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LU-2827 ldlm: wrong handling of ldlm resends
[fs/lustre-release.git] / lustre / mdt / mdt_open.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) 2007, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2011, 2013, Intel Corporation.
31  */
32 /*
33  * This file is part of Lustre, http://www.lustre.org/
34  * Lustre is a trademark of Sun Microsystems, Inc.
35  *
36  * lustre/mdt/mdt_open.c
37  *
38  * Lustre Metadata Target (mdt) open/close file handling
39  *
40  * Author: Huang Hua <huanghua@clusterfs.com>
41  */
42
43 #define DEBUG_SUBSYSTEM S_MDS
44
45 #include <lustre_acl.h>
46 #include <lustre_mds.h>
47 #include "mdt_internal.h"
48
49 /* we do nothing because we do not have refcount now */
50 static void mdt_mfd_get(void *mfdp)
51 {
52 }
53
54 static struct portals_handle_ops mfd_handle_ops = {
55         .hop_addref = mdt_mfd_get,
56         .hop_free   = NULL,
57 };
58
59 /* Create a new mdt_file_data struct, initialize it,
60  * and insert it to global hash table */
61 struct mdt_file_data *mdt_mfd_new(const struct mdt_export_data *med)
62 {
63         struct mdt_file_data *mfd;
64         ENTRY;
65
66         OBD_ALLOC_PTR(mfd);
67         if (mfd != NULL) {
68                 CFS_INIT_LIST_HEAD(&mfd->mfd_handle.h_link);
69                 mfd->mfd_handle.h_owner = med;
70                 CFS_INIT_LIST_HEAD(&mfd->mfd_list);
71                 class_handle_hash(&mfd->mfd_handle, &mfd_handle_ops);
72         }
73
74         RETURN(mfd);
75 }
76
77 /*
78  * Find the mfd pointed to by handle in global hash table.
79  * In case of replay the handle is obsoleted
80  * but mfd can be found in mfd list by that handle.
81  * Callers need to be holding med_open_lock.
82  */
83 struct mdt_file_data *mdt_handle2mfd(struct mdt_export_data *med,
84                                      const struct lustre_handle *handle,
85                                      bool is_replay_or_resent)
86 {
87         struct mdt_file_data   *mfd;
88         ENTRY;
89
90         LASSERT(handle != NULL);
91         mfd = class_handle2object(handle->cookie, med);
92         /* during dw/setattr replay the mfd can be found by old handle */
93         if (mfd == NULL && is_replay_or_resent) {
94                 cfs_list_for_each_entry(mfd, &med->med_open_head, mfd_list) {
95                         if (mfd->mfd_old_handle.cookie == handle->cookie)
96                                 RETURN(mfd);
97                 }
98                 mfd = NULL;
99         }
100
101         RETURN(mfd);
102 }
103
104 /* free mfd */
105 void mdt_mfd_free(struct mdt_file_data *mfd)
106 {
107         LASSERT(cfs_list_empty(&mfd->mfd_list));
108         OBD_FREE_RCU(mfd, sizeof *mfd, &mfd->mfd_handle);
109 }
110
111 static int mdt_create_data(struct mdt_thread_info *info,
112                            struct mdt_object *p, struct mdt_object *o)
113 {
114         struct md_op_spec     *spec = &info->mti_spec;
115         struct md_attr        *ma   = &info->mti_attr;
116         int                    rc   = 0;
117         ENTRY;
118
119         if (!md_should_create(spec->sp_cr_flags))
120                 RETURN(0);
121
122         ma->ma_need = MA_INODE | MA_LOV;
123         ma->ma_valid = 0;
124         mutex_lock(&o->mot_lov_mutex);
125         if (!(o->mot_flags & MOF_LOV_CREATED)) {
126                 if (p != NULL && (fid_is_obf(mdt_object_fid(p)) ||
127                                   fid_is_dot_lustre(mdt_object_fid(p))))
128                         GOTO(unlock, rc = -EPERM);
129
130                 rc = mdo_create_data(info->mti_env,
131                                      p ? mdt_object_child(p) : NULL,
132                                      mdt_object_child(o), spec, ma);
133                 if (rc == 0)
134                         rc = mdt_attr_get_complex(info, o, ma);
135
136                 if (rc == 0 && ma->ma_valid & MA_LOV)
137                         o->mot_flags |= MOF_LOV_CREATED;
138         }
139 unlock:
140         mutex_unlock(&o->mot_lov_mutex);
141         RETURN(rc);
142 }
143
144 static int mdt_ioepoch_opened(struct mdt_object *mo)
145 {
146         return mo->mot_ioepoch_count;
147 }
148
149 int mdt_object_is_som_enabled(struct mdt_object *mo)
150 {
151         return !mo->mot_ioepoch;
152 }
153
154 /**
155  * Re-enable Size-on-MDS.
156  * Call under ->mot_ioepoch_mutex.
157  */
158 static void mdt_object_som_enable(struct mdt_object *mo, __u64 ioepoch)
159 {
160         if (ioepoch == mo->mot_ioepoch) {
161                 LASSERT(!mdt_ioepoch_opened(mo));
162                 mo->mot_ioepoch = 0;
163                 mo->mot_flags = 0;
164         }
165 }
166
167 /**
168  * Open the IOEpoch. It is allowed if @writecount is not negative.
169  * The epoch and writecount handling is performed under the mot_ioepoch_mutex.
170  */
171 int mdt_ioepoch_open(struct mdt_thread_info *info, struct mdt_object *o,
172                      int created)
173 {
174         struct mdt_device *mdt = info->mti_mdt;
175         int cancel = 0;
176         int rc = 0;
177         ENTRY;
178
179         if (!(mdt_conn_flags(info) & OBD_CONNECT_SOM) ||
180             !S_ISREG(lu_object_attr(&o->mot_obj)))
181                 RETURN(0);
182
183         mutex_lock(&o->mot_ioepoch_mutex);
184         if (mdt_ioepoch_opened(o)) {
185                 /* Epoch continues even if there is no writers yet. */
186                 CDEBUG(D_INODE, "continue epoch "LPU64" for "DFID"\n",
187                        o->mot_ioepoch, PFID(mdt_object_fid(o)));
188         } else {
189                 /* XXX: ->mdt_ioepoch is not initialized at the mount */
190                 spin_lock(&mdt->mdt_ioepoch_lock);
191                 if (mdt->mdt_ioepoch < info->mti_replayepoch)
192                         mdt->mdt_ioepoch = info->mti_replayepoch;
193
194                 if (info->mti_replayepoch)
195                         o->mot_ioepoch = info->mti_replayepoch;
196                 else if (++mdt->mdt_ioepoch == IOEPOCH_INVAL)
197                         o->mot_ioepoch = ++mdt->mdt_ioepoch;
198                 else
199                         o->mot_ioepoch = mdt->mdt_ioepoch;
200
201                 spin_unlock(&mdt->mdt_ioepoch_lock);
202
203                 CDEBUG(D_INODE, "starting epoch "LPU64" for "DFID"\n",
204                        o->mot_ioepoch, PFID(mdt_object_fid(o)));
205                 if (created)
206                         o->mot_flags |= MOF_SOM_CREATED;
207                 cancel = 1;
208         }
209         o->mot_ioepoch_count++;
210         mutex_unlock(&o->mot_ioepoch_mutex);
211
212         /* Cancel Size-on-MDS attributes cached on clients for the open case.
213          * In the truncate case, see mdt_reint_setattr(). */
214         if (cancel && (info->mti_rr.rr_fid1 != NULL)) {
215                 struct mdt_lock_handle  *lh = &info->mti_lh[MDT_LH_CHILD];
216                 mdt_lock_reg_init(lh, LCK_EX);
217                 rc = mdt_object_lock(info, o, lh, MDS_INODELOCK_UPDATE,
218                                      MDT_LOCAL_LOCK);
219                 if (rc == 0)
220                         mdt_object_unlock(info, o, lh, 1);
221         }
222         RETURN(rc);
223 }
224
225 /**
226  * Update SOM on-disk attributes.
227  * If enabling, write update inodes and lustre-ea with the proper IOEpoch,
228  * mountid and attributes. If disabling, clean SOM xattr.
229  * Call under ->mot_ioepoch_mutex.
230  */
231 static int mdt_som_attr_set(struct mdt_thread_info *info,
232                             struct mdt_object *obj, __u64 ioepoch, bool enable)
233 {
234         struct md_object        *next = mdt_object_child(obj);
235         int                      rc;
236         ENTRY;
237
238         CDEBUG(D_INODE, "Size-on-MDS attribute %s for epoch "LPU64
239                " on "DFID".\n", enable ? "update" : "disabling",
240                ioepoch, PFID(mdt_object_fid(obj)));
241
242         if (enable) {
243                 struct lu_buf           *buf = &info->mti_buf;
244                 struct som_attrs        *attrs;
245                 struct md_attr          *ma = &info->mti_attr;
246                 struct lu_attr          *la = &ma->ma_attr;
247                 struct obd_device       *obd = info->mti_mdt->mdt_lut.lut_obd;
248
249                 attrs = (struct som_attrs *)info->mti_xattr_buf;
250                 CLASSERT(sizeof(info->mti_xattr_buf) >= sizeof(*attrs));
251
252                 /* pack SOM attributes */
253                 memset(attrs, 0, sizeof(*attrs));
254                 attrs->som_ioepoch = ioepoch;
255                 attrs->som_mountid = obd->u.obt.obt_mount_count;
256                 if ((la->la_valid & LA_SIZE) != 0)
257                         attrs->som_size = la->la_size;
258                 if ((la->la_valid & LA_BLOCKS) != 0)
259                         attrs->som_blocks = la->la_blocks;
260                 lustre_som_swab(attrs);
261
262                 /* update SOM attributes */
263                 buf->lb_buf = attrs;
264                 buf->lb_len = sizeof(*attrs);
265                 rc = mo_xattr_set(info->mti_env, next, buf, XATTR_NAME_SOM, 0);
266         } else {
267                 /* delete SOM attributes */
268                 rc = mo_xattr_del(info->mti_env, next, XATTR_NAME_SOM);
269         }
270
271         RETURN(rc);
272 }
273
274 /** Perform the eviction specific actions on ioepoch close. */
275 static inline int mdt_ioepoch_close_on_eviction(struct mdt_thread_info *info,
276                                                 struct mdt_object *o)
277 {
278         int rc = 0;
279
280         mutex_lock(&o->mot_ioepoch_mutex);
281         CDEBUG(D_INODE, "Eviction. Closing IOepoch "LPU64" on "DFID". "
282                "Count %d\n", o->mot_ioepoch, PFID(mdt_object_fid(o)),
283                o->mot_ioepoch_count);
284         o->mot_ioepoch_count--;
285
286         /* If eviction occured set MOF_SOM_RECOV,
287          * if no other epoch holders, disable SOM on disk. */
288         o->mot_flags |= MOF_SOM_CHANGE | MOF_SOM_RECOV;
289         if (!mdt_ioepoch_opened(o)) {
290                 rc = mdt_som_attr_set(info, o, o->mot_ioepoch, MDT_SOM_DISABLE);
291                 mdt_object_som_enable(o, o->mot_ioepoch);
292         }
293         mutex_unlock(&o->mot_ioepoch_mutex);
294         RETURN(rc);
295 }
296
297 /**
298  * Perform the replay specific actions on ioepoch close.
299  * Skip SOM attribute update if obtained and just forget about the inode state
300  * for the last ioepoch holder. The SOM cache is invalidated on MDS failure.
301  */
302 static inline int mdt_ioepoch_close_on_replay(struct mdt_thread_info *info,
303                                               struct mdt_object *o)
304 {
305         int rc = MDT_IOEPOCH_CLOSED;
306         ENTRY;
307
308         mutex_lock(&o->mot_ioepoch_mutex);
309         CDEBUG(D_INODE, "Replay. Closing epoch "LPU64" on "DFID". Count %d\n",
310                o->mot_ioepoch, PFID(mdt_object_fid(o)), o->mot_ioepoch_count);
311         o->mot_ioepoch_count--;
312
313         /* Get an info from the replayed request if client is supposed
314          * to send an Attibute Update, reconstruct @rc if so */
315         if (info->mti_ioepoch->flags & MF_SOM_AU)
316                 rc = MDT_IOEPOCH_GETATTR;
317
318         if (!mdt_ioepoch_opened(o))
319                 mdt_object_som_enable(o, info->mti_ioepoch->ioepoch);
320         mutex_unlock(&o->mot_ioepoch_mutex);
321
322         RETURN(rc);
323 }
324
325 /**
326  * Regular file IOepoch close.
327  * Closes the ioepoch, checks the object state, apply obtained attributes and
328  * re-enable SOM on the object, if possible. Also checks if the recovery is
329  * needed and packs OBD_MD_FLGETATTRLOCK flag into the reply to force the client
330  * to obtain SOM attributes under the server-side OST locks.
331  *
332  * Return value:
333  * MDT_IOEPOCH_CLOSED if ioepoch is closed.
334  * MDT_IOEPOCH_GETATTR if ioepoch is closed but another SOM update is needed.
335  */
336 static inline int mdt_ioepoch_close_reg(struct mdt_thread_info *info,
337                                         struct mdt_object *o)
338 {
339         struct md_attr *tmp_ma;
340         struct lu_attr *la;
341         int achange, opened;
342         int recovery = 0;
343         int rc = 0, ret = MDT_IOEPOCH_CLOSED;
344         ENTRY;
345
346         la = &info->mti_attr.ma_attr;
347         achange = (info->mti_ioepoch->flags & MF_SOM_CHANGE);
348
349         mutex_lock(&o->mot_ioepoch_mutex);
350         o->mot_ioepoch_count--;
351
352         tmp_ma = &info->mti_u.som.attr;
353         tmp_ma->ma_lmm = info->mti_attr.ma_lmm;
354         tmp_ma->ma_lmm_size = info->mti_attr.ma_lmm_size;
355         tmp_ma->ma_som = &info->mti_u.som.data;
356         tmp_ma->ma_need = MA_INODE | MA_LOV | MA_SOM;
357         tmp_ma->ma_valid = 0;
358         rc = mdt_attr_get_complex(info, o, tmp_ma);
359         if (rc)
360                 GOTO(error_up, rc);
361
362         /* Check the on-disk SOM state. */
363         if (o->mot_flags & MOF_SOM_RECOV)
364                 recovery = 1;
365         else if (!(o->mot_flags & MOF_SOM_CREATED) &&
366                  !(tmp_ma->ma_valid & MA_SOM))
367                 recovery = 1;
368
369         CDEBUG(D_INODE, "Closing epoch "LPU64" on "DFID". Count %d\n",
370                o->mot_ioepoch, PFID(mdt_object_fid(o)), o->mot_ioepoch_count);
371
372         opened = mdt_ioepoch_opened(o);
373         /**
374          * If IOEpoch is not opened, check if a Size-on-MDS update is needed.
375          * Skip the check for file with no LOV  or for unlink files.
376          */
377         if (!opened && tmp_ma->ma_valid & MA_LOV &&
378             !(tmp_ma->ma_valid & MA_INODE && tmp_ma->ma_attr.la_nlink == 0)) {
379                 if (recovery)
380                         /* If some previous writer was evicted, re-ask the
381                          * client for attributes. Even if attributes are
382                          * provided, we cannot believe in them.
383                          * Another use case is that there is no SOM cache on
384                          * disk -- first access with SOM or there was an MDS
385                          * failure. */
386                         ret = MDT_IOEPOCH_GETATTR;
387                 else if (o->mot_flags & MOF_SOM_CHANGE)
388                         /* Some previous writer changed the attribute.
389                          * Do not believe to the current Size-on-MDS
390                          * update, re-ask client. */
391                         ret = MDT_IOEPOCH_GETATTR;
392                 else if (!(la->la_valid & LA_SIZE) && achange)
393                         /* Attributes were changed by the last writer
394                          * only but no Size-on-MDS update is received.*/
395                         ret = MDT_IOEPOCH_GETATTR;
396         }
397
398         if (achange || ret == MDT_IOEPOCH_GETATTR)
399                 o->mot_flags |= MOF_SOM_CHANGE;
400
401         /* If epoch ends and relable SOM attributes are obtained, update them.
402          * Create SOM ea for new files even if there is no attributes obtained
403          * (0-length file). */
404         if (ret == MDT_IOEPOCH_CLOSED && !opened) {
405                 if (achange || o->mot_flags & MOF_SOM_CREATED) {
406                         LASSERT(achange || !(la->la_valid & LA_SIZE));
407                         rc = mdt_som_attr_set(info, o, o->mot_ioepoch,
408                                               MDT_SOM_ENABLE);
409                         /* Avoid the following setattrs of these attributes,
410                          * e.g. for atime update. */
411                         info->mti_attr.ma_valid = 0;
412                 }
413                 mdt_object_som_enable(o, o->mot_ioepoch);
414         }
415
416         mutex_unlock(&o->mot_ioepoch_mutex);
417         /* If recovery is needed, tell the client to perform GETATTR under
418          * the lock. */
419         if (ret == MDT_IOEPOCH_GETATTR && recovery) {
420                 struct mdt_body *rep;
421                 rep = req_capsule_server_get(info->mti_pill, &RMF_MDT_BODY);
422                 rep->valid |= OBD_MD_FLGETATTRLOCK;
423         }
424
425         RETURN(rc ? : ret);
426
427 error_up:
428         mutex_unlock(&o->mot_ioepoch_mutex);
429         return rc;
430 }
431
432 /**
433  * Close IOEpoch (opened file or MDS_FMODE_EPOCH state). It happens if:
434  * - a client closes the IOEpoch;
435  * - a client eviction occured.
436  * Return values:
437  * MDT_IOEPOCH_OPENED if the client does not close IOEpoch.
438  * MDT_IOEPOCH_CLOSED if the client closes IOEpoch.
439  * MDT_IOEPOCH_GETATTR if the client closes IOEpoch but another SOM attribute
440  * update is needed.
441  */
442 static int mdt_ioepoch_close(struct mdt_thread_info *info, struct mdt_object *o)
443 {
444         struct ptlrpc_request *req = mdt_info_req(info);
445         ENTRY;
446
447         if (!(mdt_conn_flags(info) & OBD_CONNECT_SOM) ||
448             !S_ISREG(lu_object_attr(&o->mot_obj)))
449                 RETURN(0);
450
451         LASSERT(o->mot_ioepoch_count);
452         LASSERT(info->mti_ioepoch == NULL ||
453                 info->mti_ioepoch->ioepoch == o->mot_ioepoch);
454
455         /* IOEpoch is closed only if client tells about it or eviction occures.
456          * In the replay case, always close the epoch. */
457         if (req == NULL)
458                 RETURN(mdt_ioepoch_close_on_eviction(info, o));
459         if (lustre_msg_get_flags(req->rq_reqmsg) & MSG_REPLAY)
460                 RETURN(mdt_ioepoch_close_on_replay(info, o));
461         if (info->mti_ioepoch && (info->mti_ioepoch->flags & MF_EPOCH_CLOSE))
462                 RETURN(mdt_ioepoch_close_reg(info, o));
463         /* IO epoch is not closed. */
464         RETURN(MDT_IOEPOCH_OPENED);
465 }
466
467 /**
468  * Close MDS_FMODE_SOM state, when IOEpoch is already closed and we are waiting
469  * for attribute update. It happens if:
470  * - SOM Attribute Update is obtained;
471  * - the client failed to obtain it and informs MDS about it;
472  * - a client eviction occured.
473  * Apply obtained attributes for the 1st case, wipe out the on-disk SOM
474  * cache otherwise.
475  */
476 int mdt_som_au_close(struct mdt_thread_info *info, struct mdt_object *o)
477 {
478         struct ptlrpc_request   *req = mdt_info_req(info);
479         __u64                    ioepoch = 0;
480         int                      act = MDT_SOM_ENABLE;
481         int                      rc = 0;
482         ENTRY;
483
484         LASSERT(!req || info->mti_ioepoch);
485         if (!(mdt_conn_flags(info) & OBD_CONNECT_SOM) ||
486             !S_ISREG(lu_object_attr(&o->mot_obj)))
487                 RETURN(0);
488
489         /* No size whereas MF_SOM_CHANGE is set means client failed to
490          * obtain ost attributes, drop the SOM cache on disk if so. */
491         if (!req ||
492             (info->mti_ioepoch &&
493              info->mti_ioepoch->flags & MF_SOM_CHANGE &&
494              !(info->mti_attr.ma_attr.la_valid & LA_SIZE)))
495                 act = MDT_SOM_DISABLE;
496
497         mutex_lock(&o->mot_ioepoch_mutex);
498         /* Mark the object it is the recovery state if we failed to obtain
499          * SOM attributes. */
500         if (act == MDT_SOM_DISABLE)
501                 o->mot_flags |= MOF_SOM_RECOV;
502
503         if (!mdt_ioepoch_opened(o)) {
504                 ioepoch =  info->mti_ioepoch ?
505                         info->mti_ioepoch->ioepoch : o->mot_ioepoch;
506
507                 if (req != NULL
508                     && !(lustre_msg_get_flags(req->rq_reqmsg) & MSG_REPLAY))
509                         rc = mdt_som_attr_set(info, o, ioepoch, act);
510                 mdt_object_som_enable(o, ioepoch);
511         }
512         mutex_unlock(&o->mot_ioepoch_mutex);
513         RETURN(rc);
514 }
515
516 int mdt_write_read(struct mdt_object *o)
517 {
518         int rc = 0;
519         ENTRY;
520         mutex_lock(&o->mot_ioepoch_mutex);
521         rc = o->mot_writecount;
522         mutex_unlock(&o->mot_ioepoch_mutex);
523         RETURN(rc);
524 }
525
526 int mdt_write_get(struct mdt_object *o)
527 {
528         int rc = 0;
529         ENTRY;
530         mutex_lock(&o->mot_ioepoch_mutex);
531         if (o->mot_writecount < 0)
532                 rc = -ETXTBSY;
533         else
534                 o->mot_writecount++;
535         mutex_unlock(&o->mot_ioepoch_mutex);
536         RETURN(rc);
537 }
538
539 void mdt_write_put(struct mdt_object *o)
540 {
541         ENTRY;
542         mutex_lock(&o->mot_ioepoch_mutex);
543         o->mot_writecount--;
544         mutex_unlock(&o->mot_ioepoch_mutex);
545         EXIT;
546 }
547
548 static int mdt_write_deny(struct mdt_object *o)
549 {
550         int rc = 0;
551         ENTRY;
552         mutex_lock(&o->mot_ioepoch_mutex);
553         if (o->mot_writecount > 0)
554                 rc = -ETXTBSY;
555         else
556                 o->mot_writecount--;
557         mutex_unlock(&o->mot_ioepoch_mutex);
558         RETURN(rc);
559 }
560
561 static void mdt_write_allow(struct mdt_object *o)
562 {
563         ENTRY;
564         mutex_lock(&o->mot_ioepoch_mutex);
565         o->mot_writecount++;
566         mutex_unlock(&o->mot_ioepoch_mutex);
567         EXIT;
568 }
569
570 /* there can be no real transaction so prepare the fake one */
571 static void mdt_empty_transno(struct mdt_thread_info *info, int rc)
572 {
573         struct mdt_device      *mdt = info->mti_mdt;
574         struct ptlrpc_request  *req = mdt_info_req(info);
575         struct tg_export_data  *ted;
576         struct lsd_client_data *lcd;
577
578         ENTRY;
579         /* transaction has occurred already */
580         if (lustre_msg_get_transno(req->rq_repmsg) != 0)
581                 RETURN_EXIT;
582
583         spin_lock(&mdt->mdt_lut.lut_translock);
584         if (rc != 0) {
585                 if (info->mti_transno != 0) {
586                         struct obd_export *exp = req->rq_export;
587
588                         CERROR("%s: replay trans "LPU64" NID %s: rc = %d\n",
589                                mdt_obd_name(mdt), info->mti_transno,
590                                libcfs_nid2str(exp->exp_connection->c_peer.nid),
591                                rc);
592                         spin_unlock(&mdt->mdt_lut.lut_translock);
593                         RETURN_EXIT;
594                 }
595         } else if (info->mti_transno == 0) {
596                 info->mti_transno = ++mdt->mdt_lut.lut_last_transno;
597         } else {
598                 /* should be replay */
599                 if (info->mti_transno > mdt->mdt_lut.lut_last_transno)
600                         mdt->mdt_lut.lut_last_transno = info->mti_transno;
601         }
602         spin_unlock(&mdt->mdt_lut.lut_translock);
603
604         CDEBUG(D_INODE, "transno = "LPU64", last_committed = "LPU64"\n",
605                info->mti_transno,
606                req->rq_export->exp_obd->obd_last_committed);
607
608         req->rq_transno = info->mti_transno;
609         lustre_msg_set_transno(req->rq_repmsg, info->mti_transno);
610
611         /* update lcd in memory only for resent cases */
612         ted = &req->rq_export->exp_target_data;
613         LASSERT(ted);
614         mutex_lock(&ted->ted_lcd_lock);
615         lcd = ted->ted_lcd;
616         if (info->mti_transno < lcd->lcd_last_transno &&
617             info->mti_transno != 0) {
618                 /* This should happen during replay. Do not update
619                  * last rcvd info if replay req transno < last transno,
620                  * otherwise the following resend(after replay) can not
621                  * be checked correctly by xid */
622                 mutex_unlock(&ted->ted_lcd_lock);
623                 CDEBUG(D_HA, "%s: transno = "LPU64" < last_transno = "LPU64"\n",
624                        mdt_obd_name(mdt), info->mti_transno,
625                        lcd->lcd_last_transno);
626                 RETURN_EXIT;
627         }
628
629         if (lustre_msg_get_opc(req->rq_reqmsg) == MDS_CLOSE ||
630             lustre_msg_get_opc(req->rq_reqmsg) == MDS_DONE_WRITING) {
631                 if (info->mti_transno != 0)
632                         lcd->lcd_last_close_transno = info->mti_transno;
633                 lcd->lcd_last_close_xid = req->rq_xid;
634                 lcd->lcd_last_close_result = rc;
635         } else {
636                 /* VBR: save versions in last_rcvd for reconstruct. */
637                 __u64 *pre_versions = lustre_msg_get_versions(req->rq_repmsg);
638                 if (pre_versions) {
639                         lcd->lcd_pre_versions[0] = pre_versions[0];
640                         lcd->lcd_pre_versions[1] = pre_versions[1];
641                         lcd->lcd_pre_versions[2] = pre_versions[2];
642                         lcd->lcd_pre_versions[3] = pre_versions[3];
643                 }
644                 if (info->mti_transno != 0)
645                         lcd->lcd_last_transno = info->mti_transno;
646
647                 lcd->lcd_last_xid = req->rq_xid;
648                 lcd->lcd_last_result = rc;
649                 lcd->lcd_last_data = info->mti_opdata;
650         }
651         mutex_unlock(&ted->ted_lcd_lock);
652
653         EXIT;
654 }
655
656 void mdt_mfd_set_mode(struct mdt_file_data *mfd, __u64 mode)
657 {
658         LASSERT(mfd != NULL);
659
660         CDEBUG(D_HA, DFID " Change mfd mode "LPO64" -> "LPO64".\n",
661                PFID(mdt_object_fid(mfd->mfd_object)), mfd->mfd_mode, mode);
662
663         mfd->mfd_mode = mode;
664 }
665
666 static int mdt_mfd_open(struct mdt_thread_info *info, struct mdt_object *p,
667                         struct mdt_object *o, __u64 flags, int created,
668                         struct ldlm_reply *rep)
669 {
670         struct ptlrpc_request   *req = mdt_info_req(info);
671         struct mdt_export_data  *med = &req->rq_export->exp_mdt_data;
672         struct mdt_file_data    *mfd;
673         struct md_attr          *ma  = &info->mti_attr;
674         struct lu_attr          *la  = &ma->ma_attr;
675         struct mdt_body         *repbody;
676         int                      rc = 0, isdir, isreg;
677         ENTRY;
678
679         repbody = req_capsule_server_get(info->mti_pill, &RMF_MDT_BODY);
680
681         isreg = S_ISREG(la->la_mode);
682         isdir = S_ISDIR(la->la_mode);
683         if (isreg && !(ma->ma_valid & MA_LOV) && !(flags & MDS_OPEN_RELEASE)) {
684                 /*
685                  * No EA, check whether it is will set regEA and dirEA since in
686                  * above attr get, these size might be zero, so reset it, to
687                  * retrieve the MD after create obj.
688                  */
689                 ma->ma_lmm_size = req_capsule_get_size(info->mti_pill,
690                                                        &RMF_MDT_MD,
691                                                        RCL_SERVER);
692                 /* in replay case, p == NULL */
693                 rc = mdt_create_data(info, p, o);
694                 if (rc)
695                         RETURN(rc);
696
697                 if (exp_connect_flags(req->rq_export) & OBD_CONNECT_DISP_STRIPE)
698                         mdt_set_disposition(info, rep, DISP_OPEN_STRIPE);
699         }
700
701         CDEBUG(D_INODE, "after open, ma_valid bit = "LPX64" lmm_size = %d\n",
702                ma->ma_valid, ma->ma_lmm_size);
703
704         if (ma->ma_valid & MA_LOV) {
705                 LASSERT(ma->ma_lmm_size != 0);
706                 repbody->eadatasize = ma->ma_lmm_size;
707                 if (isdir)
708                         repbody->valid |= OBD_MD_FLDIREA;
709                 else
710                         repbody->valid |= OBD_MD_FLEASIZE;
711         }
712
713         if (flags & FMODE_WRITE) {
714                 rc = mdt_write_get(o);
715                 if (rc == 0) {
716                         mdt_ioepoch_open(info, o, created);
717                         repbody->ioepoch = o->mot_ioepoch;
718                 }
719         } else if (flags & MDS_FMODE_EXEC) {
720                 rc = mdt_write_deny(o);
721         }
722         if (rc)
723                 RETURN(rc);
724
725         rc = mo_open(info->mti_env, mdt_object_child(o),
726                      created ? flags | MDS_OPEN_CREATED : flags);
727         if (rc)
728                 GOTO(err_out, rc);
729
730         mfd = mdt_mfd_new(med);
731         if (mfd == NULL)
732                 GOTO(err_out, rc = -ENOMEM);
733
734         /*
735          * Keep a reference on this object for this open, and is
736          * released by mdt_mfd_close().
737          */
738         mdt_object_get(info->mti_env, o);
739         mfd->mfd_object = o;
740         mfd->mfd_xid = req->rq_xid;
741
742         /*
743          * @flags is always not zero. At least it should be FMODE_READ,
744          * FMODE_WRITE or MDS_FMODE_EXEC.
745          */
746         LASSERT(flags != 0);
747
748         /* Open handling. */
749         mdt_mfd_set_mode(mfd, flags);
750
751         atomic_inc(&o->mot_open_count);
752         if (flags & MDS_OPEN_LEASE)
753                 atomic_inc(&o->mot_lease_count);
754
755         /* replay handle */
756         if (req_is_replay(req)) {
757                 struct mdt_file_data *old_mfd;
758                 /* Check wheather old cookie already exist in
759                  * the list, becasue when do recovery, client
760                  * might be disconnected from server, and
761                  * restart replay, so there maybe some orphan
762                  * mfd here, we should remove them */
763                 LASSERT(info->mti_rr.rr_handle != NULL);
764                 spin_lock(&med->med_open_lock);
765                 old_mfd = mdt_handle2mfd(med, info->mti_rr.rr_handle, true);
766                 if (old_mfd != NULL) {
767                         CDEBUG(D_HA, "delete orphan mfd = %p, fid = "DFID", "
768                                "cookie = "LPX64"\n", mfd,
769                                PFID(mdt_object_fid(mfd->mfd_object)),
770                                info->mti_rr.rr_handle->cookie);
771                         class_handle_unhash(&old_mfd->mfd_handle);
772                         cfs_list_del_init(&old_mfd->mfd_list);
773                         spin_unlock(&med->med_open_lock);
774                         /* no attr update for that close */
775                         la->la_valid = 0;
776                         ma->ma_valid |= MA_FLAGS;
777                         ma->ma_attr_flags |= MDS_RECOV_OPEN;
778                         mdt_mfd_close(info, old_mfd);
779                         ma->ma_attr_flags &= ~MDS_RECOV_OPEN;
780                         ma->ma_valid &= ~MA_FLAGS;
781                 } else {
782                         spin_unlock(&med->med_open_lock);
783                         CDEBUG(D_HA, "orphan mfd not found, fid = "DFID", "
784                                "cookie = "LPX64"\n",
785                                PFID(mdt_object_fid(mfd->mfd_object)),
786                                info->mti_rr.rr_handle->cookie);
787                 }
788
789                 CDEBUG(D_HA, "Store old cookie "LPX64" in new mfd\n",
790                        info->mti_rr.rr_handle->cookie);
791
792                 mfd->mfd_old_handle.cookie = info->mti_rr.rr_handle->cookie;
793         }
794
795         repbody->handle.cookie = mfd->mfd_handle.h_cookie;
796
797         if (req->rq_export->exp_disconnected) {
798                 spin_lock(&med->med_open_lock);
799                 class_handle_unhash(&mfd->mfd_handle);
800                 cfs_list_del_init(&mfd->mfd_list);
801                 spin_unlock(&med->med_open_lock);
802                 mdt_mfd_close(info, mfd);
803         } else {
804                 spin_lock(&med->med_open_lock);
805                 cfs_list_add(&mfd->mfd_list, &med->med_open_head);
806                 spin_unlock(&med->med_open_lock);
807         }
808
809         mdt_empty_transno(info, rc);
810
811         RETURN(rc);
812
813 err_out:
814         if (flags & FMODE_WRITE)
815                 /* XXX We also need to close io epoch here.
816                  * See LU-1220 - green */
817                 mdt_write_put(o);
818         else if (flags & MDS_FMODE_EXEC)
819                 mdt_write_allow(o);
820
821         return rc;
822 }
823
824 int mdt_finish_open(struct mdt_thread_info *info,
825                     struct mdt_object *p, struct mdt_object *o,
826                     __u64 flags, int created, struct ldlm_reply *rep)
827 {
828         struct ptlrpc_request   *req = mdt_info_req(info);
829         struct obd_export       *exp = req->rq_export;
830         struct mdt_export_data  *med = &req->rq_export->exp_mdt_data;
831         struct md_attr          *ma  = &info->mti_attr;
832         struct lu_attr          *la  = &ma->ma_attr;
833         struct mdt_file_data    *mfd;
834         struct mdt_body         *repbody;
835         int                      rc = 0;
836         int                      isreg, isdir, islnk;
837         cfs_list_t              *t;
838         ENTRY;
839
840         LASSERT(ma->ma_valid & MA_INODE);
841
842         repbody = req_capsule_server_get(info->mti_pill, &RMF_MDT_BODY);
843
844         isreg = S_ISREG(la->la_mode);
845         isdir = S_ISDIR(la->la_mode);
846         islnk = S_ISLNK(la->la_mode);
847         mdt_pack_attr2body(info, repbody, la, mdt_object_fid(o));
848
849         /* LU-2275, simulate broken behaviour (esp. prevalent in
850          * pre-2.4 servers where a very strange reply is sent on error
851          * that looks like it was actually almost succesful and a failure at the
852          * same time */
853         if (OBD_FAIL_CHECK(OBD_FAIL_MDS_NEGATIVE_POSITIVE)) {
854                 mdt_set_disposition(info, rep, DISP_OPEN_OPEN |
855                                                DISP_LOOKUP_NEG |
856                                                DISP_LOOKUP_POS);
857
858                 if (flags & MDS_OPEN_LOCK)
859                         mdt_set_disposition(info, rep, DISP_OPEN_LOCK);
860
861                 RETURN(-ENOENT);
862         }
863
864         if (exp_connect_rmtclient(exp)) {
865                 void *buf = req_capsule_server_get(info->mti_pill, &RMF_ACL);
866
867                 rc = mdt_pack_remote_perm(info, o, buf);
868                 if (rc) {
869                         repbody->valid &= ~OBD_MD_FLRMTPERM;
870                         repbody->aclsize = 0;
871                 } else {
872                         repbody->valid |= OBD_MD_FLRMTPERM;
873                         repbody->aclsize = sizeof(struct mdt_remote_perm);
874                 }
875         }
876 #ifdef CONFIG_FS_POSIX_ACL
877         else if (exp_connect_flags(exp) & OBD_CONNECT_ACL) {
878                 const struct lu_env *env = info->mti_env;
879                 struct md_object *next = mdt_object_child(o);
880                 struct lu_buf *buf = &info->mti_buf;
881
882                 buf->lb_buf = req_capsule_server_get(info->mti_pill, &RMF_ACL);
883                 buf->lb_len = req_capsule_get_size(info->mti_pill, &RMF_ACL,
884                                                    RCL_SERVER);
885                 if (buf->lb_len > 0) {
886                         rc = mo_xattr_get(env, next, buf,
887                                           XATTR_NAME_ACL_ACCESS);
888                         if (rc < 0) {
889                                 if (rc == -ENODATA) {
890                                         repbody->aclsize = 0;
891                                         repbody->valid |= OBD_MD_FLACL;
892                                         rc = 0;
893                                 } else if (rc == -EOPNOTSUPP) {
894                                         rc = 0;
895                                 } else {
896                                         CERROR("got acl size: %d\n", rc);
897                                 }
898                         } else {
899                                 repbody->aclsize = rc;
900                                 repbody->valid |= OBD_MD_FLACL;
901                                 rc = 0;
902                         }
903                 }
904         }
905 #endif
906
907         if (info->mti_mdt->mdt_opts.mo_mds_capa &&
908             exp_connect_flags(exp) & OBD_CONNECT_MDS_CAPA) {
909                 struct lustre_capa *capa;
910
911                 capa = req_capsule_server_get(info->mti_pill, &RMF_CAPA1);
912                 LASSERT(capa);
913                 capa->lc_opc = CAPA_OPC_MDS_DEFAULT;
914                 rc = mo_capa_get(info->mti_env, mdt_object_child(o), capa, 0);
915                 if (rc)
916                         RETURN(rc);
917                 repbody->valid |= OBD_MD_FLMDSCAPA;
918         }
919
920         if (info->mti_mdt->mdt_opts.mo_oss_capa &&
921             exp_connect_flags(exp) & OBD_CONNECT_OSS_CAPA &&
922             S_ISREG(lu_object_attr(&o->mot_obj))) {
923                 struct lustre_capa *capa;
924
925                 capa = req_capsule_server_get(info->mti_pill, &RMF_CAPA2);
926                 LASSERT(capa);
927                 capa->lc_opc = CAPA_OPC_OSS_DEFAULT | capa_open_opc(flags);
928                 rc = mo_capa_get(info->mti_env, mdt_object_child(o), capa, 0);
929                 if (rc)
930                         RETURN(rc);
931                 repbody->valid |= OBD_MD_FLOSSCAPA;
932         }
933
934         /*
935          * If we are following a symlink, don't open; and do not return open
936          * handle for special nodes as client required.
937          */
938         if (islnk || (!isreg && !isdir &&
939             (exp_connect_flags(req->rq_export) & OBD_CONNECT_NODEVOH))) {
940                 lustre_msg_set_transno(req->rq_repmsg, 0);
941                 RETURN(0);
942         }
943
944         /*
945          * We need to return the existing object's fid back, so it is done here,
946          * after preparing the reply.
947          */
948         if (!created && (flags & MDS_OPEN_EXCL) && (flags & MDS_OPEN_CREAT))
949                 RETURN(-EEXIST);
950
951         /* This can't be done earlier, we need to return reply body */
952         if (isdir) {
953                 if (flags & (MDS_OPEN_CREAT | FMODE_WRITE)) {
954                         /* We are trying to create or write an existing dir. */
955                         RETURN(-EISDIR);
956                 }
957         } else if (flags & MDS_OPEN_DIRECTORY)
958                 RETURN(-ENOTDIR);
959
960         if (OBD_FAIL_CHECK_RESET(OBD_FAIL_MDS_OPEN_CREATE,
961                                  OBD_FAIL_LDLM_REPLY | OBD_FAIL_ONCE)) {
962                 RETURN(-EAGAIN);
963         }
964
965         mfd = NULL;
966         if (lustre_msg_get_flags(req->rq_reqmsg) & MSG_RESENT) {
967                 spin_lock(&med->med_open_lock);
968                 cfs_list_for_each(t, &med->med_open_head) {
969                         mfd = cfs_list_entry(t, struct mdt_file_data, mfd_list);
970                         if (mfd->mfd_xid == req->rq_xid)
971                                 break;
972                         mfd = NULL;
973                 }
974                 spin_unlock(&med->med_open_lock);
975
976                 if (mfd != NULL) {
977                         repbody->handle.cookie = mfd->mfd_handle.h_cookie;
978                         /*set repbody->ea_size for resent case*/
979                         if (ma->ma_valid & MA_LOV) {
980                                 LASSERT(ma->ma_lmm_size != 0);
981                                 repbody->eadatasize = ma->ma_lmm_size;
982                                 if (isdir)
983                                         repbody->valid |= OBD_MD_FLDIREA;
984                                 else
985                                         repbody->valid |= OBD_MD_FLEASIZE;
986                         }
987                         mdt_set_disposition(info, rep, DISP_OPEN_OPEN);
988                         RETURN(0);
989                 }
990         }
991
992         rc = mdt_mfd_open(info, p, o, flags, created, rep);
993         if (!rc)
994                 mdt_set_disposition(info, rep, DISP_OPEN_OPEN);
995
996         RETURN(rc);
997 }
998
999 extern void mdt_req_from_lcd(struct ptlrpc_request *req,
1000                              struct lsd_client_data *lcd);
1001
1002 void mdt_reconstruct_open(struct mdt_thread_info *info,
1003                           struct mdt_lock_handle *lhc)
1004 {
1005         const struct lu_env *env = info->mti_env;
1006         struct mdt_device       *mdt  = info->mti_mdt;
1007         struct req_capsule      *pill = info->mti_pill;
1008         struct ptlrpc_request   *req  = mdt_info_req(info);
1009         struct tg_export_data   *ted  = &req->rq_export->exp_target_data;
1010         struct lsd_client_data  *lcd  = ted->ted_lcd;
1011         struct md_attr          *ma   = &info->mti_attr;
1012         struct mdt_reint_record *rr   = &info->mti_rr;
1013         __u64                   flags = info->mti_spec.sp_cr_flags;
1014         struct ldlm_reply       *ldlm_rep;
1015         struct mdt_object       *parent;
1016         struct mdt_object       *child;
1017         struct mdt_body         *repbody;
1018         int                      rc;
1019         ENTRY;
1020
1021         LASSERT(pill->rc_fmt == &RQF_LDLM_INTENT_OPEN);
1022         ldlm_rep = req_capsule_server_get(pill, &RMF_DLM_REP);
1023         repbody = req_capsule_server_get(pill, &RMF_MDT_BODY);
1024
1025         ma->ma_lmm = req_capsule_server_get(pill, &RMF_MDT_MD);
1026         ma->ma_lmm_size = req_capsule_get_size(pill, &RMF_MDT_MD,
1027                                                RCL_SERVER);
1028         ma->ma_need = MA_INODE | MA_HSM;
1029         if (ma->ma_lmm_size > 0)
1030                 ma->ma_need |= MA_LOV;
1031
1032         ma->ma_valid = 0;
1033
1034         mdt_req_from_lcd(req, lcd);
1035         mdt_set_disposition(info, ldlm_rep, lcd->lcd_last_data);
1036
1037         CDEBUG(D_INODE, "This is reconstruct open: disp="LPX64", result=%d\n",
1038                ldlm_rep->lock_policy_res1, req->rq_status);
1039
1040         if (mdt_get_disposition(ldlm_rep, DISP_OPEN_CREATE) &&
1041             req->rq_status != 0)
1042                 /* We did not create successfully, return error to client. */
1043                 GOTO(out, rc = req->rq_status);
1044
1045         if (mdt_get_disposition(ldlm_rep, DISP_OPEN_CREATE)) {
1046                 struct obd_export *exp = req->rq_export;
1047                 /*
1048                  * We failed after creation, but we do not know in which step
1049                  * we failed. So try to check the child object.
1050                  */
1051                 parent = mdt_object_find(env, mdt, rr->rr_fid1);
1052                 if (IS_ERR(parent)) {
1053                         rc = PTR_ERR(parent);
1054                         LCONSOLE_WARN("Parent "DFID" lookup error %d."
1055                                       " Evicting client %s with export %s.\n",
1056                                       PFID(rr->rr_fid1), rc,
1057                                       obd_uuid2str(&exp->exp_client_uuid),
1058                                       obd_export_nid2str(exp));
1059                         mdt_export_evict(exp);
1060                         RETURN_EXIT;
1061                 }
1062
1063                 child = mdt_object_find(env, mdt, rr->rr_fid2);
1064                 if (IS_ERR(child)) {
1065                         rc = PTR_ERR(child);
1066                         LCONSOLE_WARN("cannot lookup child "DFID": rc = %d; "
1067                                       "evicting client %s with export %s\n",
1068                                       PFID(rr->rr_fid2), rc,
1069                                       obd_uuid2str(&exp->exp_client_uuid),
1070                                       obd_export_nid2str(exp));
1071                         mdt_object_put(env, parent);
1072                         mdt_export_evict(exp);
1073                         RETURN_EXIT;
1074                 }
1075
1076                 if (unlikely(mdt_object_remote(child))) {
1077                         /* the child object was created on remote server */
1078                         if (!mdt_is_dne_client(exp)) {
1079                                 /* Return -EIO for old client */
1080                                 mdt_object_put(env, parent);
1081                                 mdt_object_put(env, child);
1082                                 GOTO(out, rc = -EIO);
1083                         }
1084                         repbody->fid1 = *rr->rr_fid2;
1085                         repbody->valid |= (OBD_MD_FLID | OBD_MD_MDS);
1086                         rc = 0;
1087                 } else {
1088                         if (mdt_object_exists(child)) {
1089                                 mdt_set_capainfo(info, 1, rr->rr_fid2,
1090                                                  BYPASS_CAPA);
1091                                 rc = mdt_attr_get_complex(info, child, ma);
1092                                 if (rc == 0)
1093                                         rc = mdt_finish_open(info, parent,
1094                                                              child, flags,
1095                                                              1, ldlm_rep);
1096                         } else {
1097                                 /* the child does not exist, we should do
1098                                  * regular open */
1099                                 mdt_object_put(env, parent);
1100                                 mdt_object_put(env, child);
1101                                 GOTO(regular_open, 0);
1102                         }
1103                 }
1104                 mdt_object_put(env, parent);
1105                 mdt_object_put(env, child);
1106                 GOTO(out, rc);
1107         } else {
1108 regular_open:
1109                 /* We did not try to create, so we are a pure open */
1110                 rc = mdt_reint_open(info, lhc);
1111         }
1112
1113         EXIT;
1114 out:
1115         req->rq_status = rc;
1116         lustre_msg_set_status(req->rq_repmsg, req->rq_status);
1117         LASSERT(ergo(rc < 0, lustre_msg_get_transno(req->rq_repmsg) == 0));
1118 }
1119
1120 int mdt_open_by_fid(struct mdt_thread_info *info, struct ldlm_reply *rep)
1121 {
1122         __u64                    flags = info->mti_spec.sp_cr_flags;
1123         struct mdt_reint_record *rr = &info->mti_rr;
1124         struct md_attr          *ma = &info->mti_attr;
1125         struct mdt_object       *o;
1126         int                      rc;
1127         ENTRY;
1128
1129         o = mdt_object_find(info->mti_env, info->mti_mdt, rr->rr_fid2);
1130         if (IS_ERR(o))
1131                 RETURN(rc = PTR_ERR(o));
1132
1133         if (unlikely(mdt_object_remote(o))) {
1134                 /* the child object was created on remote server */
1135                 struct mdt_body *repbody;
1136
1137                 mdt_set_disposition(info, rep, (DISP_IT_EXECD |
1138                                                 DISP_LOOKUP_EXECD |
1139                                                 DISP_LOOKUP_POS));
1140                 repbody = req_capsule_server_get(info->mti_pill, &RMF_MDT_BODY);
1141                 repbody->fid1 = *rr->rr_fid2;
1142                 repbody->valid |= (OBD_MD_FLID | OBD_MD_MDS);
1143                 rc = 0;
1144         } else {
1145                 if (mdt_object_exists(o)) {
1146                         mdt_set_disposition(info, rep, (DISP_IT_EXECD |
1147                                                         DISP_LOOKUP_EXECD |
1148                                                         DISP_LOOKUP_POS));
1149
1150                         rc = mdt_attr_get_complex(info, o, ma);
1151                         if (rc == 0)
1152                                 rc = mdt_finish_open(info, NULL, o, flags, 0,
1153                                                      rep);
1154                 } else {
1155                         rc = -ENOENT;
1156                 }
1157         }
1158
1159         mdt_object_put(info->mti_env, o);
1160         RETURN(rc);
1161 }
1162
1163 /* lock object for open */
1164 static int mdt_object_open_lock(struct mdt_thread_info *info,
1165                                 struct mdt_object *obj,
1166                                 struct mdt_lock_handle *lhc,
1167                                 __u64 *ibits)
1168 {
1169         struct md_attr  *ma = &info->mti_attr;
1170         __u64            open_flags = info->mti_spec.sp_cr_flags;
1171         ldlm_mode_t      lm = LCK_CR;
1172         bool             acq_lease = !!(open_flags & MDS_OPEN_LEASE);
1173         bool             try_layout = false;
1174         bool             create_layout = false;
1175         int              rc = 0;
1176         ENTRY;
1177
1178         *ibits = 0;
1179         mdt_lock_handle_init(lhc);
1180
1181         if (req_is_replay(mdt_info_req(info)))
1182                 RETURN(0);
1183
1184         if (S_ISREG(lu_object_attr(&obj->mot_obj))) {
1185                 if (ma->ma_need & MA_LOV && !(ma->ma_valid & MA_LOV) &&
1186                     md_should_create(open_flags))
1187                         create_layout = true;
1188                 if (exp_connect_layout(info->mti_exp) && !create_layout &&
1189                     ma->ma_need & MA_LOV)
1190                         try_layout = true;
1191         }
1192
1193         if (acq_lease) {
1194                 /* lease open, acquire write mode of open sem */
1195                 down_write(&obj->mot_open_sem);
1196
1197                 /* Lease exists and ask for new lease */
1198                 if (atomic_read(&obj->mot_lease_count) > 0) {
1199                         /* only exclusive open is supported, so lease
1200                          * are conflicted to each other */
1201                         GOTO(out, rc = -EBUSY);
1202                 }
1203
1204                 /* Lease must be with open lock */
1205                 if (!(open_flags & MDS_OPEN_LOCK)) {
1206                         CERROR("Request lease for file:"DFID ", but open lock "
1207                                 "is missed, open_flags = "LPO64".\n",
1208                                 PFID(mdt_object_fid(obj)), open_flags);
1209                         GOTO(out, rc = -EPROTO);
1210                 }
1211
1212                 /* XXX: only exclusive open is supported. */
1213                 lm = LCK_EX;
1214                 *ibits = MDS_INODELOCK_OPEN;
1215
1216                 /* never grant LCK_EX layout lock to client */
1217                 try_layout = false;
1218         } else { /* normal open */
1219                 /* normal open holds read mode of open sem */
1220                 down_read(&obj->mot_open_sem);
1221
1222                 if (open_flags & MDS_OPEN_LOCK) {
1223                         if (open_flags & FMODE_WRITE)
1224                                 lm = LCK_CW;
1225                         else if (open_flags & MDS_FMODE_EXEC)
1226                                 lm = LCK_PR;
1227                         else
1228                                 lm = LCK_CR;
1229
1230                         *ibits = MDS_INODELOCK_LOOKUP | MDS_INODELOCK_OPEN;
1231                 } else if (atomic_read(&obj->mot_lease_count) > 0) {
1232                         if (open_flags & FMODE_WRITE)
1233                                 lm = LCK_CW;
1234                         else
1235                                 lm = LCK_CR;
1236
1237                         /* revoke lease */
1238                         *ibits = MDS_INODELOCK_OPEN;
1239                         try_layout = false;
1240
1241                         lhc = &info->mti_lh[MDT_LH_LOCAL];
1242                 }
1243                 CDEBUG(D_INODE, "normal open:"DFID" lease count: %d, lm: %d\n",
1244                         PFID(mdt_object_fid(obj)),
1245                         atomic_read(&obj->mot_open_count), lm);
1246         }
1247
1248         mdt_lock_reg_init(lhc, lm);
1249
1250         /* one problem to return layout lock on open is that it may result
1251          * in too many layout locks cached on the client side. */
1252         if (!OBD_FAIL_CHECK(OBD_FAIL_MDS_NO_LL_OPEN) && try_layout) {
1253                 /* return lookup lock to validate inode at the client side,
1254                  * this is pretty important otherwise mdt will return layout
1255                  * lock for each open.
1256                  * However this is a double-edged sword because changing
1257                  * permission will revoke huge # of LOOKUP locks. */
1258                 *ibits |= MDS_INODELOCK_LAYOUT | MDS_INODELOCK_LOOKUP;
1259                 if (!mdt_object_lock_try(info, obj, lhc, *ibits,
1260                                          MDT_CROSS_LOCK)) {
1261                         *ibits &= ~(MDS_INODELOCK_LAYOUT|MDS_INODELOCK_LOOKUP);
1262                         if (*ibits != 0)
1263                                 rc = mdt_object_lock(info, obj, lhc, *ibits,
1264                                                 MDT_CROSS_LOCK);
1265                 }
1266         } else if (*ibits != 0) {
1267                 rc = mdt_object_lock(info, obj, lhc, *ibits, MDT_CROSS_LOCK);
1268         }
1269
1270         CDEBUG(D_INODE, "Requested bits lock:"DFID ", ibits = "LPX64
1271                 ", open_flags = "LPO64", try_layout = %d, rc = %d\n",
1272                 PFID(mdt_object_fid(obj)), *ibits, open_flags, try_layout, rc);
1273
1274         /* will change layout, revoke layout locks by enqueuing EX lock. */
1275         if (rc == 0 && create_layout) {
1276                 struct mdt_lock_handle *ll = &info->mti_lh[MDT_LH_LAYOUT];
1277
1278                 CDEBUG(D_INODE, "Will create layout, get EX layout lock:"DFID
1279                         ", open_flags = "LPO64"\n",
1280                         PFID(mdt_object_fid(obj)), open_flags);
1281
1282                 /* We cannot enqueue another lock for the same resource we
1283                  * already have a lock for, due to mechanics of waiting list
1284                  * iterating in ldlm, see LU-3601.
1285                  * As such we'll drop the open lock we just got above here,
1286                  * it's ok not to have this open lock as it's main purpose is to
1287                  * flush unused cached client open handles. */
1288                 if (lustre_handle_is_used(&lhc->mlh_reg_lh))
1289                         mdt_object_unlock(info, obj, lhc, 1);
1290
1291                 LASSERT(!try_layout);
1292                 mdt_lock_handle_init(ll);
1293                 mdt_lock_reg_init(ll, LCK_EX);
1294                 rc = mdt_object_lock(info, obj, ll, MDS_INODELOCK_LAYOUT,
1295                                         MDT_LOCAL_LOCK);
1296
1297                 OBD_FAIL_TIMEOUT(OBD_FAIL_MDS_LL_BLOCK, 2);
1298         }
1299
1300         /* Check if there is any other open handles after acquiring
1301          * open lock. At this point, caching open handles have been revoked
1302          * by open lock.
1303          * XXX: Now only exclusive open is supported. Need to check the
1304          * type of open for generic lease support. */
1305         if (rc == 0 && acq_lease) {
1306                 struct ptlrpc_request *req = mdt_info_req(info);
1307                 struct mdt_export_data *med = &req->rq_export->exp_mdt_data;
1308                 struct mdt_file_data *mfd;
1309                 bool is_replay_or_resent;
1310                 int open_count = 0;
1311
1312                 /* For lease: application can open a file and then apply lease,
1313                  * @handle contains original open handle in that case.
1314                  * In recovery, open REQ will be replayed and the lease REQ may
1315                  * be resent that means the open handle is already stale, so we
1316                  * need to fix it up here by finding new handle. */
1317                 is_replay_or_resent = req_is_replay(req) ||
1318                         lustre_msg_get_flags(req->rq_reqmsg) & MSG_RESENT;
1319
1320                 /* if the request is _not_ a replay request, rr_handle
1321                  * may be used to hold an openhandle which is issuing the
1322                  * lease request, so that this openhandle doesn't count. */
1323                 mfd = mdt_handle2mfd(med, info->mti_rr.rr_handle,
1324                                      is_replay_or_resent);
1325                 if (mfd != NULL)
1326                         ++open_count;
1327
1328                 CDEBUG(D_INODE, "acq_lease "DFID": openers: %d, want: %d\n",
1329                         PFID(mdt_object_fid(obj)),
1330                         atomic_read(&obj->mot_open_count), open_count);
1331
1332                 if (atomic_read(&obj->mot_open_count) > open_count)
1333                         GOTO(out, rc = -EBUSY);
1334         }
1335         GOTO(out, rc);
1336
1337 out:
1338         RETURN(rc);
1339 }
1340
1341 static void mdt_object_open_unlock(struct mdt_thread_info *info,
1342                                    struct mdt_object *obj,
1343                                    struct mdt_lock_handle *lhc,
1344                                    __u64 ibits, int rc)
1345 {
1346         __u64 open_flags = info->mti_spec.sp_cr_flags;
1347         struct mdt_lock_handle *ll = &info->mti_lh[MDT_LH_LOCAL];
1348         ENTRY;
1349
1350         if (req_is_replay(mdt_info_req(info)))
1351                 RETURN_EXIT;
1352
1353         /* Release local lock - the lock put in MDT_LH_LOCAL will never
1354          * return to client side. */
1355         if (lustre_handle_is_used(&ll->mlh_reg_lh))
1356                 mdt_object_unlock(info, obj, ll, 1);
1357
1358         ll = &info->mti_lh[MDT_LH_LAYOUT];
1359         /* Release local layout lock, layout was created */
1360         if (lustre_handle_is_used(&ll->mlh_reg_lh)) {
1361                 LASSERT(!(ibits & MDS_INODELOCK_LAYOUT));
1362                 mdt_object_unlock(info, obj, ll, 1);
1363         }
1364
1365         if (open_flags & MDS_OPEN_LEASE)
1366                 up_write(&obj->mot_open_sem);
1367         else
1368                 up_read(&obj->mot_open_sem);
1369
1370         /* Cross-ref case, the lock should be returned to the client */
1371         if (ibits == 0 || rc == -EREMOTE)
1372                 RETURN_EXIT;
1373
1374         if (!(open_flags & MDS_OPEN_LOCK) && !(ibits & MDS_INODELOCK_LAYOUT)) {
1375                 /* for the open request, the lock will only return to client
1376                  * if open or layout lock is granted. */
1377                 rc = 1;
1378         }
1379
1380         if (rc != 0 || !lustre_handle_is_used(&lhc->mlh_reg_lh)) {
1381                 struct ldlm_reply       *ldlm_rep;
1382
1383                 ldlm_rep = req_capsule_server_get(info->mti_pill, &RMF_DLM_REP);
1384                 mdt_clear_disposition(info, ldlm_rep, DISP_OPEN_LOCK);
1385                 if (lustre_handle_is_used(&lhc->mlh_reg_lh))
1386                         mdt_object_unlock(info, obj, lhc, 1);
1387         }
1388         RETURN_EXIT;
1389 }
1390
1391 /**
1392  * Check release is permitted for the current HSM flags.
1393  */
1394 static bool mdt_hsm_release_allow(const struct md_attr *ma)
1395 {
1396         if (!(ma->ma_valid & MA_HSM))
1397                 return false;
1398
1399         if (ma->ma_hsm.mh_flags & (HS_DIRTY|HS_NORELEASE|HS_LOST))
1400                 return false;
1401
1402         if (!(ma->ma_hsm.mh_flags & HS_ARCHIVED))
1403                 return false;
1404
1405         return true;
1406 }
1407
1408 int mdt_open_by_fid_lock(struct mdt_thread_info *info, struct ldlm_reply *rep,
1409                          struct mdt_lock_handle *lhc)
1410 {
1411         const struct lu_env     *env   = info->mti_env;
1412         struct mdt_device       *mdt   = info->mti_mdt;
1413         __u64                    flags = info->mti_spec.sp_cr_flags;
1414         struct mdt_reint_record *rr    = &info->mti_rr;
1415         struct md_attr          *ma    = &info->mti_attr;
1416         struct mdt_object       *parent= NULL;
1417         struct mdt_object       *o;
1418         int                      rc;
1419         __u64                    ibits = 0;
1420         ENTRY;
1421
1422         if (md_should_create(flags) && !(flags & MDS_OPEN_HAS_EA)) {
1423                 if (!lu_fid_eq(rr->rr_fid1, rr->rr_fid2)) {
1424                         parent = mdt_object_find(env, mdt, rr->rr_fid1);
1425                         if (IS_ERR(parent)) {
1426                                 CDEBUG(D_INODE, "Fail to find parent "DFID
1427                                        " for anonymous created %ld, try to"
1428                                        " use server-side parent.\n",
1429                                        PFID(rr->rr_fid1), PTR_ERR(parent));
1430                                 parent = NULL;
1431                         }
1432                 }
1433                 if (parent == NULL)
1434                         ma->ma_need |= MA_PFID;
1435         }
1436
1437         o = mdt_object_find(env, mdt, rr->rr_fid2);
1438         if (IS_ERR(o))
1439                 RETURN(rc = PTR_ERR(o));
1440
1441         if (mdt_object_remote(o)) {
1442                 CDEBUG(D_INFO, "%s: "DFID" is on remote MDT.\n",
1443                        mdt_obd_name(info->mti_mdt),
1444                        PFID(rr->rr_fid2));
1445                 GOTO(out, rc = -EREMOTE);
1446         } else if (!mdt_object_exists(o)) {
1447                 mdt_set_disposition(info, rep,
1448                                     DISP_IT_EXECD |
1449                                     DISP_LOOKUP_EXECD |
1450                                     DISP_LOOKUP_NEG);
1451                 GOTO(out, rc = -ENOENT);
1452         }
1453
1454         mdt_set_disposition(info, rep, (DISP_IT_EXECD | DISP_LOOKUP_EXECD));
1455
1456         if (flags & MDS_OPEN_RELEASE)
1457                 ma->ma_need |= MA_HSM;
1458         rc = mdt_attr_get_complex(info, o, ma);
1459         if (rc)
1460                 GOTO(out, rc);
1461
1462         /* If a release request, check file flags are fine and ask for an
1463          * exclusive open access. */
1464         if (flags & MDS_OPEN_RELEASE && !mdt_hsm_release_allow(ma))
1465                 GOTO(out, rc = -EPERM);
1466
1467         rc = mdt_check_resent_lock(info, o, lhc);
1468         if (rc < 0) {
1469                 GOTO(out, rc);
1470         } else if (rc > 0) {
1471                 rc = mdt_object_open_lock(info, o, lhc, &ibits);
1472                 if (rc)
1473                         GOTO(out_unlock, rc);
1474         }
1475
1476         if (ma->ma_valid & MA_PFID) {
1477                 parent = mdt_object_find(env, mdt, &ma->ma_pfid);
1478                 if (IS_ERR(parent)) {
1479                         CDEBUG(D_INODE, "Fail to find parent "DFID
1480                                " for anonymous created %ld, try to"
1481                                " use system default.\n",
1482                                PFID(&ma->ma_pfid), PTR_ERR(parent));
1483                         parent = NULL;
1484                 }
1485         }
1486
1487         rc = mdt_finish_open(info, parent, o, flags, 0, rep);
1488         if (!rc) {
1489                 mdt_set_disposition(info, rep, DISP_LOOKUP_POS);
1490                 if (flags & MDS_OPEN_LOCK)
1491                         mdt_set_disposition(info, rep, DISP_OPEN_LOCK);
1492                 if (flags & MDS_OPEN_LEASE)
1493                         mdt_set_disposition(info, rep, DISP_OPEN_LEASE);
1494         }
1495         GOTO(out_unlock, rc);
1496
1497 out_unlock:
1498         mdt_object_open_unlock(info, o, lhc, ibits, rc);
1499 out:
1500         mdt_object_put(env, o);
1501         if (parent != NULL)
1502                 mdt_object_put(env, parent);
1503         return rc;
1504 }
1505
1506 int mdt_pin(struct mdt_thread_info* info)
1507 {
1508         ENTRY;
1509         RETURN(err_serious(-EOPNOTSUPP));
1510 }
1511
1512 /* Cross-ref request. Currently it can only be a pure open (w/o create) */
1513 static int mdt_cross_open(struct mdt_thread_info *info,
1514                           const struct lu_fid *parent_fid,
1515                           const struct lu_fid *fid,
1516                           struct ldlm_reply *rep, __u32 flags)
1517 {
1518         struct md_attr    *ma = &info->mti_attr;
1519         struct mdt_object *o;
1520         int                rc;
1521         ENTRY;
1522
1523         o = mdt_object_find(info->mti_env, info->mti_mdt, fid);
1524         if (IS_ERR(o))
1525                 RETURN(rc = PTR_ERR(o));
1526
1527         if (mdt_object_remote(o)) {
1528                 /* Something is wrong here, the object is on another MDS! */
1529                 CERROR("%s: "DFID" isn't on this server!: rc = %d\n",
1530                        mdt_obd_name(info->mti_mdt), PFID(fid), -EFAULT);
1531                 LU_OBJECT_DEBUG(D_WARNING, info->mti_env,
1532                                 &o->mot_obj,
1533                                 "Object isn't on this server! FLD error?\n");
1534                 rc = -EFAULT;
1535         } else {
1536                 if (mdt_object_exists(o)) {
1537                         /* Do permission check for cross-open. */
1538                         rc = mo_permission(info->mti_env, NULL,
1539                                            mdt_object_child(o),
1540                                            NULL, flags | MDS_OPEN_CROSS);
1541                         if (rc)
1542                                 goto out;
1543
1544                         mdt_set_capainfo(info, 0, fid, BYPASS_CAPA);
1545                         rc = mdt_attr_get_complex(info, o, ma);
1546                         if (rc != 0)
1547                                 GOTO(out, rc);
1548
1549                         /* Do not create lov object if the fid is opened
1550                          * under OBF */
1551                         if (S_ISREG(ma->ma_attr.la_mode) &&
1552                             !(ma->ma_valid & MA_LOV) && (flags & FMODE_WRITE) &&
1553                             fid_is_obf(parent_fid))
1554                                 GOTO(out, rc = -EPERM);
1555
1556                         rc = mdt_finish_open(info, NULL, o, flags, 0, rep);
1557                 } else {
1558                         /*
1559                          * Something is wrong here. lookup was positive but
1560                          * there is no object!
1561                          */
1562                         CERROR("%s: "DFID" doesn't exist!: rc = %d\n",
1563                               mdt_obd_name(info->mti_mdt), PFID(fid), -EFAULT);
1564                         rc = -EFAULT;
1565                 }
1566         }
1567 out:
1568         mdt_object_put(info->mti_env, o);
1569         RETURN(rc);
1570 }
1571
1572 int mdt_reint_open(struct mdt_thread_info *info, struct mdt_lock_handle *lhc)
1573 {
1574         struct mdt_device       *mdt = info->mti_mdt;
1575         struct ptlrpc_request   *req = mdt_info_req(info);
1576         struct mdt_object       *parent;
1577         struct mdt_object       *child;
1578         struct mdt_lock_handle  *lh;
1579         struct ldlm_reply       *ldlm_rep;
1580         struct mdt_body         *repbody;
1581         struct lu_fid           *child_fid = &info->mti_tmp_fid1;
1582         struct md_attr          *ma = &info->mti_attr;
1583         __u64                    create_flags = info->mti_spec.sp_cr_flags;
1584         __u64                    ibits = 0;
1585         struct mdt_reint_record *rr = &info->mti_rr;
1586         struct lu_name          *lname;
1587         int                      result, rc;
1588         int                      created = 0;
1589         __u32                    msg_flags;
1590         ENTRY;
1591
1592         OBD_FAIL_TIMEOUT_ORSET(OBD_FAIL_MDS_PAUSE_OPEN, OBD_FAIL_ONCE,
1593                                (obd_timeout + 1) / 4);
1594
1595         mdt_counter_incr(req, LPROC_MDT_OPEN);
1596         repbody = req_capsule_server_get(info->mti_pill, &RMF_MDT_BODY);
1597
1598         ma->ma_lmm = req_capsule_server_get(info->mti_pill, &RMF_MDT_MD);
1599         ma->ma_lmm_size = req_capsule_get_size(info->mti_pill, &RMF_MDT_MD,
1600                                                RCL_SERVER);
1601         ma->ma_need = MA_INODE;
1602         if (ma->ma_lmm_size > 0)
1603                 ma->ma_need |= MA_LOV;
1604
1605         ma->ma_valid = 0;
1606
1607         LASSERT(info->mti_pill->rc_fmt == &RQF_LDLM_INTENT_OPEN);
1608         ldlm_rep = req_capsule_server_get(info->mti_pill, &RMF_DLM_REP);
1609
1610         if (unlikely(create_flags & MDS_OPEN_JOIN_FILE)) {
1611                 CERROR("file join is not supported anymore.\n");
1612                 GOTO(out, result = err_serious(-EOPNOTSUPP));
1613         }
1614         msg_flags = lustre_msg_get_flags(req->rq_reqmsg);
1615
1616         if ((create_flags & (MDS_OPEN_HAS_EA | MDS_OPEN_HAS_OBJS)) &&
1617             info->mti_spec.u.sp_ea.eadata == NULL)
1618                 GOTO(out, result = err_serious(-EINVAL));
1619
1620         CDEBUG(D_INODE, "I am going to open "DFID"/(%s->"DFID") "
1621                "cr_flag="LPO64" mode=0%06o msg_flag=0x%x\n",
1622                PFID(rr->rr_fid1), rr->rr_name,
1623                PFID(rr->rr_fid2), create_flags,
1624                ma->ma_attr.la_mode, msg_flags);
1625         if (info->mti_cross_ref) {
1626                 /* This is cross-ref open */
1627                 mdt_set_disposition(info, ldlm_rep,
1628                             (DISP_IT_EXECD | DISP_LOOKUP_EXECD |
1629                              DISP_LOOKUP_POS));
1630                 result = mdt_cross_open(info, rr->rr_fid2, rr->rr_fid1,
1631                                         ldlm_rep, create_flags);
1632                 GOTO(out, result);
1633         } else if (req_is_replay(req) ||
1634             (req->rq_export->exp_libclient && create_flags & MDS_OPEN_HAS_EA)) {
1635                 /* This is a replay request or from liblustre with ea. */
1636                 result = mdt_open_by_fid(info, ldlm_rep);
1637
1638                 if (result != -ENOENT) {
1639                         if (req->rq_export->exp_libclient &&
1640                             create_flags & MDS_OPEN_HAS_EA)
1641                                 GOTO(out, result = 0);
1642                         GOTO(out, result);
1643                 }
1644                 /* We didn't find the correct object, so we need to re-create it
1645                  * via a regular replay. */
1646                 if (!(create_flags & MDS_OPEN_CREAT)) {
1647                         DEBUG_REQ(D_ERROR, req,
1648                                   "OPEN & CREAT not in open replay/by_fid.");
1649                         GOTO(out, result = -EFAULT);
1650                 }
1651                 CDEBUG(D_INFO, "No object(1), continue as regular open.\n");
1652         } else if ((rr->rr_namelen == 0 && create_flags & MDS_OPEN_LOCK) ||
1653                    (create_flags & MDS_OPEN_BY_FID)) {
1654                 result = mdt_open_by_fid_lock(info, ldlm_rep, lhc);
1655                 /* If result is 0 then open by FID has found the file
1656                  * and there is nothing left for us to do here.  More
1657                  * generally if it is anything other than -ENOENT or
1658                  * -EREMOTE then we return that now.  If -ENOENT and
1659                  * MDS_OPEN_CREAT is set then we must create the file
1660                  * below.  If -EREMOTE then we need to return a LOOKUP
1661                  * lock to the client, which we do below.  Hence this
1662                  * odd looking condition.  See LU-2523. */
1663                 if (!(result == -ENOENT && (create_flags & MDS_OPEN_CREAT)) &&
1664                     result != -EREMOTE)
1665                         GOTO(out, result);
1666
1667                 if (unlikely(rr->rr_namelen == 0))
1668                         GOTO(out, result = -EINVAL);
1669
1670                 CDEBUG(D_INFO, "No object(2), continue as regular open.\n");
1671         }
1672
1673         if (OBD_FAIL_CHECK(OBD_FAIL_MDS_OPEN_PACK))
1674                 GOTO(out, result = err_serious(-ENOMEM));
1675
1676         mdt_set_disposition(info, ldlm_rep,
1677                             (DISP_IT_EXECD | DISP_LOOKUP_EXECD));
1678
1679         lh = &info->mti_lh[MDT_LH_PARENT];
1680         mdt_lock_pdo_init(lh, (create_flags & MDS_OPEN_CREAT) ?
1681                           LCK_PW : LCK_PR, rr->rr_name, rr->rr_namelen);
1682
1683         parent = mdt_object_find_lock(info, rr->rr_fid1, lh,
1684                                       MDS_INODELOCK_UPDATE);
1685         if (IS_ERR(parent))
1686                 GOTO(out, result = PTR_ERR(parent));
1687
1688         /* get and check version of parent */
1689         result = mdt_version_get_check(info, parent, 0);
1690         if (result)
1691                 GOTO(out_parent, result);
1692
1693         fid_zero(child_fid);
1694
1695         lname = mdt_name(info->mti_env, (char *)rr->rr_name, rr->rr_namelen);
1696         result = mdo_lookup(info->mti_env, mdt_object_child(parent),
1697                             lname, child_fid, &info->mti_spec);
1698         LASSERTF(ergo(result == 0, fid_is_sane(child_fid)),
1699                  "looking for "DFID"/%s, result fid="DFID"\n",
1700                  PFID(mdt_object_fid(parent)), rr->rr_name, PFID(child_fid));
1701
1702         if (result != 0 && result != -ENOENT && result != -ESTALE)
1703                 GOTO(out_parent, result);
1704
1705         if (result == -ENOENT || result == -ESTALE) {
1706                 mdt_set_disposition(info, ldlm_rep, DISP_LOOKUP_NEG);
1707                 if (result == -ESTALE) {
1708                         /*
1709                          * -ESTALE means the parent is a dead(unlinked) dir, so
1710                          * it should return -ENOENT to in accordance with the
1711                          * original mds implementaion.
1712                          */
1713                         GOTO(out_parent, result = -ENOENT);
1714                 }
1715                 if (!(create_flags & MDS_OPEN_CREAT))
1716                         GOTO(out_parent, result);
1717                 if (exp_connect_flags(req->rq_export) & OBD_CONNECT_RDONLY)
1718                         GOTO(out_parent, result = -EROFS);
1719                 *child_fid = *info->mti_rr.rr_fid2;
1720                 LASSERTF(fid_is_sane(child_fid), "fid="DFID"\n",
1721                          PFID(child_fid));
1722                 /* In the function below, .hs_keycmp resolves to
1723                  * lu_obj_hop_keycmp() */
1724                 /* coverity[overrun-buffer-val] */
1725                 child = mdt_object_new(info->mti_env, mdt, child_fid);
1726         } else {
1727                 /*
1728                  * Check for O_EXCL is moved to the mdt_finish_open(), we need to
1729                  * return FID back in that case.
1730                  */
1731                 mdt_set_disposition(info, ldlm_rep, DISP_LOOKUP_POS);
1732                 child = mdt_object_find(info->mti_env, mdt, child_fid);
1733         }
1734         if (IS_ERR(child))
1735                 GOTO(out_parent, result = PTR_ERR(child));
1736
1737         /** check version of child  */
1738         rc = mdt_version_get_check(info, child, 1);
1739         if (rc)
1740                 GOTO(out_child, result = rc);
1741
1742         mdt_set_capainfo(info, 1, child_fid, BYPASS_CAPA);
1743         if (result == -ENOENT) {
1744                 /* Create under OBF and .lustre is not permitted */
1745                 if (fid_is_obf(rr->rr_fid1) || fid_is_dot_lustre(rr->rr_fid1))
1746                         GOTO(out_child, result = -EPERM);
1747
1748                 /* save versions in reply */
1749                 mdt_version_get_save(info, parent, 0);
1750                 mdt_version_get_save(info, child, 1);
1751
1752                 /* version of child will be changed */
1753                 info->mti_mos = child;
1754
1755                 /* Not found and with MDS_OPEN_CREAT: let's create it. */
1756                 mdt_set_disposition(info, ldlm_rep, DISP_OPEN_CREATE);
1757
1758                 /* Let lower layers know what is lock mode on directory. */
1759                 info->mti_spec.sp_cr_mode =
1760                         mdt_dlm_mode2mdl_mode(lh->mlh_pdo_mode);
1761
1762                 /*
1763                  * Do not perform lookup sanity check. We know that name does
1764                  * not exist.
1765                  */
1766                 info->mti_spec.sp_cr_lookup = 0;
1767                 info->mti_spec.sp_feat = &dt_directory_features;
1768
1769                 result = mdo_create(info->mti_env,
1770                                     mdt_object_child(parent),
1771                                     lname,
1772                                     mdt_object_child(child),
1773                                     &info->mti_spec,
1774                                     &info->mti_attr);
1775                 if (result == -ERESTART) {
1776                         mdt_clear_disposition(info, ldlm_rep, DISP_OPEN_CREATE);
1777                         GOTO(out_child, result);
1778                 } else {
1779
1780                         /* XXX: we should call this once, see few lines below */
1781                         if (result == 0)
1782                                 result = mdt_attr_get_complex(info, child, ma);
1783
1784                         if (result != 0)
1785                                 GOTO(out_child, result);
1786                 }
1787                 created = 1;
1788         } else {
1789                 /*
1790                  * The object is on remote node, return its FID for remote open.
1791                  */
1792                 if (mdt_object_remote(child)) {
1793                         /*
1794                          * Check if this lock already was sent to client and
1795                          * this is resent case. For resent case do not take lock
1796                          * again, use what is already granted.
1797                          */
1798                         LASSERT(lhc != NULL);
1799
1800                         rc = mdt_check_resent_lock(info, child, lhc);
1801                         if (rc < 0) {
1802                                 GOTO(out_child, result = rc);
1803                         } else if (rc > 0) {
1804                                 mdt_lock_handle_init(lhc);
1805                                 mdt_lock_reg_init(lhc, LCK_PR);
1806
1807                                 rc = mdt_object_lock(info, child, lhc,
1808                                                      MDS_INODELOCK_LOOKUP,
1809                                                      MDT_CROSS_LOCK);
1810                         }
1811                         repbody->fid1 = *mdt_object_fid(child);
1812                         repbody->valid |= (OBD_MD_FLID | OBD_MD_MDS);
1813                         if (rc != 0)
1814                                 result = rc;
1815                         else
1816                                 result = -EREMOTE;
1817                         GOTO(out_child, result);
1818                 } else {
1819                         if (mdt_object_exists(child)) {
1820                                 /* We have to get attr & LOV EA & HSM for this
1821                                  * object */
1822                                 ma->ma_need |= MA_HSM;
1823                                 result = mdt_attr_get_complex(info, child, ma);
1824                         } else {
1825                                 /*object non-exist!!! Likely an fs corruption*/
1826                                 CERROR("%s: name %s present, but fid " DFID
1827                                        " invalid\n",mdt_obd_name(info->mti_mdt),
1828                                        rr->rr_name, PFID(child_fid));
1829                                 GOTO(out_child, result = -EIO);
1830                         }
1831                 }
1832         }
1833
1834         rc = mdt_check_resent_lock(info, child, lhc);
1835         if (rc < 0) {
1836                 GOTO(out_child, result = rc);
1837         } else if (rc == 0) {
1838                 /* the open lock might already be gotten in
1839                  * ldlm_handle_enqueue() */
1840                 LASSERT(lustre_msg_get_flags(req->rq_reqmsg) & MSG_RESENT);
1841                 if (create_flags & MDS_OPEN_LOCK)
1842                         mdt_set_disposition(info, ldlm_rep, DISP_OPEN_LOCK);
1843         } else {
1844                 /* get openlock if this isn't replay and client requested it */
1845                 if (!req_is_replay(req)) {
1846                         rc = mdt_object_open_lock(info, child, lhc, &ibits);
1847                         if (rc != 0)
1848                                 GOTO(out_child_unlock, result = rc);
1849                         else if (create_flags & MDS_OPEN_LOCK)
1850                                 mdt_set_disposition(info, ldlm_rep,
1851                                                     DISP_OPEN_LOCK);
1852                 }
1853         }
1854         /* Try to open it now. */
1855         rc = mdt_finish_open(info, parent, child, create_flags,
1856                              created, ldlm_rep);
1857         if (rc) {
1858                 result = rc;
1859                 /* openlock will be released if mdt_finish_open failed */
1860                 mdt_clear_disposition(info, ldlm_rep, DISP_OPEN_LOCK);
1861
1862                 if (created && create_flags & MDS_OPEN_VOLATILE) {
1863                         CERROR("%s: cannot open volatile file "DFID", orphan "
1864                                "file will be left in PENDING directory until "
1865                                "next reboot, rc = %d\n", mdt_obd_name(mdt),
1866                                PFID(mdt_object_fid(child)), rc);
1867                         GOTO(out_child_unlock, result);
1868                 }
1869
1870                 if (created) {
1871                         ma->ma_need = 0;
1872                         ma->ma_valid = 0;
1873                         rc = mdo_unlink(info->mti_env,
1874                                         mdt_object_child(parent),
1875                                         mdt_object_child(child),
1876                                         lname,
1877                                         &info->mti_attr, 0);
1878                         if (rc != 0)
1879                                 CERROR("%s: "DFID" cleanup of open: rc = %d\n",
1880                                        mdt_obd_name(info->mti_mdt),
1881                                        PFID(mdt_object_fid(child)), rc);
1882                         mdt_clear_disposition(info, ldlm_rep, DISP_OPEN_CREATE);
1883                 }
1884         }
1885         EXIT;
1886 out_child_unlock:
1887         mdt_object_open_unlock(info, child, lhc, ibits, result);
1888 out_child:
1889         mdt_object_put(info->mti_env, child);
1890 out_parent:
1891         mdt_object_unlock_put(info, parent, lh, result || !created);
1892 out:
1893         if (result)
1894                 lustre_msg_set_transno(req->rq_repmsg, 0);
1895         return result;
1896 }
1897
1898 /**
1899  * Create an orphan object use local root.
1900  */
1901 static struct mdt_object *mdt_orphan_open(struct mdt_thread_info *info,
1902                                           struct mdt_device *mdt,
1903                                           const struct lu_fid *fid,
1904                                           struct md_attr *attr, fmode_t fmode)
1905 {
1906         const struct lu_env *env = info->mti_env;
1907         struct md_op_spec *spec = &info->mti_spec;
1908         struct lu_fid *local_root_fid = &info->mti_tmp_fid1;
1909         struct mdt_object *obj = NULL;
1910         struct mdt_object *local_root;
1911         static const char name[] = "i_am_nobody";
1912         struct lu_name *lname;
1913         struct lu_ucred *uc;
1914         cfs_cap_t uc_cap_save;
1915         int rc;
1916         ENTRY;
1917
1918         rc = dt_root_get(env, mdt->mdt_bottom, local_root_fid);
1919         if (rc != 0)
1920                 RETURN(ERR_PTR(rc));
1921
1922         local_root = mdt_object_find(env, mdt, local_root_fid);
1923         if (IS_ERR(local_root))
1924                 RETURN(local_root);
1925
1926         obj = mdt_object_new(env, mdt, fid);
1927         if (IS_ERR(obj))
1928                 GOTO(out, rc = PTR_ERR(obj));
1929
1930         spec->sp_cr_lookup = 0;
1931         spec->sp_feat = &dt_directory_features;
1932         spec->sp_cr_mode = MDL_MINMODE; /* no lock */
1933         spec->sp_cr_flags = MDS_OPEN_VOLATILE | fmode;
1934         if (attr->ma_valid & MA_LOV) {
1935                 spec->u.sp_ea.eadata = attr->ma_lmm;
1936                 spec->u.sp_ea.eadatalen = attr->ma_lmm_size;
1937                 spec->sp_cr_flags |= MDS_OPEN_HAS_EA;
1938         } else {
1939                 spec->sp_cr_flags |= MDS_OPEN_DELAY_CREATE;
1940         }
1941
1942         lname = mdt_name(env, (char *)name, sizeof(name) - 1);
1943
1944         uc = lu_ucred(env);
1945         uc_cap_save = uc->uc_cap;
1946         uc->uc_cap |= 1 << CFS_CAP_DAC_OVERRIDE;
1947         rc = mdo_create(env, mdt_object_child(local_root), lname,
1948                         mdt_object_child(obj), spec, attr);
1949         uc->uc_cap = uc_cap_save;
1950         if (rc < 0) {
1951                 CERROR("%s: cannot create volatile file "DFID": rc = %d\n",
1952                        mdt_obd_name(mdt), PFID(fid), rc);
1953                 GOTO(out, rc);
1954         }
1955
1956         rc = mo_open(env, mdt_object_child(obj), MDS_OPEN_CREATED);
1957         if (rc < 0)
1958                 CERROR("%s: cannot open volatile file "DFID", orphan "
1959                        "file will be left in PENDING directory until "
1960                        "next reboot, rc = %d\n", mdt_obd_name(mdt),
1961                        PFID(fid), rc);
1962         GOTO(out, rc);
1963
1964 out:
1965         if (rc < 0) {
1966                 if (!IS_ERR(obj))
1967                         mdt_object_put(env, obj);
1968                 obj = ERR_PTR(rc);
1969         }
1970         mdt_object_put(env, local_root);
1971         return obj;
1972 }
1973
1974 static int mdt_hsm_release(struct mdt_thread_info *info, struct mdt_object *o,
1975                            struct md_attr *ma)
1976 {
1977         struct mdt_lock_handle *lh = &info->mti_lh[MDT_LH_LAYOUT];
1978         struct close_data      *data;
1979         struct ldlm_lock       *lease;
1980         struct mdt_object      *orphan;
1981         struct md_attr         *orp_ma;
1982         struct lu_buf          *buf;
1983         bool                    lease_broken;
1984         int                     rc;
1985         int                     rc2;
1986         ENTRY;
1987
1988         if (exp_connect_flags(info->mti_exp) & OBD_CONNECT_RDONLY)
1989                 RETURN(-EROFS);
1990
1991         data = req_capsule_client_get(info->mti_pill, &RMF_CLOSE_DATA);
1992         if (data == NULL)
1993                 RETURN(-EPROTO);
1994
1995         lease = ldlm_handle2lock(&data->cd_handle);
1996         if (lease == NULL)
1997                 RETURN(-ESTALE);
1998
1999         /* try to hold open_sem so that nobody else can open the file */
2000         if (!down_write_trylock(&o->mot_open_sem)) {
2001                 ldlm_lock_cancel(lease);
2002                 GOTO(out_reprocess, rc = -EBUSY);
2003         }
2004
2005         /* Check if the lease open lease has already canceled */
2006         lock_res_and_lock(lease);
2007         lease_broken = ldlm_is_cancel(lease);
2008         unlock_res_and_lock(lease);
2009
2010         LDLM_DEBUG(lease, DFID " lease broken? %d\n",
2011                    PFID(mdt_object_fid(o)), lease_broken);
2012
2013         /* Cancel server side lease. Client side counterpart should
2014          * have been cancelled. It's okay to cancel it now as we've
2015          * held mot_open_sem. */
2016         ldlm_lock_cancel(lease);
2017
2018         if (lease_broken) /* don't perform release task */
2019                 GOTO(out_unlock, rc = -ESTALE);
2020
2021         if (fid_is_zero(&data->cd_fid) || !fid_is_sane(&data->cd_fid))
2022                 GOTO(out_unlock, rc = -EINVAL);
2023
2024         /* ma_need was set before but it seems fine to change it in order to
2025          * avoid modifying the one from RPC */
2026         ma->ma_need = MA_HSM;
2027         rc = mdt_attr_get_complex(info, o, ma);
2028         if (rc != 0)
2029                 GOTO(out_unlock, rc);
2030
2031         if (!mdt_hsm_release_allow(ma))
2032                 GOTO(out_unlock, rc = -EPERM);
2033
2034         /* already released? */
2035         if (ma->ma_hsm.mh_flags & HS_RELEASED)
2036                 GOTO(out_unlock, rc = 0);
2037
2038         /* Compare on-disk and packed data_version */
2039         if (data->cd_data_version != ma->ma_hsm.mh_arch_ver) {
2040                 CDEBUG(D_HSM, DFID" data_version mismatches: packed="LPU64
2041                        " and on-disk="LPU64"\n", PFID(mdt_object_fid(o)),
2042                        data->cd_data_version, ma->ma_hsm.mh_arch_ver);
2043                 GOTO(out_unlock, rc = -EPERM);
2044         }
2045
2046         ma->ma_valid = MA_INODE;
2047         ma->ma_attr.la_valid &= LA_ATIME | LA_MTIME | LA_CTIME | LA_SIZE;
2048         rc = mo_attr_set(info->mti_env, mdt_object_child(o), ma);
2049         if (rc < 0)
2050                 GOTO(out_unlock, rc);
2051
2052         ma->ma_need = MA_INODE | MA_LOV;
2053         rc = mdt_attr_get_complex(info, o, ma);
2054         if (rc < 0)
2055                 GOTO(out_unlock, rc);
2056
2057         if (!(ma->ma_valid & MA_LOV)) {
2058                 /* Even empty file are released */
2059                 memset(ma->ma_lmm, 0, sizeof(*ma->ma_lmm));
2060                 ma->ma_lmm->lmm_magic = cpu_to_le32(LOV_MAGIC_V1_DEF);
2061                 ma->ma_lmm->lmm_pattern = cpu_to_le32(LOV_PATTERN_RAID0);
2062                 ma->ma_lmm->lmm_stripe_size = cpu_to_le32(LOV_MIN_STRIPE_SIZE);
2063                 ma->ma_lmm_size = sizeof(*ma->ma_lmm);
2064         } else {
2065                 /* Magic must be LOV_MAGIC_Vx_DEF otherwise LOD will interpret
2066                  * ma_lmm as lov_user_md, then it will be confused by union of
2067                  * layout_gen and stripe_offset. */
2068                 if (le32_to_cpu(ma->ma_lmm->lmm_magic) == LOV_MAGIC_V1)
2069                         ma->ma_lmm->lmm_magic = cpu_to_le32(LOV_MAGIC_V1_DEF);
2070                 else if (le32_to_cpu(ma->ma_lmm->lmm_magic) == LOV_MAGIC_V3)
2071                         ma->ma_lmm->lmm_magic = cpu_to_le32(LOV_MAGIC_V3_DEF);
2072                 else
2073                         GOTO(out_unlock, rc = -EINVAL);
2074         }
2075
2076         /* Set file as released */
2077         ma->ma_lmm->lmm_pattern |= cpu_to_le32(LOV_PATTERN_F_RELEASED);
2078
2079         /* Hopefully it's not used in this call path */
2080         orp_ma = &info->mti_u.som.attr;
2081         orp_ma->ma_attr.la_mode = S_IFREG | S_IWUSR;
2082         orp_ma->ma_attr.la_uid = ma->ma_attr.la_uid;
2083         orp_ma->ma_attr.la_gid = ma->ma_attr.la_gid;
2084         orp_ma->ma_attr.la_valid = LA_MODE | LA_UID | LA_GID;
2085         orp_ma->ma_lmm = ma->ma_lmm;
2086         orp_ma->ma_lmm_size = ma->ma_lmm_size;
2087         orp_ma->ma_valid = MA_INODE | MA_LOV;
2088         orphan = mdt_orphan_open(info, info->mti_mdt, &data->cd_fid, orp_ma,
2089                                  FMODE_WRITE);
2090         if (IS_ERR(orphan)) {
2091                 CERROR("%s: cannot open orphan file "DFID": rc = %ld\n",
2092                        mdt_obd_name(info->mti_mdt), PFID(&data->cd_fid),
2093                        PTR_ERR(orphan));
2094                 GOTO(out_unlock, rc = PTR_ERR(orphan));
2095         }
2096
2097         /* Set up HSM attribute for orphan object */
2098         CLASSERT(sizeof(struct hsm_attrs) <= sizeof(info->mti_xattr_buf));
2099         buf = &info->mti_buf;
2100         buf->lb_buf = info->mti_xattr_buf;
2101         buf->lb_len = sizeof(struct hsm_attrs);
2102         ma->ma_hsm.mh_flags |= HS_RELEASED;
2103         lustre_hsm2buf(buf->lb_buf, &ma->ma_hsm);
2104         ma->ma_hsm.mh_flags &= ~HS_RELEASED;
2105
2106         mdt_lock_reg_init(lh, LCK_EX);
2107         rc = mdt_object_lock(info, o, lh, MDS_INODELOCK_LAYOUT |
2108                              MDS_INODELOCK_XATTR, MDT_LOCAL_LOCK);
2109         if (rc != 0)
2110                 GOTO(out_close, rc);
2111
2112         rc = mo_xattr_set(info->mti_env, mdt_object_child(orphan), buf,
2113                           XATTR_NAME_HSM, 0);
2114
2115         if (rc == 0)
2116                 /* Swap layout with orphan object */
2117                 rc = mo_swap_layouts(info->mti_env, mdt_object_child(o),
2118                                      mdt_object_child(orphan),
2119                                      SWAP_LAYOUTS_MDS_HSM);
2120
2121         /* Release exclusive LL */
2122         mdt_object_unlock(info, o, lh, 1);
2123
2124         EXIT;
2125
2126 out_close:
2127         /* Close orphan object anyway */
2128         rc2 = mo_close(info->mti_env, mdt_object_child(orphan), orp_ma,
2129                        FMODE_WRITE);
2130         if (rc2 < 0)
2131                 CERROR("%s: error closing volatile file "DFID": rc = %d\n",
2132                        mdt_obd_name(info->mti_mdt), PFID(&data->cd_fid), rc2);
2133         LU_OBJECT_DEBUG(D_HSM, info->mti_env, &orphan->mot_obj,
2134                         "object closed\n");
2135         mdt_object_put(info->mti_env, orphan);
2136
2137 out_unlock:
2138         up_write(&o->mot_open_sem);
2139
2140         if (rc == 0) { /* already released */
2141                 struct mdt_body *repbody;
2142                 repbody = req_capsule_server_get(info->mti_pill, &RMF_MDT_BODY);
2143                 LASSERT(repbody != NULL);
2144                 repbody->valid |= OBD_MD_FLRELEASED;
2145         }
2146
2147 out_reprocess:
2148         ldlm_reprocess_all(lease->l_resource);
2149         LDLM_LOCK_PUT(lease);
2150
2151         ma->ma_valid = 0;
2152         ma->ma_need = 0;
2153
2154         return rc;
2155 }
2156
2157 #define MFD_CLOSED(mode) (((mode) & ~(MDS_FMODE_EPOCH | MDS_FMODE_SOM | \
2158                                       MDS_FMODE_TRUNC)) == MDS_FMODE_CLOSED)
2159
2160 static int mdt_mfd_closed(struct mdt_file_data *mfd)
2161 {
2162         return ((mfd == NULL) || MFD_CLOSED(mfd->mfd_mode));
2163 }
2164
2165 int mdt_mfd_close(struct mdt_thread_info *info, struct mdt_file_data *mfd)
2166 {
2167         struct mdt_object *o = mfd->mfd_object;
2168         struct md_object *next = mdt_object_child(o);
2169         struct md_attr *ma = &info->mti_attr;
2170         int ret = MDT_IOEPOCH_CLOSED;
2171         int rc = 0;
2172         __u64 mode;
2173         ENTRY;
2174
2175         mode = mfd->mfd_mode;
2176
2177         if (ma->ma_attr_flags & MDS_HSM_RELEASE) {
2178                 rc = mdt_hsm_release(info, o, ma);
2179                 if (rc < 0) {
2180                         CDEBUG(D_HSM, "%s: File " DFID " release failed: %d\n",
2181                                 mdt_obd_name(info->mti_mdt),
2182                                 PFID(mdt_object_fid(o)), rc);
2183                         /* continue to close even error occurred. */
2184                 }
2185         }
2186
2187         if ((mode & FMODE_WRITE) || (mode & MDS_FMODE_TRUNC)) {
2188                 mdt_write_put(o);
2189                 ret = mdt_ioepoch_close(info, o);
2190         } else if (mode & MDS_FMODE_EXEC) {
2191                 mdt_write_allow(o);
2192         } else if (mode & MDS_FMODE_EPOCH) {
2193                 ret = mdt_ioepoch_close(info, o);
2194         } else if (mode & MDS_FMODE_SOM) {
2195                 ret = mdt_som_au_close(info, o);
2196         }
2197
2198         /* Update atime on close only. */
2199         if ((mode & MDS_FMODE_EXEC || mode & FMODE_READ || mode & FMODE_WRITE)
2200             && (ma->ma_valid & MA_INODE) && (ma->ma_attr.la_valid & LA_ATIME)) {
2201                 /* Set the atime only. */
2202                 ma->ma_valid = MA_INODE;
2203                 ma->ma_attr.la_valid = LA_ATIME;
2204                 rc = mo_attr_set(info->mti_env, next, ma);
2205         }
2206
2207         /* If file data is modified, add the dirty flag. */
2208         if (ma->ma_attr_flags & MDS_DATA_MODIFIED)
2209                 rc = mdt_add_dirty_flag(info, o, ma);
2210
2211         ma->ma_need |= MA_INODE;
2212         ma->ma_valid &= ~MA_INODE;
2213
2214         if (!MFD_CLOSED(mode))
2215                 rc = mo_close(info->mti_env, next, ma, mode);
2216
2217         if (ret == MDT_IOEPOCH_GETATTR || ret == MDT_IOEPOCH_OPENED) {
2218                 struct mdt_export_data *med;
2219
2220                 /* The IOepoch is still opened or SOM update is needed.
2221                  * Put mfd back into the list. */
2222                 LASSERT(mdt_conn_flags(info) & OBD_CONNECT_SOM);
2223                 mdt_mfd_set_mode(mfd, ret == MDT_IOEPOCH_OPENED ?
2224                                       MDS_FMODE_EPOCH : MDS_FMODE_SOM);
2225
2226                 LASSERT(mdt_info_req(info));
2227                 med = &mdt_info_req(info)->rq_export->exp_mdt_data;
2228                 spin_lock(&med->med_open_lock);
2229                 cfs_list_add(&mfd->mfd_list, &med->med_open_head);
2230                 class_handle_hash_back(&mfd->mfd_handle);
2231                 spin_unlock(&med->med_open_lock);
2232
2233                 if (ret == MDT_IOEPOCH_OPENED) {
2234                         ret = 0;
2235                 } else {
2236                         ret = -EAGAIN;
2237                         CDEBUG(D_INODE, "Size-on-MDS attribute update is "
2238                                "needed on "DFID"\n", PFID(mdt_object_fid(o)));
2239                 }
2240         } else {
2241                 /* adjust open and lease count */
2242                 if (mode & MDS_OPEN_LEASE) {
2243                         LASSERT(atomic_read(&o->mot_lease_count) > 0);
2244                         atomic_dec(&o->mot_lease_count);
2245                 }
2246                 LASSERT(atomic_read(&o->mot_open_count) > 0);
2247                 atomic_dec(&o->mot_open_count);
2248
2249                 mdt_mfd_free(mfd);
2250                 mdt_object_put(info->mti_env, o);
2251         }
2252
2253         RETURN(rc ? rc : ret);
2254 }
2255
2256 int mdt_close(struct mdt_thread_info *info)
2257 {
2258         struct mdt_export_data *med;
2259         struct mdt_file_data   *mfd;
2260         struct mdt_object      *o;
2261         struct md_attr         *ma = &info->mti_attr;
2262         struct mdt_body        *repbody = NULL;
2263         struct ptlrpc_request  *req = mdt_info_req(info);
2264         int rc, ret = 0;
2265         ENTRY;
2266
2267         mdt_counter_incr(req, LPROC_MDT_CLOSE);
2268         /* Close may come with the Size-on-MDS update. Unpack it. */
2269         rc = mdt_close_unpack(info);
2270         if (rc)
2271                 RETURN(err_serious(rc));
2272
2273         LASSERT(info->mti_ioepoch);
2274
2275         /* These fields are no longer used and are left for compatibility.
2276          * size is always zero */
2277         req_capsule_set_size(info->mti_pill, &RMF_MDT_MD, RCL_SERVER, 0);
2278         req_capsule_set_size(info->mti_pill, &RMF_LOGCOOKIES, RCL_SERVER, 0);
2279         rc = req_capsule_server_pack(info->mti_pill);
2280         if (mdt_check_resent(info, mdt_reconstruct_generic, NULL)) {
2281                 mdt_client_compatibility(info);
2282                 if (rc == 0)
2283                         mdt_fix_reply(info);
2284                 mdt_exit_ucred(info);
2285                 RETURN(lustre_msg_get_status(req->rq_repmsg));
2286         }
2287
2288         /* Continue to close handle even if we can not pack reply */
2289         if (rc == 0) {
2290                 repbody = req_capsule_server_get(info->mti_pill,
2291                                                  &RMF_MDT_BODY);
2292                 ma->ma_lmm = req_capsule_server_get(info->mti_pill,
2293                                                     &RMF_MDT_MD);
2294                 ma->ma_lmm_size = req_capsule_get_size(info->mti_pill,
2295                                                        &RMF_MDT_MD,
2296                                                        RCL_SERVER);
2297                 ma->ma_need = MA_INODE | MA_LOV | MA_COOKIE;
2298                 repbody->eadatasize = 0;
2299                 repbody->aclsize = 0;
2300         } else {
2301                 rc = err_serious(rc);
2302         }
2303
2304         med = &req->rq_export->exp_mdt_data;
2305         spin_lock(&med->med_open_lock);
2306         mfd = mdt_handle2mfd(med, &info->mti_ioepoch->handle,
2307                              req_is_replay(req));
2308         if (mdt_mfd_closed(mfd)) {
2309                 spin_unlock(&med->med_open_lock);
2310                 CDEBUG(D_INODE, "no handle for file close: fid = "DFID
2311                        ": cookie = "LPX64"\n", PFID(info->mti_rr.rr_fid1),
2312                        info->mti_ioepoch->handle.cookie);
2313                 /** not serious error since bug 3633 */
2314                 rc = -ESTALE;
2315         } else {
2316                 class_handle_unhash(&mfd->mfd_handle);
2317                 cfs_list_del_init(&mfd->mfd_list);
2318                 spin_unlock(&med->med_open_lock);
2319
2320                 /* Do not lose object before last unlink. */
2321                 o = mfd->mfd_object;
2322                 mdt_object_get(info->mti_env, o);
2323                 ret = mdt_mfd_close(info, mfd);
2324                 if (repbody != NULL)
2325                         rc = mdt_handle_last_unlink(info, o, ma);
2326                 mdt_empty_transno(info, rc);
2327                 mdt_object_put(info->mti_env, o);
2328         }
2329         if (repbody != NULL) {
2330                 mdt_client_compatibility(info);
2331                 rc = mdt_fix_reply(info);
2332         }
2333
2334         mdt_exit_ucred(info);
2335         if (OBD_FAIL_CHECK(OBD_FAIL_MDS_CLOSE_PACK))
2336                 RETURN(err_serious(-ENOMEM));
2337
2338         if (OBD_FAIL_CHECK_RESET(OBD_FAIL_MDS_CLOSE_NET_REP,
2339                                  OBD_FAIL_MDS_CLOSE_NET_REP))
2340                 info->mti_fail_id = OBD_FAIL_MDS_CLOSE_NET_REP;
2341         RETURN(rc ? rc : ret);
2342 }
2343
2344 /**
2345  * DONE_WRITING rpc handler.
2346  *
2347  * As mfd is not kept after replayed CLOSE (see mdt_ioepoch_close_on_replay()),
2348  * only those DONE_WRITING rpc will be replayed which really wrote smth on disk,
2349  * and got a trasid. Waiting for such DONE_WRITING is not reliable, so just
2350  * skip attributes and reconstruct the reply here.
2351  */
2352 int mdt_done_writing(struct mdt_thread_info *info)
2353 {
2354         struct ptlrpc_request   *req = mdt_info_req(info);
2355         struct mdt_body         *repbody = NULL;
2356         struct mdt_export_data  *med;
2357         struct mdt_file_data    *mfd;
2358         int rc;
2359         ENTRY;
2360
2361         rc = req_capsule_server_pack(info->mti_pill);
2362         if (rc)
2363                 RETURN(err_serious(rc));
2364
2365         repbody = req_capsule_server_get(info->mti_pill,
2366                                          &RMF_MDT_BODY);
2367         repbody->eadatasize = 0;
2368         repbody->aclsize = 0;
2369
2370         /* Done Writing may come with the Size-on-MDS update. Unpack it. */
2371         rc = mdt_close_unpack(info);
2372         if (rc)
2373                 RETURN(err_serious(rc));
2374
2375         if (mdt_check_resent(info, mdt_reconstruct_generic, NULL)) {
2376                 mdt_exit_ucred(info);
2377                 RETURN(lustre_msg_get_status(req->rq_repmsg));
2378         }
2379
2380         med = &info->mti_exp->exp_mdt_data;
2381         spin_lock(&med->med_open_lock);
2382         mfd = mdt_handle2mfd(med, &info->mti_ioepoch->handle,
2383                              req_is_replay(req));
2384         if (mfd == NULL) {
2385                 spin_unlock(&med->med_open_lock);
2386                 CDEBUG(D_INODE, "no handle for done write: fid = "DFID
2387                        ": cookie = "LPX64" ioepoch = "LPU64"\n",
2388                        PFID(info->mti_rr.rr_fid1),
2389                        info->mti_ioepoch->handle.cookie,
2390                        info->mti_ioepoch->ioepoch);
2391                 /* If this is a replay, reconstruct the transno. */
2392                 if (lustre_msg_get_flags(req->rq_reqmsg) & MSG_REPLAY) {
2393                         rc = info->mti_ioepoch->flags & MF_SOM_AU ?
2394                              -EAGAIN : 0;
2395                         mdt_empty_transno(info, rc);
2396                 } else
2397                         rc = -ESTALE;
2398                 GOTO(error_ucred, rc);
2399         }
2400
2401         LASSERT(mfd->mfd_mode == MDS_FMODE_EPOCH ||
2402                 mfd->mfd_mode == MDS_FMODE_TRUNC);
2403         class_handle_unhash(&mfd->mfd_handle);
2404         cfs_list_del_init(&mfd->mfd_list);
2405         spin_unlock(&med->med_open_lock);
2406
2407         /* Set EPOCH CLOSE flag if not set by client. */
2408         info->mti_ioepoch->flags |= MF_EPOCH_CLOSE;
2409         info->mti_attr.ma_valid = 0;
2410
2411         info->mti_attr.ma_lmm_size = info->mti_mdt->mdt_max_mdsize;
2412         OBD_ALLOC_LARGE(info->mti_attr.ma_lmm, info->mti_mdt->mdt_max_mdsize);
2413         if (info->mti_attr.ma_lmm == NULL)
2414                 GOTO(error_ucred, rc = -ENOMEM);
2415
2416         rc = mdt_mfd_close(info, mfd);
2417
2418         OBD_FREE_LARGE(info->mti_attr.ma_lmm, info->mti_mdt->mdt_max_mdsize);
2419         mdt_empty_transno(info, rc);
2420 error_ucred:
2421         mdt_exit_ucred(info);
2422         RETURN(rc);
2423 }