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LU-11868 mdc: Improve xattr buffer allocations
[fs/lustre-release.git] / lustre / mdt / mdt_lib.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.gnu.org/licenses/gpl-2.0.html
19  *
20  * GPL HEADER END
21  */
22 /*
23  * Copyright (c) 2007, 2010, Oracle and/or its affiliates. All rights reserved.
24  * Use is subject to license terms.
25  *
26  * Copyright (c) 2011, 2017, Intel Corporation.
27  */
28 /*
29  * This file is part of Lustre, http://www.lustre.org/
30  * Lustre is a trademark of Sun Microsystems, Inc.
31  *
32  * lustre/mdt/mdt_lib.c
33  *
34  * Lustre Metadata Target (mdt) request unpacking helper.
35  *
36  * Author: Peter Braam <braam@clusterfs.com>
37  * Author: Andreas Dilger <adilger@clusterfs.com>
38  * Author: Phil Schwan <phil@clusterfs.com>
39  * Author: Mike Shaver <shaver@clusterfs.com>
40  * Author: Nikita Danilov <nikita@clusterfs.com>
41  * Author: Huang Hua <huanghua@clusterfs.com>
42  * Author: Fan Yong <fanyong@clusterfs.com>
43  */
44
45 #define DEBUG_SUBSYSTEM S_MDS
46
47 #include <linux/user_namespace.h>
48 #ifdef HAVE_UIDGID_HEADER
49 # include <linux/uidgid.h>
50 #endif
51 #include "mdt_internal.h"
52 #include <uapi/linux/lnet/nidstr.h>
53 #include <lustre_nodemap.h>
54
55 typedef enum ucred_init_type {
56         NONE_INIT       = 0,
57         BODY_INIT       = 1,
58         REC_INIT        = 2
59 } ucred_init_type_t;
60
61 static __u64 get_mrc_cr_flags(struct mdt_rec_create *mrc)
62 {
63         return (__u64)(mrc->cr_flags_l) | ((__u64)mrc->cr_flags_h << 32);
64 }
65
66 void mdt_exit_ucred(struct mdt_thread_info *info)
67 {
68         struct lu_ucred   *uc  = mdt_ucred(info);
69         struct mdt_device *mdt = info->mti_mdt;
70
71         LASSERT(uc != NULL);
72         if (uc->uc_valid != UCRED_INIT) {
73                 uc->uc_suppgids[0] = uc->uc_suppgids[1] = -1;
74                 if (uc->uc_ginfo) {
75                         put_group_info(uc->uc_ginfo);
76                         uc->uc_ginfo = NULL;
77                 }
78                 if (uc->uc_identity) {
79                         mdt_identity_put(mdt->mdt_identity_cache,
80                                          uc->uc_identity);
81                         uc->uc_identity = NULL;
82                 }
83                 uc->uc_valid = UCRED_INIT;
84         }
85 }
86
87 static int match_nosquash_list(struct rw_semaphore *sem,
88                                struct list_head *nidlist,
89                                lnet_nid_t peernid)
90 {
91         int rc;
92         ENTRY;
93         down_read(sem);
94         rc = cfs_match_nid(peernid, nidlist);
95         up_read(sem);
96         RETURN(rc);
97 }
98
99 /* root_squash for inter-MDS operations */
100 static int mdt_root_squash(struct mdt_thread_info *info, lnet_nid_t peernid)
101 {
102         struct lu_ucred *ucred = mdt_ucred(info);
103         struct root_squash_info *squash = &info->mti_mdt->mdt_squash;
104         ENTRY;
105
106         LASSERT(ucred != NULL);
107         if (!squash->rsi_uid || ucred->uc_fsuid)
108                 RETURN(0);
109
110         if (match_nosquash_list(&squash->rsi_sem,
111                                 &squash->rsi_nosquash_nids,
112                                 peernid)) {
113                 CDEBUG(D_OTHER, "%s is in nosquash_nids list\n",
114                        libcfs_nid2str(peernid));
115                 RETURN(0);
116         }
117
118         CDEBUG(D_OTHER, "squash req from %s, (%d:%d/%x)=>(%d:%d/%x)\n",
119                libcfs_nid2str(peernid),
120                ucred->uc_fsuid, ucred->uc_fsgid, ucred->uc_cap,
121                squash->rsi_uid, squash->rsi_gid, 0);
122
123         ucred->uc_fsuid = squash->rsi_uid;
124         ucred->uc_fsgid = squash->rsi_gid;
125         ucred->uc_cap = 0;
126         ucred->uc_suppgids[0] = -1;
127         ucred->uc_suppgids[1] = -1;
128
129         RETURN(0);
130 }
131
132 static void ucred_set_jobid(struct mdt_thread_info *info, struct lu_ucred *uc)
133 {
134         struct ptlrpc_request   *req = mdt_info_req(info);
135         const char              *jobid = mdt_req_get_jobid(req);
136
137         /* set jobid if specified. */
138         if (jobid)
139                 strlcpy(uc->uc_jobid, jobid, sizeof(uc->uc_jobid));
140         else
141                 uc->uc_jobid[0] = '\0';
142 }
143
144 static void ucred_set_nid(struct mdt_thread_info *info, struct lu_ucred *uc)
145 {
146         if (info && info->mti_exp && info->mti_exp->exp_connection)
147                 uc->uc_nid = info->mti_exp->exp_connection->c_peer.nid;
148         else
149                 uc->uc_nid = LNET_NID_ANY;
150 }
151
152 static void ucred_set_audit_enabled(struct mdt_thread_info *info,
153                                     struct lu_ucred *uc)
154 {
155         struct lu_nodemap *nodemap = NULL;
156         bool audit = true;
157
158         if (info && info->mti_exp) {
159                 nodemap = nodemap_get_from_exp(info->mti_exp);
160                 if (nodemap && !IS_ERR(nodemap)) {
161                         audit = nodemap->nmf_enable_audit;
162                         nodemap_putref(nodemap);
163                 }
164         }
165
166         uc->uc_enable_audit = audit;
167 }
168
169 static int new_init_ucred(struct mdt_thread_info *info, ucred_init_type_t type,
170                           void *buf, bool drop_fs_cap)
171 {
172         struct ptlrpc_request *req = mdt_info_req(info);
173         struct mdt_device *mdt = info->mti_mdt;
174         struct ptlrpc_user_desc *pud = req->rq_user_desc;
175         struct lu_ucred *ucred = mdt_ucred(info);
176         struct lu_nodemap *nodemap;
177         lnet_nid_t peernid = req->rq_peer.nid;
178         __u32 perm = 0;
179         int setuid;
180         int setgid;
181         bool is_nm_gid_squashed = false;
182         int rc = 0;
183
184         ENTRY;
185
186         LASSERT(req->rq_auth_gss);
187         LASSERT(!req->rq_auth_usr_mdt);
188         LASSERT(req->rq_user_desc);
189         LASSERT(ucred != NULL);
190
191         ucred->uc_valid = UCRED_INVALID;
192
193         nodemap = nodemap_get_from_exp(info->mti_exp);
194         if (IS_ERR(nodemap))
195                 RETURN(PTR_ERR(nodemap));
196
197         pud->pud_uid = nodemap_map_id(nodemap, NODEMAP_UID,
198                                        NODEMAP_CLIENT_TO_FS, pud->pud_uid);
199         pud->pud_gid = nodemap_map_id(nodemap, NODEMAP_GID,
200                                        NODEMAP_CLIENT_TO_FS, pud->pud_gid);
201         pud->pud_fsuid = nodemap_map_id(nodemap, NODEMAP_UID,
202                                        NODEMAP_CLIENT_TO_FS, pud->pud_fsuid);
203         pud->pud_fsgid = nodemap_map_id(nodemap, NODEMAP_GID,
204                                        NODEMAP_CLIENT_TO_FS, pud->pud_fsgid);
205
206         ucred->uc_o_uid = pud->pud_uid;
207         ucred->uc_o_gid = pud->pud_gid;
208         ucred->uc_o_fsuid = pud->pud_fsuid;
209         ucred->uc_o_fsgid = pud->pud_fsgid;
210
211         if (nodemap && ucred->uc_o_uid == nodemap->nm_squash_uid) {
212                 /* deny access before we get identity ref */
213                 if (nodemap->nmf_deny_unknown) {
214                         nodemap_putref(nodemap);
215                         RETURN(-EACCES);
216                 }
217
218                 ucred->uc_fsuid = nodemap->nm_squash_uid;
219                 ucred->uc_fsgid = nodemap->nm_squash_gid;
220                 ucred->uc_cap = 0;
221                 ucred->uc_suppgids[0] = -1;
222                 ucred->uc_suppgids[1] = -1;
223         }
224
225         if (nodemap && ucred->uc_o_gid == nodemap->nm_squash_gid)
226                 is_nm_gid_squashed = true;
227
228         nodemap_putref(nodemap);
229
230         if (type == BODY_INIT) {
231                 struct mdt_body *body = (struct mdt_body *)buf;
232
233                 ucred->uc_suppgids[0] = body->mbo_suppgid;
234                 ucred->uc_suppgids[1] = -1;
235         }
236
237         if (!flvr_is_rootonly(req->rq_flvr.sf_rpc) &&
238             req->rq_auth_uid != pud->pud_uid) {
239                 CDEBUG(D_SEC, "local client %s: auth uid %u "
240                        "while client claims %u:%u/%u:%u\n",
241                        libcfs_nid2str(peernid), req->rq_auth_uid,
242                        pud->pud_uid, pud->pud_gid,
243                        pud->pud_fsuid, pud->pud_fsgid);
244                 RETURN(-EACCES);
245         }
246
247         if (is_identity_get_disabled(mdt->mdt_identity_cache)) {
248                 ucred->uc_identity = NULL;
249                 perm = CFS_SETUID_PERM | CFS_SETGID_PERM | CFS_SETGRP_PERM;
250         } else {
251                 struct md_identity *identity;
252
253                 identity = mdt_identity_get(mdt->mdt_identity_cache,
254                                             pud->pud_uid);
255                 if (IS_ERR(identity)) {
256                         if (unlikely(PTR_ERR(identity) == -EREMCHG)) {
257                                 ucred->uc_identity = NULL;
258                                 perm = CFS_SETUID_PERM | CFS_SETGID_PERM |
259                                        CFS_SETGRP_PERM;
260                         } else {
261                                 CDEBUG(D_SEC,
262                                        "Deny access without identity: uid %u\n",
263                                        pud->pud_uid);
264                                 RETURN(-EACCES);
265                         }
266                 } else {
267                         ucred->uc_identity = identity;
268                         perm = mdt_identity_get_perm(ucred->uc_identity,
269                                                      peernid);
270                 }
271         }
272
273         /* find out the setuid/setgid attempt */
274         setuid = (pud->pud_uid != pud->pud_fsuid);
275         setgid = ((pud->pud_gid != pud->pud_fsgid) ||
276                   (ucred->uc_identity &&
277                    (pud->pud_gid != ucred->uc_identity->mi_gid)));
278
279         /* check permission of setuid */
280         if (setuid && !(perm & CFS_SETUID_PERM)) {
281                 CDEBUG(D_SEC, "mdt blocked setuid attempt (%u -> %u) from %s\n",
282                        pud->pud_uid, pud->pud_fsuid, libcfs_nid2str(peernid));
283                 GOTO(out, rc = -EACCES);
284         }
285
286         /* check permission of setgid */
287         if (setgid && !(perm & CFS_SETGID_PERM)) {
288                 CDEBUG(D_SEC, "mdt blocked setgid attempt (%u:%u/%u:%u -> %u) "
289                        "from %s\n", pud->pud_uid, pud->pud_gid,
290                        pud->pud_fsuid, pud->pud_fsgid,
291                        ucred->uc_identity->mi_gid, libcfs_nid2str(peernid));
292                 GOTO(out, rc = -EACCES);
293         }
294
295         if (perm & CFS_SETGRP_PERM) {
296                 /* only set groups if GID is not squashed */
297                 if (pud->pud_ngroups && !is_nm_gid_squashed) {
298                         /* setgroups for local client */
299                         ucred->uc_ginfo = groups_alloc(pud->pud_ngroups);
300                         if (!ucred->uc_ginfo) {
301                                 CERROR("failed to alloc %d groups\n",
302                                        pud->pud_ngroups);
303                                 GOTO(out, rc = -ENOMEM);
304                         }
305
306                         lustre_groups_from_list(ucred->uc_ginfo,
307                                                 pud->pud_groups);
308                         lustre_groups_sort(ucred->uc_ginfo);
309                 } else {
310                         ucred->uc_suppgids[0] = -1;
311                         ucred->uc_suppgids[1] = -1;
312                         ucred->uc_ginfo = NULL;
313                 }
314         } else {
315                 ucred->uc_suppgids[0] = -1;
316                 ucred->uc_suppgids[1] = -1;
317                 ucred->uc_ginfo = NULL;
318         }
319
320         ucred->uc_uid = pud->pud_uid;
321         ucred->uc_gid = pud->pud_gid;
322         ucred->uc_fsuid = pud->pud_fsuid;
323         ucred->uc_fsgid = pud->pud_fsgid;
324
325         /* process root_squash here. */
326         mdt_root_squash(info, peernid);
327
328         /* remove fs privilege for non-root user. */
329         if (ucred->uc_fsuid && drop_fs_cap)
330                 ucred->uc_cap = pud->pud_cap & ~CFS_CAP_FS_MASK;
331         else
332                 ucred->uc_cap = pud->pud_cap;
333         ucred->uc_valid = UCRED_NEW;
334         ucred_set_jobid(info, ucred);
335         ucred_set_nid(info, ucred);
336         ucred_set_audit_enabled(info, ucred);
337
338         EXIT;
339
340 out:
341         if (rc) {
342                 if (ucred->uc_ginfo) {
343                         put_group_info(ucred->uc_ginfo);
344                         ucred->uc_ginfo = NULL;
345                 }
346                 if (ucred->uc_identity) {
347                         mdt_identity_put(mdt->mdt_identity_cache,
348                                          ucred->uc_identity);
349                         ucred->uc_identity = NULL;
350                 }
351         }
352
353         return rc;
354 }
355
356 /**
357  * Check whether allow the client to set supplementary group IDs or not.
358  *
359  * \param[in] info      pointer to the thread context
360  * \param[in] uc        pointer to the RPC user descriptor
361  *
362  * \retval              true if allow to set supplementary group IDs
363  * \retval              false for other cases
364  */
365 bool allow_client_chgrp(struct mdt_thread_info *info, struct lu_ucred *uc)
366 {
367         __u32 perm;
368
369         /* 1. If identity_upcall is disabled,
370          *    permit local client to do anything. */
371         if (is_identity_get_disabled(info->mti_mdt->mdt_identity_cache))
372                 return true;
373
374         /* 2. If fail to get related identities, then forbid any client to
375          *    set supplementary group IDs. */
376         if (uc->uc_identity == NULL)
377                 return false;
378
379         /* 3. Check the permission in the identities. */
380         perm = mdt_identity_get_perm(uc->uc_identity,
381                                      mdt_info_req(info)->rq_peer.nid);
382         if (perm & CFS_SETGRP_PERM)
383                 return true;
384
385         return false;
386 }
387
388 int mdt_check_ucred(struct mdt_thread_info *info)
389 {
390         struct ptlrpc_request   *req = mdt_info_req(info);
391         struct mdt_device       *mdt = info->mti_mdt;
392         struct ptlrpc_user_desc *pud = req->rq_user_desc;
393         struct lu_ucred         *ucred = mdt_ucred(info);
394         struct md_identity      *identity = NULL;
395         lnet_nid_t               peernid = req->rq_peer.nid;
396         __u32                    perm = 0;
397         int                      setuid;
398         int                      setgid;
399         int                      rc = 0;
400
401         ENTRY;
402
403         LASSERT(ucred != NULL);
404         if ((ucred->uc_valid == UCRED_OLD) || (ucred->uc_valid == UCRED_NEW))
405                 RETURN(0);
406
407         if (!req->rq_auth_gss || req->rq_auth_usr_mdt || !req->rq_user_desc)
408                 RETURN(0);
409
410         /* sanity check: if we use strong authentication, we expect the
411          * uid which client claimed is true */
412         if (!flvr_is_rootonly(req->rq_flvr.sf_rpc) &&
413             req->rq_auth_uid != pud->pud_uid) {
414                 CDEBUG(D_SEC, "local client %s: auth uid %u "
415                        "while client claims %u:%u/%u:%u\n",
416                        libcfs_nid2str(peernid), req->rq_auth_uid,
417                        pud->pud_uid, pud->pud_gid,
418                        pud->pud_fsuid, pud->pud_fsgid);
419                 RETURN(-EACCES);
420         }
421
422         if (is_identity_get_disabled(mdt->mdt_identity_cache))
423                 RETURN(0);
424
425         identity = mdt_identity_get(mdt->mdt_identity_cache, pud->pud_uid);
426         if (IS_ERR(identity)) {
427                 if (unlikely(PTR_ERR(identity) == -EREMCHG)) {
428                         RETURN(0);
429                 } else {
430                         CDEBUG(D_SEC, "Deny access without identity: uid %u\n",
431                                pud->pud_uid);
432                         RETURN(-EACCES);
433                 }
434         }
435
436         perm = mdt_identity_get_perm(identity, peernid);
437         /* find out the setuid/setgid attempt */
438         setuid = (pud->pud_uid != pud->pud_fsuid);
439         setgid = (pud->pud_gid != pud->pud_fsgid ||
440                   pud->pud_gid != identity->mi_gid);
441
442         /* check permission of setuid */
443         if (setuid && !(perm & CFS_SETUID_PERM)) {
444                 CDEBUG(D_SEC, "mdt blocked setuid attempt (%u -> %u) from %s\n",
445                        pud->pud_uid, pud->pud_fsuid, libcfs_nid2str(peernid));
446                 GOTO(out, rc = -EACCES);
447         }
448
449         /* check permission of setgid */
450         if (setgid && !(perm & CFS_SETGID_PERM)) {
451                 CDEBUG(D_SEC, "mdt blocked setgid attempt (%u:%u/%u:%u -> %u) "
452                        "from %s\n", pud->pud_uid, pud->pud_gid,
453                        pud->pud_fsuid, pud->pud_fsgid, identity->mi_gid,
454                        libcfs_nid2str(peernid));
455                 GOTO(out, rc = -EACCES);
456         }
457
458         EXIT;
459
460 out:
461         mdt_identity_put(mdt->mdt_identity_cache, identity);
462         return rc;
463 }
464
465 static int old_init_ucred_common(struct mdt_thread_info *info,
466                                  struct lu_nodemap *nodemap,
467                                  bool drop_fs_cap)
468 {
469         struct lu_ucred         *uc = mdt_ucred(info);
470         struct mdt_device       *mdt = info->mti_mdt;
471         struct md_identity      *identity = NULL;
472
473         if (nodemap && uc->uc_o_uid == nodemap->nm_squash_uid) {
474                 /* deny access before we get identity ref */
475                 if (nodemap->nmf_deny_unknown)
476                         RETURN(-EACCES);
477
478                 uc->uc_fsuid = nodemap->nm_squash_uid;
479                 uc->uc_fsgid = nodemap->nm_squash_gid;
480                 uc->uc_cap = 0;
481                 uc->uc_suppgids[0] = -1;
482                 uc->uc_suppgids[1] = -1;
483         }
484
485         if (!is_identity_get_disabled(mdt->mdt_identity_cache)) {
486                 identity = mdt_identity_get(mdt->mdt_identity_cache,
487                                             uc->uc_fsuid);
488                 if (IS_ERR(identity)) {
489                         if (unlikely(PTR_ERR(identity) == -EREMCHG ||
490                                      uc->uc_cap & CFS_CAP_FS_MASK)) {
491                                 identity = NULL;
492                         } else {
493                                 CDEBUG(D_SEC, "Deny access without identity: "
494                                        "uid %u\n", uc->uc_fsuid);
495                                 RETURN(-EACCES);
496                         }
497                 }
498         }
499         uc->uc_identity = identity;
500
501         /* process root_squash here. */
502         mdt_root_squash(info, mdt_info_req(info)->rq_peer.nid);
503
504         /* remove fs privilege for non-root user. */
505         if (uc->uc_fsuid && drop_fs_cap)
506                 uc->uc_cap &= ~CFS_CAP_FS_MASK;
507         uc->uc_valid = UCRED_OLD;
508         ucred_set_jobid(info, uc);
509         ucred_set_nid(info, uc);
510         ucred_set_audit_enabled(info, uc);
511
512         EXIT;
513
514         return 0;
515 }
516
517 static int old_init_ucred(struct mdt_thread_info *info,
518                           struct mdt_body *body, bool drop_fs_cap)
519 {
520         struct lu_ucred *uc = mdt_ucred(info);
521         struct lu_nodemap *nodemap;
522         int rc;
523         ENTRY;
524
525         nodemap = nodemap_get_from_exp(info->mti_exp);
526         if (IS_ERR(nodemap))
527                 RETURN(PTR_ERR(nodemap));
528
529         body->mbo_uid = nodemap_map_id(nodemap, NODEMAP_UID,
530                                        NODEMAP_CLIENT_TO_FS, body->mbo_uid);
531         body->mbo_gid = nodemap_map_id(nodemap, NODEMAP_GID,
532                                        NODEMAP_CLIENT_TO_FS, body->mbo_gid);
533         body->mbo_fsuid = nodemap_map_id(nodemap, NODEMAP_UID,
534                                        NODEMAP_CLIENT_TO_FS, body->mbo_fsuid);
535         body->mbo_fsgid = nodemap_map_id(nodemap, NODEMAP_GID,
536                                        NODEMAP_CLIENT_TO_FS, body->mbo_fsgid);
537
538         LASSERT(uc != NULL);
539         uc->uc_valid = UCRED_INVALID;
540         uc->uc_o_uid = uc->uc_uid = body->mbo_uid;
541         uc->uc_o_gid = uc->uc_gid = body->mbo_gid;
542         uc->uc_o_fsuid = uc->uc_fsuid = body->mbo_fsuid;
543         uc->uc_o_fsgid = uc->uc_fsgid = body->mbo_fsgid;
544         uc->uc_suppgids[0] = body->mbo_suppgid;
545         uc->uc_suppgids[1] = -1;
546         uc->uc_ginfo = NULL;
547         uc->uc_cap = body->mbo_capability;
548
549         rc = old_init_ucred_common(info, nodemap, drop_fs_cap);
550         nodemap_putref(nodemap);
551
552         RETURN(rc);
553 }
554
555 static int old_init_ucred_reint(struct mdt_thread_info *info)
556 {
557         struct lu_ucred *uc = mdt_ucred(info);
558         struct lu_nodemap *nodemap;
559         int rc;
560         ENTRY;
561
562         nodemap = nodemap_get_from_exp(info->mti_exp);
563         if (IS_ERR(nodemap))
564                 RETURN(PTR_ERR(nodemap));
565
566         LASSERT(uc != NULL);
567
568         uc->uc_fsuid = nodemap_map_id(nodemap, NODEMAP_UID,
569                                       NODEMAP_CLIENT_TO_FS, uc->uc_fsuid);
570         uc->uc_fsgid = nodemap_map_id(nodemap, NODEMAP_GID,
571                                       NODEMAP_CLIENT_TO_FS, uc->uc_fsgid);
572
573         uc->uc_valid = UCRED_INVALID;
574         uc->uc_o_uid = uc->uc_o_fsuid = uc->uc_uid = uc->uc_fsuid;
575         uc->uc_o_gid = uc->uc_o_fsgid = uc->uc_gid = uc->uc_fsgid;
576         uc->uc_ginfo = NULL;
577
578         rc = old_init_ucred_common(info, nodemap, true); /* drop_fs_cap=true */
579         nodemap_putref(nodemap);
580
581         RETURN(rc);
582 }
583
584 static inline int __mdt_init_ucred(struct mdt_thread_info *info,
585                                    struct mdt_body *body,
586                                    bool drop_fs_cap)
587 {
588         struct ptlrpc_request   *req = mdt_info_req(info);
589         struct lu_ucred         *uc  = mdt_ucred(info);
590
591         LASSERT(uc != NULL);
592         if ((uc->uc_valid == UCRED_OLD) || (uc->uc_valid == UCRED_NEW))
593                 return 0;
594
595         mdt_exit_ucred(info);
596
597         if (!req->rq_auth_gss || req->rq_auth_usr_mdt || !req->rq_user_desc)
598                 return old_init_ucred(info, body, drop_fs_cap);
599         else
600                 return new_init_ucred(info, BODY_INIT, body, drop_fs_cap);
601 }
602
603 int mdt_init_ucred(struct mdt_thread_info *info, struct mdt_body *body)
604 {
605         return __mdt_init_ucred(info, body, true);
606 }
607
608 /* LU-6528 when "no_subtree_check" is set for NFS export, nfsd_set_fh_dentry()
609  * doesn't set correct fsuid explicitely, but raise capability to allow
610  * exportfs_decode_fh() to reconnect disconnected dentry into dcache. So for
611  * lookup (i.e. intent_getattr), we should keep FS capability, otherwise it
612  * will fail permission check. */
613 int mdt_init_ucred_intent_getattr(struct mdt_thread_info *info,
614                                   struct mdt_body *body)
615 {
616         return __mdt_init_ucred(info, body, false);
617 }
618
619 int mdt_init_ucred_reint(struct mdt_thread_info *info)
620 {
621         struct ptlrpc_request *req = mdt_info_req(info);
622         struct lu_ucred       *uc  = mdt_ucred(info);
623         struct md_attr        *ma  = &info->mti_attr;
624
625         LASSERT(uc != NULL);
626         if ((uc->uc_valid == UCRED_OLD) || (uc->uc_valid == UCRED_NEW))
627                 return 0;
628
629         /* LU-5564: for normal close request, skip permission check */
630         if (lustre_msg_get_opc(req->rq_reqmsg) == MDS_CLOSE &&
631             !(ma->ma_attr_flags & (MDS_HSM_RELEASE | MDS_CLOSE_LAYOUT_SWAP)))
632                 uc->uc_cap |= CFS_CAP_FS_MASK;
633
634         mdt_exit_ucred(info);
635
636         if (!req->rq_auth_gss || req->rq_auth_usr_mdt || !req->rq_user_desc)
637                 return old_init_ucred_reint(info);
638         else
639                 return new_init_ucred(info, REC_INIT, NULL, true);
640 }
641
642 /* copied from lov/lov_ea.c, just for debugging, will be removed later */
643 void mdt_dump_lmm(int level, const struct lov_mds_md *lmm, __u64 valid)
644 {
645         const struct lov_ost_data_v1 *lod;
646         __u32 lmm_magic = le32_to_cpu(lmm->lmm_magic);
647         __u16 count;
648         int i;
649
650         if (likely(!cfs_cdebug_show(level, DEBUG_SUBSYSTEM)))
651                 return;
652
653         CDEBUG(level, "objid "DOSTID", magic 0x%08X, pattern %#X\n",
654                POSTID(&lmm->lmm_oi), lmm_magic,
655                le32_to_cpu(lmm->lmm_pattern));
656
657         /* No support for compount layouts yet */
658         if (lmm_magic != LOV_MAGIC_V1 && lmm_magic != LOV_MAGIC_V3)
659                 return;
660
661         count = le16_to_cpu(((struct lov_user_md *)lmm)->lmm_stripe_count);
662         CDEBUG(level, "stripe_size=0x%x, stripe_count=0x%x\n",
663                le32_to_cpu(lmm->lmm_stripe_size), count);
664
665         /* If it's a directory or a released file, then there are
666          * no actual objects to print, so bail out. */
667         if (valid & OBD_MD_FLDIREA ||
668             le32_to_cpu(lmm->lmm_pattern) & LOV_PATTERN_F_RELEASED)
669                 return;
670
671         LASSERT(count <= LOV_MAX_STRIPE_COUNT);
672         for (i = 0, lod = lmm->lmm_objects; i < count; i++, lod++) {
673                 struct ost_id oi;
674
675                 ostid_le_to_cpu(&lod->l_ost_oi, &oi);
676                 CDEBUG(level, "stripe %u idx %u subobj "DOSTID"\n",
677                        i, le32_to_cpu(lod->l_ost_idx), POSTID(&oi));
678         }
679 }
680
681 void mdt_dump_lmv(unsigned int level, const union lmv_mds_md *lmv)
682 {
683         const struct lmv_mds_md_v1 *lmm1;
684         int                        i;
685
686         if (likely(!cfs_cdebug_show(level, DEBUG_SUBSYSTEM)))
687                 return;
688
689         lmm1 = &lmv->lmv_md_v1;
690         CDEBUG(level,
691                "magic 0x%08X, master %#X stripe_count %#x hash_type %#x\n",
692                le32_to_cpu(lmm1->lmv_magic),
693                le32_to_cpu(lmm1->lmv_master_mdt_index),
694                le32_to_cpu(lmm1->lmv_stripe_count),
695                le32_to_cpu(lmm1->lmv_hash_type));
696
697         if (le32_to_cpu(lmm1->lmv_magic) == LMV_MAGIC_STRIPE)
698                 return;
699
700         for (i = 0; i < le32_to_cpu(lmm1->lmv_stripe_count); i++) {
701                 struct lu_fid fid;
702
703                 fid_le_to_cpu(&fid, &lmm1->lmv_stripe_fids[i]);
704                 CDEBUG(level, "idx %u subobj "DFID"\n", i, PFID(&fid));
705         }
706 }
707
708 /* Shrink and/or grow reply buffers */
709 int mdt_fix_reply(struct mdt_thread_info *info)
710 {
711         struct req_capsule *pill = info->mti_pill;
712         struct mdt_body    *body;
713         int                md_size, md_packed = 0;
714         int                acl_size;
715         int                rc = 0;
716         ENTRY;
717
718         body = req_capsule_server_get(pill, &RMF_MDT_BODY);
719         LASSERT(body != NULL);
720
721         if (body->mbo_valid & (OBD_MD_FLDIREA | OBD_MD_FLEASIZE |
722                                OBD_MD_LINKNAME))
723                 md_size = body->mbo_eadatasize;
724         else
725                 md_size = 0;
726
727         acl_size = body->mbo_aclsize;
728
729         /* this replay - not send info to client */
730         if (info->mti_spec.no_create) {
731                 md_size = 0;
732                 acl_size = 0;
733         }
734
735         CDEBUG(D_INFO, "Shrink to md_size = %d cookie/acl_size = %d\n",
736                md_size, acl_size);
737 /*
738             &RMF_MDT_BODY,
739             &RMF_MDT_MD,
740             &RMF_ACL, or &RMF_LOGCOOKIES
741 (optional)  &RMF_CAPA1,
742 (optional)  &RMF_CAPA2,
743 (optional)  something else
744 */
745
746         /* MDT_MD buffer may be bigger than packed value, let's shrink all
747          * buffers before growing it */
748         if (info->mti_big_lmm_used) {
749                 /* big_lmm buffer may be used even without packing the result
750                  * into reply, just for internal server needs */
751                 if (req_capsule_has_field(pill, &RMF_MDT_MD, RCL_SERVER))
752                         md_packed = req_capsule_get_size(pill, &RMF_MDT_MD,
753                                                          RCL_SERVER);
754
755                 /* free big lmm if md_size is not needed */
756                 if (md_size == 0 || md_packed == 0) {
757                         info->mti_big_lmm_used = 0;
758                 } else {
759                         /* buffer must be allocated separately */
760                         LASSERT(info->mti_attr.ma_lmm !=
761                                 req_capsule_server_get(pill, &RMF_MDT_MD));
762                         req_capsule_shrink(pill, &RMF_MDT_MD, 0, RCL_SERVER);
763                 }
764         } else if (req_capsule_has_field(pill, &RMF_MDT_MD, RCL_SERVER)) {
765                 req_capsule_shrink(pill, &RMF_MDT_MD, md_size, RCL_SERVER);
766         }
767
768         if (info->mti_big_acl_used) {
769                 if (acl_size == 0)
770                         info->mti_big_acl_used = 0;
771                 else
772                         req_capsule_shrink(pill, &RMF_ACL, 0, RCL_SERVER);
773         } else if (req_capsule_has_field(pill, &RMF_ACL, RCL_SERVER)) {
774                 req_capsule_shrink(pill, &RMF_ACL, acl_size, RCL_SERVER);
775         } else if (req_capsule_has_field(pill, &RMF_LOGCOOKIES, RCL_SERVER)) {
776                 req_capsule_shrink(pill, &RMF_LOGCOOKIES, acl_size, RCL_SERVER);
777         }
778
779         /*
780          * Some more field should be shrinked if needed.
781          * This should be done by those who added fields to reply message.
782          */
783
784         /* Grow MD buffer if needed finally */
785         if (info->mti_big_lmm_used) {
786                 void *lmm;
787
788                 LASSERT(md_size > md_packed);
789                 CDEBUG(D_INFO, "Enlarge reply buffer, need extra %d bytes\n",
790                        md_size - md_packed);
791                 rc = req_capsule_server_grow(pill, &RMF_MDT_MD, md_size);
792                 if (rc) {
793                         /* we can't answer with proper LOV EA, drop flags,
794                          * the rc is also returned so this request is
795                          * considered as failed */
796                         body->mbo_valid &= ~(OBD_MD_FLDIREA | OBD_MD_FLEASIZE);
797                         /* don't return transno along with error */
798                         lustre_msg_set_transno(pill->rc_req->rq_repmsg, 0);
799                 } else {
800                         /* now we need to pack right LOV/LMV EA */
801                         lmm = req_capsule_server_get(pill, &RMF_MDT_MD);
802                         if (info->mti_attr.ma_valid & MA_LOV) {
803                                 LASSERT(req_capsule_get_size(pill, &RMF_MDT_MD,
804                                                              RCL_SERVER) ==
805                                                 info->mti_attr.ma_lmm_size);
806                                 memcpy(lmm, info->mti_attr.ma_lmm,
807                                        info->mti_attr.ma_lmm_size);
808                         } else if (info->mti_attr.ma_valid & MA_LMV) {
809                                 LASSERT(req_capsule_get_size(pill, &RMF_MDT_MD,
810                                                              RCL_SERVER) ==
811                                                 info->mti_attr.ma_lmv_size);
812                                 memcpy(lmm, info->mti_attr.ma_lmv,
813                                        info->mti_attr.ma_lmv_size);
814                         }
815                 }
816
817                 /* update mdt_max_mdsize so clients will be aware about that */
818                 if (info->mti_mdt->mdt_max_mdsize < info->mti_attr.ma_lmm_size)
819                         info->mti_mdt->mdt_max_mdsize =
820                                                 info->mti_attr.ma_lmm_size;
821                 info->mti_big_lmm_used = 0;
822         }
823
824         if (info->mti_big_acl_used) {
825                 CDEBUG(D_INFO, "Enlarge reply ACL buffer to %d bytes\n",
826                        acl_size);
827
828                 rc = req_capsule_server_grow(pill, &RMF_ACL, acl_size);
829                 if (rc) {
830                         body->mbo_valid &= ~OBD_MD_FLACL;
831                 } else {
832                         void *acl = req_capsule_server_get(pill, &RMF_ACL);
833
834                         memcpy(acl, info->mti_big_acl, acl_size);
835                 }
836
837                 info->mti_big_acl_used = 0;
838         }
839
840         RETURN(rc);
841 }
842
843
844 /* if object is dying, pack the lov/llog data,
845  * parameter info->mti_attr should be valid at this point!
846  * Also implements RAoLU policy */
847 int mdt_handle_last_unlink(struct mdt_thread_info *info, struct mdt_object *mo,
848                            struct md_attr *ma)
849 {
850         struct mdt_body *repbody = NULL;
851         const struct lu_attr *la = &ma->ma_attr;
852         struct coordinator *cdt = &info->mti_mdt->mdt_coordinator;
853         int rc;
854         __u64 need = 0;
855         struct hsm_action_item hai = {
856                 .hai_len = sizeof(hai),
857                 .hai_action = HSMA_REMOVE,
858                 .hai_extent.length = -1,
859                 .hai_cookie = 0,
860                 .hai_gid = 0,
861         };
862         int archive_id;
863
864         ENTRY;
865
866         if (mdt_info_req(info) != NULL) {
867                 repbody = req_capsule_server_get(info->mti_pill, &RMF_MDT_BODY);
868                 LASSERT(repbody != NULL);
869         } else {
870                 CDEBUG(D_INFO, "not running in a request/reply context\n");
871         }
872
873         if ((ma->ma_valid & MA_INODE) && repbody != NULL)
874                 mdt_pack_attr2body(info, repbody, la, mdt_object_fid(mo));
875
876         if (ma->ma_valid & MA_LOV) {
877                 CERROR("No need in LOV EA upon unlink\n");
878                 dump_stack();
879         }
880         if (repbody != NULL)
881                 repbody->mbo_eadatasize = 0;
882
883         /* Only check unlinked and archived if RAoLU and upon last close */
884         if (!cdt->cdt_remove_archive_on_last_unlink ||
885             atomic_read(&mo->mot_open_count) != 0)
886                 RETURN(0);
887
888         /* mdt_attr_get_complex will clear ma_valid, so check here first */
889         if ((ma->ma_valid & MA_INODE) && (ma->ma_attr.la_nlink != 0))
890                 RETURN(0);
891
892         if ((ma->ma_valid & MA_HSM) && (!(ma->ma_hsm.mh_flags & HS_EXISTS)))
893                 RETURN(0);
894
895         need |= (MA_INODE | MA_HSM) & ~ma->ma_valid;
896         if (need != 0) {
897                 /* ma->ma_valid is missing either MA_INODE, MA_HSM, or both,
898                  * try setting them */
899                 ma->ma_need |= need;
900                 rc = mdt_attr_get_complex(info, mo, ma);
901                 if (rc) {
902                         CERROR("%s: unable to fetch missing attributes of"
903                                DFID": rc=%d\n", mdt_obd_name(info->mti_mdt),
904                                PFID(mdt_object_fid(mo)), rc);
905                         RETURN(0);
906                 }
907
908                 if (need & MA_INODE) {
909                         if (ma->ma_valid & MA_INODE) {
910                                 if (ma->ma_attr.la_nlink != 0)
911                                         RETURN(0);
912                         } else {
913                                 RETURN(0);
914                         }
915                 }
916
917                 if (need & MA_HSM) {
918                         if (ma->ma_valid & MA_HSM) {
919                                 if (!(ma->ma_hsm.mh_flags & HS_EXISTS))
920                                         RETURN(0);
921                         } else {
922                                 RETURN(0);
923                         }
924                 }
925         }
926
927         /* RAoLU policy is active, last close on file has occured,
928          * file is unlinked, file is archived, so create remove request
929          * for copytool!
930          * If CDT is not running, requests will be logged for later. */
931         if (ma->ma_hsm.mh_arch_id != 0)
932                 archive_id = ma->ma_hsm.mh_arch_id;
933         else
934                 archive_id = cdt->cdt_default_archive_id;
935
936         hai.hai_fid = *mdt_object_fid(mo);
937
938         rc = mdt_agent_record_add(info->mti_env, info->mti_mdt, archive_id, 0,
939                                   &hai);
940         if (rc)
941                 CERROR("%s: unable to add HSM remove request for "DFID
942                        ": rc=%d\n", mdt_obd_name(info->mti_mdt),
943                        PFID(mdt_object_fid(mo)), rc);
944
945         RETURN(0);
946 }
947
948 static __u64 mdt_attr_valid_xlate(__u64 in, struct mdt_reint_record *rr,
949                                   struct md_attr *ma)
950 {
951         __u64 out;
952
953         out = 0;
954         if (in & MDS_ATTR_MODE)
955                 out |= LA_MODE;
956         if (in & MDS_ATTR_UID)
957                 out |= LA_UID;
958         if (in & MDS_ATTR_GID)
959                 out |= LA_GID;
960         if (in & MDS_ATTR_SIZE)
961                 out |= LA_SIZE;
962         if (in & MDS_ATTR_BLOCKS)
963                 out |= LA_BLOCKS;
964         if (in & MDS_ATTR_ATIME_SET)
965                 out |= LA_ATIME;
966         if (in & MDS_ATTR_CTIME_SET)
967                 out |= LA_CTIME;
968         if (in & MDS_ATTR_MTIME_SET)
969                 out |= LA_MTIME;
970         if (in & MDS_ATTR_ATTR_FLAG)
971                 out |= LA_FLAGS;
972         if (in & MDS_ATTR_KILL_SUID)
973                 out |= LA_KILL_SUID;
974         if (in & MDS_ATTR_KILL_SGID)
975                 out |= LA_KILL_SGID;
976         if (in & MDS_ATTR_PROJID)
977                 out |= LA_PROJID;
978         if (in & MDS_ATTR_LSIZE)
979                 out |= LA_LSIZE;
980         if (in & MDS_ATTR_LBLOCKS)
981                 out |= LA_LBLOCKS;
982
983         if (in & MDS_ATTR_FROM_OPEN)
984                 rr->rr_flags |= MRF_OPEN_TRUNC;
985         if (in & MDS_ATTR_OVERRIDE)
986                 ma->ma_attr_flags |= MDS_OWNEROVERRIDE;
987         if (in & MDS_ATTR_FORCE)
988                 ma->ma_attr_flags |= MDS_PERM_BYPASS;
989
990         in &= ~(MDS_ATTR_MODE | MDS_ATTR_UID | MDS_ATTR_GID | MDS_ATTR_PROJID |
991                 MDS_ATTR_ATIME | MDS_ATTR_MTIME | MDS_ATTR_CTIME |
992                 MDS_ATTR_ATIME_SET | MDS_ATTR_CTIME_SET | MDS_ATTR_MTIME_SET |
993                 MDS_ATTR_SIZE | MDS_ATTR_BLOCKS | MDS_ATTR_ATTR_FLAG |
994                 MDS_ATTR_FORCE | MDS_ATTR_KILL_SUID | MDS_ATTR_KILL_SGID |
995                 MDS_ATTR_FROM_OPEN | MDS_ATTR_LSIZE | MDS_ATTR_LBLOCKS |
996                 MDS_ATTR_OVERRIDE);
997         if (in != 0)
998                 CERROR("Unknown attr bits: %#llx\n", in);
999         return out;
1000 }
1001
1002 /* unpacking */
1003
1004 int mdt_name_unpack(struct req_capsule *pill,
1005                     const struct req_msg_field *field,
1006                     struct lu_name *ln,
1007                     enum mdt_name_flags flags)
1008 {
1009         ln->ln_name = req_capsule_client_get(pill, field);
1010         ln->ln_namelen = req_capsule_get_size(pill, field, RCL_CLIENT) - 1;
1011
1012         if (!lu_name_is_valid(ln)) {
1013                 ln->ln_name = NULL;
1014                 ln->ln_namelen = 0;
1015
1016                 return -EPROTO;
1017         }
1018
1019         if ((flags & MNF_FIX_ANON) &&
1020             ln->ln_namelen == 1 && ln->ln_name[0] == '/') {
1021                 /* Newer (3.x) kernels use a name of "/" for the
1022                  * "anonymous" disconnected dentries from NFS
1023                  * filehandle conversion. See d_obtain_alias(). */
1024                 ln->ln_name = NULL;
1025                 ln->ln_namelen = 0;
1026         }
1027
1028         return 0;
1029 }
1030
1031 static int mdt_file_secctx_unpack(struct req_capsule *pill,
1032                                   const char **secctx_name,
1033                                   void **secctx, size_t *secctx_size)
1034 {
1035         const char *name;
1036         size_t name_size;
1037
1038         *secctx_name = NULL;
1039         *secctx = NULL;
1040         *secctx_size = 0;
1041
1042         if (!req_capsule_has_field(pill, &RMF_FILE_SECCTX_NAME, RCL_CLIENT) ||
1043             !req_capsule_field_present(pill, &RMF_FILE_SECCTX_NAME, RCL_CLIENT))
1044                 return 0;
1045
1046         name_size = req_capsule_get_size(pill, &RMF_FILE_SECCTX_NAME,
1047                                          RCL_CLIENT);
1048         if (name_size == 0)
1049                 return 0;
1050
1051         name = req_capsule_client_get(pill, &RMF_FILE_SECCTX_NAME);
1052         if (strnlen(name, name_size) != name_size - 1)
1053                 return -EPROTO;
1054
1055         if (!req_capsule_has_field(pill, &RMF_FILE_SECCTX, RCL_CLIENT) ||
1056             !req_capsule_field_present(pill, &RMF_FILE_SECCTX, RCL_CLIENT))
1057                 return -EPROTO;
1058
1059         *secctx_name = name;
1060         *secctx = req_capsule_client_get(pill, &RMF_FILE_SECCTX);
1061         *secctx_size = req_capsule_get_size(pill, &RMF_FILE_SECCTX, RCL_CLIENT);
1062
1063         return 0;
1064 }
1065
1066 static int mdt_setattr_unpack_rec(struct mdt_thread_info *info)
1067 {
1068         struct lu_ucred *uc = mdt_ucred(info);
1069         struct md_attr *ma = &info->mti_attr;
1070         struct lu_attr *la = &ma->ma_attr;
1071         struct req_capsule *pill = info->mti_pill;
1072         struct mdt_reint_record *rr = &info->mti_rr;
1073         struct mdt_rec_setattr *rec;
1074         struct lu_nodemap *nodemap;
1075
1076         ENTRY;
1077
1078         CLASSERT(sizeof(*rec) == sizeof(struct mdt_rec_reint));
1079         rec = req_capsule_client_get(pill, &RMF_REC_REINT);
1080         if (rec == NULL)
1081                 RETURN(-EFAULT);
1082
1083         /* This prior initialization is needed for old_init_ucred_reint() */
1084         uc->uc_fsuid = rec->sa_fsuid;
1085         uc->uc_fsgid = rec->sa_fsgid;
1086         uc->uc_cap   = rec->sa_cap;
1087         uc->uc_suppgids[0] = rec->sa_suppgid;
1088         uc->uc_suppgids[1] = -1;
1089
1090         rr->rr_fid1 = &rec->sa_fid;
1091         la->la_valid = mdt_attr_valid_xlate(rec->sa_valid, rr, ma);
1092         la->la_mode  = rec->sa_mode;
1093         la->la_flags = rec->sa_attr_flags;
1094
1095         nodemap = nodemap_get_from_exp(info->mti_exp);
1096         if (IS_ERR(nodemap))
1097                 RETURN(PTR_ERR(nodemap));
1098
1099         la->la_uid   = nodemap_map_id(nodemap, NODEMAP_UID,
1100                                       NODEMAP_CLIENT_TO_FS, rec->sa_uid);
1101         la->la_gid   = nodemap_map_id(nodemap, NODEMAP_GID,
1102                                       NODEMAP_CLIENT_TO_FS, rec->sa_gid);
1103         la->la_projid = rec->sa_projid;
1104         nodemap_putref(nodemap);
1105
1106         la->la_size  = rec->sa_size;
1107         la->la_blocks = rec->sa_blocks;
1108         la->la_ctime = rec->sa_ctime;
1109         la->la_atime = rec->sa_atime;
1110         la->la_mtime = rec->sa_mtime;
1111         ma->ma_valid = MA_INODE;
1112
1113         ma->ma_attr_flags |= rec->sa_bias & (MDS_CLOSE_INTENT |
1114                                 MDS_DATA_MODIFIED | MDS_TRUNC_KEEP_LEASE);
1115         RETURN(0);
1116 }
1117
1118 static int mdt_close_handle_unpack(struct mdt_thread_info *info)
1119 {
1120         struct req_capsule *pill = info->mti_pill;
1121         struct mdt_ioepoch *ioepoch;
1122         ENTRY;
1123
1124         if (req_capsule_get_size(pill, &RMF_MDT_EPOCH, RCL_CLIENT))
1125                 ioepoch = req_capsule_client_get(pill, &RMF_MDT_EPOCH);
1126         else
1127                 ioepoch = NULL;
1128
1129         if (ioepoch == NULL)
1130                 RETURN(-EPROTO);
1131
1132         info->mti_open_handle = ioepoch->mio_open_handle;
1133
1134         RETURN(0);
1135 }
1136
1137 static inline int mdt_dlmreq_unpack(struct mdt_thread_info *info) {
1138         struct req_capsule      *pill = info->mti_pill;
1139
1140         if (req_capsule_get_size(pill, &RMF_DLM_REQ, RCL_CLIENT)) {
1141                 info->mti_dlm_req = req_capsule_client_get(pill, &RMF_DLM_REQ);
1142                 if (info->mti_dlm_req == NULL)
1143                         RETURN(-EFAULT);
1144         }
1145
1146         RETURN(0);
1147 }
1148
1149 static int mdt_setattr_unpack(struct mdt_thread_info *info)
1150 {
1151         struct mdt_reint_record *rr = &info->mti_rr;
1152         struct md_attr          *ma = &info->mti_attr;
1153         struct req_capsule      *pill = info->mti_pill;
1154         int rc;
1155         ENTRY;
1156
1157         rc = mdt_setattr_unpack_rec(info);
1158         if (rc)
1159                 RETURN(rc);
1160
1161         if (req_capsule_field_present(pill, &RMF_EADATA, RCL_CLIENT)) {
1162                 rr->rr_eadata = req_capsule_client_get(pill, &RMF_EADATA);
1163                 rr->rr_eadatalen = req_capsule_get_size(pill, &RMF_EADATA,
1164                                                         RCL_CLIENT);
1165                 if (rr->rr_eadatalen > 0) {
1166                         const struct lmv_user_md        *lum;
1167
1168                         lum = rr->rr_eadata;
1169                         /* Sigh ma_valid(from req) does not indicate whether
1170                          * it will set LOV/LMV EA, so we have to check magic */
1171                         if (le32_to_cpu(lum->lum_magic) == LMV_USER_MAGIC) {
1172                                 ma->ma_valid |= MA_LMV;
1173                                 ma->ma_lmv = (void *)rr->rr_eadata;
1174                                 ma->ma_lmv_size = rr->rr_eadatalen;
1175                         } else {
1176                                 ma->ma_valid |= MA_LOV;
1177                                 ma->ma_lmm = (void *)rr->rr_eadata;
1178                                 ma->ma_lmm_size = rr->rr_eadatalen;
1179                         }
1180                 }
1181         }
1182
1183         rc = mdt_dlmreq_unpack(info);
1184         RETURN(rc);
1185 }
1186
1187 static int mdt_close_intent_unpack(struct mdt_thread_info *info)
1188 {
1189         struct md_attr          *ma = &info->mti_attr;
1190         struct req_capsule      *pill = info->mti_pill;
1191         ENTRY;
1192
1193         if (!(ma->ma_attr_flags & MDS_CLOSE_INTENT))
1194                 RETURN(0);
1195
1196         req_capsule_extend(pill, &RQF_MDS_CLOSE_INTENT);
1197
1198         if (!(req_capsule_has_field(pill, &RMF_CLOSE_DATA, RCL_CLIENT) &&
1199             req_capsule_field_present(pill, &RMF_CLOSE_DATA, RCL_CLIENT)))
1200                 RETURN(-EFAULT);
1201
1202         RETURN(0);
1203 }
1204
1205 int mdt_close_unpack(struct mdt_thread_info *info)
1206 {
1207         int rc;
1208         ENTRY;
1209
1210         rc = mdt_close_handle_unpack(info);
1211         if (rc)
1212                 RETURN(rc);
1213
1214         rc = mdt_setattr_unpack_rec(info);
1215         if (rc)
1216                 RETURN(rc);
1217
1218         rc = mdt_close_intent_unpack(info);
1219         if (rc)
1220                 RETURN(rc);
1221
1222         RETURN(mdt_init_ucred_reint(info));
1223 }
1224
1225 static int mdt_create_unpack(struct mdt_thread_info *info)
1226 {
1227         struct lu_ucred *uc  = mdt_ucred(info);
1228         struct mdt_rec_create *rec;
1229         struct lu_attr *attr = &info->mti_attr.ma_attr;
1230         struct mdt_reint_record *rr = &info->mti_rr;
1231         struct req_capsule *pill = info->mti_pill;
1232         struct md_op_spec *sp = &info->mti_spec;
1233         int rc;
1234
1235         ENTRY;
1236
1237         CLASSERT(sizeof(*rec) == sizeof(struct mdt_rec_reint));
1238         rec = req_capsule_client_get(pill, &RMF_REC_REINT);
1239         if (rec == NULL)
1240                 RETURN(-EFAULT);
1241
1242         /* This prior initialization is needed for old_init_ucred_reint() */
1243         uc->uc_fsuid = rec->cr_fsuid;
1244         uc->uc_fsgid = rec->cr_fsgid;
1245         uc->uc_cap   = rec->cr_cap;
1246         uc->uc_suppgids[0] = rec->cr_suppgid1;
1247         uc->uc_suppgids[1] = -1;
1248         uc->uc_umask = rec->cr_umask;
1249
1250         rr->rr_fid1 = &rec->cr_fid1;
1251         rr->rr_fid2 = &rec->cr_fid2;
1252         attr->la_mode = rec->cr_mode;
1253         attr->la_rdev  = rec->cr_rdev;
1254         attr->la_uid   = rec->cr_fsuid;
1255         attr->la_gid   = rec->cr_fsgid;
1256         attr->la_ctime = rec->cr_time;
1257         attr->la_mtime = rec->cr_time;
1258         attr->la_atime = rec->cr_time;
1259         attr->la_valid = LA_MODE | LA_RDEV | LA_UID | LA_GID | LA_TYPE |
1260                          LA_CTIME | LA_MTIME | LA_ATIME;
1261         memset(&sp->u, 0, sizeof(sp->u));
1262         sp->sp_cr_flags = get_mrc_cr_flags(rec);
1263
1264         rc = mdt_name_unpack(pill, &RMF_NAME, &rr->rr_name, 0);
1265         if (rc < 0)
1266                 RETURN(rc);
1267
1268         if (S_ISLNK(attr->la_mode)) {
1269                 const char *tgt = NULL;
1270
1271                 req_capsule_extend(pill, &RQF_MDS_REINT_CREATE_SYM);
1272                 if (req_capsule_get_size(pill, &RMF_SYMTGT, RCL_CLIENT)) {
1273                         tgt = req_capsule_client_get(pill, &RMF_SYMTGT);
1274                         sp->u.sp_symname = tgt;
1275                 }
1276                 if (tgt == NULL)
1277                         RETURN(-EFAULT);
1278         } else {
1279                 req_capsule_extend(pill, &RQF_MDS_REINT_CREATE_ACL);
1280                 if (S_ISDIR(attr->la_mode) &&
1281                     req_capsule_get_size(pill, &RMF_EADATA, RCL_CLIENT) > 0) {
1282                         sp->u.sp_ea.eadata =
1283                                 req_capsule_client_get(pill, &RMF_EADATA);
1284                         sp->u.sp_ea.eadatalen =
1285                                 req_capsule_get_size(pill, &RMF_EADATA,
1286                                                      RCL_CLIENT);
1287                         sp->sp_cr_flags |= MDS_OPEN_HAS_EA;
1288                 }
1289         }
1290
1291         rc = mdt_file_secctx_unpack(pill, &sp->sp_cr_file_secctx_name,
1292                                     &sp->sp_cr_file_secctx,
1293                                     &sp->sp_cr_file_secctx_size);
1294         if (rc < 0)
1295                 RETURN(rc);
1296
1297         rc = mdt_dlmreq_unpack(info);
1298         RETURN(rc);
1299 }
1300
1301 static int mdt_link_unpack(struct mdt_thread_info *info)
1302 {
1303         struct lu_ucred *uc  = mdt_ucred(info);
1304         struct mdt_rec_link *rec;
1305         struct lu_attr *attr = &info->mti_attr.ma_attr;
1306         struct mdt_reint_record *rr = &info->mti_rr;
1307         struct req_capsule *pill = info->mti_pill;
1308         int rc;
1309
1310         ENTRY;
1311
1312         CLASSERT(sizeof(*rec) == sizeof(struct mdt_rec_reint));
1313         rec = req_capsule_client_get(pill, &RMF_REC_REINT);
1314         if (rec == NULL)
1315                 RETURN(-EFAULT);
1316
1317         /* This prior initialization is needed for old_init_ucred_reint() */
1318         uc->uc_fsuid = rec->lk_fsuid;
1319         uc->uc_fsgid = rec->lk_fsgid;
1320         uc->uc_cap   = rec->lk_cap;
1321         uc->uc_suppgids[0] = rec->lk_suppgid1;
1322         uc->uc_suppgids[1] = rec->lk_suppgid2;
1323
1324         attr->la_uid = rec->lk_fsuid;
1325         attr->la_gid = rec->lk_fsgid;
1326         rr->rr_fid1 = &rec->lk_fid1;
1327         rr->rr_fid2 = &rec->lk_fid2;
1328         attr->la_ctime = rec->lk_time;
1329         attr->la_mtime = rec->lk_time;
1330         attr->la_valid = LA_UID | LA_GID | LA_CTIME | LA_MTIME;
1331
1332         rc = mdt_name_unpack(pill, &RMF_NAME, &rr->rr_name, 0);
1333         if (rc < 0)
1334                 RETURN(rc);
1335
1336         rc = mdt_dlmreq_unpack(info);
1337
1338         RETURN(rc);
1339 }
1340
1341 static int mdt_unlink_unpack(struct mdt_thread_info *info)
1342 {
1343         struct lu_ucred *uc  = mdt_ucred(info);
1344         struct mdt_rec_unlink *rec;
1345         struct lu_attr *attr = &info->mti_attr.ma_attr;
1346         struct mdt_reint_record *rr = &info->mti_rr;
1347         struct req_capsule *pill = info->mti_pill;
1348         int rc;
1349
1350         ENTRY;
1351
1352         CLASSERT(sizeof(*rec) == sizeof(struct mdt_rec_reint));
1353         rec = req_capsule_client_get(pill, &RMF_REC_REINT);
1354         if (rec == NULL)
1355                 RETURN(-EFAULT);
1356
1357         /* This prior initialization is needed for old_init_ucred_reint() */
1358         uc->uc_fsuid = rec->ul_fsuid;
1359         uc->uc_fsgid = rec->ul_fsgid;
1360         uc->uc_cap   = rec->ul_cap;
1361         uc->uc_suppgids[0] = rec->ul_suppgid1;
1362         uc->uc_suppgids[1] = -1;
1363
1364         attr->la_uid = rec->ul_fsuid;
1365         attr->la_gid = rec->ul_fsgid;
1366         rr->rr_fid1 = &rec->ul_fid1;
1367         rr->rr_fid2 = &rec->ul_fid2;
1368         attr->la_ctime = rec->ul_time;
1369         attr->la_mtime = rec->ul_time;
1370         attr->la_mode  = rec->ul_mode;
1371         attr->la_valid = LA_UID | LA_GID | LA_CTIME | LA_MTIME | LA_MODE;
1372
1373         rc = mdt_name_unpack(pill, &RMF_NAME, &rr->rr_name, 0);
1374         if (rc < 0)
1375                 RETURN(rc);
1376
1377         info->mti_spec.no_create = !!req_is_replay(mdt_info_req(info));
1378
1379         rc = mdt_dlmreq_unpack(info);
1380         RETURN(rc);
1381 }
1382
1383 static int mdt_rmentry_unpack(struct mdt_thread_info *info)
1384 {
1385         info->mti_spec.sp_rm_entry = 1;
1386         return mdt_unlink_unpack(info);
1387 }
1388
1389 static int mdt_rename_unpack(struct mdt_thread_info *info)
1390 {
1391         struct lu_ucred *uc = mdt_ucred(info);
1392         struct mdt_rec_rename *rec;
1393         struct lu_attr *attr = &info->mti_attr.ma_attr;
1394         struct mdt_reint_record *rr = &info->mti_rr;
1395         struct req_capsule *pill = info->mti_pill;
1396         struct md_op_spec *spec = &info->mti_spec;
1397         int rc;
1398
1399         ENTRY;
1400
1401         CLASSERT(sizeof(*rec) == sizeof(struct mdt_rec_reint));
1402         rec = req_capsule_client_get(pill, &RMF_REC_REINT);
1403         if (rec == NULL)
1404                 RETURN(-EFAULT);
1405
1406         /* This prior initialization is needed for old_init_ucred_reint() */
1407         uc->uc_fsuid = rec->rn_fsuid;
1408         uc->uc_fsgid = rec->rn_fsgid;
1409         uc->uc_cap   = rec->rn_cap;
1410         uc->uc_suppgids[0] = rec->rn_suppgid1;
1411         uc->uc_suppgids[1] = rec->rn_suppgid2;
1412
1413         attr->la_uid = rec->rn_fsuid;
1414         attr->la_gid = rec->rn_fsgid;
1415         rr->rr_fid1 = &rec->rn_fid1;
1416         rr->rr_fid2 = &rec->rn_fid2;
1417         attr->la_ctime = rec->rn_time;
1418         attr->la_mtime = rec->rn_time;
1419         /* rename_tgt contains the mode already */
1420         attr->la_mode = rec->rn_mode;
1421         attr->la_valid = LA_UID | LA_GID | LA_CTIME | LA_MTIME | LA_MODE;
1422
1423         rc = mdt_name_unpack(pill, &RMF_NAME, &rr->rr_name, 0);
1424         if (rc < 0)
1425                 RETURN(rc);
1426
1427         rc = mdt_name_unpack(pill, &RMF_SYMTGT, &rr->rr_tgt_name, 0);
1428         if (rc < 0)
1429                 RETURN(rc);
1430
1431         spec->no_create = !!req_is_replay(mdt_info_req(info));
1432
1433         rc = mdt_dlmreq_unpack(info);
1434
1435         RETURN(rc);
1436 }
1437
1438 static int mdt_migrate_unpack(struct mdt_thread_info *info)
1439 {
1440         struct lu_ucred *uc = mdt_ucred(info);
1441         struct mdt_rec_rename *rec;
1442         struct lu_attr *attr = &info->mti_attr.ma_attr;
1443         struct mdt_reint_record *rr = &info->mti_rr;
1444         struct req_capsule *pill = info->mti_pill;
1445         struct md_op_spec *spec = &info->mti_spec;
1446         int rc;
1447
1448         ENTRY;
1449
1450         CLASSERT(sizeof(*rec) == sizeof(struct mdt_rec_reint));
1451         rec = req_capsule_client_get(pill, &RMF_REC_REINT);
1452         if (rec == NULL)
1453                 RETURN(-EFAULT);
1454
1455         /* This prior initialization is needed for old_init_ucred_reint() */
1456         uc->uc_fsuid = rec->rn_fsuid;
1457         uc->uc_fsgid = rec->rn_fsgid;
1458         uc->uc_cap   = rec->rn_cap;
1459         uc->uc_suppgids[0] = rec->rn_suppgid1;
1460         uc->uc_suppgids[1] = rec->rn_suppgid2;
1461
1462         attr->la_uid = rec->rn_fsuid;
1463         attr->la_gid = rec->rn_fsgid;
1464         rr->rr_fid1 = &rec->rn_fid1;
1465         rr->rr_fid2 = &rec->rn_fid2;
1466         attr->la_ctime = rec->rn_time;
1467         attr->la_mtime = rec->rn_time;
1468         /* rename_tgt contains the mode already */
1469         attr->la_mode = rec->rn_mode;
1470         attr->la_valid = LA_UID | LA_GID | LA_CTIME | LA_MTIME | LA_MODE;
1471
1472         rc = mdt_name_unpack(pill, &RMF_NAME, &rr->rr_name, 0);
1473         if (rc < 0)
1474                 RETURN(rc);
1475
1476         if (rec->rn_bias & MDS_CLOSE_MIGRATE) {
1477                 rc = mdt_close_handle_unpack(info);
1478                 if (rc)
1479                         RETURN(rc);
1480
1481                 spec->sp_migrate_close = 1;
1482         }
1483
1484         /* lustre version > 2.11 migration packs lum */
1485         if (req_capsule_has_field(pill, &RMF_EADATA, RCL_CLIENT)) {
1486                 if (req_capsule_field_present(pill, &RMF_EADATA, RCL_CLIENT)) {
1487                         rr->rr_eadatalen = req_capsule_get_size(pill,
1488                                                                 &RMF_EADATA,
1489                                                                 RCL_CLIENT);
1490                         if (rr->rr_eadatalen > 0) {
1491                                 rr->rr_eadata = req_capsule_client_get(pill,
1492                                                                 &RMF_EADATA);
1493                                 spec->u.sp_ea.eadatalen = rr->rr_eadatalen;
1494                                 spec->u.sp_ea.eadata = rr->rr_eadata;
1495                                 spec->sp_cr_flags |= MDS_OPEN_HAS_EA;
1496                         }
1497                 } else {
1498                         /* old client doesn't provide lum. */
1499                         RETURN(-EOPNOTSUPP);
1500                 }
1501         }
1502
1503         spec->no_create = !!req_is_replay(mdt_info_req(info));
1504
1505         rc = mdt_dlmreq_unpack(info);
1506
1507         RETURN(rc);
1508 }
1509
1510 /*
1511  * please see comment above LOV_MAGIC_V1_DEFINED
1512  */
1513 void mdt_fix_lov_magic(struct mdt_thread_info *info, void *eadata)
1514 {
1515         struct lov_user_md_v1   *v1 = eadata;
1516
1517         LASSERT(v1);
1518
1519         if (unlikely(req_is_replay(mdt_info_req(info)))) {
1520                 if ((v1->lmm_magic & LOV_MAGIC_MASK) == LOV_MAGIC_MAGIC)
1521                         v1->lmm_magic |= LOV_MAGIC_DEFINED;
1522                 else if ((v1->lmm_magic & __swab32(LOV_MAGIC_MAGIC)) ==
1523                          __swab32(LOV_MAGIC_MAGIC))
1524                         v1->lmm_magic |= __swab32(LOV_MAGIC_DEFINED);
1525         }
1526 }
1527
1528 static int mdt_open_unpack(struct mdt_thread_info *info)
1529 {
1530         struct lu_ucred *uc = mdt_ucred(info);
1531         struct mdt_rec_create *rec;
1532         struct lu_attr *attr = &info->mti_attr.ma_attr;
1533         struct req_capsule *pill = info->mti_pill;
1534         struct mdt_reint_record *rr = &info->mti_rr;
1535         struct ptlrpc_request *req = mdt_info_req(info);
1536         struct md_op_spec *sp = &info->mti_spec;
1537         int rc;
1538         ENTRY;
1539
1540         CLASSERT(sizeof(struct mdt_rec_create) == sizeof(struct mdt_rec_reint));
1541         rec = req_capsule_client_get(pill, &RMF_REC_REINT);
1542         if (rec == NULL)
1543                 RETURN(-EFAULT);
1544
1545         /* This prior initialization is needed for old_init_ucred_reint() */
1546         uc->uc_fsuid = rec->cr_fsuid;
1547         uc->uc_fsgid = rec->cr_fsgid;
1548         uc->uc_cap   = rec->cr_cap;
1549         uc->uc_suppgids[0] = rec->cr_suppgid1;
1550         uc->uc_suppgids[1] = rec->cr_suppgid2;
1551         uc->uc_umask = rec->cr_umask;
1552
1553         rr->rr_fid1   = &rec->cr_fid1;
1554         rr->rr_fid2   = &rec->cr_fid2;
1555         rr->rr_open_handle = &rec->cr_open_handle_old;
1556         attr->la_mode = rec->cr_mode;
1557         attr->la_rdev  = rec->cr_rdev;
1558         attr->la_uid   = rec->cr_fsuid;
1559         attr->la_gid   = rec->cr_fsgid;
1560         attr->la_ctime = rec->cr_time;
1561         attr->la_mtime = rec->cr_time;
1562         attr->la_atime = rec->cr_time;
1563         attr->la_valid = LA_MODE  | LA_RDEV  | LA_UID   | LA_GID |
1564                          LA_CTIME | LA_MTIME | LA_ATIME;
1565         memset(&info->mti_spec.u, 0, sizeof(info->mti_spec.u));
1566         info->mti_spec.sp_cr_flags = get_mrc_cr_flags(rec);
1567         /* Do not trigger ASSERTION if client miss to set such flags. */
1568         if (unlikely(info->mti_spec.sp_cr_flags == 0))
1569                 RETURN(-EPROTO);
1570
1571         info->mti_cross_ref = !!(rec->cr_bias & MDS_CROSS_REF);
1572
1573         mdt_name_unpack(pill, &RMF_NAME, &rr->rr_name, MNF_FIX_ANON);
1574
1575         if (req_capsule_field_present(pill, &RMF_EADATA, RCL_CLIENT)) {
1576                 rr->rr_eadatalen = req_capsule_get_size(pill, &RMF_EADATA,
1577                                                         RCL_CLIENT);
1578                 if (rr->rr_eadatalen > 0) {
1579                         rr->rr_eadata = req_capsule_client_get(pill,
1580                                                                &RMF_EADATA);
1581                         sp->u.sp_ea.eadatalen = rr->rr_eadatalen;
1582                         sp->u.sp_ea.eadata = rr->rr_eadata;
1583                         sp->no_create = !!req_is_replay(req);
1584                         mdt_fix_lov_magic(info, rr->rr_eadata);
1585                 }
1586
1587                 /*
1588                  * Client default md_size may be 0 right after client start,
1589                  * until all osc are connected, set here just some reasonable
1590                  * value to prevent misbehavior.
1591                  */
1592                 if (rr->rr_eadatalen == 0 &&
1593                     !(info->mti_spec.sp_cr_flags & MDS_OPEN_DELAY_CREATE))
1594                         rr->rr_eadatalen = MIN_MD_SIZE;
1595         }
1596
1597         rc = mdt_file_secctx_unpack(pill, &sp->sp_cr_file_secctx_name,
1598                                     &sp->sp_cr_file_secctx,
1599                                     &sp->sp_cr_file_secctx_size);
1600
1601         RETURN(rc);
1602 }
1603
1604 static int mdt_setxattr_unpack(struct mdt_thread_info *info)
1605 {
1606         struct mdt_reint_record *rr = &info->mti_rr;
1607         struct lu_ucred *uc = mdt_ucred(info);
1608         struct lu_attr *attr = &info->mti_attr.ma_attr;
1609         struct req_capsule *pill = info->mti_pill;
1610         struct mdt_rec_setxattr *rec;
1611         int rc;
1612         ENTRY;
1613
1614
1615         CLASSERT(sizeof(struct mdt_rec_setxattr) ==
1616                  sizeof(struct mdt_rec_reint));
1617
1618         rec = req_capsule_client_get(pill, &RMF_REC_REINT);
1619         if (rec == NULL)
1620                 RETURN(-EFAULT);
1621
1622         /* This prior initialization is needed for old_init_ucred_reint() */
1623         uc->uc_fsuid  = rec->sx_fsuid;
1624         uc->uc_fsgid  = rec->sx_fsgid;
1625         uc->uc_cap    = rec->sx_cap;
1626         uc->uc_suppgids[0] = rec->sx_suppgid1;
1627         uc->uc_suppgids[1] = -1;
1628
1629         rr->rr_opcode = rec->sx_opcode;
1630         rr->rr_fid1   = &rec->sx_fid;
1631         attr->la_valid = rec->sx_valid;
1632         attr->la_ctime = rec->sx_time;
1633         attr->la_size = rec->sx_size;
1634         attr->la_flags = rec->sx_flags;
1635
1636         rc = mdt_name_unpack(pill, &RMF_NAME, &rr->rr_name, 0);
1637         if (rc < 0)
1638                 RETURN(rc);
1639
1640         if (req_capsule_field_present(pill, &RMF_EADATA, RCL_CLIENT)) {
1641                 rr->rr_eadatalen = req_capsule_get_size(pill, &RMF_EADATA,
1642                                                         RCL_CLIENT);
1643                 if (rr->rr_eadatalen > 0) {
1644                         rr->rr_eadata = req_capsule_client_get(pill,
1645                                                                &RMF_EADATA);
1646                         if (rr->rr_eadata == NULL)
1647                                 RETURN(-EFAULT);
1648                 } else {
1649                         rr->rr_eadata = NULL;
1650                 }
1651         } else if (!(attr->la_valid & OBD_MD_FLXATTRRM)) {
1652                 CDEBUG(D_INFO, "no xattr data supplied\n");
1653                 RETURN(-EFAULT);
1654         }
1655
1656         if (mdt_dlmreq_unpack(info) < 0)
1657                 RETURN(-EPROTO);
1658
1659         RETURN(0);
1660 }
1661
1662 static int mdt_resync_unpack(struct mdt_thread_info *info)
1663 {
1664         struct req_capsule      *pill = info->mti_pill;
1665         struct mdt_reint_record *rr   = &info->mti_rr;
1666         struct lu_ucred         *uc     = mdt_ucred(info);
1667         struct mdt_rec_resync   *rec;
1668         ENTRY;
1669
1670         CLASSERT(sizeof(*rec) == sizeof(struct mdt_rec_reint));
1671         rec = req_capsule_client_get(pill, &RMF_REC_REINT);
1672         if (rec == NULL)
1673                 RETURN(-EFAULT);
1674
1675         /* This prior initialization is needed for old_init_ucred_reint() */
1676         uc->uc_fsuid = rec->rs_fsuid;
1677         uc->uc_fsgid = rec->rs_fsgid;
1678         uc->uc_cap   = rec->rs_cap;
1679
1680         rr->rr_fid1   = &rec->rs_fid;
1681         rr->rr_mirror_id = rec->rs_mirror_id;
1682
1683         /* cookie doesn't need to be swapped but it has been swapped
1684          * in lustre_swab_mdt_rec_reint() as rr_mtime, so here it needs
1685          * restoring. */
1686         if (ptlrpc_req_need_swab(mdt_info_req(info)))
1687                 __swab64s(&rec->rs_lease_handle.cookie);
1688         rr->rr_lease_handle = &rec->rs_lease_handle;
1689
1690         RETURN(mdt_dlmreq_unpack(info));
1691 }
1692
1693 typedef int (*reint_unpacker)(struct mdt_thread_info *info);
1694
1695 static reint_unpacker mdt_reint_unpackers[REINT_MAX] = {
1696         [REINT_SETATTR]  = mdt_setattr_unpack,
1697         [REINT_CREATE]   = mdt_create_unpack,
1698         [REINT_LINK]     = mdt_link_unpack,
1699         [REINT_UNLINK]   = mdt_unlink_unpack,
1700         [REINT_RENAME]   = mdt_rename_unpack,
1701         [REINT_OPEN]     = mdt_open_unpack,
1702         [REINT_SETXATTR] = mdt_setxattr_unpack,
1703         [REINT_RMENTRY]  = mdt_rmentry_unpack,
1704         [REINT_MIGRATE]  = mdt_migrate_unpack,
1705         [REINT_RESYNC]   = mdt_resync_unpack,
1706 };
1707
1708 int mdt_reint_unpack(struct mdt_thread_info *info, __u32 op)
1709 {
1710         int rc;
1711         ENTRY;
1712
1713         memset(&info->mti_rr, 0, sizeof(info->mti_rr));
1714         if (op < REINT_MAX && mdt_reint_unpackers[op] != NULL) {
1715                 info->mti_rr.rr_opcode = op;
1716                 rc = mdt_reint_unpackers[op](info);
1717         } else {
1718                 CERROR("Unexpected opcode %d\n", op);
1719                 rc = -EFAULT;
1720         }
1721         RETURN(rc);
1722 }