1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * AppArmor security module 4 * 5 * This file contains AppArmor policy manipulation functions 6 * 7 * Copyright (C) 1998-2008 Novell/SUSE 8 * Copyright 2009-2010 Canonical Ltd. 9 * 10 * AppArmor policy is based around profiles, which contain the rules a 11 * task is confined by. Every task in the system has a profile attached 12 * to it determined either by matching "unconfined" tasks against the 13 * visible set of profiles or by following a profiles attachment rules. 14 * 15 * Each profile exists in a profile namespace which is a container of 16 * visible profiles. Each namespace contains a special "unconfined" profile, 17 * which doesn't enforce any confinement on a task beyond DAC. 18 * 19 * Namespace and profile names can be written together in either 20 * of two syntaxes. 21 * :namespace:profile - used by kernel interfaces for easy detection 22 * namespace://profile - used by policy 23 * 24 * Profile names can not start with : or @ or ^ and may not contain \0 25 * 26 * Reserved profile names 27 * unconfined - special automatically generated unconfined profile 28 * inherit - special name to indicate profile inheritance 29 * null-XXXX-YYYY - special automatically generated learning profiles 30 * 31 * Namespace names may not start with / or @ and may not contain \0 or : 32 * Reserved namespace names 33 * user-XXXX - user defined profiles 34 * 35 * a // in a profile or namespace name indicates a hierarchical name with the 36 * name before the // being the parent and the name after the child. 37 * 38 * Profile and namespace hierarchies serve two different but similar purposes. 39 * The namespace contains the set of visible profiles that are considered 40 * for attachment. The hierarchy of namespaces allows for virtualizing 41 * the namespace so that for example a chroot can have its own set of profiles 42 * which may define some local user namespaces. 43 * The profile hierarchy severs two distinct purposes, 44 * - it allows for sub profiles or hats, which allows an application to run 45 * subprograms under its own profile with different restriction than it 46 * self, and not have it use the system profile. 47 * eg. if a mail program starts an editor, the policy might make the 48 * restrictions tighter on the editor tighter than the mail program, 49 * and definitely different than general editor restrictions 50 * - it allows for binary hierarchy of profiles, so that execution history 51 * is preserved. This feature isn't exploited by AppArmor reference policy 52 * but is allowed. NOTE: this is currently suboptimal because profile 53 * aliasing is not currently implemented so that a profile for each 54 * level must be defined. 55 * eg. /bin/bash///bin/ls as a name would indicate /bin/ls was started 56 * from /bin/bash 57 * 58 * A profile or namespace name that can contain one or more // separators 59 * is referred to as an hname (hierarchical). 60 * eg. /bin/bash//bin/ls 61 * 62 * An fqname is a name that may contain both namespace and profile hnames. 63 * eg. :ns:/bin/bash//bin/ls 64 * 65 * NOTES: 66 * - locking of profile lists is currently fairly coarse. All profile 67 * lists within a namespace use the namespace lock. 68 * FIXME: move profile lists to using rcu_lists 69 */ 70 71 #include <linux/slab.h> 72 #include <linux/spinlock.h> 73 #include <linux/string.h> 74 #include <linux/cred.h> 75 #include <linux/rculist.h> 76 #include <linux/user_namespace.h> 77 78 #include "include/apparmor.h" 79 #include "include/capability.h" 80 #include "include/cred.h" 81 #include "include/file.h" 82 #include "include/ipc.h" 83 #include "include/match.h" 84 #include "include/net.h" 85 #include "include/path.h" 86 #include "include/policy.h" 87 #include "include/policy_ns.h" 88 #include "include/policy_unpack.h" 89 #include "include/resource.h" 90 91 int unprivileged_userns_apparmor_policy = 1; 92 int aa_unprivileged_unconfined_restricted; 93 94 const char *const aa_profile_mode_names[] = { 95 "enforce", 96 "complain", 97 "kill", 98 "unconfined", 99 "user", 100 }; 101 102 void aa_destroy_tags(struct aa_tags_struct *tags) 103 { 104 kfree_sensitive(tags->hdrs.table); 105 kfree_sensitive(tags->sets.table); 106 aa_destroy_str_table(&tags->strs); 107 memset(tags, 0, sizeof(*tags)); 108 } 109 110 static void aa_free_pdb(struct aa_policydb *pdb) 111 { 112 if (pdb) { 113 aa_put_dfa(pdb->dfa); 114 kvfree(pdb->perms); 115 aa_destroy_str_table(&pdb->trans); 116 aa_destroy_tags(&pdb->tags); 117 kfree(pdb); 118 } 119 } 120 121 /** 122 * aa_pdb_free_kref - free aa_policydb by kref (called by aa_put_pdb) 123 * @kref: kref callback for freeing of a dfa (NOT NULL) 124 */ 125 void aa_pdb_free_kref(struct kref *kref) 126 { 127 struct aa_policydb *pdb = container_of(kref, struct aa_policydb, count); 128 129 aa_free_pdb(pdb); 130 } 131 132 133 struct aa_policydb *aa_alloc_pdb(gfp_t gfp) 134 { 135 struct aa_policydb *pdb = kzalloc_obj(struct aa_policydb, gfp); 136 137 if (!pdb) 138 return NULL; 139 140 kref_init(&pdb->count); 141 142 return pdb; 143 } 144 145 146 /** 147 * __add_profile - add a profiles to list and label tree 148 * @list: list to add it to (NOT NULL) 149 * @profile: the profile to add (NOT NULL) 150 * 151 * refcount @profile, should be put by __list_remove_profile 152 * 153 * Requires: namespace lock be held, or list not be shared 154 */ 155 static void __add_profile(struct list_head *list, struct aa_profile *profile) 156 { 157 struct aa_label *l; 158 159 AA_BUG(!list); 160 AA_BUG(!profile); 161 AA_BUG(!profile->ns); 162 AA_BUG(!mutex_is_locked(&profile->ns->lock)); 163 164 list_add_rcu(&profile->base.list, list); 165 /* get list reference */ 166 aa_get_profile(profile); 167 l = aa_label_insert(&profile->ns->labels, &profile->label); 168 AA_BUG(l != &profile->label); 169 aa_put_label(l); 170 } 171 172 /** 173 * __list_remove_profile - remove a profile from the list it is on 174 * @profile: the profile to remove (NOT NULL) 175 * 176 * remove a profile from the list, warning generally removal should 177 * be done with __replace_profile as most profile removals are 178 * replacements to the unconfined profile. 179 * 180 * put @profile list refcount 181 * 182 * Requires: namespace lock be held, or list not have been live 183 */ 184 static void __list_remove_profile(struct aa_profile *profile) 185 { 186 AA_BUG(!profile); 187 AA_BUG(!profile->ns); 188 AA_BUG(!mutex_is_locked(&profile->ns->lock)); 189 190 list_del_rcu(&profile->base.list); 191 aa_put_profile(profile); 192 } 193 194 /** 195 * __remove_profile - remove profile, and children 196 * @profile: profile to be removed (NOT NULL) 197 * 198 * Requires: namespace list lock be held, or list not be shared 199 */ 200 static void __remove_profile(struct aa_profile *profile) 201 { 202 struct aa_profile *curr, *to_remove; 203 204 AA_BUG(!profile); 205 AA_BUG(!profile->ns); 206 AA_BUG(!mutex_is_locked(&profile->ns->lock)); 207 208 /* release any children lists first */ 209 if (!list_empty(&profile->base.profiles)) { 210 curr = list_first_entry(&profile->base.profiles, struct aa_profile, base.list); 211 212 while (curr != profile) { 213 214 while (!list_empty(&curr->base.profiles)) 215 curr = list_first_entry(&curr->base.profiles, 216 struct aa_profile, base.list); 217 218 to_remove = curr; 219 if (!list_is_last(&to_remove->base.list, 220 &aa_deref_parent(curr)->base.profiles)) 221 curr = list_next_entry(to_remove, base.list); 222 else 223 curr = aa_deref_parent(curr); 224 225 /* released by free_profile */ 226 aa_label_remove(&to_remove->label); 227 __aafs_profile_rmdir(to_remove); 228 __list_remove_profile(to_remove); 229 } 230 } 231 232 /* released by free_profile */ 233 aa_label_remove(&profile->label); 234 __aafs_profile_rmdir(profile); 235 __list_remove_profile(profile); 236 /* rawdata is only ever referenced by fs lookup, that is no 237 * longer possible here, so put the reference to it. This will 238 * enable the rawdata to be freed if for some reason the profile 239 * is pinned and going to live for a while. 240 */ 241 aa_put_profile_loaddata(profile->rawdata); 242 profile->rawdata = NULL; 243 } 244 245 /** 246 * __aa_profile_list_release - remove all profiles on the list and put refs 247 * @head: list of profiles (NOT NULL) 248 * 249 * Requires: namespace lock be held 250 */ 251 void __aa_profile_list_release(struct list_head *head) 252 { 253 struct aa_profile *profile, *tmp; 254 list_for_each_entry_safe(profile, tmp, head, base.list) 255 __remove_profile(profile); 256 } 257 258 /** 259 * aa_free_data - free a data blob 260 * @ptr: data to free 261 * @arg: unused 262 */ 263 static void aa_free_data(void *ptr, void *arg) 264 { 265 struct aa_data *data = ptr; 266 267 if (!ptr) 268 return; 269 270 kvfree_sensitive(data->data, data->size); 271 kfree_sensitive(data->key); 272 kfree_sensitive(data); 273 } 274 275 static void free_attachment(struct aa_attachment *attach) 276 { 277 int i; 278 279 if (!attach) 280 return; 281 282 for (i = 0; i < attach->xattr_count; i++) 283 kfree_sensitive(attach->xattrs[i]); 284 kfree_sensitive(attach->xattrs); 285 aa_put_pdb(attach->xmatch); 286 } 287 288 static void free_ruleset(struct aa_ruleset *rules) 289 { 290 int i; 291 292 if (!rules) 293 return; 294 295 aa_put_pdb(rules->file); 296 aa_put_pdb(rules->policy); 297 aa_free_cap_rules(&rules->caps); 298 aa_free_rlimit_rules(&rules->rlimits); 299 300 for (i = 0; i < rules->secmark_count; i++) 301 kfree_sensitive(rules->secmark[i].label); 302 kfree_sensitive(rules->secmark); 303 kfree_sensitive(rules); 304 } 305 306 struct aa_ruleset *aa_alloc_ruleset(gfp_t gfp) 307 { 308 struct aa_ruleset *rules; 309 310 rules = kzalloc_obj(*rules, gfp); 311 312 return rules; 313 } 314 315 /** 316 * aa_free_profile - free a profile 317 * @profile: the profile to free (MAYBE NULL) 318 * 319 * Free a profile, its hats and null_profile. All references to the profile, 320 * its hats and null_profile must have been put. 321 * 322 * If the profile was referenced from a task context, free_profile() will 323 * be called from an rcu callback routine, so we must not sleep here. 324 */ 325 void aa_free_profile(struct aa_profile *profile) 326 { 327 struct rhashtable *rht; 328 329 AA_DEBUG(DEBUG_POLICY, "%s(%p)\n", __func__, profile); 330 331 if (!profile) 332 return; 333 334 /* free children profiles */ 335 aa_policy_destroy(&profile->base); 336 aa_put_profile(rcu_access_pointer(profile->parent)); 337 338 aa_put_ns(profile->ns); 339 kfree_sensitive(profile->rename); 340 kfree_sensitive(profile->disconnected); 341 342 free_attachment(&profile->attach); 343 344 /* 345 * at this point there are no tasks that can have a reference 346 * to rules 347 */ 348 for (int i = 0; i < profile->n_rules; i++) 349 free_ruleset(profile->label.rules[i]); 350 351 kfree_sensitive(profile->dirname); 352 353 if (profile->data) { 354 rht = profile->data; 355 profile->data = NULL; 356 rhashtable_free_and_destroy(rht, aa_free_data, NULL); 357 kfree_sensitive(rht); 358 } 359 360 kfree_sensitive(profile->hash); 361 aa_put_profile_loaddata(profile->rawdata); 362 aa_label_destroy(&profile->label); 363 364 kfree_sensitive(profile); 365 } 366 367 /** 368 * aa_alloc_profile - allocate, initialize and return a new profile 369 * @hname: name of the profile (NOT NULL) 370 * @proxy: proxy to use OR null if to allocate a new one 371 * @gfp: allocation type 372 * 373 * Returns: refcount profile or NULL on failure 374 */ 375 struct aa_profile *aa_alloc_profile(const char *hname, struct aa_proxy *proxy, 376 gfp_t gfp) 377 { 378 struct aa_profile *profile; 379 380 /* freed by free_profile - usually through aa_put_profile 381 * this adds space for a single ruleset in the rules section of the 382 * label 383 */ 384 profile = kzalloc_flex(*profile, label.rules, 1, gfp); 385 if (!profile) 386 return NULL; 387 388 if (!aa_policy_init(&profile->base, NULL, hname, gfp)) 389 goto fail; 390 if (!aa_label_init(&profile->label, 1, gfp)) 391 goto fail; 392 393 /* allocate the first ruleset, but leave it empty */ 394 profile->label.rules[0] = aa_alloc_ruleset(gfp); 395 if (!profile->label.rules[0]) 396 goto fail; 397 profile->n_rules = 1; 398 399 /* update being set needed by fs interface */ 400 if (!proxy) { 401 proxy = aa_alloc_proxy(&profile->label, gfp); 402 if (!proxy) 403 goto fail; 404 } else 405 aa_get_proxy(proxy); 406 profile->label.proxy = proxy; 407 408 profile->label.hname = profile->base.hname; 409 profile->label.flags |= FLAG_PROFILE; 410 profile->label.vec[0] = profile; 411 412 profile->signal = SIGKILL; 413 /* refcount released by caller */ 414 return profile; 415 416 fail: 417 aa_free_profile(profile); 418 419 return NULL; 420 } 421 422 static inline bool ANY_RULE_MEDIATES(struct aa_profile *profile, 423 unsigned char class) 424 { 425 int i; 426 427 for (i = 0; i < profile->n_rules; i++) { 428 if (RULE_MEDIATES(profile->label.rules[i], class)) 429 return true; 430 } 431 return false; 432 } 433 434 /* set of rules that are mediated by unconfined */ 435 static int unconfined_mediates[] = { AA_CLASS_NS, AA_CLASS_IO_URING, 0 }; 436 437 /* must be called after profile rulesets and start information is setup */ 438 void aa_compute_profile_mediates(struct aa_profile *profile) 439 { 440 int c; 441 442 if (profile_unconfined(profile)) { 443 int *pos; 444 445 for (pos = unconfined_mediates; *pos; pos++) { 446 if (ANY_RULE_MEDIATES(profile, *pos)) 447 profile->label.mediates |= ((u64) 1) << AA_CLASS_NS; 448 } 449 return; 450 } 451 for (c = 0; c <= AA_CLASS_LAST; c++) { 452 if (ANY_RULE_MEDIATES(profile, c)) 453 profile->label.mediates |= ((u64) 1) << c; 454 } 455 } 456 457 /* TODO: profile accounting - setup in remove */ 458 459 /** 460 * __strn_find_child - find a profile on @head list using substring of @name 461 * @head: list to search (NOT NULL) 462 * @name: name of profile (NOT NULL) 463 * @len: length of @name substring to match 464 * 465 * Requires: rcu_read_lock be held 466 * 467 * Returns: unrefcounted profile ptr, or NULL if not found 468 */ 469 static struct aa_profile *__strn_find_child(struct list_head *head, 470 const char *name, int len) 471 { 472 return (struct aa_profile *)__policy_strn_find(head, name, len); 473 } 474 475 /** 476 * __find_child - find a profile on @head list with a name matching @name 477 * @head: list to search (NOT NULL) 478 * @name: name of profile (NOT NULL) 479 * 480 * Requires: rcu_read_lock be held 481 * 482 * Returns: unrefcounted profile ptr, or NULL if not found 483 */ 484 static struct aa_profile *__find_child(struct list_head *head, const char *name) 485 { 486 return __strn_find_child(head, name, strlen(name)); 487 } 488 489 /** 490 * aa_find_child - find a profile by @name in @parent 491 * @parent: profile to search (NOT NULL) 492 * @name: profile name to search for (NOT NULL) 493 * 494 * Returns: a refcounted profile or NULL if not found 495 */ 496 struct aa_profile *aa_find_child(struct aa_profile *parent, const char *name) 497 { 498 struct aa_profile *profile; 499 500 rcu_read_lock(); 501 do { 502 profile = __find_child(&parent->base.profiles, name); 503 } while (profile && !aa_get_profile_not0(profile)); 504 rcu_read_unlock(); 505 506 /* refcount released by caller */ 507 return profile; 508 } 509 510 /** 511 * __lookup_parent - lookup the parent of a profile of name @hname 512 * @ns: namespace to lookup profile in (NOT NULL) 513 * @hname: hierarchical profile name to find parent of (NOT NULL) 514 * 515 * Lookups up the parent of a fully qualified profile name, the profile 516 * that matches hname does not need to exist, in general this 517 * is used to load a new profile. 518 * 519 * Requires: rcu_read_lock be held 520 * 521 * Returns: unrefcounted policy or NULL if not found 522 */ 523 static struct aa_policy *__lookup_parent(struct aa_ns *ns, 524 const char *hname) 525 { 526 struct aa_policy *policy; 527 struct aa_profile *profile = NULL; 528 char *split; 529 530 policy = &ns->base; 531 532 for (split = strstr(hname, "//"); split;) { 533 profile = __strn_find_child(&policy->profiles, hname, 534 split - hname); 535 if (!profile) 536 return NULL; 537 policy = &profile->base; 538 hname = split + 2; 539 split = strstr(hname, "//"); 540 } 541 if (!profile) 542 return &ns->base; 543 return &profile->base; 544 } 545 546 /** 547 * __create_missing_ancestors - create place holders for missing ancestors 548 * @ns: namespace to lookup profile in (NOT NULL) 549 * @hname: hierarchical profile name to find parent of (NOT NULL) 550 * @gfp: type of allocation. 551 * 552 * Requires: ns mutex lock held 553 * 554 * Return: unrefcounted parent policy on success or %NULL if error creating 555 * place holder profiles. 556 */ 557 static struct aa_policy *__create_missing_ancestors(struct aa_ns *ns, 558 const char *hname, 559 gfp_t gfp) 560 { 561 struct aa_policy *policy; 562 struct aa_profile *parent, *profile = NULL; 563 char *split; 564 565 AA_BUG(!ns); 566 AA_BUG(!hname); 567 568 policy = &ns->base; 569 570 for (split = strstr(hname, "//"); split;) { 571 parent = profile; 572 profile = __strn_find_child(&policy->profiles, hname, 573 split - hname); 574 if (!profile) { 575 const char *name = kstrndup(hname, split - hname, 576 gfp); 577 if (!name) 578 return NULL; 579 profile = aa_alloc_null(parent, name, gfp); 580 kfree(name); 581 if (!profile) 582 return NULL; 583 if (!parent) 584 profile->ns = aa_get_ns(ns); 585 } 586 policy = &profile->base; 587 hname = split + 2; 588 split = strstr(hname, "//"); 589 } 590 if (!profile) 591 return &ns->base; 592 return &profile->base; 593 } 594 595 /** 596 * __lookupn_profile - lookup the profile matching @hname 597 * @base: base list to start looking up profile name from (NOT NULL) 598 * @hname: hierarchical profile name (NOT NULL) 599 * @n: length of @hname 600 * 601 * Requires: rcu_read_lock be held 602 * 603 * Returns: unrefcounted profile pointer or NULL if not found 604 * 605 * Do a relative name lookup, recursing through profile tree. 606 */ 607 static struct aa_profile *__lookupn_profile(struct aa_policy *base, 608 const char *hname, size_t n) 609 { 610 struct aa_profile *profile = NULL; 611 const char *split; 612 613 for (split = strnstr(hname, "//", n); split; 614 split = strnstr(hname, "//", n)) { 615 profile = __strn_find_child(&base->profiles, hname, 616 split - hname); 617 if (!profile) 618 return NULL; 619 620 base = &profile->base; 621 n -= split + 2 - hname; 622 hname = split + 2; 623 } 624 625 if (n) 626 return __strn_find_child(&base->profiles, hname, n); 627 return NULL; 628 } 629 630 static struct aa_profile *__lookup_profile(struct aa_policy *base, 631 const char *hname) 632 { 633 return __lookupn_profile(base, hname, strlen(hname)); 634 } 635 636 /** 637 * aa_lookupn_profile - find a profile by its full or partial name 638 * @ns: the namespace to start from (NOT NULL) 639 * @hname: name to do lookup on. Does not contain namespace prefix (NOT NULL) 640 * @n: size of @hname 641 * 642 * Returns: refcounted profile or NULL if not found 643 */ 644 struct aa_profile *aa_lookupn_profile(struct aa_ns *ns, const char *hname, 645 size_t n) 646 { 647 struct aa_profile *profile; 648 649 rcu_read_lock(); 650 do { 651 profile = __lookupn_profile(&ns->base, hname, n); 652 } while (profile && !aa_get_profile_not0(profile)); 653 rcu_read_unlock(); 654 655 /* the unconfined profile is not in the regular profile list */ 656 if (!profile && strncmp(hname, "unconfined", n) == 0) 657 profile = aa_get_newest_profile(ns->unconfined); 658 659 /* refcount released by caller */ 660 return profile; 661 } 662 663 struct aa_profile *aa_fqlookupn_profile(struct aa_label *base, 664 const char *fqname, size_t n) 665 { 666 struct aa_profile *profile; 667 struct aa_ns *ns; 668 const char *name, *ns_name; 669 size_t ns_len; 670 671 name = aa_splitn_fqname(fqname, n, &ns_name, &ns_len); 672 if (ns_name) { 673 ns = aa_lookupn_ns(labels_ns(base), ns_name, ns_len); 674 if (!ns) 675 return NULL; 676 } else 677 ns = aa_get_ns(labels_ns(base)); 678 679 if (name) 680 profile = aa_lookupn_profile(ns, name, n - (name - fqname)); 681 else if (ns) 682 /* default profile for ns, currently unconfined */ 683 profile = aa_get_newest_profile(ns->unconfined); 684 else 685 profile = NULL; 686 aa_put_ns(ns); 687 688 return profile; 689 } 690 691 692 struct aa_profile *aa_alloc_null(struct aa_profile *parent, const char *name, 693 gfp_t gfp) 694 { 695 struct aa_profile *profile; 696 struct aa_ruleset *rules; 697 698 profile = aa_alloc_profile(name, NULL, gfp); 699 if (!profile) 700 return NULL; 701 702 /* TODO: ideally we should inherit abi from parent */ 703 profile->label.flags |= FLAG_NULL; 704 profile->attach.xmatch = aa_get_pdb(nullpdb); 705 rules = profile->label.rules[0]; 706 rules->file = aa_get_pdb(nullpdb); 707 rules->policy = aa_get_pdb(nullpdb); 708 aa_compute_profile_mediates(profile); 709 710 if (parent) { 711 profile->path_flags = parent->path_flags; 712 /* override/inherit what is mediated from parent */ 713 profile->label.mediates = parent->label.mediates; 714 /* released on free_profile */ 715 rcu_assign_pointer(profile->parent, aa_get_profile(parent)); 716 profile->ns = aa_get_ns(parent->ns); 717 } 718 719 return profile; 720 } 721 722 /** 723 * __aa_new_learning_profile - create or find a null-X learning profile 724 * @parent: profile that caused this profile to be created (NOT NULL) 725 * @hat: true if the null- learning profile is a hat 726 * @base: name to base the null profile off of 727 * @gfp: type of allocation 728 * 729 * Find/Create a null- complain mode profile used in learning mode. The 730 * name of the profile is unique and follows the format of parent//null-XXX. 731 * where XXX is based on the @name or if that fails or is not supplied 732 * a unique number 733 * 734 * null profiles are added to the profile list but the list does not 735 * hold a count on them so that they are automatically released when 736 * not in use. 737 * 738 * Returns: new refcounted profile else NULL on failure 739 */ 740 struct aa_profile *__aa_new_learning_profile(struct aa_profile *parent, 741 bool hat, const char *base, 742 gfp_t gfp) 743 { 744 struct aa_profile *p, *profile; 745 const char *bname; 746 char *name = NULL; 747 size_t name_sz; 748 749 AA_BUG(!parent); 750 AA_BUG(!mutex_is_locked(&parent->ns->lock)); 751 752 if (base) { 753 name_sz = strlen(parent->base.hname) + 8 + strlen(base); 754 name = kmalloc(name_sz, gfp); 755 if (name) { 756 snprintf(name, name_sz, "%s//null-%s", 757 parent->base.hname, base); 758 goto name; 759 } 760 /* fall through to try shorter uniq */ 761 } 762 763 name_sz = strlen(parent->base.hname) + 2 + 7 + 8; 764 name = kmalloc(name_sz, gfp); 765 if (!name) 766 return NULL; 767 snprintf(name, name_sz, "%s//null-%x", parent->base.hname, 768 atomic_inc_return(&parent->ns->uniq_null)); 769 770 name: 771 /* lookup to see if this is a dup creation */ 772 bname = basename(name); 773 profile = aa_find_child(parent, bname); 774 if (profile) 775 goto out; 776 777 profile = aa_alloc_null(parent, name, gfp); 778 if (!profile) 779 goto fail; 780 profile->mode = APPARMOR_COMPLAIN; 781 if (hat) 782 profile->label.flags |= FLAG_HAT; 783 784 p = __find_child(&parent->base.profiles, bname); 785 if (p) { 786 aa_free_profile(profile); 787 profile = aa_get_profile(p); 788 } else { 789 __add_profile(&parent->base.profiles, profile); 790 } 791 792 /* refcount released by caller */ 793 out: 794 kfree(name); 795 796 return profile; 797 798 fail: 799 kfree(name); 800 aa_free_profile(profile); 801 return NULL; 802 } 803 804 struct aa_profile *aa_new_learning_profile(struct aa_profile *parent, bool hat, 805 const char *base, gfp_t gfp) 806 { 807 struct aa_profile *profile; 808 809 mutex_lock_nested(&parent->ns->lock, parent->ns->level); 810 profile = __aa_new_learning_profile(parent, hat, base, gfp); 811 mutex_unlock(&parent->ns->lock); 812 813 return profile; 814 } 815 816 /** 817 * replacement_allowed - test to see if replacement is allowed 818 * @profile: profile to test if it can be replaced (MAYBE NULL) 819 * @noreplace: true if replacement shouldn't be allowed but addition is okay 820 * @info: Returns - info about why replacement failed (NOT NULL) 821 * 822 * Returns: %0 if replacement allowed else error code 823 */ 824 static int replacement_allowed(struct aa_profile *profile, int noreplace, 825 const char **info) 826 { 827 if (profile) { 828 if (profile->label.flags & FLAG_IMMUTIBLE) { 829 *info = "cannot replace immutable profile"; 830 return -EPERM; 831 } else if (noreplace) { 832 *info = "profile already exists"; 833 return -EEXIST; 834 } 835 } 836 return 0; 837 } 838 839 /* audit callback for net specific fields */ 840 static void audit_cb(struct audit_buffer *ab, void *va) 841 { 842 struct common_audit_data *sa = va; 843 struct apparmor_audit_data *ad = aad(sa); 844 845 if (ad->iface.ns) { 846 audit_log_format(ab, " ns="); 847 audit_log_untrustedstring(ab, ad->iface.ns); 848 } 849 } 850 851 /** 852 * audit_policy - Do auditing of policy changes 853 * @subj_label: label to check if it can manage policy 854 * @op: policy operation being performed 855 * @ns_name: name of namespace being manipulated 856 * @name: name of profile being manipulated (NOT NULL) 857 * @info: any extra information to be audited (MAYBE NULL) 858 * @error: error code 859 * 860 * Returns: the error to be returned after audit is done 861 */ 862 static int audit_policy(struct aa_label *subj_label, const char *op, 863 const char *ns_name, const char *name, 864 const char *info, int error) 865 { 866 DEFINE_AUDIT_DATA(ad, LSM_AUDIT_DATA_NONE, AA_CLASS_NONE, op); 867 868 ad.iface.ns = ns_name; 869 ad.name = name; 870 ad.info = info; 871 ad.error = error; 872 ad.subj_label = subj_label; 873 874 aa_audit_msg(AUDIT_APPARMOR_STATUS, &ad, audit_cb); 875 876 return error; 877 } 878 879 /* don't call out to other LSMs in the stack for apparmor policy admin 880 * permissions 881 */ 882 static int policy_ns_capable(const struct cred *subj_cred, 883 struct aa_label *label, 884 struct user_namespace *userns, int cap) 885 { 886 int err; 887 888 /* check for MAC_ADMIN cap in cred */ 889 err = cap_capable(subj_cred, userns, cap, CAP_OPT_NONE); 890 if (!err) 891 err = aa_capable(subj_cred, label, cap, CAP_OPT_NONE); 892 893 return err; 894 } 895 896 /** 897 * aa_policy_view_capable - check if viewing policy in at @ns is allowed 898 * @subj_cred: cred of subject 899 * @label: label that is trying to view policy in ns 900 * @ns: namespace being viewed by @label (may be NULL if @label's ns) 901 * 902 * Returns: true if viewing policy is allowed 903 * 904 * If @ns is NULL then the namespace being viewed is assumed to be the 905 * tasks current namespace. 906 */ 907 bool aa_policy_view_capable(const struct cred *subj_cred, 908 struct aa_label *label, struct aa_ns *ns) 909 { 910 struct user_namespace *user_ns = subj_cred->user_ns; 911 struct aa_ns *view_ns = labels_view(label); 912 bool root_in_user_ns = uid_eq(current_euid(), make_kuid(user_ns, 0)) || 913 in_egroup_p(make_kgid(user_ns, 0)); 914 bool response = false; 915 if (!ns) 916 ns = view_ns; 917 918 if (root_in_user_ns && aa_ns_visible(view_ns, ns, true) && 919 (user_ns == &init_user_ns || 920 (unprivileged_userns_apparmor_policy != 0 && 921 user_ns->level == view_ns->level))) 922 response = true; 923 924 return response; 925 } 926 927 bool aa_policy_admin_capable(const struct cred *subj_cred, 928 struct aa_label *label, struct aa_ns *ns) 929 { 930 struct user_namespace *user_ns = subj_cred->user_ns; 931 bool capable = policy_ns_capable(subj_cred, label, user_ns, 932 CAP_MAC_ADMIN) == 0; 933 934 AA_DEBUG(DEBUG_POLICY, "cap_mac_admin? %d\n", capable); 935 AA_DEBUG(DEBUG_POLICY, "policy locked? %d\n", aa_g_lock_policy); 936 937 return aa_policy_view_capable(subj_cred, label, ns) && capable && 938 !aa_g_lock_policy; 939 } 940 941 bool aa_current_policy_view_capable(struct aa_ns *ns) 942 { 943 struct aa_label *label; 944 bool needput, res; 945 946 label = __begin_current_label_crit_section(&needput); 947 res = aa_policy_view_capable(current_cred(), label, ns); 948 __end_current_label_crit_section(label, needput); 949 950 return res; 951 } 952 953 bool aa_current_policy_admin_capable(struct aa_ns *ns) 954 { 955 struct aa_label *label; 956 bool needput, res; 957 958 label = __begin_current_label_crit_section(&needput); 959 res = aa_policy_admin_capable(current_cred(), label, ns); 960 __end_current_label_crit_section(label, needput); 961 962 return res; 963 } 964 965 static bool is_subset_of_obj_privilege(const struct cred *cred, 966 struct aa_label *label, 967 const struct cred *ocred) 968 { 969 if (cred == ocred) 970 return true; 971 972 if (!aa_label_is_subset(label, cred_label(ocred))) 973 return false; 974 /* don't allow crossing userns for now */ 975 if (cred->user_ns != ocred->user_ns) 976 return false; 977 if (!cap_issubset(cred->cap_inheritable, ocred->cap_inheritable)) 978 return false; 979 if (!cap_issubset(cred->cap_permitted, ocred->cap_permitted)) 980 return false; 981 if (!cap_issubset(cred->cap_effective, ocred->cap_effective)) 982 return false; 983 if (!cap_issubset(cred->cap_bset, ocred->cap_bset)) 984 return false; 985 if (!cap_issubset(cred->cap_ambient, ocred->cap_ambient)) 986 return false; 987 return true; 988 } 989 990 991 /** 992 * aa_may_manage_policy - can the current task manage policy 993 * @subj_cred: subjects cred 994 * @label: label to check if it can manage policy 995 * @ns: namespace being managed by @label (may be NULL if @label's ns) 996 * @ocred: object cred if request is coming from an open object 997 * @mask: contains the policy manipulation operation being done 998 * 999 * Returns: 0 if the task is allowed to manipulate policy else error 1000 */ 1001 int aa_may_manage_policy(const struct cred *subj_cred, struct aa_label *label, 1002 struct aa_ns *ns, const struct cred *ocred, u32 mask) 1003 { 1004 const char *op; 1005 1006 if (mask & AA_MAY_REMOVE_POLICY) 1007 op = OP_PROF_RM; 1008 else if (mask & AA_MAY_REPLACE_POLICY) 1009 op = OP_PROF_REPL; 1010 else 1011 op = OP_PROF_LOAD; 1012 1013 /* check if loading policy is locked out */ 1014 if (aa_g_lock_policy) 1015 return audit_policy(label, op, NULL, NULL, "policy_locked", 1016 -EACCES); 1017 1018 if (ocred && !is_subset_of_obj_privilege(subj_cred, label, ocred)) 1019 return audit_policy(label, op, NULL, NULL, 1020 "not privileged for target profile", 1021 -EACCES); 1022 1023 if (!aa_policy_admin_capable(subj_cred, label, ns)) 1024 return audit_policy(label, op, NULL, NULL, "not policy admin", 1025 -EACCES); 1026 1027 /* TODO: add fine grained mediation of policy loads */ 1028 return 0; 1029 } 1030 1031 static struct aa_profile *__list_lookup_parent(struct list_head *lh, 1032 struct aa_profile *profile) 1033 { 1034 const char *base = basename(profile->base.hname); 1035 long len = base - profile->base.hname; 1036 struct aa_load_ent *ent; 1037 1038 /* parent won't have trailing // so remove from len */ 1039 if (len <= 2) 1040 return NULL; 1041 len -= 2; 1042 1043 list_for_each_entry(ent, lh, list) { 1044 if (ent->new == profile) 1045 continue; 1046 if (strncmp(ent->new->base.hname, profile->base.hname, len) == 1047 0 && ent->new->base.hname[len] == 0) 1048 return ent->new; 1049 } 1050 1051 return NULL; 1052 } 1053 1054 /** 1055 * __replace_profile - replace @old with @new on a list 1056 * @old: profile to be replaced (NOT NULL) 1057 * @new: profile to replace @old with (NOT NULL) 1058 * 1059 * Will duplicate and refcount elements that @new inherits from @old 1060 * and will inherit @old children. 1061 * 1062 * refcount @new for list, put @old list refcount 1063 * 1064 * Requires: namespace list lock be held, or list not be shared 1065 */ 1066 static void __replace_profile(struct aa_profile *old, struct aa_profile *new) 1067 { 1068 struct aa_profile *child, *tmp; 1069 1070 if (!list_empty(&old->base.profiles)) { 1071 LIST_HEAD(lh); 1072 list_splice_init_rcu(&old->base.profiles, &lh, synchronize_rcu); 1073 1074 list_for_each_entry_safe(child, tmp, &lh, base.list) { 1075 struct aa_profile *p; 1076 1077 list_del_init(&child->base.list); 1078 p = __find_child(&new->base.profiles, child->base.name); 1079 if (p) { 1080 /* @p replaces @child */ 1081 __replace_profile(child, p); 1082 continue; 1083 } 1084 1085 /* inherit @child and its children */ 1086 /* TODO: update hname of inherited children */ 1087 /* list refcount transferred to @new */ 1088 p = aa_deref_parent(child); 1089 rcu_assign_pointer(child->parent, aa_get_profile(new)); 1090 list_add_rcu(&child->base.list, &new->base.profiles); 1091 aa_put_profile(p); 1092 } 1093 } 1094 1095 if (!rcu_access_pointer(new->parent)) { 1096 struct aa_profile *parent = aa_deref_parent(old); 1097 rcu_assign_pointer(new->parent, aa_get_profile(parent)); 1098 } 1099 aa_label_replace(&old->label, &new->label); 1100 /* migrate dents must come after label replacement b/c update */ 1101 __aafs_profile_migrate_dents(old, new); 1102 1103 if (list_empty(&new->base.list)) { 1104 /* new is not on a list already */ 1105 list_replace_rcu(&old->base.list, &new->base.list); 1106 aa_get_profile(new); 1107 aa_put_profile(old); 1108 } else 1109 __list_remove_profile(old); 1110 } 1111 1112 /** 1113 * __lookup_replace - lookup replacement information for a profile 1114 * @ns: namespace the lookup occurs in 1115 * @hname: name of profile to lookup 1116 * @noreplace: true if not replacing an existing profile 1117 * @p: Returns - profile to be replaced 1118 * @info: Returns - info string on why lookup failed 1119 * 1120 * Returns: profile to replace (no ref) on success else ptr error 1121 */ 1122 static int __lookup_replace(struct aa_ns *ns, const char *hname, 1123 bool noreplace, struct aa_profile **p, 1124 const char **info) 1125 { 1126 *p = aa_get_profile(__lookup_profile(&ns->base, hname)); 1127 if (*p) { 1128 int error = replacement_allowed(*p, noreplace, info); 1129 if (error) { 1130 *info = "profile can not be replaced"; 1131 return error; 1132 } 1133 } 1134 1135 return 0; 1136 } 1137 1138 static void share_name(struct aa_profile *old, struct aa_profile *new) 1139 { 1140 aa_put_str(new->base.hname); 1141 aa_get_str(old->base.hname); 1142 new->base.hname = old->base.hname; 1143 new->base.name = old->base.name; 1144 new->label.hname = old->label.hname; 1145 } 1146 1147 /* Update to newest version of parent after previous replacements 1148 * Returns: unrefcount newest version of parent 1149 */ 1150 static struct aa_profile *update_to_newest_parent(struct aa_profile *new) 1151 { 1152 struct aa_profile *parent, *newest; 1153 1154 parent = rcu_dereference_protected(new->parent, 1155 mutex_is_locked(&new->ns->lock)); 1156 newest = aa_get_newest_profile(parent); 1157 1158 /* parent replaced in this atomic set? */ 1159 if (newest != parent) { 1160 aa_put_profile(parent); 1161 rcu_assign_pointer(new->parent, newest); 1162 } else 1163 aa_put_profile(newest); 1164 1165 return newest; 1166 } 1167 1168 /** 1169 * aa_replace_profiles - replace profile(s) on the profile list 1170 * @policy_ns: namespace load is occurring on 1171 * @label: label that is attempting to load/replace policy 1172 * @mask: permission mask 1173 * @udata: serialized data stream (NOT NULL) 1174 * @compressed_profile: The userspace-provided compressed profile. May be NULL 1175 * @compressed_size: If compressed_data is not NULL, the compressed data size 1176 * 1177 * unpack and replace a profile on the profile list and uses of that profile 1178 * by any task creds via invalidating the old version of the profile, which 1179 * tasks will notice to update their own cred. If the profile does not exist 1180 * on the profile list it is added. 1181 * 1182 * Returns: size of data consumed else error code on failure. 1183 */ 1184 ssize_t aa_replace_profiles(struct aa_ns *policy_ns, struct aa_label *label, 1185 u32 mask, struct aa_loaddata *udata, 1186 char *compressed_profile, size_t compressed_size) 1187 { 1188 const char *ns_name = NULL, *info = NULL; 1189 struct aa_ns *ns = NULL; 1190 struct aa_load_ent *ent, *tmp; 1191 struct aa_loaddata *rawdata_ent; 1192 const char *op; 1193 ssize_t count, error; 1194 LIST_HEAD(lh); 1195 1196 op = mask & AA_MAY_REPLACE_POLICY ? OP_PROF_REPL : OP_PROF_LOAD; 1197 aa_get_profile_loaddata(udata); 1198 /* released below */ 1199 error = aa_unpack(udata, &lh, &ns_name, compressed_profile, compressed_size); 1200 if (error) 1201 goto out; 1202 1203 /* ensure that profiles are all for the same ns 1204 * TODO: update locking to remove this constraint. All profiles in 1205 * the load set must succeed as a set or the load will 1206 * fail. Sort ent list and take ns locks in hierarchy order 1207 */ 1208 count = 0; 1209 list_for_each_entry(ent, &lh, list) { 1210 if (ns_name) { 1211 if (ent->ns_name && 1212 strcmp(ent->ns_name, ns_name) != 0) { 1213 info = "policy load has mixed namespaces"; 1214 error = -EACCES; 1215 goto fail; 1216 } 1217 } else if (ent->ns_name) { 1218 if (count) { 1219 info = "policy load has mixed namespaces"; 1220 error = -EACCES; 1221 goto fail; 1222 } 1223 ns_name = ent->ns_name; 1224 ent->ns_name = NULL; 1225 } else 1226 count++; 1227 } 1228 if (ns_name) { 1229 ns = aa_prepare_ns(policy_ns ? policy_ns : labels_ns(label), 1230 ns_name); 1231 if (IS_ERR(ns)) { 1232 op = OP_PROF_LOAD; 1233 info = "failed to prepare namespace"; 1234 error = PTR_ERR(ns); 1235 ns = NULL; 1236 ent = NULL; 1237 goto fail; 1238 } 1239 } else 1240 ns = aa_get_ns(policy_ns ? policy_ns : labels_ns(label)); 1241 1242 mutex_lock_nested(&ns->lock, ns->level); 1243 /* check for duplicate rawdata blobs: space and file dedup */ 1244 if (!list_empty(&ns->rawdata_list)) { 1245 list_for_each_entry(rawdata_ent, &ns->rawdata_list, list) { 1246 if (aa_rawdata_eq(rawdata_ent, udata)) { 1247 struct aa_loaddata *tmp; 1248 1249 /* 1250 * Entries remain on rawdata_list with 1251 * pcount == 0 until do_ploaddata_rmfs() 1252 * runs; only take a live profile ref. 1253 */ 1254 tmp = aa_get_profile_loaddata_not0(rawdata_ent); 1255 if (tmp) { 1256 aa_put_profile_loaddata(udata); 1257 udata = tmp; 1258 break; 1259 } 1260 } 1261 } 1262 } 1263 /* setup parent and ns info */ 1264 list_for_each_entry(ent, &lh, list) { 1265 struct aa_policy *policy; 1266 struct aa_profile *p; 1267 1268 if (aa_g_export_binary) 1269 ent->new->rawdata = aa_get_profile_loaddata(udata); 1270 error = __lookup_replace(ns, ent->new->base.hname, 1271 !(mask & AA_MAY_REPLACE_POLICY), 1272 &ent->old, &info); 1273 if (error) 1274 goto fail_lock; 1275 1276 if (ent->new->rename) { 1277 error = __lookup_replace(ns, ent->new->rename, 1278 !(mask & AA_MAY_REPLACE_POLICY), 1279 &ent->rename, &info); 1280 if (error) 1281 goto fail_lock; 1282 } 1283 1284 /* released when @new is freed */ 1285 ent->new->ns = aa_get_ns(ns); 1286 1287 if (ent->old || ent->rename) 1288 continue; 1289 1290 /* no ref on policy only use inside lock */ 1291 p = NULL; 1292 policy = __lookup_parent(ns, ent->new->base.hname); 1293 if (!policy) { 1294 /* first check for parent in the load set */ 1295 p = __list_lookup_parent(&lh, ent->new); 1296 if (!p) { 1297 /* 1298 * fill in missing parent with null 1299 * profile that doesn't have 1300 * permissions. This allows for 1301 * individual profile loading where 1302 * the child is loaded before the 1303 * parent, and outside of the current 1304 * atomic set. This unfortunately can 1305 * happen with some userspaces. The 1306 * null profile will be replaced once 1307 * the parent is loaded. 1308 */ 1309 policy = __create_missing_ancestors(ns, 1310 ent->new->base.hname, 1311 GFP_KERNEL); 1312 if (!policy) { 1313 error = -ENOENT; 1314 info = "parent does not exist"; 1315 goto fail_lock; 1316 } 1317 } 1318 } 1319 if (!p && policy != &ns->base) 1320 /* released on profile replacement or free_profile */ 1321 p = (struct aa_profile *) policy; 1322 rcu_assign_pointer(ent->new->parent, aa_get_profile(p)); 1323 } 1324 1325 /* create new fs entries for introspection if needed */ 1326 if (!udata->dents[AAFS_LOADDATA_DIR] && aa_g_export_binary) { 1327 error = __aa_fs_create_rawdata(ns, udata); 1328 if (error) { 1329 info = "failed to create raw_data dir and files"; 1330 ent = NULL; 1331 goto fail_lock; 1332 } 1333 } 1334 list_for_each_entry(ent, &lh, list) { 1335 if (!ent->old) { 1336 struct dentry *parent; 1337 if (rcu_access_pointer(ent->new->parent)) { 1338 struct aa_profile *p; 1339 p = aa_deref_parent(ent->new); 1340 parent = prof_child_dir(p); 1341 } else 1342 parent = ns_subprofs_dir(ent->new->ns); 1343 error = __aafs_profile_mkdir(ent->new, parent); 1344 } 1345 1346 if (error) { 1347 info = "failed to create"; 1348 goto fail_lock; 1349 } 1350 } 1351 1352 /* Done with checks that may fail - do actual replacement */ 1353 __aa_bump_ns_revision(ns); 1354 if (aa_g_export_binary) 1355 __aa_loaddata_update(udata, ns->revision); 1356 list_for_each_entry_safe(ent, tmp, &lh, list) { 1357 list_del_init(&ent->list); 1358 op = (!ent->old && !ent->rename) ? OP_PROF_LOAD : OP_PROF_REPL; 1359 1360 if (ent->old && ent->old->rawdata == ent->new->rawdata && 1361 ent->new->rawdata) { 1362 /* dedup actual profile replacement */ 1363 audit_policy(label, op, ns_name, ent->new->base.hname, 1364 "same as current profile, skipping", 1365 error); 1366 /* break refcount cycle with proxy. */ 1367 aa_put_proxy(ent->new->label.proxy); 1368 ent->new->label.proxy = NULL; 1369 goto skip; 1370 } 1371 1372 if (!aa_g_export_binary) { 1373 if (ent->old && ent->old->rawdata && 1374 ent->old->dents[AAFS_LOADDATA_DIR]) { 1375 /* remove rawdata symlinks because the symlink 1376 * target will be removed 1377 */ 1378 __aa_remove_rawdata_symlink_dents(ent->old); 1379 } 1380 } 1381 1382 /* 1383 * TODO: finer dedup based on profile range in data. Load set 1384 * can differ but profile may remain unchanged 1385 */ 1386 audit_policy(label, op, ns_name, ent->new->base.hname, NULL, 1387 error); 1388 1389 if (ent->old) { 1390 share_name(ent->old, ent->new); 1391 __replace_profile(ent->old, ent->new); 1392 if (aa_g_export_binary) { 1393 /* recreate rawdata symlinks */ 1394 if (!ent->old->rawdata) 1395 __aa_create_rawdata_symlink_dents(ent->new); 1396 } 1397 } else { 1398 struct list_head *lh; 1399 1400 if (rcu_access_pointer(ent->new->parent)) { 1401 struct aa_profile *parent; 1402 1403 parent = update_to_newest_parent(ent->new); 1404 lh = &parent->base.profiles; 1405 } else 1406 lh = &ns->base.profiles; 1407 __add_profile(lh, ent->new); 1408 } 1409 skip: 1410 aa_load_ent_free(ent); 1411 } 1412 __aa_labelset_update_subtree(ns); 1413 mutex_unlock(&ns->lock); 1414 1415 out: 1416 aa_put_ns(ns); 1417 1418 ssize_t udata_sz = udata->size; 1419 1420 aa_put_profile_loaddata(udata); 1421 kfree(ns_name); 1422 1423 if (error) 1424 return error; 1425 return udata_sz; 1426 1427 fail_lock: 1428 mutex_unlock(&ns->lock); 1429 1430 /* audit cause of failure */ 1431 op = (ent && !ent->old) ? OP_PROF_LOAD : OP_PROF_REPL; 1432 fail: 1433 audit_policy(label, op, ns_name, ent ? ent->new->base.hname : NULL, 1434 info, error); 1435 /* audit status that rest of profiles in the atomic set failed too */ 1436 info = "valid profile in failed atomic policy load"; 1437 list_for_each_entry(tmp, &lh, list) { 1438 if (tmp == ent) { 1439 info = "unchecked profile in failed atomic policy load"; 1440 /* skip entry that caused failure */ 1441 continue; 1442 } 1443 op = (!tmp->old) ? OP_PROF_LOAD : OP_PROF_REPL; 1444 audit_policy(label, op, ns_name, tmp->new->base.hname, info, 1445 error); 1446 } 1447 list_for_each_entry_safe(ent, tmp, &lh, list) { 1448 list_del_init(&ent->list); 1449 aa_load_ent_free(ent); 1450 } 1451 1452 goto out; 1453 } 1454 1455 /** 1456 * aa_remove_profiles - remove profile(s) from the system 1457 * @policy_ns: namespace the remove is being done from 1458 * @subj: label attempting to remove policy 1459 * @fqname: name of the profile or namespace to remove (NOT NULL) 1460 * @size: size of the name 1461 * 1462 * Remove a profile or sub namespace from the current namespace, so that 1463 * they can not be found anymore and mark them as replaced by unconfined 1464 * 1465 * NOTE: removing confinement does not restore rlimits to preconfinement values 1466 * 1467 * Returns: size of data consume else error code if fails 1468 */ 1469 ssize_t aa_remove_profiles(struct aa_ns *policy_ns, struct aa_label *subj, 1470 char *fqname, size_t size) 1471 { 1472 struct aa_ns *ns = NULL; 1473 struct aa_profile *profile = NULL; 1474 const char *name = fqname, *info = NULL; 1475 const char *ns_name = NULL; 1476 ssize_t error = 0; 1477 1478 if (*fqname == 0) { 1479 info = "no profile specified"; 1480 error = -ENOENT; 1481 goto fail; 1482 } 1483 1484 if (fqname[0] == ':') { 1485 size_t ns_len; 1486 1487 name = aa_splitn_fqname(fqname, size, &ns_name, &ns_len); 1488 /* released below */ 1489 ns = aa_lookupn_ns(policy_ns ? policy_ns : labels_ns(subj), 1490 ns_name, ns_len); 1491 if (!ns) { 1492 info = "namespace does not exist"; 1493 error = -ENOENT; 1494 goto fail; 1495 } 1496 } else 1497 /* released below */ 1498 ns = aa_get_ns(policy_ns ? policy_ns : labels_ns(subj)); 1499 1500 if (!name) { 1501 /* remove namespace - can only happen if fqname[0] == ':' */ 1502 mutex_lock_nested(&ns->parent->lock, ns->parent->level); 1503 __aa_bump_ns_revision(ns); 1504 __aa_remove_ns(ns); 1505 mutex_unlock(&ns->parent->lock); 1506 } else { 1507 /* remove profile */ 1508 mutex_lock_nested(&ns->lock, ns->level); 1509 profile = aa_get_profile(__lookup_profile(&ns->base, name)); 1510 if (!profile) { 1511 error = -ENOENT; 1512 info = "profile does not exist"; 1513 goto fail_ns_lock; 1514 } 1515 name = profile->base.hname; 1516 __aa_bump_ns_revision(ns); 1517 __remove_profile(profile); 1518 __aa_labelset_update_subtree(ns); 1519 mutex_unlock(&ns->lock); 1520 } 1521 1522 /* don't fail removal if audit fails */ 1523 (void) audit_policy(subj, OP_PROF_RM, ns_name, name, info, 1524 error); 1525 aa_put_ns(ns); 1526 aa_put_profile(profile); 1527 return size; 1528 1529 fail_ns_lock: 1530 mutex_unlock(&ns->lock); 1531 aa_put_ns(ns); 1532 1533 fail: 1534 (void) audit_policy(subj, OP_PROF_RM, ns_name, name, info, 1535 error); 1536 return error; 1537 } 1538