4 * Client-side procedure declarations for NFSv4.
6 * Copyright (c) 2002 The Regents of the University of Michigan.
12 * Redistribution and use in source and binary forms, with or without
13 * modification, are permitted provided that the following conditions
16 * 1. Redistributions of source code must retain the above copyright
17 * notice, this list of conditions and the following disclaimer.
18 * 2. Redistributions in binary form must reproduce the above copyright
19 * notice, this list of conditions and the following disclaimer in the
20 * documentation and/or other materials provided with the distribution.
21 * 3. Neither the name of the University nor the names of its
22 * contributors may be used to endorse or promote products derived
23 * from this software without specific prior written permission.
25 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
26 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
27 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
28 * DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
29 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
30 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
31 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
32 * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
33 * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
34 * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
35 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
39 #include <linux/delay.h>
40 #include <linux/errno.h>
41 #include <linux/string.h>
42 #include <linux/ratelimit.h>
43 #include <linux/printk.h>
44 #include <linux/slab.h>
45 #include <linux/sunrpc/clnt.h>
46 #include <linux/nfs.h>
47 #include <linux/nfs4.h>
48 #include <linux/nfs_fs.h>
49 #include <linux/nfs_page.h>
50 #include <linux/nfs_mount.h>
51 #include <linux/namei.h>
52 #include <linux/mount.h>
53 #include <linux/module.h>
54 #include <linux/xattr.h>
55 #include <linux/utsname.h>
56 #include <linux/freezer.h>
57 #include <linux/iversion.h>
60 #include "delegation.h"
66 #include "nfs4idmap.h"
67 #include "nfs4session.h"
70 #include "nfs4trace.h"
72 #define NFSDBG_FACILITY NFSDBG_PROC
74 #define NFS4_BITMASK_SZ 3
76 #define NFS4_POLL_RETRY_MIN (HZ/10)
77 #define NFS4_POLL_RETRY_MAX (15*HZ)
79 /* file attributes which can be mapped to nfs attributes */
80 #define NFS4_VALID_ATTRS (ATTR_MODE \
91 static int _nfs4_recover_proc_open(struct nfs4_opendata *data);
92 static int nfs4_do_fsinfo(struct nfs_server *, struct nfs_fh *, struct nfs_fsinfo *);
93 static void nfs_fixup_referral_attributes(struct nfs_fattr *fattr);
94 static int nfs4_proc_getattr(struct nfs_server *, struct nfs_fh *, struct nfs_fattr *, struct nfs4_label *label, struct inode *inode);
95 static int _nfs4_proc_getattr(struct nfs_server *server, struct nfs_fh *fhandle, struct nfs_fattr *fattr, struct nfs4_label *label, struct inode *inode);
96 static int nfs4_do_setattr(struct inode *inode, struct rpc_cred *cred,
97 struct nfs_fattr *fattr, struct iattr *sattr,
98 struct nfs_open_context *ctx, struct nfs4_label *ilabel,
99 struct nfs4_label *olabel);
100 #ifdef CONFIG_NFS_V4_1
101 static struct rpc_task *_nfs41_proc_sequence(struct nfs_client *clp,
102 struct rpc_cred *cred,
103 struct nfs4_slot *slot,
105 static int nfs41_test_stateid(struct nfs_server *, nfs4_stateid *,
107 static int nfs41_free_stateid(struct nfs_server *, const nfs4_stateid *,
108 struct rpc_cred *, bool);
111 #ifdef CONFIG_NFS_V4_SECURITY_LABEL
112 static inline struct nfs4_label *
113 nfs4_label_init_security(struct inode *dir, struct dentry *dentry,
114 struct iattr *sattr, struct nfs4_label *label)
121 if (nfs_server_capable(dir, NFS_CAP_SECURITY_LABEL) == 0)
124 err = security_dentry_init_security(dentry, sattr->ia_mode,
125 &dentry->d_name, (void **)&label->label, &label->len);
132 nfs4_label_release_security(struct nfs4_label *label)
135 security_release_secctx(label->label, label->len);
137 static inline u32 *nfs4_bitmask(struct nfs_server *server, struct nfs4_label *label)
140 return server->attr_bitmask;
142 return server->attr_bitmask_nl;
145 static inline struct nfs4_label *
146 nfs4_label_init_security(struct inode *dir, struct dentry *dentry,
147 struct iattr *sattr, struct nfs4_label *l)
150 nfs4_label_release_security(struct nfs4_label *label)
153 nfs4_bitmask(struct nfs_server *server, struct nfs4_label *label)
154 { return server->attr_bitmask; }
157 /* Prevent leaks of NFSv4 errors into userland */
158 static int nfs4_map_errors(int err)
163 case -NFS4ERR_RESOURCE:
164 case -NFS4ERR_LAYOUTTRYLATER:
165 case -NFS4ERR_RECALLCONFLICT:
167 case -NFS4ERR_WRONGSEC:
168 case -NFS4ERR_WRONG_CRED:
170 case -NFS4ERR_BADOWNER:
171 case -NFS4ERR_BADNAME:
173 case -NFS4ERR_SHARE_DENIED:
175 case -NFS4ERR_MINOR_VERS_MISMATCH:
176 return -EPROTONOSUPPORT;
177 case -NFS4ERR_FILE_OPEN:
180 dprintk("%s could not handle NFSv4 error %d\n",
188 * This is our standard bitmap for GETATTR requests.
190 const u32 nfs4_fattr_bitmap[3] = {
192 | FATTR4_WORD0_CHANGE
195 | FATTR4_WORD0_FILEID,
197 | FATTR4_WORD1_NUMLINKS
199 | FATTR4_WORD1_OWNER_GROUP
200 | FATTR4_WORD1_RAWDEV
201 | FATTR4_WORD1_SPACE_USED
202 | FATTR4_WORD1_TIME_ACCESS
203 | FATTR4_WORD1_TIME_METADATA
204 | FATTR4_WORD1_TIME_MODIFY
205 | FATTR4_WORD1_MOUNTED_ON_FILEID,
206 #ifdef CONFIG_NFS_V4_SECURITY_LABEL
207 FATTR4_WORD2_SECURITY_LABEL
211 static const u32 nfs4_pnfs_open_bitmap[3] = {
213 | FATTR4_WORD0_CHANGE
216 | FATTR4_WORD0_FILEID,
218 | FATTR4_WORD1_NUMLINKS
220 | FATTR4_WORD1_OWNER_GROUP
221 | FATTR4_WORD1_RAWDEV
222 | FATTR4_WORD1_SPACE_USED
223 | FATTR4_WORD1_TIME_ACCESS
224 | FATTR4_WORD1_TIME_METADATA
225 | FATTR4_WORD1_TIME_MODIFY,
226 FATTR4_WORD2_MDSTHRESHOLD
227 #ifdef CONFIG_NFS_V4_SECURITY_LABEL
228 | FATTR4_WORD2_SECURITY_LABEL
232 static const u32 nfs4_open_noattr_bitmap[3] = {
234 | FATTR4_WORD0_FILEID,
237 const u32 nfs4_statfs_bitmap[3] = {
238 FATTR4_WORD0_FILES_AVAIL
239 | FATTR4_WORD0_FILES_FREE
240 | FATTR4_WORD0_FILES_TOTAL,
241 FATTR4_WORD1_SPACE_AVAIL
242 | FATTR4_WORD1_SPACE_FREE
243 | FATTR4_WORD1_SPACE_TOTAL
246 const u32 nfs4_pathconf_bitmap[3] = {
248 | FATTR4_WORD0_MAXNAME,
252 const u32 nfs4_fsinfo_bitmap[3] = { FATTR4_WORD0_MAXFILESIZE
253 | FATTR4_WORD0_MAXREAD
254 | FATTR4_WORD0_MAXWRITE
255 | FATTR4_WORD0_LEASE_TIME,
256 FATTR4_WORD1_TIME_DELTA
257 | FATTR4_WORD1_FS_LAYOUT_TYPES,
258 FATTR4_WORD2_LAYOUT_BLKSIZE
259 | FATTR4_WORD2_CLONE_BLKSIZE
262 const u32 nfs4_fs_locations_bitmap[3] = {
266 | FATTR4_WORD0_FILEID
267 | FATTR4_WORD0_FS_LOCATIONS,
269 | FATTR4_WORD1_OWNER_GROUP
270 | FATTR4_WORD1_RAWDEV
271 | FATTR4_WORD1_SPACE_USED
272 | FATTR4_WORD1_TIME_ACCESS
273 | FATTR4_WORD1_TIME_METADATA
274 | FATTR4_WORD1_TIME_MODIFY
275 | FATTR4_WORD1_MOUNTED_ON_FILEID,
278 static void nfs4_bitmap_copy_adjust(__u32 *dst, const __u32 *src,
281 unsigned long cache_validity;
283 memcpy(dst, src, NFS4_BITMASK_SZ*sizeof(*dst));
284 if (!inode || !nfs4_have_delegation(inode, FMODE_READ))
287 cache_validity = READ_ONCE(NFS_I(inode)->cache_validity);
288 if (!(cache_validity & NFS_INO_REVAL_FORCED))
289 cache_validity &= ~(NFS_INO_INVALID_CHANGE
290 | NFS_INO_INVALID_SIZE);
292 if (!(cache_validity & NFS_INO_INVALID_SIZE))
293 dst[0] &= ~FATTR4_WORD0_SIZE;
295 if (!(cache_validity & NFS_INO_INVALID_CHANGE))
296 dst[0] &= ~FATTR4_WORD0_CHANGE;
299 static void nfs4_bitmap_copy_adjust_setattr(__u32 *dst,
300 const __u32 *src, struct inode *inode)
302 nfs4_bitmap_copy_adjust(dst, src, inode);
305 static void nfs4_setup_readdir(u64 cookie, __be32 *verifier, struct dentry *dentry,
306 struct nfs4_readdir_arg *readdir)
308 unsigned int attrs = FATTR4_WORD0_FILEID | FATTR4_WORD0_TYPE;
312 readdir->cookie = cookie;
313 memcpy(&readdir->verifier, verifier, sizeof(readdir->verifier));
318 memset(&readdir->verifier, 0, sizeof(readdir->verifier));
323 * NFSv4 servers do not return entries for '.' and '..'
324 * Therefore, we fake these entries here. We let '.'
325 * have cookie 0 and '..' have cookie 1. Note that
326 * when talking to the server, we always send cookie 0
329 start = p = kmap_atomic(*readdir->pages);
332 *p++ = xdr_one; /* next */
333 *p++ = xdr_zero; /* cookie, first word */
334 *p++ = xdr_one; /* cookie, second word */
335 *p++ = xdr_one; /* entry len */
336 memcpy(p, ".\0\0\0", 4); /* entry */
338 *p++ = xdr_one; /* bitmap length */
339 *p++ = htonl(attrs); /* bitmap */
340 *p++ = htonl(12); /* attribute buffer length */
341 *p++ = htonl(NF4DIR);
342 p = xdr_encode_hyper(p, NFS_FILEID(d_inode(dentry)));
345 *p++ = xdr_one; /* next */
346 *p++ = xdr_zero; /* cookie, first word */
347 *p++ = xdr_two; /* cookie, second word */
348 *p++ = xdr_two; /* entry len */
349 memcpy(p, "..\0\0", 4); /* entry */
351 *p++ = xdr_one; /* bitmap length */
352 *p++ = htonl(attrs); /* bitmap */
353 *p++ = htonl(12); /* attribute buffer length */
354 *p++ = htonl(NF4DIR);
355 p = xdr_encode_hyper(p, NFS_FILEID(d_inode(dentry->d_parent)));
357 readdir->pgbase = (char *)p - (char *)start;
358 readdir->count -= readdir->pgbase;
359 kunmap_atomic(start);
362 static void nfs4_test_and_free_stateid(struct nfs_server *server,
363 nfs4_stateid *stateid,
364 struct rpc_cred *cred)
366 const struct nfs4_minor_version_ops *ops = server->nfs_client->cl_mvops;
368 ops->test_and_free_expired(server, stateid, cred);
371 static void __nfs4_free_revoked_stateid(struct nfs_server *server,
372 nfs4_stateid *stateid,
373 struct rpc_cred *cred)
375 stateid->type = NFS4_REVOKED_STATEID_TYPE;
376 nfs4_test_and_free_stateid(server, stateid, cred);
379 static void nfs4_free_revoked_stateid(struct nfs_server *server,
380 const nfs4_stateid *stateid,
381 struct rpc_cred *cred)
385 nfs4_stateid_copy(&tmp, stateid);
386 __nfs4_free_revoked_stateid(server, &tmp, cred);
389 static long nfs4_update_delay(long *timeout)
393 return NFS4_POLL_RETRY_MAX;
395 *timeout = NFS4_POLL_RETRY_MIN;
396 if (*timeout > NFS4_POLL_RETRY_MAX)
397 *timeout = NFS4_POLL_RETRY_MAX;
403 static int nfs4_delay(struct rpc_clnt *clnt, long *timeout)
409 freezable_schedule_timeout_killable_unsafe(
410 nfs4_update_delay(timeout));
411 if (fatal_signal_pending(current))
416 /* This is the error handling routine for processes that are allowed
419 static int nfs4_do_handle_exception(struct nfs_server *server,
420 int errorcode, struct nfs4_exception *exception)
422 struct nfs_client *clp = server->nfs_client;
423 struct nfs4_state *state = exception->state;
424 const nfs4_stateid *stateid = exception->stateid;
425 struct inode *inode = exception->inode;
428 exception->delay = 0;
429 exception->recovering = 0;
430 exception->retry = 0;
432 if (stateid == NULL && state != NULL)
433 stateid = &state->stateid;
438 case -NFS4ERR_BADHANDLE:
440 if (inode != NULL && S_ISREG(inode->i_mode))
441 pnfs_destroy_layout(NFS_I(inode));
443 case -NFS4ERR_DELEG_REVOKED:
444 case -NFS4ERR_ADMIN_REVOKED:
445 case -NFS4ERR_EXPIRED:
446 case -NFS4ERR_BAD_STATEID:
447 if (inode != NULL && stateid != NULL) {
448 nfs_inode_find_state_and_recover(inode,
450 goto wait_on_recovery;
453 case -NFS4ERR_OPENMODE:
457 err = nfs_async_inode_return_delegation(inode,
460 goto wait_on_recovery;
461 if (stateid != NULL && stateid->type == NFS4_DELEGATION_STATEID_TYPE) {
462 exception->retry = 1;
468 ret = nfs4_schedule_stateid_recovery(server, state);
471 goto wait_on_recovery;
472 case -NFS4ERR_STALE_STATEID:
473 case -NFS4ERR_STALE_CLIENTID:
474 nfs4_schedule_lease_recovery(clp);
475 goto wait_on_recovery;
477 ret = nfs4_schedule_migration_recovery(server);
480 goto wait_on_recovery;
481 case -NFS4ERR_LEASE_MOVED:
482 nfs4_schedule_lease_moved_recovery(clp);
483 goto wait_on_recovery;
484 #if defined(CONFIG_NFS_V4_1)
485 case -NFS4ERR_BADSESSION:
486 case -NFS4ERR_BADSLOT:
487 case -NFS4ERR_BAD_HIGH_SLOT:
488 case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
489 case -NFS4ERR_DEADSESSION:
490 case -NFS4ERR_SEQ_FALSE_RETRY:
491 case -NFS4ERR_SEQ_MISORDERED:
492 dprintk("%s ERROR: %d Reset session\n", __func__,
494 nfs4_schedule_session_recovery(clp->cl_session, errorcode);
495 goto wait_on_recovery;
496 #endif /* defined(CONFIG_NFS_V4_1) */
497 case -NFS4ERR_FILE_OPEN:
498 if (exception->timeout > HZ) {
499 /* We have retried a decent amount, time to
507 nfs_inc_server_stats(server, NFSIOS_DELAY);
510 case -NFS4ERR_LAYOUTTRYLATER:
511 case -NFS4ERR_RECALLCONFLICT:
512 exception->delay = 1;
515 case -NFS4ERR_RETRY_UNCACHED_REP:
516 case -NFS4ERR_OLD_STATEID:
517 exception->retry = 1;
519 case -NFS4ERR_BADOWNER:
520 /* The following works around a Linux server bug! */
521 case -NFS4ERR_BADNAME:
522 if (server->caps & NFS_CAP_UIDGID_NOMAP) {
523 server->caps &= ~NFS_CAP_UIDGID_NOMAP;
524 exception->retry = 1;
525 printk(KERN_WARNING "NFS: v4 server %s "
526 "does not accept raw "
528 "Reenabling the idmapper.\n",
529 server->nfs_client->cl_hostname);
532 /* We failed to handle the error */
533 return nfs4_map_errors(ret);
535 exception->recovering = 1;
539 /* This is the error handling routine for processes that are allowed
542 int nfs4_handle_exception(struct nfs_server *server, int errorcode, struct nfs4_exception *exception)
544 struct nfs_client *clp = server->nfs_client;
547 ret = nfs4_do_handle_exception(server, errorcode, exception);
548 if (exception->delay) {
549 ret = nfs4_delay(server->client, &exception->timeout);
552 if (exception->recovering) {
553 ret = nfs4_wait_clnt_recover(clp);
554 if (test_bit(NFS_MIG_FAILED, &server->mig_status))
561 exception->retry = 1;
566 nfs4_async_handle_exception(struct rpc_task *task, struct nfs_server *server,
567 int errorcode, struct nfs4_exception *exception)
569 struct nfs_client *clp = server->nfs_client;
572 ret = nfs4_do_handle_exception(server, errorcode, exception);
573 if (exception->delay) {
574 rpc_delay(task, nfs4_update_delay(&exception->timeout));
577 if (exception->recovering) {
578 rpc_sleep_on(&clp->cl_rpcwaitq, task, NULL);
579 if (test_bit(NFS4CLNT_MANAGER_RUNNING, &clp->cl_state) == 0)
580 rpc_wake_up_queued_task(&clp->cl_rpcwaitq, task);
583 if (test_bit(NFS_MIG_FAILED, &server->mig_status))
588 exception->retry = 1;
590 * For NFS4ERR_MOVED, the client transport will need to
591 * be recomputed after migration recovery has completed.
593 if (errorcode == -NFS4ERR_MOVED)
594 rpc_task_release_transport(task);
600 nfs4_async_handle_error(struct rpc_task *task, struct nfs_server *server,
601 struct nfs4_state *state, long *timeout)
603 struct nfs4_exception exception = {
607 if (task->tk_status >= 0)
610 exception.timeout = *timeout;
611 task->tk_status = nfs4_async_handle_exception(task, server,
614 if (exception.delay && timeout)
615 *timeout = exception.timeout;
622 * Return 'true' if 'clp' is using an rpc_client that is integrity protected
623 * or 'false' otherwise.
625 static bool _nfs4_is_integrity_protected(struct nfs_client *clp)
627 rpc_authflavor_t flavor = clp->cl_rpcclient->cl_auth->au_flavor;
628 return (flavor == RPC_AUTH_GSS_KRB5I) || (flavor == RPC_AUTH_GSS_KRB5P);
631 static void do_renew_lease(struct nfs_client *clp, unsigned long timestamp)
633 spin_lock(&clp->cl_lock);
634 if (time_before(clp->cl_last_renewal,timestamp))
635 clp->cl_last_renewal = timestamp;
636 spin_unlock(&clp->cl_lock);
639 static void renew_lease(const struct nfs_server *server, unsigned long timestamp)
641 struct nfs_client *clp = server->nfs_client;
643 if (!nfs4_has_session(clp))
644 do_renew_lease(clp, timestamp);
647 struct nfs4_call_sync_data {
648 const struct nfs_server *seq_server;
649 struct nfs4_sequence_args *seq_args;
650 struct nfs4_sequence_res *seq_res;
653 void nfs4_init_sequence(struct nfs4_sequence_args *args,
654 struct nfs4_sequence_res *res, int cache_reply,
657 args->sa_slot = NULL;
658 args->sa_cache_this = cache_reply;
659 args->sa_privileged = privileged;
664 static void nfs40_sequence_free_slot(struct nfs4_sequence_res *res)
666 struct nfs4_slot *slot = res->sr_slot;
667 struct nfs4_slot_table *tbl;
670 spin_lock(&tbl->slot_tbl_lock);
671 if (!nfs41_wake_and_assign_slot(tbl, slot))
672 nfs4_free_slot(tbl, slot);
673 spin_unlock(&tbl->slot_tbl_lock);
678 static int nfs40_sequence_done(struct rpc_task *task,
679 struct nfs4_sequence_res *res)
681 if (res->sr_slot != NULL)
682 nfs40_sequence_free_slot(res);
686 #if defined(CONFIG_NFS_V4_1)
688 static void nfs41_release_slot(struct nfs4_slot *slot)
690 struct nfs4_session *session;
691 struct nfs4_slot_table *tbl;
692 bool send_new_highest_used_slotid = false;
697 session = tbl->session;
699 /* Bump the slot sequence number */
704 spin_lock(&tbl->slot_tbl_lock);
705 /* Be nice to the server: try to ensure that the last transmitted
706 * value for highest_user_slotid <= target_highest_slotid
708 if (tbl->highest_used_slotid > tbl->target_highest_slotid)
709 send_new_highest_used_slotid = true;
711 if (nfs41_wake_and_assign_slot(tbl, slot)) {
712 send_new_highest_used_slotid = false;
715 nfs4_free_slot(tbl, slot);
717 if (tbl->highest_used_slotid != NFS4_NO_SLOT)
718 send_new_highest_used_slotid = false;
720 spin_unlock(&tbl->slot_tbl_lock);
721 if (send_new_highest_used_slotid)
722 nfs41_notify_server(session->clp);
723 if (waitqueue_active(&tbl->slot_waitq))
724 wake_up_all(&tbl->slot_waitq);
727 static void nfs41_sequence_free_slot(struct nfs4_sequence_res *res)
729 nfs41_release_slot(res->sr_slot);
733 static int nfs41_sequence_process(struct rpc_task *task,
734 struct nfs4_sequence_res *res)
736 struct nfs4_session *session;
737 struct nfs4_slot *slot = res->sr_slot;
738 struct nfs_client *clp;
739 bool interrupted = false;
744 /* don't increment the sequence number if the task wasn't sent */
745 if (!RPC_WAS_SENT(task))
748 session = slot->table->session;
750 if (slot->interrupted) {
751 if (res->sr_status != -NFS4ERR_DELAY)
752 slot->interrupted = 0;
756 trace_nfs4_sequence_done(session, res);
757 /* Check the SEQUENCE operation status */
758 switch (res->sr_status) {
760 /* Update the slot's sequence and clientid lease timer */
763 do_renew_lease(clp, res->sr_timestamp);
764 /* Check sequence flags */
765 nfs41_handle_sequence_flag_errors(clp, res->sr_status_flags,
767 nfs41_update_target_slotid(slot->table, slot, res);
771 * sr_status remains 1 if an RPC level error occurred.
772 * The server may or may not have processed the sequence
774 * Mark the slot as having hosted an interrupted RPC call.
776 slot->interrupted = 1;
779 /* The server detected a resend of the RPC call and
780 * returned NFS4ERR_DELAY as per Section 2.10.6.2
783 dprintk("%s: slot=%u seq=%u: Operation in progress\n",
788 case -NFS4ERR_RETRY_UNCACHED_REP:
789 case -NFS4ERR_SEQ_FALSE_RETRY:
791 * The server thinks we tried to replay a request.
792 * Retry the call after bumping the sequence ID.
795 case -NFS4ERR_BADSLOT:
797 * The slot id we used was probably retired. Try again
798 * using a different slot id.
800 if (slot->slot_nr < slot->table->target_highest_slotid)
801 goto session_recover;
803 case -NFS4ERR_SEQ_MISORDERED:
805 * Was the last operation on this sequence interrupted?
806 * If so, retry after bumping the sequence number.
811 * Could this slot have been previously retired?
812 * If so, then the server may be expecting seq_nr = 1!
814 if (slot->seq_nr != 1) {
818 goto session_recover;
820 /* Just update the slot sequence no. */
824 /* The session may be reset by one of the error handlers. */
825 dprintk("%s: Error %d free the slot \n", __func__, res->sr_status);
829 nfs4_schedule_session_recovery(session, res->sr_status);
834 if (rpc_restart_call_prepare(task)) {
835 nfs41_sequence_free_slot(res);
841 if (!rpc_restart_call(task))
843 rpc_delay(task, NFS4_POLL_RETRY_MAX);
847 int nfs41_sequence_done(struct rpc_task *task, struct nfs4_sequence_res *res)
849 if (!nfs41_sequence_process(task, res))
851 if (res->sr_slot != NULL)
852 nfs41_sequence_free_slot(res);
856 EXPORT_SYMBOL_GPL(nfs41_sequence_done);
858 static int nfs4_sequence_process(struct rpc_task *task, struct nfs4_sequence_res *res)
860 if (res->sr_slot == NULL)
862 if (res->sr_slot->table->session != NULL)
863 return nfs41_sequence_process(task, res);
864 return nfs40_sequence_done(task, res);
867 static void nfs4_sequence_free_slot(struct nfs4_sequence_res *res)
869 if (res->sr_slot != NULL) {
870 if (res->sr_slot->table->session != NULL)
871 nfs41_sequence_free_slot(res);
873 nfs40_sequence_free_slot(res);
877 int nfs4_sequence_done(struct rpc_task *task, struct nfs4_sequence_res *res)
879 if (res->sr_slot == NULL)
881 if (!res->sr_slot->table->session)
882 return nfs40_sequence_done(task, res);
883 return nfs41_sequence_done(task, res);
885 EXPORT_SYMBOL_GPL(nfs4_sequence_done);
887 static void nfs41_call_sync_prepare(struct rpc_task *task, void *calldata)
889 struct nfs4_call_sync_data *data = calldata;
891 dprintk("--> %s data->seq_server %p\n", __func__, data->seq_server);
893 nfs4_setup_sequence(data->seq_server->nfs_client,
894 data->seq_args, data->seq_res, task);
897 static void nfs41_call_sync_done(struct rpc_task *task, void *calldata)
899 struct nfs4_call_sync_data *data = calldata;
901 nfs41_sequence_done(task, data->seq_res);
904 static const struct rpc_call_ops nfs41_call_sync_ops = {
905 .rpc_call_prepare = nfs41_call_sync_prepare,
906 .rpc_call_done = nfs41_call_sync_done,
910 nfs4_sequence_process_interrupted(struct nfs_client *client,
911 struct nfs4_slot *slot, struct rpc_cred *cred)
913 struct rpc_task *task;
915 task = _nfs41_proc_sequence(client, cred, slot, true);
917 rpc_put_task_async(task);
920 #else /* !CONFIG_NFS_V4_1 */
922 static int nfs4_sequence_process(struct rpc_task *task, struct nfs4_sequence_res *res)
924 return nfs40_sequence_done(task, res);
927 static void nfs4_sequence_free_slot(struct nfs4_sequence_res *res)
929 if (res->sr_slot != NULL)
930 nfs40_sequence_free_slot(res);
933 int nfs4_sequence_done(struct rpc_task *task,
934 struct nfs4_sequence_res *res)
936 return nfs40_sequence_done(task, res);
938 EXPORT_SYMBOL_GPL(nfs4_sequence_done);
941 nfs4_sequence_process_interrupted(struct nfs_client *client,
942 struct nfs4_slot *slot, struct rpc_cred *cred)
945 slot->interrupted = 0;
948 #endif /* !CONFIG_NFS_V4_1 */
951 void nfs4_sequence_attach_slot(struct nfs4_sequence_args *args,
952 struct nfs4_sequence_res *res,
953 struct nfs4_slot *slot)
957 slot->privileged = args->sa_privileged ? 1 : 0;
958 args->sa_slot = slot;
961 res->sr_timestamp = jiffies;
962 res->sr_status_flags = 0;
967 int nfs4_setup_sequence(struct nfs_client *client,
968 struct nfs4_sequence_args *args,
969 struct nfs4_sequence_res *res,
970 struct rpc_task *task)
972 struct nfs4_session *session = nfs4_get_session(client);
973 struct nfs4_slot_table *tbl = client->cl_slot_tbl;
974 struct nfs4_slot *slot;
976 /* slot already allocated? */
977 if (res->sr_slot != NULL)
981 tbl = &session->fc_slot_table;
982 task->tk_timeout = 0;
986 spin_lock(&tbl->slot_tbl_lock);
987 /* The state manager will wait until the slot table is empty */
988 if (nfs4_slot_tbl_draining(tbl) && !args->sa_privileged)
991 slot = nfs4_alloc_slot(tbl);
993 /* Try again in 1/4 second */
994 if (slot == ERR_PTR(-ENOMEM))
995 task->tk_timeout = HZ >> 2;
998 spin_unlock(&tbl->slot_tbl_lock);
1000 if (likely(!slot->interrupted))
1002 nfs4_sequence_process_interrupted(client,
1003 slot, task->tk_msg.rpc_cred);
1006 nfs4_sequence_attach_slot(args, res, slot);
1008 trace_nfs4_setup_sequence(session, args);
1010 rpc_call_start(task);
1014 if (args->sa_privileged)
1015 rpc_sleep_on_priority(&tbl->slot_tbl_waitq, task,
1016 NULL, RPC_PRIORITY_PRIVILEGED);
1018 rpc_sleep_on(&tbl->slot_tbl_waitq, task, NULL);
1019 spin_unlock(&tbl->slot_tbl_lock);
1022 EXPORT_SYMBOL_GPL(nfs4_setup_sequence);
1024 static void nfs40_call_sync_prepare(struct rpc_task *task, void *calldata)
1026 struct nfs4_call_sync_data *data = calldata;
1027 nfs4_setup_sequence(data->seq_server->nfs_client,
1028 data->seq_args, data->seq_res, task);
1031 static void nfs40_call_sync_done(struct rpc_task *task, void *calldata)
1033 struct nfs4_call_sync_data *data = calldata;
1034 nfs4_sequence_done(task, data->seq_res);
1037 static const struct rpc_call_ops nfs40_call_sync_ops = {
1038 .rpc_call_prepare = nfs40_call_sync_prepare,
1039 .rpc_call_done = nfs40_call_sync_done,
1042 static int nfs4_call_sync_sequence(struct rpc_clnt *clnt,
1043 struct nfs_server *server,
1044 struct rpc_message *msg,
1045 struct nfs4_sequence_args *args,
1046 struct nfs4_sequence_res *res)
1049 struct rpc_task *task;
1050 struct nfs_client *clp = server->nfs_client;
1051 struct nfs4_call_sync_data data = {
1052 .seq_server = server,
1056 struct rpc_task_setup task_setup = {
1059 .callback_ops = clp->cl_mvops->call_sync_ops,
1060 .callback_data = &data
1063 task = rpc_run_task(&task_setup);
1065 ret = PTR_ERR(task);
1067 ret = task->tk_status;
1073 int nfs4_call_sync(struct rpc_clnt *clnt,
1074 struct nfs_server *server,
1075 struct rpc_message *msg,
1076 struct nfs4_sequence_args *args,
1077 struct nfs4_sequence_res *res,
1080 nfs4_init_sequence(args, res, cache_reply, 0);
1081 return nfs4_call_sync_sequence(clnt, server, msg, args, res);
1085 nfs4_inc_nlink_locked(struct inode *inode)
1087 NFS_I(inode)->cache_validity |= NFS_INO_INVALID_OTHER;
1092 nfs4_dec_nlink_locked(struct inode *inode)
1094 NFS_I(inode)->cache_validity |= NFS_INO_INVALID_OTHER;
1099 update_changeattr_locked(struct inode *dir, struct nfs4_change_info *cinfo,
1100 unsigned long timestamp, unsigned long cache_validity)
1102 struct nfs_inode *nfsi = NFS_I(dir);
1104 nfsi->cache_validity |= NFS_INO_INVALID_CTIME
1105 | NFS_INO_INVALID_MTIME
1106 | NFS_INO_INVALID_DATA
1108 if (cinfo->atomic && cinfo->before == inode_peek_iversion_raw(dir)) {
1109 nfsi->cache_validity &= ~NFS_INO_REVAL_PAGECACHE;
1110 nfsi->attrtimeo_timestamp = jiffies;
1112 nfs_force_lookup_revalidate(dir);
1113 if (cinfo->before != inode_peek_iversion_raw(dir))
1114 nfsi->cache_validity |= NFS_INO_INVALID_ACCESS |
1115 NFS_INO_INVALID_ACL;
1117 inode_set_iversion_raw(dir, cinfo->after);
1118 nfsi->read_cache_jiffies = timestamp;
1119 nfsi->attr_gencount = nfs_inc_attr_generation_counter();
1120 nfsi->cache_validity &= ~NFS_INO_INVALID_CHANGE;
1121 nfs_fscache_invalidate(dir);
1125 update_changeattr(struct inode *dir, struct nfs4_change_info *cinfo,
1126 unsigned long timestamp, unsigned long cache_validity)
1128 spin_lock(&dir->i_lock);
1129 update_changeattr_locked(dir, cinfo, timestamp, cache_validity);
1130 spin_unlock(&dir->i_lock);
1133 struct nfs4_open_createattrs {
1134 struct nfs4_label *label;
1135 struct iattr *sattr;
1136 const __u32 verf[2];
1139 static bool nfs4_clear_cap_atomic_open_v1(struct nfs_server *server,
1140 int err, struct nfs4_exception *exception)
1144 if (!(server->caps & NFS_CAP_ATOMIC_OPEN_V1))
1146 server->caps &= ~NFS_CAP_ATOMIC_OPEN_V1;
1147 exception->retry = 1;
1152 nfs4_map_atomic_open_share(struct nfs_server *server,
1153 fmode_t fmode, int openflags)
1157 switch (fmode & (FMODE_READ | FMODE_WRITE)) {
1159 res = NFS4_SHARE_ACCESS_READ;
1162 res = NFS4_SHARE_ACCESS_WRITE;
1164 case FMODE_READ|FMODE_WRITE:
1165 res = NFS4_SHARE_ACCESS_BOTH;
1167 if (!(server->caps & NFS_CAP_ATOMIC_OPEN_V1))
1169 /* Want no delegation if we're using O_DIRECT */
1170 if (openflags & O_DIRECT)
1171 res |= NFS4_SHARE_WANT_NO_DELEG;
1176 static enum open_claim_type4
1177 nfs4_map_atomic_open_claim(struct nfs_server *server,
1178 enum open_claim_type4 claim)
1180 if (server->caps & NFS_CAP_ATOMIC_OPEN_V1)
1185 case NFS4_OPEN_CLAIM_FH:
1186 return NFS4_OPEN_CLAIM_NULL;
1187 case NFS4_OPEN_CLAIM_DELEG_CUR_FH:
1188 return NFS4_OPEN_CLAIM_DELEGATE_CUR;
1189 case NFS4_OPEN_CLAIM_DELEG_PREV_FH:
1190 return NFS4_OPEN_CLAIM_DELEGATE_PREV;
1194 static void nfs4_init_opendata_res(struct nfs4_opendata *p)
1196 p->o_res.f_attr = &p->f_attr;
1197 p->o_res.f_label = p->f_label;
1198 p->o_res.seqid = p->o_arg.seqid;
1199 p->c_res.seqid = p->c_arg.seqid;
1200 p->o_res.server = p->o_arg.server;
1201 p->o_res.access_request = p->o_arg.access;
1202 nfs_fattr_init(&p->f_attr);
1203 nfs_fattr_init_names(&p->f_attr, &p->owner_name, &p->group_name);
1206 static struct nfs4_opendata *nfs4_opendata_alloc(struct dentry *dentry,
1207 struct nfs4_state_owner *sp, fmode_t fmode, int flags,
1208 const struct nfs4_open_createattrs *c,
1209 enum open_claim_type4 claim,
1212 struct dentry *parent = dget_parent(dentry);
1213 struct inode *dir = d_inode(parent);
1214 struct nfs_server *server = NFS_SERVER(dir);
1215 struct nfs_seqid *(*alloc_seqid)(struct nfs_seqid_counter *, gfp_t);
1216 struct nfs4_label *label = (c != NULL) ? c->label : NULL;
1217 struct nfs4_opendata *p;
1219 p = kzalloc(sizeof(*p), gfp_mask);
1223 p->f_label = nfs4_label_alloc(server, gfp_mask);
1224 if (IS_ERR(p->f_label))
1227 p->a_label = nfs4_label_alloc(server, gfp_mask);
1228 if (IS_ERR(p->a_label))
1231 alloc_seqid = server->nfs_client->cl_mvops->alloc_seqid;
1232 p->o_arg.seqid = alloc_seqid(&sp->so_seqid, gfp_mask);
1233 if (IS_ERR(p->o_arg.seqid))
1234 goto err_free_label;
1235 nfs_sb_active(dentry->d_sb);
1236 p->dentry = dget(dentry);
1239 atomic_inc(&sp->so_count);
1240 p->o_arg.open_flags = flags;
1241 p->o_arg.fmode = fmode & (FMODE_READ|FMODE_WRITE);
1242 p->o_arg.umask = current_umask();
1243 p->o_arg.claim = nfs4_map_atomic_open_claim(server, claim);
1244 p->o_arg.share_access = nfs4_map_atomic_open_share(server,
1246 /* don't put an ACCESS op in OPEN compound if O_EXCL, because ACCESS
1247 * will return permission denied for all bits until close */
1248 if (!(flags & O_EXCL)) {
1249 /* ask server to check for all possible rights as results
1251 switch (p->o_arg.claim) {
1254 case NFS4_OPEN_CLAIM_NULL:
1255 case NFS4_OPEN_CLAIM_FH:
1256 p->o_arg.access = NFS4_ACCESS_READ |
1257 NFS4_ACCESS_MODIFY |
1258 NFS4_ACCESS_EXTEND |
1259 NFS4_ACCESS_EXECUTE;
1262 p->o_arg.clientid = server->nfs_client->cl_clientid;
1263 p->o_arg.id.create_time = ktime_to_ns(sp->so_seqid.create_time);
1264 p->o_arg.id.uniquifier = sp->so_seqid.owner_id;
1265 p->o_arg.name = &dentry->d_name;
1266 p->o_arg.server = server;
1267 p->o_arg.bitmask = nfs4_bitmask(server, label);
1268 p->o_arg.open_bitmap = &nfs4_fattr_bitmap[0];
1269 p->o_arg.label = nfs4_label_copy(p->a_label, label);
1270 switch (p->o_arg.claim) {
1271 case NFS4_OPEN_CLAIM_NULL:
1272 case NFS4_OPEN_CLAIM_DELEGATE_CUR:
1273 case NFS4_OPEN_CLAIM_DELEGATE_PREV:
1274 p->o_arg.fh = NFS_FH(dir);
1276 case NFS4_OPEN_CLAIM_PREVIOUS:
1277 case NFS4_OPEN_CLAIM_FH:
1278 case NFS4_OPEN_CLAIM_DELEG_CUR_FH:
1279 case NFS4_OPEN_CLAIM_DELEG_PREV_FH:
1280 p->o_arg.fh = NFS_FH(d_inode(dentry));
1282 if (c != NULL && c->sattr != NULL && c->sattr->ia_valid != 0) {
1283 p->o_arg.u.attrs = &p->attrs;
1284 memcpy(&p->attrs, c->sattr, sizeof(p->attrs));
1286 memcpy(p->o_arg.u.verifier.data, c->verf,
1287 sizeof(p->o_arg.u.verifier.data));
1289 p->c_arg.fh = &p->o_res.fh;
1290 p->c_arg.stateid = &p->o_res.stateid;
1291 p->c_arg.seqid = p->o_arg.seqid;
1292 nfs4_init_opendata_res(p);
1293 kref_init(&p->kref);
1297 nfs4_label_free(p->a_label);
1299 nfs4_label_free(p->f_label);
1307 static void nfs4_opendata_free(struct kref *kref)
1309 struct nfs4_opendata *p = container_of(kref,
1310 struct nfs4_opendata, kref);
1311 struct super_block *sb = p->dentry->d_sb;
1313 nfs4_lgopen_release(p->lgp);
1314 nfs_free_seqid(p->o_arg.seqid);
1315 nfs4_sequence_free_slot(&p->o_res.seq_res);
1316 if (p->state != NULL)
1317 nfs4_put_open_state(p->state);
1318 nfs4_put_state_owner(p->owner);
1320 nfs4_label_free(p->a_label);
1321 nfs4_label_free(p->f_label);
1325 nfs_sb_deactive(sb);
1326 nfs_fattr_free_names(&p->f_attr);
1327 kfree(p->f_attr.mdsthreshold);
1331 static void nfs4_opendata_put(struct nfs4_opendata *p)
1334 kref_put(&p->kref, nfs4_opendata_free);
1337 static bool nfs4_mode_match_open_stateid(struct nfs4_state *state,
1340 switch(fmode & (FMODE_READ|FMODE_WRITE)) {
1341 case FMODE_READ|FMODE_WRITE:
1342 return state->n_rdwr != 0;
1344 return state->n_wronly != 0;
1346 return state->n_rdonly != 0;
1352 static int can_open_cached(struct nfs4_state *state, fmode_t mode, int open_mode)
1356 if (open_mode & (O_EXCL|O_TRUNC))
1358 switch (mode & (FMODE_READ|FMODE_WRITE)) {
1360 ret |= test_bit(NFS_O_RDONLY_STATE, &state->flags) != 0
1361 && state->n_rdonly != 0;
1364 ret |= test_bit(NFS_O_WRONLY_STATE, &state->flags) != 0
1365 && state->n_wronly != 0;
1367 case FMODE_READ|FMODE_WRITE:
1368 ret |= test_bit(NFS_O_RDWR_STATE, &state->flags) != 0
1369 && state->n_rdwr != 0;
1375 static int can_open_delegated(struct nfs_delegation *delegation, fmode_t fmode,
1376 enum open_claim_type4 claim)
1378 if (delegation == NULL)
1380 if ((delegation->type & fmode) != fmode)
1382 if (test_bit(NFS_DELEGATION_RETURNING, &delegation->flags))
1385 case NFS4_OPEN_CLAIM_NULL:
1386 case NFS4_OPEN_CLAIM_FH:
1388 case NFS4_OPEN_CLAIM_PREVIOUS:
1389 if (!test_bit(NFS_DELEGATION_NEED_RECLAIM, &delegation->flags))
1395 nfs_mark_delegation_referenced(delegation);
1399 static void update_open_stateflags(struct nfs4_state *state, fmode_t fmode)
1408 case FMODE_READ|FMODE_WRITE:
1411 nfs4_state_set_mode_locked(state, state->state | fmode);
1414 #ifdef CONFIG_NFS_V4_1
1415 static bool nfs_open_stateid_recover_openmode(struct nfs4_state *state)
1417 if (state->n_rdonly && !test_bit(NFS_O_RDONLY_STATE, &state->flags))
1419 if (state->n_wronly && !test_bit(NFS_O_WRONLY_STATE, &state->flags))
1421 if (state->n_rdwr && !test_bit(NFS_O_RDWR_STATE, &state->flags))
1425 #endif /* CONFIG_NFS_V4_1 */
1427 static void nfs_state_log_update_open_stateid(struct nfs4_state *state)
1429 if (test_and_clear_bit(NFS_STATE_CHANGE_WAIT, &state->flags))
1430 wake_up_all(&state->waitq);
1433 static void nfs_state_log_out_of_order_open_stateid(struct nfs4_state *state,
1434 const nfs4_stateid *stateid)
1436 u32 state_seqid = be32_to_cpu(state->open_stateid.seqid);
1437 u32 stateid_seqid = be32_to_cpu(stateid->seqid);
1439 if (stateid_seqid == state_seqid + 1U ||
1440 (stateid_seqid == 1U && state_seqid == 0xffffffffU))
1441 nfs_state_log_update_open_stateid(state);
1443 set_bit(NFS_STATE_CHANGE_WAIT, &state->flags);
1446 static void nfs_test_and_clear_all_open_stateid(struct nfs4_state *state)
1448 struct nfs_client *clp = state->owner->so_server->nfs_client;
1449 bool need_recover = false;
1451 if (test_and_clear_bit(NFS_O_RDONLY_STATE, &state->flags) && state->n_rdonly)
1452 need_recover = true;
1453 if (test_and_clear_bit(NFS_O_WRONLY_STATE, &state->flags) && state->n_wronly)
1454 need_recover = true;
1455 if (test_and_clear_bit(NFS_O_RDWR_STATE, &state->flags) && state->n_rdwr)
1456 need_recover = true;
1458 nfs4_state_mark_reclaim_nograce(clp, state);
1462 * Check for whether or not the caller may update the open stateid
1463 * to the value passed in by stateid.
1465 * Note: This function relies heavily on the server implementing
1466 * RFC7530 Section 9.1.4.2, and RFC5661 Section 8.2.2
1468 * i.e. The stateid seqids have to be initialised to 1, and
1469 * are then incremented on every state transition.
1471 static bool nfs_need_update_open_stateid(struct nfs4_state *state,
1472 const nfs4_stateid *stateid)
1474 if (test_bit(NFS_OPEN_STATE, &state->flags) == 0 ||
1475 !nfs4_stateid_match_other(stateid, &state->open_stateid)) {
1476 if (stateid->seqid == cpu_to_be32(1))
1477 nfs_state_log_update_open_stateid(state);
1479 set_bit(NFS_STATE_CHANGE_WAIT, &state->flags);
1483 if (nfs4_stateid_is_newer(stateid, &state->open_stateid)) {
1484 nfs_state_log_out_of_order_open_stateid(state, stateid);
1490 static void nfs_resync_open_stateid_locked(struct nfs4_state *state)
1492 if (!(state->n_wronly || state->n_rdonly || state->n_rdwr))
1494 if (state->n_wronly)
1495 set_bit(NFS_O_WRONLY_STATE, &state->flags);
1496 if (state->n_rdonly)
1497 set_bit(NFS_O_RDONLY_STATE, &state->flags);
1499 set_bit(NFS_O_RDWR_STATE, &state->flags);
1500 set_bit(NFS_OPEN_STATE, &state->flags);
1503 static void nfs_clear_open_stateid_locked(struct nfs4_state *state,
1504 nfs4_stateid *stateid, fmode_t fmode)
1506 clear_bit(NFS_O_RDWR_STATE, &state->flags);
1507 switch (fmode & (FMODE_READ|FMODE_WRITE)) {
1509 clear_bit(NFS_O_RDONLY_STATE, &state->flags);
1512 clear_bit(NFS_O_WRONLY_STATE, &state->flags);
1515 clear_bit(NFS_O_RDONLY_STATE, &state->flags);
1516 clear_bit(NFS_O_WRONLY_STATE, &state->flags);
1517 clear_bit(NFS_OPEN_STATE, &state->flags);
1519 if (stateid == NULL)
1521 /* Handle OPEN+OPEN_DOWNGRADE races */
1522 if (nfs4_stateid_match_other(stateid, &state->open_stateid) &&
1523 !nfs4_stateid_is_newer(stateid, &state->open_stateid)) {
1524 nfs_resync_open_stateid_locked(state);
1527 if (test_bit(NFS_DELEGATED_STATE, &state->flags) == 0)
1528 nfs4_stateid_copy(&state->stateid, stateid);
1529 nfs4_stateid_copy(&state->open_stateid, stateid);
1530 trace_nfs4_open_stateid_update(state->inode, stateid, 0);
1532 nfs_state_log_update_open_stateid(state);
1535 static void nfs_clear_open_stateid(struct nfs4_state *state,
1536 nfs4_stateid *arg_stateid,
1537 nfs4_stateid *stateid, fmode_t fmode)
1539 write_seqlock(&state->seqlock);
1540 /* Ignore, if the CLOSE argment doesn't match the current stateid */
1541 if (nfs4_state_match_open_stateid_other(state, arg_stateid))
1542 nfs_clear_open_stateid_locked(state, stateid, fmode);
1543 write_sequnlock(&state->seqlock);
1544 if (test_bit(NFS_STATE_RECLAIM_NOGRACE, &state->flags))
1545 nfs4_schedule_state_manager(state->owner->so_server->nfs_client);
1548 static void nfs_set_open_stateid_locked(struct nfs4_state *state,
1549 const nfs4_stateid *stateid, nfs4_stateid *freeme)
1555 if (!nfs_need_update_open_stateid(state, stateid))
1557 if (!test_bit(NFS_STATE_CHANGE_WAIT, &state->flags))
1561 /* Rely on seqids for serialisation with NFSv4.0 */
1562 if (!nfs4_has_session(NFS_SERVER(state->inode)->nfs_client))
1565 prepare_to_wait(&state->waitq, &wait, TASK_KILLABLE);
1567 * Ensure we process the state changes in the same order
1568 * in which the server processed them by delaying the
1569 * update of the stateid until we are in sequence.
1571 write_sequnlock(&state->seqlock);
1572 spin_unlock(&state->owner->so_lock);
1574 trace_nfs4_open_stateid_update_wait(state->inode, stateid, 0);
1575 if (!signal_pending(current)) {
1576 if (schedule_timeout(5*HZ) == 0)
1582 finish_wait(&state->waitq, &wait);
1584 spin_lock(&state->owner->so_lock);
1585 write_seqlock(&state->seqlock);
1588 if (test_bit(NFS_OPEN_STATE, &state->flags) &&
1589 !nfs4_stateid_match_other(stateid, &state->open_stateid)) {
1590 nfs4_stateid_copy(freeme, &state->open_stateid);
1591 nfs_test_and_clear_all_open_stateid(state);
1594 if (test_bit(NFS_DELEGATED_STATE, &state->flags) == 0)
1595 nfs4_stateid_copy(&state->stateid, stateid);
1596 nfs4_stateid_copy(&state->open_stateid, stateid);
1597 trace_nfs4_open_stateid_update(state->inode, stateid, status);
1598 nfs_state_log_update_open_stateid(state);
1601 static void nfs_state_set_open_stateid(struct nfs4_state *state,
1602 const nfs4_stateid *open_stateid,
1604 nfs4_stateid *freeme)
1607 * Protect the call to nfs4_state_set_mode_locked and
1608 * serialise the stateid update
1610 write_seqlock(&state->seqlock);
1611 nfs_set_open_stateid_locked(state, open_stateid, freeme);
1614 set_bit(NFS_O_RDONLY_STATE, &state->flags);
1617 set_bit(NFS_O_WRONLY_STATE, &state->flags);
1619 case FMODE_READ|FMODE_WRITE:
1620 set_bit(NFS_O_RDWR_STATE, &state->flags);
1622 set_bit(NFS_OPEN_STATE, &state->flags);
1623 write_sequnlock(&state->seqlock);
1626 static void nfs_state_set_delegation(struct nfs4_state *state,
1627 const nfs4_stateid *deleg_stateid,
1631 * Protect the call to nfs4_state_set_mode_locked and
1632 * serialise the stateid update
1634 write_seqlock(&state->seqlock);
1635 nfs4_stateid_copy(&state->stateid, deleg_stateid);
1636 set_bit(NFS_DELEGATED_STATE, &state->flags);
1637 write_sequnlock(&state->seqlock);
1640 static int update_open_stateid(struct nfs4_state *state,
1641 const nfs4_stateid *open_stateid,
1642 const nfs4_stateid *delegation,
1645 struct nfs_server *server = NFS_SERVER(state->inode);
1646 struct nfs_client *clp = server->nfs_client;
1647 struct nfs_inode *nfsi = NFS_I(state->inode);
1648 struct nfs_delegation *deleg_cur;
1649 nfs4_stateid freeme = { };
1652 fmode &= (FMODE_READ|FMODE_WRITE);
1655 spin_lock(&state->owner->so_lock);
1656 if (open_stateid != NULL) {
1657 nfs_state_set_open_stateid(state, open_stateid, fmode, &freeme);
1661 deleg_cur = rcu_dereference(nfsi->delegation);
1662 if (deleg_cur == NULL)
1665 spin_lock(&deleg_cur->lock);
1666 if (rcu_dereference(nfsi->delegation) != deleg_cur ||
1667 test_bit(NFS_DELEGATION_RETURNING, &deleg_cur->flags) ||
1668 (deleg_cur->type & fmode) != fmode)
1669 goto no_delegation_unlock;
1671 if (delegation == NULL)
1672 delegation = &deleg_cur->stateid;
1673 else if (!nfs4_stateid_match(&deleg_cur->stateid, delegation))
1674 goto no_delegation_unlock;
1676 nfs_mark_delegation_referenced(deleg_cur);
1677 nfs_state_set_delegation(state, &deleg_cur->stateid, fmode);
1679 no_delegation_unlock:
1680 spin_unlock(&deleg_cur->lock);
1683 update_open_stateflags(state, fmode);
1684 spin_unlock(&state->owner->so_lock);
1687 if (test_bit(NFS_STATE_RECLAIM_NOGRACE, &state->flags))
1688 nfs4_schedule_state_manager(clp);
1689 if (freeme.type != 0)
1690 nfs4_test_and_free_stateid(server, &freeme,
1691 state->owner->so_cred);
1696 static bool nfs4_update_lock_stateid(struct nfs4_lock_state *lsp,
1697 const nfs4_stateid *stateid)
1699 struct nfs4_state *state = lsp->ls_state;
1702 spin_lock(&state->state_lock);
1703 if (!nfs4_stateid_match_other(stateid, &lsp->ls_stateid))
1705 if (!nfs4_stateid_is_newer(stateid, &lsp->ls_stateid))
1707 nfs4_stateid_copy(&lsp->ls_stateid, stateid);
1710 spin_unlock(&state->state_lock);
1714 static void nfs4_return_incompatible_delegation(struct inode *inode, fmode_t fmode)
1716 struct nfs_delegation *delegation;
1718 fmode &= FMODE_READ|FMODE_WRITE;
1720 delegation = rcu_dereference(NFS_I(inode)->delegation);
1721 if (delegation == NULL || (delegation->type & fmode) == fmode) {
1726 nfs4_inode_return_delegation(inode);
1729 static struct nfs4_state *nfs4_try_open_cached(struct nfs4_opendata *opendata)
1731 struct nfs4_state *state = opendata->state;
1732 struct nfs_inode *nfsi = NFS_I(state->inode);
1733 struct nfs_delegation *delegation;
1734 int open_mode = opendata->o_arg.open_flags;
1735 fmode_t fmode = opendata->o_arg.fmode;
1736 enum open_claim_type4 claim = opendata->o_arg.claim;
1737 nfs4_stateid stateid;
1741 spin_lock(&state->owner->so_lock);
1742 if (can_open_cached(state, fmode, open_mode)) {
1743 update_open_stateflags(state, fmode);
1744 spin_unlock(&state->owner->so_lock);
1745 goto out_return_state;
1747 spin_unlock(&state->owner->so_lock);
1749 delegation = rcu_dereference(nfsi->delegation);
1750 if (!can_open_delegated(delegation, fmode, claim)) {
1754 /* Save the delegation */
1755 nfs4_stateid_copy(&stateid, &delegation->stateid);
1757 nfs_release_seqid(opendata->o_arg.seqid);
1758 if (!opendata->is_recover) {
1759 ret = nfs_may_open(state->inode, state->owner->so_cred, open_mode);
1765 /* Try to update the stateid using the delegation */
1766 if (update_open_stateid(state, NULL, &stateid, fmode))
1767 goto out_return_state;
1770 return ERR_PTR(ret);
1772 atomic_inc(&state->count);
1777 nfs4_opendata_check_deleg(struct nfs4_opendata *data, struct nfs4_state *state)
1779 struct nfs_client *clp = NFS_SERVER(state->inode)->nfs_client;
1780 struct nfs_delegation *delegation;
1781 int delegation_flags = 0;
1784 delegation = rcu_dereference(NFS_I(state->inode)->delegation);
1786 delegation_flags = delegation->flags;
1788 switch (data->o_arg.claim) {
1791 case NFS4_OPEN_CLAIM_DELEGATE_CUR:
1792 case NFS4_OPEN_CLAIM_DELEG_CUR_FH:
1793 pr_err_ratelimited("NFS: Broken NFSv4 server %s is "
1794 "returning a delegation for "
1795 "OPEN(CLAIM_DELEGATE_CUR)\n",
1799 if ((delegation_flags & 1UL<<NFS_DELEGATION_NEED_RECLAIM) == 0)
1800 nfs_inode_set_delegation(state->inode,
1801 data->owner->so_cred,
1802 data->o_res.delegation_type,
1803 &data->o_res.delegation,
1804 data->o_res.pagemod_limit);
1806 nfs_inode_reclaim_delegation(state->inode,
1807 data->owner->so_cred,
1808 data->o_res.delegation_type,
1809 &data->o_res.delegation,
1810 data->o_res.pagemod_limit);
1812 if (data->o_res.do_recall)
1813 nfs_async_inode_return_delegation(state->inode,
1814 &data->o_res.delegation);
1818 * Check the inode attributes against the CLAIM_PREVIOUS returned attributes
1819 * and update the nfs4_state.
1821 static struct nfs4_state *
1822 _nfs4_opendata_reclaim_to_nfs4_state(struct nfs4_opendata *data)
1824 struct inode *inode = data->state->inode;
1825 struct nfs4_state *state = data->state;
1828 if (!data->rpc_done) {
1829 if (data->rpc_status)
1830 return ERR_PTR(data->rpc_status);
1831 /* cached opens have already been processed */
1835 ret = nfs_refresh_inode(inode, &data->f_attr);
1837 return ERR_PTR(ret);
1839 if (data->o_res.delegation_type != 0)
1840 nfs4_opendata_check_deleg(data, state);
1842 update_open_stateid(state, &data->o_res.stateid, NULL,
1844 atomic_inc(&state->count);
1849 static struct inode *
1850 nfs4_opendata_get_inode(struct nfs4_opendata *data)
1852 struct inode *inode;
1854 switch (data->o_arg.claim) {
1855 case NFS4_OPEN_CLAIM_NULL:
1856 case NFS4_OPEN_CLAIM_DELEGATE_CUR:
1857 case NFS4_OPEN_CLAIM_DELEGATE_PREV:
1858 if (!(data->f_attr.valid & NFS_ATTR_FATTR))
1859 return ERR_PTR(-EAGAIN);
1860 inode = nfs_fhget(data->dir->d_sb, &data->o_res.fh,
1861 &data->f_attr, data->f_label);
1864 inode = d_inode(data->dentry);
1866 nfs_refresh_inode(inode, &data->f_attr);
1871 static struct nfs4_state *
1872 nfs4_opendata_find_nfs4_state(struct nfs4_opendata *data)
1874 struct nfs4_state *state;
1875 struct inode *inode;
1877 inode = nfs4_opendata_get_inode(data);
1879 return ERR_CAST(inode);
1880 if (data->state != NULL && data->state->inode == inode) {
1881 state = data->state;
1882 atomic_inc(&state->count);
1884 state = nfs4_get_open_state(inode, data->owner);
1887 state = ERR_PTR(-ENOMEM);
1891 static struct nfs4_state *
1892 _nfs4_opendata_to_nfs4_state(struct nfs4_opendata *data)
1894 struct nfs4_state *state;
1896 if (!data->rpc_done) {
1897 state = nfs4_try_open_cached(data);
1898 trace_nfs4_cached_open(data->state);
1902 state = nfs4_opendata_find_nfs4_state(data);
1906 if (data->o_res.delegation_type != 0)
1907 nfs4_opendata_check_deleg(data, state);
1908 update_open_stateid(state, &data->o_res.stateid, NULL,
1911 nfs_release_seqid(data->o_arg.seqid);
1915 static struct nfs4_state *
1916 nfs4_opendata_to_nfs4_state(struct nfs4_opendata *data)
1918 struct nfs4_state *ret;
1920 if (data->o_arg.claim == NFS4_OPEN_CLAIM_PREVIOUS)
1921 ret =_nfs4_opendata_reclaim_to_nfs4_state(data);
1923 ret = _nfs4_opendata_to_nfs4_state(data);
1924 nfs4_sequence_free_slot(&data->o_res.seq_res);
1928 static struct nfs_open_context *nfs4_state_find_open_context(struct nfs4_state *state)
1930 struct nfs_inode *nfsi = NFS_I(state->inode);
1931 struct nfs_open_context *ctx;
1933 spin_lock(&state->inode->i_lock);
1934 list_for_each_entry(ctx, &nfsi->open_files, list) {
1935 if (ctx->state != state)
1937 get_nfs_open_context(ctx);
1938 spin_unlock(&state->inode->i_lock);
1941 spin_unlock(&state->inode->i_lock);
1942 return ERR_PTR(-ENOENT);
1945 static struct nfs4_opendata *nfs4_open_recoverdata_alloc(struct nfs_open_context *ctx,
1946 struct nfs4_state *state, enum open_claim_type4 claim)
1948 struct nfs4_opendata *opendata;
1950 opendata = nfs4_opendata_alloc(ctx->dentry, state->owner, 0, 0,
1951 NULL, claim, GFP_NOFS);
1952 if (opendata == NULL)
1953 return ERR_PTR(-ENOMEM);
1954 opendata->state = state;
1955 atomic_inc(&state->count);
1959 static int nfs4_open_recover_helper(struct nfs4_opendata *opendata,
1962 struct nfs4_state *newstate;
1965 if (!nfs4_mode_match_open_stateid(opendata->state, fmode))
1967 opendata->o_arg.open_flags = 0;
1968 opendata->o_arg.fmode = fmode;
1969 opendata->o_arg.share_access = nfs4_map_atomic_open_share(
1970 NFS_SB(opendata->dentry->d_sb),
1972 memset(&opendata->o_res, 0, sizeof(opendata->o_res));
1973 memset(&opendata->c_res, 0, sizeof(opendata->c_res));
1974 nfs4_init_opendata_res(opendata);
1975 ret = _nfs4_recover_proc_open(opendata);
1978 newstate = nfs4_opendata_to_nfs4_state(opendata);
1979 if (IS_ERR(newstate))
1980 return PTR_ERR(newstate);
1981 if (newstate != opendata->state)
1983 nfs4_close_state(newstate, fmode);
1987 static int nfs4_open_recover(struct nfs4_opendata *opendata, struct nfs4_state *state)
1991 /* Don't trigger recovery in nfs_test_and_clear_all_open_stateid */
1992 clear_bit(NFS_O_RDWR_STATE, &state->flags);
1993 clear_bit(NFS_O_WRONLY_STATE, &state->flags);
1994 clear_bit(NFS_O_RDONLY_STATE, &state->flags);
1995 /* memory barrier prior to reading state->n_* */
1996 clear_bit(NFS_DELEGATED_STATE, &state->flags);
1997 clear_bit(NFS_OPEN_STATE, &state->flags);
1999 ret = nfs4_open_recover_helper(opendata, FMODE_READ|FMODE_WRITE);
2002 ret = nfs4_open_recover_helper(opendata, FMODE_WRITE);
2005 ret = nfs4_open_recover_helper(opendata, FMODE_READ);
2009 * We may have performed cached opens for all three recoveries.
2010 * Check if we need to update the current stateid.
2012 if (test_bit(NFS_DELEGATED_STATE, &state->flags) == 0 &&
2013 !nfs4_stateid_match(&state->stateid, &state->open_stateid)) {
2014 write_seqlock(&state->seqlock);
2015 if (test_bit(NFS_DELEGATED_STATE, &state->flags) == 0)
2016 nfs4_stateid_copy(&state->stateid, &state->open_stateid);
2017 write_sequnlock(&state->seqlock);
2024 * reclaim state on the server after a reboot.
2026 static int _nfs4_do_open_reclaim(struct nfs_open_context *ctx, struct nfs4_state *state)
2028 struct nfs_delegation *delegation;
2029 struct nfs4_opendata *opendata;
2030 fmode_t delegation_type = 0;
2033 opendata = nfs4_open_recoverdata_alloc(ctx, state,
2034 NFS4_OPEN_CLAIM_PREVIOUS);
2035 if (IS_ERR(opendata))
2036 return PTR_ERR(opendata);
2038 delegation = rcu_dereference(NFS_I(state->inode)->delegation);
2039 if (delegation != NULL && test_bit(NFS_DELEGATION_NEED_RECLAIM, &delegation->flags) != 0)
2040 delegation_type = delegation->type;
2042 opendata->o_arg.u.delegation_type = delegation_type;
2043 status = nfs4_open_recover(opendata, state);
2044 nfs4_opendata_put(opendata);
2048 static int nfs4_do_open_reclaim(struct nfs_open_context *ctx, struct nfs4_state *state)
2050 struct nfs_server *server = NFS_SERVER(state->inode);
2051 struct nfs4_exception exception = { };
2054 err = _nfs4_do_open_reclaim(ctx, state);
2055 trace_nfs4_open_reclaim(ctx, 0, err);
2056 if (nfs4_clear_cap_atomic_open_v1(server, err, &exception))
2058 if (err != -NFS4ERR_DELAY)
2060 nfs4_handle_exception(server, err, &exception);
2061 } while (exception.retry);
2065 static int nfs4_open_reclaim(struct nfs4_state_owner *sp, struct nfs4_state *state)
2067 struct nfs_open_context *ctx;
2070 ctx = nfs4_state_find_open_context(state);
2073 ret = nfs4_do_open_reclaim(ctx, state);
2074 put_nfs_open_context(ctx);
2078 static int nfs4_handle_delegation_recall_error(struct nfs_server *server, struct nfs4_state *state, const nfs4_stateid *stateid, struct file_lock *fl, int err)
2082 printk(KERN_ERR "NFS: %s: unhandled error "
2083 "%d.\n", __func__, err);
2089 case -NFS4ERR_BADSESSION:
2090 case -NFS4ERR_BADSLOT:
2091 case -NFS4ERR_BAD_HIGH_SLOT:
2092 case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
2093 case -NFS4ERR_DEADSESSION:
2094 set_bit(NFS_DELEGATED_STATE, &state->flags);
2095 nfs4_schedule_session_recovery(server->nfs_client->cl_session, err);
2097 case -NFS4ERR_STALE_CLIENTID:
2098 case -NFS4ERR_STALE_STATEID:
2099 set_bit(NFS_DELEGATED_STATE, &state->flags);
2100 /* Don't recall a delegation if it was lost */
2101 nfs4_schedule_lease_recovery(server->nfs_client);
2103 case -NFS4ERR_MOVED:
2104 nfs4_schedule_migration_recovery(server);
2106 case -NFS4ERR_LEASE_MOVED:
2107 nfs4_schedule_lease_moved_recovery(server->nfs_client);
2109 case -NFS4ERR_DELEG_REVOKED:
2110 case -NFS4ERR_ADMIN_REVOKED:
2111 case -NFS4ERR_EXPIRED:
2112 case -NFS4ERR_BAD_STATEID:
2113 case -NFS4ERR_OPENMODE:
2114 nfs_inode_find_state_and_recover(state->inode,
2116 nfs4_schedule_stateid_recovery(server, state);
2118 case -NFS4ERR_DELAY:
2119 case -NFS4ERR_GRACE:
2120 set_bit(NFS_DELEGATED_STATE, &state->flags);
2124 case -NFS4ERR_DENIED:
2126 struct nfs4_lock_state *lsp = fl->fl_u.nfs4_fl.owner;
2128 set_bit(NFS_LOCK_LOST, &lsp->ls_flags);
2135 int nfs4_open_delegation_recall(struct nfs_open_context *ctx,
2136 struct nfs4_state *state, const nfs4_stateid *stateid,
2139 struct nfs_server *server = NFS_SERVER(state->inode);
2140 struct nfs4_opendata *opendata;
2143 opendata = nfs4_open_recoverdata_alloc(ctx, state,
2144 NFS4_OPEN_CLAIM_DELEG_CUR_FH);
2145 if (IS_ERR(opendata))
2146 return PTR_ERR(opendata);
2147 nfs4_stateid_copy(&opendata->o_arg.u.delegation, stateid);
2148 write_seqlock(&state->seqlock);
2149 nfs4_stateid_copy(&state->stateid, &state->open_stateid);
2150 write_sequnlock(&state->seqlock);
2151 clear_bit(NFS_DELEGATED_STATE, &state->flags);
2152 switch (type & (FMODE_READ|FMODE_WRITE)) {
2153 case FMODE_READ|FMODE_WRITE:
2155 err = nfs4_open_recover_helper(opendata, FMODE_READ|FMODE_WRITE);
2158 err = nfs4_open_recover_helper(opendata, FMODE_WRITE);
2163 err = nfs4_open_recover_helper(opendata, FMODE_READ);
2165 nfs4_opendata_put(opendata);
2166 return nfs4_handle_delegation_recall_error(server, state, stateid, NULL, err);
2169 static void nfs4_open_confirm_prepare(struct rpc_task *task, void *calldata)
2171 struct nfs4_opendata *data = calldata;
2173 nfs4_setup_sequence(data->o_arg.server->nfs_client,
2174 &data->c_arg.seq_args, &data->c_res.seq_res, task);
2177 static void nfs4_open_confirm_done(struct rpc_task *task, void *calldata)
2179 struct nfs4_opendata *data = calldata;
2181 nfs40_sequence_done(task, &data->c_res.seq_res);
2183 data->rpc_status = task->tk_status;
2184 if (data->rpc_status == 0) {
2185 nfs4_stateid_copy(&data->o_res.stateid, &data->c_res.stateid);
2186 nfs_confirm_seqid(&data->owner->so_seqid, 0);
2187 renew_lease(data->o_res.server, data->timestamp);
2188 data->rpc_done = true;
2192 static void nfs4_open_confirm_release(void *calldata)
2194 struct nfs4_opendata *data = calldata;
2195 struct nfs4_state *state = NULL;
2197 /* If this request hasn't been cancelled, do nothing */
2198 if (!data->cancelled)
2200 /* In case of error, no cleanup! */
2201 if (!data->rpc_done)
2203 state = nfs4_opendata_to_nfs4_state(data);
2205 nfs4_close_state(state, data->o_arg.fmode);
2207 nfs4_opendata_put(data);
2210 static const struct rpc_call_ops nfs4_open_confirm_ops = {
2211 .rpc_call_prepare = nfs4_open_confirm_prepare,
2212 .rpc_call_done = nfs4_open_confirm_done,
2213 .rpc_release = nfs4_open_confirm_release,
2217 * Note: On error, nfs4_proc_open_confirm will free the struct nfs4_opendata
2219 static int _nfs4_proc_open_confirm(struct nfs4_opendata *data)
2221 struct nfs_server *server = NFS_SERVER(d_inode(data->dir));
2222 struct rpc_task *task;
2223 struct rpc_message msg = {
2224 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_OPEN_CONFIRM],
2225 .rpc_argp = &data->c_arg,
2226 .rpc_resp = &data->c_res,
2227 .rpc_cred = data->owner->so_cred,
2229 struct rpc_task_setup task_setup_data = {
2230 .rpc_client = server->client,
2231 .rpc_message = &msg,
2232 .callback_ops = &nfs4_open_confirm_ops,
2233 .callback_data = data,
2234 .workqueue = nfsiod_workqueue,
2235 .flags = RPC_TASK_ASYNC,
2239 nfs4_init_sequence(&data->c_arg.seq_args, &data->c_res.seq_res, 1,
2241 kref_get(&data->kref);
2242 data->rpc_done = false;
2243 data->rpc_status = 0;
2244 data->timestamp = jiffies;
2245 task = rpc_run_task(&task_setup_data);
2247 return PTR_ERR(task);
2248 status = rpc_wait_for_completion_task(task);
2250 data->cancelled = true;
2253 status = data->rpc_status;
2258 static void nfs4_open_prepare(struct rpc_task *task, void *calldata)
2260 struct nfs4_opendata *data = calldata;
2261 struct nfs4_state_owner *sp = data->owner;
2262 struct nfs_client *clp = sp->so_server->nfs_client;
2263 enum open_claim_type4 claim = data->o_arg.claim;
2265 if (nfs_wait_on_sequence(data->o_arg.seqid, task) != 0)
2268 * Check if we still need to send an OPEN call, or if we can use
2269 * a delegation instead.
2271 if (data->state != NULL) {
2272 struct nfs_delegation *delegation;
2274 if (can_open_cached(data->state, data->o_arg.fmode, data->o_arg.open_flags))
2277 delegation = rcu_dereference(NFS_I(data->state->inode)->delegation);
2278 if (can_open_delegated(delegation, data->o_arg.fmode, claim))
2279 goto unlock_no_action;
2282 /* Update client id. */
2283 data->o_arg.clientid = clp->cl_clientid;
2287 case NFS4_OPEN_CLAIM_PREVIOUS:
2288 case NFS4_OPEN_CLAIM_DELEG_CUR_FH:
2289 case NFS4_OPEN_CLAIM_DELEG_PREV_FH:
2290 data->o_arg.open_bitmap = &nfs4_open_noattr_bitmap[0];
2292 case NFS4_OPEN_CLAIM_FH:
2293 task->tk_msg.rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_OPEN_NOATTR];
2295 data->timestamp = jiffies;
2296 if (nfs4_setup_sequence(data->o_arg.server->nfs_client,
2297 &data->o_arg.seq_args,
2298 &data->o_res.seq_res,
2300 nfs_release_seqid(data->o_arg.seqid);
2302 /* Set the create mode (note dependency on the session type) */
2303 data->o_arg.createmode = NFS4_CREATE_UNCHECKED;
2304 if (data->o_arg.open_flags & O_EXCL) {
2305 data->o_arg.createmode = NFS4_CREATE_EXCLUSIVE;
2306 if (nfs4_has_persistent_session(clp))
2307 data->o_arg.createmode = NFS4_CREATE_GUARDED;
2308 else if (clp->cl_mvops->minor_version > 0)
2309 data->o_arg.createmode = NFS4_CREATE_EXCLUSIVE4_1;
2313 trace_nfs4_cached_open(data->state);
2316 task->tk_action = NULL;
2318 nfs4_sequence_done(task, &data->o_res.seq_res);
2321 static void nfs4_open_done(struct rpc_task *task, void *calldata)
2323 struct nfs4_opendata *data = calldata;
2325 data->rpc_status = task->tk_status;
2327 if (!nfs4_sequence_process(task, &data->o_res.seq_res))
2330 if (task->tk_status == 0) {
2331 if (data->o_res.f_attr->valid & NFS_ATTR_FATTR_TYPE) {
2332 switch (data->o_res.f_attr->mode & S_IFMT) {
2336 data->rpc_status = -ELOOP;
2339 data->rpc_status = -EISDIR;
2342 data->rpc_status = -ENOTDIR;
2345 renew_lease(data->o_res.server, data->timestamp);
2346 if (!(data->o_res.rflags & NFS4_OPEN_RESULT_CONFIRM))
2347 nfs_confirm_seqid(&data->owner->so_seqid, 0);
2349 data->rpc_done = true;
2352 static void nfs4_open_release(void *calldata)
2354 struct nfs4_opendata *data = calldata;
2355 struct nfs4_state *state = NULL;
2357 /* If this request hasn't been cancelled, do nothing */
2358 if (!data->cancelled)
2360 /* In case of error, no cleanup! */
2361 if (data->rpc_status != 0 || !data->rpc_done)
2363 /* In case we need an open_confirm, no cleanup! */
2364 if (data->o_res.rflags & NFS4_OPEN_RESULT_CONFIRM)
2366 state = nfs4_opendata_to_nfs4_state(data);
2368 nfs4_close_state(state, data->o_arg.fmode);
2370 nfs4_opendata_put(data);
2373 static const struct rpc_call_ops nfs4_open_ops = {
2374 .rpc_call_prepare = nfs4_open_prepare,
2375 .rpc_call_done = nfs4_open_done,
2376 .rpc_release = nfs4_open_release,
2379 static int nfs4_run_open_task(struct nfs4_opendata *data,
2380 struct nfs_open_context *ctx)
2382 struct inode *dir = d_inode(data->dir);
2383 struct nfs_server *server = NFS_SERVER(dir);
2384 struct nfs_openargs *o_arg = &data->o_arg;
2385 struct nfs_openres *o_res = &data->o_res;
2386 struct rpc_task *task;
2387 struct rpc_message msg = {
2388 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_OPEN],
2391 .rpc_cred = data->owner->so_cred,
2393 struct rpc_task_setup task_setup_data = {
2394 .rpc_client = server->client,
2395 .rpc_message = &msg,
2396 .callback_ops = &nfs4_open_ops,
2397 .callback_data = data,
2398 .workqueue = nfsiod_workqueue,
2399 .flags = RPC_TASK_ASYNC,
2403 kref_get(&data->kref);
2404 data->rpc_done = false;
2405 data->rpc_status = 0;
2406 data->cancelled = false;
2407 data->is_recover = false;
2409 nfs4_init_sequence(&o_arg->seq_args, &o_res->seq_res, 1, 1);
2410 data->is_recover = true;
2412 nfs4_init_sequence(&o_arg->seq_args, &o_res->seq_res, 1, 0);
2413 pnfs_lgopen_prepare(data, ctx);
2415 task = rpc_run_task(&task_setup_data);
2417 return PTR_ERR(task);
2418 status = rpc_wait_for_completion_task(task);
2420 data->cancelled = true;
2423 status = data->rpc_status;
2429 static int _nfs4_recover_proc_open(struct nfs4_opendata *data)
2431 struct inode *dir = d_inode(data->dir);
2432 struct nfs_openres *o_res = &data->o_res;
2435 status = nfs4_run_open_task(data, NULL);
2436 if (status != 0 || !data->rpc_done)
2439 nfs_fattr_map_and_free_names(NFS_SERVER(dir), &data->f_attr);
2441 if (o_res->rflags & NFS4_OPEN_RESULT_CONFIRM)
2442 status = _nfs4_proc_open_confirm(data);
2448 * Additional permission checks in order to distinguish between an
2449 * open for read, and an open for execute. This works around the
2450 * fact that NFSv4 OPEN treats read and execute permissions as being
2452 * Note that in the non-execute case, we want to turn off permission
2453 * checking if we just created a new file (POSIX open() semantics).
2455 static int nfs4_opendata_access(struct rpc_cred *cred,
2456 struct nfs4_opendata *opendata,
2457 struct nfs4_state *state, fmode_t fmode,
2460 struct nfs_access_entry cache;
2463 /* access call failed or for some reason the server doesn't
2464 * support any access modes -- defer access call until later */
2465 if (opendata->o_res.access_supported == 0)
2470 * Use openflags to check for exec, because fmode won't
2471 * always have FMODE_EXEC set when file open for exec.
2473 if (openflags & __FMODE_EXEC) {
2474 /* ONLY check for exec rights */
2475 if (S_ISDIR(state->inode->i_mode))
2476 mask = NFS4_ACCESS_LOOKUP;
2478 mask = NFS4_ACCESS_EXECUTE;
2479 } else if ((fmode & FMODE_READ) && !opendata->file_created)
2480 mask = NFS4_ACCESS_READ;
2483 nfs_access_set_mask(&cache, opendata->o_res.access_result);
2484 nfs_access_add_cache(state->inode, &cache);
2486 flags = NFS4_ACCESS_READ | NFS4_ACCESS_EXECUTE | NFS4_ACCESS_LOOKUP;
2487 if ((mask & ~cache.mask & flags) == 0)
2494 * Note: On error, nfs4_proc_open will free the struct nfs4_opendata
2496 static int _nfs4_proc_open(struct nfs4_opendata *data,
2497 struct nfs_open_context *ctx)
2499 struct inode *dir = d_inode(data->dir);
2500 struct nfs_server *server = NFS_SERVER(dir);
2501 struct nfs_openargs *o_arg = &data->o_arg;
2502 struct nfs_openres *o_res = &data->o_res;
2505 status = nfs4_run_open_task(data, ctx);
2506 if (!data->rpc_done)
2509 if (status == -NFS4ERR_BADNAME &&
2510 !(o_arg->open_flags & O_CREAT))
2515 nfs_fattr_map_and_free_names(server, &data->f_attr);
2517 if (o_arg->open_flags & O_CREAT) {
2518 if (o_arg->open_flags & O_EXCL)
2519 data->file_created = true;
2520 else if (o_res->cinfo.before != o_res->cinfo.after)
2521 data->file_created = true;
2522 if (data->file_created ||
2523 inode_peek_iversion_raw(dir) != o_res->cinfo.after)
2524 update_changeattr(dir, &o_res->cinfo,
2525 o_res->f_attr->time_start, 0);
2527 if ((o_res->rflags & NFS4_OPEN_RESULT_LOCKTYPE_POSIX) == 0)
2528 server->caps &= ~NFS_CAP_POSIX_LOCK;
2529 if(o_res->rflags & NFS4_OPEN_RESULT_CONFIRM) {
2530 status = _nfs4_proc_open_confirm(data);
2534 if (!(o_res->f_attr->valid & NFS_ATTR_FATTR)) {
2535 nfs4_sequence_free_slot(&o_res->seq_res);
2536 nfs4_proc_getattr(server, &o_res->fh, o_res->f_attr,
2537 o_res->f_label, NULL);
2544 * reclaim state on the server after a network partition.
2545 * Assumes caller holds the appropriate lock
2547 static int _nfs4_open_expired(struct nfs_open_context *ctx, struct nfs4_state *state)
2549 struct nfs4_opendata *opendata;
2552 opendata = nfs4_open_recoverdata_alloc(ctx, state,
2553 NFS4_OPEN_CLAIM_FH);
2554 if (IS_ERR(opendata))
2555 return PTR_ERR(opendata);
2556 ret = nfs4_open_recover(opendata, state);
2558 d_drop(ctx->dentry);
2559 nfs4_opendata_put(opendata);
2563 static int nfs4_do_open_expired(struct nfs_open_context *ctx, struct nfs4_state *state)
2565 struct nfs_server *server = NFS_SERVER(state->inode);
2566 struct nfs4_exception exception = { };
2570 err = _nfs4_open_expired(ctx, state);
2571 trace_nfs4_open_expired(ctx, 0, err);
2572 if (nfs4_clear_cap_atomic_open_v1(server, err, &exception))
2577 case -NFS4ERR_GRACE:
2578 case -NFS4ERR_DELAY:
2579 nfs4_handle_exception(server, err, &exception);
2582 } while (exception.retry);
2587 static int nfs4_open_expired(struct nfs4_state_owner *sp, struct nfs4_state *state)
2589 struct nfs_open_context *ctx;
2592 ctx = nfs4_state_find_open_context(state);
2595 ret = nfs4_do_open_expired(ctx, state);
2596 put_nfs_open_context(ctx);
2600 static void nfs_finish_clear_delegation_stateid(struct nfs4_state *state,
2601 const nfs4_stateid *stateid)
2603 nfs_remove_bad_delegation(state->inode, stateid);
2604 write_seqlock(&state->seqlock);
2605 nfs4_stateid_copy(&state->stateid, &state->open_stateid);
2606 write_sequnlock(&state->seqlock);
2607 clear_bit(NFS_DELEGATED_STATE, &state->flags);
2610 static void nfs40_clear_delegation_stateid(struct nfs4_state *state)
2612 if (rcu_access_pointer(NFS_I(state->inode)->delegation) != NULL)
2613 nfs_finish_clear_delegation_stateid(state, NULL);
2616 static int nfs40_open_expired(struct nfs4_state_owner *sp, struct nfs4_state *state)
2618 /* NFSv4.0 doesn't allow for delegation recovery on open expire */
2619 nfs40_clear_delegation_stateid(state);
2620 return nfs4_open_expired(sp, state);
2623 static int nfs40_test_and_free_expired_stateid(struct nfs_server *server,
2624 nfs4_stateid *stateid,
2625 struct rpc_cred *cred)
2627 return -NFS4ERR_BAD_STATEID;
2630 #if defined(CONFIG_NFS_V4_1)
2631 static int nfs41_test_and_free_expired_stateid(struct nfs_server *server,
2632 nfs4_stateid *stateid,
2633 struct rpc_cred *cred)
2637 switch (stateid->type) {
2640 case NFS4_INVALID_STATEID_TYPE:
2641 case NFS4_SPECIAL_STATEID_TYPE:
2642 return -NFS4ERR_BAD_STATEID;
2643 case NFS4_REVOKED_STATEID_TYPE:
2647 status = nfs41_test_stateid(server, stateid, cred);
2649 case -NFS4ERR_EXPIRED:
2650 case -NFS4ERR_ADMIN_REVOKED:
2651 case -NFS4ERR_DELEG_REVOKED:
2657 /* Ack the revoked state to the server */
2658 nfs41_free_stateid(server, stateid, cred, true);
2659 return -NFS4ERR_EXPIRED;
2662 static void nfs41_check_delegation_stateid(struct nfs4_state *state)
2664 struct nfs_server *server = NFS_SERVER(state->inode);
2665 nfs4_stateid stateid;
2666 struct nfs_delegation *delegation;
2667 struct rpc_cred *cred;
2670 /* Get the delegation credential for use by test/free_stateid */
2672 delegation = rcu_dereference(NFS_I(state->inode)->delegation);
2673 if (delegation == NULL) {
2678 nfs4_stateid_copy(&stateid, &delegation->stateid);
2679 if (test_bit(NFS_DELEGATION_REVOKED, &delegation->flags) ||
2680 !test_and_clear_bit(NFS_DELEGATION_TEST_EXPIRED,
2681 &delegation->flags)) {
2683 nfs_finish_clear_delegation_stateid(state, &stateid);
2687 cred = get_rpccred(delegation->cred);
2689 status = nfs41_test_and_free_expired_stateid(server, &stateid, cred);
2690 trace_nfs4_test_delegation_stateid(state, NULL, status);
2691 if (status == -NFS4ERR_EXPIRED || status == -NFS4ERR_BAD_STATEID)
2692 nfs_finish_clear_delegation_stateid(state, &stateid);
2698 * nfs41_check_expired_locks - possibly free a lock stateid
2700 * @state: NFSv4 state for an inode
2702 * Returns NFS_OK if recovery for this stateid is now finished.
2703 * Otherwise a negative NFS4ERR value is returned.
2705 static int nfs41_check_expired_locks(struct nfs4_state *state)
2707 int status, ret = NFS_OK;
2708 struct nfs4_lock_state *lsp, *prev = NULL;
2709 struct nfs_server *server = NFS_SERVER(state->inode);
2711 if (!test_bit(LK_STATE_IN_USE, &state->flags))
2714 spin_lock(&state->state_lock);
2715 list_for_each_entry(lsp, &state->lock_states, ls_locks) {
2716 if (test_bit(NFS_LOCK_INITIALIZED, &lsp->ls_flags)) {
2717 struct rpc_cred *cred = lsp->ls_state->owner->so_cred;
2719 refcount_inc(&lsp->ls_count);
2720 spin_unlock(&state->state_lock);
2722 nfs4_put_lock_state(prev);
2725 status = nfs41_test_and_free_expired_stateid(server,
2728 trace_nfs4_test_lock_stateid(state, lsp, status);
2729 if (status == -NFS4ERR_EXPIRED ||
2730 status == -NFS4ERR_BAD_STATEID) {
2731 clear_bit(NFS_LOCK_INITIALIZED, &lsp->ls_flags);
2732 lsp->ls_stateid.type = NFS4_INVALID_STATEID_TYPE;
2733 if (!recover_lost_locks)
2734 set_bit(NFS_LOCK_LOST, &lsp->ls_flags);
2735 } else if (status != NFS_OK) {
2737 nfs4_put_lock_state(prev);
2740 spin_lock(&state->state_lock);
2743 spin_unlock(&state->state_lock);
2744 nfs4_put_lock_state(prev);
2750 * nfs41_check_open_stateid - possibly free an open stateid
2752 * @state: NFSv4 state for an inode
2754 * Returns NFS_OK if recovery for this stateid is now finished.
2755 * Otherwise a negative NFS4ERR value is returned.
2757 static int nfs41_check_open_stateid(struct nfs4_state *state)
2759 struct nfs_server *server = NFS_SERVER(state->inode);
2760 nfs4_stateid *stateid = &state->open_stateid;
2761 struct rpc_cred *cred = state->owner->so_cred;
2764 if (test_bit(NFS_OPEN_STATE, &state->flags) == 0) {
2765 if (test_bit(NFS_DELEGATED_STATE, &state->flags) == 0) {
2766 if (nfs4_have_delegation(state->inode, state->state))
2768 return -NFS4ERR_OPENMODE;
2770 return -NFS4ERR_BAD_STATEID;
2772 status = nfs41_test_and_free_expired_stateid(server, stateid, cred);
2773 trace_nfs4_test_open_stateid(state, NULL, status);
2774 if (status == -NFS4ERR_EXPIRED || status == -NFS4ERR_BAD_STATEID) {
2775 clear_bit(NFS_O_RDONLY_STATE, &state->flags);
2776 clear_bit(NFS_O_WRONLY_STATE, &state->flags);
2777 clear_bit(NFS_O_RDWR_STATE, &state->flags);
2778 clear_bit(NFS_OPEN_STATE, &state->flags);
2779 stateid->type = NFS4_INVALID_STATEID_TYPE;
2782 if (nfs_open_stateid_recover_openmode(state))
2783 return -NFS4ERR_OPENMODE;
2787 static int nfs41_open_expired(struct nfs4_state_owner *sp, struct nfs4_state *state)
2791 nfs41_check_delegation_stateid(state);
2792 status = nfs41_check_expired_locks(state);
2793 if (status != NFS_OK)
2795 status = nfs41_check_open_stateid(state);
2796 if (status != NFS_OK)
2797 status = nfs4_open_expired(sp, state);
2803 * on an EXCLUSIVE create, the server should send back a bitmask with FATTR4-*
2804 * fields corresponding to attributes that were used to store the verifier.
2805 * Make sure we clobber those fields in the later setattr call
2807 static unsigned nfs4_exclusive_attrset(struct nfs4_opendata *opendata,
2808 struct iattr *sattr, struct nfs4_label **label)
2810 const __u32 *bitmask = opendata->o_arg.server->exclcreat_bitmask;
2815 for (i = 0; i < ARRAY_SIZE(attrset); i++) {
2816 attrset[i] = opendata->o_res.attrset[i];
2817 if (opendata->o_arg.createmode == NFS4_CREATE_EXCLUSIVE4_1)
2818 attrset[i] &= ~bitmask[i];
2821 ret = (opendata->o_arg.createmode == NFS4_CREATE_EXCLUSIVE) ?
2822 sattr->ia_valid : 0;
2824 if ((attrset[1] & (FATTR4_WORD1_TIME_ACCESS|FATTR4_WORD1_TIME_ACCESS_SET))) {
2825 if (sattr->ia_valid & ATTR_ATIME_SET)
2826 ret |= ATTR_ATIME_SET;
2831 if ((attrset[1] & (FATTR4_WORD1_TIME_MODIFY|FATTR4_WORD1_TIME_MODIFY_SET))) {
2832 if (sattr->ia_valid & ATTR_MTIME_SET)
2833 ret |= ATTR_MTIME_SET;
2838 if (!(attrset[2] & FATTR4_WORD2_SECURITY_LABEL))
2843 static int _nfs4_open_and_get_state(struct nfs4_opendata *opendata,
2846 struct nfs_open_context *ctx)
2848 struct nfs4_state_owner *sp = opendata->owner;
2849 struct nfs_server *server = sp->so_server;
2850 struct dentry *dentry;
2851 struct nfs4_state *state;
2855 seq = raw_seqcount_begin(&sp->so_reclaim_seqcount);
2857 ret = _nfs4_proc_open(opendata, ctx);
2861 state = _nfs4_opendata_to_nfs4_state(opendata);
2862 ret = PTR_ERR(state);
2866 if (server->caps & NFS_CAP_POSIX_LOCK)
2867 set_bit(NFS_STATE_POSIX_LOCKS, &state->flags);
2868 if (opendata->o_res.rflags & NFS4_OPEN_RESULT_MAY_NOTIFY_LOCK)
2869 set_bit(NFS_STATE_MAY_NOTIFY_LOCK, &state->flags);
2871 dentry = opendata->dentry;
2872 if (d_really_is_negative(dentry)) {
2873 struct dentry *alias;
2875 alias = d_exact_alias(dentry, state->inode);
2877 alias = d_splice_alias(igrab(state->inode), dentry);
2878 /* d_splice_alias() can't fail here - it's a non-directory */
2881 ctx->dentry = dentry = alias;
2883 nfs_set_verifier(dentry,
2884 nfs_save_change_attribute(d_inode(opendata->dir)));
2887 /* Parse layoutget results before we check for access */
2888 pnfs_parse_lgopen(state->inode, opendata->lgp, ctx);
2890 ret = nfs4_opendata_access(sp->so_cred, opendata, state, fmode, flags);
2894 if (d_inode(dentry) == state->inode) {
2895 nfs_inode_attach_open_context(ctx);
2896 if (read_seqcount_retry(&sp->so_reclaim_seqcount, seq))
2897 nfs4_schedule_stateid_recovery(server, state);
2901 nfs4_sequence_free_slot(&opendata->o_res.seq_res);
2906 * Returns a referenced nfs4_state
2908 static int _nfs4_do_open(struct inode *dir,
2909 struct nfs_open_context *ctx,
2911 const struct nfs4_open_createattrs *c,
2914 struct nfs4_state_owner *sp;
2915 struct nfs4_state *state = NULL;
2916 struct nfs_server *server = NFS_SERVER(dir);
2917 struct nfs4_opendata *opendata;
2918 struct dentry *dentry = ctx->dentry;
2919 struct rpc_cred *cred = ctx->cred;
2920 struct nfs4_threshold **ctx_th = &ctx->mdsthreshold;
2921 fmode_t fmode = ctx->mode & (FMODE_READ|FMODE_WRITE|FMODE_EXEC);
2922 enum open_claim_type4 claim = NFS4_OPEN_CLAIM_NULL;
2923 struct iattr *sattr = c->sattr;
2924 struct nfs4_label *label = c->label;
2925 struct nfs4_label *olabel = NULL;
2928 /* Protect against reboot recovery conflicts */
2930 sp = nfs4_get_state_owner(server, cred, GFP_KERNEL);
2932 dprintk("nfs4_do_open: nfs4_get_state_owner failed!\n");
2935 status = nfs4_client_recover_expired_lease(server->nfs_client);
2937 goto err_put_state_owner;
2938 if (d_really_is_positive(dentry))
2939 nfs4_return_incompatible_delegation(d_inode(dentry), fmode);
2941 if (d_really_is_positive(dentry))
2942 claim = NFS4_OPEN_CLAIM_FH;
2943 opendata = nfs4_opendata_alloc(dentry, sp, fmode, flags,
2944 c, claim, GFP_KERNEL);
2945 if (opendata == NULL)
2946 goto err_put_state_owner;
2949 olabel = nfs4_label_alloc(server, GFP_KERNEL);
2950 if (IS_ERR(olabel)) {
2951 status = PTR_ERR(olabel);
2952 goto err_opendata_put;
2956 if (server->attr_bitmask[2] & FATTR4_WORD2_MDSTHRESHOLD) {
2957 if (!opendata->f_attr.mdsthreshold) {
2958 opendata->f_attr.mdsthreshold = pnfs_mdsthreshold_alloc();
2959 if (!opendata->f_attr.mdsthreshold)
2960 goto err_free_label;
2962 opendata->o_arg.open_bitmap = &nfs4_pnfs_open_bitmap[0];
2964 if (d_really_is_positive(dentry))
2965 opendata->state = nfs4_get_open_state(d_inode(dentry), sp);
2967 status = _nfs4_open_and_get_state(opendata, fmode, flags, ctx);
2969 goto err_free_label;
2972 if ((opendata->o_arg.open_flags & (O_CREAT|O_EXCL)) == (O_CREAT|O_EXCL) &&
2973 (opendata->o_arg.createmode != NFS4_CREATE_GUARDED)) {
2974 unsigned attrs = nfs4_exclusive_attrset(opendata, sattr, &label);
2976 * send create attributes which was not set by open
2977 * with an extra setattr.
2979 if (attrs || label) {
2980 unsigned ia_old = sattr->ia_valid;
2982 sattr->ia_valid = attrs;
2983 nfs_fattr_init(opendata->o_res.f_attr);
2984 status = nfs4_do_setattr(state->inode, cred,
2985 opendata->o_res.f_attr, sattr,
2986 ctx, label, olabel);
2988 nfs_setattr_update_inode(state->inode, sattr,
2989 opendata->o_res.f_attr);
2990 nfs_setsecurity(state->inode, opendata->o_res.f_attr, olabel);
2992 sattr->ia_valid = ia_old;
2995 if (opened && opendata->file_created)
2998 if (pnfs_use_threshold(ctx_th, opendata->f_attr.mdsthreshold, server)) {
2999 *ctx_th = opendata->f_attr.mdsthreshold;
3000 opendata->f_attr.mdsthreshold = NULL;
3003 nfs4_label_free(olabel);
3005 nfs4_opendata_put(opendata);
3006 nfs4_put_state_owner(sp);
3009 nfs4_label_free(olabel);
3011 nfs4_opendata_put(opendata);
3012 err_put_state_owner:
3013 nfs4_put_state_owner(sp);
3019 static struct nfs4_state *nfs4_do_open(struct inode *dir,
3020 struct nfs_open_context *ctx,
3022 struct iattr *sattr,
3023 struct nfs4_label *label,
3026 struct nfs_server *server = NFS_SERVER(dir);
3027 struct nfs4_exception exception = { };
3028 struct nfs4_state *res;
3029 struct nfs4_open_createattrs c = {
3033 [0] = (__u32)jiffies,
3034 [1] = (__u32)current->pid,
3040 status = _nfs4_do_open(dir, ctx, flags, &c, opened);
3042 trace_nfs4_open_file(ctx, flags, status);
3045 /* NOTE: BAD_SEQID means the server and client disagree about the
3046 * book-keeping w.r.t. state-changing operations
3047 * (OPEN/CLOSE/LOCK/LOCKU...)
3048 * It is actually a sign of a bug on the client or on the server.
3050 * If we receive a BAD_SEQID error in the particular case of
3051 * doing an OPEN, we assume that nfs_increment_open_seqid() will
3052 * have unhashed the old state_owner for us, and that we can
3053 * therefore safely retry using a new one. We should still warn
3054 * the user though...
3056 if (status == -NFS4ERR_BAD_SEQID) {
3057 pr_warn_ratelimited("NFS: v4 server %s "
3058 " returned a bad sequence-id error!\n",
3059 NFS_SERVER(dir)->nfs_client->cl_hostname);
3060 exception.retry = 1;
3064 * BAD_STATEID on OPEN means that the server cancelled our
3065 * state before it received the OPEN_CONFIRM.
3066 * Recover by retrying the request as per the discussion
3067 * on Page 181 of RFC3530.
3069 if (status == -NFS4ERR_BAD_STATEID) {
3070 exception.retry = 1;
3073 if (status == -EAGAIN) {
3074 /* We must have found a delegation */
3075 exception.retry = 1;
3078 if (nfs4_clear_cap_atomic_open_v1(server, status, &exception))
3080 res = ERR_PTR(nfs4_handle_exception(server,
3081 status, &exception));
3082 } while (exception.retry);
3086 static int _nfs4_do_setattr(struct inode *inode,
3087 struct nfs_setattrargs *arg,
3088 struct nfs_setattrres *res,
3089 struct rpc_cred *cred,
3090 struct nfs_open_context *ctx)
3092 struct nfs_server *server = NFS_SERVER(inode);
3093 struct rpc_message msg = {
3094 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SETATTR],
3099 struct rpc_cred *delegation_cred = NULL;
3100 unsigned long timestamp = jiffies;
3104 nfs_fattr_init(res->fattr);
3106 /* Servers should only apply open mode checks for file size changes */
3107 truncate = (arg->iap->ia_valid & ATTR_SIZE) ? true : false;
3111 if (nfs4_copy_delegation_stateid(inode, FMODE_WRITE, &arg->stateid, &delegation_cred)) {
3112 /* Use that stateid */
3113 } else if (ctx != NULL) {
3114 struct nfs_lock_context *l_ctx;
3115 if (!nfs4_valid_open_stateid(ctx->state))
3117 l_ctx = nfs_get_lock_context(ctx);
3119 return PTR_ERR(l_ctx);
3120 status = nfs4_select_rw_stateid(ctx->state, FMODE_WRITE, l_ctx,
3121 &arg->stateid, &delegation_cred);
3122 nfs_put_lock_context(l_ctx);
3127 nfs4_stateid_copy(&arg->stateid, &zero_stateid);
3129 if (delegation_cred)
3130 msg.rpc_cred = delegation_cred;
3132 status = nfs4_call_sync(server->client, server, &msg, &arg->seq_args, &res->seq_res, 1);
3134 put_rpccred(delegation_cred);
3135 if (status == 0 && ctx != NULL)
3136 renew_lease(server, timestamp);
3137 trace_nfs4_setattr(inode, &arg->stateid, status);
3141 static int nfs4_do_setattr(struct inode *inode, struct rpc_cred *cred,
3142 struct nfs_fattr *fattr, struct iattr *sattr,
3143 struct nfs_open_context *ctx, struct nfs4_label *ilabel,
3144 struct nfs4_label *olabel)
3146 struct nfs_server *server = NFS_SERVER(inode);
3147 __u32 bitmask[NFS4_BITMASK_SZ];
3148 struct nfs4_state *state = ctx ? ctx->state : NULL;
3149 struct nfs_setattrargs arg = {
3150 .fh = NFS_FH(inode),
3156 struct nfs_setattrres res = {
3161 struct nfs4_exception exception = {
3164 .stateid = &arg.stateid,
3169 nfs4_bitmap_copy_adjust_setattr(bitmask,
3170 nfs4_bitmask(server, olabel),
3173 err = _nfs4_do_setattr(inode, &arg, &res, cred, ctx);
3175 case -NFS4ERR_OPENMODE:
3176 if (!(sattr->ia_valid & ATTR_SIZE)) {
3177 pr_warn_once("NFSv4: server %s is incorrectly "
3178 "applying open mode checks to "
3179 "a SETATTR that is not "
3180 "changing file size.\n",
3181 server->nfs_client->cl_hostname);
3183 if (state && !(state->state & FMODE_WRITE)) {
3185 if (sattr->ia_valid & ATTR_OPEN)
3190 err = nfs4_handle_exception(server, err, &exception);
3191 } while (exception.retry);
3197 nfs4_wait_on_layoutreturn(struct inode *inode, struct rpc_task *task)
3199 if (inode == NULL || !nfs_have_layout(inode))
3202 return pnfs_wait_on_layoutreturn(inode, task);
3205 struct nfs4_closedata {
3206 struct inode *inode;
3207 struct nfs4_state *state;
3208 struct nfs_closeargs arg;
3209 struct nfs_closeres res;
3211 struct nfs4_layoutreturn_args arg;
3212 struct nfs4_layoutreturn_res res;
3213 struct nfs4_xdr_opaque_data ld_private;
3217 struct nfs_fattr fattr;
3218 unsigned long timestamp;
3221 static void nfs4_free_closedata(void *data)
3223 struct nfs4_closedata *calldata = data;
3224 struct nfs4_state_owner *sp = calldata->state->owner;
3225 struct super_block *sb = calldata->state->inode->i_sb;
3227 if (calldata->lr.roc)
3228 pnfs_roc_release(&calldata->lr.arg, &calldata->lr.res,
3229 calldata->res.lr_ret);
3230 nfs4_put_open_state(calldata->state);
3231 nfs_free_seqid(calldata->arg.seqid);
3232 nfs4_put_state_owner(sp);
3233 nfs_sb_deactive(sb);
3237 static void nfs4_close_done(struct rpc_task *task, void *data)
3239 struct nfs4_closedata *calldata = data;
3240 struct nfs4_state *state = calldata->state;
3241 struct nfs_server *server = NFS_SERVER(calldata->inode);
3242 nfs4_stateid *res_stateid = NULL;
3243 struct nfs4_exception exception = {
3245 .inode = calldata->inode,
3246 .stateid = &calldata->arg.stateid,
3249 dprintk("%s: begin!\n", __func__);
3250 if (!nfs4_sequence_done(task, &calldata->res.seq_res))
3252 trace_nfs4_close(state, &calldata->arg, &calldata->res, task->tk_status);
3254 /* Handle Layoutreturn errors */
3255 if (calldata->arg.lr_args && task->tk_status != 0) {
3256 switch (calldata->res.lr_ret) {
3258 calldata->res.lr_ret = -NFS4ERR_NOMATCHING_LAYOUT;
3261 calldata->arg.lr_args = NULL;
3262 calldata->res.lr_res = NULL;
3264 case -NFS4ERR_OLD_STATEID:
3265 if (nfs4_layoutreturn_refresh_stateid(&calldata->arg.lr_args->stateid,
3266 &calldata->arg.lr_args->range,
3270 case -NFS4ERR_ADMIN_REVOKED:
3271 case -NFS4ERR_DELEG_REVOKED:
3272 case -NFS4ERR_EXPIRED:
3273 case -NFS4ERR_BAD_STATEID:
3274 case -NFS4ERR_UNKNOWN_LAYOUTTYPE:
3275 case -NFS4ERR_WRONG_CRED:
3276 calldata->arg.lr_args = NULL;
3277 calldata->res.lr_res = NULL;
3282 /* hmm. we are done with the inode, and in the process of freeing
3283 * the state_owner. we keep this around to process errors
3285 switch (task->tk_status) {
3287 res_stateid = &calldata->res.stateid;
3288 renew_lease(server, calldata->timestamp);
3290 case -NFS4ERR_ACCESS:
3291 if (calldata->arg.bitmask != NULL) {
3292 calldata->arg.bitmask = NULL;
3293 calldata->res.fattr = NULL;
3298 case -NFS4ERR_OLD_STATEID:
3299 /* Did we race with OPEN? */
3300 if (nfs4_refresh_open_stateid(&calldata->arg.stateid,
3304 case -NFS4ERR_ADMIN_REVOKED:
3305 case -NFS4ERR_STALE_STATEID:
3306 case -NFS4ERR_EXPIRED:
3307 nfs4_free_revoked_stateid(server,
3308 &calldata->arg.stateid,
3309 task->tk_msg.rpc_cred);
3311 case -NFS4ERR_BAD_STATEID:
3314 task->tk_status = nfs4_async_handle_exception(task,
3315 server, task->tk_status, &exception);
3316 if (exception.retry)
3319 nfs_clear_open_stateid(state, &calldata->arg.stateid,
3320 res_stateid, calldata->arg.fmode);
3322 task->tk_status = 0;
3323 nfs_release_seqid(calldata->arg.seqid);
3324 nfs_refresh_inode(calldata->inode, &calldata->fattr);
3325 dprintk("%s: done, ret = %d!\n", __func__, task->tk_status);
3328 calldata->res.lr_ret = 0;
3330 task->tk_status = 0;
3331 rpc_restart_call_prepare(task);
3335 static void nfs4_close_prepare(struct rpc_task *task, void *data)
3337 struct nfs4_closedata *calldata = data;
3338 struct nfs4_state *state = calldata->state;
3339 struct inode *inode = calldata->inode;
3340 struct pnfs_layout_hdr *lo;
3341 bool is_rdonly, is_wronly, is_rdwr;
3344 dprintk("%s: begin!\n", __func__);
3345 if (nfs_wait_on_sequence(calldata->arg.seqid, task) != 0)
3348 task->tk_msg.rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_OPEN_DOWNGRADE];
3349 spin_lock(&state->owner->so_lock);
3350 is_rdwr = test_bit(NFS_O_RDWR_STATE, &state->flags);
3351 is_rdonly = test_bit(NFS_O_RDONLY_STATE, &state->flags);
3352 is_wronly = test_bit(NFS_O_WRONLY_STATE, &state->flags);
3353 /* Calculate the change in open mode */
3354 calldata->arg.fmode = 0;
3355 if (state->n_rdwr == 0) {
3356 if (state->n_rdonly == 0)
3357 call_close |= is_rdonly;
3359 calldata->arg.fmode |= FMODE_READ;
3360 if (state->n_wronly == 0)
3361 call_close |= is_wronly;
3363 calldata->arg.fmode |= FMODE_WRITE;
3364 if (calldata->arg.fmode != (FMODE_READ|FMODE_WRITE))
3365 call_close |= is_rdwr;
3367 calldata->arg.fmode |= FMODE_READ|FMODE_WRITE;
3369 if (!nfs4_valid_open_stateid(state) ||
3370 !nfs4_refresh_open_stateid(&calldata->arg.stateid, state))
3372 spin_unlock(&state->owner->so_lock);
3375 /* Note: exit _without_ calling nfs4_close_done */
3379 if (!calldata->lr.roc && nfs4_wait_on_layoutreturn(inode, task)) {
3380 nfs_release_seqid(calldata->arg.seqid);
3384 lo = calldata->arg.lr_args ? calldata->arg.lr_args->layout : NULL;
3385 if (lo && !pnfs_layout_is_valid(lo)) {
3386 calldata->arg.lr_args = NULL;
3387 calldata->res.lr_res = NULL;
3390 if (calldata->arg.fmode == 0)
3391 task->tk_msg.rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_CLOSE];
3393 if (calldata->arg.fmode == 0 || calldata->arg.fmode == FMODE_READ) {
3394 /* Close-to-open cache consistency revalidation */
3395 if (!nfs4_have_delegation(inode, FMODE_READ))
3396 calldata->arg.bitmask = NFS_SERVER(inode)->cache_consistency_bitmask;
3398 calldata->arg.bitmask = NULL;
3401 calldata->arg.share_access =
3402 nfs4_map_atomic_open_share(NFS_SERVER(inode),
3403 calldata->arg.fmode, 0);
3405 if (calldata->res.fattr == NULL)
3406 calldata->arg.bitmask = NULL;
3407 else if (calldata->arg.bitmask == NULL)
3408 calldata->res.fattr = NULL;
3409 calldata->timestamp = jiffies;
3410 if (nfs4_setup_sequence(NFS_SERVER(inode)->nfs_client,
3411 &calldata->arg.seq_args,
3412 &calldata->res.seq_res,
3414 nfs_release_seqid(calldata->arg.seqid);
3415 dprintk("%s: done!\n", __func__);
3418 task->tk_action = NULL;
3420 nfs4_sequence_done(task, &calldata->res.seq_res);
3423 static const struct rpc_call_ops nfs4_close_ops = {
3424 .rpc_call_prepare = nfs4_close_prepare,
3425 .rpc_call_done = nfs4_close_done,
3426 .rpc_release = nfs4_free_closedata,
3430 * It is possible for data to be read/written from a mem-mapped file
3431 * after the sys_close call (which hits the vfs layer as a flush).
3432 * This means that we can't safely call nfsv4 close on a file until
3433 * the inode is cleared. This in turn means that we are not good
3434 * NFSv4 citizens - we do not indicate to the server to update the file's
3435 * share state even when we are done with one of the three share
3436 * stateid's in the inode.
3438 * NOTE: Caller must be holding the sp->so_owner semaphore!
3440 int nfs4_do_close(struct nfs4_state *state, gfp_t gfp_mask, int wait)
3442 struct nfs_server *server = NFS_SERVER(state->inode);
3443 struct nfs_seqid *(*alloc_seqid)(struct nfs_seqid_counter *, gfp_t);
3444 struct nfs4_closedata *calldata;
3445 struct nfs4_state_owner *sp = state->owner;
3446 struct rpc_task *task;
3447 struct rpc_message msg = {
3448 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_CLOSE],
3449 .rpc_cred = state->owner->so_cred,
3451 struct rpc_task_setup task_setup_data = {
3452 .rpc_client = server->client,
3453 .rpc_message = &msg,
3454 .callback_ops = &nfs4_close_ops,
3455 .workqueue = nfsiod_workqueue,
3456 .flags = RPC_TASK_ASYNC,
3458 int status = -ENOMEM;
3460 nfs4_state_protect(server->nfs_client, NFS_SP4_MACH_CRED_CLEANUP,
3461 &task_setup_data.rpc_client, &msg);
3463 calldata = kzalloc(sizeof(*calldata), gfp_mask);
3464 if (calldata == NULL)
3466 nfs4_init_sequence(&calldata->arg.seq_args, &calldata->res.seq_res, 1, 0);
3467 calldata->inode = state->inode;
3468 calldata->state = state;
3469 calldata->arg.fh = NFS_FH(state->inode);
3470 if (!nfs4_copy_open_stateid(&calldata->arg.stateid, state))
3471 goto out_free_calldata;
3472 /* Serialization for the sequence id */
3473 alloc_seqid = server->nfs_client->cl_mvops->alloc_seqid;
3474 calldata->arg.seqid = alloc_seqid(&state->owner->so_seqid, gfp_mask);
3475 if (IS_ERR(calldata->arg.seqid))
3476 goto out_free_calldata;
3477 nfs_fattr_init(&calldata->fattr);
3478 calldata->arg.fmode = 0;
3479 calldata->lr.arg.ld_private = &calldata->lr.ld_private;
3480 calldata->res.fattr = &calldata->fattr;
3481 calldata->res.seqid = calldata->arg.seqid;
3482 calldata->res.server = server;
3483 calldata->res.lr_ret = -NFS4ERR_NOMATCHING_LAYOUT;
3484 calldata->lr.roc = pnfs_roc(state->inode,
3485 &calldata->lr.arg, &calldata->lr.res, msg.rpc_cred);
3486 if (calldata->lr.roc) {
3487 calldata->arg.lr_args = &calldata->lr.arg;
3488 calldata->res.lr_res = &calldata->lr.res;
3490 nfs_sb_active(calldata->inode->i_sb);
3492 msg.rpc_argp = &calldata->arg;
3493 msg.rpc_resp = &calldata->res;
3494 task_setup_data.callback_data = calldata;
3495 task = rpc_run_task(&task_setup_data);
3497 return PTR_ERR(task);
3500 status = rpc_wait_for_completion_task(task);
3506 nfs4_put_open_state(state);
3507 nfs4_put_state_owner(sp);
3511 static struct inode *
3512 nfs4_atomic_open(struct inode *dir, struct nfs_open_context *ctx,
3513 int open_flags, struct iattr *attr, int *opened)
3515 struct nfs4_state *state;
3516 struct nfs4_label l = {0, 0, 0, NULL}, *label = NULL;
3518 label = nfs4_label_init_security(dir, ctx->dentry, attr, &l);
3520 /* Protect against concurrent sillydeletes */
3521 state = nfs4_do_open(dir, ctx, open_flags, attr, label, opened);
3523 nfs4_label_release_security(label);
3526 return ERR_CAST(state);
3527 return state->inode;
3530 static void nfs4_close_context(struct nfs_open_context *ctx, int is_sync)
3532 if (ctx->state == NULL)
3535 nfs4_close_sync(ctx->state, ctx->mode);
3537 nfs4_close_state(ctx->state, ctx->mode);
3540 #define FATTR4_WORD1_NFS40_MASK (2*FATTR4_WORD1_MOUNTED_ON_FILEID - 1UL)
3541 #define FATTR4_WORD2_NFS41_MASK (2*FATTR4_WORD2_SUPPATTR_EXCLCREAT - 1UL)
3542 #define FATTR4_WORD2_NFS42_MASK (2*FATTR4_WORD2_MODE_UMASK - 1UL)
3544 static int _nfs4_server_capabilities(struct nfs_server *server, struct nfs_fh *fhandle)
3546 u32 bitmask[3] = {}, minorversion = server->nfs_client->cl_minorversion;
3547 struct nfs4_server_caps_arg args = {
3551 struct nfs4_server_caps_res res = {};
3552 struct rpc_message msg = {
3553 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SERVER_CAPS],
3560 bitmask[0] = FATTR4_WORD0_SUPPORTED_ATTRS |
3561 FATTR4_WORD0_FH_EXPIRE_TYPE |
3562 FATTR4_WORD0_LINK_SUPPORT |
3563 FATTR4_WORD0_SYMLINK_SUPPORT |
3564 FATTR4_WORD0_ACLSUPPORT;
3566 bitmask[2] = FATTR4_WORD2_SUPPATTR_EXCLCREAT;
3568 status = nfs4_call_sync(server->client, server, &msg, &args.seq_args, &res.seq_res, 0);
3570 /* Sanity check the server answers */
3571 switch (minorversion) {
3573 res.attr_bitmask[1] &= FATTR4_WORD1_NFS40_MASK;
3574 res.attr_bitmask[2] = 0;
3577 res.attr_bitmask[2] &= FATTR4_WORD2_NFS41_MASK;
3580 res.attr_bitmask[2] &= FATTR4_WORD2_NFS42_MASK;
3582 memcpy(server->attr_bitmask, res.attr_bitmask, sizeof(server->attr_bitmask));
3583 server->caps &= ~(NFS_CAP_ACLS|NFS_CAP_HARDLINKS|
3584 NFS_CAP_SYMLINKS|NFS_CAP_FILEID|
3585 NFS_CAP_MODE|NFS_CAP_NLINK|NFS_CAP_OWNER|
3586 NFS_CAP_OWNER_GROUP|NFS_CAP_ATIME|
3587 NFS_CAP_CTIME|NFS_CAP_MTIME|
3588 NFS_CAP_SECURITY_LABEL);
3589 if (res.attr_bitmask[0] & FATTR4_WORD0_ACL &&
3590 res.acl_bitmask & ACL4_SUPPORT_ALLOW_ACL)
3591 server->caps |= NFS_CAP_ACLS;
3592 if (res.has_links != 0)
3593 server->caps |= NFS_CAP_HARDLINKS;
3594 if (res.has_symlinks != 0)
3595 server->caps |= NFS_CAP_SYMLINKS;
3596 if (res.attr_bitmask[0] & FATTR4_WORD0_FILEID)
3597 server->caps |= NFS_CAP_FILEID;
3598 if (res.attr_bitmask[1] & FATTR4_WORD1_MODE)
3599 server->caps |= NFS_CAP_MODE;
3600 if (res.attr_bitmask[1] & FATTR4_WORD1_NUMLINKS)
3601 server->caps |= NFS_CAP_NLINK;
3602 if (res.attr_bitmask[1] & FATTR4_WORD1_OWNER)
3603 server->caps |= NFS_CAP_OWNER;
3604 if (res.attr_bitmask[1] & FATTR4_WORD1_OWNER_GROUP)
3605 server->caps |= NFS_CAP_OWNER_GROUP;
3606 if (res.attr_bitmask[1] & FATTR4_WORD1_TIME_ACCESS)
3607 server->caps |= NFS_CAP_ATIME;
3608 if (res.attr_bitmask[1] & FATTR4_WORD1_TIME_METADATA)
3609 server->caps |= NFS_CAP_CTIME;
3610 if (res.attr_bitmask[1] & FATTR4_WORD1_TIME_MODIFY)
3611 server->caps |= NFS_CAP_MTIME;
3612 #ifdef CONFIG_NFS_V4_SECURITY_LABEL
3613 if (res.attr_bitmask[2] & FATTR4_WORD2_SECURITY_LABEL)
3614 server->caps |= NFS_CAP_SECURITY_LABEL;
3616 memcpy(server->attr_bitmask_nl, res.attr_bitmask,
3617 sizeof(server->attr_bitmask));
3618 server->attr_bitmask_nl[2] &= ~FATTR4_WORD2_SECURITY_LABEL;
3620 memcpy(server->cache_consistency_bitmask, res.attr_bitmask, sizeof(server->cache_consistency_bitmask));
3621 server->cache_consistency_bitmask[0] &= FATTR4_WORD0_CHANGE|FATTR4_WORD0_SIZE;
3622 server->cache_consistency_bitmask[1] &= FATTR4_WORD1_TIME_METADATA|FATTR4_WORD1_TIME_MODIFY;
3623 server->cache_consistency_bitmask[2] = 0;
3625 /* Avoid a regression due to buggy server */
3626 for (i = 0; i < ARRAY_SIZE(res.exclcreat_bitmask); i++)
3627 res.exclcreat_bitmask[i] &= res.attr_bitmask[i];
3628 memcpy(server->exclcreat_bitmask, res.exclcreat_bitmask,
3629 sizeof(server->exclcreat_bitmask));
3631 server->acl_bitmask = res.acl_bitmask;
3632 server->fh_expire_type = res.fh_expire_type;
3638 int nfs4_server_capabilities(struct nfs_server *server, struct nfs_fh *fhandle)
3640 struct nfs4_exception exception = { };
3643 err = nfs4_handle_exception(server,
3644 _nfs4_server_capabilities(server, fhandle),
3646 } while (exception.retry);
3650 static int _nfs4_lookup_root(struct nfs_server *server, struct nfs_fh *fhandle,
3651 struct nfs_fsinfo *info)
3654 struct nfs4_lookup_root_arg args = {
3657 struct nfs4_lookup_res res = {
3659 .fattr = info->fattr,
3662 struct rpc_message msg = {
3663 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LOOKUP_ROOT],
3668 bitmask[0] = nfs4_fattr_bitmap[0];
3669 bitmask[1] = nfs4_fattr_bitmap[1];
3671 * Process the label in the upcoming getfattr
3673 bitmask[2] = nfs4_fattr_bitmap[2] & ~FATTR4_WORD2_SECURITY_LABEL;
3675 nfs_fattr_init(info->fattr);
3676 return nfs4_call_sync(server->client, server, &msg, &args.seq_args, &res.seq_res, 0);
3679 static int nfs4_lookup_root(struct nfs_server *server, struct nfs_fh *fhandle,
3680 struct nfs_fsinfo *info)
3682 struct nfs4_exception exception = { };
3685 err = _nfs4_lookup_root(server, fhandle, info);
3686 trace_nfs4_lookup_root(server, fhandle, info->fattr, err);
3689 case -NFS4ERR_WRONGSEC:
3692 err = nfs4_handle_exception(server, err, &exception);
3694 } while (exception.retry);
3699 static int nfs4_lookup_root_sec(struct nfs_server *server, struct nfs_fh *fhandle,
3700 struct nfs_fsinfo *info, rpc_authflavor_t flavor)
3702 struct rpc_auth_create_args auth_args = {
3703 .pseudoflavor = flavor,
3705 struct rpc_auth *auth;
3707 auth = rpcauth_create(&auth_args, server->client);
3710 return nfs4_lookup_root(server, fhandle, info);
3714 * Retry pseudoroot lookup with various security flavors. We do this when:
3716 * NFSv4.0: the PUTROOTFH operation returns NFS4ERR_WRONGSEC
3717 * NFSv4.1: the server does not support the SECINFO_NO_NAME operation
3719 * Returns zero on success, or a negative NFS4ERR value, or a
3720 * negative errno value.
3722 static int nfs4_find_root_sec(struct nfs_server *server, struct nfs_fh *fhandle,
3723 struct nfs_fsinfo *info)
3725 /* Per 3530bis 15.33.5 */
3726 static const rpc_authflavor_t flav_array[] = {
3730 RPC_AUTH_UNIX, /* courtesy */
3733 int status = -EPERM;
3736 if (server->auth_info.flavor_len > 0) {
3737 /* try each flavor specified by user */
3738 for (i = 0; i < server->auth_info.flavor_len; i++) {
3739 status = nfs4_lookup_root_sec(server, fhandle, info,
3740 server->auth_info.flavors[i]);
3741 if (status == -NFS4ERR_WRONGSEC || status == -EACCES)
3746 /* no flavors specified by user, try default list */
3747 for (i = 0; i < ARRAY_SIZE(flav_array); i++) {
3748 status = nfs4_lookup_root_sec(server, fhandle, info,
3750 if (status == -NFS4ERR_WRONGSEC || status == -EACCES)
3757 * -EACCESS could mean that the user doesn't have correct permissions
3758 * to access the mount. It could also mean that we tried to mount
3759 * with a gss auth flavor, but rpc.gssd isn't running. Either way,
3760 * existing mount programs don't handle -EACCES very well so it should
3761 * be mapped to -EPERM instead.
3763 if (status == -EACCES)
3769 * nfs4_proc_get_rootfh - get file handle for server's pseudoroot
3770 * @server: initialized nfs_server handle
3771 * @fhandle: we fill in the pseudo-fs root file handle
3772 * @info: we fill in an FSINFO struct
3773 * @auth_probe: probe the auth flavours
3775 * Returns zero on success, or a negative errno.
3777 int nfs4_proc_get_rootfh(struct nfs_server *server, struct nfs_fh *fhandle,
3778 struct nfs_fsinfo *info,
3784 status = nfs4_lookup_root(server, fhandle, info);
3786 if (auth_probe || status == NFS4ERR_WRONGSEC)
3787 status = server->nfs_client->cl_mvops->find_root_sec(server,
3791 status = nfs4_server_capabilities(server, fhandle);
3793 status = nfs4_do_fsinfo(server, fhandle, info);
3795 return nfs4_map_errors(status);
3798 static int nfs4_proc_get_root(struct nfs_server *server, struct nfs_fh *mntfh,
3799 struct nfs_fsinfo *info)
3802 struct nfs_fattr *fattr = info->fattr;
3803 struct nfs4_label *label = NULL;
3805 error = nfs4_server_capabilities(server, mntfh);
3807 dprintk("nfs4_get_root: getcaps error = %d\n", -error);
3811 label = nfs4_label_alloc(server, GFP_KERNEL);
3813 return PTR_ERR(label);
3815 error = nfs4_proc_getattr(server, mntfh, fattr, label, NULL);
3817 dprintk("nfs4_get_root: getattr error = %d\n", -error);
3818 goto err_free_label;
3821 if (fattr->valid & NFS_ATTR_FATTR_FSID &&
3822 !nfs_fsid_equal(&server->fsid, &fattr->fsid))
3823 memcpy(&server->fsid, &fattr->fsid, sizeof(server->fsid));
3826 nfs4_label_free(label);
3832 * Get locations and (maybe) other attributes of a referral.
3833 * Note that we'll actually follow the referral later when
3834 * we detect fsid mismatch in inode revalidation
3836 static int nfs4_get_referral(struct rpc_clnt *client, struct inode *dir,
3837 const struct qstr *name, struct nfs_fattr *fattr,
3838 struct nfs_fh *fhandle)
3840 int status = -ENOMEM;
3841 struct page *page = NULL;
3842 struct nfs4_fs_locations *locations = NULL;
3844 page = alloc_page(GFP_KERNEL);
3847 locations = kmalloc(sizeof(struct nfs4_fs_locations), GFP_KERNEL);
3848 if (locations == NULL)
3851 status = nfs4_proc_fs_locations(client, dir, name, locations, page);
3856 * If the fsid didn't change, this is a migration event, not a
3857 * referral. Cause us to drop into the exception handler, which
3858 * will kick off migration recovery.
3860 if (nfs_fsid_equal(&NFS_SERVER(dir)->fsid, &locations->fattr.fsid)) {
3861 dprintk("%s: server did not return a different fsid for"
3862 " a referral at %s\n", __func__, name->name);
3863 status = -NFS4ERR_MOVED;
3866 /* Fixup attributes for the nfs_lookup() call to nfs_fhget() */
3867 nfs_fixup_referral_attributes(&locations->fattr);
3869 /* replace the lookup nfs_fattr with the locations nfs_fattr */
3870 memcpy(fattr, &locations->fattr, sizeof(struct nfs_fattr));
3871 memset(fhandle, 0, sizeof(struct nfs_fh));
3879 static int _nfs4_proc_getattr(struct nfs_server *server, struct nfs_fh *fhandle,
3880 struct nfs_fattr *fattr, struct nfs4_label *label,
3881 struct inode *inode)
3883 __u32 bitmask[NFS4_BITMASK_SZ];
3884 struct nfs4_getattr_arg args = {
3888 struct nfs4_getattr_res res = {
3893 struct rpc_message msg = {
3894 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_GETATTR],
3899 nfs4_bitmap_copy_adjust(bitmask, nfs4_bitmask(server, label), inode);
3901 nfs_fattr_init(fattr);
3902 return nfs4_call_sync(server->client, server, &msg, &args.seq_args, &res.seq_res, 0);
3905 static int nfs4_proc_getattr(struct nfs_server *server, struct nfs_fh *fhandle,
3906 struct nfs_fattr *fattr, struct nfs4_label *label,
3907 struct inode *inode)
3909 struct nfs4_exception exception = { };
3912 err = _nfs4_proc_getattr(server, fhandle, fattr, label, inode);
3913 trace_nfs4_getattr(server, fhandle, fattr, err);
3914 err = nfs4_handle_exception(server, err,
3916 } while (exception.retry);
3921 * The file is not closed if it is opened due to the a request to change
3922 * the size of the file. The open call will not be needed once the
3923 * VFS layer lookup-intents are implemented.
3925 * Close is called when the inode is destroyed.
3926 * If we haven't opened the file for O_WRONLY, we
3927 * need to in the size_change case to obtain a stateid.
3930 * Because OPEN is always done by name in nfsv4, it is
3931 * possible that we opened a different file by the same
3932 * name. We can recognize this race condition, but we
3933 * can't do anything about it besides returning an error.
3935 * This will be fixed with VFS changes (lookup-intent).
3938 nfs4_proc_setattr(struct dentry *dentry, struct nfs_fattr *fattr,
3939 struct iattr *sattr)
3941 struct inode *inode = d_inode(dentry);
3942 struct rpc_cred *cred = NULL;
3943 struct nfs_open_context *ctx = NULL;
3944 struct nfs4_label *label = NULL;
3947 if (pnfs_ld_layoutret_on_setattr(inode) &&
3948 sattr->ia_valid & ATTR_SIZE &&
3949 sattr->ia_size < i_size_read(inode))
3950 pnfs_commit_and_return_layout(inode);
3952 nfs_fattr_init(fattr);
3954 /* Deal with open(O_TRUNC) */
3955 if (sattr->ia_valid & ATTR_OPEN)
3956 sattr->ia_valid &= ~(ATTR_MTIME|ATTR_CTIME);
3958 /* Optimization: if the end result is no change, don't RPC */
3959 if ((sattr->ia_valid & ~(ATTR_FILE|ATTR_OPEN)) == 0)
3962 /* Search for an existing open(O_WRITE) file */
3963 if (sattr->ia_valid & ATTR_FILE) {
3965 ctx = nfs_file_open_context(sattr->ia_file);
3970 label = nfs4_label_alloc(NFS_SERVER(inode), GFP_KERNEL);
3972 return PTR_ERR(label);
3974 /* Return any delegations if we're going to change ACLs */
3975 if ((sattr->ia_valid & (ATTR_MODE|ATTR_UID|ATTR_GID)) != 0)
3976 nfs4_inode_make_writeable(inode);
3978 status = nfs4_do_setattr(inode, cred, fattr, sattr, ctx, NULL, label);
3980 nfs_setattr_update_inode(inode, sattr, fattr);
3981 nfs_setsecurity(inode, fattr, label);
3983 nfs4_label_free(label);
3987 static int _nfs4_proc_lookup(struct rpc_clnt *clnt, struct inode *dir,
3988 const struct qstr *name, struct nfs_fh *fhandle,
3989 struct nfs_fattr *fattr, struct nfs4_label *label)
3991 struct nfs_server *server = NFS_SERVER(dir);
3993 struct nfs4_lookup_arg args = {
3994 .bitmask = server->attr_bitmask,
3995 .dir_fh = NFS_FH(dir),
3998 struct nfs4_lookup_res res = {
4004 struct rpc_message msg = {
4005 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LOOKUP],
4010 args.bitmask = nfs4_bitmask(server, label);
4012 nfs_fattr_init(fattr);
4014 dprintk("NFS call lookup %s\n", name->name);
4015 status = nfs4_call_sync(clnt, server, &msg, &args.seq_args, &res.seq_res, 0);
4016 dprintk("NFS reply lookup: %d\n", status);
4020 static void nfs_fixup_secinfo_attributes(struct nfs_fattr *fattr)
4022 fattr->valid |= NFS_ATTR_FATTR_TYPE | NFS_ATTR_FATTR_MODE |
4023 NFS_ATTR_FATTR_NLINK | NFS_ATTR_FATTR_MOUNTPOINT;
4024 fattr->mode = S_IFDIR | S_IRUGO | S_IXUGO;
4028 static int nfs4_proc_lookup_common(struct rpc_clnt **clnt, struct inode *dir,
4029 const struct qstr *name, struct nfs_fh *fhandle,
4030 struct nfs_fattr *fattr, struct nfs4_label *label)
4032 struct nfs4_exception exception = { };
4033 struct rpc_clnt *client = *clnt;
4036 err = _nfs4_proc_lookup(client, dir, name, fhandle, fattr, label);
4037 trace_nfs4_lookup(dir, name, err);
4039 case -NFS4ERR_BADNAME:
4042 case -NFS4ERR_MOVED:
4043 err = nfs4_get_referral(client, dir, name, fattr, fhandle);
4044 if (err == -NFS4ERR_MOVED)
4045 err = nfs4_handle_exception(NFS_SERVER(dir), err, &exception);
4047 case -NFS4ERR_WRONGSEC:
4049 if (client != *clnt)
4051 client = nfs4_negotiate_security(client, dir, name);
4053 return PTR_ERR(client);
4055 exception.retry = 1;
4058 err = nfs4_handle_exception(NFS_SERVER(dir), err, &exception);
4060 } while (exception.retry);
4065 else if (client != *clnt)
4066 rpc_shutdown_client(client);
4071 static int nfs4_proc_lookup(struct inode *dir, const struct qstr *name,
4072 struct nfs_fh *fhandle, struct nfs_fattr *fattr,
4073 struct nfs4_label *label)
4076 struct rpc_clnt *client = NFS_CLIENT(dir);
4078 status = nfs4_proc_lookup_common(&client, dir, name, fhandle, fattr, label);
4079 if (client != NFS_CLIENT(dir)) {
4080 rpc_shutdown_client(client);
4081 nfs_fixup_secinfo_attributes(fattr);
4087 nfs4_proc_lookup_mountpoint(struct inode *dir, const struct qstr *name,
4088 struct nfs_fh *fhandle, struct nfs_fattr *fattr)
4090 struct rpc_clnt *client = NFS_CLIENT(dir);
4093 status = nfs4_proc_lookup_common(&client, dir, name, fhandle, fattr, NULL);
4095 return ERR_PTR(status);
4096 return (client == NFS_CLIENT(dir)) ? rpc_clone_client(client) : client;
4099 static int _nfs4_proc_lookupp(struct inode *inode,
4100 struct nfs_fh *fhandle, struct nfs_fattr *fattr,
4101 struct nfs4_label *label)
4103 struct rpc_clnt *clnt = NFS_CLIENT(inode);
4104 struct nfs_server *server = NFS_SERVER(inode);
4106 struct nfs4_lookupp_arg args = {
4107 .bitmask = server->attr_bitmask,
4108 .fh = NFS_FH(inode),
4110 struct nfs4_lookupp_res res = {
4116 struct rpc_message msg = {
4117 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LOOKUPP],
4122 args.bitmask = nfs4_bitmask(server, label);
4124 nfs_fattr_init(fattr);
4126 dprintk("NFS call lookupp ino=0x%lx\n", inode->i_ino);
4127 status = nfs4_call_sync(clnt, server, &msg, &args.seq_args,
4129 dprintk("NFS reply lookupp: %d\n", status);
4133 static int nfs4_proc_lookupp(struct inode *inode, struct nfs_fh *fhandle,
4134 struct nfs_fattr *fattr, struct nfs4_label *label)
4136 struct nfs4_exception exception = { };
4139 err = _nfs4_proc_lookupp(inode, fhandle, fattr, label);
4140 trace_nfs4_lookupp(inode, err);
4141 err = nfs4_handle_exception(NFS_SERVER(inode), err,
4143 } while (exception.retry);
4147 static int _nfs4_proc_access(struct inode *inode, struct nfs_access_entry *entry)
4149 struct nfs_server *server = NFS_SERVER(inode);
4150 struct nfs4_accessargs args = {
4151 .fh = NFS_FH(inode),
4152 .access = entry->mask,
4154 struct nfs4_accessres res = {
4157 struct rpc_message msg = {
4158 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_ACCESS],
4161 .rpc_cred = entry->cred,
4165 if (!nfs4_have_delegation(inode, FMODE_READ)) {
4166 res.fattr = nfs_alloc_fattr();
4167 if (res.fattr == NULL)
4169 args.bitmask = server->cache_consistency_bitmask;
4172 status = nfs4_call_sync(server->client, server, &msg, &args.seq_args, &res.seq_res, 0);
4174 nfs_access_set_mask(entry, res.access);
4176 nfs_refresh_inode(inode, res.fattr);
4178 nfs_free_fattr(res.fattr);
4182 static int nfs4_proc_access(struct inode *inode, struct nfs_access_entry *entry)
4184 struct nfs4_exception exception = { };
4187 err = _nfs4_proc_access(inode, entry);
4188 trace_nfs4_access(inode, err);
4189 err = nfs4_handle_exception(NFS_SERVER(inode), err,
4191 } while (exception.retry);
4196 * TODO: For the time being, we don't try to get any attributes
4197 * along with any of the zero-copy operations READ, READDIR,
4200 * In the case of the first three, we want to put the GETATTR
4201 * after the read-type operation -- this is because it is hard
4202 * to predict the length of a GETATTR response in v4, and thus
4203 * align the READ data correctly. This means that the GETATTR
4204 * may end up partially falling into the page cache, and we should
4205 * shift it into the 'tail' of the xdr_buf before processing.
4206 * To do this efficiently, we need to know the total length
4207 * of data received, which doesn't seem to be available outside
4210 * In the case of WRITE, we also want to put the GETATTR after
4211 * the operation -- in this case because we want to make sure
4212 * we get the post-operation mtime and size.
4214 * Both of these changes to the XDR layer would in fact be quite
4215 * minor, but I decided to leave them for a subsequent patch.
4217 static int _nfs4_proc_readlink(struct inode *inode, struct page *page,
4218 unsigned int pgbase, unsigned int pglen)
4220 struct nfs4_readlink args = {
4221 .fh = NFS_FH(inode),
4226 struct nfs4_readlink_res res;
4227 struct rpc_message msg = {
4228 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_READLINK],
4233 return nfs4_call_sync(NFS_SERVER(inode)->client, NFS_SERVER(inode), &msg, &args.seq_args, &res.seq_res, 0);
4236 static int nfs4_proc_readlink(struct inode *inode, struct page *page,
4237 unsigned int pgbase, unsigned int pglen)
4239 struct nfs4_exception exception = { };
4242 err = _nfs4_proc_readlink(inode, page, pgbase, pglen);
4243 trace_nfs4_readlink(inode, err);
4244 err = nfs4_handle_exception(NFS_SERVER(inode), err,
4246 } while (exception.retry);
4251 * This is just for mknod. open(O_CREAT) will always do ->open_context().
4254 nfs4_proc_create(struct inode *dir, struct dentry *dentry, struct iattr *sattr,
4257 struct nfs_server *server = NFS_SERVER(dir);
4258 struct nfs4_label l, *ilabel = NULL;
4259 struct nfs_open_context *ctx;
4260 struct nfs4_state *state;
4263 ctx = alloc_nfs_open_context(dentry, FMODE_READ, NULL);
4265 return PTR_ERR(ctx);
4267 ilabel = nfs4_label_init_security(dir, dentry, sattr, &l);
4269 if (!(server->attr_bitmask[2] & FATTR4_WORD2_MODE_UMASK))
4270 sattr->ia_mode &= ~current_umask();
4271 state = nfs4_do_open(dir, ctx, flags, sattr, ilabel, NULL);
4272 if (IS_ERR(state)) {
4273 status = PTR_ERR(state);
4277 nfs4_label_release_security(ilabel);
4278 put_nfs_open_context(ctx);
4283 _nfs4_proc_remove(struct inode *dir, const struct qstr *name, u32 ftype)
4285 struct nfs_server *server = NFS_SERVER(dir);
4286 struct nfs_removeargs args = {
4290 struct nfs_removeres res = {
4293 struct rpc_message msg = {
4294 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_REMOVE],
4298 unsigned long timestamp = jiffies;
4301 status = nfs4_call_sync(server->client, server, &msg, &args.seq_args, &res.seq_res, 1);
4303 spin_lock(&dir->i_lock);
4304 update_changeattr_locked(dir, &res.cinfo, timestamp, 0);
4305 /* Removing a directory decrements nlink in the parent */
4306 if (ftype == NF4DIR && dir->i_nlink > 2)
4307 nfs4_dec_nlink_locked(dir);
4308 spin_unlock(&dir->i_lock);
4313 static int nfs4_proc_remove(struct inode *dir, struct dentry *dentry)
4315 struct nfs4_exception exception = { };
4316 struct inode *inode = d_inode(dentry);
4320 if (inode->i_nlink == 1)
4321 nfs4_inode_return_delegation(inode);
4323 nfs4_inode_make_writeable(inode);
4326 err = _nfs4_proc_remove(dir, &dentry->d_name, NF4REG);
4327 trace_nfs4_remove(dir, &dentry->d_name, err);
4328 err = nfs4_handle_exception(NFS_SERVER(dir), err,
4330 } while (exception.retry);
4334 static int nfs4_proc_rmdir(struct inode *dir, const struct qstr *name)
4336 struct nfs4_exception exception = { };
4340 err = _nfs4_proc_remove(dir, name, NF4DIR);
4341 trace_nfs4_remove(dir, name, err);
4342 err = nfs4_handle_exception(NFS_SERVER(dir), err,
4344 } while (exception.retry);
4348 static void nfs4_proc_unlink_setup(struct rpc_message *msg,
4349 struct dentry *dentry,
4350 struct inode *inode)
4352 struct nfs_removeargs *args = msg->rpc_argp;
4353 struct nfs_removeres *res = msg->rpc_resp;
4355 res->server = NFS_SB(dentry->d_sb);
4356 msg->rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_REMOVE];
4357 nfs4_init_sequence(&args->seq_args, &res->seq_res, 1, 0);
4359 nfs_fattr_init(res->dir_attr);
4362 nfs4_inode_return_delegation(inode);
4365 static void nfs4_proc_unlink_rpc_prepare(struct rpc_task *task, struct nfs_unlinkdata *data)
4367 nfs4_setup_sequence(NFS_SB(data->dentry->d_sb)->nfs_client,
4368 &data->args.seq_args,
4373 static int nfs4_proc_unlink_done(struct rpc_task *task, struct inode *dir)
4375 struct nfs_unlinkdata *data = task->tk_calldata;
4376 struct nfs_removeres *res = &data->res;
4378 if (!nfs4_sequence_done(task, &res->seq_res))
4380 if (nfs4_async_handle_error(task, res->server, NULL,
4381 &data->timeout) == -EAGAIN)
4383 if (task->tk_status == 0)
4384 update_changeattr(dir, &res->cinfo,
4385 res->dir_attr->time_start, 0);
4389 static void nfs4_proc_rename_setup(struct rpc_message *msg,
4390 struct dentry *old_dentry,
4391 struct dentry *new_dentry)
4393 struct nfs_renameargs *arg = msg->rpc_argp;
4394 struct nfs_renameres *res = msg->rpc_resp;
4395 struct inode *old_inode = d_inode(old_dentry);
4396 struct inode *new_inode = d_inode(new_dentry);
4399 nfs4_inode_make_writeable(old_inode);
4401 nfs4_inode_return_delegation(new_inode);
4402 msg->rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_RENAME];
4403 res->server = NFS_SB(old_dentry->d_sb);
4404 nfs4_init_sequence(&arg->seq_args, &res->seq_res, 1, 0);
4407 static void nfs4_proc_rename_rpc_prepare(struct rpc_task *task, struct nfs_renamedata *data)
4409 nfs4_setup_sequence(NFS_SERVER(data->old_dir)->nfs_client,
4410 &data->args.seq_args,
4415 static int nfs4_proc_rename_done(struct rpc_task *task, struct inode *old_dir,
4416 struct inode *new_dir)
4418 struct nfs_renamedata *data = task->tk_calldata;
4419 struct nfs_renameres *res = &data->res;
4421 if (!nfs4_sequence_done(task, &res->seq_res))
4423 if (nfs4_async_handle_error(task, res->server, NULL, &data->timeout) == -EAGAIN)
4426 if (task->tk_status == 0) {
4427 if (new_dir != old_dir) {
4428 /* Note: If we moved a directory, nlink will change */
4429 update_changeattr(old_dir, &res->old_cinfo,
4430 res->old_fattr->time_start,
4431 NFS_INO_INVALID_OTHER);
4432 update_changeattr(new_dir, &res->new_cinfo,
4433 res->new_fattr->time_start,
4434 NFS_INO_INVALID_OTHER);
4436 update_changeattr(old_dir, &res->old_cinfo,
4437 res->old_fattr->time_start,
4443 static int _nfs4_proc_link(struct inode *inode, struct inode *dir, const struct qstr *name)
4445 struct nfs_server *server = NFS_SERVER(inode);
4446 __u32 bitmask[NFS4_BITMASK_SZ];
4447 struct nfs4_link_arg arg = {
4448 .fh = NFS_FH(inode),
4449 .dir_fh = NFS_FH(dir),
4453 struct nfs4_link_res res = {
4457 struct rpc_message msg = {
4458 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LINK],
4462 int status = -ENOMEM;
4464 res.fattr = nfs_alloc_fattr();
4465 if (res.fattr == NULL)
4468 res.label = nfs4_label_alloc(server, GFP_KERNEL);
4469 if (IS_ERR(res.label)) {
4470 status = PTR_ERR(res.label);
4474 nfs4_inode_make_writeable(inode);
4475 nfs4_bitmap_copy_adjust_setattr(bitmask, nfs4_bitmask(server, res.label), inode);
4477 status = nfs4_call_sync(server->client, server, &msg, &arg.seq_args, &res.seq_res, 1);
4479 update_changeattr(dir, &res.cinfo, res.fattr->time_start, 0);
4480 status = nfs_post_op_update_inode(inode, res.fattr);
4482 nfs_setsecurity(inode, res.fattr, res.label);
4486 nfs4_label_free(res.label);
4489 nfs_free_fattr(res.fattr);
4493 static int nfs4_proc_link(struct inode *inode, struct inode *dir, const struct qstr *name)
4495 struct nfs4_exception exception = { };
4498 err = nfs4_handle_exception(NFS_SERVER(inode),
4499 _nfs4_proc_link(inode, dir, name),
4501 } while (exception.retry);
4505 struct nfs4_createdata {
4506 struct rpc_message msg;
4507 struct nfs4_create_arg arg;
4508 struct nfs4_create_res res;
4510 struct nfs_fattr fattr;
4511 struct nfs4_label *label;
4514 static struct nfs4_createdata *nfs4_alloc_createdata(struct inode *dir,
4515 const struct qstr *name, struct iattr *sattr, u32 ftype)
4517 struct nfs4_createdata *data;
4519 data = kzalloc(sizeof(*data), GFP_KERNEL);
4521 struct nfs_server *server = NFS_SERVER(dir);
4523 data->label = nfs4_label_alloc(server, GFP_KERNEL);
4524 if (IS_ERR(data->label))
4527 data->msg.rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_CREATE];
4528 data->msg.rpc_argp = &data->arg;
4529 data->msg.rpc_resp = &data->res;
4530 data->arg.dir_fh = NFS_FH(dir);
4531 data->arg.server = server;
4532 data->arg.name = name;
4533 data->arg.attrs = sattr;
4534 data->arg.ftype = ftype;
4535 data->arg.bitmask = nfs4_bitmask(server, data->label);
4536 data->arg.umask = current_umask();
4537 data->res.server = server;
4538 data->res.fh = &data->fh;
4539 data->res.fattr = &data->fattr;
4540 data->res.label = data->label;
4541 nfs_fattr_init(data->res.fattr);
4549 static int nfs4_do_create(struct inode *dir, struct dentry *dentry, struct nfs4_createdata *data)
4551 int status = nfs4_call_sync(NFS_SERVER(dir)->client, NFS_SERVER(dir), &data->msg,
4552 &data->arg.seq_args, &data->res.seq_res, 1);
4554 spin_lock(&dir->i_lock);
4555 update_changeattr_locked(dir, &data->res.dir_cinfo,
4556 data->res.fattr->time_start, 0);
4557 /* Creating a directory bumps nlink in the parent */
4558 if (data->arg.ftype == NF4DIR)
4559 nfs4_inc_nlink_locked(dir);
4560 spin_unlock(&dir->i_lock);
4561 status = nfs_instantiate(dentry, data->res.fh, data->res.fattr, data->res.label);
4566 static void nfs4_free_createdata(struct nfs4_createdata *data)
4568 nfs4_label_free(data->label);
4572 static int _nfs4_proc_symlink(struct inode *dir, struct dentry *dentry,
4573 struct page *page, unsigned int len, struct iattr *sattr,
4574 struct nfs4_label *label)
4576 struct nfs4_createdata *data;
4577 int status = -ENAMETOOLONG;
4579 if (len > NFS4_MAXPATHLEN)
4583 data = nfs4_alloc_createdata(dir, &dentry->d_name, sattr, NF4LNK);
4587 data->msg.rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SYMLINK];
4588 data->arg.u.symlink.pages = &page;
4589 data->arg.u.symlink.len = len;
4590 data->arg.label = label;
4592 status = nfs4_do_create(dir, dentry, data);
4594 nfs4_free_createdata(data);
4599 static int nfs4_proc_symlink(struct inode *dir, struct dentry *dentry,
4600 struct page *page, unsigned int len, struct iattr *sattr)
4602 struct nfs4_exception exception = { };
4603 struct nfs4_label l, *label = NULL;
4606 label = nfs4_label_init_security(dir, dentry, sattr, &l);
4609 err = _nfs4_proc_symlink(dir, dentry, page, len, sattr, label);
4610 trace_nfs4_symlink(dir, &dentry->d_name, err);
4611 err = nfs4_handle_exception(NFS_SERVER(dir), err,
4613 } while (exception.retry);
4615 nfs4_label_release_security(label);
4619 static int _nfs4_proc_mkdir(struct inode *dir, struct dentry *dentry,
4620 struct iattr *sattr, struct nfs4_label *label)
4622 struct nfs4_createdata *data;
4623 int status = -ENOMEM;
4625 data = nfs4_alloc_createdata(dir, &dentry->d_name, sattr, NF4DIR);
4629 data->arg.label = label;
4630 status = nfs4_do_create(dir, dentry, data);
4632 nfs4_free_createdata(data);
4637 static int nfs4_proc_mkdir(struct inode *dir, struct dentry *dentry,
4638 struct iattr *sattr)
4640 struct nfs_server *server = NFS_SERVER(dir);
4641 struct nfs4_exception exception = { };
4642 struct nfs4_label l, *label = NULL;
4645 label = nfs4_label_init_security(dir, dentry, sattr, &l);
4647 if (!(server->attr_bitmask[2] & FATTR4_WORD2_MODE_UMASK))
4648 sattr->ia_mode &= ~current_umask();
4650 err = _nfs4_proc_mkdir(dir, dentry, sattr, label);
4651 trace_nfs4_mkdir(dir, &dentry->d_name, err);
4652 err = nfs4_handle_exception(NFS_SERVER(dir), err,
4654 } while (exception.retry);
4655 nfs4_label_release_security(label);
4660 static int _nfs4_proc_readdir(struct dentry *dentry, struct rpc_cred *cred,
4661 u64 cookie, struct page **pages, unsigned int count, bool plus)
4663 struct inode *dir = d_inode(dentry);
4664 struct nfs4_readdir_arg args = {
4669 .bitmask = NFS_SERVER(d_inode(dentry))->attr_bitmask,
4672 struct nfs4_readdir_res res;
4673 struct rpc_message msg = {
4674 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_READDIR],
4681 dprintk("%s: dentry = %pd2, cookie = %Lu\n", __func__,
4683 (unsigned long long)cookie);
4684 nfs4_setup_readdir(cookie, NFS_I(dir)->cookieverf, dentry, &args);
4685 res.pgbase = args.pgbase;
4686 status = nfs4_call_sync(NFS_SERVER(dir)->client, NFS_SERVER(dir), &msg, &args.seq_args, &res.seq_res, 0);
4688 memcpy(NFS_I(dir)->cookieverf, res.verifier.data, NFS4_VERIFIER_SIZE);
4689 status += args.pgbase;
4692 nfs_invalidate_atime(dir);
4694 dprintk("%s: returns %d\n", __func__, status);
4698 static int nfs4_proc_readdir(struct dentry *dentry, struct rpc_cred *cred,
4699 u64 cookie, struct page **pages, unsigned int count, bool plus)
4701 struct nfs4_exception exception = { };
4704 err = _nfs4_proc_readdir(dentry, cred, cookie,
4705 pages, count, plus);
4706 trace_nfs4_readdir(d_inode(dentry), err);
4707 err = nfs4_handle_exception(NFS_SERVER(d_inode(dentry)), err,
4709 } while (exception.retry);
4713 static int _nfs4_proc_mknod(struct inode *dir, struct dentry *dentry,
4714 struct iattr *sattr, struct nfs4_label *label, dev_t rdev)
4716 struct nfs4_createdata *data;
4717 int mode = sattr->ia_mode;
4718 int status = -ENOMEM;
4720 data = nfs4_alloc_createdata(dir, &dentry->d_name, sattr, NF4SOCK);
4725 data->arg.ftype = NF4FIFO;
4726 else if (S_ISBLK(mode)) {
4727 data->arg.ftype = NF4BLK;
4728 data->arg.u.device.specdata1 = MAJOR(rdev);
4729 data->arg.u.device.specdata2 = MINOR(rdev);
4731 else if (S_ISCHR(mode)) {
4732 data->arg.ftype = NF4CHR;
4733 data->arg.u.device.specdata1 = MAJOR(rdev);
4734 data->arg.u.device.specdata2 = MINOR(rdev);
4735 } else if (!S_ISSOCK(mode)) {
4740 data->arg.label = label;
4741 status = nfs4_do_create(dir, dentry, data);
4743 nfs4_free_createdata(data);
4748 static int nfs4_proc_mknod(struct inode *dir, struct dentry *dentry,
4749 struct iattr *sattr, dev_t rdev)
4751 struct nfs_server *server = NFS_SERVER(dir);
4752 struct nfs4_exception exception = { };
4753 struct nfs4_label l, *label = NULL;
4756 label = nfs4_label_init_security(dir, dentry, sattr, &l);
4758 if (!(server->attr_bitmask[2] & FATTR4_WORD2_MODE_UMASK))
4759 sattr->ia_mode &= ~current_umask();
4761 err = _nfs4_proc_mknod(dir, dentry, sattr, label, rdev);
4762 trace_nfs4_mknod(dir, &dentry->d_name, err);
4763 err = nfs4_handle_exception(NFS_SERVER(dir), err,
4765 } while (exception.retry);
4767 nfs4_label_release_security(label);
4772 static int _nfs4_proc_statfs(struct nfs_server *server, struct nfs_fh *fhandle,
4773 struct nfs_fsstat *fsstat)
4775 struct nfs4_statfs_arg args = {
4777 .bitmask = server->attr_bitmask,
4779 struct nfs4_statfs_res res = {
4782 struct rpc_message msg = {
4783 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_STATFS],
4788 nfs_fattr_init(fsstat->fattr);
4789 return nfs4_call_sync(server->client, server, &msg, &args.seq_args, &res.seq_res, 0);
4792 static int nfs4_proc_statfs(struct nfs_server *server, struct nfs_fh *fhandle, struct nfs_fsstat *fsstat)
4794 struct nfs4_exception exception = { };
4797 err = nfs4_handle_exception(server,
4798 _nfs4_proc_statfs(server, fhandle, fsstat),
4800 } while (exception.retry);
4804 static int _nfs4_do_fsinfo(struct nfs_server *server, struct nfs_fh *fhandle,
4805 struct nfs_fsinfo *fsinfo)
4807 struct nfs4_fsinfo_arg args = {
4809 .bitmask = server->attr_bitmask,
4811 struct nfs4_fsinfo_res res = {
4814 struct rpc_message msg = {
4815 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_FSINFO],
4820 return nfs4_call_sync(server->client, server, &msg, &args.seq_args, &res.seq_res, 0);
4823 static int nfs4_do_fsinfo(struct nfs_server *server, struct nfs_fh *fhandle, struct nfs_fsinfo *fsinfo)
4825 struct nfs4_exception exception = { };
4826 unsigned long now = jiffies;
4830 err = _nfs4_do_fsinfo(server, fhandle, fsinfo);
4831 trace_nfs4_fsinfo(server, fhandle, fsinfo->fattr, err);
4833 nfs4_set_lease_period(server->nfs_client,
4834 fsinfo->lease_time * HZ,
4838 err = nfs4_handle_exception(server, err, &exception);
4839 } while (exception.retry);
4843 static int nfs4_proc_fsinfo(struct nfs_server *server, struct nfs_fh *fhandle, struct nfs_fsinfo *fsinfo)
4847 nfs_fattr_init(fsinfo->fattr);
4848 error = nfs4_do_fsinfo(server, fhandle, fsinfo);
4850 /* block layout checks this! */
4851 server->pnfs_blksize = fsinfo->blksize;
4852 set_pnfs_layoutdriver(server, fhandle, fsinfo);
4858 static int _nfs4_proc_pathconf(struct nfs_server *server, struct nfs_fh *fhandle,
4859 struct nfs_pathconf *pathconf)
4861 struct nfs4_pathconf_arg args = {
4863 .bitmask = server->attr_bitmask,
4865 struct nfs4_pathconf_res res = {
4866 .pathconf = pathconf,
4868 struct rpc_message msg = {
4869 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_PATHCONF],
4874 /* None of the pathconf attributes are mandatory to implement */
4875 if ((args.bitmask[0] & nfs4_pathconf_bitmap[0]) == 0) {
4876 memset(pathconf, 0, sizeof(*pathconf));
4880 nfs_fattr_init(pathconf->fattr);
4881 return nfs4_call_sync(server->client, server, &msg, &args.seq_args, &res.seq_res, 0);
4884 static int nfs4_proc_pathconf(struct nfs_server *server, struct nfs_fh *fhandle,
4885 struct nfs_pathconf *pathconf)
4887 struct nfs4_exception exception = { };
4891 err = nfs4_handle_exception(server,
4892 _nfs4_proc_pathconf(server, fhandle, pathconf),
4894 } while (exception.retry);
4898 int nfs4_set_rw_stateid(nfs4_stateid *stateid,
4899 const struct nfs_open_context *ctx,
4900 const struct nfs_lock_context *l_ctx,
4903 return nfs4_select_rw_stateid(ctx->state, fmode, l_ctx, stateid, NULL);
4905 EXPORT_SYMBOL_GPL(nfs4_set_rw_stateid);
4907 static bool nfs4_stateid_is_current(nfs4_stateid *stateid,
4908 const struct nfs_open_context *ctx,
4909 const struct nfs_lock_context *l_ctx,
4912 nfs4_stateid current_stateid;
4914 /* If the current stateid represents a lost lock, then exit */
4915 if (nfs4_set_rw_stateid(¤t_stateid, ctx, l_ctx, fmode) == -EIO)
4917 return nfs4_stateid_match(stateid, ¤t_stateid);
4920 static bool nfs4_error_stateid_expired(int err)
4923 case -NFS4ERR_DELEG_REVOKED:
4924 case -NFS4ERR_ADMIN_REVOKED:
4925 case -NFS4ERR_BAD_STATEID:
4926 case -NFS4ERR_STALE_STATEID:
4927 case -NFS4ERR_OLD_STATEID:
4928 case -NFS4ERR_OPENMODE:
4929 case -NFS4ERR_EXPIRED:
4935 static int nfs4_read_done_cb(struct rpc_task *task, struct nfs_pgio_header *hdr)
4937 struct nfs_server *server = NFS_SERVER(hdr->inode);
4939 trace_nfs4_read(hdr, task->tk_status);
4940 if (task->tk_status < 0) {
4941 struct nfs4_exception exception = {
4942 .inode = hdr->inode,
4943 .state = hdr->args.context->state,
4944 .stateid = &hdr->args.stateid,
4946 task->tk_status = nfs4_async_handle_exception(task,
4947 server, task->tk_status, &exception);
4948 if (exception.retry) {
4949 rpc_restart_call_prepare(task);
4954 if (task->tk_status > 0)
4955 renew_lease(server, hdr->timestamp);
4959 static bool nfs4_read_stateid_changed(struct rpc_task *task,
4960 struct nfs_pgio_args *args)
4963 if (!nfs4_error_stateid_expired(task->tk_status) ||
4964 nfs4_stateid_is_current(&args->stateid,
4969 rpc_restart_call_prepare(task);
4973 static int nfs4_read_done(struct rpc_task *task, struct nfs_pgio_header *hdr)
4976 dprintk("--> %s\n", __func__);
4978 if (!nfs4_sequence_done(task, &hdr->res.seq_res))
4980 if (nfs4_read_stateid_changed(task, &hdr->args))
4982 if (task->tk_status > 0)
4983 nfs_invalidate_atime(hdr->inode);
4984 return hdr->pgio_done_cb ? hdr->pgio_done_cb(task, hdr) :
4985 nfs4_read_done_cb(task, hdr);
4988 static void nfs4_proc_read_setup(struct nfs_pgio_header *hdr,
4989 struct rpc_message *msg)
4991 hdr->timestamp = jiffies;
4992 if (!hdr->pgio_done_cb)
4993 hdr->pgio_done_cb = nfs4_read_done_cb;
4994 msg->rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_READ];
4995 nfs4_init_sequence(&hdr->args.seq_args, &hdr->res.seq_res, 0, 0);
4998 static int nfs4_proc_pgio_rpc_prepare(struct rpc_task *task,
4999 struct nfs_pgio_header *hdr)
5001 if (nfs4_setup_sequence(NFS_SERVER(hdr->inode)->nfs_client,
5002 &hdr->args.seq_args,
5006 if (nfs4_set_rw_stateid(&hdr->args.stateid, hdr->args.context,
5007 hdr->args.lock_context,
5008 hdr->rw_mode) == -EIO)
5010 if (unlikely(test_bit(NFS_CONTEXT_BAD, &hdr->args.context->flags)))
5015 static int nfs4_write_done_cb(struct rpc_task *task,
5016 struct nfs_pgio_header *hdr)
5018 struct inode *inode = hdr->inode;
5020 trace_nfs4_write(hdr, task->tk_status);
5021 if (task->tk_status < 0) {
5022 struct nfs4_exception exception = {
5023 .inode = hdr->inode,
5024 .state = hdr->args.context->state,
5025 .stateid = &hdr->args.stateid,
5027 task->tk_status = nfs4_async_handle_exception(task,
5028 NFS_SERVER(inode), task->tk_status,
5030 if (exception.retry) {
5031 rpc_restart_call_prepare(task);
5035 if (task->tk_status >= 0) {
5036 renew_lease(NFS_SERVER(inode), hdr->timestamp);
5037 nfs_writeback_update_inode(hdr);
5042 static bool nfs4_write_stateid_changed(struct rpc_task *task,
5043 struct nfs_pgio_args *args)
5046 if (!nfs4_error_stateid_expired(task->tk_status) ||
5047 nfs4_stateid_is_current(&args->stateid,
5052 rpc_restart_call_prepare(task);
5056 static int nfs4_write_done(struct rpc_task *task, struct nfs_pgio_header *hdr)
5058 if (!nfs4_sequence_done(task, &hdr->res.seq_res))
5060 if (nfs4_write_stateid_changed(task, &hdr->args))
5062 return hdr->pgio_done_cb ? hdr->pgio_done_cb(task, hdr) :
5063 nfs4_write_done_cb(task, hdr);
5067 bool nfs4_write_need_cache_consistency_data(struct nfs_pgio_header *hdr)
5069 /* Don't request attributes for pNFS or O_DIRECT writes */
5070 if (hdr->ds_clp != NULL || hdr->dreq != NULL)
5072 /* Otherwise, request attributes if and only if we don't hold
5075 return nfs4_have_delegation(hdr->inode, FMODE_READ) == 0;
5078 static void nfs4_proc_write_setup(struct nfs_pgio_header *hdr,
5079 struct rpc_message *msg,
5080 struct rpc_clnt **clnt)
5082 struct nfs_server *server = NFS_SERVER(hdr->inode);
5084 if (!nfs4_write_need_cache_consistency_data(hdr)) {
5085 hdr->args.bitmask = NULL;
5086 hdr->res.fattr = NULL;
5088 hdr->args.bitmask = server->cache_consistency_bitmask;
5090 if (!hdr->pgio_done_cb)
5091 hdr->pgio_done_cb = nfs4_write_done_cb;
5092 hdr->res.server = server;
5093 hdr->timestamp = jiffies;
5095 msg->rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_WRITE];
5096 nfs4_init_sequence(&hdr->args.seq_args, &hdr->res.seq_res, 1, 0);
5097 nfs4_state_protect_write(server->nfs_client, clnt, msg, hdr);
5100 static void nfs4_proc_commit_rpc_prepare(struct rpc_task *task, struct nfs_commit_data *data)
5102 nfs4_setup_sequence(NFS_SERVER(data->inode)->nfs_client,
5103 &data->args.seq_args,
5108 static int nfs4_commit_done_cb(struct rpc_task *task, struct nfs_commit_data *data)
5110 struct inode *inode = data->inode;
5112 trace_nfs4_commit(data, task->tk_status);
5113 if (nfs4_async_handle_error(task, NFS_SERVER(inode),
5114 NULL, NULL) == -EAGAIN) {
5115 rpc_restart_call_prepare(task);
5121 static int nfs4_commit_done(struct rpc_task *task, struct nfs_commit_data *data)
5123 if (!nfs4_sequence_done(task, &data->res.seq_res))
5125 return data->commit_done_cb(task, data);
5128 static void nfs4_proc_commit_setup(struct nfs_commit_data *data, struct rpc_message *msg,
5129 struct rpc_clnt **clnt)
5131 struct nfs_server *server = NFS_SERVER(data->inode);
5133 if (data->commit_done_cb == NULL)
5134 data->commit_done_cb = nfs4_commit_done_cb;
5135 data->res.server = server;
5136 msg->rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_COMMIT];
5137 nfs4_init_sequence(&data->args.seq_args, &data->res.seq_res, 1, 0);
5138 nfs4_state_protect(server->nfs_client, NFS_SP4_MACH_CRED_COMMIT, clnt, msg);
5141 static int _nfs4_proc_commit(struct file *dst, struct nfs_commitargs *args,
5142 struct nfs_commitres *res)
5144 struct inode *dst_inode = file_inode(dst);
5145 struct nfs_server *server = NFS_SERVER(dst_inode);
5146 struct rpc_message msg = {
5147 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_COMMIT],
5152 args->fh = NFS_FH(dst_inode);
5153 return nfs4_call_sync(server->client, server, &msg,
5154 &args->seq_args, &res->seq_res, 1);
5157 int nfs4_proc_commit(struct file *dst, __u64 offset, __u32 count, struct nfs_commitres *res)
5159 struct nfs_commitargs args = {
5163 struct nfs_server *dst_server = NFS_SERVER(file_inode(dst));
5164 struct nfs4_exception exception = { };
5168 status = _nfs4_proc_commit(dst, &args, res);
5169 status = nfs4_handle_exception(dst_server, status, &exception);
5170 } while (exception.retry);
5175 struct nfs4_renewdata {
5176 struct nfs_client *client;
5177 unsigned long timestamp;
5181 * nfs4_proc_async_renew(): This is not one of the nfs_rpc_ops; it is a special
5182 * standalone procedure for queueing an asynchronous RENEW.
5184 static void nfs4_renew_release(void *calldata)
5186 struct nfs4_renewdata *data = calldata;
5187 struct nfs_client *clp = data->client;
5189 if (refcount_read(&clp->cl_count) > 1)
5190 nfs4_schedule_state_renewal(clp);
5191 nfs_put_client(clp);
5195 static void nfs4_renew_done(struct rpc_task *task, void *calldata)
5197 struct nfs4_renewdata *data = calldata;
5198 struct nfs_client *clp = data->client;
5199 unsigned long timestamp = data->timestamp;
5201 trace_nfs4_renew_async(clp, task->tk_status);
5202 switch (task->tk_status) {
5205 case -NFS4ERR_LEASE_MOVED:
5206 nfs4_schedule_lease_moved_recovery(clp);
5209 /* Unless we're shutting down, schedule state recovery! */
5210 if (test_bit(NFS_CS_RENEWD, &clp->cl_res_state) == 0)
5212 if (task->tk_status != NFS4ERR_CB_PATH_DOWN) {
5213 nfs4_schedule_lease_recovery(clp);
5216 nfs4_schedule_path_down_recovery(clp);
5218 do_renew_lease(clp, timestamp);
5221 static const struct rpc_call_ops nfs4_renew_ops = {
5222 .rpc_call_done = nfs4_renew_done,
5223 .rpc_release = nfs4_renew_release,
5226 static int nfs4_proc_async_renew(struct nfs_client *clp, struct rpc_cred *cred, unsigned renew_flags)
5228 struct rpc_message msg = {
5229 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_RENEW],
5233 struct nfs4_renewdata *data;
5235 if (renew_flags == 0)
5237 if (!refcount_inc_not_zero(&clp->cl_count))
5239 data = kmalloc(sizeof(*data), GFP_NOFS);
5241 nfs_put_client(clp);
5245 data->timestamp = jiffies;
5246 return rpc_call_async(clp->cl_rpcclient, &msg, RPC_TASK_TIMEOUT,
5247 &nfs4_renew_ops, data);
5250 static int nfs4_proc_renew(struct nfs_client *clp, struct rpc_cred *cred)
5252 struct rpc_message msg = {
5253 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_RENEW],
5257 unsigned long now = jiffies;
5260 status = rpc_call_sync(clp->cl_rpcclient, &msg, RPC_TASK_TIMEOUT);
5263 do_renew_lease(clp, now);
5267 static inline int nfs4_server_supports_acls(struct nfs_server *server)
5269 return server->caps & NFS_CAP_ACLS;
5272 /* Assuming that XATTR_SIZE_MAX is a multiple of PAGE_SIZE, and that
5273 * it's OK to put sizeof(void) * (XATTR_SIZE_MAX/PAGE_SIZE) bytes on
5276 #define NFS4ACL_MAXPAGES DIV_ROUND_UP(XATTR_SIZE_MAX, PAGE_SIZE)
5278 static int buf_to_pages_noslab(const void *buf, size_t buflen,
5279 struct page **pages)
5281 struct page *newpage, **spages;
5287 len = min_t(size_t, PAGE_SIZE, buflen);
5288 newpage = alloc_page(GFP_KERNEL);
5290 if (newpage == NULL)
5292 memcpy(page_address(newpage), buf, len);
5297 } while (buflen != 0);
5303 __free_page(spages[rc-1]);
5307 struct nfs4_cached_acl {
5313 static void nfs4_set_cached_acl(struct inode *inode, struct nfs4_cached_acl *acl)
5315 struct nfs_inode *nfsi = NFS_I(inode);
5317 spin_lock(&inode->i_lock);
5318 kfree(nfsi->nfs4_acl);
5319 nfsi->nfs4_acl = acl;
5320 spin_unlock(&inode->i_lock);
5323 static void nfs4_zap_acl_attr(struct inode *inode)
5325 nfs4_set_cached_acl(inode, NULL);
5328 static inline ssize_t nfs4_read_cached_acl(struct inode *inode, char *buf, size_t buflen)
5330 struct nfs_inode *nfsi = NFS_I(inode);
5331 struct nfs4_cached_acl *acl;
5334 spin_lock(&inode->i_lock);
5335 acl = nfsi->nfs4_acl;
5338 if (buf == NULL) /* user is just asking for length */
5340 if (acl->cached == 0)
5342 ret = -ERANGE; /* see getxattr(2) man page */
5343 if (acl->len > buflen)
5345 memcpy(buf, acl->data, acl->len);
5349 spin_unlock(&inode->i_lock);
5353 static void nfs4_write_cached_acl(struct inode *inode, struct page **pages, size_t pgbase, size_t acl_len)
5355 struct nfs4_cached_acl *acl;
5356 size_t buflen = sizeof(*acl) + acl_len;
5358 if (buflen <= PAGE_SIZE) {
5359 acl = kmalloc(buflen, GFP_KERNEL);
5363 _copy_from_pages(acl->data, pages, pgbase, acl_len);
5365 acl = kmalloc(sizeof(*acl), GFP_KERNEL);
5372 nfs4_set_cached_acl(inode, acl);
5376 * The getxattr API returns the required buffer length when called with a
5377 * NULL buf. The NFSv4 acl tool then calls getxattr again after allocating
5378 * the required buf. On a NULL buf, we send a page of data to the server
5379 * guessing that the ACL request can be serviced by a page. If so, we cache
5380 * up to the page of ACL data, and the 2nd call to getxattr is serviced by
5381 * the cache. If not so, we throw away the page, and cache the required
5382 * length. The next getxattr call will then produce another round trip to
5383 * the server, this time with the input buf of the required size.
5385 static ssize_t __nfs4_get_acl_uncached(struct inode *inode, void *buf, size_t buflen)
5387 struct page *pages[NFS4ACL_MAXPAGES + 1] = {NULL, };
5388 struct nfs_getaclargs args = {
5389 .fh = NFS_FH(inode),
5393 struct nfs_getaclres res = {
5396 struct rpc_message msg = {
5397 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_GETACL],
5401 unsigned int npages = DIV_ROUND_UP(buflen, PAGE_SIZE) + 1;
5402 int ret = -ENOMEM, i;
5404 if (npages > ARRAY_SIZE(pages))
5407 for (i = 0; i < npages; i++) {
5408 pages[i] = alloc_page(GFP_KERNEL);
5413 /* for decoding across pages */
5414 res.acl_scratch = alloc_page(GFP_KERNEL);
5415 if (!res.acl_scratch)
5418 args.acl_len = npages * PAGE_SIZE;
5420 dprintk("%s buf %p buflen %zu npages %d args.acl_len %zu\n",
5421 __func__, buf, buflen, npages, args.acl_len);
5422 ret = nfs4_call_sync(NFS_SERVER(inode)->client, NFS_SERVER(inode),
5423 &msg, &args.seq_args, &res.seq_res, 0);
5427 /* Handle the case where the passed-in buffer is too short */
5428 if (res.acl_flags & NFS4_ACL_TRUNC) {
5429 /* Did the user only issue a request for the acl length? */
5435 nfs4_write_cached_acl(inode, pages, res.acl_data_offset, res.acl_len);
5437 if (res.acl_len > buflen) {
5441 _copy_from_pages(buf, pages, res.acl_data_offset, res.acl_len);
5446 for (i = 0; i < npages; i++)
5448 __free_page(pages[i]);
5449 if (res.acl_scratch)
5450 __free_page(res.acl_scratch);
5454 static ssize_t nfs4_get_acl_uncached(struct inode *inode, void *buf, size_t buflen)
5456 struct nfs4_exception exception = { };
5459 ret = __nfs4_get_acl_uncached(inode, buf, buflen);
5460 trace_nfs4_get_acl(inode, ret);
5463 ret = nfs4_handle_exception(NFS_SERVER(inode), ret, &exception);
5464 } while (exception.retry);
5468 static ssize_t nfs4_proc_get_acl(struct inode *inode, void *buf, size_t buflen)
5470 struct nfs_server *server = NFS_SERVER(inode);
5473 if (!nfs4_server_supports_acls(server))
5475 ret = nfs_revalidate_inode(server, inode);
5478 if (NFS_I(inode)->cache_validity & NFS_INO_INVALID_ACL)
5479 nfs_zap_acl_cache(inode);
5480 ret = nfs4_read_cached_acl(inode, buf, buflen);
5482 /* -ENOENT is returned if there is no ACL or if there is an ACL
5483 * but no cached acl data, just the acl length */
5485 return nfs4_get_acl_uncached(inode, buf, buflen);
5488 static int __nfs4_proc_set_acl(struct inode *inode, const void *buf, size_t buflen)
5490 struct nfs_server *server = NFS_SERVER(inode);
5491 struct page *pages[NFS4ACL_MAXPAGES];
5492 struct nfs_setaclargs arg = {
5493 .fh = NFS_FH(inode),
5497 struct nfs_setaclres res;
5498 struct rpc_message msg = {
5499 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SETACL],
5503 unsigned int npages = DIV_ROUND_UP(buflen, PAGE_SIZE);
5506 if (!nfs4_server_supports_acls(server))
5508 if (npages > ARRAY_SIZE(pages))
5510 i = buf_to_pages_noslab(buf, buflen, arg.acl_pages);
5513 nfs4_inode_make_writeable(inode);
5514 ret = nfs4_call_sync(server->client, server, &msg, &arg.seq_args, &res.seq_res, 1);
5517 * Free each page after tx, so the only ref left is
5518 * held by the network stack
5521 put_page(pages[i-1]);
5524 * Acl update can result in inode attribute update.
5525 * so mark the attribute cache invalid.
5527 spin_lock(&inode->i_lock);
5528 NFS_I(inode)->cache_validity |= NFS_INO_INVALID_CHANGE
5529 | NFS_INO_INVALID_CTIME
5530 | NFS_INO_REVAL_FORCED;
5531 spin_unlock(&inode->i_lock);
5532 nfs_access_zap_cache(inode);
5533 nfs_zap_acl_cache(inode);
5537 static int nfs4_proc_set_acl(struct inode *inode, const void *buf, size_t buflen)
5539 struct nfs4_exception exception = { };
5542 err = __nfs4_proc_set_acl(inode, buf, buflen);
5543 trace_nfs4_set_acl(inode, err);
5544 err = nfs4_handle_exception(NFS_SERVER(inode), err,
5546 } while (exception.retry);
5550 #ifdef CONFIG_NFS_V4_SECURITY_LABEL
5551 static int _nfs4_get_security_label(struct inode *inode, void *buf,
5554 struct nfs_server *server = NFS_SERVER(inode);
5555 struct nfs_fattr fattr;
5556 struct nfs4_label label = {0, 0, buflen, buf};
5558 u32 bitmask[3] = { 0, 0, FATTR4_WORD2_SECURITY_LABEL };
5559 struct nfs4_getattr_arg arg = {
5560 .fh = NFS_FH(inode),
5563 struct nfs4_getattr_res res = {
5568 struct rpc_message msg = {
5569 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_GETATTR],
5575 nfs_fattr_init(&fattr);
5577 ret = nfs4_call_sync(server->client, server, &msg, &arg.seq_args, &res.seq_res, 0);
5580 if (!(fattr.valid & NFS_ATTR_FATTR_V4_SECURITY_LABEL))
5582 if (buflen < label.len)
5587 static int nfs4_get_security_label(struct inode *inode, void *buf,
5590 struct nfs4_exception exception = { };
5593 if (!nfs_server_capable(inode, NFS_CAP_SECURITY_LABEL))
5597 err = _nfs4_get_security_label(inode, buf, buflen);
5598 trace_nfs4_get_security_label(inode, err);
5599 err = nfs4_handle_exception(NFS_SERVER(inode), err,
5601 } while (exception.retry);
5605 static int _nfs4_do_set_security_label(struct inode *inode,
5606 struct nfs4_label *ilabel,
5607 struct nfs_fattr *fattr,
5608 struct nfs4_label *olabel)
5611 struct iattr sattr = {0};
5612 struct nfs_server *server = NFS_SERVER(inode);
5613 const u32 bitmask[3] = { 0, 0, FATTR4_WORD2_SECURITY_LABEL };
5614 struct nfs_setattrargs arg = {
5615 .fh = NFS_FH(inode),
5621 struct nfs_setattrres res = {
5626 struct rpc_message msg = {
5627 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SETATTR],
5633 nfs4_stateid_copy(&arg.stateid, &zero_stateid);
5635 status = nfs4_call_sync(server->client, server, &msg, &arg.seq_args, &res.seq_res, 1);
5637 dprintk("%s failed: %d\n", __func__, status);
5642 static int nfs4_do_set_security_label(struct inode *inode,
5643 struct nfs4_label *ilabel,
5644 struct nfs_fattr *fattr,
5645 struct nfs4_label *olabel)
5647 struct nfs4_exception exception = { };
5651 err = _nfs4_do_set_security_label(inode, ilabel,
5653 trace_nfs4_set_security_label(inode, err);
5654 err = nfs4_handle_exception(NFS_SERVER(inode), err,
5656 } while (exception.retry);
5661 nfs4_set_security_label(struct inode *inode, const void *buf, size_t buflen)
5663 struct nfs4_label ilabel, *olabel = NULL;
5664 struct nfs_fattr fattr;
5665 struct rpc_cred *cred;
5668 if (!nfs_server_capable(inode, NFS_CAP_SECURITY_LABEL))
5671 nfs_fattr_init(&fattr);
5675 ilabel.label = (char *)buf;
5676 ilabel.len = buflen;
5678 cred = rpc_lookup_cred();
5680 return PTR_ERR(cred);
5682 olabel = nfs4_label_alloc(NFS_SERVER(inode), GFP_KERNEL);
5683 if (IS_ERR(olabel)) {
5684 status = -PTR_ERR(olabel);
5688 status = nfs4_do_set_security_label(inode, &ilabel, &fattr, olabel);
5690 nfs_setsecurity(inode, &fattr, olabel);
5692 nfs4_label_free(olabel);
5697 #endif /* CONFIG_NFS_V4_SECURITY_LABEL */
5700 static void nfs4_init_boot_verifier(const struct nfs_client *clp,
5701 nfs4_verifier *bootverf)
5705 if (test_bit(NFS4CLNT_PURGE_STATE, &clp->cl_state)) {
5706 /* An impossible timestamp guarantees this value
5707 * will never match a generated boot time. */
5708 verf[0] = cpu_to_be32(U32_MAX);
5709 verf[1] = cpu_to_be32(U32_MAX);
5711 struct nfs_net *nn = net_generic(clp->cl_net, nfs_net_id);
5712 u64 ns = ktime_to_ns(nn->boot_time);
5714 verf[0] = cpu_to_be32(ns >> 32);
5715 verf[1] = cpu_to_be32(ns);
5717 memcpy(bootverf->data, verf, sizeof(bootverf->data));
5721 nfs4_init_nonuniform_client_string(struct nfs_client *clp)
5726 if (clp->cl_owner_id != NULL)
5731 strlen(clp->cl_rpcclient->cl_nodename) +
5733 strlen(rpc_peeraddr2str(clp->cl_rpcclient, RPC_DISPLAY_ADDR)) +
5736 if (nfs4_client_id_uniquifier[0] != '\0')
5737 len += strlen(nfs4_client_id_uniquifier) + 1;
5738 if (len > NFS4_OPAQUE_LIMIT + 1)
5742 * Since this string is allocated at mount time, and held until the
5743 * nfs_client is destroyed, we can use GFP_KERNEL here w/o worrying
5744 * about a memory-reclaim deadlock.
5746 str = kmalloc(len, GFP_KERNEL);
5751 if (nfs4_client_id_uniquifier[0] != '\0')
5752 scnprintf(str, len, "Linux NFSv4.0 %s/%s/%s",
5753 clp->cl_rpcclient->cl_nodename,
5754 nfs4_client_id_uniquifier,
5755 rpc_peeraddr2str(clp->cl_rpcclient,
5758 scnprintf(str, len, "Linux NFSv4.0 %s/%s",
5759 clp->cl_rpcclient->cl_nodename,
5760 rpc_peeraddr2str(clp->cl_rpcclient,
5764 clp->cl_owner_id = str;
5769 nfs4_init_uniquifier_client_string(struct nfs_client *clp)
5774 len = 10 + 10 + 1 + 10 + 1 +
5775 strlen(nfs4_client_id_uniquifier) + 1 +
5776 strlen(clp->cl_rpcclient->cl_nodename) + 1;
5778 if (len > NFS4_OPAQUE_LIMIT + 1)
5782 * Since this string is allocated at mount time, and held until the
5783 * nfs_client is destroyed, we can use GFP_KERNEL here w/o worrying
5784 * about a memory-reclaim deadlock.
5786 str = kmalloc(len, GFP_KERNEL);
5790 scnprintf(str, len, "Linux NFSv%u.%u %s/%s",
5791 clp->rpc_ops->version, clp->cl_minorversion,
5792 nfs4_client_id_uniquifier,
5793 clp->cl_rpcclient->cl_nodename);
5794 clp->cl_owner_id = str;
5799 nfs4_init_uniform_client_string(struct nfs_client *clp)
5804 if (clp->cl_owner_id != NULL)
5807 if (nfs4_client_id_uniquifier[0] != '\0')
5808 return nfs4_init_uniquifier_client_string(clp);
5810 len = 10 + 10 + 1 + 10 + 1 +
5811 strlen(clp->cl_rpcclient->cl_nodename) + 1;
5813 if (len > NFS4_OPAQUE_LIMIT + 1)
5817 * Since this string is allocated at mount time, and held until the
5818 * nfs_client is destroyed, we can use GFP_KERNEL here w/o worrying
5819 * about a memory-reclaim deadlock.
5821 str = kmalloc(len, GFP_KERNEL);
5825 scnprintf(str, len, "Linux NFSv%u.%u %s",
5826 clp->rpc_ops->version, clp->cl_minorversion,
5827 clp->cl_rpcclient->cl_nodename);
5828 clp->cl_owner_id = str;
5833 * nfs4_callback_up_net() starts only "tcp" and "tcp6" callback
5834 * services. Advertise one based on the address family of the
5838 nfs4_init_callback_netid(const struct nfs_client *clp, char *buf, size_t len)
5840 if (strchr(clp->cl_ipaddr, ':') != NULL)
5841 return scnprintf(buf, len, "tcp6");
5843 return scnprintf(buf, len, "tcp");
5846 static void nfs4_setclientid_done(struct rpc_task *task, void *calldata)
5848 struct nfs4_setclientid *sc = calldata;
5850 if (task->tk_status == 0)
5851 sc->sc_cred = get_rpccred(task->tk_rqstp->rq_cred);
5854 static const struct rpc_call_ops nfs4_setclientid_ops = {
5855 .rpc_call_done = nfs4_setclientid_done,
5859 * nfs4_proc_setclientid - Negotiate client ID
5860 * @clp: state data structure
5861 * @program: RPC program for NFSv4 callback service
5862 * @port: IP port number for NFS4 callback service
5863 * @cred: RPC credential to use for this call
5864 * @res: where to place the result
5866 * Returns zero, a negative errno, or a negative NFS4ERR status code.
5868 int nfs4_proc_setclientid(struct nfs_client *clp, u32 program,
5869 unsigned short port, struct rpc_cred *cred,
5870 struct nfs4_setclientid_res *res)
5872 nfs4_verifier sc_verifier;
5873 struct nfs4_setclientid setclientid = {
5874 .sc_verifier = &sc_verifier,
5878 struct rpc_message msg = {
5879 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SETCLIENTID],
5880 .rpc_argp = &setclientid,
5884 struct rpc_task *task;
5885 struct rpc_task_setup task_setup_data = {
5886 .rpc_client = clp->cl_rpcclient,
5887 .rpc_message = &msg,
5888 .callback_ops = &nfs4_setclientid_ops,
5889 .callback_data = &setclientid,
5890 .flags = RPC_TASK_TIMEOUT,
5894 /* nfs_client_id4 */
5895 nfs4_init_boot_verifier(clp, &sc_verifier);
5897 if (test_bit(NFS_CS_MIGRATION, &clp->cl_flags))
5898 status = nfs4_init_uniform_client_string(clp);
5900 status = nfs4_init_nonuniform_client_string(clp);
5906 setclientid.sc_netid_len =
5907 nfs4_init_callback_netid(clp,
5908 setclientid.sc_netid,
5909 sizeof(setclientid.sc_netid));
5910 setclientid.sc_uaddr_len = scnprintf(setclientid.sc_uaddr,
5911 sizeof(setclientid.sc_uaddr), "%s.%u.%u",
5912 clp->cl_ipaddr, port >> 8, port & 255);
5914 dprintk("NFS call setclientid auth=%s, '%s'\n",
5915 clp->cl_rpcclient->cl_auth->au_ops->au_name,
5917 task = rpc_run_task(&task_setup_data);
5919 status = PTR_ERR(task);
5922 status = task->tk_status;
5923 if (setclientid.sc_cred) {
5924 clp->cl_acceptor = rpcauth_stringify_acceptor(setclientid.sc_cred);
5925 put_rpccred(setclientid.sc_cred);
5929 trace_nfs4_setclientid(clp, status);
5930 dprintk("NFS reply setclientid: %d\n", status);
5935 * nfs4_proc_setclientid_confirm - Confirm client ID
5936 * @clp: state data structure
5937 * @res: result of a previous SETCLIENTID
5938 * @cred: RPC credential to use for this call
5940 * Returns zero, a negative errno, or a negative NFS4ERR status code.
5942 int nfs4_proc_setclientid_confirm(struct nfs_client *clp,
5943 struct nfs4_setclientid_res *arg,
5944 struct rpc_cred *cred)
5946 struct rpc_message msg = {
5947 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SETCLIENTID_CONFIRM],
5953 dprintk("NFS call setclientid_confirm auth=%s, (client ID %llx)\n",
5954 clp->cl_rpcclient->cl_auth->au_ops->au_name,
5956 status = rpc_call_sync(clp->cl_rpcclient, &msg, RPC_TASK_TIMEOUT);
5957 trace_nfs4_setclientid_confirm(clp, status);
5958 dprintk("NFS reply setclientid_confirm: %d\n", status);
5962 struct nfs4_delegreturndata {
5963 struct nfs4_delegreturnargs args;
5964 struct nfs4_delegreturnres res;
5966 nfs4_stateid stateid;
5967 unsigned long timestamp;
5969 struct nfs4_layoutreturn_args arg;
5970 struct nfs4_layoutreturn_res res;
5971 struct nfs4_xdr_opaque_data ld_private;
5975 struct nfs_fattr fattr;
5977 struct inode *inode;
5980 static void nfs4_delegreturn_done(struct rpc_task *task, void *calldata)
5982 struct nfs4_delegreturndata *data = calldata;
5983 struct nfs4_exception exception = {
5984 .inode = data->inode,
5985 .stateid = &data->stateid,
5988 if (!nfs4_sequence_done(task, &data->res.seq_res))
5991 trace_nfs4_delegreturn_exit(&data->args, &data->res, task->tk_status);
5993 /* Handle Layoutreturn errors */
5994 if (data->args.lr_args && task->tk_status != 0) {
5995 switch(data->res.lr_ret) {
5997 data->res.lr_ret = -NFS4ERR_NOMATCHING_LAYOUT;
6000 data->args.lr_args = NULL;
6001 data->res.lr_res = NULL;
6003 case -NFS4ERR_OLD_STATEID:
6004 if (nfs4_layoutreturn_refresh_stateid(&data->args.lr_args->stateid,
6005 &data->args.lr_args->range,
6009 case -NFS4ERR_ADMIN_REVOKED:
6010 case -NFS4ERR_DELEG_REVOKED:
6011 case -NFS4ERR_EXPIRED:
6012 case -NFS4ERR_BAD_STATEID:
6013 case -NFS4ERR_UNKNOWN_LAYOUTTYPE:
6014 case -NFS4ERR_WRONG_CRED:
6015 data->args.lr_args = NULL;
6016 data->res.lr_res = NULL;
6021 switch (task->tk_status) {
6023 renew_lease(data->res.server, data->timestamp);
6025 case -NFS4ERR_ADMIN_REVOKED:
6026 case -NFS4ERR_DELEG_REVOKED:
6027 case -NFS4ERR_EXPIRED:
6028 nfs4_free_revoked_stateid(data->res.server,
6030 task->tk_msg.rpc_cred);
6032 case -NFS4ERR_BAD_STATEID:
6033 case -NFS4ERR_STALE_STATEID:
6034 task->tk_status = 0;
6036 case -NFS4ERR_OLD_STATEID:
6037 if (nfs4_refresh_delegation_stateid(&data->stateid, data->inode))
6039 task->tk_status = 0;
6041 case -NFS4ERR_ACCESS:
6042 if (data->args.bitmask) {
6043 data->args.bitmask = NULL;
6044 data->res.fattr = NULL;
6049 task->tk_status = nfs4_async_handle_exception(task,
6050 data->res.server, task->tk_status,
6052 if (exception.retry)
6055 data->rpc_status = task->tk_status;
6058 data->res.lr_ret = 0;
6060 task->tk_status = 0;
6061 rpc_restart_call_prepare(task);
6064 static void nfs4_delegreturn_release(void *calldata)
6066 struct nfs4_delegreturndata *data = calldata;
6067 struct inode *inode = data->inode;
6071 pnfs_roc_release(&data->lr.arg, &data->lr.res,
6073 nfs_post_op_update_inode_force_wcc(inode, &data->fattr);
6074 nfs_iput_and_deactive(inode);
6079 static void nfs4_delegreturn_prepare(struct rpc_task *task, void *data)
6081 struct nfs4_delegreturndata *d_data;
6082 struct pnfs_layout_hdr *lo;
6084 d_data = (struct nfs4_delegreturndata *)data;
6086 if (!d_data->lr.roc && nfs4_wait_on_layoutreturn(d_data->inode, task))
6089 lo = d_data->args.lr_args ? d_data->args.lr_args->layout : NULL;
6090 if (lo && !pnfs_layout_is_valid(lo)) {
6091 d_data->args.lr_args = NULL;
6092 d_data->res.lr_res = NULL;
6095 nfs4_setup_sequence(d_data->res.server->nfs_client,
6096 &d_data->args.seq_args,
6097 &d_data->res.seq_res,
6101 static const struct rpc_call_ops nfs4_delegreturn_ops = {
6102 .rpc_call_prepare = nfs4_delegreturn_prepare,
6103 .rpc_call_done = nfs4_delegreturn_done,
6104 .rpc_release = nfs4_delegreturn_release,
6107 static int _nfs4_proc_delegreturn(struct inode *inode, struct rpc_cred *cred, const nfs4_stateid *stateid, int issync)
6109 struct nfs4_delegreturndata *data;
6110 struct nfs_server *server = NFS_SERVER(inode);
6111 struct rpc_task *task;
6112 struct rpc_message msg = {
6113 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_DELEGRETURN],
6116 struct rpc_task_setup task_setup_data = {
6117 .rpc_client = server->client,
6118 .rpc_message = &msg,
6119 .callback_ops = &nfs4_delegreturn_ops,
6120 .flags = RPC_TASK_ASYNC,
6124 data = kzalloc(sizeof(*data), GFP_NOFS);
6127 nfs4_init_sequence(&data->args.seq_args, &data->res.seq_res, 1, 0);
6129 nfs4_state_protect(server->nfs_client,
6130 NFS_SP4_MACH_CRED_CLEANUP,
6131 &task_setup_data.rpc_client, &msg);
6133 data->args.fhandle = &data->fh;
6134 data->args.stateid = &data->stateid;
6135 data->args.bitmask = server->cache_consistency_bitmask;
6136 nfs_copy_fh(&data->fh, NFS_FH(inode));
6137 nfs4_stateid_copy(&data->stateid, stateid);
6138 data->res.fattr = &data->fattr;
6139 data->res.server = server;
6140 data->res.lr_ret = -NFS4ERR_NOMATCHING_LAYOUT;
6141 data->lr.arg.ld_private = &data->lr.ld_private;
6142 nfs_fattr_init(data->res.fattr);
6143 data->timestamp = jiffies;
6144 data->rpc_status = 0;
6145 data->lr.roc = pnfs_roc(inode, &data->lr.arg, &data->lr.res, cred);
6146 data->inode = nfs_igrab_and_active(inode);
6149 data->args.lr_args = &data->lr.arg;
6150 data->res.lr_res = &data->lr.res;
6152 } else if (data->lr.roc) {
6153 pnfs_roc_release(&data->lr.arg, &data->lr.res, 0);
6154 data->lr.roc = false;
6157 task_setup_data.callback_data = data;
6158 msg.rpc_argp = &data->args;
6159 msg.rpc_resp = &data->res;
6160 task = rpc_run_task(&task_setup_data);
6162 return PTR_ERR(task);
6165 status = rpc_wait_for_completion_task(task);
6168 status = data->rpc_status;
6174 int nfs4_proc_delegreturn(struct inode *inode, struct rpc_cred *cred, const nfs4_stateid *stateid, int issync)
6176 struct nfs_server *server = NFS_SERVER(inode);
6177 struct nfs4_exception exception = { };
6180 err = _nfs4_proc_delegreturn(inode, cred, stateid, issync);
6181 trace_nfs4_delegreturn(inode, stateid, err);
6183 case -NFS4ERR_STALE_STATEID:
6184 case -NFS4ERR_EXPIRED:
6188 err = nfs4_handle_exception(server, err, &exception);
6189 } while (exception.retry);
6193 static int _nfs4_proc_getlk(struct nfs4_state *state, int cmd, struct file_lock *request)
6195 struct inode *inode = state->inode;
6196 struct nfs_server *server = NFS_SERVER(inode);
6197 struct nfs_client *clp = server->nfs_client;
6198 struct nfs_lockt_args arg = {
6199 .fh = NFS_FH(inode),
6202 struct nfs_lockt_res res = {
6205 struct rpc_message msg = {
6206 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LOCKT],
6209 .rpc_cred = state->owner->so_cred,
6211 struct nfs4_lock_state *lsp;
6214 arg.lock_owner.clientid = clp->cl_clientid;
6215 status = nfs4_set_lock_state(state, request);
6218 lsp = request->fl_u.nfs4_fl.owner;
6219 arg.lock_owner.id = lsp->ls_seqid.owner_id;
6220 arg.lock_owner.s_dev = server->s_dev;
6221 status = nfs4_call_sync(server->client, server, &msg, &arg.seq_args, &res.seq_res, 1);
6224 request->fl_type = F_UNLCK;
6226 case -NFS4ERR_DENIED:
6229 request->fl_ops->fl_release_private(request);
6230 request->fl_ops = NULL;
6235 static int nfs4_proc_getlk(struct nfs4_state *state, int cmd, struct file_lock *request)
6237 struct nfs4_exception exception = { };
6241 err = _nfs4_proc_getlk(state, cmd, request);
6242 trace_nfs4_get_lock(request, state, cmd, err);
6243 err = nfs4_handle_exception(NFS_SERVER(state->inode), err,
6245 } while (exception.retry);
6249 struct nfs4_unlockdata {
6250 struct nfs_locku_args arg;
6251 struct nfs_locku_res res;
6252 struct nfs4_lock_state *lsp;
6253 struct nfs_open_context *ctx;
6254 struct nfs_lock_context *l_ctx;
6255 struct file_lock fl;
6256 struct nfs_server *server;
6257 unsigned long timestamp;
6260 static struct nfs4_unlockdata *nfs4_alloc_unlockdata(struct file_lock *fl,
6261 struct nfs_open_context *ctx,
6262 struct nfs4_lock_state *lsp,
6263 struct nfs_seqid *seqid)
6265 struct nfs4_unlockdata *p;
6266 struct inode *inode = lsp->ls_state->inode;
6268 p = kzalloc(sizeof(*p), GFP_NOFS);
6271 p->arg.fh = NFS_FH(inode);
6273 p->arg.seqid = seqid;
6274 p->res.seqid = seqid;
6276 refcount_inc(&lsp->ls_count);
6277 /* Ensure we don't close file until we're done freeing locks! */
6278 p->ctx = get_nfs_open_context(ctx);
6279 p->l_ctx = nfs_get_lock_context(ctx);
6280 memcpy(&p->fl, fl, sizeof(p->fl));
6281 p->server = NFS_SERVER(inode);
6285 static void nfs4_locku_release_calldata(void *data)
6287 struct nfs4_unlockdata *calldata = data;
6288 nfs_free_seqid(calldata->arg.seqid);
6289 nfs4_put_lock_state(calldata->lsp);
6290 nfs_put_lock_context(calldata->l_ctx);
6291 put_nfs_open_context(calldata->ctx);
6295 static void nfs4_locku_done(struct rpc_task *task, void *data)
6297 struct nfs4_unlockdata *calldata = data;
6298 struct nfs4_exception exception = {
6299 .inode = calldata->lsp->ls_state->inode,
6300 .stateid = &calldata->arg.stateid,
6303 if (!nfs4_sequence_done(task, &calldata->res.seq_res))
6305 switch (task->tk_status) {
6307 renew_lease(calldata->server, calldata->timestamp);
6308 locks_lock_inode_wait(calldata->lsp->ls_state->inode, &calldata->fl);
6309 if (nfs4_update_lock_stateid(calldata->lsp,
6310 &calldata->res.stateid))
6313 case -NFS4ERR_ADMIN_REVOKED:
6314 case -NFS4ERR_EXPIRED:
6315 nfs4_free_revoked_stateid(calldata->server,
6316 &calldata->arg.stateid,
6317 task->tk_msg.rpc_cred);
6319 case -NFS4ERR_BAD_STATEID:
6320 case -NFS4ERR_OLD_STATEID:
6321 case -NFS4ERR_STALE_STATEID:
6322 if (!nfs4_stateid_match(&calldata->arg.stateid,
6323 &calldata->lsp->ls_stateid))
6324 rpc_restart_call_prepare(task);
6327 task->tk_status = nfs4_async_handle_exception(task,
6328 calldata->server, task->tk_status,
6330 if (exception.retry)
6331 rpc_restart_call_prepare(task);
6333 nfs_release_seqid(calldata->arg.seqid);
6336 static void nfs4_locku_prepare(struct rpc_task *task, void *data)
6338 struct nfs4_unlockdata *calldata = data;
6340 if (test_bit(NFS_CONTEXT_UNLOCK, &calldata->l_ctx->open_context->flags) &&
6341 nfs_async_iocounter_wait(task, calldata->l_ctx))
6344 if (nfs_wait_on_sequence(calldata->arg.seqid, task) != 0)
6346 nfs4_stateid_copy(&calldata->arg.stateid, &calldata->lsp->ls_stateid);
6347 if (test_bit(NFS_LOCK_INITIALIZED, &calldata->lsp->ls_flags) == 0) {
6348 /* Note: exit _without_ running nfs4_locku_done */
6351 calldata->timestamp = jiffies;
6352 if (nfs4_setup_sequence(calldata->server->nfs_client,
6353 &calldata->arg.seq_args,
6354 &calldata->res.seq_res,
6356 nfs_release_seqid(calldata->arg.seqid);
6359 task->tk_action = NULL;
6361 nfs4_sequence_done(task, &calldata->res.seq_res);
6364 static const struct rpc_call_ops nfs4_locku_ops = {
6365 .rpc_call_prepare = nfs4_locku_prepare,
6366 .rpc_call_done = nfs4_locku_done,
6367 .rpc_release = nfs4_locku_release_calldata,
6370 static struct rpc_task *nfs4_do_unlck(struct file_lock *fl,
6371 struct nfs_open_context *ctx,
6372 struct nfs4_lock_state *lsp,
6373 struct nfs_seqid *seqid)
6375 struct nfs4_unlockdata *data;
6376 struct rpc_message msg = {
6377 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LOCKU],
6378 .rpc_cred = ctx->cred,
6380 struct rpc_task_setup task_setup_data = {
6381 .rpc_client = NFS_CLIENT(lsp->ls_state->inode),
6382 .rpc_message = &msg,
6383 .callback_ops = &nfs4_locku_ops,
6384 .workqueue = nfsiod_workqueue,
6385 .flags = RPC_TASK_ASYNC,
6388 nfs4_state_protect(NFS_SERVER(lsp->ls_state->inode)->nfs_client,
6389 NFS_SP4_MACH_CRED_CLEANUP, &task_setup_data.rpc_client, &msg);
6391 /* Ensure this is an unlock - when canceling a lock, the
6392 * canceled lock is passed in, and it won't be an unlock.
6394 fl->fl_type = F_UNLCK;
6395 if (fl->fl_flags & FL_CLOSE)
6396 set_bit(NFS_CONTEXT_UNLOCK, &ctx->flags);
6398 data = nfs4_alloc_unlockdata(fl, ctx, lsp, seqid);
6400 nfs_free_seqid(seqid);
6401 return ERR_PTR(-ENOMEM);
6404 nfs4_init_sequence(&data->arg.seq_args, &data->res.seq_res, 1, 0);
6405 msg.rpc_argp = &data->arg;
6406 msg.rpc_resp = &data->res;
6407 task_setup_data.callback_data = data;
6408 return rpc_run_task(&task_setup_data);
6411 static int nfs4_proc_unlck(struct nfs4_state *state, int cmd, struct file_lock *request)
6413 struct inode *inode = state->inode;
6414 struct nfs4_state_owner *sp = state->owner;
6415 struct nfs_inode *nfsi = NFS_I(inode);
6416 struct nfs_seqid *seqid;
6417 struct nfs4_lock_state *lsp;
6418 struct rpc_task *task;
6419 struct nfs_seqid *(*alloc_seqid)(struct nfs_seqid_counter *, gfp_t);
6421 unsigned char fl_flags = request->fl_flags;
6423 status = nfs4_set_lock_state(state, request);
6424 /* Unlock _before_ we do the RPC call */
6425 request->fl_flags |= FL_EXISTS;
6426 /* Exclude nfs_delegation_claim_locks() */
6427 mutex_lock(&sp->so_delegreturn_mutex);
6428 /* Exclude nfs4_reclaim_open_stateid() - note nesting! */
6429 down_read(&nfsi->rwsem);
6430 if (locks_lock_inode_wait(inode, request) == -ENOENT) {
6431 up_read(&nfsi->rwsem);
6432 mutex_unlock(&sp->so_delegreturn_mutex);
6435 up_read(&nfsi->rwsem);
6436 mutex_unlock(&sp->so_delegreturn_mutex);
6439 /* Is this a delegated lock? */
6440 lsp = request->fl_u.nfs4_fl.owner;
6441 if (test_bit(NFS_LOCK_INITIALIZED, &lsp->ls_flags) == 0)
6443 alloc_seqid = NFS_SERVER(inode)->nfs_client->cl_mvops->alloc_seqid;
6444 seqid = alloc_seqid(&lsp->ls_seqid, GFP_KERNEL);
6448 task = nfs4_do_unlck(request, nfs_file_open_context(request->fl_file), lsp, seqid);
6449 status = PTR_ERR(task);
6452 status = rpc_wait_for_completion_task(task);
6455 request->fl_flags = fl_flags;
6456 trace_nfs4_unlock(request, state, F_SETLK, status);
6460 struct nfs4_lockdata {
6461 struct nfs_lock_args arg;
6462 struct nfs_lock_res res;
6463 struct nfs4_lock_state *lsp;
6464 struct nfs_open_context *ctx;
6465 struct file_lock fl;
6466 unsigned long timestamp;
6469 struct nfs_server *server;
6472 static struct nfs4_lockdata *nfs4_alloc_lockdata(struct file_lock *fl,
6473 struct nfs_open_context *ctx, struct nfs4_lock_state *lsp,
6476 struct nfs4_lockdata *p;
6477 struct inode *inode = lsp->ls_state->inode;
6478 struct nfs_server *server = NFS_SERVER(inode);
6479 struct nfs_seqid *(*alloc_seqid)(struct nfs_seqid_counter *, gfp_t);
6481 p = kzalloc(sizeof(*p), gfp_mask);
6485 p->arg.fh = NFS_FH(inode);
6487 p->arg.open_seqid = nfs_alloc_seqid(&lsp->ls_state->owner->so_seqid, gfp_mask);
6488 if (IS_ERR(p->arg.open_seqid))
6490 alloc_seqid = server->nfs_client->cl_mvops->alloc_seqid;
6491 p->arg.lock_seqid = alloc_seqid(&lsp->ls_seqid, gfp_mask);
6492 if (IS_ERR(p->arg.lock_seqid))
6493 goto out_free_seqid;
6494 p->arg.lock_owner.clientid = server->nfs_client->cl_clientid;
6495 p->arg.lock_owner.id = lsp->ls_seqid.owner_id;
6496 p->arg.lock_owner.s_dev = server->s_dev;
6497 p->res.lock_seqid = p->arg.lock_seqid;
6500 refcount_inc(&lsp->ls_count);
6501 p->ctx = get_nfs_open_context(ctx);
6502 memcpy(&p->fl, fl, sizeof(p->fl));
6505 nfs_free_seqid(p->arg.open_seqid);
6511 static void nfs4_lock_prepare(struct rpc_task *task, void *calldata)
6513 struct nfs4_lockdata *data = calldata;
6514 struct nfs4_state *state = data->lsp->ls_state;
6516 dprintk("%s: begin!\n", __func__);
6517 if (nfs_wait_on_sequence(data->arg.lock_seqid, task) != 0)
6519 /* Do we need to do an open_to_lock_owner? */
6520 if (!test_bit(NFS_LOCK_INITIALIZED, &data->lsp->ls_flags)) {
6521 if (nfs_wait_on_sequence(data->arg.open_seqid, task) != 0) {
6522 goto out_release_lock_seqid;
6524 nfs4_stateid_copy(&data->arg.open_stateid,
6525 &state->open_stateid);
6526 data->arg.new_lock_owner = 1;
6527 data->res.open_seqid = data->arg.open_seqid;
6529 data->arg.new_lock_owner = 0;
6530 nfs4_stateid_copy(&data->arg.lock_stateid,
6531 &data->lsp->ls_stateid);
6533 if (!nfs4_valid_open_stateid(state)) {
6534 data->rpc_status = -EBADF;
6535 task->tk_action = NULL;
6536 goto out_release_open_seqid;
6538 data->timestamp = jiffies;
6539 if (nfs4_setup_sequence(data->server->nfs_client,
6540 &data->arg.seq_args,
6544 out_release_open_seqid:
6545 nfs_release_seqid(data->arg.open_seqid);
6546 out_release_lock_seqid:
6547 nfs_release_seqid(data->arg.lock_seqid);
6549 nfs4_sequence_done(task, &data->res.seq_res);
6550 dprintk("%s: done!, ret = %d\n", __func__, data->rpc_status);
6553 static void nfs4_lock_done(struct rpc_task *task, void *calldata)
6555 struct nfs4_lockdata *data = calldata;
6556 struct nfs4_lock_state *lsp = data->lsp;
6558 dprintk("%s: begin!\n", __func__);
6560 if (!nfs4_sequence_done(task, &data->res.seq_res))
6563 data->rpc_status = task->tk_status;
6564 switch (task->tk_status) {
6566 renew_lease(NFS_SERVER(d_inode(data->ctx->dentry)),
6568 if (data->arg.new_lock && !data->cancelled) {
6569 data->fl.fl_flags &= ~(FL_SLEEP | FL_ACCESS);
6570 if (locks_lock_inode_wait(lsp->ls_state->inode, &data->fl) < 0)
6573 if (data->arg.new_lock_owner != 0) {
6574 nfs_confirm_seqid(&lsp->ls_seqid, 0);
6575 nfs4_stateid_copy(&lsp->ls_stateid, &data->res.stateid);
6576 set_bit(NFS_LOCK_INITIALIZED, &lsp->ls_flags);
6577 } else if (!nfs4_update_lock_stateid(lsp, &data->res.stateid))
6580 case -NFS4ERR_BAD_STATEID:
6581 case -NFS4ERR_OLD_STATEID:
6582 case -NFS4ERR_STALE_STATEID:
6583 case -NFS4ERR_EXPIRED:
6584 if (data->arg.new_lock_owner != 0) {
6585 if (!nfs4_stateid_match(&data->arg.open_stateid,
6586 &lsp->ls_state->open_stateid))
6588 } else if (!nfs4_stateid_match(&data->arg.lock_stateid,
6593 dprintk("%s: done, ret = %d!\n", __func__, data->rpc_status);
6596 if (!data->cancelled)
6597 rpc_restart_call_prepare(task);
6601 static void nfs4_lock_release(void *calldata)
6603 struct nfs4_lockdata *data = calldata;
6605 dprintk("%s: begin!\n", __func__);
6606 nfs_free_seqid(data->arg.open_seqid);
6607 if (data->cancelled && data->rpc_status == 0) {
6608 struct rpc_task *task;
6609 task = nfs4_do_unlck(&data->fl, data->ctx, data->lsp,
6610 data->arg.lock_seqid);
6612 rpc_put_task_async(task);
6613 dprintk("%s: cancelling lock!\n", __func__);
6615 nfs_free_seqid(data->arg.lock_seqid);
6616 nfs4_put_lock_state(data->lsp);
6617 put_nfs_open_context(data->ctx);
6619 dprintk("%s: done!\n", __func__);
6622 static const struct rpc_call_ops nfs4_lock_ops = {
6623 .rpc_call_prepare = nfs4_lock_prepare,
6624 .rpc_call_done = nfs4_lock_done,
6625 .rpc_release = nfs4_lock_release,
6628 static void nfs4_handle_setlk_error(struct nfs_server *server, struct nfs4_lock_state *lsp, int new_lock_owner, int error)
6631 case -NFS4ERR_ADMIN_REVOKED:
6632 case -NFS4ERR_EXPIRED:
6633 case -NFS4ERR_BAD_STATEID:
6634 lsp->ls_seqid.flags &= ~NFS_SEQID_CONFIRMED;
6635 if (new_lock_owner != 0 ||
6636 test_bit(NFS_LOCK_INITIALIZED, &lsp->ls_flags) != 0)
6637 nfs4_schedule_stateid_recovery(server, lsp->ls_state);
6639 case -NFS4ERR_STALE_STATEID:
6640 lsp->ls_seqid.flags &= ~NFS_SEQID_CONFIRMED;
6641 nfs4_schedule_lease_recovery(server->nfs_client);
6645 static int _nfs4_do_setlk(struct nfs4_state *state, int cmd, struct file_lock *fl, int recovery_type)
6647 struct nfs4_lockdata *data;
6648 struct rpc_task *task;
6649 struct rpc_message msg = {
6650 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LOCK],
6651 .rpc_cred = state->owner->so_cred,
6653 struct rpc_task_setup task_setup_data = {
6654 .rpc_client = NFS_CLIENT(state->inode),
6655 .rpc_message = &msg,
6656 .callback_ops = &nfs4_lock_ops,
6657 .workqueue = nfsiod_workqueue,
6658 .flags = RPC_TASK_ASYNC,
6662 dprintk("%s: begin!\n", __func__);
6663 data = nfs4_alloc_lockdata(fl, nfs_file_open_context(fl->fl_file),
6664 fl->fl_u.nfs4_fl.owner,
6665 recovery_type == NFS_LOCK_NEW ? GFP_KERNEL : GFP_NOFS);
6669 data->arg.block = 1;
6670 nfs4_init_sequence(&data->arg.seq_args, &data->res.seq_res, 1,
6671 recovery_type > NFS_LOCK_NEW);
6672 msg.rpc_argp = &data->arg;
6673 msg.rpc_resp = &data->res;
6674 task_setup_data.callback_data = data;
6675 if (recovery_type > NFS_LOCK_NEW) {
6676 if (recovery_type == NFS_LOCK_RECLAIM)
6677 data->arg.reclaim = NFS_LOCK_RECLAIM;
6679 data->arg.new_lock = 1;
6680 task = rpc_run_task(&task_setup_data);
6682 return PTR_ERR(task);
6683 ret = rpc_wait_for_completion_task(task);
6685 ret = data->rpc_status;
6687 nfs4_handle_setlk_error(data->server, data->lsp,
6688 data->arg.new_lock_owner, ret);
6690 data->cancelled = true;
6692 dprintk("%s: done, ret = %d!\n", __func__, ret);
6693 trace_nfs4_set_lock(fl, state, &data->res.stateid, cmd, ret);
6697 static int nfs4_lock_reclaim(struct nfs4_state *state, struct file_lock *request)
6699 struct nfs_server *server = NFS_SERVER(state->inode);
6700 struct nfs4_exception exception = {
6701 .inode = state->inode,
6706 /* Cache the lock if possible... */
6707 if (test_bit(NFS_DELEGATED_STATE, &state->flags) != 0)
6709 err = _nfs4_do_setlk(state, F_SETLK, request, NFS_LOCK_RECLAIM);
6710 if (err != -NFS4ERR_DELAY)
6712 nfs4_handle_exception(server, err, &exception);
6713 } while (exception.retry);
6717 static int nfs4_lock_expired(struct nfs4_state *state, struct file_lock *request)
6719 struct nfs_server *server = NFS_SERVER(state->inode);
6720 struct nfs4_exception exception = {
6721 .inode = state->inode,
6725 err = nfs4_set_lock_state(state, request);
6728 if (!recover_lost_locks) {
6729 set_bit(NFS_LOCK_LOST, &request->fl_u.nfs4_fl.owner->ls_flags);
6733 if (test_bit(NFS_DELEGATED_STATE, &state->flags) != 0)
6735 err = _nfs4_do_setlk(state, F_SETLK, request, NFS_LOCK_EXPIRED);
6739 case -NFS4ERR_GRACE:
6740 case -NFS4ERR_DELAY:
6741 nfs4_handle_exception(server, err, &exception);
6744 } while (exception.retry);
6749 #if defined(CONFIG_NFS_V4_1)
6750 static int nfs41_lock_expired(struct nfs4_state *state, struct file_lock *request)
6752 struct nfs4_lock_state *lsp;
6755 status = nfs4_set_lock_state(state, request);
6758 lsp = request->fl_u.nfs4_fl.owner;
6759 if (test_bit(NFS_LOCK_INITIALIZED, &lsp->ls_flags) ||
6760 test_bit(NFS_LOCK_LOST, &lsp->ls_flags))
6762 return nfs4_lock_expired(state, request);
6766 static int _nfs4_proc_setlk(struct nfs4_state *state, int cmd, struct file_lock *request)
6768 struct nfs_inode *nfsi = NFS_I(state->inode);
6769 struct nfs4_state_owner *sp = state->owner;
6770 unsigned char fl_flags = request->fl_flags;
6773 request->fl_flags |= FL_ACCESS;
6774 status = locks_lock_inode_wait(state->inode, request);
6777 mutex_lock(&sp->so_delegreturn_mutex);
6778 down_read(&nfsi->rwsem);
6779 if (test_bit(NFS_DELEGATED_STATE, &state->flags)) {
6780 /* Yes: cache locks! */
6781 /* ...but avoid races with delegation recall... */
6782 request->fl_flags = fl_flags & ~FL_SLEEP;
6783 status = locks_lock_inode_wait(state->inode, request);
6784 up_read(&nfsi->rwsem);
6785 mutex_unlock(&sp->so_delegreturn_mutex);
6788 up_read(&nfsi->rwsem);
6789 mutex_unlock(&sp->so_delegreturn_mutex);
6790 status = _nfs4_do_setlk(state, cmd, request, NFS_LOCK_NEW);
6792 request->fl_flags = fl_flags;
6796 static int nfs4_proc_setlk(struct nfs4_state *state, int cmd, struct file_lock *request)
6798 struct nfs4_exception exception = {
6800 .inode = state->inode,
6805 err = _nfs4_proc_setlk(state, cmd, request);
6806 if (err == -NFS4ERR_DENIED)
6808 err = nfs4_handle_exception(NFS_SERVER(state->inode),
6810 } while (exception.retry);
6814 #define NFS4_LOCK_MINTIMEOUT (1 * HZ)
6815 #define NFS4_LOCK_MAXTIMEOUT (30 * HZ)
6818 nfs4_retry_setlk_simple(struct nfs4_state *state, int cmd,
6819 struct file_lock *request)
6821 int status = -ERESTARTSYS;
6822 unsigned long timeout = NFS4_LOCK_MINTIMEOUT;
6824 while(!signalled()) {
6825 status = nfs4_proc_setlk(state, cmd, request);
6826 if ((status != -EAGAIN) || IS_SETLK(cmd))
6828 freezable_schedule_timeout_interruptible(timeout);
6830 timeout = min_t(unsigned long, NFS4_LOCK_MAXTIMEOUT, timeout);
6831 status = -ERESTARTSYS;
6836 #ifdef CONFIG_NFS_V4_1
6837 struct nfs4_lock_waiter {
6838 struct task_struct *task;
6839 struct inode *inode;
6840 struct nfs_lowner *owner;
6845 nfs4_wake_lock_waiter(wait_queue_entry_t *wait, unsigned int mode, int flags, void *key)
6848 struct nfs4_lock_waiter *waiter = wait->private;
6850 /* NULL key means to wake up everyone */
6852 struct cb_notify_lock_args *cbnl = key;
6853 struct nfs_lowner *lowner = &cbnl->cbnl_owner,
6854 *wowner = waiter->owner;
6856 /* Only wake if the callback was for the same owner. */
6857 if (lowner->id != wowner->id || lowner->s_dev != wowner->s_dev)
6860 /* Make sure it's for the right inode */
6861 if (nfs_compare_fh(NFS_FH(waiter->inode), &cbnl->cbnl_fh))
6864 waiter->notified = true;
6867 /* override "private" so we can use default_wake_function */
6868 wait->private = waiter->task;
6869 ret = autoremove_wake_function(wait, mode, flags, key);
6870 wait->private = waiter;
6875 nfs4_retry_setlk(struct nfs4_state *state, int cmd, struct file_lock *request)
6877 int status = -ERESTARTSYS;
6878 unsigned long flags;
6879 struct nfs4_lock_state *lsp = request->fl_u.nfs4_fl.owner;
6880 struct nfs_server *server = NFS_SERVER(state->inode);
6881 struct nfs_client *clp = server->nfs_client;
6882 wait_queue_head_t *q = &clp->cl_lock_waitq;
6883 struct nfs_lowner owner = { .clientid = clp->cl_clientid,
6884 .id = lsp->ls_seqid.owner_id,
6885 .s_dev = server->s_dev };
6886 struct nfs4_lock_waiter waiter = { .task = current,
6887 .inode = state->inode,
6889 .notified = false };
6890 wait_queue_entry_t wait;
6892 /* Don't bother with waitqueue if we don't expect a callback */
6893 if (!test_bit(NFS_STATE_MAY_NOTIFY_LOCK, &state->flags))
6894 return nfs4_retry_setlk_simple(state, cmd, request);
6897 wait.private = &waiter;
6898 wait.func = nfs4_wake_lock_waiter;
6899 add_wait_queue(q, &wait);
6901 while(!signalled()) {
6902 waiter.notified = false;
6903 status = nfs4_proc_setlk(state, cmd, request);
6904 if ((status != -EAGAIN) || IS_SETLK(cmd))
6907 status = -ERESTARTSYS;
6908 spin_lock_irqsave(&q->lock, flags);
6909 if (waiter.notified) {
6910 spin_unlock_irqrestore(&q->lock, flags);
6913 set_current_state(TASK_INTERRUPTIBLE);
6914 spin_unlock_irqrestore(&q->lock, flags);
6916 freezable_schedule_timeout(NFS4_LOCK_MAXTIMEOUT);
6919 finish_wait(q, &wait);
6922 #else /* !CONFIG_NFS_V4_1 */
6924 nfs4_retry_setlk(struct nfs4_state *state, int cmd, struct file_lock *request)
6926 return nfs4_retry_setlk_simple(state, cmd, request);
6931 nfs4_proc_lock(struct file *filp, int cmd, struct file_lock *request)
6933 struct nfs_open_context *ctx;
6934 struct nfs4_state *state;
6937 /* verify open state */
6938 ctx = nfs_file_open_context(filp);
6941 if (IS_GETLK(cmd)) {
6943 return nfs4_proc_getlk(state, F_GETLK, request);
6947 if (!(IS_SETLK(cmd) || IS_SETLKW(cmd)))
6950 if (request->fl_type == F_UNLCK) {
6952 return nfs4_proc_unlck(state, cmd, request);
6959 if ((request->fl_flags & FL_POSIX) &&
6960 !test_bit(NFS_STATE_POSIX_LOCKS, &state->flags))
6964 * Don't rely on the VFS having checked the file open mode,
6965 * since it won't do this for flock() locks.
6967 switch (request->fl_type) {
6969 if (!(filp->f_mode & FMODE_READ))
6973 if (!(filp->f_mode & FMODE_WRITE))
6977 status = nfs4_set_lock_state(state, request);
6981 return nfs4_retry_setlk(state, cmd, request);
6984 int nfs4_lock_delegation_recall(struct file_lock *fl, struct nfs4_state *state, const nfs4_stateid *stateid)
6986 struct nfs_server *server = NFS_SERVER(state->inode);
6989 err = nfs4_set_lock_state(state, fl);
6992 err = _nfs4_do_setlk(state, F_SETLK, fl, NFS_LOCK_NEW);
6993 return nfs4_handle_delegation_recall_error(server, state, stateid, fl, err);
6996 struct nfs_release_lockowner_data {
6997 struct nfs4_lock_state *lsp;
6998 struct nfs_server *server;
6999 struct nfs_release_lockowner_args args;
7000 struct nfs_release_lockowner_res res;
7001 unsigned long timestamp;
7004 static void nfs4_release_lockowner_prepare(struct rpc_task *task, void *calldata)
7006 struct nfs_release_lockowner_data *data = calldata;
7007 struct nfs_server *server = data->server;
7008 nfs4_setup_sequence(server->nfs_client, &data->args.seq_args,
7009 &data->res.seq_res, task);
7010 data->args.lock_owner.clientid = server->nfs_client->cl_clientid;
7011 data->timestamp = jiffies;
7014 static void nfs4_release_lockowner_done(struct rpc_task *task, void *calldata)
7016 struct nfs_release_lockowner_data *data = calldata;
7017 struct nfs_server *server = data->server;
7019 nfs40_sequence_done(task, &data->res.seq_res);
7021 switch (task->tk_status) {
7023 renew_lease(server, data->timestamp);
7025 case -NFS4ERR_STALE_CLIENTID:
7026 case -NFS4ERR_EXPIRED:
7027 nfs4_schedule_lease_recovery(server->nfs_client);
7029 case -NFS4ERR_LEASE_MOVED:
7030 case -NFS4ERR_DELAY:
7031 if (nfs4_async_handle_error(task, server,
7032 NULL, NULL) == -EAGAIN)
7033 rpc_restart_call_prepare(task);
7037 static void nfs4_release_lockowner_release(void *calldata)
7039 struct nfs_release_lockowner_data *data = calldata;
7040 nfs4_free_lock_state(data->server, data->lsp);
7044 static const struct rpc_call_ops nfs4_release_lockowner_ops = {
7045 .rpc_call_prepare = nfs4_release_lockowner_prepare,
7046 .rpc_call_done = nfs4_release_lockowner_done,
7047 .rpc_release = nfs4_release_lockowner_release,
7051 nfs4_release_lockowner(struct nfs_server *server, struct nfs4_lock_state *lsp)
7053 struct nfs_release_lockowner_data *data;
7054 struct rpc_message msg = {
7055 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_RELEASE_LOCKOWNER],
7058 if (server->nfs_client->cl_mvops->minor_version != 0)
7061 data = kmalloc(sizeof(*data), GFP_NOFS);
7065 data->server = server;
7066 data->args.lock_owner.clientid = server->nfs_client->cl_clientid;
7067 data->args.lock_owner.id = lsp->ls_seqid.owner_id;
7068 data->args.lock_owner.s_dev = server->s_dev;
7070 msg.rpc_argp = &data->args;
7071 msg.rpc_resp = &data->res;
7072 nfs4_init_sequence(&data->args.seq_args, &data->res.seq_res, 0, 0);
7073 rpc_call_async(server->client, &msg, 0, &nfs4_release_lockowner_ops, data);
7076 #define XATTR_NAME_NFSV4_ACL "system.nfs4_acl"
7078 static int nfs4_xattr_set_nfs4_acl(const struct xattr_handler *handler,
7079 struct dentry *unused, struct inode *inode,
7080 const char *key, const void *buf,
7081 size_t buflen, int flags)
7083 return nfs4_proc_set_acl(inode, buf, buflen);
7086 static int nfs4_xattr_get_nfs4_acl(const struct xattr_handler *handler,
7087 struct dentry *unused, struct inode *inode,
7088 const char *key, void *buf, size_t buflen)
7090 return nfs4_proc_get_acl(inode, buf, buflen);
7093 static bool nfs4_xattr_list_nfs4_acl(struct dentry *dentry)
7095 return nfs4_server_supports_acls(NFS_SERVER(d_inode(dentry)));
7098 #ifdef CONFIG_NFS_V4_SECURITY_LABEL
7100 static int nfs4_xattr_set_nfs4_label(const struct xattr_handler *handler,
7101 struct dentry *unused, struct inode *inode,
7102 const char *key, const void *buf,
7103 size_t buflen, int flags)
7105 if (security_ismaclabel(key))
7106 return nfs4_set_security_label(inode, buf, buflen);
7111 static int nfs4_xattr_get_nfs4_label(const struct xattr_handler *handler,
7112 struct dentry *unused, struct inode *inode,
7113 const char *key, void *buf, size_t buflen)
7115 if (security_ismaclabel(key))
7116 return nfs4_get_security_label(inode, buf, buflen);
7121 nfs4_listxattr_nfs4_label(struct inode *inode, char *list, size_t list_len)
7125 if (nfs_server_capable(inode, NFS_CAP_SECURITY_LABEL)) {
7126 len = security_inode_listsecurity(inode, list, list_len);
7127 if (list_len && len > list_len)
7133 static const struct xattr_handler nfs4_xattr_nfs4_label_handler = {
7134 .prefix = XATTR_SECURITY_PREFIX,
7135 .get = nfs4_xattr_get_nfs4_label,
7136 .set = nfs4_xattr_set_nfs4_label,
7142 nfs4_listxattr_nfs4_label(struct inode *inode, char *list, size_t list_len)
7150 * nfs_fhget will use either the mounted_on_fileid or the fileid
7152 static void nfs_fixup_referral_attributes(struct nfs_fattr *fattr)
7154 if (!(((fattr->valid & NFS_ATTR_FATTR_MOUNTED_ON_FILEID) ||
7155 (fattr->valid & NFS_ATTR_FATTR_FILEID)) &&
7156 (fattr->valid & NFS_ATTR_FATTR_FSID) &&
7157 (fattr->valid & NFS_ATTR_FATTR_V4_LOCATIONS)))
7160 fattr->valid |= NFS_ATTR_FATTR_TYPE | NFS_ATTR_FATTR_MODE |
7161 NFS_ATTR_FATTR_NLINK | NFS_ATTR_FATTR_V4_REFERRAL;
7162 fattr->mode = S_IFDIR | S_IRUGO | S_IXUGO;
7166 static int _nfs4_proc_fs_locations(struct rpc_clnt *client, struct inode *dir,
7167 const struct qstr *name,
7168 struct nfs4_fs_locations *fs_locations,
7171 struct nfs_server *server = NFS_SERVER(dir);
7173 struct nfs4_fs_locations_arg args = {
7174 .dir_fh = NFS_FH(dir),
7179 struct nfs4_fs_locations_res res = {
7180 .fs_locations = fs_locations,
7182 struct rpc_message msg = {
7183 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_FS_LOCATIONS],
7189 dprintk("%s: start\n", __func__);
7191 bitmask[0] = nfs4_fattr_bitmap[0] | FATTR4_WORD0_FS_LOCATIONS;
7192 bitmask[1] = nfs4_fattr_bitmap[1];
7194 /* Ask for the fileid of the absent filesystem if mounted_on_fileid
7195 * is not supported */
7196 if (NFS_SERVER(dir)->attr_bitmask[1] & FATTR4_WORD1_MOUNTED_ON_FILEID)
7197 bitmask[0] &= ~FATTR4_WORD0_FILEID;
7199 bitmask[1] &= ~FATTR4_WORD1_MOUNTED_ON_FILEID;
7201 nfs_fattr_init(&fs_locations->fattr);
7202 fs_locations->server = server;
7203 fs_locations->nlocations = 0;
7204 status = nfs4_call_sync(client, server, &msg, &args.seq_args, &res.seq_res, 0);
7205 dprintk("%s: returned status = %d\n", __func__, status);
7209 int nfs4_proc_fs_locations(struct rpc_clnt *client, struct inode *dir,
7210 const struct qstr *name,
7211 struct nfs4_fs_locations *fs_locations,
7214 struct nfs4_exception exception = { };
7217 err = _nfs4_proc_fs_locations(client, dir, name,
7218 fs_locations, page);
7219 trace_nfs4_get_fs_locations(dir, name, err);
7220 err = nfs4_handle_exception(NFS_SERVER(dir), err,
7222 } while (exception.retry);
7227 * This operation also signals the server that this client is
7228 * performing migration recovery. The server can stop returning
7229 * NFS4ERR_LEASE_MOVED to this client. A RENEW operation is
7230 * appended to this compound to identify the client ID which is
7231 * performing recovery.
7233 static int _nfs40_proc_get_locations(struct inode *inode,
7234 struct nfs4_fs_locations *locations,
7235 struct page *page, struct rpc_cred *cred)
7237 struct nfs_server *server = NFS_SERVER(inode);
7238 struct rpc_clnt *clnt = server->client;
7240 [0] = FATTR4_WORD0_FSID | FATTR4_WORD0_FS_LOCATIONS,
7242 struct nfs4_fs_locations_arg args = {
7243 .clientid = server->nfs_client->cl_clientid,
7244 .fh = NFS_FH(inode),
7247 .migration = 1, /* skip LOOKUP */
7248 .renew = 1, /* append RENEW */
7250 struct nfs4_fs_locations_res res = {
7251 .fs_locations = locations,
7255 struct rpc_message msg = {
7256 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_FS_LOCATIONS],
7261 unsigned long now = jiffies;
7264 nfs_fattr_init(&locations->fattr);
7265 locations->server = server;
7266 locations->nlocations = 0;
7268 nfs4_init_sequence(&args.seq_args, &res.seq_res, 0, 1);
7269 status = nfs4_call_sync_sequence(clnt, server, &msg,
7270 &args.seq_args, &res.seq_res);
7274 renew_lease(server, now);
7278 #ifdef CONFIG_NFS_V4_1
7281 * This operation also signals the server that this client is
7282 * performing migration recovery. The server can stop asserting
7283 * SEQ4_STATUS_LEASE_MOVED for this client. The client ID
7284 * performing this operation is identified in the SEQUENCE
7285 * operation in this compound.
7287 * When the client supports GETATTR(fs_locations_info), it can
7288 * be plumbed in here.
7290 static int _nfs41_proc_get_locations(struct inode *inode,
7291 struct nfs4_fs_locations *locations,
7292 struct page *page, struct rpc_cred *cred)
7294 struct nfs_server *server = NFS_SERVER(inode);
7295 struct rpc_clnt *clnt = server->client;
7297 [0] = FATTR4_WORD0_FSID | FATTR4_WORD0_FS_LOCATIONS,
7299 struct nfs4_fs_locations_arg args = {
7300 .fh = NFS_FH(inode),
7303 .migration = 1, /* skip LOOKUP */
7305 struct nfs4_fs_locations_res res = {
7306 .fs_locations = locations,
7309 struct rpc_message msg = {
7310 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_FS_LOCATIONS],
7317 nfs_fattr_init(&locations->fattr);
7318 locations->server = server;
7319 locations->nlocations = 0;
7321 nfs4_init_sequence(&args.seq_args, &res.seq_res, 0, 1);
7322 status = nfs4_call_sync_sequence(clnt, server, &msg,
7323 &args.seq_args, &res.seq_res);
7324 if (status == NFS4_OK &&
7325 res.seq_res.sr_status_flags & SEQ4_STATUS_LEASE_MOVED)
7326 status = -NFS4ERR_LEASE_MOVED;
7330 #endif /* CONFIG_NFS_V4_1 */
7333 * nfs4_proc_get_locations - discover locations for a migrated FSID
7334 * @inode: inode on FSID that is migrating
7335 * @locations: result of query
7337 * @cred: credential to use for this operation
7339 * Returns NFS4_OK on success, a negative NFS4ERR status code if the
7340 * operation failed, or a negative errno if a local error occurred.
7342 * On success, "locations" is filled in, but if the server has
7343 * no locations information, NFS_ATTR_FATTR_V4_LOCATIONS is not
7346 * -NFS4ERR_LEASE_MOVED is returned if the server still has leases
7347 * from this client that require migration recovery.
7349 int nfs4_proc_get_locations(struct inode *inode,
7350 struct nfs4_fs_locations *locations,
7351 struct page *page, struct rpc_cred *cred)
7353 struct nfs_server *server = NFS_SERVER(inode);
7354 struct nfs_client *clp = server->nfs_client;
7355 const struct nfs4_mig_recovery_ops *ops =
7356 clp->cl_mvops->mig_recovery_ops;
7357 struct nfs4_exception exception = { };
7360 dprintk("%s: FSID %llx:%llx on \"%s\"\n", __func__,
7361 (unsigned long long)server->fsid.major,
7362 (unsigned long long)server->fsid.minor,
7364 nfs_display_fhandle(NFS_FH(inode), __func__);
7367 status = ops->get_locations(inode, locations, page, cred);
7368 if (status != -NFS4ERR_DELAY)
7370 nfs4_handle_exception(server, status, &exception);
7371 } while (exception.retry);
7376 * This operation also signals the server that this client is
7377 * performing "lease moved" recovery. The server can stop
7378 * returning NFS4ERR_LEASE_MOVED to this client. A RENEW operation
7379 * is appended to this compound to identify the client ID which is
7380 * performing recovery.
7382 static int _nfs40_proc_fsid_present(struct inode *inode, struct rpc_cred *cred)
7384 struct nfs_server *server = NFS_SERVER(inode);
7385 struct nfs_client *clp = NFS_SERVER(inode)->nfs_client;
7386 struct rpc_clnt *clnt = server->client;
7387 struct nfs4_fsid_present_arg args = {
7388 .fh = NFS_FH(inode),
7389 .clientid = clp->cl_clientid,
7390 .renew = 1, /* append RENEW */
7392 struct nfs4_fsid_present_res res = {
7395 struct rpc_message msg = {
7396 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_FSID_PRESENT],
7401 unsigned long now = jiffies;
7404 res.fh = nfs_alloc_fhandle();
7408 nfs4_init_sequence(&args.seq_args, &res.seq_res, 0, 1);
7409 status = nfs4_call_sync_sequence(clnt, server, &msg,
7410 &args.seq_args, &res.seq_res);
7411 nfs_free_fhandle(res.fh);
7415 do_renew_lease(clp, now);
7419 #ifdef CONFIG_NFS_V4_1
7422 * This operation also signals the server that this client is
7423 * performing "lease moved" recovery. The server can stop asserting
7424 * SEQ4_STATUS_LEASE_MOVED for this client. The client ID performing
7425 * this operation is identified in the SEQUENCE operation in this
7428 static int _nfs41_proc_fsid_present(struct inode *inode, struct rpc_cred *cred)
7430 struct nfs_server *server = NFS_SERVER(inode);
7431 struct rpc_clnt *clnt = server->client;
7432 struct nfs4_fsid_present_arg args = {
7433 .fh = NFS_FH(inode),
7435 struct nfs4_fsid_present_res res = {
7437 struct rpc_message msg = {
7438 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_FSID_PRESENT],
7445 res.fh = nfs_alloc_fhandle();
7449 nfs4_init_sequence(&args.seq_args, &res.seq_res, 0, 1);
7450 status = nfs4_call_sync_sequence(clnt, server, &msg,
7451 &args.seq_args, &res.seq_res);
7452 nfs_free_fhandle(res.fh);
7453 if (status == NFS4_OK &&
7454 res.seq_res.sr_status_flags & SEQ4_STATUS_LEASE_MOVED)
7455 status = -NFS4ERR_LEASE_MOVED;
7459 #endif /* CONFIG_NFS_V4_1 */
7462 * nfs4_proc_fsid_present - Is this FSID present or absent on server?
7463 * @inode: inode on FSID to check
7464 * @cred: credential to use for this operation
7466 * Server indicates whether the FSID is present, moved, or not
7467 * recognized. This operation is necessary to clear a LEASE_MOVED
7468 * condition for this client ID.
7470 * Returns NFS4_OK if the FSID is present on this server,
7471 * -NFS4ERR_MOVED if the FSID is no longer present, a negative
7472 * NFS4ERR code if some error occurred on the server, or a
7473 * negative errno if a local failure occurred.
7475 int nfs4_proc_fsid_present(struct inode *inode, struct rpc_cred *cred)
7477 struct nfs_server *server = NFS_SERVER(inode);
7478 struct nfs_client *clp = server->nfs_client;
7479 const struct nfs4_mig_recovery_ops *ops =
7480 clp->cl_mvops->mig_recovery_ops;
7481 struct nfs4_exception exception = { };
7484 dprintk("%s: FSID %llx:%llx on \"%s\"\n", __func__,
7485 (unsigned long long)server->fsid.major,
7486 (unsigned long long)server->fsid.minor,
7488 nfs_display_fhandle(NFS_FH(inode), __func__);
7491 status = ops->fsid_present(inode, cred);
7492 if (status != -NFS4ERR_DELAY)
7494 nfs4_handle_exception(server, status, &exception);
7495 } while (exception.retry);
7500 * If 'use_integrity' is true and the state managment nfs_client
7501 * cl_rpcclient is using krb5i/p, use the integrity protected cl_rpcclient
7502 * and the machine credential as per RFC3530bis and RFC5661 Security
7503 * Considerations sections. Otherwise, just use the user cred with the
7504 * filesystem's rpc_client.
7506 static int _nfs4_proc_secinfo(struct inode *dir, const struct qstr *name, struct nfs4_secinfo_flavors *flavors, bool use_integrity)
7509 struct nfs4_secinfo_arg args = {
7510 .dir_fh = NFS_FH(dir),
7513 struct nfs4_secinfo_res res = {
7516 struct rpc_message msg = {
7517 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SECINFO],
7521 struct rpc_clnt *clnt = NFS_SERVER(dir)->client;
7522 struct rpc_cred *cred = NULL;
7524 if (use_integrity) {
7525 clnt = NFS_SERVER(dir)->nfs_client->cl_rpcclient;
7526 cred = nfs4_get_clid_cred(NFS_SERVER(dir)->nfs_client);
7527 msg.rpc_cred = cred;
7530 dprintk("NFS call secinfo %s\n", name->name);
7532 nfs4_state_protect(NFS_SERVER(dir)->nfs_client,
7533 NFS_SP4_MACH_CRED_SECINFO, &clnt, &msg);
7535 status = nfs4_call_sync(clnt, NFS_SERVER(dir), &msg, &args.seq_args,
7537 dprintk("NFS reply secinfo: %d\n", status);
7545 int nfs4_proc_secinfo(struct inode *dir, const struct qstr *name,
7546 struct nfs4_secinfo_flavors *flavors)
7548 struct nfs4_exception exception = { };
7551 err = -NFS4ERR_WRONGSEC;
7553 /* try to use integrity protection with machine cred */
7554 if (_nfs4_is_integrity_protected(NFS_SERVER(dir)->nfs_client))
7555 err = _nfs4_proc_secinfo(dir, name, flavors, true);
7558 * if unable to use integrity protection, or SECINFO with
7559 * integrity protection returns NFS4ERR_WRONGSEC (which is
7560 * disallowed by spec, but exists in deployed servers) use
7561 * the current filesystem's rpc_client and the user cred.
7563 if (err == -NFS4ERR_WRONGSEC)
7564 err = _nfs4_proc_secinfo(dir, name, flavors, false);
7566 trace_nfs4_secinfo(dir, name, err);
7567 err = nfs4_handle_exception(NFS_SERVER(dir), err,
7569 } while (exception.retry);
7573 #ifdef CONFIG_NFS_V4_1
7575 * Check the exchange flags returned by the server for invalid flags, having
7576 * both PNFS and NON_PNFS flags set, and not having one of NON_PNFS, PNFS, or
7579 static int nfs4_check_cl_exchange_flags(u32 flags)
7581 if (flags & ~EXCHGID4_FLAG_MASK_R)
7583 if ((flags & EXCHGID4_FLAG_USE_PNFS_MDS) &&
7584 (flags & EXCHGID4_FLAG_USE_NON_PNFS))
7586 if (!(flags & (EXCHGID4_FLAG_MASK_PNFS)))
7590 return -NFS4ERR_INVAL;
7594 nfs41_same_server_scope(struct nfs41_server_scope *a,
7595 struct nfs41_server_scope *b)
7597 if (a->server_scope_sz != b->server_scope_sz)
7599 return memcmp(a->server_scope, b->server_scope, a->server_scope_sz) == 0;
7603 nfs4_bind_one_conn_to_session_done(struct rpc_task *task, void *calldata)
7607 static const struct rpc_call_ops nfs4_bind_one_conn_to_session_ops = {
7608 .rpc_call_done = &nfs4_bind_one_conn_to_session_done,
7612 * nfs4_proc_bind_one_conn_to_session()
7614 * The 4.1 client currently uses the same TCP connection for the
7615 * fore and backchannel.
7618 int nfs4_proc_bind_one_conn_to_session(struct rpc_clnt *clnt,
7619 struct rpc_xprt *xprt,
7620 struct nfs_client *clp,
7621 struct rpc_cred *cred)
7624 struct nfs41_bind_conn_to_session_args args = {
7626 .dir = NFS4_CDFC4_FORE_OR_BOTH,
7628 struct nfs41_bind_conn_to_session_res res;
7629 struct rpc_message msg = {
7631 &nfs4_procedures[NFSPROC4_CLNT_BIND_CONN_TO_SESSION],
7636 struct rpc_task_setup task_setup_data = {
7639 .callback_ops = &nfs4_bind_one_conn_to_session_ops,
7640 .rpc_message = &msg,
7641 .flags = RPC_TASK_TIMEOUT,
7643 struct rpc_task *task;
7645 nfs4_copy_sessionid(&args.sessionid, &clp->cl_session->sess_id);
7646 if (!(clp->cl_session->flags & SESSION4_BACK_CHAN))
7647 args.dir = NFS4_CDFC4_FORE;
7649 /* Do not set the backchannel flag unless this is clnt->cl_xprt */
7650 if (xprt != rcu_access_pointer(clnt->cl_xprt))
7651 args.dir = NFS4_CDFC4_FORE;
7653 task = rpc_run_task(&task_setup_data);
7654 if (!IS_ERR(task)) {
7655 status = task->tk_status;
7658 status = PTR_ERR(task);
7659 trace_nfs4_bind_conn_to_session(clp, status);
7661 if (memcmp(res.sessionid.data,
7662 clp->cl_session->sess_id.data, NFS4_MAX_SESSIONID_LEN)) {
7663 dprintk("NFS: %s: Session ID mismatch\n", __func__);
7666 if ((res.dir & args.dir) != res.dir || res.dir == 0) {
7667 dprintk("NFS: %s: Unexpected direction from server\n",
7671 if (res.use_conn_in_rdma_mode != args.use_conn_in_rdma_mode) {
7672 dprintk("NFS: %s: Server returned RDMA mode = true\n",
7681 struct rpc_bind_conn_calldata {
7682 struct nfs_client *clp;
7683 struct rpc_cred *cred;
7687 nfs4_proc_bind_conn_to_session_callback(struct rpc_clnt *clnt,
7688 struct rpc_xprt *xprt,
7691 struct rpc_bind_conn_calldata *p = calldata;
7693 return nfs4_proc_bind_one_conn_to_session(clnt, xprt, p->clp, p->cred);
7696 int nfs4_proc_bind_conn_to_session(struct nfs_client *clp, struct rpc_cred *cred)
7698 struct rpc_bind_conn_calldata data = {
7702 return rpc_clnt_iterate_for_each_xprt(clp->cl_rpcclient,
7703 nfs4_proc_bind_conn_to_session_callback, &data);
7707 * Minimum set of SP4_MACH_CRED operations from RFC 5661 in the enforce map
7708 * and operations we'd like to see to enable certain features in the allow map
7710 static const struct nfs41_state_protection nfs4_sp4_mach_cred_request = {
7711 .how = SP4_MACH_CRED,
7712 .enforce.u.words = {
7713 [1] = 1 << (OP_BIND_CONN_TO_SESSION - 32) |
7714 1 << (OP_EXCHANGE_ID - 32) |
7715 1 << (OP_CREATE_SESSION - 32) |
7716 1 << (OP_DESTROY_SESSION - 32) |
7717 1 << (OP_DESTROY_CLIENTID - 32)
7720 [0] = 1 << (OP_CLOSE) |
7721 1 << (OP_OPEN_DOWNGRADE) |
7723 1 << (OP_DELEGRETURN) |
7725 [1] = 1 << (OP_SECINFO - 32) |
7726 1 << (OP_SECINFO_NO_NAME - 32) |
7727 1 << (OP_LAYOUTRETURN - 32) |
7728 1 << (OP_TEST_STATEID - 32) |
7729 1 << (OP_FREE_STATEID - 32) |
7730 1 << (OP_WRITE - 32)
7735 * Select the state protection mode for client `clp' given the server results
7736 * from exchange_id in `sp'.
7738 * Returns 0 on success, negative errno otherwise.
7740 static int nfs4_sp4_select_mode(struct nfs_client *clp,
7741 struct nfs41_state_protection *sp)
7743 static const u32 supported_enforce[NFS4_OP_MAP_NUM_WORDS] = {
7744 [1] = 1 << (OP_BIND_CONN_TO_SESSION - 32) |
7745 1 << (OP_EXCHANGE_ID - 32) |
7746 1 << (OP_CREATE_SESSION - 32) |
7747 1 << (OP_DESTROY_SESSION - 32) |
7748 1 << (OP_DESTROY_CLIENTID - 32)
7750 unsigned long flags = 0;
7754 if (sp->how == SP4_MACH_CRED) {
7755 /* Print state protect result */
7756 dfprintk(MOUNT, "Server SP4_MACH_CRED support:\n");
7757 for (i = 0; i <= LAST_NFS4_OP; i++) {
7758 if (test_bit(i, sp->enforce.u.longs))
7759 dfprintk(MOUNT, " enforce op %d\n", i);
7760 if (test_bit(i, sp->allow.u.longs))
7761 dfprintk(MOUNT, " allow op %d\n", i);
7764 /* make sure nothing is on enforce list that isn't supported */
7765 for (i = 0; i < NFS4_OP_MAP_NUM_WORDS; i++) {
7766 if (sp->enforce.u.words[i] & ~supported_enforce[i]) {
7767 dfprintk(MOUNT, "sp4_mach_cred: disabled\n");
7774 * Minimal mode - state operations are allowed to use machine
7775 * credential. Note this already happens by default, so the
7776 * client doesn't have to do anything more than the negotiation.
7778 * NOTE: we don't care if EXCHANGE_ID is in the list -
7779 * we're already using the machine cred for exchange_id
7780 * and will never use a different cred.
7782 if (test_bit(OP_BIND_CONN_TO_SESSION, sp->enforce.u.longs) &&
7783 test_bit(OP_CREATE_SESSION, sp->enforce.u.longs) &&
7784 test_bit(OP_DESTROY_SESSION, sp->enforce.u.longs) &&
7785 test_bit(OP_DESTROY_CLIENTID, sp->enforce.u.longs)) {
7786 dfprintk(MOUNT, "sp4_mach_cred:\n");
7787 dfprintk(MOUNT, " minimal mode enabled\n");
7788 __set_bit(NFS_SP4_MACH_CRED_MINIMAL, &flags);
7790 dfprintk(MOUNT, "sp4_mach_cred: disabled\n");
7795 if (test_bit(OP_CLOSE, sp->allow.u.longs) &&
7796 test_bit(OP_OPEN_DOWNGRADE, sp->allow.u.longs) &&
7797 test_bit(OP_DELEGRETURN, sp->allow.u.longs) &&
7798 test_bit(OP_LOCKU, sp->allow.u.longs)) {
7799 dfprintk(MOUNT, " cleanup mode enabled\n");
7800 __set_bit(NFS_SP4_MACH_CRED_CLEANUP, &flags);
7803 if (test_bit(OP_LAYOUTRETURN, sp->allow.u.longs)) {
7804 dfprintk(MOUNT, " pnfs cleanup mode enabled\n");
7805 __set_bit(NFS_SP4_MACH_CRED_PNFS_CLEANUP, &flags);
7808 if (test_bit(OP_SECINFO, sp->allow.u.longs) &&
7809 test_bit(OP_SECINFO_NO_NAME, sp->allow.u.longs)) {
7810 dfprintk(MOUNT, " secinfo mode enabled\n");
7811 __set_bit(NFS_SP4_MACH_CRED_SECINFO, &flags);
7814 if (test_bit(OP_TEST_STATEID, sp->allow.u.longs) &&
7815 test_bit(OP_FREE_STATEID, sp->allow.u.longs)) {
7816 dfprintk(MOUNT, " stateid mode enabled\n");
7817 __set_bit(NFS_SP4_MACH_CRED_STATEID, &flags);
7820 if (test_bit(OP_WRITE, sp->allow.u.longs)) {
7821 dfprintk(MOUNT, " write mode enabled\n");
7822 __set_bit(NFS_SP4_MACH_CRED_WRITE, &flags);
7825 if (test_bit(OP_COMMIT, sp->allow.u.longs)) {
7826 dfprintk(MOUNT, " commit mode enabled\n");
7827 __set_bit(NFS_SP4_MACH_CRED_COMMIT, &flags);
7831 clp->cl_sp4_flags = flags;
7835 struct nfs41_exchange_id_data {
7836 struct nfs41_exchange_id_res res;
7837 struct nfs41_exchange_id_args args;
7840 static void nfs4_exchange_id_release(void *data)
7842 struct nfs41_exchange_id_data *cdata =
7843 (struct nfs41_exchange_id_data *)data;
7845 nfs_put_client(cdata->args.client);
7846 kfree(cdata->res.impl_id);
7847 kfree(cdata->res.server_scope);
7848 kfree(cdata->res.server_owner);
7852 static const struct rpc_call_ops nfs4_exchange_id_call_ops = {
7853 .rpc_release = nfs4_exchange_id_release,
7857 * _nfs4_proc_exchange_id()
7859 * Wrapper for EXCHANGE_ID operation.
7861 static struct rpc_task *
7862 nfs4_run_exchange_id(struct nfs_client *clp, struct rpc_cred *cred,
7863 u32 sp4_how, struct rpc_xprt *xprt)
7865 struct rpc_message msg = {
7866 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_EXCHANGE_ID],
7869 struct rpc_task_setup task_setup_data = {
7870 .rpc_client = clp->cl_rpcclient,
7871 .callback_ops = &nfs4_exchange_id_call_ops,
7872 .rpc_message = &msg,
7873 .flags = RPC_TASK_TIMEOUT,
7875 struct nfs41_exchange_id_data *calldata;
7878 if (!refcount_inc_not_zero(&clp->cl_count))
7879 return ERR_PTR(-EIO);
7882 calldata = kzalloc(sizeof(*calldata), GFP_NOFS);
7886 nfs4_init_boot_verifier(clp, &calldata->args.verifier);
7888 status = nfs4_init_uniform_client_string(clp);
7892 calldata->res.server_owner = kzalloc(sizeof(struct nfs41_server_owner),
7895 if (unlikely(calldata->res.server_owner == NULL))
7898 calldata->res.server_scope = kzalloc(sizeof(struct nfs41_server_scope),
7900 if (unlikely(calldata->res.server_scope == NULL))
7901 goto out_server_owner;
7903 calldata->res.impl_id = kzalloc(sizeof(struct nfs41_impl_id), GFP_NOFS);
7904 if (unlikely(calldata->res.impl_id == NULL))
7905 goto out_server_scope;
7909 calldata->args.state_protect.how = SP4_NONE;
7913 calldata->args.state_protect = nfs4_sp4_mach_cred_request;
7923 task_setup_data.rpc_xprt = xprt;
7924 task_setup_data.flags |= RPC_TASK_SOFTCONN;
7925 memcpy(calldata->args.verifier.data, clp->cl_confirm.data,
7926 sizeof(calldata->args.verifier.data));
7928 calldata->args.client = clp;
7929 calldata->args.flags = EXCHGID4_FLAG_SUPP_MOVED_REFER |
7930 EXCHGID4_FLAG_BIND_PRINC_STATEID;
7931 #ifdef CONFIG_NFS_V4_1_MIGRATION
7932 calldata->args.flags |= EXCHGID4_FLAG_SUPP_MOVED_MIGR;
7934 msg.rpc_argp = &calldata->args;
7935 msg.rpc_resp = &calldata->res;
7936 task_setup_data.callback_data = calldata;
7938 return rpc_run_task(&task_setup_data);
7941 kfree(calldata->res.impl_id);
7943 kfree(calldata->res.server_scope);
7945 kfree(calldata->res.server_owner);
7949 nfs_put_client(clp);
7950 return ERR_PTR(status);
7954 * _nfs4_proc_exchange_id()
7956 * Wrapper for EXCHANGE_ID operation.
7958 static int _nfs4_proc_exchange_id(struct nfs_client *clp, struct rpc_cred *cred,
7961 struct rpc_task *task;
7962 struct nfs41_exchange_id_args *argp;
7963 struct nfs41_exchange_id_res *resp;
7966 task = nfs4_run_exchange_id(clp, cred, sp4_how, NULL);
7968 return PTR_ERR(task);
7970 argp = task->tk_msg.rpc_argp;
7971 resp = task->tk_msg.rpc_resp;
7972 status = task->tk_status;
7976 status = nfs4_check_cl_exchange_flags(resp->flags);
7980 status = nfs4_sp4_select_mode(clp, &resp->state_protect);
7984 clp->cl_clientid = resp->clientid;
7985 clp->cl_exchange_flags = resp->flags;
7986 clp->cl_seqid = resp->seqid;
7987 /* Client ID is not confirmed */
7988 if (!(resp->flags & EXCHGID4_FLAG_CONFIRMED_R))
7989 clear_bit(NFS4_SESSION_ESTABLISHED,
7990 &clp->cl_session->session_state);
7992 if (clp->cl_serverscope != NULL &&
7993 !nfs41_same_server_scope(clp->cl_serverscope,
7994 resp->server_scope)) {
7995 dprintk("%s: server_scope mismatch detected\n",
7997 set_bit(NFS4CLNT_SERVER_SCOPE_MISMATCH, &clp->cl_state);
8000 swap(clp->cl_serverowner, resp->server_owner);
8001 swap(clp->cl_serverscope, resp->server_scope);
8002 swap(clp->cl_implid, resp->impl_id);
8004 /* Save the EXCHANGE_ID verifier session trunk tests */
8005 memcpy(clp->cl_confirm.data, argp->verifier.data,
8006 sizeof(clp->cl_confirm.data));
8008 trace_nfs4_exchange_id(clp, status);
8014 * nfs4_proc_exchange_id()
8016 * Returns zero, a negative errno, or a negative NFS4ERR status code.
8018 * Since the clientid has expired, all compounds using sessions
8019 * associated with the stale clientid will be returning
8020 * NFS4ERR_BADSESSION in the sequence operation, and will therefore
8021 * be in some phase of session reset.
8023 * Will attempt to negotiate SP4_MACH_CRED if krb5i / krb5p auth is used.
8025 int nfs4_proc_exchange_id(struct nfs_client *clp, struct rpc_cred *cred)
8027 rpc_authflavor_t authflavor = clp->cl_rpcclient->cl_auth->au_flavor;
8030 /* try SP4_MACH_CRED if krb5i/p */
8031 if (authflavor == RPC_AUTH_GSS_KRB5I ||
8032 authflavor == RPC_AUTH_GSS_KRB5P) {
8033 status = _nfs4_proc_exchange_id(clp, cred, SP4_MACH_CRED);
8039 return _nfs4_proc_exchange_id(clp, cred, SP4_NONE);
8043 * nfs4_test_session_trunk
8045 * This is an add_xprt_test() test function called from
8046 * rpc_clnt_setup_test_and_add_xprt.
8048 * The rpc_xprt_switch is referrenced by rpc_clnt_setup_test_and_add_xprt
8049 * and is dereferrenced in nfs4_exchange_id_release
8051 * Upon success, add the new transport to the rpc_clnt
8053 * @clnt: struct rpc_clnt to get new transport
8054 * @xprt: the rpc_xprt to test
8055 * @data: call data for _nfs4_proc_exchange_id.
8057 int nfs4_test_session_trunk(struct rpc_clnt *clnt, struct rpc_xprt *xprt,
8060 struct nfs4_add_xprt_data *adata = (struct nfs4_add_xprt_data *)data;
8061 struct rpc_task *task;
8066 dprintk("--> %s try %s\n", __func__,
8067 xprt->address_strings[RPC_DISPLAY_ADDR]);
8069 sp4_how = (adata->clp->cl_sp4_flags == 0 ? SP4_NONE : SP4_MACH_CRED);
8071 /* Test connection for session trunking. Async exchange_id call */
8072 task = nfs4_run_exchange_id(adata->clp, adata->cred, sp4_how, xprt);
8074 return PTR_ERR(task);
8076 status = task->tk_status;
8078 status = nfs4_detect_session_trunking(adata->clp,
8079 task->tk_msg.rpc_resp, xprt);
8084 EXPORT_SYMBOL_GPL(nfs4_test_session_trunk);
8086 static int _nfs4_proc_destroy_clientid(struct nfs_client *clp,
8087 struct rpc_cred *cred)
8089 struct rpc_message msg = {
8090 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_DESTROY_CLIENTID],
8096 status = rpc_call_sync(clp->cl_rpcclient, &msg, RPC_TASK_TIMEOUT);
8097 trace_nfs4_destroy_clientid(clp, status);
8099 dprintk("NFS: Got error %d from the server %s on "
8100 "DESTROY_CLIENTID.", status, clp->cl_hostname);
8104 static int nfs4_proc_destroy_clientid(struct nfs_client *clp,
8105 struct rpc_cred *cred)
8110 for (loop = NFS4_MAX_LOOP_ON_RECOVER; loop != 0; loop--) {
8111 ret = _nfs4_proc_destroy_clientid(clp, cred);
8113 case -NFS4ERR_DELAY:
8114 case -NFS4ERR_CLIENTID_BUSY:
8124 int nfs4_destroy_clientid(struct nfs_client *clp)
8126 struct rpc_cred *cred;
8129 if (clp->cl_mvops->minor_version < 1)
8131 if (clp->cl_exchange_flags == 0)
8133 if (clp->cl_preserve_clid)
8135 cred = nfs4_get_clid_cred(clp);
8136 ret = nfs4_proc_destroy_clientid(clp, cred);
8141 case -NFS4ERR_STALE_CLIENTID:
8142 clp->cl_exchange_flags = 0;
8148 struct nfs4_get_lease_time_data {
8149 struct nfs4_get_lease_time_args *args;
8150 struct nfs4_get_lease_time_res *res;
8151 struct nfs_client *clp;
8154 static void nfs4_get_lease_time_prepare(struct rpc_task *task,
8157 struct nfs4_get_lease_time_data *data =
8158 (struct nfs4_get_lease_time_data *)calldata;
8160 dprintk("--> %s\n", __func__);
8161 /* just setup sequence, do not trigger session recovery
8162 since we're invoked within one */
8163 nfs4_setup_sequence(data->clp,
8164 &data->args->la_seq_args,
8165 &data->res->lr_seq_res,
8167 dprintk("<-- %s\n", __func__);
8171 * Called from nfs4_state_manager thread for session setup, so don't recover
8172 * from sequence operation or clientid errors.
8174 static void nfs4_get_lease_time_done(struct rpc_task *task, void *calldata)
8176 struct nfs4_get_lease_time_data *data =
8177 (struct nfs4_get_lease_time_data *)calldata;
8179 dprintk("--> %s\n", __func__);
8180 if (!nfs41_sequence_done(task, &data->res->lr_seq_res))
8182 switch (task->tk_status) {
8183 case -NFS4ERR_DELAY:
8184 case -NFS4ERR_GRACE:
8185 dprintk("%s Retry: tk_status %d\n", __func__, task->tk_status);
8186 rpc_delay(task, NFS4_POLL_RETRY_MIN);
8187 task->tk_status = 0;
8189 case -NFS4ERR_RETRY_UNCACHED_REP:
8190 rpc_restart_call_prepare(task);
8193 dprintk("<-- %s\n", __func__);
8196 static const struct rpc_call_ops nfs4_get_lease_time_ops = {
8197 .rpc_call_prepare = nfs4_get_lease_time_prepare,
8198 .rpc_call_done = nfs4_get_lease_time_done,
8201 int nfs4_proc_get_lease_time(struct nfs_client *clp, struct nfs_fsinfo *fsinfo)
8203 struct rpc_task *task;
8204 struct nfs4_get_lease_time_args args;
8205 struct nfs4_get_lease_time_res res = {
8206 .lr_fsinfo = fsinfo,
8208 struct nfs4_get_lease_time_data data = {
8213 struct rpc_message msg = {
8214 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_GET_LEASE_TIME],
8218 struct rpc_task_setup task_setup = {
8219 .rpc_client = clp->cl_rpcclient,
8220 .rpc_message = &msg,
8221 .callback_ops = &nfs4_get_lease_time_ops,
8222 .callback_data = &data,
8223 .flags = RPC_TASK_TIMEOUT,
8227 nfs4_init_sequence(&args.la_seq_args, &res.lr_seq_res, 0, 1);
8228 task = rpc_run_task(&task_setup);
8231 return PTR_ERR(task);
8233 status = task->tk_status;
8239 * Initialize the values to be used by the client in CREATE_SESSION
8240 * If nfs4_init_session set the fore channel request and response sizes,
8243 * Set the back channel max_resp_sz_cached to zero to force the client to
8244 * always set csa_cachethis to FALSE because the current implementation
8245 * of the back channel DRC only supports caching the CB_SEQUENCE operation.
8247 static void nfs4_init_channel_attrs(struct nfs41_create_session_args *args,
8248 struct rpc_clnt *clnt)
8250 unsigned int max_rqst_sz, max_resp_sz;
8251 unsigned int max_bc_payload = rpc_max_bc_payload(clnt);
8253 max_rqst_sz = NFS_MAX_FILE_IO_SIZE + nfs41_maxwrite_overhead;
8254 max_resp_sz = NFS_MAX_FILE_IO_SIZE + nfs41_maxread_overhead;
8256 /* Fore channel attributes */
8257 args->fc_attrs.max_rqst_sz = max_rqst_sz;
8258 args->fc_attrs.max_resp_sz = max_resp_sz;
8259 args->fc_attrs.max_ops = NFS4_MAX_OPS;
8260 args->fc_attrs.max_reqs = max_session_slots;
8262 dprintk("%s: Fore Channel : max_rqst_sz=%u max_resp_sz=%u "
8263 "max_ops=%u max_reqs=%u\n",
8265 args->fc_attrs.max_rqst_sz, args->fc_attrs.max_resp_sz,
8266 args->fc_attrs.max_ops, args->fc_attrs.max_reqs);
8268 /* Back channel attributes */
8269 args->bc_attrs.max_rqst_sz = max_bc_payload;
8270 args->bc_attrs.max_resp_sz = max_bc_payload;
8271 args->bc_attrs.max_resp_sz_cached = 0;
8272 args->bc_attrs.max_ops = NFS4_MAX_BACK_CHANNEL_OPS;
8273 args->bc_attrs.max_reqs = max_t(unsigned short, max_session_cb_slots, 1);
8275 dprintk("%s: Back Channel : max_rqst_sz=%u max_resp_sz=%u "
8276 "max_resp_sz_cached=%u max_ops=%u max_reqs=%u\n",
8278 args->bc_attrs.max_rqst_sz, args->bc_attrs.max_resp_sz,
8279 args->bc_attrs.max_resp_sz_cached, args->bc_attrs.max_ops,
8280 args->bc_attrs.max_reqs);
8283 static int nfs4_verify_fore_channel_attrs(struct nfs41_create_session_args *args,
8284 struct nfs41_create_session_res *res)
8286 struct nfs4_channel_attrs *sent = &args->fc_attrs;
8287 struct nfs4_channel_attrs *rcvd = &res->fc_attrs;
8289 if (rcvd->max_resp_sz > sent->max_resp_sz)
8292 * Our requested max_ops is the minimum we need; we're not
8293 * prepared to break up compounds into smaller pieces than that.
8294 * So, no point even trying to continue if the server won't
8297 if (rcvd->max_ops < sent->max_ops)
8299 if (rcvd->max_reqs == 0)
8301 if (rcvd->max_reqs > NFS4_MAX_SLOT_TABLE)
8302 rcvd->max_reqs = NFS4_MAX_SLOT_TABLE;
8306 static int nfs4_verify_back_channel_attrs(struct nfs41_create_session_args *args,
8307 struct nfs41_create_session_res *res)
8309 struct nfs4_channel_attrs *sent = &args->bc_attrs;
8310 struct nfs4_channel_attrs *rcvd = &res->bc_attrs;
8312 if (!(res->flags & SESSION4_BACK_CHAN))
8314 if (rcvd->max_rqst_sz > sent->max_rqst_sz)
8316 if (rcvd->max_resp_sz < sent->max_resp_sz)
8318 if (rcvd->max_resp_sz_cached > sent->max_resp_sz_cached)
8320 if (rcvd->max_ops > sent->max_ops)
8322 if (rcvd->max_reqs > sent->max_reqs)
8328 static int nfs4_verify_channel_attrs(struct nfs41_create_session_args *args,
8329 struct nfs41_create_session_res *res)
8333 ret = nfs4_verify_fore_channel_attrs(args, res);
8336 return nfs4_verify_back_channel_attrs(args, res);
8339 static void nfs4_update_session(struct nfs4_session *session,
8340 struct nfs41_create_session_res *res)
8342 nfs4_copy_sessionid(&session->sess_id, &res->sessionid);
8343 /* Mark client id and session as being confirmed */
8344 session->clp->cl_exchange_flags |= EXCHGID4_FLAG_CONFIRMED_R;
8345 set_bit(NFS4_SESSION_ESTABLISHED, &session->session_state);
8346 session->flags = res->flags;
8347 memcpy(&session->fc_attrs, &res->fc_attrs, sizeof(session->fc_attrs));
8348 if (res->flags & SESSION4_BACK_CHAN)
8349 memcpy(&session->bc_attrs, &res->bc_attrs,
8350 sizeof(session->bc_attrs));
8353 static int _nfs4_proc_create_session(struct nfs_client *clp,
8354 struct rpc_cred *cred)
8356 struct nfs4_session *session = clp->cl_session;
8357 struct nfs41_create_session_args args = {
8359 .clientid = clp->cl_clientid,
8360 .seqid = clp->cl_seqid,
8361 .cb_program = NFS4_CALLBACK,
8363 struct nfs41_create_session_res res;
8365 struct rpc_message msg = {
8366 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_CREATE_SESSION],
8373 nfs4_init_channel_attrs(&args, clp->cl_rpcclient);
8374 args.flags = (SESSION4_PERSIST | SESSION4_BACK_CHAN);
8376 status = rpc_call_sync(session->clp->cl_rpcclient, &msg, RPC_TASK_TIMEOUT);
8377 trace_nfs4_create_session(clp, status);
8380 case -NFS4ERR_STALE_CLIENTID:
8381 case -NFS4ERR_DELAY:
8390 /* Verify the session's negotiated channel_attrs values */
8391 status = nfs4_verify_channel_attrs(&args, &res);
8392 /* Increment the clientid slot sequence id */
8395 nfs4_update_session(session, &res);
8402 * Issues a CREATE_SESSION operation to the server.
8403 * It is the responsibility of the caller to verify the session is
8404 * expired before calling this routine.
8406 int nfs4_proc_create_session(struct nfs_client *clp, struct rpc_cred *cred)
8410 struct nfs4_session *session = clp->cl_session;
8412 dprintk("--> %s clp=%p session=%p\n", __func__, clp, session);
8414 status = _nfs4_proc_create_session(clp, cred);
8418 /* Init or reset the session slot tables */
8419 status = nfs4_setup_session_slot_tables(session);
8420 dprintk("slot table setup returned %d\n", status);
8424 ptr = (unsigned *)&session->sess_id.data[0];
8425 dprintk("%s client>seqid %d sessionid %u:%u:%u:%u\n", __func__,
8426 clp->cl_seqid, ptr[0], ptr[1], ptr[2], ptr[3]);
8428 dprintk("<-- %s\n", __func__);
8433 * Issue the over-the-wire RPC DESTROY_SESSION.
8434 * The caller must serialize access to this routine.
8436 int nfs4_proc_destroy_session(struct nfs4_session *session,
8437 struct rpc_cred *cred)
8439 struct rpc_message msg = {
8440 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_DESTROY_SESSION],
8441 .rpc_argp = session,
8446 dprintk("--> nfs4_proc_destroy_session\n");
8448 /* session is still being setup */
8449 if (!test_and_clear_bit(NFS4_SESSION_ESTABLISHED, &session->session_state))
8452 status = rpc_call_sync(session->clp->cl_rpcclient, &msg, RPC_TASK_TIMEOUT);
8453 trace_nfs4_destroy_session(session->clp, status);
8456 dprintk("NFS: Got error %d from the server on DESTROY_SESSION. "
8457 "Session has been destroyed regardless...\n", status);
8459 dprintk("<-- nfs4_proc_destroy_session\n");
8464 * Renew the cl_session lease.
8466 struct nfs4_sequence_data {
8467 struct nfs_client *clp;
8468 struct nfs4_sequence_args args;
8469 struct nfs4_sequence_res res;
8472 static void nfs41_sequence_release(void *data)
8474 struct nfs4_sequence_data *calldata = data;
8475 struct nfs_client *clp = calldata->clp;
8477 if (refcount_read(&clp->cl_count) > 1)
8478 nfs4_schedule_state_renewal(clp);
8479 nfs_put_client(clp);
8483 static int nfs41_sequence_handle_errors(struct rpc_task *task, struct nfs_client *clp)
8485 switch(task->tk_status) {
8486 case -NFS4ERR_DELAY:
8487 rpc_delay(task, NFS4_POLL_RETRY_MAX);
8490 nfs4_schedule_lease_recovery(clp);
8495 static void nfs41_sequence_call_done(struct rpc_task *task, void *data)
8497 struct nfs4_sequence_data *calldata = data;
8498 struct nfs_client *clp = calldata->clp;
8500 if (!nfs41_sequence_done(task, task->tk_msg.rpc_resp))
8503 trace_nfs4_sequence(clp, task->tk_status);
8504 if (task->tk_status < 0) {
8505 dprintk("%s ERROR %d\n", __func__, task->tk_status);
8506 if (refcount_read(&clp->cl_count) == 1)
8509 if (nfs41_sequence_handle_errors(task, clp) == -EAGAIN) {
8510 rpc_restart_call_prepare(task);
8514 dprintk("%s rpc_cred %p\n", __func__, task->tk_msg.rpc_cred);
8516 dprintk("<-- %s\n", __func__);
8519 static void nfs41_sequence_prepare(struct rpc_task *task, void *data)
8521 struct nfs4_sequence_data *calldata = data;
8522 struct nfs_client *clp = calldata->clp;
8523 struct nfs4_sequence_args *args;
8524 struct nfs4_sequence_res *res;
8526 args = task->tk_msg.rpc_argp;
8527 res = task->tk_msg.rpc_resp;
8529 nfs4_setup_sequence(clp, args, res, task);
8532 static const struct rpc_call_ops nfs41_sequence_ops = {
8533 .rpc_call_done = nfs41_sequence_call_done,
8534 .rpc_call_prepare = nfs41_sequence_prepare,
8535 .rpc_release = nfs41_sequence_release,
8538 static struct rpc_task *_nfs41_proc_sequence(struct nfs_client *clp,
8539 struct rpc_cred *cred,
8540 struct nfs4_slot *slot,
8543 struct nfs4_sequence_data *calldata;
8544 struct rpc_message msg = {
8545 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SEQUENCE],
8548 struct rpc_task_setup task_setup_data = {
8549 .rpc_client = clp->cl_rpcclient,
8550 .rpc_message = &msg,
8551 .callback_ops = &nfs41_sequence_ops,
8552 .flags = RPC_TASK_ASYNC | RPC_TASK_TIMEOUT,
8554 struct rpc_task *ret;
8556 ret = ERR_PTR(-EIO);
8557 if (!refcount_inc_not_zero(&clp->cl_count))
8560 ret = ERR_PTR(-ENOMEM);
8561 calldata = kzalloc(sizeof(*calldata), GFP_NOFS);
8562 if (calldata == NULL)
8564 nfs4_init_sequence(&calldata->args, &calldata->res, 0, is_privileged);
8565 nfs4_sequence_attach_slot(&calldata->args, &calldata->res, slot);
8566 msg.rpc_argp = &calldata->args;
8567 msg.rpc_resp = &calldata->res;
8568 calldata->clp = clp;
8569 task_setup_data.callback_data = calldata;
8571 ret = rpc_run_task(&task_setup_data);
8576 nfs_put_client(clp);
8578 nfs41_release_slot(slot);
8582 static int nfs41_proc_async_sequence(struct nfs_client *clp, struct rpc_cred *cred, unsigned renew_flags)
8584 struct rpc_task *task;
8587 if ((renew_flags & NFS4_RENEW_TIMEOUT) == 0)
8589 task = _nfs41_proc_sequence(clp, cred, NULL, false);
8591 ret = PTR_ERR(task);
8593 rpc_put_task_async(task);
8594 dprintk("<-- %s status=%d\n", __func__, ret);
8598 static int nfs4_proc_sequence(struct nfs_client *clp, struct rpc_cred *cred)
8600 struct rpc_task *task;
8603 task = _nfs41_proc_sequence(clp, cred, NULL, true);
8605 ret = PTR_ERR(task);
8608 ret = rpc_wait_for_completion_task(task);
8610 ret = task->tk_status;
8613 dprintk("<-- %s status=%d\n", __func__, ret);
8617 struct nfs4_reclaim_complete_data {
8618 struct nfs_client *clp;
8619 struct nfs41_reclaim_complete_args arg;
8620 struct nfs41_reclaim_complete_res res;
8623 static void nfs4_reclaim_complete_prepare(struct rpc_task *task, void *data)
8625 struct nfs4_reclaim_complete_data *calldata = data;
8627 nfs4_setup_sequence(calldata->clp,
8628 &calldata->arg.seq_args,
8629 &calldata->res.seq_res,
8633 static int nfs41_reclaim_complete_handle_errors(struct rpc_task *task, struct nfs_client *clp)
8635 switch(task->tk_status) {
8637 wake_up_all(&clp->cl_lock_waitq);
8639 case -NFS4ERR_COMPLETE_ALREADY:
8640 case -NFS4ERR_WRONG_CRED: /* What to do here? */
8642 case -NFS4ERR_DELAY:
8643 rpc_delay(task, NFS4_POLL_RETRY_MAX);
8645 case -NFS4ERR_RETRY_UNCACHED_REP:
8647 case -NFS4ERR_BADSESSION:
8648 case -NFS4ERR_DEADSESSION:
8649 case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
8650 nfs4_schedule_session_recovery(clp->cl_session,
8654 nfs4_schedule_lease_recovery(clp);
8659 static void nfs4_reclaim_complete_done(struct rpc_task *task, void *data)
8661 struct nfs4_reclaim_complete_data *calldata = data;
8662 struct nfs_client *clp = calldata->clp;
8663 struct nfs4_sequence_res *res = &calldata->res.seq_res;
8665 dprintk("--> %s\n", __func__);
8666 if (!nfs41_sequence_done(task, res))
8669 trace_nfs4_reclaim_complete(clp, task->tk_status);
8670 if (nfs41_reclaim_complete_handle_errors(task, clp) == -EAGAIN) {
8671 rpc_restart_call_prepare(task);
8674 dprintk("<-- %s\n", __func__);
8677 static void nfs4_free_reclaim_complete_data(void *data)
8679 struct nfs4_reclaim_complete_data *calldata = data;
8684 static const struct rpc_call_ops nfs4_reclaim_complete_call_ops = {
8685 .rpc_call_prepare = nfs4_reclaim_complete_prepare,
8686 .rpc_call_done = nfs4_reclaim_complete_done,
8687 .rpc_release = nfs4_free_reclaim_complete_data,
8691 * Issue a global reclaim complete.
8693 static int nfs41_proc_reclaim_complete(struct nfs_client *clp,
8694 struct rpc_cred *cred)
8696 struct nfs4_reclaim_complete_data *calldata;
8697 struct rpc_task *task;
8698 struct rpc_message msg = {
8699 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_RECLAIM_COMPLETE],
8702 struct rpc_task_setup task_setup_data = {
8703 .rpc_client = clp->cl_rpcclient,
8704 .rpc_message = &msg,
8705 .callback_ops = &nfs4_reclaim_complete_call_ops,
8706 .flags = RPC_TASK_ASYNC,
8708 int status = -ENOMEM;
8710 dprintk("--> %s\n", __func__);
8711 calldata = kzalloc(sizeof(*calldata), GFP_NOFS);
8712 if (calldata == NULL)
8714 calldata->clp = clp;
8715 calldata->arg.one_fs = 0;
8717 nfs4_init_sequence(&calldata->arg.seq_args, &calldata->res.seq_res, 0, 1);
8718 msg.rpc_argp = &calldata->arg;
8719 msg.rpc_resp = &calldata->res;
8720 task_setup_data.callback_data = calldata;
8721 task = rpc_run_task(&task_setup_data);
8723 status = PTR_ERR(task);
8726 status = rpc_wait_for_completion_task(task);
8728 status = task->tk_status;
8731 dprintk("<-- %s status=%d\n", __func__, status);
8736 nfs4_layoutget_prepare(struct rpc_task *task, void *calldata)
8738 struct nfs4_layoutget *lgp = calldata;
8739 struct nfs_server *server = NFS_SERVER(lgp->args.inode);
8741 dprintk("--> %s\n", __func__);
8742 nfs4_setup_sequence(server->nfs_client, &lgp->args.seq_args,
8743 &lgp->res.seq_res, task);
8744 dprintk("<-- %s\n", __func__);
8747 static void nfs4_layoutget_done(struct rpc_task *task, void *calldata)
8749 struct nfs4_layoutget *lgp = calldata;
8751 dprintk("--> %s\n", __func__);
8752 nfs41_sequence_process(task, &lgp->res.seq_res);
8753 dprintk("<-- %s\n", __func__);
8757 nfs4_layoutget_handle_exception(struct rpc_task *task,
8758 struct nfs4_layoutget *lgp, struct nfs4_exception *exception)
8760 struct inode *inode = lgp->args.inode;
8761 struct nfs_server *server = NFS_SERVER(inode);
8762 struct pnfs_layout_hdr *lo;
8763 int nfs4err = task->tk_status;
8764 int err, status = 0;
8767 dprintk("--> %s tk_status => %d\n", __func__, -task->tk_status);
8769 nfs4_sequence_free_slot(&lgp->res.seq_res);
8776 * NFS4ERR_LAYOUTUNAVAILABLE means we are not supposed to use pnfs
8777 * on the file. set tk_status to -ENODATA to tell upper layer to
8780 case -NFS4ERR_LAYOUTUNAVAILABLE:
8784 * NFS4ERR_BADLAYOUT means the MDS cannot return a layout of
8785 * length lgp->args.minlength != 0 (see RFC5661 section 18.43.3).
8787 case -NFS4ERR_BADLAYOUT:
8788 status = -EOVERFLOW;
8791 * NFS4ERR_LAYOUTTRYLATER is a conflict with another client
8792 * (or clients) writing to the same RAID stripe except when
8793 * the minlength argument is 0 (see RFC5661 section 18.43.3).
8795 * Treat it like we would RECALLCONFLICT -- we retry for a little
8796 * while, and then eventually give up.
8798 case -NFS4ERR_LAYOUTTRYLATER:
8799 if (lgp->args.minlength == 0) {
8800 status = -EOVERFLOW;
8805 case -NFS4ERR_RECALLCONFLICT:
8806 status = -ERECALLCONFLICT;
8808 case -NFS4ERR_DELEG_REVOKED:
8809 case -NFS4ERR_ADMIN_REVOKED:
8810 case -NFS4ERR_EXPIRED:
8811 case -NFS4ERR_BAD_STATEID:
8812 exception->timeout = 0;
8813 spin_lock(&inode->i_lock);
8814 lo = NFS_I(inode)->layout;
8815 /* If the open stateid was bad, then recover it. */
8816 if (!lo || test_bit(NFS_LAYOUT_INVALID_STID, &lo->plh_flags) ||
8817 !nfs4_stateid_match_other(&lgp->args.stateid, &lo->plh_stateid)) {
8818 spin_unlock(&inode->i_lock);
8819 exception->state = lgp->args.ctx->state;
8820 exception->stateid = &lgp->args.stateid;
8825 * Mark the bad layout state as invalid, then retry
8827 pnfs_mark_layout_stateid_invalid(lo, &head);
8828 spin_unlock(&inode->i_lock);
8829 nfs_commit_inode(inode, 0);
8830 pnfs_free_lseg_list(&head);
8835 err = nfs4_handle_exception(server, nfs4err, exception);
8837 if (exception->retry)
8843 dprintk("<-- %s\n", __func__);
8847 size_t max_response_pages(struct nfs_server *server)
8849 u32 max_resp_sz = server->nfs_client->cl_session->fc_attrs.max_resp_sz;
8850 return nfs_page_array_len(0, max_resp_sz);
8853 static void nfs4_layoutget_release(void *calldata)
8855 struct nfs4_layoutget *lgp = calldata;
8857 dprintk("--> %s\n", __func__);
8858 nfs4_sequence_free_slot(&lgp->res.seq_res);
8859 pnfs_layoutget_free(lgp);
8860 dprintk("<-- %s\n", __func__);
8863 static const struct rpc_call_ops nfs4_layoutget_call_ops = {
8864 .rpc_call_prepare = nfs4_layoutget_prepare,
8865 .rpc_call_done = nfs4_layoutget_done,
8866 .rpc_release = nfs4_layoutget_release,
8869 struct pnfs_layout_segment *
8870 nfs4_proc_layoutget(struct nfs4_layoutget *lgp, long *timeout)
8872 struct inode *inode = lgp->args.inode;
8873 struct nfs_server *server = NFS_SERVER(inode);
8874 struct rpc_task *task;
8875 struct rpc_message msg = {
8876 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LAYOUTGET],
8877 .rpc_argp = &lgp->args,
8878 .rpc_resp = &lgp->res,
8879 .rpc_cred = lgp->cred,
8881 struct rpc_task_setup task_setup_data = {
8882 .rpc_client = server->client,
8883 .rpc_message = &msg,
8884 .callback_ops = &nfs4_layoutget_call_ops,
8885 .callback_data = lgp,
8886 .flags = RPC_TASK_ASYNC,
8888 struct pnfs_layout_segment *lseg = NULL;
8889 struct nfs4_exception exception = {
8891 .timeout = *timeout,
8895 dprintk("--> %s\n", __func__);
8897 /* nfs4_layoutget_release calls pnfs_put_layout_hdr */
8898 pnfs_get_layout_hdr(NFS_I(inode)->layout);
8900 nfs4_init_sequence(&lgp->args.seq_args, &lgp->res.seq_res, 0, 0);
8902 task = rpc_run_task(&task_setup_data);
8904 return ERR_CAST(task);
8905 status = rpc_wait_for_completion_task(task);
8909 /* if layoutp->len is 0, nfs4_layoutget_prepare called rpc_exit */
8910 if (task->tk_status < 0 || lgp->res.layoutp->len == 0) {
8911 status = nfs4_layoutget_handle_exception(task, lgp, &exception);
8912 *timeout = exception.timeout;
8914 lseg = pnfs_layout_process(lgp);
8916 trace_nfs4_layoutget(lgp->args.ctx,
8923 dprintk("<-- %s status=%d\n", __func__, status);
8925 return ERR_PTR(status);
8930 nfs4_layoutreturn_prepare(struct rpc_task *task, void *calldata)
8932 struct nfs4_layoutreturn *lrp = calldata;
8934 dprintk("--> %s\n", __func__);
8935 nfs4_setup_sequence(lrp->clp,
8936 &lrp->args.seq_args,
8939 if (!pnfs_layout_is_valid(lrp->args.layout))
8943 static void nfs4_layoutreturn_done(struct rpc_task *task, void *calldata)
8945 struct nfs4_layoutreturn *lrp = calldata;
8946 struct nfs_server *server;
8948 dprintk("--> %s\n", __func__);
8950 if (!nfs41_sequence_process(task, &lrp->res.seq_res))
8953 server = NFS_SERVER(lrp->args.inode);
8954 switch (task->tk_status) {
8955 case -NFS4ERR_OLD_STATEID:
8956 if (nfs4_layoutreturn_refresh_stateid(&lrp->args.stateid,
8962 task->tk_status = 0;
8966 case -NFS4ERR_DELAY:
8967 if (nfs4_async_handle_error(task, server, NULL, NULL) != -EAGAIN)
8971 dprintk("<-- %s\n", __func__);
8974 task->tk_status = 0;
8975 nfs4_sequence_free_slot(&lrp->res.seq_res);
8976 rpc_restart_call_prepare(task);
8979 static void nfs4_layoutreturn_release(void *calldata)
8981 struct nfs4_layoutreturn *lrp = calldata;
8982 struct pnfs_layout_hdr *lo = lrp->args.layout;
8984 dprintk("--> %s\n", __func__);
8985 pnfs_layoutreturn_free_lsegs(lo, &lrp->args.stateid, &lrp->args.range,
8986 lrp->res.lrs_present ? &lrp->res.stateid : NULL);
8987 nfs4_sequence_free_slot(&lrp->res.seq_res);
8988 if (lrp->ld_private.ops && lrp->ld_private.ops->free)
8989 lrp->ld_private.ops->free(&lrp->ld_private);
8990 pnfs_put_layout_hdr(lrp->args.layout);
8991 nfs_iput_and_deactive(lrp->inode);
8993 dprintk("<-- %s\n", __func__);
8996 static const struct rpc_call_ops nfs4_layoutreturn_call_ops = {
8997 .rpc_call_prepare = nfs4_layoutreturn_prepare,
8998 .rpc_call_done = nfs4_layoutreturn_done,
8999 .rpc_release = nfs4_layoutreturn_release,
9002 int nfs4_proc_layoutreturn(struct nfs4_layoutreturn *lrp, bool sync)
9004 struct rpc_task *task;
9005 struct rpc_message msg = {
9006 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LAYOUTRETURN],
9007 .rpc_argp = &lrp->args,
9008 .rpc_resp = &lrp->res,
9009 .rpc_cred = lrp->cred,
9011 struct rpc_task_setup task_setup_data = {
9012 .rpc_client = NFS_SERVER(lrp->args.inode)->client,
9013 .rpc_message = &msg,
9014 .callback_ops = &nfs4_layoutreturn_call_ops,
9015 .callback_data = lrp,
9019 nfs4_state_protect(NFS_SERVER(lrp->args.inode)->nfs_client,
9020 NFS_SP4_MACH_CRED_PNFS_CLEANUP,
9021 &task_setup_data.rpc_client, &msg);
9023 dprintk("--> %s\n", __func__);
9025 lrp->inode = nfs_igrab_and_active(lrp->args.inode);
9027 nfs4_layoutreturn_release(lrp);
9030 task_setup_data.flags |= RPC_TASK_ASYNC;
9032 nfs4_init_sequence(&lrp->args.seq_args, &lrp->res.seq_res, 1, 0);
9033 task = rpc_run_task(&task_setup_data);
9035 return PTR_ERR(task);
9037 status = task->tk_status;
9038 trace_nfs4_layoutreturn(lrp->args.inode, &lrp->args.stateid, status);
9039 dprintk("<-- %s status=%d\n", __func__, status);
9045 _nfs4_proc_getdeviceinfo(struct nfs_server *server,
9046 struct pnfs_device *pdev,
9047 struct rpc_cred *cred)
9049 struct nfs4_getdeviceinfo_args args = {
9051 .notify_types = NOTIFY_DEVICEID4_CHANGE |
9052 NOTIFY_DEVICEID4_DELETE,
9054 struct nfs4_getdeviceinfo_res res = {
9057 struct rpc_message msg = {
9058 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_GETDEVICEINFO],
9065 dprintk("--> %s\n", __func__);
9066 status = nfs4_call_sync(server->client, server, &msg, &args.seq_args, &res.seq_res, 0);
9067 if (res.notification & ~args.notify_types)
9068 dprintk("%s: unsupported notification\n", __func__);
9069 if (res.notification != args.notify_types)
9072 dprintk("<-- %s status=%d\n", __func__, status);
9077 int nfs4_proc_getdeviceinfo(struct nfs_server *server,
9078 struct pnfs_device *pdev,
9079 struct rpc_cred *cred)
9081 struct nfs4_exception exception = { };
9085 err = nfs4_handle_exception(server,
9086 _nfs4_proc_getdeviceinfo(server, pdev, cred),
9088 } while (exception.retry);
9091 EXPORT_SYMBOL_GPL(nfs4_proc_getdeviceinfo);
9093 static void nfs4_layoutcommit_prepare(struct rpc_task *task, void *calldata)
9095 struct nfs4_layoutcommit_data *data = calldata;
9096 struct nfs_server *server = NFS_SERVER(data->args.inode);
9098 nfs4_setup_sequence(server->nfs_client,
9099 &data->args.seq_args,
9105 nfs4_layoutcommit_done(struct rpc_task *task, void *calldata)
9107 struct nfs4_layoutcommit_data *data = calldata;
9108 struct nfs_server *server = NFS_SERVER(data->args.inode);
9110 if (!nfs41_sequence_done(task, &data->res.seq_res))
9113 switch (task->tk_status) { /* Just ignore these failures */
9114 case -NFS4ERR_DELEG_REVOKED: /* layout was recalled */
9115 case -NFS4ERR_BADIOMODE: /* no IOMODE_RW layout for range */
9116 case -NFS4ERR_BADLAYOUT: /* no layout */
9117 case -NFS4ERR_GRACE: /* loca_recalim always false */
9118 task->tk_status = 0;
9122 if (nfs4_async_handle_error(task, server, NULL, NULL) == -EAGAIN) {
9123 rpc_restart_call_prepare(task);
9129 static void nfs4_layoutcommit_release(void *calldata)
9131 struct nfs4_layoutcommit_data *data = calldata;
9133 pnfs_cleanup_layoutcommit(data);
9134 nfs_post_op_update_inode_force_wcc(data->args.inode,
9136 put_rpccred(data->cred);
9137 nfs_iput_and_deactive(data->inode);
9141 static const struct rpc_call_ops nfs4_layoutcommit_ops = {
9142 .rpc_call_prepare = nfs4_layoutcommit_prepare,
9143 .rpc_call_done = nfs4_layoutcommit_done,
9144 .rpc_release = nfs4_layoutcommit_release,
9148 nfs4_proc_layoutcommit(struct nfs4_layoutcommit_data *data, bool sync)
9150 struct rpc_message msg = {
9151 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_LAYOUTCOMMIT],
9152 .rpc_argp = &data->args,
9153 .rpc_resp = &data->res,
9154 .rpc_cred = data->cred,
9156 struct rpc_task_setup task_setup_data = {
9157 .task = &data->task,
9158 .rpc_client = NFS_CLIENT(data->args.inode),
9159 .rpc_message = &msg,
9160 .callback_ops = &nfs4_layoutcommit_ops,
9161 .callback_data = data,
9163 struct rpc_task *task;
9166 dprintk("NFS: initiating layoutcommit call. sync %d "
9167 "lbw: %llu inode %lu\n", sync,
9168 data->args.lastbytewritten,
9169 data->args.inode->i_ino);
9172 data->inode = nfs_igrab_and_active(data->args.inode);
9173 if (data->inode == NULL) {
9174 nfs4_layoutcommit_release(data);
9177 task_setup_data.flags = RPC_TASK_ASYNC;
9179 nfs4_init_sequence(&data->args.seq_args, &data->res.seq_res, 1, 0);
9180 task = rpc_run_task(&task_setup_data);
9182 return PTR_ERR(task);
9184 status = task->tk_status;
9185 trace_nfs4_layoutcommit(data->args.inode, &data->args.stateid, status);
9186 dprintk("%s: status %d\n", __func__, status);
9192 * Use the state managment nfs_client cl_rpcclient, which uses krb5i (if
9193 * possible) as per RFC3530bis and RFC5661 Security Considerations sections
9196 _nfs41_proc_secinfo_no_name(struct nfs_server *server, struct nfs_fh *fhandle,
9197 struct nfs_fsinfo *info,
9198 struct nfs4_secinfo_flavors *flavors, bool use_integrity)
9200 struct nfs41_secinfo_no_name_args args = {
9201 .style = SECINFO_STYLE_CURRENT_FH,
9203 struct nfs4_secinfo_res res = {
9206 struct rpc_message msg = {
9207 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_SECINFO_NO_NAME],
9211 struct rpc_clnt *clnt = server->client;
9212 struct rpc_cred *cred = NULL;
9215 if (use_integrity) {
9216 clnt = server->nfs_client->cl_rpcclient;
9217 cred = nfs4_get_clid_cred(server->nfs_client);
9218 msg.rpc_cred = cred;
9221 dprintk("--> %s\n", __func__);
9222 status = nfs4_call_sync(clnt, server, &msg, &args.seq_args,
9224 dprintk("<-- %s status=%d\n", __func__, status);
9233 nfs41_proc_secinfo_no_name(struct nfs_server *server, struct nfs_fh *fhandle,
9234 struct nfs_fsinfo *info, struct nfs4_secinfo_flavors *flavors)
9236 struct nfs4_exception exception = { };
9239 /* first try using integrity protection */
9240 err = -NFS4ERR_WRONGSEC;
9242 /* try to use integrity protection with machine cred */
9243 if (_nfs4_is_integrity_protected(server->nfs_client))
9244 err = _nfs41_proc_secinfo_no_name(server, fhandle, info,
9248 * if unable to use integrity protection, or SECINFO with
9249 * integrity protection returns NFS4ERR_WRONGSEC (which is
9250 * disallowed by spec, but exists in deployed servers) use
9251 * the current filesystem's rpc_client and the user cred.
9253 if (err == -NFS4ERR_WRONGSEC)
9254 err = _nfs41_proc_secinfo_no_name(server, fhandle, info,
9259 case -NFS4ERR_WRONGSEC:
9263 err = nfs4_handle_exception(server, err, &exception);
9265 } while (exception.retry);
9271 nfs41_find_root_sec(struct nfs_server *server, struct nfs_fh *fhandle,
9272 struct nfs_fsinfo *info)
9276 rpc_authflavor_t flavor = RPC_AUTH_MAXFLAVOR;
9277 struct nfs4_secinfo_flavors *flavors;
9278 struct nfs4_secinfo4 *secinfo;
9281 page = alloc_page(GFP_KERNEL);
9287 flavors = page_address(page);
9288 err = nfs41_proc_secinfo_no_name(server, fhandle, info, flavors);
9291 * Fall back on "guess and check" method if
9292 * the server doesn't support SECINFO_NO_NAME
9294 if (err == -NFS4ERR_WRONGSEC || err == -ENOTSUPP) {
9295 err = nfs4_find_root_sec(server, fhandle, info);
9301 for (i = 0; i < flavors->num_flavors; i++) {
9302 secinfo = &flavors->flavors[i];
9304 switch (secinfo->flavor) {
9308 flavor = rpcauth_get_pseudoflavor(secinfo->flavor,
9309 &secinfo->flavor_info);
9312 flavor = RPC_AUTH_MAXFLAVOR;
9316 if (!nfs_auth_info_match(&server->auth_info, flavor))
9317 flavor = RPC_AUTH_MAXFLAVOR;
9319 if (flavor != RPC_AUTH_MAXFLAVOR) {
9320 err = nfs4_lookup_root_sec(server, fhandle,
9327 if (flavor == RPC_AUTH_MAXFLAVOR)
9338 static int _nfs41_test_stateid(struct nfs_server *server,
9339 nfs4_stateid *stateid,
9340 struct rpc_cred *cred)
9343 struct nfs41_test_stateid_args args = {
9346 struct nfs41_test_stateid_res res;
9347 struct rpc_message msg = {
9348 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_TEST_STATEID],
9353 struct rpc_clnt *rpc_client = server->client;
9355 nfs4_state_protect(server->nfs_client, NFS_SP4_MACH_CRED_STATEID,
9358 dprintk("NFS call test_stateid %p\n", stateid);
9359 nfs4_init_sequence(&args.seq_args, &res.seq_res, 0, 1);
9360 status = nfs4_call_sync_sequence(rpc_client, server, &msg,
9361 &args.seq_args, &res.seq_res);
9362 if (status != NFS_OK) {
9363 dprintk("NFS reply test_stateid: failed, %d\n", status);
9366 dprintk("NFS reply test_stateid: succeeded, %d\n", -res.status);
9370 static void nfs4_handle_delay_or_session_error(struct nfs_server *server,
9371 int err, struct nfs4_exception *exception)
9373 exception->retry = 0;
9375 case -NFS4ERR_DELAY:
9376 case -NFS4ERR_RETRY_UNCACHED_REP:
9377 nfs4_handle_exception(server, err, exception);
9379 case -NFS4ERR_BADSESSION:
9380 case -NFS4ERR_BADSLOT:
9381 case -NFS4ERR_BAD_HIGH_SLOT:
9382 case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
9383 case -NFS4ERR_DEADSESSION:
9384 nfs4_do_handle_exception(server, err, exception);
9389 * nfs41_test_stateid - perform a TEST_STATEID operation
9391 * @server: server / transport on which to perform the operation
9392 * @stateid: state ID to test
9395 * Returns NFS_OK if the server recognizes that "stateid" is valid.
9396 * Otherwise a negative NFS4ERR value is returned if the operation
9397 * failed or the state ID is not currently valid.
9399 static int nfs41_test_stateid(struct nfs_server *server,
9400 nfs4_stateid *stateid,
9401 struct rpc_cred *cred)
9403 struct nfs4_exception exception = { };
9406 err = _nfs41_test_stateid(server, stateid, cred);
9407 nfs4_handle_delay_or_session_error(server, err, &exception);
9408 } while (exception.retry);
9412 struct nfs_free_stateid_data {
9413 struct nfs_server *server;
9414 struct nfs41_free_stateid_args args;
9415 struct nfs41_free_stateid_res res;
9418 static void nfs41_free_stateid_prepare(struct rpc_task *task, void *calldata)
9420 struct nfs_free_stateid_data *data = calldata;
9421 nfs4_setup_sequence(data->server->nfs_client,
9422 &data->args.seq_args,
9427 static void nfs41_free_stateid_done(struct rpc_task *task, void *calldata)
9429 struct nfs_free_stateid_data *data = calldata;
9431 nfs41_sequence_done(task, &data->res.seq_res);
9433 switch (task->tk_status) {
9434 case -NFS4ERR_DELAY:
9435 if (nfs4_async_handle_error(task, data->server, NULL, NULL) == -EAGAIN)
9436 rpc_restart_call_prepare(task);
9440 static void nfs41_free_stateid_release(void *calldata)
9445 static const struct rpc_call_ops nfs41_free_stateid_ops = {
9446 .rpc_call_prepare = nfs41_free_stateid_prepare,
9447 .rpc_call_done = nfs41_free_stateid_done,
9448 .rpc_release = nfs41_free_stateid_release,
9452 * nfs41_free_stateid - perform a FREE_STATEID operation
9454 * @server: server / transport on which to perform the operation
9455 * @stateid: state ID to release
9457 * @is_recovery: set to true if this call needs to be privileged
9459 * Note: this function is always asynchronous.
9461 static int nfs41_free_stateid(struct nfs_server *server,
9462 const nfs4_stateid *stateid,
9463 struct rpc_cred *cred,
9466 struct rpc_message msg = {
9467 .rpc_proc = &nfs4_procedures[NFSPROC4_CLNT_FREE_STATEID],
9470 struct rpc_task_setup task_setup = {
9471 .rpc_client = server->client,
9472 .rpc_message = &msg,
9473 .callback_ops = &nfs41_free_stateid_ops,
9474 .flags = RPC_TASK_ASYNC,
9476 struct nfs_free_stateid_data *data;
9477 struct rpc_task *task;
9479 nfs4_state_protect(server->nfs_client, NFS_SP4_MACH_CRED_STATEID,
9480 &task_setup.rpc_client, &msg);
9482 dprintk("NFS call free_stateid %p\n", stateid);
9483 data = kmalloc(sizeof(*data), GFP_NOFS);
9486 data->server = server;
9487 nfs4_stateid_copy(&data->args.stateid, stateid);
9489 task_setup.callback_data = data;
9491 msg.rpc_argp = &data->args;
9492 msg.rpc_resp = &data->res;
9493 nfs4_init_sequence(&data->args.seq_args, &data->res.seq_res, 1, privileged);
9494 task = rpc_run_task(&task_setup);
9496 return PTR_ERR(task);
9502 nfs41_free_lock_state(struct nfs_server *server, struct nfs4_lock_state *lsp)
9504 struct rpc_cred *cred = lsp->ls_state->owner->so_cred;
9506 nfs41_free_stateid(server, &lsp->ls_stateid, cred, false);
9507 nfs4_free_lock_state(server, lsp);
9510 static bool nfs41_match_stateid(const nfs4_stateid *s1,
9511 const nfs4_stateid *s2)
9513 if (s1->type != s2->type)
9516 if (memcmp(s1->other, s2->other, sizeof(s1->other)) != 0)
9519 if (s1->seqid == s2->seqid)
9522 return s1->seqid == 0 || s2->seqid == 0;
9525 #endif /* CONFIG_NFS_V4_1 */
9527 static bool nfs4_match_stateid(const nfs4_stateid *s1,
9528 const nfs4_stateid *s2)
9530 return nfs4_stateid_match(s1, s2);
9534 static const struct nfs4_state_recovery_ops nfs40_reboot_recovery_ops = {
9535 .owner_flag_bit = NFS_OWNER_RECLAIM_REBOOT,
9536 .state_flag_bit = NFS_STATE_RECLAIM_REBOOT,
9537 .recover_open = nfs4_open_reclaim,
9538 .recover_lock = nfs4_lock_reclaim,
9539 .establish_clid = nfs4_init_clientid,
9540 .detect_trunking = nfs40_discover_server_trunking,
9543 #if defined(CONFIG_NFS_V4_1)
9544 static const struct nfs4_state_recovery_ops nfs41_reboot_recovery_ops = {
9545 .owner_flag_bit = NFS_OWNER_RECLAIM_REBOOT,
9546 .state_flag_bit = NFS_STATE_RECLAIM_REBOOT,
9547 .recover_open = nfs4_open_reclaim,
9548 .recover_lock = nfs4_lock_reclaim,
9549 .establish_clid = nfs41_init_clientid,
9550 .reclaim_complete = nfs41_proc_reclaim_complete,
9551 .detect_trunking = nfs41_discover_server_trunking,
9553 #endif /* CONFIG_NFS_V4_1 */
9555 static const struct nfs4_state_recovery_ops nfs40_nograce_recovery_ops = {
9556 .owner_flag_bit = NFS_OWNER_RECLAIM_NOGRACE,
9557 .state_flag_bit = NFS_STATE_RECLAIM_NOGRACE,
9558 .recover_open = nfs40_open_expired,
9559 .recover_lock = nfs4_lock_expired,
9560 .establish_clid = nfs4_init_clientid,
9563 #if defined(CONFIG_NFS_V4_1)
9564 static const struct nfs4_state_recovery_ops nfs41_nograce_recovery_ops = {
9565 .owner_flag_bit = NFS_OWNER_RECLAIM_NOGRACE,
9566 .state_flag_bit = NFS_STATE_RECLAIM_NOGRACE,
9567 .recover_open = nfs41_open_expired,
9568 .recover_lock = nfs41_lock_expired,
9569 .establish_clid = nfs41_init_clientid,
9571 #endif /* CONFIG_NFS_V4_1 */
9573 static const struct nfs4_state_maintenance_ops nfs40_state_renewal_ops = {
9574 .sched_state_renewal = nfs4_proc_async_renew,
9575 .get_state_renewal_cred_locked = nfs4_get_renew_cred_locked,
9576 .renew_lease = nfs4_proc_renew,
9579 #if defined(CONFIG_NFS_V4_1)
9580 static const struct nfs4_state_maintenance_ops nfs41_state_renewal_ops = {
9581 .sched_state_renewal = nfs41_proc_async_sequence,
9582 .get_state_renewal_cred_locked = nfs4_get_machine_cred_locked,
9583 .renew_lease = nfs4_proc_sequence,
9587 static const struct nfs4_mig_recovery_ops nfs40_mig_recovery_ops = {
9588 .get_locations = _nfs40_proc_get_locations,
9589 .fsid_present = _nfs40_proc_fsid_present,
9592 #if defined(CONFIG_NFS_V4_1)
9593 static const struct nfs4_mig_recovery_ops nfs41_mig_recovery_ops = {
9594 .get_locations = _nfs41_proc_get_locations,
9595 .fsid_present = _nfs41_proc_fsid_present,
9597 #endif /* CONFIG_NFS_V4_1 */
9599 static const struct nfs4_minor_version_ops nfs_v4_0_minor_ops = {
9601 .init_caps = NFS_CAP_READDIRPLUS
9602 | NFS_CAP_ATOMIC_OPEN
9603 | NFS_CAP_POSIX_LOCK,
9604 .init_client = nfs40_init_client,
9605 .shutdown_client = nfs40_shutdown_client,
9606 .match_stateid = nfs4_match_stateid,
9607 .find_root_sec = nfs4_find_root_sec,
9608 .free_lock_state = nfs4_release_lockowner,
9609 .test_and_free_expired = nfs40_test_and_free_expired_stateid,
9610 .alloc_seqid = nfs_alloc_seqid,
9611 .call_sync_ops = &nfs40_call_sync_ops,
9612 .reboot_recovery_ops = &nfs40_reboot_recovery_ops,
9613 .nograce_recovery_ops = &nfs40_nograce_recovery_ops,
9614 .state_renewal_ops = &nfs40_state_renewal_ops,
9615 .mig_recovery_ops = &nfs40_mig_recovery_ops,
9618 #if defined(CONFIG_NFS_V4_1)
9619 static struct nfs_seqid *
9620 nfs_alloc_no_seqid(struct nfs_seqid_counter *arg1, gfp_t arg2)
9625 static const struct nfs4_minor_version_ops nfs_v4_1_minor_ops = {
9627 .init_caps = NFS_CAP_READDIRPLUS
9628 | NFS_CAP_ATOMIC_OPEN
9629 | NFS_CAP_POSIX_LOCK
9630 | NFS_CAP_STATEID_NFSV41
9631 | NFS_CAP_ATOMIC_OPEN_V1
9633 .init_client = nfs41_init_client,
9634 .shutdown_client = nfs41_shutdown_client,
9635 .match_stateid = nfs41_match_stateid,
9636 .find_root_sec = nfs41_find_root_sec,
9637 .free_lock_state = nfs41_free_lock_state,
9638 .test_and_free_expired = nfs41_test_and_free_expired_stateid,
9639 .alloc_seqid = nfs_alloc_no_seqid,
9640 .session_trunk = nfs4_test_session_trunk,
9641 .call_sync_ops = &nfs41_call_sync_ops,
9642 .reboot_recovery_ops = &nfs41_reboot_recovery_ops,
9643 .nograce_recovery_ops = &nfs41_nograce_recovery_ops,
9644 .state_renewal_ops = &nfs41_state_renewal_ops,
9645 .mig_recovery_ops = &nfs41_mig_recovery_ops,
9649 #if defined(CONFIG_NFS_V4_2)
9650 static const struct nfs4_minor_version_ops nfs_v4_2_minor_ops = {
9652 .init_caps = NFS_CAP_READDIRPLUS
9653 | NFS_CAP_ATOMIC_OPEN
9654 | NFS_CAP_POSIX_LOCK
9655 | NFS_CAP_STATEID_NFSV41
9656 | NFS_CAP_ATOMIC_OPEN_V1
9660 | NFS_CAP_OFFLOAD_CANCEL
9661 | NFS_CAP_DEALLOCATE
9663 | NFS_CAP_LAYOUTSTATS
9665 .init_client = nfs41_init_client,
9666 .shutdown_client = nfs41_shutdown_client,
9667 .match_stateid = nfs41_match_stateid,
9668 .find_root_sec = nfs41_find_root_sec,
9669 .free_lock_state = nfs41_free_lock_state,
9670 .call_sync_ops = &nfs41_call_sync_ops,
9671 .test_and_free_expired = nfs41_test_and_free_expired_stateid,
9672 .alloc_seqid = nfs_alloc_no_seqid,
9673 .session_trunk = nfs4_test_session_trunk,
9674 .reboot_recovery_ops = &nfs41_reboot_recovery_ops,
9675 .nograce_recovery_ops = &nfs41_nograce_recovery_ops,
9676 .state_renewal_ops = &nfs41_state_renewal_ops,
9677 .mig_recovery_ops = &nfs41_mig_recovery_ops,
9681 const struct nfs4_minor_version_ops *nfs_v4_minor_ops[] = {
9682 [0] = &nfs_v4_0_minor_ops,
9683 #if defined(CONFIG_NFS_V4_1)
9684 [1] = &nfs_v4_1_minor_ops,
9686 #if defined(CONFIG_NFS_V4_2)
9687 [2] = &nfs_v4_2_minor_ops,
9691 static ssize_t nfs4_listxattr(struct dentry *dentry, char *list, size_t size)
9693 ssize_t error, error2;
9695 error = generic_listxattr(dentry, list, size);
9703 error2 = nfs4_listxattr_nfs4_label(d_inode(dentry), list, size);
9706 return error + error2;
9709 static const struct inode_operations nfs4_dir_inode_operations = {
9710 .create = nfs_create,
9711 .lookup = nfs_lookup,
9712 .atomic_open = nfs_atomic_open,
9714 .unlink = nfs_unlink,
9715 .symlink = nfs_symlink,
9719 .rename = nfs_rename,
9720 .permission = nfs_permission,
9721 .getattr = nfs_getattr,
9722 .setattr = nfs_setattr,
9723 .listxattr = nfs4_listxattr,
9726 static const struct inode_operations nfs4_file_inode_operations = {
9727 .permission = nfs_permission,
9728 .getattr = nfs_getattr,
9729 .setattr = nfs_setattr,
9730 .listxattr = nfs4_listxattr,
9733 const struct nfs_rpc_ops nfs_v4_clientops = {
9734 .version = 4, /* protocol version */
9735 .dentry_ops = &nfs4_dentry_operations,
9736 .dir_inode_ops = &nfs4_dir_inode_operations,
9737 .file_inode_ops = &nfs4_file_inode_operations,
9738 .file_ops = &nfs4_file_operations,
9739 .getroot = nfs4_proc_get_root,
9740 .submount = nfs4_submount,
9741 .try_mount = nfs4_try_mount,
9742 .getattr = nfs4_proc_getattr,
9743 .setattr = nfs4_proc_setattr,
9744 .lookup = nfs4_proc_lookup,
9745 .lookupp = nfs4_proc_lookupp,
9746 .access = nfs4_proc_access,
9747 .readlink = nfs4_proc_readlink,
9748 .create = nfs4_proc_create,
9749 .remove = nfs4_proc_remove,
9750 .unlink_setup = nfs4_proc_unlink_setup,
9751 .unlink_rpc_prepare = nfs4_proc_unlink_rpc_prepare,
9752 .unlink_done = nfs4_proc_unlink_done,
9753 .rename_setup = nfs4_proc_rename_setup,
9754 .rename_rpc_prepare = nfs4_proc_rename_rpc_prepare,
9755 .rename_done = nfs4_proc_rename_done,
9756 .link = nfs4_proc_link,
9757 .symlink = nfs4_proc_symlink,
9758 .mkdir = nfs4_proc_mkdir,
9759 .rmdir = nfs4_proc_rmdir,
9760 .readdir = nfs4_proc_readdir,
9761 .mknod = nfs4_proc_mknod,
9762 .statfs = nfs4_proc_statfs,
9763 .fsinfo = nfs4_proc_fsinfo,
9764 .pathconf = nfs4_proc_pathconf,
9765 .set_capabilities = nfs4_server_capabilities,
9766 .decode_dirent = nfs4_decode_dirent,
9767 .pgio_rpc_prepare = nfs4_proc_pgio_rpc_prepare,
9768 .read_setup = nfs4_proc_read_setup,
9769 .read_done = nfs4_read_done,
9770 .write_setup = nfs4_proc_write_setup,
9771 .write_done = nfs4_write_done,
9772 .commit_setup = nfs4_proc_commit_setup,
9773 .commit_rpc_prepare = nfs4_proc_commit_rpc_prepare,
9774 .commit_done = nfs4_commit_done,
9775 .lock = nfs4_proc_lock,
9776 .clear_acl_cache = nfs4_zap_acl_attr,
9777 .close_context = nfs4_close_context,
9778 .open_context = nfs4_atomic_open,
9779 .have_delegation = nfs4_have_delegation,
9780 .alloc_client = nfs4_alloc_client,
9781 .init_client = nfs4_init_client,
9782 .free_client = nfs4_free_client,
9783 .create_server = nfs4_create_server,
9784 .clone_server = nfs_clone_server,
9787 static const struct xattr_handler nfs4_xattr_nfs4_acl_handler = {
9788 .name = XATTR_NAME_NFSV4_ACL,
9789 .list = nfs4_xattr_list_nfs4_acl,
9790 .get = nfs4_xattr_get_nfs4_acl,
9791 .set = nfs4_xattr_set_nfs4_acl,
9794 const struct xattr_handler *nfs4_xattr_handlers[] = {
9795 &nfs4_xattr_nfs4_acl_handler,
9796 #ifdef CONFIG_NFS_V4_SECURITY_LABEL
9797 &nfs4_xattr_nfs4_label_handler,