1 // SPDX-License-Identifier: GPL-2.0-only 2 3 #include <linux/fs.h> 4 #include <linux/module.h> 5 #include <linux/namei.h> 6 #include <linux/fs_context.h> 7 #include <linux/fs_parser.h> 8 #include <linux/posix_acl_xattr.h> 9 #include <linux/seq_file.h> 10 #include <linux/xattr.h> 11 #include "overlayfs.h" 12 #include "params.h" 13 14 static bool ovl_redirect_dir_def = IS_ENABLED(CONFIG_OVERLAY_FS_REDIRECT_DIR); 15 module_param_named(redirect_dir, ovl_redirect_dir_def, bool, 0644); 16 MODULE_PARM_DESC(redirect_dir, 17 "Default to on or off for the redirect_dir feature"); 18 19 static bool ovl_redirect_always_follow = 20 IS_ENABLED(CONFIG_OVERLAY_FS_REDIRECT_ALWAYS_FOLLOW); 21 module_param_named(redirect_always_follow, ovl_redirect_always_follow, 22 bool, 0644); 23 MODULE_PARM_DESC(redirect_always_follow, 24 "Follow redirects even if redirect_dir feature is turned off"); 25 26 static bool ovl_xino_auto_def = IS_ENABLED(CONFIG_OVERLAY_FS_XINO_AUTO); 27 module_param_named(xino_auto, ovl_xino_auto_def, bool, 0644); 28 MODULE_PARM_DESC(xino_auto, 29 "Auto enable xino feature"); 30 31 static bool ovl_index_def = IS_ENABLED(CONFIG_OVERLAY_FS_INDEX); 32 module_param_named(index, ovl_index_def, bool, 0644); 33 MODULE_PARM_DESC(index, 34 "Default to on or off for the inodes index feature"); 35 36 static bool ovl_nfs_export_def = IS_ENABLED(CONFIG_OVERLAY_FS_NFS_EXPORT); 37 module_param_named(nfs_export, ovl_nfs_export_def, bool, 0644); 38 MODULE_PARM_DESC(nfs_export, 39 "Default to on or off for the NFS export feature"); 40 41 static bool ovl_metacopy_def = IS_ENABLED(CONFIG_OVERLAY_FS_METACOPY); 42 module_param_named(metacopy, ovl_metacopy_def, bool, 0644); 43 MODULE_PARM_DESC(metacopy, 44 "Default to on or off for the metadata only copy up feature"); 45 46 enum ovl_opt { 47 Opt_lowerdir, 48 Opt_lowerdir_add, 49 Opt_datadir_add, 50 Opt_upperdir, 51 Opt_workdir, 52 Opt_default_permissions, 53 Opt_redirect_dir, 54 Opt_index, 55 Opt_uuid, 56 Opt_nfs_export, 57 Opt_userxattr, 58 Opt_xino, 59 Opt_metacopy, 60 Opt_verity, 61 Opt_volatile, 62 }; 63 64 static const struct constant_table ovl_parameter_bool[] = { 65 { "on", true }, 66 { "off", false }, 67 {} 68 }; 69 70 static const struct constant_table ovl_parameter_uuid[] = { 71 { "off", OVL_UUID_OFF }, 72 { "null", OVL_UUID_NULL }, 73 { "auto", OVL_UUID_AUTO }, 74 { "on", OVL_UUID_ON }, 75 {} 76 }; 77 78 static const char *ovl_uuid_mode(struct ovl_config *config) 79 { 80 return ovl_parameter_uuid[config->uuid].name; 81 } 82 83 static int ovl_uuid_def(void) 84 { 85 return OVL_UUID_AUTO; 86 } 87 88 static const struct constant_table ovl_parameter_xino[] = { 89 { "off", OVL_XINO_OFF }, 90 { "auto", OVL_XINO_AUTO }, 91 { "on", OVL_XINO_ON }, 92 {} 93 }; 94 95 const char *ovl_xino_mode(struct ovl_config *config) 96 { 97 return ovl_parameter_xino[config->xino].name; 98 } 99 100 static int ovl_xino_def(void) 101 { 102 return ovl_xino_auto_def ? OVL_XINO_AUTO : OVL_XINO_OFF; 103 } 104 105 const struct constant_table ovl_parameter_redirect_dir[] = { 106 { "off", OVL_REDIRECT_OFF }, 107 { "follow", OVL_REDIRECT_FOLLOW }, 108 { "nofollow", OVL_REDIRECT_NOFOLLOW }, 109 { "on", OVL_REDIRECT_ON }, 110 {} 111 }; 112 113 static const char *ovl_redirect_mode(struct ovl_config *config) 114 { 115 return ovl_parameter_redirect_dir[config->redirect_mode].name; 116 } 117 118 static int ovl_redirect_mode_def(void) 119 { 120 return ovl_redirect_dir_def ? OVL_REDIRECT_ON : 121 ovl_redirect_always_follow ? OVL_REDIRECT_FOLLOW : 122 OVL_REDIRECT_NOFOLLOW; 123 } 124 125 static const struct constant_table ovl_parameter_verity[] = { 126 { "off", OVL_VERITY_OFF }, 127 { "on", OVL_VERITY_ON }, 128 { "require", OVL_VERITY_REQUIRE }, 129 {} 130 }; 131 132 static const char *ovl_verity_mode(struct ovl_config *config) 133 { 134 return ovl_parameter_verity[config->verity_mode].name; 135 } 136 137 static int ovl_verity_mode_def(void) 138 { 139 return OVL_VERITY_OFF; 140 } 141 142 const struct fs_parameter_spec ovl_parameter_spec[] = { 143 fsparam_string_empty("lowerdir", Opt_lowerdir), 144 fsparam_string("lowerdir+", Opt_lowerdir_add), 145 fsparam_string("datadir+", Opt_datadir_add), 146 fsparam_string("upperdir", Opt_upperdir), 147 fsparam_string("workdir", Opt_workdir), 148 fsparam_flag("default_permissions", Opt_default_permissions), 149 fsparam_enum("redirect_dir", Opt_redirect_dir, ovl_parameter_redirect_dir), 150 fsparam_enum("index", Opt_index, ovl_parameter_bool), 151 fsparam_enum("uuid", Opt_uuid, ovl_parameter_uuid), 152 fsparam_enum("nfs_export", Opt_nfs_export, ovl_parameter_bool), 153 fsparam_flag("userxattr", Opt_userxattr), 154 fsparam_enum("xino", Opt_xino, ovl_parameter_xino), 155 fsparam_enum("metacopy", Opt_metacopy, ovl_parameter_bool), 156 fsparam_enum("verity", Opt_verity, ovl_parameter_verity), 157 fsparam_flag("volatile", Opt_volatile), 158 {} 159 }; 160 161 static char *ovl_next_opt(char **s) 162 { 163 char *sbegin = *s; 164 char *p; 165 166 if (sbegin == NULL) 167 return NULL; 168 169 for (p = sbegin; *p; p++) { 170 if (*p == '\\') { 171 p++; 172 if (!*p) 173 break; 174 } else if (*p == ',') { 175 *p = '\0'; 176 *s = p + 1; 177 return sbegin; 178 } 179 } 180 *s = NULL; 181 return sbegin; 182 } 183 184 static int ovl_parse_monolithic(struct fs_context *fc, void *data) 185 { 186 return vfs_parse_monolithic_sep(fc, data, ovl_next_opt); 187 } 188 189 static ssize_t ovl_parse_param_split_lowerdirs(char *str) 190 { 191 ssize_t nr_layers = 1, nr_colons = 0; 192 char *s, *d; 193 194 for (s = d = str;; s++, d++) { 195 if (*s == '\\') { 196 /* keep esc chars in split lowerdir */ 197 *d++ = *s++; 198 } else if (*s == ':') { 199 bool next_colon = (*(s + 1) == ':'); 200 201 nr_colons++; 202 if (nr_colons == 2 && next_colon) { 203 pr_err("only single ':' or double '::' sequences of unescaped colons in lowerdir mount option allowed.\n"); 204 return -EINVAL; 205 } 206 /* count layers, not colons */ 207 if (!next_colon) 208 nr_layers++; 209 210 *d = '\0'; 211 continue; 212 } 213 214 *d = *s; 215 if (!*s) { 216 /* trailing colons */ 217 if (nr_colons) { 218 pr_err("unescaped trailing colons in lowerdir mount option.\n"); 219 return -EINVAL; 220 } 221 break; 222 } 223 nr_colons = 0; 224 } 225 226 return nr_layers; 227 } 228 229 static int ovl_mount_dir_noesc(const char *name, struct path *path) 230 { 231 int err = -EINVAL; 232 233 if (!*name) { 234 pr_err("empty lowerdir\n"); 235 goto out; 236 } 237 err = kern_path(name, LOOKUP_FOLLOW, path); 238 if (err) { 239 pr_err("failed to resolve '%s': %i\n", name, err); 240 goto out; 241 } 242 return 0; 243 244 out: 245 return err; 246 } 247 248 static void ovl_unescape(char *s) 249 { 250 char *d = s; 251 252 for (;; s++, d++) { 253 if (*s == '\\') 254 s++; 255 *d = *s; 256 if (!*s) 257 break; 258 } 259 } 260 261 static int ovl_mount_dir(const char *name, struct path *path) 262 { 263 int err = -ENOMEM; 264 char *tmp = kstrdup(name, GFP_KERNEL); 265 266 if (tmp) { 267 ovl_unescape(tmp); 268 err = ovl_mount_dir_noesc(tmp, path); 269 kfree(tmp); 270 } 271 return err; 272 } 273 274 static int ovl_mount_dir_check(struct fs_context *fc, const struct path *path, 275 enum ovl_opt layer, const char *name, bool upper) 276 { 277 struct ovl_fs_context *ctx = fc->fs_private; 278 279 if (!d_is_dir(path->dentry)) 280 return invalfc(fc, "%s is not a directory", name); 281 282 /* 283 * Root dentries of case-insensitive capable filesystems might 284 * not have the dentry operations set, but still be incompatible 285 * with overlayfs. Check explicitly to prevent post-mount 286 * failures. 287 */ 288 if (sb_has_encoding(path->mnt->mnt_sb)) 289 return invalfc(fc, "case-insensitive capable filesystem on %s not supported", name); 290 291 if (ovl_dentry_weird(path->dentry)) 292 return invalfc(fc, "filesystem on %s not supported", name); 293 294 /* 295 * Check whether upper path is read-only here to report failures 296 * early. Don't forget to recheck when the superblock is created 297 * as the mount attributes could change. 298 */ 299 if (upper) { 300 if (path->dentry->d_flags & DCACHE_OP_REAL) 301 return invalfc(fc, "filesystem on %s not supported as upperdir", name); 302 if (__mnt_is_readonly(path->mnt)) 303 return invalfc(fc, "filesystem on %s is read-only", name); 304 } else { 305 if (ctx->lowerdir_all && layer != Opt_lowerdir) 306 return invalfc(fc, "lowerdir+ and datadir+ cannot follow lowerdir"); 307 if (ctx->nr_data && layer == Opt_lowerdir_add) 308 return invalfc(fc, "regular lower layers cannot follow data layers"); 309 if (ctx->nr == OVL_MAX_STACK) 310 return invalfc(fc, "too many lower directories, limit is %d", 311 OVL_MAX_STACK); 312 } 313 return 0; 314 } 315 316 static int ovl_ctx_realloc_lower(struct fs_context *fc) 317 { 318 struct ovl_fs_context *ctx = fc->fs_private; 319 struct ovl_fs_context_layer *l; 320 size_t nr; 321 322 if (ctx->nr < ctx->capacity) 323 return 0; 324 325 nr = min_t(size_t, max(4096 / sizeof(*l), ctx->capacity * 2), 326 OVL_MAX_STACK); 327 l = krealloc_array(ctx->lower, nr, sizeof(*l), GFP_KERNEL_ACCOUNT); 328 if (!l) 329 return -ENOMEM; 330 331 ctx->lower = l; 332 ctx->capacity = nr; 333 return 0; 334 } 335 336 static void ovl_add_layer(struct fs_context *fc, enum ovl_opt layer, 337 struct path *path, char **pname) 338 { 339 struct ovl_fs *ofs = fc->s_fs_info; 340 struct ovl_config *config = &ofs->config; 341 struct ovl_fs_context *ctx = fc->fs_private; 342 struct ovl_fs_context_layer *l; 343 344 switch (layer) { 345 case Opt_workdir: 346 swap(config->workdir, *pname); 347 swap(ctx->work, *path); 348 break; 349 case Opt_upperdir: 350 swap(config->upperdir, *pname); 351 swap(ctx->upper, *path); 352 break; 353 case Opt_datadir_add: 354 ctx->nr_data++; 355 fallthrough; 356 case Opt_lowerdir_add: 357 WARN_ON(ctx->nr >= ctx->capacity); 358 l = &ctx->lower[ctx->nr++]; 359 memset(l, 0, sizeof(*l)); 360 swap(l->name, *pname); 361 swap(l->path, *path); 362 break; 363 default: 364 WARN_ON(1); 365 } 366 } 367 368 static int ovl_parse_layer(struct fs_context *fc, struct fs_parameter *param, 369 enum ovl_opt layer) 370 { 371 char *name = kstrdup(param->string, GFP_KERNEL); 372 bool upper = (layer == Opt_upperdir || layer == Opt_workdir); 373 struct path path; 374 int err; 375 376 if (!name) 377 return -ENOMEM; 378 379 if (upper) 380 err = ovl_mount_dir(name, &path); 381 else 382 err = ovl_mount_dir_noesc(name, &path); 383 if (err) 384 goto out_free; 385 386 err = ovl_mount_dir_check(fc, &path, layer, name, upper); 387 if (err) 388 goto out_put; 389 390 if (!upper) { 391 err = ovl_ctx_realloc_lower(fc); 392 if (err) 393 goto out_put; 394 } 395 396 /* Store the user provided path string in ctx to show in mountinfo */ 397 ovl_add_layer(fc, layer, &path, &name); 398 399 out_put: 400 path_put(&path); 401 out_free: 402 kfree(name); 403 return err; 404 } 405 406 static void ovl_reset_lowerdirs(struct ovl_fs_context *ctx) 407 { 408 struct ovl_fs_context_layer *l = ctx->lower; 409 410 // Reset old user provided lowerdir string 411 kfree(ctx->lowerdir_all); 412 ctx->lowerdir_all = NULL; 413 414 for (size_t nr = 0; nr < ctx->nr; nr++, l++) { 415 path_put(&l->path); 416 kfree(l->name); 417 l->name = NULL; 418 } 419 ctx->nr = 0; 420 ctx->nr_data = 0; 421 } 422 423 /* 424 * Parse lowerdir= mount option: 425 * 426 * e.g.: lowerdir=/lower1:/lower2:/lower3::/data1::/data2 427 * Set "/lower1", "/lower2", and "/lower3" as lower layers and 428 * "/data1" and "/data2" as data lower layers. Any existing lower 429 * layers are replaced. 430 */ 431 static int ovl_parse_param_lowerdir(const char *name, struct fs_context *fc) 432 { 433 int err; 434 struct ovl_fs_context *ctx = fc->fs_private; 435 struct ovl_fs_context_layer *l; 436 char *dup = NULL, *iter; 437 ssize_t nr_lower, nr; 438 bool data_layer = false; 439 440 /* 441 * Ensure we're backwards compatible with mount(2) 442 * by allowing relative paths. 443 */ 444 445 /* drop all existing lower layers */ 446 ovl_reset_lowerdirs(ctx); 447 448 if (!*name) 449 return 0; 450 451 if (*name == ':') { 452 pr_err("cannot append lower layer"); 453 return -EINVAL; 454 } 455 456 // Store user provided lowerdir string to show in mount options 457 ctx->lowerdir_all = kstrdup(name, GFP_KERNEL); 458 if (!ctx->lowerdir_all) 459 return -ENOMEM; 460 461 dup = kstrdup(name, GFP_KERNEL); 462 if (!dup) 463 return -ENOMEM; 464 465 err = -EINVAL; 466 nr_lower = ovl_parse_param_split_lowerdirs(dup); 467 if (nr_lower < 0) 468 goto out_err; 469 470 if (nr_lower > OVL_MAX_STACK) { 471 pr_err("too many lower directories, limit is %d\n", OVL_MAX_STACK); 472 goto out_err; 473 } 474 475 if (nr_lower > ctx->capacity) { 476 err = -ENOMEM; 477 l = krealloc_array(ctx->lower, nr_lower, sizeof(*ctx->lower), 478 GFP_KERNEL_ACCOUNT); 479 if (!l) 480 goto out_err; 481 482 ctx->lower = l; 483 ctx->capacity = nr_lower; 484 } 485 486 iter = dup; 487 l = ctx->lower; 488 for (nr = 0; nr < nr_lower; nr++, l++) { 489 ctx->nr++; 490 memset(l, 0, sizeof(*l)); 491 492 err = ovl_mount_dir(iter, &l->path); 493 if (err) 494 goto out_put; 495 496 err = ovl_mount_dir_check(fc, &l->path, Opt_lowerdir, iter, false); 497 if (err) 498 goto out_put; 499 500 err = -ENOMEM; 501 l->name = kstrdup(iter, GFP_KERNEL_ACCOUNT); 502 if (!l->name) 503 goto out_put; 504 505 if (data_layer) 506 ctx->nr_data++; 507 508 /* Calling strchr() again would overrun. */ 509 if (ctx->nr == nr_lower) 510 break; 511 512 err = -EINVAL; 513 iter = strchr(iter, '\0') + 1; 514 if (*iter) { 515 /* 516 * This is a regular layer so we require that 517 * there are no data layers. 518 */ 519 if (ctx->nr_data > 0) { 520 pr_err("regular lower layers cannot follow data lower layers"); 521 goto out_put; 522 } 523 524 data_layer = false; 525 continue; 526 } 527 528 /* This is a data lower layer. */ 529 data_layer = true; 530 iter++; 531 } 532 kfree(dup); 533 return 0; 534 535 out_put: 536 ovl_reset_lowerdirs(ctx); 537 538 out_err: 539 kfree(dup); 540 541 /* Intentionally don't realloc to a smaller size. */ 542 return err; 543 } 544 545 static int ovl_parse_param(struct fs_context *fc, struct fs_parameter *param) 546 { 547 int err = 0; 548 struct fs_parse_result result; 549 struct ovl_fs *ofs = fc->s_fs_info; 550 struct ovl_config *config = &ofs->config; 551 struct ovl_fs_context *ctx = fc->fs_private; 552 int opt; 553 554 if (fc->purpose == FS_CONTEXT_FOR_RECONFIGURE) { 555 /* 556 * On remount overlayfs has always ignored all mount 557 * options no matter if malformed or not so for 558 * backwards compatibility we do the same here. 559 */ 560 if (fc->oldapi) 561 return 0; 562 563 /* 564 * Give us the freedom to allow changing mount options 565 * with the new mount api in the future. So instead of 566 * silently ignoring everything we report a proper 567 * error. This is only visible for users of the new 568 * mount api. 569 */ 570 return invalfc(fc, "No changes allowed in reconfigure"); 571 } 572 573 opt = fs_parse(fc, ovl_parameter_spec, param, &result); 574 if (opt < 0) 575 return opt; 576 577 switch (opt) { 578 case Opt_lowerdir: 579 err = ovl_parse_param_lowerdir(param->string, fc); 580 break; 581 case Opt_lowerdir_add: 582 case Opt_datadir_add: 583 case Opt_upperdir: 584 case Opt_workdir: 585 err = ovl_parse_layer(fc, param, opt); 586 break; 587 case Opt_default_permissions: 588 config->default_permissions = true; 589 break; 590 case Opt_redirect_dir: 591 config->redirect_mode = result.uint_32; 592 if (config->redirect_mode == OVL_REDIRECT_OFF) { 593 config->redirect_mode = ovl_redirect_always_follow ? 594 OVL_REDIRECT_FOLLOW : 595 OVL_REDIRECT_NOFOLLOW; 596 } 597 ctx->set.redirect = true; 598 break; 599 case Opt_index: 600 config->index = result.uint_32; 601 ctx->set.index = true; 602 break; 603 case Opt_uuid: 604 config->uuid = result.uint_32; 605 break; 606 case Opt_nfs_export: 607 config->nfs_export = result.uint_32; 608 ctx->set.nfs_export = true; 609 break; 610 case Opt_xino: 611 config->xino = result.uint_32; 612 break; 613 case Opt_metacopy: 614 config->metacopy = result.uint_32; 615 ctx->set.metacopy = true; 616 break; 617 case Opt_verity: 618 config->verity_mode = result.uint_32; 619 break; 620 case Opt_volatile: 621 config->ovl_volatile = true; 622 break; 623 case Opt_userxattr: 624 config->userxattr = true; 625 break; 626 default: 627 pr_err("unrecognized mount option \"%s\" or missing value\n", 628 param->key); 629 return -EINVAL; 630 } 631 632 return err; 633 } 634 635 static int ovl_get_tree(struct fs_context *fc) 636 { 637 return get_tree_nodev(fc, ovl_fill_super); 638 } 639 640 static inline void ovl_fs_context_free(struct ovl_fs_context *ctx) 641 { 642 ovl_reset_lowerdirs(ctx); 643 path_put(&ctx->upper); 644 path_put(&ctx->work); 645 kfree(ctx->lower); 646 kfree(ctx); 647 } 648 649 static void ovl_free(struct fs_context *fc) 650 { 651 struct ovl_fs *ofs = fc->s_fs_info; 652 struct ovl_fs_context *ctx = fc->fs_private; 653 654 /* 655 * ofs is stored in the fs_context when it is initialized. 656 * ofs is transferred to the superblock on a successful mount, 657 * but if an error occurs before the transfer we have to free 658 * it here. 659 */ 660 if (ofs) 661 ovl_free_fs(ofs); 662 663 if (ctx) 664 ovl_fs_context_free(ctx); 665 } 666 667 static int ovl_reconfigure(struct fs_context *fc) 668 { 669 struct super_block *sb = fc->root->d_sb; 670 struct ovl_fs *ofs = OVL_FS(sb); 671 struct super_block *upper_sb; 672 int ret = 0; 673 674 if (!(fc->sb_flags & SB_RDONLY) && ovl_force_readonly(ofs)) 675 return -EROFS; 676 677 if (fc->sb_flags & SB_RDONLY && !sb_rdonly(sb)) { 678 upper_sb = ovl_upper_mnt(ofs)->mnt_sb; 679 if (ovl_should_sync(ofs)) { 680 down_read(&upper_sb->s_umount); 681 ret = sync_filesystem(upper_sb); 682 up_read(&upper_sb->s_umount); 683 } 684 } 685 686 return ret; 687 } 688 689 static const struct fs_context_operations ovl_context_ops = { 690 .parse_monolithic = ovl_parse_monolithic, 691 .parse_param = ovl_parse_param, 692 .get_tree = ovl_get_tree, 693 .reconfigure = ovl_reconfigure, 694 .free = ovl_free, 695 }; 696 697 /* 698 * This is called during fsopen() and will record the user namespace of 699 * the caller in fc->user_ns since we've raised FS_USERNS_MOUNT. We'll 700 * need it when we actually create the superblock to verify that the 701 * process creating the superblock is in the same user namespace as 702 * process that called fsopen(). 703 */ 704 int ovl_init_fs_context(struct fs_context *fc) 705 { 706 struct ovl_fs_context *ctx; 707 struct ovl_fs *ofs; 708 709 ctx = kzalloc(sizeof(*ctx), GFP_KERNEL_ACCOUNT); 710 if (!ctx) 711 return -ENOMEM; 712 713 /* 714 * By default we allocate for three lower layers. It's likely 715 * that it'll cover most users. 716 */ 717 ctx->lower = kmalloc_array(3, sizeof(*ctx->lower), GFP_KERNEL_ACCOUNT); 718 if (!ctx->lower) 719 goto out_err; 720 ctx->capacity = 3; 721 722 ofs = kzalloc(sizeof(struct ovl_fs), GFP_KERNEL); 723 if (!ofs) 724 goto out_err; 725 726 ofs->config.redirect_mode = ovl_redirect_mode_def(); 727 ofs->config.index = ovl_index_def; 728 ofs->config.uuid = ovl_uuid_def(); 729 ofs->config.nfs_export = ovl_nfs_export_def; 730 ofs->config.xino = ovl_xino_def(); 731 ofs->config.metacopy = ovl_metacopy_def; 732 733 fc->s_fs_info = ofs; 734 fc->fs_private = ctx; 735 fc->ops = &ovl_context_ops; 736 return 0; 737 738 out_err: 739 ovl_fs_context_free(ctx); 740 return -ENOMEM; 741 742 } 743 744 void ovl_free_fs(struct ovl_fs *ofs) 745 { 746 struct vfsmount **mounts; 747 unsigned i; 748 749 iput(ofs->workbasedir_trap); 750 iput(ofs->workdir_trap); 751 dput(ofs->whiteout); 752 dput(ofs->workdir); 753 if (ofs->workdir_locked) 754 ovl_inuse_unlock(ofs->workbasedir); 755 dput(ofs->workbasedir); 756 if (ofs->upperdir_locked) 757 ovl_inuse_unlock(ovl_upper_mnt(ofs)->mnt_root); 758 759 /* Reuse ofs->config.lowerdirs as a vfsmount array before freeing it */ 760 mounts = (struct vfsmount **) ofs->config.lowerdirs; 761 for (i = 0; i < ofs->numlayer; i++) { 762 iput(ofs->layers[i].trap); 763 kfree(ofs->config.lowerdirs[i]); 764 mounts[i] = ofs->layers[i].mnt; 765 } 766 kern_unmount_array(mounts, ofs->numlayer); 767 kfree(ofs->layers); 768 for (i = 0; i < ofs->numfs; i++) 769 free_anon_bdev(ofs->fs[i].pseudo_dev); 770 kfree(ofs->fs); 771 772 kfree(ofs->config.lowerdirs); 773 kfree(ofs->config.upperdir); 774 kfree(ofs->config.workdir); 775 if (ofs->creator_cred) 776 put_cred(ofs->creator_cred); 777 kfree(ofs); 778 } 779 780 int ovl_fs_params_verify(const struct ovl_fs_context *ctx, 781 struct ovl_config *config) 782 { 783 struct ovl_opt_set set = ctx->set; 784 785 if (ctx->nr_data > 0 && !config->metacopy) { 786 pr_err("lower data-only dirs require metacopy support.\n"); 787 return -EINVAL; 788 } 789 790 /* Workdir/index are useless in non-upper mount */ 791 if (!config->upperdir) { 792 if (config->workdir) { 793 pr_info("option \"workdir=%s\" is useless in a non-upper mount, ignore\n", 794 config->workdir); 795 kfree(config->workdir); 796 config->workdir = NULL; 797 } 798 if (config->index && set.index) { 799 pr_info("option \"index=on\" is useless in a non-upper mount, ignore\n"); 800 set.index = false; 801 } 802 config->index = false; 803 } 804 805 if (!config->upperdir && config->ovl_volatile) { 806 pr_info("option \"volatile\" is meaningless in a non-upper mount, ignoring it.\n"); 807 config->ovl_volatile = false; 808 } 809 810 if (!config->upperdir && config->uuid == OVL_UUID_ON) { 811 pr_info("option \"uuid=on\" requires an upper fs, falling back to uuid=null.\n"); 812 config->uuid = OVL_UUID_NULL; 813 } 814 815 /* Resolve verity -> metacopy dependency */ 816 if (config->verity_mode && !config->metacopy) { 817 /* Don't allow explicit specified conflicting combinations */ 818 if (set.metacopy) { 819 pr_err("conflicting options: metacopy=off,verity=%s\n", 820 ovl_verity_mode(config)); 821 return -EINVAL; 822 } 823 /* Otherwise automatically enable metacopy. */ 824 config->metacopy = true; 825 } 826 827 /* 828 * This is to make the logic below simpler. It doesn't make any other 829 * difference, since redirect_dir=on is only used for upper. 830 */ 831 if (!config->upperdir && config->redirect_mode == OVL_REDIRECT_FOLLOW) 832 config->redirect_mode = OVL_REDIRECT_ON; 833 834 /* Resolve verity -> metacopy -> redirect_dir dependency */ 835 if (config->metacopy && config->redirect_mode != OVL_REDIRECT_ON) { 836 if (set.metacopy && set.redirect) { 837 pr_err("conflicting options: metacopy=on,redirect_dir=%s\n", 838 ovl_redirect_mode(config)); 839 return -EINVAL; 840 } 841 if (config->verity_mode && set.redirect) { 842 pr_err("conflicting options: verity=%s,redirect_dir=%s\n", 843 ovl_verity_mode(config), ovl_redirect_mode(config)); 844 return -EINVAL; 845 } 846 if (set.redirect) { 847 /* 848 * There was an explicit redirect_dir=... that resulted 849 * in this conflict. 850 */ 851 pr_info("disabling metacopy due to redirect_dir=%s\n", 852 ovl_redirect_mode(config)); 853 config->metacopy = false; 854 } else { 855 /* Automatically enable redirect otherwise. */ 856 config->redirect_mode = OVL_REDIRECT_ON; 857 } 858 } 859 860 /* Resolve nfs_export -> index dependency */ 861 if (config->nfs_export && !config->index) { 862 if (!config->upperdir && 863 config->redirect_mode != OVL_REDIRECT_NOFOLLOW) { 864 pr_info("NFS export requires \"redirect_dir=nofollow\" on non-upper mount, falling back to nfs_export=off.\n"); 865 config->nfs_export = false; 866 } else if (set.nfs_export && set.index) { 867 pr_err("conflicting options: nfs_export=on,index=off\n"); 868 return -EINVAL; 869 } else if (set.index) { 870 /* 871 * There was an explicit index=off that resulted 872 * in this conflict. 873 */ 874 pr_info("disabling nfs_export due to index=off\n"); 875 config->nfs_export = false; 876 } else { 877 /* Automatically enable index otherwise. */ 878 config->index = true; 879 } 880 } 881 882 /* Resolve nfs_export -> !metacopy && !verity dependency */ 883 if (config->nfs_export && config->metacopy) { 884 if (set.nfs_export && set.metacopy) { 885 pr_err("conflicting options: nfs_export=on,metacopy=on\n"); 886 return -EINVAL; 887 } 888 if (set.metacopy) { 889 /* 890 * There was an explicit metacopy=on that resulted 891 * in this conflict. 892 */ 893 pr_info("disabling nfs_export due to metacopy=on\n"); 894 config->nfs_export = false; 895 } else if (config->verity_mode) { 896 /* 897 * There was an explicit verity=.. that resulted 898 * in this conflict. 899 */ 900 pr_info("disabling nfs_export due to verity=%s\n", 901 ovl_verity_mode(config)); 902 config->nfs_export = false; 903 } else { 904 /* 905 * There was an explicit nfs_export=on that resulted 906 * in this conflict. 907 */ 908 pr_info("disabling metacopy due to nfs_export=on\n"); 909 config->metacopy = false; 910 } 911 } 912 913 914 /* Resolve userxattr -> !redirect && !metacopy && !verity dependency */ 915 if (config->userxattr) { 916 if (set.redirect && 917 config->redirect_mode != OVL_REDIRECT_NOFOLLOW) { 918 pr_err("conflicting options: userxattr,redirect_dir=%s\n", 919 ovl_redirect_mode(config)); 920 return -EINVAL; 921 } 922 if (config->metacopy && set.metacopy) { 923 pr_err("conflicting options: userxattr,metacopy=on\n"); 924 return -EINVAL; 925 } 926 if (config->verity_mode) { 927 pr_err("conflicting options: userxattr,verity=%s\n", 928 ovl_verity_mode(config)); 929 return -EINVAL; 930 } 931 /* 932 * Silently disable default setting of redirect and metacopy. 933 * This shall be the default in the future as well: these 934 * options must be explicitly enabled if used together with 935 * userxattr. 936 */ 937 config->redirect_mode = OVL_REDIRECT_NOFOLLOW; 938 config->metacopy = false; 939 } 940 941 return 0; 942 } 943 944 /** 945 * ovl_show_options 946 * @m: the seq_file handle 947 * @dentry: The dentry to query 948 * 949 * Prints the mount options for a given superblock. 950 * Returns zero; does not fail. 951 */ 952 int ovl_show_options(struct seq_file *m, struct dentry *dentry) 953 { 954 struct super_block *sb = dentry->d_sb; 955 struct ovl_fs *ofs = OVL_FS(sb); 956 size_t nr, nr_merged_lower, nr_lower = 0; 957 char **lowerdirs = ofs->config.lowerdirs; 958 959 /* 960 * lowerdirs[0] holds the colon separated list that user provided 961 * with lowerdir mount option. 962 * lowerdirs[1..numlayer] hold the lowerdir paths that were added 963 * using the lowerdir+ and datadir+ mount options. 964 * For now, we do not allow mixing the legacy lowerdir mount option 965 * with the new lowerdir+ and datadir+ mount options. 966 */ 967 if (lowerdirs[0]) { 968 seq_show_option(m, "lowerdir", lowerdirs[0]); 969 } else { 970 nr_lower = ofs->numlayer; 971 nr_merged_lower = nr_lower - ofs->numdatalayer; 972 } 973 for (nr = 1; nr < nr_lower; nr++) { 974 if (nr < nr_merged_lower) 975 seq_show_option(m, "lowerdir+", lowerdirs[nr]); 976 else 977 seq_show_option(m, "datadir+", lowerdirs[nr]); 978 } 979 if (ofs->config.upperdir) { 980 seq_show_option(m, "upperdir", ofs->config.upperdir); 981 seq_show_option(m, "workdir", ofs->config.workdir); 982 } 983 if (ofs->config.default_permissions) 984 seq_puts(m, ",default_permissions"); 985 if (ofs->config.redirect_mode != ovl_redirect_mode_def()) 986 seq_printf(m, ",redirect_dir=%s", 987 ovl_redirect_mode(&ofs->config)); 988 if (ofs->config.index != ovl_index_def) 989 seq_printf(m, ",index=%s", ofs->config.index ? "on" : "off"); 990 if (ofs->config.uuid != ovl_uuid_def()) 991 seq_printf(m, ",uuid=%s", ovl_uuid_mode(&ofs->config)); 992 if (ofs->config.nfs_export != ovl_nfs_export_def) 993 seq_printf(m, ",nfs_export=%s", ofs->config.nfs_export ? 994 "on" : "off"); 995 if (ofs->config.xino != ovl_xino_def() && !ovl_same_fs(ofs)) 996 seq_printf(m, ",xino=%s", ovl_xino_mode(&ofs->config)); 997 if (ofs->config.metacopy != ovl_metacopy_def) 998 seq_printf(m, ",metacopy=%s", 999 ofs->config.metacopy ? "on" : "off"); 1000 if (ofs->config.ovl_volatile) 1001 seq_puts(m, ",volatile"); 1002 if (ofs->config.userxattr) 1003 seq_puts(m, ",userxattr"); 1004 if (ofs->config.verity_mode != ovl_verity_mode_def()) 1005 seq_printf(m, ",verity=%s", 1006 ovl_verity_mode(&ofs->config)); 1007 return 0; 1008 } 1009