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LU-3594 lfsck: repair inconsistent owner and multiple referenced cases
[fs/lustre-release.git] / lustre / lod / lod_lov.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,
11  * but WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13  * GNU General Public License version 2 for more details.  A copy is
14  * included in the COPYING file that accompanied this code.
15
16  * You should have received a copy of the GNU General Public License
17  * along with this program; if not, write to the Free Software
18  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19  *
20  * GPL HEADER END
21  */
22 /*
23  * Copyright  2009 Sun Microsystems, Inc. All rights reserved
24  * Use is subject to license terms.
25  *
26  * Copyright (c) 2012, 2013, Intel Corporation.
27  */
28 /*
29  * lustre/lod/lod_lov.c
30  *
31  * Author: Alex Zhuravlev <alexey.zhuravlev@intel.com> 
32  */
33
34 #define DEBUG_SUBSYSTEM S_MDS
35
36 #include <obd_class.h>
37 #include <obd_lov.h>
38 #include <lustre_lfsck.h>
39
40 #include "lod_internal.h"
41
42 /*
43  * Keep a refcount of lod->ltd_tgts usage to prevent racing with
44  * addition/deletion. Any function that expects lov_tgts to remain stationary
45  * must take a ref.
46  *
47  * \param lod - is the lod device from which we want to grab a reference
48  */
49 void lod_getref(struct lod_tgt_descs *ltd)
50 {
51         down_read(&ltd->ltd_rw_sem);
52         mutex_lock(&ltd->ltd_mutex);
53         ltd->ltd_refcount++;
54         mutex_unlock(&ltd->ltd_mutex);
55 }
56
57 /*
58  * Companion of lod_getref() to release a reference on the lod table.
59  * If this is the last reference and the ost entry was scheduled for deletion,
60  * the descriptor is removed from the array.
61  *
62  * \param lod - is the lod device from which we release a reference
63  */
64 void lod_putref(struct lod_device *lod, struct lod_tgt_descs *ltd)
65 {
66         mutex_lock(&ltd->ltd_mutex);
67         ltd->ltd_refcount--;
68         if (ltd->ltd_refcount == 0 && ltd->ltd_death_row) {
69                 struct lod_tgt_desc *tgt_desc, *tmp;
70                 int                  idx;
71                 CFS_LIST_HEAD(kill);
72
73                 CDEBUG(D_CONFIG, "destroying %d ltd desc\n",
74                        ltd->ltd_death_row);
75
76                 cfs_foreach_bit(ltd->ltd_tgt_bitmap, idx) {
77                         tgt_desc = LTD_TGT(ltd, idx);
78                         LASSERT(tgt_desc);
79
80                         if (!tgt_desc->ltd_reap)
81                                 continue;
82
83                         cfs_list_add(&tgt_desc->ltd_kill, &kill);
84                         LTD_TGT(ltd, idx) = NULL;
85                         /*FIXME: only support ost pool for now */
86                         if (ltd == &lod->lod_ost_descs) {
87                                 lod_ost_pool_remove(&lod->lod_pool_info, idx);
88                                 if (tgt_desc->ltd_active)
89                                         lod->lod_desc.ld_active_tgt_count--;
90                         }
91                         ltd->ltd_tgtnr--;
92                         cfs_bitmap_clear(ltd->ltd_tgt_bitmap, idx);
93                         ltd->ltd_death_row--;
94                 }
95                 mutex_unlock(&ltd->ltd_mutex);
96                 up_read(&ltd->ltd_rw_sem);
97
98                 cfs_list_for_each_entry_safe(tgt_desc, tmp, &kill, ltd_kill) {
99                         int rc;
100                         cfs_list_del(&tgt_desc->ltd_kill);
101                         if (ltd == &lod->lod_ost_descs) {
102                                 /* remove from QoS structures */
103                                 rc = qos_del_tgt(lod, tgt_desc);
104                                 if (rc)
105                                         CERROR("%s: qos_del_tgt(%s) failed:"
106                                                "rc = %d\n",
107                                                lod2obd(lod)->obd_name,
108                                               obd_uuid2str(&tgt_desc->ltd_uuid),
109                                                rc);
110                         }
111                         rc = obd_disconnect(tgt_desc->ltd_exp);
112                         if (rc)
113                                 CERROR("%s: failed to disconnect %s: rc = %d\n",
114                                        lod2obd(lod)->obd_name,
115                                        obd_uuid2str(&tgt_desc->ltd_uuid), rc);
116                         OBD_FREE_PTR(tgt_desc);
117                 }
118         } else {
119                 mutex_unlock(&ltd->ltd_mutex);
120                 up_read(&ltd->ltd_rw_sem);
121         }
122 }
123
124 static int ltd_bitmap_resize(struct lod_tgt_descs *ltd, __u32 newsize)
125 {
126         cfs_bitmap_t *new_bitmap, *old_bitmap = NULL;
127         int           rc = 0;
128         ENTRY;
129
130         /* grab write reference on the lod. Relocating the array requires
131          * exclusive access */
132
133         down_write(&ltd->ltd_rw_sem);
134         if (newsize <= ltd->ltd_tgts_size)
135                 /* someone else has already resize the array */
136                 GOTO(out, rc = 0);
137
138         /* allocate new bitmap */
139         new_bitmap = CFS_ALLOCATE_BITMAP(newsize);
140         if (!new_bitmap)
141                 GOTO(out, rc = -ENOMEM);
142
143         if (ltd->ltd_tgts_size > 0) {
144                 /* the bitmap already exists, we need
145                  * to copy data from old one */
146                 cfs_bitmap_copy(new_bitmap, ltd->ltd_tgt_bitmap);
147                 old_bitmap = ltd->ltd_tgt_bitmap;
148         }
149
150         ltd->ltd_tgts_size  = newsize;
151         ltd->ltd_tgt_bitmap = new_bitmap;
152
153         if (old_bitmap)
154                 CFS_FREE_BITMAP(old_bitmap);
155
156         CDEBUG(D_CONFIG, "tgt size: %d\n", ltd->ltd_tgts_size);
157
158         EXIT;
159 out:
160         up_write(&ltd->ltd_rw_sem);
161         return rc;
162 }
163
164 /*
165  * Connect LOD to a new OSP and add it to the device table.
166  *
167  * \param env - is the environment passed by the caller
168  * \param lod - is the LOD device to be connected to the new OSP
169  * \param osp - is the name of OSP device name about to be added
170  * \param index - is the OSP index
171  * \param gen - is the generation number
172  * \param tgt_index - is the group of the OSP.
173  * \param type - is the type of device (mdc or osc)
174  */
175 int lod_add_device(const struct lu_env *env, struct lod_device *lod,
176                    char *osp, unsigned index, unsigned gen, int tgt_index,
177                    char *type, int active)
178 {
179         struct obd_connect_data *data = NULL;
180         struct obd_export       *exp = NULL;
181         struct obd_device       *obd;
182         struct lu_device        *ldev;
183         struct dt_device        *d;
184         int                      rc;
185         struct lod_tgt_desc     *tgt_desc;
186         struct lod_tgt_descs    *ltd;
187         struct obd_uuid         obd_uuid;
188         bool                    for_ost;
189         ENTRY;
190
191         CDEBUG(D_CONFIG, "osp:%s idx:%d gen:%d\n", osp, index, gen);
192
193         if (gen <= 0) {
194                 CERROR("request to add OBD %s with invalid generation: %d\n",
195                        osp, gen);
196                 RETURN(-EINVAL);
197         }
198
199         obd_str2uuid(&obd_uuid, osp);
200
201         obd = class_find_client_obd(&obd_uuid, LUSTRE_OSP_NAME,
202                                 &lod->lod_dt_dev.dd_lu_dev.ld_obd->obd_uuid);
203         if (obd == NULL) {
204                 CERROR("can't find %s device\n", osp);
205                 RETURN(-EINVAL);
206         }
207
208         OBD_ALLOC_PTR(data);
209         if (data == NULL)
210                 RETURN(-ENOMEM);
211
212         data->ocd_connect_flags = OBD_CONNECT_INDEX | OBD_CONNECT_VERSION;
213         data->ocd_version = LUSTRE_VERSION_CODE;
214         data->ocd_index = index;
215
216         if (strcmp(LUSTRE_OSC_NAME, type) == 0) {
217                 for_ost = true;
218                 data->ocd_connect_flags |= OBD_CONNECT_AT |
219                                            OBD_CONNECT_FULL20 |
220                                            OBD_CONNECT_INDEX |
221 #ifdef HAVE_LRU_RESIZE_SUPPORT
222                                            OBD_CONNECT_LRU_RESIZE |
223 #endif
224                                            OBD_CONNECT_MDS |
225                                            OBD_CONNECT_OSS_CAPA |
226                                            OBD_CONNECT_REQPORTAL |
227                                            OBD_CONNECT_SKIP_ORPHAN |
228                                            OBD_CONNECT_FID |
229                                            OBD_CONNECT_LVB_TYPE |
230                                            OBD_CONNECT_VERSION |
231                                            OBD_CONNECT_PINGLESS |
232                                            OBD_CONNECT_LFSCK;
233
234                 data->ocd_group = tgt_index;
235                 ltd = &lod->lod_ost_descs;
236         } else {
237                 struct obd_import *imp = obd->u.cli.cl_import;
238
239                 for_ost = false;
240                 data->ocd_ibits_known = MDS_INODELOCK_UPDATE;
241                 data->ocd_connect_flags |= OBD_CONNECT_ACL |
242                                            OBD_CONNECT_MDS_CAPA |
243                                            OBD_CONNECT_OSS_CAPA |
244                                            OBD_CONNECT_IBITS |
245                                            OBD_CONNECT_MDS_MDS |
246                                            OBD_CONNECT_FID |
247                                            OBD_CONNECT_AT |
248                                            OBD_CONNECT_FULL20 |
249                                            OBD_CONNECT_LFSCK;
250                 /* XXX set MDS-MDS flags, remove this when running this
251                  * on client*/
252                 data->ocd_connect_flags |= OBD_CONNECT_MDS_MDS;
253                 spin_lock(&imp->imp_lock);
254                 imp->imp_server_timeout = 1;
255                 spin_unlock(&imp->imp_lock);
256                 imp->imp_client->cli_request_portal = OUT_PORTAL;
257                 CDEBUG(D_OTHER, "%s: Set 'mds' portal and timeout\n",
258                       obd->obd_name);
259                 ltd = &lod->lod_mdt_descs;
260         }
261
262         rc = obd_connect(env, &exp, obd, &obd->obd_uuid, data, NULL);
263         OBD_FREE_PTR(data);
264         if (rc) {
265                 CERROR("%s: cannot connect to next dev %s (%d)\n",
266                        obd->obd_name, osp, rc);
267                 GOTO(out_free, rc);
268         }
269
270         LASSERT(obd->obd_lu_dev);
271         LASSERT(obd->obd_lu_dev->ld_site == lod->lod_dt_dev.dd_lu_dev.ld_site);
272
273         ldev = obd->obd_lu_dev;
274         d = lu2dt_dev(ldev);
275
276         /* Allocate ost descriptor and fill it */
277         OBD_ALLOC_PTR(tgt_desc);
278         if (!tgt_desc)
279                 GOTO(out_conn, rc = -ENOMEM);
280
281         tgt_desc->ltd_tgt    = d;
282         tgt_desc->ltd_exp    = exp;
283         tgt_desc->ltd_uuid   = obd->u.cli.cl_target_uuid;
284         tgt_desc->ltd_gen    = gen;
285         tgt_desc->ltd_index  = index;
286         tgt_desc->ltd_active = active;
287
288         lod_getref(ltd);
289         if (index >= ltd->ltd_tgts_size) {
290                 /* we have to increase the size of the lod_osts array */
291                 __u32  newsize;
292
293                 newsize = max(ltd->ltd_tgts_size, (__u32)2);
294                 while (newsize < index + 1)
295                         newsize = newsize << 1;
296
297                 /* lod_bitmap_resize() needs lod_rw_sem
298                  * which we hold with th reference */
299                 lod_putref(lod, ltd);
300
301                 rc = ltd_bitmap_resize(ltd, newsize);
302                 if (rc)
303                         GOTO(out_desc, rc);
304
305                 lod_getref(ltd);
306         }
307
308         mutex_lock(&ltd->ltd_mutex);
309         if (cfs_bitmap_check(ltd->ltd_tgt_bitmap, index)) {
310                 CERROR("%s: device %d is registered already\n", obd->obd_name,
311                        index);
312                 GOTO(out_mutex, rc = -EEXIST);
313         }
314
315         if (ltd->ltd_tgt_idx[index / TGT_PTRS_PER_BLOCK] == NULL) {
316                 OBD_ALLOC_PTR(ltd->ltd_tgt_idx[index / TGT_PTRS_PER_BLOCK]);
317                 if (ltd->ltd_tgt_idx[index / TGT_PTRS_PER_BLOCK] == NULL) {
318                         CERROR("can't allocate index to add %s\n",
319                                obd->obd_name);
320                         GOTO(out_mutex, rc = -ENOMEM);
321                 }
322         }
323
324         if (!strcmp(LUSTRE_OSC_NAME, type)) {
325                 /* pool and qos are not supported for MDS stack yet */
326                 rc = lod_ost_pool_add(&lod->lod_pool_info, index,
327                                       lod->lod_osts_size);
328                 if (rc) {
329                         CERROR("%s: can't set up pool, failed with %d\n",
330                                obd->obd_name, rc);
331                         GOTO(out_mutex, rc);
332                 }
333
334                 rc = qos_add_tgt(lod, tgt_desc);
335                 if (rc) {
336                         CERROR("%s: qos_add_tgt failed with %d\n",
337                                 obd->obd_name, rc);
338                         GOTO(out_pool, rc);
339                 }
340
341                 /* The new OST is now a full citizen */
342                 if (index >= lod->lod_desc.ld_tgt_count)
343                         lod->lod_desc.ld_tgt_count = index + 1;
344                 if (active)
345                         lod->lod_desc.ld_active_tgt_count++;
346         }
347
348         LTD_TGT(ltd, index) = tgt_desc;
349         cfs_bitmap_set(ltd->ltd_tgt_bitmap, index);
350         ltd->ltd_tgtnr++;
351         mutex_unlock(&ltd->ltd_mutex);
352         lod_putref(lod, ltd);
353         if (lod->lod_recovery_completed)
354                 ldev->ld_ops->ldo_recovery_complete(env, ldev);
355
356         rc = lfsck_add_target(env, lod->lod_child, d, exp, index, for_ost);
357         if (rc != 0)
358                 CERROR("Fail to add LFSCK target: name = %s, type = %s, "
359                        "index = %u, rc = %d\n", osp, type, index, rc);
360
361         RETURN(rc);
362
363 out_pool:
364         lod_ost_pool_remove(&lod->lod_pool_info, index);
365 out_mutex:
366         mutex_unlock(&ltd->ltd_mutex);
367         lod_putref(lod, ltd);
368 out_desc:
369         OBD_FREE_PTR(tgt_desc);
370 out_conn:
371         obd_disconnect(exp);
372 out_free:
373         return rc;
374 }
375
376 /*
377  * helper function to schedule OST removal from the device table
378  */
379 static void __lod_del_device(const struct lu_env *env, struct lod_device *lod,
380                              struct lod_tgt_descs *ltd, unsigned idx,
381                              bool for_ost)
382 {
383         LASSERT(LTD_TGT(ltd, idx));
384
385         lfsck_del_target(env, lod->lod_child, LTD_TGT(ltd, idx)->ltd_tgt,
386                          idx, for_ost);
387
388         if (LTD_TGT(ltd, idx)->ltd_reap == 0) {
389                 LTD_TGT(ltd, idx)->ltd_reap = 1;
390                 ltd->ltd_death_row++;
391         }
392 }
393
394 int lod_fini_tgt(const struct lu_env *env, struct lod_device *lod,
395                  struct lod_tgt_descs *ltd, bool for_ost)
396 {
397         int idx;
398
399         if (ltd->ltd_tgts_size <= 0)
400                 return 0;
401         lod_getref(ltd);
402         mutex_lock(&ltd->ltd_mutex);
403         cfs_foreach_bit(ltd->ltd_tgt_bitmap, idx)
404                 __lod_del_device(env, lod, ltd, idx, for_ost);
405         mutex_unlock(&ltd->ltd_mutex);
406         lod_putref(lod, ltd);
407         CFS_FREE_BITMAP(ltd->ltd_tgt_bitmap);
408         for (idx = 0; idx < TGT_PTRS; idx++) {
409                 if (ltd->ltd_tgt_idx[idx])
410                         OBD_FREE_PTR(ltd->ltd_tgt_idx[idx]);
411         }
412         ltd->ltd_tgts_size = 0;
413         return 0;
414 }
415
416 /*
417  * Add support for administratively disabled OST (through the MGS).
418  * Schedule a target for deletion.  Disconnection and real removal from the
419  * table takes place in lod_putref() once the last table user release its
420  * reference.
421  *
422  * \param env - is the environment passed by the caller
423  * \param lod - is the lod device currently connected to the OSP about to be
424  *              removed
425  * \param osp - is the name of OSP device about to be removed
426  * \param idx - is the OSP index
427  * \param gen - is the generation number, not used currently
428  */
429 int lod_del_device(const struct lu_env *env, struct lod_device *lod,
430                    struct lod_tgt_descs *ltd, char *osp, unsigned idx,
431                    unsigned gen, bool for_ost)
432 {
433         struct obd_device *obd;
434         int                rc = 0;
435         struct obd_uuid    uuid;
436         ENTRY;
437
438         CDEBUG(D_CONFIG, "osp:%s idx:%d gen:%d\n", osp, idx, gen);
439
440         obd_str2uuid(&uuid, osp);
441
442         obd = class_find_client_obd(&uuid, LUSTRE_OSP_NAME,
443                                    &lod->lod_dt_dev.dd_lu_dev.ld_obd->obd_uuid);
444         if (obd == NULL) {
445                 CERROR("can't find %s device\n", osp);
446                 RETURN(-EINVAL);
447         }
448
449         if (gen <= 0) {
450                 CERROR("%s: request to remove OBD %s with invalid generation %d"
451                        "\n", obd->obd_name, osp, gen);
452                 RETURN(-EINVAL);
453         }
454
455         obd_str2uuid(&uuid,  osp);
456
457         lod_getref(ltd);
458         mutex_lock(&ltd->ltd_mutex);
459         /* check that the index is allocated in the bitmap */
460         if (!cfs_bitmap_check(ltd->ltd_tgt_bitmap, idx) ||
461             !LTD_TGT(ltd, idx)) {
462                 CERROR("%s: device %d is not set up\n", obd->obd_name, idx);
463                 GOTO(out, rc = -EINVAL);
464         }
465
466         /* check that the UUID matches */
467         if (!obd_uuid_equals(&uuid, &LTD_TGT(ltd, idx)->ltd_uuid)) {
468                 CERROR("%s: LOD target UUID %s at index %d does not match %s\n",
469                        obd->obd_name, obd_uuid2str(&LTD_TGT(ltd,idx)->ltd_uuid),
470                        idx, osp);
471                 GOTO(out, rc = -EINVAL);
472         }
473
474         __lod_del_device(env, lod, ltd, idx, for_ost);
475         EXIT;
476 out:
477         mutex_unlock(&ltd->ltd_mutex);
478         lod_putref(lod, ltd);
479         return(rc);
480 }
481
482 int lod_ea_store_resize(struct lod_thread_info *info, int size)
483 {
484         int round = size_roundup_power2(size);
485
486         LASSERT(round <=
487                 lov_mds_md_size(LOV_MAX_STRIPE_COUNT, LOV_MAGIC_V3));
488         if (info->lti_ea_store) {
489                 LASSERT(info->lti_ea_store_size);
490                 LASSERT(info->lti_ea_store_size < round);
491                 CDEBUG(D_INFO, "EA store size %d is not enough, need %d\n",
492                        info->lti_ea_store_size, round);
493                 OBD_FREE_LARGE(info->lti_ea_store, info->lti_ea_store_size);
494                 info->lti_ea_store = NULL;
495                 info->lti_ea_store_size = 0;
496         }
497
498         OBD_ALLOC_LARGE(info->lti_ea_store, round);
499         if (info->lti_ea_store == NULL)
500                 RETURN(-ENOMEM);
501         info->lti_ea_store_size = round;
502         RETURN(0);
503 }
504
505 /*
506  * generate and write LOV EA for given striped object
507  */
508 int lod_generate_and_set_lovea(const struct lu_env *env,
509                                struct lod_object *lo, struct thandle *th)
510 {
511         struct lod_thread_info  *info = lod_env_info(env);
512         struct dt_object        *next = dt_object_child(&lo->ldo_obj);
513         const struct lu_fid     *fid  = lu_object_fid(&lo->ldo_obj.do_lu);
514         struct lov_mds_md_v1    *lmm;
515         struct lov_ost_data_v1  *objs;
516         __u32                    magic;
517         int                      i, rc, lmm_size;
518         int                      cplen = 0;
519         ENTRY;
520
521         LASSERT(lo);
522
523         magic = lo->ldo_pool != NULL ? LOV_MAGIC_V3 : LOV_MAGIC_V1;
524         lmm_size = lov_mds_md_size(lo->ldo_stripenr, magic);
525         if (info->lti_ea_store_size < lmm_size) {
526                 rc = lod_ea_store_resize(info, lmm_size);
527                 if (rc)
528                         RETURN(rc);
529         }
530
531         if (lo->ldo_pattern == 0) /* default striping */
532                 lo->ldo_pattern = LOV_PATTERN_RAID0;
533
534         lmm = info->lti_ea_store;
535
536         lmm->lmm_magic = cpu_to_le32(magic);
537         lmm->lmm_pattern = cpu_to_le32(lo->ldo_pattern);
538         fid_to_lmm_oi(fid, &lmm->lmm_oi);
539         if (OBD_FAIL_CHECK(OBD_FAIL_LFSCK_BAD_LMMOI))
540                 lmm->lmm_oi.oi.oi_id++;
541         lmm_oi_cpu_to_le(&lmm->lmm_oi, &lmm->lmm_oi);
542         lmm->lmm_stripe_size = cpu_to_le32(lo->ldo_stripe_size);
543         lmm->lmm_stripe_count = cpu_to_le16(lo->ldo_stripenr);
544         if (lo->ldo_pattern & LOV_PATTERN_F_RELEASED)
545                 lmm->lmm_stripe_count = cpu_to_le16(lo->ldo_released_stripenr);
546         lmm->lmm_layout_gen = 0;
547         if (magic == LOV_MAGIC_V1) {
548                 objs = &lmm->lmm_objects[0];
549         } else {
550                 struct lov_mds_md_v3 *v3 = (struct lov_mds_md_v3 *) lmm;
551                 cplen = strlcpy(v3->lmm_pool_name, lo->ldo_pool,
552                                 sizeof(v3->lmm_pool_name));
553                 if (cplen >= sizeof(v3->lmm_pool_name))
554                         RETURN(-E2BIG);
555                 objs = &v3->lmm_objects[0];
556         }
557
558         for (i = 0; i < lo->ldo_stripenr; i++) {
559                 struct lu_fid           *fid    = &info->lti_fid;
560                 struct lod_device       *lod;
561                 __u32                   index;
562                 int                     type    = LU_SEQ_RANGE_OST;
563
564                 lod = lu2lod_dev(lo->ldo_obj.do_lu.lo_dev);
565                 LASSERT(lo->ldo_stripe[i]);
566
567                 *fid = *lu_object_fid(&lo->ldo_stripe[i]->do_lu);
568                 if (OBD_FAIL_CHECK(OBD_FAIL_LFSCK_MULTIPLE_REF)) {
569                         if (cfs_fail_val == 0)
570                                 cfs_fail_val = fid->f_oid;
571                         else
572                                 fid->f_oid = cfs_fail_val;
573                 }
574
575                 rc = fid_to_ostid(fid, &info->lti_ostid);
576                 LASSERT(rc == 0);
577
578                 ostid_cpu_to_le(&info->lti_ostid, &objs[i].l_ost_oi);
579                 objs[i].l_ost_gen    = cpu_to_le32(0);
580                 rc = lod_fld_lookup(env, lod, fid, &index, &type);
581                 if (rc < 0) {
582                         CERROR("%s: Can not locate "DFID": rc = %d\n",
583                                lod2obd(lod)->obd_name, PFID(fid), rc);
584                         lod_object_free_striping(env, lo);
585                         RETURN(rc);
586                 }
587                 objs[i].l_ost_idx = cpu_to_le32(index);
588         }
589
590         info->lti_buf.lb_buf = lmm;
591         info->lti_buf.lb_len = lmm_size;
592         rc = dt_xattr_set(env, next, &info->lti_buf, XATTR_NAME_LOV, 0,
593                           th, BYPASS_CAPA);
594
595         RETURN(rc);
596 }
597
598 int lod_get_ea(const struct lu_env *env, struct lod_object *lo,
599                const char *name)
600 {
601         struct lod_thread_info  *info = lod_env_info(env);
602         struct dt_object        *next = dt_object_child(&lo->ldo_obj);
603         int                     rc;
604         ENTRY;
605
606         LASSERT(info);
607
608         if (unlikely(info->lti_ea_store == NULL)) {
609                 /* just to enter in allocation block below */
610                 rc = -ERANGE;
611         } else {
612 repeat:
613                 info->lti_buf.lb_buf = info->lti_ea_store;
614                 info->lti_buf.lb_len = info->lti_ea_store_size;
615                 rc = dt_xattr_get(env, next, &info->lti_buf, name, BYPASS_CAPA);
616         }
617         /* if object is not striped or inaccessible */
618         if (rc == -ENODATA || rc == -ENOENT)
619                 RETURN(0);
620
621         if (rc == -ERANGE) {
622                 /* EA doesn't fit, reallocate new buffer */
623                 rc = dt_xattr_get(env, next, &LU_BUF_NULL, name,
624                                   BYPASS_CAPA);
625                 if (rc == -ENODATA || rc == -ENOENT)
626                         RETURN(0);
627                 else if (rc < 0)
628                         RETURN(rc);
629
630                 LASSERT(rc > 0);
631                 rc = lod_ea_store_resize(info, rc);
632                 if (rc)
633                         RETURN(rc);
634                 goto repeat;
635         }
636
637         RETURN(rc);
638 }
639
640 int lod_store_def_striping(const struct lu_env *env, struct dt_object *dt,
641                            struct thandle *th)
642 {
643         struct lod_thread_info  *info = lod_env_info(env);
644         struct lod_object       *lo = lod_dt_obj(dt);
645         struct dt_object        *next = dt_object_child(dt);
646         struct lov_user_md_v3   *v3;
647         int                      rc;
648         ENTRY;
649
650         if (S_ISDIR(dt->do_lu.lo_header->loh_attr))
651                 RETURN(-ENOTDIR);
652         /*
653          * store striping defaults into new directory
654          * used to implement defaults inheritance
655          */
656
657         /* probably nothing to inherite */
658         if (lo->ldo_striping_cached == 0)
659                 RETURN(0);
660
661         if (LOVEA_DELETE_VALUES(lo->ldo_def_stripe_size, lo->ldo_def_stripenr,
662                                 lo->ldo_def_stripe_offset))
663                 RETURN(0);
664
665         v3 = info->lti_ea_store;
666         if (info->lti_ea_store_size < sizeof(*v3)) {
667                 rc = lod_ea_store_resize(info, sizeof(*v3));
668                 if (rc != 0)
669                         RETURN(rc);
670                 v3 = info->lti_ea_store;
671         }
672         memset(v3, 0, sizeof(*v3));
673         v3->lmm_magic = cpu_to_le32(LOV_USER_MAGIC_V3);
674         v3->lmm_stripe_count = cpu_to_le16(lo->ldo_def_stripenr);
675         v3->lmm_stripe_offset = cpu_to_le16(lo->ldo_def_stripe_offset);
676         v3->lmm_stripe_size = cpu_to_le32(lo->ldo_def_stripe_size);
677         if (lo->ldo_pool)
678                 strncpy(v3->lmm_pool_name, lo->ldo_pool,
679                         sizeof(v3->lmm_pool_name));
680         info->lti_buf.lb_buf = v3;
681         info->lti_buf.lb_len = sizeof(*v3);
682         rc = dt_xattr_set(env, next, &info->lti_buf, XATTR_NAME_LOV, 0, th,
683                         BYPASS_CAPA);
684
685         RETURN(rc);
686 }
687
688 static int validate_lod_and_idx(struct lod_device *md, int idx)
689 {
690         if (unlikely(idx >= md->lod_ost_descs.ltd_tgts_size ||
691                      !cfs_bitmap_check(md->lod_ost_bitmap, idx))) {
692                 CERROR("%s: bad idx: %d of %d\n", lod2obd(md)->obd_name, idx,
693                        md->lod_ost_descs.ltd_tgts_size);
694                 return -EINVAL;
695         }
696
697         if (unlikely(OST_TGT(md, idx) == NULL)) {
698                 CERROR("%s: bad lod_tgt_desc for idx: %d\n",
699                        lod2obd(md)->obd_name, idx);
700                 return -EINVAL;
701         }
702
703         if (unlikely(OST_TGT(md, idx)->ltd_ost == NULL)) {
704                 CERROR("%s: invalid lod device, for idx: %d\n",
705                        lod2obd(md)->obd_name , idx);
706                 return -EINVAL;
707         }
708
709         return 0;
710 }
711
712 /*
713  * allocate array of objects pointers, find/create objects
714  * stripenr and other fields should be initialized by this moment
715  */
716 int lod_initialize_objects(const struct lu_env *env, struct lod_object *lo,
717                            struct lov_ost_data_v1 *objs)
718 {
719         struct lod_thread_info  *info = lod_env_info(env);
720         struct lod_device       *md;
721         struct lu_object        *o, *n;
722         struct lu_device        *nd;
723         struct dt_object       **stripe;
724         int                      stripe_len;
725         int                      i, idx, rc = 0;
726         ENTRY;
727
728         LASSERT(lo != NULL);
729         md = lu2lod_dev(lo->ldo_obj.do_lu.lo_dev);
730         LASSERT(lo->ldo_stripe == NULL);
731         LASSERT(lo->ldo_stripenr > 0);
732         LASSERT(lo->ldo_stripe_size > 0);
733
734         stripe_len = lo->ldo_stripenr;
735         OBD_ALLOC(stripe, sizeof(stripe[0]) * stripe_len);
736         if (stripe == NULL)
737                 RETURN(-ENOMEM);
738
739         for (i = 0; i < lo->ldo_stripenr; i++) {
740                 ostid_le_to_cpu(&objs[i].l_ost_oi, &info->lti_ostid);
741                 idx = le32_to_cpu(objs[i].l_ost_idx);
742                 rc = ostid_to_fid(&info->lti_fid, &info->lti_ostid, idx);
743                 if (rc != 0)
744                         GOTO(out, rc);
745                 LASSERTF(fid_is_sane(&info->lti_fid), ""DFID" insane!\n",
746                          PFID(&info->lti_fid));
747                 lod_getref(&md->lod_ost_descs);
748
749                 rc = validate_lod_and_idx(md, idx);
750                 if (unlikely(rc != 0)) {
751                         lod_putref(md, &md->lod_ost_descs);
752                         GOTO(out, rc);
753                 }
754
755                 nd = &OST_TGT(md,idx)->ltd_ost->dd_lu_dev;
756                 lod_putref(md, &md->lod_ost_descs);
757
758                 /* In the function below, .hs_keycmp resolves to
759                  * u_obj_hop_keycmp() */
760                 /* coverity[overrun-buffer-val] */
761                 o = lu_object_find_at(env, nd, &info->lti_fid, NULL);
762                 if (IS_ERR(o))
763                         GOTO(out, rc = PTR_ERR(o));
764
765                 n = lu_object_locate(o->lo_header, nd->ld_type);
766                 LASSERT(n);
767
768                 stripe[i] = container_of(n, struct dt_object, do_lu);
769         }
770
771 out:
772         if (rc != 0) {
773                 for (i = 0; i < stripe_len; i++)
774                         if (stripe[i] != NULL)
775                                 lu_object_put(env, &stripe[i]->do_lu);
776
777                 OBD_FREE(stripe, sizeof(stripe[0]) * stripe_len);
778         } else {
779                 lo->ldo_stripe = stripe;
780                 lo->ldo_stripes_allocated = stripe_len;
781         }
782
783         RETURN(rc);
784 }
785
786 /*
787  * Parse striping information stored in lti_ea_store
788  */
789 int lod_parse_striping(const struct lu_env *env, struct lod_object *lo,
790                        const struct lu_buf *buf)
791 {
792         struct lov_mds_md_v1    *lmm;
793         struct lov_ost_data_v1  *objs;
794         __u32                    magic;
795         __u32                    pattern;
796         int                      rc = 0;
797         ENTRY;
798
799         LASSERT(buf);
800         LASSERT(buf->lb_buf);
801         LASSERT(buf->lb_len);
802
803         lmm = (struct lov_mds_md_v1 *) buf->lb_buf;
804         magic = le32_to_cpu(lmm->lmm_magic);
805         pattern = le32_to_cpu(lmm->lmm_pattern);
806
807         if (magic != LOV_MAGIC_V1 && magic != LOV_MAGIC_V3)
808                 GOTO(out, rc = -EINVAL);
809         if (lov_pattern(pattern) != LOV_PATTERN_RAID0)
810                 GOTO(out, rc = -EINVAL);
811
812         lo->ldo_pattern = pattern;
813         lo->ldo_stripe_size = le32_to_cpu(lmm->lmm_stripe_size);
814         lo->ldo_layout_gen = le16_to_cpu(lmm->lmm_layout_gen);
815         lo->ldo_stripenr = le16_to_cpu(lmm->lmm_stripe_count);
816         /* released file stripenr fixup. */
817         if (pattern & LOV_PATTERN_F_RELEASED)
818                 lo->ldo_stripenr = 0;
819
820         LASSERT(buf->lb_len >= lov_mds_md_size(lo->ldo_stripenr, magic));
821
822         if (magic == LOV_MAGIC_V3) {
823                 struct lov_mds_md_v3 *v3 = (struct lov_mds_md_v3 *) lmm;
824                 objs = &v3->lmm_objects[0];
825                 lod_object_set_pool(lo, v3->lmm_pool_name);
826         } else {
827                 objs = &lmm->lmm_objects[0];
828         }
829
830         if (lo->ldo_stripenr > 0)
831                 rc = lod_initialize_objects(env, lo, objs);
832
833 out:
834         RETURN(rc);
835 }
836
837 /*
838  * Load and parse striping information, create in-core representation for the
839  * stripes
840  */
841 int lod_load_striping(const struct lu_env *env, struct lod_object *lo)
842 {
843         struct lod_thread_info  *info = lod_env_info(env);
844         struct dt_object        *next = dt_object_child(&lo->ldo_obj);
845         int                      rc = 0;
846         ENTRY;
847
848         /*
849          * currently this code is supposed to be called from declaration
850          * phase only, thus the object is not expected to be locked by caller
851          */
852         dt_write_lock(env, next, 0);
853         /* already initialized? */
854         if (lo->ldo_stripe != NULL)
855                 GOTO(out, rc = 0);
856
857         /* Do not load stripe for slaves of striped dir */
858         if (!dt_object_exists(next) || lo->ldo_dir_slave_stripe)
859                 GOTO(out, rc = 0);
860
861         /* only regular files can be striped */
862         if (lu_object_attr(lod2lu_obj(lo)) & S_IFREG) {
863                 rc = lod_get_lov_ea(env, lo);
864                 if (rc <= 0)
865                         GOTO(out, rc);
866                 /*
867                  * there is LOV EA (striping information) in this object
868                  * let's parse it and create in-core objects for the stripes
869                  */
870                 info->lti_buf.lb_buf = info->lti_ea_store;
871                 info->lti_buf.lb_len = info->lti_ea_store_size;
872                 rc = lod_parse_striping(env, lo, &info->lti_buf);
873         } else if (lu_object_attr(lod2lu_obj(lo)) & S_IFDIR) {
874                 rc = lod_get_lmv_ea(env, lo);
875                 if (rc <= 0)
876                         GOTO(out, rc);
877                 /*
878                  * there is LOV EA (striping information) in this object
879                  * let's parse it and create in-core objects for the stripes
880                  */
881                 info->lti_buf.lb_buf = info->lti_ea_store;
882                 info->lti_buf.lb_len = info->lti_ea_store_size;
883                 rc = lod_parse_dir_striping(env, lo, &info->lti_buf);
884         }
885 out:
886         dt_write_unlock(env, next);
887         RETURN(rc);
888 }
889
890 int lod_verify_striping(struct lod_device *d, const struct lu_buf *buf,
891                         int specific)
892 {
893         struct lov_user_md_v1   *lum;
894         struct lov_user_md_v3   *lum3;
895         struct pool_desc        *pool = NULL;
896         __u32                    magic;
897         __u32                    stripe_size;
898         __u16                    stripe_count;
899         __u16                    stripe_offset;
900         size_t                   lum_size;
901         int                      rc = 0;
902         ENTRY;
903
904         lum = buf->lb_buf;
905
906         LASSERT(sizeof(*lum) < sizeof(*lum3));
907
908         if (buf->lb_len < sizeof(*lum)) {
909                 CDEBUG(D_IOCTL, "buf len %zd too small for lov_user_md\n",
910                        buf->lb_len);
911                 GOTO(out, rc = -EINVAL);
912         }
913
914         magic = le32_to_cpu(lum->lmm_magic);
915         if (magic != LOV_USER_MAGIC_V1 &&
916             magic != LOV_USER_MAGIC_V3 &&
917             magic != LOV_MAGIC_V1_DEF &&
918             magic != LOV_MAGIC_V3_DEF) {
919                 CDEBUG(D_IOCTL, "bad userland LOV MAGIC: %#x\n", magic);
920                 GOTO(out, rc = -EINVAL);
921         }
922
923         if ((specific && le32_to_cpu(lum->lmm_pattern) != LOV_PATTERN_RAID0) ||
924             (!specific && lum->lmm_pattern != 0)) {
925                 CDEBUG(D_IOCTL, "bad userland stripe pattern: %#x\n",
926                        le32_to_cpu(lum->lmm_pattern));
927                 GOTO(out, rc = -EINVAL);
928         }
929
930         /* 64kB is the largest common page size we see (ia64), and matches the
931          * check in lfs */
932         stripe_size = le32_to_cpu(lum->lmm_stripe_size);
933         if (stripe_size & (LOV_MIN_STRIPE_SIZE - 1)) {
934                 CDEBUG(D_IOCTL, "stripe size %u not a multiple of %u\n",
935                        stripe_size, LOV_MIN_STRIPE_SIZE);
936                 GOTO(out, rc = -EINVAL);
937         }
938
939         /* an offset of -1 is treated as a "special" valid offset */
940         stripe_offset = le16_to_cpu(lum->lmm_stripe_offset);
941         if (stripe_offset != (typeof(stripe_offset))-1) {
942                 /* if offset is not within valid range [0, osts_size) */
943                 if (stripe_offset >= d->lod_osts_size) {
944                         CDEBUG(D_IOCTL, "stripe offset %u >= bitmap size %u\n",
945                                stripe_offset, d->lod_osts_size);
946                         GOTO(out, rc = -EINVAL);
947                 }
948
949                 /* if lmm_stripe_offset is *not* in bitmap */
950                 if (!cfs_bitmap_check(d->lod_ost_bitmap, stripe_offset)) {
951                         CDEBUG(D_IOCTL, "stripe offset %u not in bitmap\n",
952                                stripe_offset);
953                         GOTO(out, rc = -EINVAL);
954                 }
955         }
956
957         stripe_count = le16_to_cpu(lum->lmm_stripe_count);
958         if (magic == LOV_USER_MAGIC_V1 || magic == LOV_MAGIC_V1_DEF)
959                 lum_size = offsetof(struct lov_user_md_v1,
960                                     lmm_objects[stripe_count]);
961         else if (magic == LOV_USER_MAGIC_V3 || magic == LOV_MAGIC_V3_DEF)
962                 lum_size = offsetof(struct lov_user_md_v3,
963                                     lmm_objects[stripe_count]);
964         else
965                 LBUG();
966
967         if (specific && buf->lb_len != lum_size) {
968                 CDEBUG(D_IOCTL, "invalid buf len %zd for lov_user_md with "
969                        "magic %#x and stripe_count %u\n",
970                        buf->lb_len, magic, stripe_count);
971                 GOTO(out, rc = -EINVAL);
972         }
973
974         if (!(magic == LOV_USER_MAGIC_V3 || magic == LOV_MAGIC_V3_DEF))
975                 goto out;
976
977         lum3 = buf->lb_buf;
978         if (buf->lb_len < sizeof(*lum3)) {
979                 CDEBUG(D_IOCTL, "buf len %zd too small for lov_user_md_v3\n",
980                        buf->lb_len);
981                 GOTO(out, rc = -EINVAL);
982         }
983
984         /* In the function below, .hs_keycmp resolves to
985          * pool_hashkey_keycmp() */
986         /* coverity[overrun-buffer-val] */
987         pool = lod_find_pool(d, lum3->lmm_pool_name);
988         if (pool == NULL)
989                 goto out;
990
991         if (stripe_offset != (typeof(stripe_offset))-1) {
992                 rc = lod_check_index_in_pool(stripe_offset, pool);
993                 if (rc < 0)
994                         GOTO(out, rc = -EINVAL);
995         }
996
997         if (specific && stripe_count > pool_tgt_count(pool)) {
998                 CDEBUG(D_IOCTL,
999                        "stripe count %u > # OSTs %u in the pool\n",
1000                        stripe_count, pool_tgt_count(pool));
1001                 GOTO(out, rc = -EINVAL);
1002         }
1003
1004 out:
1005         if (pool != NULL)
1006                 lod_pool_putref(pool);
1007
1008         RETURN(rc);
1009 }
1010
1011 void lod_fix_desc_stripe_size(__u64 *val)
1012 {
1013         if (*val < LOV_MIN_STRIPE_SIZE) {
1014                 if (*val != 0)
1015                         LCONSOLE_INFO("Increasing default stripe size to "
1016                                       "minimum value %u\n",
1017                                       LOV_DEFAULT_STRIPE_SIZE);
1018                 *val = LOV_DEFAULT_STRIPE_SIZE;
1019         } else if (*val & (LOV_MIN_STRIPE_SIZE - 1)) {
1020                 *val &= ~(LOV_MIN_STRIPE_SIZE - 1);
1021                 LCONSOLE_WARN("Changing default stripe size to "LPU64" (a "
1022                               "multiple of %u)\n",
1023                               *val, LOV_MIN_STRIPE_SIZE);
1024         }
1025 }
1026
1027 void lod_fix_desc_stripe_count(__u32 *val)
1028 {
1029         if (*val == 0)
1030                 *val = 1;
1031 }
1032
1033 void lod_fix_desc_pattern(__u32 *val)
1034 {
1035         /* from lov_setstripe */
1036         if ((*val != 0) && (*val != LOV_PATTERN_RAID0)) {
1037                 LCONSOLE_WARN("Unknown stripe pattern: %#x\n", *val);
1038                 *val = 0;
1039         }
1040 }
1041
1042 void lod_fix_desc_qos_maxage(__u32 *val)
1043 {
1044         /* fix qos_maxage */
1045         if (*val == 0)
1046                 *val = QOS_DEFAULT_MAXAGE;
1047 }
1048
1049 void lod_fix_desc(struct lov_desc *desc)
1050 {
1051         lod_fix_desc_stripe_size(&desc->ld_default_stripe_size);
1052         lod_fix_desc_stripe_count(&desc->ld_default_stripe_count);
1053         lod_fix_desc_pattern(&desc->ld_pattern);
1054         lod_fix_desc_qos_maxage(&desc->ld_qos_maxage);
1055 }
1056
1057 int lod_pools_init(struct lod_device *lod, struct lustre_cfg *lcfg)
1058 {
1059         struct obd_device          *obd;
1060         struct lov_desc            *desc;
1061         int                         rc;
1062         ENTRY;
1063
1064         obd = class_name2obd(lustre_cfg_string(lcfg, 0));
1065         LASSERT(obd != NULL);
1066         obd->obd_lu_dev = &lod->lod_dt_dev.dd_lu_dev;
1067
1068         if (LUSTRE_CFG_BUFLEN(lcfg, 1) < 1) {
1069                 CERROR("LOD setup requires a descriptor\n");
1070                 RETURN(-EINVAL);
1071         }
1072
1073         desc = (struct lov_desc *)lustre_cfg_buf(lcfg, 1);
1074
1075         if (sizeof(*desc) > LUSTRE_CFG_BUFLEN(lcfg, 1)) {
1076                 CERROR("descriptor size wrong: %d > %d\n",
1077                        (int)sizeof(*desc), LUSTRE_CFG_BUFLEN(lcfg, 1));
1078                 RETURN(-EINVAL);
1079         }
1080
1081         if (desc->ld_magic != LOV_DESC_MAGIC) {
1082                 if (desc->ld_magic == __swab32(LOV_DESC_MAGIC)) {
1083                         CDEBUG(D_OTHER, "%s: Swabbing lov desc %p\n",
1084                                obd->obd_name, desc);
1085                         lustre_swab_lov_desc(desc);
1086                 } else {
1087                         CERROR("%s: Bad lov desc magic: %#x\n",
1088                                obd->obd_name, desc->ld_magic);
1089                         RETURN(-EINVAL);
1090                 }
1091         }
1092
1093         lod_fix_desc(desc);
1094
1095         desc->ld_active_tgt_count = 0;
1096         lod->lod_desc = *desc;
1097
1098         lod->lod_sp_me = LUSTRE_SP_CLI;
1099
1100         /* Set up allocation policy (QoS and RR) */
1101         CFS_INIT_LIST_HEAD(&lod->lod_qos.lq_oss_list);
1102         init_rwsem(&lod->lod_qos.lq_rw_sem);
1103         lod->lod_qos.lq_dirty = 1;
1104         lod->lod_qos.lq_rr.lqr_dirty = 1;
1105         lod->lod_qos.lq_reset = 1;
1106         /* Default priority is toward free space balance */
1107         lod->lod_qos.lq_prio_free = 232;
1108         /* Default threshold for rr (roughly 17%) */
1109         lod->lod_qos.lq_threshold_rr = 43;
1110
1111         /* Set up OST pool environment */
1112         lod->lod_pools_hash_body = cfs_hash_create("POOLS", HASH_POOLS_CUR_BITS,
1113                                                    HASH_POOLS_MAX_BITS,
1114                                                    HASH_POOLS_BKT_BITS, 0,
1115                                                    CFS_HASH_MIN_THETA,
1116                                                    CFS_HASH_MAX_THETA,
1117                                                    &pool_hash_operations,
1118                                                    CFS_HASH_DEFAULT);
1119         if (lod->lod_pools_hash_body == NULL)
1120                 RETURN(-ENOMEM);
1121
1122         CFS_INIT_LIST_HEAD(&lod->lod_pool_list);
1123         lod->lod_pool_count = 0;
1124         rc = lod_ost_pool_init(&lod->lod_pool_info, 0);
1125         if (rc)
1126                 GOTO(out_hash, rc);
1127         rc = lod_ost_pool_init(&lod->lod_qos.lq_rr.lqr_pool, 0);
1128         if (rc)
1129                 GOTO(out_pool_info, rc);
1130
1131         RETURN(0);
1132
1133 out_pool_info:
1134         lod_ost_pool_free(&lod->lod_pool_info);
1135 out_hash:
1136         cfs_hash_putref(lod->lod_pools_hash_body);
1137
1138         return rc;
1139 }
1140
1141 int lod_pools_fini(struct lod_device *lod)
1142 {
1143         struct obd_device   *obd = lod2obd(lod);
1144         cfs_list_t          *pos, *tmp;
1145         struct pool_desc    *pool;
1146         ENTRY;
1147
1148         cfs_list_for_each_safe(pos, tmp, &lod->lod_pool_list) {
1149                 pool = cfs_list_entry(pos, struct pool_desc, pool_list);
1150                 /* free pool structs */
1151                 CDEBUG(D_INFO, "delete pool %p\n", pool);
1152                 /* In the function below, .hs_keycmp resolves to
1153                  * pool_hashkey_keycmp() */
1154                 /* coverity[overrun-buffer-val] */
1155                 lod_pool_del(obd, pool->pool_name);
1156         }
1157
1158         cfs_hash_putref(lod->lod_pools_hash_body);
1159         lod_ost_pool_free(&(lod->lod_qos.lq_rr.lqr_pool));
1160         lod_ost_pool_free(&lod->lod_pool_info);
1161
1162         RETURN(0);
1163 }
1164