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[fs/lustre-release.git] / lustre / osd-ldiskfs / osd_oi.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.sun.com/software/products/lustre/docs/GPLv2.pdf
19  *
20  * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
21  * CA 95054 USA or visit www.sun.com if you need additional information or
22  * have any questions.
23  *
24  * GPL HEADER END
25  */
26 /*
27  * Copyright (c) 2007, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2012, 2013, Intel Corporation.
31  */
32 /*
33  * This file is part of Lustre, http://www.lustre.org/
34  * Lustre is a trademark of Sun Microsystems, Inc.
35  *
36  * lustre/osd/osd_oi.c
37  *
38  * Object Index.
39  *
40  * Author: Nikita Danilov <nikita@clusterfs.com>
41  */
42
43 #define DEBUG_SUBSYSTEM S_MDS
44
45 #include <linux/module.h>
46
47 /* LUSTRE_VERSION_CODE */
48 #include <lustre_ver.h>
49 /*
50  * struct OBD_{ALLOC,FREE}*()
51  * OBD_FAIL_CHECK
52  */
53 #include <obd.h>
54 #include <obd_support.h>
55
56 /* fid_cpu_to_be() */
57 #include <lustre_fid.h>
58 #include <dt_object.h>
59
60 #include "osd_oi.h"
61 /* osd_lookup(), struct osd_thread_info */
62 #include "osd_internal.h"
63 #include "osd_scrub.h"
64
65 static unsigned int osd_oi_count = OSD_OI_FID_NR;
66 CFS_MODULE_PARM(osd_oi_count, "i", int, 0444,
67                 "Number of Object Index containers to be created, "
68                 "it's only valid for new filesystem.");
69
70 /** to serialize concurrent OI index initialization */
71 static struct mutex oi_init_lock;
72
73 static struct dt_index_features oi_feat = {
74         .dif_flags       = DT_IND_UPDATE,
75         .dif_recsize_min = sizeof(struct osd_inode_id),
76         .dif_recsize_max = sizeof(struct osd_inode_id),
77         .dif_ptrsize     = 4
78 };
79
80 #define OSD_OI_NAME_BASE        "oi.16"
81
82 static void osd_oi_table_put(struct osd_thread_info *info,
83                              struct osd_oi **oi_table, unsigned oi_count)
84 {
85         struct iam_container *bag;
86         int                   i;
87
88         for (i = 0; i < oi_count; i++) {
89                 if (oi_table[i] == NULL)
90                         continue;
91
92                 LASSERT(oi_table[i]->oi_inode != NULL);
93
94                 bag = &(oi_table[i]->oi_dir.od_container);
95                 if (bag->ic_object == oi_table[i]->oi_inode)
96                         iam_container_fini(bag);
97                 iput(oi_table[i]->oi_inode);
98                 oi_table[i]->oi_inode = NULL;
99                 OBD_FREE_PTR(oi_table[i]);
100                 oi_table[i] = NULL;
101         }
102 }
103
104 static int osd_oi_index_create_one(struct osd_thread_info *info,
105                                    struct osd_device *osd, const char *name,
106                                    struct dt_index_features *feat)
107 {
108         const struct lu_env             *env = info->oti_env;
109         struct osd_inode_id             *id  = &info->oti_id;
110         struct buffer_head              *bh;
111         struct inode                    *inode;
112         struct ldiskfs_dir_entry_2      *de;
113         struct dentry                   *dentry;
114         struct super_block              *sb  = osd_sb(osd);
115         struct inode                    *dir = sb->s_root->d_inode;
116         handle_t                        *jh;
117         int                              rc;
118
119         dentry = osd_child_dentry_by_inode(env, dir, name, strlen(name));
120         bh = osd_ldiskfs_find_entry(dir, dentry, &de, NULL);
121         if (bh) {
122                 osd_id_gen(id, le32_to_cpu(de->inode), OSD_OII_NOGEN);
123                 brelse(bh);
124                 inode = osd_iget(info, osd, id);
125                 if (!IS_ERR(inode)) {
126                         iput(inode);
127                         inode = ERR_PTR(-EEXIST);
128                 }
129                 return PTR_ERR(inode);
130         }
131
132         jh = ldiskfs_journal_start_sb(sb, 100);
133         if (IS_ERR(jh))
134                 return PTR_ERR(jh);
135
136         inode = ldiskfs_create_inode(jh, dir, (S_IFREG | S_IRUGO | S_IWUSR));
137         if (IS_ERR(inode)) {
138                 ldiskfs_journal_stop(jh);
139                 return PTR_ERR(inode);
140         }
141
142         if (feat->dif_flags & DT_IND_VARKEY)
143                 rc = iam_lvar_create(inode, feat->dif_keysize_max,
144                                      feat->dif_ptrsize, feat->dif_recsize_max,
145                                      jh);
146         else
147                 rc = iam_lfix_create(inode, feat->dif_keysize_max,
148                                      feat->dif_ptrsize, feat->dif_recsize_max,
149                                      jh);
150         dentry = osd_child_dentry_by_inode(env, dir, name, strlen(name));
151         rc = osd_ldiskfs_add_entry(jh, dentry, inode, NULL);
152         ldiskfs_journal_stop(jh);
153         iput(inode);
154         return rc;
155 }
156
157 static struct inode *osd_oi_index_open(struct osd_thread_info *info,
158                                        struct osd_device *osd,
159                                        const char *name,
160                                        struct dt_index_features *f,
161                                        bool create)
162 {
163         struct dentry *dentry;
164         struct inode  *inode;
165         int            rc;
166
167         dentry = ll_lookup_one_len(name, osd_sb(osd)->s_root, strlen(name));
168         if (IS_ERR(dentry))
169                 return (void *) dentry;
170
171         if (dentry->d_inode) {
172                 LASSERT(!is_bad_inode(dentry->d_inode));
173                 inode = dentry->d_inode;
174                 atomic_inc(&inode->i_count);
175                 dput(dentry);
176                 return inode;
177         }
178
179         /* create */
180         dput(dentry);
181         shrink_dcache_parent(osd_sb(osd)->s_root);
182         if (!create)
183                 return ERR_PTR(-ENOENT);
184
185         rc = osd_oi_index_create_one(info, osd, name, f);
186         if (rc)
187                 return ERR_PTR(rc);
188
189         dentry = ll_lookup_one_len(name, osd_sb(osd)->s_root, strlen(name));
190         if (IS_ERR(dentry))
191                 return (void *) dentry;
192
193         if (dentry->d_inode) {
194                 LASSERT(!is_bad_inode(dentry->d_inode));
195                 inode = dentry->d_inode;
196                 atomic_inc(&inode->i_count);
197                 dput(dentry);
198                 return inode;
199         }
200
201         return ERR_PTR(-ENOENT);
202 }
203
204 /**
205  * Open an OI(Ojbect Index) container.
206  *
207  * \param       name    Name of OI container
208  * \param       objp    Pointer of returned OI
209  *
210  * \retval      0       success
211  * \retval      -ve     failure
212  */
213 static int osd_oi_open(struct osd_thread_info *info, struct osd_device *osd,
214                        char *name, struct osd_oi **oi_slot, bool create)
215 {
216         struct osd_directory *dir;
217         struct iam_container *bag;
218         struct inode         *inode;
219         struct osd_oi        *oi;
220         int                   rc;
221
222         ENTRY;
223
224         oi_feat.dif_keysize_min = sizeof(struct lu_fid);
225         oi_feat.dif_keysize_max = sizeof(struct lu_fid);
226
227         inode = osd_oi_index_open(info, osd, name, &oi_feat, create);
228         if (IS_ERR(inode))
229                 RETURN(PTR_ERR(inode));
230
231         ldiskfs_set_inode_state(inode, LDISKFS_STATE_LUSTRE_NO_OI);
232         /* 'What the @fid is' is not imporatant, because these objects
233          * have no OI mappings, and only are visible inside the OSD.*/
234         lu_igif_build(&info->oti_fid, inode->i_ino, inode->i_generation);
235         rc = osd_ea_fid_set(info, inode, &info->oti_fid, LMAC_NOT_IN_OI, 0);
236         if (rc != 0)
237                 GOTO(out_inode, rc);
238
239         OBD_ALLOC_PTR(oi);
240         if (oi == NULL)
241                 GOTO(out_inode, rc = -ENOMEM);
242
243         oi->oi_inode = inode;
244         dir = &oi->oi_dir;
245
246         bag = &dir->od_container;
247         rc = iam_container_init(bag, &dir->od_descr, inode);
248         if (rc < 0)
249                 GOTO(out_free, rc);
250
251         rc = iam_container_setup(bag);
252         if (rc < 0)
253                 GOTO(out_container, rc);
254
255         *oi_slot = oi;
256         RETURN(0);
257
258 out_container:
259         iam_container_fini(bag);
260 out_free:
261         OBD_FREE_PTR(oi);
262 out_inode:
263         iput(inode);
264         return rc;
265 }
266
267 /**
268  * Open OI(Object Index) table.
269  * If \a oi_count is zero, which means caller doesn't know how many OIs there
270  * will be, this function can either return 0 for new filesystem, or number
271  * of OIs on existed filesystem.
272  *
273  * If \a oi_count is non-zero, which means caller does know number of OIs on
274  * filesystem, this function should return the exactly same number on
275  * success, or error code in failure.
276  *
277  * \param     oi_count  Number of expected OI containers
278  * \param     create    Create OIs if doesn't exist
279  *
280  * \retval    +ve       number of opened OI containers
281  * \retval      0       no OI containers found
282  * \retval    -ve       failure
283  */
284 static int
285 osd_oi_table_open(struct osd_thread_info *info, struct osd_device *osd,
286                   struct osd_oi **oi_table, unsigned oi_count, bool create)
287 {
288         struct scrub_file *sf = &osd->od_scrub.os_file;
289         int                count = 0;
290         int                rc = 0;
291         int                i;
292         ENTRY;
293
294         /* NB: oi_count != 0 means that we have already created/known all OIs
295          * and have known exact number of OIs. */
296         LASSERT(oi_count <= OSD_OI_FID_NR_MAX);
297
298         for (i = 0; i < (oi_count != 0 ? oi_count : OSD_OI_FID_NR_MAX); i++) {
299                 char name[12];
300
301                 if (oi_table[i] != NULL) {
302                         count++;
303                         continue;
304                 }
305
306                 sprintf(name, "%s.%d", OSD_OI_NAME_BASE, i);
307                 rc = osd_oi_open(info, osd, name, &oi_table[i], create);
308                 if (rc == 0) {
309                         count++;
310                         continue;
311                 }
312
313                 if (rc == -ENOENT && create == false) {
314                         if (oi_count == 0)
315                                 return count;
316
317                         rc = 0;
318                         ldiskfs_set_bit(i, sf->sf_oi_bitmap);
319                         continue;
320                 }
321
322                 CERROR("%.16s: can't open %s: rc = %d\n",
323                        LDISKFS_SB(osd_sb(osd))->s_es->s_volume_name, name, rc);
324                 if (oi_count > 0)
325                         CERROR("%.16s: expect to open total %d OI files.\n",
326                                LDISKFS_SB(osd_sb(osd))->s_es->s_volume_name,
327                                oi_count);
328                 break;
329         }
330
331         if (rc < 0) {
332                 osd_oi_table_put(info, oi_table, oi_count > 0 ? oi_count : i);
333                 count = rc;
334         }
335
336         RETURN(count);
337 }
338
339 int osd_oi_init(struct osd_thread_info *info, struct osd_device *osd)
340 {
341         struct osd_scrub  *scrub = &osd->od_scrub;
342         struct scrub_file *sf = &scrub->os_file;
343         struct osd_oi    **oi;
344         int                rc;
345         ENTRY;
346
347         OBD_ALLOC(oi, sizeof(*oi) * OSD_OI_FID_NR_MAX);
348         if (oi == NULL)
349                 RETURN(-ENOMEM);
350
351         mutex_lock(&oi_init_lock);
352         /* try to open existing multiple OIs first */
353         rc = osd_oi_table_open(info, osd, oi, sf->sf_oi_count, false);
354         if (rc < 0)
355                 GOTO(out, rc);
356
357         if (rc > 0) {
358                 if (rc == sf->sf_oi_count || sf->sf_oi_count == 0)
359                         GOTO(out, rc);
360
361                 osd_scrub_file_reset(scrub,
362                                      LDISKFS_SB(osd_sb(osd))->s_es->s_uuid,
363                                      SF_RECREATED);
364                 osd_oi_count = sf->sf_oi_count;
365                 goto create;
366         }
367
368         /* if previous failed then try found single OI from old filesystem */
369         rc = osd_oi_open(info, osd, OSD_OI_NAME_BASE, &oi[0], false);
370         if (rc == 0) { /* found single OI from old filesystem */
371                 GOTO(out, rc = 1);
372         } else if (rc != -ENOENT) {
373                 CERROR("%.16s: can't open %s: rc = %d\n",
374                        LDISKFS_SB(osd_sb(osd))->s_es->s_volume_name,
375                        OSD_OI_NAME_BASE, rc);
376                 GOTO(out, rc);
377         }
378
379         if (sf->sf_oi_count > 0) {
380                 int i;
381
382                 memset(sf->sf_oi_bitmap, 0, SCRUB_OI_BITMAP_SIZE);
383                 for (i = 0; i < osd_oi_count; i++)
384                         ldiskfs_set_bit(i, sf->sf_oi_bitmap);
385                 osd_scrub_file_reset(scrub,
386                                      LDISKFS_SB(osd_sb(osd))->s_es->s_uuid,
387                                      SF_RECREATED);
388         }
389         sf->sf_oi_count = osd_oi_count;
390
391 create:
392         rc = osd_scrub_file_store(scrub);
393         if (rc < 0) {
394                 osd_oi_table_put(info, oi, sf->sf_oi_count);
395                 GOTO(out, rc);
396         }
397
398         /* No OIs exist, new filesystem, create OI objects */
399         rc = osd_oi_table_open(info, osd, oi, osd_oi_count, true);
400         LASSERT(ergo(rc >= 0, rc == osd_oi_count));
401
402         GOTO(out, rc);
403
404 out:
405         if (rc < 0) {
406                 OBD_FREE(oi, sizeof(*oi) * OSD_OI_FID_NR_MAX);
407         } else {
408                 LASSERT((rc & (rc - 1)) == 0);
409                 osd->od_oi_table = oi;
410                 osd->od_oi_count = rc;
411                 rc = 0;
412         }
413
414         mutex_unlock(&oi_init_lock);
415         return rc;
416 }
417
418 void osd_oi_fini(struct osd_thread_info *info, struct osd_device *osd)
419 {
420         if (unlikely(osd->od_oi_table == NULL))
421                 return;
422
423         osd_oi_table_put(info, osd->od_oi_table, osd->od_oi_count);
424
425         OBD_FREE(osd->od_oi_table,
426                  sizeof(*(osd->od_oi_table)) * OSD_OI_FID_NR_MAX);
427         osd->od_oi_table = NULL;
428 }
429
430 static inline int fid_is_fs_root(const struct lu_fid *fid)
431 {
432         /* Map root inode to special local object FID */
433         return (unlikely(fid_seq(fid) == FID_SEQ_LOCAL_FILE &&
434                          fid_oid(fid) == OSD_FS_ROOT_OID));
435 }
436
437 static int osd_oi_iam_lookup(struct osd_thread_info *oti,
438                              struct osd_oi *oi, struct dt_rec *rec,
439                              const struct dt_key *key)
440 {
441         struct iam_container  *bag;
442         struct iam_iterator   *it = &oti->oti_idx_it;
443         struct iam_path_descr *ipd;
444         int                    rc;
445         ENTRY;
446
447         LASSERT(oi);
448         LASSERT(oi->oi_inode);
449
450         bag = &oi->oi_dir.od_container;
451         ipd = osd_idx_ipd_get(oti->oti_env, bag);
452         if (IS_ERR(ipd))
453                 RETURN(-ENOMEM);
454
455         /* got ipd now we can start iterator. */
456         iam_it_init(it, bag, 0, ipd);
457
458         rc = iam_it_get(it, (struct iam_key *)key);
459         if (rc > 0)
460                 iam_reccpy(&it->ii_path.ip_leaf, (struct iam_rec *)rec);
461         iam_it_put(it);
462         iam_it_fini(it);
463         osd_ipd_put(oti->oti_env, bag, ipd);
464
465         LINVRNT(osd_invariant(obj));
466
467         RETURN(rc);
468 }
469
470 int fid_is_on_ost(struct osd_thread_info *info, struct osd_device *osd,
471                   const struct lu_fid *fid, enum oi_check_flags flags)
472 {
473         ENTRY;
474
475         if (flags & OI_KNOWN_ON_OST)
476                 RETURN(1);
477
478         if (unlikely(fid_is_local_file(fid) || fid_is_igif(fid) ||
479                      fid_is_llog(fid)))
480                 RETURN(0);
481
482         if (fid_is_idif(fid) || fid_is_last_id(fid))
483                 RETURN(1);
484
485         if (!(flags & OI_CHECK_FLD))
486                 RETURN(0);
487
488         if (osd->od_is_ost)
489                 RETURN(1);
490
491         RETURN(0);
492 }
493
494 static int __osd_oi_lookup(struct osd_thread_info *info, struct osd_device *osd,
495                            const struct lu_fid *fid, struct osd_inode_id *id)
496 {
497         struct lu_fid *oi_fid = &info->oti_fid2;
498         int            rc;
499
500         fid_cpu_to_be(oi_fid, fid);
501         rc = osd_oi_iam_lookup(info, osd_fid2oi(osd, fid), (struct dt_rec *)id,
502                                (const struct dt_key *)oi_fid);
503         if (rc > 0) {
504                 osd_id_unpack(id, id);
505                 rc = 0;
506         } else if (rc == 0) {
507                 rc = -ENOENT;
508         }
509         return rc;
510 }
511
512 int osd_oi_lookup(struct osd_thread_info *info, struct osd_device *osd,
513                   const struct lu_fid *fid, struct osd_inode_id *id,
514                   enum oi_check_flags flags)
515 {
516         if (unlikely(fid_is_last_id(fid)))
517                 return osd_obj_spec_lookup(info, osd, fid, id);
518
519         if (fid_is_on_ost(info, osd, fid, flags) || fid_is_llog(fid))
520                 return osd_obj_map_lookup(info, osd, fid, id);
521
522         if (fid_is_fs_root(fid)) {
523                 osd_id_gen(id, osd_sb(osd)->s_root->d_inode->i_ino,
524                            osd_sb(osd)->s_root->d_inode->i_generation);
525                 return 0;
526         }
527
528         if (unlikely(fid_is_acct(fid)))
529                 return osd_acct_obj_lookup(info, osd, fid, id);
530
531         if (!osd->od_igif_inoi && fid_is_igif(fid)) {
532                 osd_id_gen(id, lu_igif_ino(fid), lu_igif_gen(fid));
533                 return 0;
534         }
535
536         return __osd_oi_lookup(info, osd, fid, id);
537 }
538
539 static int osd_oi_iam_refresh(struct osd_thread_info *oti, struct osd_oi *oi,
540                              const struct dt_rec *rec, const struct dt_key *key,
541                              struct thandle *th, bool insert)
542 {
543         struct iam_container    *bag;
544         struct iam_path_descr   *ipd;
545         struct osd_thandle      *oh;
546         int                     rc;
547         ENTRY;
548
549         LASSERT(oi);
550         LASSERT(oi->oi_inode);
551         ll_vfs_dq_init(oi->oi_inode);
552
553         bag = &oi->oi_dir.od_container;
554         ipd = osd_idx_ipd_get(oti->oti_env, bag);
555         if (unlikely(ipd == NULL))
556                 RETURN(-ENOMEM);
557
558         oh = container_of0(th, struct osd_thandle, ot_super);
559         LASSERT(oh->ot_handle != NULL);
560         LASSERT(oh->ot_handle->h_transaction != NULL);
561         if (insert)
562                 rc = iam_insert(oh->ot_handle, bag, (const struct iam_key *)key,
563                                 (const struct iam_rec *)rec, ipd);
564         else
565                 rc = iam_update(oh->ot_handle, bag, (const struct iam_key *)key,
566                                 (const struct iam_rec *)rec, ipd);
567         osd_ipd_put(oti->oti_env, bag, ipd);
568         LINVRNT(osd_invariant(obj));
569         RETURN(rc);
570 }
571
572 int osd_oi_insert(struct osd_thread_info *info, struct osd_device *osd,
573                   const struct lu_fid *fid, const struct osd_inode_id *id,
574                   struct thandle *th, enum oi_check_flags flags)
575 {
576         struct lu_fid       *oi_fid = &info->oti_fid2;
577         struct osd_inode_id *oi_id  = &info->oti_id2;
578         int                  rc     = 0;
579
580         if (unlikely(fid_is_last_id(fid)))
581                 return osd_obj_spec_insert(info, osd, fid, id, th);
582
583         if (fid_is_on_ost(info, osd, fid, flags) || fid_is_llog(fid))
584                 return osd_obj_map_insert(info, osd, fid, id, th);
585
586         fid_cpu_to_be(oi_fid, fid);
587         osd_id_pack(oi_id, id);
588         rc = osd_oi_iam_refresh(info, osd_fid2oi(osd, fid),
589                                (const struct dt_rec *)oi_id,
590                                (const struct dt_key *)oi_fid, th, true);
591         if (rc != 0) {
592                 struct inode *inode;
593                 struct lustre_mdt_attrs *lma = &info->oti_mdt_attrs;
594
595                 if (rc != -EEXIST)
596                         return rc;
597
598                 rc = osd_oi_lookup(info, osd, fid, oi_id, 0);
599                 if (rc != 0)
600                         return rc;
601
602                 if (unlikely(osd_id_eq(id, oi_id)))
603                         return 0;
604
605                 /* Check whether the mapping for oi_id is valid or not. */
606                 inode = osd_iget(info, osd, oi_id);
607                 if (IS_ERR(inode)) {
608                         rc = PTR_ERR(inode);
609                         if (rc == -ENOENT || rc == -ESTALE)
610                                 goto update;
611                         return rc;
612                 }
613
614                 rc = osd_get_lma(info, inode, &info->oti_obj_dentry, lma);
615                 iput(inode);
616                 if (rc == -ENODATA)
617                         goto update;
618
619                 if (rc != 0)
620                         return rc;
621
622                 if (!(lma->lma_compat & LMAC_NOT_IN_OI) &&
623                     lu_fid_eq(fid, &lma->lma_self_fid)) {
624                         CERROR("%.16s: the FID "DFID" is used by two objects: "
625                                "%u/%u %u/%u\n",
626                                LDISKFS_SB(osd_sb(osd))->s_es->s_volume_name,
627                                PFID(fid), oi_id->oii_ino, oi_id->oii_gen,
628                                id->oii_ino, id->oii_gen);
629                         return -EEXIST;
630                 }
631
632 update:
633                 osd_id_pack(oi_id, id);
634                 rc = osd_oi_iam_refresh(info, osd_fid2oi(osd, fid),
635                                         (const struct dt_rec *)oi_id,
636                                         (const struct dt_key *)oi_fid, th, false);
637                 if (rc != 0)
638                         return rc;
639         }
640
641         if (unlikely(fid_seq(fid) == FID_SEQ_LOCAL_FILE))
642                 rc = osd_obj_spec_insert(info, osd, fid, id, th);
643         return rc;
644 }
645
646 static int osd_oi_iam_delete(struct osd_thread_info *oti, struct osd_oi *oi,
647                              const struct dt_key *key, struct thandle *handle)
648 {
649         struct iam_container  *bag;
650         struct iam_path_descr *ipd;
651         struct osd_thandle    *oh;
652         int                    rc;
653         ENTRY;
654
655         LASSERT(oi);
656         LASSERT(oi->oi_inode);
657         ll_vfs_dq_init(oi->oi_inode);
658
659         bag = &oi->oi_dir.od_container;
660         ipd = osd_idx_ipd_get(oti->oti_env, bag);
661         if (unlikely(ipd == NULL))
662                 RETURN(-ENOMEM);
663
664         oh = container_of0(handle, struct osd_thandle, ot_super);
665         LASSERT(oh->ot_handle != NULL);
666         LASSERT(oh->ot_handle->h_transaction != NULL);
667
668         rc = iam_delete(oh->ot_handle, bag, (const struct iam_key *)key, ipd);
669         osd_ipd_put(oti->oti_env, bag, ipd);
670         LINVRNT(osd_invariant(obj));
671         RETURN(rc);
672 }
673
674 int osd_oi_delete(struct osd_thread_info *info,
675                   struct osd_device *osd, const struct lu_fid *fid,
676                   struct thandle *th, enum oi_check_flags flags)
677 {
678         struct lu_fid *oi_fid = &info->oti_fid2;
679
680         /* clear idmap cache */
681         if (lu_fid_eq(fid, &info->oti_cache.oic_fid))
682                 fid_zero(&info->oti_cache.oic_fid);
683
684         if (fid_is_last_id(fid))
685                 return 0;
686
687         if (fid_is_on_ost(info, osd, fid, flags) || fid_is_llog(fid))
688                 return osd_obj_map_delete(info, osd, fid, th);
689
690         fid_cpu_to_be(oi_fid, fid);
691         return osd_oi_iam_delete(info, osd_fid2oi(osd, fid),
692                                  (const struct dt_key *)oi_fid, th);
693 }
694
695 int osd_oi_update(struct osd_thread_info *info, struct osd_device *osd,
696                   const struct lu_fid *fid, const struct osd_inode_id *id,
697                   struct thandle *th, enum oi_check_flags flags)
698 {
699         struct lu_fid       *oi_fid = &info->oti_fid2;
700         struct osd_inode_id *oi_id  = &info->oti_id2;
701         int                  rc     = 0;
702
703         if (unlikely(fid_is_last_id(fid)))
704                 return osd_obj_spec_update(info, osd, fid, id, th);
705
706         if (fid_is_on_ost(info, osd, fid, flags) || fid_is_llog(fid))
707                 return osd_obj_map_update(info, osd, fid, id, th);
708
709         fid_cpu_to_be(oi_fid, fid);
710         osd_id_pack(oi_id, id);
711         rc = osd_oi_iam_refresh(info, osd_fid2oi(osd, fid),
712                                (const struct dt_rec *)oi_id,
713                                (const struct dt_key *)oi_fid, th, false);
714         if (rc != 0)
715                 return rc;
716
717         if (unlikely(fid_seq(fid) == FID_SEQ_LOCAL_FILE))
718                 rc = osd_obj_spec_update(info, osd, fid, id, th);
719         return rc;
720 }
721
722 int osd_oi_mod_init(void)
723 {
724         if (osd_oi_count == 0 || osd_oi_count > OSD_OI_FID_NR_MAX)
725                 osd_oi_count = OSD_OI_FID_NR;
726
727         if ((osd_oi_count & (osd_oi_count - 1)) != 0) {
728                 LCONSOLE_WARN("Round up oi_count %d to power2 %d\n",
729                               osd_oi_count, size_roundup_power2(osd_oi_count));
730                 osd_oi_count = size_roundup_power2(osd_oi_count);
731         }
732
733         mutex_init(&oi_init_lock);
734         return 0;
735 }