1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * AppArmor security module 4 * 5 * This file contains AppArmor LSM hooks. 6 * 7 * Copyright (C) 1998-2008 Novell/SUSE 8 * Copyright 2009-2010 Canonical Ltd. 9 */ 10 11 #include <linux/lsm_hooks.h> 12 #include <linux/moduleparam.h> 13 #include <linux/mm.h> 14 #include <linux/mman.h> 15 #include <linux/mount.h> 16 #include <linux/namei.h> 17 #include <linux/ptrace.h> 18 #include <linux/ctype.h> 19 #include <linux/sysctl.h> 20 #include <linux/sysfs.h> 21 #include <linux/audit.h> 22 #include <linux/user_namespace.h> 23 #include <linux/netfilter_ipv4.h> 24 #include <linux/netfilter_ipv6.h> 25 #include <linux/zstd.h> 26 #include <net/sock.h> 27 #include <uapi/linux/mount.h> 28 #include <uapi/linux/lsm.h> 29 30 #include "include/af_unix.h" 31 #include "include/apparmor.h" 32 #include "include/apparmorfs.h" 33 #include "include/audit.h" 34 #include "include/capability.h" 35 #include "include/cred.h" 36 #include "include/crypto.h" 37 #include "include/file.h" 38 #include "include/ipc.h" 39 #include "include/net.h" 40 #include "include/path.h" 41 #include "include/label.h" 42 #include "include/policy.h" 43 #include "include/policy_ns.h" 44 #include "include/procattr.h" 45 #include "include/mount.h" 46 #include "include/secid.h" 47 48 /* Flag indicating whether initialization completed */ 49 int apparmor_initialized; 50 51 union aa_buffer { 52 struct list_head list; 53 DECLARE_FLEX_ARRAY(char, buffer); 54 }; 55 56 struct aa_local_cache { 57 unsigned int hold; 58 unsigned int count; 59 struct list_head head; 60 }; 61 62 #define RESERVE_COUNT 2 63 static int reserve_count = RESERVE_COUNT; 64 static int buffer_count; 65 66 static LIST_HEAD(aa_global_buffers); 67 static DEFINE_SPINLOCK(aa_buffers_lock); 68 static DEFINE_PER_CPU(struct aa_local_cache, aa_local_buffers); 69 70 /* 71 * LSM hook functions 72 */ 73 74 /* 75 * put the associated labels 76 */ 77 static void apparmor_cred_free(struct cred *cred) 78 { 79 aa_put_label(cred_label(cred)); 80 set_cred_label(cred, NULL); 81 } 82 83 /* 84 * allocate the apparmor part of blank credentials 85 */ 86 static int apparmor_cred_alloc_blank(struct cred *cred, gfp_t gfp) 87 { 88 set_cred_label(cred, NULL); 89 return 0; 90 } 91 92 /* 93 * prepare new cred label for modification by prepare_cred block 94 */ 95 static int apparmor_cred_prepare(struct cred *new, const struct cred *old, 96 gfp_t gfp) 97 { 98 set_cred_label(new, aa_get_newest_label(cred_label(old))); 99 return 0; 100 } 101 102 /* 103 * transfer the apparmor data to a blank set of creds 104 */ 105 static void apparmor_cred_transfer(struct cred *new, const struct cred *old) 106 { 107 set_cred_label(new, aa_get_newest_label(cred_label(old))); 108 } 109 110 static void apparmor_task_free(struct task_struct *task) 111 { 112 113 aa_free_task_ctx(task_ctx(task)); 114 } 115 116 static int apparmor_task_alloc(struct task_struct *task, 117 u64 clone_flags) 118 { 119 struct aa_task_ctx *new = task_ctx(task); 120 121 aa_dup_task_ctx(new, task_ctx(current)); 122 123 return 0; 124 } 125 126 static int apparmor_ptrace_access_check(struct task_struct *child, 127 unsigned int mode) 128 { 129 struct aa_label *tracer, *tracee; 130 const struct cred *cred; 131 int error; 132 bool needput; 133 134 cred = get_task_cred(child); 135 tracee = cred_label(cred); /* ref count on cred */ 136 tracer = __begin_current_label_crit_section(&needput); 137 error = aa_may_ptrace(current_cred(), tracer, cred, tracee, 138 (mode & PTRACE_MODE_READ) ? AA_PTRACE_READ 139 : AA_PTRACE_TRACE); 140 __end_current_label_crit_section(tracer, needput); 141 put_cred(cred); 142 143 return error; 144 } 145 146 static int apparmor_ptrace_traceme(struct task_struct *parent) 147 { 148 struct aa_label *tracer, *tracee; 149 const struct cred *cred; 150 int error; 151 bool needput; 152 153 tracee = __begin_current_label_crit_section(&needput); 154 cred = get_task_cred(parent); 155 tracer = cred_label(cred); /* ref count on cred */ 156 error = aa_may_ptrace(cred, tracer, current_cred(), tracee, 157 AA_PTRACE_TRACE); 158 put_cred(cred); 159 __end_current_label_crit_section(tracee, needput); 160 161 return error; 162 } 163 164 /* Derived from security/commoncap.c:cap_capget */ 165 static int apparmor_capget(const struct task_struct *target, kernel_cap_t *effective, 166 kernel_cap_t *inheritable, kernel_cap_t *permitted) 167 { 168 struct aa_label *label; 169 const struct cred *cred; 170 171 rcu_read_lock(); 172 cred = __task_cred(target); 173 label = aa_get_newest_cred_label(cred); 174 175 /* 176 * cap_capget is stacked ahead of this and will 177 * initialize effective and permitted. 178 */ 179 if (!unconfined(label)) { 180 struct aa_profile *profile; 181 struct label_it i; 182 183 label_for_each_confined(i, label, profile) { 184 kernel_cap_t allowed; 185 186 allowed = aa_profile_capget(profile); 187 *effective = cap_intersect(*effective, allowed); 188 *permitted = cap_intersect(*permitted, allowed); 189 } 190 } 191 rcu_read_unlock(); 192 aa_put_label(label); 193 194 return 0; 195 } 196 197 static int apparmor_capable(const struct cred *cred, struct user_namespace *ns, 198 int cap, unsigned int opts) 199 { 200 struct aa_label *label; 201 int error = 0; 202 203 label = aa_get_newest_cred_label(cred); 204 if (!unconfined(label)) 205 error = aa_capable(cred, label, cap, opts); 206 aa_put_label(label); 207 208 return error; 209 } 210 211 /** 212 * common_perm - basic common permission check wrapper fn for paths 213 * @op: operation being checked 214 * @path: path to check permission of (NOT NULL) 215 * @mask: requested permissions mask 216 * @cond: conditional info for the permission request (NOT NULL) 217 * 218 * Returns: %0 else error code if error or permission denied 219 */ 220 static int common_perm(const char *op, const struct path *path, u32 mask, 221 struct path_cond *cond) 222 { 223 struct aa_label *label; 224 int error = 0; 225 bool needput; 226 227 label = __begin_current_label_crit_section(&needput); 228 if (!unconfined(label)) 229 error = aa_path_perm(op, current_cred(), label, path, 0, mask, 230 cond); 231 __end_current_label_crit_section(label, needput); 232 233 return error; 234 } 235 236 /** 237 * common_perm_cond - common permission wrapper around inode cond 238 * @op: operation being checked 239 * @path: location to check (NOT NULL) 240 * @mask: requested permissions mask 241 * 242 * Returns: %0 else error code if error or permission denied 243 */ 244 static int common_perm_cond(const char *op, const struct path *path, u32 mask) 245 { 246 vfsuid_t vfsuid = i_uid_into_vfsuid(mnt_idmap(path->mnt), 247 d_backing_inode(path->dentry)); 248 struct path_cond cond = { 249 vfsuid_into_kuid(vfsuid), 250 d_backing_inode(path->dentry)->i_mode 251 }; 252 253 if (!path_mediated_fs(path->dentry)) 254 return 0; 255 256 return common_perm(op, path, mask, &cond); 257 } 258 259 /** 260 * common_perm_dir_dentry - common permission wrapper when path is dir, dentry 261 * @op: operation being checked 262 * @dir: directory of the dentry (NOT NULL) 263 * @dentry: dentry to check (NOT NULL) 264 * @mask: requested permissions mask 265 * @cond: conditional info for the permission request (NOT NULL) 266 * 267 * Returns: %0 else error code if error or permission denied 268 */ 269 static int common_perm_dir_dentry(const char *op, const struct path *dir, 270 struct dentry *dentry, u32 mask, 271 struct path_cond *cond) 272 { 273 struct path path = { .mnt = dir->mnt, .dentry = dentry }; 274 275 return common_perm(op, &path, mask, cond); 276 } 277 278 /** 279 * common_perm_rm - common permission wrapper for operations doing rm 280 * @op: operation being checked 281 * @dir: directory that the dentry is in (NOT NULL) 282 * @dentry: dentry being rm'd (NOT NULL) 283 * @mask: requested permission mask 284 * 285 * Returns: %0 else error code if error or permission denied 286 */ 287 static int common_perm_rm(const char *op, const struct path *dir, 288 struct dentry *dentry, u32 mask) 289 { 290 struct inode *inode = d_backing_inode(dentry); 291 struct path_cond cond = { }; 292 vfsuid_t vfsuid; 293 294 if (!inode || !path_mediated_fs(dentry)) 295 return 0; 296 297 vfsuid = i_uid_into_vfsuid(mnt_idmap(dir->mnt), inode); 298 cond.uid = vfsuid_into_kuid(vfsuid); 299 cond.mode = inode->i_mode; 300 301 return common_perm_dir_dentry(op, dir, dentry, mask, &cond); 302 } 303 304 /** 305 * common_perm_create - common permission wrapper for operations doing create 306 * @op: operation being checked 307 * @dir: directory that dentry will be created in (NOT NULL) 308 * @dentry: dentry to create (NOT NULL) 309 * @mask: request permission mask 310 * @mode: created file mode 311 * 312 * Returns: %0 else error code if error or permission denied 313 */ 314 static int common_perm_create(const char *op, const struct path *dir, 315 struct dentry *dentry, u32 mask, umode_t mode) 316 { 317 struct path_cond cond = { current_fsuid(), mode }; 318 319 if (!path_mediated_fs(dir->dentry)) 320 return 0; 321 322 return common_perm_dir_dentry(op, dir, dentry, mask, &cond); 323 } 324 325 static int apparmor_path_unlink(const struct path *dir, struct dentry *dentry) 326 { 327 return common_perm_rm(OP_UNLINK, dir, dentry, AA_MAY_DELETE); 328 } 329 330 static int apparmor_path_mkdir(const struct path *dir, struct dentry *dentry, 331 umode_t mode) 332 { 333 return common_perm_create(OP_MKDIR, dir, dentry, AA_MAY_CREATE, 334 S_IFDIR); 335 } 336 337 static int apparmor_path_rmdir(const struct path *dir, struct dentry *dentry) 338 { 339 return common_perm_rm(OP_RMDIR, dir, dentry, AA_MAY_DELETE); 340 } 341 342 static int apparmor_path_mknod(const struct path *dir, struct dentry *dentry, 343 umode_t mode, unsigned int dev) 344 { 345 return common_perm_create(OP_MKNOD, dir, dentry, AA_MAY_CREATE, mode); 346 } 347 348 static int apparmor_path_truncate(const struct path *path) 349 { 350 return common_perm_cond(OP_TRUNC, path, MAY_WRITE | AA_MAY_SETATTR); 351 } 352 353 static int apparmor_file_truncate(struct file *file) 354 { 355 return apparmor_path_truncate(&file->f_path); 356 } 357 358 static int apparmor_path_symlink(const struct path *dir, struct dentry *dentry, 359 const char *old_name) 360 { 361 return common_perm_create(OP_SYMLINK, dir, dentry, AA_MAY_CREATE, 362 S_IFLNK); 363 } 364 365 static int apparmor_path_link(struct dentry *old_dentry, const struct path *new_dir, 366 struct dentry *new_dentry) 367 { 368 struct aa_label *label; 369 int error = 0; 370 371 if (!path_mediated_fs(old_dentry)) 372 return 0; 373 374 label = begin_current_label_crit_section(); 375 if (!unconfined(label)) 376 error = aa_path_link(current_cred(), label, old_dentry, new_dir, 377 new_dentry); 378 end_current_label_crit_section(label); 379 380 return error; 381 } 382 383 static int apparmor_path_rename(const struct path *old_dir, struct dentry *old_dentry, 384 const struct path *new_dir, struct dentry *new_dentry, 385 const unsigned int flags) 386 { 387 struct aa_label *label; 388 int error = 0; 389 390 if (!path_mediated_fs(old_dentry)) 391 return 0; 392 if ((flags & RENAME_EXCHANGE) && !path_mediated_fs(new_dentry)) 393 return 0; 394 395 label = begin_current_label_crit_section(); 396 if (!unconfined(label)) { 397 struct mnt_idmap *idmap = mnt_idmap(old_dir->mnt); 398 vfsuid_t vfsuid; 399 struct path old_path = { .mnt = old_dir->mnt, 400 .dentry = old_dentry }; 401 struct path new_path = { .mnt = new_dir->mnt, 402 .dentry = new_dentry }; 403 struct path_cond cond = { 404 .mode = d_backing_inode(old_dentry)->i_mode 405 }; 406 vfsuid = i_uid_into_vfsuid(idmap, d_backing_inode(old_dentry)); 407 cond.uid = vfsuid_into_kuid(vfsuid); 408 409 if (flags & RENAME_EXCHANGE) { 410 struct path_cond cond_exchange = { 411 .mode = d_backing_inode(new_dentry)->i_mode, 412 }; 413 vfsuid = i_uid_into_vfsuid(idmap, d_backing_inode(new_dentry)); 414 cond_exchange.uid = vfsuid_into_kuid(vfsuid); 415 416 error = aa_path_perm(OP_RENAME_SRC, current_cred(), 417 label, &new_path, 0, 418 MAY_READ | AA_MAY_GETATTR | MAY_WRITE | 419 AA_MAY_SETATTR | AA_MAY_DELETE, 420 &cond_exchange); 421 if (!error) 422 error = aa_path_perm(OP_RENAME_DEST, current_cred(), 423 label, &old_path, 424 0, MAY_WRITE | AA_MAY_SETATTR | 425 AA_MAY_CREATE, &cond_exchange); 426 } 427 428 if (!error) 429 error = aa_path_perm(OP_RENAME_SRC, current_cred(), 430 label, &old_path, 0, 431 MAY_READ | AA_MAY_GETATTR | MAY_WRITE | 432 AA_MAY_SETATTR | AA_MAY_DELETE, 433 &cond); 434 if (!error) 435 error = aa_path_perm(OP_RENAME_DEST, current_cred(), 436 label, &new_path, 437 0, MAY_WRITE | AA_MAY_SETATTR | 438 AA_MAY_CREATE, &cond); 439 440 } 441 end_current_label_crit_section(label); 442 443 return error; 444 } 445 446 static int apparmor_path_chmod(const struct path *path, umode_t mode) 447 { 448 return common_perm_cond(OP_CHMOD, path, AA_MAY_CHMOD); 449 } 450 451 static int apparmor_path_chown(const struct path *path, kuid_t uid, kgid_t gid) 452 { 453 return common_perm_cond(OP_CHOWN, path, AA_MAY_CHOWN); 454 } 455 456 static int apparmor_inode_getattr(const struct path *path) 457 { 458 return common_perm_cond(OP_GETATTR, path, AA_MAY_GETATTR); 459 } 460 461 static int apparmor_file_open(struct file *file) 462 { 463 struct aa_file_ctx *fctx = file_ctx(file); 464 struct aa_label *label; 465 int error = 0; 466 bool needput; 467 468 if (!path_mediated_fs(file->f_path.dentry)) 469 return 0; 470 471 /* If in exec, permission is handled by bprm hooks. 472 * Cache permissions granted by the previous exec check, with 473 * implicit read and executable mmap which are required to 474 * actually execute the image. 475 * 476 * Illogically, FMODE_EXEC is in f_flags, not f_mode. 477 */ 478 if (file->f_flags & __FMODE_EXEC) { 479 fctx->allow = MAY_EXEC | MAY_READ | AA_EXEC_MMAP; 480 return 0; 481 } 482 483 label = aa_get_newest_cred_label_condref(file->f_cred, &needput); 484 if (!unconfined(label)) { 485 struct mnt_idmap *idmap = file_mnt_idmap(file); 486 struct inode *inode = file_inode(file); 487 vfsuid_t vfsuid; 488 struct path_cond cond = { 489 .mode = inode->i_mode, 490 }; 491 vfsuid = i_uid_into_vfsuid(idmap, inode); 492 cond.uid = vfsuid_into_kuid(vfsuid); 493 494 error = aa_path_perm(OP_OPEN, file->f_cred, 495 label, &file->f_path, 0, 496 aa_map_file_to_perms(file), &cond); 497 /* todo cache full allowed permissions set and state */ 498 fctx->allow = aa_map_file_to_perms(file); 499 } 500 aa_put_label_condref(label, needput); 501 502 return error; 503 } 504 505 static int apparmor_file_alloc_security(struct file *file) 506 { 507 struct aa_file_ctx *ctx = file_ctx(file); 508 struct aa_label *label = begin_current_label_crit_section(); 509 510 spin_lock_init(&ctx->lock); 511 rcu_assign_pointer(ctx->label, aa_get_label(label)); 512 end_current_label_crit_section(label); 513 return 0; 514 } 515 516 static void apparmor_file_free_security(struct file *file) 517 { 518 struct aa_file_ctx *ctx = file_ctx(file); 519 520 if (ctx) 521 aa_put_label(rcu_access_pointer(ctx->label)); 522 } 523 524 static int common_file_perm(const char *op, struct file *file, u32 mask) 525 { 526 struct aa_label *label; 527 int error = 0; 528 529 label = begin_current_label_crit_section(); 530 error = aa_file_perm(op, current_cred(), label, file, mask, false); 531 end_current_label_crit_section(label); 532 533 return error; 534 } 535 536 static int apparmor_file_receive(struct file *file) 537 { 538 return common_file_perm(OP_FRECEIVE, file, aa_map_file_to_perms(file)); 539 } 540 541 static int apparmor_file_permission(struct file *file, int mask) 542 { 543 return common_file_perm(OP_FPERM, file, mask); 544 } 545 546 static int apparmor_file_lock(struct file *file, unsigned int cmd) 547 { 548 u32 mask = AA_MAY_LOCK; 549 550 if (cmd == F_WRLCK) 551 mask |= MAY_WRITE; 552 553 return common_file_perm(OP_FLOCK, file, mask); 554 } 555 556 static int common_mmap(const char *op, struct file *file, unsigned long prot, 557 unsigned long flags) 558 { 559 int mask = 0; 560 561 if (!file || !file_ctx(file)) 562 return 0; 563 564 if (prot & PROT_READ) 565 mask |= MAY_READ; 566 /* 567 * Private mappings don't require write perms since they don't 568 * write back to the files 569 */ 570 if ((prot & PROT_WRITE) && !(flags & MAP_PRIVATE)) 571 mask |= MAY_WRITE; 572 if (prot & PROT_EXEC) 573 mask |= AA_EXEC_MMAP; 574 575 return common_file_perm(op, file, mask); 576 } 577 578 static int apparmor_mmap_file(struct file *file, unsigned long reqprot, 579 unsigned long prot, unsigned long flags) 580 { 581 return common_mmap(OP_FMMAP, file, prot, flags); 582 } 583 584 static int apparmor_file_mprotect(struct vm_area_struct *vma, 585 unsigned long reqprot, unsigned long prot) 586 { 587 return common_mmap(OP_FMPROT, vma->vm_file, prot, 588 !(vma->vm_flags & VM_SHARED) ? MAP_PRIVATE : 0); 589 } 590 591 #ifdef CONFIG_IO_URING 592 static const char *audit_uring_mask(u32 mask) 593 { 594 if (mask & AA_MAY_CREATE_SQPOLL) 595 return "sqpoll"; 596 if (mask & AA_MAY_OVERRIDE_CRED) 597 return "override_creds"; 598 return ""; 599 } 600 601 static void audit_uring_cb(struct audit_buffer *ab, void *va) 602 { 603 struct apparmor_audit_data *ad = aad_of_va(va); 604 605 if (ad->request & AA_URING_PERM_MASK) { 606 audit_log_format(ab, " requested=\"%s\"", 607 audit_uring_mask(ad->request)); 608 if (ad->denied & AA_URING_PERM_MASK) { 609 audit_log_format(ab, " denied=\"%s\"", 610 audit_uring_mask(ad->denied)); 611 } 612 } 613 if (ad->uring.target) { 614 audit_log_format(ab, " tcontext="); 615 aa_label_xaudit(ab, labels_ns(ad->subj_label), 616 ad->uring.target, 617 FLAGS_NONE, GFP_ATOMIC); 618 } 619 } 620 621 static int profile_uring(struct aa_profile *profile, u32 request, 622 struct aa_label *new, int cap, 623 struct apparmor_audit_data *ad) 624 { 625 unsigned int state; 626 struct aa_ruleset *rules; 627 int error = 0; 628 629 AA_BUG(!profile); 630 631 rules = profile->label.rules[0]; 632 state = RULE_MEDIATES(rules, AA_CLASS_IO_URING); 633 if (state) { 634 struct aa_perms perms = { }; 635 636 if (new) { 637 aa_label_match(profile, rules, new, state, 638 false, request, &perms); 639 } else { 640 perms = *aa_lookup_perms(rules->policy, state); 641 } 642 aa_apply_modes_to_perms(profile, &perms); 643 error = aa_check_perms(profile, &perms, request, ad, 644 audit_uring_cb); 645 } 646 647 return error; 648 } 649 650 /** 651 * apparmor_uring_override_creds - check the requested cred override 652 * @new: the target creds 653 * 654 * Check to see if the current task is allowed to override it's credentials 655 * to service an io_uring operation. 656 */ 657 static int apparmor_uring_override_creds(const struct cred *new) 658 { 659 struct aa_profile *profile; 660 struct aa_label *label; 661 int error; 662 bool needput; 663 DEFINE_AUDIT_DATA(ad, LSM_AUDIT_DATA_NONE, AA_CLASS_IO_URING, 664 OP_URING_OVERRIDE); 665 666 ad.uring.target = cred_label(new); 667 label = __begin_current_label_crit_section(&needput); 668 error = fn_for_each(label, profile, 669 profile_uring(profile, AA_MAY_OVERRIDE_CRED, 670 cred_label(new), CAP_SYS_ADMIN, &ad)); 671 __end_current_label_crit_section(label, needput); 672 673 return error; 674 } 675 676 /** 677 * apparmor_uring_sqpoll - check if a io_uring polling thread can be created 678 * 679 * Check to see if the current task is allowed to create a new io_uring 680 * kernel polling thread. 681 */ 682 static int apparmor_uring_sqpoll(void) 683 { 684 struct aa_profile *profile; 685 struct aa_label *label; 686 int error; 687 bool needput; 688 DEFINE_AUDIT_DATA(ad, LSM_AUDIT_DATA_NONE, AA_CLASS_IO_URING, 689 OP_URING_SQPOLL); 690 691 label = __begin_current_label_crit_section(&needput); 692 error = fn_for_each(label, profile, 693 profile_uring(profile, AA_MAY_CREATE_SQPOLL, 694 NULL, CAP_SYS_ADMIN, &ad)); 695 __end_current_label_crit_section(label, needput); 696 697 return error; 698 } 699 #endif /* CONFIG_IO_URING */ 700 701 static int apparmor_sb_mount(const char *dev_name, const struct path *path, 702 const char *type, unsigned long flags, void *data) 703 { 704 struct aa_label *label; 705 int error = 0; 706 bool needput; 707 708 /* Discard magic */ 709 if ((flags & MS_MGC_MSK) == MS_MGC_VAL) 710 flags &= ~MS_MGC_MSK; 711 712 flags &= ~AA_MS_IGNORE_MASK; 713 714 label = __begin_current_label_crit_section(&needput); 715 if (!unconfined(label)) { 716 if (flags & MS_REMOUNT) 717 error = aa_remount(current_cred(), label, path, flags, 718 data); 719 else if (flags & MS_BIND) 720 error = aa_bind_mount(current_cred(), label, path, 721 dev_name, flags); 722 else if (flags & (MS_SHARED | MS_PRIVATE | MS_SLAVE | 723 MS_UNBINDABLE)) 724 error = aa_mount_change_type(current_cred(), label, 725 path, flags); 726 else if (flags & MS_MOVE) 727 error = aa_move_mount_old(current_cred(), label, path, 728 dev_name); 729 else 730 error = aa_new_mount(current_cred(), label, dev_name, 731 path, type, flags, data); 732 } 733 __end_current_label_crit_section(label, needput); 734 735 return error; 736 } 737 738 static int apparmor_move_mount(const struct path *from_path, 739 const struct path *to_path) 740 { 741 struct aa_label *label; 742 int error = 0; 743 bool needput; 744 745 label = __begin_current_label_crit_section(&needput); 746 if (!unconfined(label)) 747 error = aa_move_mount(current_cred(), label, from_path, 748 to_path); 749 __end_current_label_crit_section(label, needput); 750 751 return error; 752 } 753 754 static int apparmor_sb_umount(struct vfsmount *mnt, int flags) 755 { 756 struct aa_label *label; 757 int error = 0; 758 bool needput; 759 760 label = __begin_current_label_crit_section(&needput); 761 if (!unconfined(label)) 762 error = aa_umount(current_cred(), label, mnt, flags); 763 __end_current_label_crit_section(label, needput); 764 765 return error; 766 } 767 768 static int apparmor_sb_pivotroot(const struct path *old_path, 769 const struct path *new_path) 770 { 771 struct aa_label *label; 772 int error = 0; 773 774 label = aa_get_current_label(); 775 if (!unconfined(label)) 776 error = aa_pivotroot(current_cred(), label, old_path, new_path); 777 aa_put_label(label); 778 779 return error; 780 } 781 782 static int apparmor_getselfattr(unsigned int attr, struct lsm_ctx __user *lx, 783 u32 *size, u32 flags) 784 { 785 int error = -ENOENT; 786 struct aa_task_ctx *ctx = task_ctx(current); 787 struct aa_label *label = NULL; 788 char *value = NULL; 789 790 switch (attr) { 791 case LSM_ATTR_CURRENT: 792 label = aa_get_newest_label(cred_label(current_cred())); 793 break; 794 case LSM_ATTR_PREV: 795 if (ctx->previous) 796 label = aa_get_newest_label(ctx->previous); 797 break; 798 case LSM_ATTR_EXEC: 799 if (ctx->onexec) 800 label = aa_get_newest_label(ctx->onexec); 801 break; 802 default: 803 error = -EOPNOTSUPP; 804 break; 805 } 806 807 if (label) { 808 error = aa_getprocattr(label, &value, false); 809 if (error > 0) 810 error = lsm_fill_user_ctx(lx, size, value, error, 811 LSM_ID_APPARMOR, 0); 812 kfree(value); 813 } 814 815 aa_put_label(label); 816 817 if (error < 0) 818 return error; 819 return 1; 820 } 821 822 static int apparmor_getprocattr(struct task_struct *task, const char *name, 823 char **value) 824 { 825 int error = -ENOENT; 826 struct aa_label *label = NULL; 827 828 rcu_read_lock(); 829 if (strcmp(name, "current") == 0) 830 label = aa_get_newest_cred_label(__task_cred(task)); 831 else if (strcmp(name, "prev") == 0 && task_ctx(task)->previous) 832 label = aa_get_newest_label(task_ctx(task)->previous); 833 else if (strcmp(name, "exec") == 0 && task_ctx(task)->onexec) 834 label = aa_get_newest_label(task_ctx(task)->onexec); 835 else 836 error = -EINVAL; 837 rcu_read_unlock(); 838 839 if (label) 840 error = aa_getprocattr(label, value, true); 841 842 aa_put_label(label); 843 844 return error; 845 } 846 847 static int do_setattr(u64 attr, void *value, size_t size) 848 { 849 char *command, *largs = NULL, *args = value; 850 size_t arg_size; 851 int error; 852 DEFINE_AUDIT_DATA(ad, LSM_AUDIT_DATA_NONE, AA_CLASS_NONE, 853 OP_SETPROCATTR); 854 855 if (size == 0) 856 return -EINVAL; 857 858 /* AppArmor requires that the buffer must be null terminated atm */ 859 if (args[size - 1] != '\0') { 860 largs = args = kmemdup_nul(value, size, GFP_KERNEL); 861 if (!args) 862 return -ENOMEM; 863 } 864 865 error = -EINVAL; 866 args = strim(args); 867 command = strsep(&args, " "); 868 if (!args) 869 goto out; 870 args = skip_spaces(args); 871 if (!*args) 872 goto out; 873 874 arg_size = size - (args - (largs ? largs : (char *) value)); 875 if (attr == LSM_ATTR_CURRENT) { 876 if (strcmp(command, "changehat") == 0) { 877 error = aa_setprocattr_changehat(args, arg_size, 878 AA_CHANGE_NOFLAGS); 879 } else if (strcmp(command, "permhat") == 0) { 880 error = aa_setprocattr_changehat(args, arg_size, 881 AA_CHANGE_TEST); 882 } else if (strcmp(command, "changeprofile") == 0) { 883 error = aa_change_profile(args, AA_CHANGE_NOFLAGS); 884 } else if (strcmp(command, "permprofile") == 0) { 885 error = aa_change_profile(args, AA_CHANGE_TEST); 886 } else if (strcmp(command, "stack") == 0) { 887 error = aa_change_profile(args, AA_CHANGE_STACK); 888 } else 889 goto fail; 890 } else if (attr == LSM_ATTR_EXEC) { 891 if (strcmp(command, "exec") == 0) 892 error = aa_change_profile(args, AA_CHANGE_ONEXEC); 893 else if (strcmp(command, "stack") == 0) 894 error = aa_change_profile(args, (AA_CHANGE_ONEXEC | 895 AA_CHANGE_STACK)); 896 else 897 goto fail; 898 } else 899 /* only support the "current" and "exec" process attributes */ 900 goto fail; 901 902 if (!error) 903 error = size; 904 out: 905 kfree(largs); 906 return error; 907 908 fail: 909 ad.subj_label = begin_current_label_crit_section(); 910 if (attr == LSM_ATTR_CURRENT) 911 ad.info = "current"; 912 else if (attr == LSM_ATTR_EXEC) 913 ad.info = "exec"; 914 else 915 ad.info = "invalid"; 916 ad.error = error = -EINVAL; 917 aa_audit_msg(AUDIT_APPARMOR_DENIED, &ad, NULL); 918 end_current_label_crit_section(ad.subj_label); 919 goto out; 920 } 921 922 static int apparmor_setselfattr(unsigned int attr, struct lsm_ctx *ctx, 923 u32 size, u32 flags) 924 { 925 int rc; 926 927 if (attr != LSM_ATTR_CURRENT && attr != LSM_ATTR_EXEC) 928 return -EOPNOTSUPP; 929 930 rc = do_setattr(attr, ctx->ctx, ctx->ctx_len); 931 if (rc > 0) 932 return 0; 933 return rc; 934 } 935 936 static int apparmor_setprocattr(const char *name, void *value, 937 size_t size) 938 { 939 int attr = lsm_name_to_attr(name); 940 941 if (attr) 942 return do_setattr(attr, value, size); 943 return -EINVAL; 944 } 945 946 /** 947 * apparmor_bprm_committing_creds - do task cleanup on committing new creds 948 * @bprm: binprm for the exec (NOT NULL) 949 */ 950 static void apparmor_bprm_committing_creds(const struct linux_binprm *bprm) 951 { 952 struct aa_label *label = aa_current_raw_label(); 953 struct aa_label *new_label = cred_label(bprm->cred); 954 955 /* bail out if unconfined or not changing profile */ 956 if ((new_label->proxy == label->proxy) || 957 (unconfined(new_label))) 958 return; 959 960 aa_inherit_files(bprm->cred, current->files); 961 962 current->pdeath_signal = 0; 963 964 /* reset soft limits and set hard limits for the new label */ 965 __aa_transition_rlimits(label, new_label); 966 } 967 968 /** 969 * apparmor_bprm_committed_creds() - do cleanup after new creds committed 970 * @bprm: binprm for the exec (NOT NULL) 971 */ 972 static void apparmor_bprm_committed_creds(const struct linux_binprm *bprm) 973 { 974 /* clear out temporary/transitional state from the context */ 975 aa_clear_task_ctx_trans(task_ctx(current)); 976 977 return; 978 } 979 980 static void apparmor_current_getlsmprop_subj(struct lsm_prop *prop) 981 { 982 struct aa_label *label; 983 bool needput; 984 985 label = __begin_current_label_crit_section(&needput); 986 prop->apparmor.label = label; 987 __end_current_label_crit_section(label, needput); 988 } 989 990 static void apparmor_task_getlsmprop_obj(struct task_struct *p, 991 struct lsm_prop *prop) 992 { 993 struct aa_label *label = aa_get_task_label(p); 994 995 prop->apparmor.label = label; 996 aa_put_label(label); 997 } 998 999 static int apparmor_task_setrlimit(struct task_struct *task, 1000 unsigned int resource, struct rlimit *new_rlim) 1001 { 1002 struct aa_label *label; 1003 int error = 0; 1004 bool needput; 1005 1006 label = __begin_current_label_crit_section(&needput); 1007 1008 if (!unconfined(label)) 1009 error = aa_task_setrlimit(current_cred(), label, task, 1010 resource, new_rlim); 1011 __end_current_label_crit_section(label, needput); 1012 1013 return error; 1014 } 1015 1016 static int apparmor_task_kill(struct task_struct *target, struct kernel_siginfo *info, 1017 int sig, const struct cred *cred) 1018 { 1019 const struct cred *tc; 1020 struct aa_label *cl, *tl; 1021 int error; 1022 bool needput; 1023 1024 tc = get_task_cred(target); 1025 tl = aa_get_newest_cred_label(tc); 1026 if (cred) { 1027 /* 1028 * Dealing with USB IO specific behavior 1029 */ 1030 cl = aa_get_newest_cred_label(cred); 1031 error = aa_may_signal(cred, cl, tc, tl, sig); 1032 aa_put_label(cl); 1033 } else { 1034 cl = __begin_current_label_crit_section(&needput); 1035 error = aa_may_signal(current_cred(), cl, tc, tl, sig); 1036 __end_current_label_crit_section(cl, needput); 1037 } 1038 aa_put_label(tl); 1039 put_cred(tc); 1040 1041 return error; 1042 } 1043 1044 static int apparmor_userns_create(const struct cred *cred) 1045 { 1046 struct aa_label *label; 1047 struct aa_profile *profile; 1048 int error = 0; 1049 DEFINE_AUDIT_DATA(ad, LSM_AUDIT_DATA_TASK, AA_CLASS_NS, 1050 OP_USERNS_CREATE); 1051 1052 ad.subj_cred = current_cred(); 1053 1054 label = begin_current_label_crit_section(); 1055 if (!unconfined(label)) { 1056 error = fn_for_each(label, profile, 1057 aa_profile_ns_perm(profile, &ad, 1058 AA_USERNS_CREATE)); 1059 } 1060 end_current_label_crit_section(label); 1061 1062 return error; 1063 } 1064 1065 static int apparmor_sk_alloc_security(struct sock *sk, int family, gfp_t gfp) 1066 { 1067 struct aa_sk_ctx *ctx = aa_sock(sk); 1068 struct aa_label *label; 1069 bool needput; 1070 1071 label = __begin_current_label_crit_section(&needput); 1072 //spin_lock_init(&ctx->lock); 1073 rcu_assign_pointer(ctx->label, aa_get_label(label)); 1074 rcu_assign_pointer(ctx->peer, NULL); 1075 rcu_assign_pointer(ctx->peer_lastupdate, NULL); 1076 __end_current_label_crit_section(label, needput); 1077 return 0; 1078 } 1079 1080 static void apparmor_sk_free_security(struct sock *sk) 1081 { 1082 struct aa_sk_ctx *ctx = aa_sock(sk); 1083 1084 /* dead these won't be updated any more */ 1085 aa_put_label(rcu_dereference_protected(ctx->label, true)); 1086 aa_put_label(rcu_dereference_protected(ctx->peer, true)); 1087 aa_put_label(rcu_dereference_protected(ctx->peer_lastupdate, true)); 1088 } 1089 1090 /** 1091 * apparmor_sk_clone_security - clone the sk_security field 1092 * @sk: sock to have security cloned 1093 * @newsk: sock getting clone 1094 */ 1095 static void apparmor_sk_clone_security(const struct sock *sk, 1096 struct sock *newsk) 1097 { 1098 struct aa_sk_ctx *ctx = aa_sock(sk); 1099 struct aa_sk_ctx *new = aa_sock(newsk); 1100 1101 /* not actually in use yet */ 1102 if (rcu_access_pointer(ctx->label) != rcu_access_pointer(new->label)) { 1103 aa_put_label(rcu_dereference_protected(new->label, true)); 1104 rcu_assign_pointer(new->label, aa_get_label_rcu(&ctx->label)); 1105 } 1106 1107 if (rcu_access_pointer(ctx->peer) != rcu_access_pointer(new->peer)) { 1108 aa_put_label(rcu_dereference_protected(new->peer, true)); 1109 rcu_assign_pointer(new->peer, aa_get_label_rcu(&ctx->peer)); 1110 } 1111 1112 if (rcu_access_pointer(ctx->peer_lastupdate) != rcu_access_pointer(new->peer_lastupdate)) { 1113 aa_put_label(rcu_dereference_protected(new->peer_lastupdate, true)); 1114 rcu_assign_pointer(new->peer_lastupdate, 1115 aa_get_label_rcu(&ctx->peer_lastupdate)); 1116 } 1117 } 1118 1119 static int unix_connect_perm(const struct cred *cred, struct aa_label *label, 1120 struct sock *sk, struct sock *peer_sk) 1121 { 1122 struct aa_sk_ctx *peer_ctx = aa_sock(peer_sk); 1123 int error; 1124 1125 error = aa_unix_peer_perm(cred, label, OP_CONNECT, 1126 (AA_MAY_CONNECT | AA_MAY_SEND | AA_MAY_RECEIVE), 1127 sk, peer_sk, 1128 rcu_dereference_protected(peer_ctx->label, 1129 lockdep_is_held(&unix_sk(peer_sk)->lock))); 1130 if (!is_unix_fs(peer_sk)) { 1131 last_error(error, 1132 aa_unix_peer_perm(cred, 1133 rcu_dereference_protected(peer_ctx->label, 1134 lockdep_is_held(&unix_sk(peer_sk)->lock)), 1135 OP_CONNECT, 1136 (AA_MAY_ACCEPT | AA_MAY_SEND | AA_MAY_RECEIVE), 1137 peer_sk, sk, label)); 1138 } 1139 1140 return error; 1141 } 1142 1143 /* lockdep check in unix_connect_perm - push sks here to check */ 1144 static void unix_connect_peers(struct aa_sk_ctx *sk_ctx, 1145 struct aa_sk_ctx *peer_ctx) 1146 { 1147 /* Cross reference the peer labels for SO_PEERSEC */ 1148 struct aa_label *label = rcu_dereference_protected(sk_ctx->label, true); 1149 1150 aa_get_label(label); 1151 aa_put_label(rcu_dereference_protected(peer_ctx->peer, 1152 true)); 1153 rcu_assign_pointer(peer_ctx->peer, label); /* transfer cnt */ 1154 1155 label = aa_get_label(rcu_dereference_protected(peer_ctx->label, 1156 true)); 1157 //spin_unlock(&peer_ctx->lock); 1158 1159 //spin_lock(&sk_ctx->lock); 1160 aa_put_label(rcu_dereference_protected(sk_ctx->peer, 1161 true)); 1162 aa_put_label(rcu_dereference_protected(sk_ctx->peer_lastupdate, 1163 true)); 1164 1165 rcu_assign_pointer(sk_ctx->peer, aa_get_label(label)); 1166 rcu_assign_pointer(sk_ctx->peer_lastupdate, label); /* transfer cnt */ 1167 //spin_unlock(&sk_ctx->lock); 1168 } 1169 1170 /** 1171 * apparmor_unix_stream_connect - check perms before making unix domain conn 1172 * @sk: sk attempting to connect 1173 * @peer_sk: sk that is accepting the connection 1174 * @newsk: new sk created for this connection 1175 * peer is locked when this hook is called 1176 * 1177 * Return: 1178 * 0 if connection is permitted 1179 * error code on denial or failure 1180 */ 1181 static int apparmor_unix_stream_connect(struct sock *sk, struct sock *peer_sk, 1182 struct sock *newsk) 1183 { 1184 struct aa_sk_ctx *sk_ctx = aa_sock(sk); 1185 struct aa_sk_ctx *peer_ctx = aa_sock(peer_sk); 1186 struct aa_sk_ctx *new_ctx = aa_sock(newsk); 1187 struct aa_label *label; 1188 int error; 1189 bool needput; 1190 1191 label = __begin_current_label_crit_section(&needput); 1192 error = unix_connect_perm(current_cred(), label, sk, peer_sk); 1193 __end_current_label_crit_section(label, needput); 1194 1195 if (error) 1196 return error; 1197 1198 /* newsk doesn't go through post_create, but does go through 1199 * security_sk_alloc() 1200 */ 1201 rcu_assign_pointer(new_ctx->label, 1202 aa_get_label(rcu_dereference_protected(peer_ctx->label, 1203 true))); 1204 1205 /* Cross reference the peer labels for SO_PEERSEC */ 1206 unix_connect_peers(sk_ctx, new_ctx); 1207 1208 return 0; 1209 } 1210 1211 /** 1212 * apparmor_unix_may_send - check perms before conn or sending unix dgrams 1213 * @sock: socket sending the message 1214 * @peer: socket message is being send to 1215 * 1216 * Performs bidirectional permission checks for Unix domain socket communication: 1217 * 1. Verifies sender has AA_MAY_SEND to target socket 1218 * 2. Verifies receiver has AA_MAY_RECEIVE from source socket 1219 * 1220 * sock and peer are locked when this hook is called 1221 * called by: dgram_connect peer setup but path not copied to newsk 1222 * 1223 * Return: 1224 * 0 if transmission is permitted 1225 * error code on denial or failure 1226 */ 1227 static int apparmor_unix_may_send(struct socket *sock, struct socket *peer) 1228 { 1229 struct aa_sk_ctx *peer_ctx = aa_sock(peer->sk); 1230 struct aa_label *label; 1231 int error; 1232 bool needput; 1233 1234 label = __begin_current_label_crit_section(&needput); 1235 error = xcheck(aa_unix_peer_perm(current_cred(), 1236 label, OP_SENDMSG, AA_MAY_SEND, 1237 sock->sk, peer->sk, 1238 rcu_dereference_protected(peer_ctx->label, 1239 true)), 1240 aa_unix_peer_perm(peer->file ? peer->file->f_cred : NULL, 1241 rcu_dereference_protected(peer_ctx->label, 1242 true), 1243 OP_SENDMSG, AA_MAY_RECEIVE, peer->sk, 1244 sock->sk, label)); 1245 __end_current_label_crit_section(label, needput); 1246 1247 return error; 1248 } 1249 1250 static int apparmor_socket_create(int family, int type, int protocol, int kern) 1251 { 1252 struct aa_label *label; 1253 int error = 0; 1254 1255 AA_BUG(in_interrupt()); 1256 1257 if (kern) 1258 return 0; 1259 1260 label = begin_current_label_crit_section(); 1261 if (!unconfined(label)) { 1262 if (family == PF_UNIX) 1263 error = aa_unix_create_perm(label, family, type, 1264 protocol); 1265 else 1266 error = aa_af_perm(current_cred(), label, OP_CREATE, 1267 AA_MAY_CREATE, family, type, 1268 protocol); 1269 } 1270 end_current_label_crit_section(label); 1271 1272 return error; 1273 } 1274 1275 /** 1276 * apparmor_socket_post_create - setup the per-socket security struct 1277 * @sock: socket that is being setup 1278 * @family: family of socket being created 1279 * @type: type of the socket 1280 * @protocol: protocol of the socket 1281 * @kern: socket is a special kernel socket 1282 * 1283 * Note: 1284 * - kernel sockets labeled kernel_t used to use unconfined 1285 * - socket may not have sk here if created with sock_create_lite or 1286 * sock_alloc. These should be accept cases which will be handled in 1287 * sock_graft. 1288 */ 1289 static int apparmor_socket_post_create(struct socket *sock, int family, 1290 int type, int protocol, int kern) 1291 { 1292 struct aa_label *label; 1293 1294 if (kern) { 1295 label = aa_get_label(kernel_t); 1296 } else 1297 label = aa_get_current_label(); 1298 1299 if (sock->sk) { 1300 struct aa_sk_ctx *ctx = aa_sock(sock->sk); 1301 1302 /* still not live */ 1303 aa_put_label(rcu_dereference_protected(ctx->label, true)); 1304 rcu_assign_pointer(ctx->label, aa_get_label(label)); 1305 } 1306 aa_put_label(label); 1307 1308 return 0; 1309 } 1310 1311 static int apparmor_socket_socketpair(struct socket *socka, 1312 struct socket *sockb) 1313 { 1314 struct aa_sk_ctx *a_ctx = aa_sock(socka->sk); 1315 struct aa_sk_ctx *b_ctx = aa_sock(sockb->sk); 1316 struct aa_label *label; 1317 1318 /* socks not live yet - initial values set in sk_alloc */ 1319 label = begin_current_label_crit_section(); 1320 if (rcu_access_pointer(a_ctx->label) != label) { 1321 AA_BUG("a_ctx != label"); 1322 aa_put_label(rcu_dereference_protected(a_ctx->label, true)); 1323 rcu_assign_pointer(a_ctx->label, aa_get_label(label)); 1324 } 1325 if (rcu_access_pointer(b_ctx->label) != label) { 1326 AA_BUG("b_ctx != label"); 1327 aa_put_label(rcu_dereference_protected(b_ctx->label, true)); 1328 rcu_assign_pointer(b_ctx->label, aa_get_label(label)); 1329 } 1330 1331 if (socka->sk->sk_family == PF_UNIX) { 1332 /* unix socket pairs by-pass unix_stream_connect */ 1333 unix_connect_peers(a_ctx, b_ctx); 1334 } 1335 end_current_label_crit_section(label); 1336 1337 return 0; 1338 } 1339 1340 /** 1341 * apparmor_socket_bind - check perms before bind addr to socket 1342 * @sock: socket to bind the address to (must be non-NULL) 1343 * @address: address that is being bound (must be non-NULL) 1344 * @addrlen: length of @address 1345 * 1346 * Performs security checks before allowing a socket to bind to an address. 1347 * Handles Unix domain sockets specially through aa_unix_bind_perm(). 1348 * For other socket families, uses generic permission check via aa_sk_perm(). 1349 * 1350 * Return: 1351 * 0 if binding is permitted 1352 * error code on denial or invalid parameters 1353 */ 1354 static int apparmor_socket_bind(struct socket *sock, 1355 struct sockaddr *address, int addrlen) 1356 { 1357 AA_BUG(!sock); 1358 AA_BUG(!sock->sk); 1359 AA_BUG(!address); 1360 AA_BUG(in_interrupt()); 1361 1362 if (sock->sk->sk_family == PF_UNIX) 1363 return aa_unix_bind_perm(sock, address, addrlen); 1364 return aa_sk_perm(OP_BIND, AA_MAY_BIND, sock->sk); 1365 } 1366 1367 static int apparmor_socket_connect(struct socket *sock, 1368 struct sockaddr *address, int addrlen) 1369 { 1370 AA_BUG(!sock); 1371 AA_BUG(!sock->sk); 1372 AA_BUG(!address); 1373 AA_BUG(in_interrupt()); 1374 1375 /* PF_UNIX goes through unix_stream_connect && unix_may_send */ 1376 if (sock->sk->sk_family == PF_UNIX) 1377 return 0; 1378 return aa_sk_perm(OP_CONNECT, AA_MAY_CONNECT, sock->sk); 1379 } 1380 1381 static int apparmor_socket_listen(struct socket *sock, int backlog) 1382 { 1383 AA_BUG(!sock); 1384 AA_BUG(!sock->sk); 1385 AA_BUG(in_interrupt()); 1386 1387 if (sock->sk->sk_family == PF_UNIX) 1388 return aa_unix_listen_perm(sock, backlog); 1389 return aa_sk_perm(OP_LISTEN, AA_MAY_LISTEN, sock->sk); 1390 } 1391 1392 /* 1393 * Note: while @newsock is created and has some information, the accept 1394 * has not been done. 1395 */ 1396 static int apparmor_socket_accept(struct socket *sock, struct socket *newsock) 1397 { 1398 AA_BUG(!sock); 1399 AA_BUG(!sock->sk); 1400 AA_BUG(!newsock); 1401 AA_BUG(in_interrupt()); 1402 1403 if (sock->sk->sk_family == PF_UNIX) 1404 return aa_unix_accept_perm(sock, newsock); 1405 return aa_sk_perm(OP_ACCEPT, AA_MAY_ACCEPT, sock->sk); 1406 } 1407 1408 static int aa_sock_msg_perm(const char *op, u32 request, struct socket *sock, 1409 struct msghdr *msg, int size) 1410 { 1411 AA_BUG(!sock); 1412 AA_BUG(!sock->sk); 1413 AA_BUG(!msg); 1414 AA_BUG(in_interrupt()); 1415 1416 /* PF_UNIX goes through unix_may_send */ 1417 if (sock->sk->sk_family == PF_UNIX) 1418 return 0; 1419 return aa_sk_perm(op, request, sock->sk); 1420 } 1421 1422 static int apparmor_socket_sendmsg(struct socket *sock, 1423 struct msghdr *msg, int size) 1424 { 1425 int error = aa_sock_msg_perm(OP_SENDMSG, AA_MAY_SEND, sock, msg, size); 1426 1427 if (error) 1428 return error; 1429 1430 /* TCP fast open carries connect() semantics in sendmsg(); mediate 1431 * the implicit connect so it cannot bypass the connect permission. 1432 */ 1433 if ((msg->msg_flags & MSG_FASTOPEN) && msg->msg_name && 1434 (sk_is_tcp(sock->sk) || 1435 (sk_is_inet(sock->sk) && sock->sk->sk_type == SOCK_STREAM && 1436 sock->sk->sk_protocol == IPPROTO_MPTCP))) 1437 error = aa_sk_perm(OP_CONNECT, AA_MAY_CONNECT, sock->sk); 1438 1439 return error; 1440 } 1441 1442 static int apparmor_socket_recvmsg(struct socket *sock, 1443 struct msghdr *msg, int size, int flags) 1444 { 1445 return aa_sock_msg_perm(OP_RECVMSG, AA_MAY_RECEIVE, sock, msg, size); 1446 } 1447 1448 /* revaliation, get/set attr, shutdown */ 1449 static int aa_sock_perm(const char *op, u32 request, struct socket *sock) 1450 { 1451 AA_BUG(!sock); 1452 AA_BUG(!sock->sk); 1453 AA_BUG(in_interrupt()); 1454 1455 if (sock->sk->sk_family == PF_UNIX) 1456 return aa_unix_sock_perm(op, request, sock); 1457 return aa_sk_perm(op, request, sock->sk); 1458 } 1459 1460 static int apparmor_socket_getsockname(struct socket *sock) 1461 { 1462 return aa_sock_perm(OP_GETSOCKNAME, AA_MAY_GETATTR, sock); 1463 } 1464 1465 static int apparmor_socket_getpeername(struct socket *sock) 1466 { 1467 return aa_sock_perm(OP_GETPEERNAME, AA_MAY_GETATTR, sock); 1468 } 1469 1470 /* revaliation, get/set attr, opt */ 1471 static int aa_sock_opt_perm(const char *op, u32 request, struct socket *sock, 1472 int level, int optname) 1473 { 1474 AA_BUG(!sock); 1475 AA_BUG(!sock->sk); 1476 AA_BUG(in_interrupt()); 1477 1478 if (sock->sk->sk_family == PF_UNIX) 1479 return aa_unix_opt_perm(op, request, sock, level, optname); 1480 return aa_sk_perm(op, request, sock->sk); 1481 } 1482 1483 static int apparmor_socket_getsockopt(struct socket *sock, int level, 1484 int optname) 1485 { 1486 return aa_sock_opt_perm(OP_GETSOCKOPT, AA_MAY_GETOPT, sock, 1487 level, optname); 1488 } 1489 1490 static int apparmor_socket_setsockopt(struct socket *sock, int level, 1491 int optname) 1492 { 1493 return aa_sock_opt_perm(OP_SETSOCKOPT, AA_MAY_SETOPT, sock, 1494 level, optname); 1495 } 1496 1497 static int apparmor_socket_shutdown(struct socket *sock, int how) 1498 { 1499 return aa_sock_perm(OP_SHUTDOWN, AA_MAY_SHUTDOWN, sock); 1500 } 1501 1502 #ifdef CONFIG_NETWORK_SECMARK 1503 /** 1504 * apparmor_socket_sock_rcv_skb - check perms before associating skb to sk 1505 * @sk: sk to associate @skb with 1506 * @skb: skb to check for perms 1507 * 1508 * Note: can not sleep may be called with locks held 1509 * 1510 * don't want protocol specific in __skb_recv_datagram() 1511 * to deny an incoming connection socket_sock_rcv_skb() 1512 */ 1513 static int apparmor_socket_sock_rcv_skb(struct sock *sk, struct sk_buff *skb) 1514 { 1515 struct aa_sk_ctx *ctx = aa_sock(sk); 1516 int error; 1517 1518 if (!skb->secmark) 1519 return 0; 1520 1521 /* 1522 * If reach here before socket_post_create hook is called, in which 1523 * case label is null, drop the packet. 1524 */ 1525 if (!rcu_access_pointer(ctx->label)) 1526 return -EACCES; 1527 1528 rcu_read_lock(); 1529 error = apparmor_secmark_check(rcu_dereference(ctx->label), OP_RECVMSG, 1530 AA_MAY_RECEIVE, skb->secmark, sk); 1531 rcu_read_unlock(); 1532 1533 return error; 1534 } 1535 #endif 1536 1537 1538 static struct aa_label *sk_peer_get_label(struct sock *sk) 1539 { 1540 struct aa_sk_ctx *ctx = aa_sock(sk); 1541 1542 if (rcu_access_pointer(ctx->peer)) 1543 return aa_get_label_rcu(&ctx->peer); 1544 1545 return ERR_PTR(-ENOPROTOOPT); 1546 } 1547 1548 /** 1549 * apparmor_socket_getpeersec_stream - get security context of peer 1550 * @sock: socket that we are trying to get the peer context of 1551 * @optval: output - buffer to copy peer name to 1552 * @optlen: output - size of copied name in @optval 1553 * @len: size of @optval buffer 1554 * Returns: 0 on success, -errno of failure 1555 * 1556 * Note: for tcp only valid if using ipsec or cipso on lan 1557 */ 1558 static int apparmor_socket_getpeersec_stream(struct socket *sock, 1559 sockptr_t optval, sockptr_t optlen, 1560 unsigned int len) 1561 { 1562 char *name = NULL; 1563 int slen, error = 0; 1564 struct aa_label *label; 1565 struct aa_label *peer; 1566 1567 peer = sk_peer_get_label(sock->sk); 1568 if (IS_ERR(peer)) { 1569 error = PTR_ERR(peer); 1570 goto done; 1571 } 1572 label = begin_current_label_crit_section(); 1573 slen = aa_label_asxprint(&name, labels_ns(label), peer, 1574 FLAG_SHOW_MODE | FLAG_VIEW_SUBNS | 1575 FLAG_HIDDEN_UNCONFINED, GFP_KERNEL); 1576 /* don't include terminating \0 in slen, it breaks some apps */ 1577 if (slen < 0) { 1578 error = -ENOMEM; 1579 goto done_put; 1580 } 1581 if (slen > len) { 1582 error = -ERANGE; 1583 goto done_len; 1584 } 1585 1586 if (copy_to_sockptr(optval, name, slen)) 1587 error = -EFAULT; 1588 done_len: 1589 if (copy_to_sockptr(optlen, &slen, sizeof(slen))) 1590 error = -EFAULT; 1591 1592 done_put: 1593 end_current_label_crit_section(label); 1594 aa_put_label(peer); 1595 done: 1596 kfree(name); 1597 return error; 1598 } 1599 1600 /** 1601 * apparmor_socket_getpeersec_dgram - get security label of packet 1602 * @sock: the peer socket 1603 * @skb: packet data 1604 * @secid: pointer to where to put the secid of the packet 1605 * 1606 * Sets the netlabel socket state on sk from parent 1607 */ 1608 static int apparmor_socket_getpeersec_dgram(struct socket *sock, 1609 struct sk_buff *skb, u32 *secid) 1610 1611 { 1612 /* TODO: requires secid support */ 1613 return -ENOPROTOOPT; 1614 } 1615 1616 /** 1617 * apparmor_sock_graft - Initialize newly created socket 1618 * @sk: child sock 1619 * @parent: parent socket 1620 * 1621 * Note: could set off of SOCK_CTX(parent) but need to track inode and we can 1622 * just set sk security information off of current creating process label 1623 * Labeling of sk for accept case - probably should be sock based 1624 * instead of task, because of the case where an implicitly labeled 1625 * socket is shared by different tasks. 1626 */ 1627 static void apparmor_sock_graft(struct sock *sk, struct socket *parent) 1628 { 1629 struct aa_sk_ctx *ctx = aa_sock(sk); 1630 1631 /* setup - not live */ 1632 if (!rcu_access_pointer(ctx->label)) 1633 rcu_assign_pointer(ctx->label, aa_get_current_label()); 1634 } 1635 1636 #ifdef CONFIG_NETWORK_SECMARK 1637 static int apparmor_inet_conn_request(const struct sock *sk, struct sk_buff *skb, 1638 struct request_sock *req) 1639 { 1640 struct aa_sk_ctx *ctx = aa_sock(sk); 1641 int error; 1642 1643 if (!skb->secmark) 1644 return 0; 1645 1646 rcu_read_lock(); 1647 error = apparmor_secmark_check(rcu_dereference(ctx->label), OP_CONNECT, 1648 AA_MAY_CONNECT, skb->secmark, sk); 1649 rcu_read_unlock(); 1650 1651 return error; 1652 } 1653 #endif 1654 1655 /* 1656 * The cred blob is a pointer to, not an instance of, an aa_label. 1657 */ 1658 struct lsm_blob_sizes apparmor_blob_sizes __ro_after_init = { 1659 .lbs_cred = sizeof(struct aa_label *), 1660 .lbs_file = sizeof(struct aa_file_ctx), 1661 .lbs_task = sizeof(struct aa_task_ctx), 1662 .lbs_sock = sizeof(struct aa_sk_ctx), 1663 }; 1664 1665 static const struct lsm_id apparmor_lsmid = { 1666 .name = "apparmor", 1667 .id = LSM_ID_APPARMOR, 1668 }; 1669 1670 static struct security_hook_list apparmor_hooks[] __ro_after_init = { 1671 LSM_HOOK_INIT(ptrace_access_check, apparmor_ptrace_access_check), 1672 LSM_HOOK_INIT(ptrace_traceme, apparmor_ptrace_traceme), 1673 LSM_HOOK_INIT(capget, apparmor_capget), 1674 LSM_HOOK_INIT(capable, apparmor_capable), 1675 1676 LSM_HOOK_INIT(move_mount, apparmor_move_mount), 1677 LSM_HOOK_INIT(sb_mount, apparmor_sb_mount), 1678 LSM_HOOK_INIT(sb_umount, apparmor_sb_umount), 1679 LSM_HOOK_INIT(sb_pivotroot, apparmor_sb_pivotroot), 1680 1681 LSM_HOOK_INIT(path_link, apparmor_path_link), 1682 LSM_HOOK_INIT(path_unlink, apparmor_path_unlink), 1683 LSM_HOOK_INIT(path_symlink, apparmor_path_symlink), 1684 LSM_HOOK_INIT(path_mkdir, apparmor_path_mkdir), 1685 LSM_HOOK_INIT(path_rmdir, apparmor_path_rmdir), 1686 LSM_HOOK_INIT(path_mknod, apparmor_path_mknod), 1687 LSM_HOOK_INIT(path_rename, apparmor_path_rename), 1688 LSM_HOOK_INIT(path_chmod, apparmor_path_chmod), 1689 LSM_HOOK_INIT(path_chown, apparmor_path_chown), 1690 LSM_HOOK_INIT(path_truncate, apparmor_path_truncate), 1691 LSM_HOOK_INIT(inode_getattr, apparmor_inode_getattr), 1692 1693 LSM_HOOK_INIT(file_open, apparmor_file_open), 1694 LSM_HOOK_INIT(file_receive, apparmor_file_receive), 1695 LSM_HOOK_INIT(file_permission, apparmor_file_permission), 1696 LSM_HOOK_INIT(file_alloc_security, apparmor_file_alloc_security), 1697 LSM_HOOK_INIT(file_free_security, apparmor_file_free_security), 1698 LSM_HOOK_INIT(mmap_file, apparmor_mmap_file), 1699 LSM_HOOK_INIT(file_mprotect, apparmor_file_mprotect), 1700 LSM_HOOK_INIT(file_lock, apparmor_file_lock), 1701 LSM_HOOK_INIT(file_truncate, apparmor_file_truncate), 1702 1703 LSM_HOOK_INIT(getselfattr, apparmor_getselfattr), 1704 LSM_HOOK_INIT(setselfattr, apparmor_setselfattr), 1705 LSM_HOOK_INIT(getprocattr, apparmor_getprocattr), 1706 LSM_HOOK_INIT(setprocattr, apparmor_setprocattr), 1707 1708 LSM_HOOK_INIT(sk_alloc_security, apparmor_sk_alloc_security), 1709 LSM_HOOK_INIT(sk_free_security, apparmor_sk_free_security), 1710 LSM_HOOK_INIT(sk_clone_security, apparmor_sk_clone_security), 1711 1712 LSM_HOOK_INIT(unix_stream_connect, apparmor_unix_stream_connect), 1713 LSM_HOOK_INIT(unix_may_send, apparmor_unix_may_send), 1714 1715 LSM_HOOK_INIT(socket_create, apparmor_socket_create), 1716 LSM_HOOK_INIT(socket_post_create, apparmor_socket_post_create), 1717 LSM_HOOK_INIT(socket_socketpair, apparmor_socket_socketpair), 1718 LSM_HOOK_INIT(socket_bind, apparmor_socket_bind), 1719 LSM_HOOK_INIT(socket_connect, apparmor_socket_connect), 1720 LSM_HOOK_INIT(socket_listen, apparmor_socket_listen), 1721 LSM_HOOK_INIT(socket_accept, apparmor_socket_accept), 1722 LSM_HOOK_INIT(socket_sendmsg, apparmor_socket_sendmsg), 1723 LSM_HOOK_INIT(socket_recvmsg, apparmor_socket_recvmsg), 1724 LSM_HOOK_INIT(socket_getsockname, apparmor_socket_getsockname), 1725 LSM_HOOK_INIT(socket_getpeername, apparmor_socket_getpeername), 1726 LSM_HOOK_INIT(socket_getsockopt, apparmor_socket_getsockopt), 1727 LSM_HOOK_INIT(socket_setsockopt, apparmor_socket_setsockopt), 1728 LSM_HOOK_INIT(socket_shutdown, apparmor_socket_shutdown), 1729 #ifdef CONFIG_NETWORK_SECMARK 1730 LSM_HOOK_INIT(socket_sock_rcv_skb, apparmor_socket_sock_rcv_skb), 1731 #endif 1732 LSM_HOOK_INIT(socket_getpeersec_stream, 1733 apparmor_socket_getpeersec_stream), 1734 LSM_HOOK_INIT(socket_getpeersec_dgram, 1735 apparmor_socket_getpeersec_dgram), 1736 LSM_HOOK_INIT(sock_graft, apparmor_sock_graft), 1737 #ifdef CONFIG_NETWORK_SECMARK 1738 LSM_HOOK_INIT(inet_conn_request, apparmor_inet_conn_request), 1739 #endif 1740 1741 LSM_HOOK_INIT(cred_alloc_blank, apparmor_cred_alloc_blank), 1742 LSM_HOOK_INIT(cred_free, apparmor_cred_free), 1743 LSM_HOOK_INIT(cred_prepare, apparmor_cred_prepare), 1744 LSM_HOOK_INIT(cred_transfer, apparmor_cred_transfer), 1745 1746 LSM_HOOK_INIT(bprm_creds_for_exec, apparmor_bprm_creds_for_exec), 1747 LSM_HOOK_INIT(bprm_committing_creds, apparmor_bprm_committing_creds), 1748 LSM_HOOK_INIT(bprm_committed_creds, apparmor_bprm_committed_creds), 1749 1750 LSM_HOOK_INIT(task_free, apparmor_task_free), 1751 LSM_HOOK_INIT(task_alloc, apparmor_task_alloc), 1752 LSM_HOOK_INIT(current_getlsmprop_subj, 1753 apparmor_current_getlsmprop_subj), 1754 LSM_HOOK_INIT(task_getlsmprop_obj, apparmor_task_getlsmprop_obj), 1755 LSM_HOOK_INIT(task_setrlimit, apparmor_task_setrlimit), 1756 LSM_HOOK_INIT(task_kill, apparmor_task_kill), 1757 LSM_HOOK_INIT(userns_create, apparmor_userns_create), 1758 1759 #ifdef CONFIG_AUDIT 1760 LSM_HOOK_INIT(audit_rule_init, aa_audit_rule_init), 1761 LSM_HOOK_INIT(audit_rule_known, aa_audit_rule_known), 1762 LSM_HOOK_INIT(audit_rule_match, aa_audit_rule_match), 1763 LSM_HOOK_INIT(audit_rule_free, aa_audit_rule_free), 1764 #endif 1765 1766 LSM_HOOK_INIT(secid_to_secctx, apparmor_secid_to_secctx), 1767 LSM_HOOK_INIT(lsmprop_to_secctx, apparmor_lsmprop_to_secctx), 1768 LSM_HOOK_INIT(secctx_to_secid, apparmor_secctx_to_secid), 1769 LSM_HOOK_INIT(release_secctx, apparmor_release_secctx), 1770 1771 #ifdef CONFIG_IO_URING 1772 LSM_HOOK_INIT(uring_override_creds, apparmor_uring_override_creds), 1773 LSM_HOOK_INIT(uring_sqpoll, apparmor_uring_sqpoll), 1774 #endif 1775 }; 1776 1777 /* 1778 * AppArmor sysfs module parameters 1779 */ 1780 1781 static int param_set_aabool(const char *val, const struct kernel_param *kp); 1782 static int param_get_aabool(char *buffer, const struct kernel_param *kp); 1783 #define param_check_aabool param_check_bool 1784 static const struct kernel_param_ops param_ops_aabool = { 1785 .flags = KERNEL_PARAM_OPS_FL_NOARG, 1786 .set = param_set_aabool, 1787 .get = param_get_aabool 1788 }; 1789 1790 static int param_set_aauint(const char *val, const struct kernel_param *kp); 1791 static int param_get_aauint(char *buffer, const struct kernel_param *kp); 1792 #define param_check_aauint param_check_uint 1793 static const struct kernel_param_ops param_ops_aauint = { 1794 .set = param_set_aauint, 1795 .get = param_get_aauint 1796 }; 1797 1798 static int param_set_aacompressionlevel(const char *val, 1799 const struct kernel_param *kp); 1800 static int param_get_aacompressionlevel(char *buffer, 1801 const struct kernel_param *kp); 1802 #define param_check_aacompressionlevel param_check_int 1803 static const struct kernel_param_ops param_ops_aacompressionlevel = { 1804 .set = param_set_aacompressionlevel, 1805 .get = param_get_aacompressionlevel 1806 }; 1807 1808 static int param_set_aalockpolicy(const char *val, const struct kernel_param *kp); 1809 static int param_get_aalockpolicy(char *buffer, const struct kernel_param *kp); 1810 #define param_check_aalockpolicy param_check_bool 1811 static const struct kernel_param_ops param_ops_aalockpolicy = { 1812 .flags = KERNEL_PARAM_OPS_FL_NOARG, 1813 .set = param_set_aalockpolicy, 1814 .get = param_get_aalockpolicy 1815 }; 1816 1817 static int param_set_debug(const char *val, const struct kernel_param *kp); 1818 static int param_get_debug(char *buffer, const struct kernel_param *kp); 1819 1820 static int param_set_audit(const char *val, const struct kernel_param *kp); 1821 static int param_get_audit(char *buffer, const struct kernel_param *kp); 1822 1823 static int param_set_mode(const char *val, const struct kernel_param *kp); 1824 static int param_get_mode(char *buffer, const struct kernel_param *kp); 1825 1826 /* Flag values, also controllable via /sys/module/apparmor/parameters 1827 * We define special types as we want to do additional mediation. 1828 */ 1829 1830 /* AppArmor global enforcement switch - complain, enforce, kill */ 1831 enum profile_mode aa_g_profile_mode = APPARMOR_ENFORCE; 1832 module_param_call(mode, param_set_mode, param_get_mode, 1833 &aa_g_profile_mode, S_IRUSR | S_IWUSR); 1834 1835 /* whether policy verification hashing is enabled */ 1836 bool aa_g_hash_policy = IS_ENABLED(CONFIG_SECURITY_APPARMOR_HASH_DEFAULT); 1837 #ifdef CONFIG_SECURITY_APPARMOR_HASH 1838 module_param_named(hash_policy, aa_g_hash_policy, aabool, S_IRUSR | S_IWUSR); 1839 #endif 1840 1841 /* whether policy exactly as loaded is retained for debug and checkpointing */ 1842 bool aa_g_export_binary = IS_ENABLED(CONFIG_SECURITY_APPARMOR_EXPORT_BINARY); 1843 #ifdef CONFIG_SECURITY_APPARMOR_EXPORT_BINARY 1844 module_param_named(export_binary, aa_g_export_binary, aabool, 0600); 1845 #endif 1846 1847 /* policy loaddata compression level */ 1848 int aa_g_rawdata_compression_level = AA_DEFAULT_CLEVEL; 1849 module_param_named(rawdata_compression_level, aa_g_rawdata_compression_level, 1850 aacompressionlevel, 0400); 1851 1852 /* Debug mode */ 1853 int aa_g_debug; 1854 module_param_call(debug, param_set_debug, param_get_debug, 1855 &aa_g_debug, 0600); 1856 1857 /* Audit mode */ 1858 enum audit_mode aa_g_audit; 1859 module_param_call(audit, param_set_audit, param_get_audit, 1860 &aa_g_audit, S_IRUSR | S_IWUSR); 1861 1862 /* Determines if audit header is included in audited messages. This 1863 * provides more context if the audit daemon is not running 1864 */ 1865 bool aa_g_audit_header = true; 1866 module_param_named(audit_header, aa_g_audit_header, aabool, 1867 S_IRUSR | S_IWUSR); 1868 1869 /* lock out loading/removal of policy 1870 * TODO: add in at boot loading of policy, which is the only way to 1871 * load policy, if lock_policy is set 1872 */ 1873 bool aa_g_lock_policy; 1874 module_param_named(lock_policy, aa_g_lock_policy, aalockpolicy, 1875 S_IRUSR | S_IWUSR); 1876 1877 /* Syscall logging mode */ 1878 bool aa_g_logsyscall; 1879 module_param_named(logsyscall, aa_g_logsyscall, aabool, S_IRUSR | S_IWUSR); 1880 1881 /* Maximum pathname length before accesses will start getting rejected */ 1882 unsigned int aa_g_path_max = 2 * PATH_MAX; 1883 module_param_named(path_max, aa_g_path_max, aauint, S_IRUSR); 1884 1885 /* Determines how paranoid loading of policy is and how much verification 1886 * on the loaded policy is done. 1887 * DEPRECATED: read only as strict checking of load is always done now 1888 * that none root users (user namespaces) can load policy. 1889 */ 1890 bool aa_g_paranoid_load = IS_ENABLED(CONFIG_SECURITY_APPARMOR_PARANOID_LOAD); 1891 module_param_named(paranoid_load, aa_g_paranoid_load, aabool, S_IRUGO); 1892 1893 static int param_get_aaintbool(char *buffer, const struct kernel_param *kp); 1894 static int param_set_aaintbool(const char *val, const struct kernel_param *kp); 1895 #define param_check_aaintbool param_check_int 1896 static const struct kernel_param_ops param_ops_aaintbool = { 1897 .set = param_set_aaintbool, 1898 .get = param_get_aaintbool 1899 }; 1900 /* Boot time disable flag */ 1901 static int apparmor_enabled __ro_after_init = 1; 1902 module_param_named(enabled, apparmor_enabled, aaintbool, 0444); 1903 1904 static int __init apparmor_enabled_setup(char *str) 1905 { 1906 unsigned long enabled; 1907 int error = kstrtoul(str, 0, &enabled); 1908 if (!error) 1909 apparmor_enabled = enabled ? 1 : 0; 1910 return 1; 1911 } 1912 1913 __setup("apparmor=", apparmor_enabled_setup); 1914 1915 /* set global flag turning off the ability to load policy */ 1916 static int param_set_aalockpolicy(const char *val, const struct kernel_param *kp) 1917 { 1918 if (!apparmor_enabled) 1919 return -EINVAL; 1920 if (apparmor_initialized && !aa_current_policy_admin_capable(NULL)) 1921 return -EPERM; 1922 return param_set_bool(val, kp); 1923 } 1924 1925 static int param_get_aalockpolicy(char *buffer, const struct kernel_param *kp) 1926 { 1927 if (!apparmor_enabled) 1928 return -EINVAL; 1929 if (apparmor_initialized && !aa_current_policy_view_capable(NULL)) 1930 return -EPERM; 1931 return param_get_bool(buffer, kp); 1932 } 1933 1934 static int param_set_aabool(const char *val, const struct kernel_param *kp) 1935 { 1936 if (!apparmor_enabled) 1937 return -EINVAL; 1938 if (apparmor_initialized && !aa_current_policy_admin_capable(NULL)) 1939 return -EPERM; 1940 return param_set_bool(val, kp); 1941 } 1942 1943 static int param_get_aabool(char *buffer, const struct kernel_param *kp) 1944 { 1945 if (!apparmor_enabled) 1946 return -EINVAL; 1947 if (apparmor_initialized && !aa_current_policy_view_capable(NULL)) 1948 return -EPERM; 1949 return param_get_bool(buffer, kp); 1950 } 1951 1952 static int param_set_aauint(const char *val, const struct kernel_param *kp) 1953 { 1954 int error; 1955 1956 if (!apparmor_enabled) 1957 return -EINVAL; 1958 /* file is ro but enforce 2nd line check */ 1959 if (apparmor_initialized) 1960 return -EPERM; 1961 1962 error = param_set_uint(val, kp); 1963 aa_g_path_max = max_t(uint32_t, aa_g_path_max, sizeof(union aa_buffer)); 1964 pr_info("AppArmor: buffer size set to %d bytes\n", aa_g_path_max); 1965 1966 return error; 1967 } 1968 1969 static int param_get_aauint(char *buffer, const struct kernel_param *kp) 1970 { 1971 if (!apparmor_enabled) 1972 return -EINVAL; 1973 if (apparmor_initialized && !aa_current_policy_view_capable(NULL)) 1974 return -EPERM; 1975 return param_get_uint(buffer, kp); 1976 } 1977 1978 /* Can only be set before AppArmor is initialized (i.e. on boot cmdline). */ 1979 static int param_set_aaintbool(const char *val, const struct kernel_param *kp) 1980 { 1981 struct kernel_param kp_local; 1982 bool value; 1983 int error; 1984 1985 if (apparmor_initialized) 1986 return -EPERM; 1987 1988 /* Create local copy, with arg pointing to bool type. */ 1989 value = !!*((int *)kp->arg); 1990 memcpy(&kp_local, kp, sizeof(kp_local)); 1991 kp_local.arg = &value; 1992 1993 error = param_set_bool(val, &kp_local); 1994 if (!error) 1995 *((int *)kp->arg) = *((bool *)kp_local.arg); 1996 return error; 1997 } 1998 1999 /* 2000 * To avoid changing /sys/module/apparmor/parameters/enabled from Y/N to 2001 * 1/0, this converts the "int that is actually bool" back to bool for 2002 * display in the /sys filesystem, while keeping it "int" for the LSM 2003 * infrastructure. 2004 */ 2005 static int param_get_aaintbool(char *buffer, const struct kernel_param *kp) 2006 { 2007 struct kernel_param kp_local; 2008 bool value; 2009 2010 /* Create local copy, with arg pointing to bool type. */ 2011 value = !!*((int *)kp->arg); 2012 memcpy(&kp_local, kp, sizeof(kp_local)); 2013 kp_local.arg = &value; 2014 2015 return param_get_bool(buffer, &kp_local); 2016 } 2017 2018 static int param_set_aacompressionlevel(const char *val, 2019 const struct kernel_param *kp) 2020 { 2021 int error; 2022 2023 if (!apparmor_enabled) 2024 return -EINVAL; 2025 if (apparmor_initialized) 2026 return -EPERM; 2027 2028 error = param_set_int(val, kp); 2029 2030 aa_g_rawdata_compression_level = clamp(aa_g_rawdata_compression_level, 2031 AA_MIN_CLEVEL, AA_MAX_CLEVEL); 2032 pr_info("AppArmor: policy rawdata compression level set to %d\n", 2033 aa_g_rawdata_compression_level); 2034 2035 return error; 2036 } 2037 2038 static int param_get_aacompressionlevel(char *buffer, 2039 const struct kernel_param *kp) 2040 { 2041 if (!apparmor_enabled) 2042 return -EINVAL; 2043 if (apparmor_initialized && !aa_current_policy_view_capable(NULL)) 2044 return -EPERM; 2045 return param_get_int(buffer, kp); 2046 } 2047 2048 static int param_get_debug(char *buffer, const struct kernel_param *kp) 2049 { 2050 if (!apparmor_enabled) 2051 return -EINVAL; 2052 if (apparmor_initialized && !aa_current_policy_view_capable(NULL)) 2053 return -EPERM; 2054 return aa_print_debug_params(buffer); 2055 } 2056 2057 static int param_set_debug(const char *val, const struct kernel_param *kp) 2058 { 2059 int i; 2060 2061 if (!apparmor_enabled) 2062 return -EINVAL; 2063 if (!val) 2064 return -EINVAL; 2065 if (apparmor_initialized && !aa_current_policy_admin_capable(NULL)) 2066 return -EPERM; 2067 2068 i = aa_parse_debug_params(val); 2069 if (i == DEBUG_PARSE_ERROR) 2070 return -EINVAL; 2071 2072 aa_g_debug = i; 2073 return 0; 2074 } 2075 2076 static int param_get_audit(char *buffer, const struct kernel_param *kp) 2077 { 2078 if (!apparmor_enabled) 2079 return -EINVAL; 2080 if (apparmor_initialized && !aa_current_policy_view_capable(NULL)) 2081 return -EPERM; 2082 return sysfs_emit(buffer, "%s\n", audit_mode_names[aa_g_audit]); 2083 } 2084 2085 static int param_set_audit(const char *val, const struct kernel_param *kp) 2086 { 2087 int i; 2088 2089 if (!apparmor_enabled) 2090 return -EINVAL; 2091 if (!val) 2092 return -EINVAL; 2093 if (apparmor_initialized && !aa_current_policy_admin_capable(NULL)) 2094 return -EPERM; 2095 2096 i = match_string(audit_mode_names, AUDIT_MAX_INDEX, val); 2097 if (i < 0) 2098 return -EINVAL; 2099 2100 aa_g_audit = i; 2101 return 0; 2102 } 2103 2104 static int param_get_mode(char *buffer, const struct kernel_param *kp) 2105 { 2106 if (!apparmor_enabled) 2107 return -EINVAL; 2108 if (apparmor_initialized && !aa_current_policy_view_capable(NULL)) 2109 return -EPERM; 2110 return sysfs_emit(buffer, "%s\n", aa_profile_mode_names[aa_g_profile_mode]); 2111 } 2112 2113 static int param_set_mode(const char *val, const struct kernel_param *kp) 2114 { 2115 int i; 2116 2117 if (!apparmor_enabled) 2118 return -EINVAL; 2119 if (!val) 2120 return -EINVAL; 2121 if (apparmor_initialized && !aa_current_policy_admin_capable(NULL)) 2122 return -EPERM; 2123 2124 i = match_string(aa_profile_mode_names, APPARMOR_MODE_NAMES_MAX_INDEX, 2125 val); 2126 if (i < 0) 2127 return -EINVAL; 2128 2129 aa_g_profile_mode = i; 2130 return 0; 2131 } 2132 2133 /* arbitrary cap on how long to hold buffer because contention was 2134 * encountered before trying to put it back into the global pool 2135 */ 2136 #define MAX_HOLD_COUNT 64 2137 2138 /* the hold count is a heuristic for lock contention, and can be 2139 * incremented async to actual buffer alloc/free. Because buffers 2140 * may be put back onto a percpu cache different than the ->hold was 2141 * added to the counts can be out of sync. Guard against underflow 2142 * and overflow 2143 */ 2144 static void cache_hold_inc(unsigned int *hold) 2145 { 2146 if (*hold < MAX_HOLD_COUNT) 2147 (*hold)++; 2148 } 2149 2150 char *aa_get_buffer(bool in_atomic) 2151 { 2152 union aa_buffer *aa_buf; 2153 struct aa_local_cache *cache; 2154 bool try_again = true; 2155 gfp_t flags = (GFP_KERNEL | __GFP_RETRY_MAYFAIL | __GFP_NOWARN); 2156 2157 /* use per cpu cached buffers first */ 2158 cache = get_cpu_ptr(&aa_local_buffers); 2159 if (!list_empty(&cache->head)) { 2160 aa_buf = list_first_entry(&cache->head, union aa_buffer, list); 2161 list_del(&aa_buf->list); 2162 if (cache->hold) 2163 cache->hold--; 2164 cache->count--; 2165 put_cpu_ptr(&aa_local_buffers); 2166 return &aa_buf->buffer[0]; 2167 } 2168 /* exit percpu as spinlocks may sleep on realtime kernels */ 2169 put_cpu_ptr(&aa_local_buffers); 2170 2171 if (!spin_trylock(&aa_buffers_lock)) { 2172 /* had contention on lock so increase hold count. Doesn't 2173 * really matter if recorded before or after the spin lock 2174 * as there is no way to guarantee the buffer will be put 2175 * back on the same percpu cache. Instead rely on holds 2176 * roughly averaging out over time. 2177 */ 2178 cache = get_cpu_ptr(&aa_local_buffers); 2179 cache_hold_inc(&cache->hold); 2180 put_cpu_ptr(&aa_local_buffers); 2181 spin_lock(&aa_buffers_lock); 2182 } 2183 retry: 2184 if (buffer_count > reserve_count || 2185 (in_atomic && !list_empty(&aa_global_buffers))) { 2186 aa_buf = list_first_entry(&aa_global_buffers, union aa_buffer, 2187 list); 2188 list_del(&aa_buf->list); 2189 buffer_count--; 2190 spin_unlock(&aa_buffers_lock); 2191 return aa_buf->buffer; 2192 } 2193 if (in_atomic) { 2194 /* 2195 * out of reserve buffers and in atomic context so increase 2196 * how many buffers to keep in reserve 2197 */ 2198 reserve_count++; 2199 flags = GFP_ATOMIC; 2200 } 2201 spin_unlock(&aa_buffers_lock); 2202 2203 if (!in_atomic) 2204 might_sleep(); 2205 aa_buf = kmalloc(aa_g_path_max, flags); 2206 if (!aa_buf) { 2207 if (try_again) { 2208 try_again = false; 2209 spin_lock(&aa_buffers_lock); 2210 goto retry; 2211 } 2212 pr_warn_once("AppArmor: Failed to allocate a memory buffer.\n"); 2213 return NULL; 2214 } 2215 return aa_buf->buffer; 2216 } 2217 2218 void aa_put_buffer(char *buf) 2219 { 2220 union aa_buffer *aa_buf; 2221 struct aa_local_cache *cache; 2222 2223 if (!buf) 2224 return; 2225 aa_buf = container_of(buf, union aa_buffer, buffer[0]); 2226 2227 cache = get_cpu_ptr(&aa_local_buffers); 2228 if (!cache->hold) { 2229 put_cpu_ptr(&aa_local_buffers); 2230 2231 if (spin_trylock(&aa_buffers_lock)) { 2232 /* put back on global list */ 2233 list_add(&aa_buf->list, &aa_global_buffers); 2234 buffer_count++; 2235 spin_unlock(&aa_buffers_lock); 2236 return; 2237 } 2238 /* contention on global list, fallback to percpu */ 2239 cache = get_cpu_ptr(&aa_local_buffers); 2240 cache_hold_inc(&cache->hold); 2241 } 2242 2243 /* cache in percpu list */ 2244 list_add(&aa_buf->list, &cache->head); 2245 cache->count++; 2246 put_cpu_ptr(&aa_local_buffers); 2247 } 2248 2249 /* 2250 * AppArmor init functions 2251 */ 2252 2253 /** 2254 * set_init_ctx - set a task context and profile on the first task. 2255 * 2256 * TODO: allow setting an alternate profile than unconfined 2257 */ 2258 static int __init set_init_ctx(void) 2259 { 2260 struct cred *cred = (__force struct cred *)current->real_cred; 2261 2262 set_cred_label(cred, aa_get_label(ns_unconfined(root_ns))); 2263 2264 return 0; 2265 } 2266 2267 static void destroy_buffers(void) 2268 { 2269 union aa_buffer *aa_buf; 2270 2271 spin_lock(&aa_buffers_lock); 2272 while (!list_empty(&aa_global_buffers)) { 2273 aa_buf = list_first_entry(&aa_global_buffers, union aa_buffer, 2274 list); 2275 list_del(&aa_buf->list); 2276 spin_unlock(&aa_buffers_lock); 2277 kfree(aa_buf); 2278 spin_lock(&aa_buffers_lock); 2279 } 2280 spin_unlock(&aa_buffers_lock); 2281 } 2282 2283 static int __init alloc_buffers(void) 2284 { 2285 union aa_buffer *aa_buf; 2286 int i, num; 2287 2288 /* 2289 * per cpu set of cached allocated buffers used to help reduce 2290 * lock contention 2291 */ 2292 for_each_possible_cpu(i) { 2293 per_cpu(aa_local_buffers, i).hold = 0; 2294 per_cpu(aa_local_buffers, i).count = 0; 2295 INIT_LIST_HEAD(&per_cpu(aa_local_buffers, i).head); 2296 } 2297 /* 2298 * A function may require two buffers at once. Usually the buffers are 2299 * used for a short period of time and are shared. On UP kernel buffers 2300 * two should be enough, with more CPUs it is possible that more 2301 * buffers will be used simultaneously. The preallocated pool may grow. 2302 * This preallocation has also the side-effect that AppArmor will be 2303 * disabled early at boot if aa_g_path_max is extremely high. 2304 */ 2305 if (num_online_cpus() > 1) 2306 num = 4 + RESERVE_COUNT; 2307 else 2308 num = 2 + RESERVE_COUNT; 2309 2310 for (i = 0; i < num; i++) { 2311 2312 aa_buf = kmalloc(aa_g_path_max, GFP_KERNEL | 2313 __GFP_RETRY_MAYFAIL | __GFP_NOWARN); 2314 if (!aa_buf) { 2315 destroy_buffers(); 2316 return -ENOMEM; 2317 } 2318 aa_put_buffer(aa_buf->buffer); 2319 } 2320 return 0; 2321 } 2322 2323 #ifdef CONFIG_SYSCTL 2324 static int apparmor_dointvec(const struct ctl_table *table, int write, 2325 void *buffer, size_t *lenp, loff_t *ppos) 2326 { 2327 if (!aa_current_policy_admin_capable(NULL)) 2328 return -EPERM; 2329 if (!apparmor_enabled) 2330 return -EINVAL; 2331 2332 return proc_dointvec(table, write, buffer, lenp, ppos); 2333 } 2334 2335 static const struct ctl_table apparmor_sysctl_table[] = { 2336 #ifdef CONFIG_USER_NS 2337 { 2338 .procname = "unprivileged_userns_apparmor_policy", 2339 .data = &unprivileged_userns_apparmor_policy, 2340 .maxlen = sizeof(int), 2341 .mode = 0600, 2342 .proc_handler = apparmor_dointvec, 2343 }, 2344 #endif /* CONFIG_USER_NS */ 2345 { 2346 .procname = "apparmor_display_secid_mode", 2347 .data = &apparmor_display_secid_mode, 2348 .maxlen = sizeof(int), 2349 .mode = 0600, 2350 .proc_handler = apparmor_dointvec, 2351 }, 2352 { 2353 .procname = "apparmor_restrict_unprivileged_unconfined", 2354 .data = &aa_unprivileged_unconfined_restricted, 2355 .maxlen = sizeof(int), 2356 .mode = 0600, 2357 .proc_handler = apparmor_dointvec, 2358 }, 2359 }; 2360 2361 static int __init apparmor_init_sysctl(void) 2362 { 2363 return register_sysctl("kernel", apparmor_sysctl_table) ? 0 : -ENOMEM; 2364 } 2365 #else 2366 static inline int apparmor_init_sysctl(void) 2367 { 2368 return 0; 2369 } 2370 #endif /* CONFIG_SYSCTL */ 2371 2372 #if defined(CONFIG_NETFILTER) && defined(CONFIG_NETWORK_SECMARK) 2373 static unsigned int apparmor_ip_postroute(void *priv, 2374 struct sk_buff *skb, 2375 const struct nf_hook_state *state) 2376 { 2377 struct aa_sk_ctx *ctx; 2378 struct sock *sk; 2379 int error; 2380 2381 if (!skb->secmark) 2382 return NF_ACCEPT; 2383 2384 sk = skb_to_full_sk(skb); 2385 if (sk == NULL) 2386 return NF_ACCEPT; 2387 2388 ctx = aa_sock(sk); 2389 rcu_read_lock(); 2390 error = apparmor_secmark_check(rcu_dereference(ctx->label), OP_SENDMSG, 2391 AA_MAY_SEND, skb->secmark, sk); 2392 rcu_read_unlock(); 2393 if (!error) 2394 return NF_ACCEPT; 2395 2396 return NF_DROP_ERR(-ECONNREFUSED); 2397 2398 } 2399 2400 static const struct nf_hook_ops apparmor_nf_ops[] = { 2401 { 2402 .hook = apparmor_ip_postroute, 2403 .pf = NFPROTO_IPV4, 2404 .hooknum = NF_INET_POST_ROUTING, 2405 .priority = NF_IP_PRI_SELINUX_FIRST, 2406 }, 2407 #if IS_ENABLED(CONFIG_IPV6) 2408 { 2409 .hook = apparmor_ip_postroute, 2410 .pf = NFPROTO_IPV6, 2411 .hooknum = NF_INET_POST_ROUTING, 2412 .priority = NF_IP6_PRI_SELINUX_FIRST, 2413 }, 2414 #endif 2415 }; 2416 2417 static int __net_init apparmor_nf_register(struct net *net) 2418 { 2419 return nf_register_net_hooks(net, apparmor_nf_ops, 2420 ARRAY_SIZE(apparmor_nf_ops)); 2421 } 2422 2423 static void __net_exit apparmor_nf_unregister(struct net *net) 2424 { 2425 nf_unregister_net_hooks(net, apparmor_nf_ops, 2426 ARRAY_SIZE(apparmor_nf_ops)); 2427 } 2428 2429 static struct pernet_operations apparmor_net_ops = { 2430 .init = apparmor_nf_register, 2431 .exit = apparmor_nf_unregister, 2432 }; 2433 2434 static int __init apparmor_nf_ip_init(void) 2435 { 2436 int err; 2437 2438 if (!apparmor_enabled) 2439 return 0; 2440 2441 err = register_pernet_subsys(&apparmor_net_ops); 2442 if (err) 2443 panic("Apparmor: register_pernet_subsys: error %d\n", err); 2444 2445 return 0; 2446 } 2447 #endif 2448 2449 static char nulldfa_src[] __aligned(8) = { 2450 #include "nulldfa.in" 2451 }; 2452 static struct aa_dfa *nulldfa; 2453 2454 static char stacksplitdfa_src[] __aligned(8) = { 2455 #include "stacksplitdfa.in" 2456 }; 2457 struct aa_dfa *stacksplitdfa; 2458 struct aa_policydb *nullpdb; 2459 2460 static int __init aa_setup_dfa_engine(void) 2461 { 2462 int error = -ENOMEM; 2463 2464 nullpdb = aa_alloc_pdb(GFP_KERNEL); 2465 if (!nullpdb) 2466 return -ENOMEM; 2467 2468 nulldfa = aa_dfa_unpack(nulldfa_src, sizeof(nulldfa_src), 2469 TO_ACCEPT1_FLAG(YYTD_DATA32) | 2470 TO_ACCEPT2_FLAG(YYTD_DATA32)); 2471 if (IS_ERR(nulldfa)) { 2472 error = PTR_ERR(nulldfa); 2473 nulldfa = NULL; 2474 goto fail; 2475 } 2476 nullpdb->dfa = aa_get_dfa(nulldfa); 2477 nullpdb->perms = kzalloc_objs(struct aa_perms, 2); 2478 if (!nullpdb->perms) 2479 goto fail; 2480 nullpdb->size = 2; 2481 2482 stacksplitdfa = aa_dfa_unpack(stacksplitdfa_src, 2483 sizeof(stacksplitdfa_src), 2484 TO_ACCEPT1_FLAG(YYTD_DATA32) | 2485 TO_ACCEPT2_FLAG(YYTD_DATA32)); 2486 if (IS_ERR(stacksplitdfa)) { 2487 error = PTR_ERR(stacksplitdfa); 2488 goto fail; 2489 } 2490 2491 return 0; 2492 2493 fail: 2494 aa_put_pdb(nullpdb); 2495 aa_put_dfa(nulldfa); 2496 nullpdb = NULL; 2497 nulldfa = NULL; 2498 stacksplitdfa = NULL; 2499 2500 return error; 2501 } 2502 2503 static void __init aa_teardown_dfa_engine(void) 2504 { 2505 aa_put_dfa(stacksplitdfa); 2506 aa_put_dfa(nulldfa); 2507 aa_put_pdb(nullpdb); 2508 nullpdb = NULL; 2509 stacksplitdfa = NULL; 2510 nulldfa = NULL; 2511 } 2512 2513 static int __init apparmor_init(void) 2514 { 2515 int error; 2516 2517 error = aa_setup_dfa_engine(); 2518 if (error) { 2519 AA_ERROR("Unable to setup dfa engine\n"); 2520 goto alloc_out; 2521 } 2522 2523 error = aa_alloc_root_ns(); 2524 if (error) { 2525 AA_ERROR("Unable to allocate default profile namespace\n"); 2526 goto alloc_out; 2527 } 2528 2529 error = apparmor_init_sysctl(); 2530 if (error) { 2531 AA_ERROR("Unable to register sysctls\n"); 2532 goto alloc_out; 2533 2534 } 2535 2536 error = alloc_buffers(); 2537 if (error) { 2538 AA_ERROR("Unable to allocate work buffers\n"); 2539 goto alloc_out; 2540 } 2541 2542 error = set_init_ctx(); 2543 if (error) { 2544 AA_ERROR("Failed to set context on init task\n"); 2545 aa_free_root_ns(); 2546 goto buffers_out; 2547 } 2548 security_add_hooks(apparmor_hooks, ARRAY_SIZE(apparmor_hooks), 2549 &apparmor_lsmid); 2550 2551 /* Inform the audit system that secctx is used */ 2552 audit_cfg_lsm(&apparmor_lsmid, AUDIT_CFG_LSM_SECCTX_SUBJECT); 2553 2554 /* Report that AppArmor successfully initialized */ 2555 apparmor_initialized = 1; 2556 if (aa_g_profile_mode == APPARMOR_COMPLAIN) 2557 aa_info_message("AppArmor initialized: complain mode enabled"); 2558 else if (aa_g_profile_mode == APPARMOR_KILL) 2559 aa_info_message("AppArmor initialized: kill mode enabled"); 2560 else 2561 aa_info_message("AppArmor initialized"); 2562 2563 return error; 2564 2565 buffers_out: 2566 destroy_buffers(); 2567 alloc_out: 2568 aa_destroy_aafs(); 2569 aa_teardown_dfa_engine(); 2570 2571 apparmor_enabled = false; 2572 return error; 2573 } 2574 2575 DEFINE_LSM(apparmor) = { 2576 .id = &apparmor_lsmid, 2577 .flags = LSM_FLAG_LEGACY_MAJOR | LSM_FLAG_EXCLUSIVE, 2578 .enabled = &apparmor_enabled, 2579 .blobs = &apparmor_blob_sizes, 2580 .init = apparmor_init, 2581 .initcall_fs = aa_create_aafs, 2582 #if defined(CONFIG_NETFILTER) && defined(CONFIG_NETWORK_SECMARK) 2583 .initcall_device = apparmor_nf_ip_init, 2584 #endif 2585 #ifdef CONFIG_SECURITY_APPARMOR_HASH 2586 .initcall_late = init_profile_hash, 2587 #endif 2588 }; 2589