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NFS: Don't zap the readdir caches upon error
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CommitLineData
1da177e4
LT
1/*
2 * linux/fs/nfs/dir.c
3 *
4 * Copyright (C) 1992 Rick Sladkey
5 *
6 * nfs directory handling functions
7 *
8 * 10 Apr 1996 Added silly rename for unlink --okir
9 * 28 Sep 1996 Improved directory cache --okir
10 * 23 Aug 1997 Claus Heine claus@momo.math.rwth-aachen.de
11 * Re-implemented silly rename for unlink, newly implemented
12 * silly rename for nfs_rename() following the suggestions
13 * of Olaf Kirch (okir) found in this file.
14 * Following Linus comments on my original hack, this version
15 * depends only on the dcache stuff and doesn't touch the inode
16 * layer (iput() and friends).
17 * 6 Jun 1999 Cache readdir lookups in the page cache. -DaveM
18 */
19
20#include <linux/time.h>
21#include <linux/errno.h>
22#include <linux/stat.h>
23#include <linux/fcntl.h>
24#include <linux/string.h>
25#include <linux/kernel.h>
26#include <linux/slab.h>
27#include <linux/mm.h>
28#include <linux/sunrpc/clnt.h>
29#include <linux/nfs_fs.h>
30#include <linux/nfs_mount.h>
31#include <linux/pagemap.h>
32#include <linux/smp_lock.h>
873101b3 33#include <linux/pagevec.h>
1da177e4 34#include <linux/namei.h>
54ceac45 35#include <linux/mount.h>
e8edc6e0 36#include <linux/sched.h>
1da177e4 37
4ce79717 38#include "nfs4_fs.h"
1da177e4 39#include "delegation.h"
91d5b470 40#include "iostat.h"
1da177e4 41
1da177e4
LT
42/* #define NFS_DEBUG_VERBOSE 1 */
43
44static int nfs_opendir(struct inode *, struct file *);
45static int nfs_readdir(struct file *, void *, filldir_t);
46static struct dentry *nfs_lookup(struct inode *, struct dentry *, struct nameidata *);
47static int nfs_create(struct inode *, struct dentry *, int, struct nameidata *);
48static int nfs_mkdir(struct inode *, struct dentry *, int);
49static int nfs_rmdir(struct inode *, struct dentry *);
50static int nfs_unlink(struct inode *, struct dentry *);
51static int nfs_symlink(struct inode *, struct dentry *, const char *);
52static int nfs_link(struct dentry *, struct inode *, struct dentry *);
53static int nfs_mknod(struct inode *, struct dentry *, int, dev_t);
54static int nfs_rename(struct inode *, struct dentry *,
55 struct inode *, struct dentry *);
56static int nfs_fsync_dir(struct file *, struct dentry *, int);
f0dd2136 57static loff_t nfs_llseek_dir(struct file *, loff_t, int);
1da177e4 58
4b6f5d20 59const struct file_operations nfs_dir_operations = {
f0dd2136 60 .llseek = nfs_llseek_dir,
1da177e4
LT
61 .read = generic_read_dir,
62 .readdir = nfs_readdir,
63 .open = nfs_opendir,
64 .release = nfs_release,
65 .fsync = nfs_fsync_dir,
66};
67
92e1d5be 68const struct inode_operations nfs_dir_inode_operations = {
1da177e4
LT
69 .create = nfs_create,
70 .lookup = nfs_lookup,
71 .link = nfs_link,
72 .unlink = nfs_unlink,
73 .symlink = nfs_symlink,
74 .mkdir = nfs_mkdir,
75 .rmdir = nfs_rmdir,
76 .mknod = nfs_mknod,
77 .rename = nfs_rename,
78 .permission = nfs_permission,
79 .getattr = nfs_getattr,
80 .setattr = nfs_setattr,
81};
82
b7fa0554 83#ifdef CONFIG_NFS_V3
92e1d5be 84const struct inode_operations nfs3_dir_inode_operations = {
b7fa0554
AG
85 .create = nfs_create,
86 .lookup = nfs_lookup,
87 .link = nfs_link,
88 .unlink = nfs_unlink,
89 .symlink = nfs_symlink,
90 .mkdir = nfs_mkdir,
91 .rmdir = nfs_rmdir,
92 .mknod = nfs_mknod,
93 .rename = nfs_rename,
94 .permission = nfs_permission,
95 .getattr = nfs_getattr,
96 .setattr = nfs_setattr,
97 .listxattr = nfs3_listxattr,
98 .getxattr = nfs3_getxattr,
99 .setxattr = nfs3_setxattr,
100 .removexattr = nfs3_removexattr,
101};
102#endif /* CONFIG_NFS_V3 */
103
1da177e4
LT
104#ifdef CONFIG_NFS_V4
105
106static struct dentry *nfs_atomic_lookup(struct inode *, struct dentry *, struct nameidata *);
92e1d5be 107const struct inode_operations nfs4_dir_inode_operations = {
1da177e4
LT
108 .create = nfs_create,
109 .lookup = nfs_atomic_lookup,
110 .link = nfs_link,
111 .unlink = nfs_unlink,
112 .symlink = nfs_symlink,
113 .mkdir = nfs_mkdir,
114 .rmdir = nfs_rmdir,
115 .mknod = nfs_mknod,
116 .rename = nfs_rename,
117 .permission = nfs_permission,
118 .getattr = nfs_getattr,
119 .setattr = nfs_setattr,
6b3b5496
BF
120 .getxattr = nfs4_getxattr,
121 .setxattr = nfs4_setxattr,
122 .listxattr = nfs4_listxattr,
1da177e4
LT
123};
124
125#endif /* CONFIG_NFS_V4 */
126
127/*
128 * Open file
129 */
130static int
131nfs_opendir(struct inode *inode, struct file *filp)
132{
7451c4f0 133 int res;
1da177e4 134
1e7cb3dc
CL
135 dfprintk(VFS, "NFS: opendir(%s/%ld)\n",
136 inode->i_sb->s_id, inode->i_ino);
137
1da177e4
LT
138 lock_kernel();
139 /* Call generic open code in order to cache credentials */
7451c4f0 140 res = nfs_open(inode, filp);
1da177e4
LT
141 unlock_kernel();
142 return res;
143}
144
0dbb4c67 145typedef __be32 * (*decode_dirent_t)(__be32 *, struct nfs_entry *, int);
1da177e4
LT
146typedef struct {
147 struct file *file;
148 struct page *page;
149 unsigned long page_index;
0dbb4c67 150 __be32 *ptr;
f0dd2136
TM
151 u64 *dir_cookie;
152 loff_t current_index;
1da177e4
LT
153 struct nfs_entry *entry;
154 decode_dirent_t decode;
155 int plus;
156 int error;
1f4eab7e
NB
157 unsigned long timestamp;
158 int timestamp_valid;
1da177e4
LT
159} nfs_readdir_descriptor_t;
160
161/* Now we cache directories properly, by stuffing the dirent
162 * data directly in the page cache.
163 *
164 * Inode invalidation due to refresh etc. takes care of
165 * _everything_, no sloppy entry flushing logic, no extraneous
166 * copying, network direct to page cache, the way it was meant
167 * to be.
168 *
169 * NOTE: Dirent information verification is done always by the
170 * page-in of the RPC reply, nowhere else, this simplies
171 * things substantially.
172 */
173static
174int nfs_readdir_filler(nfs_readdir_descriptor_t *desc, struct page *page)
175{
176 struct file *file = desc->file;
01cce933 177 struct inode *inode = file->f_path.dentry->d_inode;
1da177e4
LT
178 struct rpc_cred *cred = nfs_file_cred(file);
179 unsigned long timestamp;
180 int error;
181
1e7cb3dc
CL
182 dfprintk(DIRCACHE, "NFS: %s: reading cookie %Lu into page %lu\n",
183 __FUNCTION__, (long long)desc->entry->cookie,
184 page->index);
1da177e4
LT
185
186 again:
187 timestamp = jiffies;
01cce933 188 error = NFS_PROTO(inode)->readdir(file->f_path.dentry, cred, desc->entry->cookie, page,
1da177e4
LT
189 NFS_SERVER(inode)->dtsize, desc->plus);
190 if (error < 0) {
191 /* We requested READDIRPLUS, but the server doesn't grok it */
192 if (error == -ENOTSUPP && desc->plus) {
193 NFS_SERVER(inode)->caps &= ~NFS_CAP_READDIRPLUS;
412d582e 194 clear_bit(NFS_INO_ADVISE_RDPLUS, &NFS_FLAGS(inode));
1da177e4
LT
195 desc->plus = 0;
196 goto again;
197 }
198 goto error;
199 }
1f4eab7e
NB
200 desc->timestamp = timestamp;
201 desc->timestamp_valid = 1;
1da177e4 202 SetPageUptodate(page);
1da177e4
LT
203 /* Ensure consistent page alignment of the data.
204 * Note: assumes we have exclusive access to this mapping either
1b1dcc1b 205 * through inode->i_mutex or some other mechanism.
1da177e4 206 */
cd9ae2b6
TM
207 if (page->index == 0 && invalidate_inode_pages2_range(inode->i_mapping, PAGE_CACHE_SIZE, -1) < 0) {
208 /* Should never happen */
209 nfs_zap_mapping(inode, inode->i_mapping);
210 }
1da177e4
LT
211 unlock_page(page);
212 return 0;
213 error:
1da177e4 214 unlock_page(page);
1da177e4
LT
215 desc->error = error;
216 return -EIO;
217}
218
219static inline
220int dir_decode(nfs_readdir_descriptor_t *desc)
221{
0dbb4c67 222 __be32 *p = desc->ptr;
1da177e4
LT
223 p = desc->decode(p, desc->entry, desc->plus);
224 if (IS_ERR(p))
225 return PTR_ERR(p);
226 desc->ptr = p;
1f4eab7e
NB
227 if (desc->timestamp_valid)
228 desc->entry->fattr->time_start = desc->timestamp;
229 else
230 desc->entry->fattr->valid &= ~NFS_ATTR_FATTR;
1da177e4
LT
231 return 0;
232}
233
234static inline
235void dir_page_release(nfs_readdir_descriptor_t *desc)
236{
237 kunmap(desc->page);
238 page_cache_release(desc->page);
239 desc->page = NULL;
240 desc->ptr = NULL;
241}
242
243/*
244 * Given a pointer to a buffer that has already been filled by a call
f0dd2136 245 * to readdir, find the next entry with cookie '*desc->dir_cookie'.
1da177e4
LT
246 *
247 * If the end of the buffer has been reached, return -EAGAIN, if not,
248 * return the offset within the buffer of the next entry to be
249 * read.
250 */
251static inline
00a92642 252int find_dirent(nfs_readdir_descriptor_t *desc)
1da177e4
LT
253{
254 struct nfs_entry *entry = desc->entry;
255 int loop_count = 0,
256 status;
257
258 while((status = dir_decode(desc)) == 0) {
1e7cb3dc
CL
259 dfprintk(DIRCACHE, "NFS: %s: examining cookie %Lu\n",
260 __FUNCTION__, (unsigned long long)entry->cookie);
f0dd2136 261 if (entry->prev_cookie == *desc->dir_cookie)
1da177e4
LT
262 break;
263 if (loop_count++ > 200) {
264 loop_count = 0;
265 schedule();
266 }
267 }
1da177e4
LT
268 return status;
269}
270
271/*
00a92642 272 * Given a pointer to a buffer that has already been filled by a call
f0dd2136 273 * to readdir, find the entry at offset 'desc->file->f_pos'.
00a92642
OG
274 *
275 * If the end of the buffer has been reached, return -EAGAIN, if not,
276 * return the offset within the buffer of the next entry to be
277 * read.
278 */
279static inline
280int find_dirent_index(nfs_readdir_descriptor_t *desc)
281{
282 struct nfs_entry *entry = desc->entry;
283 int loop_count = 0,
284 status;
285
286 for(;;) {
287 status = dir_decode(desc);
288 if (status)
289 break;
290
1e7cb3dc
CL
291 dfprintk(DIRCACHE, "NFS: found cookie %Lu at index %Ld\n",
292 (unsigned long long)entry->cookie, desc->current_index);
00a92642 293
f0dd2136
TM
294 if (desc->file->f_pos == desc->current_index) {
295 *desc->dir_cookie = entry->cookie;
00a92642
OG
296 break;
297 }
298 desc->current_index++;
299 if (loop_count++ > 200) {
300 loop_count = 0;
301 schedule();
302 }
303 }
00a92642
OG
304 return status;
305}
306
307/*
308 * Find the given page, and call find_dirent() or find_dirent_index in
309 * order to try to return the next entry.
1da177e4
LT
310 */
311static inline
312int find_dirent_page(nfs_readdir_descriptor_t *desc)
313{
01cce933 314 struct inode *inode = desc->file->f_path.dentry->d_inode;
1da177e4
LT
315 struct page *page;
316 int status;
317
1e7cb3dc
CL
318 dfprintk(DIRCACHE, "NFS: %s: searching page %ld for target %Lu\n",
319 __FUNCTION__, desc->page_index,
320 (long long) *desc->dir_cookie);
1da177e4 321
1f4eab7e
NB
322 /* If we find the page in the page_cache, we cannot be sure
323 * how fresh the data is, so we will ignore readdir_plus attributes.
324 */
325 desc->timestamp_valid = 0;
1da177e4
LT
326 page = read_cache_page(inode->i_mapping, desc->page_index,
327 (filler_t *)nfs_readdir_filler, desc);
328 if (IS_ERR(page)) {
329 status = PTR_ERR(page);
330 goto out;
331 }
1da177e4
LT
332
333 /* NOTE: Someone else may have changed the READDIRPLUS flag */
334 desc->page = page;
335 desc->ptr = kmap(page); /* matching kunmap in nfs_do_filldir */
f0dd2136 336 if (*desc->dir_cookie != 0)
00a92642
OG
337 status = find_dirent(desc);
338 else
339 status = find_dirent_index(desc);
1da177e4
LT
340 if (status < 0)
341 dir_page_release(desc);
342 out:
1e7cb3dc 343 dfprintk(DIRCACHE, "NFS: %s: returns %d\n", __FUNCTION__, status);
1da177e4 344 return status;
1da177e4
LT
345}
346
347/*
348 * Recurse through the page cache pages, and return a
349 * filled nfs_entry structure of the next directory entry if possible.
350 *
f0dd2136
TM
351 * The target for the search is '*desc->dir_cookie' if non-0,
352 * 'desc->file->f_pos' otherwise
1da177e4
LT
353 */
354static inline
355int readdir_search_pagecache(nfs_readdir_descriptor_t *desc)
356{
357 int loop_count = 0;
358 int res;
359
00a92642 360 /* Always search-by-index from the beginning of the cache */
f0dd2136 361 if (*desc->dir_cookie == 0) {
1e7cb3dc
CL
362 dfprintk(DIRCACHE, "NFS: readdir_search_pagecache() searching for offset %Ld\n",
363 (long long)desc->file->f_pos);
00a92642
OG
364 desc->page_index = 0;
365 desc->entry->cookie = desc->entry->prev_cookie = 0;
366 desc->entry->eof = 0;
367 desc->current_index = 0;
f0dd2136 368 } else
1e7cb3dc
CL
369 dfprintk(DIRCACHE, "NFS: readdir_search_pagecache() searching for cookie %Lu\n",
370 (unsigned long long)*desc->dir_cookie);
00a92642 371
1da177e4
LT
372 for (;;) {
373 res = find_dirent_page(desc);
374 if (res != -EAGAIN)
375 break;
376 /* Align to beginning of next page */
377 desc->page_index ++;
378 if (loop_count++ > 200) {
379 loop_count = 0;
380 schedule();
381 }
382 }
1e7cb3dc
CL
383
384 dfprintk(DIRCACHE, "NFS: %s: returns %d\n", __FUNCTION__, res);
1da177e4
LT
385 return res;
386}
387
388static inline unsigned int dt_type(struct inode *inode)
389{
390 return (inode->i_mode >> 12) & 15;
391}
392
393static struct dentry *nfs_readdir_lookup(nfs_readdir_descriptor_t *desc);
394
395/*
396 * Once we've found the start of the dirent within a page: fill 'er up...
397 */
398static
399int nfs_do_filldir(nfs_readdir_descriptor_t *desc, void *dirent,
400 filldir_t filldir)
401{
402 struct file *file = desc->file;
403 struct nfs_entry *entry = desc->entry;
404 struct dentry *dentry = NULL;
4e769b93 405 u64 fileid;
1da177e4
LT
406 int loop_count = 0,
407 res;
408
1e7cb3dc
CL
409 dfprintk(DIRCACHE, "NFS: nfs_do_filldir() filling starting @ cookie %Lu\n",
410 (unsigned long long)entry->cookie);
1da177e4
LT
411
412 for(;;) {
413 unsigned d_type = DT_UNKNOWN;
414 /* Note: entry->prev_cookie contains the cookie for
415 * retrieving the current dirent on the server */
4e769b93 416 fileid = entry->ino;
1da177e4
LT
417
418 /* Get a dentry if we have one */
419 if (dentry != NULL)
420 dput(dentry);
421 dentry = nfs_readdir_lookup(desc);
422
423 /* Use readdirplus info */
424 if (dentry != NULL && dentry->d_inode != NULL) {
425 d_type = dt_type(dentry->d_inode);
4e769b93 426 fileid = NFS_FILEID(dentry->d_inode);
1da177e4
LT
427 }
428
429 res = filldir(dirent, entry->name, entry->len,
00a92642 430 file->f_pos, fileid, d_type);
1da177e4
LT
431 if (res < 0)
432 break;
00a92642 433 file->f_pos++;
f0dd2136 434 *desc->dir_cookie = entry->cookie;
1da177e4
LT
435 if (dir_decode(desc) != 0) {
436 desc->page_index ++;
437 break;
438 }
439 if (loop_count++ > 200) {
440 loop_count = 0;
441 schedule();
442 }
443 }
444 dir_page_release(desc);
445 if (dentry != NULL)
446 dput(dentry);
1e7cb3dc
CL
447 dfprintk(DIRCACHE, "NFS: nfs_do_filldir() filling ended @ cookie %Lu; returning = %d\n",
448 (unsigned long long)*desc->dir_cookie, res);
1da177e4
LT
449 return res;
450}
451
452/*
453 * If we cannot find a cookie in our cache, we suspect that this is
454 * because it points to a deleted file, so we ask the server to return
455 * whatever it thinks is the next entry. We then feed this to filldir.
456 * If all goes well, we should then be able to find our way round the
457 * cache on the next call to readdir_search_pagecache();
458 *
459 * NOTE: we cannot add the anonymous page to the pagecache because
460 * the data it contains might not be page aligned. Besides,
461 * we should already have a complete representation of the
462 * directory in the page cache by the time we get here.
463 */
464static inline
465int uncached_readdir(nfs_readdir_descriptor_t *desc, void *dirent,
466 filldir_t filldir)
467{
468 struct file *file = desc->file;
01cce933 469 struct inode *inode = file->f_path.dentry->d_inode;
1da177e4
LT
470 struct rpc_cred *cred = nfs_file_cred(file);
471 struct page *page = NULL;
472 int status;
1f4eab7e 473 unsigned long timestamp;
1da177e4 474
1e7cb3dc
CL
475 dfprintk(DIRCACHE, "NFS: uncached_readdir() searching for cookie %Lu\n",
476 (unsigned long long)*desc->dir_cookie);
1da177e4
LT
477
478 page = alloc_page(GFP_HIGHUSER);
479 if (!page) {
480 status = -ENOMEM;
481 goto out;
482 }
1f4eab7e 483 timestamp = jiffies;
01cce933 484 desc->error = NFS_PROTO(inode)->readdir(file->f_path.dentry, cred, *desc->dir_cookie,
1da177e4
LT
485 page,
486 NFS_SERVER(inode)->dtsize,
487 desc->plus);
1da177e4
LT
488 desc->page = page;
489 desc->ptr = kmap(page); /* matching kunmap in nfs_do_filldir */
490 if (desc->error >= 0) {
1f4eab7e
NB
491 desc->timestamp = timestamp;
492 desc->timestamp_valid = 1;
1da177e4 493 if ((status = dir_decode(desc)) == 0)
f0dd2136 494 desc->entry->prev_cookie = *desc->dir_cookie;
1da177e4
LT
495 } else
496 status = -EIO;
497 if (status < 0)
498 goto out_release;
499
500 status = nfs_do_filldir(desc, dirent, filldir);
501
502 /* Reset read descriptor so it searches the page cache from
503 * the start upon the next call to readdir_search_pagecache() */
504 desc->page_index = 0;
505 desc->entry->cookie = desc->entry->prev_cookie = 0;
506 desc->entry->eof = 0;
507 out:
1e7cb3dc
CL
508 dfprintk(DIRCACHE, "NFS: %s: returns %d\n",
509 __FUNCTION__, status);
1da177e4
LT
510 return status;
511 out_release:
512 dir_page_release(desc);
513 goto out;
514}
515
00a92642
OG
516/* The file offset position represents the dirent entry number. A
517 last cookie cache takes care of the common case of reading the
518 whole directory.
1da177e4
LT
519 */
520static int nfs_readdir(struct file *filp, void *dirent, filldir_t filldir)
521{
01cce933 522 struct dentry *dentry = filp->f_path.dentry;
1da177e4
LT
523 struct inode *inode = dentry->d_inode;
524 nfs_readdir_descriptor_t my_desc,
525 *desc = &my_desc;
526 struct nfs_entry my_entry;
527 struct nfs_fh fh;
528 struct nfs_fattr fattr;
529 long res;
530
1e7cb3dc
CL
531 dfprintk(VFS, "NFS: readdir(%s/%s) starting at cookie %Lu\n",
532 dentry->d_parent->d_name.name, dentry->d_name.name,
533 (long long)filp->f_pos);
91d5b470
CL
534 nfs_inc_stats(inode, NFSIOS_VFSGETDENTS);
535
1da177e4
LT
536 lock_kernel();
537
717d44e8 538 res = nfs_revalidate_mapping_nolock(inode, filp->f_mapping);
1da177e4
LT
539 if (res < 0) {
540 unlock_kernel();
541 return res;
542 }
543
544 /*
00a92642 545 * filp->f_pos points to the dirent entry number.
f0dd2136 546 * *desc->dir_cookie has the cookie for the next entry. We have
00a92642
OG
547 * to either find the entry with the appropriate number or
548 * revalidate the cookie.
1da177e4
LT
549 */
550 memset(desc, 0, sizeof(*desc));
551
552 desc->file = filp;
cd3758e3 553 desc->dir_cookie = &nfs_file_open_context(filp)->dir_cookie;
1da177e4
LT
554 desc->decode = NFS_PROTO(inode)->decode_dirent;
555 desc->plus = NFS_USE_READDIRPLUS(inode);
556
557 my_entry.cookie = my_entry.prev_cookie = 0;
558 my_entry.eof = 0;
559 my_entry.fh = &fh;
560 my_entry.fattr = &fattr;
0e574af1 561 nfs_fattr_init(&fattr);
1da177e4
LT
562 desc->entry = &my_entry;
563
564 while(!desc->entry->eof) {
565 res = readdir_search_pagecache(desc);
00a92642 566
1da177e4
LT
567 if (res == -EBADCOOKIE) {
568 /* This means either end of directory */
f0dd2136 569 if (*desc->dir_cookie && desc->entry->cookie != *desc->dir_cookie) {
1da177e4
LT
570 /* Or that the server has 'lost' a cookie */
571 res = uncached_readdir(desc, dirent, filldir);
572 if (res >= 0)
573 continue;
574 }
575 res = 0;
576 break;
577 }
578 if (res == -ETOOSMALL && desc->plus) {
412d582e 579 clear_bit(NFS_INO_ADVISE_RDPLUS, &NFS_FLAGS(inode));
1da177e4
LT
580 nfs_zap_caches(inode);
581 desc->plus = 0;
582 desc->entry->eof = 0;
583 continue;
584 }
585 if (res < 0)
586 break;
587
588 res = nfs_do_filldir(desc, dirent, filldir);
589 if (res < 0) {
590 res = 0;
591 break;
592 }
593 }
594 unlock_kernel();
1e7cb3dc
CL
595 if (res > 0)
596 res = 0;
597 dfprintk(VFS, "NFS: readdir(%s/%s) returns %ld\n",
598 dentry->d_parent->d_name.name, dentry->d_name.name,
599 res);
600 return res;
1da177e4
LT
601}
602
10afec90 603static loff_t nfs_llseek_dir(struct file *filp, loff_t offset, int origin)
f0dd2136 604{
01cce933 605 mutex_lock(&filp->f_path.dentry->d_inode->i_mutex);
f0dd2136
TM
606 switch (origin) {
607 case 1:
608 offset += filp->f_pos;
609 case 0:
610 if (offset >= 0)
611 break;
612 default:
613 offset = -EINVAL;
614 goto out;
615 }
616 if (offset != filp->f_pos) {
617 filp->f_pos = offset;
cd3758e3 618 nfs_file_open_context(filp)->dir_cookie = 0;
f0dd2136
TM
619 }
620out:
01cce933 621 mutex_unlock(&filp->f_path.dentry->d_inode->i_mutex);
f0dd2136
TM
622 return offset;
623}
624
1da177e4
LT
625/*
626 * All directory operations under NFS are synchronous, so fsync()
627 * is a dummy operation.
628 */
10afec90 629static int nfs_fsync_dir(struct file *filp, struct dentry *dentry, int datasync)
1da177e4 630{
1e7cb3dc
CL
631 dfprintk(VFS, "NFS: fsync_dir(%s/%s) datasync %d\n",
632 dentry->d_parent->d_name.name, dentry->d_name.name,
633 datasync);
634
1da177e4
LT
635 return 0;
636}
637
638/*
639 * A check for whether or not the parent directory has changed.
640 * In the case it has, we assume that the dentries are untrustworthy
641 * and may need to be looked up again.
642 */
c79ba787 643static int nfs_check_verifier(struct inode *dir, struct dentry *dentry)
1da177e4
LT
644{
645 if (IS_ROOT(dentry))
646 return 1;
f2c77f4e
TM
647 if (!nfs_verify_change_attribute(dir, dentry->d_time))
648 return 0;
649 /* Revalidate nfsi->cache_change_attribute before we declare a match */
650 if (nfs_revalidate_inode(NFS_SERVER(dir), dir) < 0)
651 return 0;
652 if (!nfs_verify_change_attribute(dir, dentry->d_time))
653 return 0;
654 return 1;
1da177e4
LT
655}
656
1d6757fb
TM
657/*
658 * Return the intent data that applies to this particular path component
659 *
660 * Note that the current set of intents only apply to the very last
661 * component of the path.
662 * We check for this using LOOKUP_CONTINUE and LOOKUP_PARENT.
663 */
664static inline unsigned int nfs_lookup_check_intent(struct nameidata *nd, unsigned int mask)
665{
666 if (nd->flags & (LOOKUP_CONTINUE|LOOKUP_PARENT))
667 return 0;
668 return nd->flags & mask;
669}
670
671/*
672 * Inode and filehandle revalidation for lookups.
673 *
674 * We force revalidation in the cases where the VFS sets LOOKUP_REVAL,
675 * or if the intent information indicates that we're about to open this
676 * particular file and the "nocto" mount flag is not set.
677 *
678 */
1da177e4
LT
679static inline
680int nfs_lookup_verify_inode(struct inode *inode, struct nameidata *nd)
681{
682 struct nfs_server *server = NFS_SERVER(inode);
683
684 if (nd != NULL) {
1da177e4 685 /* VFS wants an on-the-wire revalidation */
1d6757fb 686 if (nd->flags & LOOKUP_REVAL)
1da177e4
LT
687 goto out_force;
688 /* This is an open(2) */
1d6757fb 689 if (nfs_lookup_check_intent(nd, LOOKUP_OPEN) != 0 &&
4e0641a7
TM
690 !(server->flags & NFS_MOUNT_NOCTO) &&
691 (S_ISREG(inode->i_mode) ||
692 S_ISDIR(inode->i_mode)))
1da177e4
LT
693 goto out_force;
694 }
695 return nfs_revalidate_inode(server, inode);
696out_force:
697 return __nfs_revalidate_inode(server, inode);
698}
699
700/*
701 * We judge how long we want to trust negative
702 * dentries by looking at the parent inode mtime.
703 *
704 * If parent mtime has changed, we revalidate, else we wait for a
705 * period corresponding to the parent's attribute cache timeout value.
706 */
707static inline
708int nfs_neg_need_reval(struct inode *dir, struct dentry *dentry,
709 struct nameidata *nd)
710{
1da177e4 711 /* Don't revalidate a negative dentry if we're creating a new file */
1d6757fb 712 if (nd != NULL && nfs_lookup_check_intent(nd, LOOKUP_CREATE) != 0)
1da177e4
LT
713 return 0;
714 return !nfs_check_verifier(dir, dentry);
715}
716
717/*
718 * This is called every time the dcache has a lookup hit,
719 * and we should check whether we can really trust that
720 * lookup.
721 *
722 * NOTE! The hit can be a negative hit too, don't assume
723 * we have an inode!
724 *
725 * If the parent directory is seen to have changed, we throw out the
726 * cached dentry and do a new lookup.
727 */
728static int nfs_lookup_revalidate(struct dentry * dentry, struct nameidata *nd)
729{
730 struct inode *dir;
731 struct inode *inode;
732 struct dentry *parent;
733 int error;
734 struct nfs_fh fhandle;
735 struct nfs_fattr fattr;
1da177e4
LT
736
737 parent = dget_parent(dentry);
738 lock_kernel();
739 dir = parent->d_inode;
91d5b470 740 nfs_inc_stats(dir, NFSIOS_DENTRYREVALIDATE);
1da177e4
LT
741 inode = dentry->d_inode;
742
743 if (!inode) {
744 if (nfs_neg_need_reval(dir, dentry, nd))
745 goto out_bad;
746 goto out_valid;
747 }
748
749 if (is_bad_inode(inode)) {
1e7cb3dc
CL
750 dfprintk(LOOKUPCACHE, "%s: %s/%s has dud inode\n",
751 __FUNCTION__, dentry->d_parent->d_name.name,
752 dentry->d_name.name);
1da177e4
LT
753 goto out_bad;
754 }
755
1da177e4
LT
756 /* Force a full look up iff the parent directory has changed */
757 if (nfs_check_verifier(dir, dentry)) {
758 if (nfs_lookup_verify_inode(inode, nd))
759 goto out_zap_parent;
760 goto out_valid;
761 }
762
763 if (NFS_STALE(inode))
764 goto out_bad;
765
1da177e4
LT
766 error = NFS_PROTO(dir)->lookup(dir, &dentry->d_name, &fhandle, &fattr);
767 if (error)
768 goto out_bad;
769 if (nfs_compare_fh(NFS_FH(inode), &fhandle))
770 goto out_bad;
771 if ((error = nfs_refresh_inode(inode, &fattr)) != 0)
772 goto out_bad;
773
cf8ba45e 774 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
1da177e4
LT
775 out_valid:
776 unlock_kernel();
777 dput(parent);
1e7cb3dc
CL
778 dfprintk(LOOKUPCACHE, "NFS: %s(%s/%s) is valid\n",
779 __FUNCTION__, dentry->d_parent->d_name.name,
780 dentry->d_name.name);
1da177e4
LT
781 return 1;
782out_zap_parent:
783 nfs_zap_caches(dir);
784 out_bad:
a1643a92 785 nfs_mark_for_revalidate(dir);
1da177e4
LT
786 if (inode && S_ISDIR(inode->i_mode)) {
787 /* Purge readdir caches. */
788 nfs_zap_caches(inode);
789 /* If we have submounts, don't unhash ! */
790 if (have_submounts(dentry))
791 goto out_valid;
792 shrink_dcache_parent(dentry);
793 }
794 d_drop(dentry);
795 unlock_kernel();
796 dput(parent);
1e7cb3dc
CL
797 dfprintk(LOOKUPCACHE, "NFS: %s(%s/%s) is invalid\n",
798 __FUNCTION__, dentry->d_parent->d_name.name,
799 dentry->d_name.name);
1da177e4
LT
800 return 0;
801}
802
803/*
804 * This is called from dput() when d_count is going to 0.
805 */
806static int nfs_dentry_delete(struct dentry *dentry)
807{
808 dfprintk(VFS, "NFS: dentry_delete(%s/%s, %x)\n",
809 dentry->d_parent->d_name.name, dentry->d_name.name,
810 dentry->d_flags);
811
812 if (dentry->d_flags & DCACHE_NFSFS_RENAMED) {
813 /* Unhash it, so that ->d_iput() would be called */
814 return 1;
815 }
816 if (!(dentry->d_sb->s_flags & MS_ACTIVE)) {
817 /* Unhash it, so that ancestors of killed async unlink
818 * files will be cleaned up during umount */
819 return 1;
820 }
821 return 0;
822
823}
824
825/*
826 * Called when the dentry loses inode.
827 * We use it to clean up silly-renamed files.
828 */
829static void nfs_dentry_iput(struct dentry *dentry, struct inode *inode)
830{
cae7a073 831 nfs_inode_return_delegation(inode);
83672d39
NB
832 if (S_ISDIR(inode->i_mode))
833 /* drop any readdir cache as it could easily be old */
834 NFS_I(inode)->cache_validity |= NFS_INO_INVALID_DATA;
835
1da177e4
LT
836 if (dentry->d_flags & DCACHE_NFSFS_RENAMED) {
837 lock_kernel();
9a53c3a7 838 drop_nlink(inode);
e4eff1a6 839 nfs_complete_unlink(dentry, inode);
1da177e4
LT
840 unlock_kernel();
841 }
1da177e4
LT
842 iput(inode);
843}
844
845struct dentry_operations nfs_dentry_operations = {
846 .d_revalidate = nfs_lookup_revalidate,
847 .d_delete = nfs_dentry_delete,
848 .d_iput = nfs_dentry_iput,
849};
850
1d6757fb
TM
851/*
852 * Use intent information to check whether or not we're going to do
853 * an O_EXCL create using this path component.
854 */
1da177e4
LT
855static inline
856int nfs_is_exclusive_create(struct inode *dir, struct nameidata *nd)
857{
858 if (NFS_PROTO(dir)->version == 2)
859 return 0;
1d6757fb 860 if (nd == NULL || nfs_lookup_check_intent(nd, LOOKUP_CREATE) == 0)
1da177e4
LT
861 return 0;
862 return (nd->intent.open.flags & O_EXCL) != 0;
863}
864
865static struct dentry *nfs_lookup(struct inode *dir, struct dentry * dentry, struct nameidata *nd)
866{
867 struct dentry *res;
868 struct inode *inode = NULL;
869 int error;
870 struct nfs_fh fhandle;
871 struct nfs_fattr fattr;
872
873 dfprintk(VFS, "NFS: lookup(%s/%s)\n",
874 dentry->d_parent->d_name.name, dentry->d_name.name);
91d5b470 875 nfs_inc_stats(dir, NFSIOS_VFSLOOKUP);
1da177e4
LT
876
877 res = ERR_PTR(-ENAMETOOLONG);
878 if (dentry->d_name.len > NFS_SERVER(dir)->namelen)
879 goto out;
880
881 res = ERR_PTR(-ENOMEM);
882 dentry->d_op = NFS_PROTO(dir)->dentry_ops;
883
884 lock_kernel();
1da177e4 885
fd684071
TM
886 /*
887 * If we're doing an exclusive create, optimize away the lookup
888 * but don't hash the dentry.
889 */
890 if (nfs_is_exclusive_create(dir, nd)) {
891 d_instantiate(dentry, NULL);
892 res = NULL;
893 goto out_unlock;
894 }
1da177e4
LT
895
896 error = NFS_PROTO(dir)->lookup(dir, &dentry->d_name, &fhandle, &fattr);
897 if (error == -ENOENT)
898 goto no_entry;
899 if (error < 0) {
900 res = ERR_PTR(error);
901 goto out_unlock;
902 }
1da177e4 903 inode = nfs_fhget(dentry->d_sb, &fhandle, &fattr);
03f28e3a
TM
904 res = (struct dentry *)inode;
905 if (IS_ERR(res))
1da177e4 906 goto out_unlock;
54ceac45 907
1da177e4 908no_entry:
54ceac45 909 res = d_materialise_unique(dentry, inode);
9eaef27b
TM
910 if (res != NULL) {
911 if (IS_ERR(res))
912 goto out_unlock;
1da177e4 913 dentry = res;
9eaef27b 914 }
1da177e4
LT
915 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
916out_unlock:
917 unlock_kernel();
918out:
919 return res;
920}
921
922#ifdef CONFIG_NFS_V4
923static int nfs_open_revalidate(struct dentry *, struct nameidata *);
924
925struct dentry_operations nfs4_dentry_operations = {
926 .d_revalidate = nfs_open_revalidate,
927 .d_delete = nfs_dentry_delete,
928 .d_iput = nfs_dentry_iput,
929};
930
1d6757fb
TM
931/*
932 * Use intent information to determine whether we need to substitute
933 * the NFSv4-style stateful OPEN for the LOOKUP call
934 */
1da177e4
LT
935static int is_atomic_open(struct inode *dir, struct nameidata *nd)
936{
1d6757fb 937 if (nd == NULL || nfs_lookup_check_intent(nd, LOOKUP_OPEN) == 0)
1da177e4
LT
938 return 0;
939 /* NFS does not (yet) have a stateful open for directories */
940 if (nd->flags & LOOKUP_DIRECTORY)
941 return 0;
942 /* Are we trying to write to a read only partition? */
943 if (IS_RDONLY(dir) && (nd->intent.open.flags & (O_CREAT|O_TRUNC|FMODE_WRITE)))
944 return 0;
945 return 1;
946}
947
948static struct dentry *nfs_atomic_lookup(struct inode *dir, struct dentry *dentry, struct nameidata *nd)
949{
950 struct dentry *res = NULL;
1da177e4
LT
951 int error;
952
1e7cb3dc
CL
953 dfprintk(VFS, "NFS: atomic_lookup(%s/%ld), %s\n",
954 dir->i_sb->s_id, dir->i_ino, dentry->d_name.name);
955
1da177e4
LT
956 /* Check that we are indeed trying to open this file */
957 if (!is_atomic_open(dir, nd))
958 goto no_open;
959
960 if (dentry->d_name.len > NFS_SERVER(dir)->namelen) {
961 res = ERR_PTR(-ENAMETOOLONG);
962 goto out;
963 }
964 dentry->d_op = NFS_PROTO(dir)->dentry_ops;
965
d4d9cdcb
TM
966 /* Let vfs_create() deal with O_EXCL. Instantiate, but don't hash
967 * the dentry. */
02a913a7 968 if (nd->intent.open.flags & O_EXCL) {
d4d9cdcb 969 d_instantiate(dentry, NULL);
02a913a7
TM
970 goto out;
971 }
1da177e4
LT
972
973 /* Open the file on the server */
974 lock_kernel();
60ccd4ec 975 res = nfs4_atomic_open(dir, dentry, nd);
1da177e4 976 unlock_kernel();
02a913a7
TM
977 if (IS_ERR(res)) {
978 error = PTR_ERR(res);
1da177e4
LT
979 switch (error) {
980 /* Make a negative dentry */
981 case -ENOENT:
02a913a7
TM
982 res = NULL;
983 goto out;
1da177e4 984 /* This turned out not to be a regular file */
6f926b5b
TM
985 case -EISDIR:
986 case -ENOTDIR:
987 goto no_open;
1da177e4
LT
988 case -ELOOP:
989 if (!(nd->intent.open.flags & O_NOFOLLOW))
990 goto no_open;
1da177e4
LT
991 /* case -EINVAL: */
992 default:
1da177e4
LT
993 goto out;
994 }
02a913a7 995 } else if (res != NULL)
1da177e4 996 dentry = res;
1da177e4
LT
997out:
998 return res;
999no_open:
1000 return nfs_lookup(dir, dentry, nd);
1001}
1002
1003static int nfs_open_revalidate(struct dentry *dentry, struct nameidata *nd)
1004{
1005 struct dentry *parent = NULL;
1006 struct inode *inode = dentry->d_inode;
1007 struct inode *dir;
1da177e4
LT
1008 int openflags, ret = 0;
1009
1010 parent = dget_parent(dentry);
1011 dir = parent->d_inode;
1012 if (!is_atomic_open(dir, nd))
1013 goto no_open;
1014 /* We can't create new files in nfs_open_revalidate(), so we
1015 * optimize away revalidation of negative dentries.
1016 */
216d5d06
TM
1017 if (inode == NULL) {
1018 if (!nfs_neg_need_reval(dir, dentry, nd))
1019 ret = 1;
1da177e4 1020 goto out;
216d5d06
TM
1021 }
1022
1da177e4
LT
1023 /* NFS only supports OPEN on regular files */
1024 if (!S_ISREG(inode->i_mode))
1025 goto no_open;
1026 openflags = nd->intent.open.flags;
1027 /* We cannot do exclusive creation on a positive dentry */
1028 if ((openflags & (O_CREAT|O_EXCL)) == (O_CREAT|O_EXCL))
1029 goto no_open;
1030 /* We can't create new files, or truncate existing ones here */
1031 openflags &= ~(O_CREAT|O_TRUNC);
1032
1033 /*
1b1dcc1b 1034 * Note: we're not holding inode->i_mutex and so may be racing with
1da177e4
LT
1035 * operations that change the directory. We therefore save the
1036 * change attribute *before* we do the RPC call.
1037 */
1038 lock_kernel();
02a913a7 1039 ret = nfs4_open_revalidate(dir, dentry, openflags, nd);
1da177e4
LT
1040 unlock_kernel();
1041out:
1042 dput(parent);
1043 if (!ret)
1044 d_drop(dentry);
1045 return ret;
1046no_open:
1047 dput(parent);
1048 if (inode != NULL && nfs_have_delegation(inode, FMODE_READ))
1049 return 1;
1050 return nfs_lookup_revalidate(dentry, nd);
1051}
1052#endif /* CONFIG_NFSV4 */
1053
1054static struct dentry *nfs_readdir_lookup(nfs_readdir_descriptor_t *desc)
1055{
01cce933 1056 struct dentry *parent = desc->file->f_path.dentry;
1da177e4
LT
1057 struct inode *dir = parent->d_inode;
1058 struct nfs_entry *entry = desc->entry;
1059 struct dentry *dentry, *alias;
1060 struct qstr name = {
1061 .name = entry->name,
1062 .len = entry->len,
1063 };
1064 struct inode *inode;
57fa76f2 1065 unsigned long verf = nfs_save_change_attribute(dir);
1da177e4
LT
1066
1067 switch (name.len) {
1068 case 2:
1069 if (name.name[0] == '.' && name.name[1] == '.')
1070 return dget_parent(parent);
1071 break;
1072 case 1:
1073 if (name.name[0] == '.')
1074 return dget(parent);
1075 }
57fa76f2
TM
1076
1077 spin_lock(&dir->i_lock);
1078 if (NFS_I(dir)->cache_validity & NFS_INO_INVALID_DATA) {
1079 spin_unlock(&dir->i_lock);
1080 return NULL;
1081 }
1082 spin_unlock(&dir->i_lock);
1083
1da177e4
LT
1084 name.hash = full_name_hash(name.name, name.len);
1085 dentry = d_lookup(parent, &name);
df1d5d23 1086 if (dentry != NULL) {
ef75c797
TM
1087 /* Is this a positive dentry that matches the readdir info? */
1088 if (dentry->d_inode != NULL &&
1089 (NFS_FILEID(dentry->d_inode) == entry->ino ||
1090 d_mountpoint(dentry))) {
1091 if (!desc->plus || entry->fh->size == 0)
1092 return dentry;
1093 if (nfs_compare_fh(NFS_FH(dentry->d_inode),
1094 entry->fh) == 0)
1095 goto out_renew;
1096 }
df1d5d23
TM
1097 /* No, so d_drop to allow one to be created */
1098 d_drop(dentry);
1099 dput(dentry);
1100 }
1da177e4
LT
1101 if (!desc->plus || !(entry->fattr->valid & NFS_ATTR_FATTR))
1102 return NULL;
54af3bb5
TM
1103 if (name.len > NFS_SERVER(dir)->namelen)
1104 return NULL;
1b1dcc1b 1105 /* Note: caller is already holding the dir->i_mutex! */
1da177e4
LT
1106 dentry = d_alloc(parent, &name);
1107 if (dentry == NULL)
1108 return NULL;
1109 dentry->d_op = NFS_PROTO(dir)->dentry_ops;
1110 inode = nfs_fhget(dentry->d_sb, entry->fh, entry->fattr);
03f28e3a 1111 if (IS_ERR(inode)) {
1da177e4
LT
1112 dput(dentry);
1113 return NULL;
1114 }
54ceac45
DH
1115
1116 alias = d_materialise_unique(dentry, inode);
1da177e4
LT
1117 if (alias != NULL) {
1118 dput(dentry);
9eaef27b
TM
1119 if (IS_ERR(alias))
1120 return NULL;
1da177e4
LT
1121 dentry = alias;
1122 }
54ceac45 1123
c79ba787 1124out_renew:
57fa76f2 1125 nfs_set_verifier(dentry, verf);
c79ba787 1126 return dentry;
1da177e4
LT
1127}
1128
1129/*
1130 * Code common to create, mkdir, and mknod.
1131 */
1132int nfs_instantiate(struct dentry *dentry, struct nfs_fh *fhandle,
1133 struct nfs_fattr *fattr)
1134{
fab728e1
TM
1135 struct dentry *parent = dget_parent(dentry);
1136 struct inode *dir = parent->d_inode;
1da177e4
LT
1137 struct inode *inode;
1138 int error = -EACCES;
1139
fab728e1
TM
1140 d_drop(dentry);
1141
1da177e4
LT
1142 /* We may have been initialized further down */
1143 if (dentry->d_inode)
fab728e1 1144 goto out;
1da177e4 1145 if (fhandle->size == 0) {
1da177e4
LT
1146 error = NFS_PROTO(dir)->lookup(dir, &dentry->d_name, fhandle, fattr);
1147 if (error)
fab728e1 1148 goto out_error;
1da177e4 1149 }
5724ab37 1150 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
1da177e4
LT
1151 if (!(fattr->valid & NFS_ATTR_FATTR)) {
1152 struct nfs_server *server = NFS_SB(dentry->d_sb);
8fa5c000 1153 error = server->nfs_client->rpc_ops->getattr(server, fhandle, fattr);
1da177e4 1154 if (error < 0)
fab728e1 1155 goto out_error;
1da177e4 1156 }
1da177e4 1157 inode = nfs_fhget(dentry->d_sb, fhandle, fattr);
03f28e3a
TM
1158 error = PTR_ERR(inode);
1159 if (IS_ERR(inode))
fab728e1
TM
1160 goto out_error;
1161 d_add(dentry, inode);
1162out:
1163 dput(parent);
1da177e4 1164 return 0;
fab728e1
TM
1165out_error:
1166 nfs_mark_for_revalidate(dir);
1167 dput(parent);
1168 return error;
1da177e4
LT
1169}
1170
1171/*
1172 * Following a failed create operation, we drop the dentry rather
1173 * than retain a negative dentry. This avoids a problem in the event
1174 * that the operation succeeded on the server, but an error in the
1175 * reply path made it appear to have failed.
1176 */
1177static int nfs_create(struct inode *dir, struct dentry *dentry, int mode,
1178 struct nameidata *nd)
1179{
1180 struct iattr attr;
1181 int error;
1182 int open_flags = 0;
1183
1e7cb3dc
CL
1184 dfprintk(VFS, "NFS: create(%s/%ld), %s\n",
1185 dir->i_sb->s_id, dir->i_ino, dentry->d_name.name);
1da177e4
LT
1186
1187 attr.ia_mode = mode;
1188 attr.ia_valid = ATTR_MODE;
1189
ad389da7 1190 if ((nd->flags & LOOKUP_CREATE) != 0)
1da177e4
LT
1191 open_flags = nd->intent.open.flags;
1192
1193 lock_kernel();
02a913a7 1194 error = NFS_PROTO(dir)->create(dir, dentry, &attr, open_flags, nd);
1da177e4
LT
1195 if (error != 0)
1196 goto out_err;
1da177e4
LT
1197 unlock_kernel();
1198 return 0;
1199out_err:
1200 unlock_kernel();
1201 d_drop(dentry);
1202 return error;
1203}
1204
1205/*
1206 * See comments for nfs_proc_create regarding failed operations.
1207 */
1208static int
1209nfs_mknod(struct inode *dir, struct dentry *dentry, int mode, dev_t rdev)
1210{
1211 struct iattr attr;
1212 int status;
1213
1e7cb3dc
CL
1214 dfprintk(VFS, "NFS: mknod(%s/%ld), %s\n",
1215 dir->i_sb->s_id, dir->i_ino, dentry->d_name.name);
1da177e4
LT
1216
1217 if (!new_valid_dev(rdev))
1218 return -EINVAL;
1219
1220 attr.ia_mode = mode;
1221 attr.ia_valid = ATTR_MODE;
1222
1223 lock_kernel();
1da177e4 1224 status = NFS_PROTO(dir)->mknod(dir, dentry, &attr, rdev);
1da177e4
LT
1225 if (status != 0)
1226 goto out_err;
1da177e4
LT
1227 unlock_kernel();
1228 return 0;
1229out_err:
1230 unlock_kernel();
1231 d_drop(dentry);
1232 return status;
1233}
1234
1235/*
1236 * See comments for nfs_proc_create regarding failed operations.
1237 */
1238static int nfs_mkdir(struct inode *dir, struct dentry *dentry, int mode)
1239{
1240 struct iattr attr;
1241 int error;
1242
1e7cb3dc
CL
1243 dfprintk(VFS, "NFS: mkdir(%s/%ld), %s\n",
1244 dir->i_sb->s_id, dir->i_ino, dentry->d_name.name);
1da177e4
LT
1245
1246 attr.ia_valid = ATTR_MODE;
1247 attr.ia_mode = mode | S_IFDIR;
1248
1249 lock_kernel();
1da177e4 1250 error = NFS_PROTO(dir)->mkdir(dir, dentry, &attr);
1da177e4
LT
1251 if (error != 0)
1252 goto out_err;
1da177e4
LT
1253 unlock_kernel();
1254 return 0;
1255out_err:
1256 d_drop(dentry);
1257 unlock_kernel();
1258 return error;
1259}
1260
1261static int nfs_rmdir(struct inode *dir, struct dentry *dentry)
1262{
1263 int error;
1264
1e7cb3dc
CL
1265 dfprintk(VFS, "NFS: rmdir(%s/%ld), %s\n",
1266 dir->i_sb->s_id, dir->i_ino, dentry->d_name.name);
1da177e4
LT
1267
1268 lock_kernel();
1da177e4
LT
1269 error = NFS_PROTO(dir)->rmdir(dir, &dentry->d_name);
1270 /* Ensure the VFS deletes this inode */
1271 if (error == 0 && dentry->d_inode != NULL)
ce71ec36 1272 clear_nlink(dentry->d_inode);
1da177e4
LT
1273 unlock_kernel();
1274
1275 return error;
1276}
1277
1278static int nfs_sillyrename(struct inode *dir, struct dentry *dentry)
1279{
1280 static unsigned int sillycounter;
4e769b93 1281 const int fileidsize = sizeof(NFS_FILEID(dentry->d_inode))*2;
1da177e4 1282 const int countersize = sizeof(sillycounter)*2;
4e769b93 1283 const int slen = sizeof(".nfs")+fileidsize+countersize-1;
1da177e4
LT
1284 char silly[slen+1];
1285 struct qstr qsilly;
1286 struct dentry *sdentry;
1287 int error = -EIO;
1288
1289 dfprintk(VFS, "NFS: silly-rename(%s/%s, ct=%d)\n",
1290 dentry->d_parent->d_name.name, dentry->d_name.name,
1291 atomic_read(&dentry->d_count));
91d5b470 1292 nfs_inc_stats(dir, NFSIOS_SILLYRENAME);
1da177e4 1293
1da177e4
LT
1294 /*
1295 * We don't allow a dentry to be silly-renamed twice.
1296 */
1297 error = -EBUSY;
1298 if (dentry->d_flags & DCACHE_NFSFS_RENAMED)
1299 goto out;
1300
4e769b93
PS
1301 sprintf(silly, ".nfs%*.*Lx",
1302 fileidsize, fileidsize,
1303 (unsigned long long)NFS_FILEID(dentry->d_inode));
1da177e4 1304
34ea8188
TM
1305 /* Return delegation in anticipation of the rename */
1306 nfs_inode_return_delegation(dentry->d_inode);
1307
1da177e4
LT
1308 sdentry = NULL;
1309 do {
1310 char *suffix = silly + slen - countersize;
1311
1312 dput(sdentry);
1313 sillycounter++;
1314 sprintf(suffix, "%*.*x", countersize, countersize, sillycounter);
1315
1e7cb3dc
CL
1316 dfprintk(VFS, "NFS: trying to rename %s to %s\n",
1317 dentry->d_name.name, silly);
1da177e4
LT
1318
1319 sdentry = lookup_one_len(silly, dentry->d_parent, slen);
1320 /*
1321 * N.B. Better to return EBUSY here ... it could be
1322 * dangerous to delete the file while it's in use.
1323 */
1324 if (IS_ERR(sdentry))
1325 goto out;
1326 } while(sdentry->d_inode != NULL); /* need negative lookup */
1327
1328 qsilly.name = silly;
1329 qsilly.len = strlen(silly);
1da177e4 1330 if (dentry->d_inode) {
1da177e4
LT
1331 error = NFS_PROTO(dir)->rename(dir, &dentry->d_name,
1332 dir, &qsilly);
5ba7cc48 1333 nfs_mark_for_revalidate(dentry->d_inode);
1da177e4
LT
1334 } else
1335 error = NFS_PROTO(dir)->rename(dir, &dentry->d_name,
1336 dir, &qsilly);
1da177e4 1337 if (!error) {
1da177e4
LT
1338 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
1339 d_move(dentry, sdentry);
e4eff1a6 1340 error = nfs_async_unlink(dir, dentry);
1da177e4
LT
1341 /* If we return 0 we don't unlink */
1342 }
1343 dput(sdentry);
1344out:
1345 return error;
1346}
1347
1348/*
1349 * Remove a file after making sure there are no pending writes,
1350 * and after checking that the file has only one user.
1351 *
1352 * We invalidate the attribute cache and free the inode prior to the operation
1353 * to avoid possible races if the server reuses the inode.
1354 */
1355static int nfs_safe_remove(struct dentry *dentry)
1356{
1357 struct inode *dir = dentry->d_parent->d_inode;
1358 struct inode *inode = dentry->d_inode;
1359 int error = -EBUSY;
1360
1361 dfprintk(VFS, "NFS: safe_remove(%s/%s)\n",
1362 dentry->d_parent->d_name.name, dentry->d_name.name);
1363
1364 /* If the dentry was sillyrenamed, we simply call d_delete() */
1365 if (dentry->d_flags & DCACHE_NFSFS_RENAMED) {
1366 error = 0;
1367 goto out;
1368 }
1369
1da177e4 1370 if (inode != NULL) {
cae7a073 1371 nfs_inode_return_delegation(inode);
1da177e4
LT
1372 error = NFS_PROTO(dir)->remove(dir, &dentry->d_name);
1373 /* The VFS may want to delete this inode */
1374 if (error == 0)
9a53c3a7 1375 drop_nlink(inode);
5ba7cc48 1376 nfs_mark_for_revalidate(inode);
1da177e4
LT
1377 } else
1378 error = NFS_PROTO(dir)->remove(dir, &dentry->d_name);
1da177e4
LT
1379out:
1380 return error;
1381}
1382
1383/* We do silly rename. In case sillyrename() returns -EBUSY, the inode
1384 * belongs to an active ".nfs..." file and we return -EBUSY.
1385 *
1386 * If sillyrename() returns 0, we do nothing, otherwise we unlink.
1387 */
1388static int nfs_unlink(struct inode *dir, struct dentry *dentry)
1389{
1390 int error;
1391 int need_rehash = 0;
1392
1393 dfprintk(VFS, "NFS: unlink(%s/%ld, %s)\n", dir->i_sb->s_id,
1394 dir->i_ino, dentry->d_name.name);
1395
1396 lock_kernel();
1397 spin_lock(&dcache_lock);
1398 spin_lock(&dentry->d_lock);
1399 if (atomic_read(&dentry->d_count) > 1) {
1400 spin_unlock(&dentry->d_lock);
1401 spin_unlock(&dcache_lock);
ccfeb506
TM
1402 /* Start asynchronous writeout of the inode */
1403 write_inode_now(dentry->d_inode, 0);
1da177e4
LT
1404 error = nfs_sillyrename(dir, dentry);
1405 unlock_kernel();
1406 return error;
1407 }
1408 if (!d_unhashed(dentry)) {
1409 __d_drop(dentry);
1410 need_rehash = 1;
1411 }
1412 spin_unlock(&dentry->d_lock);
1413 spin_unlock(&dcache_lock);
1414 error = nfs_safe_remove(dentry);
1415 if (!error) {
1da177e4
LT
1416 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
1417 } else if (need_rehash)
1418 d_rehash(dentry);
1419 unlock_kernel();
1420 return error;
1421}
1422
873101b3
CL
1423/*
1424 * To create a symbolic link, most file systems instantiate a new inode,
1425 * add a page to it containing the path, then write it out to the disk
1426 * using prepare_write/commit_write.
1427 *
1428 * Unfortunately the NFS client can't create the in-core inode first
1429 * because it needs a file handle to create an in-core inode (see
1430 * fs/nfs/inode.c:nfs_fhget). We only have a file handle *after* the
1431 * symlink request has completed on the server.
1432 *
1433 * So instead we allocate a raw page, copy the symname into it, then do
1434 * the SYMLINK request with the page as the buffer. If it succeeds, we
1435 * now have a new file handle and can instantiate an in-core NFS inode
1436 * and move the raw page into its mapping.
1437 */
1438static int nfs_symlink(struct inode *dir, struct dentry *dentry, const char *symname)
1da177e4 1439{
873101b3
CL
1440 struct pagevec lru_pvec;
1441 struct page *page;
1442 char *kaddr;
1da177e4 1443 struct iattr attr;
873101b3 1444 unsigned int pathlen = strlen(symname);
1da177e4
LT
1445 int error;
1446
1447 dfprintk(VFS, "NFS: symlink(%s/%ld, %s, %s)\n", dir->i_sb->s_id,
1448 dir->i_ino, dentry->d_name.name, symname);
1449
873101b3
CL
1450 if (pathlen > PAGE_SIZE)
1451 return -ENAMETOOLONG;
1da177e4 1452
873101b3
CL
1453 attr.ia_mode = S_IFLNK | S_IRWXUGO;
1454 attr.ia_valid = ATTR_MODE;
1da177e4
LT
1455
1456 lock_kernel();
873101b3 1457
83d93f22 1458 page = alloc_page(GFP_HIGHUSER);
873101b3
CL
1459 if (!page) {
1460 unlock_kernel();
1461 return -ENOMEM;
1462 }
1463
1464 kaddr = kmap_atomic(page, KM_USER0);
1465 memcpy(kaddr, symname, pathlen);
1466 if (pathlen < PAGE_SIZE)
1467 memset(kaddr + pathlen, 0, PAGE_SIZE - pathlen);
1468 kunmap_atomic(kaddr, KM_USER0);
1469
94a6d753 1470 error = NFS_PROTO(dir)->symlink(dir, dentry, page, pathlen, &attr);
873101b3
CL
1471 if (error != 0) {
1472 dfprintk(VFS, "NFS: symlink(%s/%ld, %s, %s) error %d\n",
1473 dir->i_sb->s_id, dir->i_ino,
1474 dentry->d_name.name, symname, error);
1da177e4 1475 d_drop(dentry);
873101b3
CL
1476 __free_page(page);
1477 unlock_kernel();
1478 return error;
1479 }
1480
1481 /*
1482 * No big deal if we can't add this page to the page cache here.
1483 * READLINK will get the missing page from the server if needed.
1484 */
1485 pagevec_init(&lru_pvec, 0);
1486 if (!add_to_page_cache(page, dentry->d_inode->i_mapping, 0,
1487 GFP_KERNEL)) {
39cf8a13
CL
1488 pagevec_add(&lru_pvec, page);
1489 pagevec_lru_add(&lru_pvec);
873101b3
CL
1490 SetPageUptodate(page);
1491 unlock_page(page);
1492 } else
1493 __free_page(page);
1494
1da177e4 1495 unlock_kernel();
873101b3 1496 return 0;
1da177e4
LT
1497}
1498
1499static int
1500nfs_link(struct dentry *old_dentry, struct inode *dir, struct dentry *dentry)
1501{
1502 struct inode *inode = old_dentry->d_inode;
1503 int error;
1504
1505 dfprintk(VFS, "NFS: link(%s/%s -> %s/%s)\n",
1506 old_dentry->d_parent->d_name.name, old_dentry->d_name.name,
1507 dentry->d_parent->d_name.name, dentry->d_name.name);
1508
1da177e4 1509 lock_kernel();
1da177e4 1510 error = NFS_PROTO(dir)->link(inode, dir, &dentry->d_name);
cf809556
TM
1511 if (error == 0) {
1512 atomic_inc(&inode->i_count);
1513 d_instantiate(dentry, inode);
1514 }
1da177e4
LT
1515 unlock_kernel();
1516 return error;
1517}
1518
1519/*
1520 * RENAME
1521 * FIXME: Some nfsds, like the Linux user space nfsd, may generate a
1522 * different file handle for the same inode after a rename (e.g. when
1523 * moving to a different directory). A fail-safe method to do so would
1524 * be to look up old_dir/old_name, create a link to new_dir/new_name and
1525 * rename the old file using the sillyrename stuff. This way, the original
1526 * file in old_dir will go away when the last process iput()s the inode.
1527 *
1528 * FIXED.
1529 *
1530 * It actually works quite well. One needs to have the possibility for
1531 * at least one ".nfs..." file in each directory the file ever gets
1532 * moved or linked to which happens automagically with the new
1533 * implementation that only depends on the dcache stuff instead of
1534 * using the inode layer
1535 *
1536 * Unfortunately, things are a little more complicated than indicated
1537 * above. For a cross-directory move, we want to make sure we can get
1538 * rid of the old inode after the operation. This means there must be
1539 * no pending writes (if it's a file), and the use count must be 1.
1540 * If these conditions are met, we can drop the dentries before doing
1541 * the rename.
1542 */
1543static int nfs_rename(struct inode *old_dir, struct dentry *old_dentry,
1544 struct inode *new_dir, struct dentry *new_dentry)
1545{
1546 struct inode *old_inode = old_dentry->d_inode;
1547 struct inode *new_inode = new_dentry->d_inode;
1548 struct dentry *dentry = NULL, *rehash = NULL;
1549 int error = -EBUSY;
1550
1551 /*
1552 * To prevent any new references to the target during the rename,
1553 * we unhash the dentry and free the inode in advance.
1554 */
1555 lock_kernel();
1556 if (!d_unhashed(new_dentry)) {
1557 d_drop(new_dentry);
1558 rehash = new_dentry;
1559 }
1560
1561 dfprintk(VFS, "NFS: rename(%s/%s -> %s/%s, ct=%d)\n",
1562 old_dentry->d_parent->d_name.name, old_dentry->d_name.name,
1563 new_dentry->d_parent->d_name.name, new_dentry->d_name.name,
1564 atomic_read(&new_dentry->d_count));
1565
1566 /*
1567 * First check whether the target is busy ... we can't
1568 * safely do _any_ rename if the target is in use.
1569 *
1570 * For files, make a copy of the dentry and then do a
1571 * silly-rename. If the silly-rename succeeds, the
1572 * copied dentry is hashed and becomes the new target.
1573 */
1574 if (!new_inode)
1575 goto go_ahead;
6fe43f9e
TM
1576 if (S_ISDIR(new_inode->i_mode)) {
1577 error = -EISDIR;
1578 if (!S_ISDIR(old_inode->i_mode))
1579 goto out;
1580 } else if (atomic_read(&new_dentry->d_count) > 2) {
1da177e4
LT
1581 int err;
1582 /* copy the target dentry's name */
1583 dentry = d_alloc(new_dentry->d_parent,
1584 &new_dentry->d_name);
1585 if (!dentry)
1586 goto out;
1587
1588 /* silly-rename the existing target ... */
1589 err = nfs_sillyrename(new_dir, new_dentry);
1590 if (!err) {
1591 new_dentry = rehash = dentry;
1592 new_inode = NULL;
1593 /* instantiate the replacement target */
1594 d_instantiate(new_dentry, NULL);
7a13e932
JJ
1595 } else if (atomic_read(&new_dentry->d_count) > 1)
1596 /* dentry still busy? */
1da177e4 1597 goto out;
20509f1b 1598 } else
9a53c3a7 1599 drop_nlink(new_inode);
1da177e4
LT
1600
1601go_ahead:
1602 /*
1603 * ... prune child dentries and writebacks if needed.
1604 */
1605 if (atomic_read(&old_dentry->d_count) > 1) {
e1552e19
TM
1606 if (S_ISREG(old_inode->i_mode))
1607 nfs_wb_all(old_inode);
1da177e4
LT
1608 shrink_dcache_parent(old_dentry);
1609 }
cae7a073 1610 nfs_inode_return_delegation(old_inode);
1da177e4 1611
24174119
TM
1612 if (new_inode != NULL) {
1613 nfs_inode_return_delegation(new_inode);
1da177e4 1614 d_delete(new_dentry);
24174119 1615 }
1da177e4 1616
1da177e4
LT
1617 error = NFS_PROTO(old_dir)->rename(old_dir, &old_dentry->d_name,
1618 new_dir, &new_dentry->d_name);
5ba7cc48 1619 nfs_mark_for_revalidate(old_inode);
1da177e4
LT
1620out:
1621 if (rehash)
1622 d_rehash(rehash);
1623 if (!error) {
349457cc 1624 d_move(old_dentry, new_dentry);
8fb559f8
CL
1625 nfs_set_verifier(new_dentry,
1626 nfs_save_change_attribute(new_dir));
1da177e4
LT
1627 }
1628
1629 /* new dentry created? */
1630 if (dentry)
1631 dput(dentry);
1632 unlock_kernel();
1633 return error;
1634}
1635
cfcea3e8
TM
1636static DEFINE_SPINLOCK(nfs_access_lru_lock);
1637static LIST_HEAD(nfs_access_lru_list);
1638static atomic_long_t nfs_access_nr_entries;
1639
1c3c07e9
TM
1640static void nfs_access_free_entry(struct nfs_access_entry *entry)
1641{
1642 put_rpccred(entry->cred);
1643 kfree(entry);
cfcea3e8
TM
1644 smp_mb__before_atomic_dec();
1645 atomic_long_dec(&nfs_access_nr_entries);
1646 smp_mb__after_atomic_dec();
1c3c07e9
TM
1647}
1648
979df72e
TM
1649int nfs_access_cache_shrinker(int nr_to_scan, gfp_t gfp_mask)
1650{
1651 LIST_HEAD(head);
1652 struct nfs_inode *nfsi;
1653 struct nfs_access_entry *cache;
1654
979df72e 1655restart:
a50f7951 1656 spin_lock(&nfs_access_lru_lock);
979df72e
TM
1657 list_for_each_entry(nfsi, &nfs_access_lru_list, access_cache_inode_lru) {
1658 struct inode *inode;
1659
1660 if (nr_to_scan-- == 0)
1661 break;
1662 inode = igrab(&nfsi->vfs_inode);
1663 if (inode == NULL)
1664 continue;
1665 spin_lock(&inode->i_lock);
1666 if (list_empty(&nfsi->access_cache_entry_lru))
1667 goto remove_lru_entry;
1668 cache = list_entry(nfsi->access_cache_entry_lru.next,
1669 struct nfs_access_entry, lru);
1670 list_move(&cache->lru, &head);
1671 rb_erase(&cache->rb_node, &nfsi->access_cache);
1672 if (!list_empty(&nfsi->access_cache_entry_lru))
1673 list_move_tail(&nfsi->access_cache_inode_lru,
1674 &nfs_access_lru_list);
1675 else {
1676remove_lru_entry:
1677 list_del_init(&nfsi->access_cache_inode_lru);
1678 clear_bit(NFS_INO_ACL_LRU_SET, &nfsi->flags);
1679 }
1680 spin_unlock(&inode->i_lock);
a50f7951 1681 spin_unlock(&nfs_access_lru_lock);
979df72e
TM
1682 iput(inode);
1683 goto restart;
1684 }
1685 spin_unlock(&nfs_access_lru_lock);
1686 while (!list_empty(&head)) {
1687 cache = list_entry(head.next, struct nfs_access_entry, lru);
1688 list_del(&cache->lru);
1689 nfs_access_free_entry(cache);
1690 }
1691 return (atomic_long_read(&nfs_access_nr_entries) / 100) * sysctl_vfs_cache_pressure;
1692}
1693
1c3c07e9 1694static void __nfs_access_zap_cache(struct inode *inode)
1da177e4 1695{
55296809 1696 struct nfs_inode *nfsi = NFS_I(inode);
1c3c07e9
TM
1697 struct rb_root *root_node = &nfsi->access_cache;
1698 struct rb_node *n, *dispose = NULL;
1699 struct nfs_access_entry *entry;
1700
1701 /* Unhook entries from the cache */
1702 while ((n = rb_first(root_node)) != NULL) {
1703 entry = rb_entry(n, struct nfs_access_entry, rb_node);
1704 rb_erase(n, root_node);
cfcea3e8 1705 list_del(&entry->lru);
1c3c07e9
TM
1706 n->rb_left = dispose;
1707 dispose = n;
1708 }
1709 nfsi->cache_validity &= ~NFS_INO_INVALID_ACCESS;
1710 spin_unlock(&inode->i_lock);
1da177e4 1711
1c3c07e9
TM
1712 /* Now kill them all! */
1713 while (dispose != NULL) {
1714 n = dispose;
1715 dispose = n->rb_left;
1716 nfs_access_free_entry(rb_entry(n, struct nfs_access_entry, rb_node));
1717 }
1da177e4
LT
1718}
1719
1c3c07e9 1720void nfs_access_zap_cache(struct inode *inode)
1da177e4 1721{
cfcea3e8
TM
1722 /* Remove from global LRU init */
1723 if (test_and_clear_bit(NFS_INO_ACL_LRU_SET, &NFS_FLAGS(inode))) {
1724 spin_lock(&nfs_access_lru_lock);
1725 list_del_init(&NFS_I(inode)->access_cache_inode_lru);
1726 spin_unlock(&nfs_access_lru_lock);
1727 }
1728
1c3c07e9
TM
1729 spin_lock(&inode->i_lock);
1730 /* This will release the spinlock */
1731 __nfs_access_zap_cache(inode);
1732}
1da177e4 1733
1c3c07e9
TM
1734static struct nfs_access_entry *nfs_access_search_rbtree(struct inode *inode, struct rpc_cred *cred)
1735{
1736 struct rb_node *n = NFS_I(inode)->access_cache.rb_node;
1737 struct nfs_access_entry *entry;
1738
1739 while (n != NULL) {
1740 entry = rb_entry(n, struct nfs_access_entry, rb_node);
1741
1742 if (cred < entry->cred)
1743 n = n->rb_left;
1744 else if (cred > entry->cred)
1745 n = n->rb_right;
1746 else
1747 return entry;
1da177e4 1748 }
1c3c07e9
TM
1749 return NULL;
1750}
1751
af22f94a 1752static int nfs_access_get_cached(struct inode *inode, struct rpc_cred *cred, struct nfs_access_entry *res)
1c3c07e9
TM
1753{
1754 struct nfs_inode *nfsi = NFS_I(inode);
1755 struct nfs_access_entry *cache;
1756 int err = -ENOENT;
1757
dc59250c 1758 spin_lock(&inode->i_lock);
1c3c07e9
TM
1759 if (nfsi->cache_validity & NFS_INO_INVALID_ACCESS)
1760 goto out_zap;
1761 cache = nfs_access_search_rbtree(inode, cred);
1762 if (cache == NULL)
1763 goto out;
c7e15961 1764 if (!time_in_range(jiffies, cache->jiffies, cache->jiffies + NFS_ATTRTIMEO(inode)))
1c3c07e9
TM
1765 goto out_stale;
1766 res->jiffies = cache->jiffies;
1767 res->cred = cache->cred;
1768 res->mask = cache->mask;
cfcea3e8 1769 list_move_tail(&cache->lru, &nfsi->access_cache_entry_lru);
1c3c07e9
TM
1770 err = 0;
1771out:
1772 spin_unlock(&inode->i_lock);
1773 return err;
1774out_stale:
1775 rb_erase(&cache->rb_node, &nfsi->access_cache);
cfcea3e8 1776 list_del(&cache->lru);
1c3c07e9
TM
1777 spin_unlock(&inode->i_lock);
1778 nfs_access_free_entry(cache);
1779 return -ENOENT;
1780out_zap:
1781 /* This will release the spinlock */
1782 __nfs_access_zap_cache(inode);
1783 return -ENOENT;
1784}
1785
1786static void nfs_access_add_rbtree(struct inode *inode, struct nfs_access_entry *set)
1787{
cfcea3e8
TM
1788 struct nfs_inode *nfsi = NFS_I(inode);
1789 struct rb_root *root_node = &nfsi->access_cache;
1c3c07e9
TM
1790 struct rb_node **p = &root_node->rb_node;
1791 struct rb_node *parent = NULL;
1792 struct nfs_access_entry *entry;
1793
1794 spin_lock(&inode->i_lock);
1795 while (*p != NULL) {
1796 parent = *p;
1797 entry = rb_entry(parent, struct nfs_access_entry, rb_node);
1798
1799 if (set->cred < entry->cred)
1800 p = &parent->rb_left;
1801 else if (set->cred > entry->cred)
1802 p = &parent->rb_right;
1803 else
1804 goto found;
1805 }
1806 rb_link_node(&set->rb_node, parent, p);
1807 rb_insert_color(&set->rb_node, root_node);
cfcea3e8 1808 list_add_tail(&set->lru, &nfsi->access_cache_entry_lru);
dc59250c 1809 spin_unlock(&inode->i_lock);
1c3c07e9
TM
1810 return;
1811found:
1812 rb_replace_node(parent, &set->rb_node, root_node);
cfcea3e8
TM
1813 list_add_tail(&set->lru, &nfsi->access_cache_entry_lru);
1814 list_del(&entry->lru);
1c3c07e9
TM
1815 spin_unlock(&inode->i_lock);
1816 nfs_access_free_entry(entry);
1817}
1818
af22f94a 1819static void nfs_access_add_cache(struct inode *inode, struct nfs_access_entry *set)
1c3c07e9
TM
1820{
1821 struct nfs_access_entry *cache = kmalloc(sizeof(*cache), GFP_KERNEL);
1822 if (cache == NULL)
1823 return;
1824 RB_CLEAR_NODE(&cache->rb_node);
1da177e4 1825 cache->jiffies = set->jiffies;
1c3c07e9 1826 cache->cred = get_rpccred(set->cred);
1da177e4 1827 cache->mask = set->mask;
1c3c07e9
TM
1828
1829 nfs_access_add_rbtree(inode, cache);
cfcea3e8
TM
1830
1831 /* Update accounting */
1832 smp_mb__before_atomic_inc();
1833 atomic_long_inc(&nfs_access_nr_entries);
1834 smp_mb__after_atomic_inc();
1835
1836 /* Add inode to global LRU list */
1837 if (!test_and_set_bit(NFS_INO_ACL_LRU_SET, &NFS_FLAGS(inode))) {
1838 spin_lock(&nfs_access_lru_lock);
1839 list_add_tail(&NFS_I(inode)->access_cache_inode_lru, &nfs_access_lru_list);
1840 spin_unlock(&nfs_access_lru_lock);
1841 }
1da177e4
LT
1842}
1843
1844static int nfs_do_access(struct inode *inode, struct rpc_cred *cred, int mask)
1845{
1846 struct nfs_access_entry cache;
1847 int status;
1848
1849 status = nfs_access_get_cached(inode, cred, &cache);
1850 if (status == 0)
1851 goto out;
1852
1853 /* Be clever: ask server to check for all possible rights */
1854 cache.mask = MAY_EXEC | MAY_WRITE | MAY_READ;
1855 cache.cred = cred;
1856 cache.jiffies = jiffies;
1857 status = NFS_PROTO(inode)->access(inode, &cache);
1858 if (status != 0)
1859 return status;
1860 nfs_access_add_cache(inode, &cache);
1861out:
1862 if ((cache.mask & mask) == mask)
1863 return 0;
1864 return -EACCES;
1865}
1866
af22f94a
TM
1867static int nfs_open_permission_mask(int openflags)
1868{
1869 int mask = 0;
1870
1871 if (openflags & FMODE_READ)
1872 mask |= MAY_READ;
1873 if (openflags & FMODE_WRITE)
1874 mask |= MAY_WRITE;
1875 if (openflags & FMODE_EXEC)
1876 mask |= MAY_EXEC;
1877 return mask;
1878}
1879
1880int nfs_may_open(struct inode *inode, struct rpc_cred *cred, int openflags)
1881{
1882 return nfs_do_access(inode, cred, nfs_open_permission_mask(openflags));
1883}
1884
1da177e4
LT
1885int nfs_permission(struct inode *inode, int mask, struct nameidata *nd)
1886{
1887 struct rpc_cred *cred;
1888 int res = 0;
1889
91d5b470
CL
1890 nfs_inc_stats(inode, NFSIOS_VFSACCESS);
1891
1da177e4
LT
1892 if (mask == 0)
1893 goto out;
1894 /* Is this sys_access() ? */
1895 if (nd != NULL && (nd->flags & LOOKUP_ACCESS))
1896 goto force_lookup;
1897
1898 switch (inode->i_mode & S_IFMT) {
1899 case S_IFLNK:
1900 goto out;
1901 case S_IFREG:
1902 /* NFSv4 has atomic_open... */
1903 if (nfs_server_capable(inode, NFS_CAP_ATOMIC_OPEN)
1904 && nd != NULL
1905 && (nd->flags & LOOKUP_OPEN))
1906 goto out;
1907 break;
1908 case S_IFDIR:
1909 /*
1910 * Optimize away all write operations, since the server
1911 * will check permissions when we perform the op.
1912 */
1913 if ((mask & MAY_WRITE) && !(mask & MAY_READ))
1914 goto out;
1915 }
1916
1917force_lookup:
1918 lock_kernel();
1919
1920 if (!NFS_PROTO(inode)->access)
1921 goto out_notsup;
1922
1923 cred = rpcauth_lookupcred(NFS_CLIENT(inode)->cl_auth, 0);
1924 if (!IS_ERR(cred)) {
1925 res = nfs_do_access(inode, cred, mask);
1926 put_rpccred(cred);
1927 } else
1928 res = PTR_ERR(cred);
1929 unlock_kernel();
1930out:
1e7cb3dc
CL
1931 dfprintk(VFS, "NFS: permission(%s/%ld), mask=0x%x, res=%d\n",
1932 inode->i_sb->s_id, inode->i_ino, mask, res);
1da177e4
LT
1933 return res;
1934out_notsup:
1935 res = nfs_revalidate_inode(NFS_SERVER(inode), inode);
1936 if (res == 0)
1937 res = generic_permission(inode, mask, NULL);
1938 unlock_kernel();
1e7cb3dc 1939 goto out;
1da177e4
LT
1940}
1941
1942/*
1943 * Local variables:
1944 * version-control: t
1945 * kept-new-versions: 5
1946 * End:
1947 */