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NFS: support RCU_WALK in nfs_permission()
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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
ddda8e0a 20#include <linux/module.h>
1da177e4
LT
21#include <linux/time.h>
22#include <linux/errno.h>
23#include <linux/stat.h>
24#include <linux/fcntl.h>
25#include <linux/string.h>
26#include <linux/kernel.h>
27#include <linux/slab.h>
28#include <linux/mm.h>
29#include <linux/sunrpc/clnt.h>
30#include <linux/nfs_fs.h>
31#include <linux/nfs_mount.h>
32#include <linux/pagemap.h>
873101b3 33#include <linux/pagevec.h>
1da177e4 34#include <linux/namei.h>
54ceac45 35#include <linux/mount.h>
a0b8cab3 36#include <linux/swap.h>
e8edc6e0 37#include <linux/sched.h>
04e4bd1c 38#include <linux/kmemleak.h>
64c2ce8b 39#include <linux/xattr.h>
1da177e4
LT
40
41#include "delegation.h"
91d5b470 42#include "iostat.h"
4c30d56e 43#include "internal.h"
cd9a1c0e 44#include "fscache.h"
1da177e4 45
f4ce1299
TM
46#include "nfstrace.h"
47
1da177e4
LT
48/* #define NFS_DEBUG_VERBOSE 1 */
49
50static int nfs_opendir(struct inode *, struct file *);
480c2006 51static int nfs_closedir(struct inode *, struct file *);
23db8620 52static int nfs_readdir(struct file *, struct dir_context *);
02c24a82 53static int nfs_fsync_dir(struct file *, loff_t, loff_t, int);
f0dd2136 54static loff_t nfs_llseek_dir(struct file *, loff_t, int);
11de3b11 55static void nfs_readdir_clear_array(struct page*);
1da177e4 56
4b6f5d20 57const struct file_operations nfs_dir_operations = {
f0dd2136 58 .llseek = nfs_llseek_dir,
1da177e4 59 .read = generic_read_dir,
23db8620 60 .iterate = nfs_readdir,
1da177e4 61 .open = nfs_opendir,
480c2006 62 .release = nfs_closedir,
1da177e4
LT
63 .fsync = nfs_fsync_dir,
64};
65
11de3b11
TM
66const struct address_space_operations nfs_dir_aops = {
67 .freepage = nfs_readdir_clear_array,
d1bacf9e
BS
68};
69
0c030806 70static struct nfs_open_dir_context *alloc_nfs_open_dir_context(struct inode *dir, struct rpc_cred *cred)
480c2006 71{
311324ad 72 struct nfs_inode *nfsi = NFS_I(dir);
480c2006
BS
73 struct nfs_open_dir_context *ctx;
74 ctx = kmalloc(sizeof(*ctx), GFP_KERNEL);
75 if (ctx != NULL) {
8ef2ce3e 76 ctx->duped = 0;
311324ad 77 ctx->attr_gencount = nfsi->attr_gencount;
480c2006 78 ctx->dir_cookie = 0;
8ef2ce3e 79 ctx->dup_cookie = 0;
480c2006 80 ctx->cred = get_rpccred(cred);
311324ad
TM
81 spin_lock(&dir->i_lock);
82 list_add(&ctx->list, &nfsi->open_files);
83 spin_unlock(&dir->i_lock);
0c030806
TM
84 return ctx;
85 }
86 return ERR_PTR(-ENOMEM);
480c2006
BS
87}
88
311324ad 89static void put_nfs_open_dir_context(struct inode *dir, struct nfs_open_dir_context *ctx)
480c2006 90{
311324ad
TM
91 spin_lock(&dir->i_lock);
92 list_del(&ctx->list);
93 spin_unlock(&dir->i_lock);
480c2006
BS
94 put_rpccred(ctx->cred);
95 kfree(ctx);
96}
97
1da177e4
LT
98/*
99 * Open file
100 */
101static int
102nfs_opendir(struct inode *inode, struct file *filp)
103{
480c2006
BS
104 int res = 0;
105 struct nfs_open_dir_context *ctx;
106 struct rpc_cred *cred;
1da177e4 107
6de1472f 108 dfprintk(FILE, "NFS: open dir(%pD2)\n", filp);
cc0dd2d1
CL
109
110 nfs_inc_stats(inode, NFSIOS_VFSOPEN);
1e7cb3dc 111
480c2006
BS
112 cred = rpc_lookup_cred();
113 if (IS_ERR(cred))
114 return PTR_ERR(cred);
0c030806 115 ctx = alloc_nfs_open_dir_context(inode, cred);
480c2006
BS
116 if (IS_ERR(ctx)) {
117 res = PTR_ERR(ctx);
118 goto out;
119 }
120 filp->private_data = ctx;
f5a73672
NB
121 if (filp->f_path.dentry == filp->f_path.mnt->mnt_root) {
122 /* This is a mountpoint, so d_revalidate will never
123 * have been called, so we need to refresh the
124 * inode (for close-open consistency) ourselves.
125 */
126 __nfs_revalidate_inode(NFS_SERVER(inode), inode);
127 }
480c2006
BS
128out:
129 put_rpccred(cred);
1da177e4
LT
130 return res;
131}
132
480c2006
BS
133static int
134nfs_closedir(struct inode *inode, struct file *filp)
135{
311324ad 136 put_nfs_open_dir_context(filp->f_path.dentry->d_inode, filp->private_data);
480c2006
BS
137 return 0;
138}
139
d1bacf9e
BS
140struct nfs_cache_array_entry {
141 u64 cookie;
142 u64 ino;
143 struct qstr string;
0b26a0bf 144 unsigned char d_type;
d1bacf9e
BS
145};
146
147struct nfs_cache_array {
88b8e133 148 int size;
d1bacf9e
BS
149 int eof_index;
150 u64 last_cookie;
151 struct nfs_cache_array_entry array[0];
152};
153
573c4e1e 154typedef int (*decode_dirent_t)(struct xdr_stream *, struct nfs_entry *, int);
1da177e4
LT
155typedef struct {
156 struct file *file;
157 struct page *page;
23db8620 158 struct dir_context *ctx;
1da177e4 159 unsigned long page_index;
f0dd2136 160 u64 *dir_cookie;
0aded708 161 u64 last_cookie;
f0dd2136 162 loff_t current_index;
1da177e4 163 decode_dirent_t decode;
d1bacf9e 164
1f4eab7e 165 unsigned long timestamp;
4704f0e2 166 unsigned long gencount;
d1bacf9e
BS
167 unsigned int cache_entry_index;
168 unsigned int plus:1;
169 unsigned int eof:1;
1da177e4
LT
170} nfs_readdir_descriptor_t;
171
d1bacf9e
BS
172/*
173 * The caller is responsible for calling nfs_readdir_release_array(page)
1da177e4
LT
174 */
175static
d1bacf9e
BS
176struct nfs_cache_array *nfs_readdir_get_array(struct page *page)
177{
8cd51a0c 178 void *ptr;
d1bacf9e
BS
179 if (page == NULL)
180 return ERR_PTR(-EIO);
8cd51a0c
TM
181 ptr = kmap(page);
182 if (ptr == NULL)
183 return ERR_PTR(-ENOMEM);
184 return ptr;
d1bacf9e
BS
185}
186
187static
188void nfs_readdir_release_array(struct page *page)
189{
190 kunmap(page);
191}
192
193/*
194 * we are freeing strings created by nfs_add_to_readdir_array()
195 */
196static
11de3b11 197void nfs_readdir_clear_array(struct page *page)
d1bacf9e 198{
11de3b11 199 struct nfs_cache_array *array;
d1bacf9e 200 int i;
8cd51a0c 201
2b86ce2d 202 array = kmap_atomic(page);
d1bacf9e
BS
203 for (i = 0; i < array->size; i++)
204 kfree(array->array[i].string.name);
2b86ce2d 205 kunmap_atomic(array);
d1bacf9e
BS
206}
207
208/*
209 * the caller is responsible for freeing qstr.name
210 * when called by nfs_readdir_add_to_array, the strings will be freed in
211 * nfs_clear_readdir_array()
212 */
213static
4a201d6e 214int nfs_readdir_make_qstr(struct qstr *string, const char *name, unsigned int len)
d1bacf9e
BS
215{
216 string->len = len;
217 string->name = kmemdup(name, len, GFP_KERNEL);
4a201d6e
TM
218 if (string->name == NULL)
219 return -ENOMEM;
04e4bd1c
CM
220 /*
221 * Avoid a kmemleak false positive. The pointer to the name is stored
222 * in a page cache page which kmemleak does not scan.
223 */
224 kmemleak_not_leak(string->name);
4a201d6e
TM
225 string->hash = full_name_hash(name, len);
226 return 0;
d1bacf9e
BS
227}
228
229static
230int nfs_readdir_add_to_array(struct nfs_entry *entry, struct page *page)
231{
232 struct nfs_cache_array *array = nfs_readdir_get_array(page);
4a201d6e
TM
233 struct nfs_cache_array_entry *cache_entry;
234 int ret;
235
d1bacf9e
BS
236 if (IS_ERR(array))
237 return PTR_ERR(array);
3020093f
TM
238
239 cache_entry = &array->array[array->size];
240
241 /* Check that this entry lies within the page bounds */
8cd51a0c 242 ret = -ENOSPC;
3020093f 243 if ((char *)&cache_entry[1] - (char *)page_address(page) > PAGE_SIZE)
4a201d6e 244 goto out;
d1bacf9e 245
4a201d6e
TM
246 cache_entry->cookie = entry->prev_cookie;
247 cache_entry->ino = entry->ino;
0b26a0bf 248 cache_entry->d_type = entry->d_type;
4a201d6e
TM
249 ret = nfs_readdir_make_qstr(&cache_entry->string, entry->name, entry->len);
250 if (ret)
251 goto out;
d1bacf9e 252 array->last_cookie = entry->cookie;
8cd51a0c 253 array->size++;
47c716cb 254 if (entry->eof != 0)
d1bacf9e 255 array->eof_index = array->size;
4a201d6e 256out:
d1bacf9e 257 nfs_readdir_release_array(page);
4a201d6e 258 return ret;
d1bacf9e
BS
259}
260
261static
262int nfs_readdir_search_for_pos(struct nfs_cache_array *array, nfs_readdir_descriptor_t *desc)
263{
23db8620 264 loff_t diff = desc->ctx->pos - desc->current_index;
d1bacf9e
BS
265 unsigned int index;
266
267 if (diff < 0)
268 goto out_eof;
269 if (diff >= array->size) {
8cd51a0c 270 if (array->eof_index >= 0)
d1bacf9e 271 goto out_eof;
d1bacf9e
BS
272 return -EAGAIN;
273 }
274
275 index = (unsigned int)diff;
276 *desc->dir_cookie = array->array[index].cookie;
277 desc->cache_entry_index = index;
d1bacf9e
BS
278 return 0;
279out_eof:
280 desc->eof = 1;
281 return -EBADCOOKIE;
282}
283
4db72b40
JL
284static bool
285nfs_readdir_inode_mapping_valid(struct nfs_inode *nfsi)
286{
287 if (nfsi->cache_validity & (NFS_INO_INVALID_ATTR|NFS_INO_INVALID_DATA))
288 return false;
289 smp_rmb();
290 return !test_bit(NFS_INO_INVALIDATING, &nfsi->flags);
291}
292
d1bacf9e
BS
293static
294int nfs_readdir_search_for_cookie(struct nfs_cache_array *array, nfs_readdir_descriptor_t *desc)
295{
296 int i;
8ef2ce3e 297 loff_t new_pos;
d1bacf9e
BS
298 int status = -EAGAIN;
299
300 for (i = 0; i < array->size; i++) {
d1bacf9e 301 if (array->array[i].cookie == *desc->dir_cookie) {
496ad9aa 302 struct nfs_inode *nfsi = NFS_I(file_inode(desc->file));
0c030806
TM
303 struct nfs_open_dir_context *ctx = desc->file->private_data;
304
8ef2ce3e 305 new_pos = desc->current_index + i;
4db72b40
JL
306 if (ctx->attr_gencount != nfsi->attr_gencount ||
307 !nfs_readdir_inode_mapping_valid(nfsi)) {
0c030806
TM
308 ctx->duped = 0;
309 ctx->attr_gencount = nfsi->attr_gencount;
23db8620 310 } else if (new_pos < desc->ctx->pos) {
0c030806
TM
311 if (ctx->duped > 0
312 && ctx->dup_cookie == *desc->dir_cookie) {
313 if (printk_ratelimit()) {
6de1472f 314 pr_notice("NFS: directory %pD2 contains a readdir loop."
0c030806 315 "Please contact your server vendor. "
9581a4ae
JL
316 "The file: %.*s has duplicate cookie %llu\n",
317 desc->file, array->array[i].string.len,
318 array->array[i].string.name, *desc->dir_cookie);
0c030806
TM
319 }
320 status = -ELOOP;
321 goto out;
322 }
8ef2ce3e 323 ctx->dup_cookie = *desc->dir_cookie;
0c030806 324 ctx->duped = -1;
8ef2ce3e 325 }
23db8620 326 desc->ctx->pos = new_pos;
d1bacf9e 327 desc->cache_entry_index = i;
47c716cb 328 return 0;
d1bacf9e
BS
329 }
330 }
47c716cb 331 if (array->eof_index >= 0) {
8cd51a0c 332 status = -EBADCOOKIE;
18fb5fe4
TM
333 if (*desc->dir_cookie == array->last_cookie)
334 desc->eof = 1;
8cd51a0c 335 }
0c030806 336out:
d1bacf9e
BS
337 return status;
338}
339
340static
341int nfs_readdir_search_array(nfs_readdir_descriptor_t *desc)
342{
343 struct nfs_cache_array *array;
47c716cb 344 int status;
d1bacf9e
BS
345
346 array = nfs_readdir_get_array(desc->page);
347 if (IS_ERR(array)) {
348 status = PTR_ERR(array);
349 goto out;
350 }
351
352 if (*desc->dir_cookie == 0)
353 status = nfs_readdir_search_for_pos(array, desc);
354 else
355 status = nfs_readdir_search_for_cookie(array, desc);
356
47c716cb 357 if (status == -EAGAIN) {
0aded708 358 desc->last_cookie = array->last_cookie;
e47c085a 359 desc->current_index += array->size;
47c716cb
TM
360 desc->page_index++;
361 }
d1bacf9e
BS
362 nfs_readdir_release_array(desc->page);
363out:
364 return status;
365}
366
367/* Fill a page with xdr information before transferring to the cache page */
368static
56e4ebf8 369int nfs_readdir_xdr_filler(struct page **pages, nfs_readdir_descriptor_t *desc,
d1bacf9e 370 struct nfs_entry *entry, struct file *file, struct inode *inode)
1da177e4 371{
480c2006
BS
372 struct nfs_open_dir_context *ctx = file->private_data;
373 struct rpc_cred *cred = ctx->cred;
4704f0e2 374 unsigned long timestamp, gencount;
1da177e4
LT
375 int error;
376
1da177e4
LT
377 again:
378 timestamp = jiffies;
4704f0e2 379 gencount = nfs_inc_attr_generation_counter();
56e4ebf8 380 error = NFS_PROTO(inode)->readdir(file->f_path.dentry, cred, entry->cookie, pages,
1da177e4
LT
381 NFS_SERVER(inode)->dtsize, desc->plus);
382 if (error < 0) {
383 /* We requested READDIRPLUS, but the server doesn't grok it */
384 if (error == -ENOTSUPP && desc->plus) {
385 NFS_SERVER(inode)->caps &= ~NFS_CAP_READDIRPLUS;
3a10c30a 386 clear_bit(NFS_INO_ADVISE_RDPLUS, &NFS_I(inode)->flags);
1da177e4
LT
387 desc->plus = 0;
388 goto again;
389 }
390 goto error;
391 }
1f4eab7e 392 desc->timestamp = timestamp;
4704f0e2 393 desc->gencount = gencount;
d1bacf9e
BS
394error:
395 return error;
1da177e4
LT
396}
397
573c4e1e
CL
398static int xdr_decode(nfs_readdir_descriptor_t *desc,
399 struct nfs_entry *entry, struct xdr_stream *xdr)
1da177e4 400{
573c4e1e 401 int error;
1da177e4 402
573c4e1e
CL
403 error = desc->decode(xdr, entry, desc->plus);
404 if (error)
405 return error;
d1bacf9e
BS
406 entry->fattr->time_start = desc->timestamp;
407 entry->fattr->gencount = desc->gencount;
408 return 0;
1da177e4
LT
409}
410
d39ab9de
BS
411static
412int nfs_same_file(struct dentry *dentry, struct nfs_entry *entry)
413{
d39ab9de
BS
414 if (dentry->d_inode == NULL)
415 goto different;
37a09f07 416 if (nfs_compare_fh(entry->fh, NFS_FH(dentry->d_inode)) != 0)
d39ab9de
BS
417 goto different;
418 return 1;
419different:
420 return 0;
421}
422
d69ee9b8 423static
23db8620 424bool nfs_use_readdirplus(struct inode *dir, struct dir_context *ctx)
d69ee9b8
TM
425{
426 if (!nfs_server_capable(dir, NFS_CAP_READDIRPLUS))
427 return false;
428 if (test_and_clear_bit(NFS_INO_ADVISE_RDPLUS, &NFS_I(dir)->flags))
429 return true;
23db8620 430 if (ctx->pos == 0)
d69ee9b8
TM
431 return true;
432 return false;
433}
434
435/*
436 * This function is called by the lookup code to request the use of
437 * readdirplus to accelerate any future lookups in the same
438 * directory.
439 */
440static
441void nfs_advise_use_readdirplus(struct inode *dir)
442{
443 set_bit(NFS_INO_ADVISE_RDPLUS, &NFS_I(dir)->flags);
444}
445
311324ad
TM
446/*
447 * This function is mainly for use by nfs_getattr().
448 *
449 * If this is an 'ls -l', we want to force use of readdirplus.
450 * Do this by checking if there is an active file descriptor
451 * and calling nfs_advise_use_readdirplus, then forcing a
452 * cache flush.
453 */
454void nfs_force_use_readdirplus(struct inode *dir)
455{
456 if (!list_empty(&NFS_I(dir)->open_files)) {
457 nfs_advise_use_readdirplus(dir);
458 nfs_zap_mapping(dir, dir->i_mapping);
459 }
460}
461
d39ab9de
BS
462static
463void nfs_prime_dcache(struct dentry *parent, struct nfs_entry *entry)
464{
26fe5750 465 struct qstr filename = QSTR_INIT(entry->name, entry->len);
4a201d6e
TM
466 struct dentry *dentry;
467 struct dentry *alias;
d39ab9de
BS
468 struct inode *dir = parent->d_inode;
469 struct inode *inode;
aa9c2669 470 int status;
d39ab9de 471
4a201d6e
TM
472 if (filename.name[0] == '.') {
473 if (filename.len == 1)
474 return;
475 if (filename.len == 2 && filename.name[1] == '.')
476 return;
477 }
478 filename.hash = full_name_hash(filename.name, filename.len);
d39ab9de 479
4a201d6e 480 dentry = d_lookup(parent, &filename);
d39ab9de
BS
481 if (dentry != NULL) {
482 if (nfs_same_file(dentry, entry)) {
cda57a1e 483 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
aa9c2669
DQ
484 status = nfs_refresh_inode(dentry->d_inode, entry->fattr);
485 if (!status)
486 nfs_setsecurity(dentry->d_inode, entry->fattr, entry->label);
d39ab9de
BS
487 goto out;
488 } else {
696199f8
AV
489 if (d_invalidate(dentry) != 0)
490 goto out;
d39ab9de
BS
491 dput(dentry);
492 }
493 }
494
495 dentry = d_alloc(parent, &filename);
4a201d6e
TM
496 if (dentry == NULL)
497 return;
498
1775fd3e 499 inode = nfs_fhget(dentry->d_sb, entry->fh, entry->fattr, entry->label);
d39ab9de
BS
500 if (IS_ERR(inode))
501 goto out;
502
503 alias = d_materialise_unique(dentry, inode);
504 if (IS_ERR(alias))
505 goto out;
506 else if (alias) {
507 nfs_set_verifier(alias, nfs_save_change_attribute(dir));
508 dput(alias);
509 } else
510 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
511
512out:
513 dput(dentry);
d39ab9de
BS
514}
515
d1bacf9e
BS
516/* Perform conversion from xdr to cache array */
517static
8cd51a0c 518int nfs_readdir_page_filler(nfs_readdir_descriptor_t *desc, struct nfs_entry *entry,
6650239a 519 struct page **xdr_pages, struct page *page, unsigned int buflen)
1da177e4 520{
babddc72 521 struct xdr_stream stream;
f7da7a12 522 struct xdr_buf buf;
6650239a 523 struct page *scratch;
99424380 524 struct nfs_cache_array *array;
5c346854
TM
525 unsigned int count = 0;
526 int status;
babddc72 527
6650239a
TM
528 scratch = alloc_page(GFP_KERNEL);
529 if (scratch == NULL)
530 return -ENOMEM;
babddc72 531
f7da7a12 532 xdr_init_decode_pages(&stream, &buf, xdr_pages, buflen);
6650239a 533 xdr_set_scratch_buffer(&stream, page_address(scratch), PAGE_SIZE);
99424380
BS
534
535 do {
536 status = xdr_decode(desc, entry, &stream);
8cd51a0c
TM
537 if (status != 0) {
538 if (status == -EAGAIN)
539 status = 0;
99424380 540 break;
8cd51a0c 541 }
99424380 542
5c346854
TM
543 count++;
544
47c716cb 545 if (desc->plus != 0)
d39ab9de 546 nfs_prime_dcache(desc->file->f_path.dentry, entry);
8cd51a0c
TM
547
548 status = nfs_readdir_add_to_array(entry, page);
549 if (status != 0)
550 break;
99424380
BS
551 } while (!entry->eof);
552
47c716cb 553 if (count == 0 || (status == -EBADCOOKIE && entry->eof != 0)) {
99424380 554 array = nfs_readdir_get_array(page);
8cd51a0c
TM
555 if (!IS_ERR(array)) {
556 array->eof_index = array->size;
557 status = 0;
558 nfs_readdir_release_array(page);
5c346854
TM
559 } else
560 status = PTR_ERR(array);
1da177e4 561 }
6650239a
TM
562
563 put_page(scratch);
8cd51a0c 564 return status;
56e4ebf8
BS
565}
566
567static
568void nfs_readdir_free_pagearray(struct page **pages, unsigned int npages)
569{
570 unsigned int i;
571 for (i = 0; i < npages; i++)
572 put_page(pages[i]);
573}
574
575static
576void nfs_readdir_free_large_page(void *ptr, struct page **pages,
577 unsigned int npages)
578{
56e4ebf8
BS
579 nfs_readdir_free_pagearray(pages, npages);
580}
581
582/*
583 * nfs_readdir_large_page will allocate pages that must be freed with a call
584 * to nfs_readdir_free_large_page
585 */
586static
6650239a 587int nfs_readdir_large_page(struct page **pages, unsigned int npages)
56e4ebf8 588{
56e4ebf8
BS
589 unsigned int i;
590
591 for (i = 0; i < npages; i++) {
592 struct page *page = alloc_page(GFP_KERNEL);
593 if (page == NULL)
594 goto out_freepages;
595 pages[i] = page;
596 }
6650239a 597 return 0;
56e4ebf8 598
56e4ebf8
BS
599out_freepages:
600 nfs_readdir_free_pagearray(pages, i);
6650239a 601 return -ENOMEM;
1da177e4
LT
602}
603
d1bacf9e
BS
604static
605int nfs_readdir_xdr_to_array(nfs_readdir_descriptor_t *desc, struct page *page, struct inode *inode)
00a92642 606{
56e4ebf8
BS
607 struct page *pages[NFS_MAX_READDIR_PAGES];
608 void *pages_ptr = NULL;
d1bacf9e
BS
609 struct nfs_entry entry;
610 struct file *file = desc->file;
611 struct nfs_cache_array *array;
8cd51a0c 612 int status = -ENOMEM;
56e4ebf8 613 unsigned int array_size = ARRAY_SIZE(pages);
d1bacf9e
BS
614
615 entry.prev_cookie = 0;
0aded708 616 entry.cookie = desc->last_cookie;
d1bacf9e
BS
617 entry.eof = 0;
618 entry.fh = nfs_alloc_fhandle();
619 entry.fattr = nfs_alloc_fattr();
573c4e1e 620 entry.server = NFS_SERVER(inode);
d1bacf9e
BS
621 if (entry.fh == NULL || entry.fattr == NULL)
622 goto out;
00a92642 623
14c43f76
DQ
624 entry.label = nfs4_label_alloc(NFS_SERVER(inode), GFP_NOWAIT);
625 if (IS_ERR(entry.label)) {
626 status = PTR_ERR(entry.label);
627 goto out;
628 }
629
d1bacf9e 630 array = nfs_readdir_get_array(page);
8cd51a0c
TM
631 if (IS_ERR(array)) {
632 status = PTR_ERR(array);
14c43f76 633 goto out_label_free;
8cd51a0c 634 }
d1bacf9e
BS
635 memset(array, 0, sizeof(struct nfs_cache_array));
636 array->eof_index = -1;
00a92642 637
6650239a
TM
638 status = nfs_readdir_large_page(pages, array_size);
639 if (status < 0)
d1bacf9e
BS
640 goto out_release_array;
641 do {
ac396128 642 unsigned int pglen;
56e4ebf8 643 status = nfs_readdir_xdr_filler(pages, desc, &entry, file, inode);
babddc72 644
d1bacf9e 645 if (status < 0)
00a92642 646 break;
ac396128 647 pglen = status;
6650239a 648 status = nfs_readdir_page_filler(desc, &entry, pages, page, pglen);
8cd51a0c
TM
649 if (status < 0) {
650 if (status == -ENOSPC)
651 status = 0;
652 break;
653 }
654 } while (array->eof_index < 0);
d1bacf9e 655
56e4ebf8 656 nfs_readdir_free_large_page(pages_ptr, pages, array_size);
d1bacf9e
BS
657out_release_array:
658 nfs_readdir_release_array(page);
14c43f76
DQ
659out_label_free:
660 nfs4_label_free(entry.label);
d1bacf9e
BS
661out:
662 nfs_free_fattr(entry.fattr);
663 nfs_free_fhandle(entry.fh);
00a92642
OG
664 return status;
665}
666
667/*
d1bacf9e
BS
668 * Now we cache directories properly, by converting xdr information
669 * to an array that can be used for lookups later. This results in
670 * fewer cache pages, since we can store more information on each page.
671 * We only need to convert from xdr once so future lookups are much simpler
1da177e4 672 */
d1bacf9e
BS
673static
674int nfs_readdir_filler(nfs_readdir_descriptor_t *desc, struct page* page)
1da177e4 675{
496ad9aa 676 struct inode *inode = file_inode(desc->file);
8cd51a0c 677 int ret;
1da177e4 678
8cd51a0c
TM
679 ret = nfs_readdir_xdr_to_array(desc, page, inode);
680 if (ret < 0)
d1bacf9e
BS
681 goto error;
682 SetPageUptodate(page);
1da177e4 683
d1bacf9e
BS
684 if (invalidate_inode_pages2_range(inode->i_mapping, page->index + 1, -1) < 0) {
685 /* Should never happen */
686 nfs_zap_mapping(inode, inode->i_mapping);
1da177e4 687 }
d1bacf9e
BS
688 unlock_page(page);
689 return 0;
690 error:
691 unlock_page(page);
8cd51a0c 692 return ret;
d1bacf9e 693}
1da177e4 694
d1bacf9e
BS
695static
696void cache_page_release(nfs_readdir_descriptor_t *desc)
697{
11de3b11
TM
698 if (!desc->page->mapping)
699 nfs_readdir_clear_array(desc->page);
d1bacf9e
BS
700 page_cache_release(desc->page);
701 desc->page = NULL;
702}
703
704static
705struct page *get_cache_page(nfs_readdir_descriptor_t *desc)
706{
496ad9aa 707 return read_cache_page(file_inode(desc->file)->i_mapping,
d1bacf9e 708 desc->page_index, (filler_t *)nfs_readdir_filler, desc);
1da177e4
LT
709}
710
711/*
d1bacf9e 712 * Returns 0 if desc->dir_cookie was found on page desc->page_index
1da177e4 713 */
d1bacf9e
BS
714static
715int find_cache_page(nfs_readdir_descriptor_t *desc)
716{
717 int res;
718
719 desc->page = get_cache_page(desc);
720 if (IS_ERR(desc->page))
721 return PTR_ERR(desc->page);
722
723 res = nfs_readdir_search_array(desc);
47c716cb
TM
724 if (res != 0)
725 cache_page_release(desc);
d1bacf9e
BS
726 return res;
727}
728
729/* Search for desc->dir_cookie from the beginning of the page cache */
1da177e4
LT
730static inline
731int readdir_search_pagecache(nfs_readdir_descriptor_t *desc)
732{
8cd51a0c 733 int res;
d1bacf9e 734
0aded708 735 if (desc->page_index == 0) {
8cd51a0c 736 desc->current_index = 0;
0aded708
TM
737 desc->last_cookie = 0;
738 }
47c716cb 739 do {
d1bacf9e 740 res = find_cache_page(desc);
47c716cb 741 } while (res == -EAGAIN);
1da177e4
LT
742 return res;
743}
744
1da177e4
LT
745/*
746 * Once we've found the start of the dirent within a page: fill 'er up...
747 */
748static
23db8620 749int nfs_do_filldir(nfs_readdir_descriptor_t *desc)
1da177e4
LT
750{
751 struct file *file = desc->file;
d1bacf9e
BS
752 int i = 0;
753 int res = 0;
754 struct nfs_cache_array *array = NULL;
8ef2ce3e
BS
755 struct nfs_open_dir_context *ctx = file->private_data;
756
d1bacf9e 757 array = nfs_readdir_get_array(desc->page);
e7c58e97
TM
758 if (IS_ERR(array)) {
759 res = PTR_ERR(array);
760 goto out;
761 }
d1bacf9e
BS
762
763 for (i = desc->cache_entry_index; i < array->size; i++) {
ece0b423 764 struct nfs_cache_array_entry *ent;
1da177e4 765
ece0b423 766 ent = &array->array[i];
23db8620
AV
767 if (!dir_emit(desc->ctx, ent->string.name, ent->string.len,
768 nfs_compat_user_ino64(ent->ino), ent->d_type)) {
ece0b423 769 desc->eof = 1;
1da177e4 770 break;
ece0b423 771 }
23db8620 772 desc->ctx->pos++;
d1bacf9e
BS
773 if (i < (array->size-1))
774 *desc->dir_cookie = array->array[i+1].cookie;
775 else
776 *desc->dir_cookie = array->last_cookie;
0c030806
TM
777 if (ctx->duped != 0)
778 ctx->duped = 1;
1da177e4 779 }
47c716cb 780 if (array->eof_index >= 0)
8cd51a0c 781 desc->eof = 1;
d1bacf9e
BS
782
783 nfs_readdir_release_array(desc->page);
e7c58e97 784out:
d1bacf9e 785 cache_page_release(desc);
1e7cb3dc
CL
786 dfprintk(DIRCACHE, "NFS: nfs_do_filldir() filling ended @ cookie %Lu; returning = %d\n",
787 (unsigned long long)*desc->dir_cookie, res);
1da177e4
LT
788 return res;
789}
790
791/*
792 * If we cannot find a cookie in our cache, we suspect that this is
793 * because it points to a deleted file, so we ask the server to return
794 * whatever it thinks is the next entry. We then feed this to filldir.
795 * If all goes well, we should then be able to find our way round the
796 * cache on the next call to readdir_search_pagecache();
797 *
798 * NOTE: we cannot add the anonymous page to the pagecache because
799 * the data it contains might not be page aligned. Besides,
800 * we should already have a complete representation of the
801 * directory in the page cache by the time we get here.
802 */
803static inline
23db8620 804int uncached_readdir(nfs_readdir_descriptor_t *desc)
1da177e4 805{
1da177e4
LT
806 struct page *page = NULL;
807 int status;
496ad9aa 808 struct inode *inode = file_inode(desc->file);
0c030806 809 struct nfs_open_dir_context *ctx = desc->file->private_data;
1da177e4 810
1e7cb3dc
CL
811 dfprintk(DIRCACHE, "NFS: uncached_readdir() searching for cookie %Lu\n",
812 (unsigned long long)*desc->dir_cookie);
1da177e4
LT
813
814 page = alloc_page(GFP_HIGHUSER);
815 if (!page) {
816 status = -ENOMEM;
817 goto out;
818 }
d1bacf9e 819
7a8e1dc3 820 desc->page_index = 0;
0aded708 821 desc->last_cookie = *desc->dir_cookie;
7a8e1dc3 822 desc->page = page;
0c030806 823 ctx->duped = 0;
7a8e1dc3 824
85f8607e
TM
825 status = nfs_readdir_xdr_to_array(desc, page, inode);
826 if (status < 0)
1da177e4
LT
827 goto out_release;
828
23db8620 829 status = nfs_do_filldir(desc);
1da177e4 830
1da177e4 831 out:
1e7cb3dc 832 dfprintk(DIRCACHE, "NFS: %s: returns %d\n",
3110ff80 833 __func__, status);
1da177e4
LT
834 return status;
835 out_release:
d1bacf9e 836 cache_page_release(desc);
1da177e4
LT
837 goto out;
838}
839
311324ad
TM
840static bool nfs_dir_mapping_need_revalidate(struct inode *dir)
841{
842 struct nfs_inode *nfsi = NFS_I(dir);
843
844 if (nfs_attribute_cache_expired(dir))
845 return true;
846 if (nfsi->cache_validity & NFS_INO_INVALID_DATA)
847 return true;
848 return false;
849}
850
00a92642
OG
851/* The file offset position represents the dirent entry number. A
852 last cookie cache takes care of the common case of reading the
853 whole directory.
1da177e4 854 */
23db8620 855static int nfs_readdir(struct file *file, struct dir_context *ctx)
1da177e4 856{
23db8620 857 struct dentry *dentry = file->f_path.dentry;
1da177e4
LT
858 struct inode *inode = dentry->d_inode;
859 nfs_readdir_descriptor_t my_desc,
860 *desc = &my_desc;
23db8620 861 struct nfs_open_dir_context *dir_ctx = file->private_data;
07b5ce8e 862 int res = 0;
1da177e4 863
6de1472f
AV
864 dfprintk(FILE, "NFS: readdir(%pD2) starting at cookie %llu\n",
865 file, (long long)ctx->pos);
91d5b470
CL
866 nfs_inc_stats(inode, NFSIOS_VFSGETDENTS);
867
1da177e4 868 /*
23db8620 869 * ctx->pos points to the dirent entry number.
f0dd2136 870 * *desc->dir_cookie has the cookie for the next entry. We have
00a92642
OG
871 * to either find the entry with the appropriate number or
872 * revalidate the cookie.
1da177e4
LT
873 */
874 memset(desc, 0, sizeof(*desc));
875
23db8620
AV
876 desc->file = file;
877 desc->ctx = ctx;
480c2006 878 desc->dir_cookie = &dir_ctx->dir_cookie;
1da177e4 879 desc->decode = NFS_PROTO(inode)->decode_dirent;
23db8620 880 desc->plus = nfs_use_readdirplus(inode, ctx) ? 1 : 0;
1da177e4 881
565277f6 882 nfs_block_sillyrename(dentry);
311324ad 883 if (ctx->pos == 0 || nfs_dir_mapping_need_revalidate(inode))
07b5ce8e 884 res = nfs_revalidate_mapping(inode, file->f_mapping);
fccca7fc
TM
885 if (res < 0)
886 goto out;
887
47c716cb 888 do {
1da177e4 889 res = readdir_search_pagecache(desc);
00a92642 890
1da177e4 891 if (res == -EBADCOOKIE) {
ece0b423 892 res = 0;
1da177e4 893 /* This means either end of directory */
d1bacf9e 894 if (*desc->dir_cookie && desc->eof == 0) {
1da177e4 895 /* Or that the server has 'lost' a cookie */
23db8620 896 res = uncached_readdir(desc);
ece0b423 897 if (res == 0)
1da177e4
LT
898 continue;
899 }
1da177e4
LT
900 break;
901 }
902 if (res == -ETOOSMALL && desc->plus) {
3a10c30a 903 clear_bit(NFS_INO_ADVISE_RDPLUS, &NFS_I(inode)->flags);
1da177e4 904 nfs_zap_caches(inode);
baf57a09 905 desc->page_index = 0;
1da177e4 906 desc->plus = 0;
d1bacf9e 907 desc->eof = 0;
1da177e4
LT
908 continue;
909 }
910 if (res < 0)
911 break;
912
23db8620 913 res = nfs_do_filldir(desc);
ece0b423 914 if (res < 0)
1da177e4 915 break;
47c716cb 916 } while (!desc->eof);
fccca7fc 917out:
565277f6 918 nfs_unblock_sillyrename(dentry);
1e7cb3dc
CL
919 if (res > 0)
920 res = 0;
6de1472f 921 dfprintk(FILE, "NFS: readdir(%pD2) returns %d\n", file, res);
1e7cb3dc 922 return res;
1da177e4
LT
923}
924
965c8e59 925static loff_t nfs_llseek_dir(struct file *filp, loff_t offset, int whence)
f0dd2136 926{
6de1472f 927 struct inode *inode = file_inode(filp);
480c2006 928 struct nfs_open_dir_context *dir_ctx = filp->private_data;
b84e06c5 929
6de1472f
AV
930 dfprintk(FILE, "NFS: llseek dir(%pD2, %lld, %d)\n",
931 filp, offset, whence);
b84e06c5
CL
932
933 mutex_lock(&inode->i_mutex);
965c8e59 934 switch (whence) {
f0dd2136
TM
935 case 1:
936 offset += filp->f_pos;
937 case 0:
938 if (offset >= 0)
939 break;
940 default:
941 offset = -EINVAL;
942 goto out;
943 }
944 if (offset != filp->f_pos) {
945 filp->f_pos = offset;
480c2006 946 dir_ctx->dir_cookie = 0;
8ef2ce3e 947 dir_ctx->duped = 0;
f0dd2136
TM
948 }
949out:
b84e06c5 950 mutex_unlock(&inode->i_mutex);
f0dd2136
TM
951 return offset;
952}
953
1da177e4
LT
954/*
955 * All directory operations under NFS are synchronous, so fsync()
956 * is a dummy operation.
957 */
02c24a82
JB
958static int nfs_fsync_dir(struct file *filp, loff_t start, loff_t end,
959 int datasync)
1da177e4 960{
6de1472f 961 struct inode *inode = file_inode(filp);
7ea80859 962
6de1472f 963 dfprintk(FILE, "NFS: fsync dir(%pD2) datasync %d\n", filp, datasync);
1e7cb3dc 964
02c24a82 965 mutex_lock(&inode->i_mutex);
6de1472f 966 nfs_inc_stats(inode, NFSIOS_VFSFSYNC);
02c24a82 967 mutex_unlock(&inode->i_mutex);
1da177e4
LT
968 return 0;
969}
970
bfc69a45
TM
971/**
972 * nfs_force_lookup_revalidate - Mark the directory as having changed
973 * @dir - pointer to directory inode
974 *
975 * This forces the revalidation code in nfs_lookup_revalidate() to do a
976 * full lookup on all child dentries of 'dir' whenever a change occurs
977 * on the server that might have invalidated our dcache.
978 *
979 * The caller should be holding dir->i_lock
980 */
981void nfs_force_lookup_revalidate(struct inode *dir)
982{
011935a0 983 NFS_I(dir)->cache_change_attribute++;
bfc69a45 984}
89d77c8f 985EXPORT_SYMBOL_GPL(nfs_force_lookup_revalidate);
bfc69a45 986
1da177e4
LT
987/*
988 * A check for whether or not the parent directory has changed.
989 * In the case it has, we assume that the dentries are untrustworthy
990 * and may need to be looked up again.
991 */
c79ba787 992static int nfs_check_verifier(struct inode *dir, struct dentry *dentry)
1da177e4
LT
993{
994 if (IS_ROOT(dentry))
995 return 1;
4eec952e
TM
996 if (NFS_SERVER(dir)->flags & NFS_MOUNT_LOOKUP_CACHE_NONE)
997 return 0;
f2c77f4e
TM
998 if (!nfs_verify_change_attribute(dir, dentry->d_time))
999 return 0;
1000 /* Revalidate nfsi->cache_change_attribute before we declare a match */
1001 if (nfs_revalidate_inode(NFS_SERVER(dir), dir) < 0)
1002 return 0;
1003 if (!nfs_verify_change_attribute(dir, dentry->d_time))
1004 return 0;
1005 return 1;
1da177e4
LT
1006}
1007
a12802ca
TM
1008/*
1009 * Use intent information to check whether or not we're going to do
1010 * an O_EXCL create using this path component.
1011 */
fa3c56bb 1012static int nfs_is_exclusive_create(struct inode *dir, unsigned int flags)
a12802ca
TM
1013{
1014 if (NFS_PROTO(dir)->version == 2)
1015 return 0;
fa3c56bb 1016 return flags & LOOKUP_EXCL;
a12802ca
TM
1017}
1018
1d6757fb
TM
1019/*
1020 * Inode and filehandle revalidation for lookups.
1021 *
1022 * We force revalidation in the cases where the VFS sets LOOKUP_REVAL,
1023 * or if the intent information indicates that we're about to open this
1024 * particular file and the "nocto" mount flag is not set.
1025 *
1026 */
65a0c149 1027static
fa3c56bb 1028int nfs_lookup_verify_inode(struct inode *inode, unsigned int flags)
1da177e4
LT
1029{
1030 struct nfs_server *server = NFS_SERVER(inode);
65a0c149 1031 int ret;
1da177e4 1032
36d43a43 1033 if (IS_AUTOMOUNT(inode))
4e99a1ff 1034 return 0;
facc3530 1035 /* VFS wants an on-the-wire revalidation */
fa3c56bb 1036 if (flags & LOOKUP_REVAL)
facc3530
AV
1037 goto out_force;
1038 /* This is an open(2) */
fa3c56bb
AV
1039 if ((flags & LOOKUP_OPEN) && !(server->flags & NFS_MOUNT_NOCTO) &&
1040 (S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode)))
facc3530 1041 goto out_force;
65a0c149
TM
1042out:
1043 return (inode->i_nlink == 0) ? -ENOENT : 0;
1da177e4 1044out_force:
65a0c149
TM
1045 ret = __nfs_revalidate_inode(server, inode);
1046 if (ret != 0)
1047 return ret;
1048 goto out;
1da177e4
LT
1049}
1050
1051/*
1052 * We judge how long we want to trust negative
1053 * dentries by looking at the parent inode mtime.
1054 *
1055 * If parent mtime has changed, we revalidate, else we wait for a
1056 * period corresponding to the parent's attribute cache timeout value.
1057 */
1058static inline
1059int nfs_neg_need_reval(struct inode *dir, struct dentry *dentry,
fa3c56bb 1060 unsigned int flags)
1da177e4 1061{
1da177e4 1062 /* Don't revalidate a negative dentry if we're creating a new file */
fa3c56bb 1063 if (flags & LOOKUP_CREATE)
1da177e4 1064 return 0;
4eec952e
TM
1065 if (NFS_SERVER(dir)->flags & NFS_MOUNT_LOOKUP_CACHE_NONEG)
1066 return 1;
1da177e4
LT
1067 return !nfs_check_verifier(dir, dentry);
1068}
1069
1070/*
1071 * This is called every time the dcache has a lookup hit,
1072 * and we should check whether we can really trust that
1073 * lookup.
1074 *
1075 * NOTE! The hit can be a negative hit too, don't assume
1076 * we have an inode!
1077 *
1078 * If the parent directory is seen to have changed, we throw out the
1079 * cached dentry and do a new lookup.
1080 */
0b728e19 1081static int nfs_lookup_revalidate(struct dentry *dentry, unsigned int flags)
1da177e4
LT
1082{
1083 struct inode *dir;
1084 struct inode *inode;
1085 struct dentry *parent;
e1fb4d05
TM
1086 struct nfs_fh *fhandle = NULL;
1087 struct nfs_fattr *fattr = NULL;
1775fd3e 1088 struct nfs4_label *label = NULL;
1da177e4 1089 int error;
1da177e4 1090
d51ac1a8
N
1091 if (flags & LOOKUP_RCU) {
1092 parent = rcu_dereference(dentry->d_parent);
1093 dir = ACCESS_ONCE(parent->d_inode);
1094 if (!dir)
1095 return -ECHILD;
1096 } else {
1097 parent = dget_parent(dentry);
1098 dir = parent->d_inode;
1099 }
91d5b470 1100 nfs_inc_stats(dir, NFSIOS_DENTRYREVALIDATE);
1da177e4
LT
1101 inode = dentry->d_inode;
1102
1103 if (!inode) {
d51ac1a8
N
1104 if (flags & LOOKUP_RCU)
1105 return -ECHILD;
1106
fa3c56bb 1107 if (nfs_neg_need_reval(dir, dentry, flags))
1da177e4 1108 goto out_bad;
d69ee9b8 1109 goto out_valid_noent;
1da177e4
LT
1110 }
1111
1112 if (is_bad_inode(inode)) {
d51ac1a8
N
1113 if (flags & LOOKUP_RCU)
1114 return -ECHILD;
6de1472f
AV
1115 dfprintk(LOOKUPCACHE, "%s: %pd2 has dud inode\n",
1116 __func__, dentry);
1da177e4
LT
1117 goto out_bad;
1118 }
1119
011e2a7f 1120 if (NFS_PROTO(dir)->have_delegation(inode, FMODE_READ))
15860ab1
TM
1121 goto out_set_verifier;
1122
d51ac1a8
N
1123 if (flags & LOOKUP_RCU)
1124 return -ECHILD;
1125
1da177e4 1126 /* Force a full look up iff the parent directory has changed */
fa3c56bb
AV
1127 if (!nfs_is_exclusive_create(dir, flags) && nfs_check_verifier(dir, dentry)) {
1128 if (nfs_lookup_verify_inode(inode, flags))
1da177e4
LT
1129 goto out_zap_parent;
1130 goto out_valid;
1131 }
1132
1133 if (NFS_STALE(inode))
1134 goto out_bad;
1135
e1fb4d05
TM
1136 error = -ENOMEM;
1137 fhandle = nfs_alloc_fhandle();
1138 fattr = nfs_alloc_fattr();
1139 if (fhandle == NULL || fattr == NULL)
1140 goto out_error;
1141
14c43f76
DQ
1142 label = nfs4_label_alloc(NFS_SERVER(inode), GFP_NOWAIT);
1143 if (IS_ERR(label))
1144 goto out_error;
1145
6e0d0be7 1146 trace_nfs_lookup_revalidate_enter(dir, dentry, flags);
1775fd3e 1147 error = NFS_PROTO(dir)->lookup(dir, &dentry->d_name, fhandle, fattr, label);
6e0d0be7 1148 trace_nfs_lookup_revalidate_exit(dir, dentry, flags, error);
1da177e4
LT
1149 if (error)
1150 goto out_bad;
e1fb4d05 1151 if (nfs_compare_fh(NFS_FH(inode), fhandle))
1da177e4 1152 goto out_bad;
e1fb4d05 1153 if ((error = nfs_refresh_inode(inode, fattr)) != 0)
1da177e4
LT
1154 goto out_bad;
1155
aa9c2669
DQ
1156 nfs_setsecurity(inode, fattr, label);
1157
e1fb4d05
TM
1158 nfs_free_fattr(fattr);
1159 nfs_free_fhandle(fhandle);
14c43f76
DQ
1160 nfs4_label_free(label);
1161
15860ab1 1162out_set_verifier:
cf8ba45e 1163 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
1da177e4 1164 out_valid:
d69ee9b8
TM
1165 /* Success: notify readdir to use READDIRPLUS */
1166 nfs_advise_use_readdirplus(dir);
1167 out_valid_noent:
d51ac1a8
N
1168 if (flags & LOOKUP_RCU) {
1169 if (parent != rcu_dereference(dentry->d_parent))
1170 return -ECHILD;
1171 } else
1172 dput(parent);
6de1472f
AV
1173 dfprintk(LOOKUPCACHE, "NFS: %s(%pd2) is valid\n",
1174 __func__, dentry);
1da177e4
LT
1175 return 1;
1176out_zap_parent:
1177 nfs_zap_caches(dir);
1178 out_bad:
d51ac1a8 1179 WARN_ON(flags & LOOKUP_RCU);
c44600c9
AV
1180 nfs_free_fattr(fattr);
1181 nfs_free_fhandle(fhandle);
14c43f76 1182 nfs4_label_free(label);
a1643a92 1183 nfs_mark_for_revalidate(dir);
1da177e4
LT
1184 if (inode && S_ISDIR(inode->i_mode)) {
1185 /* Purge readdir caches. */
1186 nfs_zap_caches(inode);
a3f432bf
BF
1187 /*
1188 * We can't d_drop the root of a disconnected tree:
1189 * its d_hash is on the s_anon list and d_drop() would hide
1190 * it from shrink_dcache_for_unmount(), leading to busy
1191 * inodes on unmount and further oopses.
1192 */
1193 if (IS_ROOT(dentry))
d9e80b7d 1194 goto out_valid;
1da177e4 1195 }
13caa9fb
MS
1196 /* If we have submounts, don't unhash ! */
1197 if (check_submounts_and_drop(dentry) != 0)
1198 goto out_valid;
1199
1da177e4 1200 dput(parent);
6de1472f
AV
1201 dfprintk(LOOKUPCACHE, "NFS: %s(%pd2) is invalid\n",
1202 __func__, dentry);
1da177e4 1203 return 0;
e1fb4d05 1204out_error:
d51ac1a8 1205 WARN_ON(flags & LOOKUP_RCU);
e1fb4d05
TM
1206 nfs_free_fattr(fattr);
1207 nfs_free_fhandle(fhandle);
14c43f76 1208 nfs4_label_free(label);
e1fb4d05 1209 dput(parent);
6de1472f
AV
1210 dfprintk(LOOKUPCACHE, "NFS: %s(%pd2) lookup returned error %d\n",
1211 __func__, dentry, error);
e1fb4d05 1212 return error;
1da177e4
LT
1213}
1214
ecf3d1f1
JL
1215/*
1216 * A weaker form of d_revalidate for revalidating just the dentry->d_inode
1217 * when we don't really care about the dentry name. This is called when a
1218 * pathwalk ends on a dentry that was not found via a normal lookup in the
1219 * parent dir (e.g.: ".", "..", procfs symlinks or mountpoint traversals).
1220 *
1221 * In this situation, we just want to verify that the inode itself is OK
1222 * since the dentry might have changed on the server.
1223 */
1224static int nfs_weak_revalidate(struct dentry *dentry, unsigned int flags)
1225{
1226 int error;
1227 struct inode *inode = dentry->d_inode;
1228
1229 /*
1230 * I believe we can only get a negative dentry here in the case of a
1231 * procfs-style symlink. Just assume it's correct for now, but we may
1232 * eventually need to do something more here.
1233 */
1234 if (!inode) {
6de1472f
AV
1235 dfprintk(LOOKUPCACHE, "%s: %pd2 has negative inode\n",
1236 __func__, dentry);
ecf3d1f1
JL
1237 return 1;
1238 }
1239
1240 if (is_bad_inode(inode)) {
6de1472f
AV
1241 dfprintk(LOOKUPCACHE, "%s: %pd2 has dud inode\n",
1242 __func__, dentry);
ecf3d1f1
JL
1243 return 0;
1244 }
1245
1246 error = nfs_revalidate_inode(NFS_SERVER(inode), inode);
1247 dfprintk(LOOKUPCACHE, "NFS: %s: inode %lu is %s\n",
1248 __func__, inode->i_ino, error ? "invalid" : "valid");
1249 return !error;
1250}
1251
1da177e4
LT
1252/*
1253 * This is called from dput() when d_count is going to 0.
1254 */
fe15ce44 1255static int nfs_dentry_delete(const struct dentry *dentry)
1da177e4 1256{
6de1472f
AV
1257 dfprintk(VFS, "NFS: dentry_delete(%pd2, %x)\n",
1258 dentry, dentry->d_flags);
1da177e4 1259
77f11192
TM
1260 /* Unhash any dentry with a stale inode */
1261 if (dentry->d_inode != NULL && NFS_STALE(dentry->d_inode))
1262 return 1;
1263
1da177e4
LT
1264 if (dentry->d_flags & DCACHE_NFSFS_RENAMED) {
1265 /* Unhash it, so that ->d_iput() would be called */
1266 return 1;
1267 }
1268 if (!(dentry->d_sb->s_flags & MS_ACTIVE)) {
1269 /* Unhash it, so that ancestors of killed async unlink
1270 * files will be cleaned up during umount */
1271 return 1;
1272 }
1273 return 0;
1274
1275}
1276
1f018458 1277/* Ensure that we revalidate inode->i_nlink */
1b83d707
TM
1278static void nfs_drop_nlink(struct inode *inode)
1279{
1280 spin_lock(&inode->i_lock);
1f018458
TM
1281 /* drop the inode if we're reasonably sure this is the last link */
1282 if (inode->i_nlink == 1)
1283 clear_nlink(inode);
1284 NFS_I(inode)->cache_validity |= NFS_INO_INVALID_ATTR;
1b83d707
TM
1285 spin_unlock(&inode->i_lock);
1286}
1287
1da177e4
LT
1288/*
1289 * Called when the dentry loses inode.
1290 * We use it to clean up silly-renamed files.
1291 */
1292static void nfs_dentry_iput(struct dentry *dentry, struct inode *inode)
1293{
83672d39
NB
1294 if (S_ISDIR(inode->i_mode))
1295 /* drop any readdir cache as it could easily be old */
1296 NFS_I(inode)->cache_validity |= NFS_INO_INVALID_DATA;
1297
1da177e4 1298 if (dentry->d_flags & DCACHE_NFSFS_RENAMED) {
e4eff1a6 1299 nfs_complete_unlink(dentry, inode);
1f018458 1300 nfs_drop_nlink(inode);
1da177e4 1301 }
1da177e4
LT
1302 iput(inode);
1303}
1304
b1942c5f
AV
1305static void nfs_d_release(struct dentry *dentry)
1306{
1307 /* free cached devname value, if it survived that far */
1308 if (unlikely(dentry->d_fsdata)) {
1309 if (dentry->d_flags & DCACHE_NFSFS_RENAMED)
1310 WARN_ON(1);
1311 else
1312 kfree(dentry->d_fsdata);
1313 }
1314}
1315
f786aa90 1316const struct dentry_operations nfs_dentry_operations = {
1da177e4 1317 .d_revalidate = nfs_lookup_revalidate,
ecf3d1f1 1318 .d_weak_revalidate = nfs_weak_revalidate,
1da177e4
LT
1319 .d_delete = nfs_dentry_delete,
1320 .d_iput = nfs_dentry_iput,
36d43a43 1321 .d_automount = nfs_d_automount,
b1942c5f 1322 .d_release = nfs_d_release,
1da177e4 1323};
ddda8e0a 1324EXPORT_SYMBOL_GPL(nfs_dentry_operations);
1da177e4 1325
597d9289 1326struct dentry *nfs_lookup(struct inode *dir, struct dentry * dentry, unsigned int flags)
1da177e4
LT
1327{
1328 struct dentry *res;
565277f6 1329 struct dentry *parent;
1da177e4 1330 struct inode *inode = NULL;
e1fb4d05
TM
1331 struct nfs_fh *fhandle = NULL;
1332 struct nfs_fattr *fattr = NULL;
1775fd3e 1333 struct nfs4_label *label = NULL;
1da177e4 1334 int error;
1da177e4 1335
6de1472f 1336 dfprintk(VFS, "NFS: lookup(%pd2)\n", dentry);
91d5b470 1337 nfs_inc_stats(dir, NFSIOS_VFSLOOKUP);
1da177e4
LT
1338
1339 res = ERR_PTR(-ENAMETOOLONG);
1340 if (dentry->d_name.len > NFS_SERVER(dir)->namelen)
1341 goto out;
1342
fd684071
TM
1343 /*
1344 * If we're doing an exclusive create, optimize away the lookup
1345 * but don't hash the dentry.
1346 */
00cd8dd3 1347 if (nfs_is_exclusive_create(dir, flags)) {
fd684071
TM
1348 d_instantiate(dentry, NULL);
1349 res = NULL;
fc0f684c 1350 goto out;
fd684071 1351 }
1da177e4 1352
e1fb4d05
TM
1353 res = ERR_PTR(-ENOMEM);
1354 fhandle = nfs_alloc_fhandle();
1355 fattr = nfs_alloc_fattr();
1356 if (fhandle == NULL || fattr == NULL)
1357 goto out;
1358
14c43f76
DQ
1359 label = nfs4_label_alloc(NFS_SERVER(dir), GFP_NOWAIT);
1360 if (IS_ERR(label))
1361 goto out;
1362
565277f6
TM
1363 parent = dentry->d_parent;
1364 /* Protect against concurrent sillydeletes */
6e0d0be7 1365 trace_nfs_lookup_enter(dir, dentry, flags);
565277f6 1366 nfs_block_sillyrename(parent);
1775fd3e 1367 error = NFS_PROTO(dir)->lookup(dir, &dentry->d_name, fhandle, fattr, label);
1da177e4
LT
1368 if (error == -ENOENT)
1369 goto no_entry;
1370 if (error < 0) {
1371 res = ERR_PTR(error);
565277f6 1372 goto out_unblock_sillyrename;
1da177e4 1373 }
1775fd3e 1374 inode = nfs_fhget(dentry->d_sb, fhandle, fattr, label);
bf0c84f1 1375 res = ERR_CAST(inode);
03f28e3a 1376 if (IS_ERR(res))
565277f6 1377 goto out_unblock_sillyrename;
54ceac45 1378
d69ee9b8
TM
1379 /* Success: notify readdir to use READDIRPLUS */
1380 nfs_advise_use_readdirplus(dir);
1381
1da177e4 1382no_entry:
54ceac45 1383 res = d_materialise_unique(dentry, inode);
9eaef27b
TM
1384 if (res != NULL) {
1385 if (IS_ERR(res))
565277f6 1386 goto out_unblock_sillyrename;
1da177e4 1387 dentry = res;
9eaef27b 1388 }
1da177e4 1389 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
565277f6
TM
1390out_unblock_sillyrename:
1391 nfs_unblock_sillyrename(parent);
6e0d0be7 1392 trace_nfs_lookup_exit(dir, dentry, flags, error);
14c43f76 1393 nfs4_label_free(label);
1da177e4 1394out:
e1fb4d05
TM
1395 nfs_free_fattr(fattr);
1396 nfs_free_fhandle(fhandle);
1da177e4
LT
1397 return res;
1398}
ddda8e0a 1399EXPORT_SYMBOL_GPL(nfs_lookup);
1da177e4 1400
89d77c8f 1401#if IS_ENABLED(CONFIG_NFS_V4)
0b728e19 1402static int nfs4_lookup_revalidate(struct dentry *, unsigned int);
1da177e4 1403
f786aa90 1404const struct dentry_operations nfs4_dentry_operations = {
0ef97dcf 1405 .d_revalidate = nfs4_lookup_revalidate,
1da177e4
LT
1406 .d_delete = nfs_dentry_delete,
1407 .d_iput = nfs_dentry_iput,
36d43a43 1408 .d_automount = nfs_d_automount,
b1942c5f 1409 .d_release = nfs_d_release,
1da177e4 1410};
89d77c8f 1411EXPORT_SYMBOL_GPL(nfs4_dentry_operations);
1da177e4 1412
8a5e929d
AV
1413static fmode_t flags_to_mode(int flags)
1414{
1415 fmode_t res = (__force fmode_t)flags & FMODE_EXEC;
1416 if ((flags & O_ACCMODE) != O_WRONLY)
1417 res |= FMODE_READ;
1418 if ((flags & O_ACCMODE) != O_RDONLY)
1419 res |= FMODE_WRITE;
1420 return res;
1421}
1422
51141598 1423static struct nfs_open_context *create_nfs_open_context(struct dentry *dentry, int open_flags)
cd9a1c0e 1424{
5ede7b1c 1425 return alloc_nfs_open_context(dentry, flags_to_mode(open_flags));
cd9a1c0e
TM
1426}
1427
1428static int do_open(struct inode *inode, struct file *filp)
1429{
f1fe29b4 1430 nfs_fscache_open_file(inode, filp);
cd9a1c0e
TM
1431 return 0;
1432}
1433
d9585277
AV
1434static int nfs_finish_open(struct nfs_open_context *ctx,
1435 struct dentry *dentry,
30d90494 1436 struct file *file, unsigned open_flags,
d9585277 1437 int *opened)
cd9a1c0e 1438{
0dd2b474
MS
1439 int err;
1440
01c919ab
MS
1441 if ((open_flags & (O_CREAT | O_EXCL)) == (O_CREAT | O_EXCL))
1442 *opened |= FILE_CREATED;
1443
30d90494
AV
1444 err = finish_open(file, dentry, do_open, opened);
1445 if (err)
d9585277 1446 goto out;
30d90494 1447 nfs_file_set_open_context(file, ctx);
0dd2b474 1448
cd9a1c0e 1449out:
d9585277 1450 return err;
cd9a1c0e
TM
1451}
1452
73a79706
BS
1453int nfs_atomic_open(struct inode *dir, struct dentry *dentry,
1454 struct file *file, unsigned open_flags,
1455 umode_t mode, int *opened)
1da177e4 1456{
cd9a1c0e 1457 struct nfs_open_context *ctx;
0dd2b474
MS
1458 struct dentry *res;
1459 struct iattr attr = { .ia_valid = ATTR_OPEN };
f46e0bd3 1460 struct inode *inode;
1472b83e 1461 unsigned int lookup_flags = 0;
898f635c 1462 int err;
1da177e4 1463
0dd2b474
MS
1464 /* Expect a negative dentry */
1465 BUG_ON(dentry->d_inode);
1466
1e8968c5 1467 dfprintk(VFS, "NFS: atomic_open(%s/%lu), %pd\n",
6de1472f 1468 dir->i_sb->s_id, dir->i_ino, dentry);
1e7cb3dc 1469
9597c13b
JL
1470 err = nfs_check_flags(open_flags);
1471 if (err)
1472 return err;
1473
0dd2b474
MS
1474 /* NFS only supports OPEN on regular files */
1475 if ((open_flags & O_DIRECTORY)) {
0dd2b474
MS
1476 if (!d_unhashed(dentry)) {
1477 /*
1478 * Hashed negative dentry with O_DIRECTORY: dentry was
1479 * revalidated and is fine, no need to perform lookup
1480 * again
1481 */
d9585277 1482 return -ENOENT;
0dd2b474 1483 }
1472b83e 1484 lookup_flags = LOOKUP_OPEN|LOOKUP_DIRECTORY;
1da177e4 1485 goto no_open;
02a913a7 1486 }
1da177e4 1487
0dd2b474 1488 if (dentry->d_name.len > NFS_SERVER(dir)->namelen)
d9585277 1489 return -ENAMETOOLONG;
cd9a1c0e 1490
0dd2b474 1491 if (open_flags & O_CREAT) {
536e43d1 1492 attr.ia_valid |= ATTR_MODE;
0dd2b474
MS
1493 attr.ia_mode = mode & ~current_umask();
1494 }
536e43d1
TM
1495 if (open_flags & O_TRUNC) {
1496 attr.ia_valid |= ATTR_SIZE;
1497 attr.ia_size = 0;
cd9a1c0e
TM
1498 }
1499
0dd2b474
MS
1500 ctx = create_nfs_open_context(dentry, open_flags);
1501 err = PTR_ERR(ctx);
1502 if (IS_ERR(ctx))
d9585277 1503 goto out;
0dd2b474 1504
6e0d0be7 1505 trace_nfs_atomic_open_enter(dir, ctx, open_flags);
f46e0bd3 1506 nfs_block_sillyrename(dentry->d_parent);
5bc2afc2 1507 inode = NFS_PROTO(dir)->open_context(dir, ctx, open_flags, &attr, opened);
275bb307 1508 nfs_unblock_sillyrename(dentry->d_parent);
f46e0bd3 1509 if (IS_ERR(inode)) {
0dd2b474 1510 err = PTR_ERR(inode);
6e0d0be7 1511 trace_nfs_atomic_open_exit(dir, ctx, open_flags, err);
2d9db750 1512 put_nfs_open_context(ctx);
0dd2b474
MS
1513 switch (err) {
1514 case -ENOENT:
275bb307 1515 d_drop(dentry);
0dd2b474
MS
1516 d_add(dentry, NULL);
1517 break;
1518 case -EISDIR:
1519 case -ENOTDIR:
1520 goto no_open;
1521 case -ELOOP:
1522 if (!(open_flags & O_NOFOLLOW))
6f926b5b 1523 goto no_open;
0dd2b474 1524 break;
1da177e4 1525 /* case -EINVAL: */
0dd2b474
MS
1526 default:
1527 break;
1da177e4 1528 }
d9585277 1529 goto out;
cd9a1c0e 1530 }
0dd2b474 1531
275bb307 1532 err = nfs_finish_open(ctx, ctx->dentry, file, open_flags, opened);
6e0d0be7 1533 trace_nfs_atomic_open_exit(dir, ctx, open_flags, err);
2d9db750 1534 put_nfs_open_context(ctx);
d9585277
AV
1535out:
1536 return err;
0dd2b474 1537
1da177e4 1538no_open:
1472b83e 1539 res = nfs_lookup(dir, dentry, lookup_flags);
0dd2b474
MS
1540 err = PTR_ERR(res);
1541 if (IS_ERR(res))
d9585277 1542 goto out;
0dd2b474 1543
e45198a6 1544 return finish_no_open(file, res);
1da177e4 1545}
89d77c8f 1546EXPORT_SYMBOL_GPL(nfs_atomic_open);
1da177e4 1547
0b728e19 1548static int nfs4_lookup_revalidate(struct dentry *dentry, unsigned int flags)
1da177e4 1549{
657e94b6 1550 struct inode *inode;
50de348c 1551 int ret = 0;
1da177e4 1552
fa3c56bb 1553 if (!(flags & LOOKUP_OPEN) || (flags & LOOKUP_DIRECTORY))
eda72afb
MS
1554 goto no_open;
1555 if (d_mountpoint(dentry))
5584c306 1556 goto no_open;
49f9a0fa
TM
1557 if (NFS_SB(dentry->d_sb)->caps & NFS_CAP_ATOMIC_OPEN_V1)
1558 goto no_open;
2b484297 1559
eda72afb 1560 inode = dentry->d_inode;
2b484297 1561
1da177e4
LT
1562 /* We can't create new files in nfs_open_revalidate(), so we
1563 * optimize away revalidation of negative dentries.
1564 */
216d5d06 1565 if (inode == NULL) {
49317a7f
N
1566 struct dentry *parent;
1567 struct inode *dir;
1568
d51ac1a8
N
1569 if (flags & LOOKUP_RCU)
1570 return -ECHILD;
1571
49317a7f
N
1572 parent = dget_parent(dentry);
1573 dir = parent->d_inode;
fa3c56bb 1574 if (!nfs_neg_need_reval(dir, dentry, flags))
216d5d06 1575 ret = 1;
49317a7f 1576 dput(parent);
1da177e4 1577 goto out;
216d5d06
TM
1578 }
1579
1da177e4
LT
1580 /* NFS only supports OPEN on regular files */
1581 if (!S_ISREG(inode->i_mode))
49317a7f 1582 goto no_open;
1da177e4 1583 /* We cannot do exclusive creation on a positive dentry */
fa3c56bb 1584 if (flags & LOOKUP_EXCL)
49317a7f 1585 goto no_open;
1da177e4 1586
0ef97dcf
MS
1587 /* Let f_op->open() actually open (and revalidate) the file */
1588 ret = 1;
536e43d1 1589
1da177e4 1590out:
1da177e4 1591 return ret;
535918f1 1592
5584c306 1593no_open:
0b728e19 1594 return nfs_lookup_revalidate(dentry, flags);
c0204fd2
TM
1595}
1596
1da177e4
LT
1597#endif /* CONFIG_NFSV4 */
1598
1da177e4
LT
1599/*
1600 * Code common to create, mkdir, and mknod.
1601 */
1602int nfs_instantiate(struct dentry *dentry, struct nfs_fh *fhandle,
1775fd3e
DQ
1603 struct nfs_fattr *fattr,
1604 struct nfs4_label *label)
1da177e4 1605{
fab728e1
TM
1606 struct dentry *parent = dget_parent(dentry);
1607 struct inode *dir = parent->d_inode;
1da177e4
LT
1608 struct inode *inode;
1609 int error = -EACCES;
1610
fab728e1
TM
1611 d_drop(dentry);
1612
1da177e4
LT
1613 /* We may have been initialized further down */
1614 if (dentry->d_inode)
fab728e1 1615 goto out;
1da177e4 1616 if (fhandle->size == 0) {
1775fd3e 1617 error = NFS_PROTO(dir)->lookup(dir, &dentry->d_name, fhandle, fattr, NULL);
1da177e4 1618 if (error)
fab728e1 1619 goto out_error;
1da177e4 1620 }
5724ab37 1621 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
1da177e4
LT
1622 if (!(fattr->valid & NFS_ATTR_FATTR)) {
1623 struct nfs_server *server = NFS_SB(dentry->d_sb);
1775fd3e 1624 error = server->nfs_client->rpc_ops->getattr(server, fhandle, fattr, NULL);
1da177e4 1625 if (error < 0)
fab728e1 1626 goto out_error;
1da177e4 1627 }
1775fd3e 1628 inode = nfs_fhget(dentry->d_sb, fhandle, fattr, label);
03f28e3a
TM
1629 error = PTR_ERR(inode);
1630 if (IS_ERR(inode))
fab728e1
TM
1631 goto out_error;
1632 d_add(dentry, inode);
1633out:
1634 dput(parent);
1da177e4 1635 return 0;
fab728e1
TM
1636out_error:
1637 nfs_mark_for_revalidate(dir);
1638 dput(parent);
1639 return error;
1da177e4 1640}
ddda8e0a 1641EXPORT_SYMBOL_GPL(nfs_instantiate);
1da177e4
LT
1642
1643/*
1644 * Following a failed create operation, we drop the dentry rather
1645 * than retain a negative dentry. This avoids a problem in the event
1646 * that the operation succeeded on the server, but an error in the
1647 * reply path made it appear to have failed.
1648 */
597d9289 1649int nfs_create(struct inode *dir, struct dentry *dentry,
ebfc3b49 1650 umode_t mode, bool excl)
1da177e4
LT
1651{
1652 struct iattr attr;
ebfc3b49 1653 int open_flags = excl ? O_CREAT | O_EXCL : O_CREAT;
1da177e4 1654 int error;
1da177e4 1655
1e8968c5 1656 dfprintk(VFS, "NFS: create(%s/%lu), %pd\n",
6de1472f 1657 dir->i_sb->s_id, dir->i_ino, dentry);
1da177e4
LT
1658
1659 attr.ia_mode = mode;
1660 attr.ia_valid = ATTR_MODE;
1661
8b0ad3d4 1662 trace_nfs_create_enter(dir, dentry, open_flags);
8867fe58 1663 error = NFS_PROTO(dir)->create(dir, dentry, &attr, open_flags);
8b0ad3d4 1664 trace_nfs_create_exit(dir, dentry, open_flags, error);
1da177e4
LT
1665 if (error != 0)
1666 goto out_err;
1da177e4
LT
1667 return 0;
1668out_err:
1da177e4
LT
1669 d_drop(dentry);
1670 return error;
1671}
ddda8e0a 1672EXPORT_SYMBOL_GPL(nfs_create);
1da177e4
LT
1673
1674/*
1675 * See comments for nfs_proc_create regarding failed operations.
1676 */
597d9289 1677int
1a67aafb 1678nfs_mknod(struct inode *dir, struct dentry *dentry, umode_t mode, dev_t rdev)
1da177e4
LT
1679{
1680 struct iattr attr;
1681 int status;
1682
1e8968c5 1683 dfprintk(VFS, "NFS: mknod(%s/%lu), %pd\n",
6de1472f 1684 dir->i_sb->s_id, dir->i_ino, dentry);
1da177e4
LT
1685
1686 if (!new_valid_dev(rdev))
1687 return -EINVAL;
1688
1689 attr.ia_mode = mode;
1690 attr.ia_valid = ATTR_MODE;
1691
1ca42382 1692 trace_nfs_mknod_enter(dir, dentry);
1da177e4 1693 status = NFS_PROTO(dir)->mknod(dir, dentry, &attr, rdev);
1ca42382 1694 trace_nfs_mknod_exit(dir, dentry, status);
1da177e4
LT
1695 if (status != 0)
1696 goto out_err;
1da177e4
LT
1697 return 0;
1698out_err:
1da177e4
LT
1699 d_drop(dentry);
1700 return status;
1701}
ddda8e0a 1702EXPORT_SYMBOL_GPL(nfs_mknod);
1da177e4
LT
1703
1704/*
1705 * See comments for nfs_proc_create regarding failed operations.
1706 */
597d9289 1707int nfs_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode)
1da177e4
LT
1708{
1709 struct iattr attr;
1710 int error;
1711
1e8968c5 1712 dfprintk(VFS, "NFS: mkdir(%s/%lu), %pd\n",
6de1472f 1713 dir->i_sb->s_id, dir->i_ino, dentry);
1da177e4
LT
1714
1715 attr.ia_valid = ATTR_MODE;
1716 attr.ia_mode = mode | S_IFDIR;
1717
1ca42382 1718 trace_nfs_mkdir_enter(dir, dentry);
1da177e4 1719 error = NFS_PROTO(dir)->mkdir(dir, dentry, &attr);
1ca42382 1720 trace_nfs_mkdir_exit(dir, dentry, error);
1da177e4
LT
1721 if (error != 0)
1722 goto out_err;
1da177e4
LT
1723 return 0;
1724out_err:
1725 d_drop(dentry);
1da177e4
LT
1726 return error;
1727}
ddda8e0a 1728EXPORT_SYMBOL_GPL(nfs_mkdir);
1da177e4 1729
d45b9d8b
TM
1730static void nfs_dentry_handle_enoent(struct dentry *dentry)
1731{
1732 if (dentry->d_inode != NULL && !d_unhashed(dentry))
1733 d_delete(dentry);
1734}
1735
597d9289 1736int nfs_rmdir(struct inode *dir, struct dentry *dentry)
1da177e4
LT
1737{
1738 int error;
1739
1e8968c5 1740 dfprintk(VFS, "NFS: rmdir(%s/%lu), %pd\n",
6de1472f 1741 dir->i_sb->s_id, dir->i_ino, dentry);
1da177e4 1742
1ca42382 1743 trace_nfs_rmdir_enter(dir, dentry);
ba6c0592
TM
1744 if (dentry->d_inode) {
1745 nfs_wait_on_sillyrename(dentry);
1746 error = NFS_PROTO(dir)->rmdir(dir, &dentry->d_name);
1747 /* Ensure the VFS deletes this inode */
1748 switch (error) {
1749 case 0:
1750 clear_nlink(dentry->d_inode);
1751 break;
1752 case -ENOENT:
1753 nfs_dentry_handle_enoent(dentry);
1754 }
1755 } else
1756 error = NFS_PROTO(dir)->rmdir(dir, &dentry->d_name);
1ca42382 1757 trace_nfs_rmdir_exit(dir, dentry, error);
1da177e4
LT
1758
1759 return error;
1760}
ddda8e0a 1761EXPORT_SYMBOL_GPL(nfs_rmdir);
1da177e4 1762
1da177e4
LT
1763/*
1764 * Remove a file after making sure there are no pending writes,
1765 * and after checking that the file has only one user.
1766 *
1767 * We invalidate the attribute cache and free the inode prior to the operation
1768 * to avoid possible races if the server reuses the inode.
1769 */
1770static int nfs_safe_remove(struct dentry *dentry)
1771{
1772 struct inode *dir = dentry->d_parent->d_inode;
1773 struct inode *inode = dentry->d_inode;
1774 int error = -EBUSY;
1775
6de1472f 1776 dfprintk(VFS, "NFS: safe_remove(%pd2)\n", dentry);
1da177e4
LT
1777
1778 /* If the dentry was sillyrenamed, we simply call d_delete() */
1779 if (dentry->d_flags & DCACHE_NFSFS_RENAMED) {
1780 error = 0;
1781 goto out;
1782 }
1783
1ca42382 1784 trace_nfs_remove_enter(dir, dentry);
1da177e4 1785 if (inode != NULL) {
57ec14c5 1786 NFS_PROTO(inode)->return_delegation(inode);
1da177e4 1787 error = NFS_PROTO(dir)->remove(dir, &dentry->d_name);
1da177e4 1788 if (error == 0)
1b83d707 1789 nfs_drop_nlink(inode);
1da177e4
LT
1790 } else
1791 error = NFS_PROTO(dir)->remove(dir, &dentry->d_name);
d45b9d8b
TM
1792 if (error == -ENOENT)
1793 nfs_dentry_handle_enoent(dentry);
1ca42382 1794 trace_nfs_remove_exit(dir, dentry, error);
1da177e4
LT
1795out:
1796 return error;
1797}
1798
1799/* We do silly rename. In case sillyrename() returns -EBUSY, the inode
1800 * belongs to an active ".nfs..." file and we return -EBUSY.
1801 *
1802 * If sillyrename() returns 0, we do nothing, otherwise we unlink.
1803 */
597d9289 1804int nfs_unlink(struct inode *dir, struct dentry *dentry)
1da177e4
LT
1805{
1806 int error;
1807 int need_rehash = 0;
1808
1e8968c5 1809 dfprintk(VFS, "NFS: unlink(%s/%lu, %pd)\n", dir->i_sb->s_id,
6de1472f 1810 dir->i_ino, dentry);
1da177e4 1811
1ca42382 1812 trace_nfs_unlink_enter(dir, dentry);
1da177e4 1813 spin_lock(&dentry->d_lock);
84d08fa8 1814 if (d_count(dentry) > 1) {
1da177e4 1815 spin_unlock(&dentry->d_lock);
ccfeb506
TM
1816 /* Start asynchronous writeout of the inode */
1817 write_inode_now(dentry->d_inode, 0);
1da177e4 1818 error = nfs_sillyrename(dir, dentry);
1ca42382 1819 goto out;
1da177e4
LT
1820 }
1821 if (!d_unhashed(dentry)) {
1822 __d_drop(dentry);
1823 need_rehash = 1;
1824 }
1825 spin_unlock(&dentry->d_lock);
1da177e4 1826 error = nfs_safe_remove(dentry);
d45b9d8b 1827 if (!error || error == -ENOENT) {
1da177e4
LT
1828 nfs_set_verifier(dentry, nfs_save_change_attribute(dir));
1829 } else if (need_rehash)
1830 d_rehash(dentry);
1ca42382
TM
1831out:
1832 trace_nfs_unlink_exit(dir, dentry, error);
1da177e4
LT
1833 return error;
1834}
ddda8e0a 1835EXPORT_SYMBOL_GPL(nfs_unlink);
1da177e4 1836
873101b3
CL
1837/*
1838 * To create a symbolic link, most file systems instantiate a new inode,
1839 * add a page to it containing the path, then write it out to the disk
1840 * using prepare_write/commit_write.
1841 *
1842 * Unfortunately the NFS client can't create the in-core inode first
1843 * because it needs a file handle to create an in-core inode (see
1844 * fs/nfs/inode.c:nfs_fhget). We only have a file handle *after* the
1845 * symlink request has completed on the server.
1846 *
1847 * So instead we allocate a raw page, copy the symname into it, then do
1848 * the SYMLINK request with the page as the buffer. If it succeeds, we
1849 * now have a new file handle and can instantiate an in-core NFS inode
1850 * and move the raw page into its mapping.
1851 */
597d9289 1852int nfs_symlink(struct inode *dir, struct dentry *dentry, const char *symname)
1da177e4 1853{
873101b3
CL
1854 struct page *page;
1855 char *kaddr;
1da177e4 1856 struct iattr attr;
873101b3 1857 unsigned int pathlen = strlen(symname);
1da177e4
LT
1858 int error;
1859
1e8968c5 1860 dfprintk(VFS, "NFS: symlink(%s/%lu, %pd, %s)\n", dir->i_sb->s_id,
6de1472f 1861 dir->i_ino, dentry, symname);
1da177e4 1862
873101b3
CL
1863 if (pathlen > PAGE_SIZE)
1864 return -ENAMETOOLONG;
1da177e4 1865
873101b3
CL
1866 attr.ia_mode = S_IFLNK | S_IRWXUGO;
1867 attr.ia_valid = ATTR_MODE;
1da177e4 1868
83d93f22 1869 page = alloc_page(GFP_HIGHUSER);
76566991 1870 if (!page)
873101b3 1871 return -ENOMEM;
873101b3 1872
2b86ce2d 1873 kaddr = kmap_atomic(page);
873101b3
CL
1874 memcpy(kaddr, symname, pathlen);
1875 if (pathlen < PAGE_SIZE)
1876 memset(kaddr + pathlen, 0, PAGE_SIZE - pathlen);
2b86ce2d 1877 kunmap_atomic(kaddr);
873101b3 1878
1ca42382 1879 trace_nfs_symlink_enter(dir, dentry);
94a6d753 1880 error = NFS_PROTO(dir)->symlink(dir, dentry, page, pathlen, &attr);
1ca42382 1881 trace_nfs_symlink_exit(dir, dentry, error);
873101b3 1882 if (error != 0) {
1e8968c5 1883 dfprintk(VFS, "NFS: symlink(%s/%lu, %pd, %s) error %d\n",
873101b3 1884 dir->i_sb->s_id, dir->i_ino,
6de1472f 1885 dentry, symname, error);
1da177e4 1886 d_drop(dentry);
873101b3 1887 __free_page(page);
873101b3
CL
1888 return error;
1889 }
1890
1891 /*
1892 * No big deal if we can't add this page to the page cache here.
1893 * READLINK will get the missing page from the server if needed.
1894 */
a0b8cab3 1895 if (!add_to_page_cache_lru(page, dentry->d_inode->i_mapping, 0,
873101b3 1896 GFP_KERNEL)) {
873101b3
CL
1897 SetPageUptodate(page);
1898 unlock_page(page);
a0b54add
RA
1899 /*
1900 * add_to_page_cache_lru() grabs an extra page refcount.
1901 * Drop it here to avoid leaking this page later.
1902 */
1903 page_cache_release(page);
873101b3
CL
1904 } else
1905 __free_page(page);
1906
873101b3 1907 return 0;
1da177e4 1908}
ddda8e0a 1909EXPORT_SYMBOL_GPL(nfs_symlink);
1da177e4 1910
597d9289 1911int
1da177e4
LT
1912nfs_link(struct dentry *old_dentry, struct inode *dir, struct dentry *dentry)
1913{
1914 struct inode *inode = old_dentry->d_inode;
1915 int error;
1916
6de1472f
AV
1917 dfprintk(VFS, "NFS: link(%pd2 -> %pd2)\n",
1918 old_dentry, dentry);
1da177e4 1919
1fd1085b 1920 trace_nfs_link_enter(inode, dir, dentry);
57ec14c5 1921 NFS_PROTO(inode)->return_delegation(inode);
9a3936aa 1922
9697d234 1923 d_drop(dentry);
1da177e4 1924 error = NFS_PROTO(dir)->link(inode, dir, &dentry->d_name);
cf809556 1925 if (error == 0) {
7de9c6ee 1926 ihold(inode);
9697d234 1927 d_add(dentry, inode);
cf809556 1928 }
1fd1085b 1929 trace_nfs_link_exit(inode, dir, dentry, error);
1da177e4
LT
1930 return error;
1931}
ddda8e0a 1932EXPORT_SYMBOL_GPL(nfs_link);
1da177e4
LT
1933
1934/*
1935 * RENAME
1936 * FIXME: Some nfsds, like the Linux user space nfsd, may generate a
1937 * different file handle for the same inode after a rename (e.g. when
1938 * moving to a different directory). A fail-safe method to do so would
1939 * be to look up old_dir/old_name, create a link to new_dir/new_name and
1940 * rename the old file using the sillyrename stuff. This way, the original
1941 * file in old_dir will go away when the last process iput()s the inode.
1942 *
1943 * FIXED.
1944 *
1945 * It actually works quite well. One needs to have the possibility for
1946 * at least one ".nfs..." file in each directory the file ever gets
1947 * moved or linked to which happens automagically with the new
1948 * implementation that only depends on the dcache stuff instead of
1949 * using the inode layer
1950 *
1951 * Unfortunately, things are a little more complicated than indicated
1952 * above. For a cross-directory move, we want to make sure we can get
1953 * rid of the old inode after the operation. This means there must be
1954 * no pending writes (if it's a file), and the use count must be 1.
1955 * If these conditions are met, we can drop the dentries before doing
1956 * the rename.
1957 */
597d9289 1958int nfs_rename(struct inode *old_dir, struct dentry *old_dentry,
1da177e4
LT
1959 struct inode *new_dir, struct dentry *new_dentry)
1960{
1961 struct inode *old_inode = old_dentry->d_inode;
1962 struct inode *new_inode = new_dentry->d_inode;
1963 struct dentry *dentry = NULL, *rehash = NULL;
80a491fd 1964 struct rpc_task *task;
1da177e4
LT
1965 int error = -EBUSY;
1966
6de1472f
AV
1967 dfprintk(VFS, "NFS: rename(%pd2 -> %pd2, ct=%d)\n",
1968 old_dentry, new_dentry,
84d08fa8 1969 d_count(new_dentry));
1da177e4 1970
70ded201 1971 trace_nfs_rename_enter(old_dir, old_dentry, new_dir, new_dentry);
1da177e4 1972 /*
28f79a1a
MS
1973 * For non-directories, check whether the target is busy and if so,
1974 * make a copy of the dentry and then do a silly-rename. If the
1975 * silly-rename succeeds, the copied dentry is hashed and becomes
1976 * the new target.
1da177e4 1977 */
27226104
MS
1978 if (new_inode && !S_ISDIR(new_inode->i_mode)) {
1979 /*
1980 * To prevent any new references to the target during the
1981 * rename, we unhash the dentry in advance.
1982 */
1983 if (!d_unhashed(new_dentry)) {
1984 d_drop(new_dentry);
1985 rehash = new_dentry;
1986 }
1da177e4 1987
84d08fa8 1988 if (d_count(new_dentry) > 2) {
27226104
MS
1989 int err;
1990
1991 /* copy the target dentry's name */
1992 dentry = d_alloc(new_dentry->d_parent,
1993 &new_dentry->d_name);
1994 if (!dentry)
1995 goto out;
1996
1997 /* silly-rename the existing target ... */
1998 err = nfs_sillyrename(new_dir, new_dentry);
24e93025 1999 if (err)
27226104 2000 goto out;
24e93025
MS
2001
2002 new_dentry = dentry;
56335936 2003 rehash = NULL;
24e93025 2004 new_inode = NULL;
27226104 2005 }
b1e4adf4 2006 }
1da177e4 2007
57ec14c5 2008 NFS_PROTO(old_inode)->return_delegation(old_inode);
b1e4adf4 2009 if (new_inode != NULL)
57ec14c5 2010 NFS_PROTO(new_inode)->return_delegation(new_inode);
1da177e4 2011
80a491fd
JL
2012 task = nfs_async_rename(old_dir, new_dir, old_dentry, new_dentry, NULL);
2013 if (IS_ERR(task)) {
2014 error = PTR_ERR(task);
2015 goto out;
2016 }
2017
2018 error = rpc_wait_for_completion_task(task);
2019 if (error == 0)
2020 error = task->tk_status;
2021 rpc_put_task(task);
5ba7cc48 2022 nfs_mark_for_revalidate(old_inode);
1da177e4
LT
2023out:
2024 if (rehash)
2025 d_rehash(rehash);
70ded201
TM
2026 trace_nfs_rename_exit(old_dir, old_dentry,
2027 new_dir, new_dentry, error);
1da177e4 2028 if (!error) {
b1e4adf4
TM
2029 if (new_inode != NULL)
2030 nfs_drop_nlink(new_inode);
349457cc 2031 d_move(old_dentry, new_dentry);
8fb559f8
CL
2032 nfs_set_verifier(new_dentry,
2033 nfs_save_change_attribute(new_dir));
d45b9d8b
TM
2034 } else if (error == -ENOENT)
2035 nfs_dentry_handle_enoent(old_dentry);
1da177e4
LT
2036
2037 /* new dentry created? */
2038 if (dentry)
2039 dput(dentry);
1da177e4
LT
2040 return error;
2041}
ddda8e0a 2042EXPORT_SYMBOL_GPL(nfs_rename);
1da177e4 2043
cfcea3e8
TM
2044static DEFINE_SPINLOCK(nfs_access_lru_lock);
2045static LIST_HEAD(nfs_access_lru_list);
2046static atomic_long_t nfs_access_nr_entries;
2047
3a505845
TM
2048static unsigned long nfs_access_max_cachesize = ULONG_MAX;
2049module_param(nfs_access_max_cachesize, ulong, 0644);
2050MODULE_PARM_DESC(nfs_access_max_cachesize, "NFS access maximum total cache length");
2051
1c3c07e9
TM
2052static void nfs_access_free_entry(struct nfs_access_entry *entry)
2053{
2054 put_rpccred(entry->cred);
2055 kfree(entry);
4e857c58 2056 smp_mb__before_atomic();
cfcea3e8 2057 atomic_long_dec(&nfs_access_nr_entries);
4e857c58 2058 smp_mb__after_atomic();
1c3c07e9
TM
2059}
2060
1a81bb8a
TM
2061static void nfs_access_free_list(struct list_head *head)
2062{
2063 struct nfs_access_entry *cache;
2064
2065 while (!list_empty(head)) {
2066 cache = list_entry(head->next, struct nfs_access_entry, lru);
2067 list_del(&cache->lru);
2068 nfs_access_free_entry(cache);
2069 }
2070}
2071
3a505845
TM
2072static unsigned long
2073nfs_do_access_cache_scan(unsigned int nr_to_scan)
979df72e
TM
2074{
2075 LIST_HEAD(head);
aa510da5 2076 struct nfs_inode *nfsi, *next;
979df72e 2077 struct nfs_access_entry *cache;
1ab6c499 2078 long freed = 0;
979df72e 2079
a50f7951 2080 spin_lock(&nfs_access_lru_lock);
aa510da5 2081 list_for_each_entry_safe(nfsi, next, &nfs_access_lru_list, access_cache_inode_lru) {
979df72e
TM
2082 struct inode *inode;
2083
2084 if (nr_to_scan-- == 0)
2085 break;
9c7e7e23 2086 inode = &nfsi->vfs_inode;
979df72e
TM
2087 spin_lock(&inode->i_lock);
2088 if (list_empty(&nfsi->access_cache_entry_lru))
2089 goto remove_lru_entry;
2090 cache = list_entry(nfsi->access_cache_entry_lru.next,
2091 struct nfs_access_entry, lru);
2092 list_move(&cache->lru, &head);
2093 rb_erase(&cache->rb_node, &nfsi->access_cache);
1ab6c499 2094 freed++;
979df72e
TM
2095 if (!list_empty(&nfsi->access_cache_entry_lru))
2096 list_move_tail(&nfsi->access_cache_inode_lru,
2097 &nfs_access_lru_list);
2098 else {
2099remove_lru_entry:
2100 list_del_init(&nfsi->access_cache_inode_lru);
4e857c58 2101 smp_mb__before_atomic();
979df72e 2102 clear_bit(NFS_INO_ACL_LRU_SET, &nfsi->flags);
4e857c58 2103 smp_mb__after_atomic();
979df72e 2104 }
59844a9b 2105 spin_unlock(&inode->i_lock);
979df72e
TM
2106 }
2107 spin_unlock(&nfs_access_lru_lock);
1a81bb8a 2108 nfs_access_free_list(&head);
1ab6c499
DC
2109 return freed;
2110}
2111
3a505845
TM
2112unsigned long
2113nfs_access_cache_scan(struct shrinker *shrink, struct shrink_control *sc)
2114{
2115 int nr_to_scan = sc->nr_to_scan;
2116 gfp_t gfp_mask = sc->gfp_mask;
2117
2118 if ((gfp_mask & GFP_KERNEL) != GFP_KERNEL)
2119 return SHRINK_STOP;
2120 return nfs_do_access_cache_scan(nr_to_scan);
2121}
2122
2123
1ab6c499
DC
2124unsigned long
2125nfs_access_cache_count(struct shrinker *shrink, struct shrink_control *sc)
2126{
55f841ce 2127 return vfs_pressure_ratio(atomic_long_read(&nfs_access_nr_entries));
979df72e
TM
2128}
2129
3a505845
TM
2130static void
2131nfs_access_cache_enforce_limit(void)
2132{
2133 long nr_entries = atomic_long_read(&nfs_access_nr_entries);
2134 unsigned long diff;
2135 unsigned int nr_to_scan;
2136
2137 if (nr_entries < 0 || nr_entries <= nfs_access_max_cachesize)
2138 return;
2139 nr_to_scan = 100;
2140 diff = nr_entries - nfs_access_max_cachesize;
2141 if (diff < nr_to_scan)
2142 nr_to_scan = diff;
2143 nfs_do_access_cache_scan(nr_to_scan);
2144}
2145
1a81bb8a 2146static void __nfs_access_zap_cache(struct nfs_inode *nfsi, struct list_head *head)
1da177e4 2147{
1c3c07e9 2148 struct rb_root *root_node = &nfsi->access_cache;
1a81bb8a 2149 struct rb_node *n;
1c3c07e9
TM
2150 struct nfs_access_entry *entry;
2151
2152 /* Unhook entries from the cache */
2153 while ((n = rb_first(root_node)) != NULL) {
2154 entry = rb_entry(n, struct nfs_access_entry, rb_node);
2155 rb_erase(n, root_node);
1a81bb8a 2156 list_move(&entry->lru, head);
1c3c07e9
TM
2157 }
2158 nfsi->cache_validity &= ~NFS_INO_INVALID_ACCESS;
1da177e4
LT
2159}
2160
1c3c07e9 2161void nfs_access_zap_cache(struct inode *inode)
1da177e4 2162{
1a81bb8a
TM
2163 LIST_HEAD(head);
2164
2165 if (test_bit(NFS_INO_ACL_LRU_SET, &NFS_I(inode)->flags) == 0)
2166 return;
cfcea3e8 2167 /* Remove from global LRU init */
1a81bb8a
TM
2168 spin_lock(&nfs_access_lru_lock);
2169 if (test_and_clear_bit(NFS_INO_ACL_LRU_SET, &NFS_I(inode)->flags))
cfcea3e8 2170 list_del_init(&NFS_I(inode)->access_cache_inode_lru);
cfcea3e8 2171
1c3c07e9 2172 spin_lock(&inode->i_lock);
1a81bb8a
TM
2173 __nfs_access_zap_cache(NFS_I(inode), &head);
2174 spin_unlock(&inode->i_lock);
2175 spin_unlock(&nfs_access_lru_lock);
2176 nfs_access_free_list(&head);
1c3c07e9 2177}
1c606fb7 2178EXPORT_SYMBOL_GPL(nfs_access_zap_cache);
1da177e4 2179
1c3c07e9
TM
2180static struct nfs_access_entry *nfs_access_search_rbtree(struct inode *inode, struct rpc_cred *cred)
2181{
2182 struct rb_node *n = NFS_I(inode)->access_cache.rb_node;
2183 struct nfs_access_entry *entry;
2184
2185 while (n != NULL) {
2186 entry = rb_entry(n, struct nfs_access_entry, rb_node);
2187
2188 if (cred < entry->cred)
2189 n = n->rb_left;
2190 else if (cred > entry->cred)
2191 n = n->rb_right;
2192 else
2193 return entry;
1da177e4 2194 }
1c3c07e9
TM
2195 return NULL;
2196}
2197
af22f94a 2198static int nfs_access_get_cached(struct inode *inode, struct rpc_cred *cred, struct nfs_access_entry *res)
1c3c07e9
TM
2199{
2200 struct nfs_inode *nfsi = NFS_I(inode);
2201 struct nfs_access_entry *cache;
2202 int err = -ENOENT;
2203
dc59250c 2204 spin_lock(&inode->i_lock);
1c3c07e9
TM
2205 if (nfsi->cache_validity & NFS_INO_INVALID_ACCESS)
2206 goto out_zap;
2207 cache = nfs_access_search_rbtree(inode, cred);
2208 if (cache == NULL)
2209 goto out;
b4d2314b 2210 if (!nfs_have_delegated_attributes(inode) &&
64672d55 2211 !time_in_range_open(jiffies, cache->jiffies, cache->jiffies + nfsi->attrtimeo))
1c3c07e9
TM
2212 goto out_stale;
2213 res->jiffies = cache->jiffies;
2214 res->cred = cache->cred;
2215 res->mask = cache->mask;
cfcea3e8 2216 list_move_tail(&cache->lru, &nfsi->access_cache_entry_lru);
1c3c07e9
TM
2217 err = 0;
2218out:
2219 spin_unlock(&inode->i_lock);
2220 return err;
2221out_stale:
2222 rb_erase(&cache->rb_node, &nfsi->access_cache);
cfcea3e8 2223 list_del(&cache->lru);
1c3c07e9
TM
2224 spin_unlock(&inode->i_lock);
2225 nfs_access_free_entry(cache);
2226 return -ENOENT;
2227out_zap:
1a81bb8a
TM
2228 spin_unlock(&inode->i_lock);
2229 nfs_access_zap_cache(inode);
1c3c07e9
TM
2230 return -ENOENT;
2231}
2232
2233static void nfs_access_add_rbtree(struct inode *inode, struct nfs_access_entry *set)
2234{
cfcea3e8
TM
2235 struct nfs_inode *nfsi = NFS_I(inode);
2236 struct rb_root *root_node = &nfsi->access_cache;
1c3c07e9
TM
2237 struct rb_node **p = &root_node->rb_node;
2238 struct rb_node *parent = NULL;
2239 struct nfs_access_entry *entry;
2240
2241 spin_lock(&inode->i_lock);
2242 while (*p != NULL) {
2243 parent = *p;
2244 entry = rb_entry(parent, struct nfs_access_entry, rb_node);
2245
2246 if (set->cred < entry->cred)
2247 p = &parent->rb_left;
2248 else if (set->cred > entry->cred)
2249 p = &parent->rb_right;
2250 else
2251 goto found;
2252 }
2253 rb_link_node(&set->rb_node, parent, p);
2254 rb_insert_color(&set->rb_node, root_node);
cfcea3e8 2255 list_add_tail(&set->lru, &nfsi->access_cache_entry_lru);
dc59250c 2256 spin_unlock(&inode->i_lock);
1c3c07e9
TM
2257 return;
2258found:
2259 rb_replace_node(parent, &set->rb_node, root_node);
cfcea3e8
TM
2260 list_add_tail(&set->lru, &nfsi->access_cache_entry_lru);
2261 list_del(&entry->lru);
1c3c07e9
TM
2262 spin_unlock(&inode->i_lock);
2263 nfs_access_free_entry(entry);
2264}
2265
6168f62c 2266void nfs_access_add_cache(struct inode *inode, struct nfs_access_entry *set)
1c3c07e9
TM
2267{
2268 struct nfs_access_entry *cache = kmalloc(sizeof(*cache), GFP_KERNEL);
2269 if (cache == NULL)
2270 return;
2271 RB_CLEAR_NODE(&cache->rb_node);
1da177e4 2272 cache->jiffies = set->jiffies;
1c3c07e9 2273 cache->cred = get_rpccred(set->cred);
1da177e4 2274 cache->mask = set->mask;
1c3c07e9
TM
2275
2276 nfs_access_add_rbtree(inode, cache);
cfcea3e8
TM
2277
2278 /* Update accounting */
4e857c58 2279 smp_mb__before_atomic();
cfcea3e8 2280 atomic_long_inc(&nfs_access_nr_entries);
4e857c58 2281 smp_mb__after_atomic();
cfcea3e8
TM
2282
2283 /* Add inode to global LRU list */
1a81bb8a 2284 if (!test_bit(NFS_INO_ACL_LRU_SET, &NFS_I(inode)->flags)) {
cfcea3e8 2285 spin_lock(&nfs_access_lru_lock);
1a81bb8a
TM
2286 if (!test_and_set_bit(NFS_INO_ACL_LRU_SET, &NFS_I(inode)->flags))
2287 list_add_tail(&NFS_I(inode)->access_cache_inode_lru,
2288 &nfs_access_lru_list);
cfcea3e8
TM
2289 spin_unlock(&nfs_access_lru_lock);
2290 }
3a505845 2291 nfs_access_cache_enforce_limit();
1da177e4 2292}
6168f62c
WAA
2293EXPORT_SYMBOL_GPL(nfs_access_add_cache);
2294
2295void nfs_access_set_mask(struct nfs_access_entry *entry, u32 access_result)
2296{
2297 entry->mask = 0;
2298 if (access_result & NFS4_ACCESS_READ)
2299 entry->mask |= MAY_READ;
2300 if (access_result &
2301 (NFS4_ACCESS_MODIFY | NFS4_ACCESS_EXTEND | NFS4_ACCESS_DELETE))
2302 entry->mask |= MAY_WRITE;
2303 if (access_result & (NFS4_ACCESS_LOOKUP|NFS4_ACCESS_EXECUTE))
2304 entry->mask |= MAY_EXEC;
2305}
2306EXPORT_SYMBOL_GPL(nfs_access_set_mask);
1da177e4
LT
2307
2308static int nfs_do_access(struct inode *inode, struct rpc_cred *cred, int mask)
2309{
2310 struct nfs_access_entry cache;
2311 int status;
2312
f4ce1299
TM
2313 trace_nfs_access_enter(inode);
2314
1da177e4
LT
2315 status = nfs_access_get_cached(inode, cred, &cache);
2316 if (status == 0)
f4ce1299 2317 goto out_cached;
1da177e4 2318
f3324a2a
N
2319 status = -ECHILD;
2320 if (mask & MAY_NOT_BLOCK)
2321 goto out;
2322
1da177e4
LT
2323 /* Be clever: ask server to check for all possible rights */
2324 cache.mask = MAY_EXEC | MAY_WRITE | MAY_READ;
2325 cache.cred = cred;
2326 cache.jiffies = jiffies;
2327 status = NFS_PROTO(inode)->access(inode, &cache);
a71ee337
SJ
2328 if (status != 0) {
2329 if (status == -ESTALE) {
2330 nfs_zap_caches(inode);
2331 if (!S_ISDIR(inode->i_mode))
2332 set_bit(NFS_INO_STALE, &NFS_I(inode)->flags);
2333 }
f4ce1299 2334 goto out;
a71ee337 2335 }
1da177e4 2336 nfs_access_add_cache(inode, &cache);
f4ce1299
TM
2337out_cached:
2338 if ((mask & ~cache.mask & (MAY_READ | MAY_WRITE | MAY_EXEC)) != 0)
2339 status = -EACCES;
1da177e4 2340out:
f4ce1299
TM
2341 trace_nfs_access_exit(inode, status);
2342 return status;
1da177e4
LT
2343}
2344
af22f94a
TM
2345static int nfs_open_permission_mask(int openflags)
2346{
2347 int mask = 0;
2348
f8d9a897
WAA
2349 if (openflags & __FMODE_EXEC) {
2350 /* ONLY check exec rights */
2351 mask = MAY_EXEC;
2352 } else {
2353 if ((openflags & O_ACCMODE) != O_WRONLY)
2354 mask |= MAY_READ;
2355 if ((openflags & O_ACCMODE) != O_RDONLY)
2356 mask |= MAY_WRITE;
2357 }
2358
af22f94a
TM
2359 return mask;
2360}
2361
2362int nfs_may_open(struct inode *inode, struct rpc_cred *cred, int openflags)
2363{
2364 return nfs_do_access(inode, cred, nfs_open_permission_mask(openflags));
2365}
89d77c8f 2366EXPORT_SYMBOL_GPL(nfs_may_open);
af22f94a 2367
10556cb2 2368int nfs_permission(struct inode *inode, int mask)
1da177e4
LT
2369{
2370 struct rpc_cred *cred;
2371 int res = 0;
2372
91d5b470
CL
2373 nfs_inc_stats(inode, NFSIOS_VFSACCESS);
2374
e6305c43 2375 if ((mask & (MAY_READ | MAY_WRITE | MAY_EXEC)) == 0)
1da177e4
LT
2376 goto out;
2377 /* Is this sys_access() ? */
9cfcac81 2378 if (mask & (MAY_ACCESS | MAY_CHDIR))
1da177e4
LT
2379 goto force_lookup;
2380
2381 switch (inode->i_mode & S_IFMT) {
2382 case S_IFLNK:
2383 goto out;
2384 case S_IFREG:
1da177e4
LT
2385 break;
2386 case S_IFDIR:
2387 /*
2388 * Optimize away all write operations, since the server
2389 * will check permissions when we perform the op.
2390 */
2391 if ((mask & MAY_WRITE) && !(mask & MAY_READ))
2392 goto out;
2393 }
2394
2395force_lookup:
1da177e4
LT
2396 if (!NFS_PROTO(inode)->access)
2397 goto out_notsup;
2398
f3324a2a
N
2399 /* Always try fast lookups first */
2400 rcu_read_lock();
2401 cred = rpc_lookup_cred_nonblock();
2402 if (!IS_ERR(cred))
2403 res = nfs_do_access(inode, cred, mask|MAY_NOT_BLOCK);
2404 else
1da177e4 2405 res = PTR_ERR(cred);
f3324a2a
N
2406 rcu_read_unlock();
2407 if (res == -ECHILD && !(mask & MAY_NOT_BLOCK)) {
2408 /* Fast lookup failed, try the slow way */
2409 cred = rpc_lookup_cred();
2410 if (!IS_ERR(cred)) {
2411 res = nfs_do_access(inode, cred, mask);
2412 put_rpccred(cred);
2413 } else
2414 res = PTR_ERR(cred);
2415 }
1da177e4 2416out:
f696a365
MS
2417 if (!res && (mask & MAY_EXEC) && !execute_ok(inode))
2418 res = -EACCES;
2419
1e8968c5 2420 dfprintk(VFS, "NFS: permission(%s/%lu), mask=0x%x, res=%d\n",
1e7cb3dc 2421 inode->i_sb->s_id, inode->i_ino, mask, res);
1da177e4
LT
2422 return res;
2423out_notsup:
d51ac1a8
N
2424 if (mask & MAY_NOT_BLOCK)
2425 return -ECHILD;
2426
1da177e4
LT
2427 res = nfs_revalidate_inode(NFS_SERVER(inode), inode);
2428 if (res == 0)
2830ba7f 2429 res = generic_permission(inode, mask);
1e7cb3dc 2430 goto out;
1da177e4 2431}
ddda8e0a 2432EXPORT_SYMBOL_GPL(nfs_permission);
1da177e4
LT
2433
2434/*
2435 * Local variables:
2436 * version-control: t
2437 * kept-new-versions: 5
2438 * End:
2439 */