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1 // SPDX-License-Identifier: GPL-2.0-only
2 /* * This file is part of UBIFS.
3  *
4  * Copyright (C) 2006-2008 Nokia Corporation.
5  * Copyright (C) 2006, 2007 University of Szeged, Hungary
6  *
7  * Authors: Artem Bityutskiy (Битюцкий Артём)
8  *          Adrian Hunter
9  *          Zoltan Sogor
10  */
11 
12 /*
13  * This file implements directory operations.
14  *
15  * All FS operations in this file allocate budget before writing anything to the
16  * media. If they fail to allocate it, the error is returned. The only
17  * exceptions are 'ubifs_unlink()' and 'ubifs_rmdir()' which keep working even
18  * if they unable to allocate the budget, because deletion %-ENOSPC failure is
19  * not what users are usually ready to get. UBIFS budgeting subsystem has some
20  * space reserved for these purposes.
21  *
22  * All operations in this file write all inodes which they change straight
23  * away, instead of marking them dirty. For example, 'ubifs_link()' changes
24  * @i_size of the parent inode and writes the parent inode together with the
25  * target inode. This was done to simplify file-system recovery which would
26  * otherwise be very difficult to do. The only exception is rename which marks
27  * the re-named inode dirty (because its @i_ctime is updated) but does not
28  * write it, but just marks it as dirty.
29  */
30 
31 #include "ubifs.h"
32 
33 /**
34  * inherit_flags - inherit flags of the parent inode.
35  * @dir: parent inode
36  * @mode: new inode mode flags
37  *
38  * This is a helper function for 'ubifs_new_inode()' which inherits flag of the
39  * parent directory inode @dir. UBIFS inodes inherit the following flags:
40  * o %UBIFS_COMPR_FL, which is useful to switch compression on/of on
41  *   sub-directory basis;
42  * o %UBIFS_SYNC_FL - useful for the same reasons;
43  * o %UBIFS_DIRSYNC_FL - similar, but relevant only to directories.
44  *
45  * This function returns the inherited flags.
46  */
inherit_flags(const struct inode * dir,umode_t mode)47 static int inherit_flags(const struct inode *dir, umode_t mode)
48 {
49 	int flags;
50 	const struct ubifs_inode *ui = ubifs_inode(dir);
51 
52 	if (!S_ISDIR(dir->i_mode))
53 		/*
54 		 * The parent is not a directory, which means that an extended
55 		 * attribute inode is being created. No flags.
56 		 */
57 		return 0;
58 
59 	flags = ui->flags & (UBIFS_COMPR_FL | UBIFS_SYNC_FL | UBIFS_DIRSYNC_FL);
60 	if (!S_ISDIR(mode))
61 		/* The "DIRSYNC" flag only applies to directories */
62 		flags &= ~UBIFS_DIRSYNC_FL;
63 	return flags;
64 }
65 
66 /**
67  * ubifs_new_inode - allocate new UBIFS inode object.
68  * @c: UBIFS file-system description object
69  * @dir: parent directory inode
70  * @mode: inode mode flags
71  * @is_xattr: whether the inode is xattr inode
72  *
73  * This function finds an unused inode number, allocates new inode and
74  * initializes it. Returns new inode in case of success and an error code in
75  * case of failure.
76  */
ubifs_new_inode(struct ubifs_info * c,struct inode * dir,umode_t mode,bool is_xattr)77 struct inode *ubifs_new_inode(struct ubifs_info *c, struct inode *dir,
78 			      umode_t mode, bool is_xattr)
79 {
80 	int err;
81 	struct inode *inode;
82 	struct ubifs_inode *ui;
83 	bool encrypted = false;
84 
85 	inode = new_inode(c->vfs_sb);
86 	ui = ubifs_inode(inode);
87 	if (!inode)
88 		return ERR_PTR(-ENOMEM);
89 
90 	/*
91 	 * Set 'S_NOCMTIME' to prevent VFS form updating [mc]time of inodes and
92 	 * marking them dirty in file write path (see 'file_update_time()').
93 	 * UBIFS has to fully control "clean <-> dirty" transitions of inodes
94 	 * to make budgeting work.
95 	 */
96 	inode->i_flags |= S_NOCMTIME;
97 
98 	inode_init_owner(&init_user_ns, inode, dir, mode);
99 	inode->i_mtime = inode->i_atime = inode->i_ctime =
100 			 current_time(inode);
101 	inode->i_mapping->nrpages = 0;
102 
103 	if (!is_xattr) {
104 		err = fscrypt_prepare_new_inode(dir, inode, &encrypted);
105 		if (err) {
106 			ubifs_err(c, "fscrypt_prepare_new_inode failed: %i", err);
107 			goto out_iput;
108 		}
109 	}
110 
111 	switch (mode & S_IFMT) {
112 	case S_IFREG:
113 		inode->i_mapping->a_ops = &ubifs_file_address_operations;
114 		inode->i_op = &ubifs_file_inode_operations;
115 		inode->i_fop = &ubifs_file_operations;
116 		break;
117 	case S_IFDIR:
118 		inode->i_op  = &ubifs_dir_inode_operations;
119 		inode->i_fop = &ubifs_dir_operations;
120 		inode->i_size = ui->ui_size = UBIFS_INO_NODE_SZ;
121 		break;
122 	case S_IFLNK:
123 		inode->i_op = &ubifs_symlink_inode_operations;
124 		break;
125 	case S_IFSOCK:
126 	case S_IFIFO:
127 	case S_IFBLK:
128 	case S_IFCHR:
129 		inode->i_op  = &ubifs_file_inode_operations;
130 		break;
131 	default:
132 		BUG();
133 	}
134 
135 	ui->flags = inherit_flags(dir, mode);
136 	ubifs_set_inode_flags(inode);
137 	if (S_ISREG(mode))
138 		ui->compr_type = c->default_compr;
139 	else
140 		ui->compr_type = UBIFS_COMPR_NONE;
141 	ui->synced_i_size = 0;
142 
143 	spin_lock(&c->cnt_lock);
144 	/* Inode number overflow is currently not supported */
145 	if (c->highest_inum >= INUM_WARN_WATERMARK) {
146 		if (c->highest_inum >= INUM_WATERMARK) {
147 			spin_unlock(&c->cnt_lock);
148 			ubifs_err(c, "out of inode numbers");
149 			err = -EINVAL;
150 			goto out_iput;
151 		}
152 		ubifs_warn(c, "running out of inode numbers (current %lu, max %u)",
153 			   (unsigned long)c->highest_inum, INUM_WATERMARK);
154 	}
155 
156 	inode->i_ino = ++c->highest_inum;
157 	/*
158 	 * The creation sequence number remains with this inode for its
159 	 * lifetime. All nodes for this inode have a greater sequence number,
160 	 * and so it is possible to distinguish obsolete nodes belonging to a
161 	 * previous incarnation of the same inode number - for example, for the
162 	 * purpose of rebuilding the index.
163 	 */
164 	ui->creat_sqnum = ++c->max_sqnum;
165 	spin_unlock(&c->cnt_lock);
166 
167 	if (encrypted) {
168 		err = fscrypt_set_context(inode, NULL);
169 		if (err) {
170 			ubifs_err(c, "fscrypt_set_context failed: %i", err);
171 			goto out_iput;
172 		}
173 	}
174 
175 	return inode;
176 
177 out_iput:
178 	make_bad_inode(inode);
179 	iput(inode);
180 	return ERR_PTR(err);
181 }
182 
dbg_check_name(const struct ubifs_info * c,const struct ubifs_dent_node * dent,const struct fscrypt_name * nm)183 static int dbg_check_name(const struct ubifs_info *c,
184 			  const struct ubifs_dent_node *dent,
185 			  const struct fscrypt_name *nm)
186 {
187 	if (!dbg_is_chk_gen(c))
188 		return 0;
189 	if (le16_to_cpu(dent->nlen) != fname_len(nm))
190 		return -EINVAL;
191 	if (memcmp(dent->name, fname_name(nm), fname_len(nm)))
192 		return -EINVAL;
193 	return 0;
194 }
195 
ubifs_lookup(struct inode * dir,struct dentry * dentry,unsigned int flags)196 static struct dentry *ubifs_lookup(struct inode *dir, struct dentry *dentry,
197 				   unsigned int flags)
198 {
199 	int err;
200 	union ubifs_key key;
201 	struct inode *inode = NULL;
202 	struct ubifs_dent_node *dent = NULL;
203 	struct ubifs_info *c = dir->i_sb->s_fs_info;
204 	struct fscrypt_name nm;
205 
206 	dbg_gen("'%pd' in dir ino %lu", dentry, dir->i_ino);
207 
208 	err = fscrypt_prepare_lookup(dir, dentry, &nm);
209 	generic_set_encrypted_ci_d_ops(dentry);
210 	if (err == -ENOENT)
211 		return d_splice_alias(NULL, dentry);
212 	if (err)
213 		return ERR_PTR(err);
214 
215 	if (fname_len(&nm) > UBIFS_MAX_NLEN) {
216 		inode = ERR_PTR(-ENAMETOOLONG);
217 		goto done;
218 	}
219 
220 	dent = kmalloc(UBIFS_MAX_DENT_NODE_SZ, GFP_NOFS);
221 	if (!dent) {
222 		inode = ERR_PTR(-ENOMEM);
223 		goto done;
224 	}
225 
226 	if (fname_name(&nm) == NULL) {
227 		if (nm.hash & ~UBIFS_S_KEY_HASH_MASK)
228 			goto done; /* ENOENT */
229 		dent_key_init_hash(c, &key, dir->i_ino, nm.hash);
230 		err = ubifs_tnc_lookup_dh(c, &key, dent, nm.minor_hash);
231 	} else {
232 		dent_key_init(c, &key, dir->i_ino, &nm);
233 		err = ubifs_tnc_lookup_nm(c, &key, dent, &nm);
234 	}
235 
236 	if (err) {
237 		if (err == -ENOENT)
238 			dbg_gen("not found");
239 		else
240 			inode = ERR_PTR(err);
241 		goto done;
242 	}
243 
244 	if (dbg_check_name(c, dent, &nm)) {
245 		inode = ERR_PTR(-EINVAL);
246 		goto done;
247 	}
248 
249 	inode = ubifs_iget(dir->i_sb, le64_to_cpu(dent->inum));
250 	if (IS_ERR(inode)) {
251 		/*
252 		 * This should not happen. Probably the file-system needs
253 		 * checking.
254 		 */
255 		err = PTR_ERR(inode);
256 		ubifs_err(c, "dead directory entry '%pd', error %d",
257 			  dentry, err);
258 		ubifs_ro_mode(c, err);
259 		goto done;
260 	}
261 
262 	if (IS_ENCRYPTED(dir) &&
263 	    (S_ISDIR(inode->i_mode) || S_ISLNK(inode->i_mode)) &&
264 	    !fscrypt_has_permitted_context(dir, inode)) {
265 		ubifs_warn(c, "Inconsistent encryption contexts: %lu/%lu",
266 			   dir->i_ino, inode->i_ino);
267 		iput(inode);
268 		inode = ERR_PTR(-EPERM);
269 	}
270 
271 done:
272 	kfree(dent);
273 	fscrypt_free_filename(&nm);
274 	return d_splice_alias(inode, dentry);
275 }
276 
ubifs_prepare_create(struct inode * dir,struct dentry * dentry,struct fscrypt_name * nm)277 static int ubifs_prepare_create(struct inode *dir, struct dentry *dentry,
278 				struct fscrypt_name *nm)
279 {
280 	if (fscrypt_is_nokey_name(dentry))
281 		return -ENOKEY;
282 
283 	return fscrypt_setup_filename(dir, &dentry->d_name, 0, nm);
284 }
285 
ubifs_create(struct user_namespace * mnt_userns,struct inode * dir,struct dentry * dentry,umode_t mode,bool excl)286 static int ubifs_create(struct user_namespace *mnt_userns, struct inode *dir,
287 			struct dentry *dentry, umode_t mode, bool excl)
288 {
289 	struct inode *inode;
290 	struct ubifs_info *c = dir->i_sb->s_fs_info;
291 	struct ubifs_budget_req req = { .new_ino = 1, .new_dent = 1,
292 					.dirtied_ino = 1 };
293 	struct ubifs_inode *dir_ui = ubifs_inode(dir);
294 	struct fscrypt_name nm;
295 	int err, sz_change;
296 
297 	/*
298 	 * Budget request settings: new inode, new direntry, changing the
299 	 * parent directory inode.
300 	 */
301 
302 	dbg_gen("dent '%pd', mode %#hx in dir ino %lu",
303 		dentry, mode, dir->i_ino);
304 
305 	err = ubifs_budget_space(c, &req);
306 	if (err)
307 		return err;
308 
309 	err = ubifs_prepare_create(dir, dentry, &nm);
310 	if (err)
311 		goto out_budg;
312 
313 	sz_change = CALC_DENT_SIZE(fname_len(&nm));
314 
315 	inode = ubifs_new_inode(c, dir, mode, false);
316 	if (IS_ERR(inode)) {
317 		err = PTR_ERR(inode);
318 		goto out_fname;
319 	}
320 
321 	err = ubifs_init_security(dir, inode, &dentry->d_name);
322 	if (err)
323 		goto out_inode;
324 
325 	mutex_lock(&dir_ui->ui_mutex);
326 	dir->i_size += sz_change;
327 	dir_ui->ui_size = dir->i_size;
328 	dir->i_mtime = dir->i_ctime = inode->i_ctime;
329 	err = ubifs_jnl_update(c, dir, &nm, inode, 0, 0);
330 	if (err)
331 		goto out_cancel;
332 	mutex_unlock(&dir_ui->ui_mutex);
333 
334 	ubifs_release_budget(c, &req);
335 	fscrypt_free_filename(&nm);
336 	insert_inode_hash(inode);
337 	d_instantiate(dentry, inode);
338 	return 0;
339 
340 out_cancel:
341 	dir->i_size -= sz_change;
342 	dir_ui->ui_size = dir->i_size;
343 	mutex_unlock(&dir_ui->ui_mutex);
344 out_inode:
345 	make_bad_inode(inode);
346 	iput(inode);
347 out_fname:
348 	fscrypt_free_filename(&nm);
349 out_budg:
350 	ubifs_release_budget(c, &req);
351 	ubifs_err(c, "cannot create regular file, error %d", err);
352 	return err;
353 }
354 
create_whiteout(struct inode * dir,struct dentry * dentry)355 static struct inode *create_whiteout(struct inode *dir, struct dentry *dentry)
356 {
357 	int err;
358 	umode_t mode = S_IFCHR | WHITEOUT_MODE;
359 	struct inode *inode;
360 	struct ubifs_info *c = dir->i_sb->s_fs_info;
361 
362 	/*
363 	 * Create an inode('nlink = 1') for whiteout without updating journal,
364 	 * let ubifs_jnl_rename() store it on flash to complete rename whiteout
365 	 * atomically.
366 	 */
367 
368 	dbg_gen("dent '%pd', mode %#hx in dir ino %lu",
369 		dentry, mode, dir->i_ino);
370 
371 	inode = ubifs_new_inode(c, dir, mode, false);
372 	if (IS_ERR(inode)) {
373 		err = PTR_ERR(inode);
374 		goto out_free;
375 	}
376 
377 	init_special_inode(inode, inode->i_mode, WHITEOUT_DEV);
378 	ubifs_assert(c, inode->i_op == &ubifs_file_inode_operations);
379 
380 	err = ubifs_init_security(dir, inode, &dentry->d_name);
381 	if (err)
382 		goto out_inode;
383 
384 	/* The dir size is updated by do_rename. */
385 	insert_inode_hash(inode);
386 
387 	return inode;
388 
389 out_inode:
390 	make_bad_inode(inode);
391 	iput(inode);
392 out_free:
393 	ubifs_err(c, "cannot create whiteout file, error %d", err);
394 	return ERR_PTR(err);
395 }
396 
397 /**
398  * lock_2_inodes - a wrapper for locking two UBIFS inodes.
399  * @inode1: first inode
400  * @inode2: second inode
401  *
402  * We do not implement any tricks to guarantee strict lock ordering, because
403  * VFS has already done it for us on the @i_mutex. So this is just a simple
404  * wrapper function.
405  */
lock_2_inodes(struct inode * inode1,struct inode * inode2)406 static void lock_2_inodes(struct inode *inode1, struct inode *inode2)
407 {
408 	mutex_lock_nested(&ubifs_inode(inode1)->ui_mutex, WB_MUTEX_1);
409 	mutex_lock_nested(&ubifs_inode(inode2)->ui_mutex, WB_MUTEX_2);
410 }
411 
412 /**
413  * unlock_2_inodes - a wrapper for unlocking two UBIFS inodes.
414  * @inode1: first inode
415  * @inode2: second inode
416  */
unlock_2_inodes(struct inode * inode1,struct inode * inode2)417 static void unlock_2_inodes(struct inode *inode1, struct inode *inode2)
418 {
419 	mutex_unlock(&ubifs_inode(inode2)->ui_mutex);
420 	mutex_unlock(&ubifs_inode(inode1)->ui_mutex);
421 }
422 
ubifs_tmpfile(struct user_namespace * mnt_userns,struct inode * dir,struct dentry * dentry,umode_t mode)423 static int ubifs_tmpfile(struct user_namespace *mnt_userns, struct inode *dir,
424 			 struct dentry *dentry, umode_t mode)
425 {
426 	struct inode *inode;
427 	struct ubifs_info *c = dir->i_sb->s_fs_info;
428 	struct ubifs_budget_req req = { .new_ino = 1, .new_dent = 1,
429 					.dirtied_ino = 1};
430 	struct ubifs_budget_req ino_req = { .dirtied_ino = 1 };
431 	struct ubifs_inode *ui;
432 	int err, instantiated = 0;
433 	struct fscrypt_name nm;
434 
435 	/*
436 	 * Budget request settings: new inode, new direntry, changing the
437 	 * parent directory inode.
438 	 * Allocate budget separately for new dirtied inode, the budget will
439 	 * be released via writeback.
440 	 */
441 
442 	dbg_gen("dent '%pd', mode %#hx in dir ino %lu",
443 		dentry, mode, dir->i_ino);
444 
445 	err = fscrypt_setup_filename(dir, &dentry->d_name, 0, &nm);
446 	if (err)
447 		return err;
448 
449 	err = ubifs_budget_space(c, &req);
450 	if (err) {
451 		fscrypt_free_filename(&nm);
452 		return err;
453 	}
454 
455 	err = ubifs_budget_space(c, &ino_req);
456 	if (err) {
457 		ubifs_release_budget(c, &req);
458 		fscrypt_free_filename(&nm);
459 		return err;
460 	}
461 
462 	inode = ubifs_new_inode(c, dir, mode, false);
463 	if (IS_ERR(inode)) {
464 		err = PTR_ERR(inode);
465 		goto out_budg;
466 	}
467 	ui = ubifs_inode(inode);
468 
469 	err = ubifs_init_security(dir, inode, &dentry->d_name);
470 	if (err)
471 		goto out_inode;
472 
473 	mutex_lock(&ui->ui_mutex);
474 	insert_inode_hash(inode);
475 	d_tmpfile(dentry, inode);
476 	ubifs_assert(c, ui->dirty);
477 
478 	instantiated = 1;
479 	mutex_unlock(&ui->ui_mutex);
480 
481 	lock_2_inodes(dir, inode);
482 	err = ubifs_jnl_update(c, dir, &nm, inode, 1, 0);
483 	if (err)
484 		goto out_cancel;
485 	unlock_2_inodes(dir, inode);
486 
487 	ubifs_release_budget(c, &req);
488 	fscrypt_free_filename(&nm);
489 
490 	return 0;
491 
492 out_cancel:
493 	unlock_2_inodes(dir, inode);
494 out_inode:
495 	make_bad_inode(inode);
496 	if (!instantiated)
497 		iput(inode);
498 out_budg:
499 	ubifs_release_budget(c, &req);
500 	if (!instantiated)
501 		ubifs_release_budget(c, &ino_req);
502 	fscrypt_free_filename(&nm);
503 	ubifs_err(c, "cannot create temporary file, error %d", err);
504 	return err;
505 }
506 
507 /**
508  * vfs_dent_type - get VFS directory entry type.
509  * @type: UBIFS directory entry type
510  *
511  * This function converts UBIFS directory entry type into VFS directory entry
512  * type.
513  */
vfs_dent_type(uint8_t type)514 static unsigned int vfs_dent_type(uint8_t type)
515 {
516 	switch (type) {
517 	case UBIFS_ITYPE_REG:
518 		return DT_REG;
519 	case UBIFS_ITYPE_DIR:
520 		return DT_DIR;
521 	case UBIFS_ITYPE_LNK:
522 		return DT_LNK;
523 	case UBIFS_ITYPE_BLK:
524 		return DT_BLK;
525 	case UBIFS_ITYPE_CHR:
526 		return DT_CHR;
527 	case UBIFS_ITYPE_FIFO:
528 		return DT_FIFO;
529 	case UBIFS_ITYPE_SOCK:
530 		return DT_SOCK;
531 	default:
532 		BUG();
533 	}
534 	return 0;
535 }
536 
537 /*
538  * The classical Unix view for directory is that it is a linear array of
539  * (name, inode number) entries. Linux/VFS assumes this model as well.
540  * Particularly, 'readdir()' call wants us to return a directory entry offset
541  * which later may be used to continue 'readdir()'ing the directory or to
542  * 'seek()' to that specific direntry. Obviously UBIFS does not really fit this
543  * model because directory entries are identified by keys, which may collide.
544  *
545  * UBIFS uses directory entry hash value for directory offsets, so
546  * 'seekdir()'/'telldir()' may not always work because of possible key
547  * collisions. But UBIFS guarantees that consecutive 'readdir()' calls work
548  * properly by means of saving full directory entry name in the private field
549  * of the file description object.
550  *
551  * This means that UBIFS cannot support NFS which requires full
552  * 'seekdir()'/'telldir()' support.
553  */
ubifs_readdir(struct file * file,struct dir_context * ctx)554 static int ubifs_readdir(struct file *file, struct dir_context *ctx)
555 {
556 	int fstr_real_len = 0, err = 0;
557 	struct fscrypt_name nm;
558 	struct fscrypt_str fstr = {0};
559 	union ubifs_key key;
560 	struct ubifs_dent_node *dent;
561 	struct inode *dir = file_inode(file);
562 	struct ubifs_info *c = dir->i_sb->s_fs_info;
563 	bool encrypted = IS_ENCRYPTED(dir);
564 
565 	dbg_gen("dir ino %lu, f_pos %#llx", dir->i_ino, ctx->pos);
566 
567 	if (ctx->pos > UBIFS_S_KEY_HASH_MASK || ctx->pos == 2)
568 		/*
569 		 * The directory was seek'ed to a senseless position or there
570 		 * are no more entries.
571 		 */
572 		return 0;
573 
574 	if (encrypted) {
575 		err = fscrypt_prepare_readdir(dir);
576 		if (err)
577 			return err;
578 
579 		err = fscrypt_fname_alloc_buffer(UBIFS_MAX_NLEN, &fstr);
580 		if (err)
581 			return err;
582 
583 		fstr_real_len = fstr.len;
584 	}
585 
586 	if (file->f_version == 0) {
587 		/*
588 		 * The file was seek'ed, which means that @file->private_data
589 		 * is now invalid. This may also be just the first
590 		 * 'ubifs_readdir()' invocation, in which case
591 		 * @file->private_data is NULL, and the below code is
592 		 * basically a no-op.
593 		 */
594 		kfree(file->private_data);
595 		file->private_data = NULL;
596 	}
597 
598 	/*
599 	 * 'generic_file_llseek()' unconditionally sets @file->f_version to
600 	 * zero, and we use this for detecting whether the file was seek'ed.
601 	 */
602 	file->f_version = 1;
603 
604 	/* File positions 0 and 1 correspond to "." and ".." */
605 	if (ctx->pos < 2) {
606 		ubifs_assert(c, !file->private_data);
607 		if (!dir_emit_dots(file, ctx)) {
608 			if (encrypted)
609 				fscrypt_fname_free_buffer(&fstr);
610 			return 0;
611 		}
612 
613 		/* Find the first entry in TNC and save it */
614 		lowest_dent_key(c, &key, dir->i_ino);
615 		fname_len(&nm) = 0;
616 		dent = ubifs_tnc_next_ent(c, &key, &nm);
617 		if (IS_ERR(dent)) {
618 			err = PTR_ERR(dent);
619 			goto out;
620 		}
621 
622 		ctx->pos = key_hash_flash(c, &dent->key);
623 		file->private_data = dent;
624 	}
625 
626 	dent = file->private_data;
627 	if (!dent) {
628 		/*
629 		 * The directory was seek'ed to and is now readdir'ed.
630 		 * Find the entry corresponding to @ctx->pos or the closest one.
631 		 */
632 		dent_key_init_hash(c, &key, dir->i_ino, ctx->pos);
633 		fname_len(&nm) = 0;
634 		dent = ubifs_tnc_next_ent(c, &key, &nm);
635 		if (IS_ERR(dent)) {
636 			err = PTR_ERR(dent);
637 			goto out;
638 		}
639 		ctx->pos = key_hash_flash(c, &dent->key);
640 		file->private_data = dent;
641 	}
642 
643 	while (1) {
644 		dbg_gen("ino %llu, new f_pos %#x",
645 			(unsigned long long)le64_to_cpu(dent->inum),
646 			key_hash_flash(c, &dent->key));
647 		ubifs_assert(c, le64_to_cpu(dent->ch.sqnum) >
648 			     ubifs_inode(dir)->creat_sqnum);
649 
650 		fname_len(&nm) = le16_to_cpu(dent->nlen);
651 		fname_name(&nm) = dent->name;
652 
653 		if (encrypted) {
654 			fstr.len = fstr_real_len;
655 
656 			err = fscrypt_fname_disk_to_usr(dir, key_hash_flash(c,
657 							&dent->key),
658 							le32_to_cpu(dent->cookie),
659 							&nm.disk_name, &fstr);
660 			if (err)
661 				goto out;
662 		} else {
663 			fstr.len = fname_len(&nm);
664 			fstr.name = fname_name(&nm);
665 		}
666 
667 		if (!dir_emit(ctx, fstr.name, fstr.len,
668 			       le64_to_cpu(dent->inum),
669 			       vfs_dent_type(dent->type))) {
670 			if (encrypted)
671 				fscrypt_fname_free_buffer(&fstr);
672 			return 0;
673 		}
674 
675 		/* Switch to the next entry */
676 		key_read(c, &dent->key, &key);
677 		dent = ubifs_tnc_next_ent(c, &key, &nm);
678 		if (IS_ERR(dent)) {
679 			err = PTR_ERR(dent);
680 			goto out;
681 		}
682 
683 		kfree(file->private_data);
684 		ctx->pos = key_hash_flash(c, &dent->key);
685 		file->private_data = dent;
686 		cond_resched();
687 	}
688 
689 out:
690 	kfree(file->private_data);
691 	file->private_data = NULL;
692 
693 	if (encrypted)
694 		fscrypt_fname_free_buffer(&fstr);
695 
696 	if (err != -ENOENT)
697 		ubifs_err(c, "cannot find next direntry, error %d", err);
698 	else
699 		/*
700 		 * -ENOENT is a non-fatal error in this context, the TNC uses
701 		 * it to indicate that the cursor moved past the current directory
702 		 * and readdir() has to stop.
703 		 */
704 		err = 0;
705 
706 
707 	/* 2 is a special value indicating that there are no more direntries */
708 	ctx->pos = 2;
709 	return err;
710 }
711 
712 /* Free saved readdir() state when the directory is closed */
ubifs_dir_release(struct inode * dir,struct file * file)713 static int ubifs_dir_release(struct inode *dir, struct file *file)
714 {
715 	kfree(file->private_data);
716 	file->private_data = NULL;
717 	return 0;
718 }
719 
ubifs_link(struct dentry * old_dentry,struct inode * dir,struct dentry * dentry)720 static int ubifs_link(struct dentry *old_dentry, struct inode *dir,
721 		      struct dentry *dentry)
722 {
723 	struct ubifs_info *c = dir->i_sb->s_fs_info;
724 	struct inode *inode = d_inode(old_dentry);
725 	struct ubifs_inode *ui = ubifs_inode(inode);
726 	struct ubifs_inode *dir_ui = ubifs_inode(dir);
727 	int err, sz_change = CALC_DENT_SIZE(dentry->d_name.len);
728 	struct ubifs_budget_req req = { .new_dent = 1, .dirtied_ino = 2,
729 				.dirtied_ino_d = ALIGN(ui->data_len, 8) };
730 	struct fscrypt_name nm;
731 
732 	/*
733 	 * Budget request settings: new direntry, changing the target inode,
734 	 * changing the parent inode.
735 	 */
736 
737 	dbg_gen("dent '%pd' to ino %lu (nlink %d) in dir ino %lu",
738 		dentry, inode->i_ino,
739 		inode->i_nlink, dir->i_ino);
740 	ubifs_assert(c, inode_is_locked(dir));
741 	ubifs_assert(c, inode_is_locked(inode));
742 
743 	err = fscrypt_prepare_link(old_dentry, dir, dentry);
744 	if (err)
745 		return err;
746 
747 	err = fscrypt_setup_filename(dir, &dentry->d_name, 0, &nm);
748 	if (err)
749 		return err;
750 
751 	err = dbg_check_synced_i_size(c, inode);
752 	if (err)
753 		goto out_fname;
754 
755 	err = ubifs_budget_space(c, &req);
756 	if (err)
757 		goto out_fname;
758 
759 	lock_2_inodes(dir, inode);
760 
761 	/* Handle O_TMPFILE corner case, it is allowed to link a O_TMPFILE. */
762 	if (inode->i_nlink == 0)
763 		ubifs_delete_orphan(c, inode->i_ino);
764 
765 	inc_nlink(inode);
766 	ihold(inode);
767 	inode->i_ctime = current_time(inode);
768 	dir->i_size += sz_change;
769 	dir_ui->ui_size = dir->i_size;
770 	dir->i_mtime = dir->i_ctime = inode->i_ctime;
771 	err = ubifs_jnl_update(c, dir, &nm, inode, 0, 0);
772 	if (err)
773 		goto out_cancel;
774 	unlock_2_inodes(dir, inode);
775 
776 	ubifs_release_budget(c, &req);
777 	d_instantiate(dentry, inode);
778 	fscrypt_free_filename(&nm);
779 	return 0;
780 
781 out_cancel:
782 	dir->i_size -= sz_change;
783 	dir_ui->ui_size = dir->i_size;
784 	drop_nlink(inode);
785 	if (inode->i_nlink == 0)
786 		ubifs_add_orphan(c, inode->i_ino);
787 	unlock_2_inodes(dir, inode);
788 	ubifs_release_budget(c, &req);
789 	iput(inode);
790 out_fname:
791 	fscrypt_free_filename(&nm);
792 	return err;
793 }
794 
ubifs_unlink(struct inode * dir,struct dentry * dentry)795 static int ubifs_unlink(struct inode *dir, struct dentry *dentry)
796 {
797 	struct ubifs_info *c = dir->i_sb->s_fs_info;
798 	struct inode *inode = d_inode(dentry);
799 	struct ubifs_inode *dir_ui = ubifs_inode(dir);
800 	int err, sz_change, budgeted = 1;
801 	struct ubifs_budget_req req = { .mod_dent = 1, .dirtied_ino = 2 };
802 	unsigned int saved_nlink = inode->i_nlink;
803 	struct fscrypt_name nm;
804 
805 	/*
806 	 * Budget request settings: deletion direntry, deletion inode (+1 for
807 	 * @dirtied_ino), changing the parent directory inode. If budgeting
808 	 * fails, go ahead anyway because we have extra space reserved for
809 	 * deletions.
810 	 */
811 
812 	dbg_gen("dent '%pd' from ino %lu (nlink %d) in dir ino %lu",
813 		dentry, inode->i_ino,
814 		inode->i_nlink, dir->i_ino);
815 
816 	err = fscrypt_setup_filename(dir, &dentry->d_name, 1, &nm);
817 	if (err)
818 		return err;
819 
820 	err = ubifs_purge_xattrs(inode);
821 	if (err)
822 		return err;
823 
824 	sz_change = CALC_DENT_SIZE(fname_len(&nm));
825 
826 	ubifs_assert(c, inode_is_locked(dir));
827 	ubifs_assert(c, inode_is_locked(inode));
828 	err = dbg_check_synced_i_size(c, inode);
829 	if (err)
830 		goto out_fname;
831 
832 	err = ubifs_budget_space(c, &req);
833 	if (err) {
834 		if (err != -ENOSPC)
835 			goto out_fname;
836 		budgeted = 0;
837 	}
838 
839 	lock_2_inodes(dir, inode);
840 	inode->i_ctime = current_time(dir);
841 	drop_nlink(inode);
842 	dir->i_size -= sz_change;
843 	dir_ui->ui_size = dir->i_size;
844 	dir->i_mtime = dir->i_ctime = inode->i_ctime;
845 	err = ubifs_jnl_update(c, dir, &nm, inode, 1, 0);
846 	if (err)
847 		goto out_cancel;
848 	unlock_2_inodes(dir, inode);
849 
850 	if (budgeted)
851 		ubifs_release_budget(c, &req);
852 	else {
853 		/* We've deleted something - clean the "no space" flags */
854 		c->bi.nospace = c->bi.nospace_rp = 0;
855 		smp_wmb();
856 	}
857 	fscrypt_free_filename(&nm);
858 	return 0;
859 
860 out_cancel:
861 	dir->i_size += sz_change;
862 	dir_ui->ui_size = dir->i_size;
863 	set_nlink(inode, saved_nlink);
864 	unlock_2_inodes(dir, inode);
865 	if (budgeted)
866 		ubifs_release_budget(c, &req);
867 out_fname:
868 	fscrypt_free_filename(&nm);
869 	return err;
870 }
871 
872 /**
873  * check_dir_empty - check if a directory is empty or not.
874  * @dir: VFS inode object of the directory to check
875  *
876  * This function checks if directory @dir is empty. Returns zero if the
877  * directory is empty, %-ENOTEMPTY if it is not, and other negative error codes
878  * in case of errors.
879  */
ubifs_check_dir_empty(struct inode * dir)880 int ubifs_check_dir_empty(struct inode *dir)
881 {
882 	struct ubifs_info *c = dir->i_sb->s_fs_info;
883 	struct fscrypt_name nm = { 0 };
884 	struct ubifs_dent_node *dent;
885 	union ubifs_key key;
886 	int err;
887 
888 	lowest_dent_key(c, &key, dir->i_ino);
889 	dent = ubifs_tnc_next_ent(c, &key, &nm);
890 	if (IS_ERR(dent)) {
891 		err = PTR_ERR(dent);
892 		if (err == -ENOENT)
893 			err = 0;
894 	} else {
895 		kfree(dent);
896 		err = -ENOTEMPTY;
897 	}
898 	return err;
899 }
900 
ubifs_rmdir(struct inode * dir,struct dentry * dentry)901 static int ubifs_rmdir(struct inode *dir, struct dentry *dentry)
902 {
903 	struct ubifs_info *c = dir->i_sb->s_fs_info;
904 	struct inode *inode = d_inode(dentry);
905 	int err, sz_change, budgeted = 1;
906 	struct ubifs_inode *dir_ui = ubifs_inode(dir);
907 	struct ubifs_budget_req req = { .mod_dent = 1, .dirtied_ino = 2 };
908 	struct fscrypt_name nm;
909 
910 	/*
911 	 * Budget request settings: deletion direntry, deletion inode and
912 	 * changing the parent inode. If budgeting fails, go ahead anyway
913 	 * because we have extra space reserved for deletions.
914 	 */
915 
916 	dbg_gen("directory '%pd', ino %lu in dir ino %lu", dentry,
917 		inode->i_ino, dir->i_ino);
918 	ubifs_assert(c, inode_is_locked(dir));
919 	ubifs_assert(c, inode_is_locked(inode));
920 	err = ubifs_check_dir_empty(d_inode(dentry));
921 	if (err)
922 		return err;
923 
924 	err = fscrypt_setup_filename(dir, &dentry->d_name, 1, &nm);
925 	if (err)
926 		return err;
927 
928 	err = ubifs_purge_xattrs(inode);
929 	if (err)
930 		return err;
931 
932 	sz_change = CALC_DENT_SIZE(fname_len(&nm));
933 
934 	err = ubifs_budget_space(c, &req);
935 	if (err) {
936 		if (err != -ENOSPC)
937 			goto out_fname;
938 		budgeted = 0;
939 	}
940 
941 	lock_2_inodes(dir, inode);
942 	inode->i_ctime = current_time(dir);
943 	clear_nlink(inode);
944 	drop_nlink(dir);
945 	dir->i_size -= sz_change;
946 	dir_ui->ui_size = dir->i_size;
947 	dir->i_mtime = dir->i_ctime = inode->i_ctime;
948 	err = ubifs_jnl_update(c, dir, &nm, inode, 1, 0);
949 	if (err)
950 		goto out_cancel;
951 	unlock_2_inodes(dir, inode);
952 
953 	if (budgeted)
954 		ubifs_release_budget(c, &req);
955 	else {
956 		/* We've deleted something - clean the "no space" flags */
957 		c->bi.nospace = c->bi.nospace_rp = 0;
958 		smp_wmb();
959 	}
960 	fscrypt_free_filename(&nm);
961 	return 0;
962 
963 out_cancel:
964 	dir->i_size += sz_change;
965 	dir_ui->ui_size = dir->i_size;
966 	inc_nlink(dir);
967 	set_nlink(inode, 2);
968 	unlock_2_inodes(dir, inode);
969 	if (budgeted)
970 		ubifs_release_budget(c, &req);
971 out_fname:
972 	fscrypt_free_filename(&nm);
973 	return err;
974 }
975 
ubifs_mkdir(struct user_namespace * mnt_userns,struct inode * dir,struct dentry * dentry,umode_t mode)976 static int ubifs_mkdir(struct user_namespace *mnt_userns, struct inode *dir,
977 		       struct dentry *dentry, umode_t mode)
978 {
979 	struct inode *inode;
980 	struct ubifs_inode *dir_ui = ubifs_inode(dir);
981 	struct ubifs_info *c = dir->i_sb->s_fs_info;
982 	int err, sz_change;
983 	struct ubifs_budget_req req = { .new_ino = 1, .new_dent = 1,
984 					.dirtied_ino = 1};
985 	struct fscrypt_name nm;
986 
987 	/*
988 	 * Budget request settings: new inode, new direntry and changing parent
989 	 * directory inode.
990 	 */
991 
992 	dbg_gen("dent '%pd', mode %#hx in dir ino %lu",
993 		dentry, mode, dir->i_ino);
994 
995 	err = ubifs_budget_space(c, &req);
996 	if (err)
997 		return err;
998 
999 	err = ubifs_prepare_create(dir, dentry, &nm);
1000 	if (err)
1001 		goto out_budg;
1002 
1003 	sz_change = CALC_DENT_SIZE(fname_len(&nm));
1004 
1005 	inode = ubifs_new_inode(c, dir, S_IFDIR | mode, false);
1006 	if (IS_ERR(inode)) {
1007 		err = PTR_ERR(inode);
1008 		goto out_fname;
1009 	}
1010 
1011 	err = ubifs_init_security(dir, inode, &dentry->d_name);
1012 	if (err)
1013 		goto out_inode;
1014 
1015 	mutex_lock(&dir_ui->ui_mutex);
1016 	insert_inode_hash(inode);
1017 	inc_nlink(inode);
1018 	inc_nlink(dir);
1019 	dir->i_size += sz_change;
1020 	dir_ui->ui_size = dir->i_size;
1021 	dir->i_mtime = dir->i_ctime = inode->i_ctime;
1022 	err = ubifs_jnl_update(c, dir, &nm, inode, 0, 0);
1023 	if (err) {
1024 		ubifs_err(c, "cannot create directory, error %d", err);
1025 		goto out_cancel;
1026 	}
1027 	mutex_unlock(&dir_ui->ui_mutex);
1028 
1029 	ubifs_release_budget(c, &req);
1030 	d_instantiate(dentry, inode);
1031 	fscrypt_free_filename(&nm);
1032 	return 0;
1033 
1034 out_cancel:
1035 	dir->i_size -= sz_change;
1036 	dir_ui->ui_size = dir->i_size;
1037 	drop_nlink(dir);
1038 	mutex_unlock(&dir_ui->ui_mutex);
1039 out_inode:
1040 	make_bad_inode(inode);
1041 	iput(inode);
1042 out_fname:
1043 	fscrypt_free_filename(&nm);
1044 out_budg:
1045 	ubifs_release_budget(c, &req);
1046 	return err;
1047 }
1048 
ubifs_mknod(struct user_namespace * mnt_userns,struct inode * dir,struct dentry * dentry,umode_t mode,dev_t rdev)1049 static int ubifs_mknod(struct user_namespace *mnt_userns, struct inode *dir,
1050 		       struct dentry *dentry, umode_t mode, dev_t rdev)
1051 {
1052 	struct inode *inode;
1053 	struct ubifs_inode *ui;
1054 	struct ubifs_inode *dir_ui = ubifs_inode(dir);
1055 	struct ubifs_info *c = dir->i_sb->s_fs_info;
1056 	union ubifs_dev_desc *dev = NULL;
1057 	int sz_change;
1058 	int err, devlen = 0;
1059 	struct ubifs_budget_req req = { .new_ino = 1, .new_dent = 1,
1060 					.dirtied_ino = 1 };
1061 	struct fscrypt_name nm;
1062 
1063 	/*
1064 	 * Budget request settings: new inode, new direntry and changing parent
1065 	 * directory inode.
1066 	 */
1067 
1068 	dbg_gen("dent '%pd' in dir ino %lu", dentry, dir->i_ino);
1069 
1070 	if (S_ISBLK(mode) || S_ISCHR(mode)) {
1071 		dev = kmalloc(sizeof(union ubifs_dev_desc), GFP_NOFS);
1072 		if (!dev)
1073 			return -ENOMEM;
1074 		devlen = ubifs_encode_dev(dev, rdev);
1075 	}
1076 
1077 	req.new_ino_d = ALIGN(devlen, 8);
1078 	err = ubifs_budget_space(c, &req);
1079 	if (err) {
1080 		kfree(dev);
1081 		return err;
1082 	}
1083 
1084 	err = ubifs_prepare_create(dir, dentry, &nm);
1085 	if (err) {
1086 		kfree(dev);
1087 		goto out_budg;
1088 	}
1089 
1090 	sz_change = CALC_DENT_SIZE(fname_len(&nm));
1091 
1092 	inode = ubifs_new_inode(c, dir, mode, false);
1093 	if (IS_ERR(inode)) {
1094 		kfree(dev);
1095 		err = PTR_ERR(inode);
1096 		goto out_fname;
1097 	}
1098 
1099 	init_special_inode(inode, inode->i_mode, rdev);
1100 	inode->i_size = ubifs_inode(inode)->ui_size = devlen;
1101 	ui = ubifs_inode(inode);
1102 	ui->data = dev;
1103 	ui->data_len = devlen;
1104 
1105 	err = ubifs_init_security(dir, inode, &dentry->d_name);
1106 	if (err)
1107 		goto out_inode;
1108 
1109 	mutex_lock(&dir_ui->ui_mutex);
1110 	dir->i_size += sz_change;
1111 	dir_ui->ui_size = dir->i_size;
1112 	dir->i_mtime = dir->i_ctime = inode->i_ctime;
1113 	err = ubifs_jnl_update(c, dir, &nm, inode, 0, 0);
1114 	if (err)
1115 		goto out_cancel;
1116 	mutex_unlock(&dir_ui->ui_mutex);
1117 
1118 	ubifs_release_budget(c, &req);
1119 	insert_inode_hash(inode);
1120 	d_instantiate(dentry, inode);
1121 	fscrypt_free_filename(&nm);
1122 	return 0;
1123 
1124 out_cancel:
1125 	dir->i_size -= sz_change;
1126 	dir_ui->ui_size = dir->i_size;
1127 	mutex_unlock(&dir_ui->ui_mutex);
1128 out_inode:
1129 	make_bad_inode(inode);
1130 	iput(inode);
1131 out_fname:
1132 	fscrypt_free_filename(&nm);
1133 out_budg:
1134 	ubifs_release_budget(c, &req);
1135 	return err;
1136 }
1137 
ubifs_symlink(struct user_namespace * mnt_userns,struct inode * dir,struct dentry * dentry,const char * symname)1138 static int ubifs_symlink(struct user_namespace *mnt_userns, struct inode *dir,
1139 			 struct dentry *dentry, const char *symname)
1140 {
1141 	struct inode *inode;
1142 	struct ubifs_inode *ui;
1143 	struct ubifs_inode *dir_ui = ubifs_inode(dir);
1144 	struct ubifs_info *c = dir->i_sb->s_fs_info;
1145 	int err, sz_change, len = strlen(symname);
1146 	struct fscrypt_str disk_link;
1147 	struct ubifs_budget_req req = { .new_ino = 1, .new_dent = 1,
1148 					.dirtied_ino = 1 };
1149 	struct fscrypt_name nm;
1150 
1151 	dbg_gen("dent '%pd', target '%s' in dir ino %lu", dentry,
1152 		symname, dir->i_ino);
1153 
1154 	err = fscrypt_prepare_symlink(dir, symname, len, UBIFS_MAX_INO_DATA,
1155 				      &disk_link);
1156 	if (err)
1157 		return err;
1158 
1159 	/*
1160 	 * Budget request settings: new inode, new direntry and changing parent
1161 	 * directory inode.
1162 	 */
1163 	req.new_ino_d = ALIGN(disk_link.len - 1, 8);
1164 	err = ubifs_budget_space(c, &req);
1165 	if (err)
1166 		return err;
1167 
1168 	err = ubifs_prepare_create(dir, dentry, &nm);
1169 	if (err)
1170 		goto out_budg;
1171 
1172 	sz_change = CALC_DENT_SIZE(fname_len(&nm));
1173 
1174 	inode = ubifs_new_inode(c, dir, S_IFLNK | S_IRWXUGO, false);
1175 	if (IS_ERR(inode)) {
1176 		err = PTR_ERR(inode);
1177 		goto out_fname;
1178 	}
1179 
1180 	ui = ubifs_inode(inode);
1181 	ui->data = kmalloc(disk_link.len, GFP_NOFS);
1182 	if (!ui->data) {
1183 		err = -ENOMEM;
1184 		goto out_inode;
1185 	}
1186 
1187 	if (IS_ENCRYPTED(inode)) {
1188 		disk_link.name = ui->data; /* encrypt directly into ui->data */
1189 		err = fscrypt_encrypt_symlink(inode, symname, len, &disk_link);
1190 		if (err)
1191 			goto out_inode;
1192 	} else {
1193 		memcpy(ui->data, disk_link.name, disk_link.len);
1194 		inode->i_link = ui->data;
1195 	}
1196 
1197 	/*
1198 	 * The terminating zero byte is not written to the flash media and it
1199 	 * is put just to make later in-memory string processing simpler. Thus,
1200 	 * data length is @disk_link.len - 1, not @disk_link.len.
1201 	 */
1202 	ui->data_len = disk_link.len - 1;
1203 	inode->i_size = ubifs_inode(inode)->ui_size = disk_link.len - 1;
1204 
1205 	err = ubifs_init_security(dir, inode, &dentry->d_name);
1206 	if (err)
1207 		goto out_inode;
1208 
1209 	mutex_lock(&dir_ui->ui_mutex);
1210 	dir->i_size += sz_change;
1211 	dir_ui->ui_size = dir->i_size;
1212 	dir->i_mtime = dir->i_ctime = inode->i_ctime;
1213 	err = ubifs_jnl_update(c, dir, &nm, inode, 0, 0);
1214 	if (err)
1215 		goto out_cancel;
1216 	mutex_unlock(&dir_ui->ui_mutex);
1217 
1218 	insert_inode_hash(inode);
1219 	d_instantiate(dentry, inode);
1220 	err = 0;
1221 	goto out_fname;
1222 
1223 out_cancel:
1224 	dir->i_size -= sz_change;
1225 	dir_ui->ui_size = dir->i_size;
1226 	mutex_unlock(&dir_ui->ui_mutex);
1227 out_inode:
1228 	/* Free inode->i_link before inode is marked as bad. */
1229 	fscrypt_free_inode(inode);
1230 	make_bad_inode(inode);
1231 	iput(inode);
1232 out_fname:
1233 	fscrypt_free_filename(&nm);
1234 out_budg:
1235 	ubifs_release_budget(c, &req);
1236 	return err;
1237 }
1238 
1239 /**
1240  * lock_4_inodes - a wrapper for locking three UBIFS inodes.
1241  * @inode1: first inode
1242  * @inode2: second inode
1243  * @inode3: third inode
1244  * @inode4: fouth inode
1245  *
1246  * This function is used for 'ubifs_rename()' and @inode1 may be the same as
1247  * @inode2 whereas @inode3 and @inode4 may be %NULL.
1248  *
1249  * We do not implement any tricks to guarantee strict lock ordering, because
1250  * VFS has already done it for us on the @i_mutex. So this is just a simple
1251  * wrapper function.
1252  */
lock_4_inodes(struct inode * inode1,struct inode * inode2,struct inode * inode3,struct inode * inode4)1253 static void lock_4_inodes(struct inode *inode1, struct inode *inode2,
1254 			  struct inode *inode3, struct inode *inode4)
1255 {
1256 	mutex_lock_nested(&ubifs_inode(inode1)->ui_mutex, WB_MUTEX_1);
1257 	if (inode2 != inode1)
1258 		mutex_lock_nested(&ubifs_inode(inode2)->ui_mutex, WB_MUTEX_2);
1259 	if (inode3)
1260 		mutex_lock_nested(&ubifs_inode(inode3)->ui_mutex, WB_MUTEX_3);
1261 	if (inode4)
1262 		mutex_lock_nested(&ubifs_inode(inode4)->ui_mutex, WB_MUTEX_4);
1263 }
1264 
1265 /**
1266  * unlock_4_inodes - a wrapper for unlocking three UBIFS inodes for rename.
1267  * @inode1: first inode
1268  * @inode2: second inode
1269  * @inode3: third inode
1270  * @inode4: fouth inode
1271  */
unlock_4_inodes(struct inode * inode1,struct inode * inode2,struct inode * inode3,struct inode * inode4)1272 static void unlock_4_inodes(struct inode *inode1, struct inode *inode2,
1273 			    struct inode *inode3, struct inode *inode4)
1274 {
1275 	if (inode4)
1276 		mutex_unlock(&ubifs_inode(inode4)->ui_mutex);
1277 	if (inode3)
1278 		mutex_unlock(&ubifs_inode(inode3)->ui_mutex);
1279 	if (inode1 != inode2)
1280 		mutex_unlock(&ubifs_inode(inode2)->ui_mutex);
1281 	mutex_unlock(&ubifs_inode(inode1)->ui_mutex);
1282 }
1283 
do_rename(struct inode * old_dir,struct dentry * old_dentry,struct inode * new_dir,struct dentry * new_dentry,unsigned int flags)1284 static int do_rename(struct inode *old_dir, struct dentry *old_dentry,
1285 		     struct inode *new_dir, struct dentry *new_dentry,
1286 		     unsigned int flags)
1287 {
1288 	struct ubifs_info *c = old_dir->i_sb->s_fs_info;
1289 	struct inode *old_inode = d_inode(old_dentry);
1290 	struct inode *new_inode = d_inode(new_dentry);
1291 	struct inode *whiteout = NULL;
1292 	struct ubifs_inode *old_inode_ui = ubifs_inode(old_inode);
1293 	struct ubifs_inode *whiteout_ui = NULL;
1294 	int err, release, sync = 0, move = (new_dir != old_dir);
1295 	int is_dir = S_ISDIR(old_inode->i_mode);
1296 	int unlink = !!new_inode, new_sz, old_sz;
1297 	struct ubifs_budget_req req = { .new_dent = 1, .mod_dent = 1,
1298 					.dirtied_ino = 3 };
1299 	struct ubifs_budget_req ino_req = { .dirtied_ino = 1,
1300 			.dirtied_ino_d = ALIGN(old_inode_ui->data_len, 8) };
1301 	struct ubifs_budget_req wht_req;
1302 	struct timespec64 time;
1303 	unsigned int saved_nlink;
1304 	struct fscrypt_name old_nm, new_nm;
1305 
1306 	/*
1307 	 * Budget request settings:
1308 	 *   req: deletion direntry, new direntry, removing the old inode,
1309 	 *   and changing old and new parent directory inodes.
1310 	 *
1311 	 *   wht_req: new whiteout inode for RENAME_WHITEOUT.
1312 	 *
1313 	 *   ino_req: marks the target inode as dirty and does not write it.
1314 	 */
1315 
1316 	dbg_gen("dent '%pd' ino %lu in dir ino %lu to dent '%pd' in dir ino %lu flags 0x%x",
1317 		old_dentry, old_inode->i_ino, old_dir->i_ino,
1318 		new_dentry, new_dir->i_ino, flags);
1319 
1320 	if (unlink) {
1321 		ubifs_assert(c, inode_is_locked(new_inode));
1322 
1323 		/* Budget for old inode's data when its nlink > 1. */
1324 		req.dirtied_ino_d = ALIGN(ubifs_inode(new_inode)->data_len, 8);
1325 		err = ubifs_purge_xattrs(new_inode);
1326 		if (err)
1327 			return err;
1328 	}
1329 
1330 	if (unlink && is_dir) {
1331 		err = ubifs_check_dir_empty(new_inode);
1332 		if (err)
1333 			return err;
1334 	}
1335 
1336 	err = fscrypt_setup_filename(old_dir, &old_dentry->d_name, 0, &old_nm);
1337 	if (err)
1338 		return err;
1339 
1340 	err = fscrypt_setup_filename(new_dir, &new_dentry->d_name, 0, &new_nm);
1341 	if (err) {
1342 		fscrypt_free_filename(&old_nm);
1343 		return err;
1344 	}
1345 
1346 	new_sz = CALC_DENT_SIZE(fname_len(&new_nm));
1347 	old_sz = CALC_DENT_SIZE(fname_len(&old_nm));
1348 
1349 	err = ubifs_budget_space(c, &req);
1350 	if (err) {
1351 		fscrypt_free_filename(&old_nm);
1352 		fscrypt_free_filename(&new_nm);
1353 		return err;
1354 	}
1355 	err = ubifs_budget_space(c, &ino_req);
1356 	if (err) {
1357 		fscrypt_free_filename(&old_nm);
1358 		fscrypt_free_filename(&new_nm);
1359 		ubifs_release_budget(c, &req);
1360 		return err;
1361 	}
1362 
1363 	if (flags & RENAME_WHITEOUT) {
1364 		union ubifs_dev_desc *dev = NULL;
1365 
1366 		dev = kmalloc(sizeof(union ubifs_dev_desc), GFP_NOFS);
1367 		if (!dev) {
1368 			err = -ENOMEM;
1369 			goto out_release;
1370 		}
1371 
1372 		/*
1373 		 * The whiteout inode without dentry is pinned in memory,
1374 		 * umount won't happen during rename process because we
1375 		 * got parent dentry.
1376 		 */
1377 		whiteout = create_whiteout(old_dir, old_dentry);
1378 		if (IS_ERR(whiteout)) {
1379 			err = PTR_ERR(whiteout);
1380 			kfree(dev);
1381 			goto out_release;
1382 		}
1383 
1384 		whiteout_ui = ubifs_inode(whiteout);
1385 		whiteout_ui->data = dev;
1386 		whiteout_ui->data_len = ubifs_encode_dev(dev, MKDEV(0, 0));
1387 		ubifs_assert(c, !whiteout_ui->dirty);
1388 
1389 		memset(&wht_req, 0, sizeof(struct ubifs_budget_req));
1390 		wht_req.new_ino = 1;
1391 		wht_req.new_ino_d = ALIGN(whiteout_ui->data_len, 8);
1392 		/*
1393 		 * To avoid deadlock between space budget (holds ui_mutex and
1394 		 * waits wb work) and writeback work(waits ui_mutex), do space
1395 		 * budget before ubifs inodes locked.
1396 		 */
1397 		err = ubifs_budget_space(c, &wht_req);
1398 		if (err) {
1399 			/*
1400 			 * Whiteout inode can not be written on flash by
1401 			 * ubifs_jnl_write_inode(), because it's neither
1402 			 * dirty nor zero-nlink.
1403 			 */
1404 			iput(whiteout);
1405 			goto out_release;
1406 		}
1407 
1408 		/* Add the old_dentry size to the old_dir size. */
1409 		old_sz -= CALC_DENT_SIZE(fname_len(&old_nm));
1410 	}
1411 
1412 	lock_4_inodes(old_dir, new_dir, new_inode, whiteout);
1413 
1414 	/*
1415 	 * Like most other Unix systems, set the @i_ctime for inodes on a
1416 	 * rename.
1417 	 */
1418 	time = current_time(old_dir);
1419 	old_inode->i_ctime = time;
1420 
1421 	/* We must adjust parent link count when renaming directories */
1422 	if (is_dir) {
1423 		if (move) {
1424 			/*
1425 			 * @old_dir loses a link because we are moving
1426 			 * @old_inode to a different directory.
1427 			 */
1428 			drop_nlink(old_dir);
1429 			/*
1430 			 * @new_dir only gains a link if we are not also
1431 			 * overwriting an existing directory.
1432 			 */
1433 			if (!unlink)
1434 				inc_nlink(new_dir);
1435 		} else {
1436 			/*
1437 			 * @old_inode is not moving to a different directory,
1438 			 * but @old_dir still loses a link if we are
1439 			 * overwriting an existing directory.
1440 			 */
1441 			if (unlink)
1442 				drop_nlink(old_dir);
1443 		}
1444 	}
1445 
1446 	old_dir->i_size -= old_sz;
1447 	ubifs_inode(old_dir)->ui_size = old_dir->i_size;
1448 	old_dir->i_mtime = old_dir->i_ctime = time;
1449 	new_dir->i_mtime = new_dir->i_ctime = time;
1450 
1451 	/*
1452 	 * And finally, if we unlinked a direntry which happened to have the
1453 	 * same name as the moved direntry, we have to decrement @i_nlink of
1454 	 * the unlinked inode and change its ctime.
1455 	 */
1456 	if (unlink) {
1457 		/*
1458 		 * Directories cannot have hard-links, so if this is a
1459 		 * directory, just clear @i_nlink.
1460 		 */
1461 		saved_nlink = new_inode->i_nlink;
1462 		if (is_dir)
1463 			clear_nlink(new_inode);
1464 		else
1465 			drop_nlink(new_inode);
1466 		new_inode->i_ctime = time;
1467 	} else {
1468 		new_dir->i_size += new_sz;
1469 		ubifs_inode(new_dir)->ui_size = new_dir->i_size;
1470 	}
1471 
1472 	/*
1473 	 * Do not ask 'ubifs_jnl_rename()' to flush write-buffer if @old_inode
1474 	 * is dirty, because this will be done later on at the end of
1475 	 * 'ubifs_rename()'.
1476 	 */
1477 	if (IS_SYNC(old_inode)) {
1478 		sync = IS_DIRSYNC(old_dir) || IS_DIRSYNC(new_dir);
1479 		if (unlink && IS_SYNC(new_inode))
1480 			sync = 1;
1481 		/*
1482 		 * S_SYNC flag of whiteout inherits from the old_dir, and we
1483 		 * have already checked the old dir inode. So there is no need
1484 		 * to check whiteout.
1485 		 */
1486 	}
1487 
1488 	err = ubifs_jnl_rename(c, old_dir, old_inode, &old_nm, new_dir,
1489 			       new_inode, &new_nm, whiteout, sync);
1490 	if (err)
1491 		goto out_cancel;
1492 
1493 	unlock_4_inodes(old_dir, new_dir, new_inode, whiteout);
1494 	ubifs_release_budget(c, &req);
1495 
1496 	if (whiteout) {
1497 		ubifs_release_budget(c, &wht_req);
1498 		iput(whiteout);
1499 	}
1500 
1501 	mutex_lock(&old_inode_ui->ui_mutex);
1502 	release = old_inode_ui->dirty;
1503 	mark_inode_dirty_sync(old_inode);
1504 	mutex_unlock(&old_inode_ui->ui_mutex);
1505 
1506 	if (release)
1507 		ubifs_release_budget(c, &ino_req);
1508 	if (IS_SYNC(old_inode))
1509 		/*
1510 		 * Rename finished here. Although old inode cannot be updated
1511 		 * on flash, old ctime is not a big problem, don't return err
1512 		 * code to userspace.
1513 		 */
1514 		old_inode->i_sb->s_op->write_inode(old_inode, NULL);
1515 
1516 	fscrypt_free_filename(&old_nm);
1517 	fscrypt_free_filename(&new_nm);
1518 	return 0;
1519 
1520 out_cancel:
1521 	if (unlink) {
1522 		set_nlink(new_inode, saved_nlink);
1523 	} else {
1524 		new_dir->i_size -= new_sz;
1525 		ubifs_inode(new_dir)->ui_size = new_dir->i_size;
1526 	}
1527 	old_dir->i_size += old_sz;
1528 	ubifs_inode(old_dir)->ui_size = old_dir->i_size;
1529 	if (is_dir) {
1530 		if (move) {
1531 			inc_nlink(old_dir);
1532 			if (!unlink)
1533 				drop_nlink(new_dir);
1534 		} else {
1535 			if (unlink)
1536 				inc_nlink(old_dir);
1537 		}
1538 	}
1539 	unlock_4_inodes(old_dir, new_dir, new_inode, whiteout);
1540 	if (whiteout) {
1541 		ubifs_release_budget(c, &wht_req);
1542 		iput(whiteout);
1543 	}
1544 out_release:
1545 	ubifs_release_budget(c, &ino_req);
1546 	ubifs_release_budget(c, &req);
1547 	fscrypt_free_filename(&old_nm);
1548 	fscrypt_free_filename(&new_nm);
1549 	return err;
1550 }
1551 
ubifs_xrename(struct inode * old_dir,struct dentry * old_dentry,struct inode * new_dir,struct dentry * new_dentry)1552 static int ubifs_xrename(struct inode *old_dir, struct dentry *old_dentry,
1553 			struct inode *new_dir, struct dentry *new_dentry)
1554 {
1555 	struct ubifs_info *c = old_dir->i_sb->s_fs_info;
1556 	struct ubifs_budget_req req = { .new_dent = 1, .mod_dent = 1,
1557 				.dirtied_ino = 2 };
1558 	int sync = IS_DIRSYNC(old_dir) || IS_DIRSYNC(new_dir);
1559 	struct inode *fst_inode = d_inode(old_dentry);
1560 	struct inode *snd_inode = d_inode(new_dentry);
1561 	struct timespec64 time;
1562 	int err;
1563 	struct fscrypt_name fst_nm, snd_nm;
1564 
1565 	ubifs_assert(c, fst_inode && snd_inode);
1566 
1567 	err = fscrypt_setup_filename(old_dir, &old_dentry->d_name, 0, &fst_nm);
1568 	if (err)
1569 		return err;
1570 
1571 	err = fscrypt_setup_filename(new_dir, &new_dentry->d_name, 0, &snd_nm);
1572 	if (err) {
1573 		fscrypt_free_filename(&fst_nm);
1574 		return err;
1575 	}
1576 
1577 	err = ubifs_budget_space(c, &req);
1578 	if (err)
1579 		goto out;
1580 
1581 	lock_4_inodes(old_dir, new_dir, NULL, NULL);
1582 
1583 	time = current_time(old_dir);
1584 	fst_inode->i_ctime = time;
1585 	snd_inode->i_ctime = time;
1586 	old_dir->i_mtime = old_dir->i_ctime = time;
1587 	new_dir->i_mtime = new_dir->i_ctime = time;
1588 
1589 	if (old_dir != new_dir) {
1590 		if (S_ISDIR(fst_inode->i_mode) && !S_ISDIR(snd_inode->i_mode)) {
1591 			inc_nlink(new_dir);
1592 			drop_nlink(old_dir);
1593 		}
1594 		else if (!S_ISDIR(fst_inode->i_mode) && S_ISDIR(snd_inode->i_mode)) {
1595 			drop_nlink(new_dir);
1596 			inc_nlink(old_dir);
1597 		}
1598 	}
1599 
1600 	err = ubifs_jnl_xrename(c, old_dir, fst_inode, &fst_nm, new_dir,
1601 				snd_inode, &snd_nm, sync);
1602 
1603 	unlock_4_inodes(old_dir, new_dir, NULL, NULL);
1604 	ubifs_release_budget(c, &req);
1605 
1606 out:
1607 	fscrypt_free_filename(&fst_nm);
1608 	fscrypt_free_filename(&snd_nm);
1609 	return err;
1610 }
1611 
ubifs_rename(struct user_namespace * mnt_userns,struct inode * old_dir,struct dentry * old_dentry,struct inode * new_dir,struct dentry * new_dentry,unsigned int flags)1612 static int ubifs_rename(struct user_namespace *mnt_userns,
1613 			struct inode *old_dir, struct dentry *old_dentry,
1614 			struct inode *new_dir, struct dentry *new_dentry,
1615 			unsigned int flags)
1616 {
1617 	int err;
1618 	struct ubifs_info *c = old_dir->i_sb->s_fs_info;
1619 
1620 	if (flags & ~(RENAME_NOREPLACE | RENAME_WHITEOUT | RENAME_EXCHANGE))
1621 		return -EINVAL;
1622 
1623 	ubifs_assert(c, inode_is_locked(old_dir));
1624 	ubifs_assert(c, inode_is_locked(new_dir));
1625 
1626 	err = fscrypt_prepare_rename(old_dir, old_dentry, new_dir, new_dentry,
1627 				     flags);
1628 	if (err)
1629 		return err;
1630 
1631 	if (flags & RENAME_EXCHANGE)
1632 		return ubifs_xrename(old_dir, old_dentry, new_dir, new_dentry);
1633 
1634 	return do_rename(old_dir, old_dentry, new_dir, new_dentry, flags);
1635 }
1636 
ubifs_getattr(struct user_namespace * mnt_userns,const struct path * path,struct kstat * stat,u32 request_mask,unsigned int flags)1637 int ubifs_getattr(struct user_namespace *mnt_userns, const struct path *path,
1638 		  struct kstat *stat, u32 request_mask, unsigned int flags)
1639 {
1640 	loff_t size;
1641 	struct inode *inode = d_inode(path->dentry);
1642 	struct ubifs_inode *ui = ubifs_inode(inode);
1643 
1644 	mutex_lock(&ui->ui_mutex);
1645 
1646 	if (ui->flags & UBIFS_APPEND_FL)
1647 		stat->attributes |= STATX_ATTR_APPEND;
1648 	if (ui->flags & UBIFS_COMPR_FL)
1649 		stat->attributes |= STATX_ATTR_COMPRESSED;
1650 	if (ui->flags & UBIFS_CRYPT_FL)
1651 		stat->attributes |= STATX_ATTR_ENCRYPTED;
1652 	if (ui->flags & UBIFS_IMMUTABLE_FL)
1653 		stat->attributes |= STATX_ATTR_IMMUTABLE;
1654 
1655 	stat->attributes_mask |= (STATX_ATTR_APPEND |
1656 				STATX_ATTR_COMPRESSED |
1657 				STATX_ATTR_ENCRYPTED |
1658 				STATX_ATTR_IMMUTABLE);
1659 
1660 	generic_fillattr(&init_user_ns, inode, stat);
1661 	stat->blksize = UBIFS_BLOCK_SIZE;
1662 	stat->size = ui->ui_size;
1663 
1664 	/*
1665 	 * Unfortunately, the 'stat()' system call was designed for block
1666 	 * device based file systems, and it is not appropriate for UBIFS,
1667 	 * because UBIFS does not have notion of "block". For example, it is
1668 	 * difficult to tell how many block a directory takes - it actually
1669 	 * takes less than 300 bytes, but we have to round it to block size,
1670 	 * which introduces large mistake. This makes utilities like 'du' to
1671 	 * report completely senseless numbers. This is the reason why UBIFS
1672 	 * goes the same way as JFFS2 - it reports zero blocks for everything
1673 	 * but regular files, which makes more sense than reporting completely
1674 	 * wrong sizes.
1675 	 */
1676 	if (S_ISREG(inode->i_mode)) {
1677 		size = ui->xattr_size;
1678 		size += stat->size;
1679 		size = ALIGN(size, UBIFS_BLOCK_SIZE);
1680 		/*
1681 		 * Note, user-space expects 512-byte blocks count irrespectively
1682 		 * of what was reported in @stat->size.
1683 		 */
1684 		stat->blocks = size >> 9;
1685 	} else
1686 		stat->blocks = 0;
1687 	mutex_unlock(&ui->ui_mutex);
1688 	return 0;
1689 }
1690 
1691 const struct inode_operations ubifs_dir_inode_operations = {
1692 	.lookup      = ubifs_lookup,
1693 	.create      = ubifs_create,
1694 	.link        = ubifs_link,
1695 	.symlink     = ubifs_symlink,
1696 	.unlink      = ubifs_unlink,
1697 	.mkdir       = ubifs_mkdir,
1698 	.rmdir       = ubifs_rmdir,
1699 	.mknod       = ubifs_mknod,
1700 	.rename      = ubifs_rename,
1701 	.setattr     = ubifs_setattr,
1702 	.getattr     = ubifs_getattr,
1703 	.listxattr   = ubifs_listxattr,
1704 	.update_time = ubifs_update_time,
1705 	.tmpfile     = ubifs_tmpfile,
1706 	.fileattr_get = ubifs_fileattr_get,
1707 	.fileattr_set = ubifs_fileattr_set,
1708 };
1709 
1710 const struct file_operations ubifs_dir_operations = {
1711 	.llseek         = generic_file_llseek,
1712 	.release        = ubifs_dir_release,
1713 	.read           = generic_read_dir,
1714 	.iterate_shared = ubifs_readdir,
1715 	.fsync          = ubifs_fsync,
1716 	.unlocked_ioctl = ubifs_ioctl,
1717 #ifdef CONFIG_COMPAT
1718 	.compat_ioctl   = ubifs_compat_ioctl,
1719 #endif
1720 };
1721