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/init.h>
12 #include <linux/module.h>
13 #include <linux/poll.h>
14 #include <linux/uio.h>
15 #include <linux/miscdevice.h>
16 #include <linux/pagemap.h>
17 #include <linux/file.h>
18 #include <linux/slab.h>
20 MODULE_ALIAS_MISCDEV(FUSE_MINOR
);
22 static struct kmem_cache
*fuse_req_cachep
;
24 static struct fuse_conn
*fuse_get_conn(struct file
*file
)
27 * Lockless access is OK, because file->private data is set
28 * once during mount and is valid until the file is released.
30 return file
->private_data
;
33 static void fuse_request_init(struct fuse_req
*req
)
35 memset(req
, 0, sizeof(*req
));
36 INIT_LIST_HEAD(&req
->list
);
37 INIT_LIST_HEAD(&req
->intr_entry
);
38 init_waitqueue_head(&req
->waitq
);
39 atomic_set(&req
->count
, 1);
42 struct fuse_req
*fuse_request_alloc(void)
44 struct fuse_req
*req
= kmem_cache_alloc(fuse_req_cachep
, GFP_KERNEL
);
46 fuse_request_init(req
);
50 struct fuse_req
*fuse_request_alloc_nofs(void)
52 struct fuse_req
*req
= kmem_cache_alloc(fuse_req_cachep
, GFP_NOFS
);
54 fuse_request_init(req
);
58 void fuse_request_free(struct fuse_req
*req
)
60 kmem_cache_free(fuse_req_cachep
, req
);
63 static void block_sigs(sigset_t
*oldset
)
67 siginitsetinv(&mask
, sigmask(SIGKILL
));
68 sigprocmask(SIG_BLOCK
, &mask
, oldset
);
71 static void restore_sigs(sigset_t
*oldset
)
73 sigprocmask(SIG_SETMASK
, oldset
, NULL
);
76 static void __fuse_get_request(struct fuse_req
*req
)
78 atomic_inc(&req
->count
);
81 /* Must be called with > 1 refcount */
82 static void __fuse_put_request(struct fuse_req
*req
)
84 BUG_ON(atomic_read(&req
->count
) < 2);
85 atomic_dec(&req
->count
);
88 static void fuse_req_init_context(struct fuse_req
*req
)
90 req
->in
.h
.uid
= current_fsuid();
91 req
->in
.h
.gid
= current_fsgid();
92 req
->in
.h
.pid
= current
->pid
;
95 struct fuse_req
*fuse_get_req(struct fuse_conn
*fc
)
102 atomic_inc(&fc
->num_waiting
);
104 intr
= wait_event_interruptible(fc
->blocked_waitq
, !fc
->blocked
);
105 restore_sigs(&oldset
);
114 req
= fuse_request_alloc();
119 fuse_req_init_context(req
);
124 atomic_dec(&fc
->num_waiting
);
129 * Return request in fuse_file->reserved_req. However that may
130 * currently be in use. If that is the case, wait for it to become
133 static struct fuse_req
*get_reserved_req(struct fuse_conn
*fc
,
136 struct fuse_req
*req
= NULL
;
137 struct fuse_file
*ff
= file
->private_data
;
140 wait_event(fc
->reserved_req_waitq
, ff
->reserved_req
);
141 spin_lock(&fc
->lock
);
142 if (ff
->reserved_req
) {
143 req
= ff
->reserved_req
;
144 ff
->reserved_req
= NULL
;
146 req
->stolen_file
= file
;
148 spin_unlock(&fc
->lock
);
155 * Put stolen request back into fuse_file->reserved_req
157 static void put_reserved_req(struct fuse_conn
*fc
, struct fuse_req
*req
)
159 struct file
*file
= req
->stolen_file
;
160 struct fuse_file
*ff
= file
->private_data
;
162 spin_lock(&fc
->lock
);
163 fuse_request_init(req
);
164 BUG_ON(ff
->reserved_req
);
165 ff
->reserved_req
= req
;
166 wake_up_all(&fc
->reserved_req_waitq
);
167 spin_unlock(&fc
->lock
);
172 * Gets a requests for a file operation, always succeeds
174 * This is used for sending the FLUSH request, which must get to
175 * userspace, due to POSIX locks which may need to be unlocked.
177 * If allocation fails due to OOM, use the reserved request in
180 * This is very unlikely to deadlock accidentally, since the
181 * filesystem should not have it's own file open. If deadlock is
182 * intentional, it can still be broken by "aborting" the filesystem.
184 struct fuse_req
*fuse_get_req_nofail(struct fuse_conn
*fc
, struct file
*file
)
186 struct fuse_req
*req
;
188 atomic_inc(&fc
->num_waiting
);
189 wait_event(fc
->blocked_waitq
, !fc
->blocked
);
190 req
= fuse_request_alloc();
192 req
= get_reserved_req(fc
, file
);
194 fuse_req_init_context(req
);
199 void fuse_put_request(struct fuse_conn
*fc
, struct fuse_req
*req
)
201 if (atomic_dec_and_test(&req
->count
)) {
203 atomic_dec(&fc
->num_waiting
);
205 if (req
->stolen_file
)
206 put_reserved_req(fc
, req
);
208 fuse_request_free(req
);
212 static unsigned len_args(unsigned numargs
, struct fuse_arg
*args
)
217 for (i
= 0; i
< numargs
; i
++)
218 nbytes
+= args
[i
].size
;
223 static u64
fuse_get_unique(struct fuse_conn
*fc
)
226 /* zero is special */
233 static void queue_request(struct fuse_conn
*fc
, struct fuse_req
*req
)
235 req
->in
.h
.unique
= fuse_get_unique(fc
);
236 req
->in
.h
.len
= sizeof(struct fuse_in_header
) +
237 len_args(req
->in
.numargs
, (struct fuse_arg
*) req
->in
.args
);
238 list_add_tail(&req
->list
, &fc
->pending
);
239 req
->state
= FUSE_REQ_PENDING
;
242 atomic_inc(&fc
->num_waiting
);
245 kill_fasync(&fc
->fasync
, SIGIO
, POLL_IN
);
248 static void flush_bg_queue(struct fuse_conn
*fc
)
250 while (fc
->active_background
< FUSE_MAX_BACKGROUND
&&
251 !list_empty(&fc
->bg_queue
)) {
252 struct fuse_req
*req
;
254 req
= list_entry(fc
->bg_queue
.next
, struct fuse_req
, list
);
255 list_del(&req
->list
);
256 fc
->active_background
++;
257 queue_request(fc
, req
);
262 * This function is called when a request is finished. Either a reply
263 * has arrived or it was aborted (and not yet sent) or some error
264 * occurred during communication with userspace, or the device file
265 * was closed. The requester thread is woken up (if still waiting),
266 * the 'end' callback is called if given, else the reference to the
267 * request is released
269 * Called with fc->lock, unlocks it
271 static void request_end(struct fuse_conn
*fc
, struct fuse_req
*req
)
272 __releases(&fc
->lock
)
274 void (*end
) (struct fuse_conn
*, struct fuse_req
*) = req
->end
;
276 list_del(&req
->list
);
277 list_del(&req
->intr_entry
);
278 req
->state
= FUSE_REQ_FINISHED
;
279 if (req
->background
) {
280 if (fc
->num_background
== FUSE_MAX_BACKGROUND
) {
282 wake_up_all(&fc
->blocked_waitq
);
284 if (fc
->num_background
== FUSE_CONGESTION_THRESHOLD
) {
285 clear_bdi_congested(&fc
->bdi
, READ
);
286 clear_bdi_congested(&fc
->bdi
, WRITE
);
288 fc
->num_background
--;
289 fc
->active_background
--;
292 spin_unlock(&fc
->lock
);
293 wake_up(&req
->waitq
);
296 fuse_put_request(fc
, req
);
299 static void wait_answer_interruptible(struct fuse_conn
*fc
,
300 struct fuse_req
*req
)
301 __releases(&fc
->lock
)
302 __acquires(&fc
->lock
)
304 if (signal_pending(current
))
307 spin_unlock(&fc
->lock
);
308 wait_event_interruptible(req
->waitq
, req
->state
== FUSE_REQ_FINISHED
);
309 spin_lock(&fc
->lock
);
312 static void queue_interrupt(struct fuse_conn
*fc
, struct fuse_req
*req
)
314 list_add_tail(&req
->intr_entry
, &fc
->interrupts
);
316 kill_fasync(&fc
->fasync
, SIGIO
, POLL_IN
);
319 static void request_wait_answer(struct fuse_conn
*fc
, struct fuse_req
*req
)
320 __releases(&fc
->lock
)
321 __acquires(&fc
->lock
)
323 if (!fc
->no_interrupt
) {
324 /* Any signal may interrupt this */
325 wait_answer_interruptible(fc
, req
);
329 if (req
->state
== FUSE_REQ_FINISHED
)
332 req
->interrupted
= 1;
333 if (req
->state
== FUSE_REQ_SENT
)
334 queue_interrupt(fc
, req
);
340 /* Only fatal signals may interrupt this */
342 wait_answer_interruptible(fc
, req
);
343 restore_sigs(&oldset
);
347 if (req
->state
== FUSE_REQ_FINISHED
)
350 /* Request is not yet in userspace, bail out */
351 if (req
->state
== FUSE_REQ_PENDING
) {
352 list_del(&req
->list
);
353 __fuse_put_request(req
);
354 req
->out
.h
.error
= -EINTR
;
360 * Either request is already in userspace, or it was forced.
363 spin_unlock(&fc
->lock
);
364 wait_event(req
->waitq
, req
->state
== FUSE_REQ_FINISHED
);
365 spin_lock(&fc
->lock
);
371 BUG_ON(req
->state
!= FUSE_REQ_FINISHED
);
373 /* This is uninterruptible sleep, because data is
374 being copied to/from the buffers of req. During
375 locked state, there mustn't be any filesystem
376 operation (e.g. page fault), since that could lead
378 spin_unlock(&fc
->lock
);
379 wait_event(req
->waitq
, !req
->locked
);
380 spin_lock(&fc
->lock
);
384 void fuse_request_send(struct fuse_conn
*fc
, struct fuse_req
*req
)
387 spin_lock(&fc
->lock
);
389 req
->out
.h
.error
= -ENOTCONN
;
390 else if (fc
->conn_error
)
391 req
->out
.h
.error
= -ECONNREFUSED
;
393 queue_request(fc
, req
);
394 /* acquire extra reference, since request is still needed
395 after request_end() */
396 __fuse_get_request(req
);
398 request_wait_answer(fc
, req
);
400 spin_unlock(&fc
->lock
);
403 static void fuse_request_send_nowait_locked(struct fuse_conn
*fc
,
404 struct fuse_req
*req
)
407 fc
->num_background
++;
408 if (fc
->num_background
== FUSE_MAX_BACKGROUND
)
410 if (fc
->num_background
== FUSE_CONGESTION_THRESHOLD
) {
411 set_bdi_congested(&fc
->bdi
, READ
);
412 set_bdi_congested(&fc
->bdi
, WRITE
);
414 list_add_tail(&req
->list
, &fc
->bg_queue
);
418 static void fuse_request_send_nowait(struct fuse_conn
*fc
, struct fuse_req
*req
)
420 spin_lock(&fc
->lock
);
422 fuse_request_send_nowait_locked(fc
, req
);
423 spin_unlock(&fc
->lock
);
425 req
->out
.h
.error
= -ENOTCONN
;
426 request_end(fc
, req
);
430 void fuse_request_send_noreply(struct fuse_conn
*fc
, struct fuse_req
*req
)
433 fuse_request_send_nowait(fc
, req
);
436 void fuse_request_send_background(struct fuse_conn
*fc
, struct fuse_req
*req
)
439 fuse_request_send_nowait(fc
, req
);
443 * Called under fc->lock
445 * fc->connected must have been checked previously
447 void fuse_request_send_background_locked(struct fuse_conn
*fc
,
448 struct fuse_req
*req
)
451 fuse_request_send_nowait_locked(fc
, req
);
455 * Lock the request. Up to the next unlock_request() there mustn't be
456 * anything that could cause a page-fault. If the request was already
459 static int lock_request(struct fuse_conn
*fc
, struct fuse_req
*req
)
463 spin_lock(&fc
->lock
);
468 spin_unlock(&fc
->lock
);
474 * Unlock request. If it was aborted during being locked, the
475 * requester thread is currently waiting for it to be unlocked, so
478 static void unlock_request(struct fuse_conn
*fc
, struct fuse_req
*req
)
481 spin_lock(&fc
->lock
);
484 wake_up(&req
->waitq
);
485 spin_unlock(&fc
->lock
);
489 struct fuse_copy_state
{
490 struct fuse_conn
*fc
;
492 struct fuse_req
*req
;
493 const struct iovec
*iov
;
494 unsigned long nr_segs
;
495 unsigned long seglen
;
503 static void fuse_copy_init(struct fuse_copy_state
*cs
, struct fuse_conn
*fc
,
504 int write
, struct fuse_req
*req
,
505 const struct iovec
*iov
, unsigned long nr_segs
)
507 memset(cs
, 0, sizeof(*cs
));
512 cs
->nr_segs
= nr_segs
;
515 /* Unmap and put previous page of userspace buffer */
516 static void fuse_copy_finish(struct fuse_copy_state
*cs
)
519 kunmap_atomic(cs
->mapaddr
, KM_USER0
);
521 flush_dcache_page(cs
->pg
);
522 set_page_dirty_lock(cs
->pg
);
530 * Get another pagefull of userspace buffer, and map it to kernel
531 * address space, and lock request
533 static int fuse_copy_fill(struct fuse_copy_state
*cs
)
535 unsigned long offset
;
538 unlock_request(cs
->fc
, cs
->req
);
539 fuse_copy_finish(cs
);
541 BUG_ON(!cs
->nr_segs
);
542 cs
->seglen
= cs
->iov
[0].iov_len
;
543 cs
->addr
= (unsigned long) cs
->iov
[0].iov_base
;
547 down_read(¤t
->mm
->mmap_sem
);
548 err
= get_user_pages(current
, current
->mm
, cs
->addr
, 1, cs
->write
, 0,
550 up_read(¤t
->mm
->mmap_sem
);
554 offset
= cs
->addr
% PAGE_SIZE
;
555 cs
->mapaddr
= kmap_atomic(cs
->pg
, KM_USER0
);
556 cs
->buf
= cs
->mapaddr
+ offset
;
557 cs
->len
= min(PAGE_SIZE
- offset
, cs
->seglen
);
558 cs
->seglen
-= cs
->len
;
561 return lock_request(cs
->fc
, cs
->req
);
564 /* Do as much copy to/from userspace buffer as we can */
565 static int fuse_copy_do(struct fuse_copy_state
*cs
, void **val
, unsigned *size
)
567 unsigned ncpy
= min(*size
, cs
->len
);
570 memcpy(cs
->buf
, *val
, ncpy
);
572 memcpy(*val
, cs
->buf
, ncpy
);
582 * Copy a page in the request to/from the userspace buffer. Must be
585 static int fuse_copy_page(struct fuse_copy_state
*cs
, struct page
*page
,
586 unsigned offset
, unsigned count
, int zeroing
)
588 if (page
&& zeroing
&& count
< PAGE_SIZE
) {
589 void *mapaddr
= kmap_atomic(page
, KM_USER1
);
590 memset(mapaddr
, 0, PAGE_SIZE
);
591 kunmap_atomic(mapaddr
, KM_USER1
);
595 int err
= fuse_copy_fill(cs
);
600 void *mapaddr
= kmap_atomic(page
, KM_USER1
);
601 void *buf
= mapaddr
+ offset
;
602 offset
+= fuse_copy_do(cs
, &buf
, &count
);
603 kunmap_atomic(mapaddr
, KM_USER1
);
605 offset
+= fuse_copy_do(cs
, NULL
, &count
);
607 if (page
&& !cs
->write
)
608 flush_dcache_page(page
);
612 /* Copy pages in the request to/from userspace buffer */
613 static int fuse_copy_pages(struct fuse_copy_state
*cs
, unsigned nbytes
,
617 struct fuse_req
*req
= cs
->req
;
618 unsigned offset
= req
->page_offset
;
619 unsigned count
= min(nbytes
, (unsigned) PAGE_SIZE
- offset
);
621 for (i
= 0; i
< req
->num_pages
&& (nbytes
|| zeroing
); i
++) {
622 struct page
*page
= req
->pages
[i
];
623 int err
= fuse_copy_page(cs
, page
, offset
, count
, zeroing
);
628 count
= min(nbytes
, (unsigned) PAGE_SIZE
);
634 /* Copy a single argument in the request to/from userspace buffer */
635 static int fuse_copy_one(struct fuse_copy_state
*cs
, void *val
, unsigned size
)
639 int err
= fuse_copy_fill(cs
);
643 fuse_copy_do(cs
, &val
, &size
);
648 /* Copy request arguments to/from userspace buffer */
649 static int fuse_copy_args(struct fuse_copy_state
*cs
, unsigned numargs
,
650 unsigned argpages
, struct fuse_arg
*args
,
656 for (i
= 0; !err
&& i
< numargs
; i
++) {
657 struct fuse_arg
*arg
= &args
[i
];
658 if (i
== numargs
- 1 && argpages
)
659 err
= fuse_copy_pages(cs
, arg
->size
, zeroing
);
661 err
= fuse_copy_one(cs
, arg
->value
, arg
->size
);
666 static int request_pending(struct fuse_conn
*fc
)
668 return !list_empty(&fc
->pending
) || !list_empty(&fc
->interrupts
);
671 /* Wait until a request is available on the pending list */
672 static void request_wait(struct fuse_conn
*fc
)
673 __releases(&fc
->lock
)
674 __acquires(&fc
->lock
)
676 DECLARE_WAITQUEUE(wait
, current
);
678 add_wait_queue_exclusive(&fc
->waitq
, &wait
);
679 while (fc
->connected
&& !request_pending(fc
)) {
680 set_current_state(TASK_INTERRUPTIBLE
);
681 if (signal_pending(current
))
684 spin_unlock(&fc
->lock
);
686 spin_lock(&fc
->lock
);
688 set_current_state(TASK_RUNNING
);
689 remove_wait_queue(&fc
->waitq
, &wait
);
693 * Transfer an interrupt request to userspace
695 * Unlike other requests this is assembled on demand, without a need
696 * to allocate a separate fuse_req structure.
698 * Called with fc->lock held, releases it
700 static int fuse_read_interrupt(struct fuse_conn
*fc
, struct fuse_req
*req
,
701 const struct iovec
*iov
, unsigned long nr_segs
)
702 __releases(&fc
->lock
)
704 struct fuse_copy_state cs
;
705 struct fuse_in_header ih
;
706 struct fuse_interrupt_in arg
;
707 unsigned reqsize
= sizeof(ih
) + sizeof(arg
);
710 list_del_init(&req
->intr_entry
);
711 req
->intr_unique
= fuse_get_unique(fc
);
712 memset(&ih
, 0, sizeof(ih
));
713 memset(&arg
, 0, sizeof(arg
));
715 ih
.opcode
= FUSE_INTERRUPT
;
716 ih
.unique
= req
->intr_unique
;
717 arg
.unique
= req
->in
.h
.unique
;
719 spin_unlock(&fc
->lock
);
720 if (iov_length(iov
, nr_segs
) < reqsize
)
723 fuse_copy_init(&cs
, fc
, 1, NULL
, iov
, nr_segs
);
724 err
= fuse_copy_one(&cs
, &ih
, sizeof(ih
));
726 err
= fuse_copy_one(&cs
, &arg
, sizeof(arg
));
727 fuse_copy_finish(&cs
);
729 return err
? err
: reqsize
;
733 * Read a single request into the userspace filesystem's buffer. This
734 * function waits until a request is available, then removes it from
735 * the pending list and copies request data to userspace buffer. If
736 * no reply is needed (FORGET) or request has been aborted or there
737 * was an error during the copying then it's finished by calling
738 * request_end(). Otherwise add it to the processing list, and set
741 static ssize_t
fuse_dev_read(struct kiocb
*iocb
, const struct iovec
*iov
,
742 unsigned long nr_segs
, loff_t pos
)
745 struct fuse_req
*req
;
747 struct fuse_copy_state cs
;
749 struct file
*file
= iocb
->ki_filp
;
750 struct fuse_conn
*fc
= fuse_get_conn(file
);
755 spin_lock(&fc
->lock
);
757 if ((file
->f_flags
& O_NONBLOCK
) && fc
->connected
&&
758 !request_pending(fc
))
766 if (!request_pending(fc
))
769 if (!list_empty(&fc
->interrupts
)) {
770 req
= list_entry(fc
->interrupts
.next
, struct fuse_req
,
772 return fuse_read_interrupt(fc
, req
, iov
, nr_segs
);
775 req
= list_entry(fc
->pending
.next
, struct fuse_req
, list
);
776 req
->state
= FUSE_REQ_READING
;
777 list_move(&req
->list
, &fc
->io
);
781 /* If request is too large, reply with an error and restart the read */
782 if (iov_length(iov
, nr_segs
) < reqsize
) {
783 req
->out
.h
.error
= -EIO
;
784 /* SETXATTR is special, since it may contain too large data */
785 if (in
->h
.opcode
== FUSE_SETXATTR
)
786 req
->out
.h
.error
= -E2BIG
;
787 request_end(fc
, req
);
790 spin_unlock(&fc
->lock
);
791 fuse_copy_init(&cs
, fc
, 1, req
, iov
, nr_segs
);
792 err
= fuse_copy_one(&cs
, &in
->h
, sizeof(in
->h
));
794 err
= fuse_copy_args(&cs
, in
->numargs
, in
->argpages
,
795 (struct fuse_arg
*) in
->args
, 0);
796 fuse_copy_finish(&cs
);
797 spin_lock(&fc
->lock
);
800 request_end(fc
, req
);
804 req
->out
.h
.error
= -EIO
;
805 request_end(fc
, req
);
809 request_end(fc
, req
);
811 req
->state
= FUSE_REQ_SENT
;
812 list_move_tail(&req
->list
, &fc
->processing
);
813 if (req
->interrupted
)
814 queue_interrupt(fc
, req
);
815 spin_unlock(&fc
->lock
);
820 spin_unlock(&fc
->lock
);
824 static int fuse_notify_poll(struct fuse_conn
*fc
, unsigned int size
,
825 struct fuse_copy_state
*cs
)
827 struct fuse_notify_poll_wakeup_out outarg
;
830 if (size
!= sizeof(outarg
))
833 err
= fuse_copy_one(cs
, &outarg
, sizeof(outarg
));
837 return fuse_notify_poll_wakeup(fc
, &outarg
);
840 static int fuse_notify(struct fuse_conn
*fc
, enum fuse_notify_code code
,
841 unsigned int size
, struct fuse_copy_state
*cs
)
844 case FUSE_NOTIFY_POLL
:
845 return fuse_notify_poll(fc
, size
, cs
);
852 /* Look up request on processing list by unique ID */
853 static struct fuse_req
*request_find(struct fuse_conn
*fc
, u64 unique
)
855 struct list_head
*entry
;
857 list_for_each(entry
, &fc
->processing
) {
858 struct fuse_req
*req
;
859 req
= list_entry(entry
, struct fuse_req
, list
);
860 if (req
->in
.h
.unique
== unique
|| req
->intr_unique
== unique
)
866 static int copy_out_args(struct fuse_copy_state
*cs
, struct fuse_out
*out
,
869 unsigned reqsize
= sizeof(struct fuse_out_header
);
872 return nbytes
!= reqsize
? -EINVAL
: 0;
874 reqsize
+= len_args(out
->numargs
, out
->args
);
876 if (reqsize
< nbytes
|| (reqsize
> nbytes
&& !out
->argvar
))
878 else if (reqsize
> nbytes
) {
879 struct fuse_arg
*lastarg
= &out
->args
[out
->numargs
-1];
880 unsigned diffsize
= reqsize
- nbytes
;
881 if (diffsize
> lastarg
->size
)
883 lastarg
->size
-= diffsize
;
885 return fuse_copy_args(cs
, out
->numargs
, out
->argpages
, out
->args
,
890 * Write a single reply to a request. First the header is copied from
891 * the write buffer. The request is then searched on the processing
892 * list by the unique ID found in the header. If found, then remove
893 * it from the list and copy the rest of the buffer to the request.
894 * The request is finished by calling request_end()
896 static ssize_t
fuse_dev_write(struct kiocb
*iocb
, const struct iovec
*iov
,
897 unsigned long nr_segs
, loff_t pos
)
900 unsigned nbytes
= iov_length(iov
, nr_segs
);
901 struct fuse_req
*req
;
902 struct fuse_out_header oh
;
903 struct fuse_copy_state cs
;
904 struct fuse_conn
*fc
= fuse_get_conn(iocb
->ki_filp
);
908 fuse_copy_init(&cs
, fc
, 0, NULL
, iov
, nr_segs
);
909 if (nbytes
< sizeof(struct fuse_out_header
))
912 err
= fuse_copy_one(&cs
, &oh
, sizeof(oh
));
917 if (oh
.len
!= nbytes
)
921 * Zero oh.unique indicates unsolicited notification message
922 * and error contains notification code.
925 err
= fuse_notify(fc
, oh
.error
, nbytes
- sizeof(oh
), &cs
);
926 fuse_copy_finish(&cs
);
927 return err
? err
: nbytes
;
931 if (oh
.error
<= -1000 || oh
.error
> 0)
934 spin_lock(&fc
->lock
);
939 req
= request_find(fc
, oh
.unique
);
944 spin_unlock(&fc
->lock
);
945 fuse_copy_finish(&cs
);
946 spin_lock(&fc
->lock
);
947 request_end(fc
, req
);
950 /* Is it an interrupt reply? */
951 if (req
->intr_unique
== oh
.unique
) {
953 if (nbytes
!= sizeof(struct fuse_out_header
))
956 if (oh
.error
== -ENOSYS
)
957 fc
->no_interrupt
= 1;
958 else if (oh
.error
== -EAGAIN
)
959 queue_interrupt(fc
, req
);
961 spin_unlock(&fc
->lock
);
962 fuse_copy_finish(&cs
);
966 req
->state
= FUSE_REQ_WRITING
;
967 list_move(&req
->list
, &fc
->io
);
971 spin_unlock(&fc
->lock
);
973 err
= copy_out_args(&cs
, &req
->out
, nbytes
);
974 fuse_copy_finish(&cs
);
976 spin_lock(&fc
->lock
);
981 } else if (!req
->aborted
)
982 req
->out
.h
.error
= -EIO
;
983 request_end(fc
, req
);
985 return err
? err
: nbytes
;
988 spin_unlock(&fc
->lock
);
990 fuse_copy_finish(&cs
);
994 static unsigned fuse_dev_poll(struct file
*file
, poll_table
*wait
)
996 unsigned mask
= POLLOUT
| POLLWRNORM
;
997 struct fuse_conn
*fc
= fuse_get_conn(file
);
1001 poll_wait(file
, &fc
->waitq
, wait
);
1003 spin_lock(&fc
->lock
);
1006 else if (request_pending(fc
))
1007 mask
|= POLLIN
| POLLRDNORM
;
1008 spin_unlock(&fc
->lock
);
1014 * Abort all requests on the given list (pending or processing)
1016 * This function releases and reacquires fc->lock
1018 static void end_requests(struct fuse_conn
*fc
, struct list_head
*head
)
1019 __releases(&fc
->lock
)
1020 __acquires(&fc
->lock
)
1022 while (!list_empty(head
)) {
1023 struct fuse_req
*req
;
1024 req
= list_entry(head
->next
, struct fuse_req
, list
);
1025 req
->out
.h
.error
= -ECONNABORTED
;
1026 request_end(fc
, req
);
1027 spin_lock(&fc
->lock
);
1032 * Abort requests under I/O
1034 * The requests are set to aborted and finished, and the request
1035 * waiter is woken up. This will make request_wait_answer() wait
1036 * until the request is unlocked and then return.
1038 * If the request is asynchronous, then the end function needs to be
1039 * called after waiting for the request to be unlocked (if it was
1042 static void end_io_requests(struct fuse_conn
*fc
)
1043 __releases(&fc
->lock
)
1044 __acquires(&fc
->lock
)
1046 while (!list_empty(&fc
->io
)) {
1047 struct fuse_req
*req
=
1048 list_entry(fc
->io
.next
, struct fuse_req
, list
);
1049 void (*end
) (struct fuse_conn
*, struct fuse_req
*) = req
->end
;
1052 req
->out
.h
.error
= -ECONNABORTED
;
1053 req
->state
= FUSE_REQ_FINISHED
;
1054 list_del_init(&req
->list
);
1055 wake_up(&req
->waitq
);
1058 __fuse_get_request(req
);
1059 spin_unlock(&fc
->lock
);
1060 wait_event(req
->waitq
, !req
->locked
);
1062 fuse_put_request(fc
, req
);
1063 spin_lock(&fc
->lock
);
1069 * Abort all requests.
1071 * Emergency exit in case of a malicious or accidental deadlock, or
1072 * just a hung filesystem.
1074 * The same effect is usually achievable through killing the
1075 * filesystem daemon and all users of the filesystem. The exception
1076 * is the combination of an asynchronous request and the tricky
1077 * deadlock (see Documentation/filesystems/fuse.txt).
1079 * During the aborting, progression of requests from the pending and
1080 * processing lists onto the io list, and progression of new requests
1081 * onto the pending list is prevented by req->connected being false.
1083 * Progression of requests under I/O to the processing list is
1084 * prevented by the req->aborted flag being true for these requests.
1085 * For this reason requests on the io list must be aborted first.
1087 void fuse_abort_conn(struct fuse_conn
*fc
)
1089 spin_lock(&fc
->lock
);
1090 if (fc
->connected
) {
1093 end_io_requests(fc
);
1094 end_requests(fc
, &fc
->pending
);
1095 end_requests(fc
, &fc
->processing
);
1096 wake_up_all(&fc
->waitq
);
1097 wake_up_all(&fc
->blocked_waitq
);
1098 kill_fasync(&fc
->fasync
, SIGIO
, POLL_IN
);
1100 spin_unlock(&fc
->lock
);
1103 static int fuse_dev_release(struct inode
*inode
, struct file
*file
)
1105 struct fuse_conn
*fc
= fuse_get_conn(file
);
1107 spin_lock(&fc
->lock
);
1109 end_requests(fc
, &fc
->pending
);
1110 end_requests(fc
, &fc
->processing
);
1111 spin_unlock(&fc
->lock
);
1118 static int fuse_dev_fasync(int fd
, struct file
*file
, int on
)
1120 struct fuse_conn
*fc
= fuse_get_conn(file
);
1124 /* No locking - fasync_helper does its own locking */
1125 return fasync_helper(fd
, file
, on
, &fc
->fasync
);
1128 const struct file_operations fuse_dev_operations
= {
1129 .owner
= THIS_MODULE
,
1130 .llseek
= no_llseek
,
1131 .read
= do_sync_read
,
1132 .aio_read
= fuse_dev_read
,
1133 .write
= do_sync_write
,
1134 .aio_write
= fuse_dev_write
,
1135 .poll
= fuse_dev_poll
,
1136 .release
= fuse_dev_release
,
1137 .fasync
= fuse_dev_fasync
,
1140 static struct miscdevice fuse_miscdevice
= {
1141 .minor
= FUSE_MINOR
,
1143 .fops
= &fuse_dev_operations
,
1146 int __init
fuse_dev_init(void)
1149 fuse_req_cachep
= kmem_cache_create("fuse_request",
1150 sizeof(struct fuse_req
),
1152 if (!fuse_req_cachep
)
1155 err
= misc_register(&fuse_miscdevice
);
1157 goto out_cache_clean
;
1162 kmem_cache_destroy(fuse_req_cachep
);
1167 void fuse_dev_cleanup(void)
1169 misc_deregister(&fuse_miscdevice
);
1170 kmem_cache_destroy(fuse_req_cachep
);