1 // SPDX-License-Identifier: GPL-2.0
3 * linux/fs/ocfs2/ioctl.c
5 * Copyright (C) 2006 Herbert Poetzl
6 * adapted from Remy Card's ext2/ioctl.c
10 #include <linux/mount.h>
11 #include <linux/blkdev.h>
12 #include <linux/compat.h>
14 #include <cluster/masklog.h>
26 #include "refcounttree.h"
29 #include "buffer_head_io.h"
31 #include "move_extents.h"
33 #define o2info_from_user(a, b) \
34 copy_from_user(&(a), (b), sizeof(a))
35 #define o2info_to_user(a, b) \
36 copy_to_user((typeof(a) __user *)b, &(a), sizeof(a))
39 * This is just a best-effort to tell userspace that this request
42 static inline void o2info_set_request_error(struct ocfs2_info_request
*kreq
,
43 struct ocfs2_info_request __user
*req
)
45 kreq
->ir_flags
|= OCFS2_INFO_FL_ERROR
;
46 (void)put_user(kreq
->ir_flags
, (__u32 __user
*)&(req
->ir_flags
));
49 static inline void o2info_set_request_filled(struct ocfs2_info_request
*req
)
51 req
->ir_flags
|= OCFS2_INFO_FL_FILLED
;
54 static inline void o2info_clear_request_filled(struct ocfs2_info_request
*req
)
56 req
->ir_flags
&= ~OCFS2_INFO_FL_FILLED
;
59 static inline int o2info_coherent(struct ocfs2_info_request
*req
)
61 return (!(req
->ir_flags
& OCFS2_INFO_FL_NON_COHERENT
));
64 static int ocfs2_get_inode_attr(struct inode
*inode
, unsigned *flags
)
68 status
= ocfs2_inode_lock(inode
, NULL
, 0);
73 ocfs2_get_inode_flags(OCFS2_I(inode
));
74 *flags
= OCFS2_I(inode
)->ip_attr
;
75 ocfs2_inode_unlock(inode
, 0);
80 static int ocfs2_set_inode_attr(struct inode
*inode
, unsigned flags
,
83 struct ocfs2_inode_info
*ocfs2_inode
= OCFS2_I(inode
);
84 struct ocfs2_super
*osb
= OCFS2_SB(inode
->i_sb
);
85 handle_t
*handle
= NULL
;
86 struct buffer_head
*bh
= NULL
;
92 status
= ocfs2_inode_lock(inode
, &bh
, 1);
99 if (!inode_owner_or_capable(inode
))
102 if (!S_ISDIR(inode
->i_mode
))
103 flags
&= ~OCFS2_DIRSYNC_FL
;
105 oldflags
= ocfs2_inode
->ip_attr
;
106 flags
= flags
& mask
;
107 flags
|= oldflags
& ~mask
;
110 * The IMMUTABLE and APPEND_ONLY flags can only be changed by
111 * the relevant capability.
114 if ((oldflags
& OCFS2_IMMUTABLE_FL
) || ((flags
^ oldflags
) &
115 (OCFS2_APPEND_FL
| OCFS2_IMMUTABLE_FL
))) {
116 if (!capable(CAP_LINUX_IMMUTABLE
))
120 handle
= ocfs2_start_trans(osb
, OCFS2_INODE_UPDATE_CREDITS
);
121 if (IS_ERR(handle
)) {
122 status
= PTR_ERR(handle
);
127 ocfs2_inode
->ip_attr
= flags
;
128 ocfs2_set_inode_flags(inode
);
130 status
= ocfs2_mark_inode_dirty(handle
, inode
, bh
);
134 ocfs2_commit_trans(osb
, handle
);
137 ocfs2_inode_unlock(inode
, 1);
146 static int ocfs2_info_handle_blocksize(struct inode
*inode
,
147 struct ocfs2_info_request __user
*req
)
149 struct ocfs2_info_blocksize oib
;
151 if (o2info_from_user(oib
, req
))
154 oib
.ib_blocksize
= inode
->i_sb
->s_blocksize
;
156 o2info_set_request_filled(&oib
.ib_req
);
158 if (o2info_to_user(oib
, req
))
164 static int ocfs2_info_handle_clustersize(struct inode
*inode
,
165 struct ocfs2_info_request __user
*req
)
167 struct ocfs2_info_clustersize oic
;
168 struct ocfs2_super
*osb
= OCFS2_SB(inode
->i_sb
);
170 if (o2info_from_user(oic
, req
))
173 oic
.ic_clustersize
= osb
->s_clustersize
;
175 o2info_set_request_filled(&oic
.ic_req
);
177 if (o2info_to_user(oic
, req
))
183 static int ocfs2_info_handle_maxslots(struct inode
*inode
,
184 struct ocfs2_info_request __user
*req
)
186 struct ocfs2_info_maxslots oim
;
187 struct ocfs2_super
*osb
= OCFS2_SB(inode
->i_sb
);
189 if (o2info_from_user(oim
, req
))
192 oim
.im_max_slots
= osb
->max_slots
;
194 o2info_set_request_filled(&oim
.im_req
);
196 if (o2info_to_user(oim
, req
))
202 static int ocfs2_info_handle_label(struct inode
*inode
,
203 struct ocfs2_info_request __user
*req
)
205 struct ocfs2_info_label oil
;
206 struct ocfs2_super
*osb
= OCFS2_SB(inode
->i_sb
);
208 if (o2info_from_user(oil
, req
))
211 memcpy(oil
.il_label
, osb
->vol_label
, OCFS2_MAX_VOL_LABEL_LEN
);
213 o2info_set_request_filled(&oil
.il_req
);
215 if (o2info_to_user(oil
, req
))
221 static int ocfs2_info_handle_uuid(struct inode
*inode
,
222 struct ocfs2_info_request __user
*req
)
224 struct ocfs2_info_uuid oiu
;
225 struct ocfs2_super
*osb
= OCFS2_SB(inode
->i_sb
);
227 if (o2info_from_user(oiu
, req
))
230 memcpy(oiu
.iu_uuid_str
, osb
->uuid_str
, OCFS2_TEXT_UUID_LEN
+ 1);
232 o2info_set_request_filled(&oiu
.iu_req
);
234 if (o2info_to_user(oiu
, req
))
240 static int ocfs2_info_handle_fs_features(struct inode
*inode
,
241 struct ocfs2_info_request __user
*req
)
243 struct ocfs2_info_fs_features oif
;
244 struct ocfs2_super
*osb
= OCFS2_SB(inode
->i_sb
);
246 if (o2info_from_user(oif
, req
))
249 oif
.if_compat_features
= osb
->s_feature_compat
;
250 oif
.if_incompat_features
= osb
->s_feature_incompat
;
251 oif
.if_ro_compat_features
= osb
->s_feature_ro_compat
;
253 o2info_set_request_filled(&oif
.if_req
);
255 if (o2info_to_user(oif
, req
))
261 static int ocfs2_info_handle_journal_size(struct inode
*inode
,
262 struct ocfs2_info_request __user
*req
)
264 struct ocfs2_info_journal_size oij
;
265 struct ocfs2_super
*osb
= OCFS2_SB(inode
->i_sb
);
267 if (o2info_from_user(oij
, req
))
270 oij
.ij_journal_size
= i_size_read(osb
->journal
->j_inode
);
272 o2info_set_request_filled(&oij
.ij_req
);
274 if (o2info_to_user(oij
, req
))
280 static int ocfs2_info_scan_inode_alloc(struct ocfs2_super
*osb
,
281 struct inode
*inode_alloc
, u64 blkno
,
282 struct ocfs2_info_freeinode
*fi
,
285 int status
= 0, unlock
= 0;
287 struct buffer_head
*bh
= NULL
;
288 struct ocfs2_dinode
*dinode_alloc
= NULL
;
291 inode_lock(inode_alloc
);
293 if (o2info_coherent(&fi
->ifi_req
)) {
294 status
= ocfs2_inode_lock(inode_alloc
, &bh
, 0);
301 status
= ocfs2_read_blocks_sync(osb
, blkno
, 1, &bh
);
308 dinode_alloc
= (struct ocfs2_dinode
*)bh
->b_data
;
310 fi
->ifi_stat
[slot
].lfi_total
=
311 le32_to_cpu(dinode_alloc
->id1
.bitmap1
.i_total
);
312 fi
->ifi_stat
[slot
].lfi_free
=
313 le32_to_cpu(dinode_alloc
->id1
.bitmap1
.i_total
) -
314 le32_to_cpu(dinode_alloc
->id1
.bitmap1
.i_used
);
318 ocfs2_inode_unlock(inode_alloc
, 0);
321 inode_unlock(inode_alloc
);
328 static int ocfs2_info_handle_freeinode(struct inode
*inode
,
329 struct ocfs2_info_request __user
*req
)
334 int status
, type
= INODE_ALLOC_SYSTEM_INODE
;
335 struct ocfs2_info_freeinode
*oifi
= NULL
;
336 struct ocfs2_super
*osb
= OCFS2_SB(inode
->i_sb
);
337 struct inode
*inode_alloc
= NULL
;
339 oifi
= kzalloc(sizeof(struct ocfs2_info_freeinode
), GFP_KERNEL
);
346 if (o2info_from_user(*oifi
, req
)) {
351 oifi
->ifi_slotnum
= osb
->max_slots
;
353 for (i
= 0; i
< oifi
->ifi_slotnum
; i
++) {
354 if (o2info_coherent(&oifi
->ifi_req
)) {
355 inode_alloc
= ocfs2_get_system_file_inode(osb
, type
, i
);
357 mlog(ML_ERROR
, "unable to get alloc inode in "
363 ocfs2_sprintf_system_inode_name(namebuf
,
366 status
= ocfs2_lookup_ino_from_name(osb
->sys_root_inode
,
376 status
= ocfs2_info_scan_inode_alloc(osb
, inode_alloc
, blkno
, oifi
, i
);
385 o2info_set_request_filled(&oifi
->ifi_req
);
387 if (o2info_to_user(*oifi
, req
)) {
395 o2info_set_request_error(&oifi
->ifi_req
, req
);
402 static void o2ffg_update_histogram(struct ocfs2_info_free_chunk_list
*hist
,
403 unsigned int chunksize
)
407 index
= __ilog2_u32(chunksize
);
408 if (index
>= OCFS2_INFO_MAX_HIST
)
409 index
= OCFS2_INFO_MAX_HIST
- 1;
411 hist
->fc_chunks
[index
]++;
412 hist
->fc_clusters
[index
] += chunksize
;
415 static void o2ffg_update_stats(struct ocfs2_info_freefrag_stats
*stats
,
416 unsigned int chunksize
)
418 if (chunksize
> stats
->ffs_max
)
419 stats
->ffs_max
= chunksize
;
421 if (chunksize
< stats
->ffs_min
)
422 stats
->ffs_min
= chunksize
;
424 stats
->ffs_avg
+= chunksize
;
425 stats
->ffs_free_chunks_real
++;
428 static void ocfs2_info_update_ffg(struct ocfs2_info_freefrag
*ffg
,
429 unsigned int chunksize
)
431 o2ffg_update_histogram(&(ffg
->iff_ffs
.ffs_fc_hist
), chunksize
);
432 o2ffg_update_stats(&(ffg
->iff_ffs
), chunksize
);
435 static int ocfs2_info_freefrag_scan_chain(struct ocfs2_super
*osb
,
436 struct inode
*gb_inode
,
437 struct ocfs2_dinode
*gb_dinode
,
438 struct ocfs2_chain_rec
*rec
,
439 struct ocfs2_info_freefrag
*ffg
,
442 int status
= 0, used
;
445 struct buffer_head
*bh
= NULL
;
446 struct ocfs2_group_desc
*bg
= NULL
;
448 unsigned int max_bits
, num_clusters
;
449 unsigned int offset
= 0, cluster
, chunk
;
450 unsigned int chunk_free
, last_chunksize
= 0;
452 if (!le32_to_cpu(rec
->c_free
))
457 blkno
= le64_to_cpu(rec
->c_blkno
);
459 blkno
= le64_to_cpu(bg
->bg_next_group
);
466 if (o2info_coherent(&ffg
->iff_req
))
467 status
= ocfs2_read_group_descriptor(gb_inode
,
471 status
= ocfs2_read_blocks_sync(osb
, blkno
, 1, &bh
);
474 mlog(ML_ERROR
, "Can't read the group descriptor # "
475 "%llu from device.", (unsigned long long)blkno
);
480 bg
= (struct ocfs2_group_desc
*)bh
->b_data
;
482 if (!le16_to_cpu(bg
->bg_free_bits_count
))
485 max_bits
= le16_to_cpu(bg
->bg_bits
);
488 for (chunk
= 0; chunk
< chunks_in_group
; chunk
++) {
490 * last chunk may be not an entire one.
492 if ((offset
+ ffg
->iff_chunksize
) > max_bits
)
493 num_clusters
= max_bits
- offset
;
495 num_clusters
= ffg
->iff_chunksize
;
498 for (cluster
= 0; cluster
< num_clusters
; cluster
++) {
499 used
= ocfs2_test_bit(offset
,
500 (unsigned long *)bg
->bg_bitmap
);
502 * - chunk_free counts free clusters in #N chunk.
503 * - last_chunksize records the size(in) clusters
504 * for the last real free chunk being counted.
511 if (used
&& last_chunksize
) {
512 ocfs2_info_update_ffg(ffg
,
520 if (chunk_free
== ffg
->iff_chunksize
)
521 ffg
->iff_ffs
.ffs_free_chunks
++;
525 * need to update the info for last free chunk.
528 ocfs2_info_update_ffg(ffg
, last_chunksize
);
530 } while (le64_to_cpu(bg
->bg_next_group
));
538 static int ocfs2_info_freefrag_scan_bitmap(struct ocfs2_super
*osb
,
539 struct inode
*gb_inode
, u64 blkno
,
540 struct ocfs2_info_freefrag
*ffg
)
543 int status
= 0, unlock
= 0, i
;
545 struct buffer_head
*bh
= NULL
;
546 struct ocfs2_chain_list
*cl
= NULL
;
547 struct ocfs2_chain_rec
*rec
= NULL
;
548 struct ocfs2_dinode
*gb_dinode
= NULL
;
551 inode_lock(gb_inode
);
553 if (o2info_coherent(&ffg
->iff_req
)) {
554 status
= ocfs2_inode_lock(gb_inode
, &bh
, 0);
561 status
= ocfs2_read_blocks_sync(osb
, blkno
, 1, &bh
);
568 gb_dinode
= (struct ocfs2_dinode
*)bh
->b_data
;
569 cl
= &(gb_dinode
->id2
.i_chain
);
572 * Chunksize(in) clusters from userspace should be
573 * less than clusters in a group.
575 if (ffg
->iff_chunksize
> le16_to_cpu(cl
->cl_cpg
)) {
580 memset(&ffg
->iff_ffs
, 0, sizeof(struct ocfs2_info_freefrag_stats
));
582 ffg
->iff_ffs
.ffs_min
= ~0U;
583 ffg
->iff_ffs
.ffs_clusters
=
584 le32_to_cpu(gb_dinode
->id1
.bitmap1
.i_total
);
585 ffg
->iff_ffs
.ffs_free_clusters
= ffg
->iff_ffs
.ffs_clusters
-
586 le32_to_cpu(gb_dinode
->id1
.bitmap1
.i_used
);
588 chunks_in_group
= le16_to_cpu(cl
->cl_cpg
) / ffg
->iff_chunksize
+ 1;
590 for (i
= 0; i
< le16_to_cpu(cl
->cl_next_free_rec
); i
++) {
591 rec
= &(cl
->cl_recs
[i
]);
592 status
= ocfs2_info_freefrag_scan_chain(osb
, gb_inode
,
600 if (ffg
->iff_ffs
.ffs_free_chunks_real
)
601 ffg
->iff_ffs
.ffs_avg
= (ffg
->iff_ffs
.ffs_avg
/
602 ffg
->iff_ffs
.ffs_free_chunks_real
);
605 ocfs2_inode_unlock(gb_inode
, 0);
608 inode_unlock(gb_inode
);
616 static int ocfs2_info_handle_freefrag(struct inode
*inode
,
617 struct ocfs2_info_request __user
*req
)
621 int status
, type
= GLOBAL_BITMAP_SYSTEM_INODE
;
623 struct ocfs2_info_freefrag
*oiff
;
624 struct ocfs2_super
*osb
= OCFS2_SB(inode
->i_sb
);
625 struct inode
*gb_inode
= NULL
;
627 oiff
= kzalloc(sizeof(struct ocfs2_info_freefrag
), GFP_KERNEL
);
634 if (o2info_from_user(*oiff
, req
)) {
639 * chunksize from userspace should be power of 2.
641 if ((oiff
->iff_chunksize
& (oiff
->iff_chunksize
- 1)) ||
642 (!oiff
->iff_chunksize
)) {
647 if (o2info_coherent(&oiff
->iff_req
)) {
648 gb_inode
= ocfs2_get_system_file_inode(osb
, type
,
651 mlog(ML_ERROR
, "unable to get global_bitmap inode\n");
656 ocfs2_sprintf_system_inode_name(namebuf
, sizeof(namebuf
), type
,
658 status
= ocfs2_lookup_ino_from_name(osb
->sys_root_inode
,
668 status
= ocfs2_info_freefrag_scan_bitmap(osb
, gb_inode
, blkno
, oiff
);
672 o2info_set_request_filled(&oiff
->iff_req
);
674 if (o2info_to_user(*oiff
, req
)) {
682 o2info_set_request_error(&oiff
->iff_req
, req
);
689 static int ocfs2_info_handle_unknown(struct inode
*inode
,
690 struct ocfs2_info_request __user
*req
)
692 struct ocfs2_info_request oir
;
694 if (o2info_from_user(oir
, req
))
697 o2info_clear_request_filled(&oir
);
699 if (o2info_to_user(oir
, req
))
706 * Validate and distinguish OCFS2_IOC_INFO requests.
708 * - validate the magic number.
709 * - distinguish different requests.
710 * - validate size of different requests.
712 static int ocfs2_info_handle_request(struct inode
*inode
,
713 struct ocfs2_info_request __user
*req
)
715 int status
= -EFAULT
;
716 struct ocfs2_info_request oir
;
718 if (o2info_from_user(oir
, req
))
722 if (oir
.ir_magic
!= OCFS2_INFO_MAGIC
)
725 switch (oir
.ir_code
) {
726 case OCFS2_INFO_BLOCKSIZE
:
727 if (oir
.ir_size
== sizeof(struct ocfs2_info_blocksize
))
728 status
= ocfs2_info_handle_blocksize(inode
, req
);
730 case OCFS2_INFO_CLUSTERSIZE
:
731 if (oir
.ir_size
== sizeof(struct ocfs2_info_clustersize
))
732 status
= ocfs2_info_handle_clustersize(inode
, req
);
734 case OCFS2_INFO_MAXSLOTS
:
735 if (oir
.ir_size
== sizeof(struct ocfs2_info_maxslots
))
736 status
= ocfs2_info_handle_maxslots(inode
, req
);
738 case OCFS2_INFO_LABEL
:
739 if (oir
.ir_size
== sizeof(struct ocfs2_info_label
))
740 status
= ocfs2_info_handle_label(inode
, req
);
742 case OCFS2_INFO_UUID
:
743 if (oir
.ir_size
== sizeof(struct ocfs2_info_uuid
))
744 status
= ocfs2_info_handle_uuid(inode
, req
);
746 case OCFS2_INFO_FS_FEATURES
:
747 if (oir
.ir_size
== sizeof(struct ocfs2_info_fs_features
))
748 status
= ocfs2_info_handle_fs_features(inode
, req
);
750 case OCFS2_INFO_JOURNAL_SIZE
:
751 if (oir
.ir_size
== sizeof(struct ocfs2_info_journal_size
))
752 status
= ocfs2_info_handle_journal_size(inode
, req
);
754 case OCFS2_INFO_FREEINODE
:
755 if (oir
.ir_size
== sizeof(struct ocfs2_info_freeinode
))
756 status
= ocfs2_info_handle_freeinode(inode
, req
);
758 case OCFS2_INFO_FREEFRAG
:
759 if (oir
.ir_size
== sizeof(struct ocfs2_info_freefrag
))
760 status
= ocfs2_info_handle_freefrag(inode
, req
);
763 status
= ocfs2_info_handle_unknown(inode
, req
);
771 static int ocfs2_get_request_ptr(struct ocfs2_info
*info
, int idx
,
772 u64
*req_addr
, int compat_flag
)
774 int status
= -EFAULT
;
775 u64 __user
*bp
= NULL
;
780 * pointer bp stores the base address of a pointers array,
781 * which collects all addresses of separate request.
783 bp
= (u64 __user
*)(unsigned long)compat_ptr(info
->oi_requests
);
788 bp
= (u64 __user
*)(unsigned long)(info
->oi_requests
);
790 if (o2info_from_user(*req_addr
, bp
+ idx
))
799 * OCFS2_IOC_INFO handles an array of requests passed from userspace.
801 * ocfs2_info_handle() recevies a large info aggregation, grab and
802 * validate the request count from header, then break it into small
803 * pieces, later specific handlers can handle them one by one.
805 * Idea here is to make each separate request small enough to ensure
806 * a better backward&forward compatibility, since a small piece of
807 * request will be less likely to be broken if disk layout get changed.
809 static int ocfs2_info_handle(struct inode
*inode
, struct ocfs2_info
*info
,
814 struct ocfs2_info_request __user
*reqp
;
816 if ((info
->oi_count
> OCFS2_INFO_MAX_REQUEST
) ||
817 (!info
->oi_requests
)) {
822 for (i
= 0; i
< info
->oi_count
; i
++) {
824 status
= ocfs2_get_request_ptr(info
, i
, &req_addr
, compat_flag
);
828 reqp
= (struct ocfs2_info_request __user
*)(unsigned long)req_addr
;
834 status
= ocfs2_info_handle_request(inode
, reqp
);
843 long ocfs2_ioctl(struct file
*filp
, unsigned int cmd
, unsigned long arg
)
845 struct inode
*inode
= file_inode(filp
);
849 struct ocfs2_space_resv sr
;
850 struct ocfs2_new_group_input input
;
851 struct reflink_arguments args
;
852 const char __user
*old_path
;
853 const char __user
*new_path
;
855 struct ocfs2_info info
;
856 void __user
*argp
= (void __user
*)arg
;
859 case OCFS2_IOC_GETFLAGS
:
860 status
= ocfs2_get_inode_attr(inode
, &flags
);
864 flags
&= OCFS2_FL_VISIBLE
;
865 return put_user(flags
, (int __user
*) arg
);
866 case OCFS2_IOC_SETFLAGS
:
867 if (get_user(flags
, (int __user
*) arg
))
870 status
= mnt_want_write_file(filp
);
873 status
= ocfs2_set_inode_attr(inode
, flags
,
874 OCFS2_FL_MODIFIABLE
);
875 mnt_drop_write_file(filp
);
877 case OCFS2_IOC_RESVSP
:
878 case OCFS2_IOC_RESVSP64
:
879 case OCFS2_IOC_UNRESVSP
:
880 case OCFS2_IOC_UNRESVSP64
:
881 if (copy_from_user(&sr
, (int __user
*) arg
, sizeof(sr
)))
884 return ocfs2_change_file_space(filp
, cmd
, &sr
);
885 case OCFS2_IOC_GROUP_EXTEND
:
886 if (!capable(CAP_SYS_RESOURCE
))
889 if (get_user(new_clusters
, (int __user
*)arg
))
892 status
= mnt_want_write_file(filp
);
895 status
= ocfs2_group_extend(inode
, new_clusters
);
896 mnt_drop_write_file(filp
);
898 case OCFS2_IOC_GROUP_ADD
:
899 case OCFS2_IOC_GROUP_ADD64
:
900 if (!capable(CAP_SYS_RESOURCE
))
903 if (copy_from_user(&input
, (int __user
*) arg
, sizeof(input
)))
906 status
= mnt_want_write_file(filp
);
909 status
= ocfs2_group_add(inode
, &input
);
910 mnt_drop_write_file(filp
);
912 case OCFS2_IOC_REFLINK
:
913 if (copy_from_user(&args
, argp
, sizeof(args
)))
915 old_path
= (const char __user
*)(unsigned long)args
.old_path
;
916 new_path
= (const char __user
*)(unsigned long)args
.new_path
;
917 preserve
= (args
.preserve
!= 0);
919 return ocfs2_reflink_ioctl(inode
, old_path
, new_path
, preserve
);
921 if (copy_from_user(&info
, argp
, sizeof(struct ocfs2_info
)))
924 return ocfs2_info_handle(inode
, &info
, 0);
927 struct super_block
*sb
= inode
->i_sb
;
928 struct request_queue
*q
= bdev_get_queue(sb
->s_bdev
);
929 struct fstrim_range range
;
932 if (!capable(CAP_SYS_ADMIN
))
935 if (!blk_queue_discard(q
))
938 if (copy_from_user(&range
, argp
, sizeof(range
)))
941 range
.minlen
= max_t(u64
, q
->limits
.discard_granularity
,
943 ret
= ocfs2_trim_fs(sb
, &range
);
947 if (copy_to_user(argp
, &range
, sizeof(range
)))
952 case OCFS2_IOC_MOVE_EXT
:
953 return ocfs2_ioctl_move_extents(filp
, argp
);
960 long ocfs2_compat_ioctl(struct file
*file
, unsigned cmd
, unsigned long arg
)
963 struct reflink_arguments args
;
964 struct inode
*inode
= file_inode(file
);
965 struct ocfs2_info info
;
966 void __user
*argp
= (void __user
*)arg
;
969 case OCFS2_IOC32_GETFLAGS
:
970 cmd
= OCFS2_IOC_GETFLAGS
;
972 case OCFS2_IOC32_SETFLAGS
:
973 cmd
= OCFS2_IOC_SETFLAGS
;
975 case OCFS2_IOC_RESVSP
:
976 case OCFS2_IOC_RESVSP64
:
977 case OCFS2_IOC_UNRESVSP
:
978 case OCFS2_IOC_UNRESVSP64
:
979 case OCFS2_IOC_GROUP_EXTEND
:
980 case OCFS2_IOC_GROUP_ADD
:
981 case OCFS2_IOC_GROUP_ADD64
:
983 case OCFS2_IOC_REFLINK
:
984 if (copy_from_user(&args
, argp
, sizeof(args
)))
986 preserve
= (args
.preserve
!= 0);
988 return ocfs2_reflink_ioctl(inode
, compat_ptr(args
.old_path
),
989 compat_ptr(args
.new_path
), preserve
);
991 if (copy_from_user(&info
, argp
, sizeof(struct ocfs2_info
)))
994 return ocfs2_info_handle(inode
, &info
, 1);
995 case OCFS2_IOC_MOVE_EXT
:
1001 return ocfs2_ioctl(file
, cmd
, arg
);