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1 #include "ceph_debug.h"
2
3 #include <linux/module.h>
4 #include <linux/fs.h>
5 #include <linux/smp_lock.h>
6 #include <linux/slab.h>
7 #include <linux/string.h>
8 #include <linux/uaccess.h>
9 #include <linux/kernel.h>
10 #include <linux/namei.h>
11 #include <linux/writeback.h>
12 #include <linux/vmalloc.h>
13 #include <linux/pagevec.h>
14
15 #include "super.h"
16 #include "decode.h"
17
18 /*
19  * Ceph inode operations
20  *
21  * Implement basic inode helpers (get, alloc) and inode ops (getattr,
22  * setattr, etc.), xattr helpers, and helpers for assimilating
23  * metadata returned by the MDS into our cache.
24  *
25  * Also define helpers for doing asynchronous writeback, invalidation,
26  * and truncation for the benefit of those who can't afford to block
27  * (typically because they are in the message handler path).
28  */
29
30 static const struct inode_operations ceph_symlink_iops;
31
32 static void ceph_invalidate_work(struct work_struct *work);
33 static void ceph_writeback_work(struct work_struct *work);
34 static void ceph_vmtruncate_work(struct work_struct *work);
35
36 /*
37  * find or create an inode, given the ceph ino number
38  */
39 struct inode *ceph_get_inode(struct super_block *sb, struct ceph_vino vino)
40 {
41         struct inode *inode;
42         ino_t t = ceph_vino_to_ino(vino);
43
44         inode = iget5_locked(sb, t, ceph_ino_compare, ceph_set_ino_cb, &vino);
45         if (inode == NULL)
46                 return ERR_PTR(-ENOMEM);
47         if (inode->i_state & I_NEW) {
48                 dout("get_inode created new inode %p %llx.%llx ino %llx\n",
49                      inode, ceph_vinop(inode), (u64)inode->i_ino);
50                 unlock_new_inode(inode);
51         }
52
53         dout("get_inode on %lu=%llx.%llx got %p\n", inode->i_ino, vino.ino,
54              vino.snap, inode);
55         return inode;
56 }
57
58 /*
59  * get/constuct snapdir inode for a given directory
60  */
61 struct inode *ceph_get_snapdir(struct inode *parent)
62 {
63         struct ceph_vino vino = {
64                 .ino = ceph_ino(parent),
65                 .snap = CEPH_SNAPDIR,
66         };
67         struct inode *inode = ceph_get_inode(parent->i_sb, vino);
68         struct ceph_inode_info *ci = ceph_inode(inode);
69
70         BUG_ON(!S_ISDIR(parent->i_mode));
71         if (IS_ERR(inode))
72                 return ERR_PTR(PTR_ERR(inode));
73         inode->i_mode = parent->i_mode;
74         inode->i_uid = parent->i_uid;
75         inode->i_gid = parent->i_gid;
76         inode->i_op = &ceph_dir_iops;
77         inode->i_fop = &ceph_dir_fops;
78         ci->i_snap_caps = CEPH_CAP_PIN; /* so we can open */
79         ci->i_rbytes = 0;
80         return inode;
81 }
82
83 const struct inode_operations ceph_file_iops = {
84         .permission = ceph_permission,
85         .setattr = ceph_setattr,
86         .getattr = ceph_getattr,
87         .setxattr = ceph_setxattr,
88         .getxattr = ceph_getxattr,
89         .listxattr = ceph_listxattr,
90         .removexattr = ceph_removexattr,
91 };
92
93
94 /*
95  * We use a 'frag tree' to keep track of the MDS's directory fragments
96  * for a given inode (usually there is just a single fragment).  We
97  * need to know when a child frag is delegated to a new MDS, or when
98  * it is flagged as replicated, so we can direct our requests
99  * accordingly.
100  */
101
102 /*
103  * find/create a frag in the tree
104  */
105 static struct ceph_inode_frag *__get_or_create_frag(struct ceph_inode_info *ci,
106                                                     u32 f)
107 {
108         struct rb_node **p;
109         struct rb_node *parent = NULL;
110         struct ceph_inode_frag *frag;
111         int c;
112
113         p = &ci->i_fragtree.rb_node;
114         while (*p) {
115                 parent = *p;
116                 frag = rb_entry(parent, struct ceph_inode_frag, node);
117                 c = ceph_frag_compare(f, frag->frag);
118                 if (c < 0)
119                         p = &(*p)->rb_left;
120                 else if (c > 0)
121                         p = &(*p)->rb_right;
122                 else
123                         return frag;
124         }
125
126         frag = kmalloc(sizeof(*frag), GFP_NOFS);
127         if (!frag) {
128                 pr_err("__get_or_create_frag ENOMEM on %p %llx.%llx "
129                        "frag %x\n", &ci->vfs_inode,
130                        ceph_vinop(&ci->vfs_inode), f);
131                 return ERR_PTR(-ENOMEM);
132         }
133         frag->frag = f;
134         frag->split_by = 0;
135         frag->mds = -1;
136         frag->ndist = 0;
137
138         rb_link_node(&frag->node, parent, p);
139         rb_insert_color(&frag->node, &ci->i_fragtree);
140
141         dout("get_or_create_frag added %llx.%llx frag %x\n",
142              ceph_vinop(&ci->vfs_inode), f);
143         return frag;
144 }
145
146 /*
147  * find a specific frag @f
148  */
149 struct ceph_inode_frag *__ceph_find_frag(struct ceph_inode_info *ci, u32 f)
150 {
151         struct rb_node *n = ci->i_fragtree.rb_node;
152
153         while (n) {
154                 struct ceph_inode_frag *frag =
155                         rb_entry(n, struct ceph_inode_frag, node);
156                 int c = ceph_frag_compare(f, frag->frag);
157                 if (c < 0)
158                         n = n->rb_left;
159                 else if (c > 0)
160                         n = n->rb_right;
161                 else
162                         return frag;
163         }
164         return NULL;
165 }
166
167 /*
168  * Choose frag containing the given value @v.  If @pfrag is
169  * specified, copy the frag delegation info to the caller if
170  * it is present.
171  */
172 u32 ceph_choose_frag(struct ceph_inode_info *ci, u32 v,
173                      struct ceph_inode_frag *pfrag,
174                      int *found)
175 {
176         u32 t = ceph_frag_make(0, 0);
177         struct ceph_inode_frag *frag;
178         unsigned nway, i;
179         u32 n;
180
181         if (found)
182                 *found = 0;
183
184         mutex_lock(&ci->i_fragtree_mutex);
185         while (1) {
186                 WARN_ON(!ceph_frag_contains_value(t, v));
187                 frag = __ceph_find_frag(ci, t);
188                 if (!frag)
189                         break; /* t is a leaf */
190                 if (frag->split_by == 0) {
191                         if (pfrag)
192                                 memcpy(pfrag, frag, sizeof(*pfrag));
193                         if (found)
194                                 *found = 1;
195                         break;
196                 }
197
198                 /* choose child */
199                 nway = 1 << frag->split_by;
200                 dout("choose_frag(%x) %x splits by %d (%d ways)\n", v, t,
201                      frag->split_by, nway);
202                 for (i = 0; i < nway; i++) {
203                         n = ceph_frag_make_child(t, frag->split_by, i);
204                         if (ceph_frag_contains_value(n, v)) {
205                                 t = n;
206                                 break;
207                         }
208                 }
209                 BUG_ON(i == nway);
210         }
211         dout("choose_frag(%x) = %x\n", v, t);
212
213         mutex_unlock(&ci->i_fragtree_mutex);
214         return t;
215 }
216
217 /*
218  * Process dirfrag (delegation) info from the mds.  Include leaf
219  * fragment in tree ONLY if ndist > 0.  Otherwise, only
220  * branches/splits are included in i_fragtree)
221  */
222 static int ceph_fill_dirfrag(struct inode *inode,
223                              struct ceph_mds_reply_dirfrag *dirinfo)
224 {
225         struct ceph_inode_info *ci = ceph_inode(inode);
226         struct ceph_inode_frag *frag;
227         u32 id = le32_to_cpu(dirinfo->frag);
228         int mds = le32_to_cpu(dirinfo->auth);
229         int ndist = le32_to_cpu(dirinfo->ndist);
230         int i;
231         int err = 0;
232
233         mutex_lock(&ci->i_fragtree_mutex);
234         if (ndist == 0) {
235                 /* no delegation info needed. */
236                 frag = __ceph_find_frag(ci, id);
237                 if (!frag)
238                         goto out;
239                 if (frag->split_by == 0) {
240                         /* tree leaf, remove */
241                         dout("fill_dirfrag removed %llx.%llx frag %x"
242                              " (no ref)\n", ceph_vinop(inode), id);
243                         rb_erase(&frag->node, &ci->i_fragtree);
244                         kfree(frag);
245                 } else {
246                         /* tree branch, keep and clear */
247                         dout("fill_dirfrag cleared %llx.%llx frag %x"
248                              " referral\n", ceph_vinop(inode), id);
249                         frag->mds = -1;
250                         frag->ndist = 0;
251                 }
252                 goto out;
253         }
254
255
256         /* find/add this frag to store mds delegation info */
257         frag = __get_or_create_frag(ci, id);
258         if (IS_ERR(frag)) {
259                 /* this is not the end of the world; we can continue
260                    with bad/inaccurate delegation info */
261                 pr_err("fill_dirfrag ENOMEM on mds ref %llx.%llx fg %x\n",
262                        ceph_vinop(inode), le32_to_cpu(dirinfo->frag));
263                 err = -ENOMEM;
264                 goto out;
265         }
266
267         frag->mds = mds;
268         frag->ndist = min_t(u32, ndist, CEPH_MAX_DIRFRAG_REP);
269         for (i = 0; i < frag->ndist; i++)
270                 frag->dist[i] = le32_to_cpu(dirinfo->dist[i]);
271         dout("fill_dirfrag %llx.%llx frag %x ndist=%d\n",
272              ceph_vinop(inode), frag->frag, frag->ndist);
273
274 out:
275         mutex_unlock(&ci->i_fragtree_mutex);
276         return err;
277 }
278
279
280 /*
281  * initialize a newly allocated inode.
282  */
283 struct inode *ceph_alloc_inode(struct super_block *sb)
284 {
285         struct ceph_inode_info *ci;
286         int i;
287
288         ci = kmem_cache_alloc(ceph_inode_cachep, GFP_NOFS);
289         if (!ci)
290                 return NULL;
291
292         dout("alloc_inode %p\n", &ci->vfs_inode);
293
294         ci->i_version = 0;
295         ci->i_time_warp_seq = 0;
296         ci->i_ceph_flags = 0;
297         ci->i_release_count = 0;
298         ci->i_symlink = NULL;
299
300         ci->i_fragtree = RB_ROOT;
301         mutex_init(&ci->i_fragtree_mutex);
302
303         ci->i_xattrs.blob = NULL;
304         ci->i_xattrs.prealloc_blob = NULL;
305         ci->i_xattrs.dirty = false;
306         ci->i_xattrs.index = RB_ROOT;
307         ci->i_xattrs.count = 0;
308         ci->i_xattrs.names_size = 0;
309         ci->i_xattrs.vals_size = 0;
310         ci->i_xattrs.version = 0;
311         ci->i_xattrs.index_version = 0;
312
313         ci->i_caps = RB_ROOT;
314         ci->i_auth_cap = NULL;
315         ci->i_dirty_caps = 0;
316         ci->i_flushing_caps = 0;
317         INIT_LIST_HEAD(&ci->i_dirty_item);
318         INIT_LIST_HEAD(&ci->i_flushing_item);
319         ci->i_cap_flush_seq = 0;
320         ci->i_cap_flush_last_tid = 0;
321         memset(&ci->i_cap_flush_tid, 0, sizeof(ci->i_cap_flush_tid));
322         init_waitqueue_head(&ci->i_cap_wq);
323         ci->i_hold_caps_min = 0;
324         ci->i_hold_caps_max = 0;
325         INIT_LIST_HEAD(&ci->i_cap_delay_list);
326         ci->i_cap_exporting_mds = 0;
327         ci->i_cap_exporting_mseq = 0;
328         ci->i_cap_exporting_issued = 0;
329         INIT_LIST_HEAD(&ci->i_cap_snaps);
330         ci->i_head_snapc = NULL;
331         ci->i_snap_caps = 0;
332
333         for (i = 0; i < CEPH_FILE_MODE_NUM; i++)
334                 ci->i_nr_by_mode[i] = 0;
335
336         ci->i_truncate_seq = 0;
337         ci->i_truncate_size = 0;
338         ci->i_truncate_pending = 0;
339
340         ci->i_max_size = 0;
341         ci->i_reported_size = 0;
342         ci->i_wanted_max_size = 0;
343         ci->i_requested_max_size = 0;
344
345         ci->i_pin_ref = 0;
346         ci->i_rd_ref = 0;
347         ci->i_rdcache_ref = 0;
348         ci->i_wr_ref = 0;
349         ci->i_wrbuffer_ref = 0;
350         ci->i_wrbuffer_ref_head = 0;
351         ci->i_shared_gen = 0;
352         ci->i_rdcache_gen = 0;
353         ci->i_rdcache_revoking = 0;
354
355         INIT_LIST_HEAD(&ci->i_unsafe_writes);
356         INIT_LIST_HEAD(&ci->i_unsafe_dirops);
357         spin_lock_init(&ci->i_unsafe_lock);
358
359         ci->i_snap_realm = NULL;
360         INIT_LIST_HEAD(&ci->i_snap_realm_item);
361         INIT_LIST_HEAD(&ci->i_snap_flush_item);
362
363         INIT_WORK(&ci->i_wb_work, ceph_writeback_work);
364         INIT_WORK(&ci->i_pg_inv_work, ceph_invalidate_work);
365
366         INIT_WORK(&ci->i_vmtruncate_work, ceph_vmtruncate_work);
367
368         return &ci->vfs_inode;
369 }
370
371 void ceph_destroy_inode(struct inode *inode)
372 {
373         struct ceph_inode_info *ci = ceph_inode(inode);
374         struct ceph_inode_frag *frag;
375         struct rb_node *n;
376
377         dout("destroy_inode %p ino %llx.%llx\n", inode, ceph_vinop(inode));
378
379         ceph_queue_caps_release(inode);
380
381         /*
382          * we may still have a snap_realm reference if there are stray
383          * caps in i_cap_exporting_issued or i_snap_caps.
384          */
385         if (ci->i_snap_realm) {
386                 struct ceph_mds_client *mdsc =
387                         &ceph_client(ci->vfs_inode.i_sb)->mdsc;
388                 struct ceph_snap_realm *realm = ci->i_snap_realm;
389
390                 dout(" dropping residual ref to snap realm %p\n", realm);
391                 spin_lock(&realm->inodes_with_caps_lock);
392                 list_del_init(&ci->i_snap_realm_item);
393                 spin_unlock(&realm->inodes_with_caps_lock);
394                 ceph_put_snap_realm(mdsc, realm);
395         }
396
397         kfree(ci->i_symlink);
398         while ((n = rb_first(&ci->i_fragtree)) != NULL) {
399                 frag = rb_entry(n, struct ceph_inode_frag, node);
400                 rb_erase(n, &ci->i_fragtree);
401                 kfree(frag);
402         }
403
404         __ceph_destroy_xattrs(ci);
405         if (ci->i_xattrs.blob)
406                 ceph_buffer_put(ci->i_xattrs.blob);
407         if (ci->i_xattrs.prealloc_blob)
408                 ceph_buffer_put(ci->i_xattrs.prealloc_blob);
409
410         kmem_cache_free(ceph_inode_cachep, ci);
411 }
412
413
414 /*
415  * Helpers to fill in size, ctime, mtime, and atime.  We have to be
416  * careful because either the client or MDS may have more up to date
417  * info, depending on which capabilities are held, and whether
418  * time_warp_seq or truncate_seq have increased.  (Ordinarily, mtime
419  * and size are monotonically increasing, except when utimes() or
420  * truncate() increments the corresponding _seq values.)
421  */
422 int ceph_fill_file_size(struct inode *inode, int issued,
423                         u32 truncate_seq, u64 truncate_size, u64 size)
424 {
425         struct ceph_inode_info *ci = ceph_inode(inode);
426         int queue_trunc = 0;
427
428         if (ceph_seq_cmp(truncate_seq, ci->i_truncate_seq) > 0 ||
429             (truncate_seq == ci->i_truncate_seq && size > inode->i_size)) {
430                 dout("size %lld -> %llu\n", inode->i_size, size);
431                 inode->i_size = size;
432                 inode->i_blocks = (size + (1<<9) - 1) >> 9;
433                 ci->i_reported_size = size;
434                 if (truncate_seq != ci->i_truncate_seq) {
435                         dout("truncate_seq %u -> %u\n",
436                              ci->i_truncate_seq, truncate_seq);
437                         ci->i_truncate_seq = truncate_seq;
438                         /*
439                          * If we hold relevant caps, or in the case where we're
440                          * not the only client referencing this file and we
441                          * don't hold those caps, then we need to check whether
442                          * the file is either opened or mmaped
443                          */
444                         if ((issued & (CEPH_CAP_FILE_CACHE|CEPH_CAP_FILE_RD|
445                                       CEPH_CAP_FILE_WR|CEPH_CAP_FILE_BUFFER|
446                                       CEPH_CAP_FILE_EXCL)) ||
447                             mapping_mapped(inode->i_mapping) ||
448                             __ceph_caps_file_wanted(ci)) {
449                                 ci->i_truncate_pending++;
450                                 queue_trunc = 1;
451                         }
452                 }
453         }
454         if (ceph_seq_cmp(truncate_seq, ci->i_truncate_seq) >= 0 &&
455             ci->i_truncate_size != truncate_size) {
456                 dout("truncate_size %lld -> %llu\n", ci->i_truncate_size,
457                      truncate_size);
458                 ci->i_truncate_size = truncate_size;
459         }
460         return queue_trunc;
461 }
462
463 void ceph_fill_file_time(struct inode *inode, int issued,
464                          u64 time_warp_seq, struct timespec *ctime,
465                          struct timespec *mtime, struct timespec *atime)
466 {
467         struct ceph_inode_info *ci = ceph_inode(inode);
468         int warn = 0;
469
470         if (issued & (CEPH_CAP_FILE_EXCL|
471                       CEPH_CAP_FILE_WR|
472                       CEPH_CAP_FILE_BUFFER)) {
473                 if (timespec_compare(ctime, &inode->i_ctime) > 0) {
474                         dout("ctime %ld.%09ld -> %ld.%09ld inc w/ cap\n",
475                              inode->i_ctime.tv_sec, inode->i_ctime.tv_nsec,
476                              ctime->tv_sec, ctime->tv_nsec);
477                         inode->i_ctime = *ctime;
478                 }
479                 if (ceph_seq_cmp(time_warp_seq, ci->i_time_warp_seq) > 0) {
480                         /* the MDS did a utimes() */
481                         dout("mtime %ld.%09ld -> %ld.%09ld "
482                              "tw %d -> %d\n",
483                              inode->i_mtime.tv_sec, inode->i_mtime.tv_nsec,
484                              mtime->tv_sec, mtime->tv_nsec,
485                              ci->i_time_warp_seq, (int)time_warp_seq);
486
487                         inode->i_mtime = *mtime;
488                         inode->i_atime = *atime;
489                         ci->i_time_warp_seq = time_warp_seq;
490                 } else if (time_warp_seq == ci->i_time_warp_seq) {
491                         /* nobody did utimes(); take the max */
492                         if (timespec_compare(mtime, &inode->i_mtime) > 0) {
493                                 dout("mtime %ld.%09ld -> %ld.%09ld inc\n",
494                                      inode->i_mtime.tv_sec,
495                                      inode->i_mtime.tv_nsec,
496                                      mtime->tv_sec, mtime->tv_nsec);
497                                 inode->i_mtime = *mtime;
498                         }
499                         if (timespec_compare(atime, &inode->i_atime) > 0) {
500                                 dout("atime %ld.%09ld -> %ld.%09ld inc\n",
501                                      inode->i_atime.tv_sec,
502                                      inode->i_atime.tv_nsec,
503                                      atime->tv_sec, atime->tv_nsec);
504                                 inode->i_atime = *atime;
505                         }
506                 } else if (issued & CEPH_CAP_FILE_EXCL) {
507                         /* we did a utimes(); ignore mds values */
508                 } else {
509                         warn = 1;
510                 }
511         } else {
512                 /* we have no write caps; whatever the MDS says is true */
513                 if (ceph_seq_cmp(time_warp_seq, ci->i_time_warp_seq) >= 0) {
514                         inode->i_ctime = *ctime;
515                         inode->i_mtime = *mtime;
516                         inode->i_atime = *atime;
517                         ci->i_time_warp_seq = time_warp_seq;
518                 } else {
519                         warn = 1;
520                 }
521         }
522         if (warn) /* time_warp_seq shouldn't go backwards */
523                 dout("%p mds time_warp_seq %llu < %u\n",
524                      inode, time_warp_seq, ci->i_time_warp_seq);
525 }
526
527 /*
528  * Populate an inode based on info from mds.  May be called on new or
529  * existing inodes.
530  */
531 static int fill_inode(struct inode *inode,
532                       struct ceph_mds_reply_info_in *iinfo,
533                       struct ceph_mds_reply_dirfrag *dirinfo,
534                       struct ceph_mds_session *session,
535                       unsigned long ttl_from, int cap_fmode,
536                       struct ceph_cap_reservation *caps_reservation)
537 {
538         struct ceph_mds_reply_inode *info = iinfo->in;
539         struct ceph_inode_info *ci = ceph_inode(inode);
540         int i;
541         int issued, implemented;
542         struct timespec mtime, atime, ctime;
543         u32 nsplits;
544         struct ceph_buffer *xattr_blob = NULL;
545         int err = 0;
546         int queue_trunc = 0;
547
548         dout("fill_inode %p ino %llx.%llx v %llu had %llu\n",
549              inode, ceph_vinop(inode), le64_to_cpu(info->version),
550              ci->i_version);
551
552         /*
553          * prealloc xattr data, if it looks like we'll need it.  only
554          * if len > 4 (meaning there are actually xattrs; the first 4
555          * bytes are the xattr count).
556          */
557         if (iinfo->xattr_len > 4) {
558                 xattr_blob = ceph_buffer_new(iinfo->xattr_len, GFP_NOFS);
559                 if (!xattr_blob)
560                         pr_err("fill_inode ENOMEM xattr blob %d bytes\n",
561                                iinfo->xattr_len);
562         }
563
564         spin_lock(&inode->i_lock);
565
566         /*
567          * provided version will be odd if inode value is projected,
568          * even if stable.  skip the update if we have a newer info
569          * (e.g., due to inode info racing form multiple MDSs), or if
570          * we are getting projected (unstable) inode info.
571          */
572         if (le64_to_cpu(info->version) > 0 &&
573             (ci->i_version & ~1) > le64_to_cpu(info->version))
574                 goto no_change;
575
576         issued = __ceph_caps_issued(ci, &implemented);
577         issued |= implemented | __ceph_caps_dirty(ci);
578
579         /* update inode */
580         ci->i_version = le64_to_cpu(info->version);
581         inode->i_version++;
582         inode->i_rdev = le32_to_cpu(info->rdev);
583
584         if ((issued & CEPH_CAP_AUTH_EXCL) == 0) {
585                 inode->i_mode = le32_to_cpu(info->mode);
586                 inode->i_uid = le32_to_cpu(info->uid);
587                 inode->i_gid = le32_to_cpu(info->gid);
588                 dout("%p mode 0%o uid.gid %d.%d\n", inode, inode->i_mode,
589                      inode->i_uid, inode->i_gid);
590         }
591
592         if ((issued & CEPH_CAP_LINK_EXCL) == 0)
593                 inode->i_nlink = le32_to_cpu(info->nlink);
594
595         /* be careful with mtime, atime, size */
596         ceph_decode_timespec(&atime, &info->atime);
597         ceph_decode_timespec(&mtime, &info->mtime);
598         ceph_decode_timespec(&ctime, &info->ctime);
599         queue_trunc = ceph_fill_file_size(inode, issued,
600                                           le32_to_cpu(info->truncate_seq),
601                                           le64_to_cpu(info->truncate_size),
602                                           le64_to_cpu(info->size));
603         ceph_fill_file_time(inode, issued,
604                             le32_to_cpu(info->time_warp_seq),
605                             &ctime, &mtime, &atime);
606
607         ci->i_max_size = le64_to_cpu(info->max_size);
608         ci->i_layout = info->layout;
609         inode->i_blkbits = fls(le32_to_cpu(info->layout.fl_stripe_unit)) - 1;
610
611         /* xattrs */
612         /* note that if i_xattrs.len <= 4, i_xattrs.data will still be NULL. */
613         if ((issued & CEPH_CAP_XATTR_EXCL) == 0 &&
614             le64_to_cpu(info->xattr_version) > ci->i_xattrs.version) {
615                 if (ci->i_xattrs.blob)
616                         ceph_buffer_put(ci->i_xattrs.blob);
617                 ci->i_xattrs.blob = xattr_blob;
618                 if (xattr_blob)
619                         memcpy(ci->i_xattrs.blob->vec.iov_base,
620                                iinfo->xattr_data, iinfo->xattr_len);
621                 ci->i_xattrs.version = le64_to_cpu(info->xattr_version);
622         }
623
624         inode->i_mapping->a_ops = &ceph_aops;
625         inode->i_mapping->backing_dev_info =
626                 &ceph_client(inode->i_sb)->backing_dev_info;
627
628         switch (inode->i_mode & S_IFMT) {
629         case S_IFIFO:
630         case S_IFBLK:
631         case S_IFCHR:
632         case S_IFSOCK:
633                 init_special_inode(inode, inode->i_mode, inode->i_rdev);
634                 inode->i_op = &ceph_file_iops;
635                 break;
636         case S_IFREG:
637                 inode->i_op = &ceph_file_iops;
638                 inode->i_fop = &ceph_file_fops;
639                 break;
640         case S_IFLNK:
641                 inode->i_op = &ceph_symlink_iops;
642                 if (!ci->i_symlink) {
643                         int symlen = iinfo->symlink_len;
644                         char *sym;
645
646                         BUG_ON(symlen != inode->i_size);
647                         spin_unlock(&inode->i_lock);
648
649                         err = -ENOMEM;
650                         sym = kmalloc(symlen+1, GFP_NOFS);
651                         if (!sym)
652                                 goto out;
653                         memcpy(sym, iinfo->symlink, symlen);
654                         sym[symlen] = 0;
655
656                         spin_lock(&inode->i_lock);
657                         if (!ci->i_symlink)
658                                 ci->i_symlink = sym;
659                         else
660                                 kfree(sym); /* lost a race */
661                 }
662                 break;
663         case S_IFDIR:
664                 inode->i_op = &ceph_dir_iops;
665                 inode->i_fop = &ceph_dir_fops;
666
667                 ci->i_files = le64_to_cpu(info->files);
668                 ci->i_subdirs = le64_to_cpu(info->subdirs);
669                 ci->i_rbytes = le64_to_cpu(info->rbytes);
670                 ci->i_rfiles = le64_to_cpu(info->rfiles);
671                 ci->i_rsubdirs = le64_to_cpu(info->rsubdirs);
672                 ceph_decode_timespec(&ci->i_rctime, &info->rctime);
673
674                 /* set dir completion flag? */
675                 if (ci->i_files == 0 && ci->i_subdirs == 0 &&
676                     ceph_snap(inode) == CEPH_NOSNAP &&
677                     (le32_to_cpu(info->cap.caps) & CEPH_CAP_FILE_SHARED)) {
678                         dout(" marking %p complete (empty)\n", inode);
679                         ci->i_ceph_flags |= CEPH_I_COMPLETE;
680                         ci->i_max_offset = 2;
681                 }
682
683                 /* it may be better to set st_size in getattr instead? */
684                 if (ceph_test_opt(ceph_client(inode->i_sb), RBYTES))
685                         inode->i_size = ci->i_rbytes;
686                 break;
687         default:
688                 pr_err("fill_inode %llx.%llx BAD mode 0%o\n",
689                        ceph_vinop(inode), inode->i_mode);
690         }
691
692 no_change:
693         spin_unlock(&inode->i_lock);
694
695         /* queue truncate if we saw i_size decrease */
696         if (queue_trunc)
697                 ceph_queue_vmtruncate(inode);
698
699         /* populate frag tree */
700         /* FIXME: move me up, if/when version reflects fragtree changes */
701         nsplits = le32_to_cpu(info->fragtree.nsplits);
702         mutex_lock(&ci->i_fragtree_mutex);
703         for (i = 0; i < nsplits; i++) {
704                 u32 id = le32_to_cpu(info->fragtree.splits[i].frag);
705                 struct ceph_inode_frag *frag = __get_or_create_frag(ci, id);
706
707                 if (IS_ERR(frag))
708                         continue;
709                 frag->split_by = le32_to_cpu(info->fragtree.splits[i].by);
710                 dout(" frag %x split by %d\n", frag->frag, frag->split_by);
711         }
712         mutex_unlock(&ci->i_fragtree_mutex);
713
714         /* were we issued a capability? */
715         if (info->cap.caps) {
716                 if (ceph_snap(inode) == CEPH_NOSNAP) {
717                         ceph_add_cap(inode, session,
718                                      le64_to_cpu(info->cap.cap_id),
719                                      cap_fmode,
720                                      le32_to_cpu(info->cap.caps),
721                                      le32_to_cpu(info->cap.wanted),
722                                      le32_to_cpu(info->cap.seq),
723                                      le32_to_cpu(info->cap.mseq),
724                                      le64_to_cpu(info->cap.realm),
725                                      info->cap.flags,
726                                      caps_reservation);
727                 } else {
728                         spin_lock(&inode->i_lock);
729                         dout(" %p got snap_caps %s\n", inode,
730                              ceph_cap_string(le32_to_cpu(info->cap.caps)));
731                         ci->i_snap_caps |= le32_to_cpu(info->cap.caps);
732                         if (cap_fmode >= 0)
733                                 __ceph_get_fmode(ci, cap_fmode);
734                         spin_unlock(&inode->i_lock);
735                 }
736         } else if (cap_fmode >= 0) {
737                 pr_warning("mds issued no caps on %llx.%llx\n",
738                            ceph_vinop(inode));
739                 __ceph_get_fmode(ci, cap_fmode);
740         }
741
742         /* update delegation info? */
743         if (dirinfo)
744                 ceph_fill_dirfrag(inode, dirinfo);
745
746         err = 0;
747
748 out:
749         if (xattr_blob)
750                 ceph_buffer_put(xattr_blob);
751         return err;
752 }
753
754 /*
755  * caller should hold session s_mutex.
756  */
757 static void update_dentry_lease(struct dentry *dentry,
758                                 struct ceph_mds_reply_lease *lease,
759                                 struct ceph_mds_session *session,
760                                 unsigned long from_time)
761 {
762         struct ceph_dentry_info *di = ceph_dentry(dentry);
763         long unsigned duration = le32_to_cpu(lease->duration_ms);
764         long unsigned ttl = from_time + (duration * HZ) / 1000;
765         long unsigned half_ttl = from_time + (duration * HZ / 2) / 1000;
766         struct inode *dir;
767
768         /* only track leases on regular dentries */
769         if (dentry->d_op != &ceph_dentry_ops)
770                 return;
771
772         spin_lock(&dentry->d_lock);
773         dout("update_dentry_lease %p mask %d duration %lu ms ttl %lu\n",
774              dentry, le16_to_cpu(lease->mask), duration, ttl);
775
776         /* make lease_rdcache_gen match directory */
777         dir = dentry->d_parent->d_inode;
778         di->lease_shared_gen = ceph_inode(dir)->i_shared_gen;
779
780         if (lease->mask == 0)
781                 goto out_unlock;
782
783         if (di->lease_gen == session->s_cap_gen &&
784             time_before(ttl, dentry->d_time))
785                 goto out_unlock;  /* we already have a newer lease. */
786
787         if (di->lease_session && di->lease_session != session)
788                 goto out_unlock;
789
790         ceph_dentry_lru_touch(dentry);
791
792         if (!di->lease_session)
793                 di->lease_session = ceph_get_mds_session(session);
794         di->lease_gen = session->s_cap_gen;
795         di->lease_seq = le32_to_cpu(lease->seq);
796         di->lease_renew_after = half_ttl;
797         di->lease_renew_from = 0;
798         dentry->d_time = ttl;
799 out_unlock:
800         spin_unlock(&dentry->d_lock);
801         return;
802 }
803
804 /*
805  * splice a dentry to an inode.
806  * caller must hold directory i_mutex for this to be safe.
807  *
808  * we will only rehash the resulting dentry if @prehash is
809  * true; @prehash will be set to false (for the benefit of
810  * the caller) if we fail.
811  */
812 static struct dentry *splice_dentry(struct dentry *dn, struct inode *in,
813                                     bool *prehash)
814 {
815         struct dentry *realdn;
816
817         /* dn must be unhashed */
818         if (!d_unhashed(dn))
819                 d_drop(dn);
820         realdn = d_materialise_unique(dn, in);
821         if (IS_ERR(realdn)) {
822                 pr_err("splice_dentry error %p inode %p ino %llx.%llx\n",
823                        dn, in, ceph_vinop(in));
824                 if (prehash)
825                         *prehash = false; /* don't rehash on error */
826                 dn = realdn; /* note realdn contains the error */
827                 goto out;
828         } else if (realdn) {
829                 dout("dn %p (%d) spliced with %p (%d) "
830                      "inode %p ino %llx.%llx\n",
831                      dn, atomic_read(&dn->d_count),
832                      realdn, atomic_read(&realdn->d_count),
833                      realdn->d_inode, ceph_vinop(realdn->d_inode));
834                 dput(dn);
835                 dn = realdn;
836         } else {
837                 BUG_ON(!ceph_dentry(dn));
838
839                 dout("dn %p attached to %p ino %llx.%llx\n",
840                      dn, dn->d_inode, ceph_vinop(dn->d_inode));
841         }
842         if ((!prehash || *prehash) && d_unhashed(dn))
843                 d_rehash(dn);
844 out:
845         return dn;
846 }
847
848 /*
849  * Set dentry's directory position based on the current dir's max, and
850  * order it in d_subdirs, so that dcache_readdir behaves.
851  */
852 static void ceph_set_dentry_offset(struct dentry *dn)
853 {
854         struct dentry *dir = dn->d_parent;
855         struct inode *inode = dn->d_parent->d_inode;
856         struct ceph_dentry_info *di;
857
858         BUG_ON(!inode);
859
860         di = ceph_dentry(dn);
861
862         spin_lock(&inode->i_lock);
863         di->offset = ceph_inode(inode)->i_max_offset++;
864         spin_unlock(&inode->i_lock);
865
866         spin_lock(&dcache_lock);
867         spin_lock(&dn->d_lock);
868         list_move_tail(&dir->d_subdirs, &dn->d_u.d_child);
869         dout("set_dentry_offset %p %lld (%p %p)\n", dn, di->offset,
870              dn->d_u.d_child.prev, dn->d_u.d_child.next);
871         spin_unlock(&dn->d_lock);
872         spin_unlock(&dcache_lock);
873 }
874
875 /*
876  * Incorporate results into the local cache.  This is either just
877  * one inode, or a directory, dentry, and possibly linked-to inode (e.g.,
878  * after a lookup).
879  *
880  * A reply may contain
881  *         a directory inode along with a dentry.
882  *  and/or a target inode
883  *
884  * Called with snap_rwsem (read).
885  */
886 int ceph_fill_trace(struct super_block *sb, struct ceph_mds_request *req,
887                     struct ceph_mds_session *session)
888 {
889         struct ceph_mds_reply_info_parsed *rinfo = &req->r_reply_info;
890         struct inode *in = NULL;
891         struct ceph_mds_reply_inode *ininfo;
892         struct ceph_vino vino;
893         struct ceph_client *client = ceph_sb_to_client(sb);
894         int i = 0;
895         int err = 0;
896
897         dout("fill_trace %p is_dentry %d is_target %d\n", req,
898              rinfo->head->is_dentry, rinfo->head->is_target);
899
900 #if 0
901         /*
902          * Debugging hook:
903          *
904          * If we resend completed ops to a recovering mds, we get no
905          * trace.  Since that is very rare, pretend this is the case
906          * to ensure the 'no trace' handlers in the callers behave.
907          *
908          * Fill in inodes unconditionally to avoid breaking cap
909          * invariants.
910          */
911         if (rinfo->head->op & CEPH_MDS_OP_WRITE) {
912                 pr_info("fill_trace faking empty trace on %lld %s\n",
913                         req->r_tid, ceph_mds_op_name(rinfo->head->op));
914                 if (rinfo->head->is_dentry) {
915                         rinfo->head->is_dentry = 0;
916                         err = fill_inode(req->r_locked_dir,
917                                          &rinfo->diri, rinfo->dirfrag,
918                                          session, req->r_request_started, -1);
919                 }
920                 if (rinfo->head->is_target) {
921                         rinfo->head->is_target = 0;
922                         ininfo = rinfo->targeti.in;
923                         vino.ino = le64_to_cpu(ininfo->ino);
924                         vino.snap = le64_to_cpu(ininfo->snapid);
925                         in = ceph_get_inode(sb, vino);
926                         err = fill_inode(in, &rinfo->targeti, NULL,
927                                          session, req->r_request_started,
928                                          req->r_fmode);
929                         iput(in);
930                 }
931         }
932 #endif
933
934         if (!rinfo->head->is_target && !rinfo->head->is_dentry) {
935                 dout("fill_trace reply is empty!\n");
936                 if (rinfo->head->result == 0 && req->r_locked_dir) {
937                         struct ceph_inode_info *ci =
938                                 ceph_inode(req->r_locked_dir);
939                         dout(" clearing %p complete (empty trace)\n",
940                              req->r_locked_dir);
941                         spin_lock(&req->r_locked_dir->i_lock);
942                         ci->i_ceph_flags &= ~CEPH_I_COMPLETE;
943                         ci->i_release_count++;
944                         spin_unlock(&req->r_locked_dir->i_lock);
945
946                         if (req->r_dentry)
947                                 ceph_invalidate_dentry_lease(req->r_dentry);
948                         if (req->r_old_dentry)
949                                 ceph_invalidate_dentry_lease(req->r_old_dentry);
950                 }
951                 return 0;
952         }
953
954         if (rinfo->head->is_dentry) {
955                 struct inode *dir = req->r_locked_dir;
956
957                 err = fill_inode(dir, &rinfo->diri, rinfo->dirfrag,
958                                  session, req->r_request_started, -1,
959                                  &req->r_caps_reservation);
960                 if (err < 0)
961                         return err;
962         }
963
964         /*
965          * ignore null lease/binding on snapdir ENOENT, or else we
966          * will have trouble splicing in the virtual snapdir later
967          */
968         if (rinfo->head->is_dentry && !req->r_aborted &&
969             (rinfo->head->is_target || strncmp(req->r_dentry->d_name.name,
970                                                client->mount_args->snapdir_name,
971                                                req->r_dentry->d_name.len))) {
972                 /*
973                  * lookup link rename   : null -> possibly existing inode
974                  * mknod symlink mkdir  : null -> new inode
975                  * unlink               : linked -> null
976                  */
977                 struct inode *dir = req->r_locked_dir;
978                 struct dentry *dn = req->r_dentry;
979                 bool have_dir_cap, have_lease;
980
981                 BUG_ON(!dn);
982                 BUG_ON(!dir);
983                 BUG_ON(dn->d_parent->d_inode != dir);
984                 BUG_ON(ceph_ino(dir) !=
985                        le64_to_cpu(rinfo->diri.in->ino));
986                 BUG_ON(ceph_snap(dir) !=
987                        le64_to_cpu(rinfo->diri.in->snapid));
988
989                 /* do we have a lease on the whole dir? */
990                 have_dir_cap =
991                         (le32_to_cpu(rinfo->diri.in->cap.caps) &
992                          CEPH_CAP_FILE_SHARED);
993
994                 /* do we have a dn lease? */
995                 have_lease = have_dir_cap ||
996                         (le16_to_cpu(rinfo->dlease->mask) &
997                          CEPH_LOCK_DN);
998
999                 if (!have_lease)
1000                         dout("fill_trace  no dentry lease or dir cap\n");
1001
1002                 /* rename? */
1003                 if (req->r_old_dentry && req->r_op == CEPH_MDS_OP_RENAME) {
1004                         dout(" src %p '%.*s' dst %p '%.*s'\n",
1005                              req->r_old_dentry,
1006                              req->r_old_dentry->d_name.len,
1007                              req->r_old_dentry->d_name.name,
1008                              dn, dn->d_name.len, dn->d_name.name);
1009                         dout("fill_trace doing d_move %p -> %p\n",
1010                              req->r_old_dentry, dn);
1011
1012                         /* d_move screws up d_subdirs order */
1013                         ceph_i_clear(dir, CEPH_I_COMPLETE);
1014
1015                         d_move(req->r_old_dentry, dn);
1016                         dout(" src %p '%.*s' dst %p '%.*s'\n",
1017                              req->r_old_dentry,
1018                              req->r_old_dentry->d_name.len,
1019                              req->r_old_dentry->d_name.name,
1020                              dn, dn->d_name.len, dn->d_name.name);
1021
1022                         /* ensure target dentry is invalidated, despite
1023                            rehashing bug in vfs_rename_dir */
1024                         ceph_invalidate_dentry_lease(dn);
1025
1026                         /* take overwritten dentry's readdir offset */
1027                         ceph_dentry(req->r_old_dentry)->offset =
1028                                 ceph_dentry(dn)->offset;
1029
1030                         dn = req->r_old_dentry;  /* use old_dentry */
1031                         in = dn->d_inode;
1032                 }
1033
1034                 /* null dentry? */
1035                 if (!rinfo->head->is_target) {
1036                         dout("fill_trace null dentry\n");
1037                         if (dn->d_inode) {
1038                                 dout("d_delete %p\n", dn);
1039                                 d_delete(dn);
1040                         } else {
1041                                 dout("d_instantiate %p NULL\n", dn);
1042                                 d_instantiate(dn, NULL);
1043                                 if (have_lease && d_unhashed(dn))
1044                                         d_rehash(dn);
1045                                 update_dentry_lease(dn, rinfo->dlease,
1046                                                     session,
1047                                                     req->r_request_started);
1048                         }
1049                         goto done;
1050                 }
1051
1052                 /* attach proper inode */
1053                 ininfo = rinfo->targeti.in;
1054                 vino.ino = le64_to_cpu(ininfo->ino);
1055                 vino.snap = le64_to_cpu(ininfo->snapid);
1056                 if (!dn->d_inode) {
1057                         in = ceph_get_inode(sb, vino);
1058                         if (IS_ERR(in)) {
1059                                 pr_err("fill_trace bad get_inode "
1060                                        "%llx.%llx\n", vino.ino, vino.snap);
1061                                 err = PTR_ERR(in);
1062                                 d_delete(dn);
1063                                 goto done;
1064                         }
1065                         dn = splice_dentry(dn, in, &have_lease);
1066                         if (IS_ERR(dn)) {
1067                                 err = PTR_ERR(dn);
1068                                 goto done;
1069                         }
1070                         req->r_dentry = dn;  /* may have spliced */
1071                         ceph_set_dentry_offset(dn);
1072                         igrab(in);
1073                 } else if (ceph_ino(in) == vino.ino &&
1074                            ceph_snap(in) == vino.snap) {
1075                         igrab(in);
1076                 } else {
1077                         dout(" %p links to %p %llx.%llx, not %llx.%llx\n",
1078                              dn, in, ceph_ino(in), ceph_snap(in),
1079                              vino.ino, vino.snap);
1080                         have_lease = false;
1081                         in = NULL;
1082                 }
1083
1084                 if (have_lease)
1085                         update_dentry_lease(dn, rinfo->dlease, session,
1086                                             req->r_request_started);
1087                 dout(" final dn %p\n", dn);
1088                 i++;
1089         } else if (req->r_op == CEPH_MDS_OP_LOOKUPSNAP ||
1090                    req->r_op == CEPH_MDS_OP_MKSNAP) {
1091                 struct dentry *dn = req->r_dentry;
1092
1093                 /* fill out a snapdir LOOKUPSNAP dentry */
1094                 BUG_ON(!dn);
1095                 BUG_ON(!req->r_locked_dir);
1096                 BUG_ON(ceph_snap(req->r_locked_dir) != CEPH_SNAPDIR);
1097                 ininfo = rinfo->targeti.in;
1098                 vino.ino = le64_to_cpu(ininfo->ino);
1099                 vino.snap = le64_to_cpu(ininfo->snapid);
1100                 in = ceph_get_inode(sb, vino);
1101                 if (IS_ERR(in)) {
1102                         pr_err("fill_inode get_inode badness %llx.%llx\n",
1103                                vino.ino, vino.snap);
1104                         err = PTR_ERR(in);
1105                         d_delete(dn);
1106                         goto done;
1107                 }
1108                 dout(" linking snapped dir %p to dn %p\n", in, dn);
1109                 dn = splice_dentry(dn, in, NULL);
1110                 if (IS_ERR(dn)) {
1111                         err = PTR_ERR(dn);
1112                         goto done;
1113                 }
1114                 ceph_set_dentry_offset(dn);
1115                 req->r_dentry = dn;  /* may have spliced */
1116                 igrab(in);
1117                 rinfo->head->is_dentry = 1;  /* fool notrace handlers */
1118         }
1119
1120         if (rinfo->head->is_target) {
1121                 vino.ino = le64_to_cpu(rinfo->targeti.in->ino);
1122                 vino.snap = le64_to_cpu(rinfo->targeti.in->snapid);
1123
1124                 if (in == NULL || ceph_ino(in) != vino.ino ||
1125                     ceph_snap(in) != vino.snap) {
1126                         in = ceph_get_inode(sb, vino);
1127                         if (IS_ERR(in)) {
1128                                 err = PTR_ERR(in);
1129                                 goto done;
1130                         }
1131                 }
1132                 req->r_target_inode = in;
1133
1134                 err = fill_inode(in,
1135                                  &rinfo->targeti, NULL,
1136                                  session, req->r_request_started,
1137                                  (le32_to_cpu(rinfo->head->result) == 0) ?
1138                                  req->r_fmode : -1,
1139                                  &req->r_caps_reservation);
1140                 if (err < 0) {
1141                         pr_err("fill_inode badness %p %llx.%llx\n",
1142                                in, ceph_vinop(in));
1143                         goto done;
1144                 }
1145         }
1146
1147 done:
1148         dout("fill_trace done err=%d\n", err);
1149         return err;
1150 }
1151
1152 /*
1153  * Prepopulate our cache with readdir results, leases, etc.
1154  */
1155 int ceph_readdir_prepopulate(struct ceph_mds_request *req,
1156                              struct ceph_mds_session *session)
1157 {
1158         struct dentry *parent = req->r_dentry;
1159         struct ceph_mds_reply_info_parsed *rinfo = &req->r_reply_info;
1160         struct qstr dname;
1161         struct dentry *dn;
1162         struct inode *in;
1163         int err = 0, i;
1164         struct inode *snapdir = NULL;
1165         struct ceph_mds_request_head *rhead = req->r_request->front.iov_base;
1166         u64 frag = le32_to_cpu(rhead->args.readdir.frag);
1167         struct ceph_dentry_info *di;
1168
1169         if (le32_to_cpu(rinfo->head->op) == CEPH_MDS_OP_LSSNAP) {
1170                 snapdir = ceph_get_snapdir(parent->d_inode);
1171                 parent = d_find_alias(snapdir);
1172                 dout("readdir_prepopulate %d items under SNAPDIR dn %p\n",
1173                      rinfo->dir_nr, parent);
1174         } else {
1175                 dout("readdir_prepopulate %d items under dn %p\n",
1176                      rinfo->dir_nr, parent);
1177                 if (rinfo->dir_dir)
1178                         ceph_fill_dirfrag(parent->d_inode, rinfo->dir_dir);
1179         }
1180
1181         for (i = 0; i < rinfo->dir_nr; i++) {
1182                 struct ceph_vino vino;
1183
1184                 dname.name = rinfo->dir_dname[i];
1185                 dname.len = rinfo->dir_dname_len[i];
1186                 dname.hash = full_name_hash(dname.name, dname.len);
1187
1188                 vino.ino = le64_to_cpu(rinfo->dir_in[i].in->ino);
1189                 vino.snap = le64_to_cpu(rinfo->dir_in[i].in->snapid);
1190
1191 retry_lookup:
1192                 dn = d_lookup(parent, &dname);
1193                 dout("d_lookup on parent=%p name=%.*s got %p\n",
1194                      parent, dname.len, dname.name, dn);
1195
1196                 if (!dn) {
1197                         dn = d_alloc(parent, &dname);
1198                         dout("d_alloc %p '%.*s' = %p\n", parent,
1199                              dname.len, dname.name, dn);
1200                         if (dn == NULL) {
1201                                 dout("d_alloc badness\n");
1202                                 err = -ENOMEM;
1203                                 goto out;
1204                         }
1205                         err = ceph_init_dentry(dn);
1206                         if (err < 0)
1207                                 goto out;
1208                 } else if (dn->d_inode &&
1209                            (ceph_ino(dn->d_inode) != vino.ino ||
1210                             ceph_snap(dn->d_inode) != vino.snap)) {
1211                         dout(" dn %p points to wrong inode %p\n",
1212                              dn, dn->d_inode);
1213                         d_delete(dn);
1214                         dput(dn);
1215                         goto retry_lookup;
1216                 } else {
1217                         /* reorder parent's d_subdirs */
1218                         spin_lock(&dcache_lock);
1219                         spin_lock(&dn->d_lock);
1220                         list_move(&dn->d_u.d_child, &parent->d_subdirs);
1221                         spin_unlock(&dn->d_lock);
1222                         spin_unlock(&dcache_lock);
1223                 }
1224
1225                 di = dn->d_fsdata;
1226                 di->offset = ceph_make_fpos(frag, i + req->r_readdir_offset);
1227
1228                 /* inode */
1229                 if (dn->d_inode) {
1230                         in = dn->d_inode;
1231                 } else {
1232                         in = ceph_get_inode(parent->d_sb, vino);
1233                         if (in == NULL) {
1234                                 dout("new_inode badness\n");
1235                                 d_delete(dn);
1236                                 dput(dn);
1237                                 err = -ENOMEM;
1238                                 goto out;
1239                         }
1240                         dn = splice_dentry(dn, in, NULL);
1241                 }
1242
1243                 if (fill_inode(in, &rinfo->dir_in[i], NULL, session,
1244                                req->r_request_started, -1,
1245                                &req->r_caps_reservation) < 0) {
1246                         pr_err("fill_inode badness on %p\n", in);
1247                         dput(dn);
1248                         continue;
1249                 }
1250                 update_dentry_lease(dn, rinfo->dir_dlease[i],
1251                                     req->r_session, req->r_request_started);
1252                 dput(dn);
1253         }
1254         req->r_did_prepopulate = true;
1255
1256 out:
1257         if (snapdir) {
1258                 iput(snapdir);
1259                 dput(parent);
1260         }
1261         dout("readdir_prepopulate done\n");
1262         return err;
1263 }
1264
1265 int ceph_inode_set_size(struct inode *inode, loff_t size)
1266 {
1267         struct ceph_inode_info *ci = ceph_inode(inode);
1268         int ret = 0;
1269
1270         spin_lock(&inode->i_lock);
1271         dout("set_size %p %llu -> %llu\n", inode, inode->i_size, size);
1272         inode->i_size = size;
1273         inode->i_blocks = (size + (1 << 9) - 1) >> 9;
1274
1275         /* tell the MDS if we are approaching max_size */
1276         if ((size << 1) >= ci->i_max_size &&
1277             (ci->i_reported_size << 1) < ci->i_max_size)
1278                 ret = 1;
1279
1280         spin_unlock(&inode->i_lock);
1281         return ret;
1282 }
1283
1284 /*
1285  * Write back inode data in a worker thread.  (This can't be done
1286  * in the message handler context.)
1287  */
1288 void ceph_queue_writeback(struct inode *inode)
1289 {
1290         if (queue_work(ceph_inode_to_client(inode)->wb_wq,
1291                        &ceph_inode(inode)->i_wb_work)) {
1292                 dout("ceph_queue_writeback %p\n", inode);
1293                 igrab(inode);
1294         } else {
1295                 dout("ceph_queue_writeback %p failed\n", inode);
1296         }
1297 }
1298
1299 static void ceph_writeback_work(struct work_struct *work)
1300 {
1301         struct ceph_inode_info *ci = container_of(work, struct ceph_inode_info,
1302                                                   i_wb_work);
1303         struct inode *inode = &ci->vfs_inode;
1304
1305         dout("writeback %p\n", inode);
1306         filemap_fdatawrite(&inode->i_data);
1307         iput(inode);
1308 }
1309
1310 /*
1311  * queue an async invalidation
1312  */
1313 void ceph_queue_invalidate(struct inode *inode)
1314 {
1315         if (queue_work(ceph_inode_to_client(inode)->pg_inv_wq,
1316                        &ceph_inode(inode)->i_pg_inv_work)) {
1317                 dout("ceph_queue_invalidate %p\n", inode);
1318                 igrab(inode);
1319         } else {
1320                 dout("ceph_queue_invalidate %p failed\n", inode);
1321         }
1322 }
1323
1324 /*
1325  * invalidate any pages that are not dirty or under writeback.  this
1326  * includes pages that are clean and mapped.
1327  */
1328 static void ceph_invalidate_nondirty_pages(struct address_space *mapping)
1329 {
1330         struct pagevec pvec;
1331         pgoff_t next = 0;
1332         int i;
1333
1334         pagevec_init(&pvec, 0);
1335         while (pagevec_lookup(&pvec, mapping, next, PAGEVEC_SIZE)) {
1336                 for (i = 0; i < pagevec_count(&pvec); i++) {
1337                         struct page *page = pvec.pages[i];
1338                         pgoff_t index;
1339                         int skip_page =
1340                                 (PageDirty(page) || PageWriteback(page));
1341
1342                         if (!skip_page)
1343                                 skip_page = !trylock_page(page);
1344
1345                         /*
1346                          * We really shouldn't be looking at the ->index of an
1347                          * unlocked page.  But we're not allowed to lock these
1348                          * pages.  So we rely upon nobody altering the ->index
1349                          * of this (pinned-by-us) page.
1350                          */
1351                         index = page->index;
1352                         if (index > next)
1353                                 next = index;
1354                         next++;
1355
1356                         if (skip_page)
1357                                 continue;
1358
1359                         generic_error_remove_page(mapping, page);
1360                         unlock_page(page);
1361                 }
1362                 pagevec_release(&pvec);
1363                 cond_resched();
1364         }
1365 }
1366
1367 /*
1368  * Invalidate inode pages in a worker thread.  (This can't be done
1369  * in the message handler context.)
1370  */
1371 static void ceph_invalidate_work(struct work_struct *work)
1372 {
1373         struct ceph_inode_info *ci = container_of(work, struct ceph_inode_info,
1374                                                   i_pg_inv_work);
1375         struct inode *inode = &ci->vfs_inode;
1376         u32 orig_gen;
1377         int check = 0;
1378
1379         spin_lock(&inode->i_lock);
1380         dout("invalidate_pages %p gen %d revoking %d\n", inode,
1381              ci->i_rdcache_gen, ci->i_rdcache_revoking);
1382         if (ci->i_rdcache_gen == 0 ||
1383             ci->i_rdcache_revoking != ci->i_rdcache_gen) {
1384                 BUG_ON(ci->i_rdcache_revoking > ci->i_rdcache_gen);
1385                 /* nevermind! */
1386                 ci->i_rdcache_revoking = 0;
1387                 spin_unlock(&inode->i_lock);
1388                 goto out;
1389         }
1390         orig_gen = ci->i_rdcache_gen;
1391         spin_unlock(&inode->i_lock);
1392
1393         ceph_invalidate_nondirty_pages(inode->i_mapping);
1394
1395         spin_lock(&inode->i_lock);
1396         if (orig_gen == ci->i_rdcache_gen) {
1397                 dout("invalidate_pages %p gen %d successful\n", inode,
1398                      ci->i_rdcache_gen);
1399                 ci->i_rdcache_gen = 0;
1400                 ci->i_rdcache_revoking = 0;
1401                 check = 1;
1402         } else {
1403                 dout("invalidate_pages %p gen %d raced, gen now %d\n",
1404                      inode, orig_gen, ci->i_rdcache_gen);
1405         }
1406         spin_unlock(&inode->i_lock);
1407
1408         if (check)
1409                 ceph_check_caps(ci, 0, NULL);
1410 out:
1411         iput(inode);
1412 }
1413
1414
1415 /*
1416  * called by trunc_wq; take i_mutex ourselves
1417  *
1418  * We also truncate in a separate thread as well.
1419  */
1420 static void ceph_vmtruncate_work(struct work_struct *work)
1421 {
1422         struct ceph_inode_info *ci = container_of(work, struct ceph_inode_info,
1423                                                   i_vmtruncate_work);
1424         struct inode *inode = &ci->vfs_inode;
1425
1426         dout("vmtruncate_work %p\n", inode);
1427         mutex_lock(&inode->i_mutex);
1428         __ceph_do_pending_vmtruncate(inode);
1429         mutex_unlock(&inode->i_mutex);
1430         iput(inode);
1431 }
1432
1433 /*
1434  * Queue an async vmtruncate.  If we fail to queue work, we will handle
1435  * the truncation the next time we call __ceph_do_pending_vmtruncate.
1436  */
1437 void ceph_queue_vmtruncate(struct inode *inode)
1438 {
1439         struct ceph_inode_info *ci = ceph_inode(inode);
1440
1441         if (queue_work(ceph_client(inode->i_sb)->trunc_wq,
1442                        &ci->i_vmtruncate_work)) {
1443                 dout("ceph_queue_vmtruncate %p\n", inode);
1444                 igrab(inode);
1445         } else {
1446                 dout("ceph_queue_vmtruncate %p failed, pending=%d\n",
1447                      inode, ci->i_truncate_pending);
1448         }
1449 }
1450
1451 /*
1452  * called with i_mutex held.
1453  *
1454  * Make sure any pending truncation is applied before doing anything
1455  * that may depend on it.
1456  */
1457 void __ceph_do_pending_vmtruncate(struct inode *inode)
1458 {
1459         struct ceph_inode_info *ci = ceph_inode(inode);
1460         u64 to;
1461         int wrbuffer_refs, wake = 0;
1462
1463 retry:
1464         spin_lock(&inode->i_lock);
1465         if (ci->i_truncate_pending == 0) {
1466                 dout("__do_pending_vmtruncate %p none pending\n", inode);
1467                 spin_unlock(&inode->i_lock);
1468                 return;
1469         }
1470
1471         /*
1472          * make sure any dirty snapped pages are flushed before we
1473          * possibly truncate them.. so write AND block!
1474          */
1475         if (ci->i_wrbuffer_ref_head < ci->i_wrbuffer_ref) {
1476                 dout("__do_pending_vmtruncate %p flushing snaps first\n",
1477                      inode);
1478                 spin_unlock(&inode->i_lock);
1479                 filemap_write_and_wait_range(&inode->i_data, 0,
1480                                              inode->i_sb->s_maxbytes);
1481                 goto retry;
1482         }
1483
1484         to = ci->i_truncate_size;
1485         wrbuffer_refs = ci->i_wrbuffer_ref;
1486         dout("__do_pending_vmtruncate %p (%d) to %lld\n", inode,
1487              ci->i_truncate_pending, to);
1488         spin_unlock(&inode->i_lock);
1489
1490         truncate_inode_pages(inode->i_mapping, to);
1491
1492         spin_lock(&inode->i_lock);
1493         ci->i_truncate_pending--;
1494         if (ci->i_truncate_pending == 0)
1495                 wake = 1;
1496         spin_unlock(&inode->i_lock);
1497
1498         if (wrbuffer_refs == 0)
1499                 ceph_check_caps(ci, CHECK_CAPS_AUTHONLY, NULL);
1500         if (wake)
1501                 wake_up(&ci->i_cap_wq);
1502 }
1503
1504
1505 /*
1506  * symlinks
1507  */
1508 static void *ceph_sym_follow_link(struct dentry *dentry, struct nameidata *nd)
1509 {
1510         struct ceph_inode_info *ci = ceph_inode(dentry->d_inode);
1511         nd_set_link(nd, ci->i_symlink);
1512         return NULL;
1513 }
1514
1515 static const struct inode_operations ceph_symlink_iops = {
1516         .readlink = generic_readlink,
1517         .follow_link = ceph_sym_follow_link,
1518 };
1519
1520 /*
1521  * setattr
1522  */
1523 int ceph_setattr(struct dentry *dentry, struct iattr *attr)
1524 {
1525         struct inode *inode = dentry->d_inode;
1526         struct ceph_inode_info *ci = ceph_inode(inode);
1527         struct inode *parent_inode = dentry->d_parent->d_inode;
1528         const unsigned int ia_valid = attr->ia_valid;
1529         struct ceph_mds_request *req;
1530         struct ceph_mds_client *mdsc = &ceph_client(dentry->d_sb)->mdsc;
1531         int issued;
1532         int release = 0, dirtied = 0;
1533         int mask = 0;
1534         int err = 0;
1535
1536         if (ceph_snap(inode) != CEPH_NOSNAP)
1537                 return -EROFS;
1538
1539         __ceph_do_pending_vmtruncate(inode);
1540
1541         err = inode_change_ok(inode, attr);
1542         if (err != 0)
1543                 return err;
1544
1545         req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_SETATTR,
1546                                        USE_AUTH_MDS);
1547         if (IS_ERR(req))
1548                 return PTR_ERR(req);
1549
1550         spin_lock(&inode->i_lock);
1551         issued = __ceph_caps_issued(ci, NULL);
1552         dout("setattr %p issued %s\n", inode, ceph_cap_string(issued));
1553
1554         if (ia_valid & ATTR_UID) {
1555                 dout("setattr %p uid %d -> %d\n", inode,
1556                      inode->i_uid, attr->ia_uid);
1557                 if (issued & CEPH_CAP_AUTH_EXCL) {
1558                         inode->i_uid = attr->ia_uid;
1559                         dirtied |= CEPH_CAP_AUTH_EXCL;
1560                 } else if ((issued & CEPH_CAP_AUTH_SHARED) == 0 ||
1561                            attr->ia_uid != inode->i_uid) {
1562                         req->r_args.setattr.uid = cpu_to_le32(attr->ia_uid);
1563                         mask |= CEPH_SETATTR_UID;
1564                         release |= CEPH_CAP_AUTH_SHARED;
1565                 }
1566         }
1567         if (ia_valid & ATTR_GID) {
1568                 dout("setattr %p gid %d -> %d\n", inode,
1569                      inode->i_gid, attr->ia_gid);
1570                 if (issued & CEPH_CAP_AUTH_EXCL) {
1571                         inode->i_gid = attr->ia_gid;
1572                         dirtied |= CEPH_CAP_AUTH_EXCL;
1573                 } else if ((issued & CEPH_CAP_AUTH_SHARED) == 0 ||
1574                            attr->ia_gid != inode->i_gid) {
1575                         req->r_args.setattr.gid = cpu_to_le32(attr->ia_gid);
1576                         mask |= CEPH_SETATTR_GID;
1577                         release |= CEPH_CAP_AUTH_SHARED;
1578                 }
1579         }
1580         if (ia_valid & ATTR_MODE) {
1581                 dout("setattr %p mode 0%o -> 0%o\n", inode, inode->i_mode,
1582                      attr->ia_mode);
1583                 if (issued & CEPH_CAP_AUTH_EXCL) {
1584                         inode->i_mode = attr->ia_mode;
1585                         dirtied |= CEPH_CAP_AUTH_EXCL;
1586                 } else if ((issued & CEPH_CAP_AUTH_SHARED) == 0 ||
1587                            attr->ia_mode != inode->i_mode) {
1588                         req->r_args.setattr.mode = cpu_to_le32(attr->ia_mode);
1589                         mask |= CEPH_SETATTR_MODE;
1590                         release |= CEPH_CAP_AUTH_SHARED;
1591                 }
1592         }
1593
1594         if (ia_valid & ATTR_ATIME) {
1595                 dout("setattr %p atime %ld.%ld -> %ld.%ld\n", inode,
1596                      inode->i_atime.tv_sec, inode->i_atime.tv_nsec,
1597                      attr->ia_atime.tv_sec, attr->ia_atime.tv_nsec);
1598                 if (issued & CEPH_CAP_FILE_EXCL) {
1599                         ci->i_time_warp_seq++;
1600                         inode->i_atime = attr->ia_atime;
1601                         dirtied |= CEPH_CAP_FILE_EXCL;
1602                 } else if ((issued & CEPH_CAP_FILE_WR) &&
1603                            timespec_compare(&inode->i_atime,
1604                                             &attr->ia_atime) < 0) {
1605                         inode->i_atime = attr->ia_atime;
1606                         dirtied |= CEPH_CAP_FILE_WR;
1607                 } else if ((issued & CEPH_CAP_FILE_SHARED) == 0 ||
1608                            !timespec_equal(&inode->i_atime, &attr->ia_atime)) {
1609                         ceph_encode_timespec(&req->r_args.setattr.atime,
1610                                              &attr->ia_atime);
1611                         mask |= CEPH_SETATTR_ATIME;
1612                         release |= CEPH_CAP_FILE_CACHE | CEPH_CAP_FILE_RD |
1613                                 CEPH_CAP_FILE_WR;
1614                 }
1615         }
1616         if (ia_valid & ATTR_MTIME) {
1617                 dout("setattr %p mtime %ld.%ld -> %ld.%ld\n", inode,
1618                      inode->i_mtime.tv_sec, inode->i_mtime.tv_nsec,
1619                      attr->ia_mtime.tv_sec, attr->ia_mtime.tv_nsec);
1620                 if (issued & CEPH_CAP_FILE_EXCL) {
1621                         ci->i_time_warp_seq++;
1622                         inode->i_mtime = attr->ia_mtime;
1623                         dirtied |= CEPH_CAP_FILE_EXCL;
1624                 } else if ((issued & CEPH_CAP_FILE_WR) &&
1625                            timespec_compare(&inode->i_mtime,
1626                                             &attr->ia_mtime) < 0) {
1627                         inode->i_mtime = attr->ia_mtime;
1628                         dirtied |= CEPH_CAP_FILE_WR;
1629                 } else if ((issued & CEPH_CAP_FILE_SHARED) == 0 ||
1630                            !timespec_equal(&inode->i_mtime, &attr->ia_mtime)) {
1631                         ceph_encode_timespec(&req->r_args.setattr.mtime,
1632                                              &attr->ia_mtime);
1633                         mask |= CEPH_SETATTR_MTIME;
1634                         release |= CEPH_CAP_FILE_SHARED | CEPH_CAP_FILE_RD |
1635                                 CEPH_CAP_FILE_WR;
1636                 }
1637         }
1638         if (ia_valid & ATTR_SIZE) {
1639                 dout("setattr %p size %lld -> %lld\n", inode,
1640                      inode->i_size, attr->ia_size);
1641                 if (attr->ia_size > inode->i_sb->s_maxbytes) {
1642                         err = -EINVAL;
1643                         goto out;
1644                 }
1645                 if ((issued & CEPH_CAP_FILE_EXCL) &&
1646                     attr->ia_size > inode->i_size) {
1647                         inode->i_size = attr->ia_size;
1648                         inode->i_blocks =
1649                                 (attr->ia_size + (1 << 9) - 1) >> 9;
1650                         inode->i_ctime = attr->ia_ctime;
1651                         ci->i_reported_size = attr->ia_size;
1652                         dirtied |= CEPH_CAP_FILE_EXCL;
1653                 } else if ((issued & CEPH_CAP_FILE_SHARED) == 0 ||
1654                            attr->ia_size != inode->i_size) {
1655                         req->r_args.setattr.size = cpu_to_le64(attr->ia_size);
1656                         req->r_args.setattr.old_size =
1657                                 cpu_to_le64(inode->i_size);
1658                         mask |= CEPH_SETATTR_SIZE;
1659                         release |= CEPH_CAP_FILE_SHARED | CEPH_CAP_FILE_RD |
1660                                 CEPH_CAP_FILE_WR;
1661                 }
1662         }
1663
1664         /* these do nothing */
1665         if (ia_valid & ATTR_CTIME) {
1666                 bool only = (ia_valid & (ATTR_SIZE|ATTR_MTIME|ATTR_ATIME|
1667                                          ATTR_MODE|ATTR_UID|ATTR_GID)) == 0;
1668                 dout("setattr %p ctime %ld.%ld -> %ld.%ld (%s)\n", inode,
1669                      inode->i_ctime.tv_sec, inode->i_ctime.tv_nsec,
1670                      attr->ia_ctime.tv_sec, attr->ia_ctime.tv_nsec,
1671                      only ? "ctime only" : "ignored");
1672                 inode->i_ctime = attr->ia_ctime;
1673                 if (only) {
1674                         /*
1675                          * if kernel wants to dirty ctime but nothing else,
1676                          * we need to choose a cap to dirty under, or do
1677                          * a almost-no-op setattr
1678                          */
1679                         if (issued & CEPH_CAP_AUTH_EXCL)
1680                                 dirtied |= CEPH_CAP_AUTH_EXCL;
1681                         else if (issued & CEPH_CAP_FILE_EXCL)
1682                                 dirtied |= CEPH_CAP_FILE_EXCL;
1683                         else if (issued & CEPH_CAP_XATTR_EXCL)
1684                                 dirtied |= CEPH_CAP_XATTR_EXCL;
1685                         else
1686                                 mask |= CEPH_SETATTR_CTIME;
1687                 }
1688         }
1689         if (ia_valid & ATTR_FILE)
1690                 dout("setattr %p ATTR_FILE ... hrm!\n", inode);
1691
1692         if (dirtied) {
1693                 __ceph_mark_dirty_caps(ci, dirtied);
1694                 inode->i_ctime = CURRENT_TIME;
1695         }
1696
1697         release &= issued;
1698         spin_unlock(&inode->i_lock);
1699
1700         if (mask) {
1701                 req->r_inode = igrab(inode);
1702                 req->r_inode_drop = release;
1703                 req->r_args.setattr.mask = cpu_to_le32(mask);
1704                 req->r_num_caps = 1;
1705                 err = ceph_mdsc_do_request(mdsc, parent_inode, req);
1706         }
1707         dout("setattr %p result=%d (%s locally, %d remote)\n", inode, err,
1708              ceph_cap_string(dirtied), mask);
1709
1710         ceph_mdsc_put_request(req);
1711         __ceph_do_pending_vmtruncate(inode);
1712         return err;
1713 out:
1714         spin_unlock(&inode->i_lock);
1715         ceph_mdsc_put_request(req);
1716         return err;
1717 }
1718
1719 /*
1720  * Verify that we have a lease on the given mask.  If not,
1721  * do a getattr against an mds.
1722  */
1723 int ceph_do_getattr(struct inode *inode, int mask)
1724 {
1725         struct ceph_client *client = ceph_sb_to_client(inode->i_sb);
1726         struct ceph_mds_client *mdsc = &client->mdsc;
1727         struct ceph_mds_request *req;
1728         int err;
1729
1730         if (ceph_snap(inode) == CEPH_SNAPDIR) {
1731                 dout("do_getattr inode %p SNAPDIR\n", inode);
1732                 return 0;
1733         }
1734
1735         dout("do_getattr inode %p mask %s\n", inode, ceph_cap_string(mask));
1736         if (ceph_caps_issued_mask(ceph_inode(inode), mask, 1))
1737                 return 0;
1738
1739         req = ceph_mdsc_create_request(mdsc, CEPH_MDS_OP_GETATTR, USE_ANY_MDS);
1740         if (IS_ERR(req))
1741                 return PTR_ERR(req);
1742         req->r_inode = igrab(inode);
1743         req->r_num_caps = 1;
1744         req->r_args.getattr.mask = cpu_to_le32(mask);
1745         err = ceph_mdsc_do_request(mdsc, NULL, req);
1746         ceph_mdsc_put_request(req);
1747         dout("do_getattr result=%d\n", err);
1748         return err;
1749 }
1750
1751
1752 /*
1753  * Check inode permissions.  We verify we have a valid value for
1754  * the AUTH cap, then call the generic handler.
1755  */
1756 int ceph_permission(struct inode *inode, int mask)
1757 {
1758         int err = ceph_do_getattr(inode, CEPH_CAP_AUTH_SHARED);
1759
1760         if (!err)
1761                 err = generic_permission(inode, mask, NULL);
1762         return err;
1763 }
1764
1765 /*
1766  * Get all attributes.  Hopefully somedata we'll have a statlite()
1767  * and can limit the fields we require to be accurate.
1768  */
1769 int ceph_getattr(struct vfsmount *mnt, struct dentry *dentry,
1770                  struct kstat *stat)
1771 {
1772         struct inode *inode = dentry->d_inode;
1773         struct ceph_inode_info *ci = ceph_inode(inode);
1774         int err;
1775
1776         err = ceph_do_getattr(inode, CEPH_STAT_CAP_INODE_ALL);
1777         if (!err) {
1778                 generic_fillattr(inode, stat);
1779                 stat->ino = inode->i_ino;
1780                 if (ceph_snap(inode) != CEPH_NOSNAP)
1781                         stat->dev = ceph_snap(inode);
1782                 else
1783                         stat->dev = 0;
1784                 if (S_ISDIR(inode->i_mode)) {
1785                         stat->size = ci->i_rbytes;
1786                         stat->blocks = 0;
1787                         stat->blksize = 65536;
1788                 }
1789         }
1790         return err;
1791 }