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1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * This file is part of UBIFS.
4  *
5  * Copyright (C) 2006-2008 Nokia Corporation.
6  *
7  * Authors: Artem Bityutskiy (Битюцкий Артём)
8  *          Adrian Hunter
9  */
10 
11 /*
12  * This file implements UBIFS extended attributes support.
13  *
14  * Extended attributes are implemented as regular inodes with attached data,
15  * which limits extended attribute size to UBIFS block size (4KiB). Names of
16  * extended attributes are described by extended attribute entries (xentries),
17  * which are almost identical to directory entries, but have different key type.
18  *
19  * In other words, the situation with extended attributes is very similar to
20  * directories. Indeed, any inode (but of course not xattr inodes) may have a
21  * number of associated xentries, just like directory inodes have associated
22  * directory entries. Extended attribute entries store the name of the extended
23  * attribute, the host inode number, and the extended attribute inode number.
24  * Similarly, direntries store the name, the parent and the target inode
25  * numbers. Thus, most of the common UBIFS mechanisms may be re-used for
26  * extended attributes.
27  *
28  * The number of extended attributes is not limited, but there is Linux
29  * limitation on the maximum possible size of the list of all extended
30  * attributes associated with an inode (%XATTR_LIST_MAX), so UBIFS makes sure
31  * the sum of all extended attribute names of the inode does not exceed that
32  * limit.
33  *
34  * Extended attributes are synchronous, which means they are written to the
35  * flash media synchronously and there is no write-back for extended attribute
36  * inodes. The extended attribute values are not stored in compressed form on
37  * the media.
38  *
39  * Since extended attributes are represented by regular inodes, they are cached
40  * in the VFS inode cache. The xentries are cached in the LNC cache (see
41  * tnc.c).
42  *
43  * ACL support is not implemented.
44  */
45 
46 #include "ubifs.h"
47 #include <linux/fs.h>
48 #include <linux/slab.h>
49 #include <linux/xattr.h>
50 
51 /*
52  * Extended attribute type constants.
53  *
54  * USER_XATTR: user extended attribute ("user.*")
55  * TRUSTED_XATTR: trusted extended attribute ("trusted.*)
56  * SECURITY_XATTR: security extended attribute ("security.*")
57  */
58 enum {
59 	USER_XATTR,
60 	TRUSTED_XATTR,
61 	SECURITY_XATTR,
62 };
63 
64 static const struct inode_operations empty_iops;
65 static const struct file_operations empty_fops;
66 
67 /**
68  * create_xattr - create an extended attribute.
69  * @c: UBIFS file-system description object
70  * @host: host inode
71  * @nm: extended attribute name
72  * @value: extended attribute value
73  * @size: size of extended attribute value
74  *
75  * This is a helper function which creates an extended attribute of name @nm
76  * and value @value for inode @host. The host inode is also updated on flash
77  * because the ctime and extended attribute accounting data changes. This
78  * function returns zero in case of success and a negative error code in case
79  * of failure.
80  */
create_xattr(struct ubifs_info * c,struct inode * host,const struct fscrypt_name * nm,const void * value,int size)81 static int create_xattr(struct ubifs_info *c, struct inode *host,
82 			const struct fscrypt_name *nm, const void *value, int size)
83 {
84 	int err, names_len;
85 	struct inode *inode;
86 	struct ubifs_inode *ui, *host_ui = ubifs_inode(host);
87 	struct ubifs_budget_req req = { .new_ino = 1, .new_dent = 1,
88 				.new_ino_d = ALIGN(size, 8), .dirtied_ino = 1,
89 				.dirtied_ino_d = ALIGN(host_ui->data_len, 8) };
90 
91 	if (host_ui->xattr_cnt >= ubifs_xattr_max_cnt(c)) {
92 		ubifs_err(c, "inode %lu already has too many xattrs (%d), cannot create more",
93 			  host->i_ino, host_ui->xattr_cnt);
94 		return -ENOSPC;
95 	}
96 	/*
97 	 * Linux limits the maximum size of the extended attribute names list
98 	 * to %XATTR_LIST_MAX. This means we should not allow creating more
99 	 * extended attributes if the name list becomes larger. This limitation
100 	 * is artificial for UBIFS, though.
101 	 */
102 	names_len = host_ui->xattr_names + host_ui->xattr_cnt + fname_len(nm) + 1;
103 	if (names_len > XATTR_LIST_MAX) {
104 		ubifs_err(c, "cannot add one more xattr name to inode %lu, total names length would become %d, max. is %d",
105 			  host->i_ino, names_len, XATTR_LIST_MAX);
106 		return -ENOSPC;
107 	}
108 
109 	err = ubifs_budget_space(c, &req);
110 	if (err)
111 		return err;
112 
113 	inode = ubifs_new_inode(c, host, S_IFREG | S_IRWXUGO);
114 	if (IS_ERR(inode)) {
115 		err = PTR_ERR(inode);
116 		goto out_budg;
117 	}
118 
119 	/* Re-define all operations to be "nothing" */
120 	inode->i_mapping->a_ops = &empty_aops;
121 	inode->i_op = &empty_iops;
122 	inode->i_fop = &empty_fops;
123 
124 	inode->i_flags |= S_SYNC | S_NOATIME | S_NOCMTIME;
125 	ui = ubifs_inode(inode);
126 	ui->xattr = 1;
127 	ui->flags |= UBIFS_XATTR_FL;
128 	ui->data = kmemdup(value, size, GFP_NOFS);
129 	if (!ui->data) {
130 		err = -ENOMEM;
131 		goto out_free;
132 	}
133 	inode->i_size = ui->ui_size = size;
134 	ui->data_len = size;
135 
136 	mutex_lock(&host_ui->ui_mutex);
137 	host->i_ctime = current_time(host);
138 	host_ui->xattr_cnt += 1;
139 	host_ui->xattr_size += CALC_DENT_SIZE(fname_len(nm));
140 	host_ui->xattr_size += CALC_XATTR_BYTES(size);
141 	host_ui->xattr_names += fname_len(nm);
142 
143 	/*
144 	 * We handle UBIFS_XATTR_NAME_ENCRYPTION_CONTEXT here because we
145 	 * have to set the UBIFS_CRYPT_FL flag on the host inode.
146 	 * To avoid multiple updates of the same inode in the same operation,
147 	 * let's do it here.
148 	 */
149 	if (strcmp(fname_name(nm), UBIFS_XATTR_NAME_ENCRYPTION_CONTEXT) == 0)
150 		host_ui->flags |= UBIFS_CRYPT_FL;
151 
152 	err = ubifs_jnl_update(c, host, nm, inode, 0, 1);
153 	if (err)
154 		goto out_cancel;
155 	ubifs_set_inode_flags(host);
156 	mutex_unlock(&host_ui->ui_mutex);
157 
158 	ubifs_release_budget(c, &req);
159 	insert_inode_hash(inode);
160 	iput(inode);
161 	return 0;
162 
163 out_cancel:
164 	host_ui->xattr_cnt -= 1;
165 	host_ui->xattr_size -= CALC_DENT_SIZE(fname_len(nm));
166 	host_ui->xattr_size -= CALC_XATTR_BYTES(size);
167 	host_ui->xattr_names -= fname_len(nm);
168 	host_ui->flags &= ~UBIFS_CRYPT_FL;
169 	mutex_unlock(&host_ui->ui_mutex);
170 out_free:
171 	make_bad_inode(inode);
172 	iput(inode);
173 out_budg:
174 	ubifs_release_budget(c, &req);
175 	return err;
176 }
177 
178 /**
179  * change_xattr - change an extended attribute.
180  * @c: UBIFS file-system description object
181  * @host: host inode
182  * @inode: extended attribute inode
183  * @value: extended attribute value
184  * @size: size of extended attribute value
185  *
186  * This helper function changes the value of extended attribute @inode with new
187  * data from @value. Returns zero in case of success and a negative error code
188  * in case of failure.
189  */
change_xattr(struct ubifs_info * c,struct inode * host,struct inode * inode,const void * value,int size)190 static int change_xattr(struct ubifs_info *c, struct inode *host,
191 			struct inode *inode, const void *value, int size)
192 {
193 	int err;
194 	struct ubifs_inode *host_ui = ubifs_inode(host);
195 	struct ubifs_inode *ui = ubifs_inode(inode);
196 	void *buf = NULL;
197 	int old_size;
198 	struct ubifs_budget_req req = { .dirtied_ino = 2,
199 		.dirtied_ino_d = ALIGN(size, 8) + ALIGN(host_ui->data_len, 8) };
200 
201 	ubifs_assert(c, ui->data_len == inode->i_size);
202 	err = ubifs_budget_space(c, &req);
203 	if (err)
204 		return err;
205 
206 	buf = kmemdup(value, size, GFP_NOFS);
207 	if (!buf) {
208 		err = -ENOMEM;
209 		goto out_free;
210 	}
211 	mutex_lock(&ui->ui_mutex);
212 	kfree(ui->data);
213 	ui->data = buf;
214 	inode->i_size = ui->ui_size = size;
215 	old_size = ui->data_len;
216 	ui->data_len = size;
217 	mutex_unlock(&ui->ui_mutex);
218 
219 	mutex_lock(&host_ui->ui_mutex);
220 	host->i_ctime = current_time(host);
221 	host_ui->xattr_size -= CALC_XATTR_BYTES(old_size);
222 	host_ui->xattr_size += CALC_XATTR_BYTES(size);
223 
224 	/*
225 	 * It is important to write the host inode after the xattr inode
226 	 * because if the host inode gets synchronized (via 'fsync()'), then
227 	 * the extended attribute inode gets synchronized, because it goes
228 	 * before the host inode in the write-buffer.
229 	 */
230 	err = ubifs_jnl_change_xattr(c, inode, host);
231 	if (err)
232 		goto out_cancel;
233 	mutex_unlock(&host_ui->ui_mutex);
234 
235 	ubifs_release_budget(c, &req);
236 	return 0;
237 
238 out_cancel:
239 	host_ui->xattr_size -= CALC_XATTR_BYTES(size);
240 	host_ui->xattr_size += CALC_XATTR_BYTES(old_size);
241 	mutex_unlock(&host_ui->ui_mutex);
242 	make_bad_inode(inode);
243 out_free:
244 	ubifs_release_budget(c, &req);
245 	return err;
246 }
247 
iget_xattr(struct ubifs_info * c,ino_t inum)248 static struct inode *iget_xattr(struct ubifs_info *c, ino_t inum)
249 {
250 	struct inode *inode;
251 
252 	inode = ubifs_iget(c->vfs_sb, inum);
253 	if (IS_ERR(inode)) {
254 		ubifs_err(c, "dead extended attribute entry, error %d",
255 			  (int)PTR_ERR(inode));
256 		return inode;
257 	}
258 	if (ubifs_inode(inode)->xattr)
259 		return inode;
260 	ubifs_err(c, "corrupt extended attribute entry");
261 	iput(inode);
262 	return ERR_PTR(-EINVAL);
263 }
264 
ubifs_xattr_set(struct inode * host,const char * name,const void * value,size_t size,int flags,bool check_lock)265 int ubifs_xattr_set(struct inode *host, const char *name, const void *value,
266 		    size_t size, int flags, bool check_lock)
267 {
268 	struct inode *inode;
269 	struct ubifs_info *c = host->i_sb->s_fs_info;
270 	struct fscrypt_name nm = { .disk_name = FSTR_INIT((char *)name, strlen(name))};
271 	struct ubifs_dent_node *xent;
272 	union ubifs_key key;
273 	int err;
274 
275 	if (check_lock)
276 		ubifs_assert(c, inode_is_locked(host));
277 
278 	if (size > UBIFS_MAX_INO_DATA)
279 		return -ERANGE;
280 
281 	if (fname_len(&nm) > UBIFS_MAX_NLEN)
282 		return -ENAMETOOLONG;
283 
284 	xent = kmalloc(UBIFS_MAX_XENT_NODE_SZ, GFP_NOFS);
285 	if (!xent)
286 		return -ENOMEM;
287 
288 	down_write(&ubifs_inode(host)->xattr_sem);
289 	/*
290 	 * The extended attribute entries are stored in LNC, so multiple
291 	 * look-ups do not involve reading the flash.
292 	 */
293 	xent_key_init(c, &key, host->i_ino, &nm);
294 	err = ubifs_tnc_lookup_nm(c, &key, xent, &nm);
295 	if (err) {
296 		if (err != -ENOENT)
297 			goto out_free;
298 
299 		if (flags & XATTR_REPLACE)
300 			/* We are asked not to create the xattr */
301 			err = -ENODATA;
302 		else
303 			err = create_xattr(c, host, &nm, value, size);
304 		goto out_free;
305 	}
306 
307 	if (flags & XATTR_CREATE) {
308 		/* We are asked not to replace the xattr */
309 		err = -EEXIST;
310 		goto out_free;
311 	}
312 
313 	inode = iget_xattr(c, le64_to_cpu(xent->inum));
314 	if (IS_ERR(inode)) {
315 		err = PTR_ERR(inode);
316 		goto out_free;
317 	}
318 
319 	err = change_xattr(c, host, inode, value, size);
320 	iput(inode);
321 
322 out_free:
323 	up_write(&ubifs_inode(host)->xattr_sem);
324 	kfree(xent);
325 	return err;
326 }
327 
ubifs_xattr_get(struct inode * host,const char * name,void * buf,size_t size)328 ssize_t ubifs_xattr_get(struct inode *host, const char *name, void *buf,
329 			size_t size)
330 {
331 	struct inode *inode;
332 	struct ubifs_info *c = host->i_sb->s_fs_info;
333 	struct fscrypt_name nm = { .disk_name = FSTR_INIT((char *)name, strlen(name))};
334 	struct ubifs_inode *ui;
335 	struct ubifs_dent_node *xent;
336 	union ubifs_key key;
337 	int err;
338 
339 	if (fname_len(&nm) > UBIFS_MAX_NLEN)
340 		return -ENAMETOOLONG;
341 
342 	xent = kmalloc(UBIFS_MAX_XENT_NODE_SZ, GFP_NOFS);
343 	if (!xent)
344 		return -ENOMEM;
345 
346 	down_read(&ubifs_inode(host)->xattr_sem);
347 	xent_key_init(c, &key, host->i_ino, &nm);
348 	err = ubifs_tnc_lookup_nm(c, &key, xent, &nm);
349 	if (err) {
350 		if (err == -ENOENT)
351 			err = -ENODATA;
352 		goto out_cleanup;
353 	}
354 
355 	inode = iget_xattr(c, le64_to_cpu(xent->inum));
356 	if (IS_ERR(inode)) {
357 		err = PTR_ERR(inode);
358 		goto out_cleanup;
359 	}
360 
361 	ui = ubifs_inode(inode);
362 	ubifs_assert(c, inode->i_size == ui->data_len);
363 	ubifs_assert(c, ubifs_inode(host)->xattr_size > ui->data_len);
364 
365 	mutex_lock(&ui->ui_mutex);
366 	if (buf) {
367 		/* If @buf is %NULL we are supposed to return the length */
368 		if (ui->data_len > size) {
369 			err = -ERANGE;
370 			goto out_iput;
371 		}
372 
373 		memcpy(buf, ui->data, ui->data_len);
374 	}
375 	err = ui->data_len;
376 
377 out_iput:
378 	mutex_unlock(&ui->ui_mutex);
379 	iput(inode);
380 out_cleanup:
381 	up_read(&ubifs_inode(host)->xattr_sem);
382 	kfree(xent);
383 	return err;
384 }
385 
xattr_visible(const char * name)386 static bool xattr_visible(const char *name)
387 {
388 	/* File encryption related xattrs are for internal use only */
389 	if (strcmp(name, UBIFS_XATTR_NAME_ENCRYPTION_CONTEXT) == 0)
390 		return false;
391 
392 	/* Show trusted namespace only for "power" users */
393 	if (strncmp(name, XATTR_TRUSTED_PREFIX,
394 		    XATTR_TRUSTED_PREFIX_LEN) == 0 && !capable(CAP_SYS_ADMIN))
395 		return false;
396 
397 	return true;
398 }
399 
ubifs_listxattr(struct dentry * dentry,char * buffer,size_t size)400 ssize_t ubifs_listxattr(struct dentry *dentry, char *buffer, size_t size)
401 {
402 	union ubifs_key key;
403 	struct inode *host = d_inode(dentry);
404 	struct ubifs_info *c = host->i_sb->s_fs_info;
405 	struct ubifs_inode *host_ui = ubifs_inode(host);
406 	struct ubifs_dent_node *xent, *pxent = NULL;
407 	int err, len, written = 0;
408 	struct fscrypt_name nm = {0};
409 
410 	dbg_gen("ino %lu ('%pd'), buffer size %zd", host->i_ino,
411 		dentry, size);
412 
413 	down_read(&host_ui->xattr_sem);
414 	len = host_ui->xattr_names + host_ui->xattr_cnt;
415 	if (!buffer) {
416 		/*
417 		 * We should return the minimum buffer size which will fit a
418 		 * null-terminated list of all the extended attribute names.
419 		 */
420 		err = len;
421 		goto out_err;
422 	}
423 
424 	if (len > size) {
425 		err = -ERANGE;
426 		goto out_err;
427 	}
428 
429 	lowest_xent_key(c, &key, host->i_ino);
430 	while (1) {
431 		xent = ubifs_tnc_next_ent(c, &key, &nm);
432 		if (IS_ERR(xent)) {
433 			err = PTR_ERR(xent);
434 			break;
435 		}
436 
437 		fname_name(&nm) = xent->name;
438 		fname_len(&nm) = le16_to_cpu(xent->nlen);
439 
440 		if (xattr_visible(xent->name)) {
441 			memcpy(buffer + written, fname_name(&nm), fname_len(&nm) + 1);
442 			written += fname_len(&nm) + 1;
443 		}
444 
445 		kfree(pxent);
446 		pxent = xent;
447 		key_read(c, &xent->key, &key);
448 	}
449 	kfree(pxent);
450 	up_read(&host_ui->xattr_sem);
451 
452 	if (err != -ENOENT) {
453 		ubifs_err(c, "cannot find next direntry, error %d", err);
454 		return err;
455 	}
456 
457 	ubifs_assert(c, written <= size);
458 	return written;
459 
460 out_err:
461 	up_read(&host_ui->xattr_sem);
462 	return err;
463 }
464 
remove_xattr(struct ubifs_info * c,struct inode * host,struct inode * inode,const struct fscrypt_name * nm)465 static int remove_xattr(struct ubifs_info *c, struct inode *host,
466 			struct inode *inode, const struct fscrypt_name *nm)
467 {
468 	int err;
469 	struct ubifs_inode *host_ui = ubifs_inode(host);
470 	struct ubifs_inode *ui = ubifs_inode(inode);
471 	struct ubifs_budget_req req = { .dirtied_ino = 2, .mod_dent = 1,
472 				.dirtied_ino_d = ALIGN(host_ui->data_len, 8) };
473 
474 	ubifs_assert(c, ui->data_len == inode->i_size);
475 
476 	err = ubifs_budget_space(c, &req);
477 	if (err)
478 		return err;
479 
480 	mutex_lock(&host_ui->ui_mutex);
481 	host->i_ctime = current_time(host);
482 	host_ui->xattr_cnt -= 1;
483 	host_ui->xattr_size -= CALC_DENT_SIZE(fname_len(nm));
484 	host_ui->xattr_size -= CALC_XATTR_BYTES(ui->data_len);
485 	host_ui->xattr_names -= fname_len(nm);
486 
487 	err = ubifs_jnl_delete_xattr(c, host, inode, nm);
488 	if (err)
489 		goto out_cancel;
490 	mutex_unlock(&host_ui->ui_mutex);
491 
492 	ubifs_release_budget(c, &req);
493 	return 0;
494 
495 out_cancel:
496 	host_ui->xattr_cnt += 1;
497 	host_ui->xattr_size += CALC_DENT_SIZE(fname_len(nm));
498 	host_ui->xattr_size += CALC_XATTR_BYTES(ui->data_len);
499 	host_ui->xattr_names += fname_len(nm);
500 	mutex_unlock(&host_ui->ui_mutex);
501 	ubifs_release_budget(c, &req);
502 	make_bad_inode(inode);
503 	return err;
504 }
505 
ubifs_purge_xattrs(struct inode * host)506 int ubifs_purge_xattrs(struct inode *host)
507 {
508 	union ubifs_key key;
509 	struct ubifs_info *c = host->i_sb->s_fs_info;
510 	struct ubifs_dent_node *xent, *pxent = NULL;
511 	struct inode *xino;
512 	struct fscrypt_name nm = {0};
513 	int err;
514 
515 	if (ubifs_inode(host)->xattr_cnt < ubifs_xattr_max_cnt(c))
516 		return 0;
517 
518 	ubifs_warn(c, "inode %lu has too many xattrs, doing a non-atomic deletion",
519 		   host->i_ino);
520 
521 	down_write(&ubifs_inode(host)->xattr_sem);
522 	lowest_xent_key(c, &key, host->i_ino);
523 	while (1) {
524 		xent = ubifs_tnc_next_ent(c, &key, &nm);
525 		if (IS_ERR(xent)) {
526 			err = PTR_ERR(xent);
527 			break;
528 		}
529 
530 		fname_name(&nm) = xent->name;
531 		fname_len(&nm) = le16_to_cpu(xent->nlen);
532 
533 		xino = ubifs_iget(c->vfs_sb, le64_to_cpu(xent->inum));
534 		if (IS_ERR(xino)) {
535 			err = PTR_ERR(xino);
536 			ubifs_err(c, "dead directory entry '%s', error %d",
537 				  xent->name, err);
538 			ubifs_ro_mode(c, err);
539 			kfree(pxent);
540 			kfree(xent);
541 			goto out_err;
542 		}
543 
544 		ubifs_assert(c, ubifs_inode(xino)->xattr);
545 
546 		clear_nlink(xino);
547 		err = remove_xattr(c, host, xino, &nm);
548 		if (err) {
549 			kfree(pxent);
550 			kfree(xent);
551 			iput(xino);
552 			ubifs_err(c, "cannot remove xattr, error %d", err);
553 			goto out_err;
554 		}
555 
556 		iput(xino);
557 
558 		kfree(pxent);
559 		pxent = xent;
560 		key_read(c, &xent->key, &key);
561 	}
562 	kfree(pxent);
563 	up_write(&ubifs_inode(host)->xattr_sem);
564 
565 	if (err != -ENOENT) {
566 		ubifs_err(c, "cannot find next direntry, error %d", err);
567 		return err;
568 	}
569 
570 	return 0;
571 
572 out_err:
573 	up_write(&ubifs_inode(host)->xattr_sem);
574 	return err;
575 }
576 
577 /**
578  * ubifs_evict_xattr_inode - Evict an xattr inode.
579  * @c: UBIFS file-system description object
580  * @xattr_inum: xattr inode number
581  *
582  * When an inode that hosts xattrs is being removed we have to make sure
583  * that cached inodes of the xattrs also get removed from the inode cache
584  * otherwise we'd waste memory. This function looks up an inode from the
585  * inode cache and clears the link counter such that iput() will evict
586  * the inode.
587  */
ubifs_evict_xattr_inode(struct ubifs_info * c,ino_t xattr_inum)588 void ubifs_evict_xattr_inode(struct ubifs_info *c, ino_t xattr_inum)
589 {
590 	struct inode *inode;
591 
592 	inode = ilookup(c->vfs_sb, xattr_inum);
593 	if (inode) {
594 		clear_nlink(inode);
595 		iput(inode);
596 	}
597 }
598 
ubifs_xattr_remove(struct inode * host,const char * name)599 static int ubifs_xattr_remove(struct inode *host, const char *name)
600 {
601 	struct inode *inode;
602 	struct ubifs_info *c = host->i_sb->s_fs_info;
603 	struct fscrypt_name nm = { .disk_name = FSTR_INIT((char *)name, strlen(name))};
604 	struct ubifs_dent_node *xent;
605 	union ubifs_key key;
606 	int err;
607 
608 	ubifs_assert(c, inode_is_locked(host));
609 
610 	if (fname_len(&nm) > UBIFS_MAX_NLEN)
611 		return -ENAMETOOLONG;
612 
613 	xent = kmalloc(UBIFS_MAX_XENT_NODE_SZ, GFP_NOFS);
614 	if (!xent)
615 		return -ENOMEM;
616 
617 	down_write(&ubifs_inode(host)->xattr_sem);
618 	xent_key_init(c, &key, host->i_ino, &nm);
619 	err = ubifs_tnc_lookup_nm(c, &key, xent, &nm);
620 	if (err) {
621 		if (err == -ENOENT)
622 			err = -ENODATA;
623 		goto out_free;
624 	}
625 
626 	inode = iget_xattr(c, le64_to_cpu(xent->inum));
627 	if (IS_ERR(inode)) {
628 		err = PTR_ERR(inode);
629 		goto out_free;
630 	}
631 
632 	ubifs_assert(c, inode->i_nlink == 1);
633 	clear_nlink(inode);
634 	err = remove_xattr(c, host, inode, &nm);
635 	if (err)
636 		set_nlink(inode, 1);
637 
638 	/* If @i_nlink is 0, 'iput()' will delete the inode */
639 	iput(inode);
640 
641 out_free:
642 	up_write(&ubifs_inode(host)->xattr_sem);
643 	kfree(xent);
644 	return err;
645 }
646 
647 #ifdef CONFIG_UBIFS_FS_SECURITY
init_xattrs(struct inode * inode,const struct xattr * xattr_array,void * fs_info)648 static int init_xattrs(struct inode *inode, const struct xattr *xattr_array,
649 		      void *fs_info)
650 {
651 	const struct xattr *xattr;
652 	char *name;
653 	int err = 0;
654 
655 	for (xattr = xattr_array; xattr->name != NULL; xattr++) {
656 		name = kmalloc(XATTR_SECURITY_PREFIX_LEN +
657 			       strlen(xattr->name) + 1, GFP_NOFS);
658 		if (!name) {
659 			err = -ENOMEM;
660 			break;
661 		}
662 		strcpy(name, XATTR_SECURITY_PREFIX);
663 		strcpy(name + XATTR_SECURITY_PREFIX_LEN, xattr->name);
664 		/*
665 		 * creating a new inode without holding the inode rwsem,
666 		 * no need to check whether inode is locked.
667 		 */
668 		err = ubifs_xattr_set(inode, name, xattr->value,
669 				      xattr->value_len, 0, false);
670 		kfree(name);
671 		if (err < 0)
672 			break;
673 	}
674 
675 	return err;
676 }
677 
ubifs_init_security(struct inode * dentry,struct inode * inode,const struct qstr * qstr)678 int ubifs_init_security(struct inode *dentry, struct inode *inode,
679 			const struct qstr *qstr)
680 {
681 	int err;
682 
683 	err = security_inode_init_security(inode, dentry, qstr,
684 					   &init_xattrs, 0);
685 	if (err) {
686 		struct ubifs_info *c = dentry->i_sb->s_fs_info;
687 		ubifs_err(c, "cannot initialize security for inode %lu, error %d",
688 			  inode->i_ino, err);
689 	}
690 	return err;
691 }
692 #endif
693 
xattr_get(const struct xattr_handler * handler,struct dentry * dentry,struct inode * inode,const char * name,void * buffer,size_t size,int flags)694 static int xattr_get(const struct xattr_handler *handler,
695 			   struct dentry *dentry, struct inode *inode,
696 			   const char *name, void *buffer, size_t size,
697 			   int flags)
698 {
699 	dbg_gen("xattr '%s', ino %lu ('%pd'), buf size %zd", name,
700 		inode->i_ino, dentry, size);
701 
702 	name = xattr_full_name(handler, name);
703 	return ubifs_xattr_get(inode, name, buffer, size);
704 }
705 
xattr_set(const struct xattr_handler * handler,struct dentry * dentry,struct inode * inode,const char * name,const void * value,size_t size,int flags)706 static int xattr_set(const struct xattr_handler *handler,
707 			   struct dentry *dentry, struct inode *inode,
708 			   const char *name, const void *value,
709 			   size_t size, int flags)
710 {
711 	dbg_gen("xattr '%s', host ino %lu ('%pd'), size %zd",
712 		name, inode->i_ino, dentry, size);
713 
714 	name = xattr_full_name(handler, name);
715 
716 	if (value)
717 		return ubifs_xattr_set(inode, name, value, size, flags, true);
718 	else
719 		return ubifs_xattr_remove(inode, name);
720 }
721 
722 static const struct xattr_handler ubifs_user_xattr_handler = {
723 	.prefix = XATTR_USER_PREFIX,
724 	.get = xattr_get,
725 	.set = xattr_set,
726 };
727 
728 static const struct xattr_handler ubifs_trusted_xattr_handler = {
729 	.prefix = XATTR_TRUSTED_PREFIX,
730 	.get = xattr_get,
731 	.set = xattr_set,
732 };
733 
734 #ifdef CONFIG_UBIFS_FS_SECURITY
735 static const struct xattr_handler ubifs_security_xattr_handler = {
736 	.prefix = XATTR_SECURITY_PREFIX,
737 	.get = xattr_get,
738 	.set = xattr_set,
739 };
740 #endif
741 
742 const struct xattr_handler *ubifs_xattr_handlers[] = {
743 	&ubifs_user_xattr_handler,
744 	&ubifs_trusted_xattr_handler,
745 #ifdef CONFIG_UBIFS_FS_SECURITY
746 	&ubifs_security_xattr_handler,
747 #endif
748 	NULL
749 };
750