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[fs/lustre-release.git] / lustre / lov / lov_obd.c
1 /* -*- mode: c; c-basic-offset: 8; indent-tabs-mode: nil; -*-
2  * vim:expandtab:shiftwidth=8:tabstop=8:
3  *
4  * Copyright (C) 2002-2006 Cluster File Systems, Inc.
5  * Author: Phil Schwan <phil@clusterfs.com>
6  *         Peter Braam <braam@clusterfs.com>
7  *         Mike Shaver <shaver@clusterfs.com>
8  *         Nathan Rutman <nathan@clusterfs.com>
9  *
10  *   This file is part of the Lustre file system, http://www.lustre.org
11  *   Lustre is a trademark of Cluster File Systems, Inc.
12  *
13  *   You may have signed or agreed to another license before downloading
14  *   this software.  If so, you are bound by the terms and conditions
15  *   of that agreement, and the following does not apply to you.  See the
16  *   LICENSE file included with this distribution for more information.
17  *
18  *   If you did not agree to a different license, then this copy of Lustre
19  *   is open source software; you can redistribute it and/or modify it
20  *   under the terms of version 2 of the GNU General Public License as
21  *   published by the Free Software Foundation.
22  *
23  *   In either case, Lustre is distributed in the hope that it will be
24  *   useful, but WITHOUT ANY WARRANTY; without even the implied warranty
25  *   of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
26  *   license text for more details.
27  */
28
29 #ifndef EXPORT_SYMTAB
30 # define EXPORT_SYMTAB
31 #endif
32 #define DEBUG_SUBSYSTEM S_LOV
33 #ifdef __KERNEL__
34 #include <libcfs/libcfs.h>
35 #else
36 #include <liblustre.h>
37 #endif
38
39 #include <obd_support.h>
40 #include <lustre_lib.h>
41 #include <lustre_net.h>
42 #include <lustre/lustre_idl.h>
43 #include <lustre_dlm.h>
44 #include <lustre_mds.h>
45 #include <lustre_debug.h>
46 #include <obd_class.h>
47 #include <obd_lov.h>
48 #include <obd_ost.h>
49 #include <lprocfs_status.h>
50 #include <lustre_param.h>
51
52 #include "lov_internal.h"
53
54
55 /* Keep a refcount of lov->tgt usage to prevent racing with addition/deletion.
56    Any function that expects lov_tgts to remain stationary must take a ref. */
57 void lov_getref(struct obd_device *obd)
58 {
59         struct lov_obd *lov = &obd->u.lov;
60
61         /* nobody gets through here until lov_putref is done */
62         mutex_down(&lov->lov_lock);
63         atomic_inc(&lov->lov_refcount);
64         mutex_up(&lov->lov_lock);
65         return;
66 }
67
68 static void __lov_del_obd(struct obd_device *obd, __u32 index);
69
70 void lov_putref(struct obd_device *obd)
71 {
72         struct lov_obd *lov = &obd->u.lov;
73         mutex_down(&lov->lov_lock);
74         /* ok to dec to 0 more than once -- ltd_exp's will be null */
75         if (atomic_dec_and_test(&lov->lov_refcount) && lov->lov_death_row) {
76                 int i;
77                 CDEBUG(D_CONFIG, "destroying %d lov targets\n", 
78                        lov->lov_death_row);
79                 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
80                         if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_reap)
81                                 continue;
82                         /* Disconnect and delete from list */
83                         __lov_del_obd(obd, i);
84                         lov->lov_death_row--;
85                 }
86         }
87         mutex_up(&lov->lov_lock);
88 }
89
90 #define MAX_STRING_SIZE 128
91 static int lov_connect_obd(struct obd_device *obd, __u32 index, int activate, 
92                            struct obd_connect_data *data)
93 {
94         struct lov_obd *lov = &obd->u.lov;
95         struct obd_uuid tgt_uuid;
96         struct obd_device *tgt_obd;
97         struct obd_uuid lov_osc_uuid = { "LOV_OSC_UUID" };
98         struct lustre_handle conn = {0, };
99         struct obd_import *imp;
100 #ifdef __KERNEL__
101         cfs_proc_dir_entry_t *lov_proc_dir;
102 #endif
103         int rc;
104         ENTRY;
105
106         if (!lov->lov_tgts[index])
107                 RETURN(-EINVAL);
108
109         tgt_uuid = lov->lov_tgts[index]->ltd_uuid;
110         tgt_obd = class_find_client_obd(&tgt_uuid, LUSTRE_OSC_NAME,
111                                         &obd->obd_uuid);
112
113         if (!tgt_obd) {
114                 CERROR("Target %s not attached\n", obd_uuid2str(&tgt_uuid));
115                 RETURN(-EINVAL);
116         }
117         
118         if (!tgt_obd->obd_set_up) {
119                 CERROR("Target %s not set up\n", obd_uuid2str(&tgt_uuid));
120                 RETURN(-EINVAL);
121         }
122
123         if (data && (data->ocd_connect_flags & OBD_CONNECT_INDEX))
124                 data->ocd_index = index;
125
126         /*
127          * Divine LOV knows that OBDs under it are OSCs.
128          */
129         imp = tgt_obd->u.cli.cl_import;
130
131         if (activate) {
132                 tgt_obd->obd_no_recov = 0;
133                 /* FIXME this is probably supposed to be 
134                    ptlrpc_set_import_active.  Horrible naming. */
135                 ptlrpc_activate_import(imp);
136         }
137
138         if (imp->imp_invalid) {
139                 CERROR("not connecting OSC %s; administratively "
140                        "disabled\n", obd_uuid2str(&tgt_uuid));
141                 rc = obd_register_observer(tgt_obd, obd);
142                 if (rc) {
143                         CERROR("Target %s register_observer error %d; "
144                                "will not be able to reactivate\n",
145                                obd_uuid2str(&tgt_uuid), rc);
146                 }
147                 RETURN(0);
148         }
149
150         rc = obd_connect(&conn, tgt_obd, &lov_osc_uuid, data);
151         if (rc) {
152                 CERROR("Target %s connect error %d\n",
153                        obd_uuid2str(&tgt_uuid), rc);
154                 RETURN(rc);
155         }
156         lov->lov_tgts[index]->ltd_exp = class_conn2export(&conn);
157         if (!lov->lov_tgts[index]->ltd_exp) {
158                 CERROR("Target %s: null export!\n", obd_uuid2str(&tgt_uuid));
159                 RETURN(-ENODEV);
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);
166                 obd_disconnect(lov->lov_tgts[index]->ltd_exp);
167                 lov->lov_tgts[index]->ltd_exp = NULL;
168                 RETURN(rc);
169         }
170
171         lov->lov_tgts[index]->ltd_reap = 0;
172         if (activate) {
173                 lov->lov_tgts[index]->ltd_active = 1;
174                 lov->desc.ld_active_tgt_count++;
175         }
176         CDEBUG(D_CONFIG, "Connected tgt idx %d %s (%s) %sactive\n", index,
177                obd_uuid2str(&tgt_uuid), tgt_obd->obd_name, activate ? "":"in");
178
179 #ifdef __KERNEL__
180         lov_proc_dir = lprocfs_srch(obd->obd_proc_entry, "target_obds");
181         if (lov_proc_dir) {
182                 struct obd_device *osc_obd = class_conn2obd(&conn);
183                 cfs_proc_dir_entry_t *osc_symlink;
184                 char name[MAX_STRING_SIZE];
185
186                 LASSERT(osc_obd != NULL);
187                 LASSERT(osc_obd->obd_magic == OBD_DEVICE_MAGIC);
188                 LASSERT(osc_obd->obd_type->typ_name != NULL);
189                 snprintf(name, MAX_STRING_SIZE, "../../../%s/%s",
190                          osc_obd->obd_type->typ_name,
191                          osc_obd->obd_name);
192                 osc_symlink = proc_symlink(osc_obd->obd_name, lov_proc_dir,
193                                            name);
194                 if (osc_symlink == NULL) {
195                         CERROR("could not register LOV target "
196                                "/proc/fs/lustre/%s/%s/target_obds/%s.",
197                                obd->obd_type->typ_name, obd->obd_name,
198                                osc_obd->obd_name);
199                         lprocfs_remove(&lov_proc_dir);
200                 }
201         }
202 #endif
203
204         rc = qos_add_tgt(obd, index);
205         if (rc) 
206                 CERROR("qos_add_tgt failed %d\n", rc);
207
208         RETURN(0);
209 }
210
211 static int lov_connect(struct lustre_handle *conn, struct obd_device *obd,
212                        struct obd_uuid *cluuid, struct obd_connect_data *data)
213 {
214         struct lov_obd *lov = &obd->u.lov;
215         struct lov_tgt_desc *tgt;
216         int i, rc;
217         ENTRY;
218
219         CDEBUG(D_CONFIG, "connect #%d\n", lov->lov_connects);
220
221         rc = class_connect(conn, obd, cluuid);
222         if (rc)
223                 RETURN(rc);
224
225         /* Why should there ever be more than 1 connect? */
226         lov->lov_connects++;
227         LASSERT(lov->lov_connects == 1);
228         
229         memset(&lov->lov_ocd, 0, sizeof(lov->lov_ocd));
230         if (data)
231                 lov->lov_ocd = *data;
232
233         lov_getref(obd);
234         for (i = 0; i < lov->desc.ld_tgt_count; i++) {
235                 tgt = lov->lov_tgts[i];
236                 if (!tgt || obd_uuid_empty(&tgt->ltd_uuid))
237                         continue;
238                 /* Flags will be lowest common denominator */
239                 rc = lov_connect_obd(obd, i, lov->lov_tgts[i]->ltd_activate,
240                                      &lov->lov_ocd);
241                 if (rc) {
242                         CERROR("%s: lov connect tgt %d failed: %d\n", 
243                                obd->obd_name, i, rc);
244                         continue;
245                 }
246         }
247         lov_putref(obd);
248         
249         RETURN(0);
250 }
251
252 static int lov_disconnect_obd(struct obd_device *obd, __u32 index)
253 {
254         cfs_proc_dir_entry_t *lov_proc_dir;
255         struct lov_obd *lov = &obd->u.lov;
256         struct obd_device *osc_obd =
257                 class_exp2obd(lov->lov_tgts[index]->ltd_exp);
258         int rc;
259         ENTRY;
260
261         CDEBUG(D_CONFIG, "%s: disconnecting target %s\n", 
262                obd->obd_name, osc_obd->obd_name);
263
264         if (lov->lov_tgts[index]->ltd_active) {
265                 lov->lov_tgts[index]->ltd_active = 0;
266                 lov->desc.ld_active_tgt_count--;
267         }
268
269         lov_proc_dir = lprocfs_srch(obd->obd_proc_entry, "target_obds");
270         if (lov_proc_dir) {
271                 cfs_proc_dir_entry_t *osc_symlink;
272
273                 osc_symlink = lprocfs_srch(lov_proc_dir, osc_obd->obd_name);
274                 if (osc_symlink) {
275                         lprocfs_remove(&osc_symlink);
276                 } else {
277                         CERROR("/proc/fs/lustre/%s/%s/target_obds/%s missing.",
278                                obd->obd_type->typ_name, obd->obd_name,
279                                osc_obd->obd_name);
280                 }
281         }
282
283         if (obd->obd_no_recov) {
284                 /* Pass it on to our clients.
285                  * XXX This should be an argument to disconnect,
286                  * XXX not a back-door flag on the OBD.  Ah well.
287                  */
288                 if (osc_obd)
289                         osc_obd->obd_no_recov = 1;
290         }
291
292         obd_register_observer(osc_obd, NULL);
293
294         rc = obd_disconnect(lov->lov_tgts[index]->ltd_exp);
295         if (rc) {
296                 CERROR("Target %s disconnect error %d\n",
297                        lov_uuid2str(lov, index), rc);
298                 rc = 0;
299         }
300
301         qos_del_tgt(obd, index);
302
303         lov->lov_tgts[index]->ltd_exp = NULL;
304         RETURN(0);
305 }
306
307 static int lov_del_target(struct obd_device *obd, __u32 index, 
308                           struct obd_uuid *uuidp, int gen);
309
310 static int lov_disconnect(struct obd_export *exp)
311 {
312         struct obd_device *obd = class_exp2obd(exp);
313         struct lov_obd *lov = &obd->u.lov;
314         int i, rc;
315         ENTRY;
316
317         if (!lov->lov_tgts)
318                 goto out;
319
320         /* Only disconnect the underlying layers on the final disconnect. */
321         lov->lov_connects--;
322         if (lov->lov_connects != 0) {
323                 /* why should there be more than 1 connect? */
324                 CERROR("disconnect #%d\n", lov->lov_connects);
325                 goto out;
326         }
327
328         /* Let's hold another reference so lov_del_obd doesn't spin through
329            putref every time */
330         lov_getref(obd);
331         for (i = 0; i < lov->desc.ld_tgt_count; i++) {
332                 if (lov->lov_tgts[i] && lov->lov_tgts[i]->ltd_exp) {
333                         /* Disconnection is the last we know about an obd */
334                         lov_del_target(obd, i, 0, lov->lov_tgts[i]->ltd_gen);
335                 }
336         }
337         lov_putref(obd);
338
339 out:
340         rc = class_disconnect(exp); /* bz 9811 */
341         RETURN(rc);
342 }
343
344 /* Error codes:
345  *
346  *  -EINVAL  : UUID can't be found in the LOV's target list
347  *  -ENOTCONN: The UUID is found, but the target connection is bad (!)
348  *  -EBADF   : The UUID is found, but the OBD is the wrong type (!)
349  */
350 static int lov_set_osc_active(struct obd_device *obd, struct obd_uuid *uuid,
351                               int activate)
352 {
353         struct lov_obd *lov = &obd->u.lov;
354         struct lov_tgt_desc *tgt;
355         int i, rc = 0;
356         ENTRY;
357
358         CDEBUG(D_INFO, "Searching in lov %p for uuid %s (activate=%d)\n",
359                lov, uuid->uuid, activate);
360
361         lov_getref(obd);
362         for (i = 0; i < lov->desc.ld_tgt_count; i++) {
363                 tgt = lov->lov_tgts[i];
364                 if (!tgt || !tgt->ltd_exp)
365                         continue;
366
367                 CDEBUG(D_INFO, "lov idx %d is %s conn "LPX64"\n",
368                        i, obd_uuid2str(&tgt->ltd_uuid),
369                        tgt->ltd_exp->exp_handle.h_cookie);
370                 if (obd_uuid_equals(uuid, &tgt->ltd_uuid))
371                         break;
372         }
373
374         if (i == lov->desc.ld_tgt_count)
375                 GOTO(out, rc = -EINVAL);
376
377         if (lov->lov_tgts[i]->ltd_active == activate) {
378                 CDEBUG(D_INFO, "OSC %s already %sactive!\n", uuid->uuid,
379                        activate ? "" : "in");
380                 GOTO(out, rc);
381         }
382
383         CDEBUG(D_CONFIG, "Marking OSC %s %sactive\n", obd_uuid2str(uuid),
384                activate ? "" : "in");
385
386         lov->lov_tgts[i]->ltd_active = activate;
387         if (activate)
388                 lov->desc.ld_active_tgt_count++;
389         else
390                 lov->desc.ld_active_tgt_count--;
391         /* remove any old qos penalty */
392         lov->lov_tgts[i]->ltd_qos.ltq_penalty = 0;
393
394  out:
395         lov_putref(obd);
396         RETURN(rc);
397 }
398
399 static int lov_notify(struct obd_device *obd, struct obd_device *watched,
400                       enum obd_notify_event ev, void *data)
401 {
402         int rc = 0;
403         ENTRY;
404
405         if (ev == OBD_NOTIFY_ACTIVE || ev == OBD_NOTIFY_INACTIVE) {
406                 struct obd_uuid *uuid;
407
408                 LASSERT(watched);
409                 
410                 if (strcmp(watched->obd_type->typ_name, LUSTRE_OSC_NAME)) {
411                         CERROR("unexpected notification of %s %s!\n",
412                                watched->obd_type->typ_name,
413                                watched->obd_name);
414                         RETURN(-EINVAL);
415                 }
416                 uuid = &watched->u.cli.cl_target_uuid;
417
418                 /* Set OSC as active before notifying the observer, so the
419                  * observer can use the OSC normally.
420                  */
421                 rc = lov_set_osc_active(obd, uuid, ev == OBD_NOTIFY_ACTIVE);
422                 if (rc) {
423                         CERROR("%sactivation of %s failed: %d\n",
424                                (ev == OBD_NOTIFY_ACTIVE) ? "" : "de",
425                                obd_uuid2str(uuid), rc);
426                         RETURN(rc);
427                 }
428         }
429
430         /* Pass the notification up the chain. */
431         if (watched) {
432                 rc = obd_notify_observer(obd, watched, ev, data);
433         } else {
434                 /* NULL watched means all osc's in the lov (only for syncs) */
435                 struct lov_obd *lov = &obd->u.lov;
436                 struct obd_device *tgt_obd;
437                 int i;
438                 lov_getref(obd);
439                 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
440                         if (!lov->lov_tgts[i])
441                                 continue;
442                         tgt_obd = class_exp2obd(lov->lov_tgts[i]->ltd_exp);
443                         rc = obd_notify_observer(obd, tgt_obd, ev, data);
444                         if (rc) {
445                                 CERROR("%s: notify %s of %s failed %d\n",
446                                        obd->obd_name, 
447                                        obd->obd_observer->obd_name,
448                                        tgt_obd->obd_name, rc);
449                                 break;
450                         }
451                 }
452                 lov_putref(obd);
453         }
454
455         RETURN(rc);
456 }
457
458 static int lov_add_target(struct obd_device *obd, struct obd_uuid *uuidp,
459                           __u32 index, int gen, int active)
460 {
461         struct lov_obd *lov = &obd->u.lov;
462         struct lov_tgt_desc *tgt;
463         int rc;
464         ENTRY;
465
466         CDEBUG(D_CONFIG, "uuid:%s idx:%d gen:%d active:%d\n",
467                uuidp->uuid, index, gen, active);
468
469         if (gen <= 0) {
470                 CERROR("request to add OBD %s with invalid generation: %d\n",
471                        uuidp->uuid, gen);
472                 RETURN(-EINVAL);
473         }
474
475         mutex_down(&lov->lov_lock);
476
477         if ((index < lov->lov_tgt_size) && (lov->lov_tgts[index] != NULL)) {
478                 tgt = lov->lov_tgts[index];
479                 CERROR("UUID %s already assigned at LOV target index %d\n",
480                        obd_uuid2str(&tgt->ltd_uuid), index);
481                 mutex_up(&lov->lov_lock);
482                 RETURN(-EEXIST);
483         }
484
485         if (index >= lov->lov_tgt_size) {
486                 /* We need to reallocate the lov target array. */
487                 struct lov_tgt_desc **newtgts, **old = NULL;
488                 __u32 newsize, oldsize = 0;
489
490                 newsize = max(lov->lov_tgt_size, (__u32)2);
491                 while (newsize < index + 1) 
492                         newsize = newsize << 1;
493                 OBD_ALLOC(newtgts, sizeof(*newtgts) * newsize);
494                 if (newtgts == NULL) {
495                         mutex_up(&lov->lov_lock);
496                         RETURN(-ENOMEM);
497                 }
498
499                 if (lov->lov_tgt_size) {
500                         memcpy(newtgts, lov->lov_tgts, sizeof(*newtgts) * 
501                                lov->lov_tgt_size);
502                         old = lov->lov_tgts;
503                         oldsize = lov->lov_tgt_size;
504                 }
505
506                 lov->lov_tgts = newtgts;
507                 lov->lov_tgt_size = newsize;
508 #ifdef __KERNEL__
509                 smp_rmb();
510 #endif
511                 if (old)
512                         OBD_FREE(old, sizeof(*old) * oldsize);
513
514                 CDEBUG(D_CONFIG, "tgts: %p size: %d\n",
515                        lov->lov_tgts, lov->lov_tgt_size);
516         }       
517
518
519         OBD_ALLOC_PTR(tgt);
520         if (!tgt) {
521                 mutex_up(&lov->lov_lock);
522                 RETURN(-ENOMEM);
523         }
524
525         memset(tgt, 0, sizeof(*tgt));
526         tgt->ltd_uuid = *uuidp;
527         /* XXX - add a sanity check on the generation number. */
528         tgt->ltd_gen = gen;
529         tgt->ltd_index = index;
530         tgt->ltd_activate = active;
531         lov->lov_tgts[index] = tgt;
532         if (index >= lov->desc.ld_tgt_count)
533                 lov->desc.ld_tgt_count = index + 1;
534         mutex_up(&lov->lov_lock);
535
536         CDEBUG(D_CONFIG, "idx=%d ltd_gen=%d ld_tgt_count=%d\n",
537                 index, tgt->ltd_gen, lov->desc.ld_tgt_count);
538         
539         if (lov->lov_connects == 0) { 
540                 /* lov_connect hasn't been called yet. We'll do the
541                    lov_connect_obd on this target when that fn first runs,
542                    because we don't know the connect flags yet. */
543                 RETURN(0);
544         }
545
546         lov_getref(obd);
547
548         rc = lov_connect_obd(obd, index, active, &lov->lov_ocd);
549         if (rc)
550                 GOTO(out, rc);
551
552         rc = lov_notify(obd, tgt->ltd_exp->exp_obd, 
553                         active ? OBD_NOTIFY_ACTIVE : OBD_NOTIFY_INACTIVE,
554                         (void *)&index);
555
556 out:
557         if (rc) {
558                 CERROR("add failed (%d), deleting %s\n", rc, 
559                        obd_uuid2str(&tgt->ltd_uuid));
560                 lov_del_target(obd, index, 0, 0);
561         }
562         lov_putref(obd);
563         RETURN(rc);
564 }
565
566 /* Schedule a target for deletion */
567 static int lov_del_target(struct obd_device *obd, __u32 index, 
568                           struct obd_uuid *uuidp, int gen)
569 {
570         struct lov_obd *lov = &obd->u.lov;
571         int count = lov->desc.ld_tgt_count;
572         int rc = 0;
573         ENTRY;
574
575         if (index >= count) {
576                 CERROR("LOV target index %d >= number of LOV OBDs %d.\n",
577                        index, count);
578                 RETURN(-EINVAL);
579         }
580
581         lov_getref(obd);
582
583         if (!lov->lov_tgts[index]) {
584                 CERROR("LOV target at index %d is not setup.\n", index);
585                 GOTO(out, rc = -EINVAL);
586         }
587
588         if (uuidp && !obd_uuid_equals(uuidp, &lov->lov_tgts[index]->ltd_uuid)) {
589                 CERROR("LOV target UUID %s at index %d doesn't match %s.\n",
590                        lov_uuid2str(lov, index), index,
591                        obd_uuid2str(uuidp));
592                 GOTO(out, rc = -EINVAL);
593         }
594
595         CDEBUG(D_CONFIG, "uuid: %s idx: %d gen: %d exp: %p active: %d\n",
596                lov_uuid2str(lov, index), index,
597                lov->lov_tgts[index]->ltd_gen, lov->lov_tgts[index]->ltd_exp, 
598                lov->lov_tgts[index]->ltd_active);
599
600         lov->lov_tgts[index]->ltd_reap = 1;
601         lov->lov_death_row++;
602         /* we really delete it from lov_putref */
603 out:
604         lov_putref(obd);
605
606         RETURN(rc);
607 }
608
609 /* We are holding lov_lock */
610 static void __lov_del_obd(struct obd_device *obd, __u32 index)
611 {
612         struct lov_obd *lov = &obd->u.lov;
613         struct obd_device *osc_obd;
614         struct lov_tgt_desc *tgt = lov->lov_tgts[index];
615
616         LASSERT(tgt);
617         LASSERT(tgt->ltd_reap);
618
619         osc_obd = class_exp2obd(tgt->ltd_exp);
620
621         CDEBUG(D_CONFIG, "Removing tgt %s : %s\n",
622                lov_uuid2str(lov, index), 
623                osc_obd ? osc_obd->obd_name : "<no obd>");
624
625         if (tgt->ltd_exp)
626                 lov_disconnect_obd(obd, index);
627
628         /* XXX - right now there is a dependency on ld_tgt_count being the
629          * maximum tgt index for computing the mds_max_easize. So we can't
630          * shrink it. */
631
632         lov->lov_tgts[index] = NULL;
633         OBD_FREE_PTR(tgt);        
634
635         /* Manual cleanup - no cleanup logs to clean up the osc's.  We must
636            do it ourselves. And we can't do it from lov_cleanup,
637            because we just lost our only reference to it. */
638         if (osc_obd) {
639                 /* Use lov's force/fail flags. */
640                 osc_obd->obd_force = obd->obd_force;
641                 osc_obd->obd_fail = obd->obd_fail;
642                 class_manual_cleanup(osc_obd);
643         }
644 }
645
646 void lov_fix_desc(struct lov_desc *desc)
647 {
648         if (desc->ld_default_stripe_size < PTLRPC_MAX_BRW_SIZE) {
649                 LCONSOLE_WARN("Increasing default stripe size to min %u\n",
650                               PTLRPC_MAX_BRW_SIZE);
651                 desc->ld_default_stripe_size = PTLRPC_MAX_BRW_SIZE;
652         } else if (desc->ld_default_stripe_size & (LOV_MIN_STRIPE_SIZE - 1)) {
653                 desc->ld_default_stripe_size &= ~(LOV_MIN_STRIPE_SIZE - 1);
654                 LCONSOLE_WARN("Changing default stripe size to "LPU64" (a "
655                               "multiple of %u)\n",
656                               desc->ld_default_stripe_size,LOV_MIN_STRIPE_SIZE);
657         }
658
659         if (desc->ld_default_stripe_count == 0)
660                 desc->ld_default_stripe_count = 1;
661
662         /* from lov_setstripe */
663         if ((desc->ld_pattern != 0) && 
664             (desc->ld_pattern != LOV_PATTERN_RAID0)) {
665                 LCONSOLE_WARN("Unknown stripe pattern: %#x\n",desc->ld_pattern);
666                 desc->ld_pattern = 0;
667         }
668         /* fix qos_maxage */
669         if (desc->ld_qos_maxage == 0)
670                 desc->ld_qos_maxage = QOS_DEFAULT_MAXAGE;
671 }
672
673 static int lov_setup(struct obd_device *obd, obd_count len, void *buf)
674 {
675         struct lprocfs_static_vars lvars;
676         struct lustre_cfg *lcfg = buf;
677         struct lov_desc *desc;
678         struct lov_obd *lov = &obd->u.lov;
679         int count;
680         ENTRY;
681
682         if (LUSTRE_CFG_BUFLEN(lcfg, 1) < 1) {
683                 CERROR("LOV setup requires a descriptor\n");
684                 RETURN(-EINVAL);
685         }
686
687         desc = (struct lov_desc *)lustre_cfg_buf(lcfg, 1);
688
689         if (sizeof(*desc) > LUSTRE_CFG_BUFLEN(lcfg, 1)) {
690                 CERROR("descriptor size wrong: %d > %d\n",
691                        (int)sizeof(*desc), LUSTRE_CFG_BUFLEN(lcfg, 1));
692                 RETURN(-EINVAL);
693         }
694
695         if (desc->ld_magic != LOV_DESC_MAGIC) {
696                 if (desc->ld_magic == __swab32(LOV_DESC_MAGIC)) {
697                             CDEBUG(D_OTHER, "%s: Swabbing lov desc %p\n",
698                                    obd->obd_name, desc);
699                             lustre_swab_lov_desc(desc);
700                 } else {
701                         CERROR("%s: Bad lov desc magic: %#x\n",
702                                obd->obd_name, desc->ld_magic);
703                         RETURN(-EINVAL);
704                 }
705         }
706
707         lov_fix_desc(desc);
708
709         /* Because of 64-bit divide/mod operations only work with a 32-bit
710          * divisor in a 32-bit kernel, we cannot support a stripe width
711          * of 4GB or larger on 32-bit CPUs. */
712         count = desc->ld_default_stripe_count;
713         if ((count > 0 ? count : desc->ld_tgt_count) *
714             desc->ld_default_stripe_size > 0xffffffff) {
715                 CERROR("LOV: stripe width "LPU64"x%u > 4294967295 bytes\n",
716                        desc->ld_default_stripe_size, count);
717                 RETURN(-EINVAL);
718         }
719
720         desc->ld_active_tgt_count = 0;
721         lov->desc = *desc;
722         lov->lov_tgt_size = 0;
723         sema_init(&lov->lov_lock, 1);
724         atomic_set(&lov->lov_refcount, 0);
725         INIT_LIST_HEAD(&lov->lov_qos.lq_oss_list);
726         init_rwsem(&lov->lov_qos.lq_rw_sem);
727         lov->lov_qos.lq_dirty = 1;
728         lov->lov_qos.lq_dirty_rr = 1;
729         lov->lov_qos.lq_reset = 1;
730         /* Default priority is toward free space balance */
731         lov->lov_qos.lq_prio_free = 232;
732
733         lprocfs_init_vars(lov, &lvars);
734         lprocfs_obd_setup(obd, lvars.obd_vars);
735 #ifdef LPROCFS
736         {
737                 cfs_proc_dir_entry_t *entry;
738
739                 entry = create_proc_entry("target_obd", 0444,
740                                           obd->obd_proc_entry);
741                 if (entry != NULL) {
742                         entry->proc_fops = &lov_proc_target_fops;
743                         entry->data = obd;
744                 }
745         }
746 #endif
747
748         RETURN(0);
749 }
750
751 static int lov_precleanup(struct obd_device *obd, enum obd_cleanup_stage stage)
752 {
753         int rc = 0;
754         ENTRY;
755
756         switch (stage) {
757         case OBD_CLEANUP_EARLY: {
758                 struct lov_obd *lov = &obd->u.lov;
759                 int i;
760                 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
761                         if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_active)
762                                 continue;
763                         obd_precleanup(class_exp2obd(lov->lov_tgts[i]->ltd_exp),
764                                        OBD_CLEANUP_EARLY);
765                 }
766                 break;
767         }
768         case OBD_CLEANUP_EXPORTS:
769                 break;
770         case OBD_CLEANUP_SELF_EXP:
771                 rc = obd_llog_finish(obd, 0);
772                 if (rc != 0)
773                         CERROR("failed to cleanup llogging subsystems\n");
774                 break;
775         case OBD_CLEANUP_OBD:
776                 break;
777         }
778         RETURN(rc);
779 }
780
781 static int lov_cleanup(struct obd_device *obd)
782 {
783         struct lov_obd *lov = &obd->u.lov;
784
785         lprocfs_obd_cleanup(obd);
786         if (lov->lov_tgts) {
787                 int i;
788                 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
789                         if (lov->lov_tgts[i]) {
790                                 /* Inactive targets may never have connected */
791                                 if (lov->lov_tgts[i]->ltd_active ||
792                                     atomic_read(&lov->lov_refcount)) 
793                                         /* We should never get here - these 
794                                            should have been removed in the 
795                                            disconnect. */
796                                         CERROR("lov tgt %d not cleaned!"
797                                                " deathrow=%d, lovrc=%d\n",
798                                                i, lov->lov_death_row, 
799                                                atomic_read(&lov->lov_refcount));
800                                 lov_del_target(obd, i, 0, 0);
801                         }
802                 }
803                 OBD_FREE(lov->lov_tgts, sizeof(*lov->lov_tgts) * 
804                          lov->lov_tgt_size);
805                 lov->lov_tgt_size = 0;
806         }
807         
808         if (lov->lov_qos.lq_rr_size) 
809                 OBD_FREE(lov->lov_qos.lq_rr_array, lov->lov_qos.lq_rr_size);
810
811         RETURN(0);
812 }
813
814 static int lov_process_config(struct obd_device *obd, obd_count len, void *buf)
815 {
816         struct lustre_cfg *lcfg = buf;
817         struct obd_uuid obd_uuid;
818         int cmd;
819         int rc = 0;
820         ENTRY;
821
822         switch(cmd = lcfg->lcfg_command) {
823         case LCFG_LOV_ADD_OBD:
824         case LCFG_LOV_ADD_INA:
825         case LCFG_LOV_DEL_OBD: {
826                 __u32 index;
827                 int gen;
828                 /* lov_modify_tgts add  0:lov_mdsA  1:ost1_UUID  2:0  3:1 */
829                 if (LUSTRE_CFG_BUFLEN(lcfg, 1) > sizeof(obd_uuid.uuid))
830                         GOTO(out, rc = -EINVAL);
831
832                 obd_str2uuid(&obd_uuid,  lustre_cfg_buf(lcfg, 1));
833
834                 if (sscanf(lustre_cfg_buf(lcfg, 2), "%d", &index) != 1)
835                         GOTO(out, rc = -EINVAL);
836                 if (sscanf(lustre_cfg_buf(lcfg, 3), "%d", &gen) != 1)
837                         GOTO(out, rc = -EINVAL);
838                 if (cmd == LCFG_LOV_ADD_OBD)
839                         rc = lov_add_target(obd, &obd_uuid, index, gen, 1);
840                 else if (cmd == LCFG_LOV_ADD_INA)
841                         rc = lov_add_target(obd, &obd_uuid, index, gen, 0);
842                 else
843                         rc = lov_del_target(obd, index, &obd_uuid, gen);
844                 GOTO(out, rc);
845         }
846         case LCFG_PARAM: {
847                 struct lprocfs_static_vars lvars;
848                 struct lov_desc *desc = &(obd->u.lov.desc);
849                 
850                 if (!desc)
851                         GOTO(out, rc = -EINVAL);
852                 
853                 lprocfs_init_vars(lov, &lvars);
854                 
855                 rc = class_process_proc_param(PARAM_LOV, lvars.obd_vars,
856                                               lcfg, obd);
857                 GOTO(out, rc);
858         }
859         default: {
860                 CERROR("Unknown command: %d\n", lcfg->lcfg_command);
861                 GOTO(out, rc = -EINVAL);
862
863         }
864         }
865 out:
866         RETURN(rc);
867 }
868
869 #ifndef log2
870 #define log2(n) ffz(~(n))
871 #endif
872
873 static int lov_clear_orphans(struct obd_export *export, struct obdo *src_oa,
874                              struct lov_stripe_md **ea,
875                              struct obd_trans_info *oti)
876 {
877         struct lov_obd *lov;
878         struct obdo *tmp_oa;
879         struct obd_uuid *ost_uuid = NULL;
880         int rc = 0, i;
881         ENTRY;
882
883         LASSERT(src_oa->o_valid & OBD_MD_FLFLAGS &&
884                 src_oa->o_flags == OBD_FL_DELORPHAN);
885
886         lov = &export->exp_obd->u.lov;
887
888         tmp_oa = obdo_alloc();
889         if (tmp_oa == NULL)
890                 RETURN(-ENOMEM);
891
892         if (src_oa->o_valid & OBD_MD_FLINLINE) {
893                 ost_uuid = (struct obd_uuid *)src_oa->o_inline;
894                 CDEBUG(D_HA, "clearing orphans only for %s\n",
895                        ost_uuid->uuid);
896         }
897
898         lov_getref(export->exp_obd);
899         for (i = 0; i < lov->desc.ld_tgt_count; i++) {
900                 struct lov_stripe_md obj_md;
901                 struct lov_stripe_md *obj_mdp = &obj_md;
902                 struct lov_tgt_desc *tgt;
903                 int err;
904
905                 tgt = lov->lov_tgts[i];
906                 if (!tgt)
907                         continue;
908
909                 /* if called for a specific target, we don't
910                    care if it is not active. */
911                 if (!lov->lov_tgts[i]->ltd_active == 0 && ost_uuid == NULL) {
912                         CDEBUG(D_HA, "lov idx %d inactive\n", i);
913                         continue;
914                 }
915
916                 if (ost_uuid && !obd_uuid_equals(ost_uuid, &tgt->ltd_uuid))
917                         continue;
918
919                 CDEBUG(D_CONFIG,"Clear orphans for %d:%s\n", i, 
920                        obd_uuid2str(ost_uuid));
921
922                 memcpy(tmp_oa, src_oa, sizeof(*tmp_oa));
923
924                 LASSERT(lov->lov_tgts[i]->ltd_exp);
925                 /* XXX: LOV STACKING: use real "obj_mdp" sub-data */
926                 err = obd_create(lov->lov_tgts[i]->ltd_exp, 
927                                  tmp_oa, &obj_mdp, oti);
928                 if (err)
929                         /* This export will be disabled until it is recovered,
930                            and then orphan recovery will be completed. */
931                         CERROR("error in orphan recovery on OST idx %d/%d: "
932                                "rc = %d\n", i, lov->desc.ld_tgt_count, err);
933
934                 if (ost_uuid)
935                         break;
936         }
937         lov_putref(export->exp_obd);
938
939         obdo_free(tmp_oa);
940         RETURN(rc);
941 }
942
943 static int lov_recreate(struct obd_export *exp, struct obdo *src_oa,
944                         struct lov_stripe_md **ea, struct obd_trans_info *oti)
945 {
946         struct lov_stripe_md *obj_mdp, *lsm;
947         struct lov_obd *lov = &exp->exp_obd->u.lov;
948         unsigned ost_idx;
949         int rc, i;
950         ENTRY;
951
952         LASSERT(src_oa->o_valid & OBD_MD_FLFLAGS &&
953                 src_oa->o_flags & OBD_FL_RECREATE_OBJS);
954
955         OBD_ALLOC(obj_mdp, sizeof(*obj_mdp));
956         if (obj_mdp == NULL)
957                 RETURN(-ENOMEM);
958
959         ost_idx = src_oa->o_nlink;
960         lsm = *ea;
961         if (lsm == NULL)
962                 GOTO(out, rc = -EINVAL);
963         if (ost_idx >= lov->desc.ld_tgt_count ||
964             !lov->lov_tgts[ost_idx])
965                 GOTO(out, rc = -EINVAL);
966
967         for (i = 0; i < lsm->lsm_stripe_count; i++) {
968                 if (lsm->lsm_oinfo[i]->loi_ost_idx == ost_idx) {
969                         if (lsm->lsm_oinfo[i]->loi_id != src_oa->o_id)
970                                 GOTO(out, rc = -EINVAL);
971                         break;
972                 }
973         }
974         if (i == lsm->lsm_stripe_count)
975                 GOTO(out, rc = -EINVAL);
976
977         rc = obd_create(lov->lov_tgts[ost_idx]->ltd_exp, src_oa, &obj_mdp, oti);
978 out:
979         OBD_FREE(obj_mdp, sizeof(*obj_mdp));
980         RETURN(rc);
981 }
982
983 /* the LOV expects oa->o_id to be set to the LOV object id */
984 static int lov_create(struct obd_export *exp, struct obdo *src_oa,
985                       struct lov_stripe_md **ea, struct obd_trans_info *oti)
986 {
987         struct lov_obd *lov;
988         struct obd_info oinfo;
989         struct lov_request_set *set = NULL;
990         struct lov_request *req;
991         struct obd_statfs osfs;
992         __u64 maxage;
993         int rc = 0;
994         ENTRY;
995
996         LASSERT(ea != NULL);
997         if (exp == NULL)
998                 RETURN(-EINVAL);
999
1000         if ((src_oa->o_valid & OBD_MD_FLFLAGS) &&
1001             src_oa->o_flags == OBD_FL_DELORPHAN) {
1002                 rc = lov_clear_orphans(exp, src_oa, ea, oti);
1003                 RETURN(rc);
1004         }
1005
1006         lov = &exp->exp_obd->u.lov;
1007         if (!lov->desc.ld_active_tgt_count)
1008                 RETURN(-EIO);
1009
1010         /* Recreate a specific object id at the given OST index */
1011         if ((src_oa->o_valid & OBD_MD_FLFLAGS) &&
1012             (src_oa->o_flags & OBD_FL_RECREATE_OBJS)) {
1013                  rc = lov_recreate(exp, src_oa, ea, oti);
1014                  RETURN(rc);
1015         }
1016
1017         maxage = cfs_time_shift_64(-lov->desc.ld_qos_maxage);
1018         obd_statfs_rqset(exp->exp_obd, &osfs, maxage);
1019
1020         rc = lov_prep_create_set(exp, &oinfo, ea, src_oa, oti, &set);
1021         if (rc)
1022                 RETURN(rc);
1023
1024         list_for_each_entry(req, &set->set_list, rq_link) {
1025                 /* XXX: LOV STACKING: use real "obj_mdp" sub-data */
1026                 rc = obd_create(lov->lov_tgts[req->rq_idx]->ltd_exp,
1027                                 req->rq_oi.oi_oa, &req->rq_oi.oi_md, oti);
1028                 lov_update_create_set(set, req, rc);
1029         }
1030         rc = lov_fini_create_set(set, ea);
1031         RETURN(rc);
1032 }
1033
1034 #define ASSERT_LSM_MAGIC(lsmp)                                                  \
1035 do {                                                                            \
1036         LASSERT((lsmp) != NULL);                                                \
1037         LASSERTF(((lsmp)->lsm_magic == LOV_MAGIC ||                             \
1038                  (lsmp)->lsm_magic == LOV_MAGIC_JOIN), "%p->lsm_magic=%x\n",    \
1039                  (lsmp), (lsmp)->lsm_magic);                                    \
1040 } while (0)
1041
1042 static int lov_destroy(struct obd_export *exp, struct obdo *oa,
1043                        struct lov_stripe_md *lsm, struct obd_trans_info *oti,
1044                        struct obd_export *md_exp)
1045 {
1046         struct lov_request_set *set;
1047         struct obd_info oinfo;
1048         struct lov_request *req;
1049         struct list_head *pos;
1050         struct lov_obd *lov;
1051         int rc = 0, err;
1052         ENTRY;
1053
1054         ASSERT_LSM_MAGIC(lsm);
1055
1056         if (!exp || !exp->exp_obd)
1057                 RETURN(-ENODEV);
1058
1059         if (oa->o_valid & OBD_MD_FLCOOKIE) {
1060                 LASSERT(oti);
1061                 LASSERT(oti->oti_logcookies);
1062         }
1063
1064         lov = &exp->exp_obd->u.lov;
1065         rc = lov_prep_destroy_set(exp, &oinfo, oa, lsm, oti, &set);
1066         if (rc)
1067                 RETURN(rc);
1068
1069         list_for_each (pos, &set->set_list) {
1070                 int err;
1071                 req = list_entry(pos, struct lov_request, rq_link);
1072
1073                 if (oa->o_valid & OBD_MD_FLCOOKIE)
1074                         oti->oti_logcookies = set->set_cookies + req->rq_stripe;
1075
1076                 err = obd_destroy(lov->lov_tgts[req->rq_idx]->ltd_exp,
1077                                   req->rq_oi.oi_oa, NULL, oti, NULL);
1078                 err = lov_update_common_set(set, req, err);
1079                 if (err) {
1080                         CERROR("error: destroying objid "LPX64" subobj "
1081                                LPX64" on OST idx %d: rc = %d\n",
1082                                oa->o_id, req->rq_oi.oi_oa->o_id,
1083                                req->rq_idx, err);
1084                         if (!rc)
1085                                 rc = err;
1086                 }
1087         }
1088
1089         if (rc == 0) {
1090                 LASSERT(lsm_op_find(lsm->lsm_magic) != NULL);
1091                 rc = lsm_op_find(lsm->lsm_magic)->lsm_destroy(lsm, oa, md_exp);
1092         }
1093         err = lov_fini_destroy_set(set);
1094         RETURN(rc ? rc : err);
1095 }
1096
1097 static int lov_getattr(struct obd_export *exp, struct obd_info *oinfo)
1098 {
1099         struct lov_request_set *set;
1100         struct lov_request *req;
1101         struct list_head *pos;
1102         struct lov_obd *lov;
1103         int err = 0, rc = 0;
1104         ENTRY;
1105
1106         LASSERT(oinfo);
1107         ASSERT_LSM_MAGIC(oinfo->oi_md);
1108
1109         if (!exp || !exp->exp_obd)
1110                 RETURN(-ENODEV);
1111
1112         lov = &exp->exp_obd->u.lov;
1113
1114         rc = lov_prep_getattr_set(exp, oinfo, &set);
1115         if (rc)
1116                 RETURN(rc);
1117
1118         list_for_each (pos, &set->set_list) {
1119                 req = list_entry(pos, struct lov_request, rq_link);
1120
1121                 CDEBUG(D_INFO, "objid "LPX64"[%d] has subobj "LPX64" at idx "
1122                        "%u\n", oinfo->oi_oa->o_id, req->rq_stripe, 
1123                        req->rq_oi.oi_oa->o_id, req->rq_idx);
1124
1125                 rc = obd_getattr(lov->lov_tgts[req->rq_idx]->ltd_exp,
1126                                  &req->rq_oi);
1127                 err = lov_update_common_set(set, req, rc);
1128                 if (err) {
1129                         CERROR("error: getattr objid "LPX64" subobj "
1130                                LPX64" on OST idx %d: rc = %d\n",
1131                                oinfo->oi_oa->o_id, req->rq_oi.oi_oa->o_id,
1132                                req->rq_idx, err);
1133                         break;
1134                 }
1135         }
1136
1137         rc = lov_fini_getattr_set(set);
1138         if (err)
1139                 rc = err;
1140         RETURN(rc);
1141 }
1142
1143 static int lov_getattr_interpret(struct ptlrpc_request_set *rqset, 
1144                                  void *data, int rc)
1145 {
1146         struct lov_request_set *lovset = (struct lov_request_set *)data;
1147         int err;
1148         ENTRY;
1149
1150         /* don't do attribute merge if this aysnc op failed */
1151         if (rc)
1152                 lovset->set_completes = 0;
1153         err = lov_fini_getattr_set(lovset);
1154         RETURN(rc ? rc : err);
1155 }
1156
1157 static int lov_getattr_async(struct obd_export *exp, struct obd_info *oinfo,
1158                               struct ptlrpc_request_set *rqset)
1159 {
1160         struct lov_request_set *lovset;
1161         struct lov_obd *lov;
1162         struct list_head *pos;
1163         struct lov_request *req;
1164         int rc = 0, err;
1165         ENTRY;
1166
1167         LASSERT(oinfo);
1168         ASSERT_LSM_MAGIC(oinfo->oi_md);
1169
1170         if (!exp || !exp->exp_obd)
1171                 RETURN(-ENODEV);
1172
1173         lov = &exp->exp_obd->u.lov;
1174
1175         rc = lov_prep_getattr_set(exp, oinfo, &lovset);
1176         if (rc)
1177                 RETURN(rc);
1178
1179         CDEBUG(D_INFO, "objid "LPX64": %ux%u byte stripes\n",
1180                oinfo->oi_md->lsm_object_id, oinfo->oi_md->lsm_stripe_count, 
1181                oinfo->oi_md->lsm_stripe_size);
1182
1183         list_for_each (pos, &lovset->set_list) {
1184                 req = list_entry(pos, struct lov_request, rq_link);
1185
1186                 CDEBUG(D_INFO, "objid "LPX64"[%d] has subobj "LPX64" at idx "
1187                        "%u\n", oinfo->oi_oa->o_id, req->rq_stripe, 
1188                        req->rq_oi.oi_oa->o_id, req->rq_idx);
1189                 rc = obd_getattr_async(lov->lov_tgts[req->rq_idx]->ltd_exp,
1190                                        &req->rq_oi, rqset);
1191                 if (rc) {
1192                         CERROR("error: getattr objid "LPX64" subobj "
1193                                LPX64" on OST idx %d: rc = %d\n",
1194                                oinfo->oi_oa->o_id, req->rq_oi.oi_oa->o_id,
1195                                req->rq_idx, rc);
1196                         GOTO(out, rc);
1197                 }
1198         }
1199
1200         if (!list_empty(&rqset->set_requests)) {
1201                 LASSERT(rc == 0);
1202                 LASSERT (rqset->set_interpret == NULL);
1203                 rqset->set_interpret = lov_getattr_interpret;
1204                 rqset->set_arg = (void *)lovset;
1205                 RETURN(rc);
1206         }
1207 out:
1208         if (rc)
1209                 lovset->set_completes = 0;
1210         err = lov_fini_getattr_set(lovset);
1211         RETURN(rc ? rc : err);
1212 }
1213
1214 static int lov_setattr(struct obd_export *exp, struct obd_info *oinfo,
1215                        struct obd_trans_info *oti)
1216 {
1217         struct lov_request_set *set;
1218         struct lov_obd *lov;
1219         struct list_head *pos;
1220         struct lov_request *req;
1221         int err = 0, rc = 0;
1222         ENTRY;
1223
1224         LASSERT(oinfo);
1225         ASSERT_LSM_MAGIC(oinfo->oi_md);
1226
1227         if (!exp || !exp->exp_obd)
1228                 RETURN(-ENODEV);
1229
1230         /* for now, we only expect the following updates here */
1231         LASSERT(!(oinfo->oi_oa->o_valid & ~(OBD_MD_FLID | OBD_MD_FLTYPE | 
1232                                             OBD_MD_FLMODE | OBD_MD_FLATIME | 
1233                                             OBD_MD_FLMTIME | OBD_MD_FLCTIME |
1234                                             OBD_MD_FLFLAGS | OBD_MD_FLSIZE | 
1235                                             OBD_MD_FLGROUP | OBD_MD_FLUID | 
1236                                             OBD_MD_FLGID | OBD_MD_FLINLINE |
1237                                             OBD_MD_FLFID | OBD_MD_FLGENER)));
1238         lov = &exp->exp_obd->u.lov;
1239         rc = lov_prep_setattr_set(exp, oinfo, oti, &set);
1240         if (rc)
1241                 RETURN(rc);
1242
1243         list_for_each (pos, &set->set_list) {
1244                 req = list_entry(pos, struct lov_request, rq_link);
1245
1246                 rc = obd_setattr(lov->lov_tgts[req->rq_idx]->ltd_exp, 
1247                                  &req->rq_oi, NULL);
1248                 err = lov_update_setattr_set(set, req, rc);
1249                 if (err) {
1250                         CERROR("error: setattr objid "LPX64" subobj "
1251                                LPX64" on OST idx %d: rc = %d\n",
1252                                set->set_oi->oi_oa->o_id, 
1253                                req->rq_oi.oi_oa->o_id, req->rq_idx, err);
1254                         if (!rc)
1255                                 rc = err;
1256                 }
1257         }
1258         err = lov_fini_setattr_set(set);
1259         if (!rc)
1260                 rc = err;
1261         RETURN(rc);
1262 }
1263
1264 static int lov_setattr_interpret(struct ptlrpc_request_set *rqset,
1265                                  void *data, int rc)
1266 {
1267         struct lov_request_set *lovset = (struct lov_request_set *)data;
1268         int err;
1269         ENTRY;
1270
1271         if (rc)
1272                 lovset->set_completes = 0;
1273         err = lov_fini_setattr_set(lovset);
1274         RETURN(rc ? rc : err);
1275 }
1276
1277 /* If @oti is given, the request goes from MDS and responses from OSTs are not
1278    needed. Otherwise, a client is waiting for responses. */
1279 static int lov_setattr_async(struct obd_export *exp, struct obd_info *oinfo,
1280                              struct obd_trans_info *oti,
1281                              struct ptlrpc_request_set *rqset)
1282 {
1283         struct lov_request_set *set;
1284         struct lov_request *req;
1285         struct list_head *pos;
1286         struct lov_obd *lov;
1287         int rc = 0;
1288         ENTRY;
1289
1290         LASSERT(oinfo);
1291         ASSERT_LSM_MAGIC(oinfo->oi_md);
1292         if (oinfo->oi_oa->o_valid & OBD_MD_FLCOOKIE) {
1293                 LASSERT(oti);
1294                 LASSERT(oti->oti_logcookies);
1295         }
1296
1297         if (!exp || !exp->exp_obd)
1298                 RETURN(-ENODEV);
1299
1300         lov = &exp->exp_obd->u.lov;
1301         rc = lov_prep_setattr_set(exp, oinfo, oti, &set);
1302         if (rc)
1303                 RETURN(rc);
1304
1305         CDEBUG(D_INFO, "objid "LPX64": %ux%u byte stripes\n",
1306                oinfo->oi_md->lsm_object_id, oinfo->oi_md->lsm_stripe_count,
1307                oinfo->oi_md->lsm_stripe_size);
1308
1309         list_for_each (pos, &set->set_list) {
1310                 req = list_entry(pos, struct lov_request, rq_link);
1311
1312                 if (oinfo->oi_oa->o_valid & OBD_MD_FLCOOKIE)
1313                         oti->oti_logcookies = set->set_cookies + req->rq_stripe;
1314
1315                 CDEBUG(D_INFO, "objid "LPX64"[%d] has subobj "LPX64" at idx "
1316                        "%u\n", oinfo->oi_oa->o_id, req->rq_stripe,
1317                        req->rq_oi.oi_oa->o_id, req->rq_idx);
1318
1319                 rc = obd_setattr_async(lov->lov_tgts[req->rq_idx]->ltd_exp,
1320                                        &req->rq_oi, oti, rqset);
1321                 if (rc) {
1322                         CERROR("error: setattr objid "LPX64" subobj "
1323                                LPX64" on OST idx %d: rc = %d\n",
1324                                set->set_oi->oi_oa->o_id,
1325                                req->rq_oi.oi_oa->o_id,
1326                                req->rq_idx, rc);
1327                         break;
1328                 }
1329         }
1330
1331         /* If we are not waiting for responses on async requests, return. */
1332         if (rc || !rqset || list_empty(&rqset->set_requests)) {
1333                 int err;
1334                 if (rc)
1335                         set->set_completes = 0;
1336                 err = lov_fini_setattr_set(set);
1337                 RETURN(rc ? rc : err);
1338         }
1339
1340         LASSERT(rqset->set_interpret == NULL);
1341         rqset->set_interpret = lov_setattr_interpret;
1342         rqset->set_arg = (void *)set;
1343
1344         RETURN(0);
1345 }
1346
1347 static int lov_punch_interpret(struct ptlrpc_request_set *rqset,
1348                                void *data, int rc)
1349 {
1350         struct lov_request_set *lovset = (struct lov_request_set *)data;
1351         int err;
1352         ENTRY;
1353
1354         if (rc)
1355                 lovset->set_completes = 0;
1356         err = lov_fini_punch_set(lovset);
1357         RETURN(rc ? rc : err);
1358 }
1359
1360 /* FIXME: maybe we'll just make one node the authoritative attribute node, then
1361  * we can send this 'punch' to just the authoritative node and the nodes
1362  * that the punch will affect. */
1363 static int lov_punch(struct obd_export *exp, struct obd_info *oinfo,
1364                      struct obd_trans_info *oti,
1365                      struct ptlrpc_request_set *rqset)
1366 {
1367         struct lov_request_set *set;
1368         struct lov_obd *lov;
1369         struct list_head *pos;
1370         struct lov_request *req;
1371         int rc = 0;
1372         ENTRY;
1373
1374         LASSERT(oinfo);
1375         ASSERT_LSM_MAGIC(oinfo->oi_md);
1376
1377         if (!exp || !exp->exp_obd)
1378                 RETURN(-ENODEV);
1379
1380         lov = &exp->exp_obd->u.lov;
1381         rc = lov_prep_punch_set(exp, oinfo, oti, &set);
1382         if (rc)
1383                 RETURN(rc);
1384
1385         list_for_each (pos, &set->set_list) {
1386                 req = list_entry(pos, struct lov_request, rq_link);
1387
1388                 rc = obd_punch(lov->lov_tgts[req->rq_idx]->ltd_exp,
1389                                &req->rq_oi, NULL, rqset);
1390                 if (rc) {
1391                         CERROR("error: punch objid "LPX64" subobj "LPX64
1392                                " on OST idx %d: rc = %d\n",
1393                                set->set_oi->oi_oa->o_id,
1394                                req->rq_oi.oi_oa->o_id, req->rq_idx, rc);
1395                         break;
1396                 }
1397         }
1398
1399         if (rc || list_empty(&rqset->set_requests)) {
1400                 int err;
1401                 err = lov_fini_punch_set(set);
1402                 RETURN(rc ? rc : err);
1403         }
1404
1405         LASSERT(rqset->set_interpret == NULL);
1406         rqset->set_interpret = lov_punch_interpret;
1407         rqset->set_arg = (void *)set;
1408
1409         RETURN(0);
1410 }
1411
1412 static int lov_sync(struct obd_export *exp, struct obdo *oa,
1413                     struct lov_stripe_md *lsm, obd_off start, obd_off end)
1414 {
1415         struct lov_request_set *set;
1416         struct obd_info oinfo;
1417         struct lov_obd *lov;
1418         struct list_head *pos;
1419         struct lov_request *req;
1420         int err = 0, rc = 0;
1421         ENTRY;
1422
1423         ASSERT_LSM_MAGIC(lsm);
1424
1425         if (!exp->exp_obd)
1426                 RETURN(-ENODEV);
1427
1428         lov = &exp->exp_obd->u.lov;
1429         rc = lov_prep_sync_set(exp, &oinfo, oa, lsm, start, end, &set);
1430         if (rc)
1431                 RETURN(rc);
1432
1433         list_for_each (pos, &set->set_list) {
1434                 req = list_entry(pos, struct lov_request, rq_link);
1435
1436                 rc = obd_sync(lov->lov_tgts[req->rq_idx]->ltd_exp, 
1437                               req->rq_oi.oi_oa, NULL, 
1438                               req->rq_oi.oi_policy.l_extent.start,
1439                               req->rq_oi.oi_policy.l_extent.end);
1440                 err = lov_update_common_set(set, req, rc);
1441                 if (err) {
1442                         CERROR("error: fsync objid "LPX64" subobj "LPX64
1443                                " on OST idx %d: rc = %d\n",
1444                                set->set_oi->oi_oa->o_id,
1445                                req->rq_oi.oi_oa->o_id, req->rq_idx, rc);
1446                         if (!rc)
1447                                 rc = err;
1448                 }
1449         }
1450         err = lov_fini_sync_set(set);
1451         if (!rc)
1452                 rc = err;
1453         RETURN(rc);
1454 }
1455
1456 static int lov_brw_check(struct lov_obd *lov, struct obd_info *lov_oinfo,
1457                          obd_count oa_bufs, struct brw_page *pga)
1458 {
1459         struct obd_info oinfo = { { { 0 } } };
1460         int i, rc = 0;
1461
1462         oinfo.oi_oa = lov_oinfo->oi_oa;
1463
1464         /* The caller just wants to know if there's a chance that this
1465          * I/O can succeed */
1466         for (i = 0; i < oa_bufs; i++) {
1467                 int stripe = lov_stripe_number(lov_oinfo->oi_md, pga[i].off);
1468                 int ost = lov_oinfo->oi_md->lsm_oinfo[stripe]->loi_ost_idx;
1469                 obd_off start, end;
1470
1471                 if (!lov_stripe_intersects(lov_oinfo->oi_md, i, pga[i].off,
1472                                            pga[i].off + pga[i].count,
1473                                            &start, &end))
1474                         continue;
1475
1476                 if (!lov->lov_tgts[ost] || !lov->lov_tgts[ost]->ltd_active) {
1477                         CDEBUG(D_HA, "lov idx %d inactive\n", ost);
1478                         return -EIO;
1479                 }
1480
1481                 rc = obd_brw(OBD_BRW_CHECK, lov->lov_tgts[ost]->ltd_exp, &oinfo,
1482                              1, &pga[i], NULL);
1483                 if (rc)
1484                         break;
1485         }
1486         return rc;
1487 }
1488
1489 static int lov_brw(int cmd, struct obd_export *exp, struct obd_info *oinfo,
1490                    obd_count oa_bufs, struct brw_page *pga,
1491                    struct obd_trans_info *oti)
1492 {
1493         struct lov_request_set *set;
1494         struct lov_request *req;
1495         struct list_head *pos;
1496         struct lov_obd *lov = &exp->exp_obd->u.lov;
1497         int err, rc = 0;
1498         ENTRY;
1499
1500         ASSERT_LSM_MAGIC(oinfo->oi_md);
1501
1502         if (cmd == OBD_BRW_CHECK) {
1503                 rc = lov_brw_check(lov, oinfo, oa_bufs, pga);
1504                 RETURN(rc);
1505         }
1506
1507         rc = lov_prep_brw_set(exp, oinfo, oa_bufs, pga, oti, &set);
1508         if (rc)
1509                 RETURN(rc);
1510
1511         list_for_each (pos, &set->set_list) {
1512                 struct obd_export *sub_exp;
1513                 struct brw_page *sub_pga;
1514                 req = list_entry(pos, struct lov_request, rq_link);
1515
1516                 sub_exp = lov->lov_tgts[req->rq_idx]->ltd_exp;
1517                 sub_pga = set->set_pga + req->rq_pgaidx;
1518                 rc = obd_brw(cmd, sub_exp, &req->rq_oi, req->rq_oabufs,
1519                              sub_pga, oti);
1520                 if (rc)
1521                         break;
1522                 lov_update_common_set(set, req, rc);
1523         }
1524
1525         err = lov_fini_brw_set(set);
1526         if (!rc)
1527                 rc = err;
1528         RETURN(rc);
1529 }
1530
1531 static int lov_brw_interpret(struct ptlrpc_request_set *reqset, void *data,
1532                              int rc)
1533 {
1534         struct lov_request_set *lovset = (struct lov_request_set *)data;
1535         ENTRY;
1536
1537         if (rc) {
1538                 lovset->set_completes = 0;
1539                 lov_fini_brw_set(lovset);
1540         } else {
1541                 rc = lov_fini_brw_set(lovset);
1542         }
1543
1544         RETURN(rc);
1545 }
1546
1547 static int lov_brw_async(int cmd, struct obd_export *exp,
1548                          struct obd_info *oinfo, obd_count oa_bufs,
1549                          struct brw_page *pga, struct obd_trans_info *oti,
1550                          struct ptlrpc_request_set *set)
1551 {
1552         struct lov_request_set *lovset;
1553         struct lov_request *req;
1554         struct list_head *pos;
1555         struct lov_obd *lov = &exp->exp_obd->u.lov;
1556         int rc = 0;
1557         ENTRY;
1558
1559         LASSERT(oinfo);
1560         ASSERT_LSM_MAGIC(oinfo->oi_md);
1561
1562         if (cmd == OBD_BRW_CHECK) {
1563                 rc = lov_brw_check(lov, oinfo, oa_bufs, pga);
1564                 RETURN(rc);
1565         }
1566
1567         rc = lov_prep_brw_set(exp, oinfo, oa_bufs, pga, oti, &lovset);
1568         if (rc)
1569                 RETURN(rc);
1570
1571         list_for_each (pos, &lovset->set_list) {
1572                 struct obd_export *sub_exp;
1573                 struct brw_page *sub_pga;
1574                 req = list_entry(pos, struct lov_request, rq_link);
1575
1576                 sub_exp = lov->lov_tgts[req->rq_idx]->ltd_exp;
1577                 sub_pga = lovset->set_pga + req->rq_pgaidx;
1578                 rc = obd_brw_async(cmd, sub_exp, &req->rq_oi, req->rq_oabufs,
1579                                    sub_pga, oti, set);
1580                 if (rc)
1581                         GOTO(out, rc);
1582                 lov_update_common_set(lovset, req, rc);
1583         }
1584         LASSERT(rc == 0);
1585         LASSERT(set->set_interpret == NULL);
1586         set->set_interpret = (set_interpreter_func)lov_brw_interpret;
1587         set->set_arg = (void *)lovset;
1588
1589         RETURN(rc);
1590 out:
1591         lov_fini_brw_set(lovset);
1592         RETURN(rc);
1593 }
1594
1595 static int lov_ap_make_ready(void *data, int cmd)
1596 {
1597         struct lov_async_page *lap = LAP_FROM_COOKIE(data);
1598
1599         return lap->lap_caller_ops->ap_make_ready(lap->lap_caller_data, cmd);
1600 }
1601
1602 static int lov_ap_refresh_count(void *data, int cmd)
1603 {
1604         struct lov_async_page *lap = LAP_FROM_COOKIE(data);
1605
1606         return lap->lap_caller_ops->ap_refresh_count(lap->lap_caller_data,
1607                                                      cmd);
1608 }
1609
1610 static void lov_ap_fill_obdo(void *data, int cmd, struct obdo *oa)
1611 {
1612         struct lov_async_page *lap = LAP_FROM_COOKIE(data);
1613
1614         lap->lap_caller_ops->ap_fill_obdo(lap->lap_caller_data, cmd, oa);
1615         /* XXX woah, shouldn't we be altering more here?  size? */
1616         oa->o_id = lap->lap_loi_id;
1617         oa->o_stripe_idx = lap->lap_stripe;
1618 }
1619
1620 static void lov_ap_update_obdo(void *data, int cmd, struct obdo *oa,
1621                                obd_valid valid)
1622 {
1623         struct lov_async_page *lap = LAP_FROM_COOKIE(data);
1624
1625         lap->lap_caller_ops->ap_update_obdo(lap->lap_caller_data, cmd,oa,valid);
1626 }
1627
1628 static int lov_ap_completion(void *data, int cmd, struct obdo *oa, int rc)
1629 {
1630         struct lov_async_page *lap = LAP_FROM_COOKIE(data);
1631
1632         /* in a raid1 regime this would down a count of many ios
1633          * in flight, onl calling the caller_ops completion when all
1634          * the raid1 ios are complete */
1635         rc = lap->lap_caller_ops->ap_completion(lap->lap_caller_data,cmd,oa,rc);
1636         return rc;
1637 }
1638
1639 static struct obd_async_page_ops lov_async_page_ops = {
1640         .ap_make_ready =        lov_ap_make_ready,
1641         .ap_refresh_count =     lov_ap_refresh_count,
1642         .ap_fill_obdo =         lov_ap_fill_obdo,
1643         .ap_update_obdo =       lov_ap_update_obdo,
1644         .ap_completion =        lov_ap_completion,
1645 };
1646
1647 int lov_prep_async_page(struct obd_export *exp, struct lov_stripe_md *lsm,
1648                            struct lov_oinfo *loi, cfs_page_t *page,
1649                            obd_off offset, struct obd_async_page_ops *ops,
1650                            void *data, void **res)
1651 {
1652         struct lov_obd *lov = &exp->exp_obd->u.lov;
1653         struct lov_async_page *lap;
1654         int rc = 0;
1655         ENTRY;
1656
1657         if (!page) {
1658                 int i = 0;
1659                 /* Find an existing osc so we can get it's stupid sizeof(*oap).
1660                    Only because of this layering limitation will a client 
1661                    mount with no osts fail */
1662                 while (!lov->lov_tgts || !lov->lov_tgts[i] || 
1663                        !lov->lov_tgts[i]->ltd_exp) {
1664                         i++;
1665                         if (i >= lov->desc.ld_tgt_count) 
1666                                 RETURN(-ENOMEDIUM);
1667                 }
1668                 rc = size_round(sizeof(*lap)) +
1669                         obd_prep_async_page(lov->lov_tgts[i]->ltd_exp, NULL,
1670                                             NULL, NULL, 0, NULL, NULL, NULL);
1671                 RETURN(rc);
1672         }
1673         ASSERT_LSM_MAGIC(lsm);
1674         LASSERT(loi == NULL);
1675
1676         lap = *res;
1677         lap->lap_magic = LOV_AP_MAGIC;
1678         lap->lap_caller_ops = ops;
1679         lap->lap_caller_data = data;
1680
1681         /* for now only raid 0 which passes through */
1682         lap->lap_stripe = lov_stripe_number(lsm, offset);
1683         lov_stripe_offset(lsm, offset, lap->lap_stripe, &lap->lap_sub_offset);
1684         loi = lsm->lsm_oinfo[lap->lap_stripe];
1685
1686         /* so the callback doesn't need the lsm */
1687         lap->lap_loi_id = loi->loi_id;
1688
1689         lap->lap_sub_cookie = (void *)lap + size_round(sizeof(*lap));
1690
1691         rc = obd_prep_async_page(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp,
1692                                  lsm, loi, page, lap->lap_sub_offset,
1693                                  &lov_async_page_ops, lap,
1694                                  &lap->lap_sub_cookie);
1695         if (rc)
1696                 RETURN(rc);
1697         CDEBUG(D_CACHE, "lap %p page %p cookie %p off "LPU64"\n", lap, page,
1698                lap->lap_sub_cookie, offset);
1699         RETURN(0);
1700 }
1701
1702 static int lov_queue_async_io(struct obd_export *exp,
1703                               struct lov_stripe_md *lsm,
1704                               struct lov_oinfo *loi, void *cookie,
1705                               int cmd, obd_off off, int count,
1706                               obd_flag brw_flags, obd_flag async_flags)
1707 {
1708         struct lov_obd *lov = &exp->exp_obd->u.lov;
1709         struct lov_async_page *lap;
1710         int rc;
1711
1712         LASSERT(loi == NULL);
1713
1714         ASSERT_LSM_MAGIC(lsm);
1715
1716         lap = LAP_FROM_COOKIE(cookie);
1717
1718         loi = lsm->lsm_oinfo[lap->lap_stripe];
1719
1720         rc = obd_queue_async_io(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp, lsm,
1721                                 loi, lap->lap_sub_cookie, cmd, off, count,
1722                                 brw_flags, async_flags);
1723         RETURN(rc);
1724 }
1725
1726 static int lov_set_async_flags(struct obd_export *exp,
1727                                struct lov_stripe_md *lsm,
1728                                struct lov_oinfo *loi, void *cookie,
1729                                obd_flag async_flags)
1730 {
1731         struct lov_obd *lov = &exp->exp_obd->u.lov;
1732         struct lov_async_page *lap;
1733         int rc;
1734
1735         LASSERT(loi == NULL);
1736
1737         ASSERT_LSM_MAGIC(lsm);
1738
1739         lap = LAP_FROM_COOKIE(cookie);
1740
1741         loi = lsm->lsm_oinfo[lap->lap_stripe];
1742
1743         rc = obd_set_async_flags(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp,
1744                                  lsm, loi, lap->lap_sub_cookie, async_flags);
1745         RETURN(rc);
1746 }
1747
1748 static int lov_queue_group_io(struct obd_export *exp,
1749                               struct lov_stripe_md *lsm,
1750                               struct lov_oinfo *loi,
1751                               struct obd_io_group *oig, void *cookie,
1752                               int cmd, obd_off off, int count,
1753                               obd_flag brw_flags, obd_flag async_flags)
1754 {
1755         struct lov_obd *lov = &exp->exp_obd->u.lov;
1756         struct lov_async_page *lap;
1757         int rc;
1758
1759         LASSERT(loi == NULL);
1760
1761         ASSERT_LSM_MAGIC(lsm);
1762
1763         lap = LAP_FROM_COOKIE(cookie);
1764
1765         loi = lsm->lsm_oinfo[lap->lap_stripe];
1766
1767         rc = obd_queue_group_io(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp, lsm,
1768                                 loi, oig, lap->lap_sub_cookie, cmd, off, count,
1769                                 brw_flags, async_flags);
1770         RETURN(rc);
1771 }
1772
1773 /* this isn't exactly optimal.  we may have queued sync io in oscs on
1774  * all stripes, but we don't record that fact at queue time.  so we
1775  * trigger sync io on all stripes. */
1776 static int lov_trigger_group_io(struct obd_export *exp,
1777                                 struct lov_stripe_md *lsm,
1778                                 struct lov_oinfo *loi,
1779                                 struct obd_io_group *oig)
1780 {
1781         struct lov_obd *lov = &exp->exp_obd->u.lov;
1782         int rc = 0, i, err;
1783
1784         LASSERT(loi == NULL);
1785
1786         ASSERT_LSM_MAGIC(lsm);
1787
1788         for (i = 0; i < lsm->lsm_stripe_count; i++) {
1789                 loi = lsm->lsm_oinfo[i];
1790                 if (!lov->lov_tgts[loi->loi_ost_idx] || 
1791                     !lov->lov_tgts[loi->loi_ost_idx]->ltd_active) {
1792                         CDEBUG(D_HA, "lov idx %d inactive\n", loi->loi_ost_idx);
1793                         continue;
1794                 }
1795
1796                 err = obd_trigger_group_io(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp,
1797                                            lsm, loi, oig);
1798                 if (rc == 0 && err != 0)
1799                         rc = err;
1800         };
1801         RETURN(rc);
1802 }
1803
1804 static int lov_teardown_async_page(struct obd_export *exp,
1805                                    struct lov_stripe_md *lsm,
1806                                    struct lov_oinfo *loi, void *cookie)
1807 {
1808         struct lov_obd *lov = &exp->exp_obd->u.lov;
1809         struct lov_async_page *lap;
1810         int rc;
1811
1812         LASSERT(loi == NULL);
1813
1814         ASSERT_LSM_MAGIC(lsm);
1815
1816         lap = LAP_FROM_COOKIE(cookie);
1817
1818         loi = lsm->lsm_oinfo[lap->lap_stripe];
1819
1820         rc = obd_teardown_async_page(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp,
1821                                      lsm, loi, lap->lap_sub_cookie);
1822         if (rc) {
1823                 CERROR("unable to teardown sub cookie %p: %d\n",
1824                        lap->lap_sub_cookie, rc);
1825                 RETURN(rc);
1826         }
1827         RETURN(rc);
1828 }
1829
1830 static int lov_enqueue_interpret(struct ptlrpc_request_set *rqset,
1831                                  void *data, int rc)
1832 {
1833         struct lov_request_set *lovset = (struct lov_request_set *)data;
1834         ENTRY;
1835         rc = lov_fini_enqueue_set(lovset, lovset->set_ei->ei_mode, rc);
1836         RETURN(rc);
1837 }
1838
1839 static int lov_enqueue(struct obd_export *exp, struct obd_info *oinfo,
1840                        struct obd_enqueue_info *einfo)
1841 {
1842         struct lov_request_set *set;
1843         struct lov_request *req;
1844         struct list_head *pos;
1845         struct lov_obd *lov;
1846         ldlm_error_t rc;
1847         ENTRY;
1848
1849         LASSERT(oinfo);
1850         ASSERT_LSM_MAGIC(oinfo->oi_md);
1851
1852         /* we should never be asked to replay a lock this way. */
1853         LASSERT((einfo->ei_flags & LDLM_FL_REPLAY) == 0);
1854
1855         if (!exp || !exp->exp_obd)
1856                 RETURN(-ENODEV);
1857
1858         lov = &exp->exp_obd->u.lov;
1859         rc = lov_prep_enqueue_set(exp, oinfo, einfo, &set);
1860         if (rc)
1861                 RETURN(rc);
1862
1863         list_for_each (pos, &set->set_list) {
1864                 req = list_entry(pos, struct lov_request, rq_link);
1865
1866                 rc = obd_enqueue(lov->lov_tgts[req->rq_idx]->ltd_exp,
1867                                  &req->rq_oi, einfo);
1868                 if (rc != ELDLM_OK)
1869                         GOTO(out, rc);
1870         }
1871
1872         if (einfo->ei_rqset && !list_empty(&einfo->ei_rqset->set_requests)) {
1873                 LASSERT(rc == 0);
1874                 LASSERT(einfo->ei_rqset->set_interpret == NULL);
1875                 einfo->ei_rqset->set_interpret = lov_enqueue_interpret;
1876                 einfo->ei_rqset->set_arg = (void *)set;
1877                 RETURN(rc);
1878         }
1879 out:
1880         rc = lov_fini_enqueue_set(set, einfo->ei_mode, rc);
1881         RETURN(rc);
1882 }
1883
1884 static int lov_match(struct obd_export *exp, struct lov_stripe_md *lsm,
1885                      __u32 type, ldlm_policy_data_t *policy, __u32 mode,
1886                      int *flags, void *data, struct lustre_handle *lockh)
1887 {
1888         struct lov_request_set *set;
1889         struct obd_info oinfo;
1890         struct lov_request *req;
1891         struct list_head *pos;
1892         struct lov_obd *lov = &exp->exp_obd->u.lov;
1893         struct lustre_handle *lov_lockhp;
1894         int lov_flags, rc = 0;
1895         ENTRY;
1896
1897         ASSERT_LSM_MAGIC(lsm);
1898
1899         if (!exp || !exp->exp_obd)
1900                 RETURN(-ENODEV);
1901
1902         lov = &exp->exp_obd->u.lov;
1903         rc = lov_prep_match_set(exp, &oinfo, lsm, policy, mode, lockh, &set);
1904         if (rc)
1905                 RETURN(rc);
1906
1907         list_for_each (pos, &set->set_list) {
1908                 ldlm_policy_data_t sub_policy;
1909                 req = list_entry(pos, struct lov_request, rq_link);
1910                 lov_lockhp = set->set_lockh->llh_handles + req->rq_stripe;
1911                 LASSERT(lov_lockhp);
1912
1913                 lov_flags = *flags;
1914                 sub_policy.l_extent = req->rq_oi.oi_policy.l_extent;
1915
1916                 rc = obd_match(lov->lov_tgts[req->rq_idx]->ltd_exp,
1917                                req->rq_oi.oi_md, type, &sub_policy,
1918                                mode, &lov_flags, data, lov_lockhp);
1919                 rc = lov_update_match_set(set, req, rc);
1920                 if (rc != 1)
1921                         break;
1922         }
1923         lov_fini_match_set(set, mode, *flags);
1924         RETURN(rc);
1925 }
1926
1927 static int lov_change_cbdata(struct obd_export *exp,
1928                              struct lov_stripe_md *lsm, ldlm_iterator_t it,
1929                              void *data)
1930 {
1931         struct lov_obd *lov;
1932         struct lov_oinfo *loi;
1933         int rc = 0, i;
1934         ENTRY;
1935
1936         ASSERT_LSM_MAGIC(lsm);
1937
1938         if (!exp || !exp->exp_obd)
1939                 RETURN(-ENODEV);
1940
1941         lov = &exp->exp_obd->u.lov;
1942         for (i = 0; i < lsm->lsm_stripe_count; i++) {
1943                 struct lov_stripe_md submd;
1944
1945                 loi = lsm->lsm_oinfo[i];
1946                 submd.lsm_object_id = loi->loi_id;
1947                 submd.lsm_stripe_count = 0;
1948                 rc = obd_change_cbdata(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp,
1949                                        &submd, it, data);
1950         }
1951         RETURN(rc);
1952 }
1953
1954 static int lov_cancel(struct obd_export *exp, struct lov_stripe_md *lsm,
1955                       __u32 mode, struct lustre_handle *lockh)
1956 {
1957         struct lov_request_set *set;
1958         struct obd_info oinfo;
1959         struct lov_request *req;
1960         struct list_head *pos;
1961         struct lov_obd *lov = &exp->exp_obd->u.lov;
1962         struct lustre_handle *lov_lockhp;
1963         int err = 0, rc = 0;
1964         ENTRY;
1965
1966         ASSERT_LSM_MAGIC(lsm);
1967
1968         if (!exp || !exp->exp_obd)
1969                 RETURN(-ENODEV);
1970
1971         LASSERT(lockh);
1972         lov = &exp->exp_obd->u.lov;
1973         rc = lov_prep_cancel_set(exp, &oinfo, lsm, mode, lockh, &set);
1974         if (rc)
1975                 RETURN(rc);
1976
1977         list_for_each (pos, &set->set_list) {
1978                 req = list_entry(pos, struct lov_request, rq_link);
1979                 lov_lockhp = set->set_lockh->llh_handles + req->rq_stripe;
1980
1981                 rc = obd_cancel(lov->lov_tgts[req->rq_idx]->ltd_exp,
1982                                 req->rq_oi.oi_md, mode, lov_lockhp);
1983                 rc = lov_update_common_set(set, req, rc);
1984                 if (rc) {
1985                         CERROR("error: cancel objid "LPX64" subobj "
1986                                LPX64" on OST idx %d: rc = %d\n",
1987                                lsm->lsm_object_id,
1988                                req->rq_oi.oi_md->lsm_object_id,
1989                                req->rq_idx, rc);
1990                         err = rc;
1991                 }
1992
1993         }
1994         lov_fini_cancel_set(set);
1995         RETURN(err);
1996 }
1997
1998 static int lov_cancel_unused(struct obd_export *exp,
1999                              struct lov_stripe_md *lsm, int flags, void *opaque)
2000 {
2001         struct lov_obd *lov;
2002         struct lov_oinfo *loi;
2003         int rc = 0, i;
2004         ENTRY;
2005
2006         if (!exp || !exp->exp_obd)
2007                 RETURN(-ENODEV);
2008
2009         lov = &exp->exp_obd->u.lov;
2010         if (lsm == NULL) {
2011                 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
2012                         int err;
2013                         if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_exp)
2014                                 continue;
2015
2016                         err = obd_cancel_unused(lov->lov_tgts[i]->ltd_exp, NULL,
2017                                                 flags, opaque);
2018                         if (!rc)
2019                                 rc = err;
2020                 }
2021                 RETURN(rc);
2022         }
2023
2024         ASSERT_LSM_MAGIC(lsm);
2025
2026         for (i = 0; i < lsm->lsm_stripe_count; i++) {
2027                 struct lov_stripe_md submd;
2028                 int err;
2029
2030                 loi = lsm->lsm_oinfo[i];
2031                 if (!lov->lov_tgts[loi->loi_ost_idx] || 
2032                     !lov->lov_tgts[loi->loi_ost_idx]->ltd_active)
2033                         CDEBUG(D_HA, "lov idx %d inactive\n", loi->loi_ost_idx);
2034
2035                 submd.lsm_object_id = loi->loi_id;
2036                 submd.lsm_stripe_count = 0;
2037                 err = obd_cancel_unused(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp,
2038                                         &submd, flags, opaque);
2039                 if (err && lov->lov_tgts[loi->loi_ost_idx]->ltd_active) {
2040                         CERROR("error: cancel unused objid "LPX64" subobj "LPX64
2041                                " on OST idx %d: rc = %d\n", lsm->lsm_object_id,
2042                                loi->loi_id, loi->loi_ost_idx, err);
2043                         if (!rc)
2044                                 rc = err;
2045                 }
2046         }
2047         RETURN(rc);
2048 }
2049
2050 static int lov_join_lru(struct obd_export *exp,
2051                         struct lov_stripe_md *lsm, int join)
2052 {
2053         struct lov_obd *lov;
2054         struct lov_oinfo *loi;
2055         int i, count = 0;
2056         ENTRY;
2057
2058         ASSERT_LSM_MAGIC(lsm);
2059         if (!exp || !exp->exp_obd)
2060                 RETURN(-ENODEV);
2061
2062         lov = &exp->exp_obd->u.lov;
2063         for (i = 0; i < lsm->lsm_stripe_count; i++) {
2064                 struct lov_stripe_md submd;
2065                 int rc = 0;
2066
2067                 loi = lsm->lsm_oinfo[i];
2068                 if (!lov->lov_tgts[loi->loi_ost_idx] || 
2069                     !lov->lov_tgts[loi->loi_ost_idx]->ltd_active)
2070                         CDEBUG(D_HA, "lov idx %d inactive\n", loi->loi_ost_idx);
2071
2072                 submd.lsm_object_id = loi->loi_id;
2073                 submd.lsm_stripe_count = 0;
2074                 rc = obd_join_lru(lov->lov_tgts[loi->loi_ost_idx]->ltd_exp,
2075                                   &submd, join);
2076                 if (rc < 0) {
2077                         CERROR("join lru failed. objid: "LPX64" subobj: "LPX64
2078                                " ostidx: %d rc: %d\n", lsm->lsm_object_id,
2079                                loi->loi_id, loi->loi_ost_idx, rc);
2080                         return rc;
2081                 } else {
2082                         count += rc;
2083                 }
2084         }
2085         RETURN(count);
2086 }
2087
2088 static int lov_statfs_interpret(struct ptlrpc_request_set *rqset,
2089                                 void *data, int rc)
2090 {
2091         struct lov_request_set *lovset = (struct lov_request_set *)data;
2092         int err;
2093         ENTRY;
2094
2095         if (rc)
2096                 lovset->set_completes = 0;
2097
2098         err = lov_fini_statfs_set(lovset);
2099         RETURN(rc ? rc : err);
2100 }
2101
2102 static int lov_statfs_async(struct obd_device *obd, struct obd_info *oinfo,
2103                             __u64 max_age, struct ptlrpc_request_set *rqset)
2104 {
2105         struct lov_request_set *set;
2106         struct lov_request *req;
2107         struct list_head *pos;
2108         struct lov_obd *lov;
2109         int rc = 0;
2110         ENTRY;
2111
2112         LASSERT(oinfo != NULL);
2113         LASSERT(oinfo->oi_osfs != NULL);
2114
2115         lov = &obd->u.lov;
2116         rc = lov_prep_statfs_set(obd, oinfo, &set);
2117         if (rc)
2118                 RETURN(rc);
2119
2120         list_for_each (pos, &set->set_list) {
2121                 struct obd_device *osc_obd;
2122
2123                 req = list_entry(pos, struct lov_request, rq_link);
2124
2125                 osc_obd = class_exp2obd(lov->lov_tgts[req->rq_idx]->ltd_exp);
2126                 rc = obd_statfs_async(osc_obd, &req->rq_oi, max_age, rqset);
2127                 if (rc)
2128                         break;
2129         }
2130
2131         if (rc || list_empty(&rqset->set_requests)) {
2132                 int err;
2133                 if (rc)
2134                         set->set_completes = 0;
2135                 err = lov_fini_statfs_set(set);
2136                 RETURN(rc ? rc : err);
2137         }
2138
2139         LASSERT(rqset->set_interpret == NULL);
2140         rqset->set_interpret = lov_statfs_interpret;
2141         rqset->set_arg = (void *)set;
2142         RETURN(0);
2143 }
2144
2145 static int lov_statfs(struct obd_device *obd, struct obd_statfs *osfs,
2146                       __u64 max_age)
2147 {
2148         struct lov_obd *lov = &obd->u.lov;
2149         struct obd_statfs lov_sfs;
2150         int set = 0;
2151         int rc = 0, err;
2152         int i;
2153         ENTRY;
2154
2155         /* We only get block data from the OBD */
2156         for (i = 0; i < lov->desc.ld_tgt_count; i++) {
2157                 if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_active) {
2158                         CDEBUG(D_HA, "lov idx %d inactive\n", i);
2159                         continue;
2160                 }
2161
2162                 err = obd_statfs(class_exp2obd(lov->lov_tgts[i]->ltd_exp), 
2163                                  &lov_sfs, max_age);
2164                 if (err) {
2165                         if (lov->lov_tgts[i]->ltd_active && !rc)
2166                                 rc = err;
2167                         continue;
2168                 }
2169                 lov_update_statfs(class_exp2obd(lov->lov_tgts[i]->ltd_exp),
2170                                   osfs, &lov_sfs, set);
2171                 set++;
2172         }
2173
2174         err = lov_fini_statfs(obd, osfs, set);
2175         qos_update(lov);
2176
2177         RETURN(rc ? rc : err);
2178 }
2179
2180 static int lov_iocontrol(unsigned int cmd, struct obd_export *exp, int len,
2181                          void *karg, void *uarg)
2182 {
2183         struct obd_device *obddev = class_exp2obd(exp);
2184         struct lov_obd *lov = &obddev->u.lov;
2185         int i, rc, count = lov->desc.ld_tgt_count;
2186         struct obd_uuid *uuidp;
2187         ENTRY;
2188
2189         switch (cmd) {
2190         case OBD_IOC_LOV_GET_CONFIG: {
2191                 struct obd_ioctl_data *data;
2192                 struct lov_desc *desc;
2193                 char *buf = NULL;
2194                 __u32 *genp;
2195
2196                 len = 0;
2197                 if (obd_ioctl_getdata(&buf, &len, (void *)uarg))
2198                         RETURN(-EINVAL);
2199
2200                 data = (struct obd_ioctl_data *)buf;
2201
2202                 if (sizeof(*desc) > data->ioc_inllen1) {
2203                         obd_ioctl_freedata(buf, len);
2204                         RETURN(-EINVAL);
2205                 }
2206
2207                 if (sizeof(uuidp->uuid) * count > data->ioc_inllen2) {
2208                         obd_ioctl_freedata(buf, len);
2209                         RETURN(-EINVAL);
2210                 }
2211
2212                 if (sizeof(__u32) * count > data->ioc_inllen3) {
2213                         obd_ioctl_freedata(buf, len);
2214                         RETURN(-EINVAL);
2215                 }
2216
2217                 desc = (struct lov_desc *)data->ioc_inlbuf1;
2218                 memcpy(desc, &(lov->desc), sizeof(*desc));
2219
2220                 uuidp = (struct obd_uuid *)data->ioc_inlbuf2;
2221                 genp = (__u32 *)data->ioc_inlbuf3;
2222                 /* the uuid will be empty for deleted OSTs */
2223                 for (i = 0; i < count; i++, uuidp++, genp++) {
2224                         if (!lov->lov_tgts[i]) 
2225                                 continue;
2226                         *uuidp = lov->lov_tgts[i]->ltd_uuid;
2227                         *genp = lov->lov_tgts[i]->ltd_gen;
2228                 }
2229
2230                 rc = copy_to_user((void *)uarg, buf, len);
2231                 if (rc)
2232                         rc = -EFAULT;
2233                 obd_ioctl_freedata(buf, len);
2234                 break;
2235         }
2236         case LL_IOC_LOV_SETSTRIPE:
2237                 rc = lov_setstripe(exp, karg, uarg);
2238                 break;
2239         case LL_IOC_LOV_GETSTRIPE:
2240                 rc = lov_getstripe(exp, karg, uarg);
2241                 break;
2242         case LL_IOC_LOV_SETEA:
2243                 rc = lov_setea(exp, karg, uarg);
2244                 break;
2245         default: {
2246                 int set = 0;
2247
2248                 if (count == 0)
2249                         RETURN(-ENOTTY);
2250
2251                 rc = 0;
2252                 for (i = 0; i < count; i++) {
2253                         int err;
2254
2255                         /* OST was disconnected */
2256                         if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_exp)
2257                                 continue;
2258
2259                         err = obd_iocontrol(cmd, lov->lov_tgts[i]->ltd_exp,
2260                                             len, karg, uarg);
2261                         if (err == -ENODATA && cmd == OBD_IOC_POLL_QUOTACHECK) {
2262                                 RETURN(err);
2263                         } else if (err) {
2264                                 if (lov->lov_tgts[i]->ltd_active) {
2265                                         CDEBUG(err == -ENOTTY ?
2266                                                D_IOCTL : D_WARNING,
2267                                                "iocontrol OSC %s on OST "
2268                                                "idx %d cmd %x: err = %d\n",
2269                                                lov_uuid2str(lov, i),
2270                                                i, cmd, err);
2271                                         if (!rc)
2272                                                 rc = err;
2273                                 }
2274                         } else {
2275                                 set = 1;
2276                         }
2277                 }
2278                 if (!set && !rc)
2279                         rc = -EIO;
2280         }
2281         }
2282
2283         RETURN(rc);
2284 }
2285
2286 static int lov_get_info(struct obd_export *exp, __u32 keylen,
2287                         void *key, __u32 *vallen, void *val)
2288 {
2289         struct obd_device *obddev = class_exp2obd(exp);
2290         struct lov_obd *lov = &obddev->u.lov;
2291         int i, rc;
2292         ENTRY;
2293
2294         if (!vallen || !val)
2295                 RETURN(-EFAULT);
2296
2297         lov_getref(obddev);
2298
2299         if (KEY_IS("lock_to_stripe")) {
2300                 struct {
2301                         char name[16];
2302                         struct ldlm_lock *lock;
2303                         struct lov_stripe_md *lsm;
2304                 } *data = key;
2305                 struct ldlm_res_id *res_id = &data->lock->l_resource->lr_name;
2306                 struct lov_oinfo *loi;
2307                 __u32 *stripe = val;
2308
2309                 if (*vallen < sizeof(*stripe))
2310                         GOTO(out, rc = -EFAULT);
2311                 *vallen = sizeof(*stripe);
2312
2313                 /* XXX This is another one of those bits that will need to
2314                  * change if we ever actually support nested LOVs.  It uses
2315                  * the lock's export to find out which stripe it is. */
2316                 /* XXX - it's assumed all the locks for deleted OSTs have
2317                  * been cancelled. Also, the export for deleted OSTs will
2318                  * be NULL and won't match the lock's export. */
2319                 for (i = 0; i < data->lsm->lsm_stripe_count; i++) {
2320                         loi = data->lsm->lsm_oinfo[i];
2321                         if (!lov->lov_tgts[loi->loi_ost_idx])
2322                                 continue;
2323                         if (lov->lov_tgts[loi->loi_ost_idx]->ltd_exp ==
2324                             data->lock->l_conn_export &&
2325                             loi->loi_id == res_id->name[0] &&
2326                             loi->loi_gr == res_id->name[1]) {
2327                                 *stripe = i;
2328                                 GOTO(out, rc = 0);
2329                         }
2330                 }
2331                 LDLM_ERROR(data->lock, "lock on inode without such object");
2332                 dump_lsm(D_ERROR, data->lsm);
2333                 GOTO(out, rc = -ENXIO);
2334         } else if (KEY_IS("last_id")) {
2335                 obd_id *ids = val;
2336                 int size = sizeof(obd_id);
2337                 for (i = 0; i < lov->desc.ld_tgt_count; i++) {
2338                         if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_active)
2339                                 continue;
2340                         rc = obd_get_info(lov->lov_tgts[i]->ltd_exp,
2341                                           keylen, key, &size, ids + i);
2342                         if (rc != 0)
2343                                 GOTO(out, rc);
2344                 }
2345                 GOTO(out, rc = 0);
2346         } else if (KEY_IS(KEY_LOVDESC)) {
2347                 struct lov_desc *desc_ret = val;
2348                 *desc_ret = lov->desc;
2349
2350                 GOTO(out, rc = 0);
2351         }
2352
2353         rc = -EINVAL;
2354 out:
2355         lov_putref(obddev);
2356         RETURN(rc);
2357 }
2358
2359 static int lov_set_info_async(struct obd_export *exp, obd_count keylen,
2360                               void *key, obd_count vallen, void *val,
2361                               struct ptlrpc_request_set *set)
2362 {
2363         struct obd_device *obddev = class_exp2obd(exp);
2364         struct lov_obd *lov = &obddev->u.lov;
2365         int i, rc = 0, err, incr = 0, check_uuid = 0, do_inactive = 0;
2366         int no_set = !set;
2367         ENTRY;
2368
2369         if (no_set) {
2370                 set = ptlrpc_prep_set();
2371                 if (!set)
2372                         RETURN(-ENOMEM);
2373         }
2374
2375         if (KEY_IS(KEY_NEXT_ID)) {
2376                 if (vallen != lov->desc.ld_tgt_count * sizeof(obd_id))
2377                         RETURN(-EINVAL);
2378                 vallen = sizeof(obd_id);
2379                 incr = sizeof(obd_id);
2380                 do_inactive = 1;
2381         } else if (KEY_IS("checksum")) {
2382                 do_inactive = 1;
2383         } else if (KEY_IS("mds_conn") || KEY_IS("unlinked")) {
2384                 check_uuid = val ? 1 : 0;
2385         } else if (KEY_IS("evict_by_nid")) {
2386                 /* use defaults:
2387                 do_inactive = incr = 0;
2388                  */
2389         }
2390
2391         lov_getref(obddev);
2392
2393         for (i = 0; i < lov->desc.ld_tgt_count; i++, val = (char *)val + incr) {
2394                 /* OST was disconnected */
2395                 if (!lov->lov_tgts[i] || !lov->lov_tgts[i]->ltd_exp)
2396                         continue;
2397
2398                 /* OST is inactive and we don't want inactive OSCs */
2399                 if (!lov->lov_tgts[i]->ltd_active && !do_inactive)
2400                         continue;
2401
2402                 /* Only want a specific OSC */
2403                 if (check_uuid &&
2404                     !obd_uuid_equals(val, &lov->lov_tgts[i]->ltd_uuid))
2405                         continue;
2406
2407                 err = obd_set_info_async(lov->lov_tgts[i]->ltd_exp,
2408                                          keylen, key, vallen, val, set);
2409                 if (!rc)
2410                         rc = err;
2411         }
2412         lov_putref(obddev);
2413         if (no_set) {
2414                 err = ptlrpc_set_wait(set);
2415                 if (!rc)
2416                         rc = err;
2417                 ptlrpc_set_destroy(set);
2418         }
2419         RETURN(rc);
2420 }
2421
2422 static int lov_checkmd(struct obd_export *exp, struct obd_export *md_exp,
2423                        struct lov_stripe_md *lsm)
2424 {
2425         int rc;
2426         ENTRY;
2427
2428         if (!lsm)
2429                 RETURN(0);
2430         LASSERT(md_exp);
2431         LASSERT(lsm_op_find(lsm->lsm_magic) != NULL);
2432         rc = lsm_op_find(lsm->lsm_magic)->lsm_revalidate(lsm, md_exp->exp_obd);
2433
2434         RETURN(rc);
2435 }
2436
2437 int lov_test_and_clear_async_rc(struct lov_stripe_md *lsm)
2438 {
2439         struct lov_oinfo *loi;
2440         int i, rc = 0;
2441         ENTRY;
2442
2443         for (i = 0; i < lsm->lsm_stripe_count; i++) {
2444                 loi = lsm->lsm_oinfo[i];
2445                 if (loi->loi_ar.ar_rc && !rc)
2446                         rc = loi->loi_ar.ar_rc;
2447                 loi->loi_ar.ar_rc = 0;
2448         }
2449         RETURN(rc);
2450 }
2451 EXPORT_SYMBOL(lov_test_and_clear_async_rc);
2452
2453
2454 static int lov_extent_calc(struct obd_export *exp, struct lov_stripe_md *lsm,
2455                            int cmd, __u64 *offset)
2456 {
2457         __u64 start;
2458         __u32 ssize  = lsm->lsm_stripe_size;
2459
2460         start = *offset;
2461         do_div(start, ssize);
2462         start = start * ssize;
2463
2464         CDEBUG(D_DLMTRACE, "offset "LPU64", stripe %u, start "LPU64
2465                ", end "LPU64"\n", *offset, ssize, start, start + ssize - 1);
2466         if (cmd == OBD_CALC_STRIPE_END) {
2467                 *offset = start + ssize - 1;
2468         } else if (cmd == OBD_CALC_STRIPE_START) {
2469                 *offset = start;
2470         } else {
2471                 LBUG();
2472         }
2473
2474         RETURN(0);
2475 }
2476
2477
2478 #if 0
2479 struct lov_multi_wait {
2480         struct ldlm_lock *lock;
2481         wait_queue_t      wait;
2482         int               completed;
2483         int               generation;
2484 };
2485
2486 int lov_complete_many(struct obd_export *exp, struct lov_stripe_md *lsm,
2487                       struct lustre_handle *lockh)
2488 {
2489         struct lov_lock_handles *lov_lockh = NULL;
2490         struct lustre_handle *lov_lockhp;
2491         struct lov_obd *lov;
2492         struct lov_oinfo *loi;
2493         struct lov_multi_wait *queues;
2494         int rc = 0, i;
2495         ENTRY;
2496
2497         ASSERT_LSM_MAGIC(lsm);
2498
2499         if (!exp || !exp->exp_obd)
2500                 RETURN(-ENODEV);
2501
2502         LASSERT(lockh != NULL);
2503         if (lsm->lsm_stripe_count > 1) {
2504                 lov_lockh = lov_handle2llh(lockh);
2505                 if (lov_lockh == NULL) {
2506                         CERROR("LOV: invalid lov lock handle %p\n", lockh);
2507                         RETURN(-EINVAL);
2508                 }
2509
2510                 lov_lockhp = lov_lockh->llh_handles;
2511         } else {
2512                 lov_lockhp = lockh;
2513         }
2514
2515         OBD_ALLOC(queues, lsm->lsm_stripe_count * sizeof(*queues));
2516         if (queues == NULL)
2517                 GOTO(out, rc = -ENOMEM);
2518
2519         lov = &exp->exp_obd->u.lov;
2520         for (i = 0, loi = lsm->lsm_oinfo; i < lsm->lsm_stripe_count;
2521              i++, loi++, lov_lockhp++) {
2522                 struct ldlm_lock *lock;
2523                 struct obd_device *obd;
2524
2525                 lock = ldlm_handle2lock(lov_lockhp);
2526                 if (lock == NULL) {
2527                         CDEBUG(D_HA, "lov idx %d subobj "LPX64" no lock?\n",
2528                                loi->loi_ost_idx, loi->loi_id);
2529                         queues[i].completed = 1;
2530                         continue;
2531                 }
2532
2533                 queues[i].lock = lock;
2534                 init_waitqueue_entry(&(queues[i].wait), current);
2535                 add_wait_queue(lock->l_waitq, &(queues[i].wait));
2536
2537                 obd = class_exp2obd(lock->l_conn_export);
2538                 if (obd != NULL)
2539                         imp = obd->u.cli.cl_import;
2540                 if (imp != NULL) {
2541                         spin_lock(&imp->imp_lock);
2542                         queues[i].generation = imp->imp_generation;
2543                         spin_unlock(&imp->imp_lock);
2544                 }
2545         }
2546
2547         lwi = LWI_TIMEOUT_INTR(obd_timeout * HZ, ldlm_expired_completion_wait,
2548                                interrupted_completion_wait, &lwd);
2549         rc = l_wait_event_added(check_multi_complete(queues, lsm), &lwi);
2550
2551         for (i = 0; i < lsm->lsm_stripe_count; i++)
2552                 remove_wait_queue(lock->l_waitq, &(queues[i].wait));
2553
2554         if (rc == -EINTR || rc == -ETIMEDOUT) {
2555
2556
2557         }
2558
2559  out:
2560         if (lov_lockh != NULL)
2561                 lov_llh_put(lov_lockh);
2562         RETURN(rc);
2563 }
2564 #endif
2565
2566 void lov_stripe_lock(struct lov_stripe_md *md)
2567 {
2568         LASSERT(md->lsm_lock_owner != cfs_current());
2569         spin_lock(&md->lsm_lock);
2570         LASSERT(md->lsm_lock_owner == NULL);
2571         md->lsm_lock_owner = cfs_current();
2572 }
2573 EXPORT_SYMBOL(lov_stripe_lock);
2574
2575 void lov_stripe_unlock(struct lov_stripe_md *md)
2576 {
2577         LASSERT(md->lsm_lock_owner == cfs_current());
2578         md->lsm_lock_owner = NULL;
2579         spin_unlock(&md->lsm_lock);
2580 }
2581 EXPORT_SYMBOL(lov_stripe_unlock);
2582
2583 struct obd_ops lov_obd_ops = {
2584         .o_owner               = THIS_MODULE,
2585         .o_setup               = lov_setup,
2586         .o_precleanup          = lov_precleanup,
2587         .o_cleanup             = lov_cleanup,
2588         .o_process_config      = lov_process_config,
2589         .o_connect             = lov_connect,
2590         .o_disconnect          = lov_disconnect,
2591         .o_statfs              = lov_statfs,
2592         .o_statfs_async        = lov_statfs_async,
2593         .o_packmd              = lov_packmd,
2594         .o_unpackmd            = lov_unpackmd,
2595         .o_checkmd             = lov_checkmd,
2596         .o_create              = lov_create,
2597         .o_destroy             = lov_destroy,
2598         .o_getattr             = lov_getattr,
2599         .o_getattr_async       = lov_getattr_async,
2600         .o_setattr             = lov_setattr,
2601         .o_setattr_async       = lov_setattr_async,
2602         .o_brw                 = lov_brw,
2603         .o_brw_async           = lov_brw_async,
2604         .o_prep_async_page     = lov_prep_async_page,
2605         .o_queue_async_io      = lov_queue_async_io,
2606         .o_set_async_flags     = lov_set_async_flags,
2607         .o_queue_group_io      = lov_queue_group_io,
2608         .o_trigger_group_io    = lov_trigger_group_io,
2609         .o_teardown_async_page = lov_teardown_async_page,
2610         .o_merge_lvb           = lov_merge_lvb,
2611         .o_adjust_kms          = lov_adjust_kms,
2612         .o_punch               = lov_punch,
2613         .o_sync                = lov_sync,
2614         .o_enqueue             = lov_enqueue,
2615         .o_match               = lov_match,
2616         .o_change_cbdata       = lov_change_cbdata,
2617         .o_cancel              = lov_cancel,
2618         .o_cancel_unused       = lov_cancel_unused,
2619         .o_join_lru            = lov_join_lru,
2620         .o_iocontrol           = lov_iocontrol,
2621         .o_get_info            = lov_get_info,
2622         .o_set_info_async      = lov_set_info_async,
2623         .o_extent_calc         = lov_extent_calc,
2624         .o_llog_init           = lov_llog_init,
2625         .o_llog_finish         = lov_llog_finish,
2626         .o_notify              = lov_notify,
2627 };
2628
2629 static quota_interface_t *quota_interface;
2630 extern quota_interface_t lov_quota_interface;
2631
2632 cfs_mem_cache_t *lov_oinfo_slab;
2633
2634 int __init lov_init(void)
2635 {
2636         struct lprocfs_static_vars lvars;
2637         int rc, rc2;
2638         ENTRY;
2639
2640         lov_oinfo_slab = cfs_mem_cache_create("lov_oinfo",
2641                                               sizeof(struct lov_oinfo), 
2642                                               0, SLAB_HWCACHE_ALIGN);
2643         if (lov_oinfo_slab == NULL)
2644                 return -ENOMEM;
2645         lprocfs_init_vars(lov, &lvars);
2646
2647         request_module("lquota");
2648         quota_interface = PORTAL_SYMBOL_GET(lov_quota_interface);
2649         init_obd_quota_ops(quota_interface, &lov_obd_ops);
2650
2651         rc = class_register_type(&lov_obd_ops, lvars.module_vars,
2652                                  LUSTRE_LOV_NAME);
2653         if (rc) {
2654                 if (quota_interface)
2655                         PORTAL_SYMBOL_PUT(lov_quota_interface);
2656                 rc2 = cfs_mem_cache_destroy(lov_oinfo_slab);
2657                 LASSERT(rc2 == 0);
2658         }
2659
2660         RETURN(rc);
2661 }
2662
2663 #ifdef __KERNEL__
2664 static void /*__exit*/ lov_exit(void)
2665 {
2666         int rc;
2667
2668         if (quota_interface)
2669                 PORTAL_SYMBOL_PUT(lov_quota_interface);
2670
2671         class_unregister_type(LUSTRE_LOV_NAME);
2672         rc = cfs_mem_cache_destroy(lov_oinfo_slab);
2673         LASSERT(rc == 0);
2674 }
2675
2676 MODULE_AUTHOR("Cluster File Systems, Inc. <info@clusterfs.com>");
2677 MODULE_DESCRIPTION("Lustre Logical Object Volume OBD driver");
2678 MODULE_LICENSE("GPL");
2679
2680 cfs_module(lov, LUSTRE_VERSION_STRING, lov_init, lov_exit);
2681 #endif