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[fs/lustre-release.git] / lustre / mdc / mdc_request.c
1 /*
2  * GPL HEADER START
3  *
4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License version 2 only,
8  * as published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful, but
11  * WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13  * General Public License version 2 for more details (a copy is included
14  * in the LICENSE file that accompanied this code).
15  *
16  * You should have received a copy of the GNU General Public License
17  * version 2 along with this program; If not, see
18  * http://www.sun.com/software/products/lustre/docs/GPLv2.pdf
19  *
20  * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
21  * CA 95054 USA or visit www.sun.com if you need additional information or
22  * have any questions.
23  *
24  * GPL HEADER END
25  */
26 /*
27  * Copyright (c) 2001, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2011, 2012, Whamcloud, Inc.
31  */
32 /*
33  * This file is part of Lustre, http://www.lustre.org/
34  * Lustre is a trademark of Sun Microsystems, Inc.
35  */
36
37 #define DEBUG_SUBSYSTEM S_MDC
38
39 #ifdef __KERNEL__
40 # include <linux/module.h>
41 # include <linux/pagemap.h>
42 # include <linux/miscdevice.h>
43 # include <linux/init.h>
44 #else
45 # include <liblustre.h>
46 #endif
47
48 #include <lustre_acl.h>
49 #include <obd_class.h>
50 #include <lustre_dlm.h>
51 #include <lustre_fid.h>
52 #include <md_object.h>
53 #include <lprocfs_status.h>
54 #include <lustre_param.h>
55 #include "mdc_internal.h"
56 #include <lustre/lustre_idl.h>
57
58 #define REQUEST_MINOR 244
59
60 struct mdc_renew_capa_args {
61         struct obd_capa        *ra_oc;
62         renew_capa_cb_t         ra_cb;
63 };
64
65 static int mdc_cleanup(struct obd_device *obd);
66
67 int mdc_unpack_capa(struct obd_export *exp, struct ptlrpc_request *req,
68                     const struct req_msg_field *field, struct obd_capa **oc)
69 {
70         struct lustre_capa *capa;
71         struct obd_capa *c;
72         ENTRY;
73
74         /* swabbed already in mdc_enqueue */
75         capa = req_capsule_server_get(&req->rq_pill, field);
76         if (capa == NULL)
77                 RETURN(-EPROTO);
78
79         c = alloc_capa(CAPA_SITE_CLIENT);
80         if (IS_ERR(c)) {
81                 CDEBUG(D_INFO, "alloc capa failed!\n");
82                 RETURN(PTR_ERR(c));
83         } else {
84                 c->c_capa = *capa;
85                 *oc = c;
86                 RETURN(0);
87         }
88 }
89
90 /* Helper that implements most of mdc_getstatus and signal_completed_replay. */
91 /* XXX this should become mdc_get_info("key"), sending MDS_GET_INFO RPC */
92 static int send_getstatus(struct obd_import *imp, struct lu_fid *rootfid,
93                           struct obd_capa **pc, int level, int msg_flags)
94 {
95         struct ptlrpc_request *req;
96         struct mdt_body       *body;
97         int                    rc;
98         ENTRY;
99
100         req = ptlrpc_request_alloc_pack(imp, &RQF_MDS_GETSTATUS,
101                                         LUSTRE_MDS_VERSION, MDS_GETSTATUS);
102         if (req == NULL)
103                 RETURN(-ENOMEM);
104
105         mdc_pack_body(req, NULL, NULL, 0, 0, -1, 0);
106         lustre_msg_add_flags(req->rq_reqmsg, msg_flags);
107         req->rq_send_state = level;
108
109         ptlrpc_request_set_replen(req);
110
111         rc = ptlrpc_queue_wait(req);
112         if (rc)
113                 GOTO(out, rc);
114
115         body = req_capsule_server_get(&req->rq_pill, &RMF_MDT_BODY);
116         if (body == NULL)
117                 GOTO(out, rc = -EPROTO);
118
119         if (body->valid & OBD_MD_FLMDSCAPA) {
120                 rc = mdc_unpack_capa(NULL, req, &RMF_CAPA1, pc);
121                 if (rc)
122                         GOTO(out, rc);
123         }
124
125         *rootfid = body->fid1;
126         CDEBUG(D_NET,
127                "root fid="DFID", last_committed="LPU64"\n",
128                PFID(rootfid),
129                lustre_msg_get_last_committed(req->rq_repmsg));
130         EXIT;
131 out:
132         ptlrpc_req_finished(req);
133         return rc;
134 }
135
136 /* This should be mdc_get_info("rootfid") */
137 int mdc_getstatus(struct obd_export *exp, struct lu_fid *rootfid,
138                   struct obd_capa **pc)
139 {
140         return send_getstatus(class_exp2cliimp(exp), rootfid, pc,
141                               LUSTRE_IMP_FULL, 0);
142 }
143
144 /*
145  * This function now is known to always saying that it will receive 4 buffers
146  * from server. Even for cases when acl_size and md_size is zero, RPC header
147  * will contain 4 fields and RPC itself will contain zero size fields. This is
148  * because mdt_getattr*() _always_ returns 4 fields, but if acl is not needed
149  * and thus zero, it shrinks it, making zero size. The same story about
150  * md_size. And this is course of problem when client waits for smaller number
151  * of fields. This issue will be fixed later when client gets aware of RPC
152  * layouts.  --umka
153  */
154 static int mdc_getattr_common(struct obd_export *exp,
155                               struct ptlrpc_request *req)
156 {
157         struct req_capsule *pill = &req->rq_pill;
158         struct mdt_body    *body;
159         void               *eadata;
160         int                 rc;
161         ENTRY;
162
163         /* Request message already built. */
164         rc = ptlrpc_queue_wait(req);
165         if (rc != 0)
166                 RETURN(rc);
167
168         /* sanity check for the reply */
169         body = req_capsule_server_get(pill, &RMF_MDT_BODY);
170         if (body == NULL)
171                 RETURN(-EPROTO);
172
173         CDEBUG(D_NET, "mode: %o\n", body->mode);
174
175         if (body->eadatasize != 0) {
176                 mdc_update_max_ea_from_body(exp, body);
177
178                 eadata = req_capsule_server_sized_get(pill, &RMF_MDT_MD,
179                                                       body->eadatasize);
180                 if (eadata == NULL)
181                         RETURN(-EPROTO);
182         }
183
184         if (body->valid & OBD_MD_FLRMTPERM) {
185                 struct mdt_remote_perm *perm;
186
187                 LASSERT(client_is_remote(exp));
188                 perm = req_capsule_server_swab_get(pill, &RMF_ACL,
189                                                 lustre_swab_mdt_remote_perm);
190                 if (perm == NULL)
191                         RETURN(-EPROTO);
192         }
193
194         if (body->valid & OBD_MD_FLMDSCAPA) {
195                 struct lustre_capa *capa;
196                 capa = req_capsule_server_get(pill, &RMF_CAPA1);
197                 if (capa == NULL)
198                         RETURN(-EPROTO);
199         }
200
201         RETURN(0);
202 }
203
204 int mdc_getattr(struct obd_export *exp, struct md_op_data *op_data,
205                 struct ptlrpc_request **request)
206 {
207         struct ptlrpc_request *req;
208         int                    rc;
209         ENTRY;
210
211         *request = NULL;
212         req = ptlrpc_request_alloc(class_exp2cliimp(exp), &RQF_MDS_GETATTR);
213         if (req == NULL)
214                 RETURN(-ENOMEM);
215
216         mdc_set_capa_size(req, &RMF_CAPA1, op_data->op_capa1);
217
218         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_GETATTR);
219         if (rc) {
220                 ptlrpc_request_free(req);
221                 RETURN(rc);
222         }
223
224         mdc_pack_body(req, &op_data->op_fid1, op_data->op_capa1,
225                       op_data->op_valid, op_data->op_mode, -1, 0);
226
227         req_capsule_set_size(&req->rq_pill, &RMF_MDT_MD, RCL_SERVER,
228                              op_data->op_mode);
229         if (op_data->op_valid & OBD_MD_FLRMTPERM) {
230                 LASSERT(client_is_remote(exp));
231                 req_capsule_set_size(&req->rq_pill, &RMF_ACL, RCL_SERVER,
232                                      sizeof(struct mdt_remote_perm));
233         }
234         ptlrpc_request_set_replen(req);
235
236         rc = mdc_getattr_common(exp, req);
237         if (rc)
238                 ptlrpc_req_finished(req);
239         else
240                 *request = req;
241         RETURN(rc);
242 }
243
244 int mdc_getattr_name(struct obd_export *exp, struct md_op_data *op_data,
245                      struct ptlrpc_request **request)
246 {
247         struct ptlrpc_request *req;
248         int                    rc;
249         ENTRY;
250
251         *request = NULL;
252         req = ptlrpc_request_alloc(class_exp2cliimp(exp),
253                                    &RQF_MDS_GETATTR_NAME);
254         if (req == NULL)
255                 RETURN(-ENOMEM);
256
257         mdc_set_capa_size(req, &RMF_CAPA1, op_data->op_capa1);
258         req_capsule_set_size(&req->rq_pill, &RMF_NAME, RCL_CLIENT,
259                              op_data->op_namelen + 1);
260
261         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_GETATTR_NAME);
262         if (rc) {
263                 ptlrpc_request_free(req);
264                 RETURN(rc);
265         }
266
267         mdc_pack_body(req, &op_data->op_fid1, op_data->op_capa1,
268                       op_data->op_valid, op_data->op_mode,
269                       op_data->op_suppgids[0], 0);
270
271         if (op_data->op_name) {
272                 char *name = req_capsule_client_get(&req->rq_pill, &RMF_NAME);
273                 LASSERT(strnlen(op_data->op_name, op_data->op_namelen) ==
274                                 op_data->op_namelen);
275                 memcpy(name, op_data->op_name, op_data->op_namelen);
276         }
277
278         req_capsule_set_size(&req->rq_pill, &RMF_MDT_MD, RCL_SERVER,
279                              op_data->op_mode);
280         ptlrpc_request_set_replen(req);
281
282         rc = mdc_getattr_common(exp, req);
283         if (rc)
284                 ptlrpc_req_finished(req);
285         else
286                 *request = req;
287         RETURN(rc);
288 }
289
290 static int mdc_is_subdir(struct obd_export *exp,
291                          const struct lu_fid *pfid,
292                          const struct lu_fid *cfid,
293                          struct ptlrpc_request **request)
294 {
295         struct ptlrpc_request  *req;
296         int                     rc;
297
298         ENTRY;
299
300         *request = NULL;
301         req = ptlrpc_request_alloc_pack(class_exp2cliimp(exp),
302                                         &RQF_MDS_IS_SUBDIR, LUSTRE_MDS_VERSION,
303                                         MDS_IS_SUBDIR);
304         if (req == NULL)
305                 RETURN(-ENOMEM);
306
307         mdc_is_subdir_pack(req, pfid, cfid, 0);
308         ptlrpc_request_set_replen(req);
309
310         rc = ptlrpc_queue_wait(req);
311         if (rc && rc != -EREMOTE)
312                 ptlrpc_req_finished(req);
313         else
314                 *request = req;
315         RETURN(rc);
316 }
317
318 static int mdc_xattr_common(struct obd_export *exp,const struct req_format *fmt,
319                             const struct lu_fid *fid,
320                             struct obd_capa *oc, int opcode, obd_valid valid,
321                             const char *xattr_name, const char *input,
322                             int input_size, int output_size, int flags,
323                             __u32 suppgid, struct ptlrpc_request **request)
324 {
325         struct ptlrpc_request *req;
326         int   xattr_namelen = 0;
327         char *tmp;
328         int   rc;
329         ENTRY;
330
331         *request = NULL;
332         req = ptlrpc_request_alloc(class_exp2cliimp(exp), fmt);
333         if (req == NULL)
334                 RETURN(-ENOMEM);
335
336         mdc_set_capa_size(req, &RMF_CAPA1, oc);
337         if (xattr_name) {
338                 xattr_namelen = strlen(xattr_name) + 1;
339                 req_capsule_set_size(&req->rq_pill, &RMF_NAME, RCL_CLIENT,
340                                      xattr_namelen);
341         }
342         if (input_size) {
343                 LASSERT(input);
344                 req_capsule_set_size(&req->rq_pill, &RMF_EADATA, RCL_CLIENT,
345                                      input_size);
346         }
347
348         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, opcode);
349         if (rc) {
350                 ptlrpc_request_free(req);
351                 RETURN(rc);
352         }
353
354         if (opcode == MDS_REINT) {
355                 struct mdt_rec_setxattr *rec;
356
357                 CLASSERT(sizeof(struct mdt_rec_setxattr) ==
358                          sizeof(struct mdt_rec_reint));
359                 rec = req_capsule_client_get(&req->rq_pill, &RMF_REC_REINT);
360                 rec->sx_opcode = REINT_SETXATTR;
361                 /* TODO:
362                  *  cfs_curproc_fs{u,g}id() should replace
363                  *  current->fs{u,g}id for portability.
364                  */
365                 rec->sx_fsuid  = cfs_curproc_fsuid();
366                 rec->sx_fsgid  = cfs_curproc_fsgid();
367                 rec->sx_cap    = cfs_curproc_cap_pack();
368                 rec->sx_suppgid1 = suppgid;
369                 rec->sx_suppgid2 = -1;
370                 rec->sx_fid    = *fid;
371                 rec->sx_valid  = valid | OBD_MD_FLCTIME;
372                 rec->sx_time   = cfs_time_current_sec();
373                 rec->sx_size   = output_size;
374                 rec->sx_flags  = flags;
375
376                 mdc_pack_capa(req, &RMF_CAPA1, oc);
377         } else {
378                 mdc_pack_body(req, fid, oc, valid, output_size, suppgid, flags);
379         }
380
381         if (xattr_name) {
382                 tmp = req_capsule_client_get(&req->rq_pill, &RMF_NAME);
383                 memcpy(tmp, xattr_name, xattr_namelen);
384         }
385         if (input_size) {
386                 tmp = req_capsule_client_get(&req->rq_pill, &RMF_EADATA);
387                 memcpy(tmp, input, input_size);
388         }
389
390         if (req_capsule_has_field(&req->rq_pill, &RMF_EADATA, RCL_SERVER))
391                 req_capsule_set_size(&req->rq_pill, &RMF_EADATA,
392                                      RCL_SERVER, output_size);
393         ptlrpc_request_set_replen(req);
394
395         /* make rpc */
396         if (opcode == MDS_REINT)
397                 mdc_get_rpc_lock(exp->exp_obd->u.cli.cl_rpc_lock, NULL);
398
399         rc = ptlrpc_queue_wait(req);
400
401         if (opcode == MDS_REINT)
402                 mdc_put_rpc_lock(exp->exp_obd->u.cli.cl_rpc_lock, NULL);
403
404         if (rc)
405                 ptlrpc_req_finished(req);
406         else
407                 *request = req;
408         RETURN(rc);
409 }
410
411 int mdc_setxattr(struct obd_export *exp, const struct lu_fid *fid,
412                  struct obd_capa *oc, obd_valid valid, const char *xattr_name,
413                  const char *input, int input_size, int output_size,
414                  int flags, __u32 suppgid, struct ptlrpc_request **request)
415 {
416         return mdc_xattr_common(exp, &RQF_MDS_REINT_SETXATTR,
417                                 fid, oc, MDS_REINT, valid, xattr_name,
418                                 input, input_size, output_size, flags,
419                                 suppgid, request);
420 }
421
422 int mdc_getxattr(struct obd_export *exp, const struct lu_fid *fid,
423                  struct obd_capa *oc, obd_valid valid, const char *xattr_name,
424                  const char *input, int input_size, int output_size,
425                  int flags, struct ptlrpc_request **request)
426 {
427         return mdc_xattr_common(exp, &RQF_MDS_GETXATTR,
428                                 fid, oc, MDS_GETXATTR, valid, xattr_name,
429                                 input, input_size, output_size, flags,
430                                 -1, request);
431 }
432
433 #ifdef CONFIG_FS_POSIX_ACL
434 static int mdc_unpack_acl(struct ptlrpc_request *req, struct lustre_md *md)
435 {
436         struct req_capsule     *pill = &req->rq_pill;
437         struct mdt_body        *body = md->body;
438         struct posix_acl       *acl;
439         void                   *buf;
440         int                     rc;
441         ENTRY;
442
443         if (!body->aclsize)
444                 RETURN(0);
445
446         buf = req_capsule_server_sized_get(pill, &RMF_ACL, body->aclsize);
447
448         if (!buf)
449                 RETURN(-EPROTO);
450
451         acl = posix_acl_from_xattr(buf, body->aclsize);
452         if (IS_ERR(acl)) {
453                 rc = PTR_ERR(acl);
454                 CERROR("convert xattr to acl: %d\n", rc);
455                 RETURN(rc);
456         }
457
458         rc = posix_acl_valid(acl);
459         if (rc) {
460                 CERROR("validate acl: %d\n", rc);
461                 posix_acl_release(acl);
462                 RETURN(rc);
463         }
464
465         md->posix_acl = acl;
466         RETURN(0);
467 }
468 #else
469 #define mdc_unpack_acl(req, md) 0
470 #endif
471
472 int mdc_get_lustre_md(struct obd_export *exp, struct ptlrpc_request *req,
473                       struct obd_export *dt_exp, struct obd_export *md_exp,
474                       struct lustre_md *md)
475 {
476         struct req_capsule *pill = &req->rq_pill;
477         int rc;
478         ENTRY;
479
480         LASSERT(md);
481         memset(md, 0, sizeof(*md));
482
483         md->body = req_capsule_server_get(pill, &RMF_MDT_BODY);
484         LASSERT(md->body != NULL);
485
486         if (md->body->valid & OBD_MD_FLEASIZE) {
487                 int lmmsize;
488                 struct lov_mds_md *lmm;
489
490                 if (!S_ISREG(md->body->mode)) {
491                         CDEBUG(D_INFO, "OBD_MD_FLEASIZE set, should be a "
492                                "regular file, but is not\n");
493                         GOTO(out, rc = -EPROTO);
494                 }
495
496                 if (md->body->eadatasize == 0) {
497                         CDEBUG(D_INFO, "OBD_MD_FLEASIZE set, "
498                                "but eadatasize 0\n");
499                         GOTO(out, rc = -EPROTO);
500                 }
501                 lmmsize = md->body->eadatasize;
502                 lmm = req_capsule_server_sized_get(pill, &RMF_MDT_MD, lmmsize);
503                 if (!lmm)
504                         GOTO(out, rc = -EPROTO);
505
506                 rc = obd_unpackmd(dt_exp, &md->lsm, lmm, lmmsize);
507                 if (rc < 0)
508                         GOTO(out, rc);
509
510                 if (rc < sizeof(*md->lsm)) {
511                         CDEBUG(D_INFO, "lsm size too small: "
512                                "rc < sizeof (*md->lsm) (%d < %d)\n",
513                                rc, (int)sizeof(*md->lsm));
514                         GOTO(out, rc = -EPROTO);
515                 }
516
517         } else if (md->body->valid & OBD_MD_FLDIREA) {
518                 int lmvsize;
519                 struct lov_mds_md *lmv;
520
521                 if(!S_ISDIR(md->body->mode)) {
522                         CDEBUG(D_INFO, "OBD_MD_FLDIREA set, should be a "
523                                "directory, but is not\n");
524                         GOTO(out, rc = -EPROTO);
525                 }
526
527                 if (md->body->eadatasize == 0) {
528                         CDEBUG(D_INFO, "OBD_MD_FLDIREA is set, "
529                                "but eadatasize 0\n");
530                         RETURN(-EPROTO);
531                 }
532                 if (md->body->valid & OBD_MD_MEA) {
533                         lmvsize = md->body->eadatasize;
534                         lmv = req_capsule_server_sized_get(pill, &RMF_MDT_MD,
535                                                            lmvsize);
536                         if (!lmv)
537                                 GOTO(out, rc = -EPROTO);
538
539                         rc = obd_unpackmd(md_exp, (void *)&md->mea, lmv,
540                                           lmvsize);
541                         if (rc < 0)
542                                 GOTO(out, rc);
543
544                         if (rc < sizeof(*md->mea)) {
545                                 CDEBUG(D_INFO, "size too small:  "
546                                        "rc < sizeof(*md->mea) (%d < %d)\n",
547                                         rc, (int)sizeof(*md->mea));
548                                 GOTO(out, rc = -EPROTO);
549                         }
550                 }
551         }
552         rc = 0;
553
554         if (md->body->valid & OBD_MD_FLRMTPERM) {
555                 /* remote permission */
556                 LASSERT(client_is_remote(exp));
557                 md->remote_perm = req_capsule_server_swab_get(pill, &RMF_ACL,
558                                                 lustre_swab_mdt_remote_perm);
559                 if (!md->remote_perm)
560                         GOTO(out, rc = -EPROTO);
561         }
562         else if (md->body->valid & OBD_MD_FLACL) {
563                 /* for ACL, it's possible that FLACL is set but aclsize is zero.
564                  * only when aclsize != 0 there's an actual segment for ACL
565                  * in reply buffer.
566                  */
567                 if (md->body->aclsize) {
568                         rc = mdc_unpack_acl(req, md);
569                         if (rc)
570                                 GOTO(out, rc);
571 #ifdef CONFIG_FS_POSIX_ACL
572                 } else {
573                         md->posix_acl = NULL;
574 #endif
575                 }
576         }
577         if (md->body->valid & OBD_MD_FLMDSCAPA) {
578                 struct obd_capa *oc = NULL;
579
580                 rc = mdc_unpack_capa(NULL, req, &RMF_CAPA1, &oc);
581                 if (rc)
582                         GOTO(out, rc);
583                 md->mds_capa = oc;
584         }
585
586         if (md->body->valid & OBD_MD_FLOSSCAPA) {
587                 struct obd_capa *oc = NULL;
588
589                 rc = mdc_unpack_capa(NULL, req, &RMF_CAPA2, &oc);
590                 if (rc)
591                         GOTO(out, rc);
592                 md->oss_capa = oc;
593         }
594
595         EXIT;
596 out:
597         if (rc) {
598                 if (md->oss_capa) {
599                         capa_put(md->oss_capa);
600                         md->oss_capa = NULL;
601                 }
602                 if (md->mds_capa) {
603                         capa_put(md->mds_capa);
604                         md->mds_capa = NULL;
605                 }
606 #ifdef CONFIG_FS_POSIX_ACL
607                 posix_acl_release(md->posix_acl);
608 #endif
609                 if (md->lsm)
610                         obd_free_memmd(dt_exp, &md->lsm);
611         }
612         return rc;
613 }
614
615 int mdc_free_lustre_md(struct obd_export *exp, struct lustre_md *md)
616 {
617         ENTRY;
618         RETURN(0);
619 }
620
621 /**
622  * Handles both OPEN and SETATTR RPCs for OPEN-CLOSE and SETATTR-DONE_WRITING
623  * RPC chains.
624  */
625 void mdc_replay_open(struct ptlrpc_request *req)
626 {
627         struct md_open_data *mod = req->rq_cb_data;
628         struct ptlrpc_request *close_req;
629         struct obd_client_handle *och;
630         struct lustre_handle old;
631         struct mdt_body *body;
632         ENTRY;
633
634         if (mod == NULL) {
635                 DEBUG_REQ(D_ERROR, req,
636                           "Can't properly replay without open data.");
637                 EXIT;
638                 return;
639         }
640
641         body = req_capsule_server_get(&req->rq_pill, &RMF_MDT_BODY);
642         LASSERT(body != NULL);
643
644         och = mod->mod_och;
645         if (och != NULL) {
646                 struct lustre_handle *file_fh;
647
648                 LASSERT(och->och_magic == OBD_CLIENT_HANDLE_MAGIC);
649
650                 file_fh = &och->och_fh;
651                 CDEBUG(D_HA, "updating handle from "LPX64" to "LPX64"\n",
652                        file_fh->cookie, body->handle.cookie);
653                 old = *file_fh;
654                 *file_fh = body->handle;
655         }
656         close_req = mod->mod_close_req;
657         if (close_req != NULL) {
658                 __u32 opc = lustre_msg_get_opc(close_req->rq_reqmsg);
659                 struct mdt_ioepoch *epoch;
660
661                 LASSERT(opc == MDS_CLOSE || opc == MDS_DONE_WRITING);
662                 epoch = req_capsule_client_get(&close_req->rq_pill,
663                                                &RMF_MDT_EPOCH);
664                 LASSERT(epoch);
665
666                 if (och != NULL)
667                         LASSERT(!memcmp(&old, &epoch->handle, sizeof(old)));
668                 DEBUG_REQ(D_HA, close_req, "updating close body with new fh");
669                 epoch->handle = body->handle;
670         }
671         EXIT;
672 }
673
674 void mdc_commit_open(struct ptlrpc_request *req)
675 {
676         struct md_open_data *mod = req->rq_cb_data;
677         if (mod == NULL)
678                 return;
679
680         /**
681          * No need to touch md_open_data::mod_och, it holds a reference on
682          * \var mod and will zero references to each other, \var mod will be
683          * freed after that when md_open_data::mod_och will put the reference.
684          */
685
686         /**
687          * Do not let open request to disappear as it still may be needed
688          * for close rpc to happen (it may happen on evict only, otherwise
689          * ptlrpc_request::rq_replay does not let mdc_commit_open() to be
690          * called), just mark this rpc as committed to distinguish these 2
691          * cases, see mdc_close() for details. The open request reference will
692          * be put along with freeing \var mod.
693          */
694         ptlrpc_request_addref(req);
695         cfs_spin_lock(&req->rq_lock);
696         req->rq_committed = 1;
697         cfs_spin_unlock(&req->rq_lock);
698         req->rq_cb_data = NULL;
699         obd_mod_put(mod);
700 }
701
702 int mdc_set_open_replay_data(struct obd_export *exp,
703                              struct obd_client_handle *och,
704                              struct ptlrpc_request *open_req)
705 {
706         struct md_open_data   *mod;
707         struct mdt_rec_create *rec;
708         struct mdt_body       *body;
709         struct obd_import     *imp = open_req->rq_import;
710         ENTRY;
711
712         if (!open_req->rq_replay)
713                 RETURN(0);
714
715         rec = req_capsule_client_get(&open_req->rq_pill, &RMF_REC_REINT);
716         body = req_capsule_server_get(&open_req->rq_pill, &RMF_MDT_BODY);
717         LASSERT(rec != NULL);
718         /* Incoming message in my byte order (it's been swabbed). */
719         /* Outgoing messages always in my byte order. */
720         LASSERT(body != NULL);
721
722         /* Only if the import is replayable, we set replay_open data */
723         if (och && imp->imp_replayable) {
724                 mod = obd_mod_alloc();
725                 if (mod == NULL) {
726                         DEBUG_REQ(D_ERROR, open_req,
727                                   "Can't allocate md_open_data");
728                         RETURN(0);
729                 }
730
731                 /**
732                  * Take a reference on \var mod, to be freed on mdc_close().
733                  * It protects \var mod from being freed on eviction (commit
734                  * callback is called despite rq_replay flag).
735                  * Another reference for \var och.
736                  */
737                 obd_mod_get(mod);
738                 obd_mod_get(mod);
739
740                 cfs_spin_lock(&open_req->rq_lock);
741                 och->och_mod = mod;
742                 mod->mod_och = och;
743                 mod->mod_open_req = open_req;
744                 open_req->rq_cb_data = mod;
745                 open_req->rq_commit_cb = mdc_commit_open;
746                 cfs_spin_unlock(&open_req->rq_lock);
747         }
748
749         rec->cr_fid2 = body->fid1;
750         rec->cr_ioepoch = body->ioepoch;
751         rec->cr_old_handle.cookie = body->handle.cookie;
752         open_req->rq_replay_cb = mdc_replay_open;
753         if (!fid_is_sane(&body->fid1)) {
754                 DEBUG_REQ(D_ERROR, open_req, "Saving replay request with "
755                           "insane fid");
756                 LBUG();
757         }
758
759         DEBUG_REQ(D_RPCTRACE, open_req, "Set up open replay data");
760         RETURN(0);
761 }
762
763 int mdc_clear_open_replay_data(struct obd_export *exp,
764                                struct obd_client_handle *och)
765 {
766         struct md_open_data *mod = och->och_mod;
767         ENTRY;
768
769         /**
770          * It is possible to not have \var mod in a case of eviction between
771          * lookup and ll_file_open().
772          **/
773         if (mod == NULL)
774                 RETURN(0);
775
776         LASSERT(mod != LP_POISON);
777
778         mod->mod_och = NULL;
779         och->och_mod = NULL;
780         obd_mod_put(mod);
781
782         RETURN(0);
783 }
784
785 /* Prepares the request for the replay by the given reply */
786 static void mdc_close_handle_reply(struct ptlrpc_request *req,
787                                    struct md_op_data *op_data, int rc) {
788         struct mdt_body  *repbody;
789         struct mdt_ioepoch *epoch;
790
791         if (req && rc == -EAGAIN) {
792                 repbody = req_capsule_server_get(&req->rq_pill, &RMF_MDT_BODY);
793                 epoch = req_capsule_client_get(&req->rq_pill, &RMF_MDT_EPOCH);
794
795                 epoch->flags |= MF_SOM_AU;
796                 if (repbody->valid & OBD_MD_FLGETATTRLOCK)
797                         op_data->op_flags |= MF_GETATTR_LOCK;
798         }
799 }
800
801 int mdc_close(struct obd_export *exp, struct md_op_data *op_data,
802               struct md_open_data *mod, struct ptlrpc_request **request)
803 {
804         struct obd_device     *obd = class_exp2obd(exp);
805         struct ptlrpc_request *req;
806         int                    rc;
807         ENTRY;
808
809         *request = NULL;
810         req = ptlrpc_request_alloc(class_exp2cliimp(exp), &RQF_MDS_CLOSE);
811         if (req == NULL)
812                 RETURN(-ENOMEM);
813
814         mdc_set_capa_size(req, &RMF_CAPA1, op_data->op_capa1);
815
816         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_CLOSE);
817         if (rc) {
818                 ptlrpc_request_free(req);
819                 RETURN(rc);
820         }
821
822         /* To avoid a livelock (bug 7034), we need to send CLOSE RPCs to a
823          * portal whose threads are not taking any DLM locks and are therefore
824          * always progressing */
825         req->rq_request_portal = MDS_READPAGE_PORTAL;
826         ptlrpc_at_set_req_timeout(req);
827
828         /* Ensure that this close's handle is fixed up during replay. */
829         if (likely(mod != NULL)) {
830                 LASSERTF(mod->mod_open_req != NULL &&
831                          mod->mod_open_req->rq_type != LI_POISON,
832                          "POISONED open %p!\n", mod->mod_open_req);
833
834                 mod->mod_close_req = req;
835
836                 DEBUG_REQ(D_HA, mod->mod_open_req, "matched open");
837                 /* We no longer want to preserve this open for replay even
838                  * though the open was committed. b=3632, b=3633 */
839                 cfs_spin_lock(&mod->mod_open_req->rq_lock);
840                 mod->mod_open_req->rq_replay = 0;
841                 cfs_spin_unlock(&mod->mod_open_req->rq_lock);
842         } else {
843                  CDEBUG(D_HA, "couldn't find open req; expecting close error\n");
844         }
845
846         mdc_close_pack(req, op_data);
847
848         req_capsule_set_size(&req->rq_pill, &RMF_MDT_MD, RCL_SERVER,
849                              obd->u.cli.cl_max_mds_easize);
850         req_capsule_set_size(&req->rq_pill, &RMF_LOGCOOKIES, RCL_SERVER,
851                              obd->u.cli.cl_max_mds_cookiesize);
852
853         ptlrpc_request_set_replen(req);
854
855         mdc_get_rpc_lock(obd->u.cli.cl_close_lock, NULL);
856         rc = ptlrpc_queue_wait(req);
857         mdc_put_rpc_lock(obd->u.cli.cl_close_lock, NULL);
858
859         if (req->rq_repmsg == NULL) {
860                 CDEBUG(D_RPCTRACE, "request failed to send: %p, %d\n", req,
861                        req->rq_status);
862                 if (rc == 0)
863                         rc = req->rq_status ?: -EIO;
864         } else if (rc == 0 || rc == -EAGAIN) {
865                 struct mdt_body *body;
866
867                 rc = lustre_msg_get_status(req->rq_repmsg);
868                 if (lustre_msg_get_type(req->rq_repmsg) == PTL_RPC_MSG_ERR) {
869                         DEBUG_REQ(D_ERROR, req, "type == PTL_RPC_MSG_ERR, err "
870                                   "= %d", rc);
871                         if (rc > 0)
872                                 rc = -rc;
873                 }
874                 body = req_capsule_server_get(&req->rq_pill, &RMF_MDT_BODY);
875                 if (body == NULL)
876                         rc = -EPROTO;
877         } else if (rc == -ESTALE) {
878                 /**
879                  * it can be allowed error after 3633 if open was committed and
880                  * server failed before close was sent. Let's check if mod
881                  * exists and return no error in that case
882                  */
883                 if (mod) {
884                         DEBUG_REQ(D_HA, req, "Reset ESTALE = %d", rc);
885                         LASSERT(mod->mod_open_req != NULL);
886                         if (mod->mod_open_req->rq_committed)
887                                 rc = 0;
888                 }
889         }
890
891         if (mod) {
892                 if (rc != 0)
893                         mod->mod_close_req = NULL;
894                 /* Since now, mod is accessed through open_req only,
895                  * thus close req does not keep a reference on mod anymore. */
896                 obd_mod_put(mod);
897         }
898         *request = req;
899         mdc_close_handle_reply(req, op_data, rc);
900         RETURN(rc);
901 }
902
903 int mdc_done_writing(struct obd_export *exp, struct md_op_data *op_data,
904                      struct md_open_data *mod)
905 {
906         struct obd_device     *obd = class_exp2obd(exp);
907         struct ptlrpc_request *req;
908         int                    rc;
909         ENTRY;
910
911         req = ptlrpc_request_alloc(class_exp2cliimp(exp),
912                                    &RQF_MDS_DONE_WRITING);
913         if (req == NULL)
914                 RETURN(-ENOMEM);
915
916         mdc_set_capa_size(req, &RMF_CAPA1, op_data->op_capa1);
917         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_DONE_WRITING);
918         if (rc) {
919                 ptlrpc_request_free(req);
920                 RETURN(rc);
921         }
922
923         if (mod != NULL) {
924                 LASSERTF(mod->mod_open_req != NULL &&
925                          mod->mod_open_req->rq_type != LI_POISON,
926                          "POISONED setattr %p!\n", mod->mod_open_req);
927
928                 mod->mod_close_req = req;
929                 DEBUG_REQ(D_HA, mod->mod_open_req, "matched setattr");
930                 /* We no longer want to preserve this setattr for replay even
931                  * though the open was committed. b=3632, b=3633 */
932                 cfs_spin_lock(&mod->mod_open_req->rq_lock);
933                 mod->mod_open_req->rq_replay = 0;
934                 cfs_spin_unlock(&mod->mod_open_req->rq_lock);
935         }
936
937         mdc_close_pack(req, op_data);
938         ptlrpc_request_set_replen(req);
939
940         mdc_get_rpc_lock(obd->u.cli.cl_close_lock, NULL);
941         rc = ptlrpc_queue_wait(req);
942         mdc_put_rpc_lock(obd->u.cli.cl_close_lock, NULL);
943
944         if (rc == -ESTALE) {
945                 /**
946                  * it can be allowed error after 3633 if open or setattr were
947                  * committed and server failed before close was sent.
948                  * Let's check if mod exists and return no error in that case
949                  */
950                 if (mod) {
951                         LASSERT(mod->mod_open_req != NULL);
952                         if (mod->mod_open_req->rq_committed)
953                                 rc = 0;
954                 }
955         }
956
957         if (mod) {
958                 if (rc != 0)
959                         mod->mod_close_req = NULL;
960                 /* Since now, mod is accessed through setattr req only,
961                  * thus DW req does not keep a reference on mod anymore. */
962                 obd_mod_put(mod);
963         }
964
965         mdc_close_handle_reply(req, op_data, rc);
966         ptlrpc_req_finished(req);
967         RETURN(rc);
968 }
969
970 #ifdef HAVE_SPLIT_SUPPORT
971 int mdc_sendpage(struct obd_export *exp, const struct lu_fid *fid,
972                  const struct page *page, int offset)
973 {
974         struct ptlrpc_request   *req;
975         struct ptlrpc_bulk_desc *desc;
976         int                      rc;
977         ENTRY;
978
979         req = ptlrpc_request_alloc(class_exp2cliimp(exp), &RQF_MDS_WRITEPAGE);
980         if (req == NULL)
981                 RETURN(-ENOMEM);
982
983         /* FIXME: capa doesn't support split yet */
984         mdc_set_capa_size(req, &RMF_CAPA1, NULL);
985
986         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_WRITEPAGE);
987         if (rc) {
988                 ptlrpc_request_free(req);
989                 RETURN(rc);
990         }
991
992         req->rq_request_portal = MDS_READPAGE_PORTAL;
993         ptlrpc_at_set_req_timeout(req);
994
995         desc = ptlrpc_prep_bulk_imp(req, 1, BULK_GET_SOURCE, MDS_BULK_PORTAL);
996         if (desc == NULL)
997                 GOTO(out, rc = -ENOMEM);
998
999         /* NB req now owns desc and will free it when it gets freed. */
1000         ptlrpc_prep_bulk_page(desc, (struct page *)page, 0, offset);
1001         mdc_readdir_pack(req, 0, offset, fid, NULL);
1002
1003         ptlrpc_request_set_replen(req);
1004         rc = ptlrpc_queue_wait(req);
1005         if (rc)
1006                 GOTO(out, rc);
1007
1008         rc = sptlrpc_cli_unwrap_bulk_write(req, req->rq_bulk);
1009 out:
1010         ptlrpc_req_finished(req);
1011         return rc;
1012 }
1013 EXPORT_SYMBOL(mdc_sendpage);
1014 #endif
1015
1016 int mdc_readpage(struct obd_export *exp, struct md_op_data *op_data,
1017                  struct page **pages, struct ptlrpc_request **request)
1018 {
1019         struct ptlrpc_request   *req;
1020         struct ptlrpc_bulk_desc *desc;
1021         int                      i;
1022         cfs_waitq_t              waitq;
1023         int                      resends = 0;
1024         struct l_wait_info       lwi;
1025         int                      rc;
1026         ENTRY;
1027
1028         *request = NULL;
1029         cfs_waitq_init(&waitq);
1030
1031 restart_bulk:
1032         req = ptlrpc_request_alloc(class_exp2cliimp(exp), &RQF_MDS_READPAGE);
1033         if (req == NULL)
1034                 RETURN(-ENOMEM);
1035
1036         mdc_set_capa_size(req, &RMF_CAPA1, op_data->op_capa1);
1037
1038         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_READPAGE);
1039         if (rc) {
1040                 ptlrpc_request_free(req);
1041                 RETURN(rc);
1042         }
1043
1044         req->rq_request_portal = MDS_READPAGE_PORTAL;
1045         ptlrpc_at_set_req_timeout(req);
1046
1047         desc = ptlrpc_prep_bulk_imp(req, op_data->op_npages, BULK_PUT_SINK,
1048                                     MDS_BULK_PORTAL);
1049         if (desc == NULL) {
1050                 ptlrpc_request_free(req);
1051                 RETURN(-ENOMEM);
1052         }
1053
1054         /* NB req now owns desc and will free it when it gets freed */
1055         for (i = 0; i < op_data->op_npages; i++)
1056                 ptlrpc_prep_bulk_page(desc, pages[i], 0, CFS_PAGE_SIZE);
1057
1058         mdc_readdir_pack(req, op_data->op_offset,
1059                          CFS_PAGE_SIZE * op_data->op_npages,
1060                          &op_data->op_fid1, op_data->op_capa1);
1061
1062         ptlrpc_request_set_replen(req);
1063         rc = ptlrpc_queue_wait(req);
1064         if (rc) {
1065                 ptlrpc_req_finished(req);
1066                 if (rc != -ETIMEDOUT)
1067                         RETURN(rc);
1068
1069                 resends++;
1070                 if (!client_should_resend(resends, &exp->exp_obd->u.cli)) {
1071                         CERROR("too many resend retries, returning error\n");
1072                         RETURN(-EIO);
1073                 }
1074                 lwi = LWI_TIMEOUT_INTR(cfs_time_seconds(resends), NULL, NULL, NULL);
1075                 l_wait_event(waitq, 0, &lwi);
1076
1077                 goto restart_bulk;
1078         }
1079
1080         rc = sptlrpc_cli_unwrap_bulk_read(req, req->rq_bulk,
1081                                           req->rq_bulk->bd_nob_transferred);
1082         if (rc < 0) {
1083                 ptlrpc_req_finished(req);
1084                 RETURN(rc);
1085         }
1086
1087         if (req->rq_bulk->bd_nob_transferred & ~LU_PAGE_MASK) {
1088                 CERROR("Unexpected # bytes transferred: %d (%ld expected)\n",
1089                         req->rq_bulk->bd_nob_transferred,
1090                         CFS_PAGE_SIZE * op_data->op_npages);
1091                 ptlrpc_req_finished(req);
1092                 RETURN(-EPROTO);
1093         }
1094
1095         *request = req;
1096         RETURN(0);
1097 }
1098
1099 static int mdc_statfs(const struct lu_env *env,
1100                       struct obd_export *exp, struct obd_statfs *osfs,
1101                       __u64 max_age, __u32 flags)
1102 {
1103         struct obd_device     *obd = class_exp2obd(exp);
1104         struct ptlrpc_request *req;
1105         struct obd_statfs     *msfs;
1106         struct obd_import     *imp = NULL;
1107         int                    rc;
1108         ENTRY;
1109
1110         /*
1111          * Since the request might also come from lprocfs, so we need
1112          * sync this with client_disconnect_export Bug15684
1113          */
1114         cfs_down_read(&obd->u.cli.cl_sem);
1115         if (obd->u.cli.cl_import)
1116                 imp = class_import_get(obd->u.cli.cl_import);
1117         cfs_up_read(&obd->u.cli.cl_sem);
1118         if (!imp)
1119                 RETURN(-ENODEV);
1120
1121         req = ptlrpc_request_alloc_pack(imp, &RQF_MDS_STATFS,
1122                                         LUSTRE_MDS_VERSION, MDS_STATFS);
1123         if (req == NULL)
1124                 GOTO(output, rc = -ENOMEM);
1125
1126         ptlrpc_request_set_replen(req);
1127
1128         if (flags & OBD_STATFS_NODELAY) {
1129                 /* procfs requests not want stay in wait for avoid deadlock */
1130                 req->rq_no_resend = 1;
1131                 req->rq_no_delay = 1;
1132         }
1133
1134         rc = ptlrpc_queue_wait(req);
1135         if (rc) {
1136                 /* check connection error first */
1137                 if (imp->imp_connect_error)
1138                         rc = imp->imp_connect_error;
1139                 GOTO(out, rc);
1140         }
1141
1142         msfs = req_capsule_server_get(&req->rq_pill, &RMF_OBD_STATFS);
1143         if (msfs == NULL)
1144                 GOTO(out, rc = -EPROTO);
1145
1146         *osfs = *msfs;
1147         EXIT;
1148 out:
1149         ptlrpc_req_finished(req);
1150 output:
1151         class_import_put(imp);
1152         return rc;
1153 }
1154
1155 static int mdc_ioc_fid2path(struct obd_export *exp, struct getinfo_fid2path *gf)
1156 {
1157         __u32 keylen, vallen;
1158         void *key;
1159         int rc;
1160
1161         if (gf->gf_pathlen > PATH_MAX)
1162                 RETURN(-ENAMETOOLONG);
1163         if (gf->gf_pathlen < 2)
1164                 RETURN(-EOVERFLOW);
1165
1166         /* Key is KEY_FID2PATH + getinfo_fid2path description */
1167         keylen = cfs_size_round(sizeof(KEY_FID2PATH)) + sizeof(*gf);
1168         OBD_ALLOC(key, keylen);
1169         if (key == NULL)
1170                 RETURN(-ENOMEM);
1171         memcpy(key, KEY_FID2PATH, sizeof(KEY_FID2PATH));
1172         memcpy(key + cfs_size_round(sizeof(KEY_FID2PATH)), gf, sizeof(*gf));
1173
1174         CDEBUG(D_IOCTL, "path get "DFID" from "LPU64" #%d\n",
1175                PFID(&gf->gf_fid), gf->gf_recno, gf->gf_linkno);
1176
1177         if (!fid_is_sane(&gf->gf_fid))
1178                 GOTO(out, rc = -EINVAL);
1179
1180         /* Val is struct getinfo_fid2path result plus path */
1181         vallen = sizeof(*gf) + gf->gf_pathlen;
1182
1183         rc = obd_get_info(NULL, exp, keylen, key, &vallen, gf, NULL);
1184         if (rc)
1185                 GOTO(out, rc);
1186
1187         if (vallen <= sizeof(*gf))
1188                 GOTO(out, rc = -EPROTO);
1189         else if (vallen > sizeof(*gf) + gf->gf_pathlen)
1190                 GOTO(out, rc = -EOVERFLOW);
1191
1192         CDEBUG(D_IOCTL, "path get "DFID" from "LPU64" #%d\n%s\n",
1193                PFID(&gf->gf_fid), gf->gf_recno, gf->gf_linkno, gf->gf_path);
1194
1195 out:
1196         OBD_FREE(key, keylen);
1197         return rc;
1198 }
1199
1200 static struct kuc_hdr *changelog_kuc_hdr(char *buf, int len, int flags)
1201 {
1202         struct kuc_hdr *lh = (struct kuc_hdr *)buf;
1203
1204         LASSERT(len <= CR_MAXSIZE);
1205
1206         lh->kuc_magic = KUC_MAGIC;
1207         lh->kuc_transport = KUC_TRANSPORT_CHANGELOG;
1208         lh->kuc_flags = flags;
1209         lh->kuc_msgtype = CL_RECORD;
1210         lh->kuc_msglen = len;
1211         return lh;
1212 }
1213
1214 #define D_CHANGELOG 0
1215
1216 struct changelog_show {
1217         __u64       cs_startrec;
1218         __u32       cs_flags;
1219         cfs_file_t *cs_fp;
1220         char       *cs_buf;
1221         struct obd_device *cs_obd;
1222 };
1223
1224 static int changelog_show_cb(const struct lu_env *env, struct llog_handle *llh,
1225                              struct llog_rec_hdr *hdr, void *data)
1226 {
1227         struct changelog_show *cs = data;
1228         struct llog_changelog_rec *rec = (struct llog_changelog_rec *)hdr;
1229         struct kuc_hdr *lh;
1230         int len, rc;
1231         ENTRY;
1232
1233         if ((rec->cr_hdr.lrh_type != CHANGELOG_REC) ||
1234             (rec->cr.cr_type >= CL_LAST)) {
1235                 CERROR("Not a changelog rec %d/%d\n", rec->cr_hdr.lrh_type,
1236                        rec->cr.cr_type);
1237                 RETURN(-EINVAL);
1238         }
1239
1240         if (rec->cr.cr_index < cs->cs_startrec) {
1241                 /* Skip entries earlier than what we are interested in */
1242                 CDEBUG(D_CHANGELOG, "rec="LPU64" start="LPU64"\n",
1243                        rec->cr.cr_index, cs->cs_startrec);
1244                 RETURN(0);
1245         }
1246
1247         CDEBUG(D_CHANGELOG, LPU64" %02d%-5s "LPU64" 0x%x t="DFID" p="DFID
1248                 " %.*s\n", rec->cr.cr_index, rec->cr.cr_type,
1249                 changelog_type2str(rec->cr.cr_type), rec->cr.cr_time,
1250                 rec->cr.cr_flags & CLF_FLAGMASK,
1251                 PFID(&rec->cr.cr_tfid), PFID(&rec->cr.cr_pfid),
1252                 rec->cr.cr_namelen, changelog_rec_name(&rec->cr));
1253
1254         len = sizeof(*lh) + changelog_rec_size(&rec->cr) + rec->cr.cr_namelen;
1255
1256         /* Set up the message */
1257         lh = changelog_kuc_hdr(cs->cs_buf, len, cs->cs_flags);
1258         memcpy(lh + 1, &rec->cr, len - sizeof(*lh));
1259
1260         rc = libcfs_kkuc_msg_put(cs->cs_fp, lh);
1261         CDEBUG(D_CHANGELOG, "kucmsg fp %p len %d rc %d\n", cs->cs_fp, len,rc);
1262
1263         RETURN(rc);
1264 }
1265
1266 static int mdc_changelog_send_thread(void *csdata)
1267 {
1268         struct changelog_show *cs = csdata;
1269         struct llog_ctxt *ctxt = NULL;
1270         struct llog_handle *llh = NULL;
1271         struct kuc_hdr *kuch;
1272         int rc;
1273
1274         CDEBUG(D_CHANGELOG, "changelog to fp=%p start "LPU64"\n",
1275                cs->cs_fp, cs->cs_startrec);
1276
1277         /*
1278          * It's important to daemonize here to close unused FDs.
1279          * The write fd from pipe is already opened by the caller,
1280          * so it's fine to clear all files here
1281          */
1282         cfs_daemonize("mdc_clg_send_thread");
1283
1284         OBD_ALLOC(cs->cs_buf, CR_MAXSIZE);
1285         if (cs->cs_buf == NULL)
1286                 GOTO(out, rc = -ENOMEM);
1287
1288         /* Set up the remote catalog handle */
1289         ctxt = llog_get_context(cs->cs_obd, LLOG_CHANGELOG_REPL_CTXT);
1290         if (ctxt == NULL)
1291                 GOTO(out, rc = -ENOENT);
1292         rc = llog_create(NULL, ctxt, &llh, NULL, CHANGELOG_CATALOG);
1293         if (rc) {
1294                 CERROR("llog_create() failed %d\n", rc);
1295                 GOTO(out, rc);
1296         }
1297         rc = llog_init_handle(NULL, llh, LLOG_F_IS_CAT, NULL);
1298         if (rc) {
1299                 CERROR("llog_init_handle failed %d\n", rc);
1300                 GOTO(out, rc);
1301         }
1302
1303         rc = llog_cat_process(NULL, llh, changelog_show_cb, cs, 0, 0);
1304
1305         /* Send EOF no matter what our result */
1306         if ((kuch = changelog_kuc_hdr(cs->cs_buf, sizeof(*kuch),
1307                                       cs->cs_flags))) {
1308                 kuch->kuc_msgtype = CL_EOF;
1309                 libcfs_kkuc_msg_put(cs->cs_fp, kuch);
1310         }
1311
1312 out:
1313         cfs_put_file(cs->cs_fp);
1314         if (llh)
1315                 llog_cat_put(NULL, llh);
1316         if (ctxt)
1317                 llog_ctxt_put(ctxt);
1318         if (cs->cs_buf)
1319                 OBD_FREE(cs->cs_buf, CR_MAXSIZE);
1320         OBD_FREE_PTR(cs);
1321         /* detach from parent process so we get cleaned up */
1322         cfs_daemonize("cl_send");
1323         return rc;
1324 }
1325
1326 static int mdc_ioc_changelog_send(struct obd_device *obd,
1327                                   struct ioc_changelog *icc)
1328 {
1329         struct changelog_show *cs;
1330         int rc;
1331
1332         /* Freed in mdc_changelog_send_thread */
1333         OBD_ALLOC_PTR(cs);
1334         if (!cs)
1335                 return -ENOMEM;
1336
1337         cs->cs_obd = obd;
1338         cs->cs_startrec = icc->icc_recno;
1339         /* matching cfs_put_file in mdc_changelog_send_thread */
1340         cs->cs_fp = cfs_get_fd(icc->icc_id);
1341         cs->cs_flags = icc->icc_flags;
1342
1343         /* New thread because we should return to user app before
1344            writing into our pipe */
1345         rc = cfs_create_thread(mdc_changelog_send_thread, cs, CFS_DAEMON_FLAGS);
1346         if (rc >= 0) {
1347                 CDEBUG(D_CHANGELOG, "start changelog thread: %d\n", rc);
1348                 return 0;
1349         }
1350
1351         CERROR("Failed to start changelog thread: %d\n", rc);
1352         OBD_FREE_PTR(cs);
1353         return rc;
1354 }
1355
1356 static int mdc_ioc_hsm_ct_start(struct obd_export *exp,
1357                                 struct lustre_kernelcomm *lk);
1358
1359 static int mdc_quotacheck(struct obd_device *unused, struct obd_export *exp,
1360                           struct obd_quotactl *oqctl)
1361 {
1362         struct client_obd       *cli = &exp->exp_obd->u.cli;
1363         struct ptlrpc_request   *req;
1364         struct obd_quotactl     *body;
1365         int                      rc;
1366         ENTRY;
1367
1368         req = ptlrpc_request_alloc_pack(class_exp2cliimp(exp),
1369                                         &RQF_MDS_QUOTACHECK, LUSTRE_MDS_VERSION,
1370                                         MDS_QUOTACHECK);
1371         if (req == NULL)
1372                 RETURN(-ENOMEM);
1373
1374         body = req_capsule_client_get(&req->rq_pill, &RMF_OBD_QUOTACTL);
1375         *body = *oqctl;
1376
1377         ptlrpc_request_set_replen(req);
1378
1379         /* the next poll will find -ENODATA, that means quotacheck is
1380          * going on */
1381         cli->cl_qchk_stat = -ENODATA;
1382         rc = ptlrpc_queue_wait(req);
1383         if (rc)
1384                 cli->cl_qchk_stat = rc;
1385         ptlrpc_req_finished(req);
1386         RETURN(rc);
1387 }
1388
1389 static int mdc_quota_poll_check(struct obd_export *exp,
1390                                 struct if_quotacheck *qchk)
1391 {
1392         struct client_obd *cli = &exp->exp_obd->u.cli;
1393         int rc;
1394         ENTRY;
1395
1396         qchk->obd_uuid = cli->cl_target_uuid;
1397         memcpy(qchk->obd_type, LUSTRE_MDS_NAME, strlen(LUSTRE_MDS_NAME));
1398
1399         rc = cli->cl_qchk_stat;
1400         /* the client is not the previous one */
1401         if (rc == CL_NOT_QUOTACHECKED)
1402                 rc = -EINTR;
1403         RETURN(rc);
1404 }
1405
1406 static int mdc_quotactl(struct obd_device *unused, struct obd_export *exp,
1407                         struct obd_quotactl *oqctl)
1408 {
1409         struct ptlrpc_request   *req;
1410         struct obd_quotactl     *oqc;
1411         int                      rc;
1412         ENTRY;
1413
1414         req = ptlrpc_request_alloc_pack(class_exp2cliimp(exp),
1415                                         &RQF_MDS_QUOTACTL, LUSTRE_MDS_VERSION,
1416                                         MDS_QUOTACTL);
1417         if (req == NULL)
1418                 RETURN(-ENOMEM);
1419
1420         oqc = req_capsule_client_get(&req->rq_pill, &RMF_OBD_QUOTACTL);
1421         *oqc = *oqctl;
1422
1423         ptlrpc_request_set_replen(req);
1424         ptlrpc_at_set_req_timeout(req);
1425         req->rq_no_resend = 1;
1426
1427         rc = ptlrpc_queue_wait(req);
1428         if (rc)
1429                 CERROR("ptlrpc_queue_wait failed, rc: %d\n", rc);
1430
1431         if (req->rq_repmsg &&
1432             (oqc = req_capsule_server_get(&req->rq_pill, &RMF_OBD_QUOTACTL))) {
1433                 *oqctl = *oqc;
1434         } else if (!rc) {
1435                 CERROR ("Can't unpack obd_quotactl\n");
1436                 rc = -EPROTO;
1437         }
1438         ptlrpc_req_finished(req);
1439
1440         RETURN(rc);
1441 }
1442
1443 static int mdc_iocontrol(unsigned int cmd, struct obd_export *exp, int len,
1444                          void *karg, void *uarg)
1445 {
1446         struct obd_device *obd = exp->exp_obd;
1447         struct obd_ioctl_data *data = karg;
1448         struct obd_import *imp = obd->u.cli.cl_import;
1449         struct llog_ctxt *ctxt;
1450         int rc;
1451         ENTRY;
1452
1453         if (!cfs_try_module_get(THIS_MODULE)) {
1454                 CERROR("Can't get module. Is it alive?");
1455                 return -EINVAL;
1456         }
1457         switch (cmd) {
1458         case LL_IOC_HSM_CT_START:
1459                 rc = mdc_ioc_hsm_ct_start(exp, karg);
1460                 GOTO(out, rc);
1461         case OBD_IOC_CHANGELOG_SEND:
1462                 rc = mdc_ioc_changelog_send(obd, karg);
1463                 GOTO(out, rc);
1464         case OBD_IOC_CHANGELOG_CLEAR: {
1465                 struct ioc_changelog *icc = karg;
1466                 struct changelog_setinfo cs =
1467                         {.cs_recno = icc->icc_recno, .cs_id = icc->icc_id};
1468                 rc = obd_set_info_async(NULL, exp, strlen(KEY_CHANGELOG_CLEAR),
1469                                         KEY_CHANGELOG_CLEAR, sizeof(cs), &cs,
1470                                         NULL);
1471                 GOTO(out, rc);
1472         }
1473         case OBD_IOC_FID2PATH: {
1474                 rc = mdc_ioc_fid2path(exp, karg);
1475                 GOTO(out, rc);
1476         }
1477         case OBD_IOC_CLIENT_RECOVER:
1478                 rc = ptlrpc_recover_import(imp, data->ioc_inlbuf1, 0);
1479                 if (rc < 0)
1480                         GOTO(out, rc);
1481                 GOTO(out, rc = 0);
1482         case IOC_OSC_SET_ACTIVE:
1483                 rc = ptlrpc_set_import_active(imp, data->ioc_offset);
1484                 GOTO(out, rc);
1485         case OBD_IOC_PARSE: {
1486                 ctxt = llog_get_context(exp->exp_obd, LLOG_CONFIG_REPL_CTXT);
1487                 rc = class_config_parse_llog(ctxt, data->ioc_inlbuf1, NULL);
1488                 llog_ctxt_put(ctxt);
1489                 GOTO(out, rc);
1490         }
1491 #ifdef __KERNEL__
1492         case OBD_IOC_LLOG_INFO:
1493         case OBD_IOC_LLOG_PRINT: {
1494                 ctxt = llog_get_context(obd, LLOG_CONFIG_REPL_CTXT);
1495                 rc = llog_ioctl(ctxt, cmd, data);
1496                 llog_ctxt_put(ctxt);
1497                 GOTO(out, rc);
1498         }
1499 #endif
1500         case OBD_IOC_POLL_QUOTACHECK:
1501                 rc = mdc_quota_poll_check(exp, (struct if_quotacheck *)karg);
1502                 GOTO(out, rc);
1503         case OBD_IOC_PING_TARGET:
1504                 rc = ptlrpc_obd_ping(obd);
1505                 GOTO(out, rc);
1506         /*
1507          * Normally IOC_OBD_STATFS, OBD_IOC_QUOTACTL iocontrol are handled by
1508          * LMV instead of MDC. But when the cluster is upgraded from 1.8,
1509          * there'd be no LMV layer thus we might be called here. Eventually
1510          * this code should be removed.
1511          * bz20731, LU-592.
1512          */
1513         case IOC_OBD_STATFS: {
1514                 struct obd_statfs stat_buf = {0};
1515
1516                 if (*((__u32 *) data->ioc_inlbuf2) != 0)
1517                         GOTO(out, rc = -ENODEV);
1518
1519                 /* copy UUID */
1520                 if (cfs_copy_to_user(data->ioc_pbuf2, obd2cli_tgt(obd),
1521                                      min((int) data->ioc_plen2,
1522                                          (int) sizeof(struct obd_uuid))))
1523                         GOTO(out, rc = -EFAULT);
1524
1525                 rc = mdc_statfs(NULL, obd->obd_self_export, &stat_buf,
1526                                 cfs_time_shift_64(-OBD_STATFS_CACHE_SECONDS),
1527                                 0);
1528                 if (rc != 0)
1529                         GOTO(out, rc);
1530
1531                 if (cfs_copy_to_user(data->ioc_pbuf1, &stat_buf,
1532                                      min((int) data->ioc_plen1,
1533                                          (int) sizeof(stat_buf))))
1534                         GOTO(out, rc = -EFAULT);
1535
1536                 GOTO(out, rc = 0);
1537         }
1538         case OBD_IOC_QUOTACTL: {
1539                 struct if_quotactl *qctl = karg;
1540                 struct obd_quotactl *oqctl;
1541
1542                 OBD_ALLOC_PTR(oqctl);
1543                 if (!oqctl)
1544                         RETURN(-ENOMEM);
1545
1546                 QCTL_COPY(oqctl, qctl);
1547                 rc = obd_quotactl(exp, oqctl);
1548                 if (rc == 0) {
1549                         QCTL_COPY(qctl, oqctl);
1550                         qctl->qc_valid = QC_MDTIDX;
1551                         qctl->obd_uuid = obd->u.cli.cl_target_uuid;
1552                 }
1553                 OBD_FREE_PTR(oqctl);
1554                 break;
1555         }
1556         case LL_IOC_GET_CONNECT_FLAGS: {
1557                 if (cfs_copy_to_user(uarg, &exp->exp_connect_flags,
1558                                      sizeof(__u64)))
1559                         GOTO(out, rc = -EFAULT);
1560                 else
1561                         GOTO(out, rc = 0);
1562         }
1563         default:
1564                 CERROR("mdc_ioctl(): unrecognised ioctl %#x\n", cmd);
1565                 GOTO(out, rc = -ENOTTY);
1566         }
1567 out:
1568         cfs_module_put(THIS_MODULE);
1569
1570         return rc;
1571 }
1572
1573 int mdc_get_info_rpc(struct obd_export *exp,
1574                      obd_count keylen, void *key,
1575                      int vallen, void *val)
1576 {
1577         struct obd_import      *imp = class_exp2cliimp(exp);
1578         struct ptlrpc_request  *req;
1579         char                   *tmp;
1580         int                     rc = -EINVAL;
1581         ENTRY;
1582
1583         req = ptlrpc_request_alloc(imp, &RQF_MDS_GET_INFO);
1584         if (req == NULL)
1585                 RETURN(-ENOMEM);
1586
1587         req_capsule_set_size(&req->rq_pill, &RMF_GETINFO_KEY,
1588                              RCL_CLIENT, keylen);
1589         req_capsule_set_size(&req->rq_pill, &RMF_GETINFO_VALLEN,
1590                              RCL_CLIENT, sizeof(__u32));
1591
1592         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_GET_INFO);
1593         if (rc) {
1594                 ptlrpc_request_free(req);
1595                 RETURN(rc);
1596         }
1597
1598         tmp = req_capsule_client_get(&req->rq_pill, &RMF_GETINFO_KEY);
1599         memcpy(tmp, key, keylen);
1600         tmp = req_capsule_client_get(&req->rq_pill, &RMF_GETINFO_VALLEN);
1601         memcpy(tmp, &vallen, sizeof(__u32));
1602
1603         req_capsule_set_size(&req->rq_pill, &RMF_GETINFO_VAL,
1604                              RCL_SERVER, vallen);
1605         ptlrpc_request_set_replen(req);
1606
1607         rc = ptlrpc_queue_wait(req);
1608         if (rc == 0) {
1609                 tmp = req_capsule_server_get(&req->rq_pill, &RMF_GETINFO_VAL);
1610                 memcpy(val, tmp, vallen);
1611                 if (ptlrpc_rep_need_swab(req)) {
1612                         if (KEY_IS(KEY_FID2PATH)) {
1613                                 lustre_swab_fid2path(val);
1614                         }
1615                 }
1616         }
1617         ptlrpc_req_finished(req);
1618
1619         RETURN(rc);
1620 }
1621
1622 static void lustre_swab_hai(struct hsm_action_item *h)
1623 {
1624         __swab32s(&h->hai_len);
1625         __swab32s(&h->hai_action);
1626         lustre_swab_lu_fid(&h->hai_fid);
1627         __swab64s(&h->hai_cookie);
1628         __swab64s(&h->hai_extent.offset);
1629         __swab64s(&h->hai_extent.length);
1630         __swab64s(&h->hai_gid);
1631 }
1632
1633 static void lustre_swab_hal(struct hsm_action_list *h)
1634 {
1635         struct hsm_action_item *hai;
1636         int i;
1637
1638         __swab32s(&h->hal_version);
1639         __swab32s(&h->hal_count);
1640         __swab32s(&h->hal_archive_num);
1641         hai = hai_zero(h);
1642         for (i = 0; i < h->hal_count; i++) {
1643                 lustre_swab_hai(hai);
1644                 hai = hai_next(hai);
1645         }
1646 }
1647
1648 static void lustre_swab_kuch(struct kuc_hdr *l)
1649 {
1650         __swab16s(&l->kuc_magic);
1651         /* __u8 l->kuc_transport */
1652         __swab16s(&l->kuc_msgtype);
1653         __swab16s(&l->kuc_msglen);
1654 }
1655
1656 static int mdc_ioc_hsm_ct_start(struct obd_export *exp,
1657                                 struct lustre_kernelcomm *lk)
1658 {
1659         int rc = 0;
1660
1661         if (lk->lk_group != KUC_GRP_HSM) {
1662                 CERROR("Bad copytool group %d\n", lk->lk_group);
1663                 return -EINVAL;
1664         }
1665
1666         CDEBUG(D_HSM, "CT start r%d w%d u%d g%d f%#x\n", lk->lk_rfd, lk->lk_wfd,
1667                lk->lk_uid, lk->lk_group, lk->lk_flags);
1668
1669         if (lk->lk_flags & LK_FLG_STOP)
1670                 rc = libcfs_kkuc_group_rem(lk->lk_uid,lk->lk_group);
1671         else {
1672                 cfs_file_t *fp = cfs_get_fd(lk->lk_wfd);
1673                 rc = libcfs_kkuc_group_add(fp, lk->lk_uid,lk->lk_group,
1674                                            lk->lk_data);
1675                 if (rc && fp)
1676                         cfs_put_file(fp);
1677         }
1678
1679         /* lk_data is archive number mask */
1680         /* TODO: register archive num with mdt so coordinator can choose
1681            correct agent. */
1682
1683         return rc;
1684 }
1685
1686 /**
1687  * Send a message to any listening copytools
1688  * @param val KUC message (kuc_hdr + hsm_action_list)
1689  * @param len total length of message
1690  */
1691 static int mdc_hsm_copytool_send(int len, void *val)
1692 {
1693         struct kuc_hdr *lh = (struct kuc_hdr *)val;
1694         struct hsm_action_list *hal = (struct hsm_action_list *)(lh + 1);
1695         int rc;
1696         ENTRY;
1697
1698         if (len < sizeof(*lh) + sizeof(*hal)) {
1699                 CERROR("Short HSM message %d < %d\n", len,
1700                       (int) (sizeof(*lh) + sizeof(*hal)));
1701                 RETURN(-EPROTO);
1702         }
1703         if (lh->kuc_magic == __swab16(KUC_MAGIC)) {
1704                 lustre_swab_kuch(lh);
1705                 lustre_swab_hal(hal);
1706         } else if (lh->kuc_magic != KUC_MAGIC) {
1707                 CERROR("Bad magic %x!=%x\n", lh->kuc_magic, KUC_MAGIC);
1708                 RETURN(-EPROTO);
1709         }
1710
1711         CDEBUG(D_HSM, " Received message mg=%x t=%d m=%d l=%d actions=%d\n",
1712                lh->kuc_magic, lh->kuc_transport, lh->kuc_msgtype,
1713                lh->kuc_msglen, hal->hal_count);
1714
1715         /* Broadcast to HSM listeners */
1716         rc = libcfs_kkuc_group_put(KUC_GRP_HSM, lh);
1717
1718         RETURN(rc);
1719 }
1720
1721 int mdc_set_info_async(const struct lu_env *env,
1722                        struct obd_export *exp,
1723                        obd_count keylen, void *key,
1724                        obd_count vallen, void *val,
1725                        struct ptlrpc_request_set *set)
1726 {
1727         struct obd_import *imp = class_exp2cliimp(exp);
1728         int                rc = -EINVAL;
1729         ENTRY;
1730
1731         if (KEY_IS(KEY_READ_ONLY)) {
1732                 if (vallen != sizeof(int))
1733                         RETURN(-EINVAL);
1734
1735                 cfs_spin_lock(&imp->imp_lock);
1736                 if (*((int *)val)) {
1737                         imp->imp_connect_flags_orig |= OBD_CONNECT_RDONLY;
1738                         imp->imp_connect_data.ocd_connect_flags |= OBD_CONNECT_RDONLY;
1739                 } else {
1740                         imp->imp_connect_flags_orig &= ~OBD_CONNECT_RDONLY;
1741                         imp->imp_connect_data.ocd_connect_flags &= ~OBD_CONNECT_RDONLY;
1742                 }
1743                 cfs_spin_unlock(&imp->imp_lock);
1744
1745                 rc = do_set_info_async(imp, MDS_SET_INFO, LUSTRE_MDS_VERSION,
1746                                        keylen, key, vallen, val, set);
1747                 RETURN(rc);
1748         }
1749         if (KEY_IS(KEY_SPTLRPC_CONF)) {
1750                 sptlrpc_conf_client_adapt(exp->exp_obd);
1751                 RETURN(0);
1752         }
1753         if (KEY_IS(KEY_FLUSH_CTX)) {
1754                 sptlrpc_import_flush_my_ctx(imp);
1755                 RETURN(0);
1756         }
1757         if (KEY_IS(KEY_MDS_CONN)) {
1758                 /* mds-mds import */
1759                 cfs_spin_lock(&imp->imp_lock);
1760                 imp->imp_server_timeout = 1;
1761                 cfs_spin_unlock(&imp->imp_lock);
1762                 imp->imp_client->cli_request_portal = MDS_MDS_PORTAL;
1763                 CDEBUG(D_OTHER, "%s: timeout / 2\n", exp->exp_obd->obd_name);
1764                 RETURN(0);
1765         }
1766         if (KEY_IS(KEY_CHANGELOG_CLEAR)) {
1767                 rc = do_set_info_async(imp, MDS_SET_INFO, LUSTRE_MDS_VERSION,
1768                                        keylen, key, vallen, val, set);
1769                 RETURN(rc);
1770         }
1771         if (KEY_IS(KEY_HSM_COPYTOOL_SEND)) {
1772                 rc = mdc_hsm_copytool_send(vallen, val);
1773                 RETURN(rc);
1774         }
1775
1776         RETURN(rc);
1777 }
1778
1779 int mdc_get_info(const struct lu_env *env, struct obd_export *exp,
1780                  __u32 keylen, void *key, __u32 *vallen, void *val,
1781                  struct lov_stripe_md *lsm)
1782 {
1783         int rc = -EINVAL;
1784
1785         if (KEY_IS(KEY_MAX_EASIZE)) {
1786                 int mdsize, *max_easize;
1787
1788                 if (*vallen != sizeof(int))
1789                         RETURN(-EINVAL);
1790                 mdsize = *(int*)val;
1791                 if (mdsize > exp->exp_obd->u.cli.cl_max_mds_easize)
1792                         exp->exp_obd->u.cli.cl_max_mds_easize = mdsize;
1793                 max_easize = val;
1794                 *max_easize = exp->exp_obd->u.cli.cl_max_mds_easize;
1795                 RETURN(0);
1796         } else if (KEY_IS(KEY_CONN_DATA)) {
1797                 struct obd_import *imp = class_exp2cliimp(exp);
1798                 struct obd_connect_data *data = val;
1799
1800                 if (*vallen != sizeof(*data))
1801                         RETURN(-EINVAL);
1802
1803                 *data = imp->imp_connect_data;
1804                 RETURN(0);
1805         } else if (KEY_IS(KEY_TGT_COUNT)) {
1806                 *((int *)val) = 1;
1807                 RETURN(0);
1808         }
1809
1810         rc = mdc_get_info_rpc(exp, keylen, key, *vallen, val);
1811
1812         RETURN(rc);
1813 }
1814
1815 static int mdc_pin(struct obd_export *exp, const struct lu_fid *fid,
1816                    struct obd_capa *oc, struct obd_client_handle *handle,
1817                    int flags)
1818 {
1819         struct ptlrpc_request *req;
1820         struct mdt_body       *body;
1821         int                    rc;
1822         ENTRY;
1823
1824         req = ptlrpc_request_alloc(class_exp2cliimp(exp), &RQF_MDS_PIN);
1825         if (req == NULL)
1826                 RETURN(-ENOMEM);
1827
1828         mdc_set_capa_size(req, &RMF_CAPA1, oc);
1829
1830         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_PIN);
1831         if (rc) {
1832                 ptlrpc_request_free(req);
1833                 RETURN(rc);
1834         }
1835
1836         mdc_pack_body(req, fid, oc, 0, 0, -1, flags);
1837
1838         ptlrpc_request_set_replen(req);
1839
1840         mdc_get_rpc_lock(exp->exp_obd->u.cli.cl_rpc_lock, NULL);
1841         rc = ptlrpc_queue_wait(req);
1842         mdc_put_rpc_lock(exp->exp_obd->u.cli.cl_rpc_lock, NULL);
1843         if (rc) {
1844                 CERROR("Pin failed: %d\n", rc);
1845                 GOTO(err_out, rc);
1846         }
1847
1848         body = req_capsule_server_get(&req->rq_pill, &RMF_MDT_BODY);
1849         if (body == NULL)
1850                 GOTO(err_out, rc = -EPROTO);
1851
1852         handle->och_fh = body->handle;
1853         handle->och_magic = OBD_CLIENT_HANDLE_MAGIC;
1854
1855         handle->och_mod = obd_mod_alloc();
1856         if (handle->och_mod == NULL) {
1857                 DEBUG_REQ(D_ERROR, req, "can't allocate md_open_data");
1858                 GOTO(err_out, rc = -ENOMEM);
1859         }
1860         handle->och_mod->mod_open_req = req; /* will be dropped by unpin */
1861
1862         RETURN(0);
1863
1864 err_out:
1865         ptlrpc_req_finished(req);
1866         RETURN(rc);
1867 }
1868
1869 static int mdc_unpin(struct obd_export *exp, struct obd_client_handle *handle,
1870                      int flag)
1871 {
1872         struct ptlrpc_request *req;
1873         struct mdt_body       *body;
1874         int                    rc;
1875         ENTRY;
1876
1877         req = ptlrpc_request_alloc_pack(class_exp2cliimp(exp), &RQF_MDS_UNPIN,
1878                                         LUSTRE_MDS_VERSION, MDS_UNPIN);
1879         if (req == NULL)
1880                 RETURN(-ENOMEM);
1881
1882         body = req_capsule_client_get(&req->rq_pill, &RMF_MDT_BODY);
1883         body->handle = handle->och_fh;
1884         body->flags = flag;
1885
1886         ptlrpc_request_set_replen(req);
1887
1888         mdc_get_rpc_lock(exp->exp_obd->u.cli.cl_rpc_lock, NULL);
1889         rc = ptlrpc_queue_wait(req);
1890         mdc_put_rpc_lock(exp->exp_obd->u.cli.cl_rpc_lock, NULL);
1891
1892         if (rc != 0)
1893                 CERROR("Unpin failed: %d\n", rc);
1894
1895         ptlrpc_req_finished(req);
1896         ptlrpc_req_finished(handle->och_mod->mod_open_req);
1897
1898         obd_mod_put(handle->och_mod);
1899         RETURN(rc);
1900 }
1901
1902 int mdc_sync(struct obd_export *exp, const struct lu_fid *fid,
1903              struct obd_capa *oc, struct ptlrpc_request **request)
1904 {
1905         struct ptlrpc_request *req;
1906         int                    rc;
1907         ENTRY;
1908
1909         *request = NULL;
1910         req = ptlrpc_request_alloc(class_exp2cliimp(exp), &RQF_MDS_SYNC);
1911         if (req == NULL)
1912                 RETURN(-ENOMEM);
1913
1914         mdc_set_capa_size(req, &RMF_CAPA1, oc);
1915
1916         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_SYNC);
1917         if (rc) {
1918                 ptlrpc_request_free(req);
1919                 RETURN(rc);
1920         }
1921
1922         mdc_pack_body(req, fid, oc, 0, 0, -1, 0);
1923
1924         ptlrpc_request_set_replen(req);
1925
1926         rc = ptlrpc_queue_wait(req);
1927         if (rc)
1928                 ptlrpc_req_finished(req);
1929         else
1930                 *request = req;
1931         RETURN(rc);
1932 }
1933
1934 static int mdc_import_event(struct obd_device *obd, struct obd_import *imp,
1935                             enum obd_import_event event)
1936 {
1937         int rc = 0;
1938
1939         LASSERT(imp->imp_obd == obd);
1940
1941         switch (event) {
1942         case IMP_EVENT_DISCON: {
1943 #if 0
1944                 /* XXX Pass event up to OBDs stack. used only for FLD now */
1945                 rc = obd_notify_observer(obd, obd, OBD_NOTIFY_DISCON, NULL);
1946 #endif
1947                 break;
1948         }
1949         case IMP_EVENT_INACTIVE: {
1950                 struct client_obd *cli = &obd->u.cli;
1951                 /*
1952                  * Flush current sequence to make client obtain new one
1953                  * from server in case of disconnect/reconnect.
1954                  */
1955                 if (cli->cl_seq != NULL)
1956                         seq_client_flush(cli->cl_seq);
1957
1958                 rc = obd_notify_observer(obd, obd, OBD_NOTIFY_INACTIVE, NULL);
1959                 break;
1960         }
1961         case IMP_EVENT_INVALIDATE: {
1962                 struct ldlm_namespace *ns = obd->obd_namespace;
1963
1964                 ldlm_namespace_cleanup(ns, LDLM_FL_LOCAL_ONLY);
1965
1966                 break;
1967         }
1968         case IMP_EVENT_ACTIVE: {
1969                 rc = obd_notify_observer(obd, obd, OBD_NOTIFY_ACTIVE, NULL);
1970                 break;
1971         }
1972         case IMP_EVENT_OCD:
1973                 rc = obd_notify_observer(obd, obd, OBD_NOTIFY_OCD, NULL);
1974                 break;
1975         case IMP_EVENT_DEACTIVATE:
1976         case IMP_EVENT_ACTIVATE:
1977                 break;
1978         default:
1979                 CERROR("Unknown import event %x\n", event);
1980                 LBUG();
1981         }
1982         RETURN(rc);
1983 }
1984
1985 static int mdc_fid_init(struct obd_export *exp)
1986 {
1987         struct client_obd *cli = &exp->exp_obd->u.cli;
1988         char *prefix;
1989         int rc;
1990         ENTRY;
1991
1992         OBD_ALLOC_PTR(cli->cl_seq);
1993         if (cli->cl_seq == NULL)
1994                 RETURN(-ENOMEM);
1995
1996         OBD_ALLOC(prefix, MAX_OBD_NAME + 5);
1997         if (prefix == NULL)
1998                 GOTO(out_free_seq, rc = -ENOMEM);
1999
2000         snprintf(prefix, MAX_OBD_NAME + 5, "srv-%s",
2001                  exp->exp_obd->obd_name);
2002
2003         /* Init client side sequence-manager */
2004         rc = seq_client_init(cli->cl_seq, exp,
2005                              LUSTRE_SEQ_METADATA,
2006                              prefix, NULL);
2007         OBD_FREE(prefix, MAX_OBD_NAME + 5);
2008         if (rc)
2009                 GOTO(out_free_seq, rc);
2010
2011         RETURN(rc);
2012 out_free_seq:
2013         OBD_FREE_PTR(cli->cl_seq);
2014         cli->cl_seq = NULL;
2015         return rc;
2016 }
2017
2018 static int mdc_fid_fini(struct obd_export *exp)
2019 {
2020         struct client_obd *cli = &exp->exp_obd->u.cli;
2021         ENTRY;
2022
2023         if (cli->cl_seq != NULL) {
2024                 seq_client_fini(cli->cl_seq);
2025                 OBD_FREE_PTR(cli->cl_seq);
2026                 cli->cl_seq = NULL;
2027         }
2028
2029         RETURN(0);
2030 }
2031
2032 int mdc_fid_alloc(struct obd_export *exp, struct lu_fid *fid,
2033                   struct md_op_data *op_data)
2034 {
2035         struct client_obd *cli = &exp->exp_obd->u.cli;
2036         struct lu_client_seq *seq = cli->cl_seq;
2037         ENTRY;
2038         RETURN(seq_client_alloc_fid(NULL, seq, fid));
2039 }
2040
2041 /* XXX This method is used only to clear current fid seq
2042  * once fld/mds insert failed */
2043 static int mdc_fid_delete(struct obd_export *exp, const struct lu_fid *fid)
2044 {
2045         struct client_obd *cli = &exp->exp_obd->u.cli;
2046
2047         seq_client_flush(cli->cl_seq);
2048         return 0;
2049 }
2050
2051 struct obd_uuid *mdc_get_uuid(struct obd_export *exp) {
2052         struct client_obd *cli = &exp->exp_obd->u.cli;
2053         return &cli->cl_target_uuid;
2054 }
2055
2056 /**
2057  * Determine whether the lock can be canceled before replaying it during
2058  * recovery, non zero value will be return if the lock can be canceled,
2059  * or zero returned for not
2060  */
2061 static int mdc_cancel_for_recovery(struct ldlm_lock *lock)
2062 {
2063         if (lock->l_resource->lr_type != LDLM_IBITS)
2064                 RETURN(0);
2065
2066         /* FIXME: if we ever get into a situation where there are too many
2067          * opened files with open locks on a single node, then we really
2068          * should replay these open locks to reget it */
2069         if (lock->l_policy_data.l_inodebits.bits & MDS_INODELOCK_OPEN)
2070                 RETURN(0);
2071
2072         RETURN(1);
2073 }
2074
2075 static int mdc_setup(struct obd_device *obd, struct lustre_cfg *cfg)
2076 {
2077         struct client_obd *cli = &obd->u.cli;
2078         struct lprocfs_static_vars lvars = { 0 };
2079         int rc;
2080         ENTRY;
2081
2082         OBD_ALLOC(cli->cl_rpc_lock, sizeof (*cli->cl_rpc_lock));
2083         if (!cli->cl_rpc_lock)
2084                 RETURN(-ENOMEM);
2085         mdc_init_rpc_lock(cli->cl_rpc_lock);
2086
2087         ptlrpcd_addref();
2088
2089         OBD_ALLOC(cli->cl_close_lock, sizeof (*cli->cl_close_lock));
2090         if (!cli->cl_close_lock)
2091                 GOTO(err_rpc_lock, rc = -ENOMEM);
2092         mdc_init_rpc_lock(cli->cl_close_lock);
2093
2094         rc = client_obd_setup(obd, cfg);
2095         if (rc)
2096                 GOTO(err_close_lock, rc);
2097         lprocfs_mdc_init_vars(&lvars);
2098         lprocfs_obd_setup(obd, lvars.obd_vars);
2099         sptlrpc_lprocfs_cliobd_attach(obd);
2100         ptlrpc_lprocfs_register_obd(obd);
2101
2102         ns_register_cancel(obd->obd_namespace, mdc_cancel_for_recovery);
2103
2104         rc = obd_llog_init(obd, &obd->obd_olg, obd, NULL);
2105         if (rc) {
2106                 mdc_cleanup(obd);
2107                 CERROR("failed to setup llogging subsystems\n");
2108         }
2109
2110         RETURN(rc);
2111
2112 err_close_lock:
2113         OBD_FREE(cli->cl_close_lock, sizeof (*cli->cl_close_lock));
2114 err_rpc_lock:
2115         OBD_FREE(cli->cl_rpc_lock, sizeof (*cli->cl_rpc_lock));
2116         ptlrpcd_decref();
2117         RETURN(rc);
2118 }
2119
2120 /* Initialize the default and maximum LOV EA and cookie sizes.  This allows
2121  * us to make MDS RPCs with large enough reply buffers to hold the
2122  * maximum-sized (= maximum striped) EA and cookie without having to
2123  * calculate this (via a call into the LOV + OSCs) each time we make an RPC. */
2124 static int mdc_init_ea_size(struct obd_export *exp, int easize,
2125                      int def_easize, int cookiesize)
2126 {
2127         struct obd_device *obd = exp->exp_obd;
2128         struct client_obd *cli = &obd->u.cli;
2129         ENTRY;
2130
2131         if (cli->cl_max_mds_easize < easize)
2132                 cli->cl_max_mds_easize = easize;
2133
2134         if (cli->cl_default_mds_easize < def_easize)
2135                 cli->cl_default_mds_easize = def_easize;
2136
2137         if (cli->cl_max_mds_cookiesize < cookiesize)
2138                 cli->cl_max_mds_cookiesize = cookiesize;
2139
2140         RETURN(0);
2141 }
2142
2143 static int mdc_precleanup(struct obd_device *obd, enum obd_cleanup_stage stage)
2144 {
2145         int rc = 0;
2146         ENTRY;
2147
2148         switch (stage) {
2149         case OBD_CLEANUP_EARLY:
2150                 break;
2151         case OBD_CLEANUP_EXPORTS:
2152                 /* Failsafe, ok if racy */
2153                 if (obd->obd_type->typ_refcnt <= 1)
2154                         libcfs_kkuc_group_rem(0, KUC_GRP_HSM);
2155
2156                 obd_cleanup_client_import(obd);
2157                 ptlrpc_lprocfs_unregister_obd(obd);
2158                 lprocfs_obd_cleanup(obd);
2159
2160                 rc = obd_llog_finish(obd, 0);
2161                 if (rc != 0)
2162                         CERROR("failed to cleanup llogging subsystems\n");
2163                 break;
2164         }
2165         RETURN(rc);
2166 }
2167
2168 static int mdc_cleanup(struct obd_device *obd)
2169 {
2170         struct client_obd *cli = &obd->u.cli;
2171
2172         OBD_FREE(cli->cl_rpc_lock, sizeof (*cli->cl_rpc_lock));
2173         OBD_FREE(cli->cl_close_lock, sizeof (*cli->cl_close_lock));
2174
2175         ptlrpcd_decref();
2176
2177         return client_obd_cleanup(obd);
2178 }
2179
2180
2181 static int mdc_llog_init(struct obd_device *obd, struct obd_llog_group *olg,
2182                          struct obd_device *tgt, int *index)
2183 {
2184         struct llog_ctxt *ctxt;
2185         int rc;
2186         ENTRY;
2187
2188         LASSERT(olg == &obd->obd_olg);
2189
2190         rc = llog_setup(obd, olg, LLOG_LOVEA_REPL_CTXT, tgt, 0, NULL,
2191                         &llog_client_ops);
2192         if (rc)
2193                 RETURN(rc);
2194
2195         ctxt = llog_get_context(obd, LLOG_LOVEA_REPL_CTXT);
2196         llog_initiator_connect(ctxt);
2197         llog_ctxt_put(ctxt);
2198
2199         rc = llog_setup(obd, olg, LLOG_CHANGELOG_REPL_CTXT, tgt, 0, NULL,
2200                         &llog_client_ops);
2201         if (rc == 0) {
2202                 ctxt = llog_group_get_ctxt(olg, LLOG_CHANGELOG_REPL_CTXT);
2203                 llog_initiator_connect(ctxt);
2204                 llog_ctxt_put(ctxt);
2205         }
2206
2207         RETURN(rc);
2208 }
2209
2210 static int mdc_llog_finish(struct obd_device *obd, int count)
2211 {
2212         struct llog_ctxt *ctxt;
2213         int rc = 0;
2214         ENTRY;
2215
2216         ctxt = llog_get_context(obd, LLOG_LOVEA_REPL_CTXT);
2217         if (ctxt)
2218                 rc = llog_cleanup(ctxt);
2219
2220         ctxt = llog_get_context(obd, LLOG_CHANGELOG_REPL_CTXT);
2221         if (ctxt)
2222                 rc = llog_cleanup(ctxt);
2223
2224         RETURN(rc);
2225 }
2226
2227 static int mdc_process_config(struct obd_device *obd, obd_count len, void *buf)
2228 {
2229         struct lustre_cfg *lcfg = buf;
2230         struct lprocfs_static_vars lvars = { 0 };
2231         int rc = 0;
2232
2233         lprocfs_mdc_init_vars(&lvars);
2234         switch (lcfg->lcfg_command) {
2235         default:
2236                 rc = class_process_proc_param(PARAM_MDC, lvars.obd_vars,
2237                                               lcfg, obd);
2238                 if (rc > 0)
2239                         rc = 0;
2240                 break;
2241         }
2242         return(rc);
2243 }
2244
2245
2246 /* get remote permission for current user on fid */
2247 int mdc_get_remote_perm(struct obd_export *exp, const struct lu_fid *fid,
2248                         struct obd_capa *oc, __u32 suppgid,
2249                         struct ptlrpc_request **request)
2250 {
2251         struct ptlrpc_request  *req;
2252         int                    rc;
2253         ENTRY;
2254
2255         LASSERT(client_is_remote(exp));
2256
2257         *request = NULL;
2258         req = ptlrpc_request_alloc(class_exp2cliimp(exp), &RQF_MDS_GETATTR);
2259         if (req == NULL)
2260                 RETURN(-ENOMEM);
2261
2262         mdc_set_capa_size(req, &RMF_CAPA1, oc);
2263
2264         rc = ptlrpc_request_pack(req, LUSTRE_MDS_VERSION, MDS_GETATTR);
2265         if (rc) {
2266                 ptlrpc_request_free(req);
2267                 RETURN(rc);
2268         }
2269
2270         mdc_pack_body(req, fid, oc, OBD_MD_FLRMTPERM, 0, suppgid, 0);
2271
2272         req_capsule_set_size(&req->rq_pill, &RMF_ACL, RCL_SERVER,
2273                              sizeof(struct mdt_remote_perm));
2274
2275         ptlrpc_request_set_replen(req);
2276
2277         rc = ptlrpc_queue_wait(req);
2278         if (rc)
2279                 ptlrpc_req_finished(req);
2280         else
2281                 *request = req;
2282         RETURN(rc);
2283 }
2284
2285 static int mdc_interpret_renew_capa(const struct lu_env *env,
2286                                     struct ptlrpc_request *req, void *args,
2287                                     int status)
2288 {
2289         struct mdc_renew_capa_args *ra = args;
2290         struct mdt_body *body = NULL;
2291         struct lustre_capa *capa;
2292         ENTRY;
2293
2294         if (status)
2295                 GOTO(out, capa = ERR_PTR(status));
2296
2297         body = req_capsule_server_get(&req->rq_pill, &RMF_MDT_BODY);
2298         if (body == NULL)
2299                 GOTO(out, capa = ERR_PTR(-EFAULT));
2300
2301         if ((body->valid & OBD_MD_FLOSSCAPA) == 0)
2302                 GOTO(out, capa = ERR_PTR(-ENOENT));
2303
2304         capa = req_capsule_server_get(&req->rq_pill, &RMF_CAPA2);
2305         if (!capa)
2306                 GOTO(out, capa = ERR_PTR(-EFAULT));
2307         EXIT;
2308 out:
2309         ra->ra_cb(ra->ra_oc, capa);
2310         return 0;
2311 }
2312
2313 static int mdc_renew_capa(struct obd_export *exp, struct obd_capa *oc,
2314                           renew_capa_cb_t cb)
2315 {
2316         struct ptlrpc_request *req;
2317         struct mdc_renew_capa_args *ra;
2318         ENTRY;
2319
2320         req = ptlrpc_request_alloc_pack(class_exp2cliimp(exp), &RQF_MDS_GETATTR,
2321                                         LUSTRE_MDS_VERSION, MDS_GETATTR);
2322         if (req == NULL)
2323                 RETURN(-ENOMEM);
2324
2325         /* NB, OBD_MD_FLOSSCAPA is set here, but it doesn't necessarily mean the
2326          * capa to renew is oss capa.
2327          */
2328         mdc_pack_body(req, &oc->c_capa.lc_fid, oc, OBD_MD_FLOSSCAPA, 0, -1, 0);
2329         ptlrpc_request_set_replen(req);
2330
2331         CLASSERT(sizeof(*ra) <= sizeof(req->rq_async_args));
2332         ra = ptlrpc_req_async_args(req);
2333         ra->ra_oc = oc;
2334         ra->ra_cb = cb;
2335         req->rq_interpret_reply = mdc_interpret_renew_capa;
2336         ptlrpcd_add_req(req, PDL_POLICY_LOCAL, -1);
2337         RETURN(0);
2338 }
2339
2340 static int mdc_connect(const struct lu_env *env,
2341                        struct obd_export **exp,
2342                        struct obd_device *obd, struct obd_uuid *cluuid,
2343                        struct obd_connect_data *data,
2344                        void *localdata)
2345 {
2346         struct obd_import *imp = obd->u.cli.cl_import;
2347
2348         /* mds-mds import features */
2349         if (data && (data->ocd_connect_flags & OBD_CONNECT_MDS_MDS)) {
2350                 cfs_spin_lock(&imp->imp_lock);
2351                 imp->imp_server_timeout = 1;
2352                 cfs_spin_unlock(&imp->imp_lock);
2353                 imp->imp_client->cli_request_portal = MDS_MDS_PORTAL;
2354                 CDEBUG(D_OTHER, "%s: Set 'mds' portal and timeout\n",
2355                        obd->obd_name);
2356         }
2357
2358         return client_connect_import(env, exp, obd, cluuid, data, NULL);
2359 }
2360
2361 struct obd_ops mdc_obd_ops = {
2362         .o_owner            = THIS_MODULE,
2363         .o_setup            = mdc_setup,
2364         .o_precleanup       = mdc_precleanup,
2365         .o_cleanup          = mdc_cleanup,
2366         .o_add_conn         = client_import_add_conn,
2367         .o_del_conn         = client_import_del_conn,
2368         .o_connect          = mdc_connect,
2369         .o_disconnect       = client_disconnect_export,
2370         .o_iocontrol        = mdc_iocontrol,
2371         .o_set_info_async   = mdc_set_info_async,
2372         .o_statfs           = mdc_statfs,
2373         .o_pin              = mdc_pin,
2374         .o_unpin            = mdc_unpin,
2375         .o_fid_init         = mdc_fid_init,
2376         .o_fid_fini         = mdc_fid_fini,
2377         .o_fid_alloc        = mdc_fid_alloc,
2378         .o_fid_delete       = mdc_fid_delete,
2379         .o_import_event     = mdc_import_event,
2380         .o_llog_init        = mdc_llog_init,
2381         .o_llog_finish      = mdc_llog_finish,
2382         .o_get_info         = mdc_get_info,
2383         .o_process_config   = mdc_process_config,
2384         .o_get_uuid         = mdc_get_uuid,
2385         .o_quotactl         = mdc_quotactl,
2386         .o_quotacheck       = mdc_quotacheck
2387 };
2388
2389 struct md_ops mdc_md_ops = {
2390         .m_getstatus        = mdc_getstatus,
2391         .m_change_cbdata    = mdc_change_cbdata,
2392         .m_find_cbdata      = mdc_find_cbdata,
2393         .m_close            = mdc_close,
2394         .m_create           = mdc_create,
2395         .m_done_writing     = mdc_done_writing,
2396         .m_enqueue          = mdc_enqueue,
2397         .m_getattr          = mdc_getattr,
2398         .m_getattr_name     = mdc_getattr_name,
2399         .m_intent_lock      = mdc_intent_lock,
2400         .m_link             = mdc_link,
2401         .m_is_subdir        = mdc_is_subdir,
2402         .m_rename           = mdc_rename,
2403         .m_setattr          = mdc_setattr,
2404         .m_setxattr         = mdc_setxattr,
2405         .m_getxattr         = mdc_getxattr,
2406         .m_sync             = mdc_sync,
2407         .m_readpage         = mdc_readpage,
2408         .m_unlink           = mdc_unlink,
2409         .m_cancel_unused    = mdc_cancel_unused,
2410         .m_init_ea_size     = mdc_init_ea_size,
2411         .m_set_lock_data    = mdc_set_lock_data,
2412         .m_lock_match       = mdc_lock_match,
2413         .m_get_lustre_md    = mdc_get_lustre_md,
2414         .m_free_lustre_md   = mdc_free_lustre_md,
2415         .m_set_open_replay_data = mdc_set_open_replay_data,
2416         .m_clear_open_replay_data = mdc_clear_open_replay_data,
2417         .m_renew_capa       = mdc_renew_capa,
2418         .m_unpack_capa      = mdc_unpack_capa,
2419         .m_get_remote_perm  = mdc_get_remote_perm,
2420         .m_intent_getattr_async = mdc_intent_getattr_async,
2421         .m_revalidate_lock      = mdc_revalidate_lock
2422 };
2423
2424 int __init mdc_init(void)
2425 {
2426         int rc;
2427         struct lprocfs_static_vars lvars = { 0 };
2428         lprocfs_mdc_init_vars(&lvars);
2429
2430         rc = class_register_type(&mdc_obd_ops, &mdc_md_ops, lvars.module_vars,
2431                                  LUSTRE_MDC_NAME, NULL);
2432         RETURN(rc);
2433 }
2434
2435 #ifdef __KERNEL__
2436 static void /*__exit*/ mdc_exit(void)
2437 {
2438         class_unregister_type(LUSTRE_MDC_NAME);
2439 }
2440
2441 MODULE_AUTHOR("Sun Microsystems, Inc. <http://www.lustre.org/>");
2442 MODULE_DESCRIPTION("Lustre Metadata Client");
2443 MODULE_LICENSE("GPL");
2444
2445 module_init(mdc_init);
2446 module_exit(mdc_exit);
2447 #endif