Whamcloud - gitweb
LU-6600 obdclass: race lustre_profile_list
[fs/lustre-release.git] / lustre / llite / llite_lib.c
1 /*
2  * GPL HEADER START
3  *
4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License version 2 only,
8  * as published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful, but
11  * WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13  * General Public License version 2 for more details (a copy is included
14  * in the LICENSE file that accompanied this code).
15  *
16  * You should have received a copy of the GNU General Public License
17  * version 2 along with this program; If not, see
18  * http://www.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) 2003, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2011, 2014, 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/llite/llite_lib.c
37  *
38  * Lustre Light Super operations
39  */
40
41 #define DEBUG_SUBSYSTEM S_LLITE
42
43 #include <linux/module.h>
44 #include <linux/statfs.h>
45 #include <linux/types.h>
46 #include <linux/version.h>
47 #include <linux/mm.h>
48 #include <linux/user_namespace.h>
49 #ifdef HAVE_UIDGID_HEADER
50 # include <linux/uidgid.h>
51 #endif
52
53 #include <lustre_ioctl.h>
54 #include <lustre_ha.h>
55 #include <lustre_dlm.h>
56 #include <lprocfs_status.h>
57 #include <lustre_disk.h>
58 #include <lustre_param.h>
59 #include <lustre_log.h>
60 #include <cl_object.h>
61 #include <obd_cksum.h>
62 #include "llite_internal.h"
63
64 struct kmem_cache *ll_file_data_slab;
65
66 #ifndef log2
67 #define log2(n) ffz(~(n))
68 #endif
69
70 static struct ll_sb_info *ll_init_sbi(void)
71 {
72         struct ll_sb_info *sbi = NULL;
73         unsigned long pages;
74         unsigned long lru_page_max;
75         struct sysinfo si;
76         class_uuid_t uuid;
77         int i;
78         ENTRY;
79
80         OBD_ALLOC_PTR(sbi);
81         if (sbi == NULL)
82                 RETURN(NULL);
83
84         spin_lock_init(&sbi->ll_lock);
85         mutex_init(&sbi->ll_lco.lco_lock);
86         spin_lock_init(&sbi->ll_pp_extent_lock);
87         spin_lock_init(&sbi->ll_process_lock);
88         sbi->ll_rw_stats_on = 0;
89
90         si_meminfo(&si);
91         pages = si.totalram - si.totalhigh;
92         lru_page_max = pages / 2;
93
94         /* initialize ll_cache data */
95         sbi->ll_cache = cl_cache_init(lru_page_max);
96         if (sbi->ll_cache == NULL) {
97                 OBD_FREE(sbi, sizeof(*sbi));
98                 RETURN(NULL);
99         }
100
101         sbi->ll_ra_info.ra_max_pages_per_file = min(pages / 32,
102                                            SBI_DEFAULT_READAHEAD_MAX);
103         sbi->ll_ra_info.ra_max_pages = sbi->ll_ra_info.ra_max_pages_per_file;
104         sbi->ll_ra_info.ra_max_read_ahead_whole_pages =
105                                            SBI_DEFAULT_READAHEAD_WHOLE_MAX;
106         INIT_LIST_HEAD(&sbi->ll_conn_chain);
107         INIT_LIST_HEAD(&sbi->ll_orphan_dentry_list);
108
109         ll_generate_random_uuid(uuid);
110         class_uuid_unparse(uuid, &sbi->ll_sb_uuid);
111         CDEBUG(D_CONFIG, "generated uuid: %s\n", sbi->ll_sb_uuid.uuid);
112
113         sbi->ll_flags |= LL_SBI_VERBOSE;
114 #ifdef ENABLE_CHECKSUM
115         sbi->ll_flags |= LL_SBI_CHECKSUM;
116 #endif
117
118 #ifdef HAVE_LRU_RESIZE_SUPPORT
119         sbi->ll_flags |= LL_SBI_LRU_RESIZE;
120 #endif
121
122         for (i = 0; i <= LL_PROCESS_HIST_MAX; i++) {
123                 spin_lock_init(&sbi->ll_rw_extents_info.pp_extents[i].
124                                pp_r_hist.oh_lock);
125                 spin_lock_init(&sbi->ll_rw_extents_info.pp_extents[i].
126                                pp_w_hist.oh_lock);
127         }
128
129         /* metadata statahead is enabled by default */
130         sbi->ll_sa_max = LL_SA_RPC_DEF;
131         atomic_set(&sbi->ll_sa_total, 0);
132         atomic_set(&sbi->ll_sa_wrong, 0);
133         atomic_set(&sbi->ll_sa_running, 0);
134         atomic_set(&sbi->ll_agl_total, 0);
135         sbi->ll_flags |= LL_SBI_AGL_ENABLED;
136
137         /* root squash */
138         sbi->ll_squash.rsi_uid = 0;
139         sbi->ll_squash.rsi_gid = 0;
140         INIT_LIST_HEAD(&sbi->ll_squash.rsi_nosquash_nids);
141         init_rwsem(&sbi->ll_squash.rsi_sem);
142
143         RETURN(sbi);
144 }
145
146 static void ll_free_sbi(struct super_block *sb)
147 {
148         struct ll_sb_info *sbi = ll_s2sbi(sb);
149         ENTRY;
150
151         if (sbi != NULL) {
152                 if (!list_empty(&sbi->ll_squash.rsi_nosquash_nids))
153                         cfs_free_nidlist(&sbi->ll_squash.rsi_nosquash_nids);
154                 if (sbi->ll_cache != NULL) {
155                         cl_cache_decref(sbi->ll_cache);
156                         sbi->ll_cache = NULL;
157                 }
158                 OBD_FREE(sbi, sizeof(*sbi));
159         }
160         EXIT;
161 }
162
163 static int client_common_fill_super(struct super_block *sb, char *md, char *dt,
164                                     struct vfsmount *mnt)
165 {
166         struct inode *root = NULL;
167         struct ll_sb_info *sbi = ll_s2sbi(sb);
168         struct obd_device *obd;
169         struct obd_statfs *osfs = NULL;
170         struct ptlrpc_request *request = NULL;
171         struct obd_connect_data *data = NULL;
172         struct obd_uuid *uuid;
173         struct md_op_data *op_data;
174         struct lustre_md lmd;
175         u64 valid;
176         int size, err, checksum;
177         ENTRY;
178
179         obd = class_name2obd(md);
180         if (!obd) {
181                 CERROR("MD %s: not setup or attached\n", md);
182                 RETURN(-EINVAL);
183         }
184
185         OBD_ALLOC_PTR(data);
186         if (data == NULL)
187                 RETURN(-ENOMEM);
188
189         OBD_ALLOC_PTR(osfs);
190         if (osfs == NULL) {
191                 OBD_FREE_PTR(data);
192                 RETURN(-ENOMEM);
193         }
194
195         /* indicate the features supported by this client */
196         data->ocd_connect_flags = OBD_CONNECT_IBITS    | OBD_CONNECT_NODEVOH  |
197                                   OBD_CONNECT_ATTRFID  |
198                                   OBD_CONNECT_VERSION  | OBD_CONNECT_BRW_SIZE |
199                                   OBD_CONNECT_MDS_CAPA | OBD_CONNECT_OSS_CAPA |
200                                   OBD_CONNECT_CANCELSET | OBD_CONNECT_FID     |
201                                   OBD_CONNECT_AT       | OBD_CONNECT_LOV_V3   |
202                                   OBD_CONNECT_RMT_CLIENT | OBD_CONNECT_VBR    |
203                                   OBD_CONNECT_FULL20   | OBD_CONNECT_64BITHASH|
204                                   OBD_CONNECT_EINPROGRESS |
205                                   OBD_CONNECT_JOBSTATS | OBD_CONNECT_LVB_TYPE |
206                                   OBD_CONNECT_LAYOUTLOCK | OBD_CONNECT_PINGLESS |
207                                   OBD_CONNECT_MAX_EASIZE |
208                                   OBD_CONNECT_FLOCK_DEAD |
209                                   OBD_CONNECT_DISP_STRIPE | OBD_CONNECT_LFSCK |
210                                   OBD_CONNECT_OPEN_BY_FID |
211                                   OBD_CONNECT_DIR_STRIPE |
212                                   OBD_CONNECT_BULK_MBITS;
213
214 #ifdef HAVE_LRU_RESIZE_SUPPORT
215         if (sbi->ll_flags & LL_SBI_LRU_RESIZE)
216                 data->ocd_connect_flags |= OBD_CONNECT_LRU_RESIZE;
217 #endif
218 #ifdef CONFIG_FS_POSIX_ACL
219         data->ocd_connect_flags |= OBD_CONNECT_ACL | OBD_CONNECT_UMASK;
220 #endif
221
222         if (OBD_FAIL_CHECK(OBD_FAIL_MDC_LIGHTWEIGHT))
223                 /* flag mdc connection as lightweight, only used for test
224                  * purpose, use with care */
225                 data->ocd_connect_flags |= OBD_CONNECT_LIGHTWEIGHT;
226
227         data->ocd_ibits_known = MDS_INODELOCK_FULL;
228         data->ocd_version = LUSTRE_VERSION_CODE;
229
230         if (sb->s_flags & MS_RDONLY)
231                 data->ocd_connect_flags |= OBD_CONNECT_RDONLY;
232         if (sbi->ll_flags & LL_SBI_USER_XATTR)
233                 data->ocd_connect_flags |= OBD_CONNECT_XATTR;
234
235 #ifdef HAVE_MS_FLOCK_LOCK
236         /* force vfs to use lustre handler for flock() calls - bug 10743 */
237         sb->s_flags |= MS_FLOCK_LOCK;
238 #endif
239 #ifdef MS_HAS_NEW_AOPS
240         sb->s_flags |= MS_HAS_NEW_AOPS;
241 #endif
242
243         if (sbi->ll_flags & LL_SBI_FLOCK)
244                 sbi->ll_fop = &ll_file_operations_flock;
245         else if (sbi->ll_flags & LL_SBI_LOCALFLOCK)
246                 sbi->ll_fop = &ll_file_operations;
247         else
248                 sbi->ll_fop = &ll_file_operations_noflock;
249
250         /* real client */
251         data->ocd_connect_flags |= OBD_CONNECT_REAL;
252         if (sbi->ll_flags & LL_SBI_RMT_CLIENT)
253                 data->ocd_connect_flags |= OBD_CONNECT_RMT_CLIENT_FORCE;
254
255         data->ocd_brw_size = MD_MAX_BRW_SIZE;
256
257         err = obd_connect(NULL, &sbi->ll_md_exp, obd, &sbi->ll_sb_uuid, data, NULL);
258         if (err == -EBUSY) {
259                 LCONSOLE_ERROR_MSG(0x14f, "An MDT (md %s) is performing "
260                                    "recovery, of which this client is not a "
261                                    "part. Please wait for recovery to complete,"
262                                    " abort, or time out.\n", md);
263                 GOTO(out, err);
264         } else if (err) {
265                 CERROR("cannot connect to %s: rc = %d\n", md, err);
266                 GOTO(out, err);
267         }
268
269         sbi->ll_md_exp->exp_connect_data = *data;
270
271         err = obd_fid_init(sbi->ll_md_exp->exp_obd, sbi->ll_md_exp,
272                            LUSTRE_SEQ_METADATA);
273         if (err) {
274                 CERROR("%s: Can't init metadata layer FID infrastructure, "
275                        "rc = %d\n", sbi->ll_md_exp->exp_obd->obd_name, err);
276                 GOTO(out_md, err);
277         }
278
279         /* For mount, we only need fs info from MDT0, and also in DNE, it
280          * can make sure the client can be mounted as long as MDT0 is
281          * avaible */
282         err = obd_statfs(NULL, sbi->ll_md_exp, osfs,
283                         cfs_time_shift_64(-OBD_STATFS_CACHE_SECONDS),
284                         OBD_STATFS_FOR_MDT0);
285         if (err)
286                 GOTO(out_md_fid, err);
287
288         /* This needs to be after statfs to ensure connect has finished.
289          * Note that "data" does NOT contain the valid connect reply.
290          * If connecting to a 1.8 server there will be no LMV device, so
291          * we can access the MDC export directly and exp_connect_flags will
292          * be non-zero, but if accessing an upgraded 2.1 server it will
293          * have the correct flags filled in.
294          * XXX: fill in the LMV exp_connect_flags from MDC(s). */
295         valid = exp_connect_flags(sbi->ll_md_exp) & CLIENT_CONNECT_MDT_REQD;
296         if (exp_connect_flags(sbi->ll_md_exp) != 0 &&
297             valid != CLIENT_CONNECT_MDT_REQD) {
298                 char *buf;
299
300                 OBD_ALLOC_WAIT(buf, PAGE_CACHE_SIZE);
301                 obd_connect_flags2str(buf, PAGE_CACHE_SIZE,
302                                       valid ^ CLIENT_CONNECT_MDT_REQD, ",");
303                 LCONSOLE_ERROR_MSG(0x170, "Server %s does not support "
304                                    "feature(s) needed for correct operation "
305                                    "of this client (%s). Please upgrade "
306                                    "server or downgrade client.\n",
307                                    sbi->ll_md_exp->exp_obd->obd_name, buf);
308                 OBD_FREE(buf, PAGE_CACHE_SIZE);
309                 GOTO(out_md_fid, err = -EPROTO);
310         }
311
312         size = sizeof(*data);
313         err = obd_get_info(NULL, sbi->ll_md_exp, sizeof(KEY_CONN_DATA),
314                            KEY_CONN_DATA,  &size, data);
315         if (err) {
316                 CERROR("%s: Get connect data failed: rc = %d\n",
317                        sbi->ll_md_exp->exp_obd->obd_name, err);
318                 GOTO(out_md_fid, err);
319         }
320
321         LASSERT(osfs->os_bsize);
322         sb->s_blocksize = osfs->os_bsize;
323         sb->s_blocksize_bits = log2(osfs->os_bsize);
324         sb->s_magic = LL_SUPER_MAGIC;
325         sb->s_maxbytes = MAX_LFS_FILESIZE;
326         sbi->ll_namelen = osfs->os_namelen;
327
328         if ((sbi->ll_flags & LL_SBI_USER_XATTR) &&
329             !(data->ocd_connect_flags & OBD_CONNECT_XATTR)) {
330                 LCONSOLE_INFO("Disabling user_xattr feature because "
331                               "it is not supported on the server\n");
332                 sbi->ll_flags &= ~LL_SBI_USER_XATTR;
333         }
334
335         if (data->ocd_connect_flags & OBD_CONNECT_ACL) {
336 #ifdef MS_POSIXACL
337                 sb->s_flags |= MS_POSIXACL;
338 #endif
339                 sbi->ll_flags |= LL_SBI_ACL;
340         } else {
341                 LCONSOLE_INFO("client wants to enable acl, but mdt not!\n");
342 #ifdef MS_POSIXACL
343                 sb->s_flags &= ~MS_POSIXACL;
344 #endif
345                 sbi->ll_flags &= ~LL_SBI_ACL;
346         }
347
348         if (data->ocd_connect_flags & OBD_CONNECT_RMT_CLIENT) {
349                 if (!(sbi->ll_flags & LL_SBI_RMT_CLIENT)) {
350                         sbi->ll_flags |= LL_SBI_RMT_CLIENT;
351                         LCONSOLE_INFO("client is set as remote by default.\n");
352                 }
353         } else {
354                 if (sbi->ll_flags & LL_SBI_RMT_CLIENT) {
355                         sbi->ll_flags &= ~LL_SBI_RMT_CLIENT;
356                         LCONSOLE_INFO("client claims to be remote, but server "
357                                       "rejected, forced to be local.\n");
358                 }
359         }
360
361         if (data->ocd_connect_flags & OBD_CONNECT_64BITHASH)
362                 sbi->ll_flags |= LL_SBI_64BIT_HASH;
363
364         if (data->ocd_connect_flags & OBD_CONNECT_BRW_SIZE)
365                 sbi->ll_md_brw_pages = data->ocd_brw_size >> PAGE_CACHE_SHIFT;
366         else
367                 sbi->ll_md_brw_pages = 1;
368
369         if (data->ocd_connect_flags & OBD_CONNECT_LAYOUTLOCK)
370                 sbi->ll_flags |= LL_SBI_LAYOUT_LOCK;
371
372         if (data->ocd_ibits_known & MDS_INODELOCK_XATTR) {
373                 if (!(data->ocd_connect_flags & OBD_CONNECT_MAX_EASIZE)) {
374                         LCONSOLE_INFO("%s: disabling xattr cache due to "
375                                       "unknown maximum xattr size.\n", dt);
376                 } else {
377                         sbi->ll_flags |= LL_SBI_XATTR_CACHE;
378                         sbi->ll_xattr_cache_enabled = 1;
379                 }
380         }
381
382         obd = class_name2obd(dt);
383         if (!obd) {
384                 CERROR("DT %s: not setup or attached\n", dt);
385                 GOTO(out_md_fid, err = -ENODEV);
386         }
387
388         data->ocd_connect_flags = OBD_CONNECT_GRANT     | OBD_CONNECT_VERSION  |
389                                   OBD_CONNECT_REQPORTAL | OBD_CONNECT_BRW_SIZE |
390                                   OBD_CONNECT_CANCELSET | OBD_CONNECT_FID      |
391                                   OBD_CONNECT_SRVLOCK   | OBD_CONNECT_TRUNCLOCK|
392                                   OBD_CONNECT_AT | OBD_CONNECT_RMT_CLIENT |
393                                   OBD_CONNECT_OSS_CAPA | OBD_CONNECT_VBR|
394                                   OBD_CONNECT_FULL20 | OBD_CONNECT_64BITHASH |
395                                   OBD_CONNECT_MAXBYTES |
396                                   OBD_CONNECT_EINPROGRESS |
397                                   OBD_CONNECT_JOBSTATS | OBD_CONNECT_LVB_TYPE |
398                                   OBD_CONNECT_LAYOUTLOCK |
399                                   OBD_CONNECT_PINGLESS | OBD_CONNECT_LFSCK |
400                                   OBD_CONNECT_BULK_MBITS;
401
402         if (!OBD_FAIL_CHECK(OBD_FAIL_OSC_CONNECT_CKSUM)) {
403                 /* OBD_CONNECT_CKSUM should always be set, even if checksums are
404                  * disabled by default, because it can still be enabled on the
405                  * fly via /proc. As a consequence, we still need to come to an
406                  * agreement on the supported algorithms at connect time */
407                 data->ocd_connect_flags |= OBD_CONNECT_CKSUM;
408
409                 if (OBD_FAIL_CHECK(OBD_FAIL_OSC_CKSUM_ADLER_ONLY))
410                         data->ocd_cksum_types = OBD_CKSUM_ADLER;
411                 else
412                         data->ocd_cksum_types = cksum_types_supported_client();
413         }
414
415 #ifdef HAVE_LRU_RESIZE_SUPPORT
416         data->ocd_connect_flags |= OBD_CONNECT_LRU_RESIZE;
417 #endif
418         if (sbi->ll_flags & LL_SBI_RMT_CLIENT)
419                 data->ocd_connect_flags |= OBD_CONNECT_RMT_CLIENT_FORCE;
420
421         CDEBUG(D_RPCTRACE, "ocd_connect_flags: "LPX64" ocd_version: %d "
422                "ocd_grant: %d\n", data->ocd_connect_flags,
423                data->ocd_version, data->ocd_grant);
424
425         obd->obd_upcall.onu_owner = &sbi->ll_lco;
426         obd->obd_upcall.onu_upcall = cl_ocd_update;
427
428         data->ocd_brw_size = DT_MAX_BRW_SIZE;
429
430         err = obd_connect(NULL, &sbi->ll_dt_exp, obd, &sbi->ll_sb_uuid, data,
431                           NULL);
432         if (err == -EBUSY) {
433                 LCONSOLE_ERROR_MSG(0x150, "An OST (dt %s) is performing "
434                                    "recovery, of which this client is not a "
435                                    "part.  Please wait for recovery to "
436                                    "complete, abort, or time out.\n", dt);
437                 GOTO(out_md, err);
438         } else if (err) {
439                 CERROR("%s: Cannot connect to %s: rc = %d\n",
440                        sbi->ll_dt_exp->exp_obd->obd_name, dt, err);
441                 GOTO(out_md, err);
442         }
443
444         sbi->ll_dt_exp->exp_connect_data = *data;
445
446         err = obd_fid_init(sbi->ll_dt_exp->exp_obd, sbi->ll_dt_exp,
447                            LUSTRE_SEQ_METADATA);
448         if (err) {
449                 CERROR("%s: Can't init data layer FID infrastructure, "
450                        "rc = %d\n", sbi->ll_dt_exp->exp_obd->obd_name, err);
451                 GOTO(out_dt, err);
452         }
453
454         mutex_lock(&sbi->ll_lco.lco_lock);
455         sbi->ll_lco.lco_flags = data->ocd_connect_flags;
456         sbi->ll_lco.lco_md_exp = sbi->ll_md_exp;
457         sbi->ll_lco.lco_dt_exp = sbi->ll_dt_exp;
458         mutex_unlock(&sbi->ll_lco.lco_lock);
459
460         fid_zero(&sbi->ll_root_fid);
461         err = md_getstatus(sbi->ll_md_exp, &sbi->ll_root_fid);
462         if (err) {
463                 CERROR("cannot mds_connect: rc = %d\n", err);
464                 GOTO(out_lock_cn_cb, err);
465         }
466         if (!fid_is_sane(&sbi->ll_root_fid)) {
467                 CERROR("%s: Invalid root fid "DFID" during mount\n",
468                        sbi->ll_md_exp->exp_obd->obd_name,
469                        PFID(&sbi->ll_root_fid));
470                 GOTO(out_lock_cn_cb, err = -EINVAL);
471         }
472         CDEBUG(D_SUPER, "rootfid "DFID"\n", PFID(&sbi->ll_root_fid));
473
474         sb->s_op = &lustre_super_operations;
475 #if THREAD_SIZE >= 8192 /*b=17630*/
476         sb->s_export_op = &lustre_export_operations;
477 #endif
478
479         /* make root inode
480          * XXX: move this to after cbd setup? */
481         valid = OBD_MD_FLGETATTR | OBD_MD_FLBLOCKS | OBD_MD_FLMODEASIZE;
482         if (sbi->ll_flags & LL_SBI_RMT_CLIENT)
483                 valid |= OBD_MD_FLRMTPERM;
484         else if (sbi->ll_flags & LL_SBI_ACL)
485                 valid |= OBD_MD_FLACL;
486
487         OBD_ALLOC_PTR(op_data);
488         if (op_data == NULL)
489                 GOTO(out_lock_cn_cb, err = -ENOMEM);
490
491         op_data->op_fid1 = sbi->ll_root_fid;
492         op_data->op_mode = 0;
493         op_data->op_valid = valid;
494
495         err = md_getattr(sbi->ll_md_exp, op_data, &request);
496
497         OBD_FREE_PTR(op_data);
498         if (err) {
499                 CERROR("%s: md_getattr failed for root: rc = %d\n",
500                        sbi->ll_md_exp->exp_obd->obd_name, err);
501                 GOTO(out_lock_cn_cb, err);
502         }
503
504         err = md_get_lustre_md(sbi->ll_md_exp, request, sbi->ll_dt_exp,
505                                sbi->ll_md_exp, &lmd);
506         if (err) {
507                 CERROR("failed to understand root inode md: rc = %d\n", err);
508                 ptlrpc_req_finished(request);
509                 GOTO(out_lock_cn_cb, err);
510         }
511
512         LASSERT(fid_is_sane(&sbi->ll_root_fid));
513         root = ll_iget(sb, cl_fid_build_ino(&sbi->ll_root_fid,
514                                             sbi->ll_flags & LL_SBI_32BIT_API),
515                        &lmd);
516         md_free_lustre_md(sbi->ll_md_exp, &lmd);
517         ptlrpc_req_finished(request);
518
519         if (IS_ERR(root)) {
520 #ifdef CONFIG_FS_POSIX_ACL
521                 if (lmd.posix_acl) {
522                         posix_acl_release(lmd.posix_acl);
523                         lmd.posix_acl = NULL;
524                 }
525 #endif
526                 err = IS_ERR(root) ? PTR_ERR(root) : -EBADF;
527                 root = NULL;
528                 CERROR("lustre_lite: bad iget4 for root\n");
529                 GOTO(out_root, err);
530         }
531
532 #ifdef CONFIG_FS_POSIX_ACL
533         if (sbi->ll_flags & LL_SBI_RMT_CLIENT) {
534                 rct_init(&sbi->ll_rct);
535                 et_init(&sbi->ll_et);
536         }
537 #endif
538
539         checksum = sbi->ll_flags & LL_SBI_CHECKSUM;
540         err = obd_set_info_async(NULL, sbi->ll_dt_exp, sizeof(KEY_CHECKSUM),
541                                  KEY_CHECKSUM, sizeof(checksum), &checksum,
542                                  NULL);
543         cl_sb_init(sb);
544
545         err = obd_set_info_async(NULL, sbi->ll_dt_exp, sizeof(KEY_CACHE_SET),
546                                  KEY_CACHE_SET, sizeof(*sbi->ll_cache),
547                                  sbi->ll_cache, NULL);
548
549         sb->s_root = d_make_root(root);
550         if (sb->s_root == NULL) {
551                 CERROR("%s: can't make root dentry\n",
552                         ll_get_fsname(sb, NULL, 0));
553                 GOTO(out_root, err = -ENOMEM);
554         }
555 #ifdef HAVE_DCACHE_LOCK
556         sb->s_root->d_op = &ll_d_ops;
557 #endif
558
559         sbi->ll_sdev_orig = sb->s_dev;
560
561         /* We set sb->s_dev equal on all lustre clients in order to support
562          * NFS export clustering.  NFSD requires that the FSID be the same
563          * on all clients. */
564         /* s_dev is also used in lt_compare() to compare two fs, but that is
565          * only a node-local comparison. */
566         uuid = obd_get_uuid(sbi->ll_md_exp);
567         if (uuid != NULL)
568                 sb->s_dev = get_uuid2int(uuid->uuid, strlen(uuid->uuid));
569
570         if (data != NULL)
571                 OBD_FREE_PTR(data);
572         if (osfs != NULL)
573                 OBD_FREE_PTR(osfs);
574         if (proc_lustre_fs_root != NULL) {
575                 err = lprocfs_register_mountpoint(proc_lustre_fs_root, sb,
576                                                   dt, md);
577                 if (err < 0) {
578                         CERROR("%s: could not register mount in lprocfs: "
579                                "rc = %d\n", ll_get_fsname(sb, NULL, 0), err);
580                         err = 0;
581                 }
582         }
583
584         RETURN(err);
585 out_root:
586         if (root)
587                 iput(root);
588 out_lock_cn_cb:
589         obd_fid_fini(sbi->ll_dt_exp->exp_obd);
590 out_dt:
591         obd_disconnect(sbi->ll_dt_exp);
592         sbi->ll_dt_exp = NULL;
593 out_md_fid:
594         obd_fid_fini(sbi->ll_md_exp->exp_obd);
595 out_md:
596         obd_disconnect(sbi->ll_md_exp);
597         sbi->ll_md_exp = NULL;
598 out:
599         if (data != NULL)
600                 OBD_FREE_PTR(data);
601         if (osfs != NULL)
602                 OBD_FREE_PTR(osfs);
603         return err;
604 }
605
606 int ll_get_max_mdsize(struct ll_sb_info *sbi, int *lmmsize)
607 {
608         int size, rc;
609
610         size = sizeof(*lmmsize);
611         rc = obd_get_info(NULL, sbi->ll_dt_exp, sizeof(KEY_MAX_EASIZE),
612                           KEY_MAX_EASIZE, &size, lmmsize);
613         if (rc != 0) {
614                 CERROR("%s: cannot get max LOV EA size: rc = %d\n",
615                        sbi->ll_dt_exp->exp_obd->obd_name, rc);
616                 RETURN(rc);
617         }
618
619         size = sizeof(int);
620         rc = obd_get_info(NULL, sbi->ll_md_exp, sizeof(KEY_MAX_EASIZE),
621                           KEY_MAX_EASIZE, &size, lmmsize);
622         if (rc)
623                 CERROR("Get max mdsize error rc %d\n", rc);
624
625         RETURN(rc);
626 }
627
628 /**
629  * Get the value of the default_easize parameter.
630  *
631  * \see client_obd::cl_default_mds_easize
632  *
633  * \param[in] sbi       superblock info for this filesystem
634  * \param[out] lmmsize  pointer to storage location for value
635  *
636  * \retval 0            on success
637  * \retval negative     negated errno on failure
638  */
639 int ll_get_default_mdsize(struct ll_sb_info *sbi, int *lmmsize)
640 {
641         int size, rc;
642
643         size = sizeof(int);
644         rc = obd_get_info(NULL, sbi->ll_md_exp, sizeof(KEY_DEFAULT_EASIZE),
645                          KEY_DEFAULT_EASIZE, &size, lmmsize);
646         if (rc)
647                 CERROR("Get default mdsize error rc %d\n", rc);
648
649         RETURN(rc);
650 }
651
652 /**
653  * Set the default_easize parameter to the given value.
654  *
655  * \see client_obd::cl_default_mds_easize
656  *
657  * \param[in] sbi       superblock info for this filesystem
658  * \param[in] lmmsize   the size to set
659  *
660  * \retval 0            on success
661  * \retval negative     negated errno on failure
662  */
663 int ll_set_default_mdsize(struct ll_sb_info *sbi, int lmmsize)
664 {
665         int rc;
666
667         if (lmmsize < sizeof(struct lov_mds_md) ||
668             lmmsize > OBD_MAX_DEFAULT_EA_SIZE)
669                 return -EINVAL;
670
671         rc = obd_set_info_async(NULL, sbi->ll_md_exp,
672                                 sizeof(KEY_DEFAULT_EASIZE), KEY_DEFAULT_EASIZE,
673                                 sizeof(int), &lmmsize, NULL);
674
675         RETURN(rc);
676 }
677
678 static void ll_dump_inode(struct inode *inode)
679 {
680         struct ll_d_hlist_node *tmp;
681         int dentry_count = 0;
682
683         LASSERT(inode != NULL);
684
685         ll_d_hlist_for_each(tmp, &inode->i_dentry)
686                 dentry_count++;
687
688         CERROR("%s: inode %p dump: dev=%s fid="DFID
689                " mode=%o count=%u, %d dentries\n",
690                ll_get_fsname(inode->i_sb, NULL, 0), inode,
691                ll_i2mdexp(inode)->exp_obd->obd_name, PFID(ll_inode2fid(inode)),
692                inode->i_mode, atomic_read(&inode->i_count), dentry_count);
693 }
694
695 void lustre_dump_dentry(struct dentry *dentry, int recur)
696 {
697         struct list_head *tmp;
698         int subdirs = 0;
699
700         LASSERT(dentry != NULL);
701
702         list_for_each(tmp, &dentry->d_subdirs)
703                 subdirs++;
704
705         CERROR("dentry %p dump: name=%.*s parent=%.*s (%p), inode=%p, count=%u,"
706                " flags=0x%x, fsdata=%p, %d subdirs\n", dentry,
707                dentry->d_name.len, dentry->d_name.name,
708                dentry->d_parent->d_name.len, dentry->d_parent->d_name.name,
709                dentry->d_parent, dentry->d_inode, ll_d_count(dentry),
710                dentry->d_flags, dentry->d_fsdata, subdirs);
711         if (dentry->d_inode != NULL)
712                 ll_dump_inode(dentry->d_inode);
713
714         if (recur == 0)
715                 return;
716
717         list_for_each(tmp, &dentry->d_subdirs) {
718                 struct dentry *d = list_entry(tmp, struct dentry, d_child);
719                 lustre_dump_dentry(d, recur - 1);
720         }
721 }
722
723 static void client_common_put_super(struct super_block *sb)
724 {
725         struct ll_sb_info *sbi = ll_s2sbi(sb);
726         ENTRY;
727
728 #ifdef CONFIG_FS_POSIX_ACL
729         if (sbi->ll_flags & LL_SBI_RMT_CLIENT) {
730                 et_fini(&sbi->ll_et);
731                 rct_fini(&sbi->ll_rct);
732         }
733 #endif
734
735         cl_sb_fini(sb);
736
737         list_del(&sbi->ll_conn_chain);
738
739         obd_fid_fini(sbi->ll_dt_exp->exp_obd);
740         obd_disconnect(sbi->ll_dt_exp);
741         sbi->ll_dt_exp = NULL;
742
743         lprocfs_unregister_mountpoint(sbi);
744
745         obd_fid_fini(sbi->ll_md_exp->exp_obd);
746         obd_disconnect(sbi->ll_md_exp);
747         sbi->ll_md_exp = NULL;
748
749         EXIT;
750 }
751
752 void ll_kill_super(struct super_block *sb)
753 {
754         struct ll_sb_info *sbi;
755         ENTRY;
756
757         /* not init sb ?*/
758         if (!(sb->s_flags & MS_ACTIVE))
759                 return;
760
761         sbi = ll_s2sbi(sb);
762         /* we need restore s_dev from changed for clustred NFS before put_super
763          * because new kernels have cached s_dev and change sb->s_dev in
764          * put_super not affected real removing devices */
765         if (sbi) {
766                 sb->s_dev = sbi->ll_sdev_orig;
767                 sbi->ll_umounting = 1;
768
769                 /* wait running statahead threads to quit */
770                 while (atomic_read(&sbi->ll_sa_running) > 0) {
771                         set_current_state(TASK_UNINTERRUPTIBLE);
772                         schedule_timeout(msecs_to_jiffies(MSEC_PER_SEC >> 3));
773                 }
774         }
775
776         EXIT;
777 }
778
779 static inline int ll_set_opt(const char *opt, char *data, int fl)
780 {
781         if (strncmp(opt, data, strlen(opt)) != 0)
782                 return(0);
783         else
784                 return(fl);
785 }
786
787 /* non-client-specific mount options are parsed in lmd_parse */
788 static int ll_options(char *options, int *flags)
789 {
790         int tmp;
791         char *s1 = options, *s2;
792         ENTRY;
793
794         if (!options)
795                 RETURN(0);
796
797         CDEBUG(D_CONFIG, "Parsing opts %s\n", options);
798
799         while (*s1) {
800                 CDEBUG(D_SUPER, "next opt=%s\n", s1);
801                 tmp = ll_set_opt("nolock", s1, LL_SBI_NOLCK);
802                 if (tmp) {
803                         *flags |= tmp;
804                         goto next;
805                 }
806                 tmp = ll_set_opt("flock", s1, LL_SBI_FLOCK);
807                 if (tmp) {
808                         *flags |= tmp;
809                         goto next;
810                 }
811                 tmp = ll_set_opt("localflock", s1, LL_SBI_LOCALFLOCK);
812                 if (tmp) {
813                         *flags |= tmp;
814                         goto next;
815                 }
816                 tmp = ll_set_opt("noflock", s1, LL_SBI_FLOCK|LL_SBI_LOCALFLOCK);
817                 if (tmp) {
818                         *flags &= ~tmp;
819                         goto next;
820                 }
821                 tmp = ll_set_opt("user_xattr", s1, LL_SBI_USER_XATTR);
822                 if (tmp) {
823                         *flags |= tmp;
824                         goto next;
825                 }
826                 tmp = ll_set_opt("nouser_xattr", s1, LL_SBI_USER_XATTR);
827                 if (tmp) {
828                         *flags &= ~tmp;
829                         goto next;
830                 }
831                 tmp = ll_set_opt("remote_client", s1, LL_SBI_RMT_CLIENT);
832                 if (tmp) {
833                         *flags |= tmp;
834                         goto next;
835                 }
836                 tmp = ll_set_opt("user_fid2path", s1, LL_SBI_USER_FID2PATH);
837                 if (tmp) {
838                         *flags |= tmp;
839                         goto next;
840                 }
841                 tmp = ll_set_opt("nouser_fid2path", s1, LL_SBI_USER_FID2PATH);
842                 if (tmp) {
843                         *flags &= ~tmp;
844                         goto next;
845                 }
846
847                 tmp = ll_set_opt("checksum", s1, LL_SBI_CHECKSUM);
848                 if (tmp) {
849                         *flags |= tmp;
850                         goto next;
851                 }
852                 tmp = ll_set_opt("nochecksum", s1, LL_SBI_CHECKSUM);
853                 if (tmp) {
854                         *flags &= ~tmp;
855                         goto next;
856                 }
857                 tmp = ll_set_opt("lruresize", s1, LL_SBI_LRU_RESIZE);
858                 if (tmp) {
859                         *flags |= tmp;
860                         goto next;
861                 }
862                 tmp = ll_set_opt("nolruresize", s1, LL_SBI_LRU_RESIZE);
863                 if (tmp) {
864                         *flags &= ~tmp;
865                         goto next;
866                 }
867                 tmp = ll_set_opt("lazystatfs", s1, LL_SBI_LAZYSTATFS);
868                 if (tmp) {
869                         *flags |= tmp;
870                         goto next;
871                 }
872                 tmp = ll_set_opt("nolazystatfs", s1, LL_SBI_LAZYSTATFS);
873                 if (tmp) {
874                         *flags &= ~tmp;
875                         goto next;
876                 }
877                 tmp = ll_set_opt("32bitapi", s1, LL_SBI_32BIT_API);
878                 if (tmp) {
879                         *flags |= tmp;
880                         goto next;
881                 }
882                 tmp = ll_set_opt("verbose", s1, LL_SBI_VERBOSE);
883                 if (tmp) {
884                         *flags |= tmp;
885                         goto next;
886                 }
887                 tmp = ll_set_opt("noverbose", s1, LL_SBI_VERBOSE);
888                 if (tmp) {
889                         *flags &= ~tmp;
890                         goto next;
891                 }
892                 LCONSOLE_ERROR_MSG(0x152, "Unknown option '%s', won't mount.\n",
893                                    s1);
894                 RETURN(-EINVAL);
895
896 next:
897                 /* Find next opt */
898                 s2 = strchr(s1, ',');
899                 if (s2 == NULL)
900                         break;
901                 s1 = s2 + 1;
902         }
903         RETURN(0);
904 }
905
906 void ll_lli_init(struct ll_inode_info *lli)
907 {
908         lli->lli_inode_magic = LLI_INODE_MAGIC;
909         lli->lli_flags = 0;
910         spin_lock_init(&lli->lli_lock);
911         lli->lli_posix_acl = NULL;
912         lli->lli_remote_perms = NULL;
913         mutex_init(&lli->lli_rmtperm_mutex);
914         /* Do not set lli_fid, it has been initialized already. */
915         fid_zero(&lli->lli_pfid);
916         atomic_set(&lli->lli_open_count, 0);
917         lli->lli_rmtperm_time = 0;
918         lli->lli_mds_read_och = NULL;
919         lli->lli_mds_write_och = NULL;
920         lli->lli_mds_exec_och = NULL;
921         lli->lli_open_fd_read_count = 0;
922         lli->lli_open_fd_write_count = 0;
923         lli->lli_open_fd_exec_count = 0;
924         mutex_init(&lli->lli_och_mutex);
925         spin_lock_init(&lli->lli_agl_lock);
926         spin_lock_init(&lli->lli_layout_lock);
927         ll_layout_version_set(lli, CL_LAYOUT_GEN_NONE);
928         lli->lli_clob = NULL;
929
930         init_rwsem(&lli->lli_xattrs_list_rwsem);
931         mutex_init(&lli->lli_xattrs_enq_lock);
932
933         LASSERT(lli->lli_vfs_inode.i_mode != 0);
934         if (S_ISDIR(lli->lli_vfs_inode.i_mode)) {
935                 mutex_init(&lli->lli_readdir_mutex);
936                 lli->lli_opendir_key = NULL;
937                 lli->lli_sai = NULL;
938                 spin_lock_init(&lli->lli_sa_lock);
939                 lli->lli_opendir_pid = 0;
940                 lli->lli_sa_enabled = 0;
941                 lli->lli_def_stripe_offset = -1;
942         } else {
943                 mutex_init(&lli->lli_size_mutex);
944                 lli->lli_symlink_name = NULL;
945                 init_rwsem(&lli->lli_trunc_sem);
946                 range_lock_tree_init(&lli->lli_write_tree);
947                 init_rwsem(&lli->lli_glimpse_sem);
948                 lli->lli_glimpse_time = 0;
949                 INIT_LIST_HEAD(&lli->lli_agl_list);
950                 lli->lli_agl_index = 0;
951                 lli->lli_async_rc = 0;
952         }
953         mutex_init(&lli->lli_layout_mutex);
954 }
955
956 static inline int ll_bdi_register(struct backing_dev_info *bdi)
957 {
958         static atomic_t ll_bdi_num = ATOMIC_INIT(0);
959
960         bdi->name = "lustre";
961         return bdi_register(bdi, NULL, "lustre-%d",
962                             atomic_inc_return(&ll_bdi_num));
963 }
964
965 int ll_fill_super(struct super_block *sb, struct vfsmount *mnt)
966 {
967         struct lustre_profile *lprof = NULL;
968         struct lustre_sb_info *lsi = s2lsi(sb);
969         struct ll_sb_info *sbi;
970         char  *dt = NULL, *md = NULL;
971         char  *profilenm = get_profile_name(sb);
972         struct config_llog_instance *cfg;
973         /* %p for void* in printf needs 16+2 characters: 0xffffffffffffffff */
974         const int instlen = sizeof(cfg->cfg_instance) * 2 + 2;
975         int    err;
976         ENTRY;
977
978         CDEBUG(D_VFSTRACE, "VFS Op: sb %p\n", sb);
979
980         OBD_ALLOC_PTR(cfg);
981         if (cfg == NULL)
982                 RETURN(-ENOMEM);
983
984         try_module_get(THIS_MODULE);
985
986         /* client additional sb info */
987         lsi->lsi_llsbi = sbi = ll_init_sbi();
988         if (!sbi) {
989                 module_put(THIS_MODULE);
990                 OBD_FREE_PTR(cfg);
991                 RETURN(-ENOMEM);
992         }
993
994         err = ll_options(lsi->lsi_lmd->lmd_opts, &sbi->ll_flags);
995         if (err)
996                 GOTO(out_free, err);
997
998         err = bdi_init(&lsi->lsi_bdi);
999         if (err)
1000                 GOTO(out_free, err);
1001         lsi->lsi_flags |= LSI_BDI_INITIALIZED;
1002 #ifdef HAVE_BDI_CAP_MAP_COPY
1003         lsi->lsi_bdi.capabilities = BDI_CAP_MAP_COPY;
1004 #else
1005         lsi->lsi_bdi.capabilities = 0;
1006 #endif
1007         err = ll_bdi_register(&lsi->lsi_bdi);
1008         if (err)
1009                 GOTO(out_free, err);
1010
1011         sb->s_bdi = &lsi->lsi_bdi;
1012 #ifndef HAVE_DCACHE_LOCK
1013         /* kernel >= 2.6.38 store dentry operations in sb->s_d_op. */
1014         sb->s_d_op = &ll_d_ops;
1015 #endif
1016
1017         /* Generate a string unique to this super, in case some joker tries
1018            to mount the same fs at two mount points.
1019            Use the address of the super itself.*/
1020         cfg->cfg_instance = sb;
1021         cfg->cfg_uuid = lsi->lsi_llsbi->ll_sb_uuid;
1022         cfg->cfg_callback = class_config_llog_handler;
1023         /* set up client obds */
1024         err = lustre_process_log(sb, profilenm, cfg);
1025         if (err < 0)
1026                 GOTO(out_free, err);
1027
1028         /* Profile set with LCFG_MOUNTOPT so we can find our mdc and osc obds */
1029         lprof = class_get_profile(profilenm);
1030         if (lprof == NULL) {
1031                 LCONSOLE_ERROR_MSG(0x156, "The client profile '%s' could not be"
1032                                    " read from the MGS.  Does that filesystem "
1033                                    "exist?\n", profilenm);
1034                 GOTO(out_free, err = -EINVAL);
1035         }
1036         CDEBUG(D_CONFIG, "Found profile %s: mdc=%s osc=%s\n", profilenm,
1037                lprof->lp_md, lprof->lp_dt);
1038
1039         OBD_ALLOC(dt, strlen(lprof->lp_dt) + instlen + 2);
1040         if (!dt)
1041                 GOTO(out_free, err = -ENOMEM);
1042         sprintf(dt, "%s-%p", lprof->lp_dt, cfg->cfg_instance);
1043
1044         OBD_ALLOC(md, strlen(lprof->lp_md) + instlen + 2);
1045         if (!md)
1046                 GOTO(out_free, err = -ENOMEM);
1047         sprintf(md, "%s-%p", lprof->lp_md, cfg->cfg_instance);
1048
1049         /* connections, registrations, sb setup */
1050         err = client_common_fill_super(sb, md, dt, mnt);
1051         if (err < 0)
1052                 GOTO(out_free, err);
1053
1054         sbi->ll_client_common_fill_super_succeeded = 1;
1055
1056 out_free:
1057         if (md)
1058                 OBD_FREE(md, strlen(lprof->lp_md) + instlen + 2);
1059         if (dt)
1060                 OBD_FREE(dt, strlen(lprof->lp_dt) + instlen + 2);
1061         if (lprof != NULL)
1062                 class_put_profile(lprof);
1063         if (err)
1064                 ll_put_super(sb);
1065         else if (sbi->ll_flags & LL_SBI_VERBOSE)
1066                 LCONSOLE_WARN("Mounted %s\n", profilenm);
1067
1068         OBD_FREE_PTR(cfg);
1069         RETURN(err);
1070 } /* ll_fill_super */
1071
1072 void ll_put_super(struct super_block *sb)
1073 {
1074         struct config_llog_instance cfg, params_cfg;
1075         struct obd_device *obd;
1076         struct lustre_sb_info *lsi = s2lsi(sb);
1077         struct ll_sb_info *sbi = ll_s2sbi(sb);
1078         char *profilenm = get_profile_name(sb);
1079         long ccc_count;
1080         int next, force = 1, rc = 0;
1081         ENTRY;
1082
1083         CDEBUG(D_VFSTRACE, "VFS Op: sb %p - %s\n", sb, profilenm);
1084
1085         cfg.cfg_instance = sb;
1086         lustre_end_log(sb, profilenm, &cfg);
1087
1088         params_cfg.cfg_instance = sb;
1089         lustre_end_log(sb, PARAMS_FILENAME, &params_cfg);
1090
1091         if (sbi->ll_md_exp) {
1092                 obd = class_exp2obd(sbi->ll_md_exp);
1093                 if (obd)
1094                         force = obd->obd_force;
1095         }
1096
1097         /* Wait for unstable pages to be committed to stable storage */
1098         if (force == 0) {
1099                 struct l_wait_info lwi = LWI_INTR(LWI_ON_SIGNAL_NOOP, NULL);
1100                 rc = l_wait_event(sbi->ll_cache->ccc_unstable_waitq,
1101                         atomic_long_read(&sbi->ll_cache->ccc_unstable_nr) == 0,
1102                         &lwi);
1103         }
1104
1105         ccc_count = atomic_long_read(&sbi->ll_cache->ccc_unstable_nr);
1106         if (force == 0 && rc != -EINTR)
1107                 LASSERTF(ccc_count == 0, "count: %li\n", ccc_count);
1108
1109
1110         /* We need to set force before the lov_disconnect in
1111            lustre_common_put_super, since l_d cleans up osc's as well. */
1112         if (force) {
1113                 next = 0;
1114                 while ((obd = class_devices_in_group(&sbi->ll_sb_uuid,
1115                                                      &next)) != NULL) {
1116                         obd->obd_force = force;
1117                 }
1118         }
1119
1120         if (sbi->ll_client_common_fill_super_succeeded) {
1121                 /* Only if client_common_fill_super succeeded */
1122                 client_common_put_super(sb);
1123         }
1124
1125         next = 0;
1126         while ((obd = class_devices_in_group(&sbi->ll_sb_uuid, &next)) !=NULL) {
1127                 class_manual_cleanup(obd);
1128         }
1129
1130         if (sbi->ll_flags & LL_SBI_VERBOSE)
1131                 LCONSOLE_WARN("Unmounted %s\n", profilenm ? profilenm : "");
1132
1133         if (profilenm)
1134                 class_del_profile(profilenm);
1135
1136         if (lsi->lsi_flags & LSI_BDI_INITIALIZED) {
1137                 bdi_destroy(&lsi->lsi_bdi);
1138                 lsi->lsi_flags &= ~LSI_BDI_INITIALIZED;
1139         }
1140
1141         ll_free_sbi(sb);
1142         lsi->lsi_llsbi = NULL;
1143
1144         lustre_common_put_super(sb);
1145
1146         cl_env_cache_purge(~0);
1147
1148         module_put(THIS_MODULE);
1149
1150         EXIT;
1151 } /* client_put_super */
1152
1153 struct inode *ll_inode_from_resource_lock(struct ldlm_lock *lock)
1154 {
1155         struct inode *inode = NULL;
1156
1157         /* NOTE: we depend on atomic igrab() -bzzz */
1158         lock_res_and_lock(lock);
1159         if (lock->l_resource->lr_lvb_inode) {
1160                 struct ll_inode_info * lli;
1161                 lli = ll_i2info(lock->l_resource->lr_lvb_inode);
1162                 if (lli->lli_inode_magic == LLI_INODE_MAGIC) {
1163                         inode = igrab(lock->l_resource->lr_lvb_inode);
1164                 } else {
1165                         inode = lock->l_resource->lr_lvb_inode;
1166                         LDLM_DEBUG_LIMIT(inode->i_state & I_FREEING ?  D_INFO :
1167                                          D_WARNING, lock, "lr_lvb_inode %p is "
1168                                          "bogus: magic %08x",
1169                                          lock->l_resource->lr_lvb_inode,
1170                                          lli->lli_inode_magic);
1171                         inode = NULL;
1172                 }
1173         }
1174         unlock_res_and_lock(lock);
1175         return inode;
1176 }
1177
1178 static void ll_dir_clear_lsm_md(struct inode *inode)
1179 {
1180         struct ll_inode_info *lli = ll_i2info(inode);
1181
1182         LASSERT(S_ISDIR(inode->i_mode));
1183
1184         if (lli->lli_lsm_md != NULL) {
1185                 lmv_free_memmd(lli->lli_lsm_md);
1186                 lli->lli_lsm_md = NULL;
1187         }
1188 }
1189
1190 static struct inode *ll_iget_anon_dir(struct super_block *sb,
1191                                       const struct lu_fid *fid,
1192                                       struct lustre_md *md)
1193 {
1194         struct ll_sb_info       *sbi = ll_s2sbi(sb);
1195         struct mdt_body         *body = md->body;
1196         struct inode            *inode;
1197         ino_t                   ino;
1198         ENTRY;
1199
1200         ino = cl_fid_build_ino(fid, sbi->ll_flags & LL_SBI_32BIT_API);
1201         inode = iget_locked(sb, ino);
1202         if (inode == NULL) {
1203                 CERROR("%s: failed get simple inode "DFID": rc = -ENOENT\n",
1204                        ll_get_fsname(sb, NULL, 0), PFID(fid));
1205                 RETURN(ERR_PTR(-ENOENT));
1206         }
1207
1208         if (inode->i_state & I_NEW) {
1209                 struct ll_inode_info *lli = ll_i2info(inode);
1210                 struct lmv_stripe_md *lsm = md->lmv;
1211
1212                 inode->i_mode = (inode->i_mode & ~S_IFMT) |
1213                                 (body->mbo_mode & S_IFMT);
1214                 LASSERTF(S_ISDIR(inode->i_mode), "Not slave inode "DFID"\n",
1215                          PFID(fid));
1216
1217                 LTIME_S(inode->i_mtime) = 0;
1218                 LTIME_S(inode->i_atime) = 0;
1219                 LTIME_S(inode->i_ctime) = 0;
1220                 inode->i_rdev = 0;
1221
1222 #ifdef HAVE_BACKING_DEV_INFO
1223                 /* initializing backing dev info. */
1224                 inode->i_mapping->backing_dev_info =
1225                                                 &s2lsi(inode->i_sb)->lsi_bdi;
1226 #endif
1227                 inode->i_op = &ll_dir_inode_operations;
1228                 inode->i_fop = &ll_dir_operations;
1229                 lli->lli_fid = *fid;
1230                 ll_lli_init(lli);
1231
1232                 LASSERT(lsm != NULL);
1233                 /* master object FID */
1234                 lli->lli_pfid = body->mbo_fid1;
1235                 CDEBUG(D_INODE, "lli %p slave "DFID" master "DFID"\n",
1236                        lli, PFID(fid), PFID(&lli->lli_pfid));
1237                 unlock_new_inode(inode);
1238         }
1239
1240         RETURN(inode);
1241 }
1242
1243 static int ll_init_lsm_md(struct inode *inode, struct lustre_md *md)
1244 {
1245         struct lu_fid *fid;
1246         struct lmv_stripe_md *lsm = md->lmv;
1247         int i;
1248
1249         LASSERT(lsm != NULL);
1250         /* XXX sigh, this lsm_root initialization should be in
1251          * LMV layer, but it needs ll_iget right now, so we
1252          * put this here right now. */
1253         for (i = 0; i < lsm->lsm_md_stripe_count; i++) {
1254                 fid = &lsm->lsm_md_oinfo[i].lmo_fid;
1255                 LASSERT(lsm->lsm_md_oinfo[i].lmo_root == NULL);
1256                 /* Unfortunately ll_iget will call ll_update_inode,
1257                  * where the initialization of slave inode is slightly
1258                  * different, so it reset lsm_md to NULL to avoid
1259                  * initializing lsm for slave inode. */
1260                 /* For migrating inode, master stripe and master object will
1261                  * be same, so we only need assign this inode */
1262                 if (lsm->lsm_md_hash_type & LMV_HASH_FLAG_MIGRATION && i == 0)
1263                         lsm->lsm_md_oinfo[i].lmo_root = inode;
1264                 else
1265                         lsm->lsm_md_oinfo[i].lmo_root =
1266                                 ll_iget_anon_dir(inode->i_sb, fid, md);
1267
1268                 if (IS_ERR(lsm->lsm_md_oinfo[i].lmo_root)) {
1269                         int rc = PTR_ERR(lsm->lsm_md_oinfo[i].lmo_root);
1270
1271                         lsm->lsm_md_oinfo[i].lmo_root = NULL;
1272                         return rc;
1273                 }
1274         }
1275
1276         return 0;
1277 }
1278
1279 static inline int lli_lsm_md_eq(const struct lmv_stripe_md *lsm_md1,
1280                                 const struct lmv_stripe_md *lsm_md2)
1281 {
1282         return lsm_md1->lsm_md_magic == lsm_md2->lsm_md_magic &&
1283                lsm_md1->lsm_md_stripe_count == lsm_md2->lsm_md_stripe_count &&
1284                lsm_md1->lsm_md_master_mdt_index ==
1285                                         lsm_md2->lsm_md_master_mdt_index &&
1286                lsm_md1->lsm_md_hash_type == lsm_md2->lsm_md_hash_type &&
1287                lsm_md1->lsm_md_layout_version ==
1288                                         lsm_md2->lsm_md_layout_version &&
1289                strcmp(lsm_md1->lsm_md_pool_name,
1290                       lsm_md2->lsm_md_pool_name) == 0;
1291 }
1292
1293 static int ll_update_lsm_md(struct inode *inode, struct lustre_md *md)
1294 {
1295         struct ll_inode_info *lli = ll_i2info(inode);
1296         struct lmv_stripe_md *lsm = md->lmv;
1297         int     rc;
1298         ENTRY;
1299
1300         LASSERT(S_ISDIR(inode->i_mode));
1301         CDEBUG(D_INODE, "update lsm %p of "DFID"\n", lli->lli_lsm_md,
1302                PFID(ll_inode2fid(inode)));
1303
1304         /* no striped information from request. */
1305         if (lsm == NULL) {
1306                 if (lli->lli_lsm_md == NULL) {
1307                         RETURN(0);
1308                 } else if (lli->lli_lsm_md->lsm_md_hash_type &
1309                                                 LMV_HASH_FLAG_MIGRATION) {
1310                         /* migration is done, the temporay MIGRATE layout has
1311                          * been removed */
1312                         CDEBUG(D_INODE, DFID" finish migration.\n",
1313                                PFID(ll_inode2fid(inode)));
1314                         lmv_free_memmd(lli->lli_lsm_md);
1315                         lli->lli_lsm_md = NULL;
1316                         RETURN(0);
1317                 } else {
1318                         /* The lustre_md from req does not include stripeEA,
1319                          * see ll_md_setattr */
1320                         RETURN(0);
1321                 }
1322         }
1323
1324         /* set the directory layout */
1325         if (lli->lli_lsm_md == NULL) {
1326                 struct cl_attr  *attr;
1327
1328                 rc = ll_init_lsm_md(inode, md);
1329                 if (rc != 0)
1330                         RETURN(rc);
1331
1332                 lli->lli_lsm_md = lsm;
1333
1334                 OBD_ALLOC_PTR(attr);
1335                 if (attr == NULL)
1336                         RETURN(-ENOMEM);
1337
1338                 /* validate the lsm */
1339                 rc = md_merge_attr(ll_i2mdexp(inode), lsm, attr,
1340                                    ll_md_blocking_ast);
1341                 if (rc != 0) {
1342                         OBD_FREE_PTR(attr);
1343                         RETURN(rc);
1344                 }
1345
1346                 if (md->body->mbo_valid & OBD_MD_FLNLINK)
1347                         md->body->mbo_nlink = attr->cat_nlink;
1348                 if (md->body->mbo_valid & OBD_MD_FLSIZE)
1349                         md->body->mbo_size = attr->cat_size;
1350                 if (md->body->mbo_valid & OBD_MD_FLATIME)
1351                         md->body->mbo_atime = attr->cat_atime;
1352                 if (md->body->mbo_valid & OBD_MD_FLCTIME)
1353                         md->body->mbo_ctime = attr->cat_ctime;
1354                 if (md->body->mbo_valid & OBD_MD_FLMTIME)
1355                         md->body->mbo_mtime = attr->cat_mtime;
1356
1357                 OBD_FREE_PTR(attr);
1358
1359
1360                         /* set lsm_md to NULL, so the following free lustre_md
1361                  * will not free this lsm */
1362                 md->lmv = NULL;
1363                 CDEBUG(D_INODE, "Set lsm %p magic %x to "DFID"\n", lsm,
1364                        lsm->lsm_md_magic, PFID(ll_inode2fid(inode)));
1365                 RETURN(0);
1366         }
1367
1368         /* Compare the old and new stripe information */
1369         if (!lsm_md_eq(lli->lli_lsm_md, lsm)) {
1370                 struct lmv_stripe_md    *old_lsm = lli->lli_lsm_md;
1371                 int                     idx;
1372
1373                 CERROR("%s: inode "DFID"(%p)'s lmv layout mismatch (%p)/(%p)"
1374                        "magic:0x%x/0x%x stripe count: %d/%d master_mdt: %d/%d"
1375                        "hash_type:0x%x/0x%x layout: 0x%x/0x%x pool:%s/%s\n",
1376                        ll_get_fsname(inode->i_sb, NULL, 0), PFID(&lli->lli_fid),
1377                        inode, lsm, old_lsm,
1378                        lsm->lsm_md_magic, old_lsm->lsm_md_magic,
1379                        lsm->lsm_md_stripe_count,
1380                        old_lsm->lsm_md_stripe_count,
1381                        lsm->lsm_md_master_mdt_index,
1382                        old_lsm->lsm_md_master_mdt_index,
1383                        lsm->lsm_md_hash_type, old_lsm->lsm_md_hash_type,
1384                        lsm->lsm_md_layout_version,
1385                        old_lsm->lsm_md_layout_version,
1386                        lsm->lsm_md_pool_name,
1387                        old_lsm->lsm_md_pool_name);
1388
1389                 for (idx = 0; idx < old_lsm->lsm_md_stripe_count; idx++) {
1390                         CERROR("%s: sub FIDs in old lsm idx %d, old: "DFID"\n",
1391                                ll_get_fsname(inode->i_sb, NULL, 0), idx,
1392                                PFID(&old_lsm->lsm_md_oinfo[idx].lmo_fid));
1393                 }
1394
1395                 for (idx = 0; idx < lsm->lsm_md_stripe_count; idx++) {
1396                         CERROR("%s: sub FIDs in new lsm idx %d, new: "DFID"\n",
1397                                ll_get_fsname(inode->i_sb, NULL, 0), idx,
1398                                PFID(&lsm->lsm_md_oinfo[idx].lmo_fid));
1399                 }
1400
1401                 RETURN(-EIO);
1402         }
1403
1404         RETURN(0);
1405 }
1406
1407 void ll_clear_inode(struct inode *inode)
1408 {
1409         struct ll_inode_info *lli = ll_i2info(inode);
1410         struct ll_sb_info *sbi = ll_i2sbi(inode);
1411         ENTRY;
1412
1413         CDEBUG(D_VFSTRACE, "VFS Op:inode="DFID"(%p)\n",
1414                PFID(ll_inode2fid(inode)), inode);
1415
1416         if (S_ISDIR(inode->i_mode)) {
1417                 /* these should have been cleared in ll_file_release */
1418                 LASSERT(lli->lli_opendir_key == NULL);
1419                 LASSERT(lli->lli_sai == NULL);
1420                 LASSERT(lli->lli_opendir_pid == 0);
1421         }
1422
1423         md_null_inode(sbi->ll_md_exp, ll_inode2fid(inode));
1424
1425         LASSERT(!lli->lli_open_fd_write_count);
1426         LASSERT(!lli->lli_open_fd_read_count);
1427         LASSERT(!lli->lli_open_fd_exec_count);
1428
1429         if (lli->lli_mds_write_och)
1430                 ll_md_real_close(inode, FMODE_WRITE);
1431         if (lli->lli_mds_exec_och)
1432                 ll_md_real_close(inode, FMODE_EXEC);
1433         if (lli->lli_mds_read_och)
1434                 ll_md_real_close(inode, FMODE_READ);
1435
1436         if (S_ISLNK(inode->i_mode) && lli->lli_symlink_name) {
1437                 OBD_FREE(lli->lli_symlink_name,
1438                          strlen(lli->lli_symlink_name) + 1);
1439                 lli->lli_symlink_name = NULL;
1440         }
1441
1442         ll_xattr_cache_destroy(inode);
1443
1444         if (sbi->ll_flags & LL_SBI_RMT_CLIENT) {
1445                 LASSERT(lli->lli_posix_acl == NULL);
1446                 if (lli->lli_remote_perms) {
1447                         free_rmtperm_hash(lli->lli_remote_perms);
1448                         lli->lli_remote_perms = NULL;
1449                 }
1450         }
1451 #ifdef CONFIG_FS_POSIX_ACL
1452         else if (lli->lli_posix_acl) {
1453                 LASSERT(atomic_read(&lli->lli_posix_acl->a_refcount) == 1);
1454                 LASSERT(lli->lli_remote_perms == NULL);
1455                 posix_acl_release(lli->lli_posix_acl);
1456                 lli->lli_posix_acl = NULL;
1457         }
1458 #endif
1459         lli->lli_inode_magic = LLI_INODE_DEAD;
1460
1461         if (S_ISDIR(inode->i_mode))
1462                 ll_dir_clear_lsm_md(inode);
1463         else if (S_ISREG(inode->i_mode) && !is_bad_inode(inode))
1464                 LASSERT(list_empty(&lli->lli_agl_list));
1465
1466         /*
1467          * XXX This has to be done before lsm is freed below, because
1468          * cl_object still uses inode lsm.
1469          */
1470         cl_inode_fini(inode);
1471
1472         EXIT;
1473 }
1474
1475 static int ll_md_setattr(struct dentry *dentry, struct md_op_data *op_data)
1476 {
1477         struct lustre_md md;
1478         struct inode *inode = dentry->d_inode;
1479         struct ll_sb_info *sbi = ll_i2sbi(inode);
1480         struct ptlrpc_request *request = NULL;
1481         int rc, ia_valid;
1482         ENTRY;
1483
1484         op_data = ll_prep_md_op_data(op_data, inode, NULL, NULL, 0, 0,
1485                                      LUSTRE_OPC_ANY, NULL);
1486         if (IS_ERR(op_data))
1487                 RETURN(PTR_ERR(op_data));
1488
1489         rc = md_setattr(sbi->ll_md_exp, op_data, NULL, 0, &request);
1490         if (rc) {
1491                 ptlrpc_req_finished(request);
1492                 if (rc == -ENOENT) {
1493                         clear_nlink(inode);
1494                         /* Unlinked special device node? Or just a race?
1495                          * Pretend we done everything. */
1496                         if (!S_ISREG(inode->i_mode) &&
1497                             !S_ISDIR(inode->i_mode)) {
1498                                 ia_valid = op_data->op_attr.ia_valid;
1499                                 op_data->op_attr.ia_valid &= ~TIMES_SET_FLAGS;
1500                                 rc = simple_setattr(dentry, &op_data->op_attr);
1501                                 op_data->op_attr.ia_valid = ia_valid;
1502                         }
1503                 } else if (rc != -EPERM && rc != -EACCES && rc != -ETXTBSY) {
1504                         CERROR("md_setattr fails: rc = %d\n", rc);
1505                 }
1506                 RETURN(rc);
1507         }
1508
1509         rc = md_get_lustre_md(sbi->ll_md_exp, request, sbi->ll_dt_exp,
1510                               sbi->ll_md_exp, &md);
1511         if (rc) {
1512                 ptlrpc_req_finished(request);
1513                 RETURN(rc);
1514         }
1515
1516         ia_valid = op_data->op_attr.ia_valid;
1517         /* inode size will be in ll_setattr_ost, can't do it now since dirty
1518          * cache is not cleared yet. */
1519         op_data->op_attr.ia_valid &= ~(TIMES_SET_FLAGS | ATTR_SIZE);
1520         if (S_ISREG(inode->i_mode))
1521                 mutex_lock(&inode->i_mutex);
1522         rc = simple_setattr(dentry, &op_data->op_attr);
1523         if (S_ISREG(inode->i_mode))
1524                 mutex_unlock(&inode->i_mutex);
1525         op_data->op_attr.ia_valid = ia_valid;
1526
1527         rc = ll_update_inode(inode, &md);
1528         ptlrpc_req_finished(request);
1529
1530         RETURN(rc);
1531 }
1532
1533 /* If this inode has objects allocated to it (lsm != NULL), then the OST
1534  * object(s) determine the file size and mtime.  Otherwise, the MDS will
1535  * keep these values until such a time that objects are allocated for it.
1536  * We do the MDS operations first, as it is checking permissions for us.
1537  * We don't to the MDS RPC if there is nothing that we want to store there,
1538  * otherwise there is no harm in updating mtime/atime on the MDS if we are
1539  * going to do an RPC anyways.
1540  *
1541  * If we are doing a truncate, we will send the mtime and ctime updates
1542  * to the OST with the punch RPC, otherwise we do an explicit setattr RPC.
1543  * I don't believe it is possible to get e.g. ATTR_MTIME_SET and ATTR_SIZE
1544  * at the same time.
1545  *
1546  * In case of HSMimport, we only set attr on MDS.
1547  */
1548 int ll_setattr_raw(struct dentry *dentry, struct iattr *attr, bool hsm_import)
1549 {
1550         struct inode *inode = dentry->d_inode;
1551         struct ll_inode_info *lli = ll_i2info(inode);
1552         struct md_op_data *op_data = NULL;
1553         int rc = 0;
1554         ENTRY;
1555
1556         CDEBUG(D_VFSTRACE, "%s: setattr inode "DFID"(%p) from %llu to %llu, "
1557                "valid %x, hsm_import %d\n",
1558                ll_get_fsname(inode->i_sb, NULL, 0), PFID(&lli->lli_fid),
1559                inode, i_size_read(inode), attr->ia_size, attr->ia_valid,
1560                hsm_import);
1561
1562         if (attr->ia_valid & ATTR_SIZE) {
1563                 /* Check new size against VFS/VM file size limit and rlimit */
1564                 rc = inode_newsize_ok(inode, attr->ia_size);
1565                 if (rc)
1566                         RETURN(rc);
1567
1568                 /* The maximum Lustre file size is variable, based on the
1569                  * OST maximum object size and number of stripes.  This
1570                  * needs another check in addition to the VFS check above. */
1571                 if (attr->ia_size > ll_file_maxbytes(inode)) {
1572                         CDEBUG(D_INODE,"file "DFID" too large %llu > "LPU64"\n",
1573                                PFID(&lli->lli_fid), attr->ia_size,
1574                                ll_file_maxbytes(inode));
1575                         RETURN(-EFBIG);
1576                 }
1577
1578                 attr->ia_valid |= ATTR_MTIME | ATTR_CTIME;
1579         }
1580
1581         /* POSIX: check before ATTR_*TIME_SET set (from inode_change_ok) */
1582         if (attr->ia_valid & TIMES_SET_FLAGS) {
1583                 if ((!uid_eq(current_fsuid(), inode->i_uid)) &&
1584                     !cfs_capable(CFS_CAP_FOWNER))
1585                         RETURN(-EPERM);
1586         }
1587
1588         /* We mark all of the fields "set" so MDS/OST does not re-set them */
1589         if (attr->ia_valid & ATTR_CTIME) {
1590                 attr->ia_ctime = CFS_CURRENT_TIME;
1591                 attr->ia_valid |= ATTR_CTIME_SET;
1592         }
1593         if (!(attr->ia_valid & ATTR_ATIME_SET) &&
1594             (attr->ia_valid & ATTR_ATIME)) {
1595                 attr->ia_atime = CFS_CURRENT_TIME;
1596                 attr->ia_valid |= ATTR_ATIME_SET;
1597         }
1598         if (!(attr->ia_valid & ATTR_MTIME_SET) &&
1599             (attr->ia_valid & ATTR_MTIME)) {
1600                 attr->ia_mtime = CFS_CURRENT_TIME;
1601                 attr->ia_valid |= ATTR_MTIME_SET;
1602         }
1603
1604         if (attr->ia_valid & (ATTR_MTIME | ATTR_CTIME))
1605                 CDEBUG(D_INODE, "setting mtime %lu, ctime %lu, now = %lu\n",
1606                        LTIME_S(attr->ia_mtime), LTIME_S(attr->ia_ctime),
1607                        cfs_time_current_sec());
1608
1609         if (S_ISREG(inode->i_mode)) {
1610                 if (attr->ia_valid & ATTR_SIZE)
1611                         inode_dio_write_done(inode);
1612                 mutex_unlock(&inode->i_mutex);
1613         }
1614
1615         /* We always do an MDS RPC, even if we're only changing the size;
1616          * only the MDS knows whether truncate() should fail with -ETXTBUSY */
1617
1618         OBD_ALLOC_PTR(op_data);
1619         if (op_data == NULL)
1620                 GOTO(out, rc = -ENOMEM);
1621
1622         op_data->op_attr = *attr;
1623
1624         if (!hsm_import && attr->ia_valid & ATTR_SIZE) {
1625                 /* If we are changing file size, file content is
1626                  * modified, flag it. */
1627                 attr->ia_valid |= MDS_OPEN_OWNEROVERRIDE;
1628                 op_data->op_bias |= MDS_DATA_MODIFIED;
1629                 ll_file_clear_flag(lli, LLIF_DATA_MODIFIED);
1630         }
1631
1632         rc = ll_md_setattr(dentry, op_data);
1633         if (rc)
1634                 GOTO(out, rc);
1635
1636         if (!S_ISREG(inode->i_mode) || hsm_import)
1637                 GOTO(out, rc = 0);
1638
1639         if (attr->ia_valid & (ATTR_SIZE |
1640                               ATTR_ATIME | ATTR_ATIME_SET |
1641                               ATTR_MTIME | ATTR_MTIME_SET)) {
1642                 /* For truncate and utimes sending attributes to OSTs, setting
1643                  * mtime/atime to the past will be performed under PW [0:EOF]
1644                  * extent lock (new_size:EOF for truncate).  It may seem
1645                  * excessive to send mtime/atime updates to OSTs when not
1646                  * setting times to past, but it is necessary due to possible
1647                  * time de-synchronization between MDT inode and OST objects */
1648                 rc = cl_setattr_ost(lli->lli_clob, attr, 0);
1649         }
1650
1651         /* If the file was restored, it needs to set dirty flag.
1652          *
1653          * We've already sent MDS_DATA_MODIFIED flag in
1654          * ll_md_setattr() for truncate. However, the MDT refuses to
1655          * set the HS_DIRTY flag on released files, so we have to set
1656          * it again if the file has been restored. Please check how
1657          * LLIF_DATA_MODIFIED is set in vvp_io_setattr_fini().
1658          *
1659          * Please notice that if the file is not released, the previous
1660          * MDS_DATA_MODIFIED has taken effect and usually
1661          * LLIF_DATA_MODIFIED is not set(see vvp_io_setattr_fini()).
1662          * This way we can save an RPC for common open + trunc
1663          * operation. */
1664         if (ll_file_test_and_clear_flag(lli, LLIF_DATA_MODIFIED)) {
1665                 struct hsm_state_set hss = {
1666                         .hss_valid = HSS_SETMASK,
1667                         .hss_setmask = HS_DIRTY,
1668                 };
1669                 int rc2;
1670
1671                 rc2 = ll_hsm_state_set(inode, &hss);
1672                 /* truncate and write can happen at the same time, so that
1673                  * the file can be set modified even though the file is not
1674                  * restored from released state, and ll_hsm_state_set() is
1675                  * not applicable for the file, and rc2 < 0 is normal in this
1676                  * case. */
1677                 if (rc2 < 0)
1678                         CDEBUG(D_INFO, DFID "HSM set dirty failed: rc2 = %d\n",
1679                                PFID(ll_inode2fid(inode)), rc2);
1680         }
1681
1682         EXIT;
1683 out:
1684         if (op_data != NULL)
1685                 ll_finish_md_op_data(op_data);
1686
1687         if (S_ISREG(inode->i_mode)) {
1688                 mutex_lock(&inode->i_mutex);
1689                 if ((attr->ia_valid & ATTR_SIZE) && !hsm_import)
1690                         inode_dio_wait(inode);
1691         }
1692
1693         ll_stats_ops_tally(ll_i2sbi(inode), (attr->ia_valid & ATTR_SIZE) ?
1694                         LPROC_LL_TRUNC : LPROC_LL_SETATTR, 1);
1695
1696         return rc;
1697 }
1698
1699 int ll_setattr(struct dentry *de, struct iattr *attr)
1700 {
1701         int mode = de->d_inode->i_mode;
1702
1703         if ((attr->ia_valid & (ATTR_CTIME|ATTR_SIZE|ATTR_MODE)) ==
1704                               (ATTR_CTIME|ATTR_SIZE|ATTR_MODE))
1705                 attr->ia_valid |= MDS_OPEN_OWNEROVERRIDE;
1706
1707         if (((attr->ia_valid & (ATTR_MODE|ATTR_FORCE|ATTR_SIZE)) ==
1708                                (ATTR_SIZE|ATTR_MODE)) &&
1709             (((mode & S_ISUID) && !(attr->ia_mode & S_ISUID)) ||
1710              (((mode & (S_ISGID|S_IXGRP)) == (S_ISGID|S_IXGRP)) &&
1711               !(attr->ia_mode & S_ISGID))))
1712                 attr->ia_valid |= ATTR_FORCE;
1713
1714         if ((attr->ia_valid & ATTR_MODE) &&
1715             (mode & S_ISUID) &&
1716             !(attr->ia_mode & S_ISUID) &&
1717             !(attr->ia_valid & ATTR_KILL_SUID))
1718                 attr->ia_valid |= ATTR_KILL_SUID;
1719
1720         if ((attr->ia_valid & ATTR_MODE) &&
1721             ((mode & (S_ISGID|S_IXGRP)) == (S_ISGID|S_IXGRP)) &&
1722             !(attr->ia_mode & S_ISGID) &&
1723             !(attr->ia_valid & ATTR_KILL_SGID))
1724                 attr->ia_valid |= ATTR_KILL_SGID;
1725
1726         return ll_setattr_raw(de, attr, false);
1727 }
1728
1729 int ll_statfs_internal(struct super_block *sb, struct obd_statfs *osfs,
1730                        __u64 max_age, __u32 flags)
1731 {
1732         struct ll_sb_info *sbi = ll_s2sbi(sb);
1733         struct obd_statfs obd_osfs;
1734         int rc;
1735         ENTRY;
1736
1737         rc = obd_statfs(NULL, sbi->ll_md_exp, osfs, max_age, flags);
1738         if (rc) {
1739                 CERROR("md_statfs fails: rc = %d\n", rc);
1740                 RETURN(rc);
1741         }
1742
1743         osfs->os_type = sb->s_magic;
1744
1745         CDEBUG(D_SUPER, "MDC blocks "LPU64"/"LPU64" objects "LPU64"/"LPU64"\n",
1746                osfs->os_bavail, osfs->os_blocks, osfs->os_ffree,osfs->os_files);
1747
1748         if (sbi->ll_flags & LL_SBI_LAZYSTATFS)
1749                 flags |= OBD_STATFS_NODELAY;
1750
1751         rc = obd_statfs_rqset(sbi->ll_dt_exp, &obd_osfs, max_age, flags);
1752         if (rc) {
1753                 CERROR("obd_statfs fails: rc = %d\n", rc);
1754                 RETURN(rc);
1755         }
1756
1757         CDEBUG(D_SUPER, "OSC blocks "LPU64"/"LPU64" objects "LPU64"/"LPU64"\n",
1758                obd_osfs.os_bavail, obd_osfs.os_blocks, obd_osfs.os_ffree,
1759                obd_osfs.os_files);
1760
1761         osfs->os_bsize = obd_osfs.os_bsize;
1762         osfs->os_blocks = obd_osfs.os_blocks;
1763         osfs->os_bfree = obd_osfs.os_bfree;
1764         osfs->os_bavail = obd_osfs.os_bavail;
1765
1766         /* If we don't have as many objects free on the OST as inodes
1767          * on the MDS, we reduce the total number of inodes to
1768          * compensate, so that the "inodes in use" number is correct.
1769          */
1770         if (obd_osfs.os_ffree < osfs->os_ffree) {
1771                 osfs->os_files = (osfs->os_files - osfs->os_ffree) +
1772                         obd_osfs.os_ffree;
1773                 osfs->os_ffree = obd_osfs.os_ffree;
1774         }
1775
1776         RETURN(rc);
1777 }
1778 int ll_statfs(struct dentry *de, struct kstatfs *sfs)
1779 {
1780         struct super_block *sb = de->d_sb;
1781         struct obd_statfs osfs;
1782         __u64 fsid = huge_encode_dev(sb->s_dev);
1783         int rc;
1784
1785         CDEBUG(D_VFSTRACE, "VFS Op: at "LPU64" jiffies\n", get_jiffies_64());
1786         ll_stats_ops_tally(ll_s2sbi(sb), LPROC_LL_STAFS, 1);
1787
1788         /* Some amount of caching on the client is allowed */
1789         rc = ll_statfs_internal(sb, &osfs,
1790                                 cfs_time_shift_64(-OBD_STATFS_CACHE_SECONDS),
1791                                 0);
1792         if (rc)
1793                 return rc;
1794
1795         statfs_unpack(sfs, &osfs);
1796
1797         /* We need to downshift for all 32-bit kernels, because we can't
1798          * tell if the kernel is being called via sys_statfs64() or not.
1799          * Stop before overflowing f_bsize - in which case it is better
1800          * to just risk EOVERFLOW if caller is using old sys_statfs(). */
1801         if (sizeof(long) < 8) {
1802                 while (osfs.os_blocks > ~0UL && sfs->f_bsize < 0x40000000) {
1803                         sfs->f_bsize <<= 1;
1804
1805                         osfs.os_blocks >>= 1;
1806                         osfs.os_bfree >>= 1;
1807                         osfs.os_bavail >>= 1;
1808                 }
1809         }
1810
1811         sfs->f_blocks = osfs.os_blocks;
1812         sfs->f_bfree = osfs.os_bfree;
1813         sfs->f_bavail = osfs.os_bavail;
1814         sfs->f_fsid.val[0] = (__u32)fsid;
1815         sfs->f_fsid.val[1] = (__u32)(fsid >> 32);
1816         return 0;
1817 }
1818
1819 void ll_inode_size_lock(struct inode *inode)
1820 {
1821         struct ll_inode_info *lli;
1822
1823         LASSERT(!S_ISDIR(inode->i_mode));
1824
1825         lli = ll_i2info(inode);
1826         mutex_lock(&lli->lli_size_mutex);
1827 }
1828
1829 void ll_inode_size_unlock(struct inode *inode)
1830 {
1831         struct ll_inode_info *lli;
1832
1833         lli = ll_i2info(inode);
1834         mutex_unlock(&lli->lli_size_mutex);
1835 }
1836
1837 int ll_update_inode(struct inode *inode, struct lustre_md *md)
1838 {
1839         struct ll_inode_info *lli = ll_i2info(inode);
1840         struct mdt_body *body = md->body;
1841         struct ll_sb_info *sbi = ll_i2sbi(inode);
1842
1843         if (body->mbo_valid & OBD_MD_FLEASIZE)
1844                 cl_file_inode_init(inode, md);
1845
1846         if (S_ISDIR(inode->i_mode)) {
1847                 int     rc;
1848
1849                 rc = ll_update_lsm_md(inode, md);
1850                 if (rc != 0)
1851                         return rc;
1852         }
1853
1854         if (sbi->ll_flags & LL_SBI_RMT_CLIENT) {
1855                 if (body->mbo_valid & OBD_MD_FLRMTPERM)
1856                         ll_update_remote_perm(inode, md->remote_perm);
1857         }
1858 #ifdef CONFIG_FS_POSIX_ACL
1859         else if (body->mbo_valid & OBD_MD_FLACL) {
1860                 spin_lock(&lli->lli_lock);
1861                 if (lli->lli_posix_acl)
1862                         posix_acl_release(lli->lli_posix_acl);
1863                 lli->lli_posix_acl = md->posix_acl;
1864                 spin_unlock(&lli->lli_lock);
1865         }
1866 #endif
1867         inode->i_ino = cl_fid_build_ino(&body->mbo_fid1,
1868                                         sbi->ll_flags & LL_SBI_32BIT_API);
1869         inode->i_generation = cl_fid_build_gen(&body->mbo_fid1);
1870
1871         if (body->mbo_valid & OBD_MD_FLATIME) {
1872                 if (body->mbo_atime > LTIME_S(inode->i_atime))
1873                         LTIME_S(inode->i_atime) = body->mbo_atime;
1874                 lli->lli_atime = body->mbo_atime;
1875         }
1876
1877         if (body->mbo_valid & OBD_MD_FLMTIME) {
1878                 if (body->mbo_mtime > LTIME_S(inode->i_mtime)) {
1879                         CDEBUG(D_INODE, "setting ino %lu mtime from %lu "
1880                                "to "LPU64"\n", inode->i_ino,
1881                                LTIME_S(inode->i_mtime), body->mbo_mtime);
1882                         LTIME_S(inode->i_mtime) = body->mbo_mtime;
1883                 }
1884                 lli->lli_mtime = body->mbo_mtime;
1885         }
1886
1887         if (body->mbo_valid & OBD_MD_FLCTIME) {
1888                 if (body->mbo_ctime > LTIME_S(inode->i_ctime))
1889                         LTIME_S(inode->i_ctime) = body->mbo_ctime;
1890                 lli->lli_ctime = body->mbo_ctime;
1891         }
1892
1893         if (body->mbo_valid & OBD_MD_FLMODE)
1894                 inode->i_mode = (inode->i_mode & S_IFMT) |
1895                                 (body->mbo_mode & ~S_IFMT);
1896
1897         if (body->mbo_valid & OBD_MD_FLTYPE)
1898                 inode->i_mode = (inode->i_mode & ~S_IFMT) |
1899                                 (body->mbo_mode & S_IFMT);
1900
1901         LASSERT(inode->i_mode != 0);
1902         if (S_ISREG(inode->i_mode))
1903                 inode->i_blkbits = min(PTLRPC_MAX_BRW_BITS + 1,
1904                                        LL_MAX_BLKSIZE_BITS);
1905         else
1906                 inode->i_blkbits = inode->i_sb->s_blocksize_bits;
1907
1908         if (body->mbo_valid & OBD_MD_FLUID)
1909                 inode->i_uid = make_kuid(&init_user_ns, body->mbo_uid);
1910         if (body->mbo_valid & OBD_MD_FLGID)
1911                 inode->i_gid = make_kgid(&init_user_ns, body->mbo_gid);
1912         if (body->mbo_valid & OBD_MD_FLFLAGS)
1913                 inode->i_flags = ll_ext_to_inode_flags(body->mbo_flags);
1914         if (body->mbo_valid & OBD_MD_FLNLINK)
1915                 set_nlink(inode, body->mbo_nlink);
1916         if (body->mbo_valid & OBD_MD_FLRDEV)
1917                 inode->i_rdev = old_decode_dev(body->mbo_rdev);
1918
1919         if (body->mbo_valid & OBD_MD_FLID) {
1920                 /* FID shouldn't be changed! */
1921                 if (fid_is_sane(&lli->lli_fid)) {
1922                         LASSERTF(lu_fid_eq(&lli->lli_fid, &body->mbo_fid1),
1923                                  "Trying to change FID "DFID
1924                                  " to the "DFID", inode "DFID"(%p)\n",
1925                                  PFID(&lli->lli_fid), PFID(&body->mbo_fid1),
1926                                  PFID(ll_inode2fid(inode)), inode);
1927                 } else {
1928                         lli->lli_fid = body->mbo_fid1;
1929                 }
1930         }
1931
1932         LASSERT(fid_seq(&lli->lli_fid) != 0);
1933
1934         if (body->mbo_valid & OBD_MD_FLSIZE) {
1935                 i_size_write(inode, body->mbo_size);
1936
1937                 CDEBUG(D_VFSTRACE, "inode="DFID", updating i_size %llu\n",
1938                        PFID(ll_inode2fid(inode)),
1939                        (unsigned long long)body->mbo_size);
1940
1941                 if (body->mbo_valid & OBD_MD_FLBLOCKS)
1942                         inode->i_blocks = body->mbo_blocks;
1943         }
1944
1945         if (body->mbo_valid & OBD_MD_TSTATE) {
1946                 /* Set LLIF_FILE_RESTORING if restore ongoing and
1947                  * clear it when done to ensure to start again
1948                  * glimpsing updated attrs
1949                  */
1950                 if (body->mbo_t_state & MS_RESTORE)
1951                         ll_file_set_flag(lli, LLIF_FILE_RESTORING);
1952                 else
1953                         ll_file_clear_flag(lli, LLIF_FILE_RESTORING);
1954         }
1955
1956         return 0;
1957 }
1958
1959 int ll_read_inode2(struct inode *inode, void *opaque)
1960 {
1961         struct lustre_md *md = opaque;
1962         struct ll_inode_info *lli = ll_i2info(inode);
1963         int     rc;
1964         ENTRY;
1965
1966         CDEBUG(D_VFSTRACE, "VFS Op:inode="DFID"(%p)\n",
1967                PFID(&lli->lli_fid), inode);
1968
1969         /* Core attributes from the MDS first.  This is a new inode, and
1970          * the VFS doesn't zero times in the core inode so we have to do
1971          * it ourselves.  They will be overwritten by either MDS or OST
1972          * attributes - we just need to make sure they aren't newer. */
1973         LTIME_S(inode->i_mtime) = 0;
1974         LTIME_S(inode->i_atime) = 0;
1975         LTIME_S(inode->i_ctime) = 0;
1976         inode->i_rdev = 0;
1977         rc = ll_update_inode(inode, md);
1978         if (rc != 0)
1979                 RETURN(rc);
1980
1981         /* OIDEBUG(inode); */
1982
1983 #ifdef HAVE_BACKING_DEV_INFO
1984         /* initializing backing dev info. */
1985         inode->i_mapping->backing_dev_info = &s2lsi(inode->i_sb)->lsi_bdi;
1986 #endif
1987         if (S_ISREG(inode->i_mode)) {
1988                 struct ll_sb_info *sbi = ll_i2sbi(inode);
1989                 inode->i_op = &ll_file_inode_operations;
1990                 inode->i_fop = sbi->ll_fop;
1991                 inode->i_mapping->a_ops = (struct address_space_operations *)&ll_aops;
1992                 EXIT;
1993         } else if (S_ISDIR(inode->i_mode)) {
1994                 inode->i_op = &ll_dir_inode_operations;
1995                 inode->i_fop = &ll_dir_operations;
1996                 EXIT;
1997         } else if (S_ISLNK(inode->i_mode)) {
1998                 inode->i_op = &ll_fast_symlink_inode_operations;
1999                 EXIT;
2000         } else {
2001                 inode->i_op = &ll_special_inode_operations;
2002
2003                 init_special_inode(inode, inode->i_mode,
2004                                    inode->i_rdev);
2005
2006                 EXIT;
2007         }
2008
2009         return 0;
2010 }
2011
2012 void ll_delete_inode(struct inode *inode)
2013 {
2014         struct ll_inode_info *lli = ll_i2info(inode);
2015         ENTRY;
2016
2017         if (S_ISREG(inode->i_mode) && lli->lli_clob != NULL)
2018                 /* It is last chance to write out dirty pages,
2019                  * otherwise we may lose data while umount */
2020                 cl_sync_file_range(inode, 0, OBD_OBJECT_EOF, CL_FSYNC_LOCAL, 1);
2021
2022         truncate_inode_pages_final(&inode->i_data);
2023
2024         LASSERTF(inode->i_data.nrpages == 0, "inode="DFID"(%p) nrpages=%lu, "
2025                  "see https://jira.hpdd.intel.com/browse/LU-118\n",
2026                  PFID(ll_inode2fid(inode)), inode, inode->i_data.nrpages);
2027
2028 #ifdef HAVE_SBOPS_EVICT_INODE
2029         ll_clear_inode(inode);
2030 #endif
2031         clear_inode(inode);
2032
2033         EXIT;
2034 }
2035
2036 int ll_iocontrol(struct inode *inode, struct file *file,
2037                  unsigned int cmd, unsigned long arg)
2038 {
2039         struct ll_sb_info *sbi = ll_i2sbi(inode);
2040         struct ptlrpc_request *req = NULL;
2041         int rc, flags = 0;
2042         ENTRY;
2043
2044         switch(cmd) {
2045         case FSFILT_IOC_GETFLAGS: {
2046                 struct mdt_body *body;
2047                 struct md_op_data *op_data;
2048
2049                 op_data = ll_prep_md_op_data(NULL, inode, NULL, NULL,
2050                                              0, 0, LUSTRE_OPC_ANY,
2051                                              NULL);
2052                 if (IS_ERR(op_data))
2053                         RETURN(PTR_ERR(op_data));
2054
2055                 op_data->op_valid = OBD_MD_FLFLAGS;
2056                 rc = md_getattr(sbi->ll_md_exp, op_data, &req);
2057                 ll_finish_md_op_data(op_data);
2058                 if (rc) {
2059                         CERROR("%s: failure inode "DFID": rc = %d\n",
2060                                sbi->ll_md_exp->exp_obd->obd_name,
2061                                PFID(ll_inode2fid(inode)), rc);
2062                         RETURN(-abs(rc));
2063                 }
2064
2065                 body = req_capsule_server_get(&req->rq_pill, &RMF_MDT_BODY);
2066
2067                 flags = body->mbo_flags;
2068
2069                 ptlrpc_req_finished(req);
2070
2071                 RETURN(put_user(flags, (int __user *)arg));
2072         }
2073         case FSFILT_IOC_SETFLAGS: {
2074                 struct iattr *attr;
2075                 struct md_op_data *op_data;
2076                 struct cl_object *obj;
2077
2078                 if (get_user(flags, (int __user *)arg))
2079                         RETURN(-EFAULT);
2080
2081                 op_data = ll_prep_md_op_data(NULL, inode, NULL, NULL, 0, 0,
2082                                              LUSTRE_OPC_ANY, NULL);
2083                 if (IS_ERR(op_data))
2084                         RETURN(PTR_ERR(op_data));
2085
2086                 op_data->op_attr_flags = flags;
2087                 op_data->op_attr.ia_valid |= ATTR_ATTR_FLAG;
2088                 rc = md_setattr(sbi->ll_md_exp, op_data, NULL, 0, &req);
2089                 ll_finish_md_op_data(op_data);
2090                 ptlrpc_req_finished(req);
2091                 if (rc)
2092                         RETURN(rc);
2093
2094                 inode->i_flags = ll_ext_to_inode_flags(flags);
2095
2096                 obj = ll_i2info(inode)->lli_clob;
2097                 if (obj == NULL)
2098                         RETURN(0);
2099
2100                 OBD_ALLOC_PTR(attr);
2101                 if (attr == NULL)
2102                         RETURN(-ENOMEM);
2103
2104                 attr->ia_valid = ATTR_ATTR_FLAG;
2105                 rc = cl_setattr_ost(obj, attr, flags);
2106
2107                 OBD_FREE_PTR(attr);
2108                 RETURN(rc);
2109         }
2110         default:
2111                 RETURN(-ENOSYS);
2112         }
2113
2114         RETURN(0);
2115 }
2116
2117 int ll_flush_ctx(struct inode *inode)
2118 {
2119         struct ll_sb_info  *sbi = ll_i2sbi(inode);
2120
2121         CDEBUG(D_SEC, "flush context for user %d\n",
2122                from_kuid(&init_user_ns, current_uid()));
2123
2124         obd_set_info_async(NULL, sbi->ll_md_exp,
2125                            sizeof(KEY_FLUSH_CTX), KEY_FLUSH_CTX,
2126                            0, NULL, NULL);
2127         obd_set_info_async(NULL, sbi->ll_dt_exp,
2128                            sizeof(KEY_FLUSH_CTX), KEY_FLUSH_CTX,
2129                            0, NULL, NULL);
2130         return 0;
2131 }
2132
2133 /* umount -f client means force down, don't save state */
2134 void ll_umount_begin(struct super_block *sb)
2135 {
2136         struct ll_sb_info *sbi = ll_s2sbi(sb);
2137         struct obd_device *obd;
2138         struct obd_ioctl_data *ioc_data;
2139         ENTRY;
2140
2141         CDEBUG(D_VFSTRACE, "VFS Op: superblock %p count %d active %d\n", sb,
2142                sb->s_count, atomic_read(&sb->s_active));
2143
2144         obd = class_exp2obd(sbi->ll_md_exp);
2145         if (obd == NULL) {
2146                 CERROR("Invalid MDC connection handle "LPX64"\n",
2147                        sbi->ll_md_exp->exp_handle.h_cookie);
2148                 EXIT;
2149                 return;
2150         }
2151         obd->obd_force = 1;
2152
2153         obd = class_exp2obd(sbi->ll_dt_exp);
2154         if (obd == NULL) {
2155                 CERROR("Invalid LOV connection handle "LPX64"\n",
2156                        sbi->ll_dt_exp->exp_handle.h_cookie);
2157                 EXIT;
2158                 return;
2159         }
2160         obd->obd_force = 1;
2161
2162         OBD_ALLOC_PTR(ioc_data);
2163         if (ioc_data) {
2164                 obd_iocontrol(IOC_OSC_SET_ACTIVE, sbi->ll_md_exp,
2165                               sizeof *ioc_data, ioc_data, NULL);
2166
2167                 obd_iocontrol(IOC_OSC_SET_ACTIVE, sbi->ll_dt_exp,
2168                               sizeof *ioc_data, ioc_data, NULL);
2169
2170                 OBD_FREE_PTR(ioc_data);
2171         }
2172
2173         /* Really, we'd like to wait until there are no requests outstanding,
2174          * and then continue.  For now, we just invalidate the requests,
2175          * schedule() and sleep one second if needed, and hope.
2176          */
2177         schedule();
2178         EXIT;
2179 }
2180
2181 int ll_remount_fs(struct super_block *sb, int *flags, char *data)
2182 {
2183         struct ll_sb_info *sbi = ll_s2sbi(sb);
2184         char *profilenm = get_profile_name(sb);
2185         int err;
2186         __u32 read_only;
2187
2188         if ((*flags & MS_RDONLY) != (sb->s_flags & MS_RDONLY)) {
2189                 read_only = *flags & MS_RDONLY;
2190                 err = obd_set_info_async(NULL, sbi->ll_md_exp,
2191                                          sizeof(KEY_READ_ONLY),
2192                                          KEY_READ_ONLY, sizeof(read_only),
2193                                          &read_only, NULL);
2194                 if (err) {
2195                         LCONSOLE_WARN("Failed to remount %s %s (%d)\n",
2196                                       profilenm, read_only ?
2197                                       "read-only" : "read-write", err);
2198                         return err;
2199                 }
2200
2201                 if (read_only)
2202                         sb->s_flags |= MS_RDONLY;
2203                 else
2204                         sb->s_flags &= ~MS_RDONLY;
2205
2206                 if (sbi->ll_flags & LL_SBI_VERBOSE)
2207                         LCONSOLE_WARN("Remounted %s %s\n", profilenm,
2208                                       read_only ?  "read-only" : "read-write");
2209         }
2210         return 0;
2211 }
2212
2213 /**
2214  * Cleanup the open handle that is cached on MDT-side.
2215  *
2216  * For open case, the client side open handling thread may hit error
2217  * after the MDT grant the open. Under such case, the client should
2218  * send close RPC to the MDT as cleanup; otherwise, the open handle
2219  * on the MDT will be leaked there until the client umount or evicted.
2220  *
2221  * In further, if someone unlinked the file, because the open handle
2222  * holds the reference on such file/object, then it will block the
2223  * subsequent threads that want to locate such object via FID.
2224  *
2225  * \param[in] sb        super block for this file-system
2226  * \param[in] open_req  pointer to the original open request
2227  */
2228 void ll_open_cleanup(struct super_block *sb, struct ptlrpc_request *open_req)
2229 {
2230         struct mdt_body                 *body;
2231         struct md_op_data               *op_data;
2232         struct ptlrpc_request           *close_req = NULL;
2233         struct obd_export               *exp       = ll_s2sbi(sb)->ll_md_exp;
2234         ENTRY;
2235
2236         body = req_capsule_server_get(&open_req->rq_pill, &RMF_MDT_BODY);
2237         OBD_ALLOC_PTR(op_data);
2238         if (op_data == NULL) {
2239                 CWARN("%s: cannot allocate op_data to release open handle for "
2240                       DFID"\n",
2241                       ll_get_fsname(sb, NULL, 0), PFID(&body->mbo_fid1));
2242
2243                 RETURN_EXIT;
2244         }
2245
2246         op_data->op_fid1 = body->mbo_fid1;
2247         op_data->op_handle = body->mbo_handle;
2248         op_data->op_mod_time = cfs_time_current_sec();
2249         md_close(exp, op_data, NULL, &close_req);
2250         ptlrpc_req_finished(close_req);
2251         ll_finish_md_op_data(op_data);
2252
2253         EXIT;
2254 }
2255
2256 int ll_prep_inode(struct inode **inode, struct ptlrpc_request *req,
2257                   struct super_block *sb, struct lookup_intent *it)
2258 {
2259         struct ll_sb_info *sbi = NULL;
2260         struct lustre_md md = { NULL };
2261         int rc;
2262         ENTRY;
2263
2264         LASSERT(*inode || sb);
2265         sbi = sb ? ll_s2sbi(sb) : ll_i2sbi(*inode);
2266         rc = md_get_lustre_md(sbi->ll_md_exp, req, sbi->ll_dt_exp,
2267                               sbi->ll_md_exp, &md);
2268         if (rc != 0)
2269                 GOTO(cleanup, rc);
2270
2271         if (*inode) {
2272                 rc = ll_update_inode(*inode, &md);
2273                 if (rc != 0)
2274                         GOTO(out, rc);
2275         } else {
2276                 LASSERT(sb != NULL);
2277
2278                 /*
2279                  * At this point server returns to client's same fid as client
2280                  * generated for creating. So using ->fid1 is okay here.
2281                  */
2282                 LASSERT(fid_is_sane(&md.body->mbo_fid1));
2283
2284                 *inode = ll_iget(sb, cl_fid_build_ino(&md.body->mbo_fid1,
2285                                              sbi->ll_flags & LL_SBI_32BIT_API),
2286                                  &md);
2287                 if (IS_ERR(*inode)) {
2288 #ifdef CONFIG_FS_POSIX_ACL
2289                         if (md.posix_acl) {
2290                                 posix_acl_release(md.posix_acl);
2291                                 md.posix_acl = NULL;
2292                         }
2293 #endif
2294                         rc = IS_ERR(*inode) ? PTR_ERR(*inode) : -ENOMEM;
2295                         *inode = NULL;
2296                         CERROR("new_inode -fatal: rc %d\n", rc);
2297                         GOTO(out, rc);
2298                 }
2299         }
2300
2301         /* Handling piggyback layout lock.
2302          * Layout lock can be piggybacked by getattr and open request.
2303          * The lsm can be applied to inode only if it comes with a layout lock
2304          * otherwise correct layout may be overwritten, for example:
2305          * 1. proc1: mdt returns a lsm but not granting layout
2306          * 2. layout was changed by another client
2307          * 3. proc2: refresh layout and layout lock granted
2308          * 4. proc1: to apply a stale layout */
2309         if (it != NULL && it->d.lustre.it_lock_mode != 0) {
2310                 struct lustre_handle lockh;
2311                 struct ldlm_lock *lock;
2312
2313                 lockh.cookie = it->d.lustre.it_lock_handle;
2314                 lock = ldlm_handle2lock(&lockh);
2315                 LASSERT(lock != NULL);
2316                 if (ldlm_has_layout(lock)) {
2317                         struct cl_object_conf conf;
2318
2319                         memset(&conf, 0, sizeof(conf));
2320                         conf.coc_opc = OBJECT_CONF_SET;
2321                         conf.coc_inode = *inode;
2322                         conf.coc_lock = lock;
2323                         conf.u.coc_layout = md.layout;
2324                         (void)ll_layout_conf(*inode, &conf);
2325                 }
2326                 LDLM_LOCK_PUT(lock);
2327         }
2328
2329         GOTO(out, rc = 0);
2330
2331 out:
2332         md_free_lustre_md(sbi->ll_md_exp, &md);
2333
2334 cleanup:
2335         if (rc != 0 && it != NULL && it->it_op & IT_OPEN)
2336                 ll_open_cleanup(sb != NULL ? sb : (*inode)->i_sb, req);
2337
2338         return rc;
2339 }
2340
2341 int ll_obd_statfs(struct inode *inode, void __user *arg)
2342 {
2343         struct ll_sb_info *sbi = NULL;
2344         struct obd_export *exp;
2345         char *buf = NULL;
2346         struct obd_ioctl_data *data = NULL;
2347         __u32 type;
2348         __u32 __user flags;     /* not user, but obd_iocontrol is abused */
2349         int len = 0, rc;
2350
2351         if (!inode || !(sbi = ll_i2sbi(inode)))
2352                 GOTO(out_statfs, rc = -EINVAL);
2353
2354         rc = obd_ioctl_getdata(&buf, &len, arg);
2355         if (rc)
2356                 GOTO(out_statfs, rc);
2357
2358         data = (void*)buf;
2359         if (!data->ioc_inlbuf1 || !data->ioc_inlbuf2 ||
2360             !data->ioc_pbuf1 || !data->ioc_pbuf2)
2361                 GOTO(out_statfs, rc = -EINVAL);
2362
2363         if (data->ioc_inllen1 != sizeof(__u32) ||
2364             data->ioc_inllen2 != sizeof(__u32) ||
2365             data->ioc_plen1 != sizeof(struct obd_statfs) ||
2366             data->ioc_plen2 != sizeof(struct obd_uuid))
2367                 GOTO(out_statfs, rc = -EINVAL);
2368
2369         memcpy(&type, data->ioc_inlbuf1, sizeof(__u32));
2370         if (type & LL_STATFS_LMV)
2371                 exp = sbi->ll_md_exp;
2372         else if (type & LL_STATFS_LOV)
2373                 exp = sbi->ll_dt_exp;
2374         else
2375                 GOTO(out_statfs, rc = -ENODEV);
2376
2377         flags = (type & LL_STATFS_NODELAY) ? OBD_STATFS_NODELAY : 0;
2378         rc = obd_iocontrol(IOC_OBD_STATFS, exp, len, buf, &flags);
2379         if (rc)
2380                 GOTO(out_statfs, rc);
2381 out_statfs:
2382         if (buf)
2383                 obd_ioctl_freedata(buf, len);
2384         return rc;
2385 }
2386
2387 int ll_process_config(struct lustre_cfg *lcfg)
2388 {
2389         struct super_block *sb;
2390         unsigned long x;
2391         int rc = 0;
2392         char *ptr;
2393
2394         /* The instance name contains the sb: lustre-client-aacfe000 */
2395         ptr = strrchr(lustre_cfg_string(lcfg, 0), '-');
2396         if (!ptr || !*(++ptr))
2397                 return -EINVAL;
2398         if (sscanf(ptr, "%lx", &x) != 1)
2399                 return -EINVAL;
2400         sb = (struct super_block *)x;
2401         /* This better be a real Lustre superblock! */
2402         LASSERT(s2lsi(sb)->lsi_lmd->lmd_magic == LMD_MAGIC);
2403
2404         /* Note we have not called client_common_fill_super yet, so
2405            proc fns must be able to handle that! */
2406         rc = class_process_proc_param(PARAM_LLITE, lprocfs_llite_obd_vars,
2407                                       lcfg, sb);
2408         if (rc > 0)
2409                 rc = 0;
2410         return rc;
2411 }
2412
2413 /* this function prepares md_op_data hint for passing it down to MD stack. */
2414 struct md_op_data *ll_prep_md_op_data(struct md_op_data *op_data,
2415                                       struct inode *i1, struct inode *i2,
2416                                       const char *name, size_t namelen,
2417                                       __u32 mode, __u32 opc, void *data)
2418 {
2419         LASSERT(i1 != NULL);
2420
2421         if (name == NULL) {
2422                 /* Do not reuse namelen for something else. */
2423                 if (namelen != 0)
2424                         return ERR_PTR(-EINVAL);
2425         } else {
2426                 if (namelen > ll_i2sbi(i1)->ll_namelen)
2427                         return ERR_PTR(-ENAMETOOLONG);
2428
2429                 if (!lu_name_is_valid_2(name, namelen))
2430                         return ERR_PTR(-EINVAL);
2431         }
2432
2433         if (op_data == NULL)
2434                 OBD_ALLOC_PTR(op_data);
2435
2436         if (op_data == NULL)
2437                 return ERR_PTR(-ENOMEM);
2438
2439         ll_i2gids(op_data->op_suppgids, i1, i2);
2440         op_data->op_fid1 = *ll_inode2fid(i1);
2441         op_data->op_default_stripe_offset = -1;
2442         if (S_ISDIR(i1->i_mode)) {
2443                 op_data->op_mea1 = ll_i2info(i1)->lli_lsm_md;
2444                 if (opc == LUSTRE_OPC_MKDIR)
2445                         op_data->op_default_stripe_offset =
2446                                    ll_i2info(i1)->lli_def_stripe_offset;
2447         }
2448
2449         if (i2) {
2450                 op_data->op_fid2 = *ll_inode2fid(i2);
2451                 if (S_ISDIR(i2->i_mode))
2452                         op_data->op_mea2 = ll_i2info(i2)->lli_lsm_md;
2453         } else {
2454                 fid_zero(&op_data->op_fid2);
2455         }
2456
2457         if (ll_i2sbi(i1)->ll_flags & LL_SBI_64BIT_HASH)
2458                 op_data->op_cli_flags |= CLI_HASH64;
2459
2460         if (ll_need_32bit_api(ll_i2sbi(i1)))
2461                 op_data->op_cli_flags |= CLI_API32;
2462
2463         op_data->op_name = name;
2464         op_data->op_namelen = namelen;
2465         op_data->op_mode = mode;
2466         op_data->op_mod_time = cfs_time_current_sec();
2467         op_data->op_fsuid = from_kuid(&init_user_ns, current_fsuid());
2468         op_data->op_fsgid = from_kgid(&init_user_ns, current_fsgid());
2469         op_data->op_cap = cfs_curproc_cap_pack();
2470         if ((opc == LUSTRE_OPC_CREATE) && (name != NULL) &&
2471              filename_is_volatile(name, namelen, &op_data->op_mds)) {
2472                 op_data->op_bias |= MDS_CREATE_VOLATILE;
2473         } else {
2474                 op_data->op_mds = 0;
2475         }
2476         op_data->op_data = data;
2477
2478         return op_data;
2479 }
2480
2481 void ll_finish_md_op_data(struct md_op_data *op_data)
2482 {
2483         OBD_FREE_PTR(op_data);
2484 }
2485
2486 #ifdef HAVE_SUPEROPS_USE_DENTRY
2487 int ll_show_options(struct seq_file *seq, struct dentry *dentry)
2488 #else
2489 int ll_show_options(struct seq_file *seq, struct vfsmount *vfs)
2490 #endif
2491 {
2492         struct ll_sb_info *sbi;
2493
2494 #ifdef HAVE_SUPEROPS_USE_DENTRY
2495         LASSERT((seq != NULL) && (dentry != NULL));
2496         sbi = ll_s2sbi(dentry->d_sb);
2497 #else
2498         LASSERT((seq != NULL) && (vfs != NULL));
2499         sbi = ll_s2sbi(vfs->mnt_sb);
2500 #endif
2501
2502         if (sbi->ll_flags & LL_SBI_NOLCK)
2503                 seq_puts(seq, ",nolock");
2504
2505         if (sbi->ll_flags & LL_SBI_FLOCK)
2506                 seq_puts(seq, ",flock");
2507
2508         if (sbi->ll_flags & LL_SBI_LOCALFLOCK)
2509                 seq_puts(seq, ",localflock");
2510
2511         if (sbi->ll_flags & LL_SBI_USER_XATTR)
2512                 seq_puts(seq, ",user_xattr");
2513
2514         if (sbi->ll_flags & LL_SBI_LAZYSTATFS)
2515                 seq_puts(seq, ",lazystatfs");
2516
2517         if (sbi->ll_flags & LL_SBI_USER_FID2PATH)
2518                 seq_puts(seq, ",user_fid2path");
2519
2520         RETURN(0);
2521 }
2522
2523 /**
2524  * Get obd name by cmd, and copy out to user space
2525  */
2526 int ll_get_obd_name(struct inode *inode, unsigned int cmd, unsigned long arg)
2527 {
2528         struct ll_sb_info *sbi = ll_i2sbi(inode);
2529         struct obd_device *obd;
2530         ENTRY;
2531
2532         if (cmd == OBD_IOC_GETDTNAME)
2533                 obd = class_exp2obd(sbi->ll_dt_exp);
2534         else if (cmd == OBD_IOC_GETMDNAME)
2535                 obd = class_exp2obd(sbi->ll_md_exp);
2536         else
2537                 RETURN(-EINVAL);
2538
2539         if (!obd)
2540                 RETURN(-ENOENT);
2541
2542         if (copy_to_user((void __user *)arg, obd->obd_name,
2543                          strlen(obd->obd_name) + 1))
2544                 RETURN(-EFAULT);
2545
2546         RETURN(0);
2547 }
2548
2549 /**
2550  * Get lustre file system name by \a sbi. If \a buf is provided(non-NULL), the
2551  * fsname will be returned in this buffer; otherwise, a static buffer will be
2552  * used to store the fsname and returned to caller.
2553  */
2554 char *ll_get_fsname(struct super_block *sb, char *buf, int buflen)
2555 {
2556         static char fsname_static[MTI_NAME_MAXLEN];
2557         struct lustre_sb_info *lsi = s2lsi(sb);
2558         char *ptr;
2559         int len;
2560
2561         if (buf == NULL) {
2562                 /* this means the caller wants to use static buffer
2563                  * and it doesn't care about race. Usually this is
2564                  * in error reporting path */
2565                 buf = fsname_static;
2566                 buflen = sizeof(fsname_static);
2567         }
2568
2569         len = strlen(lsi->lsi_lmd->lmd_profile);
2570         ptr = strrchr(lsi->lsi_lmd->lmd_profile, '-');
2571         if (ptr && (strcmp(ptr, "-client") == 0))
2572                 len -= 7;
2573
2574         if (unlikely(len >= buflen))
2575                 len = buflen - 1;
2576         strncpy(buf, lsi->lsi_lmd->lmd_profile, len);
2577         buf[len] = '\0';
2578
2579         return buf;
2580 }
2581
2582 static char* ll_d_path(struct dentry *dentry, char *buf, int bufsize)
2583 {
2584         char *path = NULL;
2585
2586         struct path p;
2587
2588         p.dentry = dentry;
2589         p.mnt = current->fs->root.mnt;
2590         path_get(&p);
2591         path = d_path(&p, buf, bufsize);
2592         path_put(&p);
2593         return path;
2594 }
2595
2596 void ll_dirty_page_discard_warn(struct page *page, int ioret)
2597 {
2598         char *buf, *path = NULL;
2599         struct dentry *dentry = NULL;
2600         struct inode *inode = page->mapping->host;
2601
2602         /* this can be called inside spin lock so use GFP_ATOMIC. */
2603         buf = (char *)__get_free_page(GFP_ATOMIC);
2604         if (buf != NULL) {
2605                 dentry = d_find_alias(page->mapping->host);
2606                 if (dentry != NULL)
2607                         path = ll_d_path(dentry, buf, PAGE_SIZE);
2608         }
2609
2610         CDEBUG(D_WARNING,
2611                "%s: dirty page discard: %s/fid: "DFID"/%s may get corrupted "
2612                "(rc %d)\n", ll_get_fsname(page->mapping->host->i_sb, NULL, 0),
2613                s2lsi(page->mapping->host->i_sb)->lsi_lmd->lmd_dev,
2614                PFID(ll_inode2fid(inode)),
2615                (path && !IS_ERR(path)) ? path : "", ioret);
2616
2617         if (dentry != NULL)
2618                 dput(dentry);
2619
2620         if (buf != NULL)
2621                 free_page((unsigned long)buf);
2622 }
2623
2624 ssize_t ll_copy_user_md(const struct lov_user_md __user *md,
2625                         struct lov_user_md **kbuf)
2626 {
2627         struct lov_user_md      lum;
2628         ssize_t                 lum_size;
2629         ENTRY;
2630
2631         if (copy_from_user(&lum, md, sizeof(lum)))
2632                 RETURN(-EFAULT);
2633
2634         lum_size = ll_lov_user_md_size(&lum);
2635         if (lum_size < 0)
2636                 RETURN(lum_size);
2637
2638         OBD_ALLOC(*kbuf, lum_size);
2639         if (*kbuf == NULL)
2640                 RETURN(-ENOMEM);
2641
2642         if (copy_from_user(*kbuf, md, lum_size) != 0) {
2643                 OBD_FREE(*kbuf, lum_size);
2644                 RETURN(-EFAULT);
2645         }
2646
2647         RETURN(lum_size);
2648 }
2649
2650 /*
2651  * Compute llite root squash state after a change of root squash
2652  * configuration setting or add/remove of a lnet nid
2653  */
2654 void ll_compute_rootsquash_state(struct ll_sb_info *sbi)
2655 {
2656         struct root_squash_info *squash = &sbi->ll_squash;
2657         int i;
2658         bool matched;
2659         lnet_process_id_t id;
2660
2661         /* Update norootsquash flag */
2662         down_write(&squash->rsi_sem);
2663         if (list_empty(&squash->rsi_nosquash_nids))
2664                 sbi->ll_flags &= ~LL_SBI_NOROOTSQUASH;
2665         else {
2666                 /* Do not apply root squash as soon as one of our NIDs is
2667                  * in the nosquash_nids list */
2668                 matched = false;
2669                 i = 0;
2670                 while (LNetGetId(i++, &id) != -ENOENT) {
2671                         if (LNET_NETTYP(LNET_NIDNET(id.nid)) == LOLND)
2672                                 continue;
2673                         if (cfs_match_nid(id.nid, &squash->rsi_nosquash_nids)) {
2674                                 matched = true;
2675                                 break;
2676                         }
2677                 }
2678                 if (matched)
2679                         sbi->ll_flags |= LL_SBI_NOROOTSQUASH;
2680                 else
2681                         sbi->ll_flags &= ~LL_SBI_NOROOTSQUASH;
2682         }
2683         up_write(&squash->rsi_sem);
2684 }
2685
2686 /**
2687  * Parse linkea content to extract information about a given hardlink
2688  *
2689  * \param[in]   ldata      - Initialized linkea data
2690  * \param[in]   linkno     - Link identifier
2691  * \param[out]  parent_fid - The entry's parent FID
2692  * \param[out]  ln         - Entry name destination buffer
2693  *
2694  * \retval 0 on success
2695  * \retval Appropriate negative error code on failure
2696  */
2697 static int ll_linkea_decode(struct linkea_data *ldata, unsigned int linkno,
2698                             struct lu_fid *parent_fid, struct lu_name *ln)
2699 {
2700         unsigned int    idx;
2701         int             rc;
2702         ENTRY;
2703
2704         rc = linkea_init(ldata);
2705         if (rc < 0)
2706                 RETURN(rc);
2707
2708         if (linkno >= ldata->ld_leh->leh_reccount)
2709                 /* beyond last link */
2710                 RETURN(-ENODATA);
2711
2712         linkea_first_entry(ldata);
2713         for (idx = 0; ldata->ld_lee != NULL; idx++) {
2714                 linkea_entry_unpack(ldata->ld_lee, &ldata->ld_reclen, ln,
2715                                     parent_fid);
2716                 if (idx == linkno)
2717                         break;
2718
2719                 linkea_next_entry(ldata);
2720         }
2721
2722         if (idx < linkno)
2723                 RETURN(-ENODATA);
2724
2725         RETURN(0);
2726 }
2727
2728 /**
2729  * Get parent FID and name of an identified link. Operation is performed for
2730  * a given link number, letting the caller iterate over linkno to list one or
2731  * all links of an entry.
2732  *
2733  * \param[in]     file - File descriptor against which to perform the operation
2734  * \param[in,out] arg  - User-filled structure containing the linkno to operate
2735  *                       on and the available size. It is eventually filled with
2736  *                       the requested information or left untouched on error
2737  *
2738  * \retval - 0 on success
2739  * \retval - Appropriate negative error code on failure
2740  */
2741 int ll_getparent(struct file *file, struct getparent __user *arg)
2742 {
2743         struct dentry           *dentry = file->f_path.dentry;
2744         struct inode            *inode = dentry->d_inode;
2745         struct linkea_data      *ldata;
2746         struct lu_buf            buf = LU_BUF_NULL;
2747         struct lu_name           ln;
2748         struct lu_fid            parent_fid;
2749         __u32                    linkno;
2750         __u32                    name_size;
2751         int                      rc;
2752
2753         ENTRY;
2754
2755         if (!cfs_capable(CFS_CAP_DAC_READ_SEARCH) &&
2756             !(ll_i2sbi(inode)->ll_flags & LL_SBI_USER_FID2PATH))
2757                 RETURN(-EPERM);
2758
2759         if (get_user(name_size, &arg->gp_name_size))
2760                 RETURN(-EFAULT);
2761
2762         if (get_user(linkno, &arg->gp_linkno))
2763                 RETURN(-EFAULT);
2764
2765         if (name_size > PATH_MAX)
2766                 RETURN(-EINVAL);
2767
2768         OBD_ALLOC(ldata, sizeof(*ldata));
2769         if (ldata == NULL)
2770                 RETURN(-ENOMEM);
2771
2772         rc = linkea_data_new(ldata, &buf);
2773         if (rc < 0)
2774                 GOTO(ldata_free, rc);
2775
2776         rc = ll_getxattr(dentry, XATTR_NAME_LINK, buf.lb_buf, buf.lb_len);
2777         if (rc < 0)
2778                 GOTO(lb_free, rc);
2779
2780         rc = ll_linkea_decode(ldata, linkno, &parent_fid, &ln);
2781         if (rc < 0)
2782                 GOTO(lb_free, rc);
2783
2784         if (ln.ln_namelen >= name_size)
2785                 GOTO(lb_free, rc = -EOVERFLOW);
2786
2787         if (copy_to_user(&arg->gp_fid, &parent_fid, sizeof(arg->gp_fid)))
2788                 GOTO(lb_free, rc = -EFAULT);
2789
2790         if (copy_to_user(&arg->gp_name, ln.ln_name, ln.ln_namelen))
2791                 GOTO(lb_free, rc = -EFAULT);
2792
2793         if (put_user('\0', arg->gp_name + ln.ln_namelen))
2794                 GOTO(lb_free, rc = -EFAULT);
2795
2796 lb_free:
2797         lu_buf_free(&buf);
2798 ldata_free:
2799         OBD_FREE(ldata, sizeof(*ldata));
2800
2801         RETURN(rc);
2802 }