1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Copyright (C) 2011 Novell Inc.
4 * Copyright (C) 2016 Red Hat, Inc.
5 */
6
7 #include <linux/fs.h>
8 #include <linux/mount.h>
9 #include <linux/slab.h>
10 #include <linux/cred.h>
11 #include <linux/xattr.h>
12 #include <linux/exportfs.h>
13 #include <linux/fileattr.h>
14 #include <linux/uuid.h>
15 #include <linux/namei.h>
16 #include <linux/ratelimit.h>
17 #include "overlayfs.h"
18
ovl_want_write(struct dentry * dentry)19 int ovl_want_write(struct dentry *dentry)
20 {
21 struct ovl_fs *ofs = dentry->d_sb->s_fs_info;
22 return mnt_want_write(ovl_upper_mnt(ofs));
23 }
24
ovl_drop_write(struct dentry * dentry)25 void ovl_drop_write(struct dentry *dentry)
26 {
27 struct ovl_fs *ofs = dentry->d_sb->s_fs_info;
28 mnt_drop_write(ovl_upper_mnt(ofs));
29 }
30
ovl_workdir(struct dentry * dentry)31 struct dentry *ovl_workdir(struct dentry *dentry)
32 {
33 struct ovl_fs *ofs = dentry->d_sb->s_fs_info;
34 return ofs->workdir;
35 }
36
ovl_override_creds(struct super_block * sb)37 const struct cred *ovl_override_creds(struct super_block *sb)
38 {
39 struct ovl_fs *ofs = sb->s_fs_info;
40
41 if (!ofs->config.override_creds)
42 return NULL;
43 return override_creds(ofs->creator_cred);
44 }
45
ovl_revert_creds(struct super_block * sb,const struct cred * old_cred)46 void ovl_revert_creds(struct super_block *sb, const struct cred *old_cred)
47 {
48 if (old_cred)
49 revert_creds(old_cred);
50 }
51
52
53 /*
54 * Check if underlying fs supports file handles and try to determine encoding
55 * type, in order to deduce maximum inode number used by fs.
56 *
57 * Return 0 if file handles are not supported.
58 * Return 1 (FILEID_INO32_GEN) if fs uses the default 32bit inode encoding.
59 * Return -1 if fs uses a non default encoding with unknown inode size.
60 */
ovl_can_decode_fh(struct super_block * sb)61 int ovl_can_decode_fh(struct super_block *sb)
62 {
63 if (!capable(CAP_DAC_READ_SEARCH))
64 return 0;
65
66 if (!sb->s_export_op || !sb->s_export_op->fh_to_dentry)
67 return 0;
68
69 return sb->s_export_op->encode_fh ? -1 : FILEID_INO32_GEN;
70 }
71
ovl_indexdir(struct super_block * sb)72 struct dentry *ovl_indexdir(struct super_block *sb)
73 {
74 struct ovl_fs *ofs = sb->s_fs_info;
75
76 return ofs->indexdir;
77 }
78
79 /* Index all files on copy up. For now only enabled for NFS export */
ovl_index_all(struct super_block * sb)80 bool ovl_index_all(struct super_block *sb)
81 {
82 struct ovl_fs *ofs = sb->s_fs_info;
83
84 return ofs->config.nfs_export && ofs->config.index;
85 }
86
87 /* Verify lower origin on lookup. For now only enabled for NFS export */
ovl_verify_lower(struct super_block * sb)88 bool ovl_verify_lower(struct super_block *sb)
89 {
90 struct ovl_fs *ofs = sb->s_fs_info;
91
92 return ofs->config.nfs_export && ofs->config.index;
93 }
94
ovl_alloc_entry(unsigned int numlower)95 struct ovl_entry *ovl_alloc_entry(unsigned int numlower)
96 {
97 size_t size = offsetof(struct ovl_entry, lowerstack[numlower]);
98 struct ovl_entry *oe = kzalloc(size, GFP_KERNEL);
99
100 if (oe)
101 oe->numlower = numlower;
102
103 return oe;
104 }
105
106 #define OVL_D_REVALIDATE (DCACHE_OP_REVALIDATE | DCACHE_OP_WEAK_REVALIDATE)
107
ovl_dentry_remote(struct dentry * dentry)108 bool ovl_dentry_remote(struct dentry *dentry)
109 {
110 return dentry->d_flags & OVL_D_REVALIDATE;
111 }
112
ovl_dentry_update_reval(struct dentry * dentry,struct dentry * realdentry)113 void ovl_dentry_update_reval(struct dentry *dentry, struct dentry *realdentry)
114 {
115 if (!ovl_dentry_remote(realdentry))
116 return;
117
118 spin_lock(&dentry->d_lock);
119 dentry->d_flags |= realdentry->d_flags & OVL_D_REVALIDATE;
120 spin_unlock(&dentry->d_lock);
121 }
122
ovl_dentry_init_reval(struct dentry * dentry,struct dentry * upperdentry)123 void ovl_dentry_init_reval(struct dentry *dentry, struct dentry *upperdentry)
124 {
125 return ovl_dentry_init_flags(dentry, upperdentry, OVL_D_REVALIDATE);
126 }
127
ovl_dentry_init_flags(struct dentry * dentry,struct dentry * upperdentry,unsigned int mask)128 void ovl_dentry_init_flags(struct dentry *dentry, struct dentry *upperdentry,
129 unsigned int mask)
130 {
131 struct ovl_entry *oe = OVL_E(dentry);
132 unsigned int i, flags = 0;
133
134 if (upperdentry)
135 flags |= upperdentry->d_flags;
136 for (i = 0; i < oe->numlower; i++)
137 flags |= oe->lowerstack[i].dentry->d_flags;
138
139 spin_lock(&dentry->d_lock);
140 dentry->d_flags &= ~mask;
141 dentry->d_flags |= flags & mask;
142 spin_unlock(&dentry->d_lock);
143 }
144
ovl_dentry_weird(struct dentry * dentry)145 bool ovl_dentry_weird(struct dentry *dentry)
146 {
147 return dentry->d_flags & (DCACHE_NEED_AUTOMOUNT |
148 DCACHE_MANAGE_TRANSIT |
149 DCACHE_OP_HASH |
150 DCACHE_OP_COMPARE);
151 }
152
ovl_path_type(struct dentry * dentry)153 enum ovl_path_type ovl_path_type(struct dentry *dentry)
154 {
155 struct ovl_entry *oe = dentry->d_fsdata;
156 enum ovl_path_type type = 0;
157
158 if (ovl_dentry_upper(dentry)) {
159 type = __OVL_PATH_UPPER;
160
161 /*
162 * Non-dir dentry can hold lower dentry of its copy up origin.
163 */
164 if (oe->numlower) {
165 if (ovl_test_flag(OVL_CONST_INO, d_inode(dentry)))
166 type |= __OVL_PATH_ORIGIN;
167 if (d_is_dir(dentry) ||
168 !ovl_has_upperdata(d_inode(dentry)))
169 type |= __OVL_PATH_MERGE;
170 }
171 } else {
172 if (oe->numlower > 1)
173 type |= __OVL_PATH_MERGE;
174 }
175 return type;
176 }
177
ovl_path_upper(struct dentry * dentry,struct path * path)178 void ovl_path_upper(struct dentry *dentry, struct path *path)
179 {
180 struct ovl_fs *ofs = dentry->d_sb->s_fs_info;
181
182 path->mnt = ovl_upper_mnt(ofs);
183 path->dentry = ovl_dentry_upper(dentry);
184 }
185
ovl_path_lower(struct dentry * dentry,struct path * path)186 void ovl_path_lower(struct dentry *dentry, struct path *path)
187 {
188 struct ovl_entry *oe = dentry->d_fsdata;
189
190 if (oe->numlower) {
191 path->mnt = oe->lowerstack[0].layer->mnt;
192 path->dentry = oe->lowerstack[0].dentry;
193 } else {
194 *path = (struct path) { };
195 }
196 }
197
ovl_path_lowerdata(struct dentry * dentry,struct path * path)198 void ovl_path_lowerdata(struct dentry *dentry, struct path *path)
199 {
200 struct ovl_entry *oe = dentry->d_fsdata;
201
202 if (oe->numlower) {
203 path->mnt = oe->lowerstack[oe->numlower - 1].layer->mnt;
204 path->dentry = oe->lowerstack[oe->numlower - 1].dentry;
205 } else {
206 *path = (struct path) { };
207 }
208 }
209
ovl_path_real(struct dentry * dentry,struct path * path)210 enum ovl_path_type ovl_path_real(struct dentry *dentry, struct path *path)
211 {
212 enum ovl_path_type type = ovl_path_type(dentry);
213
214 if (!OVL_TYPE_UPPER(type))
215 ovl_path_lower(dentry, path);
216 else
217 ovl_path_upper(dentry, path);
218
219 return type;
220 }
221
ovl_path_realdata(struct dentry * dentry,struct path * path)222 enum ovl_path_type ovl_path_realdata(struct dentry *dentry, struct path *path)
223 {
224 enum ovl_path_type type = ovl_path_type(dentry);
225
226 WARN_ON_ONCE(d_is_dir(dentry));
227
228 if (!OVL_TYPE_UPPER(type) || OVL_TYPE_MERGE(type))
229 ovl_path_lowerdata(dentry, path);
230 else
231 ovl_path_upper(dentry, path);
232
233 return type;
234 }
235
ovl_dentry_upper(struct dentry * dentry)236 struct dentry *ovl_dentry_upper(struct dentry *dentry)
237 {
238 return ovl_upperdentry_dereference(OVL_I(d_inode(dentry)));
239 }
240
ovl_dentry_lower(struct dentry * dentry)241 struct dentry *ovl_dentry_lower(struct dentry *dentry)
242 {
243 struct ovl_entry *oe = dentry->d_fsdata;
244
245 return oe->numlower ? oe->lowerstack[0].dentry : NULL;
246 }
247
ovl_layer_lower(struct dentry * dentry)248 const struct ovl_layer *ovl_layer_lower(struct dentry *dentry)
249 {
250 struct ovl_entry *oe = dentry->d_fsdata;
251
252 return oe->numlower ? oe->lowerstack[0].layer : NULL;
253 }
254
255 /*
256 * ovl_dentry_lower() could return either a data dentry or metacopy dentry
257 * depending on what is stored in lowerstack[0]. At times we need to find
258 * lower dentry which has data (and not metacopy dentry). This helper
259 * returns the lower data dentry.
260 */
ovl_dentry_lowerdata(struct dentry * dentry)261 struct dentry *ovl_dentry_lowerdata(struct dentry *dentry)
262 {
263 struct ovl_entry *oe = dentry->d_fsdata;
264
265 return oe->numlower ? oe->lowerstack[oe->numlower - 1].dentry : NULL;
266 }
267
ovl_dentry_real(struct dentry * dentry)268 struct dentry *ovl_dentry_real(struct dentry *dentry)
269 {
270 return ovl_dentry_upper(dentry) ?: ovl_dentry_lower(dentry);
271 }
272
ovl_i_dentry_upper(struct inode * inode)273 struct dentry *ovl_i_dentry_upper(struct inode *inode)
274 {
275 return ovl_upperdentry_dereference(OVL_I(inode));
276 }
277
ovl_i_path_real(struct inode * inode,struct path * path)278 struct inode *ovl_i_path_real(struct inode *inode, struct path *path)
279 {
280 path->dentry = ovl_i_dentry_upper(inode);
281 if (!path->dentry) {
282 path->dentry = OVL_I(inode)->lowerpath.dentry;
283 path->mnt = OVL_I(inode)->lowerpath.layer->mnt;
284 } else {
285 path->mnt = ovl_upper_mnt(OVL_FS(inode->i_sb));
286 }
287
288 return path->dentry ? d_inode_rcu(path->dentry) : NULL;
289 }
290
ovl_inode_upper(struct inode * inode)291 struct inode *ovl_inode_upper(struct inode *inode)
292 {
293 struct dentry *upperdentry = ovl_i_dentry_upper(inode);
294
295 return upperdentry ? d_inode(upperdentry) : NULL;
296 }
297
ovl_inode_lower(struct inode * inode)298 struct inode *ovl_inode_lower(struct inode *inode)
299 {
300 struct dentry *lowerdentry = OVL_I(inode)->lowerpath.dentry;
301
302 return lowerdentry ? d_inode(lowerdentry) : NULL;
303 }
304
ovl_inode_real(struct inode * inode)305 struct inode *ovl_inode_real(struct inode *inode)
306 {
307 return ovl_inode_upper(inode) ?: ovl_inode_lower(inode);
308 }
309
310 /* Return inode which contains lower data. Do not return metacopy */
ovl_inode_lowerdata(struct inode * inode)311 struct inode *ovl_inode_lowerdata(struct inode *inode)
312 {
313 if (WARN_ON(!S_ISREG(inode->i_mode)))
314 return NULL;
315
316 return OVL_I(inode)->lowerdata ?: ovl_inode_lower(inode);
317 }
318
319 /* Return real inode which contains data. Does not return metacopy inode */
ovl_inode_realdata(struct inode * inode)320 struct inode *ovl_inode_realdata(struct inode *inode)
321 {
322 struct inode *upperinode;
323
324 upperinode = ovl_inode_upper(inode);
325 if (upperinode && ovl_has_upperdata(inode))
326 return upperinode;
327
328 return ovl_inode_lowerdata(inode);
329 }
330
ovl_dir_cache(struct inode * inode)331 struct ovl_dir_cache *ovl_dir_cache(struct inode *inode)
332 {
333 return OVL_I(inode)->cache;
334 }
335
ovl_set_dir_cache(struct inode * inode,struct ovl_dir_cache * cache)336 void ovl_set_dir_cache(struct inode *inode, struct ovl_dir_cache *cache)
337 {
338 OVL_I(inode)->cache = cache;
339 }
340
ovl_dentry_set_flag(unsigned long flag,struct dentry * dentry)341 void ovl_dentry_set_flag(unsigned long flag, struct dentry *dentry)
342 {
343 set_bit(flag, &OVL_E(dentry)->flags);
344 }
345
ovl_dentry_clear_flag(unsigned long flag,struct dentry * dentry)346 void ovl_dentry_clear_flag(unsigned long flag, struct dentry *dentry)
347 {
348 clear_bit(flag, &OVL_E(dentry)->flags);
349 }
350
ovl_dentry_test_flag(unsigned long flag,struct dentry * dentry)351 bool ovl_dentry_test_flag(unsigned long flag, struct dentry *dentry)
352 {
353 return test_bit(flag, &OVL_E(dentry)->flags);
354 }
355
ovl_dentry_is_opaque(struct dentry * dentry)356 bool ovl_dentry_is_opaque(struct dentry *dentry)
357 {
358 return ovl_dentry_test_flag(OVL_E_OPAQUE, dentry);
359 }
360
ovl_dentry_is_whiteout(struct dentry * dentry)361 bool ovl_dentry_is_whiteout(struct dentry *dentry)
362 {
363 return !dentry->d_inode && ovl_dentry_is_opaque(dentry);
364 }
365
ovl_dentry_set_opaque(struct dentry * dentry)366 void ovl_dentry_set_opaque(struct dentry *dentry)
367 {
368 ovl_dentry_set_flag(OVL_E_OPAQUE, dentry);
369 }
370
371 /*
372 * For hard links and decoded file handles, it's possible for ovl_dentry_upper()
373 * to return positive, while there's no actual upper alias for the inode.
374 * Copy up code needs to know about the existence of the upper alias, so it
375 * can't use ovl_dentry_upper().
376 */
ovl_dentry_has_upper_alias(struct dentry * dentry)377 bool ovl_dentry_has_upper_alias(struct dentry *dentry)
378 {
379 return ovl_dentry_test_flag(OVL_E_UPPER_ALIAS, dentry);
380 }
381
ovl_dentry_set_upper_alias(struct dentry * dentry)382 void ovl_dentry_set_upper_alias(struct dentry *dentry)
383 {
384 ovl_dentry_set_flag(OVL_E_UPPER_ALIAS, dentry);
385 }
386
ovl_should_check_upperdata(struct inode * inode)387 static bool ovl_should_check_upperdata(struct inode *inode)
388 {
389 if (!S_ISREG(inode->i_mode))
390 return false;
391
392 if (!ovl_inode_lower(inode))
393 return false;
394
395 return true;
396 }
397
ovl_has_upperdata(struct inode * inode)398 bool ovl_has_upperdata(struct inode *inode)
399 {
400 if (!ovl_should_check_upperdata(inode))
401 return true;
402
403 if (!ovl_test_flag(OVL_UPPERDATA, inode))
404 return false;
405 /*
406 * Pairs with smp_wmb() in ovl_set_upperdata(). Main user of
407 * ovl_has_upperdata() is ovl_copy_up_meta_inode_data(). Make sure
408 * if setting of OVL_UPPERDATA is visible, then effects of writes
409 * before that are visible too.
410 */
411 smp_rmb();
412 return true;
413 }
414
ovl_set_upperdata(struct inode * inode)415 void ovl_set_upperdata(struct inode *inode)
416 {
417 /*
418 * Pairs with smp_rmb() in ovl_has_upperdata(). Make sure
419 * if OVL_UPPERDATA flag is visible, then effects of write operations
420 * before it are visible as well.
421 */
422 smp_wmb();
423 ovl_set_flag(OVL_UPPERDATA, inode);
424 }
425
426 /* Caller should hold ovl_inode->lock */
ovl_dentry_needs_data_copy_up_locked(struct dentry * dentry,int flags)427 bool ovl_dentry_needs_data_copy_up_locked(struct dentry *dentry, int flags)
428 {
429 if (!ovl_open_flags_need_copy_up(flags))
430 return false;
431
432 return !ovl_test_flag(OVL_UPPERDATA, d_inode(dentry));
433 }
434
ovl_dentry_needs_data_copy_up(struct dentry * dentry,int flags)435 bool ovl_dentry_needs_data_copy_up(struct dentry *dentry, int flags)
436 {
437 if (!ovl_open_flags_need_copy_up(flags))
438 return false;
439
440 return !ovl_has_upperdata(d_inode(dentry));
441 }
442
ovl_redirect_dir(struct super_block * sb)443 bool ovl_redirect_dir(struct super_block *sb)
444 {
445 struct ovl_fs *ofs = sb->s_fs_info;
446
447 return ofs->config.redirect_dir && !ofs->noxattr;
448 }
449
ovl_dentry_get_redirect(struct dentry * dentry)450 const char *ovl_dentry_get_redirect(struct dentry *dentry)
451 {
452 return OVL_I(d_inode(dentry))->redirect;
453 }
454
ovl_dentry_set_redirect(struct dentry * dentry,const char * redirect)455 void ovl_dentry_set_redirect(struct dentry *dentry, const char *redirect)
456 {
457 struct ovl_inode *oi = OVL_I(d_inode(dentry));
458
459 kfree(oi->redirect);
460 oi->redirect = redirect;
461 }
462
ovl_inode_update(struct inode * inode,struct dentry * upperdentry)463 void ovl_inode_update(struct inode *inode, struct dentry *upperdentry)
464 {
465 struct inode *upperinode = d_inode(upperdentry);
466
467 WARN_ON(OVL_I(inode)->__upperdentry);
468
469 /*
470 * Make sure upperdentry is consistent before making it visible
471 */
472 smp_wmb();
473 OVL_I(inode)->__upperdentry = upperdentry;
474 if (inode_unhashed(inode)) {
475 inode->i_private = upperinode;
476 __insert_inode_hash(inode, (unsigned long) upperinode);
477 }
478 }
479
ovl_dir_version_inc(struct dentry * dentry,bool impurity)480 static void ovl_dir_version_inc(struct dentry *dentry, bool impurity)
481 {
482 struct inode *inode = d_inode(dentry);
483
484 WARN_ON(!inode_is_locked(inode));
485 WARN_ON(!d_is_dir(dentry));
486 /*
487 * Version is used by readdir code to keep cache consistent.
488 * For merge dirs (or dirs with origin) all changes need to be noted.
489 * For non-merge dirs, cache contains only impure entries (i.e. ones
490 * which have been copied up and have origins), so only need to note
491 * changes to impure entries.
492 */
493 if (!ovl_dir_is_real(dentry) || impurity)
494 OVL_I(inode)->version++;
495 }
496
ovl_dir_modified(struct dentry * dentry,bool impurity)497 void ovl_dir_modified(struct dentry *dentry, bool impurity)
498 {
499 /* Copy mtime/ctime */
500 ovl_copyattr(d_inode(dentry));
501
502 ovl_dir_version_inc(dentry, impurity);
503 }
504
ovl_dentry_version_get(struct dentry * dentry)505 u64 ovl_dentry_version_get(struct dentry *dentry)
506 {
507 struct inode *inode = d_inode(dentry);
508
509 WARN_ON(!inode_is_locked(inode));
510 return OVL_I(inode)->version;
511 }
512
ovl_is_whiteout(struct dentry * dentry)513 bool ovl_is_whiteout(struct dentry *dentry)
514 {
515 struct inode *inode = dentry->d_inode;
516
517 return inode && IS_WHITEOUT(inode);
518 }
519
ovl_path_open(const struct path * path,int flags)520 struct file *ovl_path_open(const struct path *path, int flags)
521 {
522 struct inode *inode = d_inode(path->dentry);
523 struct user_namespace *real_mnt_userns = mnt_user_ns(path->mnt);
524 int err, acc_mode;
525
526 if (flags & ~(O_ACCMODE | O_LARGEFILE))
527 BUG();
528
529 switch (flags & O_ACCMODE) {
530 case O_RDONLY:
531 acc_mode = MAY_READ;
532 break;
533 case O_WRONLY:
534 acc_mode = MAY_WRITE;
535 break;
536 default:
537 BUG();
538 }
539
540 err = inode_permission(real_mnt_userns, inode, acc_mode | MAY_OPEN);
541 if (err)
542 return ERR_PTR(err);
543
544 /* O_NOATIME is an optimization, don't fail if not permitted */
545 if (inode_owner_or_capable(real_mnt_userns, inode))
546 flags |= O_NOATIME;
547
548 return dentry_open(path, flags, current_cred());
549 }
550
551 /* Caller should hold ovl_inode->lock */
ovl_already_copied_up_locked(struct dentry * dentry,int flags)552 static bool ovl_already_copied_up_locked(struct dentry *dentry, int flags)
553 {
554 bool disconnected = dentry->d_flags & DCACHE_DISCONNECTED;
555
556 if (ovl_dentry_upper(dentry) &&
557 (ovl_dentry_has_upper_alias(dentry) || disconnected) &&
558 !ovl_dentry_needs_data_copy_up_locked(dentry, flags))
559 return true;
560
561 return false;
562 }
563
ovl_already_copied_up(struct dentry * dentry,int flags)564 bool ovl_already_copied_up(struct dentry *dentry, int flags)
565 {
566 bool disconnected = dentry->d_flags & DCACHE_DISCONNECTED;
567
568 /*
569 * Check if copy-up has happened as well as for upper alias (in
570 * case of hard links) is there.
571 *
572 * Both checks are lockless:
573 * - false negatives: will recheck under oi->lock
574 * - false positives:
575 * + ovl_dentry_upper() uses memory barriers to ensure the
576 * upper dentry is up-to-date
577 * + ovl_dentry_has_upper_alias() relies on locking of
578 * upper parent i_rwsem to prevent reordering copy-up
579 * with rename.
580 */
581 if (ovl_dentry_upper(dentry) &&
582 (ovl_dentry_has_upper_alias(dentry) || disconnected) &&
583 !ovl_dentry_needs_data_copy_up(dentry, flags))
584 return true;
585
586 return false;
587 }
588
ovl_copy_up_start(struct dentry * dentry,int flags)589 int ovl_copy_up_start(struct dentry *dentry, int flags)
590 {
591 struct inode *inode = d_inode(dentry);
592 int err;
593
594 err = ovl_inode_lock_interruptible(inode);
595 if (!err && ovl_already_copied_up_locked(dentry, flags)) {
596 err = 1; /* Already copied up */
597 ovl_inode_unlock(inode);
598 }
599
600 return err;
601 }
602
ovl_copy_up_end(struct dentry * dentry)603 void ovl_copy_up_end(struct dentry *dentry)
604 {
605 ovl_inode_unlock(d_inode(dentry));
606 }
607
ovl_path_check_origin_xattr(struct ovl_fs * ofs,const struct path * path)608 bool ovl_path_check_origin_xattr(struct ovl_fs *ofs, const struct path *path)
609 {
610 int res;
611
612 res = ovl_path_getxattr(ofs, path, OVL_XATTR_ORIGIN, NULL, 0);
613
614 /* Zero size value means "copied up but origin unknown" */
615 if (res >= 0)
616 return true;
617
618 return false;
619 }
620
ovl_path_check_dir_xattr(struct ovl_fs * ofs,const struct path * path,enum ovl_xattr ox)621 bool ovl_path_check_dir_xattr(struct ovl_fs *ofs, const struct path *path,
622 enum ovl_xattr ox)
623 {
624 int res;
625 char val;
626
627 if (!d_is_dir(path->dentry))
628 return false;
629
630 res = ovl_path_getxattr(ofs, path, ox, &val, 1);
631 if (res == 1 && val == 'y')
632 return true;
633
634 return false;
635 }
636
637 #define OVL_XATTR_OPAQUE_POSTFIX "opaque"
638 #define OVL_XATTR_REDIRECT_POSTFIX "redirect"
639 #define OVL_XATTR_ORIGIN_POSTFIX "origin"
640 #define OVL_XATTR_IMPURE_POSTFIX "impure"
641 #define OVL_XATTR_NLINK_POSTFIX "nlink"
642 #define OVL_XATTR_UPPER_POSTFIX "upper"
643 #define OVL_XATTR_METACOPY_POSTFIX "metacopy"
644 #define OVL_XATTR_PROTATTR_POSTFIX "protattr"
645
646 #define OVL_XATTR_TAB_ENTRY(x) \
647 [x] = { [false] = OVL_XATTR_TRUSTED_PREFIX x ## _POSTFIX, \
648 [true] = OVL_XATTR_USER_PREFIX x ## _POSTFIX }
649
650 const char *const ovl_xattr_table[][2] = {
651 OVL_XATTR_TAB_ENTRY(OVL_XATTR_OPAQUE),
652 OVL_XATTR_TAB_ENTRY(OVL_XATTR_REDIRECT),
653 OVL_XATTR_TAB_ENTRY(OVL_XATTR_ORIGIN),
654 OVL_XATTR_TAB_ENTRY(OVL_XATTR_IMPURE),
655 OVL_XATTR_TAB_ENTRY(OVL_XATTR_NLINK),
656 OVL_XATTR_TAB_ENTRY(OVL_XATTR_UPPER),
657 OVL_XATTR_TAB_ENTRY(OVL_XATTR_METACOPY),
658 OVL_XATTR_TAB_ENTRY(OVL_XATTR_PROTATTR),
659 };
660
ovl_check_setxattr(struct ovl_fs * ofs,struct dentry * upperdentry,enum ovl_xattr ox,const void * value,size_t size,int xerr)661 int ovl_check_setxattr(struct ovl_fs *ofs, struct dentry *upperdentry,
662 enum ovl_xattr ox, const void *value, size_t size,
663 int xerr)
664 {
665 int err;
666
667 if (ofs->noxattr)
668 return xerr;
669
670 err = ovl_setxattr(ofs, upperdentry, ox, value, size);
671
672 if (err == -EOPNOTSUPP) {
673 pr_warn("cannot set %s xattr on upper\n", ovl_xattr(ofs, ox));
674 ofs->noxattr = true;
675 return xerr;
676 }
677
678 return err;
679 }
680
ovl_set_impure(struct dentry * dentry,struct dentry * upperdentry)681 int ovl_set_impure(struct dentry *dentry, struct dentry *upperdentry)
682 {
683 struct ovl_fs *ofs = OVL_FS(dentry->d_sb);
684 int err;
685
686 if (ovl_test_flag(OVL_IMPURE, d_inode(dentry)))
687 return 0;
688
689 /*
690 * Do not fail when upper doesn't support xattrs.
691 * Upper inodes won't have origin nor redirect xattr anyway.
692 */
693 err = ovl_check_setxattr(ofs, upperdentry, OVL_XATTR_IMPURE, "y", 1, 0);
694 if (!err)
695 ovl_set_flag(OVL_IMPURE, d_inode(dentry));
696
697 return err;
698 }
699
700
701 #define OVL_PROTATTR_MAX 32 /* Reserved for future flags */
702
ovl_check_protattr(struct inode * inode,struct dentry * upper)703 void ovl_check_protattr(struct inode *inode, struct dentry *upper)
704 {
705 struct ovl_fs *ofs = OVL_FS(inode->i_sb);
706 u32 iflags = inode->i_flags & OVL_PROT_I_FLAGS_MASK;
707 char buf[OVL_PROTATTR_MAX+1];
708 int res, n;
709
710 res = ovl_getxattr_upper(ofs, upper, OVL_XATTR_PROTATTR, buf,
711 OVL_PROTATTR_MAX);
712 if (res < 0)
713 return;
714
715 /*
716 * Initialize inode flags from overlay.protattr xattr and upper inode
717 * flags. If upper inode has those fileattr flags set (i.e. from old
718 * kernel), we do not clear them on ovl_get_inode(), but we will clear
719 * them on next fileattr_set().
720 */
721 for (n = 0; n < res; n++) {
722 if (buf[n] == 'a')
723 iflags |= S_APPEND;
724 else if (buf[n] == 'i')
725 iflags |= S_IMMUTABLE;
726 else
727 break;
728 }
729
730 if (!res || n < res) {
731 pr_warn_ratelimited("incompatible overlay.protattr format (%pd2, len=%d)\n",
732 upper, res);
733 } else {
734 inode_set_flags(inode, iflags, OVL_PROT_I_FLAGS_MASK);
735 }
736 }
737
ovl_set_protattr(struct inode * inode,struct dentry * upper,struct fileattr * fa)738 int ovl_set_protattr(struct inode *inode, struct dentry *upper,
739 struct fileattr *fa)
740 {
741 struct ovl_fs *ofs = OVL_FS(inode->i_sb);
742 char buf[OVL_PROTATTR_MAX];
743 int len = 0, err = 0;
744 u32 iflags = 0;
745
746 BUILD_BUG_ON(HWEIGHT32(OVL_PROT_FS_FLAGS_MASK) > OVL_PROTATTR_MAX);
747
748 if (fa->flags & FS_APPEND_FL) {
749 buf[len++] = 'a';
750 iflags |= S_APPEND;
751 }
752 if (fa->flags & FS_IMMUTABLE_FL) {
753 buf[len++] = 'i';
754 iflags |= S_IMMUTABLE;
755 }
756
757 /*
758 * Do not allow to set protection flags when upper doesn't support
759 * xattrs, because we do not set those fileattr flags on upper inode.
760 * Remove xattr if it exist and all protection flags are cleared.
761 */
762 if (len) {
763 err = ovl_check_setxattr(ofs, upper, OVL_XATTR_PROTATTR,
764 buf, len, -EPERM);
765 } else if (inode->i_flags & OVL_PROT_I_FLAGS_MASK) {
766 err = ovl_removexattr(ofs, upper, OVL_XATTR_PROTATTR);
767 if (err == -EOPNOTSUPP || err == -ENODATA)
768 err = 0;
769 }
770 if (err)
771 return err;
772
773 inode_set_flags(inode, iflags, OVL_PROT_I_FLAGS_MASK);
774
775 /* Mask out the fileattr flags that should not be set in upper inode */
776 fa->flags &= ~OVL_PROT_FS_FLAGS_MASK;
777 fa->fsx_xflags &= ~OVL_PROT_FSX_FLAGS_MASK;
778
779 return 0;
780 }
781
782 /**
783 * Caller must hold a reference to inode to prevent it from being freed while
784 * it is marked inuse.
785 */
ovl_inuse_trylock(struct dentry * dentry)786 bool ovl_inuse_trylock(struct dentry *dentry)
787 {
788 struct inode *inode = d_inode(dentry);
789 bool locked = false;
790
791 spin_lock(&inode->i_lock);
792 if (!(inode->i_state & I_OVL_INUSE)) {
793 inode->i_state |= I_OVL_INUSE;
794 locked = true;
795 }
796 spin_unlock(&inode->i_lock);
797
798 return locked;
799 }
800
ovl_inuse_unlock(struct dentry * dentry)801 void ovl_inuse_unlock(struct dentry *dentry)
802 {
803 if (dentry) {
804 struct inode *inode = d_inode(dentry);
805
806 spin_lock(&inode->i_lock);
807 WARN_ON(!(inode->i_state & I_OVL_INUSE));
808 inode->i_state &= ~I_OVL_INUSE;
809 spin_unlock(&inode->i_lock);
810 }
811 }
812
ovl_is_inuse(struct dentry * dentry)813 bool ovl_is_inuse(struct dentry *dentry)
814 {
815 struct inode *inode = d_inode(dentry);
816 bool inuse;
817
818 spin_lock(&inode->i_lock);
819 inuse = (inode->i_state & I_OVL_INUSE);
820 spin_unlock(&inode->i_lock);
821
822 return inuse;
823 }
824
825 /*
826 * Does this overlay dentry need to be indexed on copy up?
827 */
ovl_need_index(struct dentry * dentry)828 bool ovl_need_index(struct dentry *dentry)
829 {
830 struct dentry *lower = ovl_dentry_lower(dentry);
831
832 if (!lower || !ovl_indexdir(dentry->d_sb))
833 return false;
834
835 /* Index all files for NFS export and consistency verification */
836 if (ovl_index_all(dentry->d_sb))
837 return true;
838
839 /* Index only lower hardlinks on copy up */
840 if (!d_is_dir(lower) && d_inode(lower)->i_nlink > 1)
841 return true;
842
843 return false;
844 }
845
846 /* Caller must hold OVL_I(inode)->lock */
ovl_cleanup_index(struct dentry * dentry)847 static void ovl_cleanup_index(struct dentry *dentry)
848 {
849 struct ovl_fs *ofs = OVL_FS(dentry->d_sb);
850 struct dentry *indexdir = ovl_indexdir(dentry->d_sb);
851 struct inode *dir = indexdir->d_inode;
852 struct dentry *lowerdentry = ovl_dentry_lower(dentry);
853 struct dentry *upperdentry = ovl_dentry_upper(dentry);
854 struct dentry *index = NULL;
855 struct inode *inode;
856 struct qstr name = { };
857 int err;
858
859 err = ovl_get_index_name(ofs, lowerdentry, &name);
860 if (err)
861 goto fail;
862
863 inode = d_inode(upperdentry);
864 if (!S_ISDIR(inode->i_mode) && inode->i_nlink != 1) {
865 pr_warn_ratelimited("cleanup linked index (%pd2, ino=%lu, nlink=%u)\n",
866 upperdentry, inode->i_ino, inode->i_nlink);
867 /*
868 * We either have a bug with persistent union nlink or a lower
869 * hardlink was added while overlay is mounted. Adding a lower
870 * hardlink and then unlinking all overlay hardlinks would drop
871 * overlay nlink to zero before all upper inodes are unlinked.
872 * As a safety measure, when that situation is detected, set
873 * the overlay nlink to the index inode nlink minus one for the
874 * index entry itself.
875 */
876 set_nlink(d_inode(dentry), inode->i_nlink - 1);
877 ovl_set_nlink_upper(dentry);
878 goto out;
879 }
880
881 inode_lock_nested(dir, I_MUTEX_PARENT);
882 index = ovl_lookup_upper(ofs, name.name, indexdir, name.len);
883 err = PTR_ERR(index);
884 if (IS_ERR(index)) {
885 index = NULL;
886 } else if (ovl_index_all(dentry->d_sb)) {
887 /* Whiteout orphan index to block future open by handle */
888 err = ovl_cleanup_and_whiteout(OVL_FS(dentry->d_sb),
889 dir, index);
890 } else {
891 /* Cleanup orphan index entries */
892 err = ovl_cleanup(ofs, dir, index);
893 }
894
895 inode_unlock(dir);
896 if (err)
897 goto fail;
898
899 out:
900 kfree(name.name);
901 dput(index);
902 return;
903
904 fail:
905 pr_err("cleanup index of '%pd2' failed (%i)\n", dentry, err);
906 goto out;
907 }
908
909 /*
910 * Operations that change overlay inode and upper inode nlink need to be
911 * synchronized with copy up for persistent nlink accounting.
912 */
ovl_nlink_start(struct dentry * dentry)913 int ovl_nlink_start(struct dentry *dentry)
914 {
915 struct inode *inode = d_inode(dentry);
916 const struct cred *old_cred;
917 int err;
918
919 if (WARN_ON(!inode))
920 return -ENOENT;
921
922 /*
923 * With inodes index is enabled, we store the union overlay nlink
924 * in an xattr on the index inode. When whiting out an indexed lower,
925 * we need to decrement the overlay persistent nlink, but before the
926 * first copy up, we have no upper index inode to store the xattr.
927 *
928 * As a workaround, before whiteout/rename over an indexed lower,
929 * copy up to create the upper index. Creating the upper index will
930 * initialize the overlay nlink, so it could be dropped if unlink
931 * or rename succeeds.
932 *
933 * TODO: implement metadata only index copy up when called with
934 * ovl_copy_up_flags(dentry, O_PATH).
935 */
936 if (ovl_need_index(dentry) && !ovl_dentry_has_upper_alias(dentry)) {
937 err = ovl_copy_up(dentry);
938 if (err)
939 return err;
940 }
941
942 err = ovl_inode_lock_interruptible(inode);
943 if (err)
944 return err;
945
946 if (d_is_dir(dentry) || !ovl_test_flag(OVL_INDEX, inode))
947 goto out;
948
949 old_cred = ovl_override_creds(dentry->d_sb);
950 /*
951 * The overlay inode nlink should be incremented/decremented IFF the
952 * upper operation succeeds, along with nlink change of upper inode.
953 * Therefore, before link/unlink/rename, we store the union nlink
954 * value relative to the upper inode nlink in an upper inode xattr.
955 */
956 err = ovl_set_nlink_upper(dentry);
957 ovl_revert_creds(dentry->d_sb, old_cred);
958
959 out:
960 if (err)
961 ovl_inode_unlock(inode);
962
963 return err;
964 }
965
ovl_nlink_end(struct dentry * dentry)966 void ovl_nlink_end(struct dentry *dentry)
967 {
968 struct inode *inode = d_inode(dentry);
969
970 if (ovl_test_flag(OVL_INDEX, inode) && inode->i_nlink == 0) {
971 const struct cred *old_cred;
972
973 old_cred = ovl_override_creds(dentry->d_sb);
974 ovl_cleanup_index(dentry);
975 ovl_revert_creds(dentry->d_sb, old_cred);
976 }
977
978 ovl_inode_unlock(inode);
979 }
980
ovl_lock_rename_workdir(struct dentry * workdir,struct dentry * upperdir)981 int ovl_lock_rename_workdir(struct dentry *workdir, struct dentry *upperdir)
982 {
983 /* Workdir should not be the same as upperdir */
984 if (workdir == upperdir)
985 goto err;
986
987 /* Workdir should not be subdir of upperdir and vice versa */
988 if (lock_rename(workdir, upperdir) != NULL)
989 goto err_unlock;
990
991 return 0;
992
993 err_unlock:
994 unlock_rename(workdir, upperdir);
995 err:
996 pr_err("failed to lock workdir+upperdir\n");
997 return -EIO;
998 }
999
1000 /* err < 0, 0 if no metacopy xattr, 1 if metacopy xattr found */
ovl_check_metacopy_xattr(struct ovl_fs * ofs,const struct path * path)1001 int ovl_check_metacopy_xattr(struct ovl_fs *ofs, const struct path *path)
1002 {
1003 int res;
1004
1005 /* Only regular files can have metacopy xattr */
1006 if (!S_ISREG(d_inode(path->dentry)->i_mode))
1007 return 0;
1008
1009 res = ovl_path_getxattr(ofs, path, OVL_XATTR_METACOPY, NULL, 0);
1010 if (res < 0) {
1011 if (res == -ENODATA || res == -EOPNOTSUPP)
1012 return 0;
1013 /*
1014 * getxattr on user.* may fail with EACCES in case there's no
1015 * read permission on the inode. Not much we can do, other than
1016 * tell the caller that this is not a metacopy inode.
1017 */
1018 if (ofs->config.userxattr && res == -EACCES)
1019 return 0;
1020 goto out;
1021 }
1022
1023 return 1;
1024 out:
1025 pr_warn_ratelimited("failed to get metacopy (%i)\n", res);
1026 return res;
1027 }
1028
ovl_is_metacopy_dentry(struct dentry * dentry)1029 bool ovl_is_metacopy_dentry(struct dentry *dentry)
1030 {
1031 struct ovl_entry *oe = dentry->d_fsdata;
1032
1033 if (!d_is_reg(dentry))
1034 return false;
1035
1036 if (ovl_dentry_upper(dentry)) {
1037 if (!ovl_has_upperdata(d_inode(dentry)))
1038 return true;
1039 return false;
1040 }
1041
1042 return (oe->numlower > 1);
1043 }
1044
ovl_get_redirect_xattr(struct ovl_fs * ofs,const struct path * path,int padding)1045 char *ovl_get_redirect_xattr(struct ovl_fs *ofs, const struct path *path, int padding)
1046 {
1047 int res;
1048 char *s, *next, *buf = NULL;
1049
1050 res = ovl_path_getxattr(ofs, path, OVL_XATTR_REDIRECT, NULL, 0);
1051 if (res == -ENODATA || res == -EOPNOTSUPP)
1052 return NULL;
1053 if (res < 0)
1054 goto fail;
1055 if (res == 0)
1056 goto invalid;
1057
1058 buf = kzalloc(res + padding + 1, GFP_KERNEL);
1059 if (!buf)
1060 return ERR_PTR(-ENOMEM);
1061
1062 res = ovl_path_getxattr(ofs, path, OVL_XATTR_REDIRECT, buf, res);
1063 if (res < 0)
1064 goto fail;
1065 if (res == 0)
1066 goto invalid;
1067
1068 if (buf[0] == '/') {
1069 for (s = buf; *s++ == '/'; s = next) {
1070 next = strchrnul(s, '/');
1071 if (s == next)
1072 goto invalid;
1073 }
1074 } else {
1075 if (strchr(buf, '/') != NULL)
1076 goto invalid;
1077 }
1078
1079 return buf;
1080 invalid:
1081 pr_warn_ratelimited("invalid redirect (%s)\n", buf);
1082 res = -EINVAL;
1083 goto err_free;
1084 fail:
1085 pr_warn_ratelimited("failed to get redirect (%i)\n", res);
1086 err_free:
1087 kfree(buf);
1088 return ERR_PTR(res);
1089 }
1090
1091 /*
1092 * ovl_sync_status() - Check fs sync status for volatile mounts
1093 *
1094 * Returns 1 if this is not a volatile mount and a real sync is required.
1095 *
1096 * Returns 0 if syncing can be skipped because mount is volatile, and no errors
1097 * have occurred on the upperdir since the mount.
1098 *
1099 * Returns -errno if it is a volatile mount, and the error that occurred since
1100 * the last mount. If the error code changes, it'll return the latest error
1101 * code.
1102 */
1103
ovl_sync_status(struct ovl_fs * ofs)1104 int ovl_sync_status(struct ovl_fs *ofs)
1105 {
1106 struct vfsmount *mnt;
1107
1108 if (ovl_should_sync(ofs))
1109 return 1;
1110
1111 mnt = ovl_upper_mnt(ofs);
1112 if (!mnt)
1113 return 0;
1114
1115 return errseq_check(&mnt->mnt_sb->s_wb_err, ofs->errseq);
1116 }
1117
1118 /*
1119 * ovl_copyattr() - copy inode attributes from layer to ovl inode
1120 *
1121 * When overlay copies inode information from an upper or lower layer to the
1122 * relevant overlay inode it will apply the idmapping of the upper or lower
1123 * layer when doing so ensuring that the ovl inode ownership will correctly
1124 * reflect the ownership of the idmapped upper or lower layer. For example, an
1125 * idmapped upper or lower layer mapping id 1001 to id 1000 will take care to
1126 * map any lower or upper inode owned by id 1001 to id 1000. These mapping
1127 * helpers are nops when the relevant layer isn't idmapped.
1128 */
ovl_copyattr(struct inode * inode)1129 void ovl_copyattr(struct inode *inode)
1130 {
1131 struct path realpath;
1132 struct inode *realinode;
1133 struct user_namespace *real_mnt_userns;
1134
1135 realinode = ovl_i_path_real(inode, &realpath);
1136 real_mnt_userns = mnt_user_ns(realpath.mnt);
1137
1138 inode->i_uid = i_uid_into_mnt(real_mnt_userns, realinode);
1139 inode->i_gid = i_gid_into_mnt(real_mnt_userns, realinode);
1140 inode->i_mode = realinode->i_mode;
1141 inode->i_atime = realinode->i_atime;
1142 inode->i_mtime = realinode->i_mtime;
1143 inode->i_ctime = realinode->i_ctime;
1144 i_size_write(inode, i_size_read(realinode));
1145 }
1146