Staging: rtl8192u: Replace printk() with netdev_dbg()
[deliverable/linux.git] / drivers / staging / lustre / lustre / lov / lov_obd.c
CommitLineData
d7e09d03
PT
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) 2002, 2010, Oracle and/or its affiliates. All rights reserved.
28 * Use is subject to license terms.
29 *
30 * Copyright (c) 2011, 2012, 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/lov/lov_obd.c
37 *
38 * Author: Phil Schwan <phil@clusterfs.com>
39 * Author: Peter Braam <braam@clusterfs.com>
40 * Author: Mike Shaver <shaver@clusterfs.com>
41 * Author: Nathan Rutman <nathan@clusterfs.com>
42 */
43
44#define DEBUG_SUBSYSTEM S_LOV
9fdaf8c0 45#include "../../include/linux/libcfs/libcfs.h"
d7e09d03 46
0cf0f7a7
GKH
47#include "../include/obd_support.h"
48#include "../include/lustre_lib.h"
49#include "../include/lustre_net.h"
50#include "../include/lustre/lustre_idl.h"
51#include "../include/lustre_dlm.h"
52#include "../include/lustre_mds.h"
53#include "../include/obd_class.h"
0cf0f7a7
GKH
54#include "../include/lprocfs_status.h"
55#include "../include/lustre_param.h"
56#include "../include/cl_object.h"
57#include "../include/lclient.h" /* for cl_client_lru */
58#include "../include/lustre/ll_fiemap.h"
59#include "../include/lustre_fid.h"
d7e09d03
PT
60
61#include "lov_internal.h"
62
63/* Keep a refcount of lov->tgt usage to prevent racing with addition/deletion.
64 Any function that expects lov_tgts to remain stationary must take a ref. */
65static void lov_getref(struct obd_device *obd)
66{
67 struct lov_obd *lov = &obd->u.lov;
68
69 /* nobody gets through here until lov_putref is done */
70 mutex_lock(&lov->lov_lock);
71 atomic_inc(&lov->lov_refcount);
72 mutex_unlock(&lov->lov_lock);
73 return;
74}
75
76static void __lov_del_obd(struct obd_device *obd, struct lov_tgt_desc *tgt);
77
78static void lov_putref(struct obd_device *obd)
79{
80 struct lov_obd *lov = &obd->u.lov;
81
82 mutex_lock(&lov->lov_lock);
83 /* ok to dec to 0 more than once -- ltd_exp's will be null */
84 if (atomic_dec_and_test(&lov->lov_refcount) && lov->lov_death_row) {
85 LIST_HEAD(kill);
86 int i;
87 struct lov_tgt_desc *tgt, *n;
88 CDEBUG(D_CONFIG, "destroying %d lov targets\n",
89 lov->lov_death_row);
90 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
91 tgt = lov->lov_tgts[i];
92
93 if (!tgt || !tgt->ltd_reap)
94 continue;
95 list_add(&tgt->ltd_kill, &kill);
96 /* XXX - right now there is a dependency on ld_tgt_count
97 * being the maximum tgt index for computing the
98 * mds_max_easize. So we can't shrink it. */
99 lov_ost_pool_remove(&lov->lov_packed, i);
100 lov->lov_tgts[i] = NULL;
101 lov->lov_death_row--;
102 }
103 mutex_unlock(&lov->lov_lock);
104
105 list_for_each_entry_safe(tgt, n, &kill, ltd_kill) {
106 list_del(&tgt->ltd_kill);
107 /* Disconnect */
108 __lov_del_obd(obd, tgt);
109 }
110 } else {
111 mutex_unlock(&lov->lov_lock);
112 }
113}
114
115static int lov_set_osc_active(struct obd_device *obd, struct obd_uuid *uuid,
116 enum obd_notify_event ev);
117static int lov_notify(struct obd_device *obd, struct obd_device *watched,
118 enum obd_notify_event ev, void *data);
119
120
121#define MAX_STRING_SIZE 128
122int lov_connect_obd(struct obd_device *obd, __u32 index, int activate,
123 struct obd_connect_data *data)
124{
125 struct lov_obd *lov = &obd->u.lov;
126 struct obd_uuid *tgt_uuid;
127 struct obd_device *tgt_obd;
128 static struct obd_uuid lov_osc_uuid = { "LOV_OSC_UUID" };
129 struct obd_import *imp;
b59fe845 130 struct proc_dir_entry *lov_proc_dir;
d7e09d03 131 int rc;
d7e09d03
PT
132
133 if (!lov->lov_tgts[index])
0a3bdb00 134 return -EINVAL;
d7e09d03
PT
135
136 tgt_uuid = &lov->lov_tgts[index]->ltd_uuid;
137 tgt_obd = lov->lov_tgts[index]->ltd_obd;
138
139 if (!tgt_obd->obd_set_up) {
140 CERROR("Target %s not set up\n", obd_uuid2str(tgt_uuid));
0a3bdb00 141 return -EINVAL;
d7e09d03
PT
142 }
143
144 /* override the sp_me from lov */
145 tgt_obd->u.cli.cl_sp_me = lov->lov_sp_me;
146
147 if (data && (data->ocd_connect_flags & OBD_CONNECT_INDEX))
148 data->ocd_index = index;
149
150 /*
151 * Divine LOV knows that OBDs under it are OSCs.
152 */
153 imp = tgt_obd->u.cli.cl_import;
154
155 if (activate) {
156 tgt_obd->obd_no_recov = 0;
157 /* FIXME this is probably supposed to be
158 ptlrpc_set_import_active. Horrible naming. */
159 ptlrpc_activate_import(imp);
160 }
161
162 rc = obd_register_observer(tgt_obd, obd);
163 if (rc) {
164 CERROR("Target %s register_observer error %d\n",
165 obd_uuid2str(tgt_uuid), rc);
0a3bdb00 166 return rc;
d7e09d03
PT
167 }
168
169
170 if (imp->imp_invalid) {
2d00bd17
JP
171 CDEBUG(D_CONFIG, "not connecting OSC %s; administratively disabled\n",
172 obd_uuid2str(tgt_uuid));
0a3bdb00 173 return 0;
d7e09d03
PT
174 }
175
176 rc = obd_connect(NULL, &lov->lov_tgts[index]->ltd_exp, tgt_obd,
177 &lov_osc_uuid, data, NULL);
178 if (rc || !lov->lov_tgts[index]->ltd_exp) {
179 CERROR("Target %s connect error %d\n",
180 obd_uuid2str(tgt_uuid), rc);
0a3bdb00 181 return -ENODEV;
d7e09d03
PT
182 }
183
184 lov->lov_tgts[index]->ltd_reap = 0;
185
186 CDEBUG(D_CONFIG, "Connected tgt idx %d %s (%s) %sactive\n", index,
187 obd_uuid2str(tgt_uuid), tgt_obd->obd_name, activate ? "":"in");
188
73bb1da6 189 lov_proc_dir = obd->obd_proc_private;
d7e09d03
PT
190 if (lov_proc_dir) {
191 struct obd_device *osc_obd = lov->lov_tgts[index]->ltd_exp->exp_obd;
b59fe845 192 struct proc_dir_entry *osc_symlink;
d7e09d03
PT
193
194 LASSERT(osc_obd != NULL);
195 LASSERT(osc_obd->obd_magic == OBD_DEVICE_MAGIC);
196 LASSERT(osc_obd->obd_type->typ_name != NULL);
197
198 osc_symlink = lprocfs_add_symlink(osc_obd->obd_name,
199 lov_proc_dir,
200 "../../../%s/%s",
201 osc_obd->obd_type->typ_name,
202 osc_obd->obd_name);
203 if (osc_symlink == NULL) {
2d00bd17
JP
204 CERROR("could not register LOV target /proc/fs/lustre/%s/%s/target_obds/%s.",
205 obd->obd_type->typ_name, obd->obd_name,
206 osc_obd->obd_name);
d7e09d03 207 lprocfs_remove(&lov_proc_dir);
73bb1da6 208 obd->obd_proc_private = NULL;
d7e09d03
PT
209 }
210 }
211
0a3bdb00 212 return 0;
d7e09d03
PT
213}
214
215static int lov_connect(const struct lu_env *env,
216 struct obd_export **exp, struct obd_device *obd,
217 struct obd_uuid *cluuid, struct obd_connect_data *data,
218 void *localdata)
219{
220 struct lov_obd *lov = &obd->u.lov;
221 struct lov_tgt_desc *tgt;
222 struct lustre_handle conn;
223 int i, rc;
d7e09d03
PT
224
225 CDEBUG(D_CONFIG, "connect #%d\n", lov->lov_connects);
226
227 rc = class_connect(&conn, obd, cluuid);
228 if (rc)
0a3bdb00 229 return rc;
d7e09d03
PT
230
231 *exp = class_conn2export(&conn);
232
233 /* Why should there ever be more than 1 connect? */
234 lov->lov_connects++;
235 LASSERT(lov->lov_connects == 1);
236
237 memset(&lov->lov_ocd, 0, sizeof(lov->lov_ocd));
238 if (data)
239 lov->lov_ocd = *data;
240
241 obd_getref(obd);
242 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
243 tgt = lov->lov_tgts[i];
244 if (!tgt || obd_uuid_empty(&tgt->ltd_uuid))
245 continue;
246 /* Flags will be lowest common denominator */
247 rc = lov_connect_obd(obd, i, tgt->ltd_activate, &lov->lov_ocd);
248 if (rc) {
249 CERROR("%s: lov connect tgt %d failed: %d\n",
250 obd->obd_name, i, rc);
251 continue;
252 }
253 /* connect to administrative disabled ost */
254 if (!lov->lov_tgts[i]->ltd_exp)
255 continue;
256
257 rc = lov_notify(obd, lov->lov_tgts[i]->ltd_exp->exp_obd,
258 OBD_NOTIFY_CONNECT, (void *)&i);
259 if (rc) {
260 CERROR("%s error sending notify %d\n",
261 obd->obd_name, rc);
262 }
263 }
264 obd_putref(obd);
265
0a3bdb00 266 return 0;
d7e09d03
PT
267}
268
269static int lov_disconnect_obd(struct obd_device *obd, struct lov_tgt_desc *tgt)
270{
b59fe845 271 struct proc_dir_entry *lov_proc_dir;
d7e09d03
PT
272 struct lov_obd *lov = &obd->u.lov;
273 struct obd_device *osc_obd;
274 int rc;
d7e09d03
PT
275
276 osc_obd = class_exp2obd(tgt->ltd_exp);
277 CDEBUG(D_CONFIG, "%s: disconnecting target %s\n",
3456a40e 278 obd->obd_name, osc_obd ? osc_obd->obd_name : "NULL");
d7e09d03
PT
279
280 if (tgt->ltd_active) {
281 tgt->ltd_active = 0;
282 lov->desc.ld_active_tgt_count--;
283 tgt->ltd_exp->exp_obd->obd_inactive = 1;
284 }
285
d7e09d03 286 if (osc_obd) {
3456a40e
RS
287 lov_proc_dir = obd->obd_proc_private;
288 if (lov_proc_dir) {
289 lprocfs_remove_proc_entry(osc_obd->obd_name, lov_proc_dir);
290 }
d7e09d03
PT
291 /* Pass it on to our clients.
292 * XXX This should be an argument to disconnect,
293 * XXX not a back-door flag on the OBD. Ah well.
294 */
295 osc_obd->obd_force = obd->obd_force;
296 osc_obd->obd_fail = obd->obd_fail;
297 osc_obd->obd_no_recov = obd->obd_no_recov;
298 }
299
300 obd_register_observer(osc_obd, NULL);
301
302 rc = obd_disconnect(tgt->ltd_exp);
303 if (rc) {
304 CERROR("Target %s disconnect error %d\n",
305 tgt->ltd_uuid.uuid, rc);
306 rc = 0;
307 }
308
309 tgt->ltd_exp = NULL;
0a3bdb00 310 return 0;
d7e09d03
PT
311}
312
313static int lov_disconnect(struct obd_export *exp)
314{
315 struct obd_device *obd = class_exp2obd(exp);
316 struct lov_obd *lov = &obd->u.lov;
317 int i, rc;
d7e09d03
PT
318
319 if (!lov->lov_tgts)
320 goto out;
321
322 /* Only disconnect the underlying layers on the final disconnect. */
323 lov->lov_connects--;
324 if (lov->lov_connects != 0) {
325 /* why should there be more than 1 connect? */
326 CERROR("disconnect #%d\n", lov->lov_connects);
327 goto out;
328 }
329
330 /* Let's hold another reference so lov_del_obd doesn't spin through
331 putref every time */
332 obd_getref(obd);
333
334 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
335 if (lov->lov_tgts[i] && lov->lov_tgts[i]->ltd_exp) {
336 /* Disconnection is the last we know about an obd */
2046a81d 337 lov_del_target(obd, i, NULL, lov->lov_tgts[i]->ltd_gen);
d7e09d03
PT
338 }
339 }
340 obd_putref(obd);
341
342out:
343 rc = class_disconnect(exp); /* bz 9811 */
0a3bdb00 344 return rc;
d7e09d03
PT
345}
346
347/* Error codes:
348 *
349 * -EINVAL : UUID can't be found in the LOV's target list
350 * -ENOTCONN: The UUID is found, but the target connection is bad (!)
351 * -EBADF : The UUID is found, but the OBD is the wrong type (!)
352 * any >= 0 : is log target index
353 */
354static int lov_set_osc_active(struct obd_device *obd, struct obd_uuid *uuid,
355 enum obd_notify_event ev)
356{
357 struct lov_obd *lov = &obd->u.lov;
358 struct lov_tgt_desc *tgt;
359 int index, activate, active;
d7e09d03
PT
360
361 CDEBUG(D_INFO, "Searching in lov %p for uuid %s event(%d)\n",
362 lov, uuid->uuid, ev);
363
364 obd_getref(obd);
365 for (index = 0; index < lov->desc.ld_tgt_count; index++) {
366 tgt = lov->lov_tgts[index];
367 if (!tgt)
368 continue;
369 /*
370 * LU-642, initially inactive OSC could miss the obd_connect,
371 * we make up for it here.
372 */
373 if (ev == OBD_NOTIFY_ACTIVATE && tgt->ltd_exp == NULL &&
374 obd_uuid_equals(uuid, &tgt->ltd_uuid)) {
375 struct obd_uuid lov_osc_uuid = {"LOV_OSC_UUID"};
376
377 obd_connect(NULL, &tgt->ltd_exp, tgt->ltd_obd,
378 &lov_osc_uuid, &lov->lov_ocd, NULL);
379 }
380 if (!tgt->ltd_exp)
381 continue;
382
55f5a824 383 CDEBUG(D_INFO, "lov idx %d is %s conn %#llx\n",
d7e09d03
PT
384 index, obd_uuid2str(&tgt->ltd_uuid),
385 tgt->ltd_exp->exp_handle.h_cookie);
386 if (obd_uuid_equals(uuid, &tgt->ltd_uuid))
387 break;
388 }
389
18751668
JL
390 if (index == lov->desc.ld_tgt_count) {
391 index = -EINVAL;
392 goto out;
393 }
d7e09d03
PT
394
395 if (ev == OBD_NOTIFY_DEACTIVATE || ev == OBD_NOTIFY_ACTIVATE) {
396 activate = (ev == OBD_NOTIFY_ACTIVATE) ? 1 : 0;
397
398 if (lov->lov_tgts[index]->ltd_activate == activate) {
399 CDEBUG(D_INFO, "OSC %s already %sactivate!\n",
400 uuid->uuid, activate ? "" : "de");
401 } else {
402 lov->lov_tgts[index]->ltd_activate = activate;
403 CDEBUG(D_CONFIG, "%sactivate OSC %s\n",
404 activate ? "" : "de", obd_uuid2str(uuid));
405 }
406
407 } else if (ev == OBD_NOTIFY_INACTIVE || ev == OBD_NOTIFY_ACTIVE) {
408 active = (ev == OBD_NOTIFY_ACTIVE) ? 1 : 0;
409
410 if (lov->lov_tgts[index]->ltd_active == active) {
411 CDEBUG(D_INFO, "OSC %s already %sactive!\n",
412 uuid->uuid, active ? "" : "in");
18751668 413 goto out;
d7e09d03
PT
414 } else {
415 CDEBUG(D_CONFIG, "Marking OSC %s %sactive\n",
416 obd_uuid2str(uuid), active ? "" : "in");
417 }
418
419 lov->lov_tgts[index]->ltd_active = active;
420 if (active) {
421 lov->desc.ld_active_tgt_count++;
422 lov->lov_tgts[index]->ltd_exp->exp_obd->obd_inactive = 0;
423 } else {
424 lov->desc.ld_active_tgt_count--;
425 lov->lov_tgts[index]->ltd_exp->exp_obd->obd_inactive = 1;
426 }
427 } else {
428 CERROR("Unknown event(%d) for uuid %s", ev, uuid->uuid);
429 }
430
431 out:
432 obd_putref(obd);
0a3bdb00 433 return index;
d7e09d03
PT
434}
435
436static int lov_notify(struct obd_device *obd, struct obd_device *watched,
437 enum obd_notify_event ev, void *data)
438{
439 int rc = 0;
440 struct lov_obd *lov = &obd->u.lov;
d7e09d03
PT
441
442 down_read(&lov->lov_notify_lock);
443 if (!lov->lov_connects) {
444 up_read(&lov->lov_notify_lock);
0a3bdb00 445 return rc;
d7e09d03
PT
446 }
447
448 if (ev == OBD_NOTIFY_ACTIVE || ev == OBD_NOTIFY_INACTIVE ||
449 ev == OBD_NOTIFY_ACTIVATE || ev == OBD_NOTIFY_DEACTIVATE) {
450 struct obd_uuid *uuid;
451
452 LASSERT(watched);
453
454 if (strcmp(watched->obd_type->typ_name, LUSTRE_OSC_NAME)) {
455 up_read(&lov->lov_notify_lock);
456 CERROR("unexpected notification of %s %s!\n",
457 watched->obd_type->typ_name,
458 watched->obd_name);
0a3bdb00 459 return -EINVAL;
d7e09d03
PT
460 }
461 uuid = &watched->u.cli.cl_target_uuid;
462
463 /* Set OSC as active before notifying the observer, so the
464 * observer can use the OSC normally.
465 */
466 rc = lov_set_osc_active(obd, uuid, ev);
467 if (rc < 0) {
468 up_read(&lov->lov_notify_lock);
469 CERROR("event(%d) of %s failed: %d\n", ev,
470 obd_uuid2str(uuid), rc);
0a3bdb00 471 return rc;
d7e09d03
PT
472 }
473 /* active event should be pass lov target index as data */
474 data = &rc;
475 }
476
477 /* Pass the notification up the chain. */
478 if (watched) {
479 rc = obd_notify_observer(obd, watched, ev, data);
480 } else {
481 /* NULL watched means all osc's in the lov (only for syncs) */
482 /* sync event should be send lov idx as data */
483 struct lov_obd *lov = &obd->u.lov;
484 int i, is_sync;
485
486 data = &i;
487 is_sync = (ev == OBD_NOTIFY_SYNC) ||
488 (ev == OBD_NOTIFY_SYNC_NONBLOCK);
489
490 obd_getref(obd);
491 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
492 if (!lov->lov_tgts[i])
493 continue;
494
495 /* don't send sync event if target not
496 * connected/activated */
497 if (is_sync && !lov->lov_tgts[i]->ltd_active)
498 continue;
499
500 rc = obd_notify_observer(obd, lov->lov_tgts[i]->ltd_obd,
501 ev, data);
502 if (rc) {
503 CERROR("%s: notify %s of %s failed %d\n",
504 obd->obd_name,
505 obd->obd_observer->obd_name,
506 lov->lov_tgts[i]->ltd_obd->obd_name,
507 rc);
508 }
509 }
510 obd_putref(obd);
511 }
512
513 up_read(&lov->lov_notify_lock);
0a3bdb00 514 return rc;
d7e09d03
PT
515}
516
517static int lov_add_target(struct obd_device *obd, struct obd_uuid *uuidp,
518 __u32 index, int gen, int active)
519{
520 struct lov_obd *lov = &obd->u.lov;
521 struct lov_tgt_desc *tgt;
522 struct obd_device *tgt_obd;
523 int rc;
d7e09d03
PT
524
525 CDEBUG(D_CONFIG, "uuid:%s idx:%d gen:%d active:%d\n",
526 uuidp->uuid, index, gen, active);
527
528 if (gen <= 0) {
529 CERROR("request to add OBD %s with invalid generation: %d\n",
530 uuidp->uuid, gen);
0a3bdb00 531 return -EINVAL;
d7e09d03
PT
532 }
533
534 tgt_obd = class_find_client_obd(uuidp, LUSTRE_OSC_NAME,
535 &obd->obd_uuid);
536 if (tgt_obd == NULL)
0a3bdb00 537 return -EINVAL;
d7e09d03
PT
538
539 mutex_lock(&lov->lov_lock);
540
541 if ((index < lov->lov_tgt_size) && (lov->lov_tgts[index] != NULL)) {
542 tgt = lov->lov_tgts[index];
543 CERROR("UUID %s already assigned at LOV target index %d\n",
544 obd_uuid2str(&tgt->ltd_uuid), index);
545 mutex_unlock(&lov->lov_lock);
0a3bdb00 546 return -EEXIST;
d7e09d03
PT
547 }
548
549 if (index >= lov->lov_tgt_size) {
550 /* We need to reallocate the lov target array. */
551 struct lov_tgt_desc **newtgts, **old = NULL;
552 __u32 newsize, oldsize = 0;
553
2c0514ee 554 newsize = max_t(__u32, lov->lov_tgt_size, 2);
d7e09d03 555 while (newsize < index + 1)
09c99f8f 556 newsize <<= 1;
d7e09d03
PT
557 OBD_ALLOC(newtgts, sizeof(*newtgts) * newsize);
558 if (newtgts == NULL) {
559 mutex_unlock(&lov->lov_lock);
0a3bdb00 560 return -ENOMEM;
d7e09d03
PT
561 }
562
563 if (lov->lov_tgt_size) {
564 memcpy(newtgts, lov->lov_tgts, sizeof(*newtgts) *
565 lov->lov_tgt_size);
566 old = lov->lov_tgts;
567 oldsize = lov->lov_tgt_size;
568 }
569
570 lov->lov_tgts = newtgts;
571 lov->lov_tgt_size = newsize;
572 smp_rmb();
573 if (old)
574 OBD_FREE(old, sizeof(*old) * oldsize);
575
576 CDEBUG(D_CONFIG, "tgts: %p size: %d\n",
577 lov->lov_tgts, lov->lov_tgt_size);
578 }
579
580 OBD_ALLOC_PTR(tgt);
581 if (!tgt) {
582 mutex_unlock(&lov->lov_lock);
0a3bdb00 583 return -ENOMEM;
d7e09d03
PT
584 }
585
586 rc = lov_ost_pool_add(&lov->lov_packed, index, lov->lov_tgt_size);
587 if (rc) {
588 mutex_unlock(&lov->lov_lock);
589 OBD_FREE_PTR(tgt);
0a3bdb00 590 return rc;
d7e09d03
PT
591 }
592
593 tgt->ltd_uuid = *uuidp;
594 tgt->ltd_obd = tgt_obd;
595 /* XXX - add a sanity check on the generation number. */
596 tgt->ltd_gen = gen;
597 tgt->ltd_index = index;
598 tgt->ltd_activate = active;
599 lov->lov_tgts[index] = tgt;
600 if (index >= lov->desc.ld_tgt_count)
601 lov->desc.ld_tgt_count = index + 1;
602
603 mutex_unlock(&lov->lov_lock);
604
605 CDEBUG(D_CONFIG, "idx=%d ltd_gen=%d ld_tgt_count=%d\n",
606 index, tgt->ltd_gen, lov->desc.ld_tgt_count);
607
608 rc = obd_notify(obd, tgt_obd, OBD_NOTIFY_CREATE, &index);
609
610 if (lov->lov_connects == 0) {
611 /* lov_connect hasn't been called yet. We'll do the
612 lov_connect_obd on this target when that fn first runs,
613 because we don't know the connect flags yet. */
0a3bdb00 614 return 0;
d7e09d03
PT
615 }
616
617 obd_getref(obd);
618
619 rc = lov_connect_obd(obd, index, active, &lov->lov_ocd);
620 if (rc)
18751668 621 goto out;
d7e09d03
PT
622
623 /* connect to administrative disabled ost */
18751668
JL
624 if (!tgt->ltd_exp) {
625 rc = 0;
626 goto out;
627 }
d7e09d03
PT
628
629 if (lov->lov_cache != NULL) {
630 rc = obd_set_info_async(NULL, tgt->ltd_exp,
631 sizeof(KEY_CACHE_SET), KEY_CACHE_SET,
632 sizeof(struct cl_client_cache), lov->lov_cache,
633 NULL);
634 if (rc < 0)
18751668 635 goto out;
d7e09d03
PT
636 }
637
638 rc = lov_notify(obd, tgt->ltd_exp->exp_obd,
639 active ? OBD_NOTIFY_CONNECT : OBD_NOTIFY_INACTIVE,
640 (void *)&index);
641
642out:
643 if (rc) {
644 CERROR("add failed (%d), deleting %s\n", rc,
645 obd_uuid2str(&tgt->ltd_uuid));
2046a81d 646 lov_del_target(obd, index, NULL, 0);
d7e09d03
PT
647 }
648 obd_putref(obd);
0a3bdb00 649 return rc;
d7e09d03
PT
650}
651
652/* Schedule a target for deletion */
653int lov_del_target(struct obd_device *obd, __u32 index,
654 struct obd_uuid *uuidp, int gen)
655{
656 struct lov_obd *lov = &obd->u.lov;
657 int count = lov->desc.ld_tgt_count;
658 int rc = 0;
d7e09d03
PT
659
660 if (index >= count) {
661 CERROR("LOV target index %d >= number of LOV OBDs %d.\n",
662 index, count);
0a3bdb00 663 return -EINVAL;
d7e09d03
PT
664 }
665
666 /* to make sure there's no ongoing lov_notify() now */
667 down_write(&lov->lov_notify_lock);
668 obd_getref(obd);
669
670 if (!lov->lov_tgts[index]) {
671 CERROR("LOV target at index %d is not setup.\n", index);
18751668
JL
672 rc = -EINVAL;
673 goto out;
d7e09d03
PT
674 }
675
676 if (uuidp && !obd_uuid_equals(uuidp, &lov->lov_tgts[index]->ltd_uuid)) {
677 CERROR("LOV target UUID %s at index %d doesn't match %s.\n",
678 lov_uuid2str(lov, index), index,
679 obd_uuid2str(uuidp));
18751668
JL
680 rc = -EINVAL;
681 goto out;
d7e09d03
PT
682 }
683
684 CDEBUG(D_CONFIG, "uuid: %s idx: %d gen: %d exp: %p active: %d\n",
685 lov_uuid2str(lov, index), index,
686 lov->lov_tgts[index]->ltd_gen, lov->lov_tgts[index]->ltd_exp,
687 lov->lov_tgts[index]->ltd_active);
688
689 lov->lov_tgts[index]->ltd_reap = 1;
690 lov->lov_death_row++;
691 /* we really delete it from obd_putref */
692out:
693 obd_putref(obd);
694 up_write(&lov->lov_notify_lock);
695
0a3bdb00 696 return rc;
d7e09d03
PT
697}
698
699static void __lov_del_obd(struct obd_device *obd, struct lov_tgt_desc *tgt)
700{
701 struct obd_device *osc_obd;
702
703 LASSERT(tgt);
704 LASSERT(tgt->ltd_reap);
705
706 osc_obd = class_exp2obd(tgt->ltd_exp);
707
708 CDEBUG(D_CONFIG, "Removing tgt %s : %s\n",
709 tgt->ltd_uuid.uuid,
710 osc_obd ? osc_obd->obd_name : "<no obd>");
711
712 if (tgt->ltd_exp)
713 lov_disconnect_obd(obd, tgt);
714
715 OBD_FREE_PTR(tgt);
716
717 /* Manual cleanup - no cleanup logs to clean up the osc's. We must
718 do it ourselves. And we can't do it from lov_cleanup,
719 because we just lost our only reference to it. */
720 if (osc_obd)
721 class_manual_cleanup(osc_obd);
722}
723
724void lov_fix_desc_stripe_size(__u64 *val)
725{
50dc198a
AD
726 if (*val < LOV_MIN_STRIPE_SIZE) {
727 if (*val != 0)
2d00bd17 728 LCONSOLE_INFO("Increasing default stripe size to minimum %u\n",
081b7265
JH
729 LOV_DESC_STRIPE_SIZE_DEFAULT);
730 *val = LOV_DESC_STRIPE_SIZE_DEFAULT;
d7e09d03
PT
731 } else if (*val & (LOV_MIN_STRIPE_SIZE - 1)) {
732 *val &= ~(LOV_MIN_STRIPE_SIZE - 1);
b0f5aad5 733 LCONSOLE_WARN("Changing default stripe size to %llu (a multiple of %u)\n",
d7e09d03
PT
734 *val, LOV_MIN_STRIPE_SIZE);
735 }
736}
737
738void lov_fix_desc_stripe_count(__u32 *val)
739{
740 if (*val == 0)
741 *val = 1;
742}
743
744void lov_fix_desc_pattern(__u32 *val)
745{
746 /* from lov_setstripe */
747 if ((*val != 0) && (*val != LOV_PATTERN_RAID0)) {
748 LCONSOLE_WARN("Unknown stripe pattern: %#x\n", *val);
749 *val = 0;
750 }
751}
752
753void lov_fix_desc_qos_maxage(__u32 *val)
754{
d7e09d03 755 if (*val == 0)
081b7265 756 *val = LOV_DESC_QOS_MAXAGE_DEFAULT;
d7e09d03
PT
757}
758
759void lov_fix_desc(struct lov_desc *desc)
760{
761 lov_fix_desc_stripe_size(&desc->ld_default_stripe_size);
762 lov_fix_desc_stripe_count(&desc->ld_default_stripe_count);
763 lov_fix_desc_pattern(&desc->ld_pattern);
764 lov_fix_desc_qos_maxage(&desc->ld_qos_maxage);
765}
766
767int lov_setup(struct obd_device *obd, struct lustre_cfg *lcfg)
768{
2046a81d 769 struct lprocfs_static_vars lvars = { NULL };
d7e09d03
PT
770 struct lov_desc *desc;
771 struct lov_obd *lov = &obd->u.lov;
772 int rc;
d7e09d03
PT
773
774 if (LUSTRE_CFG_BUFLEN(lcfg, 1) < 1) {
775 CERROR("LOV setup requires a descriptor\n");
0a3bdb00 776 return -EINVAL;
d7e09d03
PT
777 }
778
779 desc = (struct lov_desc *)lustre_cfg_buf(lcfg, 1);
780
781 if (sizeof(*desc) > LUSTRE_CFG_BUFLEN(lcfg, 1)) {
782 CERROR("descriptor size wrong: %d > %d\n",
783 (int)sizeof(*desc), LUSTRE_CFG_BUFLEN(lcfg, 1));
0a3bdb00 784 return -EINVAL;
d7e09d03
PT
785 }
786
787 if (desc->ld_magic != LOV_DESC_MAGIC) {
788 if (desc->ld_magic == __swab32(LOV_DESC_MAGIC)) {
789 CDEBUG(D_OTHER, "%s: Swabbing lov desc %p\n",
790 obd->obd_name, desc);
791 lustre_swab_lov_desc(desc);
792 } else {
793 CERROR("%s: Bad lov desc magic: %#x\n",
794 obd->obd_name, desc->ld_magic);
0a3bdb00 795 return -EINVAL;
d7e09d03
PT
796 }
797 }
798
799 lov_fix_desc(desc);
800
801 desc->ld_active_tgt_count = 0;
802 lov->desc = *desc;
803 lov->lov_tgt_size = 0;
804
805 mutex_init(&lov->lov_lock);
806 atomic_set(&lov->lov_refcount, 0);
807 lov->lov_sp_me = LUSTRE_SP_CLI;
808
809 init_rwsem(&lov->lov_notify_lock);
810
811 lov->lov_pools_hash_body = cfs_hash_create("POOLS", HASH_POOLS_CUR_BITS,
812 HASH_POOLS_MAX_BITS,
813 HASH_POOLS_BKT_BITS, 0,
814 CFS_HASH_MIN_THETA,
815 CFS_HASH_MAX_THETA,
816 &pool_hash_operations,
817 CFS_HASH_DEFAULT);
818 INIT_LIST_HEAD(&lov->lov_pool_list);
819 lov->lov_pool_count = 0;
820 rc = lov_ost_pool_init(&lov->lov_packed, 0);
821 if (rc)
18751668 822 goto out;
d7e09d03
PT
823
824 lprocfs_lov_init_vars(&lvars);
825 lprocfs_obd_setup(obd, lvars.obd_vars);
f267cdb4 826#if defined (CONFIG_PROC_FS)
d7e09d03 827 {
5907838a 828 int rc1;
d7e09d03 829
5907838a 830 rc1 = lprocfs_seq_create(obd->obd_proc_entry, "target_obd",
d7e09d03 831 0444, &lov_proc_target_fops, obd);
5907838a 832 if (rc1)
d7e09d03
PT
833 CWARN("Error adding the target_obd file\n");
834 }
835#endif
836 lov->lov_pool_proc_entry = lprocfs_register("pools",
837 obd->obd_proc_entry,
838 NULL, NULL);
839
0a3bdb00 840 return 0;
d7e09d03
PT
841
842out:
843 return rc;
844}
845
846static int lov_precleanup(struct obd_device *obd, enum obd_cleanup_stage stage)
847{
d7e09d03
PT
848 struct lov_obd *lov = &obd->u.lov;
849
d7e09d03
PT
850 switch (stage) {
851 case OBD_CLEANUP_EARLY: {
852 int i;
853 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
854 if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_active)
855 continue;
856 obd_precleanup(class_exp2obd(lov->lov_tgts[i]->ltd_exp),
857 OBD_CLEANUP_EARLY);
858 }
859 break;
860 }
a5d490c2 861 default:
d7e09d03
PT
862 break;
863 }
a5d490c2 864
e588f1bf 865 return 0;
d7e09d03
PT
866}
867
868static int lov_cleanup(struct obd_device *obd)
869{
870 struct lov_obd *lov = &obd->u.lov;
871 struct list_head *pos, *tmp;
872 struct pool_desc *pool;
d7e09d03
PT
873
874 list_for_each_safe(pos, tmp, &lov->lov_pool_list) {
875 pool = list_entry(pos, struct pool_desc, pool_list);
876 /* free pool structs */
877 CDEBUG(D_INFO, "delete pool %p\n", pool);
878 /* In the function below, .hs_keycmp resolves to
879 * pool_hashkey_keycmp() */
880 /* coverity[overrun-buffer-val] */
881 lov_pool_del(obd, pool->pool_name);
882 }
883 cfs_hash_putref(lov->lov_pools_hash_body);
884 lov_ost_pool_free(&lov->lov_packed);
885
886 lprocfs_obd_cleanup(obd);
887 if (lov->lov_tgts) {
888 int i;
889 obd_getref(obd);
890 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
891 if (!lov->lov_tgts[i])
892 continue;
893
894 /* Inactive targets may never have connected */
895 if (lov->lov_tgts[i]->ltd_active ||
896 atomic_read(&lov->lov_refcount))
897 /* We should never get here - these
898 should have been removed in the
899 disconnect. */
2d00bd17 900 CERROR("lov tgt %d not cleaned! deathrow=%d, lovrc=%d\n",
d7e09d03
PT
901 i, lov->lov_death_row,
902 atomic_read(&lov->lov_refcount));
e6be8e63 903 lov_del_target(obd, i, NULL, 0);
d7e09d03
PT
904 }
905 obd_putref(obd);
906 OBD_FREE(lov->lov_tgts, sizeof(*lov->lov_tgts) *
907 lov->lov_tgt_size);
908 lov->lov_tgt_size = 0;
909 }
0a3bdb00 910 return 0;
d7e09d03
PT
911}
912
913int lov_process_config_base(struct obd_device *obd, struct lustre_cfg *lcfg,
914 __u32 *indexp, int *genp)
915{
916 struct obd_uuid obd_uuid;
917 int cmd;
918 int rc = 0;
d7e09d03 919
5f3a68f9 920 switch (cmd = lcfg->lcfg_command) {
d7e09d03
PT
921 case LCFG_LOV_ADD_OBD:
922 case LCFG_LOV_ADD_INA:
923 case LCFG_LOV_DEL_OBD: {
924 __u32 index;
925 int gen;
926 /* lov_modify_tgts add 0:lov_mdsA 1:ost1_UUID 2:0 3:1 */
18751668
JL
927 if (LUSTRE_CFG_BUFLEN(lcfg, 1) > sizeof(obd_uuid.uuid)) {
928 rc = -EINVAL;
929 goto out;
930 }
d7e09d03
PT
931
932 obd_str2uuid(&obd_uuid, lustre_cfg_buf(lcfg, 1));
933
18751668
JL
934 if (sscanf(lustre_cfg_buf(lcfg, 2), "%d", indexp) != 1) {
935 rc = -EINVAL;
936 goto out;
937 }
938 if (sscanf(lustre_cfg_buf(lcfg, 3), "%d", genp) != 1) {
939 rc = -EINVAL;
940 goto out;
941 }
d7e09d03
PT
942 index = *indexp;
943 gen = *genp;
944 if (cmd == LCFG_LOV_ADD_OBD)
945 rc = lov_add_target(obd, &obd_uuid, index, gen, 1);
946 else if (cmd == LCFG_LOV_ADD_INA)
947 rc = lov_add_target(obd, &obd_uuid, index, gen, 0);
948 else
949 rc = lov_del_target(obd, index, &obd_uuid, gen);
18751668 950 goto out;
d7e09d03
PT
951 }
952 case LCFG_PARAM: {
e6be8e63 953 struct lprocfs_static_vars lvars = { NULL };
d7e09d03
PT
954 struct lov_desc *desc = &(obd->u.lov.desc);
955
18751668
JL
956 if (!desc) {
957 rc = -EINVAL;
958 goto out;
959 }
d7e09d03
PT
960
961 lprocfs_lov_init_vars(&lvars);
962
963 rc = class_process_proc_param(PARAM_LOV, lvars.obd_vars,
964 lcfg, obd);
965 if (rc > 0)
966 rc = 0;
18751668 967 goto out;
d7e09d03
PT
968 }
969 case LCFG_POOL_NEW:
970 case LCFG_POOL_ADD:
971 case LCFG_POOL_DEL:
972 case LCFG_POOL_REM:
18751668 973 goto out;
d7e09d03
PT
974
975 default: {
976 CERROR("Unknown command: %d\n", lcfg->lcfg_command);
18751668
JL
977 rc = -EINVAL;
978 goto out;
d7e09d03
PT
979
980 }
981 }
982out:
0a3bdb00 983 return rc;
d7e09d03
PT
984}
985
986static int lov_recreate(struct obd_export *exp, struct obdo *src_oa,
987 struct lov_stripe_md **ea, struct obd_trans_info *oti)
988{
989 struct lov_stripe_md *obj_mdp, *lsm;
990 struct lov_obd *lov = &exp->exp_obd->u.lov;
991 unsigned ost_idx;
992 int rc, i;
d7e09d03
PT
993
994 LASSERT(src_oa->o_valid & OBD_MD_FLFLAGS &&
995 src_oa->o_flags & OBD_FL_RECREATE_OBJS);
996
997 OBD_ALLOC(obj_mdp, sizeof(*obj_mdp));
998 if (obj_mdp == NULL)
0a3bdb00 999 return -ENOMEM;
d7e09d03
PT
1000
1001 ost_idx = src_oa->o_nlink;
1002 lsm = *ea;
18751668
JL
1003 if (lsm == NULL) {
1004 rc = -EINVAL;
1005 goto out;
1006 }
d7e09d03 1007 if (ost_idx >= lov->desc.ld_tgt_count ||
18751668
JL
1008 !lov->lov_tgts[ost_idx]) {
1009 rc = -EINVAL;
1010 goto out;
1011 }
d7e09d03
PT
1012
1013 for (i = 0; i < lsm->lsm_stripe_count; i++) {
1014 if (lsm->lsm_oinfo[i]->loi_ost_idx == ost_idx) {
1015 if (ostid_id(&lsm->lsm_oinfo[i]->loi_oi) !=
18751668
JL
1016 ostid_id(&src_oa->o_oi)) {
1017 rc = -EINVAL;
1018 goto out;
1019 }
d7e09d03
PT
1020 break;
1021 }
1022 }
18751668
JL
1023 if (i == lsm->lsm_stripe_count) {
1024 rc = -EINVAL;
1025 goto out;
1026 }
d7e09d03
PT
1027
1028 rc = obd_create(NULL, lov->lov_tgts[ost_idx]->ltd_exp,
1029 src_oa, &obj_mdp, oti);
1030out:
1031 OBD_FREE(obj_mdp, sizeof(*obj_mdp));
0a3bdb00 1032 return rc;
d7e09d03
PT
1033}
1034
1035/* the LOV expects oa->o_id to be set to the LOV object id */
1036static int lov_create(const struct lu_env *env, struct obd_export *exp,
1037 struct obdo *src_oa, struct lov_stripe_md **ea,
1038 struct obd_trans_info *oti)
1039{
1040 struct lov_obd *lov;
1041 int rc = 0;
d7e09d03
PT
1042
1043 LASSERT(ea != NULL);
1044 if (exp == NULL)
0a3bdb00 1045 return -EINVAL;
d7e09d03
PT
1046
1047 if ((src_oa->o_valid & OBD_MD_FLFLAGS) &&
1048 src_oa->o_flags == OBD_FL_DELORPHAN) {
1049 /* should be used with LOV anymore */
1050 LBUG();
1051 }
1052
1053 lov = &exp->exp_obd->u.lov;
1054 if (!lov->desc.ld_active_tgt_count)
0a3bdb00 1055 return -EIO;
d7e09d03
PT
1056
1057 obd_getref(exp->exp_obd);
1058 /* Recreate a specific object id at the given OST index */
1059 if ((src_oa->o_valid & OBD_MD_FLFLAGS) &&
1060 (src_oa->o_flags & OBD_FL_RECREATE_OBJS)) {
1061 rc = lov_recreate(exp, src_oa, ea, oti);
1062 }
1063
1064 obd_putref(exp->exp_obd);
0a3bdb00 1065 return rc;
d7e09d03
PT
1066}
1067
1068#define ASSERT_LSM_MAGIC(lsmp) \
1069do { \
1070 LASSERT((lsmp) != NULL); \
1071 LASSERTF(((lsmp)->lsm_magic == LOV_MAGIC_V1 || \
1072 (lsmp)->lsm_magic == LOV_MAGIC_V3), \
1073 "%p->lsm_magic=%x\n", (lsmp), (lsmp)->lsm_magic); \
1074} while (0)
1075
1076static int lov_destroy(const struct lu_env *env, struct obd_export *exp,
1077 struct obdo *oa, struct lov_stripe_md *lsm,
1078 struct obd_trans_info *oti, struct obd_export *md_exp,
1079 void *capa)
1080{
1081 struct lov_request_set *set;
1082 struct obd_info oinfo;
1083 struct lov_request *req;
1084 struct list_head *pos;
1085 struct lov_obd *lov;
1086 int rc = 0, err = 0;
d7e09d03
PT
1087
1088 ASSERT_LSM_MAGIC(lsm);
1089
1090 if (!exp || !exp->exp_obd)
0a3bdb00 1091 return -ENODEV;
d7e09d03
PT
1092
1093 if (oa->o_valid & OBD_MD_FLCOOKIE) {
1094 LASSERT(oti);
1095 LASSERT(oti->oti_logcookies);
1096 }
1097
1098 lov = &exp->exp_obd->u.lov;
1099 obd_getref(exp->exp_obd);
1100 rc = lov_prep_destroy_set(exp, &oinfo, oa, lsm, oti, &set);
1101 if (rc)
18751668 1102 goto out;
d7e09d03 1103
66e7a94a 1104 list_for_each(pos, &set->set_list) {
d7e09d03
PT
1105 req = list_entry(pos, struct lov_request, rq_link);
1106
1107 if (oa->o_valid & OBD_MD_FLCOOKIE)
1108 oti->oti_logcookies = set->set_cookies + req->rq_stripe;
1109
1110 err = obd_destroy(env, lov->lov_tgts[req->rq_idx]->ltd_exp,
1111 req->rq_oi.oi_oa, NULL, oti, NULL, capa);
1112 err = lov_update_common_set(set, req, err);
1113 if (err) {
1114 CERROR("%s: destroying objid "DOSTID" subobj "
1115 DOSTID" on OST idx %d: rc = %d\n",
1116 exp->exp_obd->obd_name, POSTID(&oa->o_oi),
1117 POSTID(&req->rq_oi.oi_oa->o_oi),
1118 req->rq_idx, err);
1119 if (!rc)
1120 rc = err;
1121 }
1122 }
1123
1124 if (rc == 0) {
1125 LASSERT(lsm_op_find(lsm->lsm_magic) != NULL);
1126 rc = lsm_op_find(lsm->lsm_magic)->lsm_destroy(lsm, oa, md_exp);
1127 }
1128 err = lov_fini_destroy_set(set);
1129out:
1130 obd_putref(exp->exp_obd);
0a3bdb00 1131 return rc ? rc : err;
d7e09d03
PT
1132}
1133
d7e09d03
PT
1134static int lov_getattr_interpret(struct ptlrpc_request_set *rqset,
1135 void *data, int rc)
1136{
1137 struct lov_request_set *lovset = (struct lov_request_set *)data;
1138 int err;
d7e09d03 1139
1208bcd8 1140 /* don't do attribute merge if this async op failed */
d7e09d03
PT
1141 if (rc)
1142 atomic_set(&lovset->set_completes, 0);
1143 err = lov_fini_getattr_set(lovset);
0a3bdb00 1144 return rc ? rc : err;
d7e09d03
PT
1145}
1146
1147static int lov_getattr_async(struct obd_export *exp, struct obd_info *oinfo,
1148 struct ptlrpc_request_set *rqset)
1149{
1150 struct lov_request_set *lovset;
1151 struct lov_obd *lov;
1152 struct list_head *pos;
1153 struct lov_request *req;
1154 int rc = 0, err;
d7e09d03
PT
1155
1156 LASSERT(oinfo);
1157 ASSERT_LSM_MAGIC(oinfo->oi_md);
1158
1159 if (!exp || !exp->exp_obd)
0a3bdb00 1160 return -ENODEV;
d7e09d03
PT
1161
1162 lov = &exp->exp_obd->u.lov;
1163
1164 rc = lov_prep_getattr_set(exp, oinfo, &lovset);
1165 if (rc)
0a3bdb00 1166 return rc;
d7e09d03
PT
1167
1168 CDEBUG(D_INFO, "objid "DOSTID": %ux%u byte stripes\n",
1169 POSTID(&oinfo->oi_md->lsm_oi), oinfo->oi_md->lsm_stripe_count,
1170 oinfo->oi_md->lsm_stripe_size);
1171
1172 list_for_each(pos, &lovset->set_list) {
1173 req = list_entry(pos, struct lov_request, rq_link);
1174
2d00bd17
JP
1175 CDEBUG(D_INFO, "objid " DOSTID "[%d] has subobj " DOSTID " at idx%u\n",
1176 POSTID(&oinfo->oi_oa->o_oi), req->rq_stripe,
d7e09d03
PT
1177 POSTID(&req->rq_oi.oi_oa->o_oi), req->rq_idx);
1178 rc = obd_getattr_async(lov->lov_tgts[req->rq_idx]->ltd_exp,
1179 &req->rq_oi, rqset);
1180 if (rc) {
1181 CERROR("%s: getattr objid "DOSTID" subobj"
1182 DOSTID" on OST idx %d: rc = %d\n",
1183 exp->exp_obd->obd_name,
1184 POSTID(&oinfo->oi_oa->o_oi),
1185 POSTID(&req->rq_oi.oi_oa->o_oi),
1186 req->rq_idx, rc);
18751668 1187 goto out;
d7e09d03
PT
1188 }
1189 }
1190
1191 if (!list_empty(&rqset->set_requests)) {
1192 LASSERT(rc == 0);
66e7a94a 1193 LASSERT(rqset->set_interpret == NULL);
d7e09d03
PT
1194 rqset->set_interpret = lov_getattr_interpret;
1195 rqset->set_arg = (void *)lovset;
0a3bdb00 1196 return rc;
d7e09d03
PT
1197 }
1198out:
1199 if (rc)
1200 atomic_set(&lovset->set_completes, 0);
1201 err = lov_fini_getattr_set(lovset);
0a3bdb00 1202 return rc ? rc : err;
d7e09d03
PT
1203}
1204
d7e09d03
PT
1205static int lov_setattr_interpret(struct ptlrpc_request_set *rqset,
1206 void *data, int rc)
1207{
1208 struct lov_request_set *lovset = (struct lov_request_set *)data;
1209 int err;
d7e09d03
PT
1210
1211 if (rc)
1212 atomic_set(&lovset->set_completes, 0);
1213 err = lov_fini_setattr_set(lovset);
0a3bdb00 1214 return rc ? rc : err;
d7e09d03
PT
1215}
1216
1217/* If @oti is given, the request goes from MDS and responses from OSTs are not
1218 needed. Otherwise, a client is waiting for responses. */
1219static int lov_setattr_async(struct obd_export *exp, struct obd_info *oinfo,
1220 struct obd_trans_info *oti,
1221 struct ptlrpc_request_set *rqset)
1222{
1223 struct lov_request_set *set;
1224 struct lov_request *req;
1225 struct list_head *pos;
1226 struct lov_obd *lov;
1227 int rc = 0;
d7e09d03
PT
1228
1229 LASSERT(oinfo);
1230 ASSERT_LSM_MAGIC(oinfo->oi_md);
1231 if (oinfo->oi_oa->o_valid & OBD_MD_FLCOOKIE) {
1232 LASSERT(oti);
1233 LASSERT(oti->oti_logcookies);
1234 }
1235
1236 if (!exp || !exp->exp_obd)
0a3bdb00 1237 return -ENODEV;
d7e09d03
PT
1238
1239 lov = &exp->exp_obd->u.lov;
1240 rc = lov_prep_setattr_set(exp, oinfo, oti, &set);
1241 if (rc)
0a3bdb00 1242 return rc;
d7e09d03
PT
1243
1244 CDEBUG(D_INFO, "objid "DOSTID": %ux%u byte stripes\n",
1245 POSTID(&oinfo->oi_md->lsm_oi),
1246 oinfo->oi_md->lsm_stripe_count,
1247 oinfo->oi_md->lsm_stripe_size);
1248
1249 list_for_each(pos, &set->set_list) {
1250 req = list_entry(pos, struct lov_request, rq_link);
1251
1252 if (oinfo->oi_oa->o_valid & OBD_MD_FLCOOKIE)
1253 oti->oti_logcookies = set->set_cookies + req->rq_stripe;
1254
2d00bd17
JP
1255 CDEBUG(D_INFO, "objid " DOSTID "[%d] has subobj " DOSTID " at idx%u\n",
1256 POSTID(&oinfo->oi_oa->o_oi), req->rq_stripe,
d7e09d03
PT
1257 POSTID(&req->rq_oi.oi_oa->o_oi), req->rq_idx);
1258
1259 rc = obd_setattr_async(lov->lov_tgts[req->rq_idx]->ltd_exp,
1260 &req->rq_oi, oti, rqset);
1261 if (rc) {
1262 CERROR("error: setattr objid "DOSTID" subobj"
1263 DOSTID" on OST idx %d: rc = %d\n",
1264 POSTID(&set->set_oi->oi_oa->o_oi),
1265 POSTID(&req->rq_oi.oi_oa->o_oi),
1266 req->rq_idx, rc);
1267 break;
1268 }
1269 }
1270
1271 /* If we are not waiting for responses on async requests, return. */
1272 if (rc || !rqset || list_empty(&rqset->set_requests)) {
1273 int err;
1274 if (rc)
1275 atomic_set(&set->set_completes, 0);
1276 err = lov_fini_setattr_set(set);
0a3bdb00 1277 return rc ? rc : err;
d7e09d03
PT
1278 }
1279
1280 LASSERT(rqset->set_interpret == NULL);
1281 rqset->set_interpret = lov_setattr_interpret;
1282 rqset->set_arg = (void *)set;
1283
0a3bdb00 1284 return 0;
d7e09d03
PT
1285}
1286
d7e09d03
PT
1287/* find any ldlm lock of the inode in lov
1288 * return 0 not find
1289 * 1 find one
1290 * < 0 error */
1291static int lov_find_cbdata(struct obd_export *exp,
1292 struct lov_stripe_md *lsm, ldlm_iterator_t it,
1293 void *data)
1294{
1295 struct lov_obd *lov;
1296 int rc = 0, i;
d7e09d03
PT
1297
1298 ASSERT_LSM_MAGIC(lsm);
1299
1300 if (!exp || !exp->exp_obd)
0a3bdb00 1301 return -ENODEV;
d7e09d03
PT
1302
1303 lov = &exp->exp_obd->u.lov;
1304 for (i = 0; i < lsm->lsm_stripe_count; i++) {
1305 struct lov_stripe_md submd;
1306 struct lov_oinfo *loi = lsm->lsm_oinfo[i];
1307
1308 if (!lov->lov_tgts[loi->loi_ost_idx]) {
1309 CDEBUG(D_HA, "lov idx %d NULL \n", loi->loi_ost_idx);
1310 continue;
1311 }
1312 submd.lsm_oi = loi->loi_oi;
1313 submd.lsm_stripe_count = 0;
1314 rc = obd_find_cbdata(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp,
1315 &submd, it, data);
1316 if (rc != 0)
0a3bdb00 1317 return rc;
d7e09d03 1318 }
0a3bdb00 1319 return rc;
d7e09d03
PT
1320}
1321
d7e09d03
PT
1322int lov_statfs_interpret(struct ptlrpc_request_set *rqset, void *data, int rc)
1323{
1324 struct lov_request_set *lovset = (struct lov_request_set *)data;
1325 int err;
d7e09d03
PT
1326
1327 if (rc)
1328 atomic_set(&lovset->set_completes, 0);
1329
1330 err = lov_fini_statfs_set(lovset);
0a3bdb00 1331 return rc ? rc : err;
d7e09d03
PT
1332}
1333
1334static int lov_statfs_async(struct obd_export *exp, struct obd_info *oinfo,
1335 __u64 max_age, struct ptlrpc_request_set *rqset)
1336{
1337 struct obd_device *obd = class_exp2obd(exp);
1338 struct lov_request_set *set;
1339 struct lov_request *req;
1340 struct list_head *pos;
1341 struct lov_obd *lov;
1342 int rc = 0;
d7e09d03
PT
1343
1344 LASSERT(oinfo != NULL);
1345 LASSERT(oinfo->oi_osfs != NULL);
1346
1347 lov = &obd->u.lov;
1348 rc = lov_prep_statfs_set(obd, oinfo, &set);
1349 if (rc)
0a3bdb00 1350 return rc;
d7e09d03 1351
66e7a94a 1352 list_for_each(pos, &set->set_list) {
d7e09d03
PT
1353 req = list_entry(pos, struct lov_request, rq_link);
1354 rc = obd_statfs_async(lov->lov_tgts[req->rq_idx]->ltd_exp,
1355 &req->rq_oi, max_age, rqset);
1356 if (rc)
1357 break;
1358 }
1359
1360 if (rc || list_empty(&rqset->set_requests)) {
1361 int err;
1362 if (rc)
1363 atomic_set(&set->set_completes, 0);
1364 err = lov_fini_statfs_set(set);
0a3bdb00 1365 return rc ? rc : err;
d7e09d03
PT
1366 }
1367
1368 LASSERT(rqset->set_interpret == NULL);
1369 rqset->set_interpret = lov_statfs_interpret;
1370 rqset->set_arg = (void *)set;
0a3bdb00 1371 return 0;
d7e09d03
PT
1372}
1373
1374static int lov_statfs(const struct lu_env *env, struct obd_export *exp,
1375 struct obd_statfs *osfs, __u64 max_age, __u32 flags)
1376{
1377 struct ptlrpc_request_set *set = NULL;
1378 struct obd_info oinfo = { { { 0 } } };
1379 int rc = 0;
d7e09d03
PT
1380
1381 /* for obdclass we forbid using obd_statfs_rqset, but prefer using async
1382 * statfs requests */
1383 set = ptlrpc_prep_set();
1384 if (set == NULL)
0a3bdb00 1385 return -ENOMEM;
d7e09d03
PT
1386
1387 oinfo.oi_osfs = osfs;
1388 oinfo.oi_flags = flags;
1389 rc = lov_statfs_async(exp, &oinfo, max_age, set);
1390 if (rc == 0)
1391 rc = ptlrpc_set_wait(set);
1392 ptlrpc_set_destroy(set);
1393
0a3bdb00 1394 return rc;
d7e09d03
PT
1395}
1396
1397static int lov_iocontrol(unsigned int cmd, struct obd_export *exp, int len,
1398 void *karg, void *uarg)
1399{
1400 struct obd_device *obddev = class_exp2obd(exp);
1401 struct lov_obd *lov = &obddev->u.lov;
1402 int i = 0, rc = 0, count = lov->desc.ld_tgt_count;
1403 struct obd_uuid *uuidp;
d7e09d03
PT
1404
1405 switch (cmd) {
1406 case IOC_OBD_STATFS: {
1407 struct obd_ioctl_data *data = karg;
1408 struct obd_device *osc_obd;
1409 struct obd_statfs stat_buf = {0};
1410 __u32 index;
1411 __u32 flags;
1412
1413 memcpy(&index, data->ioc_inlbuf2, sizeof(__u32));
1414 if ((index >= count))
0a3bdb00 1415 return -ENODEV;
d7e09d03
PT
1416
1417 if (!lov->lov_tgts[index])
1418 /* Try again with the next index */
0a3bdb00 1419 return -EAGAIN;
d7e09d03 1420 if (!lov->lov_tgts[index]->ltd_active)
0a3bdb00 1421 return -ENODATA;
d7e09d03
PT
1422
1423 osc_obd = class_exp2obd(lov->lov_tgts[index]->ltd_exp);
1424 if (!osc_obd)
0a3bdb00 1425 return -EINVAL;
d7e09d03
PT
1426
1427 /* copy UUID */
1428 if (copy_to_user(data->ioc_pbuf2, obd2cli_tgt(osc_obd),
1429 min((int) data->ioc_plen2,
1430 (int) sizeof(struct obd_uuid))))
0a3bdb00 1431 return -EFAULT;
d7e09d03 1432
bcc3b704 1433 flags = uarg ? *(__u32 *)uarg : 0;
d7e09d03
PT
1434 /* got statfs data */
1435 rc = obd_statfs(NULL, lov->lov_tgts[index]->ltd_exp, &stat_buf,
1436 cfs_time_shift_64(-OBD_STATFS_CACHE_SECONDS),
1437 flags);
1438 if (rc)
0a3bdb00 1439 return rc;
d7e09d03
PT
1440 if (copy_to_user(data->ioc_pbuf1, &stat_buf,
1441 min((int) data->ioc_plen1,
1442 (int) sizeof(stat_buf))))
0a3bdb00 1443 return -EFAULT;
d7e09d03
PT
1444 break;
1445 }
1446 case OBD_IOC_LOV_GET_CONFIG: {
1447 struct obd_ioctl_data *data;
1448 struct lov_desc *desc;
1449 char *buf = NULL;
1450 __u32 *genp;
1451
1452 len = 0;
1453 if (obd_ioctl_getdata(&buf, &len, (void *)uarg))
0a3bdb00 1454 return -EINVAL;
d7e09d03
PT
1455
1456 data = (struct obd_ioctl_data *)buf;
1457
1458 if (sizeof(*desc) > data->ioc_inllen1) {
1459 obd_ioctl_freedata(buf, len);
0a3bdb00 1460 return -EINVAL;
d7e09d03
PT
1461 }
1462
1463 if (sizeof(uuidp->uuid) * count > data->ioc_inllen2) {
1464 obd_ioctl_freedata(buf, len);
0a3bdb00 1465 return -EINVAL;
d7e09d03
PT
1466 }
1467
1468 if (sizeof(__u32) * count > data->ioc_inllen3) {
1469 obd_ioctl_freedata(buf, len);
0a3bdb00 1470 return -EINVAL;
d7e09d03
PT
1471 }
1472
1473 desc = (struct lov_desc *)data->ioc_inlbuf1;
1474 memcpy(desc, &(lov->desc), sizeof(*desc));
1475
1476 uuidp = (struct obd_uuid *)data->ioc_inlbuf2;
1477 genp = (__u32 *)data->ioc_inlbuf3;
1478 /* the uuid will be empty for deleted OSTs */
1479 for (i = 0; i < count; i++, uuidp++, genp++) {
1480 if (!lov->lov_tgts[i])
1481 continue;
1482 *uuidp = lov->lov_tgts[i]->ltd_uuid;
1483 *genp = lov->lov_tgts[i]->ltd_gen;
1484 }
1485
1486 if (copy_to_user((void *)uarg, buf, len))
1487 rc = -EFAULT;
1488 obd_ioctl_freedata(buf, len);
1489 break;
1490 }
d7e09d03
PT
1491 case LL_IOC_LOV_GETSTRIPE:
1492 rc = lov_getstripe(exp, karg, uarg);
1493 break;
d7e09d03
PT
1494 case OBD_IOC_QUOTACTL: {
1495 struct if_quotactl *qctl = karg;
1496 struct lov_tgt_desc *tgt = NULL;
1497 struct obd_quotactl *oqctl;
1498
1499 if (qctl->qc_valid == QC_OSTIDX) {
1500 if (qctl->qc_idx < 0 || count <= qctl->qc_idx)
0a3bdb00 1501 return -EINVAL;
d7e09d03
PT
1502
1503 tgt = lov->lov_tgts[qctl->qc_idx];
1504 if (!tgt || !tgt->ltd_exp)
0a3bdb00 1505 return -EINVAL;
d7e09d03
PT
1506 } else if (qctl->qc_valid == QC_UUID) {
1507 for (i = 0; i < count; i++) {
1508 tgt = lov->lov_tgts[i];
1509 if (!tgt ||
1510 !obd_uuid_equals(&tgt->ltd_uuid,
1511 &qctl->obd_uuid))
1512 continue;
1513
1514 if (tgt->ltd_exp == NULL)
0a3bdb00 1515 return -EINVAL;
d7e09d03
PT
1516
1517 break;
1518 }
1519 } else {
0a3bdb00 1520 return -EINVAL;
d7e09d03
PT
1521 }
1522
1523 if (i >= count)
0a3bdb00 1524 return -EAGAIN;
d7e09d03
PT
1525
1526 LASSERT(tgt && tgt->ltd_exp);
1527 OBD_ALLOC_PTR(oqctl);
1528 if (!oqctl)
0a3bdb00 1529 return -ENOMEM;
d7e09d03
PT
1530
1531 QCTL_COPY(oqctl, qctl);
1532 rc = obd_quotactl(tgt->ltd_exp, oqctl);
1533 if (rc == 0) {
1534 QCTL_COPY(qctl, oqctl);
1535 qctl->qc_valid = QC_OSTIDX;
1536 qctl->obd_uuid = tgt->ltd_uuid;
1537 }
1538 OBD_FREE_PTR(oqctl);
1539 break;
1540 }
1541 default: {
1542 int set = 0;
1543
1544 if (count == 0)
0a3bdb00 1545 return -ENOTTY;
d7e09d03
PT
1546
1547 for (i = 0; i < count; i++) {
1548 int err;
1549 struct obd_device *osc_obd;
1550
1551 /* OST was disconnected */
1552 if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_exp)
1553 continue;
1554
1555 /* ll_umount_begin() sets force flag but for lov, not
1556 * osc. Let's pass it through */
1557 osc_obd = class_exp2obd(lov->lov_tgts[i]->ltd_exp);
1558 osc_obd->obd_force = obddev->obd_force;
1559 err = obd_iocontrol(cmd, lov->lov_tgts[i]->ltd_exp,
1560 len, karg, uarg);
1561 if (err == -ENODATA && cmd == OBD_IOC_POLL_QUOTACHECK) {
0a3bdb00 1562 return err;
d7e09d03
PT
1563 } else if (err) {
1564 if (lov->lov_tgts[i]->ltd_active) {
1565 CDEBUG(err == -ENOTTY ?
1566 D_IOCTL : D_WARNING,
2d00bd17 1567 "iocontrol OSC %s on OST idx %d cmd %x: err = %d\n",
d7e09d03
PT
1568 lov_uuid2str(lov, i),
1569 i, cmd, err);
1570 if (!rc)
1571 rc = err;
1572 }
1573 } else {
1574 set = 1;
1575 }
1576 }
1577 if (!set && !rc)
1578 rc = -EIO;
1579 }
1580 }
1581
0a3bdb00 1582 return rc;
d7e09d03
PT
1583}
1584
1585#define FIEMAP_BUFFER_SIZE 4096
1586
1587/**
1588 * Non-zero fe_logical indicates that this is a continuation FIEMAP
1589 * call. The local end offset and the device are sent in the first
1590 * fm_extent. This function calculates the stripe number from the index.
1591 * This function returns a stripe_no on which mapping is to be restarted.
1592 *
1593 * This function returns fm_end_offset which is the in-OST offset at which
1594 * mapping should be restarted. If fm_end_offset=0 is returned then caller
1595 * will re-calculate proper offset in next stripe.
1596 * Note that the first extent is passed to lov_get_info via the value field.
1597 *
1598 * \param fiemap fiemap request header
1599 * \param lsm striping information for the file
1600 * \param fm_start logical start of mapping
1601 * \param fm_end logical end of mapping
1602 * \param start_stripe starting stripe will be returned in this
1603 */
12e397cd
LT
1604static u64 fiemap_calc_fm_end_offset(struct ll_user_fiemap *fiemap,
1605 struct lov_stripe_md *lsm, u64 fm_start,
1606 u64 fm_end, int *start_stripe)
d7e09d03 1607{
21aef7d9
OD
1608 u64 local_end = fiemap->fm_extents[0].fe_logical;
1609 u64 lun_start, lun_end;
1610 u64 fm_end_offset;
d7e09d03
PT
1611 int stripe_no = -1, i;
1612
1613 if (fiemap->fm_extent_count == 0 ||
1614 fiemap->fm_extents[0].fe_logical == 0)
1615 return 0;
1616
1617 /* Find out stripe_no from ost_index saved in the fe_device */
1618 for (i = 0; i < lsm->lsm_stripe_count; i++) {
1619 if (lsm->lsm_oinfo[i]->loi_ost_idx ==
1620 fiemap->fm_extents[0].fe_device) {
1621 stripe_no = i;
1622 break;
1623 }
1624 }
1625 if (stripe_no == -1)
1626 return -EINVAL;
1627
1628 /* If we have finished mapping on previous device, shift logical
1629 * offset to start of next device */
1630 if ((lov_stripe_intersects(lsm, stripe_no, fm_start, fm_end,
1631 &lun_start, &lun_end)) != 0 &&
1632 local_end < lun_end) {
1633 fm_end_offset = local_end;
1634 *start_stripe = stripe_no;
1635 } else {
1636 /* This is a special value to indicate that caller should
1637 * calculate offset in next stripe. */
1638 fm_end_offset = 0;
1639 *start_stripe = (stripe_no + 1) % lsm->lsm_stripe_count;
1640 }
1641
1642 return fm_end_offset;
1643}
1644
1645/**
1646 * We calculate on which OST the mapping will end. If the length of mapping
1647 * is greater than (stripe_size * stripe_count) then the last_stripe will
1648 * will be one just before start_stripe. Else we check if the mapping
1649 * intersects each OST and find last_stripe.
1650 * This function returns the last_stripe and also sets the stripe_count
1651 * over which the mapping is spread
1652 *
1653 * \param lsm striping information for the file
1654 * \param fm_start logical start of mapping
1655 * \param fm_end logical end of mapping
1656 * \param start_stripe starting stripe of the mapping
1657 * \param stripe_count the number of stripes across which to map is returned
1658 *
1659 * \retval last_stripe return the last stripe of the mapping
1660 */
12e397cd
LT
1661static int fiemap_calc_last_stripe(struct lov_stripe_md *lsm, u64 fm_start,
1662 u64 fm_end, int start_stripe,
1663 int *stripe_count)
d7e09d03
PT
1664{
1665 int last_stripe;
21aef7d9 1666 u64 obd_start, obd_end;
d7e09d03
PT
1667 int i, j;
1668
1669 if (fm_end - fm_start > lsm->lsm_stripe_size * lsm->lsm_stripe_count) {
1670 last_stripe = (start_stripe < 1 ? lsm->lsm_stripe_count - 1 :
1671 start_stripe - 1);
1672 *stripe_count = lsm->lsm_stripe_count;
1673 } else {
1674 for (j = 0, i = start_stripe; j < lsm->lsm_stripe_count;
1675 i = (i + 1) % lsm->lsm_stripe_count, j++) {
1676 if ((lov_stripe_intersects(lsm, i, fm_start, fm_end,
1677 &obd_start, &obd_end)) == 0)
1678 break;
1679 }
1680 *stripe_count = j;
1681 last_stripe = (start_stripe + j - 1) %lsm->lsm_stripe_count;
1682 }
1683
1684 return last_stripe;
1685}
1686
1687/**
1688 * Set fe_device and copy extents from local buffer into main return buffer.
1689 *
1690 * \param fiemap fiemap request header
1691 * \param lcl_fm_ext array of local fiemap extents to be copied
1692 * \param ost_index OST index to be written into the fm_device field for each
1693 extent
1694 * \param ext_count number of extents to be copied
1695 * \param current_extent where to start copying in main extent array
1696 */
12e397cd
LT
1697static void fiemap_prepare_and_copy_exts(struct ll_user_fiemap *fiemap,
1698 struct ll_fiemap_extent *lcl_fm_ext,
1699 int ost_index, unsigned int ext_count,
1700 int current_extent)
d7e09d03
PT
1701{
1702 char *to;
1703 int ext;
1704
1705 for (ext = 0; ext < ext_count; ext++) {
1706 lcl_fm_ext[ext].fe_device = ost_index;
1707 lcl_fm_ext[ext].fe_flags |= FIEMAP_EXTENT_NET;
1708 }
1709
1710 /* Copy fm_extent's from fm_local to return buffer */
1711 to = (char *)fiemap + fiemap_count_to_size(current_extent);
1712 memcpy(to, lcl_fm_ext, ext_count * sizeof(struct ll_fiemap_extent));
1713}
1714
1715/**
1716 * Break down the FIEMAP request and send appropriate calls to individual OSTs.
1717 * This also handles the restarting of FIEMAP calls in case mapping overflows
1718 * the available number of extents in single call.
1719 */
1720static int lov_fiemap(struct lov_obd *lov, __u32 keylen, void *key,
1721 __u32 *vallen, void *val, struct lov_stripe_md *lsm)
1722{
1723 struct ll_fiemap_info_key *fm_key = key;
1724 struct ll_user_fiemap *fiemap = val;
1725 struct ll_user_fiemap *fm_local = NULL;
1726 struct ll_fiemap_extent *lcl_fm_ext;
1727 int count_local;
1728 unsigned int get_num_extents = 0;
1729 int ost_index = 0, actual_start_stripe, start_stripe;
21aef7d9
OD
1730 u64 fm_start, fm_end, fm_length, fm_end_offset;
1731 u64 curr_loc;
d7e09d03
PT
1732 int current_extent = 0, rc = 0, i;
1733 int ost_eof = 0; /* EOF for object */
1734 int ost_done = 0; /* done with required mapping for this OST? */
1735 int last_stripe;
1736 int cur_stripe = 0, cur_stripe_wrap = 0, stripe_count;
1737 unsigned int buffer_size = FIEMAP_BUFFER_SIZE;
1738
18751668
JL
1739 if (!lsm_has_objects(lsm)) {
1740 rc = 0;
1741 goto out;
1742 }
d7e09d03
PT
1743
1744 if (fiemap_count_to_size(fm_key->fiemap.fm_extent_count) < buffer_size)
1745 buffer_size = fiemap_count_to_size(fm_key->fiemap.fm_extent_count);
1746
1747 OBD_ALLOC_LARGE(fm_local, buffer_size);
18751668
JL
1748 if (fm_local == NULL) {
1749 rc = -ENOMEM;
1750 goto out;
1751 }
d7e09d03
PT
1752 lcl_fm_ext = &fm_local->fm_extents[0];
1753
1754 count_local = fiemap_size_to_count(buffer_size);
1755
1756 memcpy(fiemap, &fm_key->fiemap, sizeof(*fiemap));
1757 fm_start = fiemap->fm_start;
1758 fm_length = fiemap->fm_length;
1759 /* Calculate start stripe, last stripe and length of mapping */
1760 actual_start_stripe = start_stripe = lov_stripe_number(lsm, fm_start);
1761 fm_end = (fm_length == ~0ULL ? fm_key->oa.o_size :
1762 fm_start + fm_length - 1);
1763 /* If fm_length != ~0ULL but fm_start+fm_length-1 exceeds file size */
1764 if (fm_end > fm_key->oa.o_size)
1765 fm_end = fm_key->oa.o_size;
1766
1767 last_stripe = fiemap_calc_last_stripe(lsm, fm_start, fm_end,
1768 actual_start_stripe, &stripe_count);
1769
1770 fm_end_offset = fiemap_calc_fm_end_offset(fiemap, lsm, fm_start,
1771 fm_end, &start_stripe);
18751668
JL
1772 if (fm_end_offset == -EINVAL) {
1773 rc = -EINVAL;
1774 goto out;
1775 }
d7e09d03 1776
ebdc4fc5
BJ
1777 if (fiemap_count_to_size(fiemap->fm_extent_count) > *vallen)
1778 fiemap->fm_extent_count = fiemap_size_to_count(*vallen);
d7e09d03
PT
1779 if (fiemap->fm_extent_count == 0) {
1780 get_num_extents = 1;
1781 count_local = 0;
1782 }
d7e09d03
PT
1783 /* Check each stripe */
1784 for (cur_stripe = start_stripe, i = 0; i < stripe_count;
1785 i++, cur_stripe = (cur_stripe + 1) % lsm->lsm_stripe_count) {
21aef7d9
OD
1786 u64 req_fm_len; /* Stores length of required mapping */
1787 u64 len_mapped_single_call;
1788 u64 lun_start, lun_end, obd_object_end;
d7e09d03
PT
1789 unsigned int ext_count;
1790
1791 cur_stripe_wrap = cur_stripe;
1792
1793 /* Find out range of mapping on this stripe */
1794 if ((lov_stripe_intersects(lsm, cur_stripe, fm_start, fm_end,
1795 &lun_start, &obd_object_end)) == 0)
1796 continue;
1797
1798 /* If this is a continuation FIEMAP call and we are on
1799 * starting stripe then lun_start needs to be set to
1800 * fm_end_offset */
1801 if (fm_end_offset != 0 && cur_stripe == start_stripe)
1802 lun_start = fm_end_offset;
1803
1804 if (fm_length != ~0ULL) {
1805 /* Handle fm_start + fm_length overflow */
1806 if (fm_start + fm_length < fm_start)
1807 fm_length = ~0ULL - fm_start;
1808 lun_end = lov_size_to_stripe(lsm, fm_start + fm_length,
1809 cur_stripe);
1810 } else {
1811 lun_end = ~0ULL;
1812 }
1813
1814 if (lun_start == lun_end)
1815 continue;
1816
1817 req_fm_len = obd_object_end - lun_start;
1818 fm_local->fm_length = 0;
1819 len_mapped_single_call = 0;
1820
1821 /* If the output buffer is very large and the objects have many
1822 * extents we may need to loop on a single OST repeatedly */
1823 ost_eof = 0;
1824 ost_done = 0;
1825 do {
1826 if (get_num_extents == 0) {
1827 /* Don't get too many extents. */
1828 if (current_extent + count_local >
1829 fiemap->fm_extent_count)
1830 count_local = fiemap->fm_extent_count -
1831 current_extent;
1832 }
1833
1834 lun_start += len_mapped_single_call;
1835 fm_local->fm_length = req_fm_len - len_mapped_single_call;
1836 req_fm_len = fm_local->fm_length;
1837 fm_local->fm_extent_count = count_local;
1838 fm_local->fm_mapped_extents = 0;
1839 fm_local->fm_flags = fiemap->fm_flags;
1840
1841 fm_key->oa.o_oi = lsm->lsm_oinfo[cur_stripe]->loi_oi;
1842 ost_index = lsm->lsm_oinfo[cur_stripe]->loi_ost_idx;
1843
18751668
JL
1844 if (ost_index < 0 ||
1845 ost_index >= lov->desc.ld_tgt_count) {
1846 rc = -EINVAL;
1847 goto out;
1848 }
d7e09d03
PT
1849
1850 /* If OST is inactive, return extent with UNKNOWN flag */
1851 if (!lov->lov_tgts[ost_index]->ltd_active) {
1852 fm_local->fm_flags |= FIEMAP_EXTENT_LAST;
1853 fm_local->fm_mapped_extents = 1;
1854
1855 lcl_fm_ext[0].fe_logical = lun_start;
1856 lcl_fm_ext[0].fe_length = obd_object_end -
1857 lun_start;
1858 lcl_fm_ext[0].fe_flags |= FIEMAP_EXTENT_UNKNOWN;
1859
1860 goto inactive_tgt;
1861 }
1862
1863 fm_local->fm_start = lun_start;
1864 fm_local->fm_flags &= ~FIEMAP_FLAG_DEVICE_ORDER;
1865 memcpy(&fm_key->fiemap, fm_local, sizeof(*fm_local));
1866 *vallen=fiemap_count_to_size(fm_local->fm_extent_count);
1867 rc = obd_get_info(NULL,
1868 lov->lov_tgts[ost_index]->ltd_exp,
1869 keylen, key, vallen, fm_local, lsm);
1870 if (rc != 0)
18751668 1871 goto out;
d7e09d03
PT
1872
1873inactive_tgt:
1874 ext_count = fm_local->fm_mapped_extents;
1875 if (ext_count == 0) {
1876 ost_done = 1;
1877 /* If last stripe has hole at the end,
1878 * then we need to return */
1879 if (cur_stripe_wrap == last_stripe) {
1880 fiemap->fm_mapped_extents = 0;
1881 goto finish;
1882 }
1883 break;
1884 }
1885
1886 /* If we just need num of extents then go to next device */
1887 if (get_num_extents) {
1888 current_extent += ext_count;
1889 break;
1890 }
1891
1892 len_mapped_single_call = lcl_fm_ext[ext_count-1].fe_logical -
1893 lun_start + lcl_fm_ext[ext_count - 1].fe_length;
1894
1895 /* Have we finished mapping on this device? */
1896 if (req_fm_len <= len_mapped_single_call)
1897 ost_done = 1;
1898
1899 /* Clear the EXTENT_LAST flag which can be present on
1900 * last extent */
1901 if (lcl_fm_ext[ext_count-1].fe_flags & FIEMAP_EXTENT_LAST)
1902 lcl_fm_ext[ext_count - 1].fe_flags &=
1903 ~FIEMAP_EXTENT_LAST;
1904
1905 curr_loc = lov_stripe_size(lsm,
1906 lcl_fm_ext[ext_count - 1].fe_logical+
1907 lcl_fm_ext[ext_count - 1].fe_length,
1908 cur_stripe);
1909 if (curr_loc >= fm_key->oa.o_size)
1910 ost_eof = 1;
1911
1912 fiemap_prepare_and_copy_exts(fiemap, lcl_fm_ext,
1913 ost_index, ext_count,
1914 current_extent);
1915
1916 current_extent += ext_count;
1917
1918 /* Ran out of available extents? */
1919 if (current_extent >= fiemap->fm_extent_count)
1920 goto finish;
1921 } while (ost_done == 0 && ost_eof == 0);
1922
1923 if (cur_stripe_wrap == last_stripe)
1924 goto finish;
1925 }
1926
1927finish:
1928 /* Indicate that we are returning device offsets unless file just has
1929 * single stripe */
1930 if (lsm->lsm_stripe_count > 1)
1931 fiemap->fm_flags |= FIEMAP_FLAG_DEVICE_ORDER;
1932
1933 if (get_num_extents)
1934 goto skip_last_device_calc;
1935
1936 /* Check if we have reached the last stripe and whether mapping for that
1937 * stripe is done. */
1938 if (cur_stripe_wrap == last_stripe) {
1939 if (ost_done || ost_eof)
1940 fiemap->fm_extents[current_extent - 1].fe_flags |=
1941 FIEMAP_EXTENT_LAST;
1942 }
1943
1944skip_last_device_calc:
1945 fiemap->fm_mapped_extents = current_extent;
1946
1947out:
1948 OBD_FREE_LARGE(fm_local, buffer_size);
1949 return rc;
1950}
1951
1952static int lov_get_info(const struct lu_env *env, struct obd_export *exp,
1953 __u32 keylen, void *key, __u32 *vallen, void *val,
1954 struct lov_stripe_md *lsm)
1955{
1956 struct obd_device *obddev = class_exp2obd(exp);
1957 struct lov_obd *lov = &obddev->u.lov;
1958 int i, rc;
d7e09d03
PT
1959
1960 if (!vallen || !val)
0a3bdb00 1961 return -EFAULT;
d7e09d03
PT
1962
1963 obd_getref(obddev);
1964
1965 if (KEY_IS(KEY_LOCK_TO_STRIPE)) {
1966 struct {
1967 char name[16];
1968 struct ldlm_lock *lock;
1969 } *data = key;
1970 struct ldlm_res_id *res_id = &data->lock->l_resource->lr_name;
1971 struct lov_oinfo *loi;
1972 __u32 *stripe = val;
1973
18751668
JL
1974 if (*vallen < sizeof(*stripe)) {
1975 rc = -EFAULT;
1976 goto out;
1977 }
d7e09d03
PT
1978 *vallen = sizeof(*stripe);
1979
1980 /* XXX This is another one of those bits that will need to
1981 * change if we ever actually support nested LOVs. It uses
1982 * the lock's export to find out which stripe it is. */
1983 /* XXX - it's assumed all the locks for deleted OSTs have
1984 * been cancelled. Also, the export for deleted OSTs will
1985 * be NULL and won't match the lock's export. */
1986 for (i = 0; i < lsm->lsm_stripe_count; i++) {
1987 loi = lsm->lsm_oinfo[i];
1988 if (!lov->lov_tgts[loi->loi_ost_idx])
1989 continue;
1990 if (lov->lov_tgts[loi->loi_ost_idx]->ltd_exp ==
1991 data->lock->l_conn_export &&
1992 ostid_res_name_eq(&loi->loi_oi, res_id)) {
1993 *stripe = i;
18751668
JL
1994 rc = 0;
1995 goto out;
d7e09d03
PT
1996 }
1997 }
1998 LDLM_ERROR(data->lock, "lock on inode without such object");
1999 dump_lsm(D_ERROR, lsm);
18751668
JL
2000 rc = -ENXIO;
2001 goto out;
d7e09d03
PT
2002 } else if (KEY_IS(KEY_LAST_ID)) {
2003 struct obd_id_info *info = val;
21aef7d9 2004 __u32 size = sizeof(u64);
d7e09d03
PT
2005 struct lov_tgt_desc *tgt;
2006
2007 LASSERT(*vallen == sizeof(struct obd_id_info));
2008 tgt = lov->lov_tgts[info->idx];
2009
18751668
JL
2010 if (!tgt || !tgt->ltd_active) {
2011 rc = -ESRCH;
2012 goto out;
2013 }
d7e09d03
PT
2014
2015 rc = obd_get_info(env, tgt->ltd_exp, keylen, key,
2016 &size, info->data, NULL);
18751668
JL
2017 rc = 0;
2018 goto out;
d7e09d03
PT
2019 } else if (KEY_IS(KEY_LOVDESC)) {
2020 struct lov_desc *desc_ret = val;
2021 *desc_ret = lov->desc;
2022
18751668
JL
2023 rc = 0;
2024 goto out;
d7e09d03
PT
2025 } else if (KEY_IS(KEY_FIEMAP)) {
2026 rc = lov_fiemap(lov, keylen, key, vallen, val, lsm);
18751668 2027 goto out;
d7e09d03
PT
2028 } else if (KEY_IS(KEY_CONNECT_FLAG)) {
2029 struct lov_tgt_desc *tgt;
bcc3b704 2030 __u64 ost_idx = *((__u64 *)val);
d7e09d03
PT
2031
2032 LASSERT(*vallen == sizeof(__u64));
2033 LASSERT(ost_idx < lov->desc.ld_tgt_count);
2034 tgt = lov->lov_tgts[ost_idx];
2035
18751668
JL
2036 if (!tgt || !tgt->ltd_exp) {
2037 rc = -ESRCH;
2038 goto out;
2039 }
d7e09d03
PT
2040
2041 *((__u64 *)val) = exp_connect_flags(tgt->ltd_exp);
18751668
JL
2042 rc = 0;
2043 goto out;
d7e09d03
PT
2044 } else if (KEY_IS(KEY_TGT_COUNT)) {
2045 *((int *)val) = lov->desc.ld_tgt_count;
18751668
JL
2046 rc = 0;
2047 goto out;
d7e09d03
PT
2048 }
2049
2050 rc = -EINVAL;
2051
2052out:
2053 obd_putref(obddev);
0a3bdb00 2054 return rc;
d7e09d03
PT
2055}
2056
2057static int lov_set_info_async(const struct lu_env *env, struct obd_export *exp,
21aef7d9 2058 u32 keylen, void *key, u32 vallen,
d7e09d03
PT
2059 void *val, struct ptlrpc_request_set *set)
2060{
2061 struct obd_device *obddev = class_exp2obd(exp);
2062 struct lov_obd *lov = &obddev->u.lov;
21aef7d9 2063 u32 count;
d7e09d03
PT
2064 int i, rc = 0, err;
2065 struct lov_tgt_desc *tgt;
2066 unsigned incr, check_uuid,
2067 do_inactive, no_set;
2068 unsigned next_id = 0, mds_con = 0, capa = 0;
d7e09d03
PT
2069
2070 incr = check_uuid = do_inactive = no_set = 0;
2071 if (set == NULL) {
2072 no_set = 1;
2073 set = ptlrpc_prep_set();
2074 if (!set)
0a3bdb00 2075 return -ENOMEM;
d7e09d03
PT
2076 }
2077
2078 obd_getref(obddev);
2079 count = lov->desc.ld_tgt_count;
2080
2081 if (KEY_IS(KEY_NEXT_ID)) {
2082 count = vallen / sizeof(struct obd_id_info);
21aef7d9 2083 vallen = sizeof(u64);
d7e09d03
PT
2084 incr = sizeof(struct obd_id_info);
2085 do_inactive = 1;
2086 next_id = 1;
2087 } else if (KEY_IS(KEY_CHECKSUM)) {
2088 do_inactive = 1;
2089 } else if (KEY_IS(KEY_EVICT_BY_NID)) {
2090 /* use defaults: do_inactive = incr = 0; */
2091 } else if (KEY_IS(KEY_MDS_CONN)) {
2092 mds_con = 1;
2093 } else if (KEY_IS(KEY_CAPA_KEY)) {
2094 capa = 1;
2095 } else if (KEY_IS(KEY_CACHE_SET)) {
2096 LASSERT(lov->lov_cache == NULL);
2097 lov->lov_cache = val;
2098 do_inactive = 1;
2099 }
2100
2101 for (i = 0; i < count; i++, val = (char *)val + incr) {
2102 if (next_id) {
bcc3b704 2103 tgt = lov->lov_tgts[((struct obd_id_info *)val)->idx];
d7e09d03
PT
2104 } else {
2105 tgt = lov->lov_tgts[i];
2106 }
2107 /* OST was disconnected */
2108 if (!tgt || !tgt->ltd_exp)
2109 continue;
2110
2111 /* OST is inactive and we don't want inactive OSCs */
2112 if (!tgt->ltd_active && !do_inactive)
2113 continue;
2114
2115 if (mds_con) {
2116 struct mds_group_info *mgi;
2117
2118 LASSERT(vallen == sizeof(*mgi));
2119 mgi = (struct mds_group_info *)val;
2120
2121 /* Only want a specific OSC */
2122 if (mgi->uuid && !obd_uuid_equals(mgi->uuid,
2123 &tgt->ltd_uuid))
2124 continue;
2125
2126 err = obd_set_info_async(env, tgt->ltd_exp,
2127 keylen, key, sizeof(int),
2128 &mgi->group, set);
2129 } else if (next_id) {
2130 err = obd_set_info_async(env, tgt->ltd_exp,
2131 keylen, key, vallen,
bcc3b704 2132 ((struct obd_id_info *)val)->data, set);
d7e09d03 2133 } else if (capa) {
bcc3b704 2134 struct mds_capa_info *info = (struct mds_capa_info *)val;
d7e09d03
PT
2135
2136 LASSERT(vallen == sizeof(*info));
2137
2138 /* Only want a specific OSC */
2139 if (info->uuid &&
2140 !obd_uuid_equals(info->uuid, &tgt->ltd_uuid))
2141 continue;
2142
2143 err = obd_set_info_async(env, tgt->ltd_exp, keylen,
2144 key, sizeof(*info->capa),
2145 info->capa, set);
2146 } else {
2147 /* Only want a specific OSC */
2148 if (check_uuid &&
2149 !obd_uuid_equals(val, &tgt->ltd_uuid))
2150 continue;
2151
2152 err = obd_set_info_async(env, tgt->ltd_exp,
2153 keylen, key, vallen, val, set);
2154 }
2155
2156 if (!rc)
2157 rc = err;
2158 }
2159
2160 obd_putref(obddev);
2161 if (no_set) {
2162 err = ptlrpc_set_wait(set);
2163 if (!rc)
2164 rc = err;
2165 ptlrpc_set_destroy(set);
2166 }
0a3bdb00 2167 return rc;
d7e09d03
PT
2168}
2169
d7e09d03 2170void lov_stripe_lock(struct lov_stripe_md *md)
82604f8c 2171 __acquires(&md->lsm_lock)
d7e09d03
PT
2172{
2173 LASSERT(md->lsm_lock_owner != current_pid());
2174 spin_lock(&md->lsm_lock);
2175 LASSERT(md->lsm_lock_owner == 0);
2176 md->lsm_lock_owner = current_pid();
2177}
2178EXPORT_SYMBOL(lov_stripe_lock);
2179
2180void lov_stripe_unlock(struct lov_stripe_md *md)
82604f8c 2181 __releases(&md->lsm_lock)
d7e09d03
PT
2182{
2183 LASSERT(md->lsm_lock_owner == current_pid());
2184 md->lsm_lock_owner = 0;
2185 spin_unlock(&md->lsm_lock);
2186}
2187EXPORT_SYMBOL(lov_stripe_unlock);
2188
2189static int lov_quotactl(struct obd_device *obd, struct obd_export *exp,
2190 struct obd_quotactl *oqctl)
2191{
2192 struct lov_obd *lov = &obd->u.lov;
2193 struct lov_tgt_desc *tgt;
2194 __u64 curspace = 0;
2195 __u64 bhardlimit = 0;
2196 int i, rc = 0;
d7e09d03
PT
2197
2198 if (oqctl->qc_cmd != LUSTRE_Q_QUOTAON &&
2199 oqctl->qc_cmd != LUSTRE_Q_QUOTAOFF &&
2200 oqctl->qc_cmd != Q_GETOQUOTA &&
2201 oqctl->qc_cmd != Q_INITQUOTA &&
2202 oqctl->qc_cmd != LUSTRE_Q_SETQUOTA &&
2203 oqctl->qc_cmd != Q_FINVALIDATE) {
2204 CERROR("bad quota opc %x for lov obd", oqctl->qc_cmd);
0a3bdb00 2205 return -EFAULT;
d7e09d03
PT
2206 }
2207
2208 /* for lov tgt */
2209 obd_getref(obd);
2210 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
2211 int err;
2212
2213 tgt = lov->lov_tgts[i];
2214
2215 if (!tgt)
2216 continue;
2217
2218 if (!tgt->ltd_active || tgt->ltd_reap) {
2219 if (oqctl->qc_cmd == Q_GETOQUOTA &&
2220 lov->lov_tgts[i]->ltd_activate) {
2221 rc = -EREMOTEIO;
2222 CERROR("ost %d is inactive\n", i);
2223 } else {
2224 CDEBUG(D_HA, "ost %d is inactive\n", i);
2225 }
2226 continue;
2227 }
2228
2229 err = obd_quotactl(tgt->ltd_exp, oqctl);
2230 if (err) {
2231 if (tgt->ltd_active && !rc)
2232 rc = err;
2233 continue;
2234 }
2235
2236 if (oqctl->qc_cmd == Q_GETOQUOTA) {
2237 curspace += oqctl->qc_dqblk.dqb_curspace;
2238 bhardlimit += oqctl->qc_dqblk.dqb_bhardlimit;
2239 }
2240 }
2241 obd_putref(obd);
2242
2243 if (oqctl->qc_cmd == Q_GETOQUOTA) {
2244 oqctl->qc_dqblk.dqb_curspace = curspace;
2245 oqctl->qc_dqblk.dqb_bhardlimit = bhardlimit;
2246 }
0a3bdb00 2247 return rc;
d7e09d03
PT
2248}
2249
2250static int lov_quotacheck(struct obd_device *obd, struct obd_export *exp,
2251 struct obd_quotactl *oqctl)
2252{
2253 struct lov_obd *lov = &obd->u.lov;
2254 int i, rc = 0;
d7e09d03
PT
2255
2256 obd_getref(obd);
2257
2258 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
2259 if (!lov->lov_tgts[i])
2260 continue;
2261
2262 /* Skip quota check on the administratively disabled OSTs. */
2263 if (!lov->lov_tgts[i]->ltd_activate) {
2d00bd17
JP
2264 CWARN("lov idx %d was administratively disabled, skip quotacheck on it.\n",
2265 i);
d7e09d03
PT
2266 continue;
2267 }
2268
2269 if (!lov->lov_tgts[i]->ltd_active) {
2270 CERROR("lov idx %d inactive\n", i);
2271 rc = -EIO;
2272 goto out;
2273 }
2274 }
2275
2276 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
2277 int err;
2278
2279 if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_activate)
2280 continue;
2281
2282 err = obd_quotacheck(lov->lov_tgts[i]->ltd_exp, oqctl);
2283 if (err && !rc)
2284 rc = err;
2285 }
2286
2287out:
2288 obd_putref(obd);
2289
0a3bdb00 2290 return rc;
d7e09d03
PT
2291}
2292
12e397cd 2293static struct obd_ops lov_obd_ops = {
d7e09d03
PT
2294 .o_owner = THIS_MODULE,
2295 .o_setup = lov_setup,
2296 .o_precleanup = lov_precleanup,
2297 .o_cleanup = lov_cleanup,
5e448831 2298 /*.o_process_config = lov_process_config,*/
d7e09d03
PT
2299 .o_connect = lov_connect,
2300 .o_disconnect = lov_disconnect,
2301 .o_statfs = lov_statfs,
2302 .o_statfs_async = lov_statfs_async,
2303 .o_packmd = lov_packmd,
2304 .o_unpackmd = lov_unpackmd,
2305 .o_create = lov_create,
2306 .o_destroy = lov_destroy,
d7e09d03 2307 .o_getattr_async = lov_getattr_async,
d7e09d03 2308 .o_setattr_async = lov_setattr_async,
d7e09d03 2309 .o_adjust_kms = lov_adjust_kms,
d7e09d03 2310 .o_find_cbdata = lov_find_cbdata,
d7e09d03
PT
2311 .o_iocontrol = lov_iocontrol,
2312 .o_get_info = lov_get_info,
2313 .o_set_info_async = lov_set_info_async,
d7e09d03
PT
2314 .o_notify = lov_notify,
2315 .o_pool_new = lov_pool_new,
2316 .o_pool_rem = lov_pool_remove,
2317 .o_pool_add = lov_pool_add,
2318 .o_pool_del = lov_pool_del,
2319 .o_getref = lov_getref,
2320 .o_putref = lov_putref,
2321 .o_quotactl = lov_quotactl,
2322 .o_quotacheck = lov_quotacheck,
2323};
2324
2325struct kmem_cache *lov_oinfo_slab;
2326
12e397cd 2327static int __init lov_init(void)
d7e09d03 2328{
e6be8e63 2329 struct lprocfs_static_vars lvars = { NULL };
d7e09d03 2330 int rc;
d7e09d03
PT
2331
2332 /* print an address of _any_ initialized kernel symbol from this
2333 * module, to allow debugging with gdb that doesn't support data
2334 * symbols from modules.*/
2335 CDEBUG(D_INFO, "Lustre LOV module (%p).\n", &lov_caches);
2336
2337 rc = lu_kmem_init(lov_caches);
2338 if (rc)
2339 return rc;
2340
2341 lov_oinfo_slab = kmem_cache_create("lov_oinfo",
2342 sizeof(struct lov_oinfo),
2343 0, SLAB_HWCACHE_ALIGN, NULL);
2344 if (lov_oinfo_slab == NULL) {
2345 lu_kmem_fini(lov_caches);
2346 return -ENOMEM;
2347 }
2348 lprocfs_lov_init_vars(&lvars);
2349
2350 rc = class_register_type(&lov_obd_ops, NULL, lvars.module_vars,
2351 LUSTRE_LOV_NAME, &lov_device_type);
2352
2353 if (rc) {
2354 kmem_cache_destroy(lov_oinfo_slab);
2355 lu_kmem_fini(lov_caches);
2356 }
2357
0a3bdb00 2358 return rc;
d7e09d03
PT
2359}
2360
2361static void /*__exit*/ lov_exit(void)
2362{
2363 class_unregister_type(LUSTRE_LOV_NAME);
2364 kmem_cache_destroy(lov_oinfo_slab);
2365
2366 lu_kmem_fini(lov_caches);
2367}
2368
2369MODULE_AUTHOR("Sun Microsystems, Inc. <http://www.lustre.org/>");
2370MODULE_DESCRIPTION("Lustre Logical Object Volume OBD driver");
2371MODULE_LICENSE("GPL");
6960736c 2372MODULE_VERSION(LUSTRE_VERSION_STRING);
d7e09d03 2373
6960736c
GKH
2374module_init(lov_init);
2375module_exit(lov_exit);
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