1 /*
2 *
3 * Copyright (C) 2011 Novell Inc.
4 *
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 as published by
7 * the Free Software Foundation.
8 */
9
10 #include <linux/fs.h>
11 #include <linux/slab.h>
12 #include <linux/cred.h>
13 #include <linux/xattr.h>
14 #include <linux/posix_acl.h>
15 #include <linux/ratelimit.h>
16 #include "overlayfs.h"
17
18
ovl_setattr(struct dentry * dentry,struct iattr * attr)19 int ovl_setattr(struct dentry *dentry, struct iattr *attr)
20 {
21 int err;
22 bool full_copy_up = false;
23 struct dentry *upperdentry;
24 const struct cred *old_cred;
25
26 err = setattr_prepare(dentry, attr);
27 if (err)
28 return err;
29
30 err = ovl_want_write(dentry);
31 if (err)
32 goto out;
33
34 if (attr->ia_valid & ATTR_SIZE) {
35 struct inode *realinode = d_inode(ovl_dentry_real(dentry));
36
37 err = -ETXTBSY;
38 if (atomic_read(&realinode->i_writecount) < 0)
39 goto out_drop_write;
40
41 /* Truncate should trigger data copy up as well */
42 full_copy_up = true;
43 }
44
45 if (!full_copy_up)
46 err = ovl_copy_up(dentry);
47 else
48 err = ovl_copy_up_with_data(dentry);
49 if (!err) {
50 struct inode *winode = NULL;
51
52 upperdentry = ovl_dentry_upper(dentry);
53
54 if (attr->ia_valid & ATTR_SIZE) {
55 winode = d_inode(upperdentry);
56 err = get_write_access(winode);
57 if (err)
58 goto out_drop_write;
59 }
60
61 if (attr->ia_valid & (ATTR_KILL_SUID|ATTR_KILL_SGID))
62 attr->ia_valid &= ~ATTR_MODE;
63
64 inode_lock(upperdentry->d_inode);
65 old_cred = ovl_override_creds(dentry->d_sb);
66 err = notify_change(upperdentry, attr, NULL);
67 revert_creds(old_cred);
68 if (!err)
69 ovl_copyattr(upperdentry->d_inode, dentry->d_inode);
70 inode_unlock(upperdentry->d_inode);
71
72 if (winode)
73 put_write_access(winode);
74 }
75 out_drop_write:
76 ovl_drop_write(dentry);
77 out:
78 return err;
79 }
80
ovl_map_dev_ino(struct dentry * dentry,struct kstat * stat,struct ovl_layer * lower_layer)81 static int ovl_map_dev_ino(struct dentry *dentry, struct kstat *stat,
82 struct ovl_layer *lower_layer)
83 {
84 bool samefs = ovl_same_sb(dentry->d_sb);
85 unsigned int xinobits = ovl_xino_bits(dentry->d_sb);
86
87 if (samefs) {
88 /*
89 * When all layers are on the same fs, all real inode
90 * number are unique, so we use the overlay st_dev,
91 * which is friendly to du -x.
92 */
93 stat->dev = dentry->d_sb->s_dev;
94 return 0;
95 } else if (xinobits) {
96 unsigned int shift = 64 - xinobits;
97 /*
98 * All inode numbers of underlying fs should not be using the
99 * high xinobits, so we use high xinobits to partition the
100 * overlay st_ino address space. The high bits holds the fsid
101 * (upper fsid is 0). This way overlay inode numbers are unique
102 * and all inodes use overlay st_dev. Inode numbers are also
103 * persistent for a given layer configuration.
104 */
105 if (stat->ino >> shift) {
106 pr_warn_ratelimited("overlayfs: inode number too big (%pd2, ino=%llu, xinobits=%d)\n",
107 dentry, stat->ino, xinobits);
108 } else {
109 if (lower_layer)
110 stat->ino |= ((u64)lower_layer->fsid) << shift;
111
112 stat->dev = dentry->d_sb->s_dev;
113 return 0;
114 }
115 }
116
117 /* The inode could not be mapped to a unified st_ino address space */
118 if (S_ISDIR(dentry->d_inode->i_mode)) {
119 /*
120 * Always use the overlay st_dev for directories, so 'find
121 * -xdev' will scan the entire overlay mount and won't cross the
122 * overlay mount boundaries.
123 *
124 * If not all layers are on the same fs the pair {real st_ino;
125 * overlay st_dev} is not unique, so use the non persistent
126 * overlay st_ino for directories.
127 */
128 stat->dev = dentry->d_sb->s_dev;
129 stat->ino = dentry->d_inode->i_ino;
130 } else if (lower_layer && lower_layer->fsid) {
131 /*
132 * For non-samefs setup, if we cannot map all layers st_ino
133 * to a unified address space, we need to make sure that st_dev
134 * is unique per lower fs. Upper layer uses real st_dev and
135 * lower layers use the unique anonymous bdev assigned to the
136 * lower fs.
137 */
138 stat->dev = lower_layer->fs->pseudo_dev;
139 }
140
141 return 0;
142 }
143
ovl_getattr(const struct path * path,struct kstat * stat,u32 request_mask,unsigned int flags)144 int ovl_getattr(const struct path *path, struct kstat *stat,
145 u32 request_mask, unsigned int flags)
146 {
147 struct dentry *dentry = path->dentry;
148 enum ovl_path_type type;
149 struct path realpath;
150 const struct cred *old_cred;
151 bool is_dir = S_ISDIR(dentry->d_inode->i_mode);
152 bool samefs = ovl_same_sb(dentry->d_sb);
153 struct ovl_layer *lower_layer = NULL;
154 int err;
155 bool metacopy_blocks = false;
156
157 metacopy_blocks = ovl_is_metacopy_dentry(dentry);
158
159 type = ovl_path_real(dentry, &realpath);
160 old_cred = ovl_override_creds(dentry->d_sb);
161 err = vfs_getattr(&realpath, stat, request_mask, flags);
162 if (err)
163 goto out;
164
165 /*
166 * For non-dir or same fs, we use st_ino of the copy up origin.
167 * This guaranties constant st_dev/st_ino across copy up.
168 * With xino feature and non-samefs, we use st_ino of the copy up
169 * origin masked with high bits that represent the layer id.
170 *
171 * If lower filesystem supports NFS file handles, this also guaranties
172 * persistent st_ino across mount cycle.
173 */
174 if (!is_dir || samefs || ovl_xino_bits(dentry->d_sb)) {
175 if (!OVL_TYPE_UPPER(type)) {
176 lower_layer = ovl_layer_lower(dentry);
177 } else if (OVL_TYPE_ORIGIN(type)) {
178 struct kstat lowerstat;
179 u32 lowermask = STATX_INO | STATX_BLOCKS |
180 (!is_dir ? STATX_NLINK : 0);
181
182 ovl_path_lower(dentry, &realpath);
183 err = vfs_getattr(&realpath, &lowerstat,
184 lowermask, flags);
185 if (err)
186 goto out;
187
188 /*
189 * Lower hardlinks may be broken on copy up to different
190 * upper files, so we cannot use the lower origin st_ino
191 * for those different files, even for the same fs case.
192 *
193 * Similarly, several redirected dirs can point to the
194 * same dir on a lower layer. With the "verify_lower"
195 * feature, we do not use the lower origin st_ino, if
196 * we haven't verified that this redirect is unique.
197 *
198 * With inodes index enabled, it is safe to use st_ino
199 * of an indexed origin. The index validates that the
200 * upper hardlink is not broken and that a redirected
201 * dir is the only redirect to that origin.
202 */
203 if (ovl_test_flag(OVL_INDEX, d_inode(dentry)) ||
204 (!ovl_verify_lower(dentry->d_sb) &&
205 (is_dir || lowerstat.nlink == 1))) {
206 lower_layer = ovl_layer_lower(dentry);
207 /*
208 * Cannot use origin st_dev;st_ino because
209 * origin inode content may differ from overlay
210 * inode content.
211 */
212 if (samefs || lower_layer->fsid)
213 stat->ino = lowerstat.ino;
214 }
215
216 /*
217 * If we are querying a metacopy dentry and lower
218 * dentry is data dentry, then use the blocks we
219 * queried just now. We don't have to do additional
220 * vfs_getattr(). If lower itself is metacopy, then
221 * additional vfs_getattr() is unavoidable.
222 */
223 if (metacopy_blocks &&
224 realpath.dentry == ovl_dentry_lowerdata(dentry)) {
225 stat->blocks = lowerstat.blocks;
226 metacopy_blocks = false;
227 }
228 }
229
230 if (metacopy_blocks) {
231 /*
232 * If lower is not same as lowerdata or if there was
233 * no origin on upper, we can end up here.
234 */
235 struct kstat lowerdatastat;
236 u32 lowermask = STATX_BLOCKS;
237
238 ovl_path_lowerdata(dentry, &realpath);
239 err = vfs_getattr(&realpath, &lowerdatastat,
240 lowermask, flags);
241 if (err)
242 goto out;
243 stat->blocks = lowerdatastat.blocks;
244 }
245 }
246
247 err = ovl_map_dev_ino(dentry, stat, lower_layer);
248 if (err)
249 goto out;
250
251 /*
252 * It's probably not worth it to count subdirs to get the
253 * correct link count. nlink=1 seems to pacify 'find' and
254 * other utilities.
255 */
256 if (is_dir && OVL_TYPE_MERGE(type))
257 stat->nlink = 1;
258
259 /*
260 * Return the overlay inode nlinks for indexed upper inodes.
261 * Overlay inode nlink counts the union of the upper hardlinks
262 * and non-covered lower hardlinks. It does not include the upper
263 * index hardlink.
264 */
265 if (!is_dir && ovl_test_flag(OVL_INDEX, d_inode(dentry)))
266 stat->nlink = dentry->d_inode->i_nlink;
267
268 out:
269 revert_creds(old_cred);
270
271 return err;
272 }
273
ovl_permission(struct inode * inode,int mask)274 int ovl_permission(struct inode *inode, int mask)
275 {
276 struct inode *upperinode = ovl_inode_upper(inode);
277 struct inode *realinode = upperinode ?: ovl_inode_lower(inode);
278 const struct cred *old_cred;
279 int err;
280
281 /* Careful in RCU walk mode */
282 if (!realinode) {
283 WARN_ON(!(mask & MAY_NOT_BLOCK));
284 return -ECHILD;
285 }
286
287 /*
288 * Check overlay inode with the creds of task and underlying inode
289 * with creds of mounter
290 */
291 err = generic_permission(inode, mask);
292 if (err)
293 return err;
294
295 old_cred = ovl_override_creds(inode->i_sb);
296 if (!upperinode &&
297 !special_file(realinode->i_mode) && mask & MAY_WRITE) {
298 mask &= ~(MAY_WRITE | MAY_APPEND);
299 /* Make sure mounter can read file for copy up later */
300 mask |= MAY_READ;
301 }
302 err = inode_permission(realinode, mask);
303 revert_creds(old_cred);
304
305 return err;
306 }
307
ovl_get_link(struct dentry * dentry,struct inode * inode,struct delayed_call * done)308 static const char *ovl_get_link(struct dentry *dentry,
309 struct inode *inode,
310 struct delayed_call *done)
311 {
312 const struct cred *old_cred;
313 const char *p;
314
315 if (!dentry)
316 return ERR_PTR(-ECHILD);
317
318 old_cred = ovl_override_creds(dentry->d_sb);
319 p = vfs_get_link(ovl_dentry_real(dentry), done);
320 revert_creds(old_cred);
321 return p;
322 }
323
ovl_is_private_xattr(const char * name)324 bool ovl_is_private_xattr(const char *name)
325 {
326 return strncmp(name, OVL_XATTR_PREFIX,
327 sizeof(OVL_XATTR_PREFIX) - 1) == 0;
328 }
329
ovl_xattr_set(struct dentry * dentry,struct inode * inode,const char * name,const void * value,size_t size,int flags)330 int ovl_xattr_set(struct dentry *dentry, struct inode *inode, const char *name,
331 const void *value, size_t size, int flags)
332 {
333 int err;
334 struct dentry *upperdentry = ovl_i_dentry_upper(inode);
335 struct dentry *realdentry = upperdentry ?: ovl_dentry_lower(dentry);
336 const struct cred *old_cred;
337
338 err = ovl_want_write(dentry);
339 if (err)
340 goto out;
341
342 if (!value && !upperdentry) {
343 err = vfs_getxattr(realdentry, name, NULL, 0);
344 if (err < 0)
345 goto out_drop_write;
346 }
347
348 if (!upperdentry) {
349 err = ovl_copy_up(dentry);
350 if (err)
351 goto out_drop_write;
352
353 realdentry = ovl_dentry_upper(dentry);
354 }
355
356 old_cred = ovl_override_creds(dentry->d_sb);
357 if (value)
358 err = vfs_setxattr(realdentry, name, value, size, flags);
359 else {
360 WARN_ON(flags != XATTR_REPLACE);
361 err = vfs_removexattr(realdentry, name);
362 }
363 revert_creds(old_cred);
364
365 /* copy c/mtime */
366 ovl_copyattr(d_inode(realdentry), inode);
367
368 out_drop_write:
369 ovl_drop_write(dentry);
370 out:
371 return err;
372 }
373
ovl_xattr_get(struct dentry * dentry,struct inode * inode,const char * name,void * value,size_t size)374 int ovl_xattr_get(struct dentry *dentry, struct inode *inode, const char *name,
375 void *value, size_t size)
376 {
377 ssize_t res;
378 const struct cred *old_cred;
379 struct dentry *realdentry =
380 ovl_i_dentry_upper(inode) ?: ovl_dentry_lower(dentry);
381
382 old_cred = ovl_override_creds(dentry->d_sb);
383 res = vfs_getxattr(realdentry, name, value, size);
384 revert_creds(old_cred);
385 return res;
386 }
387
ovl_can_list(const char * s)388 static bool ovl_can_list(const char *s)
389 {
390 /* List all non-trusted xatts */
391 if (strncmp(s, XATTR_TRUSTED_PREFIX, XATTR_TRUSTED_PREFIX_LEN) != 0)
392 return true;
393
394 /* Never list trusted.overlay, list other trusted for superuser only */
395 return !ovl_is_private_xattr(s) &&
396 ns_capable_noaudit(&init_user_ns, CAP_SYS_ADMIN);
397 }
398
ovl_listxattr(struct dentry * dentry,char * list,size_t size)399 ssize_t ovl_listxattr(struct dentry *dentry, char *list, size_t size)
400 {
401 struct dentry *realdentry = ovl_dentry_real(dentry);
402 ssize_t res;
403 size_t len;
404 char *s;
405 const struct cred *old_cred;
406
407 old_cred = ovl_override_creds(dentry->d_sb);
408 res = vfs_listxattr(realdentry, list, size);
409 revert_creds(old_cred);
410 if (res <= 0 || size == 0)
411 return res;
412
413 /* filter out private xattrs */
414 for (s = list, len = res; len;) {
415 size_t slen = strnlen(s, len) + 1;
416
417 /* underlying fs providing us with an broken xattr list? */
418 if (WARN_ON(slen > len))
419 return -EIO;
420
421 len -= slen;
422 if (!ovl_can_list(s)) {
423 res -= slen;
424 memmove(s, s + slen, len);
425 } else {
426 s += slen;
427 }
428 }
429
430 return res;
431 }
432
ovl_get_acl(struct inode * inode,int type)433 struct posix_acl *ovl_get_acl(struct inode *inode, int type)
434 {
435 struct inode *realinode = ovl_inode_real(inode);
436 const struct cred *old_cred;
437 struct posix_acl *acl;
438
439 if (!IS_ENABLED(CONFIG_FS_POSIX_ACL) || !IS_POSIXACL(realinode))
440 return NULL;
441
442 old_cred = ovl_override_creds(inode->i_sb);
443 acl = get_acl(realinode, type);
444 revert_creds(old_cred);
445
446 return acl;
447 }
448
ovl_update_time(struct inode * inode,struct timespec64 * ts,int flags)449 int ovl_update_time(struct inode *inode, struct timespec64 *ts, int flags)
450 {
451 if (flags & S_ATIME) {
452 struct ovl_fs *ofs = inode->i_sb->s_fs_info;
453 struct path upperpath = {
454 .mnt = ofs->upper_mnt,
455 .dentry = ovl_upperdentry_dereference(OVL_I(inode)),
456 };
457
458 if (upperpath.dentry) {
459 touch_atime(&upperpath);
460 inode->i_atime = d_inode(upperpath.dentry)->i_atime;
461 }
462 }
463 return 0;
464 }
465
ovl_fiemap(struct inode * inode,struct fiemap_extent_info * fieinfo,u64 start,u64 len)466 static int ovl_fiemap(struct inode *inode, struct fiemap_extent_info *fieinfo,
467 u64 start, u64 len)
468 {
469 int err;
470 struct inode *realinode = ovl_inode_real(inode);
471 const struct cred *old_cred;
472
473 if (!realinode->i_op->fiemap)
474 return -EOPNOTSUPP;
475
476 old_cred = ovl_override_creds(inode->i_sb);
477
478 if (fieinfo->fi_flags & FIEMAP_FLAG_SYNC)
479 filemap_write_and_wait(realinode->i_mapping);
480
481 err = realinode->i_op->fiemap(realinode, fieinfo, start, len);
482 revert_creds(old_cred);
483
484 return err;
485 }
486
487 static const struct inode_operations ovl_file_inode_operations = {
488 .setattr = ovl_setattr,
489 .permission = ovl_permission,
490 .getattr = ovl_getattr,
491 .listxattr = ovl_listxattr,
492 .get_acl = ovl_get_acl,
493 .update_time = ovl_update_time,
494 .fiemap = ovl_fiemap,
495 };
496
497 static const struct inode_operations ovl_symlink_inode_operations = {
498 .setattr = ovl_setattr,
499 .get_link = ovl_get_link,
500 .getattr = ovl_getattr,
501 .listxattr = ovl_listxattr,
502 .update_time = ovl_update_time,
503 };
504
505 static const struct inode_operations ovl_special_inode_operations = {
506 .setattr = ovl_setattr,
507 .permission = ovl_permission,
508 .getattr = ovl_getattr,
509 .listxattr = ovl_listxattr,
510 .get_acl = ovl_get_acl,
511 .update_time = ovl_update_time,
512 };
513
514 static const struct address_space_operations ovl_aops = {
515 /* For O_DIRECT dentry_open() checks f_mapping->a_ops->direct_IO */
516 .direct_IO = noop_direct_IO,
517 };
518
519 /*
520 * It is possible to stack overlayfs instance on top of another
521 * overlayfs instance as lower layer. We need to annonate the
522 * stackable i_mutex locks according to stack level of the super
523 * block instance. An overlayfs instance can never be in stack
524 * depth 0 (there is always a real fs below it). An overlayfs
525 * inode lock will use the lockdep annotaion ovl_i_mutex_key[depth].
526 *
527 * For example, here is a snip from /proc/lockdep_chains after
528 * dir_iterate of nested overlayfs:
529 *
530 * [...] &ovl_i_mutex_dir_key[depth] (stack_depth=2)
531 * [...] &ovl_i_mutex_dir_key[depth]#2 (stack_depth=1)
532 * [...] &type->i_mutex_dir_key (stack_depth=0)
533 */
534 #define OVL_MAX_NESTING FILESYSTEM_MAX_STACK_DEPTH
535
ovl_lockdep_annotate_inode_mutex_key(struct inode * inode)536 static inline void ovl_lockdep_annotate_inode_mutex_key(struct inode *inode)
537 {
538 #ifdef CONFIG_LOCKDEP
539 static struct lock_class_key ovl_i_mutex_key[OVL_MAX_NESTING];
540 static struct lock_class_key ovl_i_mutex_dir_key[OVL_MAX_NESTING];
541 static struct lock_class_key ovl_i_lock_key[OVL_MAX_NESTING];
542
543 int depth = inode->i_sb->s_stack_depth - 1;
544
545 if (WARN_ON_ONCE(depth < 0 || depth >= OVL_MAX_NESTING))
546 depth = 0;
547
548 if (S_ISDIR(inode->i_mode))
549 lockdep_set_class(&inode->i_rwsem, &ovl_i_mutex_dir_key[depth]);
550 else
551 lockdep_set_class(&inode->i_rwsem, &ovl_i_mutex_key[depth]);
552
553 lockdep_set_class(&OVL_I(inode)->lock, &ovl_i_lock_key[depth]);
554 #endif
555 }
556
ovl_fill_inode(struct inode * inode,umode_t mode,dev_t rdev,unsigned long ino,int fsid)557 static void ovl_fill_inode(struct inode *inode, umode_t mode, dev_t rdev,
558 unsigned long ino, int fsid)
559 {
560 int xinobits = ovl_xino_bits(inode->i_sb);
561
562 /*
563 * When d_ino is consistent with st_ino (samefs or i_ino has enough
564 * bits to encode layer), set the same value used for st_ino to i_ino,
565 * so inode number exposed via /proc/locks and a like will be
566 * consistent with d_ino and st_ino values. An i_ino value inconsistent
567 * with d_ino also causes nfsd readdirplus to fail. When called from
568 * ovl_new_inode(), ino arg is 0, so i_ino will be updated to real
569 * upper inode i_ino on ovl_inode_init() or ovl_inode_update().
570 */
571 if (ovl_same_sb(inode->i_sb) || xinobits) {
572 inode->i_ino = ino;
573 if (xinobits && fsid && !(ino >> (64 - xinobits)))
574 inode->i_ino |= (unsigned long)fsid << (64 - xinobits);
575 } else {
576 inode->i_ino = get_next_ino();
577 }
578 inode->i_mode = mode;
579 inode->i_flags |= S_NOCMTIME;
580 #ifdef CONFIG_FS_POSIX_ACL
581 inode->i_acl = inode->i_default_acl = ACL_DONT_CACHE;
582 #endif
583
584 ovl_lockdep_annotate_inode_mutex_key(inode);
585
586 switch (mode & S_IFMT) {
587 case S_IFREG:
588 inode->i_op = &ovl_file_inode_operations;
589 inode->i_fop = &ovl_file_operations;
590 inode->i_mapping->a_ops = &ovl_aops;
591 break;
592
593 case S_IFDIR:
594 inode->i_op = &ovl_dir_inode_operations;
595 inode->i_fop = &ovl_dir_operations;
596 break;
597
598 case S_IFLNK:
599 inode->i_op = &ovl_symlink_inode_operations;
600 break;
601
602 default:
603 inode->i_op = &ovl_special_inode_operations;
604 init_special_inode(inode, mode, rdev);
605 break;
606 }
607 }
608
609 /*
610 * With inodes index enabled, an overlay inode nlink counts the union of upper
611 * hardlinks and non-covered lower hardlinks. During the lifetime of a non-pure
612 * upper inode, the following nlink modifying operations can happen:
613 *
614 * 1. Lower hardlink copy up
615 * 2. Upper hardlink created, unlinked or renamed over
616 * 3. Lower hardlink whiteout or renamed over
617 *
618 * For the first, copy up case, the union nlink does not change, whether the
619 * operation succeeds or fails, but the upper inode nlink may change.
620 * Therefore, before copy up, we store the union nlink value relative to the
621 * lower inode nlink in the index inode xattr trusted.overlay.nlink.
622 *
623 * For the second, upper hardlink case, the union nlink should be incremented
624 * or decremented IFF the operation succeeds, aligned with nlink change of the
625 * upper inode. Therefore, before link/unlink/rename, we store the union nlink
626 * value relative to the upper inode nlink in the index inode.
627 *
628 * For the last, lower cover up case, we simplify things by preceding the
629 * whiteout or cover up with copy up. This makes sure that there is an index
630 * upper inode where the nlink xattr can be stored before the copied up upper
631 * entry is unlink.
632 */
633 #define OVL_NLINK_ADD_UPPER (1 << 0)
634
635 /*
636 * On-disk format for indexed nlink:
637 *
638 * nlink relative to the upper inode - "U[+-]NUM"
639 * nlink relative to the lower inode - "L[+-]NUM"
640 */
641
ovl_set_nlink_common(struct dentry * dentry,struct dentry * realdentry,const char * format)642 static int ovl_set_nlink_common(struct dentry *dentry,
643 struct dentry *realdentry, const char *format)
644 {
645 struct inode *inode = d_inode(dentry);
646 struct inode *realinode = d_inode(realdentry);
647 char buf[13];
648 int len;
649
650 len = snprintf(buf, sizeof(buf), format,
651 (int) (inode->i_nlink - realinode->i_nlink));
652
653 if (WARN_ON(len >= sizeof(buf)))
654 return -EIO;
655
656 return ovl_do_setxattr(ovl_dentry_upper(dentry),
657 OVL_XATTR_NLINK, buf, len, 0);
658 }
659
ovl_set_nlink_upper(struct dentry * dentry)660 int ovl_set_nlink_upper(struct dentry *dentry)
661 {
662 return ovl_set_nlink_common(dentry, ovl_dentry_upper(dentry), "U%+i");
663 }
664
ovl_set_nlink_lower(struct dentry * dentry)665 int ovl_set_nlink_lower(struct dentry *dentry)
666 {
667 return ovl_set_nlink_common(dentry, ovl_dentry_lower(dentry), "L%+i");
668 }
669
ovl_get_nlink(struct dentry * lowerdentry,struct dentry * upperdentry,unsigned int fallback)670 unsigned int ovl_get_nlink(struct dentry *lowerdentry,
671 struct dentry *upperdentry,
672 unsigned int fallback)
673 {
674 int nlink_diff;
675 int nlink;
676 char buf[13];
677 int err;
678
679 if (!lowerdentry || !upperdentry || d_inode(lowerdentry)->i_nlink == 1)
680 return fallback;
681
682 err = vfs_getxattr(upperdentry, OVL_XATTR_NLINK, &buf, sizeof(buf) - 1);
683 if (err < 0)
684 goto fail;
685
686 buf[err] = '\0';
687 if ((buf[0] != 'L' && buf[0] != 'U') ||
688 (buf[1] != '+' && buf[1] != '-'))
689 goto fail;
690
691 err = kstrtoint(buf + 1, 10, &nlink_diff);
692 if (err < 0)
693 goto fail;
694
695 nlink = d_inode(buf[0] == 'L' ? lowerdentry : upperdentry)->i_nlink;
696 nlink += nlink_diff;
697
698 if (nlink <= 0)
699 goto fail;
700
701 return nlink;
702
703 fail:
704 pr_warn_ratelimited("overlayfs: failed to get index nlink (%pd2, err=%i)\n",
705 upperdentry, err);
706 return fallback;
707 }
708
ovl_new_inode(struct super_block * sb,umode_t mode,dev_t rdev)709 struct inode *ovl_new_inode(struct super_block *sb, umode_t mode, dev_t rdev)
710 {
711 struct inode *inode;
712
713 inode = new_inode(sb);
714 if (inode)
715 ovl_fill_inode(inode, mode, rdev, 0, 0);
716
717 return inode;
718 }
719
ovl_inode_test(struct inode * inode,void * data)720 static int ovl_inode_test(struct inode *inode, void *data)
721 {
722 return inode->i_private == data;
723 }
724
ovl_inode_set(struct inode * inode,void * data)725 static int ovl_inode_set(struct inode *inode, void *data)
726 {
727 inode->i_private = data;
728 return 0;
729 }
730
ovl_verify_inode(struct inode * inode,struct dentry * lowerdentry,struct dentry * upperdentry,bool strict)731 static bool ovl_verify_inode(struct inode *inode, struct dentry *lowerdentry,
732 struct dentry *upperdentry, bool strict)
733 {
734 /*
735 * For directories, @strict verify from lookup path performs consistency
736 * checks, so NULL lower/upper in dentry must match NULL lower/upper in
737 * inode. Non @strict verify from NFS handle decode path passes NULL for
738 * 'unknown' lower/upper.
739 */
740 if (S_ISDIR(inode->i_mode) && strict) {
741 /* Real lower dir moved to upper layer under us? */
742 if (!lowerdentry && ovl_inode_lower(inode))
743 return false;
744
745 /* Lookup of an uncovered redirect origin? */
746 if (!upperdentry && ovl_inode_upper(inode))
747 return false;
748 }
749
750 /*
751 * Allow non-NULL lower inode in ovl_inode even if lowerdentry is NULL.
752 * This happens when finding a copied up overlay inode for a renamed
753 * or hardlinked overlay dentry and lower dentry cannot be followed
754 * by origin because lower fs does not support file handles.
755 */
756 if (lowerdentry && ovl_inode_lower(inode) != d_inode(lowerdentry))
757 return false;
758
759 /*
760 * Allow non-NULL __upperdentry in inode even if upperdentry is NULL.
761 * This happens when finding a lower alias for a copied up hard link.
762 */
763 if (upperdentry && ovl_inode_upper(inode) != d_inode(upperdentry))
764 return false;
765
766 return true;
767 }
768
ovl_lookup_inode(struct super_block * sb,struct dentry * real,bool is_upper)769 struct inode *ovl_lookup_inode(struct super_block *sb, struct dentry *real,
770 bool is_upper)
771 {
772 struct inode *inode, *key = d_inode(real);
773
774 inode = ilookup5(sb, (unsigned long) key, ovl_inode_test, key);
775 if (!inode)
776 return NULL;
777
778 if (!ovl_verify_inode(inode, is_upper ? NULL : real,
779 is_upper ? real : NULL, false)) {
780 iput(inode);
781 return ERR_PTR(-ESTALE);
782 }
783
784 return inode;
785 }
786
ovl_lookup_trap_inode(struct super_block * sb,struct dentry * dir)787 bool ovl_lookup_trap_inode(struct super_block *sb, struct dentry *dir)
788 {
789 struct inode *key = d_inode(dir);
790 struct inode *trap;
791 bool res;
792
793 trap = ilookup5(sb, (unsigned long) key, ovl_inode_test, key);
794 if (!trap)
795 return false;
796
797 res = IS_DEADDIR(trap) && !ovl_inode_upper(trap) &&
798 !ovl_inode_lower(trap);
799
800 iput(trap);
801 return res;
802 }
803
804 /*
805 * Create an inode cache entry for layer root dir, that will intentionally
806 * fail ovl_verify_inode(), so any lookup that will find some layer root
807 * will fail.
808 */
ovl_get_trap_inode(struct super_block * sb,struct dentry * dir)809 struct inode *ovl_get_trap_inode(struct super_block *sb, struct dentry *dir)
810 {
811 struct inode *key = d_inode(dir);
812 struct inode *trap;
813
814 if (!d_is_dir(dir))
815 return ERR_PTR(-ENOTDIR);
816
817 trap = iget5_locked(sb, (unsigned long) key, ovl_inode_test,
818 ovl_inode_set, key);
819 if (!trap)
820 return ERR_PTR(-ENOMEM);
821
822 if (!(trap->i_state & I_NEW)) {
823 /* Conflicting layer roots? */
824 iput(trap);
825 return ERR_PTR(-ELOOP);
826 }
827
828 trap->i_mode = S_IFDIR;
829 trap->i_flags = S_DEAD;
830 unlock_new_inode(trap);
831
832 return trap;
833 }
834
835 /*
836 * Does overlay inode need to be hashed by lower inode?
837 */
ovl_hash_bylower(struct super_block * sb,struct dentry * upper,struct dentry * lower,struct dentry * index)838 static bool ovl_hash_bylower(struct super_block *sb, struct dentry *upper,
839 struct dentry *lower, struct dentry *index)
840 {
841 struct ovl_fs *ofs = sb->s_fs_info;
842
843 /* No, if pure upper */
844 if (!lower)
845 return false;
846
847 /* Yes, if already indexed */
848 if (index)
849 return true;
850
851 /* Yes, if won't be copied up */
852 if (!ofs->upper_mnt)
853 return true;
854
855 /* No, if lower hardlink is or will be broken on copy up */
856 if ((upper || !ovl_indexdir(sb)) &&
857 !d_is_dir(lower) && d_inode(lower)->i_nlink > 1)
858 return false;
859
860 /* No, if non-indexed upper with NFS export */
861 if (sb->s_export_op && upper)
862 return false;
863
864 /* Otherwise, hash by lower inode for fsnotify */
865 return true;
866 }
867
ovl_iget5(struct super_block * sb,struct inode * newinode,struct inode * key)868 static struct inode *ovl_iget5(struct super_block *sb, struct inode *newinode,
869 struct inode *key)
870 {
871 return newinode ? inode_insert5(newinode, (unsigned long) key,
872 ovl_inode_test, ovl_inode_set, key) :
873 iget5_locked(sb, (unsigned long) key,
874 ovl_inode_test, ovl_inode_set, key);
875 }
876
ovl_get_inode(struct super_block * sb,struct ovl_inode_params * oip)877 struct inode *ovl_get_inode(struct super_block *sb,
878 struct ovl_inode_params *oip)
879 {
880 struct dentry *upperdentry = oip->upperdentry;
881 struct ovl_path *lowerpath = oip->lowerpath;
882 struct inode *realinode = upperdentry ? d_inode(upperdentry) : NULL;
883 struct inode *inode;
884 struct dentry *lowerdentry = lowerpath ? lowerpath->dentry : NULL;
885 bool bylower = ovl_hash_bylower(sb, upperdentry, lowerdentry,
886 oip->index);
887 int fsid = bylower ? lowerpath->layer->fsid : 0;
888 bool is_dir, metacopy = false;
889 unsigned long ino = 0;
890 int err = oip->newinode ? -EEXIST : -ENOMEM;
891
892 if (!realinode)
893 realinode = d_inode(lowerdentry);
894
895 /*
896 * Copy up origin (lower) may exist for non-indexed upper, but we must
897 * not use lower as hash key if this is a broken hardlink.
898 */
899 is_dir = S_ISDIR(realinode->i_mode);
900 if (upperdentry || bylower) {
901 struct inode *key = d_inode(bylower ? lowerdentry :
902 upperdentry);
903 unsigned int nlink = is_dir ? 1 : realinode->i_nlink;
904
905 inode = ovl_iget5(sb, oip->newinode, key);
906 if (!inode)
907 goto out_err;
908 if (!(inode->i_state & I_NEW)) {
909 /*
910 * Verify that the underlying files stored in the inode
911 * match those in the dentry.
912 */
913 if (!ovl_verify_inode(inode, lowerdentry, upperdentry,
914 true)) {
915 iput(inode);
916 err = -ESTALE;
917 goto out_err;
918 }
919
920 dput(upperdentry);
921 kfree(oip->redirect);
922 goto out;
923 }
924
925 /* Recalculate nlink for non-dir due to indexing */
926 if (!is_dir)
927 nlink = ovl_get_nlink(lowerdentry, upperdentry, nlink);
928 set_nlink(inode, nlink);
929 ino = key->i_ino;
930 } else {
931 /* Lower hardlink that will be broken on copy up */
932 inode = new_inode(sb);
933 if (!inode) {
934 err = -ENOMEM;
935 goto out_err;
936 }
937 ino = realinode->i_ino;
938 fsid = lowerpath->layer->fsid;
939 }
940 ovl_fill_inode(inode, realinode->i_mode, realinode->i_rdev, ino, fsid);
941 ovl_inode_init(inode, upperdentry, lowerdentry, oip->lowerdata);
942
943 if (upperdentry && ovl_is_impuredir(upperdentry))
944 ovl_set_flag(OVL_IMPURE, inode);
945
946 if (oip->index)
947 ovl_set_flag(OVL_INDEX, inode);
948
949 if (upperdentry) {
950 err = ovl_check_metacopy_xattr(upperdentry);
951 if (err < 0)
952 goto out_err;
953 metacopy = err;
954 if (!metacopy)
955 ovl_set_flag(OVL_UPPERDATA, inode);
956 }
957
958 OVL_I(inode)->redirect = oip->redirect;
959
960 if (bylower)
961 ovl_set_flag(OVL_CONST_INO, inode);
962
963 /* Check for non-merge dir that may have whiteouts */
964 if (is_dir) {
965 if (((upperdentry && lowerdentry) || oip->numlower > 1) ||
966 ovl_check_origin_xattr(upperdentry ?: lowerdentry)) {
967 ovl_set_flag(OVL_WHITEOUTS, inode);
968 }
969 }
970
971 if (inode->i_state & I_NEW)
972 unlock_new_inode(inode);
973 out:
974 return inode;
975
976 out_err:
977 pr_warn_ratelimited("overlayfs: failed to get inode (%i)\n", err);
978 inode = ERR_PTR(err);
979 goto out;
980 }
981