1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * 4 * Copyright (C) 2011 Novell Inc. 5 */ 6 7 #include <linux/fs.h> 8 #include <linux/slab.h> 9 #include <linux/cred.h> 10 #include <linux/xattr.h> 11 #include <linux/posix_acl.h> 12 #include <linux/ratelimit.h> 13 #include <linux/fiemap.h> 14 #include <linux/fileattr.h> 15 #include <linux/security.h> 16 #include <linux/namei.h> 17 #include "overlayfs.h" 18 19 20 int ovl_setattr(struct user_namespace *mnt_userns, struct dentry *dentry, 21 struct iattr *attr) 22 { 23 int err; 24 struct ovl_fs *ofs = OVL_FS(dentry->d_sb); 25 bool full_copy_up = false; 26 struct dentry *upperdentry; 27 const struct cred *old_cred; 28 29 err = setattr_prepare(&init_user_ns, dentry, attr); 30 if (err) 31 return err; 32 33 err = ovl_want_write(dentry); 34 if (err) 35 goto out; 36 37 if (attr->ia_valid & ATTR_SIZE) { 38 /* Truncate should trigger data copy up as well */ 39 full_copy_up = true; 40 } 41 42 if (!full_copy_up) 43 err = ovl_copy_up(dentry); 44 else 45 err = ovl_copy_up_with_data(dentry); 46 if (!err) { 47 struct inode *winode = NULL; 48 49 upperdentry = ovl_dentry_upper(dentry); 50 51 if (attr->ia_valid & ATTR_SIZE) { 52 winode = d_inode(upperdentry); 53 err = get_write_access(winode); 54 if (err) 55 goto out_drop_write; 56 } 57 58 if (attr->ia_valid & (ATTR_KILL_SUID|ATTR_KILL_SGID)) 59 attr->ia_valid &= ~ATTR_MODE; 60 61 /* 62 * We might have to translate ovl file into real file object 63 * once use cases emerge. For now, simply don't let underlying 64 * filesystem rely on attr->ia_file 65 */ 66 attr->ia_valid &= ~ATTR_FILE; 67 68 /* 69 * If open(O_TRUNC) is done, VFS calls ->setattr with ATTR_OPEN 70 * set. Overlayfs does not pass O_TRUNC flag to underlying 71 * filesystem during open -> do not pass ATTR_OPEN. This 72 * disables optimization in fuse which assumes open(O_TRUNC) 73 * already set file size to 0. But we never passed O_TRUNC to 74 * fuse. So by clearing ATTR_OPEN, fuse will be forced to send 75 * setattr request to server. 76 */ 77 attr->ia_valid &= ~ATTR_OPEN; 78 79 inode_lock(upperdentry->d_inode); 80 old_cred = ovl_override_creds(dentry->d_sb); 81 err = ovl_do_notify_change(ofs, upperdentry, attr); 82 revert_creds(old_cred); 83 if (!err) 84 ovl_copyattr(dentry->d_inode); 85 inode_unlock(upperdentry->d_inode); 86 87 if (winode) 88 put_write_access(winode); 89 } 90 out_drop_write: 91 ovl_drop_write(dentry); 92 out: 93 return err; 94 } 95 96 static void ovl_map_dev_ino(struct dentry *dentry, struct kstat *stat, int fsid) 97 { 98 bool samefs = ovl_same_fs(dentry->d_sb); 99 unsigned int xinobits = ovl_xino_bits(dentry->d_sb); 100 unsigned int xinoshift = 64 - xinobits; 101 102 if (samefs) { 103 /* 104 * When all layers are on the same fs, all real inode 105 * number are unique, so we use the overlay st_dev, 106 * which is friendly to du -x. 107 */ 108 stat->dev = dentry->d_sb->s_dev; 109 return; 110 } else if (xinobits) { 111 /* 112 * All inode numbers of underlying fs should not be using the 113 * high xinobits, so we use high xinobits to partition the 114 * overlay st_ino address space. The high bits holds the fsid 115 * (upper fsid is 0). The lowest xinobit is reserved for mapping 116 * the non-persistent inode numbers range in case of overflow. 117 * This way all overlay inode numbers are unique and use the 118 * overlay st_dev. 119 */ 120 if (likely(!(stat->ino >> xinoshift))) { 121 stat->ino |= ((u64)fsid) << (xinoshift + 1); 122 stat->dev = dentry->d_sb->s_dev; 123 return; 124 } else if (ovl_xino_warn(dentry->d_sb)) { 125 pr_warn_ratelimited("inode number too big (%pd2, ino=%llu, xinobits=%d)\n", 126 dentry, stat->ino, xinobits); 127 } 128 } 129 130 /* The inode could not be mapped to a unified st_ino address space */ 131 if (S_ISDIR(dentry->d_inode->i_mode)) { 132 /* 133 * Always use the overlay st_dev for directories, so 'find 134 * -xdev' will scan the entire overlay mount and won't cross the 135 * overlay mount boundaries. 136 * 137 * If not all layers are on the same fs the pair {real st_ino; 138 * overlay st_dev} is not unique, so use the non persistent 139 * overlay st_ino for directories. 140 */ 141 stat->dev = dentry->d_sb->s_dev; 142 stat->ino = dentry->d_inode->i_ino; 143 } else { 144 /* 145 * For non-samefs setup, if we cannot map all layers st_ino 146 * to a unified address space, we need to make sure that st_dev 147 * is unique per underlying fs, so we use the unique anonymous 148 * bdev assigned to the underlying fs. 149 */ 150 stat->dev = OVL_FS(dentry->d_sb)->fs[fsid].pseudo_dev; 151 } 152 } 153 154 int ovl_getattr(struct user_namespace *mnt_userns, const struct path *path, 155 struct kstat *stat, u32 request_mask, unsigned int flags) 156 { 157 struct dentry *dentry = path->dentry; 158 enum ovl_path_type type; 159 struct path realpath; 160 const struct cred *old_cred; 161 struct inode *inode = d_inode(dentry); 162 bool is_dir = S_ISDIR(inode->i_mode); 163 int fsid = 0; 164 int err; 165 bool metacopy_blocks = false; 166 167 metacopy_blocks = ovl_is_metacopy_dentry(dentry); 168 169 type = ovl_path_real(dentry, &realpath); 170 old_cred = ovl_override_creds(dentry->d_sb); 171 err = vfs_getattr(&realpath, stat, request_mask, flags); 172 if (err) 173 goto out; 174 175 /* Report the effective immutable/append-only STATX flags */ 176 generic_fill_statx_attr(inode, stat); 177 178 /* 179 * For non-dir or same fs, we use st_ino of the copy up origin. 180 * This guaranties constant st_dev/st_ino across copy up. 181 * With xino feature and non-samefs, we use st_ino of the copy up 182 * origin masked with high bits that represent the layer id. 183 * 184 * If lower filesystem supports NFS file handles, this also guaranties 185 * persistent st_ino across mount cycle. 186 */ 187 if (!is_dir || ovl_same_dev(dentry->d_sb)) { 188 if (!OVL_TYPE_UPPER(type)) { 189 fsid = ovl_layer_lower(dentry)->fsid; 190 } else if (OVL_TYPE_ORIGIN(type)) { 191 struct kstat lowerstat; 192 u32 lowermask = STATX_INO | STATX_BLOCKS | 193 (!is_dir ? STATX_NLINK : 0); 194 195 ovl_path_lower(dentry, &realpath); 196 err = vfs_getattr(&realpath, &lowerstat, 197 lowermask, flags); 198 if (err) 199 goto out; 200 201 /* 202 * Lower hardlinks may be broken on copy up to different 203 * upper files, so we cannot use the lower origin st_ino 204 * for those different files, even for the same fs case. 205 * 206 * Similarly, several redirected dirs can point to the 207 * same dir on a lower layer. With the "verify_lower" 208 * feature, we do not use the lower origin st_ino, if 209 * we haven't verified that this redirect is unique. 210 * 211 * With inodes index enabled, it is safe to use st_ino 212 * of an indexed origin. The index validates that the 213 * upper hardlink is not broken and that a redirected 214 * dir is the only redirect to that origin. 215 */ 216 if (ovl_test_flag(OVL_INDEX, d_inode(dentry)) || 217 (!ovl_verify_lower(dentry->d_sb) && 218 (is_dir || lowerstat.nlink == 1))) { 219 fsid = ovl_layer_lower(dentry)->fsid; 220 stat->ino = lowerstat.ino; 221 } 222 223 /* 224 * If we are querying a metacopy dentry and lower 225 * dentry is data dentry, then use the blocks we 226 * queried just now. We don't have to do additional 227 * vfs_getattr(). If lower itself is metacopy, then 228 * additional vfs_getattr() is unavoidable. 229 */ 230 if (metacopy_blocks && 231 realpath.dentry == ovl_dentry_lowerdata(dentry)) { 232 stat->blocks = lowerstat.blocks; 233 metacopy_blocks = false; 234 } 235 } 236 237 if (metacopy_blocks) { 238 /* 239 * If lower is not same as lowerdata or if there was 240 * no origin on upper, we can end up here. 241 */ 242 struct kstat lowerdatastat; 243 u32 lowermask = STATX_BLOCKS; 244 245 ovl_path_lowerdata(dentry, &realpath); 246 err = vfs_getattr(&realpath, &lowerdatastat, 247 lowermask, flags); 248 if (err) 249 goto out; 250 stat->blocks = lowerdatastat.blocks; 251 } 252 } 253 254 ovl_map_dev_ino(dentry, stat, fsid); 255 256 /* 257 * It's probably not worth it to count subdirs to get the 258 * correct link count. nlink=1 seems to pacify 'find' and 259 * other utilities. 260 */ 261 if (is_dir && OVL_TYPE_MERGE(type)) 262 stat->nlink = 1; 263 264 /* 265 * Return the overlay inode nlinks for indexed upper inodes. 266 * Overlay inode nlink counts the union of the upper hardlinks 267 * and non-covered lower hardlinks. It does not include the upper 268 * index hardlink. 269 */ 270 if (!is_dir && ovl_test_flag(OVL_INDEX, d_inode(dentry))) 271 stat->nlink = dentry->d_inode->i_nlink; 272 273 out: 274 revert_creds(old_cred); 275 276 return err; 277 } 278 279 int ovl_permission(struct user_namespace *mnt_userns, 280 struct inode *inode, int mask) 281 { 282 struct inode *upperinode = ovl_inode_upper(inode); 283 struct inode *realinode; 284 struct path realpath; 285 const struct cred *old_cred; 286 int err; 287 288 /* Careful in RCU walk mode */ 289 ovl_i_path_real(inode, &realpath); 290 if (!realpath.dentry) { 291 WARN_ON(!(mask & MAY_NOT_BLOCK)); 292 return -ECHILD; 293 } 294 295 /* 296 * Check overlay inode with the creds of task and underlying inode 297 * with creds of mounter 298 */ 299 err = generic_permission(&init_user_ns, inode, mask); 300 if (err) 301 return err; 302 303 realinode = d_inode(realpath.dentry); 304 old_cred = ovl_override_creds(inode->i_sb); 305 if (!upperinode && 306 !special_file(realinode->i_mode) && mask & MAY_WRITE) { 307 mask &= ~(MAY_WRITE | MAY_APPEND); 308 /* Make sure mounter can read file for copy up later */ 309 mask |= MAY_READ; 310 } 311 err = inode_permission(mnt_user_ns(realpath.mnt), realinode, mask); 312 revert_creds(old_cred); 313 314 return err; 315 } 316 317 static const char *ovl_get_link(struct dentry *dentry, 318 struct inode *inode, 319 struct delayed_call *done) 320 { 321 const struct cred *old_cred; 322 const char *p; 323 324 if (!dentry) 325 return ERR_PTR(-ECHILD); 326 327 old_cred = ovl_override_creds(dentry->d_sb); 328 p = vfs_get_link(ovl_dentry_real(dentry), done); 329 revert_creds(old_cred); 330 return p; 331 } 332 333 bool ovl_is_private_xattr(struct super_block *sb, const char *name) 334 { 335 struct ovl_fs *ofs = sb->s_fs_info; 336 337 if (ofs->config.userxattr) 338 return strncmp(name, OVL_XATTR_USER_PREFIX, 339 sizeof(OVL_XATTR_USER_PREFIX) - 1) == 0; 340 else 341 return strncmp(name, OVL_XATTR_TRUSTED_PREFIX, 342 sizeof(OVL_XATTR_TRUSTED_PREFIX) - 1) == 0; 343 } 344 345 int ovl_xattr_set(struct dentry *dentry, struct inode *inode, const char *name, 346 const void *value, size_t size, int flags) 347 { 348 int err; 349 struct ovl_fs *ofs = OVL_FS(dentry->d_sb); 350 struct dentry *upperdentry = ovl_i_dentry_upper(inode); 351 struct dentry *realdentry = upperdentry ?: ovl_dentry_lower(dentry); 352 struct path realpath; 353 const struct cred *old_cred; 354 355 err = ovl_want_write(dentry); 356 if (err) 357 goto out; 358 359 if (!value && !upperdentry) { 360 ovl_path_lower(dentry, &realpath); 361 old_cred = ovl_override_creds(dentry->d_sb); 362 err = vfs_getxattr(mnt_user_ns(realpath.mnt), realdentry, name, NULL, 0); 363 revert_creds(old_cred); 364 if (err < 0) 365 goto out_drop_write; 366 } 367 368 if (!upperdentry) { 369 err = ovl_copy_up(dentry); 370 if (err) 371 goto out_drop_write; 372 373 realdentry = ovl_dentry_upper(dentry); 374 } 375 376 old_cred = ovl_override_creds(dentry->d_sb); 377 if (value) { 378 err = ovl_do_setxattr(ofs, realdentry, name, value, size, 379 flags); 380 } else { 381 WARN_ON(flags != XATTR_REPLACE); 382 err = ovl_do_removexattr(ofs, realdentry, name); 383 } 384 revert_creds(old_cred); 385 386 /* copy c/mtime */ 387 ovl_copyattr(inode); 388 389 out_drop_write: 390 ovl_drop_write(dentry); 391 out: 392 return err; 393 } 394 395 int ovl_xattr_get(struct dentry *dentry, struct inode *inode, const char *name, 396 void *value, size_t size) 397 { 398 ssize_t res; 399 const struct cred *old_cred; 400 struct path realpath; 401 402 ovl_i_path_real(inode, &realpath); 403 old_cred = ovl_override_creds(dentry->d_sb); 404 res = vfs_getxattr(mnt_user_ns(realpath.mnt), realpath.dentry, name, value, size); 405 revert_creds(old_cred); 406 return res; 407 } 408 409 static bool ovl_can_list(struct super_block *sb, const char *s) 410 { 411 /* Never list private (.overlay) */ 412 if (ovl_is_private_xattr(sb, s)) 413 return false; 414 415 /* List all non-trusted xattrs */ 416 if (strncmp(s, XATTR_TRUSTED_PREFIX, XATTR_TRUSTED_PREFIX_LEN) != 0) 417 return true; 418 419 /* list other trusted for superuser only */ 420 return ns_capable_noaudit(&init_user_ns, CAP_SYS_ADMIN); 421 } 422 423 ssize_t ovl_listxattr(struct dentry *dentry, char *list, size_t size) 424 { 425 struct dentry *realdentry = ovl_dentry_real(dentry); 426 ssize_t res; 427 size_t len; 428 char *s; 429 const struct cred *old_cred; 430 431 old_cred = ovl_override_creds(dentry->d_sb); 432 res = vfs_listxattr(realdentry, list, size); 433 revert_creds(old_cred); 434 if (res <= 0 || size == 0) 435 return res; 436 437 /* filter out private xattrs */ 438 for (s = list, len = res; len;) { 439 size_t slen = strnlen(s, len) + 1; 440 441 /* underlying fs providing us with an broken xattr list? */ 442 if (WARN_ON(slen > len)) 443 return -EIO; 444 445 len -= slen; 446 if (!ovl_can_list(dentry->d_sb, s)) { 447 res -= slen; 448 memmove(s, s + slen, len); 449 } else { 450 s += slen; 451 } 452 } 453 454 return res; 455 } 456 457 /* 458 * Apply the idmapping of the layer to POSIX ACLs. The caller must pass a clone 459 * of the POSIX ACLs retrieved from the lower layer to this function to not 460 * alter the POSIX ACLs for the underlying filesystem. 461 */ 462 static void ovl_idmap_posix_acl(struct user_namespace *mnt_userns, 463 struct posix_acl *acl) 464 { 465 for (unsigned int i = 0; i < acl->a_count; i++) { 466 vfsuid_t vfsuid; 467 vfsgid_t vfsgid; 468 469 struct posix_acl_entry *e = &acl->a_entries[i]; 470 switch (e->e_tag) { 471 case ACL_USER: 472 vfsuid = make_vfsuid(mnt_userns, &init_user_ns, e->e_uid); 473 e->e_uid = vfsuid_into_kuid(vfsuid); 474 break; 475 case ACL_GROUP: 476 vfsgid = make_vfsgid(mnt_userns, &init_user_ns, e->e_gid); 477 e->e_gid = vfsgid_into_kgid(vfsgid); 478 break; 479 } 480 } 481 } 482 483 /* 484 * When the relevant layer is an idmapped mount we need to take the idmapping 485 * of the layer into account and translate any ACL_{GROUP,USER} values 486 * according to the idmapped mount. 487 * 488 * We cannot alter the ACLs returned from the relevant layer as that would 489 * alter the cached values filesystem wide for the lower filesystem. Instead we 490 * can clone the ACLs and then apply the relevant idmapping of the layer. 491 * 492 * This is obviously only relevant when idmapped layers are used. 493 */ 494 struct posix_acl *ovl_get_acl(struct inode *inode, int type, bool rcu) 495 { 496 struct inode *realinode = ovl_inode_real(inode); 497 struct posix_acl *acl, *clone; 498 struct path realpath; 499 500 if (!IS_ENABLED(CONFIG_FS_POSIX_ACL) || !IS_POSIXACL(realinode)) 501 return NULL; 502 503 /* Careful in RCU walk mode */ 504 ovl_i_path_real(inode, &realpath); 505 if (!realpath.dentry) { 506 WARN_ON(!rcu); 507 return ERR_PTR(-ECHILD); 508 } 509 510 if (rcu) { 511 acl = get_cached_acl_rcu(realinode, type); 512 } else { 513 const struct cred *old_cred; 514 515 old_cred = ovl_override_creds(inode->i_sb); 516 acl = get_acl(realinode, type); 517 revert_creds(old_cred); 518 } 519 /* 520 * If there are no POSIX ACLs, or we encountered an error, 521 * or the layer isn't idmapped we don't need to do anything. 522 */ 523 if (!is_idmapped_mnt(realpath.mnt) || IS_ERR_OR_NULL(acl)) 524 return acl; 525 526 /* 527 * We only get here if the layer is idmapped. So drop out of RCU path 528 * walk so we can clone the ACLs. There's no need to release the ACLs 529 * since get_cached_acl_rcu() doesn't take a reference on the ACLs. 530 */ 531 if (rcu) 532 return ERR_PTR(-ECHILD); 533 534 clone = posix_acl_clone(acl, GFP_KERNEL); 535 if (!clone) 536 clone = ERR_PTR(-ENOMEM); 537 else 538 ovl_idmap_posix_acl(mnt_user_ns(realpath.mnt), clone); 539 /* 540 * Since we're not in RCU path walk we always need to release the 541 * original ACLs. 542 */ 543 posix_acl_release(acl); 544 return clone; 545 } 546 547 int ovl_update_time(struct inode *inode, struct timespec64 *ts, int flags) 548 { 549 if (flags & S_ATIME) { 550 struct ovl_fs *ofs = inode->i_sb->s_fs_info; 551 struct path upperpath = { 552 .mnt = ovl_upper_mnt(ofs), 553 .dentry = ovl_upperdentry_dereference(OVL_I(inode)), 554 }; 555 556 if (upperpath.dentry) { 557 touch_atime(&upperpath); 558 inode->i_atime = d_inode(upperpath.dentry)->i_atime; 559 } 560 } 561 return 0; 562 } 563 564 static int ovl_fiemap(struct inode *inode, struct fiemap_extent_info *fieinfo, 565 u64 start, u64 len) 566 { 567 int err; 568 struct inode *realinode = ovl_inode_realdata(inode); 569 const struct cred *old_cred; 570 571 if (!realinode->i_op->fiemap) 572 return -EOPNOTSUPP; 573 574 old_cred = ovl_override_creds(inode->i_sb); 575 err = realinode->i_op->fiemap(realinode, fieinfo, start, len); 576 revert_creds(old_cred); 577 578 return err; 579 } 580 581 /* 582 * Work around the fact that security_file_ioctl() takes a file argument. 583 * Introducing security_inode_fileattr_get/set() hooks would solve this issue 584 * properly. 585 */ 586 static int ovl_security_fileattr(struct path *realpath, struct fileattr *fa, 587 bool set) 588 { 589 struct file *file; 590 unsigned int cmd; 591 int err; 592 593 file = dentry_open(realpath, O_RDONLY, current_cred()); 594 if (IS_ERR(file)) 595 return PTR_ERR(file); 596 597 if (set) 598 cmd = fa->fsx_valid ? FS_IOC_FSSETXATTR : FS_IOC_SETFLAGS; 599 else 600 cmd = fa->fsx_valid ? FS_IOC_FSGETXATTR : FS_IOC_GETFLAGS; 601 602 err = security_file_ioctl(file, cmd, 0); 603 fput(file); 604 605 return err; 606 } 607 608 int ovl_real_fileattr_set(struct path *realpath, struct fileattr *fa) 609 { 610 int err; 611 612 err = ovl_security_fileattr(realpath, fa, true); 613 if (err) 614 return err; 615 616 return vfs_fileattr_set(mnt_user_ns(realpath->mnt), realpath->dentry, fa); 617 } 618 619 int ovl_fileattr_set(struct user_namespace *mnt_userns, 620 struct dentry *dentry, struct fileattr *fa) 621 { 622 struct inode *inode = d_inode(dentry); 623 struct path upperpath; 624 const struct cred *old_cred; 625 unsigned int flags; 626 int err; 627 628 err = ovl_want_write(dentry); 629 if (err) 630 goto out; 631 632 err = ovl_copy_up(dentry); 633 if (!err) { 634 ovl_path_real(dentry, &upperpath); 635 636 old_cred = ovl_override_creds(inode->i_sb); 637 /* 638 * Store immutable/append-only flags in xattr and clear them 639 * in upper fileattr (in case they were set by older kernel) 640 * so children of "ovl-immutable" directories lower aliases of 641 * "ovl-immutable" hardlinks could be copied up. 642 * Clear xattr when flags are cleared. 643 */ 644 err = ovl_set_protattr(inode, upperpath.dentry, fa); 645 if (!err) 646 err = ovl_real_fileattr_set(&upperpath, fa); 647 revert_creds(old_cred); 648 649 /* 650 * Merge real inode flags with inode flags read from 651 * overlay.protattr xattr 652 */ 653 flags = ovl_inode_real(inode)->i_flags & OVL_COPY_I_FLAGS_MASK; 654 655 BUILD_BUG_ON(OVL_PROT_I_FLAGS_MASK & ~OVL_COPY_I_FLAGS_MASK); 656 flags |= inode->i_flags & OVL_PROT_I_FLAGS_MASK; 657 inode_set_flags(inode, flags, OVL_COPY_I_FLAGS_MASK); 658 659 /* Update ctime */ 660 ovl_copyattr(inode); 661 } 662 ovl_drop_write(dentry); 663 out: 664 return err; 665 } 666 667 /* Convert inode protection flags to fileattr flags */ 668 static void ovl_fileattr_prot_flags(struct inode *inode, struct fileattr *fa) 669 { 670 BUILD_BUG_ON(OVL_PROT_FS_FLAGS_MASK & ~FS_COMMON_FL); 671 BUILD_BUG_ON(OVL_PROT_FSX_FLAGS_MASK & ~FS_XFLAG_COMMON); 672 673 if (inode->i_flags & S_APPEND) { 674 fa->flags |= FS_APPEND_FL; 675 fa->fsx_xflags |= FS_XFLAG_APPEND; 676 } 677 if (inode->i_flags & S_IMMUTABLE) { 678 fa->flags |= FS_IMMUTABLE_FL; 679 fa->fsx_xflags |= FS_XFLAG_IMMUTABLE; 680 } 681 } 682 683 int ovl_real_fileattr_get(struct path *realpath, struct fileattr *fa) 684 { 685 int err; 686 687 err = ovl_security_fileattr(realpath, fa, false); 688 if (err) 689 return err; 690 691 err = vfs_fileattr_get(realpath->dentry, fa); 692 if (err == -ENOIOCTLCMD) 693 err = -ENOTTY; 694 return err; 695 } 696 697 int ovl_fileattr_get(struct dentry *dentry, struct fileattr *fa) 698 { 699 struct inode *inode = d_inode(dentry); 700 struct path realpath; 701 const struct cred *old_cred; 702 int err; 703 704 ovl_path_real(dentry, &realpath); 705 706 old_cred = ovl_override_creds(inode->i_sb); 707 err = ovl_real_fileattr_get(&realpath, fa); 708 ovl_fileattr_prot_flags(inode, fa); 709 revert_creds(old_cred); 710 711 return err; 712 } 713 714 static const struct inode_operations ovl_file_inode_operations = { 715 .setattr = ovl_setattr, 716 .permission = ovl_permission, 717 .getattr = ovl_getattr, 718 .listxattr = ovl_listxattr, 719 .get_acl = ovl_get_acl, 720 .update_time = ovl_update_time, 721 .fiemap = ovl_fiemap, 722 .fileattr_get = ovl_fileattr_get, 723 .fileattr_set = ovl_fileattr_set, 724 }; 725 726 static const struct inode_operations ovl_symlink_inode_operations = { 727 .setattr = ovl_setattr, 728 .get_link = ovl_get_link, 729 .getattr = ovl_getattr, 730 .listxattr = ovl_listxattr, 731 .update_time = ovl_update_time, 732 }; 733 734 static const struct inode_operations ovl_special_inode_operations = { 735 .setattr = ovl_setattr, 736 .permission = ovl_permission, 737 .getattr = ovl_getattr, 738 .listxattr = ovl_listxattr, 739 .get_acl = ovl_get_acl, 740 .update_time = ovl_update_time, 741 }; 742 743 static const struct address_space_operations ovl_aops = { 744 /* For O_DIRECT dentry_open() checks f_mapping->a_ops->direct_IO */ 745 .direct_IO = noop_direct_IO, 746 }; 747 748 /* 749 * It is possible to stack overlayfs instance on top of another 750 * overlayfs instance as lower layer. We need to annotate the 751 * stackable i_mutex locks according to stack level of the super 752 * block instance. An overlayfs instance can never be in stack 753 * depth 0 (there is always a real fs below it). An overlayfs 754 * inode lock will use the lockdep annotation ovl_i_mutex_key[depth]. 755 * 756 * For example, here is a snip from /proc/lockdep_chains after 757 * dir_iterate of nested overlayfs: 758 * 759 * [...] &ovl_i_mutex_dir_key[depth] (stack_depth=2) 760 * [...] &ovl_i_mutex_dir_key[depth]#2 (stack_depth=1) 761 * [...] &type->i_mutex_dir_key (stack_depth=0) 762 * 763 * Locking order w.r.t ovl_want_write() is important for nested overlayfs. 764 * 765 * This chain is valid: 766 * - inode->i_rwsem (inode_lock[2]) 767 * - upper_mnt->mnt_sb->s_writers (ovl_want_write[0]) 768 * - OVL_I(inode)->lock (ovl_inode_lock[2]) 769 * - OVL_I(lowerinode)->lock (ovl_inode_lock[1]) 770 * 771 * And this chain is valid: 772 * - inode->i_rwsem (inode_lock[2]) 773 * - OVL_I(inode)->lock (ovl_inode_lock[2]) 774 * - lowerinode->i_rwsem (inode_lock[1]) 775 * - OVL_I(lowerinode)->lock (ovl_inode_lock[1]) 776 * 777 * But lowerinode->i_rwsem SHOULD NOT be acquired while ovl_want_write() is 778 * held, because it is in reverse order of the non-nested case using the same 779 * upper fs: 780 * - inode->i_rwsem (inode_lock[1]) 781 * - upper_mnt->mnt_sb->s_writers (ovl_want_write[0]) 782 * - OVL_I(inode)->lock (ovl_inode_lock[1]) 783 */ 784 #define OVL_MAX_NESTING FILESYSTEM_MAX_STACK_DEPTH 785 786 static inline void ovl_lockdep_annotate_inode_mutex_key(struct inode *inode) 787 { 788 #ifdef CONFIG_LOCKDEP 789 static struct lock_class_key ovl_i_mutex_key[OVL_MAX_NESTING]; 790 static struct lock_class_key ovl_i_mutex_dir_key[OVL_MAX_NESTING]; 791 static struct lock_class_key ovl_i_lock_key[OVL_MAX_NESTING]; 792 793 int depth = inode->i_sb->s_stack_depth - 1; 794 795 if (WARN_ON_ONCE(depth < 0 || depth >= OVL_MAX_NESTING)) 796 depth = 0; 797 798 if (S_ISDIR(inode->i_mode)) 799 lockdep_set_class(&inode->i_rwsem, &ovl_i_mutex_dir_key[depth]); 800 else 801 lockdep_set_class(&inode->i_rwsem, &ovl_i_mutex_key[depth]); 802 803 lockdep_set_class(&OVL_I(inode)->lock, &ovl_i_lock_key[depth]); 804 #endif 805 } 806 807 static void ovl_next_ino(struct inode *inode) 808 { 809 struct ovl_fs *ofs = inode->i_sb->s_fs_info; 810 811 inode->i_ino = atomic_long_inc_return(&ofs->last_ino); 812 if (unlikely(!inode->i_ino)) 813 inode->i_ino = atomic_long_inc_return(&ofs->last_ino); 814 } 815 816 static void ovl_map_ino(struct inode *inode, unsigned long ino, int fsid) 817 { 818 int xinobits = ovl_xino_bits(inode->i_sb); 819 unsigned int xinoshift = 64 - xinobits; 820 821 /* 822 * When d_ino is consistent with st_ino (samefs or i_ino has enough 823 * bits to encode layer), set the same value used for st_ino to i_ino, 824 * so inode number exposed via /proc/locks and a like will be 825 * consistent with d_ino and st_ino values. An i_ino value inconsistent 826 * with d_ino also causes nfsd readdirplus to fail. 827 */ 828 inode->i_ino = ino; 829 if (ovl_same_fs(inode->i_sb)) { 830 return; 831 } else if (xinobits && likely(!(ino >> xinoshift))) { 832 inode->i_ino |= (unsigned long)fsid << (xinoshift + 1); 833 return; 834 } 835 836 /* 837 * For directory inodes on non-samefs with xino disabled or xino 838 * overflow, we allocate a non-persistent inode number, to be used for 839 * resolving st_ino collisions in ovl_map_dev_ino(). 840 * 841 * To avoid ino collision with legitimate xino values from upper 842 * layer (fsid 0), use the lowest xinobit to map the non 843 * persistent inode numbers to the unified st_ino address space. 844 */ 845 if (S_ISDIR(inode->i_mode)) { 846 ovl_next_ino(inode); 847 if (xinobits) { 848 inode->i_ino &= ~0UL >> xinobits; 849 inode->i_ino |= 1UL << xinoshift; 850 } 851 } 852 } 853 854 void ovl_inode_init(struct inode *inode, struct ovl_inode_params *oip, 855 unsigned long ino, int fsid) 856 { 857 struct inode *realinode; 858 struct ovl_inode *oi = OVL_I(inode); 859 860 if (oip->upperdentry) 861 oi->__upperdentry = oip->upperdentry; 862 if (oip->lowerpath && oip->lowerpath->dentry) { 863 oi->lowerpath.dentry = dget(oip->lowerpath->dentry); 864 oi->lowerpath.layer = oip->lowerpath->layer; 865 } 866 if (oip->lowerdata) 867 oi->lowerdata = igrab(d_inode(oip->lowerdata)); 868 869 realinode = ovl_inode_real(inode); 870 ovl_copyattr(inode); 871 ovl_copyflags(realinode, inode); 872 ovl_map_ino(inode, ino, fsid); 873 } 874 875 static void ovl_fill_inode(struct inode *inode, umode_t mode, dev_t rdev) 876 { 877 inode->i_mode = mode; 878 inode->i_flags |= S_NOCMTIME; 879 #ifdef CONFIG_FS_POSIX_ACL 880 inode->i_acl = inode->i_default_acl = ACL_DONT_CACHE; 881 #endif 882 883 ovl_lockdep_annotate_inode_mutex_key(inode); 884 885 switch (mode & S_IFMT) { 886 case S_IFREG: 887 inode->i_op = &ovl_file_inode_operations; 888 inode->i_fop = &ovl_file_operations; 889 inode->i_mapping->a_ops = &ovl_aops; 890 break; 891 892 case S_IFDIR: 893 inode->i_op = &ovl_dir_inode_operations; 894 inode->i_fop = &ovl_dir_operations; 895 break; 896 897 case S_IFLNK: 898 inode->i_op = &ovl_symlink_inode_operations; 899 break; 900 901 default: 902 inode->i_op = &ovl_special_inode_operations; 903 init_special_inode(inode, mode, rdev); 904 break; 905 } 906 } 907 908 /* 909 * With inodes index enabled, an overlay inode nlink counts the union of upper 910 * hardlinks and non-covered lower hardlinks. During the lifetime of a non-pure 911 * upper inode, the following nlink modifying operations can happen: 912 * 913 * 1. Lower hardlink copy up 914 * 2. Upper hardlink created, unlinked or renamed over 915 * 3. Lower hardlink whiteout or renamed over 916 * 917 * For the first, copy up case, the union nlink does not change, whether the 918 * operation succeeds or fails, but the upper inode nlink may change. 919 * Therefore, before copy up, we store the union nlink value relative to the 920 * lower inode nlink in the index inode xattr .overlay.nlink. 921 * 922 * For the second, upper hardlink case, the union nlink should be incremented 923 * or decremented IFF the operation succeeds, aligned with nlink change of the 924 * upper inode. Therefore, before link/unlink/rename, we store the union nlink 925 * value relative to the upper inode nlink in the index inode. 926 * 927 * For the last, lower cover up case, we simplify things by preceding the 928 * whiteout or cover up with copy up. This makes sure that there is an index 929 * upper inode where the nlink xattr can be stored before the copied up upper 930 * entry is unlink. 931 */ 932 #define OVL_NLINK_ADD_UPPER (1 << 0) 933 934 /* 935 * On-disk format for indexed nlink: 936 * 937 * nlink relative to the upper inode - "U[+-]NUM" 938 * nlink relative to the lower inode - "L[+-]NUM" 939 */ 940 941 static int ovl_set_nlink_common(struct dentry *dentry, 942 struct dentry *realdentry, const char *format) 943 { 944 struct inode *inode = d_inode(dentry); 945 struct inode *realinode = d_inode(realdentry); 946 char buf[13]; 947 int len; 948 949 len = snprintf(buf, sizeof(buf), format, 950 (int) (inode->i_nlink - realinode->i_nlink)); 951 952 if (WARN_ON(len >= sizeof(buf))) 953 return -EIO; 954 955 return ovl_setxattr(OVL_FS(inode->i_sb), ovl_dentry_upper(dentry), 956 OVL_XATTR_NLINK, buf, len); 957 } 958 959 int ovl_set_nlink_upper(struct dentry *dentry) 960 { 961 return ovl_set_nlink_common(dentry, ovl_dentry_upper(dentry), "U%+i"); 962 } 963 964 int ovl_set_nlink_lower(struct dentry *dentry) 965 { 966 return ovl_set_nlink_common(dentry, ovl_dentry_lower(dentry), "L%+i"); 967 } 968 969 unsigned int ovl_get_nlink(struct ovl_fs *ofs, struct dentry *lowerdentry, 970 struct dentry *upperdentry, 971 unsigned int fallback) 972 { 973 int nlink_diff; 974 int nlink; 975 char buf[13]; 976 int err; 977 978 if (!lowerdentry || !upperdentry || d_inode(lowerdentry)->i_nlink == 1) 979 return fallback; 980 981 err = ovl_getxattr_upper(ofs, upperdentry, OVL_XATTR_NLINK, 982 &buf, sizeof(buf) - 1); 983 if (err < 0) 984 goto fail; 985 986 buf[err] = '\0'; 987 if ((buf[0] != 'L' && buf[0] != 'U') || 988 (buf[1] != '+' && buf[1] != '-')) 989 goto fail; 990 991 err = kstrtoint(buf + 1, 10, &nlink_diff); 992 if (err < 0) 993 goto fail; 994 995 nlink = d_inode(buf[0] == 'L' ? lowerdentry : upperdentry)->i_nlink; 996 nlink += nlink_diff; 997 998 if (nlink <= 0) 999 goto fail; 1000 1001 return nlink; 1002 1003 fail: 1004 pr_warn_ratelimited("failed to get index nlink (%pd2, err=%i)\n", 1005 upperdentry, err); 1006 return fallback; 1007 } 1008 1009 struct inode *ovl_new_inode(struct super_block *sb, umode_t mode, dev_t rdev) 1010 { 1011 struct inode *inode; 1012 1013 inode = new_inode(sb); 1014 if (inode) 1015 ovl_fill_inode(inode, mode, rdev); 1016 1017 return inode; 1018 } 1019 1020 static int ovl_inode_test(struct inode *inode, void *data) 1021 { 1022 return inode->i_private == data; 1023 } 1024 1025 static int ovl_inode_set(struct inode *inode, void *data) 1026 { 1027 inode->i_private = data; 1028 return 0; 1029 } 1030 1031 static bool ovl_verify_inode(struct inode *inode, struct dentry *lowerdentry, 1032 struct dentry *upperdentry, bool strict) 1033 { 1034 /* 1035 * For directories, @strict verify from lookup path performs consistency 1036 * checks, so NULL lower/upper in dentry must match NULL lower/upper in 1037 * inode. Non @strict verify from NFS handle decode path passes NULL for 1038 * 'unknown' lower/upper. 1039 */ 1040 if (S_ISDIR(inode->i_mode) && strict) { 1041 /* Real lower dir moved to upper layer under us? */ 1042 if (!lowerdentry && ovl_inode_lower(inode)) 1043 return false; 1044 1045 /* Lookup of an uncovered redirect origin? */ 1046 if (!upperdentry && ovl_inode_upper(inode)) 1047 return false; 1048 } 1049 1050 /* 1051 * Allow non-NULL lower inode in ovl_inode even if lowerdentry is NULL. 1052 * This happens when finding a copied up overlay inode for a renamed 1053 * or hardlinked overlay dentry and lower dentry cannot be followed 1054 * by origin because lower fs does not support file handles. 1055 */ 1056 if (lowerdentry && ovl_inode_lower(inode) != d_inode(lowerdentry)) 1057 return false; 1058 1059 /* 1060 * Allow non-NULL __upperdentry in inode even if upperdentry is NULL. 1061 * This happens when finding a lower alias for a copied up hard link. 1062 */ 1063 if (upperdentry && ovl_inode_upper(inode) != d_inode(upperdentry)) 1064 return false; 1065 1066 return true; 1067 } 1068 1069 struct inode *ovl_lookup_inode(struct super_block *sb, struct dentry *real, 1070 bool is_upper) 1071 { 1072 struct inode *inode, *key = d_inode(real); 1073 1074 inode = ilookup5(sb, (unsigned long) key, ovl_inode_test, key); 1075 if (!inode) 1076 return NULL; 1077 1078 if (!ovl_verify_inode(inode, is_upper ? NULL : real, 1079 is_upper ? real : NULL, false)) { 1080 iput(inode); 1081 return ERR_PTR(-ESTALE); 1082 } 1083 1084 return inode; 1085 } 1086 1087 bool ovl_lookup_trap_inode(struct super_block *sb, struct dentry *dir) 1088 { 1089 struct inode *key = d_inode(dir); 1090 struct inode *trap; 1091 bool res; 1092 1093 trap = ilookup5(sb, (unsigned long) key, ovl_inode_test, key); 1094 if (!trap) 1095 return false; 1096 1097 res = IS_DEADDIR(trap) && !ovl_inode_upper(trap) && 1098 !ovl_inode_lower(trap); 1099 1100 iput(trap); 1101 return res; 1102 } 1103 1104 /* 1105 * Create an inode cache entry for layer root dir, that will intentionally 1106 * fail ovl_verify_inode(), so any lookup that will find some layer root 1107 * will fail. 1108 */ 1109 struct inode *ovl_get_trap_inode(struct super_block *sb, struct dentry *dir) 1110 { 1111 struct inode *key = d_inode(dir); 1112 struct inode *trap; 1113 1114 if (!d_is_dir(dir)) 1115 return ERR_PTR(-ENOTDIR); 1116 1117 trap = iget5_locked(sb, (unsigned long) key, ovl_inode_test, 1118 ovl_inode_set, key); 1119 if (!trap) 1120 return ERR_PTR(-ENOMEM); 1121 1122 if (!(trap->i_state & I_NEW)) { 1123 /* Conflicting layer roots? */ 1124 iput(trap); 1125 return ERR_PTR(-ELOOP); 1126 } 1127 1128 trap->i_mode = S_IFDIR; 1129 trap->i_flags = S_DEAD; 1130 unlock_new_inode(trap); 1131 1132 return trap; 1133 } 1134 1135 /* 1136 * Does overlay inode need to be hashed by lower inode? 1137 */ 1138 static bool ovl_hash_bylower(struct super_block *sb, struct dentry *upper, 1139 struct dentry *lower, bool index) 1140 { 1141 struct ovl_fs *ofs = sb->s_fs_info; 1142 1143 /* No, if pure upper */ 1144 if (!lower) 1145 return false; 1146 1147 /* Yes, if already indexed */ 1148 if (index) 1149 return true; 1150 1151 /* Yes, if won't be copied up */ 1152 if (!ovl_upper_mnt(ofs)) 1153 return true; 1154 1155 /* No, if lower hardlink is or will be broken on copy up */ 1156 if ((upper || !ovl_indexdir(sb)) && 1157 !d_is_dir(lower) && d_inode(lower)->i_nlink > 1) 1158 return false; 1159 1160 /* No, if non-indexed upper with NFS export */ 1161 if (sb->s_export_op && upper) 1162 return false; 1163 1164 /* Otherwise, hash by lower inode for fsnotify */ 1165 return true; 1166 } 1167 1168 static struct inode *ovl_iget5(struct super_block *sb, struct inode *newinode, 1169 struct inode *key) 1170 { 1171 return newinode ? inode_insert5(newinode, (unsigned long) key, 1172 ovl_inode_test, ovl_inode_set, key) : 1173 iget5_locked(sb, (unsigned long) key, 1174 ovl_inode_test, ovl_inode_set, key); 1175 } 1176 1177 struct inode *ovl_get_inode(struct super_block *sb, 1178 struct ovl_inode_params *oip) 1179 { 1180 struct ovl_fs *ofs = OVL_FS(sb); 1181 struct dentry *upperdentry = oip->upperdentry; 1182 struct ovl_path *lowerpath = oip->lowerpath; 1183 struct inode *realinode = upperdentry ? d_inode(upperdentry) : NULL; 1184 struct inode *inode; 1185 struct dentry *lowerdentry = lowerpath ? lowerpath->dentry : NULL; 1186 struct path realpath = { 1187 .dentry = upperdentry ?: lowerdentry, 1188 .mnt = upperdentry ? ovl_upper_mnt(ofs) : lowerpath->layer->mnt, 1189 }; 1190 bool bylower = ovl_hash_bylower(sb, upperdentry, lowerdentry, 1191 oip->index); 1192 int fsid = bylower ? lowerpath->layer->fsid : 0; 1193 bool is_dir; 1194 unsigned long ino = 0; 1195 int err = oip->newinode ? -EEXIST : -ENOMEM; 1196 1197 if (!realinode) 1198 realinode = d_inode(lowerdentry); 1199 1200 /* 1201 * Copy up origin (lower) may exist for non-indexed upper, but we must 1202 * not use lower as hash key if this is a broken hardlink. 1203 */ 1204 is_dir = S_ISDIR(realinode->i_mode); 1205 if (upperdentry || bylower) { 1206 struct inode *key = d_inode(bylower ? lowerdentry : 1207 upperdentry); 1208 unsigned int nlink = is_dir ? 1 : realinode->i_nlink; 1209 1210 inode = ovl_iget5(sb, oip->newinode, key); 1211 if (!inode) 1212 goto out_err; 1213 if (!(inode->i_state & I_NEW)) { 1214 /* 1215 * Verify that the underlying files stored in the inode 1216 * match those in the dentry. 1217 */ 1218 if (!ovl_verify_inode(inode, lowerdentry, upperdentry, 1219 true)) { 1220 iput(inode); 1221 err = -ESTALE; 1222 goto out_err; 1223 } 1224 1225 dput(upperdentry); 1226 kfree(oip->redirect); 1227 goto out; 1228 } 1229 1230 /* Recalculate nlink for non-dir due to indexing */ 1231 if (!is_dir) 1232 nlink = ovl_get_nlink(ofs, lowerdentry, upperdentry, 1233 nlink); 1234 set_nlink(inode, nlink); 1235 ino = key->i_ino; 1236 } else { 1237 /* Lower hardlink that will be broken on copy up */ 1238 inode = new_inode(sb); 1239 if (!inode) { 1240 err = -ENOMEM; 1241 goto out_err; 1242 } 1243 ino = realinode->i_ino; 1244 fsid = lowerpath->layer->fsid; 1245 } 1246 ovl_fill_inode(inode, realinode->i_mode, realinode->i_rdev); 1247 ovl_inode_init(inode, oip, ino, fsid); 1248 1249 if (upperdentry && ovl_is_impuredir(sb, upperdentry)) 1250 ovl_set_flag(OVL_IMPURE, inode); 1251 1252 if (oip->index) 1253 ovl_set_flag(OVL_INDEX, inode); 1254 1255 OVL_I(inode)->redirect = oip->redirect; 1256 1257 if (bylower) 1258 ovl_set_flag(OVL_CONST_INO, inode); 1259 1260 /* Check for non-merge dir that may have whiteouts */ 1261 if (is_dir) { 1262 if (((upperdentry && lowerdentry) || oip->numlower > 1) || 1263 ovl_path_check_origin_xattr(ofs, &realpath)) { 1264 ovl_set_flag(OVL_WHITEOUTS, inode); 1265 } 1266 } 1267 1268 /* Check for immutable/append-only inode flags in xattr */ 1269 if (upperdentry) 1270 ovl_check_protattr(inode, upperdentry); 1271 1272 if (inode->i_state & I_NEW) 1273 unlock_new_inode(inode); 1274 out: 1275 return inode; 1276 1277 out_err: 1278 pr_warn_ratelimited("failed to get inode (%i)\n", err); 1279 inode = ERR_PTR(err); 1280 goto out; 1281 } 1282