2 FUSE: Filesystem in Userspace
3 Copyright (C) 2001-2008 Miklos Szeredi <miklos@szeredi.hu>
5 This program can be distributed under the terms of the GNU GPL.
11 #include <linux/pagemap.h>
12 #include <linux/file.h>
13 #include <linux/sched.h>
14 #include <linux/namei.h>
15 #include <linux/slab.h>
17 static bool fuse_use_readdirplus(struct inode
*dir
, struct dir_context
*ctx
)
19 struct fuse_conn
*fc
= get_fuse_conn(dir
);
20 struct fuse_inode
*fi
= get_fuse_inode(dir
);
22 if (!fc
->do_readdirplus
)
24 if (!fc
->readdirplus_auto
)
26 if (test_and_clear_bit(FUSE_I_ADVISE_RDPLUS
, &fi
->state
))
33 static void fuse_advise_use_readdirplus(struct inode
*dir
)
35 struct fuse_inode
*fi
= get_fuse_inode(dir
);
37 set_bit(FUSE_I_ADVISE_RDPLUS
, &fi
->state
);
40 #if BITS_PER_LONG >= 64
41 static inline void fuse_dentry_settime(struct dentry
*entry
, u64 time
)
46 static inline u64
fuse_dentry_time(struct dentry
*entry
)
52 * On 32 bit archs store the high 32 bits of time in d_fsdata
54 static void fuse_dentry_settime(struct dentry
*entry
, u64 time
)
57 entry
->d_fsdata
= (void *) (unsigned long) (time
>> 32);
60 static u64
fuse_dentry_time(struct dentry
*entry
)
62 return (u64
) entry
->d_time
+
63 ((u64
) (unsigned long) entry
->d_fsdata
<< 32);
68 * FUSE caches dentries and attributes with separate timeout. The
69 * time in jiffies until the dentry/attributes are valid is stored in
70 * dentry->d_time and fuse_inode->i_time respectively.
74 * Calculate the time in jiffies until a dentry/attributes are valid
76 static u64
time_to_jiffies(unsigned long sec
, unsigned long nsec
)
79 struct timespec ts
= {sec
, nsec
};
80 return get_jiffies_64() + timespec_to_jiffies(&ts
);
86 * Set dentry and possibly attribute timeouts from the lookup/mk*
89 static void fuse_change_entry_timeout(struct dentry
*entry
,
90 struct fuse_entry_out
*o
)
92 fuse_dentry_settime(entry
,
93 time_to_jiffies(o
->entry_valid
, o
->entry_valid_nsec
));
96 static u64
attr_timeout(struct fuse_attr_out
*o
)
98 return time_to_jiffies(o
->attr_valid
, o
->attr_valid_nsec
);
101 static u64
entry_attr_timeout(struct fuse_entry_out
*o
)
103 return time_to_jiffies(o
->attr_valid
, o
->attr_valid_nsec
);
107 * Mark the attributes as stale, so that at the next call to
108 * ->getattr() they will be fetched from userspace
110 void fuse_invalidate_attr(struct inode
*inode
)
112 get_fuse_inode(inode
)->i_time
= 0;
116 * Mark the attributes as stale due to an atime change. Avoid the invalidate if
119 void fuse_invalidate_atime(struct inode
*inode
)
121 if (!IS_RDONLY(inode
))
122 fuse_invalidate_attr(inode
);
126 * Just mark the entry as stale, so that a next attempt to look it up
127 * will result in a new lookup call to userspace
129 * This is called when a dentry is about to become negative and the
130 * timeout is unknown (unlink, rmdir, rename and in some cases
133 void fuse_invalidate_entry_cache(struct dentry
*entry
)
135 fuse_dentry_settime(entry
, 0);
139 * Same as fuse_invalidate_entry_cache(), but also try to remove the
140 * dentry from the hash
142 static void fuse_invalidate_entry(struct dentry
*entry
)
145 fuse_invalidate_entry_cache(entry
);
148 static void fuse_lookup_init(struct fuse_conn
*fc
, struct fuse_args
*args
,
149 u64 nodeid
, const struct qstr
*name
,
150 struct fuse_entry_out
*outarg
)
152 memset(outarg
, 0, sizeof(struct fuse_entry_out
));
153 args
->in
.h
.opcode
= FUSE_LOOKUP
;
154 args
->in
.h
.nodeid
= nodeid
;
155 args
->in
.numargs
= 1;
156 args
->in
.args
[0].size
= name
->len
+ 1;
157 args
->in
.args
[0].value
= name
->name
;
158 args
->out
.numargs
= 1;
159 args
->out
.args
[0].size
= sizeof(struct fuse_entry_out
);
160 args
->out
.args
[0].value
= outarg
;
163 u64
fuse_get_attr_version(struct fuse_conn
*fc
)
168 * The spin lock isn't actually needed on 64bit archs, but we
169 * don't yet care too much about such optimizations.
171 spin_lock(&fc
->lock
);
172 curr_version
= fc
->attr_version
;
173 spin_unlock(&fc
->lock
);
179 * Check whether the dentry is still valid
181 * If the entry validity timeout has expired and the dentry is
182 * positive, try to redo the lookup. If the lookup results in a
183 * different inode, then let the VFS invalidate the dentry and redo
184 * the lookup once more. If the lookup results in the same inode,
185 * then refresh the attributes, timeouts and mark the dentry valid.
187 static int fuse_dentry_revalidate(struct dentry
*entry
, unsigned int flags
)
190 struct dentry
*parent
;
191 struct fuse_conn
*fc
;
192 struct fuse_inode
*fi
;
195 inode
= d_inode_rcu(entry
);
196 if (inode
&& is_bad_inode(inode
))
198 else if (time_before64(fuse_dentry_time(entry
), get_jiffies_64()) ||
199 (flags
& LOOKUP_REVAL
)) {
200 struct fuse_entry_out outarg
;
202 struct fuse_forget_link
*forget
;
205 /* For negative dentries, always do a fresh lookup */
210 if (flags
& LOOKUP_RCU
)
213 fc
= get_fuse_conn(inode
);
215 forget
= fuse_alloc_forget();
220 attr_version
= fuse_get_attr_version(fc
);
222 parent
= dget_parent(entry
);
223 fuse_lookup_init(fc
, &args
, get_node_id(d_inode(parent
)),
224 &entry
->d_name
, &outarg
);
225 ret
= fuse_simple_request(fc
, &args
);
227 /* Zero nodeid is same as -ENOENT */
228 if (!ret
&& !outarg
.nodeid
)
231 fi
= get_fuse_inode(inode
);
232 if (outarg
.nodeid
!= get_node_id(inode
)) {
233 fuse_queue_forget(fc
, forget
, outarg
.nodeid
, 1);
236 spin_lock(&fc
->lock
);
238 spin_unlock(&fc
->lock
);
243 if (ret
|| (outarg
.attr
.mode
^ inode
->i_mode
) & S_IFMT
)
246 fuse_change_attributes(inode
, &outarg
.attr
,
247 entry_attr_timeout(&outarg
),
249 fuse_change_entry_timeout(entry
, &outarg
);
251 fi
= get_fuse_inode(inode
);
252 if (flags
& LOOKUP_RCU
) {
253 if (test_bit(FUSE_I_INIT_RDPLUS
, &fi
->state
))
255 } else if (test_and_clear_bit(FUSE_I_INIT_RDPLUS
, &fi
->state
)) {
256 parent
= dget_parent(entry
);
257 fuse_advise_use_readdirplus(d_inode(parent
));
270 static int invalid_nodeid(u64 nodeid
)
272 return !nodeid
|| nodeid
== FUSE_ROOT_ID
;
275 const struct dentry_operations fuse_dentry_operations
= {
276 .d_revalidate
= fuse_dentry_revalidate
,
279 int fuse_valid_type(int m
)
281 return S_ISREG(m
) || S_ISDIR(m
) || S_ISLNK(m
) || S_ISCHR(m
) ||
282 S_ISBLK(m
) || S_ISFIFO(m
) || S_ISSOCK(m
);
285 int fuse_lookup_name(struct super_block
*sb
, u64 nodeid
, const struct qstr
*name
,
286 struct fuse_entry_out
*outarg
, struct inode
**inode
)
288 struct fuse_conn
*fc
= get_fuse_conn_super(sb
);
290 struct fuse_forget_link
*forget
;
296 if (name
->len
> FUSE_NAME_MAX
)
300 forget
= fuse_alloc_forget();
305 attr_version
= fuse_get_attr_version(fc
);
307 fuse_lookup_init(fc
, &args
, nodeid
, name
, outarg
);
308 err
= fuse_simple_request(fc
, &args
);
309 /* Zero nodeid is same as -ENOENT, but with valid timeout */
310 if (err
|| !outarg
->nodeid
)
316 if (!fuse_valid_type(outarg
->attr
.mode
))
319 *inode
= fuse_iget(sb
, outarg
->nodeid
, outarg
->generation
,
320 &outarg
->attr
, entry_attr_timeout(outarg
),
324 fuse_queue_forget(fc
, forget
, outarg
->nodeid
, 1);
335 static struct dentry
*fuse_lookup(struct inode
*dir
, struct dentry
*entry
,
339 struct fuse_entry_out outarg
;
341 struct dentry
*newent
;
342 bool outarg_valid
= true;
344 fuse_lock_inode(dir
);
345 err
= fuse_lookup_name(dir
->i_sb
, get_node_id(dir
), &entry
->d_name
,
347 fuse_unlock_inode(dir
);
348 if (err
== -ENOENT
) {
349 outarg_valid
= false;
356 if (inode
&& get_node_id(inode
) == FUSE_ROOT_ID
)
359 newent
= d_splice_alias(inode
, entry
);
360 err
= PTR_ERR(newent
);
364 entry
= newent
? newent
: entry
;
366 fuse_change_entry_timeout(entry
, &outarg
);
368 fuse_invalidate_entry_cache(entry
);
370 fuse_advise_use_readdirplus(dir
);
380 * Atomic create+open operation
382 * If the filesystem doesn't support this, then fall back to separate
383 * 'mknod' + 'open' requests.
385 static int fuse_create_open(struct inode
*dir
, struct dentry
*entry
,
386 struct file
*file
, unsigned flags
,
387 umode_t mode
, int *opened
)
391 struct fuse_conn
*fc
= get_fuse_conn(dir
);
393 struct fuse_forget_link
*forget
;
394 struct fuse_create_in inarg
;
395 struct fuse_open_out outopen
;
396 struct fuse_entry_out outentry
;
397 struct fuse_file
*ff
;
399 /* Userspace expects S_IFREG in create mode */
400 BUG_ON((mode
& S_IFMT
) != S_IFREG
);
402 forget
= fuse_alloc_forget();
408 ff
= fuse_file_alloc(fc
);
410 goto out_put_forget_req
;
413 mode
&= ~current_umask();
416 memset(&inarg
, 0, sizeof(inarg
));
417 memset(&outentry
, 0, sizeof(outentry
));
420 inarg
.umask
= current_umask();
421 args
.in
.h
.opcode
= FUSE_CREATE
;
422 args
.in
.h
.nodeid
= get_node_id(dir
);
424 args
.in
.args
[0].size
= sizeof(inarg
);
425 args
.in
.args
[0].value
= &inarg
;
426 args
.in
.args
[1].size
= entry
->d_name
.len
+ 1;
427 args
.in
.args
[1].value
= entry
->d_name
.name
;
428 args
.out
.numargs
= 2;
429 args
.out
.args
[0].size
= sizeof(outentry
);
430 args
.out
.args
[0].value
= &outentry
;
431 args
.out
.args
[1].size
= sizeof(outopen
);
432 args
.out
.args
[1].value
= &outopen
;
433 err
= fuse_simple_request(fc
, &args
);
438 if (!S_ISREG(outentry
.attr
.mode
) || invalid_nodeid(outentry
.nodeid
))
442 ff
->nodeid
= outentry
.nodeid
;
443 ff
->open_flags
= outopen
.open_flags
;
444 inode
= fuse_iget(dir
->i_sb
, outentry
.nodeid
, outentry
.generation
,
445 &outentry
.attr
, entry_attr_timeout(&outentry
), 0);
447 flags
&= ~(O_CREAT
| O_EXCL
| O_TRUNC
);
448 fuse_sync_release(ff
, flags
);
449 fuse_queue_forget(fc
, forget
, outentry
.nodeid
, 1);
454 d_instantiate(entry
, inode
);
455 fuse_change_entry_timeout(entry
, &outentry
);
456 fuse_invalidate_attr(dir
);
457 err
= finish_open(file
, entry
, generic_file_open
, opened
);
459 fuse_sync_release(ff
, flags
);
461 file
->private_data
= fuse_file_get(ff
);
462 fuse_finish_open(inode
, file
);
474 static int fuse_mknod(struct inode
*, struct dentry
*, umode_t
, dev_t
);
475 static int fuse_atomic_open(struct inode
*dir
, struct dentry
*entry
,
476 struct file
*file
, unsigned flags
,
477 umode_t mode
, int *opened
)
480 struct fuse_conn
*fc
= get_fuse_conn(dir
);
481 struct dentry
*res
= NULL
;
483 if (d_in_lookup(entry
)) {
484 res
= fuse_lookup(dir
, entry
, 0);
492 if (!(flags
& O_CREAT
) || d_really_is_positive(entry
))
496 *opened
|= FILE_CREATED
;
501 err
= fuse_create_open(dir
, entry
, file
, flags
, mode
, opened
);
502 if (err
== -ENOSYS
) {
511 err
= fuse_mknod(dir
, entry
, mode
, 0);
515 return finish_no_open(file
, res
);
519 * Code shared between mknod, mkdir, symlink and link
521 static int create_new_entry(struct fuse_conn
*fc
, struct fuse_args
*args
,
522 struct inode
*dir
, struct dentry
*entry
,
525 struct fuse_entry_out outarg
;
528 struct fuse_forget_link
*forget
;
530 forget
= fuse_alloc_forget();
534 memset(&outarg
, 0, sizeof(outarg
));
535 args
->in
.h
.nodeid
= get_node_id(dir
);
536 args
->out
.numargs
= 1;
537 args
->out
.args
[0].size
= sizeof(outarg
);
538 args
->out
.args
[0].value
= &outarg
;
539 err
= fuse_simple_request(fc
, args
);
541 goto out_put_forget_req
;
544 if (invalid_nodeid(outarg
.nodeid
))
545 goto out_put_forget_req
;
547 if ((outarg
.attr
.mode
^ mode
) & S_IFMT
)
548 goto out_put_forget_req
;
550 inode
= fuse_iget(dir
->i_sb
, outarg
.nodeid
, outarg
.generation
,
551 &outarg
.attr
, entry_attr_timeout(&outarg
), 0);
553 fuse_queue_forget(fc
, forget
, outarg
.nodeid
, 1);
558 err
= d_instantiate_no_diralias(entry
, inode
);
562 fuse_change_entry_timeout(entry
, &outarg
);
563 fuse_invalidate_attr(dir
);
571 static int fuse_mknod(struct inode
*dir
, struct dentry
*entry
, umode_t mode
,
574 struct fuse_mknod_in inarg
;
575 struct fuse_conn
*fc
= get_fuse_conn(dir
);
579 mode
&= ~current_umask();
581 memset(&inarg
, 0, sizeof(inarg
));
583 inarg
.rdev
= new_encode_dev(rdev
);
584 inarg
.umask
= current_umask();
585 args
.in
.h
.opcode
= FUSE_MKNOD
;
587 args
.in
.args
[0].size
= sizeof(inarg
);
588 args
.in
.args
[0].value
= &inarg
;
589 args
.in
.args
[1].size
= entry
->d_name
.len
+ 1;
590 args
.in
.args
[1].value
= entry
->d_name
.name
;
591 return create_new_entry(fc
, &args
, dir
, entry
, mode
);
594 static int fuse_create(struct inode
*dir
, struct dentry
*entry
, umode_t mode
,
597 return fuse_mknod(dir
, entry
, mode
, 0);
600 static int fuse_mkdir(struct inode
*dir
, struct dentry
*entry
, umode_t mode
)
602 struct fuse_mkdir_in inarg
;
603 struct fuse_conn
*fc
= get_fuse_conn(dir
);
607 mode
&= ~current_umask();
609 memset(&inarg
, 0, sizeof(inarg
));
611 inarg
.umask
= current_umask();
612 args
.in
.h
.opcode
= FUSE_MKDIR
;
614 args
.in
.args
[0].size
= sizeof(inarg
);
615 args
.in
.args
[0].value
= &inarg
;
616 args
.in
.args
[1].size
= entry
->d_name
.len
+ 1;
617 args
.in
.args
[1].value
= entry
->d_name
.name
;
618 return create_new_entry(fc
, &args
, dir
, entry
, S_IFDIR
);
621 static int fuse_symlink(struct inode
*dir
, struct dentry
*entry
,
624 struct fuse_conn
*fc
= get_fuse_conn(dir
);
625 unsigned len
= strlen(link
) + 1;
628 args
.in
.h
.opcode
= FUSE_SYMLINK
;
630 args
.in
.args
[0].size
= entry
->d_name
.len
+ 1;
631 args
.in
.args
[0].value
= entry
->d_name
.name
;
632 args
.in
.args
[1].size
= len
;
633 args
.in
.args
[1].value
= link
;
634 return create_new_entry(fc
, &args
, dir
, entry
, S_IFLNK
);
637 static inline void fuse_update_ctime(struct inode
*inode
)
639 if (!IS_NOCMTIME(inode
)) {
640 inode
->i_ctime
= current_fs_time(inode
->i_sb
);
641 mark_inode_dirty_sync(inode
);
645 static int fuse_unlink(struct inode
*dir
, struct dentry
*entry
)
648 struct fuse_conn
*fc
= get_fuse_conn(dir
);
651 args
.in
.h
.opcode
= FUSE_UNLINK
;
652 args
.in
.h
.nodeid
= get_node_id(dir
);
654 args
.in
.args
[0].size
= entry
->d_name
.len
+ 1;
655 args
.in
.args
[0].value
= entry
->d_name
.name
;
656 err
= fuse_simple_request(fc
, &args
);
658 struct inode
*inode
= d_inode(entry
);
659 struct fuse_inode
*fi
= get_fuse_inode(inode
);
661 spin_lock(&fc
->lock
);
662 fi
->attr_version
= ++fc
->attr_version
;
664 * If i_nlink == 0 then unlink doesn't make sense, yet this can
665 * happen if userspace filesystem is careless. It would be
666 * difficult to enforce correct nlink usage so just ignore this
669 if (inode
->i_nlink
> 0)
671 spin_unlock(&fc
->lock
);
672 fuse_invalidate_attr(inode
);
673 fuse_invalidate_attr(dir
);
674 fuse_invalidate_entry_cache(entry
);
675 fuse_update_ctime(inode
);
676 } else if (err
== -EINTR
)
677 fuse_invalidate_entry(entry
);
681 static int fuse_rmdir(struct inode
*dir
, struct dentry
*entry
)
684 struct fuse_conn
*fc
= get_fuse_conn(dir
);
687 args
.in
.h
.opcode
= FUSE_RMDIR
;
688 args
.in
.h
.nodeid
= get_node_id(dir
);
690 args
.in
.args
[0].size
= entry
->d_name
.len
+ 1;
691 args
.in
.args
[0].value
= entry
->d_name
.name
;
692 err
= fuse_simple_request(fc
, &args
);
694 clear_nlink(d_inode(entry
));
695 fuse_invalidate_attr(dir
);
696 fuse_invalidate_entry_cache(entry
);
697 } else if (err
== -EINTR
)
698 fuse_invalidate_entry(entry
);
702 static int fuse_rename_common(struct inode
*olddir
, struct dentry
*oldent
,
703 struct inode
*newdir
, struct dentry
*newent
,
704 unsigned int flags
, int opcode
, size_t argsize
)
707 struct fuse_rename2_in inarg
;
708 struct fuse_conn
*fc
= get_fuse_conn(olddir
);
711 memset(&inarg
, 0, argsize
);
712 inarg
.newdir
= get_node_id(newdir
);
714 args
.in
.h
.opcode
= opcode
;
715 args
.in
.h
.nodeid
= get_node_id(olddir
);
717 args
.in
.args
[0].size
= argsize
;
718 args
.in
.args
[0].value
= &inarg
;
719 args
.in
.args
[1].size
= oldent
->d_name
.len
+ 1;
720 args
.in
.args
[1].value
= oldent
->d_name
.name
;
721 args
.in
.args
[2].size
= newent
->d_name
.len
+ 1;
722 args
.in
.args
[2].value
= newent
->d_name
.name
;
723 err
= fuse_simple_request(fc
, &args
);
726 fuse_invalidate_attr(d_inode(oldent
));
727 fuse_update_ctime(d_inode(oldent
));
729 if (flags
& RENAME_EXCHANGE
) {
730 fuse_invalidate_attr(d_inode(newent
));
731 fuse_update_ctime(d_inode(newent
));
734 fuse_invalidate_attr(olddir
);
735 if (olddir
!= newdir
)
736 fuse_invalidate_attr(newdir
);
738 /* newent will end up negative */
739 if (!(flags
& RENAME_EXCHANGE
) && d_really_is_positive(newent
)) {
740 fuse_invalidate_attr(d_inode(newent
));
741 fuse_invalidate_entry_cache(newent
);
742 fuse_update_ctime(d_inode(newent
));
744 } else if (err
== -EINTR
) {
745 /* If request was interrupted, DEITY only knows if the
746 rename actually took place. If the invalidation
747 fails (e.g. some process has CWD under the renamed
748 directory), then there can be inconsistency between
749 the dcache and the real filesystem. Tough luck. */
750 fuse_invalidate_entry(oldent
);
751 if (d_really_is_positive(newent
))
752 fuse_invalidate_entry(newent
);
758 static int fuse_rename2(struct inode
*olddir
, struct dentry
*oldent
,
759 struct inode
*newdir
, struct dentry
*newent
,
762 struct fuse_conn
*fc
= get_fuse_conn(olddir
);
765 if (flags
& ~(RENAME_NOREPLACE
| RENAME_EXCHANGE
))
769 if (fc
->no_rename2
|| fc
->minor
< 23)
772 err
= fuse_rename_common(olddir
, oldent
, newdir
, newent
, flags
,
774 sizeof(struct fuse_rename2_in
));
775 if (err
== -ENOSYS
) {
780 err
= fuse_rename_common(olddir
, oldent
, newdir
, newent
, 0,
782 sizeof(struct fuse_rename_in
));
788 static int fuse_link(struct dentry
*entry
, struct inode
*newdir
,
789 struct dentry
*newent
)
792 struct fuse_link_in inarg
;
793 struct inode
*inode
= d_inode(entry
);
794 struct fuse_conn
*fc
= get_fuse_conn(inode
);
797 memset(&inarg
, 0, sizeof(inarg
));
798 inarg
.oldnodeid
= get_node_id(inode
);
799 args
.in
.h
.opcode
= FUSE_LINK
;
801 args
.in
.args
[0].size
= sizeof(inarg
);
802 args
.in
.args
[0].value
= &inarg
;
803 args
.in
.args
[1].size
= newent
->d_name
.len
+ 1;
804 args
.in
.args
[1].value
= newent
->d_name
.name
;
805 err
= create_new_entry(fc
, &args
, newdir
, newent
, inode
->i_mode
);
806 /* Contrary to "normal" filesystems it can happen that link
807 makes two "logical" inodes point to the same "physical"
808 inode. We invalidate the attributes of the old one, so it
809 will reflect changes in the backing inode (link count,
813 struct fuse_inode
*fi
= get_fuse_inode(inode
);
815 spin_lock(&fc
->lock
);
816 fi
->attr_version
= ++fc
->attr_version
;
818 spin_unlock(&fc
->lock
);
819 fuse_invalidate_attr(inode
);
820 fuse_update_ctime(inode
);
821 } else if (err
== -EINTR
) {
822 fuse_invalidate_attr(inode
);
827 static void fuse_fillattr(struct inode
*inode
, struct fuse_attr
*attr
,
830 unsigned int blkbits
;
831 struct fuse_conn
*fc
= get_fuse_conn(inode
);
833 /* see the comment in fuse_change_attributes() */
834 if (fc
->writeback_cache
&& S_ISREG(inode
->i_mode
)) {
835 attr
->size
= i_size_read(inode
);
836 attr
->mtime
= inode
->i_mtime
.tv_sec
;
837 attr
->mtimensec
= inode
->i_mtime
.tv_nsec
;
838 attr
->ctime
= inode
->i_ctime
.tv_sec
;
839 attr
->ctimensec
= inode
->i_ctime
.tv_nsec
;
842 stat
->dev
= inode
->i_sb
->s_dev
;
843 stat
->ino
= attr
->ino
;
844 stat
->mode
= (inode
->i_mode
& S_IFMT
) | (attr
->mode
& 07777);
845 stat
->nlink
= attr
->nlink
;
846 stat
->uid
= make_kuid(&init_user_ns
, attr
->uid
);
847 stat
->gid
= make_kgid(&init_user_ns
, attr
->gid
);
848 stat
->rdev
= inode
->i_rdev
;
849 stat
->atime
.tv_sec
= attr
->atime
;
850 stat
->atime
.tv_nsec
= attr
->atimensec
;
851 stat
->mtime
.tv_sec
= attr
->mtime
;
852 stat
->mtime
.tv_nsec
= attr
->mtimensec
;
853 stat
->ctime
.tv_sec
= attr
->ctime
;
854 stat
->ctime
.tv_nsec
= attr
->ctimensec
;
855 stat
->size
= attr
->size
;
856 stat
->blocks
= attr
->blocks
;
858 if (attr
->blksize
!= 0)
859 blkbits
= ilog2(attr
->blksize
);
861 blkbits
= inode
->i_sb
->s_blocksize_bits
;
863 stat
->blksize
= 1 << blkbits
;
866 static int fuse_do_getattr(struct inode
*inode
, struct kstat
*stat
,
870 struct fuse_getattr_in inarg
;
871 struct fuse_attr_out outarg
;
872 struct fuse_conn
*fc
= get_fuse_conn(inode
);
876 attr_version
= fuse_get_attr_version(fc
);
878 memset(&inarg
, 0, sizeof(inarg
));
879 memset(&outarg
, 0, sizeof(outarg
));
880 /* Directories have separate file-handle space */
881 if (file
&& S_ISREG(inode
->i_mode
)) {
882 struct fuse_file
*ff
= file
->private_data
;
884 inarg
.getattr_flags
|= FUSE_GETATTR_FH
;
887 args
.in
.h
.opcode
= FUSE_GETATTR
;
888 args
.in
.h
.nodeid
= get_node_id(inode
);
890 args
.in
.args
[0].size
= sizeof(inarg
);
891 args
.in
.args
[0].value
= &inarg
;
892 args
.out
.numargs
= 1;
893 args
.out
.args
[0].size
= sizeof(outarg
);
894 args
.out
.args
[0].value
= &outarg
;
895 err
= fuse_simple_request(fc
, &args
);
897 if ((inode
->i_mode
^ outarg
.attr
.mode
) & S_IFMT
) {
898 make_bad_inode(inode
);
901 fuse_change_attributes(inode
, &outarg
.attr
,
902 attr_timeout(&outarg
),
905 fuse_fillattr(inode
, &outarg
.attr
, stat
);
911 int fuse_update_attributes(struct inode
*inode
, struct kstat
*stat
,
912 struct file
*file
, bool *refreshed
)
914 struct fuse_inode
*fi
= get_fuse_inode(inode
);
918 if (time_before64(fi
->i_time
, get_jiffies_64())) {
920 err
= fuse_do_getattr(inode
, stat
, file
);
925 generic_fillattr(inode
, stat
);
926 stat
->mode
= fi
->orig_i_mode
;
927 stat
->ino
= fi
->orig_ino
;
931 if (refreshed
!= NULL
)
937 int fuse_reverse_inval_entry(struct super_block
*sb
, u64 parent_nodeid
,
938 u64 child_nodeid
, struct qstr
*name
)
941 struct inode
*parent
;
943 struct dentry
*entry
;
945 parent
= ilookup5(sb
, parent_nodeid
, fuse_inode_eq
, &parent_nodeid
);
950 if (!S_ISDIR(parent
->i_mode
))
954 dir
= d_find_alias(parent
);
958 name
->hash
= full_name_hash(dir
, name
->name
, name
->len
);
959 entry
= d_lookup(dir
, name
);
964 fuse_invalidate_attr(parent
);
965 fuse_invalidate_entry(entry
);
967 if (child_nodeid
!= 0 && d_really_is_positive(entry
)) {
968 inode_lock(d_inode(entry
));
969 if (get_node_id(d_inode(entry
)) != child_nodeid
) {
973 if (d_mountpoint(entry
)) {
977 if (d_is_dir(entry
)) {
978 shrink_dcache_parent(entry
);
979 if (!simple_empty(entry
)) {
983 d_inode(entry
)->i_flags
|= S_DEAD
;
986 clear_nlink(d_inode(entry
));
989 inode_unlock(d_inode(entry
));
998 inode_unlock(parent
);
1004 * Calling into a user-controlled filesystem gives the filesystem
1005 * daemon ptrace-like capabilities over the current process. This
1006 * means, that the filesystem daemon is able to record the exact
1007 * filesystem operations performed, and can also control the behavior
1008 * of the requester process in otherwise impossible ways. For example
1009 * it can delay the operation for arbitrary length of time allowing
1010 * DoS against the requester.
1012 * For this reason only those processes can call into the filesystem,
1013 * for which the owner of the mount has ptrace privilege. This
1014 * excludes processes started by other users, suid or sgid processes.
1016 int fuse_allow_current_process(struct fuse_conn
*fc
)
1018 const struct cred
*cred
;
1020 if (fc
->flags
& FUSE_ALLOW_OTHER
)
1023 cred
= current_cred();
1024 if (uid_eq(cred
->euid
, fc
->user_id
) &&
1025 uid_eq(cred
->suid
, fc
->user_id
) &&
1026 uid_eq(cred
->uid
, fc
->user_id
) &&
1027 gid_eq(cred
->egid
, fc
->group_id
) &&
1028 gid_eq(cred
->sgid
, fc
->group_id
) &&
1029 gid_eq(cred
->gid
, fc
->group_id
))
1035 static int fuse_access(struct inode
*inode
, int mask
)
1037 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1039 struct fuse_access_in inarg
;
1042 BUG_ON(mask
& MAY_NOT_BLOCK
);
1047 memset(&inarg
, 0, sizeof(inarg
));
1048 inarg
.mask
= mask
& (MAY_READ
| MAY_WRITE
| MAY_EXEC
);
1049 args
.in
.h
.opcode
= FUSE_ACCESS
;
1050 args
.in
.h
.nodeid
= get_node_id(inode
);
1051 args
.in
.numargs
= 1;
1052 args
.in
.args
[0].size
= sizeof(inarg
);
1053 args
.in
.args
[0].value
= &inarg
;
1054 err
= fuse_simple_request(fc
, &args
);
1055 if (err
== -ENOSYS
) {
1062 static int fuse_perm_getattr(struct inode
*inode
, int mask
)
1064 if (mask
& MAY_NOT_BLOCK
)
1067 return fuse_do_getattr(inode
, NULL
, NULL
);
1071 * Check permission. The two basic access models of FUSE are:
1073 * 1) Local access checking ('default_permissions' mount option) based
1074 * on file mode. This is the plain old disk filesystem permission
1077 * 2) "Remote" access checking, where server is responsible for
1078 * checking permission in each inode operation. An exception to this
1079 * is if ->permission() was invoked from sys_access() in which case an
1080 * access request is sent. Execute permission is still checked
1081 * locally based on file mode.
1083 static int fuse_permission(struct inode
*inode
, int mask
)
1085 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1086 bool refreshed
= false;
1089 if (!fuse_allow_current_process(fc
))
1093 * If attributes are needed, refresh them before proceeding
1095 if ((fc
->flags
& FUSE_DEFAULT_PERMISSIONS
) ||
1096 ((mask
& MAY_EXEC
) && S_ISREG(inode
->i_mode
))) {
1097 struct fuse_inode
*fi
= get_fuse_inode(inode
);
1099 if (time_before64(fi
->i_time
, get_jiffies_64())) {
1102 err
= fuse_perm_getattr(inode
, mask
);
1108 if (fc
->flags
& FUSE_DEFAULT_PERMISSIONS
) {
1109 err
= generic_permission(inode
, mask
);
1111 /* If permission is denied, try to refresh file
1112 attributes. This is also needed, because the root
1113 node will at first have no permissions */
1114 if (err
== -EACCES
&& !refreshed
) {
1115 err
= fuse_perm_getattr(inode
, mask
);
1117 err
= generic_permission(inode
, mask
);
1120 /* Note: the opposite of the above test does not
1121 exist. So if permissions are revoked this won't be
1122 noticed immediately, only after the attribute
1123 timeout has expired */
1124 } else if (mask
& (MAY_ACCESS
| MAY_CHDIR
)) {
1125 err
= fuse_access(inode
, mask
);
1126 } else if ((mask
& MAY_EXEC
) && S_ISREG(inode
->i_mode
)) {
1127 if (!(inode
->i_mode
& S_IXUGO
)) {
1131 err
= fuse_perm_getattr(inode
, mask
);
1132 if (!err
&& !(inode
->i_mode
& S_IXUGO
))
1139 static int parse_dirfile(char *buf
, size_t nbytes
, struct file
*file
,
1140 struct dir_context
*ctx
)
1142 while (nbytes
>= FUSE_NAME_OFFSET
) {
1143 struct fuse_dirent
*dirent
= (struct fuse_dirent
*) buf
;
1144 size_t reclen
= FUSE_DIRENT_SIZE(dirent
);
1145 if (!dirent
->namelen
|| dirent
->namelen
> FUSE_NAME_MAX
)
1147 if (reclen
> nbytes
)
1149 if (memchr(dirent
->name
, '/', dirent
->namelen
) != NULL
)
1152 if (!dir_emit(ctx
, dirent
->name
, dirent
->namelen
,
1153 dirent
->ino
, dirent
->type
))
1158 ctx
->pos
= dirent
->off
;
1164 static int fuse_direntplus_link(struct file
*file
,
1165 struct fuse_direntplus
*direntplus
,
1168 struct fuse_entry_out
*o
= &direntplus
->entry_out
;
1169 struct fuse_dirent
*dirent
= &direntplus
->dirent
;
1170 struct dentry
*parent
= file
->f_path
.dentry
;
1171 struct qstr name
= QSTR_INIT(dirent
->name
, dirent
->namelen
);
1172 struct dentry
*dentry
;
1173 struct dentry
*alias
;
1174 struct inode
*dir
= d_inode(parent
);
1175 struct fuse_conn
*fc
;
1176 struct inode
*inode
;
1177 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(wq
);
1181 * Unlike in the case of fuse_lookup, zero nodeid does not mean
1182 * ENOENT. Instead, it only means the userspace filesystem did
1183 * not want to return attributes/handle for this entry.
1190 if (name
.name
[0] == '.') {
1192 * We could potentially refresh the attributes of the directory
1197 if (name
.name
[1] == '.' && name
.len
== 2)
1201 if (invalid_nodeid(o
->nodeid
))
1203 if (!fuse_valid_type(o
->attr
.mode
))
1206 fc
= get_fuse_conn(dir
);
1208 name
.hash
= full_name_hash(parent
, name
.name
, name
.len
);
1209 dentry
= d_lookup(parent
, &name
);
1212 dentry
= d_alloc_parallel(parent
, &name
, &wq
);
1214 return PTR_ERR(dentry
);
1216 if (!d_in_lookup(dentry
)) {
1217 struct fuse_inode
*fi
;
1218 inode
= d_inode(dentry
);
1220 get_node_id(inode
) != o
->nodeid
||
1221 ((o
->attr
.mode
^ inode
->i_mode
) & S_IFMT
)) {
1222 d_invalidate(dentry
);
1226 if (is_bad_inode(inode
)) {
1231 fi
= get_fuse_inode(inode
);
1232 spin_lock(&fc
->lock
);
1234 spin_unlock(&fc
->lock
);
1236 fuse_change_attributes(inode
, &o
->attr
,
1237 entry_attr_timeout(o
),
1240 * The other branch comes via fuse_iget()
1241 * which bumps nlookup inside
1244 inode
= fuse_iget(dir
->i_sb
, o
->nodeid
, o
->generation
,
1245 &o
->attr
, entry_attr_timeout(o
),
1248 inode
= ERR_PTR(-ENOMEM
);
1250 alias
= d_splice_alias(inode
, dentry
);
1251 d_lookup_done(dentry
);
1257 return PTR_ERR(dentry
);
1259 if (fc
->readdirplus_auto
)
1260 set_bit(FUSE_I_INIT_RDPLUS
, &get_fuse_inode(inode
)->state
);
1261 fuse_change_entry_timeout(dentry
, o
);
1267 static int parse_dirplusfile(char *buf
, size_t nbytes
, struct file
*file
,
1268 struct dir_context
*ctx
, u64 attr_version
)
1270 struct fuse_direntplus
*direntplus
;
1271 struct fuse_dirent
*dirent
;
1276 while (nbytes
>= FUSE_NAME_OFFSET_DIRENTPLUS
) {
1277 direntplus
= (struct fuse_direntplus
*) buf
;
1278 dirent
= &direntplus
->dirent
;
1279 reclen
= FUSE_DIRENTPLUS_SIZE(direntplus
);
1281 if (!dirent
->namelen
|| dirent
->namelen
> FUSE_NAME_MAX
)
1283 if (reclen
> nbytes
)
1285 if (memchr(dirent
->name
, '/', dirent
->namelen
) != NULL
)
1289 /* We fill entries into dstbuf only as much as
1290 it can hold. But we still continue iterating
1291 over remaining entries to link them. If not,
1292 we need to send a FORGET for each of those
1293 which we did not link.
1295 over
= !dir_emit(ctx
, dirent
->name
, dirent
->namelen
,
1296 dirent
->ino
, dirent
->type
);
1297 ctx
->pos
= dirent
->off
;
1303 ret
= fuse_direntplus_link(file
, direntplus
, attr_version
);
1305 fuse_force_forget(file
, direntplus
->entry_out
.nodeid
);
1311 static int fuse_readdir(struct file
*file
, struct dir_context
*ctx
)
1316 struct inode
*inode
= file_inode(file
);
1317 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1318 struct fuse_req
*req
;
1319 u64 attr_version
= 0;
1321 if (is_bad_inode(inode
))
1324 req
= fuse_get_req(fc
, 1);
1326 return PTR_ERR(req
);
1328 page
= alloc_page(GFP_KERNEL
);
1330 fuse_put_request(fc
, req
);
1334 plus
= fuse_use_readdirplus(inode
, ctx
);
1335 req
->out
.argpages
= 1;
1337 req
->pages
[0] = page
;
1338 req
->page_descs
[0].length
= PAGE_SIZE
;
1340 attr_version
= fuse_get_attr_version(fc
);
1341 fuse_read_fill(req
, file
, ctx
->pos
, PAGE_SIZE
,
1344 fuse_read_fill(req
, file
, ctx
->pos
, PAGE_SIZE
,
1347 fuse_lock_inode(inode
);
1348 fuse_request_send(fc
, req
);
1349 fuse_unlock_inode(inode
);
1350 nbytes
= req
->out
.args
[0].size
;
1351 err
= req
->out
.h
.error
;
1352 fuse_put_request(fc
, req
);
1355 err
= parse_dirplusfile(page_address(page
), nbytes
,
1359 err
= parse_dirfile(page_address(page
), nbytes
, file
,
1365 fuse_invalidate_atime(inode
);
1369 static const char *fuse_get_link(struct dentry
*dentry
,
1370 struct inode
*inode
,
1371 struct delayed_call
*done
)
1373 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1379 return ERR_PTR(-ECHILD
);
1381 link
= kmalloc(PAGE_SIZE
, GFP_KERNEL
);
1383 return ERR_PTR(-ENOMEM
);
1385 args
.in
.h
.opcode
= FUSE_READLINK
;
1386 args
.in
.h
.nodeid
= get_node_id(inode
);
1387 args
.out
.argvar
= 1;
1388 args
.out
.numargs
= 1;
1389 args
.out
.args
[0].size
= PAGE_SIZE
- 1;
1390 args
.out
.args
[0].value
= link
;
1391 ret
= fuse_simple_request(fc
, &args
);
1394 link
= ERR_PTR(ret
);
1397 set_delayed_call(done
, kfree_link
, link
);
1399 fuse_invalidate_atime(inode
);
1403 static int fuse_dir_open(struct inode
*inode
, struct file
*file
)
1405 return fuse_open_common(inode
, file
, true);
1408 static int fuse_dir_release(struct inode
*inode
, struct file
*file
)
1410 fuse_release_common(file
, FUSE_RELEASEDIR
);
1415 static int fuse_dir_fsync(struct file
*file
, loff_t start
, loff_t end
,
1418 return fuse_fsync_common(file
, start
, end
, datasync
, 1);
1421 static long fuse_dir_ioctl(struct file
*file
, unsigned int cmd
,
1424 struct fuse_conn
*fc
= get_fuse_conn(file
->f_mapping
->host
);
1426 /* FUSE_IOCTL_DIR only supported for API version >= 7.18 */
1430 return fuse_ioctl_common(file
, cmd
, arg
, FUSE_IOCTL_DIR
);
1433 static long fuse_dir_compat_ioctl(struct file
*file
, unsigned int cmd
,
1436 struct fuse_conn
*fc
= get_fuse_conn(file
->f_mapping
->host
);
1441 return fuse_ioctl_common(file
, cmd
, arg
,
1442 FUSE_IOCTL_COMPAT
| FUSE_IOCTL_DIR
);
1445 static bool update_mtime(unsigned ivalid
, bool trust_local_mtime
)
1447 /* Always update if mtime is explicitly set */
1448 if (ivalid
& ATTR_MTIME_SET
)
1451 /* Or if kernel i_mtime is the official one */
1452 if (trust_local_mtime
)
1455 /* If it's an open(O_TRUNC) or an ftruncate(), don't update */
1456 if ((ivalid
& ATTR_SIZE
) && (ivalid
& (ATTR_OPEN
| ATTR_FILE
)))
1459 /* In all other cases update */
1463 static void iattr_to_fattr(struct iattr
*iattr
, struct fuse_setattr_in
*arg
,
1464 bool trust_local_cmtime
)
1466 unsigned ivalid
= iattr
->ia_valid
;
1468 if (ivalid
& ATTR_MODE
)
1469 arg
->valid
|= FATTR_MODE
, arg
->mode
= iattr
->ia_mode
;
1470 if (ivalid
& ATTR_UID
)
1471 arg
->valid
|= FATTR_UID
, arg
->uid
= from_kuid(&init_user_ns
, iattr
->ia_uid
);
1472 if (ivalid
& ATTR_GID
)
1473 arg
->valid
|= FATTR_GID
, arg
->gid
= from_kgid(&init_user_ns
, iattr
->ia_gid
);
1474 if (ivalid
& ATTR_SIZE
)
1475 arg
->valid
|= FATTR_SIZE
, arg
->size
= iattr
->ia_size
;
1476 if (ivalid
& ATTR_ATIME
) {
1477 arg
->valid
|= FATTR_ATIME
;
1478 arg
->atime
= iattr
->ia_atime
.tv_sec
;
1479 arg
->atimensec
= iattr
->ia_atime
.tv_nsec
;
1480 if (!(ivalid
& ATTR_ATIME_SET
))
1481 arg
->valid
|= FATTR_ATIME_NOW
;
1483 if ((ivalid
& ATTR_MTIME
) && update_mtime(ivalid
, trust_local_cmtime
)) {
1484 arg
->valid
|= FATTR_MTIME
;
1485 arg
->mtime
= iattr
->ia_mtime
.tv_sec
;
1486 arg
->mtimensec
= iattr
->ia_mtime
.tv_nsec
;
1487 if (!(ivalid
& ATTR_MTIME_SET
) && !trust_local_cmtime
)
1488 arg
->valid
|= FATTR_MTIME_NOW
;
1490 if ((ivalid
& ATTR_CTIME
) && trust_local_cmtime
) {
1491 arg
->valid
|= FATTR_CTIME
;
1492 arg
->ctime
= iattr
->ia_ctime
.tv_sec
;
1493 arg
->ctimensec
= iattr
->ia_ctime
.tv_nsec
;
1498 * Prevent concurrent writepages on inode
1500 * This is done by adding a negative bias to the inode write counter
1501 * and waiting for all pending writes to finish.
1503 void fuse_set_nowrite(struct inode
*inode
)
1505 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1506 struct fuse_inode
*fi
= get_fuse_inode(inode
);
1508 BUG_ON(!inode_is_locked(inode
));
1510 spin_lock(&fc
->lock
);
1511 BUG_ON(fi
->writectr
< 0);
1512 fi
->writectr
+= FUSE_NOWRITE
;
1513 spin_unlock(&fc
->lock
);
1514 wait_event(fi
->page_waitq
, fi
->writectr
== FUSE_NOWRITE
);
1518 * Allow writepages on inode
1520 * Remove the bias from the writecounter and send any queued
1523 static void __fuse_release_nowrite(struct inode
*inode
)
1525 struct fuse_inode
*fi
= get_fuse_inode(inode
);
1527 BUG_ON(fi
->writectr
!= FUSE_NOWRITE
);
1529 fuse_flush_writepages(inode
);
1532 void fuse_release_nowrite(struct inode
*inode
)
1534 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1536 spin_lock(&fc
->lock
);
1537 __fuse_release_nowrite(inode
);
1538 spin_unlock(&fc
->lock
);
1541 static void fuse_setattr_fill(struct fuse_conn
*fc
, struct fuse_args
*args
,
1542 struct inode
*inode
,
1543 struct fuse_setattr_in
*inarg_p
,
1544 struct fuse_attr_out
*outarg_p
)
1546 args
->in
.h
.opcode
= FUSE_SETATTR
;
1547 args
->in
.h
.nodeid
= get_node_id(inode
);
1548 args
->in
.numargs
= 1;
1549 args
->in
.args
[0].size
= sizeof(*inarg_p
);
1550 args
->in
.args
[0].value
= inarg_p
;
1551 args
->out
.numargs
= 1;
1552 args
->out
.args
[0].size
= sizeof(*outarg_p
);
1553 args
->out
.args
[0].value
= outarg_p
;
1557 * Flush inode->i_mtime to the server
1559 int fuse_flush_times(struct inode
*inode
, struct fuse_file
*ff
)
1561 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1563 struct fuse_setattr_in inarg
;
1564 struct fuse_attr_out outarg
;
1566 memset(&inarg
, 0, sizeof(inarg
));
1567 memset(&outarg
, 0, sizeof(outarg
));
1569 inarg
.valid
= FATTR_MTIME
;
1570 inarg
.mtime
= inode
->i_mtime
.tv_sec
;
1571 inarg
.mtimensec
= inode
->i_mtime
.tv_nsec
;
1572 if (fc
->minor
>= 23) {
1573 inarg
.valid
|= FATTR_CTIME
;
1574 inarg
.ctime
= inode
->i_ctime
.tv_sec
;
1575 inarg
.ctimensec
= inode
->i_ctime
.tv_nsec
;
1578 inarg
.valid
|= FATTR_FH
;
1581 fuse_setattr_fill(fc
, &args
, inode
, &inarg
, &outarg
);
1583 return fuse_simple_request(fc
, &args
);
1587 * Set attributes, and at the same time refresh them.
1589 * Truncation is slightly complicated, because the 'truncate' request
1590 * may fail, in which case we don't want to touch the mapping.
1591 * vmtruncate() doesn't allow for this case, so do the rlimit checking
1592 * and the actual truncation by hand.
1594 int fuse_do_setattr(struct inode
*inode
, struct iattr
*attr
,
1597 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1598 struct fuse_inode
*fi
= get_fuse_inode(inode
);
1600 struct fuse_setattr_in inarg
;
1601 struct fuse_attr_out outarg
;
1602 bool is_truncate
= false;
1603 bool is_wb
= fc
->writeback_cache
;
1606 bool trust_local_cmtime
= is_wb
&& S_ISREG(inode
->i_mode
);
1608 if (!(fc
->flags
& FUSE_DEFAULT_PERMISSIONS
))
1609 attr
->ia_valid
|= ATTR_FORCE
;
1611 err
= inode_change_ok(inode
, attr
);
1615 if (attr
->ia_valid
& ATTR_OPEN
) {
1616 if (fc
->atomic_o_trunc
)
1621 if (attr
->ia_valid
& ATTR_SIZE
)
1625 fuse_set_nowrite(inode
);
1626 set_bit(FUSE_I_SIZE_UNSTABLE
, &fi
->state
);
1627 if (trust_local_cmtime
&& attr
->ia_size
!= inode
->i_size
)
1628 attr
->ia_valid
|= ATTR_MTIME
| ATTR_CTIME
;
1631 memset(&inarg
, 0, sizeof(inarg
));
1632 memset(&outarg
, 0, sizeof(outarg
));
1633 iattr_to_fattr(attr
, &inarg
, trust_local_cmtime
);
1635 struct fuse_file
*ff
= file
->private_data
;
1636 inarg
.valid
|= FATTR_FH
;
1639 if (attr
->ia_valid
& ATTR_SIZE
) {
1640 /* For mandatory locking in truncate */
1641 inarg
.valid
|= FATTR_LOCKOWNER
;
1642 inarg
.lock_owner
= fuse_lock_owner_id(fc
, current
->files
);
1644 fuse_setattr_fill(fc
, &args
, inode
, &inarg
, &outarg
);
1645 err
= fuse_simple_request(fc
, &args
);
1648 fuse_invalidate_attr(inode
);
1652 if ((inode
->i_mode
^ outarg
.attr
.mode
) & S_IFMT
) {
1653 make_bad_inode(inode
);
1658 spin_lock(&fc
->lock
);
1659 /* the kernel maintains i_mtime locally */
1660 if (trust_local_cmtime
) {
1661 if (attr
->ia_valid
& ATTR_MTIME
)
1662 inode
->i_mtime
= attr
->ia_mtime
;
1663 if (attr
->ia_valid
& ATTR_CTIME
)
1664 inode
->i_ctime
= attr
->ia_ctime
;
1665 /* FIXME: clear I_DIRTY_SYNC? */
1668 fuse_change_attributes_common(inode
, &outarg
.attr
,
1669 attr_timeout(&outarg
));
1670 oldsize
= inode
->i_size
;
1671 /* see the comment in fuse_change_attributes() */
1672 if (!is_wb
|| is_truncate
|| !S_ISREG(inode
->i_mode
))
1673 i_size_write(inode
, outarg
.attr
.size
);
1676 /* NOTE: this may release/reacquire fc->lock */
1677 __fuse_release_nowrite(inode
);
1679 spin_unlock(&fc
->lock
);
1682 * Only call invalidate_inode_pages2() after removing
1683 * FUSE_NOWRITE, otherwise fuse_launder_page() would deadlock.
1685 if ((is_truncate
|| !is_wb
) &&
1686 S_ISREG(inode
->i_mode
) && oldsize
!= outarg
.attr
.size
) {
1687 truncate_pagecache(inode
, outarg
.attr
.size
);
1688 invalidate_inode_pages2(inode
->i_mapping
);
1691 clear_bit(FUSE_I_SIZE_UNSTABLE
, &fi
->state
);
1696 fuse_release_nowrite(inode
);
1698 clear_bit(FUSE_I_SIZE_UNSTABLE
, &fi
->state
);
1702 static int fuse_setattr(struct dentry
*entry
, struct iattr
*attr
)
1704 struct inode
*inode
= d_inode(entry
);
1706 if (!fuse_allow_current_process(get_fuse_conn(inode
)))
1709 if (attr
->ia_valid
& ATTR_FILE
)
1710 return fuse_do_setattr(inode
, attr
, attr
->ia_file
);
1712 return fuse_do_setattr(inode
, attr
, NULL
);
1715 static int fuse_getattr(struct vfsmount
*mnt
, struct dentry
*entry
,
1718 struct inode
*inode
= d_inode(entry
);
1719 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1721 if (!fuse_allow_current_process(fc
))
1724 return fuse_update_attributes(inode
, stat
, NULL
, NULL
);
1727 static int fuse_setxattr(struct dentry
*unused
, struct inode
*inode
,
1728 const char *name
, const void *value
,
1729 size_t size
, int flags
)
1731 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1733 struct fuse_setxattr_in inarg
;
1736 if (fc
->no_setxattr
)
1739 memset(&inarg
, 0, sizeof(inarg
));
1741 inarg
.flags
= flags
;
1742 args
.in
.h
.opcode
= FUSE_SETXATTR
;
1743 args
.in
.h
.nodeid
= get_node_id(inode
);
1744 args
.in
.numargs
= 3;
1745 args
.in
.args
[0].size
= sizeof(inarg
);
1746 args
.in
.args
[0].value
= &inarg
;
1747 args
.in
.args
[1].size
= strlen(name
) + 1;
1748 args
.in
.args
[1].value
= name
;
1749 args
.in
.args
[2].size
= size
;
1750 args
.in
.args
[2].value
= value
;
1751 err
= fuse_simple_request(fc
, &args
);
1752 if (err
== -ENOSYS
) {
1753 fc
->no_setxattr
= 1;
1757 fuse_invalidate_attr(inode
);
1758 fuse_update_ctime(inode
);
1763 static ssize_t
fuse_getxattr(struct dentry
*entry
, struct inode
*inode
,
1764 const char *name
, void *value
, size_t size
)
1766 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1768 struct fuse_getxattr_in inarg
;
1769 struct fuse_getxattr_out outarg
;
1772 if (fc
->no_getxattr
)
1775 memset(&inarg
, 0, sizeof(inarg
));
1777 args
.in
.h
.opcode
= FUSE_GETXATTR
;
1778 args
.in
.h
.nodeid
= get_node_id(inode
);
1779 args
.in
.numargs
= 2;
1780 args
.in
.args
[0].size
= sizeof(inarg
);
1781 args
.in
.args
[0].value
= &inarg
;
1782 args
.in
.args
[1].size
= strlen(name
) + 1;
1783 args
.in
.args
[1].value
= name
;
1784 /* This is really two different operations rolled into one */
1785 args
.out
.numargs
= 1;
1787 args
.out
.argvar
= 1;
1788 args
.out
.args
[0].size
= size
;
1789 args
.out
.args
[0].value
= value
;
1791 args
.out
.args
[0].size
= sizeof(outarg
);
1792 args
.out
.args
[0].value
= &outarg
;
1794 ret
= fuse_simple_request(fc
, &args
);
1797 if (ret
== -ENOSYS
) {
1798 fc
->no_getxattr
= 1;
1804 static ssize_t
fuse_listxattr(struct dentry
*entry
, char *list
, size_t size
)
1806 struct inode
*inode
= d_inode(entry
);
1807 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1809 struct fuse_getxattr_in inarg
;
1810 struct fuse_getxattr_out outarg
;
1813 if (!fuse_allow_current_process(fc
))
1816 if (fc
->no_listxattr
)
1819 memset(&inarg
, 0, sizeof(inarg
));
1821 args
.in
.h
.opcode
= FUSE_LISTXATTR
;
1822 args
.in
.h
.nodeid
= get_node_id(inode
);
1823 args
.in
.numargs
= 1;
1824 args
.in
.args
[0].size
= sizeof(inarg
);
1825 args
.in
.args
[0].value
= &inarg
;
1826 /* This is really two different operations rolled into one */
1827 args
.out
.numargs
= 1;
1829 args
.out
.argvar
= 1;
1830 args
.out
.args
[0].size
= size
;
1831 args
.out
.args
[0].value
= list
;
1833 args
.out
.args
[0].size
= sizeof(outarg
);
1834 args
.out
.args
[0].value
= &outarg
;
1836 ret
= fuse_simple_request(fc
, &args
);
1839 if (ret
== -ENOSYS
) {
1840 fc
->no_listxattr
= 1;
1846 static int fuse_removexattr(struct dentry
*entry
, const char *name
)
1848 struct inode
*inode
= d_inode(entry
);
1849 struct fuse_conn
*fc
= get_fuse_conn(inode
);
1853 if (fc
->no_removexattr
)
1856 args
.in
.h
.opcode
= FUSE_REMOVEXATTR
;
1857 args
.in
.h
.nodeid
= get_node_id(inode
);
1858 args
.in
.numargs
= 1;
1859 args
.in
.args
[0].size
= strlen(name
) + 1;
1860 args
.in
.args
[0].value
= name
;
1861 err
= fuse_simple_request(fc
, &args
);
1862 if (err
== -ENOSYS
) {
1863 fc
->no_removexattr
= 1;
1867 fuse_invalidate_attr(inode
);
1868 fuse_update_ctime(inode
);
1873 static const struct inode_operations fuse_dir_inode_operations
= {
1874 .lookup
= fuse_lookup
,
1875 .mkdir
= fuse_mkdir
,
1876 .symlink
= fuse_symlink
,
1877 .unlink
= fuse_unlink
,
1878 .rmdir
= fuse_rmdir
,
1879 .rename2
= fuse_rename2
,
1881 .setattr
= fuse_setattr
,
1882 .create
= fuse_create
,
1883 .atomic_open
= fuse_atomic_open
,
1884 .mknod
= fuse_mknod
,
1885 .permission
= fuse_permission
,
1886 .getattr
= fuse_getattr
,
1887 .setxattr
= fuse_setxattr
,
1888 .getxattr
= fuse_getxattr
,
1889 .listxattr
= fuse_listxattr
,
1890 .removexattr
= fuse_removexattr
,
1893 static const struct file_operations fuse_dir_operations
= {
1894 .llseek
= generic_file_llseek
,
1895 .read
= generic_read_dir
,
1896 .iterate_shared
= fuse_readdir
,
1897 .open
= fuse_dir_open
,
1898 .release
= fuse_dir_release
,
1899 .fsync
= fuse_dir_fsync
,
1900 .unlocked_ioctl
= fuse_dir_ioctl
,
1901 .compat_ioctl
= fuse_dir_compat_ioctl
,
1904 static const struct inode_operations fuse_common_inode_operations
= {
1905 .setattr
= fuse_setattr
,
1906 .permission
= fuse_permission
,
1907 .getattr
= fuse_getattr
,
1908 .setxattr
= fuse_setxattr
,
1909 .getxattr
= fuse_getxattr
,
1910 .listxattr
= fuse_listxattr
,
1911 .removexattr
= fuse_removexattr
,
1914 static const struct inode_operations fuse_symlink_inode_operations
= {
1915 .setattr
= fuse_setattr
,
1916 .get_link
= fuse_get_link
,
1917 .readlink
= generic_readlink
,
1918 .getattr
= fuse_getattr
,
1919 .setxattr
= fuse_setxattr
,
1920 .getxattr
= fuse_getxattr
,
1921 .listxattr
= fuse_listxattr
,
1922 .removexattr
= fuse_removexattr
,
1925 void fuse_init_common(struct inode
*inode
)
1927 inode
->i_op
= &fuse_common_inode_operations
;
1930 void fuse_init_dir(struct inode
*inode
)
1932 inode
->i_op
= &fuse_dir_inode_operations
;
1933 inode
->i_fop
= &fuse_dir_operations
;
1936 void fuse_init_symlink(struct inode
*inode
)
1938 inode
->i_op
= &fuse_symlink_inode_operations
;