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LU-11971 utils: Send file creation time to clients
[fs/lustre-release.git] / lustre / osd-ldiskfs / osd_handler.c
1 /*
2  * GPL HEADER START
3  *
4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License version 2 only,
8  * as published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful, but
11  * WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13  * General Public License version 2 for more details (a copy is included
14  * in the LICENSE file that accompanied this code).
15  *
16  * You should have received a copy of the GNU General Public License
17  * version 2 along with this program; If not, see
18  * http://www.gnu.org/licenses/gpl-2.0.html
19  *
20  * GPL HEADER END
21  */
22 /*
23  * Copyright (c) 2007, 2010, Oracle and/or its affiliates. All rights reserved.
24  * Use is subject to license terms.
25  *
26  * Copyright (c) 2011, 2017, Intel Corporation.
27  */
28 /*
29  * This file is part of Lustre, http://www.lustre.org/
30  * Lustre is a trademark of Sun Microsystems, Inc.
31  *
32  * lustre/osd/osd_handler.c
33  *
34  * Top-level entry points into osd module
35  *
36  * Author: Nikita Danilov <nikita@clusterfs.com>
37  *         Pravin Shelar <pravin.shelar@sun.com> : Added fid in dirent
38  */
39
40 #define DEBUG_SUBSYSTEM S_OSD
41
42 #include <linux/kallsyms.h>
43 #include <linux/module.h>
44 #include <linux/user_namespace.h>
45 #include <linux/uidgid.h>
46
47 /* prerequisite for linux/xattr.h */
48 #include <linux/types.h>
49 /* prerequisite for linux/xattr.h */
50 #include <linux/fs.h>
51 /* XATTR_{REPLACE,CREATE} */
52 #include <linux/xattr.h>
53
54 #include <ldiskfs/ldiskfs.h>
55 #include <ldiskfs/xattr.h>
56 #include <ldiskfs/ldiskfs_extents.h>
57 #undef ENTRY
58 /*
59  * struct OBD_{ALLOC,FREE}*()
60  * OBD_FAIL_CHECK
61  */
62 #include <obd_support.h>
63 /* struct ptlrpc_thread */
64 #include <lustre_net.h>
65 #include <lustre_fid.h>
66 /* process_config */
67 #include <uapi/linux/lustre/lustre_param.h>
68
69 #include "osd_internal.h"
70 #include "osd_dynlocks.h"
71
72 /* llo_* api support */
73 #include <md_object.h>
74 #include <lustre_quota.h>
75
76 #include <lustre_linkea.h>
77
78 /* Maximum EA size is limited by LNET_MTU for remote objects */
79 #define OSD_MAX_EA_SIZE 1048364
80
81 int ldiskfs_pdo = 1;
82 module_param(ldiskfs_pdo, int, 0644);
83 MODULE_PARM_DESC(ldiskfs_pdo, "ldiskfs with parallel directory operations");
84
85 int ldiskfs_track_declares_assert;
86 module_param(ldiskfs_track_declares_assert, int, 0644);
87 MODULE_PARM_DESC(ldiskfs_track_declares_assert, "LBUG during tracking of declares");
88
89 /* Slab to allocate dynlocks */
90 struct kmem_cache *dynlock_cachep;
91
92 /* Slab to allocate osd_it_ea */
93 struct kmem_cache *osd_itea_cachep;
94
95 static struct lu_kmem_descr ldiskfs_caches[] = {
96         {
97                 .ckd_cache = &dynlock_cachep,
98                 .ckd_name  = "dynlock_cache",
99                 .ckd_size  = sizeof(struct dynlock_handle)
100         },
101         {
102                 .ckd_cache = &osd_itea_cachep,
103                 .ckd_name  = "osd_itea_cache",
104                 .ckd_size  = sizeof(struct osd_it_ea)
105         },
106         {
107                 .ckd_cache = NULL
108         }
109 };
110
111 static const char dot[] = ".";
112 static const char dotdot[] = "..";
113
114 static const struct lu_object_operations      osd_lu_obj_ops;
115 static const struct dt_object_operations      osd_obj_ops;
116 static const struct dt_object_operations      osd_obj_otable_it_ops;
117 static const struct dt_index_operations       osd_index_iam_ops;
118 static const struct dt_index_operations       osd_index_ea_ops;
119
120 static int osd_remote_fid(const struct lu_env *env, struct osd_device *osd,
121                           const struct lu_fid *fid);
122 static int osd_process_scheduled_agent_removals(const struct lu_env *env,
123                                                 struct osd_device *osd);
124
125 int osd_trans_declare_op2rb[] = {
126         [OSD_OT_ATTR_SET]       = OSD_OT_ATTR_SET,
127         [OSD_OT_PUNCH]          = OSD_OT_MAX,
128         [OSD_OT_XATTR_SET]      = OSD_OT_XATTR_SET,
129         [OSD_OT_CREATE]         = OSD_OT_DESTROY,
130         [OSD_OT_DESTROY]        = OSD_OT_CREATE,
131         [OSD_OT_REF_ADD]        = OSD_OT_REF_DEL,
132         [OSD_OT_REF_DEL]        = OSD_OT_REF_ADD,
133         [OSD_OT_WRITE]          = OSD_OT_WRITE,
134         [OSD_OT_INSERT]         = OSD_OT_DELETE,
135         [OSD_OT_DELETE]         = OSD_OT_INSERT,
136         [OSD_OT_QUOTA]          = OSD_OT_MAX,
137 };
138
139 static int osd_has_index(const struct osd_object *obj)
140 {
141         return obj->oo_dt.do_index_ops != NULL;
142 }
143
144 static int osd_object_invariant(const struct lu_object *l)
145 {
146         return osd_invariant(osd_obj(l));
147 }
148
149 /*
150  * Concurrency: doesn't matter
151  */
152 static int osd_is_write_locked(const struct lu_env *env, struct osd_object *o)
153 {
154         struct osd_thread_info *oti = osd_oti_get(env);
155
156         return oti->oti_w_locks > 0 && o->oo_owner == env;
157 }
158
159 /*
160  * Concurrency: doesn't access mutable data
161  */
162 static int osd_root_get(const struct lu_env *env,
163                         struct dt_device *dev, struct lu_fid *f)
164 {
165         lu_local_obj_fid(f, OSD_FS_ROOT_OID);
166         return 0;
167 }
168
169 /*
170  * the following set of functions are used to maintain per-thread
171  * cache of FID->ino mapping. this mechanism is needed to resolve
172  * FID to inode at dt_insert() which in turn stores ino in the
173  * directory entries to keep ldiskfs compatible with ext[34].
174  * due to locking-originated restrictions we can't lookup ino
175  * using LU cache (deadlock is possible). lookup using OI is quite
176  * expensive. so instead we maintain this cache and methods like
177  * dt_create() fill it. so in the majority of cases dt_insert() is
178  * able to find needed mapping in lockless manner.
179  */
180 static struct osd_idmap_cache *
181 osd_idc_find(const struct lu_env *env, struct osd_device *osd,
182              const struct lu_fid *fid)
183 {
184         struct osd_thread_info *oti = osd_oti_get(env);
185         struct osd_idmap_cache *idc = oti->oti_ins_cache;
186         int i;
187
188         for (i = 0; i < oti->oti_ins_cache_used; i++) {
189                 if (!lu_fid_eq(&idc[i].oic_fid, fid))
190                         continue;
191                 if (idc[i].oic_dev != osd)
192                         continue;
193
194                 return idc + i;
195         }
196
197         return NULL;
198 }
199
200 static struct osd_idmap_cache *
201 osd_idc_add(const struct lu_env *env, struct osd_device *osd,
202             const struct lu_fid *fid)
203 {
204         struct osd_thread_info *oti   = osd_oti_get(env);
205         struct osd_idmap_cache *idc;
206         int i;
207
208         if (unlikely(oti->oti_ins_cache_used >= oti->oti_ins_cache_size)) {
209                 i = oti->oti_ins_cache_size * 2;
210                 if (i == 0)
211                         i = OSD_INS_CACHE_SIZE;
212                 OBD_ALLOC_PTR_ARRAY(idc, i);
213                 if (idc == NULL)
214                         return ERR_PTR(-ENOMEM);
215                 if (oti->oti_ins_cache != NULL) {
216                         memcpy(idc, oti->oti_ins_cache,
217                                oti->oti_ins_cache_used * sizeof(*idc));
218                         OBD_FREE_PTR_ARRAY(oti->oti_ins_cache,
219                                            oti->oti_ins_cache_used);
220                 }
221                 oti->oti_ins_cache = idc;
222                 oti->oti_ins_cache_size = i;
223         }
224
225         idc = oti->oti_ins_cache + oti->oti_ins_cache_used++;
226         idc->oic_fid = *fid;
227         idc->oic_dev = osd;
228         idc->oic_lid.oii_ino = 0;
229         idc->oic_lid.oii_gen = 0;
230         idc->oic_remote = 0;
231
232         return idc;
233 }
234
235 /*
236  * lookup mapping for the given fid in the cache, initialize a
237  * new one if not found. the initialization checks whether the
238  * object is local or remote. for local objects, OI is used to
239  * learn ino/generation. the function is used when the caller
240  * has no information about the object, e.g. at dt_insert().
241  */
242 static struct osd_idmap_cache *
243 osd_idc_find_or_init(const struct lu_env *env, struct osd_device *osd,
244                      const struct lu_fid *fid)
245 {
246         struct osd_idmap_cache *idc;
247         int rc;
248
249         idc = osd_idc_find(env, osd, fid);
250         LASSERT(!IS_ERR(idc));
251         if (idc != NULL)
252                 return idc;
253
254         CDEBUG(D_INODE, "%s: FID "DFID" not in the id map cache\n",
255                osd->od_svname, PFID(fid));
256
257         /* new mapping is needed */
258         idc = osd_idc_add(env, osd, fid);
259         if (IS_ERR(idc)) {
260                 CERROR("%s: FID "DFID" add id map cache failed: %ld\n",
261                        osd->od_svname, PFID(fid), PTR_ERR(idc));
262                 return idc;
263         }
264
265         /* initialize it */
266         rc = osd_remote_fid(env, osd, fid);
267         if (unlikely(rc < 0))
268                 return ERR_PTR(rc);
269
270         if (rc == 0) {
271                 /* the object is local, lookup in OI */
272                 /* XXX: probably cheaper to lookup in LU first? */
273                 rc = osd_oi_lookup(osd_oti_get(env), osd, fid,
274                                    &idc->oic_lid, 0);
275                 if (unlikely(rc < 0)) {
276                         CERROR("can't lookup: rc = %d\n", rc);
277                         return ERR_PTR(rc);
278                 }
279         } else {
280                 /* the object is remote */
281                 idc->oic_remote = 1;
282         }
283
284         return idc;
285 }
286
287 /*
288  * lookup mapping for given FID and fill it from the given object.
289  * the object is lolcal by definition.
290  */
291 static int osd_idc_find_and_init(const struct lu_env *env,
292                                  struct osd_device *osd,
293                                  struct osd_object *obj)
294 {
295         const struct lu_fid *fid = lu_object_fid(&obj->oo_dt.do_lu);
296         struct osd_idmap_cache *idc;
297
298         idc = osd_idc_find(env, osd, fid);
299         LASSERT(!IS_ERR(idc));
300         if (idc != NULL) {
301                 if (obj->oo_inode == NULL)
302                         return 0;
303                 if (idc->oic_lid.oii_ino != obj->oo_inode->i_ino) {
304                         LASSERT(idc->oic_lid.oii_ino == 0);
305                         idc->oic_lid.oii_ino = obj->oo_inode->i_ino;
306                         idc->oic_lid.oii_gen = obj->oo_inode->i_generation;
307                 }
308                 return 0;
309         }
310
311         CDEBUG(D_INODE, "%s: FID "DFID" not in the id map cache\n",
312                osd->od_svname, PFID(fid));
313
314         /* new mapping is needed */
315         idc = osd_idc_add(env, osd, fid);
316         if (IS_ERR(idc)) {
317                 CERROR("%s: FID "DFID" add id map cache failed: %ld\n",
318                        osd->od_svname, PFID(fid), PTR_ERR(idc));
319                 return PTR_ERR(idc);
320         }
321
322         if (obj->oo_inode != NULL) {
323                 idc->oic_lid.oii_ino = obj->oo_inode->i_ino;
324                 idc->oic_lid.oii_gen = obj->oo_inode->i_generation;
325         }
326         return 0;
327 }
328
329 /*
330  * OSD object methods.
331  */
332
333 /*
334  * Concurrency: no concurrent access is possible that early in object
335  * life-cycle.
336  */
337 static struct lu_object *osd_object_alloc(const struct lu_env *env,
338                                           const struct lu_object_header *hdr,
339                                           struct lu_device *d)
340 {
341         struct osd_object *mo;
342
343         OBD_ALLOC_PTR(mo);
344         if (mo != NULL) {
345                 struct lu_object *l;
346                 struct lu_object_header *h;
347                 struct osd_device *o = osd_dev(d);
348
349                 l = &mo->oo_dt.do_lu;
350                 if (unlikely(o->od_in_init)) {
351                         OBD_ALLOC_PTR(h);
352                         if (!h) {
353                                 OBD_FREE_PTR(mo);
354                                 return NULL;
355                         }
356
357                         lu_object_header_init(h);
358                         lu_object_init(l, h, d);
359                         lu_object_add_top(h, l);
360                         mo->oo_header = h;
361                 } else {
362                         dt_object_init(&mo->oo_dt, NULL, d);
363                         mo->oo_header = NULL;
364                 }
365
366                 mo->oo_dt.do_ops = &osd_obj_ops;
367                 l->lo_ops = &osd_lu_obj_ops;
368                 init_rwsem(&mo->oo_sem);
369                 init_rwsem(&mo->oo_ext_idx_sem);
370                 spin_lock_init(&mo->oo_guard);
371                 INIT_LIST_HEAD(&mo->oo_xattr_list);
372                 return l;
373         }
374         return NULL;
375 }
376
377 int osd_get_lma(struct osd_thread_info *info, struct inode *inode,
378                 struct dentry *dentry, struct lustre_ost_attrs *loa)
379 {
380         int rc;
381
382         rc = __osd_xattr_get(inode, dentry, XATTR_NAME_LMA,
383                              (void *)loa, sizeof(*loa));
384         if (rc > 0) {
385                 struct lustre_mdt_attrs *lma = &loa->loa_lma;
386
387                 if (rc < sizeof(*lma))
388                         return -EINVAL;
389
390                 rc = 0;
391                 lustre_loa_swab(loa, true);
392                 /* Check LMA compatibility */
393                 if (lma->lma_incompat & ~LMA_INCOMPAT_SUPP) {
394                         CWARN("%s: unsupported incompat LMA feature(s) %#x "
395                               "for fid = "DFID", ino = %lu\n",
396                               osd_ino2name(inode),
397                               lma->lma_incompat & ~LMA_INCOMPAT_SUPP,
398                               PFID(&lma->lma_self_fid), inode->i_ino);
399                         rc = -EOPNOTSUPP;
400                 }
401         } else if (rc == 0) {
402                 rc = -ENODATA;
403         }
404
405         return rc;
406 }
407
408 /*
409  * retrieve object from backend ext fs.
410  **/
411 struct inode *osd_iget(struct osd_thread_info *info, struct osd_device *dev,
412                        struct osd_inode_id *id)
413 {
414         int rc;
415         struct inode *inode = NULL;
416
417         /*
418          * if we look for an inode withing a running
419          * transaction, then we risk to deadlock
420          * osd_dirent_check_repair() breaks this
421          */
422          /* LASSERT(current->journal_info == NULL); */
423
424         inode = osd_ldiskfs_iget(osd_sb(dev), id->oii_ino);
425         if (IS_ERR(inode)) {
426                 CDEBUG(D_INODE, "no inode: ino = %u, rc = %ld\n",
427                        id->oii_ino, PTR_ERR(inode));
428         } else if (id->oii_gen != OSD_OII_NOGEN &&
429                    inode->i_generation != id->oii_gen) {
430                 CDEBUG(D_INODE, "unmatched inode: ino = %u, oii_gen = %u, "
431                        "i_generation = %u\n",
432                        id->oii_ino, id->oii_gen, inode->i_generation);
433                 iput(inode);
434                 inode = ERR_PTR(-ESTALE);
435         } else if (inode->i_nlink == 0) {
436                 /*
437                  * due to parallel readdir and unlink,
438                  * we can have dead inode here.
439                  */
440                 CDEBUG(D_INODE, "stale inode: ino = %u\n", id->oii_ino);
441                 iput(inode);
442                 inode = ERR_PTR(-ESTALE);
443         } else if (is_bad_inode(inode)) {
444                 CWARN("%s: bad inode: ino = %u\n",
445                       osd_dev2name(dev), id->oii_ino);
446                 iput(inode);
447                 inode = ERR_PTR(-ENOENT);
448         } else if ((rc = osd_attach_jinode(inode))) {
449                 iput(inode);
450                 inode = ERR_PTR(rc);
451         } else {
452                 ldiskfs_clear_inode_state(inode, LDISKFS_STATE_LUSTRE_DESTROY);
453                 if (id->oii_gen == OSD_OII_NOGEN)
454                         osd_id_gen(id, inode->i_ino, inode->i_generation);
455
456                 /*
457                  * Do not update file c/mtime in ldiskfs.
458                  * NB: we don't have any lock to protect this because we don't
459                  * have reference on osd_object now, but contention with
460                  * another lookup + attr_set can't happen in the tiny window
461                  * between if (...) and set S_NOCMTIME.
462                  */
463                 if (!(inode->i_flags & S_NOCMTIME))
464                         inode->i_flags |= S_NOCMTIME;
465         }
466         return inode;
467 }
468
469 int osd_ldiskfs_add_entry(struct osd_thread_info *info, struct osd_device *osd,
470                           handle_t *handle, struct dentry *child,
471                           struct inode *inode, struct htree_lock *hlock)
472 {
473         int rc, rc2;
474
475         rc = __ldiskfs_add_entry(handle, child, inode, hlock);
476         if (rc == -ENOBUFS || rc == -ENOSPC) {
477                 struct lustre_ost_attrs *loa = &info->oti_ost_attrs;
478                 struct inode *parent = child->d_parent->d_inode;
479                 struct lu_fid *fid = NULL;
480
481                 rc2 = osd_get_lma(info, parent, child->d_parent, loa);
482                 if (!rc2) {
483                         fid = &loa->loa_lma.lma_self_fid;
484                 } else if (rc2 == -ENODATA) {
485                         if (unlikely(parent == inode->i_sb->s_root->d_inode)) {
486                                 fid = &info->oti_fid3;
487                                 lu_local_obj_fid(fid, OSD_FS_ROOT_OID);
488                         } else if (!osd->od_is_ost && osd->od_index == 0) {
489                                 fid = &info->oti_fid3;
490                                 lu_igif_build(fid, parent->i_ino,
491                                               parent->i_generation);
492                         }
493                 }
494
495                 if (fid != NULL)
496                         /* below message is checked in sanity.sh test_129 */
497                         CWARN("%s: directory (inode: %lu, FID: "DFID") %s maximum entry limit\n",
498                               osd_name(osd), parent->i_ino, PFID(fid),
499                               rc == -ENOSPC ? "has reached" : "is approaching");
500                 else
501                         /* below message is checked in sanity.sh test_129 */
502                         CWARN("%s: directory (inode: %lu, FID: unknown) %s maximum entry limit\n",
503                               osd_name(osd), parent->i_ino,
504                               rc == -ENOSPC ? "has reached" : "is approaching");
505
506                 /* ignore such error now */
507                 if (rc == -ENOBUFS)
508                         rc = 0;
509         }
510
511         return rc;
512 }
513
514
515 struct inode *
516 osd_iget_fid(struct osd_thread_info *info, struct osd_device *dev,
517              struct osd_inode_id *id, struct lu_fid *fid)
518 {
519         struct lustre_ost_attrs *loa = &info->oti_ost_attrs;
520         struct inode *inode;
521         int rc;
522
523         inode = osd_iget(info, dev, id);
524         if (IS_ERR(inode))
525                 return inode;
526
527         rc = osd_get_lma(info, inode, &info->oti_obj_dentry, loa);
528         if (!rc) {
529                 *fid = loa->loa_lma.lma_self_fid;
530         } else if (rc == -ENODATA) {
531                 if (unlikely(inode == osd_sb(dev)->s_root->d_inode))
532                         lu_local_obj_fid(fid, OSD_FS_ROOT_OID);
533                 else
534                         lu_igif_build(fid, inode->i_ino, inode->i_generation);
535         } else {
536                 iput(inode);
537                 inode = ERR_PTR(rc);
538         }
539         return inode;
540 }
541
542 static struct inode *osd_iget_check(struct osd_thread_info *info,
543                                     struct osd_device *dev,
544                                     const struct lu_fid *fid,
545                                     struct osd_inode_id *id,
546                                     bool trusted)
547 {
548         struct inode *inode;
549         int rc = 0;
550
551         ENTRY;
552
553         /*
554          * The cached OI mapping is trustable. If we cannot locate the inode
555          * via the cached OI mapping, then return the failure to the caller
556          * directly without further OI checking.
557          */
558
559 again:
560         inode = osd_ldiskfs_iget(osd_sb(dev), id->oii_ino);
561         if (IS_ERR(inode)) {
562                 rc = PTR_ERR(inode);
563                 if (!trusted && (rc == -ENOENT || rc == -ESTALE))
564                         goto check_oi;
565
566                 CDEBUG(D_INODE, "no inode for FID: "DFID", ino = %u, rc = %d\n",
567                        PFID(fid), id->oii_ino, rc);
568                 GOTO(put, rc);
569         }
570
571         if (is_bad_inode(inode)) {
572                 rc = -ENOENT;
573                 if (!trusted)
574                         goto check_oi;
575
576                 CDEBUG(D_INODE, "bad inode for FID: "DFID", ino = %u\n",
577                        PFID(fid), id->oii_ino);
578                 GOTO(put, rc);
579         }
580
581         if (id->oii_gen != OSD_OII_NOGEN &&
582             inode->i_generation != id->oii_gen) {
583                 rc = -ESTALE;
584                 if (!trusted)
585                         goto check_oi;
586
587                 CDEBUG(D_INODE, "unmatched inode for FID: "DFID", ino = %u, "
588                        "oii_gen = %u, i_generation = %u\n", PFID(fid),
589                        id->oii_ino, id->oii_gen, inode->i_generation);
590                 GOTO(put, rc);
591         }
592
593         if (inode->i_nlink == 0) {
594                 rc = -ENOENT;
595                 if (!trusted)
596                         goto check_oi;
597
598                 CDEBUG(D_INODE, "stale inode for FID: "DFID", ino = %u\n",
599                        PFID(fid), id->oii_ino);
600                 GOTO(put, rc);
601         }
602
603         ldiskfs_clear_inode_state(inode, LDISKFS_STATE_LUSTRE_DESTROY);
604
605 check_oi:
606         if (rc != 0) {
607                 __u32 saved_ino = id->oii_ino;
608                 __u32 saved_gen = id->oii_gen;
609
610                 LASSERT(!trusted);
611                 LASSERTF(rc == -ESTALE || rc == -ENOENT, "rc = %d\n", rc);
612
613                 rc = osd_oi_lookup(info, dev, fid, id, OI_CHECK_FLD);
614                 /*
615                  * XXX: There are four possible cases:
616                  *      1. rc = 0.
617                  *         Backup/restore caused the OI invalid.
618                  *      2. rc = 0.
619                  *         Someone unlinked the object but NOT removed
620                  *         the OI mapping, such as mount target device
621                  *         as ldiskfs, and modify something directly.
622                  *      3. rc = -ENOENT.
623                  *         Someone just removed the object between the
624                  *         former oi_lookup and the iget. It is normal.
625                  *      4. Other failure cases.
626                  *
627                  *      Generally, when the device is mounted, it will
628                  *      auto check whether the system is restored from
629                  *      file-level backup or not. We trust such detect
630                  *      to distinguish the 1st case from the 2nd case:
631                  *      if the OI files are consistent but may contain
632                  *      stale OI mappings because of case 2, if iget()
633                  *      returns -ENOENT or -ESTALE, then it should be
634                  *      the case 2.
635                  */
636                 if (rc != 0)
637                         /*
638                          * If the OI mapping was in OI file before the
639                          * osd_iget_check(), but now, it is disappear,
640                          * then it must be removed by race. That is a
641                          * normal race case.
642                          */
643                         GOTO(put, rc);
644
645                 /*
646                  * It is the OI scrub updated the OI mapping by race.
647                  * The new OI mapping must be valid.
648                  */
649                 if (saved_ino != id->oii_ino ||
650                     (saved_gen != id->oii_gen && saved_gen != OSD_OII_NOGEN)) {
651                         if (!IS_ERR(inode))
652                                 iput(inode);
653
654                         trusted = true;
655                         goto again;
656                 }
657
658                 if (IS_ERR(inode)) {
659                         if (dev->od_scrub.os_scrub.os_file.sf_flags &
660                             SF_INCONSISTENT)
661                                 /*
662                                  * It still can be the case 2, but we cannot
663                                  * distinguish it from the case 1. So return
664                                  * -EREMCHG to block current operation until
665                                  *  OI scrub rebuilt the OI mappings.
666                                  */
667                                 rc = -EREMCHG;
668                         else
669                                 rc = -ENOENT;
670
671                         GOTO(put, rc);
672                 }
673
674                 if (inode->i_generation == id->oii_gen)
675                         rc = -ENOENT;
676                 else
677                         rc = -EREMCHG;
678         } else {
679                 if (id->oii_gen == OSD_OII_NOGEN)
680                         osd_id_gen(id, inode->i_ino, inode->i_generation);
681
682                 /*
683                  * Do not update file c/mtime in ldiskfs.
684                  * NB: we don't have any lock to protect this because we don't
685                  * have reference on osd_object now, but contention with
686                  * another lookup + attr_set can't happen in the tiny window
687                  * between if (...) and set S_NOCMTIME.
688                  */
689                 if (!(inode->i_flags & S_NOCMTIME))
690                         inode->i_flags |= S_NOCMTIME;
691         }
692
693         GOTO(put, rc);
694
695 put:
696         if (rc != 0) {
697                 if (!IS_ERR(inode))
698                         iput(inode);
699
700                 inode = ERR_PTR(rc);
701         }
702
703         return inode;
704 }
705
706 /**
707  * \retval +v: new filter_fid does not contain self-fid
708  * \retval 0:  filter_fid_18_23, contains self-fid
709  * \retval -v: other failure cases
710  */
711 int osd_get_idif(struct osd_thread_info *info, struct inode *inode,
712                  struct dentry *dentry, struct lu_fid *fid)
713 {
714         struct filter_fid *ff = &info->oti_ff;
715         struct ost_id *ostid = &info->oti_ostid;
716         int rc;
717
718         rc = __osd_xattr_get(inode, dentry, XATTR_NAME_FID, ff, sizeof(*ff));
719         if (rc == sizeof(struct filter_fid_18_23)) {
720                 struct filter_fid_18_23 *ff_old = (void *)ff;
721
722                 ostid_set_seq(ostid, le64_to_cpu(ff_old->ff_seq));
723                 rc = ostid_set_id(ostid, le64_to_cpu(ff_old->ff_objid));
724                 /*
725                  * XXX: use 0 as the index for compatibility, the caller will
726                  * handle index related issues when necessary.
727                  */
728                 if (!rc)
729                         ostid_to_fid(fid, ostid, 0);
730         } else if (rc >= (int)sizeof(struct filter_fid_24_29)) {
731                 rc = 1;
732         } else if (rc >= 0) {
733                 rc = -EINVAL;
734         }
735
736         return rc;
737 }
738
739 static int osd_lma_self_repair(struct osd_thread_info *info,
740                                struct osd_device *osd, struct inode *inode,
741                                const struct lu_fid *fid, __u32 compat)
742 {
743         handle_t *jh;
744         int rc;
745
746         LASSERT(current->journal_info == NULL);
747
748         jh = osd_journal_start_sb(osd_sb(osd), LDISKFS_HT_MISC,
749                                   osd_dto_credits_noquota[DTO_XATTR_SET]);
750         if (IS_ERR(jh)) {
751                 rc = PTR_ERR(jh);
752                 CWARN("%s: cannot start journal for lma_self_repair: rc = %d\n",
753                       osd_name(osd), rc);
754                 return rc;
755         }
756
757         rc = osd_ea_fid_set(info, inode, fid, compat, 0);
758         if (rc != 0)
759                 CWARN("%s: cannot self repair the LMA: rc = %d\n",
760                       osd_name(osd), rc);
761         ldiskfs_journal_stop(jh);
762         return rc;
763 }
764
765 static int osd_check_lma(const struct lu_env *env, struct osd_object *obj)
766 {
767         struct osd_thread_info *info = osd_oti_get(env);
768         struct osd_device *osd = osd_obj2dev(obj);
769         struct lustre_ost_attrs *loa = &info->oti_ost_attrs;
770         struct lustre_mdt_attrs *lma = &loa->loa_lma;
771         struct inode *inode = obj->oo_inode;
772         struct dentry *dentry = &info->oti_obj_dentry;
773         struct lu_fid *fid = NULL;
774         const struct lu_fid *rfid = lu_object_fid(&obj->oo_dt.do_lu);
775         int rc;
776
777         ENTRY;
778
779         rc = __osd_xattr_get(inode, dentry, XATTR_NAME_LMA,
780                              (void *)loa, sizeof(*loa));
781         if (rc == -ENODATA && !fid_is_igif(rfid) && osd->od_check_ff) {
782                 fid = &lma->lma_self_fid;
783                 rc = osd_get_idif(info, inode, dentry, fid);
784                 if (rc > 0 || (rc == -ENODATA && osd->od_index_in_idif)) {
785                         /*
786                          * For the given OST-object, if it has neither LMA nor
787                          * FID in XATTR_NAME_FID, then the given FID (which is
788                          * contained in the @obj, from client RPC for locating
789                          * the OST-object) is trusted. We use it to generate
790                          * the LMA.
791                          */
792                         osd_lma_self_repair(info, osd, inode, rfid,
793                                             LMAC_FID_ON_OST);
794                         RETURN(0);
795                 }
796         }
797
798         if (rc < 0)
799                 RETURN(rc);
800
801         if (rc > 0) {
802                 rc = 0;
803                 lustre_lma_swab(lma);
804                 if (unlikely((lma->lma_incompat & ~LMA_INCOMPAT_SUPP) ||
805                              (CFS_FAIL_CHECK(OBD_FAIL_OSD_LMA_INCOMPAT) &&
806                               S_ISREG(inode->i_mode)))) {
807                         CWARN("%s: unsupported incompat LMA feature(s) %#x for "
808                               "fid = "DFID", ino = %lu\n", osd_name(osd),
809                               lma->lma_incompat & ~LMA_INCOMPAT_SUPP,
810                               PFID(rfid), inode->i_ino);
811                         rc = -EOPNOTSUPP;
812                 } else {
813                         fid = &lma->lma_self_fid;
814                         if (lma->lma_compat & LMAC_STRIPE_INFO &&
815                             osd->od_is_ost)
816                                 obj->oo_pfid_in_lma = 1;
817                         if (unlikely(lma->lma_incompat & LMAI_REMOTE_PARENT) &&
818                             !osd->od_is_ost)
819                                 lu_object_set_agent_entry(&obj->oo_dt.do_lu);
820                 }
821         }
822
823         if (fid != NULL && unlikely(!lu_fid_eq(rfid, fid))) {
824                 if (fid_is_idif(rfid) && fid_is_idif(fid)) {
825                         struct ost_id   *oi   = &info->oti_ostid;
826                         struct lu_fid   *fid1 = &info->oti_fid3;
827                         __u32            idx  = fid_idif_ost_idx(rfid);
828
829                         /*
830                          * For old IDIF, the OST index is not part of the IDIF,
831                          * Means that different OSTs may have the same IDIFs.
832                          * Under such case, we need to make some compatible
833                          * check to make sure to trigger OI scrub properly.
834                          */
835                         if (idx != 0 && fid_idif_ost_idx(fid) == 0) {
836                                 /* Given @rfid is new, LMA is old. */
837                                 fid_to_ostid(fid, oi);
838                                 ostid_to_fid(fid1, oi, idx);
839                                 if (lu_fid_eq(fid1, rfid)) {
840                                         if (osd->od_index_in_idif)
841                                                 osd_lma_self_repair(info, osd,
842                                                         inode, rfid,
843                                                         LMAC_FID_ON_OST);
844                                         RETURN(0);
845                                 }
846                         }
847                 }
848
849                 rc = -EREMCHG;
850         }
851
852         RETURN(rc);
853 }
854
855 struct osd_check_lmv_buf {
856         /* please keep it as first member */
857         struct dir_context ctx;
858         struct osd_thread_info *oclb_info;
859         struct osd_device *oclb_dev;
860         struct osd_idmap_cache *oclb_oic;
861         int oclb_items;
862         bool oclb_found;
863 };
864
865 /**
866  * It is called internally by ->iterate*() to filter out the
867  * local slave object's FID of the striped directory.
868  *
869  * \retval      1 found the local slave's FID
870  * \retval      0 continue to check next item
871  * \retval      -ve for failure
872  */
873 #ifdef HAVE_FILLDIR_USE_CTX
874 static int osd_stripe_dir_filldir(struct dir_context *buf,
875 #else
876 static int osd_stripe_dir_filldir(void *buf,
877 #endif
878                                   const char *name, int namelen,
879                                   loff_t offset, __u64 ino, unsigned int d_type)
880 {
881         struct osd_check_lmv_buf *oclb = (struct osd_check_lmv_buf *)buf;
882         struct osd_thread_info *oti = oclb->oclb_info;
883         struct lu_fid *fid = &oti->oti_fid3;
884         struct osd_inode_id *id = &oti->oti_id3;
885         struct osd_device *dev = oclb->oclb_dev;
886         struct osd_idmap_cache *oic = oclb->oclb_oic;
887         struct inode *inode;
888
889         oclb->oclb_items++;
890
891         if (name[0] == '.')
892                 return 0;
893
894         fid_zero(fid);
895         sscanf(name + 1, SFID, RFID(fid));
896         if (!fid_is_sane(fid))
897                 return 0;
898
899         if (osd_remote_fid(oti->oti_env, dev, fid))
900                 return 0;
901
902         osd_id_gen(id, ino, OSD_OII_NOGEN);
903         inode = osd_iget(oti, dev, id);
904         if (IS_ERR(inode))
905                 return PTR_ERR(inode);
906
907         iput(inode);
908         osd_add_oi_cache(oti, dev, id, fid);
909         oic->oic_fid = *fid;
910         oic->oic_lid = *id;
911         oic->oic_dev = dev;
912         osd_oii_insert(dev, oic, true);
913         oclb->oclb_found = true;
914
915         return 1;
916 }
917
918 /*
919  * When lookup item under striped directory, we need to locate the master
920  * MDT-object of the striped directory firstly, then the client will send
921  * lookup (getattr_by_name) RPC to the MDT with some slave MDT-object's FID
922  * and the item's name. If the system is restored from MDT file level backup,
923  * then before the OI scrub completely built the OI files, the OI mappings of
924  * the master MDT-object and slave MDT-object may be invalid. Usually, it is
925  * not a problem for the master MDT-object. Because when locate the master
926  * MDT-object, we will do name based lookup (for the striped directory itself)
927  * firstly, during such process we can setup the correct OI mapping for the
928  * master MDT-object. But it will be trouble for the slave MDT-object. Because
929  * the client will not trigger name based lookup on the MDT to locate the slave
930  * MDT-object before locating item under the striped directory, then when
931  * osd_fid_lookup(), it will find that the OI mapping for the slave MDT-object
932  * is invalid and does not know what the right OI mapping is, then the MDT has
933  * to return -EINPROGRESS to the client to notify that the OI scrub is rebuiding
934  * the OI file, related OI mapping is unknown yet, please try again later. And
935  * then client will re-try the RPC again and again until related OI mapping has
936  * been updated. That is quite inefficient.
937  *
938  * To resolve above trouble, we will handle it as the following two cases:
939  *
940  * 1) The slave MDT-object and the master MDT-object are on different MDTs.
941  *    It is relative easy. Be as one of remote MDT-objects, the slave MDT-object
942  *    is linked under /REMOTE_PARENT_DIR with the name of its FID string.
943  *    We can locate the slave MDT-object via lookup the /REMOTE_PARENT_DIR
944  *    directly. Please check osd_fid_lookup().
945  *
946  * 2) The slave MDT-object and the master MDT-object reside on the same MDT.
947  *    Under such case, during lookup the master MDT-object, we will lookup the
948  *    slave MDT-object via readdir against the master MDT-object, because the
949  *    slave MDT-objects information are stored as sub-directories with the name
950  *    "${FID}:${index}". Then when find the local slave MDT-object, its OI
951  *    mapping will be recorded. Then subsequent osd_fid_lookup() will know
952  *    the correct OI mapping for the slave MDT-object.
953  */
954 static int osd_check_lmv(struct osd_thread_info *oti, struct osd_device *dev,
955                          struct inode *inode, struct osd_idmap_cache *oic)
956 {
957         struct lu_buf *buf = &oti->oti_big_buf;
958         struct dentry *dentry = &oti->oti_obj_dentry;
959         struct file *filp = &oti->oti_file;
960         const struct file_operations *fops;
961         struct lmv_mds_md_v1 *lmv1;
962         struct osd_check_lmv_buf oclb = {
963                 .ctx.actor = osd_stripe_dir_filldir,
964                 .oclb_info = oti,
965                 .oclb_dev = dev,
966                 .oclb_oic = oic,
967                 .oclb_found = false,
968         };
969         int rc = 0;
970
971         ENTRY;
972
973 again:
974         rc = __osd_xattr_get(inode, dentry, XATTR_NAME_LMV, buf->lb_buf,
975                              buf->lb_len);
976         if (rc == -ERANGE) {
977                 rc = __osd_xattr_get(inode, dentry, XATTR_NAME_LMV, NULL, 0);
978                 if (rc > 0) {
979                         lu_buf_realloc(buf, rc);
980                         if (buf->lb_buf == NULL)
981                                 GOTO(out, rc = -ENOMEM);
982
983                         goto again;
984                 }
985         }
986
987         if (unlikely(rc == 0 || rc == -ENODATA))
988                 GOTO(out, rc = 0);
989
990         if (rc < 0)
991                 GOTO(out, rc);
992
993         if (unlikely(buf->lb_buf == NULL)) {
994                 lu_buf_realloc(buf, rc);
995                 if (buf->lb_buf == NULL)
996                         GOTO(out, rc = -ENOMEM);
997
998                 goto again;
999         }
1000
1001         lmv1 = buf->lb_buf;
1002         if (le32_to_cpu(lmv1->lmv_magic) != LMV_MAGIC_V1)
1003                 GOTO(out, rc = 0);
1004
1005         fops = inode->i_fop;
1006         dentry->d_inode = inode;
1007         dentry->d_sb = inode->i_sb;
1008         filp->f_pos = 0;
1009         filp->f_path.dentry = dentry;
1010         filp->f_flags |= O_NOATIME;
1011         filp->f_mode = FMODE_64BITHASH | FMODE_NONOTIFY;
1012         filp->f_mapping = inode->i_mapping;
1013         filp->f_op = fops;
1014         filp->private_data = NULL;
1015         filp->f_cred = current_cred();
1016         filp->f_inode = inode;
1017         rc = osd_security_file_alloc(filp);
1018         if (rc)
1019                 goto out;
1020
1021         do {
1022                 oclb.oclb_items = 0;
1023                 rc = iterate_dir(filp, &oclb.ctx);
1024         } while (rc >= 0 && oclb.oclb_items > 0 && !oclb.oclb_found &&
1025                  filp->f_pos != LDISKFS_HTREE_EOF_64BIT);
1026         fops->release(inode, filp);
1027
1028 out:
1029         if (rc < 0)
1030                 CDEBUG(D_LFSCK, "%s: fail to check LMV EA, inode = %lu/%u,"
1031                        DFID": rc = %d\n", osd_ino2name(inode),
1032                        inode->i_ino, inode->i_generation,
1033                        PFID(&oic->oic_fid), rc);
1034         else
1035                 rc = 0;
1036
1037         RETURN(rc);
1038 }
1039
1040 static int osd_fid_lookup(const struct lu_env *env, struct osd_object *obj,
1041                           const struct lu_fid *fid,
1042                           const struct lu_object_conf *conf)
1043 {
1044         struct osd_thread_info *info;
1045         struct lu_device *ldev = obj->oo_dt.do_lu.lo_dev;
1046         struct osd_device *dev;
1047         struct osd_idmap_cache *oic;
1048         struct osd_inode_id *id;
1049         struct inode *inode = NULL;
1050         struct lustre_scrub *scrub;
1051         struct scrub_file *sf;
1052         __u32 flags = SS_CLEAR_DRYRUN | SS_CLEAR_FAILOUT | SS_AUTO_FULL;
1053         __u32 saved_ino;
1054         __u32 saved_gen;
1055         int result = 0;
1056         int rc1 = 0;
1057         bool remote = false;
1058         bool trusted = true;
1059         bool updated = false;
1060         bool checked = false;
1061
1062         ENTRY;
1063
1064         LINVRNT(osd_invariant(obj));
1065         LASSERT(obj->oo_inode == NULL);
1066         LASSERTF(fid_is_sane(fid) || fid_is_idif(fid), DFID"\n", PFID(fid));
1067
1068         dev = osd_dev(ldev);
1069         scrub = &dev->od_scrub.os_scrub;
1070         sf = &scrub->os_file;
1071         info = osd_oti_get(env);
1072         LASSERT(info);
1073         oic = &info->oti_cache;
1074
1075         if (OBD_FAIL_CHECK(OBD_FAIL_SRV_ENOENT))
1076                 RETURN(-ENOENT);
1077
1078         /*
1079          * For the object is created as locking anchor, or for the object to
1080          * be created on disk. No need to osd_oi_lookup() at here because FID
1081          * shouldn't never be re-used, if it's really a duplicate FID from
1082          * unexpected reason, we should be able to detect it later by calling
1083          * do_create->osd_oi_insert().
1084          */
1085         if (conf && conf->loc_flags & LOC_F_NEW)
1086                 GOTO(out, result = 0);
1087
1088         /* Search order: 1. per-thread cache. */
1089         if (lu_fid_eq(fid, &oic->oic_fid) && likely(oic->oic_dev == dev)) {
1090                 id = &oic->oic_lid;
1091                 goto iget;
1092         }
1093
1094         id = &info->oti_id;
1095         if (!list_empty(&scrub->os_inconsistent_items)) {
1096                 /* Search order: 2. OI scrub pending list. */
1097                 result = osd_oii_lookup(dev, fid, id);
1098                 if (!result)
1099                         goto iget;
1100         }
1101
1102         /*
1103          * The OI mapping in the OI file can be updated by the OI scrub
1104          * when we locate the inode via FID. So it may be not trustable.
1105          */
1106         trusted = false;
1107
1108         /* Search order: 3. OI files. */
1109         result = osd_oi_lookup(info, dev, fid, id, OI_CHECK_FLD);
1110         if (result == -ENOENT) {
1111                 if (!(fid_is_norm(fid) || fid_is_igif(fid)) ||
1112                     fid_is_on_ost(info, dev, fid, OI_CHECK_FLD) ||
1113                     !ldiskfs_test_bit(osd_oi_fid2idx(dev, fid),
1114                                       sf->sf_oi_bitmap))
1115                         GOTO(out, result = 0);
1116
1117                 goto trigger;
1118         }
1119
1120         /* -ESTALE is returned if inode of OST object doesn't exist */
1121         if (result == -ESTALE &&
1122             fid_is_on_ost(info, dev, fid, OI_CHECK_FLD)) {
1123                 GOTO(out, result = 0);
1124         }
1125
1126         if (result)
1127                 GOTO(out, result);
1128
1129 iget:
1130         obj->oo_inode = NULL;
1131         /* for later passes through checks, not true on first pass */
1132         if (!IS_ERR_OR_NULL(inode))
1133                 iput(inode);
1134
1135         inode = osd_iget_check(info, dev, fid, id, trusted);
1136         if (!IS_ERR(inode)) {
1137                 obj->oo_inode = inode;
1138                 result = 0;
1139                 if (remote)
1140                         goto trigger;
1141
1142                 goto check_lma;
1143         }
1144
1145         result = PTR_ERR(inode);
1146         if (result == -ENOENT || result == -ESTALE)
1147                 GOTO(out, result = 0);
1148
1149         if (result != -EREMCHG)
1150                 GOTO(out, result);
1151
1152 trigger:
1153         /*
1154          * We still have chance to get the valid inode: for the
1155          * object which is referenced by remote name entry, the
1156          * object on the local MDT will be linked under the dir
1157          * of "/REMOTE_PARENT_DIR" with its FID string as name.
1158          *
1159          * We do not know whether the object for the given FID
1160          * is referenced by some remote name entry or not, and
1161          * especially for DNE II, a multiple-linked object may
1162          * have many name entries reside on many MDTs.
1163          *
1164          * To simplify the operation, OSD will not distinguish
1165          * more, just lookup "/REMOTE_PARENT_DIR". Usually, it
1166          * only happened for the RPC from other MDT during the
1167          * OI scrub, or for the client side RPC with FID only,
1168          * such as FID to path, or from old connected client.
1169          */
1170         if (!remote) {
1171                 rc1 = osd_lookup_in_remote_parent(info, dev, fid, id);
1172                 if (!rc1) {
1173                         remote = true;
1174                         trusted = true;
1175                         flags |= SS_AUTO_PARTIAL;
1176                         flags &= ~SS_AUTO_FULL;
1177                         goto iget;
1178                 }
1179         }
1180
1181         if (thread_is_running(&scrub->os_thread)) {
1182                 if (scrub->os_partial_scan && !scrub->os_in_join)
1183                         goto join;
1184
1185                 if (IS_ERR_OR_NULL(inode) || result)
1186                         GOTO(out, result = -EINPROGRESS);
1187
1188                 LASSERT(remote);
1189                 LASSERT(obj->oo_inode == inode);
1190
1191                 osd_add_oi_cache(info, dev, id, fid);
1192                 osd_oii_insert(dev, oic, true);
1193                 goto found;
1194         }
1195
1196         if (dev->od_auto_scrub_interval == AS_NEVER) {
1197                 if (!remote)
1198                         GOTO(out, result = -EREMCHG);
1199
1200                 LASSERT(!result);
1201                 LASSERT(obj->oo_inode == inode);
1202
1203                 osd_add_oi_cache(info, dev, id, fid);
1204                 goto found;
1205         }
1206
1207 join:
1208         rc1 = osd_scrub_start(env, dev, flags);
1209         LCONSOLE_WARN("%s: trigger OI scrub by RPC for the " DFID" with flags "
1210                       "0x%x, rc = %d\n", osd_name(dev), PFID(fid), flags, rc1);
1211         if (rc1 && rc1 != -EALREADY)
1212                 GOTO(out, result = -EREMCHG);
1213
1214         if (IS_ERR_OR_NULL(inode) || result)
1215                 GOTO(out, result = -EINPROGRESS);
1216
1217         LASSERT(remote);
1218         LASSERT(obj->oo_inode == inode);
1219
1220         osd_add_oi_cache(info, dev, id, fid);
1221         osd_oii_insert(dev, oic, true);
1222         goto found;
1223
1224 check_lma:
1225         checked = true;
1226         if (unlikely(obj->oo_header))
1227                 goto found;
1228
1229         result = osd_check_lma(env, obj);
1230         if (!result)
1231                 goto found;
1232
1233         LASSERTF(id->oii_ino == inode->i_ino &&
1234                  id->oii_gen == inode->i_generation,
1235                  "locate wrong inode for FID: "DFID", %u/%u => %ld/%u\n",
1236                  PFID(fid), id->oii_ino, id->oii_gen,
1237                  inode->i_ino, inode->i_generation);
1238
1239         saved_ino = inode->i_ino;
1240         saved_gen = inode->i_generation;
1241
1242         if (unlikely(result == -ENODATA)) {
1243                 /*
1244                  * If the OI scrub updated the OI mapping by race, it
1245                  * must be valid. Trust the inode that has no LMA EA.
1246                  */
1247                 if (updated)
1248                         goto found;
1249
1250                 result = osd_oi_lookup(info, dev, fid, id, OI_CHECK_FLD);
1251                 if (!result) {
1252                         /*
1253                          * The OI mapping is still there, the inode is still
1254                          * valid. It is just becaues the inode has no LMA EA.
1255                          */
1256                         if (saved_ino == id->oii_ino &&
1257                             saved_gen == id->oii_gen)
1258                                 goto found;
1259
1260                         /*
1261                          * It is the OI scrub updated the OI mapping by race.
1262                          * The new OI mapping must be valid.
1263                          */
1264                         trusted = true;
1265                         updated = true;
1266                         goto iget;
1267                 }
1268
1269                 /*
1270                  * "result == -ENOENT" means that the OI mappinghas been
1271                  * removed by race, so the inode belongs to other object.
1272                  *
1273                  * Others error can be returned  directly.
1274                  */
1275                 if (result == -ENOENT) {
1276                         LASSERT(trusted);
1277
1278                         obj->oo_inode = NULL;
1279                         result = 0;
1280                 }
1281         }
1282
1283         if (result != -EREMCHG)
1284                 GOTO(out, result);
1285
1286         LASSERT(!updated);
1287
1288         /*
1289          * if two OST objects map to the same inode, and inode mode is
1290          * (S_IFREG | S_ISUID | S_ISGID | S_ISVTX | 0666), which means it's
1291          * reserved by precreate, and not written yet, in this case, don't
1292          * set inode for the object whose FID mismatch, so that it can create
1293          * inode and not block precreate.
1294          */
1295         if (fid_is_on_ost(info, dev, fid, OI_CHECK_FLD) &&
1296             inode->i_mode == (S_IFREG | S_ISUID | S_ISGID | S_ISVTX | 0666)) {
1297                 obj->oo_inode = NULL;
1298                 GOTO(out, result = 0);
1299         }
1300
1301         result = osd_oi_lookup(info, dev, fid, id, OI_CHECK_FLD);
1302         /*
1303          * "result == -ENOENT" means the cached OI mapping has been removed
1304          * from the OI file by race, above inode belongs to other object.
1305          */
1306         if (result == -ENOENT) {
1307                 LASSERT(trusted);
1308
1309                 obj->oo_inode = NULL;
1310                 GOTO(out, result = 0);
1311         }
1312
1313         if (result)
1314                 GOTO(out, result);
1315
1316         if (saved_ino == id->oii_ino && saved_gen == id->oii_gen) {
1317                 result = -EREMCHG;
1318                 goto trigger;
1319         }
1320
1321         /*
1322          * It is the OI scrub updated the OI mapping by race.
1323          * The new OI mapping must be valid.
1324          */
1325         trusted = true;
1326         updated = true;
1327         goto iget;
1328
1329 found:
1330         if (!checked) {
1331                 struct lustre_ost_attrs *loa = &info->oti_ost_attrs;
1332                 struct lustre_mdt_attrs *lma = &info->oti_ost_attrs.loa_lma;
1333
1334                 result = osd_get_lma(info, inode, &info->oti_obj_dentry, loa);
1335                 if (!result) {
1336                         if (lma->lma_compat & LMAC_STRIPE_INFO &&
1337                             dev->od_is_ost)
1338                                 obj->oo_pfid_in_lma = 1;
1339                         if (unlikely(lma->lma_incompat & LMAI_REMOTE_PARENT) &&
1340                             !dev->od_is_ost)
1341                                 lu_object_set_agent_entry(&obj->oo_dt.do_lu);
1342                 } else if (result != -ENODATA) {
1343                         GOTO(out, result);
1344                 }
1345         }
1346
1347         obj->oo_compat_dot_created = 1;
1348         obj->oo_compat_dotdot_created = 1;
1349
1350         if (S_ISDIR(inode->i_mode) &&
1351             (flags & SS_AUTO_PARTIAL || sf->sf_status == SS_SCANNING))
1352                 osd_check_lmv(info, dev, inode, oic);
1353
1354         result = osd_attach_jinode(inode);
1355         if (result)
1356                 GOTO(out, result);
1357
1358         if (!ldiskfs_pdo)
1359                 GOTO(out, result = 0);
1360
1361         LASSERT(!obj->oo_hl_head);
1362         obj->oo_hl_head = ldiskfs_htree_lock_head_alloc(HTREE_HBITS_DEF);
1363
1364         GOTO(out, result = (!obj->oo_hl_head ? -ENOMEM : 0));
1365
1366 out:
1367         if (result || !obj->oo_inode) {
1368                 if (!IS_ERR_OR_NULL(inode))
1369                         iput(inode);
1370
1371                 obj->oo_inode = NULL;
1372                 if (trusted)
1373                         fid_zero(&oic->oic_fid);
1374         }
1375
1376         LINVRNT(osd_invariant(obj));
1377         return result;
1378 }
1379
1380 /*
1381  * Concurrency: shouldn't matter.
1382  */
1383 static void osd_object_init0(struct osd_object *obj)
1384 {
1385         LASSERT(obj->oo_inode != NULL);
1386         obj->oo_dt.do_body_ops = &osd_body_ops;
1387         obj->oo_dt.do_lu.lo_header->loh_attr |=
1388                 (LOHA_EXISTS | (obj->oo_inode->i_mode & S_IFMT));
1389 }
1390
1391 /*
1392  * Concurrency: no concurrent access is possible that early in object
1393  * life-cycle.
1394  */
1395 static int osd_object_init(const struct lu_env *env, struct lu_object *l,
1396                            const struct lu_object_conf *conf)
1397 {
1398         struct osd_object *obj = osd_obj(l);
1399         int result;
1400
1401         LINVRNT(osd_invariant(obj));
1402
1403         if (OBD_FAIL_PRECHECK(OBD_FAIL_MDS_LLOG_UMOUNT_RACE) &&
1404             cfs_fail_val == 2) {
1405                 struct osd_thread_info *info = osd_oti_get(env);
1406                 struct osd_idmap_cache *oic = &info->oti_cache;
1407                 /* invalidate thread cache */
1408                 memset(&oic->oic_fid, 0, sizeof(oic->oic_fid));
1409         }
1410         if (fid_is_otable_it(&l->lo_header->loh_fid)) {
1411                 obj->oo_dt.do_ops = &osd_obj_otable_it_ops;
1412                 l->lo_header->loh_attr |= LOHA_EXISTS;
1413                 return 0;
1414         }
1415
1416         result = osd_fid_lookup(env, obj, lu_object_fid(l), conf);
1417         obj->oo_dt.do_body_ops = &osd_body_ops_new;
1418         if (result == 0 && obj->oo_inode != NULL) {
1419                 struct osd_thread_info *oti = osd_oti_get(env);
1420                 struct lustre_ost_attrs *loa = &oti->oti_ost_attrs;
1421
1422                 osd_object_init0(obj);
1423                 if (unlikely(obj->oo_header))
1424                         return 0;
1425
1426                 result = osd_get_lma(oti, obj->oo_inode,
1427                                      &oti->oti_obj_dentry, loa);
1428                 if (!result) {
1429                         /*
1430                          * Convert LMAI flags to lustre LMA flags
1431                          * and cache it to oo_lma_flags
1432                          */
1433                         obj->oo_lma_flags =
1434                                 lma_to_lustre_flags(loa->loa_lma.lma_incompat);
1435                 } else if (result == -ENODATA) {
1436                         result = 0;
1437                 }
1438         }
1439
1440         LINVRNT(osd_invariant(obj));
1441         return result;
1442 }
1443
1444 /*
1445  * The first part of oxe_buf is xattr name, and is '\0' terminated.
1446  * The left part is for value, binary mode.
1447  */
1448 struct osd_xattr_entry {
1449         struct list_head        oxe_list;
1450         size_t                  oxe_len;
1451         size_t                  oxe_namelen;
1452         bool                    oxe_exist;
1453         struct rcu_head         oxe_rcu;
1454         char                    oxe_buf[0];
1455 };
1456
1457 static int osd_oxc_get(struct osd_object *obj, const char *name,
1458                        struct lu_buf *buf)
1459 {
1460         struct osd_xattr_entry *tmp;
1461         struct osd_xattr_entry *oxe = NULL;
1462         size_t namelen = strlen(name);
1463         int rc;
1464
1465         rcu_read_lock();
1466         list_for_each_entry_rcu(tmp, &obj->oo_xattr_list, oxe_list) {
1467                 if (namelen == tmp->oxe_namelen &&
1468                     strncmp(name, tmp->oxe_buf, namelen) == 0) {
1469                         oxe = tmp;
1470                         break;
1471                 }
1472         }
1473
1474         if (oxe == NULL)
1475                 GOTO(out, rc = -ENOENT);
1476
1477         if (!oxe->oxe_exist)
1478                 GOTO(out, rc = -ENODATA);
1479
1480         /* vallen */
1481         rc = oxe->oxe_len - sizeof(*oxe) - oxe->oxe_namelen - 1;
1482         LASSERT(rc > 0);
1483
1484         if (buf->lb_buf == NULL)
1485                 GOTO(out, rc);
1486
1487         if (buf->lb_len < rc)
1488                 GOTO(out, rc = -ERANGE);
1489
1490         memcpy(buf->lb_buf, &oxe->oxe_buf[namelen + 1], rc);
1491 out:
1492         rcu_read_unlock();
1493
1494         return rc;
1495 }
1496
1497 static void osd_oxc_free(struct rcu_head *head)
1498 {
1499         struct osd_xattr_entry *oxe;
1500
1501         oxe = container_of(head, struct osd_xattr_entry, oxe_rcu);
1502         OBD_FREE(oxe, oxe->oxe_len);
1503 }
1504
1505 static void osd_oxc_add(struct osd_object *obj, const char *name,
1506                         const char *buf, int buflen)
1507 {
1508         struct osd_xattr_entry *oxe;
1509         struct osd_xattr_entry *old = NULL;
1510         struct osd_xattr_entry *tmp;
1511         size_t namelen = strlen(name);
1512         size_t len = sizeof(*oxe) + namelen + 1 + buflen;
1513
1514         OBD_ALLOC(oxe, len);
1515         if (oxe == NULL)
1516                 return;
1517
1518         INIT_LIST_HEAD(&oxe->oxe_list);
1519         oxe->oxe_len = len;
1520         oxe->oxe_namelen = namelen;
1521         memcpy(oxe->oxe_buf, name, namelen);
1522         if (buflen > 0) {
1523                 LASSERT(buf != NULL);
1524                 memcpy(oxe->oxe_buf + namelen + 1, buf, buflen);
1525                 oxe->oxe_exist = true;
1526         } else {
1527                 oxe->oxe_exist = false;
1528         }
1529
1530         /* this should be rarely called, just remove old and add new */
1531         spin_lock(&obj->oo_guard);
1532         list_for_each_entry(tmp, &obj->oo_xattr_list, oxe_list) {
1533                 if (namelen == tmp->oxe_namelen &&
1534                     strncmp(name, tmp->oxe_buf, namelen) == 0) {
1535                         old = tmp;
1536                         break;
1537                 }
1538         }
1539         if (old != NULL) {
1540                 list_replace_rcu(&old->oxe_list, &oxe->oxe_list);
1541                 call_rcu(&old->oxe_rcu, osd_oxc_free);
1542         } else {
1543                 list_add_tail_rcu(&oxe->oxe_list, &obj->oo_xattr_list);
1544         }
1545         spin_unlock(&obj->oo_guard);
1546 }
1547
1548 static void osd_oxc_del(struct osd_object *obj, const char *name)
1549 {
1550         struct osd_xattr_entry *oxe;
1551         size_t namelen = strlen(name);
1552
1553         spin_lock(&obj->oo_guard);
1554         list_for_each_entry(oxe, &obj->oo_xattr_list, oxe_list) {
1555                 if (namelen == oxe->oxe_namelen &&
1556                     strncmp(name, oxe->oxe_buf, namelen) == 0) {
1557                         list_del_rcu(&oxe->oxe_list);
1558                         call_rcu(&oxe->oxe_rcu, osd_oxc_free);
1559                         break;
1560                 }
1561         }
1562         spin_unlock(&obj->oo_guard);
1563 }
1564
1565 static void osd_oxc_fini(struct osd_object *obj)
1566 {
1567         struct osd_xattr_entry *oxe, *next;
1568
1569         list_for_each_entry_safe(oxe, next, &obj->oo_xattr_list, oxe_list) {
1570                 list_del(&oxe->oxe_list);
1571                 OBD_FREE(oxe, oxe->oxe_len);
1572         }
1573 }
1574
1575 /*
1576  * Concurrency: no concurrent access is possible that late in object
1577  * life-cycle.
1578  */
1579 static void osd_object_free(const struct lu_env *env, struct lu_object *l)
1580 {
1581         struct osd_object *obj = osd_obj(l);
1582         struct lu_object_header *h = obj->oo_header;
1583
1584         LINVRNT(osd_invariant(obj));
1585
1586         osd_oxc_fini(obj);
1587         dt_object_fini(&obj->oo_dt);
1588         if (obj->oo_hl_head != NULL)
1589                 ldiskfs_htree_lock_head_free(obj->oo_hl_head);
1590         /* obj doesn't contain an lu_object_header, so we don't need call_rcu */
1591         OBD_FREE_PTR(obj);
1592         if (unlikely(h)) {
1593                 lu_object_header_fini(h);
1594                 OBD_FREE_PRE(h, sizeof(*h), "kfreed");
1595                 kfree_rcu(h, loh_rcu);
1596         }
1597 }
1598
1599 /*
1600  * Concurrency: no concurrent access is possible that late in object
1601  * life-cycle.
1602  */
1603 static void osd_index_fini(struct osd_object *o)
1604 {
1605         struct iam_container *bag;
1606
1607         if (o->oo_dir != NULL) {
1608                 bag = &o->oo_dir->od_container;
1609                 if (o->oo_inode != NULL) {
1610                         if (bag->ic_object == o->oo_inode)
1611                                 iam_container_fini(bag);
1612                 }
1613                 OBD_FREE_PTR(o->oo_dir);
1614                 o->oo_dir = NULL;
1615         }
1616 }
1617
1618 /*
1619  * Concurrency: no concurrent access is possible that late in object
1620  * life-cycle (for all existing callers, that is. New callers have to provide
1621  * their own locking.)
1622  */
1623 static int osd_inode_unlinked(const struct inode *inode)
1624 {
1625         return inode->i_nlink == 0;
1626 }
1627
1628 enum {
1629         OSD_TXN_OI_DELETE_CREDITS    = 20,
1630         OSD_TXN_INODE_DELETE_CREDITS = 20
1631 };
1632
1633 /*
1634  * Journal
1635  */
1636
1637 #if OSD_THANDLE_STATS
1638 /**
1639  * Set time when the handle is allocated
1640  */
1641 static void osd_th_alloced(struct osd_thandle *oth)
1642 {
1643         oth->oth_alloced = ktime_get();
1644 }
1645
1646 /**
1647  * Set time when the handle started
1648  */
1649 static void osd_th_started(struct osd_thandle *oth)
1650 {
1651         oth->oth_started = ktime_get();
1652 }
1653
1654 /**
1655  * Check whether the we deal with this handle for too long.
1656  */
1657 static void __osd_th_check_slow(void *oth, struct osd_device *dev,
1658                                 ktime_t alloced, ktime_t started,
1659                                 ktime_t closed)
1660 {
1661         ktime_t now = ktime_get();
1662
1663         LASSERT(dev != NULL);
1664
1665         lprocfs_counter_add(dev->od_stats, LPROC_OSD_THANDLE_STARTING,
1666                             ktime_us_delta(started, alloced));
1667         lprocfs_counter_add(dev->od_stats, LPROC_OSD_THANDLE_OPEN,
1668                             ktime_us_delta(closed, started));
1669         lprocfs_counter_add(dev->od_stats, LPROC_OSD_THANDLE_CLOSING,
1670                             ktime_us_delta(now, closed));
1671
1672         if (ktime_before(ktime_add_ns(alloced, 30 * NSEC_PER_SEC), now)) {
1673                 CWARN("transaction handle %p was open for too long: now %lld, alloced %lld, started %lld, closed %lld\n",
1674                                 oth, now, alloced, started, closed);
1675                 libcfs_debug_dumpstack(NULL);
1676         }
1677 }
1678
1679 #define OSD_CHECK_SLOW_TH(oth, dev, expr)                               \
1680 {                                                                       \
1681         ktime_t __closed = ktime_get();                                 \
1682         ktime_t __alloced = oth->oth_alloced;                           \
1683         ktime_t __started = oth->oth_started;                           \
1684                                                                         \
1685         expr;                                                           \
1686         __osd_th_check_slow(oth, dev, __alloced, __started, __closed);  \
1687 }
1688
1689 #else /* OSD_THANDLE_STATS */
1690
1691 #define osd_th_alloced(h)                  do {} while(0)
1692 #define osd_th_started(h)                  do {} while(0)
1693 #define OSD_CHECK_SLOW_TH(oth, dev, expr)  expr
1694
1695 #endif /* OSD_THANDLE_STATS */
1696
1697 /*
1698  * Concurrency: doesn't access mutable data.
1699  */
1700 static int osd_param_is_not_sane(const struct osd_device *dev,
1701                                  const struct thandle *th)
1702 {
1703         struct osd_thandle *oh = container_of(th, typeof(*oh), ot_super);
1704
1705         return oh->ot_credits > osd_transaction_size(dev);
1706 }
1707
1708 /*
1709  * Concurrency: shouldn't matter.
1710  */
1711 static void osd_trans_commit_cb(struct super_block *sb,
1712                                 struct ldiskfs_journal_cb_entry *jcb, int error)
1713 {
1714         struct osd_thandle *oh = container_of0(jcb, struct osd_thandle, ot_jcb);
1715         struct thandle *th = &oh->ot_super;
1716         struct lu_device *lud = &th->th_dev->dd_lu_dev;
1717         struct dt_txn_commit_cb *dcb, *tmp;
1718
1719         LASSERT(oh->ot_handle == NULL);
1720
1721         if (error)
1722                 CERROR("transaction @0x%p commit error: %d\n", th, error);
1723
1724         OBD_FAIL_TIMEOUT(OBD_FAIL_OST_DELAY_TRANS, 40);
1725         /* call per-transaction callbacks if any */
1726         list_for_each_entry_safe(dcb, tmp, &oh->ot_commit_dcb_list,
1727                                  dcb_linkage) {
1728                 LASSERTF(dcb->dcb_magic == TRANS_COMMIT_CB_MAGIC,
1729                          "commit callback entry: magic=%x name='%s'\n",
1730                          dcb->dcb_magic, dcb->dcb_name);
1731                 list_del_init(&dcb->dcb_linkage);
1732                 dcb->dcb_func(NULL, th, dcb, error);
1733         }
1734
1735         lu_ref_del_at(&lud->ld_reference, &oh->ot_dev_link, "osd-tx", th);
1736         lu_device_put(lud);
1737         th->th_dev = NULL;
1738
1739         OBD_FREE_PTR(oh);
1740 }
1741
1742 static struct thandle *osd_trans_create(const struct lu_env *env,
1743                                         struct dt_device *d)
1744 {
1745         struct osd_thread_info *oti = osd_oti_get(env);
1746         struct osd_iobuf *iobuf = &oti->oti_iobuf;
1747         struct osd_thandle *oh;
1748         struct thandle *th;
1749
1750         ENTRY;
1751
1752         if (d->dd_rdonly) {
1753                 CERROR("%s: someone try to start transaction under "
1754                        "readonly mode, should be disabled.\n",
1755                        osd_name(osd_dt_dev(d)));
1756                 dump_stack();
1757                 RETURN(ERR_PTR(-EROFS));
1758         }
1759
1760         /* on pending IO in this thread should left from prev. request */
1761         LASSERT(atomic_read(&iobuf->dr_numreqs) == 0);
1762
1763         sb_start_write(osd_sb(osd_dt_dev(d)));
1764
1765         OBD_ALLOC_GFP(oh, sizeof(*oh), GFP_NOFS);
1766         if (!oh) {
1767                 sb_end_write(osd_sb(osd_dt_dev(d)));
1768                 RETURN(ERR_PTR(-ENOMEM));
1769         }
1770
1771         oh->ot_quota_trans = &oti->oti_quota_trans;
1772         memset(oh->ot_quota_trans, 0, sizeof(*oh->ot_quota_trans));
1773         th = &oh->ot_super;
1774         th->th_dev = d;
1775         th->th_result = 0;
1776         oh->ot_credits = 0;
1777         INIT_LIST_HEAD(&oh->ot_commit_dcb_list);
1778         INIT_LIST_HEAD(&oh->ot_stop_dcb_list);
1779         INIT_LIST_HEAD(&oh->ot_trunc_locks);
1780         osd_th_alloced(oh);
1781
1782         memset(oti->oti_declare_ops, 0,
1783                sizeof(oti->oti_declare_ops));
1784         memset(oti->oti_declare_ops_cred, 0,
1785                sizeof(oti->oti_declare_ops_cred));
1786         memset(oti->oti_declare_ops_used, 0,
1787                sizeof(oti->oti_declare_ops_used));
1788
1789         oti->oti_ins_cache_depth++;
1790
1791         RETURN(th);
1792 }
1793
1794 void osd_trans_dump_creds(const struct lu_env *env, struct thandle *th)
1795 {
1796         struct osd_thread_info *oti = osd_oti_get(env);
1797         struct osd_thandle *oh;
1798
1799         oh = container_of0(th, struct osd_thandle, ot_super);
1800         LASSERT(oh != NULL);
1801
1802         CWARN("  create: %u/%u/%u, destroy: %u/%u/%u\n",
1803               oti->oti_declare_ops[OSD_OT_CREATE],
1804               oti->oti_declare_ops_cred[OSD_OT_CREATE],
1805               oti->oti_declare_ops_used[OSD_OT_CREATE],
1806               oti->oti_declare_ops[OSD_OT_DESTROY],
1807               oti->oti_declare_ops_cred[OSD_OT_DESTROY],
1808               oti->oti_declare_ops_used[OSD_OT_DESTROY]);
1809         CWARN("  attr_set: %u/%u/%u, xattr_set: %u/%u/%u\n",
1810               oti->oti_declare_ops[OSD_OT_ATTR_SET],
1811               oti->oti_declare_ops_cred[OSD_OT_ATTR_SET],
1812               oti->oti_declare_ops_used[OSD_OT_ATTR_SET],
1813               oti->oti_declare_ops[OSD_OT_XATTR_SET],
1814               oti->oti_declare_ops_cred[OSD_OT_XATTR_SET],
1815               oti->oti_declare_ops_used[OSD_OT_XATTR_SET]);
1816         CWARN("  write: %u/%u/%u, punch: %u/%u/%u, quota %u/%u/%u\n",
1817               oti->oti_declare_ops[OSD_OT_WRITE],
1818               oti->oti_declare_ops_cred[OSD_OT_WRITE],
1819               oti->oti_declare_ops_used[OSD_OT_WRITE],
1820               oti->oti_declare_ops[OSD_OT_PUNCH],
1821               oti->oti_declare_ops_cred[OSD_OT_PUNCH],
1822               oti->oti_declare_ops_used[OSD_OT_PUNCH],
1823               oti->oti_declare_ops[OSD_OT_QUOTA],
1824               oti->oti_declare_ops_cred[OSD_OT_QUOTA],
1825               oti->oti_declare_ops_used[OSD_OT_QUOTA]);
1826         CWARN("  insert: %u/%u/%u, delete: %u/%u/%u\n",
1827               oti->oti_declare_ops[OSD_OT_INSERT],
1828               oti->oti_declare_ops_cred[OSD_OT_INSERT],
1829               oti->oti_declare_ops_used[OSD_OT_INSERT],
1830               oti->oti_declare_ops[OSD_OT_DELETE],
1831               oti->oti_declare_ops_cred[OSD_OT_DELETE],
1832               oti->oti_declare_ops_used[OSD_OT_DELETE]);
1833         CWARN("  ref_add: %u/%u/%u, ref_del: %u/%u/%u\n",
1834               oti->oti_declare_ops[OSD_OT_REF_ADD],
1835               oti->oti_declare_ops_cred[OSD_OT_REF_ADD],
1836               oti->oti_declare_ops_used[OSD_OT_REF_ADD],
1837               oti->oti_declare_ops[OSD_OT_REF_DEL],
1838               oti->oti_declare_ops_cred[OSD_OT_REF_DEL],
1839               oti->oti_declare_ops_used[OSD_OT_REF_DEL]);
1840 }
1841
1842 /*
1843  * Concurrency: shouldn't matter.
1844  */
1845 static int osd_trans_start(const struct lu_env *env, struct dt_device *d,
1846                            struct thandle *th)
1847 {
1848         struct osd_thread_info *oti = osd_oti_get(env);
1849         struct osd_device *dev = osd_dt_dev(d);
1850         handle_t *jh;
1851         struct osd_thandle *oh;
1852         int rc;
1853
1854         ENTRY;
1855
1856         LASSERT(current->journal_info == NULL);
1857
1858         oh = container_of0(th, struct osd_thandle, ot_super);
1859         LASSERT(oh != NULL);
1860         LASSERT(oh->ot_handle == NULL);
1861
1862         rc = dt_txn_hook_start(env, d, th);
1863         if (rc != 0)
1864                 GOTO(out, rc);
1865
1866         if (unlikely(osd_param_is_not_sane(dev, th))) {
1867                 static unsigned long last_printed;
1868                 static int last_credits;
1869
1870                 /*
1871                  * don't make noise on a tiny testing systems
1872                  * actual credits misuse will be caught anyway
1873                  */
1874                 if (last_credits != oh->ot_credits &&
1875                     time_after(jiffies, last_printed +
1876                                cfs_time_seconds(60)) &&
1877                     osd_transaction_size(dev) > 512) {
1878                         CWARN("%s: credits %u > trans_max %u\n", osd_name(dev),
1879                               oh->ot_credits, osd_transaction_size(dev));
1880                         osd_trans_dump_creds(env, th);
1881                         libcfs_debug_dumpstack(NULL);
1882                         last_credits = oh->ot_credits;
1883                         last_printed = jiffies;
1884                 }
1885                 /*
1886                  * XXX Limit the credits to 'max_transaction_buffers', and
1887                  *     let the underlying filesystem to catch the error if
1888                  *     we really need so many credits.
1889                  *
1890                  *     This should be removed when we can calculate the
1891                  *     credits precisely.
1892                  */
1893                 oh->ot_credits = osd_transaction_size(dev);
1894         } else if (ldiskfs_track_declares_assert != 0) {
1895                 /*
1896                  * reserve few credits to prevent an assertion in JBD
1897                  * our debugging mechanism will be able to detected
1898                  * overuse. this can help to debug single-update
1899                  * transactions
1900                  */
1901                 oh->ot_credits += 10;
1902                 if (unlikely(osd_param_is_not_sane(dev, th)))
1903                         oh->ot_credits = osd_transaction_size(dev);
1904         }
1905
1906         if (OBD_FAIL_CHECK(OBD_FAIL_OSD_TXN_START))
1907                 GOTO(out, rc = -EIO);
1908
1909         /*
1910          * XXX temporary stuff. Some abstraction layer should
1911          * be used.
1912          */
1913         jh = osd_journal_start_sb(osd_sb(dev), LDISKFS_HT_MISC, oh->ot_credits);
1914         osd_th_started(oh);
1915         if (!IS_ERR(jh)) {
1916                 oh->ot_handle = jh;
1917                 LASSERT(oti->oti_txns == 0);
1918
1919                 lu_device_get(&d->dd_lu_dev);
1920                 lu_ref_add_at(&d->dd_lu_dev.ld_reference, &oh->ot_dev_link,
1921                               "osd-tx", th);
1922                 oti->oti_txns++;
1923                 rc = 0;
1924         } else {
1925                 rc = PTR_ERR(jh);
1926         }
1927 out:
1928         RETURN(rc);
1929 }
1930
1931 static int osd_seq_exists(const struct lu_env *env,
1932                           struct osd_device *osd, u64 seq)
1933 {
1934         struct lu_seq_range *range = &osd_oti_get(env)->oti_seq_range;
1935         struct seq_server_site *ss = osd_seq_site(osd);
1936         int rc;
1937
1938         ENTRY;
1939
1940         LASSERT(ss != NULL);
1941         LASSERT(ss->ss_server_fld != NULL);
1942
1943         rc = osd_fld_lookup(env, osd, seq, range);
1944         if (rc != 0) {
1945                 if (rc != -ENOENT)
1946                         CERROR("%s: can't lookup FLD sequence %#llx: rc = %d\n",
1947                                osd_name(osd), seq, rc);
1948                 RETURN(0);
1949         }
1950
1951         RETURN(ss->ss_node_id == range->lsr_index);
1952 }
1953
1954 static void osd_trans_stop_cb(struct osd_thandle *oth, int result)
1955 {
1956         struct dt_txn_commit_cb *dcb;
1957         struct dt_txn_commit_cb *tmp;
1958
1959         /* call per-transaction stop callbacks if any */
1960         list_for_each_entry_safe(dcb, tmp, &oth->ot_stop_dcb_list,
1961                                  dcb_linkage) {
1962                 LASSERTF(dcb->dcb_magic == TRANS_COMMIT_CB_MAGIC,
1963                          "commit callback entry: magic=%x name='%s'\n",
1964                          dcb->dcb_magic, dcb->dcb_name);
1965                 list_del_init(&dcb->dcb_linkage);
1966                 dcb->dcb_func(NULL, &oth->ot_super, dcb, result);
1967         }
1968 }
1969
1970 /*
1971  * Concurrency: shouldn't matter.
1972  */
1973 static int osd_trans_stop(const struct lu_env *env, struct dt_device *dt,
1974                           struct thandle *th)
1975 {
1976         struct osd_thread_info *oti = osd_oti_get(env);
1977         struct osd_thandle *oh;
1978         struct osd_iobuf *iobuf = &oti->oti_iobuf;
1979         struct osd_device *osd = osd_dt_dev(th->th_dev);
1980         struct qsd_instance *qsd = osd_def_qsd(osd);
1981         struct lquota_trans *qtrans;
1982         LIST_HEAD(truncates);
1983         int rc = 0, remove_agents = 0;
1984
1985         ENTRY;
1986
1987         oh = container_of0(th, struct osd_thandle, ot_super);
1988
1989         remove_agents = oh->ot_remove_agents;
1990
1991         qtrans = oh->ot_quota_trans;
1992         oh->ot_quota_trans = NULL;
1993
1994         /* move locks to local list, stop tx, execute truncates */
1995         list_splice(&oh->ot_trunc_locks, &truncates);
1996
1997         if (oh->ot_handle != NULL) {
1998                 int rc2;
1999
2000                 handle_t *hdl = oh->ot_handle;
2001
2002                 /*
2003                  * add commit callback
2004                  * notice we don't do this in osd_trans_start()
2005                  * as underlying transaction can change during truncate
2006                  */
2007                 ldiskfs_journal_callback_add(hdl, osd_trans_commit_cb,
2008                                              &oh->ot_jcb);
2009
2010                 LASSERT(oti->oti_txns == 1);
2011                 oti->oti_txns--;
2012
2013                 rc = dt_txn_hook_stop(env, th);
2014                 if (rc != 0)
2015                         CERROR("%s: failed in transaction hook: rc = %d\n",
2016                                osd_name(osd), rc);
2017
2018                 osd_trans_stop_cb(oh, rc);
2019                 /* hook functions might modify th_sync */
2020                 hdl->h_sync = th->th_sync;
2021
2022                 oh->ot_handle = NULL;
2023                 OSD_CHECK_SLOW_TH(oh, osd, rc2 = ldiskfs_journal_stop(hdl));
2024                 if (rc2 != 0)
2025                         CERROR("%s: failed to stop transaction: rc = %d\n",
2026                                osd_name(osd), rc2);
2027                 if (!rc)
2028                         rc = rc2;
2029
2030                 osd_process_truncates(&truncates);
2031         } else {
2032                 osd_trans_stop_cb(oh, th->th_result);
2033                 OBD_FREE_PTR(oh);
2034         }
2035
2036         osd_trunc_unlock_all(&truncates);
2037
2038         /* inform the quota slave device that the transaction is stopping */
2039         qsd_op_end(env, qsd, qtrans);
2040
2041         /*
2042          * as we want IO to journal and data IO be concurrent, we don't block
2043          * awaiting data IO completion in osd_do_bio(), instead we wait here
2044          * once transaction is submitted to the journal. all reqular requests
2045          * don't do direct IO (except read/write), thus this wait_event becomes
2046          * no-op for them.
2047          *
2048          * IMPORTANT: we have to wait till any IO submited by the thread is
2049          * completed otherwise iobuf may be corrupted by different request
2050          */
2051         wait_event(iobuf->dr_wait,
2052                        atomic_read(&iobuf->dr_numreqs) == 0);
2053         osd_fini_iobuf(osd, iobuf);
2054         if (!rc)
2055                 rc = iobuf->dr_error;
2056
2057         if (unlikely(remove_agents != 0))
2058                 osd_process_scheduled_agent_removals(env, osd);
2059
2060         oti->oti_ins_cache_depth--;
2061         /* reset OI cache for safety */
2062         if (oti->oti_ins_cache_depth == 0)
2063                 oti->oti_ins_cache_used = 0;
2064
2065         sb_end_write(osd_sb(osd));
2066
2067         RETURN(rc);
2068 }
2069
2070 static int osd_trans_cb_add(struct thandle *th, struct dt_txn_commit_cb *dcb)
2071 {
2072         struct osd_thandle *oh = container_of0(th, struct osd_thandle,
2073                                                ot_super);
2074
2075         LASSERT(dcb->dcb_magic == TRANS_COMMIT_CB_MAGIC);
2076         LASSERT(&dcb->dcb_func != NULL);
2077         if (dcb->dcb_flags & DCB_TRANS_STOP)
2078                 list_add(&dcb->dcb_linkage, &oh->ot_stop_dcb_list);
2079         else
2080                 list_add(&dcb->dcb_linkage, &oh->ot_commit_dcb_list);
2081
2082         return 0;
2083 }
2084
2085 /*
2086  * Called just before object is freed. Releases all resources except for
2087  * object itself (that is released by osd_object_free()).
2088  *
2089  * Concurrency: no concurrent access is possible that late in object
2090  * life-cycle.
2091  */
2092 static void osd_object_delete(const struct lu_env *env, struct lu_object *l)
2093 {
2094         struct osd_object *obj = osd_obj(l);
2095         struct qsd_instance *qsd = osd_def_qsd(osd_obj2dev(obj));
2096         struct inode *inode = obj->oo_inode;
2097         __u64 projid;
2098         qid_t uid;
2099         qid_t gid;
2100
2101         LINVRNT(osd_invariant(obj));
2102
2103         /*
2104          * If object is unlinked remove fid->ino mapping from object index.
2105          */
2106
2107         osd_index_fini(obj);
2108
2109         if (!inode)
2110                 return;
2111
2112         uid = i_uid_read(inode);
2113         gid = i_gid_read(inode);
2114         projid = i_projid_read(inode);
2115
2116         obj->oo_inode = NULL;
2117         iput(inode);
2118
2119         /* do not rebalance quota if the caller needs to release memory
2120          * otherwise qsd_refresh_usage() may went into a new ldiskfs
2121          * transaction and risk to deadlock - LU-12178 */
2122         if (current->flags & (PF_MEMALLOC | PF_KSWAPD))
2123                 return;
2124
2125         if (!obj->oo_header && qsd) {
2126                 struct osd_thread_info *info = osd_oti_get(env);
2127                 struct lquota_id_info *qi = &info->oti_qi;
2128
2129                 /* Release granted quota to master if necessary */
2130                 qi->lqi_id.qid_uid = uid;
2131                 qsd_op_adjust(env, qsd, &qi->lqi_id, USRQUOTA);
2132
2133                 qi->lqi_id.qid_uid = gid;
2134                 qsd_op_adjust(env, qsd, &qi->lqi_id, GRPQUOTA);
2135
2136                 qi->lqi_id.qid_uid = projid;
2137                 qsd_op_adjust(env, qsd, &qi->lqi_id, PRJQUOTA);
2138         }
2139 }
2140
2141 /*
2142  * Concurrency: ->loo_object_release() is called under site spin-lock.
2143  */
2144 static void osd_object_release(const struct lu_env *env,
2145                                struct lu_object *l)
2146 {
2147         struct osd_object *o = osd_obj(l);
2148
2149         /*
2150          * nobody should be releasing a non-destroyed object with nlink=0
2151          * the API allows this, but ldiskfs doesn't like and then report
2152          * this inode as deleted
2153          */
2154         LASSERT(!(o->oo_destroyed == 0 && o->oo_inode &&
2155                   o->oo_inode->i_nlink == 0));
2156 }
2157
2158 /*
2159  * Concurrency: shouldn't matter.
2160  */
2161 static int osd_object_print(const struct lu_env *env, void *cookie,
2162                             lu_printer_t p, const struct lu_object *l)
2163 {
2164         struct osd_object *o = osd_obj(l);
2165         struct iam_descr *d;
2166
2167         if (o->oo_dir != NULL)
2168                 d = o->oo_dir->od_container.ic_descr;
2169         else
2170                 d = NULL;
2171         return (*p)(env, cookie,
2172                     LUSTRE_OSD_LDISKFS_NAME"-object@%p(i:%p:%lu/%u)[%s]",
2173                     o, o->oo_inode,
2174                     o->oo_inode ? o->oo_inode->i_ino : 0UL,
2175                     o->oo_inode ? o->oo_inode->i_generation : 0,
2176                     d ? d->id_ops->id_name : "plain");
2177 }
2178
2179 /*
2180  * Concurrency: shouldn't matter.
2181  */
2182 int osd_statfs(const struct lu_env *env, struct dt_device *d,
2183                 struct obd_statfs *sfs, struct obd_statfs_info *info)
2184 {
2185         struct osd_device *osd = osd_dt_dev(d);
2186         struct super_block *sb = osd_sb(osd);
2187         struct kstatfs *ksfs;
2188         __u64 reserved;
2189         int result = 0;
2190
2191         if (unlikely(osd->od_mnt == NULL))
2192                 return -EINPROGRESS;
2193
2194         /* osd_lproc.c call this without env, allocate ksfs for that case */
2195         if (unlikely(env == NULL)) {
2196                 OBD_ALLOC_PTR(ksfs);
2197                 if (ksfs == NULL)
2198                         return -ENOMEM;
2199         } else {
2200                 ksfs = &osd_oti_get(env)->oti_ksfs;
2201         }
2202
2203         result = sb->s_op->statfs(sb->s_root, ksfs);
2204         if (result)
2205                 goto out;
2206
2207         statfs_pack(sfs, ksfs);
2208         if (unlikely(sb->s_flags & SB_RDONLY))
2209                 sfs->os_state |= OS_STATE_READONLY;
2210
2211         sfs->os_state |= osd->od_nonrotational ? OS_STATE_NONROT : 0;
2212
2213         if (ldiskfs_has_feature_extents(sb))
2214                 sfs->os_maxbytes = sb->s_maxbytes;
2215         else
2216                 sfs->os_maxbytes = LDISKFS_SB(sb)->s_bitmap_maxbytes;
2217
2218         /*
2219          * Reserve some space so to avoid fragmenting the filesystem too much.
2220          * Fragmentation not only impacts performance, but can also increase
2221          * metadata overhead significantly, causing grant calculation to be
2222          * wrong.
2223          *
2224          * Reserve 0.78% of total space, at least 8MB for small filesystems.
2225          */
2226         BUILD_BUG_ON(OSD_STATFS_RESERVED <= LDISKFS_MAX_BLOCK_SIZE);
2227         reserved = OSD_STATFS_RESERVED >> sb->s_blocksize_bits;
2228         if (likely(sfs->os_blocks >= reserved << OSD_STATFS_RESERVED_SHIFT))
2229                 reserved = sfs->os_blocks >> OSD_STATFS_RESERVED_SHIFT;
2230
2231         sfs->os_blocks -= reserved;
2232         sfs->os_bfree  -= min(reserved, sfs->os_bfree);
2233         sfs->os_bavail -= min(reserved, sfs->os_bavail);
2234
2235 out:
2236         if (unlikely(env == NULL))
2237                 OBD_FREE_PTR(ksfs);
2238         return result;
2239 }
2240
2241 /**
2242  * Estimate space needed for file creations. We assume the largest filename
2243  * which is 2^64 - 1, hence a filename of 20 chars.
2244  * This is 28 bytes per object which is 28MB for 1M objects ... no so bad.
2245  */
2246 #ifdef __LDISKFS_DIR_REC_LEN
2247 #define PER_OBJ_USAGE __LDISKFS_DIR_REC_LEN(20)
2248 #else
2249 #define PER_OBJ_USAGE LDISKFS_DIR_REC_LEN(20)
2250 #endif
2251
2252 /*
2253  * Concurrency: doesn't access mutable data.
2254  */
2255 static void osd_conf_get(const struct lu_env *env,
2256                          const struct dt_device *dev,
2257                          struct dt_device_param *param)
2258 {
2259         struct osd_device *d = osd_dt_dev(dev);
2260         struct super_block *sb = osd_sb(d);
2261         struct blk_integrity *bi = bdev_get_integrity(sb->s_bdev);
2262         const char *name;
2263         int ea_overhead;
2264
2265         /*
2266          * XXX should be taken from not-yet-existing fs abstraction layer.
2267          */
2268         param->ddp_max_name_len = LDISKFS_NAME_LEN;
2269         param->ddp_max_nlink    = LDISKFS_LINK_MAX;
2270         param->ddp_symlink_max  = sb->s_blocksize;
2271         param->ddp_mount_type   = LDD_MT_LDISKFS;
2272         if (ldiskfs_has_feature_extents(sb))
2273                 param->ddp_maxbytes = sb->s_maxbytes;
2274         else
2275                 param->ddp_maxbytes = LDISKFS_SB(sb)->s_bitmap_maxbytes;
2276         /*
2277          * inode are statically allocated, so per-inode space consumption
2278          * is the space consumed by the directory entry
2279          */
2280         param->ddp_inodespace     = PER_OBJ_USAGE;
2281         /*
2282          * EXT_INIT_MAX_LEN is the theoretical maximum extent size (32k blocks
2283          * is 128MB) which is unlikely to be hit in real life. Report a smaller
2284          * maximum length to not under-count the actual number of extents
2285          * needed for writing a file if there are sub-optimal block allocations.
2286          */
2287         param->ddp_max_extent_blks = EXT_INIT_MAX_LEN >> 1;
2288         /* worst-case extent insertion metadata overhead */
2289         param->ddp_extent_tax = 6 * LDISKFS_BLOCK_SIZE(sb);
2290         param->ddp_mntopts = 0;
2291         if (test_opt(sb, XATTR_USER))
2292                 param->ddp_mntopts |= MNTOPT_USERXATTR;
2293         if (test_opt(sb, POSIX_ACL))
2294                 param->ddp_mntopts |= MNTOPT_ACL;
2295
2296         /*
2297          * LOD might calculate the max stripe count based on max_ea_size,
2298          * so we need take account in the overhead as well,
2299          * xattr_header + magic + xattr_entry_head
2300          */
2301         ea_overhead = sizeof(struct ldiskfs_xattr_header) + sizeof(__u32) +
2302                       LDISKFS_XATTR_LEN(XATTR_NAME_MAX_LEN);
2303
2304 #if defined(LDISKFS_FEATURE_INCOMPAT_EA_INODE)
2305         if (ldiskfs_has_feature_ea_inode(sb))
2306                 param->ddp_max_ea_size = LDISKFS_XATTR_MAX_LARGE_EA_SIZE -
2307                                                                 ea_overhead;
2308         else
2309 #endif
2310                 param->ddp_max_ea_size = sb->s_blocksize - ea_overhead;
2311
2312         if (param->ddp_max_ea_size > OBD_MAX_EA_SIZE)
2313                 param->ddp_max_ea_size = OBD_MAX_EA_SIZE;
2314
2315         /*
2316          * Preferred RPC size for efficient disk IO.  4MB shows good
2317          * all-around performance for ldiskfs, but use bigalloc chunk size
2318          * by default if larger.
2319          */
2320 #if defined(LDISKFS_CLUSTER_SIZE)
2321         if (LDISKFS_CLUSTER_SIZE(sb) > DT_DEF_BRW_SIZE)
2322                 param->ddp_brw_size = LDISKFS_CLUSTER_SIZE(sb);
2323         else
2324 #endif
2325                 param->ddp_brw_size = DT_DEF_BRW_SIZE;
2326
2327         param->ddp_t10_cksum_type = 0;
2328         if (bi) {
2329                 unsigned short interval = blk_integrity_interval(bi);
2330                 name = blk_integrity_name(bi);
2331                 /*
2332                  * Expected values:
2333                  * T10-DIF-TYPE1-CRC
2334                  * T10-DIF-TYPE3-CRC
2335                  * T10-DIF-TYPE1-IP
2336                  * T10-DIF-TYPE3-IP
2337                  */
2338                 if (strncmp(name, "T10-DIF-TYPE",
2339                             sizeof("T10-DIF-TYPE") - 1) == 0) {
2340                         /* also skip "1/3-" at end */
2341                         const int type_off = sizeof("T10-DIF-TYPE.");
2342                         char type_number = name[type_off - 2];
2343
2344                         if (interval != 512 && interval != 4096) {
2345                                 CERROR("%s: unsupported T10PI sector size %u\n",
2346                                        d->od_svname, interval);
2347                         } else if (type_number != '1' && type_number != '3') {
2348                                 CERROR("%s: unsupported T10PI type %s\n",
2349                                        d->od_svname, name);
2350                         } else if (strcmp(name + type_off, "CRC") == 0) {
2351                                 d->od_t10_type = type_number == '1' ?
2352                                         OSD_T10_TYPE1_CRC : OSD_T10_TYPE3_CRC;
2353                                 param->ddp_t10_cksum_type = interval == 512 ?
2354                                         OBD_CKSUM_T10CRC512 :
2355                                         OBD_CKSUM_T10CRC4K;
2356                         } else if (strcmp(name + type_off, "IP") == 0) {
2357                                 d->od_t10_type = type_number == '1' ?
2358                                         OSD_T10_TYPE1_IP : OSD_T10_TYPE3_IP;
2359                                 param->ddp_t10_cksum_type = interval == 512 ?
2360                                         OBD_CKSUM_T10IP512 :
2361                                         OBD_CKSUM_T10IP4K;
2362                         } else {
2363                                 CERROR("%s: unsupported checksum type of "
2364                                        "T10PI type '%s'",
2365                                        d->od_svname, name);
2366                         }
2367
2368                 } else {
2369                         CERROR("%s: unsupported T10PI type '%s'",
2370                                d->od_svname, name);
2371                 }
2372         }
2373 }
2374
2375 static struct super_block *osd_mnt_sb_get(const struct dt_device *d)
2376 {
2377         return osd_sb(osd_dt_dev(d));
2378 }
2379
2380 /*
2381  * Concurrency: shouldn't matter.
2382  */
2383 static int osd_sync(const struct lu_env *env, struct dt_device *d)
2384 {
2385         int rc;
2386         struct super_block *s = osd_sb(osd_dt_dev(d));
2387         ENTRY;
2388
2389         down_read(&s->s_umount);
2390         rc = s->s_op->sync_fs(s, 1);
2391         up_read(&s->s_umount);
2392
2393         CDEBUG(D_CACHE, "%s: synced OSD: rc = %d\n", osd_dt_dev(d)->od_svname,
2394                rc);
2395
2396         return rc;
2397 }
2398
2399 /**
2400  * Start commit for OSD device.
2401  *
2402  * An implementation of dt_commit_async method for OSD device.
2403  * Asychronously starts underlayng fs sync and thereby a transaction
2404  * commit.
2405  *
2406  * \param env environment
2407  * \param d dt device
2408  *
2409  * \see dt_device_operations
2410  */
2411 static int osd_commit_async(const struct lu_env *env,
2412                             struct dt_device *d)
2413 {
2414         struct super_block *s = osd_sb(osd_dt_dev(d));
2415         int rc;
2416
2417         ENTRY;
2418
2419         CDEBUG(D_HA, "%s: async commit OSD\n", osd_dt_dev(d)->od_svname);
2420         down_read(&s->s_umount);
2421         rc = s->s_op->sync_fs(s, 0);
2422         up_read(&s->s_umount);
2423
2424         RETURN(rc);
2425 }
2426
2427 static int (*priv_security_file_alloc)(struct file *file);
2428
2429 int osd_security_file_alloc(struct file *file)
2430 {
2431         if (priv_security_file_alloc)
2432                 return priv_security_file_alloc(file);
2433         return 0;
2434 }
2435
2436 /*
2437  * Concurrency: shouldn't matter.
2438  */
2439 static int osd_ro(const struct lu_env *env, struct dt_device *d)
2440 {
2441         struct super_block *sb = osd_sb(osd_dt_dev(d));
2442         struct block_device *dev = sb->s_bdev;
2443         int rc = -EOPNOTSUPP;
2444
2445         ENTRY;
2446
2447         CERROR("%s: %lx CANNOT BE SET READONLY: rc = %d\n",
2448                osd_dt_dev(d)->od_svname, (long)dev, rc);
2449
2450         RETURN(rc);
2451 }
2452
2453 /**
2454  * Note: we do not count into QUOTA here.
2455  * If we mount with --data_journal we may need more.
2456  */
2457 const int osd_dto_credits_noquota[DTO_NR] = {
2458         /**
2459          * Insert.
2460          * INDEX_EXTRA_TRANS_BLOCKS(8) +
2461          * SINGLEDATA_TRANS_BLOCKS(8)
2462          * XXX Note: maybe iam need more, since iam have more level than
2463          *           EXT3 htree.
2464          */
2465         [DTO_INDEX_INSERT]  = 16,
2466         /**
2467          * Delete
2468          * just modify a single entry, probably merge few within a block
2469          */
2470         [DTO_INDEX_DELETE]  = 1,
2471         /**
2472          * Used for OI scrub
2473          */
2474         [DTO_INDEX_UPDATE]  = 16,
2475         /**
2476          * 4(inode, inode bits, groups, GDT)
2477          *   notice: OI updates are counted separately with DTO_INDEX_INSERT
2478          */
2479         [DTO_OBJECT_CREATE] = 4,
2480         /**
2481          * 4(inode, inode bits, groups, GDT)
2482          *   notice: OI updates are counted separately with DTO_INDEX_DELETE
2483          */
2484         [DTO_OBJECT_DELETE] = 4,
2485         /**
2486          * Attr set credits (inode)
2487          */
2488         [DTO_ATTR_SET_BASE] = 1,
2489         /**
2490          * Xattr set. The same as xattr of EXT3.
2491          * DATA_TRANS_BLOCKS(14)
2492          * XXX Note: in original MDS implmentation INDEX_EXTRA_TRANS_BLOCKS
2493          * are also counted in. Do not know why?
2494          */
2495         [DTO_XATTR_SET]     = 14,
2496         /**
2497          * credits for inode change during write.
2498          */
2499         [DTO_WRITE_BASE]    = 3,
2500         /**
2501          * credits for single block write.
2502          */
2503         [DTO_WRITE_BLOCK]   = 14,
2504         /**
2505          * Attr set credits for chown.
2506          * This is extra credits for setattr, and it is null without quota
2507          */
2508         [DTO_ATTR_SET_CHOWN] = 0
2509 };
2510
2511 static const struct dt_device_operations osd_dt_ops = {
2512         .dt_root_get       = osd_root_get,
2513         .dt_statfs         = osd_statfs,
2514         .dt_trans_create   = osd_trans_create,
2515         .dt_trans_start    = osd_trans_start,
2516         .dt_trans_stop     = osd_trans_stop,
2517         .dt_trans_cb_add   = osd_trans_cb_add,
2518         .dt_conf_get       = osd_conf_get,
2519         .dt_mnt_sb_get     = osd_mnt_sb_get,
2520         .dt_sync           = osd_sync,
2521         .dt_ro             = osd_ro,
2522         .dt_commit_async   = osd_commit_async,
2523 };
2524
2525 static void osd_read_lock(const struct lu_env *env, struct dt_object *dt,
2526                           unsigned int role)
2527 {
2528         struct osd_object *obj = osd_dt_obj(dt);
2529         struct osd_thread_info *oti = osd_oti_get(env);
2530
2531         LINVRNT(osd_invariant(obj));
2532
2533         LASSERT(obj->oo_owner != env);
2534         down_read_nested(&obj->oo_sem, role);
2535
2536         LASSERT(obj->oo_owner == NULL);
2537         oti->oti_r_locks++;
2538 }
2539
2540 static void osd_write_lock(const struct lu_env *env, struct dt_object *dt,
2541                            unsigned int role)
2542 {
2543         struct osd_object *obj = osd_dt_obj(dt);
2544         struct osd_thread_info *oti = osd_oti_get(env);
2545
2546         LINVRNT(osd_invariant(obj));
2547
2548         LASSERT(obj->oo_owner != env);
2549         down_write_nested(&obj->oo_sem, role);
2550
2551         LASSERT(obj->oo_owner == NULL);
2552         obj->oo_owner = env;
2553         oti->oti_w_locks++;
2554 }
2555
2556 static void osd_read_unlock(const struct lu_env *env, struct dt_object *dt)
2557 {
2558         struct osd_object *obj = osd_dt_obj(dt);
2559         struct osd_thread_info *oti = osd_oti_get(env);
2560
2561         LINVRNT(osd_invariant(obj));
2562
2563         LASSERT(oti->oti_r_locks > 0);
2564         oti->oti_r_locks--;
2565         up_read(&obj->oo_sem);
2566 }
2567
2568 static void osd_write_unlock(const struct lu_env *env, struct dt_object *dt)
2569 {
2570         struct osd_object *obj = osd_dt_obj(dt);
2571         struct osd_thread_info *oti = osd_oti_get(env);
2572
2573         LINVRNT(osd_invariant(obj));
2574
2575         LASSERT(obj->oo_owner == env);
2576         LASSERT(oti->oti_w_locks > 0);
2577         oti->oti_w_locks--;
2578         obj->oo_owner = NULL;
2579         up_write(&obj->oo_sem);
2580 }
2581
2582 static int osd_write_locked(const struct lu_env *env, struct dt_object *dt)
2583 {
2584         struct osd_object *obj = osd_dt_obj(dt);
2585
2586         LINVRNT(osd_invariant(obj));
2587
2588         return obj->oo_owner == env;
2589 }
2590
2591 static void osd_inode_getattr(const struct lu_env *env,
2592                               struct inode *inode, struct lu_attr *attr)
2593 {
2594         attr->la_valid  |= LA_ATIME | LA_MTIME | LA_CTIME | LA_MODE |
2595                            LA_SIZE | LA_BLOCKS | LA_UID | LA_GID |
2596                            LA_PROJID | LA_FLAGS | LA_NLINK | LA_RDEV |
2597                            LA_BLKSIZE | LA_TYPE | LA_BTIME;
2598
2599         attr->la_atime = inode->i_atime.tv_sec;
2600         attr->la_mtime = inode->i_mtime.tv_sec;
2601         attr->la_ctime = inode->i_ctime.tv_sec;
2602         attr->la_btime = LDISKFS_I(inode)->i_crtime.tv_sec;
2603         attr->la_mode    = inode->i_mode;
2604         attr->la_size    = i_size_read(inode);
2605         attr->la_blocks  = inode->i_blocks;
2606         attr->la_uid     = i_uid_read(inode);
2607         attr->la_gid     = i_gid_read(inode);
2608         attr->la_projid  = i_projid_read(inode);
2609         attr->la_flags   = ll_inode_to_ext_flags(inode->i_flags);
2610         attr->la_nlink   = inode->i_nlink;
2611         attr->la_rdev    = inode->i_rdev;
2612         attr->la_blksize = 1 << inode->i_blkbits;
2613         attr->la_blkbits = inode->i_blkbits;
2614         /*
2615          * Ext4 did not transfer inherit flags from raw inode
2616          * to inode flags, and ext4 internally test raw inode
2617          * @i_flags directly. Instead of patching ext4, we do it here.
2618          */
2619         if (LDISKFS_I(inode)->i_flags & LUSTRE_PROJINHERIT_FL)
2620                 attr->la_flags |= LUSTRE_PROJINHERIT_FL;
2621 }
2622
2623 static int osd_attr_get(const struct lu_env *env, struct dt_object *dt,
2624                         struct lu_attr *attr)
2625 {
2626         struct osd_object *obj = osd_dt_obj(dt);
2627
2628         if (unlikely(!dt_object_exists(dt)))
2629                 return -ENOENT;
2630         if (unlikely(obj->oo_destroyed))
2631                 return -ENOENT;
2632
2633         LASSERT(!dt_object_remote(dt));
2634         LINVRNT(osd_invariant(obj));
2635
2636         spin_lock(&obj->oo_guard);
2637         osd_inode_getattr(env, obj->oo_inode, attr);
2638         if (obj->oo_lma_flags & LUSTRE_ORPHAN_FL) {
2639                 attr->la_valid |= LA_FLAGS;
2640                 attr->la_flags |= LUSTRE_ORPHAN_FL;
2641         }
2642         spin_unlock(&obj->oo_guard);
2643
2644         return 0;
2645 }
2646
2647 static int osd_declare_attr_qid(const struct lu_env *env,
2648                                 struct osd_object *obj,
2649                                 struct osd_thandle *oh, long long bspace,
2650                                 qid_t old_id, qid_t new_id, bool enforce,
2651                                 unsigned int type, bool ignore_edquot)
2652 {
2653         int rc;
2654         struct osd_thread_info *info = osd_oti_get(env);
2655         struct lquota_id_info  *qi = &info->oti_qi;
2656
2657         qi->lqi_type = type;
2658         /* inode accounting */
2659         qi->lqi_is_blk = false;
2660
2661         /* one more inode for the new id ... */
2662         qi->lqi_id.qid_uid = new_id;
2663         qi->lqi_space      = 1;
2664         /* Reserve credits for the new id */
2665         rc = osd_declare_qid(env, oh, qi, NULL, enforce, NULL);
2666         if (ignore_edquot && (rc == -EDQUOT || rc == -EINPROGRESS))
2667                 rc = 0;
2668         if (rc)
2669                 RETURN(rc);
2670
2671         /* and one less inode for the current id */
2672         qi->lqi_id.qid_uid = old_id;
2673         qi->lqi_space = -1;
2674         rc = osd_declare_qid(env, oh, qi, obj, enforce, NULL);
2675         if (ignore_edquot && (rc == -EDQUOT || rc == -EINPROGRESS))
2676                 rc = 0;
2677         if (rc)
2678                 RETURN(rc);
2679
2680         /* block accounting */
2681         qi->lqi_is_blk = true;
2682
2683         /* more blocks for the new id ... */
2684         qi->lqi_id.qid_uid = new_id;
2685         qi->lqi_space      = bspace;
2686         /*
2687          * Credits for the new uid has been reserved, re-use "obj"
2688          * to save credit reservation.
2689          */
2690         rc = osd_declare_qid(env, oh, qi, obj, enforce, NULL);
2691         if (ignore_edquot && (rc == -EDQUOT || rc == -EINPROGRESS))
2692                 rc = 0;
2693         if (rc)
2694                 RETURN(rc);
2695
2696         /* and finally less blocks for the current uid */
2697         qi->lqi_id.qid_uid = old_id;
2698         qi->lqi_space      = -bspace;
2699         rc = osd_declare_qid(env, oh, qi, obj, enforce, NULL);
2700         if (ignore_edquot && (rc == -EDQUOT || rc == -EINPROGRESS))
2701                 rc = 0;
2702
2703         RETURN(rc);
2704 }
2705
2706 static int osd_declare_attr_set(const struct lu_env *env,
2707                                 struct dt_object *dt,
2708                                 const struct lu_attr *attr,
2709                                 struct thandle *handle)
2710 {
2711         struct osd_thandle *oh;
2712         struct osd_object *obj;
2713         qid_t uid;
2714         qid_t gid;
2715         long long bspace;
2716         int rc = 0;
2717         bool enforce;
2718
2719         ENTRY;
2720
2721         LASSERT(dt != NULL);
2722         LASSERT(handle != NULL);
2723
2724         obj = osd_dt_obj(dt);
2725         LASSERT(osd_invariant(obj));
2726
2727         oh = container_of0(handle, struct osd_thandle, ot_super);
2728         LASSERT(oh->ot_handle == NULL);
2729
2730         osd_trans_declare_op(env, oh, OSD_OT_ATTR_SET,
2731                              osd_dto_credits_noquota[DTO_ATTR_SET_BASE]);
2732
2733         osd_trans_declare_op(env, oh, OSD_OT_XATTR_SET,
2734                              osd_dto_credits_noquota[DTO_XATTR_SET]);
2735
2736         if (attr == NULL || obj->oo_inode == NULL)
2737                 RETURN(rc);
2738
2739         bspace   = obj->oo_inode->i_blocks << 9;
2740         bspace   = toqb(bspace);
2741
2742         /*
2743          * Changing ownership is always preformed by super user, it should not
2744          * fail with EDQUOT unless required explicitly.
2745          *
2746          * We still need to call the osd_declare_qid() to calculate the journal
2747          * credits for updating quota accounting files and to trigger quota
2748          * space adjustment once the operation is completed.
2749          */
2750         if (attr->la_valid & LA_UID || attr->la_valid & LA_GID) {
2751                 bool ignore_edquot = !(attr->la_flags & LUSTRE_SET_SYNC_FL);
2752
2753                 if (!ignore_edquot)
2754                         CDEBUG(D_QUOTA, "%s: enforce quota on UID %u, GID %u"
2755                                "(the quota space is %lld)\n",
2756                                obj->oo_inode->i_sb->s_id, attr->la_uid,
2757                                attr->la_gid, bspace);
2758
2759                 /* USERQUOTA */
2760                 uid = i_uid_read(obj->oo_inode);
2761                 enforce = (attr->la_valid & LA_UID) && (attr->la_uid != uid);
2762                 rc = osd_declare_attr_qid(env, obj, oh, bspace, uid,
2763                                           attr->la_uid, enforce, USRQUOTA,
2764                                           true);
2765                 if (rc)
2766                         RETURN(rc);
2767
2768                 gid = i_gid_read(obj->oo_inode);
2769                 CDEBUG(D_QUOTA, "declare uid %d -> %d gid %d -> %d\n", uid,
2770                        attr->la_uid, gid, attr->la_gid);
2771                 enforce = (attr->la_valid & LA_GID) && (attr->la_gid != gid);
2772                 rc = osd_declare_attr_qid(env, obj, oh, bspace, gid,
2773                                           attr->la_gid, enforce, GRPQUOTA,
2774                                           ignore_edquot);
2775                 if (rc)
2776                         RETURN(rc);
2777
2778         }
2779 #ifdef HAVE_PROJECT_QUOTA
2780         if (attr->la_valid & LA_PROJID) {
2781                 __u32 projid = i_projid_read(obj->oo_inode);
2782
2783                 enforce = (attr->la_valid & LA_PROJID) &&
2784                                         (attr->la_projid != projid);
2785                 rc = osd_declare_attr_qid(env, obj, oh, bspace,
2786                                           (qid_t)projid, (qid_t)attr->la_projid,
2787                                           enforce, PRJQUOTA, true);
2788                 if (rc)
2789                         RETURN(rc);
2790         }
2791 #endif
2792         RETURN(rc);
2793 }
2794
2795 static int osd_inode_setattr(const struct lu_env *env,
2796                              struct inode *inode, const struct lu_attr *attr)
2797 {
2798         __u64 bits = attr->la_valid;
2799
2800         /* Only allow set size for regular file */
2801         if (!S_ISREG(inode->i_mode))
2802                 bits &= ~(LA_SIZE | LA_BLOCKS);
2803
2804         if (bits == 0)
2805                 return 0;
2806
2807         if (bits & LA_ATIME)
2808                 inode->i_atime = osd_inode_time(inode, attr->la_atime);
2809         if (bits & LA_CTIME)
2810                 inode->i_ctime = osd_inode_time(inode, attr->la_ctime);
2811         if (bits & LA_MTIME)
2812                 inode->i_mtime = osd_inode_time(inode, attr->la_mtime);
2813         if (bits & LA_SIZE) {
2814                 spin_lock(&inode->i_lock);
2815                 LDISKFS_I(inode)->i_disksize = attr->la_size;
2816                 i_size_write(inode, attr->la_size);
2817                 spin_unlock(&inode->i_lock);
2818         }
2819
2820         /*
2821          * OSD should not change "i_blocks" which is used by quota.
2822          * "i_blocks" should be changed by ldiskfs only.
2823          */
2824         if (bits & LA_MODE)
2825                 inode->i_mode = (inode->i_mode & S_IFMT) |
2826                                 (attr->la_mode & ~S_IFMT);
2827         if (bits & LA_UID)
2828                 i_uid_write(inode, attr->la_uid);
2829         if (bits & LA_GID)
2830                 i_gid_write(inode, attr->la_gid);
2831         if (bits & LA_PROJID)
2832                 i_projid_write(inode, attr->la_projid);
2833         if (bits & LA_NLINK)
2834                 set_nlink(inode, attr->la_nlink);
2835         if (bits & LA_RDEV)
2836                 inode->i_rdev = attr->la_rdev;
2837
2838         if (bits & LA_FLAGS) {
2839                 /* always keep S_NOCMTIME */
2840                 inode->i_flags = ll_ext_to_inode_flags(attr->la_flags) |
2841                                  S_NOCMTIME;
2842                 /*
2843                  * Ext4 did not transfer inherit flags from
2844                  * @inode->i_flags to raw inode i_flags when writing
2845                  * flags, we do it explictly here.
2846                  */
2847                 if (attr->la_flags & LUSTRE_PROJINHERIT_FL)
2848                         LDISKFS_I(inode)->i_flags |= LUSTRE_PROJINHERIT_FL;
2849                 else
2850                         LDISKFS_I(inode)->i_flags &= ~LUSTRE_PROJINHERIT_FL;
2851         }
2852         return 0;
2853 }
2854
2855 #ifdef HAVE_PROJECT_QUOTA
2856 static int osd_transfer_project(struct inode *inode, __u32 projid)
2857 {
2858         struct super_block *sb = inode->i_sb;
2859         struct ldiskfs_inode_info *ei = LDISKFS_I(inode);
2860         int err;
2861         kprojid_t kprojid;
2862         struct ldiskfs_iloc iloc;
2863         struct ldiskfs_inode *raw_inode;
2864         struct dquot *transfer_to[LDISKFS_MAXQUOTAS] = { };
2865
2866         if (!ldiskfs_has_feature_project(sb)) {
2867                 LASSERT(__kprojid_val(LDISKFS_I(inode)->i_projid)
2868                         == LDISKFS_DEF_PROJID);
2869                 if (projid != LDISKFS_DEF_PROJID)
2870                         return -EOPNOTSUPP;
2871                 else
2872                         return 0;
2873         }
2874
2875         if (LDISKFS_INODE_SIZE(sb) <= LDISKFS_GOOD_OLD_INODE_SIZE)
2876                 return -EOPNOTSUPP;
2877
2878         kprojid = make_kprojid(&init_user_ns, (projid_t)projid);
2879         if (projid_eq(kprojid, LDISKFS_I(inode)->i_projid))
2880                 return 0;
2881
2882         err = ldiskfs_get_inode_loc(inode, &iloc);
2883         if (err)
2884                 return err;
2885
2886         raw_inode = ldiskfs_raw_inode(&iloc);
2887         if (!LDISKFS_FITS_IN_INODE(raw_inode, ei, i_projid)) {
2888                 err = -EOVERFLOW;
2889                 brelse(iloc.bh);
2890                 return err;
2891         }
2892         brelse(iloc.bh);
2893
2894         dquot_initialize(inode);
2895         transfer_to[PRJQUOTA] = dqget(sb, make_kqid_projid(kprojid));
2896         if (transfer_to[PRJQUOTA]) {
2897                 err = __dquot_transfer(inode, transfer_to);
2898                 dqput(transfer_to[PRJQUOTA]);
2899                 if (err)
2900                         return err;
2901         }
2902
2903         return err;
2904 }
2905 #endif
2906
2907 static int osd_quota_transfer(struct inode *inode, const struct lu_attr *attr)
2908 {
2909         int rc;
2910
2911         if ((attr->la_valid & LA_UID && attr->la_uid != i_uid_read(inode)) ||
2912             (attr->la_valid & LA_GID && attr->la_gid != i_gid_read(inode))) {
2913                 struct iattr iattr;
2914
2915                 CDEBUG(D_QUOTA,
2916                        "executing dquot_transfer inode %ld uid %d -> %d gid %d -> %d\n",
2917                        inode->i_ino, i_uid_read(inode), attr->la_uid,
2918                        i_gid_read(inode), attr->la_gid);
2919
2920                 dquot_initialize(inode);
2921                 iattr.ia_valid = 0;
2922                 if (attr->la_valid & LA_UID)
2923                         iattr.ia_valid |= ATTR_UID;
2924                 if (attr->la_valid & LA_GID)
2925                         iattr.ia_valid |= ATTR_GID;
2926                 iattr.ia_uid = make_kuid(&init_user_ns, attr->la_uid);
2927                 iattr.ia_gid = make_kgid(&init_user_ns, attr->la_gid);
2928
2929                 rc = dquot_transfer(inode, &iattr);
2930                 if (rc) {
2931                         CERROR("%s: quota transfer failed: rc = %d. Is quota "
2932                                "enforcement enabled on the ldiskfs "
2933                                "filesystem?\n", inode->i_sb->s_id, rc);
2934                         return rc;
2935                 }
2936         }
2937
2938         /* Handle project id transfer here properly */
2939         if (attr->la_valid & LA_PROJID &&
2940             attr->la_projid != i_projid_read(inode)) {
2941 #ifdef HAVE_PROJECT_QUOTA
2942                 rc = osd_transfer_project(inode, attr->la_projid);
2943 #else
2944                 rc = -ENOTSUPP;
2945 #endif
2946                 if (rc) {
2947                         CERROR("%s: quota transfer failed: rc = %d. Is project "
2948                                "enforcement enabled on the ldiskfs "
2949                                "filesystem?\n", inode->i_sb->s_id, rc);
2950                         return rc;
2951                 }
2952         }
2953         return 0;
2954 }
2955
2956 static int osd_attr_set(const struct lu_env *env,
2957                         struct dt_object *dt,
2958                         const struct lu_attr *attr,
2959                         struct thandle *handle)
2960 {
2961         struct osd_object *obj = osd_dt_obj(dt);
2962         struct inode *inode;
2963         int rc;
2964
2965         if (!dt_object_exists(dt))
2966                 return -ENOENT;
2967
2968         LASSERT(handle != NULL);
2969         LASSERT(!dt_object_remote(dt));
2970         LASSERT(osd_invariant(obj));
2971
2972         osd_trans_exec_op(env, handle, OSD_OT_ATTR_SET);
2973
2974         if (OBD_FAIL_CHECK(OBD_FAIL_OSD_FID_MAPPING) &&
2975             !osd_obj2dev(obj)->od_is_ost) {
2976                 struct osd_thread_info *oti = osd_oti_get(env);
2977                 const struct lu_fid *fid0 = lu_object_fid(&dt->do_lu);
2978                 struct lu_fid *fid1 = &oti->oti_fid;
2979                 struct osd_inode_id *id = &oti->oti_id;
2980                 struct iam_path_descr *ipd;
2981                 struct iam_container *bag;
2982                 struct osd_thandle *oh;
2983                 int rc;
2984
2985                 fid_cpu_to_be(fid1, fid0);
2986                 memset(id, 1, sizeof(*id));
2987                 bag = &osd_fid2oi(osd_dev(dt->do_lu.lo_dev),
2988                                   fid0)->oi_dir.od_container;
2989                 ipd = osd_idx_ipd_get(env, bag);
2990                 if (unlikely(ipd == NULL))
2991                         RETURN(-ENOMEM);
2992
2993                 oh = container_of0(handle, struct osd_thandle, ot_super);
2994                 rc = iam_update(oh->ot_handle, bag,
2995                                 (const struct iam_key *)fid1,
2996                                 (const struct iam_rec *)id, ipd);
2997                 osd_ipd_put(env, bag, ipd);
2998                 return(rc > 0 ? 0 : rc);
2999         }
3000
3001         inode = obj->oo_inode;
3002
3003         rc = osd_quota_transfer(inode, attr);
3004         if (rc)
3005                 return rc;
3006
3007         spin_lock(&obj->oo_guard);
3008         rc = osd_inode_setattr(env, inode, attr);
3009         spin_unlock(&obj->oo_guard);
3010         if (rc != 0)
3011                 GOTO(out, rc);
3012
3013         osd_dirty_inode(inode, I_DIRTY_DATASYNC);
3014
3015         osd_trans_exec_check(env, handle, OSD_OT_ATTR_SET);
3016
3017         if (!(attr->la_valid & LA_FLAGS))
3018                 GOTO(out, rc);
3019
3020         /* Let's check if there are extra flags need to be set into LMA */
3021         if (attr->la_flags & LUSTRE_LMA_FL_MASKS) {
3022                 struct osd_thread_info *info = osd_oti_get(env);
3023                 struct lustre_mdt_attrs *lma = &info->oti_ost_attrs.loa_lma;
3024
3025                 LASSERT(!obj->oo_pfid_in_lma);
3026
3027                 rc = osd_get_lma(info, inode, &info->oti_obj_dentry,
3028                                  &info->oti_ost_attrs);
3029                 if (rc)
3030                         GOTO(out, rc);
3031
3032                 lma->lma_incompat |=
3033                         lustre_to_lma_flags(attr->la_flags);
3034                 lustre_lma_swab(lma);
3035
3036                 osd_trans_exec_op(env, handle, OSD_OT_XATTR_SET);
3037
3038                 rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA,
3039                                      lma, sizeof(*lma), XATTR_REPLACE);
3040                 if (rc != 0) {
3041                         struct osd_device *osd = osd_obj2dev(obj);
3042
3043                         CWARN("%s: set "DFID" lma flags %u failed: rc = %d\n",
3044                               osd_name(osd), PFID(lu_object_fid(&dt->do_lu)),
3045                               lma->lma_incompat, rc);
3046                 } else {
3047                         obj->oo_lma_flags =
3048                                 attr->la_flags & LUSTRE_LMA_FL_MASKS;
3049                 }
3050                 osd_trans_exec_check(env, handle, OSD_OT_XATTR_SET);
3051         }
3052 out:
3053
3054         return rc;
3055 }
3056
3057 static struct dentry *osd_child_dentry_get(const struct lu_env *env,
3058                                            struct osd_object *obj,
3059                                            const char *name, const int namelen)
3060 {
3061         return osd_child_dentry_by_inode(env, obj->oo_inode, name, namelen);
3062 }
3063
3064 static int osd_mkfile(struct osd_thread_info *info, struct osd_object *obj,
3065                       umode_t mode, struct dt_allocation_hint *hint,
3066                       struct thandle *th, struct lu_attr *attr)
3067 {
3068         int result;
3069         struct osd_device *osd = osd_obj2dev(obj);
3070         struct osd_thandle *oth;
3071         struct dt_object *parent = NULL;
3072         struct inode *inode;
3073         uid_t owner[2] = {0, 0};
3074
3075         if (attr->la_valid & LA_UID)
3076                 owner[0] = attr->la_uid;
3077         if (attr->la_valid & LA_GID)
3078                 owner[1] = attr->la_gid;
3079
3080         LINVRNT(osd_invariant(obj));
3081         LASSERT(obj->oo_inode == NULL);
3082         LASSERT(obj->oo_hl_head == NULL);
3083
3084         if (S_ISDIR(mode) && ldiskfs_pdo) {
3085                 obj->oo_hl_head =
3086                         ldiskfs_htree_lock_head_alloc(HTREE_HBITS_DEF);
3087                 if (obj->oo_hl_head == NULL)
3088                         return -ENOMEM;
3089         }
3090
3091         oth = container_of(th, struct osd_thandle, ot_super);
3092         LASSERT(oth->ot_handle->h_transaction != NULL);
3093
3094         if (hint != NULL && hint->dah_parent != NULL &&
3095             !dt_object_remote(hint->dah_parent))
3096                 parent = hint->dah_parent;
3097
3098         inode = ldiskfs_create_inode(oth->ot_handle,
3099                                      parent ? osd_dt_obj(parent)->oo_inode :
3100                                               osd_sb(osd)->s_root->d_inode,
3101                                      mode, owner);
3102         if (!IS_ERR(inode)) {
3103                 /* Do not update file c/mtime in ldiskfs. */
3104                 inode->i_flags |= S_NOCMTIME;
3105
3106                 /*
3107                  * For new created object, it must be consistent,
3108                  * and it is unnecessary to scrub against it.
3109                  */
3110                 ldiskfs_set_inode_state(inode, LDISKFS_STATE_LUSTRE_NOSCRUB);
3111
3112                 obj->oo_inode = inode;
3113                 result = 0;
3114         } else {
3115                 if (obj->oo_hl_head != NULL) {
3116                         ldiskfs_htree_lock_head_free(obj->oo_hl_head);
3117                         obj->oo_hl_head = NULL;
3118                 }
3119                 result = PTR_ERR(inode);
3120         }
3121         LINVRNT(osd_invariant(obj));
3122         return result;
3123 }
3124
3125 enum {
3126         OSD_NAME_LEN = 255
3127 };
3128
3129 static int osd_mkdir(struct osd_thread_info *info, struct osd_object *obj,
3130                      struct lu_attr *attr,
3131                      struct dt_allocation_hint *hint,
3132                      struct dt_object_format *dof,
3133                      struct thandle *th)
3134 {
3135         int result;
3136         struct osd_thandle *oth;
3137         __u32 mode = (attr->la_mode & (S_IFMT | S_IRWXUGO | S_ISVTX | S_ISGID));
3138
3139         LASSERT(S_ISDIR(attr->la_mode));
3140
3141         oth = container_of(th, struct osd_thandle, ot_super);
3142         LASSERT(oth->ot_handle->h_transaction != NULL);
3143         result = osd_mkfile(info, obj, mode, hint, th, attr);
3144
3145         return result;
3146 }
3147
3148 static int osd_mk_index(struct osd_thread_info *info, struct osd_object *obj,
3149                         struct lu_attr *attr,
3150                         struct dt_allocation_hint *hint,
3151                         struct dt_object_format *dof,
3152                         struct thandle *th)
3153 {
3154         int result;
3155         struct osd_thandle *oth;
3156         const struct dt_index_features *feat = dof->u.dof_idx.di_feat;
3157
3158         __u32 mode = (attr->la_mode & (S_IFMT | S_IALLUGO | S_ISVTX));
3159
3160         LASSERT(S_ISREG(attr->la_mode));
3161
3162         oth = container_of(th, struct osd_thandle, ot_super);
3163         LASSERT(oth->ot_handle->h_transaction != NULL);
3164
3165         result = osd_mkfile(info, obj, mode, hint, th, attr);
3166         if (result == 0) {
3167                 LASSERT(obj->oo_inode != NULL);
3168                 if (feat->dif_flags & DT_IND_VARKEY)
3169                         result = iam_lvar_create(obj->oo_inode,
3170                                                  feat->dif_keysize_max,
3171                                                  feat->dif_ptrsize,
3172                                                  feat->dif_recsize_max,
3173                                                  oth->ot_handle);
3174                 else
3175                         result = iam_lfix_create(obj->oo_inode,
3176                                                  feat->dif_keysize_max,
3177                                                  feat->dif_ptrsize,
3178                                                  feat->dif_recsize_max,
3179                                                  oth->ot_handle);
3180         }
3181         return result;
3182 }
3183
3184 static int osd_mkreg(struct osd_thread_info *info, struct osd_object *obj,
3185                      struct lu_attr *attr,
3186                      struct dt_allocation_hint *hint,
3187                      struct dt_object_format *dof,
3188                      struct thandle *th)
3189 {
3190         LASSERT(S_ISREG(attr->la_mode));
3191         return osd_mkfile(info, obj, (attr->la_mode &
3192                          (S_IFMT | S_IALLUGO | S_ISVTX)), hint, th,
3193                           attr);
3194 }
3195
3196 static int osd_mksym(struct osd_thread_info *info, struct osd_object *obj,
3197                      struct lu_attr *attr,
3198                      struct dt_allocation_hint *hint,
3199                      struct dt_object_format *dof,
3200                      struct thandle *th)
3201 {
3202         LASSERT(S_ISLNK(attr->la_mode));
3203         return osd_mkfile(info, obj, (attr->la_mode &
3204                          (S_IFMT | S_IALLUGO | S_ISVTX)), hint, th,
3205                           attr);
3206 }
3207
3208 static int osd_mknod(struct osd_thread_info *info, struct osd_object *obj,
3209                      struct lu_attr *attr,
3210                      struct dt_allocation_hint *hint,
3211                      struct dt_object_format *dof,
3212                      struct thandle *th)
3213 {
3214         umode_t mode = attr->la_mode & (S_IFMT | S_IALLUGO | S_ISVTX);
3215         int result;
3216
3217         LINVRNT(osd_invariant(obj));
3218         LASSERT(obj->oo_inode == NULL);
3219         LASSERT(S_ISCHR(mode) || S_ISBLK(mode) ||
3220                 S_ISFIFO(mode) || S_ISSOCK(mode));
3221
3222         result = osd_mkfile(info, obj, mode, hint, th, attr);
3223         if (result == 0) {
3224                 LASSERT(obj->oo_inode != NULL);
3225                 /*
3226                  * This inode should be marked dirty for i_rdev.  Currently
3227                  * that is done in the osd_attr_init().
3228                  */
3229                 init_special_inode(obj->oo_inode, obj->oo_inode->i_mode,
3230                                    attr->la_rdev);
3231         }
3232         LINVRNT(osd_invariant(obj));
3233         return result;
3234 }
3235
3236 typedef int (*osd_obj_type_f)(struct osd_thread_info *, struct osd_object *,
3237                               struct lu_attr *,
3238                               struct dt_allocation_hint *hint,
3239                               struct dt_object_format *dof,
3240                               struct thandle *);
3241
3242 static osd_obj_type_f osd_create_type_f(enum dt_format_type type)
3243 {
3244         osd_obj_type_f result;
3245
3246         switch (type) {
3247         case DFT_DIR:
3248                 result = osd_mkdir;
3249                 break;
3250         case DFT_REGULAR:
3251                 result = osd_mkreg;
3252                 break;
3253         case DFT_SYM:
3254                 result = osd_mksym;
3255                 break;
3256         case DFT_NODE:
3257                 result = osd_mknod;
3258                 break;
3259         case DFT_INDEX:
3260                 result = osd_mk_index;
3261                 break;
3262
3263         default:
3264                 LBUG();
3265                 break;
3266         }
3267         return result;
3268 }
3269
3270
3271 static void osd_ah_init(const struct lu_env *env, struct dt_allocation_hint *ah,
3272                         struct dt_object *parent, struct dt_object *child,
3273                         umode_t child_mode)
3274 {
3275         LASSERT(ah);
3276
3277         ah->dah_parent = parent;
3278         ah->dah_mode = child_mode;
3279
3280         if (parent != NULL && !dt_object_remote(parent)) {
3281                 /* will help to find FID->ino at dt_insert("..") */
3282                 struct osd_object *pobj = osd_dt_obj(parent);
3283
3284                 osd_idc_find_and_init(env, osd_obj2dev(pobj), pobj);
3285         }
3286 }
3287
3288 static void osd_attr_init(struct osd_thread_info *info, struct osd_object *obj,
3289                           struct lu_attr *attr, struct dt_object_format *dof)
3290 {
3291         struct inode *inode = obj->oo_inode;
3292         __u64 valid = attr->la_valid;
3293         int result;
3294
3295         attr->la_valid &= ~(LA_TYPE | LA_MODE);
3296
3297         if (dof->dof_type != DFT_NODE)
3298                 attr->la_valid &= ~LA_RDEV;
3299         if ((valid & LA_ATIME) && (attr->la_atime == inode->i_atime.tv_sec))
3300                 attr->la_valid &= ~LA_ATIME;
3301         if ((valid & LA_CTIME) && (attr->la_ctime == inode->i_ctime.tv_sec))
3302                 attr->la_valid &= ~LA_CTIME;
3303         if ((valid & LA_MTIME) && (attr->la_mtime == inode->i_mtime.tv_sec))
3304                 attr->la_valid &= ~LA_MTIME;
3305
3306         result = osd_quota_transfer(inode, attr);
3307         if (result)
3308                 return;
3309
3310         if (attr->la_valid != 0) {
3311                 result = osd_inode_setattr(info->oti_env, inode, attr);
3312                 /*
3313                  * The osd_inode_setattr() should always succeed here.  The
3314                  * only error that could be returned is EDQUOT when we are
3315                  * trying to change the UID or GID of the inode. However, this
3316                  * should not happen since quota enforcement is no longer
3317                  * enabled on ldiskfs (lquota takes care of it).
3318                  */
3319                 LASSERTF(result == 0, "%d\n", result);
3320                 osd_dirty_inode(inode, I_DIRTY_DATASYNC);
3321         }
3322
3323         attr->la_valid = valid;
3324 }
3325
3326 /**
3327  * Helper function for osd_create()
3328  *
3329  * \retval 0, on success
3330  */
3331 static int __osd_create(struct osd_thread_info *info, struct osd_object *obj,
3332                         struct lu_attr *attr, struct dt_allocation_hint *hint,
3333                         struct dt_object_format *dof, struct thandle *th)
3334 {
3335         int result;
3336         __u32 umask;
3337
3338         osd_trans_exec_op(info->oti_env, th, OSD_OT_CREATE);
3339
3340         /* we drop umask so that permissions we pass are not affected */
3341         umask = current->fs->umask;
3342         current->fs->umask = 0;
3343
3344         result = osd_create_type_f(dof->dof_type)(info, obj, attr, hint, dof,
3345                                                   th);
3346         if (likely(obj->oo_inode != NULL)) {
3347                 LASSERT(obj->oo_inode->i_state & I_NEW);
3348
3349                 /*
3350                  * Unlock the inode before attr initialization to avoid
3351                  * unnecessary dqget operations. LU-6378
3352                  */
3353                 unlock_new_inode(obj->oo_inode);
3354         }
3355
3356         if (likely(result == 0)) {
3357                 osd_attr_init(info, obj, attr, dof);
3358                 osd_object_init0(obj);
3359         }
3360
3361         /* restore previous umask value */
3362         current->fs->umask = umask;
3363
3364         osd_trans_exec_check(info->oti_env, th, OSD_OT_CREATE);
3365
3366         return result;
3367 }
3368
3369 /**
3370  * Helper function for osd_create()
3371  *
3372  * \retval 0, on success
3373  */
3374 static int __osd_oi_insert(const struct lu_env *env, struct osd_object *obj,
3375                            const struct lu_fid *fid, struct thandle *th)
3376 {
3377         struct osd_thread_info *info = osd_oti_get(env);
3378         struct osd_inode_id    *id   = &info->oti_id;
3379         struct osd_device      *osd  = osd_obj2dev(obj);
3380         struct osd_thandle     *oh;
3381         int rc;
3382
3383         LASSERT(obj->oo_inode != NULL);
3384
3385         oh = container_of0(th, struct osd_thandle, ot_super);
3386         LASSERT(oh->ot_handle);
3387         osd_trans_exec_op(env, th, OSD_OT_INSERT);
3388
3389         osd_id_gen(id, obj->oo_inode->i_ino, obj->oo_inode->i_generation);
3390         rc = osd_oi_insert(info, osd, fid, id, oh->ot_handle,
3391                            OI_CHECK_FLD, NULL);
3392         if (CFS_FAIL_CHECK(OBD_FAIL_OSD_DUPLICATE_MAP) && osd->od_is_ost) {
3393                 struct lu_fid next_fid = *fid;
3394
3395                 /* insert next object in advance, and map to the same inode */
3396                 next_fid.f_oid++;
3397                 if (next_fid.f_oid != 0) {
3398                         osd_trans_exec_op(env, th, OSD_OT_INSERT);
3399                         osd_oi_insert(info, osd, &next_fid, id, oh->ot_handle,
3400                                       OI_CHECK_FLD, NULL);
3401                         osd_trans_exec_check(env, th, OSD_OT_INSERT);
3402                 }
3403         }
3404
3405         osd_trans_exec_check(env, th, OSD_OT_INSERT);
3406
3407         return rc;
3408 }
3409
3410 int osd_fld_lookup(const struct lu_env *env, struct osd_device *osd,
3411                    u64 seq, struct lu_seq_range *range)
3412 {
3413         struct seq_server_site *ss = osd_seq_site(osd);
3414
3415         if (fid_seq_is_idif(seq)) {
3416                 fld_range_set_ost(range);
3417                 range->lsr_index = idif_ost_idx(seq);
3418                 return 0;
3419         }
3420
3421         if (!fid_seq_in_fldb(seq)) {
3422                 fld_range_set_mdt(range);
3423                 if (ss != NULL)
3424                         /*
3425                          * FIXME: If ss is NULL, it suppose not get lsr_index
3426                          * at all
3427                          */
3428                         range->lsr_index = ss->ss_node_id;
3429                 return 0;
3430         }
3431
3432         LASSERT(ss != NULL);
3433         fld_range_set_any(range);
3434         /* OSD will only do local fld lookup */
3435         return fld_local_lookup(env, ss->ss_server_fld, seq, range);
3436 }
3437
3438 static int osd_declare_create(const struct lu_env *env, struct dt_object *dt,
3439                               struct lu_attr *attr,
3440                               struct dt_allocation_hint *hint,
3441                               struct dt_object_format *dof,
3442                               struct thandle *handle)
3443 {
3444         struct osd_thandle *oh;
3445         int rc;
3446
3447         ENTRY;
3448
3449         LASSERT(handle != NULL);
3450
3451         oh = container_of0(handle, struct osd_thandle, ot_super);
3452         LASSERT(oh->ot_handle == NULL);
3453
3454         /*
3455          * EA object consumes more credits than regular object: osd_mk_index
3456          * vs. osd_mkreg: osd_mk_index will create 2 blocks for root_node and
3457          * leaf_node, could involves the block, block bitmap, groups, GDT
3458          * change for each block, so add 4 * 2 credits in that case.
3459          */
3460         osd_trans_declare_op(env, oh, OSD_OT_CREATE,
3461                              osd_dto_credits_noquota[DTO_OBJECT_CREATE] +
3462                              (dof->dof_type == DFT_INDEX) ? 4 * 2 : 0);
3463         /*
3464          * Reuse idle OI block may cause additional one OI block
3465          * to be changed.
3466          */
3467         osd_trans_declare_op(env, oh, OSD_OT_INSERT,
3468                              osd_dto_credits_noquota[DTO_INDEX_INSERT] + 1);
3469         if (CFS_FAIL_CHECK(OBD_FAIL_OSD_DUPLICATE_MAP))
3470                 osd_trans_declare_op(env, oh, OSD_OT_INSERT,
3471                              osd_dto_credits_noquota[DTO_INDEX_INSERT] + 1);
3472
3473         /* will help to find FID->ino mapping at dt_insert() */
3474         rc = osd_idc_find_and_init(env, osd_obj2dev(osd_dt_obj(dt)),
3475                                    osd_dt_obj(dt));
3476         if (rc != 0)
3477                 RETURN(rc);
3478
3479         if (!attr)
3480                 RETURN(0);
3481
3482         rc = osd_declare_inode_qid(env, attr->la_uid, attr->la_gid,
3483                                    attr->la_projid, 1, oh, osd_dt_obj(dt),
3484                                    NULL, OSD_QID_INODE);
3485         if (rc != 0)
3486                 RETURN(rc);
3487
3488         RETURN(rc);
3489 }
3490
3491 /**
3492  * Called to destroy on-disk representation of the object
3493  *
3494  * Concurrency: must be locked
3495  */
3496 static int osd_declare_destroy(const struct lu_env *env, struct dt_object *dt,
3497                                struct thandle *th)
3498 {
3499         struct osd_object *obj = osd_dt_obj(dt);
3500         struct inode *inode = obj->oo_inode;
3501         struct osd_thandle *oh;
3502         int rc;
3503
3504         ENTRY;
3505
3506         if (inode == NULL)
3507                 RETURN(-ENOENT);
3508
3509         oh = container_of0(th, struct osd_thandle, ot_super);
3510         LASSERT(oh->ot_handle == NULL);
3511
3512         osd_trans_declare_op(env, oh, OSD_OT_DESTROY,
3513                              osd_dto_credits_noquota[DTO_OBJECT_DELETE]);
3514
3515         /* For removing agent entry */
3516         if (lu_object_has_agent_entry(&obj->oo_dt.do_lu))
3517                 oh->ot_credits += osd_dto_credits_noquota[DTO_INDEX_DELETE];
3518
3519         /*
3520          * Recycle idle OI leaf may cause additional three OI blocks
3521          * to be changed.
3522          */
3523         if (!OBD_FAIL_CHECK(OBD_FAIL_LFSCK_LOST_MDTOBJ2))
3524                 osd_trans_declare_op(env, oh, OSD_OT_DELETE,
3525                              osd_dto_credits_noquota[DTO_INDEX_DELETE] + 3);
3526         /* one less inode */
3527         rc = osd_declare_inode_qid(env, i_uid_read(inode), i_gid_read(inode),
3528                                    i_projid_read(inode), -1, oh, obj, NULL,
3529                                    OSD_QID_INODE);
3530         if (rc)
3531                 RETURN(rc);
3532         /* data to be truncated */
3533         rc = osd_declare_inode_qid(env, i_uid_read(inode), i_gid_read(inode),
3534                                    i_projid_read(inode), 0, oh, obj, NULL,
3535                                    OSD_QID_BLK);
3536         if (rc)
3537                 RETURN(rc);
3538
3539         /*
3540          * will help to find FID->ino when this object is being
3541          * added to PENDING
3542          */
3543         rc = osd_idc_find_and_init(env, osd_obj2dev(obj), obj);
3544
3545         RETURN(rc);
3546 }
3547
3548 static int osd_destroy(const struct lu_env *env, struct dt_object *dt,
3549                        struct thandle *th)
3550 {
3551         const struct lu_fid *fid = lu_object_fid(&dt->do_lu);
3552         struct osd_object *obj = osd_dt_obj(dt);
3553         struct inode *inode = obj->oo_inode;
3554         struct osd_device *osd = osd_obj2dev(obj);
3555         struct osd_thandle *oh;
3556         int result;
3557
3558         ENTRY;
3559
3560         oh = container_of0(th, struct osd_thandle, ot_super);
3561         LASSERT(oh->ot_handle);
3562         LASSERT(inode);
3563         LASSERT(!lu_object_is_dying(dt->do_lu.lo_header));
3564
3565         if (unlikely(fid_is_acct(fid)))
3566                 RETURN(-EPERM);
3567
3568         if (lu_object_has_agent_entry(&obj->oo_dt.do_lu)) {
3569                 result = osd_delete_from_remote_parent(env, osd, obj, oh, true);
3570                 if (result != 0)
3571                         CERROR("%s: remove agent entry "DFID": rc = %d\n",
3572                                osd_name(osd), PFID(fid), result);
3573         }
3574
3575         if (S_ISDIR(inode->i_mode)) {
3576                 LASSERT(osd_inode_unlinked(inode) || inode->i_nlink == 1 ||
3577                         inode->i_nlink == 2);
3578
3579                 spin_lock(&obj->oo_guard);
3580                 clear_nlink(inode);
3581                 spin_unlock(&obj->oo_guard);
3582                 osd_dirty_inode(inode, I_DIRTY_DATASYNC);
3583         }
3584
3585         osd_trans_exec_op(env, th, OSD_OT_DESTROY);
3586
3587         ldiskfs_set_inode_state(inode, LDISKFS_STATE_LUSTRE_DESTROY);
3588
3589         if (!OBD_FAIL_CHECK(OBD_FAIL_LFSCK_LOST_MDTOBJ2))
3590                 result = osd_oi_delete(osd_oti_get(env), osd, fid,
3591                                        oh->ot_handle, OI_CHECK_FLD);
3592
3593         osd_trans_exec_check(env, th, OSD_OT_DESTROY);
3594         /* XXX: add to ext3 orphan list */
3595         /* rc = ext3_orphan_add(handle_t *handle, struct inode *inode) */
3596
3597         /* not needed in the cache anymore */
3598         set_bit(LU_OBJECT_HEARD_BANSHEE, &dt->do_lu.lo_header->loh_flags);
3599         obj->oo_destroyed = 1;
3600
3601         RETURN(0);
3602 }
3603
3604 /**
3605  * Put the fid into lustre_mdt_attrs, and then place the structure
3606  * inode's ea. This fid should not be altered during the life time
3607  * of the inode.
3608  *
3609  * \retval +ve, on success
3610  * \retval -ve, on error
3611  *
3612  * FIXME: It is good to have/use ldiskfs_xattr_set_handle() here
3613  */
3614 int osd_ea_fid_set(struct osd_thread_info *info, struct inode *inode,
3615                    const struct lu_fid *fid, __u32 compat, __u32 incompat)
3616 {
3617         struct lustre_ost_attrs *loa = &info->oti_ost_attrs;
3618         struct lustre_mdt_attrs *lma = &loa->loa_lma;
3619         int rc;
3620
3621         ENTRY;
3622
3623         if (OBD_FAIL_CHECK(OBD_FAIL_FID_INLMA))
3624                 RETURN(0);
3625
3626         if (OBD_FAIL_CHECK(OBD_FAIL_OSD_OST_EA_FID_SET))
3627                 rc = -ENOMEM;
3628
3629         lustre_loa_init(loa, fid, compat, incompat);
3630         lustre_loa_swab(loa, false);
3631
3632         /*
3633          * For the OST device with 256 bytes inode size by default,
3634          * the PFID EA will be stored together with LMA EA to avoid
3635          * performance trouble. Otherwise the PFID EA can be stored
3636          * independently. LU-8998
3637          */
3638         if ((compat & LMAC_FID_ON_OST) &&
3639             LDISKFS_INODE_SIZE(inode->i_sb) <= 256)
3640                 rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA, loa,
3641                                      sizeof(*loa), XATTR_CREATE);
3642         else
3643                 rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA, lma,
3644                                      sizeof(*lma), XATTR_CREATE);
3645         /*
3646          * LMA may already exist, but we need to check that all the
3647          * desired compat/incompat flags have been added.
3648          */
3649         if (unlikely(rc == -EEXIST)) {
3650                 rc = __osd_xattr_get(inode, &info->oti_obj_dentry,
3651                                      XATTR_NAME_LMA, (void *)loa, sizeof(*loa));
3652                 if (rc < 0)
3653                         RETURN(rc);
3654
3655                 if (rc < sizeof(*lma))
3656                         RETURN(-EINVAL);
3657
3658                 lustre_loa_swab(loa, true);
3659                 if (lu_fid_eq(fid, &lma->lma_self_fid) &&
3660                     ((compat == 0 && incompat == 0) ||
3661                      (!(~lma->lma_compat & compat) &&
3662                       !(~lma->lma_incompat & incompat))))
3663                         RETURN(0);
3664
3665                 lma->lma_self_fid = *fid;
3666                 lma->lma_compat |= compat;
3667                 lma->lma_incompat |= incompat;
3668                 if (rc == sizeof(*lma)) {
3669                         lustre_lma_swab(lma);
3670                         rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA, lma,
3671                                              sizeof(*lma), XATTR_REPLACE);
3672                 } else {
3673                         lustre_loa_swab(loa, false);
3674                         rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA, loa,
3675                                              sizeof(*loa), XATTR_REPLACE);
3676                 }
3677         }
3678
3679         RETURN(rc);
3680 }
3681
3682 /**
3683  * ldiskfs supports fid in dirent, it is passed in dentry->d_fsdata.
3684  * lustre 1.8 also uses d_fsdata for passing other info to ldiskfs.
3685  * To have compatilibility with 1.8 ldiskfs driver we need to have
3686  * magic number at start of fid data.
3687  * \ldiskfs_dentry_param is used only to pass fid from osd to ldiskfs.
3688  * its inmemory API.
3689  */
3690 static void osd_get_ldiskfs_dirent_param(struct ldiskfs_dentry_param *param,
3691                                          const struct lu_fid *fid)
3692 {
3693         if (!fid_is_namespace_visible(fid) ||
3694             OBD_FAIL_CHECK(OBD_FAIL_FID_IGIF)) {
3695                 param->edp_magic = 0;
3696                 return;
3697         }
3698
3699         param->edp_magic = LDISKFS_LUFID_MAGIC;
3700         param->edp_len =  sizeof(struct lu_fid) + 1;
3701         fid_cpu_to_be((struct lu_fid *)param->edp_data, (struct lu_fid *)fid);
3702 }
3703
3704 /**
3705  * Try to read the fid from inode ea into dt_rec.
3706  *
3707  * \param fid object fid.
3708  *
3709  * \retval 0 on success
3710  */
3711 static int osd_ea_fid_get(const struct lu_env *env, struct osd_object *obj,
3712                           __u32 ino, struct lu_fid *fid,
3713                           struct osd_inode_id *id)
3714 {
3715         struct osd_thread_info *info  = osd_oti_get(env);
3716         struct inode *inode;
3717
3718         ENTRY;
3719
3720         osd_id_gen(id, ino, OSD_OII_NOGEN);
3721         inode = osd_iget_fid(info, osd_obj2dev(obj), id, fid);
3722         if (IS_ERR(inode))
3723                 RETURN(PTR_ERR(inode));
3724
3725         iput(inode);
3726         RETURN(0);
3727 }
3728
3729 static int osd_add_dot_dotdot_internal(struct osd_thread_info *info,
3730                                         struct inode *dir,
3731                                         struct inode *parent_dir,
3732                                         const struct lu_fid *dot_fid,
3733                                         const struct lu_fid *dot_dot_fid,
3734                                         struct osd_thandle *oth)
3735 {
3736         struct ldiskfs_dentry_param *dot_ldp;
3737         struct ldiskfs_dentry_param *dot_dot_ldp;
3738         __u32 saved_nlink = dir->i_nlink;
3739         int rc;
3740
3741         dot_dot_ldp = (struct ldiskfs_dentry_param *)info->oti_ldp2;
3742         osd_get_ldiskfs_dirent_param(dot_dot_ldp, dot_dot_fid);
3743
3744         dot_ldp = (struct ldiskfs_dentry_param *)info->oti_ldp;
3745         dot_ldp->edp_magic = 0;
3746
3747         rc = ldiskfs_add_dot_dotdot(oth->ot_handle, parent_dir,
3748                                     dir, dot_ldp, dot_dot_ldp);
3749         /*
3750          * The ldiskfs_add_dot_dotdot() may dir->i_nlink as 2, then
3751          * the subseqent ref_add() will increase the dir->i_nlink
3752          * as 3. That is incorrect for new created directory.
3753          *
3754          * It looks like hack, because we want to make the OSD API
3755          * to be order-independent for new created directory object
3756          * between dt_insert(..) and ref_add() operations.
3757          *
3758          * Here, we only restore the in-RAM dir-inode's nlink attr,
3759          * becuase if the nlink attr is not 2, then there will be
3760          * ref_add() called following the dt_insert(..), such call
3761          * will make both the in-RAM and on-disk dir-inode's nlink
3762          * attr to be set as 2. LU-7447
3763          */
3764         set_nlink(dir, saved_nlink);
3765         return rc;
3766 }
3767
3768 /**
3769  * Create an local agent inode for remote entry
3770  */
3771 static struct inode *osd_create_local_agent_inode(const struct lu_env *env,
3772                                                   struct osd_device *osd,
3773                                                   struct osd_object *pobj,
3774                                                   const struct lu_fid *fid,
3775                                                   __u32 type,
3776                                                   struct thandle *th)
3777 {
3778         struct osd_thread_info *info = osd_oti_get(env);
3779         struct inode *local;
3780         struct osd_thandle *oh;
3781         int rc;
3782
3783         ENTRY;
3784
3785         LASSERT(th);
3786         oh = container_of(th, struct osd_thandle, ot_super);
3787         LASSERT(oh->ot_handle->h_transaction != NULL);
3788
3789         local = ldiskfs_create_inode(oh->ot_handle, pobj->oo_inode, type,
3790                                      NULL);
3791         if (IS_ERR(local)) {
3792                 CERROR("%s: create local error %d\n", osd_name(osd),
3793                        (int)PTR_ERR(local));
3794                 RETURN(local);
3795         }
3796
3797         /*
3798          * restore i_gid in case S_ISGID is set, we will inherit S_ISGID and set
3799          * correct gid on remote file, not agent here
3800          */
3801         local->i_gid = current_fsgid();
3802         ldiskfs_set_inode_state(local, LDISKFS_STATE_LUSTRE_NOSCRUB);
3803
3804         /* e2fsck doesn't like empty symlinks.  Store remote FID as symlink.
3805          * That gives e2fsck something to look at and be happy, and allows
3806          * debugging if we need to determine where this symlink came from.
3807          */
3808         if (S_ISLNK(type)) {
3809                 BUILD_BUG_ON(LDISKFS_N_BLOCKS * 4 < FID_LEN + 1);
3810                 rc = snprintf((char *)LDISKFS_I(local)->i_data,
3811                               LDISKFS_N_BLOCKS * 4, DFID, PFID(fid));
3812
3813                 i_size_write(local, rc);
3814                 LDISKFS_I(local)->i_disksize = rc;
3815         }
3816         unlock_new_inode(local);
3817
3818         /* Agent inode should not have project ID */
3819 #ifdef  HAVE_PROJECT_QUOTA
3820         if (LDISKFS_I(pobj->oo_inode)->i_flags & LUSTRE_PROJINHERIT_FL &&
3821             i_projid_read(pobj->oo_inode) != 0) {
3822                 rc = osd_transfer_project(local, 0);
3823                 if (rc) {
3824                         CERROR("%s: quota transfer failed: rc = %d. Is project "
3825                                "quota enforcement enabled on the ldiskfs "
3826                                "filesystem?\n", local->i_sb->s_id, rc);
3827                         RETURN(ERR_PTR(rc));
3828                 }
3829         }
3830 #endif
3831         /* Set special LMA flag for local agent inode */
3832         rc = osd_ea_fid_set(info, local, fid, 0, LMAI_AGENT);
3833         if (rc != 0) {
3834                 CERROR("%s: set LMA for "DFID" remote inode failed: rc = %d\n",
3835                        osd_name(osd), PFID(fid), rc);
3836                 RETURN(ERR_PTR(rc));
3837         }
3838
3839         if (!S_ISDIR(type))
3840                 RETURN(local);
3841
3842         rc = osd_add_dot_dotdot_internal(info, local, pobj->oo_inode,
3843                                          lu_object_fid(&pobj->oo_dt.do_lu),
3844                                          fid, oh);
3845         if (rc != 0) {
3846                 CERROR("%s: "DFID" add dot dotdot error: rc = %d\n",
3847                         osd_name(osd), PFID(fid), rc);
3848                 RETURN(ERR_PTR(rc));
3849         }
3850
3851         RETURN(local);
3852 }
3853
3854 /**
3855  * when direntry is deleted, we have to take care of possible agent inode
3856  * referenced by that. unfortunately we can't do this at that point:
3857  * iget() within a running transaction leads to deadlock and we better do
3858  * not call that every delete declaration to save performance. so we put
3859  * a potention agent inode on a list and process that once the transaction
3860  * is over. Notice it's not any worse in terms of real orphans as regular
3861  * object destroy doesn't put inodes on the on-disk orphan list. this should
3862  * be addressed separately
3863  */
3864 static int osd_schedule_agent_inode_removal(const struct lu_env *env,
3865                                             struct osd_thandle *oh,
3866                                             __u32 ino)
3867 {
3868         struct osd_device *osd = osd_dt_dev(oh->ot_super.th_dev);
3869         struct osd_obj_orphan *oor;
3870
3871         OBD_ALLOC_PTR(oor);
3872         if (oor == NULL)
3873                 return -ENOMEM;
3874
3875         oor->oor_ino = ino;
3876         oor->oor_env = (struct lu_env *)env;
3877         spin_lock(&osd->od_osfs_lock);
3878         list_add(&oor->oor_list, &osd->od_orphan_list);
3879         spin_unlock(&osd->od_osfs_lock);
3880
3881         oh->ot_remove_agents = 1;
3882
3883         return 0;
3884
3885 }
3886
3887 static int osd_process_scheduled_agent_removals(const struct lu_env *env,
3888                                                 struct osd_device *osd)
3889 {
3890         struct osd_thread_info *info = osd_oti_get(env);
3891         struct osd_obj_orphan *oor, *tmp;
3892         struct osd_inode_id id;
3893         LIST_HEAD(list);
3894         struct inode *inode;
3895         struct lu_fid fid;
3896         handle_t *jh;
3897         __u32 ino;
3898
3899         spin_lock(&osd->od_osfs_lock);
3900         list_for_each_entry_safe(oor, tmp, &osd->od_orphan_list, oor_list) {
3901                 if (oor->oor_env == env)
3902                         list_move(&oor->oor_list, &list);
3903         }
3904         spin_unlock(&osd->od_osfs_lock);
3905
3906         list_for_each_entry_safe(oor, tmp, &list, oor_list) {
3907
3908                 ino = oor->oor_ino;
3909
3910                 list_del(&oor->oor_list);
3911                 OBD_FREE_PTR(oor);
3912
3913                 osd_id_gen(&id, ino, OSD_OII_NOGEN);
3914                 inode = osd_iget_fid(info, osd, &id, &fid);
3915                 if (IS_ERR(inode))
3916                         continue;
3917
3918                 if (!osd_remote_fid(env, osd, &fid)) {
3919                         iput(inode);
3920                         continue;
3921                 }
3922
3923                 jh = osd_journal_start_sb(osd_sb(osd), LDISKFS_HT_MISC, 1);
3924                 clear_nlink(inode);
3925                 mark_inode_dirty(inode);
3926                 ldiskfs_journal_stop(jh);
3927                 iput(inode);
3928         }
3929
3930         return 0;
3931 }
3932
3933 /**
3934  * OSD layer object create function for OST objects (b=11826).
3935  *
3936  * The FID is inserted into inode xattr here.
3937  *
3938  * \retval   0, on success
3939  * \retval -ve, on error
3940  */
3941 static int osd_create(const struct lu_env *env, struct dt_object *dt,
3942                       struct lu_attr *attr, struct dt_allocation_hint *hint,
3943                       struct dt_object_format *dof, struct thandle *th)
3944 {
3945         const struct lu_fid *fid = lu_object_fid(&dt->do_lu);
3946         struct osd_object *obj = osd_dt_obj(dt);
3947         struct osd_thread_info *info = osd_oti_get(env);
3948         int result, on_ost = 0;
3949
3950         ENTRY;
3951
3952         if (dt_object_exists(dt))
3953                 RETURN(-EEXIST);
3954
3955         LINVRNT(osd_invariant(obj));
3956         LASSERT(!dt_object_remote(dt));
3957         LASSERT(osd_is_write_locked(env, obj));
3958         LASSERT(th != NULL);
3959
3960         if (unlikely(fid_is_acct(fid)))
3961                 /*
3962                  * Quota files can't be created from the kernel any more,
3963                  * 'tune2fs -O quota' will take care of creating them
3964                  */
3965                 RETURN(-EPERM);
3966
3967         result = __osd_create(info, obj, attr, hint, dof, th);
3968         if (result == 0) {
3969                 if (fid_is_idif(fid) &&
3970                     !osd_dev(dt->do_lu.lo_dev)->od_index_in_idif) {
3971                         struct lu_fid *tfid = &info->oti_fid;
3972                         struct ost_id *oi   = &info->oti_ostid;
3973
3974                         fid_to_ostid(fid, oi);
3975                         ostid_to_fid(tfid, oi, 0);
3976                         on_ost = 1;
3977                         result = osd_ea_fid_set(info, obj->oo_inode, tfid,
3978                                                 LMAC_FID_ON_OST, 0);
3979                 } else {
3980                         on_ost = fid_is_on_ost(info, osd_obj2dev(obj),
3981                                                fid, OI_CHECK_FLD);
3982                         result = osd_ea_fid_set(info, obj->oo_inode, fid,
3983                                                 on_ost ? LMAC_FID_ON_OST : 0,
3984                                                 0);
3985                 }
3986                 if (obj->oo_dt.do_body_ops == &osd_body_ops_new)
3987                         obj->oo_dt.do_body_ops = &osd_body_ops;
3988         }
3989
3990         if (!result && !CFS_FAIL_CHECK(OBD_FAIL_OSD_NO_OI_ENTRY))
3991                 result = __osd_oi_insert(env, obj, fid, th);
3992
3993         /*
3994          * a small optimization - dt_insert() isn't usually applied
3995          * to OST objects, so we don't need to cache OI mapping for
3996          * OST objects
3997          */
3998         if (result == 0 && on_ost == 0) {
3999                 struct osd_device *osd = osd_dev(dt->do_lu.lo_dev);
4000
4001                 result = osd_idc_find_and_init(env, osd, obj);
4002                 LASSERT(result == 0);
4003         }
4004
4005         LASSERT(ergo(result == 0,
4006                      dt_object_exists(dt) && !dt_object_remote(dt)));
4007         LINVRNT(osd_invariant(obj));
4008         RETURN(result);
4009 }
4010
4011 static int osd_declare_ref_add(const struct lu_env *env, struct dt_object *dt,
4012                                struct thandle *handle)
4013 {
4014         struct osd_thandle *oh;
4015
4016         /* it's possible that object doesn't exist yet */
4017         LASSERT(handle != NULL);
4018
4019         oh = container_of0(handle, struct osd_thandle, ot_super);
4020         LASSERT(oh->ot_handle == NULL);
4021
4022         osd_trans_declare_op(env, oh, OSD_OT_REF_ADD,
4023                              osd_dto_credits_noquota[DTO_ATTR_SET_BASE]);
4024
4025         osd_idc_find_and_init(env, osd_dev(dt->do_lu.lo_dev), osd_dt_obj(dt));
4026
4027         return 0;
4028 }
4029
4030 /*
4031  * Concurrency: @dt is write locked.
4032  */
4033 static int osd_ref_add(const struct lu_env *env, struct dt_object *dt,
4034                        struct thandle *th)
4035 {
4036         struct osd_object *obj = osd_dt_obj(dt);
4037         struct inode *inode = obj->oo_inode;
4038         struct osd_thandle *oh;
4039         int rc = 0;
4040
4041         if (!dt_object_exists(dt) || obj->oo_destroyed)
4042                 return -ENOENT;
4043
4044         LINVRNT(osd_invariant(obj));
4045         LASSERT(!dt_object_remote(dt));
4046         LASSERT(osd_is_write_locked(env, obj));
4047         LASSERT(th != NULL);
4048
4049         oh = container_of0(th, struct osd_thandle, ot_super);
4050         LASSERT(oh->ot_handle != NULL);
4051
4052         osd_trans_exec_op(env, th, OSD_OT_REF_ADD);
4053
4054         CDEBUG(D_INODE, DFID" increase nlink %d\n",
4055                PFID(lu_object_fid(&dt->do_lu)), inode->i_nlink);
4056         /*
4057          * The DIR_NLINK feature allows directories to exceed LDISKFS_LINK_MAX
4058          * (65000) subdirectories by storing "1" in i_nlink if the link count
4059          * would otherwise overflow. Directory tranversal tools understand
4060          * that (st_nlink == 1) indicates that the filesystem dose not track
4061          * hard links count on the directory, and will not abort subdirectory
4062          * scanning early once (st_nlink - 2) subdirs have been found.
4063          *
4064          * This also has to properly handle the case of inodes with nlink == 0
4065          * in case they are being linked into the PENDING directory
4066          */
4067         spin_lock(&obj->oo_guard);
4068         if (unlikely(inode->i_nlink == 0))
4069                 /* inc_nlink from 0 may cause WARN_ON */
4070                 set_nlink(inode, 1);
4071         else {
4072                 ldiskfs_inc_count(oh->ot_handle, inode);
4073                 if (!S_ISDIR(inode->i_mode))
4074                         LASSERT(inode->i_nlink <= LDISKFS_LINK_MAX);
4075         }
4076         spin_unlock(&obj->oo_guard);
4077
4078         osd_dirty_inode(inode, I_DIRTY_DATASYNC);
4079         LINVRNT(osd_invariant(obj));
4080
4081         osd_trans_exec_check(env, th, OSD_OT_REF_ADD);
4082
4083         return rc;
4084 }
4085
4086 static int osd_declare_ref_del(const struct lu_env *env, struct dt_object *dt,
4087                                struct thandle *handle)
4088 {
4089         struct osd_thandle *oh;
4090
4091         if (!dt_object_exists(dt))
4092                 return -ENOENT;
4093
4094         LASSERT(!dt_object_remote(dt));
4095         LASSERT(handle != NULL);
4096
4097         oh = container_of0(handle, struct osd_thandle, ot_super);
4098         LASSERT(oh->ot_handle == NULL);
4099
4100         osd_trans_declare_op(env, oh, OSD_OT_REF_DEL,
4101                              osd_dto_credits_noquota[DTO_ATTR_SET_BASE]);
4102
4103         return 0;
4104 }
4105
4106 /*
4107  * Concurrency: @dt is write locked.
4108  */
4109 static int osd_ref_del(const struct lu_env *env, struct dt_object *dt,
4110                        struct thandle *th)
4111 {
4112         struct osd_object *obj = osd_dt_obj(dt);
4113         struct inode *inode = obj->oo_inode;
4114         struct osd_device *osd = osd_dev(dt->do_lu.lo_dev);
4115         struct osd_thandle *oh;
4116
4117         if (!dt_object_exists(dt))
4118                 return -ENOENT;
4119
4120         LINVRNT(osd_invariant(obj));
4121         LASSERT(!dt_object_remote(dt));
4122         LASSERT(osd_is_write_locked(env, obj));
4123         LASSERT(th != NULL);
4124
4125         oh = container_of0(th, struct osd_thandle, ot_super);
4126         LASSERT(oh->ot_handle != NULL);
4127
4128         osd_trans_exec_op(env, th, OSD_OT_REF_DEL);
4129
4130         spin_lock(&obj->oo_guard);
4131         /*
4132          * That can be result of upgrade from old Lustre version and
4133          * applied only to local files.  Just skip this ref_del call.
4134          * ext4_unlink() only treats this as a warning, don't LASSERT here.
4135          */
4136         if (inode->i_nlink == 0) {
4137                 CDEBUG_LIMIT(fid_is_norm(lu_object_fid(&dt->do_lu)) ?
4138                              D_ERROR : D_INODE, "%s: nlink == 0 on "DFID
4139                              ", maybe an upgraded file? (LU-3915)\n",
4140                              osd_name(osd), PFID(lu_object_fid(&dt->do_lu)));
4141                 spin_unlock(&obj->oo_guard);
4142                 return 0;
4143         }
4144
4145         CDEBUG(D_INODE, DFID" decrease nlink %d\n",
4146                PFID(lu_object_fid(&dt->do_lu)), inode->i_nlink);
4147
4148         ldiskfs_dec_count(oh->ot_handle, inode);
4149         spin_unlock(&obj->oo_guard);
4150
4151         osd_dirty_inode(inode, I_DIRTY_DATASYNC);
4152         LINVRNT(osd_invariant(obj));
4153
4154         osd_trans_exec_check(env, th, OSD_OT_REF_DEL);
4155
4156         return 0;
4157 }
4158
4159 /*
4160  * Concurrency: @dt is read locked.
4161  */
4162 static int osd_xattr_get(const struct lu_env *env, struct dt_object *dt,
4163                          struct lu_buf *buf, const char *name)
4164 {
4165         struct osd_object      *obj    = osd_dt_obj(dt);
4166         struct inode           *inode  = obj->oo_inode;
4167         struct osd_thread_info *info   = osd_oti_get(env);
4168         struct dentry          *dentry = &info->oti_obj_dentry;
4169         bool cache_xattr = false;
4170         int rc;
4171
4172         LASSERT(buf);
4173
4174         /* version get is not real XATTR but uses xattr API */
4175         if (strcmp(name, XATTR_NAME_VERSION) == 0) {
4176                 dt_obj_version_t *ver = buf->lb_buf;
4177
4178                 /*
4179                  * for version we are just using xattr API but change inode
4180                  * field instead
4181                  */
4182                 if (buf->lb_len == 0)
4183                         return sizeof(dt_obj_version_t);
4184
4185                 if (buf->lb_len < sizeof(dt_obj_version_t))
4186                         return -ERANGE;
4187
4188                 CDEBUG(D_INODE, "Get version %#llx for inode %lu\n",
4189                        LDISKFS_I(inode)->i_fs_version, inode->i_ino);
4190
4191                 *ver = LDISKFS_I(inode)->i_fs_version;
4192
4193                 return sizeof(dt_obj_version_t);
4194         }
4195
4196         if (!dt_object_exists(dt))
4197                 return -ENOENT;
4198
4199         LASSERT(!dt_object_remote(dt));
4200         LASSERT(inode->i_op != NULL);
4201 #ifdef HAVE_IOP_XATTR
4202         LASSERT(inode->i_op->getxattr != NULL);
4203 #endif
4204
4205         if (strcmp(name, XATTR_NAME_LOV) == 0 ||
4206             strcmp(name, XATTR_NAME_DEFAULT_LMV) == 0)
4207                 cache_xattr = true;
4208
4209         if (cache_xattr) {
4210                 rc = osd_oxc_get(obj, name, buf);
4211                 if (rc != -ENOENT)
4212                         return rc;
4213         }
4214
4215         if (strcmp(name, XATTR_NAME_FID) == 0 && obj->oo_pfid_in_lma) {
4216                 struct lustre_ost_attrs *loa = &info->oti_ost_attrs;
4217                 struct lustre_mdt_attrs *lma = &loa->loa_lma;
4218                 struct filter_fid *ff;
4219                 struct ost_layout *ol;
4220
4221                 rc = osd_get_lma(info, inode, &info->oti_obj_dentry, loa);
4222                 if (rc)
4223                         return rc;
4224
4225                 LASSERT(lma->lma_compat & LMAC_STRIPE_INFO);
4226
4227                 rc = sizeof(*ff);
4228                 if (buf->lb_len == 0 || !buf->lb_buf)
4229                         return rc;
4230
4231                 if (buf->lb_len < rc)
4232                         return -ERANGE;
4233
4234                 ff = buf->lb_buf;
4235                 ol = &ff->ff_layout;
4236                 ol->ol_stripe_count = cpu_to_le32(loa->loa_parent_fid.f_ver >>
4237                                                   PFID_STRIPE_IDX_BITS);
4238                 ol->ol_stripe_size = cpu_to_le32(loa->loa_stripe_size);
4239                 loa->loa_parent_fid.f_ver &= PFID_STRIPE_COUNT_MASK;
4240                 fid_cpu_to_le(&ff->ff_parent, &loa->loa_parent_fid);
4241                 if (lma->lma_compat & LMAC_COMP_INFO) {
4242                         ol->ol_comp_start = cpu_to_le64(loa->loa_comp_start);
4243                         ol->ol_comp_end = cpu_to_le64(loa->loa_comp_end);
4244                         ol->ol_comp_id = cpu_to_le32(loa->loa_comp_id);
4245                 } else {
4246                         ol->ol_comp_start = 0;
4247                         ol->ol_comp_end = 0;
4248                         ol->ol_comp_id = 0;
4249                 }
4250         } else {
4251                 rc = __osd_xattr_get(inode, dentry, name,
4252                                      buf->lb_buf, buf->lb_len);
4253         }
4254
4255         if (cache_xattr) {
4256                 if (rc == -ENOENT || rc == -ENODATA)
4257                         osd_oxc_add(obj, name, NULL, 0);
4258                 else if (rc > 0 && buf->lb_buf != NULL)
4259                         osd_oxc_add(obj, name, buf->lb_buf, rc);
4260         }
4261
4262         return rc;
4263 }
4264
4265 static int osd_declare_xattr_set(const struct lu_env *env,
4266                                  struct dt_object *dt,
4267                                  const struct lu_buf *buf, const char *name,
4268                                  int fl, struct thandle *handle)
4269 {
4270         struct osd_thandle *oh;
4271         int credits = 0;
4272         struct super_block *sb = osd_sb(osd_dev(dt->do_lu.lo_dev));
4273
4274         LASSERT(handle != NULL);
4275
4276         oh = container_of0(handle, struct osd_thandle, ot_super);
4277         LASSERT(oh->ot_handle == NULL);
4278
4279         if (strcmp(name, XATTR_NAME_LMA) == 0) {
4280                 /*
4281                  * For non-upgrading case, the LMA is set first and
4282                  * usually fit inode. But for upgrade case, the LMA
4283                  * may be in another separated EA block.
4284                  */
4285                 if (dt_object_exists(dt)) {
4286                         if (fl == LU_XATTR_REPLACE)
4287                                 credits = 1;
4288                         else
4289                                 goto upgrade;
4290                 }
4291         } else if (strcmp(name, XATTR_NAME_VERSION) == 0) {
4292                 credits = 1;
4293         } else if (strcmp(name, XATTR_NAME_FID) == 0) {
4294                 /* We may need to delete the old PFID EA. */
4295                 credits = LDISKFS_MAXQUOTAS_DEL_BLOCKS(sb);
4296                 if (fl == LU_XATTR_REPLACE)
4297                         credits += 1;
4298                 else
4299                         goto upgrade;
4300         } else {
4301                 /*
4302                  * If some name entry resides on remote MDT, then will create
4303                  * agent entry under remote parent. On the other hand, if the
4304                  * remote entry will be removed, then related agent entry may
4305                  * need to be removed from the remote parent. So there may be
4306                  * kinds of cases, let's declare enough credits. The credits
4307                  * for create agent entry is enough for remove case.
4308                  */
4309                 if (strcmp(name, XATTR_NAME_LINK) == 0) {
4310                         credits += osd_dto_credits_noquota[DTO_INDEX_INSERT];
4311                         if (dt_object_exists(dt))
4312                                 credits += 1; /* For updating LMA */
4313                 }
4314
4315 upgrade:
4316                 credits += osd_dto_credits_noquota[DTO_XATTR_SET];
4317
4318                 if (buf != NULL) {
4319                         ssize_t buflen;
4320
4321                         if (buf->lb_buf == NULL && dt_object_exists(dt)) {
4322                                 /*
4323                                  * learn xattr size from osd_xattr_get if
4324                                  * attribute has not been read yet
4325                                  */
4326                                 buflen = __osd_xattr_get(
4327                                     osd_dt_obj(dt)->oo_inode,
4328                                     &osd_oti_get(env)->oti_obj_dentry,
4329                                     name, NULL, 0);
4330                                 if (buflen < 0)
4331                                         buflen = 0;
4332                         } else {
4333                                 buflen = buf->lb_len;
4334                         }
4335
4336                         if (buflen > sb->s_blocksize) {
4337                                 credits += osd_calc_bkmap_credits(
4338                                     sb, NULL, 0, -1,
4339                                     (buflen + sb->s_blocksize - 1) >>
4340                                     sb->s_blocksize_bits);
4341                         }
4342                 }
4343                 /*
4344                  * xattr set may involve inode quota change, reserve credits for
4345                  * dquot_initialize()
4346                  */
4347                 credits += LDISKFS_MAXQUOTAS_INIT_BLOCKS(sb);
4348         }
4349
4350         osd_trans_declare_op(env, oh, OSD_OT_XATTR_SET, credits);
4351
4352         return 0;
4353 }
4354
4355 static int osd_xattr_set_pfid(const struct lu_env *env, struct osd_object *obj,
4356                               const struct lu_buf *buf, int fl,
4357                               struct thandle *handle)
4358 {
4359         struct osd_thread_info *info = osd_oti_get(env);
4360         struct dentry *dentry = &info->oti_obj_dentry;
4361         struct lustre_ost_attrs *loa = &info->oti_ost_attrs;
4362         struct lustre_mdt_attrs *lma = &loa->loa_lma;
4363         struct inode *inode = obj->oo_inode;
4364         struct filter_fid *ff = buf->lb_buf;
4365         struct ost_layout *ol = &ff->ff_layout;
4366         int flags = XATTR_REPLACE;
4367         int rc;
4368
4369         ENTRY;
4370
4371         if (buf->lb_len != sizeof(*ff) && buf->lb_len != sizeof(struct lu_fid))
4372                 RETURN(-EINVAL);
4373
4374         rc = osd_get_lma(info, inode, dentry, loa);
4375         if (rc == -ENODATA) {
4376                 /* Usually for upgarding from old device */
4377                 lustre_loa_init(loa, lu_object_fid(&obj->oo_dt.do_lu),
4378                                 LMAC_FID_ON_OST, 0);
4379                 flags = XATTR_CREATE;
4380         } else if (rc) {
4381                 RETURN(rc);
4382         }
4383
4384         if (!rc && lma->lma_compat & LMAC_STRIPE_INFO) {
4385                 if ((fl & LU_XATTR_CREATE) && !(fl & LU_XATTR_REPLACE))
4386                         RETURN(-EEXIST);
4387
4388                 if (LDISKFS_INODE_SIZE(inode->i_sb) > 256) {
4389                         /* Separate PFID EA from LMA */
4390                         lma->lma_compat &= ~(LMAC_STRIPE_INFO | LMAC_COMP_INFO);
4391                         lustre_lma_swab(lma);
4392                         rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA, lma,
4393                                              sizeof(*lma), XATTR_REPLACE);
4394                         if (!rc) {
4395                                 obj->oo_pfid_in_lma = 0;
4396                                 rc = LU_XATTR_CREATE;
4397                         }
4398
4399                         RETURN(rc);
4400                 }
4401         } else {
4402                 if (LDISKFS_INODE_SIZE(inode->i_sb) > 256)
4403                         RETURN(fl);
4404
4405                 /*
4406                  * Old client does not send stripe information,
4407                  * then store the PFID EA on disk separatedly.
4408                  */
4409                 if (unlikely(buf->lb_len == sizeof(struct lu_fid) ||
4410                              ol->ol_stripe_size == 0))
4411                         RETURN(fl);
4412
4413                 /* Remove old PFID EA entry firstly. */
4414                 dquot_initialize(inode);
4415                 rc = ll_vfs_removexattr(dentry, inode, XATTR_NAME_FID);
4416                 if (rc == -ENODATA) {
4417                         if ((fl & LU_XATTR_REPLACE) && !(fl & LU_XATTR_CREATE))
4418                                 RETURN(rc);
4419                 } else if (rc) {
4420                         RETURN(rc);
4421                 }
4422         }
4423
4424         fid_le_to_cpu(&loa->loa_parent_fid, &ff->ff_parent);
4425         if (likely(ol->ol_stripe_size != 0)) {
4426                 loa->loa_parent_fid.f_ver |= le32_to_cpu(ol->ol_stripe_count) <<
4427                                              PFID_STRIPE_IDX_BITS;
4428                 loa->loa_stripe_size = le32_to_cpu(ol->ol_stripe_size);
4429                 lma->lma_compat |= LMAC_STRIPE_INFO;
4430                 if (ol->ol_comp_id != 0) {
4431                         loa->loa_comp_id = le32_to_cpu(ol->ol_comp_id);
4432                         loa->loa_comp_start = le64_to_cpu(ol->ol_comp_start);
4433                         loa->loa_comp_end = le64_to_cpu(ol->ol_comp_end);
4434                         lma->lma_compat |= LMAC_COMP_INFO;
4435                 }
4436         }
4437
4438         lustre_loa_swab(loa, false);
4439
4440         /* Store the PFID EA inside LMA. */
4441         rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA, loa, sizeof(*loa),
4442                              flags);
4443         if (!rc)
4444                 obj->oo_pfid_in_lma = 1;
4445
4446         RETURN(rc);
4447 }
4448
4449 /*
4450  * In DNE environment, the object (in spite of regular file or directory)
4451  * and its name entry may reside on different MDTs. Under such case, we will
4452  * create an agent entry on the MDT where the object resides. The agent entry
4453  * references the object locally, that makes the object to be visible to the
4454  * userspace when mounted as 'ldiskfs' directly. Then the userspace tools,
4455  * such as 'tar' can handle the object properly.
4456  *
4457  * We handle the agent entry during set linkEA that is the common interface
4458  * for both regular file and directroy, can handle kinds of cases, such as
4459  * create/link/unlink/rename, and so on.
4460  *
4461  * NOTE: we can NOT do that when ea_{insert,delete} that is only for directory.
4462  *
4463  * XXX: There are two known issues:
4464  * 1. For one object, we will create at most one agent entry even if there
4465  *    may be more than one cross-MDTs hard links on the object. So the local
4466  *    e2fsck may claim that the object's nlink is larger than the name entries
4467  *    that reference such inode. And in further, the e2fsck will fix the nlink
4468  *    attribute to match the local references. Then it will cause the object's
4469  *    nlink attribute to be inconsistent with the global references. it is bad
4470  *    but not fatal. The ref_del() can handle the zero-referenced case. On the
4471  *    other hand, the global namespace LFSCK can repair the object's attribute
4472  *    according to the linkEA.
4473  * 2. There may be too many hard links on the object as to its linkEA overflow,
4474  *    then the linkEA entry for cross-MDTs reference may be discarded. If such
4475  *    case happened, then at this point, we do not know whether there are some
4476  *    cross-MDTs reference. But there are local references, it guarantees that
4477  *    object is visible to userspace when mounted as 'ldiskfs'. That is enough.
4478  */
4479 static int osd_xattr_handle_linkea(const struct lu_env *env,
4480                                    struct osd_device *osd,
4481                                    struct osd_object *obj,
4482                                    const struct lu_buf *buf,
4483                                    struct thandle *handle)
4484 {
4485         const struct lu_fid *fid = lu_object_fid(&obj->oo_dt.do_lu);
4486         struct lu_fid *tfid = &osd_oti_get(env)->oti_fid3;
4487         struct linkea_data ldata = { .ld_buf = (struct lu_buf *)buf };
4488         struct lu_name tmpname;
4489         struct osd_thandle *oh;
4490         int rc;
4491         bool remote = false;
4492
4493         ENTRY;
4494
4495         oh = container_of0(handle, struct osd_thandle, ot_super);
4496         LASSERT(oh->ot_handle != NULL);
4497
4498         rc = linkea_init_with_rec(&ldata);
4499         if (!rc) {
4500                 linkea_first_entry(&ldata);
4501                 while (ldata.ld_lee != NULL && !remote) {
4502                         linkea_entry_unpack(ldata.ld_lee, &ldata.ld_reclen,
4503                                             &tmpname, tfid);
4504                         if (osd_remote_fid(env, osd, tfid) > 0)
4505                                 remote = true;
4506                         else
4507                                 linkea_next_entry(&ldata);
4508                 }
4509         } else if (rc == -ENODATA) {
4510                 rc = 0;
4511         } else {
4512                 RETURN(rc);
4513         }
4514
4515         if (lu_object_has_agent_entry(&obj->oo_dt.do_lu) && !remote) {
4516                 rc = osd_delete_from_remote_parent(env, osd, obj, oh, false);
4517                 if (rc)
4518                         CERROR("%s: failed to remove agent entry for "DFID
4519                                ": rc = %d\n", osd_name(osd), PFID(fid), rc);
4520         } else if (!lu_object_has_agent_entry(&obj->oo_dt.do_lu) && remote) {
4521                 rc = osd_add_to_remote_parent(env, osd, obj, oh);
4522                 if (rc)
4523                         CERROR("%s: failed to create agent entry for "DFID
4524                                ": rc = %d\n", osd_name(osd), PFID(fid), rc);
4525         }
4526
4527         RETURN(rc);
4528 }
4529
4530 /*
4531  * Concurrency: @dt is write locked.
4532  */
4533 static int osd_xattr_set(const struct lu_env *env, struct dt_object *dt,
4534                          const struct lu_buf *buf, const char *name, int fl,
4535                          struct thandle *handle)
4536 {
4537         struct osd_object *obj = osd_dt_obj(dt);
4538         struct osd_device *osd = osd_obj2dev(obj);
4539         struct inode *inode = obj->oo_inode;
4540         struct osd_thread_info *info = osd_oti_get(env);
4541         int fs_flags = 0;
4542         int len;
4543         int rc;
4544
4545         ENTRY;
4546
4547         LASSERT(handle);
4548         LASSERT(buf);
4549
4550         /* version set is not real XATTR */
4551         if (strcmp(name, XATTR_NAME_VERSION) == 0) {
4552                 dt_obj_version_t *version = buf->lb_buf;
4553
4554                 /*
4555                  * for version we are just using xattr API but change inode
4556                  * field instead
4557                  */
4558                 LASSERT(buf->lb_len == sizeof(dt_obj_version_t));
4559
4560                 CDEBUG(D_INODE, "Set version %#llx (old %#llx) for inode %lu\n",
4561                        *version, LDISKFS_I(inode)->i_fs_version, inode->i_ino);
4562
4563                 LDISKFS_I(inode)->i_fs_version = *version;
4564                 /*
4565                  * Version is set after all inode operations are finished,
4566                  * so we should mark it dirty here
4567                  */
4568                 osd_dirty_inode(inode, I_DIRTY_DATASYNC);
4569
4570                 RETURN(0);
4571         }
4572
4573         CDEBUG(D_INODE, DFID" set xattr '%s' with size %zu\n",
4574                PFID(lu_object_fid(&dt->do_lu)), name, buf->lb_len);
4575
4576         len = buf->lb_len;
4577         osd_trans_exec_op(env, handle, OSD_OT_XATTR_SET);
4578
4579         /*
4580          * For the OST device with 256 bytes inode size by default,
4581          * the PFID EA will be stored together with LMA EA to avoid
4582          * performance trouble. Otherwise the PFID EA can be stored
4583          * independently. LU-8998
4584          */
4585         if (strcmp(name, XATTR_NAME_FID) == 0 && osd->od_is_ost &&
4586             (LDISKFS_INODE_SIZE(inode->i_sb) <= 256 || obj->oo_pfid_in_lma)) {
4587                 LASSERT(buf->lb_buf);
4588
4589                 fl = osd_xattr_set_pfid(env, obj, buf, fl, handle);
4590                 if (fl <= 0)
4591                         RETURN(fl);
4592         } else if (strcmp(name, XATTR_NAME_LMV) == 0) {
4593                 struct lustre_ost_attrs *loa = &info->oti_ost_attrs;
4594                 struct lustre_mdt_attrs *lma = &loa->loa_lma;
4595
4596                 rc = osd_get_lma(info, inode, &info->oti_obj_dentry, loa);
4597                 if (rc)
4598                         RETURN(rc);
4599
4600                 lma->lma_incompat |= LMAI_STRIPED;
4601                 lustre_lma_swab(lma);
4602                 rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA, lma,
4603                                      sizeof(*lma), XATTR_REPLACE);
4604                 if (rc != 0)
4605                         RETURN(rc);
4606         } else if (strcmp(name, XATTR_NAME_LINK) == 0) {
4607                 LASSERT(!osd->od_is_ost);
4608
4609                 rc = osd_xattr_handle_linkea(env, osd, obj, buf, handle);
4610                 if (rc)
4611                         RETURN(rc);
4612         }
4613
4614         if (fl & LU_XATTR_REPLACE)
4615                 fs_flags |= XATTR_REPLACE;
4616
4617         if (fl & LU_XATTR_CREATE)
4618                 fs_flags |= XATTR_CREATE;
4619
4620         rc = __osd_xattr_set(info, inode, name, buf->lb_buf, len, fs_flags);
4621         osd_trans_exec_check(env, handle, OSD_OT_XATTR_SET);
4622
4623         if (rc == 0 &&
4624             (strcmp(name, XATTR_NAME_LOV) == 0 ||
4625              strcmp(name, XATTR_NAME_DEFAULT_LMV) == 0))
4626                 osd_oxc_add(obj, name, buf->lb_buf, buf->lb_len);
4627
4628         return rc;
4629 }
4630
4631 /*
4632  * Concurrency: @dt is read locked.
4633  */
4634 static int osd_xattr_list(const struct lu_env *env, struct dt_object *dt,
4635                           const struct lu_buf *buf)
4636 {
4637         struct osd_object *obj = osd_dt_obj(dt);
4638         struct inode *inode = obj->oo_inode;
4639         struct osd_thread_info *info = osd_oti_get(env);
4640         struct dentry *dentry = &info->oti_obj_dentry;
4641
4642         if (!dt_object_exists(dt))
4643                 return -ENOENT;
4644
4645         LASSERT(!dt_object_remote(dt));
4646         LASSERT(inode->i_op != NULL);
4647         LASSERT(inode->i_op->listxattr != NULL);
4648
4649         dentry->d_inode = inode;
4650         dentry->d_sb = inode->i_sb;
4651         return inode->i_op->listxattr(dentry, buf->lb_buf, buf->lb_len);
4652 }
4653
4654 static int osd_declare_xattr_del(const struct lu_env *env,
4655                                  struct dt_object *dt, const char *name,
4656                                  struct thandle *handle)
4657 {
4658         struct osd_thandle *oh;
4659         struct super_block *sb = osd_sb(osd_dev(dt->do_lu.lo_dev));
4660
4661         LASSERT(!dt_object_remote(dt));
4662         LASSERT(handle != NULL);
4663
4664         oh = container_of0(handle, struct osd_thandle, ot_super);
4665         LASSERT(oh->ot_handle == NULL);
4666
4667         osd_trans_declare_op(env, oh, OSD_OT_XATTR_SET,
4668                              osd_dto_credits_noquota[DTO_XATTR_SET]);
4669         /*
4670          * xattr del may involve inode quota change, reserve credits for
4671          * dquot_initialize()
4672          */
4673         oh->ot_credits += LDISKFS_MAXQUOTAS_INIT_BLOCKS(sb);
4674
4675         return 0;
4676 }
4677
4678 /*
4679  * Concurrency: @dt is write locked.
4680  */
4681 static int osd_xattr_del(const struct lu_env *env, struct dt_object *dt,
4682                          const char *name, struct thandle *handle)
4683 {
4684         struct osd_object *obj = osd_dt_obj(dt);
4685         struct inode *inode = obj->oo_inode;
4686         struct osd_thread_info *info = osd_oti_get(env);
4687         struct dentry *dentry = &info->oti_obj_dentry;
4688         int rc;
4689
4690         if (!dt_object_exists(dt))
4691                 return -ENOENT;
4692
4693         LASSERT(!dt_object_remote(dt));
4694         LASSERT(inode->i_op != NULL);
4695         LASSERT(handle != NULL);
4696 #ifdef HAVE_IOP_XATTR
4697         LASSERT(inode->i_op->removexattr != NULL);
4698 #endif
4699
4700         osd_trans_exec_op(env, handle, OSD_OT_XATTR_SET);
4701
4702         if (strcmp(name, XATTR_NAME_FID) == 0 && obj->oo_pfid_in_lma) {
4703                 struct lustre_mdt_attrs *lma = &info->oti_ost_attrs.loa_lma;
4704
4705                 rc = osd_get_lma(info, inode, &info->oti_obj_dentry,
4706                                  &info->oti_ost_attrs);
4707                 if (!rc) {
4708                         LASSERT(lma->lma_compat & LMAC_STRIPE_INFO);
4709
4710                         lma->lma_compat &= ~(LMAC_STRIPE_INFO | LMAC_COMP_INFO);
4711                         lustre_lma_swab(lma);
4712                         rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA, lma,
4713                                              sizeof(*lma), XATTR_REPLACE);
4714                         if (!rc)
4715                                 obj->oo_pfid_in_lma = 0;
4716                 }
4717         } else {
4718                 dquot_initialize(inode);
4719                 dentry->d_inode = inode;
4720                 dentry->d_sb = inode->i_sb;
4721                 rc = ll_vfs_removexattr(dentry, inode, name);
4722         }
4723
4724         osd_trans_exec_check(env, handle, OSD_OT_XATTR_SET);
4725
4726         if (rc == 0 &&
4727             (strcmp(name, XATTR_NAME_LOV) == 0 ||
4728              strcmp(name, XATTR_NAME_DEFAULT_LMV) == 0))
4729                 osd_oxc_del(obj, name);
4730
4731         return rc;
4732 }
4733
4734 static int osd_object_sync(const struct lu_env *env, struct dt_object *dt,
4735                            __u64 start, __u64 end)
4736 {
4737         struct osd_object *obj = osd_dt_obj(dt);
4738         struct inode *inode = obj->oo_inode;
4739         struct osd_thread_info *info = osd_oti_get(env);
4740         struct dentry *dentry = &info->oti_obj_dentry;
4741         struct file *file = &info->oti_file;
4742         int rc;
4743
4744         ENTRY;
4745
4746         dentry->d_inode = inode;
4747         dentry->d_sb = inode->i_sb;
4748         file->f_path.dentry = dentry;
4749         file->f_mapping = inode->i_mapping;
4750         file->f_op = inode->i_fop;
4751         file->f_inode = inode;
4752
4753         rc = vfs_fsync_range(file, start, end, 0);
4754
4755         RETURN(rc);
4756 }
4757
4758 static int osd_invalidate(const struct lu_env *env, struct dt_object *dt)
4759 {
4760         return 0;
4761 }
4762
4763 /*
4764  * Index operations.
4765  */
4766
4767 static int osd_iam_index_probe(const struct lu_env *env, struct osd_object *o,
4768                                const struct dt_index_features *feat)
4769 {
4770         struct iam_descr *descr;
4771
4772         if (osd_object_is_root(o))
4773                 return feat == &dt_directory_features;
4774
4775         LASSERT(o->oo_dir != NULL);
4776
4777         descr = o->oo_dir->od_container.ic_descr;
4778         if (feat == &dt_directory_features) {
4779                 if (descr->id_rec_size == sizeof(struct osd_fid_pack))
4780                         return 1;
4781                 else
4782                         return 0;
4783         } else {
4784                 return feat->dif_keysize_min <= descr->id_key_size &&
4785                        descr->id_key_size <= feat->dif_keysize_max &&
4786                        feat->dif_recsize_min <= descr->id_rec_size &&
4787                        descr->id_rec_size <= feat->dif_recsize_max &&
4788                        !(feat->dif_flags & (DT_IND_VARKEY |
4789                                             DT_IND_VARREC | DT_IND_NONUNQ)) &&
4790                        ergo(feat->dif_flags & DT_IND_UPDATE,
4791                             1 /* XXX check that object (and fs) is writable */);
4792         }
4793 }
4794
4795 static int osd_iam_container_init(const struct lu_env *env,
4796                                   struct osd_object *obj,
4797                                   struct osd_directory *dir)
4798 {
4799         struct iam_container *bag = &dir->od_container;
4800         int result;
4801
4802         result = iam_container_init(bag, &dir->od_descr, obj->oo_inode);
4803         if (result != 0)
4804                 return result;
4805
4806         result = iam_container_setup(bag);
4807         if (result == 0)
4808                 obj->oo_dt.do_index_ops = &osd_index_iam_ops;
4809         else
4810                 iam_container_fini(bag);
4811
4812         return result;
4813 }
4814
4815
4816 /*
4817  * Concurrency: no external locking is necessary.
4818  */
4819 static int osd_index_try(const struct lu_env *env, struct dt_object *dt,
4820                          const struct dt_index_features *feat)
4821 {
4822         int result;
4823         int skip_iam = 0;
4824         struct osd_object *obj = osd_dt_obj(dt);
4825
4826         LINVRNT(osd_invariant(obj));
4827
4828         if (osd_object_is_root(obj)) {
4829                 dt->do_index_ops = &osd_index_ea_ops;
4830                 result = 0;
4831         } else if (feat == &dt_directory_features) {
4832                 dt->do_index_ops = &osd_index_ea_ops;
4833                 if (obj->oo_inode == NULL || S_ISDIR(obj->oo_inode->i_mode))
4834                         result = 0;
4835                 else
4836                         result = -ENOTDIR;
4837                 skip_iam = 1;
4838         } else if (unlikely(feat == &dt_otable_features)) {
4839                 dt->do_index_ops = &osd_otable_ops;
4840                 return 0;
4841         } else if (unlikely(feat == &dt_acct_features)) {
4842                 dt->do_index_ops = &osd_acct_index_ops;
4843                 result = 0;
4844                 skip_iam = 1;
4845         } else if (!osd_has_index(obj)) {
4846                 struct osd_directory *dir;
4847                 struct osd_device *osd = osd_obj2dev(obj);
4848                 const struct lu_fid *fid = lu_object_fid(&dt->do_lu);
4849
4850                 OBD_ALLOC_PTR(dir);
4851                 if (dir) {
4852
4853                         spin_lock(&obj->oo_guard);
4854                         if (obj->oo_dir == NULL)
4855                                 obj->oo_dir = dir;
4856                         else
4857                                 /*
4858                                  * Concurrent thread allocated container data.
4859                                  */
4860                                 OBD_FREE_PTR(dir);
4861                         spin_unlock(&obj->oo_guard);
4862                         /*
4863                          * Now, that we have container data, serialize its
4864                          * initialization.
4865                          */
4866                         down_write(&obj->oo_ext_idx_sem);
4867                         /*
4868                          * recheck under lock.
4869                          */
4870
4871                         if (osd_has_index(obj)) {
4872                                 result = 0;
4873                                 goto unlock;
4874                         }
4875
4876                         result = osd_iam_container_init(env, obj, obj->oo_dir);
4877                         if (result || feat == &dt_lfsck_namespace_features ||
4878                             feat == &dt_lfsck_layout_orphan_features ||
4879                             feat == &dt_lfsck_layout_dangling_features)
4880                                 goto unlock;
4881
4882                         result = osd_index_register(osd, fid,
4883                                                     feat->dif_keysize_max,
4884                                                     feat->dif_recsize_max);
4885                         if (result < 0)
4886                                 CWARN("%s: failed to register index "
4887                                       DFID": rc = %d\n",
4888                                       osd_name(osd), PFID(fid), result);
4889                         else if (result > 0)
4890                                 result = 0;
4891                         else
4892                                 CDEBUG(D_LFSCK, "%s: index object "DFID
4893                                        " (%d/%d) registered\n",
4894                                        osd_name(osd), PFID(fid),
4895                                        (int)feat->dif_keysize_max,
4896                                        (int)feat->dif_recsize_max);
4897
4898 unlock:
4899                         up_write(&obj->oo_ext_idx_sem);
4900                 } else {
4901                         result = -ENOMEM;
4902                 }
4903         } else {
4904                 result = 0;
4905         }
4906
4907         if (result == 0 && skip_iam == 0) {
4908                 if (!osd_iam_index_probe(env, obj, feat))
4909                         result = -ENOTDIR;
4910         }
4911         LINVRNT(osd_invariant(obj));
4912
4913         return result;
4914 }
4915
4916 static int osd_otable_it_attr_get(const struct lu_env *env,
4917                                  struct dt_object *dt,
4918                                  struct lu_attr *attr)
4919 {
4920         attr->la_valid = 0;
4921         return 0;
4922 }
4923
4924 static const struct dt_object_operations osd_obj_ops = {
4925         .do_read_lock           = osd_read_lock,
4926         .do_write_lock          = osd_write_lock,
4927         .do_read_unlock         = osd_read_unlock,
4928         .do_write_unlock        = osd_write_unlock,
4929         .do_write_locked        = osd_write_locked,
4930         .do_attr_get            = osd_attr_get,
4931         .do_declare_attr_set    = osd_declare_attr_set,
4932         .do_attr_set            = osd_attr_set,
4933         .do_ah_init             = osd_ah_init,
4934         .do_declare_create      = osd_declare_create,
4935         .do_create              = osd_create,
4936         .do_declare_destroy     = osd_declare_destroy,
4937         .do_destroy             = osd_destroy,
4938         .do_index_try           = osd_index_try,
4939         .do_declare_ref_add     = osd_declare_ref_add,
4940         .do_ref_add             = osd_ref_add,
4941         .do_declare_ref_del     = osd_declare_ref_del,
4942         .do_ref_del             = osd_ref_del,
4943         .do_xattr_get           = osd_xattr_get,
4944         .do_declare_xattr_set   = osd_declare_xattr_set,
4945         .do_xattr_set           = osd_xattr_set,
4946         .do_declare_xattr_del   = osd_declare_xattr_del,
4947         .do_xattr_del           = osd_xattr_del,
4948         .do_xattr_list          = osd_xattr_list,
4949         .do_object_sync         = osd_object_sync,
4950         .do_invalidate          = osd_invalidate,
4951 };
4952
4953 static const struct dt_object_operations osd_obj_otable_it_ops = {
4954         .do_attr_get    = osd_otable_it_attr_get,
4955         .do_index_try   = osd_index_try,
4956 };
4957
4958 static int osd_index_declare_iam_delete(const struct lu_env *env,
4959                                         struct dt_object *dt,
4960                                         const struct dt_key *key,
4961                                         struct thandle *handle)
4962 {
4963         struct osd_thandle *oh;
4964
4965         oh = container_of0(handle, struct osd_thandle, ot_super);
4966         LASSERT(oh->ot_handle == NULL);
4967
4968         /* Recycle  may cause additional three blocks to be changed. */
4969         osd_trans_declare_op(env, oh, OSD_OT_DELETE,
4970                              osd_dto_credits_noquota[DTO_INDEX_DELETE] + 3);
4971
4972         return 0;
4973 }
4974
4975 /**
4976  *      delete a (key, value) pair from index \a dt specified by \a key
4977  *
4978  *      \param  dt      osd index object
4979  *      \param  key     key for index
4980  *      \param  rec     record reference
4981  *      \param  handle  transaction handler
4982  *
4983  *      \retval  0  success
4984  *      \retval -ve   failure
4985  */
4986 static int osd_index_iam_delete(const struct lu_env *env, struct dt_object *dt,
4987                                 const struct dt_key *key,
4988                                 struct thandle *handle)
4989 {
4990         struct osd_thread_info *oti = osd_oti_get(env);
4991         struct osd_object *obj = osd_dt_obj(dt);
4992         struct osd_thandle *oh;
4993         struct iam_path_descr *ipd;
4994         struct iam_container *bag = &obj->oo_dir->od_container;
4995         int rc;
4996
4997         ENTRY;
4998
4999         if (!dt_object_exists(dt))
5000                 RETURN(-ENOENT);
5001
5002         LINVRNT(osd_invariant(obj));
5003         LASSERT(!dt_object_remote(dt));
5004         LASSERT(bag->ic_object == obj->oo_inode);
5005         LASSERT(handle != NULL);
5006
5007         osd_trans_exec_op(env, handle, OSD_OT_DELETE);
5008
5009         ipd = osd_idx_ipd_get(env, bag);
5010         if (unlikely(ipd == NULL))
5011                 RETURN(-ENOMEM);
5012
5013         oh = container_of0(handle, struct osd_thandle, ot_super);
5014         LASSERT(oh->ot_handle != NULL);
5015         LASSERT(oh->ot_handle->h_transaction != NULL);
5016
5017         if (fid_is_quota(lu_object_fid(&dt->do_lu))) {
5018                 /* swab quota uid/gid provided by caller */
5019                 oti->oti_quota_id = cpu_to_le64(*((__u64 *)key));
5020                 key = (const struct dt_key *)&oti->oti_quota_id;
5021         }
5022
5023         rc = iam_delete(oh->ot_handle, bag, (const struct iam_key *)key, ipd);
5024         osd_ipd_put(env, bag, ipd);
5025         LINVRNT(osd_invariant(obj));
5026         osd_trans_exec_check(env, handle, OSD_OT_DELETE);
5027         RETURN(rc);
5028 }
5029
5030 static int osd_index_declare_ea_delete(const struct lu_env *env,
5031                                        struct dt_object *dt,
5032                                        const struct dt_key *key,
5033                                        struct thandle *handle)
5034 {
5035         struct osd_thandle *oh;
5036         struct inode *inode;
5037         int rc, credits;
5038
5039         ENTRY;
5040
5041         LASSERT(!dt_object_remote(dt));
5042         LASSERT(handle != NULL);
5043
5044         oh = container_of0(handle, struct osd_thandle, ot_super);
5045         LASSERT(oh->ot_handle == NULL);
5046
5047         credits = osd_dto_credits_noquota[DTO_INDEX_DELETE];
5048         osd_trans_declare_op(env, oh, OSD_OT_DELETE, credits);
5049
5050         inode = osd_dt_obj(dt)->oo_inode;
5051         if (inode == NULL)
5052                 RETURN(-ENOENT);
5053
5054         rc = osd_declare_inode_qid(env, i_uid_read(inode), i_gid_read(inode),
5055                                    i_projid_read(inode), 0, oh, osd_dt_obj(dt),
5056                                    NULL, OSD_QID_BLK);
5057         RETURN(rc);
5058 }
5059
5060 static inline int osd_get_fid_from_dentry(struct ldiskfs_dir_entry_2 *de,
5061                                           struct dt_rec *fid)
5062 {
5063         struct osd_fid_pack *rec;
5064         int rc = -ENODATA;
5065
5066         if (de->file_type & LDISKFS_DIRENT_LUFID) {
5067                 rec = (struct osd_fid_pack *)(de->name + de->name_len + 1);
5068                 rc = osd_fid_unpack((struct lu_fid *)fid, rec);
5069                 if (rc == 0 && unlikely(!fid_is_sane((struct lu_fid *)fid)))
5070                         rc = -EINVAL;
5071         }
5072         return rc;
5073 }
5074
5075 static int osd_remote_fid(const struct lu_env *env, struct osd_device *osd,
5076                           const struct lu_fid *fid)
5077 {
5078         struct seq_server_site *ss = osd_seq_site(osd);
5079
5080         ENTRY;
5081
5082         /* FID seqs not in FLDB, must be local seq */
5083         if (unlikely(!fid_seq_in_fldb(fid_seq(fid))))
5084                 RETURN(0);
5085
5086         /*
5087          * If FLD is not being initialized yet, it only happens during the
5088          * initialization, likely during mgs initialization, and we assume
5089          * this is local FID.
5090          */
5091         if (ss == NULL || ss->ss_server_fld == NULL)
5092                 RETURN(0);
5093
5094         /* Only check the local FLDB here */
5095         if (osd_seq_exists(env, osd, fid_seq(fid)))
5096                 RETURN(0);
5097
5098         RETURN(1);
5099 }
5100
5101 static void osd_take_care_of_agent(const struct lu_env *env,
5102                                    struct osd_device *osd,
5103                                    struct osd_thandle *oh,
5104                                    struct ldiskfs_dir_entry_2 *de)
5105 {
5106         struct lu_fid *fid = &osd_oti_get(env)->oti_fid;
5107         struct osd_idmap_cache *idc;
5108         int rc, schedule = 0;
5109
5110         LASSERT(de != NULL);
5111
5112         rc = osd_get_fid_from_dentry(de, (struct dt_rec *)fid);
5113         if (likely(rc == 0)) {
5114                 idc = osd_idc_find_or_init(env, osd, fid);
5115                 if (IS_ERR(idc) || idc->oic_remote)
5116                         schedule = 1;
5117         } else if (rc == -ENODATA) {
5118                 /*
5119                  * can't get FID, postpone to the end of the
5120                  * transaction when iget() is safe
5121                  */
5122                 schedule = 1;
5123         } else {
5124                 CERROR("%s: can't get FID: rc = %d\n", osd_name(osd), rc);
5125         }
5126         if (schedule)
5127                 osd_schedule_agent_inode_removal(env, oh,
5128                                                  le32_to_cpu(de->inode));
5129 }
5130
5131 /**
5132  * Index delete function for interoperability mode (b11826).
5133  * It will remove the directory entry added by osd_index_ea_insert().
5134  * This entry is needed to maintain name->fid mapping.
5135  *
5136  * \param key,  key i.e. file entry to be deleted
5137  *
5138  * \retval   0, on success
5139  * \retval -ve, on error
5140  */
5141 static int osd_index_ea_delete(const struct lu_env *env, struct dt_object *dt,
5142                                const struct dt_key *key, struct thandle *handle)
5143 {
5144         struct osd_object *obj = osd_dt_obj(dt);
5145         struct inode *dir = obj->oo_inode;
5146         struct dentry *dentry;
5147         struct osd_thandle *oh;
5148         struct ldiskfs_dir_entry_2 *de = NULL;
5149         struct buffer_head *bh;
5150         struct htree_lock *hlock = NULL;
5151         struct osd_device *osd = osd_dev(dt->do_lu.lo_dev);
5152         int rc;
5153
5154         ENTRY;
5155
5156         if (!dt_object_exists(dt))
5157                 RETURN(-ENOENT);
5158
5159         LINVRNT(osd_invariant(obj));
5160         LASSERT(!dt_object_remote(dt));
5161         LASSERT(handle != NULL);
5162
5163         osd_trans_exec_op(env, handle, OSD_OT_DELETE);
5164
5165         oh = container_of(handle, struct osd_thandle, ot_super);
5166         LASSERT(oh->ot_handle != NULL);
5167         LASSERT(oh->ot_handle->h_transaction != NULL);
5168
5169         dquot_initialize(dir);
5170         dentry = osd_child_dentry_get(env, obj,
5171                                       (char *)key, strlen((char *)key));
5172
5173         if (obj->oo_hl_head != NULL) {
5174                 hlock = osd_oti_get(env)->oti_hlock;
5175                 ldiskfs_htree_lock(hlock, obj->oo_hl_head,
5176                                    dir, LDISKFS_HLOCK_DEL);
5177         } else {
5178                 down_write(&obj->oo_ext_idx_sem);
5179         }
5180
5181         bh = osd_ldiskfs_find_entry(dir, &dentry->d_name, &de, NULL, hlock);
5182         if (!IS_ERR(bh)) {
5183                 /*
5184                  * If this is not the ".." entry, it might be a remote DNE
5185                  * entry and  we need to check if the FID is for a remote
5186                  * MDT.  If the FID is  not in the directory entry (e.g.
5187                  * upgraded 1.8 filesystem without dirdata enabled) then
5188                  * we need to get the FID from the LMA. For a remote directory
5189                  * there HAS to be an LMA, it cannot be an IGIF inode in this
5190                  * case.
5191                  *
5192                  * Delete the entry before the agent inode in order to
5193                  * simplify error handling.  At worst an error after deleting
5194                  * the entry first might leak the agent inode afterward. The
5195                  * reverse would need filesystem abort in case of error deleting
5196                  * the entry after the agent had been removed, or leave a
5197                  * dangling entry pointing at a random inode.
5198                  */
5199                 if (strcmp((char *)key, dotdot) != 0)
5200                         osd_take_care_of_agent(env, osd, oh, de);
5201                 rc = ldiskfs_delete_entry(oh->ot_handle, dir, de, bh);
5202                 brelse(bh);
5203         } else {
5204                 rc = PTR_ERR(bh);
5205         }
5206         if (hlock != NULL)
5207                 ldiskfs_htree_unlock(hlock);
5208         else
5209                 up_write(&obj->oo_ext_idx_sem);
5210
5211         GOTO(out, rc);
5212 out:
5213         LASSERT(osd_invariant(obj));
5214         osd_trans_exec_check(env, handle, OSD_OT_DELETE);
5215         RETURN(rc);
5216 }
5217
5218 /**
5219  *      Lookup index for \a key and copy record to \a rec.
5220  *
5221  *      \param  dt      osd index object
5222  *      \param  key     key for index
5223  *      \param  rec     record reference
5224  *
5225  *      \retval  +ve  success : exact mach
5226  *      \retval  0    return record with key not greater than \a key
5227  *      \retval -ve   failure
5228  */
5229 static int osd_index_iam_lookup(const struct lu_env *env, struct dt_object *dt,
5230                                 struct dt_rec *rec, const struct dt_key *key)
5231 {
5232         struct osd_object *obj = osd_dt_obj(dt);
5233         struct iam_path_descr *ipd;
5234         struct iam_container *bag = &obj->oo_dir->od_container;
5235         struct osd_thread_info *oti = osd_oti_get(env);
5236         struct iam_iterator *it = &oti->oti_idx_it;
5237         struct iam_rec *iam_rec;
5238         int rc;
5239
5240         ENTRY;
5241
5242         if (!dt_object_exists(dt))
5243                 RETURN(-ENOENT);
5244
5245         LASSERT(osd_invariant(obj));
5246         LASSERT(!dt_object_remote(dt));
5247         LASSERT(bag->ic_object == obj->oo_inode);
5248
5249         ipd = osd_idx_ipd_get(env, bag);
5250         if (IS_ERR(ipd))
5251                 RETURN(-ENOMEM);
5252
5253         /* got ipd now we can start iterator. */
5254         iam_it_init(it, bag, 0, ipd);
5255
5256         if (fid_is_quota(lu_object_fid(&dt->do_lu))) {
5257                 /* swab quota uid/gid provided by caller */
5258                 oti->oti_quota_id = cpu_to_le64(*((__u64 *)key));
5259                 key = (const struct dt_key *)&oti->oti_quota_id;
5260         }
5261
5262         rc = iam_it_get(it, (struct iam_key *)key);
5263         if (rc >= 0) {
5264                 if (S_ISDIR(obj->oo_inode->i_mode))
5265                         iam_rec = (struct iam_rec *)oti->oti_ldp;
5266                 else
5267                         iam_rec = (struct iam_rec *)rec;
5268
5269                 iam_reccpy(&it->ii_path.ip_leaf, (struct iam_rec *)iam_rec);
5270
5271                 if (S_ISDIR(obj->oo_inode->i_mode))
5272                         osd_fid_unpack((struct lu_fid *)rec,
5273                                        (struct osd_fid_pack *)iam_rec);
5274                 else if (fid_is_quota(lu_object_fid(&dt->do_lu)))
5275                         osd_quota_unpack(obj, rec);
5276         }
5277
5278         iam_it_put(it);
5279         iam_it_fini(it);
5280         osd_ipd_put(env, bag, ipd);
5281
5282         LINVRNT(osd_invariant(obj));
5283
5284         RETURN(rc);
5285 }
5286
5287 static int osd_index_declare_iam_insert(const struct lu_env *env,
5288                                         struct dt_object *dt,
5289                                         const struct dt_rec *rec,
5290                                         const struct dt_key *key,
5291                                         struct thandle *handle)
5292 {
5293         struct osd_thandle *oh;
5294
5295         LASSERT(handle != NULL);
5296
5297         oh = container_of0(handle, struct osd_thandle, ot_super);
5298         LASSERT(oh->ot_handle == NULL);
5299
5300         osd_trans_declare_op(env, oh, OSD_OT_INSERT,
5301                              osd_dto_credits_noquota[DTO_INDEX_INSERT]);
5302
5303         return 0;
5304 }
5305
5306 /**
5307  *      Inserts (key, value) pair in \a dt index object.
5308  *
5309  *      \param  dt      osd index object
5310  *      \param  key     key for index
5311  *      \param  rec     record reference
5312  *      \param  th      transaction handler
5313  *
5314  *      \retval  0  success
5315  *      \retval -ve failure
5316  */
5317 static int osd_index_iam_insert(const struct lu_env *env, struct dt_object *dt,
5318                                 const struct dt_rec *rec,
5319                                 const struct dt_key *key, struct thandle *th)
5320 {
5321         struct osd_object *obj = osd_dt_obj(dt);
5322         struct iam_path_descr *ipd;
5323         struct osd_thandle *oh;
5324         struct iam_container *bag;
5325         struct osd_thread_info *oti = osd_oti_get(env);
5326         struct iam_rec *iam_rec;
5327         int rc;
5328
5329         ENTRY;
5330
5331         if (!dt_object_exists(dt))
5332                 RETURN(-ENOENT);
5333
5334         LINVRNT(osd_invariant(obj));
5335         LASSERT(!dt_object_remote(dt));
5336
5337         bag = &obj->oo_dir->od_container;
5338         LASSERT(bag->ic_object == obj->oo_inode);
5339         LASSERT(th != NULL);
5340
5341         osd_trans_exec_op(env, th, OSD_OT_INSERT);
5342
5343         ipd = osd_idx_ipd_get(env, bag);
5344         if (unlikely(ipd == NULL))
5345                 RETURN(-ENOMEM);
5346
5347         oh = container_of0(th, struct osd_thandle, ot_super);
5348         LASSERT(oh->ot_handle != NULL);
5349         LASSERT(oh->ot_handle->h_transaction != NULL);
5350         if (S_ISDIR(obj->oo_inode->i_mode)) {
5351                 iam_rec = (struct iam_rec *)oti->oti_ldp;
5352                 osd_fid_pack((struct osd_fid_pack *)iam_rec, rec,
5353                              &oti->oti_fid);
5354         } else if (fid_is_quota(lu_object_fid(&dt->do_lu))) {
5355                 /* pack quota uid/gid */
5356                 oti->oti_quota_id = cpu_to_le64(*((__u64 *)key));
5357                 key = (const struct dt_key *)&oti->oti_quota_id;
5358                 /* pack quota record */
5359                 rec = osd_quota_pack(obj, rec, &oti->oti_quota_rec);
5360                 iam_rec = (struct iam_rec *)rec;
5361         } else {
5362                 iam_rec = (struct iam_rec *)rec;
5363         }
5364
5365         rc = iam_insert(oh->ot_handle, bag, (const struct iam_key *)key,
5366                         iam_rec, ipd);
5367         osd_ipd_put(env, bag, ipd);
5368         LINVRNT(osd_invariant(obj));
5369         osd_trans_exec_check(env, th, OSD_OT_INSERT);
5370         RETURN(rc);
5371 }
5372
5373 /**
5374  * Calls ldiskfs_add_entry() to add directory entry
5375  * into the directory. This is required for
5376  * interoperability mode (b11826)
5377  *
5378  * \retval   0, on success
5379  * \retval -ve, on error
5380  */
5381 static int __osd_ea_add_rec(struct osd_thread_info *info,
5382                             struct osd_object *pobj, struct inode  *cinode,
5383                             const char *name, const struct lu_fid *fid,
5384                             struct htree_lock *hlock, struct thandle *th)
5385 {
5386         struct ldiskfs_dentry_param *ldp;
5387         struct dentry *child;
5388         struct osd_thandle *oth;
5389         int rc;
5390
5391         oth = container_of(th, struct osd_thandle, ot_super);
5392         LASSERT(oth->ot_handle != NULL);
5393         LASSERT(oth->ot_handle->h_transaction != NULL);
5394         LASSERT(pobj->oo_inode);
5395
5396         ldp = (struct ldiskfs_dentry_param *)info->oti_ldp;
5397         if (unlikely(pobj->oo_inode ==
5398                      osd_sb(osd_obj2dev(pobj))->s_root->d_inode))
5399                 ldp->edp_magic = 0;
5400         else
5401                 osd_get_ldiskfs_dirent_param(ldp, fid);
5402         child = osd_child_dentry_get(info->oti_env, pobj, name, strlen(name));
5403         child->d_fsdata = (void *)ldp;
5404         dquot_initialize(pobj->oo_inode);
5405         rc = osd_ldiskfs_add_entry(info, osd_obj2dev(pobj), oth->ot_handle,
5406                                    child, cinode, hlock);
5407         if (rc == 0 && OBD_FAIL_CHECK(OBD_FAIL_LFSCK_BAD_TYPE)) {
5408                 struct ldiskfs_dir_entry_2      *de;
5409                 struct buffer_head              *bh;
5410                 int                              rc1;
5411
5412                 bh = osd_ldiskfs_find_entry(pobj->oo_inode, &child->d_name, &de,
5413                                             NULL, hlock);
5414                 if (!IS_ERR(bh)) {
5415                         rc1 = ldiskfs_journal_get_write_access(oth->ot_handle,
5416                                                                bh);
5417                         if (rc1 == 0) {
5418                                 if (S_ISDIR(cinode->i_mode))
5419                                         de->file_type = LDISKFS_DIRENT_LUFID |
5420                                                         LDISKFS_FT_REG_FILE;
5421                                 else
5422                                         de->file_type = LDISKFS_DIRENT_LUFID |
5423                                                         LDISKFS_FT_DIR;
5424                                 ldiskfs_handle_dirty_metadata(oth->ot_handle,
5425                                                               NULL, bh);
5426                         }
5427                         brelse(bh);
5428                 }
5429         }
5430
5431         RETURN(rc);
5432 }
5433
5434 /**
5435  * Calls ldiskfs_add_dot_dotdot() to add dot and dotdot entries
5436  * into the directory.Also sets flags into osd object to
5437  * indicate dot and dotdot are created. This is required for
5438  * interoperability mode (b11826)
5439  *
5440  * \param dir   directory for dot and dotdot fixup.
5441  * \param obj   child object for linking
5442  *
5443  * \retval   0, on success
5444  * \retval -ve, on error
5445  */
5446 static int osd_add_dot_dotdot(struct osd_thread_info *info,
5447                               struct osd_object *dir,
5448                               struct inode *parent_dir, const char *name,
5449                               const struct lu_fid *dot_fid,
5450                               const struct lu_fid *dot_dot_fid,
5451                               struct thandle *th)
5452 {
5453         struct inode *inode = dir->oo_inode;
5454         struct osd_thandle *oth;
5455         int result = 0;
5456
5457         oth = container_of(th, struct osd_thandle, ot_super);
5458         LASSERT(oth->ot_handle->h_transaction != NULL);
5459         LASSERT(S_ISDIR(dir->oo_inode->i_mode));
5460
5461         if (strcmp(name, dot) == 0) {
5462                 if (dir->oo_compat_dot_created) {
5463                         result = -EEXIST;
5464                 } else {
5465                         LASSERT(inode->i_ino == parent_dir->i_ino);
5466                         dir->oo_compat_dot_created = 1;
5467                         result = 0;
5468                 }
5469         } else if (strcmp(name, dotdot) == 0) {
5470                 if (!dir->oo_compat_dot_created)
5471                         return -EINVAL;
5472                 /* in case of rename, dotdot is already created */
5473                 if (dir->oo_compat_dotdot_created) {
5474                         return __osd_ea_add_rec(info, dir, parent_dir, name,
5475                                                 dot_dot_fid, NULL, th);
5476                 }
5477
5478                 if (OBD_FAIL_CHECK(OBD_FAIL_LFSCK_BAD_PARENT)) {
5479                         struct lu_fid tfid = *dot_dot_fid;
5480
5481                         tfid.f_oid--;
5482                         result = osd_add_dot_dotdot_internal(info,
5483                                         dir->oo_inode, parent_dir, dot_fid,
5484                                         &tfid, oth);
5485                 } else {
5486                         result = osd_add_dot_dotdot_internal(info,
5487                                         dir->oo_inode, parent_dir, dot_fid,
5488                                         dot_dot_fid, oth);
5489                 }
5490
5491                 if (result == 0)
5492                         dir->oo_compat_dotdot_created = 1;
5493         }
5494
5495         return result;
5496 }
5497
5498
5499 /**
5500  * It will call the appropriate osd_add* function and return the
5501  * value, return by respective functions.
5502  */
5503 static int osd_ea_add_rec(const struct lu_env *env, struct osd_object *pobj,
5504                           struct inode *cinode, const char *name,
5505                           const struct lu_fid *fid, struct thandle *th)
5506 {
5507         struct osd_thread_info *info = osd_oti_get(env);
5508         struct htree_lock *hlock;
5509         int rc;
5510
5511         hlock = pobj->oo_hl_head != NULL ? info->oti_hlock : NULL;
5512
5513         if (name[0] == '.' && (name[1] == '\0' ||
5514                                (name[1] == '.' && name[2] == '\0'))) {
5515                 if (hlock != NULL) {
5516                         ldiskfs_htree_lock(hlock, pobj->oo_hl_head,
5517                                            pobj->oo_inode, 0);
5518                 } else {
5519                         down_write(&pobj->oo_ext_idx_sem);
5520                 }
5521
5522                 rc = osd_add_dot_dotdot(info, pobj, cinode, name,
5523                                         lu_object_fid(&pobj->oo_dt.do_lu),
5524                                         fid, th);
5525         } else {
5526                 if (hlock != NULL) {
5527                         ldiskfs_htree_lock(hlock, pobj->oo_hl_head,
5528                                            pobj->oo_inode, LDISKFS_HLOCK_ADD);
5529                 } else {
5530                         down_write(&pobj->oo_ext_idx_sem);
5531                 }
5532
5533                 if (OBD_FAIL_CHECK(OBD_FAIL_FID_INDIR)) {
5534                         struct lu_fid *tfid = &info->oti_fid;
5535
5536                         *tfid = *fid;
5537                         tfid->f_ver = ~0;
5538                         rc = __osd_ea_add_rec(info, pobj, cinode, name,
5539                                               tfid, hlock, th);
5540                 } else {
5541                         rc = __osd_ea_add_rec(info, pobj, cinode, name, fid,
5542                                               hlock, th);
5543                 }
5544         }
5545         if (hlock != NULL)
5546                 ldiskfs_htree_unlock(hlock);
5547         else
5548                 up_write(&pobj->oo_ext_idx_sem);
5549
5550         return rc;
5551 }
5552
5553 static int
5554 osd_consistency_check(struct osd_thread_info *oti, struct osd_device *dev,
5555                       struct osd_idmap_cache *oic)
5556 {
5557         struct lustre_scrub *scrub = &dev->od_scrub.os_scrub;
5558         struct lu_fid *fid = &oic->oic_fid;
5559         struct osd_inode_id *id = &oic->oic_lid;
5560         struct inode *inode = NULL;
5561         int once = 0;
5562         bool insert;
5563         int rc;
5564
5565         ENTRY;
5566
5567         if (!fid_is_norm(fid) && !fid_is_igif(fid))
5568                 RETURN(0);
5569
5570         if (thread_is_running(&scrub->os_thread) &&
5571             scrub->os_pos_current > id->oii_ino)
5572                 RETURN(0);
5573
5574         if (dev->od_auto_scrub_interval == AS_NEVER ||
5575             ktime_get_real_seconds() <
5576             scrub->os_file.sf_time_last_complete + dev->od_auto_scrub_interval)
5577                 RETURN(0);
5578
5579 again:
5580         rc = osd_oi_lookup(oti, dev, fid, &oti->oti_id, 0);
5581         if (rc == -ENOENT) {
5582                 __u32 gen = id->oii_gen;
5583
5584                 insert = true;
5585                 if (inode != NULL)
5586                         goto trigger;
5587
5588                 inode = osd_iget(oti, dev, id);
5589                 /* The inode has been removed (by race maybe). */
5590                 if (IS_ERR(inode)) {
5591                         rc = PTR_ERR(inode);
5592
5593                         RETURN(rc == -ESTALE ? -ENOENT : rc);
5594                 }
5595
5596                 /* The OI mapping is lost. */
5597                 if (gen != OSD_OII_NOGEN)
5598                         goto trigger;
5599
5600                 /*
5601                  * The inode may has been reused by others, we do not know,
5602                  * leave it to be handled by subsequent osd_fid_lookup().
5603                  */
5604                 GOTO(out, rc = 0);
5605         } else if (rc || osd_id_eq(id, &oti->oti_id)) {
5606                 GOTO(out, rc);
5607         }
5608
5609         insert = false;
5610
5611 trigger:
5612         if (thread_is_running(&scrub->os_thread)) {
5613                 if (inode == NULL) {
5614                         inode = osd_iget(oti, dev, id);
5615                         /* The inode has been removed (by race maybe). */
5616                         if (IS_ERR(inode)) {
5617                                 rc = PTR_ERR(inode);
5618
5619                                 RETURN(rc == -ESTALE ? -ENOENT : rc);
5620                         }
5621                 }
5622
5623                 rc = osd_oii_insert(dev, oic, insert);
5624                 /*
5625                  * There is race condition between osd_oi_lookup and OI scrub.
5626                  * The OI scrub finished just after osd_oi_lookup() failure.
5627                  * Under such case, it is unnecessary to trigger OI scrub again,
5628                  * but try to call osd_oi_lookup() again.
5629                  */
5630                 if (unlikely(rc == -EAGAIN))
5631                         goto again;
5632
5633                 if (!S_ISDIR(inode->i_mode))
5634                         rc = 0;
5635                 else
5636                         rc = osd_check_lmv(oti, dev, inode, oic);
5637
5638                 GOTO(out, rc);
5639         }
5640
5641         if (dev->od_auto_scrub_interval != AS_NEVER && ++once == 1) {
5642                 rc = osd_scrub_start(oti->oti_env, dev, SS_AUTO_PARTIAL |
5643                                      SS_CLEAR_DRYRUN | SS_CLEAR_FAILOUT);
5644                 CDEBUG(D_LFSCK | D_CONSOLE | D_WARNING,
5645                        "%s: trigger partial OI scrub for RPC inconsistency "
5646                        "checking FID "DFID": rc = %d\n",
5647                        osd_dev2name(dev), PFID(fid), rc);
5648                 if (rc == 0 || rc == -EALREADY)
5649                         goto again;
5650         }
5651
5652         GOTO(out, rc);
5653
5654 out:
5655         if (inode)
5656                 iput(inode);
5657
5658         RETURN(rc);
5659 }
5660
5661 static int osd_fail_fid_lookup(struct osd_thread_info *oti,
5662                                struct osd_device *dev,
5663                                struct osd_idmap_cache *oic,
5664                                struct lu_fid *fid, __u32 ino)
5665 {
5666         struct lustre_ost_attrs *loa = &oti->oti_ost_attrs;
5667         struct inode *inode;
5668         int rc;
5669
5670         osd_id_gen(&oic->oic_lid, ino, OSD_OII_NOGEN);
5671         inode = osd_iget(oti, dev, &oic->oic_lid);
5672         if (IS_ERR(inode)) {
5673                 fid_zero(&oic->oic_fid);
5674                 return PTR_ERR(inode);
5675         }
5676
5677         rc = osd_get_lma(oti, inode, &oti->oti_obj_dentry, loa);
5678         iput(inode);
5679         if (rc != 0)
5680                 fid_zero(&oic->oic_fid);
5681         else
5682                 *fid = oic->oic_fid = loa->loa_lma.lma_self_fid;
5683         return rc;
5684 }
5685
5686 void osd_add_oi_cache(struct osd_thread_info *info, struct osd_device *osd,
5687                       struct osd_inode_id *id, const struct lu_fid *fid)
5688 {
5689         CDEBUG(D_INODE, "add "DFID" %u:%u to info %p\n", PFID(fid),
5690                id->oii_ino, id->oii_gen, info);
5691         info->oti_cache.oic_lid = *id;
5692         info->oti_cache.oic_fid = *fid;
5693         info->oti_cache.oic_dev = osd;
5694 }
5695
5696 /**
5697  * Get parent FID from the linkEA.
5698  *
5699  * For a directory which parent resides on remote MDT, to satisfy the
5700  * local e2fsck, we insert it into the /REMOTE_PARENT_DIR locally. On
5701  * the other hand, to make the lookup(..) on the directory can return
5702  * the real parent FID, we append the real parent FID after its ".."
5703  * name entry in the /REMOTE_PARENT_DIR.
5704  *
5705  * Unfortunately, such PFID-in-dirent cannot be preserved via file-level
5706  * backup. So after the restore, we cannot get the right parent FID from
5707  * its ".." name entry in the /REMOTE_PARENT_DIR. Under such case, since
5708  * we have stored the real parent FID in the directory object's linkEA,
5709  * we can parse the linkEA for the real parent FID.
5710  *
5711  * \param[in] env       pointer to the thread context
5712  * \param[in] obj       pointer to the object to be handled
5713  * \param[out]fid       pointer to the buffer to hold the parent FID
5714  *
5715  * \retval              0 for getting the real parent FID successfully
5716  * \retval              negative error number on failure
5717  */
5718 static int osd_get_pfid_from_linkea(const struct lu_env *env,
5719                                     struct osd_object *obj,
5720                                     struct lu_fid *fid)
5721 {
5722         struct osd_thread_info *oti = osd_oti_get(env);
5723         struct lu_buf *buf = &oti->oti_big_buf;
5724         struct dentry *dentry = &oti->oti_obj_dentry;
5725         struct inode *inode = obj->oo_inode;
5726         struct linkea_data ldata = { NULL };
5727         int rc;
5728
5729         ENTRY;
5730
5731         fid_zero(fid);
5732         if (!S_ISDIR(inode->i_mode))
5733                 RETURN(-EIO);
5734
5735 again:
5736         rc = __osd_xattr_get(inode, dentry, XATTR_NAME_LINK,
5737                              buf->lb_buf, buf->lb_len);
5738         if (rc == -ERANGE) {
5739                 rc = __osd_xattr_get(inode, dentry, XATTR_NAME_LINK,
5740                                      NULL, 0);
5741                 if (rc > 0) {
5742                         lu_buf_realloc(buf, rc);
5743                         if (buf->lb_buf == NULL)
5744                                 RETURN(-ENOMEM);
5745
5746                         goto again;
5747                 }
5748         }
5749
5750         if (unlikely(rc == 0))
5751                 RETURN(-ENODATA);
5752
5753         if (rc < 0)
5754                 RETURN(rc);
5755
5756         if (unlikely(buf->lb_buf == NULL)) {
5757                 lu_buf_realloc(buf, rc);
5758                 if (buf->lb_buf == NULL)
5759                         RETURN(-ENOMEM);
5760
5761                 goto again;
5762         }
5763
5764         ldata.ld_buf = buf;
5765         rc = linkea_init_with_rec(&ldata);
5766         if (!rc) {
5767                 linkea_first_entry(&ldata);
5768                 linkea_entry_unpack(ldata.ld_lee, &ldata.ld_reclen, NULL, fid);
5769         }
5770
5771         RETURN(rc);
5772 }
5773
5774 static int osd_verify_ent_by_linkea(const struct lu_env *env,
5775                                     struct inode *inode,
5776                                     const struct lu_fid *pfid,
5777                                     const char *name, const int namelen)
5778 {
5779         struct osd_thread_info *oti = osd_oti_get(env);
5780         struct lu_buf *buf = &oti->oti_big_buf;
5781         struct dentry *dentry = &oti->oti_obj_dentry;
5782         struct linkea_data ldata = { NULL };
5783         struct lu_name cname = { .ln_name = name,
5784                                  .ln_namelen = namelen };
5785         int rc;
5786
5787         ENTRY;
5788
5789 again:
5790         rc = __osd_xattr_get(inode, dentry, XATTR_NAME_LINK,
5791                              buf->lb_buf, buf->lb_len);
5792         if (rc == -ERANGE)
5793                 rc = __osd_xattr_get(inode, dentry, XATTR_NAME_LINK, NULL, 0);
5794
5795         if (rc < 0)
5796                 RETURN(rc);
5797
5798         if (unlikely(rc == 0))
5799                 RETURN(-ENODATA);
5800
5801         if (buf->lb_len < rc) {
5802                 lu_buf_realloc(buf, rc);
5803                 if (buf->lb_buf == NULL)
5804                         RETURN(-ENOMEM);
5805
5806                 goto again;
5807         }
5808
5809         ldata.ld_buf = buf;
5810         rc = linkea_init_with_rec(&ldata);
5811         if (!rc)
5812                 rc = linkea_links_find(&ldata, &cname, pfid);
5813
5814         RETURN(rc);
5815 }
5816
5817 /**
5818  * Calls ->lookup() to find dentry. From dentry get inode and
5819  * read inode's ea to get fid. This is required for  interoperability
5820  * mode (b11826)
5821  *
5822  * \retval   0, on success
5823  * \retval -ve, on error
5824  */
5825 static int osd_ea_lookup_rec(const struct lu_env *env, struct osd_object *obj,
5826                              struct dt_rec *rec, const struct dt_key *key)
5827 {
5828         struct inode *dir = obj->oo_inode;
5829         struct dentry *dentry;
5830         struct ldiskfs_dir_entry_2 *de;
5831         struct buffer_head *bh;
5832         struct lu_fid *fid = (struct lu_fid *)rec;
5833         struct htree_lock *hlock = NULL;
5834         int ino;
5835         int rc;
5836
5837         ENTRY;
5838
5839         LASSERT(dir->i_op != NULL);
5840         LASSERT(dir->i_op->lookup != NULL);
5841
5842         dentry = osd_child_dentry_get(env, obj,
5843                                       (char *)key, strlen((char *)key));
5844
5845         if (obj->oo_hl_head != NULL) {
5846                 hlock = osd_oti_get(env)->oti_hlock;
5847                 ldiskfs_htree_lock(hlock, obj->oo_hl_head,
5848                                    dir, LDISKFS_HLOCK_LOOKUP);
5849         } else {
5850                 down_read(&obj->oo_ext_idx_sem);
5851         }
5852
5853         bh = osd_ldiskfs_find_entry(dir, &dentry->d_name, &de, NULL, hlock);
5854         if (!IS_ERR(bh)) {
5855                 struct osd_thread_info *oti = osd_oti_get(env);
5856                 struct osd_inode_id *id = &oti->oti_id;
5857                 struct osd_idmap_cache *oic = &oti->oti_cache;
5858                 struct osd_device *dev = osd_obj2dev(obj);
5859
5860                 ino = le32_to_cpu(de->inode);
5861                 if (OBD_FAIL_CHECK(OBD_FAIL_FID_LOOKUP)) {
5862                         brelse(bh);
5863                         rc = osd_fail_fid_lookup(oti, dev, oic, fid, ino);
5864                         GOTO(out, rc);
5865                 }
5866
5867                 rc = osd_get_fid_from_dentry(de, rec);
5868
5869                 /* done with de, release bh */
5870                 brelse(bh);
5871                 if (rc != 0) {
5872                         if (unlikely(is_remote_parent_ino(dev, ino))) {
5873                                 const char *name = (const char *)key;
5874
5875                                 /*
5876                                  * If the parent is on remote MDT, and there
5877                                  * is no FID-in-dirent, then we have to get
5878                                  * the parent FID from the linkEA.
5879                                  */
5880                                 if (likely(strlen(name) == 2 &&
5881                                            name[0] == '.' && name[1] == '.'))
5882                                         rc = osd_get_pfid_from_linkea(env, obj,
5883                                                                       fid);
5884                         } else {
5885                                 rc = osd_ea_fid_get(env, obj, ino, fid, id);
5886                         }
5887                 } else {
5888                         osd_id_gen(id, ino, OSD_OII_NOGEN);
5889                 }
5890
5891                 if (rc != 0 || osd_remote_fid(env, dev, fid)) {
5892                         fid_zero(&oic->oic_fid);
5893
5894                         GOTO(out, rc);
5895                 }
5896
5897                 osd_add_oi_cache(osd_oti_get(env), osd_obj2dev(obj), id, fid);
5898                 rc = osd_consistency_check(oti, dev, oic);
5899                 if (rc == -ENOENT)
5900                         fid_zero(&oic->oic_fid);
5901                 else
5902                         /* Other error should not affect lookup result. */
5903                         rc = 0;
5904         } else {
5905                 rc = PTR_ERR(bh);
5906         }
5907
5908         GOTO(out, rc);
5909
5910 out:
5911         if (hlock != NULL)
5912                 ldiskfs_htree_unlock(hlock);
5913         else
5914                 up_read(&obj->oo_ext_idx_sem);
5915         return rc;
5916 }
5917
5918 static int osd_index_declare_ea_insert(const struct lu_env *env,
5919                                        struct dt_object *dt,
5920                                        const struct dt_rec *rec,
5921                                        const struct dt_key *key,
5922                                        struct thandle *handle)
5923 {
5924         struct osd_thandle *oh;
5925         struct osd_device *osd = osd_dev(dt->do_lu.lo_dev);
5926         struct dt_insert_rec *rec1 = (struct dt_insert_rec *)rec;
5927         const struct lu_fid *fid = rec1->rec_fid;
5928         int credits, rc = 0;
5929         struct osd_idmap_cache *idc;
5930
5931         ENTRY;
5932
5933         LASSERT(!dt_object_remote(dt));
5934         LASSERT(handle != NULL);
5935         LASSERT(fid != NULL);
5936         LASSERT(rec1->rec_type != 0);
5937
5938         oh = container_of0(handle, struct osd_thandle, ot_super);
5939         LASSERT(oh->ot_handle == NULL);
5940
5941         credits = osd_dto_credits_noquota[DTO_INDEX_INSERT];
5942
5943         /*
5944          * we can't call iget() while a transactions is running
5945          * (this can lead to a deadlock), but we need to know
5946          * inum and object type. so we find this information at
5947          * declaration and cache in per-thread info
5948          */
5949         idc = osd_idc_find_or_init(env, osd, fid);
5950         if (IS_ERR(idc))
5951                 RETURN(PTR_ERR(idc));
5952         if (idc->oic_remote) {
5953                 /*
5954                  * a reference to remote inode is represented by an
5955                  * agent inode which we have to create
5956                  */
5957                 credits += osd_dto_credits_noquota[DTO_OBJECT_CREATE];
5958                 credits += osd_dto_credits_noquota[DTO_INDEX_INSERT];
5959         }
5960
5961         osd_trans_declare_op(env, oh, OSD_OT_INSERT, credits);
5962
5963         if (osd_dt_obj(dt)->oo_inode != NULL) {
5964                 struct inode *inode = osd_dt_obj(dt)->oo_inode;
5965
5966                 /*
5967                  * We ignore block quota on meta pool (MDTs), so needn't
5968                  * calculate how many blocks will be consumed by this index
5969                  * insert
5970                  */
5971                 rc = osd_declare_inode_qid(env, i_uid_read(inode),
5972                                            i_gid_read(inode),
5973                                            i_projid_read(inode), 0,
5974                                            oh, osd_dt_obj(dt), NULL,
5975                                            OSD_QID_BLK);
5976                 if (rc)
5977                         RETURN(rc);
5978
5979 #ifdef HAVE_PROJECT_QUOTA
5980                 /*
5981                  * Reserve credits for local agent inode to transfer
5982                  * to 0, quota enforcement is ignored in this case.
5983                  */
5984                 if (idc->oic_remote &&
5985                     LDISKFS_I(inode)->i_flags & LUSTRE_PROJINHERIT_FL &&
5986                     i_projid_read(inode) != 0)
5987                         rc = osd_declare_attr_qid(env, osd_dt_obj(dt), oh,
5988                                                   0, i_projid_read(inode),
5989                                                   0, false, PRJQUOTA, true);
5990 #endif
5991         }
5992
5993         RETURN(rc);
5994 }
5995
5996 /**
5997  * Index add function for interoperability mode (b11826).
5998  * It will add the directory entry.This entry is needed to
5999  * maintain name->fid mapping.
6000  *
6001  * \param key it is key i.e. file entry to be inserted
6002  * \param rec it is value of given key i.e. fid
6003  *
6004  * \retval   0, on success
6005  * \retval -ve, on error
6006  */
6007 static int osd_index_ea_insert(const struct lu_env *env, struct dt_object *dt,
6008                                const struct dt_rec *rec,
6009                                const struct dt_key *key, struct thandle *th)
6010 {
6011         struct osd_object *obj = osd_dt_obj(dt);
6012         struct osd_device *osd = osd_dev(dt->do_lu.lo_dev);
6013         struct dt_insert_rec *rec1 = (struct dt_insert_rec *)rec;
6014         const struct lu_fid *fid = rec1->rec_fid;
6015         const char *name = (const char *)key;
6016         struct osd_thread_info *oti = osd_oti_get(env);
6017         struct inode *child_inode = NULL;
6018         struct osd_idmap_cache *idc;
6019         int rc;
6020
6021         ENTRY;
6022
6023         if (!dt_object_exists(dt))
6024                 RETURN(-ENOENT);
6025
6026         LASSERT(osd_invariant(obj));
6027         LASSERT(!dt_object_remote(dt));
6028         LASSERT(th != NULL);
6029
6030         osd_trans_exec_op(env, th, OSD_OT_INSERT);
6031
6032         LASSERTF(fid_is_sane(fid), "fid"DFID" is insane!\n", PFID(fid));
6033
6034         idc = osd_idc_find(env, osd, fid);
6035         if (unlikely(idc == NULL)) {
6036                 idc = osd_idc_find_or_init(env, osd, fid);
6037                 if (IS_ERR(idc)) {
6038                         /*
6039                          * this dt_insert() wasn't declared properly, so
6040                          * FID is missing in OI cache. we better do not
6041                          * lookup FID in FLDB/OI and don't risk to deadlock,
6042                          * but in some special cases (lfsck testing, etc)
6043                          * it's much simpler than fixing a caller.
6044                          *
6045                          * normally this error should be placed after the first
6046                          * find, but migrate may attach source stripes to
6047                          * target, which doesn't create stripes.
6048                          */
6049                         CERROR("%s: "DFID" wasn't declared for insert\n",
6050                                osd_name(osd), PFID(fid));
6051                         dump_stack();
6052                         RETURN(PTR_ERR(idc));
6053                 }
6054         }
6055
6056         if (idc->oic_remote) {
6057                 /* Insert remote entry */
6058                 if (strcmp(name, dotdot) == 0 && strlen(name) == 2) {
6059                         child_inode =
6060                         igrab(osd->od_mdt_map->omm_remote_parent->d_inode);
6061                 } else {
6062                         child_inode = osd_create_local_agent_inode(env, osd,
6063                                         obj, fid, rec1->rec_type & S_IFMT, th);
6064                         if (IS_ERR(child_inode))
6065                                 RETURN(PTR_ERR(child_inode));
6066                 }
6067         } else {
6068                 /* Insert local entry */
6069                 if (unlikely(idc->oic_lid.oii_ino == 0)) {
6070                         /* for a reason OI cache wasn't filled properly */
6071                         CERROR("%s: OIC for "DFID" isn't filled\n",
6072                                osd_name(osd), PFID(fid));
6073                         RETURN(-EINVAL);
6074                 }
6075                 child_inode = oti->oti_inode;
6076                 if (unlikely(child_inode == NULL)) {
6077                         struct ldiskfs_inode_info *lii;
6078
6079                         OBD_ALLOC_PTR(lii);
6080                         if (lii == NULL)
6081                                 RETURN(-ENOMEM);
6082                         child_inode = oti->oti_inode = &lii->vfs_inode;
6083                 }
6084                 child_inode->i_sb = osd_sb(osd);
6085                 child_inode->i_ino = idc->oic_lid.oii_ino;
6086                 child_inode->i_mode = rec1->rec_type & S_IFMT;
6087         }
6088
6089         rc = osd_ea_add_rec(env, obj, child_inode, name, fid, th);
6090
6091         CDEBUG(D_INODE, "parent %lu insert %s:%lu rc = %d\n",
6092                obj->oo_inode->i_ino, name, child_inode->i_ino, rc);
6093
6094         if (child_inode && child_inode != oti->oti_inode)
6095                 iput(child_inode);
6096         LASSERT(osd_invariant(obj));
6097         osd_trans_exec_check(env, th, OSD_OT_INSERT);
6098         RETURN(rc);
6099 }
6100
6101 /**
6102  *  Initialize osd Iterator for given osd index object.
6103  *
6104  *  \param  dt      osd index object
6105  */
6106
6107 static struct dt_it *osd_it_iam_init(const struct lu_env *env,
6108                                      struct dt_object *dt,
6109                                      __u32 unused)
6110 {
6111         struct osd_it_iam *it;
6112         struct osd_object *obj = osd_dt_obj(dt);
6113         struct lu_object *lo = &dt->do_lu;
6114         struct iam_path_descr *ipd;
6115         struct iam_container *bag = &obj->oo_dir->od_container;
6116
6117         if (!dt_object_exists(dt))
6118                 return ERR_PTR(-ENOENT);
6119
6120         OBD_ALLOC_PTR(it);
6121         if (it == NULL)
6122                 return ERR_PTR(-ENOMEM);
6123
6124         ipd = osd_it_ipd_get(env, bag);
6125         if (likely(ipd != NULL)) {
6126                 it->oi_obj = obj;
6127                 it->oi_ipd = ipd;
6128                 lu_object_get(lo);
6129                 iam_it_init(&it->oi_it, bag, IAM_IT_MOVE, ipd);
6130                 return (struct dt_it *)it;
6131         } else {
6132                 OBD_FREE_PTR(it);
6133                 return ERR_PTR(-ENOMEM);
6134         }
6135 }
6136
6137 /**
6138  * free given Iterator.
6139  */
6140 static void osd_it_iam_fini(const struct lu_env *env, struct dt_it *di)
6141 {
6142         struct osd_it_iam *it  = (struct osd_it_iam *)di;
6143         struct osd_object *obj = it->oi_obj;
6144
6145         iam_it_fini(&it->oi_it);
6146         osd_ipd_put(env, &obj->oo_dir->od_container, it->oi_ipd);
6147         osd_object_put(env, obj);
6148         OBD_FREE_PTR(it);
6149 }
6150
6151 /**
6152  *  Move Iterator to record specified by \a key
6153  *
6154  *  \param  di      osd iterator
6155  *  \param  key     key for index
6156  *
6157  *  \retval +ve  di points to record with least key not larger than key
6158  *  \retval  0   di points to exact matched key
6159  *  \retval -ve  failure
6160  */
6161
6162 static int osd_it_iam_get(const struct lu_env *env,
6163                           struct dt_it *di, const struct dt_key *key)
6164 {
6165         struct osd_thread_info *oti = osd_oti_get(env);
6166         struct osd_it_iam *it = (struct osd_it_iam *)di;
6167
6168         if (fid_is_quota(lu_object_fid(&it->oi_obj->oo_dt.do_lu))) {
6169                 /* swab quota uid/gid */
6170                 oti->oti_quota_id = cpu_to_le64(*((__u64 *)key));
6171                 key = (struct dt_key *)&oti->oti_quota_id;
6172         }
6173
6174         return iam_it_get(&it->oi_it, (const struct iam_key *)key);
6175 }
6176
6177 /**
6178  *  Release Iterator
6179  *
6180  *  \param  di      osd iterator
6181  */
6182 static void osd_it_iam_put(const struct lu_env *env, struct dt_it *di)
6183 {
6184         struct osd_it_iam *it = (struct osd_it_iam *)di;
6185
6186         iam_it_put(&it->oi_it);
6187 }
6188
6189 /**
6190  *  Move iterator by one record
6191  *
6192  *  \param  di      osd iterator
6193  *
6194  *  \retval +1   end of container reached
6195  *  \retval  0   success
6196  *  \retval -ve  failure
6197  */
6198
6199 static int osd_it_iam_next(const struct lu_env *env, struct dt_it *di)
6200 {
6201         struct osd_it_iam *it = (struct osd_it_iam *)di;
6202
6203         return iam_it_next(&it->oi_it);
6204 }
6205
6206 /**
6207  * Return pointer to the key under iterator.
6208  */
6209
6210 static struct dt_key *osd_it_iam_key(const struct lu_env *env,
6211                                      const struct dt_it *di)
6212 {
6213         struct osd_thread_info *oti = osd_oti_get(env);
6214         struct osd_it_iam *it = (struct osd_it_iam *)di;
6215         struct osd_object *obj = it->oi_obj;
6216         struct dt_key *key;
6217
6218         key = (struct dt_key *)iam_it_key_get(&it->oi_it);
6219
6220         if (!IS_ERR(key) && fid_is_quota(lu_object_fid(&obj->oo_dt.do_lu))) {
6221                 /* swab quota uid/gid */
6222                 oti->oti_quota_id = le64_to_cpu(*((__u64 *)key));
6223                 key = (struct dt_key *)&oti->oti_quota_id;
6224         }
6225
6226         return key;
6227 }
6228
6229 /**
6230  * Return size of key under iterator (in bytes)
6231  */
6232
6233 static int osd_it_iam_key_size(const struct lu_env *env, const struct dt_it *di)
6234 {
6235         struct osd_it_iam *it = (struct osd_it_iam *)di;
6236
6237         return iam_it_key_size(&it->oi_it);
6238 }
6239
6240 static inline void
6241 osd_it_append_attrs(struct lu_dirent *ent, int len, __u16 type)
6242 {
6243         /* check if file type is required */
6244         if (ent->lde_attrs & LUDA_TYPE) {
6245                 struct luda_type *lt;
6246                 int align = sizeof(*lt) - 1;
6247
6248                 len = (len + align) & ~align;
6249                 lt = (struct luda_type *)(ent->lde_name + len);
6250                 lt->lt_type = cpu_to_le16(DTTOIF(type));
6251         }
6252
6253         ent->lde_attrs = cpu_to_le32(ent->lde_attrs);
6254 }
6255
6256 /**
6257  * build lu direct from backend fs dirent.
6258  */
6259
6260 static inline void
6261 osd_it_pack_dirent(struct lu_dirent *ent, struct lu_fid *fid, __u64 offset,
6262                    char *name, __u16 namelen, __u16 type, __u32 attr)
6263 {
6264         ent->lde_attrs = attr | LUDA_FID;
6265         fid_cpu_to_le(&ent->lde_fid, fid);
6266
6267         ent->lde_hash = cpu_to_le64(offset);
6268         ent->lde_reclen = cpu_to_le16(lu_dirent_calc_size(namelen, attr));
6269
6270         strncpy(ent->lde_name, name, namelen);
6271         ent->lde_name[namelen] = '\0';
6272         ent->lde_namelen = cpu_to_le16(namelen);
6273
6274         /* append lustre attributes */
6275         osd_it_append_attrs(ent, namelen, type);
6276 }
6277
6278 /**
6279  * Return pointer to the record under iterator.
6280  */
6281 static int osd_it_iam_rec(const struct lu_env *env,
6282                           const struct dt_it *di,
6283                           struct dt_rec *dtrec, __u32 attr)
6284 {
6285         struct osd_it_iam *it = (struct osd_it_iam *)di;
6286         struct osd_thread_info *info = osd_oti_get(env);
6287
6288         ENTRY;
6289
6290         if (S_ISDIR(it->oi_obj->oo_inode->i_mode)) {
6291                 const struct osd_fid_pack *rec;
6292                 struct lu_fid *fid = &info->oti_fid;
6293                 struct lu_dirent *lde = (struct lu_dirent *)dtrec;
6294                 char *name;
6295                 int namelen;
6296                 __u64 hash;
6297                 int rc;
6298
6299                 name = (char *)iam_it_key_get(&it->oi_it);
6300                 if (IS_ERR(name))
6301                         RETURN(PTR_ERR(name));
6302
6303                 namelen = iam_it_key_size(&it->oi_it);
6304
6305                 rec = (const struct osd_fid_pack *)iam_it_rec_get(&it->oi_it);
6306                 if (IS_ERR(rec))
6307                         RETURN(PTR_ERR(rec));
6308
6309                 rc = osd_fid_unpack(fid, rec);
6310                 if (rc)
6311                         RETURN(rc);
6312
6313                 hash = iam_it_store(&it->oi_it);
6314
6315                 /* IAM does not store object type in IAM index (dir) */
6316                 osd_it_pack_dirent(lde, fid, hash, name, namelen,
6317                                    0, LUDA_FID);
6318         } else if (fid_is_quota(lu_object_fid(&it->oi_obj->oo_dt.do_lu))) {
6319                 iam_reccpy(&it->oi_it.ii_path.ip_leaf,
6320                            (struct iam_rec *)dtrec);
6321                 osd_quota_unpack(it->oi_obj, dtrec);
6322         } else {
6323                 iam_reccpy(&it->oi_it.ii_path.ip_leaf,
6324                            (struct iam_rec *)dtrec);
6325         }
6326
6327         RETURN(0);
6328 }
6329
6330 /**
6331  * Returns cookie for current Iterator position.
6332  */
6333 static __u64 osd_it_iam_store(const struct lu_env *env, const struct dt_it *di)
6334 {
6335         struct osd_it_iam *it = (struct osd_it_iam *)di;
6336
6337         return iam_it_store(&it->oi_it);
6338 }
6339
6340 /**
6341  * Restore iterator from cookie.
6342  *
6343  * \param  di      osd iterator
6344  * \param  hash    Iterator location cookie
6345  *
6346  * \retval +ve  di points to record with least key not larger than key.
6347  * \retval  0   di points to exact matched key
6348  * \retval -ve  failure
6349  */
6350
6351 static int osd_it_iam_load(const struct lu_env *env,
6352                            const struct dt_it *di, __u64 hash)
6353 {
6354         struct osd_it_iam *it = (struct osd_it_iam *)di;
6355
6356         return iam_it_load(&it->oi_it, hash);
6357 }
6358
6359 static const struct dt_index_operations osd_index_iam_ops = {
6360         .dio_lookup         = osd_index_iam_lookup,
6361         .dio_declare_insert = osd_index_declare_iam_insert,
6362         .dio_insert         = osd_index_iam_insert,
6363         .dio_declare_delete = osd_index_declare_iam_delete,
6364         .dio_delete         = osd_index_iam_delete,
6365         .dio_it     = {
6366                 .init     = osd_it_iam_init,
6367                 .fini     = osd_it_iam_fini,
6368                 .get      = osd_it_iam_get,
6369                 .put      = osd_it_iam_put,
6370                 .next     = osd_it_iam_next,
6371                 .key      = osd_it_iam_key,
6372                 .key_size = osd_it_iam_key_size,
6373                 .rec      = osd_it_iam_rec,
6374                 .store    = osd_it_iam_store,
6375                 .load     = osd_it_iam_load
6376         }
6377 };
6378
6379
6380 /**
6381  * Creates or initializes iterator context.
6382  *
6383  * \retval struct osd_it_ea, iterator structure on success
6384  *
6385  */
6386 static struct dt_it *osd_it_ea_init(const struct lu_env *env,
6387                                     struct dt_object *dt,
6388                                     __u32 attr)
6389 {
6390         struct osd_object *obj = osd_dt_obj(dt);
6391         struct osd_thread_info *info = osd_oti_get(env);
6392         struct osd_it_ea *oie;
6393         struct file *file;
6394         struct lu_object *lo = &dt->do_lu;
6395         struct dentry *obj_dentry;
6396
6397         ENTRY;
6398
6399         if (!dt_object_exists(dt) || obj->oo_destroyed)
6400                 RETURN(ERR_PTR(-ENOENT));
6401
6402         OBD_SLAB_ALLOC_PTR_GFP(oie, osd_itea_cachep, GFP_NOFS);
6403         if (oie == NULL)
6404                 RETURN(ERR_PTR(-ENOMEM));
6405         obj_dentry = &oie->oie_dentry;
6406
6407         obj_dentry->d_inode = obj->oo_inode;
6408         obj_dentry->d_sb = osd_sb(osd_obj2dev(obj));
6409         obj_dentry->d_name.hash = 0;
6410
6411         oie->oie_rd_dirent       = 0;
6412         oie->oie_it_dirent       = 0;
6413         oie->oie_dirent          = NULL;
6414         if (unlikely(!info->oti_it_ea_buf_used)) {
6415                 oie->oie_buf = info->oti_it_ea_buf;
6416                 info->oti_it_ea_buf_used = 1;
6417         } else {
6418                 OBD_ALLOC(oie->oie_buf, OSD_IT_EA_BUFSIZE);
6419                 if (oie->oie_buf == NULL)
6420                         RETURN(ERR_PTR(-ENOMEM));
6421         }
6422         oie->oie_obj = obj;
6423
6424         file = &oie->oie_file;
6425
6426         /* Only FMODE_64BITHASH or FMODE_32BITHASH should be set, NOT both. */
6427         if (attr & LUDA_64BITHASH)
6428                 file->f_mode    = FMODE_64BITHASH;
6429         else
6430                 file->f_mode    = FMODE_32BITHASH;
6431         file->f_path.dentry     = obj_dentry;
6432         file->f_mapping         = obj->oo_inode->i_mapping;
6433         file->f_op              = obj->oo_inode->i_fop;
6434         file->f_inode = obj->oo_inode;
6435
6436         lu_object_get(lo);
6437         RETURN((struct dt_it *)oie);
6438 }
6439
6440 /**
6441  * Destroy or finishes iterator context.
6442  *
6443  * \param di iterator structure to be destroyed
6444  */
6445 static void osd_it_ea_fini(const struct lu_env *env, struct dt_it *di)
6446 {
6447         struct osd_thread_info *info = osd_oti_get(env);
6448         struct osd_it_ea *oie = (struct osd_it_ea *)di;
6449         struct osd_object *obj = oie->oie_obj;
6450         struct inode *inode = obj->oo_inode;
6451
6452         ENTRY;
6453         oie->oie_file.f_op->release(inode, &oie->oie_file);
6454         osd_object_put(env, obj);
6455         if (unlikely(oie->oie_buf != info->oti_it_ea_buf))
6456                 OBD_FREE(oie->oie_buf, OSD_IT_EA_BUFSIZE);
6457         else
6458                 info->oti_it_ea_buf_used = 0;
6459         OBD_SLAB_FREE_PTR(oie, osd_itea_cachep);
6460         EXIT;
6461 }
6462
6463 /**
6464  * It position the iterator at given key, so that next lookup continues from
6465  * that key Or it is similar to dio_it->load() but based on a key,
6466  * rather than file position.
6467  *
6468  * As a special convention, osd_it_ea_get(env, di, "") has to rewind iterator
6469  * to the beginning.
6470  *
6471  * TODO: Presently return +1 considering it is only used by mdd_dir_is_empty().
6472  */
6473 static int osd_it_ea_get(const struct lu_env *env,
6474                          struct dt_it *di, const struct dt_key *key)
6475 {
6476         struct osd_it_ea *it = (struct osd_it_ea *)di;
6477
6478         ENTRY;
6479         LASSERT(((const char *)key)[0] == '\0');
6480         it->oie_file.f_pos = 0;
6481         it->oie_rd_dirent = 0;
6482         it->oie_it_dirent = 0;
6483         it->oie_dirent = NULL;
6484
6485         RETURN(+1);
6486 }
6487
6488 /**
6489  * Does nothing
6490  */
6491 static void osd_it_ea_put(const struct lu_env *env, struct dt_it *di)
6492 {
6493 }
6494
6495 struct osd_filldir_cbs {
6496         struct dir_context ctx;
6497         struct osd_it_ea  *it;
6498 };
6499 /**
6500  * It is called internally by ->iterate*(). It fills the
6501  * iterator's in-memory data structure with required
6502  * information i.e. name, namelen, rec_size etc.
6503  *
6504  * \param buf in which information to be filled in.
6505  * \param name name of the file in given dir
6506  *
6507  * \retval 0 on success
6508  * \retval 1 on buffer full
6509  */
6510 #ifdef HAVE_FILLDIR_USE_CTX
6511 static int osd_ldiskfs_filldir(struct dir_context *buf,
6512 #else
6513 static int osd_ldiskfs_filldir(void *buf,
6514 #endif
6515                                const char *name, int namelen,
6516                                loff_t offset, __u64 ino, unsigned int d_type)
6517 {
6518         struct osd_it_ea *it = ((struct osd_filldir_cbs *)buf)->it;
6519         struct osd_object *obj = it->oie_obj;
6520         struct osd_it_ea_dirent *ent = it->oie_dirent;
6521         struct lu_fid *fid = &ent->oied_fid;
6522         struct osd_fid_pack *rec;
6523
6524         ENTRY;
6525
6526 /* this should never happen */
6527         if (unlikely(namelen == 0 || namelen > LDISKFS_NAME_LEN)) {
6528                 CERROR("ldiskfs return invalid namelen %d\n", namelen);
6529                 RETURN(-EIO);
6530         }
6531
6532         if ((void *)ent - it->oie_buf + sizeof(*ent) + namelen >
6533             OSD_IT_EA_BUFSIZE)
6534                 RETURN(1);
6535
6536         /* "." is just the object itself. */
6537         if (namelen == 1 && name[0] == '.') {
6538                 *fid = obj->oo_dt.do_lu.lo_header->loh_fid;
6539         } else if (d_type & LDISKFS_DIRENT_LUFID) {
6540                 rec = (struct osd_fid_pack *)(name + namelen + 1);
6541                 if (osd_fid_unpack(fid, rec) != 0)
6542                         fid_zero(fid);
6543         } else {
6544                 fid_zero(fid);
6545         }
6546         d_type &= ~LDISKFS_DIRENT_LUFID;
6547
6548         /* NOT export local root. */
6549         if (unlikely(osd_sb(osd_obj2dev(obj))->s_root->d_inode->i_ino == ino)) {
6550                 ino = obj->oo_inode->i_ino;
6551                 *fid = obj->oo_dt.do_lu.lo_header->loh_fid;
6552         }
6553
6554         ent->oied_ino     = ino;
6555         ent->oied_off     = offset;
6556         ent->oied_namelen = namelen;
6557         ent->oied_type    = d_type;
6558
6559         memcpy(ent->oied_name, name, namelen);
6560
6561         it->oie_rd_dirent++;
6562         it->oie_dirent = (void *)ent + cfs_size_round(sizeof(*ent) + namelen);
6563         RETURN(0);
6564 }
6565
6566 /**
6567  * Calls ->iterate*() to load a directory entry at a time
6568  * and stored it in iterator's in-memory data structure.
6569  *
6570  * \param di iterator's in memory structure
6571  *
6572  * \retval   0 on success
6573  * \retval -ve on error
6574  * \retval +1 reach the end of entry
6575  */
6576 static int osd_ldiskfs_it_fill(const struct lu_env *env,
6577                                const struct dt_it *di)
6578 {
6579         struct osd_it_ea *it = (struct osd_it_ea *)di;
6580         struct osd_object *obj = it->oie_obj;
6581         struct inode *inode = obj->oo_inode;
6582         struct htree_lock *hlock = NULL;
6583         struct file *filp = &it->oie_file;
6584         int rc = 0;
6585         struct osd_filldir_cbs buf = {
6586                 .ctx.actor = osd_ldiskfs_filldir,
6587                 .it = it
6588         };
6589
6590         ENTRY;
6591         it->oie_dirent = it->oie_buf;
6592         it->oie_rd_dirent = 0;
6593
6594         if (obj->oo_hl_head != NULL) {
6595                 hlock = osd_oti_get(env)->oti_hlock;
6596                 ldiskfs_htree_lock(hlock, obj->oo_hl_head,
6597                                    inode, LDISKFS_HLOCK_READDIR);
6598         } else {
6599                 down_read(&obj->oo_ext_idx_sem);
6600         }
6601
6602         filp->f_cred = current_cred();
6603         rc = osd_security_file_alloc(filp);
6604         if (rc)
6605                 RETURN(rc);
6606
6607         filp->f_flags |= O_NOATIME;
6608         filp->f_mode |= FMODE_NONOTIFY;
6609         rc = iterate_dir(filp, &buf.ctx);
6610         if (rc)
6611                 RETURN(rc);
6612
6613         if (hlock != NULL)
6614                 ldiskfs_htree_unlock(hlock);
6615         else
6616                 up_read(&obj->oo_ext_idx_sem);
6617
6618         if (it->oie_rd_dirent == 0) {
6619                 /*
6620                  * If it does not get any dirent, it means it has been reached
6621                  * to the end of the dir
6622                  */
6623                 it->oie_file.f_pos = ldiskfs_get_htree_eof(&it->oie_file);
6624                 if (rc == 0)
6625                         rc = 1;
6626         } else {
6627                 it->oie_dirent = it->oie_buf;
6628                 it->oie_it_dirent = 1;
6629         }
6630
6631         RETURN(rc);
6632 }
6633
6634 /**
6635  * It calls osd_ldiskfs_it_fill() which will use ->iterate*()
6636  * to load a directory entry at a time and stored it in
6637  * iterator's in-memory data structure.
6638  *
6639  * \param di iterator's in memory structure
6640  *
6641  * \retval +ve iterator reached to end
6642  * \retval   0 iterator not reached to end
6643  * \retval -ve on error
6644  */
6645 static int osd_it_ea_next(const struct lu_env *env, struct dt_it *di)
6646 {
6647         struct osd_it_ea *it = (struct osd_it_ea *)di;
6648         int rc;
6649
6650         ENTRY;
6651
6652         if (it->oie_it_dirent < it->oie_rd_dirent) {
6653                 it->oie_dirent =
6654                         (void *)it->oie_dirent +
6655                         cfs_size_round(sizeof(struct osd_it_ea_dirent) +
6656                                        it->oie_dirent->oied_namelen);
6657                 it->oie_it_dirent++;
6658                 rc = 0;
6659         } else {
6660                 if (it->oie_file.f_pos == ldiskfs_get_htree_eof(&it->oie_file))
6661                         rc = 1;
6662                 else
6663                         rc = osd_ldiskfs_it_fill(env, di);
6664         }
6665
6666         RETURN(rc);
6667 }
6668
6669 /**
6670  * Returns the key at current position from iterator's in memory structure.
6671  *
6672  * \param di iterator's in memory structure
6673  *
6674  * \retval key i.e. struct dt_key on success
6675  */
6676 static struct dt_key *osd_it_ea_key(const struct lu_env *env,
6677                                     const struct dt_it *di)
6678 {
6679         struct osd_it_ea *it = (struct osd_it_ea *)di;
6680
6681         return (struct dt_key *)it->oie_dirent->oied_name;
6682 }
6683
6684 /**
6685  * Returns key's size at current position from iterator's in memory structure.
6686  *
6687  * \param di iterator's in memory structure
6688  *
6689  * \retval key_size i.e. struct dt_key on success
6690  */
6691 static int osd_it_ea_key_size(const struct lu_env *env, const struct dt_it *di)
6692 {
6693         struct osd_it_ea *it = (struct osd_it_ea *)di;
6694
6695         return it->oie_dirent->oied_namelen;
6696 }
6697
6698 #if defined LDISKFS_DIR_ENTRY_LEN && defined LDISKFS_DIR_ENTRY_LEN_
6699 #undef LDISKFS_DIR_REC_LEN
6700 #define LDISKFS_DIR_REC_LEN(de)         LDISKFS_DIR_ENTRY_LEN_((de))
6701 #endif
6702
6703 static inline bool osd_dotdot_has_space(struct ldiskfs_dir_entry_2 *de)
6704 {
6705         if (LDISKFS_DIR_REC_LEN(de) >=
6706             __LDISKFS_DIR_REC_LEN(2 + 1 + sizeof(struct osd_fid_pack)))
6707                 return true;
6708
6709         return false;
6710 }
6711
6712 static inline bool
6713 osd_dirent_has_space(struct ldiskfs_dir_entry_2 *de, __u16 namelen,
6714                      unsigned int blocksize, bool dotdot)
6715 {
6716         if (dotdot)
6717                 return osd_dotdot_has_space(de);
6718
6719         if (ldiskfs_rec_len_from_disk(de->rec_len, blocksize) >=
6720             __LDISKFS_DIR_REC_LEN(namelen + 1 + sizeof(struct osd_fid_pack)))
6721                 return true;
6722
6723         return false;
6724 }
6725
6726 static int
6727 osd_dirent_reinsert(const struct lu_env *env, struct osd_device *dev,
6728                     handle_t *jh, struct dentry *dentry,
6729                     const struct lu_fid *fid, struct buffer_head *bh,
6730                     struct ldiskfs_dir_entry_2 *de, struct htree_lock *hlock,
6731                     bool dotdot)
6732 {
6733         struct inode *dir = dentry->d_parent->d_inode;
6734         struct inode *inode = dentry->d_inode;
6735         struct osd_fid_pack *rec;
6736         struct ldiskfs_dentry_param *ldp;
6737         int namelen = dentry->d_name.len;
6738         int rc;
6739         struct osd_thread_info *info = osd_oti_get(env);
6740
6741         ENTRY;
6742
6743         if (!ldiskfs_has_feature_dirdata(inode->i_sb))
6744                 RETURN(0);
6745
6746         /* There is enough space to hold the FID-in-dirent. */
6747         if (osd_dirent_has_space(de, namelen, dir->i_sb->s_blocksize, dotdot)) {
6748                 rc = ldiskfs_journal_get_write_access(jh, bh);
6749                 if (rc != 0)
6750                         RETURN(rc);
6751
6752                 de->name[namelen] = 0;
6753                 rec = (struct osd_fid_pack *)(de->name + namelen + 1);
6754                 rec->fp_len = sizeof(struct lu_fid) + 1;
6755                 fid_cpu_to_be((struct lu_fid *)rec->fp_area, fid);
6756                 de->file_type |= LDISKFS_DIRENT_LUFID;
6757                 rc = ldiskfs_handle_dirty_metadata(jh, NULL, bh);
6758
6759                 RETURN(rc);
6760         }
6761
6762         LASSERT(!dotdot);
6763
6764         rc = ldiskfs_delete_entry(jh, dir, de, bh);
6765         if (rc != 0)
6766                 RETURN(rc);
6767
6768         ldp = (struct ldiskfs_dentry_param *)osd_oti_get(env)->oti_ldp;
6769         osd_get_ldiskfs_dirent_param(ldp, fid);
6770         dentry->d_fsdata = (void *)ldp;
6771         dquot_initialize(dir);
6772         rc = osd_ldiskfs_add_entry(info, dev, jh, dentry, inode, hlock);
6773         /*
6774          * It is too bad, we cannot reinsert the name entry back.
6775          * That means we lose it!
6776          */
6777         if (rc != 0)
6778                 CDEBUG(D_LFSCK, "%s: fail to reinsert the dirent, "
6779                        "dir = %lu/%u, name = %.*s, "DFID": rc = %d\n",
6780                        osd_ino2name(inode),
6781                        dir->i_ino, dir->i_generation, namelen,
6782                        dentry->d_name.name, PFID(fid), rc);
6783
6784         RETURN(rc);
6785 }
6786
6787 static int
6788 osd_dirent_check_repair(const struct lu_env *env, struct osd_object *obj,
6789                         struct osd_it_ea *it, struct lu_fid *fid,
6790                         struct osd_inode_id *id, __u32 *attr)
6791 {
6792         struct osd_thread_info *info = osd_oti_get(env);
6793         struct lustre_mdt_attrs *lma = &info->oti_ost_attrs.loa_lma;
6794         struct osd_device *dev = osd_obj2dev(obj);
6795         struct super_block *sb = osd_sb(dev);
6796         const char *devname = osd_name(dev);
6797         struct osd_it_ea_dirent *ent = it->oie_dirent;
6798         struct inode *dir = obj->oo_inode;
6799         struct htree_lock *hlock = NULL;
6800         struct buffer_head *bh = NULL;
6801         handle_t *jh = NULL;
6802         struct ldiskfs_dir_entry_2 *de;
6803         struct dentry *dentry;
6804         struct inode *inode;
6805         const struct lu_fid *pfid = lu_object_fid(&obj->oo_dt.do_lu);
6806         int credits;
6807         int rc;
6808         bool dotdot = false;
6809         bool dirty = false;
6810
6811         ENTRY;
6812
6813         if (ent->oied_name[0] == '.') {
6814                 if (ent->oied_namelen == 1)
6815                         RETURN(0);
6816
6817                 if (ent->oied_namelen == 2 && ent->oied_name[1] == '.')
6818                         dotdot = true;
6819         }
6820
6821         osd_id_gen(id, ent->oied_ino, OSD_OII_NOGEN);
6822         inode = osd_iget(info, dev, id);
6823         if (IS_ERR(inode)) {
6824                 rc = PTR_ERR(inode);
6825                 if (rc == -ENOENT || rc == -ESTALE) {
6826                         /*
6827                          * Maybe dangling name entry, or
6828                          * corrupted directory entry.
6829                          */
6830                         *attr |= LUDA_UNKNOWN;
6831                         rc = 0;
6832                 } else {
6833                         CDEBUG(D_LFSCK, "%s: fail to iget() for dirent "
6834                                "check_repair, dir = %lu/%u, name = %.*s, "
6835                                "ino = %llu, rc = %d\n",
6836                                devname, dir->i_ino, dir->i_generation,
6837                                ent->oied_namelen, ent->oied_name,
6838                                ent->oied_ino, rc);
6839                 }
6840
6841                 RETURN(rc);
6842         }
6843
6844         dentry = osd_child_dentry_by_inode(env, dir, ent->oied_name,
6845                                            ent->oied_namelen);
6846         rc = osd_get_lma(info, inode, dentry, &info->oti_ost_attrs);
6847         if (rc == -ENODATA || !fid_is_sane(&lma->lma_self_fid))
6848                 lma = NULL;
6849         else if (rc != 0)
6850                 GOTO(out, rc);
6851
6852         /*
6853          * We need to ensure that the name entry is still valid.
6854          * Because it may be removed or renamed by other already.
6855          *
6856          * The unlink or rename operation will start journal before PDO lock,
6857          * so to avoid deadlock, here we need to start journal handle before
6858          * related PDO lock also. But because we do not know whether there
6859          * will be something to be repaired before PDO lock, we just start
6860          * journal without conditions.
6861          *
6862          * We may need to remove the name entry firstly, then insert back.
6863          * One credit is for user quota file update.
6864          * One credit is for group quota file update.
6865          * Two credits are for dirty inode.
6866          */
6867         credits = osd_dto_credits_noquota[DTO_INDEX_DELETE] +
6868                   osd_dto_credits_noquota[DTO_INDEX_INSERT] + 1 + 1 + 2;
6869
6870         if (dev->od_dirent_journal != 0) {
6871
6872 again:
6873                 jh = osd_journal_start_sb(sb, LDISKFS_HT_MISC, credits);
6874                 if (IS_ERR(jh)) {
6875                         rc = PTR_ERR(jh);
6876                         CDEBUG(D_LFSCK, "%s: fail to start trans for dirent "
6877                                "check_repair, dir = %lu/%u, credits = %d, "
6878                                "name = %.*s, ino = %llu: rc = %d\n",
6879                                devname, dir->i_ino, dir->i_generation, credits,
6880                                ent->oied_namelen, ent->oied_name,
6881                                ent->oied_ino, rc);
6882
6883                         GOTO(out_inode, rc);
6884                 }
6885
6886                 if (obj->oo_hl_head != NULL) {
6887                         hlock = osd_oti_get(env)->oti_hlock;
6888                         /*
6889                          * "0" means exclusive lock for the whole directory.
6890                          * We need to prevent others access such name entry
6891                          * during the delete + insert. Neither HLOCK_ADD nor
6892                          * HLOCK_DEL cannot guarantee the atomicity.
6893                          */
6894                         ldiskfs_htree_lock(hlock, obj->oo_hl_head, dir, 0);
6895                 } else {
6896                         down_write(&obj->oo_ext_idx_sem);
6897                 }
6898         } else {
6899                 if (obj->oo_hl_head != NULL) {
6900                         hlock = osd_oti_get(env)->oti_hlock;
6901                         ldiskfs_htree_lock(hlock, obj->oo_hl_head, dir,
6902                                            LDISKFS_HLOCK_LOOKUP);
6903                 } else {
6904                         down_read(&obj->oo_ext_idx_sem);
6905                 }
6906         }
6907
6908         bh = osd_ldiskfs_find_entry(dir, &dentry->d_name, &de, NULL, hlock);
6909         if (IS_ERR(bh) || le32_to_cpu(de->inode) != inode->i_ino) {
6910                 *attr |= LUDA_IGNORE;
6911
6912                 GOTO(out, rc = 0);
6913         }
6914
6915         /*
6916          * For dotdot entry, if there is not enough space to hold the
6917          * FID-in-dirent, just keep them there. It only happens when the
6918          * device upgraded from 1.8 or restored from MDT file-level backup.
6919          * For the whole directory, only dotdot entry have no FID-in-dirent
6920          * and needs to get FID from LMA when readdir, it will not affect the
6921          * performance much.
6922          */
6923         if (dotdot && !osd_dotdot_has_space(de)) {
6924                 *attr |= LUDA_UNKNOWN;
6925
6926                 GOTO(out, rc = 0);
6927         }
6928
6929         if (lma != NULL) {
6930                 if (lu_fid_eq(fid, &lma->lma_self_fid))
6931                         GOTO(out, rc = 0);
6932
6933                 if (unlikely(lma->lma_compat & LMAC_NOT_IN_OI)) {
6934                         struct lu_fid *tfid = &lma->lma_self_fid;
6935
6936                         if (likely(dotdot &&
6937                                    fid_seq(tfid) == FID_SEQ_LOCAL_FILE &&
6938                                    fid_oid(tfid) == REMOTE_PARENT_DIR_OID)) {
6939                                 /*
6940                                  * It must be REMOTE_PARENT_DIR and as the
6941                                  * 'dotdot' entry of remote directory
6942                                  */
6943                                 *attr |= LUDA_IGNORE;
6944                         } else {
6945                                 CDEBUG(D_LFSCK, "%s: expect remote agent "
6946                                        "parent directory, but got %.*s under "
6947                                        "dir = %lu/%u with the FID "DFID"\n",
6948                                        devname, ent->oied_namelen,
6949                                        ent->oied_name, dir->i_ino,
6950                                        dir->i_generation, PFID(tfid));
6951
6952                                 *attr |= LUDA_UNKNOWN;
6953                         }
6954
6955                         GOTO(out, rc = 0);
6956                 }
6957         }
6958
6959         if (!fid_is_zero(fid)) {
6960                 rc = osd_verify_ent_by_linkea(env, inode, pfid, ent->oied_name,
6961                                               ent->oied_namelen);
6962                 if (rc == -ENOENT ||
6963                     (rc == -ENODATA &&
6964                      !(dev->od_scrub.os_scrub.os_file.sf_flags & SF_UPGRADE))) {
6965                         /*
6966                          * linkEA does not recognize the dirent entry,
6967                          * it may because the dirent entry corruption
6968                          * and points to other's inode.
6969                          */
6970                         CDEBUG(D_LFSCK, "%s: the target inode does not "
6971                                "recognize the dirent, dir = %lu/%u, "
6972                                " name = %.*s, ino = %llu, "
6973                                DFID": rc = %d\n", devname, dir->i_ino,
6974                                dir->i_generation, ent->oied_namelen,
6975                                ent->oied_name, ent->oied_ino, PFID(fid), rc);
6976                         *attr |= LUDA_UNKNOWN;
6977
6978                         GOTO(out, rc = 0);
6979                 }
6980
6981                 if (rc && rc != -ENODATA) {
6982                         CDEBUG(D_LFSCK, "%s: fail to verify FID in the dirent, "
6983                                "dir = %lu/%u, name = %.*s, ino = %llu, "
6984                                DFID": rc = %d\n", devname, dir->i_ino,
6985                                dir->i_generation, ent->oied_namelen,
6986                                ent->oied_name, ent->oied_ino, PFID(fid), rc);
6987                         *attr |= LUDA_UNKNOWN;
6988
6989                         GOTO(out, rc = 0);
6990                 }
6991         }
6992
6993         if (lma != NULL) {
6994                 /*
6995                  * linkEA recognizes the dirent entry, the FID-in-LMA is
6996                  * valid, trusted, in spite of fid_is_sane(fid) or not.
6997                  */
6998                 if (*attr & LUDA_VERIFY_DRYRUN) {
6999                         *fid = lma->lma_self_fid;
7000                         *attr |= LUDA_REPAIR;
7001
7002                         GOTO(out, rc = 0);
7003                 }
7004
7005                 if (jh == NULL) {
7006                         brelse(bh);
7007                         dev->od_dirent_journal = 1;
7008                         if (hlock != NULL) {
7009                                 ldiskfs_htree_unlock(hlock);
7010                                 hlock = NULL;
7011                         } else {
7012                                 up_read(&obj->oo_ext_idx_sem);
7013                         }
7014
7015                         goto again;
7016                 }
7017
7018                 *fid = lma->lma_self_fid;
7019                 dirty = true;
7020                 /* Update or append the FID-in-dirent. */
7021                 rc = osd_dirent_reinsert(env, dev, jh, dentry, fid,
7022                                          bh, de, hlock, dotdot);
7023                 if (rc == 0)
7024                         *attr |= LUDA_REPAIR;
7025                 else
7026                         CDEBUG(D_LFSCK, "%s: fail to re-insert FID after "
7027                                "the dirent, dir = %lu/%u, name = %.*s, "
7028                                "ino = %llu, "DFID": rc = %d\n",
7029                                devname, dir->i_ino, dir->i_generation,
7030                                ent->oied_namelen, ent->oied_name,
7031                                ent->oied_ino, PFID(fid), rc);
7032         } else {
7033                 /* lma is NULL, trust the FID-in-dirent if it is valid. */
7034                 if (*attr & LUDA_VERIFY_DRYRUN) {
7035                         if (fid_is_sane(fid)) {
7036                                 *attr |= LUDA_REPAIR;
7037                         } else if (dev->od_index == 0) {
7038                                 lu_igif_build(fid, inode->i_ino,
7039                                               inode->i_generation);
7040                                 *attr |= LUDA_UPGRADE;
7041                         }
7042
7043                         GOTO(out, rc = 0);
7044                 }
7045
7046                 if (jh == NULL) {
7047                         brelse(bh);
7048                         dev->od_dirent_journal = 1;
7049                         if (hlock != NULL) {
7050                                 ldiskfs_htree_unlock(hlock);
7051                                 hlock = NULL;
7052                         } else {
7053                                 up_read(&obj->oo_ext_idx_sem);
7054                         }
7055
7056                         goto again;
7057                 }
7058
7059                 dirty = true;
7060                 if (unlikely(fid_is_sane(fid))) {
7061                         /*
7062                          * FID-in-dirent exists, but FID-in-LMA is lost.
7063                          * Trust the FID-in-dirent, and add FID-in-LMA.
7064                          */
7065                         rc = osd_ea_fid_set(info, inode, fid, 0, 0);
7066                         if (rc == 0)
7067                                 *attr |= LUDA_REPAIR;
7068                         else
7069                                 CDEBUG(D_LFSCK, "%s: fail to set LMA for "
7070                                        "update dirent, dir = %lu/%u, "
7071                                        "name = %.*s, ino = %llu, "
7072                                        DFID": rc = %d\n",
7073                                        devname, dir->i_ino, dir->i_generation,
7074                                        ent->oied_namelen, ent->oied_name,
7075                                        ent->oied_ino, PFID(fid), rc);
7076                 } else if (dev->od_index == 0) {
7077                         lu_igif_build(fid, inode->i_ino, inode->i_generation);
7078                         /*
7079                          * It is probably IGIF object. Only aappend the
7080                          * FID-in-dirent. OI scrub will process FID-in-LMA.
7081                          */
7082                         rc = osd_dirent_reinsert(env, dev, jh, dentry, fid,
7083                                                  bh, de, hlock, dotdot);
7084                         if (rc == 0)
7085                                 *attr |= LUDA_UPGRADE;
7086                         else
7087                                 CDEBUG(D_LFSCK, "%s: fail to append IGIF "
7088                                        "after the dirent, dir = %lu/%u, "
7089                                        "name = %.*s, ino = %llu, "
7090                                        DFID": rc = %d\n",
7091                                        devname, dir->i_ino, dir->i_generation,
7092                                        ent->oied_namelen, ent->oied_name,
7093                                        ent->oied_ino, PFID(fid), rc);
7094                 }
7095         }
7096
7097         GOTO(out, rc);
7098
7099 out:
7100         if (!IS_ERR(bh))
7101                 brelse(bh);
7102         if (hlock != NULL) {
7103                 ldiskfs_htree_unlock(hlock);
7104         } else {
7105                 if (dev->od_dirent_journal != 0)
7106                         up_write(&obj->oo_ext_idx_sem);
7107                 else
7108                         up_read(&obj->oo_ext_idx_sem);
7109         }
7110
7111         if (jh != NULL)
7112                 ldiskfs_journal_stop(jh);
7113
7114 out_inode:
7115         iput(inode);
7116         if (rc >= 0 && !dirty)
7117                 dev->od_dirent_journal = 0;
7118
7119         return rc;
7120 }
7121
7122 /**
7123  * Returns the value at current position from iterator's in memory structure.
7124  *
7125  * \param di struct osd_it_ea, iterator's in memory structure
7126  * \param attr attr requested for dirent.
7127  * \param lde lustre dirent
7128  *
7129  * \retval   0 no error and \param lde has correct lustre dirent.
7130  * \retval -ve on error
7131  */
7132 static inline int osd_it_ea_rec(const struct lu_env *env,
7133                                 const struct dt_it *di,
7134                                 struct dt_rec *dtrec, __u32 attr)
7135 {
7136         struct osd_it_ea       *it    = (struct osd_it_ea *)di;
7137         struct osd_object      *obj   = it->oie_obj;
7138         struct osd_device      *dev   = osd_obj2dev(obj);
7139         struct osd_thread_info *oti   = osd_oti_get(env);
7140         struct osd_inode_id    *id    = &oti->oti_id;
7141         struct lu_fid          *fid   = &it->oie_dirent->oied_fid;
7142         struct lu_dirent       *lde   = (struct lu_dirent *)dtrec;
7143         __u32 ino = it->oie_dirent->oied_ino;
7144         int rc = 0;
7145
7146         ENTRY;
7147
7148         LASSERT(!is_remote_parent_ino(dev, obj->oo_inode->i_ino));
7149
7150         if (attr & LUDA_VERIFY) {
7151                 if (unlikely(is_remote_parent_ino(dev, ino))) {
7152                         attr |= LUDA_IGNORE;
7153                         /*
7154                          * If the parent is on remote MDT, and there
7155                          * is no FID-in-dirent, then we have to get
7156                          * the parent FID from the linkEA.
7157                          */
7158                         if (!fid_is_sane(fid) &&
7159                             it->oie_dirent->oied_namelen == 2 &&
7160                             it->oie_dirent->oied_name[0] == '.' &&
7161                             it->oie_dirent->oied_name[1] == '.')
7162                                 osd_get_pfid_from_linkea(env, obj, fid);
7163                 } else {
7164                         rc = osd_dirent_check_repair(env, obj, it, fid, id,
7165                                                      &attr);
7166                 }
7167
7168                 if (!fid_is_sane(fid))
7169                         attr |= LUDA_UNKNOWN;
7170         } else {
7171                 attr &= ~LU_DIRENT_ATTRS_MASK;
7172                 if (!fid_is_sane(fid)) {
7173                         bool is_dotdot = false;
7174
7175                         if (it->oie_dirent->oied_namelen == 2 &&
7176                             it->oie_dirent->oied_name[0] == '.' &&
7177                             it->oie_dirent->oied_name[1] == '.')
7178                                 is_dotdot = true;
7179                         /*
7180                          * If the parent is on remote MDT, and there
7181                          * is no FID-in-dirent, then we have to get
7182                          * the parent FID from the linkEA.
7183                          */
7184                         if (is_remote_parent_ino(dev, ino) && is_dotdot) {
7185                                 rc = osd_get_pfid_from_linkea(env, obj, fid);
7186                         } else {
7187                                 if (is_dotdot == false &&
7188                                     OBD_FAIL_CHECK(OBD_FAIL_FID_LOOKUP))
7189                                         RETURN(-ENOENT);
7190
7191                                 rc = osd_ea_fid_get(env, obj, ino, fid, id);
7192                         }
7193                 } else {
7194                         osd_id_gen(id, ino, OSD_OII_NOGEN);
7195                 }
7196         }
7197
7198         /* Pack the entry anyway, at least the offset is right. */
7199         osd_it_pack_dirent(lde, fid, it->oie_dirent->oied_off,
7200                            it->oie_dirent->oied_name,
7201                            it->oie_dirent->oied_namelen,
7202                            it->oie_dirent->oied_type, attr);
7203
7204         if (rc < 0)
7205                 RETURN(rc);
7206
7207         if (osd_remote_fid(env, dev, fid))
7208                 RETURN(0);
7209
7210         if (likely(!(attr & (LUDA_IGNORE | LUDA_UNKNOWN)) && rc == 0))
7211                 osd_add_oi_cache(oti, dev, id, fid);
7212
7213         RETURN(rc > 0 ? 0 : rc);
7214 }
7215
7216 /**
7217  * Returns the record size size at current position.
7218  *
7219  * This function will return record(lu_dirent) size in bytes.
7220  *
7221  * \param[in] env       execution environment
7222  * \param[in] di        iterator's in memory structure
7223  * \param[in] attr      attribute of the entry, only requires LUDA_TYPE to
7224  *                      calculate the lu_dirent size.
7225  *
7226  * \retval      record size(in bytes & in memory) of the current lu_dirent
7227  *              entry.
7228  */
7229 static int osd_it_ea_rec_size(const struct lu_env *env, const struct dt_it *di,
7230                               __u32 attr)
7231 {
7232         struct osd_it_ea *it = (struct osd_it_ea *)di;
7233
7234         return lu_dirent_calc_size(it->oie_dirent->oied_namelen, attr);
7235 }
7236
7237 /**
7238  * Returns a cookie for current position of the iterator head, so that
7239  * user can use this cookie to load/start the iterator next time.
7240  *
7241  * \param di iterator's in memory structure
7242  *
7243  * \retval cookie for current position, on success
7244  */
7245 static __u64 osd_it_ea_store(const struct lu_env *env, const struct dt_it *di)
7246 {
7247         struct osd_it_ea *it = (struct osd_it_ea *)di;
7248
7249         return it->oie_dirent->oied_off;
7250 }
7251
7252 /**
7253  * It calls osd_ldiskfs_it_fill() which will use ->iterate*()
7254  * to load a directory entry at a time and stored it i inn,
7255  * in iterator's in-memory data structure.
7256  *
7257  * \param di struct osd_it_ea, iterator's in memory structure
7258  *
7259  * \retval +ve on success
7260  * \retval -ve on error
7261  */
7262 static int osd_it_ea_load(const struct lu_env *env,
7263                           const struct dt_it *di, __u64 hash)
7264 {
7265         struct osd_it_ea *it = (struct osd_it_ea *)di;
7266         int rc;
7267
7268         ENTRY;
7269         it->oie_file.f_pos = hash;
7270
7271         rc =  osd_ldiskfs_it_fill(env, di);
7272         if (rc > 0)
7273                 rc = -ENODATA;
7274
7275         if (rc == 0)
7276                 rc = 1;
7277
7278         RETURN(rc);
7279 }
7280
7281 /**
7282  * Index lookup function for interoperability mode (b11826).
7283  *
7284  * \param key,  key i.e. file name to be searched
7285  *
7286  * \retval +ve, on success
7287  * \retval -ve, on error
7288  */
7289 static int osd_index_ea_lookup(const struct lu_env *env, struct dt_object *dt,
7290                                struct dt_rec *rec, const struct dt_key *key)
7291 {
7292         struct osd_object *obj = osd_dt_obj(dt);
7293         int rc = 0;
7294
7295         ENTRY;
7296
7297         LASSERT(S_ISDIR(obj->oo_inode->i_mode));
7298         LINVRNT(osd_invariant(obj));
7299
7300         rc = osd_ea_lookup_rec(env, obj, rec, key);
7301         if (rc == 0)
7302                 rc = 1;
7303         RETURN(rc);
7304 }
7305
7306 /**
7307  * Index and Iterator operations for interoperability
7308  * mode (i.e. to run 2.0 mds on 1.8 disk) (b11826)
7309  */
7310 static const struct dt_index_operations osd_index_ea_ops = {
7311         .dio_lookup         = osd_index_ea_lookup,
7312         .dio_declare_insert = osd_index_declare_ea_insert,
7313         .dio_insert         = osd_index_ea_insert,
7314         .dio_declare_delete = osd_index_declare_ea_delete,
7315         .dio_delete         = osd_index_ea_delete,
7316         .dio_it     = {
7317                 .init     = osd_it_ea_init,
7318                 .fini     = osd_it_ea_fini,
7319                 .get      = osd_it_ea_get,
7320                 .put      = osd_it_ea_put,
7321                 .next     = osd_it_ea_next,
7322                 .key      = osd_it_ea_key,
7323                 .key_size = osd_it_ea_key_size,
7324                 .rec      = osd_it_ea_rec,
7325                 .rec_size = osd_it_ea_rec_size,
7326                 .store    = osd_it_ea_store,
7327                 .load     = osd_it_ea_load
7328         }
7329 };
7330
7331 static void *osd_key_init(const struct lu_context *ctx,
7332                           struct lu_context_key *key)
7333 {
7334         struct osd_thread_info *info;
7335
7336         OBD_ALLOC_PTR(info);
7337         if (info == NULL)
7338                 return ERR_PTR(-ENOMEM);
7339
7340         OBD_ALLOC(info->oti_it_ea_buf, OSD_IT_EA_BUFSIZE);
7341         if (info->oti_it_ea_buf == NULL)
7342                 goto out_free_info;
7343
7344         info->oti_env = container_of(ctx, struct lu_env, le_ctx);
7345
7346         info->oti_hlock = ldiskfs_htree_lock_alloc();
7347         if (info->oti_hlock == NULL)
7348                 goto out_free_ea;
7349
7350         return info;
7351
7352 out_free_ea:
7353         OBD_FREE(info->oti_it_ea_buf, OSD_IT_EA_BUFSIZE);
7354 out_free_info:
7355         OBD_FREE_PTR(info);
7356         return ERR_PTR(-ENOMEM);
7357 }
7358
7359 static void osd_key_fini(const struct lu_context *ctx,
7360                          struct lu_context_key *key, void *data)
7361 {
7362         struct osd_thread_info *info = data;
7363         struct ldiskfs_inode_info *lli = LDISKFS_I(info->oti_inode);
7364         struct osd_idmap_cache *idc = info->oti_ins_cache;
7365
7366         if (info->oti_dio_pages) {
7367                 int i;
7368                 for (i = 0; i < PTLRPC_MAX_BRW_PAGES; i++) {
7369                         struct page *page = info->oti_dio_pages[i];
7370                         if (page) {
7371                                 LASSERT(PagePrivate2(page));
7372                                 LASSERT(PageLocked(page));
7373                                 ClearPagePrivate2(page);
7374                                 unlock_page(page);
7375                                 __free_page(page);
7376                         }
7377                 }
7378                 OBD_FREE_PTR_ARRAY(info->oti_dio_pages, PTLRPC_MAX_BRW_PAGES);
7379         }
7380
7381         if (info->oti_inode != NULL)
7382                 OBD_FREE_PTR(lli);
7383         if (info->oti_hlock != NULL)
7384                 ldiskfs_htree_lock_free(info->oti_hlock);
7385         OBD_FREE(info->oti_it_ea_buf, OSD_IT_EA_BUFSIZE);
7386         lu_buf_free(&info->oti_iobuf.dr_pg_buf);
7387         lu_buf_free(&info->oti_iobuf.dr_bl_buf);
7388         lu_buf_free(&info->oti_iobuf.dr_lnb_buf);
7389         lu_buf_free(&info->oti_big_buf);
7390         if (idc != NULL) {
7391                 LASSERT(info->oti_ins_cache_size > 0);
7392                 OBD_FREE_PTR_ARRAY(idc, info->oti_ins_cache_size);
7393                 info->oti_ins_cache = NULL;
7394                 info->oti_ins_cache_size = 0;
7395         }
7396         OBD_FREE_PTR(info);
7397 }
7398
7399 static void osd_key_exit(const struct lu_context *ctx,
7400                          struct lu_context_key *key, void *data)
7401 {
7402         struct osd_thread_info *info = data;
7403
7404         LASSERT(info->oti_r_locks == 0);
7405         LASSERT(info->oti_w_locks == 0);
7406         LASSERT(info->oti_txns    == 0);
7407 }
7408
7409 /* type constructor/destructor: osd_type_init, osd_type_fini */
7410 LU_TYPE_INIT_FINI(osd, &osd_key);
7411
7412 struct lu_context_key osd_key = {
7413         .lct_tags = LCT_DT_THREAD | LCT_MD_THREAD | LCT_MG_THREAD | LCT_LOCAL,
7414         .lct_init = osd_key_init,
7415         .lct_fini = osd_key_fini,
7416         .lct_exit = osd_key_exit
7417 };
7418
7419
7420 static int osd_device_init(const struct lu_env *env, struct lu_device *d,
7421                            const char *name, struct lu_device *next)
7422 {
7423         struct osd_device *osd = osd_dev(d);
7424
7425         if (strlcpy(osd->od_svname, name, sizeof(osd->od_svname)) >=
7426             sizeof(osd->od_svname))
7427                 return -E2BIG;
7428         return osd_procfs_init(osd, name);
7429 }
7430
7431 static int osd_fid_init(const struct lu_env *env, struct osd_device *osd)
7432 {
7433         struct seq_server_site *ss = osd_seq_site(osd);
7434         int rc = 0;
7435
7436         ENTRY;
7437
7438         if (osd->od_is_ost || osd->od_cl_seq != NULL)
7439                 RETURN(0);
7440
7441         if (unlikely(ss == NULL))
7442                 RETURN(-ENODEV);
7443
7444         OBD_ALLOC_PTR(osd->od_cl_seq);
7445         if (osd->od_cl_seq == NULL)
7446                 RETURN(-ENOMEM);
7447
7448         seq_client_init(osd->od_cl_seq, NULL, LUSTRE_SEQ_METADATA,
7449                         osd->od_svname, ss->ss_server_seq);
7450
7451         if (ss->ss_node_id == 0) {
7452                 /*
7453                  * If the OSD on the sequence controller(MDT0), then allocate
7454                  * sequence here, otherwise allocate sequence after connected
7455                  * to MDT0 (see mdt_register_lwp_callback()).
7456                  */
7457                 rc = seq_server_alloc_meta(osd->od_cl_seq->lcs_srv,
7458                                    &osd->od_cl_seq->lcs_space, env);
7459         }
7460
7461         RETURN(rc);
7462 }
7463
7464 static void osd_fid_fini(const struct lu_env *env, struct osd_device *osd)
7465 {
7466         if (osd->od_cl_seq == NULL)
7467                 return;
7468
7469         seq_client_fini(osd->od_cl_seq);
7470         OBD_FREE_PTR(osd->od_cl_seq);
7471         osd->od_cl_seq = NULL;
7472 }
7473
7474 static int osd_shutdown(const struct lu_env *env, struct osd_device *o)
7475 {
7476         ENTRY;
7477
7478         /* shutdown quota slave instance associated with the device */
7479         if (o->od_quota_slave_md != NULL) {
7480                 struct qsd_instance *qsd = o->od_quota_slave_md;
7481
7482                 o->od_quota_slave_md = NULL;
7483                 qsd_fini(env, qsd);
7484         }
7485
7486         if (o->od_quota_slave_dt != NULL) {
7487                 struct qsd_instance *qsd = o->od_quota_slave_dt;
7488
7489                 o->od_quota_slave_dt = NULL;
7490                 qsd_fini(env, qsd);
7491         }
7492
7493         osd_fid_fini(env, o);
7494         osd_scrub_cleanup(env, o);
7495
7496         RETURN(0);
7497 }
7498
7499 static void osd_umount(const struct lu_env *env, struct osd_device *o)
7500 {
7501         ENTRY;
7502
7503         if (o->od_mnt != NULL) {
7504                 shrink_dcache_sb(osd_sb(o));
7505                 osd_sync(env, &o->od_dt_dev);
7506
7507                 mntput(o->od_mnt);
7508                 o->od_mnt = NULL;
7509         }
7510
7511         EXIT;
7512 }
7513
7514 static int osd_mount(const struct lu_env *env,
7515                      struct osd_device *o, struct lustre_cfg *cfg)
7516 {
7517         const char *name = lustre_cfg_string(cfg, 0);
7518         const char *dev = lustre_cfg_string(cfg, 1);
7519         const char *opts;
7520         unsigned long page, s_flags, lmd_flags = 0;
7521         struct page *__page;
7522         struct file_system_type *type;
7523         char *options = NULL;
7524         char *str;
7525         struct osd_thread_info *info = osd_oti_get(env);
7526         struct lu_fid *fid = &info->oti_fid;
7527         struct inode *inode;
7528         int rc = 0, force_over_1024tb = 0;
7529
7530         ENTRY;
7531
7532         if (o->od_mnt != NULL)
7533                 RETURN(0);
7534
7535         if (strlen(dev) >= sizeof(o->od_mntdev))
7536                 RETURN(-E2BIG);
7537         strcpy(o->od_mntdev, dev);
7538
7539         str = lustre_cfg_string(cfg, 2);
7540         s_flags = simple_strtoul(str, NULL, 0);
7541         str = strstr(str, ":");
7542         if (str)
7543                 lmd_flags = simple_strtoul(str + 1, NULL, 0);
7544         opts = lustre_cfg_string(cfg, 3);
7545 #ifdef __BIG_ENDIAN
7546         if (opts == NULL || strstr(opts, "bigendian_extents") == NULL) {
7547                 CERROR("%s: device %s extents feature is not guaranteed to "
7548                        "work on big-endian systems. Use \"bigendian_extents\" "
7549                        "mount option to override.\n", name, dev);
7550                 RETURN(-EINVAL);
7551         }
7552 #endif
7553 #if LUSTRE_VERSION_CODE < OBD_OCD_VERSION(3, 0, 53, 0)
7554         if (opts != NULL && strstr(opts, "force_over_128tb") != NULL) {
7555                 CWARN("force_over_128tb option is deprecated.  Filesystems smaller than 1024TB can be created without any force option. Use force_over_1024tb option for filesystems larger than 1024TB.\n");
7556         }
7557 #endif
7558 #if LUSTRE_VERSION_CODE < OBD_OCD_VERSION(3, 1, 53, 0)
7559         if (opts != NULL && strstr(opts, "force_over_256tb") != NULL) {
7560                 CWARN("force_over_256tb option is deprecated.  Filesystems smaller than 1024TB can be created without any force options. Use force_over_1024tb option for filesystems larger than 1024TB.\n");
7561         }
7562 #endif
7563 #if LUSTRE_VERSION_CODE < OBD_OCD_VERSION(3, 2, 53, 0)
7564         if (opts != NULL && strstr(opts, "force_over_512tb") != NULL) {
7565                 CWARN("force_over_512tb option is deprecated.  Filesystems smaller than 1024TB can be created without any force options. Use force_over_1024tb option for filesystems larger than 1024TB.\n");
7566         }
7567 #endif
7568
7569         if (opts != NULL && strstr(opts, "force_over_1024tb") != NULL)
7570                 force_over_1024tb = 1;
7571
7572         __page = alloc_page(GFP_KERNEL);
7573         if (__page == NULL)
7574                 GOTO(out, rc = -ENOMEM);
7575         page = (unsigned long)page_address(__page);
7576         options = (char *)page;
7577         *options = '\0';
7578         if (opts != NULL) {
7579                 /* strip out the options for back compatiblity */
7580                 static const char * const sout[] = {
7581                         "mballoc",
7582                         "iopen",
7583                         "noiopen",
7584                         "iopen_nopriv",
7585                         "extents",
7586                         "noextents",
7587                         /* strip out option we processed in osd */
7588                         "bigendian_extents",
7589                         "force_over_128tb",
7590                         "force_over_256tb",
7591                         "force_over_512tb",
7592                         "force_over_1024tb",
7593                         NULL
7594                 };
7595                 strncat(options, opts, PAGE_SIZE);
7596                 for (rc = 0, str = options; sout[rc]; ) {
7597                         char *op = strstr(str, sout[rc]);
7598
7599                         if (op == NULL) {
7600                                 rc++;
7601                                 str = options;
7602                                 continue;
7603                         }
7604                         if (op == options || *(op - 1) == ',') {
7605                                 str = op + strlen(sout[rc]);
7606                                 if (*str == ',' || *str == '\0') {
7607                                         *str == ',' ? str++ : str;
7608                                         memmove(op, str, strlen(str) + 1);
7609                                 }
7610                         }
7611                         for (str = op; *str != ',' && *str != '\0'; str++)
7612                                 ;
7613                 }
7614         } else {
7615                 strncat(options, "user_xattr,acl", PAGE_SIZE);
7616         }
7617
7618         /* Glom up mount options */
7619         if (*options != '\0')
7620                 strncat(options, ",", PAGE_SIZE);
7621         strncat(options, "no_mbcache,nodelalloc", PAGE_SIZE);
7622
7623         type = get_fs_type("ldiskfs");
7624         if (!type) {
7625                 CERROR("%s: cannot find ldiskfs module\n", name);
7626                 GOTO(out, rc = -ENODEV);
7627         }
7628
7629         o->od_mnt = vfs_kern_mount(type, s_flags, dev, options);
7630         module_put(type->owner);
7631
7632         if (IS_ERR(o->od_mnt)) {
7633                 rc = PTR_ERR(o->od_mnt);
7634                 o->od_mnt = NULL;
7635                 CERROR("%s: can't mount %s: %d\n", name, dev, rc);
7636                 GOTO(out, rc);
7637         }
7638
7639         if (ldiskfs_blocks_count(LDISKFS_SB(osd_sb(o))->s_es) <<
7640                                  osd_sb(o)->s_blocksize_bits > 1024ULL << 40 &&
7641                                  force_over_1024tb == 0) {
7642                 CERROR("%s: device %s LDISKFS has not been tested on filesystems larger than 1024TB and may cause data corruption. Use 'force_over_1024tb' mount option to override.\n",
7643                        name, dev);
7644                 GOTO(out_mnt, rc = -EINVAL);
7645         }
7646
7647         if (lmd_flags & LMD_FLG_DEV_RDONLY) {
7648                 LCONSOLE_WARN("%s: not support dev_rdonly on this device",
7649                               name);
7650
7651                 GOTO(out_mnt, rc = -EOPNOTSUPP);
7652         }
7653
7654         if (!ldiskfs_has_feature_journal(o->od_mnt->mnt_sb)) {
7655                 CERROR("%s: device %s is mounted w/o journal\n", name, dev);
7656                 GOTO(out_mnt, rc = -EINVAL);
7657         }
7658
7659 #ifdef LDISKFS_MOUNT_DIRDATA
7660         if (ldiskfs_has_feature_dirdata(o->od_mnt->mnt_sb))
7661                 LDISKFS_SB(osd_sb(o))->s_mount_opt |= LDISKFS_MOUNT_DIRDATA;
7662         else if (strstr(name, "MDT")) /* don't complain for MGT or OSTs */
7663                 CWARN("%s: device %s was upgraded from Lustre-1.x without "
7664                       "enabling the dirdata feature. If you do not want to "
7665                       "downgrade to Lustre-1.x again, you can enable it via "
7666                       "'tune2fs -O dirdata device'\n", name, dev);
7667 #endif
7668         inode = osd_sb(o)->s_root->d_inode;
7669         lu_local_obj_fid(fid, OSD_FS_ROOT_OID);
7670         rc = osd_ea_fid_set(info, inode, fid, LMAC_NOT_IN_OI, 0);
7671         if (rc != 0) {
7672                 CERROR("%s: failed to set lma on %s root inode\n", name, dev);
7673                 GOTO(out_mnt, rc);
7674         }
7675
7676         if (lmd_flags & LMD_FLG_NOSCRUB)
7677                 o->od_auto_scrub_interval = AS_NEVER;
7678
7679         if (blk_queue_nonrot(bdev_get_queue(osd_sb(o)->s_bdev))) {
7680                 /* do not use pagecache with flash-backed storage */
7681                 o->od_writethrough_cache = 0;
7682                 o->od_read_cache = 0;
7683         }
7684
7685         GOTO(out, rc = 0);
7686
7687 out_mnt:
7688         mntput(o->od_mnt);
7689         o->od_mnt = NULL;
7690
7691 out:
7692         if (__page)
7693                 __free_page(__page);
7694
7695         return rc;
7696 }
7697
7698 static struct lu_device *osd_device_fini(const struct lu_env *env,
7699                                          struct lu_device *d)
7700 {
7701         struct osd_device *o = osd_dev(d);
7702
7703         ENTRY;
7704
7705         osd_index_backup(env, o, false);
7706         osd_shutdown(env, o);
7707         osd_procfs_fini(o);
7708         if (o->od_oi_table != NULL)
7709                 osd_oi_fini(osd_oti_get(env), o);
7710         osd_obj_map_fini(o);
7711         osd_umount(env, o);
7712
7713         RETURN(NULL);
7714 }
7715
7716 static int osd_device_init0(const struct lu_env *env,
7717                             struct osd_device *o,
7718                             struct lustre_cfg *cfg)
7719 {
7720         struct lu_device *l = osd2lu_dev(o);
7721         struct osd_thread_info *info;
7722         int rc;
7723         int cplen = 0;
7724
7725         /* if the module was re-loaded, env can loose its keys */
7726         rc = lu_env_refill((struct lu_env *)env);
7727         if (rc)
7728                 GOTO(out, rc);
7729         info = osd_oti_get(env);
7730         LASSERT(info);
7731
7732         l->ld_ops = &osd_lu_ops;
7733         o->od_dt_dev.dd_ops = &osd_dt_ops;
7734
7735         spin_lock_init(&o->od_osfs_lock);
7736         mutex_init(&o->od_otable_mutex);
7737         INIT_LIST_HEAD(&o->od_orphan_list);
7738         INIT_LIST_HEAD(&o->od_index_backup_list);
7739         INIT_LIST_HEAD(&o->od_index_restore_list);
7740         spin_lock_init(&o->od_lock);
7741         o->od_index_backup_policy = LIBP_NONE;
7742         o->od_t10_type = 0;
7743
7744         o->od_read_cache = 1;
7745         o->od_writethrough_cache = 1;
7746         o->od_readcache_max_filesize = OSD_MAX_CACHE_SIZE;
7747         o->od_readcache_max_iosize = OSD_READCACHE_MAX_IO_MB << 20;
7748         o->od_writethrough_max_iosize = OSD_WRITECACHE_MAX_IO_MB << 20;
7749         o->od_auto_scrub_interval = AS_DEFAULT;
7750
7751         cplen = strlcpy(o->od_svname, lustre_cfg_string(cfg, 4),
7752                         sizeof(o->od_svname));
7753         if (cplen >= sizeof(o->od_svname)) {
7754                 rc = -E2BIG;
7755                 GOTO(out, rc);
7756         }
7757
7758         o->od_index_backup_stop = 0;
7759         o->od_index = -1; /* -1 means index is invalid */
7760         rc = server_name2index(o->od_svname, &o->od_index, NULL);
7761         if (rc == LDD_F_SV_TYPE_OST)
7762                 o->od_is_ost = 1;
7763
7764         o->od_full_scrub_ratio = OFSR_DEFAULT;
7765         o->od_full_scrub_threshold_rate = FULL_SCRUB_THRESHOLD_RATE_DEFAULT;
7766         rc = osd_mount(env, o, cfg);
7767         if (rc != 0)
7768                 GOTO(out, rc);
7769
7770         /* Can only check block device after mount */
7771         o->od_nonrotational =
7772                 blk_queue_nonrot(bdev_get_queue(osd_sb(o)->s_bdev));
7773
7774         rc = osd_obj_map_init(env, o);
7775         if (rc != 0)
7776                 GOTO(out_mnt, rc);
7777
7778         rc = lu_site_init(&o->od_site, l);
7779         if (rc != 0)
7780                 GOTO(out_compat, rc);
7781         o->od_site.ls_bottom_dev = l;
7782
7783         rc = lu_site_init_finish(&o->od_site);
7784         if (rc != 0)
7785                 GOTO(out_site, rc);
7786
7787         INIT_LIST_HEAD(&o->od_ios_list);
7788         /* setup scrub, including OI files initialization */
7789         o->od_in_init = 1;
7790         rc = osd_scrub_setup(env, o);
7791         o->od_in_init = 0;
7792         if (rc < 0)
7793                 GOTO(out_site, rc);
7794
7795         rc = osd_procfs_init(o, o->od_svname);
7796         if (rc != 0) {
7797                 CERROR("%s: can't initialize procfs: rc = %d\n",
7798                        o->od_svname, rc);
7799                 GOTO(out_scrub, rc);
7800         }
7801
7802         LASSERT(l->ld_site->ls_linkage.next != NULL);
7803         LASSERT(l->ld_site->ls_linkage.prev != NULL);
7804
7805         /* initialize quota slave instance */
7806         /* currently it's no need to prepare qsd_instance_md for OST */
7807         if (!o->od_is_ost) {
7808                 o->od_quota_slave_md = qsd_init(env, o->od_svname,
7809                                                 &o->od_dt_dev,
7810                                                 o->od_proc_entry, true);
7811                 if (IS_ERR(o->od_quota_slave_md)) {
7812                         rc = PTR_ERR(o->od_quota_slave_md);
7813                         o->od_quota_slave_md = NULL;
7814                         GOTO(out_procfs, rc);
7815                 }
7816         }
7817
7818         o->od_quota_slave_dt = qsd_init(env, o->od_svname, &o->od_dt_dev,
7819                                         o->od_proc_entry, false);
7820
7821         if (IS_ERR(o->od_quota_slave_dt)) {
7822                 if (o->od_quota_slave_md != NULL) {
7823                         qsd_fini(env, o->od_quota_slave_md);
7824                         o->od_quota_slave_md = NULL;
7825                 }
7826
7827                 rc = PTR_ERR(o->od_quota_slave_dt);
7828                 o->od_quota_slave_dt = NULL;
7829                 GOTO(out_procfs, rc);
7830         }
7831
7832         RETURN(0);
7833
7834 out_procfs:
7835         osd_procfs_fini(o);
7836 out_scrub:
7837         osd_scrub_cleanup(env, o);
7838 out_site:
7839         lu_site_fini(&o->od_site);
7840 out_compat:
7841         osd_obj_map_fini(o);
7842 out_mnt:
7843         osd_umount(env, o);
7844 out:
7845         return rc;
7846 }
7847
7848 static struct lu_device *osd_device_alloc(const struct lu_env *env,
7849                                           struct lu_device_type *t,
7850                                           struct lustre_cfg *cfg)
7851 {
7852         struct osd_device *o;
7853         int rc;
7854
7855         OBD_ALLOC_PTR(o);
7856         if (o == NULL)
7857                 return ERR_PTR(-ENOMEM);
7858
7859         rc = dt_device_init(&o->od_dt_dev, t);
7860         if (rc == 0) {
7861                 /*
7862                  * Because the ctx might be revived in dt_device_init,
7863                  * refill the env here
7864                  */
7865                 lu_env_refill((struct lu_env *)env);
7866                 rc = osd_device_init0(env, o, cfg);
7867                 if (rc)
7868                         dt_device_fini(&o->od_dt_dev);
7869         }
7870
7871         if (unlikely(rc != 0))
7872                 OBD_FREE_PTR(o);
7873
7874         return rc == 0 ? osd2lu_dev(o) : ERR_PTR(rc);
7875 }
7876
7877 static struct lu_device *osd_device_free(const struct lu_env *env,
7878                                          struct lu_device *d)
7879 {
7880         struct osd_device *o = osd_dev(d);
7881
7882         ENTRY;
7883
7884         /* XXX: make osd top device in order to release reference */
7885         d->ld_site->ls_top_dev = d;
7886         lu_site_purge(env, d->ld_site, -1);
7887         if (!cfs_hash_is_empty(d->ld_site->ls_obj_hash)) {
7888                 LIBCFS_DEBUG_MSG_DATA_DECL(msgdata, D_ERROR, NULL);
7889                 lu_site_print(env, d->ld_site, &msgdata, lu_cdebug_printer);
7890         }
7891         lu_site_fini(&o->od_site);
7892         dt_device_fini(&o->od_dt_dev);
7893         OBD_FREE_PTR(o);
7894         RETURN(NULL);
7895 }
7896
7897 static int osd_process_config(const struct lu_env *env,
7898                               struct lu_device *d, struct lustre_cfg *cfg)
7899 {
7900         struct osd_device *o = osd_dev(d);
7901         ssize_t count;
7902         int rc;
7903
7904         ENTRY;
7905
7906         switch (cfg->lcfg_command) {
7907         case LCFG_SETUP:
7908                 rc = osd_mount(env, o, cfg);
7909                 break;
7910         case LCFG_CLEANUP:
7911                 /*
7912                  * For the case LCFG_PRE_CLEANUP is not called in advance,
7913                  * that may happend if hit failure during mount process.
7914                  */
7915                 osd_index_backup(env, o, false);
7916                 lu_dev_del_linkage(d->ld_site, d);
7917                 rc = osd_shutdown(env, o);
7918                 break;
7919         case LCFG_PARAM:
7920                 LASSERT(&o->od_dt_dev);
7921                 count  = class_modify_config(cfg, PARAM_OSD,
7922                                              &o->od_dt_dev.dd_kobj);
7923                 if (count < 0)
7924                         count = class_modify_config(cfg, PARAM_OST,
7925                                                     &o->od_dt_dev.dd_kobj);
7926                 rc = count > 0 ? 0 : count;
7927                 break;
7928         case LCFG_PRE_CLEANUP:
7929                 osd_scrub_stop(o);
7930                 osd_index_backup(env, o,
7931                                  o->od_index_backup_policy != LIBP_NONE);
7932                 rc = 0;
7933                 break;
7934         default:
7935                 rc = -ENOSYS;
7936         }
7937
7938         RETURN(rc);
7939 }
7940
7941 static int osd_recovery_complete(const struct lu_env *env,
7942                                  struct lu_device *d)
7943 {
7944         struct osd_device *osd = osd_dev(d);
7945         int rc = 0;
7946
7947         ENTRY;
7948
7949         if (osd->od_quota_slave_md == NULL && osd->od_quota_slave_dt == NULL)
7950                 RETURN(0);
7951
7952         /*
7953          * start qsd instance on recovery completion, this notifies the quota
7954          * slave code that we are about to process new requests now
7955          */
7956         rc = qsd_start(env, osd->od_quota_slave_dt);
7957         if (rc == 0 && osd->od_quota_slave_md != NULL)
7958                 rc = qsd_start(env, osd->od_quota_slave_md);
7959
7960         RETURN(rc);
7961 }
7962
7963 /*
7964  * we use exports to track all osd users
7965  */
7966 static int osd_obd_connect(const struct lu_env *env, struct obd_export **exp,
7967                            struct obd_device *obd, struct obd_uuid *cluuid,
7968                            struct obd_connect_data *data, void *localdata)
7969 {
7970         struct osd_device *osd = osd_dev(obd->obd_lu_dev);
7971         struct lustre_handle conn;
7972         int rc;
7973
7974         ENTRY;
7975
7976         CDEBUG(D_CONFIG, "connect #%d\n", osd->od_connects);
7977
7978         rc = class_connect(&conn, obd, cluuid);
7979         if (rc)
7980                 RETURN(rc);
7981
7982         *exp = class_conn2export(&conn);
7983
7984         spin_lock(&osd->od_osfs_lock);
7985         osd->od_connects++;
7986         spin_unlock(&osd->od_osfs_lock);
7987
7988         RETURN(0);
7989 }
7990
7991 /*
7992  * once last export (we don't count self-export) disappeared
7993  * osd can be released
7994  */
7995 static int osd_obd_disconnect(struct obd_export *exp)
7996 {
7997         struct obd_device *obd = exp->exp_obd;
7998         struct osd_device *osd = osd_dev(obd->obd_lu_dev);
7999         int rc, release = 0;
8000
8001         ENTRY;
8002
8003         /* Only disconnect the underlying layers on the final disconnect. */
8004         spin_lock(&osd->od_osfs_lock);
8005         osd->od_connects--;
8006         if (osd->od_connects == 0)
8007                 release = 1;
8008         spin_unlock(&osd->od_osfs_lock);
8009
8010         rc = class_disconnect(exp); /* bz 9811 */
8011
8012         if (rc == 0 && release)
8013                 class_manual_cleanup(obd);
8014         RETURN(rc);
8015 }
8016
8017 static int osd_prepare(const struct lu_env *env, struct lu_device *pdev,
8018                        struct lu_device *dev)
8019 {
8020         struct osd_device *osd = osd_dev(dev);
8021         struct lr_server_data *lsd =
8022                         &osd->od_dt_dev.dd_lu_dev.ld_site->ls_tgt->lut_lsd;
8023         int result = 0;
8024
8025         ENTRY;
8026
8027         if (osd->od_quota_slave_md != NULL) {
8028                 /* set up quota slave objects for inode */
8029                 result = qsd_prepare(env, osd->od_quota_slave_md);
8030                 if (result != 0)
8031                         RETURN(result);
8032         }
8033
8034         if (osd->od_quota_slave_dt != NULL) {
8035                 /* set up quota slave objects for block */
8036                 result = qsd_prepare(env, osd->od_quota_slave_dt);
8037                 if (result != 0)
8038                         RETURN(result);
8039         }
8040
8041
8042         if (lsd->lsd_feature_incompat & OBD_COMPAT_OST) {
8043 #if LUSTRE_VERSION_CODE < OBD_OCD_VERSION(3, 0, 52, 0)
8044                 if (lsd->lsd_feature_rocompat & OBD_ROCOMPAT_IDX_IN_IDIF) {
8045                         osd->od_index_in_idif = 1;
8046                 } else {
8047                         osd->od_index_in_idif = 0;
8048                         result = osd_register_proc_index_in_idif(osd);
8049                         if (result != 0)
8050                                 RETURN(result);
8051                 }
8052 #else
8053                 osd->od_index_in_idif = 1;
8054 #endif
8055         }
8056
8057         result = osd_fid_init(env, osd);
8058
8059         RETURN(result);
8060 }
8061
8062 static int osd_fid_alloc(const struct lu_env *env, struct obd_export *exp,
8063                          struct lu_fid *fid, struct md_op_data *op_data)
8064 {
8065         struct osd_device *osd = osd_dev(exp->exp_obd->obd_lu_dev);
8066
8067         return seq_client_alloc_fid(env, osd->od_cl_seq, fid);
8068 }
8069
8070 static const struct lu_object_operations osd_lu_obj_ops = {
8071         .loo_object_init      = osd_object_init,
8072         .loo_object_delete    = osd_object_delete,
8073         .loo_object_release   = osd_object_release,
8074         .loo_object_free      = osd_object_free,
8075         .loo_object_print     = osd_object_print,
8076         .loo_object_invariant = osd_object_invariant
8077 };
8078
8079 const struct lu_device_operations osd_lu_ops = {
8080         .ldo_object_alloc      = osd_object_alloc,
8081         .ldo_process_config    = osd_process_config,
8082         .ldo_recovery_complete = osd_recovery_complete,
8083         .ldo_prepare           = osd_prepare,
8084 };
8085
8086 static const struct lu_device_type_operations osd_device_type_ops = {
8087         .ldto_init = osd_type_init,
8088         .ldto_fini = osd_type_fini,
8089
8090         .ldto_start = osd_type_start,
8091         .ldto_stop  = osd_type_stop,
8092
8093         .ldto_device_alloc = osd_device_alloc,
8094         .ldto_device_free  = osd_device_free,
8095
8096         .ldto_device_init = osd_device_init,
8097         .ldto_device_fini = osd_device_fini
8098 };
8099
8100 static struct lu_device_type osd_device_type = {
8101         .ldt_tags     = LU_DEVICE_DT,
8102         .ldt_name     = LUSTRE_OSD_LDISKFS_NAME,
8103         .ldt_ops      = &osd_device_type_ops,
8104         .ldt_ctx_tags = LCT_LOCAL,
8105 };
8106
8107 static int osd_health_check(const struct lu_env *env, struct obd_device *obd)
8108 {
8109         struct osd_device *osd = osd_dev(obd->obd_lu_dev);
8110         struct super_block *sb = osd_sb(osd);
8111
8112         return (osd->od_mnt == NULL || sb->s_flags & SB_RDONLY);
8113 }
8114
8115 /*
8116  * lprocfs legacy support.
8117  */
8118 static const struct obd_ops osd_obd_device_ops = {
8119         .o_owner = THIS_MODULE,
8120         .o_connect      = osd_obd_connect,
8121         .o_disconnect   = osd_obd_disconnect,
8122         .o_fid_alloc    = osd_fid_alloc,
8123         .o_health_check = osd_health_check,
8124 };
8125
8126 static ssize_t track_declares_assert_show(struct kobject *kobj,
8127                                    struct attribute *attr,
8128                                    char *buf)
8129 {
8130         return sprintf(buf, "%d\n", ldiskfs_track_declares_assert);
8131 }
8132
8133 static ssize_t track_declares_assert_store(struct kobject *kobj,
8134                                            struct attribute *attr,
8135                                            const char *buffer, size_t count)
8136 {
8137         bool track_declares_assert;
8138         int rc;
8139
8140         rc = kstrtobool(buffer, &track_declares_assert);
8141         if (rc)
8142                 return rc;
8143
8144         ldiskfs_track_declares_assert = track_declares_assert;
8145
8146         return count;
8147 }
8148 LUSTRE_RW_ATTR(track_declares_assert);
8149
8150 static int __init osd_init(void)
8151 {
8152         struct kobject *kobj;
8153         int rc;
8154
8155         BUILD_BUG_ON(BH_DXLock >=
8156                      sizeof(((struct buffer_head *)0)->b_state) * 8);
8157 #if !defined(CONFIG_DEBUG_MUTEXES) && !defined(CONFIG_DEBUG_SPINLOCK)
8158         /* please, try to keep osd_thread_info smaller than a page */
8159         BUILD_BUG_ON(sizeof(struct osd_thread_info) > PAGE_SIZE);
8160 #endif
8161
8162         osd_oi_mod_init();
8163
8164         rc = lu_kmem_init(ldiskfs_caches);
8165         if (rc)
8166                 return rc;
8167
8168 #ifdef CONFIG_KALLSYMS
8169         priv_security_file_alloc =
8170                 (void *)kallsyms_lookup_name("security_file_alloc");
8171 #endif
8172
8173         rc = class_register_type(&osd_obd_device_ops, NULL, true, NULL,
8174                                  LUSTRE_OSD_LDISKFS_NAME, &osd_device_type);
8175         if (rc) {
8176                 lu_kmem_fini(ldiskfs_caches);
8177                 return rc;
8178         }
8179
8180         kobj = kset_find_obj(lustre_kset, LUSTRE_OSD_LDISKFS_NAME);
8181         if (kobj) {
8182                 rc = sysfs_create_file(kobj,
8183                                        &lustre_attr_track_declares_assert.attr);
8184                 kobject_put(kobj);
8185                 if (rc) {
8186                         CWARN("osd-ldiskfs: track_declares_assert failed to register with sysfs\n");
8187                         rc = 0;
8188                 }
8189         }
8190         return rc;
8191 }
8192
8193 static void __exit osd_exit(void)
8194 {
8195         struct kobject *kobj;
8196
8197         kobj = kset_find_obj(lustre_kset, LUSTRE_OSD_LDISKFS_NAME);
8198         if (kobj) {
8199                 sysfs_remove_file(kobj,
8200                                   &lustre_attr_track_declares_assert.attr);
8201                 kobject_put(kobj);
8202         }
8203         class_unregister_type(LUSTRE_OSD_LDISKFS_NAME);
8204         lu_kmem_fini(ldiskfs_caches);
8205 }
8206
8207 MODULE_AUTHOR("OpenSFS, Inc. <http://www.lustre.org/>");
8208 MODULE_DESCRIPTION("Lustre Object Storage Device ("LUSTRE_OSD_LDISKFS_NAME")");
8209 MODULE_VERSION(LUSTRE_VERSION_STRING);
8210 MODULE_LICENSE("GPL");
8211
8212 module_init(osd_init);
8213 module_exit(osd_exit);