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b2441318 1// SPDX-License-Identifier: GPL-2.0
1da177e4
LT
2/*
3 * linux/fs/namei.c
4 *
5 * Copyright (C) 1991, 1992 Linus Torvalds
6 */
7
8/*
9 * Some corrections by tytso.
10 */
11
12/* [Feb 1997 T. Schoebel-Theuer] Complete rewrite of the pathname
13 * lookup logic.
14 */
15/* [Feb-Apr 2000, AV] Rewrite to the new namespace architecture.
16 */
17
18#include <linux/init.h>
630d9c47 19#include <linux/export.h>
44696908 20#include <linux/kernel.h>
1da177e4
LT
21#include <linux/slab.h>
22#include <linux/fs.h>
23#include <linux/namei.h>
1da177e4 24#include <linux/pagemap.h>
0eeca283 25#include <linux/fsnotify.h>
1da177e4
LT
26#include <linux/personality.h>
27#include <linux/security.h>
6146f0d5 28#include <linux/ima.h>
1da177e4
LT
29#include <linux/syscalls.h>
30#include <linux/mount.h>
31#include <linux/audit.h>
16f7e0fe 32#include <linux/capability.h>
834f2a4a 33#include <linux/file.h>
5590ff0d 34#include <linux/fcntl.h>
08ce5f16 35#include <linux/device_cgroup.h>
5ad4e53b 36#include <linux/fs_struct.h>
e77819e5 37#include <linux/posix_acl.h>
99d263d4 38#include <linux/hash.h>
2a18da7a 39#include <linux/bitops.h>
aeaa4a79 40#include <linux/init_task.h>
7c0f6ba6 41#include <linux/uaccess.h>
1da177e4 42
e81e3f4d 43#include "internal.h"
c7105365 44#include "mount.h"
e81e3f4d 45
1da177e4
LT
46/* [Feb-1997 T. Schoebel-Theuer]
47 * Fundamental changes in the pathname lookup mechanisms (namei)
48 * were necessary because of omirr. The reason is that omirr needs
49 * to know the _real_ pathname, not the user-supplied one, in case
50 * of symlinks (and also when transname replacements occur).
51 *
52 * The new code replaces the old recursive symlink resolution with
53 * an iterative one (in case of non-nested symlink chains). It does
54 * this with calls to <fs>_follow_link().
55 * As a side effect, dir_namei(), _namei() and follow_link() are now
56 * replaced with a single function lookup_dentry() that can handle all
57 * the special cases of the former code.
58 *
59 * With the new dcache, the pathname is stored at each inode, at least as
60 * long as the refcount of the inode is positive. As a side effect, the
61 * size of the dcache depends on the inode cache and thus is dynamic.
62 *
63 * [29-Apr-1998 C. Scott Ananian] Updated above description of symlink
64 * resolution to correspond with current state of the code.
65 *
66 * Note that the symlink resolution is not *completely* iterative.
67 * There is still a significant amount of tail- and mid- recursion in
68 * the algorithm. Also, note that <fs>_readlink() is not used in
69 * lookup_dentry(): lookup_dentry() on the result of <fs>_readlink()
70 * may return different results than <fs>_follow_link(). Many virtual
71 * filesystems (including /proc) exhibit this behavior.
72 */
73
74/* [24-Feb-97 T. Schoebel-Theuer] Side effects caused by new implementation:
75 * New symlink semantics: when open() is called with flags O_CREAT | O_EXCL
76 * and the name already exists in form of a symlink, try to create the new
77 * name indicated by the symlink. The old code always complained that the
78 * name already exists, due to not following the symlink even if its target
79 * is nonexistent. The new semantics affects also mknod() and link() when
25985edc 80 * the name is a symlink pointing to a non-existent name.
1da177e4
LT
81 *
82 * I don't know which semantics is the right one, since I have no access
83 * to standards. But I found by trial that HP-UX 9.0 has the full "new"
84 * semantics implemented, while SunOS 4.1.1 and Solaris (SunOS 5.4) have the
85 * "old" one. Personally, I think the new semantics is much more logical.
86 * Note that "ln old new" where "new" is a symlink pointing to a non-existing
87 * file does succeed in both HP-UX and SunOs, but not in Solaris
88 * and in the old Linux semantics.
89 */
90
91/* [16-Dec-97 Kevin Buhr] For security reasons, we change some symlink
92 * semantics. See the comments in "open_namei" and "do_link" below.
93 *
94 * [10-Sep-98 Alan Modra] Another symlink change.
95 */
96
97/* [Feb-Apr 2000 AV] Complete rewrite. Rules for symlinks:
98 * inside the path - always follow.
99 * in the last component in creation/removal/renaming - never follow.
100 * if LOOKUP_FOLLOW passed - follow.
101 * if the pathname has trailing slashes - follow.
102 * otherwise - don't follow.
103 * (applied in that order).
104 *
105 * [Jun 2000 AV] Inconsistent behaviour of open() in case if flags==O_CREAT
106 * restored for 2.4. This is the last surviving part of old 4.2BSD bug.
107 * During the 2.4 we need to fix the userland stuff depending on it -
108 * hopefully we will be able to get rid of that wart in 2.5. So far only
109 * XEmacs seems to be relying on it...
110 */
111/*
112 * [Sep 2001 AV] Single-semaphore locking scheme (kudos to David Holland)
a11f3a05 113 * implemented. Let's see if raised priority of ->s_vfs_rename_mutex gives
1da177e4
LT
114 * any extra contention...
115 */
116
117/* In order to reduce some races, while at the same time doing additional
118 * checking and hopefully speeding things up, we copy filenames to the
119 * kernel data space before using them..
120 *
121 * POSIX.1 2.4: an empty pathname is invalid (ENOENT).
122 * PATH_MAX includes the nul terminator --RR.
123 */
91a27b2a 124
fd2f7cb5 125#define EMBEDDED_NAME_MAX (PATH_MAX - offsetof(struct filename, iname))
7950e385 126
51f39a1f 127struct filename *
91a27b2a
JL
128getname_flags(const char __user *filename, int flags, int *empty)
129{
94b5d262 130 struct filename *result;
7950e385 131 char *kname;
94b5d262 132 int len;
4043cde8 133
7ac86265
JL
134 result = audit_reusename(filename);
135 if (result)
136 return result;
137
7950e385 138 result = __getname();
3f9f0aa6 139 if (unlikely(!result))
4043cde8
EP
140 return ERR_PTR(-ENOMEM);
141
7950e385
JL
142 /*
143 * First, try to embed the struct filename inside the names_cache
144 * allocation
145 */
fd2f7cb5 146 kname = (char *)result->iname;
91a27b2a 147 result->name = kname;
7950e385 148
94b5d262 149 len = strncpy_from_user(kname, filename, EMBEDDED_NAME_MAX);
91a27b2a 150 if (unlikely(len < 0)) {
94b5d262
AV
151 __putname(result);
152 return ERR_PTR(len);
91a27b2a 153 }
3f9f0aa6 154
7950e385
JL
155 /*
156 * Uh-oh. We have a name that's approaching PATH_MAX. Allocate a
157 * separate struct filename so we can dedicate the entire
158 * names_cache allocation for the pathname, and re-do the copy from
159 * userland.
160 */
94b5d262 161 if (unlikely(len == EMBEDDED_NAME_MAX)) {
fd2f7cb5 162 const size_t size = offsetof(struct filename, iname[1]);
7950e385
JL
163 kname = (char *)result;
164
fd2f7cb5
AV
165 /*
166 * size is chosen that way we to guarantee that
167 * result->iname[0] is within the same object and that
168 * kname can't be equal to result->iname, no matter what.
169 */
170 result = kzalloc(size, GFP_KERNEL);
94b5d262
AV
171 if (unlikely(!result)) {
172 __putname(kname);
173 return ERR_PTR(-ENOMEM);
7950e385
JL
174 }
175 result->name = kname;
94b5d262
AV
176 len = strncpy_from_user(kname, filename, PATH_MAX);
177 if (unlikely(len < 0)) {
178 __putname(kname);
179 kfree(result);
180 return ERR_PTR(len);
181 }
182 if (unlikely(len == PATH_MAX)) {
183 __putname(kname);
184 kfree(result);
185 return ERR_PTR(-ENAMETOOLONG);
186 }
7950e385
JL
187 }
188
94b5d262 189 result->refcnt = 1;
3f9f0aa6
LT
190 /* The empty path is special. */
191 if (unlikely(!len)) {
192 if (empty)
4043cde8 193 *empty = 1;
94b5d262
AV
194 if (!(flags & LOOKUP_EMPTY)) {
195 putname(result);
196 return ERR_PTR(-ENOENT);
197 }
1da177e4 198 }
3f9f0aa6 199
7950e385 200 result->uptr = filename;
c4ad8f98 201 result->aname = NULL;
7950e385
JL
202 audit_getname(result);
203 return result;
1da177e4
LT
204}
205
91a27b2a
JL
206struct filename *
207getname(const char __user * filename)
f52e0c11 208{
f7493e5d 209 return getname_flags(filename, 0, NULL);
f52e0c11
AV
210}
211
c4ad8f98
LT
212struct filename *
213getname_kernel(const char * filename)
214{
215 struct filename *result;
08518549 216 int len = strlen(filename) + 1;
c4ad8f98
LT
217
218 result = __getname();
219 if (unlikely(!result))
220 return ERR_PTR(-ENOMEM);
221
08518549 222 if (len <= EMBEDDED_NAME_MAX) {
fd2f7cb5 223 result->name = (char *)result->iname;
08518549 224 } else if (len <= PATH_MAX) {
30ce4d19 225 const size_t size = offsetof(struct filename, iname[1]);
08518549
PM
226 struct filename *tmp;
227
30ce4d19 228 tmp = kmalloc(size, GFP_KERNEL);
08518549
PM
229 if (unlikely(!tmp)) {
230 __putname(result);
231 return ERR_PTR(-ENOMEM);
232 }
233 tmp->name = (char *)result;
08518549
PM
234 result = tmp;
235 } else {
236 __putname(result);
237 return ERR_PTR(-ENAMETOOLONG);
238 }
239 memcpy((char *)result->name, filename, len);
c4ad8f98
LT
240 result->uptr = NULL;
241 result->aname = NULL;
55422d0b 242 result->refcnt = 1;
fd3522fd 243 audit_getname(result);
c4ad8f98 244
c4ad8f98
LT
245 return result;
246}
247
91a27b2a 248void putname(struct filename *name)
1da177e4 249{
55422d0b
PM
250 BUG_ON(name->refcnt <= 0);
251
252 if (--name->refcnt > 0)
253 return;
254
fd2f7cb5 255 if (name->name != name->iname) {
55422d0b
PM
256 __putname(name->name);
257 kfree(name);
258 } else
259 __putname(name);
1da177e4 260}
1da177e4 261
e77819e5
LT
262static int check_acl(struct inode *inode, int mask)
263{
84635d68 264#ifdef CONFIG_FS_POSIX_ACL
e77819e5
LT
265 struct posix_acl *acl;
266
e77819e5 267 if (mask & MAY_NOT_BLOCK) {
3567866b
AV
268 acl = get_cached_acl_rcu(inode, ACL_TYPE_ACCESS);
269 if (!acl)
e77819e5 270 return -EAGAIN;
3567866b 271 /* no ->get_acl() calls in RCU mode... */
b8a7a3a6 272 if (is_uncached_acl(acl))
3567866b 273 return -ECHILD;
63d72b93 274 return posix_acl_permission(inode, acl, mask);
e77819e5
LT
275 }
276
2982baa2
CH
277 acl = get_acl(inode, ACL_TYPE_ACCESS);
278 if (IS_ERR(acl))
279 return PTR_ERR(acl);
e77819e5
LT
280 if (acl) {
281 int error = posix_acl_permission(inode, acl, mask);
282 posix_acl_release(acl);
283 return error;
284 }
84635d68 285#endif
e77819e5
LT
286
287 return -EAGAIN;
288}
289
5909ccaa 290/*
5fc475b7
LT
291 * This does the basic UNIX permission checking.
292 *
293 * Note that the POSIX ACL check cares about the MAY_NOT_BLOCK bit,
294 * for RCU walking.
1da177e4 295 */
7e40145e 296static int acl_permission_check(struct inode *inode, int mask)
1da177e4 297{
26cf46be 298 unsigned int mode = inode->i_mode;
1da177e4 299
5fc475b7
LT
300 /* Are we the owner? If so, ACL's don't matter */
301 if (likely(uid_eq(current_fsuid(), inode->i_uid))) {
302 mask &= 7;
1da177e4 303 mode >>= 6;
5fc475b7
LT
304 return (mask & ~mode) ? -EACCES : 0;
305 }
1da177e4 306
5fc475b7
LT
307 /* Do we have ACL's? */
308 if (IS_POSIXACL(inode) && (mode & S_IRWXG)) {
309 int error = check_acl(inode, mask);
310 if (error != -EAGAIN)
311 return error;
1da177e4
LT
312 }
313
5fc475b7
LT
314 /* Only RWX matters for group/other mode bits */
315 mask &= 7;
316
1da177e4 317 /*
5fc475b7
LT
318 * Are the group permissions different from
319 * the other permissions in the bits we care
320 * about? Need to check group ownership if so.
1da177e4 321 */
5fc475b7
LT
322 if (mask & (mode ^ (mode >> 3))) {
323 if (in_group_p(inode->i_gid))
324 mode >>= 3;
325 }
326
327 /* Bits in 'mode' clear that we require? */
328 return (mask & ~mode) ? -EACCES : 0;
5909ccaa
LT
329}
330
331/**
b74c79e9 332 * generic_permission - check for access rights on a Posix-like filesystem
5909ccaa 333 * @inode: inode to check access rights for
5fc475b7
LT
334 * @mask: right to check for (%MAY_READ, %MAY_WRITE, %MAY_EXEC,
335 * %MAY_NOT_BLOCK ...)
5909ccaa
LT
336 *
337 * Used to check for read/write/execute permissions on a file.
338 * We use "fsuid" for this, letting us set arbitrary permissions
339 * for filesystem access without changing the "normal" uids which
b74c79e9
NP
340 * are used for other things.
341 *
342 * generic_permission is rcu-walk aware. It returns -ECHILD in case an rcu-walk
343 * request cannot be satisfied (eg. requires blocking or too much complexity).
344 * It would then be called again in ref-walk mode.
5909ccaa 345 */
2830ba7f 346int generic_permission(struct inode *inode, int mask)
5909ccaa
LT
347{
348 int ret;
349
350 /*
948409c7 351 * Do the basic permission checks.
5909ccaa 352 */
7e40145e 353 ret = acl_permission_check(inode, mask);
5909ccaa
LT
354 if (ret != -EACCES)
355 return ret;
1da177e4 356
d594e7ec
AV
357 if (S_ISDIR(inode->i_mode)) {
358 /* DACs are overridable for directories */
d594e7ec 359 if (!(mask & MAY_WRITE))
23adbe12
AL
360 if (capable_wrt_inode_uidgid(inode,
361 CAP_DAC_READ_SEARCH))
d594e7ec 362 return 0;
23adbe12 363 if (capable_wrt_inode_uidgid(inode, CAP_DAC_OVERRIDE))
1da177e4 364 return 0;
2a4c2242
SS
365 return -EACCES;
366 }
1da177e4
LT
367
368 /*
369 * Searching includes executable on directories, else just read.
370 */
7ea66001 371 mask &= MAY_READ | MAY_WRITE | MAY_EXEC;
d594e7ec 372 if (mask == MAY_READ)
23adbe12 373 if (capable_wrt_inode_uidgid(inode, CAP_DAC_READ_SEARCH))
1da177e4 374 return 0;
2a4c2242
SS
375 /*
376 * Read/write DACs are always overridable.
377 * Executable DACs are overridable when there is
378 * at least one exec bit set.
379 */
380 if (!(mask & MAY_EXEC) || (inode->i_mode & S_IXUGO))
381 if (capable_wrt_inode_uidgid(inode, CAP_DAC_OVERRIDE))
382 return 0;
1da177e4
LT
383
384 return -EACCES;
385}
4d359507 386EXPORT_SYMBOL(generic_permission);
1da177e4 387
3ddcd056
LT
388/*
389 * We _really_ want to just do "generic_permission()" without
390 * even looking at the inode->i_op values. So we keep a cache
391 * flag in inode->i_opflags, that says "this has not special
392 * permission function, use the fast case".
393 */
394static inline int do_inode_permission(struct inode *inode, int mask)
395{
396 if (unlikely(!(inode->i_opflags & IOP_FASTPERM))) {
397 if (likely(inode->i_op->permission))
398 return inode->i_op->permission(inode, mask);
399
400 /* This gets set once for the inode lifetime */
401 spin_lock(&inode->i_lock);
402 inode->i_opflags |= IOP_FASTPERM;
403 spin_unlock(&inode->i_lock);
404 }
405 return generic_permission(inode, mask);
406}
407
0bdaea90
DH
408/**
409 * sb_permission - Check superblock-level permissions
410 * @sb: Superblock of inode to check permission on
55852635 411 * @inode: Inode to check permission on
0bdaea90
DH
412 * @mask: Right to check for (%MAY_READ, %MAY_WRITE, %MAY_EXEC)
413 *
414 * Separate out file-system wide checks from inode-specific permission checks.
415 */
416static int sb_permission(struct super_block *sb, struct inode *inode, int mask)
417{
418 if (unlikely(mask & MAY_WRITE)) {
419 umode_t mode = inode->i_mode;
420
421 /* Nobody gets write access to a read-only fs. */
bc98a42c 422 if (sb_rdonly(sb) && (S_ISREG(mode) || S_ISDIR(mode) || S_ISLNK(mode)))
0bdaea90
DH
423 return -EROFS;
424 }
425 return 0;
426}
427
428/**
429 * inode_permission - Check for access rights to a given inode
430 * @inode: Inode to check permission on
431 * @mask: Right to check for (%MAY_READ, %MAY_WRITE, %MAY_EXEC)
432 *
433 * Check for read/write/execute permissions on an inode. We use fs[ug]id for
434 * this, letting us set arbitrary permissions for filesystem access without
435 * changing the "normal" UIDs which are used for other things.
436 *
437 * When checking for MAY_APPEND, MAY_WRITE must also be set in @mask.
438 */
439int inode_permission(struct inode *inode, int mask)
440{
441 int retval;
442
443 retval = sb_permission(inode->i_sb, inode, mask);
444 if (retval)
445 return retval;
4bfd054a
EB
446
447 if (unlikely(mask & MAY_WRITE)) {
448 /*
449 * Nobody gets write access to an immutable file.
450 */
451 if (IS_IMMUTABLE(inode))
452 return -EPERM;
453
454 /*
455 * Updating mtime will likely cause i_uid and i_gid to be
456 * written back improperly if their true value is unknown
457 * to the vfs.
458 */
459 if (HAS_UNMAPPED_ID(inode))
460 return -EACCES;
461 }
462
463 retval = do_inode_permission(inode, mask);
464 if (retval)
465 return retval;
466
467 retval = devcgroup_inode_permission(inode, mask);
468 if (retval)
469 return retval;
470
471 return security_inode_permission(inode, mask);
0bdaea90 472}
4d359507 473EXPORT_SYMBOL(inode_permission);
0bdaea90 474
5dd784d0
JB
475/**
476 * path_get - get a reference to a path
477 * @path: path to get the reference to
478 *
479 * Given a path increment the reference count to the dentry and the vfsmount.
480 */
dcf787f3 481void path_get(const struct path *path)
5dd784d0
JB
482{
483 mntget(path->mnt);
484 dget(path->dentry);
485}
486EXPORT_SYMBOL(path_get);
487
1d957f9b
JB
488/**
489 * path_put - put a reference to a path
490 * @path: path to put the reference to
491 *
492 * Given a path decrement the reference count to the dentry and the vfsmount.
493 */
dcf787f3 494void path_put(const struct path *path)
1da177e4 495{
1d957f9b
JB
496 dput(path->dentry);
497 mntput(path->mnt);
1da177e4 498}
1d957f9b 499EXPORT_SYMBOL(path_put);
1da177e4 500
894bc8c4 501#define EMBEDDED_LEVELS 2
1f55a6ec
AV
502struct nameidata {
503 struct path path;
1cf2665b 504 struct qstr last;
1f55a6ec
AV
505 struct path root;
506 struct inode *inode; /* path.dentry.d_inode */
507 unsigned int flags;
ab87f9a5 508 unsigned seq, m_seq, r_seq;
1f55a6ec
AV
509 int last_type;
510 unsigned depth;
756daf26 511 int total_link_count;
697fc6ca
AV
512 struct saved {
513 struct path link;
fceef393 514 struct delayed_call done;
697fc6ca 515 const char *name;
0450b2d1 516 unsigned seq;
894bc8c4 517 } *stack, internal[EMBEDDED_LEVELS];
9883d185
AV
518 struct filename *name;
519 struct nameidata *saved;
520 unsigned root_seq;
521 int dfd;
0f705953
AV
522 kuid_t dir_uid;
523 umode_t dir_mode;
3859a271 524} __randomize_layout;
1f55a6ec 525
9883d185 526static void set_nameidata(struct nameidata *p, int dfd, struct filename *name)
894bc8c4 527{
756daf26
N
528 struct nameidata *old = current->nameidata;
529 p->stack = p->internal;
c8a53ee5
AV
530 p->dfd = dfd;
531 p->name = name;
756daf26 532 p->total_link_count = old ? old->total_link_count : 0;
9883d185 533 p->saved = old;
756daf26 534 current->nameidata = p;
894bc8c4
AV
535}
536
9883d185 537static void restore_nameidata(void)
894bc8c4 538{
9883d185 539 struct nameidata *now = current->nameidata, *old = now->saved;
756daf26
N
540
541 current->nameidata = old;
542 if (old)
543 old->total_link_count = now->total_link_count;
e1a63bbc 544 if (now->stack != now->internal)
756daf26 545 kfree(now->stack);
894bc8c4
AV
546}
547
60ef60c7 548static bool nd_alloc_stack(struct nameidata *nd)
894bc8c4 549{
bc40aee0
AV
550 struct saved *p;
551
60ef60c7
AV
552 p= kmalloc_array(MAXSYMLINKS, sizeof(struct saved),
553 nd->flags & LOOKUP_RCU ? GFP_ATOMIC : GFP_KERNEL);
554 if (unlikely(!p))
555 return false;
894bc8c4
AV
556 memcpy(p, nd->internal, sizeof(nd->internal));
557 nd->stack = p;
60ef60c7 558 return true;
894bc8c4
AV
559}
560
397d425d 561/**
6b03f7ed 562 * path_connected - Verify that a dentry is below mnt.mnt_root
397d425d
EB
563 *
564 * Rename can sometimes move a file or directory outside of a bind
565 * mount, path_connected allows those cases to be detected.
566 */
6b03f7ed 567static bool path_connected(struct vfsmount *mnt, struct dentry *dentry)
397d425d 568{
95dd7758 569 struct super_block *sb = mnt->mnt_sb;
397d425d 570
402dd2cf
CH
571 /* Bind mounts can have disconnected paths */
572 if (mnt->mnt_root == sb->s_root)
397d425d
EB
573 return true;
574
6b03f7ed 575 return is_subdir(dentry, mnt->mnt_root);
397d425d
EB
576}
577
7973387a
AV
578static void drop_links(struct nameidata *nd)
579{
580 int i = nd->depth;
581 while (i--) {
582 struct saved *last = nd->stack + i;
fceef393
AV
583 do_delayed_call(&last->done);
584 clear_delayed_call(&last->done);
7973387a
AV
585 }
586}
587
588static void terminate_walk(struct nameidata *nd)
589{
590 drop_links(nd);
591 if (!(nd->flags & LOOKUP_RCU)) {
592 int i;
593 path_put(&nd->path);
594 for (i = 0; i < nd->depth; i++)
595 path_put(&nd->stack[i].link);
84a2bd39 596 if (nd->flags & LOOKUP_ROOT_GRABBED) {
102b8af2 597 path_put(&nd->root);
84a2bd39 598 nd->flags &= ~LOOKUP_ROOT_GRABBED;
102b8af2 599 }
7973387a
AV
600 } else {
601 nd->flags &= ~LOOKUP_RCU;
7973387a
AV
602 rcu_read_unlock();
603 }
604 nd->depth = 0;
605}
606
607/* path_put is needed afterwards regardless of success or failure */
2aa38470 608static bool __legitimize_path(struct path *path, unsigned seq, unsigned mseq)
7973387a 609{
2aa38470 610 int res = __legitimize_mnt(path->mnt, mseq);
7973387a
AV
611 if (unlikely(res)) {
612 if (res > 0)
613 path->mnt = NULL;
614 path->dentry = NULL;
615 return false;
616 }
617 if (unlikely(!lockref_get_not_dead(&path->dentry->d_lockref))) {
618 path->dentry = NULL;
619 return false;
620 }
621 return !read_seqcount_retry(&path->dentry->d_seq, seq);
622}
623
2aa38470
AV
624static inline bool legitimize_path(struct nameidata *nd,
625 struct path *path, unsigned seq)
626{
5bd73286 627 return __legitimize_path(path, seq, nd->m_seq);
2aa38470
AV
628}
629
7973387a
AV
630static bool legitimize_links(struct nameidata *nd)
631{
632 int i;
633 for (i = 0; i < nd->depth; i++) {
634 struct saved *last = nd->stack + i;
635 if (unlikely(!legitimize_path(nd, &last->link, last->seq))) {
636 drop_links(nd);
637 nd->depth = i + 1;
638 return false;
639 }
640 }
641 return true;
642}
643
ee594bff
AV
644static bool legitimize_root(struct nameidata *nd)
645{
adb21d2b
AS
646 /*
647 * For scoped-lookups (where nd->root has been zeroed), we need to
648 * restart the whole lookup from scratch -- because set_root() is wrong
649 * for these lookups (nd->dfd is the root, not the filesystem root).
650 */
651 if (!nd->root.mnt && (nd->flags & LOOKUP_IS_SCOPED))
652 return false;
653 /* Nothing to do if nd->root is zero or is managed by the VFS user. */
ee594bff
AV
654 if (!nd->root.mnt || (nd->flags & LOOKUP_ROOT))
655 return true;
84a2bd39 656 nd->flags |= LOOKUP_ROOT_GRABBED;
ee594bff
AV
657 return legitimize_path(nd, &nd->root, nd->root_seq);
658}
659
19660af7 660/*
31e6b01f 661 * Path walking has 2 modes, rcu-walk and ref-walk (see
19660af7
AV
662 * Documentation/filesystems/path-lookup.txt). In situations when we can't
663 * continue in RCU mode, we attempt to drop out of rcu-walk mode and grab
57e3715c 664 * normal reference counts on dentries and vfsmounts to transition to ref-walk
19660af7
AV
665 * mode. Refcounts are grabbed at the last known good point before rcu-walk
666 * got stuck, so ref-walk may continue from there. If this is not successful
667 * (eg. a seqcount has changed), then failure is returned and it's up to caller
668 * to restart the path walk from the beginning in ref-walk mode.
31e6b01f 669 */
31e6b01f
NP
670
671/**
e36cffed 672 * try_to_unlazy - try to switch to ref-walk mode.
19660af7 673 * @nd: nameidata pathwalk data
e36cffed 674 * Returns: true on success, false on failure
31e6b01f 675 *
e36cffed 676 * try_to_unlazy attempts to legitimize the current nd->path and nd->root
4675ac39
AV
677 * for ref-walk mode.
678 * Must be called from rcu-walk context.
e36cffed 679 * Nothing should touch nameidata between try_to_unlazy() failure and
7973387a 680 * terminate_walk().
31e6b01f 681 */
e36cffed 682static bool try_to_unlazy(struct nameidata *nd)
31e6b01f 683{
31e6b01f
NP
684 struct dentry *parent = nd->path.dentry;
685
686 BUG_ON(!(nd->flags & LOOKUP_RCU));
e5c832d5 687
4675ac39 688 nd->flags &= ~LOOKUP_RCU;
6c6ec2b0
JA
689 if (nd->flags & LOOKUP_CACHED)
690 goto out1;
4675ac39 691 if (unlikely(!legitimize_links(nd)))
4675ac39 692 goto out1;
84a2bd39
AV
693 if (unlikely(!legitimize_path(nd, &nd->path, nd->seq)))
694 goto out;
ee594bff
AV
695 if (unlikely(!legitimize_root(nd)))
696 goto out;
4675ac39
AV
697 rcu_read_unlock();
698 BUG_ON(nd->inode != parent->d_inode);
e36cffed 699 return true;
4675ac39 700
84a2bd39 701out1:
4675ac39
AV
702 nd->path.mnt = NULL;
703 nd->path.dentry = NULL;
4675ac39
AV
704out:
705 rcu_read_unlock();
e36cffed 706 return false;
4675ac39
AV
707}
708
709/**
ae66db45 710 * try_to_unlazy_next - try to switch to ref-walk mode.
4675ac39 711 * @nd: nameidata pathwalk data
ae66db45
AV
712 * @dentry: next dentry to step into
713 * @seq: seq number to check @dentry against
714 * Returns: true on success, false on failure
4675ac39 715 *
ae66db45
AV
716 * Similar to to try_to_unlazy(), but here we have the next dentry already
717 * picked by rcu-walk and want to legitimize that in addition to the current
718 * nd->path and nd->root for ref-walk mode. Must be called from rcu-walk context.
719 * Nothing should touch nameidata between try_to_unlazy_next() failure and
4675ac39
AV
720 * terminate_walk().
721 */
ae66db45 722static bool try_to_unlazy_next(struct nameidata *nd, struct dentry *dentry, unsigned seq)
4675ac39
AV
723{
724 BUG_ON(!(nd->flags & LOOKUP_RCU));
725
e5c832d5 726 nd->flags &= ~LOOKUP_RCU;
6c6ec2b0
JA
727 if (nd->flags & LOOKUP_CACHED)
728 goto out2;
7973387a
AV
729 if (unlikely(!legitimize_links(nd)))
730 goto out2;
731 if (unlikely(!legitimize_mnt(nd->path.mnt, nd->m_seq)))
732 goto out2;
4675ac39 733 if (unlikely(!lockref_get_not_dead(&nd->path.dentry->d_lockref)))
7973387a 734 goto out1;
48a066e7 735
15570086 736 /*
4675ac39
AV
737 * We need to move both the parent and the dentry from the RCU domain
738 * to be properly refcounted. And the sequence number in the dentry
739 * validates *both* dentry counters, since we checked the sequence
740 * number of the parent after we got the child sequence number. So we
741 * know the parent must still be valid if the child sequence number is
15570086 742 */
4675ac39
AV
743 if (unlikely(!lockref_get_not_dead(&dentry->d_lockref)))
744 goto out;
84a2bd39
AV
745 if (unlikely(read_seqcount_retry(&dentry->d_seq, seq)))
746 goto out_dput;
e5c832d5
LT
747 /*
748 * Sequence counts matched. Now make sure that the root is
749 * still valid and get it if required.
750 */
84a2bd39
AV
751 if (unlikely(!legitimize_root(nd)))
752 goto out_dput;
8b61e74f 753 rcu_read_unlock();
ae66db45 754 return true;
19660af7 755
7973387a
AV
756out2:
757 nd->path.mnt = NULL;
758out1:
759 nd->path.dentry = NULL;
e5c832d5 760out:
8b61e74f 761 rcu_read_unlock();
ae66db45 762 return false;
84a2bd39
AV
763out_dput:
764 rcu_read_unlock();
765 dput(dentry);
ae66db45 766 return false;
31e6b01f
NP
767}
768
4ce16ef3 769static inline int d_revalidate(struct dentry *dentry, unsigned int flags)
34286d66 770{
a89f8337
AV
771 if (unlikely(dentry->d_flags & DCACHE_OP_REVALIDATE))
772 return dentry->d_op->d_revalidate(dentry, flags);
773 else
774 return 1;
34286d66
NP
775}
776
9f1fafee
AV
777/**
778 * complete_walk - successful completion of path walk
779 * @nd: pointer nameidata
39159de2 780 *
9f1fafee
AV
781 * If we had been in RCU mode, drop out of it and legitimize nd->path.
782 * Revalidate the final result, unless we'd already done that during
783 * the path walk or the filesystem doesn't ask for it. Return 0 on
784 * success, -error on failure. In case of failure caller does not
785 * need to drop nd->path.
39159de2 786 */
9f1fafee 787static int complete_walk(struct nameidata *nd)
39159de2 788{
16c2cd71 789 struct dentry *dentry = nd->path.dentry;
39159de2 790 int status;
39159de2 791
9f1fafee 792 if (nd->flags & LOOKUP_RCU) {
adb21d2b
AS
793 /*
794 * We don't want to zero nd->root for scoped-lookups or
795 * externally-managed nd->root.
796 */
797 if (!(nd->flags & (LOOKUP_ROOT | LOOKUP_IS_SCOPED)))
9f1fafee 798 nd->root.mnt = NULL;
6c6ec2b0 799 nd->flags &= ~LOOKUP_CACHED;
e36cffed 800 if (!try_to_unlazy(nd))
9f1fafee 801 return -ECHILD;
9f1fafee
AV
802 }
803
adb21d2b
AS
804 if (unlikely(nd->flags & LOOKUP_IS_SCOPED)) {
805 /*
806 * While the guarantee of LOOKUP_IS_SCOPED is (roughly) "don't
807 * ever step outside the root during lookup" and should already
808 * be guaranteed by the rest of namei, we want to avoid a namei
809 * BUG resulting in userspace being given a path that was not
810 * scoped within the root at some point during the lookup.
811 *
812 * So, do a final sanity-check to make sure that in the
813 * worst-case scenario (a complete bypass of LOOKUP_IS_SCOPED)
814 * we won't silently return an fd completely outside of the
815 * requested root to userspace.
816 *
817 * Userspace could move the path outside the root after this
818 * check, but as discussed elsewhere this is not a concern (the
819 * resolved file was inside the root at some point).
820 */
821 if (!path_is_under(&nd->path, &nd->root))
822 return -EXDEV;
823 }
824
16c2cd71
AV
825 if (likely(!(nd->flags & LOOKUP_JUMPED)))
826 return 0;
827
ecf3d1f1 828 if (likely(!(dentry->d_flags & DCACHE_OP_WEAK_REVALIDATE)))
39159de2
JL
829 return 0;
830
ecf3d1f1 831 status = dentry->d_op->d_weak_revalidate(dentry, nd->flags);
39159de2
JL
832 if (status > 0)
833 return 0;
834
16c2cd71 835 if (!status)
39159de2 836 status = -ESTALE;
16c2cd71 837
39159de2
JL
838 return status;
839}
840
740a1678 841static int set_root(struct nameidata *nd)
31e6b01f 842{
7bd88377 843 struct fs_struct *fs = current->fs;
c28cc364 844
adb21d2b
AS
845 /*
846 * Jumping to the real root in a scoped-lookup is a BUG in namei, but we
847 * still have to ensure it doesn't happen because it will cause a breakout
848 * from the dirfd.
849 */
850 if (WARN_ON(nd->flags & LOOKUP_IS_SCOPED))
851 return -ENOTRECOVERABLE;
852
9e6697e2
AV
853 if (nd->flags & LOOKUP_RCU) {
854 unsigned seq;
855
856 do {
857 seq = read_seqcount_begin(&fs->seq);
858 nd->root = fs->root;
859 nd->root_seq = __read_seqcount_begin(&nd->root.dentry->d_seq);
860 } while (read_seqcount_retry(&fs->seq, seq));
861 } else {
862 get_fs_root(fs, &nd->root);
84a2bd39 863 nd->flags |= LOOKUP_ROOT_GRABBED;
9e6697e2 864 }
740a1678 865 return 0;
31e6b01f
NP
866}
867
248fb5b9
AV
868static int nd_jump_root(struct nameidata *nd)
869{
adb21d2b
AS
870 if (unlikely(nd->flags & LOOKUP_BENEATH))
871 return -EXDEV;
72ba2929
AS
872 if (unlikely(nd->flags & LOOKUP_NO_XDEV)) {
873 /* Absolute path arguments to path_init() are allowed. */
874 if (nd->path.mnt != NULL && nd->path.mnt != nd->root.mnt)
875 return -EXDEV;
876 }
740a1678
AS
877 if (!nd->root.mnt) {
878 int error = set_root(nd);
879 if (error)
880 return error;
881 }
248fb5b9
AV
882 if (nd->flags & LOOKUP_RCU) {
883 struct dentry *d;
884 nd->path = nd->root;
885 d = nd->path.dentry;
886 nd->inode = d->d_inode;
887 nd->seq = nd->root_seq;
888 if (unlikely(read_seqcount_retry(&d->d_seq, nd->seq)))
889 return -ECHILD;
890 } else {
891 path_put(&nd->path);
892 nd->path = nd->root;
893 path_get(&nd->path);
894 nd->inode = nd->path.dentry->d_inode;
895 }
896 nd->flags |= LOOKUP_JUMPED;
897 return 0;
898}
899
b5fb63c1 900/*
6b255391 901 * Helper to directly jump to a known parsed path from ->get_link,
b5fb63c1
CH
902 * caller must have taken a reference to path beforehand.
903 */
1bc82070 904int nd_jump_link(struct path *path)
b5fb63c1 905{
4b99d499 906 int error = -ELOOP;
6e77137b 907 struct nameidata *nd = current->nameidata;
b5fb63c1 908
4b99d499
AS
909 if (unlikely(nd->flags & LOOKUP_NO_MAGICLINKS))
910 goto err;
911
72ba2929
AS
912 error = -EXDEV;
913 if (unlikely(nd->flags & LOOKUP_NO_XDEV)) {
914 if (nd->path.mnt != path->mnt)
915 goto err;
916 }
adb21d2b
AS
917 /* Not currently safe for scoped-lookups. */
918 if (unlikely(nd->flags & LOOKUP_IS_SCOPED))
919 goto err;
72ba2929 920
4b99d499 921 path_put(&nd->path);
b5fb63c1
CH
922 nd->path = *path;
923 nd->inode = nd->path.dentry->d_inode;
924 nd->flags |= LOOKUP_JUMPED;
1bc82070 925 return 0;
4b99d499
AS
926
927err:
928 path_put(path);
929 return error;
b5fb63c1
CH
930}
931
b9ff4429 932static inline void put_link(struct nameidata *nd)
574197e0 933{
21c3003d 934 struct saved *last = nd->stack + --nd->depth;
fceef393 935 do_delayed_call(&last->done);
6548fae2
AV
936 if (!(nd->flags & LOOKUP_RCU))
937 path_put(&last->link);
574197e0
AV
938}
939
561ec64a
LT
940int sysctl_protected_symlinks __read_mostly = 0;
941int sysctl_protected_hardlinks __read_mostly = 0;
30aba665
SM
942int sysctl_protected_fifos __read_mostly;
943int sysctl_protected_regular __read_mostly;
800179c9
KC
944
945/**
946 * may_follow_link - Check symlink following for unsafe situations
55852635 947 * @nd: nameidata pathwalk data
800179c9
KC
948 *
949 * In the case of the sysctl_protected_symlinks sysctl being enabled,
950 * CAP_DAC_OVERRIDE needs to be specifically ignored if the symlink is
951 * in a sticky world-writable directory. This is to protect privileged
952 * processes from failing races against path names that may change out
953 * from under them by way of other users creating malicious symlinks.
954 * It will permit symlinks to be followed only when outside a sticky
955 * world-writable directory, or when the uid of the symlink and follower
956 * match, or when the directory owner matches the symlink's owner.
957 *
958 * Returns 0 if following the symlink is allowed, -ve on error.
959 */
ad6cc4c3 960static inline int may_follow_link(struct nameidata *nd, const struct inode *inode)
800179c9 961{
800179c9
KC
962 if (!sysctl_protected_symlinks)
963 return 0;
964
965 /* Allowed if owner and follower match. */
81abe27b 966 if (uid_eq(current_cred()->fsuid, inode->i_uid))
800179c9
KC
967 return 0;
968
969 /* Allowed if parent directory not sticky and world-writable. */
0f705953 970 if ((nd->dir_mode & (S_ISVTX|S_IWOTH)) != (S_ISVTX|S_IWOTH))
800179c9
KC
971 return 0;
972
973 /* Allowed if parent directory and link owner match. */
0f705953 974 if (uid_valid(nd->dir_uid) && uid_eq(nd->dir_uid, inode->i_uid))
800179c9
KC
975 return 0;
976
31956502
AV
977 if (nd->flags & LOOKUP_RCU)
978 return -ECHILD;
979
ea841baf 980 audit_inode(nd->name, nd->stack[0].link.dentry, 0);
245d7369 981 audit_log_path_denied(AUDIT_ANOM_LINK, "follow_link");
800179c9
KC
982 return -EACCES;
983}
984
985/**
986 * safe_hardlink_source - Check for safe hardlink conditions
987 * @inode: the source inode to hardlink from
988 *
989 * Return false if at least one of the following conditions:
990 * - inode is not a regular file
991 * - inode is setuid
992 * - inode is setgid and group-exec
993 * - access failure for read and write
994 *
995 * Otherwise returns true.
996 */
997static bool safe_hardlink_source(struct inode *inode)
998{
999 umode_t mode = inode->i_mode;
1000
1001 /* Special files should not get pinned to the filesystem. */
1002 if (!S_ISREG(mode))
1003 return false;
1004
1005 /* Setuid files should not get pinned to the filesystem. */
1006 if (mode & S_ISUID)
1007 return false;
1008
1009 /* Executable setgid files should not get pinned to the filesystem. */
1010 if ((mode & (S_ISGID | S_IXGRP)) == (S_ISGID | S_IXGRP))
1011 return false;
1012
1013 /* Hardlinking to unreadable or unwritable sources is dangerous. */
1014 if (inode_permission(inode, MAY_READ | MAY_WRITE))
1015 return false;
1016
1017 return true;
1018}
1019
1020/**
1021 * may_linkat - Check permissions for creating a hardlink
1022 * @link: the source to hardlink from
1023 *
1024 * Block hardlink when all of:
1025 * - sysctl_protected_hardlinks enabled
1026 * - fsuid does not match inode
1027 * - hardlink source is unsafe (see safe_hardlink_source() above)
f2ca3796 1028 * - not CAP_FOWNER in a namespace with the inode owner uid mapped
800179c9
KC
1029 *
1030 * Returns 0 if successful, -ve on error.
1031 */
812931d6 1032int may_linkat(struct path *link)
800179c9 1033{
593d1ce8
EB
1034 struct inode *inode = link->dentry->d_inode;
1035
1036 /* Inode writeback is not safe when the uid or gid are invalid. */
1037 if (!uid_valid(inode->i_uid) || !gid_valid(inode->i_gid))
1038 return -EOVERFLOW;
800179c9
KC
1039
1040 if (!sysctl_protected_hardlinks)
1041 return 0;
1042
800179c9
KC
1043 /* Source inode owner (or CAP_FOWNER) can hardlink all they like,
1044 * otherwise, it must be a safe source.
1045 */
cc658db4 1046 if (safe_hardlink_source(inode) || inode_owner_or_capable(inode))
800179c9
KC
1047 return 0;
1048
245d7369 1049 audit_log_path_denied(AUDIT_ANOM_LINK, "linkat");
800179c9
KC
1050 return -EPERM;
1051}
1052
30aba665
SM
1053/**
1054 * may_create_in_sticky - Check whether an O_CREAT open in a sticky directory
1055 * should be allowed, or not, on files that already
1056 * exist.
d0cb5018
AV
1057 * @dir_mode: mode bits of directory
1058 * @dir_uid: owner of directory
30aba665
SM
1059 * @inode: the inode of the file to open
1060 *
1061 * Block an O_CREAT open of a FIFO (or a regular file) when:
1062 * - sysctl_protected_fifos (or sysctl_protected_regular) is enabled
1063 * - the file already exists
1064 * - we are in a sticky directory
1065 * - we don't own the file
1066 * - the owner of the directory doesn't own the file
1067 * - the directory is world writable
1068 * If the sysctl_protected_fifos (or sysctl_protected_regular) is set to 2
1069 * the directory doesn't have to be world writable: being group writable will
1070 * be enough.
1071 *
1072 * Returns 0 if the open is allowed, -ve on error.
1073 */
d0cb5018 1074static int may_create_in_sticky(umode_t dir_mode, kuid_t dir_uid,
30aba665
SM
1075 struct inode * const inode)
1076{
1077 if ((!sysctl_protected_fifos && S_ISFIFO(inode->i_mode)) ||
1078 (!sysctl_protected_regular && S_ISREG(inode->i_mode)) ||
d0cb5018
AV
1079 likely(!(dir_mode & S_ISVTX)) ||
1080 uid_eq(inode->i_uid, dir_uid) ||
30aba665
SM
1081 uid_eq(current_fsuid(), inode->i_uid))
1082 return 0;
1083
d0cb5018
AV
1084 if (likely(dir_mode & 0002) ||
1085 (dir_mode & 0020 &&
30aba665
SM
1086 ((sysctl_protected_fifos >= 2 && S_ISFIFO(inode->i_mode)) ||
1087 (sysctl_protected_regular >= 2 && S_ISREG(inode->i_mode))))) {
245d7369
KC
1088 const char *operation = S_ISFIFO(inode->i_mode) ?
1089 "sticky_create_fifo" :
1090 "sticky_create_regular";
1091 audit_log_path_denied(AUDIT_ANOM_CREAT, operation);
30aba665
SM
1092 return -EACCES;
1093 }
1094 return 0;
1095}
1096
f015f126
DH
1097/*
1098 * follow_up - Find the mountpoint of path's vfsmount
1099 *
1100 * Given a path, find the mountpoint of its source file system.
1101 * Replace @path with the path of the mountpoint in the parent mount.
1102 * Up is towards /.
1103 *
1104 * Return 1 if we went up a level and 0 if we were already at the
1105 * root.
1106 */
bab77ebf 1107int follow_up(struct path *path)
1da177e4 1108{
0714a533
AV
1109 struct mount *mnt = real_mount(path->mnt);
1110 struct mount *parent;
1da177e4 1111 struct dentry *mountpoint;
99b7db7b 1112
48a066e7 1113 read_seqlock_excl(&mount_lock);
0714a533 1114 parent = mnt->mnt_parent;
3c0a6163 1115 if (parent == mnt) {
48a066e7 1116 read_sequnlock_excl(&mount_lock);
1da177e4
LT
1117 return 0;
1118 }
0714a533 1119 mntget(&parent->mnt);
a73324da 1120 mountpoint = dget(mnt->mnt_mountpoint);
48a066e7 1121 read_sequnlock_excl(&mount_lock);
bab77ebf
AV
1122 dput(path->dentry);
1123 path->dentry = mountpoint;
1124 mntput(path->mnt);
0714a533 1125 path->mnt = &parent->mnt;
1da177e4
LT
1126 return 1;
1127}
4d359507 1128EXPORT_SYMBOL(follow_up);
1da177e4 1129
7ef482fa
AV
1130static bool choose_mountpoint_rcu(struct mount *m, const struct path *root,
1131 struct path *path, unsigned *seqp)
1132{
1133 while (mnt_has_parent(m)) {
1134 struct dentry *mountpoint = m->mnt_mountpoint;
1135
1136 m = m->mnt_parent;
1137 if (unlikely(root->dentry == mountpoint &&
1138 root->mnt == &m->mnt))
1139 break;
1140 if (mountpoint != m->mnt.mnt_root) {
1141 path->mnt = &m->mnt;
1142 path->dentry = mountpoint;
1143 *seqp = read_seqcount_begin(&mountpoint->d_seq);
1144 return true;
1145 }
1146 }
1147 return false;
1148}
1149
2aa38470
AV
1150static bool choose_mountpoint(struct mount *m, const struct path *root,
1151 struct path *path)
1152{
1153 bool found;
1154
1155 rcu_read_lock();
1156 while (1) {
1157 unsigned seq, mseq = read_seqbegin(&mount_lock);
1158
1159 found = choose_mountpoint_rcu(m, root, path, &seq);
1160 if (unlikely(!found)) {
1161 if (!read_seqretry(&mount_lock, mseq))
1162 break;
1163 } else {
1164 if (likely(__legitimize_path(path, seq, mseq)))
1165 break;
1166 rcu_read_unlock();
1167 path_put(path);
1168 rcu_read_lock();
1169 }
1170 }
1171 rcu_read_unlock();
1172 return found;
1173}
1174
b5c84bf6 1175/*
9875cf80
DH
1176 * Perform an automount
1177 * - return -EISDIR to tell follow_managed() to stop and return the path we
1178 * were called with.
1da177e4 1179 */
1c9f5e06 1180static int follow_automount(struct path *path, int *count, unsigned lookup_flags)
31e6b01f 1181{
25e195aa 1182 struct dentry *dentry = path->dentry;
9875cf80 1183
0ec26fd0
MS
1184 /* We don't want to mount if someone's just doing a stat -
1185 * unless they're stat'ing a directory and appended a '/' to
1186 * the name.
1187 *
1188 * We do, however, want to mount if someone wants to open or
1189 * create a file of any type under the mountpoint, wants to
1190 * traverse through the mountpoint or wants to open the
1191 * mounted directory. Also, autofs may mark negative dentries
1192 * as being automount points. These will need the attentions
1193 * of the daemon to instantiate them before they can be used.
9875cf80 1194 */
1c9f5e06 1195 if (!(lookup_flags & (LOOKUP_PARENT | LOOKUP_DIRECTORY |
5d38f049 1196 LOOKUP_OPEN | LOOKUP_CREATE | LOOKUP_AUTOMOUNT)) &&
25e195aa 1197 dentry->d_inode)
5d38f049 1198 return -EISDIR;
0ec26fd0 1199
1c9f5e06 1200 if (count && (*count)++ >= MAXSYMLINKS)
9875cf80
DH
1201 return -ELOOP;
1202
25e195aa 1203 return finish_automount(dentry->d_op->d_automount(path), path);
463ffb2e
AV
1204}
1205
9875cf80 1206/*
9deed3eb
AV
1207 * mount traversal - out-of-line part. One note on ->d_flags accesses -
1208 * dentries are pinned but not locked here, so negative dentry can go
1209 * positive right under us. Use of smp_load_acquire() provides a barrier
1210 * sufficient for ->d_inode and ->d_flags consistency.
9875cf80 1211 */
9deed3eb
AV
1212static int __traverse_mounts(struct path *path, unsigned flags, bool *jumped,
1213 int *count, unsigned lookup_flags)
1da177e4 1214{
9deed3eb 1215 struct vfsmount *mnt = path->mnt;
9875cf80 1216 bool need_mntput = false;
8aef1884 1217 int ret = 0;
9875cf80 1218
9deed3eb 1219 while (flags & DCACHE_MANAGED_DENTRY) {
cc53ce53
DH
1220 /* Allow the filesystem to manage the transit without i_mutex
1221 * being held. */
d41efb52 1222 if (flags & DCACHE_MANAGE_TRANSIT) {
fb5f51c7 1223 ret = path->dentry->d_op->d_manage(path, false);
508c8772 1224 flags = smp_load_acquire(&path->dentry->d_flags);
cc53ce53 1225 if (ret < 0)
8aef1884 1226 break;
cc53ce53
DH
1227 }
1228
9deed3eb 1229 if (flags & DCACHE_MOUNTED) { // something's mounted on it..
9875cf80 1230 struct vfsmount *mounted = lookup_mnt(path);
9deed3eb 1231 if (mounted) { // ... in our namespace
9875cf80
DH
1232 dput(path->dentry);
1233 if (need_mntput)
1234 mntput(path->mnt);
1235 path->mnt = mounted;
1236 path->dentry = dget(mounted->mnt_root);
9deed3eb
AV
1237 // here we know it's positive
1238 flags = path->dentry->d_flags;
9875cf80
DH
1239 need_mntput = true;
1240 continue;
1241 }
9875cf80
DH
1242 }
1243
9deed3eb
AV
1244 if (!(flags & DCACHE_NEED_AUTOMOUNT))
1245 break;
9875cf80 1246
9deed3eb
AV
1247 // uncovered automount point
1248 ret = follow_automount(path, count, lookup_flags);
1249 flags = smp_load_acquire(&path->dentry->d_flags);
1250 if (ret < 0)
1251 break;
1da177e4 1252 }
8aef1884 1253
9deed3eb
AV
1254 if (ret == -EISDIR)
1255 ret = 0;
1256 // possible if you race with several mount --move
1257 if (need_mntput && path->mnt == mnt)
1258 mntput(path->mnt);
1259 if (!ret && unlikely(d_flags_negative(flags)))
d41efb52 1260 ret = -ENOENT;
9deed3eb 1261 *jumped = need_mntput;
8402752e 1262 return ret;
1da177e4
LT
1263}
1264
9deed3eb
AV
1265static inline int traverse_mounts(struct path *path, bool *jumped,
1266 int *count, unsigned lookup_flags)
1267{
1268 unsigned flags = smp_load_acquire(&path->dentry->d_flags);
1269
1270 /* fastpath */
1271 if (likely(!(flags & DCACHE_MANAGED_DENTRY))) {
1272 *jumped = false;
1273 if (unlikely(d_flags_negative(flags)))
1274 return -ENOENT;
1275 return 0;
1276 }
1277 return __traverse_mounts(path, flags, jumped, count, lookup_flags);
1278}
1279
cc53ce53 1280int follow_down_one(struct path *path)
1da177e4
LT
1281{
1282 struct vfsmount *mounted;
1283
1c755af4 1284 mounted = lookup_mnt(path);
1da177e4 1285 if (mounted) {
9393bd07
AV
1286 dput(path->dentry);
1287 mntput(path->mnt);
1288 path->mnt = mounted;
1289 path->dentry = dget(mounted->mnt_root);
1da177e4
LT
1290 return 1;
1291 }
1292 return 0;
1293}
4d359507 1294EXPORT_SYMBOL(follow_down_one);
1da177e4 1295
9deed3eb
AV
1296/*
1297 * Follow down to the covering mount currently visible to userspace. At each
1298 * point, the filesystem owning that dentry may be queried as to whether the
1299 * caller is permitted to proceed or not.
1300 */
1301int follow_down(struct path *path)
1302{
1303 struct vfsmount *mnt = path->mnt;
1304 bool jumped;
1305 int ret = traverse_mounts(path, &jumped, NULL, 0);
1306
1307 if (path->mnt != mnt)
1308 mntput(mnt);
1309 return ret;
1310}
1311EXPORT_SYMBOL(follow_down);
1312
9875cf80 1313/*
287548e4
AV
1314 * Try to skip to top of mountpoint pile in rcuwalk mode. Fail if
1315 * we meet a managed dentry that would need blocking.
9875cf80
DH
1316 */
1317static bool __follow_mount_rcu(struct nameidata *nd, struct path *path,
254cf582 1318 struct inode **inode, unsigned *seqp)
9875cf80 1319{
ea936aeb
AV
1320 struct dentry *dentry = path->dentry;
1321 unsigned int flags = dentry->d_flags;
1322
1323 if (likely(!(flags & DCACHE_MANAGED_DENTRY)))
1324 return true;
1325
1326 if (unlikely(nd->flags & LOOKUP_NO_XDEV))
1327 return false;
1328
62a7375e 1329 for (;;) {
62a7375e
IK
1330 /*
1331 * Don't forget we might have a non-mountpoint managed dentry
1332 * that wants to block transit.
1333 */
ea936aeb
AV
1334 if (unlikely(flags & DCACHE_MANAGE_TRANSIT)) {
1335 int res = dentry->d_op->d_manage(path, true);
1336 if (res)
1337 return res == -EISDIR;
1338 flags = dentry->d_flags;
b8faf035 1339 }
62a7375e 1340
ea936aeb
AV
1341 if (flags & DCACHE_MOUNTED) {
1342 struct mount *mounted = __lookup_mnt(path->mnt, dentry);
1343 if (mounted) {
1344 path->mnt = &mounted->mnt;
1345 dentry = path->dentry = mounted->mnt.mnt_root;
1346 nd->flags |= LOOKUP_JUMPED;
1347 *seqp = read_seqcount_begin(&dentry->d_seq);
1348 *inode = dentry->d_inode;
1349 /*
1350 * We don't need to re-check ->d_seq after this
1351 * ->d_inode read - there will be an RCU delay
1352 * between mount hash removal and ->mnt_root
1353 * becoming unpinned.
1354 */
1355 flags = dentry->d_flags;
1356 continue;
1357 }
1358 if (read_seqretry(&mount_lock, nd->m_seq))
1359 return false;
1360 }
1361 return !(flags & DCACHE_NEED_AUTOMOUNT);
9875cf80 1362 }
287548e4
AV
1363}
1364
db3c9ade
AV
1365static inline int handle_mounts(struct nameidata *nd, struct dentry *dentry,
1366 struct path *path, struct inode **inode,
1367 unsigned int *seqp)
bd7c4b50 1368{
9deed3eb 1369 bool jumped;
db3c9ade 1370 int ret;
bd7c4b50 1371
db3c9ade
AV
1372 path->mnt = nd->path.mnt;
1373 path->dentry = dentry;
c153007b
AV
1374 if (nd->flags & LOOKUP_RCU) {
1375 unsigned int seq = *seqp;
1376 if (unlikely(!*inode))
1377 return -ENOENT;
1378 if (likely(__follow_mount_rcu(nd, path, inode, seqp)))
9deed3eb 1379 return 0;
ae66db45 1380 if (!try_to_unlazy_next(nd, dentry, seq))
c153007b
AV
1381 return -ECHILD;
1382 // *path might've been clobbered by __follow_mount_rcu()
1383 path->mnt = nd->path.mnt;
1384 path->dentry = dentry;
1385 }
9deed3eb
AV
1386 ret = traverse_mounts(path, &jumped, &nd->total_link_count, nd->flags);
1387 if (jumped) {
1388 if (unlikely(nd->flags & LOOKUP_NO_XDEV))
1389 ret = -EXDEV;
1390 else
1391 nd->flags |= LOOKUP_JUMPED;
1392 }
1393 if (unlikely(ret)) {
1394 dput(path->dentry);
1395 if (path->mnt != nd->path.mnt)
1396 mntput(path->mnt);
1397 } else {
bd7c4b50
AV
1398 *inode = d_backing_inode(path->dentry);
1399 *seqp = 0; /* out of RCU mode, so the value doesn't matter */
1400 }
1401 return ret;
1402}
1403
baa03890 1404/*
f4fdace9
OD
1405 * This looks up the name in dcache and possibly revalidates the found dentry.
1406 * NULL is returned if the dentry does not exist in the cache.
baa03890 1407 */
e3c13928
AV
1408static struct dentry *lookup_dcache(const struct qstr *name,
1409 struct dentry *dir,
6c51e513 1410 unsigned int flags)
baa03890 1411{
a89f8337 1412 struct dentry *dentry = d_lookup(dir, name);
bad61189 1413 if (dentry) {
a89f8337
AV
1414 int error = d_revalidate(dentry, flags);
1415 if (unlikely(error <= 0)) {
1416 if (!error)
1417 d_invalidate(dentry);
1418 dput(dentry);
1419 return ERR_PTR(error);
bad61189
MS
1420 }
1421 }
baa03890
NP
1422 return dentry;
1423}
1424
44396f4b 1425/*
a03ece5f
AV
1426 * Parent directory has inode locked exclusive. This is one
1427 * and only case when ->lookup() gets called on non in-lookup
1428 * dentries - as the matter of fact, this only gets called
1429 * when directory is guaranteed to have no in-lookup children
1430 * at all.
44396f4b 1431 */
e3c13928 1432static struct dentry *__lookup_hash(const struct qstr *name,
72bd866a 1433 struct dentry *base, unsigned int flags)
a3255546 1434{
6c51e513 1435 struct dentry *dentry = lookup_dcache(name, base, flags);
a03ece5f
AV
1436 struct dentry *old;
1437 struct inode *dir = base->d_inode;
a3255546 1438
6c51e513 1439 if (dentry)
bad61189 1440 return dentry;
a3255546 1441
a03ece5f
AV
1442 /* Don't create child dentry for a dead directory. */
1443 if (unlikely(IS_DEADDIR(dir)))
1444 return ERR_PTR(-ENOENT);
1445
6c51e513
AV
1446 dentry = d_alloc(base, name);
1447 if (unlikely(!dentry))
1448 return ERR_PTR(-ENOMEM);
1449
a03ece5f
AV
1450 old = dir->i_op->lookup(dir, dentry, flags);
1451 if (unlikely(old)) {
1452 dput(dentry);
1453 dentry = old;
1454 }
1455 return dentry;
a3255546
AV
1456}
1457
20e34357
AV
1458static struct dentry *lookup_fast(struct nameidata *nd,
1459 struct inode **inode,
1460 unsigned *seqp)
1da177e4 1461{
31e6b01f 1462 struct dentry *dentry, *parent = nd->path.dentry;
5a18fff2 1463 int status = 1;
9875cf80 1464
b04f784e
NP
1465 /*
1466 * Rename seqlock is not required here because in the off chance
5d0f49c1
AV
1467 * of a false negative due to a concurrent rename, the caller is
1468 * going to fall back to non-racy lookup.
b04f784e 1469 */
31e6b01f
NP
1470 if (nd->flags & LOOKUP_RCU) {
1471 unsigned seq;
da53be12 1472 dentry = __d_lookup_rcu(parent, &nd->last, &seq);
5d0f49c1 1473 if (unlikely(!dentry)) {
e36cffed 1474 if (!try_to_unlazy(nd))
20e34357
AV
1475 return ERR_PTR(-ECHILD);
1476 return NULL;
5d0f49c1 1477 }
5a18fff2 1478
12f8ad4b
LT
1479 /*
1480 * This sequence count validates that the inode matches
1481 * the dentry name information from lookup.
1482 */
63afdfc7 1483 *inode = d_backing_inode(dentry);
5d0f49c1 1484 if (unlikely(read_seqcount_retry(&dentry->d_seq, seq)))
20e34357 1485 return ERR_PTR(-ECHILD);
12f8ad4b
LT
1486
1487 /*
1488 * This sequence count validates that the parent had no
1489 * changes while we did the lookup of the dentry above.
1490 *
1491 * The memory barrier in read_seqcount_begin of child is
1492 * enough, we can use __read_seqcount_retry here.
1493 */
5d0f49c1 1494 if (unlikely(__read_seqcount_retry(&parent->d_seq, nd->seq)))
20e34357 1495 return ERR_PTR(-ECHILD);
5a18fff2 1496
254cf582 1497 *seqp = seq;
a89f8337 1498 status = d_revalidate(dentry, nd->flags);
c153007b 1499 if (likely(status > 0))
20e34357 1500 return dentry;
ae66db45 1501 if (!try_to_unlazy_next(nd, dentry, seq))
20e34357 1502 return ERR_PTR(-ECHILD);
26ddb45e 1503 if (status == -ECHILD)
209a7fb2
AV
1504 /* we'd been told to redo it in non-rcu mode */
1505 status = d_revalidate(dentry, nd->flags);
5a18fff2 1506 } else {
e97cdc87 1507 dentry = __d_lookup(parent, &nd->last);
5d0f49c1 1508 if (unlikely(!dentry))
20e34357 1509 return NULL;
a89f8337 1510 status = d_revalidate(dentry, nd->flags);
9875cf80 1511 }
5a18fff2 1512 if (unlikely(status <= 0)) {
e9742b53 1513 if (!status)
5d0f49c1 1514 d_invalidate(dentry);
5542aa2f 1515 dput(dentry);
20e34357 1516 return ERR_PTR(status);
24643087 1517 }
20e34357 1518 return dentry;
697f514d
MS
1519}
1520
1521/* Fast lookup failed, do it the slow way */
88d8331a
AV
1522static struct dentry *__lookup_slow(const struct qstr *name,
1523 struct dentry *dir,
1524 unsigned int flags)
697f514d 1525{
88d8331a 1526 struct dentry *dentry, *old;
1936386e 1527 struct inode *inode = dir->d_inode;
d9171b93 1528 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(wq);
1936386e 1529
1936386e 1530 /* Don't go there if it's already dead */
94bdd655 1531 if (unlikely(IS_DEADDIR(inode)))
88d8331a 1532 return ERR_PTR(-ENOENT);
94bdd655 1533again:
d9171b93 1534 dentry = d_alloc_parallel(dir, name, &wq);
94bdd655 1535 if (IS_ERR(dentry))
88d8331a 1536 return dentry;
94bdd655 1537 if (unlikely(!d_in_lookup(dentry))) {
c64cd6e3
AV
1538 int error = d_revalidate(dentry, flags);
1539 if (unlikely(error <= 0)) {
1540 if (!error) {
1541 d_invalidate(dentry);
949a852e 1542 dput(dentry);
c64cd6e3 1543 goto again;
949a852e 1544 }
c64cd6e3
AV
1545 dput(dentry);
1546 dentry = ERR_PTR(error);
949a852e 1547 }
94bdd655
AV
1548 } else {
1549 old = inode->i_op->lookup(inode, dentry, flags);
1550 d_lookup_done(dentry);
1551 if (unlikely(old)) {
1552 dput(dentry);
1553 dentry = old;
949a852e
AV
1554 }
1555 }
e3c13928 1556 return dentry;
1da177e4
LT
1557}
1558
88d8331a
AV
1559static struct dentry *lookup_slow(const struct qstr *name,
1560 struct dentry *dir,
1561 unsigned int flags)
1562{
1563 struct inode *inode = dir->d_inode;
1564 struct dentry *res;
1565 inode_lock_shared(inode);
1566 res = __lookup_slow(name, dir, flags);
1567 inode_unlock_shared(inode);
1568 return res;
1569}
1570
52094c8a
AV
1571static inline int may_lookup(struct nameidata *nd)
1572{
1573 if (nd->flags & LOOKUP_RCU) {
4ad5abb3 1574 int err = inode_permission(nd->inode, MAY_EXEC|MAY_NOT_BLOCK);
e36cffed 1575 if (err != -ECHILD || !try_to_unlazy(nd))
52094c8a 1576 return err;
52094c8a 1577 }
4ad5abb3 1578 return inode_permission(nd->inode, MAY_EXEC);
52094c8a
AV
1579}
1580
49055906
AV
1581static int reserve_stack(struct nameidata *nd, struct path *link, unsigned seq)
1582{
49055906
AV
1583 if (unlikely(nd->total_link_count++ >= MAXSYMLINKS))
1584 return -ELOOP;
4542576b
AV
1585
1586 if (likely(nd->depth != EMBEDDED_LEVELS))
1587 return 0;
1588 if (likely(nd->stack != nd->internal))
1589 return 0;
60ef60c7 1590 if (likely(nd_alloc_stack(nd)))
49055906 1591 return 0;
60ef60c7
AV
1592
1593 if (nd->flags & LOOKUP_RCU) {
1594 // we need to grab link before we do unlazy. And we can't skip
1595 // unlazy even if we fail to grab the link - cleanup needs it
49055906 1596 bool grabbed_link = legitimize_path(nd, link, seq);
60ef60c7 1597
e36cffed 1598 if (!try_to_unlazy(nd) != 0 || !grabbed_link)
60ef60c7
AV
1599 return -ECHILD;
1600
1601 if (nd_alloc_stack(nd))
1602 return 0;
49055906 1603 }
60ef60c7 1604 return -ENOMEM;
49055906
AV
1605}
1606
b1a81972
AV
1607enum {WALK_TRAILING = 1, WALK_MORE = 2, WALK_NOFOLLOW = 4};
1608
06708adb 1609static const char *pick_link(struct nameidata *nd, struct path *link,
b1a81972 1610 struct inode *inode, unsigned seq, int flags)
d63ff28f 1611{
1cf2665b 1612 struct saved *last;
ad6cc4c3 1613 const char *res;
49055906 1614 int error = reserve_stack(nd, link, seq);
ad6cc4c3 1615
626de996 1616 if (unlikely(error)) {
49055906 1617 if (!(nd->flags & LOOKUP_RCU))
bc40aee0 1618 path_put(link);
49055906 1619 return ERR_PTR(error);
626de996 1620 }
ab104923 1621 last = nd->stack + nd->depth++;
1cf2665b 1622 last->link = *link;
fceef393 1623 clear_delayed_call(&last->done);
0450b2d1 1624 last->seq = seq;
ad6cc4c3 1625
b1a81972 1626 if (flags & WALK_TRAILING) {
ad6cc4c3
AV
1627 error = may_follow_link(nd, inode);
1628 if (unlikely(error))
1629 return ERR_PTR(error);
1630 }
1631
dab741e0
MN
1632 if (unlikely(nd->flags & LOOKUP_NO_SYMLINKS) ||
1633 unlikely(link->mnt->mnt_flags & MNT_NOSYMFOLLOW))
ad6cc4c3
AV
1634 return ERR_PTR(-ELOOP);
1635
1636 if (!(nd->flags & LOOKUP_RCU)) {
1637 touch_atime(&last->link);
1638 cond_resched();
1639 } else if (atime_needs_update(&last->link, inode)) {
e36cffed 1640 if (!try_to_unlazy(nd))
ad6cc4c3
AV
1641 return ERR_PTR(-ECHILD);
1642 touch_atime(&last->link);
1643 }
1644
1645 error = security_inode_follow_link(link->dentry, inode,
1646 nd->flags & LOOKUP_RCU);
1647 if (unlikely(error))
1648 return ERR_PTR(error);
1649
ad6cc4c3
AV
1650 res = READ_ONCE(inode->i_link);
1651 if (!res) {
1652 const char * (*get)(struct dentry *, struct inode *,
1653 struct delayed_call *);
1654 get = inode->i_op->get_link;
1655 if (nd->flags & LOOKUP_RCU) {
1656 res = get(NULL, inode, &last->done);
e36cffed 1657 if (res == ERR_PTR(-ECHILD) && try_to_unlazy(nd))
ad6cc4c3 1658 res = get(link->dentry, inode, &last->done);
ad6cc4c3
AV
1659 } else {
1660 res = get(link->dentry, inode, &last->done);
1661 }
1662 if (!res)
1663 goto all_done;
1664 if (IS_ERR(res))
1665 return res;
1666 }
1667 if (*res == '/') {
1668 error = nd_jump_root(nd);
1669 if (unlikely(error))
1670 return ERR_PTR(error);
1671 while (unlikely(*++res == '/'))
1672 ;
1673 }
1674 if (*res)
1675 return res;
1676all_done: // pure jump
1677 put_link(nd);
1678 return NULL;
d63ff28f
AV
1679}
1680
3ddcd056
LT
1681/*
1682 * Do we need to follow links? We _really_ want to be able
1683 * to do this check without having to look at inode->i_op,
1684 * so we keep a cache of "no, this doesn't need follow_link"
1685 * for the common case.
1686 */
b0417d2c 1687static const char *step_into(struct nameidata *nd, int flags,
cbae4d12 1688 struct dentry *dentry, struct inode *inode, unsigned seq)
3ddcd056 1689{
cbae4d12
AV
1690 struct path path;
1691 int err = handle_mounts(nd, dentry, &path, &inode, &seq);
1692
1693 if (err < 0)
b0417d2c 1694 return ERR_PTR(err);
cbae4d12 1695 if (likely(!d_is_symlink(path.dentry)) ||
8c4efe22 1696 ((flags & WALK_TRAILING) && !(nd->flags & LOOKUP_FOLLOW)) ||
aca2903e 1697 (flags & WALK_NOFOLLOW)) {
8f64fb1c 1698 /* not a symlink or should not follow */
c99687a0
AV
1699 if (!(nd->flags & LOOKUP_RCU)) {
1700 dput(nd->path.dentry);
1701 if (nd->path.mnt != path.mnt)
1702 mntput(nd->path.mnt);
1703 }
1704 nd->path = path;
8f64fb1c
AV
1705 nd->inode = inode;
1706 nd->seq = seq;
b0417d2c 1707 return NULL;
8f64fb1c 1708 }
a7f77542 1709 if (nd->flags & LOOKUP_RCU) {
84f0cd9e 1710 /* make sure that d_is_symlink above matches inode */
cbae4d12 1711 if (read_seqcount_retry(&path.dentry->d_seq, seq))
b0417d2c 1712 return ERR_PTR(-ECHILD);
84f0cd9e
AV
1713 } else {
1714 if (path.mnt == nd->path.mnt)
1715 mntget(path.mnt);
a7f77542 1716 }
b1a81972 1717 return pick_link(nd, &path, inode, seq, flags);
3ddcd056
LT
1718}
1719
c2df1968
AV
1720static struct dentry *follow_dotdot_rcu(struct nameidata *nd,
1721 struct inode **inodep,
1722 unsigned *seqp)
957dd41d 1723{
12487f30 1724 struct dentry *parent, *old;
957dd41d 1725
12487f30
AV
1726 if (path_equal(&nd->path, &nd->root))
1727 goto in_root;
1728 if (unlikely(nd->path.dentry == nd->path.mnt->mnt_root)) {
7ef482fa 1729 struct path path;
efe772d6 1730 unsigned seq;
7ef482fa
AV
1731 if (!choose_mountpoint_rcu(real_mount(nd->path.mnt),
1732 &nd->root, &path, &seq))
1733 goto in_root;
efe772d6
AV
1734 if (unlikely(nd->flags & LOOKUP_NO_XDEV))
1735 return ERR_PTR(-ECHILD);
1736 nd->path = path;
1737 nd->inode = path.dentry->d_inode;
1738 nd->seq = seq;
1739 if (unlikely(read_seqretry(&mount_lock, nd->m_seq)))
1740 return ERR_PTR(-ECHILD);
1741 /* we know that mountpoint was pinned */
957dd41d 1742 }
12487f30
AV
1743 old = nd->path.dentry;
1744 parent = old->d_parent;
1745 *inodep = parent->d_inode;
1746 *seqp = read_seqcount_begin(&parent->d_seq);
1747 if (unlikely(read_seqcount_retry(&old->d_seq, nd->seq)))
1748 return ERR_PTR(-ECHILD);
1749 if (unlikely(!path_connected(nd->path.mnt, parent)))
1750 return ERR_PTR(-ECHILD);
1751 return parent;
1752in_root:
efe772d6
AV
1753 if (unlikely(read_seqretry(&mount_lock, nd->m_seq)))
1754 return ERR_PTR(-ECHILD);
c2df1968
AV
1755 if (unlikely(nd->flags & LOOKUP_BENEATH))
1756 return ERR_PTR(-ECHILD);
1757 return NULL;
957dd41d
AV
1758}
1759
c2df1968
AV
1760static struct dentry *follow_dotdot(struct nameidata *nd,
1761 struct inode **inodep,
1762 unsigned *seqp)
957dd41d 1763{
12487f30
AV
1764 struct dentry *parent;
1765
1766 if (path_equal(&nd->path, &nd->root))
1767 goto in_root;
1768 if (unlikely(nd->path.dentry == nd->path.mnt->mnt_root)) {
2aa38470
AV
1769 struct path path;
1770
1771 if (!choose_mountpoint(real_mount(nd->path.mnt),
1772 &nd->root, &path))
1773 goto in_root;
165200d6
AV
1774 path_put(&nd->path);
1775 nd->path = path;
2aa38470 1776 nd->inode = path.dentry->d_inode;
165200d6
AV
1777 if (unlikely(nd->flags & LOOKUP_NO_XDEV))
1778 return ERR_PTR(-EXDEV);
957dd41d 1779 }
12487f30
AV
1780 /* rare case of legitimate dget_parent()... */
1781 parent = dget_parent(nd->path.dentry);
1782 if (unlikely(!path_connected(nd->path.mnt, parent))) {
1783 dput(parent);
1784 return ERR_PTR(-ENOENT);
1785 }
1786 *seqp = 0;
1787 *inodep = parent->d_inode;
1788 return parent;
1789
1790in_root:
c2df1968
AV
1791 if (unlikely(nd->flags & LOOKUP_BENEATH))
1792 return ERR_PTR(-EXDEV);
1793 dget(nd->path.dentry);
1794 return NULL;
957dd41d
AV
1795}
1796
7521f22b 1797static const char *handle_dots(struct nameidata *nd, int type)
957dd41d
AV
1798{
1799 if (type == LAST_DOTDOT) {
7521f22b 1800 const char *error = NULL;
c2df1968
AV
1801 struct dentry *parent;
1802 struct inode *inode;
1803 unsigned seq;
957dd41d
AV
1804
1805 if (!nd->root.mnt) {
7521f22b 1806 error = ERR_PTR(set_root(nd));
957dd41d
AV
1807 if (error)
1808 return error;
1809 }
1810 if (nd->flags & LOOKUP_RCU)
c2df1968 1811 parent = follow_dotdot_rcu(nd, &inode, &seq);
957dd41d 1812 else
c2df1968
AV
1813 parent = follow_dotdot(nd, &inode, &seq);
1814 if (IS_ERR(parent))
1815 return ERR_CAST(parent);
1816 if (unlikely(!parent))
1817 error = step_into(nd, WALK_NOFOLLOW,
1818 nd->path.dentry, nd->inode, nd->seq);
1819 else
1820 error = step_into(nd, WALK_NOFOLLOW,
1821 parent, inode, seq);
1822 if (unlikely(error))
957dd41d
AV
1823 return error;
1824
1825 if (unlikely(nd->flags & LOOKUP_IS_SCOPED)) {
1826 /*
1827 * If there was a racing rename or mount along our
1828 * path, then we can't be sure that ".." hasn't jumped
1829 * above nd->root (and so userspace should retry or use
1830 * some fallback).
1831 */
1832 smp_rmb();
1833 if (unlikely(__read_seqcount_retry(&mount_lock.seqcount, nd->m_seq)))
7521f22b 1834 return ERR_PTR(-EAGAIN);
957dd41d 1835 if (unlikely(__read_seqcount_retry(&rename_lock.seqcount, nd->r_seq)))
7521f22b 1836 return ERR_PTR(-EAGAIN);
957dd41d
AV
1837 }
1838 }
7521f22b 1839 return NULL;
957dd41d
AV
1840}
1841
92d27016 1842static const char *walk_component(struct nameidata *nd, int flags)
ce57dfc1 1843{
db3c9ade 1844 struct dentry *dentry;
ce57dfc1 1845 struct inode *inode;
254cf582 1846 unsigned seq;
ce57dfc1
AV
1847 /*
1848 * "." and ".." are special - ".." especially so because it has
1849 * to be able to know about the current root directory and
1850 * parent relationships.
1851 */
4693a547 1852 if (unlikely(nd->last_type != LAST_NORM)) {
1c4ff1a8 1853 if (!(flags & WALK_MORE) && nd->depth)
4693a547 1854 put_link(nd);
7521f22b 1855 return handle_dots(nd, nd->last_type);
4693a547 1856 }
20e34357
AV
1857 dentry = lookup_fast(nd, &inode, &seq);
1858 if (IS_ERR(dentry))
92d27016 1859 return ERR_CAST(dentry);
20e34357 1860 if (unlikely(!dentry)) {
db3c9ade
AV
1861 dentry = lookup_slow(&nd->last, nd->path.dentry, nd->flags);
1862 if (IS_ERR(dentry))
92d27016 1863 return ERR_CAST(dentry);
ce57dfc1 1864 }
56676ec3
AV
1865 if (!(flags & WALK_MORE) && nd->depth)
1866 put_link(nd);
b0417d2c 1867 return step_into(nd, flags, dentry, inode, seq);
ce57dfc1
AV
1868}
1869
bfcfaa77
LT
1870/*
1871 * We can do the critical dentry name comparison and hashing
1872 * operations one word at a time, but we are limited to:
1873 *
1874 * - Architectures with fast unaligned word accesses. We could
1875 * do a "get_unaligned()" if this helps and is sufficiently
1876 * fast.
1877 *
bfcfaa77
LT
1878 * - non-CONFIG_DEBUG_PAGEALLOC configurations (so that we
1879 * do not trap on the (extremely unlikely) case of a page
1880 * crossing operation.
1881 *
1882 * - Furthermore, we need an efficient 64-bit compile for the
1883 * 64-bit case in order to generate the "number of bytes in
1884 * the final mask". Again, that could be replaced with a
1885 * efficient population count instruction or similar.
1886 */
1887#ifdef CONFIG_DCACHE_WORD_ACCESS
1888
f68e556e 1889#include <asm/word-at-a-time.h>
bfcfaa77 1890
468a9428 1891#ifdef HASH_MIX
bfcfaa77 1892
468a9428 1893/* Architecture provides HASH_MIX and fold_hash() in <asm/hash.h> */
bfcfaa77 1894
468a9428 1895#elif defined(CONFIG_64BIT)
0fed3ac8 1896/*
2a18da7a
GS
1897 * Register pressure in the mixing function is an issue, particularly
1898 * on 32-bit x86, but almost any function requires one state value and
1899 * one temporary. Instead, use a function designed for two state values
1900 * and no temporaries.
1901 *
1902 * This function cannot create a collision in only two iterations, so
1903 * we have two iterations to achieve avalanche. In those two iterations,
1904 * we have six layers of mixing, which is enough to spread one bit's
1905 * influence out to 2^6 = 64 state bits.
1906 *
1907 * Rotate constants are scored by considering either 64 one-bit input
1908 * deltas or 64*63/2 = 2016 two-bit input deltas, and finding the
1909 * probability of that delta causing a change to each of the 128 output
1910 * bits, using a sample of random initial states.
1911 *
1912 * The Shannon entropy of the computed probabilities is then summed
1913 * to produce a score. Ideally, any input change has a 50% chance of
1914 * toggling any given output bit.
1915 *
1916 * Mixing scores (in bits) for (12,45):
1917 * Input delta: 1-bit 2-bit
1918 * 1 round: 713.3 42542.6
1919 * 2 rounds: 2753.7 140389.8
1920 * 3 rounds: 5954.1 233458.2
1921 * 4 rounds: 7862.6 256672.2
1922 * Perfect: 8192 258048
1923 * (64*128) (64*63/2 * 128)
0fed3ac8 1924 */
2a18da7a
GS
1925#define HASH_MIX(x, y, a) \
1926 ( x ^= (a), \
1927 y ^= x, x = rol64(x,12),\
1928 x += y, y = rol64(y,45),\
1929 y *= 9 )
bfcfaa77 1930
0fed3ac8 1931/*
2a18da7a
GS
1932 * Fold two longs into one 32-bit hash value. This must be fast, but
1933 * latency isn't quite as critical, as there is a fair bit of additional
1934 * work done before the hash value is used.
0fed3ac8 1935 */
2a18da7a 1936static inline unsigned int fold_hash(unsigned long x, unsigned long y)
0fed3ac8 1937{
2a18da7a
GS
1938 y ^= x * GOLDEN_RATIO_64;
1939 y *= GOLDEN_RATIO_64;
1940 return y >> 32;
0fed3ac8
GS
1941}
1942
bfcfaa77
LT
1943#else /* 32-bit case */
1944
2a18da7a
GS
1945/*
1946 * Mixing scores (in bits) for (7,20):
1947 * Input delta: 1-bit 2-bit
1948 * 1 round: 330.3 9201.6
1949 * 2 rounds: 1246.4 25475.4
1950 * 3 rounds: 1907.1 31295.1
1951 * 4 rounds: 2042.3 31718.6
1952 * Perfect: 2048 31744
1953 * (32*64) (32*31/2 * 64)
1954 */
1955#define HASH_MIX(x, y, a) \
1956 ( x ^= (a), \
1957 y ^= x, x = rol32(x, 7),\
1958 x += y, y = rol32(y,20),\
1959 y *= 9 )
bfcfaa77 1960
2a18da7a 1961static inline unsigned int fold_hash(unsigned long x, unsigned long y)
0fed3ac8 1962{
2a18da7a
GS
1963 /* Use arch-optimized multiply if one exists */
1964 return __hash_32(y ^ __hash_32(x));
0fed3ac8
GS
1965}
1966
bfcfaa77
LT
1967#endif
1968
2a18da7a
GS
1969/*
1970 * Return the hash of a string of known length. This is carfully
1971 * designed to match hash_name(), which is the more critical function.
1972 * In particular, we must end by hashing a final word containing 0..7
1973 * payload bytes, to match the way that hash_name() iterates until it
1974 * finds the delimiter after the name.
1975 */
8387ff25 1976unsigned int full_name_hash(const void *salt, const char *name, unsigned int len)
bfcfaa77 1977{
8387ff25 1978 unsigned long a, x = 0, y = (unsigned long)salt;
bfcfaa77
LT
1979
1980 for (;;) {
fcfd2fbf
GS
1981 if (!len)
1982 goto done;
e419b4cc 1983 a = load_unaligned_zeropad(name);
bfcfaa77
LT
1984 if (len < sizeof(unsigned long))
1985 break;
2a18da7a 1986 HASH_MIX(x, y, a);
bfcfaa77
LT
1987 name += sizeof(unsigned long);
1988 len -= sizeof(unsigned long);
bfcfaa77 1989 }
2a18da7a 1990 x ^= a & bytemask_from_count(len);
bfcfaa77 1991done:
2a18da7a 1992 return fold_hash(x, y);
bfcfaa77
LT
1993}
1994EXPORT_SYMBOL(full_name_hash);
1995
fcfd2fbf 1996/* Return the "hash_len" (hash and length) of a null-terminated string */
8387ff25 1997u64 hashlen_string(const void *salt, const char *name)
fcfd2fbf 1998{
8387ff25
LT
1999 unsigned long a = 0, x = 0, y = (unsigned long)salt;
2000 unsigned long adata, mask, len;
fcfd2fbf
GS
2001 const struct word_at_a_time constants = WORD_AT_A_TIME_CONSTANTS;
2002
8387ff25
LT
2003 len = 0;
2004 goto inside;
2005
fcfd2fbf 2006 do {
2a18da7a 2007 HASH_MIX(x, y, a);
fcfd2fbf 2008 len += sizeof(unsigned long);
8387ff25 2009inside:
fcfd2fbf
GS
2010 a = load_unaligned_zeropad(name+len);
2011 } while (!has_zero(a, &adata, &constants));
2012
2013 adata = prep_zero_mask(a, adata, &constants);
2014 mask = create_zero_mask(adata);
2a18da7a 2015 x ^= a & zero_bytemask(mask);
fcfd2fbf 2016
2a18da7a 2017 return hashlen_create(fold_hash(x, y), len + find_zero(mask));
fcfd2fbf
GS
2018}
2019EXPORT_SYMBOL(hashlen_string);
2020
bfcfaa77
LT
2021/*
2022 * Calculate the length and hash of the path component, and
d6bb3e90 2023 * return the "hash_len" as the result.
bfcfaa77 2024 */
8387ff25 2025static inline u64 hash_name(const void *salt, const char *name)
bfcfaa77 2026{
8387ff25
LT
2027 unsigned long a = 0, b, x = 0, y = (unsigned long)salt;
2028 unsigned long adata, bdata, mask, len;
36126f8f 2029 const struct word_at_a_time constants = WORD_AT_A_TIME_CONSTANTS;
bfcfaa77 2030
8387ff25
LT
2031 len = 0;
2032 goto inside;
2033
bfcfaa77 2034 do {
2a18da7a 2035 HASH_MIX(x, y, a);
bfcfaa77 2036 len += sizeof(unsigned long);
8387ff25 2037inside:
e419b4cc 2038 a = load_unaligned_zeropad(name+len);
36126f8f
LT
2039 b = a ^ REPEAT_BYTE('/');
2040 } while (!(has_zero(a, &adata, &constants) | has_zero(b, &bdata, &constants)));
2041
2042 adata = prep_zero_mask(a, adata, &constants);
2043 bdata = prep_zero_mask(b, bdata, &constants);
36126f8f 2044 mask = create_zero_mask(adata | bdata);
2a18da7a 2045 x ^= a & zero_bytemask(mask);
36126f8f 2046
2a18da7a 2047 return hashlen_create(fold_hash(x, y), len + find_zero(mask));
bfcfaa77
LT
2048}
2049
2a18da7a 2050#else /* !CONFIG_DCACHE_WORD_ACCESS: Slow, byte-at-a-time version */
bfcfaa77 2051
fcfd2fbf 2052/* Return the hash of a string of known length */
8387ff25 2053unsigned int full_name_hash(const void *salt, const char *name, unsigned int len)
0145acc2 2054{
8387ff25 2055 unsigned long hash = init_name_hash(salt);
0145acc2 2056 while (len--)
fcfd2fbf 2057 hash = partial_name_hash((unsigned char)*name++, hash);
0145acc2
LT
2058 return end_name_hash(hash);
2059}
ae942ae7 2060EXPORT_SYMBOL(full_name_hash);
0145acc2 2061
fcfd2fbf 2062/* Return the "hash_len" (hash and length) of a null-terminated string */
8387ff25 2063u64 hashlen_string(const void *salt, const char *name)
fcfd2fbf 2064{
8387ff25 2065 unsigned long hash = init_name_hash(salt);
fcfd2fbf
GS
2066 unsigned long len = 0, c;
2067
2068 c = (unsigned char)*name;
e0ab7af9 2069 while (c) {
fcfd2fbf
GS
2070 len++;
2071 hash = partial_name_hash(c, hash);
2072 c = (unsigned char)name[len];
e0ab7af9 2073 }
fcfd2fbf
GS
2074 return hashlen_create(end_name_hash(hash), len);
2075}
f2a031b6 2076EXPORT_SYMBOL(hashlen_string);
fcfd2fbf 2077
200e9ef7
LT
2078/*
2079 * We know there's a real path component here of at least
2080 * one character.
2081 */
8387ff25 2082static inline u64 hash_name(const void *salt, const char *name)
200e9ef7 2083{
8387ff25 2084 unsigned long hash = init_name_hash(salt);
200e9ef7
LT
2085 unsigned long len = 0, c;
2086
2087 c = (unsigned char)*name;
2088 do {
2089 len++;
2090 hash = partial_name_hash(c, hash);
2091 c = (unsigned char)name[len];
2092 } while (c && c != '/');
d6bb3e90 2093 return hashlen_create(end_name_hash(hash), len);
200e9ef7
LT
2094}
2095
bfcfaa77
LT
2096#endif
2097
1da177e4
LT
2098/*
2099 * Name resolution.
ea3834d9
PM
2100 * This is the basic name resolution function, turning a pathname into
2101 * the final dentry. We expect 'base' to be positive and a directory.
1da177e4 2102 *
ea3834d9
PM
2103 * Returns 0 and nd will have valid dentry and mnt on success.
2104 * Returns error and drops reference to input namei data on failure.
1da177e4 2105 */
6de88d72 2106static int link_path_walk(const char *name, struct nameidata *nd)
1da177e4 2107{
d8d4611a 2108 int depth = 0; // depth <= nd->depth
1da177e4 2109 int err;
32cd7468 2110
b4c03536 2111 nd->last_type = LAST_ROOT;
c108837e 2112 nd->flags |= LOOKUP_PARENT;
9b5858e9
AV
2113 if (IS_ERR(name))
2114 return PTR_ERR(name);
1da177e4
LT
2115 while (*name=='/')
2116 name++;
1a97d899
AV
2117 if (!*name) {
2118 nd->dir_mode = 0; // short-circuit the 'hardening' idiocy
9e18f10a 2119 return 0;
1a97d899 2120 }
1da177e4 2121
1da177e4
LT
2122 /* At this point we know we have a real path component. */
2123 for(;;) {
92d27016 2124 const char *link;
d6bb3e90 2125 u64 hash_len;
fe479a58 2126 int type;
1da177e4 2127
52094c8a 2128 err = may_lookup(nd);
2a18da7a 2129 if (err)
3595e234 2130 return err;
1da177e4 2131
8387ff25 2132 hash_len = hash_name(nd->path.dentry, name);
1da177e4 2133
fe479a58 2134 type = LAST_NORM;
d6bb3e90 2135 if (name[0] == '.') switch (hashlen_len(hash_len)) {
fe479a58 2136 case 2:
200e9ef7 2137 if (name[1] == '.') {
fe479a58 2138 type = LAST_DOTDOT;
16c2cd71
AV
2139 nd->flags |= LOOKUP_JUMPED;
2140 }
fe479a58
AV
2141 break;
2142 case 1:
2143 type = LAST_DOT;
2144 }
5a202bcd
AV
2145 if (likely(type == LAST_NORM)) {
2146 struct dentry *parent = nd->path.dentry;
16c2cd71 2147 nd->flags &= ~LOOKUP_JUMPED;
5a202bcd 2148 if (unlikely(parent->d_flags & DCACHE_OP_HASH)) {
a060dc50 2149 struct qstr this = { { .hash_len = hash_len }, .name = name };
da53be12 2150 err = parent->d_op->d_hash(parent, &this);
5a202bcd 2151 if (err < 0)
3595e234 2152 return err;
d6bb3e90
LT
2153 hash_len = this.hash_len;
2154 name = this.name;
5a202bcd
AV
2155 }
2156 }
fe479a58 2157
d6bb3e90
LT
2158 nd->last.hash_len = hash_len;
2159 nd->last.name = name;
5f4a6a69
AV
2160 nd->last_type = type;
2161
d6bb3e90
LT
2162 name += hashlen_len(hash_len);
2163 if (!*name)
bdf6cbf1 2164 goto OK;
200e9ef7
LT
2165 /*
2166 * If it wasn't NUL, we know it was '/'. Skip that
2167 * slash, and continue until no more slashes.
2168 */
2169 do {
d6bb3e90
LT
2170 name++;
2171 } while (unlikely(*name == '/'));
8620c238
AV
2172 if (unlikely(!*name)) {
2173OK:
d8d4611a 2174 /* pathname or trailing symlink, done */
c108837e 2175 if (!depth) {
0f705953
AV
2176 nd->dir_uid = nd->inode->i_uid;
2177 nd->dir_mode = nd->inode->i_mode;
c108837e 2178 nd->flags &= ~LOOKUP_PARENT;
8620c238 2179 return 0;
c108837e 2180 }
8620c238 2181 /* last component of nested symlink */
d8d4611a 2182 name = nd->stack[--depth].name;
8c4efe22 2183 link = walk_component(nd, 0);
1c4ff1a8
AV
2184 } else {
2185 /* not the last component */
8c4efe22 2186 link = walk_component(nd, WALK_MORE);
8620c238 2187 }
92d27016
AV
2188 if (unlikely(link)) {
2189 if (IS_ERR(link))
2190 return PTR_ERR(link);
2191 /* a symlink to follow */
d8d4611a 2192 nd->stack[depth++].name = name;
92d27016
AV
2193 name = link;
2194 continue;
31e6b01f 2195 }
97242f99
AV
2196 if (unlikely(!d_can_lookup(nd->path.dentry))) {
2197 if (nd->flags & LOOKUP_RCU) {
e36cffed 2198 if (!try_to_unlazy(nd))
97242f99
AV
2199 return -ECHILD;
2200 }
3595e234 2201 return -ENOTDIR;
97242f99 2202 }
1da177e4 2203 }
1da177e4
LT
2204}
2205
edc2b1da 2206/* must be paired with terminate_walk() */
c8a53ee5 2207static const char *path_init(struct nameidata *nd, unsigned flags)
31e6b01f 2208{
740a1678 2209 int error;
c8a53ee5 2210 const char *s = nd->name->name;
31e6b01f 2211
6c6ec2b0
JA
2212 /* LOOKUP_CACHED requires RCU, ask caller to retry */
2213 if ((flags & (LOOKUP_RCU | LOOKUP_CACHED)) == LOOKUP_CACHED)
2214 return ERR_PTR(-EAGAIN);
2215
c0eb027e
LT
2216 if (!*s)
2217 flags &= ~LOOKUP_RCU;
edc2b1da
AV
2218 if (flags & LOOKUP_RCU)
2219 rcu_read_lock();
c0eb027e 2220
c108837e 2221 nd->flags = flags | LOOKUP_JUMPED;
31e6b01f 2222 nd->depth = 0;
ab87f9a5
AS
2223
2224 nd->m_seq = __read_seqcount_begin(&mount_lock.seqcount);
2225 nd->r_seq = __read_seqcount_begin(&rename_lock.seqcount);
2226 smp_rmb();
2227
5b6ca027 2228 if (flags & LOOKUP_ROOT) {
b18825a7
DH
2229 struct dentry *root = nd->root.dentry;
2230 struct inode *inode = root->d_inode;
93893862
AV
2231 if (*s && unlikely(!d_can_lookup(root)))
2232 return ERR_PTR(-ENOTDIR);
5b6ca027
AV
2233 nd->path = nd->root;
2234 nd->inode = inode;
2235 if (flags & LOOKUP_RCU) {
ab87f9a5 2236 nd->seq = read_seqcount_begin(&nd->path.dentry->d_seq);
8f47a016 2237 nd->root_seq = nd->seq;
5b6ca027
AV
2238 } else {
2239 path_get(&nd->path);
2240 }
368ee9ba 2241 return s;
5b6ca027
AV
2242 }
2243
31e6b01f 2244 nd->root.mnt = NULL;
248fb5b9
AV
2245 nd->path.mnt = NULL;
2246 nd->path.dentry = NULL;
31e6b01f 2247
8db52c7e
AS
2248 /* Absolute pathname -- fetch the root (LOOKUP_IN_ROOT uses nd->dfd). */
2249 if (*s == '/' && !(flags & LOOKUP_IN_ROOT)) {
740a1678
AS
2250 error = nd_jump_root(nd);
2251 if (unlikely(error))
2252 return ERR_PTR(error);
2253 return s;
8db52c7e
AS
2254 }
2255
2256 /* Relative pathname -- get the starting-point it is relative to. */
2257 if (nd->dfd == AT_FDCWD) {
e41f7d4e
AV
2258 if (flags & LOOKUP_RCU) {
2259 struct fs_struct *fs = current->fs;
2260 unsigned seq;
31e6b01f 2261
e41f7d4e
AV
2262 do {
2263 seq = read_seqcount_begin(&fs->seq);
2264 nd->path = fs->pwd;
ef55d917 2265 nd->inode = nd->path.dentry->d_inode;
e41f7d4e
AV
2266 nd->seq = __read_seqcount_begin(&nd->path.dentry->d_seq);
2267 } while (read_seqcount_retry(&fs->seq, seq));
2268 } else {
2269 get_fs_pwd(current->fs, &nd->path);
ef55d917 2270 nd->inode = nd->path.dentry->d_inode;
e41f7d4e 2271 }
31e6b01f 2272 } else {
582aa64a 2273 /* Caller must check execute permissions on the starting path component */
c8a53ee5 2274 struct fd f = fdget_raw(nd->dfd);
31e6b01f
NP
2275 struct dentry *dentry;
2276
2903ff01 2277 if (!f.file)
368ee9ba 2278 return ERR_PTR(-EBADF);
31e6b01f 2279
2903ff01 2280 dentry = f.file->f_path.dentry;
31e6b01f 2281
edc2b1da
AV
2282 if (*s && unlikely(!d_can_lookup(dentry))) {
2283 fdput(f);
2284 return ERR_PTR(-ENOTDIR);
f52e0c11 2285 }
31e6b01f 2286
2903ff01 2287 nd->path = f.file->f_path;
e41f7d4e 2288 if (flags & LOOKUP_RCU) {
34a26b99
AV
2289 nd->inode = nd->path.dentry->d_inode;
2290 nd->seq = read_seqcount_begin(&nd->path.dentry->d_seq);
e41f7d4e 2291 } else {
2903ff01 2292 path_get(&nd->path);
34a26b99 2293 nd->inode = nd->path.dentry->d_inode;
e41f7d4e 2294 }
34a26b99 2295 fdput(f);
31e6b01f 2296 }
8db52c7e 2297
adb21d2b
AS
2298 /* For scoped-lookups we need to set the root to the dirfd as well. */
2299 if (flags & LOOKUP_IS_SCOPED) {
2300 nd->root = nd->path;
2301 if (flags & LOOKUP_RCU) {
2302 nd->root_seq = nd->seq;
2303 } else {
2304 path_get(&nd->root);
2305 nd->flags |= LOOKUP_ROOT_GRABBED;
2306 }
2307 }
2308 return s;
9b4a9b14
AV
2309}
2310
1ccac622 2311static inline const char *lookup_last(struct nameidata *nd)
bd92d7fe
AV
2312{
2313 if (nd->last_type == LAST_NORM && nd->last.name[nd->last.len])
2314 nd->flags |= LOOKUP_FOLLOW | LOOKUP_DIRECTORY;
2315
c108837e 2316 return walk_component(nd, WALK_TRAILING);
bd92d7fe
AV
2317}
2318
4f757f3c
AV
2319static int handle_lookup_down(struct nameidata *nd)
2320{
c153007b 2321 if (!(nd->flags & LOOKUP_RCU))
db3c9ade 2322 dget(nd->path.dentry);
b0417d2c
AV
2323 return PTR_ERR(step_into(nd, WALK_NOFOLLOW,
2324 nd->path.dentry, nd->inode, nd->seq));
4f757f3c
AV
2325}
2326
9b4a9b14 2327/* Returns 0 and nd will be valid on success; Retuns error, otherwise. */
c8a53ee5 2328static int path_lookupat(struct nameidata *nd, unsigned flags, struct path *path)
9b4a9b14 2329{
c8a53ee5 2330 const char *s = path_init(nd, flags);
bd92d7fe 2331 int err;
31e6b01f 2332
9b5858e9 2333 if (unlikely(flags & LOOKUP_DOWN) && !IS_ERR(s)) {
4f757f3c 2334 err = handle_lookup_down(nd);
5f336e72
AV
2335 if (unlikely(err < 0))
2336 s = ERR_PTR(err);
4f757f3c
AV
2337 }
2338
1ccac622
AV
2339 while (!(err = link_path_walk(s, nd)) &&
2340 (s = lookup_last(nd)) != NULL)
2341 ;
9f1fafee
AV
2342 if (!err)
2343 err = complete_walk(nd);
bd92d7fe 2344
deb106c6
AV
2345 if (!err && nd->flags & LOOKUP_DIRECTORY)
2346 if (!d_can_lookup(nd->path.dentry))
bd23a539 2347 err = -ENOTDIR;
161aff1d
AV
2348 if (!err && unlikely(nd->flags & LOOKUP_MOUNTPOINT)) {
2349 err = handle_lookup_down(nd);
2350 nd->flags &= ~LOOKUP_JUMPED; // no d_weak_revalidate(), please...
2351 }
625b6d10
AV
2352 if (!err) {
2353 *path = nd->path;
2354 nd->path.mnt = NULL;
2355 nd->path.dentry = NULL;
2356 }
2357 terminate_walk(nd);
bd92d7fe 2358 return err;
ee0827cd 2359}
31e6b01f 2360
31d921c7
DH
2361int filename_lookup(int dfd, struct filename *name, unsigned flags,
2362 struct path *path, struct path *root)
ee0827cd 2363{
894bc8c4 2364 int retval;
9883d185 2365 struct nameidata nd;
abc9f5be
AV
2366 if (IS_ERR(name))
2367 return PTR_ERR(name);
9ad1aaa6
AV
2368 if (unlikely(root)) {
2369 nd.root = *root;
2370 flags |= LOOKUP_ROOT;
2371 }
9883d185 2372 set_nameidata(&nd, dfd, name);
c8a53ee5 2373 retval = path_lookupat(&nd, flags | LOOKUP_RCU, path);
ee0827cd 2374 if (unlikely(retval == -ECHILD))
c8a53ee5 2375 retval = path_lookupat(&nd, flags, path);
ee0827cd 2376 if (unlikely(retval == -ESTALE))
c8a53ee5 2377 retval = path_lookupat(&nd, flags | LOOKUP_REVAL, path);
31e6b01f 2378
f78570dd 2379 if (likely(!retval))
161aff1d
AV
2380 audit_inode(name, path->dentry,
2381 flags & LOOKUP_MOUNTPOINT ? AUDIT_INODE_NOEVAL : 0);
9883d185 2382 restore_nameidata();
e4bd1c1a 2383 putname(name);
170aa3d0 2384 return retval;
1da177e4
LT
2385}
2386
8bcb77fa 2387/* Returns 0 and nd will be valid on success; Retuns error, otherwise. */
c8a53ee5 2388static int path_parentat(struct nameidata *nd, unsigned flags,
391172c4 2389 struct path *parent)
8bcb77fa 2390{
c8a53ee5 2391 const char *s = path_init(nd, flags);
9b5858e9 2392 int err = link_path_walk(s, nd);
8bcb77fa
AV
2393 if (!err)
2394 err = complete_walk(nd);
391172c4
AV
2395 if (!err) {
2396 *parent = nd->path;
2397 nd->path.mnt = NULL;
2398 nd->path.dentry = NULL;
2399 }
2400 terminate_walk(nd);
8bcb77fa
AV
2401 return err;
2402}
2403
5c31b6ce 2404static struct filename *filename_parentat(int dfd, struct filename *name,
391172c4
AV
2405 unsigned int flags, struct path *parent,
2406 struct qstr *last, int *type)
8bcb77fa
AV
2407{
2408 int retval;
9883d185 2409 struct nameidata nd;
8bcb77fa 2410
5c31b6ce
AV
2411 if (IS_ERR(name))
2412 return name;
9883d185 2413 set_nameidata(&nd, dfd, name);
c8a53ee5 2414 retval = path_parentat(&nd, flags | LOOKUP_RCU, parent);
8bcb77fa 2415 if (unlikely(retval == -ECHILD))
c8a53ee5 2416 retval = path_parentat(&nd, flags, parent);
8bcb77fa 2417 if (unlikely(retval == -ESTALE))
c8a53ee5 2418 retval = path_parentat(&nd, flags | LOOKUP_REVAL, parent);
391172c4
AV
2419 if (likely(!retval)) {
2420 *last = nd.last;
2421 *type = nd.last_type;
c9b07eab 2422 audit_inode(name, parent->dentry, AUDIT_INODE_PARENT);
5c31b6ce
AV
2423 } else {
2424 putname(name);
2425 name = ERR_PTR(retval);
391172c4 2426 }
9883d185 2427 restore_nameidata();
5c31b6ce 2428 return name;
8bcb77fa
AV
2429}
2430
79714f72
AV
2431/* does lookup, returns the object with parent locked */
2432struct dentry *kern_path_locked(const char *name, struct path *path)
5590ff0d 2433{
5c31b6ce
AV
2434 struct filename *filename;
2435 struct dentry *d;
391172c4
AV
2436 struct qstr last;
2437 int type;
51689104 2438
5c31b6ce
AV
2439 filename = filename_parentat(AT_FDCWD, getname_kernel(name), 0, path,
2440 &last, &type);
51689104
PM
2441 if (IS_ERR(filename))
2442 return ERR_CAST(filename);
5c31b6ce 2443 if (unlikely(type != LAST_NORM)) {
391172c4 2444 path_put(path);
5c31b6ce
AV
2445 putname(filename);
2446 return ERR_PTR(-EINVAL);
79714f72 2447 }
5955102c 2448 inode_lock_nested(path->dentry->d_inode, I_MUTEX_PARENT);
391172c4 2449 d = __lookup_hash(&last, path->dentry, 0);
79714f72 2450 if (IS_ERR(d)) {
5955102c 2451 inode_unlock(path->dentry->d_inode);
391172c4 2452 path_put(path);
79714f72 2453 }
51689104 2454 putname(filename);
79714f72 2455 return d;
5590ff0d
UD
2456}
2457
d1811465
AV
2458int kern_path(const char *name, unsigned int flags, struct path *path)
2459{
abc9f5be
AV
2460 return filename_lookup(AT_FDCWD, getname_kernel(name),
2461 flags, path, NULL);
d1811465 2462}
4d359507 2463EXPORT_SYMBOL(kern_path);
d1811465 2464
16f18200
JJS
2465/**
2466 * vfs_path_lookup - lookup a file path relative to a dentry-vfsmount pair
2467 * @dentry: pointer to dentry of the base directory
2468 * @mnt: pointer to vfs mount of the base directory
2469 * @name: pointer to file name
2470 * @flags: lookup flags
e0a01249 2471 * @path: pointer to struct path to fill
16f18200
JJS
2472 */
2473int vfs_path_lookup(struct dentry *dentry, struct vfsmount *mnt,
2474 const char *name, unsigned int flags,
e0a01249 2475 struct path *path)
16f18200 2476{
9ad1aaa6 2477 struct path root = {.mnt = mnt, .dentry = dentry};
9ad1aaa6 2478 /* the first argument of filename_lookup() is ignored with root */
abc9f5be
AV
2479 return filename_lookup(AT_FDCWD, getname_kernel(name),
2480 flags , path, &root);
16f18200 2481}
4d359507 2482EXPORT_SYMBOL(vfs_path_lookup);
16f18200 2483
3c95f0dc
AV
2484static int lookup_one_len_common(const char *name, struct dentry *base,
2485 int len, struct qstr *this)
057f6c01 2486{
3c95f0dc
AV
2487 this->name = name;
2488 this->len = len;
2489 this->hash = full_name_hash(base, name, len);
6a96ba54 2490 if (!len)
3c95f0dc 2491 return -EACCES;
6a96ba54 2492
21d8a15a
AV
2493 if (unlikely(name[0] == '.')) {
2494 if (len < 2 || (len == 2 && name[1] == '.'))
3c95f0dc 2495 return -EACCES;
21d8a15a
AV
2496 }
2497
6a96ba54 2498 while (len--) {
3c95f0dc 2499 unsigned int c = *(const unsigned char *)name++;
6a96ba54 2500 if (c == '/' || c == '\0')
3c95f0dc 2501 return -EACCES;
6a96ba54 2502 }
5a202bcd
AV
2503 /*
2504 * See if the low-level filesystem might want
2505 * to use its own hash..
2506 */
2507 if (base->d_flags & DCACHE_OP_HASH) {
3c95f0dc 2508 int err = base->d_op->d_hash(base, this);
5a202bcd 2509 if (err < 0)
3c95f0dc 2510 return err;
5a202bcd 2511 }
eead1911 2512
3c95f0dc
AV
2513 return inode_permission(base->d_inode, MAY_EXEC);
2514}
2515
0da0b7fd
DH
2516/**
2517 * try_lookup_one_len - filesystem helper to lookup single pathname component
2518 * @name: pathname component to lookup
2519 * @base: base directory to lookup from
2520 * @len: maximum length @len should be interpreted to
2521 *
2522 * Look up a dentry by name in the dcache, returning NULL if it does not
2523 * currently exist. The function does not try to create a dentry.
2524 *
2525 * Note that this routine is purely a helper for filesystem usage and should
2526 * not be called by generic code.
2527 *
2528 * The caller must hold base->i_mutex.
2529 */
2530struct dentry *try_lookup_one_len(const char *name, struct dentry *base, int len)
2531{
2532 struct qstr this;
2533 int err;
2534
2535 WARN_ON_ONCE(!inode_is_locked(base->d_inode));
2536
2537 err = lookup_one_len_common(name, base, len, &this);
2538 if (err)
2539 return ERR_PTR(err);
2540
2541 return lookup_dcache(&this, base, 0);
2542}
2543EXPORT_SYMBOL(try_lookup_one_len);
2544
3c95f0dc
AV
2545/**
2546 * lookup_one_len - filesystem helper to lookup single pathname component
2547 * @name: pathname component to lookup
2548 * @base: base directory to lookup from
2549 * @len: maximum length @len should be interpreted to
2550 *
2551 * Note that this routine is purely a helper for filesystem usage and should
2552 * not be called by generic code.
2553 *
2554 * The caller must hold base->i_mutex.
2555 */
2556struct dentry *lookup_one_len(const char *name, struct dentry *base, int len)
2557{
8613a209 2558 struct dentry *dentry;
3c95f0dc
AV
2559 struct qstr this;
2560 int err;
2561
2562 WARN_ON_ONCE(!inode_is_locked(base->d_inode));
2563
2564 err = lookup_one_len_common(name, base, len, &this);
cda309de
MS
2565 if (err)
2566 return ERR_PTR(err);
2567
8613a209
AV
2568 dentry = lookup_dcache(&this, base, 0);
2569 return dentry ? dentry : __lookup_slow(&this, base, 0);
057f6c01 2570}
4d359507 2571EXPORT_SYMBOL(lookup_one_len);
057f6c01 2572
bbddca8e
N
2573/**
2574 * lookup_one_len_unlocked - filesystem helper to lookup single pathname component
2575 * @name: pathname component to lookup
2576 * @base: base directory to lookup from
2577 * @len: maximum length @len should be interpreted to
2578 *
2579 * Note that this routine is purely a helper for filesystem usage and should
2580 * not be called by generic code.
2581 *
2582 * Unlike lookup_one_len, it should be called without the parent
2583 * i_mutex held, and will take the i_mutex itself if necessary.
2584 */
2585struct dentry *lookup_one_len_unlocked(const char *name,
2586 struct dentry *base, int len)
2587{
2588 struct qstr this;
bbddca8e 2589 int err;
20d00ee8 2590 struct dentry *ret;
bbddca8e 2591
3c95f0dc 2592 err = lookup_one_len_common(name, base, len, &this);
bbddca8e
N
2593 if (err)
2594 return ERR_PTR(err);
2595
20d00ee8
LT
2596 ret = lookup_dcache(&this, base, 0);
2597 if (!ret)
2598 ret = lookup_slow(&this, base, 0);
2599 return ret;
bbddca8e
N
2600}
2601EXPORT_SYMBOL(lookup_one_len_unlocked);
2602
6c2d4798
AV
2603/*
2604 * Like lookup_one_len_unlocked(), except that it yields ERR_PTR(-ENOENT)
2605 * on negatives. Returns known positive or ERR_PTR(); that's what
2606 * most of the users want. Note that pinned negative with unlocked parent
2607 * _can_ become positive at any time, so callers of lookup_one_len_unlocked()
2608 * need to be very careful; pinned positives have ->d_inode stable, so
2609 * this one avoids such problems.
2610 */
2611struct dentry *lookup_positive_unlocked(const char *name,
2612 struct dentry *base, int len)
2613{
2614 struct dentry *ret = lookup_one_len_unlocked(name, base, len);
2fa6b1e0 2615 if (!IS_ERR(ret) && d_flags_negative(smp_load_acquire(&ret->d_flags))) {
6c2d4798
AV
2616 dput(ret);
2617 ret = ERR_PTR(-ENOENT);
2618 }
2619 return ret;
2620}
2621EXPORT_SYMBOL(lookup_positive_unlocked);
2622
eedf265a
EB
2623#ifdef CONFIG_UNIX98_PTYS
2624int path_pts(struct path *path)
2625{
2626 /* Find something mounted on "pts" in the same directory as
2627 * the input path.
2628 */
a6a7eb76
AV
2629 struct dentry *parent = dget_parent(path->dentry);
2630 struct dentry *child;
19f6028a 2631 struct qstr this = QSTR_INIT("pts", 3);
eedf265a 2632
a6a7eb76
AV
2633 if (unlikely(!path_connected(path->mnt, parent))) {
2634 dput(parent);
63b27720 2635 return -ENOENT;
a6a7eb76 2636 }
63b27720
AV
2637 dput(path->dentry);
2638 path->dentry = parent;
eedf265a
EB
2639 child = d_hash_and_lookup(parent, &this);
2640 if (!child)
2641 return -ENOENT;
2642
2643 path->dentry = child;
2644 dput(parent);
19f6028a 2645 follow_down(path);
eedf265a
EB
2646 return 0;
2647}
2648#endif
2649
1fa1e7f6
AW
2650int user_path_at_empty(int dfd, const char __user *name, unsigned flags,
2651 struct path *path, int *empty)
1da177e4 2652{
abc9f5be
AV
2653 return filename_lookup(dfd, getname_flags(name, flags, empty),
2654 flags, path, NULL);
1da177e4 2655}
b853a161 2656EXPORT_SYMBOL(user_path_at_empty);
1fa1e7f6 2657
cbdf35bc 2658int __check_sticky(struct inode *dir, struct inode *inode)
1da177e4 2659{
8e96e3b7 2660 kuid_t fsuid = current_fsuid();
da9592ed 2661
8e96e3b7 2662 if (uid_eq(inode->i_uid, fsuid))
1da177e4 2663 return 0;
8e96e3b7 2664 if (uid_eq(dir->i_uid, fsuid))
1da177e4 2665 return 0;
23adbe12 2666 return !capable_wrt_inode_uidgid(inode, CAP_FOWNER);
1da177e4 2667}
cbdf35bc 2668EXPORT_SYMBOL(__check_sticky);
1da177e4
LT
2669
2670/*
2671 * Check whether we can remove a link victim from directory dir, check
2672 * whether the type of victim is right.
2673 * 1. We can't do it if dir is read-only (done in permission())
2674 * 2. We should have write and exec permissions on dir
2675 * 3. We can't remove anything from append-only dir
2676 * 4. We can't do anything with immutable dir (done in permission())
2677 * 5. If the sticky bit on dir is set we should either
2678 * a. be owner of dir, or
2679 * b. be owner of victim, or
2680 * c. have CAP_FOWNER capability
2681 * 6. If the victim is append-only or immutable we can't do antyhing with
2682 * links pointing to it.
0bd23d09
EB
2683 * 7. If the victim has an unknown uid or gid we can't change the inode.
2684 * 8. If we were asked to remove a directory and victim isn't one - ENOTDIR.
2685 * 9. If we were asked to remove a non-directory and victim isn't one - EISDIR.
2686 * 10. We can't remove a root or mountpoint.
2687 * 11. We don't allow removal of NFS sillyrenamed files; it's handled by
1da177e4
LT
2688 * nfs_async_unlink().
2689 */
b18825a7 2690static int may_delete(struct inode *dir, struct dentry *victim, bool isdir)
1da177e4 2691{
63afdfc7 2692 struct inode *inode = d_backing_inode(victim);
1da177e4
LT
2693 int error;
2694
b18825a7 2695 if (d_is_negative(victim))
1da177e4 2696 return -ENOENT;
b18825a7 2697 BUG_ON(!inode);
1da177e4
LT
2698
2699 BUG_ON(victim->d_parent->d_inode != dir);
593d1ce8
EB
2700
2701 /* Inode writeback is not safe when the uid or gid are invalid. */
2702 if (!uid_valid(inode->i_uid) || !gid_valid(inode->i_gid))
2703 return -EOVERFLOW;
2704
4fa6b5ec 2705 audit_inode_child(dir, victim, AUDIT_TYPE_CHILD_DELETE);
1da177e4 2706
f419a2e3 2707 error = inode_permission(dir, MAY_WRITE | MAY_EXEC);
1da177e4
LT
2708 if (error)
2709 return error;
2710 if (IS_APPEND(dir))
2711 return -EPERM;
b18825a7
DH
2712
2713 if (check_sticky(dir, inode) || IS_APPEND(inode) ||
0bd23d09 2714 IS_IMMUTABLE(inode) || IS_SWAPFILE(inode) || HAS_UNMAPPED_ID(inode))
1da177e4
LT
2715 return -EPERM;
2716 if (isdir) {
44b1d530 2717 if (!d_is_dir(victim))
1da177e4
LT
2718 return -ENOTDIR;
2719 if (IS_ROOT(victim))
2720 return -EBUSY;
44b1d530 2721 } else if (d_is_dir(victim))
1da177e4
LT
2722 return -EISDIR;
2723 if (IS_DEADDIR(dir))
2724 return -ENOENT;
2725 if (victim->d_flags & DCACHE_NFSFS_RENAMED)
2726 return -EBUSY;
2727 return 0;
2728}
2729
2730/* Check whether we can create an object with dentry child in directory
2731 * dir.
2732 * 1. We can't do it if child already exists (open has special treatment for
2733 * this case, but since we are inlined it's OK)
2734 * 2. We can't do it if dir is read-only (done in permission())
036d5236
EB
2735 * 3. We can't do it if the fs can't represent the fsuid or fsgid.
2736 * 4. We should have write and exec permissions on dir
2737 * 5. We can't do it if dir is immutable (done in permission())
1da177e4 2738 */
a95164d9 2739static inline int may_create(struct inode *dir, struct dentry *child)
1da177e4 2740{
036d5236 2741 struct user_namespace *s_user_ns;
14e972b4 2742 audit_inode_child(dir, child, AUDIT_TYPE_CHILD_CREATE);
1da177e4
LT
2743 if (child->d_inode)
2744 return -EEXIST;
2745 if (IS_DEADDIR(dir))
2746 return -ENOENT;
036d5236
EB
2747 s_user_ns = dir->i_sb->s_user_ns;
2748 if (!kuid_has_mapping(s_user_ns, current_fsuid()) ||
2749 !kgid_has_mapping(s_user_ns, current_fsgid()))
2750 return -EOVERFLOW;
f419a2e3 2751 return inode_permission(dir, MAY_WRITE | MAY_EXEC);
1da177e4
LT
2752}
2753
1da177e4
LT
2754/*
2755 * p1 and p2 should be directories on the same fs.
2756 */
2757struct dentry *lock_rename(struct dentry *p1, struct dentry *p2)
2758{
2759 struct dentry *p;
2760
2761 if (p1 == p2) {
5955102c 2762 inode_lock_nested(p1->d_inode, I_MUTEX_PARENT);
1da177e4
LT
2763 return NULL;
2764 }
2765
fc64005c 2766 mutex_lock(&p1->d_sb->s_vfs_rename_mutex);
1da177e4 2767
e2761a11
OH
2768 p = d_ancestor(p2, p1);
2769 if (p) {
5955102c
AV
2770 inode_lock_nested(p2->d_inode, I_MUTEX_PARENT);
2771 inode_lock_nested(p1->d_inode, I_MUTEX_CHILD);
e2761a11 2772 return p;
1da177e4
LT
2773 }
2774
e2761a11
OH
2775 p = d_ancestor(p1, p2);
2776 if (p) {
5955102c
AV
2777 inode_lock_nested(p1->d_inode, I_MUTEX_PARENT);
2778 inode_lock_nested(p2->d_inode, I_MUTEX_CHILD);
e2761a11 2779 return p;
1da177e4
LT
2780 }
2781
5955102c
AV
2782 inode_lock_nested(p1->d_inode, I_MUTEX_PARENT);
2783 inode_lock_nested(p2->d_inode, I_MUTEX_PARENT2);
1da177e4
LT
2784 return NULL;
2785}
4d359507 2786EXPORT_SYMBOL(lock_rename);
1da177e4
LT
2787
2788void unlock_rename(struct dentry *p1, struct dentry *p2)
2789{
5955102c 2790 inode_unlock(p1->d_inode);
1da177e4 2791 if (p1 != p2) {
5955102c 2792 inode_unlock(p2->d_inode);
fc64005c 2793 mutex_unlock(&p1->d_sb->s_vfs_rename_mutex);
1da177e4
LT
2794 }
2795}
4d359507 2796EXPORT_SYMBOL(unlock_rename);
1da177e4 2797
4acdaf27 2798int vfs_create(struct inode *dir, struct dentry *dentry, umode_t mode,
312b63fb 2799 bool want_excl)
1da177e4 2800{
a95164d9 2801 int error = may_create(dir, dentry);
1da177e4
LT
2802 if (error)
2803 return error;
2804
acfa4380 2805 if (!dir->i_op->create)
1da177e4
LT
2806 return -EACCES; /* shouldn't it be ENOSYS? */
2807 mode &= S_IALLUGO;
2808 mode |= S_IFREG;
2809 error = security_inode_create(dir, dentry, mode);
2810 if (error)
2811 return error;
312b63fb 2812 error = dir->i_op->create(dir, dentry, mode, want_excl);
a74574aa 2813 if (!error)
f38aa942 2814 fsnotify_create(dir, dentry);
1da177e4
LT
2815 return error;
2816}
4d359507 2817EXPORT_SYMBOL(vfs_create);
1da177e4 2818
8e6c848e
AV
2819int vfs_mkobj(struct dentry *dentry, umode_t mode,
2820 int (*f)(struct dentry *, umode_t, void *),
2821 void *arg)
2822{
2823 struct inode *dir = dentry->d_parent->d_inode;
2824 int error = may_create(dir, dentry);
2825 if (error)
2826 return error;
2827
2828 mode &= S_IALLUGO;
2829 mode |= S_IFREG;
2830 error = security_inode_create(dir, dentry, mode);
2831 if (error)
2832 return error;
2833 error = f(dentry, mode, arg);
2834 if (!error)
2835 fsnotify_create(dir, dentry);
2836 return error;
2837}
2838EXPORT_SYMBOL(vfs_mkobj);
2839
a2982cc9
EB
2840bool may_open_dev(const struct path *path)
2841{
2842 return !(path->mnt->mnt_flags & MNT_NODEV) &&
2843 !(path->mnt->mnt_sb->s_iflags & SB_I_NODEV);
2844}
2845
f0bb5aaf 2846static int may_open(const struct path *path, int acc_mode, int flag)
1da177e4 2847{
3fb64190 2848 struct dentry *dentry = path->dentry;
1da177e4
LT
2849 struct inode *inode = dentry->d_inode;
2850 int error;
2851
2852 if (!inode)
2853 return -ENOENT;
2854
c8fe8f30
CH
2855 switch (inode->i_mode & S_IFMT) {
2856 case S_IFLNK:
1da177e4 2857 return -ELOOP;
c8fe8f30 2858 case S_IFDIR:
fc4177be 2859 if (acc_mode & MAY_WRITE)
c8fe8f30 2860 return -EISDIR;
fc4177be
KC
2861 if (acc_mode & MAY_EXEC)
2862 return -EACCES;
c8fe8f30
CH
2863 break;
2864 case S_IFBLK:
2865 case S_IFCHR:
a2982cc9 2866 if (!may_open_dev(path))
1da177e4 2867 return -EACCES;
633fb6ac 2868 fallthrough;
c8fe8f30
CH
2869 case S_IFIFO:
2870 case S_IFSOCK:
633fb6ac
KC
2871 if (acc_mode & MAY_EXEC)
2872 return -EACCES;
1da177e4 2873 flag &= ~O_TRUNC;
c8fe8f30 2874 break;
0fd338b2
KC
2875 case S_IFREG:
2876 if ((acc_mode & MAY_EXEC) && path_noexec(path))
2877 return -EACCES;
2878 break;
4a3fd211 2879 }
b41572e9 2880
62fb4a15 2881 error = inode_permission(inode, MAY_OPEN | acc_mode);
b41572e9
DH
2882 if (error)
2883 return error;
6146f0d5 2884
1da177e4
LT
2885 /*
2886 * An append-only file must be opened in append mode for writing.
2887 */
2888 if (IS_APPEND(inode)) {
8737c930 2889 if ((flag & O_ACCMODE) != O_RDONLY && !(flag & O_APPEND))
7715b521 2890 return -EPERM;
1da177e4 2891 if (flag & O_TRUNC)
7715b521 2892 return -EPERM;
1da177e4
LT
2893 }
2894
2895 /* O_NOATIME can only be set by the owner or superuser */
2e149670 2896 if (flag & O_NOATIME && !inode_owner_or_capable(inode))
7715b521 2897 return -EPERM;
1da177e4 2898
f3c7691e 2899 return 0;
7715b521 2900}
1da177e4 2901
e1181ee6 2902static int handle_truncate(struct file *filp)
7715b521 2903{
f0bb5aaf 2904 const struct path *path = &filp->f_path;
7715b521
AV
2905 struct inode *inode = path->dentry->d_inode;
2906 int error = get_write_access(inode);
2907 if (error)
2908 return error;
2909 /*
2910 * Refuse to truncate files with mandatory locks held on them.
2911 */
d7a06983 2912 error = locks_verify_locked(filp);
7715b521 2913 if (!error)
ea0d3ab2 2914 error = security_path_truncate(path);
7715b521
AV
2915 if (!error) {
2916 error = do_truncate(path->dentry, 0,
2917 ATTR_MTIME|ATTR_CTIME|ATTR_OPEN,
e1181ee6 2918 filp);
7715b521
AV
2919 }
2920 put_write_access(inode);
acd0c935 2921 return error;
1da177e4
LT
2922}
2923
d57999e1
DH
2924static inline int open_to_namei_flags(int flag)
2925{
8a5e929d
AV
2926 if ((flag & O_ACCMODE) == 3)
2927 flag--;
d57999e1
DH
2928 return flag;
2929}
2930
d3607752 2931static int may_o_create(const struct path *dir, struct dentry *dentry, umode_t mode)
d18e9008 2932{
1328c727 2933 struct user_namespace *s_user_ns;
d18e9008
MS
2934 int error = security_path_mknod(dir, dentry, mode, 0);
2935 if (error)
2936 return error;
2937
1328c727
SF
2938 s_user_ns = dir->dentry->d_sb->s_user_ns;
2939 if (!kuid_has_mapping(s_user_ns, current_fsuid()) ||
2940 !kgid_has_mapping(s_user_ns, current_fsgid()))
2941 return -EOVERFLOW;
2942
d18e9008
MS
2943 error = inode_permission(dir->dentry->d_inode, MAY_WRITE | MAY_EXEC);
2944 if (error)
2945 return error;
2946
2947 return security_inode_create(dir->dentry->d_inode, dentry, mode);
2948}
2949
1acf0af9
DH
2950/*
2951 * Attempt to atomically look up, create and open a file from a negative
2952 * dentry.
2953 *
2954 * Returns 0 if successful. The file will have been created and attached to
2955 * @file by the filesystem calling finish_open().
2956 *
00a07c15
AV
2957 * If the file was looked up only or didn't need creating, FMODE_OPENED won't
2958 * be set. The caller will need to perform the open themselves. @path will
2959 * have been updated to point to the new dentry. This may be negative.
1acf0af9
DH
2960 *
2961 * Returns an error code otherwise.
2962 */
239eb983
AV
2963static struct dentry *atomic_open(struct nameidata *nd, struct dentry *dentry,
2964 struct file *file,
239eb983 2965 int open_flag, umode_t mode)
d18e9008 2966{
384f26e2 2967 struct dentry *const DENTRY_NOT_SET = (void *) -1UL;
d18e9008 2968 struct inode *dir = nd->path.dentry->d_inode;
d18e9008 2969 int error;
d18e9008 2970
d18e9008
MS
2971 if (nd->flags & LOOKUP_DIRECTORY)
2972 open_flag |= O_DIRECTORY;
2973
30d90494
AV
2974 file->f_path.dentry = DENTRY_NOT_SET;
2975 file->f_path.mnt = nd->path.mnt;
0fb1ea09 2976 error = dir->i_op->atomic_open(dir, dentry, file,
44907d79 2977 open_to_namei_flags(open_flag), mode);
6fbd0714 2978 d_lookup_done(dentry);
384f26e2 2979 if (!error) {
64e1ac4d 2980 if (file->f_mode & FMODE_OPENED) {
6fb968cd
AV
2981 if (unlikely(dentry != file->f_path.dentry)) {
2982 dput(dentry);
2983 dentry = dget(file->f_path.dentry);
2984 }
64e1ac4d 2985 } else if (WARN_ON(file->f_path.dentry == DENTRY_NOT_SET)) {
2675a4eb 2986 error = -EIO;
03da633a 2987 } else {
384f26e2
AV
2988 if (file->f_path.dentry) {
2989 dput(dentry);
2990 dentry = file->f_path.dentry;
03da633a 2991 }
239eb983 2992 if (unlikely(d_is_negative(dentry)))
a01e718f 2993 error = -ENOENT;
62b2ce96 2994 }
d18e9008 2995 }
239eb983
AV
2996 if (error) {
2997 dput(dentry);
2998 dentry = ERR_PTR(error);
2999 }
3000 return dentry;
d18e9008
MS
3001}
3002
d58ffd35 3003/*
1acf0af9 3004 * Look up and maybe create and open the last component.
d58ffd35 3005 *
00a07c15 3006 * Must be called with parent locked (exclusive in O_CREAT case).
1acf0af9 3007 *
00a07c15
AV
3008 * Returns 0 on success, that is, if
3009 * the file was successfully atomically created (if necessary) and opened, or
3010 * the file was not completely opened at this time, though lookups and
3011 * creations were performed.
3012 * These case are distinguished by presence of FMODE_OPENED on file->f_mode.
3013 * In the latter case dentry returned in @path might be negative if O_CREAT
3014 * hadn't been specified.
1acf0af9 3015 *
00a07c15 3016 * An error code is returned on failure.
d58ffd35 3017 */
da5ebf5a
AV
3018static struct dentry *lookup_open(struct nameidata *nd, struct file *file,
3019 const struct open_flags *op,
3020 bool got_write)
d58ffd35
MS
3021{
3022 struct dentry *dir = nd->path.dentry;
54ef4872 3023 struct inode *dir_inode = dir->d_inode;
1643b43f 3024 int open_flag = op->open_flag;
d58ffd35 3025 struct dentry *dentry;
1643b43f 3026 int error, create_error = 0;
1643b43f 3027 umode_t mode = op->mode;
6fbd0714 3028 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(wq);
d58ffd35 3029
ce8644fc 3030 if (unlikely(IS_DEADDIR(dir_inode)))
da5ebf5a 3031 return ERR_PTR(-ENOENT);
d58ffd35 3032
73a09dd9 3033 file->f_mode &= ~FMODE_CREATED;
6fbd0714
AV
3034 dentry = d_lookup(dir, &nd->last);
3035 for (;;) {
3036 if (!dentry) {
3037 dentry = d_alloc_parallel(dir, &nd->last, &wq);
3038 if (IS_ERR(dentry))
da5ebf5a 3039 return dentry;
6fbd0714
AV
3040 }
3041 if (d_in_lookup(dentry))
3042 break;
d58ffd35 3043
6fbd0714
AV
3044 error = d_revalidate(dentry, nd->flags);
3045 if (likely(error > 0))
3046 break;
3047 if (error)
3048 goto out_dput;
3049 d_invalidate(dentry);
3050 dput(dentry);
3051 dentry = NULL;
3052 }
3053 if (dentry->d_inode) {
6c51e513 3054 /* Cached positive dentry: will open in f_op->open */
da5ebf5a 3055 return dentry;
6c51e513 3056 }
d18e9008 3057
1643b43f
AV
3058 /*
3059 * Checking write permission is tricky, bacuse we don't know if we are
3060 * going to actually need it: O_CREAT opens should work as long as the
3061 * file exists. But checking existence breaks atomicity. The trick is
3062 * to check access and if not granted clear O_CREAT from the flags.
3063 *
3064 * Another problem is returing the "right" error value (e.g. for an
3065 * O_EXCL open we want to return EEXIST not EROFS).
3066 */
99a4a90c
AV
3067 if (unlikely(!got_write))
3068 open_flag &= ~O_TRUNC;
1643b43f 3069 if (open_flag & O_CREAT) {
99a4a90c
AV
3070 if (open_flag & O_EXCL)
3071 open_flag &= ~O_TRUNC;
1643b43f
AV
3072 if (!IS_POSIXACL(dir->d_inode))
3073 mode &= ~current_umask();
99a4a90c 3074 if (likely(got_write))
1643b43f 3075 create_error = may_o_create(&nd->path, dentry, mode);
99a4a90c
AV
3076 else
3077 create_error = -EROFS;
d18e9008 3078 }
99a4a90c
AV
3079 if (create_error)
3080 open_flag &= ~O_CREAT;
6ac08709 3081 if (dir_inode->i_op->atomic_open) {
d489cf9a 3082 dentry = atomic_open(nd, dentry, file, open_flag, mode);
da5ebf5a
AV
3083 if (unlikely(create_error) && dentry == ERR_PTR(-ENOENT))
3084 dentry = ERR_PTR(create_error);
3085 return dentry;
d18e9008 3086 }
54ef4872 3087
6fbd0714 3088 if (d_in_lookup(dentry)) {
12fa5e24
AV
3089 struct dentry *res = dir_inode->i_op->lookup(dir_inode, dentry,
3090 nd->flags);
6fbd0714 3091 d_lookup_done(dentry);
12fa5e24
AV
3092 if (unlikely(res)) {
3093 if (IS_ERR(res)) {
3094 error = PTR_ERR(res);
3095 goto out_dput;
3096 }
3097 dput(dentry);
3098 dentry = res;
3099 }
54ef4872
MS
3100 }
3101
d58ffd35 3102 /* Negative dentry, just create the file */
1643b43f 3103 if (!dentry->d_inode && (open_flag & O_CREAT)) {
73a09dd9 3104 file->f_mode |= FMODE_CREATED;
ce8644fc 3105 audit_inode_child(dir_inode, dentry, AUDIT_TYPE_CHILD_CREATE);
ce8644fc
AV
3106 if (!dir_inode->i_op->create) {
3107 error = -EACCES;
d58ffd35 3108 goto out_dput;
ce8644fc
AV
3109 }
3110 error = dir_inode->i_op->create(dir_inode, dentry, mode,
1643b43f 3111 open_flag & O_EXCL);
d58ffd35
MS
3112 if (error)
3113 goto out_dput;
3114 }
1643b43f
AV
3115 if (unlikely(create_error) && !dentry->d_inode) {
3116 error = create_error;
3117 goto out_dput;
d58ffd35 3118 }
da5ebf5a 3119 return dentry;
d58ffd35
MS
3120
3121out_dput:
3122 dput(dentry);
da5ebf5a 3123 return ERR_PTR(error);
d58ffd35
MS
3124}
3125
c981a482 3126static const char *open_last_lookups(struct nameidata *nd,
3ec2eef1 3127 struct file *file, const struct open_flags *op)
fb1cc555 3128{
a1e28038 3129 struct dentry *dir = nd->path.dentry;
ca344a89 3130 int open_flag = op->open_flag;
64894cf8 3131 bool got_write = false;
254cf582 3132 unsigned seq;
a1eb3315 3133 struct inode *inode;
da5ebf5a 3134 struct dentry *dentry;
b0417d2c 3135 const char *res;
1f36f774 3136
c3e380b0
AV
3137 nd->flags |= op->intent;
3138
bc77daa7 3139 if (nd->last_type != LAST_NORM) {
56676ec3
AV
3140 if (nd->depth)
3141 put_link(nd);
ff326a32 3142 return handle_dots(nd, nd->last_type);
1f36f774 3143 }
67ee3ad2 3144
ca344a89 3145 if (!(open_flag & O_CREAT)) {
fe2d35ff
AV
3146 if (nd->last.name[nd->last.len])
3147 nd->flags |= LOOKUP_FOLLOW | LOOKUP_DIRECTORY;
3148 /* we _can_ be in RCU mode here */
20e34357
AV
3149 dentry = lookup_fast(nd, &inode, &seq);
3150 if (IS_ERR(dentry))
1ccac622 3151 return ERR_CAST(dentry);
20e34357 3152 if (likely(dentry))
71574865
MS
3153 goto finish_lookup;
3154
6583fe22 3155 BUG_ON(nd->flags & LOOKUP_RCU);
b6183df7
MS
3156 } else {
3157 /* create side of things */
72287417 3158 if (nd->flags & LOOKUP_RCU) {
e36cffed
JA
3159 if (!try_to_unlazy(nd))
3160 return ERR_PTR(-ECHILD);
72287417 3161 }
c9b07eab 3162 audit_inode(nd->name, dir, AUDIT_INODE_PARENT);
b6183df7 3163 /* trailing slashes? */
deb106c6 3164 if (unlikely(nd->last.name[nd->last.len]))
1ccac622 3165 return ERR_PTR(-EISDIR);
b6183df7 3166 }
a2c36b45 3167
9cf843e3 3168 if (open_flag & (O_CREAT | O_TRUNC | O_WRONLY | O_RDWR)) {
e36cffed 3169 got_write = !mnt_want_write(nd->path.mnt);
64894cf8
AV
3170 /*
3171 * do _not_ fail yet - we might not need that or fail with
3172 * a different error; let lookup_open() decide; we'll be
3173 * dropping this one anyway.
3174 */
3175 }
9cf843e3
AV
3176 if (open_flag & O_CREAT)
3177 inode_lock(dir->d_inode);
3178 else
3179 inode_lock_shared(dir->d_inode);
da5ebf5a 3180 dentry = lookup_open(nd, file, op, got_write);
f7bb959d
AV
3181 if (!IS_ERR(dentry) && (file->f_mode & FMODE_CREATED))
3182 fsnotify_create(dir->d_inode, dentry);
9cf843e3
AV
3183 if (open_flag & O_CREAT)
3184 inode_unlock(dir->d_inode);
3185 else
3186 inode_unlock_shared(dir->d_inode);
a1e28038 3187
c981a482 3188 if (got_write)
59e96e65 3189 mnt_drop_write(nd->path.mnt);
d18e9008 3190
59e96e65
AV
3191 if (IS_ERR(dentry))
3192 return ERR_CAST(dentry);
3193
973d4b73 3194 if (file->f_mode & (FMODE_OPENED | FMODE_CREATED)) {
e73cabff
AV
3195 dput(nd->path.dentry);
3196 nd->path.dentry = dentry;
c981a482 3197 return NULL;
fb1cc555
AV
3198 }
3199
20e34357 3200finish_lookup:
56676ec3
AV
3201 if (nd->depth)
3202 put_link(nd);
8c4efe22 3203 res = step_into(nd, WALK_TRAILING, dentry, inode, seq);
ff326a32 3204 if (unlikely(res))
b0417d2c 3205 nd->flags &= ~(LOOKUP_OPEN|LOOKUP_CREATE|LOOKUP_EXCL);
ff326a32 3206 return res;
c981a482
AV
3207}
3208
3209/*
3210 * Handle the last step of open()
3211 */
c5971b8c 3212static int do_open(struct nameidata *nd,
c981a482
AV
3213 struct file *file, const struct open_flags *op)
3214{
c981a482
AV
3215 int open_flag = op->open_flag;
3216 bool do_truncate;
3217 int acc_mode;
c981a482
AV
3218 int error;
3219
ff326a32
AV
3220 if (!(file->f_mode & (FMODE_OPENED | FMODE_CREATED))) {
3221 error = complete_walk(nd);
3222 if (error)
3223 return error;
3224 }
973d4b73
AV
3225 if (!(file->f_mode & FMODE_CREATED))
3226 audit_inode(nd->name, nd->path.dentry, 0);
30aba665 3227 if (open_flag & O_CREAT) {
b94e0b32
AV
3228 if ((open_flag & O_EXCL) && !(file->f_mode & FMODE_CREATED))
3229 return -EEXIST;
30aba665 3230 if (d_is_dir(nd->path.dentry))
c5971b8c 3231 return -EISDIR;
0f705953 3232 error = may_create_in_sticky(nd->dir_mode, nd->dir_uid,
30aba665
SM
3233 d_backing_inode(nd->path.dentry));
3234 if (unlikely(error))
c5971b8c 3235 return error;
30aba665 3236 }
44b1d530 3237 if ((nd->flags & LOOKUP_DIRECTORY) && !d_can_lookup(nd->path.dentry))
c5971b8c 3238 return -ENOTDIR;
6c0d46c4 3239
8795e7d4
AV
3240 do_truncate = false;
3241 acc_mode = op->acc_mode;
5a2d3edd
AV
3242 if (file->f_mode & FMODE_CREATED) {
3243 /* Don't check for write permission, don't truncate */
3244 open_flag &= ~O_TRUNC;
5a2d3edd 3245 acc_mode = 0;
8795e7d4 3246 } else if (d_is_reg(nd->path.dentry) && open_flag & O_TRUNC) {
0f9d1a10
AV
3247 error = mnt_want_write(nd->path.mnt);
3248 if (error)
c5971b8c 3249 return error;
8795e7d4 3250 do_truncate = true;
0f9d1a10 3251 }
6ac08709 3252 error = may_open(&nd->path, acc_mode, open_flag);
8795e7d4 3253 if (!error && !(file->f_mode & FMODE_OPENED))
3ad5615a 3254 error = vfs_open(&nd->path, file);
8795e7d4
AV
3255 if (!error)
3256 error = ima_file_check(file, op->acc_mode);
3257 if (!error && do_truncate)
2675a4eb 3258 error = handle_truncate(file);
c80567c8
AV
3259 if (unlikely(error > 0)) {
3260 WARN_ON(1);
3261 error = -EINVAL;
3262 }
8795e7d4 3263 if (do_truncate)
0f9d1a10 3264 mnt_drop_write(nd->path.mnt);
c5971b8c 3265 return error;
fb1cc555
AV
3266}
3267
af7bd4dc
AG
3268struct dentry *vfs_tmpfile(struct dentry *dentry, umode_t mode, int open_flag)
3269{
af7bd4dc
AG
3270 struct dentry *child = NULL;
3271 struct inode *dir = dentry->d_inode;
3272 struct inode *inode;
3273 int error;
3274
3275 /* we want directory to be writable */
3276 error = inode_permission(dir, MAY_WRITE | MAY_EXEC);
3277 if (error)
3278 goto out_err;
3279 error = -EOPNOTSUPP;
3280 if (!dir->i_op->tmpfile)
3281 goto out_err;
3282 error = -ENOMEM;
cdf01226 3283 child = d_alloc(dentry, &slash_name);
af7bd4dc
AG
3284 if (unlikely(!child))
3285 goto out_err;
3286 error = dir->i_op->tmpfile(dir, child, mode);
3287 if (error)
3288 goto out_err;
3289 error = -ENOENT;
3290 inode = child->d_inode;
3291 if (unlikely(!inode))
3292 goto out_err;
3293 if (!(open_flag & O_EXCL)) {
3294 spin_lock(&inode->i_lock);
3295 inode->i_state |= I_LINKABLE;
3296 spin_unlock(&inode->i_lock);
3297 }
fdb2410f 3298 ima_post_create_tmpfile(inode);
af7bd4dc
AG
3299 return child;
3300
3301out_err:
3302 dput(child);
3303 return ERR_PTR(error);
3304}
3305EXPORT_SYMBOL(vfs_tmpfile);
3306
c8a53ee5 3307static int do_tmpfile(struct nameidata *nd, unsigned flags,
60545d0d 3308 const struct open_flags *op,
3ec2eef1 3309 struct file *file)
60545d0d 3310{
625b6d10 3311 struct dentry *child;
625b6d10 3312 struct path path;
c8a53ee5 3313 int error = path_lookupat(nd, flags | LOOKUP_DIRECTORY, &path);
60545d0d
AV
3314 if (unlikely(error))
3315 return error;
625b6d10 3316 error = mnt_want_write(path.mnt);
60545d0d
AV
3317 if (unlikely(error))
3318 goto out;
af7bd4dc
AG
3319 child = vfs_tmpfile(path.dentry, op->mode, op->open_flag);
3320 error = PTR_ERR(child);
684e73be 3321 if (IS_ERR(child))
60545d0d 3322 goto out2;
625b6d10
AV
3323 dput(path.dentry);
3324 path.dentry = child;
c8a53ee5 3325 audit_inode(nd->name, child, 0);
69a91c23 3326 /* Don't check for other permissions, the inode was just created */
62fb4a15 3327 error = may_open(&path, 0, op->open_flag);
1e8f44f1
AV
3328 if (!error)
3329 error = vfs_open(&path, file);
60545d0d 3330out2:
625b6d10 3331 mnt_drop_write(path.mnt);
60545d0d 3332out:
625b6d10 3333 path_put(&path);
60545d0d
AV
3334 return error;
3335}
3336
6ac08709
AV
3337static int do_o_path(struct nameidata *nd, unsigned flags, struct file *file)
3338{
3339 struct path path;
3340 int error = path_lookupat(nd, flags, &path);
3341 if (!error) {
3342 audit_inode(nd->name, path.dentry, 0);
ae2bb293 3343 error = vfs_open(&path, file);
6ac08709
AV
3344 path_put(&path);
3345 }
3346 return error;
3347}
3348
c8a53ee5
AV
3349static struct file *path_openat(struct nameidata *nd,
3350 const struct open_flags *op, unsigned flags)
1da177e4 3351{
30d90494 3352 struct file *file;
13aab428 3353 int error;
31e6b01f 3354
ea73ea72 3355 file = alloc_empty_file(op->open_flag, current_cred());
1afc99be
AV
3356 if (IS_ERR(file))
3357 return file;
31e6b01f 3358
bb458c64 3359 if (unlikely(file->f_flags & __O_TMPFILE)) {
3ec2eef1 3360 error = do_tmpfile(nd, flags, op, file);
5f336e72 3361 } else if (unlikely(file->f_flags & O_PATH)) {
6ac08709 3362 error = do_o_path(nd, flags, file);
5f336e72
AV
3363 } else {
3364 const char *s = path_init(nd, flags);
3365 while (!(error = link_path_walk(s, nd)) &&
c5971b8c 3366 (s = open_last_lookups(nd, file, op)) != NULL)
1ccac622 3367 ;
c5971b8c
AV
3368 if (!error)
3369 error = do_open(nd, file, op);
5f336e72 3370 terminate_walk(nd);
806b681c 3371 }
7c1c01ec 3372 if (likely(!error)) {
aad888f8 3373 if (likely(file->f_mode & FMODE_OPENED))
7c1c01ec
AV
3374 return file;
3375 WARN_ON(1);
3376 error = -EINVAL;
16b1c1cd 3377 }
7c1c01ec
AV
3378 fput(file);
3379 if (error == -EOPENSTALE) {
3380 if (flags & LOOKUP_RCU)
3381 error = -ECHILD;
3382 else
3383 error = -ESTALE;
2675a4eb 3384 }
7c1c01ec 3385 return ERR_PTR(error);
1da177e4
LT
3386}
3387
669abf4e 3388struct file *do_filp_open(int dfd, struct filename *pathname,
f9652e10 3389 const struct open_flags *op)
13aab428 3390{
9883d185 3391 struct nameidata nd;
f9652e10 3392 int flags = op->lookup_flags;
13aab428
AV
3393 struct file *filp;
3394
9883d185 3395 set_nameidata(&nd, dfd, pathname);
c8a53ee5 3396 filp = path_openat(&nd, op, flags | LOOKUP_RCU);
13aab428 3397 if (unlikely(filp == ERR_PTR(-ECHILD)))
c8a53ee5 3398 filp = path_openat(&nd, op, flags);
13aab428 3399 if (unlikely(filp == ERR_PTR(-ESTALE)))
c8a53ee5 3400 filp = path_openat(&nd, op, flags | LOOKUP_REVAL);
9883d185 3401 restore_nameidata();
13aab428
AV
3402 return filp;
3403}
3404
73d049a4 3405struct file *do_file_open_root(struct dentry *dentry, struct vfsmount *mnt,
f9652e10 3406 const char *name, const struct open_flags *op)
73d049a4 3407{
9883d185 3408 struct nameidata nd;
73d049a4 3409 struct file *file;
51689104 3410 struct filename *filename;
f9652e10 3411 int flags = op->lookup_flags | LOOKUP_ROOT;
73d049a4
AV
3412
3413 nd.root.mnt = mnt;
3414 nd.root.dentry = dentry;
3415
b18825a7 3416 if (d_is_symlink(dentry) && op->intent & LOOKUP_OPEN)
73d049a4
AV
3417 return ERR_PTR(-ELOOP);
3418
51689104 3419 filename = getname_kernel(name);
a1c83681 3420 if (IS_ERR(filename))
51689104
PM
3421 return ERR_CAST(filename);
3422
9883d185 3423 set_nameidata(&nd, -1, filename);
c8a53ee5 3424 file = path_openat(&nd, op, flags | LOOKUP_RCU);
73d049a4 3425 if (unlikely(file == ERR_PTR(-ECHILD)))
c8a53ee5 3426 file = path_openat(&nd, op, flags);
73d049a4 3427 if (unlikely(file == ERR_PTR(-ESTALE)))
c8a53ee5 3428 file = path_openat(&nd, op, flags | LOOKUP_REVAL);
9883d185 3429 restore_nameidata();
51689104 3430 putname(filename);
73d049a4
AV
3431 return file;
3432}
3433
fa14a0b8 3434static struct dentry *filename_create(int dfd, struct filename *name,
1ac12b4b 3435 struct path *path, unsigned int lookup_flags)
1da177e4 3436{
c663e5d8 3437 struct dentry *dentry = ERR_PTR(-EEXIST);
391172c4
AV
3438 struct qstr last;
3439 int type;
c30dabfe 3440 int err2;
1ac12b4b
JL
3441 int error;
3442 bool is_dir = (lookup_flags & LOOKUP_DIRECTORY);
3443
3444 /*
3445 * Note that only LOOKUP_REVAL and LOOKUP_DIRECTORY matter here. Any
3446 * other flags passed in are ignored!
3447 */
3448 lookup_flags &= LOOKUP_REVAL;
3449
5c31b6ce
AV
3450 name = filename_parentat(dfd, name, lookup_flags, path, &last, &type);
3451 if (IS_ERR(name))
3452 return ERR_CAST(name);
1da177e4 3453
c663e5d8
CH
3454 /*
3455 * Yucky last component or no last component at all?
3456 * (foo/., foo/.., /////)
3457 */
5c31b6ce 3458 if (unlikely(type != LAST_NORM))
ed75e95d 3459 goto out;
c663e5d8 3460
c30dabfe 3461 /* don't fail immediately if it's r/o, at least try to report other errors */
391172c4 3462 err2 = mnt_want_write(path->mnt);
c663e5d8
CH
3463 /*
3464 * Do the final lookup.
3465 */
391172c4 3466 lookup_flags |= LOOKUP_CREATE | LOOKUP_EXCL;
5955102c 3467 inode_lock_nested(path->dentry->d_inode, I_MUTEX_PARENT);
391172c4 3468 dentry = __lookup_hash(&last, path->dentry, lookup_flags);
1da177e4 3469 if (IS_ERR(dentry))
a8104a9f 3470 goto unlock;
c663e5d8 3471
a8104a9f 3472 error = -EEXIST;
b18825a7 3473 if (d_is_positive(dentry))
a8104a9f 3474 goto fail;
b18825a7 3475
c663e5d8
CH
3476 /*
3477 * Special case - lookup gave negative, but... we had foo/bar/
3478 * From the vfs_mknod() POV we just have a negative dentry -
3479 * all is fine. Let's be bastards - you had / on the end, you've
3480 * been asking for (non-existent) directory. -ENOENT for you.
3481 */
391172c4 3482 if (unlikely(!is_dir && last.name[last.len])) {
a8104a9f 3483 error = -ENOENT;
ed75e95d 3484 goto fail;
e9baf6e5 3485 }
c30dabfe
JK
3486 if (unlikely(err2)) {
3487 error = err2;
a8104a9f 3488 goto fail;
c30dabfe 3489 }
181c37b6 3490 putname(name);
1da177e4 3491 return dentry;
1da177e4 3492fail:
a8104a9f
AV
3493 dput(dentry);
3494 dentry = ERR_PTR(error);
3495unlock:
5955102c 3496 inode_unlock(path->dentry->d_inode);
c30dabfe 3497 if (!err2)
391172c4 3498 mnt_drop_write(path->mnt);
ed75e95d 3499out:
391172c4 3500 path_put(path);
181c37b6 3501 putname(name);
1da177e4
LT
3502 return dentry;
3503}
fa14a0b8
AV
3504
3505struct dentry *kern_path_create(int dfd, const char *pathname,
3506 struct path *path, unsigned int lookup_flags)
3507{
181c37b6
AV
3508 return filename_create(dfd, getname_kernel(pathname),
3509 path, lookup_flags);
fa14a0b8 3510}
dae6ad8f
AV
3511EXPORT_SYMBOL(kern_path_create);
3512
921a1650
AV
3513void done_path_create(struct path *path, struct dentry *dentry)
3514{
3515 dput(dentry);
5955102c 3516 inode_unlock(path->dentry->d_inode);
a8104a9f 3517 mnt_drop_write(path->mnt);
921a1650
AV
3518 path_put(path);
3519}
3520EXPORT_SYMBOL(done_path_create);
3521
520ae687 3522inline struct dentry *user_path_create(int dfd, const char __user *pathname,
1ac12b4b 3523 struct path *path, unsigned int lookup_flags)
dae6ad8f 3524{
181c37b6 3525 return filename_create(dfd, getname(pathname), path, lookup_flags);
dae6ad8f
AV
3526}
3527EXPORT_SYMBOL(user_path_create);
3528
1a67aafb 3529int vfs_mknod(struct inode *dir, struct dentry *dentry, umode_t mode, dev_t dev)
1da177e4 3530{
a3c751a5 3531 bool is_whiteout = S_ISCHR(mode) && dev == WHITEOUT_DEV;
a95164d9 3532 int error = may_create(dir, dentry);
1da177e4
LT
3533
3534 if (error)
3535 return error;
3536
a3c751a5
MS
3537 if ((S_ISCHR(mode) || S_ISBLK(mode)) && !is_whiteout &&
3538 !capable(CAP_MKNOD))
1da177e4
LT
3539 return -EPERM;
3540
acfa4380 3541 if (!dir->i_op->mknod)
1da177e4
LT
3542 return -EPERM;
3543
08ce5f16
SH
3544 error = devcgroup_inode_mknod(mode, dev);
3545 if (error)
3546 return error;
3547
1da177e4
LT
3548 error = security_inode_mknod(dir, dentry, mode, dev);
3549 if (error)
3550 return error;
3551
1da177e4 3552 error = dir->i_op->mknod(dir, dentry, mode, dev);
a74574aa 3553 if (!error)
f38aa942 3554 fsnotify_create(dir, dentry);
1da177e4
LT
3555 return error;
3556}
4d359507 3557EXPORT_SYMBOL(vfs_mknod);
1da177e4 3558
f69aac00 3559static int may_mknod(umode_t mode)
463c3197
DH
3560{
3561 switch (mode & S_IFMT) {
3562 case S_IFREG:
3563 case S_IFCHR:
3564 case S_IFBLK:
3565 case S_IFIFO:
3566 case S_IFSOCK:
3567 case 0: /* zero mode translates to S_IFREG */
3568 return 0;
3569 case S_IFDIR:
3570 return -EPERM;
3571 default:
3572 return -EINVAL;
3573 }
3574}
3575
5fee64fc 3576static long do_mknodat(int dfd, const char __user *filename, umode_t mode,
87c4e192 3577 unsigned int dev)
1da177e4 3578{
2ad94ae6 3579 struct dentry *dentry;
dae6ad8f
AV
3580 struct path path;
3581 int error;
972567f1 3582 unsigned int lookup_flags = 0;
1da177e4 3583
8e4bfca1
AV
3584 error = may_mknod(mode);
3585 if (error)
3586 return error;
972567f1
JL
3587retry:
3588 dentry = user_path_create(dfd, filename, &path, lookup_flags);
dae6ad8f
AV
3589 if (IS_ERR(dentry))
3590 return PTR_ERR(dentry);
2ad94ae6 3591
dae6ad8f 3592 if (!IS_POSIXACL(path.dentry->d_inode))
ce3b0f8d 3593 mode &= ~current_umask();
dae6ad8f 3594 error = security_path_mknod(&path, dentry, mode, dev);
be6d3e56 3595 if (error)
a8104a9f 3596 goto out;
463c3197 3597 switch (mode & S_IFMT) {
1da177e4 3598 case 0: case S_IFREG:
312b63fb 3599 error = vfs_create(path.dentry->d_inode,dentry,mode,true);
05d1a717
MZ
3600 if (!error)
3601 ima_post_path_mknod(dentry);
1da177e4
LT
3602 break;
3603 case S_IFCHR: case S_IFBLK:
dae6ad8f 3604 error = vfs_mknod(path.dentry->d_inode,dentry,mode,
1da177e4
LT
3605 new_decode_dev(dev));
3606 break;
3607 case S_IFIFO: case S_IFSOCK:
dae6ad8f 3608 error = vfs_mknod(path.dentry->d_inode,dentry,mode,0);
1da177e4 3609 break;
1da177e4 3610 }
a8104a9f 3611out:
921a1650 3612 done_path_create(&path, dentry);
972567f1
JL
3613 if (retry_estale(error, lookup_flags)) {
3614 lookup_flags |= LOOKUP_REVAL;
3615 goto retry;
3616 }
1da177e4
LT
3617 return error;
3618}
3619
87c4e192
DB
3620SYSCALL_DEFINE4(mknodat, int, dfd, const char __user *, filename, umode_t, mode,
3621 unsigned int, dev)
3622{
3623 return do_mknodat(dfd, filename, mode, dev);
3624}
3625
8208a22b 3626SYSCALL_DEFINE3(mknod, const char __user *, filename, umode_t, mode, unsigned, dev)
5590ff0d 3627{
87c4e192 3628 return do_mknodat(AT_FDCWD, filename, mode, dev);
5590ff0d
UD
3629}
3630
18bb1db3 3631int vfs_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode)
1da177e4 3632{
a95164d9 3633 int error = may_create(dir, dentry);
8de52778 3634 unsigned max_links = dir->i_sb->s_max_links;
1da177e4
LT
3635
3636 if (error)
3637 return error;
3638
acfa4380 3639 if (!dir->i_op->mkdir)
1da177e4
LT
3640 return -EPERM;
3641
3642 mode &= (S_IRWXUGO|S_ISVTX);
3643 error = security_inode_mkdir(dir, dentry, mode);
3644 if (error)
3645 return error;
3646
8de52778
AV
3647 if (max_links && dir->i_nlink >= max_links)
3648 return -EMLINK;
3649
1da177e4 3650 error = dir->i_op->mkdir(dir, dentry, mode);
a74574aa 3651 if (!error)
f38aa942 3652 fsnotify_mkdir(dir, dentry);
1da177e4
LT
3653 return error;
3654}
4d359507 3655EXPORT_SYMBOL(vfs_mkdir);
1da177e4 3656
83ff98c3 3657static long do_mkdirat(int dfd, const char __user *pathname, umode_t mode)
1da177e4 3658{
6902d925 3659 struct dentry *dentry;
dae6ad8f
AV
3660 struct path path;
3661 int error;
b76d8b82 3662 unsigned int lookup_flags = LOOKUP_DIRECTORY;
1da177e4 3663
b76d8b82
JL
3664retry:
3665 dentry = user_path_create(dfd, pathname, &path, lookup_flags);
6902d925 3666 if (IS_ERR(dentry))
dae6ad8f 3667 return PTR_ERR(dentry);
1da177e4 3668
dae6ad8f 3669 if (!IS_POSIXACL(path.dentry->d_inode))
ce3b0f8d 3670 mode &= ~current_umask();
dae6ad8f 3671 error = security_path_mkdir(&path, dentry, mode);
a8104a9f
AV
3672 if (!error)
3673 error = vfs_mkdir(path.dentry->d_inode, dentry, mode);
921a1650 3674 done_path_create(&path, dentry);
b76d8b82
JL
3675 if (retry_estale(error, lookup_flags)) {
3676 lookup_flags |= LOOKUP_REVAL;
3677 goto retry;
3678 }
1da177e4
LT
3679 return error;
3680}
3681
0101db7a
DB
3682SYSCALL_DEFINE3(mkdirat, int, dfd, const char __user *, pathname, umode_t, mode)
3683{
3684 return do_mkdirat(dfd, pathname, mode);
3685}
3686
a218d0fd 3687SYSCALL_DEFINE2(mkdir, const char __user *, pathname, umode_t, mode)
5590ff0d 3688{
0101db7a 3689 return do_mkdirat(AT_FDCWD, pathname, mode);
5590ff0d
UD
3690}
3691
1da177e4
LT
3692int vfs_rmdir(struct inode *dir, struct dentry *dentry)
3693{
3694 int error = may_delete(dir, dentry, 1);
3695
3696 if (error)
3697 return error;
3698
acfa4380 3699 if (!dir->i_op->rmdir)
1da177e4
LT
3700 return -EPERM;
3701
1d2ef590 3702 dget(dentry);
5955102c 3703 inode_lock(dentry->d_inode);
912dbc15
SW
3704
3705 error = -EBUSY;
7af1364f 3706 if (is_local_mountpoint(dentry))
912dbc15
SW
3707 goto out;
3708
3709 error = security_inode_rmdir(dir, dentry);
3710 if (error)
3711 goto out;
3712
3713 error = dir->i_op->rmdir(dir, dentry);
3714 if (error)
3715 goto out;
3716
8767712f 3717 shrink_dcache_parent(dentry);
912dbc15
SW
3718 dentry->d_inode->i_flags |= S_DEAD;
3719 dont_mount(dentry);
8ed936b5 3720 detach_mounts(dentry);
116b9731 3721 fsnotify_rmdir(dir, dentry);
912dbc15
SW
3722
3723out:
5955102c 3724 inode_unlock(dentry->d_inode);
1d2ef590 3725 dput(dentry);
912dbc15 3726 if (!error)
1da177e4 3727 d_delete(dentry);
1da177e4
LT
3728 return error;
3729}
4d359507 3730EXPORT_SYMBOL(vfs_rmdir);
1da177e4 3731
e24ab0ef 3732long do_rmdir(int dfd, struct filename *name)
1da177e4
LT
3733{
3734 int error = 0;
1da177e4 3735 struct dentry *dentry;
f5beed75
AV
3736 struct path path;
3737 struct qstr last;
3738 int type;
c6ee9206
JL
3739 unsigned int lookup_flags = 0;
3740retry:
e24ab0ef 3741 name = filename_parentat(dfd, name, lookup_flags,
c1d4dd27 3742 &path, &last, &type);
91a27b2a
JL
3743 if (IS_ERR(name))
3744 return PTR_ERR(name);
1da177e4 3745
f5beed75 3746 switch (type) {
0612d9fb
OH
3747 case LAST_DOTDOT:
3748 error = -ENOTEMPTY;
3749 goto exit1;
3750 case LAST_DOT:
3751 error = -EINVAL;
3752 goto exit1;
3753 case LAST_ROOT:
3754 error = -EBUSY;
3755 goto exit1;
1da177e4 3756 }
0612d9fb 3757
f5beed75 3758 error = mnt_want_write(path.mnt);
c30dabfe
JK
3759 if (error)
3760 goto exit1;
0612d9fb 3761
5955102c 3762 inode_lock_nested(path.dentry->d_inode, I_MUTEX_PARENT);
f5beed75 3763 dentry = __lookup_hash(&last, path.dentry, lookup_flags);
1da177e4 3764 error = PTR_ERR(dentry);
6902d925
DH
3765 if (IS_ERR(dentry))
3766 goto exit2;
e6bc45d6
TT
3767 if (!dentry->d_inode) {
3768 error = -ENOENT;
3769 goto exit3;
3770 }
f5beed75 3771 error = security_path_rmdir(&path, dentry);
be6d3e56 3772 if (error)
c30dabfe 3773 goto exit3;
f5beed75 3774 error = vfs_rmdir(path.dentry->d_inode, dentry);
0622753b 3775exit3:
6902d925
DH
3776 dput(dentry);
3777exit2:
5955102c 3778 inode_unlock(path.dentry->d_inode);
f5beed75 3779 mnt_drop_write(path.mnt);
1da177e4 3780exit1:
f5beed75 3781 path_put(&path);
c6ee9206
JL
3782 if (retry_estale(error, lookup_flags)) {
3783 lookup_flags |= LOOKUP_REVAL;
3784 goto retry;
3785 }
24fb33d4 3786 putname(name);
1da177e4
LT
3787 return error;
3788}
3789
3cdad428 3790SYSCALL_DEFINE1(rmdir, const char __user *, pathname)
5590ff0d 3791{
e24ab0ef 3792 return do_rmdir(AT_FDCWD, getname(pathname));
5590ff0d
UD
3793}
3794
b21996e3
BF
3795/**
3796 * vfs_unlink - unlink a filesystem object
3797 * @dir: parent directory
3798 * @dentry: victim
3799 * @delegated_inode: returns victim inode, if the inode is delegated.
3800 *
3801 * The caller must hold dir->i_mutex.
3802 *
3803 * If vfs_unlink discovers a delegation, it will return -EWOULDBLOCK and
3804 * return a reference to the inode in delegated_inode. The caller
3805 * should then break the delegation on that inode and retry. Because
3806 * breaking a delegation may take a long time, the caller should drop
3807 * dir->i_mutex before doing so.
3808 *
3809 * Alternatively, a caller may pass NULL for delegated_inode. This may
3810 * be appropriate for callers that expect the underlying filesystem not
3811 * to be NFS exported.
3812 */
3813int vfs_unlink(struct inode *dir, struct dentry *dentry, struct inode **delegated_inode)
1da177e4 3814{
9accbb97 3815 struct inode *target = dentry->d_inode;
1da177e4
LT
3816 int error = may_delete(dir, dentry, 0);
3817
3818 if (error)
3819 return error;
3820
acfa4380 3821 if (!dir->i_op->unlink)
1da177e4
LT
3822 return -EPERM;
3823
5955102c 3824 inode_lock(target);
8ed936b5 3825 if (is_local_mountpoint(dentry))
1da177e4
LT
3826 error = -EBUSY;
3827 else {
3828 error = security_inode_unlink(dir, dentry);
bec1052e 3829 if (!error) {
5a14696c
BF
3830 error = try_break_deleg(target, delegated_inode);
3831 if (error)
b21996e3 3832 goto out;
1da177e4 3833 error = dir->i_op->unlink(dir, dentry);
8ed936b5 3834 if (!error) {
d83c49f3 3835 dont_mount(dentry);
8ed936b5 3836 detach_mounts(dentry);
116b9731 3837 fsnotify_unlink(dir, dentry);
8ed936b5 3838 }
bec1052e 3839 }
1da177e4 3840 }
b21996e3 3841out:
5955102c 3842 inode_unlock(target);
1da177e4
LT
3843
3844 /* We don't d_delete() NFS sillyrenamed files--they still exist. */
3845 if (!error && !(dentry->d_flags & DCACHE_NFSFS_RENAMED)) {
9accbb97 3846 fsnotify_link_count(target);
e234f35c 3847 d_delete(dentry);
1da177e4 3848 }
0eeca283 3849
1da177e4
LT
3850 return error;
3851}
4d359507 3852EXPORT_SYMBOL(vfs_unlink);
1da177e4
LT
3853
3854/*
3855 * Make sure that the actual truncation of the file will occur outside its
1b1dcc1b 3856 * directory's i_mutex. Truncate can take a long time if there is a lot of
1da177e4
LT
3857 * writeout happening, and we don't want to prevent access to the directory
3858 * while waiting on the I/O.
3859 */
da2f1362 3860long do_unlinkat(int dfd, struct filename *name)
1da177e4 3861{
2ad94ae6 3862 int error;
1da177e4 3863 struct dentry *dentry;
f5beed75
AV
3864 struct path path;
3865 struct qstr last;
3866 int type;
1da177e4 3867 struct inode *inode = NULL;
b21996e3 3868 struct inode *delegated_inode = NULL;
5d18f813
JL
3869 unsigned int lookup_flags = 0;
3870retry:
da2f1362 3871 name = filename_parentat(dfd, name, lookup_flags, &path, &last, &type);
91a27b2a
JL
3872 if (IS_ERR(name))
3873 return PTR_ERR(name);
2ad94ae6 3874
1da177e4 3875 error = -EISDIR;
f5beed75 3876 if (type != LAST_NORM)
1da177e4 3877 goto exit1;
0612d9fb 3878
f5beed75 3879 error = mnt_want_write(path.mnt);
c30dabfe
JK
3880 if (error)
3881 goto exit1;
b21996e3 3882retry_deleg:
5955102c 3883 inode_lock_nested(path.dentry->d_inode, I_MUTEX_PARENT);
f5beed75 3884 dentry = __lookup_hash(&last, path.dentry, lookup_flags);
1da177e4
LT
3885 error = PTR_ERR(dentry);
3886 if (!IS_ERR(dentry)) {
3887 /* Why not before? Because we want correct error value */
f5beed75 3888 if (last.name[last.len])
50338b88 3889 goto slashes;
1da177e4 3890 inode = dentry->d_inode;
b18825a7 3891 if (d_is_negative(dentry))
e6bc45d6
TT
3892 goto slashes;
3893 ihold(inode);
f5beed75 3894 error = security_path_unlink(&path, dentry);
be6d3e56 3895 if (error)
c30dabfe 3896 goto exit2;
f5beed75 3897 error = vfs_unlink(path.dentry->d_inode, dentry, &delegated_inode);
c30dabfe 3898exit2:
1da177e4
LT
3899 dput(dentry);
3900 }
5955102c 3901 inode_unlock(path.dentry->d_inode);
1da177e4
LT
3902 if (inode)
3903 iput(inode); /* truncate the inode here */
b21996e3
BF
3904 inode = NULL;
3905 if (delegated_inode) {
5a14696c 3906 error = break_deleg_wait(&delegated_inode);
b21996e3
BF
3907 if (!error)
3908 goto retry_deleg;
3909 }
f5beed75 3910 mnt_drop_write(path.mnt);
1da177e4 3911exit1:
f5beed75 3912 path_put(&path);
5d18f813
JL
3913 if (retry_estale(error, lookup_flags)) {
3914 lookup_flags |= LOOKUP_REVAL;
3915 inode = NULL;
3916 goto retry;
3917 }
da2f1362 3918 putname(name);
1da177e4
LT
3919 return error;
3920
3921slashes:
b18825a7
DH
3922 if (d_is_negative(dentry))
3923 error = -ENOENT;
44b1d530 3924 else if (d_is_dir(dentry))
b18825a7
DH
3925 error = -EISDIR;
3926 else
3927 error = -ENOTDIR;
1da177e4
LT
3928 goto exit2;
3929}
3930
2e4d0924 3931SYSCALL_DEFINE3(unlinkat, int, dfd, const char __user *, pathname, int, flag)
5590ff0d
UD
3932{
3933 if ((flag & ~AT_REMOVEDIR) != 0)
3934 return -EINVAL;
3935
3936 if (flag & AT_REMOVEDIR)
e24ab0ef 3937 return do_rmdir(dfd, getname(pathname));
da2f1362 3938 return do_unlinkat(dfd, getname(pathname));
5590ff0d
UD
3939}
3940
3480b257 3941SYSCALL_DEFINE1(unlink, const char __user *, pathname)
5590ff0d 3942{
da2f1362 3943 return do_unlinkat(AT_FDCWD, getname(pathname));
5590ff0d
UD
3944}
3945
db2e747b 3946int vfs_symlink(struct inode *dir, struct dentry *dentry, const char *oldname)
1da177e4 3947{
a95164d9 3948 int error = may_create(dir, dentry);
1da177e4
LT
3949
3950 if (error)
3951 return error;
3952
acfa4380 3953 if (!dir->i_op->symlink)
1da177e4
LT
3954 return -EPERM;
3955
3956 error = security_inode_symlink(dir, dentry, oldname);
3957 if (error)
3958 return error;
3959
1da177e4 3960 error = dir->i_op->symlink(dir, dentry, oldname);
a74574aa 3961 if (!error)
f38aa942 3962 fsnotify_create(dir, dentry);
1da177e4
LT
3963 return error;
3964}
4d359507 3965EXPORT_SYMBOL(vfs_symlink);
1da177e4 3966
cd3acb6a 3967static long do_symlinkat(const char __user *oldname, int newdfd,
b724e846 3968 const char __user *newname)
1da177e4 3969{
2ad94ae6 3970 int error;
91a27b2a 3971 struct filename *from;
6902d925 3972 struct dentry *dentry;
dae6ad8f 3973 struct path path;
f46d3567 3974 unsigned int lookup_flags = 0;
1da177e4
LT
3975
3976 from = getname(oldname);
2ad94ae6 3977 if (IS_ERR(from))
1da177e4 3978 return PTR_ERR(from);
f46d3567
JL
3979retry:
3980 dentry = user_path_create(newdfd, newname, &path, lookup_flags);
6902d925
DH
3981 error = PTR_ERR(dentry);
3982 if (IS_ERR(dentry))
dae6ad8f 3983 goto out_putname;
6902d925 3984
91a27b2a 3985 error = security_path_symlink(&path, dentry, from->name);
a8104a9f 3986 if (!error)
91a27b2a 3987 error = vfs_symlink(path.dentry->d_inode, dentry, from->name);
921a1650 3988 done_path_create(&path, dentry);
f46d3567
JL
3989 if (retry_estale(error, lookup_flags)) {
3990 lookup_flags |= LOOKUP_REVAL;
3991 goto retry;
3992 }
6902d925 3993out_putname:
1da177e4
LT
3994 putname(from);
3995 return error;
3996}
3997
b724e846
DB
3998SYSCALL_DEFINE3(symlinkat, const char __user *, oldname,
3999 int, newdfd, const char __user *, newname)
4000{
4001 return do_symlinkat(oldname, newdfd, newname);
4002}
4003
3480b257 4004SYSCALL_DEFINE2(symlink, const char __user *, oldname, const char __user *, newname)
5590ff0d 4005{
b724e846 4006 return do_symlinkat(oldname, AT_FDCWD, newname);
5590ff0d
UD
4007}
4008
146a8595
BF
4009/**
4010 * vfs_link - create a new link
4011 * @old_dentry: object to be linked
4012 * @dir: new parent
4013 * @new_dentry: where to create the new link
4014 * @delegated_inode: returns inode needing a delegation break
4015 *
4016 * The caller must hold dir->i_mutex
4017 *
4018 * If vfs_link discovers a delegation on the to-be-linked file in need
4019 * of breaking, it will return -EWOULDBLOCK and return a reference to the
4020 * inode in delegated_inode. The caller should then break the delegation
4021 * and retry. Because breaking a delegation may take a long time, the
4022 * caller should drop the i_mutex before doing so.
4023 *
4024 * Alternatively, a caller may pass NULL for delegated_inode. This may
4025 * be appropriate for callers that expect the underlying filesystem not
4026 * to be NFS exported.
4027 */
4028int vfs_link(struct dentry *old_dentry, struct inode *dir, struct dentry *new_dentry, struct inode **delegated_inode)
1da177e4
LT
4029{
4030 struct inode *inode = old_dentry->d_inode;
8de52778 4031 unsigned max_links = dir->i_sb->s_max_links;
1da177e4
LT
4032 int error;
4033
4034 if (!inode)
4035 return -ENOENT;
4036
a95164d9 4037 error = may_create(dir, new_dentry);
1da177e4
LT
4038 if (error)
4039 return error;
4040
4041 if (dir->i_sb != inode->i_sb)
4042 return -EXDEV;
4043
4044 /*
4045 * A link to an append-only or immutable file cannot be created.
4046 */
4047 if (IS_APPEND(inode) || IS_IMMUTABLE(inode))
4048 return -EPERM;
0bd23d09
EB
4049 /*
4050 * Updating the link count will likely cause i_uid and i_gid to
4051 * be writen back improperly if their true value is unknown to
4052 * the vfs.
4053 */
4054 if (HAS_UNMAPPED_ID(inode))
4055 return -EPERM;
acfa4380 4056 if (!dir->i_op->link)
1da177e4 4057 return -EPERM;
7e79eedb 4058 if (S_ISDIR(inode->i_mode))
1da177e4
LT
4059 return -EPERM;
4060
4061 error = security_inode_link(old_dentry, dir, new_dentry);
4062 if (error)
4063 return error;
4064
5955102c 4065 inode_lock(inode);
aae8a97d 4066 /* Make sure we don't allow creating hardlink to an unlinked file */
f4e0c30c 4067 if (inode->i_nlink == 0 && !(inode->i_state & I_LINKABLE))
aae8a97d 4068 error = -ENOENT;
8de52778
AV
4069 else if (max_links && inode->i_nlink >= max_links)
4070 error = -EMLINK;
146a8595
BF
4071 else {
4072 error = try_break_deleg(inode, delegated_inode);
4073 if (!error)
4074 error = dir->i_op->link(old_dentry, dir, new_dentry);
4075 }
f4e0c30c
AV
4076
4077 if (!error && (inode->i_state & I_LINKABLE)) {
4078 spin_lock(&inode->i_lock);
4079 inode->i_state &= ~I_LINKABLE;
4080 spin_unlock(&inode->i_lock);
4081 }
5955102c 4082 inode_unlock(inode);
e31e14ec 4083 if (!error)
7e79eedb 4084 fsnotify_link(dir, inode, new_dentry);
1da177e4
LT
4085 return error;
4086}
4d359507 4087EXPORT_SYMBOL(vfs_link);
1da177e4
LT
4088
4089/*
4090 * Hardlinks are often used in delicate situations. We avoid
4091 * security-related surprises by not following symlinks on the
4092 * newname. --KAB
4093 *
4094 * We don't follow them on the oldname either to be compatible
4095 * with linux 2.0, and to avoid hard-linking to directories
4096 * and other special files. --ADM
4097 */
812931d6 4098static int do_linkat(int olddfd, const char __user *oldname, int newdfd,
46ea89eb 4099 const char __user *newname, int flags)
1da177e4
LT
4100{
4101 struct dentry *new_dentry;
dae6ad8f 4102 struct path old_path, new_path;
146a8595 4103 struct inode *delegated_inode = NULL;
11a7b371 4104 int how = 0;
1da177e4 4105 int error;
1da177e4 4106
11a7b371 4107 if ((flags & ~(AT_SYMLINK_FOLLOW | AT_EMPTY_PATH)) != 0)
c04030e1 4108 return -EINVAL;
11a7b371 4109 /*
f0cc6ffb
LT
4110 * To use null names we require CAP_DAC_READ_SEARCH
4111 * This ensures that not everyone will be able to create
4112 * handlink using the passed filedescriptor.
11a7b371 4113 */
f0cc6ffb
LT
4114 if (flags & AT_EMPTY_PATH) {
4115 if (!capable(CAP_DAC_READ_SEARCH))
4116 return -ENOENT;
11a7b371 4117 how = LOOKUP_EMPTY;
f0cc6ffb 4118 }
11a7b371
AK
4119
4120 if (flags & AT_SYMLINK_FOLLOW)
4121 how |= LOOKUP_FOLLOW;
442e31ca 4122retry:
11a7b371 4123 error = user_path_at(olddfd, oldname, how, &old_path);
1da177e4 4124 if (error)
2ad94ae6
AV
4125 return error;
4126
442e31ca
JL
4127 new_dentry = user_path_create(newdfd, newname, &new_path,
4128 (how & LOOKUP_REVAL));
1da177e4 4129 error = PTR_ERR(new_dentry);
6902d925 4130 if (IS_ERR(new_dentry))
dae6ad8f
AV
4131 goto out;
4132
4133 error = -EXDEV;
4134 if (old_path.mnt != new_path.mnt)
4135 goto out_dput;
800179c9
KC
4136 error = may_linkat(&old_path);
4137 if (unlikely(error))
4138 goto out_dput;
dae6ad8f 4139 error = security_path_link(old_path.dentry, &new_path, new_dentry);
be6d3e56 4140 if (error)
a8104a9f 4141 goto out_dput;
146a8595 4142 error = vfs_link(old_path.dentry, new_path.dentry->d_inode, new_dentry, &delegated_inode);
75c3f29d 4143out_dput:
921a1650 4144 done_path_create(&new_path, new_dentry);
146a8595
BF
4145 if (delegated_inode) {
4146 error = break_deleg_wait(&delegated_inode);
d22e6338
OD
4147 if (!error) {
4148 path_put(&old_path);
146a8595 4149 goto retry;
d22e6338 4150 }
146a8595 4151 }
442e31ca 4152 if (retry_estale(error, how)) {
d22e6338 4153 path_put(&old_path);
442e31ca
JL
4154 how |= LOOKUP_REVAL;
4155 goto retry;
4156 }
1da177e4 4157out:
2d8f3038 4158 path_put(&old_path);
1da177e4
LT
4159
4160 return error;
4161}
4162
46ea89eb
DB
4163SYSCALL_DEFINE5(linkat, int, olddfd, const char __user *, oldname,
4164 int, newdfd, const char __user *, newname, int, flags)
4165{
4166 return do_linkat(olddfd, oldname, newdfd, newname, flags);
4167}
4168
3480b257 4169SYSCALL_DEFINE2(link, const char __user *, oldname, const char __user *, newname)
5590ff0d 4170{
46ea89eb 4171 return do_linkat(AT_FDCWD, oldname, AT_FDCWD, newname, 0);
5590ff0d
UD
4172}
4173
bc27027a
MS
4174/**
4175 * vfs_rename - rename a filesystem object
4176 * @old_dir: parent of source
4177 * @old_dentry: source
4178 * @new_dir: parent of destination
4179 * @new_dentry: destination
4180 * @delegated_inode: returns an inode needing a delegation break
520c8b16 4181 * @flags: rename flags
bc27027a
MS
4182 *
4183 * The caller must hold multiple mutexes--see lock_rename()).
4184 *
4185 * If vfs_rename discovers a delegation in need of breaking at either
4186 * the source or destination, it will return -EWOULDBLOCK and return a
4187 * reference to the inode in delegated_inode. The caller should then
4188 * break the delegation and retry. Because breaking a delegation may
4189 * take a long time, the caller should drop all locks before doing
4190 * so.
4191 *
4192 * Alternatively, a caller may pass NULL for delegated_inode. This may
4193 * be appropriate for callers that expect the underlying filesystem not
4194 * to be NFS exported.
4195 *
1da177e4
LT
4196 * The worst of all namespace operations - renaming directory. "Perverted"
4197 * doesn't even start to describe it. Somebody in UCB had a heck of a trip...
4198 * Problems:
0117d427 4199 *
d03b29a2 4200 * a) we can get into loop creation.
1da177e4
LT
4201 * b) race potential - two innocent renames can create a loop together.
4202 * That's where 4.4 screws up. Current fix: serialization on
a11f3a05 4203 * sb->s_vfs_rename_mutex. We might be more accurate, but that's another
1da177e4 4204 * story.
6cedba89
BF
4205 * c) we have to lock _four_ objects - parents and victim (if it exists),
4206 * and source (if it is not a directory).
1b1dcc1b 4207 * And that - after we got ->i_mutex on parents (until then we don't know
1da177e4
LT
4208 * whether the target exists). Solution: try to be smart with locking
4209 * order for inodes. We rely on the fact that tree topology may change
a11f3a05 4210 * only under ->s_vfs_rename_mutex _and_ that parent of the object we
1da177e4
LT
4211 * move will be locked. Thus we can rank directories by the tree
4212 * (ancestors first) and rank all non-directories after them.
4213 * That works since everybody except rename does "lock parent, lookup,
a11f3a05 4214 * lock child" and rename is under ->s_vfs_rename_mutex.
1da177e4
LT
4215 * HOWEVER, it relies on the assumption that any object with ->lookup()
4216 * has no more than 1 dentry. If "hybrid" objects will ever appear,
4217 * we'd better make sure that there's no link(2) for them.
e4eaac06 4218 * d) conversion from fhandle to dentry may come in the wrong moment - when
1b1dcc1b 4219 * we are removing the target. Solution: we will have to grab ->i_mutex
1da177e4 4220 * in the fhandle_to_dentry code. [FIXME - current nfsfh.c relies on
c41b20e7 4221 * ->i_mutex on parents, which works but leads to some truly excessive
1da177e4
LT
4222 * locking].
4223 */
bc27027a
MS
4224int vfs_rename(struct inode *old_dir, struct dentry *old_dentry,
4225 struct inode *new_dir, struct dentry *new_dentry,
520c8b16 4226 struct inode **delegated_inode, unsigned int flags)
1da177e4 4227{
bc27027a
MS
4228 int error;
4229 bool is_dir = d_is_dir(old_dentry);
bc27027a 4230 struct inode *source = old_dentry->d_inode;
9055cba7 4231 struct inode *target = new_dentry->d_inode;
da1ce067
MS
4232 bool new_is_dir = false;
4233 unsigned max_links = new_dir->i_sb->s_max_links;
49d31c2f 4234 struct name_snapshot old_name;
bc27027a 4235
8d3e2936 4236 if (source == target)
bc27027a
MS
4237 return 0;
4238
4239 error = may_delete(old_dir, old_dentry, is_dir);
4240 if (error)
4241 return error;
4242
da1ce067 4243 if (!target) {
bc27027a 4244 error = may_create(new_dir, new_dentry);
da1ce067
MS
4245 } else {
4246 new_is_dir = d_is_dir(new_dentry);
4247
4248 if (!(flags & RENAME_EXCHANGE))
4249 error = may_delete(new_dir, new_dentry, is_dir);
4250 else
4251 error = may_delete(new_dir, new_dentry, new_is_dir);
4252 }
bc27027a
MS
4253 if (error)
4254 return error;
4255
2773bf00 4256 if (!old_dir->i_op->rename)
bc27027a 4257 return -EPERM;
1da177e4
LT
4258
4259 /*
4260 * If we are going to change the parent - check write permissions,
4261 * we'll need to flip '..'.
4262 */
da1ce067
MS
4263 if (new_dir != old_dir) {
4264 if (is_dir) {
4265 error = inode_permission(source, MAY_WRITE);
4266 if (error)
4267 return error;
4268 }
4269 if ((flags & RENAME_EXCHANGE) && new_is_dir) {
4270 error = inode_permission(target, MAY_WRITE);
4271 if (error)
4272 return error;
4273 }
1da177e4
LT
4274 }
4275
0b3974eb
MS
4276 error = security_inode_rename(old_dir, old_dentry, new_dir, new_dentry,
4277 flags);
1da177e4
LT
4278 if (error)
4279 return error;
4280
49d31c2f 4281 take_dentry_name_snapshot(&old_name, old_dentry);
1d2ef590 4282 dget(new_dentry);
da1ce067 4283 if (!is_dir || (flags & RENAME_EXCHANGE))
bc27027a
MS
4284 lock_two_nondirectories(source, target);
4285 else if (target)
5955102c 4286 inode_lock(target);
9055cba7
SW
4287
4288 error = -EBUSY;
7af1364f 4289 if (is_local_mountpoint(old_dentry) || is_local_mountpoint(new_dentry))
9055cba7
SW
4290 goto out;
4291
da1ce067 4292 if (max_links && new_dir != old_dir) {
bc27027a 4293 error = -EMLINK;
da1ce067 4294 if (is_dir && !new_is_dir && new_dir->i_nlink >= max_links)
bc27027a 4295 goto out;
da1ce067
MS
4296 if ((flags & RENAME_EXCHANGE) && !is_dir && new_is_dir &&
4297 old_dir->i_nlink >= max_links)
4298 goto out;
4299 }
da1ce067 4300 if (!is_dir) {
bc27027a 4301 error = try_break_deleg(source, delegated_inode);
8e6d782c
BF
4302 if (error)
4303 goto out;
da1ce067
MS
4304 }
4305 if (target && !new_is_dir) {
4306 error = try_break_deleg(target, delegated_inode);
4307 if (error)
4308 goto out;
8e6d782c 4309 }
2773bf00 4310 error = old_dir->i_op->rename(old_dir, old_dentry,
18fc84da 4311 new_dir, new_dentry, flags);
51892bbb
SW
4312 if (error)
4313 goto out;
4314
da1ce067 4315 if (!(flags & RENAME_EXCHANGE) && target) {
8767712f
AV
4316 if (is_dir) {
4317 shrink_dcache_parent(new_dentry);
bc27027a 4318 target->i_flags |= S_DEAD;
8767712f 4319 }
51892bbb 4320 dont_mount(new_dentry);
8ed936b5 4321 detach_mounts(new_dentry);
bc27027a 4322 }
da1ce067
MS
4323 if (!(old_dir->i_sb->s_type->fs_flags & FS_RENAME_DOES_D_MOVE)) {
4324 if (!(flags & RENAME_EXCHANGE))
4325 d_move(old_dentry, new_dentry);
4326 else
4327 d_exchange(old_dentry, new_dentry);
4328 }
51892bbb 4329out:
da1ce067 4330 if (!is_dir || (flags & RENAME_EXCHANGE))
bc27027a
MS
4331 unlock_two_nondirectories(source, target);
4332 else if (target)
5955102c 4333 inode_unlock(target);
1da177e4 4334 dput(new_dentry);
da1ce067 4335 if (!error) {
f4ec3a3d 4336 fsnotify_move(old_dir, new_dir, &old_name.name, is_dir,
da1ce067
MS
4337 !(flags & RENAME_EXCHANGE) ? target : NULL, old_dentry);
4338 if (flags & RENAME_EXCHANGE) {
f4ec3a3d 4339 fsnotify_move(new_dir, old_dir, &old_dentry->d_name,
da1ce067
MS
4340 new_is_dir, NULL, new_dentry);
4341 }
4342 }
49d31c2f 4343 release_dentry_name_snapshot(&old_name);
0eeca283 4344
1da177e4
LT
4345 return error;
4346}
4d359507 4347EXPORT_SYMBOL(vfs_rename);
1da177e4 4348
e886663c
JA
4349int do_renameat2(int olddfd, struct filename *from, int newdfd,
4350 struct filename *to, unsigned int flags)
1da177e4 4351{
2ad94ae6
AV
4352 struct dentry *old_dentry, *new_dentry;
4353 struct dentry *trap;
f5beed75
AV
4354 struct path old_path, new_path;
4355 struct qstr old_last, new_last;
4356 int old_type, new_type;
8e6d782c 4357 struct inode *delegated_inode = NULL;
f5beed75 4358 unsigned int lookup_flags = 0, target_flags = LOOKUP_RENAME_TARGET;
c6a94284 4359 bool should_retry = false;
e886663c 4360 int error = -EINVAL;
520c8b16 4361
0d7a8555 4362 if (flags & ~(RENAME_NOREPLACE | RENAME_EXCHANGE | RENAME_WHITEOUT))
e886663c 4363 goto put_both;
da1ce067 4364
0d7a8555
MS
4365 if ((flags & (RENAME_NOREPLACE | RENAME_WHITEOUT)) &&
4366 (flags & RENAME_EXCHANGE))
e886663c 4367 goto put_both;
520c8b16 4368
f5beed75
AV
4369 if (flags & RENAME_EXCHANGE)
4370 target_flags = 0;
4371
c6a94284 4372retry:
e886663c
JA
4373 from = filename_parentat(olddfd, from, lookup_flags, &old_path,
4374 &old_last, &old_type);
91a27b2a
JL
4375 if (IS_ERR(from)) {
4376 error = PTR_ERR(from);
e886663c 4377 goto put_new;
91a27b2a 4378 }
1da177e4 4379
e886663c
JA
4380 to = filename_parentat(newdfd, to, lookup_flags, &new_path, &new_last,
4381 &new_type);
91a27b2a
JL
4382 if (IS_ERR(to)) {
4383 error = PTR_ERR(to);
1da177e4 4384 goto exit1;
91a27b2a 4385 }
1da177e4
LT
4386
4387 error = -EXDEV;
f5beed75 4388 if (old_path.mnt != new_path.mnt)
1da177e4
LT
4389 goto exit2;
4390
1da177e4 4391 error = -EBUSY;
f5beed75 4392 if (old_type != LAST_NORM)
1da177e4
LT
4393 goto exit2;
4394
0a7c3937
MS
4395 if (flags & RENAME_NOREPLACE)
4396 error = -EEXIST;
f5beed75 4397 if (new_type != LAST_NORM)
1da177e4
LT
4398 goto exit2;
4399
f5beed75 4400 error = mnt_want_write(old_path.mnt);
c30dabfe
JK
4401 if (error)
4402 goto exit2;
4403
8e6d782c 4404retry_deleg:
f5beed75 4405 trap = lock_rename(new_path.dentry, old_path.dentry);
1da177e4 4406
f5beed75 4407 old_dentry = __lookup_hash(&old_last, old_path.dentry, lookup_flags);
1da177e4
LT
4408 error = PTR_ERR(old_dentry);
4409 if (IS_ERR(old_dentry))
4410 goto exit3;
4411 /* source must exist */
4412 error = -ENOENT;
b18825a7 4413 if (d_is_negative(old_dentry))
1da177e4 4414 goto exit4;
f5beed75 4415 new_dentry = __lookup_hash(&new_last, new_path.dentry, lookup_flags | target_flags);
0a7c3937
MS
4416 error = PTR_ERR(new_dentry);
4417 if (IS_ERR(new_dentry))
4418 goto exit4;
4419 error = -EEXIST;
4420 if ((flags & RENAME_NOREPLACE) && d_is_positive(new_dentry))
4421 goto exit5;
da1ce067
MS
4422 if (flags & RENAME_EXCHANGE) {
4423 error = -ENOENT;
4424 if (d_is_negative(new_dentry))
4425 goto exit5;
4426
4427 if (!d_is_dir(new_dentry)) {
4428 error = -ENOTDIR;
f5beed75 4429 if (new_last.name[new_last.len])
da1ce067
MS
4430 goto exit5;
4431 }
4432 }
1da177e4 4433 /* unless the source is a directory trailing slashes give -ENOTDIR */
44b1d530 4434 if (!d_is_dir(old_dentry)) {
1da177e4 4435 error = -ENOTDIR;
f5beed75 4436 if (old_last.name[old_last.len])
0a7c3937 4437 goto exit5;
f5beed75 4438 if (!(flags & RENAME_EXCHANGE) && new_last.name[new_last.len])
0a7c3937 4439 goto exit5;
1da177e4
LT
4440 }
4441 /* source should not be ancestor of target */
4442 error = -EINVAL;
4443 if (old_dentry == trap)
0a7c3937 4444 goto exit5;
1da177e4 4445 /* target should not be an ancestor of source */
da1ce067
MS
4446 if (!(flags & RENAME_EXCHANGE))
4447 error = -ENOTEMPTY;
1da177e4
LT
4448 if (new_dentry == trap)
4449 goto exit5;
4450
f5beed75
AV
4451 error = security_path_rename(&old_path, old_dentry,
4452 &new_path, new_dentry, flags);
be6d3e56 4453 if (error)
c30dabfe 4454 goto exit5;
f5beed75
AV
4455 error = vfs_rename(old_path.dentry->d_inode, old_dentry,
4456 new_path.dentry->d_inode, new_dentry,
520c8b16 4457 &delegated_inode, flags);
1da177e4
LT
4458exit5:
4459 dput(new_dentry);
4460exit4:
4461 dput(old_dentry);
4462exit3:
f5beed75 4463 unlock_rename(new_path.dentry, old_path.dentry);
8e6d782c
BF
4464 if (delegated_inode) {
4465 error = break_deleg_wait(&delegated_inode);
4466 if (!error)
4467 goto retry_deleg;
4468 }
f5beed75 4469 mnt_drop_write(old_path.mnt);
1da177e4 4470exit2:
c6a94284
JL
4471 if (retry_estale(error, lookup_flags))
4472 should_retry = true;
f5beed75 4473 path_put(&new_path);
1da177e4 4474exit1:
f5beed75 4475 path_put(&old_path);
c6a94284
JL
4476 if (should_retry) {
4477 should_retry = false;
4478 lookup_flags |= LOOKUP_REVAL;
4479 goto retry;
4480 }
e886663c
JA
4481put_both:
4482 if (!IS_ERR(from))
4483 putname(from);
4484put_new:
4485 if (!IS_ERR(to))
4486 putname(to);
1da177e4
LT
4487 return error;
4488}
4489
ee81feb6
DB
4490SYSCALL_DEFINE5(renameat2, int, olddfd, const char __user *, oldname,
4491 int, newdfd, const char __user *, newname, unsigned int, flags)
4492{
e886663c
JA
4493 return do_renameat2(olddfd, getname(oldname), newdfd, getname(newname),
4494 flags);
ee81feb6
DB
4495}
4496
520c8b16
MS
4497SYSCALL_DEFINE4(renameat, int, olddfd, const char __user *, oldname,
4498 int, newdfd, const char __user *, newname)
4499{
e886663c
JA
4500 return do_renameat2(olddfd, getname(oldname), newdfd, getname(newname),
4501 0);
520c8b16
MS
4502}
4503
a26eab24 4504SYSCALL_DEFINE2(rename, const char __user *, oldname, const char __user *, newname)
5590ff0d 4505{
e886663c
JA
4506 return do_renameat2(AT_FDCWD, getname(oldname), AT_FDCWD,
4507 getname(newname), 0);
5590ff0d
UD
4508}
4509
5d826c84 4510int readlink_copy(char __user *buffer, int buflen, const char *link)
1da177e4 4511{
5d826c84 4512 int len = PTR_ERR(link);
1da177e4
LT
4513 if (IS_ERR(link))
4514 goto out;
4515
4516 len = strlen(link);
4517 if (len > (unsigned) buflen)
4518 len = buflen;
4519 if (copy_to_user(buffer, link, len))
4520 len = -EFAULT;
4521out:
4522 return len;
4523}
4524
fd4a0edf
MS
4525/**
4526 * vfs_readlink - copy symlink body into userspace buffer
4527 * @dentry: dentry on which to get symbolic link
4528 * @buffer: user memory pointer
4529 * @buflen: size of buffer
4530 *
4531 * Does not touch atime. That's up to the caller if necessary
4532 *
4533 * Does not call security hook.
4534 */
4535int vfs_readlink(struct dentry *dentry, char __user *buffer, int buflen)
4536{
4537 struct inode *inode = d_inode(dentry);
f2df5da6
AV
4538 DEFINE_DELAYED_CALL(done);
4539 const char *link;
4540 int res;
fd4a0edf 4541
76fca90e
MS
4542 if (unlikely(!(inode->i_opflags & IOP_DEFAULT_READLINK))) {
4543 if (unlikely(inode->i_op->readlink))
4544 return inode->i_op->readlink(dentry, buffer, buflen);
4545
4546 if (!d_is_symlink(dentry))
4547 return -EINVAL;
4548
4549 spin_lock(&inode->i_lock);
4550 inode->i_opflags |= IOP_DEFAULT_READLINK;
4551 spin_unlock(&inode->i_lock);
4552 }
fd4a0edf 4553
4c4f7c19 4554 link = READ_ONCE(inode->i_link);
f2df5da6
AV
4555 if (!link) {
4556 link = inode->i_op->get_link(dentry, inode, &done);
4557 if (IS_ERR(link))
4558 return PTR_ERR(link);
4559 }
4560 res = readlink_copy(buffer, buflen, link);
4561 do_delayed_call(&done);
4562 return res;
fd4a0edf
MS
4563}
4564EXPORT_SYMBOL(vfs_readlink);
1da177e4 4565
d60874cd
MS
4566/**
4567 * vfs_get_link - get symlink body
4568 * @dentry: dentry on which to get symbolic link
4569 * @done: caller needs to free returned data with this
4570 *
4571 * Calls security hook and i_op->get_link() on the supplied inode.
4572 *
4573 * It does not touch atime. That's up to the caller if necessary.
4574 *
4575 * Does not work on "special" symlinks like /proc/$$/fd/N
4576 */
4577const char *vfs_get_link(struct dentry *dentry, struct delayed_call *done)
4578{
4579 const char *res = ERR_PTR(-EINVAL);
4580 struct inode *inode = d_inode(dentry);
4581
4582 if (d_is_symlink(dentry)) {
4583 res = ERR_PTR(security_inode_readlink(dentry));
4584 if (!res)
4585 res = inode->i_op->get_link(dentry, inode, done);
4586 }
4587 return res;
4588}
4589EXPORT_SYMBOL(vfs_get_link);
4590
1da177e4 4591/* get the link contents into pagecache */
6b255391 4592const char *page_get_link(struct dentry *dentry, struct inode *inode,
fceef393 4593 struct delayed_call *callback)
1da177e4 4594{
ebd09abb
DG
4595 char *kaddr;
4596 struct page *page;
6b255391
AV
4597 struct address_space *mapping = inode->i_mapping;
4598
d3883d4f
AV
4599 if (!dentry) {
4600 page = find_get_page(mapping, 0);
4601 if (!page)
4602 return ERR_PTR(-ECHILD);
4603 if (!PageUptodate(page)) {
4604 put_page(page);
4605 return ERR_PTR(-ECHILD);
4606 }
4607 } else {
4608 page = read_mapping_page(mapping, 0, NULL);
4609 if (IS_ERR(page))
4610 return (char*)page;
4611 }
fceef393 4612 set_delayed_call(callback, page_put_link, page);
21fc61c7
AV
4613 BUG_ON(mapping_gfp_mask(mapping) & __GFP_HIGHMEM);
4614 kaddr = page_address(page);
6b255391 4615 nd_terminate_link(kaddr, inode->i_size, PAGE_SIZE - 1);
ebd09abb 4616 return kaddr;
1da177e4
LT
4617}
4618
6b255391 4619EXPORT_SYMBOL(page_get_link);
1da177e4 4620
fceef393 4621void page_put_link(void *arg)
1da177e4 4622{
fceef393 4623 put_page(arg);
1da177e4 4624}
4d359507 4625EXPORT_SYMBOL(page_put_link);
1da177e4 4626
aa80deab
AV
4627int page_readlink(struct dentry *dentry, char __user *buffer, int buflen)
4628{
fceef393 4629 DEFINE_DELAYED_CALL(done);
6b255391
AV
4630 int res = readlink_copy(buffer, buflen,
4631 page_get_link(dentry, d_inode(dentry),
fceef393
AV
4632 &done));
4633 do_delayed_call(&done);
aa80deab
AV
4634 return res;
4635}
4636EXPORT_SYMBOL(page_readlink);
4637
54566b2c
NP
4638/*
4639 * The nofs argument instructs pagecache_write_begin to pass AOP_FLAG_NOFS
4640 */
4641int __page_symlink(struct inode *inode, const char *symname, int len, int nofs)
1da177e4
LT
4642{
4643 struct address_space *mapping = inode->i_mapping;
0adb25d2 4644 struct page *page;
afddba49 4645 void *fsdata;
beb497ab 4646 int err;
c718a975 4647 unsigned int flags = 0;
54566b2c
NP
4648 if (nofs)
4649 flags |= AOP_FLAG_NOFS;
1da177e4 4650
7e53cac4 4651retry:
afddba49 4652 err = pagecache_write_begin(NULL, mapping, 0, len-1,
54566b2c 4653 flags, &page, &fsdata);
1da177e4 4654 if (err)
afddba49
NP
4655 goto fail;
4656
21fc61c7 4657 memcpy(page_address(page), symname, len-1);
afddba49
NP
4658
4659 err = pagecache_write_end(NULL, mapping, 0, len-1, len-1,
4660 page, fsdata);
1da177e4
LT
4661 if (err < 0)
4662 goto fail;
afddba49
NP
4663 if (err < len-1)
4664 goto retry;
4665
1da177e4
LT
4666 mark_inode_dirty(inode);
4667 return 0;
1da177e4
LT
4668fail:
4669 return err;
4670}
4d359507 4671EXPORT_SYMBOL(__page_symlink);
1da177e4 4672
0adb25d2
KK
4673int page_symlink(struct inode *inode, const char *symname, int len)
4674{
4675 return __page_symlink(inode, symname, len,
c62d2555 4676 !mapping_gfp_constraint(inode->i_mapping, __GFP_FS));
0adb25d2 4677}
4d359507 4678EXPORT_SYMBOL(page_symlink);
0adb25d2 4679
92e1d5be 4680const struct inode_operations page_symlink_inode_operations = {
6b255391 4681 .get_link = page_get_link,
1da177e4 4682};
1da177e4 4683EXPORT_SYMBOL(page_symlink_inode_operations);