1 // SPDX-License-Identifier: GPL-2.0-only
5 * Copyright (C) 1992 Rick Sladkey
7 * Changes Copyright (C) 1994 by Florian La Roche
8 * - Do not copy data too often around in the kernel.
9 * - In nfs_file_read the return value of kmalloc wasn't checked.
10 * - Put in a better version of read look-ahead buffering. Original idea
11 * and implementation by Wai S Kok elekokws@ee.nus.sg.
13 * Expire cache on write to a file by Wai S Kok (Oct 1994).
15 * Total rewrite of read side for new NFS buffer cache.. Linus.
17 * nfs regular file handling functions
20 #include <linux/module.h>
21 #include <linux/time.h>
22 #include <linux/kernel.h>
23 #include <linux/errno.h>
24 #include <linux/fcntl.h>
25 #include <linux/stat.h>
26 #include <linux/nfs_fs.h>
27 #include <linux/nfs_mount.h>
29 #include <linux/pagemap.h>
30 #include <linux/gfp.h>
31 #include <linux/swap.h>
33 #include <linux/uaccess.h>
34 #include <linux/filelock.h>
36 #include "delegation.h"
44 #define NFSDBG_FACILITY NFSDBG_FILE
46 static const struct vm_operations_struct nfs_file_vm_ops
;
48 int nfs_check_flags(int flags
)
50 if ((flags
& (O_APPEND
| O_DIRECT
)) == (O_APPEND
| O_DIRECT
))
55 EXPORT_SYMBOL_GPL(nfs_check_flags
);
61 nfs_file_open(struct inode
*inode
, struct file
*filp
)
65 dprintk("NFS: open file(%pD2)\n", filp
);
67 nfs_inc_stats(inode
, NFSIOS_VFSOPEN
);
68 res
= nfs_check_flags(filp
->f_flags
);
72 res
= nfs_open(inode
, filp
);
74 filp
->f_mode
|= FMODE_CAN_ODIRECT
;
79 nfs_file_release(struct inode
*inode
, struct file
*filp
)
81 dprintk("NFS: release(%pD2)\n", filp
);
83 nfs_inc_stats(inode
, NFSIOS_VFSRELEASE
);
84 nfs_file_clear_open_context(filp
);
85 nfs_fscache_release_file(inode
, filp
);
88 EXPORT_SYMBOL_GPL(nfs_file_release
);
91 * nfs_revalidate_file_size - Revalidate the file size
92 * @inode: pointer to inode struct
93 * @filp: pointer to struct file
95 * Revalidates the file length. This is basically a wrapper around
96 * nfs_revalidate_inode() that takes into account the fact that we may
97 * have cached writes (in which case we don't care about the server's
98 * idea of what the file length is), or O_DIRECT (in which case we
99 * shouldn't trust the cache).
101 static int nfs_revalidate_file_size(struct inode
*inode
, struct file
*filp
)
103 struct nfs_server
*server
= NFS_SERVER(inode
);
105 if (filp
->f_flags
& O_DIRECT
)
107 if (nfs_check_cache_invalid(inode
, NFS_INO_INVALID_SIZE
))
111 return __nfs_revalidate_inode(server
, inode
);
114 loff_t
nfs_file_llseek(struct file
*filp
, loff_t offset
, int whence
)
116 dprintk("NFS: llseek file(%pD2, %lld, %d)\n",
117 filp
, offset
, whence
);
120 * whence == SEEK_END || SEEK_DATA || SEEK_HOLE => we must revalidate
121 * the cached file length
123 if (whence
!= SEEK_SET
&& whence
!= SEEK_CUR
) {
124 struct inode
*inode
= filp
->f_mapping
->host
;
126 int retval
= nfs_revalidate_file_size(inode
, filp
);
128 return (loff_t
)retval
;
131 return generic_file_llseek(filp
, offset
, whence
);
133 EXPORT_SYMBOL_GPL(nfs_file_llseek
);
136 * Flush all dirty pages, and check for write errors.
139 nfs_file_flush(struct file
*file
, fl_owner_t id
)
141 struct inode
*inode
= file_inode(file
);
144 dprintk("NFS: flush(%pD2)\n", file
);
146 nfs_inc_stats(inode
, NFSIOS_VFSFLUSH
);
147 if ((file
->f_mode
& FMODE_WRITE
) == 0)
150 /* Flush writes to the server and return any errors */
151 since
= filemap_sample_wb_err(file
->f_mapping
);
153 return filemap_check_wb_err(file
->f_mapping
, since
);
157 nfs_file_read(struct kiocb
*iocb
, struct iov_iter
*to
)
159 struct inode
*inode
= file_inode(iocb
->ki_filp
);
162 if (iocb
->ki_flags
& IOCB_DIRECT
)
163 return nfs_file_direct_read(iocb
, to
, false);
165 dprintk("NFS: read(%pD2, %zu@%lu)\n",
167 iov_iter_count(to
), (unsigned long) iocb
->ki_pos
);
169 nfs_start_io_read(inode
);
170 result
= nfs_revalidate_mapping(inode
, iocb
->ki_filp
->f_mapping
);
172 result
= generic_file_read_iter(iocb
, to
);
174 nfs_add_stats(inode
, NFSIOS_NORMALREADBYTES
, result
);
176 nfs_end_io_read(inode
);
179 EXPORT_SYMBOL_GPL(nfs_file_read
);
182 nfs_file_splice_read(struct file
*in
, loff_t
*ppos
, struct pipe_inode_info
*pipe
,
183 size_t len
, unsigned int flags
)
185 struct inode
*inode
= file_inode(in
);
188 dprintk("NFS: splice_read(%pD2, %zu@%llu)\n", in
, len
, *ppos
);
190 nfs_start_io_read(inode
);
191 result
= nfs_revalidate_mapping(inode
, in
->f_mapping
);
193 result
= filemap_splice_read(in
, ppos
, pipe
, len
, flags
);
195 nfs_add_stats(inode
, NFSIOS_NORMALREADBYTES
, result
);
197 nfs_end_io_read(inode
);
200 EXPORT_SYMBOL_GPL(nfs_file_splice_read
);
203 nfs_file_mmap(struct file
*file
, struct vm_area_struct
*vma
)
205 struct inode
*inode
= file_inode(file
);
208 dprintk("NFS: mmap(%pD2)\n", file
);
210 /* Note: generic_file_mmap() returns ENOSYS on nommu systems
211 * so we call that before revalidating the mapping
213 status
= generic_file_mmap(file
, vma
);
215 vma
->vm_ops
= &nfs_file_vm_ops
;
216 status
= nfs_revalidate_mapping(inode
, file
->f_mapping
);
220 EXPORT_SYMBOL_GPL(nfs_file_mmap
);
223 * Flush any dirty pages for this process, and check for write errors.
224 * The return status from this call provides a reliable indication of
225 * whether any write errors occurred for this process.
228 nfs_file_fsync_commit(struct file
*file
, int datasync
)
230 struct inode
*inode
= file_inode(file
);
233 dprintk("NFS: fsync file(%pD2) datasync %d\n", file
, datasync
);
235 nfs_inc_stats(inode
, NFSIOS_VFSFSYNC
);
236 ret
= nfs_commit_inode(inode
, FLUSH_SYNC
);
237 ret2
= file_check_and_advance_wb_err(file
);
244 nfs_file_fsync(struct file
*file
, loff_t start
, loff_t end
, int datasync
)
246 struct inode
*inode
= file_inode(file
);
247 struct nfs_inode
*nfsi
= NFS_I(inode
);
248 long save_nredirtied
= atomic_long_read(&nfsi
->redirtied_pages
);
252 trace_nfs_fsync_enter(inode
);
255 ret
= file_write_and_wait_range(file
, start
, end
);
258 ret
= nfs_file_fsync_commit(file
, datasync
);
261 ret
= pnfs_sync_inode(inode
, !!datasync
);
264 nredirtied
= atomic_long_read(&nfsi
->redirtied_pages
);
265 if (nredirtied
== save_nredirtied
)
267 save_nredirtied
= nredirtied
;
270 trace_nfs_fsync_exit(inode
, ret
);
273 EXPORT_SYMBOL_GPL(nfs_file_fsync
);
276 * Decide whether a read/modify/write cycle may be more efficient
277 * then a modify/write/read cycle when writing to a page in the
280 * Some pNFS layout drivers can only read/write at a certain block
281 * granularity like all block devices and therefore we must perform
282 * read/modify/write whenever a page hasn't read yet and the data
283 * to be written there is not aligned to a block boundary and/or
284 * smaller than the block size.
286 * The modify/write/read cycle may occur if a page is read before
287 * being completely filled by the writer. In this situation, the
288 * page must be completely written to stable storage on the server
289 * before it can be refilled by reading in the page from the server.
290 * This can lead to expensive, small, FILE_SYNC mode writes being
293 * It may be more efficient to read the page first if the file is
294 * open for reading in addition to writing, the page is not marked
295 * as Uptodate, it is not dirty or waiting to be committed,
296 * indicating that it was previously allocated and then modified,
297 * that there were valid bytes of data in that range of the file,
298 * and that the new data won't completely replace the old data in
299 * that range of the file.
301 static bool nfs_folio_is_full_write(struct folio
*folio
, loff_t pos
,
304 unsigned int pglen
= nfs_folio_length(folio
);
305 unsigned int offset
= offset_in_folio(folio
, pos
);
306 unsigned int end
= offset
+ len
;
308 return !pglen
|| (end
>= pglen
&& !offset
);
311 static bool nfs_want_read_modify_write(struct file
*file
, struct folio
*folio
,
312 loff_t pos
, unsigned int len
)
315 * Up-to-date pages, those with ongoing or full-page write
316 * don't need read/modify/write
318 if (folio_test_uptodate(folio
) || folio_test_private(folio
) ||
319 nfs_folio_is_full_write(folio
, pos
, len
))
322 if (pnfs_ld_read_whole_page(file_inode(file
)))
324 /* Open for reading too? */
325 if (file
->f_mode
& FMODE_READ
)
331 * This does the "real" work of the write. We must allocate and lock the
332 * page to be sent back to the generic routine, which then copies the
333 * data from user space.
335 * If the writer ends up delaying the write, the writer needs to
336 * increment the page use counts until he is done with the page.
338 static int nfs_write_begin(struct file
*file
, struct address_space
*mapping
,
339 loff_t pos
, unsigned len
, struct folio
**foliop
,
342 fgf_t fgp
= FGP_WRITEBEGIN
;
347 dfprintk(PAGECACHE
, "NFS: write_begin(%pD2(%lu), %u@%lld)\n",
348 file
, mapping
->host
->i_ino
, len
, (long long) pos
);
350 fgp
|= fgf_set_order(len
);
352 folio
= __filemap_get_folio(mapping
, pos
>> PAGE_SHIFT
, fgp
,
353 mapping_gfp_mask(mapping
));
355 return PTR_ERR(folio
);
358 ret
= nfs_flush_incompatible(file
, folio
);
362 } else if (!once_thru
&&
363 nfs_want_read_modify_write(file
, folio
, pos
, len
)) {
365 ret
= nfs_read_folio(file
, folio
);
373 static int nfs_write_end(struct file
*file
, struct address_space
*mapping
,
374 loff_t pos
, unsigned len
, unsigned copied
,
375 struct folio
*folio
, void *fsdata
)
377 struct nfs_open_context
*ctx
= nfs_file_open_context(file
);
378 unsigned offset
= offset_in_folio(folio
, pos
);
381 dfprintk(PAGECACHE
, "NFS: write_end(%pD2(%lu), %u@%lld)\n",
382 file
, mapping
->host
->i_ino
, len
, (long long) pos
);
385 * Zero any uninitialised parts of the page, and then mark the page
386 * as up to date if it turns out that we're extending the file.
388 if (!folio_test_uptodate(folio
)) {
389 size_t fsize
= folio_size(folio
);
390 unsigned pglen
= nfs_folio_length(folio
);
391 unsigned end
= offset
+ copied
;
394 folio_zero_segments(folio
, 0, offset
, end
, fsize
);
395 folio_mark_uptodate(folio
);
396 } else if (end
>= pglen
) {
397 folio_zero_segment(folio
, end
, fsize
);
399 folio_mark_uptodate(folio
);
401 folio_zero_segment(folio
, pglen
, fsize
);
404 status
= nfs_update_folio(file
, folio
, offset
, copied
);
411 NFS_I(mapping
->host
)->write_io
+= copied
;
413 if (nfs_ctx_key_to_expire(ctx
, mapping
->host
))
414 nfs_wb_all(mapping
->host
);
420 * Partially or wholly invalidate a page
421 * - Release the private state associated with a page if undergoing complete
423 * - Called if either PG_private or PG_fscache is set on the page
424 * - Caller holds page lock
426 static void nfs_invalidate_folio(struct folio
*folio
, size_t offset
,
429 struct inode
*inode
= folio
->mapping
->host
;
430 dfprintk(PAGECACHE
, "NFS: invalidate_folio(%lu, %zu, %zu)\n",
431 folio
->index
, offset
, length
);
433 if (offset
!= 0 || length
< folio_size(folio
))
435 /* Cancel any unstarted writes on this page */
436 nfs_wb_folio_cancel(inode
, folio
);
437 folio_wait_private_2(folio
); /* [DEPRECATED] */
438 trace_nfs_invalidate_folio(inode
, folio_pos(folio
) + offset
, length
);
442 * Attempt to release the private state associated with a folio
443 * - Called if either private or fscache flags are set on the folio
444 * - Caller holds folio lock
445 * - Return true (may release folio) or false (may not)
447 static bool nfs_release_folio(struct folio
*folio
, gfp_t gfp
)
449 dfprintk(PAGECACHE
, "NFS: release_folio(%p)\n", folio
);
451 /* If the private flag is set, then the folio is not freeable */
452 if (folio_test_private(folio
)) {
453 if ((current_gfp_context(gfp
) & GFP_KERNEL
) != GFP_KERNEL
||
456 if (nfs_wb_folio(folio
->mapping
->host
, folio
) < 0)
459 return nfs_fscache_release_folio(folio
, gfp
);
462 static void nfs_check_dirty_writeback(struct folio
*folio
,
463 bool *dirty
, bool *writeback
)
465 struct nfs_inode
*nfsi
;
466 struct address_space
*mapping
= folio
->mapping
;
469 * Check if an unstable folio is currently being committed and
470 * if so, have the VM treat it as if the folio is under writeback
471 * so it will not block due to folios that will shortly be freeable.
473 nfsi
= NFS_I(mapping
->host
);
474 if (atomic_read(&nfsi
->commit_info
.rpcs_out
)) {
480 * If the private flag is set, then the folio is not freeable
481 * and as the inode is not being committed, it's not going to
482 * be cleaned in the near future so treat it as dirty
484 if (folio_test_private(folio
))
489 * Attempt to clear the private state associated with a page when an error
490 * occurs that requires the cached contents of an inode to be written back or
492 * - Called if either PG_private or fscache is set on the page
493 * - Caller holds page lock
494 * - Return 0 if successful, -error otherwise
496 static int nfs_launder_folio(struct folio
*folio
)
498 struct inode
*inode
= folio
->mapping
->host
;
501 dfprintk(PAGECACHE
, "NFS: launder_folio(%ld, %llu)\n",
502 inode
->i_ino
, folio_pos(folio
));
504 folio_wait_private_2(folio
); /* [DEPRECATED] */
505 ret
= nfs_wb_folio(inode
, folio
);
506 trace_nfs_launder_folio_done(inode
, folio_pos(folio
),
507 folio_size(folio
), ret
);
511 static int nfs_swap_activate(struct swap_info_struct
*sis
, struct file
*file
,
514 unsigned long blocks
;
517 struct inode
*inode
= file_inode(file
);
518 struct rpc_clnt
*clnt
= NFS_CLIENT(inode
);
519 struct nfs_client
*cl
= NFS_SERVER(inode
)->nfs_client
;
521 spin_lock(&inode
->i_lock
);
522 blocks
= inode
->i_blocks
;
523 isize
= inode
->i_size
;
524 spin_unlock(&inode
->i_lock
);
525 if (blocks
*512 < isize
) {
526 pr_warn("swap activate: swapfile has holes\n");
530 ret
= rpc_clnt_swap_activate(clnt
);
533 ret
= add_swap_extent(sis
, 0, sis
->max
, 0);
535 rpc_clnt_swap_deactivate(clnt
);
541 if (cl
->rpc_ops
->enable_swap
)
542 cl
->rpc_ops
->enable_swap(inode
);
544 sis
->flags
|= SWP_FS_OPS
;
548 static void nfs_swap_deactivate(struct file
*file
)
550 struct inode
*inode
= file_inode(file
);
551 struct rpc_clnt
*clnt
= NFS_CLIENT(inode
);
552 struct nfs_client
*cl
= NFS_SERVER(inode
)->nfs_client
;
554 rpc_clnt_swap_deactivate(clnt
);
555 if (cl
->rpc_ops
->disable_swap
)
556 cl
->rpc_ops
->disable_swap(file_inode(file
));
559 const struct address_space_operations nfs_file_aops
= {
560 .read_folio
= nfs_read_folio
,
561 .readahead
= nfs_readahead
,
562 .dirty_folio
= filemap_dirty_folio
,
563 .writepages
= nfs_writepages
,
564 .write_begin
= nfs_write_begin
,
565 .write_end
= nfs_write_end
,
566 .invalidate_folio
= nfs_invalidate_folio
,
567 .release_folio
= nfs_release_folio
,
568 .migrate_folio
= nfs_migrate_folio
,
569 .launder_folio
= nfs_launder_folio
,
570 .is_dirty_writeback
= nfs_check_dirty_writeback
,
571 .error_remove_folio
= generic_error_remove_folio
,
572 .swap_activate
= nfs_swap_activate
,
573 .swap_deactivate
= nfs_swap_deactivate
,
574 .swap_rw
= nfs_swap_rw
,
578 * Notification that a PTE pointing to an NFS page is about to be made
579 * writable, implying that someone is about to modify the page through a
580 * shared-writable mapping
582 static vm_fault_t
nfs_vm_page_mkwrite(struct vm_fault
*vmf
)
584 struct file
*filp
= vmf
->vma
->vm_file
;
585 struct inode
*inode
= file_inode(filp
);
587 vm_fault_t ret
= VM_FAULT_NOPAGE
;
588 struct address_space
*mapping
;
589 struct folio
*folio
= page_folio(vmf
->page
);
591 dfprintk(PAGECACHE
, "NFS: vm_page_mkwrite(%pD2(%lu), offset %lld)\n",
592 filp
, filp
->f_mapping
->host
->i_ino
,
593 (long long)folio_pos(folio
));
595 sb_start_pagefault(inode
->i_sb
);
597 /* make sure the cache has finished storing the page */
598 if (folio_test_private_2(folio
) && /* [DEPRECATED] */
599 folio_wait_private_2_killable(folio
) < 0) {
600 ret
= VM_FAULT_RETRY
;
604 wait_on_bit_action(&NFS_I(inode
)->flags
, NFS_INO_INVALIDATING
,
605 nfs_wait_bit_killable
,
606 TASK_KILLABLE
|TASK_FREEZABLE_UNSAFE
);
609 mapping
= folio
->mapping
;
610 if (mapping
!= inode
->i_mapping
)
613 folio_wait_writeback(folio
);
615 pagelen
= nfs_folio_length(folio
);
619 ret
= VM_FAULT_LOCKED
;
620 if (nfs_flush_incompatible(filp
, folio
) == 0 &&
621 nfs_update_folio(filp
, folio
, 0, pagelen
) == 0)
624 ret
= VM_FAULT_SIGBUS
;
628 sb_end_pagefault(inode
->i_sb
);
632 static const struct vm_operations_struct nfs_file_vm_ops
= {
633 .fault
= filemap_fault
,
634 .map_pages
= filemap_map_pages
,
635 .page_mkwrite
= nfs_vm_page_mkwrite
,
638 ssize_t
nfs_file_write(struct kiocb
*iocb
, struct iov_iter
*from
)
640 struct file
*file
= iocb
->ki_filp
;
641 struct inode
*inode
= file_inode(file
);
642 unsigned int mntflags
= NFS_SERVER(inode
)->flags
;
643 ssize_t result
, written
;
647 result
= nfs_key_timeout_notify(file
, inode
);
651 if (iocb
->ki_flags
& IOCB_DIRECT
)
652 return nfs_file_direct_write(iocb
, from
, false);
654 dprintk("NFS: write(%pD2, %zu@%Ld)\n",
655 file
, iov_iter_count(from
), (long long) iocb
->ki_pos
);
657 if (IS_SWAPFILE(inode
))
660 * O_APPEND implies that we must revalidate the file length.
662 if (iocb
->ki_flags
& IOCB_APPEND
|| iocb
->ki_pos
> i_size_read(inode
)) {
663 result
= nfs_revalidate_file_size(inode
, file
);
668 nfs_clear_invalid_mapping(file
->f_mapping
);
670 since
= filemap_sample_wb_err(file
->f_mapping
);
671 nfs_start_io_write(inode
);
672 result
= generic_write_checks(iocb
, from
);
674 result
= generic_perform_write(iocb
, from
);
675 nfs_end_io_write(inode
);
680 nfs_add_stats(inode
, NFSIOS_NORMALWRITTENBYTES
, written
);
682 if (mntflags
& NFS_MOUNT_WRITE_EAGER
) {
683 result
= filemap_fdatawrite_range(file
->f_mapping
,
684 iocb
->ki_pos
- written
,
689 if (mntflags
& NFS_MOUNT_WRITE_WAIT
) {
690 filemap_fdatawait_range(file
->f_mapping
,
691 iocb
->ki_pos
- written
,
694 result
= generic_write_sync(iocb
, written
);
699 /* Return error values */
700 error
= filemap_check_wb_err(file
->f_mapping
, since
);
708 error
= file_check_and_advance_wb_err(file
);
715 printk(KERN_INFO
"NFS: attempt to write to active swap file!\n");
718 EXPORT_SYMBOL_GPL(nfs_file_write
);
721 do_getlk(struct file
*filp
, int cmd
, struct file_lock
*fl
, int is_local
)
723 struct inode
*inode
= filp
->f_mapping
->host
;
725 unsigned int saved_type
= fl
->c
.flc_type
;
727 /* Try local locking first */
728 posix_test_lock(filp
, fl
);
729 if (fl
->c
.flc_type
!= F_UNLCK
) {
730 /* found a conflict */
733 fl
->c
.flc_type
= saved_type
;
735 if (nfs_have_read_or_write_delegation(inode
))
741 status
= NFS_PROTO(inode
)->lock(filp
, cmd
, fl
);
745 fl
->c
.flc_type
= F_UNLCK
;
750 do_unlk(struct file
*filp
, int cmd
, struct file_lock
*fl
, int is_local
)
752 struct inode
*inode
= filp
->f_mapping
->host
;
753 struct nfs_lock_context
*l_ctx
;
757 * Flush all pending writes before doing anything
762 l_ctx
= nfs_get_lock_context(nfs_file_open_context(filp
));
763 if (!IS_ERR(l_ctx
)) {
764 status
= nfs_iocounter_wait(l_ctx
);
765 nfs_put_lock_context(l_ctx
);
766 /* NOTE: special case
767 * If we're signalled while cleaning up locks on process exit, we
768 * still need to complete the unlock.
770 if (status
< 0 && !(fl
->c
.flc_flags
& FL_CLOSE
))
775 * Use local locking if mounted with "-onolock" or with appropriate
779 status
= NFS_PROTO(inode
)->lock(filp
, cmd
, fl
);
781 status
= locks_lock_file_wait(filp
, fl
);
786 do_setlk(struct file
*filp
, int cmd
, struct file_lock
*fl
, int is_local
)
788 struct inode
*inode
= filp
->f_mapping
->host
;
792 * Flush all pending writes before doing anything
795 status
= nfs_sync_mapping(filp
->f_mapping
);
800 * Use local locking if mounted with "-onolock" or with appropriate
804 status
= NFS_PROTO(inode
)->lock(filp
, cmd
, fl
);
806 status
= locks_lock_file_wait(filp
, fl
);
811 * Invalidate cache to prevent missing any changes. If
812 * the file is mapped, clear the page cache as well so
813 * those mappings will be loaded.
815 * This makes locking act as a cache coherency point.
817 nfs_sync_mapping(filp
->f_mapping
);
818 if (!nfs_have_read_or_write_delegation(inode
)) {
819 nfs_zap_caches(inode
);
820 if (mapping_mapped(filp
->f_mapping
))
821 nfs_revalidate_mapping(inode
, filp
->f_mapping
);
828 * Lock a (portion of) a file
830 int nfs_lock(struct file
*filp
, int cmd
, struct file_lock
*fl
)
832 struct inode
*inode
= filp
->f_mapping
->host
;
836 dprintk("NFS: lock(%pD2, t=%x, fl=%x, r=%lld:%lld)\n",
837 filp
, fl
->c
.flc_type
, fl
->c
.flc_flags
,
838 (long long)fl
->fl_start
, (long long)fl
->fl_end
);
840 nfs_inc_stats(inode
, NFSIOS_VFSLOCK
);
842 if (fl
->c
.flc_flags
& FL_RECLAIM
)
845 if (NFS_SERVER(inode
)->flags
& NFS_MOUNT_LOCAL_FCNTL
)
848 if (NFS_PROTO(inode
)->lock_check_bounds
!= NULL
) {
849 ret
= NFS_PROTO(inode
)->lock_check_bounds(fl
);
855 ret
= do_getlk(filp
, cmd
, fl
, is_local
);
856 else if (lock_is_unlock(fl
))
857 ret
= do_unlk(filp
, cmd
, fl
, is_local
);
859 ret
= do_setlk(filp
, cmd
, fl
, is_local
);
863 EXPORT_SYMBOL_GPL(nfs_lock
);
866 * Lock a (portion of) a file
868 int nfs_flock(struct file
*filp
, int cmd
, struct file_lock
*fl
)
870 struct inode
*inode
= filp
->f_mapping
->host
;
873 dprintk("NFS: flock(%pD2, t=%x, fl=%x)\n",
874 filp
, fl
->c
.flc_type
, fl
->c
.flc_flags
);
876 if (!(fl
->c
.flc_flags
& FL_FLOCK
))
879 if (NFS_SERVER(inode
)->flags
& NFS_MOUNT_LOCAL_FLOCK
)
882 /* We're simulating flock() locks using posix locks on the server */
883 if (lock_is_unlock(fl
))
884 return do_unlk(filp
, cmd
, fl
, is_local
);
885 return do_setlk(filp
, cmd
, fl
, is_local
);
887 EXPORT_SYMBOL_GPL(nfs_flock
);
889 const struct file_operations nfs_file_operations
= {
890 .llseek
= nfs_file_llseek
,
891 .read_iter
= nfs_file_read
,
892 .write_iter
= nfs_file_write
,
893 .mmap
= nfs_file_mmap
,
894 .open
= nfs_file_open
,
895 .flush
= nfs_file_flush
,
896 .release
= nfs_file_release
,
897 .fsync
= nfs_file_fsync
,
900 .splice_read
= nfs_file_splice_read
,
901 .splice_write
= iter_file_splice_write
,
902 .check_flags
= nfs_check_flags
,
903 .setlease
= simple_nosetlease
,
905 EXPORT_SYMBOL_GPL(nfs_file_operations
);