MOUNT_MULTIUSER))
1742 fsuid_only = false;
630f3f0c 1743
3afca265 1744 spin_lock(&tcon->open_file_lock);
630f3f0c
SF
1745 /* we could simply get the first_list_entry since write-only entries
1746 are always at the end of the list but since the first entry might
1747 have a close pending, we go through the whole list */
1748 list_for_each_entry(open_file, &cifs_inode->openFileList, flist) {
fef59fd7 1749 if (fsuid_only && !uid_eq(open_file->uid, current_fsuid()))
6508d904 1750 continue;
2e396b83 1751 if (OPEN_FMODE(open_file->f_flags) & FMODE_READ) {
630f3f0c
SF
1752 if (!open_file->invalidHandle) {
1753 /* found a good file */
1754 /* lock it so it will not be closed on us */
3afca265
SF
1755 cifsFileInfo_get(open_file);
1756 spin_unlock(&tcon->open_file_lock);
630f3f0c
SF
1757 return open_file;
1758 } /* else might as well continue, and look for
1759 another, or simply have the caller reopen it
1760 again rather than trying to fix this handle */
1761 } else /* write only file */
1762 break; /* write only files are last so must be done */
1763 }
3afca265 1764 spin_unlock(&tcon->open_file_lock);
630f3f0c
SF
1765 return NULL;
1766}
630f3f0c 1767
6508d904
JL
1768struct cifsFileInfo *find_writable_file(struct cifsInodeInfo *cifs_inode,
1769 bool fsuid_only)
6148a742 1770{
2c0c2a08 1771 struct cifsFileInfo *open_file, *inv_file = NULL;
d3892294 1772 struct cifs_sb_info *cifs_sb;
3afca265 1773 struct cifs_tcon *tcon;
2846d386 1774 bool any_available = false;
dd99cd80 1775 int rc;
2c0c2a08 1776 unsigned int refind = 0;
6148a742 1777
60808233
SF
1778 /* Having a null inode here (because mapping->host was set to zero by
1779 the VFS or MM) should not happen but we had reports of on oops (due to
1780 it being zero) during stress testcases so we need to check for it */
1781
fb8c4b14 1782 if (cifs_inode == NULL) {
f96637be 1783 cifs_dbg(VFS, "Null inode passed to cifs_writeable_file\n");
60808233
SF
1784 dump_stack();
1785 return NULL;
1786 }
1787
d3892294 1788 cifs_sb = CIFS_SB(cifs_inode->vfs_inode.i_sb);
3afca265 1789 tcon = cifs_sb_master_tcon(cifs_sb);
d3892294 1790
6508d904
JL
1791 /* only filter by fsuid on multiuser mounts */
1792 if (!(cifs_sb->mnt_cifs_flags & CIFS_MOUNT_MULTIUSER))
1793 fsuid_only = false;
1794
3afca265 1795 spin_lock(&tcon->open_file_lock);
9b22b0b7 1796refind_writable:
2c0c2a08 1797 if (refind > MAX_REOPEN_ATT) {
3afca265 1798 spin_unlock(&tcon->open_file_lock);
2c0c2a08
SP
1799 return NULL;
1800 }
6148a742 1801 list_for_each_entry(open_file, &cifs_inode->openFileList, flist) {
6508d904
JL
1802 if (!any_available && open_file->pid != current->tgid)
1803 continue;
fef59fd7 1804 if (fsuid_only && !uid_eq(open_file->uid, current_fsuid()))
6148a742 1805 continue;
2e396b83 1806 if (OPEN_FMODE(open_file->f_flags) & FMODE_WRITE) {
9b22b0b7
SF
1807 if (!open_file->invalidHandle) {
1808 /* found a good writable file */
3afca265
SF
1809 cifsFileInfo_get(open_file);
1810 spin_unlock(&tcon->open_file_lock);
9b22b0b7 1811 return open_file;
2c0c2a08
SP
1812 } else {
1813 if (!inv_file)
1814 inv_file = open_file;
9b22b0b7 1815 }
6148a742
SF
1816 }
1817 }
2846d386
JL
1818 /* couldn't find useable FH with same pid, try any available */
1819 if (!any_available) {
1820 any_available = true;
1821 goto refind_writable;
1822 }
2c0c2a08
SP
1823
1824 if (inv_file) {
1825 any_available = false;
3afca265 1826 cifsFileInfo_get(inv_file);
2c0c2a08
SP
1827 }
1828
3afca265 1829 spin_unlock(&tcon->open_file_lock);
2c0c2a08
SP
1830
1831 if (inv_file) {
1832 rc = cifs_reopen_file(inv_file, false);
1833 if (!rc)
1834 return inv_file;
1835 else {
3afca265 1836 spin_lock(&tcon->open_file_lock);
2c0c2a08
SP
1837 list_move_tail(&inv_file->flist,
1838 &cifs_inode->openFileList);
3afca265 1839 spin_unlock(&tcon->open_file_lock);
2c0c2a08 1840 cifsFileInfo_put(inv_file);
2c0c2a08 1841 ++refind;
e1e9bda2 1842 inv_file = NULL;
3afca265 1843 spin_lock(&tcon->open_file_lock);
2c0c2a08
SP
1844 goto refind_writable;
1845 }
1846 }
1847
6148a742
SF
1848 return NULL;
1849}
1850
1da177e4
LT
1851static int cifs_partialpagewrite(struct page *page, unsigned from, unsigned to)
1852{
1853 struct address_space *mapping = page->mapping;
09cbfeaf 1854 loff_t offset = (loff_t)page->index << PAGE_SHIFT;
1da177e4
LT
1855 char *write_data;
1856 int rc = -EFAULT;
1857 int bytes_written = 0;
1da177e4 1858 struct inode *inode;
6148a742 1859 struct cifsFileInfo *open_file;
1da177e4
LT
1860
1861 if (!mapping || !mapping->host)
1862 return -EFAULT;
1863
1864 inode = page->mapping->host;
1da177e4
LT
1865
1866 offset += (loff_t)from;
1867 write_data = kmap(page);
1868 write_data += from;
1869
09cbfeaf 1870 if ((to > PAGE_SIZE) || (from > to)) {
1da177e4
LT
1871 kunmap(page);
1872 return -EIO;
1873 }
1874
1875 /* racing with truncate? */
1876 if (offset > mapping->host->i_size) {
1877 kunmap(page);
1878 return 0; /* don't care */
1879 }
1880
1881 /* check to make sure that we are not extending the file */
1882 if (mapping->host->i_size - offset < (loff_t)to)
fb8c4b14 1883 to = (unsigned)(mapping->host->i_size - offset);
1da177e4 1884
6508d904 1885 open_file = find_writable_file(CIFS_I(mapping->host), false);
6148a742 1886 if (open_file) {
fa2989f4
PS
1887 bytes_written = cifs_write(open_file, open_file->pid,
1888 write_data, to - from, &offset);
6ab409b5 1889 cifsFileInfo_put(open_file);
1da177e4 1890 /* Does mm or vfs already set times? */
c2050a45 1891 inode->i_atime = inode->i_mtime = current_time(inode);
bb5a9a04 1892 if ((bytes_written > 0) && (offset))
6148a742 1893 rc = 0;
bb5a9a04
SF
1894 else if (bytes_written < 0)
1895 rc = bytes_written;
6148a742 1896 } else {
f96637be 1897 cifs_dbg(FYI, "No writeable filehandles for inode\n");
1da177e4
LT
1898 rc = -EIO;
1899 }
1900
1901 kunmap(page);
1902 return rc;
1903}
1904
90ac1387
PS
1905static struct cifs_writedata *
1906wdata_alloc_and_fillpages(pgoff_t tofind, struct address_space *mapping,
1907 pgoff_t end, pgoff_t *index,
1908 unsigned int *found_pages)
1909{
1910 unsigned int nr_pages;
1911 struct page **pages;
1912 struct cifs_writedata *wdata;
1913
1914 wdata = cifs_writedata_alloc((unsigned int)tofind,
1915 cifs_writev_complete);
1916 if (!wdata)
1917 return NULL;
1918
1919 /*
1920 * find_get_pages_tag seems to return a max of 256 on each
1921 * iteration, so we must call it several times in order to
1922 * fill the array or the wsize is effectively limited to
ea1754a0 1923 * 256 * PAGE_SIZE.
90ac1387
PS
1924 */
1925 *found_pages = 0;
1926 pages = wdata->pages;
1927 do {
1928 nr_pages = find_get_pages_tag(mapping, index,
1929 PAGECACHE_TAG_DIRTY, tofind,
1930 pages);
1931 *found_pages += nr_pages;
1932 tofind -= nr_pages;
1933 pages += nr_pages;
1934 } while (nr_pages && tofind && *index <= end);
1935
1936 return wdata;
1937}
1938
7e48ff82
PS
1939static unsigned int
1940wdata_prepare_pages(struct cifs_writedata *wdata, unsigned int found_pages,
1941 struct address_space *mapping,
1942 struct writeback_control *wbc,
1943 pgoff_t end, pgoff_t *index, pgoff_t *next, bool *done)
1944{
1945 unsigned int nr_pages = 0, i;
1946 struct page *page;
1947
1948 for (i = 0; i < found_pages; i++) {
1949 page = wdata->pages[i];
1950 /*
1951 * At this point we hold neither mapping->tree_lock nor
1952 * lock on the page itself: the page may be truncated or
1953 * invalidated (changing page->mapping to NULL), or even
1954 * swizzled back from swapper_space to tmpfs file
1955 * mapping
1956 */
1957
1958 if (nr_pages == 0)
1959 lock_page(page);
1960 else if (!trylock_page(page))
1961 break;
1962
1963 if (unlikely(page->mapping != mapping)) {
1964 unlock_page(page);
1965 break;
1966 }
1967
1968 if (!wbc->range_cyclic && page->index > end) {
1969 *done = true;
1970 unlock_page(page);
1971 break;
1972 }
1973
1974 if (*next && (page->index != *next)) {
1975 /* Not next consecutive page */
1976 unlock_page(page);
1977 break;
1978 }
1979
1980 if (wbc->sync_mode != WB_SYNC_NONE)
1981 wait_on_page_writeback(page);
1982
1983 if (PageWriteback(page) ||
1984 !clear_page_dirty_for_io(page)) {
1985 unlock_page(page);
1986 break;
1987 }
1988
1989 /*
1990 * This actually clears the dirty bit in the radix tree.
1991 * See cifs_writepage() for more commentary.
1992 */
1993 set_page_writeback(page);
1994 if (page_offset(page) >= i_size_read(mapping->host)) {
1995 *done = true;
1996 unlock_page(page);
1997 end_page_writeback(page);
1998 break;
1999 }
2000
2001 wdata->pages[i] = page;
2002 *next = page->index + 1;
2003 ++nr_pages;
2004 }
2005
2006 /* reset index to refind any pages skipped */
2007 if (nr_pages == 0)
2008 *index = wdata->pages[0]->index + 1;
2009
2010 /* put any pages we aren't going to use */
2011 for (i = nr_pages; i < found_pages; i++) {
09cbfeaf 2012 put_page(wdata->pages[i]);
7e48ff82
PS
2013 wdata->pages[i] = NULL;
2014 }
2015
2016 return nr_pages;
2017}
2018
619aa48e
PS
2019static int
2020wdata_send_pages(struct cifs_writedata *wdata, unsigned int nr_pages,
2021 struct address_space *mapping, struct writeback_control *wbc)
2022{
2023 int rc = 0;
2024 struct TCP_Server_Info *server;
2025 unsigned int i;
2026
2027 wdata->sync_mode = wbc->sync_mode;
2028 wdata->nr_pages = nr_pages;
2029 wdata->offset = page_offset(wdata->pages[0]);
09cbfeaf 2030 wdata->pagesz = PAGE_SIZE;
619aa48e
PS
2031 wdata->tailsz = min(i_size_read(mapping->host) -
2032 page_offset(wdata->pages[nr_pages - 1]),
09cbfeaf
KS
2033 (loff_t)PAGE_SIZE);
2034 wdata->bytes = ((nr_pages - 1) * PAGE_SIZE) + wdata->tailsz;
619aa48e 2035
66231a47
PS
2036 if (wdata->cfile != NULL)
2037 cifsFileInfo_put(wdata->cfile);
2038 wdata->cfile = find_writable_file(CIFS_I(mapping->host), false);
2039 if (!wdata->cfile) {
2040 cifs_dbg(VFS, "No writable handles for inode\n");
2041 rc = -EBADF;
2042 } else {
619aa48e
PS
2043 wdata->pid = wdata->cfile->pid;
2044 server = tlink_tcon(wdata->cfile->tlink)->ses->server;
2045 rc = server->ops->async_writev(wdata, cifs_writedata_release);
66231a47 2046 }
619aa48e
PS
2047
2048 for (i = 0; i < nr_pages; ++i)
2049 unlock_page(wdata->pages[i]);
2050
2051 return rc;
2052}
2053
1da177e4 2054static int cifs_writepages(struct address_space *mapping,
37c0eb46 2055 struct writeback_control *wbc)
1da177e4 2056{
c3d17b63 2057 struct cifs_sb_info *cifs_sb = CIFS_SB(mapping->host->i_sb);
cb7e9eab 2058 struct TCP_Server_Info *server;
c3d17b63
JL
2059 bool done = false, scanned = false, range_whole = false;
2060 pgoff_t end, index;
2061 struct cifs_writedata *wdata;
37c0eb46 2062 int rc = 0;
50c2f753 2063
37c0eb46 2064 /*
c3d17b63 2065 * If wsize is smaller than the page cache size, default to writing
37c0eb46
SF
2066 * one page at a time via cifs_writepage
2067 */
09cbfeaf 2068 if (cifs_sb->wsize < PAGE_SIZE)
37c0eb46
SF
2069 return generic_writepages(mapping, wbc);
2070
111ebb6e 2071 if (wbc->range_cyclic) {
37c0eb46 2072 index = mapping->writeback_index; /* Start from prev offset */
111ebb6e
OH
2073 end = -1;
2074 } else {
09cbfeaf
KS
2075 index = wbc->range_start >> PAGE_SHIFT;
2076 end = wbc->range_end >> PAGE_SHIFT;
111ebb6e 2077 if (wbc->range_start == 0 && wbc->range_end == LLONG_MAX)
c3d17b63
JL
2078 range_whole = true;
2079 scanned = true;
37c0eb46 2080 }
cb7e9eab 2081 server = cifs_sb_master_tcon(cifs_sb)->ses->server;
37c0eb46 2082retry:
c3d17b63 2083 while (!done && index <= end) {
cb7e9eab 2084 unsigned int i, nr_pages, found_pages, wsize, credits;
66231a47 2085 pgoff_t next = 0, tofind, saved_index = index;
c3d17b63 2086
cb7e9eab
PS
2087 rc = server->ops->wait_mtu_credits(server, cifs_sb->wsize,
2088 &wsize, &credits);
2089 if (rc)
2090 break;
c3d17b63 2091
09cbfeaf 2092 tofind = min((wsize / PAGE_SIZE) - 1, end - index) + 1;
c3d17b63 2093
90ac1387
PS
2094 wdata = wdata_alloc_and_fillpages(tofind, mapping, end, &index,
2095 &found_pages);
c3d17b63
JL
2096 if (!wdata) {
2097 rc = -ENOMEM;
cb7e9eab 2098 add_credits_and_wake_if(server, credits, 0);
c3d17b63
JL
2099 break;
2100 }
2101
c3d17b63
JL
2102 if (found_pages == 0) {
2103 kref_put(&wdata->refcount, cifs_writedata_release);
cb7e9eab 2104 add_credits_and_wake_if(server, credits, 0);
c3d17b63
JL
2105 break;
2106 }
2107
7e48ff82
PS
2108 nr_pages = wdata_prepare_pages(wdata, found_pages, mapping, wbc,
2109 end, &index, &next, &done);
37c0eb46 2110
c3d17b63
JL
2111 /* nothing to write? */
2112 if (nr_pages == 0) {
2113 kref_put(&wdata->refcount, cifs_writedata_release);
cb7e9eab 2114 add_credits_and_wake_if(server, credits, 0);
c3d17b63 2115 continue;
37c0eb46 2116 }
fbec9ab9 2117
cb7e9eab 2118 wdata->credits = credits;
941b853d 2119
619aa48e 2120 rc = wdata_send_pages(wdata, nr_pages, mapping, wbc);
f3983c21 2121
c3d17b63
JL
2122 /* send failure -- clean up the mess */
2123 if (rc != 0) {
cb7e9eab 2124 add_credits_and_wake_if(server, wdata->credits, 0);
c3d17b63 2125 for (i = 0; i < nr_pages; ++i) {
941b853d 2126 if (rc == -EAGAIN)
c3d17b63
JL
2127 redirty_page_for_writepage(wbc,
2128 wdata->pages[i]);
2129 else
2130 SetPageError(wdata->pages[i]);
2131 end_page_writeback(wdata->pages[i]);
09cbfeaf 2132 put_page(wdata->pages[i]);
37c0eb46 2133 }
941b853d
JL
2134 if (rc != -EAGAIN)
2135 mapping_set_error(mapping, rc);
c3d17b63
JL
2136 }
2137 kref_put(&wdata->refcount, cifs_writedata_release);
941b853d 2138
66231a47
PS
2139 if (wbc->sync_mode == WB_SYNC_ALL && rc == -EAGAIN) {
2140 index = saved_index;
2141 continue;
2142 }
2143
c3d17b63
JL
2144 wbc->nr_to_write -= nr_pages;
2145 if (wbc->nr_to_write <= 0)
2146 done = true;
b066a48c 2147
c3d17b63 2148 index = next;
37c0eb46 2149 }
c3d17b63 2150
37c0eb46
SF
2151 if (!scanned && !done) {
2152 /*
2153 * We hit the last page and there is more work to be done: wrap
2154 * back to the start of the file
2155 */
c3d17b63 2156 scanned = true;
37c0eb46
SF
2157 index = 0;
2158 goto retry;
2159 }
c3d17b63 2160
111ebb6e 2161 if (wbc->range_cyclic || (range_whole && wbc->nr_to_write > 0))
37c0eb46
SF
2162 mapping->writeback_index = index;
2163
1da177e4
LT
2164 return rc;
2165}
1da177e4 2166
9ad1506b
PS
2167static int
2168cifs_writepage_locked(struct page *page, struct writeback_control *wbc)
1da177e4 2169{
9ad1506b 2170 int rc;
6d5786a3 2171 unsigned int xid;
1da177e4 2172
6d5786a3 2173 xid = get_xid();
1da177e4 2174/* BB add check for wbc flags */
09cbfeaf 2175 get_page(page);
ad7a2926 2176 if (!PageUptodate(page))
f96637be 2177 cifs_dbg(FYI, "ppw - page not up to date\n");
cb876f45
LT
2178
2179 /*
2180 * Set the "writeback" flag, and clear "dirty" in the radix tree.
2181 *
2182 * A writepage() implementation always needs to do either this,
2183 * or re-dirty the page with "redirty_page_for_writepage()" in
2184 * the case of a failure.
2185 *
2186 * Just unlocking the page will cause the radix tree tag-bits
2187 * to fail to update with the state of the page correctly.
2188 */
fb8c4b14 2189 set_page_writeback(page);
9ad1506b 2190retry_write:
09cbfeaf 2191 rc = cifs_partialpagewrite(page, 0, PAGE_SIZE);
9ad1506b
PS
2192 if (rc == -EAGAIN && wbc->sync_mode == WB_SYNC_ALL)
2193 goto retry_write;
2194 else if (rc == -EAGAIN)
2195 redirty_page_for_writepage(wbc, page);
2196 else if (rc != 0)
2197 SetPageError(page);
2198 else
2199 SetPageUptodate(page);
cb876f45 2200 end_page_writeback(page);
09cbfeaf 2201 put_page(page);
6d5786a3 2202 free_xid(xid);
1da177e4
LT
2203 return rc;
2204}
2205
9ad1506b
PS
2206static int cifs_writepage(struct page *page, struct writeback_control *wbc)
2207{
2208 int rc = cifs_writepage_locked(page, wbc);
2209 unlock_page(page);
2210 return rc;
2211}
2212
d9414774
NP
2213static int cifs_write_end(struct file *file, struct address_space *mapping,
2214 loff_t pos, unsigned len, unsigned copied,
2215 struct page *page, void *fsdata)
1da177e4 2216{
d9414774
NP
2217 int rc;
2218 struct inode *inode = mapping->host;
d4ffff1f
PS
2219 struct cifsFileInfo *cfile = file->private_data;
2220 struct cifs_sb_info *cifs_sb = CIFS_SB(cfile->dentry->d_sb);
2221 __u32 pid;
2222
2223 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_RWPIDFORWARD)
2224 pid = cfile->pid;
2225 else
2226 pid = current->tgid;
1da177e4 2227
f96637be 2228 cifs_dbg(FYI, "write_end for page %p from pos %lld with %d bytes\n",
b6b38f70 2229 page, pos, copied);
d9414774 2230
a98ee8c1
JL
2231 if (PageChecked(page)) {
2232 if (copied == len)
2233 SetPageUptodate(page);
2234 ClearPageChecked(page);
09cbfeaf 2235 } else if (!PageUptodate(page) && copied == PAGE_SIZE)
d9414774 2236 SetPageUptodate(page);
ad7a2926 2237
1da177e4 2238 if (!PageUptodate(page)) {
d9414774 2239 char *page_data;
09cbfeaf 2240 unsigned offset = pos & (PAGE_SIZE - 1);
6d5786a3 2241 unsigned int xid;
d9414774 2242
6d5786a3 2243 xid = get_xid();
1da177e4
LT
2244 /* this is probably better than directly calling
2245 partialpage_write since in this function the file handle is
2246 known which we might as well leverage */
2247 /* BB check if anything else missing out of ppw
2248 such as updating last write time */
2249 page_data = kmap(page);
d4ffff1f 2250 rc = cifs_write(cfile, pid, page_data + offset, copied, &pos);
d9414774 2251 /* if (rc < 0) should we set writebehind rc? */
1da177e4 2252 kunmap(page);
d9414774 2253
6d5786a3 2254 free_xid(xid);
fb8c4b14 2255 } else {
d9414774
NP
2256 rc = copied;
2257 pos += copied;
ca8aa29c 2258 set_page_dirty(page);
1da177e4
LT
2259 }
2260
d9414774
NP
2261 if (rc > 0) {
2262 spin_lock(&inode->i_lock);
2263 if (pos > inode->i_size)
2264 i_size_write(inode, pos);
2265 spin_unlock(&inode->i_lock);
2266 }
2267
2268 unlock_page(page);
09cbfeaf 2269 put_page(page);
d9414774 2270
1da177e4
LT
2271 return rc;
2272}
2273
02c24a82
JB
2274int cifs_strict_fsync(struct file *file, loff_t start, loff_t end,
2275 int datasync)
1da177e4 2276{
6d5786a3 2277 unsigned int xid;
1da177e4 2278 int rc = 0;
96daf2b0 2279 struct cifs_tcon *tcon;
1d8c4c00 2280 struct TCP_Server_Info *server;
c21dfb69 2281 struct cifsFileInfo *smbfile = file->private_data;
496ad9aa 2282 struct inode *inode = file_inode(file);
8be7e6ba 2283 struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb);
1da177e4 2284
02c24a82
JB
2285 rc = filemap_write_and_wait_range(inode->i_mapping, start, end);
2286 if (rc)
2287 return rc;
5955102c 2288 inode_lock(inode);
02c24a82 2289
6d5786a3 2290 xid = get_xid();
1da177e4 2291
35c265e0
AV
2292 cifs_dbg(FYI, "Sync file - name: %pD datasync: 0x%x\n",
2293 file, datasync);
50c2f753 2294
18cceb6a 2295 if (!CIFS_CACHE_READ(CIFS_I(inode))) {
4f73c7d3 2296 rc = cifs_zap_mapping(inode);
6feb9891 2297 if (rc) {
f96637be 2298 cifs_dbg(FYI, "rc: %d during invalidate phase\n", rc);
6feb9891
PS
2299 rc = 0; /* don't care about it in fsync */
2300 }
2301 }
eb4b756b 2302
8be7e6ba 2303 tcon = tlink_tcon(smbfile->tlink);
1d8c4c00
PS
2304 if (!(cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NOSSYNC)) {
2305 server = tcon->ses->server;
2306 if (server->ops->flush)
2307 rc = server->ops->flush(xid, tcon, &smbfile->fid);
2308 else
2309 rc = -ENOSYS;
2310 }
8be7e6ba 2311
6d5786a3 2312 free_xid(xid);
5955102c 2313 inode_unlock(inode);
8be7e6ba
PS
2314 return rc;
2315}
2316
02c24a82 2317int cifs_fsync(struct file *file, loff_t start, loff_t end, int datasync)
8be7e6ba 2318{
6d5786a3 2319 unsigned int xid;
8be7e6ba 2320 int rc = 0;
96daf2b0 2321 struct cifs_tcon *tcon;
1d8c4c00 2322 struct TCP_Server_Info *server;
8be7e6ba 2323 struct cifsFileInfo *smbfile = file->private_data;
7119e220 2324 struct cifs_sb_info *cifs_sb = CIFS_FILE_SB(file);
02c24a82
JB
2325 struct inode *inode = file->f_mapping->host;
2326
2327 rc = filemap_write_and_wait_range(inode->i_mapping, start, end);
2328 if (rc)
2329 return rc;
5955102c 2330 inode_lock(inode);
8be7e6ba 2331
6d5786a3 2332 xid = get_xid();
8be7e6ba 2333
35c265e0
AV
2334 cifs_dbg(FYI, "Sync file - name: %pD datasync: 0x%x\n",
2335 file, datasync);
8be7e6ba
PS
2336
2337 tcon = tlink_tcon(smbfile->tlink);
1d8c4c00
PS
2338 if (!(cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NOSSYNC)) {
2339 server = tcon->ses->server;
2340 if (server->ops->flush)
2341 rc = server->ops->flush(xid, tcon, &smbfile->fid);
2342 else
2343 rc = -ENOSYS;
2344 }
b298f223 2345
6d5786a3 2346 free_xid(xid);
5955102c 2347 inode_unlock(inode);
1da177e4
LT
2348 return rc;
2349}
2350
1da177e4
LT
2351/*
2352 * As file closes, flush all cached write data for this inode checking
2353 * for write behind errors.
2354 */
75e1fcc0 2355int cifs_flush(struct file *file, fl_owner_t id)
1da177e4 2356{
496ad9aa 2357 struct inode *inode = file_inode(file);
1da177e4
LT
2358 int rc = 0;
2359
eb4b756b 2360 if (file->f_mode & FMODE_WRITE)
d3f1322a 2361 rc = filemap_write_and_wait(inode->i_mapping);
50c2f753 2362
f96637be 2363 cifs_dbg(FYI, "Flush inode %p file %p rc %d\n", inode, file, rc);
1da177e4
LT
2364
2365 return rc;
2366}
2367
72432ffc
PS
2368static int
2369cifs_write_allocate_pages(struct page **pages, unsigned long num_pages)
2370{
2371 int rc = 0;
2372 unsigned long i;
2373
2374 for (i = 0; i < num_pages; i++) {
e94f7ba1 2375 pages[i] = alloc_page(GFP_KERNEL|__GFP_HIGHMEM);
72432ffc
PS
2376 if (!pages[i]) {
2377 /*
2378 * save number of pages we have already allocated and
2379 * return with ENOMEM error
2380 */
2381 num_pages = i;
2382 rc = -ENOMEM;
e94f7ba1 2383 break;
72432ffc
PS
2384 }
2385 }
2386
e94f7ba1
JL
2387 if (rc) {
2388 for (i = 0; i < num_pages; i++)
2389 put_page(pages[i]);
2390 }
72432ffc
PS
2391 return rc;
2392}
2393
2394static inline
2395size_t get_numpages(const size_t wsize, const size_t len, size_t *cur_len)
2396{
2397 size_t num_pages;
2398 size_t clen;
2399
2400 clen = min_t(const size_t, len, wsize);
a7103b99 2401 num_pages = DIV_ROUND_UP(clen, PAGE_SIZE);
72432ffc
PS
2402
2403 if (cur_len)
2404 *cur_len = clen;
2405
2406 return num_pages;
2407}
2408
da82f7e7 2409static void
4a5c80d7 2410cifs_uncached_writedata_release(struct kref *refcount)
da82f7e7
JL
2411{
2412 int i;
4a5c80d7
SF
2413 struct cifs_writedata *wdata = container_of(refcount,
2414 struct cifs_writedata, refcount);
2415
2416 for (i = 0; i < wdata->nr_pages; i++)
2417 put_page(wdata->pages[i]);
2418 cifs_writedata_release(refcount);
2419}
2420
2421static void
2422cifs_uncached_writev_complete(struct work_struct *work)
2423{
da82f7e7
JL
2424 struct cifs_writedata *wdata = container_of(work,
2425 struct cifs_writedata, work);
2b0143b5 2426 struct inode *inode = d_inode(wdata->cfile->dentry);
da82f7e7
JL
2427 struct cifsInodeInfo *cifsi = CIFS_I(inode);
2428
2429 spin_lock(&inode->i_lock);
2430 cifs_update_eof(cifsi, wdata->offset, wdata->bytes);
2431 if (cifsi->server_eof > inode->i_size)
2432 i_size_write(inode, cifsi->server_eof);
2433 spin_unlock(&inode->i_lock);
2434
2435 complete(&wdata->done);
2436
4a5c80d7 2437 kref_put(&wdata->refcount, cifs_uncached_writedata_release);
da82f7e7
JL
2438}
2439
da82f7e7 2440static int
66386c08
PS
2441wdata_fill_from_iovec(struct cifs_writedata *wdata, struct iov_iter *from,
2442 size_t *len, unsigned long *num_pages)
da82f7e7 2443{
66386c08
PS
2444 size_t save_len, copied, bytes, cur_len = *len;
2445 unsigned long i, nr_pages = *num_pages;
c9de5c80 2446
66386c08
PS
2447 save_len = cur_len;
2448 for (i = 0; i < nr_pages; i++) {
2449 bytes = min_t(const size_t, cur_len, PAGE_SIZE);
2450 copied = copy_page_from_iter(wdata->pages[i], 0, bytes, from);
2451 cur_len -= copied;
2452 /*
2453 * If we didn't copy as much as we expected, then that
2454 * may mean we trod into an unmapped area. Stop copying
2455 * at that point. On the next pass through the big
2456 * loop, we'll likely end up getting a zero-length
2457 * write and bailing out of it.
2458 */
2459 if (copied < bytes)
2460 break;
2461 }
2462 cur_len = save_len - cur_len;
2463 *len = cur_len;
da82f7e7 2464
66386c08
PS
2465 /*
2466 * If we have no data to send, then that probably means that
2467 * the copy above failed altogether. That's most likely because
2468 * the address in the iovec was bogus. Return -EFAULT and let
2469 * the caller free anything we allocated and bail out.
2470 */
2471 if (!cur_len)
2472 return -EFAULT;
da82f7e7 2473
66386c08
PS
2474 /*
2475 * i + 1 now represents the number of pages we actually used in
2476 * the copy phase above.
2477 */
2478 *num_pages = i + 1;
2479 return 0;
da82f7e7
JL
2480}
2481
43de94ea
PS
2482static int
2483cifs_write_from_iter(loff_t offset, size_t len, struct iov_iter *from,
2484 struct cifsFileInfo *open_file,
2485 struct cifs_sb_info *cifs_sb, struct list_head *wdata_list)
72432ffc 2486{
43de94ea
PS
2487 int rc = 0;
2488 size_t cur_len;
66386c08 2489 unsigned long nr_pages, num_pages, i;
43de94ea 2490 struct cifs_writedata *wdata;
fc56b983 2491 struct iov_iter saved_from = *from;
6ec0b01b 2492 loff_t saved_offset = offset;
da82f7e7 2493 pid_t pid;
6ec0b01b 2494 struct TCP_Server_Info *server;
d4ffff1f
PS
2495
2496 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_RWPIDFORWARD)
2497 pid = open_file->pid;
2498 else
2499 pid = current->tgid;
2500
6ec0b01b 2501 server = tlink_tcon(open_file->tlink)->ses->server;
6ec0b01b 2502
72432ffc 2503 do {
cb7e9eab
PS
2504 unsigned int wsize, credits;
2505
2506 rc = server->ops->wait_mtu_credits(server, cifs_sb->wsize,
2507 &wsize, &credits);
2508 if (rc)
2509 break;
da82f7e7 2510
cb7e9eab 2511 nr_pages = get_numpages(wsize, len, &cur_len);
da82f7e7
JL
2512 wdata = cifs_writedata_alloc(nr_pages,
2513 cifs_uncached_writev_complete);
2514 if (!wdata) {
2515 rc = -ENOMEM;
cb7e9eab 2516 add_credits_and_wake_if(server, credits, 0);
da82f7e7
JL
2517 break;
2518 }
2519
2520 rc = cifs_write_allocate_pages(wdata->pages, nr_pages);
2521 if (rc) {
2522 kfree(wdata);
cb7e9eab 2523 add_credits_and_wake_if(server, credits, 0);
da82f7e7
JL
2524 break;
2525 }
2526
66386c08
PS
2527 num_pages = nr_pages;
2528 rc = wdata_fill_from_iovec(wdata, from, &cur_len, &num_pages);
2529 if (rc) {
5d81de8e
JL
2530 for (i = 0; i < nr_pages; i++)
2531 put_page(wdata->pages[i]);
2532 kfree(wdata);
cb7e9eab 2533 add_credits_and_wake_if(server, credits, 0);
5d81de8e
JL
2534 break;
2535 }
2536
2537 /*
66386c08
PS
2538 * Bring nr_pages down to the number of pages we actually used,
2539 * and free any pages that we didn't use.
5d81de8e 2540 */
66386c08 2541 for ( ; nr_pages > num_pages; nr_pages--)
5d81de8e
JL
2542 put_page(wdata->pages[nr_pages - 1]);
2543
da82f7e7
JL
2544 wdata->sync_mode = WB_SYNC_ALL;
2545 wdata->nr_pages = nr_pages;
2546 wdata->offset = (__u64)offset;
2547 wdata->cfile = cifsFileInfo_get(open_file);
2548 wdata->pid = pid;
2549 wdata->bytes = cur_len;
eddb079d
JL
2550 wdata->pagesz = PAGE_SIZE;
2551 wdata->tailsz = cur_len - ((nr_pages - 1) * PAGE_SIZE);
cb7e9eab 2552 wdata->credits = credits;
6ec0b01b
PS
2553
2554 if (!wdata->cfile->invalidHandle ||
2555 !cifs_reopen_file(wdata->cfile, false))
2556 rc = server->ops->async_writev(wdata,
2557 cifs_uncached_writedata_release);
da82f7e7 2558 if (rc) {
cb7e9eab 2559 add_credits_and_wake_if(server, wdata->credits, 0);
4a5c80d7
SF
2560 kref_put(&wdata->refcount,
2561 cifs_uncached_writedata_release);
6ec0b01b 2562 if (rc == -EAGAIN) {
fc56b983 2563 *from = saved_from;
6ec0b01b
PS
2564 iov_iter_advance(from, offset - saved_offset);
2565 continue;
2566 }
72432ffc
PS
2567 break;
2568 }
2569
43de94ea 2570 list_add_tail(&wdata->list, wdata_list);
da82f7e7
JL
2571 offset += cur_len;
2572 len -= cur_len;
72432ffc
PS
2573 } while (len > 0);
2574
43de94ea
PS
2575 return rc;
2576}
2577
e9d1593d 2578ssize_t cifs_user_writev(struct kiocb *iocb, struct iov_iter *from)
43de94ea 2579{
e9d1593d 2580 struct file *file = iocb->ki_filp;
43de94ea
PS
2581 ssize_t total_written = 0;
2582 struct cifsFileInfo *open_file;
2583 struct cifs_tcon *tcon;
2584 struct cifs_sb_info *cifs_sb;
2585 struct cifs_writedata *wdata, *tmp;
2586 struct list_head wdata_list;
fc56b983 2587 struct iov_iter saved_from = *from;
43de94ea
PS
2588 int rc;
2589
e9d1593d
AV
2590 /*
2591 * BB - optimize the way when signing is disabled. We can drop this
2592 * extra memory-to-memory copying and use iovec buffers for constructing
2593 * write request.
2594 */
2595
3309dd04
AV
2596 rc = generic_write_checks(iocb, from);
2597 if (rc <= 0)
43de94ea
PS
2598 return rc;
2599
43de94ea 2600 INIT_LIST_HEAD(&wdata_list);
7119e220 2601 cifs_sb = CIFS_FILE_SB(file);
43de94ea
PS
2602 open_file = file->private_data;
2603 tcon = tlink_tcon(open_file->tlink);
2604
2605 if (!tcon->ses->server->ops->async_writev)
2606 return -ENOSYS;
2607
3309dd04
AV
2608 rc = cifs_write_from_iter(iocb->ki_pos, iov_iter_count(from), from,
2609 open_file, cifs_sb, &wdata_list);
43de94ea 2610
da82f7e7
JL
2611 /*
2612 * If at least one write was successfully sent, then discard any rc
2613 * value from the later writes. If the other write succeeds, then
2614 * we'll end up returning whatever was written. If it fails, then
2615 * we'll get a new rc value from that.
2616 */
2617 if (!list_empty(&wdata_list))
2618 rc = 0;
2619
2620 /*
2621 * Wait for and collect replies for any successful sends in order of
2622 * increasing offset. Once an error is hit or we get a fatal signal
2623 * while waiting, then return without waiting for any more replies.
2624 */
2625restart_loop:
2626 list_for_each_entry_safe(wdata, tmp, &wdata_list, list) {
2627 if (!rc) {
2628 /* FIXME: freezable too? */
2629 rc = wait_for_completion_killable(&wdata->done);
2630 if (rc)
2631 rc = -EINTR;
2632 else if (wdata->result)
2633 rc = wdata->result;
2634 else
2635 total_written += wdata->bytes;
2636
2637 /* resend call if it's a retryable error */
2638 if (rc == -EAGAIN) {
6ec0b01b 2639 struct list_head tmp_list;
fc56b983 2640 struct iov_iter tmp_from = saved_from;
6ec0b01b
PS
2641
2642 INIT_LIST_HEAD(&tmp_list);
2643 list_del_init(&wdata->list);
2644
6ec0b01b 2645 iov_iter_advance(&tmp_from,
e9d1593d 2646 wdata->offset - iocb->ki_pos);
6ec0b01b
PS
2647
2648 rc = cifs_write_from_iter(wdata->offset,
2649 wdata->bytes, &tmp_from,
2650 open_file, cifs_sb, &tmp_list);
2651
2652 list_splice(&tmp_list, &wdata_list);
2653
2654 kref_put(&wdata->refcount,
2655 cifs_uncached_writedata_release);
da82f7e7
JL
2656 goto restart_loop;
2657 }
2658 }
2659 list_del_init(&wdata->list);
4a5c80d7 2660 kref_put(&wdata->refcount, cifs_uncached_writedata_release);
72432ffc
PS
2661 }
2662
e9d1593d
AV
2663 if (unlikely(!total_written))
2664 return rc;
72432ffc 2665
e9d1593d
AV
2666 iocb->ki_pos += total_written;
2667 set_bit(CIFS_INO_INVALID_MAPPING, &CIFS_I(file_inode(file))->flags);
da82f7e7 2668 cifs_stats_bytes_written(tcon, total_written);
e9d1593d 2669 return total_written;
72432ffc
PS
2670}
2671
579f9053 2672static ssize_t
3dae8750 2673cifs_writev(struct kiocb *iocb, struct iov_iter *from)
72432ffc 2674{
579f9053
PS
2675 struct file *file = iocb->ki_filp;
2676 struct cifsFileInfo *cfile = (struct cifsFileInfo *)file->private_data;
2677 struct inode *inode = file->f_mapping->host;
2678 struct cifsInodeInfo *cinode = CIFS_I(inode);
2679 struct TCP_Server_Info *server = tlink_tcon(cfile->tlink)->ses->server;
5f380c7f 2680 ssize_t rc;
72432ffc 2681
579f9053
PS
2682 /*
2683 * We need to hold the sem to be sure nobody modifies lock list
2684 * with a brlock that prevents writing.
2685 */
2686 down_read(&cinode->lock_sem);
5955102c 2687 inode_lock(inode);
5f380c7f 2688
3309dd04
AV
2689 rc = generic_write_checks(iocb, from);
2690 if (rc <= 0)
5f380c7f
AV
2691 goto out;
2692
5f380c7f 2693 if (!cifs_find_lock_conflict(cfile, iocb->ki_pos, iov_iter_count(from),
579f9053 2694 server->vals->exclusive_lock_type, NULL,
5f380c7f 2695 CIFS_WRITE_OP))
3dae8750 2696 rc = __generic_file_write_iter(iocb, from);
5f380c7f
AV
2697 else
2698 rc = -EACCES;
2699out:
5955102c 2700 inode_unlock(inode);
19dfc1f5 2701
e2592217
CH
2702 if (rc > 0)
2703 rc = generic_write_sync(iocb, rc);
579f9053 2704 up_read(&cinode->lock_sem);
579f9053
PS
2705 return rc;
2706}
2707
2708ssize_t
3dae8750 2709cifs_strict_writev(struct kiocb *iocb, struct iov_iter *from)
579f9053 2710{
496ad9aa 2711 struct inode *inode = file_inode(iocb->ki_filp);
579f9053
PS
2712 struct cifsInodeInfo *cinode = CIFS_I(inode);
2713 struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb);
2714 struct cifsFileInfo *cfile = (struct cifsFileInfo *)
2715 iocb->ki_filp->private_data;
2716 struct cifs_tcon *tcon = tlink_tcon(cfile->tlink);
88cf75aa 2717 ssize_t written;
ca8aa29c 2718
c11f1df5
SP
2719 written = cifs_get_writer(cinode);
2720 if (written)
2721 return written;
2722
18cceb6a 2723 if (CIFS_CACHE_WRITE(cinode)) {
88cf75aa
PS
2724 if (cap_unix(tcon->ses) &&
2725 (CIFS_UNIX_FCNTL_CAP & le64_to_cpu(tcon->fsUnixInfo.Capability))
c11f1df5 2726 && ((cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NOPOSIXBRL) == 0)) {
3dae8750 2727 written = generic_file_write_iter(iocb, from);
c11f1df5
SP
2728 goto out;
2729 }
3dae8750 2730 written = cifs_writev(iocb, from);
c11f1df5 2731 goto out;
25078105 2732 }
25078105 2733 /*
ca8aa29c
PS
2734 * For non-oplocked files in strict cache mode we need to write the data
2735 * to the server exactly from the pos to pos+len-1 rather than flush all
2736 * affected pages because it may cause a error with mandatory locks on
2737 * these pages but not on the region from pos to ppos+len-1.
72432ffc 2738 */
3dae8750 2739 written = cifs_user_writev(iocb, from);
18cceb6a 2740 if (written > 0 && CIFS_CACHE_READ(cinode)) {
88cf75aa
PS
2741 /*
2742 * Windows 7 server can delay breaking level2 oplock if a write
2743 * request comes - break it on the client to prevent reading
2744 * an old data.
2745 */
4f73c7d3 2746 cifs_zap_mapping(inode);
f96637be
JP
2747 cifs_dbg(FYI, "Set no oplock for inode=%p after a write operation\n",
2748 inode);
18cceb6a 2749 cinode->oplock = 0;
88cf75aa 2750 }
c11f1df5
SP
2751out:
2752 cifs_put_writer(cinode);
88cf75aa 2753 return written;
72432ffc
PS
2754}
2755
0471ca3f 2756static struct cifs_readdata *
f4e49cd2 2757cifs_readdata_alloc(unsigned int nr_pages, work_func_t complete)
0471ca3f
JL
2758{
2759 struct cifs_readdata *rdata;
f4e49cd2 2760
c5fab6f4
JL
2761 rdata = kzalloc(sizeof(*rdata) + (sizeof(struct page *) * nr_pages),
2762 GFP_KERNEL);
0471ca3f 2763 if (rdata != NULL) {
6993f74a 2764 kref_init(&rdata->refcount);
1c892549
JL
2765 INIT_LIST_HEAD(&rdata->list);
2766 init_completion(&rdata->done);
0471ca3f 2767 INIT_WORK(&rdata->work, complete);
0471ca3f 2768 }
f4e49cd2 2769
0471ca3f
JL
2770 return rdata;
2771}
2772
6993f74a
JL
2773void
2774cifs_readdata_release(struct kref *refcount)
0471ca3f 2775{
6993f74a
JL
2776 struct cifs_readdata *rdata = container_of(refcount,
2777 struct cifs_readdata, refcount);
2778
2779 if (rdata->cfile)
2780 cifsFileInfo_put(rdata->cfile);
2781
0471ca3f
JL
2782 kfree(rdata);
2783}
2784
1c892549 2785static int
c5fab6f4 2786cifs_read_allocate_pages(struct cifs_readdata *rdata, unsigned int nr_pages)
1c892549
JL
2787{
2788 int rc = 0;
c5fab6f4 2789 struct page *page;
1c892549
JL
2790 unsigned int i;
2791
c5fab6f4 2792 for (i = 0; i < nr_pages; i++) {
1c892549
JL
2793 page = alloc_page(GFP_KERNEL|__GFP_HIGHMEM);
2794 if (!page) {
2795 rc = -ENOMEM;
2796 break;
2797 }
c5fab6f4 2798 rdata->pages[i] = page;
1c892549
JL
2799 }
2800
2801 if (rc) {
c5fab6f4
JL
2802 for (i = 0; i < nr_pages; i++) {
2803 put_page(rdata->pages[i]);
2804 rdata->pages[i] = NULL;
1c892549
JL
2805 }
2806 }
2807 return rc;
2808}
2809
2810static void
2811cifs_uncached_readdata_release(struct kref *refcount)
2812{
1c892549
JL
2813 struct cifs_readdata *rdata = container_of(refcount,
2814 struct cifs_readdata, refcount);
c5fab6f4 2815 unsigned int i;
1c892549 2816
c5fab6f4
JL
2817 for (i = 0; i < rdata->nr_pages; i++) {
2818 put_page(rdata->pages[i]);
2819 rdata->pages[i] = NULL;
1c892549
JL
2820 }
2821 cifs_readdata_release(refcount);
2822}
2823
1c892549
JL
2824/**
2825 * cifs_readdata_to_iov - copy data from pages in response to an iovec
2826 * @rdata: the readdata response with list of pages holding data
7f25bba8 2827 * @iter: destination for our data
1c892549
JL
2828 *
2829 * This function copies data from a list of pages in a readdata response into
2830 * an array of iovecs. It will first calculate where the data should go
2831 * based on the info in the readdata and then copy the data into that spot.
2832 */
7f25bba8
AV
2833static int
2834cifs_readdata_to_iov(struct cifs_readdata *rdata, struct iov_iter *iter)
1c892549 2835{
34a54d61 2836 size_t remaining = rdata->got_bytes;
c5fab6f4 2837 unsigned int i;
1c892549 2838
c5fab6f4 2839 for (i = 0; i < rdata->nr_pages; i++) {
c5fab6f4 2840 struct page *page = rdata->pages[i];
e686bd8d 2841 size_t copy = min_t(size_t, remaining, PAGE_SIZE);
7f25bba8
AV
2842 size_t written = copy_page_to_iter(page, 0, copy, iter);
2843 remaining -= written;
2844 if (written < copy && iov_iter_count(iter) > 0)
2845 break;
1c892549 2846 }
7f25bba8 2847 return remaining ? -EFAULT : 0;
1c892549
JL
2848}
2849
2850static void
2851cifs_uncached_readv_complete(struct work_struct *work)
2852{
2853 struct cifs_readdata *rdata = container_of(work,
2854 struct cifs_readdata, work);
1c892549
JL
2855
2856 complete(&rdata->done);
2857 kref_put(&rdata->refcount, cifs_uncached_readdata_release);
2858}
2859
2860static int
8321fec4
JL
2861cifs_uncached_read_into_pages(struct TCP_Server_Info *server,
2862 struct cifs_readdata *rdata, unsigned int len)
1c892549 2863{
b3160aeb 2864 int result = 0;
c5fab6f4
JL
2865 unsigned int i;
2866 unsigned int nr_pages = rdata->nr_pages;
1c892549 2867
b3160aeb 2868 rdata->got_bytes = 0;
8321fec4 2869 rdata->tailsz = PAGE_SIZE;
c5fab6f4
JL
2870 for (i = 0; i < nr_pages; i++) {
2871 struct page *page = rdata->pages[i];
71335664 2872 size_t n;
c5fab6f4 2873
71335664 2874 if (len <= 0) {
1c892549 2875 /* no need to hold page hostage */
c5fab6f4
JL
2876 rdata->pages[i] = NULL;
2877 rdata->nr_pages--;
1c892549 2878 put_page(page);
8321fec4 2879 continue;
1c892549 2880 }
71335664
AV
2881 n = len;
2882 if (len >= PAGE_SIZE) {
2883 /* enough data to fill the page */
2884 n = PAGE_SIZE;
2885 len -= n;
2886 } else {
2887 zero_user(page, len, PAGE_SIZE - len);
2888 rdata->tailsz = len;
2889 len = 0;
2890 }
2891 result = cifs_read_page_from_socket(server, page, n);
8321fec4
JL
2892 if (result < 0)
2893 break;
2894
b3160aeb 2895 rdata->got_bytes += result;
1c892549
JL
2896 }
2897
b3160aeb
PS
2898 return rdata->got_bytes > 0 && result != -ECONNABORTED ?
2899 rdata->got_bytes : result;
1c892549
JL
2900}
2901
0ada36b2
PS
2902static int
2903cifs_send_async_read(loff_t offset, size_t len, struct cifsFileInfo *open_file,
2904 struct cifs_sb_info *cifs_sb, struct list_head *rdata_list)
1da177e4 2905{
0ada36b2 2906 struct cifs_readdata *rdata;
bed9da02 2907 unsigned int npages, rsize, credits;
0ada36b2
PS
2908 size_t cur_len;
2909 int rc;
1c892549 2910 pid_t pid;
25f40259 2911 struct TCP_Server_Info *server;
a70307ee 2912
25f40259 2913 server = tlink_tcon(open_file->tlink)->ses->server;
fc9c5966 2914
d4ffff1f
PS
2915 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_RWPIDFORWARD)
2916 pid = open_file->pid;
2917 else
2918 pid = current->tgid;
2919
1c892549 2920 do {
bed9da02
PS
2921 rc = server->ops->wait_mtu_credits(server, cifs_sb->rsize,
2922 &rsize, &credits);
2923 if (rc)
2924 break;
2925
2926 cur_len = min_t(const size_t, len, rsize);
1c892549 2927 npages = DIV_ROUND_UP(cur_len, PAGE_SIZE);
a70307ee 2928
1c892549
JL
2929 /* allocate a readdata struct */
2930 rdata = cifs_readdata_alloc(npages,
2931 cifs_uncached_readv_complete);
2932 if (!rdata) {
bed9da02 2933 add_credits_and_wake_if(server, credits, 0);
1c892549 2934 rc = -ENOMEM;
bae9f746 2935 break;
1da177e4 2936 }
a70307ee 2937
c5fab6f4 2938 rc = cifs_read_allocate_pages(rdata, npages);
1c892549
JL
2939 if (rc)
2940 goto error;
2941
2942 rdata->cfile = cifsFileInfo_get(open_file);
c5fab6f4 2943 rdata->nr_pages = npages;
1c892549
JL
2944 rdata->offset = offset;
2945 rdata->bytes = cur_len;
2946 rdata->pid = pid;
8321fec4
JL
2947 rdata->pagesz = PAGE_SIZE;
2948 rdata->read_into_pages = cifs_uncached_read_into_pages;
bed9da02 2949 rdata->credits = credits;
1c892549 2950
25f40259
PS
2951 if (!rdata->cfile->invalidHandle ||
2952 !cifs_reopen_file(rdata->cfile, true))
2953 rc = server->ops->async_readv(rdata);
1c892549
JL
2954error:
2955 if (rc) {
bed9da02 2956 add_credits_and_wake_if(server, rdata->credits, 0);
1c892549
JL
2957 kref_put(&rdata->refcount,
2958 cifs_uncached_readdata_release);
25f40259
PS
2959 if (rc == -EAGAIN)
2960 continue;
1c892549
JL
2961 break;
2962 }
2963
0ada36b2 2964 list_add_tail(&rdata->list, rdata_list);
1c892549
JL
2965 offset += cur_len;
2966 len -= cur_len;
2967 } while (len > 0);
2968
0ada36b2
PS
2969 return rc;
2970}
2971
2972ssize_t cifs_user_readv(struct kiocb *iocb, struct iov_iter *to)
2973{
2974 struct file *file = iocb->ki_filp;
2975 ssize_t rc;
2976 size_t len;
2977 ssize_t total_read = 0;
2978 loff_t offset = iocb->ki_pos;
2979 struct cifs_sb_info *cifs_sb;
2980 struct cifs_tcon *tcon;
2981 struct cifsFileInfo *open_file;
2982 struct cifs_readdata *rdata, *tmp;
2983 struct list_head rdata_list;
2984
2985 len = iov_iter_count(to);
2986 if (!len)
2987 return 0;
2988
2989 INIT_LIST_HEAD(&rdata_list);
7119e220 2990 cifs_sb = CIFS_FILE_SB(file);
0ada36b2
PS
2991 open_file = file->private_data;
2992 tcon = tlink_tcon(open_file->tlink);
2993
2994 if (!tcon->ses->server->ops->async_readv)
2995 return -ENOSYS;
2996
2997 if ((file->f_flags & O_ACCMODE) == O_WRONLY)
2998 cifs_dbg(FYI, "attempting read on write only file instance\n");
2999
3000 rc = cifs_send_async_read(offset, len, open_file, cifs_sb, &rdata_list);
3001
1c892549
JL
3002 /* if at least one read request send succeeded, then reset rc */
3003 if (!list_empty(&rdata_list))
3004 rc = 0;
3005
e6a7bcb4 3006 len = iov_iter_count(to);
1c892549 3007 /* the loop below should proceed in the order of increasing offsets */
25f40259 3008again:
1c892549
JL
3009 list_for_each_entry_safe(rdata, tmp, &rdata_list, list) {
3010 if (!rc) {
1c892549
JL
3011 /* FIXME: freezable sleep too? */
3012 rc = wait_for_completion_killable(&rdata->done);
3013 if (rc)
3014 rc = -EINTR;
fb8a3e52 3015 else if (rdata->result == -EAGAIN) {
74027f4a 3016 /* resend call if it's a retryable error */
fb8a3e52 3017 struct list_head tmp_list;
d913ed17 3018 unsigned int got_bytes = rdata->got_bytes;
25f40259 3019
fb8a3e52
PS
3020 list_del_init(&rdata->list);
3021 INIT_LIST_HEAD(&tmp_list);
25f40259 3022
d913ed17
PS
3023 /*
3024 * Got a part of data and then reconnect has
3025 * happened -- fill the buffer and continue
3026 * reading.
3027 */
3028 if (got_bytes && got_bytes < rdata->bytes) {
3029 rc = cifs_readdata_to_iov(rdata, to);
3030 if (rc) {
3031 kref_put(&rdata->refcount,
3032 cifs_uncached_readdata_release);
3033 continue;
3034 }
74027f4a 3035 }
d913ed17
PS
3036
3037 rc = cifs_send_async_read(
3038 rdata->offset + got_bytes,
3039 rdata->bytes - got_bytes,
3040 rdata->cfile, cifs_sb,
3041 &tmp_list);
25f40259 3042
fb8a3e52 3043 list_splice(&tmp_list, &rdata_list);
25f40259 3044
fb8a3e52
PS
3045 kref_put(&rdata->refcount,
3046 cifs_uncached_readdata_release);
3047 goto again;
3048 } else if (rdata->result)
3049 rc = rdata->result;
3050 else
e6a7bcb4 3051 rc = cifs_readdata_to_iov(rdata, to);
1c892549 3052
2e8a05d8
PS
3053 /* if there was a short read -- discard anything left */
3054 if (rdata->got_bytes && rdata->got_bytes < rdata->bytes)
3055 rc = -ENODATA;
1da177e4 3056 }
1c892549
JL
3057 list_del_init(&rdata->list);
3058 kref_put(&rdata->refcount, cifs_uncached_readdata_release);
1da177e4 3059 }
a70307ee 3060
e6a7bcb4 3061 total_read = len - iov_iter_count(to);
7f25bba8 3062
1c892549 3063 cifs_stats_bytes_read(tcon, total_read);
1c892549 3064
09a4707e
PS
3065 /* mask nodata case */
3066 if (rc == -ENODATA)
3067 rc = 0;
3068
0165e810 3069 if (total_read) {
e6a7bcb4 3070 iocb->ki_pos += total_read;
0165e810
AV
3071 return total_read;
3072 }
3073 return rc;
a70307ee
PS
3074}
3075
579f9053 3076ssize_t
e6a7bcb4 3077cifs_strict_readv(struct kiocb *iocb, struct iov_iter *to)
a70307ee 3078{
496ad9aa 3079 struct inode *inode = file_inode(iocb->ki_filp);
579f9053
PS
3080 struct cifsInodeInfo *cinode = CIFS_I(inode);
3081 struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb);
3082 struct cifsFileInfo *cfile = (struct cifsFileInfo *)
3083 iocb->ki_filp->private_data;
3084 struct cifs_tcon *tcon = tlink_tcon(cfile->tlink);
3085 int rc = -EACCES;
a70307ee
PS
3086
3087 /*
3088 * In strict cache mode we need to read from the server all the time
3089 * if we don't have level II oplock because the server can delay mtime
3090 * change - so we can't make a decision about inode invalidating.
3091 * And we can also fail with pagereading if there are mandatory locks
3092 * on pages affected by this read but not on the region from pos to
3093 * pos+len-1.
3094 */
18cceb6a 3095 if (!CIFS_CACHE_READ(cinode))
e6a7bcb4 3096 return cifs_user_readv(iocb, to);
a70307ee 3097
579f9053
PS
3098 if (cap_unix(tcon->ses) &&
3099 (CIFS_UNIX_FCNTL_CAP & le64_to_cpu(tcon->fsUnixInfo.Capability)) &&
3100 ((cifs_sb->mnt_cifs_flags & CIFS_MOUNT_NOPOSIXBRL) == 0))
e6a7bcb4 3101 return generic_file_read_iter(iocb, to);
579f9053
PS
3102
3103 /*
3104 * We need to hold the sem to be sure nobody modifies lock list
3105 * with a brlock that prevents reading.
3106 */
3107 down_read(&cinode->lock_sem);
e6a7bcb4 3108 if (!cifs_find_lock_conflict(cfile, iocb->ki_pos, iov_iter_count(to),
579f9053 3109 tcon->ses->server->vals->shared_lock_type,
081c0414 3110 NULL, CIFS_READ_OP))
e6a7bcb4 3111 rc = generic_file_read_iter(iocb, to);
579f9053
PS
3112 up_read(&cinode->lock_sem);
3113 return rc;
a70307ee 3114}
1da177e4 3115
f9c6e234
PS
3116static ssize_t
3117cifs_read(struct file *file, char *read_data, size_t read_size, loff_t *offset)
1da177e4
LT
3118{
3119 int rc = -EACCES;
3120 unsigned int bytes_read = 0;
3121 unsigned int total_read;
3122 unsigned int current_read_size;
5eba8ab3 3123 unsigned int rsize;
1da177e4 3124 struct cifs_sb_info *cifs_sb;
29e20f9c 3125 struct cifs_tcon *tcon;
f9c6e234 3126 struct TCP_Server_Info *server;
6d5786a3 3127 unsigned int xid;
f9c6e234 3128 char *cur_offset;
1da177e4 3129 struct cifsFileInfo *open_file;
d4ffff1f 3130 struct cifs_io_parms io_parms;
ec637e3f 3131 int buf_type = CIFS_NO_BUFFER;
d4ffff1f 3132 __u32 pid;
1da177e4 3133
6d5786a3 3134 xid = get_xid();
7119e220 3135 cifs_sb = CIFS_FILE_SB(file);
1da177e4 3136
5eba8ab3
JL
3137 /* FIXME: set up handlers for larger reads and/or convert to async */
3138 rsize = min_t(unsigned int, cifs_sb->rsize, CIFSMaxBufSize);
3139
1da177e4 3140 if (file->private_data == NULL) {
0f3bc09e 3141 rc = -EBADF;
6d5786a3 3142 free_xid(xid);
0f3bc09e 3143 return rc;
1da177e4 3144 }
c21dfb69 3145 open_file = file->private_data;
29e20f9c 3146 tcon = tlink_tcon(open_file->tlink);
f9c6e234
PS
3147 server = tcon->ses->server;
3148
3149 if (!server->ops->sync_read) {
3150 free_xid(xid);
3151 return -ENOSYS;
3152 }
1da177e4 3153
d4ffff1f
PS
3154 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_RWPIDFORWARD)
3155 pid = open_file->pid;
3156 else
3157 pid = current->tgid;
3158
1da177e4 3159 if ((file->f_flags & O_ACCMODE) == O_WRONLY)
f96637be 3160 cifs_dbg(FYI, "attempting read on write only file instance\n");
1da177e4 3161
f9c6e234
PS
3162 for (total_read = 0, cur_offset = read_data; read_size > total_read;
3163 total_read += bytes_read, cur_offset += bytes_read) {
e374d90f
PS
3164 do {
3165 current_read_size = min_t(uint, read_size - total_read,
3166 rsize);
3167 /*
3168 * For windows me and 9x we do not want to request more
3169 * than it negotiated since it will refuse the read
3170 * then.
3171 */
3172 if ((tcon->ses) && !(tcon->ses->capabilities &
29e20f9c 3173 tcon->ses->server->vals->cap_large_files)) {
e374d90f
PS
3174 current_read_size = min_t(uint,
3175 current_read_size, CIFSMaxBufSize);
3176 }
cdff08e7 3177 if (open_file->invalidHandle) {
15886177 3178 rc = cifs_reopen_file(open_file, true);
1da177e4
LT
3179 if (rc != 0)
3180 break;
3181 }
d4ffff1f 3182 io_parms.pid = pid;
29e20f9c 3183 io_parms.tcon = tcon;
f9c6e234 3184 io_parms.offset = *offset;
d4ffff1f 3185 io_parms.length = current_read_size;
db8b631d 3186 rc = server->ops->sync_read(xid, &open_file->fid, &io_parms,
f9c6e234
PS
3187 &bytes_read, &cur_offset,
3188 &buf_type);
e374d90f
PS
3189 } while (rc == -EAGAIN);
3190
1da177e4
LT
3191 if (rc || (bytes_read == 0)) {
3192 if (total_read) {
3193 break;
3194 } else {
6d5786a3 3195 free_xid(xid);
1da177e4
LT
3196 return rc;
3197 }
3198 } else {
29e20f9c 3199 cifs_stats_bytes_read(tcon, total_read);
f9c6e234 3200 *offset += bytes_read;
1da177e4
LT
3201 }
3202 }
6d5786a3 3203 free_xid(xid);
1da177e4
LT
3204 return total_read;
3205}
3206
ca83ce3d
JL
3207/*
3208 * If the page is mmap'ed into a process' page tables, then we need to make
3209 * sure that it doesn't change while being written back.
3210 */
3211static int
3212cifs_page_mkwrite(struct vm_area_struct *vma, struct vm_fault *vmf)
3213{
3214 struct page *page = vmf->page;
3215
3216 lock_page(page);
3217 return VM_FAULT_LOCKED;
3218}
3219
7cbea8dc 3220static const struct vm_operations_struct cifs_file_vm_ops = {
ca83ce3d 3221 .fault = filemap_fault,
f1820361 3222 .map_pages = filemap_map_pages,
ca83ce3d
JL
3223 .page_mkwrite = cifs_page_mkwrite,
3224};
3225
7a6a19b1
PS
3226int cifs_file_strict_mmap(struct file *file, struct vm_area_struct *vma)
3227{
3228 int rc, xid;
496ad9aa 3229 struct inode *inode = file_inode(file);
7a6a19b1 3230
6d5786a3 3231 xid = get_xid();
7a6a19b1 3232
18cceb6a 3233 if (!CIFS_CACHE_READ(CIFS_I(inode))) {
4f73c7d3 3234 rc = cifs_zap_mapping(inode);
6feb9891
PS
3235 if (rc)
3236 return rc;
3237 }
7a6a19b1
PS
3238
3239 rc = generic_file_mmap(file, vma);
ca83ce3d
JL
3240 if (rc == 0)
3241 vma->vm_ops = &cifs_file_vm_ops;
6d5786a3 3242 free_xid(xid);
7a6a19b1
PS
3243 return rc;
3244}
3245
1da177e4
LT
3246int cifs_file_mmap(struct file *file, struct vm_area_struct *vma)
3247{
1da177e4
LT
3248 int rc, xid;
3249
6d5786a3 3250 xid = get_xid();
abab095d 3251 rc = cifs_revalidate_file(file);
1da177e4 3252 if (rc) {
f96637be
JP
3253 cifs_dbg(FYI, "Validation prior to mmap failed, error=%d\n",
3254 rc);
6d5786a3 3255 free_xid(xid);
1da177e4
LT
3256 return rc;
3257 }
3258 rc = generic_file_mmap(file, vma);
ca83ce3d
JL
3259 if (rc == 0)
3260 vma->vm_ops = &cifs_file_vm_ops;
6d5786a3 3261 free_xid(xid);
1da177e4
LT
3262 return rc;
3263}
3264
0471ca3f
JL
3265static void
3266cifs_readv_complete(struct work_struct *work)
3267{
b770ddfa 3268 unsigned int i, got_bytes;
0471ca3f
JL
3269 struct cifs_readdata *rdata = container_of(work,
3270 struct cifs_readdata, work);
0471ca3f 3271
b770ddfa 3272 got_bytes = rdata->got_bytes;
c5fab6f4
JL
3273 for (i = 0; i < rdata->nr_pages; i++) {
3274 struct page *page = rdata->pages[i];
3275
0471ca3f
JL
3276 lru_cache_add_file(page);
3277
b770ddfa
PS
3278 if (rdata->result == 0 ||
3279 (rdata->result == -EAGAIN && got_bytes)) {
0471ca3f
JL
3280 flush_dcache_page(page);
3281 SetPageUptodate(page);
3282 }
3283
3284 unlock_page(page);
3285
b770ddfa
PS
3286 if (rdata->result == 0 ||
3287 (rdata->result == -EAGAIN && got_bytes))
0471ca3f
JL
3288 cifs_readpage_to_fscache(rdata->mapping->host, page);
3289
09cbfeaf 3290 got_bytes -= min_t(unsigned int, PAGE_SIZE, got_bytes);
b770ddfa 3291
09cbfeaf 3292 put_page(page);
c5fab6f4 3293 rdata->pages[i] = NULL;
0471ca3f 3294 }
6993f74a 3295 kref_put(&rdata->refcount, cifs_readdata_release);
0471ca3f
JL
3296}
3297
8d5ce4d2 3298static int
8321fec4
JL
3299cifs_readpages_read_into_pages(struct TCP_Server_Info *server,
3300 struct cifs_readdata *rdata, unsigned int len)
8d5ce4d2 3301{
b3160aeb 3302 int result = 0;
c5fab6f4 3303 unsigned int i;
8d5ce4d2
JL
3304 u64 eof;
3305 pgoff_t eof_index;
c5fab6f4 3306 unsigned int nr_pages = rdata->nr_pages;
8d5ce4d2
JL
3307
3308 /* determine the eof that the server (probably) has */
3309 eof = CIFS_I(rdata->mapping->host)->server_eof;
09cbfeaf 3310 eof_index = eof ? (eof - 1) >> PAGE_SHIFT : 0;
f96637be 3311 cifs_dbg(FYI, "eof=%llu eof_index=%lu\n", eof, eof_index);
8d5ce4d2 3312
b3160aeb 3313 rdata->got_bytes = 0;
09cbfeaf 3314 rdata->tailsz = PAGE_SIZE;
c5fab6f4
JL
3315 for (i = 0; i < nr_pages; i++) {
3316 struct page *page = rdata->pages[i];
442c9ac9 3317 size_t n = PAGE_SIZE;
c5fab6f4 3318
09cbfeaf 3319 if (len >= PAGE_SIZE) {
09cbfeaf 3320 len -= PAGE_SIZE;
8321fec4 3321 } else if (len > 0) {
8d5ce4d2 3322 /* enough for partial page, fill and zero the rest */
442c9ac9 3323 zero_user(page, len, PAGE_SIZE - len);
71335664 3324 n = rdata->tailsz = len;
8321fec4 3325 len = 0;
8d5ce4d2
JL
3326 } else if (page->index > eof_index) {
3327 /*
3328 * The VFS will not try to do readahead past the
3329 * i_size, but it's possible that we have outstanding
3330 * writes with gaps in the middle and the i_size hasn't
3331 * caught up yet. Populate those with zeroed out pages
3332 * to prevent the VFS from repeatedly attempting to
3333 * fill them until the writes are flushed.
3334 */
09cbfeaf 3335 zero_user(page, 0, PAGE_SIZE);
8d5ce4d2
JL
3336 lru_cache_add_file(page);
3337 flush_dcache_page(page);
3338 SetPageUptodate(page);
3339 unlock_page(page);
09cbfeaf 3340 put_page(page);
c5fab6f4
JL
3341 rdata->pages[i] = NULL;
3342 rdata->nr_pages--;
8321fec4 3343 continue;
8d5ce4d2
JL
3344 } else {
3345 /* no need to hold page hostage */
8d5ce4d2
JL
3346 lru_cache_add_file(page);
3347 unlock_page(page);
09cbfeaf 3348 put_page(page);
c5fab6f4
JL
3349 rdata->pages[i] = NULL;
3350 rdata->nr_pages--;
8321fec4 3351 continue;
8d5ce4d2 3352 }
8321fec4 3353
71335664 3354 result = cifs_read_page_from_socket(server, page, n);
8321fec4
JL
3355 if (result < 0)
3356 break;
3357
b3160aeb 3358 rdata->got_bytes += result;
8d5ce4d2
JL
3359 }
3360
b3160aeb
PS
3361 return rdata->got_bytes > 0 && result != -ECONNABORTED ?
3362 rdata->got_bytes : result;
8d5ce4d2
JL
3363}
3364
387eb92a
PS
3365static int
3366readpages_get_pages(struct address_space *mapping, struct list_head *page_list,
3367 unsigned int rsize, struct list_head *tmplist,
3368 unsigned int *nr_pages, loff_t *offset, unsigned int *bytes)
3369{
3370 struct page *page, *tpage;
3371 unsigned int expected_index;
3372 int rc;
8a5c743e 3373 gfp_t gfp = readahead_gfp_mask(mapping);
387eb92a 3374
69cebd75
PS
3375 INIT_LIST_HEAD(tmplist);
3376
387eb92a
PS
3377 page = list_entry(page_list->prev, struct page, lru);
3378
3379 /*
3380 * Lock the page and put it in the cache. Since no one else
3381 * should have access to this page, we're safe to simply set
3382 * PG_locked without checking it first.
3383 */
48c935ad 3384 __SetPageLocked(page);
387eb92a 3385 rc = add_to_page_cache_locked(page, mapping,
063d99b4 3386 page->index, gfp);
387eb92a
PS
3387
3388 /* give up if we can't stick it in the cache */
3389 if (rc) {
48c935ad 3390 __ClearPageLocked(page);
387eb92a
PS
3391 return rc;
3392 }
3393
3394 /* move first page to the tmplist */
09cbfeaf
KS
3395 *offset = (loff_t)page->index << PAGE_SHIFT;
3396 *bytes = PAGE_SIZE;
387eb92a
PS
3397 *nr_pages = 1;
3398 list_move_tail(&page->lru, tmplist);
3399
3400 /* now try and add more pages onto the request */
3401 expected_index = page->index + 1;
3402 list_for_each_entry_safe_reverse(page, tpage, page_list, lru) {
3403 /* discontinuity ? */
3404 if (page->index != expected_index)
3405 break;
3406
3407 /* would this page push the read over the rsize? */
09cbfeaf 3408 if (*bytes + PAGE_SIZE > rsize)
387eb92a
PS
3409 break;
3410
48c935ad 3411 __SetPageLocked(page);
063d99b4 3412 if (add_to_page_cache_locked(page, mapping, page->index, gfp)) {
48c935ad 3413 __ClearPageLocked(page);
387eb92a
PS
3414 break;
3415 }
3416 list_move_tail(&page->lru, tmplist);
09cbfeaf 3417 (*bytes) += PAGE_SIZE;
387eb92a
PS
3418 expected_index++;
3419 (*nr_pages)++;
3420 }
3421 return rc;
8d5ce4d2
JL
3422}
3423
1da177e4
LT
3424static int cifs_readpages(struct file *file, struct address_space *mapping,
3425 struct list_head *page_list, unsigned num_pages)
3426{
690c5e31
JL
3427 int rc;
3428 struct list_head tmplist;
3429 struct cifsFileInfo *open_file = file->private_data;
7119e220 3430 struct cifs_sb_info *cifs_sb = CIFS_FILE_SB(file);
69cebd75 3431 struct TCP_Server_Info *server;
690c5e31 3432 pid_t pid;
1da177e4 3433
56698236
SJ
3434 /*
3435 * Reads as many pages as possible from fscache. Returns -ENOBUFS
3436 * immediately if the cookie is negative
54afa990
DH
3437 *
3438 * After this point, every page in the list might have PG_fscache set,
3439 * so we will need to clean that up off of every page we don't use.
56698236
SJ
3440 */
3441 rc = cifs_readpages_from_fscache(mapping->host, mapping, page_list,
3442 &num_pages);
3443 if (rc == 0)
690c5e31 3444 return rc;
56698236 3445
d4ffff1f
PS
3446 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_RWPIDFORWARD)
3447 pid = open_file->pid;
3448 else
3449 pid = current->tgid;
3450
690c5e31 3451 rc = 0;
69cebd75 3452 server = tlink_tcon(open_file->tlink)->ses->server;
1da177e4 3453
f96637be
JP
3454 cifs_dbg(FYI, "%s: file=%p mapping=%p num_pages=%u\n",
3455 __func__, file, mapping, num_pages);
690c5e31
JL
3456
3457 /*
3458 * Start with the page at end of list and move it to private
3459 * list. Do the same with any following pages until we hit
3460 * the rsize limit, hit an index discontinuity, or run out of
3461 * pages. Issue the async read and then start the loop again
3462 * until the list is empty.
3463 *
3464 * Note that list order is important. The page_list is in
3465 * the order of declining indexes. When we put the pages in
3466 * the rdata->pages, then we want them in increasing order.
3467 */
3468 while (!list_empty(page_list)) {
bed9da02 3469 unsigned int i, nr_pages, bytes, rsize;
690c5e31
JL
3470 loff_t offset;
3471 struct page *page, *tpage;
3472 struct cifs_readdata *rdata;
bed9da02 3473 unsigned credits;
1da177e4 3474
bed9da02
PS
3475 rc = server->ops->wait_mtu_credits(server, cifs_sb->rsize,
3476 &rsize, &credits);
3477 if (rc)
3478 break;
690c5e31
JL
3479
3480 /*
69cebd75
PS
3481 * Give up immediately if rsize is too small to read an entire
3482 * page. The VFS will fall back to readpage. We should never
3483 * reach this point however since we set ra_pages to 0 when the
3484 * rsize is smaller than a cache page.
690c5e31 3485 */
09cbfeaf 3486 if (unlikely(rsize < PAGE_SIZE)) {
bed9da02 3487 add_credits_and_wake_if(server, credits, 0);
69cebd75 3488 return 0;
bed9da02 3489 }
690c5e31 3490
bed9da02
PS
3491 rc = readpages_get_pages(mapping, page_list, rsize, &tmplist,
3492 &nr_pages, &offset, &bytes);
690c5e31 3493 if (rc) {
bed9da02 3494 add_credits_and_wake_if(server, credits, 0);
690c5e31
JL
3495 break;
3496 }
3497
0471ca3f 3498 rdata = cifs_readdata_alloc(nr_pages, cifs_readv_complete);
690c5e31
JL
3499 if (!rdata) {
3500 /* best to give up if we're out of mem */
3501 list_for_each_entry_safe(page, tpage, &tmplist, lru) {
3502 list_del(&page->lru);
3503 lru_cache_add_file(page);
3504 unlock_page(page);
09cbfeaf 3505 put_page(page);
690c5e31
JL
3506 }
3507 rc = -ENOMEM;
bed9da02 3508 add_credits_and_wake_if(server, credits, 0);
690c5e31
JL
3509 break;
3510 }
3511
6993f74a 3512 rdata->cfile = cifsFileInfo_get(open_file);
690c5e31
JL
3513 rdata->mapping = mapping;
3514 rdata->offset = offset;
3515 rdata->bytes = bytes;
3516 rdata->pid = pid;
09cbfeaf 3517 rdata->pagesz = PAGE_SIZE;
8321fec4 3518 rdata->read_into_pages = cifs_readpages_read_into_pages;
bed9da02 3519 rdata->credits = credits;
c5fab6f4
JL
3520
3521 list_for_each_entry_safe(page, tpage, &tmplist, lru) {
3522 list_del(&page->lru);
3523 rdata->pages[rdata->nr_pages++] = page;
3524 }
690c5e31 3525
69cebd75
PS
3526 if (!rdata->cfile->invalidHandle ||
3527 !cifs_reopen_file(rdata->cfile, true))
3528 rc = server->ops->async_readv(rdata);
3529 if (rc) {
bed9da02 3530 add_credits_and_wake_if(server, rdata->credits, 0);
c5fab6f4
JL
3531 for (i = 0; i < rdata->nr_pages; i++) {
3532 page = rdata->pages[i];
690c5e31
JL
3533 lru_cache_add_file(page);
3534 unlock_page(page);
09cbfeaf 3535 put_page(page);
1da177e4 3536 }
1209bbdf 3537 /* Fallback to the readpage in error/reconnect cases */
6993f74a 3538 kref_put(&rdata->refcount, cifs_readdata_release);
1da177e4
LT
3539 break;
3540 }
6993f74a
JL
3541
3542 kref_put(&rdata->refcount, cifs_readdata_release);
1da177e4
LT
3543 }
3544
54afa990
DH
3545 /* Any pages that have been shown to fscache but didn't get added to
3546 * the pagecache must be uncached before they get returned to the
3547 * allocator.
3548 */
3549 cifs_fscache_readpages_cancel(mapping->host, page_list);
1da177e4
LT
3550 return rc;
3551}
3552
a9e9b7bc
SP
3553/*
3554 * cifs_readpage_worker must be called with the page pinned
3555 */
1da177e4
LT
3556static int cifs_readpage_worker(struct file *file, struct page *page,
3557 loff_t *poffset)
3558{
3559 char *read_data;
3560 int rc;
3561
56698236 3562 /* Is the page cached? */
496ad9aa 3563 rc = cifs_readpage_from_fscache(file_inode(file), page);
56698236
SJ
3564 if (rc == 0)
3565 goto read_complete;
3566
1da177e4
LT
3567 read_data = kmap(page);
3568 /* for reads over a certain size could initiate async read ahead */
fb8c4b14 3569
09cbfeaf 3570 rc = cifs_read(file, read_data, PAGE_SIZE, poffset);
fb8c4b14 3571
1da177e4
LT
3572 if (rc < 0)
3573 goto io_error;
3574 else
f96637be 3575 cifs_dbg(FYI, "Bytes read %d\n", rc);
fb8c4b14 3576
496ad9aa 3577 file_inode(file)->i_atime =
c2050a45 3578 current_time(file_inode(file));
fb8c4b14 3579
09cbfeaf
KS
3580 if (PAGE_SIZE > rc)
3581 memset(read_data + rc, 0, PAGE_SIZE - rc);
1da177e4
LT
3582
3583 flush_dcache_page(page);
3584 SetPageUptodate(page);
9dc06558
SJ
3585
3586 /* send this page to the cache */
496ad9aa 3587 cifs_readpage_to_fscache(file_inode(file), page);
9dc06558 3588
1da177e4 3589 rc = 0;
fb8c4b14 3590
1da177e4 3591io_error:
fb8c4b14 3592 kunmap(page);
466bd31b 3593 unlock_page(page);
56698236
SJ
3594
3595read_complete:
1da177e4
LT
3596 return rc;
3597}
3598
3599static int cifs_readpage(struct file *file, struct page *page)
3600{
09cbfeaf 3601 loff_t offset = (loff_t)page->index << PAGE_SHIFT;
1da177e4 3602 int rc = -EACCES;
6d5786a3 3603 unsigned int xid;
1da177e4 3604
6d5786a3 3605 xid = get_xid();
1da177e4
LT
3606
3607 if (file->private_data == NULL) {
0f3bc09e 3608 rc = -EBADF;
6d5786a3 3609 free_xid(xid);
0f3bc09e 3610 return rc;
1da177e4
LT
3611 }
3612
f96637be 3613 cifs_dbg(FYI, "readpage %p at offset %d 0x%x\n",
b6b38f70 3614 page, (int)offset, (int)offset);
1da177e4
LT
3615
3616 rc = cifs_readpage_worker(file, page, &offset);
3617
6d5786a3 3618 free_xid(xid);
1da177e4
LT
3619 return rc;
3620}
3621
a403a0a3
SF
3622static int is_inode_writable(struct cifsInodeInfo *cifs_inode)
3623{
3624 struct cifsFileInfo *open_file;
3afca265
SF
3625 struct cifs_tcon *tcon =
3626 cifs_sb_master_tcon(CIFS_SB(cifs_inode->vfs_inode.i_sb));
a403a0a3 3627
3afca265 3628 spin_lock(&tcon->open_file_lock);
a403a0a3 3629 list_for_each_entry(open_file, &cifs_inode->openFileList, flist) {
2e396b83 3630 if (OPEN_FMODE(open_file->f_flags) & FMODE_WRITE) {
3afca265 3631 spin_unlock(&tcon->open_file_lock);
a403a0a3
SF
3632 return 1;
3633 }
3634 }
3afca265 3635 spin_unlock(&tcon->open_file_lock);
a403a0a3
SF
3636 return 0;
3637}
3638
1da177e4
LT
3639/* We do not want to update the file size from server for inodes
3640 open for write - to avoid races with writepage extending
3641 the file - in the future we could consider allowing
fb8c4b14 3642 refreshing the inode only on increases in the file size
1da177e4
LT
3643 but this is tricky to do without racing with writebehind
3644 page caching in the current Linux kernel design */
4b18f2a9 3645bool is_size_safe_to_change(struct cifsInodeInfo *cifsInode, __u64 end_of_file)
1da177e4 3646{
a403a0a3 3647 if (!cifsInode)
4b18f2a9 3648 return true;
50c2f753 3649
a403a0a3
SF
3650 if (is_inode_writable(cifsInode)) {
3651 /* This inode is open for write at least once */
c32a0b68
SF
3652 struct cifs_sb_info *cifs_sb;
3653
c32a0b68 3654 cifs_sb = CIFS_SB(cifsInode->vfs_inode.i_sb);
ad7a2926 3655 if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_DIRECT_IO) {
fb8c4b14 3656 /* since no page cache to corrupt on directio
c32a0b68 3657 we can change size safely */
4b18f2a9 3658 return true;
c32a0b68
SF
3659 }
3660
fb8c4b14 3661 if (i_size_read(&cifsInode->vfs_inode) < end_of_file)
4b18f2a9 3662 return true;
7ba52631 3663
4b18f2a9 3664 return false;
23e7dd7d 3665 } else
4b18f2a9 3666 return true;
1da177e4
LT
3667}
3668
d9414774
NP
3669static int cifs_write_begin(struct file *file, struct address_space *mapping,
3670 loff_t pos, unsigned len, unsigned flags,
3671 struct page **pagep, void **fsdata)
1da177e4 3672{
466bd31b 3673 int oncethru = 0;
09cbfeaf
KS
3674 pgoff_t index = pos >> PAGE_SHIFT;
3675 loff_t offset = pos & (PAGE_SIZE - 1);
a98ee8c1
JL
3676 loff_t page_start = pos & PAGE_MASK;
3677 loff_t i_size;
3678 struct page *page;
3679 int rc = 0;
d9414774 3680
f96637be 3681 cifs_dbg(FYI, "write_begin from %lld len %d\n", (long long)pos, len);
d9414774 3682
466bd31b 3683start:
54566b2c 3684 page = grab_cache_page_write_begin(mapping, index, flags);
a98ee8c1
JL
3685 if (!page) {
3686 rc = -ENOMEM;
3687 goto out;
3688 }
8a236264 3689
a98ee8c1
JL
3690 if (PageUptodate(page))
3691 goto out;
8a236264 3692
a98ee8c1
JL
3693 /*
3694 * If we write a full page it will be up to date, no need to read from
3695 * the server. If the write is short, we'll end up doing a sync write
3696 * instead.
3697 */
09cbfeaf 3698 if (len == PAGE_SIZE)
a98ee8c1 3699 goto out;
8a236264 3700
a98ee8c1
JL
3701 /*
3702 * optimize away the read when we have an oplock, and we're not
3703 * expecting to use any of the data we'd be reading in. That
3704 * is, when the page lies beyond the EOF, or straddles the EOF
3705 * and the write will cover all of the existing data.
3706 */
18cceb6a 3707 if (CIFS_CACHE_READ(CIFS_I(mapping->host))) {
a98ee8c1
JL
3708 i_size = i_size_read(mapping->host);
3709 if (page_start >= i_size ||
3710 (offset == 0 && (pos + len) >= i_size)) {
3711 zero_user_segments(page, 0, offset,
3712 offset + len,
09cbfeaf 3713 PAGE_SIZE);
a98ee8c1
JL
3714 /*
3715 * PageChecked means that the parts of the page
3716 * to which we're not writing are considered up
3717 * to date. Once the data is copied to the
3718 * page, it can be set uptodate.
3719 */
3720 SetPageChecked(page);
3721 goto out;
3722 }
3723 }
d9414774 3724
466bd31b 3725 if ((file->f_flags & O_ACCMODE) != O_WRONLY && !oncethru) {
a98ee8c1
JL
3726 /*
3727 * might as well read a page, it is fast enough. If we get
3728 * an error, we don't need to return it. cifs_write_end will
3729 * do a sync write instead since PG_uptodate isn't set.
3730 */
3731 cifs_readpage_worker(file, page, &page_start);
09cbfeaf 3732 put_page(page);
466bd31b
SP
3733 oncethru = 1;
3734 goto start;
8a236264
SF
3735 } else {
3736 /* we could try using another file handle if there is one -
3737 but how would we lock it to prevent close of that handle
3738 racing with this read? In any case
d9414774 3739 this will be written out by write_end so is fine */
1da177e4 3740 }
a98ee8c1
JL
3741out:
3742 *pagep = page;
3743 return rc;
1da177e4
LT
3744}
3745
85f2d6b4
SJ
3746static int cifs_release_page(struct page *page, gfp_t gfp)
3747{
3748 if (PagePrivate(page))
3749 return 0;
3750
3751 return cifs_fscache_release_page(page, gfp);
3752}
3753
d47992f8
LC
3754static void cifs_invalidate_page(struct page *page, unsigned int offset,
3755 unsigned int length)
85f2d6b4
SJ
3756{
3757 struct cifsInodeInfo *cifsi = CIFS_I(page->mapping->host);
3758
09cbfeaf 3759 if (offset == 0 && length == PAGE_SIZE)
85f2d6b4
SJ
3760 cifs_fscache_invalidate_page(page, &cifsi->vfs_inode);
3761}
3762
9ad1506b
PS
3763static int cifs_launder_page(struct page *page)
3764{
3765 int rc = 0;
3766 loff_t range_start = page_offset(page);
09cbfeaf 3767 loff_t range_end = range_start + (loff_t)(PAGE_SIZE - 1);
9ad1506b
PS
3768 struct writeback_control wbc = {
3769 .sync_mode = WB_SYNC_ALL,
3770 .nr_to_write = 0,
3771 .range_start = range_start,
3772 .range_end = range_end,
3773 };
3774
f96637be 3775 cifs_dbg(FYI, "Launder page: %p\n", page);
9ad1506b
PS
3776
3777 if (clear_page_dirty_for_io(page))
3778 rc = cifs_writepage_locked(page, &wbc);
3779
3780 cifs_fscache_invalidate_page(page, page->mapping->host);
3781 return rc;
3782}
3783
9b646972 3784void cifs_oplock_break(struct work_struct *work)
3bc303c2
JL
3785{
3786 struct cifsFileInfo *cfile = container_of(work, struct cifsFileInfo,
3787 oplock_break);
2b0143b5 3788 struct inode *inode = d_inode(cfile->dentry);
3bc303c2 3789 struct cifsInodeInfo *cinode = CIFS_I(inode);
95a3f2f3 3790 struct cifs_tcon *tcon = tlink_tcon(cfile->tlink);
c11f1df5 3791 struct TCP_Server_Info *server = tcon->ses->server;
eb4b756b 3792 int rc = 0;
3bc303c2 3793
c11f1df5 3794 wait_on_bit(&cinode->flags, CIFS_INODE_PENDING_WRITERS,
74316201 3795 TASK_UNINTERRUPTIBLE);
c11f1df5
SP
3796
3797 server->ops->downgrade_oplock(server, cinode,
3798 test_bit(CIFS_INODE_DOWNGRADE_OPLOCK_TO_L2, &cinode->flags));
3799
18cceb6a 3800 if (!CIFS_CACHE_WRITE(cinode) && CIFS_CACHE_READ(cinode) &&
63b7d3a4 3801 cifs_has_mand_locks(cinode)) {
f96637be
JP
3802 cifs_dbg(FYI, "Reset oplock to None for inode=%p due to mand locks\n",
3803 inode);
18cceb6a 3804 cinode->oplock = 0;
63b7d3a4
PS
3805 }
3806
3bc303c2 3807 if (inode && S_ISREG(inode->i_mode)) {
18cceb6a 3808 if (CIFS_CACHE_READ(cinode))
8737c930 3809 break_lease(inode, O_RDONLY);
d54ff732 3810 else
8737c930 3811 break_lease(inode, O_WRONLY);
3bc303c2 3812 rc = filemap_fdatawrite(inode->i_mapping);
18cceb6a 3813 if (!CIFS_CACHE_READ(cinode)) {
eb4b756b
JL
3814 rc = filemap_fdatawait(inode->i_mapping);
3815 mapping_set_error(inode->i_mapping, rc);
4f73c7d3 3816 cifs_zap_mapping(inode);
3bc303c2 3817 }
f96637be 3818 cifs_dbg(FYI, "Oplock flush inode %p rc %d\n", inode, rc);
3bc303c2
JL
3819 }
3820
85160e03
PS
3821 rc = cifs_push_locks(cfile);
3822 if (rc)
f96637be 3823 cifs_dbg(VFS, "Push locks rc = %d\n", rc);
85160e03 3824
3bc303c2
JL
3825 /*
3826 * releasing stale oplock after recent reconnect of smb session using
3827 * a now incorrect file handle is not a data integrity issue but do
3828 * not bother sending an oplock release if session to server still is
3829 * disconnected since oplock already released by the server
3830 */
cdff08e7 3831 if (!cfile->oplock_break_cancelled) {
95a3f2f3
PS
3832 rc = tcon->ses->server->ops->oplock_response(tcon, &cfile->fid,
3833 cinode);
f96637be 3834 cifs_dbg(FYI, "Oplock release rc = %d\n", rc);
3bc303c2 3835 }
c11f1df5 3836 cifs_done_oplock_break(cinode);
3bc303c2
JL
3837}
3838
dca69288
SF
3839/*
3840 * The presence of cifs_direct_io() in the address space ops vector
3841 * allowes open() O_DIRECT flags which would have failed otherwise.
3842 *
3843 * In the non-cached mode (mount with cache=none), we shunt off direct read and write requests
3844 * so this method should never be called.
3845 *
3846 * Direct IO is not yet supported in the cached mode.
3847 */
3848static ssize_t
c8b8e32d 3849cifs_direct_io(struct kiocb *iocb, struct iov_iter *iter)
dca69288
SF
3850{
3851 /*
3852 * FIXME
3853 * Eventually need to support direct IO for non forcedirectio mounts
3854 */
3855 return -EINVAL;
3856}
3857
3858
f5e54d6e 3859const struct address_space_operations cifs_addr_ops = {
1da177e4
LT
3860 .readpage = cifs_readpage,
3861 .readpages = cifs_readpages,
3862 .writepage = cifs_writepage,
37c0eb46 3863 .writepages = cifs_writepages,
d9414774
NP
3864 .write_begin = cifs_write_begin,
3865 .write_end = cifs_write_end,
1da177e4 3866 .set_page_dirty = __set_page_dirty_nobuffers,
85f2d6b4 3867 .releasepage = cifs_release_page,
dca69288 3868 .direct_IO = cifs_direct_io,
85f2d6b4 3869 .invalidatepage = cifs_invalidate_page,
9ad1506b 3870 .launder_page = cifs_launder_page,
1da177e4 3871};
273d81d6
DK
3872
3873/*
3874 * cifs_readpages requires the server to support a buffer large enough to
3875 * contain the header plus one complete page of data. Otherwise, we need
3876 * to leave cifs_readpages out of the address space operations.
3877 */
f5e54d6e 3878const struct address_space_operations cifs_addr_ops_smallbuf = {
273d81d6
DK
3879 .readpage = cifs_readpage,
3880 .writepage = cifs_writepage,
3881 .writepages = cifs_writepages,
d9414774
NP
3882 .write_begin = cifs_write_begin,
3883 .write_end = cifs_write_end,
273d81d6 3884 .set_page_dirty = __set_page_dirty_nobuffers,
85f2d6b4
SJ
3885 .releasepage = cifs_release_page,
3886 .invalidatepage = cifs_invalidate_page,
9ad1506b 3887 .launder_page = cifs_launder_page,
273d81d6 3888};