2 * Copyright (c) International Business Machines Corp., 2006
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
12 * the GNU General Public License for more details.
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write to the Free Software
16 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18 * Author: Artem Bityutskiy (Битюцкий Артём)
22 * This file includes implementation of UBI character device operations.
24 * There are two kinds of character devices in UBI: UBI character devices and
25 * UBI volume character devices. UBI character devices allow users to
26 * manipulate whole volumes: create, remove, and re-size them. Volume character
27 * devices provide volume I/O capabilities.
29 * Major and minor numbers are assigned dynamically to both UBI and volume
32 * Well, there is the third kind of character devices - the UBI control
33 * character device, which allows to manipulate by UBI devices - create and
34 * delete them. In other words, it is used for attaching and detaching MTD
38 #include <linux/module.h>
39 #include <linux/stat.h>
40 #include <linux/slab.h>
41 #include <linux/ioctl.h>
42 #include <linux/capability.h>
43 #include <linux/uaccess.h>
44 #include <linux/compat.h>
45 #include <linux/math64.h>
46 #include <mtd/ubi-user.h>
50 * get_exclusive - get exclusive access to an UBI volume.
51 * @desc: volume descriptor
53 * This function changes UBI volume open mode to "exclusive". Returns previous
54 * mode value (positive integer) in case of success and a negative error code
57 static int get_exclusive(struct ubi_volume_desc
*desc
)
60 struct ubi_volume
*vol
= desc
->vol
;
62 spin_lock(&vol
->ubi
->volumes_lock
);
63 users
= vol
->readers
+ vol
->writers
+ vol
->exclusive
;
64 ubi_assert(users
> 0);
66 ubi_err("%d users for volume %d", users
, vol
->vol_id
);
69 vol
->readers
= vol
->writers
= 0;
72 desc
->mode
= UBI_EXCLUSIVE
;
74 spin_unlock(&vol
->ubi
->volumes_lock
);
80 * revoke_exclusive - revoke exclusive mode.
81 * @desc: volume descriptor
82 * @mode: new mode to switch to
84 static void revoke_exclusive(struct ubi_volume_desc
*desc
, int mode
)
86 struct ubi_volume
*vol
= desc
->vol
;
88 spin_lock(&vol
->ubi
->volumes_lock
);
89 ubi_assert(vol
->readers
== 0 && vol
->writers
== 0);
90 ubi_assert(vol
->exclusive
== 1 && desc
->mode
== UBI_EXCLUSIVE
);
92 if (mode
== UBI_READONLY
)
94 else if (mode
== UBI_READWRITE
)
98 spin_unlock(&vol
->ubi
->volumes_lock
);
103 static int vol_cdev_open(struct inode
*inode
, struct file
*file
)
105 struct ubi_volume_desc
*desc
;
106 int vol_id
= iminor(inode
) - 1, mode
, ubi_num
;
108 ubi_num
= ubi_major2num(imajor(inode
));
112 if (file
->f_mode
& FMODE_WRITE
)
113 mode
= UBI_READWRITE
;
117 dbg_gen("open device %d, volume %d, mode %d",
118 ubi_num
, vol_id
, mode
);
120 desc
= ubi_open_volume(ubi_num
, vol_id
, mode
);
122 return PTR_ERR(desc
);
124 file
->private_data
= desc
;
128 static int vol_cdev_release(struct inode
*inode
, struct file
*file
)
130 struct ubi_volume_desc
*desc
= file
->private_data
;
131 struct ubi_volume
*vol
= desc
->vol
;
133 dbg_gen("release device %d, volume %d, mode %d",
134 vol
->ubi
->ubi_num
, vol
->vol_id
, desc
->mode
);
137 ubi_warn("update of volume %d not finished, volume is damaged",
139 ubi_assert(!vol
->changing_leb
);
142 } else if (vol
->changing_leb
) {
143 dbg_gen("only %lld of %lld bytes received for atomic LEB change for volume %d:%d, cancel",
144 vol
->upd_received
, vol
->upd_bytes
, vol
->ubi
->ubi_num
,
146 vol
->changing_leb
= 0;
150 ubi_close_volume(desc
);
154 static loff_t
vol_cdev_llseek(struct file
*file
, loff_t offset
, int origin
)
156 struct ubi_volume_desc
*desc
= file
->private_data
;
157 struct ubi_volume
*vol
= desc
->vol
;
160 /* Update is in progress, seeking is prohibited */
165 return fixed_size_llseek(file
, offset
, origin
, vol
->used_bytes
);
168 static int vol_cdev_fsync(struct file
*file
, loff_t start
, loff_t end
,
171 struct ubi_volume_desc
*desc
= file
->private_data
;
172 struct ubi_device
*ubi
= desc
->vol
->ubi
;
173 struct inode
*inode
= file_inode(file
);
175 mutex_lock(&inode
->i_mutex
);
176 err
= ubi_sync(ubi
->ubi_num
);
177 mutex_unlock(&inode
->i_mutex
);
182 static ssize_t
vol_cdev_read(struct file
*file
, __user
char *buf
, size_t count
,
185 struct ubi_volume_desc
*desc
= file
->private_data
;
186 struct ubi_volume
*vol
= desc
->vol
;
187 struct ubi_device
*ubi
= vol
->ubi
;
188 int err
, lnum
, off
, len
, tbuf_size
;
189 size_t count_save
= count
;
192 dbg_gen("read %zd bytes from offset %lld of volume %d",
193 count
, *offp
, vol
->vol_id
);
199 if (vol
->upd_marker
) {
200 ubi_err("damaged volume, update marker is set");
203 if (*offp
== vol
->used_bytes
|| count
== 0)
207 dbg_gen("read from corrupted volume %d", vol
->vol_id
);
209 if (*offp
+ count
> vol
->used_bytes
)
210 count_save
= count
= vol
->used_bytes
- *offp
;
212 tbuf_size
= vol
->usable_leb_size
;
213 if (count
< tbuf_size
)
214 tbuf_size
= ALIGN(count
, ubi
->min_io_size
);
215 tbuf
= vmalloc(tbuf_size
);
219 len
= count
> tbuf_size
? tbuf_size
: count
;
220 lnum
= div_u64_rem(*offp
, vol
->usable_leb_size
, &off
);
225 if (off
+ len
>= vol
->usable_leb_size
)
226 len
= vol
->usable_leb_size
- off
;
228 err
= ubi_eba_read_leb(ubi
, vol
, lnum
, tbuf
, off
, len
, 0);
233 if (off
== vol
->usable_leb_size
) {
235 off
-= vol
->usable_leb_size
;
241 err
= copy_to_user(buf
, tbuf
, len
);
248 len
= count
> tbuf_size
? tbuf_size
: count
;
252 return err
? err
: count_save
- count
;
256 * This function allows to directly write to dynamic UBI volumes, without
257 * issuing the volume update operation.
259 static ssize_t
vol_cdev_direct_write(struct file
*file
, const char __user
*buf
,
260 size_t count
, loff_t
*offp
)
262 struct ubi_volume_desc
*desc
= file
->private_data
;
263 struct ubi_volume
*vol
= desc
->vol
;
264 struct ubi_device
*ubi
= vol
->ubi
;
265 int lnum
, off
, len
, tbuf_size
, err
= 0;
266 size_t count_save
= count
;
269 if (!vol
->direct_writes
)
272 dbg_gen("requested: write %zd bytes to offset %lld of volume %u",
273 count
, *offp
, vol
->vol_id
);
275 if (vol
->vol_type
== UBI_STATIC_VOLUME
)
278 lnum
= div_u64_rem(*offp
, vol
->usable_leb_size
, &off
);
279 if (off
& (ubi
->min_io_size
- 1)) {
280 ubi_err("unaligned position");
284 if (*offp
+ count
> vol
->used_bytes
)
285 count_save
= count
= vol
->used_bytes
- *offp
;
287 /* We can write only in fractions of the minimum I/O unit */
288 if (count
& (ubi
->min_io_size
- 1)) {
289 ubi_err("unaligned write length");
293 tbuf_size
= vol
->usable_leb_size
;
294 if (count
< tbuf_size
)
295 tbuf_size
= ALIGN(count
, ubi
->min_io_size
);
296 tbuf
= vmalloc(tbuf_size
);
300 len
= count
> tbuf_size
? tbuf_size
: count
;
305 if (off
+ len
>= vol
->usable_leb_size
)
306 len
= vol
->usable_leb_size
- off
;
308 err
= copy_from_user(tbuf
, buf
, len
);
314 err
= ubi_eba_write_leb(ubi
, vol
, lnum
, tbuf
, off
, len
);
319 if (off
== vol
->usable_leb_size
) {
321 off
-= vol
->usable_leb_size
;
327 len
= count
> tbuf_size
? tbuf_size
: count
;
331 return err
? err
: count_save
- count
;
334 static ssize_t
vol_cdev_write(struct file
*file
, const char __user
*buf
,
335 size_t count
, loff_t
*offp
)
338 struct ubi_volume_desc
*desc
= file
->private_data
;
339 struct ubi_volume
*vol
= desc
->vol
;
340 struct ubi_device
*ubi
= vol
->ubi
;
342 if (!vol
->updating
&& !vol
->changing_leb
)
343 return vol_cdev_direct_write(file
, buf
, count
, offp
);
346 err
= ubi_more_update_data(ubi
, vol
, buf
, count
);
348 err
= ubi_more_leb_change_data(ubi
, vol
, buf
, count
);
351 ubi_err("cannot accept more %zd bytes of data, error %d",
358 * The operation is finished, @err contains number of actually
363 if (vol
->changing_leb
) {
364 revoke_exclusive(desc
, UBI_READWRITE
);
368 err
= ubi_check_volume(ubi
, vol
->vol_id
);
373 ubi_warn("volume %d on UBI device %d is corrupted",
374 vol
->vol_id
, ubi
->ubi_num
);
378 ubi_volume_notify(ubi
, vol
, UBI_VOLUME_UPDATED
);
379 revoke_exclusive(desc
, UBI_READWRITE
);
385 static long vol_cdev_ioctl(struct file
*file
, unsigned int cmd
,
389 struct ubi_volume_desc
*desc
= file
->private_data
;
390 struct ubi_volume
*vol
= desc
->vol
;
391 struct ubi_device
*ubi
= vol
->ubi
;
392 void __user
*argp
= (void __user
*)arg
;
395 /* Volume update command */
398 int64_t bytes
, rsvd_bytes
;
400 if (!capable(CAP_SYS_RESOURCE
)) {
405 err
= copy_from_user(&bytes
, argp
, sizeof(int64_t));
411 if (desc
->mode
== UBI_READONLY
) {
416 rsvd_bytes
= (long long)vol
->reserved_pebs
*
417 ubi
->leb_size
-vol
->data_pad
;
418 if (bytes
< 0 || bytes
> rsvd_bytes
) {
423 err
= get_exclusive(desc
);
427 err
= ubi_start_update(ubi
, vol
, bytes
);
429 revoke_exclusive(desc
, UBI_READWRITE
);
433 /* Atomic logical eraseblock change command */
436 struct ubi_leb_change_req req
;
438 err
= copy_from_user(&req
, argp
,
439 sizeof(struct ubi_leb_change_req
));
445 if (desc
->mode
== UBI_READONLY
||
446 vol
->vol_type
== UBI_STATIC_VOLUME
) {
451 /* Validate the request */
453 if (req
.lnum
< 0 || req
.lnum
>= vol
->reserved_pebs
||
454 req
.bytes
< 0 || req
.lnum
>= vol
->usable_leb_size
)
457 err
= get_exclusive(desc
);
461 err
= ubi_start_leb_change(ubi
, vol
, &req
);
463 revoke_exclusive(desc
, UBI_READWRITE
);
467 /* Logical eraseblock erasure command */
472 err
= get_user(lnum
, (__user
int32_t *)argp
);
478 if (desc
->mode
== UBI_READONLY
||
479 vol
->vol_type
== UBI_STATIC_VOLUME
) {
484 if (lnum
< 0 || lnum
>= vol
->reserved_pebs
) {
489 dbg_gen("erase LEB %d:%d", vol
->vol_id
, lnum
);
490 err
= ubi_eba_unmap_leb(ubi
, vol
, lnum
);
494 err
= ubi_wl_flush(ubi
, UBI_ALL
, UBI_ALL
);
498 /* Logical eraseblock map command */
501 struct ubi_map_req req
;
503 err
= copy_from_user(&req
, argp
, sizeof(struct ubi_map_req
));
508 err
= ubi_leb_map(desc
, req
.lnum
);
512 /* Logical eraseblock un-map command */
517 err
= get_user(lnum
, (__user
int32_t *)argp
);
522 err
= ubi_leb_unmap(desc
, lnum
);
526 /* Check if logical eraseblock is mapped command */
531 err
= get_user(lnum
, (__user
int32_t *)argp
);
536 err
= ubi_is_mapped(desc
, lnum
);
540 /* Set volume property command */
541 case UBI_IOCSETVOLPROP
:
543 struct ubi_set_vol_prop_req req
;
545 err
= copy_from_user(&req
, argp
,
546 sizeof(struct ubi_set_vol_prop_req
));
551 switch (req
.property
) {
552 case UBI_VOL_PROP_DIRECT_WRITE
:
553 mutex_lock(&ubi
->device_mutex
);
554 desc
->vol
->direct_writes
= !!req
.value
;
555 mutex_unlock(&ubi
->device_mutex
);
564 /* Create a R/O block device on top of the UBI volume */
565 case UBI_IOCVOLCRBLK
:
567 struct ubi_volume_info vi
;
569 ubi_get_volume_info(desc
, &vi
);
570 err
= ubiblock_create(&vi
);
574 /* Remove the R/O block device */
575 case UBI_IOCVOLRMBLK
:
577 struct ubi_volume_info vi
;
579 ubi_get_volume_info(desc
, &vi
);
580 err
= ubiblock_remove(&vi
);
592 * verify_mkvol_req - verify volume creation request.
593 * @ubi: UBI device description object
594 * @req: the request to check
596 * This function zero if the request is correct, and %-EINVAL if not.
598 static int verify_mkvol_req(const struct ubi_device
*ubi
,
599 const struct ubi_mkvol_req
*req
)
601 int n
, err
= -EINVAL
;
603 if (req
->bytes
< 0 || req
->alignment
< 0 || req
->vol_type
< 0 ||
607 if ((req
->vol_id
< 0 || req
->vol_id
>= ubi
->vtbl_slots
) &&
608 req
->vol_id
!= UBI_VOL_NUM_AUTO
)
611 if (req
->alignment
== 0)
617 if (req
->vol_type
!= UBI_DYNAMIC_VOLUME
&&
618 req
->vol_type
!= UBI_STATIC_VOLUME
)
621 if (req
->alignment
> ubi
->leb_size
)
624 n
= req
->alignment
& (ubi
->min_io_size
- 1);
625 if (req
->alignment
!= 1 && n
)
628 if (!req
->name
[0] || !req
->name_len
)
631 if (req
->name_len
> UBI_VOL_NAME_MAX
) {
636 n
= strnlen(req
->name
, req
->name_len
+ 1);
637 if (n
!= req
->name_len
)
643 ubi_err("bad volume creation request");
644 ubi_dump_mkvol_req(req
);
649 * verify_rsvol_req - verify volume re-size request.
650 * @ubi: UBI device description object
651 * @req: the request to check
653 * This function returns zero if the request is correct, and %-EINVAL if not.
655 static int verify_rsvol_req(const struct ubi_device
*ubi
,
656 const struct ubi_rsvol_req
*req
)
661 if (req
->vol_id
< 0 || req
->vol_id
>= ubi
->vtbl_slots
)
668 * rename_volumes - rename UBI volumes.
669 * @ubi: UBI device description object
670 * @req: volumes re-name request
672 * This is a helper function for the volume re-name IOCTL which validates the
673 * the request, opens the volume and calls corresponding volumes management
674 * function. Returns zero in case of success and a negative error code in case
677 static int rename_volumes(struct ubi_device
*ubi
,
678 struct ubi_rnvol_req
*req
)
681 struct list_head rename_list
;
682 struct ubi_rename_entry
*re
, *re1
;
684 if (req
->count
< 0 || req
->count
> UBI_MAX_RNVOL
)
690 /* Validate volume IDs and names in the request */
691 for (i
= 0; i
< req
->count
; i
++) {
692 if (req
->ents
[i
].vol_id
< 0 ||
693 req
->ents
[i
].vol_id
>= ubi
->vtbl_slots
)
695 if (req
->ents
[i
].name_len
< 0)
697 if (req
->ents
[i
].name_len
> UBI_VOL_NAME_MAX
)
698 return -ENAMETOOLONG
;
699 req
->ents
[i
].name
[req
->ents
[i
].name_len
] = '\0';
700 n
= strlen(req
->ents
[i
].name
);
701 if (n
!= req
->ents
[i
].name_len
)
705 /* Make sure volume IDs and names are unique */
706 for (i
= 0; i
< req
->count
- 1; i
++) {
707 for (n
= i
+ 1; n
< req
->count
; n
++) {
708 if (req
->ents
[i
].vol_id
== req
->ents
[n
].vol_id
) {
709 ubi_err("duplicated volume id %d",
710 req
->ents
[i
].vol_id
);
713 if (!strcmp(req
->ents
[i
].name
, req
->ents
[n
].name
)) {
714 ubi_err("duplicated volume name \"%s\"",
721 /* Create the re-name list */
722 INIT_LIST_HEAD(&rename_list
);
723 for (i
= 0; i
< req
->count
; i
++) {
724 int vol_id
= req
->ents
[i
].vol_id
;
725 int name_len
= req
->ents
[i
].name_len
;
726 const char *name
= req
->ents
[i
].name
;
728 re
= kzalloc(sizeof(struct ubi_rename_entry
), GFP_KERNEL
);
734 re
->desc
= ubi_open_volume(ubi
->ubi_num
, vol_id
, UBI_READWRITE
);
735 if (IS_ERR(re
->desc
)) {
736 err
= PTR_ERR(re
->desc
);
737 ubi_err("cannot open volume %d, error %d", vol_id
, err
);
742 /* Skip this re-naming if the name does not really change */
743 if (re
->desc
->vol
->name_len
== name_len
&&
744 !memcmp(re
->desc
->vol
->name
, name
, name_len
)) {
745 ubi_close_volume(re
->desc
);
750 re
->new_name_len
= name_len
;
751 memcpy(re
->new_name
, name
, name_len
);
752 list_add_tail(&re
->list
, &rename_list
);
753 dbg_gen("will rename volume %d from \"%s\" to \"%s\"",
754 vol_id
, re
->desc
->vol
->name
, name
);
757 if (list_empty(&rename_list
))
760 /* Find out the volumes which have to be removed */
761 list_for_each_entry(re
, &rename_list
, list
) {
762 struct ubi_volume_desc
*desc
;
763 int no_remove_needed
= 0;
766 * Volume @re->vol_id is going to be re-named to
767 * @re->new_name, while its current name is @name. If a volume
768 * with name @re->new_name currently exists, it has to be
769 * removed, unless it is also re-named in the request (@req).
771 list_for_each_entry(re1
, &rename_list
, list
) {
772 if (re
->new_name_len
== re1
->desc
->vol
->name_len
&&
773 !memcmp(re
->new_name
, re1
->desc
->vol
->name
,
774 re1
->desc
->vol
->name_len
)) {
775 no_remove_needed
= 1;
780 if (no_remove_needed
)
784 * It seems we need to remove volume with name @re->new_name,
787 desc
= ubi_open_volume_nm(ubi
->ubi_num
, re
->new_name
,
792 /* Re-naming into a non-existing volume name */
795 /* The volume exists but busy, or an error occurred */
796 ubi_err("cannot open volume \"%s\", error %d",
801 re1
= kzalloc(sizeof(struct ubi_rename_entry
), GFP_KERNEL
);
804 ubi_close_volume(desc
);
810 list_add(&re1
->list
, &rename_list
);
811 dbg_gen("will remove volume %d, name \"%s\"",
812 re1
->desc
->vol
->vol_id
, re1
->desc
->vol
->name
);
815 mutex_lock(&ubi
->device_mutex
);
816 err
= ubi_rename_volumes(ubi
, &rename_list
);
817 mutex_unlock(&ubi
->device_mutex
);
820 list_for_each_entry_safe(re
, re1
, &rename_list
, list
) {
821 ubi_close_volume(re
->desc
);
828 static long ubi_cdev_ioctl(struct file
*file
, unsigned int cmd
,
832 struct ubi_device
*ubi
;
833 struct ubi_volume_desc
*desc
;
834 void __user
*argp
= (void __user
*)arg
;
836 if (!capable(CAP_SYS_RESOURCE
))
839 ubi
= ubi_get_by_major(imajor(file
->f_mapping
->host
));
844 /* Create volume command */
847 struct ubi_mkvol_req req
;
849 dbg_gen("create volume");
850 err
= copy_from_user(&req
, argp
, sizeof(struct ubi_mkvol_req
));
856 err
= verify_mkvol_req(ubi
, &req
);
860 mutex_lock(&ubi
->device_mutex
);
861 err
= ubi_create_volume(ubi
, &req
);
862 mutex_unlock(&ubi
->device_mutex
);
866 err
= put_user(req
.vol_id
, (__user
int32_t *)argp
);
873 /* Remove volume command */
878 dbg_gen("remove volume");
879 err
= get_user(vol_id
, (__user
int32_t *)argp
);
885 desc
= ubi_open_volume(ubi
->ubi_num
, vol_id
, UBI_EXCLUSIVE
);
891 mutex_lock(&ubi
->device_mutex
);
892 err
= ubi_remove_volume(desc
, 0);
893 mutex_unlock(&ubi
->device_mutex
);
896 * The volume is deleted (unless an error occurred), and the
897 * 'struct ubi_volume' object will be freed when
898 * 'ubi_close_volume()' will call 'put_device()'.
900 ubi_close_volume(desc
);
904 /* Re-size volume command */
908 struct ubi_rsvol_req req
;
910 dbg_gen("re-size volume");
911 err
= copy_from_user(&req
, argp
, sizeof(struct ubi_rsvol_req
));
917 err
= verify_rsvol_req(ubi
, &req
);
921 desc
= ubi_open_volume(ubi
->ubi_num
, req
.vol_id
, UBI_EXCLUSIVE
);
927 pebs
= div_u64(req
.bytes
+ desc
->vol
->usable_leb_size
- 1,
928 desc
->vol
->usable_leb_size
);
930 mutex_lock(&ubi
->device_mutex
);
931 err
= ubi_resize_volume(desc
, pebs
);
932 mutex_unlock(&ubi
->device_mutex
);
933 ubi_close_volume(desc
);
937 /* Re-name volumes command */
940 struct ubi_rnvol_req
*req
;
942 dbg_gen("re-name volumes");
943 req
= kmalloc(sizeof(struct ubi_rnvol_req
), GFP_KERNEL
);
949 err
= copy_from_user(req
, argp
, sizeof(struct ubi_rnvol_req
));
956 err
= rename_volumes(ubi
, req
);
970 static long ctrl_cdev_ioctl(struct file
*file
, unsigned int cmd
,
974 void __user
*argp
= (void __user
*)arg
;
976 if (!capable(CAP_SYS_RESOURCE
))
980 /* Attach an MTD device command */
983 struct ubi_attach_req req
;
984 struct mtd_info
*mtd
;
986 dbg_gen("attach MTD device");
987 err
= copy_from_user(&req
, argp
, sizeof(struct ubi_attach_req
));
993 if (req
.mtd_num
< 0 ||
994 (req
.ubi_num
< 0 && req
.ubi_num
!= UBI_DEV_NUM_AUTO
)) {
999 mtd
= get_mtd_device(NULL
, req
.mtd_num
);
1006 * Note, further request verification is done by
1007 * 'ubi_attach_mtd_dev()'.
1009 mutex_lock(&ubi_devices_mutex
);
1010 err
= ubi_attach_mtd_dev(mtd
, req
.ubi_num
, req
.vid_hdr_offset
,
1011 req
.max_beb_per1024
);
1012 mutex_unlock(&ubi_devices_mutex
);
1014 put_mtd_device(mtd
);
1016 /* @err contains UBI device number */
1017 err
= put_user(err
, (__user
int32_t *)argp
);
1022 /* Detach an MTD device command */
1027 dbg_gen("detach MTD device");
1028 err
= get_user(ubi_num
, (__user
int32_t *)argp
);
1034 mutex_lock(&ubi_devices_mutex
);
1035 err
= ubi_detach_mtd_dev(ubi_num
, 0);
1036 mutex_unlock(&ubi_devices_mutex
);
1048 #ifdef CONFIG_COMPAT
1049 static long vol_cdev_compat_ioctl(struct file
*file
, unsigned int cmd
,
1052 unsigned long translated_arg
= (unsigned long)compat_ptr(arg
);
1054 return vol_cdev_ioctl(file
, cmd
, translated_arg
);
1057 static long ubi_cdev_compat_ioctl(struct file
*file
, unsigned int cmd
,
1060 unsigned long translated_arg
= (unsigned long)compat_ptr(arg
);
1062 return ubi_cdev_ioctl(file
, cmd
, translated_arg
);
1065 static long ctrl_cdev_compat_ioctl(struct file
*file
, unsigned int cmd
,
1068 unsigned long translated_arg
= (unsigned long)compat_ptr(arg
);
1070 return ctrl_cdev_ioctl(file
, cmd
, translated_arg
);
1073 #define vol_cdev_compat_ioctl NULL
1074 #define ubi_cdev_compat_ioctl NULL
1075 #define ctrl_cdev_compat_ioctl NULL
1078 /* UBI volume character device operations */
1079 const struct file_operations ubi_vol_cdev_operations
= {
1080 .owner
= THIS_MODULE
,
1081 .open
= vol_cdev_open
,
1082 .release
= vol_cdev_release
,
1083 .llseek
= vol_cdev_llseek
,
1084 .read
= vol_cdev_read
,
1085 .write
= vol_cdev_write
,
1086 .fsync
= vol_cdev_fsync
,
1087 .unlocked_ioctl
= vol_cdev_ioctl
,
1088 .compat_ioctl
= vol_cdev_compat_ioctl
,
1091 /* UBI character device operations */
1092 const struct file_operations ubi_cdev_operations
= {
1093 .owner
= THIS_MODULE
,
1094 .llseek
= no_llseek
,
1095 .unlocked_ioctl
= ubi_cdev_ioctl
,
1096 .compat_ioctl
= ubi_cdev_compat_ioctl
,
1099 /* UBI control character device operations */
1100 const struct file_operations ubi_ctrl_cdev_operations
= {
1101 .owner
= THIS_MODULE
,
1102 .unlocked_ioctl
= ctrl_cdev_ioctl
,
1103 .compat_ioctl
= ctrl_cdev_compat_ioctl
,
1104 .llseek
= no_llseek
,