1 #include <linux/ceph/ceph_debug.h>
3 #include <linux/module.h>
5 #include <linux/slab.h>
6 #include <linux/string.h>
7 #include <linux/uaccess.h>
8 #include <linux/kernel.h>
9 #include <linux/writeback.h>
10 #include <linux/vmalloc.h>
11 #include <linux/xattr.h>
12 #include <linux/posix_acl.h>
13 #include <linux/random.h>
14 #include <linux/sort.h>
17 #include "mds_client.h"
19 #include <linux/ceph/decode.h>
22 * Ceph inode operations
24 * Implement basic inode helpers (get, alloc) and inode ops (getattr,
25 * setattr, etc.), xattr helpers, and helpers for assimilating
26 * metadata returned by the MDS into our cache.
28 * Also define helpers for doing asynchronous writeback, invalidation,
29 * and truncation for the benefit of those who can't afford to block
30 * (typically because they are in the message handler path).
33 static const struct inode_operations ceph_symlink_iops
;
35 static void ceph_invalidate_work(struct work_struct
*work
);
36 static void ceph_writeback_work(struct work_struct
*work
);
37 static void ceph_vmtruncate_work(struct work_struct
*work
);
40 * find or create an inode, given the ceph ino number
42 static int ceph_set_ino_cb(struct inode
*inode
, void *data
)
44 ceph_inode(inode
)->i_vino
= *(struct ceph_vino
*)data
;
45 inode
->i_ino
= ceph_vino_to_ino(*(struct ceph_vino
*)data
);
49 struct inode
*ceph_get_inode(struct super_block
*sb
, struct ceph_vino vino
)
52 ino_t t
= ceph_vino_to_ino(vino
);
54 inode
= iget5_locked(sb
, t
, ceph_ino_compare
, ceph_set_ino_cb
, &vino
);
56 return ERR_PTR(-ENOMEM
);
57 if (inode
->i_state
& I_NEW
) {
58 dout("get_inode created new inode %p %llx.%llx ino %llx\n",
59 inode
, ceph_vinop(inode
), (u64
)inode
->i_ino
);
60 unlock_new_inode(inode
);
63 dout("get_inode on %lu=%llx.%llx got %p\n", inode
->i_ino
, vino
.ino
,
69 * get/constuct snapdir inode for a given directory
71 struct inode
*ceph_get_snapdir(struct inode
*parent
)
73 struct ceph_vino vino
= {
74 .ino
= ceph_ino(parent
),
77 struct inode
*inode
= ceph_get_inode(parent
->i_sb
, vino
);
78 struct ceph_inode_info
*ci
= ceph_inode(inode
);
80 BUG_ON(!S_ISDIR(parent
->i_mode
));
83 inode
->i_mode
= parent
->i_mode
;
84 inode
->i_uid
= parent
->i_uid
;
85 inode
->i_gid
= parent
->i_gid
;
86 inode
->i_op
= &ceph_snapdir_iops
;
87 inode
->i_fop
= &ceph_snapdir_fops
;
88 ci
->i_snap_caps
= CEPH_CAP_PIN
; /* so we can open */
93 const struct inode_operations ceph_file_iops
= {
94 .permission
= ceph_permission
,
95 .setattr
= ceph_setattr
,
96 .getattr
= ceph_getattr
,
97 .listxattr
= ceph_listxattr
,
98 .get_acl
= ceph_get_acl
,
99 .set_acl
= ceph_set_acl
,
104 * We use a 'frag tree' to keep track of the MDS's directory fragments
105 * for a given inode (usually there is just a single fragment). We
106 * need to know when a child frag is delegated to a new MDS, or when
107 * it is flagged as replicated, so we can direct our requests
112 * find/create a frag in the tree
114 static struct ceph_inode_frag
*__get_or_create_frag(struct ceph_inode_info
*ci
,
118 struct rb_node
*parent
= NULL
;
119 struct ceph_inode_frag
*frag
;
122 p
= &ci
->i_fragtree
.rb_node
;
125 frag
= rb_entry(parent
, struct ceph_inode_frag
, node
);
126 c
= ceph_frag_compare(f
, frag
->frag
);
135 frag
= kmalloc(sizeof(*frag
), GFP_NOFS
);
137 pr_err("__get_or_create_frag ENOMEM on %p %llx.%llx "
138 "frag %x\n", &ci
->vfs_inode
,
139 ceph_vinop(&ci
->vfs_inode
), f
);
140 return ERR_PTR(-ENOMEM
);
147 rb_link_node(&frag
->node
, parent
, p
);
148 rb_insert_color(&frag
->node
, &ci
->i_fragtree
);
150 dout("get_or_create_frag added %llx.%llx frag %x\n",
151 ceph_vinop(&ci
->vfs_inode
), f
);
156 * find a specific frag @f
158 struct ceph_inode_frag
*__ceph_find_frag(struct ceph_inode_info
*ci
, u32 f
)
160 struct rb_node
*n
= ci
->i_fragtree
.rb_node
;
163 struct ceph_inode_frag
*frag
=
164 rb_entry(n
, struct ceph_inode_frag
, node
);
165 int c
= ceph_frag_compare(f
, frag
->frag
);
177 * Choose frag containing the given value @v. If @pfrag is
178 * specified, copy the frag delegation info to the caller if
181 static u32
__ceph_choose_frag(struct ceph_inode_info
*ci
, u32 v
,
182 struct ceph_inode_frag
*pfrag
, int *found
)
184 u32 t
= ceph_frag_make(0, 0);
185 struct ceph_inode_frag
*frag
;
193 WARN_ON(!ceph_frag_contains_value(t
, v
));
194 frag
= __ceph_find_frag(ci
, t
);
196 break; /* t is a leaf */
197 if (frag
->split_by
== 0) {
199 memcpy(pfrag
, frag
, sizeof(*pfrag
));
206 nway
= 1 << frag
->split_by
;
207 dout("choose_frag(%x) %x splits by %d (%d ways)\n", v
, t
,
208 frag
->split_by
, nway
);
209 for (i
= 0; i
< nway
; i
++) {
210 n
= ceph_frag_make_child(t
, frag
->split_by
, i
);
211 if (ceph_frag_contains_value(n
, v
)) {
218 dout("choose_frag(%x) = %x\n", v
, t
);
223 u32
ceph_choose_frag(struct ceph_inode_info
*ci
, u32 v
,
224 struct ceph_inode_frag
*pfrag
, int *found
)
227 mutex_lock(&ci
->i_fragtree_mutex
);
228 ret
= __ceph_choose_frag(ci
, v
, pfrag
, found
);
229 mutex_unlock(&ci
->i_fragtree_mutex
);
234 * Process dirfrag (delegation) info from the mds. Include leaf
235 * fragment in tree ONLY if ndist > 0. Otherwise, only
236 * branches/splits are included in i_fragtree)
238 static int ceph_fill_dirfrag(struct inode
*inode
,
239 struct ceph_mds_reply_dirfrag
*dirinfo
)
241 struct ceph_inode_info
*ci
= ceph_inode(inode
);
242 struct ceph_inode_frag
*frag
;
243 u32 id
= le32_to_cpu(dirinfo
->frag
);
244 int mds
= le32_to_cpu(dirinfo
->auth
);
245 int ndist
= le32_to_cpu(dirinfo
->ndist
);
250 spin_lock(&ci
->i_ceph_lock
);
252 diri_auth
= ci
->i_auth_cap
->mds
;
253 spin_unlock(&ci
->i_ceph_lock
);
255 if (mds
== -1) /* CDIR_AUTH_PARENT */
258 mutex_lock(&ci
->i_fragtree_mutex
);
259 if (ndist
== 0 && mds
== diri_auth
) {
260 /* no delegation info needed. */
261 frag
= __ceph_find_frag(ci
, id
);
264 if (frag
->split_by
== 0) {
265 /* tree leaf, remove */
266 dout("fill_dirfrag removed %llx.%llx frag %x"
267 " (no ref)\n", ceph_vinop(inode
), id
);
268 rb_erase(&frag
->node
, &ci
->i_fragtree
);
271 /* tree branch, keep and clear */
272 dout("fill_dirfrag cleared %llx.%llx frag %x"
273 " referral\n", ceph_vinop(inode
), id
);
281 /* find/add this frag to store mds delegation info */
282 frag
= __get_or_create_frag(ci
, id
);
284 /* this is not the end of the world; we can continue
285 with bad/inaccurate delegation info */
286 pr_err("fill_dirfrag ENOMEM on mds ref %llx.%llx fg %x\n",
287 ceph_vinop(inode
), le32_to_cpu(dirinfo
->frag
));
293 frag
->ndist
= min_t(u32
, ndist
, CEPH_MAX_DIRFRAG_REP
);
294 for (i
= 0; i
< frag
->ndist
; i
++)
295 frag
->dist
[i
] = le32_to_cpu(dirinfo
->dist
[i
]);
296 dout("fill_dirfrag %llx.%llx frag %x ndist=%d\n",
297 ceph_vinop(inode
), frag
->frag
, frag
->ndist
);
300 mutex_unlock(&ci
->i_fragtree_mutex
);
304 static int frag_tree_split_cmp(const void *l
, const void *r
)
306 struct ceph_frag_tree_split
*ls
= (struct ceph_frag_tree_split
*)l
;
307 struct ceph_frag_tree_split
*rs
= (struct ceph_frag_tree_split
*)r
;
308 return ceph_frag_compare(le32_to_cpu(ls
->frag
),
309 le32_to_cpu(rs
->frag
));
312 static bool is_frag_child(u32 f
, struct ceph_inode_frag
*frag
)
315 return f
== ceph_frag_make(0, 0);
316 if (ceph_frag_bits(f
) != ceph_frag_bits(frag
->frag
) + frag
->split_by
)
318 return ceph_frag_contains_value(frag
->frag
, ceph_frag_value(f
));
321 static int ceph_fill_fragtree(struct inode
*inode
,
322 struct ceph_frag_tree_head
*fragtree
,
323 struct ceph_mds_reply_dirfrag
*dirinfo
)
325 struct ceph_inode_info
*ci
= ceph_inode(inode
);
326 struct ceph_inode_frag
*frag
, *prev_frag
= NULL
;
327 struct rb_node
*rb_node
;
328 unsigned i
, split_by
, nsplits
;
332 mutex_lock(&ci
->i_fragtree_mutex
);
333 nsplits
= le32_to_cpu(fragtree
->nsplits
);
334 if (nsplits
!= ci
->i_fragtree_nsplits
) {
336 } else if (nsplits
) {
337 i
= prandom_u32() % nsplits
;
338 id
= le32_to_cpu(fragtree
->splits
[i
].frag
);
339 if (!__ceph_find_frag(ci
, id
))
341 } else if (!RB_EMPTY_ROOT(&ci
->i_fragtree
)) {
342 rb_node
= rb_first(&ci
->i_fragtree
);
343 frag
= rb_entry(rb_node
, struct ceph_inode_frag
, node
);
344 if (frag
->frag
!= ceph_frag_make(0, 0) || rb_next(rb_node
))
347 if (!update
&& dirinfo
) {
348 id
= le32_to_cpu(dirinfo
->frag
);
349 if (id
!= __ceph_choose_frag(ci
, id
, NULL
, NULL
))
356 sort(fragtree
->splits
, nsplits
, sizeof(fragtree
->splits
[0]),
357 frag_tree_split_cmp
, NULL
);
360 dout("fill_fragtree %llx.%llx\n", ceph_vinop(inode
));
361 rb_node
= rb_first(&ci
->i_fragtree
);
362 for (i
= 0; i
< nsplits
; i
++) {
363 id
= le32_to_cpu(fragtree
->splits
[i
].frag
);
364 split_by
= le32_to_cpu(fragtree
->splits
[i
].by
);
365 if (split_by
== 0 || ceph_frag_bits(id
) + split_by
> 24) {
366 pr_err("fill_fragtree %llx.%llx invalid split %d/%u, "
367 "frag %x split by %d\n", ceph_vinop(inode
),
368 i
, nsplits
, id
, split_by
);
373 frag
= rb_entry(rb_node
, struct ceph_inode_frag
, node
);
374 if (ceph_frag_compare(frag
->frag
, id
) >= 0) {
375 if (frag
->frag
!= id
)
378 rb_node
= rb_next(rb_node
);
381 rb_node
= rb_next(rb_node
);
382 /* delete stale split/leaf node */
383 if (frag
->split_by
> 0 ||
384 !is_frag_child(frag
->frag
, prev_frag
)) {
385 rb_erase(&frag
->node
, &ci
->i_fragtree
);
386 if (frag
->split_by
> 0)
387 ci
->i_fragtree_nsplits
--;
393 frag
= __get_or_create_frag(ci
, id
);
397 if (frag
->split_by
== 0)
398 ci
->i_fragtree_nsplits
++;
399 frag
->split_by
= split_by
;
400 dout(" frag %x split by %d\n", frag
->frag
, frag
->split_by
);
404 frag
= rb_entry(rb_node
, struct ceph_inode_frag
, node
);
405 rb_node
= rb_next(rb_node
);
406 /* delete stale split/leaf node */
407 if (frag
->split_by
> 0 ||
408 !is_frag_child(frag
->frag
, prev_frag
)) {
409 rb_erase(&frag
->node
, &ci
->i_fragtree
);
410 if (frag
->split_by
> 0)
411 ci
->i_fragtree_nsplits
--;
416 mutex_unlock(&ci
->i_fragtree_mutex
);
421 * initialize a newly allocated inode.
423 struct inode
*ceph_alloc_inode(struct super_block
*sb
)
425 struct ceph_inode_info
*ci
;
428 ci
= kmem_cache_alloc(ceph_inode_cachep
, GFP_NOFS
);
432 dout("alloc_inode %p\n", &ci
->vfs_inode
);
434 spin_lock_init(&ci
->i_ceph_lock
);
437 ci
->i_inline_version
= 0;
438 ci
->i_time_warp_seq
= 0;
439 ci
->i_ceph_flags
= 0;
440 atomic64_set(&ci
->i_ordered_count
, 1);
441 atomic64_set(&ci
->i_release_count
, 1);
442 atomic64_set(&ci
->i_complete_seq
[0], 0);
443 atomic64_set(&ci
->i_complete_seq
[1], 0);
444 ci
->i_symlink
= NULL
;
446 memset(&ci
->i_dir_layout
, 0, sizeof(ci
->i_dir_layout
));
447 RCU_INIT_POINTER(ci
->i_layout
.pool_ns
, NULL
);
449 ci
->i_fragtree
= RB_ROOT
;
450 mutex_init(&ci
->i_fragtree_mutex
);
452 ci
->i_xattrs
.blob
= NULL
;
453 ci
->i_xattrs
.prealloc_blob
= NULL
;
454 ci
->i_xattrs
.dirty
= false;
455 ci
->i_xattrs
.index
= RB_ROOT
;
456 ci
->i_xattrs
.count
= 0;
457 ci
->i_xattrs
.names_size
= 0;
458 ci
->i_xattrs
.vals_size
= 0;
459 ci
->i_xattrs
.version
= 0;
460 ci
->i_xattrs
.index_version
= 0;
462 ci
->i_caps
= RB_ROOT
;
463 ci
->i_auth_cap
= NULL
;
464 ci
->i_dirty_caps
= 0;
465 ci
->i_flushing_caps
= 0;
466 INIT_LIST_HEAD(&ci
->i_dirty_item
);
467 INIT_LIST_HEAD(&ci
->i_flushing_item
);
468 ci
->i_prealloc_cap_flush
= NULL
;
469 INIT_LIST_HEAD(&ci
->i_cap_flush_list
);
470 init_waitqueue_head(&ci
->i_cap_wq
);
471 ci
->i_hold_caps_min
= 0;
472 ci
->i_hold_caps_max
= 0;
473 INIT_LIST_HEAD(&ci
->i_cap_delay_list
);
474 INIT_LIST_HEAD(&ci
->i_cap_snaps
);
475 ci
->i_head_snapc
= NULL
;
478 for (i
= 0; i
< CEPH_FILE_MODE_BITS
; i
++)
479 ci
->i_nr_by_mode
[i
] = 0;
481 mutex_init(&ci
->i_truncate_mutex
);
482 ci
->i_truncate_seq
= 0;
483 ci
->i_truncate_size
= 0;
484 ci
->i_truncate_pending
= 0;
487 ci
->i_reported_size
= 0;
488 ci
->i_wanted_max_size
= 0;
489 ci
->i_requested_max_size
= 0;
493 ci
->i_rdcache_ref
= 0;
496 ci
->i_wrbuffer_ref
= 0;
497 ci
->i_wrbuffer_ref_head
= 0;
498 ci
->i_shared_gen
= 0;
499 ci
->i_rdcache_gen
= 0;
500 ci
->i_rdcache_revoking
= 0;
502 INIT_LIST_HEAD(&ci
->i_unsafe_dirops
);
503 INIT_LIST_HEAD(&ci
->i_unsafe_iops
);
504 spin_lock_init(&ci
->i_unsafe_lock
);
506 ci
->i_snap_realm
= NULL
;
507 INIT_LIST_HEAD(&ci
->i_snap_realm_item
);
508 INIT_LIST_HEAD(&ci
->i_snap_flush_item
);
510 INIT_WORK(&ci
->i_wb_work
, ceph_writeback_work
);
511 INIT_WORK(&ci
->i_pg_inv_work
, ceph_invalidate_work
);
513 INIT_WORK(&ci
->i_vmtruncate_work
, ceph_vmtruncate_work
);
515 ceph_fscache_inode_init(ci
);
517 return &ci
->vfs_inode
;
520 static void ceph_i_callback(struct rcu_head
*head
)
522 struct inode
*inode
= container_of(head
, struct inode
, i_rcu
);
523 struct ceph_inode_info
*ci
= ceph_inode(inode
);
525 kmem_cache_free(ceph_inode_cachep
, ci
);
528 void ceph_destroy_inode(struct inode
*inode
)
530 struct ceph_inode_info
*ci
= ceph_inode(inode
);
531 struct ceph_inode_frag
*frag
;
534 dout("destroy_inode %p ino %llx.%llx\n", inode
, ceph_vinop(inode
));
536 ceph_fscache_unregister_inode_cookie(ci
);
538 ceph_queue_caps_release(inode
);
541 * we may still have a snap_realm reference if there are stray
542 * caps in i_snap_caps.
544 if (ci
->i_snap_realm
) {
545 struct ceph_mds_client
*mdsc
=
546 ceph_sb_to_client(ci
->vfs_inode
.i_sb
)->mdsc
;
547 struct ceph_snap_realm
*realm
= ci
->i_snap_realm
;
549 dout(" dropping residual ref to snap realm %p\n", realm
);
550 spin_lock(&realm
->inodes_with_caps_lock
);
551 list_del_init(&ci
->i_snap_realm_item
);
552 spin_unlock(&realm
->inodes_with_caps_lock
);
553 ceph_put_snap_realm(mdsc
, realm
);
556 kfree(ci
->i_symlink
);
557 while ((n
= rb_first(&ci
->i_fragtree
)) != NULL
) {
558 frag
= rb_entry(n
, struct ceph_inode_frag
, node
);
559 rb_erase(n
, &ci
->i_fragtree
);
562 ci
->i_fragtree_nsplits
= 0;
564 __ceph_destroy_xattrs(ci
);
565 if (ci
->i_xattrs
.blob
)
566 ceph_buffer_put(ci
->i_xattrs
.blob
);
567 if (ci
->i_xattrs
.prealloc_blob
)
568 ceph_buffer_put(ci
->i_xattrs
.prealloc_blob
);
570 ceph_put_string(rcu_dereference_raw(ci
->i_layout
.pool_ns
));
572 call_rcu(&inode
->i_rcu
, ceph_i_callback
);
575 int ceph_drop_inode(struct inode
*inode
)
578 * Positve dentry and corresponding inode are always accompanied
579 * in MDS reply. So no need to keep inode in the cache after
580 * dropping all its aliases.
585 static inline blkcnt_t
calc_inode_blocks(u64 size
)
587 return (size
+ (1<<9) - 1) >> 9;
591 * Helpers to fill in size, ctime, mtime, and atime. We have to be
592 * careful because either the client or MDS may have more up to date
593 * info, depending on which capabilities are held, and whether
594 * time_warp_seq or truncate_seq have increased. (Ordinarily, mtime
595 * and size are monotonically increasing, except when utimes() or
596 * truncate() increments the corresponding _seq values.)
598 int ceph_fill_file_size(struct inode
*inode
, int issued
,
599 u32 truncate_seq
, u64 truncate_size
, u64 size
)
601 struct ceph_inode_info
*ci
= ceph_inode(inode
);
604 if (ceph_seq_cmp(truncate_seq
, ci
->i_truncate_seq
) > 0 ||
605 (truncate_seq
== ci
->i_truncate_seq
&& size
> inode
->i_size
)) {
606 dout("size %lld -> %llu\n", inode
->i_size
, size
);
607 if (size
> 0 && S_ISDIR(inode
->i_mode
)) {
608 pr_err("fill_file_size non-zero size for directory\n");
611 i_size_write(inode
, size
);
612 inode
->i_blocks
= calc_inode_blocks(size
);
613 ci
->i_reported_size
= size
;
614 if (truncate_seq
!= ci
->i_truncate_seq
) {
615 dout("truncate_seq %u -> %u\n",
616 ci
->i_truncate_seq
, truncate_seq
);
617 ci
->i_truncate_seq
= truncate_seq
;
619 /* the MDS should have revoked these caps */
620 WARN_ON_ONCE(issued
& (CEPH_CAP_FILE_EXCL
|
623 CEPH_CAP_FILE_LAZYIO
));
625 * If we hold relevant caps, or in the case where we're
626 * not the only client referencing this file and we
627 * don't hold those caps, then we need to check whether
628 * the file is either opened or mmaped
630 if ((issued
& (CEPH_CAP_FILE_CACHE
|
631 CEPH_CAP_FILE_BUFFER
)) ||
632 mapping_mapped(inode
->i_mapping
) ||
633 __ceph_caps_file_wanted(ci
)) {
634 ci
->i_truncate_pending
++;
639 if (ceph_seq_cmp(truncate_seq
, ci
->i_truncate_seq
) >= 0 &&
640 ci
->i_truncate_size
!= truncate_size
) {
641 dout("truncate_size %lld -> %llu\n", ci
->i_truncate_size
,
643 ci
->i_truncate_size
= truncate_size
;
647 ceph_fscache_invalidate(inode
);
652 void ceph_fill_file_time(struct inode
*inode
, int issued
,
653 u64 time_warp_seq
, struct timespec
*ctime
,
654 struct timespec
*mtime
, struct timespec
*atime
)
656 struct ceph_inode_info
*ci
= ceph_inode(inode
);
659 if (issued
& (CEPH_CAP_FILE_EXCL
|
661 CEPH_CAP_FILE_BUFFER
|
663 CEPH_CAP_XATTR_EXCL
)) {
664 if (timespec_compare(ctime
, &inode
->i_ctime
) > 0) {
665 dout("ctime %ld.%09ld -> %ld.%09ld inc w/ cap\n",
666 inode
->i_ctime
.tv_sec
, inode
->i_ctime
.tv_nsec
,
667 ctime
->tv_sec
, ctime
->tv_nsec
);
668 inode
->i_ctime
= *ctime
;
670 if (ceph_seq_cmp(time_warp_seq
, ci
->i_time_warp_seq
) > 0) {
671 /* the MDS did a utimes() */
672 dout("mtime %ld.%09ld -> %ld.%09ld "
674 inode
->i_mtime
.tv_sec
, inode
->i_mtime
.tv_nsec
,
675 mtime
->tv_sec
, mtime
->tv_nsec
,
676 ci
->i_time_warp_seq
, (int)time_warp_seq
);
678 inode
->i_mtime
= *mtime
;
679 inode
->i_atime
= *atime
;
680 ci
->i_time_warp_seq
= time_warp_seq
;
681 } else if (time_warp_seq
== ci
->i_time_warp_seq
) {
682 /* nobody did utimes(); take the max */
683 if (timespec_compare(mtime
, &inode
->i_mtime
) > 0) {
684 dout("mtime %ld.%09ld -> %ld.%09ld inc\n",
685 inode
->i_mtime
.tv_sec
,
686 inode
->i_mtime
.tv_nsec
,
687 mtime
->tv_sec
, mtime
->tv_nsec
);
688 inode
->i_mtime
= *mtime
;
690 if (timespec_compare(atime
, &inode
->i_atime
) > 0) {
691 dout("atime %ld.%09ld -> %ld.%09ld inc\n",
692 inode
->i_atime
.tv_sec
,
693 inode
->i_atime
.tv_nsec
,
694 atime
->tv_sec
, atime
->tv_nsec
);
695 inode
->i_atime
= *atime
;
697 } else if (issued
& CEPH_CAP_FILE_EXCL
) {
698 /* we did a utimes(); ignore mds values */
703 /* we have no write|excl caps; whatever the MDS says is true */
704 if (ceph_seq_cmp(time_warp_seq
, ci
->i_time_warp_seq
) >= 0) {
705 inode
->i_ctime
= *ctime
;
706 inode
->i_mtime
= *mtime
;
707 inode
->i_atime
= *atime
;
708 ci
->i_time_warp_seq
= time_warp_seq
;
713 if (warn
) /* time_warp_seq shouldn't go backwards */
714 dout("%p mds time_warp_seq %llu < %u\n",
715 inode
, time_warp_seq
, ci
->i_time_warp_seq
);
719 * Populate an inode based on info from mds. May be called on new or
722 static int fill_inode(struct inode
*inode
, struct page
*locked_page
,
723 struct ceph_mds_reply_info_in
*iinfo
,
724 struct ceph_mds_reply_dirfrag
*dirinfo
,
725 struct ceph_mds_session
*session
,
726 unsigned long ttl_from
, int cap_fmode
,
727 struct ceph_cap_reservation
*caps_reservation
)
729 struct ceph_mds_client
*mdsc
= ceph_inode_to_client(inode
)->mdsc
;
730 struct ceph_mds_reply_inode
*info
= iinfo
->in
;
731 struct ceph_inode_info
*ci
= ceph_inode(inode
);
732 int issued
= 0, implemented
, new_issued
;
733 struct timespec mtime
, atime
, ctime
;
734 struct ceph_buffer
*xattr_blob
= NULL
;
735 struct ceph_string
*pool_ns
= NULL
;
736 struct ceph_cap
*new_cap
= NULL
;
739 bool queue_trunc
= false;
740 bool new_version
= false;
741 bool fill_inline
= false;
743 dout("fill_inode %p ino %llx.%llx v %llu had %llu\n",
744 inode
, ceph_vinop(inode
), le64_to_cpu(info
->version
),
747 /* prealloc new cap struct */
748 if (info
->cap
.caps
&& ceph_snap(inode
) == CEPH_NOSNAP
)
749 new_cap
= ceph_get_cap(mdsc
, caps_reservation
);
752 * prealloc xattr data, if it looks like we'll need it. only
753 * if len > 4 (meaning there are actually xattrs; the first 4
754 * bytes are the xattr count).
756 if (iinfo
->xattr_len
> 4) {
757 xattr_blob
= ceph_buffer_new(iinfo
->xattr_len
, GFP_NOFS
);
759 pr_err("fill_inode ENOMEM xattr blob %d bytes\n",
763 if (iinfo
->pool_ns_len
> 0)
764 pool_ns
= ceph_find_or_create_string(iinfo
->pool_ns_data
,
767 spin_lock(&ci
->i_ceph_lock
);
770 * provided version will be odd if inode value is projected,
771 * even if stable. skip the update if we have newer stable
772 * info (ours>=theirs, e.g. due to racing mds replies), unless
773 * we are getting projected (unstable) info (in which case the
774 * version is odd, and we want ours>theirs).
780 if (ci
->i_version
== 0 ||
781 ((info
->cap
.flags
& CEPH_CAP_FLAG_AUTH
) &&
782 le64_to_cpu(info
->version
) > (ci
->i_version
& ~1)))
785 issued
= __ceph_caps_issued(ci
, &implemented
);
786 issued
|= implemented
| __ceph_caps_dirty(ci
);
787 new_issued
= ~issued
& le32_to_cpu(info
->cap
.caps
);
790 ci
->i_version
= le64_to_cpu(info
->version
);
792 inode
->i_rdev
= le32_to_cpu(info
->rdev
);
793 inode
->i_blkbits
= fls(le32_to_cpu(info
->layout
.fl_stripe_unit
)) - 1;
795 if ((new_version
|| (new_issued
& CEPH_CAP_AUTH_SHARED
)) &&
796 (issued
& CEPH_CAP_AUTH_EXCL
) == 0) {
797 inode
->i_mode
= le32_to_cpu(info
->mode
);
798 inode
->i_uid
= make_kuid(&init_user_ns
, le32_to_cpu(info
->uid
));
799 inode
->i_gid
= make_kgid(&init_user_ns
, le32_to_cpu(info
->gid
));
800 dout("%p mode 0%o uid.gid %d.%d\n", inode
, inode
->i_mode
,
801 from_kuid(&init_user_ns
, inode
->i_uid
),
802 from_kgid(&init_user_ns
, inode
->i_gid
));
805 if ((new_version
|| (new_issued
& CEPH_CAP_LINK_SHARED
)) &&
806 (issued
& CEPH_CAP_LINK_EXCL
) == 0)
807 set_nlink(inode
, le32_to_cpu(info
->nlink
));
809 if (new_version
|| (new_issued
& CEPH_CAP_ANY_RD
)) {
810 /* be careful with mtime, atime, size */
811 ceph_decode_timespec(&atime
, &info
->atime
);
812 ceph_decode_timespec(&mtime
, &info
->mtime
);
813 ceph_decode_timespec(&ctime
, &info
->ctime
);
814 ceph_fill_file_time(inode
, issued
,
815 le32_to_cpu(info
->time_warp_seq
),
816 &ctime
, &mtime
, &atime
);
820 (new_issued
& (CEPH_CAP_ANY_FILE_RD
| CEPH_CAP_ANY_FILE_WR
))) {
821 s64 old_pool
= ci
->i_layout
.pool_id
;
822 struct ceph_string
*old_ns
;
824 ceph_file_layout_from_legacy(&ci
->i_layout
, &info
->layout
);
825 old_ns
= rcu_dereference_protected(ci
->i_layout
.pool_ns
,
826 lockdep_is_held(&ci
->i_ceph_lock
));
827 rcu_assign_pointer(ci
->i_layout
.pool_ns
, pool_ns
);
829 if (ci
->i_layout
.pool_id
!= old_pool
|| pool_ns
!= old_ns
)
830 ci
->i_ceph_flags
&= ~CEPH_I_POOL_PERM
;
834 queue_trunc
= ceph_fill_file_size(inode
, issued
,
835 le32_to_cpu(info
->truncate_seq
),
836 le64_to_cpu(info
->truncate_size
),
837 le64_to_cpu(info
->size
));
838 /* only update max_size on auth cap */
839 if ((info
->cap
.flags
& CEPH_CAP_FLAG_AUTH
) &&
840 ci
->i_max_size
!= le64_to_cpu(info
->max_size
)) {
841 dout("max_size %lld -> %llu\n", ci
->i_max_size
,
842 le64_to_cpu(info
->max_size
));
843 ci
->i_max_size
= le64_to_cpu(info
->max_size
);
848 /* note that if i_xattrs.len <= 4, i_xattrs.data will still be NULL. */
849 if ((ci
->i_xattrs
.version
== 0 || !(issued
& CEPH_CAP_XATTR_EXCL
)) &&
850 le64_to_cpu(info
->xattr_version
) > ci
->i_xattrs
.version
) {
851 if (ci
->i_xattrs
.blob
)
852 ceph_buffer_put(ci
->i_xattrs
.blob
);
853 ci
->i_xattrs
.blob
= xattr_blob
;
855 memcpy(ci
->i_xattrs
.blob
->vec
.iov_base
,
856 iinfo
->xattr_data
, iinfo
->xattr_len
);
857 ci
->i_xattrs
.version
= le64_to_cpu(info
->xattr_version
);
858 ceph_forget_all_cached_acls(inode
);
862 inode
->i_mapping
->a_ops
= &ceph_aops
;
864 switch (inode
->i_mode
& S_IFMT
) {
869 init_special_inode(inode
, inode
->i_mode
, inode
->i_rdev
);
870 inode
->i_op
= &ceph_file_iops
;
873 inode
->i_op
= &ceph_file_iops
;
874 inode
->i_fop
= &ceph_file_fops
;
877 inode
->i_op
= &ceph_symlink_iops
;
878 if (!ci
->i_symlink
) {
879 u32 symlen
= iinfo
->symlink_len
;
882 spin_unlock(&ci
->i_ceph_lock
);
884 if (symlen
!= i_size_read(inode
)) {
885 pr_err("fill_inode %llx.%llx BAD symlink "
886 "size %lld\n", ceph_vinop(inode
),
888 i_size_write(inode
, symlen
);
889 inode
->i_blocks
= calc_inode_blocks(symlen
);
893 sym
= kstrndup(iinfo
->symlink
, symlen
, GFP_NOFS
);
897 spin_lock(&ci
->i_ceph_lock
);
901 kfree(sym
); /* lost a race */
903 inode
->i_link
= ci
->i_symlink
;
906 inode
->i_op
= &ceph_dir_iops
;
907 inode
->i_fop
= &ceph_dir_fops
;
909 ci
->i_dir_layout
= iinfo
->dir_layout
;
911 ci
->i_files
= le64_to_cpu(info
->files
);
912 ci
->i_subdirs
= le64_to_cpu(info
->subdirs
);
913 ci
->i_rbytes
= le64_to_cpu(info
->rbytes
);
914 ci
->i_rfiles
= le64_to_cpu(info
->rfiles
);
915 ci
->i_rsubdirs
= le64_to_cpu(info
->rsubdirs
);
916 ceph_decode_timespec(&ci
->i_rctime
, &info
->rctime
);
919 pr_err("fill_inode %llx.%llx BAD mode 0%o\n",
920 ceph_vinop(inode
), inode
->i_mode
);
923 /* were we issued a capability? */
924 if (info
->cap
.caps
) {
925 if (ceph_snap(inode
) == CEPH_NOSNAP
) {
926 unsigned caps
= le32_to_cpu(info
->cap
.caps
);
927 ceph_add_cap(inode
, session
,
928 le64_to_cpu(info
->cap
.cap_id
),
930 le32_to_cpu(info
->cap
.wanted
),
931 le32_to_cpu(info
->cap
.seq
),
932 le32_to_cpu(info
->cap
.mseq
),
933 le64_to_cpu(info
->cap
.realm
),
934 info
->cap
.flags
, &new_cap
);
936 /* set dir completion flag? */
937 if (S_ISDIR(inode
->i_mode
) &&
938 ci
->i_files
== 0 && ci
->i_subdirs
== 0 &&
939 (caps
& CEPH_CAP_FILE_SHARED
) &&
940 (issued
& CEPH_CAP_FILE_EXCL
) == 0 &&
941 !__ceph_dir_is_complete(ci
)) {
942 dout(" marking %p complete (empty)\n", inode
);
943 i_size_write(inode
, 0);
944 __ceph_dir_set_complete(ci
,
945 atomic64_read(&ci
->i_release_count
),
946 atomic64_read(&ci
->i_ordered_count
));
951 dout(" %p got snap_caps %s\n", inode
,
952 ceph_cap_string(le32_to_cpu(info
->cap
.caps
)));
953 ci
->i_snap_caps
|= le32_to_cpu(info
->cap
.caps
);
955 __ceph_get_fmode(ci
, cap_fmode
);
957 } else if (cap_fmode
>= 0) {
958 pr_warn("mds issued no caps on %llx.%llx\n",
960 __ceph_get_fmode(ci
, cap_fmode
);
963 if (iinfo
->inline_version
> 0 &&
964 iinfo
->inline_version
>= ci
->i_inline_version
) {
965 int cache_caps
= CEPH_CAP_FILE_CACHE
| CEPH_CAP_FILE_LAZYIO
;
966 ci
->i_inline_version
= iinfo
->inline_version
;
967 if (ci
->i_inline_version
!= CEPH_INLINE_NONE
&&
969 (le32_to_cpu(info
->cap
.caps
) & cache_caps
)))
973 spin_unlock(&ci
->i_ceph_lock
);
976 ceph_fill_inline_data(inode
, locked_page
,
977 iinfo
->inline_data
, iinfo
->inline_len
);
980 wake_up_all(&ci
->i_cap_wq
);
982 /* queue truncate if we saw i_size decrease */
984 ceph_queue_vmtruncate(inode
);
986 /* populate frag tree */
987 if (S_ISDIR(inode
->i_mode
))
988 ceph_fill_fragtree(inode
, &info
->fragtree
, dirinfo
);
990 /* update delegation info? */
992 ceph_fill_dirfrag(inode
, dirinfo
);
997 ceph_put_cap(mdsc
, new_cap
);
999 ceph_buffer_put(xattr_blob
);
1000 ceph_put_string(pool_ns
);
1005 * caller should hold session s_mutex.
1007 static void update_dentry_lease(struct dentry
*dentry
,
1008 struct ceph_mds_reply_lease
*lease
,
1009 struct ceph_mds_session
*session
,
1010 unsigned long from_time
,
1011 struct ceph_vino
*tgt_vino
,
1012 struct ceph_vino
*dir_vino
)
1014 struct ceph_dentry_info
*di
= ceph_dentry(dentry
);
1015 long unsigned duration
= le32_to_cpu(lease
->duration_ms
);
1016 long unsigned ttl
= from_time
+ (duration
* HZ
) / 1000;
1017 long unsigned half_ttl
= from_time
+ (duration
* HZ
/ 2) / 1000;
1021 * Make sure dentry's inode matches tgt_vino. NULL tgt_vino means that
1022 * we expect a negative dentry.
1024 if (!tgt_vino
&& d_really_is_positive(dentry
))
1027 if (tgt_vino
&& (d_really_is_negative(dentry
) ||
1028 !ceph_ino_compare(d_inode(dentry
), tgt_vino
)))
1031 spin_lock(&dentry
->d_lock
);
1032 dout("update_dentry_lease %p duration %lu ms ttl %lu\n",
1033 dentry
, duration
, ttl
);
1035 dir
= d_inode(dentry
->d_parent
);
1037 /* make sure parent matches dir_vino */
1038 if (!ceph_ino_compare(dir
, dir_vino
))
1041 /* only track leases on regular dentries */
1042 if (ceph_snap(dir
) != CEPH_NOSNAP
)
1045 di
->lease_shared_gen
= ceph_inode(dir
)->i_shared_gen
;
1050 if (di
->lease_gen
== session
->s_cap_gen
&&
1051 time_before(ttl
, di
->time
))
1052 goto out_unlock
; /* we already have a newer lease. */
1054 if (di
->lease_session
&& di
->lease_session
!= session
)
1057 ceph_dentry_lru_touch(dentry
);
1059 if (!di
->lease_session
)
1060 di
->lease_session
= ceph_get_mds_session(session
);
1061 di
->lease_gen
= session
->s_cap_gen
;
1062 di
->lease_seq
= le32_to_cpu(lease
->seq
);
1063 di
->lease_renew_after
= half_ttl
;
1064 di
->lease_renew_from
= 0;
1067 spin_unlock(&dentry
->d_lock
);
1072 * splice a dentry to an inode.
1073 * caller must hold directory i_mutex for this to be safe.
1075 static struct dentry
*splice_dentry(struct dentry
*dn
, struct inode
*in
)
1077 struct dentry
*realdn
;
1079 BUG_ON(d_inode(dn
));
1081 /* dn must be unhashed */
1082 if (!d_unhashed(dn
))
1084 realdn
= d_splice_alias(in
, dn
);
1085 if (IS_ERR(realdn
)) {
1086 pr_err("splice_dentry error %ld %p inode %p ino %llx.%llx\n",
1087 PTR_ERR(realdn
), dn
, in
, ceph_vinop(in
));
1088 dn
= realdn
; /* note realdn contains the error */
1090 } else if (realdn
) {
1091 dout("dn %p (%d) spliced with %p (%d) "
1092 "inode %p ino %llx.%llx\n",
1094 realdn
, d_count(realdn
),
1095 d_inode(realdn
), ceph_vinop(d_inode(realdn
)));
1099 BUG_ON(!ceph_dentry(dn
));
1100 dout("dn %p attached to %p ino %llx.%llx\n",
1101 dn
, d_inode(dn
), ceph_vinop(d_inode(dn
)));
1108 * Incorporate results into the local cache. This is either just
1109 * one inode, or a directory, dentry, and possibly linked-to inode (e.g.,
1112 * A reply may contain
1113 * a directory inode along with a dentry.
1114 * and/or a target inode
1116 * Called with snap_rwsem (read).
1118 int ceph_fill_trace(struct super_block
*sb
, struct ceph_mds_request
*req
)
1120 struct ceph_mds_session
*session
= req
->r_session
;
1121 struct ceph_mds_reply_info_parsed
*rinfo
= &req
->r_reply_info
;
1122 struct inode
*in
= NULL
;
1123 struct ceph_vino tvino
, dvino
;
1124 struct ceph_fs_client
*fsc
= ceph_sb_to_client(sb
);
1127 dout("fill_trace %p is_dentry %d is_target %d\n", req
,
1128 rinfo
->head
->is_dentry
, rinfo
->head
->is_target
);
1130 if (!rinfo
->head
->is_target
&& !rinfo
->head
->is_dentry
) {
1131 dout("fill_trace reply is empty!\n");
1132 if (rinfo
->head
->result
== 0 && req
->r_parent
)
1133 ceph_invalidate_dir_request(req
);
1137 if (rinfo
->head
->is_dentry
) {
1138 struct inode
*dir
= req
->r_parent
;
1141 err
= fill_inode(dir
, NULL
,
1142 &rinfo
->diri
, rinfo
->dirfrag
,
1143 session
, req
->r_request_started
, -1,
1144 &req
->r_caps_reservation
);
1151 if (dir
&& req
->r_op
== CEPH_MDS_OP_LOOKUPNAME
) {
1153 struct dentry
*dn
, *parent
;
1155 BUG_ON(!rinfo
->head
->is_target
);
1156 BUG_ON(req
->r_dentry
);
1158 parent
= d_find_any_alias(dir
);
1161 dname
.name
= rinfo
->dname
;
1162 dname
.len
= rinfo
->dname_len
;
1163 dname
.hash
= full_name_hash(parent
, dname
.name
, dname
.len
);
1164 tvino
.ino
= le64_to_cpu(rinfo
->targeti
.in
->ino
);
1165 tvino
.snap
= le64_to_cpu(rinfo
->targeti
.in
->snapid
);
1167 dn
= d_lookup(parent
, &dname
);
1168 dout("d_lookup on parent=%p name=%.*s got %p\n",
1169 parent
, dname
.len
, dname
.name
, dn
);
1172 dn
= d_alloc(parent
, &dname
);
1173 dout("d_alloc %p '%.*s' = %p\n", parent
,
1174 dname
.len
, dname
.name
, dn
);
1181 } else if (d_really_is_positive(dn
) &&
1182 (ceph_ino(d_inode(dn
)) != tvino
.ino
||
1183 ceph_snap(d_inode(dn
)) != tvino
.snap
)) {
1184 dout(" dn %p points to wrong inode %p\n",
1196 if (rinfo
->head
->is_target
) {
1197 tvino
.ino
= le64_to_cpu(rinfo
->targeti
.in
->ino
);
1198 tvino
.snap
= le64_to_cpu(rinfo
->targeti
.in
->snapid
);
1200 in
= ceph_get_inode(sb
, tvino
);
1205 req
->r_target_inode
= in
;
1207 err
= fill_inode(in
, req
->r_locked_page
, &rinfo
->targeti
, NULL
,
1208 session
, req
->r_request_started
,
1209 (!test_bit(CEPH_MDS_R_ABORTED
, &req
->r_req_flags
) &&
1210 rinfo
->head
->result
== 0) ? req
->r_fmode
: -1,
1211 &req
->r_caps_reservation
);
1213 pr_err("fill_inode badness %p %llx.%llx\n",
1214 in
, ceph_vinop(in
));
1220 * ignore null lease/binding on snapdir ENOENT, or else we
1221 * will have trouble splicing in the virtual snapdir later
1223 if (rinfo
->head
->is_dentry
&&
1224 !test_bit(CEPH_MDS_R_ABORTED
, &req
->r_req_flags
) &&
1225 test_bit(CEPH_MDS_R_PARENT_LOCKED
, &req
->r_req_flags
) &&
1226 (rinfo
->head
->is_target
|| strncmp(req
->r_dentry
->d_name
.name
,
1227 fsc
->mount_options
->snapdir_name
,
1228 req
->r_dentry
->d_name
.len
))) {
1230 * lookup link rename : null -> possibly existing inode
1231 * mknod symlink mkdir : null -> new inode
1232 * unlink : linked -> null
1234 struct inode
*dir
= req
->r_parent
;
1235 struct dentry
*dn
= req
->r_dentry
;
1236 bool have_dir_cap
, have_lease
;
1240 BUG_ON(d_inode(dn
->d_parent
) != dir
);
1242 dvino
.ino
= le64_to_cpu(rinfo
->diri
.in
->ino
);
1243 dvino
.snap
= le64_to_cpu(rinfo
->diri
.in
->snapid
);
1245 BUG_ON(ceph_ino(dir
) != dvino
.ino
);
1246 BUG_ON(ceph_snap(dir
) != dvino
.snap
);
1248 /* do we have a lease on the whole dir? */
1250 (le32_to_cpu(rinfo
->diri
.in
->cap
.caps
) &
1251 CEPH_CAP_FILE_SHARED
);
1253 /* do we have a dn lease? */
1254 have_lease
= have_dir_cap
||
1255 le32_to_cpu(rinfo
->dlease
->duration_ms
);
1257 dout("fill_trace no dentry lease or dir cap\n");
1260 if (req
->r_old_dentry
&& req
->r_op
== CEPH_MDS_OP_RENAME
) {
1261 struct inode
*olddir
= req
->r_old_dentry_dir
;
1264 dout(" src %p '%pd' dst %p '%pd'\n",
1268 dout("fill_trace doing d_move %p -> %p\n",
1269 req
->r_old_dentry
, dn
);
1271 /* d_move screws up sibling dentries' offsets */
1272 ceph_dir_clear_ordered(dir
);
1273 ceph_dir_clear_ordered(olddir
);
1275 d_move(req
->r_old_dentry
, dn
);
1276 dout(" src %p '%pd' dst %p '%pd'\n",
1281 /* ensure target dentry is invalidated, despite
1282 rehashing bug in vfs_rename_dir */
1283 ceph_invalidate_dentry_lease(dn
);
1285 dout("dn %p gets new offset %lld\n", req
->r_old_dentry
,
1286 ceph_dentry(req
->r_old_dentry
)->offset
);
1288 dn
= req
->r_old_dentry
; /* use old_dentry */
1292 if (!rinfo
->head
->is_target
) {
1293 dout("fill_trace null dentry\n");
1294 if (d_really_is_positive(dn
)) {
1295 ceph_dir_clear_ordered(dir
);
1296 dout("d_delete %p\n", dn
);
1298 } else if (have_lease
) {
1301 update_dentry_lease(dn
, rinfo
->dlease
,
1303 req
->r_request_started
,
1309 /* attach proper inode */
1310 if (d_really_is_negative(dn
)) {
1311 ceph_dir_clear_ordered(dir
);
1313 dn
= splice_dentry(dn
, in
);
1318 req
->r_dentry
= dn
; /* may have spliced */
1319 } else if (d_really_is_positive(dn
) && d_inode(dn
) != in
) {
1320 dout(" %p links to %p %llx.%llx, not %llx.%llx\n",
1321 dn
, d_inode(dn
), ceph_vinop(d_inode(dn
)),
1328 tvino
.ino
= le64_to_cpu(rinfo
->targeti
.in
->ino
);
1329 tvino
.snap
= le64_to_cpu(rinfo
->targeti
.in
->snapid
);
1330 update_dentry_lease(dn
, rinfo
->dlease
, session
,
1331 req
->r_request_started
,
1334 dout(" final dn %p\n", dn
);
1335 } else if ((req
->r_op
== CEPH_MDS_OP_LOOKUPSNAP
||
1336 req
->r_op
== CEPH_MDS_OP_MKSNAP
) &&
1337 !test_bit(CEPH_MDS_R_ABORTED
, &req
->r_req_flags
)) {
1338 struct dentry
*dn
= req
->r_dentry
;
1339 struct inode
*dir
= req
->r_parent
;
1341 /* fill out a snapdir LOOKUPSNAP dentry */
1344 BUG_ON(ceph_snap(dir
) != CEPH_SNAPDIR
);
1345 dout(" linking snapped dir %p to dn %p\n", in
, dn
);
1346 ceph_dir_clear_ordered(dir
);
1348 dn
= splice_dentry(dn
, in
);
1353 req
->r_dentry
= dn
; /* may have spliced */
1354 } else if (rinfo
->head
->is_dentry
) {
1355 struct ceph_vino
*ptvino
= NULL
;
1357 if ((le32_to_cpu(rinfo
->diri
.in
->cap
.caps
) & CEPH_CAP_FILE_SHARED
) ||
1358 le32_to_cpu(rinfo
->dlease
->duration_ms
)) {
1359 dvino
.ino
= le64_to_cpu(rinfo
->diri
.in
->ino
);
1360 dvino
.snap
= le64_to_cpu(rinfo
->diri
.in
->snapid
);
1362 if (rinfo
->head
->is_target
) {
1363 tvino
.ino
= le64_to_cpu(rinfo
->targeti
.in
->ino
);
1364 tvino
.snap
= le64_to_cpu(rinfo
->targeti
.in
->snapid
);
1368 update_dentry_lease(req
->r_dentry
, rinfo
->dlease
,
1369 session
, req
->r_request_started
, ptvino
,
1372 dout("%s: no dentry lease or dir cap\n", __func__
);
1376 dout("fill_trace done err=%d\n", err
);
1381 * Prepopulate our cache with readdir results, leases, etc.
1383 static int readdir_prepopulate_inodes_only(struct ceph_mds_request
*req
,
1384 struct ceph_mds_session
*session
)
1386 struct ceph_mds_reply_info_parsed
*rinfo
= &req
->r_reply_info
;
1389 for (i
= 0; i
< rinfo
->dir_nr
; i
++) {
1390 struct ceph_mds_reply_dir_entry
*rde
= rinfo
->dir_entries
+ i
;
1391 struct ceph_vino vino
;
1395 vino
.ino
= le64_to_cpu(rde
->inode
.in
->ino
);
1396 vino
.snap
= le64_to_cpu(rde
->inode
.in
->snapid
);
1398 in
= ceph_get_inode(req
->r_dentry
->d_sb
, vino
);
1401 dout("new_inode badness got %d\n", err
);
1404 rc
= fill_inode(in
, NULL
, &rde
->inode
, NULL
, session
,
1405 req
->r_request_started
, -1,
1406 &req
->r_caps_reservation
);
1408 pr_err("fill_inode badness on %p got %d\n", in
, rc
);
1417 void ceph_readdir_cache_release(struct ceph_readdir_cache_control
*ctl
)
1421 put_page(ctl
->page
);
1426 static int fill_readdir_cache(struct inode
*dir
, struct dentry
*dn
,
1427 struct ceph_readdir_cache_control
*ctl
,
1428 struct ceph_mds_request
*req
)
1430 struct ceph_inode_info
*ci
= ceph_inode(dir
);
1431 unsigned nsize
= PAGE_SIZE
/ sizeof(struct dentry
*);
1432 unsigned idx
= ctl
->index
% nsize
;
1433 pgoff_t pgoff
= ctl
->index
/ nsize
;
1435 if (!ctl
->page
|| pgoff
!= page_index(ctl
->page
)) {
1436 ceph_readdir_cache_release(ctl
);
1438 ctl
->page
= grab_cache_page(&dir
->i_data
, pgoff
);
1440 ctl
->page
= find_lock_page(&dir
->i_data
, pgoff
);
1443 return idx
== 0 ? -ENOMEM
: 0;
1445 /* reading/filling the cache are serialized by
1446 * i_mutex, no need to use page lock */
1447 unlock_page(ctl
->page
);
1448 ctl
->dentries
= kmap(ctl
->page
);
1450 memset(ctl
->dentries
, 0, PAGE_SIZE
);
1453 if (req
->r_dir_release_cnt
== atomic64_read(&ci
->i_release_count
) &&
1454 req
->r_dir_ordered_cnt
== atomic64_read(&ci
->i_ordered_count
)) {
1455 dout("readdir cache dn %p idx %d\n", dn
, ctl
->index
);
1456 ctl
->dentries
[idx
] = dn
;
1459 dout("disable readdir cache\n");
1465 int ceph_readdir_prepopulate(struct ceph_mds_request
*req
,
1466 struct ceph_mds_session
*session
)
1468 struct dentry
*parent
= req
->r_dentry
;
1469 struct ceph_inode_info
*ci
= ceph_inode(d_inode(parent
));
1470 struct ceph_mds_reply_info_parsed
*rinfo
= &req
->r_reply_info
;
1474 int err
= 0, skipped
= 0, ret
, i
;
1475 struct inode
*snapdir
= NULL
;
1476 struct ceph_mds_request_head
*rhead
= req
->r_request
->front
.iov_base
;
1477 u32 frag
= le32_to_cpu(rhead
->args
.readdir
.frag
);
1480 struct ceph_readdir_cache_control cache_ctl
= {};
1482 if (test_bit(CEPH_MDS_R_ABORTED
, &req
->r_req_flags
))
1483 return readdir_prepopulate_inodes_only(req
, session
);
1485 if (rinfo
->hash_order
) {
1487 last_hash
= ceph_str_hash(ci
->i_dir_layout
.dl_dir_hash
,
1489 strlen(req
->r_path2
));
1490 last_hash
= ceph_frag_value(last_hash
);
1491 } else if (rinfo
->offset_hash
) {
1492 /* mds understands offset_hash */
1493 WARN_ON_ONCE(req
->r_readdir_offset
!= 2);
1494 last_hash
= le32_to_cpu(rhead
->args
.readdir
.offset_hash
);
1498 if (rinfo
->dir_dir
&&
1499 le32_to_cpu(rinfo
->dir_dir
->frag
) != frag
) {
1500 dout("readdir_prepopulate got new frag %x -> %x\n",
1501 frag
, le32_to_cpu(rinfo
->dir_dir
->frag
));
1502 frag
= le32_to_cpu(rinfo
->dir_dir
->frag
);
1503 if (!rinfo
->hash_order
)
1504 req
->r_readdir_offset
= 2;
1507 if (le32_to_cpu(rinfo
->head
->op
) == CEPH_MDS_OP_LSSNAP
) {
1508 snapdir
= ceph_get_snapdir(d_inode(parent
));
1509 parent
= d_find_alias(snapdir
);
1510 dout("readdir_prepopulate %d items under SNAPDIR dn %p\n",
1511 rinfo
->dir_nr
, parent
);
1513 dout("readdir_prepopulate %d items under dn %p\n",
1514 rinfo
->dir_nr
, parent
);
1516 ceph_fill_dirfrag(d_inode(parent
), rinfo
->dir_dir
);
1519 if (ceph_frag_is_leftmost(frag
) && req
->r_readdir_offset
== 2 &&
1520 !(rinfo
->hash_order
&& last_hash
)) {
1521 /* note dir version at start of readdir so we can tell
1522 * if any dentries get dropped */
1523 req
->r_dir_release_cnt
= atomic64_read(&ci
->i_release_count
);
1524 req
->r_dir_ordered_cnt
= atomic64_read(&ci
->i_ordered_count
);
1525 req
->r_readdir_cache_idx
= 0;
1528 cache_ctl
.index
= req
->r_readdir_cache_idx
;
1529 fpos_offset
= req
->r_readdir_offset
;
1531 /* FIXME: release caps/leases if error occurs */
1532 for (i
= 0; i
< rinfo
->dir_nr
; i
++) {
1533 struct ceph_mds_reply_dir_entry
*rde
= rinfo
->dir_entries
+ i
;
1534 struct ceph_vino tvino
, dvino
;
1536 dname
.name
= rde
->name
;
1537 dname
.len
= rde
->name_len
;
1538 dname
.hash
= full_name_hash(parent
, dname
.name
, dname
.len
);
1540 tvino
.ino
= le64_to_cpu(rde
->inode
.in
->ino
);
1541 tvino
.snap
= le64_to_cpu(rde
->inode
.in
->snapid
);
1543 if (rinfo
->hash_order
) {
1544 u32 hash
= ceph_str_hash(ci
->i_dir_layout
.dl_dir_hash
,
1545 rde
->name
, rde
->name_len
);
1546 hash
= ceph_frag_value(hash
);
1547 if (hash
!= last_hash
)
1550 rde
->offset
= ceph_make_fpos(hash
, fpos_offset
++, true);
1552 rde
->offset
= ceph_make_fpos(frag
, fpos_offset
++, false);
1556 dn
= d_lookup(parent
, &dname
);
1557 dout("d_lookup on parent=%p name=%.*s got %p\n",
1558 parent
, dname
.len
, dname
.name
, dn
);
1561 dn
= d_alloc(parent
, &dname
);
1562 dout("d_alloc %p '%.*s' = %p\n", parent
,
1563 dname
.len
, dname
.name
, dn
);
1565 dout("d_alloc badness\n");
1569 } else if (d_really_is_positive(dn
) &&
1570 (ceph_ino(d_inode(dn
)) != tvino
.ino
||
1571 ceph_snap(d_inode(dn
)) != tvino
.snap
)) {
1572 dout(" dn %p points to wrong inode %p\n",
1580 if (d_really_is_positive(dn
)) {
1583 in
= ceph_get_inode(parent
->d_sb
, tvino
);
1585 dout("new_inode badness\n");
1593 ret
= fill_inode(in
, NULL
, &rde
->inode
, NULL
, session
,
1594 req
->r_request_started
, -1,
1595 &req
->r_caps_reservation
);
1597 pr_err("fill_inode badness on %p\n", in
);
1598 if (d_really_is_negative(dn
))
1605 if (d_really_is_negative(dn
)) {
1606 struct dentry
*realdn
;
1608 if (ceph_security_xattr_deadlock(in
)) {
1609 dout(" skip splicing dn %p to inode %p"
1610 " (security xattr deadlock)\n", dn
, in
);
1616 realdn
= splice_dentry(dn
, in
);
1617 if (IS_ERR(realdn
)) {
1618 err
= PTR_ERR(realdn
);
1626 ceph_dentry(dn
)->offset
= rde
->offset
;
1628 dvino
= ceph_vino(d_inode(parent
));
1629 update_dentry_lease(dn
, rde
->lease
, req
->r_session
,
1630 req
->r_request_started
, &tvino
, &dvino
);
1632 if (err
== 0 && skipped
== 0 && cache_ctl
.index
>= 0) {
1633 ret
= fill_readdir_cache(d_inode(parent
), dn
,
1643 if (err
== 0 && skipped
== 0) {
1644 set_bit(CEPH_MDS_R_DID_PREPOPULATE
, &req
->r_req_flags
);
1645 req
->r_readdir_cache_idx
= cache_ctl
.index
;
1647 ceph_readdir_cache_release(&cache_ctl
);
1652 dout("readdir_prepopulate done\n");
1656 int ceph_inode_set_size(struct inode
*inode
, loff_t size
)
1658 struct ceph_inode_info
*ci
= ceph_inode(inode
);
1661 spin_lock(&ci
->i_ceph_lock
);
1662 dout("set_size %p %llu -> %llu\n", inode
, inode
->i_size
, size
);
1663 i_size_write(inode
, size
);
1664 inode
->i_blocks
= calc_inode_blocks(size
);
1666 /* tell the MDS if we are approaching max_size */
1667 if ((size
<< 1) >= ci
->i_max_size
&&
1668 (ci
->i_reported_size
<< 1) < ci
->i_max_size
)
1671 spin_unlock(&ci
->i_ceph_lock
);
1676 * Write back inode data in a worker thread. (This can't be done
1677 * in the message handler context.)
1679 void ceph_queue_writeback(struct inode
*inode
)
1682 if (queue_work(ceph_inode_to_client(inode
)->wb_wq
,
1683 &ceph_inode(inode
)->i_wb_work
)) {
1684 dout("ceph_queue_writeback %p\n", inode
);
1686 dout("ceph_queue_writeback %p failed\n", inode
);
1691 static void ceph_writeback_work(struct work_struct
*work
)
1693 struct ceph_inode_info
*ci
= container_of(work
, struct ceph_inode_info
,
1695 struct inode
*inode
= &ci
->vfs_inode
;
1697 dout("writeback %p\n", inode
);
1698 filemap_fdatawrite(&inode
->i_data
);
1703 * queue an async invalidation
1705 void ceph_queue_invalidate(struct inode
*inode
)
1708 if (queue_work(ceph_inode_to_client(inode
)->pg_inv_wq
,
1709 &ceph_inode(inode
)->i_pg_inv_work
)) {
1710 dout("ceph_queue_invalidate %p\n", inode
);
1712 dout("ceph_queue_invalidate %p failed\n", inode
);
1718 * Invalidate inode pages in a worker thread. (This can't be done
1719 * in the message handler context.)
1721 static void ceph_invalidate_work(struct work_struct
*work
)
1723 struct ceph_inode_info
*ci
= container_of(work
, struct ceph_inode_info
,
1725 struct inode
*inode
= &ci
->vfs_inode
;
1726 struct ceph_fs_client
*fsc
= ceph_inode_to_client(inode
);
1730 mutex_lock(&ci
->i_truncate_mutex
);
1732 if (READ_ONCE(fsc
->mount_state
) == CEPH_MOUNT_SHUTDOWN
) {
1733 pr_warn_ratelimited("invalidate_pages %p %lld forced umount\n",
1734 inode
, ceph_ino(inode
));
1735 mapping_set_error(inode
->i_mapping
, -EIO
);
1736 truncate_pagecache(inode
, 0);
1737 mutex_unlock(&ci
->i_truncate_mutex
);
1741 spin_lock(&ci
->i_ceph_lock
);
1742 dout("invalidate_pages %p gen %d revoking %d\n", inode
,
1743 ci
->i_rdcache_gen
, ci
->i_rdcache_revoking
);
1744 if (ci
->i_rdcache_revoking
!= ci
->i_rdcache_gen
) {
1745 if (__ceph_caps_revoking_other(ci
, NULL
, CEPH_CAP_FILE_CACHE
))
1747 spin_unlock(&ci
->i_ceph_lock
);
1748 mutex_unlock(&ci
->i_truncate_mutex
);
1751 orig_gen
= ci
->i_rdcache_gen
;
1752 spin_unlock(&ci
->i_ceph_lock
);
1754 if (invalidate_inode_pages2(inode
->i_mapping
) < 0) {
1755 pr_err("invalidate_pages %p fails\n", inode
);
1758 spin_lock(&ci
->i_ceph_lock
);
1759 if (orig_gen
== ci
->i_rdcache_gen
&&
1760 orig_gen
== ci
->i_rdcache_revoking
) {
1761 dout("invalidate_pages %p gen %d successful\n", inode
,
1763 ci
->i_rdcache_revoking
--;
1766 dout("invalidate_pages %p gen %d raced, now %d revoking %d\n",
1767 inode
, orig_gen
, ci
->i_rdcache_gen
,
1768 ci
->i_rdcache_revoking
);
1769 if (__ceph_caps_revoking_other(ci
, NULL
, CEPH_CAP_FILE_CACHE
))
1772 spin_unlock(&ci
->i_ceph_lock
);
1773 mutex_unlock(&ci
->i_truncate_mutex
);
1776 ceph_check_caps(ci
, 0, NULL
);
1782 * called by trunc_wq;
1784 * We also truncate in a separate thread as well.
1786 static void ceph_vmtruncate_work(struct work_struct
*work
)
1788 struct ceph_inode_info
*ci
= container_of(work
, struct ceph_inode_info
,
1790 struct inode
*inode
= &ci
->vfs_inode
;
1792 dout("vmtruncate_work %p\n", inode
);
1793 __ceph_do_pending_vmtruncate(inode
);
1798 * Queue an async vmtruncate. If we fail to queue work, we will handle
1799 * the truncation the next time we call __ceph_do_pending_vmtruncate.
1801 void ceph_queue_vmtruncate(struct inode
*inode
)
1803 struct ceph_inode_info
*ci
= ceph_inode(inode
);
1807 if (queue_work(ceph_sb_to_client(inode
->i_sb
)->trunc_wq
,
1808 &ci
->i_vmtruncate_work
)) {
1809 dout("ceph_queue_vmtruncate %p\n", inode
);
1811 dout("ceph_queue_vmtruncate %p failed, pending=%d\n",
1812 inode
, ci
->i_truncate_pending
);
1818 * Make sure any pending truncation is applied before doing anything
1819 * that may depend on it.
1821 void __ceph_do_pending_vmtruncate(struct inode
*inode
)
1823 struct ceph_inode_info
*ci
= ceph_inode(inode
);
1825 int wrbuffer_refs
, finish
= 0;
1827 mutex_lock(&ci
->i_truncate_mutex
);
1829 spin_lock(&ci
->i_ceph_lock
);
1830 if (ci
->i_truncate_pending
== 0) {
1831 dout("__do_pending_vmtruncate %p none pending\n", inode
);
1832 spin_unlock(&ci
->i_ceph_lock
);
1833 mutex_unlock(&ci
->i_truncate_mutex
);
1838 * make sure any dirty snapped pages are flushed before we
1839 * possibly truncate them.. so write AND block!
1841 if (ci
->i_wrbuffer_ref_head
< ci
->i_wrbuffer_ref
) {
1842 dout("__do_pending_vmtruncate %p flushing snaps first\n",
1844 spin_unlock(&ci
->i_ceph_lock
);
1845 filemap_write_and_wait_range(&inode
->i_data
, 0,
1846 inode
->i_sb
->s_maxbytes
);
1850 /* there should be no reader or writer */
1851 WARN_ON_ONCE(ci
->i_rd_ref
|| ci
->i_wr_ref
);
1853 to
= ci
->i_truncate_size
;
1854 wrbuffer_refs
= ci
->i_wrbuffer_ref
;
1855 dout("__do_pending_vmtruncate %p (%d) to %lld\n", inode
,
1856 ci
->i_truncate_pending
, to
);
1857 spin_unlock(&ci
->i_ceph_lock
);
1859 truncate_pagecache(inode
, to
);
1861 spin_lock(&ci
->i_ceph_lock
);
1862 if (to
== ci
->i_truncate_size
) {
1863 ci
->i_truncate_pending
= 0;
1866 spin_unlock(&ci
->i_ceph_lock
);
1870 mutex_unlock(&ci
->i_truncate_mutex
);
1872 if (wrbuffer_refs
== 0)
1873 ceph_check_caps(ci
, CHECK_CAPS_AUTHONLY
, NULL
);
1875 wake_up_all(&ci
->i_cap_wq
);
1881 static const struct inode_operations ceph_symlink_iops
= {
1882 .get_link
= simple_get_link
,
1883 .setattr
= ceph_setattr
,
1884 .getattr
= ceph_getattr
,
1885 .listxattr
= ceph_listxattr
,
1888 int __ceph_setattr(struct inode
*inode
, struct iattr
*attr
)
1890 struct ceph_inode_info
*ci
= ceph_inode(inode
);
1891 const unsigned int ia_valid
= attr
->ia_valid
;
1892 struct ceph_mds_request
*req
;
1893 struct ceph_mds_client
*mdsc
= ceph_sb_to_client(inode
->i_sb
)->mdsc
;
1894 struct ceph_cap_flush
*prealloc_cf
;
1896 int release
= 0, dirtied
= 0;
1899 int inode_dirty_flags
= 0;
1900 bool lock_snap_rwsem
= false;
1902 prealloc_cf
= ceph_alloc_cap_flush();
1906 req
= ceph_mdsc_create_request(mdsc
, CEPH_MDS_OP_SETATTR
,
1909 ceph_free_cap_flush(prealloc_cf
);
1910 return PTR_ERR(req
);
1913 spin_lock(&ci
->i_ceph_lock
);
1914 issued
= __ceph_caps_issued(ci
, NULL
);
1916 if (!ci
->i_head_snapc
&&
1917 (issued
& (CEPH_CAP_ANY_EXCL
| CEPH_CAP_FILE_WR
))) {
1918 lock_snap_rwsem
= true;
1919 if (!down_read_trylock(&mdsc
->snap_rwsem
)) {
1920 spin_unlock(&ci
->i_ceph_lock
);
1921 down_read(&mdsc
->snap_rwsem
);
1922 spin_lock(&ci
->i_ceph_lock
);
1923 issued
= __ceph_caps_issued(ci
, NULL
);
1927 dout("setattr %p issued %s\n", inode
, ceph_cap_string(issued
));
1929 if (ia_valid
& ATTR_UID
) {
1930 dout("setattr %p uid %d -> %d\n", inode
,
1931 from_kuid(&init_user_ns
, inode
->i_uid
),
1932 from_kuid(&init_user_ns
, attr
->ia_uid
));
1933 if (issued
& CEPH_CAP_AUTH_EXCL
) {
1934 inode
->i_uid
= attr
->ia_uid
;
1935 dirtied
|= CEPH_CAP_AUTH_EXCL
;
1936 } else if ((issued
& CEPH_CAP_AUTH_SHARED
) == 0 ||
1937 !uid_eq(attr
->ia_uid
, inode
->i_uid
)) {
1938 req
->r_args
.setattr
.uid
= cpu_to_le32(
1939 from_kuid(&init_user_ns
, attr
->ia_uid
));
1940 mask
|= CEPH_SETATTR_UID
;
1941 release
|= CEPH_CAP_AUTH_SHARED
;
1944 if (ia_valid
& ATTR_GID
) {
1945 dout("setattr %p gid %d -> %d\n", inode
,
1946 from_kgid(&init_user_ns
, inode
->i_gid
),
1947 from_kgid(&init_user_ns
, attr
->ia_gid
));
1948 if (issued
& CEPH_CAP_AUTH_EXCL
) {
1949 inode
->i_gid
= attr
->ia_gid
;
1950 dirtied
|= CEPH_CAP_AUTH_EXCL
;
1951 } else if ((issued
& CEPH_CAP_AUTH_SHARED
) == 0 ||
1952 !gid_eq(attr
->ia_gid
, inode
->i_gid
)) {
1953 req
->r_args
.setattr
.gid
= cpu_to_le32(
1954 from_kgid(&init_user_ns
, attr
->ia_gid
));
1955 mask
|= CEPH_SETATTR_GID
;
1956 release
|= CEPH_CAP_AUTH_SHARED
;
1959 if (ia_valid
& ATTR_MODE
) {
1960 dout("setattr %p mode 0%o -> 0%o\n", inode
, inode
->i_mode
,
1962 if (issued
& CEPH_CAP_AUTH_EXCL
) {
1963 inode
->i_mode
= attr
->ia_mode
;
1964 dirtied
|= CEPH_CAP_AUTH_EXCL
;
1965 } else if ((issued
& CEPH_CAP_AUTH_SHARED
) == 0 ||
1966 attr
->ia_mode
!= inode
->i_mode
) {
1967 inode
->i_mode
= attr
->ia_mode
;
1968 req
->r_args
.setattr
.mode
= cpu_to_le32(attr
->ia_mode
);
1969 mask
|= CEPH_SETATTR_MODE
;
1970 release
|= CEPH_CAP_AUTH_SHARED
;
1974 if (ia_valid
& ATTR_ATIME
) {
1975 dout("setattr %p atime %ld.%ld -> %ld.%ld\n", inode
,
1976 inode
->i_atime
.tv_sec
, inode
->i_atime
.tv_nsec
,
1977 attr
->ia_atime
.tv_sec
, attr
->ia_atime
.tv_nsec
);
1978 if (issued
& CEPH_CAP_FILE_EXCL
) {
1979 ci
->i_time_warp_seq
++;
1980 inode
->i_atime
= attr
->ia_atime
;
1981 dirtied
|= CEPH_CAP_FILE_EXCL
;
1982 } else if ((issued
& CEPH_CAP_FILE_WR
) &&
1983 timespec_compare(&inode
->i_atime
,
1984 &attr
->ia_atime
) < 0) {
1985 inode
->i_atime
= attr
->ia_atime
;
1986 dirtied
|= CEPH_CAP_FILE_WR
;
1987 } else if ((issued
& CEPH_CAP_FILE_SHARED
) == 0 ||
1988 !timespec_equal(&inode
->i_atime
, &attr
->ia_atime
)) {
1989 ceph_encode_timespec(&req
->r_args
.setattr
.atime
,
1991 mask
|= CEPH_SETATTR_ATIME
;
1992 release
|= CEPH_CAP_FILE_CACHE
| CEPH_CAP_FILE_RD
|
1996 if (ia_valid
& ATTR_MTIME
) {
1997 dout("setattr %p mtime %ld.%ld -> %ld.%ld\n", inode
,
1998 inode
->i_mtime
.tv_sec
, inode
->i_mtime
.tv_nsec
,
1999 attr
->ia_mtime
.tv_sec
, attr
->ia_mtime
.tv_nsec
);
2000 if (issued
& CEPH_CAP_FILE_EXCL
) {
2001 ci
->i_time_warp_seq
++;
2002 inode
->i_mtime
= attr
->ia_mtime
;
2003 dirtied
|= CEPH_CAP_FILE_EXCL
;
2004 } else if ((issued
& CEPH_CAP_FILE_WR
) &&
2005 timespec_compare(&inode
->i_mtime
,
2006 &attr
->ia_mtime
) < 0) {
2007 inode
->i_mtime
= attr
->ia_mtime
;
2008 dirtied
|= CEPH_CAP_FILE_WR
;
2009 } else if ((issued
& CEPH_CAP_FILE_SHARED
) == 0 ||
2010 !timespec_equal(&inode
->i_mtime
, &attr
->ia_mtime
)) {
2011 ceph_encode_timespec(&req
->r_args
.setattr
.mtime
,
2013 mask
|= CEPH_SETATTR_MTIME
;
2014 release
|= CEPH_CAP_FILE_SHARED
| CEPH_CAP_FILE_RD
|
2018 if (ia_valid
& ATTR_SIZE
) {
2019 dout("setattr %p size %lld -> %lld\n", inode
,
2020 inode
->i_size
, attr
->ia_size
);
2021 if ((issued
& CEPH_CAP_FILE_EXCL
) &&
2022 attr
->ia_size
> inode
->i_size
) {
2023 i_size_write(inode
, attr
->ia_size
);
2024 inode
->i_blocks
= calc_inode_blocks(attr
->ia_size
);
2025 ci
->i_reported_size
= attr
->ia_size
;
2026 dirtied
|= CEPH_CAP_FILE_EXCL
;
2027 } else if ((issued
& CEPH_CAP_FILE_SHARED
) == 0 ||
2028 attr
->ia_size
!= inode
->i_size
) {
2029 req
->r_args
.setattr
.size
= cpu_to_le64(attr
->ia_size
);
2030 req
->r_args
.setattr
.old_size
=
2031 cpu_to_le64(inode
->i_size
);
2032 mask
|= CEPH_SETATTR_SIZE
;
2033 release
|= CEPH_CAP_FILE_SHARED
| CEPH_CAP_FILE_RD
|
2038 /* these do nothing */
2039 if (ia_valid
& ATTR_CTIME
) {
2040 bool only
= (ia_valid
& (ATTR_SIZE
|ATTR_MTIME
|ATTR_ATIME
|
2041 ATTR_MODE
|ATTR_UID
|ATTR_GID
)) == 0;
2042 dout("setattr %p ctime %ld.%ld -> %ld.%ld (%s)\n", inode
,
2043 inode
->i_ctime
.tv_sec
, inode
->i_ctime
.tv_nsec
,
2044 attr
->ia_ctime
.tv_sec
, attr
->ia_ctime
.tv_nsec
,
2045 only
? "ctime only" : "ignored");
2048 * if kernel wants to dirty ctime but nothing else,
2049 * we need to choose a cap to dirty under, or do
2050 * a almost-no-op setattr
2052 if (issued
& CEPH_CAP_AUTH_EXCL
)
2053 dirtied
|= CEPH_CAP_AUTH_EXCL
;
2054 else if (issued
& CEPH_CAP_FILE_EXCL
)
2055 dirtied
|= CEPH_CAP_FILE_EXCL
;
2056 else if (issued
& CEPH_CAP_XATTR_EXCL
)
2057 dirtied
|= CEPH_CAP_XATTR_EXCL
;
2059 mask
|= CEPH_SETATTR_CTIME
;
2062 if (ia_valid
& ATTR_FILE
)
2063 dout("setattr %p ATTR_FILE ... hrm!\n", inode
);
2066 inode_dirty_flags
= __ceph_mark_dirty_caps(ci
, dirtied
,
2068 inode
->i_ctime
= attr
->ia_ctime
;
2072 spin_unlock(&ci
->i_ceph_lock
);
2073 if (lock_snap_rwsem
)
2074 up_read(&mdsc
->snap_rwsem
);
2076 if (inode_dirty_flags
)
2077 __mark_inode_dirty(inode
, inode_dirty_flags
);
2081 req
->r_inode
= inode
;
2083 req
->r_inode_drop
= release
;
2084 req
->r_args
.setattr
.mask
= cpu_to_le32(mask
);
2085 req
->r_num_caps
= 1;
2086 req
->r_stamp
= attr
->ia_ctime
;
2087 err
= ceph_mdsc_do_request(mdsc
, NULL
, req
);
2089 dout("setattr %p result=%d (%s locally, %d remote)\n", inode
, err
,
2090 ceph_cap_string(dirtied
), mask
);
2092 ceph_mdsc_put_request(req
);
2093 ceph_free_cap_flush(prealloc_cf
);
2095 if (err
>= 0 && (mask
& CEPH_SETATTR_SIZE
))
2096 __ceph_do_pending_vmtruncate(inode
);
2104 int ceph_setattr(struct dentry
*dentry
, struct iattr
*attr
)
2106 struct inode
*inode
= d_inode(dentry
);
2109 if (ceph_snap(inode
) != CEPH_NOSNAP
)
2112 err
= setattr_prepare(dentry
, attr
);
2116 err
= __ceph_setattr(inode
, attr
);
2118 if (err
>= 0 && (attr
->ia_valid
& ATTR_MODE
))
2119 err
= posix_acl_chmod(inode
, attr
->ia_mode
);
2125 * Verify that we have a lease on the given mask. If not,
2126 * do a getattr against an mds.
2128 int __ceph_do_getattr(struct inode
*inode
, struct page
*locked_page
,
2129 int mask
, bool force
)
2131 struct ceph_fs_client
*fsc
= ceph_sb_to_client(inode
->i_sb
);
2132 struct ceph_mds_client
*mdsc
= fsc
->mdsc
;
2133 struct ceph_mds_request
*req
;
2136 if (ceph_snap(inode
) == CEPH_SNAPDIR
) {
2137 dout("do_getattr inode %p SNAPDIR\n", inode
);
2141 dout("do_getattr inode %p mask %s mode 0%o\n",
2142 inode
, ceph_cap_string(mask
), inode
->i_mode
);
2143 if (!force
&& ceph_caps_issued_mask(ceph_inode(inode
), mask
, 1))
2146 req
= ceph_mdsc_create_request(mdsc
, CEPH_MDS_OP_GETATTR
, USE_ANY_MDS
);
2148 return PTR_ERR(req
);
2149 req
->r_inode
= inode
;
2151 req
->r_num_caps
= 1;
2152 req
->r_args
.getattr
.mask
= cpu_to_le32(mask
);
2153 req
->r_locked_page
= locked_page
;
2154 err
= ceph_mdsc_do_request(mdsc
, NULL
, req
);
2155 if (locked_page
&& err
== 0) {
2156 u64 inline_version
= req
->r_reply_info
.targeti
.inline_version
;
2157 if (inline_version
== 0) {
2158 /* the reply is supposed to contain inline data */
2160 } else if (inline_version
== CEPH_INLINE_NONE
) {
2163 err
= req
->r_reply_info
.targeti
.inline_len
;
2166 ceph_mdsc_put_request(req
);
2167 dout("do_getattr result=%d\n", err
);
2173 * Check inode permissions. We verify we have a valid value for
2174 * the AUTH cap, then call the generic handler.
2176 int ceph_permission(struct inode
*inode
, int mask
)
2180 if (mask
& MAY_NOT_BLOCK
)
2183 err
= ceph_do_getattr(inode
, CEPH_CAP_AUTH_SHARED
, false);
2186 err
= generic_permission(inode
, mask
);
2191 * Get all attributes. Hopefully somedata we'll have a statlite()
2192 * and can limit the fields we require to be accurate.
2194 int ceph_getattr(const struct path
*path
, struct kstat
*stat
,
2195 u32 request_mask
, unsigned int flags
)
2197 struct inode
*inode
= d_inode(path
->dentry
);
2198 struct ceph_inode_info
*ci
= ceph_inode(inode
);
2201 err
= ceph_do_getattr(inode
, CEPH_STAT_CAP_INODE_ALL
, false);
2203 generic_fillattr(inode
, stat
);
2204 stat
->ino
= ceph_translate_ino(inode
->i_sb
, inode
->i_ino
);
2205 if (ceph_snap(inode
) != CEPH_NOSNAP
)
2206 stat
->dev
= ceph_snap(inode
);
2209 if (S_ISDIR(inode
->i_mode
)) {
2210 if (ceph_test_mount_opt(ceph_sb_to_client(inode
->i_sb
),
2212 stat
->size
= ci
->i_rbytes
;
2214 stat
->size
= ci
->i_files
+ ci
->i_subdirs
;
2216 stat
->blksize
= 65536;