1 /* 2 * 3 * Copyright (C) 2011 Novell Inc. 4 * 5 * This program is free software; you can redistribute it and/or modify it 6 * under the terms of the GNU General Public License version 2 as published by 7 * the Free Software Foundation. 8 */ 9 10 #include <linux/fs.h> 11 #include <linux/namei.h> 12 #include <linux/pagemap.h> 13 #include <linux/xattr.h> 14 #include <linux/security.h> 15 #include <linux/mount.h> 16 #include <linux/slab.h> 17 #include <linux/parser.h> 18 #include <linux/module.h> 19 #include <linux/pagemap.h> 20 #include <linux/sched.h> 21 #include <linux/statfs.h> 22 #include <linux/seq_file.h> 23 #include "overlayfs.h" 24 25 MODULE_AUTHOR("Miklos Szeredi <miklos@szeredi.hu>"); 26 MODULE_DESCRIPTION("Overlay filesystem"); 27 MODULE_LICENSE("GPL"); 28 29 struct ovl_config { 30 char *lowerdir; 31 char *upperdir; 32 char *workdir; 33 bool default_permissions; 34 }; 35 36 /* private information held for overlayfs's superblock */ 37 struct ovl_fs { 38 struct vfsmount *upper_mnt; 39 unsigned numlower; 40 struct vfsmount **lower_mnt; 41 struct dentry *workdir; 42 long lower_namelen; 43 /* pathnames of lower and upper dirs, for show_options */ 44 struct ovl_config config; 45 /* creds of process who forced instantiation of super block */ 46 const struct cred *creator_cred; 47 }; 48 49 struct ovl_dir_cache; 50 51 /* private information held for every overlayfs dentry */ 52 struct ovl_entry { 53 struct dentry *__upperdentry; 54 struct ovl_dir_cache *cache; 55 union { 56 struct { 57 u64 version; 58 bool opaque; 59 }; 60 struct rcu_head rcu; 61 }; 62 unsigned numlower; 63 struct path lowerstack[]; 64 }; 65 66 #define OVL_MAX_STACK 500 67 68 static struct dentry *__ovl_dentry_lower(struct ovl_entry *oe) 69 { 70 return oe->numlower ? oe->lowerstack[0].dentry : NULL; 71 } 72 73 enum ovl_path_type ovl_path_type(struct dentry *dentry) 74 { 75 struct ovl_entry *oe = dentry->d_fsdata; 76 enum ovl_path_type type = 0; 77 78 if (oe->__upperdentry) { 79 type = __OVL_PATH_UPPER; 80 81 /* 82 * Non-dir dentry can hold lower dentry from previous 83 * location. Its purity depends only on opaque flag. 84 */ 85 if (oe->numlower && S_ISDIR(dentry->d_inode->i_mode)) 86 type |= __OVL_PATH_MERGE; 87 else if (!oe->opaque) 88 type |= __OVL_PATH_PURE; 89 } else { 90 if (oe->numlower > 1) 91 type |= __OVL_PATH_MERGE; 92 } 93 return type; 94 } 95 96 static struct dentry *ovl_upperdentry_dereference(struct ovl_entry *oe) 97 { 98 return lockless_dereference(oe->__upperdentry); 99 } 100 101 void ovl_path_upper(struct dentry *dentry, struct path *path) 102 { 103 struct ovl_fs *ofs = dentry->d_sb->s_fs_info; 104 struct ovl_entry *oe = dentry->d_fsdata; 105 106 path->mnt = ofs->upper_mnt; 107 path->dentry = ovl_upperdentry_dereference(oe); 108 } 109 110 enum ovl_path_type ovl_path_real(struct dentry *dentry, struct path *path) 111 { 112 enum ovl_path_type type = ovl_path_type(dentry); 113 114 if (!OVL_TYPE_UPPER(type)) 115 ovl_path_lower(dentry, path); 116 else 117 ovl_path_upper(dentry, path); 118 119 return type; 120 } 121 122 struct dentry *ovl_dentry_upper(struct dentry *dentry) 123 { 124 struct ovl_entry *oe = dentry->d_fsdata; 125 126 return ovl_upperdentry_dereference(oe); 127 } 128 129 struct dentry *ovl_dentry_lower(struct dentry *dentry) 130 { 131 struct ovl_entry *oe = dentry->d_fsdata; 132 133 return __ovl_dentry_lower(oe); 134 } 135 136 struct dentry *ovl_dentry_real(struct dentry *dentry) 137 { 138 struct ovl_entry *oe = dentry->d_fsdata; 139 struct dentry *realdentry; 140 141 realdentry = ovl_upperdentry_dereference(oe); 142 if (!realdentry) 143 realdentry = __ovl_dentry_lower(oe); 144 145 return realdentry; 146 } 147 148 struct dentry *ovl_entry_real(struct ovl_entry *oe, bool *is_upper) 149 { 150 struct dentry *realdentry; 151 152 realdentry = ovl_upperdentry_dereference(oe); 153 if (realdentry) { 154 *is_upper = true; 155 } else { 156 realdentry = __ovl_dentry_lower(oe); 157 *is_upper = false; 158 } 159 return realdentry; 160 } 161 162 struct vfsmount *ovl_entry_mnt_real(struct ovl_entry *oe, struct inode *inode, 163 bool is_upper) 164 { 165 if (is_upper) { 166 struct ovl_fs *ofs = inode->i_sb->s_fs_info; 167 168 return ofs->upper_mnt; 169 } else { 170 return oe->numlower ? oe->lowerstack[0].mnt : NULL; 171 } 172 } 173 174 struct ovl_dir_cache *ovl_dir_cache(struct dentry *dentry) 175 { 176 struct ovl_entry *oe = dentry->d_fsdata; 177 178 return oe->cache; 179 } 180 181 bool ovl_is_default_permissions(struct inode *inode) 182 { 183 struct ovl_fs *ofs = inode->i_sb->s_fs_info; 184 185 return ofs->config.default_permissions; 186 } 187 188 void ovl_set_dir_cache(struct dentry *dentry, struct ovl_dir_cache *cache) 189 { 190 struct ovl_entry *oe = dentry->d_fsdata; 191 192 oe->cache = cache; 193 } 194 195 void ovl_path_lower(struct dentry *dentry, struct path *path) 196 { 197 struct ovl_entry *oe = dentry->d_fsdata; 198 199 *path = oe->numlower ? oe->lowerstack[0] : (struct path) { NULL, NULL }; 200 } 201 202 int ovl_want_write(struct dentry *dentry) 203 { 204 struct ovl_fs *ofs = dentry->d_sb->s_fs_info; 205 return mnt_want_write(ofs->upper_mnt); 206 } 207 208 void ovl_drop_write(struct dentry *dentry) 209 { 210 struct ovl_fs *ofs = dentry->d_sb->s_fs_info; 211 mnt_drop_write(ofs->upper_mnt); 212 } 213 214 struct dentry *ovl_workdir(struct dentry *dentry) 215 { 216 struct ovl_fs *ofs = dentry->d_sb->s_fs_info; 217 return ofs->workdir; 218 } 219 220 bool ovl_dentry_is_opaque(struct dentry *dentry) 221 { 222 struct ovl_entry *oe = dentry->d_fsdata; 223 return oe->opaque; 224 } 225 226 void ovl_dentry_set_opaque(struct dentry *dentry, bool opaque) 227 { 228 struct ovl_entry *oe = dentry->d_fsdata; 229 oe->opaque = opaque; 230 } 231 232 void ovl_dentry_update(struct dentry *dentry, struct dentry *upperdentry) 233 { 234 struct ovl_entry *oe = dentry->d_fsdata; 235 236 WARN_ON(!inode_is_locked(upperdentry->d_parent->d_inode)); 237 WARN_ON(oe->__upperdentry); 238 BUG_ON(!upperdentry->d_inode); 239 /* 240 * Make sure upperdentry is consistent before making it visible to 241 * ovl_upperdentry_dereference(). 242 */ 243 smp_wmb(); 244 oe->__upperdentry = upperdentry; 245 } 246 247 void ovl_dentry_version_inc(struct dentry *dentry) 248 { 249 struct ovl_entry *oe = dentry->d_fsdata; 250 251 WARN_ON(!inode_is_locked(dentry->d_inode)); 252 oe->version++; 253 } 254 255 u64 ovl_dentry_version_get(struct dentry *dentry) 256 { 257 struct ovl_entry *oe = dentry->d_fsdata; 258 259 WARN_ON(!inode_is_locked(dentry->d_inode)); 260 return oe->version; 261 } 262 263 bool ovl_is_whiteout(struct dentry *dentry) 264 { 265 struct inode *inode = dentry->d_inode; 266 267 return inode && IS_WHITEOUT(inode); 268 } 269 270 const struct cred *ovl_override_creds(struct super_block *sb) 271 { 272 struct ovl_fs *ofs = sb->s_fs_info; 273 274 return override_creds(ofs->creator_cred); 275 } 276 277 static bool ovl_is_opaquedir(struct dentry *dentry) 278 { 279 int res; 280 char val; 281 struct inode *inode = dentry->d_inode; 282 283 if (!S_ISDIR(inode->i_mode) || !inode->i_op->getxattr) 284 return false; 285 286 res = inode->i_op->getxattr(dentry, inode, OVL_XATTR_OPAQUE, &val, 1); 287 if (res == 1 && val == 'y') 288 return true; 289 290 return false; 291 } 292 293 static void ovl_dentry_release(struct dentry *dentry) 294 { 295 struct ovl_entry *oe = dentry->d_fsdata; 296 297 if (oe) { 298 unsigned int i; 299 300 dput(oe->__upperdentry); 301 for (i = 0; i < oe->numlower; i++) 302 dput(oe->lowerstack[i].dentry); 303 kfree_rcu(oe, rcu); 304 } 305 } 306 307 static struct dentry *ovl_d_real(struct dentry *dentry, struct inode *inode) 308 { 309 struct dentry *real; 310 311 if (d_is_dir(dentry)) { 312 if (!inode || inode == d_inode(dentry)) 313 return dentry; 314 goto bug; 315 } 316 317 real = ovl_dentry_upper(dentry); 318 if (real && (!inode || inode == d_inode(real))) 319 return real; 320 321 real = ovl_dentry_lower(dentry); 322 if (!real) 323 goto bug; 324 325 if (!inode || inode == d_inode(real)) 326 return real; 327 328 /* Handle recursion */ 329 if (real->d_flags & DCACHE_OP_REAL) 330 return real->d_op->d_real(real, inode); 331 332 bug: 333 WARN(1, "ovl_d_real(%pd4, %s:%lu\n): real dentry not found\n", dentry, 334 inode ? inode->i_sb->s_id : "NULL", inode ? inode->i_ino : 0); 335 return dentry; 336 } 337 338 static int ovl_dentry_revalidate(struct dentry *dentry, unsigned int flags) 339 { 340 struct ovl_entry *oe = dentry->d_fsdata; 341 unsigned int i; 342 int ret = 1; 343 344 for (i = 0; i < oe->numlower; i++) { 345 struct dentry *d = oe->lowerstack[i].dentry; 346 347 if (d->d_flags & DCACHE_OP_REVALIDATE) { 348 ret = d->d_op->d_revalidate(d, flags); 349 if (ret < 0) 350 return ret; 351 if (!ret) { 352 if (!(flags & LOOKUP_RCU)) 353 d_invalidate(d); 354 return -ESTALE; 355 } 356 } 357 } 358 return 1; 359 } 360 361 static int ovl_dentry_weak_revalidate(struct dentry *dentry, unsigned int flags) 362 { 363 struct ovl_entry *oe = dentry->d_fsdata; 364 unsigned int i; 365 int ret = 1; 366 367 for (i = 0; i < oe->numlower; i++) { 368 struct dentry *d = oe->lowerstack[i].dentry; 369 370 if (d->d_flags & DCACHE_OP_WEAK_REVALIDATE) { 371 ret = d->d_op->d_weak_revalidate(d, flags); 372 if (ret <= 0) 373 break; 374 } 375 } 376 return ret; 377 } 378 379 static const struct dentry_operations ovl_dentry_operations = { 380 .d_release = ovl_dentry_release, 381 .d_select_inode = ovl_d_select_inode, 382 .d_real = ovl_d_real, 383 }; 384 385 static const struct dentry_operations ovl_reval_dentry_operations = { 386 .d_release = ovl_dentry_release, 387 .d_select_inode = ovl_d_select_inode, 388 .d_real = ovl_d_real, 389 .d_revalidate = ovl_dentry_revalidate, 390 .d_weak_revalidate = ovl_dentry_weak_revalidate, 391 }; 392 393 static struct ovl_entry *ovl_alloc_entry(unsigned int numlower) 394 { 395 size_t size = offsetof(struct ovl_entry, lowerstack[numlower]); 396 struct ovl_entry *oe = kzalloc(size, GFP_KERNEL); 397 398 if (oe) 399 oe->numlower = numlower; 400 401 return oe; 402 } 403 404 static bool ovl_dentry_remote(struct dentry *dentry) 405 { 406 return dentry->d_flags & 407 (DCACHE_OP_REVALIDATE | DCACHE_OP_WEAK_REVALIDATE); 408 } 409 410 static bool ovl_dentry_weird(struct dentry *dentry) 411 { 412 return dentry->d_flags & (DCACHE_NEED_AUTOMOUNT | 413 DCACHE_MANAGE_TRANSIT | 414 DCACHE_OP_HASH | 415 DCACHE_OP_COMPARE); 416 } 417 418 static inline struct dentry *ovl_lookup_real(struct dentry *dir, 419 struct qstr *name) 420 { 421 struct dentry *dentry; 422 423 dentry = lookup_hash(name, dir); 424 425 if (IS_ERR(dentry)) { 426 if (PTR_ERR(dentry) == -ENOENT) 427 dentry = NULL; 428 } else if (!dentry->d_inode) { 429 dput(dentry); 430 dentry = NULL; 431 } else if (ovl_dentry_weird(dentry)) { 432 dput(dentry); 433 /* Don't support traversing automounts and other weirdness */ 434 dentry = ERR_PTR(-EREMOTE); 435 } 436 return dentry; 437 } 438 439 /* 440 * Returns next layer in stack starting from top. 441 * Returns -1 if this is the last layer. 442 */ 443 int ovl_path_next(int idx, struct dentry *dentry, struct path *path) 444 { 445 struct ovl_entry *oe = dentry->d_fsdata; 446 447 BUG_ON(idx < 0); 448 if (idx == 0) { 449 ovl_path_upper(dentry, path); 450 if (path->dentry) 451 return oe->numlower ? 1 : -1; 452 idx++; 453 } 454 BUG_ON(idx > oe->numlower); 455 *path = oe->lowerstack[idx - 1]; 456 457 return (idx < oe->numlower) ? idx + 1 : -1; 458 } 459 460 struct dentry *ovl_lookup(struct inode *dir, struct dentry *dentry, 461 unsigned int flags) 462 { 463 struct ovl_entry *oe; 464 struct ovl_entry *poe = dentry->d_parent->d_fsdata; 465 struct path *stack = NULL; 466 struct dentry *upperdir, *upperdentry = NULL; 467 unsigned int ctr = 0; 468 struct inode *inode = NULL; 469 bool upperopaque = false; 470 struct dentry *this, *prev = NULL; 471 unsigned int i; 472 int err; 473 474 upperdir = ovl_upperdentry_dereference(poe); 475 if (upperdir) { 476 this = ovl_lookup_real(upperdir, &dentry->d_name); 477 err = PTR_ERR(this); 478 if (IS_ERR(this)) 479 goto out; 480 481 if (this) { 482 if (unlikely(ovl_dentry_remote(this))) { 483 dput(this); 484 err = -EREMOTE; 485 goto out; 486 } 487 if (ovl_is_whiteout(this)) { 488 dput(this); 489 this = NULL; 490 upperopaque = true; 491 } else if (poe->numlower && ovl_is_opaquedir(this)) { 492 upperopaque = true; 493 } 494 } 495 upperdentry = prev = this; 496 } 497 498 if (!upperopaque && poe->numlower) { 499 err = -ENOMEM; 500 stack = kcalloc(poe->numlower, sizeof(struct path), GFP_KERNEL); 501 if (!stack) 502 goto out_put_upper; 503 } 504 505 for (i = 0; !upperopaque && i < poe->numlower; i++) { 506 bool opaque = false; 507 struct path lowerpath = poe->lowerstack[i]; 508 509 this = ovl_lookup_real(lowerpath.dentry, &dentry->d_name); 510 err = PTR_ERR(this); 511 if (IS_ERR(this)) { 512 /* 513 * If it's positive, then treat ENAMETOOLONG as ENOENT. 514 */ 515 if (err == -ENAMETOOLONG && (upperdentry || ctr)) 516 continue; 517 goto out_put; 518 } 519 if (!this) 520 continue; 521 if (ovl_is_whiteout(this)) { 522 dput(this); 523 break; 524 } 525 /* 526 * Only makes sense to check opaque dir if this is not the 527 * lowermost layer. 528 */ 529 if (i < poe->numlower - 1 && ovl_is_opaquedir(this)) 530 opaque = true; 531 532 if (prev && (!S_ISDIR(prev->d_inode->i_mode) || 533 !S_ISDIR(this->d_inode->i_mode))) { 534 /* 535 * FIXME: check for upper-opaqueness maybe better done 536 * in remove code. 537 */ 538 if (prev == upperdentry) 539 upperopaque = true; 540 dput(this); 541 break; 542 } 543 /* 544 * If this is a non-directory then stop here. 545 */ 546 if (!S_ISDIR(this->d_inode->i_mode)) 547 opaque = true; 548 549 stack[ctr].dentry = this; 550 stack[ctr].mnt = lowerpath.mnt; 551 ctr++; 552 prev = this; 553 if (opaque) 554 break; 555 } 556 557 oe = ovl_alloc_entry(ctr); 558 err = -ENOMEM; 559 if (!oe) 560 goto out_put; 561 562 if (upperdentry || ctr) { 563 struct dentry *realdentry; 564 565 realdentry = upperdentry ? upperdentry : stack[0].dentry; 566 567 err = -ENOMEM; 568 inode = ovl_new_inode(dentry->d_sb, realdentry->d_inode->i_mode, 569 oe); 570 if (!inode) 571 goto out_free_oe; 572 ovl_copyattr(realdentry->d_inode, inode); 573 } 574 575 oe->opaque = upperopaque; 576 oe->__upperdentry = upperdentry; 577 memcpy(oe->lowerstack, stack, sizeof(struct path) * ctr); 578 kfree(stack); 579 dentry->d_fsdata = oe; 580 d_add(dentry, inode); 581 582 return NULL; 583 584 out_free_oe: 585 kfree(oe); 586 out_put: 587 for (i = 0; i < ctr; i++) 588 dput(stack[i].dentry); 589 kfree(stack); 590 out_put_upper: 591 dput(upperdentry); 592 out: 593 return ERR_PTR(err); 594 } 595 596 struct file *ovl_path_open(struct path *path, int flags) 597 { 598 return dentry_open(path, flags, current_cred()); 599 } 600 601 static void ovl_put_super(struct super_block *sb) 602 { 603 struct ovl_fs *ufs = sb->s_fs_info; 604 unsigned i; 605 606 dput(ufs->workdir); 607 mntput(ufs->upper_mnt); 608 for (i = 0; i < ufs->numlower; i++) 609 mntput(ufs->lower_mnt[i]); 610 kfree(ufs->lower_mnt); 611 612 kfree(ufs->config.lowerdir); 613 kfree(ufs->config.upperdir); 614 kfree(ufs->config.workdir); 615 put_cred(ufs->creator_cred); 616 kfree(ufs); 617 } 618 619 /** 620 * ovl_statfs 621 * @sb: The overlayfs super block 622 * @buf: The struct kstatfs to fill in with stats 623 * 624 * Get the filesystem statistics. As writes always target the upper layer 625 * filesystem pass the statfs to the upper filesystem (if it exists) 626 */ 627 static int ovl_statfs(struct dentry *dentry, struct kstatfs *buf) 628 { 629 struct ovl_fs *ofs = dentry->d_sb->s_fs_info; 630 struct dentry *root_dentry = dentry->d_sb->s_root; 631 struct path path; 632 int err; 633 634 ovl_path_real(root_dentry, &path); 635 636 err = vfs_statfs(&path, buf); 637 if (!err) { 638 buf->f_namelen = max(buf->f_namelen, ofs->lower_namelen); 639 buf->f_type = OVERLAYFS_SUPER_MAGIC; 640 } 641 642 return err; 643 } 644 645 /** 646 * ovl_show_options 647 * 648 * Prints the mount options for a given superblock. 649 * Returns zero; does not fail. 650 */ 651 static int ovl_show_options(struct seq_file *m, struct dentry *dentry) 652 { 653 struct super_block *sb = dentry->d_sb; 654 struct ovl_fs *ufs = sb->s_fs_info; 655 656 seq_show_option(m, "lowerdir", ufs->config.lowerdir); 657 if (ufs->config.upperdir) { 658 seq_show_option(m, "upperdir", ufs->config.upperdir); 659 seq_show_option(m, "workdir", ufs->config.workdir); 660 } 661 if (ufs->config.default_permissions) 662 seq_puts(m, ",default_permissions"); 663 return 0; 664 } 665 666 static int ovl_remount(struct super_block *sb, int *flags, char *data) 667 { 668 struct ovl_fs *ufs = sb->s_fs_info; 669 670 if (!(*flags & MS_RDONLY) && (!ufs->upper_mnt || !ufs->workdir)) 671 return -EROFS; 672 673 return 0; 674 } 675 676 static const struct super_operations ovl_super_operations = { 677 .put_super = ovl_put_super, 678 .statfs = ovl_statfs, 679 .show_options = ovl_show_options, 680 .remount_fs = ovl_remount, 681 }; 682 683 enum { 684 OPT_LOWERDIR, 685 OPT_UPPERDIR, 686 OPT_WORKDIR, 687 OPT_DEFAULT_PERMISSIONS, 688 OPT_ERR, 689 }; 690 691 static const match_table_t ovl_tokens = { 692 {OPT_LOWERDIR, "lowerdir=%s"}, 693 {OPT_UPPERDIR, "upperdir=%s"}, 694 {OPT_WORKDIR, "workdir=%s"}, 695 {OPT_DEFAULT_PERMISSIONS, "default_permissions"}, 696 {OPT_ERR, NULL} 697 }; 698 699 static char *ovl_next_opt(char **s) 700 { 701 char *sbegin = *s; 702 char *p; 703 704 if (sbegin == NULL) 705 return NULL; 706 707 for (p = sbegin; *p; p++) { 708 if (*p == '\\') { 709 p++; 710 if (!*p) 711 break; 712 } else if (*p == ',') { 713 *p = '\0'; 714 *s = p + 1; 715 return sbegin; 716 } 717 } 718 *s = NULL; 719 return sbegin; 720 } 721 722 static int ovl_parse_opt(char *opt, struct ovl_config *config) 723 { 724 char *p; 725 726 while ((p = ovl_next_opt(&opt)) != NULL) { 727 int token; 728 substring_t args[MAX_OPT_ARGS]; 729 730 if (!*p) 731 continue; 732 733 token = match_token(p, ovl_tokens, args); 734 switch (token) { 735 case OPT_UPPERDIR: 736 kfree(config->upperdir); 737 config->upperdir = match_strdup(&args[0]); 738 if (!config->upperdir) 739 return -ENOMEM; 740 break; 741 742 case OPT_LOWERDIR: 743 kfree(config->lowerdir); 744 config->lowerdir = match_strdup(&args[0]); 745 if (!config->lowerdir) 746 return -ENOMEM; 747 break; 748 749 case OPT_WORKDIR: 750 kfree(config->workdir); 751 config->workdir = match_strdup(&args[0]); 752 if (!config->workdir) 753 return -ENOMEM; 754 break; 755 756 case OPT_DEFAULT_PERMISSIONS: 757 config->default_permissions = true; 758 break; 759 760 default: 761 pr_err("overlayfs: unrecognized mount option \"%s\" or missing value\n", p); 762 return -EINVAL; 763 } 764 } 765 766 /* Workdir is useless in non-upper mount */ 767 if (!config->upperdir && config->workdir) { 768 pr_info("overlayfs: option \"workdir=%s\" is useless in a non-upper mount, ignore\n", 769 config->workdir); 770 kfree(config->workdir); 771 config->workdir = NULL; 772 } 773 774 return 0; 775 } 776 777 #define OVL_WORKDIR_NAME "work" 778 779 static struct dentry *ovl_workdir_create(struct vfsmount *mnt, 780 struct dentry *dentry) 781 { 782 struct inode *dir = dentry->d_inode; 783 struct dentry *work; 784 int err; 785 bool retried = false; 786 787 err = mnt_want_write(mnt); 788 if (err) 789 return ERR_PTR(err); 790 791 inode_lock_nested(dir, I_MUTEX_PARENT); 792 retry: 793 work = lookup_one_len(OVL_WORKDIR_NAME, dentry, 794 strlen(OVL_WORKDIR_NAME)); 795 796 if (!IS_ERR(work)) { 797 struct kstat stat = { 798 .mode = S_IFDIR | 0, 799 }; 800 801 if (work->d_inode) { 802 err = -EEXIST; 803 if (retried) 804 goto out_dput; 805 806 retried = true; 807 ovl_cleanup(dir, work); 808 dput(work); 809 goto retry; 810 } 811 812 err = ovl_create_real(dir, work, &stat, NULL, NULL, true); 813 if (err) 814 goto out_dput; 815 } 816 out_unlock: 817 inode_unlock(dir); 818 mnt_drop_write(mnt); 819 820 return work; 821 822 out_dput: 823 dput(work); 824 work = ERR_PTR(err); 825 goto out_unlock; 826 } 827 828 static void ovl_unescape(char *s) 829 { 830 char *d = s; 831 832 for (;; s++, d++) { 833 if (*s == '\\') 834 s++; 835 *d = *s; 836 if (!*s) 837 break; 838 } 839 } 840 841 static int ovl_mount_dir_noesc(const char *name, struct path *path) 842 { 843 int err = -EINVAL; 844 845 if (!*name) { 846 pr_err("overlayfs: empty lowerdir\n"); 847 goto out; 848 } 849 err = kern_path(name, LOOKUP_FOLLOW, path); 850 if (err) { 851 pr_err("overlayfs: failed to resolve '%s': %i\n", name, err); 852 goto out; 853 } 854 err = -EINVAL; 855 if (ovl_dentry_weird(path->dentry)) { 856 pr_err("overlayfs: filesystem on '%s' not supported\n", name); 857 goto out_put; 858 } 859 if (!S_ISDIR(path->dentry->d_inode->i_mode)) { 860 pr_err("overlayfs: '%s' not a directory\n", name); 861 goto out_put; 862 } 863 return 0; 864 865 out_put: 866 path_put(path); 867 out: 868 return err; 869 } 870 871 static int ovl_mount_dir(const char *name, struct path *path) 872 { 873 int err = -ENOMEM; 874 char *tmp = kstrdup(name, GFP_KERNEL); 875 876 if (tmp) { 877 ovl_unescape(tmp); 878 err = ovl_mount_dir_noesc(tmp, path); 879 880 if (!err) 881 if (ovl_dentry_remote(path->dentry)) { 882 pr_err("overlayfs: filesystem on '%s' not supported as upperdir\n", 883 tmp); 884 path_put(path); 885 err = -EINVAL; 886 } 887 kfree(tmp); 888 } 889 return err; 890 } 891 892 static int ovl_lower_dir(const char *name, struct path *path, long *namelen, 893 int *stack_depth, bool *remote) 894 { 895 int err; 896 struct kstatfs statfs; 897 898 err = ovl_mount_dir_noesc(name, path); 899 if (err) 900 goto out; 901 902 err = vfs_statfs(path, &statfs); 903 if (err) { 904 pr_err("overlayfs: statfs failed on '%s'\n", name); 905 goto out_put; 906 } 907 *namelen = max(*namelen, statfs.f_namelen); 908 *stack_depth = max(*stack_depth, path->mnt->mnt_sb->s_stack_depth); 909 910 if (ovl_dentry_remote(path->dentry)) 911 *remote = true; 912 913 return 0; 914 915 out_put: 916 path_put(path); 917 out: 918 return err; 919 } 920 921 /* Workdir should not be subdir of upperdir and vice versa */ 922 static bool ovl_workdir_ok(struct dentry *workdir, struct dentry *upperdir) 923 { 924 bool ok = false; 925 926 if (workdir != upperdir) { 927 ok = (lock_rename(workdir, upperdir) == NULL); 928 unlock_rename(workdir, upperdir); 929 } 930 return ok; 931 } 932 933 static unsigned int ovl_split_lowerdirs(char *str) 934 { 935 unsigned int ctr = 1; 936 char *s, *d; 937 938 for (s = d = str;; s++, d++) { 939 if (*s == '\\') { 940 s++; 941 } else if (*s == ':') { 942 *d = '\0'; 943 ctr++; 944 continue; 945 } 946 *d = *s; 947 if (!*s) 948 break; 949 } 950 return ctr; 951 } 952 953 static int ovl_fill_super(struct super_block *sb, void *data, int silent) 954 { 955 struct path upperpath = { NULL, NULL }; 956 struct path workpath = { NULL, NULL }; 957 struct dentry *root_dentry; 958 struct ovl_entry *oe; 959 struct ovl_fs *ufs; 960 struct path *stack = NULL; 961 char *lowertmp; 962 char *lower; 963 unsigned int numlower; 964 unsigned int stacklen = 0; 965 unsigned int i; 966 bool remote = false; 967 int err; 968 969 err = -ENOMEM; 970 ufs = kzalloc(sizeof(struct ovl_fs), GFP_KERNEL); 971 if (!ufs) 972 goto out; 973 974 err = ovl_parse_opt((char *) data, &ufs->config); 975 if (err) 976 goto out_free_config; 977 978 err = -EINVAL; 979 if (!ufs->config.lowerdir) { 980 if (!silent) 981 pr_err("overlayfs: missing 'lowerdir'\n"); 982 goto out_free_config; 983 } 984 985 sb->s_stack_depth = 0; 986 sb->s_maxbytes = MAX_LFS_FILESIZE; 987 if (ufs->config.upperdir) { 988 if (!ufs->config.workdir) { 989 pr_err("overlayfs: missing 'workdir'\n"); 990 goto out_free_config; 991 } 992 993 err = ovl_mount_dir(ufs->config.upperdir, &upperpath); 994 if (err) 995 goto out_free_config; 996 997 /* Upper fs should not be r/o */ 998 if (upperpath.mnt->mnt_sb->s_flags & MS_RDONLY) { 999 pr_err("overlayfs: upper fs is r/o, try multi-lower layers mount\n"); 1000 err = -EINVAL; 1001 goto out_put_upperpath; 1002 } 1003 1004 err = ovl_mount_dir(ufs->config.workdir, &workpath); 1005 if (err) 1006 goto out_put_upperpath; 1007 1008 err = -EINVAL; 1009 if (upperpath.mnt != workpath.mnt) { 1010 pr_err("overlayfs: workdir and upperdir must reside under the same mount\n"); 1011 goto out_put_workpath; 1012 } 1013 if (!ovl_workdir_ok(workpath.dentry, upperpath.dentry)) { 1014 pr_err("overlayfs: workdir and upperdir must be separate subtrees\n"); 1015 goto out_put_workpath; 1016 } 1017 sb->s_stack_depth = upperpath.mnt->mnt_sb->s_stack_depth; 1018 } 1019 err = -ENOMEM; 1020 lowertmp = kstrdup(ufs->config.lowerdir, GFP_KERNEL); 1021 if (!lowertmp) 1022 goto out_put_workpath; 1023 1024 err = -EINVAL; 1025 stacklen = ovl_split_lowerdirs(lowertmp); 1026 if (stacklen > OVL_MAX_STACK) { 1027 pr_err("overlayfs: too many lower directries, limit is %d\n", 1028 OVL_MAX_STACK); 1029 goto out_free_lowertmp; 1030 } else if (!ufs->config.upperdir && stacklen == 1) { 1031 pr_err("overlayfs: at least 2 lowerdir are needed while upperdir nonexistent\n"); 1032 goto out_free_lowertmp; 1033 } 1034 1035 stack = kcalloc(stacklen, sizeof(struct path), GFP_KERNEL); 1036 if (!stack) 1037 goto out_free_lowertmp; 1038 1039 lower = lowertmp; 1040 for (numlower = 0; numlower < stacklen; numlower++) { 1041 err = ovl_lower_dir(lower, &stack[numlower], 1042 &ufs->lower_namelen, &sb->s_stack_depth, 1043 &remote); 1044 if (err) 1045 goto out_put_lowerpath; 1046 1047 lower = strchr(lower, '\0') + 1; 1048 } 1049 1050 err = -EINVAL; 1051 sb->s_stack_depth++; 1052 if (sb->s_stack_depth > FILESYSTEM_MAX_STACK_DEPTH) { 1053 pr_err("overlayfs: maximum fs stacking depth exceeded\n"); 1054 goto out_put_lowerpath; 1055 } 1056 1057 if (ufs->config.upperdir) { 1058 ufs->upper_mnt = clone_private_mount(&upperpath); 1059 err = PTR_ERR(ufs->upper_mnt); 1060 if (IS_ERR(ufs->upper_mnt)) { 1061 pr_err("overlayfs: failed to clone upperpath\n"); 1062 goto out_put_lowerpath; 1063 } 1064 1065 ufs->workdir = ovl_workdir_create(ufs->upper_mnt, workpath.dentry); 1066 err = PTR_ERR(ufs->workdir); 1067 if (IS_ERR(ufs->workdir)) { 1068 pr_warn("overlayfs: failed to create directory %s/%s (errno: %i); mounting read-only\n", 1069 ufs->config.workdir, OVL_WORKDIR_NAME, -err); 1070 sb->s_flags |= MS_RDONLY; 1071 ufs->workdir = NULL; 1072 } 1073 1074 /* 1075 * Upper should support d_type, else whiteouts are visible. 1076 * Given workdir and upper are on same fs, we can do 1077 * iterate_dir() on workdir. This check requires successful 1078 * creation of workdir in previous step. 1079 */ 1080 if (ufs->workdir) { 1081 err = ovl_check_d_type_supported(&workpath); 1082 if (err < 0) 1083 goto out_put_workdir; 1084 1085 if (!err) { 1086 pr_err("overlayfs: upper fs needs to support d_type.\n"); 1087 err = -EINVAL; 1088 goto out_put_workdir; 1089 } 1090 } 1091 } 1092 1093 err = -ENOMEM; 1094 ufs->lower_mnt = kcalloc(numlower, sizeof(struct vfsmount *), GFP_KERNEL); 1095 if (ufs->lower_mnt == NULL) 1096 goto out_put_workdir; 1097 for (i = 0; i < numlower; i++) { 1098 struct vfsmount *mnt = clone_private_mount(&stack[i]); 1099 1100 err = PTR_ERR(mnt); 1101 if (IS_ERR(mnt)) { 1102 pr_err("overlayfs: failed to clone lowerpath\n"); 1103 goto out_put_lower_mnt; 1104 } 1105 /* 1106 * Make lower_mnt R/O. That way fchmod/fchown on lower file 1107 * will fail instead of modifying lower fs. 1108 */ 1109 mnt->mnt_flags |= MNT_READONLY; 1110 1111 ufs->lower_mnt[ufs->numlower] = mnt; 1112 ufs->numlower++; 1113 } 1114 1115 /* If the upper fs is nonexistent, we mark overlayfs r/o too */ 1116 if (!ufs->upper_mnt) 1117 sb->s_flags |= MS_RDONLY; 1118 1119 if (remote) 1120 sb->s_d_op = &ovl_reval_dentry_operations; 1121 else 1122 sb->s_d_op = &ovl_dentry_operations; 1123 1124 ufs->creator_cred = prepare_creds(); 1125 if (!ufs->creator_cred) 1126 goto out_put_lower_mnt; 1127 1128 err = -ENOMEM; 1129 oe = ovl_alloc_entry(numlower); 1130 if (!oe) 1131 goto out_put_cred; 1132 1133 root_dentry = d_make_root(ovl_new_inode(sb, S_IFDIR, oe)); 1134 if (!root_dentry) 1135 goto out_free_oe; 1136 1137 mntput(upperpath.mnt); 1138 for (i = 0; i < numlower; i++) 1139 mntput(stack[i].mnt); 1140 path_put(&workpath); 1141 kfree(lowertmp); 1142 1143 oe->__upperdentry = upperpath.dentry; 1144 for (i = 0; i < numlower; i++) { 1145 oe->lowerstack[i].dentry = stack[i].dentry; 1146 oe->lowerstack[i].mnt = ufs->lower_mnt[i]; 1147 } 1148 kfree(stack); 1149 1150 root_dentry->d_fsdata = oe; 1151 1152 ovl_copyattr(ovl_dentry_real(root_dentry)->d_inode, 1153 root_dentry->d_inode); 1154 1155 sb->s_magic = OVERLAYFS_SUPER_MAGIC; 1156 sb->s_op = &ovl_super_operations; 1157 sb->s_root = root_dentry; 1158 sb->s_fs_info = ufs; 1159 1160 return 0; 1161 1162 out_free_oe: 1163 kfree(oe); 1164 out_put_cred: 1165 put_cred(ufs->creator_cred); 1166 out_put_lower_mnt: 1167 for (i = 0; i < ufs->numlower; i++) 1168 mntput(ufs->lower_mnt[i]); 1169 kfree(ufs->lower_mnt); 1170 out_put_workdir: 1171 dput(ufs->workdir); 1172 mntput(ufs->upper_mnt); 1173 out_put_lowerpath: 1174 for (i = 0; i < numlower; i++) 1175 path_put(&stack[i]); 1176 kfree(stack); 1177 out_free_lowertmp: 1178 kfree(lowertmp); 1179 out_put_workpath: 1180 path_put(&workpath); 1181 out_put_upperpath: 1182 path_put(&upperpath); 1183 out_free_config: 1184 kfree(ufs->config.lowerdir); 1185 kfree(ufs->config.upperdir); 1186 kfree(ufs->config.workdir); 1187 kfree(ufs); 1188 out: 1189 return err; 1190 } 1191 1192 static struct dentry *ovl_mount(struct file_system_type *fs_type, int flags, 1193 const char *dev_name, void *raw_data) 1194 { 1195 return mount_nodev(fs_type, flags, raw_data, ovl_fill_super); 1196 } 1197 1198 static struct file_system_type ovl_fs_type = { 1199 .owner = THIS_MODULE, 1200 .name = "overlay", 1201 .mount = ovl_mount, 1202 .kill_sb = kill_anon_super, 1203 }; 1204 MODULE_ALIAS_FS("overlay"); 1205 1206 static int __init ovl_init(void) 1207 { 1208 return register_filesystem(&ovl_fs_type); 1209 } 1210 1211 static void __exit ovl_exit(void) 1212 { 1213 unregister_filesystem(&ovl_fs_type); 1214 } 1215 1216 module_init(ovl_init); 1217 module_exit(ovl_exit); 1218