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CommitLineData
1da177e4
LT
1/*
2 * linux/fs/namei.c
3 *
4 * Copyright (C) 1991, 1992 Linus Torvalds
5 */
6
7/*
8 * Some corrections by tytso.
9 */
10
11/* [Feb 1997 T. Schoebel-Theuer] Complete rewrite of the pathname
12 * lookup logic.
13 */
14/* [Feb-Apr 2000, AV] Rewrite to the new namespace architecture.
15 */
16
17#include <linux/init.h>
18#include <linux/module.h>
19#include <linux/slab.h>
20#include <linux/fs.h>
21#include <linux/namei.h>
1da177e4 22#include <linux/pagemap.h>
0eeca283 23#include <linux/fsnotify.h>
1da177e4
LT
24#include <linux/personality.h>
25#include <linux/security.h>
6146f0d5 26#include <linux/ima.h>
1da177e4
LT
27#include <linux/syscalls.h>
28#include <linux/mount.h>
29#include <linux/audit.h>
16f7e0fe 30#include <linux/capability.h>
834f2a4a 31#include <linux/file.h>
5590ff0d 32#include <linux/fcntl.h>
08ce5f16 33#include <linux/device_cgroup.h>
5ad4e53b 34#include <linux/fs_struct.h>
1da177e4
LT
35#include <asm/uaccess.h>
36
e81e3f4d
EP
37#include "internal.h"
38
1da177e4
LT
39/* [Feb-1997 T. Schoebel-Theuer]
40 * Fundamental changes in the pathname lookup mechanisms (namei)
41 * were necessary because of omirr. The reason is that omirr needs
42 * to know the _real_ pathname, not the user-supplied one, in case
43 * of symlinks (and also when transname replacements occur).
44 *
45 * The new code replaces the old recursive symlink resolution with
46 * an iterative one (in case of non-nested symlink chains). It does
47 * this with calls to <fs>_follow_link().
48 * As a side effect, dir_namei(), _namei() and follow_link() are now
49 * replaced with a single function lookup_dentry() that can handle all
50 * the special cases of the former code.
51 *
52 * With the new dcache, the pathname is stored at each inode, at least as
53 * long as the refcount of the inode is positive. As a side effect, the
54 * size of the dcache depends on the inode cache and thus is dynamic.
55 *
56 * [29-Apr-1998 C. Scott Ananian] Updated above description of symlink
57 * resolution to correspond with current state of the code.
58 *
59 * Note that the symlink resolution is not *completely* iterative.
60 * There is still a significant amount of tail- and mid- recursion in
61 * the algorithm. Also, note that <fs>_readlink() is not used in
62 * lookup_dentry(): lookup_dentry() on the result of <fs>_readlink()
63 * may return different results than <fs>_follow_link(). Many virtual
64 * filesystems (including /proc) exhibit this behavior.
65 */
66
67/* [24-Feb-97 T. Schoebel-Theuer] Side effects caused by new implementation:
68 * New symlink semantics: when open() is called with flags O_CREAT | O_EXCL
69 * and the name already exists in form of a symlink, try to create the new
70 * name indicated by the symlink. The old code always complained that the
71 * name already exists, due to not following the symlink even if its target
72 * is nonexistent. The new semantics affects also mknod() and link() when
73 * the name is a symlink pointing to a non-existant name.
74 *
75 * I don't know which semantics is the right one, since I have no access
76 * to standards. But I found by trial that HP-UX 9.0 has the full "new"
77 * semantics implemented, while SunOS 4.1.1 and Solaris (SunOS 5.4) have the
78 * "old" one. Personally, I think the new semantics is much more logical.
79 * Note that "ln old new" where "new" is a symlink pointing to a non-existing
80 * file does succeed in both HP-UX and SunOs, but not in Solaris
81 * and in the old Linux semantics.
82 */
83
84/* [16-Dec-97 Kevin Buhr] For security reasons, we change some symlink
85 * semantics. See the comments in "open_namei" and "do_link" below.
86 *
87 * [10-Sep-98 Alan Modra] Another symlink change.
88 */
89
90/* [Feb-Apr 2000 AV] Complete rewrite. Rules for symlinks:
91 * inside the path - always follow.
92 * in the last component in creation/removal/renaming - never follow.
93 * if LOOKUP_FOLLOW passed - follow.
94 * if the pathname has trailing slashes - follow.
95 * otherwise - don't follow.
96 * (applied in that order).
97 *
98 * [Jun 2000 AV] Inconsistent behaviour of open() in case if flags==O_CREAT
99 * restored for 2.4. This is the last surviving part of old 4.2BSD bug.
100 * During the 2.4 we need to fix the userland stuff depending on it -
101 * hopefully we will be able to get rid of that wart in 2.5. So far only
102 * XEmacs seems to be relying on it...
103 */
104/*
105 * [Sep 2001 AV] Single-semaphore locking scheme (kudos to David Holland)
a11f3a05 106 * implemented. Let's see if raised priority of ->s_vfs_rename_mutex gives
1da177e4
LT
107 * any extra contention...
108 */
109
110/* In order to reduce some races, while at the same time doing additional
111 * checking and hopefully speeding things up, we copy filenames to the
112 * kernel data space before using them..
113 *
114 * POSIX.1 2.4: an empty pathname is invalid (ENOENT).
115 * PATH_MAX includes the nul terminator --RR.
116 */
858119e1 117static int do_getname(const char __user *filename, char *page)
1da177e4
LT
118{
119 int retval;
120 unsigned long len = PATH_MAX;
121
122 if (!segment_eq(get_fs(), KERNEL_DS)) {
123 if ((unsigned long) filename >= TASK_SIZE)
124 return -EFAULT;
125 if (TASK_SIZE - (unsigned long) filename < PATH_MAX)
126 len = TASK_SIZE - (unsigned long) filename;
127 }
128
129 retval = strncpy_from_user(page, filename, len);
130 if (retval > 0) {
131 if (retval < len)
132 return 0;
133 return -ENAMETOOLONG;
134 } else if (!retval)
135 retval = -ENOENT;
136 return retval;
137}
138
139char * getname(const char __user * filename)
140{
141 char *tmp, *result;
142
143 result = ERR_PTR(-ENOMEM);
144 tmp = __getname();
145 if (tmp) {
146 int retval = do_getname(filename, tmp);
147
148 result = tmp;
149 if (retval < 0) {
150 __putname(tmp);
151 result = ERR_PTR(retval);
152 }
153 }
154 audit_getname(result);
155 return result;
156}
157
158#ifdef CONFIG_AUDITSYSCALL
159void putname(const char *name)
160{
5ac3a9c2 161 if (unlikely(!audit_dummy_context()))
1da177e4
LT
162 audit_putname(name);
163 else
164 __putname(name);
165}
166EXPORT_SYMBOL(putname);
167#endif
168
5909ccaa
LT
169/*
170 * This does basic POSIX ACL permission checking
1da177e4 171 */
b74c79e9
NP
172static int acl_permission_check(struct inode *inode, int mask, unsigned int flags,
173 int (*check_acl)(struct inode *inode, int mask, unsigned int flags))
1da177e4
LT
174{
175 umode_t mode = inode->i_mode;
176
e6305c43
AV
177 mask &= MAY_READ | MAY_WRITE | MAY_EXEC;
178
da9592ed 179 if (current_fsuid() == inode->i_uid)
1da177e4
LT
180 mode >>= 6;
181 else {
182 if (IS_POSIXACL(inode) && (mode & S_IRWXG) && check_acl) {
b74c79e9
NP
183 int error = check_acl(inode, mask, flags);
184 if (error != -EAGAIN)
185 return error;
1da177e4
LT
186 }
187
188 if (in_group_p(inode->i_gid))
189 mode >>= 3;
190 }
191
192 /*
193 * If the DACs are ok we don't need any capability check.
194 */
e6305c43 195 if ((mask & ~mode) == 0)
1da177e4 196 return 0;
5909ccaa
LT
197 return -EACCES;
198}
199
200/**
b74c79e9 201 * generic_permission - check for access rights on a Posix-like filesystem
5909ccaa
LT
202 * @inode: inode to check access rights for
203 * @mask: right to check for (%MAY_READ, %MAY_WRITE, %MAY_EXEC)
204 * @check_acl: optional callback to check for Posix ACLs
39191628 205 * @flags: IPERM_FLAG_ flags.
5909ccaa
LT
206 *
207 * Used to check for read/write/execute permissions on a file.
208 * We use "fsuid" for this, letting us set arbitrary permissions
209 * for filesystem access without changing the "normal" uids which
b74c79e9
NP
210 * are used for other things.
211 *
212 * generic_permission is rcu-walk aware. It returns -ECHILD in case an rcu-walk
213 * request cannot be satisfied (eg. requires blocking or too much complexity).
214 * It would then be called again in ref-walk mode.
5909ccaa 215 */
b74c79e9
NP
216int generic_permission(struct inode *inode, int mask, unsigned int flags,
217 int (*check_acl)(struct inode *inode, int mask, unsigned int flags))
5909ccaa
LT
218{
219 int ret;
220
221 /*
222 * Do the basic POSIX ACL permission checks.
223 */
b74c79e9 224 ret = acl_permission_check(inode, mask, flags, check_acl);
5909ccaa
LT
225 if (ret != -EACCES)
226 return ret;
1da177e4 227
1da177e4
LT
228 /*
229 * Read/write DACs are always overridable.
230 * Executable DACs are overridable if at least one exec bit is set.
231 */
f696a365 232 if (!(mask & MAY_EXEC) || execute_ok(inode))
1da177e4
LT
233 if (capable(CAP_DAC_OVERRIDE))
234 return 0;
235
236 /*
237 * Searching includes executable on directories, else just read.
238 */
7ea66001 239 mask &= MAY_READ | MAY_WRITE | MAY_EXEC;
1da177e4
LT
240 if (mask == MAY_READ || (S_ISDIR(inode->i_mode) && !(mask & MAY_WRITE)))
241 if (capable(CAP_DAC_READ_SEARCH))
242 return 0;
243
244 return -EACCES;
245}
246
cb23beb5
CH
247/**
248 * inode_permission - check for access rights to a given inode
249 * @inode: inode to check permission on
250 * @mask: right to check for (%MAY_READ, %MAY_WRITE, %MAY_EXEC)
251 *
252 * Used to check for read/write/execute permissions on an inode.
253 * We use "fsuid" for this, letting us set arbitrary permissions
254 * for filesystem access without changing the "normal" uids which
255 * are used for other things.
256 */
f419a2e3 257int inode_permission(struct inode *inode, int mask)
1da177e4 258{
e6305c43 259 int retval;
1da177e4
LT
260
261 if (mask & MAY_WRITE) {
22590e41 262 umode_t mode = inode->i_mode;
1da177e4
LT
263
264 /*
265 * Nobody gets write access to a read-only fs.
266 */
267 if (IS_RDONLY(inode) &&
268 (S_ISREG(mode) || S_ISDIR(mode) || S_ISLNK(mode)))
269 return -EROFS;
270
271 /*
272 * Nobody gets write access to an immutable file.
273 */
274 if (IS_IMMUTABLE(inode))
275 return -EACCES;
276 }
277
acfa4380 278 if (inode->i_op->permission)
b74c79e9 279 retval = inode->i_op->permission(inode, mask, 0);
f696a365 280 else
b74c79e9
NP
281 retval = generic_permission(inode, mask, 0,
282 inode->i_op->check_acl);
f696a365 283
1da177e4
LT
284 if (retval)
285 return retval;
286
08ce5f16
SH
287 retval = devcgroup_inode_permission(inode, mask);
288 if (retval)
289 return retval;
290
d09ca739 291 return security_inode_permission(inode, mask);
1da177e4
LT
292}
293
8c744fb8
CH
294/**
295 * file_permission - check for additional access rights to a given file
296 * @file: file to check access rights for
297 * @mask: right to check for (%MAY_READ, %MAY_WRITE, %MAY_EXEC)
298 *
299 * Used to check for read/write/execute permissions on an already opened
300 * file.
301 *
302 * Note:
303 * Do not use this function in new code. All access checks should
cb23beb5 304 * be done using inode_permission().
8c744fb8
CH
305 */
306int file_permission(struct file *file, int mask)
307{
f419a2e3 308 return inode_permission(file->f_path.dentry->d_inode, mask);
8c744fb8
CH
309}
310
1da177e4
LT
311/*
312 * get_write_access() gets write permission for a file.
313 * put_write_access() releases this write permission.
314 * This is used for regular files.
315 * We cannot support write (and maybe mmap read-write shared) accesses and
316 * MAP_DENYWRITE mmappings simultaneously. The i_writecount field of an inode
317 * can have the following values:
318 * 0: no writers, no VM_DENYWRITE mappings
319 * < 0: (-i_writecount) vm_area_structs with VM_DENYWRITE set exist
320 * > 0: (i_writecount) users are writing to the file.
321 *
322 * Normally we operate on that counter with atomic_{inc,dec} and it's safe
323 * except for the cases where we don't hold i_writecount yet. Then we need to
324 * use {get,deny}_write_access() - these functions check the sign and refuse
325 * to do the change if sign is wrong. Exclusion between them is provided by
326 * the inode->i_lock spinlock.
327 */
328
329int get_write_access(struct inode * inode)
330{
331 spin_lock(&inode->i_lock);
332 if (atomic_read(&inode->i_writecount) < 0) {
333 spin_unlock(&inode->i_lock);
334 return -ETXTBSY;
335 }
336 atomic_inc(&inode->i_writecount);
337 spin_unlock(&inode->i_lock);
338
339 return 0;
340}
341
342int deny_write_access(struct file * file)
343{
0f7fc9e4 344 struct inode *inode = file->f_path.dentry->d_inode;
1da177e4
LT
345
346 spin_lock(&inode->i_lock);
347 if (atomic_read(&inode->i_writecount) > 0) {
348 spin_unlock(&inode->i_lock);
349 return -ETXTBSY;
350 }
351 atomic_dec(&inode->i_writecount);
352 spin_unlock(&inode->i_lock);
353
354 return 0;
355}
356
5dd784d0
JB
357/**
358 * path_get - get a reference to a path
359 * @path: path to get the reference to
360 *
361 * Given a path increment the reference count to the dentry and the vfsmount.
362 */
363void path_get(struct path *path)
364{
365 mntget(path->mnt);
366 dget(path->dentry);
367}
368EXPORT_SYMBOL(path_get);
369
1d957f9b
JB
370/**
371 * path_put - put a reference to a path
372 * @path: path to put the reference to
373 *
374 * Given a path decrement the reference count to the dentry and the vfsmount.
375 */
376void path_put(struct path *path)
1da177e4 377{
1d957f9b
JB
378 dput(path->dentry);
379 mntput(path->mnt);
1da177e4 380}
1d957f9b 381EXPORT_SYMBOL(path_put);
1da177e4 382
31e6b01f
NP
383/**
384 * nameidata_drop_rcu - drop this nameidata out of rcu-walk
385 * @nd: nameidata pathwalk data to drop
39191628 386 * Returns: 0 on success, -ECHILD on failure
31e6b01f
NP
387 *
388 * Path walking has 2 modes, rcu-walk and ref-walk (see
389 * Documentation/filesystems/path-lookup.txt). __drop_rcu* functions attempt
390 * to drop out of rcu-walk mode and take normal reference counts on dentries
391 * and vfsmounts to transition to rcu-walk mode. __drop_rcu* functions take
392 * refcounts at the last known good point before rcu-walk got stuck, so
393 * ref-walk may continue from there. If this is not successful (eg. a seqcount
394 * has changed), then failure is returned and path walk restarts from the
395 * beginning in ref-walk mode.
396 *
397 * nameidata_drop_rcu attempts to drop the current nd->path and nd->root into
398 * ref-walk. Must be called from rcu-walk context.
399 */
400static int nameidata_drop_rcu(struct nameidata *nd)
401{
402 struct fs_struct *fs = current->fs;
403 struct dentry *dentry = nd->path.dentry;
404
405 BUG_ON(!(nd->flags & LOOKUP_RCU));
406 if (nd->root.mnt) {
407 spin_lock(&fs->lock);
408 if (nd->root.mnt != fs->root.mnt ||
409 nd->root.dentry != fs->root.dentry)
410 goto err_root;
411 }
412 spin_lock(&dentry->d_lock);
413 if (!__d_rcu_to_refcount(dentry, nd->seq))
414 goto err;
415 BUG_ON(nd->inode != dentry->d_inode);
416 spin_unlock(&dentry->d_lock);
417 if (nd->root.mnt) {
418 path_get(&nd->root);
419 spin_unlock(&fs->lock);
420 }
421 mntget(nd->path.mnt);
422
423 rcu_read_unlock();
424 br_read_unlock(vfsmount_lock);
425 nd->flags &= ~LOOKUP_RCU;
426 return 0;
427err:
428 spin_unlock(&dentry->d_lock);
429err_root:
430 if (nd->root.mnt)
431 spin_unlock(&fs->lock);
432 return -ECHILD;
433}
434
435/* Try to drop out of rcu-walk mode if we were in it, otherwise do nothing. */
436static inline int nameidata_drop_rcu_maybe(struct nameidata *nd)
437{
438 if (nd->flags & LOOKUP_RCU)
439 return nameidata_drop_rcu(nd);
440 return 0;
441}
442
443/**
444 * nameidata_dentry_drop_rcu - drop nameidata and dentry out of rcu-walk
445 * @nd: nameidata pathwalk data to drop
446 * @dentry: dentry to drop
39191628 447 * Returns: 0 on success, -ECHILD on failure
31e6b01f
NP
448 *
449 * nameidata_dentry_drop_rcu attempts to drop the current nd->path and nd->root,
450 * and dentry into ref-walk. @dentry must be a path found by a do_lookup call on
451 * @nd. Must be called from rcu-walk context.
452 */
453static int nameidata_dentry_drop_rcu(struct nameidata *nd, struct dentry *dentry)
454{
455 struct fs_struct *fs = current->fs;
456 struct dentry *parent = nd->path.dentry;
457
458 BUG_ON(!(nd->flags & LOOKUP_RCU));
459 if (nd->root.mnt) {
460 spin_lock(&fs->lock);
461 if (nd->root.mnt != fs->root.mnt ||
462 nd->root.dentry != fs->root.dentry)
463 goto err_root;
464 }
465 spin_lock(&parent->d_lock);
466 spin_lock_nested(&dentry->d_lock, DENTRY_D_LOCK_NESTED);
467 if (!__d_rcu_to_refcount(dentry, nd->seq))
468 goto err;
469 /*
470 * If the sequence check on the child dentry passed, then the child has
471 * not been removed from its parent. This means the parent dentry must
472 * be valid and able to take a reference at this point.
473 */
474 BUG_ON(!IS_ROOT(dentry) && dentry->d_parent != parent);
475 BUG_ON(!parent->d_count);
476 parent->d_count++;
477 spin_unlock(&dentry->d_lock);
478 spin_unlock(&parent->d_lock);
479 if (nd->root.mnt) {
480 path_get(&nd->root);
481 spin_unlock(&fs->lock);
482 }
483 mntget(nd->path.mnt);
484
485 rcu_read_unlock();
486 br_read_unlock(vfsmount_lock);
487 nd->flags &= ~LOOKUP_RCU;
488 return 0;
489err:
490 spin_unlock(&dentry->d_lock);
491 spin_unlock(&parent->d_lock);
492err_root:
493 if (nd->root.mnt)
494 spin_unlock(&fs->lock);
495 return -ECHILD;
496}
497
498/* Try to drop out of rcu-walk mode if we were in it, otherwise do nothing. */
499static inline int nameidata_dentry_drop_rcu_maybe(struct nameidata *nd, struct dentry *dentry)
500{
501 if (nd->flags & LOOKUP_RCU)
502 return nameidata_dentry_drop_rcu(nd, dentry);
503 return 0;
504}
505
506/**
507 * nameidata_drop_rcu_last - drop nameidata ending path walk out of rcu-walk
508 * @nd: nameidata pathwalk data to drop
39191628 509 * Returns: 0 on success, -ECHILD on failure
31e6b01f
NP
510 *
511 * nameidata_drop_rcu_last attempts to drop the current nd->path into ref-walk.
512 * nd->path should be the final element of the lookup, so nd->root is discarded.
513 * Must be called from rcu-walk context.
514 */
515static int nameidata_drop_rcu_last(struct nameidata *nd)
516{
517 struct dentry *dentry = nd->path.dentry;
518
519 BUG_ON(!(nd->flags & LOOKUP_RCU));
520 nd->flags &= ~LOOKUP_RCU;
521 nd->root.mnt = NULL;
522 spin_lock(&dentry->d_lock);
523 if (!__d_rcu_to_refcount(dentry, nd->seq))
524 goto err_unlock;
525 BUG_ON(nd->inode != dentry->d_inode);
526 spin_unlock(&dentry->d_lock);
527
528 mntget(nd->path.mnt);
529
530 rcu_read_unlock();
531 br_read_unlock(vfsmount_lock);
532
533 return 0;
534
535err_unlock:
536 spin_unlock(&dentry->d_lock);
537 rcu_read_unlock();
538 br_read_unlock(vfsmount_lock);
539 return -ECHILD;
540}
541
542/* Try to drop out of rcu-walk mode if we were in it, otherwise do nothing. */
543static inline int nameidata_drop_rcu_last_maybe(struct nameidata *nd)
544{
545 if (likely(nd->flags & LOOKUP_RCU))
546 return nameidata_drop_rcu_last(nd);
547 return 0;
548}
549
834f2a4a
TM
550/**
551 * release_open_intent - free up open intent resources
552 * @nd: pointer to nameidata
553 */
554void release_open_intent(struct nameidata *nd)
555{
2dab5974
LT
556 struct file *file = nd->intent.open.file;
557
558 if (file && !IS_ERR(file)) {
559 if (file->f_path.dentry == NULL)
560 put_filp(file);
561 else
562 fput(file);
563 }
834f2a4a
TM
564}
565
f60aef7e 566static inline int d_revalidate(struct dentry *dentry, struct nameidata *nd)
34286d66 567{
f60aef7e 568 return dentry->d_op->d_revalidate(dentry, nd);
34286d66
NP
569}
570
f5e1c1c1 571static struct dentry *
bcdc5e01
IK
572do_revalidate(struct dentry *dentry, struct nameidata *nd)
573{
f5e1c1c1 574 int status = d_revalidate(dentry, nd);
bcdc5e01
IK
575 if (unlikely(status <= 0)) {
576 /*
577 * The dentry failed validation.
578 * If d_revalidate returned 0 attempt to invalidate
579 * the dentry otherwise d_revalidate is asking us
580 * to return a fail status.
581 */
34286d66 582 if (status < 0) {
f5e1c1c1 583 dput(dentry);
34286d66 584 dentry = ERR_PTR(status);
f5e1c1c1
AV
585 } else if (!d_invalidate(dentry)) {
586 dput(dentry);
587 dentry = NULL;
bcdc5e01
IK
588 }
589 }
590 return dentry;
591}
592
f5e1c1c1
AV
593static inline struct dentry *
594do_revalidate_rcu(struct dentry *dentry, struct nameidata *nd)
595{
f60aef7e 596 int status = d_revalidate(dentry, nd);
f5e1c1c1
AV
597 if (likely(status > 0))
598 return dentry;
599 if (status == -ECHILD) {
600 if (nameidata_dentry_drop_rcu(nd, dentry))
601 return ERR_PTR(-ECHILD);
602 return do_revalidate(dentry, nd);
603 }
604 if (status < 0)
605 return ERR_PTR(status);
606 /* Don't d_invalidate in rcu-walk mode */
607 if (nameidata_dentry_drop_rcu(nd, dentry))
608 return ERR_PTR(-ECHILD);
609 if (!d_invalidate(dentry)) {
610 dput(dentry);
611 dentry = NULL;
612 }
613 return dentry;
614}
615
fb045adb
NP
616static inline int need_reval_dot(struct dentry *dentry)
617{
618 if (likely(!(dentry->d_flags & DCACHE_OP_REVALIDATE)))
619 return 0;
620
621 if (likely(!(dentry->d_sb->s_type->fs_flags & FS_REVAL_DOT)))
622 return 0;
623
624 return 1;
625}
626
39159de2
JL
627/*
628 * force_reval_path - force revalidation of a dentry
629 *
630 * In some situations the path walking code will trust dentries without
631 * revalidating them. This causes problems for filesystems that depend on
632 * d_revalidate to handle file opens (e.g. NFSv4). When FS_REVAL_DOT is set
633 * (which indicates that it's possible for the dentry to go stale), force
634 * a d_revalidate call before proceeding.
635 *
636 * Returns 0 if the revalidation was successful. If the revalidation fails,
637 * either return the error returned by d_revalidate or -ESTALE if the
638 * revalidation it just returned 0. If d_revalidate returns 0, we attempt to
639 * invalidate the dentry. It's up to the caller to handle putting references
640 * to the path if necessary.
641 */
642static int
643force_reval_path(struct path *path, struct nameidata *nd)
644{
645 int status;
646 struct dentry *dentry = path->dentry;
647
648 /*
649 * only check on filesystems where it's possible for the dentry to
fb045adb 650 * become stale.
39159de2 651 */
fb045adb 652 if (!need_reval_dot(dentry))
39159de2
JL
653 return 0;
654
34286d66 655 status = d_revalidate(dentry, nd);
39159de2
JL
656 if (status > 0)
657 return 0;
658
659 if (!status) {
660 d_invalidate(dentry);
661 status = -ESTALE;
662 }
663 return status;
664}
665
1da177e4 666/*
b75b5086
AV
667 * Short-cut version of permission(), for calling on directories
668 * during pathname resolution. Combines parts of permission()
669 * and generic_permission(), and tests ONLY for MAY_EXEC permission.
1da177e4
LT
670 *
671 * If appropriate, check DAC only. If not appropriate, or
b75b5086 672 * short-cut DAC fails, then call ->permission() to do more
1da177e4
LT
673 * complete permission check.
674 */
b74c79e9 675static inline int exec_permission(struct inode *inode, unsigned int flags)
1da177e4 676{
5909ccaa 677 int ret;
1da177e4 678
cb9179ea 679 if (inode->i_op->permission) {
b74c79e9
NP
680 ret = inode->i_op->permission(inode, MAY_EXEC, flags);
681 } else {
682 ret = acl_permission_check(inode, MAY_EXEC, flags,
683 inode->i_op->check_acl);
cb9179ea 684 }
b74c79e9 685 if (likely(!ret))
1da177e4 686 goto ok;
b74c79e9 687 if (ret == -ECHILD)
31e6b01f 688 return ret;
1da177e4 689
f1ac9f6b 690 if (capable(CAP_DAC_OVERRIDE) || capable(CAP_DAC_READ_SEARCH))
1da177e4
LT
691 goto ok;
692
5909ccaa 693 return ret;
1da177e4 694ok:
b74c79e9 695 return security_inode_exec_permission(inode, flags);
1da177e4
LT
696}
697
2a737871
AV
698static __always_inline void set_root(struct nameidata *nd)
699{
f7ad3c6b
MS
700 if (!nd->root.mnt)
701 get_fs_root(current->fs, &nd->root);
2a737871
AV
702}
703
6de88d72
AV
704static int link_path_walk(const char *, struct nameidata *);
705
31e6b01f
NP
706static __always_inline void set_root_rcu(struct nameidata *nd)
707{
708 if (!nd->root.mnt) {
709 struct fs_struct *fs = current->fs;
c28cc364
NP
710 unsigned seq;
711
712 do {
713 seq = read_seqcount_begin(&fs->seq);
714 nd->root = fs->root;
715 } while (read_seqcount_retry(&fs->seq, seq));
31e6b01f
NP
716 }
717}
718
f1662356 719static __always_inline int __vfs_follow_link(struct nameidata *nd, const char *link)
1da177e4 720{
31e6b01f
NP
721 int ret;
722
1da177e4
LT
723 if (IS_ERR(link))
724 goto fail;
725
726 if (*link == '/') {
2a737871 727 set_root(nd);
1d957f9b 728 path_put(&nd->path);
2a737871
AV
729 nd->path = nd->root;
730 path_get(&nd->root);
1da177e4 731 }
31e6b01f 732 nd->inode = nd->path.dentry->d_inode;
b4091d5f 733
31e6b01f
NP
734 ret = link_path_walk(link, nd);
735 return ret;
1da177e4 736fail:
1d957f9b 737 path_put(&nd->path);
1da177e4
LT
738 return PTR_ERR(link);
739}
740
1d957f9b 741static void path_put_conditional(struct path *path, struct nameidata *nd)
051d3812
IK
742{
743 dput(path->dentry);
4ac91378 744 if (path->mnt != nd->path.mnt)
051d3812
IK
745 mntput(path->mnt);
746}
747
7b9337aa
NP
748static inline void path_to_nameidata(const struct path *path,
749 struct nameidata *nd)
051d3812 750{
31e6b01f
NP
751 if (!(nd->flags & LOOKUP_RCU)) {
752 dput(nd->path.dentry);
753 if (nd->path.mnt != path->mnt)
754 mntput(nd->path.mnt);
9a229683 755 }
31e6b01f 756 nd->path.mnt = path->mnt;
4ac91378 757 nd->path.dentry = path->dentry;
051d3812
IK
758}
759
def4af30 760static __always_inline int
7b9337aa 761__do_follow_link(const struct path *link, struct nameidata *nd, void **p)
1da177e4
LT
762{
763 int error;
7b9337aa 764 struct dentry *dentry = link->dentry;
1da177e4 765
844a3917
AV
766 BUG_ON(nd->flags & LOOKUP_RCU);
767
7b9337aa 768 touch_atime(link->mnt, dentry);
1da177e4 769 nd_set_link(nd, NULL);
cd4e91d3 770
87556ef1
DH
771 if (link->mnt == nd->path.mnt)
772 mntget(link->mnt);
31e6b01f 773
86acdca1 774 nd->last_type = LAST_BIND;
def4af30
AV
775 *p = dentry->d_inode->i_op->follow_link(dentry, nd);
776 error = PTR_ERR(*p);
777 if (!IS_ERR(*p)) {
1da177e4 778 char *s = nd_get_link(nd);
cc314eef 779 error = 0;
1da177e4
LT
780 if (s)
781 error = __vfs_follow_link(nd, s);
39159de2
JL
782 else if (nd->last_type == LAST_BIND) {
783 error = force_reval_path(&nd->path, nd);
784 if (error)
785 path_put(&nd->path);
786 }
1da177e4 787 }
1da177e4
LT
788 return error;
789}
790
791/*
792 * This limits recursive symlink follows to 8, while
793 * limiting consecutive symlinks to 40.
794 *
795 * Without that kind of total limit, nasty chains of consecutive
796 * symlinks can cause almost arbitrarily long lookups.
797 */
3abb17e8 798static inline int do_follow_link(struct inode *inode, struct path *path, struct nameidata *nd)
1da177e4 799{
def4af30 800 void *cookie;
1da177e4 801 int err = -ELOOP;
844a3917
AV
802
803 /* We drop rcu-walk here */
804 if (nameidata_dentry_drop_rcu_maybe(nd, path->dentry))
805 return -ECHILD;
3abb17e8 806 BUG_ON(inode != path->dentry->d_inode);
844a3917 807
1da177e4
LT
808 if (current->link_count >= MAX_NESTED_LINKS)
809 goto loop;
810 if (current->total_link_count >= 40)
811 goto loop;
812 BUG_ON(nd->depth >= MAX_NESTED_LINKS);
813 cond_resched();
90ebe565 814 err = security_inode_follow_link(path->dentry, nd);
1da177e4
LT
815 if (err)
816 goto loop;
817 current->link_count++;
818 current->total_link_count++;
819 nd->depth++;
def4af30
AV
820 err = __do_follow_link(path, nd, &cookie);
821 if (!IS_ERR(cookie) && path->dentry->d_inode->i_op->put_link)
822 path->dentry->d_inode->i_op->put_link(path->dentry, nd, cookie);
258fa999 823 path_put(path);
839d9f93
AV
824 current->link_count--;
825 nd->depth--;
1da177e4
LT
826 return err;
827loop:
1d957f9b
JB
828 path_put_conditional(path, nd);
829 path_put(&nd->path);
1da177e4
LT
830 return err;
831}
832
31e6b01f
NP
833static int follow_up_rcu(struct path *path)
834{
835 struct vfsmount *parent;
836 struct dentry *mountpoint;
837
838 parent = path->mnt->mnt_parent;
839 if (parent == path->mnt)
840 return 0;
841 mountpoint = path->mnt->mnt_mountpoint;
842 path->dentry = mountpoint;
843 path->mnt = parent;
844 return 1;
845}
846
bab77ebf 847int follow_up(struct path *path)
1da177e4
LT
848{
849 struct vfsmount *parent;
850 struct dentry *mountpoint;
99b7db7b
NP
851
852 br_read_lock(vfsmount_lock);
bab77ebf
AV
853 parent = path->mnt->mnt_parent;
854 if (parent == path->mnt) {
99b7db7b 855 br_read_unlock(vfsmount_lock);
1da177e4
LT
856 return 0;
857 }
858 mntget(parent);
bab77ebf 859 mountpoint = dget(path->mnt->mnt_mountpoint);
99b7db7b 860 br_read_unlock(vfsmount_lock);
bab77ebf
AV
861 dput(path->dentry);
862 path->dentry = mountpoint;
863 mntput(path->mnt);
864 path->mnt = parent;
1da177e4
LT
865 return 1;
866}
867
b5c84bf6 868/*
9875cf80
DH
869 * Perform an automount
870 * - return -EISDIR to tell follow_managed() to stop and return the path we
871 * were called with.
1da177e4 872 */
9875cf80
DH
873static int follow_automount(struct path *path, unsigned flags,
874 bool *need_mntput)
31e6b01f 875{
9875cf80 876 struct vfsmount *mnt;
ea5b778a 877 int err;
9875cf80
DH
878
879 if (!path->dentry->d_op || !path->dentry->d_op->d_automount)
880 return -EREMOTE;
881
6f45b656
DH
882 /* We don't want to mount if someone supplied AT_NO_AUTOMOUNT
883 * and this is the terminal part of the path.
884 */
885 if ((flags & LOOKUP_NO_AUTOMOUNT) && !(flags & LOOKUP_CONTINUE))
886 return -EISDIR; /* we actually want to stop here */
887
9875cf80
DH
888 /* We want to mount if someone is trying to open/create a file of any
889 * type under the mountpoint, wants to traverse through the mountpoint
890 * or wants to open the mounted directory.
891 *
892 * We don't want to mount if someone's just doing a stat and they've
893 * set AT_SYMLINK_NOFOLLOW - unless they're stat'ing a directory and
894 * appended a '/' to the name.
895 */
896 if (!(flags & LOOKUP_FOLLOW) &&
897 !(flags & (LOOKUP_CONTINUE | LOOKUP_DIRECTORY |
898 LOOKUP_OPEN | LOOKUP_CREATE)))
899 return -EISDIR;
900
901 current->total_link_count++;
902 if (current->total_link_count >= 40)
903 return -ELOOP;
904
905 mnt = path->dentry->d_op->d_automount(path);
906 if (IS_ERR(mnt)) {
907 /*
908 * The filesystem is allowed to return -EISDIR here to indicate
909 * it doesn't want to automount. For instance, autofs would do
910 * this so that its userspace daemon can mount on this dentry.
911 *
912 * However, we can only permit this if it's a terminal point in
913 * the path being looked up; if it wasn't then the remainder of
914 * the path is inaccessible and we should say so.
915 */
916 if (PTR_ERR(mnt) == -EISDIR && (flags & LOOKUP_CONTINUE))
917 return -EREMOTE;
918 return PTR_ERR(mnt);
31e6b01f 919 }
ea5b778a 920
9875cf80
DH
921 if (!mnt) /* mount collision */
922 return 0;
31e6b01f 923
19a167af 924 err = finish_automount(mnt, path);
9875cf80 925
ea5b778a
DH
926 switch (err) {
927 case -EBUSY:
928 /* Someone else made a mount here whilst we were busy */
19a167af 929 return 0;
ea5b778a 930 case 0:
ea5b778a
DH
931 dput(path->dentry);
932 if (*need_mntput)
933 mntput(path->mnt);
934 path->mnt = mnt;
935 path->dentry = dget(mnt->mnt_root);
936 *need_mntput = true;
937 return 0;
19a167af
AV
938 default:
939 return err;
ea5b778a 940 }
19a167af 941
463ffb2e
AV
942}
943
9875cf80
DH
944/*
945 * Handle a dentry that is managed in some way.
cc53ce53 946 * - Flagged for transit management (autofs)
9875cf80
DH
947 * - Flagged as mountpoint
948 * - Flagged as automount point
949 *
950 * This may only be called in refwalk mode.
951 *
952 * Serialization is taken care of in namespace.c
953 */
954static int follow_managed(struct path *path, unsigned flags)
1da177e4 955{
9875cf80
DH
956 unsigned managed;
957 bool need_mntput = false;
958 int ret;
959
960 /* Given that we're not holding a lock here, we retain the value in a
961 * local variable for each dentry as we look at it so that we don't see
962 * the components of that value change under us */
963 while (managed = ACCESS_ONCE(path->dentry->d_flags),
964 managed &= DCACHE_MANAGED_DENTRY,
965 unlikely(managed != 0)) {
cc53ce53
DH
966 /* Allow the filesystem to manage the transit without i_mutex
967 * being held. */
968 if (managed & DCACHE_MANAGE_TRANSIT) {
969 BUG_ON(!path->dentry->d_op);
970 BUG_ON(!path->dentry->d_op->d_manage);
ab90911f
DH
971 ret = path->dentry->d_op->d_manage(path->dentry,
972 false, false);
cc53ce53
DH
973 if (ret < 0)
974 return ret == -EISDIR ? 0 : ret;
975 }
976
9875cf80
DH
977 /* Transit to a mounted filesystem. */
978 if (managed & DCACHE_MOUNTED) {
979 struct vfsmount *mounted = lookup_mnt(path);
980 if (mounted) {
981 dput(path->dentry);
982 if (need_mntput)
983 mntput(path->mnt);
984 path->mnt = mounted;
985 path->dentry = dget(mounted->mnt_root);
986 need_mntput = true;
987 continue;
988 }
989
990 /* Something is mounted on this dentry in another
991 * namespace and/or whatever was mounted there in this
992 * namespace got unmounted before we managed to get the
993 * vfsmount_lock */
994 }
995
996 /* Handle an automount point */
997 if (managed & DCACHE_NEED_AUTOMOUNT) {
998 ret = follow_automount(path, flags, &need_mntput);
999 if (ret < 0)
1000 return ret == -EISDIR ? 0 : ret;
1001 continue;
1002 }
1003
1004 /* We didn't change the current path point */
1005 break;
1da177e4 1006 }
9875cf80 1007 return 0;
1da177e4
LT
1008}
1009
cc53ce53 1010int follow_down_one(struct path *path)
1da177e4
LT
1011{
1012 struct vfsmount *mounted;
1013
1c755af4 1014 mounted = lookup_mnt(path);
1da177e4 1015 if (mounted) {
9393bd07
AV
1016 dput(path->dentry);
1017 mntput(path->mnt);
1018 path->mnt = mounted;
1019 path->dentry = dget(mounted->mnt_root);
1da177e4
LT
1020 return 1;
1021 }
1022 return 0;
1023}
1024
9875cf80
DH
1025/*
1026 * Skip to top of mountpoint pile in rcuwalk mode. We abort the rcu-walk if we
cc53ce53 1027 * meet a managed dentry and we're not walking to "..". True is returned to
9875cf80
DH
1028 * continue, false to abort.
1029 */
1030static bool __follow_mount_rcu(struct nameidata *nd, struct path *path,
1031 struct inode **inode, bool reverse_transit)
1032{
1033 while (d_mountpoint(path->dentry)) {
1034 struct vfsmount *mounted;
ab90911f
DH
1035 if (unlikely(path->dentry->d_flags & DCACHE_MANAGE_TRANSIT) &&
1036 !reverse_transit &&
1037 path->dentry->d_op->d_manage(path->dentry, false, true) < 0)
1038 return false;
9875cf80
DH
1039 mounted = __lookup_mnt(path->mnt, path->dentry, 1);
1040 if (!mounted)
1041 break;
1042 path->mnt = mounted;
1043 path->dentry = mounted->mnt_root;
1044 nd->seq = read_seqcount_begin(&path->dentry->d_seq);
1045 *inode = path->dentry->d_inode;
1046 }
1047
1048 if (unlikely(path->dentry->d_flags & DCACHE_NEED_AUTOMOUNT))
1049 return reverse_transit;
1050 return true;
1051}
1052
31e6b01f
NP
1053static int follow_dotdot_rcu(struct nameidata *nd)
1054{
1055 struct inode *inode = nd->inode;
1056
1057 set_root_rcu(nd);
1058
9875cf80 1059 while (1) {
31e6b01f
NP
1060 if (nd->path.dentry == nd->root.dentry &&
1061 nd->path.mnt == nd->root.mnt) {
1062 break;
1063 }
1064 if (nd->path.dentry != nd->path.mnt->mnt_root) {
1065 struct dentry *old = nd->path.dentry;
1066 struct dentry *parent = old->d_parent;
1067 unsigned seq;
1068
1069 seq = read_seqcount_begin(&parent->d_seq);
1070 if (read_seqcount_retry(&old->d_seq, nd->seq))
1071 return -ECHILD;
1072 inode = parent->d_inode;
1073 nd->path.dentry = parent;
1074 nd->seq = seq;
1075 break;
1076 }
1077 if (!follow_up_rcu(&nd->path))
1078 break;
1079 nd->seq = read_seqcount_begin(&nd->path.dentry->d_seq);
1080 inode = nd->path.dentry->d_inode;
1081 }
9875cf80 1082 __follow_mount_rcu(nd, &nd->path, &inode, true);
31e6b01f
NP
1083 nd->inode = inode;
1084
1085 return 0;
1086}
1087
cc53ce53
DH
1088/*
1089 * Follow down to the covering mount currently visible to userspace. At each
1090 * point, the filesystem owning that dentry may be queried as to whether the
1091 * caller is permitted to proceed or not.
1092 *
1093 * Care must be taken as namespace_sem may be held (indicated by mounting_here
1094 * being true).
1095 */
1096int follow_down(struct path *path, bool mounting_here)
1097{
1098 unsigned managed;
1099 int ret;
1100
1101 while (managed = ACCESS_ONCE(path->dentry->d_flags),
1102 unlikely(managed & DCACHE_MANAGED_DENTRY)) {
1103 /* Allow the filesystem to manage the transit without i_mutex
1104 * being held.
1105 *
1106 * We indicate to the filesystem if someone is trying to mount
1107 * something here. This gives autofs the chance to deny anyone
1108 * other than its daemon the right to mount on its
1109 * superstructure.
1110 *
1111 * The filesystem may sleep at this point.
1112 */
1113 if (managed & DCACHE_MANAGE_TRANSIT) {
1114 BUG_ON(!path->dentry->d_op);
1115 BUG_ON(!path->dentry->d_op->d_manage);
ab90911f
DH
1116 ret = path->dentry->d_op->d_manage(
1117 path->dentry, mounting_here, false);
cc53ce53
DH
1118 if (ret < 0)
1119 return ret == -EISDIR ? 0 : ret;
1120 }
1121
1122 /* Transit to a mounted filesystem. */
1123 if (managed & DCACHE_MOUNTED) {
1124 struct vfsmount *mounted = lookup_mnt(path);
1125 if (!mounted)
1126 break;
1127 dput(path->dentry);
1128 mntput(path->mnt);
1129 path->mnt = mounted;
1130 path->dentry = dget(mounted->mnt_root);
1131 continue;
1132 }
1133
1134 /* Don't handle automount points here */
1135 break;
1136 }
1137 return 0;
1138}
1139
9875cf80
DH
1140/*
1141 * Skip to top of mountpoint pile in refwalk mode for follow_dotdot()
1142 */
1143static void follow_mount(struct path *path)
1144{
1145 while (d_mountpoint(path->dentry)) {
1146 struct vfsmount *mounted = lookup_mnt(path);
1147 if (!mounted)
1148 break;
1149 dput(path->dentry);
1150 mntput(path->mnt);
1151 path->mnt = mounted;
1152 path->dentry = dget(mounted->mnt_root);
1153 }
1154}
1155
31e6b01f 1156static void follow_dotdot(struct nameidata *nd)
1da177e4 1157{
2a737871 1158 set_root(nd);
e518ddb7 1159
1da177e4 1160 while(1) {
4ac91378 1161 struct dentry *old = nd->path.dentry;
1da177e4 1162
2a737871
AV
1163 if (nd->path.dentry == nd->root.dentry &&
1164 nd->path.mnt == nd->root.mnt) {
1da177e4
LT
1165 break;
1166 }
4ac91378 1167 if (nd->path.dentry != nd->path.mnt->mnt_root) {
3088dd70
AV
1168 /* rare case of legitimate dget_parent()... */
1169 nd->path.dentry = dget_parent(nd->path.dentry);
1da177e4
LT
1170 dput(old);
1171 break;
1172 }
3088dd70 1173 if (!follow_up(&nd->path))
1da177e4 1174 break;
1da177e4 1175 }
79ed0226 1176 follow_mount(&nd->path);
31e6b01f 1177 nd->inode = nd->path.dentry->d_inode;
1da177e4
LT
1178}
1179
baa03890
NP
1180/*
1181 * Allocate a dentry with name and parent, and perform a parent
1182 * directory ->lookup on it. Returns the new dentry, or ERR_PTR
1183 * on error. parent->d_inode->i_mutex must be held. d_lookup must
1184 * have verified that no child exists while under i_mutex.
1185 */
1186static struct dentry *d_alloc_and_lookup(struct dentry *parent,
1187 struct qstr *name, struct nameidata *nd)
1188{
1189 struct inode *inode = parent->d_inode;
1190 struct dentry *dentry;
1191 struct dentry *old;
1192
1193 /* Don't create child dentry for a dead directory. */
1194 if (unlikely(IS_DEADDIR(inode)))
1195 return ERR_PTR(-ENOENT);
1196
1197 dentry = d_alloc(parent, name);
1198 if (unlikely(!dentry))
1199 return ERR_PTR(-ENOMEM);
1200
1201 old = inode->i_op->lookup(inode, dentry, nd);
1202 if (unlikely(old)) {
1203 dput(dentry);
1204 dentry = old;
1205 }
1206 return dentry;
1207}
1208
1da177e4
LT
1209/*
1210 * It's more convoluted than I'd like it to be, but... it's still fairly
1211 * small and for now I'd prefer to have fast path as straight as possible.
1212 * It _is_ time-critical.
1213 */
1214static int do_lookup(struct nameidata *nd, struct qstr *name,
31e6b01f 1215 struct path *path, struct inode **inode)
1da177e4 1216{
4ac91378 1217 struct vfsmount *mnt = nd->path.mnt;
31e6b01f 1218 struct dentry *dentry, *parent = nd->path.dentry;
6e6b1bd1 1219 struct inode *dir;
9875cf80
DH
1220 int err;
1221
3cac260a
AV
1222 /*
1223 * See if the low-level filesystem might want
1224 * to use its own hash..
1225 */
fb045adb 1226 if (unlikely(parent->d_flags & DCACHE_OP_HASH)) {
9875cf80 1227 err = parent->d_op->d_hash(parent, nd->inode, name);
3cac260a
AV
1228 if (err < 0)
1229 return err;
1230 }
1da177e4 1231
b04f784e
NP
1232 /*
1233 * Rename seqlock is not required here because in the off chance
1234 * of a false negative due to a concurrent rename, we're going to
1235 * do the non-racy lookup, below.
1236 */
31e6b01f
NP
1237 if (nd->flags & LOOKUP_RCU) {
1238 unsigned seq;
1239
1240 *inode = nd->inode;
1241 dentry = __d_lookup_rcu(parent, name, &seq, inode);
1242 if (!dentry) {
1243 if (nameidata_drop_rcu(nd))
1244 return -ECHILD;
1245 goto need_lookup;
1246 }
1247 /* Memory barrier in read_seqcount_begin of child is enough */
1248 if (__read_seqcount_retry(&parent->d_seq, nd->seq))
1249 return -ECHILD;
1250
1251 nd->seq = seq;
24643087 1252 if (unlikely(dentry->d_flags & DCACHE_OP_REVALIDATE)) {
f5e1c1c1 1253 dentry = do_revalidate_rcu(dentry, nd);
24643087
AV
1254 if (!dentry)
1255 goto need_lookup;
1256 if (IS_ERR(dentry))
1257 goto fail;
1258 if (!(nd->flags & LOOKUP_RCU))
1259 goto done;
1260 }
31e6b01f
NP
1261 path->mnt = mnt;
1262 path->dentry = dentry;
9875cf80
DH
1263 if (likely(__follow_mount_rcu(nd, path, inode, false)))
1264 return 0;
1265 if (nameidata_drop_rcu(nd))
1266 return -ECHILD;
1267 /* fallthru */
1268 }
1269 dentry = __d_lookup(parent, name);
1270 if (!dentry)
1271 goto need_lookup;
2e2e88ea 1272found:
24643087
AV
1273 if (unlikely(dentry->d_flags & DCACHE_OP_REVALIDATE)) {
1274 dentry = do_revalidate(dentry, nd);
1275 if (!dentry)
1276 goto need_lookup;
1277 if (IS_ERR(dentry))
1278 goto fail;
1279 }
1da177e4 1280done:
9875cf80
DH
1281 path->mnt = mnt;
1282 path->dentry = dentry;
1283 err = follow_managed(path, nd->flags);
89312214
IK
1284 if (unlikely(err < 0)) {
1285 path_put_conditional(path, nd);
9875cf80 1286 return err;
89312214 1287 }
9875cf80 1288 *inode = path->dentry->d_inode;
1da177e4
LT
1289 return 0;
1290
1291need_lookup:
6e6b1bd1 1292 dir = parent->d_inode;
31e6b01f 1293 BUG_ON(nd->inode != dir);
6e6b1bd1
AV
1294
1295 mutex_lock(&dir->i_mutex);
1296 /*
1297 * First re-do the cached lookup just in case it was created
b04f784e
NP
1298 * while we waited for the directory semaphore, or the first
1299 * lookup failed due to an unrelated rename.
6e6b1bd1 1300 *
b04f784e
NP
1301 * This could use version numbering or similar to avoid unnecessary
1302 * cache lookups, but then we'd have to do the first lookup in the
1303 * non-racy way. However in the common case here, everything should
1304 * be hot in cache, so would it be a big win?
6e6b1bd1
AV
1305 */
1306 dentry = d_lookup(parent, name);
baa03890
NP
1307 if (likely(!dentry)) {
1308 dentry = d_alloc_and_lookup(parent, name, nd);
6e6b1bd1
AV
1309 mutex_unlock(&dir->i_mutex);
1310 if (IS_ERR(dentry))
1311 goto fail;
1312 goto done;
1313 }
6e6b1bd1
AV
1314 /*
1315 * Uhhuh! Nasty case: the cache was re-populated while
1316 * we waited on the semaphore. Need to revalidate.
1317 */
1318 mutex_unlock(&dir->i_mutex);
2e2e88ea 1319 goto found;
1da177e4 1320
1da177e4
LT
1321fail:
1322 return PTR_ERR(dentry);
1323}
1324
1325/*
1326 * Name resolution.
ea3834d9
PM
1327 * This is the basic name resolution function, turning a pathname into
1328 * the final dentry. We expect 'base' to be positive and a directory.
1da177e4 1329 *
ea3834d9
PM
1330 * Returns 0 and nd will have valid dentry and mnt on success.
1331 * Returns error and drops reference to input namei data on failure.
1da177e4 1332 */
6de88d72 1333static int link_path_walk(const char *name, struct nameidata *nd)
1da177e4
LT
1334{
1335 struct path next;
1da177e4
LT
1336 int err;
1337 unsigned int lookup_flags = nd->flags;
1338
1339 while (*name=='/')
1340 name++;
1341 if (!*name)
1342 goto return_reval;
1343
1da177e4 1344 if (nd->depth)
f55eab82 1345 lookup_flags = LOOKUP_FOLLOW | (nd->flags & LOOKUP_CONTINUE);
1da177e4
LT
1346
1347 /* At this point we know we have a real path component. */
1348 for(;;) {
31e6b01f 1349 struct inode *inode;
1da177e4
LT
1350 unsigned long hash;
1351 struct qstr this;
1352 unsigned int c;
1353
cdce5d6b 1354 nd->flags |= LOOKUP_CONTINUE;
31e6b01f 1355 if (nd->flags & LOOKUP_RCU) {
b74c79e9 1356 err = exec_permission(nd->inode, IPERM_FLAG_RCU);
31e6b01f
NP
1357 if (err == -ECHILD) {
1358 if (nameidata_drop_rcu(nd))
1359 return -ECHILD;
1360 goto exec_again;
1361 }
1362 } else {
1363exec_again:
b74c79e9 1364 err = exec_permission(nd->inode, 0);
31e6b01f 1365 }
1da177e4
LT
1366 if (err)
1367 break;
1368
1369 this.name = name;
1370 c = *(const unsigned char *)name;
1371
1372 hash = init_name_hash();
1373 do {
1374 name++;
1375 hash = partial_name_hash(c, hash);
1376 c = *(const unsigned char *)name;
1377 } while (c && (c != '/'));
1378 this.len = name - (const char *) this.name;
1379 this.hash = end_name_hash(hash);
1380
1381 /* remove trailing slashes? */
1382 if (!c)
1383 goto last_component;
1384 while (*++name == '/');
1385 if (!*name)
1386 goto last_with_slashes;
1387
1388 /*
1389 * "." and ".." are special - ".." especially so because it has
1390 * to be able to know about the current root directory and
1391 * parent relationships.
1392 */
1393 if (this.name[0] == '.') switch (this.len) {
1394 default:
1395 break;
31e6b01f 1396 case 2:
1da177e4
LT
1397 if (this.name[1] != '.')
1398 break;
31e6b01f
NP
1399 if (nd->flags & LOOKUP_RCU) {
1400 if (follow_dotdot_rcu(nd))
1401 return -ECHILD;
1402 } else
1403 follow_dotdot(nd);
1da177e4
LT
1404 /* fallthrough */
1405 case 1:
1406 continue;
1407 }
1da177e4 1408 /* This does the actual lookups.. */
31e6b01f 1409 err = do_lookup(nd, &this, &next, &inode);
1da177e4
LT
1410 if (err)
1411 break;
1da177e4 1412 err = -ENOENT;
1da177e4
LT
1413 if (!inode)
1414 goto out_dput;
1da177e4
LT
1415
1416 if (inode->i_op->follow_link) {
3abb17e8 1417 err = do_follow_link(inode, &next, nd);
1da177e4
LT
1418 if (err)
1419 goto return_err;
31e6b01f 1420 nd->inode = nd->path.dentry->d_inode;
1da177e4 1421 err = -ENOENT;
31e6b01f 1422 if (!nd->inode)
1da177e4 1423 break;
31e6b01f 1424 } else {
09dd17d3 1425 path_to_nameidata(&next, nd);
31e6b01f
NP
1426 nd->inode = inode;
1427 }
1da177e4 1428 err = -ENOTDIR;
31e6b01f 1429 if (!nd->inode->i_op->lookup)
1da177e4
LT
1430 break;
1431 continue;
1432 /* here ends the main loop */
1433
1434last_with_slashes:
1435 lookup_flags |= LOOKUP_FOLLOW | LOOKUP_DIRECTORY;
1436last_component:
f55eab82
TM
1437 /* Clear LOOKUP_CONTINUE iff it was previously unset */
1438 nd->flags &= lookup_flags | ~LOOKUP_CONTINUE;
1da177e4
LT
1439 if (lookup_flags & LOOKUP_PARENT)
1440 goto lookup_parent;
1441 if (this.name[0] == '.') switch (this.len) {
1442 default:
1443 break;
31e6b01f 1444 case 2:
1da177e4
LT
1445 if (this.name[1] != '.')
1446 break;
31e6b01f
NP
1447 if (nd->flags & LOOKUP_RCU) {
1448 if (follow_dotdot_rcu(nd))
1449 return -ECHILD;
1450 } else
1451 follow_dotdot(nd);
1da177e4
LT
1452 /* fallthrough */
1453 case 1:
1454 goto return_reval;
1455 }
31e6b01f 1456 err = do_lookup(nd, &this, &next, &inode);
1da177e4
LT
1457 if (err)
1458 break;
db372915
DH
1459 if (inode && unlikely(inode->i_op->follow_link) &&
1460 (lookup_flags & LOOKUP_FOLLOW)) {
3abb17e8 1461 err = do_follow_link(inode, &next, nd);
1da177e4
LT
1462 if (err)
1463 goto return_err;
31e6b01f
NP
1464 nd->inode = nd->path.dentry->d_inode;
1465 } else {
09dd17d3 1466 path_to_nameidata(&next, nd);
31e6b01f
NP
1467 nd->inode = inode;
1468 }
1da177e4 1469 err = -ENOENT;
31e6b01f 1470 if (!nd->inode)
1da177e4
LT
1471 break;
1472 if (lookup_flags & LOOKUP_DIRECTORY) {
1473 err = -ENOTDIR;
31e6b01f 1474 if (!nd->inode->i_op->lookup)
1da177e4
LT
1475 break;
1476 }
1477 goto return_base;
1478lookup_parent:
1479 nd->last = this;
1480 nd->last_type = LAST_NORM;
1481 if (this.name[0] != '.')
1482 goto return_base;
1483 if (this.len == 1)
1484 nd->last_type = LAST_DOT;
1485 else if (this.len == 2 && this.name[1] == '.')
1486 nd->last_type = LAST_DOTDOT;
1487 else
1488 goto return_base;
1489return_reval:
1490 /*
1491 * We bypassed the ordinary revalidation routines.
1492 * We may need to check the cached dentry for staleness.
1493 */
fb045adb 1494 if (need_reval_dot(nd->path.dentry)) {
f60aef7e
AV
1495 if (nameidata_drop_rcu_last_maybe(nd))
1496 return -ECHILD;
1da177e4 1497 /* Note: we do not d_invalidate() */
34286d66
NP
1498 err = d_revalidate(nd->path.dentry, nd);
1499 if (!err)
1500 err = -ESTALE;
1501 if (err < 0)
1da177e4 1502 break;
f60aef7e 1503 return 0;
1da177e4
LT
1504 }
1505return_base:
31e6b01f
NP
1506 if (nameidata_drop_rcu_last_maybe(nd))
1507 return -ECHILD;
1da177e4
LT
1508 return 0;
1509out_dput:
31e6b01f
NP
1510 if (!(nd->flags & LOOKUP_RCU))
1511 path_put_conditional(&next, nd);
1da177e4
LT
1512 break;
1513 }
31e6b01f
NP
1514 if (!(nd->flags & LOOKUP_RCU))
1515 path_put(&nd->path);
1da177e4
LT
1516return_err:
1517 return err;
1518}
1519
31e6b01f
NP
1520static inline int path_walk_rcu(const char *name, struct nameidata *nd)
1521{
1522 current->total_link_count = 0;
1523
1524 return link_path_walk(name, nd);
1525}
1526
1527static inline int path_walk_simple(const char *name, struct nameidata *nd)
1528{
1529 current->total_link_count = 0;
1530
1531 return link_path_walk(name, nd);
1532}
1533
fc9b52cd 1534static int path_walk(const char *name, struct nameidata *nd)
1da177e4 1535{
6de88d72
AV
1536 struct path save = nd->path;
1537 int result;
1538
1da177e4 1539 current->total_link_count = 0;
6de88d72
AV
1540
1541 /* make sure the stuff we saved doesn't go away */
1542 path_get(&save);
1543
1544 result = link_path_walk(name, nd);
1545 if (result == -ESTALE) {
1546 /* nd->path had been dropped */
1547 current->total_link_count = 0;
1548 nd->path = save;
1549 path_get(&nd->path);
1550 nd->flags |= LOOKUP_REVAL;
1551 result = link_path_walk(name, nd);
1552 }
1553
1554 path_put(&save);
1555
1556 return result;
1da177e4
LT
1557}
1558
31e6b01f
NP
1559static void path_finish_rcu(struct nameidata *nd)
1560{
1561 if (nd->flags & LOOKUP_RCU) {
1562 /* RCU dangling. Cancel it. */
1563 nd->flags &= ~LOOKUP_RCU;
1564 nd->root.mnt = NULL;
1565 rcu_read_unlock();
1566 br_read_unlock(vfsmount_lock);
1567 }
1568 if (nd->file)
1569 fput(nd->file);
1570}
1571
1572static int path_init_rcu(int dfd, const char *name, unsigned int flags, struct nameidata *nd)
1573{
1574 int retval = 0;
1575 int fput_needed;
1576 struct file *file;
1577
1578 nd->last_type = LAST_ROOT; /* if there are only slashes... */
1579 nd->flags = flags | LOOKUP_RCU;
1580 nd->depth = 0;
1581 nd->root.mnt = NULL;
1582 nd->file = NULL;
1583
1584 if (*name=='/') {
1585 struct fs_struct *fs = current->fs;
c28cc364 1586 unsigned seq;
31e6b01f
NP
1587
1588 br_read_lock(vfsmount_lock);
1589 rcu_read_lock();
1590
c28cc364
NP
1591 do {
1592 seq = read_seqcount_begin(&fs->seq);
1593 nd->root = fs->root;
1594 nd->path = nd->root;
1595 nd->seq = __read_seqcount_begin(&nd->path.dentry->d_seq);
1596 } while (read_seqcount_retry(&fs->seq, seq));
31e6b01f
NP
1597
1598 } else if (dfd == AT_FDCWD) {
1599 struct fs_struct *fs = current->fs;
c28cc364 1600 unsigned seq;
31e6b01f
NP
1601
1602 br_read_lock(vfsmount_lock);
1603 rcu_read_lock();
1604
c28cc364
NP
1605 do {
1606 seq = read_seqcount_begin(&fs->seq);
1607 nd->path = fs->pwd;
1608 nd->seq = __read_seqcount_begin(&nd->path.dentry->d_seq);
1609 } while (read_seqcount_retry(&fs->seq, seq));
1610
31e6b01f
NP
1611 } else {
1612 struct dentry *dentry;
1613
1614 file = fget_light(dfd, &fput_needed);
1615 retval = -EBADF;
1616 if (!file)
1617 goto out_fail;
1618
1619 dentry = file->f_path.dentry;
1620
1621 retval = -ENOTDIR;
1622 if (!S_ISDIR(dentry->d_inode->i_mode))
1623 goto fput_fail;
1624
1625 retval = file_permission(file, MAY_EXEC);
1626 if (retval)
1627 goto fput_fail;
1628
1629 nd->path = file->f_path;
1630 if (fput_needed)
1631 nd->file = file;
1632
c28cc364 1633 nd->seq = __read_seqcount_begin(&nd->path.dentry->d_seq);
31e6b01f
NP
1634 br_read_lock(vfsmount_lock);
1635 rcu_read_lock();
1636 }
1637 nd->inode = nd->path.dentry->d_inode;
1638 return 0;
1639
1640fput_fail:
1641 fput_light(file, fput_needed);
1642out_fail:
1643 return retval;
1644}
1645
9b4a9b14 1646static int path_init(int dfd, const char *name, unsigned int flags, struct nameidata *nd)
1da177e4 1647{
ea3834d9 1648 int retval = 0;
170aa3d0
UD
1649 int fput_needed;
1650 struct file *file;
1da177e4
LT
1651
1652 nd->last_type = LAST_ROOT; /* if there are only slashes... */
1653 nd->flags = flags;
1654 nd->depth = 0;
2a737871 1655 nd->root.mnt = NULL;
1da177e4 1656
1da177e4 1657 if (*name=='/') {
2a737871
AV
1658 set_root(nd);
1659 nd->path = nd->root;
1660 path_get(&nd->root);
5590ff0d 1661 } else if (dfd == AT_FDCWD) {
f7ad3c6b 1662 get_fs_pwd(current->fs, &nd->path);
5590ff0d 1663 } else {
5590ff0d
UD
1664 struct dentry *dentry;
1665
1666 file = fget_light(dfd, &fput_needed);
170aa3d0
UD
1667 retval = -EBADF;
1668 if (!file)
6d09bb62 1669 goto out_fail;
5590ff0d 1670
0f7fc9e4 1671 dentry = file->f_path.dentry;
5590ff0d 1672
170aa3d0
UD
1673 retval = -ENOTDIR;
1674 if (!S_ISDIR(dentry->d_inode->i_mode))
6d09bb62 1675 goto fput_fail;
5590ff0d
UD
1676
1677 retval = file_permission(file, MAY_EXEC);
170aa3d0 1678 if (retval)
6d09bb62 1679 goto fput_fail;
5590ff0d 1680
5dd784d0
JB
1681 nd->path = file->f_path;
1682 path_get(&file->f_path);
5590ff0d
UD
1683
1684 fput_light(file, fput_needed);
1da177e4 1685 }
31e6b01f 1686 nd->inode = nd->path.dentry->d_inode;
9b4a9b14 1687 return 0;
2dfdd266 1688
9b4a9b14
AV
1689fput_fail:
1690 fput_light(file, fput_needed);
1691out_fail:
1692 return retval;
1693}
1694
1695/* Returns 0 and nd will be valid on success; Retuns error, otherwise. */
1696static int do_path_lookup(int dfd, const char *name,
1697 unsigned int flags, struct nameidata *nd)
1698{
31e6b01f
NP
1699 int retval;
1700
1701 /*
1702 * Path walking is largely split up into 2 different synchronisation
1703 * schemes, rcu-walk and ref-walk (explained in
1704 * Documentation/filesystems/path-lookup.txt). These share much of the
1705 * path walk code, but some things particularly setup, cleanup, and
1706 * following mounts are sufficiently divergent that functions are
1707 * duplicated. Typically there is a function foo(), and its RCU
1708 * analogue, foo_rcu().
1709 *
1710 * -ECHILD is the error number of choice (just to avoid clashes) that
1711 * is returned if some aspect of an rcu-walk fails. Such an error must
1712 * be handled by restarting a traditional ref-walk (which will always
1713 * be able to complete).
1714 */
1715 retval = path_init_rcu(dfd, name, flags, nd);
1716 if (unlikely(retval))
1717 return retval;
1718 retval = path_walk_rcu(name, nd);
1719 path_finish_rcu(nd);
2a737871
AV
1720 if (nd->root.mnt) {
1721 path_put(&nd->root);
1722 nd->root.mnt = NULL;
1723 }
31e6b01f
NP
1724
1725 if (unlikely(retval == -ECHILD || retval == -ESTALE)) {
1726 /* slower, locked walk */
1727 if (retval == -ESTALE)
1728 flags |= LOOKUP_REVAL;
1729 retval = path_init(dfd, name, flags, nd);
1730 if (unlikely(retval))
1731 return retval;
1732 retval = path_walk(name, nd);
1733 if (nd->root.mnt) {
1734 path_put(&nd->root);
1735 nd->root.mnt = NULL;
1736 }
1737 }
1738
1739 if (likely(!retval)) {
1740 if (unlikely(!audit_dummy_context())) {
1741 if (nd->path.dentry && nd->inode)
1742 audit_inode(name, nd->path.dentry);
1743 }
1744 }
1745
170aa3d0 1746 return retval;
1da177e4
LT
1747}
1748
fc9b52cd 1749int path_lookup(const char *name, unsigned int flags,
5590ff0d
UD
1750 struct nameidata *nd)
1751{
1752 return do_path_lookup(AT_FDCWD, name, flags, nd);
1753}
1754
d1811465
AV
1755int kern_path(const char *name, unsigned int flags, struct path *path)
1756{
1757 struct nameidata nd;
1758 int res = do_path_lookup(AT_FDCWD, name, flags, &nd);
1759 if (!res)
1760 *path = nd.path;
1761 return res;
1762}
1763
16f18200
JJS
1764/**
1765 * vfs_path_lookup - lookup a file path relative to a dentry-vfsmount pair
1766 * @dentry: pointer to dentry of the base directory
1767 * @mnt: pointer to vfs mount of the base directory
1768 * @name: pointer to file name
1769 * @flags: lookup flags
1770 * @nd: pointer to nameidata
1771 */
1772int vfs_path_lookup(struct dentry *dentry, struct vfsmount *mnt,
1773 const char *name, unsigned int flags,
1774 struct nameidata *nd)
1775{
1776 int retval;
1777
1778 /* same as do_path_lookup */
1779 nd->last_type = LAST_ROOT;
1780 nd->flags = flags;
1781 nd->depth = 0;
1782
c8e7f449
JB
1783 nd->path.dentry = dentry;
1784 nd->path.mnt = mnt;
1785 path_get(&nd->path);
5b857119
AV
1786 nd->root = nd->path;
1787 path_get(&nd->root);
31e6b01f 1788 nd->inode = nd->path.dentry->d_inode;
16f18200
JJS
1789
1790 retval = path_walk(name, nd);
4ac91378 1791 if (unlikely(!retval && !audit_dummy_context() && nd->path.dentry &&
31e6b01f 1792 nd->inode))
4ac91378 1793 audit_inode(name, nd->path.dentry);
16f18200 1794
5b857119
AV
1795 path_put(&nd->root);
1796 nd->root.mnt = NULL;
16f18200 1797
2a737871 1798 return retval;
16f18200
JJS
1799}
1800
eead1911
CH
1801static struct dentry *__lookup_hash(struct qstr *name,
1802 struct dentry *base, struct nameidata *nd)
1da177e4 1803{
81fca444 1804 struct inode *inode = base->d_inode;
057f6c01 1805 struct dentry *dentry;
1da177e4
LT
1806 int err;
1807
b74c79e9 1808 err = exec_permission(inode, 0);
81fca444
CH
1809 if (err)
1810 return ERR_PTR(err);
1da177e4
LT
1811
1812 /*
1813 * See if the low-level filesystem might want
1814 * to use its own hash..
1815 */
fb045adb 1816 if (base->d_flags & DCACHE_OP_HASH) {
b1e6a015 1817 err = base->d_op->d_hash(base, inode, name);
1da177e4
LT
1818 dentry = ERR_PTR(err);
1819 if (err < 0)
1820 goto out;
1821 }
1822
b04f784e
NP
1823 /*
1824 * Don't bother with __d_lookup: callers are for creat as
1825 * well as unlink, so a lot of the time it would cost
1826 * a double lookup.
6e6b1bd1 1827 */
b04f784e 1828 dentry = d_lookup(base, name);
6e6b1bd1 1829
fb045adb 1830 if (dentry && (dentry->d_flags & DCACHE_OP_REVALIDATE))
6e6b1bd1
AV
1831 dentry = do_revalidate(dentry, nd);
1832
baa03890
NP
1833 if (!dentry)
1834 dentry = d_alloc_and_lookup(base, name, nd);
1da177e4
LT
1835out:
1836 return dentry;
1837}
1838
057f6c01
JM
1839/*
1840 * Restricted form of lookup. Doesn't follow links, single-component only,
1841 * needs parent already locked. Doesn't follow mounts.
1842 * SMP-safe.
1843 */
eead1911 1844static struct dentry *lookup_hash(struct nameidata *nd)
057f6c01 1845{
4ac91378 1846 return __lookup_hash(&nd->last, nd->path.dentry, nd);
1da177e4
LT
1847}
1848
eead1911
CH
1849static int __lookup_one_len(const char *name, struct qstr *this,
1850 struct dentry *base, int len)
1da177e4
LT
1851{
1852 unsigned long hash;
1da177e4
LT
1853 unsigned int c;
1854
057f6c01
JM
1855 this->name = name;
1856 this->len = len;
1da177e4 1857 if (!len)
057f6c01 1858 return -EACCES;
1da177e4
LT
1859
1860 hash = init_name_hash();
1861 while (len--) {
1862 c = *(const unsigned char *)name++;
1863 if (c == '/' || c == '\0')
057f6c01 1864 return -EACCES;
1da177e4
LT
1865 hash = partial_name_hash(c, hash);
1866 }
057f6c01
JM
1867 this->hash = end_name_hash(hash);
1868 return 0;
1869}
1da177e4 1870
eead1911 1871/**
a6b91919 1872 * lookup_one_len - filesystem helper to lookup single pathname component
eead1911
CH
1873 * @name: pathname component to lookup
1874 * @base: base directory to lookup from
1875 * @len: maximum length @len should be interpreted to
1876 *
a6b91919
RD
1877 * Note that this routine is purely a helper for filesystem usage and should
1878 * not be called by generic code. Also note that by using this function the
eead1911
CH
1879 * nameidata argument is passed to the filesystem methods and a filesystem
1880 * using this helper needs to be prepared for that.
1881 */
057f6c01
JM
1882struct dentry *lookup_one_len(const char *name, struct dentry *base, int len)
1883{
1884 int err;
1885 struct qstr this;
1886
2f9092e1
DW
1887 WARN_ON_ONCE(!mutex_is_locked(&base->d_inode->i_mutex));
1888
057f6c01 1889 err = __lookup_one_len(name, &this, base, len);
eead1911
CH
1890 if (err)
1891 return ERR_PTR(err);
1892
49705b77 1893 return __lookup_hash(&this, base, NULL);
057f6c01
JM
1894}
1895
2d8f3038
AV
1896int user_path_at(int dfd, const char __user *name, unsigned flags,
1897 struct path *path)
1da177e4 1898{
2d8f3038 1899 struct nameidata nd;
1da177e4
LT
1900 char *tmp = getname(name);
1901 int err = PTR_ERR(tmp);
1da177e4 1902 if (!IS_ERR(tmp)) {
2d8f3038
AV
1903
1904 BUG_ON(flags & LOOKUP_PARENT);
1905
1906 err = do_path_lookup(dfd, tmp, flags, &nd);
1da177e4 1907 putname(tmp);
2d8f3038
AV
1908 if (!err)
1909 *path = nd.path;
1da177e4
LT
1910 }
1911 return err;
1912}
1913
2ad94ae6
AV
1914static int user_path_parent(int dfd, const char __user *path,
1915 struct nameidata *nd, char **name)
1916{
1917 char *s = getname(path);
1918 int error;
1919
1920 if (IS_ERR(s))
1921 return PTR_ERR(s);
1922
1923 error = do_path_lookup(dfd, s, LOOKUP_PARENT, nd);
1924 if (error)
1925 putname(s);
1926 else
1927 *name = s;
1928
1929 return error;
1930}
1931
1da177e4
LT
1932/*
1933 * It's inline, so penalty for filesystems that don't use sticky bit is
1934 * minimal.
1935 */
1936static inline int check_sticky(struct inode *dir, struct inode *inode)
1937{
da9592ed
DH
1938 uid_t fsuid = current_fsuid();
1939
1da177e4
LT
1940 if (!(dir->i_mode & S_ISVTX))
1941 return 0;
da9592ed 1942 if (inode->i_uid == fsuid)
1da177e4 1943 return 0;
da9592ed 1944 if (dir->i_uid == fsuid)
1da177e4
LT
1945 return 0;
1946 return !capable(CAP_FOWNER);
1947}
1948
1949/*
1950 * Check whether we can remove a link victim from directory dir, check
1951 * whether the type of victim is right.
1952 * 1. We can't do it if dir is read-only (done in permission())
1953 * 2. We should have write and exec permissions on dir
1954 * 3. We can't remove anything from append-only dir
1955 * 4. We can't do anything with immutable dir (done in permission())
1956 * 5. If the sticky bit on dir is set we should either
1957 * a. be owner of dir, or
1958 * b. be owner of victim, or
1959 * c. have CAP_FOWNER capability
1960 * 6. If the victim is append-only or immutable we can't do antyhing with
1961 * links pointing to it.
1962 * 7. If we were asked to remove a directory and victim isn't one - ENOTDIR.
1963 * 8. If we were asked to remove a non-directory and victim isn't one - EISDIR.
1964 * 9. We can't remove a root or mountpoint.
1965 * 10. We don't allow removal of NFS sillyrenamed files; it's handled by
1966 * nfs_async_unlink().
1967 */
858119e1 1968static int may_delete(struct inode *dir,struct dentry *victim,int isdir)
1da177e4
LT
1969{
1970 int error;
1971
1972 if (!victim->d_inode)
1973 return -ENOENT;
1974
1975 BUG_ON(victim->d_parent->d_inode != dir);
cccc6bba 1976 audit_inode_child(victim, dir);
1da177e4 1977
f419a2e3 1978 error = inode_permission(dir, MAY_WRITE | MAY_EXEC);
1da177e4
LT
1979 if (error)
1980 return error;
1981 if (IS_APPEND(dir))
1982 return -EPERM;
1983 if (check_sticky(dir, victim->d_inode)||IS_APPEND(victim->d_inode)||
f9454548 1984 IS_IMMUTABLE(victim->d_inode) || IS_SWAPFILE(victim->d_inode))
1da177e4
LT
1985 return -EPERM;
1986 if (isdir) {
1987 if (!S_ISDIR(victim->d_inode->i_mode))
1988 return -ENOTDIR;
1989 if (IS_ROOT(victim))
1990 return -EBUSY;
1991 } else if (S_ISDIR(victim->d_inode->i_mode))
1992 return -EISDIR;
1993 if (IS_DEADDIR(dir))
1994 return -ENOENT;
1995 if (victim->d_flags & DCACHE_NFSFS_RENAMED)
1996 return -EBUSY;
1997 return 0;
1998}
1999
2000/* Check whether we can create an object with dentry child in directory
2001 * dir.
2002 * 1. We can't do it if child already exists (open has special treatment for
2003 * this case, but since we are inlined it's OK)
2004 * 2. We can't do it if dir is read-only (done in permission())
2005 * 3. We should have write and exec permissions on dir
2006 * 4. We can't do it if dir is immutable (done in permission())
2007 */
a95164d9 2008static inline int may_create(struct inode *dir, struct dentry *child)
1da177e4
LT
2009{
2010 if (child->d_inode)
2011 return -EEXIST;
2012 if (IS_DEADDIR(dir))
2013 return -ENOENT;
f419a2e3 2014 return inode_permission(dir, MAY_WRITE | MAY_EXEC);
1da177e4
LT
2015}
2016
1da177e4
LT
2017/*
2018 * p1 and p2 should be directories on the same fs.
2019 */
2020struct dentry *lock_rename(struct dentry *p1, struct dentry *p2)
2021{
2022 struct dentry *p;
2023
2024 if (p1 == p2) {
f2eace23 2025 mutex_lock_nested(&p1->d_inode->i_mutex, I_MUTEX_PARENT);
1da177e4
LT
2026 return NULL;
2027 }
2028
a11f3a05 2029 mutex_lock(&p1->d_inode->i_sb->s_vfs_rename_mutex);
1da177e4 2030
e2761a11
OH
2031 p = d_ancestor(p2, p1);
2032 if (p) {
2033 mutex_lock_nested(&p2->d_inode->i_mutex, I_MUTEX_PARENT);
2034 mutex_lock_nested(&p1->d_inode->i_mutex, I_MUTEX_CHILD);
2035 return p;
1da177e4
LT
2036 }
2037
e2761a11
OH
2038 p = d_ancestor(p1, p2);
2039 if (p) {
2040 mutex_lock_nested(&p1->d_inode->i_mutex, I_MUTEX_PARENT);
2041 mutex_lock_nested(&p2->d_inode->i_mutex, I_MUTEX_CHILD);
2042 return p;
1da177e4
LT
2043 }
2044
f2eace23
IM
2045 mutex_lock_nested(&p1->d_inode->i_mutex, I_MUTEX_PARENT);
2046 mutex_lock_nested(&p2->d_inode->i_mutex, I_MUTEX_CHILD);
1da177e4
LT
2047 return NULL;
2048}
2049
2050void unlock_rename(struct dentry *p1, struct dentry *p2)
2051{
1b1dcc1b 2052 mutex_unlock(&p1->d_inode->i_mutex);
1da177e4 2053 if (p1 != p2) {
1b1dcc1b 2054 mutex_unlock(&p2->d_inode->i_mutex);
a11f3a05 2055 mutex_unlock(&p1->d_inode->i_sb->s_vfs_rename_mutex);
1da177e4
LT
2056 }
2057}
2058
2059int vfs_create(struct inode *dir, struct dentry *dentry, int mode,
2060 struct nameidata *nd)
2061{
a95164d9 2062 int error = may_create(dir, dentry);
1da177e4
LT
2063
2064 if (error)
2065 return error;
2066
acfa4380 2067 if (!dir->i_op->create)
1da177e4
LT
2068 return -EACCES; /* shouldn't it be ENOSYS? */
2069 mode &= S_IALLUGO;
2070 mode |= S_IFREG;
2071 error = security_inode_create(dir, dentry, mode);
2072 if (error)
2073 return error;
1da177e4 2074 error = dir->i_op->create(dir, dentry, mode, nd);
a74574aa 2075 if (!error)
f38aa942 2076 fsnotify_create(dir, dentry);
1da177e4
LT
2077 return error;
2078}
2079
3fb64190 2080int may_open(struct path *path, int acc_mode, int flag)
1da177e4 2081{
3fb64190 2082 struct dentry *dentry = path->dentry;
1da177e4
LT
2083 struct inode *inode = dentry->d_inode;
2084 int error;
2085
2086 if (!inode)
2087 return -ENOENT;
2088
c8fe8f30
CH
2089 switch (inode->i_mode & S_IFMT) {
2090 case S_IFLNK:
1da177e4 2091 return -ELOOP;
c8fe8f30
CH
2092 case S_IFDIR:
2093 if (acc_mode & MAY_WRITE)
2094 return -EISDIR;
2095 break;
2096 case S_IFBLK:
2097 case S_IFCHR:
3fb64190 2098 if (path->mnt->mnt_flags & MNT_NODEV)
1da177e4 2099 return -EACCES;
c8fe8f30
CH
2100 /*FALLTHRU*/
2101 case S_IFIFO:
2102 case S_IFSOCK:
1da177e4 2103 flag &= ~O_TRUNC;
c8fe8f30 2104 break;
4a3fd211 2105 }
b41572e9 2106
3fb64190 2107 error = inode_permission(inode, acc_mode);
b41572e9
DH
2108 if (error)
2109 return error;
6146f0d5 2110
1da177e4
LT
2111 /*
2112 * An append-only file must be opened in append mode for writing.
2113 */
2114 if (IS_APPEND(inode)) {
8737c930 2115 if ((flag & O_ACCMODE) != O_RDONLY && !(flag & O_APPEND))
7715b521 2116 return -EPERM;
1da177e4 2117 if (flag & O_TRUNC)
7715b521 2118 return -EPERM;
1da177e4
LT
2119 }
2120
2121 /* O_NOATIME can only be set by the owner or superuser */
7715b521
AV
2122 if (flag & O_NOATIME && !is_owner_or_cap(inode))
2123 return -EPERM;
1da177e4
LT
2124
2125 /*
2126 * Ensure there are no outstanding leases on the file.
2127 */
b65a9cfc 2128 return break_lease(inode, flag);
7715b521 2129}
1da177e4 2130
e1181ee6 2131static int handle_truncate(struct file *filp)
7715b521 2132{
e1181ee6 2133 struct path *path = &filp->f_path;
7715b521
AV
2134 struct inode *inode = path->dentry->d_inode;
2135 int error = get_write_access(inode);
2136 if (error)
2137 return error;
2138 /*
2139 * Refuse to truncate files with mandatory locks held on them.
2140 */
2141 error = locks_verify_locked(inode);
2142 if (!error)
ea0d3ab2 2143 error = security_path_truncate(path);
7715b521
AV
2144 if (!error) {
2145 error = do_truncate(path->dentry, 0,
2146 ATTR_MTIME|ATTR_CTIME|ATTR_OPEN,
e1181ee6 2147 filp);
7715b521
AV
2148 }
2149 put_write_access(inode);
acd0c935 2150 return error;
1da177e4
LT
2151}
2152
d57999e1
DH
2153/*
2154 * Be careful about ever adding any more callers of this
2155 * function. Its flags must be in the namei format, not
2156 * what get passed to sys_open().
2157 */
2158static int __open_namei_create(struct nameidata *nd, struct path *path,
8737c930 2159 int open_flag, int mode)
aab520e2
DH
2160{
2161 int error;
4ac91378 2162 struct dentry *dir = nd->path.dentry;
aab520e2
DH
2163
2164 if (!IS_POSIXACL(dir->d_inode))
ce3b0f8d 2165 mode &= ~current_umask();
be6d3e56
KT
2166 error = security_path_mknod(&nd->path, path->dentry, mode, 0);
2167 if (error)
2168 goto out_unlock;
aab520e2 2169 error = vfs_create(dir->d_inode, path->dentry, mode, nd);
be6d3e56 2170out_unlock:
aab520e2 2171 mutex_unlock(&dir->d_inode->i_mutex);
4ac91378
JB
2172 dput(nd->path.dentry);
2173 nd->path.dentry = path->dentry;
31e6b01f 2174
aab520e2
DH
2175 if (error)
2176 return error;
2177 /* Don't check for write permission, don't truncate */
8737c930 2178 return may_open(&nd->path, 0, open_flag & ~O_TRUNC);
aab520e2
DH
2179}
2180
d57999e1
DH
2181/*
2182 * Note that while the flag value (low two bits) for sys_open means:
2183 * 00 - read-only
2184 * 01 - write-only
2185 * 10 - read-write
2186 * 11 - special
2187 * it is changed into
2188 * 00 - no permissions needed
2189 * 01 - read-permission
2190 * 10 - write-permission
2191 * 11 - read-write
2192 * for the internal routines (ie open_namei()/follow_link() etc)
2193 * This is more logical, and also allows the 00 "no perm needed"
2194 * to be used for symlinks (where the permissions are checked
2195 * later).
2196 *
2197*/
2198static inline int open_to_namei_flags(int flag)
2199{
2200 if ((flag+1) & O_ACCMODE)
2201 flag++;
2202 return flag;
2203}
2204
7715b521 2205static int open_will_truncate(int flag, struct inode *inode)
4a3fd211
DH
2206{
2207 /*
2208 * We'll never write to the fs underlying
2209 * a device file.
2210 */
2211 if (special_file(inode->i_mode))
2212 return 0;
2213 return (flag & O_TRUNC);
2214}
2215
648fa861 2216static struct file *finish_open(struct nameidata *nd,
9a66179e 2217 int open_flag, int acc_mode)
648fa861
AV
2218{
2219 struct file *filp;
2220 int will_truncate;
2221 int error;
2222
9a66179e 2223 will_truncate = open_will_truncate(open_flag, nd->path.dentry->d_inode);
648fa861
AV
2224 if (will_truncate) {
2225 error = mnt_want_write(nd->path.mnt);
2226 if (error)
2227 goto exit;
2228 }
2229 error = may_open(&nd->path, acc_mode, open_flag);
2230 if (error) {
2231 if (will_truncate)
2232 mnt_drop_write(nd->path.mnt);
2233 goto exit;
2234 }
2235 filp = nameidata_to_filp(nd);
2236 if (!IS_ERR(filp)) {
2237 error = ima_file_check(filp, acc_mode);
2238 if (error) {
2239 fput(filp);
2240 filp = ERR_PTR(error);
2241 }
2242 }
2243 if (!IS_ERR(filp)) {
648fa861 2244 if (will_truncate) {
e1181ee6 2245 error = handle_truncate(filp);
648fa861
AV
2246 if (error) {
2247 fput(filp);
2248 filp = ERR_PTR(error);
2249 }
2250 }
2251 }
2252 /*
2253 * It is now safe to drop the mnt write
2254 * because the filp has had a write taken
2255 * on its behalf.
2256 */
2257 if (will_truncate)
2258 mnt_drop_write(nd->path.mnt);
d893f1bc 2259 path_put(&nd->path);
648fa861
AV
2260 return filp;
2261
2262exit:
648fa861
AV
2263 path_put(&nd->path);
2264 return ERR_PTR(error);
2265}
2266
31e6b01f
NP
2267/*
2268 * Handle O_CREAT case for do_filp_open
2269 */
fb1cc555 2270static struct file *do_last(struct nameidata *nd, struct path *path,
5b369df8 2271 int open_flag, int acc_mode,
3e297b61 2272 int mode, const char *pathname)
fb1cc555 2273{
a1e28038 2274 struct dentry *dir = nd->path.dentry;
fb1cc555 2275 struct file *filp;
1f36f774
AV
2276 int error = -EISDIR;
2277
2278 switch (nd->last_type) {
2279 case LAST_DOTDOT:
2280 follow_dotdot(nd);
2281 dir = nd->path.dentry;
176306f5 2282 case LAST_DOT:
fb045adb 2283 if (need_reval_dot(dir)) {
f20877d9
O
2284 int status = d_revalidate(nd->path.dentry, nd);
2285 if (!status)
2286 status = -ESTALE;
2287 if (status < 0) {
2288 error = status;
1f36f774 2289 goto exit;
f20877d9 2290 }
1f36f774
AV
2291 }
2292 /* fallthrough */
1f36f774 2293 case LAST_ROOT:
31e6b01f 2294 goto exit;
1f36f774
AV
2295 case LAST_BIND:
2296 audit_inode(pathname, dir);
67ee3ad2 2297 goto ok;
1f36f774 2298 }
67ee3ad2 2299
1f36f774 2300 /* trailing slashes? */
31e6b01f
NP
2301 if (nd->last.name[nd->last.len])
2302 goto exit;
a2c36b45 2303
a1e28038
AV
2304 mutex_lock(&dir->d_inode->i_mutex);
2305
2306 path->dentry = lookup_hash(nd);
2307 path->mnt = nd->path.mnt;
2308
fb1cc555
AV
2309 error = PTR_ERR(path->dentry);
2310 if (IS_ERR(path->dentry)) {
2311 mutex_unlock(&dir->d_inode->i_mutex);
2312 goto exit;
2313 }
2314
2315 if (IS_ERR(nd->intent.open.file)) {
2316 error = PTR_ERR(nd->intent.open.file);
2317 goto exit_mutex_unlock;
2318 }
2319
2320 /* Negative dentry, just create the file */
2321 if (!path->dentry->d_inode) {
2322 /*
2323 * This write is needed to ensure that a
2324 * ro->rw transition does not occur between
2325 * the time when the file is created and when
2326 * a permanent write count is taken through
2327 * the 'struct file' in nameidata_to_filp().
2328 */
2329 error = mnt_want_write(nd->path.mnt);
2330 if (error)
2331 goto exit_mutex_unlock;
2332 error = __open_namei_create(nd, path, open_flag, mode);
2333 if (error) {
2334 mnt_drop_write(nd->path.mnt);
2335 goto exit;
2336 }
2337 filp = nameidata_to_filp(nd);
2338 mnt_drop_write(nd->path.mnt);
d893f1bc 2339 path_put(&nd->path);
fb1cc555
AV
2340 if (!IS_ERR(filp)) {
2341 error = ima_file_check(filp, acc_mode);
2342 if (error) {
2343 fput(filp);
2344 filp = ERR_PTR(error);
2345 }
2346 }
2347 return filp;
2348 }
2349
2350 /*
2351 * It already exists.
2352 */
2353 mutex_unlock(&dir->d_inode->i_mutex);
2354 audit_inode(pathname, path->dentry);
2355
2356 error = -EEXIST;
5b369df8 2357 if (open_flag & O_EXCL)
fb1cc555
AV
2358 goto exit_dput;
2359
9875cf80
DH
2360 error = follow_managed(path, nd->flags);
2361 if (error < 0)
2362 goto exit_dput;
fb1cc555
AV
2363
2364 error = -ENOENT;
2365 if (!path->dentry->d_inode)
2366 goto exit_dput;
9e67f361
AV
2367
2368 if (path->dentry->d_inode->i_op->follow_link)
fb1cc555 2369 return NULL;
fb1cc555
AV
2370
2371 path_to_nameidata(path, nd);
31e6b01f 2372 nd->inode = path->dentry->d_inode;
fb1cc555 2373 error = -EISDIR;
31e6b01f 2374 if (S_ISDIR(nd->inode->i_mode))
fb1cc555 2375 goto exit;
67ee3ad2 2376ok:
9a66179e 2377 filp = finish_open(nd, open_flag, acc_mode);
fb1cc555
AV
2378 return filp;
2379
2380exit_mutex_unlock:
2381 mutex_unlock(&dir->d_inode->i_mutex);
2382exit_dput:
2383 path_put_conditional(path, nd);
2384exit:
fb1cc555
AV
2385 path_put(&nd->path);
2386 return ERR_PTR(error);
2387}
2388
1da177e4 2389/*
4a3fd211
DH
2390 * Note that the low bits of the passed in "open_flag"
2391 * are not the same as in the local variable "flag". See
2392 * open_to_namei_flags() for more details.
1da177e4 2393 */
a70e65df 2394struct file *do_filp_open(int dfd, const char *pathname,
6e8341a1 2395 int open_flag, int mode, int acc_mode)
1da177e4 2396{
4a3fd211 2397 struct file *filp;
a70e65df 2398 struct nameidata nd;
6e8341a1 2399 int error;
9850c056 2400 struct path path;
1da177e4 2401 int count = 0;
d57999e1 2402 int flag = open_to_namei_flags(open_flag);
31e6b01f 2403 int flags;
1f36f774
AV
2404
2405 if (!(open_flag & O_CREAT))
2406 mode = 0;
1da177e4 2407
b1085ba8
LS
2408 /* Must never be set by userspace */
2409 open_flag &= ~FMODE_NONOTIFY;
2410
6b2f3d1f
CH
2411 /*
2412 * O_SYNC is implemented as __O_SYNC|O_DSYNC. As many places only
2413 * check for O_DSYNC if the need any syncing at all we enforce it's
2414 * always set instead of having to deal with possibly weird behaviour
2415 * for malicious applications setting only __O_SYNC.
2416 */
2417 if (open_flag & __O_SYNC)
2418 open_flag |= O_DSYNC;
2419
6e8341a1 2420 if (!acc_mode)
6d125529 2421 acc_mode = MAY_OPEN | ACC_MODE(open_flag);
1da177e4 2422
834f2a4a 2423 /* O_TRUNC implies we need access checks for write permissions */
4296e2cb 2424 if (open_flag & O_TRUNC)
834f2a4a
TM
2425 acc_mode |= MAY_WRITE;
2426
1da177e4
LT
2427 /* Allow the LSM permission hook to distinguish append
2428 access from general write access. */
4296e2cb 2429 if (open_flag & O_APPEND)
1da177e4
LT
2430 acc_mode |= MAY_APPEND;
2431
31e6b01f
NP
2432 flags = LOOKUP_OPEN;
2433 if (open_flag & O_CREAT) {
2434 flags |= LOOKUP_CREATE;
2435 if (open_flag & O_EXCL)
2436 flags |= LOOKUP_EXCL;
2437 }
2438 if (open_flag & O_DIRECTORY)
2439 flags |= LOOKUP_DIRECTORY;
2440 if (!(open_flag & O_NOFOLLOW))
2441 flags |= LOOKUP_FOLLOW;
2442
2443 filp = get_empty_filp();
2444 if (!filp)
2445 return ERR_PTR(-ENFILE);
2446
2447 filp->f_flags = open_flag;
2448 nd.intent.open.file = filp;
2449 nd.intent.open.flags = flag;
2450 nd.intent.open.create_mode = mode;
2451
2452 if (open_flag & O_CREAT)
2453 goto creat;
2454
2455 /* !O_CREAT, simple open */
2456 error = do_path_lookup(dfd, pathname, flags, &nd);
2457 if (unlikely(error))
2458 goto out_filp;
2459 error = -ELOOP;
2460 if (!(nd.flags & LOOKUP_FOLLOW)) {
2461 if (nd.inode->i_op->follow_link)
2462 goto out_path;
2463 }
2464 error = -ENOTDIR;
2465 if (nd.flags & LOOKUP_DIRECTORY) {
2466 if (!nd.inode->i_op->lookup)
2467 goto out_path;
2468 }
2469 audit_inode(pathname, nd.path.dentry);
2470 filp = finish_open(&nd, open_flag, acc_mode);
2dab5974 2471 release_open_intent(&nd);
31e6b01f
NP
2472 return filp;
2473
2474creat:
2475 /* OK, have to create the file. Find the parent. */
2476 error = path_init_rcu(dfd, pathname,
2477 LOOKUP_PARENT | (flags & LOOKUP_REVAL), &nd);
1da177e4 2478 if (error)
31e6b01f
NP
2479 goto out_filp;
2480 error = path_walk_rcu(pathname, &nd);
2481 path_finish_rcu(&nd);
2482 if (unlikely(error == -ECHILD || error == -ESTALE)) {
2483 /* slower, locked walk */
2484 if (error == -ESTALE) {
2485reval:
2486 flags |= LOOKUP_REVAL;
2487 }
2488 error = path_init(dfd, pathname,
2489 LOOKUP_PARENT | (flags & LOOKUP_REVAL), &nd);
2490 if (error)
2491 goto out_filp;
3866248e 2492
31e6b01f 2493 error = path_walk_simple(pathname, &nd);
654f562c 2494 }
31e6b01f
NP
2495 if (unlikely(error))
2496 goto out_filp;
2497 if (unlikely(!audit_dummy_context()))
9b4a9b14 2498 audit_inode(pathname, nd.path.dentry);
1da177e4
LT
2499
2500 /*
a2c36b45 2501 * We have the parent and last component.
1da177e4 2502 */
31e6b01f 2503 nd.flags = flags;
3e297b61 2504 filp = do_last(&nd, &path, open_flag, acc_mode, mode, pathname);
806b681c 2505 while (unlikely(!filp)) { /* trailing symlink */
7b9337aa
NP
2506 struct path link = path;
2507 struct inode *linki = link.dentry->d_inode;
def4af30 2508 void *cookie;
806b681c 2509 error = -ELOOP;
db372915 2510 if (!(nd.flags & LOOKUP_FOLLOW))
1f36f774
AV
2511 goto exit_dput;
2512 if (count++ == 32)
806b681c
AV
2513 goto exit_dput;
2514 /*
2515 * This is subtle. Instead of calling do_follow_link() we do
2516 * the thing by hands. The reason is that this way we have zero
2517 * link_count and path_walk() (called from ->follow_link)
2518 * honoring LOOKUP_PARENT. After that we have the parent and
2519 * last component, i.e. we are in the same situation as after
2520 * the first path_walk(). Well, almost - if the last component
2521 * is normal we get its copy stored in nd->last.name and we will
2522 * have to putname() it when we are done. Procfs-like symlinks
2523 * just set LAST_BIND.
2524 */
2525 nd.flags |= LOOKUP_PARENT;
7b9337aa 2526 error = security_inode_follow_link(link.dentry, &nd);
806b681c
AV
2527 if (error)
2528 goto exit_dput;
7b9337aa 2529 error = __do_follow_link(&link, &nd, &cookie);
def4af30 2530 if (unlikely(error)) {
7b9337aa
NP
2531 if (!IS_ERR(cookie) && linki->i_op->put_link)
2532 linki->i_op->put_link(link.dentry, &nd, cookie);
806b681c 2533 /* nd.path had been dropped */
7b9337aa 2534 nd.path = link;
31e6b01f 2535 goto out_path;
806b681c
AV
2536 }
2537 nd.flags &= ~LOOKUP_PARENT;
3e297b61 2538 filp = do_last(&nd, &path, open_flag, acc_mode, mode, pathname);
7b9337aa
NP
2539 if (linki->i_op->put_link)
2540 linki->i_op->put_link(link.dentry, &nd, cookie);
2541 path_put(&link);
806b681c 2542 }
10fa8e62 2543out:
2a737871
AV
2544 if (nd.root.mnt)
2545 path_put(&nd.root);
31e6b01f 2546 if (filp == ERR_PTR(-ESTALE) && !(flags & LOOKUP_REVAL))
10fa8e62 2547 goto reval;
2dab5974 2548 release_open_intent(&nd);
10fa8e62 2549 return filp;
1da177e4 2550
806b681c
AV
2551exit_dput:
2552 path_put_conditional(&path, &nd);
31e6b01f
NP
2553out_path:
2554 path_put(&nd.path);
2555out_filp:
806b681c 2556 filp = ERR_PTR(error);
10fa8e62 2557 goto out;
1da177e4
LT
2558}
2559
a70e65df
CH
2560/**
2561 * filp_open - open file and return file pointer
2562 *
2563 * @filename: path to open
2564 * @flags: open flags as per the open(2) second argument
2565 * @mode: mode for the new file if O_CREAT is set, else ignored
2566 *
2567 * This is the helper to open a file from kernelspace if you really
2568 * have to. But in generally you should not do this, so please move
2569 * along, nothing to see here..
2570 */
2571struct file *filp_open(const char *filename, int flags, int mode)
2572{
6e8341a1 2573 return do_filp_open(AT_FDCWD, filename, flags, mode, 0);
a70e65df
CH
2574}
2575EXPORT_SYMBOL(filp_open);
2576
1da177e4
LT
2577/**
2578 * lookup_create - lookup a dentry, creating it if it doesn't exist
2579 * @nd: nameidata info
2580 * @is_dir: directory flag
2581 *
2582 * Simple function to lookup and return a dentry and create it
2583 * if it doesn't exist. Is SMP-safe.
c663e5d8 2584 *
4ac91378 2585 * Returns with nd->path.dentry->d_inode->i_mutex locked.
1da177e4
LT
2586 */
2587struct dentry *lookup_create(struct nameidata *nd, int is_dir)
2588{
c663e5d8 2589 struct dentry *dentry = ERR_PTR(-EEXIST);
1da177e4 2590
4ac91378 2591 mutex_lock_nested(&nd->path.dentry->d_inode->i_mutex, I_MUTEX_PARENT);
c663e5d8
CH
2592 /*
2593 * Yucky last component or no last component at all?
2594 * (foo/., foo/.., /////)
2595 */
1da177e4
LT
2596 if (nd->last_type != LAST_NORM)
2597 goto fail;
2598 nd->flags &= ~LOOKUP_PARENT;
3516586a 2599 nd->flags |= LOOKUP_CREATE | LOOKUP_EXCL;
a634904a 2600 nd->intent.open.flags = O_EXCL;
c663e5d8
CH
2601
2602 /*
2603 * Do the final lookup.
2604 */
49705b77 2605 dentry = lookup_hash(nd);
1da177e4
LT
2606 if (IS_ERR(dentry))
2607 goto fail;
c663e5d8 2608
e9baf6e5
AV
2609 if (dentry->d_inode)
2610 goto eexist;
c663e5d8
CH
2611 /*
2612 * Special case - lookup gave negative, but... we had foo/bar/
2613 * From the vfs_mknod() POV we just have a negative dentry -
2614 * all is fine. Let's be bastards - you had / on the end, you've
2615 * been asking for (non-existent) directory. -ENOENT for you.
2616 */
e9baf6e5
AV
2617 if (unlikely(!is_dir && nd->last.name[nd->last.len])) {
2618 dput(dentry);
2619 dentry = ERR_PTR(-ENOENT);
2620 }
1da177e4 2621 return dentry;
e9baf6e5 2622eexist:
1da177e4 2623 dput(dentry);
e9baf6e5 2624 dentry = ERR_PTR(-EEXIST);
1da177e4
LT
2625fail:
2626 return dentry;
2627}
f81a0bff 2628EXPORT_SYMBOL_GPL(lookup_create);
1da177e4
LT
2629
2630int vfs_mknod(struct inode *dir, struct dentry *dentry, int mode, dev_t dev)
2631{
a95164d9 2632 int error = may_create(dir, dentry);
1da177e4
LT
2633
2634 if (error)
2635 return error;
2636
2637 if ((S_ISCHR(mode) || S_ISBLK(mode)) && !capable(CAP_MKNOD))
2638 return -EPERM;
2639
acfa4380 2640 if (!dir->i_op->mknod)
1da177e4
LT
2641 return -EPERM;
2642
08ce5f16
SH
2643 error = devcgroup_inode_mknod(mode, dev);
2644 if (error)
2645 return error;
2646
1da177e4
LT
2647 error = security_inode_mknod(dir, dentry, mode, dev);
2648 if (error)
2649 return error;
2650
1da177e4 2651 error = dir->i_op->mknod(dir, dentry, mode, dev);
a74574aa 2652 if (!error)
f38aa942 2653 fsnotify_create(dir, dentry);
1da177e4
LT
2654 return error;
2655}
2656
463c3197
DH
2657static int may_mknod(mode_t mode)
2658{
2659 switch (mode & S_IFMT) {
2660 case S_IFREG:
2661 case S_IFCHR:
2662 case S_IFBLK:
2663 case S_IFIFO:
2664 case S_IFSOCK:
2665 case 0: /* zero mode translates to S_IFREG */
2666 return 0;
2667 case S_IFDIR:
2668 return -EPERM;
2669 default:
2670 return -EINVAL;
2671 }
2672}
2673
2e4d0924
HC
2674SYSCALL_DEFINE4(mknodat, int, dfd, const char __user *, filename, int, mode,
2675 unsigned, dev)
1da177e4 2676{
2ad94ae6
AV
2677 int error;
2678 char *tmp;
2679 struct dentry *dentry;
1da177e4
LT
2680 struct nameidata nd;
2681
2682 if (S_ISDIR(mode))
2683 return -EPERM;
1da177e4 2684
2ad94ae6 2685 error = user_path_parent(dfd, filename, &nd, &tmp);
1da177e4 2686 if (error)
2ad94ae6
AV
2687 return error;
2688
1da177e4 2689 dentry = lookup_create(&nd, 0);
463c3197
DH
2690 if (IS_ERR(dentry)) {
2691 error = PTR_ERR(dentry);
2692 goto out_unlock;
2693 }
4ac91378 2694 if (!IS_POSIXACL(nd.path.dentry->d_inode))
ce3b0f8d 2695 mode &= ~current_umask();
463c3197
DH
2696 error = may_mknod(mode);
2697 if (error)
2698 goto out_dput;
2699 error = mnt_want_write(nd.path.mnt);
2700 if (error)
2701 goto out_dput;
be6d3e56
KT
2702 error = security_path_mknod(&nd.path, dentry, mode, dev);
2703 if (error)
2704 goto out_drop_write;
463c3197 2705 switch (mode & S_IFMT) {
1da177e4 2706 case 0: case S_IFREG:
4ac91378 2707 error = vfs_create(nd.path.dentry->d_inode,dentry,mode,&nd);
1da177e4
LT
2708 break;
2709 case S_IFCHR: case S_IFBLK:
4ac91378 2710 error = vfs_mknod(nd.path.dentry->d_inode,dentry,mode,
1da177e4
LT
2711 new_decode_dev(dev));
2712 break;
2713 case S_IFIFO: case S_IFSOCK:
4ac91378 2714 error = vfs_mknod(nd.path.dentry->d_inode,dentry,mode,0);
1da177e4 2715 break;
1da177e4 2716 }
be6d3e56 2717out_drop_write:
463c3197
DH
2718 mnt_drop_write(nd.path.mnt);
2719out_dput:
2720 dput(dentry);
2721out_unlock:
4ac91378 2722 mutex_unlock(&nd.path.dentry->d_inode->i_mutex);
1d957f9b 2723 path_put(&nd.path);
1da177e4
LT
2724 putname(tmp);
2725
2726 return error;
2727}
2728
3480b257 2729SYSCALL_DEFINE3(mknod, const char __user *, filename, int, mode, unsigned, dev)
5590ff0d
UD
2730{
2731 return sys_mknodat(AT_FDCWD, filename, mode, dev);
2732}
2733
1da177e4
LT
2734int vfs_mkdir(struct inode *dir, struct dentry *dentry, int mode)
2735{
a95164d9 2736 int error = may_create(dir, dentry);
1da177e4
LT
2737
2738 if (error)
2739 return error;
2740
acfa4380 2741 if (!dir->i_op->mkdir)
1da177e4
LT
2742 return -EPERM;
2743
2744 mode &= (S_IRWXUGO|S_ISVTX);
2745 error = security_inode_mkdir(dir, dentry, mode);
2746 if (error)
2747 return error;
2748
1da177e4 2749 error = dir->i_op->mkdir(dir, dentry, mode);
a74574aa 2750 if (!error)
f38aa942 2751 fsnotify_mkdir(dir, dentry);
1da177e4
LT
2752 return error;
2753}
2754
2e4d0924 2755SYSCALL_DEFINE3(mkdirat, int, dfd, const char __user *, pathname, int, mode)
1da177e4
LT
2756{
2757 int error = 0;
2758 char * tmp;
6902d925
DH
2759 struct dentry *dentry;
2760 struct nameidata nd;
1da177e4 2761
2ad94ae6
AV
2762 error = user_path_parent(dfd, pathname, &nd, &tmp);
2763 if (error)
6902d925 2764 goto out_err;
1da177e4 2765
6902d925
DH
2766 dentry = lookup_create(&nd, 1);
2767 error = PTR_ERR(dentry);
2768 if (IS_ERR(dentry))
2769 goto out_unlock;
1da177e4 2770
4ac91378 2771 if (!IS_POSIXACL(nd.path.dentry->d_inode))
ce3b0f8d 2772 mode &= ~current_umask();
463c3197
DH
2773 error = mnt_want_write(nd.path.mnt);
2774 if (error)
2775 goto out_dput;
be6d3e56
KT
2776 error = security_path_mkdir(&nd.path, dentry, mode);
2777 if (error)
2778 goto out_drop_write;
4ac91378 2779 error = vfs_mkdir(nd.path.dentry->d_inode, dentry, mode);
be6d3e56 2780out_drop_write:
463c3197
DH
2781 mnt_drop_write(nd.path.mnt);
2782out_dput:
6902d925
DH
2783 dput(dentry);
2784out_unlock:
4ac91378 2785 mutex_unlock(&nd.path.dentry->d_inode->i_mutex);
1d957f9b 2786 path_put(&nd.path);
6902d925
DH
2787 putname(tmp);
2788out_err:
1da177e4
LT
2789 return error;
2790}
2791
3cdad428 2792SYSCALL_DEFINE2(mkdir, const char __user *, pathname, int, mode)
5590ff0d
UD
2793{
2794 return sys_mkdirat(AT_FDCWD, pathname, mode);
2795}
2796
1da177e4
LT
2797/*
2798 * We try to drop the dentry early: we should have
2799 * a usage count of 2 if we're the only user of this
2800 * dentry, and if that is true (possibly after pruning
2801 * the dcache), then we drop the dentry now.
2802 *
2803 * A low-level filesystem can, if it choses, legally
2804 * do a
2805 *
2806 * if (!d_unhashed(dentry))
2807 * return -EBUSY;
2808 *
2809 * if it cannot handle the case of removing a directory
2810 * that is still in use by something else..
2811 */
2812void dentry_unhash(struct dentry *dentry)
2813{
2814 dget(dentry);
dc168427 2815 shrink_dcache_parent(dentry);
1da177e4 2816 spin_lock(&dentry->d_lock);
b7ab39f6 2817 if (dentry->d_count == 2)
1da177e4
LT
2818 __d_drop(dentry);
2819 spin_unlock(&dentry->d_lock);
1da177e4
LT
2820}
2821
2822int vfs_rmdir(struct inode *dir, struct dentry *dentry)
2823{
2824 int error = may_delete(dir, dentry, 1);
2825
2826 if (error)
2827 return error;
2828
acfa4380 2829 if (!dir->i_op->rmdir)
1da177e4
LT
2830 return -EPERM;
2831
1b1dcc1b 2832 mutex_lock(&dentry->d_inode->i_mutex);
1da177e4
LT
2833 dentry_unhash(dentry);
2834 if (d_mountpoint(dentry))
2835 error = -EBUSY;
2836 else {
2837 error = security_inode_rmdir(dir, dentry);
2838 if (!error) {
2839 error = dir->i_op->rmdir(dir, dentry);
d83c49f3 2840 if (!error) {
1da177e4 2841 dentry->d_inode->i_flags |= S_DEAD;
d83c49f3
AV
2842 dont_mount(dentry);
2843 }
1da177e4
LT
2844 }
2845 }
1b1dcc1b 2846 mutex_unlock(&dentry->d_inode->i_mutex);
1da177e4 2847 if (!error) {
1da177e4
LT
2848 d_delete(dentry);
2849 }
2850 dput(dentry);
2851
2852 return error;
2853}
2854
5590ff0d 2855static long do_rmdir(int dfd, const char __user *pathname)
1da177e4
LT
2856{
2857 int error = 0;
2858 char * name;
2859 struct dentry *dentry;
2860 struct nameidata nd;
2861
2ad94ae6 2862 error = user_path_parent(dfd, pathname, &nd, &name);
1da177e4 2863 if (error)
2ad94ae6 2864 return error;
1da177e4
LT
2865
2866 switch(nd.last_type) {
0612d9fb
OH
2867 case LAST_DOTDOT:
2868 error = -ENOTEMPTY;
2869 goto exit1;
2870 case LAST_DOT:
2871 error = -EINVAL;
2872 goto exit1;
2873 case LAST_ROOT:
2874 error = -EBUSY;
2875 goto exit1;
1da177e4 2876 }
0612d9fb
OH
2877
2878 nd.flags &= ~LOOKUP_PARENT;
2879
4ac91378 2880 mutex_lock_nested(&nd.path.dentry->d_inode->i_mutex, I_MUTEX_PARENT);
49705b77 2881 dentry = lookup_hash(&nd);
1da177e4 2882 error = PTR_ERR(dentry);
6902d925
DH
2883 if (IS_ERR(dentry))
2884 goto exit2;
0622753b
DH
2885 error = mnt_want_write(nd.path.mnt);
2886 if (error)
2887 goto exit3;
be6d3e56
KT
2888 error = security_path_rmdir(&nd.path, dentry);
2889 if (error)
2890 goto exit4;
4ac91378 2891 error = vfs_rmdir(nd.path.dentry->d_inode, dentry);
be6d3e56 2892exit4:
0622753b
DH
2893 mnt_drop_write(nd.path.mnt);
2894exit3:
6902d925
DH
2895 dput(dentry);
2896exit2:
4ac91378 2897 mutex_unlock(&nd.path.dentry->d_inode->i_mutex);
1da177e4 2898exit1:
1d957f9b 2899 path_put(&nd.path);
1da177e4
LT
2900 putname(name);
2901 return error;
2902}
2903
3cdad428 2904SYSCALL_DEFINE1(rmdir, const char __user *, pathname)
5590ff0d
UD
2905{
2906 return do_rmdir(AT_FDCWD, pathname);
2907}
2908
1da177e4
LT
2909int vfs_unlink(struct inode *dir, struct dentry *dentry)
2910{
2911 int error = may_delete(dir, dentry, 0);
2912
2913 if (error)
2914 return error;
2915
acfa4380 2916 if (!dir->i_op->unlink)
1da177e4
LT
2917 return -EPERM;
2918
1b1dcc1b 2919 mutex_lock(&dentry->d_inode->i_mutex);
1da177e4
LT
2920 if (d_mountpoint(dentry))
2921 error = -EBUSY;
2922 else {
2923 error = security_inode_unlink(dir, dentry);
bec1052e 2924 if (!error) {
1da177e4 2925 error = dir->i_op->unlink(dir, dentry);
bec1052e 2926 if (!error)
d83c49f3 2927 dont_mount(dentry);
bec1052e 2928 }
1da177e4 2929 }
1b1dcc1b 2930 mutex_unlock(&dentry->d_inode->i_mutex);
1da177e4
LT
2931
2932 /* We don't d_delete() NFS sillyrenamed files--they still exist. */
2933 if (!error && !(dentry->d_flags & DCACHE_NFSFS_RENAMED)) {
ece95912 2934 fsnotify_link_count(dentry->d_inode);
e234f35c 2935 d_delete(dentry);
1da177e4 2936 }
0eeca283 2937
1da177e4
LT
2938 return error;
2939}
2940
2941/*
2942 * Make sure that the actual truncation of the file will occur outside its
1b1dcc1b 2943 * directory's i_mutex. Truncate can take a long time if there is a lot of
1da177e4
LT
2944 * writeout happening, and we don't want to prevent access to the directory
2945 * while waiting on the I/O.
2946 */
5590ff0d 2947static long do_unlinkat(int dfd, const char __user *pathname)
1da177e4 2948{
2ad94ae6
AV
2949 int error;
2950 char *name;
1da177e4
LT
2951 struct dentry *dentry;
2952 struct nameidata nd;
2953 struct inode *inode = NULL;
2954
2ad94ae6 2955 error = user_path_parent(dfd, pathname, &nd, &name);
1da177e4 2956 if (error)
2ad94ae6
AV
2957 return error;
2958
1da177e4
LT
2959 error = -EISDIR;
2960 if (nd.last_type != LAST_NORM)
2961 goto exit1;
0612d9fb
OH
2962
2963 nd.flags &= ~LOOKUP_PARENT;
2964
4ac91378 2965 mutex_lock_nested(&nd.path.dentry->d_inode->i_mutex, I_MUTEX_PARENT);
49705b77 2966 dentry = lookup_hash(&nd);
1da177e4
LT
2967 error = PTR_ERR(dentry);
2968 if (!IS_ERR(dentry)) {
2969 /* Why not before? Because we want correct error value */
2970 if (nd.last.name[nd.last.len])
2971 goto slashes;
2972 inode = dentry->d_inode;
2973 if (inode)
7de9c6ee 2974 ihold(inode);
0622753b
DH
2975 error = mnt_want_write(nd.path.mnt);
2976 if (error)
2977 goto exit2;
be6d3e56
KT
2978 error = security_path_unlink(&nd.path, dentry);
2979 if (error)
2980 goto exit3;
4ac91378 2981 error = vfs_unlink(nd.path.dentry->d_inode, dentry);
be6d3e56 2982exit3:
0622753b 2983 mnt_drop_write(nd.path.mnt);
1da177e4
LT
2984 exit2:
2985 dput(dentry);
2986 }
4ac91378 2987 mutex_unlock(&nd.path.dentry->d_inode->i_mutex);
1da177e4
LT
2988 if (inode)
2989 iput(inode); /* truncate the inode here */
2990exit1:
1d957f9b 2991 path_put(&nd.path);
1da177e4
LT
2992 putname(name);
2993 return error;
2994
2995slashes:
2996 error = !dentry->d_inode ? -ENOENT :
2997 S_ISDIR(dentry->d_inode->i_mode) ? -EISDIR : -ENOTDIR;
2998 goto exit2;
2999}
3000
2e4d0924 3001SYSCALL_DEFINE3(unlinkat, int, dfd, const char __user *, pathname, int, flag)
5590ff0d
UD
3002{
3003 if ((flag & ~AT_REMOVEDIR) != 0)
3004 return -EINVAL;
3005
3006 if (flag & AT_REMOVEDIR)
3007 return do_rmdir(dfd, pathname);
3008
3009 return do_unlinkat(dfd, pathname);
3010}
3011
3480b257 3012SYSCALL_DEFINE1(unlink, const char __user *, pathname)
5590ff0d
UD
3013{
3014 return do_unlinkat(AT_FDCWD, pathname);
3015}
3016
db2e747b 3017int vfs_symlink(struct inode *dir, struct dentry *dentry, const char *oldname)
1da177e4 3018{
a95164d9 3019 int error = may_create(dir, dentry);
1da177e4
LT
3020
3021 if (error)
3022 return error;
3023
acfa4380 3024 if (!dir->i_op->symlink)
1da177e4
LT
3025 return -EPERM;
3026
3027 error = security_inode_symlink(dir, dentry, oldname);
3028 if (error)
3029 return error;
3030
1da177e4 3031 error = dir->i_op->symlink(dir, dentry, oldname);
a74574aa 3032 if (!error)
f38aa942 3033 fsnotify_create(dir, dentry);
1da177e4
LT
3034 return error;
3035}
3036
2e4d0924
HC
3037SYSCALL_DEFINE3(symlinkat, const char __user *, oldname,
3038 int, newdfd, const char __user *, newname)
1da177e4 3039{
2ad94ae6
AV
3040 int error;
3041 char *from;
3042 char *to;
6902d925
DH
3043 struct dentry *dentry;
3044 struct nameidata nd;
1da177e4
LT
3045
3046 from = getname(oldname);
2ad94ae6 3047 if (IS_ERR(from))
1da177e4 3048 return PTR_ERR(from);
1da177e4 3049
2ad94ae6 3050 error = user_path_parent(newdfd, newname, &nd, &to);
6902d925 3051 if (error)
2ad94ae6
AV
3052 goto out_putname;
3053
6902d925
DH
3054 dentry = lookup_create(&nd, 0);
3055 error = PTR_ERR(dentry);
3056 if (IS_ERR(dentry))
3057 goto out_unlock;
3058
75c3f29d
DH
3059 error = mnt_want_write(nd.path.mnt);
3060 if (error)
3061 goto out_dput;
be6d3e56
KT
3062 error = security_path_symlink(&nd.path, dentry, from);
3063 if (error)
3064 goto out_drop_write;
db2e747b 3065 error = vfs_symlink(nd.path.dentry->d_inode, dentry, from);
be6d3e56 3066out_drop_write:
75c3f29d
DH
3067 mnt_drop_write(nd.path.mnt);
3068out_dput:
6902d925
DH
3069 dput(dentry);
3070out_unlock:
4ac91378 3071 mutex_unlock(&nd.path.dentry->d_inode->i_mutex);
1d957f9b 3072 path_put(&nd.path);
6902d925
DH
3073 putname(to);
3074out_putname:
1da177e4
LT
3075 putname(from);
3076 return error;
3077}
3078
3480b257 3079SYSCALL_DEFINE2(symlink, const char __user *, oldname, const char __user *, newname)
5590ff0d
UD
3080{
3081 return sys_symlinkat(oldname, AT_FDCWD, newname);
3082}
3083
1da177e4
LT
3084int vfs_link(struct dentry *old_dentry, struct inode *dir, struct dentry *new_dentry)
3085{
3086 struct inode *inode = old_dentry->d_inode;
3087 int error;
3088
3089 if (!inode)
3090 return -ENOENT;
3091
a95164d9 3092 error = may_create(dir, new_dentry);
1da177e4
LT
3093 if (error)
3094 return error;
3095
3096 if (dir->i_sb != inode->i_sb)
3097 return -EXDEV;
3098
3099 /*
3100 * A link to an append-only or immutable file cannot be created.
3101 */
3102 if (IS_APPEND(inode) || IS_IMMUTABLE(inode))
3103 return -EPERM;
acfa4380 3104 if (!dir->i_op->link)
1da177e4 3105 return -EPERM;
7e79eedb 3106 if (S_ISDIR(inode->i_mode))
1da177e4
LT
3107 return -EPERM;
3108
3109 error = security_inode_link(old_dentry, dir, new_dentry);
3110 if (error)
3111 return error;
3112
7e79eedb 3113 mutex_lock(&inode->i_mutex);
1da177e4 3114 error = dir->i_op->link(old_dentry, dir, new_dentry);
7e79eedb 3115 mutex_unlock(&inode->i_mutex);
e31e14ec 3116 if (!error)
7e79eedb 3117 fsnotify_link(dir, inode, new_dentry);
1da177e4
LT
3118 return error;
3119}
3120
3121/*
3122 * Hardlinks are often used in delicate situations. We avoid
3123 * security-related surprises by not following symlinks on the
3124 * newname. --KAB
3125 *
3126 * We don't follow them on the oldname either to be compatible
3127 * with linux 2.0, and to avoid hard-linking to directories
3128 * and other special files. --ADM
3129 */
2e4d0924
HC
3130SYSCALL_DEFINE5(linkat, int, olddfd, const char __user *, oldname,
3131 int, newdfd, const char __user *, newname, int, flags)
1da177e4
LT
3132{
3133 struct dentry *new_dentry;
2d8f3038
AV
3134 struct nameidata nd;
3135 struct path old_path;
1da177e4 3136 int error;
2ad94ae6 3137 char *to;
1da177e4 3138
45c9b11a 3139 if ((flags & ~AT_SYMLINK_FOLLOW) != 0)
c04030e1
UD
3140 return -EINVAL;
3141
2d8f3038
AV
3142 error = user_path_at(olddfd, oldname,
3143 flags & AT_SYMLINK_FOLLOW ? LOOKUP_FOLLOW : 0,
3144 &old_path);
1da177e4 3145 if (error)
2ad94ae6
AV
3146 return error;
3147
3148 error = user_path_parent(newdfd, newname, &nd, &to);
1da177e4
LT
3149 if (error)
3150 goto out;
3151 error = -EXDEV;
2d8f3038 3152 if (old_path.mnt != nd.path.mnt)
1da177e4
LT
3153 goto out_release;
3154 new_dentry = lookup_create(&nd, 0);
3155 error = PTR_ERR(new_dentry);
6902d925
DH
3156 if (IS_ERR(new_dentry))
3157 goto out_unlock;
75c3f29d
DH
3158 error = mnt_want_write(nd.path.mnt);
3159 if (error)
3160 goto out_dput;
be6d3e56
KT
3161 error = security_path_link(old_path.dentry, &nd.path, new_dentry);
3162 if (error)
3163 goto out_drop_write;
2d8f3038 3164 error = vfs_link(old_path.dentry, nd.path.dentry->d_inode, new_dentry);
be6d3e56 3165out_drop_write:
75c3f29d
DH
3166 mnt_drop_write(nd.path.mnt);
3167out_dput:
6902d925
DH
3168 dput(new_dentry);
3169out_unlock:
4ac91378 3170 mutex_unlock(&nd.path.dentry->d_inode->i_mutex);
1da177e4 3171out_release:
1d957f9b 3172 path_put(&nd.path);
2ad94ae6 3173 putname(to);
1da177e4 3174out:
2d8f3038 3175 path_put(&old_path);
1da177e4
LT
3176
3177 return error;
3178}
3179
3480b257 3180SYSCALL_DEFINE2(link, const char __user *, oldname, const char __user *, newname)
5590ff0d 3181{
c04030e1 3182 return sys_linkat(AT_FDCWD, oldname, AT_FDCWD, newname, 0);
5590ff0d
UD
3183}
3184
1da177e4
LT
3185/*
3186 * The worst of all namespace operations - renaming directory. "Perverted"
3187 * doesn't even start to describe it. Somebody in UCB had a heck of a trip...
3188 * Problems:
3189 * a) we can get into loop creation. Check is done in is_subdir().
3190 * b) race potential - two innocent renames can create a loop together.
3191 * That's where 4.4 screws up. Current fix: serialization on
a11f3a05 3192 * sb->s_vfs_rename_mutex. We might be more accurate, but that's another
1da177e4
LT
3193 * story.
3194 * c) we have to lock _three_ objects - parents and victim (if it exists).
1b1dcc1b 3195 * And that - after we got ->i_mutex on parents (until then we don't know
1da177e4
LT
3196 * whether the target exists). Solution: try to be smart with locking
3197 * order for inodes. We rely on the fact that tree topology may change
a11f3a05 3198 * only under ->s_vfs_rename_mutex _and_ that parent of the object we
1da177e4
LT
3199 * move will be locked. Thus we can rank directories by the tree
3200 * (ancestors first) and rank all non-directories after them.
3201 * That works since everybody except rename does "lock parent, lookup,
a11f3a05 3202 * lock child" and rename is under ->s_vfs_rename_mutex.
1da177e4
LT
3203 * HOWEVER, it relies on the assumption that any object with ->lookup()
3204 * has no more than 1 dentry. If "hybrid" objects will ever appear,
3205 * we'd better make sure that there's no link(2) for them.
3206 * d) some filesystems don't support opened-but-unlinked directories,
3207 * either because of layout or because they are not ready to deal with
3208 * all cases correctly. The latter will be fixed (taking this sort of
3209 * stuff into VFS), but the former is not going away. Solution: the same
3210 * trick as in rmdir().
3211 * e) conversion from fhandle to dentry may come in the wrong moment - when
1b1dcc1b 3212 * we are removing the target. Solution: we will have to grab ->i_mutex
1da177e4 3213 * in the fhandle_to_dentry code. [FIXME - current nfsfh.c relies on
c41b20e7 3214 * ->i_mutex on parents, which works but leads to some truly excessive
1da177e4
LT
3215 * locking].
3216 */
75c96f85
AB
3217static int vfs_rename_dir(struct inode *old_dir, struct dentry *old_dentry,
3218 struct inode *new_dir, struct dentry *new_dentry)
1da177e4
LT
3219{
3220 int error = 0;
3221 struct inode *target;
3222
3223 /*
3224 * If we are going to change the parent - check write permissions,
3225 * we'll need to flip '..'.
3226 */
3227 if (new_dir != old_dir) {
f419a2e3 3228 error = inode_permission(old_dentry->d_inode, MAY_WRITE);
1da177e4
LT
3229 if (error)
3230 return error;
3231 }
3232
3233 error = security_inode_rename(old_dir, old_dentry, new_dir, new_dentry);
3234 if (error)
3235 return error;
3236
3237 target = new_dentry->d_inode;
d83c49f3 3238 if (target)
1b1dcc1b 3239 mutex_lock(&target->i_mutex);
1da177e4
LT
3240 if (d_mountpoint(old_dentry)||d_mountpoint(new_dentry))
3241 error = -EBUSY;
d83c49f3
AV
3242 else {
3243 if (target)
3244 dentry_unhash(new_dentry);
1da177e4 3245 error = old_dir->i_op->rename(old_dir, old_dentry, new_dir, new_dentry);
d83c49f3 3246 }
1da177e4 3247 if (target) {
d83c49f3 3248 if (!error) {
1da177e4 3249 target->i_flags |= S_DEAD;
d83c49f3
AV
3250 dont_mount(new_dentry);
3251 }
1b1dcc1b 3252 mutex_unlock(&target->i_mutex);
1da177e4
LT
3253 if (d_unhashed(new_dentry))
3254 d_rehash(new_dentry);
3255 dput(new_dentry);
3256 }
e31e14ec 3257 if (!error)
349457cc
MF
3258 if (!(old_dir->i_sb->s_type->fs_flags & FS_RENAME_DOES_D_MOVE))
3259 d_move(old_dentry,new_dentry);
1da177e4
LT
3260 return error;
3261}
3262
75c96f85
AB
3263static int vfs_rename_other(struct inode *old_dir, struct dentry *old_dentry,
3264 struct inode *new_dir, struct dentry *new_dentry)
1da177e4
LT
3265{
3266 struct inode *target;
3267 int error;
3268
3269 error = security_inode_rename(old_dir, old_dentry, new_dir, new_dentry);
3270 if (error)
3271 return error;
3272
3273 dget(new_dentry);
3274 target = new_dentry->d_inode;
3275 if (target)
1b1dcc1b 3276 mutex_lock(&target->i_mutex);
1da177e4
LT
3277 if (d_mountpoint(old_dentry)||d_mountpoint(new_dentry))
3278 error = -EBUSY;
3279 else
3280 error = old_dir->i_op->rename(old_dir, old_dentry, new_dir, new_dentry);
3281 if (!error) {
bec1052e 3282 if (target)
d83c49f3 3283 dont_mount(new_dentry);
349457cc 3284 if (!(old_dir->i_sb->s_type->fs_flags & FS_RENAME_DOES_D_MOVE))
1da177e4 3285 d_move(old_dentry, new_dentry);
1da177e4
LT
3286 }
3287 if (target)
1b1dcc1b 3288 mutex_unlock(&target->i_mutex);
1da177e4
LT
3289 dput(new_dentry);
3290 return error;
3291}
3292
3293int vfs_rename(struct inode *old_dir, struct dentry *old_dentry,
3294 struct inode *new_dir, struct dentry *new_dentry)
3295{
3296 int error;
3297 int is_dir = S_ISDIR(old_dentry->d_inode->i_mode);
59b0df21 3298 const unsigned char *old_name;
1da177e4
LT
3299
3300 if (old_dentry->d_inode == new_dentry->d_inode)
3301 return 0;
3302
3303 error = may_delete(old_dir, old_dentry, is_dir);
3304 if (error)
3305 return error;
3306
3307 if (!new_dentry->d_inode)
a95164d9 3308 error = may_create(new_dir, new_dentry);
1da177e4
LT
3309 else
3310 error = may_delete(new_dir, new_dentry, is_dir);
3311 if (error)
3312 return error;
3313
acfa4380 3314 if (!old_dir->i_op->rename)
1da177e4
LT
3315 return -EPERM;
3316
0eeca283
RL
3317 old_name = fsnotify_oldname_init(old_dentry->d_name.name);
3318
1da177e4
LT
3319 if (is_dir)
3320 error = vfs_rename_dir(old_dir,old_dentry,new_dir,new_dentry);
3321 else
3322 error = vfs_rename_other(old_dir,old_dentry,new_dir,new_dentry);
123df294
AV
3323 if (!error)
3324 fsnotify_move(old_dir, new_dir, old_name, is_dir,
5a190ae6 3325 new_dentry->d_inode, old_dentry);
0eeca283
RL
3326 fsnotify_oldname_free(old_name);
3327
1da177e4
LT
3328 return error;
3329}
3330
2e4d0924
HC
3331SYSCALL_DEFINE4(renameat, int, olddfd, const char __user *, oldname,
3332 int, newdfd, const char __user *, newname)
1da177e4 3333{
2ad94ae6
AV
3334 struct dentry *old_dir, *new_dir;
3335 struct dentry *old_dentry, *new_dentry;
3336 struct dentry *trap;
1da177e4 3337 struct nameidata oldnd, newnd;
2ad94ae6
AV
3338 char *from;
3339 char *to;
3340 int error;
1da177e4 3341
2ad94ae6 3342 error = user_path_parent(olddfd, oldname, &oldnd, &from);
1da177e4
LT
3343 if (error)
3344 goto exit;
3345
2ad94ae6 3346 error = user_path_parent(newdfd, newname, &newnd, &to);
1da177e4
LT
3347 if (error)
3348 goto exit1;
3349
3350 error = -EXDEV;
4ac91378 3351 if (oldnd.path.mnt != newnd.path.mnt)
1da177e4
LT
3352 goto exit2;
3353
4ac91378 3354 old_dir = oldnd.path.dentry;
1da177e4
LT
3355 error = -EBUSY;
3356 if (oldnd.last_type != LAST_NORM)
3357 goto exit2;
3358
4ac91378 3359 new_dir = newnd.path.dentry;
1da177e4
LT
3360 if (newnd.last_type != LAST_NORM)
3361 goto exit2;
3362
0612d9fb
OH
3363 oldnd.flags &= ~LOOKUP_PARENT;
3364 newnd.flags &= ~LOOKUP_PARENT;
4e9ed2f8 3365 newnd.flags |= LOOKUP_RENAME_TARGET;
0612d9fb 3366
1da177e4
LT
3367 trap = lock_rename(new_dir, old_dir);
3368
49705b77 3369 old_dentry = lookup_hash(&oldnd);
1da177e4
LT
3370 error = PTR_ERR(old_dentry);
3371 if (IS_ERR(old_dentry))
3372 goto exit3;
3373 /* source must exist */
3374 error = -ENOENT;
3375 if (!old_dentry->d_inode)
3376 goto exit4;
3377 /* unless the source is a directory trailing slashes give -ENOTDIR */
3378 if (!S_ISDIR(old_dentry->d_inode->i_mode)) {
3379 error = -ENOTDIR;
3380 if (oldnd.last.name[oldnd.last.len])
3381 goto exit4;
3382 if (newnd.last.name[newnd.last.len])
3383 goto exit4;
3384 }
3385 /* source should not be ancestor of target */
3386 error = -EINVAL;
3387 if (old_dentry == trap)
3388 goto exit4;
49705b77 3389 new_dentry = lookup_hash(&newnd);
1da177e4
LT
3390 error = PTR_ERR(new_dentry);
3391 if (IS_ERR(new_dentry))
3392 goto exit4;
3393 /* target should not be an ancestor of source */
3394 error = -ENOTEMPTY;
3395 if (new_dentry == trap)
3396 goto exit5;
3397
9079b1eb
DH
3398 error = mnt_want_write(oldnd.path.mnt);
3399 if (error)
3400 goto exit5;
be6d3e56
KT
3401 error = security_path_rename(&oldnd.path, old_dentry,
3402 &newnd.path, new_dentry);
3403 if (error)
3404 goto exit6;
1da177e4
LT
3405 error = vfs_rename(old_dir->d_inode, old_dentry,
3406 new_dir->d_inode, new_dentry);
be6d3e56 3407exit6:
9079b1eb 3408 mnt_drop_write(oldnd.path.mnt);
1da177e4
LT
3409exit5:
3410 dput(new_dentry);
3411exit4:
3412 dput(old_dentry);
3413exit3:
3414 unlock_rename(new_dir, old_dir);
3415exit2:
1d957f9b 3416 path_put(&newnd.path);
2ad94ae6 3417 putname(to);
1da177e4 3418exit1:
1d957f9b 3419 path_put(&oldnd.path);
1da177e4 3420 putname(from);
2ad94ae6 3421exit:
1da177e4
LT
3422 return error;
3423}
3424
a26eab24 3425SYSCALL_DEFINE2(rename, const char __user *, oldname, const char __user *, newname)
5590ff0d
UD
3426{
3427 return sys_renameat(AT_FDCWD, oldname, AT_FDCWD, newname);
3428}
3429
1da177e4
LT
3430int vfs_readlink(struct dentry *dentry, char __user *buffer, int buflen, const char *link)
3431{
3432 int len;
3433
3434 len = PTR_ERR(link);
3435 if (IS_ERR(link))
3436 goto out;
3437
3438 len = strlen(link);
3439 if (len > (unsigned) buflen)
3440 len = buflen;
3441 if (copy_to_user(buffer, link, len))
3442 len = -EFAULT;
3443out:
3444 return len;
3445}
3446
3447/*
3448 * A helper for ->readlink(). This should be used *ONLY* for symlinks that
3449 * have ->follow_link() touching nd only in nd_set_link(). Using (or not
3450 * using) it for any given inode is up to filesystem.
3451 */
3452int generic_readlink(struct dentry *dentry, char __user *buffer, int buflen)
3453{
3454 struct nameidata nd;
cc314eef 3455 void *cookie;
694a1764 3456 int res;
cc314eef 3457
1da177e4 3458 nd.depth = 0;
cc314eef 3459 cookie = dentry->d_inode->i_op->follow_link(dentry, &nd);
694a1764
MS
3460 if (IS_ERR(cookie))
3461 return PTR_ERR(cookie);
3462
3463 res = vfs_readlink(dentry, buffer, buflen, nd_get_link(&nd));
3464 if (dentry->d_inode->i_op->put_link)
3465 dentry->d_inode->i_op->put_link(dentry, &nd, cookie);
3466 return res;
1da177e4
LT
3467}
3468
3469int vfs_follow_link(struct nameidata *nd, const char *link)
3470{
3471 return __vfs_follow_link(nd, link);
3472}
3473
3474/* get the link contents into pagecache */
3475static char *page_getlink(struct dentry * dentry, struct page **ppage)
3476{
ebd09abb
DG
3477 char *kaddr;
3478 struct page *page;
1da177e4 3479 struct address_space *mapping = dentry->d_inode->i_mapping;
090d2b18 3480 page = read_mapping_page(mapping, 0, NULL);
1da177e4 3481 if (IS_ERR(page))
6fe6900e 3482 return (char*)page;
1da177e4 3483 *ppage = page;
ebd09abb
DG
3484 kaddr = kmap(page);
3485 nd_terminate_link(kaddr, dentry->d_inode->i_size, PAGE_SIZE - 1);
3486 return kaddr;
1da177e4
LT
3487}
3488
3489int page_readlink(struct dentry *dentry, char __user *buffer, int buflen)
3490{
3491 struct page *page = NULL;
3492 char *s = page_getlink(dentry, &page);
3493 int res = vfs_readlink(dentry,buffer,buflen,s);
3494 if (page) {
3495 kunmap(page);
3496 page_cache_release(page);
3497 }
3498 return res;
3499}
3500
cc314eef 3501void *page_follow_link_light(struct dentry *dentry, struct nameidata *nd)
1da177e4 3502{
cc314eef 3503 struct page *page = NULL;
1da177e4 3504 nd_set_link(nd, page_getlink(dentry, &page));
cc314eef 3505 return page;
1da177e4
LT
3506}
3507
cc314eef 3508void page_put_link(struct dentry *dentry, struct nameidata *nd, void *cookie)
1da177e4 3509{
cc314eef
LT
3510 struct page *page = cookie;
3511
3512 if (page) {
1da177e4
LT
3513 kunmap(page);
3514 page_cache_release(page);
1da177e4
LT
3515 }
3516}
3517
54566b2c
NP
3518/*
3519 * The nofs argument instructs pagecache_write_begin to pass AOP_FLAG_NOFS
3520 */
3521int __page_symlink(struct inode *inode, const char *symname, int len, int nofs)
1da177e4
LT
3522{
3523 struct address_space *mapping = inode->i_mapping;
0adb25d2 3524 struct page *page;
afddba49 3525 void *fsdata;
beb497ab 3526 int err;
1da177e4 3527 char *kaddr;
54566b2c
NP
3528 unsigned int flags = AOP_FLAG_UNINTERRUPTIBLE;
3529 if (nofs)
3530 flags |= AOP_FLAG_NOFS;
1da177e4 3531
7e53cac4 3532retry:
afddba49 3533 err = pagecache_write_begin(NULL, mapping, 0, len-1,
54566b2c 3534 flags, &page, &fsdata);
1da177e4 3535 if (err)
afddba49
NP
3536 goto fail;
3537
1da177e4
LT
3538 kaddr = kmap_atomic(page, KM_USER0);
3539 memcpy(kaddr, symname, len-1);
3540 kunmap_atomic(kaddr, KM_USER0);
afddba49
NP
3541
3542 err = pagecache_write_end(NULL, mapping, 0, len-1, len-1,
3543 page, fsdata);
1da177e4
LT
3544 if (err < 0)
3545 goto fail;
afddba49
NP
3546 if (err < len-1)
3547 goto retry;
3548
1da177e4
LT
3549 mark_inode_dirty(inode);
3550 return 0;
1da177e4
LT
3551fail:
3552 return err;
3553}
3554
0adb25d2
KK
3555int page_symlink(struct inode *inode, const char *symname, int len)
3556{
3557 return __page_symlink(inode, symname, len,
54566b2c 3558 !(mapping_gfp_mask(inode->i_mapping) & __GFP_FS));
0adb25d2
KK
3559}
3560
92e1d5be 3561const struct inode_operations page_symlink_inode_operations = {
1da177e4
LT
3562 .readlink = generic_readlink,
3563 .follow_link = page_follow_link_light,
3564 .put_link = page_put_link,
3565};
3566
2d8f3038 3567EXPORT_SYMBOL(user_path_at);
cc53ce53 3568EXPORT_SYMBOL(follow_down_one);
1da177e4
LT
3569EXPORT_SYMBOL(follow_down);
3570EXPORT_SYMBOL(follow_up);
3571EXPORT_SYMBOL(get_write_access); /* binfmt_aout */
3572EXPORT_SYMBOL(getname);
3573EXPORT_SYMBOL(lock_rename);
1da177e4
LT
3574EXPORT_SYMBOL(lookup_one_len);
3575EXPORT_SYMBOL(page_follow_link_light);
3576EXPORT_SYMBOL(page_put_link);
3577EXPORT_SYMBOL(page_readlink);
0adb25d2 3578EXPORT_SYMBOL(__page_symlink);
1da177e4
LT
3579EXPORT_SYMBOL(page_symlink);
3580EXPORT_SYMBOL(page_symlink_inode_operations);
3581EXPORT_SYMBOL(path_lookup);
d1811465 3582EXPORT_SYMBOL(kern_path);
16f18200 3583EXPORT_SYMBOL(vfs_path_lookup);
f419a2e3 3584EXPORT_SYMBOL(inode_permission);
8c744fb8 3585EXPORT_SYMBOL(file_permission);
1da177e4
LT
3586EXPORT_SYMBOL(unlock_rename);
3587EXPORT_SYMBOL(vfs_create);
3588EXPORT_SYMBOL(vfs_follow_link);
3589EXPORT_SYMBOL(vfs_link);
3590EXPORT_SYMBOL(vfs_mkdir);
3591EXPORT_SYMBOL(vfs_mknod);
3592EXPORT_SYMBOL(generic_permission);
3593EXPORT_SYMBOL(vfs_readlink);
3594EXPORT_SYMBOL(vfs_rename);
3595EXPORT_SYMBOL(vfs_rmdir);
3596EXPORT_SYMBOL(vfs_symlink);
3597EXPORT_SYMBOL(vfs_unlink);
3598EXPORT_SYMBOL(dentry_unhash);
3599EXPORT_SYMBOL(generic_readlink);